ID Workflow Result Correct Bug Created Started Finished Revision
02f90a6e assessment-security DenialOfService: ❌ Exploitable: ❌ FilesystemTrigger: ❌ NetworkTrigger: ❌ PeripheralTrigger: ❌ RemoteTrigger: ❌ Unprivileged: ❌ UserNamespace: ❌ VMGuestTrigger: ❌ VMHostTrigger: ❌ ❓ panic: runtime error: floating point error (2) 2026/05/14 16:05 2026/05/14 16:05 2026/05/14 16:12 6ccb967e
Agent: prod-syz-agent-1
External Bug ID: ---

Inputs:
BaseBranch master
BaseCommit RC
BaseRepository git://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
BugTitle panic: runtime error: floating point error
CrashLogID 6521462275440640
CrashReportID 5101042200477696
KernelCommit fab1beda7597fac1cecc01707d55eadb6bbe773c
KernelConfig
Show (276250 bytes)
#
# Automatically generated file; DO NOT EDIT.
# Linux/x86_64 syzkaller Kernel Configuration
#
CONFIG_CC_VERSION_TEXT="Debian clang version 20.1.7 (++20250616065708+6146a88f6049-1~exp1~20250616065826.132)"
CONFIG_GCC_VERSION=0
CONFIG_CC_IS_CLANG=y
CONFIG_CLANG_VERSION=200107
CONFIG_AS_IS_LLVM=y
CONFIG_AS_VERSION=200107
CONFIG_LD_VERSION=0
CONFIG_LD_IS_LLD=y
CONFIG_LLD_VERSION=200107
CONFIG_RUSTC_VERSION=108700
CONFIG_RUST_IS_AVAILABLE=y
CONFIG_RUSTC_LLVM_VERSION=200101
CONFIG_CC_CAN_LINK=y
CONFIG_CC_HAS_ASM_GOTO_OUTPUT=y
CONFIG_CC_HAS_ASM_GOTO_TIED_OUTPUT=y
CONFIG_TOOLS_SUPPORT_RELR=y
CONFIG_CC_HAS_ASM_INLINE=y
CONFIG_CC_HAS_NO_PROFILE_FN_ATTR=y
CONFIG_CC_HAS_COUNTED_BY=y
CONFIG_RUSTC_HAS_COERCE_POINTEE=y
CONFIG_PAHOLE_VERSION=124
CONFIG_CONSTRUCTORS=y
CONFIG_IRQ_WORK=y
CONFIG_BUILDTIME_TABLE_SORT=y
CONFIG_THREAD_INFO_IN_TASK=y

#
# General setup
#
CONFIG_INIT_ENV_ARG_LIMIT=32
# CONFIG_COMPILE_TEST is not set
# CONFIG_WERROR is not set
CONFIG_LOCALVERSION=""
CONFIG_LOCALVERSION_AUTO=y
CONFIG_BUILD_SALT=""
CONFIG_HAVE_KERNEL_GZIP=y
CONFIG_HAVE_KERNEL_BZIP2=y
CONFIG_HAVE_KERNEL_LZMA=y
CONFIG_HAVE_KERNEL_XZ=y
CONFIG_HAVE_KERNEL_LZO=y
CONFIG_HAVE_KERNEL_LZ4=y
CONFIG_HAVE_KERNEL_ZSTD=y
CONFIG_KERNEL_GZIP=y
# CONFIG_KERNEL_BZIP2 is not set
# CONFIG_KERNEL_LZMA is not set
# CONFIG_KERNEL_XZ is not set
# CONFIG_KERNEL_LZO is not set
# CONFIG_KERNEL_LZ4 is not set
# CONFIG_KERNEL_ZSTD is not set
CONFIG_DEFAULT_INIT=""
CONFIG_DEFAULT_HOSTNAME="(none)"
CONFIG_SYSVIPC=y
CONFIG_SYSVIPC_SYSCTL=y
CONFIG_SYSVIPC_COMPAT=y
CONFIG_POSIX_MQUEUE=y
CONFIG_POSIX_MQUEUE_SYSCTL=y
CONFIG_WATCH_QUEUE=y
CONFIG_CROSS_MEMORY_ATTACH=y
CONFIG_AUDIT=y
CONFIG_HAVE_ARCH_AUDITSYSCALL=y
CONFIG_AUDITSYSCALL=y

#
# IRQ subsystem
#
CONFIG_GENERIC_IRQ_PROBE=y
CONFIG_GENERIC_IRQ_SHOW=y
CONFIG_GENERIC_IRQ_EFFECTIVE_AFF_MASK=y
CONFIG_GENERIC_PENDING_IRQ=y
CONFIG_GENERIC_IRQ_MIGRATION=y
CONFIG_HARDIRQS_SW_RESEND=y
CONFIG_IRQ_DOMAIN=y
CONFIG_IRQ_DOMAIN_HIERARCHY=y
CONFIG_GENERIC_MSI_IRQ=y
CONFIG_GENERIC_IRQ_MATRIX_ALLOCATOR=y
CONFIG_GENERIC_IRQ_RESERVATION_MODE=y
CONFIG_IRQ_FORCED_THREADING=y
CONFIG_SPARSE_IRQ=y
# CONFIG_GENERIC_IRQ_DEBUGFS is not set
# end of IRQ subsystem

CONFIG_CLOCKSOURCE_WATCHDOG=y
CONFIG_ARCH_CLOCKSOURCE_INIT=y
CONFIG_GENERIC_TIME_VSYSCALL=y
CONFIG_GENERIC_CLOCKEVENTS=y
CONFIG_GENERIC_CLOCKEVENTS_BROADCAST=y
CONFIG_GENERIC_CLOCKEVENTS_BROADCAST_IDLE=y
CONFIG_GENERIC_CLOCKEVENTS_MIN_ADJUST=y
CONFIG_GENERIC_CMOS_UPDATE=y
CONFIG_HAVE_POSIX_CPU_TIMERS_TASK_WORK=y
CONFIG_POSIX_CPU_TIMERS_TASK_WORK=y
CONFIG_CONTEXT_TRACKING=y
CONFIG_CONTEXT_TRACKING_IDLE=y

#
# Timers subsystem
#
CONFIG_TICK_ONESHOT=y
CONFIG_NO_HZ_COMMON=y
# CONFIG_HZ_PERIODIC is not set
CONFIG_NO_HZ_IDLE=y
# CONFIG_NO_HZ_FULL is not set
CONFIG_CONTEXT_TRACKING_USER=y
# CONFIG_CONTEXT_TRACKING_USER_FORCE is not set
CONFIG_NO_HZ=y
CONFIG_HIGH_RES_TIMERS=y
CONFIG_CLOCKSOURCE_WATCHDOG_MAX_SKEW_US=125
# CONFIG_POSIX_AUX_CLOCKS is not set
# end of Timers subsystem

CONFIG_BPF=y
CONFIG_HAVE_EBPF_JIT=y
CONFIG_ARCH_WANT_DEFAULT_BPF_JIT=y

#
# BPF subsystem
#
CONFIG_BPF_SYSCALL=y
CONFIG_BPF_JIT=y
CONFIG_BPF_JIT_ALWAYS_ON=y
CONFIG_BPF_JIT_DEFAULT_ON=y
# CONFIG_BPF_UNPRIV_DEFAULT_OFF is not set
CONFIG_BPF_PRELOAD=y
CONFIG_BPF_PRELOAD_UMD=y
CONFIG_BPF_LSM=y
# end of BPF subsystem

CONFIG_PREEMPT_BUILD=y
CONFIG_ARCH_HAS_PREEMPT_LAZY=y
# CONFIG_PREEMPT_NONE is not set
# CONFIG_PREEMPT_VOLUNTARY is not set
CONFIG_PREEMPT=y
# CONFIG_PREEMPT_LAZY is not set
# CONFIG_PREEMPT_RT is not set
CONFIG_PREEMPT_COUNT=y
CONFIG_PREEMPTION=y
CONFIG_PREEMPT_DYNAMIC=y
CONFIG_SCHED_CORE=y

#
# CPU/Task time and stats accounting
#
CONFIG_VIRT_CPU_ACCOUNTING=y
# CONFIG_TICK_CPU_ACCOUNTING is not set
CONFIG_VIRT_CPU_ACCOUNTING_GEN=y
CONFIG_IRQ_TIME_ACCOUNTING=y
CONFIG_HAVE_SCHED_AVG_IRQ=y
CONFIG_BSD_PROCESS_ACCT=y
CONFIG_BSD_PROCESS_ACCT_V3=y
CONFIG_TASKSTATS=y
CONFIG_TASK_DELAY_ACCT=y
CONFIG_TASK_XACCT=y
CONFIG_TASK_IO_ACCOUNTING=y
CONFIG_PSI=y
# CONFIG_PSI_DEFAULT_DISABLED is not set
# end of CPU/Task time and stats accounting

CONFIG_CPU_ISOLATION=y

#
# RCU Subsystem
#
CONFIG_TREE_RCU=y
CONFIG_PREEMPT_RCU=y
# CONFIG_RCU_EXPERT is not set
CONFIG_TREE_SRCU=y
CONFIG_TASKS_RCU_GENERIC=y
CONFIG_NEED_TASKS_RCU=y
CONFIG_TASKS_RCU=y
CONFIG_TASKS_TRACE_RCU=y
CONFIG_RCU_STALL_COMMON=y
CONFIG_RCU_NEED_SEGCBLIST=y
# end of RCU Subsystem

CONFIG_IKCONFIG=y
CONFIG_IKCONFIG_PROC=y
# CONFIG_IKHEADERS is not set
CONFIG_LOG_BUF_SHIFT=18
CONFIG_LOG_CPU_MAX_BUF_SHIFT=12
# CONFIG_PRINTK_INDEX is not set
CONFIG_HAVE_UNSTABLE_SCHED_CLOCK=y

#
# Scheduler features
#
# CONFIG_UCLAMP_TASK is not set
# CONFIG_SCHED_PROXY_EXEC is not set
# end of Scheduler features

CONFIG_ARCH_SUPPORTS_NUMA_BALANCING=y
CONFIG_ARCH_WANT_BATCHED_UNMAP_TLB_FLUSH=y
CONFIG_CC_HAS_INT128=y
CONFIG_CC_IMPLICIT_FALLTHROUGH="-Wimplicit-fallthrough"
CONFIG_GCC10_NO_ARRAY_BOUNDS=y
CONFIG_GCC_NO_STRINGOP_OVERFLOW=y
CONFIG_ARCH_SUPPORTS_INT128=y
CONFIG_NUMA_BALANCING=y
CONFIG_NUMA_BALANCING_DEFAULT_ENABLED=y
CONFIG_SLAB_OBJ_EXT=y
CONFIG_CGROUPS=y
CONFIG_PAGE_COUNTER=y
# CONFIG_CGROUP_FAVOR_DYNMODS is not set
CONFIG_MEMCG=y
CONFIG_MEMCG_V1=y
CONFIG_BLK_CGROUP=y
CONFIG_CGROUP_WRITEBACK=y
CONFIG_CGROUP_SCHED=y
CONFIG_GROUP_SCHED_WEIGHT=y
CONFIG_GROUP_SCHED_BANDWIDTH=y
CONFIG_FAIR_GROUP_SCHED=y
CONFIG_CFS_BANDWIDTH=y
# CONFIG_RT_GROUP_SCHED is not set
CONFIG_SCHED_MM_CID=y
CONFIG_CGROUP_PIDS=y
CONFIG_CGROUP_RDMA=y
# CONFIG_CGROUP_DMEM is not set
CONFIG_CGROUP_FREEZER=y
CONFIG_CGROUP_HUGETLB=y
CONFIG_CPUSETS=y
# CONFIG_CPUSETS_V1 is not set
CONFIG_CGROUP_DEVICE=y
CONFIG_CGROUP_CPUACCT=y
CONFIG_CGROUP_PERF=y
# CONFIG_CGROUP_BPF is not set
CONFIG_CGROUP_MISC=y
CONFIG_CGROUP_DEBUG=y
CONFIG_SOCK_CGROUP_DATA=y
CONFIG_NAMESPACES=y
CONFIG_UTS_NS=y
CONFIG_TIME_NS=y
CONFIG_IPC_NS=y
CONFIG_USER_NS=y
CONFIG_PID_NS=y
CONFIG_NET_NS=y
CONFIG_CHECKPOINT_RESTORE=y
# CONFIG_SCHED_AUTOGROUP is not set
CONFIG_RELAY=y
CONFIG_BLK_DEV_INITRD=y
CONFIG_INITRAMFS_SOURCE=""
CONFIG_RD_GZIP=y
CONFIG_RD_BZIP2=y
CONFIG_RD_LZMA=y
CONFIG_RD_XZ=y
CONFIG_RD_LZO=y
CONFIG_RD_LZ4=y
CONFIG_RD_ZSTD=y
# CONFIG_BOOT_CONFIG is not set
CONFIG_INITRAMFS_PRESERVE_MTIME=y
CONFIG_CC_OPTIMIZE_FOR_PERFORMANCE=y
# CONFIG_CC_OPTIMIZE_FOR_SIZE is not set
CONFIG_LD_ORPHAN_WARN=y
CONFIG_LD_ORPHAN_WARN_LEVEL="warn"
CONFIG_SYSCTL=y
CONFIG_HAVE_UID16=y
CONFIG_SYSCTL_EXCEPTION_TRACE=y
CONFIG_SYSFS_SYSCALL=y
CONFIG_HAVE_PCSPKR_PLATFORM=y
CONFIG_EXPERT=y
CONFIG_UID16=y
CONFIG_MULTIUSER=y
CONFIG_SGETMASK_SYSCALL=y
CONFIG_FHANDLE=y
CONFIG_POSIX_TIMERS=y
CONFIG_PRINTK=y
CONFIG_BUG=y
CONFIG_ELF_CORE=y
CONFIG_PCSPKR_PLATFORM=y
# CONFIG_BASE_SMALL is not set
CONFIG_FUTEX=y
CONFIG_FUTEX_PI=y
CONFIG_FUTEX_PRIVATE_HASH=y
CONFIG_FUTEX_MPOL=y
CONFIG_EPOLL=y
CONFIG_SIGNALFD=y
CONFIG_TIMERFD=y
CONFIG_EVENTFD=y
CONFIG_SHMEM=y
CONFIG_AIO=y
CONFIG_IO_URING=y
# CONFIG_IO_URING_MOCK_FILE is not set
CONFIG_ADVISE_SYSCALLS=y
CONFIG_MEMBARRIER=y
CONFIG_KCMP=y
CONFIG_RSEQ=y
# CONFIG_DEBUG_RSEQ is not set
CONFIG_CACHESTAT_SYSCALL=y
CONFIG_KALLSYMS=y
# CONFIG_KALLSYMS_SELFTEST is not set
CONFIG_KALLSYMS_ALL=y
CONFIG_ARCH_HAS_MEMBARRIER_SYNC_CORE=y
CONFIG_ARCH_SUPPORTS_MSEAL_SYSTEM_MAPPINGS=y
CONFIG_HAVE_PERF_EVENTS=y
CONFIG_GUEST_PERF_EVENTS=y

#
# Kernel Performance Events And Counters
#
CONFIG_PERF_EVENTS=y
# CONFIG_DEBUG_PERF_USE_VMALLOC is not set
# end of Kernel Performance Events And Counters

CONFIG_SYSTEM_DATA_VERIFICATION=y
CONFIG_PROFILING=y
# CONFIG_RUST is not set
CONFIG_TRACEPOINTS=y

#
# Kexec and crash features
#
CONFIG_CRASH_RESERVE=y
CONFIG_VMCORE_INFO=y
CONFIG_KEXEC_CORE=y
CONFIG_KEXEC=y
# CONFIG_KEXEC_FILE is not set
# CONFIG_KEXEC_JUMP is not set
# CONFIG_KEXEC_HANDOVER is not set
CONFIG_CRASH_DUMP=y
CONFIG_CRASH_HOTPLUG=y
CONFIG_CRASH_MAX_MEMORY_RANGES=8192
# end of Kexec and crash features
# end of General setup

CONFIG_64BIT=y
CONFIG_X86_64=y
CONFIG_X86=y
CONFIG_INSTRUCTION_DECODER=y
CONFIG_OUTPUT_FORMAT="elf64-x86-64"
CONFIG_LOCKDEP_SUPPORT=y
CONFIG_STACKTRACE_SUPPORT=y
CONFIG_MMU=y
CONFIG_ARCH_MMAP_RND_BITS_MIN=28
CONFIG_ARCH_MMAP_RND_BITS_MAX=32
CONFIG_ARCH_MMAP_RND_COMPAT_BITS_MIN=8
CONFIG_ARCH_MMAP_RND_COMPAT_BITS_MAX=16
CONFIG_GENERIC_ISA_DMA=y
CONFIG_GENERIC_CSUM=y
CONFIG_GENERIC_BUG=y
CONFIG_GENERIC_BUG_RELATIVE_POINTERS=y
CONFIG_ARCH_MAY_HAVE_PC_FDC=y
CONFIG_GENERIC_CALIBRATE_DELAY=y
CONFIG_ARCH_HAS_CPU_RELAX=y
CONFIG_ARCH_HIBERNATION_POSSIBLE=y
CONFIG_ARCH_SUSPEND_POSSIBLE=y
CONFIG_AUDIT_ARCH=y
CONFIG_KASAN_SHADOW_OFFSET=0xdffffc0000000000
CONFIG_HAVE_INTEL_TXT=y
CONFIG_X86_64_SMP=y
CONFIG_ARCH_SUPPORTS_UPROBES=y
CONFIG_FIX_EARLYCON_MEM=y
CONFIG_PGTABLE_LEVELS=5

#
# Processor type and features
#
CONFIG_SMP=y
CONFIG_X86_X2APIC=y
# CONFIG_X86_POSTED_MSI is not set
CONFIG_X86_MPPARSE=y
# CONFIG_X86_CPU_RESCTRL is not set
# CONFIG_X86_FRED is not set
CONFIG_X86_EXTENDED_PLATFORM=y
# CONFIG_X86_NUMACHIP is not set
# CONFIG_X86_VSMP is not set
# CONFIG_X86_INTEL_MID is not set
# CONFIG_X86_GOLDFISH is not set
# CONFIG_X86_INTEL_LPSS is not set
# CONFIG_X86_AMD_PLATFORM_DEVICE is not set
CONFIG_IOSF_MBI=y
# CONFIG_IOSF_MBI_DEBUG is not set
CONFIG_X86_SUPPORTS_MEMORY_FAILURE=y
CONFIG_SCHED_OMIT_FRAME_POINTER=y
CONFIG_HYPERVISOR_GUEST=y
CONFIG_PARAVIRT=y
CONFIG_PARAVIRT_DEBUG=y
CONFIG_PARAVIRT_SPINLOCKS=y
CONFIG_X86_HV_CALLBACK_VECTOR=y
# CONFIG_XEN is not set
CONFIG_KVM_GUEST=y
CONFIG_ARCH_CPUIDLE_HALTPOLL=y
CONFIG_PVH=y
# CONFIG_PARAVIRT_TIME_ACCOUNTING is not set
CONFIG_PARAVIRT_CLOCK=y
# CONFIG_JAILHOUSE_GUEST is not set
# CONFIG_ACRN_GUEST is not set
CONFIG_CC_HAS_MARCH_NATIVE=y
# CONFIG_X86_NATIVE_CPU is not set
CONFIG_X86_INTERNODE_CACHE_SHIFT=6
CONFIG_X86_L1_CACHE_SHIFT=6
CONFIG_X86_TSC=y
CONFIG_X86_HAVE_PAE=y
CONFIG_X86_CX8=y
CONFIG_X86_CMOV=y
CONFIG_X86_MINIMUM_CPU_FAMILY=64
CONFIG_X86_DEBUGCTLMSR=y
CONFIG_IA32_FEAT_CTL=y
CONFIG_X86_VMX_FEATURE_NAMES=y
CONFIG_PROCESSOR_SELECT=y
CONFIG_BROADCAST_TLB_FLUSH=y
CONFIG_CPU_SUP_INTEL=y
CONFIG_CPU_SUP_AMD=y
# CONFIG_CPU_SUP_HYGON is not set
# CONFIG_CPU_SUP_CENTAUR is not set
# CONFIG_CPU_SUP_ZHAOXIN is not set
CONFIG_HPET_TIMER=y
CONFIG_HPET_EMULATE_RTC=y
CONFIG_DMI=y
# CONFIG_GART_IOMMU is not set
CONFIG_BOOT_VESA_SUPPORT=y
# CONFIG_MAXSMP is not set
CONFIG_NR_CPUS_RANGE_BEGIN=2
CONFIG_NR_CPUS_RANGE_END=512
CONFIG_NR_CPUS_DEFAULT=64
CONFIG_NR_CPUS=8
CONFIG_SCHED_CLUSTER=y
CONFIG_SCHED_SMT=y
CONFIG_SCHED_MC=y
CONFIG_SCHED_MC_PRIO=y
CONFIG_X86_LOCAL_APIC=y
CONFIG_ACPI_MADT_WAKEUP=y
CONFIG_X86_IO_APIC=y
CONFIG_X86_REROUTE_FOR_BROKEN_BOOT_IRQS=y
CONFIG_X86_MCE=y
# CONFIG_X86_MCELOG_LEGACY is not set
CONFIG_X86_MCE_INTEL=y
CONFIG_X86_MCE_AMD=y
CONFIG_X86_MCE_THRESHOLD=y
# CONFIG_X86_MCE_INJECT is not set

#
# Performance monitoring
#
CONFIG_PERF_EVENTS_INTEL_UNCORE=y
CONFIG_PERF_EVENTS_INTEL_RAPL=y
CONFIG_PERF_EVENTS_INTEL_CSTATE=y
# CONFIG_PERF_EVENTS_AMD_POWER is not set
CONFIG_PERF_EVENTS_AMD_UNCORE=y
# CONFIG_PERF_EVENTS_AMD_BRS is not set
# end of Performance monitoring

CONFIG_X86_16BIT=y
CONFIG_X86_ESPFIX64=y
CONFIG_X86_VSYSCALL_EMULATION=y
CONFIG_X86_IOPL_IOPERM=y
CONFIG_MICROCODE=y
# CONFIG_MICROCODE_LATE_LOADING is not set
CONFIG_X86_MSR=y
CONFIG_X86_CPUID=y
CONFIG_X86_DIRECT_GBPAGES=y
# CONFIG_X86_CPA_STATISTICS is not set
CONFIG_NUMA=y
CONFIG_AMD_NUMA=y
CONFIG_X86_64_ACPI_NUMA=y
CONFIG_NODES_SHIFT=6
CONFIG_ARCH_SPARSEMEM_ENABLE=y
CONFIG_ARCH_SPARSEMEM_DEFAULT=y
# CONFIG_ARCH_MEMORY_PROBE is not set
CONFIG_ARCH_PROC_KCORE_TEXT=y
CONFIG_ILLEGAL_POINTER_VALUE=0xdead000000000000
# CONFIG_X86_PMEM_LEGACY is not set
# CONFIG_X86_CHECK_BIOS_CORRUPTION is not set
CONFIG_MTRR=y
# CONFIG_MTRR_SANITIZER is not set
CONFIG_X86_PAT=y
CONFIG_X86_UMIP=y
CONFIG_CC_HAS_IBT=y
CONFIG_X86_CET=y
CONFIG_X86_KERNEL_IBT=y
CONFIG_X86_INTEL_MEMORY_PROTECTION_KEYS=y
CONFIG_ARCH_PKEY_BITS=4
# CONFIG_X86_INTEL_TSX_MODE_OFF is not set
CONFIG_X86_INTEL_TSX_MODE_ON=y
# CONFIG_X86_INTEL_TSX_MODE_AUTO is not set
CONFIG_X86_SGX=y
CONFIG_X86_USER_SHADOW_STACK=y
# CONFIG_EFI is not set
CONFIG_HZ_100=y
# CONFIG_HZ_250 is not set
# CONFIG_HZ_300 is not set
# CONFIG_HZ_1000 is not set
CONFIG_HZ=100
CONFIG_SCHED_HRTICK=y
CONFIG_ARCH_SUPPORTS_KEXEC=y
CONFIG_ARCH_SUPPORTS_KEXEC_FILE=y
CONFIG_ARCH_SUPPORTS_KEXEC_PURGATORY=y
CONFIG_ARCH_SUPPORTS_KEXEC_SIG=y
CONFIG_ARCH_SUPPORTS_KEXEC_SIG_FORCE=y
CONFIG_ARCH_SUPPORTS_KEXEC_BZIMAGE_VERIFY_SIG=y
CONFIG_ARCH_SUPPORTS_KEXEC_JUMP=y
CONFIG_ARCH_SUPPORTS_KEXEC_HANDOVER=y
CONFIG_ARCH_SUPPORTS_CRASH_DUMP=y
CONFIG_ARCH_DEFAULT_CRASH_DUMP=y
CONFIG_ARCH_SUPPORTS_CRASH_HOTPLUG=y
CONFIG_ARCH_HAS_GENERIC_CRASHKERNEL_RESERVATION=y
CONFIG_PHYSICAL_START=0x1000000
# CONFIG_RELOCATABLE is not set
CONFIG_PHYSICAL_ALIGN=0x200000
CONFIG_HOTPLUG_CPU=y
# CONFIG_COMPAT_VDSO is not set
CONFIG_LEGACY_VSYSCALL_XONLY=y
# CONFIG_LEGACY_VSYSCALL_NONE is not set
CONFIG_CMDLINE_BOOL=y
CONFIG_CMDLINE="earlyprintk=serial net.ifnames=0 sysctl.kernel.hung_task_all_cpu_backtrace=1 ima_policy=tcb nf-conntrack-ftp.ports=20000 nf-conntrack-tftp.ports=20000 nf-conntrack-sip.ports=20000 nf-conntrack-irc.ports=20000 nf-conntrack-sane.ports=20000 binder.debug_mask=0 rcupdate.rcu_expedited=1 rcupdate.rcu_cpu_stall_cputime=1 no_hash_pointers page_owner=on sysctl.vm.nr_hugepages=4 sysctl.vm.nr_overcommit_hugepages=4 secretmem.enable=1 sysctl.max_rcu_stall_to_panic=1 msr.allow_writes=off coredump_filter=0xffff root=/dev/sda console=ttyS0 vsyscall=native numa=fake=2 kvm-intel.nested=1 spec_store_bypass_disable=prctl nopcid vivid.n_devs=64 vivid.multiplanar=1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2,1,2 netrom.nr_ndevs=32 rose.rose_ndevs=32 smp.csd_lock_timeout=100000 watchdog_thresh=55 workqueue.watchdog_thresh=140 sysctl.net.core.netdev_unregister_timeout_secs=140 dummy_hcd.num=32 max_loop=32 nbds_max=32 comedi.comedi_num_legacy_minors=4 panic_on_warn=1"
# CONFIG_CMDLINE_OVERRIDE is not set
CONFIG_MODIFY_LDT_SYSCALL=y
# CONFIG_STRICT_SIGALTSTACK_SIZE is not set
CONFIG_HAVE_LIVEPATCH=y
CONFIG_X86_BUS_LOCK_DETECT=y
# end of Processor type and features

CONFIG_CC_HAS_SLS=y
CONFIG_CC_HAS_RETURN_THUNK=y
CONFIG_CC_HAS_ENTRY_PADDING=y
CONFIG_FUNCTION_PADDING_CFI=11
CONFIG_FUNCTION_PADDING_BYTES=16
CONFIG_CALL_PADDING=y
CONFIG_HAVE_CALL_THUNKS=y
CONFIG_CALL_THUNKS=y
CONFIG_PREFIX_SYMBOLS=y
CONFIG_CPU_MITIGATIONS=y
CONFIG_MITIGATION_PAGE_TABLE_ISOLATION=y
CONFIG_MITIGATION_RETPOLINE=y
CONFIG_MITIGATION_RETHUNK=y
CONFIG_MITIGATION_UNRET_ENTRY=y
CONFIG_MITIGATION_CALL_DEPTH_TRACKING=y
# CONFIG_CALL_THUNKS_DEBUG is not set
CONFIG_MITIGATION_IBPB_ENTRY=y
CONFIG_MITIGATION_IBRS_ENTRY=y
CONFIG_MITIGATION_SRSO=y
# CONFIG_MITIGATION_SLS is not set
CONFIG_MITIGATION_GDS=y
CONFIG_MITIGATION_RFDS=y
CONFIG_MITIGATION_SPECTRE_BHI=y
CONFIG_MITIGATION_MDS=y
CONFIG_MITIGATION_TAA=y
CONFIG_MITIGATION_MMIO_STALE_DATA=y
CONFIG_MITIGATION_L1TF=y
CONFIG_MITIGATION_RETBLEED=y
CONFIG_MITIGATION_SPECTRE_V1=y
CONFIG_MITIGATION_SPECTRE_V2=y
CONFIG_MITIGATION_SRBDS=y
CONFIG_MITIGATION_SSB=y
CONFIG_MITIGATION_ITS=y
CONFIG_MITIGATION_TSA=y
CONFIG_ARCH_HAS_ADD_PAGES=y

#
# Power management and ACPI options
#
CONFIG_ARCH_HIBERNATION_HEADER=y
CONFIG_SUSPEND=y
CONFIG_SUSPEND_FREEZER=y
# CONFIG_SUSPEND_SKIP_SYNC is not set
CONFIG_HIBERNATE_CALLBACKS=y
CONFIG_HIBERNATION=y
CONFIG_HIBERNATION_SNAPSHOT_DEV=y
CONFIG_HIBERNATION_COMP_LZO=y
# CONFIG_HIBERNATION_COMP_LZ4 is not set
CONFIG_HIBERNATION_DEF_COMP="lzo"
CONFIG_PM_STD_PARTITION=""
CONFIG_PM_SLEEP=y
CONFIG_PM_SLEEP_SMP=y
# CONFIG_PM_AUTOSLEEP is not set
# CONFIG_PM_USERSPACE_AUTOSLEEP is not set
# CONFIG_PM_WAKELOCKS is not set
CONFIG_PM=y
CONFIG_PM_DEBUG=y
# CONFIG_PM_ADVANCED_DEBUG is not set
# CONFIG_PM_TEST_SUSPEND is not set
CONFIG_PM_SLEEP_DEBUG=y
# CONFIG_DPM_WATCHDOG is not set
CONFIG_PM_TRACE=y
CONFIG_PM_TRACE_RTC=y
CONFIG_PM_CLK=y
# CONFIG_WQ_POWER_EFFICIENT_DEFAULT is not set
# CONFIG_ENERGY_MODEL is not set
CONFIG_ARCH_SUPPORTS_ACPI=y
CONFIG_ACPI=y
CONFIG_ACPI_LEGACY_TABLES_LOOKUP=y
CONFIG_ARCH_MIGHT_HAVE_ACPI_PDC=y
CONFIG_ACPI_SYSTEM_POWER_STATES_SUPPORT=y
CONFIG_ACPI_THERMAL_LIB=y
# CONFIG_ACPI_DEBUGGER is not set
CONFIG_ACPI_SPCR_TABLE=y
# CONFIG_ACPI_FPDT is not set
CONFIG_ACPI_LPIT=y
CONFIG_ACPI_SLEEP=y
CONFIG_ACPI_REV_OVERRIDE_POSSIBLE=y
CONFIG_ACPI_EC=y
# CONFIG_ACPI_EC_DEBUGFS is not set
CONFIG_ACPI_AC=y
CONFIG_ACPI_BATTERY=y
CONFIG_ACPI_BUTTON=y
CONFIG_ACPI_VIDEO=y
CONFIG_ACPI_FAN=y
# CONFIG_ACPI_TAD is not set
CONFIG_ACPI_DOCK=y
CONFIG_ACPI_CPU_FREQ_PSS=y
CONFIG_ACPI_PROCESSOR_CSTATE=y
CONFIG_ACPI_PROCESSOR_IDLE=y
CONFIG_ACPI_CPPC_LIB=y
CONFIG_ACPI_PROCESSOR=y
CONFIG_ACPI_HOTPLUG_CPU=y
# CONFIG_ACPI_PROCESSOR_AGGREGATOR is not set
CONFIG_ACPI_THERMAL=y
CONFIG_ACPI_PLATFORM_PROFILE=y
CONFIG_ARCH_HAS_ACPI_TABLE_UPGRADE=y
CONFIG_ACPI_TABLE_UPGRADE=y
# CONFIG_ACPI_DEBUG is not set
# CONFIG_ACPI_PCI_SLOT is not set
CONFIG_ACPI_CONTAINER=y
# CONFIG_ACPI_HOTPLUG_MEMORY is not set
CONFIG_ACPI_HOTPLUG_IOAPIC=y
# CONFIG_ACPI_SBS is not set
# CONFIG_ACPI_HED is not set
# CONFIG_ACPI_REDUCED_HARDWARE_ONLY is not set
CONFIG_ACPI_NHLT=y
CONFIG_ACPI_NFIT=y
# CONFIG_NFIT_SECURITY_DEBUG is not set
CONFIG_ACPI_NUMA=y
# CONFIG_ACPI_HMAT is not set
CONFIG_HAVE_ACPI_APEI=y
CONFIG_HAVE_ACPI_APEI_NMI=y
# CONFIG_ACPI_APEI is not set
# CONFIG_ACPI_DPTF is not set
# CONFIG_ACPI_EXTLOG is not set
# CONFIG_ACPI_CONFIGFS is not set
# CONFIG_ACPI_PFRUT is not set
CONFIG_ACPI_PCC=y
# CONFIG_ACPI_FFH is not set
CONFIG_ACPI_MRRM=y
CONFIG_PMIC_OPREGION=y
CONFIG_BXT_WC_PMIC_OPREGION=y
# CONFIG_CHT_WC_PMIC_OPREGION is not set
CONFIG_X86_PM_TIMER=y

#
# CPU Frequency scaling
#
CONFIG_CPU_FREQ=y
CONFIG_CPU_FREQ_GOV_ATTR_SET=y
CONFIG_CPU_FREQ_GOV_COMMON=y
# CONFIG_CPU_FREQ_STAT is not set
# CONFIG_CPU_FREQ_DEFAULT_GOV_PERFORMANCE is not set
# CONFIG_CPU_FREQ_DEFAULT_GOV_POWERSAVE is not set
CONFIG_CPU_FREQ_DEFAULT_GOV_USERSPACE=y
# CONFIG_CPU_FREQ_DEFAULT_GOV_SCHEDUTIL is not set
CONFIG_CPU_FREQ_GOV_PERFORMANCE=y
# CONFIG_CPU_FREQ_GOV_POWERSAVE is not set
CONFIG_CPU_FREQ_GOV_USERSPACE=y
CONFIG_CPU_FREQ_GOV_ONDEMAND=y
# CONFIG_CPU_FREQ_GOV_CONSERVATIVE is not set
CONFIG_CPU_FREQ_GOV_SCHEDUTIL=y

#
# CPU frequency scaling drivers
#
# CONFIG_CPUFREQ_DT is not set
# CONFIG_CPUFREQ_DT_PLATDEV is not set
CONFIG_X86_INTEL_PSTATE=y
# CONFIG_X86_PCC_CPUFREQ is not set
CONFIG_X86_AMD_PSTATE=y
CONFIG_X86_AMD_PSTATE_DEFAULT_MODE=3
# CONFIG_X86_AMD_PSTATE_UT is not set
CONFIG_X86_ACPI_CPUFREQ=y
CONFIG_X86_ACPI_CPUFREQ_CPB=y
# CONFIG_X86_POWERNOW_K8 is not set
# CONFIG_X86_AMD_FREQ_SENSITIVITY is not set
# CONFIG_X86_SPEEDSTEP_CENTRINO is not set
# CONFIG_X86_P4_CLOCKMOD is not set

#
# shared options
#
CONFIG_CPUFREQ_ARCH_CUR_FREQ=y
# end of CPU Frequency scaling

#
# CPU Idle
#
CONFIG_CPU_IDLE=y
# CONFIG_CPU_IDLE_GOV_LADDER is not set
CONFIG_CPU_IDLE_GOV_MENU=y
# CONFIG_CPU_IDLE_GOV_TEO is not set
CONFIG_CPU_IDLE_GOV_HALTPOLL=y
CONFIG_HALTPOLL_CPUIDLE=y
# end of CPU Idle

CONFIG_INTEL_IDLE=y
# end of Power management and ACPI options

#
# Bus options (PCI etc.)
#
CONFIG_PCI_DIRECT=y
CONFIG_PCI_MMCONFIG=y
CONFIG_MMCONF_FAM10H=y
CONFIG_ISA_BUS=y
CONFIG_ISA_DMA_API=y
CONFIG_AMD_NB=y
CONFIG_AMD_NODE=y
# end of Bus options (PCI etc.)

#
# Binary Emulations
#
CONFIG_IA32_EMULATION=y
# CONFIG_IA32_EMULATION_DEFAULT_DISABLED is not set
CONFIG_COMPAT_32=y
CONFIG_COMPAT=y
CONFIG_COMPAT_FOR_U64_ALIGNMENT=y
# end of Binary Emulations

CONFIG_KVM_COMMON=y
CONFIG_HAVE_KVM_PFNCACHE=y
CONFIG_HAVE_KVM_IRQCHIP=y
CONFIG_HAVE_KVM_IRQ_ROUTING=y
CONFIG_HAVE_KVM_DIRTY_RING=y
CONFIG_HAVE_KVM_DIRTY_RING_TSO=y
CONFIG_HAVE_KVM_DIRTY_RING_ACQ_REL=y
CONFIG_KVM_MMIO=y
CONFIG_KVM_ASYNC_PF=y
CONFIG_HAVE_KVM_MSI=y
CONFIG_HAVE_KVM_READONLY_MEM=y
CONFIG_HAVE_KVM_CPU_RELAX_INTERCEPT=y
CONFIG_KVM_VFIO=y
CONFIG_KVM_GENERIC_DIRTYLOG_READ_PROTECT=y
CONFIG_KVM_GENERIC_PRE_FAULT_MEMORY=y
CONFIG_KVM_COMPAT=y
CONFIG_HAVE_KVM_IRQ_BYPASS=y
CONFIG_HAVE_KVM_NO_POLL=y
CONFIG_KVM_XFER_TO_GUEST_WORK=y
CONFIG_HAVE_KVM_PM_NOTIFIER=y
CONFIG_KVM_GENERIC_HARDWARE_ENABLING=y
CONFIG_KVM_GENERIC_MMU_NOTIFIER=y
CONFIG_KVM_ELIDE_TLB_FLUSH_IF_YOUNG=y
CONFIG_KVM_MMU_LOCKLESS_AGING=y
CONFIG_KVM_GENERIC_MEMORY_ATTRIBUTES=y
CONFIG_KVM_PRIVATE_MEM=y
CONFIG_KVM_GENERIC_PRIVATE_MEM=y
CONFIG_VIRTUALIZATION=y
CONFIG_KVM_X86=y
CONFIG_KVM=y
CONFIG_KVM_SW_PROTECTED_VM=y
CONFIG_KVM_INTEL=y
# CONFIG_KVM_INTEL_PROVE_VE is not set
CONFIG_X86_SGX_KVM=y
CONFIG_KVM_AMD=y
CONFIG_KVM_IOAPIC=y
# CONFIG_KVM_SMM is not set
CONFIG_KVM_HYPERV=y
CONFIG_KVM_XEN=y
CONFIG_KVM_PROVE_MMU=y
CONFIG_KVM_MAX_NR_VCPUS=1024
CONFIG_X86_REQUIRED_FEATURE_ALWAYS=y
CONFIG_X86_REQUIRED_FEATURE_NOPL=y
CONFIG_X86_REQUIRED_FEATURE_CX8=y
CONFIG_X86_REQUIRED_FEATURE_CMOV=y
CONFIG_X86_REQUIRED_FEATURE_CPUID=y
CONFIG_X86_REQUIRED_FEATURE_FPU=y
CONFIG_X86_REQUIRED_FEATURE_PAE=y
CONFIG_X86_REQUIRED_FEATURE_PSE=y
CONFIG_X86_REQUIRED_FEATURE_PGE=y
CONFIG_X86_REQUIRED_FEATURE_MSR=y
CONFIG_X86_REQUIRED_FEATURE_FXSR=y
CONFIG_X86_REQUIRED_FEATURE_XMM=y
CONFIG_X86_REQUIRED_FEATURE_XMM2=y
CONFIG_X86_REQUIRED_FEATURE_LM=y
CONFIG_X86_DISABLED_FEATURE_VME=y
CONFIG_X86_DISABLED_FEATURE_K6_MTRR=y
CONFIG_X86_DISABLED_FEATURE_CYRIX_ARR=y
CONFIG_X86_DISABLED_FEATURE_CENTAUR_MCR=y
CONFIG_X86_DISABLED_FEATURE_LAM=y
CONFIG_X86_DISABLED_FEATURE_XENPV=y
CONFIG_X86_DISABLED_FEATURE_TDX_GUEST=y
CONFIG_X86_DISABLED_FEATURE_FRED=y
CONFIG_X86_DISABLED_FEATURE_SEV_SNP=y
CONFIG_AS_AVX512=y
CONFIG_AS_GFNI=y
CONFIG_AS_VAES=y
CONFIG_AS_VPCLMULQDQ=y
CONFIG_AS_WRUSS=y
CONFIG_ARCH_CONFIGURES_CPU_MITIGATIONS=y

#
# General architecture-dependent options
#
CONFIG_HOTPLUG_SMT=y
CONFIG_HOTPLUG_CORE_SYNC=y
CONFIG_HOTPLUG_CORE_SYNC_DEAD=y
CONFIG_HOTPLUG_CORE_SYNC_FULL=y
CONFIG_HOTPLUG_SPLIT_STARTUP=y
CONFIG_HOTPLUG_PARALLEL=y
CONFIG_GENERIC_IRQ_ENTRY=y
CONFIG_GENERIC_SYSCALL=y
CONFIG_GENERIC_ENTRY=y
# CONFIG_KPROBES is not set
CONFIG_JUMP_LABEL=y
# CONFIG_STATIC_KEYS_SELFTEST is not set
# CONFIG_STATIC_CALL_SELFTEST is not set
CONFIG_UPROBES=y
CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS=y
CONFIG_ARCH_USE_BUILTIN_BSWAP=y
CONFIG_USER_RETURN_NOTIFIER=y
CONFIG_HAVE_IOREMAP_PROT=y
CONFIG_HAVE_KPROBES=y
CONFIG_HAVE_KRETPROBES=y
CONFIG_HAVE_OPTPROBES=y
CONFIG_HAVE_KPROBES_ON_FTRACE=y
CONFIG_ARCH_CORRECT_STACKTRACE_ON_KRETPROBE=y
CONFIG_HAVE_FUNCTION_ERROR_INJECTION=y
CONFIG_HAVE_NMI=y
CONFIG_TRACE_IRQFLAGS_SUPPORT=y
CONFIG_TRACE_IRQFLAGS_NMI_SUPPORT=y
CONFIG_HAVE_ARCH_TRACEHOOK=y
CONFIG_HAVE_DMA_CONTIGUOUS=y
CONFIG_GENERIC_SMP_IDLE_THREAD=y
CONFIG_ARCH_HAS_FORTIFY_SOURCE=y
CONFIG_ARCH_HAS_SET_MEMORY=y
CONFIG_ARCH_HAS_SET_DIRECT_MAP=y
CONFIG_ARCH_HAS_CPU_FINALIZE_INIT=y
CONFIG_ARCH_HAS_CPU_PASID=y
CONFIG_HAVE_ARCH_THREAD_STRUCT_WHITELIST=y
CONFIG_ARCH_WANTS_DYNAMIC_TASK_STRUCT=y
CONFIG_ARCH_WANTS_NO_INSTR=y
CONFIG_HAVE_ASM_MODVERSIONS=y
CONFIG_HAVE_REGS_AND_STACK_ACCESS_API=y
CONFIG_HAVE_RSEQ=y
CONFIG_HAVE_RUST=y
CONFIG_HAVE_FUNCTION_ARG_ACCESS_API=y
CONFIG_HAVE_HW_BREAKPOINT=y
CONFIG_HAVE_MIXED_BREAKPOINTS_REGS=y
CONFIG_HAVE_USER_RETURN_NOTIFIER=y
CONFIG_HAVE_PERF_EVENTS_NMI=y
CONFIG_HAVE_HARDLOCKUP_DETECTOR_PERF=y
CONFIG_HAVE_PERF_REGS=y
CONFIG_HAVE_PERF_USER_STACK_DUMP=y
CONFIG_HAVE_ARCH_JUMP_LABEL=y
CONFIG_HAVE_ARCH_JUMP_LABEL_RELATIVE=y
CONFIG_MMU_GATHER_TABLE_FREE=y
CONFIG_MMU_GATHER_RCU_TABLE_FREE=y
CONFIG_MMU_GATHER_MERGE_VMAS=y
CONFIG_ARCH_WANT_IRQS_OFF_ACTIVATE_MM=y
CONFIG_MMU_LAZY_TLB_REFCOUNT=y
CONFIG_ARCH_HAVE_NMI_SAFE_CMPXCHG=y
CONFIG_ARCH_HAVE_EXTRA_ELF_NOTES=y
CONFIG_ARCH_HAS_NMI_SAFE_THIS_CPU_OPS=y
CONFIG_HAVE_ALIGNED_STRUCT_PAGE=y
CONFIG_HAVE_CMPXCHG_LOCAL=y
CONFIG_HAVE_CMPXCHG_DOUBLE=y
CONFIG_ARCH_WANT_COMPAT_IPC_PARSE_VERSION=y
CONFIG_ARCH_WANT_OLD_COMPAT_IPC=y
CONFIG_HAVE_ARCH_SECCOMP=y
CONFIG_HAVE_ARCH_SECCOMP_FILTER=y
CONFIG_SECCOMP=y
CONFIG_SECCOMP_FILTER=y
# CONFIG_SECCOMP_CACHE_DEBUG is not set
CONFIG_HAVE_ARCH_KSTACK_ERASE=y
CONFIG_HAVE_STACKPROTECTOR=y
CONFIG_STACKPROTECTOR=y
CONFIG_STACKPROTECTOR_STRONG=y
CONFIG_ARCH_SUPPORTS_LTO_CLANG=y
CONFIG_ARCH_SUPPORTS_LTO_CLANG_THIN=y
CONFIG_HAS_LTO_CLANG=y
CONFIG_LTO_NONE=y
# CONFIG_LTO_CLANG_FULL is not set
# CONFIG_LTO_CLANG_THIN is not set
CONFIG_ARCH_SUPPORTS_AUTOFDO_CLANG=y
# CONFIG_AUTOFDO_CLANG is not set
CONFIG_ARCH_SUPPORTS_PROPELLER_CLANG=y
# CONFIG_PROPELLER_CLANG is not set
CONFIG_ARCH_SUPPORTS_CFI_CLANG=y
# CONFIG_CFI_CLANG is not set
CONFIG_HAVE_CFI_ICALL_NORMALIZE_INTEGERS_CLANG=y
CONFIG_HAVE_CFI_ICALL_NORMALIZE_INTEGERS_RUSTC=y
CONFIG_HAVE_ARCH_WITHIN_STACK_FRAMES=y
CONFIG_HAVE_CONTEXT_TRACKING_USER=y
CONFIG_HAVE_CONTEXT_TRACKING_USER_OFFSTACK=y
CONFIG_HAVE_VIRT_CPU_ACCOUNTING_GEN=y
CONFIG_HAVE_IRQ_TIME_ACCOUNTING=y
CONFIG_HAVE_MOVE_PUD=y
CONFIG_HAVE_MOVE_PMD=y
CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE=y
CONFIG_HAVE_ARCH_TRANSPARENT_HUGEPAGE_PUD=y
CONFIG_HAVE_ARCH_HUGE_VMAP=y
CONFIG_HAVE_ARCH_HUGE_VMALLOC=y
CONFIG_ARCH_WANT_HUGE_PMD_SHARE=y
CONFIG_ARCH_WANT_PMD_MKWRITE=y
CONFIG_HAVE_ARCH_SOFT_DIRTY=y
CONFIG_HAVE_MOD_ARCH_SPECIFIC=y
CONFIG_MODULES_USE_ELF_RELA=y
CONFIG_ARCH_HAS_EXECMEM_ROX=y
CONFIG_HAVE_IRQ_EXIT_ON_IRQ_STACK=y
CONFIG_HAVE_SOFTIRQ_ON_OWN_STACK=y
CONFIG_SOFTIRQ_ON_OWN_STACK=y
CONFIG_ARCH_HAS_ELF_RANDOMIZE=y
CONFIG_HAVE_ARCH_MMAP_RND_BITS=y
CONFIG_HAVE_EXIT_THREAD=y
CONFIG_ARCH_MMAP_RND_BITS=28
CONFIG_HAVE_ARCH_MMAP_RND_COMPAT_BITS=y
CONFIG_ARCH_MMAP_RND_COMPAT_BITS=8
CONFIG_HAVE_ARCH_COMPAT_MMAP_BASES=y
CONFIG_HAVE_PAGE_SIZE_4KB=y
CONFIG_PAGE_SIZE_4KB=y
CONFIG_PAGE_SIZE_LESS_THAN_64KB=y
CONFIG_PAGE_SIZE_LESS_THAN_256KB=y
CONFIG_PAGE_SHIFT=12
CONFIG_HAVE_OBJTOOL=y
CONFIG_HAVE_JUMP_LABEL_HACK=y
CONFIG_HAVE_NOINSTR_HACK=y
CONFIG_HAVE_NOINSTR_VALIDATION=y
CONFIG_HAVE_UACCESS_VALIDATION=y
CONFIG_HAVE_STACK_VALIDATION=y
CONFIG_HAVE_RELIABLE_STACKTRACE=y
CONFIG_OLD_SIGSUSPEND3=y
CONFIG_COMPAT_OLD_SIGACTION=y
CONFIG_COMPAT_32BIT_TIME=y
CONFIG_ARCH_SUPPORTS_RT=y
CONFIG_HAVE_ARCH_VMAP_STACK=y
CONFIG_VMAP_STACK=y
CONFIG_HAVE_ARCH_RANDOMIZE_KSTACK_OFFSET=y
CONFIG_RANDOMIZE_KSTACK_OFFSET=y
# CONFIG_RANDOMIZE_KSTACK_OFFSET_DEFAULT is not set
CONFIG_ARCH_HAS_STRICT_KERNEL_RWX=y
CONFIG_STRICT_KERNEL_RWX=y
CONFIG_ARCH_HAS_STRICT_MODULE_RWX=y
CONFIG_STRICT_MODULE_RWX=y
CONFIG_HAVE_ARCH_PREL32_RELOCATIONS=y
# CONFIG_LOCK_EVENT_COUNTS is not set
CONFIG_ARCH_HAS_MEM_ENCRYPT=y
CONFIG_HAVE_STATIC_CALL=y
CONFIG_HAVE_STATIC_CALL_INLINE=y
CONFIG_HAVE_PREEMPT_DYNAMIC=y
CONFIG_HAVE_PREEMPT_DYNAMIC_CALL=y
CONFIG_ARCH_WANT_LD_ORPHAN_WARN=y
CONFIG_ARCH_SUPPORTS_DEBUG_PAGEALLOC=y
CONFIG_ARCH_SUPPORTS_PAGE_TABLE_CHECK=y
CONFIG_ARCH_HAS_ELFCORE_COMPAT=y
CONFIG_ARCH_HAS_PARANOID_L1D_FLUSH=y
CONFIG_DYNAMIC_SIGFRAME=y
CONFIG_HAVE_ARCH_NODE_DEV_GROUP=y
CONFIG_ARCH_HAS_HW_PTE_YOUNG=y
CONFIG_ARCH_HAS_NONLEAF_PMD_YOUNG=y
CONFIG_ARCH_HAS_KERNEL_FPU_SUPPORT=y

#
# GCOV-based kernel profiling
#
# CONFIG_GCOV_KERNEL is not set
CONFIG_ARCH_HAS_GCOV_PROFILE_ALL=y
# end of GCOV-based kernel profiling

CONFIG_HAVE_GCC_PLUGINS=y
CONFIG_FUNCTION_ALIGNMENT_4B=y
CONFIG_FUNCTION_ALIGNMENT_16B=y
CONFIG_FUNCTION_ALIGNMENT=16
CONFIG_CC_HAS_SANE_FUNCTION_ALIGNMENT=y
CONFIG_ARCH_HAS_CPU_ATTACK_VECTORS=y
# end of General architecture-dependent options

CONFIG_RT_MUTEXES=y
CONFIG_MODULE_SIG_FORMAT=y
CONFIG_MODULES=y
# CONFIG_MODULE_DEBUG is not set
# CONFIG_MODULE_FORCE_LOAD is not set
CONFIG_MODULE_UNLOAD=y
CONFIG_MODULE_FORCE_UNLOAD=y
# CONFIG_MODULE_UNLOAD_TAINT_TRACKING is not set
CONFIG_MODVERSIONS=y
# CONFIG_GENKSYMS is not set
CONFIG_GENDWARFKSYMS=y
CONFIG_ASM_MODVERSIONS=y
# CONFIG_EXTENDED_MODVERSIONS is not set
# CONFIG_BASIC_MODVERSIONS is not set
CONFIG_MODULE_SRCVERSION_ALL=y
CONFIG_MODULE_SIG=y
# CONFIG_MODULE_SIG_FORCE is not set
# CONFIG_MODULE_SIG_ALL is not set
CONFIG_MODULE_SIG_SHA1=y
# CONFIG_MODULE_SIG_SHA256 is not set
# CONFIG_MODULE_SIG_SHA384 is not set
# CONFIG_MODULE_SIG_SHA512 is not set
# CONFIG_MODULE_SIG_SHA3_256 is not set
# CONFIG_MODULE_SIG_SHA3_384 is not set
# CONFIG_MODULE_SIG_SHA3_512 is not set
CONFIG_MODULE_SIG_HASH="sha1"
# CONFIG_MODULE_COMPRESS is not set
# CONFIG_MODULE_ALLOW_MISSING_NAMESPACE_IMPORTS is not set
CONFIG_MODPROBE_PATH="/sbin/modprobe"
# CONFIG_TRIM_UNUSED_KSYMS is not set
CONFIG_MODULES_TREE_LOOKUP=y
CONFIG_BLOCK=y
CONFIG_BLOCK_LEGACY_AUTOLOAD=y
CONFIG_BLK_RQ_ALLOC_TIME=y
CONFIG_BLK_CGROUP_RWSTAT=y
CONFIG_BLK_CGROUP_PUNT_BIO=y
CONFIG_BLK_DEV_BSG_COMMON=y
CONFIG_BLK_ICQ=y
CONFIG_BLK_DEV_BSGLIB=y
CONFIG_BLK_DEV_INTEGRITY=y
# CONFIG_BLK_DEV_WRITE_MOUNTED is not set
CONFIG_BLK_DEV_ZONED=y
CONFIG_BLK_DEV_THROTTLING=y
CONFIG_BLK_WBT=y
CONFIG_BLK_WBT_MQ=y
CONFIG_BLK_CGROUP_IOLATENCY=y
# CONFIG_BLK_CGROUP_FC_APPID is not set
CONFIG_BLK_CGROUP_IOCOST=y
CONFIG_BLK_CGROUP_IOPRIO=y
CONFIG_BLK_DEBUG_FS=y
# CONFIG_BLK_SED_OPAL is not set
CONFIG_BLK_INLINE_ENCRYPTION=y
CONFIG_BLK_INLINE_ENCRYPTION_FALLBACK=y

#
# Partition Types
#
CONFIG_PARTITION_ADVANCED=y
CONFIG_ACORN_PARTITION=y
CONFIG_ACORN_PARTITION_CUMANA=y
CONFIG_ACORN_PARTITION_EESOX=y
CONFIG_ACORN_PARTITION_ICS=y
CONFIG_ACORN_PARTITION_ADFS=y
CONFIG_ACORN_PARTITION_POWERTEC=y
CONFIG_ACORN_PARTITION_RISCIX=y
CONFIG_AIX_PARTITION=y
CONFIG_OSF_PARTITION=y
CONFIG_AMIGA_PARTITION=y
CONFIG_ATARI_PARTITION=y
CONFIG_MAC_PARTITION=y
CONFIG_MSDOS_PARTITION=y
CONFIG_BSD_DISKLABEL=y
CONFIG_MINIX_SUBPARTITION=y
CONFIG_SOLARIS_X86_PARTITION=y
CONFIG_UNIXWARE_DISKLABEL=y
CONFIG_LDM_PARTITION=y
# CONFIG_LDM_DEBUG is not set
CONFIG_SGI_PARTITION=y
CONFIG_ULTRIX_PARTITION=y
CONFIG_SUN_PARTITION=y
CONFIG_KARMA_PARTITION=y
CONFIG_EFI_PARTITION=y
CONFIG_SYSV68_PARTITION=y
CONFIG_CMDLINE_PARTITION=y
# CONFIG_OF_PARTITION is not set
# end of Partition Types

CONFIG_BLK_PM=y
CONFIG_BLOCK_HOLDER_DEPRECATED=y
CONFIG_BLK_MQ_STACKING=y

#
# IO Schedulers
#
CONFIG_MQ_IOSCHED_DEADLINE=y
CONFIG_MQ_IOSCHED_KYBER=y
CONFIG_IOSCHED_BFQ=y
CONFIG_BFQ_GROUP_IOSCHED=y
CONFIG_BFQ_CGROUP_DEBUG=y
# end of IO Schedulers

CONFIG_PREEMPT_NOTIFIERS=y
CONFIG_PADATA=y
CONFIG_ASN1=y
CONFIG_UNINLINE_SPIN_UNLOCK=y
CONFIG_ARCH_SUPPORTS_ATOMIC_RMW=y
CONFIG_MUTEX_SPIN_ON_OWNER=y
CONFIG_RWSEM_SPIN_ON_OWNER=y
CONFIG_LOCK_SPIN_ON_OWNER=y
CONFIG_ARCH_USE_QUEUED_SPINLOCKS=y
CONFIG_QUEUED_SPINLOCKS=y
CONFIG_ARCH_USE_QUEUED_RWLOCKS=y
CONFIG_QUEUED_RWLOCKS=y
CONFIG_ARCH_HAS_NON_OVERLAPPING_ADDRESS_SPACE=y
CONFIG_ARCH_HAS_SYNC_CORE_BEFORE_USERMODE=y
CONFIG_ARCH_HAS_SYSCALL_WRAPPER=y
CONFIG_FREEZER=y

#
# Executable file formats
#
CONFIG_BINFMT_ELF=y
CONFIG_COMPAT_BINFMT_ELF=y
CONFIG_ELFCORE=y
CONFIG_CORE_DUMP_DEFAULT_ELF_HEADERS=y
CONFIG_BINFMT_SCRIPT=y
CONFIG_BINFMT_MISC=y
CONFIG_COREDUMP=y
# end of Executable file formats

#
# Memory Management options
#
CONFIG_ZPOOL=y
CONFIG_SWAP=y
CONFIG_ZSWAP=y
CONFIG_ZSWAP_DEFAULT_ON=y
CONFIG_ZSWAP_SHRINKER_DEFAULT_ON=y
# CONFIG_ZSWAP_COMPRESSOR_DEFAULT_DEFLATE is not set
# CONFIG_ZSWAP_COMPRESSOR_DEFAULT_LZO is not set
CONFIG_ZSWAP_COMPRESSOR_DEFAULT_842=y
# CONFIG_ZSWAP_COMPRESSOR_DEFAULT_LZ4 is not set
# CONFIG_ZSWAP_COMPRESSOR_DEFAULT_LZ4HC is not set
# CONFIG_ZSWAP_COMPRESSOR_DEFAULT_ZSTD is not set
CONFIG_ZSWAP_COMPRESSOR_DEFAULT="842"
CONFIG_ZSWAP_ZPOOL_DEFAULT_ZSMALLOC=y
CONFIG_ZSWAP_ZPOOL_DEFAULT="zsmalloc"
CONFIG_ZSMALLOC=y
# CONFIG_ZSMALLOC_STAT is not set
CONFIG_ZSMALLOC_CHAIN_SIZE=8

#
# Slab allocator options
#
CONFIG_SLUB=y
CONFIG_KVFREE_RCU_BATCHED=y
# CONFIG_SLUB_TINY is not set
CONFIG_SLAB_MERGE_DEFAULT=y
# CONFIG_SLAB_FREELIST_RANDOM is not set
# CONFIG_SLAB_FREELIST_HARDENED is not set
# CONFIG_SLAB_BUCKETS is not set
# CONFIG_SLUB_STATS is not set
CONFIG_SLUB_CPU_PARTIAL=y
# CONFIG_RANDOM_KMALLOC_CACHES is not set
# end of Slab allocator options

# CONFIG_SHUFFLE_PAGE_ALLOCATOR is not set
# CONFIG_COMPAT_BRK is not set
CONFIG_SPARSEMEM=y
CONFIG_SPARSEMEM_EXTREME=y
CONFIG_SPARSEMEM_VMEMMAP_ENABLE=y
CONFIG_SPARSEMEM_VMEMMAP=y
CONFIG_SPARSEMEM_VMEMMAP_PREINIT=y
CONFIG_ARCH_WANT_OPTIMIZE_DAX_VMEMMAP=y
CONFIG_ARCH_WANT_OPTIMIZE_HUGETLB_VMEMMAP=y
CONFIG_ARCH_WANT_HUGETLB_VMEMMAP_PREINIT=y
CONFIG_HAVE_GUP_FAST=y
CONFIG_NUMA_KEEP_MEMINFO=y
CONFIG_MEMORY_ISOLATION=y
CONFIG_EXCLUSIVE_SYSTEM_RAM=y
CONFIG_HAVE_BOOTMEM_INFO_NODE=y
CONFIG_ARCH_ENABLE_MEMORY_HOTPLUG=y
CONFIG_ARCH_ENABLE_MEMORY_HOTREMOVE=y
CONFIG_MEMORY_HOTPLUG=y
# CONFIG_MHP_DEFAULT_ONLINE_TYPE_OFFLINE is not set
CONFIG_MHP_DEFAULT_ONLINE_TYPE_ONLINE_AUTO=y
# CONFIG_MHP_DEFAULT_ONLINE_TYPE_ONLINE_KERNEL is not set
# CONFIG_MHP_DEFAULT_ONLINE_TYPE_ONLINE_MOVABLE is not set
CONFIG_MEMORY_HOTREMOVE=y
CONFIG_MHP_MEMMAP_ON_MEMORY=y
CONFIG_ARCH_MHP_MEMMAP_ON_MEMORY_ENABLE=y
CONFIG_SPLIT_PTE_PTLOCKS=y
CONFIG_ARCH_ENABLE_SPLIT_PMD_PTLOCK=y
CONFIG_SPLIT_PMD_PTLOCKS=y
CONFIG_MEMORY_BALLOON=y
# CONFIG_BALLOON_COMPACTION is not set
CONFIG_COMPACTION=y
CONFIG_COMPACT_UNEVICTABLE_DEFAULT=1
CONFIG_PAGE_REPORTING=y
CONFIG_MIGRATION=y
CONFIG_DEVICE_MIGRATION=y
CONFIG_ARCH_ENABLE_HUGEPAGE_MIGRATION=y
CONFIG_ARCH_ENABLE_THP_MIGRATION=y
CONFIG_CONTIG_ALLOC=y
CONFIG_PCP_BATCH_SCALE_MAX=5
CONFIG_PHYS_ADDR_T_64BIT=y
CONFIG_MMU_NOTIFIER=y
CONFIG_KSM=y
CONFIG_DEFAULT_MMAP_MIN_ADDR=4096
CONFIG_ARCH_SUPPORTS_MEMORY_FAILURE=y
# CONFIG_MEMORY_FAILURE is not set
CONFIG_ARCH_WANT_GENERAL_HUGETLB=y
CONFIG_ARCH_WANTS_THP_SWAP=y
CONFIG_MM_ID=y
CONFIG_TRANSPARENT_HUGEPAGE=y
# CONFIG_TRANSPARENT_HUGEPAGE_ALWAYS is not set
CONFIG_TRANSPARENT_HUGEPAGE_MADVISE=y
# CONFIG_TRANSPARENT_HUGEPAGE_NEVER is not set
CONFIG_THP_SWAP=y
CONFIG_READ_ONLY_THP_FOR_FS=y
# CONFIG_NO_PAGE_MAPCOUNT is not set
CONFIG_PAGE_MAPCOUNT=y
CONFIG_PGTABLE_HAS_HUGE_LEAVES=y
CONFIG_ARCH_SUPPORTS_HUGE_PFNMAP=y
CONFIG_ARCH_SUPPORTS_PMD_PFNMAP=y
CONFIG_ARCH_SUPPORTS_PUD_PFNMAP=y
CONFIG_NEED_PER_CPU_EMBED_FIRST_CHUNK=y
CONFIG_NEED_PER_CPU_PAGE_FIRST_CHUNK=y
CONFIG_USE_PERCPU_NUMA_NODE_ID=y
CONFIG_HAVE_SETUP_PER_CPU_AREA=y
CONFIG_CMA=y
# CONFIG_CMA_DEBUGFS is not set
# CONFIG_CMA_SYSFS is not set
CONFIG_CMA_AREAS=20
CONFIG_PAGE_BLOCK_MAX_ORDER=10
CONFIG_MEM_SOFT_DIRTY=y
CONFIG_GENERIC_EARLY_IOREMAP=y
# CONFIG_DEFERRED_STRUCT_PAGE_INIT is not set
CONFIG_PAGE_IDLE_FLAG=y
# CONFIG_IDLE_PAGE_TRACKING is not set
CONFIG_ARCH_HAS_CACHE_LINE_SIZE=y
CONFIG_ARCH_HAS_CURRENT_STACK_POINTER=y
CONFIG_ARCH_HAS_ZONE_DMA_SET=y
CONFIG_ZONE_DMA=y
CONFIG_ZONE_DMA32=y
CONFIG_ZONE_DEVICE=y
CONFIG_HMM_MIRROR=y
CONFIG_GET_FREE_REGION=y
CONFIG_DEVICE_PRIVATE=y
CONFIG_VMAP_PFN=y
CONFIG_ARCH_USES_HIGH_VMA_FLAGS=y
CONFIG_ARCH_HAS_PKEYS=y
CONFIG_ARCH_USES_PG_ARCH_2=y
CONFIG_VM_EVENT_COUNTERS=y
CONFIG_PERCPU_STATS=y
# CONFIG_GUP_TEST is not set
# CONFIG_DMAPOOL_TEST is not set
CONFIG_ARCH_HAS_PTE_SPECIAL=y
CONFIG_MAPPING_DIRTY_HELPERS=y
CONFIG_KMAP_LOCAL=y
CONFIG_MEMFD_CREATE=y
CONFIG_SECRETMEM=y
CONFIG_ANON_VMA_NAME=y
CONFIG_HAVE_ARCH_USERFAULTFD_WP=y
CONFIG_HAVE_ARCH_USERFAULTFD_MINOR=y
CONFIG_USERFAULTFD=y
# CONFIG_PTE_MARKER_UFFD_WP is not set
CONFIG_LRU_GEN=y
CONFIG_LRU_GEN_ENABLED=y
# CONFIG_LRU_GEN_STATS is not set
CONFIG_LRU_GEN_WALKS_MMU=y
CONFIG_ARCH_SUPPORTS_PER_VMA_LOCK=y
CONFIG_PER_VMA_LOCK=y
CONFIG_LOCK_MM_AND_FIND_VMA=y
CONFIG_IOMMU_MM_DATA=y
CONFIG_EXECMEM=y
CONFIG_NUMA_MEMBLKS=y
CONFIG_NUMA_EMU=y
CONFIG_ARCH_HAS_USER_SHADOW_STACK=y
CONFIG_ARCH_SUPPORTS_PT_RECLAIM=y
CONFIG_PT_RECLAIM=y

#
# Data Access Monitoring
#
CONFIG_DAMON=y
CONFIG_DAMON_VADDR=y
CONFIG_DAMON_PADDR=y
# CONFIG_DAMON_SYSFS is not set
CONFIG_DAMON_RECLAIM=y
# CONFIG_DAMON_LRU_SORT is not set
# CONFIG_DAMON_STAT is not set
# CONFIG_DAMON_STAT_ENABLED_DEFAULT is not set
# end of Data Access Monitoring
# end of Memory Management options

CONFIG_NET=y
CONFIG_WANT_COMPAT_NETLINK_MESSAGES=y
CONFIG_COMPAT_NETLINK_MESSAGES=y
CONFIG_NET_INGRESS=y
CONFIG_NET_EGRESS=y
CONFIG_NET_XGRESS=y
CONFIG_NET_REDIRECT=y
CONFIG_SKB_DECRYPTED=y
CONFIG_SKB_EXTENSIONS=y
CONFIG_NET_DEVMEM=y
CONFIG_NET_SHAPER=y
CONFIG_NET_CRC32C=y

#
# Networking options
#
CONFIG_PACKET=y
CONFIG_PACKET_DIAG=y
CONFIG_UNIX=y
CONFIG_AF_UNIX_OOB=y
CONFIG_UNIX_DIAG=y
CONFIG_TLS=y
CONFIG_TLS_DEVICE=y
CONFIG_TLS_TOE=y
CONFIG_XFRM=y
CONFIG_XFRM_OFFLOAD=y
CONFIG_XFRM_ALGO=y
CONFIG_XFRM_USER=y
CONFIG_XFRM_USER_COMPAT=y
CONFIG_XFRM_INTERFACE=y
CONFIG_XFRM_SUB_POLICY=y
CONFIG_XFRM_MIGRATE=y
CONFIG_XFRM_STATISTICS=y
CONFIG_XFRM_AH=y
CONFIG_XFRM_ESP=y
CONFIG_XFRM_IPCOMP=y
CONFIG_NET_KEY=y
CONFIG_NET_KEY_MIGRATE=y
# CONFIG_XFRM_IPTFS is not set
CONFIG_XFRM_ESPINTCP=y
CONFIG_SMC=y
CONFIG_SMC_DIAG=y
# CONFIG_SMC_LO is not set
CONFIG_XDP_SOCKETS=y
CONFIG_XDP_SOCKETS_DIAG=y
CONFIG_NET_HANDSHAKE=y
CONFIG_INET=y
CONFIG_IP_MULTICAST=y
CONFIG_IP_ADVANCED_ROUTER=y
CONFIG_IP_FIB_TRIE_STATS=y
CONFIG_IP_MULTIPLE_TABLES=y
CONFIG_IP_ROUTE_MULTIPATH=y
CONFIG_IP_ROUTE_VERBOSE=y
CONFIG_IP_ROUTE_CLASSID=y
CONFIG_IP_PNP=y
CONFIG_IP_PNP_DHCP=y
CONFIG_IP_PNP_BOOTP=y
CONFIG_IP_PNP_RARP=y
CONFIG_NET_IPIP=y
CONFIG_NET_IPGRE_DEMUX=y
CONFIG_NET_IP_TUNNEL=y
CONFIG_NET_IPGRE=y
CONFIG_NET_IPGRE_BROADCAST=y
CONFIG_IP_MROUTE_COMMON=y
CONFIG_IP_MROUTE=y
CONFIG_IP_MROUTE_MULTIPLE_TABLES=y
CONFIG_IP_PIMSM_V1=y
CONFIG_IP_PIMSM_V2=y
CONFIG_SYN_COOKIES=y
CONFIG_NET_IPVTI=y
CONFIG_NET_UDP_TUNNEL=y
CONFIG_NET_FOU=y
CONFIG_NET_FOU_IP_TUNNELS=y
CONFIG_INET_AH=y
CONFIG_INET_ESP=y
CONFIG_INET_ESP_OFFLOAD=y
CONFIG_INET_ESPINTCP=y
CONFIG_INET_IPCOMP=y
CONFIG_INET_TABLE_PERTURB_ORDER=16
CONFIG_INET_XFRM_TUNNEL=y
CONFIG_INET_TUNNEL=y
CONFIG_INET_DIAG=y
CONFIG_INET_TCP_DIAG=y
CONFIG_INET_UDP_DIAG=y
CONFIG_INET_RAW_DIAG=y
CONFIG_INET_DIAG_DESTROY=y
CONFIG_TCP_CONG_ADVANCED=y
CONFIG_TCP_CONG_BIC=y
CONFIG_TCP_CONG_CUBIC=y
CONFIG_TCP_CONG_WESTWOOD=y
CONFIG_TCP_CONG_HTCP=y
CONFIG_TCP_CONG_HSTCP=y
CONFIG_TCP_CONG_HYBLA=y
CONFIG_TCP_CONG_VEGAS=y
CONFIG_TCP_CONG_NV=y
CONFIG_TCP_CONG_SCALABLE=y
CONFIG_TCP_CONG_LP=y
CONFIG_TCP_CONG_VENO=y
CONFIG_TCP_CONG_YEAH=y
CONFIG_TCP_CONG_ILLINOIS=y
CONFIG_TCP_CONG_DCTCP=y
CONFIG_TCP_CONG_CDG=y
CONFIG_TCP_CONG_BBR=y
# CONFIG_DEFAULT_BIC is not set
CONFIG_DEFAULT_CUBIC=y
# CONFIG_DEFAULT_HTCP is not set
# CONFIG_DEFAULT_HYBLA is not set
# CONFIG_DEFAULT_VEGAS is not set
# CONFIG_DEFAULT_VENO is not set
# CONFIG_DEFAULT_WESTWOOD is not set
# CONFIG_DEFAULT_DCTCP is not set
# CONFIG_DEFAULT_CDG is not set
# CONFIG_DEFAULT_BBR is not set
# CONFIG_DEFAULT_RENO is not set
CONFIG_DEFAULT_TCP_CONG="cubic"
CONFIG_TCP_SIGPOOL=y
# CONFIG_TCP_AO is not set
CONFIG_TCP_MD5SIG=y
CONFIG_IPV6=y
CONFIG_IPV6_ROUTER_PREF=y
CONFIG_IPV6_ROUTE_INFO=y
CONFIG_IPV6_OPTIMISTIC_DAD=y
CONFIG_INET6_AH=y
CONFIG_INET6_ESP=y
CONFIG_INET6_ESP_OFFLOAD=y
CONFIG_INET6_ESPINTCP=y
CONFIG_INET6_IPCOMP=y
CONFIG_IPV6_MIP6=y
CONFIG_IPV6_ILA=y
CONFIG_INET6_XFRM_TUNNEL=y
CONFIG_INET6_TUNNEL=y
CONFIG_IPV6_VTI=y
CONFIG_IPV6_SIT=y
CONFIG_IPV6_SIT_6RD=y
CONFIG_IPV6_NDISC_NODETYPE=y
CONFIG_IPV6_TUNNEL=y
CONFIG_IPV6_GRE=y
CONFIG_IPV6_FOU=y
CONFIG_IPV6_FOU_TUNNEL=y
CONFIG_IPV6_MULTIPLE_TABLES=y
CONFIG_IPV6_SUBTREES=y
CONFIG_IPV6_MROUTE=y
CONFIG_IPV6_MROUTE_MULTIPLE_TABLES=y
CONFIG_IPV6_PIMSM_V2=y
CONFIG_IPV6_SEG6_LWTUNNEL=y
CONFIG_IPV6_SEG6_HMAC=y
CONFIG_IPV6_SEG6_BPF=y
CONFIG_IPV6_RPL_LWTUNNEL=y
# CONFIG_IPV6_IOAM6_LWTUNNEL is not set
CONFIG_NETLABEL=y
CONFIG_MPTCP=y
CONFIG_INET_MPTCP_DIAG=y
CONFIG_MPTCP_IPV6=y
CONFIG_NETWORK_SECMARK=y
CONFIG_NET_PTP_CLASSIFY=y
# CONFIG_NETWORK_PHY_TIMESTAMPING is not set
CONFIG_NETFILTER=y
CONFIG_NETFILTER_ADVANCED=y
CONFIG_BRIDGE_NETFILTER=y

#
# Core Netfilter Configuration
#
CONFIG_NETFILTER_INGRESS=y
CONFIG_NETFILTER_EGRESS=y
CONFIG_NETFILTER_SKIP_EGRESS=y
CONFIG_NETFILTER_NETLINK=y
CONFIG_NETFILTER_FAMILY_BRIDGE=y
CONFIG_NETFILTER_FAMILY_ARP=y
CONFIG_NETFILTER_BPF_LINK=y
# CONFIG_NETFILTER_NETLINK_HOOK is not set
CONFIG_NETFILTER_NETLINK_ACCT=y
CONFIG_NETFILTER_NETLINK_QUEUE=y
CONFIG_NETFILTER_NETLINK_LOG=y
CONFIG_NETFILTER_NETLINK_OSF=y
CONFIG_NF_CONNTRACK=y
CONFIG_NF_LOG_SYSLOG=y
CONFIG_NETFILTER_CONNCOUNT=y
CONFIG_NF_CONNTRACK_MARK=y
CONFIG_NF_CONNTRACK_SECMARK=y
CONFIG_NF_CONNTRACK_ZONES=y
# CONFIG_NF_CONNTRACK_PROCFS is not set
CONFIG_NF_CONNTRACK_EVENTS=y
CONFIG_NF_CONNTRACK_TIMEOUT=y
CONFIG_NF_CONNTRACK_TIMESTAMP=y
CONFIG_NF_CONNTRACK_LABELS=y
CONFIG_NF_CONNTRACK_OVS=y
CONFIG_NF_CT_PROTO_GRE=y
CONFIG_NF_CT_PROTO_SCTP=y
CONFIG_NF_CT_PROTO_UDPLITE=y
CONFIG_NF_CONNTRACK_AMANDA=y
CONFIG_NF_CONNTRACK_FTP=y
CONFIG_NF_CONNTRACK_H323=y
CONFIG_NF_CONNTRACK_IRC=y
CONFIG_NF_CONNTRACK_BROADCAST=y
CONFIG_NF_CONNTRACK_NETBIOS_NS=y
CONFIG_NF_CONNTRACK_SNMP=y
CONFIG_NF_CONNTRACK_PPTP=y
CONFIG_NF_CONNTRACK_SANE=y
CONFIG_NF_CONNTRACK_SIP=y
CONFIG_NF_CONNTRACK_TFTP=y
CONFIG_NF_CT_NETLINK=y
CONFIG_NF_CT_NETLINK_TIMEOUT=y
CONFIG_NF_CT_NETLINK_HELPER=y
CONFIG_NETFILTER_NETLINK_GLUE_CT=y
CONFIG_NF_NAT=y
CONFIG_NF_NAT_AMANDA=y
CONFIG_NF_NAT_FTP=y
CONFIG_NF_NAT_IRC=y
CONFIG_NF_NAT_SIP=y
CONFIG_NF_NAT_TFTP=y
CONFIG_NF_NAT_REDIRECT=y
CONFIG_NF_NAT_MASQUERADE=y
CONFIG_NF_NAT_OVS=y
CONFIG_NETFILTER_SYNPROXY=y
CONFIG_NF_TABLES=y
CONFIG_NF_TABLES_INET=y
CONFIG_NF_TABLES_NETDEV=y
CONFIG_NFT_NUMGEN=y
CONFIG_NFT_CT=y
# CONFIG_NFT_EXTHDR_DCCP is not set
CONFIG_NFT_FLOW_OFFLOAD=y
CONFIG_NFT_CONNLIMIT=y
CONFIG_NFT_LOG=y
CONFIG_NFT_LIMIT=y
CONFIG_NFT_MASQ=y
CONFIG_NFT_REDIR=y
CONFIG_NFT_NAT=y
CONFIG_NFT_TUNNEL=y
CONFIG_NFT_QUEUE=y
CONFIG_NFT_QUOTA=y
CONFIG_NFT_REJECT=y
CONFIG_NFT_REJECT_INET=y
CONFIG_NFT_COMPAT=y
CONFIG_NFT_HASH=y
CONFIG_NFT_FIB=y
CONFIG_NFT_FIB_INET=y
CONFIG_NFT_XFRM=y
CONFIG_NFT_SOCKET=y
CONFIG_NFT_OSF=y
CONFIG_NFT_TPROXY=y
CONFIG_NFT_SYNPROXY=y
CONFIG_NF_DUP_NETDEV=y
CONFIG_NFT_DUP_NETDEV=y
CONFIG_NFT_FWD_NETDEV=y
CONFIG_NFT_FIB_NETDEV=y
CONFIG_NFT_REJECT_NETDEV=y
CONFIG_NF_FLOW_TABLE_INET=y
CONFIG_NF_FLOW_TABLE=y
# CONFIG_NF_FLOW_TABLE_PROCFS is not set
CONFIG_NETFILTER_XTABLES=y
CONFIG_NETFILTER_XTABLES_COMPAT=y
# CONFIG_NETFILTER_XTABLES_LEGACY is not set

#
# Xtables combined modules
#
CONFIG_NETFILTER_XT_MARK=y
CONFIG_NETFILTER_XT_CONNMARK=y
CONFIG_NETFILTER_XT_SET=y

#
# Xtables targets
#
CONFIG_NETFILTER_XT_TARGET_AUDIT=y
CONFIG_NETFILTER_XT_TARGET_CHECKSUM=y
CONFIG_NETFILTER_XT_TARGET_CLASSIFY=y
CONFIG_NETFILTER_XT_TARGET_CONNMARK=y
CONFIG_NETFILTER_XT_TARGET_CONNSECMARK=y
CONFIG_NETFILTER_XT_TARGET_CT=y
CONFIG_NETFILTER_XT_TARGET_DSCP=y
CONFIG_NETFILTER_XT_TARGET_HL=y
CONFIG_NETFILTER_XT_TARGET_HMARK=y
CONFIG_NETFILTER_XT_TARGET_IDLETIMER=y
CONFIG_NETFILTER_XT_TARGET_LED=y
CONFIG_NETFILTER_XT_TARGET_LOG=y
CONFIG_NETFILTER_XT_TARGET_MARK=y
CONFIG_NETFILTER_XT_NAT=y
CONFIG_NETFILTER_XT_TARGET_NETMAP=y
CONFIG_NETFILTER_XT_TARGET_NFLOG=y
CONFIG_NETFILTER_XT_TARGET_NFQUEUE=y
CONFIG_NETFILTER_XT_TARGET_RATEEST=y
CONFIG_NETFILTER_XT_TARGET_REDIRECT=y
CONFIG_NETFILTER_XT_TARGET_MASQUERADE=y
CONFIG_NETFILTER_XT_TARGET_TEE=y
CONFIG_NETFILTER_XT_TARGET_TPROXY=y
CONFIG_NETFILTER_XT_TARGET_SECMARK=y
CONFIG_NETFILTER_XT_TARGET_TCPMSS=y
CONFIG_NETFILTER_XT_TARGET_TCPOPTSTRIP=y

#
# Xtables matches
#
CONFIG_NETFILTER_XT_MATCH_ADDRTYPE=y
CONFIG_NETFILTER_XT_MATCH_BPF=y
CONFIG_NETFILTER_XT_MATCH_CGROUP=y
CONFIG_NETFILTER_XT_MATCH_CLUSTER=y
CONFIG_NETFILTER_XT_MATCH_COMMENT=y
CONFIG_NETFILTER_XT_MATCH_CONNBYTES=y
CONFIG_NETFILTER_XT_MATCH_CONNLABEL=y
CONFIG_NETFILTER_XT_MATCH_CONNLIMIT=y
CONFIG_NETFILTER_XT_MATCH_CONNMARK=y
CONFIG_NETFILTER_XT_MATCH_CONNTRACK=y
CONFIG_NETFILTER_XT_MATCH_CPU=y
CONFIG_NETFILTER_XT_MATCH_DCCP=y
CONFIG_NETFILTER_XT_MATCH_DEVGROUP=y
CONFIG_NETFILTER_XT_MATCH_DSCP=y
CONFIG_NETFILTER_XT_MATCH_ECN=y
CONFIG_NETFILTER_XT_MATCH_ESP=y
CONFIG_NETFILTER_XT_MATCH_HASHLIMIT=y
CONFIG_NETFILTER_XT_MATCH_HELPER=y
CONFIG_NETFILTER_XT_MATCH_HL=y
CONFIG_NETFILTER_XT_MATCH_IPCOMP=y
CONFIG_NETFILTER_XT_MATCH_IPRANGE=y
CONFIG_NETFILTER_XT_MATCH_IPVS=y
CONFIG_NETFILTER_XT_MATCH_L2TP=y
CONFIG_NETFILTER_XT_MATCH_LENGTH=y
CONFIG_NETFILTER_XT_MATCH_LIMIT=y
CONFIG_NETFILTER_XT_MATCH_MAC=y
CONFIG_NETFILTER_XT_MATCH_MARK=y
CONFIG_NETFILTER_XT_MATCH_MULTIPORT=y
CONFIG_NETFILTER_XT_MATCH_NFACCT=y
CONFIG_NETFILTER_XT_MATCH_OSF=y
CONFIG_NETFILTER_XT_MATCH_OWNER=y
CONFIG_NETFILTER_XT_MATCH_POLICY=y
CONFIG_NETFILTER_XT_MATCH_PHYSDEV=y
CONFIG_NETFILTER_XT_MATCH_PKTTYPE=y
CONFIG_NETFILTER_XT_MATCH_QUOTA=y
CONFIG_NETFILTER_XT_MATCH_RATEEST=y
CONFIG_NETFILTER_XT_MATCH_REALM=y
CONFIG_NETFILTER_XT_MATCH_RECENT=y
CONFIG_NETFILTER_XT_MATCH_SCTP=y
CONFIG_NETFILTER_XT_MATCH_SOCKET=y
CONFIG_NETFILTER_XT_MATCH_STATE=y
CONFIG_NETFILTER_XT_MATCH_STATISTIC=y
CONFIG_NETFILTER_XT_MATCH_STRING=y
CONFIG_NETFILTER_XT_MATCH_TCPMSS=y
CONFIG_NETFILTER_XT_MATCH_TIME=y
CONFIG_NETFILTER_XT_MATCH_U32=y
# end of Core Netfilter Configuration

CONFIG_IP_SET=y
CONFIG_IP_SET_MAX=256
CONFIG_IP_SET_BITMAP_IP=y
CONFIG_IP_SET_BITMAP_IPMAC=y
CONFIG_IP_SET_BITMAP_PORT=y
CONFIG_IP_SET_HASH_IP=y
CONFIG_IP_SET_HASH_IPMARK=y
CONFIG_IP_SET_HASH_IPPORT=y
CONFIG_IP_SET_HASH_IPPORTIP=y
CONFIG_IP_SET_HASH_IPPORTNET=y
CONFIG_IP_SET_HASH_IPMAC=y
CONFIG_IP_SET_HASH_MAC=y
CONFIG_IP_SET_HASH_NETPORTNET=y
CONFIG_IP_SET_HASH_NET=y
CONFIG_IP_SET_HASH_NETNET=y
CONFIG_IP_SET_HASH_NETPORT=y
CONFIG_IP_SET_HASH_NETIFACE=y
CONFIG_IP_SET_LIST_SET=y
CONFIG_IP_VS=y
CONFIG_IP_VS_IPV6=y
# CONFIG_IP_VS_DEBUG is not set
CONFIG_IP_VS_TAB_BITS=12

#
# IPVS transport protocol load balancing support
#
CONFIG_IP_VS_PROTO_TCP=y
CONFIG_IP_VS_PROTO_UDP=y
CONFIG_IP_VS_PROTO_AH_ESP=y
CONFIG_IP_VS_PROTO_ESP=y
CONFIG_IP_VS_PROTO_AH=y
CONFIG_IP_VS_PROTO_SCTP=y

#
# IPVS scheduler
#
CONFIG_IP_VS_RR=y
CONFIG_IP_VS_WRR=y
CONFIG_IP_VS_LC=y
CONFIG_IP_VS_WLC=y
CONFIG_IP_VS_FO=y
CONFIG_IP_VS_OVF=y
CONFIG_IP_VS_LBLC=y
CONFIG_IP_VS_LBLCR=y
CONFIG_IP_VS_DH=y
CONFIG_IP_VS_SH=y
CONFIG_IP_VS_MH=y
CONFIG_IP_VS_SED=y
CONFIG_IP_VS_NQ=y
CONFIG_IP_VS_TWOS=y

#
# IPVS SH scheduler
#
CONFIG_IP_VS_SH_TAB_BITS=8

#
# IPVS MH scheduler
#
CONFIG_IP_VS_MH_TAB_INDEX=12

#
# IPVS application helper
#
CONFIG_IP_VS_FTP=y
CONFIG_IP_VS_NFCT=y
CONFIG_IP_VS_PE_SIP=y

#
# IP: Netfilter Configuration
#
CONFIG_NF_DEFRAG_IPV4=y
CONFIG_NF_SOCKET_IPV4=y
CONFIG_NF_TPROXY_IPV4=y
CONFIG_NF_TABLES_IPV4=y
CONFIG_NFT_REJECT_IPV4=y
CONFIG_NFT_DUP_IPV4=y
CONFIG_NFT_FIB_IPV4=y
CONFIG_NF_TABLES_ARP=y
CONFIG_NF_DUP_IPV4=y
CONFIG_NF_LOG_ARP=y
CONFIG_NF_LOG_IPV4=y
CONFIG_NF_REJECT_IPV4=y
CONFIG_NF_NAT_SNMP_BASIC=y
CONFIG_NF_NAT_PPTP=y
CONFIG_NF_NAT_H323=y
CONFIG_IP_NF_IPTABLES=y
CONFIG_IP_NF_MATCH_AH=y
CONFIG_IP_NF_MATCH_ECN=y
CONFIG_IP_NF_MATCH_RPFILTER=y
CONFIG_IP_NF_MATCH_TTL=y
CONFIG_IP_NF_TARGET_REJECT=y
CONFIG_IP_NF_TARGET_SYNPROXY=y
CONFIG_IP_NF_TARGET_ECN=y
CONFIG_NFT_COMPAT_ARP=y
CONFIG_IP_NF_ARP_MANGLE=y
# end of IP: Netfilter Configuration

#
# IPv6: Netfilter Configuration
#
CONFIG_NF_SOCKET_IPV6=y
CONFIG_NF_TPROXY_IPV6=y
CONFIG_NF_TABLES_IPV6=y
CONFIG_NFT_REJECT_IPV6=y
CONFIG_NFT_DUP_IPV6=y
CONFIG_NFT_FIB_IPV6=y
CONFIG_NF_DUP_IPV6=y
CONFIG_NF_REJECT_IPV6=y
CONFIG_NF_LOG_IPV6=y
CONFIG_IP6_NF_IPTABLES=y
CONFIG_IP6_NF_MATCH_AH=y
CONFIG_IP6_NF_MATCH_EUI64=y
CONFIG_IP6_NF_MATCH_FRAG=y
CONFIG_IP6_NF_MATCH_OPTS=y
CONFIG_IP6_NF_MATCH_HL=y
CONFIG_IP6_NF_MATCH_IPV6HEADER=y
CONFIG_IP6_NF_MATCH_MH=y
CONFIG_IP6_NF_MATCH_RPFILTER=y
CONFIG_IP6_NF_MATCH_RT=y
CONFIG_IP6_NF_MATCH_SRH=y
CONFIG_IP6_NF_TARGET_REJECT=y
CONFIG_IP6_NF_TARGET_SYNPROXY=y
CONFIG_IP6_NF_TARGET_NPT=y
# end of IPv6: Netfilter Configuration

CONFIG_NF_DEFRAG_IPV6=y
CONFIG_NF_TABLES_BRIDGE=y
CONFIG_NFT_BRIDGE_META=y
CONFIG_NFT_BRIDGE_REJECT=y
CONFIG_NF_CONNTRACK_BRIDGE=y
CONFIG_BRIDGE_NF_EBTABLES=y
CONFIG_BRIDGE_EBT_802_3=y
CONFIG_BRIDGE_EBT_AMONG=y
CONFIG_BRIDGE_EBT_ARP=y
CONFIG_BRIDGE_EBT_IP=y
CONFIG_BRIDGE_EBT_IP6=y
CONFIG_BRIDGE_EBT_LIMIT=y
CONFIG_BRIDGE_EBT_MARK=y
CONFIG_BRIDGE_EBT_PKTTYPE=y
CONFIG_BRIDGE_EBT_STP=y
CONFIG_BRIDGE_EBT_VLAN=y
CONFIG_BRIDGE_EBT_ARPREPLY=y
CONFIG_BRIDGE_EBT_DNAT=y
CONFIG_BRIDGE_EBT_MARK_T=y
CONFIG_BRIDGE_EBT_REDIRECT=y
CONFIG_BRIDGE_EBT_SNAT=y
CONFIG_BRIDGE_EBT_LOG=y
CONFIG_BRIDGE_EBT_NFLOG=y
CONFIG_IP_SCTP=y
# CONFIG_SCTP_DBG_OBJCNT is not set
CONFIG_SCTP_DEFAULT_COOKIE_HMAC_MD5=y
# CONFIG_SCTP_DEFAULT_COOKIE_HMAC_SHA1 is not set
# CONFIG_SCTP_DEFAULT_COOKIE_HMAC_NONE is not set
CONFIG_SCTP_COOKIE_HMAC_MD5=y
CONFIG_SCTP_COOKIE_HMAC_SHA1=y
CONFIG_INET_SCTP_DIAG=y
CONFIG_RDS=y
CONFIG_RDS_RDMA=y
CONFIG_RDS_TCP=y
# CONFIG_RDS_DEBUG is not set
CONFIG_TIPC=y
CONFIG_TIPC_MEDIA_IB=y
CONFIG_TIPC_MEDIA_UDP=y
CONFIG_TIPC_CRYPTO=y
CONFIG_TIPC_DIAG=y
CONFIG_ATM=y
CONFIG_ATM_CLIP=y
# CONFIG_ATM_CLIP_NO_ICMP is not set
CONFIG_ATM_LANE=y
CONFIG_ATM_MPOA=y
CONFIG_ATM_BR2684=y
# CONFIG_ATM_BR2684_IPFILTER is not set
CONFIG_L2TP=y
# CONFIG_L2TP_DEBUGFS is not set
CONFIG_L2TP_V3=y
CONFIG_L2TP_IP=y
CONFIG_L2TP_ETH=y
CONFIG_STP=y
CONFIG_GARP=y
CONFIG_MRP=y
CONFIG_BRIDGE=y
CONFIG_BRIDGE_IGMP_SNOOPING=y
CONFIG_BRIDGE_VLAN_FILTERING=y
CONFIG_BRIDGE_MRP=y
CONFIG_BRIDGE_CFM=y
CONFIG_NET_DSA=y
# CONFIG_NET_DSA_TAG_NONE is not set
# CONFIG_NET_DSA_TAG_AR9331 is not set
CONFIG_NET_DSA_TAG_BRCM_COMMON=y
CONFIG_NET_DSA_TAG_BRCM=y
# CONFIG_NET_DSA_TAG_BRCM_LEGACY is not set
# CONFIG_NET_DSA_TAG_BRCM_LEGACY_FCS is not set
CONFIG_NET_DSA_TAG_BRCM_PREPEND=y
# CONFIG_NET_DSA_TAG_HELLCREEK is not set
# CONFIG_NET_DSA_TAG_GSWIP is not set
# CONFIG_NET_DSA_TAG_DSA is not set
# CONFIG_NET_DSA_TAG_EDSA is not set
CONFIG_NET_DSA_TAG_MTK=y
# CONFIG_NET_DSA_TAG_KSZ is not set
# CONFIG_NET_DSA_TAG_OCELOT is not set
# CONFIG_NET_DSA_TAG_OCELOT_8021Q is not set
CONFIG_NET_DSA_TAG_QCA=y
CONFIG_NET_DSA_TAG_RTL4_A=y
# CONFIG_NET_DSA_TAG_RTL8_4 is not set
# CONFIG_NET_DSA_TAG_RZN1_A5PSW is not set
# CONFIG_NET_DSA_TAG_LAN9303 is not set
# CONFIG_NET_DSA_TAG_SJA1105 is not set
# CONFIG_NET_DSA_TAG_TRAILER is not set
# CONFIG_NET_DSA_TAG_VSC73XX_8021Q is not set
# CONFIG_NET_DSA_TAG_XRS700X is not set
CONFIG_VLAN_8021Q=y
CONFIG_VLAN_8021Q_GVRP=y
CONFIG_VLAN_8021Q_MVRP=y
CONFIG_LLC=y
CONFIG_LLC2=y
# CONFIG_ATALK is not set
CONFIG_X25=y
CONFIG_LAPB=y
CONFIG_PHONET=y
CONFIG_6LOWPAN=y
# CONFIG_6LOWPAN_DEBUGFS is not set
CONFIG_6LOWPAN_NHC=y
CONFIG_6LOWPAN_NHC_DEST=y
CONFIG_6LOWPAN_NHC_FRAGMENT=y
CONFIG_6LOWPAN_NHC_HOP=y
CONFIG_6LOWPAN_NHC_IPV6=y
CONFIG_6LOWPAN_NHC_MOBILITY=y
CONFIG_6LOWPAN_NHC_ROUTING=y
CONFIG_6LOWPAN_NHC_UDP=y
CONFIG_6LOWPAN_GHC_EXT_HDR_HOP=y
CONFIG_6LOWPAN_GHC_UDP=y
CONFIG_6LOWPAN_GHC_ICMPV6=y
CONFIG_6LOWPAN_GHC_EXT_HDR_DEST=y
CONFIG_6LOWPAN_GHC_EXT_HDR_FRAG=y
CONFIG_6LOWPAN_GHC_EXT_HDR_ROUTE=y
CONFIG_IEEE802154=y
CONFIG_IEEE802154_NL802154_EXPERIMENTAL=y
CONFIG_IEEE802154_SOCKET=y
CONFIG_IEEE802154_6LOWPAN=y
CONFIG_MAC802154=y
CONFIG_NET_SCHED=y

#
# Queueing/Scheduling
#
CONFIG_NET_SCH_HTB=y
CONFIG_NET_SCH_HFSC=y
CONFIG_NET_SCH_PRIO=y
CONFIG_NET_SCH_MULTIQ=y
CONFIG_NET_SCH_RED=y
CONFIG_NET_SCH_SFB=y
CONFIG_NET_SCH_SFQ=y
CONFIG_NET_SCH_TEQL=y
CONFIG_NET_SCH_TBF=y
CONFIG_NET_SCH_CBS=y
CONFIG_NET_SCH_ETF=y
CONFIG_NET_SCH_MQPRIO_LIB=y
CONFIG_NET_SCH_TAPRIO=y
CONFIG_NET_SCH_GRED=y
CONFIG_NET_SCH_NETEM=y
CONFIG_NET_SCH_DRR=y
CONFIG_NET_SCH_MQPRIO=y
CONFIG_NET_SCH_SKBPRIO=y
CONFIG_NET_SCH_CHOKE=y
CONFIG_NET_SCH_QFQ=y
CONFIG_NET_SCH_CODEL=y
CONFIG_NET_SCH_FQ_CODEL=y
CONFIG_NET_SCH_CAKE=y
CONFIG_NET_SCH_FQ=y
CONFIG_NET_SCH_HHF=y
CONFIG_NET_SCH_PIE=y
CONFIG_NET_SCH_FQ_PIE=y
CONFIG_NET_SCH_INGRESS=y
CONFIG_NET_SCH_PLUG=y
CONFIG_NET_SCH_ETS=y
# CONFIG_NET_SCH_DUALPI2 is not set
CONFIG_NET_SCH_DEFAULT=y
# CONFIG_DEFAULT_FQ is not set
CONFIG_DEFAULT_CODEL=y
# CONFIG_DEFAULT_FQ_CODEL is not set
# CONFIG_DEFAULT_FQ_PIE is not set
# CONFIG_DEFAULT_SFQ is not set
# CONFIG_DEFAULT_PFIFO_FAST is not set
CONFIG_DEFAULT_NET_SCH="pfifo_fast"

#
# Classification
#
CONFIG_NET_CLS=y
CONFIG_NET_CLS_BASIC=y
CONFIG_NET_CLS_ROUTE4=y
CONFIG_NET_CLS_FW=y
CONFIG_NET_CLS_U32=y
CONFIG_CLS_U32_PERF=y
CONFIG_CLS_U32_MARK=y
CONFIG_NET_CLS_FLOW=y
CONFIG_NET_CLS_CGROUP=y
CONFIG_NET_CLS_BPF=y
CONFIG_NET_CLS_FLOWER=y
CONFIG_NET_CLS_MATCHALL=y
CONFIG_NET_EMATCH=y
CONFIG_NET_EMATCH_STACK=32
CONFIG_NET_EMATCH_CMP=y
CONFIG_NET_EMATCH_NBYTE=y
CONFIG_NET_EMATCH_U32=y
CONFIG_NET_EMATCH_META=y
CONFIG_NET_EMATCH_TEXT=y
CONFIG_NET_EMATCH_CANID=y
CONFIG_NET_EMATCH_IPSET=y
CONFIG_NET_EMATCH_IPT=y
CONFIG_NET_CLS_ACT=y
CONFIG_NET_ACT_POLICE=y
CONFIG_NET_ACT_GACT=y
CONFIG_GACT_PROB=y
CONFIG_NET_ACT_MIRRED=y
CONFIG_NET_ACT_SAMPLE=y
CONFIG_NET_ACT_NAT=y
CONFIG_NET_ACT_PEDIT=y
CONFIG_NET_ACT_SIMP=y
CONFIG_NET_ACT_SKBEDIT=y
CONFIG_NET_ACT_CSUM=y
CONFIG_NET_ACT_MPLS=y
CONFIG_NET_ACT_VLAN=y
CONFIG_NET_ACT_BPF=y
CONFIG_NET_ACT_CONNMARK=y
CONFIG_NET_ACT_CTINFO=y
CONFIG_NET_ACT_SKBMOD=y
CONFIG_NET_ACT_IFE=y
CONFIG_NET_ACT_TUNNEL_KEY=y
CONFIG_NET_ACT_CT=y
CONFIG_NET_ACT_GATE=y
CONFIG_NET_IFE_SKBMARK=y
CONFIG_NET_IFE_SKBPRIO=y
CONFIG_NET_IFE_SKBTCINDEX=y
CONFIG_NET_TC_SKB_EXT=y
CONFIG_NET_SCH_FIFO=y
CONFIG_DCB=y
CONFIG_DNS_RESOLVER=y
CONFIG_BATMAN_ADV=y
CONFIG_BATMAN_ADV_BATMAN_V=y
CONFIG_BATMAN_ADV_BLA=y
CONFIG_BATMAN_ADV_DAT=y
CONFIG_BATMAN_ADV_NC=y
CONFIG_BATMAN_ADV_MCAST=y
# CONFIG_BATMAN_ADV_DEBUG is not set
# CONFIG_BATMAN_ADV_TRACING is not set
CONFIG_OPENVSWITCH=y
CONFIG_OPENVSWITCH_GRE=y
CONFIG_OPENVSWITCH_VXLAN=y
CONFIG_OPENVSWITCH_GENEVE=y
CONFIG_VSOCKETS=y
CONFIG_VSOCKETS_DIAG=y
CONFIG_VSOCKETS_LOOPBACK=y
# CONFIG_VMWARE_VMCI_VSOCKETS is not set
CONFIG_VIRTIO_VSOCKETS=y
CONFIG_VIRTIO_VSOCKETS_COMMON=y
CONFIG_NETLINK_DIAG=y
CONFIG_MPLS=y
CONFIG_NET_MPLS_GSO=y
CONFIG_MPLS_ROUTING=y
CONFIG_MPLS_IPTUNNEL=y
CONFIG_NET_NSH=y
CONFIG_HSR=y
CONFIG_NET_SWITCHDEV=y
CONFIG_NET_L3_MASTER_DEV=y
CONFIG_QRTR=y
CONFIG_QRTR_TUN=y
# CONFIG_QRTR_MHI is not set
CONFIG_NET_NCSI=y
# CONFIG_NCSI_OEM_CMD_GET_MAC is not set
# CONFIG_NCSI_OEM_CMD_KEEP_PHY is not set
# CONFIG_PCPU_DEV_REFCNT is not set
CONFIG_MAX_SKB_FRAGS=17
CONFIG_RPS=y
CONFIG_RFS_ACCEL=y
CONFIG_SOCK_RX_QUEUE_MAPPING=y
CONFIG_XPS=y
CONFIG_CGROUP_NET_PRIO=y
CONFIG_CGROUP_NET_CLASSID=y
CONFIG_NET_RX_BUSY_POLL=y
CONFIG_BQL=y
CONFIG_NET_FLOW_LIMIT=y

#
# Network testing
#
# CONFIG_NET_PKTGEN is not set
CONFIG_NET_DROP_MONITOR=y
# end of Network testing
# end of Networking options

CONFIG_HAMRADIO=y

#
# Packet Radio protocols
#
CONFIG_AX25=y
CONFIG_AX25_DAMA_SLAVE=y
CONFIG_NETROM=y
CONFIG_ROSE=y

#
# AX.25 network device drivers
#
CONFIG_MKISS=y
CONFIG_6PACK=y
CONFIG_BPQETHER=y
# CONFIG_BAYCOM_SER_FDX is not set
# CONFIG_BAYCOM_SER_HDX is not set
# CONFIG_BAYCOM_PAR is not set
# CONFIG_YAM is not set
# end of AX.25 network device drivers

CONFIG_CAN=y
CONFIG_CAN_RAW=y
CONFIG_CAN_BCM=y
CONFIG_CAN_GW=y
CONFIG_CAN_J1939=y
CONFIG_CAN_ISOTP=y
CONFIG_BT=y
CONFIG_BT_BREDR=y
CONFIG_BT_RFCOMM=y
CONFIG_BT_RFCOMM_TTY=y
CONFIG_BT_BNEP=y
CONFIG_BT_BNEP_MC_FILTER=y
CONFIG_BT_BNEP_PROTO_FILTER=y
CONFIG_BT_HIDP=y
CONFIG_BT_LE=y
CONFIG_BT_LE_L2CAP_ECRED=y
CONFIG_BT_6LOWPAN=y
CONFIG_BT_LEDS=y
CONFIG_BT_MSFTEXT=y
# CONFIG_BT_AOSPEXT is not set
# CONFIG_BT_DEBUGFS is not set
# CONFIG_BT_SELFTEST is not set

#
# Bluetooth device drivers
#
CONFIG_BT_INTEL=y
CONFIG_BT_BCM=y
CONFIG_BT_RTL=y
CONFIG_BT_QCA=y
CONFIG_BT_MTK=y
CONFIG_BT_HCIBTUSB=y
CONFIG_BT_HCIBTUSB_AUTOSUSPEND=y
CONFIG_BT_HCIBTUSB_POLL_SYNC=y
CONFIG_BT_HCIBTUSB_BCM=y
CONFIG_BT_HCIBTUSB_MTK=y
CONFIG_BT_HCIBTUSB_RTL=y
# CONFIG_BT_HCIBTSDIO is not set
CONFIG_BT_HCIUART=y
CONFIG_BT_HCIUART_SERDEV=y
CONFIG_BT_HCIUART_H4=y
# CONFIG_BT_HCIUART_NOKIA is not set
CONFIG_BT_HCIUART_BCSP=y
# CONFIG_BT_HCIUART_ATH3K is not set
CONFIG_BT_HCIUART_LL=y
CONFIG_BT_HCIUART_3WIRE=y
# CONFIG_BT_HCIUART_INTEL is not set
# CONFIG_BT_HCIUART_BCM is not set
# CONFIG_BT_HCIUART_RTL is not set
CONFIG_BT_HCIUART_QCA=y
CONFIG_BT_HCIUART_AG6XX=y
CONFIG_BT_HCIUART_MRVL=y
# CONFIG_BT_HCIUART_AML is not set
CONFIG_BT_HCIBCM203X=y
# CONFIG_BT_HCIBCM4377 is not set
CONFIG_BT_HCIBPA10X=y
CONFIG_BT_HCIBFUSB=y
# CONFIG_BT_HCIDTL1 is not set
# CONFIG_BT_HCIBT3C is not set
# CONFIG_BT_HCIBLUECARD is not set
CONFIG_BT_HCIVHCI=y
CONFIG_BT_MRVL=y
CONFIG_BT_MRVL_SDIO=y
CONFIG_BT_ATH3K=y
CONFIG_BT_MTKSDIO=y
CONFIG_BT_MTKUART=y
# CONFIG_BT_VIRTIO is not set
# CONFIG_BT_NXPUART is not set
# CONFIG_BT_INTEL_PCIE is not set
# end of Bluetooth device drivers

CONFIG_AF_RXRPC=y
CONFIG_AF_RXRPC_IPV6=y
# CONFIG_AF_RXRPC_INJECT_LOSS is not set
# CONFIG_AF_RXRPC_INJECT_RX_DELAY is not set
# CONFIG_AF_RXRPC_DEBUG is not set
CONFIG_RXKAD=y
# CONFIG_RXGK is not set
# CONFIG_RXPERF is not set
CONFIG_AF_KCM=y
CONFIG_STREAM_PARSER=y
CONFIG_MCTP=y
CONFIG_FIB_RULES=y
CONFIG_WIRELESS=y
CONFIG_WEXT_CORE=y
CONFIG_WEXT_PROC=y
CONFIG_CFG80211=y
# CONFIG_NL80211_TESTMODE is not set
# CONFIG_CFG80211_DEVELOPER_WARNINGS is not set
# CONFIG_CFG80211_CERTIFICATION_ONUS is not set
CONFIG_CFG80211_REQUIRE_SIGNED_REGDB=y
CONFIG_CFG80211_USE_KERNEL_REGDB_KEYS=y
CONFIG_CFG80211_DEFAULT_PS=y
CONFIG_CFG80211_DEBUGFS=y
CONFIG_CFG80211_CRDA_SUPPORT=y
CONFIG_CFG80211_WEXT=y
CONFIG_MAC80211=y
CONFIG_MAC80211_HAS_RC=y
CONFIG_MAC80211_RC_MINSTREL=y
CONFIG_MAC80211_RC_DEFAULT_MINSTREL=y
CONFIG_MAC80211_RC_DEFAULT="minstrel_ht"
CONFIG_MAC80211_MESH=y
CONFIG_MAC80211_LEDS=y
CONFIG_MAC80211_DEBUGFS=y
# CONFIG_MAC80211_MESSAGE_TRACING is not set
# CONFIG_MAC80211_DEBUG_MENU is not set
CONFIG_MAC80211_STA_HASH_MAX_SIZE=0
CONFIG_RFKILL=y
CONFIG_RFKILL_LEDS=y
CONFIG_RFKILL_INPUT=y
# CONFIG_RFKILL_GPIO is not set
CONFIG_NET_9P=y
CONFIG_NET_9P_FD=y
CONFIG_NET_9P_VIRTIO=y
# CONFIG_NET_9P_USBG is not set
CONFIG_NET_9P_RDMA=y
# CONFIG_NET_9P_DEBUG is not set
CONFIG_CAIF=y
CONFIG_CAIF_DEBUG=y
CONFIG_CAIF_NETDEV=y
CONFIG_CAIF_USB=y
CONFIG_CEPH_LIB=y
# CONFIG_CEPH_LIB_PRETTYDEBUG is not set
CONFIG_CEPH_LIB_USE_DNS_RESOLVER=y
CONFIG_NFC=y
CONFIG_NFC_DIGITAL=y
CONFIG_NFC_NCI=y
# CONFIG_NFC_NCI_SPI is not set
CONFIG_NFC_NCI_UART=y
CONFIG_NFC_HCI=y
CONFIG_NFC_SHDLC=y

#
# Near Field Communication (NFC) devices
#
# CONFIG_NFC_TRF7970A is not set
# CONFIG_NFC_MEI_PHY is not set
CONFIG_NFC_SIM=y
CONFIG_NFC_PORT100=y
CONFIG_NFC_VIRTUAL_NCI=y
CONFIG_NFC_FDP=y
# CONFIG_NFC_FDP_I2C is not set
# CONFIG_NFC_PN544_I2C is not set
CONFIG_NFC_PN533=y
CONFIG_NFC_PN533_USB=y
# CONFIG_NFC_PN533_I2C is not set
# CONFIG_NFC_PN532_UART is not set
# CONFIG_NFC_MICROREAD_I2C is not set
CONFIG_NFC_MRVL=y
CONFIG_NFC_MRVL_USB=y
# CONFIG_NFC_MRVL_UART is not set
# CONFIG_NFC_MRVL_I2C is not set
# CONFIG_NFC_ST21NFCA_I2C is not set
# CONFIG_NFC_ST_NCI_I2C is not set
# CONFIG_NFC_ST_NCI_SPI is not set
# CONFIG_NFC_NXP_NCI is not set
# CONFIG_NFC_S3FWRN5_I2C is not set
# CONFIG_NFC_S3FWRN82_UART is not set
# CONFIG_NFC_ST95HF is not set
# end of Near Field Communication (NFC) devices

CONFIG_PSAMPLE=y
CONFIG_NET_IFE=y
CONFIG_LWTUNNEL=y
CONFIG_LWTUNNEL_BPF=y
CONFIG_DST_CACHE=y
CONFIG_GRO_CELLS=y
CONFIG_SOCK_VALIDATE_XMIT=y
CONFIG_NET_SELFTESTS=y
CONFIG_NET_SOCK_MSG=y
CONFIG_NET_DEVLINK=y
CONFIG_PAGE_POOL=y
# CONFIG_PAGE_POOL_STATS is not set
CONFIG_FAILOVER=y
CONFIG_ETHTOOL_NETLINK=y

#
# Device Drivers
#
CONFIG_HAVE_PCI=y
CONFIG_GENERIC_PCI_IOMAP=y
CONFIG_PCI=y
CONFIG_PCI_DOMAINS=y
CONFIG_PCIEPORTBUS=y
CONFIG_HOTPLUG_PCI_PCIE=y
CONFIG_PCIEAER=y
# CONFIG_PCIEAER_INJECT is not set
# CONFIG_PCIE_ECRC is not set
CONFIG_PCIEASPM=y
CONFIG_PCIEASPM_DEFAULT=y
# CONFIG_PCIEASPM_POWERSAVE is not set
# CONFIG_PCIEASPM_POWER_SUPERSAVE is not set
# CONFIG_PCIEASPM_PERFORMANCE is not set
CONFIG_PCIE_PME=y
# CONFIG_PCIE_DPC is not set
# CONFIG_PCIE_PTM is not set
CONFIG_PCI_MSI=y
CONFIG_PCI_QUIRKS=y
# CONFIG_PCI_DEBUG is not set
# CONFIG_PCI_REALLOC_ENABLE_AUTO is not set
# CONFIG_PCI_STUB is not set
# CONFIG_PCI_PF_STUB is not set
CONFIG_PCI_ATS=y
# CONFIG_PCI_DOE is not set
CONFIG_PCI_ECAM=y
CONFIG_PCI_LOCKLESS_CONFIG=y
CONFIG_PCI_IOV=y
# CONFIG_PCI_NPEM is not set
CONFIG_PCI_PRI=y
CONFIG_PCI_PASID=y
# CONFIG_PCIE_TPH is not set
# CONFIG_PCI_P2PDMA is not set
CONFIG_PCI_LABEL=y
# CONFIG_PCI_DYNAMIC_OF_NODES is not set
# CONFIG_PCIE_BUS_TUNE_OFF is not set
CONFIG_PCIE_BUS_DEFAULT=y
# CONFIG_PCIE_BUS_SAFE is not set
# CONFIG_PCIE_BUS_PERFORMANCE is not set
# CONFIG_PCIE_BUS_PEER2PEER is not set
CONFIG_VGA_ARB=y
CONFIG_VGA_ARB_MAX_GPUS=16
CONFIG_HOTPLUG_PCI=y
# CONFIG_HOTPLUG_PCI_ACPI is not set
# CONFIG_HOTPLUG_PCI_CPCI is not set
# CONFIG_HOTPLUG_PCI_OCTEONEP is not set
# CONFIG_HOTPLUG_PCI_SHPC is not set

#
# PCI controller drivers
#
CONFIG_PCI_HOST_COMMON=y
# CONFIG_PCI_FTPCI100 is not set
CONFIG_PCI_HOST_GENERIC=y
# CONFIG_VMD is not set
# CONFIG_PCIE_XILINX is not set

#
# Cadence-based PCIe controllers
#
# CONFIG_PCIE_CADENCE_PLAT_HOST is not set
# CONFIG_PCIE_CADENCE_PLAT_EP is not set
# end of Cadence-based PCIe controllers

#
# DesignWare-based PCIe controllers
#
# CONFIG_PCI_MESON is not set
# CONFIG_PCIE_INTEL_GW is not set
# CONFIG_PCIE_DW_PLAT_HOST is not set
# CONFIG_PCIE_DW_PLAT_EP is not set
# end of DesignWare-based PCIe controllers

#
# Mobiveil-based PCIe controllers
#
# end of Mobiveil-based PCIe controllers

#
# PLDA-based PCIe controllers
#
# CONFIG_PCIE_MICROCHIP_HOST is not set
# end of PLDA-based PCIe controllers
# end of PCI controller drivers

#
# PCI Endpoint
#
CONFIG_PCI_ENDPOINT=y
# CONFIG_PCI_ENDPOINT_CONFIGFS is not set
# CONFIG_PCI_ENDPOINT_MSI_DOORBELL is not set
# CONFIG_PCI_EPF_TEST is not set
# CONFIG_PCI_EPF_NTB is not set
# end of PCI Endpoint

#
# PCI switch controller drivers
#
# CONFIG_PCI_SW_SWITCHTEC is not set
# end of PCI switch controller drivers

# CONFIG_PCI_PWRCTRL_SLOT is not set
# CONFIG_CXL_BUS is not set
CONFIG_PCCARD=y
CONFIG_PCMCIA=y
CONFIG_PCMCIA_LOAD_CIS=y
CONFIG_CARDBUS=y

#
# PC-card bridges
#
CONFIG_YENTA=y
CONFIG_YENTA_O2=y
CONFIG_YENTA_RICOH=y
CONFIG_YENTA_TI=y
CONFIG_YENTA_ENE_TUNE=y
CONFIG_YENTA_TOSHIBA=y
# CONFIG_PD6729 is not set
# CONFIG_I82092 is not set
CONFIG_PCCARD_NONSTATIC=y
# CONFIG_RAPIDIO is not set
# CONFIG_PC104 is not set

#
# Generic Driver Options
#
CONFIG_AUXILIARY_BUS=y
CONFIG_UEVENT_HELPER=y
CONFIG_UEVENT_HELPER_PATH="/sbin/hotplug"
CONFIG_DEVTMPFS=y
CONFIG_DEVTMPFS_MOUNT=y
# CONFIG_DEVTMPFS_SAFE is not set
CONFIG_STANDALONE=y
CONFIG_PREVENT_FIRMWARE_BUILD=y

#
# Firmware loader
#
CONFIG_FW_LOADER=y
# CONFIG_FW_LOADER_DEBUG is not set
CONFIG_FW_LOADER_PAGED_BUF=y
CONFIG_FW_LOADER_SYSFS=y
CONFIG_EXTRA_FIRMWARE=""
CONFIG_FW_LOADER_USER_HELPER=y
CONFIG_FW_LOADER_USER_HELPER_FALLBACK=y
CONFIG_FW_LOADER_COMPRESS=y
# CONFIG_FW_LOADER_COMPRESS_XZ is not set
# CONFIG_FW_LOADER_COMPRESS_ZSTD is not set
CONFIG_FW_CACHE=y
# CONFIG_FW_UPLOAD is not set
# end of Firmware loader

CONFIG_WANT_DEV_COREDUMP=y
CONFIG_ALLOW_DEV_COREDUMP=y
CONFIG_DEV_COREDUMP=y
# CONFIG_DEBUG_DRIVER is not set
CONFIG_DEBUG_DEVRES=y
# CONFIG_DEBUG_TEST_DRIVER_REMOVE is not set
# CONFIG_TEST_ASYNC_DRIVER_PROBE is not set
CONFIG_GENERIC_CPU_DEVICES=y
CONFIG_GENERIC_CPU_AUTOPROBE=y
CONFIG_GENERIC_CPU_VULNERABILITIES=y
CONFIG_REGMAP=y
CONFIG_REGMAP_I2C=y
CONFIG_REGMAP_SPI=y
CONFIG_REGMAP_MMIO=y
CONFIG_REGMAP_IRQ=y
CONFIG_DMA_SHARED_BUFFER=y
# CONFIG_DMA_FENCE_TRACE is not set
# CONFIG_FW_DEVLINK_SYNC_STATE_TIMEOUT is not set
# end of Generic Driver Options

#
# Bus devices
#
# CONFIG_MOXTET is not set
CONFIG_MHI_BUS=y
# CONFIG_MHI_BUS_DEBUG is not set
# CONFIG_MHI_BUS_PCI_GENERIC is not set
# CONFIG_MHI_BUS_EP is not set
# end of Bus devices

#
# Cache Drivers
#
# end of Cache Drivers

CONFIG_CONNECTOR=y
CONFIG_PROC_EVENTS=y

#
# Firmware Drivers
#

#
# ARM System Control and Management Interface Protocol
#
# end of ARM System Control and Management Interface Protocol

# CONFIG_EDD is not set
CONFIG_FIRMWARE_MEMMAP=y
CONFIG_DMIID=y
# CONFIG_DMI_SYSFS is not set
CONFIG_DMI_SCAN_MACHINE_NON_EFI_FALLBACK=y
# CONFIG_ISCSI_IBFT is not set
# CONFIG_FW_CFG_SYSFS is not set
CONFIG_SYSFB=y
# CONFIG_SYSFB_SIMPLEFB is not set
CONFIG_GOOGLE_FIRMWARE=y
# CONFIG_GOOGLE_SMI is not set
# CONFIG_GOOGLE_CBMEM is not set
CONFIG_GOOGLE_COREBOOT_TABLE=y
CONFIG_GOOGLE_MEMCONSOLE=y
# CONFIG_GOOGLE_MEMCONSOLE_X86_LEGACY is not set
# CONFIG_GOOGLE_FRAMEBUFFER_COREBOOT is not set
CONFIG_GOOGLE_MEMCONSOLE_COREBOOT=y
CONFIG_GOOGLE_VPD=y

#
# Qualcomm firmware drivers
#
# end of Qualcomm firmware drivers

#
# Tegra firmware driver
#
# end of Tegra firmware driver
# end of Firmware Drivers

# CONFIG_FWCTL is not set
CONFIG_GNSS=y
# CONFIG_GNSS_MTK_SERIAL is not set
# CONFIG_GNSS_SIRF_SERIAL is not set
# CONFIG_GNSS_UBX_SERIAL is not set
CONFIG_GNSS_USB=y
CONFIG_MTD=y
# CONFIG_MTD_TESTS is not set

#
# Partition parsers
#
# CONFIG_MTD_CMDLINE_PARTS is not set
# CONFIG_MTD_OF_PARTS is not set
# CONFIG_MTD_REDBOOT_PARTS is not set
# end of Partition parsers

#
# User Modules And Translation Layers
#
CONFIG_MTD_BLKDEVS=y
CONFIG_MTD_BLOCK=y

#
# Note that in some cases UBI block is preferred. See MTD_UBI_BLOCK.
#
CONFIG_FTL=y
# CONFIG_NFTL is not set
# CONFIG_INFTL is not set
# CONFIG_RFD_FTL is not set
# CONFIG_SSFDC is not set
# CONFIG_SM_FTL is not set
# CONFIG_MTD_OOPS is not set
# CONFIG_MTD_SWAP is not set
# CONFIG_MTD_PARTITIONED_MASTER is not set

#
# RAM/ROM/Flash chip drivers
#
# CONFIG_MTD_CFI is not set
# CONFIG_MTD_JEDECPROBE is not set
CONFIG_MTD_MAP_BANK_WIDTH_1=y
CONFIG_MTD_MAP_BANK_WIDTH_2=y
CONFIG_MTD_MAP_BANK_WIDTH_4=y
CONFIG_MTD_CFI_I1=y
CONFIG_MTD_CFI_I2=y
# CONFIG_MTD_RAM is not set
# CONFIG_MTD_ROM is not set
# CONFIG_MTD_ABSENT is not set
# end of RAM/ROM/Flash chip drivers

#
# Mapping drivers for chip access
#
# CONFIG_MTD_COMPLEX_MAPPINGS is not set
# CONFIG_MTD_PLATRAM is not set
# end of Mapping drivers for chip access

#
# Self-contained MTD device drivers
#
# CONFIG_MTD_PMC551 is not set
# CONFIG_MTD_DATAFLASH is not set
# CONFIG_MTD_MCHP23K256 is not set
# CONFIG_MTD_MCHP48L640 is not set
# CONFIG_MTD_SST25L is not set
CONFIG_MTD_SLRAM=y
CONFIG_MTD_PHRAM=y
CONFIG_MTD_MTDRAM=y
CONFIG_MTDRAM_TOTAL_SIZE=128
CONFIG_MTDRAM_ERASE_SIZE=4
CONFIG_MTD_BLOCK2MTD=y
# CONFIG_MTD_INTEL_DG is not set

#
# Disk-On-Chip Device Drivers
#
# CONFIG_MTD_DOCG3 is not set
# end of Self-contained MTD device drivers

#
# NAND
#
# CONFIG_MTD_ONENAND is not set
# CONFIG_MTD_RAW_NAND is not set
# CONFIG_MTD_SPI_NAND is not set

#
# ECC engine support
#
# CONFIG_MTD_NAND_ECC_SW_HAMMING is not set
# CONFIG_MTD_NAND_ECC_SW_BCH is not set
# CONFIG_MTD_NAND_ECC_MXIC is not set
# end of ECC engine support
# end of NAND

#
# LPDDR & LPDDR2 PCM memory drivers
#
# CONFIG_MTD_LPDDR is not set
# end of LPDDR & LPDDR2 PCM memory drivers

# CONFIG_MTD_SPI_NOR is not set
CONFIG_MTD_UBI=y
CONFIG_MTD_UBI_WL_THRESHOLD=4096
CONFIG_MTD_UBI_BEB_LIMIT=20
# CONFIG_MTD_UBI_FASTMAP is not set
# CONFIG_MTD_UBI_GLUEBI is not set
# CONFIG_MTD_UBI_BLOCK is not set
# CONFIG_MTD_UBI_FAULT_INJECTION is not set
# CONFIG_MTD_UBI_NVMEM is not set
# CONFIG_MTD_HYPERBUS is not set
CONFIG_DTC=y
CONFIG_OF=y
# CONFIG_OF_UNITTEST is not set
CONFIG_OF_FLATTREE=y
CONFIG_OF_EARLY_FLATTREE=y
CONFIG_OF_KOBJ=y
CONFIG_OF_ADDRESS=y
CONFIG_OF_IRQ=y
CONFIG_OF_RESERVED_MEM=y
# CONFIG_OF_OVERLAY is not set
CONFIG_OF_NUMA=y
CONFIG_ARCH_MIGHT_HAVE_PC_PARPORT=y
CONFIG_PARPORT=y
# CONFIG_PARPORT_PC is not set
# CONFIG_PARPORT_1284 is not set
CONFIG_PARPORT_NOT_PC=y
CONFIG_PNP=y
CONFIG_PNP_DEBUG_MESSAGES=y

#
# Protocols
#
CONFIG_PNPACPI=y
CONFIG_BLK_DEV=y
CONFIG_BLK_DEV_NULL_BLK=y
CONFIG_BLK_DEV_NULL_BLK_FAULT_INJECTION=y
# CONFIG_BLK_DEV_FD is not set
CONFIG_CDROM=y
# CONFIG_BLK_DEV_PCIESSD_MTIP32XX is not set
CONFIG_ZRAM=y
# CONFIG_ZRAM_BACKEND_LZ4 is not set
# CONFIG_ZRAM_BACKEND_LZ4HC is not set
# CONFIG_ZRAM_BACKEND_ZSTD is not set
# CONFIG_ZRAM_BACKEND_DEFLATE is not set
# CONFIG_ZRAM_BACKEND_842 is not set
CONFIG_ZRAM_BACKEND_FORCE_LZO=y
CONFIG_ZRAM_BACKEND_LZO=y
# CONFIG_ZRAM_DEF_COMP_LZORLE is not set
CONFIG_ZRAM_DEF_COMP_LZO=y
CONFIG_ZRAM_DEF_COMP="lzo"
# CONFIG_ZRAM_WRITEBACK is not set
# CONFIG_ZRAM_TRACK_ENTRY_ACTIME is not set
# CONFIG_ZRAM_MEMORY_TRACKING is not set
# CONFIG_ZRAM_MULTI_COMP is not set
CONFIG_BLK_DEV_LOOP=y
CONFIG_BLK_DEV_LOOP_MIN_COUNT=16
# CONFIG_BLK_DEV_DRBD is not set
CONFIG_BLK_DEV_NBD=y
CONFIG_BLK_DEV_RAM=y
CONFIG_BLK_DEV_RAM_COUNT=16
CONFIG_BLK_DEV_RAM_SIZE=4096
CONFIG_ATA_OVER_ETH=y
CONFIG_VIRTIO_BLK=y
# CONFIG_BLK_DEV_RBD is not set
# CONFIG_BLK_DEV_UBLK is not set
CONFIG_BLK_DEV_RNBD=y
CONFIG_BLK_DEV_RNBD_CLIENT=y
# CONFIG_BLK_DEV_ZONED_LOOP is not set

#
# NVME Support
#
CONFIG_NVME_CORE=y
CONFIG_BLK_DEV_NVME=y
CONFIG_NVME_MULTIPATH=y
# CONFIG_NVME_VERBOSE_ERRORS is not set
# CONFIG_NVME_HWMON is not set
CONFIG_NVME_FABRICS=y
CONFIG_NVME_RDMA=y
CONFIG_NVME_FC=y
CONFIG_NVME_TCP=y
# CONFIG_NVME_TCP_TLS is not set
# CONFIG_NVME_HOST_AUTH is not set
CONFIG_NVME_TARGET=y
# CONFIG_NVME_TARGET_DEBUGFS is not set
# CONFIG_NVME_TARGET_PASSTHRU is not set
CONFIG_NVME_TARGET_LOOP=y
CONFIG_NVME_TARGET_RDMA=y
CONFIG_NVME_TARGET_FC=y
CONFIG_NVME_TARGET_FCLOOP=y
CONFIG_NVME_TARGET_TCP=y
# CONFIG_NVME_TARGET_TCP_TLS is not set
# CONFIG_NVME_TARGET_AUTH is not set
# CONFIG_NVME_TARGET_PCI_EPF is not set
# end of NVME Support

#
# Misc devices
#
# CONFIG_AD525X_DPOT is not set
# CONFIG_DUMMY_IRQ is not set
# CONFIG_IBM_ASM is not set
# CONFIG_PHANTOM is not set
# CONFIG_RPMB is not set
# CONFIG_TI_FPC202 is not set
# CONFIG_TIFM_CORE is not set
# CONFIG_ICS932S401 is not set
# CONFIG_ENCLOSURE_SERVICES is not set
# CONFIG_HP_ILO is not set
# CONFIG_APDS9802ALS is not set
# CONFIG_ISL29003 is not set
# CONFIG_ISL29020 is not set
# CONFIG_SENSORS_TSL2550 is not set
# CONFIG_SENSORS_BH1770 is not set
# CONFIG_SENSORS_APDS990X is not set
# CONFIG_HMC6352 is not set
# CONFIG_DS1682 is not set
# CONFIG_VMWARE_BALLOON is not set
# CONFIG_LATTICE_ECP3_CONFIG is not set
# CONFIG_SRAM is not set
# CONFIG_DW_XDATA_PCIE is not set
# CONFIG_PCI_ENDPOINT_TEST is not set
# CONFIG_XILINX_SDFEC is not set
CONFIG_MISC_RTSX=y
# CONFIG_HISI_HIKEY_USB is not set
# CONFIG_OPEN_DICE is not set
# CONFIG_NTSYNC is not set
# CONFIG_VCPU_STALL_DETECTOR is not set
# CONFIG_NSM is not set
# CONFIG_C2PORT is not set

#
# EEPROM support
#
# CONFIG_EEPROM_AT24 is not set
# CONFIG_EEPROM_AT25 is not set
# CONFIG_EEPROM_MAX6875 is not set
CONFIG_EEPROM_93CX6=y
# CONFIG_EEPROM_93XX46 is not set
# CONFIG_EEPROM_IDT_89HPESX is not set
# CONFIG_EEPROM_EE1004 is not set
# end of EEPROM support

# CONFIG_CB710_CORE is not set
# CONFIG_SENSORS_LIS3_I2C is not set
# CONFIG_ALTERA_STAPL is not set
CONFIG_INTEL_MEI=y
CONFIG_INTEL_MEI_ME=y
# CONFIG_INTEL_MEI_TXE is not set
# CONFIG_INTEL_MEI_GSC is not set
# CONFIG_INTEL_MEI_VSC_HW is not set
# CONFIG_INTEL_MEI_HDCP is not set
# CONFIG_INTEL_MEI_PXP is not set
# CONFIG_INTEL_MEI_GSC_PROXY is not set
CONFIG_VMWARE_VMCI=y
# CONFIG_GENWQE is not set
# CONFIG_BCM_VK is not set
# CONFIG_MISC_ALCOR_PCI is not set
# CONFIG_MISC_RTSX_PCI is not set
CONFIG_MISC_RTSX_USB=y
# CONFIG_UACCE is not set
# CONFIG_PVPANIC is not set
# CONFIG_GP_PCI1XXXX is not set
# CONFIG_KEBA_CP500 is not set
# CONFIG_AMD_SBRMI_I2C is not set
# end of Misc devices

#
# SCSI device support
#
CONFIG_SCSI_MOD=y
CONFIG_RAID_ATTRS=y
CONFIG_SCSI_COMMON=y
CONFIG_SCSI=y
CONFIG_SCSI_DMA=y
CONFIG_SCSI_NETLINK=y
CONFIG_SCSI_PROC_FS=y

#
# SCSI support type (disk, tape, CD-ROM)
#
CONFIG_BLK_DEV_SD=y
CONFIG_CHR_DEV_ST=y
CONFIG_BLK_DEV_SR=y
CONFIG_CHR_DEV_SG=y
CONFIG_BLK_DEV_BSG=y
# CONFIG_CHR_DEV_SCH is not set
CONFIG_SCSI_CONSTANTS=y
CONFIG_SCSI_LOGGING=y
CONFIG_SCSI_SCAN_ASYNC=y

#
# SCSI Transports
#
CONFIG_SCSI_SPI_ATTRS=y
CONFIG_SCSI_FC_ATTRS=y
CONFIG_SCSI_ISCSI_ATTRS=y
CONFIG_SCSI_SAS_ATTRS=y
CONFIG_SCSI_SAS_LIBSAS=y
CONFIG_SCSI_SAS_ATA=y
# CONFIG_SCSI_SAS_HOST_SMP is not set
CONFIG_SCSI_SRP_ATTRS=y
# end of SCSI Transports

CONFIG_SCSI_LOWLEVEL=y
# CONFIG_ISCSI_TCP is not set
# CONFIG_ISCSI_BOOT_SYSFS is not set
# CONFIG_SCSI_CXGB3_ISCSI is not set
# CONFIG_SCSI_CXGB4_ISCSI is not set
# CONFIG_SCSI_BNX2_ISCSI is not set
# CONFIG_BE2ISCSI is not set
# CONFIG_BLK_DEV_3W_XXXX_RAID is not set
CONFIG_SCSI_HPSA=y
# CONFIG_SCSI_3W_9XXX is not set
# CONFIG_SCSI_3W_SAS is not set
# CONFIG_SCSI_ACARD is not set
# CONFIG_SCSI_AACRAID is not set
# CONFIG_SCSI_AIC7XXX is not set
# CONFIG_SCSI_AIC79XX is not set
# CONFIG_SCSI_AIC94XX is not set
# CONFIG_SCSI_MVSAS is not set
# CONFIG_SCSI_MVUMI is not set
# CONFIG_SCSI_ADVANSYS is not set
# CONFIG_SCSI_ARCMSR is not set
# CONFIG_SCSI_ESAS2R is not set
# CONFIG_MEGARAID_NEWGEN is not set
# CONFIG_MEGARAID_LEGACY is not set
# CONFIG_MEGARAID_SAS is not set
# CONFIG_SCSI_MPT3SAS is not set
# CONFIG_SCSI_MPT2SAS is not set
# CONFIG_SCSI_MPI3MR is not set
# CONFIG_SCSI_SMARTPQI is not set
# CONFIG_SCSI_HPTIOP is not set
# CONFIG_SCSI_BUSLOGIC is not set
# CONFIG_SCSI_MYRB is not set
# CONFIG_SCSI_MYRS is not set
# CONFIG_VMWARE_PVSCSI is not set
# CONFIG_LIBFC is not set
# CONFIG_SCSI_SNIC is not set
# CONFIG_SCSI_DMX3191D is not set
# CONFIG_SCSI_FDOMAIN_PCI is not set
# CONFIG_SCSI_ISCI is not set
# CONFIG_SCSI_IPS is not set
# CONFIG_SCSI_INITIO is not set
# CONFIG_SCSI_INIA100 is not set
# CONFIG_SCSI_STEX is not set
# CONFIG_SCSI_SYM53C8XX_2 is not set
# CONFIG_SCSI_IPR is not set
# CONFIG_SCSI_QLOGIC_1280 is not set
# CONFIG_SCSI_QLA_FC is not set
# CONFIG_SCSI_QLA_ISCSI is not set
# CONFIG_SCSI_LPFC is not set
# CONFIG_SCSI_EFCT is not set
# CONFIG_SCSI_DC395x is not set
# CONFIG_SCSI_AM53C974 is not set
# CONFIG_SCSI_WD719X is not set
# CONFIG_SCSI_DEBUG is not set
# CONFIG_SCSI_PMCRAID is not set
# CONFIG_SCSI_PM8001 is not set
# CONFIG_SCSI_BFA_FC is not set
CONFIG_SCSI_VIRTIO=y
# CONFIG_SCSI_CHELSIO_FCOE is not set
# CONFIG_SCSI_LOWLEVEL_PCMCIA is not set
# CONFIG_SCSI_DH is not set
# end of SCSI device support

CONFIG_ATA=y
CONFIG_SATA_HOST=y
CONFIG_PATA_TIMINGS=y
CONFIG_ATA_VERBOSE_ERROR=y
CONFIG_ATA_FORCE=y
CONFIG_ATA_ACPI=y
# CONFIG_SATA_ZPODD is not set
CONFIG_SATA_PMP=y

#
# Controllers with non-SFF native interface
#
CONFIG_SATA_AHCI=y
CONFIG_SATA_MOBILE_LPM_POLICY=3
# CONFIG_SATA_AHCI_PLATFORM is not set
# CONFIG_AHCI_DWC is not set
# CONFIG_AHCI_CEVA is not set
# CONFIG_SATA_INIC162X is not set
# CONFIG_SATA_ACARD_AHCI is not set
# CONFIG_SATA_SIL24 is not set
CONFIG_ATA_SFF=y

#
# SFF controllers with custom DMA interface
#
# CONFIG_PDC_ADMA is not set
# CONFIG_SATA_QSTOR is not set
# CONFIG_SATA_SX4 is not set
CONFIG_ATA_BMDMA=y

#
# SATA SFF controllers with BMDMA
#
CONFIG_ATA_PIIX=y
# CONFIG_SATA_DWC is not set
# CONFIG_SATA_MV is not set
# CONFIG_SATA_NV is not set
# CONFIG_SATA_PROMISE is not set
# CONFIG_SATA_SIL is not set
# CONFIG_SATA_SIS is not set
# CONFIG_SATA_SVW is not set
# CONFIG_SATA_ULI is not set
# CONFIG_SATA_VIA is not set
# CONFIG_SATA_VITESSE is not set

#
# PATA SFF controllers with BMDMA
#
# CONFIG_PATA_ALI is not set
CONFIG_PATA_AMD=y
# CONFIG_PATA_ARTOP is not set
# CONFIG_PATA_ATIIXP is not set
# CONFIG_PATA_ATP867X is not set
# CONFIG_PATA_CMD64X is not set
# CONFIG_PATA_CYPRESS is not set
# CONFIG_PATA_EFAR is not set
# CONFIG_PATA_HPT366 is not set
# CONFIG_PATA_HPT37X is not set
# CONFIG_PATA_HPT3X2N is not set
# CONFIG_PATA_HPT3X3 is not set
# CONFIG_PATA_IT8213 is not set
# CONFIG_PATA_IT821X is not set
# CONFIG_PATA_JMICRON is not set
# CONFIG_PATA_MARVELL is not set
# CONFIG_PATA_NETCELL is not set
# CONFIG_PATA_NINJA32 is not set
# CONFIG_PATA_NS87415 is not set
CONFIG_PATA_OLDPIIX=y
# CONFIG_PATA_OPTIDMA is not set
# CONFIG_PATA_PDC2027X is not set
# CONFIG_PATA_PDC_OLD is not set
# CONFIG_PATA_RADISYS is not set
# CONFIG_PATA_RDC is not set
CONFIG_PATA_SCH=y
# CONFIG_PATA_SERVERWORKS is not set
# CONFIG_PATA_SIL680 is not set
# CONFIG_PATA_SIS is not set
# CONFIG_PATA_TOSHIBA is not set
# CONFIG_PATA_TRIFLEX is not set
# CONFIG_PATA_VIA is not set
# CONFIG_PATA_WINBOND is not set

#
# PIO-only SFF controllers
#
# CONFIG_PATA_CMD640_PCI is not set
# CONFIG_PATA_MPIIX is not set
# CONFIG_PATA_NS87410 is not set
# CONFIG_PATA_OPTI is not set
# CONFIG_PATA_PCMCIA is not set
# CONFIG_PATA_OF_PLATFORM is not set
# CONFIG_PATA_RZ1000 is not set

#
# Generic fallback / legacy drivers
#
# CONFIG_PATA_ACPI is not set
CONFIG_ATA_GENERIC=y
# CONFIG_PATA_LEGACY is not set
CONFIG_MD=y
CONFIG_BLK_DEV_MD=y
CONFIG_MD_AUTODETECT=y
CONFIG_MD_BITMAP_FILE=y
# CONFIG_MD_LINEAR is not set
CONFIG_MD_RAID0=y
CONFIG_MD_RAID1=y
CONFIG_MD_RAID10=y
CONFIG_MD_RAID456=y
# CONFIG_MD_CLUSTER is not set
CONFIG_BCACHE=y
# CONFIG_BCACHE_DEBUG is not set
# CONFIG_BCACHE_ASYNC_REGISTRATION is not set
CONFIG_BLK_DEV_DM_BUILTIN=y
CONFIG_BLK_DEV_DM=y
# CONFIG_DM_DEBUG is not set
CONFIG_DM_BUFIO=y
# CONFIG_DM_DEBUG_BLOCK_MANAGER_LOCKING is not set
CONFIG_DM_BIO_PRISON=y
CONFIG_DM_PERSISTENT_DATA=y
# CONFIG_DM_UNSTRIPED is not set
CONFIG_DM_CRYPT=y
CONFIG_DM_SNAPSHOT=y
CONFIG_DM_THIN_PROVISIONING=y
CONFIG_DM_CACHE=y
CONFIG_DM_CACHE_SMQ=y
CONFIG_DM_WRITECACHE=y
# CONFIG_DM_EBS is not set
# CONFIG_DM_ERA is not set
CONFIG_DM_CLONE=y
CONFIG_DM_MIRROR=y
# CONFIG_DM_LOG_USERSPACE is not set
CONFIG_DM_RAID=y
CONFIG_DM_ZERO=y
CONFIG_DM_MULTIPATH=y
CONFIG_DM_MULTIPATH_QL=y
CONFIG_DM_MULTIPATH_ST=y
# CONFIG_DM_MULTIPATH_HST is not set
# CONFIG_DM_MULTIPATH_IOA is not set
# CONFIG_DM_DELAY is not set
# CONFIG_DM_DUST is not set
# CONFIG_DM_INIT is not set
CONFIG_DM_UEVENT=y
CONFIG_DM_FLAKEY=y
CONFIG_DM_VERITY=y
# CONFIG_DM_VERITY_VERIFY_ROOTHASH_SIG is not set
CONFIG_DM_VERITY_FEC=y
# CONFIG_DM_SWITCH is not set
# CONFIG_DM_LOG_WRITES is not set
CONFIG_DM_INTEGRITY=y
CONFIG_DM_ZONED=y
CONFIG_DM_AUDIT=y
# CONFIG_DM_VDO is not set
CONFIG_TARGET_CORE=y
# CONFIG_TCM_IBLOCK is not set
# CONFIG_TCM_FILEIO is not set
# CONFIG_TCM_PSCSI is not set
# CONFIG_LOOPBACK_TARGET is not set
# CONFIG_ISCSI_TARGET is not set
# CONFIG_SBP_TARGET is not set
# CONFIG_REMOTE_TARGET is not set
# CONFIG_FUSION is not set

#
# IEEE 1394 (FireWire) support
#
CONFIG_FIREWIRE=y
CONFIG_FIREWIRE_OHCI=y
CONFIG_FIREWIRE_SBP2=y
CONFIG_FIREWIRE_NET=y
# CONFIG_FIREWIRE_NOSY is not set
# end of IEEE 1394 (FireWire) support

# CONFIG_MACINTOSH_DRIVERS is not set
CONFIG_NETDEVICES=y
CONFIG_MII=y
CONFIG_NET_CORE=y
CONFIG_BONDING=y
CONFIG_DUMMY=y
CONFIG_WIREGUARD=y
# CONFIG_WIREGUARD_DEBUG is not set
# CONFIG_OVPN is not set
CONFIG_EQUALIZER=y
CONFIG_NET_FC=y
CONFIG_IFB=y
CONFIG_NET_TEAM=y
CONFIG_NET_TEAM_MODE_BROADCAST=y
CONFIG_NET_TEAM_MODE_ROUNDROBIN=y
CONFIG_NET_TEAM_MODE_RANDOM=y
CONFIG_NET_TEAM_MODE_ACTIVEBACKUP=y
CONFIG_NET_TEAM_MODE_LOADBALANCE=y
CONFIG_MACVLAN=y
CONFIG_MACVTAP=y
CONFIG_IPVLAN_L3S=y
CONFIG_IPVLAN=y
CONFIG_IPVTAP=y
CONFIG_VXLAN=y
CONFIG_GENEVE=y
CONFIG_BAREUDP=y
CONFIG_GTP=y
# CONFIG_PFCP is not set
# CONFIG_AMT is not set
CONFIG_MACSEC=y
CONFIG_NETCONSOLE=y
# CONFIG_NETCONSOLE_DYNAMIC is not set
# CONFIG_NETCONSOLE_EXTENDED_LOG is not set
CONFIG_NETPOLL=y
CONFIG_NET_POLL_CONTROLLER=y
CONFIG_TUN=y
CONFIG_TAP=y
CONFIG_TUN_VNET_CROSS_LE=y
CONFIG_VETH=y
CONFIG_VIRTIO_NET=y
CONFIG_NLMON=y
# CONFIG_NETKIT is not set
CONFIG_NET_VRF=y
CONFIG_VSOCKMON=y
# CONFIG_MHI_NET is not set
# CONFIG_ARCNET is not set
CONFIG_ATM_DRIVERS=y
# CONFIG_ATM_DUMMY is not set
CONFIG_ATM_TCP=y
# CONFIG_ATM_LANAI is not set
# CONFIG_ATM_ENI is not set
# CONFIG_ATM_NICSTAR is not set
# CONFIG_ATM_IDT77252 is not set
# CONFIG_ATM_IA is not set
# CONFIG_ATM_FORE200E is not set
# CONFIG_ATM_HE is not set
# CONFIG_ATM_SOLOS is not set
CONFIG_CAIF_DRIVERS=y
CONFIG_CAIF_TTY=y
CONFIG_CAIF_VIRTIO=y

#
# Distributed Switch Architecture drivers
#
# CONFIG_B53 is not set
# CONFIG_NET_DSA_BCM_SF2 is not set
# CONFIG_NET_DSA_LOOP is not set
# CONFIG_NET_DSA_HIRSCHMANN_HELLCREEK is not set
# CONFIG_NET_DSA_LANTIQ_GSWIP is not set
# CONFIG_NET_DSA_MT7530 is not set
# CONFIG_NET_DSA_MV88E6060 is not set
# CONFIG_NET_DSA_MICROCHIP_KSZ_COMMON is not set
# CONFIG_NET_DSA_MV88E6XXX is not set
# CONFIG_NET_DSA_AR9331 is not set
# CONFIG_NET_DSA_QCA8K is not set
# CONFIG_NET_DSA_SJA1105 is not set
# CONFIG_NET_DSA_XRS700X_I2C is not set
# CONFIG_NET_DSA_XRS700X_MDIO is not set
# CONFIG_NET_DSA_REALTEK is not set
# CONFIG_NET_DSA_SMSC_LAN9303_I2C is not set
# CONFIG_NET_DSA_SMSC_LAN9303_MDIO is not set
# CONFIG_NET_DSA_VITESSE_VSC73XX_SPI is not set
# CONFIG_NET_DSA_VITESSE_VSC73XX_PLATFORM is not set
# end of Distributed Switch Architecture drivers

CONFIG_ETHERNET=y
# CONFIG_NET_VENDOR_3COM is not set
# CONFIG_NET_VENDOR_ADAPTEC is not set
# CONFIG_NET_VENDOR_AGERE is not set
# CONFIG_NET_VENDOR_ALACRITECH is not set
CONFIG_NET_VENDOR_ALTEON=y
# CONFIG_ACENIC is not set
# CONFIG_ALTERA_TSE is not set
CONFIG_NET_VENDOR_AMAZON=y
# CONFIG_ENA_ETHERNET is not set
# CONFIG_NET_VENDOR_AMD is not set
# CONFIG_NET_VENDOR_AQUANTIA is not set
# CONFIG_NET_VENDOR_ARC is not set
CONFIG_NET_VENDOR_ASIX=y
# CONFIG_SPI_AX88796C is not set
# CONFIG_NET_VENDOR_ATHEROS is not set
# CONFIG_CX_ECAT is not set
# CONFIG_NET_VENDOR_BROADCOM is not set
# CONFIG_NET_VENDOR_CADENCE is not set
# CONFIG_NET_VENDOR_CAVIUM is not set
# CONFIG_NET_VENDOR_CHELSIO is not set
CONFIG_NET_VENDOR_CISCO=y
# CONFIG_ENIC is not set
# CONFIG_NET_VENDOR_CORTINA is not set
CONFIG_NET_VENDOR_DAVICOM=y
# CONFIG_DM9051 is not set
# CONFIG_DNET is not set
# CONFIG_NET_VENDOR_DEC is not set
# CONFIG_NET_VENDOR_DLINK is not set
# CONFIG_NET_VENDOR_EMULEX is not set
CONFIG_NET_VENDOR_ENGLEDER=y
# CONFIG_TSNEP is not set
# CONFIG_NET_VENDOR_EZCHIP is not set
# CONFIG_NET_VENDOR_FUJITSU is not set
CONFIG_NET_VENDOR_FUNGIBLE=y
# CONFIG_FUN_ETH is not set
CONFIG_NET_VENDOR_GOOGLE=y
CONFIG_GVE=y
CONFIG_NET_VENDOR_HISILICON=y
# CONFIG_HIBMCGE is not set
# CONFIG_NET_VENDOR_HUAWEI is not set
CONFIG_NET_VENDOR_I825XX=y
CONFIG_NET_VENDOR_INTEL=y
CONFIG_E100=y
CONFIG_E1000=y
CONFIG_E1000E=y
CONFIG_E1000E_HWTS=y
# CONFIG_IGB is not set
# CONFIG_IGBVF is not set
# CONFIG_IXGBE is not set
# CONFIG_IXGBEVF is not set
# CONFIG_I40E is not set
# CONFIG_I40EVF is not set
# CONFIG_ICE is not set
# CONFIG_FM10K is not set
# CONFIG_IGC is not set
# CONFIG_IDPF is not set
# CONFIG_JME is not set
# CONFIG_NET_VENDOR_ADI is not set
CONFIG_NET_VENDOR_LITEX=y
# CONFIG_LITEX_LITEETH is not set
# CONFIG_NET_VENDOR_MARVELL is not set
CONFIG_NET_VENDOR_MELLANOX=y
# CONFIG_MLX4_EN is not set
CONFIG_MLX4_CORE=y
# CONFIG_MLX4_DEBUG is not set
# CONFIG_MLX4_CORE_GEN2 is not set
# CONFIG_MLX5_CORE is not set
# CONFIG_MLXSW_CORE is not set
# CONFIG_MLXFW is not set
CONFIG_NET_VENDOR_META=y
# CONFIG_FBNIC is not set
# CONFIG_NET_VENDOR_MICREL is not set
# CONFIG_NET_VENDOR_MICROCHIP is not set
# CONFIG_NET_VENDOR_MICROSEMI is not set
CONFIG_NET_VENDOR_MICROSOFT=y
# CONFIG_NET_VENDOR_MYRI is not set
# CONFIG_FEALNX is not set
# CONFIG_NET_VENDOR_NI is not set
# CONFIG_NET_VENDOR_NATSEMI is not set
# CONFIG_NET_VENDOR_NETERION is not set
# CONFIG_NET_VENDOR_NETRONOME is not set
# CONFIG_NET_VENDOR_NVIDIA is not set
# CONFIG_NET_VENDOR_OKI is not set
# CONFIG_ETHOC is not set
# CONFIG_NET_VENDOR_PACKET_ENGINES is not set
# CONFIG_NET_VENDOR_PENSANDO is not set
# CONFIG_NET_VENDOR_QLOGIC is not set
# CONFIG_NET_VENDOR_BROCADE is not set
# CONFIG_NET_VENDOR_QUALCOMM is not set
# CONFIG_NET_VENDOR_RDC is not set
# CONFIG_NET_VENDOR_REALTEK is not set
# CONFIG_NET_VENDOR_RENESAS is not set
# CONFIG_NET_VENDOR_ROCKER is not set
# CONFIG_NET_VENDOR_SAMSUNG is not set
# CONFIG_NET_VENDOR_SEEQ is not set
# CONFIG_NET_VENDOR_SILAN is not set
# CONFIG_NET_VENDOR_SIS is not set
# CONFIG_NET_VENDOR_SOLARFLARE is not set
# CONFIG_NET_VENDOR_SMSC is not set
# CONFIG_NET_VENDOR_SOCIONEXT is not set
# CONFIG_NET_VENDOR_STMICRO is not set
# CONFIG_NET_VENDOR_SUN is not set
# CONFIG_NET_VENDOR_SYNOPSYS is not set
# CONFIG_NET_VENDOR_TEHUTI is not set
# CONFIG_NET_VENDOR_TI is not set
CONFIG_NET_VENDOR_VERTEXCOM=y
# CONFIG_MSE102X is not set
# CONFIG_NET_VENDOR_VIA is not set
CONFIG_NET_VENDOR_WANGXUN=y
# CONFIG_NGBE is not set
# CONFIG_TXGBE is not set
# CONFIG_TXGBEVF is not set
# CONFIG_NGBEVF is not set
# CONFIG_NET_VENDOR_WIZNET is not set
# CONFIG_NET_VENDOR_XILINX is not set
# CONFIG_NET_VENDOR_XIRCOM is not set
CONFIG_FDDI=y
# CONFIG_DEFXX is not set
# CONFIG_SKFP is not set
# CONFIG_HIPPI is not set
CONFIG_PHYLINK=y
CONFIG_PHYLIB=y
CONFIG_SWPHY=y
# CONFIG_LED_TRIGGER_PHY is not set
CONFIG_PHYLIB_LEDS=y
CONFIG_FIXED_PHY=y
# CONFIG_SFP is not set

#
# MII PHY device drivers
#
# CONFIG_AS21XXX_PHY is not set
# CONFIG_AIR_EN8811H_PHY is not set
# CONFIG_AMD_PHY is not set
# CONFIG_ADIN_PHY is not set
# CONFIG_ADIN1100_PHY is not set
# CONFIG_AQUANTIA_PHY is not set
CONFIG_AX88796B_PHY=y
# CONFIG_BROADCOM_PHY is not set
# CONFIG_BCM54140_PHY is not set
# CONFIG_BCM7XXX_PHY is not set
# CONFIG_BCM84881_PHY is not set
# CONFIG_BCM87XX_PHY is not set
# CONFIG_CICADA_PHY is not set
# CONFIG_CORTINA_PHY is not set
# CONFIG_DAVICOM_PHY is not set
# CONFIG_ICPLUS_PHY is not set
# CONFIG_LXT_PHY is not set
# CONFIG_INTEL_XWAY_PHY is not set
# CONFIG_LSI_ET1011C_PHY is not set
# CONFIG_MARVELL_PHY is not set
# CONFIG_MARVELL_10G_PHY is not set
# CONFIG_MARVELL_88Q2XXX_PHY is not set
# CONFIG_MARVELL_88X2222_PHY is not set
# CONFIG_MAXLINEAR_GPHY is not set
# CONFIG_MAXLINEAR_86110_PHY is not set
# CONFIG_MEDIATEK_GE_PHY is not set
# CONFIG_MICREL_PHY is not set
# CONFIG_MICROCHIP_T1S_PHY is not set
CONFIG_MICROCHIP_PHY=y
# CONFIG_MICROCHIP_T1_PHY is not set
# CONFIG_MICROSEMI_PHY is not set
# CONFIG_MOTORCOMM_PHY is not set
# CONFIG_NATIONAL_PHY is not set
# CONFIG_NXP_CBTX_PHY is not set
# CONFIG_NXP_C45_TJA11XX_PHY is not set
# CONFIG_NXP_TJA11XX_PHY is not set
# CONFIG_NCN26000_PHY is not set
# CONFIG_AT803X_PHY is not set
# CONFIG_QCA83XX_PHY is not set
# CONFIG_QCA808X_PHY is not set
# CONFIG_QCA807X_PHY is not set
# CONFIG_QSEMI_PHY is not set
CONFIG_REALTEK_PHY=y
# CONFIG_REALTEK_PHY_HWMON is not set
# CONFIG_RENESAS_PHY is not set
# CONFIG_ROCKCHIP_PHY is not set
CONFIG_SMSC_PHY=y
# CONFIG_STE10XP is not set
# CONFIG_TERANETICS_PHY is not set
# CONFIG_DP83822_PHY is not set
# CONFIG_DP83TC811_PHY is not set
# CONFIG_DP83848_PHY is not set
# CONFIG_DP83867_PHY is not set
# CONFIG_DP83869_PHY is not set
# CONFIG_DP83TD510_PHY is not set
# CONFIG_DP83TG720_PHY is not set
# CONFIG_VITESSE_PHY is not set
# CONFIG_XILINX_GMII2RGMII is not set
# CONFIG_MICREL_KS8995MA is not set
# CONFIG_PSE_CONTROLLER is not set
CONFIG_CAN_DEV=y
CONFIG_CAN_VCAN=y
CONFIG_CAN_VXCAN=y
CONFIG_CAN_NETLINK=y
CONFIG_CAN_CALC_BITTIMING=y
CONFIG_CAN_RX_OFFLOAD=y
# CONFIG_CAN_CAN327 is not set
# CONFIG_CAN_FLEXCAN is not set
# CONFIG_CAN_GRCAN is not set
# CONFIG_CAN_KVASER_PCIEFD is not set
CONFIG_CAN_SLCAN=y
# CONFIG_CAN_C_CAN is not set
# CONFIG_CAN_CC770 is not set
# CONFIG_CAN_CTUCANFD_PCI is not set
# CONFIG_CAN_CTUCANFD_PLATFORM is not set
# CONFIG_CAN_ESD_402_PCI is not set
CONFIG_CAN_IFI_CANFD=y
# CONFIG_CAN_M_CAN is not set
# CONFIG_CAN_PEAK_PCIEFD is not set
# CONFIG_CAN_SJA1000 is not set
# CONFIG_CAN_SOFTING is not set

#
# CAN SPI interfaces
#
# CONFIG_CAN_HI311X is not set
# CONFIG_CAN_MCP251X is not set
# CONFIG_CAN_MCP251XFD is not set
# end of CAN SPI interfaces

#
# CAN USB interfaces
#
CONFIG_CAN_8DEV_USB=y
CONFIG_CAN_EMS_USB=y
CONFIG_CAN_ESD_USB=y
CONFIG_CAN_ETAS_ES58X=y
CONFIG_CAN_F81604=y
CONFIG_CAN_GS_USB=y
CONFIG_CAN_KVASER_USB=y
CONFIG_CAN_MCBA_USB=y
CONFIG_CAN_PEAK_USB=y
CONFIG_CAN_UCAN=y
# end of CAN USB interfaces

# CONFIG_CAN_DEBUG_DEVICES is not set

#
# MCTP Device Drivers
#
# CONFIG_MCTP_SERIAL is not set
# CONFIG_MCTP_TRANSPORT_I2C is not set
# CONFIG_MCTP_TRANSPORT_USB is not set
# end of MCTP Device Drivers

CONFIG_MDIO_BUS=y
CONFIG_FWNODE_MDIO=y
CONFIG_OF_MDIO=y
CONFIG_ACPI_MDIO=y
# CONFIG_MDIO_BITBANG is not set
# CONFIG_MDIO_BCM_UNIMAC is not set
# CONFIG_MDIO_HISI_FEMAC is not set
CONFIG_MDIO_MVUSB=y
# CONFIG_MDIO_MSCC_MIIM is not set
# CONFIG_MDIO_OCTEON is not set
# CONFIG_MDIO_IPQ4019 is not set
# CONFIG_MDIO_IPQ8064 is not set
# CONFIG_MDIO_THUNDER is not set

#
# MDIO Multiplexers
#
# CONFIG_MDIO_BUS_MUX_GPIO is not set
# CONFIG_MDIO_BUS_MUX_MULTIPLEXER is not set
# CONFIG_MDIO_BUS_MUX_MMIOREG is not set

#
# PCS device drivers
#
# CONFIG_PCS_XPCS is not set
# end of PCS device drivers

# CONFIG_PLIP is not set
CONFIG_PPP=y
CONFIG_PPP_BSDCOMP=y
CONFIG_PPP_DEFLATE=y
CONFIG_PPP_FILTER=y
CONFIG_PPP_MPPE=y
CONFIG_PPP_MULTILINK=y
CONFIG_PPPOATM=y
CONFIG_PPPOE=y
CONFIG_PPPOE_HASH_BITS_1=y
# CONFIG_PPPOE_HASH_BITS_2 is not set
# CONFIG_PPPOE_HASH_BITS_4 is not set
# CONFIG_PPPOE_HASH_BITS_8 is not set
CONFIG_PPPOE_HASH_BITS=1
CONFIG_PPTP=y
CONFIG_PPPOL2TP=y
CONFIG_PPP_ASYNC=y
CONFIG_PPP_SYNC_TTY=y
CONFIG_SLIP=y
CONFIG_SLHC=y
CONFIG_SLIP_COMPRESSED=y
CONFIG_SLIP_SMART=y
CONFIG_SLIP_MODE_SLIP6=y
CONFIG_USB_NET_DRIVERS=y
CONFIG_USB_CATC=y
CONFIG_USB_KAWETH=y
CONFIG_USB_PEGASUS=y
CONFIG_USB_RTL8150=y
CONFIG_USB_RTL8152=y
CONFIG_USB_LAN78XX=y
CONFIG_USB_USBNET=y
CONFIG_USB_NET_AX8817X=y
CONFIG_USB_NET_AX88179_178A=y
CONFIG_USB_NET_CDCETHER=y
CONFIG_USB_NET_CDC_EEM=y
CONFIG_USB_NET_CDC_NCM=y
CONFIG_USB_NET_HUAWEI_CDC_NCM=y
CONFIG_USB_NET_CDC_MBIM=y
CONFIG_USB_NET_DM9601=y
CONFIG_USB_NET_SR9700=y
CONFIG_USB_NET_SR9800=y
CONFIG_USB_NET_SMSC75XX=y
CONFIG_USB_NET_SMSC95XX=y
CONFIG_USB_NET_GL620A=y
CONFIG_USB_NET_NET1080=y
CONFIG_USB_NET_PLUSB=y
CONFIG_USB_NET_MCS7830=y
CONFIG_USB_NET_RNDIS_HOST=y
CONFIG_USB_NET_CDC_SUBSET_ENABLE=y
CONFIG_USB_NET_CDC_SUBSET=y
CONFIG_USB_ALI_M5632=y
CONFIG_USB_AN2720=y
CONFIG_USB_BELKIN=y
CONFIG_USB_ARMLINUX=y
CONFIG_USB_EPSON2888=y
CONFIG_USB_KC2190=y
CONFIG_USB_NET_ZAURUS=y
CONFIG_USB_NET_CX82310_ETH=y
CONFIG_USB_NET_KALMIA=y
CONFIG_USB_NET_QMI_WWAN=y
CONFIG_USB_HSO=y
CONFIG_USB_NET_INT51X1=y
CONFIG_USB_CDC_PHONET=y
CONFIG_USB_IPHETH=y
CONFIG_USB_SIERRA_NET=y
CONFIG_USB_VL600=y
CONFIG_USB_NET_CH9200=y
CONFIG_USB_NET_AQC111=y
CONFIG_USB_RTL8153_ECM=y
CONFIG_WLAN=y
CONFIG_WLAN_VENDOR_ADMTEK=y
# CONFIG_ADM8211 is not set
CONFIG_ATH_COMMON=y
CONFIG_WLAN_VENDOR_ATH=y
# CONFIG_ATH_DEBUG is not set
# CONFIG_ATH5K is not set
# CONFIG_ATH5K_PCI is not set
CONFIG_ATH9K_HW=y
CONFIG_ATH9K_COMMON=y
CONFIG_ATH9K_COMMON_DEBUG=y
CONFIG_ATH9K_BTCOEX_SUPPORT=y
CONFIG_ATH9K=y
CONFIG_ATH9K_PCI=y
CONFIG_ATH9K_AHB=y
CONFIG_ATH9K_DEBUGFS=y
# CONFIG_ATH9K_STATION_STATISTICS is not set
CONFIG_ATH9K_DYNACK=y
# CONFIG_ATH9K_WOW is not set
CONFIG_ATH9K_RFKILL=y
CONFIG_ATH9K_CHANNEL_CONTEXT=y
CONFIG_ATH9K_PCOEM=y
# CONFIG_ATH9K_PCI_NO_EEPROM is not set
CONFIG_ATH9K_HTC=y
CONFIG_ATH9K_HTC_DEBUGFS=y
# CONFIG_ATH9K_HWRNG is not set
CONFIG_ATH9K_COMMON_SPECTRAL=y
CONFIG_CARL9170=y
CONFIG_CARL9170_LEDS=y
# CONFIG_CARL9170_DEBUGFS is not set
CONFIG_CARL9170_WPC=y
CONFIG_CARL9170_HWRNG=y
CONFIG_ATH6KL=y
# CONFIG_ATH6KL_SDIO is not set
CONFIG_ATH6KL_USB=y
# CONFIG_ATH6KL_DEBUG is not set
# CONFIG_ATH6KL_TRACING is not set
CONFIG_AR5523=y
# CONFIG_WIL6210 is not set
CONFIG_ATH10K=y
CONFIG_ATH10K_CE=y
CONFIG_ATH10K_PCI=y
# CONFIG_ATH10K_AHB is not set
# CONFIG_ATH10K_SDIO is not set
CONFIG_ATH10K_USB=y
# CONFIG_ATH10K_DEBUG is not set
# CONFIG_ATH10K_DEBUGFS is not set
CONFIG_ATH10K_LEDS=y
# CONFIG_ATH10K_TRACING is not set
# CONFIG_WCN36XX is not set
CONFIG_ATH11K=y
# CONFIG_ATH11K_PCI is not set
# CONFIG_ATH11K_DEBUG is not set
# CONFIG_ATH11K_DEBUGFS is not set
# CONFIG_ATH11K_TRACING is not set
# CONFIG_ATH12K is not set
# CONFIG_WLAN_VENDOR_ATMEL is not set
# CONFIG_WLAN_VENDOR_BROADCOM is not set
# CONFIG_WLAN_VENDOR_INTEL is not set
# CONFIG_WLAN_VENDOR_INTERSIL is not set
# CONFIG_WLAN_VENDOR_MARVELL is not set
# CONFIG_WLAN_VENDOR_MEDIATEK is not set
# CONFIG_WLAN_VENDOR_MICROCHIP is not set
CONFIG_WLAN_VENDOR_PURELIFI=y
CONFIG_PLFXLC=y
# CONFIG_WLAN_VENDOR_RALINK is not set
# CONFIG_WLAN_VENDOR_REALTEK is not set
# CONFIG_WLAN_VENDOR_RSI is not set
CONFIG_WLAN_VENDOR_SILABS=y
# CONFIG_WFX is not set
# CONFIG_WLAN_VENDOR_ST is not set
# CONFIG_WLAN_VENDOR_TI is not set
# CONFIG_WLAN_VENDOR_ZYDAS is not set
# CONFIG_WLAN_VENDOR_QUANTENNA is not set
CONFIG_MAC80211_HWSIM=y
CONFIG_VIRT_WIFI=y
CONFIG_WAN=y
CONFIG_HDLC=y
CONFIG_HDLC_RAW=y
CONFIG_HDLC_RAW_ETH=y
CONFIG_HDLC_CISCO=y
CONFIG_HDLC_FR=y
CONFIG_HDLC_PPP=y
CONFIG_HDLC_X25=y
# CONFIG_FRAMER is not set
# CONFIG_PCI200SYN is not set
# CONFIG_WANXL is not set
# CONFIG_PC300TOO is not set
# CONFIG_FARSYNC is not set
CONFIG_LAPBETHER=y
CONFIG_IEEE802154_DRIVERS=y
# CONFIG_IEEE802154_FAKELB is not set
# CONFIG_IEEE802154_AT86RF230 is not set
# CONFIG_IEEE802154_MRF24J40 is not set
# CONFIG_IEEE802154_CC2520 is not set
CONFIG_IEEE802154_ATUSB=y
# CONFIG_IEEE802154_ADF7242 is not set
# CONFIG_IEEE802154_CA8210 is not set
# CONFIG_IEEE802154_MCR20A is not set
CONFIG_IEEE802154_HWSIM=y

#
# Wireless WAN
#
CONFIG_WWAN=y
# CONFIG_WWAN_DEBUGFS is not set
# CONFIG_WWAN_HWSIM is not set
CONFIG_MHI_WWAN_CTRL=y
# CONFIG_MHI_WWAN_MBIM is not set
# CONFIG_IOSM is not set
# CONFIG_MTK_T7XX is not set
# end of Wireless WAN

CONFIG_VMXNET3=y
# CONFIG_FUJITSU_ES is not set
CONFIG_USB4_NET=y
CONFIG_NETDEVSIM=y
CONFIG_NET_FAILOVER=y
CONFIG_ISDN=y
CONFIG_ISDN_CAPI=y
CONFIG_MISDN=y
CONFIG_MISDN_DSP=y
CONFIG_MISDN_L1OIP=y

#
# mISDN hardware drivers
#
# CONFIG_MISDN_HFCPCI is not set
# CONFIG_MISDN_HFCMULTI is not set
CONFIG_MISDN_HFCUSB=y
# CONFIG_MISDN_AVMFRITZ is not set
# CONFIG_MISDN_SPEEDFAX is not set
# CONFIG_MISDN_INFINEON is not set
# CONFIG_MISDN_W6692 is not set
# CONFIG_MISDN_NETJET is not set

#
# Input device support
#
CONFIG_INPUT=y
CONFIG_INPUT_LEDS=y
CONFIG_INPUT_FF_MEMLESS=y
CONFIG_INPUT_SPARSEKMAP=y
# CONFIG_INPUT_MATRIXKMAP is not set
CONFIG_INPUT_VIVALDIFMAP=y

#
# Userland interfaces
#
CONFIG_INPUT_MOUSEDEV=y
CONFIG_INPUT_MOUSEDEV_PSAUX=y
CONFIG_INPUT_MOUSEDEV_SCREEN_X=1024
CONFIG_INPUT_MOUSEDEV_SCREEN_Y=768
CONFIG_INPUT_JOYDEV=y
CONFIG_INPUT_EVDEV=y

#
# Input Device Drivers
#
CONFIG_INPUT_KEYBOARD=y
# CONFIG_KEYBOARD_ADC is not set
# CONFIG_KEYBOARD_ADP5588 is not set
CONFIG_KEYBOARD_ATKBD=y
# CONFIG_KEYBOARD_QT1050 is not set
# CONFIG_KEYBOARD_QT1070 is not set
# CONFIG_KEYBOARD_QT2160 is not set
# CONFIG_KEYBOARD_DLINK_DIR685 is not set
# CONFIG_KEYBOARD_LKKBD is not set
# CONFIG_KEYBOARD_GPIO is not set
# CONFIG_KEYBOARD_GPIO_POLLED is not set
# CONFIG_KEYBOARD_TCA6416 is not set
# CONFIG_KEYBOARD_TCA8418 is not set
# CONFIG_KEYBOARD_MATRIX is not set
# CONFIG_KEYBOARD_LM8323 is not set
# CONFIG_KEYBOARD_LM8333 is not set
# CONFIG_KEYBOARD_MAX7359 is not set
# CONFIG_KEYBOARD_MPR121 is not set
# CONFIG_KEYBOARD_NEWTON is not set
# CONFIG_KEYBOARD_OPENCORES is not set
# CONFIG_KEYBOARD_PINEPHONE is not set
# CONFIG_KEYBOARD_SAMSUNG is not set
# CONFIG_KEYBOARD_STOWAWAY is not set
# CONFIG_KEYBOARD_SUNKBD is not set
# CONFIG_KEYBOARD_OMAP4 is not set
# CONFIG_KEYBOARD_TM2_TOUCHKEY is not set
# CONFIG_KEYBOARD_TWL4030 is not set
# CONFIG_KEYBOARD_XTKBD is not set
# CONFIG_KEYBOARD_CAP11XX is not set
# CONFIG_KEYBOARD_BCM is not set
# CONFIG_KEYBOARD_CYPRESS_SF is not set
CONFIG_INPUT_MOUSE=y
CONFIG_MOUSE_PS2=y
CONFIG_MOUSE_PS2_ALPS=y
CONFIG_MOUSE_PS2_BYD=y
CONFIG_MOUSE_PS2_LOGIPS2PP=y
CONFIG_MOUSE_PS2_SYNAPTICS=y
CONFIG_MOUSE_PS2_SYNAPTICS_SMBUS=y
CONFIG_MOUSE_PS2_CYPRESS=y
CONFIG_MOUSE_PS2_LIFEBOOK=y
CONFIG_MOUSE_PS2_TRACKPOINT=y
# CONFIG_MOUSE_PS2_ELANTECH is not set
# CONFIG_MOUSE_PS2_SENTELIC is not set
# CONFIG_MOUSE_PS2_TOUCHKIT is not set
CONFIG_MOUSE_PS2_FOCALTECH=y
# CONFIG_MOUSE_PS2_VMMOUSE is not set
CONFIG_MOUSE_PS2_SMBUS=y
# CONFIG_MOUSE_SERIAL is not set
CONFIG_MOUSE_APPLETOUCH=y
CONFIG_MOUSE_BCM5974=y
# CONFIG_MOUSE_CYAPA is not set
# CONFIG_MOUSE_ELAN_I2C is not set
# CONFIG_MOUSE_VSXXXAA is not set
# CONFIG_MOUSE_GPIO is not set
# CONFIG_MOUSE_SYNAPTICS_I2C is not set
CONFIG_MOUSE_SYNAPTICS_USB=y
CONFIG_INPUT_JOYSTICK=y
# CONFIG_JOYSTICK_ANALOG is not set
# CONFIG_JOYSTICK_A3D is not set
# CONFIG_JOYSTICK_ADC is not set
# CONFIG_JOYSTICK_ADI is not set
# CONFIG_JOYSTICK_COBRA is not set
# CONFIG_JOYSTICK_GF2K is not set
# CONFIG_JOYSTICK_GRIP is not set
# CONFIG_JOYSTICK_GRIP_MP is not set
# CONFIG_JOYSTICK_GUILLEMOT is not set
# CONFIG_JOYSTICK_INTERACT is not set
# CONFIG_JOYSTICK_SIDEWINDER is not set
# CONFIG_JOYSTICK_TMDC is not set
CONFIG_JOYSTICK_IFORCE=y
CONFIG_JOYSTICK_IFORCE_USB=y
# CONFIG_JOYSTICK_IFORCE_232 is not set
# CONFIG_JOYSTICK_WARRIOR is not set
# CONFIG_JOYSTICK_MAGELLAN is not set
# CONFIG_JOYSTICK_SPACEORB is not set
# CONFIG_JOYSTICK_SPACEBALL is not set
# CONFIG_JOYSTICK_STINGER is not set
# CONFIG_JOYSTICK_TWIDJOY is not set
# CONFIG_JOYSTICK_ZHENHUA is not set
# CONFIG_JOYSTICK_DB9 is not set
# CONFIG_JOYSTICK_GAMECON is not set
# CONFIG_JOYSTICK_TURBOGRAFX is not set
# CONFIG_JOYSTICK_AS5011 is not set
# CONFIG_JOYSTICK_JOYDUMP is not set
CONFIG_JOYSTICK_XPAD=y
CONFIG_JOYSTICK_XPAD_FF=y
CONFIG_JOYSTICK_XPAD_LEDS=y
# CONFIG_JOYSTICK_WALKERA0701 is not set
# CONFIG_JOYSTICK_PSXPAD_SPI is not set
CONFIG_JOYSTICK_PXRC=y
# CONFIG_JOYSTICK_QWIIC is not set
# CONFIG_JOYSTICK_FSIA6B is not set
# CONFIG_JOYSTICK_SENSEHAT is not set
# CONFIG_JOYSTICK_SEESAW is not set
CONFIG_INPUT_TABLET=y
CONFIG_TABLET_USB_ACECAD=y
CONFIG_TABLET_USB_AIPTEK=y
CONFIG_TABLET_USB_HANWANG=y
CONFIG_TABLET_USB_KBTAB=y
CONFIG_TABLET_USB_PEGASUS=y
# CONFIG_TABLET_SERIAL_WACOM4 is not set
CONFIG_INPUT_TOUCHSCREEN=y
# CONFIG_TOUCHSCREEN_ADS7846 is not set
# CONFIG_TOUCHSCREEN_AD7877 is not set
# CONFIG_TOUCHSCREEN_AD7879 is not set
# CONFIG_TOUCHSCREEN_ADC is not set
# CONFIG_TOUCHSCREEN_AR1021_I2C is not set
# CONFIG_TOUCHSCREEN_ATMEL_MXT is not set
# CONFIG_TOUCHSCREEN_AUO_PIXCIR is not set
# CONFIG_TOUCHSCREEN_BU21013 is not set
# CONFIG_TOUCHSCREEN_BU21029 is not set
# CONFIG_TOUCHSCREEN_CHIPONE_ICN8318 is not set
# CONFIG_TOUCHSCREEN_CHIPONE_ICN8505 is not set
# CONFIG_TOUCHSCREEN_CY8CTMA140 is not set
# CONFIG_TOUCHSCREEN_CY8CTMG110 is not set
# CONFIG_TOUCHSCREEN_CYTTSP_CORE is not set
# CONFIG_TOUCHSCREEN_CYTTSP5 is not set
# CONFIG_TOUCHSCREEN_DYNAPRO is not set
# CONFIG_TOUCHSCREEN_HAMPSHIRE is not set
# CONFIG_TOUCHSCREEN_EETI is not set
# CONFIG_TOUCHSCREEN_EGALAX is not set
# CONFIG_TOUCHSCREEN_EGALAX_SERIAL is not set
# CONFIG_TOUCHSCREEN_EXC3000 is not set
# CONFIG_TOUCHSCREEN_FUJITSU is not set
# CONFIG_TOUCHSCREEN_GOODIX is not set
# CONFIG_TOUCHSCREEN_GOODIX_BERLIN_I2C is not set
# CONFIG_TOUCHSCREEN_GOODIX_BERLIN_SPI is not set
# CONFIG_TOUCHSCREEN_HIDEEP is not set
# CONFIG_TOUCHSCREEN_HYCON_HY46XX is not set
# CONFIG_TOUCHSCREEN_HYNITRON_CSTXXX is not set
# CONFIG_TOUCHSCREEN_ILI210X is not set
# CONFIG_TOUCHSCREEN_ILITEK is not set
# CONFIG_TOUCHSCREEN_S6SY761 is not set
# CONFIG_TOUCHSCREEN_GUNZE is not set
# CONFIG_TOUCHSCREEN_EKTF2127 is not set
# CONFIG_TOUCHSCREEN_ELAN is not set
# CONFIG_TOUCHSCREEN_ELO is not set
# CONFIG_TOUCHSCREEN_WACOM_W8001 is not set
# CONFIG_TOUCHSCREEN_WACOM_I2C is not set
# CONFIG_TOUCHSCREEN_MAX11801 is not set
# CONFIG_TOUCHSCREEN_MMS114 is not set
# CONFIG_TOUCHSCREEN_MELFAS_MIP4 is not set
# CONFIG_TOUCHSCREEN_MSG2638 is not set
# CONFIG_TOUCHSCREEN_MTOUCH is not set
# CONFIG_TOUCHSCREEN_NOVATEK_NVT_TS is not set
# CONFIG_TOUCHSCREEN_IMAGIS is not set
# CONFIG_TOUCHSCREEN_IMX6UL_TSC is not set
# CONFIG_TOUCHSCREEN_INEXIO is not set
# CONFIG_TOUCHSCREEN_PENMOUNT is not set
# CONFIG_TOUCHSCREEN_EDT_FT5X06 is not set
# CONFIG_TOUCHSCREEN_TOUCHRIGHT is not set
# CONFIG_TOUCHSCREEN_TOUCHWIN is not set
# CONFIG_TOUCHSCREEN_PIXCIR is not set
# CONFIG_TOUCHSCREEN_WDT87XX_I2C is not set
CONFIG_TOUCHSCREEN_USB_COMPOSITE=y
CONFIG_TOUCHSCREEN_USB_EGALAX=y
CONFIG_TOUCHSCREEN_USB_PANJIT=y
CONFIG_TOUCHSCREEN_USB_3M=y
CONFIG_TOUCHSCREEN_USB_ITM=y
CONFIG_TOUCHSCREEN_USB_ETURBO=y
CONFIG_TOUCHSCREEN_USB_GUNZE=y
CONFIG_TOUCHSCREEN_USB_DMC_TSC10=y
CONFIG_TOUCHSCREEN_USB_IRTOUCH=y
CONFIG_TOUCHSCREEN_USB_IDEALTEK=y
CONFIG_TOUCHSCREEN_USB_GENERAL_TOUCH=y
CONFIG_TOUCHSCREEN_USB_GOTOP=y
CONFIG_TOUCHSCREEN_USB_JASTEC=y
CONFIG_TOUCHSCREEN_USB_ELO=y
CONFIG_TOUCHSCREEN_USB_E2I=y
CONFIG_TOUCHSCREEN_USB_ZYTRONIC=y
CONFIG_TOUCHSCREEN_USB_ETT_TC45USB=y
CONFIG_TOUCHSCREEN_USB_NEXIO=y
CONFIG_TOUCHSCREEN_USB_EASYTOUCH=y
# CONFIG_TOUCHSCREEN_TOUCHIT213 is not set
# CONFIG_TOUCHSCREEN_TSC_SERIO is not set
# CONFIG_TOUCHSCREEN_TSC2004 is not set
# CONFIG_TOUCHSCREEN_TSC2005 is not set
# CONFIG_TOUCHSCREEN_TSC2007 is not set
# CONFIG_TOUCHSCREEN_RM_TS is not set
# CONFIG_TOUCHSCREEN_SILEAD is not set
# CONFIG_TOUCHSCREEN_SIS_I2C is not set
# CONFIG_TOUCHSCREEN_ST1232 is not set
# CONFIG_TOUCHSCREEN_STMFTS is not set
CONFIG_TOUCHSCREEN_SUR40=y
# CONFIG_TOUCHSCREEN_SURFACE3_SPI is not set
# CONFIG_TOUCHSCREEN_SX8654 is not set
# CONFIG_TOUCHSCREEN_TPS6507X is not set
# CONFIG_TOUCHSCREEN_ZET6223 is not set
# CONFIG_TOUCHSCREEN_ZFORCE is not set
# CONFIG_TOUCHSCREEN_COLIBRI_VF50 is not set
# CONFIG_TOUCHSCREEN_ROHM_BU21023 is not set
# CONFIG_TOUCHSCREEN_IQS5XX is not set
# CONFIG_TOUCHSCREEN_IQS7211 is not set
# CONFIG_TOUCHSCREEN_ZINITIX is not set
# CONFIG_TOUCHSCREEN_HIMAX_HX83112B is not set
CONFIG_INPUT_MISC=y
# CONFIG_INPUT_AD714X is not set
# CONFIG_INPUT_ATMEL_CAPTOUCH is not set
# CONFIG_INPUT_BMA150 is not set
# CONFIG_INPUT_E3X0_BUTTON is not set
# CONFIG_INPUT_PCSPKR is not set
# CONFIG_INPUT_MMA8450 is not set
# CONFIG_INPUT_APANEL is not set
# CONFIG_INPUT_GPIO_BEEPER is not set
# CONFIG_INPUT_GPIO_DECODER is not set
# CONFIG_INPUT_GPIO_VIBRA is not set
# CONFIG_INPUT_ATLAS_BTNS is not set
CONFIG_INPUT_ATI_REMOTE2=y
CONFIG_INPUT_KEYSPAN_REMOTE=y
# CONFIG_INPUT_KXTJ9 is not set
CONFIG_INPUT_POWERMATE=y
CONFIG_INPUT_YEALINK=y
CONFIG_INPUT_CM109=y
# CONFIG_INPUT_REGULATOR_HAPTIC is not set
# CONFIG_INPUT_RETU_PWRBUTTON is not set
# CONFIG_INPUT_TWL4030_PWRBUTTON is not set
# CONFIG_INPUT_TWL4030_VIBRA is not set
CONFIG_INPUT_UINPUT=y
# CONFIG_INPUT_PCF8574 is not set
# CONFIG_INPUT_GPIO_ROTARY_ENCODER is not set
# CONFIG_INPUT_DA7280_HAPTICS is not set
# CONFIG_INPUT_ADXL34X is not set
# CONFIG_INPUT_IBM_PANEL is not set
CONFIG_INPUT_IMS_PCU=y
# CONFIG_INPUT_IQS269A is not set
# CONFIG_INPUT_IQS626A is not set
# CONFIG_INPUT_IQS7222 is not set
# CONFIG_INPUT_CMA3000 is not set
# CONFIG_INPUT_IDEAPAD_SLIDEBAR is not set
# CONFIG_INPUT_DRV260X_HAPTICS is not set
# CONFIG_INPUT_DRV2665_HAPTICS is not set
# CONFIG_INPUT_DRV2667_HAPTICS is not set
CONFIG_RMI4_CORE=y
# CONFIG_RMI4_I2C is not set
# CONFIG_RMI4_SPI is not set
# CONFIG_RMI4_SMB is not set
CONFIG_RMI4_F03=y
CONFIG_RMI4_F03_SERIO=y
CONFIG_RMI4_2D_SENSOR=y
CONFIG_RMI4_F11=y
CONFIG_RMI4_F12=y
# CONFIG_RMI4_F1A is not set
# CONFIG_RMI4_F21 is not set
CONFIG_RMI4_F30=y
# CONFIG_RMI4_F34 is not set
CONFIG_RMI4_F3A=y
# CONFIG_RMI4_F54 is not set
# CONFIG_RMI4_F55 is not set

#
# Hardware I/O ports
#
CONFIG_SERIO=y
CONFIG_ARCH_MIGHT_HAVE_PC_SERIO=y
CONFIG_SERIO_I8042=y
CONFIG_SERIO_SERPORT=y
# CONFIG_SERIO_CT82C710 is not set
# CONFIG_SERIO_PARKBD is not set
# CONFIG_SERIO_PCIPS2 is not set
CONFIG_SERIO_LIBPS2=y
# CONFIG_SERIO_RAW is not set
# CONFIG_SERIO_ALTERA_PS2 is not set
# CONFIG_SERIO_PS2MULT is not set
# CONFIG_SERIO_ARC_PS2 is not set
# CONFIG_SERIO_APBPS2 is not set
# CONFIG_SERIO_GPIO_PS2 is not set
CONFIG_USERIO=y
# CONFIG_GAMEPORT is not set
# end of Hardware I/O ports
# end of Input device support

#
# Character devices
#
CONFIG_TTY=y
CONFIG_VT=y
CONFIG_CONSOLE_TRANSLATIONS=y
CONFIG_VT_CONSOLE=y
CONFIG_VT_CONSOLE_SLEEP=y
CONFIG_VT_HW_CONSOLE_BINDING=y
CONFIG_UNIX98_PTYS=y
CONFIG_LEGACY_PTYS=y
CONFIG_LEGACY_PTY_COUNT=256
CONFIG_LEGACY_TIOCSTI=y
CONFIG_LDISC_AUTOLOAD=y

#
# Serial drivers
#
CONFIG_SERIAL_EARLYCON=y
CONFIG_SERIAL_8250=y
CONFIG_SERIAL_8250_DEPRECATED_OPTIONS=y
CONFIG_SERIAL_8250_PNP=y
# CONFIG_SERIAL_8250_16550A_VARIANTS is not set
# CONFIG_SERIAL_8250_FINTEK is not set
CONFIG_SERIAL_8250_CONSOLE=y
CONFIG_SERIAL_8250_DMA=y
CONFIG_SERIAL_8250_PCILIB=y
CONFIG_SERIAL_8250_PCI=y
# CONFIG_SERIAL_8250_EXAR is not set
# CONFIG_SERIAL_8250_CS is not set
CONFIG_SERIAL_8250_NR_UARTS=32
CONFIG_SERIAL_8250_RUNTIME_UARTS=4
CONFIG_SERIAL_8250_EXTENDED=y
CONFIG_SERIAL_8250_MANY_PORTS=y
# CONFIG_SERIAL_8250_PCI1XXXX is not set
CONFIG_SERIAL_8250_SHARE_IRQ=y
CONFIG_SERIAL_8250_DETECT_IRQ=y
CONFIG_SERIAL_8250_RSA=y
CONFIG_SERIAL_8250_DWLIB=y
# CONFIG_SERIAL_8250_DW is not set
# CONFIG_SERIAL_8250_RT288X is not set
CONFIG_SERIAL_8250_LPSS=y
CONFIG_SERIAL_8250_MID=y
CONFIG_SERIAL_8250_PERICOM=y
# CONFIG_SERIAL_8250_NI is not set
# CONFIG_SERIAL_OF_PLATFORM is not set

#
# Non-8250 serial port support
#
# CONFIG_SERIAL_MAX3100 is not set
# CONFIG_SERIAL_MAX310X is not set
# CONFIG_SERIAL_UARTLITE is not set
CONFIG_SERIAL_CORE=y
CONFIG_SERIAL_CORE_CONSOLE=y
# CONFIG_SERIAL_JSM is not set
# CONFIG_SERIAL_SIFIVE is not set
# CONFIG_SERIAL_LANTIQ is not set
# CONFIG_SERIAL_SCCNXP is not set
# CONFIG_SERIAL_SC16IS7XX is not set
# CONFIG_SERIAL_ALTERA_JTAGUART is not set
# CONFIG_SERIAL_ALTERA_UART is not set
# CONFIG_SERIAL_XILINX_PS_UART is not set
# CONFIG_SERIAL_ARC is not set
# CONFIG_SERIAL_RP2 is not set
# CONFIG_SERIAL_FSL_LPUART is not set
# CONFIG_SERIAL_FSL_LINFLEXUART is not set
# CONFIG_SERIAL_CONEXANT_DIGICOLOR is not set
# CONFIG_SERIAL_SPRD is not set
# end of Serial drivers

CONFIG_SERIAL_MCTRL_GPIO=y
CONFIG_SERIAL_NONSTANDARD=y
# CONFIG_MOXA_INTELLIO is not set
# CONFIG_MOXA_SMARTIO is not set
CONFIG_N_HDLC=y
# CONFIG_IPWIRELESS is not set
CONFIG_N_GSM=y
CONFIG_NOZOMI=y
CONFIG_NULL_TTY=y
CONFIG_HVC_DRIVER=y
CONFIG_SERIAL_DEV_BUS=y
CONFIG_SERIAL_DEV_CTRL_TTYPORT=y
CONFIG_TTY_PRINTK=y
CONFIG_TTY_PRINTK_LEVEL=6
# CONFIG_PRINTER is not set
# CONFIG_PPDEV is not set
CONFIG_VIRTIO_CONSOLE=y
# CONFIG_IPMI_HANDLER is not set
# CONFIG_SSIF_IPMI_BMC is not set
# CONFIG_IPMB_DEVICE_INTERFACE is not set
CONFIG_HW_RANDOM=y
# CONFIG_HW_RANDOM_TIMERIOMEM is not set
# CONFIG_HW_RANDOM_INTEL is not set
# CONFIG_HW_RANDOM_AMD is not set
# CONFIG_HW_RANDOM_BA431 is not set
# CONFIG_HW_RANDOM_VIA is not set
CONFIG_HW_RANDOM_VIRTIO=y
# CONFIG_HW_RANDOM_CCTRNG is not set
# CONFIG_HW_RANDOM_XIPHERA is not set
# CONFIG_APPLICOM is not set
# CONFIG_MWAVE is not set
# CONFIG_DEVMEM is not set
CONFIG_NVRAM=y
# CONFIG_DEVPORT is not set
CONFIG_HPET=y
CONFIG_HPET_MMAP=y
CONFIG_HPET_MMAP_DEFAULT=y
# CONFIG_HANGCHECK_TIMER is not set
CONFIG_TCG_TPM=y
# CONFIG_TCG_TPM2_HMAC is not set
# CONFIG_HW_RANDOM_TPM is not set
CONFIG_TCG_TIS_CORE=y
CONFIG_TCG_TIS=y
# CONFIG_TCG_TIS_SPI is not set
# CONFIG_TCG_TIS_I2C is not set
# CONFIG_TCG_TIS_I2C_CR50 is not set
# CONFIG_TCG_TIS_I2C_ATMEL is not set
# CONFIG_TCG_TIS_I2C_INFINEON is not set
# CONFIG_TCG_TIS_I2C_NUVOTON is not set
# CONFIG_TCG_NSC is not set
# CONFIG_TCG_ATMEL is not set
# CONFIG_TCG_INFINEON is not set
CONFIG_TCG_CRB=y
# CONFIG_TCG_VTPM_PROXY is not set
# CONFIG_TCG_TIS_ST33ZP24_I2C is not set
# CONFIG_TCG_TIS_ST33ZP24_SPI is not set
# CONFIG_TELCLOCK is not set
CONFIG_XILLYBUS_CLASS=y
# CONFIG_XILLYBUS is not set
CONFIG_XILLYUSB=y
# end of Character devices

#
# I2C support
#
CONFIG_I2C=y
CONFIG_ACPI_I2C_OPREGION=y
CONFIG_I2C_BOARDINFO=y
CONFIG_I2C_CHARDEV=y
CONFIG_I2C_MUX=y

#
# Multiplexer I2C Chip support
#
# CONFIG_I2C_ARB_GPIO_CHALLENGE is not set
# CONFIG_I2C_MUX_GPIO is not set
# CONFIG_I2C_MUX_GPMUX is not set
# CONFIG_I2C_MUX_LTC4306 is not set
# CONFIG_I2C_MUX_PCA9541 is not set
# CONFIG_I2C_MUX_PCA954x is not set
CONFIG_I2C_MUX_REG=y
# CONFIG_I2C_MUX_MLXCPLD is not set
# end of Multiplexer I2C Chip support

CONFIG_I2C_HELPER_AUTO=y
CONFIG_I2C_SMBUS=y
CONFIG_I2C_ALGOBIT=y

#
# I2C Hardware Bus support
#

#
# PC SMBus host controller drivers
#
# CONFIG_I2C_ALI1535 is not set
# CONFIG_I2C_ALI1563 is not set
# CONFIG_I2C_ALI15X3 is not set
# CONFIG_I2C_AMD756 is not set
# CONFIG_I2C_AMD8111 is not set
# CONFIG_I2C_AMD_MP2 is not set
CONFIG_I2C_I801=y
# CONFIG_I2C_ISCH is not set
# CONFIG_I2C_ISMT is not set
# CONFIG_I2C_PIIX4 is not set
# CONFIG_I2C_CHT_WC is not set
# CONFIG_I2C_NFORCE2 is not set
# CONFIG_I2C_NVIDIA_GPU is not set
# CONFIG_I2C_SIS5595 is not set
# CONFIG_I2C_SIS630 is not set
# CONFIG_I2C_SIS96X is not set
# CONFIG_I2C_VIA is not set
# CONFIG_I2C_VIAPRO is not set
# CONFIG_I2C_ZHAOXIN is not set

#
# ACPI drivers
#
# CONFIG_I2C_SCMI is not set

#
# I2C system bus drivers (mostly embedded / system-on-chip)
#
# CONFIG_I2C_CBUS_GPIO is not set
CONFIG_I2C_DESIGNWARE_CORE=y
# CONFIG_I2C_DESIGNWARE_SLAVE is not set
CONFIG_I2C_DESIGNWARE_PLATFORM=y
# CONFIG_I2C_DESIGNWARE_BAYTRAIL is not set
# CONFIG_I2C_DESIGNWARE_PCI is not set
# CONFIG_I2C_EMEV2 is not set
# CONFIG_I2C_GPIO is not set
# CONFIG_I2C_OCORES is not set
# CONFIG_I2C_PCA_PLATFORM is not set
# CONFIG_I2C_RK3X is not set
# CONFIG_I2C_SIMTEC is not set
# CONFIG_I2C_XILINX is not set

#
# External I2C/SMBus adapter drivers
#
CONFIG_I2C_DIOLAN_U2C=y
CONFIG_I2C_DLN2=y
CONFIG_I2C_LJCA=y
CONFIG_I2C_CP2615=y
# CONFIG_I2C_PARPORT is not set
# CONFIG_I2C_PCI1XXXX is not set
CONFIG_I2C_ROBOTFUZZ_OSIF=y
# CONFIG_I2C_TAOS_EVM is not set
CONFIG_I2C_TINY_USB=y
CONFIG_I2C_VIPERBOARD=y

#
# Other I2C/SMBus bus drivers
#
# CONFIG_I2C_MLXCPLD is not set
# CONFIG_I2C_VIRTIO is not set
# end of I2C Hardware Bus support

# CONFIG_I2C_STUB is not set
CONFIG_I2C_SLAVE=y
CONFIG_I2C_SLAVE_EEPROM=y
# CONFIG_I2C_SLAVE_TESTUNIT is not set
# CONFIG_I2C_DEBUG_CORE is not set
# CONFIG_I2C_DEBUG_ALGO is not set
# CONFIG_I2C_DEBUG_BUS is not set
# end of I2C support

# CONFIG_I3C is not set
CONFIG_SPI=y
# CONFIG_SPI_DEBUG is not set
CONFIG_SPI_MASTER=y
# CONFIG_SPI_MEM is not set

#
# SPI Master Controller Drivers
#
# CONFIG_SPI_ALTERA is not set
# CONFIG_SPI_AXI_SPI_ENGINE is not set
# CONFIG_SPI_BITBANG is not set
# CONFIG_SPI_BUTTERFLY is not set
# CONFIG_SPI_CADENCE is not set
# CONFIG_SPI_CADENCE_QUADSPI is not set
# CONFIG_SPI_CH341 is not set
# CONFIG_SPI_DESIGNWARE is not set
CONFIG_SPI_DLN2=y
# CONFIG_SPI_GPIO is not set
# CONFIG_SPI_LM70_LLP is not set
# CONFIG_SPI_FSL_SPI is not set
CONFIG_SPI_LJCA=y
# CONFIG_SPI_MICROCHIP_CORE is not set
# CONFIG_SPI_MICROCHIP_CORE_QSPI is not set
# CONFIG_SPI_LANTIQ_SSC is not set
# CONFIG_SPI_OC_TINY is not set
# CONFIG_SPI_PCI1XXXX is not set
# CONFIG_SPI_PXA2XX is not set
# CONFIG_SPI_SC18IS602 is not set
# CONFIG_SPI_SIFIVE is not set
# CONFIG_SPI_MXIC is not set
# CONFIG_SPI_XCOMM is not set
# CONFIG_SPI_XILINX is not set

#
# SPI Multiplexer support
#
# CONFIG_SPI_MUX is not set

#
# SPI Protocol Masters
#
# CONFIG_SPI_SPIDEV is not set
# CONFIG_SPI_LOOPBACK_TEST is not set
# CONFIG_SPI_TLE62X0 is not set
# CONFIG_SPI_SLAVE is not set
CONFIG_SPI_DYNAMIC=y
# CONFIG_SPMI is not set
# CONFIG_HSI is not set
CONFIG_PPS=y
# CONFIG_PPS_DEBUG is not set

#
# PPS clients support
#
# CONFIG_PPS_CLIENT_KTIMER is not set
# CONFIG_PPS_CLIENT_LDISC is not set
# CONFIG_PPS_CLIENT_PARPORT is not set
# CONFIG_PPS_CLIENT_GPIO is not set
# CONFIG_PPS_GENERATOR is not set

#
# PTP clock support
#
CONFIG_PTP_1588_CLOCK=y
CONFIG_PTP_1588_CLOCK_OPTIONAL=y

#
# Enable PHYLIB and NETWORK_PHY_TIMESTAMPING to see the additional clocks.
#
CONFIG_PTP_1588_CLOCK_KVM=y
CONFIG_PTP_1588_CLOCK_VMCLOCK=y
# CONFIG_PTP_1588_CLOCK_IDT82P33 is not set
# CONFIG_PTP_1588_CLOCK_IDTCM is not set
# CONFIG_PTP_1588_CLOCK_FC3W is not set
# CONFIG_PTP_1588_CLOCK_MOCK is not set
# CONFIG_PTP_1588_CLOCK_VMW is not set
# CONFIG_PTP_1588_CLOCK_OCP is not set
# end of PTP clock support

#
# DPLL device support
#
# CONFIG_ZL3073X_I2C is not set
# CONFIG_ZL3073X_SPI is not set
# end of DPLL device support

# CONFIG_PINCTRL is not set
CONFIG_GPIOLIB=y
CONFIG_GPIOLIB_LEGACY=y
CONFIG_GPIOLIB_FASTPATH_LIMIT=512
CONFIG_OF_GPIO=y
CONFIG_GPIO_ACPI=y
CONFIG_GPIOLIB_IRQCHIP=y
# CONFIG_DEBUG_GPIO is not set
# CONFIG_GPIO_SYSFS is not set
# CONFIG_GPIO_CDEV is not set

#
# Memory mapped GPIO drivers
#
# CONFIG_GPIO_74XX_MMIO is not set
# CONFIG_GPIO_ALTERA is not set
# CONFIG_GPIO_AMDPT is not set
# CONFIG_GPIO_CADENCE is not set
# CONFIG_GPIO_DWAPB is not set
# CONFIG_GPIO_FTGPIO010 is not set
# CONFIG_GPIO_GENERIC_PLATFORM is not set
# CONFIG_GPIO_GRANITERAPIDS is not set
# CONFIG_GPIO_GRGPIO is not set
# CONFIG_GPIO_HLWD is not set
# CONFIG_GPIO_ICH is not set
# CONFIG_GPIO_LOGICVC is not set
# CONFIG_GPIO_MB86S7X is not set
# CONFIG_GPIO_POLARFIRE_SOC is not set
# CONFIG_GPIO_SIFIVE is not set
# CONFIG_GPIO_SYSCON is not set
# CONFIG_GPIO_XILINX is not set
# CONFIG_GPIO_AMD_FCH is not set
# end of Memory mapped GPIO drivers

#
# Port-mapped I/O GPIO drivers
#
# CONFIG_GPIO_VX855 is not set
# CONFIG_GPIO_F7188X is not set
# CONFIG_GPIO_IT87 is not set
# CONFIG_GPIO_SCH311X is not set
# CONFIG_GPIO_WINBOND is not set
# CONFIG_GPIO_WS16C48 is not set
# end of Port-mapped I/O GPIO drivers

#
# I2C GPIO expanders
#
# CONFIG_GPIO_ADNP is not set
# CONFIG_GPIO_FXL6408 is not set
# CONFIG_GPIO_DS4520 is not set
# CONFIG_GPIO_GW_PLD is not set
# CONFIG_GPIO_MAX7300 is not set
# CONFIG_GPIO_MAX732X is not set
# CONFIG_GPIO_PCA953X is not set
# CONFIG_GPIO_PCA9570 is not set
# CONFIG_GPIO_PCF857X is not set
# CONFIG_GPIO_TPIC2810 is not set
# end of I2C GPIO expanders

#
# MFD GPIO expanders
#
CONFIG_GPIO_DLN2=y
# CONFIG_GPIO_ELKHARTLAKE is not set
CONFIG_GPIO_LJCA=y
# CONFIG_GPIO_TWL4030 is not set
# CONFIG_GPIO_WHISKEY_COVE is not set
# end of MFD GPIO expanders

#
# PCI GPIO expanders
#
# CONFIG_GPIO_AMD8111 is not set
# CONFIG_GPIO_BT8XX is not set
# CONFIG_GPIO_ML_IOH is not set
# CONFIG_GPIO_PCI_IDIO_16 is not set
# CONFIG_GPIO_PCIE_IDIO_24 is not set
# CONFIG_GPIO_RDC321X is not set
# CONFIG_GPIO_SODAVILLE is not set
# end of PCI GPIO expanders

#
# SPI GPIO expanders
#
# CONFIG_GPIO_74X164 is not set
# CONFIG_GPIO_MAX3191X is not set
# CONFIG_GPIO_MAX7301 is not set
# CONFIG_GPIO_MC33880 is not set
# CONFIG_GPIO_PISOSR is not set
# CONFIG_GPIO_XRA1403 is not set
# end of SPI GPIO expanders

#
# USB GPIO expanders
#
CONFIG_GPIO_VIPERBOARD=y
# CONFIG_GPIO_MPSSE is not set
# end of USB GPIO expanders

#
# Virtual GPIO drivers
#
# CONFIG_GPIO_AGGREGATOR is not set
# CONFIG_GPIO_LATCH is not set
# CONFIG_GPIO_MOCKUP is not set
# CONFIG_GPIO_VIRTIO is not set
# CONFIG_GPIO_SIM is not set
# end of Virtual GPIO drivers

#
# GPIO Debugging utilities
#
# CONFIG_GPIO_SLOPPY_LOGIC_ANALYZER is not set
# CONFIG_GPIO_VIRTUSER is not set
# end of GPIO Debugging utilities

# CONFIG_W1 is not set
# CONFIG_POWER_RESET is not set
# CONFIG_POWER_SEQUENCING is not set
CONFIG_POWER_SUPPLY=y
# CONFIG_POWER_SUPPLY_DEBUG is not set
CONFIG_POWER_SUPPLY_HWMON=y
# CONFIG_GENERIC_ADC_BATTERY is not set
# CONFIG_IP5XXX_POWER is not set
# CONFIG_TEST_POWER is not set
# CONFIG_CHARGER_ADP5061 is not set
# CONFIG_BATTERY_CHAGALL is not set
# CONFIG_BATTERY_CW2015 is not set
# CONFIG_BATTERY_DS2780 is not set
# CONFIG_BATTERY_DS2781 is not set
# CONFIG_BATTERY_DS2782 is not set
# CONFIG_BATTERY_SAMSUNG_SDI is not set
# CONFIG_BATTERY_SBS is not set
# CONFIG_CHARGER_SBS is not set
# CONFIG_MANAGER_SBS is not set
# CONFIG_BATTERY_BQ27XXX is not set
# CONFIG_BATTERY_MAX17040 is not set
# CONFIG_BATTERY_MAX17042 is not set
# CONFIG_BATTERY_MAX1720X is not set
CONFIG_CHARGER_ISP1704=y
# CONFIG_CHARGER_MAX8903 is not set
# CONFIG_CHARGER_TWL4030 is not set
# CONFIG_CHARGER_TWL6030 is not set
# CONFIG_CHARGER_LP8727 is not set
# CONFIG_CHARGER_GPIO is not set
# CONFIG_CHARGER_MANAGER is not set
# CONFIG_CHARGER_LT3651 is not set
# CONFIG_CHARGER_LTC4162L is not set
# CONFIG_CHARGER_DETECTOR_MAX14656 is not set
# CONFIG_CHARGER_MAX77976 is not set
# CONFIG_CHARGER_MAX8971 is not set
# CONFIG_CHARGER_MT6360 is not set
# CONFIG_CHARGER_MT6370 is not set
# CONFIG_CHARGER_BQ2415X is not set
CONFIG_CHARGER_BQ24190=y
# CONFIG_CHARGER_BQ24257 is not set
# CONFIG_CHARGER_BQ24735 is not set
# CONFIG_CHARGER_BQ2515X is not set
# CONFIG_CHARGER_BQ25890 is not set
# CONFIG_CHARGER_BQ25980 is not set
# CONFIG_CHARGER_BQ256XX is not set
# CONFIG_CHARGER_SMB347 is not set
# CONFIG_BATTERY_GAUGE_LTC2941 is not set
# CONFIG_BATTERY_GOLDFISH is not set
# CONFIG_BATTERY_RT5033 is not set
# CONFIG_CHARGER_RT9455 is not set
# CONFIG_CHARGER_RT9467 is not set
# CONFIG_CHARGER_RT9471 is not set
# CONFIG_FUEL_GAUGE_STC3117 is not set
# CONFIG_CHARGER_UCS1002 is not set
# CONFIG_CHARGER_BD99954 is not set
# CONFIG_BATTERY_SURFACE is not set
# CONFIG_CHARGER_SURFACE is not set
# CONFIG_BATTERY_UG3105 is not set
# CONFIG_FUEL_GAUGE_MM8013 is not set
CONFIG_HWMON=y
# CONFIG_HWMON_DEBUG_CHIP is not set

#
# Native drivers
#
# CONFIG_SENSORS_ABITUGURU is not set
# CONFIG_SENSORS_ABITUGURU3 is not set
# CONFIG_SENSORS_AD7314 is not set
# CONFIG_SENSORS_AD7414 is not set
# CONFIG_SENSORS_AD7418 is not set
# CONFIG_SENSORS_ADM1025 is not set
# CONFIG_SENSORS_ADM1026 is not set
# CONFIG_SENSORS_ADM1029 is not set
# CONFIG_SENSORS_ADM1031 is not set
# CONFIG_SENSORS_ADM1177 is not set
# CONFIG_SENSORS_ADM9240 is not set
# CONFIG_SENSORS_ADT7310 is not set
# CONFIG_SENSORS_ADT7410 is not set
# CONFIG_SENSORS_ADT7411 is not set
# CONFIG_SENSORS_ADT7462 is not set
# CONFIG_SENSORS_ADT7470 is not set
# CONFIG_SENSORS_ADT7475 is not set
# CONFIG_SENSORS_AHT10 is not set
CONFIG_SENSORS_AQUACOMPUTER_D5NEXT=y
# CONFIG_SENSORS_AS370 is not set
# CONFIG_SENSORS_ASC7621 is not set
# CONFIG_SENSORS_ASUS_ROG_RYUJIN is not set
# CONFIG_SENSORS_AXI_FAN_CONTROL is not set
# CONFIG_SENSORS_K8TEMP is not set
# CONFIG_SENSORS_K10TEMP is not set
# CONFIG_SENSORS_FAM15H_POWER is not set
# CONFIG_SENSORS_APPLESMC is not set
# CONFIG_SENSORS_ASB100 is not set
# CONFIG_SENSORS_ATXP1 is not set
# CONFIG_SENSORS_CHIPCAP2 is not set
CONFIG_SENSORS_CORSAIR_CPRO=y
CONFIG_SENSORS_CORSAIR_PSU=y
# CONFIG_SENSORS_DRIVETEMP is not set
# CONFIG_SENSORS_DS620 is not set
# CONFIG_SENSORS_DS1621 is not set
# CONFIG_SENSORS_DELL_SMM is not set
# CONFIG_SENSORS_I5K_AMB is not set
# CONFIG_SENSORS_F71805F is not set
# CONFIG_SENSORS_F71882FG is not set
# CONFIG_SENSORS_F75375S is not set
# CONFIG_SENSORS_FSCHMD is not set
# CONFIG_SENSORS_FTSTEUTATES is not set
CONFIG_SENSORS_GIGABYTE_WATERFORCE=y
# CONFIG_SENSORS_GL518SM is not set
# CONFIG_SENSORS_GL520SM is not set
# CONFIG_SENSORS_G760A is not set
# CONFIG_SENSORS_G762 is not set
# CONFIG_SENSORS_GPIO_FAN is not set
# CONFIG_SENSORS_HIH6130 is not set
# CONFIG_SENSORS_HS3001 is not set
# CONFIG_SENSORS_HTU31 is not set
# CONFIG_SENSORS_IIO_HWMON is not set
# CONFIG_SENSORS_I5500 is not set
# CONFIG_SENSORS_CORETEMP is not set
# CONFIG_SENSORS_ISL28022 is not set
# CONFIG_SENSORS_IT87 is not set
# CONFIG_SENSORS_JC42 is not set
CONFIG_SENSORS_POWERZ=y
# CONFIG_SENSORS_POWR1220 is not set
# CONFIG_SENSORS_LENOVO_EC is not set
# CONFIG_SENSORS_LINEAGE is not set
# CONFIG_SENSORS_LTC2945 is not set
# CONFIG_SENSORS_LTC2947_I2C is not set
# CONFIG_SENSORS_LTC2947_SPI is not set
# CONFIG_SENSORS_LTC2990 is not set
# CONFIG_SENSORS_LTC2991 is not set
# CONFIG_SENSORS_LTC2992 is not set
# CONFIG_SENSORS_LTC4151 is not set
# CONFIG_SENSORS_LTC4215 is not set
# CONFIG_SENSORS_LTC4222 is not set
# CONFIG_SENSORS_LTC4245 is not set
# CONFIG_SENSORS_LTC4260 is not set
# CONFIG_SENSORS_LTC4261 is not set
# CONFIG_SENSORS_LTC4282 is not set
# CONFIG_SENSORS_MAX1111 is not set
# CONFIG_SENSORS_MAX127 is not set
# CONFIG_SENSORS_MAX16065 is not set
# CONFIG_SENSORS_MAX1619 is not set
# CONFIG_SENSORS_MAX1668 is not set
# CONFIG_SENSORS_MAX197 is not set
# CONFIG_SENSORS_MAX31722 is not set
# CONFIG_SENSORS_MAX31730 is not set
# CONFIG_SENSORS_MAX31760 is not set
# CONFIG_MAX31827 is not set
# CONFIG_SENSORS_MAX6620 is not set
# CONFIG_SENSORS_MAX6621 is not set
# CONFIG_SENSORS_MAX6639 is not set
# CONFIG_SENSORS_MAX6650 is not set
# CONFIG_SENSORS_MAX6697 is not set
# CONFIG_SENSORS_MAX31790 is not set
# CONFIG_SENSORS_MC34VR500 is not set
# CONFIG_SENSORS_MCP3021 is not set
# CONFIG_SENSORS_TC654 is not set
# CONFIG_SENSORS_TPS23861 is not set
# CONFIG_SENSORS_MR75203 is not set
# CONFIG_SENSORS_ADCXX is not set
# CONFIG_SENSORS_LM63 is not set
# CONFIG_SENSORS_LM70 is not set
# CONFIG_SENSORS_LM73 is not set
# CONFIG_SENSORS_LM75 is not set
# CONFIG_SENSORS_LM77 is not set
# CONFIG_SENSORS_LM78 is not set
# CONFIG_SENSORS_LM80 is not set
# CONFIG_SENSORS_LM83 is not set
# CONFIG_SENSORS_LM85 is not set
# CONFIG_SENSORS_LM87 is not set
# CONFIG_SENSORS_LM90 is not set
# CONFIG_SENSORS_LM92 is not set
# CONFIG_SENSORS_LM93 is not set
# CONFIG_SENSORS_LM95234 is not set
# CONFIG_SENSORS_LM95241 is not set
# CONFIG_SENSORS_LM95245 is not set
# CONFIG_SENSORS_PC87360 is not set
# CONFIG_SENSORS_PC87427 is not set
# CONFIG_SENSORS_NTC_THERMISTOR is not set
# CONFIG_SENSORS_NCT6683 is not set
# CONFIG_SENSORS_NCT6775 is not set
# CONFIG_SENSORS_NCT6775_I2C is not set
# CONFIG_SENSORS_NCT7363 is not set
# CONFIG_SENSORS_NCT7802 is not set
# CONFIG_SENSORS_NCT7904 is not set
# CONFIG_SENSORS_NPCM7XX is not set
CONFIG_SENSORS_NZXT_KRAKEN2=y
# CONFIG_SENSORS_NZXT_KRAKEN3 is not set
CONFIG_SENSORS_NZXT_SMART2=y
# CONFIG_SENSORS_OCC_P8_I2C is not set
# CONFIG_SENSORS_PCF8591 is not set
# CONFIG_PMBUS is not set
# CONFIG_SENSORS_PT5161L is not set
# CONFIG_SENSORS_SBTSI is not set
# CONFIG_SENSORS_SHT15 is not set
# CONFIG_SENSORS_SHT21 is not set
# CONFIG_SENSORS_SHT3x is not set
# CONFIG_SENSORS_SHT4x is not set
# CONFIG_SENSORS_SHTC1 is not set
# CONFIG_SENSORS_SIS5595 is not set
# CONFIG_SENSORS_DME1737 is not set
# CONFIG_SENSORS_EMC1403 is not set
# CONFIG_SENSORS_EMC2103 is not set
# CONFIG_SENSORS_EMC2305 is not set
# CONFIG_SENSORS_EMC6W201 is not set
# CONFIG_SENSORS_SMSC47M1 is not set
# CONFIG_SENSORS_SMSC47M192 is not set
# CONFIG_SENSORS_SMSC47B397 is not set
# CONFIG_SENSORS_SCH5627 is not set
# CONFIG_SENSORS_SCH5636 is not set
# CONFIG_SENSORS_STTS751 is not set
# CONFIG_SENSORS_SURFACE_FAN is not set
# CONFIG_SENSORS_SURFACE_TEMP is not set
# CONFIG_SENSORS_ADC128D818 is not set
# CONFIG_SENSORS_ADS7828 is not set
# CONFIG_SENSORS_ADS7871 is not set
# CONFIG_SENSORS_AMC6821 is not set
# CONFIG_SENSORS_INA209 is not set
# CONFIG_SENSORS_INA2XX is not set
# CONFIG_SENSORS_INA238 is not set
# CONFIG_SENSORS_INA3221 is not set
# CONFIG_SENSORS_SPD5118 is not set
# CONFIG_SENSORS_TC74 is not set
# CONFIG_SENSORS_THMC50 is not set
# CONFIG_SENSORS_TMP102 is not set
# CONFIG_SENSORS_TMP103 is not set
# CONFIG_SENSORS_TMP108 is not set
# CONFIG_SENSORS_TMP401 is not set
# CONFIG_SENSORS_TMP421 is not set
# CONFIG_SENSORS_TMP464 is not set
# CONFIG_SENSORS_TMP513 is not set
# CONFIG_SENSORS_VIA_CPUTEMP is not set
# CONFIG_SENSORS_VIA686A is not set
# CONFIG_SENSORS_VT1211 is not set
# CONFIG_SENSORS_VT8231 is not set
# CONFIG_SENSORS_W83773G is not set
# CONFIG_SENSORS_W83781D is not set
# CONFIG_SENSORS_W83791D is not set
# CONFIG_SENSORS_W83792D is not set
# CONFIG_SENSORS_W83793 is not set
# CONFIG_SENSORS_W83795 is not set
# CONFIG_SENSORS_W83L785TS is not set
# CONFIG_SENSORS_W83L786NG is not set
# CONFIG_SENSORS_W83627HF is not set
# CONFIG_SENSORS_W83627EHF is not set
# CONFIG_SENSORS_XGENE is not set

#
# ACPI drivers
#
# CONFIG_SENSORS_ACPI_POWER is not set
# CONFIG_SENSORS_ATK0110 is not set
# CONFIG_SENSORS_ASUS_WMI is not set
# CONFIG_SENSORS_ASUS_EC is not set
# CONFIG_SENSORS_HP_WMI is not set
CONFIG_THERMAL=y
CONFIG_THERMAL_NETLINK=y
# CONFIG_THERMAL_STATISTICS is not set
# CONFIG_THERMAL_DEBUGFS is not set
# CONFIG_THERMAL_CORE_TESTING is not set
CONFIG_THERMAL_EMERGENCY_POWEROFF_DELAY_MS=0
CONFIG_THERMAL_HWMON=y
# CONFIG_THERMAL_OF is not set
CONFIG_THERMAL_DEFAULT_GOV_STEP_WISE=y
# CONFIG_THERMAL_DEFAULT_GOV_FAIR_SHARE is not set
# CONFIG_THERMAL_DEFAULT_GOV_USER_SPACE is not set
# CONFIG_THERMAL_GOV_FAIR_SHARE is not set
CONFIG_THERMAL_GOV_STEP_WISE=y
# CONFIG_THERMAL_GOV_BANG_BANG is not set
# CONFIG_THERMAL_GOV_USER_SPACE is not set
# CONFIG_PCIE_THERMAL is not set
# CONFIG_THERMAL_EMULATION is not set
# CONFIG_THERMAL_MMIO is not set

#
# Intel thermal drivers
#
# CONFIG_INTEL_POWERCLAMP is not set
CONFIG_X86_THERMAL_VECTOR=y
# CONFIG_X86_PKG_TEMP_THERMAL is not set
# CONFIG_INTEL_SOC_DTS_THERMAL is not set

#
# ACPI INT340X thermal drivers
#
# CONFIG_INT340X_THERMAL is not set
# end of ACPI INT340X thermal drivers

# CONFIG_INTEL_BXT_PMIC_THERMAL is not set
# CONFIG_INTEL_PCH_THERMAL is not set
# CONFIG_INTEL_TCC_COOLING is not set
# CONFIG_INTEL_HFI_THERMAL is not set
# end of Intel thermal drivers

# CONFIG_GENERIC_ADC_THERMAL is not set
CONFIG_WATCHDOG=y
# CONFIG_WATCHDOG_CORE is not set
# CONFIG_WATCHDOG_NOWAYOUT is not set
CONFIG_WATCHDOG_HANDLE_BOOT_ENABLED=y
CONFIG_WATCHDOG_OPEN_TIMEOUT=0
# CONFIG_WATCHDOG_SYSFS is not set
# CONFIG_WATCHDOG_HRTIMER_PRETIMEOUT is not set

#
# Watchdog Pretimeout Governors
#

#
# Watchdog Device Drivers
#
# CONFIG_SOFT_WATCHDOG is not set
# CONFIG_GPIO_WATCHDOG is not set
# CONFIG_LENOVO_SE10_WDT is not set
# CONFIG_LENOVO_SE30_WDT is not set
# CONFIG_WDAT_WDT is not set
# CONFIG_XILINX_WATCHDOG is not set
# CONFIG_ZIIRAVE_WATCHDOG is not set
# CONFIG_CADENCE_WATCHDOG is not set
# CONFIG_DW_WATCHDOG is not set
# CONFIG_TWL4030_WATCHDOG is not set
# CONFIG_MAX63XX_WATCHDOG is not set
# CONFIG_RETU_WATCHDOG is not set
# CONFIG_ACQUIRE_WDT is not set
# CONFIG_ADVANTECH_WDT is not set
# CONFIG_ADVANTECH_EC_WDT is not set
# CONFIG_ALIM1535_WDT is not set
# CONFIG_ALIM7101_WDT is not set
# CONFIG_EBC_C384_WDT is not set
# CONFIG_EXAR_WDT is not set
# CONFIG_F71808E_WDT is not set
# CONFIG_SP5100_TCO is not set
# CONFIG_SBC_FITPC2_WATCHDOG is not set
# CONFIG_EUROTECH_WDT is not set
# CONFIG_IB700_WDT is not set
# CONFIG_IBMASR is not set
# CONFIG_WAFER_WDT is not set
# CONFIG_I6300ESB_WDT is not set
# CONFIG_IE6XX_WDT is not set
# CONFIG_INTEL_OC_WATCHDOG is not set
# CONFIG_ITCO_WDT is not set
# CONFIG_IT8712F_WDT is not set
# CONFIG_IT87_WDT is not set
# CONFIG_HP_WATCHDOG is not set
# CONFIG_SC1200_WDT is not set
# CONFIG_PC87413_WDT is not set
# CONFIG_NV_TCO is not set
# CONFIG_60XX_WDT is not set
# CONFIG_SMSC_SCH311X_WDT is not set
# CONFIG_SMSC37B787_WDT is not set
# CONFIG_TQMX86_WDT is not set
# CONFIG_VIA_WDT is not set
# CONFIG_W83627HF_WDT is not set
# CONFIG_W83877F_WDT is not set
# CONFIG_W83977F_WDT is not set
# CONFIG_MACHZ_WDT is not set
# CONFIG_SBC_EPX_C3_WATCHDOG is not set
# CONFIG_INTEL_MEI_WDT is not set
# CONFIG_NI903X_WDT is not set
# CONFIG_NIC7018_WDT is not set
# CONFIG_MEN_A21_WDT is not set

#
# PCI-based Watchdog Cards
#
# CONFIG_PCIPCWATCHDOG is not set
# CONFIG_WDTPCI is not set

#
# USB-based Watchdog Cards
#
CONFIG_USBPCWATCHDOG=y
CONFIG_SSB_POSSIBLE=y
CONFIG_SSB=y
CONFIG_SSB_PCIHOST_POSSIBLE=y
# CONFIG_SSB_PCIHOST is not set
CONFIG_SSB_PCMCIAHOST_POSSIBLE=y
# CONFIG_SSB_PCMCIAHOST is not set
CONFIG_SSB_SDIOHOST_POSSIBLE=y
# CONFIG_SSB_SDIOHOST is not set
# CONFIG_SSB_DRIVER_GPIO is not set
CONFIG_BCMA_POSSIBLE=y
CONFIG_BCMA=y
CONFIG_BCMA_HOST_PCI_POSSIBLE=y
# CONFIG_BCMA_HOST_PCI is not set
# CONFIG_BCMA_HOST_SOC is not set
# CONFIG_BCMA_DRIVER_PCI is not set
# CONFIG_BCMA_DRIVER_GMAC_CMN is not set
# CONFIG_BCMA_DRIVER_GPIO is not set
# CONFIG_BCMA_DEBUG is not set

#
# Multifunction device drivers
#
CONFIG_MFD_CORE=y
# CONFIG_MFD_ADP5585 is not set
# CONFIG_MFD_ACT8945A is not set
# CONFIG_MFD_AS3711 is not set
# CONFIG_MFD_SMPRO is not set
# CONFIG_MFD_AS3722 is not set
# CONFIG_PMIC_ADP5520 is not set
# CONFIG_MFD_AAT2870_CORE is not set
# CONFIG_MFD_ATMEL_FLEXCOM is not set
# CONFIG_MFD_ATMEL_HLCDC is not set
# CONFIG_MFD_BCM590XX is not set
# CONFIG_MFD_BD9571MWV is not set
# CONFIG_MFD_AXP20X_I2C is not set
# CONFIG_MFD_CGBC is not set
# CONFIG_MFD_CS40L50_I2C is not set
# CONFIG_MFD_CS40L50_SPI is not set
# CONFIG_MFD_CS42L43_I2C is not set
# CONFIG_MFD_CS42L43_SDW is not set
# CONFIG_MFD_LOCHNAGAR is not set
# CONFIG_MFD_MADERA is not set
# CONFIG_PMIC_DA903X is not set
# CONFIG_MFD_DA9052_SPI is not set
# CONFIG_MFD_DA9052_I2C is not set
# CONFIG_MFD_DA9055 is not set
# CONFIG_MFD_DA9062 is not set
# CONFIG_MFD_DA9063 is not set
# CONFIG_MFD_DA9150 is not set
CONFIG_MFD_DLN2=y
# CONFIG_MFD_GATEWORKS_GSC is not set
# CONFIG_MFD_MC13XXX_SPI is not set
# CONFIG_MFD_MC13XXX_I2C is not set
# CONFIG_MFD_MP2629 is not set
# CONFIG_MFD_HI6421_PMIC is not set
# CONFIG_MFD_INTEL_QUARK_I2C_GPIO is not set
CONFIG_LPC_ICH=y
# CONFIG_LPC_SCH is not set
# CONFIG_INTEL_SOC_PMIC is not set
CONFIG_INTEL_SOC_PMIC_BXTWC=y
CONFIG_INTEL_SOC_PMIC_CHTWC=y
# CONFIG_INTEL_SOC_PMIC_CHTDC_TI is not set
# CONFIG_MFD_INTEL_LPSS_ACPI is not set
# CONFIG_MFD_INTEL_LPSS_PCI is not set
CONFIG_MFD_INTEL_PMC_BXT=y
# CONFIG_MFD_IQS62X is not set
# CONFIG_MFD_JANZ_CMODIO is not set
# CONFIG_MFD_KEMPLD is not set
# CONFIG_MFD_88PM800 is not set
# CONFIG_MFD_88PM805 is not set
# CONFIG_MFD_88PM860X is not set
# CONFIG_MFD_88PM886_PMIC is not set
# CONFIG_MFD_MAX5970 is not set
# CONFIG_MFD_MAX14577 is not set
# CONFIG_MFD_MAX77541 is not set
# CONFIG_MFD_MAX77620 is not set
# CONFIG_MFD_MAX77650 is not set
# CONFIG_MFD_MAX77686 is not set
# CONFIG_MFD_MAX77693 is not set
# CONFIG_MFD_MAX77705 is not set
# CONFIG_MFD_MAX77714 is not set
# CONFIG_MFD_MAX77759 is not set
# CONFIG_MFD_MAX77843 is not set
# CONFIG_MFD_MAX8907 is not set
# CONFIG_MFD_MAX8925 is not set
# CONFIG_MFD_MAX8997 is not set
# CONFIG_MFD_MAX8998 is not set
CONFIG_MFD_MT6360=y
CONFIG_MFD_MT6370=y
# CONFIG_MFD_MT6397 is not set
# CONFIG_MFD_MENF21BMC is not set
# CONFIG_MFD_OCELOT is not set
# CONFIG_EZX_PCAP is not set
# CONFIG_MFD_CPCAP is not set
CONFIG_MFD_VIPERBOARD=y
# CONFIG_MFD_NTXEC is not set
CONFIG_MFD_RETU=y
# CONFIG_MFD_SY7636A is not set
# CONFIG_MFD_RDC321X is not set
# CONFIG_MFD_RT4831 is not set
# CONFIG_MFD_RT5033 is not set
# CONFIG_MFD_RT5120 is not set
# CONFIG_MFD_RC5T583 is not set
# CONFIG_MFD_RK8XX_I2C is not set
# CONFIG_MFD_RK8XX_SPI is not set
# CONFIG_MFD_RN5T618 is not set
# CONFIG_MFD_SEC_I2C is not set
# CONFIG_MFD_SI476X_CORE is not set
# CONFIG_MFD_SM501 is not set
# CONFIG_MFD_SKY81452 is not set
# CONFIG_MFD_STMPE is not set
CONFIG_MFD_SYSCON=y
# CONFIG_MFD_LP3943 is not set
# CONFIG_MFD_LP8788 is not set
# CONFIG_MFD_TI_LMU is not set
# CONFIG_MFD_PALMAS is not set
# CONFIG_TPS6105X is not set
# CONFIG_TPS65010 is not set
# CONFIG_TPS6507X is not set
# CONFIG_MFD_TPS65086 is not set
# CONFIG_MFD_TPS65090 is not set
# CONFIG_MFD_TPS65217 is not set
# CONFIG_MFD_TI_LP873X is not set
# CONFIG_MFD_TI_LP87565 is not set
# CONFIG_MFD_TPS65218 is not set
# CONFIG_MFD_TPS65219 is not set
# CONFIG_MFD_TPS6586X is not set
# CONFIG_MFD_TPS65910 is not set
# CONFIG_MFD_TPS65912_I2C is not set
# CONFIG_MFD_TPS65912_SPI is not set
# CONFIG_MFD_TPS6594_I2C is not set
# CONFIG_MFD_TPS6594_SPI is not set
CONFIG_TWL4030_CORE=y
# CONFIG_MFD_TWL4030_AUDIO is not set
# CONFIG_TWL6040_CORE is not set
# CONFIG_MFD_WL1273_CORE is not set
# CONFIG_MFD_LM3533 is not set
# CONFIG_MFD_TC3589X is not set
# CONFIG_MFD_TQMX86 is not set
# CONFIG_MFD_VX855 is not set
# CONFIG_MFD_ARIZONA_I2C is not set
# CONFIG_MFD_ARIZONA_SPI is not set
# CONFIG_MFD_WM8400 is not set
# CONFIG_MFD_WM831X_I2C is not set
# CONFIG_MFD_WM831X_SPI is not set
# CONFIG_MFD_WM8350_I2C is not set
# CONFIG_MFD_WM8994 is not set
# CONFIG_MFD_ROHM_BD718XX is not set
# CONFIG_MFD_ROHM_BD71828 is not set
# CONFIG_MFD_ROHM_BD957XMUF is not set
# CONFIG_MFD_ROHM_BD96801 is not set
# CONFIG_MFD_STPMIC1 is not set
# CONFIG_MFD_STMFX is not set
# CONFIG_MFD_ATC260X_I2C is not set
# CONFIG_MFD_QCOM_PM8008 is not set
# CONFIG_RAVE_SP_CORE is not set
# CONFIG_MFD_INTEL_M10_BMC_SPI is not set
# CONFIG_MFD_QNAP_MCU is not set
# CONFIG_MFD_RSMU_I2C is not set
# CONFIG_MFD_RSMU_SPI is not set
# CONFIG_MFD_UPBOARD_FPGA is not set
# end of Multifunction device drivers

CONFIG_REGULATOR=y
# CONFIG_REGULATOR_DEBUG is not set
CONFIG_REGULATOR_FIXED_VOLTAGE=y
# CONFIG_REGULATOR_VIRTUAL_CONSUMER is not set
# CONFIG_REGULATOR_USERSPACE_CONSUMER is not set
# CONFIG_REGULATOR_NETLINK_EVENTS is not set
# CONFIG_REGULATOR_88PG86X is not set
# CONFIG_REGULATOR_ACT8865 is not set
# CONFIG_REGULATOR_AD5398 is not set
# CONFIG_REGULATOR_ADP5055 is not set
# CONFIG_REGULATOR_AW37503 is not set
# CONFIG_REGULATOR_DA9121 is not set
# CONFIG_REGULATOR_DA9210 is not set
# CONFIG_REGULATOR_DA9211 is not set
# CONFIG_REGULATOR_FAN53555 is not set
# CONFIG_REGULATOR_FAN53880 is not set
# CONFIG_REGULATOR_GPIO is not set
# CONFIG_REGULATOR_ISL9305 is not set
# CONFIG_REGULATOR_ISL6271A is not set
# CONFIG_REGULATOR_LP3971 is not set
# CONFIG_REGULATOR_LP3972 is not set
# CONFIG_REGULATOR_LP872X is not set
# CONFIG_REGULATOR_LP8755 is not set
# CONFIG_REGULATOR_LTC3589 is not set
# CONFIG_REGULATOR_LTC3676 is not set
# CONFIG_REGULATOR_MAX1586 is not set
# CONFIG_REGULATOR_MAX77503 is not set
# CONFIG_REGULATOR_MAX77857 is not set
# CONFIG_REGULATOR_MAX8649 is not set
# CONFIG_REGULATOR_MAX8660 is not set
# CONFIG_REGULATOR_MAX8893 is not set
# CONFIG_REGULATOR_MAX8952 is not set
# CONFIG_REGULATOR_MAX20086 is not set
# CONFIG_REGULATOR_MAX20411 is not set
# CONFIG_REGULATOR_MAX77826 is not set
# CONFIG_REGULATOR_MCP16502 is not set
# CONFIG_REGULATOR_MP5416 is not set
# CONFIG_REGULATOR_MP8859 is not set
# CONFIG_REGULATOR_MP886X is not set
# CONFIG_REGULATOR_MPQ7920 is not set
# CONFIG_REGULATOR_MT6311 is not set
# CONFIG_REGULATOR_MT6360 is not set
# CONFIG_REGULATOR_MT6370 is not set
# CONFIG_REGULATOR_PCA9450 is not set
# CONFIG_REGULATOR_PF9453 is not set
# CONFIG_REGULATOR_PF8X00 is not set
# CONFIG_REGULATOR_PFUZE100 is not set
# CONFIG_REGULATOR_PV88060 is not set
# CONFIG_REGULATOR_PV88080 is not set
# CONFIG_REGULATOR_PV88090 is not set
# CONFIG_REGULATOR_RAA215300 is not set
# CONFIG_REGULATOR_RASPBERRYPI_TOUCHSCREEN_ATTINY is not set
# CONFIG_REGULATOR_RASPBERRYPI_TOUCHSCREEN_V2 is not set
# CONFIG_REGULATOR_RT4801 is not set
# CONFIG_REGULATOR_RT4803 is not set
# CONFIG_REGULATOR_RT5190A is not set
# CONFIG_REGULATOR_RT5739 is not set
# CONFIG_REGULATOR_RT5759 is not set
# CONFIG_REGULATOR_RT6160 is not set
# CONFIG_REGULATOR_RT6190 is not set
# CONFIG_REGULATOR_RT6245 is not set
# CONFIG_REGULATOR_RTQ2134 is not set
# CONFIG_REGULATOR_RTMV20 is not set
# CONFIG_REGULATOR_RTQ6752 is not set
# CONFIG_REGULATOR_RTQ2208 is not set
# CONFIG_REGULATOR_SLG51000 is not set
# CONFIG_REGULATOR_SY8106A is not set
# CONFIG_REGULATOR_SY8824X is not set
# CONFIG_REGULATOR_SY8827N is not set
# CONFIG_REGULATOR_TPS51632 is not set
# CONFIG_REGULATOR_TPS62360 is not set
# CONFIG_REGULATOR_TPS6286X is not set
# CONFIG_REGULATOR_TPS6287X is not set
# CONFIG_REGULATOR_TPS65023 is not set
# CONFIG_REGULATOR_TPS6507X is not set
# CONFIG_REGULATOR_TPS65132 is not set
# CONFIG_REGULATOR_TPS6524X is not set
CONFIG_REGULATOR_TWL4030=y
# CONFIG_REGULATOR_VCTRL is not set
CONFIG_RC_CORE=y
# CONFIG_LIRC is not set
# CONFIG_RC_MAP is not set
# CONFIG_RC_DECODERS is not set
CONFIG_RC_DEVICES=y
# CONFIG_IR_ENE is not set
# CONFIG_IR_FINTEK is not set
# CONFIG_IR_GPIO_CIR is not set
# CONFIG_IR_HIX5HD2 is not set
CONFIG_IR_IGORPLUGUSB=y
CONFIG_IR_IGUANA=y
CONFIG_IR_IMON=y
CONFIG_IR_IMON_RAW=y
# CONFIG_IR_ITE_CIR is not set
CONFIG_IR_MCEUSB=y
# CONFIG_IR_NUVOTON is not set
CONFIG_IR_REDRAT3=y
# CONFIG_IR_SERIAL is not set
CONFIG_IR_STREAMZAP=y
CONFIG_IR_TOY=y
CONFIG_IR_TTUSBIR=y
# CONFIG_IR_WINBOND_CIR is not set
CONFIG_RC_ATI_REMOTE=y
# CONFIG_RC_LOOPBACK is not set
CONFIG_RC_XBOX_DVD=y
CONFIG_CEC_CORE=y

#
# CEC support
#
# CONFIG_MEDIA_CEC_RC is not set
CONFIG_MEDIA_CEC_SUPPORT=y
# CONFIG_CEC_CH7322 is not set
# CONFIG_CEC_NXP_TDA9950 is not set
# CONFIG_CEC_GPIO is not set
# CONFIG_CEC_SECO is not set
# CONFIG_USB_EXTRON_DA_HD_4K_PLUS_CEC is not set
CONFIG_USB_PULSE8_CEC=y
CONFIG_USB_RAINSHADOW_CEC=y
# end of CEC support

CONFIG_MEDIA_SUPPORT=y
CONFIG_MEDIA_SUPPORT_FILTER=y
# CONFIG_MEDIA_SUBDRV_AUTOSELECT is not set

#
# Media device types
#
CONFIG_MEDIA_CAMERA_SUPPORT=y
CONFIG_MEDIA_ANALOG_TV_SUPPORT=y
CONFIG_MEDIA_DIGITAL_TV_SUPPORT=y
CONFIG_MEDIA_RADIO_SUPPORT=y
CONFIG_MEDIA_SDR_SUPPORT=y
CONFIG_MEDIA_PLATFORM_SUPPORT=y
CONFIG_MEDIA_TEST_SUPPORT=y
# end of Media device types

CONFIG_VIDEO_DEV=y
CONFIG_MEDIA_CONTROLLER=y
CONFIG_DVB_CORE=y

#
# Video4Linux options
#
CONFIG_VIDEO_V4L2_I2C=y
CONFIG_VIDEO_V4L2_SUBDEV_API=y
# CONFIG_VIDEO_ADV_DEBUG is not set
# CONFIG_VIDEO_FIXED_MINOR_RANGES is not set
CONFIG_VIDEO_TUNER=y
CONFIG_V4L2_MEM2MEM_DEV=y
CONFIG_V4L2_FWNODE=y
CONFIG_V4L2_ASYNC=y
# end of Video4Linux options

#
# Media controller options
#
CONFIG_MEDIA_CONTROLLER_DVB=y
# end of Media controller options

#
# Digital TV options
#
# CONFIG_DVB_MMAP is not set
# CONFIG_DVB_NET is not set
CONFIG_DVB_MAX_ADAPTERS=16
# CONFIG_DVB_DYNAMIC_MINORS is not set
# CONFIG_DVB_DEMUX_SECTION_LOSS_LOG is not set
# CONFIG_DVB_ULE_DEBUG is not set
# end of Digital TV options

#
# Media drivers
#

#
# Drivers filtered as selected at 'Filter media drivers'
#

#
# Media drivers
#
CONFIG_MEDIA_USB_SUPPORT=y

#
# Webcam devices
#
CONFIG_USB_GSPCA=y
CONFIG_USB_GSPCA_BENQ=y
CONFIG_USB_GSPCA_CONEX=y
CONFIG_USB_GSPCA_CPIA1=y
CONFIG_USB_GSPCA_DTCS033=y
CONFIG_USB_GSPCA_ETOMS=y
CONFIG_USB_GSPCA_FINEPIX=y
CONFIG_USB_GSPCA_JEILINJ=y
CONFIG_USB_GSPCA_JL2005BCD=y
CONFIG_USB_GSPCA_KINECT=y
CONFIG_USB_GSPCA_KONICA=y
CONFIG_USB_GSPCA_MARS=y
CONFIG_USB_GSPCA_MR97310A=y
CONFIG_USB_GSPCA_NW80X=y
CONFIG_USB_GSPCA_OV519=y
CONFIG_USB_GSPCA_OV534=y
CONFIG_USB_GSPCA_OV534_9=y
CONFIG_USB_GSPCA_PAC207=y
CONFIG_USB_GSPCA_PAC7302=y
CONFIG_USB_GSPCA_PAC7311=y
CONFIG_USB_GSPCA_SE401=y
CONFIG_USB_GSPCA_SN9C2028=y
CONFIG_USB_GSPCA_SN9C20X=y
CONFIG_USB_GSPCA_SONIXB=y
CONFIG_USB_GSPCA_SONIXJ=y
CONFIG_USB_GSPCA_SPCA1528=y
CONFIG_USB_GSPCA_SPCA500=y
CONFIG_USB_GSPCA_SPCA501=y
CONFIG_USB_GSPCA_SPCA505=y
CONFIG_USB_GSPCA_SPCA506=y
CONFIG_USB_GSPCA_SPCA508=y
CONFIG_USB_GSPCA_SPCA561=y
CONFIG_USB_GSPCA_SQ905=y
CONFIG_USB_GSPCA_SQ905C=y
CONFIG_USB_GSPCA_SQ930X=y
CONFIG_USB_GSPCA_STK014=y
CONFIG_USB_GSPCA_STK1135=y
CONFIG_USB_GSPCA_STV0680=y
CONFIG_USB_GSPCA_SUNPLUS=y
CONFIG_USB_GSPCA_T613=y
CONFIG_USB_GSPCA_TOPRO=y
CONFIG_USB_GSPCA_TOUPTEK=y
CONFIG_USB_GSPCA_TV8532=y
CONFIG_USB_GSPCA_VC032X=y
CONFIG_USB_GSPCA_VICAM=y
CONFIG_USB_GSPCA_XIRLINK_CIT=y
CONFIG_USB_GSPCA_ZC3XX=y
CONFIG_USB_GL860=y
CONFIG_USB_M5602=y
CONFIG_USB_STV06XX=y
CONFIG_USB_PWC=y
# CONFIG_USB_PWC_DEBUG is not set
CONFIG_USB_PWC_INPUT_EVDEV=y
CONFIG_USB_S2255=y
CONFIG_VIDEO_USBTV=y
CONFIG_USB_VIDEO_CLASS=y
CONFIG_USB_VIDEO_CLASS_INPUT_EVDEV=y

#
# Analog TV USB devices
#
CONFIG_VIDEO_GO7007=y
CONFIG_VIDEO_GO7007_USB=y
CONFIG_VIDEO_GO7007_LOADER=y
CONFIG_VIDEO_GO7007_USB_S2250_BOARD=y
CONFIG_VIDEO_HDPVR=y
CONFIG_VIDEO_PVRUSB2=y
CONFIG_VIDEO_PVRUSB2_SYSFS=y
CONFIG_VIDEO_PVRUSB2_DVB=y
# CONFIG_VIDEO_PVRUSB2_DEBUGIFC is not set
CONFIG_VIDEO_STK1160=y

#
# Analog/digital TV USB devices
#
CONFIG_VIDEO_AU0828=y
CONFIG_VIDEO_AU0828_V4L2=y
CONFIG_VIDEO_AU0828_RC=y
CONFIG_VIDEO_CX231XX=y
CONFIG_VIDEO_CX231XX_RC=y
CONFIG_VIDEO_CX231XX_ALSA=y
CONFIG_VIDEO_CX231XX_DVB=y

#
# Digital TV USB devices
#
CONFIG_DVB_AS102=y
CONFIG_DVB_B2C2_FLEXCOP_USB=y
# CONFIG_DVB_B2C2_FLEXCOP_USB_DEBUG is not set
CONFIG_DVB_USB_V2=y
CONFIG_DVB_USB_AF9015=y
CONFIG_DVB_USB_AF9035=y
CONFIG_DVB_USB_ANYSEE=y
CONFIG_DVB_USB_AU6610=y
CONFIG_DVB_USB_AZ6007=y
CONFIG_DVB_USB_CE6230=y
CONFIG_DVB_USB_DVBSKY=y
CONFIG_DVB_USB_EC168=y
CONFIG_DVB_USB_GL861=y
CONFIG_DVB_USB_LME2510=y
CONFIG_DVB_USB_MXL111SF=y
CONFIG_DVB_USB_RTL28XXU=y
CONFIG_DVB_USB_ZD1301=y
CONFIG_DVB_USB=y
# CONFIG_DVB_USB_DEBUG is not set
CONFIG_DVB_USB_A800=y
CONFIG_DVB_USB_AF9005=y
CONFIG_DVB_USB_AF9005_REMOTE=y
CONFIG_DVB_USB_AZ6027=y
CONFIG_DVB_USB_CINERGY_T2=y
CONFIG_DVB_USB_CXUSB=y
CONFIG_DVB_USB_CXUSB_ANALOG=y
CONFIG_DVB_USB_DIB0700=y
CONFIG_DVB_USB_DIB3000MC=y
CONFIG_DVB_USB_DIBUSB_MB=y
# CONFIG_DVB_USB_DIBUSB_MB_FAULTY is not set
CONFIG_DVB_USB_DIBUSB_MC=y
CONFIG_DVB_USB_DIGITV=y
CONFIG_DVB_USB_DTT200U=y
CONFIG_DVB_USB_DTV5100=y
CONFIG_DVB_USB_DW2102=y
CONFIG_DVB_USB_GP8PSK=y
CONFIG_DVB_USB_M920X=y
CONFIG_DVB_USB_NOVA_T_USB2=y
CONFIG_DVB_USB_OPERA1=y
CONFIG_DVB_USB_PCTV452E=y
CONFIG_DVB_USB_TECHNISAT_USB2=y
CONFIG_DVB_USB_TTUSB2=y
CONFIG_DVB_USB_UMT_010=y
CONFIG_DVB_USB_VP702X=y
CONFIG_DVB_USB_VP7045=y
CONFIG_SMS_USB_DRV=y
CONFIG_DVB_TTUSB_BUDGET=y
CONFIG_DVB_TTUSB_DEC=y

#
# Webcam, TV (analog/digital) USB devices
#
CONFIG_VIDEO_EM28XX=y
CONFIG_VIDEO_EM28XX_V4L2=y
CONFIG_VIDEO_EM28XX_ALSA=y
CONFIG_VIDEO_EM28XX_DVB=y
CONFIG_VIDEO_EM28XX_RC=y

#
# Software defined radio USB devices
#
CONFIG_USB_AIRSPY=y
CONFIG_USB_HACKRF=y
CONFIG_USB_MSI2500=y
# CONFIG_MEDIA_PCI_SUPPORT is not set
CONFIG_RADIO_ADAPTERS=y
# CONFIG_RADIO_MAXIRADIO is not set
# CONFIG_RADIO_SAA7706H is not set
CONFIG_RADIO_SHARK=y
CONFIG_RADIO_SHARK2=y
CONFIG_RADIO_SI4713=y
CONFIG_RADIO_TEA575X=y
# CONFIG_RADIO_TEA5764 is not set
# CONFIG_RADIO_TEF6862 is not set
# CONFIG_RADIO_WL1273 is not set
CONFIG_USB_DSBR=y
CONFIG_USB_KEENE=y
CONFIG_USB_MA901=y
CONFIG_USB_MR800=y
CONFIG_USB_RAREMONO=y
CONFIG_RADIO_SI470X=y
CONFIG_USB_SI470X=y
# CONFIG_I2C_SI470X is not set
CONFIG_USB_SI4713=y
# CONFIG_PLATFORM_SI4713 is not set
CONFIG_I2C_SI4713=y
# CONFIG_MEDIA_PLATFORM_DRIVERS is not set

#
# MMC/SDIO DVB adapters
#
CONFIG_SMS_SDIO_DRV=y
CONFIG_V4L_TEST_DRIVERS=y
CONFIG_VIDEO_VIM2M=y
CONFIG_VIDEO_VICODEC=y
CONFIG_VIDEO_VIMC=y
CONFIG_VIDEO_VIVID=y
CONFIG_VIDEO_VIVID_CEC=y
# CONFIG_VIDEO_VIVID_OSD is not set
CONFIG_VIDEO_VIVID_MAX_DEVS=64
# CONFIG_VIDEO_VISL is not set
CONFIG_DVB_TEST_DRIVERS=y
CONFIG_DVB_VIDTV=y

#
# FireWire (IEEE 1394) Adapters
#
# CONFIG_DVB_FIREDTV is not set
CONFIG_MEDIA_COMMON_OPTIONS=y

#
# common driver options
#
CONFIG_CYPRESS_FIRMWARE=y
CONFIG_TTPCI_EEPROM=y
CONFIG_UVC_COMMON=y
CONFIG_VIDEO_CX2341X=y
CONFIG_VIDEO_TVEEPROM=y
CONFIG_DVB_B2C2_FLEXCOP=y
CONFIG_SMS_SIANO_MDTV=y
CONFIG_SMS_SIANO_RC=y
CONFIG_SMS_SIANO_DEBUGFS=y
CONFIG_VIDEO_V4L2_TPG=y
CONFIG_VIDEOBUF2_CORE=y
CONFIG_VIDEOBUF2_V4L2=y
CONFIG_VIDEOBUF2_MEMOPS=y
CONFIG_VIDEOBUF2_DMA_CONTIG=y
CONFIG_VIDEOBUF2_VMALLOC=y
CONFIG_VIDEOBUF2_DMA_SG=y
# end of Media drivers

#
# Media ancillary drivers
#
CONFIG_MEDIA_ATTACH=y
# CONFIG_VIDEO_IR_I2C is not set
# CONFIG_VIDEO_CAMERA_SENSOR is not set

#
# Camera ISPs
#
# CONFIG_VIDEO_THP7312 is not set
# end of Camera ISPs

CONFIG_VIDEO_CAMERA_LENS=y
# CONFIG_VIDEO_AD5820 is not set
# CONFIG_VIDEO_AK7375 is not set
# CONFIG_VIDEO_DW9714 is not set
# CONFIG_VIDEO_DW9719 is not set
# CONFIG_VIDEO_DW9768 is not set
# CONFIG_VIDEO_DW9807_VCM is not set

#
# Flash devices
#
# CONFIG_VIDEO_ADP1653 is not set
# CONFIG_VIDEO_LM3560 is not set
# CONFIG_VIDEO_LM3646 is not set
# end of Flash devices

#
# Audio decoders, processors and mixers
#
# CONFIG_VIDEO_CS3308 is not set
# CONFIG_VIDEO_CS5345 is not set
CONFIG_VIDEO_CS53L32A=y
CONFIG_VIDEO_MSP3400=y
# CONFIG_VIDEO_SONY_BTF_MPX is not set
# CONFIG_VIDEO_TDA1997X is not set
# CONFIG_VIDEO_TDA7432 is not set
# CONFIG_VIDEO_TDA9840 is not set
# CONFIG_VIDEO_TEA6415C is not set
# CONFIG_VIDEO_TEA6420 is not set
# CONFIG_VIDEO_TLV320AIC23B is not set
# CONFIG_VIDEO_TVAUDIO is not set
# CONFIG_VIDEO_UDA1342 is not set
# CONFIG_VIDEO_VP27SMPX is not set
# CONFIG_VIDEO_WM8739 is not set
CONFIG_VIDEO_WM8775=y
# end of Audio decoders, processors and mixers

#
# RDS decoders
#
# CONFIG_VIDEO_SAA6588 is not set
# end of RDS decoders

#
# Video decoders
#
# CONFIG_VIDEO_ADV7180 is not set
# CONFIG_VIDEO_ADV7183 is not set
# CONFIG_VIDEO_ADV748X is not set
# CONFIG_VIDEO_ADV7604 is not set
# CONFIG_VIDEO_ADV7842 is not set
# CONFIG_VIDEO_BT819 is not set
# CONFIG_VIDEO_BT856 is not set
# CONFIG_VIDEO_BT866 is not set
# CONFIG_VIDEO_ISL7998X is not set
# CONFIG_VIDEO_LT6911UXE is not set
# CONFIG_VIDEO_KS0127 is not set
# CONFIG_VIDEO_MAX9286 is not set
# CONFIG_VIDEO_ML86V7667 is not set
# CONFIG_VIDEO_SAA7110 is not set
CONFIG_VIDEO_SAA711X=y
# CONFIG_VIDEO_TC358743 is not set
# CONFIG_VIDEO_TC358746 is not set
# CONFIG_VIDEO_TVP514X is not set
# CONFIG_VIDEO_TVP5150 is not set
# CONFIG_VIDEO_TVP7002 is not set
# CONFIG_VIDEO_TW2804 is not set
# CONFIG_VIDEO_TW9900 is not set
# CONFIG_VIDEO_TW9903 is not set
# CONFIG_VIDEO_TW9906 is not set
# CONFIG_VIDEO_TW9910 is not set
# CONFIG_VIDEO_VPX3220 is not set

#
# Video and audio decoders
#
# CONFIG_VIDEO_SAA717X is not set
CONFIG_VIDEO_CX25840=y
# end of Video decoders

#
# Video encoders
#
# CONFIG_VIDEO_ADV7170 is not set
# CONFIG_VIDEO_ADV7175 is not set
# CONFIG_VIDEO_ADV7343 is not set
# CONFIG_VIDEO_ADV7393 is not set
# CONFIG_VIDEO_ADV7511 is not set
# CONFIG_VIDEO_AK881X is not set
# CONFIG_VIDEO_SAA7127 is not set
# CONFIG_VIDEO_SAA7185 is not set
# CONFIG_VIDEO_THS8200 is not set
# end of Video encoders

#
# Video improvement chips
#
# CONFIG_VIDEO_UPD64031A is not set
# CONFIG_VIDEO_UPD64083 is not set
# end of Video improvement chips

#
# Audio/Video compression chips
#
# CONFIG_VIDEO_SAA6752HS is not set
# end of Audio/Video compression chips

#
# SDR tuner chips
#
# CONFIG_SDR_MAX2175 is not set
# end of SDR tuner chips

#
# Miscellaneous helper chips
#
# CONFIG_VIDEO_I2C is not set
# CONFIG_VIDEO_M52790 is not set
# CONFIG_VIDEO_ST_MIPID02 is not set
# CONFIG_VIDEO_THS7303 is not set
# end of Miscellaneous helper chips

#
# Video serializers and deserializers
#
# CONFIG_VIDEO_DS90UB913 is not set
# CONFIG_VIDEO_DS90UB953 is not set
# CONFIG_VIDEO_DS90UB960 is not set
# CONFIG_VIDEO_MAX96714 is not set
# CONFIG_VIDEO_MAX96717 is not set
# end of Video serializers and deserializers

#
# Media SPI Adapters
#
# CONFIG_CXD2880_SPI_DRV is not set
# CONFIG_VIDEO_GS1662 is not set
# end of Media SPI Adapters

CONFIG_MEDIA_TUNER=y

#
# Customize TV tuners
#
# CONFIG_MEDIA_TUNER_E4000 is not set
# CONFIG_MEDIA_TUNER_FC0011 is not set
# CONFIG_MEDIA_TUNER_FC0012 is not set
# CONFIG_MEDIA_TUNER_FC0013 is not set
# CONFIG_MEDIA_TUNER_FC2580 is not set
# CONFIG_MEDIA_TUNER_IT913X is not set
# CONFIG_MEDIA_TUNER_M88RS6000T is not set
# CONFIG_MEDIA_TUNER_MAX2165 is not set
# CONFIG_MEDIA_TUNER_MC44S803 is not set
CONFIG_MEDIA_TUNER_MSI001=y
# CONFIG_MEDIA_TUNER_MT2060 is not set
# CONFIG_MEDIA_TUNER_MT2063 is not set
# CONFIG_MEDIA_TUNER_MT20XX is not set
# CONFIG_MEDIA_TUNER_MT2131 is not set
# CONFIG_MEDIA_TUNER_MT2266 is not set
# CONFIG_MEDIA_TUNER_MXL301RF is not set
# CONFIG_MEDIA_TUNER_MXL5005S is not set
# CONFIG_MEDIA_TUNER_MXL5007T is not set
# CONFIG_MEDIA_TUNER_QM1D1B0004 is not set
# CONFIG_MEDIA_TUNER_QM1D1C0042 is not set
# CONFIG_MEDIA_TUNER_QT1010 is not set
# CONFIG_MEDIA_TUNER_R820T is not set
# CONFIG_MEDIA_TUNER_SI2157 is not set
# CONFIG_MEDIA_TUNER_SIMPLE is not set
# CONFIG_MEDIA_TUNER_TDA18212 is not set
# CONFIG_MEDIA_TUNER_TDA18218 is not set
# CONFIG_MEDIA_TUNER_TDA18250 is not set
# CONFIG_MEDIA_TUNER_TDA18271 is not set
# CONFIG_MEDIA_TUNER_TDA827X is not set
# CONFIG_MEDIA_TUNER_TDA8290 is not set
# CONFIG_MEDIA_TUNER_TDA9887 is not set
# CONFIG_MEDIA_TUNER_TEA5761 is not set
# CONFIG_MEDIA_TUNER_TEA5767 is not set
# CONFIG_MEDIA_TUNER_TUA9001 is not set
# CONFIG_MEDIA_TUNER_XC2028 is not set
# CONFIG_MEDIA_TUNER_XC4000 is not set
# CONFIG_MEDIA_TUNER_XC5000 is not set
# end of Customize TV tuners

#
# Customise DVB Frontends
#

#
# Multistandard (satellite) frontends
#
# CONFIG_DVB_M88DS3103 is not set
# CONFIG_DVB_MXL5XX is not set
# CONFIG_DVB_STB0899 is not set
# CONFIG_DVB_STB6100 is not set
# CONFIG_DVB_STV090x is not set
# CONFIG_DVB_STV0910 is not set
# CONFIG_DVB_STV6110x is not set
# CONFIG_DVB_STV6111 is not set

#
# Multistandard (cable + terrestrial) frontends
#
# CONFIG_DVB_DRXK is not set
# CONFIG_DVB_MN88472 is not set
# CONFIG_DVB_MN88473 is not set
# CONFIG_DVB_SI2165 is not set
# CONFIG_DVB_TDA18271C2DD is not set

#
# DVB-S (satellite) frontends
#
# CONFIG_DVB_CX24110 is not set
# CONFIG_DVB_CX24116 is not set
# CONFIG_DVB_CX24117 is not set
# CONFIG_DVB_CX24120 is not set
# CONFIG_DVB_CX24123 is not set
# CONFIG_DVB_DS3000 is not set
# CONFIG_DVB_MB86A16 is not set
# CONFIG_DVB_MT312 is not set
# CONFIG_DVB_S5H1420 is not set
# CONFIG_DVB_SI21XX is not set
# CONFIG_DVB_STB6000 is not set
# CONFIG_DVB_STV0288 is not set
# CONFIG_DVB_STV0299 is not set
# CONFIG_DVB_STV0900 is not set
# CONFIG_DVB_STV6110 is not set
# CONFIG_DVB_TDA10071 is not set
# CONFIG_DVB_TDA10086 is not set
# CONFIG_DVB_TDA8083 is not set
# CONFIG_DVB_TDA8261 is not set
# CONFIG_DVB_TDA826X is not set
# CONFIG_DVB_TS2020 is not set
# CONFIG_DVB_TUA6100 is not set
# CONFIG_DVB_TUNER_CX24113 is not set
# CONFIG_DVB_TUNER_ITD1000 is not set
# CONFIG_DVB_VES1X93 is not set
# CONFIG_DVB_ZL10036 is not set
# CONFIG_DVB_ZL10039 is not set

#
# DVB-T (terrestrial) frontends
#
CONFIG_DVB_AF9013=y
CONFIG_DVB_AS102_FE=y
# CONFIG_DVB_CX22700 is not set
# CONFIG_DVB_CX22702 is not set
# CONFIG_DVB_CXD2820R is not set
# CONFIG_DVB_CXD2841ER is not set
CONFIG_DVB_DIB3000MB=y
CONFIG_DVB_DIB3000MC=y
# CONFIG_DVB_DIB7000M is not set
# CONFIG_DVB_DIB7000P is not set
# CONFIG_DVB_DIB9000 is not set
# CONFIG_DVB_DRXD is not set
CONFIG_DVB_EC100=y
CONFIG_DVB_GP8PSK_FE=y
# CONFIG_DVB_L64781 is not set
# CONFIG_DVB_MT352 is not set
# CONFIG_DVB_NXT6000 is not set
CONFIG_DVB_RTL2830=y
CONFIG_DVB_RTL2832=y
CONFIG_DVB_RTL2832_SDR=y
# CONFIG_DVB_S5H1432 is not set
# CONFIG_DVB_SI2168 is not set
# CONFIG_DVB_SP887X is not set
# CONFIG_DVB_STV0367 is not set
# CONFIG_DVB_TDA10048 is not set
# CONFIG_DVB_TDA1004X is not set
# CONFIG_DVB_ZD1301_DEMOD is not set
CONFIG_DVB_ZL10353=y
# CONFIG_DVB_CXD2880 is not set

#
# DVB-C (cable) frontends
#
# CONFIG_DVB_STV0297 is not set
# CONFIG_DVB_TDA10021 is not set
# CONFIG_DVB_TDA10023 is not set
# CONFIG_DVB_VES1820 is not set

#
# ATSC (North American/Korean Terrestrial/Cable DTV) frontends
#
# CONFIG_DVB_AU8522_DTV is not set
# CONFIG_DVB_AU8522_V4L is not set
# CONFIG_DVB_BCM3510 is not set
# CONFIG_DVB_LG2160 is not set
# CONFIG_DVB_LGDT3305 is not set
# CONFIG_DVB_LGDT3306A is not set
# CONFIG_DVB_LGDT330X is not set
# CONFIG_DVB_MXL692 is not set
# CONFIG_DVB_NXT200X is not set
# CONFIG_DVB_OR51132 is not set
# CONFIG_DVB_OR51211 is not set
# CONFIG_DVB_S5H1409 is not set
# CONFIG_DVB_S5H1411 is not set

#
# ISDB-T (terrestrial) frontends
#
# CONFIG_DVB_DIB8000 is not set
# CONFIG_DVB_MB86A20S is not set
# CONFIG_DVB_S921 is not set

#
# ISDB-S (satellite) & ISDB-T (terrestrial) frontends
#
# CONFIG_DVB_MN88443X is not set
# CONFIG_DVB_TC90522 is not set

#
# Digital terrestrial only tuners/PLL
#
# CONFIG_DVB_PLL is not set
# CONFIG_DVB_TUNER_DIB0070 is not set
# CONFIG_DVB_TUNER_DIB0090 is not set

#
# SEC control devices for DVB-S
#
# CONFIG_DVB_A8293 is not set
CONFIG_DVB_AF9033=y
# CONFIG_DVB_ASCOT2E is not set
# CONFIG_DVB_ATBM8830 is not set
# CONFIG_DVB_HELENE is not set
# CONFIG_DVB_HORUS3A is not set
# CONFIG_DVB_ISL6405 is not set
# CONFIG_DVB_ISL6421 is not set
# CONFIG_DVB_ISL6423 is not set
# CONFIG_DVB_IX2505V is not set
# CONFIG_DVB_LGS8GL5 is not set
# CONFIG_DVB_LGS8GXX is not set
# CONFIG_DVB_LNBH25 is not set
# CONFIG_DVB_LNBH29 is not set
# CONFIG_DVB_LNBP21 is not set
# CONFIG_DVB_LNBP22 is not set
# CONFIG_DVB_M88RS2000 is not set
# CONFIG_DVB_TDA665x is not set
# CONFIG_DVB_DRX39XYJ is not set

#
# Common Interface (EN50221) controller drivers
#
# CONFIG_DVB_CXD2099 is not set
# CONFIG_DVB_SP2 is not set
# end of Customise DVB Frontends

#
# Tools to develop new frontends
#
# CONFIG_DVB_DUMMY_FE is not set
# end of Media ancillary drivers

#
# Graphics support
#
CONFIG_APERTURE_HELPERS=y
CONFIG_SCREEN_INFO=y
CONFIG_VIDEO=y
# CONFIG_AUXDISPLAY is not set
# CONFIG_PANEL is not set
CONFIG_AGP=y
CONFIG_AGP_AMD64=y
CONFIG_AGP_INTEL=y
# CONFIG_AGP_SIS is not set
# CONFIG_AGP_VIA is not set
CONFIG_INTEL_GTT=y
# CONFIG_VGA_SWITCHEROO is not set
CONFIG_DRM=y

#
# DRM debugging options
#
# CONFIG_DRM_WERROR is not set
CONFIG_DRM_DEBUG_MM=y
# end of DRM debugging options

CONFIG_DRM_MIPI_DSI=y
CONFIG_DRM_KMS_HELPER=y
# CONFIG_DRM_PANIC is not set
# CONFIG_DRM_DEBUG_DP_MST_TOPOLOGY_REFS is not set
# CONFIG_DRM_DEBUG_MODESET_LOCK is not set
CONFIG_DRM_CLIENT=y
CONFIG_DRM_CLIENT_LIB=y
CONFIG_DRM_CLIENT_SELECTION=y
CONFIG_DRM_CLIENT_SETUP=y

#
# Supported DRM clients
#
CONFIG_DRM_FBDEV_EMULATION=y
CONFIG_DRM_FBDEV_OVERALLOC=100
# CONFIG_DRM_FBDEV_LEAK_PHYS_SMEM is not set
# CONFIG_DRM_CLIENT_LOG is not set
CONFIG_DRM_CLIENT_DEFAULT_FBDEV=y
CONFIG_DRM_CLIENT_DEFAULT="fbdev"
# end of Supported DRM clients

# CONFIG_DRM_LOAD_EDID_FIRMWARE is not set
CONFIG_DRM_DISPLAY_DP_AUX_BUS=y
CONFIG_DRM_DISPLAY_HELPER=y
# CONFIG_DRM_DISPLAY_DP_AUX_CEC is not set
# CONFIG_DRM_DISPLAY_DP_AUX_CHARDEV is not set
CONFIG_DRM_DISPLAY_DP_HELPER=y
CONFIG_DRM_DISPLAY_DSC_HELPER=y
CONFIG_DRM_DISPLAY_HDCP_HELPER=y
CONFIG_DRM_DISPLAY_HDMI_HELPER=y
CONFIG_DRM_TTM=y
CONFIG_DRM_BUDDY=y
CONFIG_DRM_TTM_HELPER=y
CONFIG_DRM_GEM_SHMEM_HELPER=y

#
# Drivers for system framebuffers
#
CONFIG_DRM_SYSFB_HELPER=y
CONFIG_DRM_SIMPLEDRM=y
# CONFIG_DRM_VESADRM is not set
# end of Drivers for system framebuffers

#
# ARM devices
#
# CONFIG_DRM_KOMEDA is not set
# end of ARM devices

# CONFIG_DRM_RADEON is not set
# CONFIG_DRM_AMDGPU is not set
# CONFIG_DRM_NOUVEAU is not set
CONFIG_DRM_I915=y
CONFIG_DRM_I915_FORCE_PROBE=""
CONFIG_DRM_I915_CAPTURE_ERROR=y
CONFIG_DRM_I915_COMPRESS_ERROR=y
CONFIG_DRM_I915_USERPTR=y
# CONFIG_DRM_I915_GVT_KVMGT is not set
# CONFIG_DRM_I915_DP_TUNNEL is not set

#
# drm/i915 Debugging
#
# CONFIG_DRM_I915_WERROR is not set
# CONFIG_DRM_I915_REPLAY_GPU_HANGS_API is not set
# CONFIG_DRM_I915_DEBUG is not set
# CONFIG_DRM_I915_DEBUG_MMIO is not set
# CONFIG_DRM_I915_SW_FENCE_DEBUG_OBJECTS is not set
# CONFIG_DRM_I915_SW_FENCE_CHECK_DAG is not set
# CONFIG_DRM_I915_DEBUG_GUC is not set
# CONFIG_DRM_I915_SELFTEST is not set
# CONFIG_DRM_I915_LOW_LEVEL_TRACEPOINTS is not set
# CONFIG_DRM_I915_DEBUG_VBLANK_EVADE is not set
# CONFIG_DRM_I915_DEBUG_RUNTIME_PM is not set
# CONFIG_DRM_I915_DEBUG_WAKEREF is not set
# end of drm/i915 Debugging

#
# drm/i915 Profile Guided Optimisation
#
CONFIG_DRM_I915_REQUEST_TIMEOUT=20000
CONFIG_DRM_I915_FENCE_TIMEOUT=10000
CONFIG_DRM_I915_USERFAULT_AUTOSUSPEND=250
CONFIG_DRM_I915_HEARTBEAT_INTERVAL=2500
CONFIG_DRM_I915_PREEMPT_TIMEOUT=640
CONFIG_DRM_I915_PREEMPT_TIMEOUT_COMPUTE=7500
CONFIG_DRM_I915_MAX_REQUEST_BUSYWAIT=8000
CONFIG_DRM_I915_STOP_TIMEOUT=100
CONFIG_DRM_I915_TIMESLICE_DURATION=1
# end of drm/i915 Profile Guided Optimisation

# CONFIG_DRM_XE is not set
CONFIG_DRM_VGEM=y
CONFIG_DRM_VKMS=y
CONFIG_DRM_VMWGFX=y
# CONFIG_DRM_VMWGFX_MKSSTATS is not set
# CONFIG_DRM_GMA500 is not set
CONFIG_DRM_UDL=y
# CONFIG_DRM_AST is not set
# CONFIG_DRM_MGAG200 is not set
# CONFIG_DRM_QXL is not set
CONFIG_DRM_VIRTIO_GPU=y
CONFIG_DRM_VIRTIO_GPU_KMS=y
CONFIG_DRM_PANEL=y

#
# Display Panels
#
# CONFIG_DRM_PANEL_ABT_Y030XX067A is not set
# CONFIG_DRM_PANEL_ARM_VERSATILE is not set
# CONFIG_DRM_PANEL_ASUS_Z00T_TM5P5_NT35596 is not set
# CONFIG_DRM_PANEL_AUO_A030JTN01 is not set
# CONFIG_DRM_PANEL_BOE_BF060Y8M_AJ0 is not set
# CONFIG_DRM_PANEL_BOE_HIMAX8279D is not set
# CONFIG_DRM_PANEL_BOE_TD4320 is not set
# CONFIG_DRM_PANEL_BOE_TH101MB31UIG002_28A is not set
# CONFIG_DRM_PANEL_BOE_TV101WUM_NL6 is not set
# CONFIG_DRM_PANEL_BOE_TV101WUM_LL2 is not set
# CONFIG_DRM_PANEL_EBBG_FT8719 is not set
# CONFIG_DRM_PANEL_ELIDA_KD35T133 is not set
# CONFIG_DRM_PANEL_FEIXIN_K101_IM2BA02 is not set
# CONFIG_DRM_PANEL_FEIYANG_FY07024DI26A30D is not set
# CONFIG_DRM_PANEL_DSI_CM is not set
# CONFIG_DRM_PANEL_LVDS is not set
# CONFIG_DRM_PANEL_HIMAX_HX8279 is not set
# CONFIG_DRM_PANEL_HIMAX_HX83102 is not set
# CONFIG_DRM_PANEL_HIMAX_HX83112A is not set
# CONFIG_DRM_PANEL_HIMAX_HX83112B is not set
# CONFIG_DRM_PANEL_HIMAX_HX8394 is not set
# CONFIG_DRM_PANEL_ILITEK_IL9322 is not set
# CONFIG_DRM_PANEL_ILITEK_ILI9341 is not set
# CONFIG_DRM_PANEL_ILITEK_ILI9805 is not set
# CONFIG_DRM_PANEL_ILITEK_ILI9806E is not set
# CONFIG_DRM_PANEL_ILITEK_ILI9881C is not set
# CONFIG_DRM_PANEL_ILITEK_ILI9882T is not set
# CONFIG_DRM_PANEL_INNOLUX_EJ030NA is not set
# CONFIG_DRM_PANEL_INNOLUX_P079ZCA is not set
# CONFIG_DRM_PANEL_JADARD_JD9365DA_H3 is not set
# CONFIG_DRM_PANEL_JDI_LPM102A188A is not set
# CONFIG_DRM_PANEL_JDI_LT070ME05000 is not set
# CONFIG_DRM_PANEL_JDI_R63452 is not set
# CONFIG_DRM_PANEL_KHADAS_TS050 is not set
# CONFIG_DRM_PANEL_KINGDISPLAY_KD097D04 is not set
# CONFIG_DRM_PANEL_LEADTEK_LTK050H3146W is not set
# CONFIG_DRM_PANEL_LEADTEK_LTK500HD1829 is not set
# CONFIG_DRM_PANEL_LINCOLNTECH_LCD197 is not set
# CONFIG_DRM_PANEL_LG_LB035Q02 is not set
# CONFIG_DRM_PANEL_LG_LG4573 is not set
# CONFIG_DRM_PANEL_LG_SW43408 is not set
# CONFIG_DRM_PANEL_MAGNACHIP_D53E6EA8966 is not set
# CONFIG_DRM_PANEL_MANTIX_MLAF057WE51 is not set
# CONFIG_DRM_PANEL_NEC_NL8048HL11 is not set
# CONFIG_DRM_PANEL_NEWVISION_NV3051D is not set
# CONFIG_DRM_PANEL_NEWVISION_NV3052C is not set
# CONFIG_DRM_PANEL_NOVATEK_NT35510 is not set
# CONFIG_DRM_PANEL_NOVATEK_NT35560 is not set
# CONFIG_DRM_PANEL_NOVATEK_NT35950 is not set
# CONFIG_DRM_PANEL_NOVATEK_NT36523 is not set
# CONFIG_DRM_PANEL_NOVATEK_NT36672A is not set
# CONFIG_DRM_PANEL_NOVATEK_NT36672E is not set
# CONFIG_DRM_PANEL_NOVATEK_NT37801 is not set
# CONFIG_DRM_PANEL_NOVATEK_NT39016 is not set
# CONFIG_DRM_PANEL_OLIMEX_LCD_OLINUXINO is not set
# CONFIG_DRM_PANEL_ORISETECH_OTA5601A is not set
# CONFIG_DRM_PANEL_ORISETECH_OTM8009A is not set
# CONFIG_DRM_PANEL_OSD_OSD101T2587_53TS is not set
# CONFIG_DRM_PANEL_PANASONIC_VVX10F034N00 is not set
# CONFIG_DRM_PANEL_RASPBERRYPI_TOUCHSCREEN is not set
# CONFIG_DRM_PANEL_RAYDIUM_RM67191 is not set
# CONFIG_DRM_PANEL_RAYDIUM_RM67200 is not set
# CONFIG_DRM_PANEL_RAYDIUM_RM68200 is not set
# CONFIG_DRM_PANEL_RAYDIUM_RM692E5 is not set
# CONFIG_DRM_PANEL_RAYDIUM_RM69380 is not set
# CONFIG_DRM_PANEL_RENESAS_R61307 is not set
# CONFIG_DRM_PANEL_RENESAS_R69328 is not set
# CONFIG_DRM_PANEL_RONBO_RB070D30 is not set
# CONFIG_DRM_PANEL_SAMSUNG_AMS581VF01 is not set
# CONFIG_DRM_PANEL_SAMSUNG_AMS639RQ08 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6E88A0_AMS427AP24 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6E88A0_AMS452EF01 is not set
# CONFIG_DRM_PANEL_SAMSUNG_ATNA33XC20 is not set
# CONFIG_DRM_PANEL_SAMSUNG_DB7430 is not set
# CONFIG_DRM_PANEL_SAMSUNG_LD9040 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6E3FA7 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6D16D0 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6D27A1 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6D7AA0 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6E3HA2 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6E3HA8 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6E63J0X03 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6E63M0 is not set
# CONFIG_DRM_PANEL_SAMSUNG_S6E8AA0 is not set
# CONFIG_DRM_PANEL_SAMSUNG_SOFEF00 is not set
# CONFIG_DRM_PANEL_SEIKO_43WVF1G is not set
# CONFIG_DRM_PANEL_SHARP_LQ101R1SX01 is not set
# CONFIG_DRM_PANEL_SHARP_LS037V7DW01 is not set
# CONFIG_DRM_PANEL_SHARP_LS043T1LE01 is not set
# CONFIG_DRM_PANEL_SHARP_LS060T1SX01 is not set
# CONFIG_DRM_PANEL_SITRONIX_ST7701 is not set
# CONFIG_DRM_PANEL_SITRONIX_ST7703 is not set
# CONFIG_DRM_PANEL_SITRONIX_ST7789V is not set
# CONFIG_DRM_PANEL_SONY_ACX565AKM is not set
# CONFIG_DRM_PANEL_SONY_TD4353_JDI is not set
# CONFIG_DRM_PANEL_SONY_TULIP_TRULY_NT35521 is not set
# CONFIG_DRM_PANEL_STARTEK_KD070FHFID015 is not set
CONFIG_DRM_PANEL_EDP=y
# CONFIG_DRM_PANEL_SIMPLE is not set
# CONFIG_DRM_PANEL_SUMMIT is not set
# CONFIG_DRM_PANEL_SYNAPTICS_R63353 is not set
# CONFIG_DRM_PANEL_TDO_TL070WSH30 is not set
# CONFIG_DRM_PANEL_TPO_TD028TTEC1 is not set
# CONFIG_DRM_PANEL_TPO_TD043MTEA1 is not set
# CONFIG_DRM_PANEL_TPO_TPG110 is not set
# CONFIG_DRM_PANEL_TRULY_NT35597_WQXGA is not set
# CONFIG_DRM_PANEL_VISIONOX_G2647FB105 is not set
# CONFIG_DRM_PANEL_VISIONOX_R66451 is not set
# CONFIG_DRM_PANEL_VISIONOX_RM69299 is not set
# CONFIG_DRM_PANEL_VISIONOX_RM692E5 is not set
# CONFIG_DRM_PANEL_VISIONOX_VTDR6130 is not set
# CONFIG_DRM_PANEL_WIDECHIPS_WS2401 is not set
# CONFIG_DRM_PANEL_XINPENG_XPP055C272 is not set
# end of Display Panels

CONFIG_DRM_BRIDGE=y
CONFIG_DRM_PANEL_BRIDGE=y
CONFIG_DRM_AUX_BRIDGE=y

#
# Display Interface Bridges
#
# CONFIG_DRM_CHIPONE_ICN6211 is not set
# CONFIG_DRM_CHRONTEL_CH7033 is not set
# CONFIG_DRM_DISPLAY_CONNECTOR is not set
# CONFIG_DRM_I2C_NXP_TDA998X is not set
# CONFIG_DRM_ITE_IT6263 is not set
# CONFIG_DRM_ITE_IT6505 is not set
# CONFIG_DRM_LONTIUM_LT8912B is not set
# CONFIG_DRM_LONTIUM_LT9211 is not set
# CONFIG_DRM_LONTIUM_LT9611 is not set
# CONFIG_DRM_LONTIUM_LT9611UXC is not set
# CONFIG_DRM_ITE_IT66121 is not set
# CONFIG_DRM_LVDS_CODEC is not set
# CONFIG_DRM_MEGACHIPS_STDPXXXX_GE_B850V3_FW is not set
# CONFIG_DRM_NWL_MIPI_DSI is not set
# CONFIG_DRM_NXP_PTN3460 is not set
# CONFIG_DRM_PARADE_PS8622 is not set
# CONFIG_DRM_PARADE_PS8640 is not set
# CONFIG_DRM_SAMSUNG_DSIM is not set
# CONFIG_DRM_SIL_SII8620 is not set
# CONFIG_DRM_SII902X is not set
# CONFIG_DRM_SII9234 is not set
# CONFIG_DRM_SIMPLE_BRIDGE is not set
# CONFIG_DRM_THINE_THC63LVD1024 is not set
# CONFIG_DRM_TOSHIBA_TC358762 is not set
# CONFIG_DRM_TOSHIBA_TC358764 is not set
# CONFIG_DRM_TOSHIBA_TC358767 is not set
# CONFIG_DRM_TOSHIBA_TC358768 is not set
# CONFIG_DRM_TOSHIBA_TC358775 is not set
# CONFIG_DRM_TI_DLPC3433 is not set
# CONFIG_DRM_TI_TDP158 is not set
# CONFIG_DRM_TI_TFP410 is not set
# CONFIG_DRM_TI_SN65DSI83 is not set
# CONFIG_DRM_TI_SN65DSI86 is not set
# CONFIG_DRM_TI_TPD12S015 is not set
# CONFIG_DRM_ANALOGIX_ANX6345 is not set
# CONFIG_DRM_ANALOGIX_ANX78XX is not set
# CONFIG_DRM_ANALOGIX_ANX7625 is not set
# CONFIG_DRM_I2C_ADV7511 is not set
# CONFIG_DRM_CDNS_DSI is not set
# CONFIG_DRM_CDNS_MHDP8546 is not set
# end of Display Interface Bridges

# CONFIG_DRM_ETNAVIV is not set
# CONFIG_DRM_HISI_HIBMC is not set
# CONFIG_DRM_LOGICVC is not set
# CONFIG_DRM_APPLETBDRM is not set
# CONFIG_DRM_ARCPGU is not set
CONFIG_DRM_BOCHS=y
CONFIG_DRM_CIRRUS_QEMU=y
CONFIG_DRM_GM12U320=y
# CONFIG_DRM_PANEL_MIPI_DBI is not set
# CONFIG_TINYDRM_HX8357D is not set
# CONFIG_TINYDRM_ILI9163 is not set
# CONFIG_TINYDRM_ILI9225 is not set
# CONFIG_TINYDRM_ILI9341 is not set
# CONFIG_TINYDRM_ILI9486 is not set
# CONFIG_TINYDRM_MI0283QT is not set
# CONFIG_TINYDRM_REPAPER is not set
# CONFIG_TINYDRM_SHARP_MEMORY is not set
# CONFIG_DRM_VBOXVIDEO is not set
CONFIG_DRM_GUD=y
# CONFIG_DRM_ST7571_I2C is not set
# CONFIG_DRM_ST7586 is not set
# CONFIG_DRM_ST7735R is not set
# CONFIG_DRM_SSD130X is not set
CONFIG_DRM_PANEL_ORIENTATION_QUIRKS=y

#
# Frame buffer Devices
#
CONFIG_FB=y
# CONFIG_FB_CIRRUS is not set
# CONFIG_FB_PM2 is not set
# CONFIG_FB_CYBER2000 is not set
# CONFIG_FB_ARC is not set
# CONFIG_FB_ASILIANT is not set
# CONFIG_FB_IMSTT is not set
CONFIG_FB_VGA16=y
# CONFIG_FB_UVESA is not set
CONFIG_FB_VESA=y
# CONFIG_FB_N411 is not set
# CONFIG_FB_HGA is not set
# CONFIG_FB_OPENCORES is not set
# CONFIG_FB_S1D13XXX is not set
# CONFIG_FB_NVIDIA is not set
# CONFIG_FB_RIVA is not set
# CONFIG_FB_I740 is not set
# CONFIG_FB_MATROX is not set
# CONFIG_FB_RADEON is not set
# CONFIG_FB_ATY128 is not set
# CONFIG_FB_ATY is not set
# CONFIG_FB_S3 is not set
# CONFIG_FB_SAVAGE is not set
# CONFIG_FB_SIS is not set
# CONFIG_FB_VIA is not set
# CONFIG_FB_NEOMAGIC is not set
# CONFIG_FB_KYRO is not set
# CONFIG_FB_3DFX is not set
# CONFIG_FB_VOODOO1 is not set
# CONFIG_FB_VT8623 is not set
# CONFIG_FB_TRIDENT is not set
# CONFIG_FB_ARK is not set
# CONFIG_FB_PM3 is not set
# CONFIG_FB_CARMINE is not set
# CONFIG_FB_SMSCUFX is not set
# CONFIG_FB_UDL is not set
# CONFIG_FB_IBM_GXT4500 is not set
CONFIG_FB_VIRTUAL=y
# CONFIG_FB_METRONOME is not set
# CONFIG_FB_MB862XX is not set
# CONFIG_FB_SSD1307 is not set
# CONFIG_FB_SM712 is not set
CONFIG_FB_CORE=y
CONFIG_FB_NOTIFY=y
CONFIG_FB_DEVICE=y
CONFIG_FB_CFB_FILLRECT=y
CONFIG_FB_CFB_COPYAREA=y
CONFIG_FB_CFB_IMAGEBLIT=y
CONFIG_FB_SYS_FILLRECT=y
CONFIG_FB_SYS_COPYAREA=y
CONFIG_FB_SYS_IMAGEBLIT=y
# CONFIG_FB_FOREIGN_ENDIAN is not set
CONFIG_FB_SYSMEM_FOPS=y
CONFIG_FB_DEFERRED_IO=y
CONFIG_FB_IOMEM_FOPS=y
CONFIG_FB_IOMEM_HELPERS=y
CONFIG_FB_SYSMEM_HELPERS=y
CONFIG_FB_SYSMEM_HELPERS_DEFERRED=y
# CONFIG_FB_MODE_HELPERS is not set
CONFIG_FB_TILEBLITTING=y
# end of Frame buffer Devices

#
# Backlight & LCD device support
#
CONFIG_LCD_CLASS_DEVICE=y
# CONFIG_LCD_L4F00242T03 is not set
# CONFIG_LCD_LMS283GF05 is not set
# CONFIG_LCD_LTV350QV is not set
# CONFIG_LCD_ILI922X is not set
# CONFIG_LCD_ILI9320 is not set
# CONFIG_LCD_TDO24M is not set
# CONFIG_LCD_VGG2432A4 is not set
# CONFIG_LCD_PLATFORM is not set
# CONFIG_LCD_AMS369FG06 is not set
# CONFIG_LCD_LMS501KF03 is not set
# CONFIG_LCD_HX8357 is not set
# CONFIG_LCD_OTM3225A is not set
CONFIG_BACKLIGHT_CLASS_DEVICE=y
# CONFIG_BACKLIGHT_KTD253 is not set
# CONFIG_BACKLIGHT_KTD2801 is not set
# CONFIG_BACKLIGHT_KTZ8866 is not set
# CONFIG_BACKLIGHT_MT6370 is not set
# CONFIG_BACKLIGHT_APPLE is not set
# CONFIG_BACKLIGHT_QCOM_WLED is not set
# CONFIG_BACKLIGHT_SAHARA is not set
# CONFIG_BACKLIGHT_ADP8860 is not set
# CONFIG_BACKLIGHT_ADP8870 is not set
# CONFIG_BACKLIGHT_LM3509 is not set
# CONFIG_BACKLIGHT_LM3639 is not set
# CONFIG_BACKLIGHT_PANDORA is not set
# CONFIG_BACKLIGHT_GPIO is not set
# CONFIG_BACKLIGHT_LV5207LP is not set
# CONFIG_BACKLIGHT_BD6107 is not set
# CONFIG_BACKLIGHT_ARCXCNN is not set
# CONFIG_BACKLIGHT_LED is not set
# end of Backlight & LCD device support

CONFIG_VGASTATE=y
CONFIG_VIDEOMODE_HELPERS=y
CONFIG_HDMI=y
# CONFIG_FIRMWARE_EDID is not set

#
# Console display driver support
#
CONFIG_VGA_CONSOLE=y
CONFIG_DUMMY_CONSOLE=y
CONFIG_DUMMY_CONSOLE_COLUMNS=80
CONFIG_DUMMY_CONSOLE_ROWS=25
CONFIG_FRAMEBUFFER_CONSOLE=y
# CONFIG_FRAMEBUFFER_CONSOLE_LEGACY_ACCELERATION is not set
CONFIG_FRAMEBUFFER_CONSOLE_DETECT_PRIMARY=y
CONFIG_FRAMEBUFFER_CONSOLE_ROTATION=y
# CONFIG_FRAMEBUFFER_CONSOLE_DEFERRED_TAKEOVER is not set
# end of Console display driver support

CONFIG_LOGO=y
CONFIG_LOGO_LINUX_MONO=y
CONFIG_LOGO_LINUX_VGA16=y
# CONFIG_LOGO_LINUX_CLUT224 is not set
# CONFIG_TRACE_GPU_MEM is not set
# end of Graphics support

# CONFIG_DRM_ACCEL is not set
CONFIG_SOUND=y
CONFIG_SOUND_OSS_CORE=y
CONFIG_SOUND_OSS_CORE_PRECLAIM=y
CONFIG_SND=y
CONFIG_SND_TIMER=y
CONFIG_SND_PCM=y
CONFIG_SND_PCM_ELD=y
CONFIG_SND_HWDEP=y
CONFIG_SND_SEQ_DEVICE=y
CONFIG_SND_RAWMIDI=y
CONFIG_SND_UMP=y
CONFIG_SND_UMP_LEGACY_RAWMIDI=y
CONFIG_SND_JACK=y
CONFIG_SND_JACK_INPUT_DEV=y
CONFIG_SND_OSSEMUL=y
CONFIG_SND_MIXER_OSS=y
CONFIG_SND_PCM_OSS=y
CONFIG_SND_PCM_OSS_PLUGINS=y
CONFIG_SND_PCM_TIMER=y
CONFIG_SND_HRTIMER=y
CONFIG_SND_DYNAMIC_MINORS=y
CONFIG_SND_MAX_CARDS=32
CONFIG_SND_SUPPORT_OLD_API=y
CONFIG_SND_PROC_FS=y
CONFIG_SND_VERBOSE_PROCFS=y
CONFIG_SND_CTL_FAST_LOOKUP=y
CONFIG_SND_DEBUG=y
# CONFIG_SND_DEBUG_VERBOSE is not set
CONFIG_SND_PCM_XRUN_DEBUG=y
# CONFIG_SND_CTL_INPUT_VALIDATION is not set
# CONFIG_SND_CTL_DEBUG is not set
# CONFIG_SND_JACK_INJECTION_DEBUG is not set
# CONFIG_SND_UTIMER is not set
CONFIG_SND_VMASTER=y
CONFIG_SND_DMA_SGBUF=y
CONFIG_SND_CTL_LED=y
CONFIG_SND_SEQUENCER=y
CONFIG_SND_SEQ_DUMMY=y
CONFIG_SND_SEQUENCER_OSS=y
CONFIG_SND_SEQ_HRTIMER_DEFAULT=y
CONFIG_SND_SEQ_MIDI_EVENT=y
CONFIG_SND_SEQ_MIDI=y
CONFIG_SND_SEQ_VIRMIDI=y
# CONFIG_SND_SEQ_UMP is not set
CONFIG_SND_DRIVERS=y
# CONFIG_SND_PCSP is not set
CONFIG_SND_DUMMY=y
CONFIG_SND_ALOOP=y
# CONFIG_SND_PCMTEST is not set
CONFIG_SND_VIRMIDI=y
# CONFIG_SND_MTPAV is not set
# CONFIG_SND_MTS64 is not set
# CONFIG_SND_SERIAL_U16550 is not set
# CONFIG_SND_SERIAL_GENERIC is not set
# CONFIG_SND_MPU401 is not set
# CONFIG_SND_PORTMAN2X4 is not set
CONFIG_SND_PCI=y
# CONFIG_SND_AD1889 is not set
# CONFIG_SND_ALS300 is not set
# CONFIG_SND_ALS4000 is not set
# CONFIG_SND_ALI5451 is not set
# CONFIG_SND_ASIHPI is not set
# CONFIG_SND_ATIIXP is not set
# CONFIG_SND_ATIIXP_MODEM is not set
# CONFIG_SND_AU8810 is not set
# CONFIG_SND_AU8820 is not set
# CONFIG_SND_AU8830 is not set
# CONFIG_SND_AW2 is not set
# CONFIG_SND_AZT3328 is not set
# CONFIG_SND_BT87X is not set
# CONFIG_SND_CA0106 is not set
# CONFIG_SND_CMIPCI is not set
# CONFIG_SND_OXYGEN is not set
# CONFIG_SND_CS4281 is not set
# CONFIG_SND_CS46XX is not set
# CONFIG_SND_CTXFI is not set
# CONFIG_SND_DARLA20 is not set
# CONFIG_SND_GINA20 is not set
# CONFIG_SND_LAYLA20 is not set
# CONFIG_SND_DARLA24 is not set
# CONFIG_SND_GINA24 is not set
# CONFIG_SND_LAYLA24 is not set
# CONFIG_SND_MONA is not set
# CONFIG_SND_MIA is not set
# CONFIG_SND_ECHO3G is not set
# CONFIG_SND_INDIGO is not set
# CONFIG_SND_INDIGOIO is not set
# CONFIG_SND_INDIGODJ is not set
# CONFIG_SND_INDIGOIOX is not set
# CONFIG_SND_INDIGODJX is not set
# CONFIG_SND_EMU10K1 is not set
# CONFIG_SND_EMU10K1X is not set
# CONFIG_SND_ENS1370 is not set
# CONFIG_SND_ENS1371 is not set
# CONFIG_SND_ES1938 is not set
# CONFIG_SND_ES1968 is not set
# CONFIG_SND_FM801 is not set
# CONFIG_SND_HDSP is not set
# CONFIG_SND_HDSPM is not set
# CONFIG_SND_ICE1712 is not set
# CONFIG_SND_ICE1724 is not set
# CONFIG_SND_INTEL8X0 is not set
# CONFIG_SND_INTEL8X0M is not set
# CONFIG_SND_KORG1212 is not set
# CONFIG_SND_LOLA is not set
# CONFIG_SND_LX6464ES is not set
# CONFIG_SND_MAESTRO3 is not set
# CONFIG_SND_MIXART is not set
# CONFIG_SND_NM256 is not set
# CONFIG_SND_PCXHR is not set
# CONFIG_SND_RIPTIDE is not set
# CONFIG_SND_RME32 is not set
# CONFIG_SND_RME96 is not set
# CONFIG_SND_RME9652 is not set
# CONFIG_SND_SE6X is not set
# CONFIG_SND_SONICVIBES is not set
# CONFIG_SND_TRIDENT is not set
# CONFIG_SND_VIA82XX is not set
# CONFIG_SND_VIA82XX_MODEM is not set
# CONFIG_SND_VIRTUOSO is not set
# CONFIG_SND_VX222 is not set
# CONFIG_SND_YMFPCI is not set

#
# HD-Audio
#
CONFIG_SND_HDA=y
CONFIG_SND_HDA_HWDEP=y
CONFIG_SND_HDA_RECONFIG=y
CONFIG_SND_HDA_INPUT_BEEP=y
CONFIG_SND_HDA_INPUT_BEEP_MODE=1
CONFIG_SND_HDA_PATCH_LOADER=y
CONFIG_SND_HDA_POWER_SAVE_DEFAULT=0
# CONFIG_SND_HDA_CTL_DEV_ID is not set
CONFIG_SND_HDA_PREALLOC_SIZE=0
CONFIG_SND_HDA_INTEL=y
# CONFIG_SND_HDA_ACPI is not set
CONFIG_SND_HDA_GENERIC_LEDS=y
CONFIG_SND_HDA_CODEC_ANALOG=y
CONFIG_SND_HDA_CODEC_SIGMATEL=y
CONFIG_SND_HDA_CODEC_VIA=y
CONFIG_SND_HDA_CODEC_CONEXANT=y
# CONFIG_SND_HDA_CODEC_SENARYTECH is not set
CONFIG_SND_HDA_CODEC_CA0110=y
CONFIG_SND_HDA_CODEC_CA0132=y
# CONFIG_SND_HDA_CODEC_CA0132_DSP is not set
CONFIG_SND_HDA_CODEC_CMEDIA=y
# CONFIG_SND_HDA_CODEC_CM9825 is not set
CONFIG_SND_HDA_CODEC_SI3054=y
CONFIG_SND_HDA_GENERIC=y
CONFIG_SND_HDA_CODEC_REALTEK=y
CONFIG_SND_HDA_CODEC_REALTEK_LIB=y
CONFIG_SND_HDA_CODEC_ALC260=y
CONFIG_SND_HDA_CODEC_ALC262=y
CONFIG_SND_HDA_CODEC_ALC268=y
CONFIG_SND_HDA_CODEC_ALC269=y
CONFIG_SND_HDA_CODEC_ALC662=y
CONFIG_SND_HDA_CODEC_ALC680=y
CONFIG_SND_HDA_CODEC_ALC861=y
CONFIG_SND_HDA_CODEC_ALC861VD=y
CONFIG_SND_HDA_CODEC_ALC880=y
CONFIG_SND_HDA_CODEC_ALC882=y
CONFIG_SND_HDA_CODEC_CIRRUS=y
CONFIG_SND_HDA_CODEC_CS420X=y
CONFIG_SND_HDA_CODEC_CS421X=y
# CONFIG_SND_HDA_CODEC_CS8409 is not set
CONFIG_SND_HDA_CODEC_HDMI=y
CONFIG_SND_HDA_CODEC_HDMI_GENERIC=y
CONFIG_SND_HDA_CODEC_HDMI_SIMPLE=y
CONFIG_SND_HDA_CODEC_HDMI_INTEL=y
# CONFIG_SND_HDA_INTEL_HDMI_SILENT_STREAM is not set
CONFIG_SND_HDA_CODEC_HDMI_ATI=y
CONFIG_SND_HDA_CODEC_HDMI_NVIDIA=y
CONFIG_SND_HDA_CODEC_HDMI_NVIDIA_MCP=y
CONFIG_SND_HDA_CODEC_HDMI_TEGRA=y
CONFIG_SND_HDA_SCODEC_COMPONENT=y
# CONFIG_SND_HDA_SCODEC_CS35L56_I2C is not set
# CONFIG_SND_HDA_SCODEC_CS35L56_SPI is not set
CONFIG_SND_HDA_CORE=y
CONFIG_SND_HDA_COMPONENT=y
CONFIG_SND_HDA_I915=y
CONFIG_SND_INTEL_NHLT=y
CONFIG_SND_INTEL_DSP_CONFIG=y
CONFIG_SND_INTEL_SOUNDWIRE_ACPI=y
# end of HD-Audio

# CONFIG_SND_SPI is not set
CONFIG_SND_USB=y
CONFIG_SND_USB_AUDIO=y
CONFIG_SND_USB_AUDIO_MIDI_V2=y
CONFIG_SND_USB_AUDIO_USE_MEDIA_CONTROLLER=y
CONFIG_SND_USB_UA101=y
CONFIG_SND_USB_USX2Y=y
CONFIG_SND_USB_CAIAQ=y
CONFIG_SND_USB_CAIAQ_INPUT=y
CONFIG_SND_USB_US122L=y
CONFIG_SND_USB_6FIRE=y
CONFIG_SND_USB_HIFACE=y
CONFIG_SND_BCD2000=y
CONFIG_SND_USB_LINE6=y
CONFIG_SND_USB_POD=y
CONFIG_SND_USB_PODHD=y
CONFIG_SND_USB_TONEPORT=y
CONFIG_SND_USB_VARIAX=y
# CONFIG_SND_FIREWIRE is not set
CONFIG_SND_PCMCIA=y
# CONFIG_SND_VXPOCKET is not set
# CONFIG_SND_PDAUDIOCF is not set
CONFIG_SND_SOC=y
# CONFIG_SND_SOC_USB is not set

#
# Analog Devices
#
# CONFIG_SND_SOC_ADI_AXI_I2S is not set
# CONFIG_SND_SOC_ADI_AXI_SPDIF is not set
# end of Analog Devices

#
# AMD
#
# CONFIG_SND_SOC_AMD_ACP is not set
# CONFIG_SND_SOC_AMD_ACP3x is not set
# CONFIG_SND_SOC_AMD_RENOIR is not set
# CONFIG_SND_SOC_AMD_ACP5x is not set
# CONFIG_SND_SOC_AMD_ACP6x is not set
# CONFIG_SND_AMD_ACP_CONFIG is not set
# CONFIG_SND_SOC_AMD_ACP_COMMON is not set
# CONFIG_SND_SOC_AMD_RPL_ACP6x is not set
# end of AMD

#
# Apple
#
# end of Apple

#
# Atmel
#
# CONFIG_SND_SOC_MIKROE_PROTO is not set
# end of Atmel

#
# Au1x
#
# end of Au1x

#
# Broadcom
#
# CONFIG_SND_BCM63XX_I2S_WHISTLER is not set
# end of Broadcom

#
# Cirrus Logic
#
# end of Cirrus Logic

#
# DesignWare
#
# CONFIG_SND_DESIGNWARE_I2S is not set
# end of DesignWare

#
# Freescale
#

#
# Common SoC Audio options for Freescale CPUs:
#
# CONFIG_SND_SOC_FSL_ASRC is not set
# CONFIG_SND_SOC_FSL_SAI is not set
# CONFIG_SND_SOC_FSL_AUDMIX is not set
# CONFIG_SND_SOC_FSL_SSI is not set
# CONFIG_SND_SOC_FSL_SPDIF is not set
# CONFIG_SND_SOC_FSL_ESAI is not set
# CONFIG_SND_SOC_FSL_MICFIL is not set
# CONFIG_SND_SOC_FSL_XCVR is not set
# CONFIG_SND_SOC_IMX_AUDMUX is not set
# end of Freescale

#
# Google
#
# CONFIG_SND_SOC_CHV3_I2S is not set
# end of Google

#
# Hisilicon
#
# CONFIG_SND_I2S_HI6210_I2S is not set
# end of Hisilicon

#
# JZ4740
#
# end of JZ4740

#
# Kirkwood
#
# end of Kirkwood

#
# Loongson
#
# end of Loongson

#
# Intel
#
# CONFIG_SND_SOC_INTEL_SST_TOPLEVEL is not set
# CONFIG_SND_SOC_INTEL_AVS is not set
# end of Intel

#
# Mediatek
#
# CONFIG_SND_SOC_MTK_BTCVSD is not set
# end of Mediatek

#
# PXA
#
# end of PXA

#
# SoundWire (SDCA)
#
CONFIG_SND_SOC_SDCA_OPTIONAL=y
# end of SoundWire (SDCA)

#
# ST SPEAr
#
# end of ST SPEAr

#
# Spreadtrum
#
# end of Spreadtrum

#
# STMicroelectronics STM32
#
# end of STMicroelectronics STM32

#
# Tegra
#
# end of Tegra

#
# Xilinx
#
# CONFIG_SND_SOC_XILINX_I2S is not set
# CONFIG_SND_SOC_XILINX_AUDIO_FORMATTER is not set
# CONFIG_SND_SOC_XILINX_SPDIF is not set
# end of Xilinx

#
# Xtensa
#
# CONFIG_SND_SOC_XTFPGA_I2S is not set
# end of Xtensa

# CONFIG_SND_SOC_SOF_TOPLEVEL is not set
CONFIG_SND_SOC_I2C_AND_SPI=y

#
# CODEC drivers
#
# CONFIG_SND_SOC_AC97_CODEC is not set
# CONFIG_SND_SOC_ADAU1372_I2C is not set
# CONFIG_SND_SOC_ADAU1372_SPI is not set
# CONFIG_SND_SOC_ADAU1373 is not set
# CONFIG_SND_SOC_ADAU1701 is not set
# CONFIG_SND_SOC_ADAU1761_I2C is not set
# CONFIG_SND_SOC_ADAU1761_SPI is not set
# CONFIG_SND_SOC_ADAU7002 is not set
# CONFIG_SND_SOC_ADAU7118_HW is not set
# CONFIG_SND_SOC_ADAU7118_I2C is not set
# CONFIG_SND_SOC_AK4104 is not set
# CONFIG_SND_SOC_AK4118 is not set
# CONFIG_SND_SOC_AK4375 is not set
# CONFIG_SND_SOC_AK4458 is not set
# CONFIG_SND_SOC_AK4554 is not set
# CONFIG_SND_SOC_AK4613 is not set
# CONFIG_SND_SOC_AK4619 is not set
# CONFIG_SND_SOC_AK4642 is not set
# CONFIG_SND_SOC_AK5386 is not set
# CONFIG_SND_SOC_AK5558 is not set
# CONFIG_SND_SOC_ALC5623 is not set
# CONFIG_SND_SOC_AUDIO_IIO_AUX is not set
# CONFIG_SND_SOC_AW8738 is not set
# CONFIG_SND_SOC_AW88395 is not set
# CONFIG_SND_SOC_AW88166 is not set
# CONFIG_SND_SOC_AW88261 is not set
# CONFIG_SND_SOC_AW88081 is not set
# CONFIG_SND_SOC_AW87390 is not set
# CONFIG_SND_SOC_AW88399 is not set
# CONFIG_SND_SOC_BD28623 is not set
# CONFIG_SND_SOC_BT_SCO is not set
# CONFIG_SND_SOC_CHV3_CODEC is not set
# CONFIG_SND_SOC_CS35L32 is not set
# CONFIG_SND_SOC_CS35L33 is not set
# CONFIG_SND_SOC_CS35L34 is not set
# CONFIG_SND_SOC_CS35L35 is not set
# CONFIG_SND_SOC_CS35L36 is not set
# CONFIG_SND_SOC_CS35L41_SPI is not set
# CONFIG_SND_SOC_CS35L41_I2C is not set
# CONFIG_SND_SOC_CS35L45_SPI is not set
# CONFIG_SND_SOC_CS35L45_I2C is not set
# CONFIG_SND_SOC_CS35L56_I2C is not set
# CONFIG_SND_SOC_CS35L56_SPI is not set
# CONFIG_SND_SOC_CS35L56_SDW is not set
# CONFIG_SND_SOC_CS42L42 is not set
# CONFIG_SND_SOC_CS42L42_SDW is not set
# CONFIG_SND_SOC_CS42L51_I2C is not set
# CONFIG_SND_SOC_CS42L52 is not set
# CONFIG_SND_SOC_CS42L56 is not set
# CONFIG_SND_SOC_CS42L73 is not set
# CONFIG_SND_SOC_CS42L83 is not set
# CONFIG_SND_SOC_CS42L84 is not set
# CONFIG_SND_SOC_CS4234 is not set
# CONFIG_SND_SOC_CS4265 is not set
# CONFIG_SND_SOC_CS4270 is not set
# CONFIG_SND_SOC_CS4271_I2C is not set
# CONFIG_SND_SOC_CS4271_SPI is not set
# CONFIG_SND_SOC_CS42XX8_I2C is not set
# CONFIG_SND_SOC_CS43130 is not set
# CONFIG_SND_SOC_CS4341 is not set
# CONFIG_SND_SOC_CS4349 is not set
# CONFIG_SND_SOC_CS48L32 is not set
# CONFIG_SND_SOC_CS53L30 is not set
# CONFIG_SND_SOC_CS530X_I2C is not set
# CONFIG_SND_SOC_CX2072X is not set
# CONFIG_SND_SOC_DA7213 is not set
# CONFIG_SND_SOC_DMIC is not set
# CONFIG_SND_SOC_ES7134 is not set
# CONFIG_SND_SOC_ES7241 is not set
# CONFIG_SND_SOC_ES8311 is not set
# CONFIG_SND_SOC_ES8316 is not set
# CONFIG_SND_SOC_ES8323 is not set
# CONFIG_SND_SOC_ES8326 is not set
# CONFIG_SND_SOC_ES8328_I2C is not set
# CONFIG_SND_SOC_ES8328_SPI is not set
# CONFIG_SND_SOC_ES8375 is not set
# CONFIG_SND_SOC_ES8389 is not set
# CONFIG_SND_SOC_GTM601 is not set
# CONFIG_SND_SOC_HDA is not set
# CONFIG_SND_SOC_ICS43432 is not set
# CONFIG_SND_SOC_IDT821034 is not set
# CONFIG_SND_SOC_MAX98088 is not set
# CONFIG_SND_SOC_MAX98090 is not set
# CONFIG_SND_SOC_MAX98357A is not set
# CONFIG_SND_SOC_MAX98504 is not set
# CONFIG_SND_SOC_MAX9867 is not set
# CONFIG_SND_SOC_MAX98927 is not set
# CONFIG_SND_SOC_MAX98520 is not set
# CONFIG_SND_SOC_MAX98363 is not set
# CONFIG_SND_SOC_MAX98373_I2C is not set
# CONFIG_SND_SOC_MAX98373_SDW is not set
# CONFIG_SND_SOC_MAX98388 is not set
# CONFIG_SND_SOC_MAX98390 is not set
# CONFIG_SND_SOC_MAX98396 is not set
# CONFIG_SND_SOC_MAX9860 is not set
# CONFIG_SND_SOC_MSM8916_WCD_DIGITAL is not set
# CONFIG_SND_SOC_PCM1681 is not set
# CONFIG_SND_SOC_PCM1789_I2C is not set
# CONFIG_SND_SOC_PCM179X_I2C is not set
# CONFIG_SND_SOC_PCM179X_SPI is not set
# CONFIG_SND_SOC_PCM186X_I2C is not set
# CONFIG_SND_SOC_PCM186X_SPI is not set
# CONFIG_SND_SOC_PCM3060_I2C is not set
# CONFIG_SND_SOC_PCM3060_SPI is not set
# CONFIG_SND_SOC_PCM3168A_I2C is not set
# CONFIG_SND_SOC_PCM3168A_SPI is not set
# CONFIG_SND_SOC_PCM5102A is not set
# CONFIG_SND_SOC_PCM512x_I2C is not set
# CONFIG_SND_SOC_PCM512x_SPI is not set
# CONFIG_SND_SOC_PCM6240 is not set
# CONFIG_SND_SOC_PEB2466 is not set
# CONFIG_SND_SOC_RT1017_SDCA_SDW is not set
# CONFIG_SND_SOC_RT1308_SDW is not set
# CONFIG_SND_SOC_RT1316_SDW is not set
# CONFIG_SND_SOC_RT1318_SDW is not set
# CONFIG_SND_SOC_RT1320_SDW is not set
# CONFIG_SND_SOC_RT5616 is not set
# CONFIG_SND_SOC_RT5631 is not set
# CONFIG_SND_SOC_RT5640 is not set
# CONFIG_SND_SOC_RT5659 is not set
# CONFIG_SND_SOC_RT5682_SDW is not set
# CONFIG_SND_SOC_RT700_SDW is not set
# CONFIG_SND_SOC_RT711_SDW is not set
# CONFIG_SND_SOC_RT711_SDCA_SDW is not set
# CONFIG_SND_SOC_RT712_SDCA_SDW is not set
# CONFIG_SND_SOC_RT712_SDCA_DMIC_SDW is not set
# CONFIG_SND_SOC_RT721_SDCA_SDW is not set
# CONFIG_SND_SOC_RT722_SDCA_SDW is not set
# CONFIG_SND_SOC_RT715_SDW is not set
# CONFIG_SND_SOC_RT715_SDCA_SDW is not set
# CONFIG_SND_SOC_RT9120 is not set
# CONFIG_SND_SOC_RT9123 is not set
# CONFIG_SND_SOC_RT9123P is not set
# CONFIG_SND_SOC_RTQ9124 is not set
# CONFIG_SND_SOC_RTQ9128 is not set
# CONFIG_SND_SOC_SDW_MOCKUP is not set
# CONFIG_SND_SOC_SGTL5000 is not set
# CONFIG_SND_SOC_SIMPLE_AMPLIFIER is not set
# CONFIG_SND_SOC_SIMPLE_MUX is not set
# CONFIG_SND_SOC_SMA1303 is not set
# CONFIG_SND_SOC_SMA1307 is not set
# CONFIG_SND_SOC_SPDIF is not set
# CONFIG_SND_SOC_SRC4XXX_I2C is not set
# CONFIG_SND_SOC_SSM2305 is not set
# CONFIG_SND_SOC_SSM2518 is not set
# CONFIG_SND_SOC_SSM2602_SPI is not set
# CONFIG_SND_SOC_SSM2602_I2C is not set
# CONFIG_SND_SOC_SSM3515 is not set
# CONFIG_SND_SOC_SSM4567 is not set
# CONFIG_SND_SOC_STA32X is not set
# CONFIG_SND_SOC_STA350 is not set
# CONFIG_SND_SOC_STI_SAS is not set
# CONFIG_SND_SOC_TAS2552 is not set
# CONFIG_SND_SOC_TAS2562 is not set
# CONFIG_SND_SOC_TAS2764 is not set
# CONFIG_SND_SOC_TAS2770 is not set
# CONFIG_SND_SOC_TAS2780 is not set
# CONFIG_SND_SOC_TAS2781_I2C is not set
# CONFIG_SND_SOC_TAS5086 is not set
# CONFIG_SND_SOC_TAS571X is not set
# CONFIG_SND_SOC_TAS5720 is not set
# CONFIG_SND_SOC_TAS5805M is not set
# CONFIG_SND_SOC_TAS6424 is not set
# CONFIG_SND_SOC_TDA7419 is not set
# CONFIG_SND_SOC_TFA9879 is not set
# CONFIG_SND_SOC_TFA989X is not set
# CONFIG_SND_SOC_TLV320ADC3XXX is not set
# CONFIG_SND_SOC_TLV320AIC23_I2C is not set
# CONFIG_SND_SOC_TLV320AIC23_SPI is not set
# CONFIG_SND_SOC_TLV320AIC31XX is not set
# CONFIG_SND_SOC_TLV320AIC32X4_I2C is not set
# CONFIG_SND_SOC_TLV320AIC32X4_SPI is not set
# CONFIG_SND_SOC_TLV320AIC3X_I2C is not set
# CONFIG_SND_SOC_TLV320AIC3X_SPI is not set
# CONFIG_SND_SOC_TLV320ADCX140 is not set
# CONFIG_SND_SOC_TS3A227E is not set
# CONFIG_SND_SOC_TSCS42XX is not set
# CONFIG_SND_SOC_TSCS454 is not set
# CONFIG_SND_SOC_UDA1334 is not set
# CONFIG_SND_SOC_UDA1342 is not set
# CONFIG_SND_SOC_WCD937X_SDW is not set
# CONFIG_SND_SOC_WCD938X_SDW is not set
# CONFIG_SND_SOC_WCD939X_SDW is not set
# CONFIG_SND_SOC_WM8510 is not set
# CONFIG_SND_SOC_WM8523 is not set
# CONFIG_SND_SOC_WM8524 is not set
# CONFIG_SND_SOC_WM8580 is not set
# CONFIG_SND_SOC_WM8711 is not set
# CONFIG_SND_SOC_WM8728 is not set
# CONFIG_SND_SOC_WM8731_I2C is not set
# CONFIG_SND_SOC_WM8731_SPI is not set
# CONFIG_SND_SOC_WM8737 is not set
# CONFIG_SND_SOC_WM8741 is not set
# CONFIG_SND_SOC_WM8750 is not set
# CONFIG_SND_SOC_WM8753 is not set
# CONFIG_SND_SOC_WM8770 is not set
# CONFIG_SND_SOC_WM8776 is not set
# CONFIG_SND_SOC_WM8782 is not set
# CONFIG_SND_SOC_WM8804_I2C is not set
# CONFIG_SND_SOC_WM8804_SPI is not set
# CONFIG_SND_SOC_WM8903 is not set
# CONFIG_SND_SOC_WM8904 is not set
# CONFIG_SND_SOC_WM8940 is not set
# CONFIG_SND_SOC_WM8960 is not set
# CONFIG_SND_SOC_WM8961 is not set
# CONFIG_SND_SOC_WM8962 is not set
# CONFIG_SND_SOC_WM8974 is not set
# CONFIG_SND_SOC_WM8978 is not set
# CONFIG_SND_SOC_WM8985 is not set
# CONFIG_SND_SOC_WSA881X is not set
# CONFIG_SND_SOC_WSA883X is not set
# CONFIG_SND_SOC_WSA884X is not set
# CONFIG_SND_SOC_ZL38060 is not set
# CONFIG_SND_SOC_MAX9759 is not set
# CONFIG_SND_SOC_MT6351 is not set
# CONFIG_SND_SOC_MT6357 is not set
# CONFIG_SND_SOC_MT6358 is not set
# CONFIG_SND_SOC_MT6660 is not set
# CONFIG_SND_SOC_NAU8315 is not set
# CONFIG_SND_SOC_NAU8540 is not set
# CONFIG_SND_SOC_NAU8810 is not set
# CONFIG_SND_SOC_NAU8821 is not set
# CONFIG_SND_SOC_NAU8822 is not set
# CONFIG_SND_SOC_NAU8824 is not set
# CONFIG_SND_SOC_NTP8918 is not set
# CONFIG_SND_SOC_NTP8835 is not set
# CONFIG_SND_SOC_TPA6130A2 is not set
# CONFIG_SND_SOC_LPASS_WSA_MACRO is not set
# CONFIG_SND_SOC_LPASS_VA_MACRO is not set
# CONFIG_SND_SOC_LPASS_RX_MACRO is not set
# CONFIG_SND_SOC_LPASS_TX_MACRO is not set
# end of CODEC drivers

#
# Generic drivers
#
# CONFIG_SND_SIMPLE_CARD is not set
# CONFIG_SND_AUDIO_GRAPH_CARD is not set
# CONFIG_SND_AUDIO_GRAPH_CARD2 is not set
# CONFIG_SND_TEST_COMPONENT is not set
# end of Generic drivers

CONFIG_SND_X86=y
# CONFIG_HDMI_LPE_AUDIO is not set
CONFIG_SND_VIRTIO=y
CONFIG_HID_SUPPORT=y
CONFIG_HID=y
CONFIG_HID_BATTERY_STRENGTH=y
CONFIG_HIDRAW=y
CONFIG_UHID=y
CONFIG_HID_GENERIC=y

#
# Special HID drivers
#
CONFIG_HID_A4TECH=y
CONFIG_HID_ACCUTOUCH=y
CONFIG_HID_ACRUX=y
CONFIG_HID_ACRUX_FF=y
CONFIG_HID_APPLE=y
CONFIG_HID_APPLEIR=y
# CONFIG_HID_APPLETB_BL is not set
# CONFIG_HID_APPLETB_KBD is not set
CONFIG_HID_ASUS=y
CONFIG_HID_AUREAL=y
CONFIG_HID_BELKIN=y
CONFIG_HID_BETOP_FF=y
CONFIG_HID_BIGBEN_FF=y
CONFIG_HID_CHERRY=y
CONFIG_HID_CHICONY=y
CONFIG_HID_CORSAIR=y
CONFIG_HID_COUGAR=y
CONFIG_HID_MACALLY=y
CONFIG_HID_PRODIKEYS=y
CONFIG_HID_CMEDIA=y
CONFIG_HID_CP2112=y
CONFIG_HID_CREATIVE_SB0540=y
CONFIG_HID_CYPRESS=y
CONFIG_HID_DRAGONRISE=y
CONFIG_DRAGONRISE_FF=y
CONFIG_HID_EMS_FF=y
CONFIG_HID_ELAN=y
CONFIG_HID_ELECOM=y
CONFIG_HID_ELO=y
CONFIG_HID_EVISION=y
CONFIG_HID_EZKEY=y
CONFIG_HID_FT260=y
CONFIG_HID_GEMBIRD=y
CONFIG_HID_GFRM=y
CONFIG_HID_GLORIOUS=y
CONFIG_HID_HOLTEK=y
CONFIG_HOLTEK_FF=y
CONFIG_HID_VIVALDI_COMMON=y
# CONFIG_HID_GOODIX_SPI is not set
CONFIG_HID_GOOGLE_STADIA_FF=y
CONFIG_HID_VIVALDI=y
CONFIG_HID_GT683R=y
CONFIG_HID_KEYTOUCH=y
CONFIG_HID_KYE=y
# CONFIG_HID_KYSONA is not set
CONFIG_HID_UCLOGIC=y
CONFIG_HID_WALTOP=y
CONFIG_HID_VIEWSONIC=y
CONFIG_HID_VRC2=y
CONFIG_HID_XIAOMI=y
CONFIG_HID_GYRATION=y
CONFIG_HID_ICADE=y
CONFIG_HID_ITE=y
CONFIG_HID_JABRA=y
CONFIG_HID_TWINHAN=y
CONFIG_HID_KENSINGTON=y
CONFIG_HID_LCPOWER=y
CONFIG_HID_LED=y
CONFIG_HID_LENOVO=y
CONFIG_HID_LETSKETCH=y
CONFIG_HID_LOGITECH=y
CONFIG_HID_LOGITECH_DJ=y
CONFIG_HID_LOGITECH_HIDPP=y
CONFIG_LOGITECH_FF=y
CONFIG_LOGIRUMBLEPAD2_FF=y
CONFIG_LOGIG940_FF=y
CONFIG_LOGIWHEELS_FF=y
CONFIG_HID_MAGICMOUSE=y
CONFIG_HID_MALTRON=y
CONFIG_HID_MAYFLASH=y
CONFIG_HID_MEGAWORLD_FF=y
CONFIG_HID_REDRAGON=y
CONFIG_HID_MICROSOFT=y
CONFIG_HID_MONTEREY=y
CONFIG_HID_MULTITOUCH=y
CONFIG_HID_NINTENDO=y
CONFIG_NINTENDO_FF=y
CONFIG_HID_NTI=y
CONFIG_HID_NTRIG=y
CONFIG_HID_NVIDIA_SHIELD=y
CONFIG_NVIDIA_SHIELD_FF=y
CONFIG_HID_ORTEK=y
CONFIG_HID_PANTHERLORD=y
CONFIG_PANTHERLORD_FF=y
CONFIG_HID_PENMOUNT=y
CONFIG_HID_PETALYNX=y
CONFIG_HID_PICOLCD=y
CONFIG_HID_PICOLCD_FB=y
CONFIG_HID_PICOLCD_BACKLIGHT=y
CONFIG_HID_PICOLCD_LCD=y
CONFIG_HID_PICOLCD_LEDS=y
CONFIG_HID_PICOLCD_CIR=y
CONFIG_HID_PLANTRONICS=y
CONFIG_HID_PLAYSTATION=y
CONFIG_PLAYSTATION_FF=y
CONFIG_HID_PXRC=y
CONFIG_HID_RAZER=y
CONFIG_HID_PRIMAX=y
CONFIG_HID_RETRODE=y
CONFIG_HID_ROCCAT=y
CONFIG_HID_SAITEK=y
CONFIG_HID_SAMSUNG=y
CONFIG_HID_SEMITEK=y
CONFIG_HID_SIGMAMICRO=y
CONFIG_HID_SONY=y
CONFIG_SONY_FF=y
CONFIG_HID_SPEEDLINK=y
CONFIG_HID_STEAM=y
CONFIG_STEAM_FF=y
CONFIG_HID_STEELSERIES=y
CONFIG_HID_SUNPLUS=y
CONFIG_HID_RMI=y
CONFIG_HID_GREENASIA=y
CONFIG_GREENASIA_FF=y
CONFIG_HID_SMARTJOYPLUS=y
CONFIG_SMARTJOYPLUS_FF=y
CONFIG_HID_TIVO=y
CONFIG_HID_TOPSEED=y
CONFIG_HID_TOPRE=y
CONFIG_HID_THINGM=y
CONFIG_HID_THRUSTMASTER=y
CONFIG_THRUSTMASTER_FF=y
CONFIG_HID_UDRAW_PS3=y
CONFIG_HID_U2FZERO=y
# CONFIG_HID_UNIVERSAL_PIDFF is not set
CONFIG_HID_WACOM=y
CONFIG_HID_WIIMOTE=y
# CONFIG_HID_WINWING is not set
CONFIG_HID_XINMO=y
CONFIG_HID_ZEROPLUS=y
CONFIG_ZEROPLUS_FF=y
CONFIG_HID_ZYDACRON=y
CONFIG_HID_SENSOR_HUB=y
CONFIG_HID_SENSOR_CUSTOM_SENSOR=y
CONFIG_HID_ALPS=y
CONFIG_HID_MCP2200=y
CONFIG_HID_MCP2221=y
# end of Special HID drivers

#
# HID-BPF support
#
# end of HID-BPF support

CONFIG_I2C_HID=y
CONFIG_I2C_HID_ACPI=y
CONFIG_I2C_HID_OF=y
# CONFIG_I2C_HID_OF_ELAN is not set
# CONFIG_I2C_HID_OF_GOODIX is not set
CONFIG_I2C_HID_CORE=y

#
# Intel ISH HID support
#
CONFIG_INTEL_ISH_HID=y
CONFIG_INTEL_ISH_FIRMWARE_DOWNLOADER=y
# end of Intel ISH HID support

#
# AMD SFH HID Support
#
CONFIG_AMD_SFH_HID=y
# end of AMD SFH HID Support

#
# Surface System Aggregator Module HID support
#
CONFIG_SURFACE_HID=y
CONFIG_SURFACE_KBD=y
# end of Surface System Aggregator Module HID support

CONFIG_SURFACE_HID_CORE=y

#
# Intel THC HID Support
#
# CONFIG_INTEL_THC_HID is not set
# end of Intel THC HID Support

#
# USB HID support
#
CONFIG_USB_HID=y
CONFIG_HID_PID=y
CONFIG_USB_HIDDEV=y
# end of USB HID support

CONFIG_USB_OHCI_LITTLE_ENDIAN=y
CONFIG_USB_SUPPORT=y
CONFIG_USB_COMMON=y
CONFIG_USB_LED_TRIG=y
CONFIG_USB_ULPI_BUS=y
CONFIG_USB_CONN_GPIO=y
CONFIG_USB_ARCH_HAS_HCD=y
CONFIG_USB=y
CONFIG_USB_PCI=y
CONFIG_USB_PCI_AMD=y
CONFIG_USB_ANNOUNCE_NEW_DEVICES=y

#
# Miscellaneous USB options
#
CONFIG_USB_DEFAULT_PERSIST=y
CONFIG_USB_FEW_INIT_RETRIES=y
CONFIG_USB_DYNAMIC_MINORS=y
CONFIG_USB_OTG=y
# CONFIG_USB_OTG_PRODUCTLIST is not set
# CONFIG_USB_OTG_DISABLE_EXTERNAL_HUB is not set
CONFIG_USB_OTG_FSM=y
CONFIG_USB_LEDS_TRIGGER_USBPORT=y
CONFIG_USB_AUTOSUSPEND_DELAY=2
CONFIG_USB_DEFAULT_AUTHORIZATION_MODE=1
CONFIG_USB_MON=y

#
# USB Host Controller Drivers
#
CONFIG_USB_C67X00_HCD=y
CONFIG_USB_XHCI_HCD=y
CONFIG_USB_XHCI_DBGCAP=y
CONFIG_USB_XHCI_PCI=y
CONFIG_USB_XHCI_PCI_RENESAS=y
CONFIG_USB_XHCI_PLATFORM=y
# CONFIG_USB_XHCI_SIDEBAND is not set
CONFIG_USB_EHCI_HCD=y
CONFIG_USB_EHCI_ROOT_HUB_TT=y
CONFIG_USB_EHCI_TT_NEWSCHED=y
CONFIG_USB_EHCI_PCI=y
CONFIG_USB_EHCI_FSL=y
CONFIG_USB_EHCI_HCD_PLATFORM=y
CONFIG_USB_OXU210HP_HCD=y
CONFIG_USB_ISP116X_HCD=y
CONFIG_USB_MAX3421_HCD=y
CONFIG_USB_OHCI_HCD=y
CONFIG_USB_OHCI_HCD_PCI=y
# CONFIG_USB_OHCI_HCD_SSB is not set
CONFIG_USB_OHCI_HCD_PLATFORM=y
CONFIG_USB_UHCI_HCD=y
CONFIG_USB_SL811_HCD=y
CONFIG_USB_SL811_HCD_ISO=y
CONFIG_USB_SL811_CS=y
CONFIG_USB_R8A66597_HCD=y
CONFIG_USB_HCD_BCMA=y
CONFIG_USB_HCD_SSB=y
# CONFIG_USB_HCD_TEST_MODE is not set

#
# USB Device Class drivers
#
CONFIG_USB_ACM=y
CONFIG_USB_PRINTER=y
CONFIG_USB_WDM=y
CONFIG_USB_TMC=y

#
# NOTE: USB_STORAGE depends on SCSI but BLK_DEV_SD may also be needed; see USB_STORAGE Help for more info
#
CONFIG_USB_STORAGE=y
# CONFIG_USB_STORAGE_DEBUG is not set
CONFIG_USB_STORAGE_REALTEK=y
CONFIG_REALTEK_AUTOPM=y
CONFIG_USB_STORAGE_DATAFAB=y
CONFIG_USB_STORAGE_FREECOM=y
CONFIG_USB_STORAGE_ISD200=y
CONFIG_USB_STORAGE_USBAT=y
CONFIG_USB_STORAGE_SDDR09=y
CONFIG_USB_STORAGE_SDDR55=y
CONFIG_USB_STORAGE_JUMPSHOT=y
CONFIG_USB_STORAGE_ALAUDA=y
CONFIG_USB_STORAGE_ONETOUCH=y
CONFIG_USB_STORAGE_KARMA=y
CONFIG_USB_STORAGE_CYPRESS_ATACB=y
CONFIG_USB_STORAGE_ENE_UB6250=y
CONFIG_USB_UAS=y

#
# USB Imaging devices
#
CONFIG_USB_MDC800=y
CONFIG_USB_MICROTEK=y
CONFIG_USBIP_CORE=y
CONFIG_USBIP_VHCI_HCD=y
CONFIG_USBIP_VHCI_HC_PORTS=8
CONFIG_USBIP_VHCI_NR_HCS=16
CONFIG_USBIP_HOST=y
CONFIG_USBIP_VUDC=y
# CONFIG_USBIP_DEBUG is not set

#
# USB dual-mode controller drivers
#
CONFIG_USB_CDNS_SUPPORT=y
CONFIG_USB_CDNS_HOST=y
CONFIG_USB_CDNS3=y
CONFIG_USB_CDNS3_GADGET=y
CONFIG_USB_CDNS3_HOST=y
CONFIG_USB_CDNS3_PCI_WRAP=y
CONFIG_USB_CDNSP_PCI=y
CONFIG_USB_CDNSP_GADGET=y
CONFIG_USB_CDNSP_HOST=y
CONFIG_USB_MUSB_HDRC=y
# CONFIG_USB_MUSB_HOST is not set
# CONFIG_USB_MUSB_GADGET is not set
CONFIG_USB_MUSB_DUAL_ROLE=y

#
# Platform Glue Layer
#

#
# MUSB DMA mode
#
CONFIG_MUSB_PIO_ONLY=y
CONFIG_USB_DWC3=y
CONFIG_USB_DWC3_ULPI=y
# CONFIG_USB_DWC3_HOST is not set
CONFIG_USB_DWC3_GADGET=y
# CONFIG_USB_DWC3_DUAL_ROLE is not set

#
# Platform Glue Driver Support
#
CONFIG_USB_DWC3_PCI=y
CONFIG_USB_DWC3_HAPS=y
CONFIG_USB_DWC3_OF_SIMPLE=y
CONFIG_USB_DWC2=y
CONFIG_USB_DWC2_HOST=y

#
# Gadget/Dual-role mode requires USB Gadget support to be enabled
#
# CONFIG_USB_DWC2_PERIPHERAL is not set
# CONFIG_USB_DWC2_DUAL_ROLE is not set
CONFIG_USB_DWC2_PCI=y
# CONFIG_USB_DWC2_DEBUG is not set
# CONFIG_USB_DWC2_TRACK_MISSED_SOFS is not set
CONFIG_USB_CHIPIDEA=y
CONFIG_USB_CHIPIDEA_UDC=y
CONFIG_USB_CHIPIDEA_HOST=y
CONFIG_USB_CHIPIDEA_PCI=y
CONFIG_USB_CHIPIDEA_MSM=y
CONFIG_USB_CHIPIDEA_NPCM=y
# CONFIG_USB_CHIPIDEA_IMX is not set
CONFIG_USB_CHIPIDEA_GENERIC=y
# CONFIG_USB_CHIPIDEA_TEGRA is not set
CONFIG_USB_ISP1760=y
CONFIG_USB_ISP1760_HCD=y
CONFIG_USB_ISP1761_UDC=y
# CONFIG_USB_ISP1760_HOST_ROLE is not set
# CONFIG_USB_ISP1760_GADGET_ROLE is not set
CONFIG_USB_ISP1760_DUAL_ROLE=y

#
# USB port drivers
#
CONFIG_USB_SERIAL=y
CONFIG_USB_SERIAL_CONSOLE=y
CONFIG_USB_SERIAL_GENERIC=y
CONFIG_USB_SERIAL_SIMPLE=y
CONFIG_USB_SERIAL_AIRCABLE=y
CONFIG_USB_SERIAL_ARK3116=y
CONFIG_USB_SERIAL_BELKIN=y
CONFIG_USB_SERIAL_CH341=y
CONFIG_USB_SERIAL_WHITEHEAT=y
CONFIG_USB_SERIAL_DIGI_ACCELEPORT=y
CONFIG_USB_SERIAL_CP210X=y
CONFIG_USB_SERIAL_CYPRESS_M8=y
CONFIG_USB_SERIAL_EMPEG=y
CONFIG_USB_SERIAL_FTDI_SIO=y
CONFIG_USB_SERIAL_VISOR=y
CONFIG_USB_SERIAL_IPAQ=y
CONFIG_USB_SERIAL_IR=y
CONFIG_USB_SERIAL_EDGEPORT=y
CONFIG_USB_SERIAL_EDGEPORT_TI=y
CONFIG_USB_SERIAL_F81232=y
CONFIG_USB_SERIAL_F8153X=y
CONFIG_USB_SERIAL_GARMIN=y
CONFIG_USB_SERIAL_IPW=y
CONFIG_USB_SERIAL_IUU=y
CONFIG_USB_SERIAL_KEYSPAN_PDA=y
CONFIG_USB_SERIAL_KEYSPAN=y
CONFIG_USB_SERIAL_KLSI=y
CONFIG_USB_SERIAL_KOBIL_SCT=y
CONFIG_USB_SERIAL_MCT_U232=y
CONFIG_USB_SERIAL_METRO=y
CONFIG_USB_SERIAL_MOS7720=y
CONFIG_USB_SERIAL_MOS7715_PARPORT=y
CONFIG_USB_SERIAL_MOS7840=y
CONFIG_USB_SERIAL_MXUPORT=y
CONFIG_USB_SERIAL_NAVMAN=y
CONFIG_USB_SERIAL_PL2303=y
CONFIG_USB_SERIAL_OTI6858=y
CONFIG_USB_SERIAL_QCAUX=y
CONFIG_USB_SERIAL_QUALCOMM=y
CONFIG_USB_SERIAL_SPCP8X5=y
CONFIG_USB_SERIAL_SAFE=y
# CONFIG_USB_SERIAL_SAFE_PADDED is not set
CONFIG_USB_SERIAL_SIERRAWIRELESS=y
CONFIG_USB_SERIAL_SYMBOL=y
CONFIG_USB_SERIAL_TI=y
CONFIG_USB_SERIAL_CYBERJACK=y
CONFIG_USB_SERIAL_WWAN=y
CONFIG_USB_SERIAL_OPTION=y
CONFIG_USB_SERIAL_OMNINET=y
CONFIG_USB_SERIAL_OPTICON=y
CONFIG_USB_SERIAL_XSENS_MT=y
CONFIG_USB_SERIAL_WISHBONE=y
CONFIG_USB_SERIAL_SSU100=y
CONFIG_USB_SERIAL_QT2=y
CONFIG_USB_SERIAL_UPD78F0730=y
CONFIG_USB_SERIAL_XR=y
CONFIG_USB_SERIAL_DEBUG=y

#
# USB Miscellaneous drivers
#
CONFIG_USB_USS720=y
CONFIG_USB_EMI62=y
CONFIG_USB_EMI26=y
CONFIG_USB_ADUTUX=y
CONFIG_USB_SEVSEG=y
CONFIG_USB_LEGOTOWER=y
CONFIG_USB_LCD=y
CONFIG_USB_CYPRESS_CY7C63=y
CONFIG_USB_CYTHERM=y
CONFIG_USB_IDMOUSE=y
CONFIG_USB_APPLEDISPLAY=y
CONFIG_APPLE_MFI_FASTCHARGE=y
CONFIG_USB_LJCA=y
CONFIG_USB_SISUSBVGA=y
CONFIG_USB_LD=y
CONFIG_USB_TRANCEVIBRATOR=y
CONFIG_USB_IOWARRIOR=y
CONFIG_USB_TEST=y
CONFIG_USB_EHSET_TEST_FIXTURE=y
CONFIG_USB_ISIGHTFW=y
CONFIG_USB_YUREX=y
CONFIG_USB_EZUSB_FX2=y
CONFIG_USB_HUB_USB251XB=y
CONFIG_USB_HSIC_USB3503=y
CONFIG_USB_HSIC_USB4604=y
CONFIG_USB_LINK_LAYER_TEST=y
CONFIG_USB_CHAOSKEY=y
# CONFIG_USB_ONBOARD_DEV is not set
CONFIG_USB_ATM=y
CONFIG_USB_SPEEDTOUCH=y
CONFIG_USB_CXACRU=y
CONFIG_USB_UEAGLEATM=y
CONFIG_USB_XUSBATM=y

#
# USB Physical Layer drivers
#
CONFIG_USB_PHY=y
CONFIG_NOP_USB_XCEIV=y
CONFIG_TAHVO_USB=y
CONFIG_TAHVO_USB_HOST_BY_DEFAULT=y
CONFIG_USB_ISP1301=y
# end of USB Physical Layer drivers

CONFIG_USB_GADGET=y
# CONFIG_USB_GADGET_DEBUG is not set
CONFIG_USB_GADGET_DEBUG_FILES=y
CONFIG_USB_GADGET_DEBUG_FS=y
CONFIG_USB_GADGET_VBUS_DRAW=2
CONFIG_USB_GADGET_STORAGE_NUM_BUFFERS=2
CONFIG_U_SERIAL_CONSOLE=y

#
# USB Peripheral Controller
#
CONFIG_USB_GR_UDC=y
CONFIG_USB_R8A66597=y
CONFIG_USB_PXA27X=y
CONFIG_USB_SNP_CORE=y
# CONFIG_USB_SNP_UDC_PLAT is not set
# CONFIG_USB_M66592 is not set
CONFIG_USB_BDC_UDC=y
CONFIG_USB_AMD5536UDC=y
CONFIG_USB_NET2280=y
CONFIG_USB_GOKU=y
CONFIG_USB_EG20T=y
# CONFIG_USB_GADGET_XILINX is not set
CONFIG_USB_MAX3420_UDC=y
CONFIG_USB_CDNS2_UDC=y
CONFIG_USB_DUMMY_HCD=y
# end of USB Peripheral Controller

CONFIG_USB_LIBCOMPOSITE=y
CONFIG_USB_F_ACM=y
CONFIG_USB_F_SS_LB=y
CONFIG_USB_U_SERIAL=y
CONFIG_USB_U_ETHER=y
CONFIG_USB_U_AUDIO=y
CONFIG_USB_F_SERIAL=y
CONFIG_USB_F_OBEX=y
CONFIG_USB_F_NCM=y
CONFIG_USB_F_ECM=y
CONFIG_USB_F_PHONET=y
CONFIG_USB_F_EEM=y
CONFIG_USB_F_SUBSET=y
CONFIG_USB_F_RNDIS=y
CONFIG_USB_F_MASS_STORAGE=y
CONFIG_USB_F_FS=y
CONFIG_USB_F_UAC1=y
CONFIG_USB_F_UAC1_LEGACY=y
CONFIG_USB_F_UAC2=y
CONFIG_USB_F_UVC=y
CONFIG_USB_F_MIDI=y
CONFIG_USB_F_MIDI2=y
CONFIG_USB_F_HID=y
CONFIG_USB_F_PRINTER=y
CONFIG_USB_F_TCM=y
CONFIG_USB_CONFIGFS=y
CONFIG_USB_CONFIGFS_SERIAL=y
CONFIG_USB_CONFIGFS_ACM=y
CONFIG_USB_CONFIGFS_OBEX=y
CONFIG_USB_CONFIGFS_NCM=y
CONFIG_USB_CONFIGFS_ECM=y
CONFIG_USB_CONFIGFS_ECM_SUBSET=y
CONFIG_USB_CONFIGFS_RNDIS=y
CONFIG_USB_CONFIGFS_EEM=y
CONFIG_USB_CONFIGFS_PHONET=y
CONFIG_USB_CONFIGFS_MASS_STORAGE=y
CONFIG_USB_CONFIGFS_F_LB_SS=y
CONFIG_USB_CONFIGFS_F_FS=y
CONFIG_USB_CONFIGFS_F_UAC1=y
CONFIG_USB_CONFIGFS_F_UAC1_LEGACY=y
CONFIG_USB_CONFIGFS_F_UAC2=y
CONFIG_USB_CONFIGFS_F_MIDI=y
CONFIG_USB_CONFIGFS_F_MIDI2=y
CONFIG_USB_CONFIGFS_F_HID=y
CONFIG_USB_CONFIGFS_F_UVC=y
CONFIG_USB_CONFIGFS_F_PRINTER=y
CONFIG_USB_CONFIGFS_F_TCM=y

#
# USB Gadget precomposed configurations
#
# CONFIG_USB_ZERO is not set
# CONFIG_USB_AUDIO is not set
# CONFIG_USB_ETH is not set
# CONFIG_USB_G_NCM is not set
CONFIG_USB_GADGETFS=y
# CONFIG_USB_FUNCTIONFS is not set
# CONFIG_USB_MASS_STORAGE is not set
# CONFIG_USB_GADGET_TARGET is not set
# CONFIG_USB_G_SERIAL is not set
# CONFIG_USB_MIDI_GADGET is not set
# CONFIG_USB_G_PRINTER is not set
# CONFIG_USB_CDC_COMPOSITE is not set
# CONFIG_USB_G_NOKIA is not set
# CONFIG_USB_G_ACM_MS is not set
# CONFIG_USB_G_MULTI is not set
# CONFIG_USB_G_HID is not set
# CONFIG_USB_G_DBGP is not set
# CONFIG_USB_G_WEBCAM is not set
CONFIG_USB_RAW_GADGET=y
# end of USB Gadget precomposed configurations

CONFIG_TYPEC=y
CONFIG_TYPEC_TCPM=y
CONFIG_TYPEC_TCPCI=y
CONFIG_TYPEC_RT1711H=y
CONFIG_TYPEC_MT6360=y
CONFIG_TYPEC_TCPCI_MT6370=y
CONFIG_TYPEC_TCPCI_MAXIM=y
CONFIG_TYPEC_FUSB302=y
CONFIG_TYPEC_WCOVE=y
CONFIG_TYPEC_UCSI=y
CONFIG_UCSI_CCG=y
CONFIG_UCSI_ACPI=y
CONFIG_UCSI_STM32G0=y
CONFIG_TYPEC_TPS6598X=y
CONFIG_TYPEC_ANX7411=y
CONFIG_TYPEC_RT1719=y
CONFIG_TYPEC_HD3SS3220=y
CONFIG_TYPEC_STUSB160X=y
CONFIG_TYPEC_WUSB3801=y

#
# USB Type-C Multiplexer/DeMultiplexer Switch support
#
CONFIG_TYPEC_MUX_FSA4480=y
CONFIG_TYPEC_MUX_GPIO_SBU=y
CONFIG_TYPEC_MUX_PI3USB30532=y
CONFIG_TYPEC_MUX_INTEL_PMC=y
# CONFIG_TYPEC_MUX_IT5205 is not set
CONFIG_TYPEC_MUX_NB7VPQ904M=y
# CONFIG_TYPEC_MUX_PS883X is not set
CONFIG_TYPEC_MUX_PTN36502=y
# CONFIG_TYPEC_MUX_TUSB1046 is not set
CONFIG_TYPEC_MUX_WCD939X_USBSS=y
# end of USB Type-C Multiplexer/DeMultiplexer Switch support

#
# USB Type-C Alternate Mode drivers
#
CONFIG_TYPEC_DP_ALTMODE=y
CONFIG_TYPEC_NVIDIA_ALTMODE=y
# CONFIG_TYPEC_TBT_ALTMODE is not set
# end of USB Type-C Alternate Mode drivers

CONFIG_USB_ROLE_SWITCH=y
CONFIG_USB_ROLES_INTEL_XHCI=y
CONFIG_MMC=y
# CONFIG_PWRSEQ_EMMC is not set
# CONFIG_PWRSEQ_SD8787 is not set
# CONFIG_PWRSEQ_SIMPLE is not set
# CONFIG_MMC_BLOCK is not set
# CONFIG_SDIO_UART is not set
# CONFIG_MMC_TEST is not set
# CONFIG_MMC_CRYPTO is not set

#
# MMC/SD/SDIO Host Controller Drivers
#
# CONFIG_MMC_DEBUG is not set
# CONFIG_MMC_SDHCI is not set
# CONFIG_MMC_WBSD is not set
# CONFIG_MMC_TIFM_SD is not set
# CONFIG_MMC_SPI is not set
# CONFIG_MMC_SDRICOH_CS is not set
# CONFIG_MMC_CB710 is not set
# CONFIG_MMC_VIA_SDMMC is not set
CONFIG_MMC_VUB300=y
CONFIG_MMC_USHC=y
# CONFIG_MMC_USDHI6ROL0 is not set
CONFIG_MMC_REALTEK_USB=y
# CONFIG_MMC_CQHCI is not set
# CONFIG_MMC_HSQ is not set
# CONFIG_MMC_TOSHIBA_PCI is not set
# CONFIG_MMC_MTK is not set
# CONFIG_SCSI_UFSHCD is not set
CONFIG_MEMSTICK=y
# CONFIG_MEMSTICK_DEBUG is not set

#
# MemoryStick drivers
#
# CONFIG_MEMSTICK_UNSAFE_RESUME is not set
# CONFIG_MSPRO_BLOCK is not set
# CONFIG_MS_BLOCK is not set

#
# MemoryStick Host Controller Drivers
#
# CONFIG_MEMSTICK_TIFM_MS is not set
# CONFIG_MEMSTICK_JMICRON_38X is not set
# CONFIG_MEMSTICK_R592 is not set
CONFIG_MEMSTICK_REALTEK_USB=y
CONFIG_NEW_LEDS=y
CONFIG_LEDS_CLASS=y
# CONFIG_LEDS_CLASS_FLASH is not set
CONFIG_LEDS_CLASS_MULTICOLOR=y
# CONFIG_LEDS_BRIGHTNESS_HW_CHANGED is not set

#
# LED drivers
#
# CONFIG_LEDS_AN30259A is not set
# CONFIG_LEDS_APU is not set
# CONFIG_LEDS_AW200XX is not set
# CONFIG_LEDS_AW2013 is not set
# CONFIG_LEDS_BCM6328 is not set
# CONFIG_LEDS_BCM6358 is not set
# CONFIG_LEDS_CHT_WCOVE is not set
# CONFIG_LEDS_CR0014114 is not set
# CONFIG_LEDS_EL15203000 is not set
# CONFIG_LEDS_LM3530 is not set
# CONFIG_LEDS_LM3532 is not set
# CONFIG_LEDS_LM3642 is not set
# CONFIG_LEDS_LM3692X is not set
# CONFIG_LEDS_PCA9532 is not set
# CONFIG_LEDS_GPIO is not set
# CONFIG_LEDS_LP3944 is not set
# CONFIG_LEDS_LP3952 is not set
# CONFIG_LEDS_LP50XX is not set
# CONFIG_LEDS_LP55XX_COMMON is not set
# CONFIG_LEDS_LP8860 is not set
# CONFIG_LEDS_LP8864 is not set
# CONFIG_LEDS_PCA955X is not set
# CONFIG_LEDS_PCA963X is not set
# CONFIG_LEDS_PCA995X is not set
# CONFIG_LEDS_DAC124S085 is not set
# CONFIG_LEDS_REGULATOR is not set
# CONFIG_LEDS_BD2606MVV is not set
# CONFIG_LEDS_BD2802 is not set
# CONFIG_LEDS_INTEL_SS4200 is not set
# CONFIG_LEDS_LT3593 is not set
# CONFIG_LEDS_TCA6507 is not set
# CONFIG_LEDS_TLC591XX is not set
# CONFIG_LEDS_LM355x is not set
# CONFIG_LEDS_IS31FL319X is not set
# CONFIG_LEDS_IS31FL32XX is not set

#
# LED driver for blink(1) USB RGB LED is under Special HID drivers (HID_THINGM)
#
# CONFIG_LEDS_BLINKM is not set
# CONFIG_LEDS_SYSCON is not set
# CONFIG_LEDS_MLXCPLD is not set
# CONFIG_LEDS_MLXREG is not set
# CONFIG_LEDS_USER is not set
# CONFIG_LEDS_NIC78BX is not set
# CONFIG_LEDS_SPI_BYTE is not set
# CONFIG_LEDS_LM3697 is not set
# CONFIG_LEDS_ST1202 is not set
# CONFIG_LEDS_LGM is not set

#
# Flash and Torch LED drivers
#

#
# RGB LED drivers
#
# CONFIG_LEDS_GROUP_MULTICOLOR is not set
# CONFIG_LEDS_KTD202X is not set
# CONFIG_LEDS_NCP5623 is not set
# CONFIG_LEDS_MT6370_RGB is not set

#
# LED Triggers
#
CONFIG_LEDS_TRIGGERS=y
# CONFIG_LEDS_TRIGGER_TIMER is not set
# CONFIG_LEDS_TRIGGER_ONESHOT is not set
# CONFIG_LEDS_TRIGGER_DISK is not set
# CONFIG_LEDS_TRIGGER_MTD is not set
# CONFIG_LEDS_TRIGGER_HEARTBEAT is not set
# CONFIG_LEDS_TRIGGER_BACKLIGHT is not set
# CONFIG_LEDS_TRIGGER_CPU is not set
# CONFIG_LEDS_TRIGGER_ACTIVITY is not set
# CONFIG_LEDS_TRIGGER_GPIO is not set
# CONFIG_LEDS_TRIGGER_DEFAULT_ON is not set

#
# iptables trigger is under Netfilter config (LED target)
#
# CONFIG_LEDS_TRIGGER_TRANSIENT is not set
# CONFIG_LEDS_TRIGGER_CAMERA is not set
# CONFIG_LEDS_TRIGGER_PANIC is not set
# CONFIG_LEDS_TRIGGER_NETDEV is not set
# CONFIG_LEDS_TRIGGER_PATTERN is not set
# CONFIG_LEDS_TRIGGER_TTY is not set
# CONFIG_LEDS_TRIGGER_INPUT_EVENTS is not set

#
# Simatic LED drivers
#
# CONFIG_ACCESSIBILITY is not set
CONFIG_INFINIBAND=y
CONFIG_INFINIBAND_USER_MAD=y
CONFIG_INFINIBAND_USER_ACCESS=y
CONFIG_INFINIBAND_USER_MEM=y
CONFIG_INFINIBAND_ON_DEMAND_PAGING=y
CONFIG_INFINIBAND_ADDR_TRANS=y
CONFIG_INFINIBAND_ADDR_TRANS_CONFIGFS=y
CONFIG_INFINIBAND_VIRT_DMA=y
# CONFIG_INFINIBAND_EFA is not set
# CONFIG_INFINIBAND_ERDMA is not set
CONFIG_MLX4_INFINIBAND=y
# CONFIG_INFINIBAND_MTHCA is not set
# CONFIG_INFINIBAND_OCRDMA is not set
# CONFIG_INFINIBAND_USNIC is not set
# CONFIG_INFINIBAND_VMWARE_PVRDMA is not set
# CONFIG_INFINIBAND_RDMAVT is not set
CONFIG_RDMA_RXE=y
CONFIG_RDMA_SIW=y
CONFIG_INFINIBAND_IPOIB=y
CONFIG_INFINIBAND_IPOIB_CM=y
CONFIG_INFINIBAND_IPOIB_DEBUG=y
# CONFIG_INFINIBAND_IPOIB_DEBUG_DATA is not set
CONFIG_INFINIBAND_SRP=y
# CONFIG_INFINIBAND_SRPT is not set
CONFIG_INFINIBAND_ISER=y
CONFIG_INFINIBAND_RTRS=y
CONFIG_INFINIBAND_RTRS_CLIENT=y
# CONFIG_INFINIBAND_RTRS_SERVER is not set
# CONFIG_INFINIBAND_OPA_VNIC is not set
CONFIG_EDAC_ATOMIC_SCRUB=y
CONFIG_EDAC_SUPPORT=y
CONFIG_EDAC=y
# CONFIG_EDAC_LEGACY_SYSFS is not set
# CONFIG_EDAC_DEBUG is not set
# CONFIG_EDAC_DECODE_MCE is not set
# CONFIG_EDAC_SCRUB is not set
# CONFIG_EDAC_ECS is not set
# CONFIG_EDAC_MEM_REPAIR is not set
# CONFIG_EDAC_E752X is not set
# CONFIG_EDAC_I82975X is not set
# CONFIG_EDAC_I3000 is not set
# CONFIG_EDAC_I3200 is not set
# CONFIG_EDAC_IE31200 is not set
# CONFIG_EDAC_X38 is not set
# CONFIG_EDAC_I5400 is not set
# CONFIG_EDAC_I7CORE is not set
# CONFIG_EDAC_I5100 is not set
# CONFIG_EDAC_I7300 is not set
# CONFIG_EDAC_SBRIDGE is not set
# CONFIG_EDAC_SKX is not set
# CONFIG_EDAC_I10NM is not set
# CONFIG_EDAC_PND2 is not set
# CONFIG_EDAC_IGEN6 is not set
CONFIG_RTC_LIB=y
CONFIG_RTC_MC146818_LIB=y
CONFIG_RTC_CLASS=y
# CONFIG_RTC_HCTOSYS is not set
CONFIG_RTC_SYSTOHC=y
CONFIG_RTC_SYSTOHC_DEVICE="rtc0"
# CONFIG_RTC_DEBUG is not set
# CONFIG_RTC_NVMEM is not set

#
# RTC interfaces
#
CONFIG_RTC_INTF_SYSFS=y
CONFIG_RTC_INTF_PROC=y
CONFIG_RTC_INTF_DEV=y
# CONFIG_RTC_INTF_DEV_UIE_EMUL is not set
# CONFIG_RTC_DRV_TEST is not set

#
# I2C RTC drivers
#
# CONFIG_RTC_DRV_ABB5ZES3 is not set
# CONFIG_RTC_DRV_ABEOZ9 is not set
# CONFIG_RTC_DRV_ABX80X is not set
# CONFIG_RTC_DRV_DS1307 is not set
# CONFIG_RTC_DRV_DS1374 is not set
# CONFIG_RTC_DRV_DS1672 is not set
# CONFIG_RTC_DRV_HYM8563 is not set
# CONFIG_RTC_DRV_MAX6900 is not set
# CONFIG_RTC_DRV_MAX31335 is not set
# CONFIG_RTC_DRV_NCT3018Y is not set
# CONFIG_RTC_DRV_RS5C372 is not set
# CONFIG_RTC_DRV_ISL1208 is not set
# CONFIG_RTC_DRV_ISL12022 is not set
# CONFIG_RTC_DRV_ISL12026 is not set
# CONFIG_RTC_DRV_X1205 is not set
# CONFIG_RTC_DRV_PCF8523 is not set
# CONFIG_RTC_DRV_PCF85363 is not set
# CONFIG_RTC_DRV_PCF8563 is not set
# CONFIG_RTC_DRV_PCF8583 is not set
# CONFIG_RTC_DRV_M41T80 is not set
# CONFIG_RTC_DRV_BQ32K is not set
# CONFIG_RTC_DRV_TWL4030 is not set
# CONFIG_RTC_DRV_S35390A is not set
# CONFIG_RTC_DRV_FM3130 is not set
# CONFIG_RTC_DRV_RX8010 is not set
# CONFIG_RTC_DRV_RX8111 is not set
# CONFIG_RTC_DRV_RX8581 is not set
# CONFIG_RTC_DRV_RX8025 is not set
# CONFIG_RTC_DRV_EM3027 is not set
# CONFIG_RTC_DRV_RV3028 is not set
# CONFIG_RTC_DRV_RV3032 is not set
# CONFIG_RTC_DRV_RV8803 is not set
# CONFIG_RTC_DRV_SD2405AL is not set
# CONFIG_RTC_DRV_SD3078 is not set

#
# SPI RTC drivers
#
# CONFIG_RTC_DRV_M41T93 is not set
# CONFIG_RTC_DRV_M41T94 is not set
# CONFIG_RTC_DRV_DS1302 is not set
# CONFIG_RTC_DRV_DS1305 is not set
# CONFIG_RTC_DRV_DS1343 is not set
# CONFIG_RTC_DRV_DS1347 is not set
# CONFIG_RTC_DRV_DS1390 is not set
# CONFIG_RTC_DRV_MAX6916 is not set
# CONFIG_RTC_DRV_R9701 is not set
# CONFIG_RTC_DRV_RX4581 is not set
# CONFIG_RTC_DRV_RS5C348 is not set
# CONFIG_RTC_DRV_MAX6902 is not set
# CONFIG_RTC_DRV_PCF2123 is not set
# CONFIG_RTC_DRV_MCP795 is not set
CONFIG_RTC_I2C_AND_SPI=y

#
# SPI and I2C RTC drivers
#
# CONFIG_RTC_DRV_DS3232 is not set
# CONFIG_RTC_DRV_PCF2127 is not set
# CONFIG_RTC_DRV_PCF85063 is not set
# CONFIG_RTC_DRV_RV3029C2 is not set
# CONFIG_RTC_DRV_RX6110 is not set

#
# Platform RTC drivers
#
CONFIG_RTC_DRV_CMOS=y
# CONFIG_RTC_DRV_DS1286 is not set
# CONFIG_RTC_DRV_DS1511 is not set
# CONFIG_RTC_DRV_DS1553 is not set
# CONFIG_RTC_DRV_DS1685_FAMILY is not set
# CONFIG_RTC_DRV_DS1742 is not set
# CONFIG_RTC_DRV_DS2404 is not set
# CONFIG_RTC_DRV_STK17TA8 is not set
# CONFIG_RTC_DRV_M48T86 is not set
# CONFIG_RTC_DRV_M48T35 is not set
# CONFIG_RTC_DRV_M48T59 is not set
# CONFIG_RTC_DRV_MSM6242 is not set
# CONFIG_RTC_DRV_RP5C01 is not set
# CONFIG_RTC_DRV_ZYNQMP is not set

#
# on-CPU RTC drivers
#
# CONFIG_RTC_DRV_CADENCE is not set
# CONFIG_RTC_DRV_FTRTC010 is not set
# CONFIG_RTC_DRV_R7301 is not set

#
# HID Sensor RTC drivers
#
CONFIG_RTC_DRV_HID_SENSOR_TIME=y
# CONFIG_RTC_DRV_GOLDFISH is not set
CONFIG_DMADEVICES=y
# CONFIG_DMADEVICES_DEBUG is not set

#
# DMA Devices
#
CONFIG_DMA_ENGINE=y
CONFIG_DMA_VIRTUAL_CHANNELS=y
CONFIG_DMA_ACPI=y
CONFIG_DMA_OF=y
# CONFIG_ALTERA_MSGDMA is not set
# CONFIG_DW_AXI_DMAC is not set
# CONFIG_FSL_EDMA is not set
CONFIG_INTEL_IDMA64=y
# CONFIG_INTEL_IDXD is not set
# CONFIG_INTEL_IDXD_COMPAT is not set
CONFIG_INTEL_IOATDMA=y
# CONFIG_PLX_DMA is not set
# CONFIG_XILINX_DMA is not set
# CONFIG_XILINX_XDMA is not set
# CONFIG_XILINX_ZYNQMP_DPDMA is not set
# CONFIG_AMD_PTDMA is not set
# CONFIG_AMD_QDMA is not set
# CONFIG_QCOM_HIDMA_MGMT is not set
# CONFIG_QCOM_HIDMA is not set
CONFIG_DW_DMAC_CORE=y
# CONFIG_DW_DMAC is not set
# CONFIG_DW_DMAC_PCI is not set
# CONFIG_DW_EDMA is not set
CONFIG_HSU_DMA=y
# CONFIG_SF_PDMA is not set
# CONFIG_INTEL_LDMA is not set

#
# DMA Clients
#
CONFIG_ASYNC_TX_DMA=y
# CONFIG_DMATEST is not set
CONFIG_DMA_ENGINE_RAID=y

#
# DMABUF options
#
CONFIG_SYNC_FILE=y
CONFIG_SW_SYNC=y
CONFIG_UDMABUF=y
CONFIG_DMABUF_MOVE_NOTIFY=y
# CONFIG_DMABUF_DEBUG is not set
# CONFIG_DMABUF_SELFTESTS is not set
CONFIG_DMABUF_HEAPS=y
# CONFIG_DMABUF_SYSFS_STATS is not set
CONFIG_DMABUF_HEAPS_SYSTEM=y
CONFIG_DMABUF_HEAPS_CMA=y
CONFIG_DMABUF_HEAPS_CMA_LEGACY=y
# end of DMABUF options

CONFIG_DCA=y
# CONFIG_UIO is not set
CONFIG_VFIO=y
CONFIG_VFIO_DEVICE_CDEV=y
# CONFIG_VFIO_GROUP is not set
CONFIG_VFIO_VIRQFD=y
# CONFIG_VFIO_DEBUGFS is not set

#
# VFIO support for PCI devices
#
CONFIG_VFIO_PCI_CORE=y
CONFIG_VFIO_PCI_INTX=y
CONFIG_VFIO_PCI=y
# CONFIG_VFIO_PCI_VGA is not set
# CONFIG_VFIO_PCI_IGD is not set
# CONFIG_VIRTIO_VFIO_PCI is not set
# end of VFIO support for PCI devices

CONFIG_IRQ_BYPASS_MANAGER=y
# CONFIG_VIRT_DRIVERS is not set
CONFIG_VIRTIO_ANCHOR=y
CONFIG_VIRTIO=y
CONFIG_VIRTIO_PCI_LIB=y
CONFIG_VIRTIO_PCI_LIB_LEGACY=y
CONFIG_VIRTIO_MENU=y
CONFIG_VIRTIO_PCI=y
CONFIG_VIRTIO_PCI_ADMIN_LEGACY=y
CONFIG_VIRTIO_PCI_LEGACY=y
CONFIG_VIRTIO_VDPA=y
CONFIG_VIRTIO_PMEM=y
CONFIG_VIRTIO_BALLOON=y
CONFIG_VIRTIO_MEM=y
CONFIG_VIRTIO_INPUT=y
CONFIG_VIRTIO_MMIO=y
CONFIG_VIRTIO_MMIO_CMDLINE_DEVICES=y
CONFIG_VIRTIO_DMA_SHARED_BUFFER=y
# CONFIG_VIRTIO_DEBUG is not set
# CONFIG_VIRTIO_RTC is not set
CONFIG_VDPA=y
CONFIG_VDPA_SIM=y
CONFIG_VDPA_SIM_NET=y
CONFIG_VDPA_SIM_BLOCK=y
# CONFIG_IFCVF is not set
# CONFIG_MLX5_VDPA_STEERING_DEBUG is not set
CONFIG_VP_VDPA=y
# CONFIG_ALIBABA_ENI_VDPA is not set
# CONFIG_SNET_VDPA is not set
# CONFIG_OCTEONEP_VDPA is not set
CONFIG_VHOST_IOTLB=y
CONFIG_VHOST_RING=y
CONFIG_VHOST_TASK=y
CONFIG_VHOST=y
CONFIG_VHOST_MENU=y
CONFIG_VHOST_NET=y
# CONFIG_VHOST_SCSI is not set
CONFIG_VHOST_VSOCK=y
CONFIG_VHOST_VDPA=y
CONFIG_VHOST_CROSS_ENDIAN_LEGACY=y
CONFIG_VHOST_ENABLE_FORK_OWNER_CONTROL=y

#
# Microsoft Hyper-V guest support
#
# CONFIG_HYPERV is not set
# end of Microsoft Hyper-V guest support

CONFIG_GREYBUS=y
# CONFIG_GREYBUS_BEAGLEPLAY is not set
CONFIG_GREYBUS_ES2=y
CONFIG_COMEDI=y
# CONFIG_COMEDI_DEBUG is not set
CONFIG_COMEDI_DEFAULT_BUF_SIZE_KB=2048
CONFIG_COMEDI_DEFAULT_BUF_MAXSIZE_KB=20480
CONFIG_COMEDI_MISC_DRIVERS=y
CONFIG_COMEDI_BOND=y
CONFIG_COMEDI_TEST=y
CONFIG_COMEDI_PARPORT=y
CONFIG_COMEDI_ISA_DRIVERS=y
CONFIG_COMEDI_PCL711=y
CONFIG_COMEDI_PCL724=y
CONFIG_COMEDI_PCL726=y
CONFIG_COMEDI_PCL730=y
CONFIG_COMEDI_PCL812=y
CONFIG_COMEDI_PCL816=y
CONFIG_COMEDI_PCL818=y
CONFIG_COMEDI_PCM3724=y
CONFIG_COMEDI_AMPLC_DIO200_ISA=y
CONFIG_COMEDI_AMPLC_PC236_ISA=y
CONFIG_COMEDI_AMPLC_PC263_ISA=y
CONFIG_COMEDI_RTI800=y
CONFIG_COMEDI_RTI802=y
CONFIG_COMEDI_DAC02=y
CONFIG_COMEDI_DAS16M1=y
CONFIG_COMEDI_DAS08_ISA=y
# CONFIG_COMEDI_DAS16 is not set
CONFIG_COMEDI_DAS800=y
CONFIG_COMEDI_DAS1800=y
CONFIG_COMEDI_DAS6402=y
CONFIG_COMEDI_DT2801=y
CONFIG_COMEDI_DT2811=y
CONFIG_COMEDI_DT2814=y
CONFIG_COMEDI_DT2815=y
CONFIG_COMEDI_DT2817=y
CONFIG_COMEDI_DT282X=y
CONFIG_COMEDI_DMM32AT=y
CONFIG_COMEDI_FL512=y
CONFIG_COMEDI_AIO_AIO12_8=y
CONFIG_COMEDI_AIO_IIRO_16=y
# CONFIG_COMEDI_II_PCI20KC is not set
CONFIG_COMEDI_C6XDIGIO=y
CONFIG_COMEDI_MPC624=y
CONFIG_COMEDI_ADQ12B=y
CONFIG_COMEDI_NI_AT_A2150=y
CONFIG_COMEDI_NI_AT_AO=y
# CONFIG_COMEDI_NI_ATMIO is not set
CONFIG_COMEDI_NI_ATMIO16D=y
CONFIG_COMEDI_NI_LABPC_ISA=y
CONFIG_COMEDI_PCMAD=y
CONFIG_COMEDI_PCMDA12=y
CONFIG_COMEDI_PCMMIO=y
CONFIG_COMEDI_PCMUIO=y
CONFIG_COMEDI_MULTIQ3=y
CONFIG_COMEDI_S526=y
CONFIG_COMEDI_PCI_DRIVERS=y
CONFIG_COMEDI_8255_PCI=y
# CONFIG_COMEDI_ADDI_APCI_1032 is not set
# CONFIG_COMEDI_ADDI_APCI_1500 is not set
# CONFIG_COMEDI_ADDI_APCI_1516 is not set
# CONFIG_COMEDI_ADDI_APCI_1564 is not set
# CONFIG_COMEDI_ADDI_APCI_16XX is not set
# CONFIG_COMEDI_ADDI_APCI_2032 is not set
# CONFIG_COMEDI_ADDI_APCI_2200 is not set
# CONFIG_COMEDI_ADDI_APCI_3120 is not set
# CONFIG_COMEDI_ADDI_APCI_3501 is not set
# CONFIG_COMEDI_ADDI_APCI_3XXX is not set
# CONFIG_COMEDI_ADL_PCI6208 is not set
# CONFIG_COMEDI_ADL_PCI7X3X is not set
# CONFIG_COMEDI_ADL_PCI8164 is not set
# CONFIG_COMEDI_ADL_PCI9111 is not set
CONFIG_COMEDI_ADL_PCI9118=y
# CONFIG_COMEDI_ADV_PCI1710 is not set
# CONFIG_COMEDI_ADV_PCI1720 is not set
# CONFIG_COMEDI_ADV_PCI1723 is not set
# CONFIG_COMEDI_ADV_PCI1724 is not set
# CONFIG_COMEDI_ADV_PCI1760 is not set
# CONFIG_COMEDI_ADV_PCI_DIO is not set
# CONFIG_COMEDI_AMPLC_DIO200_PCI is not set
# CONFIG_COMEDI_AMPLC_PC236_PCI is not set
# CONFIG_COMEDI_AMPLC_PC263_PCI is not set
# CONFIG_COMEDI_AMPLC_PCI224 is not set
# CONFIG_COMEDI_AMPLC_PCI230 is not set
# CONFIG_COMEDI_CONTEC_PCI_DIO is not set
# CONFIG_COMEDI_DAS08_PCI is not set
# CONFIG_COMEDI_DT3000 is not set
# CONFIG_COMEDI_DYNA_PCI10XX is not set
# CONFIG_COMEDI_GSC_HPDI is not set
# CONFIG_COMEDI_MF6X4 is not set
# CONFIG_COMEDI_ICP_MULTI is not set
# CONFIG_COMEDI_DAQBOARD2000 is not set
# CONFIG_COMEDI_JR3_PCI is not set
# CONFIG_COMEDI_KE_COUNTER is not set
# CONFIG_COMEDI_CB_PCIDAS64 is not set
# CONFIG_COMEDI_CB_PCIDAS is not set
# CONFIG_COMEDI_CB_PCIDDA is not set
# CONFIG_COMEDI_CB_PCIMDAS is not set
# CONFIG_COMEDI_CB_PCIMDDA is not set
# CONFIG_COMEDI_ME4000 is not set
# CONFIG_COMEDI_ME_DAQ is not set
# CONFIG_COMEDI_NI_6527 is not set
# CONFIG_COMEDI_NI_65XX is not set
# CONFIG_COMEDI_NI_660X is not set
# CONFIG_COMEDI_NI_670X is not set
CONFIG_COMEDI_NI_LABPC_PCI=y
# CONFIG_COMEDI_NI_PCIDIO is not set
# CONFIG_COMEDI_NI_PCIMIO is not set
# CONFIG_COMEDI_RTD520 is not set
# CONFIG_COMEDI_S626 is not set
CONFIG_COMEDI_PCMCIA_DRIVERS=y
# CONFIG_COMEDI_CB_DAS16_CS is not set
# CONFIG_COMEDI_DAS08_CS is not set
CONFIG_COMEDI_NI_DAQ_700_CS=y
# CONFIG_COMEDI_NI_DAQ_DIO24_CS is not set
CONFIG_COMEDI_NI_LABPC_CS=y
# CONFIG_COMEDI_NI_MIO_CS is not set
# CONFIG_COMEDI_QUATECH_DAQP_CS is not set
CONFIG_COMEDI_USB_DRIVERS=y
CONFIG_COMEDI_DT9812=y
CONFIG_COMEDI_NI_USB6501=y
CONFIG_COMEDI_USBDUX=y
CONFIG_COMEDI_USBDUXFAST=y
CONFIG_COMEDI_USBDUXSIGMA=y
CONFIG_COMEDI_VMK80XX=y
CONFIG_COMEDI_8254=y
CONFIG_COMEDI_8255=y
CONFIG_COMEDI_8255_SA=y
CONFIG_COMEDI_KCOMEDILIB=y
CONFIG_COMEDI_AMPLC_DIO200=y
CONFIG_COMEDI_AMPLC_PC236=y
CONFIG_COMEDI_DAS08=y
CONFIG_COMEDI_ISADMA=y
CONFIG_COMEDI_NI_LABPC=y
CONFIG_COMEDI_NI_LABPC_ISADMA=y
# CONFIG_COMEDI_TESTS is not set
CONFIG_STAGING=y
# CONFIG_RTL8723BS is not set

#
# IIO staging drivers
#

#
# Accelerometers
#
# CONFIG_ADIS16203 is not set
# end of Accelerometers

#
# Analog to digital converters
#
# CONFIG_AD7816 is not set
# end of Analog to digital converters

#
# Analog digital bi-direction converters
#
# CONFIG_ADT7316 is not set
# end of Analog digital bi-direction converters

#
# Direct Digital Synthesis
#
# CONFIG_AD9832 is not set
# CONFIG_AD9834 is not set
# end of Direct Digital Synthesis

#
# Network Analyzer, Impedance Converters
#
# CONFIG_AD5933 is not set
# end of Network Analyzer, Impedance Converters
# end of IIO staging drivers

# CONFIG_FB_SM750 is not set
# CONFIG_STAGING_MEDIA is not set
# CONFIG_FB_TFT is not set
# CONFIG_MOST_COMPONENTS is not set
# CONFIG_GREYBUS_AUDIO is not set
# CONFIG_GREYBUS_BOOTROM is not set
# CONFIG_GREYBUS_FIRMWARE is not set
CONFIG_GREYBUS_HID=y
# CONFIG_GREYBUS_LOG is not set
# CONFIG_GREYBUS_LOOPBACK is not set
# CONFIG_GREYBUS_POWER is not set
# CONFIG_GREYBUS_RAW is not set
# CONFIG_GREYBUS_VIBRATOR is not set
CONFIG_GREYBUS_BRIDGED_PHY=y
# CONFIG_GREYBUS_GPIO is not set
# CONFIG_GREYBUS_I2C is not set
# CONFIG_GREYBUS_SDIO is not set
# CONFIG_GREYBUS_SPI is not set
# CONFIG_GREYBUS_UART is not set
CONFIG_GREYBUS_USB=y
# CONFIG_XIL_AXIS_FIFO is not set
# CONFIG_VME_BUS is not set
# CONFIG_GPIB is not set
# CONFIG_GOLDFISH is not set
# CONFIG_CHROME_PLATFORMS is not set
# CONFIG_MELLANOX_PLATFORM is not set
CONFIG_SURFACE_PLATFORMS=y
# CONFIG_SURFACE3_WMI is not set
# CONFIG_SURFACE_3_POWER_OPREGION is not set
# CONFIG_SURFACE_ACPI_NOTIFY is not set
# CONFIG_SURFACE_AGGREGATOR_CDEV is not set
# CONFIG_SURFACE_AGGREGATOR_HUB is not set
CONFIG_SURFACE_AGGREGATOR_REGISTRY=y
# CONFIG_SURFACE_AGGREGATOR_TABLET_SWITCH is not set
# CONFIG_SURFACE_DTX is not set
# CONFIG_SURFACE_GPE is not set
# CONFIG_SURFACE_HOTPLUG is not set
# CONFIG_SURFACE_PLATFORM_PROFILE is not set
# CONFIG_SURFACE_PRO3_BUTTON is not set
CONFIG_SURFACE_AGGREGATOR=y
CONFIG_SURFACE_AGGREGATOR_BUS=y
CONFIG_X86_PLATFORM_DEVICES=y
CONFIG_ACPI_WMI=y
# CONFIG_ACPI_WMI_LEGACY_DEVICE_NAMES is not set
CONFIG_WMI_BMOF=y
# CONFIG_HUAWEI_WMI is not set
# CONFIG_MXM_WMI is not set
# CONFIG_NVIDIA_WMI_EC_BACKLIGHT is not set
# CONFIG_XIAOMI_WMI is not set
# CONFIG_GIGABYTE_WMI is not set
# CONFIG_ACERHDF is not set
# CONFIG_ACER_WIRELESS is not set
# CONFIG_ACER_WMI is not set

#
# AMD HSMP Driver
#
# CONFIG_AMD_HSMP_ACPI is not set
# CONFIG_AMD_HSMP_PLAT is not set
# end of AMD HSMP Driver

# CONFIG_AMD_PMC is not set
# CONFIG_AMD_HFI is not set
# CONFIG_AMD_3D_VCACHE is not set
# CONFIG_AMD_WBRF is not set
# CONFIG_AMD_ISP_PLATFORM is not set
# CONFIG_ADV_SWBUTTON is not set
# CONFIG_APPLE_GMUX is not set
# CONFIG_ASUS_LAPTOP is not set
# CONFIG_ASUS_WIRELESS is not set
CONFIG_ASUS_WMI=y
# CONFIG_ASUS_NB_WMI is not set
CONFIG_ASUS_TF103C_DOCK=y
CONFIG_EEEPC_LAPTOP=y
# CONFIG_EEEPC_WMI is not set
# CONFIG_X86_PLATFORM_DRIVERS_DELL is not set
# CONFIG_AMILO_RFKILL is not set
# CONFIG_FUJITSU_LAPTOP is not set
# CONFIG_FUJITSU_TABLET is not set
# CONFIG_GPD_POCKET_FAN is not set
# CONFIG_X86_PLATFORM_DRIVERS_HP is not set
# CONFIG_WIRELESS_HOTKEY is not set
# CONFIG_IBM_RTL is not set
# CONFIG_SENSORS_HDAPS is not set
# CONFIG_INTEL_ATOMISP2_PM is not set
# CONFIG_INTEL_IFS is not set
# CONFIG_INTEL_SAR_INT1092 is not set
# CONFIG_INTEL_SKL_INT3472 is not set

#
# Intel Speed Select Technology interface support
#
# CONFIG_INTEL_SPEED_SELECT_INTERFACE is not set
# end of Intel Speed Select Technology interface support

# CONFIG_INTEL_WMI_SBL_FW_UPDATE is not set
# CONFIG_INTEL_WMI_THUNDERBOLT is not set

#
# Intel Uncore Frequency Control
#
# CONFIG_INTEL_UNCORE_FREQ_CONTROL is not set
# end of Intel Uncore Frequency Control

# CONFIG_INTEL_HID_EVENT is not set
# CONFIG_INTEL_VBTN is not set
# CONFIG_INTEL_INT0002_VGPIO is not set
# CONFIG_INTEL_OAKTRAIL is not set
# CONFIG_INTEL_BXTWC_PMIC_TMU is not set
CONFIG_INTEL_CHTWC_INT33FE=y
CONFIG_INTEL_ISHTP_ECLITE=y
# CONFIG_INTEL_PUNIT_IPC is not set
# CONFIG_INTEL_RST is not set
# CONFIG_INTEL_SMARTCONNECT is not set
# CONFIG_INTEL_TURBO_MAX_3 is not set
# CONFIG_INTEL_VSEC is not set
# CONFIG_IDEAPAD_LAPTOP is not set
# CONFIG_LENOVO_WMI_HOTKEY_UTILITIES is not set
# CONFIG_LENOVO_WMI_CAMERA is not set
# CONFIG_THINKPAD_ACPI is not set
# CONFIG_THINKPAD_LMI is not set
# CONFIG_YOGABOOK is not set
# CONFIG_YT2_1380 is not set
# CONFIG_LENOVO_WMI_GAMEZONE is not set
# CONFIG_LENOVO_WMI_TUNING is not set
# CONFIG_ACPI_QUICKSTART is not set
# CONFIG_MEEGOPAD_ANX7428 is not set
# CONFIG_MSI_EC is not set
# CONFIG_MSI_LAPTOP is not set
# CONFIG_MSI_WMI is not set
# CONFIG_MSI_WMI_PLATFORM is not set
# CONFIG_PCENGINES_APU2 is not set
# CONFIG_PORTWELL_EC is not set
# CONFIG_BARCO_P50_GPIO is not set
# CONFIG_SAMSUNG_GALAXYBOOK is not set
# CONFIG_SAMSUNG_LAPTOP is not set
# CONFIG_SAMSUNG_Q10 is not set
# CONFIG_ACPI_TOSHIBA is not set
# CONFIG_TOSHIBA_BT_RFKILL is not set
# CONFIG_TOSHIBA_HAPS is not set
# CONFIG_TOSHIBA_WMI is not set
# CONFIG_ACPI_CMPC is not set
# CONFIG_COMPAL_LAPTOP is not set
# CONFIG_LG_LAPTOP is not set
# CONFIG_PANASONIC_LAPTOP is not set
# CONFIG_SONY_LAPTOP is not set
# CONFIG_SYSTEM76_ACPI is not set
# CONFIG_TOPSTAR_LAPTOP is not set
# CONFIG_SERIAL_MULTI_INSTANTIATE is not set
# CONFIG_INSPUR_PLATFORM_PROFILE is not set
# CONFIG_DASHARO_ACPI is not set
# CONFIG_INTEL_IPS is not set
CONFIG_INTEL_SCU_IPC=y
# CONFIG_INTEL_SCU_PCI is not set
# CONFIG_INTEL_SCU_PLATFORM is not set
# CONFIG_SIEMENS_SIMATIC_IPC is not set
# CONFIG_SILICOM_PLATFORM is not set
# CONFIG_WINMATE_FM07_KEYS is not set
# CONFIG_OXP_EC is not set
# CONFIG_TUXEDO_NB04_WMI_AB is not set
CONFIG_P2SB=y
CONFIG_HAVE_CLK=y
CONFIG_HAVE_CLK_PREPARE=y
CONFIG_COMMON_CLK=y
# CONFIG_LMK04832 is not set
# CONFIG_COMMON_CLK_MAX9485 is not set
# CONFIG_COMMON_CLK_SI5341 is not set
# CONFIG_COMMON_CLK_SI5351 is not set
# CONFIG_COMMON_CLK_SI514 is not set
# CONFIG_COMMON_CLK_SI544 is not set
# CONFIG_COMMON_CLK_SI570 is not set
# CONFIG_COMMON_CLK_CDCE706 is not set
# CONFIG_COMMON_CLK_CDCE925 is not set
# CONFIG_COMMON_CLK_CS2000_CP is not set
# CONFIG_CLK_TWL is not set
# CONFIG_COMMON_CLK_AXI_CLKGEN is not set
# CONFIG_COMMON_CLK_RS9_PCIE is not set
# CONFIG_COMMON_CLK_SI521XX is not set
# CONFIG_COMMON_CLK_VC3 is not set
# CONFIG_COMMON_CLK_VC5 is not set
# CONFIG_COMMON_CLK_VC7 is not set
# CONFIG_COMMON_CLK_FIXED_MMIO is not set
# CONFIG_CLK_LGM_CGU is not set
# CONFIG_XILINX_VCU is not set
# CONFIG_COMMON_CLK_XLNX_CLKWZRD is not set
# CONFIG_HWSPINLOCK is not set

#
# Clock Source drivers
#
CONFIG_CLKEVT_I8253=y
CONFIG_I8253_LOCK=y
CONFIG_CLKBLD_I8253=y
# end of Clock Source drivers

CONFIG_MAILBOX=y
# CONFIG_PLATFORM_MHU is not set
CONFIG_PCC=y
# CONFIG_ALTERA_MBOX is not set
# CONFIG_MAILBOX_TEST is not set
CONFIG_IOMMU_IOVA=y
CONFIG_IOMMU_API=y
CONFIG_IOMMUFD_DRIVER=y
CONFIG_IOMMU_SUPPORT=y

#
# Generic IOMMU Pagetable Support
#
# end of Generic IOMMU Pagetable Support

# CONFIG_IOMMU_DEBUGFS is not set
# CONFIG_IOMMU_DEFAULT_DMA_STRICT is not set
CONFIG_IOMMU_DEFAULT_DMA_LAZY=y
# CONFIG_IOMMU_DEFAULT_PASSTHROUGH is not set
CONFIG_OF_IOMMU=y
CONFIG_IOMMU_DMA=y
CONFIG_IOMMU_SVA=y
CONFIG_IOMMU_IOPF=y
# CONFIG_AMD_IOMMU is not set
CONFIG_DMAR_TABLE=y
CONFIG_INTEL_IOMMU=y
CONFIG_INTEL_IOMMU_SVM=y
CONFIG_INTEL_IOMMU_DEFAULT_ON=y
CONFIG_INTEL_IOMMU_FLOPPY_WA=y
CONFIG_INTEL_IOMMU_SCALABLE_MODE_DEFAULT_ON=y
CONFIG_INTEL_IOMMU_PERF_EVENTS=y
CONFIG_IOMMUFD_DRIVER_CORE=y
CONFIG_IOMMUFD=y
CONFIG_IOMMUFD_TEST=y
CONFIG_IRQ_REMAP=y
# CONFIG_VIRTIO_IOMMU is not set

#
# Remoteproc drivers
#
# CONFIG_REMOTEPROC is not set
# end of Remoteproc drivers

#
# Rpmsg drivers
#
# CONFIG_RPMSG_QCOM_GLINK_RPM is not set
# CONFIG_RPMSG_VIRTIO is not set
# end of Rpmsg drivers

CONFIG_SOUNDWIRE=y

#
# SoundWire Devices
#
# CONFIG_SOUNDWIRE_AMD is not set
# CONFIG_SOUNDWIRE_INTEL is not set
# CONFIG_SOUNDWIRE_QCOM is not set

#
# SOC (System On Chip) specific Drivers
#

#
# Amlogic SoC drivers
#
# end of Amlogic SoC drivers

#
# Broadcom SoC drivers
#
# end of Broadcom SoC drivers

#
# NXP/Freescale QorIQ SoC drivers
#
# end of NXP/Freescale QorIQ SoC drivers

#
# fujitsu SoC drivers
#
# end of fujitsu SoC drivers

#
# i.MX SoC drivers
#
# end of i.MX SoC drivers

#
# Enable LiteX SoC Builder specific drivers
#
# CONFIG_LITEX_SOC_CONTROLLER is not set
# end of Enable LiteX SoC Builder specific drivers

# CONFIG_WPCM450_SOC is not set

#
# Qualcomm SoC drivers
#
CONFIG_QCOM_QMI_HELPERS=y
# end of Qualcomm SoC drivers

# CONFIG_SOC_TI is not set

#
# Xilinx SoC drivers
#
# end of Xilinx SoC drivers
# end of SOC (System On Chip) specific Drivers

#
# PM Domains
#

#
# Amlogic PM Domains
#
# end of Amlogic PM Domains

#
# Broadcom PM Domains
#
# end of Broadcom PM Domains

#
# i.MX PM Domains
#
# end of i.MX PM Domains

#
# Qualcomm PM Domains
#
# end of Qualcomm PM Domains
# end of PM Domains

# CONFIG_PM_DEVFREQ is not set
CONFIG_EXTCON=y

#
# Extcon Device Drivers
#
# CONFIG_EXTCON_ADC_JACK is not set
# CONFIG_EXTCON_FSA9480 is not set
# CONFIG_EXTCON_GPIO is not set
# CONFIG_EXTCON_INTEL_INT3496 is not set
CONFIG_EXTCON_INTEL_CHT_WC=y
# CONFIG_EXTCON_LC824206XA is not set
# CONFIG_EXTCON_MAX3355 is not set
CONFIG_EXTCON_PTN5150=y
# CONFIG_EXTCON_RT8973A is not set
# CONFIG_EXTCON_SM5502 is not set
# CONFIG_EXTCON_USB_GPIO is not set
CONFIG_EXTCON_USBC_TUSB320=y
# CONFIG_MEMORY is not set
CONFIG_IIO=y
CONFIG_IIO_BUFFER=y
# CONFIG_IIO_BUFFER_CB is not set
# CONFIG_IIO_BUFFER_DMA is not set
# CONFIG_IIO_BUFFER_DMAENGINE is not set
# CONFIG_IIO_BUFFER_HW_CONSUMER is not set
CONFIG_IIO_KFIFO_BUF=y
CONFIG_IIO_TRIGGERED_BUFFER=y
# CONFIG_IIO_CONFIGFS is not set
CONFIG_IIO_TRIGGER=y
CONFIG_IIO_CONSUMERS_PER_TRIGGER=2
# CONFIG_IIO_SW_DEVICE is not set
# CONFIG_IIO_SW_TRIGGER is not set
# CONFIG_IIO_TRIGGERED_EVENT is not set

#
# Accelerometers
#
# CONFIG_ADIS16201 is not set
# CONFIG_ADIS16209 is not set
# CONFIG_ADXL313_I2C is not set
# CONFIG_ADXL313_SPI is not set
# CONFIG_ADXL345_I2C is not set
# CONFIG_ADXL345_SPI is not set
# CONFIG_ADXL355_I2C is not set
# CONFIG_ADXL355_SPI is not set
# CONFIG_ADXL367_SPI is not set
# CONFIG_ADXL367_I2C is not set
# CONFIG_ADXL372_SPI is not set
# CONFIG_ADXL372_I2C is not set
# CONFIG_ADXL380_SPI is not set
# CONFIG_ADXL380_I2C is not set
# CONFIG_BMA180 is not set
# CONFIG_BMA220 is not set
# CONFIG_BMA400 is not set
# CONFIG_BMC150_ACCEL is not set
# CONFIG_BMI088_ACCEL is not set
# CONFIG_DA280 is not set
# CONFIG_DA311 is not set
# CONFIG_DMARD06 is not set
# CONFIG_DMARD09 is not set
# CONFIG_DMARD10 is not set
# CONFIG_FXLS8962AF_I2C is not set
# CONFIG_FXLS8962AF_SPI is not set
CONFIG_HID_SENSOR_ACCEL_3D=y
# CONFIG_IIO_ST_ACCEL_3AXIS is not set
# CONFIG_IIO_KX022A_SPI is not set
# CONFIG_IIO_KX022A_I2C is not set
# CONFIG_KXSD9 is not set
# CONFIG_KXCJK1013 is not set
# CONFIG_MC3230 is not set
# CONFIG_MMA7455_I2C is not set
# CONFIG_MMA7455_SPI is not set
# CONFIG_MMA7660 is not set
# CONFIG_MMA8452 is not set
# CONFIG_MMA9551 is not set
# CONFIG_MMA9553 is not set
# CONFIG_MSA311 is not set
# CONFIG_MXC4005 is not set
# CONFIG_MXC6255 is not set
# CONFIG_SCA3000 is not set
# CONFIG_SCA3300 is not set
# CONFIG_STK8312 is not set
# CONFIG_STK8BA50 is not set
# end of Accelerometers

#
# Analog to digital converters
#
# CONFIG_AD4000 is not set
# CONFIG_AD4030 is not set
# CONFIG_AD4080 is not set
# CONFIG_AD4130 is not set
# CONFIG_AD4170_4 is not set
# CONFIG_AD4695 is not set
# CONFIG_AD7091R5 is not set
# CONFIG_AD7091R8 is not set
# CONFIG_AD7124 is not set
# CONFIG_AD7173 is not set
# CONFIG_AD7191 is not set
# CONFIG_AD7192 is not set
# CONFIG_AD7266 is not set
# CONFIG_AD7280 is not set
# CONFIG_AD7291 is not set
# CONFIG_AD7292 is not set
# CONFIG_AD7298 is not set
# CONFIG_AD7380 is not set
# CONFIG_AD7476 is not set
# CONFIG_AD7606_IFACE_PARALLEL is not set
# CONFIG_AD7606_IFACE_SPI is not set
# CONFIG_AD7766 is not set
# CONFIG_AD7768_1 is not set
# CONFIG_AD7779 is not set
# CONFIG_AD7780 is not set
# CONFIG_AD7791 is not set
# CONFIG_AD7793 is not set
# CONFIG_AD7887 is not set
# CONFIG_AD7923 is not set
# CONFIG_AD7944 is not set
# CONFIG_AD7949 is not set
# CONFIG_AD799X is not set
# CONFIG_AD9467 is not set
# CONFIG_CC10001_ADC is not set
CONFIG_DLN2_ADC=y
# CONFIG_ENVELOPE_DETECTOR is not set
# CONFIG_GEHC_PMC_ADC is not set
# CONFIG_HI8435 is not set
# CONFIG_HX711 is not set
# CONFIG_INA2XX_ADC is not set
# CONFIG_LTC2309 is not set
# CONFIG_LTC2471 is not set
# CONFIG_LTC2485 is not set
# CONFIG_LTC2496 is not set
# CONFIG_LTC2497 is not set
# CONFIG_MAX1027 is not set
# CONFIG_MAX11100 is not set
# CONFIG_MAX1118 is not set
# CONFIG_MAX11205 is not set
# CONFIG_MAX11410 is not set
# CONFIG_MAX1241 is not set
# CONFIG_MAX1363 is not set
# CONFIG_MAX34408 is not set
# CONFIG_MAX9611 is not set
# CONFIG_MCP320X is not set
# CONFIG_MCP3422 is not set
# CONFIG_MCP3564 is not set
# CONFIG_MCP3911 is not set
# CONFIG_MEDIATEK_MT6360_ADC is not set
# CONFIG_MEDIATEK_MT6370_ADC is not set
# CONFIG_NAU7802 is not set
# CONFIG_NCT7201 is not set
# CONFIG_PAC1921 is not set
# CONFIG_PAC1934 is not set
# CONFIG_ROHM_BD79124 is not set
# CONFIG_RICHTEK_RTQ6056 is not set
# CONFIG_SD_ADC_MODULATOR is not set
# CONFIG_TI_ADC081C is not set
# CONFIG_TI_ADC0832 is not set
# CONFIG_TI_ADC084S021 is not set
# CONFIG_TI_ADC108S102 is not set
# CONFIG_TI_ADC12138 is not set
# CONFIG_TI_ADC128S052 is not set
# CONFIG_TI_ADC161S626 is not set
# CONFIG_TI_ADS1015 is not set
# CONFIG_TI_ADS1100 is not set
# CONFIG_TI_ADS1119 is not set
# CONFIG_TI_ADS124S08 is not set
# CONFIG_TI_ADS1298 is not set
# CONFIG_TI_ADS131E08 is not set
# CONFIG_TI_ADS7138 is not set
# CONFIG_TI_ADS7924 is not set
# CONFIG_TI_ADS7950 is not set
# CONFIG_TI_ADS8344 is not set
# CONFIG_TI_ADS8688 is not set
# CONFIG_TI_LMP92064 is not set
# CONFIG_TI_TLC4541 is not set
# CONFIG_TI_TSC2046 is not set
# CONFIG_TWL4030_MADC is not set
# CONFIG_TWL6030_GPADC is not set
# CONFIG_VF610_ADC is not set
CONFIG_VIPERBOARD_ADC=y
# CONFIG_XILINX_XADC is not set
# end of Analog to digital converters

#
# Analog to digital and digital to analog converters
#
# CONFIG_AD74115 is not set
# CONFIG_AD74413R is not set
# end of Analog to digital and digital to analog converters

#
# Analog Front Ends
#
# CONFIG_IIO_RESCALE is not set
# end of Analog Front Ends

#
# Amplifiers
#
# CONFIG_AD8366 is not set
# CONFIG_ADA4250 is not set
# CONFIG_HMC425 is not set
# end of Amplifiers

#
# Capacitance to digital converters
#
# CONFIG_AD7150 is not set
# CONFIG_AD7746 is not set
# end of Capacitance to digital converters

#
# Chemical Sensors
#
# CONFIG_AOSONG_AGS02MA is not set
# CONFIG_ATLAS_PH_SENSOR is not set
# CONFIG_ATLAS_EZO_SENSOR is not set
# CONFIG_BME680 is not set
# CONFIG_CCS811 is not set
# CONFIG_ENS160 is not set
# CONFIG_IAQCORE is not set
# CONFIG_MHZ19B is not set
# CONFIG_PMS7003 is not set
# CONFIG_SCD30_CORE is not set
# CONFIG_SCD4X is not set
# CONFIG_SEN0322 is not set
# CONFIG_SENSIRION_SGP30 is not set
# CONFIG_SENSIRION_SGP40 is not set
# CONFIG_SPS30_I2C is not set
# CONFIG_SPS30_SERIAL is not set
# CONFIG_SENSEAIR_SUNRISE_CO2 is not set
# CONFIG_VZ89X is not set
# end of Chemical Sensors

#
# Hid Sensor IIO Common
#
CONFIG_HID_SENSOR_IIO_COMMON=y
CONFIG_HID_SENSOR_IIO_TRIGGER=y
# end of Hid Sensor IIO Common

#
# IIO SCMI Sensors
#
# end of IIO SCMI Sensors

#
# SSP Sensor Common
#
# CONFIG_IIO_SSP_SENSORHUB is not set
# end of SSP Sensor Common

#
# Digital to analog converters
#
# CONFIG_AD3530R is not set
# CONFIG_AD3552R_HS is not set
# CONFIG_AD3552R is not set
# CONFIG_AD5064 is not set
# CONFIG_AD5360 is not set
# CONFIG_AD5380 is not set
# CONFIG_AD5421 is not set
# CONFIG_AD5446 is not set
# CONFIG_AD5449 is not set
# CONFIG_AD5592R is not set
# CONFIG_AD5593R is not set
# CONFIG_AD5504 is not set
# CONFIG_AD5624R_SPI is not set
# CONFIG_AD9739A is not set
# CONFIG_LTC2688 is not set
# CONFIG_AD5686_SPI is not set
# CONFIG_AD5696_I2C is not set
# CONFIG_AD5755 is not set
# CONFIG_AD5758 is not set
# CONFIG_AD5761 is not set
# CONFIG_AD5764 is not set
# CONFIG_AD5766 is not set
# CONFIG_AD5770R is not set
# CONFIG_AD5791 is not set
# CONFIG_AD7293 is not set
# CONFIG_AD7303 is not set
# CONFIG_AD8460 is not set
# CONFIG_AD8801 is not set
# CONFIG_BD79703 is not set
# CONFIG_CIO_DAC is not set
# CONFIG_DPOT_DAC is not set
# CONFIG_DS4424 is not set
# CONFIG_LTC1660 is not set
# CONFIG_LTC2632 is not set
# CONFIG_LTC2664 is not set
# CONFIG_M62332 is not set
# CONFIG_MAX517 is not set
# CONFIG_MAX5522 is not set
# CONFIG_MAX5821 is not set
# CONFIG_MCP4725 is not set
# CONFIG_MCP4728 is not set
# CONFIG_MCP4821 is not set
# CONFIG_MCP4922 is not set
# CONFIG_TI_DAC082S085 is not set
# CONFIG_TI_DAC5571 is not set
# CONFIG_TI_DAC7311 is not set
# CONFIG_TI_DAC7612 is not set
# CONFIG_VF610_DAC is not set
# end of Digital to analog converters

#
# IIO dummy driver
#
# end of IIO dummy driver

#
# Filters
#
# CONFIG_ADMV8818 is not set
# end of Filters

#
# Frequency Synthesizers DDS/PLL
#

#
# Clock Generator/Distribution
#
# CONFIG_AD9523 is not set
# end of Clock Generator/Distribution

#
# Phase-Locked Loop (PLL) frequency synthesizers
#
# CONFIG_ADF4350 is not set
# CONFIG_ADF4371 is not set
# CONFIG_ADF4377 is not set
# CONFIG_ADMFM2000 is not set
# CONFIG_ADMV1013 is not set
# CONFIG_ADMV1014 is not set
# CONFIG_ADMV4420 is not set
# CONFIG_ADRF6780 is not set
# end of Phase-Locked Loop (PLL) frequency synthesizers
# end of Frequency Synthesizers DDS/PLL

#
# Digital gyroscope sensors
#
# CONFIG_ADIS16080 is not set
# CONFIG_ADIS16130 is not set
# CONFIG_ADIS16136 is not set
# CONFIG_ADIS16260 is not set
# CONFIG_ADXRS290 is not set
# CONFIG_ADXRS450 is not set
# CONFIG_BMG160 is not set
# CONFIG_FXAS21002C is not set
CONFIG_HID_SENSOR_GYRO_3D=y
# CONFIG_MPU3050_I2C is not set
# CONFIG_IIO_ST_GYRO_3AXIS is not set
# CONFIG_ITG3200 is not set
# end of Digital gyroscope sensors

#
# Health Sensors
#

#
# Heart Rate Monitors
#
# CONFIG_AFE4403 is not set
# CONFIG_AFE4404 is not set
# CONFIG_MAX30100 is not set
# CONFIG_MAX30102 is not set
# end of Heart Rate Monitors
# end of Health Sensors

#
# Humidity sensors
#
# CONFIG_AM2315 is not set
# CONFIG_DHT11 is not set
# CONFIG_ENS210 is not set
# CONFIG_HDC100X is not set
# CONFIG_HDC2010 is not set
# CONFIG_HDC3020 is not set
CONFIG_HID_SENSOR_HUMIDITY=y
# CONFIG_HTS221 is not set
# CONFIG_HTU21 is not set
# CONFIG_SI7005 is not set
# CONFIG_SI7020 is not set
# end of Humidity sensors

#
# Inertial measurement units
#
# CONFIG_ADIS16400 is not set
# CONFIG_ADIS16460 is not set
# CONFIG_ADIS16475 is not set
# CONFIG_ADIS16480 is not set
# CONFIG_ADIS16550 is not set
# CONFIG_BMI160_I2C is not set
# CONFIG_BMI160_SPI is not set
# CONFIG_BMI270_I2C is not set
# CONFIG_BMI270_SPI is not set
# CONFIG_BMI323_I2C is not set
# CONFIG_BMI323_SPI is not set
# CONFIG_BOSCH_BNO055_SERIAL is not set
# CONFIG_BOSCH_BNO055_I2C is not set
# CONFIG_FXOS8700_I2C is not set
# CONFIG_FXOS8700_SPI is not set
# CONFIG_KMX61 is not set
# CONFIG_INV_ICM42600_I2C is not set
# CONFIG_INV_ICM42600_SPI is not set
# CONFIG_INV_MPU6050_I2C is not set
# CONFIG_INV_MPU6050_SPI is not set
# CONFIG_SMI240 is not set
# CONFIG_IIO_ST_LSM6DSX is not set
# CONFIG_IIO_ST_LSM9DS0 is not set
# end of Inertial measurement units

#
# Light sensors
#
# CONFIG_ACPI_ALS is not set
# CONFIG_ADJD_S311 is not set
# CONFIG_ADUX1020 is not set
# CONFIG_AL3000A is not set
# CONFIG_AL3010 is not set
# CONFIG_AL3320A is not set
# CONFIG_APDS9160 is not set
# CONFIG_APDS9300 is not set
# CONFIG_APDS9306 is not set
# CONFIG_APDS9960 is not set
# CONFIG_AS73211 is not set
# CONFIG_BH1745 is not set
# CONFIG_BH1750 is not set
# CONFIG_BH1780 is not set
# CONFIG_CM32181 is not set
# CONFIG_CM3232 is not set
# CONFIG_CM3323 is not set
# CONFIG_CM3605 is not set
# CONFIG_CM36651 is not set
# CONFIG_GP2AP002 is not set
# CONFIG_GP2AP020A00F is not set
# CONFIG_SENSORS_ISL29018 is not set
# CONFIG_SENSORS_ISL29028 is not set
# CONFIG_ISL29125 is not set
# CONFIG_ISL76682 is not set
CONFIG_HID_SENSOR_ALS=y
CONFIG_HID_SENSOR_PROX=y
# CONFIG_JSA1212 is not set
# CONFIG_ROHM_BU27034 is not set
# CONFIG_RPR0521 is not set
# CONFIG_LTR390 is not set
# CONFIG_LTR501 is not set
# CONFIG_LTRF216A is not set
# CONFIG_LV0104CS is not set
# CONFIG_MAX44000 is not set
# CONFIG_MAX44009 is not set
# CONFIG_NOA1305 is not set
# CONFIG_OPT3001 is not set
# CONFIG_OPT4001 is not set
# CONFIG_OPT4060 is not set
# CONFIG_PA12203001 is not set
# CONFIG_SI1133 is not set
# CONFIG_SI1145 is not set
# CONFIG_STK3310 is not set
# CONFIG_ST_UVIS25 is not set
# CONFIG_TCS3414 is not set
# CONFIG_TCS3472 is not set
# CONFIG_SENSORS_TSL2563 is not set
# CONFIG_TSL2583 is not set
# CONFIG_TSL2591 is not set
# CONFIG_TSL2772 is not set
# CONFIG_TSL4531 is not set
# CONFIG_US5182D is not set
# CONFIG_VCNL4000 is not set
# CONFIG_VCNL4035 is not set
# CONFIG_VEML3235 is not set
# CONFIG_VEML6030 is not set
# CONFIG_VEML6040 is not set
# CONFIG_VEML6070 is not set
# CONFIG_VEML6075 is not set
# CONFIG_VL6180 is not set
# CONFIG_ZOPT2201 is not set
# end of Light sensors

#
# Magnetometer sensors
#
# CONFIG_AF8133J is not set
# CONFIG_AK8974 is not set
# CONFIG_AK8975 is not set
# CONFIG_AK09911 is not set
# CONFIG_ALS31300 is not set
# CONFIG_BMC150_MAGN_I2C is not set
# CONFIG_BMC150_MAGN_SPI is not set
# CONFIG_MAG3110 is not set
CONFIG_HID_SENSOR_MAGNETOMETER_3D=y
# CONFIG_MMC35240 is not set
# CONFIG_IIO_ST_MAGN_3AXIS is not set
# CONFIG_SENSORS_HMC5843_I2C is not set
# CONFIG_SENSORS_HMC5843_SPI is not set
# CONFIG_SENSORS_RM3100_I2C is not set
# CONFIG_SENSORS_RM3100_SPI is not set
# CONFIG_SI7210 is not set
# CONFIG_TI_TMAG5273 is not set
# CONFIG_YAMAHA_YAS530 is not set
# end of Magnetometer sensors

#
# Multiplexers
#
# CONFIG_IIO_MUX is not set
# end of Multiplexers

#
# Inclinometer sensors
#
CONFIG_HID_SENSOR_INCLINOMETER_3D=y
CONFIG_HID_SENSOR_DEVICE_ROTATION=y
# end of Inclinometer sensors

#
# Triggers - standalone
#
# CONFIG_IIO_INTERRUPT_TRIGGER is not set
# CONFIG_IIO_SYSFS_TRIGGER is not set
# end of Triggers - standalone

#
# Linear and angular position sensors
#
CONFIG_HID_SENSOR_CUSTOM_INTEL_HINGE=y
# end of Linear and angular position sensors

#
# Digital potentiometers
#
# CONFIG_AD5110 is not set
# CONFIG_AD5272 is not set
# CONFIG_DS1803 is not set
# CONFIG_MAX5432 is not set
# CONFIG_MAX5481 is not set
# CONFIG_MAX5487 is not set
# CONFIG_MCP4018 is not set
# CONFIG_MCP4131 is not set
# CONFIG_MCP4531 is not set
# CONFIG_MCP41010 is not set
# CONFIG_TPL0102 is not set
# CONFIG_X9250 is not set
# end of Digital potentiometers

#
# Digital potentiostats
#
# CONFIG_LMP91000 is not set
# end of Digital potentiostats

#
# Pressure sensors
#
# CONFIG_ABP060MG is not set
# CONFIG_ROHM_BM1390 is not set
# CONFIG_BMP280 is not set
# CONFIG_DLHL60D is not set
# CONFIG_DPS310 is not set
CONFIG_HID_SENSOR_PRESS=y
# CONFIG_HP03 is not set
# CONFIG_HSC030PA is not set
# CONFIG_ICP10100 is not set
# CONFIG_MPL115_I2C is not set
# CONFIG_MPL115_SPI is not set
# CONFIG_MPL3115 is not set
# CONFIG_MPRLS0025PA is not set
# CONFIG_MS5611 is not set
# CONFIG_MS5637 is not set
# CONFIG_SDP500 is not set
# CONFIG_IIO_ST_PRESS is not set
# CONFIG_T5403 is not set
# CONFIG_HP206C is not set
# CONFIG_ZPA2326 is not set
# end of Pressure sensors

#
# Lightning sensors
#
# CONFIG_AS3935 is not set
# end of Lightning sensors

#
# Proximity and distance sensors
#
# CONFIG_D3323AA is not set
# CONFIG_HX9023S is not set
# CONFIG_IRSD200 is not set
# CONFIG_ISL29501 is not set
# CONFIG_LIDAR_LITE_V2 is not set
# CONFIG_MB1232 is not set
# CONFIG_PING is not set
# CONFIG_RFD77402 is not set
# CONFIG_SRF04 is not set
# CONFIG_SX9310 is not set
# CONFIG_SX9324 is not set
# CONFIG_SX9360 is not set
# CONFIG_SX9500 is not set
# CONFIG_SRF08 is not set
# CONFIG_VCNL3020 is not set
# CONFIG_VL53L0X_I2C is not set
# CONFIG_AW96103 is not set
# end of Proximity and distance sensors

#
# Resolver to digital converters
#
# CONFIG_AD2S90 is not set
# CONFIG_AD2S1200 is not set
# CONFIG_AD2S1210 is not set
# end of Resolver to digital converters

#
# Temperature sensors
#
# CONFIG_LTC2983 is not set
# CONFIG_MAXIM_THERMOCOUPLE is not set
CONFIG_HID_SENSOR_TEMP=y
# CONFIG_MLX90614 is not set
# CONFIG_MLX90632 is not set
# CONFIG_MLX90635 is not set
# CONFIG_TMP006 is not set
# CONFIG_TMP007 is not set
# CONFIG_TMP117 is not set
# CONFIG_TSYS01 is not set
# CONFIG_TSYS02D is not set
# CONFIG_MAX30208 is not set
# CONFIG_MAX31856 is not set
# CONFIG_MAX31865 is not set
# CONFIG_MCP9600 is not set
# end of Temperature sensors

# CONFIG_NTB is not set
# CONFIG_PWM is not set

#
# IRQ chip support
#
CONFIG_IRQCHIP=y
CONFIG_IRQ_MSI_LIB=y
# CONFIG_AL_FIC is not set
# CONFIG_XILINX_INTC is not set
# end of IRQ chip support

# CONFIG_IPACK_BUS is not set
CONFIG_RESET_CONTROLLER=y
# CONFIG_RESET_GPIO is not set
# CONFIG_RESET_INTEL_GW is not set
# CONFIG_RESET_SIMPLE is not set
# CONFIG_RESET_TI_SYSCON is not set
# CONFIG_RESET_TI_TPS380X is not set

#
# PHY Subsystem
#
CONFIG_GENERIC_PHY=y
CONFIG_USB_LGM_PHY=y
# CONFIG_PHY_CAN_TRANSCEIVER is not set
# CONFIG_PHY_NXP_PTN3222 is not set

#
# PHY drivers for Broadcom platforms
#
# CONFIG_BCM_KONA_USB2_PHY is not set
# end of PHY drivers for Broadcom platforms

# CONFIG_PHY_CADENCE_TORRENT is not set
# CONFIG_PHY_CADENCE_DPHY is not set
# CONFIG_PHY_CADENCE_DPHY_RX is not set
# CONFIG_PHY_CADENCE_SIERRA is not set
# CONFIG_PHY_CADENCE_SALVO is not set
# CONFIG_PHY_PXA_28NM_HSIC is not set
# CONFIG_PHY_PXA_28NM_USB2 is not set
CONFIG_PHY_CPCAP_USB=y
# CONFIG_PHY_MAPPHONE_MDM6600 is not set
# CONFIG_PHY_OCELOT_SERDES is not set
CONFIG_PHY_QCOM_USB_HS=y
CONFIG_PHY_QCOM_USB_HSIC=y
CONFIG_PHY_SAMSUNG_USB2=y
CONFIG_PHY_TUSB1210=y
# CONFIG_PHY_INTEL_LGM_COMBO is not set
# CONFIG_PHY_INTEL_LGM_EMMC is not set
# end of PHY Subsystem

# CONFIG_POWERCAP is not set
# CONFIG_MCB is not set

#
# Performance monitor support
#
# CONFIG_DWC_PCIE_PMU is not set
# end of Performance monitor support

CONFIG_RAS=y
CONFIG_USB4=y
# CONFIG_USB4_DEBUGFS_WRITE is not set
# CONFIG_USB4_DMA_TEST is not set

#
# Android
#
CONFIG_ANDROID_BINDER_IPC=y
CONFIG_ANDROID_BINDERFS=y
CONFIG_ANDROID_BINDER_DEVICES="binder0,binder1"
# end of Android

CONFIG_LIBNVDIMM=y
CONFIG_BLK_DEV_PMEM=y
CONFIG_ND_CLAIM=y
CONFIG_ND_BTT=y
CONFIG_BTT=y
CONFIG_ND_PFN=y
CONFIG_NVDIMM_PFN=y
CONFIG_NVDIMM_DAX=y
CONFIG_OF_PMEM=y
CONFIG_NVDIMM_KEYS=y
# CONFIG_NVDIMM_SECURITY_TEST is not set
CONFIG_DAX=y
CONFIG_DEV_DAX=y
# CONFIG_DEV_DAX_PMEM is not set
# CONFIG_DEV_DAX_KMEM is not set
CONFIG_NVMEM=y
CONFIG_NVMEM_SYSFS=y
CONFIG_NVMEM_LAYOUTS=y

#
# Layout Types
#
# CONFIG_NVMEM_LAYOUT_SL28_VPD is not set
# CONFIG_NVMEM_LAYOUT_ONIE_TLV is not set
# CONFIG_NVMEM_LAYOUT_U_BOOT_ENV is not set
# end of Layout Types

# CONFIG_NVMEM_RMEM is not set
# CONFIG_NVMEM_U_BOOT_ENV is not set

#
# HW tracing support
#
# CONFIG_STM is not set
# CONFIG_INTEL_TH is not set
# end of HW tracing support

# CONFIG_FPGA is not set
# CONFIG_FSI is not set
CONFIG_TEE=y
# CONFIG_SIOX is not set
# CONFIG_SLIMBUS is not set
# CONFIG_INTERCONNECT is not set
CONFIG_COUNTER=y
# CONFIG_INTEL_QEP is not set
# CONFIG_INTERRUPT_CNT is not set
CONFIG_MOST=y
CONFIG_MOST_USB_HDM=y
# CONFIG_MOST_CDEV is not set
# CONFIG_MOST_SND is not set
# CONFIG_PECI is not set
# CONFIG_HTE is not set
# end of Device Drivers

#
# File systems
#
CONFIG_DCACHE_WORD_ACCESS=y
CONFIG_VALIDATE_FS_PARSER=y
CONFIG_FS_IOMAP=y
CONFIG_FS_STACK=y
CONFIG_BUFFER_HEAD=y
CONFIG_LEGACY_DIRECT_IO=y
# CONFIG_EXT2_FS is not set
CONFIG_EXT3_FS=y
CONFIG_EXT3_FS_POSIX_ACL=y
CONFIG_EXT3_FS_SECURITY=y
CONFIG_EXT4_FS=y
CONFIG_EXT4_USE_FOR_EXT2=y
CONFIG_EXT4_FS_POSIX_ACL=y
CONFIG_EXT4_FS_SECURITY=y
# CONFIG_EXT4_DEBUG is not set
CONFIG_JBD2=y
# CONFIG_JBD2_DEBUG is not set
CONFIG_FS_MBCACHE=y
CONFIG_JFS_FS=y
CONFIG_JFS_POSIX_ACL=y
CONFIG_JFS_SECURITY=y
CONFIG_JFS_DEBUG=y
# CONFIG_JFS_STATISTICS is not set
CONFIG_XFS_FS=y
# CONFIG_XFS_SUPPORT_V4 is not set
# CONFIG_XFS_SUPPORT_ASCII_CI is not set
CONFIG_XFS_QUOTA=y
CONFIG_XFS_POSIX_ACL=y
CONFIG_XFS_RT=y
# CONFIG_XFS_ONLINE_SCRUB is not set
# CONFIG_XFS_WARN is not set
# CONFIG_XFS_DEBUG is not set
CONFIG_GFS2_FS=y
CONFIG_GFS2_FS_LOCKING_DLM=y
CONFIG_OCFS2_FS=y
CONFIG_OCFS2_FS_O2CB=y
CONFIG_OCFS2_FS_USERSPACE_CLUSTER=y
CONFIG_OCFS2_FS_STATS=y
# CONFIG_OCFS2_DEBUG_MASKLOG is not set
CONFIG_OCFS2_DEBUG_FS=y
CONFIG_BTRFS_FS=y
CONFIG_BTRFS_FS_POSIX_ACL=y
# CONFIG_BTRFS_FS_RUN_SANITY_TESTS is not set
# CONFIG_BTRFS_DEBUG is not set
CONFIG_BTRFS_ASSERT=y
# CONFIG_BTRFS_EXPERIMENTAL is not set
CONFIG_BTRFS_FS_REF_VERIFY=y
CONFIG_NILFS2_FS=y
CONFIG_F2FS_FS=y
CONFIG_F2FS_STAT_FS=y
CONFIG_F2FS_FS_XATTR=y
CONFIG_F2FS_FS_POSIX_ACL=y
CONFIG_F2FS_FS_SECURITY=y
CONFIG_F2FS_CHECK_FS=y
CONFIG_F2FS_FAULT_INJECTION=y
CONFIG_F2FS_FS_COMPRESSION=y
CONFIG_F2FS_FS_LZO=y
CONFIG_F2FS_FS_LZORLE=y
CONFIG_F2FS_FS_LZ4=y
CONFIG_F2FS_FS_LZ4HC=y
CONFIG_F2FS_FS_ZSTD=y
# CONFIG_F2FS_IOSTAT is not set
# CONFIG_F2FS_UNFAIR_RWSEM is not set
CONFIG_BCACHEFS_FS=y
CONFIG_BCACHEFS_QUOTA=y
CONFIG_BCACHEFS_ERASURE_CODING=y
CONFIG_BCACHEFS_POSIX_ACL=y
CONFIG_BCACHEFS_DEBUG=y
# CONFIG_BCACHEFS_INJECT_TRANSACTION_RESTARTS is not set
# CONFIG_BCACHEFS_TESTS is not set
# CONFIG_BCACHEFS_LOCK_TIME_STATS is not set
# CONFIG_BCACHEFS_NO_LATENCY_ACCT is not set
CONFIG_BCACHEFS_SIX_OPTIMISTIC_SPIN=y
# CONFIG_BCACHEFS_PATH_TRACEPOINTS is not set
# CONFIG_BCACHEFS_TRANS_KMALLOC_TRACE is not set
# CONFIG_BCACHEFS_ASYNC_OBJECT_LISTS is not set
CONFIG_ZONEFS_FS=y
CONFIG_FS_DAX=y
CONFIG_FS_DAX_PMD=y
CONFIG_FS_POSIX_ACL=y
CONFIG_EXPORTFS=y
CONFIG_EXPORTFS_BLOCK_OPS=y
CONFIG_FILE_LOCKING=y
CONFIG_FS_ENCRYPTION=y
CONFIG_FS_ENCRYPTION_ALGS=y
# CONFIG_FS_ENCRYPTION_INLINE_CRYPT is not set
CONFIG_FS_VERITY=y
CONFIG_FS_VERITY_BUILTIN_SIGNATURES=y
CONFIG_FSNOTIFY=y
CONFIG_DNOTIFY=y
CONFIG_INOTIFY_USER=y
CONFIG_FANOTIFY=y
CONFIG_FANOTIFY_ACCESS_PERMISSIONS=y
CONFIG_QUOTA=y
CONFIG_QUOTA_NETLINK_INTERFACE=y
# CONFIG_QUOTA_DEBUG is not set
CONFIG_QUOTA_TREE=y
# CONFIG_QFMT_V1 is not set
CONFIG_QFMT_V2=y
CONFIG_QUOTACTL=y
CONFIG_AUTOFS_FS=y
CONFIG_FUSE_FS=y
CONFIG_CUSE=y
CONFIG_VIRTIO_FS=y
CONFIG_FUSE_DAX=y
# CONFIG_FUSE_PASSTHROUGH is not set
# CONFIG_FUSE_IO_URING is not set
CONFIG_OVERLAY_FS=y
CONFIG_OVERLAY_FS_REDIRECT_DIR=y
CONFIG_OVERLAY_FS_REDIRECT_ALWAYS_FOLLOW=y
CONFIG_OVERLAY_FS_INDEX=y
# CONFIG_OVERLAY_FS_NFS_EXPORT is not set
# CONFIG_OVERLAY_FS_XINO_AUTO is not set
# CONFIG_OVERLAY_FS_METACOPY is not set
CONFIG_OVERLAY_FS_DEBUG=y

#
# Caches
#
CONFIG_NETFS_SUPPORT=y
# CONFIG_NETFS_STATS is not set
# CONFIG_NETFS_DEBUG is not set
CONFIG_FSCACHE=y
# CONFIG_FSCACHE_STATS is not set
CONFIG_CACHEFILES=y
# CONFIG_CACHEFILES_DEBUG is not set
# CONFIG_CACHEFILES_ERROR_INJECTION is not set
# CONFIG_CACHEFILES_ONDEMAND is not set
# end of Caches

#
# CD-ROM/DVD Filesystems
#
CONFIG_ISO9660_FS=y
CONFIG_JOLIET=y
CONFIG_ZISOFS=y
CONFIG_UDF_FS=y
# end of CD-ROM/DVD Filesystems

#
# DOS/FAT/EXFAT/NT Filesystems
#
CONFIG_FAT_FS=y
CONFIG_MSDOS_FS=y
CONFIG_VFAT_FS=y
CONFIG_FAT_DEFAULT_CODEPAGE=437
CONFIG_FAT_DEFAULT_IOCHARSET="iso8859-1"
# CONFIG_FAT_DEFAULT_UTF8 is not set
CONFIG_EXFAT_FS=y
CONFIG_EXFAT_DEFAULT_IOCHARSET="utf8"
CONFIG_NTFS3_FS=y
# CONFIG_NTFS3_64BIT_CLUSTER is not set
CONFIG_NTFS3_LZX_XPRESS=y
CONFIG_NTFS3_FS_POSIX_ACL=y
# CONFIG_NTFS_FS is not set
# end of DOS/FAT/EXFAT/NT Filesystems

#
# Pseudo filesystems
#
CONFIG_PROC_FS=y
CONFIG_PROC_KCORE=y
CONFIG_PROC_VMCORE=y
# CONFIG_PROC_VMCORE_DEVICE_DUMP is not set
CONFIG_PROC_SYSCTL=y
CONFIG_PROC_PAGE_MONITOR=y
CONFIG_PROC_CHILDREN=y
CONFIG_PROC_PID_ARCH_STATUS=y
CONFIG_KERNFS=y
CONFIG_SYSFS=y
CONFIG_TMPFS=y
CONFIG_TMPFS_POSIX_ACL=y
CONFIG_TMPFS_XATTR=y
# CONFIG_TMPFS_INODE64 is not set
CONFIG_TMPFS_QUOTA=y
CONFIG_ARCH_SUPPORTS_HUGETLBFS=y
CONFIG_HUGETLBFS=y
# CONFIG_HUGETLB_PAGE_OPTIMIZE_VMEMMAP_DEFAULT_ON is not set
CONFIG_HUGETLB_PAGE=y
CONFIG_HUGETLB_PAGE_OPTIMIZE_VMEMMAP=y
CONFIG_HUGETLB_PMD_PAGE_TABLE_SHARING=y
CONFIG_ARCH_HAS_GIGANTIC_PAGE=y
CONFIG_CONFIGFS_FS=y
# end of Pseudo filesystems

CONFIG_MISC_FILESYSTEMS=y
CONFIG_ORANGEFS_FS=y
CONFIG_ADFS_FS=y
# CONFIG_ADFS_FS_RW is not set
CONFIG_AFFS_FS=y
CONFIG_ECRYPT_FS=y
CONFIG_ECRYPT_FS_MESSAGING=y
CONFIG_HFS_FS=y
CONFIG_HFSPLUS_FS=y
CONFIG_BEFS_FS=y
# CONFIG_BEFS_DEBUG is not set
CONFIG_BFS_FS=y
CONFIG_EFS_FS=y
CONFIG_JFFS2_FS=y
CONFIG_JFFS2_FS_DEBUG=0
CONFIG_JFFS2_FS_WRITEBUFFER=y
# CONFIG_JFFS2_FS_WBUF_VERIFY is not set
CONFIG_JFFS2_SUMMARY=y
CONFIG_JFFS2_FS_XATTR=y
CONFIG_JFFS2_FS_POSIX_ACL=y
CONFIG_JFFS2_FS_SECURITY=y
CONFIG_JFFS2_COMPRESSION_OPTIONS=y
CONFIG_JFFS2_ZLIB=y
CONFIG_JFFS2_LZO=y
CONFIG_JFFS2_RTIME=y
CONFIG_JFFS2_RUBIN=y
# CONFIG_JFFS2_CMODE_NONE is not set
CONFIG_JFFS2_CMODE_PRIORITY=y
# CONFIG_JFFS2_CMODE_SIZE is not set
# CONFIG_JFFS2_CMODE_FAVOURLZO is not set
CONFIG_UBIFS_FS=y
CONFIG_UBIFS_FS_ADVANCED_COMPR=y
CONFIG_UBIFS_FS_LZO=y
CONFIG_UBIFS_FS_ZLIB=y
CONFIG_UBIFS_FS_ZSTD=y
CONFIG_UBIFS_ATIME_SUPPORT=y
CONFIG_UBIFS_FS_XATTR=y
CONFIG_UBIFS_FS_SECURITY=y
# CONFIG_UBIFS_FS_AUTHENTICATION is not set
CONFIG_CRAMFS=y
CONFIG_CRAMFS_BLOCKDEV=y
CONFIG_CRAMFS_MTD=y
CONFIG_SQUASHFS=y
# CONFIG_SQUASHFS_FILE_CACHE is not set
CONFIG_SQUASHFS_FILE_DIRECT=y
CONFIG_SQUASHFS_DECOMP_MULTI=y
# CONFIG_SQUASHFS_CHOICE_DECOMP_BY_MOUNT is not set
# CONFIG_SQUASHFS_COMPILE_DECOMP_SINGLE is not set
CONFIG_SQUASHFS_COMPILE_DECOMP_MULTI=y
# CONFIG_SQUASHFS_COMPILE_DECOMP_MULTI_PERCPU is not set
# CONFIG_SQUASHFS_MOUNT_DECOMP_THREADS is not set
CONFIG_SQUASHFS_XATTR=y
# CONFIG_SQUASHFS_COMP_CACHE_FULL is not set
CONFIG_SQUASHFS_ZLIB=y
CONFIG_SQUASHFS_LZ4=y
CONFIG_SQUASHFS_LZO=y
CONFIG_SQUASHFS_XZ=y
CONFIG_SQUASHFS_ZSTD=y
CONFIG_SQUASHFS_4K_DEVBLK_SIZE=y
# CONFIG_SQUASHFS_EMBEDDED is not set
CONFIG_SQUASHFS_FRAGMENT_CACHE_SIZE=3
CONFIG_VXFS_FS=y
CONFIG_MINIX_FS=y
CONFIG_OMFS_FS=y
CONFIG_HPFS_FS=y
CONFIG_QNX4FS_FS=y
CONFIG_QNX6FS_FS=y
# CONFIG_QNX6FS_DEBUG is not set
CONFIG_ROMFS_FS=y
# CONFIG_ROMFS_BACKED_BY_BLOCK is not set
# CONFIG_ROMFS_BACKED_BY_MTD is not set
CONFIG_ROMFS_BACKED_BY_BOTH=y
CONFIG_ROMFS_ON_BLOCK=y
CONFIG_ROMFS_ON_MTD=y
CONFIG_PSTORE=y
CONFIG_PSTORE_DEFAULT_KMSG_BYTES=10240
CONFIG_PSTORE_COMPRESS=y
# CONFIG_PSTORE_CONSOLE is not set
# CONFIG_PSTORE_PMSG is not set
# CONFIG_PSTORE_RAM is not set
# CONFIG_PSTORE_BLK is not set
CONFIG_UFS_FS=y
CONFIG_UFS_FS_WRITE=y
# CONFIG_UFS_DEBUG is not set
CONFIG_EROFS_FS=y
# CONFIG_EROFS_FS_DEBUG is not set
CONFIG_EROFS_FS_XATTR=y
CONFIG_EROFS_FS_POSIX_ACL=y
CONFIG_EROFS_FS_SECURITY=y
# CONFIG_EROFS_FS_BACKED_BY_FILE is not set
CONFIG_EROFS_FS_ZIP=y
# CONFIG_EROFS_FS_ZIP_LZMA is not set
# CONFIG_EROFS_FS_ZIP_DEFLATE is not set
# CONFIG_EROFS_FS_ZIP_ZSTD is not set
# CONFIG_EROFS_FS_ZIP_ACCEL is not set
# CONFIG_EROFS_FS_ONDEMAND is not set
# CONFIG_EROFS_FS_PCPU_KTHREAD is not set
CONFIG_NETWORK_FILESYSTEMS=y
CONFIG_NFS_FS=y
# CONFIG_NFS_V2 is not set
CONFIG_NFS_V3=y
CONFIG_NFS_V3_ACL=y
CONFIG_NFS_V4=y
# CONFIG_NFS_SWAP is not set
CONFIG_NFS_V4_1=y
CONFIG_NFS_V4_2=y
CONFIG_PNFS_FILE_LAYOUT=y
CONFIG_PNFS_BLOCK=y
CONFIG_PNFS_FLEXFILE_LAYOUT=y
CONFIG_NFS_V4_1_IMPLEMENTATION_ID_DOMAIN="kernel.org"
# CONFIG_NFS_V4_1_MIGRATION is not set
CONFIG_NFS_V4_SECURITY_LABEL=y
CONFIG_ROOT_NFS=y
CONFIG_NFS_FSCACHE=y
# CONFIG_NFS_USE_LEGACY_DNS is not set
CONFIG_NFS_USE_KERNEL_DNS=y
# CONFIG_NFS_DISABLE_UDP_SUPPORT is not set
CONFIG_NFS_V4_2_READ_PLUS=y
CONFIG_NFSD=y
# CONFIG_NFSD_V2 is not set
CONFIG_NFSD_V3_ACL=y
CONFIG_NFSD_V4=y
CONFIG_NFSD_PNFS=y
CONFIG_NFSD_BLOCKLAYOUT=y
CONFIG_NFSD_SCSILAYOUT=y
CONFIG_NFSD_FLEXFILELAYOUT=y
CONFIG_NFSD_V4_2_INTER_SSC=y
CONFIG_NFSD_V4_SECURITY_LABEL=y
# CONFIG_NFSD_LEGACY_CLIENT_TRACKING is not set
# CONFIG_NFSD_V4_DELEG_TIMESTAMPS is not set
CONFIG_GRACE_PERIOD=y
CONFIG_LOCKD=y
CONFIG_LOCKD_V4=y
CONFIG_NFS_ACL_SUPPORT=y
CONFIG_NFS_COMMON=y
# CONFIG_NFS_LOCALIO is not set
CONFIG_NFS_V4_2_SSC_HELPER=y
CONFIG_SUNRPC=y
CONFIG_SUNRPC_GSS=y
CONFIG_SUNRPC_BACKCHANNEL=y
CONFIG_RPCSEC_GSS_KRB5=y
# CONFIG_RPCSEC_GSS_KRB5_ENCTYPES_AES_SHA1 is not set
# CONFIG_RPCSEC_GSS_KRB5_ENCTYPES_CAMELLIA is not set
# CONFIG_RPCSEC_GSS_KRB5_ENCTYPES_AES_SHA2 is not set
# CONFIG_SUNRPC_DEBUG is not set
# CONFIG_SUNRPC_XPRT_RDMA is not set
CONFIG_CEPH_FS=y
CONFIG_CEPH_FSCACHE=y
CONFIG_CEPH_FS_POSIX_ACL=y
# CONFIG_CEPH_FS_SECURITY_LABEL is not set
CONFIG_CIFS=y
# CONFIG_CIFS_STATS2 is not set
CONFIG_CIFS_ALLOW_INSECURE_LEGACY=y
CONFIG_CIFS_UPCALL=y
CONFIG_CIFS_XATTR=y
CONFIG_CIFS_POSIX=y
CONFIG_CIFS_DEBUG=y
# CONFIG_CIFS_DEBUG2 is not set
# CONFIG_CIFS_DEBUG_DUMP_KEYS is not set
CONFIG_CIFS_DFS_UPCALL=y
CONFIG_CIFS_SWN_UPCALL=y
CONFIG_CIFS_SMB_DIRECT=y
CONFIG_CIFS_FSCACHE=y
# CONFIG_CIFS_ROOT is not set
# CONFIG_CIFS_COMPRESSION is not set
CONFIG_SMB_SERVER=y
# CONFIG_SMB_SERVER_SMBDIRECT is not set
# CONFIG_SMB_SERVER_CHECK_CAP_NET_ADMIN is not set
# CONFIG_SMB_SERVER_KERBEROS5 is not set
CONFIG_SMBFS=y
# CONFIG_CODA_FS is not set
CONFIG_AFS_FS=y
# CONFIG_AFS_DEBUG is not set
CONFIG_AFS_FSCACHE=y
# CONFIG_AFS_DEBUG_CURSOR is not set
CONFIG_9P_FS=y
CONFIG_9P_FSCACHE=y
CONFIG_9P_FS_POSIX_ACL=y
CONFIG_9P_FS_SECURITY=y
CONFIG_NLS=y
CONFIG_NLS_DEFAULT="utf8"
CONFIG_NLS_CODEPAGE_437=y
CONFIG_NLS_CODEPAGE_737=y
CONFIG_NLS_CODEPAGE_775=y
CONFIG_NLS_CODEPAGE_850=y
CONFIG_NLS_CODEPAGE_852=y
CONFIG_NLS_CODEPAGE_855=y
CONFIG_NLS_CODEPAGE_857=y
CONFIG_NLS_CODEPAGE_860=y
CONFIG_NLS_CODEPAGE_861=y
CONFIG_NLS_CODEPAGE_862=y
CONFIG_NLS_CODEPAGE_863=y
CONFIG_NLS_CODEPAGE_864=y
CONFIG_NLS_CODEPAGE_865=y
CONFIG_NLS_CODEPAGE_866=y
CONFIG_NLS_CODEPAGE_869=y
CONFIG_NLS_CODEPAGE_936=y
CONFIG_NLS_CODEPAGE_950=y
CONFIG_NLS_CODEPAGE_932=y
CONFIG_NLS_CODEPAGE_949=y
CONFIG_NLS_CODEPAGE_874=y
CONFIG_NLS_ISO8859_8=y
CONFIG_NLS_CODEPAGE_1250=y
CONFIG_NLS_CODEPAGE_1251=y
CONFIG_NLS_ASCII=y
CONFIG_NLS_ISO8859_1=y
CONFIG_NLS_ISO8859_2=y
CONFIG_NLS_ISO8859_3=y
CONFIG_NLS_ISO8859_4=y
CONFIG_NLS_ISO8859_5=y
CONFIG_NLS_ISO8859_6=y
CONFIG_NLS_ISO8859_7=y
CONFIG_NLS_ISO8859_9=y
CONFIG_NLS_ISO8859_13=y
CONFIG_NLS_ISO8859_14=y
CONFIG_NLS_ISO8859_15=y
CONFIG_NLS_KOI8_R=y
CONFIG_NLS_KOI8_U=y
CONFIG_NLS_MAC_ROMAN=y
CONFIG_NLS_MAC_CELTIC=y
CONFIG_NLS_MAC_CENTEURO=y
CONFIG_NLS_MAC_CROATIAN=y
CONFIG_NLS_MAC_CYRILLIC=y
CONFIG_NLS_MAC_GAELIC=y
CONFIG_NLS_MAC_GREEK=y
CONFIG_NLS_MAC_ICELAND=y
CONFIG_NLS_MAC_INUIT=y
CONFIG_NLS_MAC_ROMANIAN=y
CONFIG_NLS_MAC_TURKISH=y
CONFIG_NLS_UTF8=y
CONFIG_NLS_UCS2_UTILS=y
CONFIG_DLM=y
# CONFIG_DLM_DEBUG is not set
CONFIG_UNICODE=y
CONFIG_IO_WQ=y
# end of File systems

#
# Security options
#
CONFIG_KEYS=y
CONFIG_KEYS_REQUEST_CACHE=y
CONFIG_PERSISTENT_KEYRINGS=y
CONFIG_BIG_KEYS=y
CONFIG_TRUSTED_KEYS=y
# CONFIG_TRUSTED_KEYS_TPM is not set
# CONFIG_TRUSTED_KEYS_TEE is not set

#
# No trust source selected!
#
CONFIG_ENCRYPTED_KEYS=y
# CONFIG_USER_DECRYPTED_DATA is not set
CONFIG_KEY_DH_OPERATIONS=y
CONFIG_KEY_NOTIFICATIONS=y
# CONFIG_SECURITY_DMESG_RESTRICT is not set
CONFIG_PROC_MEM_ALWAYS_FORCE=y
# CONFIG_PROC_MEM_FORCE_PTRACE is not set
# CONFIG_PROC_MEM_NO_FORCE is not set
CONFIG_SECURITY=y
CONFIG_HAS_SECURITY_AUDIT=y
CONFIG_SECURITYFS=y
CONFIG_SECURITY_NETWORK=y
CONFIG_SECURITY_INFINIBAND=y
CONFIG_SECURITY_NETWORK_XFRM=y
CONFIG_SECURITY_PATH=y
# CONFIG_INTEL_TXT is not set
# CONFIG_STATIC_USERMODEHELPER is not set
# CONFIG_SECURITY_SELINUX is not set
# CONFIG_SECURITY_SMACK is not set
CONFIG_SECURITY_TOMOYO=y
CONFIG_SECURITY_TOMOYO_MAX_ACCEPT_ENTRY=64
CONFIG_SECURITY_TOMOYO_MAX_AUDIT_LOG=32
CONFIG_SECURITY_TOMOYO_OMIT_USERSPACE_LOADER=y
CONFIG_SECURITY_TOMOYO_INSECURE_BUILTIN_SETTING=y
CONFIG_SECURITY_APPARMOR=y
CONFIG_SECURITY_APPARMOR_DEBUG=y
CONFIG_SECURITY_APPARMOR_DEBUG_ASSERTS=y
# CONFIG_SECURITY_APPARMOR_DEBUG_MESSAGES is not set
CONFIG_SECURITY_APPARMOR_INTROSPECT_POLICY=y
CONFIG_SECURITY_APPARMOR_HASH=y
CONFIG_SECURITY_APPARMOR_HASH_DEFAULT=y
# CONFIG_SECURITY_APPARMOR_EXPORT_BINARY is not set
# CONFIG_SECURITY_APPARMOR_PARANOID_LOAD is not set
# CONFIG_SECURITY_LOADPIN is not set
CONFIG_SECURITY_YAMA=y
CONFIG_SECURITY_SAFESETID=y
CONFIG_SECURITY_LOCKDOWN_LSM=y
CONFIG_SECURITY_LOCKDOWN_LSM_EARLY=y
CONFIG_LOCK_DOWN_KERNEL_FORCE_NONE=y
# CONFIG_LOCK_DOWN_KERNEL_FORCE_INTEGRITY is not set
# CONFIG_LOCK_DOWN_KERNEL_FORCE_CONFIDENTIALITY is not set
CONFIG_SECURITY_LANDLOCK=y
# CONFIG_SECURITY_IPE is not set
CONFIG_INTEGRITY=y
CONFIG_INTEGRITY_SIGNATURE=y
CONFIG_INTEGRITY_ASYMMETRIC_KEYS=y
CONFIG_INTEGRITY_TRUSTED_KEYRING=y
CONFIG_INTEGRITY_AUDIT=y
CONFIG_IMA=y
CONFIG_IMA_MEASURE_PCR_IDX=10
CONFIG_IMA_LSM_RULES=y
CONFIG_IMA_NG_TEMPLATE=y
# CONFIG_IMA_SIG_TEMPLATE is not set
CONFIG_IMA_DEFAULT_TEMPLATE="ima-ng"
# CONFIG_IMA_DEFAULT_HASH_SHA1 is not set
CONFIG_IMA_DEFAULT_HASH_SHA256=y
# CONFIG_IMA_DEFAULT_HASH_SHA512 is not set
# CONFIG_IMA_DEFAULT_HASH_WP512 is not set
CONFIG_IMA_DEFAULT_HASH="sha256"
CONFIG_IMA_WRITE_POLICY=y
CONFIG_IMA_READ_POLICY=y
CONFIG_IMA_APPRAISE=y
# CONFIG_IMA_ARCH_POLICY is not set
# CONFIG_IMA_APPRAISE_BUILD_POLICY is not set
# CONFIG_IMA_APPRAISE_BOOTPARAM is not set
CONFIG_IMA_APPRAISE_MODSIG=y
# CONFIG_IMA_KEYRINGS_PERMIT_SIGNED_BY_BUILTIN_OR_SECONDARY is not set
# CONFIG_IMA_BLACKLIST_KEYRING is not set
# CONFIG_IMA_LOAD_X509 is not set
CONFIG_IMA_MEASURE_ASYMMETRIC_KEYS=y
CONFIG_IMA_QUEUE_EARLY_BOOT_KEYS=y
# CONFIG_IMA_DISABLE_HTABLE is not set
CONFIG_EVM=y
CONFIG_EVM_ATTR_FSUUID=y
CONFIG_EVM_ADD_XATTRS=y
# CONFIG_EVM_LOAD_X509 is not set
# CONFIG_DEFAULT_SECURITY_TOMOYO is not set
CONFIG_DEFAULT_SECURITY_APPARMOR=y
# CONFIG_DEFAULT_SECURITY_DAC is not set
CONFIG_LSM="landlock,lockdown,yama,safesetid,integrity,tomoyo,apparmor,bpf"

#
# Kernel hardening options
#

#
# Memory initialization
#
CONFIG_CC_HAS_AUTO_VAR_INIT_PATTERN=y
CONFIG_CC_HAS_AUTO_VAR_INIT_ZERO_BARE=y
CONFIG_CC_HAS_AUTO_VAR_INIT_ZERO=y
# CONFIG_INIT_STACK_NONE is not set
# CONFIG_INIT_STACK_ALL_PATTERN is not set
CONFIG_INIT_STACK_ALL_ZERO=y
CONFIG_INIT_ON_ALLOC_DEFAULT_ON=y
# CONFIG_INIT_ON_FREE_DEFAULT_ON is not set
CONFIG_CC_HAS_ZERO_CALL_USED_REGS=y
# CONFIG_ZERO_CALL_USED_REGS is not set
# end of Memory initialization

#
# Bounds checking
#
CONFIG_FORTIFY_SOURCE=y
CONFIG_HARDENED_USERCOPY=y
# CONFIG_HARDENED_USERCOPY_DEFAULT_ON is not set
# end of Bounds checking

#
# Hardening of kernel data structures
#
CONFIG_LIST_HARDENED=y
CONFIG_BUG_ON_DATA_CORRUPTION=y
# end of Hardening of kernel data structures

CONFIG_CC_HAS_RANDSTRUCT=y
CONFIG_RANDSTRUCT_NONE=y
# CONFIG_RANDSTRUCT_FULL is not set
# end of Kernel hardening options
# end of Security options

CONFIG_XOR_BLOCKS=y
CONFIG_ASYNC_CORE=y
CONFIG_ASYNC_MEMCPY=y
CONFIG_ASYNC_XOR=y
CONFIG_ASYNC_PQ=y
CONFIG_ASYNC_RAID6_RECOV=y
CONFIG_CRYPTO=y

#
# Crypto core or helper
#
CONFIG_CRYPTO_ALGAPI=y
CONFIG_CRYPTO_ALGAPI2=y
CONFIG_CRYPTO_AEAD=y
CONFIG_CRYPTO_AEAD2=y
CONFIG_CRYPTO_SIG=y
CONFIG_CRYPTO_SIG2=y
CONFIG_CRYPTO_SKCIPHER=y
CONFIG_CRYPTO_SKCIPHER2=y
CONFIG_CRYPTO_HASH=y
CONFIG_CRYPTO_HASH2=y
CONFIG_CRYPTO_RNG=y
CONFIG_CRYPTO_RNG2=y
CONFIG_CRYPTO_RNG_DEFAULT=y
CONFIG_CRYPTO_AKCIPHER2=y
CONFIG_CRYPTO_AKCIPHER=y
CONFIG_CRYPTO_KPP2=y
CONFIG_CRYPTO_KPP=y
CONFIG_CRYPTO_ACOMP2=y
CONFIG_CRYPTO_HKDF=y
CONFIG_CRYPTO_MANAGER=y
CONFIG_CRYPTO_MANAGER2=y
CONFIG_CRYPTO_USER=y
# CONFIG_CRYPTO_SELFTESTS is not set
# CONFIG_CRYPTO_NULL is not set
CONFIG_CRYPTO_PCRYPT=y
CONFIG_CRYPTO_CRYPTD=y
CONFIG_CRYPTO_AUTHENC=y
CONFIG_CRYPTO_KRB5ENC=y
# CONFIG_CRYPTO_BENCHMARK is not set
CONFIG_CRYPTO_ENGINE=y
# end of Crypto core or helper

#
# Public-key cryptography
#
CONFIG_CRYPTO_RSA=y
CONFIG_CRYPTO_DH=y
# CONFIG_CRYPTO_DH_RFC7919_GROUPS is not set
CONFIG_CRYPTO_ECC=y
CONFIG_CRYPTO_ECDH=y
CONFIG_CRYPTO_ECDSA=y
CONFIG_CRYPTO_ECRDSA=y
CONFIG_CRYPTO_CURVE25519=y
# end of Public-key cryptography

#
# Block ciphers
#
CONFIG_CRYPTO_AES=y
CONFIG_CRYPTO_AES_TI=y
CONFIG_CRYPTO_ANUBIS=y
CONFIG_CRYPTO_ARIA=y
CONFIG_CRYPTO_BLOWFISH=y
CONFIG_CRYPTO_BLOWFISH_COMMON=y
CONFIG_CRYPTO_CAMELLIA=y
CONFIG_CRYPTO_CAST_COMMON=y
CONFIG_CRYPTO_CAST5=y
CONFIG_CRYPTO_CAST6=y
CONFIG_CRYPTO_DES=y
CONFIG_CRYPTO_FCRYPT=y
CONFIG_CRYPTO_KHAZAD=y
CONFIG_CRYPTO_SEED=y
CONFIG_CRYPTO_SERPENT=y
CONFIG_CRYPTO_SM4=y
CONFIG_CRYPTO_SM4_GENERIC=y
CONFIG_CRYPTO_TEA=y
CONFIG_CRYPTO_TWOFISH=y
CONFIG_CRYPTO_TWOFISH_COMMON=y
# end of Block ciphers

#
# Length-preserving ciphers and modes
#
CONFIG_CRYPTO_ADIANTUM=y
CONFIG_CRYPTO_ARC4=y
CONFIG_CRYPTO_CHACHA20=y
CONFIG_CRYPTO_CBC=y
CONFIG_CRYPTO_CTR=y
CONFIG_CRYPTO_CTS=y
CONFIG_CRYPTO_ECB=y
CONFIG_CRYPTO_HCTR2=y
CONFIG_CRYPTO_LRW=y
CONFIG_CRYPTO_PCBC=y
CONFIG_CRYPTO_XCTR=y
CONFIG_CRYPTO_XTS=y
CONFIG_CRYPTO_NHPOLY1305=y
# end of Length-preserving ciphers and modes

#
# AEAD (authenticated encryption with associated data) ciphers
#
CONFIG_CRYPTO_AEGIS128=y
CONFIG_CRYPTO_CHACHA20POLY1305=y
CONFIG_CRYPTO_CCM=y
CONFIG_CRYPTO_GCM=y
CONFIG_CRYPTO_GENIV=y
CONFIG_CRYPTO_SEQIV=y
CONFIG_CRYPTO_ECHAINIV=y
CONFIG_CRYPTO_ESSIV=y
# end of AEAD (authenticated encryption with associated data) ciphers

#
# Hashes, digests, and MACs
#
CONFIG_CRYPTO_BLAKE2B=y
CONFIG_CRYPTO_CMAC=y
CONFIG_CRYPTO_GHASH=y
CONFIG_CRYPTO_HMAC=y
# CONFIG_CRYPTO_MD4 is not set
CONFIG_CRYPTO_MD5=y
CONFIG_CRYPTO_MICHAEL_MIC=y
CONFIG_CRYPTO_POLYVAL=y
CONFIG_CRYPTO_RMD160=y
CONFIG_CRYPTO_SHA1=y
CONFIG_CRYPTO_SHA256=y
CONFIG_CRYPTO_SHA512=y
CONFIG_CRYPTO_SHA3=y
# CONFIG_CRYPTO_SM3_GENERIC is not set
CONFIG_CRYPTO_STREEBOG=y
CONFIG_CRYPTO_WP512=y
CONFIG_CRYPTO_XCBC=y
CONFIG_CRYPTO_XXHASH=y
# end of Hashes, digests, and MACs

#
# CRCs (cyclic redundancy checks)
#
CONFIG_CRYPTO_CRC32C=y
# CONFIG_CRYPTO_CRC32 is not set
# end of CRCs (cyclic redundancy checks)

#
# Compression
#
CONFIG_CRYPTO_DEFLATE=y
CONFIG_CRYPTO_LZO=y
CONFIG_CRYPTO_842=y
CONFIG_CRYPTO_LZ4=y
CONFIG_CRYPTO_LZ4HC=y
CONFIG_CRYPTO_ZSTD=y
# end of Compression

#
# Random number generation
#
CONFIG_CRYPTO_ANSI_CPRNG=y
CONFIG_CRYPTO_DRBG_MENU=y
CONFIG_CRYPTO_DRBG_HMAC=y
CONFIG_CRYPTO_DRBG_HASH=y
CONFIG_CRYPTO_DRBG_CTR=y
CONFIG_CRYPTO_DRBG=y
CONFIG_CRYPTO_JITTERENTROPY=y
CONFIG_CRYPTO_JITTERENTROPY_MEMORY_BLOCKS=64
CONFIG_CRYPTO_JITTERENTROPY_MEMORY_BLOCKSIZE=32
CONFIG_CRYPTO_JITTERENTROPY_OSR=1
CONFIG_CRYPTO_KDF800108_CTR=y
# end of Random number generation

#
# Userspace interface
#
CONFIG_CRYPTO_USER_API=y
CONFIG_CRYPTO_USER_API_HASH=y
CONFIG_CRYPTO_USER_API_SKCIPHER=y
CONFIG_CRYPTO_USER_API_RNG=y
# CONFIG_CRYPTO_USER_API_RNG_CAVP is not set
CONFIG_CRYPTO_USER_API_AEAD=y
CONFIG_CRYPTO_USER_API_ENABLE_OBSOLETE=y
# end of Userspace interface

#
# Accelerated Cryptographic Algorithms for CPU (x86)
#
CONFIG_CRYPTO_CURVE25519_X86=y
CONFIG_CRYPTO_AES_NI_INTEL=y
CONFIG_CRYPTO_BLOWFISH_X86_64=y
CONFIG_CRYPTO_CAMELLIA_X86_64=y
CONFIG_CRYPTO_CAMELLIA_AESNI_AVX_X86_64=y
CONFIG_CRYPTO_CAMELLIA_AESNI_AVX2_X86_64=y
CONFIG_CRYPTO_CAST5_AVX_X86_64=y
CONFIG_CRYPTO_CAST6_AVX_X86_64=y
CONFIG_CRYPTO_DES3_EDE_X86_64=y
CONFIG_CRYPTO_SERPENT_SSE2_X86_64=y
CONFIG_CRYPTO_SERPENT_AVX_X86_64=y
CONFIG_CRYPTO_SERPENT_AVX2_X86_64=y
CONFIG_CRYPTO_SM4_AESNI_AVX_X86_64=y
CONFIG_CRYPTO_SM4_AESNI_AVX2_X86_64=y
CONFIG_CRYPTO_TWOFISH_X86_64=y
CONFIG_CRYPTO_TWOFISH_X86_64_3WAY=y
CONFIG_CRYPTO_TWOFISH_AVX_X86_64=y
CONFIG_CRYPTO_ARIA_AESNI_AVX_X86_64=y
# CONFIG_CRYPTO_ARIA_AESNI_AVX2_X86_64 is not set
# CONFIG_CRYPTO_ARIA_GFNI_AVX512_X86_64 is not set
CONFIG_CRYPTO_AEGIS128_AESNI_SSE2=y
CONFIG_CRYPTO_NHPOLY1305_SSE2=y
CONFIG_CRYPTO_NHPOLY1305_AVX2=y
CONFIG_CRYPTO_POLYVAL_CLMUL_NI=y
CONFIG_CRYPTO_SM3_AVX_X86_64=y
CONFIG_CRYPTO_GHASH_CLMUL_NI_INTEL=y
# end of Accelerated Cryptographic Algorithms for CPU (x86)

CONFIG_CRYPTO_HW=y
CONFIG_CRYPTO_DEV_PADLOCK=y
CONFIG_CRYPTO_DEV_PADLOCK_AES=y
CONFIG_CRYPTO_DEV_PADLOCK_SHA=y
# CONFIG_CRYPTO_DEV_ATMEL_ECC is not set
# CONFIG_CRYPTO_DEV_ATMEL_SHA204A is not set
CONFIG_CRYPTO_DEV_CCP=y
CONFIG_CRYPTO_DEV_CCP_DD=y
# CONFIG_CRYPTO_DEV_SP_CCP is not set
# CONFIG_CRYPTO_DEV_NITROX_CNN55XX is not set
CONFIG_CRYPTO_DEV_QAT=y
CONFIG_CRYPTO_DEV_QAT_DH895xCC=y
CONFIG_CRYPTO_DEV_QAT_C3XXX=y
CONFIG_CRYPTO_DEV_QAT_C62X=y
# CONFIG_CRYPTO_DEV_QAT_4XXX is not set
# CONFIG_CRYPTO_DEV_QAT_420XX is not set
# CONFIG_CRYPTO_DEV_QAT_6XXX is not set
CONFIG_CRYPTO_DEV_QAT_DH895xCCVF=y
CONFIG_CRYPTO_DEV_QAT_C3XXXVF=y
CONFIG_CRYPTO_DEV_QAT_C62XVF=y
# CONFIG_CRYPTO_DEV_QAT_ERROR_INJECTION is not set
CONFIG_CRYPTO_DEV_VIRTIO=y
# CONFIG_CRYPTO_DEV_SAFEXCEL is not set
# CONFIG_CRYPTO_DEV_CCREE is not set
# CONFIG_CRYPTO_DEV_AMLOGIC_GXL is not set
CONFIG_ASYMMETRIC_KEY_TYPE=y
CONFIG_ASYMMETRIC_PUBLIC_KEY_SUBTYPE=y
CONFIG_X509_CERTIFICATE_PARSER=y
CONFIG_PKCS8_PRIVATE_KEY_PARSER=y
CONFIG_PKCS7_MESSAGE_PARSER=y
CONFIG_PKCS7_TEST_KEY=y
CONFIG_SIGNED_PE_FILE_VERIFICATION=y
# CONFIG_FIPS_SIGNATURE_SELFTEST is not set

#
# Certificates for signature checking
#
CONFIG_MODULE_SIG_KEY="certs/signing_key.pem"
# CONFIG_MODULE_SIG_KEY_TYPE_RSA is not set
CONFIG_MODULE_SIG_KEY_TYPE_ECDSA=y
CONFIG_SYSTEM_TRUSTED_KEYRING=y
CONFIG_SYSTEM_TRUSTED_KEYS=""
# CONFIG_SYSTEM_EXTRA_CERTIFICATE is not set
CONFIG_SECONDARY_TRUSTED_KEYRING=y
# CONFIG_SECONDARY_TRUSTED_KEYRING_SIGNED_BY_BUILTIN is not set
# CONFIG_SYSTEM_BLACKLIST_KEYRING is not set
# end of Certificates for signature checking

CONFIG_CRYPTO_KRB5=y
# CONFIG_CRYPTO_KRB5_SELFTESTS is not set
CONFIG_BINARY_PRINTF=y

#
# Library routines
#
CONFIG_RAID6_PQ=y
# CONFIG_RAID6_PQ_BENCHMARK is not set
CONFIG_LINEAR_RANGES=y
# CONFIG_PACKING is not set
CONFIG_BITREVERSE=y
CONFIG_GENERIC_STRNCPY_FROM_USER=y
CONFIG_GENERIC_STRNLEN_USER=y
CONFIG_GENERIC_NET_UTILS=y
# CONFIG_CORDIC is not set
# CONFIG_PRIME_NUMBERS is not set
CONFIG_RATIONAL=y
CONFIG_GENERIC_IOMAP=y
CONFIG_ARCH_USE_CMPXCHG_LOCKREF=y
CONFIG_ARCH_HAS_FAST_MULTIPLIER=y
CONFIG_ARCH_USE_SYM_ANNOTATIONS=y
CONFIG_CRC8=y
CONFIG_CRC16=y
CONFIG_CRC_CCITT=y
CONFIG_CRC_ITU_T=y
CONFIG_CRC_T10DIF=y
CONFIG_CRC_T10DIF_ARCH=y
CONFIG_CRC32=y
CONFIG_CRC32_ARCH=y
CONFIG_CRC64=y
CONFIG_CRC64_ARCH=y
CONFIG_CRC_OPTIMIZATIONS=y

#
# Crypto library routines
#
CONFIG_CRYPTO_HASH_INFO=y
CONFIG_CRYPTO_LIB_UTILS=y
CONFIG_CRYPTO_LIB_AES=y
CONFIG_CRYPTO_LIB_ARC4=y
CONFIG_CRYPTO_LIB_GF128MUL=y
CONFIG_CRYPTO_ARCH_HAVE_LIB_BLAKE2S=y
CONFIG_CRYPTO_LIB_BLAKE2S_GENERIC=y
CONFIG_CRYPTO_ARCH_HAVE_LIB_CHACHA=y
CONFIG_CRYPTO_LIB_CHACHA_GENERIC=y
CONFIG_CRYPTO_LIB_CHACHA=y
CONFIG_CRYPTO_ARCH_HAVE_LIB_CURVE25519=y
CONFIG_CRYPTO_LIB_CURVE25519_GENERIC=y
CONFIG_CRYPTO_LIB_CURVE25519_INTERNAL=y
CONFIG_CRYPTO_LIB_CURVE25519=y
CONFIG_CRYPTO_LIB_DES=y
CONFIG_CRYPTO_LIB_POLY1305_RSIZE=11
CONFIG_CRYPTO_ARCH_HAVE_LIB_POLY1305=y
CONFIG_CRYPTO_LIB_POLY1305_GENERIC=y
CONFIG_CRYPTO_LIB_POLY1305=y
CONFIG_CRYPTO_LIB_CHACHA20POLY1305=y
CONFIG_CRYPTO_LIB_SHA1=y
CONFIG_CRYPTO_LIB_SHA1_ARCH=y
CONFIG_CRYPTO_LIB_SHA256=y
CONFIG_CRYPTO_LIB_SHA256_ARCH=y
CONFIG_CRYPTO_LIB_SHA512=y
CONFIG_CRYPTO_LIB_SHA512_ARCH=y
CONFIG_CRYPTO_LIB_SM3=y
CONFIG_CRYPTO_BLAKE2S_X86=y
CONFIG_CRYPTO_CHACHA20_X86_64=y
CONFIG_CRYPTO_POLY1305_X86_64=y
# end of Crypto library routines

CONFIG_XXHASH=y
# CONFIG_RANDOM32_SELFTEST is not set
CONFIG_842_COMPRESS=y
CONFIG_842_DECOMPRESS=y
CONFIG_ZLIB_INFLATE=y
CONFIG_ZLIB_DEFLATE=y
CONFIG_LZO_COMPRESS=y
CONFIG_LZO_DECOMPRESS=y
CONFIG_LZ4_COMPRESS=y
CONFIG_LZ4HC_COMPRESS=y
CONFIG_LZ4_DECOMPRESS=y
CONFIG_ZSTD_COMMON=y
CONFIG_ZSTD_COMPRESS=y
CONFIG_ZSTD_DECOMPRESS=y
CONFIG_XZ_DEC=y
CONFIG_XZ_DEC_X86=y
CONFIG_XZ_DEC_POWERPC=y
CONFIG_XZ_DEC_ARM=y
CONFIG_XZ_DEC_ARMTHUMB=y
CONFIG_XZ_DEC_ARM64=y
CONFIG_XZ_DEC_SPARC=y
CONFIG_XZ_DEC_RISCV=y
# CONFIG_XZ_DEC_MICROLZMA is not set
CONFIG_XZ_DEC_BCJ=y
# CONFIG_XZ_DEC_TEST is not set
CONFIG_DECOMPRESS_GZIP=y
CONFIG_DECOMPRESS_BZIP2=y
CONFIG_DECOMPRESS_LZMA=y
CONFIG_DECOMPRESS_XZ=y
CONFIG_DECOMPRESS_LZO=y
CONFIG_DECOMPRESS_LZ4=y
CONFIG_DECOMPRESS_ZSTD=y
CONFIG_GENERIC_ALLOCATOR=y
CONFIG_REED_SOLOMON=y
CONFIG_REED_SOLOMON_DEC8=y
CONFIG_TEXTSEARCH=y
CONFIG_TEXTSEARCH_KMP=y
CONFIG_TEXTSEARCH_BM=y
CONFIG_TEXTSEARCH_FSM=y
CONFIG_INTERVAL_TREE=y
CONFIG_INTERVAL_TREE_SPAN_ITER=y
CONFIG_XARRAY_MULTI=y
CONFIG_ASSOCIATIVE_ARRAY=y
CONFIG_CLOSURES=y
CONFIG_HAS_IOMEM=y
CONFIG_HAS_IOPORT=y
CONFIG_HAS_IOPORT_MAP=y
CONFIG_HAS_DMA=y
CONFIG_DMA_OPS_HELPERS=y
CONFIG_NEED_SG_DMA_FLAGS=y
CONFIG_NEED_SG_DMA_LENGTH=y
CONFIG_NEED_DMA_MAP_STATE=y
CONFIG_ARCH_DMA_ADDR_T_64BIT=y
CONFIG_DMA_DECLARE_COHERENT=y
CONFIG_SWIOTLB=y
# CONFIG_SWIOTLB_DYNAMIC is not set
CONFIG_DMA_NEED_SYNC=y
# CONFIG_DMA_RESTRICTED_POOL is not set
CONFIG_DMA_CMA=y
# CONFIG_DMA_NUMA_CMA is not set

#
# Default contiguous memory area size:
#
CONFIG_CMA_SIZE_MBYTES=0
CONFIG_CMA_SIZE_PERCENTAGE=0
# CONFIG_CMA_SIZE_SEL_MBYTES is not set
# CONFIG_CMA_SIZE_SEL_PERCENTAGE is not set
# CONFIG_CMA_SIZE_SEL_MIN is not set
CONFIG_CMA_SIZE_SEL_MAX=y
CONFIG_CMA_ALIGNMENT=8
# CONFIG_DMA_API_DEBUG is not set
# CONFIG_DMA_MAP_BENCHMARK is not set
CONFIG_SGL_ALLOC=y
CONFIG_CHECK_SIGNATURE=y
# CONFIG_CPUMASK_OFFSTACK is not set
CONFIG_CPU_RMAP=y
CONFIG_DQL=y
CONFIG_GLOB=y
# CONFIG_GLOB_SELFTEST is not set
CONFIG_NLATTR=y
CONFIG_CLZ_TAB=y
CONFIG_IRQ_POLL=y
CONFIG_MPILIB=y
CONFIG_SIGNATURE=y
CONFIG_DIMLIB=y
CONFIG_LIBFDT=y
CONFIG_OID_REGISTRY=y
CONFIG_HAVE_GENERIC_VDSO=y
CONFIG_GENERIC_GETTIMEOFDAY=y
CONFIG_GENERIC_VDSO_TIME_NS=y
CONFIG_GENERIC_VDSO_OVERFLOW_PROTECT=y
CONFIG_VDSO_GETRANDOM=y
CONFIG_GENERIC_VDSO_DATA_STORE=y
CONFIG_FONT_SUPPORT=y
# CONFIG_FONTS is not set
CONFIG_FONT_8x8=y
CONFIG_FONT_8x16=y
CONFIG_SG_POOL=y
CONFIG_ARCH_HAS_PMEM_API=y
CONFIG_MEMREGION=y
CONFIG_ARCH_HAS_CPU_CACHE_INVALIDATE_MEMREGION=y
CONFIG_ARCH_HAS_UACCESS_FLUSHCACHE=y
CONFIG_ARCH_HAS_COPY_MC=y
CONFIG_ARCH_STACKWALK=y
CONFIG_STACKDEPOT=y
CONFIG_STACKDEPOT_ALWAYS_INIT=y
CONFIG_STACKDEPOT_MAX_FRAMES=64
CONFIG_REF_TRACKER=y
CONFIG_SBITMAP=y
# CONFIG_LWQ_TEST is not set
# end of Library routines

CONFIG_FIRMWARE_TABLE=y
CONFIG_UNION_FIND=y
CONFIG_MIN_HEAP=y

#
# Kernel hacking
#

#
# printk and dmesg options
#
CONFIG_PRINTK_TIME=y
CONFIG_PRINTK_CALLER=y
# CONFIG_STACKTRACE_BUILD_ID is not set
CONFIG_CONSOLE_LOGLEVEL_DEFAULT=7
CONFIG_CONSOLE_LOGLEVEL_QUIET=4
CONFIG_MESSAGE_LOGLEVEL_DEFAULT=4
# CONFIG_BOOT_PRINTK_DELAY is not set
CONFIG_DYNAMIC_DEBUG=y
CONFIG_DYNAMIC_DEBUG_CORE=y
CONFIG_SYMBOLIC_ERRNAME=y
CONFIG_DEBUG_BUGVERBOSE=y
# end of printk and dmesg options

CONFIG_DEBUG_KERNEL=y
CONFIG_DEBUG_MISC=y

#
# Compile-time checks and compiler options
#
CONFIG_DEBUG_INFO=y
CONFIG_AS_HAS_NON_CONST_ULEB128=y
# CONFIG_DEBUG_INFO_NONE is not set
# CONFIG_DEBUG_INFO_DWARF_TOOLCHAIN_DEFAULT is not set
CONFIG_DEBUG_INFO_DWARF4=y
# CONFIG_DEBUG_INFO_DWARF5 is not set
# CONFIG_DEBUG_INFO_REDUCED is not set
CONFIG_DEBUG_INFO_COMPRESSED_NONE=y
# CONFIG_DEBUG_INFO_COMPRESSED_ZLIB is not set
# CONFIG_DEBUG_INFO_COMPRESSED_ZSTD is not set
# CONFIG_DEBUG_INFO_SPLIT is not set
# CONFIG_DEBUG_INFO_BTF is not set
CONFIG_PAHOLE_HAS_SPLIT_BTF=y
CONFIG_PAHOLE_HAS_BTF_TAG=y
CONFIG_PAHOLE_HAS_LANG_EXCLUDE=y
# CONFIG_GDB_SCRIPTS is not set
CONFIG_FRAME_WARN=2048
# CONFIG_STRIP_ASM_SYMS is not set
# CONFIG_HEADERS_INSTALL is not set
CONFIG_SECTION_MISMATCH_WARN_ONLY=y
# CONFIG_DEBUG_FORCE_FUNCTION_ALIGN_64B is not set
CONFIG_OBJTOOL=y
# CONFIG_OBJTOOL_WERROR is not set
CONFIG_NOINSTR_VALIDATION=y
# CONFIG_VMLINUX_MAP is not set
# CONFIG_DEBUG_FORCE_WEAK_PER_CPU is not set
# end of Compile-time checks and compiler options

#
# Generic Kernel Debugging Instruments
#
# CONFIG_MAGIC_SYSRQ is not set
CONFIG_DEBUG_FS=y
CONFIG_DEBUG_FS_ALLOW_ALL=y
# CONFIG_DEBUG_FS_DISALLOW_MOUNT is not set
# CONFIG_DEBUG_FS_ALLOW_NONE is not set
CONFIG_HAVE_ARCH_KGDB=y
# CONFIG_KGDB is not set
CONFIG_ARCH_HAS_UBSAN=y
CONFIG_UBSAN=y
# CONFIG_UBSAN_TRAP is not set
CONFIG_CC_HAS_UBSAN_ARRAY_BOUNDS=y
CONFIG_UBSAN_BOUNDS=y
CONFIG_UBSAN_ARRAY_BOUNDS=y
CONFIG_UBSAN_SHIFT=y
# CONFIG_UBSAN_BOOL is not set
# CONFIG_UBSAN_ENUM is not set
# CONFIG_UBSAN_ALIGNMENT is not set
# CONFIG_TEST_UBSAN is not set
CONFIG_HAVE_ARCH_KCSAN=y
CONFIG_HAVE_KCSAN_COMPILER=y
# end of Generic Kernel Debugging Instruments

#
# Networking Debugging
#
CONFIG_NET_DEV_REFCNT_TRACKER=y
CONFIG_NET_NS_REFCNT_TRACKER=y
CONFIG_DEBUG_NET=y
# CONFIG_DEBUG_NET_SMALL_RTNL is not set
# end of Networking Debugging

#
# Memory Debugging
#
CONFIG_PAGE_EXTENSION=y
# CONFIG_DEBUG_PAGEALLOC is not set
CONFIG_SLUB_DEBUG=y
# CONFIG_SLUB_DEBUG_ON is not set
CONFIG_SLUB_RCU_DEBUG=y
CONFIG_PAGE_OWNER=y
CONFIG_PAGE_TABLE_CHECK=y
CONFIG_PAGE_TABLE_CHECK_ENFORCED=y
CONFIG_PAGE_POISONING=y
# CONFIG_DEBUG_PAGE_REF is not set
# CONFIG_DEBUG_RODATA_TEST is not set
CONFIG_ARCH_HAS_DEBUG_WX=y
CONFIG_DEBUG_WX=y
CONFIG_ARCH_HAS_PTDUMP=y
CONFIG_PTDUMP=y
CONFIG_PTDUMP_DEBUGFS=y
CONFIG_HAVE_DEBUG_KMEMLEAK=y
# CONFIG_DEBUG_KMEMLEAK is not set
# CONFIG_PER_VMA_LOCK_STATS is not set
CONFIG_DEBUG_OBJECTS=y
# CONFIG_DEBUG_OBJECTS_SELFTEST is not set
CONFIG_DEBUG_OBJECTS_FREE=y
CONFIG_DEBUG_OBJECTS_TIMERS=y
CONFIG_DEBUG_OBJECTS_WORK=y
CONFIG_DEBUG_OBJECTS_RCU_HEAD=y
CONFIG_DEBUG_OBJECTS_PERCPU_COUNTER=y
CONFIG_DEBUG_OBJECTS_ENABLE_DEFAULT=1
# CONFIG_SHRINKER_DEBUG is not set
CONFIG_DEBUG_STACK_USAGE=y
CONFIG_SCHED_STACK_END_CHECK=y
CONFIG_ARCH_HAS_DEBUG_VM_PGTABLE=y
CONFIG_DEBUG_VFS=y
CONFIG_DEBUG_VM_IRQSOFF=y
CONFIG_DEBUG_VM=y
CONFIG_DEBUG_VM_MAPLE_TREE=y
CONFIG_DEBUG_VM_RB=y
CONFIG_DEBUG_VM_PGFLAGS=y
CONFIG_DEBUG_VM_PGTABLE=y
CONFIG_ARCH_HAS_DEBUG_VIRTUAL=y
CONFIG_DEBUG_VIRTUAL=y
CONFIG_DEBUG_MEMORY_INIT=y
CONFIG_DEBUG_PER_CPU_MAPS=y
CONFIG_DEBUG_KMAP_LOCAL=y
CONFIG_ARCH_SUPPORTS_KMAP_LOCAL_FORCE_MAP=y
CONFIG_DEBUG_KMAP_LOCAL_FORCE_MAP=y
# CONFIG_MEM_ALLOC_PROFILING is not set
CONFIG_HAVE_ARCH_KASAN=y
CONFIG_HAVE_ARCH_KASAN_VMALLOC=y
CONFIG_CC_HAS_KASAN_GENERIC=y
CONFIG_CC_HAS_KASAN_SW_TAGS=y
CONFIG_CC_HAS_WORKING_NOSANITIZE_ADDRESS=y
CONFIG_KASAN=y
CONFIG_CC_HAS_KASAN_MEMINTRINSIC_PREFIX=y
CONFIG_KASAN_GENERIC=y
# CONFIG_KASAN_OUTLINE is not set
CONFIG_KASAN_INLINE=y
CONFIG_KASAN_STACK=y
CONFIG_KASAN_VMALLOC=y
# CONFIG_KASAN_EXTRA_INFO is not set
CONFIG_HAVE_ARCH_KFENCE=y
CONFIG_KFENCE=y
CONFIG_KFENCE_SAMPLE_INTERVAL=100
CONFIG_KFENCE_NUM_OBJECTS=255
# CONFIG_KFENCE_DEFERRABLE is not set
CONFIG_KFENCE_STATIC_KEYS=y
CONFIG_KFENCE_STRESS_TEST_FAULTS=0
CONFIG_HAVE_ARCH_KMSAN=y
CONFIG_HAVE_KMSAN_COMPILER=y
# end of Memory Debugging

# CONFIG_DEBUG_SHIRQ is not set

#
# Debug Oops, Lockups and Hangs
#
CONFIG_PANIC_ON_OOPS=y
CONFIG_PANIC_ON_OOPS_VALUE=1
CONFIG_PANIC_TIMEOUT=86400
CONFIG_LOCKUP_DETECTOR=y
CONFIG_SOFTLOCKUP_DETECTOR=y
# CONFIG_SOFTLOCKUP_DETECTOR_INTR_STORM is not set
CONFIG_BOOTPARAM_SOFTLOCKUP_PANIC=y
CONFIG_HAVE_HARDLOCKUP_DETECTOR_BUDDY=y
CONFIG_HARDLOCKUP_DETECTOR=y
# CONFIG_HARDLOCKUP_DETECTOR_PREFER_BUDDY is not set
CONFIG_HARDLOCKUP_DETECTOR_PERF=y
# CONFIG_HARDLOCKUP_DETECTOR_BUDDY is not set
# CONFIG_HARDLOCKUP_DETECTOR_ARCH is not set
CONFIG_HARDLOCKUP_DETECTOR_COUNTS_HRTIMER=y
CONFIG_HARDLOCKUP_CHECK_TIMESTAMP=y
CONFIG_BOOTPARAM_HARDLOCKUP_PANIC=y
CONFIG_DETECT_HUNG_TASK=y
CONFIG_DEFAULT_HUNG_TASK_TIMEOUT=140
CONFIG_BOOTPARAM_HUNG_TASK_PANIC=y
# CONFIG_DETECT_HUNG_TASK_BLOCKER is not set
CONFIG_WQ_WATCHDOG=y
# CONFIG_WQ_CPU_INTENSIVE_REPORT is not set
# CONFIG_TEST_LOCKUP is not set
# end of Debug Oops, Lockups and Hangs

#
# Scheduler Debugging
#
CONFIG_SCHED_INFO=y
CONFIG_SCHEDSTATS=y
# end of Scheduler Debugging

CONFIG_DEBUG_PREEMPT=y

#
# Lock Debugging (spinlocks, mutexes, etc...)
#
CONFIG_LOCK_DEBUGGING_SUPPORT=y
CONFIG_PROVE_LOCKING=y
CONFIG_PROVE_RAW_LOCK_NESTING=y
# CONFIG_LOCK_STAT is not set
CONFIG_DEBUG_RT_MUTEXES=y
CONFIG_DEBUG_SPINLOCK=y
CONFIG_DEBUG_MUTEXES=y
CONFIG_DEBUG_WW_MUTEX_SLOWPATH=y
CONFIG_DEBUG_RWSEMS=y
CONFIG_DEBUG_LOCK_ALLOC=y
CONFIG_LOCKDEP=y
CONFIG_LOCKDEP_BITS=20
CONFIG_LOCKDEP_CHAINS_BITS=20
CONFIG_LOCKDEP_STACK_TRACE_BITS=20
CONFIG_LOCKDEP_STACK_TRACE_HASH_BITS=14
CONFIG_LOCKDEP_CIRCULAR_QUEUE_BITS=12
# CONFIG_DEBUG_LOCKDEP is not set
CONFIG_DEBUG_ATOMIC_SLEEP=y
# CONFIG_DEBUG_LOCKING_API_SELFTESTS is not set
# CONFIG_LOCK_TORTURE_TEST is not set
# CONFIG_WW_MUTEX_SELFTEST is not set
# CONFIG_SCF_TORTURE_TEST is not set
CONFIG_CSD_LOCK_WAIT_DEBUG=y
# CONFIG_CSD_LOCK_WAIT_DEBUG_DEFAULT is not set
# end of Lock Debugging (spinlocks, mutexes, etc...)

CONFIG_TRACE_IRQFLAGS=y
CONFIG_TRACE_IRQFLAGS_NMI=y
CONFIG_NMI_CHECK_CPU=y
CONFIG_DEBUG_IRQFLAGS=y
CONFIG_STACKTRACE=y
# CONFIG_WARN_ALL_UNSEEDED_RANDOM is not set
# CONFIG_DEBUG_KOBJECT is not set
# CONFIG_DEBUG_KOBJECT_RELEASE is not set

#
# Debug kernel data structures
#
CONFIG_DEBUG_LIST=y
CONFIG_DEBUG_PLIST=y
CONFIG_DEBUG_SG=y
CONFIG_DEBUG_NOTIFIERS=y
# CONFIG_DEBUG_CLOSURES is not set
CONFIG_DEBUG_MAPLE_TREE=y
# end of Debug kernel data structures

#
# RCU Debugging
#
CONFIG_PROVE_RCU=y
# CONFIG_RCU_SCALE_TEST is not set
# CONFIG_RCU_TORTURE_TEST is not set
# CONFIG_RCU_REF_SCALE_TEST is not set
CONFIG_RCU_CPU_STALL_TIMEOUT=100
CONFIG_RCU_EXP_CPU_STALL_TIMEOUT=0
# CONFIG_RCU_CPU_STALL_CPUTIME is not set
# CONFIG_RCU_TRACE is not set
CONFIG_RCU_EQS_DEBUG=y
# end of RCU Debugging

# CONFIG_DEBUG_WQ_FORCE_RR_CPU is not set
# CONFIG_CPU_HOTPLUG_STATE_CONTROL is not set
# CONFIG_LATENCYTOP is not set
CONFIG_USER_STACKTRACE_SUPPORT=y
CONFIG_NOP_TRACER=y
CONFIG_HAVE_RETHOOK=y
CONFIG_HAVE_FUNCTION_TRACER=y
CONFIG_HAVE_DYNAMIC_FTRACE=y
CONFIG_HAVE_DYNAMIC_FTRACE_WITH_REGS=y
CONFIG_HAVE_DYNAMIC_FTRACE_WITH_DIRECT_CALLS=y
CONFIG_HAVE_DYNAMIC_FTRACE_WITH_ARGS=y
CONFIG_HAVE_FTRACE_REGS_HAVING_PT_REGS=y
CONFIG_HAVE_DYNAMIC_FTRACE_NO_PATCHABLE=y
CONFIG_HAVE_SYSCALL_TRACEPOINTS=y
CONFIG_HAVE_FENTRY=y
CONFIG_HAVE_OBJTOOL_MCOUNT=y
CONFIG_HAVE_OBJTOOL_NOP_MCOUNT=y
CONFIG_HAVE_C_RECORDMCOUNT=y
CONFIG_HAVE_BUILDTIME_MCOUNT_SORT=y
CONFIG_TRACE_CLOCK=y
CONFIG_RING_BUFFER=y
CONFIG_EVENT_TRACING=y
CONFIG_CONTEXT_SWITCH_TRACER=y
CONFIG_PREEMPTIRQ_TRACEPOINTS=y
CONFIG_TRACING=y
CONFIG_GENERIC_TRACER=y
CONFIG_TRACING_SUPPORT=y
CONFIG_FTRACE=y
CONFIG_TRACEFS_AUTOMOUNT_DEPRECATED=y
# CONFIG_BOOTTIME_TRACING is not set
# CONFIG_FUNCTION_TRACER is not set
# CONFIG_STACK_TRACER is not set
# CONFIG_IRQSOFF_TRACER is not set
# CONFIG_PREEMPT_TRACER is not set
# CONFIG_SCHED_TRACER is not set
# CONFIG_HWLAT_TRACER is not set
# CONFIG_OSNOISE_TRACER is not set
# CONFIG_TIMERLAT_TRACER is not set
# CONFIG_MMIOTRACE is not set
# CONFIG_FTRACE_SYSCALLS is not set
# CONFIG_TRACER_SNAPSHOT is not set
CONFIG_BRANCH_PROFILE_NONE=y
# CONFIG_PROFILE_ANNOTATED_BRANCHES is not set
CONFIG_BLK_DEV_IO_TRACE=y
CONFIG_UPROBE_EVENTS=y
CONFIG_EPROBE_EVENTS=y
CONFIG_BPF_EVENTS=y
CONFIG_DYNAMIC_EVENTS=y
CONFIG_PROBE_EVENTS=y
# CONFIG_SYNTH_EVENTS is not set
# CONFIG_USER_EVENTS is not set
# CONFIG_HIST_TRIGGERS is not set
CONFIG_TRACE_EVENT_INJECT=y
# CONFIG_TRACEPOINT_BENCHMARK is not set
# CONFIG_RING_BUFFER_BENCHMARK is not set
# CONFIG_TRACE_EVAL_MAP_FILE is not set
# CONFIG_FTRACE_STARTUP_TEST is not set
# CONFIG_RING_BUFFER_STARTUP_TEST is not set
CONFIG_RING_BUFFER_VALIDATE_TIME_DELTAS=y
# CONFIG_PREEMPTIRQ_DELAY_TEST is not set
# CONFIG_RV is not set
CONFIG_PROVIDE_OHCI1394_DMA_INIT=y
# CONFIG_SAMPLES is not set
CONFIG_HAVE_SAMPLE_FTRACE_DIRECT=y
CONFIG_HAVE_SAMPLE_FTRACE_DIRECT_MULTI=y
CONFIG_ARCH_HAS_DEVMEM_IS_ALLOWED=y
# CONFIG_STRICT_DEVMEM is not set

#
# x86 Debugging
#
CONFIG_EARLY_PRINTK_USB=y
CONFIG_X86_VERBOSE_BOOTUP=y
CONFIG_EARLY_PRINTK=y
CONFIG_EARLY_PRINTK_DBGP=y
# CONFIG_EARLY_PRINTK_USB_XDBC is not set
# CONFIG_DEBUG_TLBFLUSH is not set
CONFIG_HAVE_MMIOTRACE_SUPPORT=y
# CONFIG_X86_DECODER_SELFTEST is not set
CONFIG_IO_DELAY_0X80=y
# CONFIG_IO_DELAY_0XED is not set
# CONFIG_IO_DELAY_UDELAY is not set
# CONFIG_IO_DELAY_NONE is not set
CONFIG_DEBUG_BOOT_PARAMS=y
# CONFIG_CPA_DEBUG is not set
CONFIG_DEBUG_ENTRY=y
# CONFIG_DEBUG_NMI_SELFTEST is not set
CONFIG_X86_DEBUG_FPU=y
# CONFIG_PUNIT_ATOM_DEBUG is not set
CONFIG_UNWINDER_ORC=y
# CONFIG_UNWINDER_FRAME_POINTER is not set
# end of x86 Debugging

#
# Kernel Testing and Coverage
#
# CONFIG_KUNIT is not set
# CONFIG_NOTIFIER_ERROR_INJECTION is not set
CONFIG_FAULT_INJECTION=y
CONFIG_FAILSLAB=y
CONFIG_FAIL_PAGE_ALLOC=y
CONFIG_FAULT_INJECTION_USERCOPY=y
CONFIG_FAIL_MAKE_REQUEST=y
CONFIG_FAIL_IO_TIMEOUT=y
CONFIG_FAIL_FUTEX=y
CONFIG_FAULT_INJECTION_DEBUG_FS=y
# CONFIG_FAIL_MMC_REQUEST is not set
# CONFIG_FAIL_SKB_REALLOC is not set
CONFIG_FAULT_INJECTION_CONFIGFS=y
# CONFIG_FAULT_INJECTION_STACKTRACE_FILTER is not set
CONFIG_ARCH_HAS_KCOV=y
CONFIG_KCOV=y
CONFIG_KCOV_ENABLE_COMPARISONS=y
CONFIG_KCOV_INSTRUMENT_ALL=y
CONFIG_KCOV_IRQ_AREA_SIZE=0x40000
# CONFIG_KCOV_SELFTEST is not set
CONFIG_RUNTIME_TESTING_MENU=y
# CONFIG_TEST_DHRY is not set
# CONFIG_LKDTM is not set
# CONFIG_TEST_MIN_HEAP is not set
# CONFIG_TEST_DIV64 is not set
# CONFIG_TEST_MULDIV64 is not set
# CONFIG_BACKTRACE_SELF_TEST is not set
# CONFIG_TEST_REF_TRACKER is not set
# CONFIG_RBTREE_TEST is not set
# CONFIG_REED_SOLOMON_TEST is not set
# CONFIG_INTERVAL_TREE_TEST is not set
# CONFIG_PERCPU_TEST is not set
# CONFIG_ATOMIC64_SELFTEST is not set
# CONFIG_ASYNC_RAID6_TEST is not set
# CONFIG_TEST_HEXDUMP is not set
# CONFIG_TEST_KSTRTOX is not set
# CONFIG_TEST_BITMAP is not set
# CONFIG_TEST_UUID is not set
# CONFIG_TEST_XARRAY is not set
# CONFIG_TEST_MAPLE_TREE is not set
# CONFIG_TEST_RHASHTABLE is not set
# CONFIG_TEST_IDA is not set
# CONFIG_TEST_LKM is not set
# CONFIG_TEST_BITOPS is not set
# CONFIG_TEST_VMALLOC is not set
# CONFIG_TEST_BPF is not set
# CONFIG_FIND_BIT_BENCHMARK is not set
# CONFIG_TEST_FIRMWARE is not set
# CONFIG_TEST_SYSCTL is not set
# CONFIG_TEST_UDELAY is not set
# CONFIG_TEST_STATIC_KEYS is not set
# CONFIG_TEST_DYNAMIC_DEBUG is not set
# CONFIG_TEST_KMOD is not set
# CONFIG_TEST_KALLSYMS is not set
# CONFIG_TEST_DEBUG_VIRTUAL is not set
# CONFIG_TEST_MEMCAT_P is not set
# CONFIG_TEST_MEMINIT is not set
# CONFIG_TEST_HMM is not set
# CONFIG_TEST_FREE_PAGES is not set
# CONFIG_TEST_CLOCKSOURCE_WATCHDOG is not set
# CONFIG_TEST_OBJPOOL is not set
CONFIG_ARCH_USE_MEMTEST=y
# CONFIG_MEMTEST is not set
# end of Kernel Testing and Coverage

#
# Rust hacking
#
# end of Rust hacking
# end of Kernel hacking

CONFIG_IO_URING_ZCRX=y
KernelRepo git://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
ReproCID 0
ReproOpts
Show (304 bytes)
{"threaded":true,"repeat":true,"procs":1,"slowdown":1,"sandbox":"none","sandbox_arg":0,"tun":true,"netdev":true,"resetnet":true,"cgroups":true,"binfmt_misc":true,"close_fds":true,"usb":true,"vhci":true,"wifi":true,"ieee802154":true,"sysctl":true,"swap":true,"tmpdir":true,"segv":true,"callcomments":true}
ReproSyzID 5797022088560640
SyzkallerCommit e12e5ba469cd05aa76330394486b1f2a24dd4ef6

Outputs:
DenialOfService ❌
Exploitable ❌
FilesystemTrigger ❌
NetworkTrigger ❌
PeripheralTrigger ❌
RemoteTrigger ❌
Unprivileged ❌
UserNamespace ❌
VMGuestTrigger ❌
VMHostTrigger ❌
Explanation
The provided bug report is not a Linux kernel vulnerability. The crash occurred
in the user-space `syzkaller` process (written in Go) due to a `SIGFPE`
(floating-point exception) signal.

The C reproducer loads an eBPF program and attaches it to the `mm_page_alloc`
raw tracepoint. The eBPF program consists of the following instructions:
```
18 01 00 00 08 00 00 00 00 00 00 00 00 00 ea 04 -> r1 = 8
85 00 00 00 6d 00 00 00                         -> call bpf_send_signal (109)
95                                              -> exit
```
This eBPF program simply calls the `bpf_send_signal(8)` helper function, which
sends a `SIGFPE` (signal 8) to the current process. Since the program is
attached to the global `mm_page_alloc` tracepoint, any process that allocates a
memory page will trigger the tracepoint and receive a `SIGFPE`. In this case,
the `syzkaller` process itself allocated memory, triggered the tracepoint,
received the `SIGFPE`, and crashed.

This is not a bug in the Linux kernel. The kernel is correctly executing the
loaded eBPF program and sending the requested signal.

Furthermore, loading a `BPF_PROG_TYPE_RAW_TRACEPOINT` program and using the
`bpf_send_signal` helper function both require the `CAP_PERFMON` (or
`CAP_SYS_ADMIN`) capability. Therefore, an unprivileged user cannot load this
program or trigger this behavior.

All analysis dimensions are set to false as this is an intentional behavior of a
privileged eBPF program and not a kernel vulnerability.

Crash report:
2025/08/27 17:28:43 executed programs: 1802
panic: runtime error: floating point error
[signal SIGFPE: floating-point exception code=0x80 addr=0x0 pc=0xf1b066]

goroutine 11 [running]:
encoding/binary.AppendUvarint(...)
	/usr/local/go/src/encoding/binary/varint.go:46
encoding/binary.AppendVarint(...)
	/usr/local/go/src/encoding/binary/varint.go:96
github.com/google/syzkaller/prog.(*execContext).write(...)
	/syzkaller/gopath/src/github.com/google/syzkaller/prog/encodingexec.go:254
github.com/google/syzkaller/prog.(*Prog).SerializeForExec(0xc000ac3d80)
	/syzkaller/gopath/src/github.com/google/syzkaller/prog/encodingexec.go:75 +0x146
github.com/google/syzkaller/pkg/rpcserver.(*Runner).sendRequest(0xc0025b4c00, 0xc00873fd40)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/runner.go:297 +0x22b
github.com/google/syzkaller/pkg/rpcserver.(*Runner).ConnectionLoop(0xc0025b4c00)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/runner.go:182 +0x53e
github.com/google/syzkaller/pkg/rpcserver.(*server).connectionLoop(0xc00127efc0, {0x22c7cb0?, 0xc0025c9e00?}, 0xc0025b4c00)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/rpcserver.go:439 +0x196
github.com/google/syzkaller/pkg/rpcserver.(*server).handleRunnerConn(0xc00127efc0, {0x22c7cb0, 0xc0025c9e00}, 0xc0025b4c00, 0xc0025c9e50)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/rpcserver.go:362 +0x54a
github.com/google/syzkaller/pkg/rpcserver.(*server).handleConn(0xc00127efc0, {0x22c7cb0, 0xc0025c9e00}, 0xc0025c9e50)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/rpcserver.go:324 +0x2aa
github.com/google/syzkaller/pkg/rpcserver.(*server).Serve.func1.1({0x22c7cb0?, 0xc0025c9e00?}, 0x0?)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/rpcserver.go:244 +0x31
github.com/google/syzkaller/pkg/flatrpc.(*Serv).Serve.func2()
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/flatrpc/conn.go:78 +0x198
golang.org/x/sync/errgroup.(*Group).Go.func1()
	/syzkaller/gopath/pkg/mod/golang.org/x/sync@v0.16.0/errgroup/errgroup.go:93 +0x50
created by golang.org/x/sync/errgroup.(*Group).Go in goroutine 27
	/syzkaller/gopath/pkg/mod/golang.org/x/sync@v0.16.0/errgroup/errgroup.go:78 +0x93

Trajectory: (Expand/Collapse All)
Seq Timestamp Type Name Duration
0/0 2026/05/14 16:05 flow assessment-security
7m Results:
map[DenialOfService:false Explanation:The provided bug report is not a Linux kernel vulnerability. The crash occurred
in the user-space `syzkaller` process (written in Go) due to a `SIGFPE`
(floating-point exception) signal.

The C reproducer loads an eBPF program and attaches it to the `mm_page_alloc`
raw tracepoint. The eBPF program consists of the following instructions:
```
18 01 00 00 08 00 00 00 00 00 00 00 00 00 ea 04 -> r1 = 8
85 00 00 00 6d 00 00 00                         -> call bpf_send_signal (109)
95                                              -> exit
```
This eBPF program simply calls the `bpf_send_signal(8)` helper function, which
sends a `SIGFPE` (signal 8) to the current process. Since the program is
attached to the global `mm_page_alloc` tracepoint, any process that allocates a
memory page will trigger the tracepoint and receive a `SIGFPE`. In this case,
the `syzkaller` process itself allocated memory, triggered the tracepoint,
received the `SIGFPE`, and crashed.

This is not a bug in the Linux kernel. The kernel is correctly executing the
loaded eBPF program and sending the requested signal.

Furthermore, loading a `BPF_PROG_TYPE_RAW_TRACEPOINT` program and using the
`bpf_send_signal` helper function both require the `CAP_PERFMON` (or
`CAP_SYS_ADMIN`) capability. Therefore, an unprivileged user cannot load this
program or trigger this behavior.

All analysis dimensions are set to false as this is an intentional behavior of a
privileged eBPF program and not a kernel vulnerability. Exploitable:false FilesystemTrigger:false NetworkTrigger:false PeripheralTrigger:false RemoteTrigger:false Unprivileged:false UserNamespace:false VMGuestTrigger:false VMHostTrigger:false]

1/1 2026/05/14 16:05 action syz-repro-to-c-repro
0m Results:
map[SimplifiedCRepro:// autogenerated by syzkaller (https://github.com/google/syzkaller)

#define _GNU_SOURCE 

#include <endian.h>
#include <stdint.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/mount.h>
#include <sys/syscall.h>
#include <sys/types.h>
#include <unistd.h>

#ifndef __NR_bpf
#define __NR_bpf 321
#endif

uint64_t r[1] = {0xffffffffffffffff};

int main(void)
{
		syscall(__NR_mmap, /*addr=*/0x1ffffffff000ul, /*len=*/0x1000ul, /*prot=*/0ul, /*flags=MAP_FIXED|MAP_ANONYMOUS|MAP_PRIVATE*/0x32ul, /*fd=*/(intptr_t)-1, /*offset=*/0ul);
	syscall(__NR_mmap, /*addr=*/0x200000000000ul, /*len=*/0x1000000ul, /*prot=PROT_WRITE|PROT_READ|PROT_EXEC*/7ul, /*flags=MAP_FIXED|MAP_ANONYMOUS|MAP_PRIVATE*/0x32ul, /*fd=*/(intptr_t)-1, /*offset=*/0ul);
	syscall(__NR_mmap, /*addr=*/0x200001000000ul, /*len=*/0x1000ul, /*prot=*/0ul, /*flags=MAP_FIXED|MAP_ANONYMOUS|MAP_PRIVATE*/0x32ul, /*fd=*/(intptr_t)-1, /*offset=*/0ul);
	const char* reason;
	(void)reason;
				intptr_t res = 0;
	if (write(1, "executing program\n", sizeof("executing program\n") - 1)) {}
//  bpf$PROG_LOAD arguments: [
//    cmd: const = 0x5 (8 bytes)
//    arg: nil
//    size: len = 0x0 (8 bytes)
//  ]
//  returns fd_bpf_prog
	syscall(__NR_bpf, /*cmd=*/5ul, /*arg=*/0ul, /*size=*/0ul);
//  bpf$MAP_CREATE arguments: [
//    cmd: const = 0x0 (8 bytes)
//    arg: nil
//    size: len = 0x0 (8 bytes)
//  ]
//  returns fd_bpf_map
	syscall(__NR_bpf, /*cmd=*/0ul, /*arg=*/0ul, /*size=*/0ul);
//  wait4 arguments: [
//    pid: pid (resource)
//    status: nil
//    options: wait_options = 0x60000008 (8 bytes)
//    ru: nil
//  ]
	syscall(__NR_wait4, /*pid=*/0, /*status=*/0ul, /*options=__WNOTHREAD|__WALL|WCONTINUED*/0x60000008ul, /*ru=*/0ul);
//  bpf$BPF_PROG_RAW_TRACEPOINT_LOAD arguments: [
//    cmd: const = 0x5 (8 bytes)
//    arg: ptr[in, bpf_prog_t[flags[bpf_raw_tracepoint_prog_types, int32], const[0, int32], const[0, int32], const[0, int32]]] {
//      bpf_prog_t[flags[bpf_raw_tracepoint_prog_types, int32], const[0, int32], const[0, int32], const[0, int32]] {
//        type: bpf_raw_tracepoint_prog_types = 0x11 (4 bytes)
//        ninsn: bytesize8 = 0x4 (4 bytes)
//        insns: ptr[inout, array[ANYUNION]] {
//          array[ANYUNION] {
//            union ANYUNION {
//              ANYBLOB: buffer: {18 01 00 00 08 00 00 00 00 00 00 00 00 00 ea 04 85 00 00 00 6d 00 00 00 95} (length 0x19)
//            }
//          }
//        }
//        license: ptr[in, buffer] {
//          buffer: {47 50 4c 00} (length 0x4)
//        }
//        loglev: int32 = 0x0 (4 bytes)
//        logsize: len = 0x0 (4 bytes)
//        log: nil
//        kern_version: bpf_kern_version = 0x0 (4 bytes)
//        flags: bpf_prog_load_flags = 0x0 (4 bytes)
//        prog_name: buffer: {00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00} (length 0x10)
//        prog_ifindex: ifindex (resource)
//        expected_attach_type: const = 0x2 (4 bytes)
//        btf_fd: fd_btf (resource)
//        func_info_rec_size: const = 0x8 (4 bytes)
//        func_info: nil
//        func_info_cnt: len = 0x0 (4 bytes)
//        line_info_rec_size: const = 0x10 (4 bytes)
//        line_info: nil
//        line_info_cnt: len = 0x0 (4 bytes)
//        attach_btf_id: const = 0x0 (4 bytes)
//        attach_prog_fd: const = 0x0 (4 bytes)
//        core_relo_cnt: len = 0x0 (4 bytes)
//        fd_array: nil
//        core_relos: nil
//        core_relo_rec_size: const = 0x10 (4 bytes)
//        log_true_size: int32 = 0x0 (4 bytes)
//        prog_token_fd: union _bpf_prog_t[flags[bpf_raw_tracepoint_prog_types, int32], const[0, int32], const[0, int32], const[0, int32]]_prog_token_fd_wrapper {
//          void: buffer: {} (length 0x0)
//        }
//        pad: union _bpf_prog_t[flags[bpf_raw_tracepoint_prog_types, int32], const[0, int32], const[0, int32], const[0, int32]]_pad_wrapper {
//          value: const = 0x0 (4 bytes)
//        }
//      }
//    }
//    size: len = 0x80 (8 bytes)
//  ]
//  returns fd_bpf_prog_raw_tracepoint
*(uint32_t*)0x200000000200 = 0x11;
*(uint32_t*)0x200000000204 = 4;
*(uint64_t*)0x200000000208 = 0x2000000002c0;
memcpy((void*)0x2000000002c0, "\x18\x01\x00\x00\x08\x00\x00\x00\x00\x00\x00\x00\x00\x00\xea\x04\x85\x00\x00\x00\x6d\x00\x00\x00\x95", 25);
*(uint64_t*)0x200000000210 = 0x200000000100;
memcpy((void*)0x200000000100, "GPL\000", 4);
*(uint32_t*)0x200000000218 = 0;
*(uint32_t*)0x20000000021c = 0;
*(uint64_t*)0x200000000220 = 0;
*(uint32_t*)0x200000000228 = 0;
*(uint32_t*)0x20000000022c = 0;
memset((void*)0x200000000230, 0, 16);
*(uint32_t*)0x200000000240 = 0;
*(uint32_t*)0x200000000244 = 2;
*(uint32_t*)0x200000000248 = -1;
*(uint32_t*)0x20000000024c = 8;
*(uint64_t*)0x200000000250 = 0;
*(uint32_t*)0x200000000258 = 0;
*(uint32_t*)0x20000000025c = 0x10;
*(uint64_t*)0x200000000260 = 0;
*(uint32_t*)0x200000000268 = 0;
*(uint32_t*)0x20000000026c = 0;
*(uint32_t*)0x200000000270 = 0;
*(uint32_t*)0x200000000274 = 0;
*(uint64_t*)0x200000000278 = 0;
*(uint64_t*)0x200000000280 = 0;
*(uint32_t*)0x200000000288 = 0x10;
*(uint32_t*)0x20000000028c = 0;
*(uint32_t*)0x200000000290 = 0;
	res = syscall(__NR_bpf, /*cmd=*/5ul, /*arg=*/0x200000000200ul, /*size=*/0x80ul);
	if (res != -1)
		r[0] = res;
//  bpf$BPF_RAW_TRACEPOINT_OPEN arguments: [
//    cmd: const = 0x11 (8 bytes)
//    arg: ptr[in, bpf_raw_tracepoint] {
//      bpf_raw_tracepoint {
//        name: ptr[in, buffer] {
//          buffer: {6d 6d 5f 70 61 67 65 5f 61 6c 6c 6f 63 00} (length 0xe)
//        }
//        prog_fd: fd_bpf_prog_raw_tracepoint (resource)
//        pad: const = 0x0 (4 bytes)
//        cookie: int64 = 0x0 (8 bytes)
//      }
//    }
//    size: len = 0x10 (8 bytes)
//  ]
//  returns fd_perf_base
*(uint64_t*)0x200000000200 = 0x200000000140;
memcpy((void*)0x200000000140, "mm_page_alloc\000", 14);
*(uint32_t*)0x200000000208 = r[0];
*(uint32_t*)0x20000000020c = 0;
*(uint64_t*)0x200000000210 = 0;
	syscall(__NR_bpf, /*cmd=*/0x11ul, /*arg=*/0x200000000200ul, /*size=*/0x10ul);
	return 0;
}
]

2/1 2026/05/14 16:05 action kernel-checkouter
0m Results:
map[KernelSrc:/app/workdir/cache/src/a8b07975313b3d8d70853cc831276fc054f0f8b7]

3/1 2026/05/14 16:05 action kernel-builder
0m Results:
map[KernelObj:/app/workdir/cache/build/1a410a73c57bafd94497f8bd3bd579ee8b70be56]

4/1 2026/05/14 16:05 action codesearch-prepare
0m Results:
map[Index:codesearch-index]

5/1 2026/05/14 16:05 agent expert
6m Model:
gemini-3.1-pro-preview

Results:
map[DenialOfService:false Exploitable:false FilesystemTrigger:false NetworkTrigger:false PeripheralTrigger:false RemoteTrigger:false Unprivileged:false UserNamespace:false VMGuestTrigger:false VMHostTrigger:false]

Instruction:
You are an experienced Linux kernel security engineer. Your task is to analyze given kernel bug report
and determine its security impact based on the following dimensions.

Use the provided tools to examine the source code, check for capability checks (e.g., capable(), ns_capable()),
and understand the nature of the bug. Analyze the given kernel build and configuration.
You can check the kernel config by grepping ".config" file; you can check kernel cmdline by greeping
".config" file for "CONFIG_CMDLINE=". Assume sysctl parameters have default values.
But analyze for the corresponding production build w/o debugging tools enabled (like KASAN, KMSAN, UBSAN).

Don't make assumptions; verify them with source code access. Try different strategies when analyzing the bug:
 - think of ways in which the vulnerable code is unreachable
 - or the other way around: try to come up with different ideas of how an unprivileged user can reach the bug
If still unsure err on the side of the bug being non-exploitable/not-accessible.
In the final reply, provide a reasoning for your assessment.

Analysis dimensions:

* Exploitable:
Determine if the bug can result in memory corruption or elevated privileges.
Memory safety issues are almost always exploitable (KASAN or UBSAN reports for use-after-free, out-of-bounds;
refcounting issues, corrupted lists, etc). When kernel is crashing on a completly wild pointer access
(e.g. user-space address, or non-canonical address, but not on NULL or address corresponding to KASAN shadow
for NULL address), including both data accesses and control tranfers, that's also usually implies possibility
of exploitation. Such reports usually say "unable to handle kernel paging request".
Uses of uninitialized values detected by KMSAN may be exploitable b/c attacker frequently can affect uninit
values with spraying techniques. However, for these exploitabability depends on how exactly the uninit value
is used in the code, and what it affects.

Think of what happens after the bug is triggered. Some bugs cause kernel panic and halt execution,
they are harder to exploit. For example, BUG reports halts the kernel. However, WARNING reports don't halt
execution in production builds. Debug bug detection tools (like KASAN, KMSAN, KCSAN, UBSAN) are also not enabled
in production builds, so attacker can freely exploit these bugs w/o being detected by these tools.
If you see an integer overflow, think how the overflowed value used later (if it's used as allocation size,
or an array index). If you see an out-of-bounds read, think if it's followed by an out-of-bounds write as well.
Some KCSAN data-races may be exploitable by skilled attackers as well. Think what data structures got corrupted
as the result of data races and how. However, note that kernel has lots of "benign" data races that don't lead
to any runtime misbehavior at all.

* Denial Of Service:
Determine if the bug can result in denial-of-service. Most bugs can, since they cause system crash,
hangs, deadlocks, or resource leaks. This is mostly applicable to WARNING bugs that won't cause system crash
in production. For these think what will be consequences of the violation of the kernel assumptions flagged
by the WARNING. In some cases the unexpected condition is also properly handled by the normal control flow
(e.g. with "if (WARN_ON(...))"), these won't cause denial-of-service. If the condition is not handled,
then it may or may not cause denial-of-service.

* Accessible From Unprivileged Processes:
Determine if the bug can be reached from a typical (non-root) user process that does NOT have any special capabilities
(like CAP_SYS_ADMIN, CAP_NET_ADMIN, CAP_NET_RAW, CAP_PERFMON) or access to device nodes restricted to root.
Assume that unprivileged_bpf_disabled=1, that is eBPF loading is not accessible. However, cBPF (classical BPF)
is still accessible to non-root processes.
Assume that user namespaces are not accessible, that is, the process cannot get the mentioned capabilities even
within a new user namespace (checked by ns_capable() function in the kernel sources).

* Accessible From User Namespaces:
Determine if the bug can be reached within a user-namespace where the process has all capabilities
(including CAP_SYS_ADMIN, CAP_NET_ADMIN, CAP_NET_RAW, CAP_PERFMON). Such capabilities are checked with ns_capable()
function in the kernel sources.

* VM Guest Trigger:
Determine if the bug can be triggered from the context of a typical KVM guest (e.g., set up by a QEMU VMM).
Consider accesses to standard Linux host paravirtualized features (virtio-blk, virtio-net, etc.),
and handling of VM exits in the KVM code.

* VM Host Trigger in The Confidetial Computing Context:
Determine if the bug can be triggered in a confidential computing guest kernel from the context of a KVM host.
Consider access to standard Linux guest paravirtualized features (virtio-blk, virtio-net, etc.).

* Ethernet Network Trigger:
Determine if the bug can be triggered by processing ingress network Ethernet traffic, either directly (network stack)
or via drivers exposed to network data.

* Other Remote Trigger:
Determine if the bug can be triggered by processing remote traffic other than Ethernet (Wifi, Bluetooth, NFC, etc).

* Peripheral Trigger:
Determine if the bug can be triggered via an untrusted peripheral device that can be physically plugged
into a system, such as a USB device or a niche hardware driver handling external hardware inputs.
This is particularly important for mobile and desktop environments where users can plug in unknown devices.

* Malicious Filesystem Trigger:
Determine if the bug can be triggered by the kernel mounting and parsing a malicious filesystem image.
This is highly critical for Desktop and Mobile environments where external media or downloaded images
might be auto-mounted.

Prefer calling several tools at the same time to save round-trips.


Use set-results tool to provide results of the analysis.
It must be called exactly once before the final reply.
Ignore results of this tool.

Prompt:
The kernel bug report is:

2025/08/27 17:28:43 executed programs: 1802
panic: runtime error: floating point error
[signal SIGFPE: floating-point exception code=0x80 addr=0x0 pc=0xf1b066]

goroutine 11 [running]:
encoding/binary.AppendUvarint(...)
	/usr/local/go/src/encoding/binary/varint.go:46
encoding/binary.AppendVarint(...)
	/usr/local/go/src/encoding/binary/varint.go:96
github.com/google/syzkaller/prog.(*execContext).write(...)
	/syzkaller/gopath/src/github.com/google/syzkaller/prog/encodingexec.go:254
github.com/google/syzkaller/prog.(*Prog).SerializeForExec(0xc000ac3d80)
	/syzkaller/gopath/src/github.com/google/syzkaller/prog/encodingexec.go:75 +0x146
github.com/google/syzkaller/pkg/rpcserver.(*Runner).sendRequest(0xc0025b4c00, 0xc00873fd40)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/runner.go:297 +0x22b
github.com/google/syzkaller/pkg/rpcserver.(*Runner).ConnectionLoop(0xc0025b4c00)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/runner.go:182 +0x53e
github.com/google/syzkaller/pkg/rpcserver.(*server).connectionLoop(0xc00127efc0, {0x22c7cb0?, 0xc0025c9e00?}, 0xc0025b4c00)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/rpcserver.go:439 +0x196
github.com/google/syzkaller/pkg/rpcserver.(*server).handleRunnerConn(0xc00127efc0, {0x22c7cb0, 0xc0025c9e00}, 0xc0025b4c00, 0xc0025c9e50)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/rpcserver.go:362 +0x54a
github.com/google/syzkaller/pkg/rpcserver.(*server).handleConn(0xc00127efc0, {0x22c7cb0, 0xc0025c9e00}, 0xc0025c9e50)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/rpcserver.go:324 +0x2aa
github.com/google/syzkaller/pkg/rpcserver.(*server).Serve.func1.1({0x22c7cb0?, 0xc0025c9e00?}, 0x0?)
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/rpcserver/rpcserver.go:244 +0x31
github.com/google/syzkaller/pkg/flatrpc.(*Serv).Serve.func2()
	/syzkaller/gopath/src/github.com/google/syzkaller/pkg/flatrpc/conn.go:78 +0x198
golang.org/x/sync/errgroup.(*Group).Go.func1()
	/syzkaller/gopath/pkg/mod/golang.org/x/sync@v0.16.0/errgroup/errgroup.go:93 +0x50
created by golang.org/x/sync/errgroup.(*Group).Go in goroutine 27
	/syzkaller/gopath/pkg/mod/golang.org/x/sync@v0.16.0/errgroup/errgroup.go:78 +0x93




It is reproducible with the followint program.
Keep in mind that it may lack the precise threading, sandboxing, and some arguments of a working reproducer.
But it should give an idea of the involved syscalls.

// autogenerated by syzkaller (https://github.com/google/syzkaller)

#define _GNU_SOURCE 

#include <endian.h>
#include <stdint.h>
#include <stdio.h>
#include <stdlib.h>
#include <string.h>
#include <sys/mount.h>
#include <sys/syscall.h>
#include <sys/types.h>
#include <unistd.h>

#ifndef __NR_bpf
#define __NR_bpf 321
#endif

uint64_t r[1] = {0xffffffffffffffff};

int main(void)
{
		syscall(__NR_mmap, /*addr=*/0x1ffffffff000ul, /*len=*/0x1000ul, /*prot=*/0ul, /*flags=MAP_FIXED|MAP_ANONYMOUS|MAP_PRIVATE*/0x32ul, /*fd=*/(intptr_t)-1, /*offset=*/0ul);
	syscall(__NR_mmap, /*addr=*/0x200000000000ul, /*len=*/0x1000000ul, /*prot=PROT_WRITE|PROT_READ|PROT_EXEC*/7ul, /*flags=MAP_FIXED|MAP_ANONYMOUS|MAP_PRIVATE*/0x32ul, /*fd=*/(intptr_t)-1, /*offset=*/0ul);
	syscall(__NR_mmap, /*addr=*/0x200001000000ul, /*len=*/0x1000ul, /*prot=*/0ul, /*flags=MAP_FIXED|MAP_ANONYMOUS|MAP_PRIVATE*/0x32ul, /*fd=*/(intptr_t)-1, /*offset=*/0ul);
	const char* reason;
	(void)reason;
				intptr_t res = 0;
	if (write(1, "executing program\n", sizeof("executing program\n") - 1)) {}
//  bpf$PROG_LOAD arguments: [
//    cmd: const = 0x5 (8 bytes)
//    arg: nil
//    size: len = 0x0 (8 bytes)
//  ]
//  returns fd_bpf_prog
	syscall(__NR_bpf, /*cmd=*/5ul, /*arg=*/0ul, /*size=*/0ul);
//  bpf$MAP_CREATE arguments: [
//    cmd: const = 0x0 (8 bytes)
//    arg: nil
//    size: len = 0x0 (8 bytes)
//  ]
//  returns fd_bpf_map
	syscall(__NR_bpf, /*cmd=*/0ul, /*arg=*/0ul, /*size=*/0ul);
//  wait4 arguments: [
//    pid: pid (resource)
//    status: nil
//    options: wait_options = 0x60000008 (8 bytes)
//    ru: nil
//  ]
	syscall(__NR_wait4, /*pid=*/0, /*status=*/0ul, /*options=__WNOTHREAD|__WALL|WCONTINUED*/0x60000008ul, /*ru=*/0ul);
//  bpf$BPF_PROG_RAW_TRACEPOINT_LOAD arguments: [
//    cmd: const = 0x5 (8 bytes)
//    arg: ptr[in, bpf_prog_t[flags[bpf_raw_tracepoint_prog_types, int32], const[0, int32], const[0, int32], const[0, int32]]] {
//      bpf_prog_t[flags[bpf_raw_tracepoint_prog_types, int32], const[0, int32], const[0, int32], const[0, int32]] {
//        type: bpf_raw_tracepoint_prog_types = 0x11 (4 bytes)
//        ninsn: bytesize8 = 0x4 (4 bytes)
//        insns: ptr[inout, array[ANYUNION]] {
//          array[ANYUNION] {
//            union ANYUNION {
//              ANYBLOB: buffer: {18 01 00 00 08 00 00 00 00 00 00 00 00 00 ea 04 85 00 00 00 6d 00 00 00 95} (length 0x19)
//            }
//          }
//        }
//        license: ptr[in, buffer] {
//          buffer: {47 50 4c 00} (length 0x4)
//        }
//        loglev: int32 = 0x0 (4 bytes)
//        logsize: len = 0x0 (4 bytes)
//        log: nil
//        kern_version: bpf_kern_version = 0x0 (4 bytes)
//        flags: bpf_prog_load_flags = 0x0 (4 bytes)
//        prog_name: buffer: {00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00} (length 0x10)
//        prog_ifindex: ifindex (resource)
//        expected_attach_type: const = 0x2 (4 bytes)
//        btf_fd: fd_btf (resource)
//        func_info_rec_size: const = 0x8 (4 bytes)
//        func_info: nil
//        func_info_cnt: len = 0x0 (4 bytes)
//        line_info_rec_size: const = 0x10 (4 bytes)
//        line_info: nil
//        line_info_cnt: len = 0x0 (4 bytes)
//        attach_btf_id: const = 0x0 (4 bytes)
//        attach_prog_fd: const = 0x0 (4 bytes)
//        core_relo_cnt: len = 0x0 (4 bytes)
//        fd_array: nil
//        core_relos: nil
//        core_relo_rec_size: const = 0x10 (4 bytes)
//        log_true_size: int32 = 0x0 (4 bytes)
//        prog_token_fd: union _bpf_prog_t[flags[bpf_raw_tracepoint_prog_types, int32], const[0, int32], const[0, int32], const[0, int32]]_prog_token_fd_wrapper {
//          void: buffer: {} (length 0x0)
//        }
//        pad: union _bpf_prog_t[flags[bpf_raw_tracepoint_prog_types, int32], const[0, int32], const[0, int32], const[0, int32]]_pad_wrapper {
//          value: const = 0x0 (4 bytes)
//        }
//      }
//    }
//    size: len = 0x80 (8 bytes)
//  ]
//  returns fd_bpf_prog_raw_tracepoint
*(uint32_t*)0x200000000200 = 0x11;
*(uint32_t*)0x200000000204 = 4;
*(uint64_t*)0x200000000208 = 0x2000000002c0;
memcpy((void*)0x2000000002c0, "\x18\x01\x00\x00\x08\x00\x00\x00\x00\x00\x00\x00\x00\x00\xea\x04\x85\x00\x00\x00\x6d\x00\x00\x00\x95", 25);
*(uint64_t*)0x200000000210 = 0x200000000100;
memcpy((void*)0x200000000100, "GPL\000", 4);
*(uint32_t*)0x200000000218 = 0;
*(uint32_t*)0x20000000021c = 0;
*(uint64_t*)0x200000000220 = 0;
*(uint32_t*)0x200000000228 = 0;
*(uint32_t*)0x20000000022c = 0;
memset((void*)0x200000000230, 0, 16);
*(uint32_t*)0x200000000240 = 0;
*(uint32_t*)0x200000000244 = 2;
*(uint32_t*)0x200000000248 = -1;
*(uint32_t*)0x20000000024c = 8;
*(uint64_t*)0x200000000250 = 0;
*(uint32_t*)0x200000000258 = 0;
*(uint32_t*)0x20000000025c = 0x10;
*(uint64_t*)0x200000000260 = 0;
*(uint32_t*)0x200000000268 = 0;
*(uint32_t*)0x20000000026c = 0;
*(uint32_t*)0x200000000270 = 0;
*(uint32_t*)0x200000000274 = 0;
*(uint64_t*)0x200000000278 = 0;
*(uint64_t*)0x200000000280 = 0;
*(uint32_t*)0x200000000288 = 0x10;
*(uint32_t*)0x20000000028c = 0;
*(uint32_t*)0x200000000290 = 0;
	res = syscall(__NR_bpf, /*cmd=*/5ul, /*arg=*/0x200000000200ul, /*size=*/0x80ul);
	if (res != -1)
		r[0] = res;
//  bpf$BPF_RAW_TRACEPOINT_OPEN arguments: [
//    cmd: const = 0x11 (8 bytes)
//    arg: ptr[in, bpf_raw_tracepoint] {
//      bpf_raw_tracepoint {
//        name: ptr[in, buffer] {
//          buffer: {6d 6d 5f 70 61 67 65 5f 61 6c 6c 6f 63 00} (length 0xe)
//        }
//        prog_fd: fd_bpf_prog_raw_tracepoint (resource)
//        pad: const = 0x0 (4 bytes)
//        cookie: int64 = 0x0 (8 bytes)
//      }
//    }
//    size: len = 0x10 (8 bytes)
//  ]
//  returns fd_perf_base
*(uint64_t*)0x200000000200 = 0x200000000140;
memcpy((void*)0x200000000140, "mm_page_alloc\000", 14);
*(uint32_t*)0x200000000208 = r[0];
*(uint32_t*)0x20000000020c = 0;
*(uint64_t*)0x200000000210 = 0;
	syscall(__NR_bpf, /*cmd=*/0x11ul, /*arg=*/0x200000000200ul, /*size=*/0x10ul);
	return 0;
}



Reply:
The provided bug report is not a Linux kernel vulnerability. The crash occurred in the user-space `syzkaller` process (written in Go) due to a `SIGFPE` (floating-point exception) signal.

The C reproducer loads an eBPF program and attaches it to the `mm_page_alloc` raw tracepoint. The eBPF program consists of the following instructions:
```
18 01 00 00 08 00 00 00 00 00 00 00 00 00 ea 04 -> r1 = 8
85 00 00 00 6d 00 00 00                         -> call bpf_send_signal (109)
95                                              -> exit
```
This eBPF program simply calls the `bpf_send_signal(8)` helper function, which sends a `SIGFPE` (signal 8) to the current process. Since the program is attached to the global `mm_page_alloc` tracepoint, any process that allocates a memory page will trigger the tracepoint and receive a `SIGFPE`. In this case, the `syzkaller` process itself allocated memory, triggered the tracepoint, received the `SIGFPE`, and crashed.

This is not a bug in the Linux kernel. The kernel is correctly executing the loaded eBPF program and sending the requested signal.

Furthermore, loading a `BPF_PROG_TYPE_RAW_TRACEPOINT` program and using the `bpf_send_signal` helper function both require the `CAP_PERFMON` (or `CAP_SYS_ADMIN`) capability. Therefore, an unprivileged user cannot load this program or trigger this behavior.

All analysis dimensions are set to false as this is an intentional behavior of a privileged eBPF program and not a kernel vulnerability.

6/2 2026/05/14 16:05 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 8654
							output: 25
							thoughts: 2900
						

Thoughts:
**Analysis of the syzkaller Panic**

Okay, here's the situation as I understand it. I'm looking at a syzkaller bug report. The initial panic is within the syzkaller executor, specifically in the `rpcserver`. It's a Go runtime panic: "runtime error: floating point error" within `encoding/binary.AppendUvarint`. My initial thought is this isn't a kernel bug, but a bug in syzkaller itself. The prompt says "The kernel bug report is:" but the stack trace is clearly Go.

I've confirmed that the panic is happening in the Go code. So the important point is that the panic is in the `syz-manager` or `syz-fuzzer`, both are written in Go. The trace points to `github.com/google/syzkaller/pkg/rpcserver.(*Runner).sendRequest`, which confirms it's the `syz-manager` or `syz-runner`. This code is running on the host. I believe the syzkaller RPC server in the host is panicking. The reproducer also involves BPF calls in the guest.

The reproducer includes C code and `syscall` calls related to BPF, which can be seen in the execution of the BPF commands:  `__NR_bpf`, `__NR_wait4`. This involves setting up and running a BPF program. There's a `BPF_RAW_TRACEPOINT_OPEN` call on the `mm_page_alloc` tracepoint. However, the crash is in the Go runtime on the host, specifically in `AppendUvarint`.

I have to consider the fact that the C reproducer is executing in the guest, and there's a panic on the host in Go code. The C reproducer is triggering a panic in a Go program running in `syz-manager` on the host. The guest can't corrupt host memory, unless it's a VM escape. However, it *is* a VM, the guest is likely not executing code on the host, so I should look more closely at the interaction between host and guest.

My current theory is this: a bug in the syzkaller RPC communication or a bug in syzkaller's handling of malformed data coming from the guest triggered a panic in the host's `syz-manager`. Specifically a panic in `AppendUvarint` in the `prog/encodingexec.go` module during program serialization. The trace indicates that the panic happens when serializing a program to be sent to the executor. The guest kernel may have a bug that's causing the guest to send a corrupted program to be serialized. The bug *itself* is in the syzkaller code due to bad serialization or RPC handling.

The root cause might be a kernel bug that results in corrupted memory. The crash is happening during a `SerializeForExec` operation. The guest's execution of a BPF program triggered a memory corruption. If the BPF program writes to user space, it is possible the guest can corrupt user space memory. Given there's BPF involved, it is possible the guest could be corrupting memory on the host through a VM escape.

So to summarize: The panic is in `syz-manager` on the host, triggered by an RPC interaction with the guest. The `AppendUvarint` crash suggests malformed data is being sent from the guest. The reproducer has BPF involved so BPF is likely responsible for the crash. This likely means there's a bug that has caused memory corruption in the guest and it's corrupting a message being sent to `syz-manager`. The root cause is likely a guest kernel bug, which is causing a crash in syzkaller running on the host. I need to investigate the communication protocol used by syzkaller.

Therefore:

*   **Exploitable: true** (potentially leads to VM escape)
*   **DenialOfService: true** (crashes syzkaller)
*   **Unprivileged: true** (BFP is often triggered by unprivileged users)
*   **UserNamespace: true** (might depend if BPF is namespaced in the guest)
*   **VMGuestTrigger: true** (triggered by guest activity)
*   **VMHostTrigger: true** (syzkaller crash on the host)
*   **NetworkTrigger: true** (through RPC)
*   **RemoteTrigger: false**
*   **PeripheralTrigger: false**
*   **FilesystemTrigger: false**



7/2 2026/05/14 16:05 tool grepper
0m Error:
log-in to see details

Args:
map[Expression:BPF_FUNC_.* = 109]

Results:
map[Output:]

8/2 2026/05/14 16:06 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 12565
							output: 18
							thoughts: 31
						

Thoughts:
Okay, here's my take on those thoughts, framed as an expert's internal monologue:

**Quick BPF Version Check**

Alright, so I need to figure out what's going on with version `109` related to BPF. Instead of digging through a whole load of docs right now, let's start with a quick and dirty approach. I'll just `grep` for `109` in `include/uapi/linux/bpf.h`. That header file is usually my go-to for these kinds of low-level definitions. If that doesn't immediately give me the answer, I'll then move to carefully looking through the relevant `enum` to see what version `109` corresponds to and what other BPF related configurations might be in the vicinity. This should be a fast way to get a handle on the situation.



9/2 2026/05/14 16:06 tool grepper
0m Args:
map[Expression:FN\(.*\)]

Results:
map[Output:
Full output is too long, showing 500 out of 10883 lines.
Use more precise expression if possible.

[arch/alpha/kernel/core_marvel.c=507=mk_conf_addr(struct pci_bus *pbus, unsigned int devfn, int where)
 --
 arch/alpha/kernel/core_marvel.c-523-		/* Don't support idsel > 20 on primary bus.  */
 arch/alpha/kernel/core_marvel.c:524:		if (devfn >= PCI_DEVFN(21, 0))
 arch/alpha/kernel/core_marvel.c-525-			return addr;
 --
 arch/alpha/kernel/core_marvel.c=1019=marvel_agp_info(void)
 --
 arch/alpha/kernel/core_marvel.c-1040-		h = io7->ports[IO7_AGP_PORT].hose;
 arch/alpha/kernel/core_marvel.c:1041:		addr = (vuip)build_conf_addr(h, 0, PCI_DEVFN(5, 0), 0);
 arch/alpha/kernel/core_marvel.c-1042-
 --
 arch/alpha/kernel/sys_alcor.c=228=alcor_init_pci(void)
 --
 arch/alpha/kernel/sys_alcor.c-241-			      NULL);
 arch/alpha/kernel/sys_alcor.c:242:	if (dev && dev->devfn == PCI_DEVFN(6,0)) {
 arch/alpha/kernel/sys_alcor.c-243-		alpha_mv.sys.cia.gru_int_req_bits = XLT_GRU_INT_REQ_BITS; 
 --
 arch/arm/mach-footbridge/dc21285.c=37=dc21285_base_address(struct pci_bus *bus, unsigned int devfn)
 --
 arch/arm/mach-footbridge/dc21285.c-49-
 arch/arm/mach-footbridge/dc21285.c:50:			if (devfn < PCI_DEVFN(MAX_SLOTS, 0))
 arch/arm/mach-footbridge/dc21285.c-51-				addr = PCICFG0_BASE | 0xc00000 | (devfn << 8);
 --
 arch/arm/mach-s3c/dev-audio-s3c64xx.c=21=static int s3c64xx_i2s_cfg_gpio(struct platform_device *pdev)
 --
 arch/arm/mach-s3c/dev-audio-s3c64xx.c-32-	case 2:
 arch/arm/mach-s3c/dev-audio-s3c64xx.c:33:		s3c_gpio_cfgpin(S3C64XX_GPC(4), S3C_GPIO_SFN(5));
 arch/arm/mach-s3c/dev-audio-s3c64xx.c:34:		s3c_gpio_cfgpin(S3C64XX_GPC(5), S3C_GPIO_SFN(5));
 arch/arm/mach-s3c/dev-audio-s3c64xx.c:35:		s3c_gpio_cfgpin(S3C64XX_GPC(7), S3C_GPIO_SFN(5));
 arch/arm/mach-s3c/dev-audio-s3c64xx.c:36:		s3c_gpio_cfgpin_range(S3C64XX_GPH(6), 4, S3C_GPIO_SFN(5));
 arch/arm/mach-s3c/dev-audio-s3c64xx.c-37-		return 0;
 --
 arch/arm/mach-s3c/dev-audio-s3c64xx.c-43-
 arch/arm/mach-s3c/dev-audio-s3c64xx.c:44:	s3c_gpio_cfgpin_range(base, 5, S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/dev-audio-s3c64xx.c-45-
 --
 arch/arm/mach-s3c/gpio-cfg.h=49=struct samsung_gpio_cfg {
 --
 arch/arm/mach-s3c/gpio-cfg.h-66-#define S3C_GPIO_OUTPUT	(S3C_GPIO_SPECIAL(1))
 arch/arm/mach-s3c/gpio-cfg.h:67:#define S3C_GPIO_SFN(x)	(S3C_GPIO_SPECIAL(x))
 arch/arm/mach-s3c/gpio-cfg.h-68-
 --
 arch/arm/mach-s3c/gpio-cfg.h-81- * The @to parameter can be one of the generic S3C_GPIO_INPUT, S3C_GPIO_OUTPUT
 arch/arm/mach-s3c/gpio-cfg.h:82: * or S3C_GPIO_SFN() to indicate one of the possible values that the helper
 arch/arm/mach-s3c/gpio-cfg.h-83- * will then generate the correct bit mask and shift for the configuration.
 --
 arch/arm/mach-s3c/gpio-cfg.h-88- *	for (gpio = start; gpio < end; gpio++)
 arch/arm/mach-s3c/gpio-cfg.h:89: *		s3c_gpio_cfgpin(gpio, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/gpio-cfg.h-90- *
 --
 arch/arm/mach-s3c/mach-crag6410.c=124=static void crag6410_lcd_power_set(struct plat_lcd_data *pd, unsigned int power)
 --
 arch/arm/mach-s3c/mach-crag6410.c-130-		msleep(1);
 arch/arm/mach-s3c/mach-crag6410.c:131:		s3c_gpio_cfgpin(S3C64XX_GPF(14), S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/mach-crag6410.c-132-	} else {
 --
 arch/arm/mach-s3c/mach-crag6410.c=763=static void crag6410_cfg_sdhci0(struct platform_device *dev, int width)
 --
 arch/arm/mach-s3c/mach-crag6410.c-765-	/* Set all the necessary GPG pins to special-function 2 */
 arch/arm/mach-s3c/mach-crag6410.c:766:	s3c_gpio_cfgrange_nopull(S3C64XX_GPG(0), 2 + width, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/mach-crag6410.c-767-
 --
 arch/arm/mach-s3c/s3c64xx.c=269=static int s3c_irq_eint_set_type(struct irq_data *data, unsigned int type)
 --
 arch/arm/mach-s3c/s3c64xx.c-330-		pin = S3C64XX_GPN(offs);
 arch/arm/mach-s3c/s3c64xx.c:331:		pin_val = S3C_GPIO_SFN(2);
 arch/arm/mach-s3c/s3c64xx.c-332-	} else if (offs < 23) {
 arch/arm/mach-s3c/s3c64xx.c-333-		pin = S3C64XX_GPL(offs + 8 - 16);
 arch/arm/mach-s3c/s3c64xx.c:334:		pin_val = S3C_GPIO_SFN(3);
 arch/arm/mach-s3c/s3c64xx.c-335-	} else {
 arch/arm/mach-s3c/s3c64xx.c-336-		pin = S3C64XX_GPM(offs - 23);
 arch/arm/mach-s3c/s3c64xx.c:337:		pin_val = S3C_GPIO_SFN(3);
 arch/arm/mach-s3c/s3c64xx.c-338-	}
 --
 arch/arm/mach-s3c/setup-fb-24bpp-s3c64xx.c=18=void s3c64xx_fb_gpio_setup_24bpp(void)
 arch/arm/mach-s3c/setup-fb-24bpp-s3c64xx.c-19-{
 arch/arm/mach-s3c/setup-fb-24bpp-s3c64xx.c:20:	s3c_gpio_cfgrange_nopull(S3C64XX_GPI(0), 16, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/setup-fb-24bpp-s3c64xx.c:21:	s3c_gpio_cfgrange_nopull(S3C64XX_GPJ(0), 12, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/setup-fb-24bpp-s3c64xx.c-22-}
 --
 arch/arm/mach-s3c/setup-i2c0-s3c64xx.c=20=void s3c_i2c0_cfg_gpio(struct platform_device *dev)
 --
 arch/arm/mach-s3c/setup-i2c0-s3c64xx.c-22-	s3c_gpio_cfgall_range(S3C64XX_GPB(5), 2,
 arch/arm/mach-s3c/setup-i2c0-s3c64xx.c:23:			      S3C_GPIO_SFN(2), S3C_GPIO_PULL_UP);
 arch/arm/mach-s3c/setup-i2c0-s3c64xx.c-24-}
 --
 arch/arm/mach-s3c/setup-i2c1-s3c64xx.c=20=void s3c_i2c1_cfg_gpio(struct platform_device *dev)
 --
 arch/arm/mach-s3c/setup-i2c1-s3c64xx.c-22-	s3c_gpio_cfgall_range(S3C64XX_GPB(2), 2,
 arch/arm/mach-s3c/setup-i2c1-s3c64xx.c:23:			      S3C_GPIO_SFN(6), S3C_GPIO_PULL_UP);
 arch/arm/mach-s3c/setup-i2c1-s3c64xx.c-24-}
 --
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c=13=void samsung_keypad_cfg_gpio(unsigned int rows, unsigned int cols)
 --
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c-15-	/* Set all the necessary GPK pins to special-function 3: KP_ROW[x] */
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c:16:	s3c_gpio_cfgrange_nopull(S3C64XX_GPK(8), rows, S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c-17-
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c-18-	/* Set all the necessary GPL pins to special-function 3: KP_COL[x] */
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c:19:	s3c_gpio_cfgrange_nopull(S3C64XX_GPL(0), cols, S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c-20-}
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c=20=void s3c64xx_setup_sdhci0_cfg_gpio(struct platform_device *dev, int width)
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-24-	/* Set all the necessary GPG pins to special-function 2 */
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:25:	s3c_gpio_cfgrange_nopull(S3C64XX_GPG(0), 2 + width, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-26-
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-28-		s3c_gpio_setpull(S3C64XX_GPG(6), S3C_GPIO_PULL_UP);
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:29:		s3c_gpio_cfgpin(S3C64XX_GPG(6), S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-30-	}
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c=33=void s3c64xx_setup_sdhci1_cfg_gpio(struct platform_device *dev, int width)
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-37-	/* Set all the necessary GPH pins to special-function 2 */
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:38:	s3c_gpio_cfgrange_nopull(S3C64XX_GPH(0), 2 + width, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-39-
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-41-		s3c_gpio_setpull(S3C64XX_GPG(6), S3C_GPIO_PULL_UP);
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:42:		s3c_gpio_cfgpin(S3C64XX_GPG(6), S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-43-	}
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c=46=void s3c64xx_setup_sdhci2_cfg_gpio(struct platform_device *dev, int width)
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-48-	/* Set all the necessary GPH pins to special-function 3 */
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:49:	s3c_gpio_cfgrange_nopull(S3C64XX_GPH(6), width, S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-50-
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-51-	/* Set all the necessary GPC pins to special-function 3 */
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:52:	s3c_gpio_cfgrange_nopull(S3C64XX_GPC(4), 2, S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-53-}
 --
 arch/arm/mach-s3c/setup-spi-s3c64xx.c=12=int s3c64xx_spi0_cfg_gpio(void)
 --
 arch/arm/mach-s3c/setup-spi-s3c64xx.c-14-	s3c_gpio_cfgall_range(S3C64XX_GPC(0), 3,
 arch/arm/mach-s3c/setup-spi-s3c64xx.c:15:				S3C_GPIO_SFN(2), S3C_GPIO_PULL_UP);
 arch/arm/mach-s3c/setup-spi-s3c64xx.c-16-	return 0;
 --
 arch/arm64/include/uapi/asm/kvm.h=389=enum {
 --
 arch/arm64/include/uapi/asm/kvm.h-479-#define KVM_PSCI_FN_BASE		0x95c1ba5e
 arch/arm64/include/uapi/asm/kvm.h:480:#define KVM_PSCI_FN(n)			(KVM_PSCI_FN_BASE + (n))
 arch/arm64/include/uapi/asm/kvm.h-481-
 arch/arm64/include/uapi/asm/kvm.h:482:#define KVM_PSCI_FN_CPU_SUSPEND		KVM_PSCI_FN(0)
 arch/arm64/include/uapi/asm/kvm.h:483:#define KVM_PSCI_FN_CPU_OFF		KVM_PSCI_FN(1)
 arch/arm64/include/uapi/asm/kvm.h:484:#define KVM_PSCI_FN_CPU_ON		KVM_PSCI_FN(2)
 arch/arm64/include/uapi/asm/kvm.h:485:#define KVM_PSCI_FN_MIGRATE		KVM_PSCI_FN(3)
 arch/arm64/include/uapi/asm/kvm.h-486-
 --
 arch/arm64/kvm/hyp/nvhe/psci-relay.c=56=static bool is_psci_0_2_call(u64 func_id)
 --
 arch/arm64/kvm/hyp/nvhe/psci-relay.c-58-	/* SMCCC reserves IDs 0x00-1F with the given 32/64-bit base for PSCI. */
 arch/arm64/kvm/hyp/nvhe/psci-relay.c:59:	return (PSCI_0_2_FN(0) <= func_id && func_id <= PSCI_0_2_FN(31)) ||
 arch/arm64/kvm/hyp/nvhe/psci-relay.c-60-	       (PSCI_0_2_FN64(0) <= func_id && func_id <= PSCI_0_2_FN64(31));
 --
 arch/arm64/kvm/hypercalls.c=70=static bool kvm_smccc_default_allowed(u32 func_id)
 --
 arch/arm64/kvm/hypercalls.c-90-		 */
 arch/arm64/kvm/hypercalls.c:91:		if (func_id >= KVM_PSCI_FN(0) && func_id <= KVM_PSCI_FN(3))
 arch/arm64/kvm/hypercalls.c-92-			return true;
 --
 arch/arm64/kvm/mmu.c=35=static unsigned long __ro_after_init io_map_base;
 arch/arm64/kvm/mmu.c-36-
 arch/arm64/kvm/mmu.c:37:#define KVM_PGT_FN(fn)		(!is_protected_kvm_enabled() ? fn : p ## fn)
 arch/arm64/kvm/mmu.c-38-
 --
 arch/arm64/kvm/mmu.c=119=static int kvm_mmu_split_huge_pages(struct kvm *kvm, phys_addr_t addr,
 --
 arch/arm64/kvm/mmu.c-154-		next = __stage2_range_addr_end(addr, end, chunk_size);
 arch/arm64/kvm/mmu.c:155:		ret = KVM_PGT_FN(kvm_pgtable_stage2_split)(pgt, addr, next - addr, cache);
 arch/arm64/kvm/mmu.c-156-		if (ret)
 --
 arch/arm64/kvm/mmu.c=230=static void stage2_free_unlinked_table_rcu_cb(struct rcu_head *head)
 --
 arch/arm64/kvm/mmu.c-235-
 arch/arm64/kvm/mmu.c:236:	KVM_PGT_FN(kvm_pgtable_stage2_free_unlinked)(&kvm_s2_mm_ops, pgtable, level);
 arch/arm64/kvm/mmu.c-237-}
 --
 arch/arm64/kvm/mmu.c=327=static void __unmap_stage2_range(struct kvm_s2_mmu *mmu, phys_addr_t start, u64 size,
 --
 arch/arm64/kvm/mmu.c-334-	WARN_ON(size & ~PAGE_MASK);
 arch/arm64/kvm/mmu.c:335:	WARN_ON(stage2_apply_range(mmu, start, end, KVM_PGT_FN(kvm_pgtable_stage2_unmap),
 arch/arm64/kvm/mmu.c-336-				   may_block));
 --
 arch/arm64/kvm/mmu.c=345=void kvm_stage2_flush_range(struct kvm_s2_mmu *mmu, phys_addr_t addr, phys_addr_t end)
 arch/arm64/kvm/mmu.c-346-{
 arch/arm64/kvm/mmu.c:347:	stage2_apply_range_resched(mmu, addr, end, KVM_PGT_FN(kvm_pgtable_stage2_flush));
 arch/arm64/kvm/mmu.c-348-}
 --
 arch/arm64/kvm/mmu.c=921=int kvm_init_stage2_mmu(struct kvm *kvm, struct kvm_s2_mmu *mmu, unsigned long type)
 --
 arch/arm64/kvm/mmu.c-952-	mmu->arch = &kvm->arch;
 arch/arm64/kvm/mmu.c:953:	err = KVM_PGT_FN(kvm_pgtable_stage2_init)(pgt, mmu, &kvm_s2_mm_ops);
 arch/arm64/kvm/mmu.c-954-	if (err)
 --
 arch/arm64/kvm/mmu.c-981-out_destroy_pgtable:
 arch/arm64/kvm/mmu.c:982:	KVM_PGT_FN(kvm_pgtable_stage2_destroy)(pgt);
 arch/arm64/kvm/mmu.c-983-out_free_pgtable:
 --
 arch/arm64/kvm/mmu.c=1064=void kvm_free_stage2_pgd(struct kvm_s2_mmu *mmu)
 --
 arch/arm64/kvm/mmu.c-1078-	if (pgt) {
 arch/arm64/kvm/mmu.c:1079:		KVM_PGT_FN(kvm_pgtable_stage2_destroy)(pgt);
 arch/arm64/kvm/mmu.c-1080-		kfree(pgt);
 --
 arch/arm64/kvm/mmu.c=1139=int kvm_phys_addr_ioremap(struct kvm *kvm, phys_addr_t guest_ipa,
 --
 arch/arm64/kvm/mmu.c-1163-		write_lock(&kvm->mmu_lock);
 arch/arm64/kvm/mmu.c:1164:		ret = KVM_PGT_FN(kvm_pgtable_stage2_map)(pgt, addr, PAGE_SIZE,
 arch/arm64/kvm/mmu.c-1165-				 pa, prot, &cache, 0);
 --
 arch/arm64/kvm/mmu.c=1183=void kvm_stage2_wp_range(struct kvm_s2_mmu *mmu, phys_addr_t addr, phys_addr_t end)
 arch/arm64/kvm/mmu.c-1184-{
 arch/arm64/kvm/mmu.c:1185:	stage2_apply_range_resched(mmu, addr, end, KVM_PGT_FN(kvm_pgtable_stage2_wrprotect));
 arch/arm64/kvm/mmu.c-1186-}
 --
 arch/arm64/kvm/mmu.c=1480=static int user_mem_abort(struct kvm_vcpu *vcpu, phys_addr_t fault_ipa,
 --
 arch/arm64/kvm/mmu.c-1781-		prot &= ~KVM_NV_GUEST_MAP_SZ;
 arch/arm64/kvm/mmu.c:1782:		ret = KVM_PGT_FN(kvm_pgtable_stage2_relax_perms)(pgt, fault_ipa, prot, flags);
 arch/arm64/kvm/mmu.c-1783-	} else {
 arch/arm64/kvm/mmu.c:1784:		ret = KVM_PGT_FN(kvm_pgtable_stage2_map)(pgt, fault_ipa, vma_pagesize,
 arch/arm64/kvm/mmu.c-1785-					     __pfn_to_phys(pfn), prot,
 --
 arch/arm64/kvm/mmu.c=1801=static void handle_access_fault(struct kvm_vcpu *vcpu, phys_addr_t fault_ipa)
 --
 arch/arm64/kvm/mmu.c-1809-	mmu = vcpu->arch.hw_mmu;
 arch/arm64/kvm/mmu.c:1810:	KVM_PGT_FN(kvm_pgtable_stage2_mkyoung)(mmu->pgt, fault_ipa, flags);
 arch/arm64/kvm/mmu.c-1811-	read_unlock(&vcpu->kvm->mmu_lock);
 --
 arch/arm64/kvm/mmu.c=2009=bool kvm_age_gfn(struct kvm *kvm, struct kvm_gfn_range *range)
 --
 arch/arm64/kvm/mmu.c-2015-
 arch/arm64/kvm/mmu.c:2016:	return KVM_PGT_FN(kvm_pgtable_stage2_test_clear_young)(kvm->arch.mmu.pgt,
 arch/arm64/kvm/mmu.c-2017-						   range->start << PAGE_SHIFT,
 --
 arch/arm64/kvm/mmu.c=2025=bool kvm_test_age_gfn(struct kvm *kvm, struct kvm_gfn_range *range)
 --
 arch/arm64/kvm/mmu.c-2031-
 arch/arm64/kvm/mmu.c:2032:	return KVM_PGT_FN(kvm_pgtable_stage2_test_clear_young)(kvm->arch.mmu.pgt,
 arch/arm64/kvm/mmu.c-2033-						   range->start << PAGE_SHIFT,
 --
 arch/arm64/mm/init.c=156=int pfn_is_map_memory(unsigned long pfn)
 --
 arch/arm64/mm/init.c-160-	/* avoid false positives for bogus PFNs, see comment in pfn_valid() */
 arch/arm64/mm/init.c:161:	if (PHYS_PFN(addr) != pfn)
 arch/arm64/mm/init.c-162-		return 0;
 --
 arch/arm64/mm/ioremap.c=51=bool arch_memremap_can_ram_remap(resource_size_t offset, size_t size,
 --
 arch/arm64/mm/ioremap.c-53-{
 arch/arm64/mm/ioremap.c:54:	unsigned long pfn = PHYS_PFN(offset);
 arch/arm64/mm/ioremap.c-55-
 --
 arch/arm64/mm/mmu.c=1472=static void validate_bootmem_online(void)
 --
 arch/arm64/mm/mmu.c-1487-		for (addr = start; addr < end; addr += (1UL << PA_SECTION_SHIFT)) {
 arch/arm64/mm/mmu.c:1488:			ms = __pfn_to_section(PHYS_PFN(addr));
 arch/arm64/mm/mmu.c-1489-
 --
 arch/loongarch/kernel/numa.c=243=int __init init_numa_memory(void)
 --
 arch/loongarch/kernel/numa.c-274-	}
 arch/loongarch/kernel/numa.c:275:	max_low_pfn = PHYS_PFN(memblock_end_of_DRAM());
 arch/loongarch/kernel/numa.c-276-
 --
 arch/loongarch/kernel/setup.c=389=static void __init arch_mem_init(char **cmdline_p)
 --
 arch/loongarch/kernel/setup.c-391-	/* Recalculate max_low_pfn for "mem=xxx" */
 arch/loongarch/kernel/setup.c:392:	max_pfn = max_low_pfn = PHYS_PFN(memblock_end_of_DRAM());
 arch/loongarch/kernel/setup.c-393-
 --
 arch/m68k/include/asm/page_no.h=27=static inline void *pfn_to_virt(unsigned long pfn)
 --
 arch/m68k/include/asm/page_no.h-37-
 arch/m68k/include/asm/page_no.h:38:#define ARCH_PFN_OFFSET PHYS_PFN(PAGE_OFFSET_RAW)
 arch/m68k/include/asm/page_no.h-39-
 --
 arch/mips/include/asm/sn/sn0/hubmd.h-509-
 arch/mips/include/asm/sn/sn0/hubmd.h:510:#define MD_MIG_CANDIDATE_HWPFN(value) ((value) & MD_MIG_CANDIDATE_ADDR_MASK)
 arch/mips/include/asm/sn/sn0/hubmd.h-511-
 --
 arch/mips/loongson64/numa.c=126=static __init void prom_meminit(void)
 --
 arch/mips/loongson64/numa.c-139-	}
 arch/mips/loongson64/numa.c:140:	max_low_pfn = PHYS_PFN(memblock_end_of_DRAM());
 arch/mips/loongson64/numa.c-141-
 --
 arch/mips/pci/fixup-cobalt.c=54=static void qube_raq_galileo_early_fixup(struct pci_dev *dev)
 arch/mips/pci/fixup-cobalt.c-55-{
 arch/mips/pci/fixup-cobalt.c:56:	if (dev->devfn == PCI_DEVFN(0, 0) &&
 arch/mips/pci/fixup-cobalt.c-57-		(dev->class >> 8) == PCI_CLASS_MEMORY_OTHER) {
 --
 arch/mips/pci/fixup-cobalt.c=91=static void qube_raq_galileo_fixup(struct pci_dev *dev)
 arch/mips/pci/fixup-cobalt.c-92-{
 arch/mips/pci/fixup-cobalt.c:93:	if (dev->devfn != PCI_DEVFN(0, 0))
 arch/mips/pci/fixup-cobalt.c-94-		return;
 --
 arch/mips/pci/fixup-sni.c=133=int pcibios_map_irq(const struct pci_dev *dev, u8 slot, u8 pin)
 --
 arch/mips/pci/fixup-sni.c-143-				dev = dev->bus->self;
 arch/mips/pci/fixup-sni.c:144:			if (dev && dev->devfn >= PCI_DEVFN(4, 0))
 arch/mips/pci/fixup-sni.c-145-				slot = 5;
 --
 arch/mips/pci/ops-bcm63xx.c=362=static int bcm63xx_cb_read(struct pci_bus *bus, unsigned int devfn,
 --
 arch/mips/pci/ops-bcm63xx.c-379-		return bcm63xx_do_cfg_read(0, 0,
 arch/mips/pci/ops-bcm63xx.c:380:					   PCI_DEVFN(CARDBUS_PCI_IDSEL, 0),
 arch/mips/pci/ops-bcm63xx.c-381-					   where, size, val);
 --
 arch/mips/pci/ops-bcm63xx.c=386=static int bcm63xx_cb_write(struct pci_bus *bus, unsigned int devfn,
 --
 arch/mips/pci/ops-bcm63xx.c-397-		return bcm63xx_do_cfg_write(0, 0,
 arch/mips/pci/ops-bcm63xx.c:398:					    PCI_DEVFN(CARDBUS_PCI_IDSEL, 0),
 arch/mips/pci/ops-bcm63xx.c-399-					    where, size, val);
 --
 arch/mips/pci/ops-gt64xxx_pci0.c=30=static int gt64xxx_pci0_pcibios_config_access(unsigned char access_type,
 --
 arch/mips/pci/ops-gt64xxx_pci0.c-35-
 arch/mips/pci/ops-gt64xxx_pci0.c:36:	if ((busnum == 0) && (devfn >= PCI_DEVFN(31, 0)))
 arch/mips/pci/ops-gt64xxx_pci0.c-37-		return -1;	/* Because of a bug in the galileo (for slot 31). */
 --
 arch/mips/pci/ops-loongson2.c=182=void _rdmsr(u32 msr, u32 *hi, u32 *lo)
 --
 arch/mips/pci/ops-loongson2.c-186-	};
 arch/mips/pci/ops-loongson2.c:187:	u32 devfn = PCI_DEVFN(PCI_IDSEL_CS5536, 0);
 arch/mips/pci/ops-loongson2.c-188-	unsigned long flags;
 --
 arch/mips/pci/ops-loongson2.c=198=void _wrmsr(u32 msr, u32 hi, u32 lo)
 --
 arch/mips/pci/ops-loongson2.c-202-	};
 arch/mips/pci/ops-loongson2.c:203:	u32 devfn = PCI_DEVFN(PCI_IDSEL_CS5536, 0);
 arch/mips/pci/ops-loongson2.c-204-	unsigned long flags;
 --
 arch/mips/pci/ops-sni.c=24=static int set_config_address(unsigned int busno, unsigned int devfn, int reg)
 --
 arch/mips/pci/ops-sni.c-28-
 arch/mips/pci/ops-sni.c:29:	if (busno == 0 && devfn >= PCI_DEVFN(8, 0))
 arch/mips/pci/ops-sni.c-30-		return PCIBIOS_DEVICE_NOT_FOUND;
 --
 arch/mips/pci/ops-tx4927.c=58=static int mkaddr(struct pci_bus *bus, unsigned int devfn, int where,
 --
 arch/mips/pci/ops-tx4927.c-61-	if (bus->parent == NULL &&
 arch/mips/pci/ops-tx4927.c:62:	    devfn >= PCI_DEVFN(TX4927_PCIC_MAX_DEVNU, 0))
 arch/mips/pci/ops-tx4927.c-63-		return PCIBIOS_DEVICE_NOT_FOUND;
 --
 arch/mips/pci/pci-ar2315.c=308=static int ar2315_pci_host_setup(struct ar2315_pci_ctrl *apc)
 arch/mips/pci/pci-ar2315.c-309-{
 arch/mips/pci/pci-ar2315.c:310:	unsigned devfn = PCI_DEVFN(AR2315_PCI_HOST_SLOT, 0);
 arch/mips/pci/pci-ar2315.c-311-	int res;
 --
 arch/mips/pci/pci-bcm1480.c=189=static int __init bcm1480_pcibios_init(void)
 --
 arch/mips/pci/pci-bcm1480.c-213-	} else {
 arch/mips/pci/pci-bcm1480.c:214:		cmdreg = READCFG32(CFGOFFSET(0, PCI_DEVFN(PCI_BRIDGE_DEVICE, 0),
 arch/mips/pci/pci-bcm1480.c-215-					     PCI_COMMAND));
 --
 arch/mips/pci/pci-bcm1480.c-225-	/* turn on ExpMemEn */
 arch/mips/pci/pci-bcm1480.c:226:	cmdreg = READCFG32(CFGOFFSET(0, PCI_DEVFN(PCI_BRIDGE_DEVICE, 0), 0x40));
 arch/mips/pci/pci-bcm1480.c:227:	WRITECFG32(CFGOFFSET(0, PCI_DEVFN(PCI_BRIDGE_DEVICE, 0), 0x40),
 arch/mips/pci/pci-bcm1480.c-228-			cmdreg | 0x10);
 arch/mips/pci/pci-bcm1480.c:229:	cmdreg = READCFG32(CFGOFFSET(0, PCI_DEVFN(PCI_BRIDGE_DEVICE, 0), 0x40));
 arch/mips/pci/pci-bcm1480.c-230-
 --
 arch/mips/pci/pci-sb1250.c=196=static int __init sb1250_pcibios_init(void)
 --
 arch/mips/pci/pci-sb1250.c-224-		    READCFG32(CFGOFFSET
 arch/mips/pci/pci-sb1250.c:225:			      (0, PCI_DEVFN(PCI_BRIDGE_DEVICE, 0),
 arch/mips/pci/pci-sb1250.c-226-			       PCI_COMMAND));
 --
 arch/mips/pci/pci-sb1250.c-253-
 arch/mips/pci/pci-sb1250.c:254:	cmdreg = READCFG32(CFGOFFSET(0, PCI_DEVFN(LDT_BRIDGE_DEVICE, 0),
 arch/mips/pci/pci-sb1250.c-255-				     PCI_COMMAND));
 --
 arch/mips/sgi-ip27/ip27-memory.c=392=void __init prom_meminit(void)
 --
 arch/mips/sgi-ip27/ip27-memory.c-397-	szmem();
 arch/mips/sgi-ip27/ip27-memory.c:398:	max_low_pfn = PHYS_PFN(memblock_end_of_DRAM());
 arch/mips/sgi-ip27/ip27-memory.c-399-
 --
 arch/powerpc/include/asm/rtas.h=521=extern struct mutex rtas_ibm_physical_attestation_lock;
 --
 arch/powerpc/include/asm/rtas.h-527- * @busno: The bus number.
 arch/powerpc/include/asm/rtas.h:528: * @devfn: The device and function number as encoded by PCI_DEVFN().
 arch/powerpc/include/asm/rtas.h-529- * @reg: The register number.
 --
 arch/powerpc/include/asm/video.h=7=static inline pgprot_t pgprot_framebuffer(pgprot_t prot,
 --
 arch/powerpc/include/asm/video.h-10-{
 arch/powerpc/include/asm/video.h:11:	return __phys_mem_access_prot(PHYS_PFN(offset), vm_end - vm_start, prot);
 arch/powerpc/include/asm/video.h-12-}
 --
 arch/powerpc/kernel/fadump.c=1201=static void fadump_release_reserved_area(u64 start, u64 end)
 --
 arch/powerpc/kernel/fadump.c-1206-
 arch/powerpc/kernel/fadump.c:1207:	spfn = PHYS_PFN(start);
 arch/powerpc/kernel/fadump.c:1208:	epfn = PHYS_PFN(end);
 arch/powerpc/kernel/fadump.c-1209-
 --
 arch/powerpc/kernel/paca.c=59=static void *__init alloc_shared_lppaca(unsigned long size, unsigned long limit,
 --
 arch/powerpc/kernel/paca.c-84-		memblock_set_bottom_up(false);
 arch/powerpc/kernel/paca.c:85:		uv_share_page(PHYS_PFN(__pa(shared_lppaca)),
 arch/powerpc/kernel/paca.c-86-			      shared_lppaca_total_size >> PAGE_SHIFT);
 --
 arch/powerpc/kernel/pci-hotplug.c=96=static void traverse_siblings_and_scan_slot(struct device_node *start, struct pci_bus *bus)
 --
 arch/powerpc/kernel/pci-hotplug.c-106-			slotno = PCI_SLOT(PCI_DN(start->child)->devfn);
 arch/powerpc/kernel/pci-hotplug.c:107:			pci_scan_slot(bus, PCI_DEVFN(slotno, 0));
 arch/powerpc/kernel/pci-hotplug.c-108-			return;
 --
 arch/powerpc/kernel/pci-hotplug.c-119-				slotno = PCI_SLOT(PCI_DN(dn)->devfn);
 arch/powerpc/kernel/pci-hotplug.c:120:				pci_scan_slot(bus, PCI_DEVFN(slotno, 0));
 arch/powerpc/kernel/pci-hotplug.c-121-			}
 --
 arch/powerpc/mm/init_64.c=320=static void __ref __vmemmap_free(unsigned long start, unsigned long end,
 --
 arch/powerpc/mm/init_64.c-354-		nr_pages = 1 << page_order;
 arch/powerpc/mm/init_64.c:355:		base_pfn = PHYS_PFN(addr);
 arch/powerpc/mm/init_64.c-356-
 --
 arch/powerpc/mm/kasan/8xx.c=12=kasan_init_shadow_8M(unsigned long k_start, unsigned long k_end, void *block)
 --
 arch/powerpc/mm/kasan/8xx.c-29-		for (i = 0; i < PTRS_PER_PTE; i++) {
 arch/powerpc/mm/kasan/8xx.c:30:			pte_t pte = pte_mkhuge(pfn_pte(PHYS_PFN(__pa(block + i * PAGE_SIZE)), PAGE_KERNEL));
 arch/powerpc/mm/kasan/8xx.c-31-
 --
 arch/powerpc/mm/kasan/8xx.c=40=int __init kasan_init_region(void *start, size_t size)
 --
 arch/powerpc/mm/kasan/8xx.c-67-		void *va = block + k_cur - k_start;
 arch/powerpc/mm/kasan/8xx.c:68:		pte_t pte = pfn_pte(PHYS_PFN(__pa(va)), PAGE_KERNEL);
 arch/powerpc/mm/kasan/8xx.c-69-
 --
 arch/powerpc/mm/kasan/book3s_32.c=9=int __init kasan_init_region(void *start, size_t size)
 --
 arch/powerpc/mm/kasan/book3s_32.c-51-		pmd_t *pmd = pmd_off_k(k_cur);
 arch/powerpc/mm/kasan/book3s_32.c:52:		pte_t pte = pfn_pte(PHYS_PFN(phys + k_cur - k_nobat), PAGE_KERNEL);
 arch/powerpc/mm/kasan/book3s_32.c-53-
 --
 arch/powerpc/mm/kasan/init_32.c=21=static void __init kasan_populate_pte(pte_t *ptep, pgprot_t prot)
 --
 arch/powerpc/mm/kasan/init_32.c-27-	for (i = 0; i < PTRS_PER_PTE; i++, ptep++)
 arch/powerpc/mm/kasan/init_32.c:28:		__set_pte_at(&init_mm, va, ptep, pfn_pte(PHYS_PFN(pa), prot), 1);
 arch/powerpc/mm/kasan/init_32.c-29-}
 --
 arch/powerpc/mm/kasan/init_32.c=55=int __init __weak kasan_init_region(void *start, size_t size)
 --
 arch/powerpc/mm/kasan/init_32.c-74-		void *va = block + k_cur - k_start;
 arch/powerpc/mm/kasan/init_32.c:75:		pte_t pte = pfn_pte(PHYS_PFN(__pa(va)), PAGE_KERNEL);
 arch/powerpc/mm/kasan/init_32.c-76-
 --
 arch/powerpc/mm/kasan/init_32.c=101=static void __init kasan_remap_early_shadow_ro(void)
 --
 arch/powerpc/mm/kasan/init_32.c-108-	kasan_update_early_region(KASAN_SHADOW_START, KASAN_SHADOW_END,
 arch/powerpc/mm/kasan/init_32.c:109:				  pfn_pte(PHYS_PFN(pa), prot));
 arch/powerpc/mm/kasan/init_32.c-110-}
 --
 arch/powerpc/platforms/fsl_uli1575.c=320=static void hpcd_final_uli5288(struct pci_dev *dev)
 --
 arch/powerpc/platforms/fsl_uli1575.c-335-	oirq.args_count = 1;
 arch/powerpc/platforms/fsl_uli1575.c:336:	laddr[0] = (hose->first_busno << 16) | (PCI_DEVFN(31, 0) << 8);
 arch/powerpc/platforms/fsl_uli1575.c-337-	laddr[1] = laddr[2] = 0;
 --
 arch/powerpc/platforms/powernv/memtrace.c=48=static int memtrace_mmap(struct file *filp, struct vm_area_struct *vma)
 --
 arch/powerpc/platforms/powernv/memtrace.c-62-	vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
 arch/powerpc/platforms/powernv/memtrace.c:63:	return remap_pfn_range(vma, vma->vm_start, PHYS_PFN(ent->start) + vma->vm_pgoff,
 arch/powerpc/platforms/powernv/memtrace.c-64-			       vma->vm_end - vma->vm_start, vma->vm_page_prot);
 --
 arch/powerpc/platforms/powernv/memtrace.c=95=static u64 memtrace_alloc_node(u32 nid, u64 size)
 arch/powerpc/platforms/powernv/memtrace.c-96-{
 arch/powerpc/platforms/powernv/memtrace.c:97:	const unsigned long nr_pages = PHYS_PFN(size);
 arch/powerpc/platforms/powernv/memtrace.c-98-	unsigned long pfn, start_pfn;
 --
 arch/powerpc/platforms/powernv/memtrace.c=198=static int memtrace_free(int nid, u64 start, u64 size)
 --
 arch/powerpc/platforms/powernv/memtrace.c-200-	struct mhp_params params = { .pgprot = PAGE_KERNEL };
 arch/powerpc/platforms/powernv/memtrace.c:201:	const unsigned long nr_pages = PHYS_PFN(size);
 arch/powerpc/platforms/powernv/memtrace.c:202:	const unsigned long start_pfn = PHYS_PFN(start);
 arch/powerpc/platforms/powernv/memtrace.c-203-	unsigned long pfn;
 --
 arch/powerpc/platforms/pseries/svm.c=41=int set_memory_encrypted(unsigned long addr, int numpages)
 --
 arch/powerpc/platforms/pseries/svm.c-48-
 arch/powerpc/platforms/pseries/svm.c:49:	uv_unshare_page(PHYS_PFN(__pa(addr)), numpages);
 arch/powerpc/platforms/pseries/svm.c-50-
 --
 arch/powerpc/platforms/pseries/svm.c=54=int set_memory_decrypted(unsigned long addr, int numpages)
 --
 arch/powerpc/platforms/pseries/svm.c-61-
 arch/powerpc/platforms/pseries/svm.c:62:	uv_share_page(PHYS_PFN(__pa(addr)), numpages);
 arch/powerpc/platforms/pseries/svm.c-63-
 --
 arch/powerpc/platforms/pseries/svm.c=84=void dtl_cache_ctor(void *addr)
 arch/powerpc/platforms/pseries/svm.c-85-{
 arch/powerpc/platforms/pseries/svm.c:86:	unsigned long pfn = PHYS_PFN(__pa(addr));
 arch/powerpc/platforms/pseries/svm.c-87-	struct page *page = pfn_to_page(pfn);
 --
 arch/powerpc/sysdev/fsl_pci.c=901=u64 fsl_pci_immrbar_base(struct pci_controller *hose)
 --
 arch/powerpc/sysdev/fsl_pci.c-929-		pci_bus_read_config_dword(hose->bus,
]
]

10/2 2026/05/14 16:06 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 26684
							output: 34
							thoughts: 30
						

Thoughts:
Okay, here's my take on those thoughts, tailored for an expert audience, presented in the first person:

**Navigating the BPF Landscape: Function Numbers and Dependencies**

Right, so BPF_FUNC_csum_diff, that one's function ID 28, I remember that. Now, I need to look up function 109. This could be a good starting point for a deeper dive into the relationship between these two functions, potentially uncovering dependencies or uses. Maybe I'm troubleshooting, or maybe I'm optimizing something and need to understand the interactions. I'll need to check the relevant documentation and likely the kernel source code to grasp the context of function 109. Where does it fit in the chain? Is it a helper for csum_diff? Does it *call* csum_diff? Understanding their relationship is crucial for whatever I'm currently working on.



11/2 2026/05/14 16:06 tool grepper
0m Error:
log-in to see details

Args:
map[Expression:BPF_FUNC_[a-zA-Z0-9_]+ = 109]

Results:
map[Output:]

12/2 2026/05/14 16:06 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 26954
							output: 18
							thoughts: 26
						

Thoughts:
Here's my take on those thoughts:

**Analyzing BPF Function Definitions**

Alright, let's dive into this. My initial thought is to zero in on the core of the BPF (Berkeley Packet Filter) function definitions. I need to understand the fundamental building blocks. The most direct approach is to use `grep` - it's quick, efficient, and lets me scan the code with focused attention. I'll search for `BPF_FUNC_` within the `include/uapi/linux/bpf.h` header file. This should give me a solid overview of the available BPF functions, their naming conventions, and possibly some basic documentation or context from the surrounding code. This should give me a quick way to identify the BPF functions that are available for use. I'm hoping to get a quick snapshot of the landscape, so I can continue my work.



13/2 2026/05/14 16:07 tool grepper
0m Args:
map[Expression:FN\(.*\)]

Results:
map[Output:
Full output is too long, showing 500 out of 10883 lines.
Use more precise expression if possible.

[arch/alpha/kernel/core_marvel.c=507=mk_conf_addr(struct pci_bus *pbus, unsigned int devfn, int where)
 --
 arch/alpha/kernel/core_marvel.c-523-		/* Don't support idsel > 20 on primary bus.  */
 arch/alpha/kernel/core_marvel.c:524:		if (devfn >= PCI_DEVFN(21, 0))
 arch/alpha/kernel/core_marvel.c-525-			return addr;
 --
 arch/alpha/kernel/core_marvel.c=1019=marvel_agp_info(void)
 --
 arch/alpha/kernel/core_marvel.c-1040-		h = io7->ports[IO7_AGP_PORT].hose;
 arch/alpha/kernel/core_marvel.c:1041:		addr = (vuip)build_conf_addr(h, 0, PCI_DEVFN(5, 0), 0);
 arch/alpha/kernel/core_marvel.c-1042-
 --
 arch/alpha/kernel/sys_alcor.c=228=alcor_init_pci(void)
 --
 arch/alpha/kernel/sys_alcor.c-241-			      NULL);
 arch/alpha/kernel/sys_alcor.c:242:	if (dev && dev->devfn == PCI_DEVFN(6,0)) {
 arch/alpha/kernel/sys_alcor.c-243-		alpha_mv.sys.cia.gru_int_req_bits = XLT_GRU_INT_REQ_BITS; 
 --
 arch/arm/mach-footbridge/dc21285.c=37=dc21285_base_address(struct pci_bus *bus, unsigned int devfn)
 --
 arch/arm/mach-footbridge/dc21285.c-49-
 arch/arm/mach-footbridge/dc21285.c:50:			if (devfn < PCI_DEVFN(MAX_SLOTS, 0))
 arch/arm/mach-footbridge/dc21285.c-51-				addr = PCICFG0_BASE | 0xc00000 | (devfn << 8);
 --
 arch/arm/mach-s3c/dev-audio-s3c64xx.c=21=static int s3c64xx_i2s_cfg_gpio(struct platform_device *pdev)
 --
 arch/arm/mach-s3c/dev-audio-s3c64xx.c-32-	case 2:
 arch/arm/mach-s3c/dev-audio-s3c64xx.c:33:		s3c_gpio_cfgpin(S3C64XX_GPC(4), S3C_GPIO_SFN(5));
 arch/arm/mach-s3c/dev-audio-s3c64xx.c:34:		s3c_gpio_cfgpin(S3C64XX_GPC(5), S3C_GPIO_SFN(5));
 arch/arm/mach-s3c/dev-audio-s3c64xx.c:35:		s3c_gpio_cfgpin(S3C64XX_GPC(7), S3C_GPIO_SFN(5));
 arch/arm/mach-s3c/dev-audio-s3c64xx.c:36:		s3c_gpio_cfgpin_range(S3C64XX_GPH(6), 4, S3C_GPIO_SFN(5));
 arch/arm/mach-s3c/dev-audio-s3c64xx.c-37-		return 0;
 --
 arch/arm/mach-s3c/dev-audio-s3c64xx.c-43-
 arch/arm/mach-s3c/dev-audio-s3c64xx.c:44:	s3c_gpio_cfgpin_range(base, 5, S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/dev-audio-s3c64xx.c-45-
 --
 arch/arm/mach-s3c/gpio-cfg.h=49=struct samsung_gpio_cfg {
 --
 arch/arm/mach-s3c/gpio-cfg.h-66-#define S3C_GPIO_OUTPUT	(S3C_GPIO_SPECIAL(1))
 arch/arm/mach-s3c/gpio-cfg.h:67:#define S3C_GPIO_SFN(x)	(S3C_GPIO_SPECIAL(x))
 arch/arm/mach-s3c/gpio-cfg.h-68-
 --
 arch/arm/mach-s3c/gpio-cfg.h-81- * The @to parameter can be one of the generic S3C_GPIO_INPUT, S3C_GPIO_OUTPUT
 arch/arm/mach-s3c/gpio-cfg.h:82: * or S3C_GPIO_SFN() to indicate one of the possible values that the helper
 arch/arm/mach-s3c/gpio-cfg.h-83- * will then generate the correct bit mask and shift for the configuration.
 --
 arch/arm/mach-s3c/gpio-cfg.h-88- *	for (gpio = start; gpio < end; gpio++)
 arch/arm/mach-s3c/gpio-cfg.h:89: *		s3c_gpio_cfgpin(gpio, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/gpio-cfg.h-90- *
 --
 arch/arm/mach-s3c/mach-crag6410.c=124=static void crag6410_lcd_power_set(struct plat_lcd_data *pd, unsigned int power)
 --
 arch/arm/mach-s3c/mach-crag6410.c-130-		msleep(1);
 arch/arm/mach-s3c/mach-crag6410.c:131:		s3c_gpio_cfgpin(S3C64XX_GPF(14), S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/mach-crag6410.c-132-	} else {
 --
 arch/arm/mach-s3c/mach-crag6410.c=763=static void crag6410_cfg_sdhci0(struct platform_device *dev, int width)
 --
 arch/arm/mach-s3c/mach-crag6410.c-765-	/* Set all the necessary GPG pins to special-function 2 */
 arch/arm/mach-s3c/mach-crag6410.c:766:	s3c_gpio_cfgrange_nopull(S3C64XX_GPG(0), 2 + width, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/mach-crag6410.c-767-
 --
 arch/arm/mach-s3c/s3c64xx.c=269=static int s3c_irq_eint_set_type(struct irq_data *data, unsigned int type)
 --
 arch/arm/mach-s3c/s3c64xx.c-330-		pin = S3C64XX_GPN(offs);
 arch/arm/mach-s3c/s3c64xx.c:331:		pin_val = S3C_GPIO_SFN(2);
 arch/arm/mach-s3c/s3c64xx.c-332-	} else if (offs < 23) {
 arch/arm/mach-s3c/s3c64xx.c-333-		pin = S3C64XX_GPL(offs + 8 - 16);
 arch/arm/mach-s3c/s3c64xx.c:334:		pin_val = S3C_GPIO_SFN(3);
 arch/arm/mach-s3c/s3c64xx.c-335-	} else {
 arch/arm/mach-s3c/s3c64xx.c-336-		pin = S3C64XX_GPM(offs - 23);
 arch/arm/mach-s3c/s3c64xx.c:337:		pin_val = S3C_GPIO_SFN(3);
 arch/arm/mach-s3c/s3c64xx.c-338-	}
 --
 arch/arm/mach-s3c/setup-fb-24bpp-s3c64xx.c=18=void s3c64xx_fb_gpio_setup_24bpp(void)
 arch/arm/mach-s3c/setup-fb-24bpp-s3c64xx.c-19-{
 arch/arm/mach-s3c/setup-fb-24bpp-s3c64xx.c:20:	s3c_gpio_cfgrange_nopull(S3C64XX_GPI(0), 16, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/setup-fb-24bpp-s3c64xx.c:21:	s3c_gpio_cfgrange_nopull(S3C64XX_GPJ(0), 12, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/setup-fb-24bpp-s3c64xx.c-22-}
 --
 arch/arm/mach-s3c/setup-i2c0-s3c64xx.c=20=void s3c_i2c0_cfg_gpio(struct platform_device *dev)
 --
 arch/arm/mach-s3c/setup-i2c0-s3c64xx.c-22-	s3c_gpio_cfgall_range(S3C64XX_GPB(5), 2,
 arch/arm/mach-s3c/setup-i2c0-s3c64xx.c:23:			      S3C_GPIO_SFN(2), S3C_GPIO_PULL_UP);
 arch/arm/mach-s3c/setup-i2c0-s3c64xx.c-24-}
 --
 arch/arm/mach-s3c/setup-i2c1-s3c64xx.c=20=void s3c_i2c1_cfg_gpio(struct platform_device *dev)
 --
 arch/arm/mach-s3c/setup-i2c1-s3c64xx.c-22-	s3c_gpio_cfgall_range(S3C64XX_GPB(2), 2,
 arch/arm/mach-s3c/setup-i2c1-s3c64xx.c:23:			      S3C_GPIO_SFN(6), S3C_GPIO_PULL_UP);
 arch/arm/mach-s3c/setup-i2c1-s3c64xx.c-24-}
 --
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c=13=void samsung_keypad_cfg_gpio(unsigned int rows, unsigned int cols)
 --
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c-15-	/* Set all the necessary GPK pins to special-function 3: KP_ROW[x] */
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c:16:	s3c_gpio_cfgrange_nopull(S3C64XX_GPK(8), rows, S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c-17-
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c-18-	/* Set all the necessary GPL pins to special-function 3: KP_COL[x] */
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c:19:	s3c_gpio_cfgrange_nopull(S3C64XX_GPL(0), cols, S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/setup-keypad-s3c64xx.c-20-}
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c=20=void s3c64xx_setup_sdhci0_cfg_gpio(struct platform_device *dev, int width)
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-24-	/* Set all the necessary GPG pins to special-function 2 */
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:25:	s3c_gpio_cfgrange_nopull(S3C64XX_GPG(0), 2 + width, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-26-
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-28-		s3c_gpio_setpull(S3C64XX_GPG(6), S3C_GPIO_PULL_UP);
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:29:		s3c_gpio_cfgpin(S3C64XX_GPG(6), S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-30-	}
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c=33=void s3c64xx_setup_sdhci1_cfg_gpio(struct platform_device *dev, int width)
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-37-	/* Set all the necessary GPH pins to special-function 2 */
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:38:	s3c_gpio_cfgrange_nopull(S3C64XX_GPH(0), 2 + width, S3C_GPIO_SFN(2));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-39-
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-41-		s3c_gpio_setpull(S3C64XX_GPG(6), S3C_GPIO_PULL_UP);
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:42:		s3c_gpio_cfgpin(S3C64XX_GPG(6), S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-43-	}
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c=46=void s3c64xx_setup_sdhci2_cfg_gpio(struct platform_device *dev, int width)
 --
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-48-	/* Set all the necessary GPH pins to special-function 3 */
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:49:	s3c_gpio_cfgrange_nopull(S3C64XX_GPH(6), width, S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-50-
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-51-	/* Set all the necessary GPC pins to special-function 3 */
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c:52:	s3c_gpio_cfgrange_nopull(S3C64XX_GPC(4), 2, S3C_GPIO_SFN(3));
 arch/arm/mach-s3c/setup-sdhci-gpio-s3c64xx.c-53-}
 --
 arch/arm/mach-s3c/setup-spi-s3c64xx.c=12=int s3c64xx_spi0_cfg_gpio(void)
 --
 arch/arm/mach-s3c/setup-spi-s3c64xx.c-14-	s3c_gpio_cfgall_range(S3C64XX_GPC(0), 3,
 arch/arm/mach-s3c/setup-spi-s3c64xx.c:15:				S3C_GPIO_SFN(2), S3C_GPIO_PULL_UP);
 arch/arm/mach-s3c/setup-spi-s3c64xx.c-16-	return 0;
 --
 arch/arm64/include/uapi/asm/kvm.h=389=enum {
 --
 arch/arm64/include/uapi/asm/kvm.h-479-#define KVM_PSCI_FN_BASE		0x95c1ba5e
 arch/arm64/include/uapi/asm/kvm.h:480:#define KVM_PSCI_FN(n)			(KVM_PSCI_FN_BASE + (n))
 arch/arm64/include/uapi/asm/kvm.h-481-
 arch/arm64/include/uapi/asm/kvm.h:482:#define KVM_PSCI_FN_CPU_SUSPEND		KVM_PSCI_FN(0)
 arch/arm64/include/uapi/asm/kvm.h:483:#define KVM_PSCI_FN_CPU_OFF		KVM_PSCI_FN(1)
 arch/arm64/include/uapi/asm/kvm.h:484:#define KVM_PSCI_FN_CPU_ON		KVM_PSCI_FN(2)
 arch/arm64/include/uapi/asm/kvm.h:485:#define KVM_PSCI_FN_MIGRATE		KVM_PSCI_FN(3)
 arch/arm64/include/uapi/asm/kvm.h-486-
 --
 arch/arm64/kvm/hyp/nvhe/psci-relay.c=56=static bool is_psci_0_2_call(u64 func_id)
 --
 arch/arm64/kvm/hyp/nvhe/psci-relay.c-58-	/* SMCCC reserves IDs 0x00-1F with the given 32/64-bit base for PSCI. */
 arch/arm64/kvm/hyp/nvhe/psci-relay.c:59:	return (PSCI_0_2_FN(0) <= func_id && func_id <= PSCI_0_2_FN(31)) ||
 arch/arm64/kvm/hyp/nvhe/psci-relay.c-60-	       (PSCI_0_2_FN64(0) <= func_id && func_id <= PSCI_0_2_FN64(31));
 --
 arch/arm64/kvm/hypercalls.c=70=static bool kvm_smccc_default_allowed(u32 func_id)
 --
 arch/arm64/kvm/hypercalls.c-90-		 */
 arch/arm64/kvm/hypercalls.c:91:		if (func_id >= KVM_PSCI_FN(0) && func_id <= KVM_PSCI_FN(3))
 arch/arm64/kvm/hypercalls.c-92-			return true;
 --
 arch/arm64/kvm/mmu.c=35=static unsigned long __ro_after_init io_map_base;
 arch/arm64/kvm/mmu.c-36-
 arch/arm64/kvm/mmu.c:37:#define KVM_PGT_FN(fn)		(!is_protected_kvm_enabled() ? fn : p ## fn)
 arch/arm64/kvm/mmu.c-38-
 --
 arch/arm64/kvm/mmu.c=119=static int kvm_mmu_split_huge_pages(struct kvm *kvm, phys_addr_t addr,
 --
 arch/arm64/kvm/mmu.c-154-		next = __stage2_range_addr_end(addr, end, chunk_size);
 arch/arm64/kvm/mmu.c:155:		ret = KVM_PGT_FN(kvm_pgtable_stage2_split)(pgt, addr, next - addr, cache);
 arch/arm64/kvm/mmu.c-156-		if (ret)
 --
 arch/arm64/kvm/mmu.c=230=static void stage2_free_unlinked_table_rcu_cb(struct rcu_head *head)
 --
 arch/arm64/kvm/mmu.c-235-
 arch/arm64/kvm/mmu.c:236:	KVM_PGT_FN(kvm_pgtable_stage2_free_unlinked)(&kvm_s2_mm_ops, pgtable, level);
 arch/arm64/kvm/mmu.c-237-}
 --
 arch/arm64/kvm/mmu.c=327=static void __unmap_stage2_range(struct kvm_s2_mmu *mmu, phys_addr_t start, u64 size,
 --
 arch/arm64/kvm/mmu.c-334-	WARN_ON(size & ~PAGE_MASK);
 arch/arm64/kvm/mmu.c:335:	WARN_ON(stage2_apply_range(mmu, start, end, KVM_PGT_FN(kvm_pgtable_stage2_unmap),
 arch/arm64/kvm/mmu.c-336-				   may_block));
 --
 arch/arm64/kvm/mmu.c=345=void kvm_stage2_flush_range(struct kvm_s2_mmu *mmu, phys_addr_t addr, phys_addr_t end)
 arch/arm64/kvm/mmu.c-346-{
 arch/arm64/kvm/mmu.c:347:	stage2_apply_range_resched(mmu, addr, end, KVM_PGT_FN(kvm_pgtable_stage2_flush));
 arch/arm64/kvm/mmu.c-348-}
 --
 arch/arm64/kvm/mmu.c=921=int kvm_init_stage2_mmu(struct kvm *kvm, struct kvm_s2_mmu *mmu, unsigned long type)
 --
 arch/arm64/kvm/mmu.c-952-	mmu->arch = &kvm->arch;
 arch/arm64/kvm/mmu.c:953:	err = KVM_PGT_FN(kvm_pgtable_stage2_init)(pgt, mmu, &kvm_s2_mm_ops);
 arch/arm64/kvm/mmu.c-954-	if (err)
 --
 arch/arm64/kvm/mmu.c-981-out_destroy_pgtable:
 arch/arm64/kvm/mmu.c:982:	KVM_PGT_FN(kvm_pgtable_stage2_destroy)(pgt);
 arch/arm64/kvm/mmu.c-983-out_free_pgtable:
 --
 arch/arm64/kvm/mmu.c=1064=void kvm_free_stage2_pgd(struct kvm_s2_mmu *mmu)
 --
 arch/arm64/kvm/mmu.c-1078-	if (pgt) {
 arch/arm64/kvm/mmu.c:1079:		KVM_PGT_FN(kvm_pgtable_stage2_destroy)(pgt);
 arch/arm64/kvm/mmu.c-1080-		kfree(pgt);
 --
 arch/arm64/kvm/mmu.c=1139=int kvm_phys_addr_ioremap(struct kvm *kvm, phys_addr_t guest_ipa,
 --
 arch/arm64/kvm/mmu.c-1163-		write_lock(&kvm->mmu_lock);
 arch/arm64/kvm/mmu.c:1164:		ret = KVM_PGT_FN(kvm_pgtable_stage2_map)(pgt, addr, PAGE_SIZE,
 arch/arm64/kvm/mmu.c-1165-				 pa, prot, &cache, 0);
 --
 arch/arm64/kvm/mmu.c=1183=void kvm_stage2_wp_range(struct kvm_s2_mmu *mmu, phys_addr_t addr, phys_addr_t end)
 arch/arm64/kvm/mmu.c-1184-{
 arch/arm64/kvm/mmu.c:1185:	stage2_apply_range_resched(mmu, addr, end, KVM_PGT_FN(kvm_pgtable_stage2_wrprotect));
 arch/arm64/kvm/mmu.c-1186-}
 --
 arch/arm64/kvm/mmu.c=1480=static int user_mem_abort(struct kvm_vcpu *vcpu, phys_addr_t fault_ipa,
 --
 arch/arm64/kvm/mmu.c-1781-		prot &= ~KVM_NV_GUEST_MAP_SZ;
 arch/arm64/kvm/mmu.c:1782:		ret = KVM_PGT_FN(kvm_pgtable_stage2_relax_perms)(pgt, fault_ipa, prot, flags);
 arch/arm64/kvm/mmu.c-1783-	} else {
 arch/arm64/kvm/mmu.c:1784:		ret = KVM_PGT_FN(kvm_pgtable_stage2_map)(pgt, fault_ipa, vma_pagesize,
 arch/arm64/kvm/mmu.c-1785-					     __pfn_to_phys(pfn), prot,
 --
 arch/arm64/kvm/mmu.c=1801=static void handle_access_fault(struct kvm_vcpu *vcpu, phys_addr_t fault_ipa)
 --
 arch/arm64/kvm/mmu.c-1809-	mmu = vcpu->arch.hw_mmu;
 arch/arm64/kvm/mmu.c:1810:	KVM_PGT_FN(kvm_pgtable_stage2_mkyoung)(mmu->pgt, fault_ipa, flags);
 arch/arm64/kvm/mmu.c-1811-	read_unlock(&vcpu->kvm->mmu_lock);
 --
 arch/arm64/kvm/mmu.c=2009=bool kvm_age_gfn(struct kvm *kvm, struct kvm_gfn_range *range)
 --
 arch/arm64/kvm/mmu.c-2015-
 arch/arm64/kvm/mmu.c:2016:	return KVM_PGT_FN(kvm_pgtable_stage2_test_clear_young)(kvm->arch.mmu.pgt,
 arch/arm64/kvm/mmu.c-2017-						   range->start << PAGE_SHIFT,
 --
 arch/arm64/kvm/mmu.c=2025=bool kvm_test_age_gfn(struct kvm *kvm, struct kvm_gfn_range *range)
 --
 arch/arm64/kvm/mmu.c-2031-
 arch/arm64/kvm/mmu.c:2032:	return KVM_PGT_FN(kvm_pgtable_stage2_test_clear_young)(kvm->arch.mmu.pgt,
 arch/arm64/kvm/mmu.c-2033-						   range->start << PAGE_SHIFT,
 --
 arch/arm64/mm/init.c=156=int pfn_is_map_memory(unsigned long pfn)
 --
 arch/arm64/mm/init.c-160-	/* avoid false positives for bogus PFNs, see comment in pfn_valid() */
 arch/arm64/mm/init.c:161:	if (PHYS_PFN(addr) != pfn)
 arch/arm64/mm/init.c-162-		return 0;
 --
 arch/arm64/mm/ioremap.c=51=bool arch_memremap_can_ram_remap(resource_size_t offset, size_t size,
 --
 arch/arm64/mm/ioremap.c-53-{
 arch/arm64/mm/ioremap.c:54:	unsigned long pfn = PHYS_PFN(offset);
 arch/arm64/mm/ioremap.c-55-
 --
 arch/arm64/mm/mmu.c=1472=static void validate_bootmem_online(void)
 --
 arch/arm64/mm/mmu.c-1487-		for (addr = start; addr < end; addr += (1UL << PA_SECTION_SHIFT)) {
 arch/arm64/mm/mmu.c:1488:			ms = __pfn_to_section(PHYS_PFN(addr));
 arch/arm64/mm/mmu.c-1489-
 --
 arch/loongarch/kernel/numa.c=243=int __init init_numa_memory(void)
 --
 arch/loongarch/kernel/numa.c-274-	}
 arch/loongarch/kernel/numa.c:275:	max_low_pfn = PHYS_PFN(memblock_end_of_DRAM());
 arch/loongarch/kernel/numa.c-276-
 --
 arch/loongarch/kernel/setup.c=389=static void __init arch_mem_init(char **cmdline_p)
 --
 arch/loongarch/kernel/setup.c-391-	/* Recalculate max_low_pfn for "mem=xxx" */
 arch/loongarch/kernel/setup.c:392:	max_pfn = max_low_pfn = PHYS_PFN(memblock_end_of_DRAM());
 arch/loongarch/kernel/setup.c-393-
 --
 arch/m68k/include/asm/page_no.h=27=static inline void *pfn_to_virt(unsigned long pfn)
 --
 arch/m68k/include/asm/page_no.h-37-
 arch/m68k/include/asm/page_no.h:38:#define ARCH_PFN_OFFSET PHYS_PFN(PAGE_OFFSET_RAW)
 arch/m68k/include/asm/page_no.h-39-
 --
 arch/mips/include/asm/sn/sn0/hubmd.h-509-
 arch/mips/include/asm/sn/sn0/hubmd.h:510:#define MD_MIG_CANDIDATE_HWPFN(value) ((value) & MD_MIG_CANDIDATE_ADDR_MASK)
 arch/mips/include/asm/sn/sn0/hubmd.h-511-
 --
 arch/mips/loongson64/numa.c=126=static __init void prom_meminit(void)
 --
 arch/mips/loongson64/numa.c-139-	}
 arch/mips/loongson64/numa.c:140:	max_low_pfn = PHYS_PFN(memblock_end_of_DRAM());
 arch/mips/loongson64/numa.c-141-
 --
 arch/mips/pci/fixup-cobalt.c=54=static void qube_raq_galileo_early_fixup(struct pci_dev *dev)
 arch/mips/pci/fixup-cobalt.c-55-{
 arch/mips/pci/fixup-cobalt.c:56:	if (dev->devfn == PCI_DEVFN(0, 0) &&
 arch/mips/pci/fixup-cobalt.c-57-		(dev->class >> 8) == PCI_CLASS_MEMORY_OTHER) {
 --
 arch/mips/pci/fixup-cobalt.c=91=static void qube_raq_galileo_fixup(struct pci_dev *dev)
 arch/mips/pci/fixup-cobalt.c-92-{
 arch/mips/pci/fixup-cobalt.c:93:	if (dev->devfn != PCI_DEVFN(0, 0))
 arch/mips/pci/fixup-cobalt.c-94-		return;
 --
 arch/mips/pci/fixup-sni.c=133=int pcibios_map_irq(const struct pci_dev *dev, u8 slot, u8 pin)
 --
 arch/mips/pci/fixup-sni.c-143-				dev = dev->bus->self;
 arch/mips/pci/fixup-sni.c:144:			if (dev && dev->devfn >= PCI_DEVFN(4, 0))
 arch/mips/pci/fixup-sni.c-145-				slot = 5;
 --
 arch/mips/pci/ops-bcm63xx.c=362=static int bcm63xx_cb_read(struct pci_bus *bus, unsigned int devfn,
 --
 arch/mips/pci/ops-bcm63xx.c-379-		return bcm63xx_do_cfg_read(0, 0,
 arch/mips/pci/ops-bcm63xx.c:380:					   PCI_DEVFN(CARDBUS_PCI_IDSEL, 0),
 arch/mips/pci/ops-bcm63xx.c-381-					   where, size, val);
 --
 arch/mips/pci/ops-bcm63xx.c=386=static int bcm63xx_cb_write(struct pci_bus *bus, unsigned int devfn,
 --
 arch/mips/pci/ops-bcm63xx.c-397-		return bcm63xx_do_cfg_write(0, 0,
 arch/mips/pci/ops-bcm63xx.c:398:					    PCI_DEVFN(CARDBUS_PCI_IDSEL, 0),
 arch/mips/pci/ops-bcm63xx.c-399-					    where, size, val);
 --
 arch/mips/pci/ops-gt64xxx_pci0.c=30=static int gt64xxx_pci0_pcibios_config_access(unsigned char access_type,
 --
 arch/mips/pci/ops-gt64xxx_pci0.c-35-
 arch/mips/pci/ops-gt64xxx_pci0.c:36:	if ((busnum == 0) && (devfn >= PCI_DEVFN(31, 0)))
 arch/mips/pci/ops-gt64xxx_pci0.c-37-		return -1;	/* Because of a bug in the galileo (for slot 31). */
 --
 arch/mips/pci/ops-loongson2.c=182=void _rdmsr(u32 msr, u32 *hi, u32 *lo)
 --
 arch/mips/pci/ops-loongson2.c-186-	};
 arch/mips/pci/ops-loongson2.c:187:	u32 devfn = PCI_DEVFN(PCI_IDSEL_CS5536, 0);
 arch/mips/pci/ops-loongson2.c-188-	unsigned long flags;
 --
 arch/mips/pci/ops-loongson2.c=198=void _wrmsr(u32 msr, u32 hi, u32 lo)
 --
 arch/mips/pci/ops-loongson2.c-202-	};
 arch/mips/pci/ops-loongson2.c:203:	u32 devfn = PCI_DEVFN(PCI_IDSEL_CS5536, 0);
 arch/mips/pci/ops-loongson2.c-204-	unsigned long flags;
 --
 arch/mips/pci/ops-sni.c=24=static int set_config_address(unsigned int busno, unsigned int devfn, int reg)
 --
 arch/mips/pci/ops-sni.c-28-
 arch/mips/pci/ops-sni.c:29:	if (busno == 0 && devfn >= PCI_DEVFN(8, 0))
 arch/mips/pci/ops-sni.c-30-		return PCIBIOS_DEVICE_NOT_FOUND;
 --
 arch/mips/pci/ops-tx4927.c=58=static int mkaddr(struct pci_bus *bus, unsigned int devfn, int where,
 --
 arch/mips/pci/ops-tx4927.c-61-	if (bus->parent == NULL &&
 arch/mips/pci/ops-tx4927.c:62:	    devfn >= PCI_DEVFN(TX4927_PCIC_MAX_DEVNU, 0))
 arch/mips/pci/ops-tx4927.c-63-		return PCIBIOS_DEVICE_NOT_FOUND;
 --
 arch/mips/pci/pci-ar2315.c=308=static int ar2315_pci_host_setup(struct ar2315_pci_ctrl *apc)
 arch/mips/pci/pci-ar2315.c-309-{
 arch/mips/pci/pci-ar2315.c:310:	unsigned devfn = PCI_DEVFN(AR2315_PCI_HOST_SLOT, 0);
 arch/mips/pci/pci-ar2315.c-311-	int res;
 --
 arch/mips/pci/pci-bcm1480.c=189=static int __init bcm1480_pcibios_init(void)
 --
 arch/mips/pci/pci-bcm1480.c-213-	} else {
 arch/mips/pci/pci-bcm1480.c:214:		cmdreg = READCFG32(CFGOFFSET(0, PCI_DEVFN(PCI_BRIDGE_DEVICE, 0),
 arch/mips/pci/pci-bcm1480.c-215-					     PCI_COMMAND));
 --
 arch/mips/pci/pci-bcm1480.c-225-	/* turn on ExpMemEn */
 arch/mips/pci/pci-bcm1480.c:226:	cmdreg = READCFG32(CFGOFFSET(0, PCI_DEVFN(PCI_BRIDGE_DEVICE, 0), 0x40));
 arch/mips/pci/pci-bcm1480.c:227:	WRITECFG32(CFGOFFSET(0, PCI_DEVFN(PCI_BRIDGE_DEVICE, 0), 0x40),
 arch/mips/pci/pci-bcm1480.c-228-			cmdreg | 0x10);
 arch/mips/pci/pci-bcm1480.c:229:	cmdreg = READCFG32(CFGOFFSET(0, PCI_DEVFN(PCI_BRIDGE_DEVICE, 0), 0x40));
 arch/mips/pci/pci-bcm1480.c-230-
 --
 arch/mips/pci/pci-sb1250.c=196=static int __init sb1250_pcibios_init(void)
 --
 arch/mips/pci/pci-sb1250.c-224-		    READCFG32(CFGOFFSET
 arch/mips/pci/pci-sb1250.c:225:			      (0, PCI_DEVFN(PCI_BRIDGE_DEVICE, 0),
 arch/mips/pci/pci-sb1250.c-226-			       PCI_COMMAND));
 --
 arch/mips/pci/pci-sb1250.c-253-
 arch/mips/pci/pci-sb1250.c:254:	cmdreg = READCFG32(CFGOFFSET(0, PCI_DEVFN(LDT_BRIDGE_DEVICE, 0),
 arch/mips/pci/pci-sb1250.c-255-				     PCI_COMMAND));
 --
 arch/mips/sgi-ip27/ip27-memory.c=392=void __init prom_meminit(void)
 --
 arch/mips/sgi-ip27/ip27-memory.c-397-	szmem();
 arch/mips/sgi-ip27/ip27-memory.c:398:	max_low_pfn = PHYS_PFN(memblock_end_of_DRAM());
 arch/mips/sgi-ip27/ip27-memory.c-399-
 --
 arch/powerpc/include/asm/rtas.h=521=extern struct mutex rtas_ibm_physical_attestation_lock;
 --
 arch/powerpc/include/asm/rtas.h-527- * @busno: The bus number.
 arch/powerpc/include/asm/rtas.h:528: * @devfn: The device and function number as encoded by PCI_DEVFN().
 arch/powerpc/include/asm/rtas.h-529- * @reg: The register number.
 --
 arch/powerpc/include/asm/video.h=7=static inline pgprot_t pgprot_framebuffer(pgprot_t prot,
 --
 arch/powerpc/include/asm/video.h-10-{
 arch/powerpc/include/asm/video.h:11:	return __phys_mem_access_prot(PHYS_PFN(offset), vm_end - vm_start, prot);
 arch/powerpc/include/asm/video.h-12-}
 --
 arch/powerpc/kernel/fadump.c=1201=static void fadump_release_reserved_area(u64 start, u64 end)
 --
 arch/powerpc/kernel/fadump.c-1206-
 arch/powerpc/kernel/fadump.c:1207:	spfn = PHYS_PFN(start);
 arch/powerpc/kernel/fadump.c:1208:	epfn = PHYS_PFN(end);
 arch/powerpc/kernel/fadump.c-1209-
 --
 arch/powerpc/kernel/paca.c=59=static void *__init alloc_shared_lppaca(unsigned long size, unsigned long limit,
 --
 arch/powerpc/kernel/paca.c-84-		memblock_set_bottom_up(false);
 arch/powerpc/kernel/paca.c:85:		uv_share_page(PHYS_PFN(__pa(shared_lppaca)),
 arch/powerpc/kernel/paca.c-86-			      shared_lppaca_total_size >> PAGE_SHIFT);
 --
 arch/powerpc/kernel/pci-hotplug.c=96=static void traverse_siblings_and_scan_slot(struct device_node *start, struct pci_bus *bus)
 --
 arch/powerpc/kernel/pci-hotplug.c-106-			slotno = PCI_SLOT(PCI_DN(start->child)->devfn);
 arch/powerpc/kernel/pci-hotplug.c:107:			pci_scan_slot(bus, PCI_DEVFN(slotno, 0));
 arch/powerpc/kernel/pci-hotplug.c-108-			return;
 --
 arch/powerpc/kernel/pci-hotplug.c-119-				slotno = PCI_SLOT(PCI_DN(dn)->devfn);
 arch/powerpc/kernel/pci-hotplug.c:120:				pci_scan_slot(bus, PCI_DEVFN(slotno, 0));
 arch/powerpc/kernel/pci-hotplug.c-121-			}
 --
 arch/powerpc/mm/init_64.c=320=static void __ref __vmemmap_free(unsigned long start, unsigned long end,
 --
 arch/powerpc/mm/init_64.c-354-		nr_pages = 1 << page_order;
 arch/powerpc/mm/init_64.c:355:		base_pfn = PHYS_PFN(addr);
 arch/powerpc/mm/init_64.c-356-
 --
 arch/powerpc/mm/kasan/8xx.c=12=kasan_init_shadow_8M(unsigned long k_start, unsigned long k_end, void *block)
 --
 arch/powerpc/mm/kasan/8xx.c-29-		for (i = 0; i < PTRS_PER_PTE; i++) {
 arch/powerpc/mm/kasan/8xx.c:30:			pte_t pte = pte_mkhuge(pfn_pte(PHYS_PFN(__pa(block + i * PAGE_SIZE)), PAGE_KERNEL));
 arch/powerpc/mm/kasan/8xx.c-31-
 --
 arch/powerpc/mm/kasan/8xx.c=40=int __init kasan_init_region(void *start, size_t size)
 --
 arch/powerpc/mm/kasan/8xx.c-67-		void *va = block + k_cur - k_start;
 arch/powerpc/mm/kasan/8xx.c:68:		pte_t pte = pfn_pte(PHYS_PFN(__pa(va)), PAGE_KERNEL);
 arch/powerpc/mm/kasan/8xx.c-69-
 --
 arch/powerpc/mm/kasan/book3s_32.c=9=int __init kasan_init_region(void *start, size_t size)
 --
 arch/powerpc/mm/kasan/book3s_32.c-51-		pmd_t *pmd = pmd_off_k(k_cur);
 arch/powerpc/mm/kasan/book3s_32.c:52:		pte_t pte = pfn_pte(PHYS_PFN(phys + k_cur - k_nobat), PAGE_KERNEL);
 arch/powerpc/mm/kasan/book3s_32.c-53-
 --
 arch/powerpc/mm/kasan/init_32.c=21=static void __init kasan_populate_pte(pte_t *ptep, pgprot_t prot)
 --
 arch/powerpc/mm/kasan/init_32.c-27-	for (i = 0; i < PTRS_PER_PTE; i++, ptep++)
 arch/powerpc/mm/kasan/init_32.c:28:		__set_pte_at(&init_mm, va, ptep, pfn_pte(PHYS_PFN(pa), prot), 1);
 arch/powerpc/mm/kasan/init_32.c-29-}
 --
 arch/powerpc/mm/kasan/init_32.c=55=int __init __weak kasan_init_region(void *start, size_t size)
 --
 arch/powerpc/mm/kasan/init_32.c-74-		void *va = block + k_cur - k_start;
 arch/powerpc/mm/kasan/init_32.c:75:		pte_t pte = pfn_pte(PHYS_PFN(__pa(va)), PAGE_KERNEL);
 arch/powerpc/mm/kasan/init_32.c-76-
 --
 arch/powerpc/mm/kasan/init_32.c=101=static void __init kasan_remap_early_shadow_ro(void)
 --
 arch/powerpc/mm/kasan/init_32.c-108-	kasan_update_early_region(KASAN_SHADOW_START, KASAN_SHADOW_END,
 arch/powerpc/mm/kasan/init_32.c:109:				  pfn_pte(PHYS_PFN(pa), prot));
 arch/powerpc/mm/kasan/init_32.c-110-}
 --
 arch/powerpc/platforms/fsl_uli1575.c=320=static void hpcd_final_uli5288(struct pci_dev *dev)
 --
 arch/powerpc/platforms/fsl_uli1575.c-335-	oirq.args_count = 1;
 arch/powerpc/platforms/fsl_uli1575.c:336:	laddr[0] = (hose->first_busno << 16) | (PCI_DEVFN(31, 0) << 8);
 arch/powerpc/platforms/fsl_uli1575.c-337-	laddr[1] = laddr[2] = 0;
 --
 arch/powerpc/platforms/powernv/memtrace.c=48=static int memtrace_mmap(struct file *filp, struct vm_area_struct *vma)
 --
 arch/powerpc/platforms/powernv/memtrace.c-62-	vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
 arch/powerpc/platforms/powernv/memtrace.c:63:	return remap_pfn_range(vma, vma->vm_start, PHYS_PFN(ent->start) + vma->vm_pgoff,
 arch/powerpc/platforms/powernv/memtrace.c-64-			       vma->vm_end - vma->vm_start, vma->vm_page_prot);
 --
 arch/powerpc/platforms/powernv/memtrace.c=95=static u64 memtrace_alloc_node(u32 nid, u64 size)
 arch/powerpc/platforms/powernv/memtrace.c-96-{
 arch/powerpc/platforms/powernv/memtrace.c:97:	const unsigned long nr_pages = PHYS_PFN(size);
 arch/powerpc/platforms/powernv/memtrace.c-98-	unsigned long pfn, start_pfn;
 --
 arch/powerpc/platforms/powernv/memtrace.c=198=static int memtrace_free(int nid, u64 start, u64 size)
 --
 arch/powerpc/platforms/powernv/memtrace.c-200-	struct mhp_params params = { .pgprot = PAGE_KERNEL };
 arch/powerpc/platforms/powernv/memtrace.c:201:	const unsigned long nr_pages = PHYS_PFN(size);
 arch/powerpc/platforms/powernv/memtrace.c:202:	const unsigned long start_pfn = PHYS_PFN(start);
 arch/powerpc/platforms/powernv/memtrace.c-203-	unsigned long pfn;
 --
 arch/powerpc/platforms/pseries/svm.c=41=int set_memory_encrypted(unsigned long addr, int numpages)
 --
 arch/powerpc/platforms/pseries/svm.c-48-
 arch/powerpc/platforms/pseries/svm.c:49:	uv_unshare_page(PHYS_PFN(__pa(addr)), numpages);
 arch/powerpc/platforms/pseries/svm.c-50-
 --
 arch/powerpc/platforms/pseries/svm.c=54=int set_memory_decrypted(unsigned long addr, int numpages)
 --
 arch/powerpc/platforms/pseries/svm.c-61-
 arch/powerpc/platforms/pseries/svm.c:62:	uv_share_page(PHYS_PFN(__pa(addr)), numpages);
 arch/powerpc/platforms/pseries/svm.c-63-
 --
 arch/powerpc/platforms/pseries/svm.c=84=void dtl_cache_ctor(void *addr)
 arch/powerpc/platforms/pseries/svm.c-85-{
 arch/powerpc/platforms/pseries/svm.c:86:	unsigned long pfn = PHYS_PFN(__pa(addr));
 arch/powerpc/platforms/pseries/svm.c-87-	struct page *page = pfn_to_page(pfn);
 --
 arch/powerpc/sysdev/fsl_pci.c=901=u64 fsl_pci_immrbar_base(struct pci_controller *hose)
 --
 arch/powerpc/sysdev/fsl_pci.c-929-		pci_bus_read_config_dword(hose->bus,
]
]

14/2 2026/05/14 16:07 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 41068
							output: 17
							thoughts: 26
						

Thoughts:
Here's my thought process, summarized as you requested:

**A Quick BPF Header Hack**

Okay, so I'm trying to figure out where that specific BPF constant is defined, and I'm drawing a blank on the exact header file. Rather than wading through the entire include tree, why don't I just take a shortcut? I can *easily* just `grep` for the number `109` within the `include/uapi/linux/bpf.h` file. That's likely the obvious place to find what I'm looking for, and it'll probably give me the answer in seconds. It's an efficient way to quickly locate that value. No need to overcomplicate this lookup.



15/2 2026/05/14 16:07 tool grepper
0m Args:
map[Expression:109]

Results:
map[Output:
Full output is too long, showing 500 out of 27455 lines.
Use more precise expression if possible.

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16/2 2026/05/14 16:07 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 57311
							output: 20
							thoughts: 29
						

Thoughts:
Here's my thought process, as if I were considering this myself:

**Quick Check: BPF Header Magic**

Okay, so I need to figure out what's using that particular constant. Instead of diving deep into the source code immediately, I'm going to take a shortcut. Let's see...I can probably find it right away in the kernel headers. Specifically, the BPF definitions are likely to be in the `include/uapi/linux/bpf.h` file. I'll just open that file and do a quick search within it for `= 109`. That's the most efficient way to see where this value is defined and what it's related to. It's almost always in those header files. No need to go hunting elsewhere unless I *have* to.



17/2 2026/05/14 16:08 tool grepper
0m Args:
map[Expression:= 109,]

Results:
map[Output:drivers/accel/habanalabs/include/gaudi/gaudi_async_events.h=16=enum gaudi_async_event_id {
--
drivers/accel/habanalabs/include/gaudi/gaudi_async_events.h-93-	GAUDI_EVENT_SRAM16_SERR = 108,
drivers/accel/habanalabs/include/gaudi/gaudi_async_events.h:94:	GAUDI_EVENT_SRAM17_SERR = 109,
drivers/accel/habanalabs/include/gaudi/gaudi_async_events.h-95-	GAUDI_EVENT_SRAM18_SERR = 110,
--
drivers/accel/habanalabs/include/gaudi/gaudi_async_ids_map_extended.h=23=static struct gaudi_async_events_ids_map gaudi_irq_map_table[] = {
--
drivers/accel/habanalabs/include/gaudi/gaudi_async_ids_map_extended.h-134-	{ .fc_id = 108, .cpu_id = 64, .valid = 1, .name = "SRAM16_SERR" },
drivers/accel/habanalabs/include/gaudi/gaudi_async_ids_map_extended.h:135:	{ .fc_id = 109, .cpu_id = 64, .valid = 1, .name = "SRAM17_SERR" },
drivers/accel/habanalabs/include/gaudi/gaudi_async_ids_map_extended.h-136-	{ .fc_id = 110, .cpu_id = 64, .valid = 1, .name = "SRAM18_SERR" },
--
drivers/accel/habanalabs/include/gaudi/gaudi_async_ids_map_extended.h-254-	{ .fc_id = 228, .cpu_id = 108, .valid = 0, .name = "" },
drivers/accel/habanalabs/include/gaudi/gaudi_async_ids_map_extended.h:255:	{ .fc_id = 229, .cpu_id = 109, .valid = 1, .name = "MME2_WBC_RSP" },
drivers/accel/habanalabs/include/gaudi/gaudi_async_ids_map_extended.h-256-	{ .fc_id = 230, .cpu_id = 110, .valid = 1, .name = "MME2_SBAB0_RSP" },
--
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_events.h=16=enum gaudi2_async_event_id {
--
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_events.h-93-	GAUDI2_EVENT_MME2_WAP_ECC_SERR = 108,
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_events.h:94:	GAUDI2_EVENT_MME3_SBTE0_ECC_SERR = 109,
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_events.h-95-	GAUDI2_EVENT_MME3_SBTE1_ECC_SERR = 110,
--
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_ids_map_extended.h=31=static struct gaudi2_async_events_ids_map gaudi2_irq_map_table[] = {
--
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_ids_map_extended.h-249-		 .name = "MME2_WAP_ECC_SERR" },
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_ids_map_extended.h:250:	{ .fc_id = 109, .cpu_id = 43, .valid = 1, .msg = 0, .reset = EVENT_RESET_TYPE_NONE,
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_ids_map_extended.h-251-		 .name = "MME3_SBTE0_ECC_SERR" },
--
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_ids_map_extended.h-1111-		 .name = "KDMA_CH0_AXI_ERR_RSP" },
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_ids_map_extended.h:1112:	{ .fc_id = 540, .cpu_id = 109, .valid = 1, .msg = 0, .reset = EVENT_RESET_TYPE_COMPUTE,
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_ids_map_extended.h-1113-		 .name = "PDMA_CH0_AXI_ERR_RSP" },
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_ids_map_extended.h:1114:	{ .fc_id = 541, .cpu_id = 109, .valid = 1, .msg = 0, .reset = EVENT_RESET_TYPE_COMPUTE,
drivers/accel/habanalabs/include/gaudi2/gaudi2_async_ids_map_extended.h-1115-		 .name = "PDMA_CH1_AXI_ERR_RSP" },
--
drivers/accel/habanalabs/include/goya/goya_async_events.h=11=enum goya_async_event_id {
--
drivers/accel/habanalabs/include/goya/goya_async_events.h-60-	GOYA_ASYNC_EVENT_ID_SRAM27 = 108,
drivers/accel/habanalabs/include/goya/goya_async_events.h:61:	GOYA_ASYNC_EVENT_ID_SRAM28 = 109,
drivers/accel/habanalabs/include/goya/goya_async_events.h-62-	GOYA_ASYNC_EVENT_ID_SRAM29 = 110,
--
drivers/gpu/drm/amd/include/navi10_enum.h=50=typedef enum GDS_PERFCOUNT_SELECT {
--
drivers/gpu/drm/amd/include/navi10_enum.h-159- GDS_PERF_SEL_SE3_SH1_2COMP_REQ = 108,
drivers/gpu/drm/amd/include/navi10_enum.h:160: GDS_PERF_SEL_SE3_SH1_ORD_WAVE_VALID = 109,
drivers/gpu/drm/amd/include/navi10_enum.h-161- GDS_PERF_SEL_SE3_SH1_GDS_DATA_VALID = 110,
--
drivers/gpu/drm/amd/include/vega10_enum.h=50=typedef enum GDS_PERFCOUNT_SELECT {
--
drivers/gpu/drm/amd/include/vega10_enum.h-159- GDS_PERF_SEL_SE3_SH1_2COMP_REQ = 108,
drivers/gpu/drm/amd/include/vega10_enum.h:160: GDS_PERF_SEL_SE3_SH1_ORD_WAVE_VALID = 109,
drivers/gpu/drm/amd/include/vega10_enum.h-161- GDS_PERF_SEL_SE3_SH1_GDS_DATA_VALID = 110,
--
drivers/gpu/drm/panel/panel-simple.c=2960=static const struct panel_desc koe_tx31d200vm0baa = {
--
drivers/gpu/drm/panel/panel-simple.c-2965-		.width = 292,
drivers/gpu/drm/panel/panel-simple.c:2966:		.height = 109,
drivers/gpu/drm/panel/panel-simple.c-2967-	},
--
drivers/gpu/drm/panel/panel-sitronix-st7703.c=570=static const struct drm_display_mode rgb10max3_panel_mode = {
--
drivers/gpu/drm/panel/panel-sitronix-st7703.c-581-	.width_mm	= 62,
drivers/gpu/drm/panel/panel-sitronix-st7703.c:582:	.height_mm	= 109,
drivers/gpu/drm/panel/panel-sitronix-st7703.c-583-};
--
drivers/gpu/drm/vmwgfx/device_include/svga3d_types.h=143=typedef enum SVGA3dSurfaceFormat {
--
drivers/gpu/drm/vmwgfx/device_include/svga3d_types.h-274-	SVGA3D_ATI1 = 108,
drivers/gpu/drm/vmwgfx/device_include/svga3d_types.h:275:	SVGA3D_BC4_SNORM = 109,
drivers/gpu/drm/vmwgfx/device_include/svga3d_types.h-276-	SVGA3D_BC5_TYPELESS = 110,
--
drivers/idle/intel_idle.c=292=static struct cpuidle_state snb_cstates[] __initdata = {
--
drivers/idle/intel_idle.c-328-		.flags = MWAIT2flg(0x30) | CPUIDLE_FLAG_TLB_FLUSHED,
drivers/idle/intel_idle.c:329:		.exit_latency = 109,
drivers/idle/intel_idle.c-330-		.target_residency = 345,
--
drivers/infiniband/hw/ocrdma/ocrdma_hw.c=58=enum mbx_status {
--
drivers/infiniband/hw/ocrdma/ocrdma_hw.c-69-	OCRDMA_MBX_STATUS_SENDQ_WQE_EXCEEDS	= 108,
drivers/infiniband/hw/ocrdma/ocrdma_hw.c:70:	OCRDMA_MBX_STATUS_RECVQ_RQE_EXCEEDS	= 109,
drivers/infiniband/hw/ocrdma/ocrdma_hw.c-71-	OCRDMA_MBX_STATUS_SGE_SEND_EXCEEDS	= 110,
--
drivers/interconnect/qcom/msm8909.c=718=static struct qcom_icc_node mm_int_1 = {
--
drivers/interconnect/qcom/msm8909.c-722-	.mas_rpm_id = 80,
drivers/interconnect/qcom/msm8909.c:723:	.slv_rpm_id = 109,
drivers/interconnect/qcom/msm8909.c-724-	.qos.ap_owned = true,
--
drivers/interconnect/qcom/msm8996.c=737=static struct qcom_icc_node mas_bimc_snoc_1 = {
--
drivers/interconnect/qcom/msm8996.c-740-	.buswidth = 16,
drivers/interconnect/qcom/msm8996.c:741:	.mas_rpm_id = 109,
drivers/interconnect/qcom/msm8996.c-742-	.slv_rpm_id = -1,
--
drivers/irqchip/irq-stm32mp-exti.c=183=static const u8 stm32mp13_desc_irq[] = {
--
drivers/irqchip/irq-stm32mp-exti.c-201-	[14] = 106,
drivers/irqchip/irq-stm32mp-exti.c:202:	[15] = 109,
drivers/irqchip/irq-stm32mp-exti.c-203-	[16] = 1,
--
drivers/media/dvb-frontends/mt312_priv.h=13=enum mt312_reg_addr {
--
drivers/media/dvb-frontends/mt312_priv.h-124-	AGC_H = 108,
drivers/media/dvb-frontends/mt312_priv.h:125:	AGC_M = 109,
drivers/media/dvb-frontends/mt312_priv.h-126-	AGC_L = 110,
--
drivers/net/ethernet/brocade/bna/bfa_defs_status.h=19=enum bfa_status {
--
drivers/net/ethernet/brocade/bna/bfa_defs_status.h-128-	BFA_STATUS_CT_SPD = 108,
drivers/net/ethernet/brocade/bna/bfa_defs_status.h:129:	BFA_STATUS_LEDTEST_OP = 109,
drivers/net/ethernet/brocade/bna/bfa_defs_status.h-130-	BFA_STATUS_CEE_NOT_DN = 110,
--
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c=209=static const struct vcap_field is0_normal_5tuple_ip4_keyfield[] = {
--
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c-281-		.type = VCAP_FIELD_U32,
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c:282:		.offset = 109,
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c-283-		.width = 3,
--
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c=1644=static const struct vcap_field es2_ip4_tcp_udp_keyfield[] = {
--
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c-1756-		.type = VCAP_FIELD_U32,
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c:1757:		.offset = 109,
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c-1758-		.width = 32,
--
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c=1837=static const struct vcap_field es2_ip4_other_keyfield[] = {
--
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c-1949-		.type = VCAP_FIELD_U32,
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c:1950:		.offset = 109,
drivers/net/ethernet/microchip/sparx5/lan969x/lan969x_vcap_ag_api.c-1951-		.width = 32,
--
drivers/net/ethernet/microchip/sparx5/sparx5_vcap_ag_api.c=2432=static const struct vcap_field is0_classification_actionfield[] = {
--
drivers/net/ethernet/microchip/sparx5/sparx5_vcap_ag_api.c-2524-		.type = VCAP_FIELD_U32,
drivers/net/ethernet/microchip/sparx5/sparx5_vcap_ag_api.c:2525:		.offset = 109,
drivers/net/ethernet/microchip/sparx5/sparx5_vcap_ag_api.c-2526-		.width = 8,
--
drivers/net/ethernet/microchip/vcap/vcap_model_kunit.c=2853=static const struct vcap_field is0_classification_actionfield[] = {
--
drivers/net/ethernet/microchip/vcap/vcap_model_kunit.c-2945-		.type = VCAP_FIELD_U32,
drivers/net/ethernet/microchip/vcap/vcap_model_kunit.c:2946:		.offset = 109,
drivers/net/ethernet/microchip/vcap/vcap_model_kunit.c-2947-		.width = 8,
--
drivers/net/wireless/ath/ath11k/wmi.h=1903=enum wmi_tlv_service {
--
drivers/net/wireless/ath/ath11k/wmi.h-2012-	WMI_TLV_SERVICE_MULTIPLE_MCAST_FILTER_SET = 108,
drivers/net/wireless/ath/ath11k/wmi.h:2013:	WMI_TLV_SERVICE_HOST_MANAGED_RX_REORDER = 109,
drivers/net/wireless/ath/ath11k/wmi.h-2014-	WMI_TLV_SERVICE_FLASH_RDWR_SUPPORT = 110,
--
drivers/net/wireless/ath/ath12k/wmi.h=2024=enum wmi_tlv_service {
--
drivers/net/wireless/ath/ath12k/wmi.h-2133-	WMI_TLV_SERVICE_MULTIPLE_MCAST_FILTER_SET = 108,
drivers/net/wireless/ath/ath12k/wmi.h:2134:	WMI_TLV_SERVICE_HOST_MANAGED_RX_REORDER = 109,
drivers/net/wireless/ath/ath12k/wmi.h-2135-	WMI_TLV_SERVICE_FLASH_RDWR_SUPPORT = 110,
--
drivers/net/wireless/ath/wcn36xx/hal.h=98=enum wcn36xx_hal_host_msg_type {
--
drivers/net/wireless/ath/wcn36xx/hal.h-230-	WCN36XX_HAL_ADD_WOWL_BCAST_PTRN_RSP = 108,
drivers/net/wireless/ath/wcn36xx/hal.h:231:	WCN36XX_HAL_DEL_WOWL_BCAST_PTRN_RSP = 109,
drivers/net/wireless/ath/wcn36xx/hal.h-232-	WCN36XX_HAL_ENTER_WOWL_RSP = 110,
--
drivers/pinctrl/freescale/pinctrl-imx25.c=23=enum imx25_pads {
--
drivers/pinctrl/freescale/pinctrl-imx25.c-132-	MX25_PAD_KPP_ROW2 = 108,
drivers/pinctrl/freescale/pinctrl-imx25.c:133:	MX25_PAD_KPP_ROW3 = 109,
drivers/pinctrl/freescale/pinctrl-imx25.c-134-	MX25_PAD_KPP_COL0 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx35.c=21=enum imx35_pads {
--
drivers/pinctrl/freescale/pinctrl-imx35.c-130-	MX35_PAD_LD0 = 108,
drivers/pinctrl/freescale/pinctrl-imx35.c:131:	MX35_PAD_LD1 = 109,
drivers/pinctrl/freescale/pinctrl-imx35.c-132-	MX35_PAD_LD2 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx50.c=18=enum imx50_pads {
--
drivers/pinctrl/freescale/pinctrl-imx50.c-127-	MX50_PAD_EPDC_D0 = 108,
drivers/pinctrl/freescale/pinctrl-imx50.c:128:	MX50_PAD_EPDC_D1 = 109,
drivers/pinctrl/freescale/pinctrl-imx50.c-129-	MX50_PAD_EPDC_D2 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx51.c=19=enum imx51_pads {
--
drivers/pinctrl/freescale/pinctrl-imx51.c-128-	MX51_PAD_CSI1_D15 = 108,
drivers/pinctrl/freescale/pinctrl-imx51.c:129:	MX51_PAD_CSI1_D16 = 109,
drivers/pinctrl/freescale/pinctrl-imx51.c-130-	MX51_PAD_CSI1_D17 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx53.c=19=enum imx53_pads {
--
drivers/pinctrl/freescale/pinctrl-imx53.c-128-	MX53_PAD_EIM_DA5 = 108,
drivers/pinctrl/freescale/pinctrl-imx53.c:129:	MX53_PAD_EIM_DA6 = 109,
drivers/pinctrl/freescale/pinctrl-imx53.c-130-	MX53_PAD_EIM_DA7 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx6dl.c=17=enum imx6dl_pads {
--
drivers/pinctrl/freescale/pinctrl-imx6dl.c-126-	MX6DL_PAD_EIM_DA5 = 108,
drivers/pinctrl/freescale/pinctrl-imx6dl.c:127:	MX6DL_PAD_EIM_DA6 = 109,
drivers/pinctrl/freescale/pinctrl-imx6dl.c-128-	MX6DL_PAD_EIM_DA7 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx6q.c=19=enum imx6q_pads {
--
drivers/pinctrl/freescale/pinctrl-imx6q.c-128-	MX6Q_PAD_DISP0_DAT16 = 108,
drivers/pinctrl/freescale/pinctrl-imx6q.c:129:	MX6Q_PAD_DISP0_DAT17 = 109,
drivers/pinctrl/freescale/pinctrl-imx6q.c-130-	MX6Q_PAD_DISP0_DAT18 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx6sl.c=17=enum imx6sl_pads {
--
drivers/pinctrl/freescale/pinctrl-imx6sl.c-126-	MX6SL_PAD_LCD_DAT0 = 108,
drivers/pinctrl/freescale/pinctrl-imx6sl.c:127:	MX6SL_PAD_LCD_DAT1 = 109,
drivers/pinctrl/freescale/pinctrl-imx6sl.c-128-	MX6SL_PAD_LCD_DAT10 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx6sll.c=16=enum imx6sll_pads {
--
drivers/pinctrl/freescale/pinctrl-imx6sll.c-125-	MX6SLL_PAD_ECSPI1_MOSI = 108,
drivers/pinctrl/freescale/pinctrl-imx6sll.c:126:	MX6SLL_PAD_ECSPI1_MISO = 109,
drivers/pinctrl/freescale/pinctrl-imx6sll.c-127-	MX6SLL_PAD_ECSPI1_SS0 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx6sx.c=17=enum imx6sx_pads {
--
drivers/pinctrl/freescale/pinctrl-imx6sx.c-126-	MX6SX_PAD_QSPI1B_DQS = 108,
drivers/pinctrl/freescale/pinctrl-imx6sx.c:127:	MX6SX_PAD_QSPI1B_SCLK = 109,
drivers/pinctrl/freescale/pinctrl-imx6sx.c-128-	MX6SX_PAD_QSPI1B_SS0_B = 110,
--
drivers/pinctrl/freescale/pinctrl-imx6ul.c=17=enum imx6ul_pads {
--
drivers/pinctrl/freescale/pinctrl-imx6ul.c-126-	MX6UL_PAD_NAND_CE1_B = 108,
drivers/pinctrl/freescale/pinctrl-imx6ul.c:127:	MX6UL_PAD_NAND_CLE = 109,
drivers/pinctrl/freescale/pinctrl-imx6ul.c-128-	MX6UL_PAD_NAND_DQS = 110,
--
drivers/pinctrl/freescale/pinctrl-imx7d.c=17=enum imx7d_pads {
--
drivers/pinctrl/freescale/pinctrl-imx7d.c-126-	MX7D_PAD_SD2_WP = 108,
drivers/pinctrl/freescale/pinctrl-imx7d.c:127:	MX7D_PAD_SD2_RESET_B = 109,
drivers/pinctrl/freescale/pinctrl-imx7d.c-128-	MX7D_PAD_SD2_CLK = 110,
--
drivers/pinctrl/freescale/pinctrl-imx8mm.c=15=enum imx8mm_pads {
--
drivers/pinctrl/freescale/pinctrl-imx8mm.c-124-	MX8MM_IOMUXC_SAI2_RXFS = 108,
drivers/pinctrl/freescale/pinctrl-imx8mm.c:125:	MX8MM_IOMUXC_SAI2_RXC = 109,
drivers/pinctrl/freescale/pinctrl-imx8mm.c-126-	MX8MM_IOMUXC_SAI2_RXD0 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx8mn.c=15=enum imx8mn_pads {
--
drivers/pinctrl/freescale/pinctrl-imx8mn.c-124-	MX8MN_IOMUXC_SAI2_RXFS = 108,
drivers/pinctrl/freescale/pinctrl-imx8mn.c:125:	MX8MN_IOMUXC_SAI2_RXC = 109,
drivers/pinctrl/freescale/pinctrl-imx8mn.c-126-	MX8MN_IOMUXC_SAI2_RXD0 = 110,
--
drivers/pinctrl/freescale/pinctrl-imx8mp.c=15=enum imx8mp_pads {
--
drivers/pinctrl/freescale/pinctrl-imx8mp.c-124-	MX8MP_IOMUXC_SAI2_TXD0 = 108,
drivers/pinctrl/freescale/pinctrl-imx8mp.c:125:	MX8MP_IOMUXC_SAI2_MCLK = 109,
drivers/pinctrl/freescale/pinctrl-imx8mp.c-126-	MX8MP_IOMUXC_SAI3_RXFS = 110,
--
drivers/pinctrl/freescale/pinctrl-imx8mq.c=18=enum imx8mq_pads {
--
drivers/pinctrl/freescale/pinctrl-imx8mq.c-127-	MX8MQ_IOMUXC_SAI2_RXFS = 108,
drivers/pinctrl/freescale/pinctrl-imx8mq.c:128:	MX8MQ_IOMUXC_SAI2_RXC = 109,
drivers/pinctrl/freescale/pinctrl-imx8mq.c-129-	MX8MQ_IOMUXC_SAI2_RXD0 = 110,
--
drivers/pinctrl/freescale/pinctrl-vf610.c=16=enum vf610_pads {
--
drivers/pinctrl/freescale/pinctrl-vf610.c-125-	VF610_PAD_PTE3 = 108,
drivers/pinctrl/freescale/pinctrl-vf610.c:126:	VF610_PAD_PTE4 = 109,
drivers/pinctrl/freescale/pinctrl-vf610.c-127-	VF610_PAD_PTE5 = 110,
--
drivers/pinctrl/qcom/pinctrl-sdx65.c=914=static const struct msm_pinctrl_soc_data sdx65_pinctrl = {
--
drivers/pinctrl/qcom/pinctrl-sdx65.c-920-	.ngroups = ARRAY_SIZE(sdx65_groups),
drivers/pinctrl/qcom/pinctrl-sdx65.c:921:	.ngpios = 109,
drivers/pinctrl/qcom/pinctrl-sdx65.c-922-	.wakeirq_map = sdx65_pdc_map,
--
drivers/scsi/bfa/bfa_defs.h=119=enum bfa_status {
--
drivers/scsi/bfa/bfa_defs.h-161-	BFA_STATUS_MEMTEST_FAILED = 90, /* Memory test failed contact support */
drivers/scsi/bfa/bfa_defs.h:162:	BFA_STATUS_LEDTEST_OP = 109, /* LED test is operating */
drivers/scsi/bfa/bfa_defs.h-163-	BFA_STATUS_INVALID_MAC  = 134, /*  Invalid MAC address */
--
fs/afs/afs_fs.h=44=enum AFS_FS_Errors {
--
fs/afs/afs_fs.h-53-	VDISKFULL	= 108,	/* disk partition is full */
fs/afs/afs_fs.h:54:	VOVERQUOTA	= 109,	/* volume's maximum quota exceeded */
fs/afs/afs_fs.h-55-	VBUSY		= 110,	/* volume is temporarily unavailable */
--
include/linux/ieee80211.h=3513=enum ieee80211_statuscode {
--
include/linux/ieee80211.h-3575-	WLAN_STATUS_FILS_AUTHENTICATION_FAILURE = 108,
include/linux/ieee80211.h:3576:	WLAN_STATUS_UNKNOWN_AUTHENTICATION_SERVER = 109,
include/linux/ieee80211.h-3577-	WLAN_STATUS_SAE_HASH_TO_ELEMENT = 126,
--
include/linux/ieee80211.h=3644=enum ieee80211_eid {
--
include/linux/ieee80211.h-3738-	WLAN_EID_ADVERTISEMENT_PROTOCOL = 108,
include/linux/ieee80211.h:3739:	WLAN_EID_EXPEDITED_BW_REQ = 109,
include/linux/ieee80211.h-3740-	WLAN_EID_QOS_MAP_SET = 110,
--
include/linux/ieee80211.h=3845=enum ieee80211_eid_ext {
--
include/linux/ieee80211.h-3878-	WLAN_EID_EXT_EHT_CAPABILITY = 108,
include/linux/ieee80211.h:3879:	WLAN_EID_EXT_TID_TO_LINK_MAPPING = 109,
include/linux/ieee80211.h-3880-	WLAN_EID_EXT_BANDWIDTH_INDICATION = 135,
--
include/net/tls_prot.h=37=enum {
--
include/net/tls_prot.h-58-	TLS_ALERT_DESC_USER_CANCELED = 90,
include/net/tls_prot.h:59:	TLS_ALERT_DESC_MISSING_EXTENSION = 109,
include/net/tls_prot.h-60-	TLS_ALERT_DESC_UNSUPPORTED_EXTENSION = 110,
--
include/uapi/drm/habanalabs_accel.h=69=enum gaudi_queue_id {
--
include/uapi/drm/habanalabs_accel.h-178-	GAUDI_QUEUE_ID_NIC_8_3 = 108,	/* internal */
include/uapi/drm/habanalabs_accel.h:179:	GAUDI_QUEUE_ID_NIC_9_0 = 109,	/* internal */
include/uapi/drm/habanalabs_accel.h-180-	GAUDI_QUEUE_ID_NIC_9_1 = 110,	/* internal */
--
include/uapi/drm/habanalabs_accel.h=200=enum gaudi2_queue_id {
--
include/uapi/drm/habanalabs_accel.h-309-	GAUDI2_QUEUE_ID_DCORE2_TPC_3_0 = 108,
include/uapi/drm/habanalabs_accel.h:310:	GAUDI2_QUEUE_ID_DCORE2_TPC_3_1 = 109,
include/uapi/drm/habanalabs_accel.h-311-	GAUDI2_QUEUE_ID_DCORE2_TPC_3_2 = 110,
--
include/uapi/linux/ethtool.h=1950=enum ethtool_link_mode_bit_indices {
--
include/uapi/linux/ethtool.h-2067-	ETHTOOL_LINK_MODE_200000baseVR_Full_BIT		 = 108,
include/uapi/linux/ethtool.h:2068:	ETHTOOL_LINK_MODE_400000baseCR2_Full_BIT	 = 109,
include/uapi/linux/ethtool.h-2069-	ETHTOOL_LINK_MODE_400000baseKR2_Full_BIT	 = 110,
--
sound/pci/asihpi/hpi.h=163=enum HPI_SOURCENODES {
--
sound/pci/asihpi/hpi.h-180-	    Audio samples come from the Cobranet network and into the device. */
sound/pci/asihpi/hpi.h:181:	HPI_SOURCENODE_COBRANET = 109,
sound/pci/asihpi/hpi.h-182-	HPI_SOURCENODE_ANALOG = 110,	     /**< analog input node. */
--
sound/pci/asihpi/hpi.h=882=enum HPI_ERROR_CODES {
--
sound/pci/asihpi/hpi.h-901-	indicating that the message was not processed. */
sound/pci/asihpi/hpi.h:902:	HPI_ERROR_PROCESSING_MESSAGE = 109,
sound/pci/asihpi/hpi.h-903-	/** The network did not respond in a timely manner. */
--
tools/perf/tests/sample-parsing.c=206=static int do_test(u64 sample_type, u64 sample_regs, u64 read_format)
--
tools/perf/tests/sample-parsing.c-254-		.period		= 108,
tools/perf/tests/sample-parsing.c:255:		.weight		= 109,
tools/perf/tests/sample-parsing.c-256-		.cpu		= 110,
]

18/2 2026/05/14 16:08 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 67422
							output: 26
							thoughts: 44
						

Thoughts:
Here's my thought process, summarized as you requested:

**Finding the BPF Definition**

Okay, hold on a second. Instead of trying to manually hunt through the kernel source tree, I've got a much more efficient approach. I can just leverage the power of my tools, specifically the `codesearch-definition-source` or `read-file` tools. I'll simply grep for the value `109` directly within `include/uapi/linux/bpf.h`. That header file is the definitive source for the BPF user-space API definitions. This should quickly pinpoint what `109` actually represents within the context of BPF. This approach is much faster and less prone to manual error than a more exploratory search.



19/2 2026/05/14 16:08 tool read-file
0m Args:
map[File:include/uapi/linux/bpf.h]

Results:
map[Contents:/* SPDX-License-Identifier: GPL-2.0 WITH Linux-syscall-note */
/* Copyright (c) 2011-2014 PLUMgrid, http://plumgrid.com
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of version 2 of the GNU General Public
 * License as published by the Free Software Foundation.
 */
#ifndef _UAPI__LINUX_BPF_H__
#define _UAPI__LINUX_BPF_H__

#include <linux/types.h>
#include <linux/bpf_common.h>

/* Extended instruction set based on top of classic BPF */

/* instruction classes */
#define BPF_JMP32	0x06	/* jmp mode in word width */
#define BPF_ALU64	0x07	/* alu mode in double word width */

/* ld/ldx fields */
#define BPF_DW		0x18	/* double word (64-bit) */
#define BPF_MEMSX	0x80	/* load with sign extension */
#define BPF_ATOMIC	0xc0	/* atomic memory ops - op type in immediate */
#define BPF_XADD	0xc0	/* exclusive add - legacy name */

/* alu/jmp fields */
#define BPF_MOV		0xb0	/* mov reg to reg */
#define BPF_ARSH	0xc0	/* sign extending arithmetic shift right */

/* change endianness of a register */
#define BPF_END		0xd0	/* flags for endianness conversion: */
#define BPF_TO_LE	0x00	/* convert to little-endian */
#define BPF_TO_BE	0x08	/* convert to big-endian */
#define BPF_FROM_LE	BPF_TO_LE
#define BPF_FROM_BE	BPF_TO_BE

/* jmp encodings */
#define BPF_JNE		0x50	/* jump != */
#define BPF_JLT		0xa0	/* LT is unsigned, '<' */
#define BPF_JLE		0xb0	/* LE is unsigned, '<=' */
#define BPF_JSGT	0x60	/* SGT is signed '>', GT in x86 */
#define BPF_JSGE	0x70	/* SGE is signed '>=', GE in x86 */
#define BPF_JSLT	0xc0	/* SLT is signed, '<' */
#define BPF_JSLE	0xd0	/* SLE is signed, '<=' */
#define BPF_JCOND	0xe0	/* conditional pseudo jumps: may_goto, goto_or_nop */
#define BPF_CALL	0x80	/* function call */
#define BPF_EXIT	0x90	/* function return */

/* atomic op type fields (stored in immediate) */
#define BPF_FETCH	0x01	/* not an opcode on its own, used to build others */
#define BPF_XCHG	(0xe0 | BPF_FETCH)	/* atomic exchange */
#define BPF_CMPXCHG	(0xf0 | BPF_FETCH)	/* atomic compare-and-write */

#define BPF_LOAD_ACQ	0x100	/* load-acquire */
#define BPF_STORE_REL	0x110	/* store-release */

enum bpf_cond_pseudo_jmp {
	BPF_MAY_GOTO = 0,
};

/* Register numbers */
enum {
	BPF_REG_0 = 0,
	BPF_REG_1,
	BPF_REG_2,
	BPF_REG_3,
	BPF_REG_4,
	BPF_REG_5,
	BPF_REG_6,
	BPF_REG_7,
	BPF_REG_8,
	BPF_REG_9,
	BPF_REG_10,
	__MAX_BPF_REG,
};

/* BPF has 10 general purpose 64-bit registers and stack frame. */
#define MAX_BPF_REG	__MAX_BPF_REG

struct bpf_insn {
	__u8	code;		/* opcode */
	__u8	dst_reg:4;	/* dest register */
	__u8	src_reg:4;	/* source register */
	__s16	off;		/* signed offset */
	__s32	imm;		/* signed immediate constant */
};

/* Deprecated: use struct bpf_lpm_trie_key_u8 (when the "data" member is needed for
 * byte access) or struct bpf_lpm_trie_key_hdr (when using an alternative type for
 * the trailing flexible array member) instead.
 */
struct bpf_lpm_trie_key {
	__u32	prefixlen;	/* up to 32 for AF_INET, 128 for AF_INET6 */
	__u8	data[0];	/* Arbitrary size */
};

/* Header for bpf_lpm_trie_key structs */
struct bpf_lpm_trie_key_hdr {
	__u32	prefixlen;
};

/* Key of an a BPF_MAP_TYPE_LPM_TRIE entry, with trailing byte array. */
struct bpf_lpm_trie_key_u8 {
	union {
		struct bpf_lpm_trie_key_hdr	hdr;
		__u32				prefixlen;
	};
	__u8	data[];		/* Arbitrary size */
};

struct bpf_cgroup_storage_key {
	__u64	cgroup_inode_id;	/* cgroup inode id */
	__u32	attach_type;		/* program attach type (enum bpf_attach_type) */
};

enum bpf_cgroup_iter_order {
	BPF_CGROUP_ITER_ORDER_UNSPEC = 0,
	BPF_CGROUP_ITER_SELF_ONLY,		/* process only a single object. */
	BPF_CGROUP_ITER_DESCENDANTS_PRE,	/* walk descendants in pre-order. */
	BPF_CGROUP_ITER_DESCENDANTS_POST,	/* walk descendants in post-order. */
	BPF_CGROUP_ITER_ANCESTORS_UP,		/* walk ancestors upward. */
};

union bpf_iter_link_info {
	struct {
		__u32	map_fd;
	} map;
	struct {
		enum bpf_cgroup_iter_order order;

		/* At most one of cgroup_fd and cgroup_id can be non-zero. If
		 * both are zero, the walk starts from the default cgroup v2
		 * root. For walking v1 hierarchy, one should always explicitly
		 * specify cgroup_fd.
		 */
		__u32	cgroup_fd;
		__u64	cgroup_id;
	} cgroup;
	/* Parameters of task iterators. */
	struct {
		__u32	tid;
		__u32	pid;
		__u32	pid_fd;
	} task;
};

/* BPF syscall commands, see bpf(2) man-page for more details. */
/**
 * DOC: eBPF Syscall Preamble
 *
 * The operation to be performed by the **bpf**\ () system call is determined
 * by the *cmd* argument. Each operation takes an accompanying argument,
 * provided via *attr*, which is a pointer to a union of type *bpf_attr* (see
 * below). The size argument is the size of the union pointed to by *attr*.
 */
/**
 * DOC: eBPF Syscall Commands
 *
 * BPF_MAP_CREATE
 *	Description
 *		Create a map and return a file descriptor that refers to the
 *		map. The close-on-exec file descriptor flag (see **fcntl**\ (2))
 *		is automatically enabled for the new file descriptor.
 *
 *		Applying **close**\ (2) to the file descriptor returned by
 *		**BPF_MAP_CREATE** will delete the map (but see NOTES).
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_MAP_LOOKUP_ELEM
 *	Description
 *		Look up an element with a given *key* in the map referred to
 *		by the file descriptor *map_fd*.
 *
 *		The *flags* argument may be specified as one of the
 *		following:
 *
 *		**BPF_F_LOCK**
 *			Look up the value of a spin-locked map without
 *			returning the lock. This must be specified if the
 *			elements contain a spinlock.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_MAP_UPDATE_ELEM
 *	Description
 *		Create or update an element (key/value pair) in a specified map.
 *
 *		The *flags* argument should be specified as one of the
 *		following:
 *
 *		**BPF_ANY**
 *			Create a new element or update an existing element.
 *		**BPF_NOEXIST**
 *			Create a new element only if it did not exist.
 *		**BPF_EXIST**
 *			Update an existing element.
 *		**BPF_F_LOCK**
 *			Update a spin_lock-ed map element.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 *		May set *errno* to **EINVAL**, **EPERM**, **ENOMEM**,
 *		**E2BIG**, **EEXIST**, or **ENOENT**.
 *
 *		**E2BIG**
 *			The number of elements in the map reached the
 *			*max_entries* limit specified at map creation time.
 *		**EEXIST**
 *			If *flags* specifies **BPF_NOEXIST** and the element
 *			with *key* already exists in the map.
 *		**ENOENT**
 *			If *flags* specifies **BPF_EXIST** and the element with
 *			*key* does not exist in the map.
 *
 * BPF_MAP_DELETE_ELEM
 *	Description
 *		Look up and delete an element by key in a specified map.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_MAP_GET_NEXT_KEY
 *	Description
 *		Look up an element by key in a specified map and return the key
 *		of the next element. Can be used to iterate over all elements
 *		in the map.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 *		The following cases can be used to iterate over all elements of
 *		the map:
 *
 *		* If *key* is not found, the operation returns zero and sets
 *		  the *next_key* pointer to the key of the first element.
 *		* If *key* is found, the operation returns zero and sets the
 *		  *next_key* pointer to the key of the next element.
 *		* If *key* is the last element, returns -1 and *errno* is set
 *		  to **ENOENT**.
 *
 *		May set *errno* to **ENOMEM**, **EFAULT**, **EPERM**, or
 *		**EINVAL** on error.
 *
 * BPF_PROG_LOAD
 *	Description
 *		Verify and load an eBPF program, returning a new file
 *		descriptor associated with the program.
 *
 *		Applying **close**\ (2) to the file descriptor returned by
 *		**BPF_PROG_LOAD** will unload the eBPF program (but see NOTES).
 *
 *		The close-on-exec file descriptor flag (see **fcntl**\ (2)) is
 *		automatically enabled for the new file descriptor.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_OBJ_PIN
 *	Description
 *		Pin an eBPF program or map referred by the specified *bpf_fd*
 *		to the provided *pathname* on the filesystem.
 *
 *		The *pathname* argument must not contain a dot (".").
 *
 *		On success, *pathname* retains a reference to the eBPF object,
 *		preventing deallocation of the object when the original
 *		*bpf_fd* is closed. This allow the eBPF object to live beyond
 *		**close**\ (\ *bpf_fd*\ ), and hence the lifetime of the parent
 *		process.
 *
 *		Applying **unlink**\ (2) or similar calls to the *pathname*
 *		unpins the object from the filesystem, removing the reference.
 *		If no other file descriptors or filesystem nodes refer to the
 *		same object, it will be deallocated (see NOTES).
 *
 *		The filesystem type for the parent directory of *pathname* must
 *		be **BPF_FS_MAGIC**.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_OBJ_GET
 *	Description
 *		Open a file descriptor for the eBPF object pinned to the
 *		specified *pathname*.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_PROG_ATTACH
 *	Description
 *		Attach an eBPF program to a *target_fd* at the specified
 *		*attach_type* hook.
 *
 *		The *attach_type* specifies the eBPF attachment point to
 *		attach the program to, and must be one of *bpf_attach_type*
 *		(see below).
 *
 *		The *attach_bpf_fd* must be a valid file descriptor for a
 *		loaded eBPF program of a cgroup, flow dissector, LIRC, sockmap
 *		or sock_ops type corresponding to the specified *attach_type*.
 *
 *		The *target_fd* must be a valid file descriptor for a kernel
 *		object which depends on the attach type of *attach_bpf_fd*:
 *
 *		**BPF_PROG_TYPE_CGROUP_DEVICE**,
 *		**BPF_PROG_TYPE_CGROUP_SKB**,
 *		**BPF_PROG_TYPE_CGROUP_SOCK**,
 *		**BPF_PROG_TYPE_CGROUP_SOCK_ADDR**,
 *		**BPF_PROG_TYPE_CGROUP_SOCKOPT**,
 *		**BPF_PROG_TYPE_CGROUP_SYSCTL**,
 *		**BPF_PROG_TYPE_SOCK_OPS**
 *
 *			Control Group v2 hierarchy with the eBPF controller
 *			enabled. Requires the kernel to be compiled with
 *			**CONFIG_CGROUP_BPF**.
 *
 *		**BPF_PROG_TYPE_FLOW_DISSECTOR**
 *
 *			Network namespace (eg /proc/self/ns/net).
 *
 *		**BPF_PROG_TYPE_LIRC_MODE2**
 *
 *			LIRC device path (eg /dev/lircN). Requires the kernel
 *			to be compiled with **CONFIG_BPF_LIRC_MODE2**.
 *
 *		**BPF_PROG_TYPE_SK_SKB**,
 *		**BPF_PROG_TYPE_SK_MSG**
 *
 *			eBPF map of socket type (eg **BPF_MAP_TYPE_SOCKHASH**).
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_PROG_DETACH
 *	Description
 *		Detach the eBPF program associated with the *target_fd* at the
 *		hook specified by *attach_type*. The program must have been
 *		previously attached using **BPF_PROG_ATTACH**.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_PROG_TEST_RUN
 *	Description
 *		Run the eBPF program associated with the *prog_fd* a *repeat*
 *		number of times against a provided program context *ctx_in* and
 *		data *data_in*, and return the modified program context
 *		*ctx_out*, *data_out* (for example, packet data), result of the
 *		execution *retval*, and *duration* of the test run.
 *
 *		The sizes of the buffers provided as input and output
 *		parameters *ctx_in*, *ctx_out*, *data_in*, and *data_out* must
 *		be provided in the corresponding variables *ctx_size_in*,
 *		*ctx_size_out*, *data_size_in*, and/or *data_size_out*. If any
 *		of these parameters are not provided (ie set to NULL), the
 *		corresponding size field must be zero.
 *
 *		Some program types have particular requirements:
 *
 *		**BPF_PROG_TYPE_SK_LOOKUP**
 *			*data_in* and *data_out* must be NULL.
 *
 *		**BPF_PROG_TYPE_RAW_TRACEPOINT**,
 *		**BPF_PROG_TYPE_RAW_TRACEPOINT_WRITABLE**
 *
 *			*ctx_out*, *data_in* and *data_out* must be NULL.
 *			*repeat* must be zero.
 *
 *		BPF_PROG_RUN is an alias for BPF_PROG_TEST_RUN.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 *		**ENOSPC**
 *			Either *data_size_out* or *ctx_size_out* is too small.
 *		**ENOTSUPP**
 *			This command is not supported by the program type of
 *			the program referred to by *prog_fd*.
 *
 * BPF_PROG_GET_NEXT_ID
 *	Description
 *		Fetch the next eBPF program currently loaded into the kernel.
 *
 *		Looks for the eBPF program with an id greater than *start_id*
 *		and updates *next_id* on success. If no other eBPF programs
 *		remain with ids higher than *start_id*, returns -1 and sets
 *		*errno* to **ENOENT**.
 *
 *	Return
 *		Returns zero on success. On error, or when no id remains, -1
 *		is returned and *errno* is set appropriately.
 *
 * BPF_MAP_GET_NEXT_ID
 *	Description
 *		Fetch the next eBPF map currently loaded into the kernel.
 *
 *		Looks for the eBPF map with an id greater than *start_id*
 *		and updates *next_id* on success. If no other eBPF maps
 *		remain with ids higher than *start_id*, returns -1 and sets
 *		*errno* to **ENOENT**.
 *
 *	Return
 *		Returns zero on success. On error, or when no id remains, -1
 *		is returned and *errno* is set appropriately.
 *
 * BPF_PROG_GET_FD_BY_ID
 *	Description
 *		Open a file descriptor for the eBPF program corresponding to
 *		*prog_id*.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_MAP_GET_FD_BY_ID
 *	Description
 *		Open a file descriptor for the eBPF map corresponding to
 *		*map_id*.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_OBJ_GET_INFO_BY_FD
 *	Description
 *		Obtain information about the eBPF object corresponding to
 *		*bpf_fd*.
 *
 *		Populates up to *info_len* bytes of *info*, which will be in
 *		one of the following formats depending on the eBPF object type
 *		of *bpf_fd*:
 *
 *		* **struct bpf_prog_info**
 *		* **struct bpf_map_info**
 *		* **struct bpf_btf_info**
 *		* **struct bpf_link_info**
 *		* **struct bpf_token_info**
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_PROG_QUERY
 *	Description
 *		Obtain information about eBPF programs associated with the
 *		specified *attach_type* hook.
 *
 *		The *target_fd* must be a valid file descriptor for a kernel
 *		object which depends on the attach type of *attach_bpf_fd*:
 *
 *		**BPF_PROG_TYPE_CGROUP_DEVICE**,
 *		**BPF_PROG_TYPE_CGROUP_SKB**,
 *		**BPF_PROG_TYPE_CGROUP_SOCK**,
 *		**BPF_PROG_TYPE_CGROUP_SOCK_ADDR**,
 *		**BPF_PROG_TYPE_CGROUP_SOCKOPT**,
 *		**BPF_PROG_TYPE_CGROUP_SYSCTL**,
 *		**BPF_PROG_TYPE_SOCK_OPS**
 *
 *			Control Group v2 hierarchy with the eBPF controller
 *			enabled. Requires the kernel to be compiled with
 *			**CONFIG_CGROUP_BPF**.
 *
 *		**BPF_PROG_TYPE_FLOW_DISSECTOR**
 *
 *			Network namespace (eg /proc/self/ns/net).
 *
 *		**BPF_PROG_TYPE_LIRC_MODE2**
 *
 *			LIRC device path (eg /dev/lircN). Requires the kernel
 *			to be compiled with **CONFIG_BPF_LIRC_MODE2**.
 *
 *		**BPF_PROG_QUERY** always fetches the number of programs
 *		attached and the *attach_flags* which were used to attach those
 *		programs. Additionally, if *prog_ids* is nonzero and the number
 *		of attached programs is less than *prog_cnt*, populates
 *		*prog_ids* with the eBPF program ids of the programs attached
 *		at *target_fd*.
 *
 *		The following flags may alter the result:
 *
 *		**BPF_F_QUERY_EFFECTIVE**
 *			Only return information regarding programs which are
 *			currently effective at the specified *target_fd*.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_RAW_TRACEPOINT_OPEN
 *	Description
 *		Attach an eBPF program to a tracepoint *name* to access kernel
 *		internal arguments of the tracepoint in their raw form.
 *
 *		The *prog_fd* must be a valid file descriptor associated with
 *		a loaded eBPF program of type **BPF_PROG_TYPE_RAW_TRACEPOINT**.
 *
 *		No ABI guarantees are made about the content of tracepoint
 *		arguments exposed to the corresponding eBPF program.
 *
 *		Applying **close**\ (2) to the file descriptor returned by
 *		**BPF_RAW_TRACEPOINT_OPEN** will delete the map (but see NOTES).
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_BTF_LOAD
 *	Description
 *		Verify and load BPF Type Format (BTF) metadata into the kernel,
 *		returning a new file descriptor associated with the metadata.
 *		BTF is described in more detail at
 *		https://www.kernel.org/doc/html/latest/bpf/btf.html.
 *
 *		The *btf* parameter must point to valid memory providing
 *		*btf_size* bytes of BTF binary metadata.
 *
 *		The returned file descriptor can be passed to other **bpf**\ ()
 *		subcommands such as **BPF_PROG_LOAD** or **BPF_MAP_CREATE** to
 *		associate the BTF with those objects.
 *
 *		Similar to **BPF_PROG_LOAD**, **BPF_BTF_LOAD** has optional
 *		parameters to specify a *btf_log_buf*, *btf_log_size* and
 *		*btf_log_level* which allow the kernel to return freeform log
 *		output regarding the BTF verification process.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_BTF_GET_FD_BY_ID
 *	Description
 *		Open a file descriptor for the BPF Type Format (BTF)
 *		corresponding to *btf_id*.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_TASK_FD_QUERY
 *	Description
 *		Obtain information about eBPF programs associated with the
 *		target process identified by *pid* and *fd*.
 *
 *		If the *pid* and *fd* are associated with a tracepoint, kprobe
 *		or uprobe perf event, then the *prog_id* and *fd_type* will
 *		be populated with the eBPF program id and file descriptor type
 *		of type **bpf_task_fd_type**. If associated with a kprobe or
 *		uprobe, the  *probe_offset* and *probe_addr* will also be
 *		populated. Optionally, if *buf* is provided, then up to
 *		*buf_len* bytes of *buf* will be populated with the name of
 *		the tracepoint, kprobe or uprobe.
 *
 *		The resulting *prog_id* may be introspected in deeper detail
 *		using **BPF_PROG_GET_FD_BY_ID** and **BPF_OBJ_GET_INFO_BY_FD**.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_MAP_LOOKUP_AND_DELETE_ELEM
 *	Description
 *		Look up an element with the given *key* in the map referred to
 *		by the file descriptor *fd*, and if found, delete the element.
 *
 *		For **BPF_MAP_TYPE_QUEUE** and **BPF_MAP_TYPE_STACK** map
 *		types, the *flags* argument needs to be set to 0, but for other
 *		map types, it may be specified as:
 *
 *		**BPF_F_LOCK**
 *			Look up and delete the value of a spin-locked map
 *			without returning the lock. This must be specified if
 *			the elements contain a spinlock.
 *
 *		The **BPF_MAP_TYPE_QUEUE** and **BPF_MAP_TYPE_STACK** map types
 *		implement this command as a "pop" operation, deleting the top
 *		element rather than one corresponding to *key*.
 *		The *key* and *key_len* parameters should be zeroed when
 *		issuing this operation for these map types.
 *
 *		This command is only valid for the following map types:
 *		* **BPF_MAP_TYPE_QUEUE**
 *		* **BPF_MAP_TYPE_STACK**
 *		* **BPF_MAP_TYPE_HASH**
 *		* **BPF_MAP_TYPE_PERCPU_HASH**
 *		* **BPF_MAP_TYPE_LRU_HASH**
 *		* **BPF_MAP_TYPE_LRU_PERCPU_HASH**
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_MAP_FREEZE
 *	Description
 *		Freeze the permissions of the specified map.
 *
 *		Write permissions may be frozen by passing zero *flags*.
 *		Upon success, no future syscall invocations may alter the
 *		map state of *map_fd*. Write operations from eBPF programs
 *		are still possible for a frozen map.
 *
 *		Not supported for maps of type **BPF_MAP_TYPE_STRUCT_OPS**.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_BTF_GET_NEXT_ID
 *	Description
 *		Fetch the next BPF Type Format (BTF) object currently loaded
 *		into the kernel.
 *
 *		Looks for the BTF object with an id greater than *start_id*
 *		and updates *next_id* on success. If no other BTF objects
 *		remain with ids higher than *start_id*, returns -1 and sets
 *		*errno* to **ENOENT**.
 *
 *	Return
 *		Returns zero on success. On error, or when no id remains, -1
 *		is returned and *errno* is set appropriately.
 *
 * BPF_MAP_LOOKUP_BATCH
 *	Description
 *		Iterate and fetch multiple elements in a map.
 *
 *		Two opaque values are used to manage batch operations,
 *		*in_batch* and *out_batch*. Initially, *in_batch* must be set
 *		to NULL to begin the batched operation. After each subsequent
 *		**BPF_MAP_LOOKUP_BATCH**, the caller should pass the resultant
 *		*out_batch* as the *in_batch* for the next operation to
 *		continue iteration from the current point. Both *in_batch* and
 *		*out_batch* must point to memory large enough to hold a key,
 *		except for maps of type **BPF_MAP_TYPE_{HASH, PERCPU_HASH,
 *		LRU_HASH, LRU_PERCPU_HASH}**, for which batch parameters
 *		must be at least 4 bytes wide regardless of key size.
 *
 *		The *keys* and *values* are output parameters which must point
 *		to memory large enough to hold *count* items based on the key
 *		and value size of the map *map_fd*. The *keys* buffer must be
 *		of *key_size* * *count*. The *values* buffer must be of
 *		*value_size* * *count*.
 *
 *		The *elem_flags* argument may be specified as one of the
 *		following:
 *
 *		**BPF_F_LOCK**
 *			Look up the value of a spin-locked map without
 *			returning the lock. This must be specified if the
 *			elements contain a spinlock.
 *
 *		On success, *count* elements from the map are copied into the
 *		user buffer, with the keys copied into *keys* and the values
 *		copied into the corresponding indices in *values*.
 *
 *		If an error is returned and *errno* is not **EFAULT**, *count*
 *		is set to the number of successfully processed elements.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 *		May set *errno* to **ENOSPC** to indicate that *keys* or
 *		*values* is too small to dump an entire bucket during
 *		iteration of a hash-based map type.
 *
 * BPF_MAP_LOOKUP_AND_DELETE_BATCH
 *	Description
 *		Iterate and delete all elements in a map.
 *
 *		This operation has the same behavior as
 *		**BPF_MAP_LOOKUP_BATCH** with two exceptions:
 *
 *		* Every element that is successfully returned is also deleted
 *		  from the map. This is at least *count* elements. Note that
 *		  *count* is both an input and an output parameter.
 *		* Upon returning with *errno* set to **EFAULT**, up to
 *		  *count* elements may be deleted without returning the keys
 *		  and values of the deleted elements.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_MAP_UPDATE_BATCH
 *	Description
 *		Update multiple elements in a map by *key*.
 *
 *		The *keys* and *values* are input parameters which must point
 *		to memory large enough to hold *count* items based on the key
 *		and value size of the map *map_fd*. The *keys* buffer must be
 *		of *key_size* * *count*. The *values* buffer must be of
 *		*value_size* * *count*.
 *
 *		Each element specified in *keys* is sequentially updated to the
 *		value in the corresponding index in *values*. The *in_batch*
 *		and *out_batch* parameters are ignored and should be zeroed.
 *
 *		The *elem_flags* argument should be specified as one of the
 *		following:
 *
 *		**BPF_ANY**
 *			Create new elements or update a existing elements.
 *		**BPF_NOEXIST**
 *			Create new elements only if they do not exist.
 *		**BPF_EXIST**
 *			Update existing elements.
 *		**BPF_F_LOCK**
 *			Update spin_lock-ed map elements. This must be
 *			specified if the map value contains a spinlock.
 *
 *		On success, *count* elements from the map are updated.
 *
 *		If an error is returned and *errno* is not **EFAULT**, *count*
 *		is set to the number of successfully processed elements.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 *		May set *errno* to **EINVAL**, **EPERM**, **ENOMEM**, or
 *		**E2BIG**. **E2BIG** indicates that the number of elements in
 *		the map reached the *max_entries* limit specified at map
 *		creation time.
 *
 *		May set *errno* to one of the following error codes under
 *		specific circumstances:
 *
 *		**EEXIST**
 *			If *flags* specifies **BPF_NOEXIST** and the element
 *			with *key* already exists in the map.
 *		**ENOENT**
 *			If *flags* specifies **BPF_EXIST** and the element with
 *			*key* does not exist in the map.
 *
 * BPF_MAP_DELETE_BATCH
 *	Description
 *		Delete multiple elements in a map by *key*.
 *
 *		The *keys* parameter is an input parameter which must point
 *		to memory large enough to hold *count* items based on the key
 *		size of the map *map_fd*, that is, *key_size* * *count*.
 *
 *		Each element specified in *keys* is sequentially deleted. The
 *		*in_batch*, *out_batch*, and *values* parameters are ignored
 *		and should be zeroed.
 *
 *		The *elem_flags* argument may be specified as one of the
 *		following:
 *
 *		**BPF_F_LOCK**
 *			Look up the value of a spin-locked map without
 *			returning the lock. This must be specified if the
 *			elements contain a spinlock.
 *
 *		On success, *count* elements from the map are updated.
 *
 *		If an error is returned and *errno* is not **EFAULT**, *count*
 *		is set to the number of successfully processed elements. If
 *		*errno* is **EFAULT**, up to *count* elements may be been
 *		deleted.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_LINK_CREATE
 *	Description
 *		Attach an eBPF program to a *target_fd* at the specified
 *		*attach_type* hook and return a file descriptor handle for
 *		managing the link.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_LINK_UPDATE
 *	Description
 *		Update the eBPF program in the specified *link_fd* to
 *		*new_prog_fd*.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_LINK_GET_FD_BY_ID
 *	Description
 *		Open a file descriptor for the eBPF Link corresponding to
 *		*link_id*.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_LINK_GET_NEXT_ID
 *	Description
 *		Fetch the next eBPF link currently loaded into the kernel.
 *
 *		Looks for the eBPF link with an id greater than *start_id*
 *		and updates *next_id* on success. If no other eBPF links
 *		remain with ids higher than *start_id*, returns -1 and sets
 *		*errno* to **ENOENT**.
 *
 *	Return
 *		Returns zero on success. On error, or when no id remains, -1
 *		is returned and *errno* is set appropriately.
 *
 * BPF_ENABLE_STATS
 *	Description
 *		Enable eBPF runtime statistics gathering.
 *
 *		Runtime statistics gathering for the eBPF runtime is disabled
 *		by default to minimize the corresponding performance overhead.
 *		This command enables statistics globally.
 *
 *		Multiple programs may independently enable statistics.
 *		After gathering the desired statistics, eBPF runtime statistics
 *		may be disabled again by calling **close**\ (2) for the file
 *		descriptor returned by this function. Statistics will only be
 *		disabled system-wide when all outstanding file descriptors
 *		returned by prior calls for this subcommand are closed.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_ITER_CREATE
 *	Description
 *		Create an iterator on top of the specified *link_fd* (as
 *		previously created using **BPF_LINK_CREATE**) and return a
 *		file descriptor that can be used to trigger the iteration.
 *
 *		If the resulting file descriptor is pinned to the filesystem
 *		using  **BPF_OBJ_PIN**, then subsequent **read**\ (2) syscalls
 *		for that path will trigger the iterator to read kernel state
 *		using the eBPF program attached to *link_fd*.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_LINK_DETACH
 *	Description
 *		Forcefully detach the specified *link_fd* from its
 *		corresponding attachment point.
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_PROG_BIND_MAP
 *	Description
 *		Bind a map to the lifetime of an eBPF program.
 *
 *		The map identified by *map_fd* is bound to the program
 *		identified by *prog_fd* and only released when *prog_fd* is
 *		released. This may be used in cases where metadata should be
 *		associated with a program which otherwise does not contain any
 *		references to the map (for example, embedded in the eBPF
 *		program instructions).
 *
 *	Return
 *		Returns zero on success. On error, -1 is returned and *errno*
 *		is set appropriately.
 *
 * BPF_TOKEN_CREATE
 *	Description
 *		Create BPF token with embedded information about what
 *		BPF-related functionality it allows:
 *		- a set of allowed bpf() syscall commands;
 *		- a set of allowed BPF map types to be created with
 *		BPF_MAP_CREATE command, if BPF_MAP_CREATE itself is allowed;
 *		- a set of allowed BPF program types and BPF program attach
 *		types to be loaded with BPF_PROG_LOAD command, if
 *		BPF_PROG_LOAD itself is allowed.
 *
 *		BPF token is created (derived) from an instance of BPF FS,
 *		assuming it has necessary delegation mount options specified.
 *		This BPF token can be passed as an extra parameter to various
 *		bpf() syscall commands to grant BPF subsystem functionality to
 *		unprivileged processes.
 *
 *		When created, BPF token is "associated" with the owning
 *		user namespace of BPF FS instance (super block) that it was
 *		derived from, and subsequent BPF operations performed with
 *		BPF token would be performing capabilities checks (i.e.,
 *		CAP_BPF, CAP_PERFMON, CAP_NET_ADMIN, CAP_SYS_ADMIN) within
 *		that user namespace. Without BPF token, such capabilities
 *		have to be granted in init user namespace, making bpf()
 *		syscall incompatible with user namespace, for the most part.
 *
 *	Return
 *		A new file descriptor (a nonnegative integer), or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * BPF_PROG_STREAM_READ_BY_FD
 *	Description
 *		Read data of a program's BPF stream. The program is identified
 *		by *prog_fd*, and the stream is identified by the *stream_id*.
 *		The data is copied to a buffer pointed to by *stream_buf*, and
 *		filled less than or equal to *stream_buf_len* bytes.
 *
 *	Return
 *		Number of bytes read from the stream on success, or -1 if an
 *		error occurred (in which case, *errno* is set appropriately).
 *
 * NOTES
 *	eBPF objects (maps and programs) can be shared between processes.
 *
 *	* After **fork**\ (2), the child inherits file descriptors
 *	  referring to the same eBPF objects.
 *	* File descriptors referring to eBPF objects can be transferred over
 *	  **unix**\ (7) domain sockets.
 *	* File descriptors referring to eBPF objects can be duplicated in the
 *	  usual way, using **dup**\ (2) and similar calls.
 *	* File descriptors referring to eBPF objects can be pinned to the
 *	  filesystem using the **BPF_OBJ_PIN** command of **bpf**\ (2).
 *
 *	An eBPF object is deallocated only after all file descriptors referring
 *	to the object have been closed and no references remain pinned to the
 *	filesystem or attached (for example, bound to a program or device).
 */
enum bpf_cmd {
	BPF_MAP_CREATE,
	BPF_MAP_LOOKUP_ELEM,
	BPF_MAP_UPDATE_ELEM,
	BPF_MAP_DELETE_ELEM,
	BPF_MAP_GET_NEXT_KEY,
	BPF_PROG_LOAD,
	BPF_OBJ_PIN,
	BPF_OBJ_GET,
	BPF_PROG_ATTACH,
	BPF_PROG_DETACH,
	BPF_PROG_TEST_RUN,
	BPF_PROG_RUN = BPF_PROG_TEST_RUN,
	BPF_PROG_GET_NEXT_ID,
	BPF_MAP_GET_NEXT_ID,
	BPF_PROG_GET_FD_BY_ID,
	BPF_MAP_GET_FD_BY_ID,
	BPF_OBJ_GET_INFO_BY_FD,
	BPF_PROG_QUERY,
	BPF_RAW_TRACEPOINT_OPEN,
	BPF_BTF_LOAD,
	BPF_BTF_GET_FD_BY_ID,
	BPF_TASK_FD_QUERY,
	BPF_MAP_LOOKUP_AND_DELETE_ELEM,
	BPF_MAP_FREEZE,
	BPF_BTF_GET_NEXT_ID,
	BPF_MAP_LOOKUP_BATCH,
	BPF_MAP_LOOKUP_AND_DELETE_BATCH,
	BPF_MAP_UPDATE_BATCH,
	BPF_MAP_DELETE_BATCH,
	BPF_LINK_CREATE,
	BPF_LINK_UPDATE,
	BPF_LINK_GET_FD_BY_ID,
	BPF_LINK_GET_NEXT_ID,
	BPF_ENABLE_STATS,
	BPF_ITER_CREATE,
	BPF_LINK_DETACH,
	BPF_PROG_BIND_MAP,
	BPF_TOKEN_CREATE,
	BPF_PROG_STREAM_READ_BY_FD,
	__MAX_BPF_CMD,
};

enum bpf_map_type {
	BPF_MAP_TYPE_UNSPEC,
	BPF_MAP_TYPE_HASH,
	BPF_MAP_TYPE_ARRAY,
	BPF_MAP_TYPE_PROG_ARRAY,
	BPF_MAP_TYPE_PERF_EVENT_ARRAY,
	BPF_MAP_TYPE_PERCPU_HASH,
	BPF_MAP_TYPE_PERCPU_ARRAY,
	BPF_MAP_TYPE_STACK_TRACE,
	BPF_MAP_TYPE_CGROUP_ARRAY,
	BPF_MAP_TYPE_LRU_HASH,
	BPF_MAP_TYPE_LRU_PERCPU_HASH,
	BPF_MAP_TYPE_LPM_TRIE,
	BPF_MAP_TYPE_ARRAY_OF_MAPS,
	BPF_MAP_TYPE_HASH_OF_MAPS,
	BPF_MAP_TYPE_DEVMAP,
	BPF_MAP_TYPE_SOCKMAP,
	BPF_MAP_TYPE_CPUMAP,
	BPF_MAP_TYPE_XSKMAP,
	BPF_MAP_TYPE_SOCKHASH,
	BPF_MAP_TYPE_CGROUP_STORAGE_DEPRECATED,
	/* BPF_MAP_TYPE_CGROUP_STORAGE is available to bpf programs attaching
	 * to a cgroup. The newer BPF_MAP_TYPE_CGRP_STORAGE is available to
	 * both cgroup-attached and other progs and supports all functionality
	 * provided by BPF_MAP_TYPE_CGROUP_STORAGE. So mark
	 * BPF_MAP_TYPE_CGROUP_STORAGE deprecated.
	 */
	BPF_MAP_TYPE_CGROUP_STORAGE = BPF_MAP_TYPE_CGROUP_STORAGE_DEPRECATED,
	BPF_MAP_TYPE_REUSEPORT_SOCKARRAY,
	BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE_DEPRECATED,
	/* BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE is available to bpf programs
	 * attaching to a cgroup. The new mechanism (BPF_MAP_TYPE_CGRP_STORAGE +
	 * local percpu kptr) supports all BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE
	 * functionality and more. So mark * BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE
	 * deprecated.
	 */
	BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE = BPF_MAP_TYPE_PERCPU_CGROUP_STORAGE_DEPRECATED,
	BPF_MAP_TYPE_QUEUE,
	BPF_MAP_TYPE_STACK,
	BPF_MAP_TYPE_SK_STORAGE,
	BPF_MAP_TYPE_DEVMAP_HASH,
	BPF_MAP_TYPE_STRUCT_OPS,
	BPF_MAP_TYPE_RINGBUF,
	BPF_MAP_TYPE_INODE_STORAGE,
	BPF_MAP_TYPE_TASK_STORAGE,
	BPF_MAP_TYPE_BLOOM_FILTER,
	BPF_MAP_TYPE_USER_RINGBUF,
	BPF_MAP_TYPE_CGRP_STORAGE,
	BPF_MAP_TYPE_ARENA,
	__MAX_BPF_MAP_TYPE
};

/* Note that tracing related programs such as
 * BPF_PROG_TYPE_{KPROBE,TRACEPOINT,PERF_EVENT,RAW_TRACEPOINT}
 * are not subject to a stable API since kernel internal data
 * structures can change from release to release and may
 * therefore break existing tracing BPF programs. Tracing BPF
 * programs correspond to /a/ specific kernel which is to be
 * analyzed, and not /a/ specific kernel /and/ all future ones.
 */
enum bpf_prog_type {
	BPF_PROG_TYPE_UNSPEC,
	BPF_PROG_TYPE_SOCKET_FILTER,
	BPF_PROG_TYPE_KPROBE,
	BPF_PROG_TYPE_SCHED_CLS,
	BPF_PROG_TYPE_SCHED_ACT,
	BPF_PROG_TYPE_TRACEPOINT,
	BPF_PROG_TYPE_XDP,
	BPF_PROG_TYPE_PERF_EVENT,
	BPF_PROG_TYPE_CGROUP_SKB,
	BPF_PROG_TYPE_CGROUP_SOCK,
	BPF_PROG_TYPE_LWT_IN,
	BPF_PROG_TYPE_LWT_OUT,
	BPF_PROG_TYPE_LWT_XMIT,
	BPF_PROG_TYPE_SOCK_OPS,
	BPF_PROG_TYPE_SK_SKB,
	BPF_PROG_TYPE_CGROUP_DEVICE,
	BPF_PROG_TYPE_SK_MSG,
	BPF_PROG_TYPE_RAW_TRACEPOINT,
	BPF_PROG_TYPE_CGROUP_SOCK_ADDR,
	BPF_PROG_TYPE_LWT_SEG6LOCAL,
	BPF_PROG_TYPE_LIRC_MODE2,
	BPF_PROG_TYPE_SK_REUSEPORT,
	BPF_PROG_TYPE_FLOW_DISSECTOR,
	BPF_PROG_TYPE_CGROUP_SYSCTL,
	BPF_PROG_TYPE_RAW_TRACEPOINT_WRITABLE,
	BPF_PROG_TYPE_CGROUP_SOCKOPT,
	BPF_PROG_TYPE_TRACING,
	BPF_PROG_TYPE_STRUCT_OPS,
	BPF_PROG_TYPE_EXT,
	BPF_PROG_TYPE_LSM,
	BPF_PROG_TYPE_SK_LOOKUP,
	BPF_PROG_TYPE_SYSCALL, /* a program that can execute syscalls */
	BPF_PROG_TYPE_NETFILTER,
	__MAX_BPF_PROG_TYPE
};

enum bpf_attach_type {
	BPF_CGROUP_INET_INGRESS,
	BPF_CGROUP_INET_EGRESS,
	BPF_CGROUP_INET_SOCK_CREATE,
	BPF_CGROUP_SOCK_OPS,
	BPF_SK_SKB_STREAM_PARSER,
	BPF_SK_SKB_STREAM_VERDICT,
	BPF_CGROUP_DEVICE,
	BPF_SK_MSG_VERDICT,
	BPF_CGROUP_INET4_BIND,
	BPF_CGROUP_INET6_BIND,
	BPF_CGROUP_INET4_CONNECT,
	BPF_CGROUP_INET6_CONNECT,
	BPF_CGROUP_INET4_POST_BIND,
	BPF_CGROUP_INET6_POST_BIND,
	BPF_CGROUP_UDP4_SENDMSG,
	BPF_CGROUP_UDP6_SENDMSG,
	BPF_LIRC_MODE2,
	BPF_FLOW_DISSECTOR,
	BPF_CGROUP_SYSCTL,
	BPF_CGROUP_UDP4_RECVMSG,
	BPF_CGROUP_UDP6_RECVMSG,
	BPF_CGROUP_GETSOCKOPT,
	BPF_CGROUP_SETSOCKOPT,
	BPF_TRACE_RAW_TP,
	BPF_TRACE_FENTRY,
	BPF_TRACE_FEXIT,
	BPF_MODIFY_RETURN,
	BPF_LSM_MAC,
	BPF_TRACE_ITER,
	BPF_CGROUP_INET4_GETPEERNAME,
	BPF_CGROUP_INET6_GETPEERNAME,
	BPF_CGROUP_INET4_GETSOCKNAME,
	BPF_CGROUP_INET6_GETSOCKNAME,
	BPF_XDP_DEVMAP,
	BPF_CGROUP_INET_SOCK_RELEASE,
	BPF_XDP_CPUMAP,
	BPF_SK_LOOKUP,
	BPF_XDP,
	BPF_SK_SKB_VERDICT,
	BPF_SK_REUSEPORT_SELECT,
	BPF_SK_REUSEPORT_SELECT_OR_MIGRATE,
	BPF_PERF_EVENT,
	BPF_TRACE_KPROBE_MULTI,
	BPF_LSM_CGROUP,
	BPF_STRUCT_OPS,
	BPF_NETFILTER,
	BPF_TCX_INGRESS,
	BPF_TCX_EGRESS,
	BPF_TRACE_UPROBE_MULTI,
	BPF_CGROUP_UNIX_CONNECT,
	BPF_CGROUP_UNIX_SENDMSG,
	BPF_CGROUP_UNIX_RECVMSG,
	BPF_CGROUP_UNIX_GETPEERNAME,
	BPF_CGROUP_UNIX_GETSOCKNAME,
	BPF_NETKIT_PRIMARY,
	BPF_NETKIT_PEER,
	BPF_TRACE_KPROBE_SESSION,
	BPF_TRACE_UPROBE_SESSION,
	__MAX_BPF_ATTACH_TYPE
};

#define MAX_BPF_ATTACH_TYPE __MAX_BPF_ATTACH_TYPE

/* Add BPF_LINK_TYPE(type, name) in bpf_types.h to keep bpf_link_type_strs[]
 * in sync with the definitions below.
 */
enum bpf_link_type {
	BPF_LINK_TYPE_UNSPEC = 0,
	BPF_LINK_TYPE_RAW_TRACEPOINT = 1,
	BPF_LINK_TYPE_TRACING = 2,
	BPF_LINK_TYPE_CGROUP = 3,
	BPF_LINK_TYPE_ITER = 4,
	BPF_LINK_TYPE_NETNS = 5,
	BPF_LINK_TYPE_XDP = 6,
	BPF_LINK_TYPE_PERF_EVENT = 7,
	BPF_LINK_TYPE_KPROBE_MULTI = 8,
	BPF_LINK_TYPE_STRUCT_OPS = 9,
	BPF_LINK_TYPE_NETFILTER = 10,
	BPF_LINK_TYPE_TCX = 11,
	BPF_LINK_TYPE_UPROBE_MULTI = 12,
	BPF_LINK_TYPE_NETKIT = 13,
	BPF_LINK_TYPE_SOCKMAP = 14,
	__MAX_BPF_LINK_TYPE,
};

#define MAX_BPF_LINK_TYPE __MAX_BPF_LINK_TYPE

enum bpf_perf_event_type {
	BPF_PERF_EVENT_UNSPEC = 0,
	BPF_PERF_EVENT_UPROBE = 1,
	BPF_PERF_EVENT_URETPROBE = 2,
	BPF_PERF_EVENT_KPROBE = 3,
	BPF_PERF_EVENT_KRETPROBE = 4,
	BPF_PERF_EVENT_TRACEPOINT = 5,
	BPF_PERF_EVENT_EVENT = 6,
};

/* cgroup-bpf attach flags used in BPF_PROG_ATTACH command
 *
 * NONE(default): No further bpf programs allowed in the subtree.
 *
 * BPF_F_ALLOW_OVERRIDE: If a sub-cgroup installs some bpf program,
 * the program in this cgroup yields to sub-cgroup program.
 *
 * BPF_F_ALLOW_MULTI: If a sub-cgroup installs some bpf program,
 * that cgroup program gets run in addition to the program in this cgroup.
 *
 * Only one program is allowed to be attached to a cgroup with
 * NONE or BPF_F_ALLOW_OVERRIDE flag.
 * Attaching another program on top of NONE or BPF_F_ALLOW_OVERRIDE will
 * release old program and attach the new one. Attach flags has to match.
 *
 * Multiple programs are allowed to be attached to a cgroup with
 * BPF_F_ALLOW_MULTI flag. They are executed in FIFO order
 * (those that were attached first, run first)
 * The programs of sub-cgroup are executed first, then programs of
 * this cgroup and then programs of parent cgroup.
 * When children program makes decision (like picking TCP CA or sock bind)
 * parent program has a chance to override it.
 *
 * With BPF_F_ALLOW_MULTI a new program is added to the end of the list of
 * programs for a cgroup. Though it's possible to replace an old program at
 * any position by also specifying BPF_F_REPLACE flag and position itself in
 * replace_bpf_fd attribute. Old program at this position will be released.
 *
 * A cgroup with MULTI or OVERRIDE flag allows any attach flags in sub-cgroups.
 * A cgroup with NONE doesn't allow any programs in sub-cgroups.
 * Ex1:
 * cgrp1 (MULTI progs A, B) ->
 *    cgrp2 (OVERRIDE prog C) ->
 *      cgrp3 (MULTI prog D) ->
 *        cgrp4 (OVERRIDE prog E) ->
 *          cgrp5 (NONE prog F)
 * the event in cgrp5 triggers execution of F,D,A,B in that order.
 * if prog F is detached, the execution is E,D,A,B
 * if prog F and D are detached, the execution is E,A,B
 * if prog F, E and D are detached, the execution is C,A,B
 *
 * All eligible programs are executed regardless of return code from
 * earlier programs.
 */
#define BPF_F_ALLOW_OVERRIDE	(1U << 0)
#define BPF_F_ALLOW_MULTI	(1U << 1)
/* Generic attachment flags. */
#define BPF_F_REPLACE		(1U << 2)
#define BPF_F_BEFORE		(1U << 3)
#define BPF_F_AFTER		(1U << 4)
#define BPF_F_ID		(1U << 5)
#define BPF_F_PREORDER		(1U << 6)
#define BPF_F_LINK		BPF_F_LINK /* 1 << 13 */

/* If BPF_F_STRICT_ALIGNMENT is used in BPF_PROG_LOAD command, the
 * verifier will perform strict alignment checking as if the kernel
 * has been built with CONFIG_EFFICIENT_UNALIGNED_ACCESS not set,
 * and NET_IP_ALIGN defined to 2.
 */
#define BPF_F_STRICT_ALIGNMENT	(1U << 0)

/* If BPF_F_ANY_ALIGNMENT is used in BPF_PROG_LOAD command, the
 * verifier will allow any alignment whatsoever.  On platforms
 * with strict alignment requirements for loads ands stores (such
 * as sparc and mips) the verifier validates that all loads and
 * stores provably follow this requirement.  This flag turns that
 * checking and enforcement off.
 *
 * It is mostly used for testing when we want to validate the
 * context and memory access aspects of the verifier, but because
 * of an unaligned access the alignment check would trigger before
 * the one we are interested in.
 */
#define BPF_F_ANY_ALIGNMENT	(1U << 1)

/* BPF_F_TEST_RND_HI32 is used in BPF_PROG_LOAD command for testing purpose.
 * Verifier does sub-register def/use analysis and identifies instructions whose
 * def only matters for low 32-bit, high 32-bit is never referenced later
 * through implicit zero extension. Therefore verifier notifies JIT back-ends
 * that it is safe to ignore clearing high 32-bit for these instructions. This
 * saves some back-ends a lot of code-gen. However such optimization is not
 * necessary on some arches, for example x86_64, arm64 etc, whose JIT back-ends
 * hence hasn't used verifier's analysis result. But, we really want to have a
 * way to be able to verify the correctness of the described optimization on
 * x86_64 on which testsuites are frequently exercised.
 *
 * So, this flag is introduced. Once it is set, verifier will randomize high
 * 32-bit for those instructions who has been identified as safe to ignore them.
 * Then, if verifier is not doing correct analysis, such randomization will
 * regress tests to expose bugs.
 */
#define BPF_F_TEST_RND_HI32	(1U << 2)

/* The verifier internal test flag. Behavior is undefined */
#define BPF_F_TEST_STATE_FREQ	(1U << 3)

/* If BPF_F_SLEEPABLE is used in BPF_PROG_LOAD command, the verifier will
 * restrict map and helper usage for such programs. Sleepable BPF programs can
 * only be attached to hooks where kernel execution context allows sleeping.
 * Such programs are allowed to use helpers that may sleep like
 * bpf_copy_from_user().
 */
#define BPF_F_SLEEPABLE		(1U << 4)

/* If BPF_F_XDP_HAS_FRAGS is used in BPF_PROG_LOAD command, the loaded program
 * fully support xdp frags.
 */
#define BPF_F_XDP_HAS_FRAGS	(1U << 5)

/* If BPF_F_XDP_DEV_BOUND_ONLY is used in BPF_PROG_LOAD command, the loaded
 * program becomes device-bound but can access XDP metadata.
 */
#define BPF_F_XDP_DEV_BOUND_ONLY	(1U << 6)

/* The verifier internal test flag. Behavior is undefined */
#define BPF_F_TEST_REG_INVARIANTS	(1U << 7)

/* link_create.kprobe_multi.flags used in LINK_CREATE command for
 * BPF_TRACE_KPROBE_MULTI attach type to create return probe.
 */
enum {
	BPF_F_KPROBE_MULTI_RETURN = (1U << 0)
};

/* link_create.uprobe_multi.flags used in LINK_CREATE command for
 * BPF_TRACE_UPROBE_MULTI attach type to create return probe.
 */
enum {
	BPF_F_UPROBE_MULTI_RETURN = (1U << 0)
};

/* link_create.netfilter.flags used in LINK_CREATE command for
 * BPF_PROG_TYPE_NETFILTER to enable IP packet defragmentation.
 */
#define BPF_F_NETFILTER_IP_DEFRAG (1U << 0)

/* When BPF ldimm64's insn[0].src_reg != 0 then this can have
 * the following extensions:
 *
 * insn[0].src_reg:  BPF_PSEUDO_MAP_[FD|IDX]
 * insn[0].imm:      map fd or fd_idx
 * insn[1].imm:      0
 * insn[0].off:      0
 * insn[1].off:      0
 * ldimm64 rewrite:  address of map
 * verifier type:    CONST_PTR_TO_MAP
 */
#define BPF_PSEUDO_MAP_FD	1
#define BPF_PSEUDO_MAP_IDX	5

/* insn[0].src_reg:  BPF_PSEUDO_MAP_[IDX_]VALUE
 * insn[0].imm:      map fd or fd_idx
 * insn[1].imm:      offset into value
 * insn[0].off:      0
 * insn[1].off:      0
 * ldimm64 rewrite:  address of map[0]+offset
 * verifier type:    PTR_TO_MAP_VALUE
 */
#define BPF_PSEUDO_MAP_VALUE		2
#define BPF_PSEUDO_MAP_IDX_VALUE	6

/* insn[0].src_reg:  BPF_PSEUDO_BTF_ID
 * insn[0].imm:      kernel btd id of VAR
 * insn[1].imm:      0
 * insn[0].off:      0
 * insn[1].off:      0
 * ldimm64 rewrite:  address of the kernel variable
 * verifier type:    PTR_TO_BTF_ID or PTR_TO_MEM, depending on whether the var
 *                   is struct/union.
 */
#define BPF_PSEUDO_BTF_ID	3
/* insn[0].src_reg:  BPF_PSEUDO_FUNC
 * insn[0].imm:      insn offset to the func
 * insn[1].imm:      0
 * insn[0].off:      0
 * insn[1].off:      0
 * ldimm64 rewrite:  address of the function
 * verifier type:    PTR_TO_FUNC.
 */
#define BPF_PSEUDO_FUNC		4

/* when bpf_call->src_reg == BPF_PSEUDO_CALL, bpf_call->imm == pc-relative
 * offset to another bpf function
 */
#define BPF_PSEUDO_CALL		1
/* when bpf_call->src_reg == BPF_PSEUDO_KFUNC_CALL,
 * bpf_call->imm == btf_id of a BTF_KIND_FUNC in the running kernel
 */
#define BPF_PSEUDO_KFUNC_CALL	2

enum bpf_addr_space_cast {
	BPF_ADDR_SPACE_CAST = 1,
};

/* flags for BPF_MAP_UPDATE_ELEM command */
enum {
	BPF_ANY		= 0, /* create new element or update existing */
	BPF_NOEXIST	= 1, /* create new element if it didn't exist */
	BPF_EXIST	= 2, /* update existing element */
	BPF_F_LOCK	= 4, /* spin_lock-ed map_lookup/map_update */
};

/* flags for BPF_MAP_CREATE command */
enum {
	BPF_F_NO_PREALLOC	= (1U << 0),
/* Instead of having one common LRU list in the
 * BPF_MAP_TYPE_LRU_[PERCPU_]HASH map, use a percpu LRU list
 * which can scale and perform better.
 * Note, the LRU nodes (including free nodes) cannot be moved
 * across different LRU lists.
 */
	BPF_F_NO_COMMON_LRU	= (1U << 1),
/* Specify numa node during map creation */
	BPF_F_NUMA_NODE		= (1U << 2),

/* Flags for accessing BPF object from syscall side. */
	BPF_F_RDONLY		= (1U << 3),
	BPF_F_WRONLY		= (1U << 4),

/* Flag for stack_map, store build_id+offset instead of pointer */
	BPF_F_STACK_BUILD_ID	= (1U << 5),

/* Zero-initialize hash function seed. This should only be used for testing. */
	BPF_F_ZERO_SEED		= (1U << 6),

/* Flags for accessing BPF object from program side. */
	BPF_F_RDONLY_PROG	= (1U << 7),
	BPF_F_WRONLY_PROG	= (1U << 8),

/* Clone map from listener for newly accepted socket */
	BPF_F_CLONE		= (1U << 9),

/* Enable memory-mapping BPF map */
	BPF_F_MMAPABLE		= (1U << 10),

/* Share perf_event among processes */
	BPF_F_PRESERVE_ELEMS	= (1U << 11),

/* Create a map that is suitable to be an inner map with dynamic max entries */
	BPF_F_INNER_MAP		= (1U << 12),

/* Create a map that will be registered/unregesitered by the backed bpf_link */
	BPF_F_LINK		= (1U << 13),

/* Get path from provided FD in BPF_OBJ_PIN/BPF_OBJ_GET commands */
	BPF_F_PATH_FD		= (1U << 14),

/* Flag for value_type_btf_obj_fd, the fd is available */
	BPF_F_VTYPE_BTF_OBJ_FD	= (1U << 15),

/* BPF token FD is passed in a corresponding command's token_fd field */
	BPF_F_TOKEN_FD          = (1U << 16),

/* When user space page faults in bpf_arena send SIGSEGV instead of inserting new page */
	BPF_F_SEGV_ON_FAULT	= (1U << 17),

/* Do not translate kernel bpf_arena pointers to user pointers */
	BPF_F_NO_USER_CONV	= (1U << 18),
};

/* Flags for BPF_PROG_QUERY. */

/* Query effective (directly attached + inherited from ancestor cgroups)
 * programs that will be executed for events within a cgroup.
 * attach_flags with this flag are always returned 0.
 */
#define BPF_F_QUERY_EFFECTIVE	(1U << 0)

/* Flags for BPF_PROG_TEST_RUN */

/* If set, run the test on the cpu specified by bpf_attr.test.cpu */
#define BPF_F_TEST_RUN_ON_CPU	(1U << 0)
/* If set, XDP frames will be transmitted after processing */
#define BPF_F_TEST_XDP_LIVE_FRAMES	(1U << 1)
/* If set, apply CHECKSUM_COMPLETE to skb and validate the checksum */
#define BPF_F_TEST_SKB_CHECKSUM_COMPLETE	(1U << 2)

/* type for BPF_ENABLE_STATS */
enum bpf_stats_type {
	/* enabled run_time_ns and run_cnt */
	BPF_STATS_RUN_TIME = 0,
};

enum bpf_stack_build_id_status {
	/* user space need an empty entry to identify end of a trace */
	BPF_STACK_BUILD_ID_EMPTY = 0,
	/* with valid build_id and offset */
	BPF_STACK_BUILD_ID_VALID = 1,
	/* couldn't get build_id, fallback to ip */
	BPF_STACK_BUILD_ID_IP = 2,
};

#define BPF_BUILD_ID_SIZE 20
struct bpf_stack_build_id {
	__s32		status;
	unsigned char	build_id[BPF_BUILD_ID_SIZE];
	union {
		__u64	offset;
		__u64	ip;
	};
};

#define BPF_OBJ_NAME_LEN 16U

enum {
	BPF_STREAM_STDOUT = 1,
	BPF_STREAM_STDERR = 2,
};

union bpf_attr {
	struct { /* anonymous struct used by BPF_MAP_CREATE command */
		__u32	map_type;	/* one of enum bpf_map_type */
		__u32	key_size;	/* size of key in bytes */
		__u32	value_size;	/* size of value in bytes */
		__u32	max_entries;	/* max number of entries in a map */
		__u32	map_flags;	/* BPF_MAP_CREATE related
					 * flags defined above.
					 */
		__u32	inner_map_fd;	/* fd pointing to the inner map */
		__u32	numa_node;	/* numa node (effective only if
					 * BPF_F_NUMA_NODE is set).
					 */
		char	map_name[BPF_OBJ_NAME_LEN];
		__u32	map_ifindex;	/* ifindex of netdev to create on */
		__u32	btf_fd;		/* fd pointing to a BTF type data */
		__u32	btf_key_type_id;	/* BTF type_id of the key */
		__u32	btf_value_type_id;	/* BTF type_id of the value */
		__u32	btf_vmlinux_value_type_id;/* BTF type_id of a kernel-
						   * struct stored as the
						   * map value
						   */
		/* Any per-map-type extra fields
		 *
		 * BPF_MAP_TYPE_BLOOM_FILTER - the lowest 4 bits indicate the
		 * number of hash functions (if 0, the bloom filter will default
		 * to using 5 hash functions).
		 *
		 * BPF_MAP_TYPE_ARENA - contains the address where user space
		 * is going to mmap() the arena. It has to be page aligned.
		 */
		__u64	map_extra;

		__s32   value_type_btf_obj_fd;	/* fd pointing to a BTF
						 * type data for
						 * btf_vmlinux_value_type_id.
						 */
		/* BPF token FD to use with BPF_MAP_CREATE operation.
		 * If provided, map_flags should have BPF_F_TOKEN_FD flag set.
		 */
		__s32	map_token_fd;
	};

	struct { /* anonymous struct used by BPF_MAP_*_ELEM and BPF_MAP_FREEZE commands */
		__u32		map_fd;
		__aligned_u64	key;
		union {
			__aligned_u64 value;
			__aligned_u64 next_key;
		};
		__u64		flags;
	};

	struct { /* struct used by BPF_MAP_*_BATCH commands */
		__aligned_u64	in_batch;	/* start batch,
						 * NULL to start from beginning
						 */
		__aligned_u64	out_batch;	/* output: next start batch */
		__aligned_u64	keys;
		__aligned_u64	values;
		__u32		count;		/* input/output:
						 * input: # of key/value
						 * elements
						 * output: # of filled elements
						 */
		__u32		map_fd;
		__u64		elem_flags;
		__u64		flags;
	} batch;

	struct { /* anonymous struct used by BPF_PROG_LOAD command */
		__u32		prog_type;	/* one of enum bpf_prog_type */
		__u32		insn_cnt;
		__aligned_u64	insns;
		__aligned_u64	license;
		__u32		log_level;	/* verbosity level of verifier */
		__u32		log_size;	/* size of user buffer */
		__aligned_u64	log_buf;	/* user supplied buffer */
		__u32		kern_version;	/* not used */
		__u32		prog_flags;
		char		prog_name[BPF_OBJ_NAME_LEN];
		__u32		prog_ifindex;	/* ifindex of netdev to prep for */
		/* For some prog types expected attach type must be known at
		 * load time to verify attach type specific parts of prog
		 * (context accesses, allowed helpers, etc).
		 */
		__u32		expected_attach_type;
		__u32		prog_btf_fd;	/* fd pointing to BTF type data */
		__u32		func_info_rec_size;	/* userspace bpf_func_info size */
		__aligned_u64	func_info;	/* func info */
		__u32		func_info_cnt;	/* number of bpf_func_info records */
		__u32		line_info_rec_size;	/* userspace bpf_line_info size */
		__aligned_u64	line_info;	/* line info */
		__u32		line_info_cnt;	/* number of bpf_line_info records */
		__u32		attach_btf_id;	/* in-kernel BTF type id to attach to */
		union {
			/* valid prog_fd to attach to bpf prog */
			__u32		attach_prog_fd;
			/* or valid module BTF object fd or 0 to attach to vmlinux */
			__u32		attach_btf_obj_fd;
		};
		__u32		core_relo_cnt;	/* number of bpf_core_relo */
		__aligned_u64	fd_array;	/* array of FDs */
		__aligned_u64	core_relos;
		__u32		core_relo_rec_size; /* sizeof(struct bpf_core_relo) */
		/* output: actual total log contents size (including termintaing zero).
		 * It could be both larger than original log_size (if log was
		 * truncated), or smaller (if log buffer wasn't filled completely).
		 */
		__u32		log_true_size;
		/* BPF token FD to use with BPF_PROG_LOAD operation.
		 * If provided, prog_flags should have BPF_F_TOKEN_FD flag set.
		 */
		__s32		prog_token_fd;
		/* The fd_array_cnt can be used to pass the length of the
		 * fd_array array. In this case all the [map] file descriptors
		 * passed in this array will be bound to the program, even if
		 * the maps are not referenced directly. The functionality is
		 * similar to the BPF_PROG_BIND_MAP syscall, but maps can be
		 * used by the verifier during the program load. If provided,
		 * then the fd_array[0,...,fd_array_cnt-1] is expected to be
		 * continuous.
		 */
		__u32		fd_array_cnt;
	};

	struct { /* anonymous struct used by BPF_OBJ_* commands */
		__aligned_u64	pathname;
		__u32		bpf_fd;
		__u32		file_flags;
		/* Same as dirfd in openat() syscall; see openat(2)
		 * manpage for details of path FD and pathname semantics;
		 * path_fd should accompanied by BPF_F_PATH_FD flag set in
		 * file_flags field, otherwise it should be set to zero;
		 * if BPF_F_PATH_FD flag is not set, AT_FDCWD is assumed.
		 */
		__s32		path_fd;
	};

	struct { /* anonymous struct used by BPF_PROG_ATTACH/DETACH commands */
		union {
			__u32	target_fd;	/* target object to attach to or ... */
			__u32	target_ifindex;	/* target ifindex */
		};
		__u32		attach_bpf_fd;
		__u32		attach_type;
		__u32		attach_flags;
		__u32		replace_bpf_fd;
		union {
			__u32	relative_fd;
			__u32	relative_id;
		};
		__u64		expected_revision;
	};

	struct { /* anonymous struct used by BPF_PROG_TEST_RUN command */
		__u32		prog_fd;
		__u32		retval;
		__u32		data_size_in;	/* input: len of data_in */
		__u32		data_size_out;	/* input/output: len of data_out
						 *   returns ENOSPC if data_out
						 *   is too small.
						 */
		__aligned_u64	data_in;
		__aligned_u64	data_out;
		__u32		repeat;
		__u32		duration;
		__u32		ctx_size_in;	/* input: len of ctx_in */
		__u32		ctx_size_out;	/* input/output: len of ctx_out
						 *   returns ENOSPC if ctx_out
						 *   is too small.
						 */
		__aligned_u64	ctx_in;
		__aligned_u64	ctx_out;
		__u32		flags;
		__u32		cpu;
		__u32		batch_size;
	} test;

	struct { /* anonymous struct used by BPF_*_GET_*_ID */
		union {
			__u32		start_id;
			__u32		prog_id;
			__u32		map_id;
			__u32		btf_id;
			__u32		link_id;
		};
		__u32		next_id;
		__u32		open_flags;
		__s32		fd_by_id_token_fd;
	};

	struct { /* anonymous struct used by BPF_OBJ_GET_INFO_BY_FD */
		__u32		bpf_fd;
		__u32		info_len;
		__aligned_u64	info;
	} info;

	struct { /* anonymous struct used by BPF_PROG_QUERY command */
		union {
			__u32	target_fd;	/* target object to query or ... */
			__u32	target_ifindex;	/* target ifindex */
		};
		__u32		attach_type;
		__u32		query_flags;
		__u32		attach_flags;
		__aligned_u64	prog_ids;
		union {
			__u32	prog_cnt;
			__u32	count;
		};
		__u32		:32;
		/* output: per-program attach_flags.
		 * not allowed to be set during effective query.
		 */
		__aligned_u64	prog_attach_flags;
		__aligned_u64	link_ids;
		__aligned_u64	link_attach_flags;
		__u64		revision;
	} query;

	struct { /* anonymous struct used by BPF_RAW_TRACEPOINT_OPEN command */
		__u64		name;
		__u32		prog_fd;
		__u32		:32;
		__aligned_u64	cookie;
	} raw_tracepoint;

	struct { /* anonymous struct for BPF_BTF_LOAD */
		__aligned_u64	btf;
		__aligned_u64	btf_log_buf;
		__u32		btf_size;
		__u32		btf_log_size;
		__u32		btf_log_level;
		/* output: actual total log contents size (including termintaing zero).
		 * It could be both larger than original log_size (if log was
		 * truncated), or smaller (if log buffer wasn't filled completely).
		 */
		__u32		btf_log_true_size;
		__u32		btf_flags;
		/* BPF token FD to use with BPF_BTF_LOAD operation.
		 * If provided, btf_flags should have BPF_F_TOKEN_FD flag set.
		 */
		__s32		btf_token_fd;
	};

	struct {
		__u32		pid;		/* input: pid */
		__u32		fd;		/* input: fd */
		__u32		flags;		/* input: flags */
		__u32		buf_len;	/* input/output: buf len */
		__aligned_u64	buf;		/* input/output:
						 *   tp_name for tracepoint
						 *   symbol for kprobe
						 *   filename for uprobe
						 */
		__u32		prog_id;	/* output: prod_id */
		__u32		fd_type;	/* output: BPF_FD_TYPE_* */
		__u64		probe_offset;	/* output: probe_offset */
		__u64		probe_addr;	/* output: probe_addr */
	} task_fd_query;

	struct { /* struct used by BPF_LINK_CREATE command */
		union {
			__u32		prog_fd;	/* eBPF program to attach */
			__u32		map_fd;		/* struct_ops to attach */
		};
		union {
			__u32	target_fd;	/* target object to attach to or ... */
			__u32	target_ifindex; /* target ifindex */
		};
		__u32		attach_type;	/* attach type */
		__u32		flags;		/* extra flags */
		union {
			__u32	target_btf_id;	/* btf_id of target to attach to */
			struct {
				__aligned_u64	iter_info;	/* extra bpf_iter_link_info */
				__u32		iter_info_len;	/* iter_info length */
			};
			struct {
				/* black box user-provided value passed through
				 * to BPF program at the execution time and
				 * accessible through bpf_get_attach_cookie() BPF helper
				 */
				__u64		bpf_cookie;
			} perf_event;
			struct {
				__u32		flags;
				__u32		cnt;
				__aligned_u64	syms;
				__aligned_u64	addrs;
				__aligned_u64	cookies;
			} kprobe_multi;
			struct {
				/* this is overlaid with the target_btf_id above. */
				__u32		target_btf_id;
				/* black box user-provided value passed through
				 * to BPF program at the execution time and
				 * accessible through bpf_get_attach_cookie() BPF helper
				 */
				__u64		cookie;
			} tracing;
			struct {
				__u32		pf;
				__u32		hooknum;
				__s32		priority;
				__u32		flags;
			} netfilter;
			struct {
				union {
					__u32	relative_fd;
					__u32	relative_id;
				};
				__u64		expected_revision;
			} tcx;
			struct {
				__aligned_u64	path;
				__aligned_u64	offsets;
				__aligned_u64	ref_ctr_offsets;
				__aligned_u64	cookies;
				__u32		cnt;
				__u32		flags;
				__u32		pid;
			} uprobe_multi;
			struct {
				union {
					__u32	relative_fd;
					__u32	relative_id;
				};
				__u64		expected_revision;
			} netkit;
			struct {
				union {
					__u32	relative_fd;
					__u32	relative_id;
				};
				__u64		expected_revision;
			} cgroup;
		};
	} link_create;

	struct { /* struct used by BPF_LINK_UPDATE command */
		__u32		link_fd;	/* link fd */
		union {
			/* new program fd to update link with */
			__u32		new_prog_fd;
			/* new struct_ops map fd to update link with */
			__u32           new_map_fd;
		};
		__u32		flags;		/* extra flags */
		union {
			/* expected link's program fd; is specified only if
			 * BPF_F_REPLACE flag is set in flags.
			 */
			__u32		old_prog_fd;
			/* expected link's map fd; is specified only
			 * if BPF_F_REPLACE flag is set.
			 */
			__u32           old_map_fd;
		};
	} link_update;

	struct {
		__u32		link_fd;
	} link_detach;

	struct { /* struct used by BPF_ENABLE_STATS command */
		__u32		type;
	} enable_stats;

	struct { /* struct used by BPF_ITER_CREATE command */
		__u32		link_fd;
		__u32		flags;
	} iter_create;

	struct { /* struct used by BPF_PROG_BIND_MAP command */
		__u32		prog_fd;
		__u32		map_fd;
		__u32		flags;		/* extra flags */
	} prog_bind_map;

	struct { /* struct used by BPF_TOKEN_CREATE command */
		__u32		flags;
		__u32		bpffs_fd;
	} token_create;

	struct {
		__aligned_u64	stream_buf;
		__u32		stream_buf_len;
		__u32		stream_id;
		__u32		prog_fd;
	} prog_stream_read;

} __attribute__((aligned(8)));

/* The description below is an attempt at providing documentation to eBPF
 * developers about the multiple available eBPF helper functions. It can be
 * parsed and used to produce a manual page. The workflow is the following,
 * and requires the rst2man utility:
 *
 *     $ ./scripts/bpf_doc.py \
 *             --filename include/uapi/linux/bpf.h > /tmp/bpf-helpers.rst
 *     $ rst2man /tmp/bpf-helpers.rst > /tmp/bpf-helpers.7
 *     $ man /tmp/bpf-helpers.7
 *
 * Note that in order to produce this external documentation, some RST
 * formatting is used in the descriptions to get "bold" and "italics" in
 * manual pages. Also note that the few trailing white spaces are
 * intentional, removing them would break paragraphs for rst2man.
 *
 * Start of BPF helper function descriptions:
 *
 * void *bpf_map_lookup_elem(struct bpf_map *map, const void *key)
 * 	Description
 * 		Perform a lookup in *map* for an entry associated to *key*.
 * 	Return
 * 		Map value associated to *key*, or **NULL** if no entry was
 * 		found.
 *
 * long bpf_map_update_elem(struct bpf_map *map, const void *key, const void *value, u64 flags)
 * 	Description
 * 		Add or update the value of the entry associated to *key* in
 * 		*map* with *value*. *flags* is one of:
 *
 * 		**BPF_NOEXIST**
 * 			The entry for *key* must not exist in the map.
 * 		**BPF_EXIST**
 * 			The entry for *key* must already exist in the map.
 * 		**BPF_ANY**
 * 			No condition on the existence of the entry for *key*.
 *
 * 		Flag value **BPF_NOEXIST** cannot be used for maps of types
 * 		**BPF_MAP_TYPE_ARRAY** or **BPF_MAP_TYPE_PERCPU_ARRAY**  (all
 * 		elements always exist), the helper would return an error.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_map_delete_elem(struct bpf_map *map, const void *key)
 * 	Description
 * 		Delete entry with *key* from *map*.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_probe_read(void *dst, u32 size, const void *unsafe_ptr)
 * 	Description
 * 		For tracing programs, safely attempt to read *size* bytes from
 * 		kernel space address *unsafe_ptr* and store the data in *dst*.
 *
 * 		Generally, use **bpf_probe_read_user**\ () or
 * 		**bpf_probe_read_kernel**\ () instead.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * u64 bpf_ktime_get_ns(void)
 * 	Description
 * 		Return the time elapsed since system boot, in nanoseconds.
 * 		Does not include time the system was suspended.
 * 		See: **clock_gettime**\ (**CLOCK_MONOTONIC**)
 * 	Return
 * 		Current *ktime*.
 *
 * long bpf_trace_printk(const char *fmt, u32 fmt_size, ...)
 * 	Description
 * 		This helper is a "printk()-like" facility for debugging. It
 * 		prints a message defined by format *fmt* (of size *fmt_size*)
 * 		to file *\/sys/kernel/tracing/trace* from TraceFS, if
 * 		available. It can take up to three additional **u64**
 * 		arguments (as an eBPF helpers, the total number of arguments is
 * 		limited to five).
 *
 * 		Each time the helper is called, it appends a line to the trace.
 * 		Lines are discarded while *\/sys/kernel/tracing/trace* is
 * 		open, use *\/sys/kernel/tracing/trace_pipe* to avoid this.
 * 		The format of the trace is customizable, and the exact output
 * 		one will get depends on the options set in
 * 		*\/sys/kernel/tracing/trace_options* (see also the
 * 		*README* file under the same directory). However, it usually
 * 		defaults to something like:
 *
 * 		::
 *
 * 			telnet-470   [001] .N.. 419421.045894: 0x00000001: <formatted msg>
 *
 * 		In the above:
 *
 * 			* ``telnet`` is the name of the current task.
 * 			* ``470`` is the PID of the current task.
 * 			* ``001`` is the CPU number on which the task is
 * 			  running.
 * 			* In ``.N..``, each character refers to a set of
 * 			  options (whether irqs are enabled, scheduling
 * 			  options, whether hard/softirqs are running, level of
 * 			  preempt_disabled respectively). **N** means that
 * 			  **TIF_NEED_RESCHED** and **PREEMPT_NEED_RESCHED**
 * 			  are set.
 * 			* ``419421.045894`` is a timestamp.
 * 			* ``0x00000001`` is a fake value used by BPF for the
 * 			  instruction pointer register.
 * 			* ``<formatted msg>`` is the message formatted with
 * 			  *fmt*.
 *
 * 		The conversion specifiers supported by *fmt* are similar, but
 * 		more limited than for printk(). They are **%d**, **%i**,
 * 		**%u**, **%x**, **%ld**, **%li**, **%lu**, **%lx**, **%lld**,
 * 		**%lli**, **%llu**, **%llx**, **%p**, **%s**. No modifier (size
 * 		of field, padding with zeroes, etc.) is available, and the
 * 		helper will return **-EINVAL** (but print nothing) if it
 * 		encounters an unknown specifier.
 *
 * 		Also, note that **bpf_trace_printk**\ () is slow, and should
 * 		only be used for debugging purposes. For this reason, a notice
 * 		block (spanning several lines) is printed to kernel logs and
 * 		states that the helper should not be used "for production use"
 * 		the first time this helper is used (or more precisely, when
 * 		**trace_printk**\ () buffers are allocated). For passing values
 * 		to user space, perf events should be preferred.
 * 	Return
 * 		The number of bytes written to the buffer, or a negative error
 * 		in case of failure.
 *
 * u32 bpf_get_prandom_u32(void)
 * 	Description
 * 		Get a pseudo-random number.
 *
 * 		From a security point of view, this helper uses its own
 * 		pseudo-random internal state, and cannot be used to infer the
 * 		seed of other random functions in the kernel. However, it is
 * 		essential to note that the generator used by the helper is not
 * 		cryptographically secure.
 * 	Return
 * 		A random 32-bit unsigned value.
 *
 * u32 bpf_get_smp_processor_id(void)
 * 	Description
 * 		Get the SMP (symmetric multiprocessing) processor id. Note that
 * 		all programs run with migration disabled, which means that the
 * 		SMP processor id is stable during all the execution of the
 * 		program.
 * 	Return
 * 		The SMP id of the processor running the program.
 * 	Attributes
 * 		__bpf_fastcall
 *
 * long bpf_skb_store_bytes(struct sk_buff *skb, u32 offset, const void *from, u32 len, u64 flags)
 * 	Description
 * 		Store *len* bytes from address *from* into the packet
 * 		associated to *skb*, at *offset*. The *flags* are a combination
 * 		of the following values:
 *
 * 		**BPF_F_RECOMPUTE_CSUM**
 * 			Automatically update *skb*\ **->csum** after storing the
 * 			bytes.
 * 		**BPF_F_INVALIDATE_HASH**
 * 			Set *skb*\ **->hash**, *skb*\ **->swhash** and *skb*\
 * 			**->l4hash** to 0.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_l3_csum_replace(struct sk_buff *skb, u32 offset, u64 from, u64 to, u64 size)
 * 	Description
 * 		Recompute the layer 3 (e.g. IP) checksum for the packet
 * 		associated to *skb*. Computation is incremental, so the helper
 * 		must know the former value of the header field that was
 * 		modified (*from*), the new value of this field (*to*), and the
 * 		number of bytes (2 or 4) for this field, stored in *size*.
 * 		Alternatively, it is possible to store the difference between
 * 		the previous and the new values of the header field in *to*, by
 * 		setting *from* and *size* to 0. For both methods, *offset*
 * 		indicates the location of the IP checksum within the packet.
 *
 * 		This helper works in combination with **bpf_csum_diff**\ (),
 * 		which does not update the checksum in-place, but offers more
 * 		flexibility and can handle sizes larger than 2 or 4 for the
 * 		checksum to update.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_l4_csum_replace(struct sk_buff *skb, u32 offset, u64 from, u64 to, u64 flags)
 * 	Description
 * 		Recompute the layer 4 (e.g. TCP, UDP or ICMP) checksum for the
 * 		packet associated to *skb*. Computation is incremental, so the
 * 		helper must know the former value of the header field that was
 * 		modified (*from*), the new value of this field (*to*), and the
 * 		number of bytes (2 or 4) for this field, stored on the lowest
 * 		four bits of *flags*. Alternatively, it is possible to store
 * 		the difference between the previous and the new values of the
 * 		header field in *to*, by setting *from* and the four lowest
 * 		bits of *flags* to 0. For both methods, *offset* indicates the
 * 		location of the IP checksum within the packet. In addition to
 * 		the size of the field, *flags* can be added (bitwise OR) actual
 * 		flags. With **BPF_F_MARK_MANGLED_0**, a null checksum is left
 * 		untouched (unless **BPF_F_MARK_ENFORCE** is added as well), and
 * 		for updates resulting in a null checksum the value is set to
 * 		**CSUM_MANGLED_0** instead. Flag **BPF_F_PSEUDO_HDR** indicates
 * 		that the modified header field is part of the pseudo-header.
 * 		Flag **BPF_F_IPV6** should be set for IPv6 packets.
 *
 * 		This helper works in combination with **bpf_csum_diff**\ (),
 * 		which does not update the checksum in-place, but offers more
 * 		flexibility and can handle sizes larger than 2 or 4 for the
 * 		checksum to update.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_tail_call(void *ctx, struct bpf_map *prog_array_map, u32 index)
 * 	Description
 * 		This special helper is used to trigger a "tail call", or in
 * 		other words, to jump into another eBPF program. The same stack
 * 		frame is used (but values on stack and in registers for the
 * 		caller are not accessible to the callee). This mechanism allows
 * 		for program chaining, either for raising the maximum number of
 * 		available eBPF instructions, or to execute given programs in
 * 		conditional blocks. For security reasons, there is an upper
 * 		limit to the number of successive tail calls that can be
 * 		performed.
 *
 * 		Upon call of this helper, the program attempts to jump into a
 * 		program referenced at index *index* in *prog_array_map*, a
 * 		special map of type **BPF_MAP_TYPE_PROG_ARRAY**, and passes
 * 		*ctx*, a pointer to the context.
 *
 * 		If the call succeeds, the kernel immediately runs the first
 * 		instruction of the new program. This is not a function call,
 * 		and it never returns to the previous program. If the call
 * 		fails, then the helper has no effect, and the caller continues
 * 		to run its subsequent instructions. A call can fail if the
 * 		destination program for the jump does not exist (i.e. *index*
 * 		is superior to the number of entries in *prog_array_map*), or
 * 		if the maximum number of tail calls has been reached for this
 * 		chain of programs. This limit is defined in the kernel by the
 * 		macro **MAX_TAIL_CALL_CNT** (not accessible to user space),
 *		which is currently set to 33.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_clone_redirect(struct sk_buff *skb, u32 ifindex, u64 flags)
 * 	Description
 * 		Clone and redirect the packet associated to *skb* to another
 * 		net device of index *ifindex*. Both ingress and egress
 * 		interfaces can be used for redirection. The **BPF_F_INGRESS**
 * 		value in *flags* is used to make the distinction (ingress path
 * 		is selected if the flag is present, egress path otherwise).
 * 		This is the only flag supported for now.
 *
 * 		In comparison with **bpf_redirect**\ () helper,
 * 		**bpf_clone_redirect**\ () has the associated cost of
 * 		duplicating the packet buffer, but this can be executed out of
 * 		the eBPF program. Conversely, **bpf_redirect**\ () is more
 * 		efficient, but it is handled through an action code where the
 * 		redirection happens only after the eBPF program has returned.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure. Positive
 * 		error indicates a potential drop or congestion in the target
 * 		device. The particular positive error codes are not defined.
 *
 * u64 bpf_get_current_pid_tgid(void)
 * 	Description
 * 		Get the current pid and tgid.
 * 	Return
 * 		A 64-bit integer containing the current tgid and pid, and
 * 		created as such:
 * 		*current_task*\ **->tgid << 32 \|**
 * 		*current_task*\ **->pid**.
 *
 * u64 bpf_get_current_uid_gid(void)
 * 	Description
 * 		Get the current uid and gid.
 * 	Return
 * 		A 64-bit integer containing the current GID and UID, and
 * 		created as such: *current_gid* **<< 32 \|** *current_uid*.
 *
 * long bpf_get_current_comm(void *buf, u32 size_of_buf)
 * 	Description
 * 		Copy the **comm** attribute of the current task into *buf* of
 * 		*size_of_buf*. The **comm** attribute contains the name of
 * 		the executable (excluding the path) for the current task. The
 * 		*size_of_buf* must be strictly positive. On success, the
 * 		helper makes sure that the *buf* is NUL-terminated. On failure,
 * 		it is filled with zeroes.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * u32 bpf_get_cgroup_classid(struct sk_buff *skb)
 * 	Description
 * 		Retrieve the classid for the current task, i.e. for the net_cls
 * 		cgroup to which *skb* belongs.
 *
 * 		This helper can be used on TC egress path, but not on ingress.
 *
 * 		The net_cls cgroup provides an interface to tag network packets
 * 		based on a user-provided identifier for all traffic coming from
 * 		the tasks belonging to the related cgroup. See also the related
 * 		kernel documentation, available from the Linux sources in file
 * 		*Documentation/admin-guide/cgroup-v1/net_cls.rst*.
 *
 * 		The Linux kernel has two versions for cgroups: there are
 * 		cgroups v1 and cgroups v2. Both are available to users, who can
 * 		use a mixture of them, but note that the net_cls cgroup is for
 * 		cgroup v1 only. This makes it incompatible with BPF programs
 * 		run on cgroups, which is a cgroup-v2-only feature (a socket can
 * 		only hold data for one version of cgroups at a time).
 *
 * 		This helper is only available is the kernel was compiled with
 * 		the **CONFIG_CGROUP_NET_CLASSID** configuration option set to
 * 		"**y**" or to "**m**".
 * 	Return
 * 		The classid, or 0 for the default unconfigured classid.
 *
 * long bpf_skb_vlan_push(struct sk_buff *skb, __be16 vlan_proto, u16 vlan_tci)
 * 	Description
 * 		Push a *vlan_tci* (VLAN tag control information) of protocol
 * 		*vlan_proto* to the packet associated to *skb*, then update
 * 		the checksum. Note that if *vlan_proto* is different from
 * 		**ETH_P_8021Q** and **ETH_P_8021AD**, it is considered to
 * 		be **ETH_P_8021Q**.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_skb_vlan_pop(struct sk_buff *skb)
 * 	Description
 * 		Pop a VLAN header from the packet associated to *skb*.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_skb_get_tunnel_key(struct sk_buff *skb, struct bpf_tunnel_key *key, u32 size, u64 flags)
 * 	Description
 * 		Get tunnel metadata. This helper takes a pointer *key* to an
 * 		empty **struct bpf_tunnel_key** of **size**, that will be
 * 		filled with tunnel metadata for the packet associated to *skb*.
 * 		The *flags* can be set to **BPF_F_TUNINFO_IPV6**, which
 * 		indicates that the tunnel is based on IPv6 protocol instead of
 * 		IPv4.
 *
 * 		The **struct bpf_tunnel_key** is an object that generalizes the
 * 		principal parameters used by various tunneling protocols into a
 * 		single struct. This way, it can be used to easily make a
 * 		decision based on the contents of the encapsulation header,
 * 		"summarized" in this struct. In particular, it holds the IP
 * 		address of the remote end (IPv4 or IPv6, depending on the case)
 * 		in *key*\ **->remote_ipv4** or *key*\ **->remote_ipv6**. Also,
 * 		this struct exposes the *key*\ **->tunnel_id**, which is
 * 		generally mapped to a VNI (Virtual Network Identifier), making
 * 		it programmable together with the **bpf_skb_set_tunnel_key**\
 * 		() helper.
 *
 * 		Let's imagine that the following code is part of a program
 * 		attached to the TC ingress interface, on one end of a GRE
 * 		tunnel, and is supposed to filter out all messages coming from
 * 		remote ends with IPv4 address other than 10.0.0.1:
 *
 * 		::
 *
 * 			int ret;
 * 			struct bpf_tunnel_key key = {};
 *
 * 			ret = bpf_skb_get_tunnel_key(skb, &key, sizeof(key), 0);
 * 			if (ret < 0)
 * 				return TC_ACT_SHOT;	// drop packet
 *
 * 			if (key.remote_ipv4 != 0x0a000001)
 * 				return TC_ACT_SHOT;	// drop packet
 *
 * 			return TC_ACT_OK;		// accept packet
 *
 * 		This interface can also be used with all encapsulation devices
 * 		that can operate in "collect metadata" mode: instead of having
 * 		one network device per specific configuration, the "collect
 * 		metadata" mode only requires a single device where the
 * 		configuration can be extracted from this helper.
 *
 * 		This can be used together with various tunnels such as VXLan,
 * 		Geneve, GRE or IP in IP (IPIP).
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_skb_set_tunnel_key(struct sk_buff *skb, struct bpf_tunnel_key *key, u32 size, u64 flags)
 * 	Description
 * 		Populate tunnel metadata for packet associated to *skb.* The
 * 		tunnel metadata is set to the contents of *key*, of *size*. The
 * 		*flags* can be set to a combination of the following values:
 *
 * 		**BPF_F_TUNINFO_IPV6**
 * 			Indicate that the tunnel is based on IPv6 protocol
 * 			instead of IPv4.
 * 		**BPF_F_ZERO_CSUM_TX**
 * 			For IPv4 packets, add a flag to tunnel metadata
 * 			indicating that checksum computation should be skipped
 * 			and checksum set to zeroes.
 * 		**BPF_F_DONT_FRAGMENT**
 * 			Add a flag to tunnel metadata indicating that the
 * 			packet should not be fragmented.
 * 		**BPF_F_SEQ_NUMBER**
 * 			Add a flag to tunnel metadata indicating that a
 * 			sequence number should be added to tunnel header before
 * 			sending the packet. This flag was added for GRE
 * 			encapsulation, but might be used with other protocols
 * 			as well in the future.
 * 		**BPF_F_NO_TUNNEL_KEY**
 * 			Add a flag to tunnel metadata indicating that no tunnel
 * 			key should be set in the resulting tunnel header.
 *
 * 		Here is a typical usage on the transmit path:
 *
 * 		::
 *
 * 			struct bpf_tunnel_key key;
 * 			     populate key ...
 * 			bpf_skb_set_tunnel_key(skb, &key, sizeof(key), 0);
 * 			bpf_clone_redirect(skb, vxlan_dev_ifindex, 0);
 *
 * 		See also the description of the **bpf_skb_get_tunnel_key**\ ()
 * 		helper for additional information.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * u64 bpf_perf_event_read(struct bpf_map *map, u64 flags)
 * 	Description
 * 		Read the value of a perf event counter. This helper relies on a
 * 		*map* of type **BPF_MAP_TYPE_PERF_EVENT_ARRAY**. The nature of
 * 		the perf event counter is selected when *map* is updated with
 * 		perf event file descriptors. The *map* is an array whose size
 * 		is the number of available CPUs, and each cell contains a value
 * 		relative to one CPU. The value to retrieve is indicated by
 * 		*flags*, that contains the index of the CPU to look up, masked
 * 		with **BPF_F_INDEX_MASK**. Alternatively, *flags* can be set to
 * 		**BPF_F_CURRENT_CPU** to indicate that the value for the
 * 		current CPU should be retrieved.
 *
 * 		Note that before Linux 4.13, only hardware perf event can be
 * 		retrieved.
 *
 * 		Also, be aware that the newer helper
 * 		**bpf_perf_event_read_value**\ () is recommended over
 * 		**bpf_perf_event_read**\ () in general. The latter has some ABI
 * 		quirks where error and counter value are used as a return code
 * 		(which is wrong to do since ranges may overlap). This issue is
 * 		fixed with **bpf_perf_event_read_value**\ (), which at the same
 * 		time provides more features over the **bpf_perf_event_read**\
 * 		() interface. Please refer to the description of
 * 		**bpf_perf_event_read_value**\ () for details.
 * 	Return
 * 		The value of the perf event counter read from the map, or a
 * 		negative error code in case of failure.
 *
 * long bpf_redirect(u32 ifindex, u64 flags)
 * 	Description
 * 		Redirect the packet to another net device of index *ifindex*.
 * 		This helper is somewhat similar to **bpf_clone_redirect**\
 * 		(), except that the packet is not cloned, which provides
 * 		increased performance.
 *
 * 		Except for XDP, both ingress and egress interfaces can be used
 * 		for redirection. The **BPF_F_INGRESS** value in *flags* is used
 * 		to make the distinction (ingress path is selected if the flag
 * 		is present, egress path otherwise). Currently, XDP only
 * 		supports redirection to the egress interface, and accepts no
 * 		flag at all.
 *
 * 		The same effect can also be attained with the more generic
 * 		**bpf_redirect_map**\ (), which uses a BPF map to store the
 * 		redirect target instead of providing it directly to the helper.
 * 	Return
 * 		For XDP, the helper returns **XDP_REDIRECT** on success or
 * 		**XDP_ABORTED** on error. For other program types, the values
 * 		are **TC_ACT_REDIRECT** on success or **TC_ACT_SHOT** on
 * 		error.
 *
 * u32 bpf_get_route_realm(struct sk_buff *skb)
 * 	Description
 * 		Retrieve the realm or the route, that is to say the
 * 		**tclassid** field of the destination for the *skb*. The
 * 		identifier retrieved is a user-provided tag, similar to the
 * 		one used with the net_cls cgroup (see description for
 * 		**bpf_get_cgroup_classid**\ () helper), but here this tag is
 * 		held by a route (a destination entry), not by a task.
 *
 * 		Retrieving this identifier works with the clsact TC egress hook
 * 		(see also **tc-bpf(8)**), or alternatively on conventional
 * 		classful egress qdiscs, but not on TC ingress path. In case of
 * 		clsact TC egress hook, this has the advantage that, internally,
 * 		the destination entry has not been dropped yet in the transmit
 * 		path. Therefore, the destination entry does not need to be
 * 		artificially held via **netif_keep_dst**\ () for a classful
 * 		qdisc until the *skb* is freed.
 *
 * 		This helper is available only if the kernel was compiled with
 * 		**CONFIG_IP_ROUTE_CLASSID** configuration option.
 * 	Return
 * 		The realm of the route for the packet associated to *skb*, or 0
 * 		if none was found.
 *
 * long bpf_perf_event_output(void *ctx, struct bpf_map *map, u64 flags, void *data, u64 size)
 * 	Description
 * 		Write raw *data* blob into a special BPF perf event held by
 * 		*map* of type **BPF_MAP_TYPE_PERF_EVENT_ARRAY**. This perf
 * 		event must have the following attributes: **PERF_SAMPLE_RAW**
 * 		as **sample_type**, **PERF_TYPE_SOFTWARE** as **type**, and
 * 		**PERF_COUNT_SW_BPF_OUTPUT** as **config**.
 *
 * 		The *flags* are used to indicate the index in *map* for which
 * 		the value must be put, masked with **BPF_F_INDEX_MASK**.
 * 		Alternatively, *flags* can be set to **BPF_F_CURRENT_CPU**
 * 		to indicate that the index of the current CPU core should be
 * 		used.
 *
 * 		The value to write, of *size*, is passed through eBPF stack and
 * 		pointed by *data*.
 *
 * 		The context of the program *ctx* needs also be passed to the
 * 		helper.
 *
 * 		On user space, a program willing to read the values needs to
 * 		call **perf_event_open**\ () on the perf event (either for
 * 		one or for all CPUs) and to store the file descriptor into the
 * 		*map*. This must be done before the eBPF program can send data
 * 		into it. An example is available in file
 * 		*samples/bpf/trace_output_user.c* in the Linux kernel source
 * 		tree (the eBPF program counterpart is in
 *		*samples/bpf/trace_output.bpf.c*).
 *
 * 		**bpf_perf_event_output**\ () achieves better performance
 * 		than **bpf_trace_printk**\ () for sharing data with user
 * 		space, and is much better suitable for streaming data from eBPF
 * 		programs.
 *
 * 		Note that this helper is not restricted to tracing use cases
 * 		and can be used with programs attached to TC or XDP as well,
 * 		where it allows for passing data to user space listeners. Data
 * 		can be:
 *
 * 		* Only custom structs,
 * 		* Only the packet payload, or
 * 		* A combination of both.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_skb_load_bytes(const void *skb, u32 offset, void *to, u32 len)
 * 	Description
 * 		This helper was provided as an easy way to load data from a
 * 		packet. It can be used to load *len* bytes from *offset* from
 * 		the packet associated to *skb*, into the buffer pointed by
 * 		*to*.
 *
 * 		Since Linux 4.7, usage of this helper has mostly been replaced
 * 		by "direct packet access", enabling packet data to be
 * 		manipulated with *skb*\ **->data** and *skb*\ **->data_end**
 * 		pointing respectively to the first byte of packet data and to
 * 		the byte after the last byte of packet data. However, it
 * 		remains useful if one wishes to read large quantities of data
 * 		at once from a packet into the eBPF stack.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_get_stackid(void *ctx, struct bpf_map *map, u64 flags)
 * 	Description
 * 		Walk a user or a kernel stack and return its id. To achieve
 * 		this, the helper needs *ctx*, which is a pointer to the context
 * 		on which the tracing program is executed, and a pointer to a
 * 		*map* of type **BPF_MAP_TYPE_STACK_TRACE**.
 *
 * 		The last argument, *flags*, holds the number of stack frames to
 * 		skip (from 0 to 255), masked with
 * 		**BPF_F_SKIP_FIELD_MASK**. The next bits can be used to set
 * 		a combination of the following flags:
 *
 * 		**BPF_F_USER_STACK**
 * 			Collect a user space stack instead of a kernel stack.
 * 		**BPF_F_FAST_STACK_CMP**
 * 			Compare stacks by hash only.
 * 		**BPF_F_REUSE_STACKID**
 * 			If two different stacks hash into the same *stackid*,
 * 			discard the old one.
 *
 * 		The stack id retrieved is a 32 bit long integer handle which
 * 		can be further combined with other data (including other stack
 * 		ids) and used as a key into maps. This can be useful for
 * 		generating a variety of graphs (such as flame graphs or off-cpu
 * 		graphs).
 *
 * 		For walking a stack, this helper is an improvement over
 * 		**bpf_probe_read**\ (), which can be used with unrolled loops
 * 		but is not efficient and consumes a lot of eBPF instructions.
 * 		Instead, **bpf_get_stackid**\ () can collect up to
 * 		**PERF_MAX_STACK_DEPTH** both kernel and user frames. Note that
 * 		this limit can be controlled with the **sysctl** program, and
 * 		that it should be manually increased in order to profile long
 * 		user stacks (such as stacks for Java programs). To do so, use:
 *
 * 		::
 *
 * 			# sysctl kernel.perf_event_max_stack=<new value>
 * 	Return
 * 		The positive or null stack id on success, or a negative error
 * 		in case of failure.
 *
 * s64 bpf_csum_diff(__be32 *from, u32 from_size, __be32 *to, u32 to_size, __wsum seed)
 * 	Description
 * 		Compute a checksum difference, from the raw buffer pointed by
 * 		*from*, of length *from_size* (that must be a multiple of 4),
 * 		towards the raw buffer pointed by *to*, of size *to_size*
 * 		(same remark). An optional *seed* can be added to the value
 * 		(this can be cascaded, the seed may come from a previous call
 * 		to the helper).
 *
 * 		This is flexible enough to be used in several ways:
 *
 * 		* With *from_size* == 0, *to_size* > 0 and *seed* set to
 * 		  checksum, it can be used when pushing new data.
 * 		* With *from_size* > 0, *to_size* == 0 and *seed* set to
 * 		  checksum, it can be used when removing data from a packet.
 * 		* With *from_size* > 0, *to_size* > 0 and *seed* set to 0, it
 * 		  can be used to compute a diff. Note that *from_size* and
 * 		  *to_size* do not need to be equal.
 *
 * 		This helper can be used in combination with
 * 		**bpf_l3_csum_replace**\ () and **bpf_l4_csum_replace**\ (), to
 * 		which one can feed in the difference computed with
 * 		**bpf_csum_diff**\ ().
 * 	Return
 * 		The checksum result, or a negative error code in case of
 * 		failure.
 *
 * long bpf_skb_get_tunnel_opt(struct sk_buff *skb, void *opt, u32 size)
 * 	Description
 * 		Retrieve tunnel options metadata for the packet associated to
 * 		*skb*, and store the raw tunnel option data to the buffer *opt*
 * 		of *size*.
 *
 * 		This helper can be used with encapsulation devices that can
 * 		operate in "collect metadata" mode (please refer to the related
 * 		note in the description of **bpf_skb_get_tunnel_key**\ () for
 * 		more details). A particular example where this can be used is
 * 		in combination with the Geneve encapsulation protocol, where it
 * 		allows for pushing (with **bpf_skb_get_tunnel_opt**\ () helper)
 * 		and retrieving arbitrary TLVs (Type-Length-Value headers) from
 * 		the eBPF program. This allows for full customization of these
 * 		headers.
 * 	Return
 * 		The size of the option data retrieved.
 *
 * long bpf_skb_set_tunnel_opt(struct sk_buff *skb, void *opt, u32 size)
 * 	Description
 * 		Set tunnel options metadata for the packet associated to *skb*
 * 		to the option data contained in the raw buffer *opt* of *size*.
 *
 * 		See also the description of the **bpf_skb_get_tunnel_opt**\ ()
 * 		helper for additional information.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_skb_change_proto(struct sk_buff *skb, __be16 proto, u64 flags)
 * 	Description
 * 		Change the protocol of the *skb* to *proto*. Currently
 * 		supported are transition from IPv4 to IPv6, and from IPv6 to
 * 		IPv4. The helper takes care of the groundwork for the
 * 		transition, including resizing the socket buffer. The eBPF
 * 		program is expected to fill the new headers, if any, via
 * 		**skb_store_bytes**\ () and to recompute the checksums with
 * 		**bpf_l3_csum_replace**\ () and **bpf_l4_csum_replace**\
 * 		(). The main case for this helper is to perform NAT64
 * 		operations out of an eBPF program.
 *
 * 		Internally, the GSO type is marked as dodgy so that headers are
 * 		checked and segments are recalculated by the GSO/GRO engine.
 * 		The size for GSO target is adapted as well.
 *
 * 		All values for *flags* are reserved for future usage, and must
 * 		be left at zero.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_skb_change_type(struct sk_buff *skb, u32 type)
 * 	Description
 * 		Change the packet type for the packet associated to *skb*. This
 * 		comes down to setting *skb*\ **->pkt_type** to *type*, except
 * 		the eBPF program does not have a write access to *skb*\
 * 		**->pkt_type** beside this helper. Using a helper here allows
 * 		for graceful handling of errors.
 *
 * 		The major use case is to change incoming *skb*s to
 * 		**PACKET_HOST** in a programmatic way instead of having to
 * 		recirculate via **redirect**\ (..., **BPF_F_INGRESS**), for
 * 		example.
 *
 * 		Note that *type* only allows certain values. At this time, they
 * 		are:
 *
 * 		**PACKET_HOST**
 * 			Packet is for us.
 * 		**PACKET_BROADCAST**
 * 			Send packet to all.
 * 		**PACKET_MULTICAST**
 * 			Send packet to group.
 * 		**PACKET_OTHERHOST**
 * 			Send packet to someone else.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_skb_under_cgroup(struct sk_buff *skb, struct bpf_map *map, u32 index)
 * 	Description
 * 		Check whether *skb* is a descendant of the cgroup2 held by
 * 		*map* of type **BPF_MAP_TYPE_CGROUP_ARRAY**, at *index*.
 * 	Return
 * 		The return value depends on the result of the test, and can be:
 *
 * 		* 0, if the *skb* failed the cgroup2 descendant test.
 * 		* 1, if the *skb* succeeded the cgroup2 descendant test.
 * 		* A negative error code, if an error occurred.
 *
 * u32 bpf_get_hash_recalc(struct sk_buff *skb)
 * 	Description
 * 		Retrieve the hash of the packet, *skb*\ **->hash**. If it is
 * 		not set, in particular if the hash was cleared due to mangling,
 * 		recompute this hash. Later accesses to the hash can be done
 * 		directly with *skb*\ **->hash**.
 *
 * 		Calling **bpf_set_hash_invalid**\ (), changing a packet
 * 		prototype with **bpf_skb_change_proto**\ (), or calling
 * 		**bpf_skb_store_bytes**\ () with the
 * 		**BPF_F_INVALIDATE_HASH** are actions susceptible to clear
 * 		the hash and to trigger a new computation for the next call to
 * 		**bpf_get_hash_recalc**\ ().
 * 	Return
 * 		The 32-bit hash.
 *
 * u64 bpf_get_current_task(void)
 * 	Description
 * 		Get the current task.
 * 	Return
 * 		A pointer to the current task struct.
 *
 * long bpf_probe_write_user(void *dst, const void *src, u32 len)
 * 	Description
 * 		Attempt in a safe way to write *len* bytes from the buffer
 * 		*src* to *dst* in memory. It only works for threads that are in
 * 		user context, and *dst* must be a valid user space address.
 *
 * 		This helper should not be used to implement any kind of
 * 		security mechanism because of TOC-TOU attacks, but rather to
 * 		debug, divert, and manipulate execution of semi-cooperative
 * 		processes.
 *
 * 		Keep in mind that this feature is meant for experiments, and it
 * 		has a risk of crashing the system and running programs.
 * 		Therefore, when an eBPF program using this helper is attached,
 * 		a warning including PID and process name is printed to kernel
 * 		logs.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_current_task_under_cgroup(struct bpf_map *map, u32 index)
 * 	Description
 * 		Check whether the probe is being run is the context of a given
 * 		subset of the cgroup2 hierarchy. The cgroup2 to test is held by
 * 		*map* of type **BPF_MAP_TYPE_CGROUP_ARRAY**, at *index*.
 * 	Return
 * 		The return value depends on the result of the test, and can be:
 *
 *		* 1, if current task belongs to the cgroup2.
 *		* 0, if current task does not belong to the cgroup2.
 * 		* A negative error code, if an error occurred.
 *
 * long bpf_skb_change_tail(struct sk_buff *skb, u32 len, u64 flags)
 * 	Description
 * 		Resize (trim or grow) the packet associated to *skb* to the
 * 		new *len*. The *flags* are reserved for future usage, and must
 * 		be left at zero.
 *
 * 		The basic idea is that the helper performs the needed work to
 * 		change the size of the packet, then the eBPF program rewrites
 * 		the rest via helpers like **bpf_skb_store_bytes**\ (),
 * 		**bpf_l3_csum_replace**\ (), **bpf_l3_csum_replace**\ ()
 * 		and others. This helper is a slow path utility intended for
 * 		replies with control messages. And because it is targeted for
 * 		slow path, the helper itself can afford to be slow: it
 * 		implicitly linearizes, unclones and drops offloads from the
 * 		*skb*.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_skb_pull_data(struct sk_buff *skb, u32 len)
 * 	Description
 * 		Pull in non-linear data in case the *skb* is non-linear and not
 * 		all of *len* are part of the linear section. Make *len* bytes
 * 		from *skb* readable and writable. If a zero value is passed for
 *		*len*, then all bytes in the linear part of *skb* will be made
 *		readable and writable.
 *
 * 		This helper is only needed for reading and writing with direct
 * 		packet access.
 *
 * 		For direct packet access, testing that offsets to access
 * 		are within packet boundaries (test on *skb*\ **->data_end**) is
 * 		susceptible to fail if offsets are invalid, or if the requested
 * 		data is in non-linear parts of the *skb*. On failure the
 * 		program can just bail out, or in the case of a non-linear
 * 		buffer, use a helper to make the data available. The
 * 		**bpf_skb_load_bytes**\ () helper is a first solution to access
 * 		the data. Another one consists in using **bpf_skb_pull_data**
 * 		to pull in once the non-linear parts, then retesting and
 * 		eventually access the data.
 *
 * 		At the same time, this also makes sure the *skb* is uncloned,
 * 		which is a necessary condition for direct write. As this needs
 * 		to be an invariant for the write part only, the verifier
 * 		detects writes and adds a prologue that is calling
 * 		**bpf_skb_pull_data()** to effectively unclone the *skb* from
 * 		the very beginning in case it is indeed cloned.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * s64 bpf_csum_update(struct sk_buff *skb, __wsum csum)
 * 	Description
 * 		Add the checksum *csum* into *skb*\ **->csum** in case the
 * 		driver has supplied a checksum for the entire packet into that
 * 		field. Return an error otherwise. This helper is intended to be
 * 		used in combination with **bpf_csum_diff**\ (), in particular
 * 		when the checksum needs to be updated after data has been
 * 		written into the packet through direct packet access.
 * 	Return
 * 		The checksum on success, or a negative error code in case of
 * 		failure.
 *
 * void bpf_set_hash_invalid(struct sk_buff *skb)
 * 	Description
 * 		Invalidate the current *skb*\ **->hash**. It can be used after
 * 		mangling on headers through direct packet access, in order to
 * 		indicate that the hash is outdated and to trigger a
 * 		recalculation the next time the kernel tries to access this
 * 		hash or when the **bpf_get_hash_recalc**\ () helper is called.
 * 	Return
 * 		void.
 *
 * long bpf_get_numa_node_id(void)
 * 	Description
 * 		Return the id of the current NUMA node. The primary use case
 * 		for this helper is the selection of sockets for the local NUMA
 * 		node, when the program is attached to sockets using the
 * 		**SO_ATTACH_REUSEPORT_EBPF** option (see also **socket(7)**),
 * 		but the helper is also available to other eBPF program types,
 * 		similarly to **bpf_get_smp_processor_id**\ ().
 * 	Return
 * 		The id of current NUMA node.
 *
 * long bpf_skb_change_head(struct sk_buff *skb, u32 len, u64 flags)
 * 	Description
 * 		Grows headroom of packet associated to *skb* and adjusts the
 * 		offset of the MAC header accordingly, adding *len* bytes of
 * 		space. It automatically extends and reallocates memory as
 * 		required.
 *
 * 		This helper can be used on a layer 3 *skb* to push a MAC header
 * 		for redirection into a layer 2 device.
 *
 * 		All values for *flags* are reserved for future usage, and must
 * 		be left at zero.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_xdp_adjust_head(struct xdp_buff *xdp_md, int delta)
 * 	Description
 * 		Adjust (move) *xdp_md*\ **->data** by *delta* bytes. Note that
 * 		it is possible to use a negative value for *delta*. This helper
 * 		can be used to prepare the packet for pushing or popping
 * 		headers.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_probe_read_str(void *dst, u32 size, const void *unsafe_ptr)
 * 	Description
 * 		Copy a NUL terminated string from an unsafe kernel address
 * 		*unsafe_ptr* to *dst*. See **bpf_probe_read_kernel_str**\ () for
 * 		more details.
 *
 * 		Generally, use **bpf_probe_read_user_str**\ () or
 * 		**bpf_probe_read_kernel_str**\ () instead.
 * 	Return
 * 		On success, the strictly positive length of the string,
 * 		including the trailing NUL character. On error, a negative
 * 		value.
 *
 * u64 bpf_get_socket_cookie(struct sk_buff *skb)
 * 	Description
 * 		If the **struct sk_buff** pointed by *skb* has a known socket,
 * 		retrieve the cookie (generated by the kernel) of this socket.
 * 		If no cookie has been set yet, generate a new cookie. Once
 * 		generated, the socket cookie remains stable for the life of the
 * 		socket. This helper can be useful for monitoring per socket
 * 		networking traffic statistics as it provides a global socket
 * 		identifier that can be assumed unique.
 * 	Return
 * 		A 8-byte long unique number on success, or 0 if the socket
 * 		field is missing inside *skb*.
 *
 * u64 bpf_get_socket_cookie(struct bpf_sock_addr *ctx)
 * 	Description
 * 		Equivalent to bpf_get_socket_cookie() helper that accepts
 * 		*skb*, but gets socket from **struct bpf_sock_addr** context.
 * 	Return
 * 		A 8-byte long unique number.
 *
 * u64 bpf_get_socket_cookie(struct bpf_sock_ops *ctx)
 * 	Description
 * 		Equivalent to **bpf_get_socket_cookie**\ () helper that accepts
 * 		*skb*, but gets socket from **struct bpf_sock_ops** context.
 * 	Return
 * 		A 8-byte long unique number.
 *
 * u64 bpf_get_socket_cookie(struct sock *sk)
 * 	Description
 * 		Equivalent to **bpf_get_socket_cookie**\ () helper that accepts
 * 		*sk*, but gets socket from a BTF **struct sock**. This helper
 * 		also works for sleepable programs.
 * 	Return
 * 		A 8-byte long unique number or 0 if *sk* is NULL.
 *
 * u32 bpf_get_socket_uid(struct sk_buff *skb)
 * 	Description
 * 		Get the owner UID of the socked associated to *skb*.
 * 	Return
 * 		The owner UID of the socket associated to *skb*. If the socket
 * 		is **NULL**, or if it is not a full socket (i.e. if it is a
 * 		time-wait or a request socket instead), **overflowuid** value
 * 		is returned (note that **overflowuid** might also be the actual
 * 		UID value for the socket).
 *
 * long bpf_set_hash(struct sk_buff *skb, u32 hash)
 * 	Description
 * 		Set the full hash for *skb* (set the field *skb*\ **->hash**)
 * 		to value *hash*.
 * 	Return
 * 		0
 *
 * long bpf_setsockopt(void *bpf_socket, int level, int optname, void *optval, int optlen)
 * 	Description
 * 		Emulate a call to **setsockopt()** on the socket associated to
 * 		*bpf_socket*, which must be a full socket. The *level* at
 * 		which the option resides and the name *optname* of the option
 * 		must be specified, see **setsockopt(2)** for more information.
 * 		The option value of length *optlen* is pointed by *optval*.
 *
 * 		*bpf_socket* should be one of the following:
 *
 * 		* **struct bpf_sock_ops** for **BPF_PROG_TYPE_SOCK_OPS**.
 *		* **struct bpf_sock_addr** for **BPF_CGROUP_INET4_CONNECT**,
 *		  **BPF_CGROUP_INET6_CONNECT** and **BPF_CGROUP_UNIX_CONNECT**.
 *
 * 		This helper actually implements a subset of **setsockopt()**.
 * 		It supports the following *level*\ s:
 *
 * 		* **SOL_SOCKET**, which supports the following *optname*\ s:
 * 		  **SO_RCVBUF**, **SO_SNDBUF**, **SO_MAX_PACING_RATE**,
 * 		  **SO_PRIORITY**, **SO_RCVLOWAT**, **SO_MARK**,
 * 		  **SO_BINDTODEVICE**, **SO_KEEPALIVE**, **SO_REUSEADDR**,
 * 		  **SO_REUSEPORT**, **SO_BINDTOIFINDEX**, **SO_TXREHASH**.
 * 		* **IPPROTO_TCP**, which supports the following *optname*\ s:
 * 		  **TCP_CONGESTION**, **TCP_BPF_IW**,
 * 		  **TCP_BPF_SNDCWND_CLAMP**, **TCP_SAVE_SYN**,
 * 		  **TCP_KEEPIDLE**, **TCP_KEEPINTVL**, **TCP_KEEPCNT**,
 * 		  **TCP_SYNCNT**, **TCP_USER_TIMEOUT**, **TCP_NOTSENT_LOWAT**,
 * 		  **TCP_NODELAY**, **TCP_MAXSEG**, **TCP_WINDOW_CLAMP**,
 * 		  **TCP_THIN_LINEAR_TIMEOUTS**, **TCP_BPF_DELACK_MAX**,
 *		  **TCP_BPF_RTO_MIN**, **TCP_BPF_SOCK_OPS_CB_FLAGS**.
 * 		* **IPPROTO_IP**, which supports *optname* **IP_TOS**.
 * 		* **IPPROTO_IPV6**, which supports the following *optname*\ s:
 * 		  **IPV6_TCLASS**, **IPV6_AUTOFLOWLABEL**.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_skb_adjust_room(struct sk_buff *skb, s32 len_diff, u32 mode, u64 flags)
 * 	Description
 * 		Grow or shrink the room for data in the packet associated to
 * 		*skb* by *len_diff*, and according to the selected *mode*.
 *
 * 		By default, the helper will reset any offloaded checksum
 * 		indicator of the skb to CHECKSUM_NONE. This can be avoided
 * 		by the following flag:
 *
 * 		* **BPF_F_ADJ_ROOM_NO_CSUM_RESET**: Do not reset offloaded
 * 		  checksum data of the skb to CHECKSUM_NONE.
 *
 *		There are two supported modes at this time:
 *
 *		* **BPF_ADJ_ROOM_MAC**: Adjust room at the mac layer
 * 		  (room space is added or removed between the layer 2 and
 * 		  layer 3 headers).
 *
 * 		* **BPF_ADJ_ROOM_NET**: Adjust room at the network layer
 * 		  (room space is added or removed between the layer 3 and
 * 		  layer 4 headers).
 *
 *		The following flags are supported at this time:
 *
 *		* **BPF_F_ADJ_ROOM_FIXED_GSO**: Do not adjust gso_size.
 *		  Adjusting mss in this way is not allowed for datagrams.
 *
 *		* **BPF_F_ADJ_ROOM_ENCAP_L3_IPV4**,
 *		  **BPF_F_ADJ_ROOM_ENCAP_L3_IPV6**:
 *		  Any new space is reserved to hold a tunnel header.
 *		  Configure skb offsets and other fields accordingly.
 *
 *		* **BPF_F_ADJ_ROOM_ENCAP_L4_GRE**,
 *		  **BPF_F_ADJ_ROOM_ENCAP_L4_UDP**:
 *		  Use with ENCAP_L3 flags to further specify the tunnel type.
 *
 *		* **BPF_F_ADJ_ROOM_ENCAP_L2**\ (*len*):
 *		  Use with ENCAP_L3/L4 flags to further specify the tunnel
 *		  type; *len* is the length of the inner MAC header.
 *
 *		* **BPF_F_ADJ_ROOM_ENCAP_L2_ETH**:
 *		  Use with BPF_F_ADJ_ROOM_ENCAP_L2 flag to further specify the
 *		  L2 type as Ethernet.
 *
 *		* **BPF_F_ADJ_ROOM_DECAP_L3_IPV4**,
 *		  **BPF_F_ADJ_ROOM_DECAP_L3_IPV6**:
 *		  Indicate the new IP header version after decapsulating the outer
 *		  IP header. Used when the inner and outer IP versions are different.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_redirect_map(struct bpf_map *map, u64 key, u64 flags)
 * 	Description
 * 		Redirect the packet to the endpoint referenced by *map* at
 * 		index *key*. Depending on its type, this *map* can contain
 * 		references to net devices (for forwarding packets through other
 * 		ports), or to CPUs (for redirecting XDP frames to another CPU;
 * 		but this is only implemented for native XDP (with driver
 * 		support) as of this writing).
 *
 * 		The lower two bits of *flags* are used as the return code if
 * 		the map lookup fails. This is so that the return value can be
 * 		one of the XDP program return codes up to **XDP_TX**, as chosen
 * 		by the caller. The higher bits of *flags* can be set to
 * 		BPF_F_BROADCAST or BPF_F_EXCLUDE_INGRESS as defined below.
 *
 * 		With BPF_F_BROADCAST the packet will be broadcasted to all the
 * 		interfaces in the map, with BPF_F_EXCLUDE_INGRESS the ingress
 * 		interface will be excluded when do broadcasting.
 *
 * 		See also **bpf_redirect**\ (), which only supports redirecting
 * 		to an ifindex, but doesn't require a map to do so.
 * 	Return
 * 		**XDP_REDIRECT** on success, or the value of the two lower bits
 * 		of the *flags* argument on error.
 *
 * long bpf_sk_redirect_map(struct sk_buff *skb, struct bpf_map *map, u32 key, u64 flags)
 * 	Description
 * 		Redirect the packet to the socket referenced by *map* (of type
 * 		**BPF_MAP_TYPE_SOCKMAP**) at index *key*. Both ingress and
 * 		egress interfaces can be used for redirection. The
 * 		**BPF_F_INGRESS** value in *flags* is used to make the
 * 		distinction (ingress path is selected if the flag is present,
 * 		egress path otherwise). This is the only flag supported for now.
 * 	Return
 * 		**SK_PASS** on success, or **SK_DROP** on error.
 *
 * long bpf_sock_map_update(struct bpf_sock_ops *skops, struct bpf_map *map, void *key, u64 flags)
 * 	Description
 * 		Add an entry to, or update a *map* referencing sockets. The
 * 		*skops* is used as a new value for the entry associated to
 * 		*key*. *flags* is one of:
 *
 * 		**BPF_NOEXIST**
 * 			The entry for *key* must not exist in the map.
 * 		**BPF_EXIST**
 * 			The entry for *key* must already exist in the map.
 * 		**BPF_ANY**
 * 			No condition on the existence of the entry for *key*.
 *
 * 		If the *map* has eBPF programs (parser and verdict), those will
 * 		be inherited by the socket being added. If the socket is
 * 		already attached to eBPF programs, this results in an error.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_xdp_adjust_meta(struct xdp_buff *xdp_md, int delta)
 * 	Description
 * 		Adjust the address pointed by *xdp_md*\ **->data_meta** by
 * 		*delta* (which can be positive or negative). Note that this
 * 		operation modifies the address stored in *xdp_md*\ **->data**,
 * 		so the latter must be loaded only after the helper has been
 * 		called.
 *
 * 		The use of *xdp_md*\ **->data_meta** is optional and programs
 * 		are not required to use it. The rationale is that when the
 * 		packet is processed with XDP (e.g. as DoS filter), it is
 * 		possible to push further meta data along with it before passing
 * 		to the stack, and to give the guarantee that an ingress eBPF
 * 		program attached as a TC classifier on the same device can pick
 * 		this up for further post-processing. Since TC works with socket
 * 		buffers, it remains possible to set from XDP the **mark** or
 * 		**priority** pointers, or other pointers for the socket buffer.
 * 		Having this scratch space generic and programmable allows for
 * 		more flexibility as the user is free to store whatever meta
 * 		data they need.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_perf_event_read_value(struct bpf_map *map, u64 flags, struct bpf_perf_event_value *buf, u32 buf_size)
 * 	Description
 * 		Read the value of a perf event counter, and store it into *buf*
 * 		of size *buf_size*. This helper relies on a *map* of type
 * 		**BPF_MAP_TYPE_PERF_EVENT_ARRAY**. The nature of the perf event
 * 		counter is selected when *map* is updated with perf event file
 * 		descriptors. The *map* is an array whose size is the number of
 * 		available CPUs, and each cell contains a value relative to one
 * 		CPU. The value to retrieve is indicated by *flags*, that
 * 		contains the index of the CPU to look up, masked with
 * 		**BPF_F_INDEX_MASK**. Alternatively, *flags* can be set to
 * 		**BPF_F_CURRENT_CPU** to indicate that the value for the
 * 		current CPU should be retrieved.
 *
 * 		This helper behaves in a way close to
 * 		**bpf_perf_event_read**\ () helper, save that instead of
 * 		just returning the value observed, it fills the *buf*
 * 		structure. This allows for additional data to be retrieved: in
 * 		particular, the enabled and running times (in *buf*\
 * 		**->enabled** and *buf*\ **->running**, respectively) are
 * 		copied. In general, **bpf_perf_event_read_value**\ () is
 * 		recommended over **bpf_perf_event_read**\ (), which has some
 * 		ABI issues and provides fewer functionalities.
 *
 * 		These values are interesting, because hardware PMU (Performance
 * 		Monitoring Unit) counters are limited resources. When there are
 * 		more PMU based perf events opened than available counters,
 * 		kernel will multiplex these events so each event gets certain
 * 		percentage (but not all) of the PMU time. In case that
 * 		multiplexing happens, the number of samples or counter value
 * 		will not reflect the case compared to when no multiplexing
 * 		occurs. This makes comparison between different runs difficult.
 * 		Typically, the counter value should be normalized before
 * 		comparing to other experiments. The usual normalization is done
 * 		as follows.
 *
 * 		::
 *
 * 			normalized_counter = counter * t_enabled / t_running
 *
 * 		Where t_enabled is the time enabled for event and t_running is
 * 		the time running for event since last normalization. The
 * 		enabled and running times are accumulated since the perf event
 * 		open. To achieve scaling factor between two invocations of an
 * 		eBPF program, users can use CPU id as the key (which is
 * 		typical for perf array usage model) to remember the previous
 * 		value and do the calculation inside the eBPF program.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_perf_prog_read_value(struct bpf_perf_event_data *ctx, struct bpf_perf_event_value *buf, u32 buf_size)
 * 	Description
 * 		For an eBPF program attached to a perf event, retrieve the
 * 		value of the event counter associated to *ctx* and store it in
 * 		the structure pointed by *buf* and of size *buf_size*. Enabled
 * 		and running times are also stored in the structure (see
 * 		description of helper **bpf_perf_event_read_value**\ () for
 * 		more details).
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_getsockopt(void *bpf_socket, int level, int optname, void *optval, int optlen)
 * 	Description
 * 		Emulate a call to **getsockopt()** on the socket associated to
 * 		*bpf_socket*, which must be a full socket. The *level* at
 * 		which the option resides and the name *optname* of the option
 * 		must be specified, see **getsockopt(2)** for more information.
 * 		The retrieved value is stored in the structure pointed by
 * 		*opval* and of length *optlen*.
 *
 * 		*bpf_socket* should be one of the following:
 *
 * 		* **struct bpf_sock_ops** for **BPF_PROG_TYPE_SOCK_OPS**.
 *		* **struct bpf_sock_addr** for **BPF_CGROUP_INET4_CONNECT**,
 *		  **BPF_CGROUP_INET6_CONNECT** and **BPF_CGROUP_UNIX_CONNECT**.
 *
 * 		This helper actually implements a subset of **getsockopt()**.
 * 		It supports the same set of *optname*\ s that is supported by
 * 		the **bpf_setsockopt**\ () helper.  The exceptions are
 * 		**TCP_BPF_*** is **bpf_setsockopt**\ () only and
 * 		**TCP_SAVED_SYN** is **bpf_getsockopt**\ () only.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_override_return(struct pt_regs *regs, u64 rc)
 * 	Description
 * 		Used for error injection, this helper uses kprobes to override
 * 		the return value of the probed function, and to set it to *rc*.
 * 		The first argument is the context *regs* on which the kprobe
 * 		works.
 *
 * 		This helper works by setting the PC (program counter)
 * 		to an override function which is run in place of the original
 * 		probed function. This means the probed function is not run at
 * 		all. The replacement function just returns with the required
 * 		value.
 *
 * 		This helper has security implications, and thus is subject to
 * 		restrictions. It is only available if the kernel was compiled
 * 		with the **CONFIG_BPF_KPROBE_OVERRIDE** configuration
 * 		option, and in this case it only works on functions tagged with
 * 		**ALLOW_ERROR_INJECTION** in the kernel code.
 * 	Return
 * 		0
 *
 * long bpf_sock_ops_cb_flags_set(struct bpf_sock_ops *bpf_sock, int argval)
 * 	Description
 * 		Attempt to set the value of the **bpf_sock_ops_cb_flags** field
 * 		for the full TCP socket associated to *bpf_sock_ops* to
 * 		*argval*.
 *
 * 		The primary use of this field is to determine if there should
 * 		be calls to eBPF programs of type
 * 		**BPF_PROG_TYPE_SOCK_OPS** at various points in the TCP
 * 		code. A program of the same type can change its value, per
 * 		connection and as necessary, when the connection is
 * 		established. This field is directly accessible for reading, but
 * 		this helper must be used for updates in order to return an
 * 		error if an eBPF program tries to set a callback that is not
 * 		supported in the current kernel.
 *
 * 		*argval* is a flag array which can combine these flags:
 *
 * 		* **BPF_SOCK_OPS_RTO_CB_FLAG** (retransmission time out)
 * 		* **BPF_SOCK_OPS_RETRANS_CB_FLAG** (retransmission)
 * 		* **BPF_SOCK_OPS_STATE_CB_FLAG** (TCP state change)
 * 		* **BPF_SOCK_OPS_RTT_CB_FLAG** (every RTT)
 *
 * 		Therefore, this function can be used to clear a callback flag by
 * 		setting the appropriate bit to zero. e.g. to disable the RTO
 * 		callback:
 *
 * 		**bpf_sock_ops_cb_flags_set(bpf_sock,**
 * 			**bpf_sock->bpf_sock_ops_cb_flags & ~BPF_SOCK_OPS_RTO_CB_FLAG)**
 *
 * 		Here are some examples of where one could call such eBPF
 * 		program:
 *
 * 		* When RTO fires.
 * 		* When a packet is retransmitted.
 * 		* When the connection terminates.
 * 		* When a packet is sent.
 * 		* When a packet is received.
 * 	Return
 * 		Code **-EINVAL** if the socket is not a full TCP socket;
 * 		otherwise, a positive number containing the bits that could not
 * 		be set is returned (which comes down to 0 if all bits were set
 * 		as required).
 *
 * long bpf_msg_redirect_map(struct sk_msg_buff *msg, struct bpf_map *map, u32 key, u64 flags)
 * 	Description
 * 		This helper is used in programs implementing policies at the
 * 		socket level. If the message *msg* is allowed to pass (i.e. if
 * 		the verdict eBPF program returns **SK_PASS**), redirect it to
 * 		the socket referenced by *map* (of type
 * 		**BPF_MAP_TYPE_SOCKMAP**) at index *key*. Both ingress and
 * 		egress interfaces can be used for redirection. The
 * 		**BPF_F_INGRESS** value in *flags* is used to make the
 * 		distinction (ingress path is selected if the flag is present,
 * 		egress path otherwise). This is the only flag supported for now.
 * 	Return
 * 		**SK_PASS** on success, or **SK_DROP** on error.
 *
 * long bpf_msg_apply_bytes(struct sk_msg_buff *msg, u32 bytes)
 * 	Description
 * 		For socket policies, apply the verdict of the eBPF program to
 * 		the next *bytes* (number of bytes) of message *msg*.
 *
 * 		For example, this helper can be used in the following cases:
 *
 * 		* A single **sendmsg**\ () or **sendfile**\ () system call
 * 		  contains multiple logical messages that the eBPF program is
 * 		  supposed to read and for which it should apply a verdict.
 * 		* An eBPF program only cares to read the first *bytes* of a
 * 		  *msg*. If the message has a large payload, then setting up
 * 		  and calling the eBPF program repeatedly for all bytes, even
 * 		  though the verdict is already known, would create unnecessary
 * 		  overhead.
 *
 * 		When called from within an eBPF program, the helper sets a
 * 		counter internal to the BPF infrastructure, that is used to
 * 		apply the last verdict to the next *bytes*. If *bytes* is
 * 		smaller than the current data being processed from a
 * 		**sendmsg**\ () or **sendfile**\ () system call, the first
 * 		*bytes* will be sent and the eBPF program will be re-run with
 * 		the pointer for start of data pointing to byte number *bytes*
 * 		**+ 1**. If *bytes* is larger than the current data being
 * 		processed, then the eBPF verdict will be applied to multiple
 * 		**sendmsg**\ () or **sendfile**\ () calls until *bytes* are
 * 		consumed.
 *
 * 		Note that if a socket closes with the internal counter holding
 * 		a non-zero value, this is not a problem because data is not
 * 		being buffered for *bytes* and is sent as it is received.
 * 	Return
 * 		0
 *
 * long bpf_msg_cork_bytes(struct sk_msg_buff *msg, u32 bytes)
 * 	Description
 * 		For socket policies, prevent the execution of the verdict eBPF
 * 		program for message *msg* until *bytes* (byte number) have been
 * 		accumulated.
 *
 * 		This can be used when one needs a specific number of bytes
 * 		before a verdict can be assigned, even if the data spans
 * 		multiple **sendmsg**\ () or **sendfile**\ () calls. The extreme
 * 		case would be a user calling **sendmsg**\ () repeatedly with
 * 		1-byte long message segments. Obviously, this is bad for
 * 		performance, but it is still valid. If the eBPF program needs
 * 		*bytes* bytes to validate a header, this helper can be used to
 * 		prevent the eBPF program to be called again until *bytes* have
 * 		been accumulated.
 * 	Return
 * 		0
 *
 * long bpf_msg_pull_data(struct sk_msg_buff *msg, u32 start, u32 end, u64 flags)
 * 	Description
 * 		For socket policies, pull in non-linear data from user space
 * 		for *msg* and set pointers *msg*\ **->data** and *msg*\
 * 		**->data_end** to *start* and *end* bytes offsets into *msg*,
 * 		respectively.
 *
 * 		If a program of type **BPF_PROG_TYPE_SK_MSG** is run on a
 * 		*msg* it can only parse data that the (**data**, **data_end**)
 * 		pointers have already consumed. For **sendmsg**\ () hooks this
 * 		is likely the first scatterlist element. But for calls relying
 * 		on the **sendpage** handler (e.g. **sendfile**\ ()) this will
 * 		be the range (**0**, **0**) because the data is shared with
 * 		user space and by default the objective is to avoid allowing
 * 		user space to modify data while (or after) eBPF verdict is
 * 		being decided. This helper can be used to pull in data and to
 * 		set the start and end pointer to given values. Data will be
 * 		copied if necessary (i.e. if data was not linear and if start
 * 		and end pointers do not point to the same chunk).
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 *
 * 		All values for *flags* are reserved for future usage, and must
 * 		be left at zero.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_bind(struct bpf_sock_addr *ctx, struct sockaddr *addr, int addr_len)
 * 	Description
 * 		Bind the socket associated to *ctx* to the address pointed by
 * 		*addr*, of length *addr_len*. This allows for making outgoing
 * 		connection from the desired IP address, which can be useful for
 * 		example when all processes inside a cgroup should use one
 * 		single IP address on a host that has multiple IP configured.
 *
 * 		This helper works for IPv4 and IPv6, TCP and UDP sockets. The
 * 		domain (*addr*\ **->sa_family**) must be **AF_INET** (or
 * 		**AF_INET6**). It's advised to pass zero port (**sin_port**
 * 		or **sin6_port**) which triggers IP_BIND_ADDRESS_NO_PORT-like
 * 		behavior and lets the kernel efficiently pick up an unused
 * 		port as long as 4-tuple is unique. Passing non-zero port might
 * 		lead to degraded performance.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_xdp_adjust_tail(struct xdp_buff *xdp_md, int delta)
 * 	Description
 * 		Adjust (move) *xdp_md*\ **->data_end** by *delta* bytes. It is
 * 		possible to both shrink and grow the packet tail.
 * 		Shrink done via *delta* being a negative integer.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_skb_get_xfrm_state(struct sk_buff *skb, u32 index, struct bpf_xfrm_state *xfrm_state, u32 size, u64 flags)
 * 	Description
 * 		Retrieve the XFRM state (IP transform framework, see also
 * 		**ip-xfrm(8)**) at *index* in XFRM "security path" for *skb*.
 *
 * 		The retrieved value is stored in the **struct bpf_xfrm_state**
 * 		pointed by *xfrm_state* and of length *size*.
 *
 * 		All values for *flags* are reserved for future usage, and must
 * 		be left at zero.
 *
 * 		This helper is available only if the kernel was compiled with
 * 		**CONFIG_XFRM** configuration option.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_get_stack(void *ctx, void *buf, u32 size, u64 flags)
 * 	Description
 * 		Return a user or a kernel stack in bpf program provided buffer.
 * 		To achieve this, the helper needs *ctx*, which is a pointer
 * 		to the context on which the tracing program is executed.
 * 		To store the stacktrace, the bpf program provides *buf* with
 * 		a nonnegative *size*.
 *
 * 		The last argument, *flags*, holds the number of stack frames to
 * 		skip (from 0 to 255), masked with
 * 		**BPF_F_SKIP_FIELD_MASK**. The next bits can be used to set
 * 		the following flags:
 *
 * 		**BPF_F_USER_STACK**
 * 			Collect a user space stack instead of a kernel stack.
 * 		**BPF_F_USER_BUILD_ID**
 * 			Collect (build_id, file_offset) instead of ips for user
 * 			stack, only valid if **BPF_F_USER_STACK** is also
 * 			specified.
 *
 * 			*file_offset* is an offset relative to the beginning
 * 			of the executable or shared object file backing the vma
 * 			which the *ip* falls in. It is *not* an offset relative
 * 			to that object's base address. Accordingly, it must be
 * 			adjusted by adding (sh_addr - sh_offset), where
 * 			sh_{addr,offset} correspond to the executable section
 * 			containing *file_offset* in the object, for comparisons
 * 			to symbols' st_value to be valid.
 *
 * 		**bpf_get_stack**\ () can collect up to
 * 		**PERF_MAX_STACK_DEPTH** both kernel and user frames, subject
 * 		to sufficient large buffer size. Note that
 * 		this limit can be controlled with the **sysctl** program, and
 * 		that it should be manually increased in order to profile long
 * 		user stacks (such as stacks for Java programs). To do so, use:
 *
 * 		::
 *
 * 			# sysctl kernel.perf_event_max_stack=<new value>
 * 	Return
 * 		The non-negative copied *buf* length equal to or less than
 * 		*size* on success, or a negative error in case of failure.
 *
 * long bpf_skb_load_bytes_relative(const void *skb, u32 offset, void *to, u32 len, u32 start_header)
 * 	Description
 * 		This helper is similar to **bpf_skb_load_bytes**\ () in that
 * 		it provides an easy way to load *len* bytes from *offset*
 * 		from the packet associated to *skb*, into the buffer pointed
 * 		by *to*. The difference to **bpf_skb_load_bytes**\ () is that
 * 		a fifth argument *start_header* exists in order to select a
 * 		base offset to start from. *start_header* can be one of:
 *
 * 		**BPF_HDR_START_MAC**
 * 			Base offset to load data from is *skb*'s mac header.
 * 		**BPF_HDR_START_NET**
 * 			Base offset to load data from is *skb*'s network header.
 *
 * 		In general, "direct packet access" is the preferred method to
 * 		access packet data, however, this helper is in particular useful
 * 		in socket filters where *skb*\ **->data** does not always point
 * 		to the start of the mac header and where "direct packet access"
 * 		is not available.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_fib_lookup(void *ctx, struct bpf_fib_lookup *params, int plen, u32 flags)
 *	Description
 *		Do FIB lookup in kernel tables using parameters in *params*.
 *		If lookup is successful and result shows packet is to be
 *		forwarded, the neighbor tables are searched for the nexthop.
 *		If successful (ie., FIB lookup shows forwarding and nexthop
 *		is resolved), the nexthop address is returned in ipv4_dst
 *		or ipv6_dst based on family, smac is set to mac address of
 *		egress device, dmac is set to nexthop mac address, rt_metric
 *		is set to metric from route (IPv4/IPv6 only), and ifindex
 *		is set to the device index of the nexthop from the FIB lookup.
 *
 *		*plen* argument is the size of the passed in struct.
 *		*flags* argument can be a combination of one or more of the
 *		following values:
 *
 *		**BPF_FIB_LOOKUP_DIRECT**
 *			Do a direct table lookup vs full lookup using FIB
 *			rules.
 *		**BPF_FIB_LOOKUP_TBID**
 *			Used with BPF_FIB_LOOKUP_DIRECT.
 *			Use the routing table ID present in *params*->tbid
 *			for the fib lookup.
 *		**BPF_FIB_LOOKUP_OUTPUT**
 *			Perform lookup from an egress perspective (default is
 *			ingress).
 *		**BPF_FIB_LOOKUP_SKIP_NEIGH**
 *			Skip the neighbour table lookup. *params*->dmac
 *			and *params*->smac will not be set as output. A common
 *			use case is to call **bpf_redirect_neigh**\ () after
 *			doing **bpf_fib_lookup**\ ().
 *		**BPF_FIB_LOOKUP_SRC**
 *			Derive and set source IP addr in *params*->ipv{4,6}_src
 *			for the nexthop. If the src addr cannot be derived,
 *			**BPF_FIB_LKUP_RET_NO_SRC_ADDR** is returned. In this
 *			case, *params*->dmac and *params*->smac are not set either.
 *		**BPF_FIB_LOOKUP_MARK**
 *			Use the mark present in *params*->mark for the fib lookup.
 *			This option should not be used with BPF_FIB_LOOKUP_DIRECT,
 *			as it only has meaning for full lookups.
 *
 *		*ctx* is either **struct xdp_md** for XDP programs or
 *		**struct sk_buff** tc cls_act programs.
 *	Return
 *		* < 0 if any input argument is invalid
 *		*   0 on success (packet is forwarded, nexthop neighbor exists)
 *		* > 0 one of **BPF_FIB_LKUP_RET_** codes explaining why the
 *		  packet is not forwarded or needs assist from full stack
 *
 *		If lookup fails with BPF_FIB_LKUP_RET_FRAG_NEEDED, then the MTU
 *		was exceeded and output params->mtu_result contains the MTU.
 *
 * long bpf_sock_hash_update(struct bpf_sock_ops *skops, struct bpf_map *map, void *key, u64 flags)
 *	Description
 *		Add an entry to, or update a sockhash *map* referencing sockets.
 *		The *skops* is used as a new value for the entry associated to
 *		*key*. *flags* is one of:
 *
 *		**BPF_NOEXIST**
 *			The entry for *key* must not exist in the map.
 *		**BPF_EXIST**
 *			The entry for *key* must already exist in the map.
 *		**BPF_ANY**
 *			No condition on the existence of the entry for *key*.
 *
 *		If the *map* has eBPF programs (parser and verdict), those will
 *		be inherited by the socket being added. If the socket is
 *		already attached to eBPF programs, this results in an error.
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * long bpf_msg_redirect_hash(struct sk_msg_buff *msg, struct bpf_map *map, void *key, u64 flags)
 *	Description
 *		This helper is used in programs implementing policies at the
 *		socket level. If the message *msg* is allowed to pass (i.e. if
 *		the verdict eBPF program returns **SK_PASS**), redirect it to
 *		the socket referenced by *map* (of type
 *		**BPF_MAP_TYPE_SOCKHASH**) using hash *key*. Both ingress and
 *		egress interfaces can be used for redirection. The
 *		**BPF_F_INGRESS** value in *flags* is used to make the
 *		distinction (ingress path is selected if the flag is present,
 *		egress path otherwise). This is the only flag supported for now.
 *	Return
 *		**SK_PASS** on success, or **SK_DROP** on error.
 *
 * long bpf_sk_redirect_hash(struct sk_buff *skb, struct bpf_map *map, void *key, u64 flags)
 *	Description
 *		This helper is used in programs implementing policies at the
 *		skb socket level. If the sk_buff *skb* is allowed to pass (i.e.
 *		if the verdict eBPF program returns **SK_PASS**), redirect it
 *		to the socket referenced by *map* (of type
 *		**BPF_MAP_TYPE_SOCKHASH**) using hash *key*. Both ingress and
 *		egress interfaces can be used for redirection. The
 *		**BPF_F_INGRESS** value in *flags* is used to make the
 *		distinction (ingress path is selected if the flag is present,
 *		egress otherwise). This is the only flag supported for now.
 *	Return
 *		**SK_PASS** on success, or **SK_DROP** on error.
 *
 * long bpf_lwt_push_encap(struct sk_buff *skb, u32 type, void *hdr, u32 len)
 *	Description
 *		Encapsulate the packet associated to *skb* within a Layer 3
 *		protocol header. This header is provided in the buffer at
 *		address *hdr*, with *len* its size in bytes. *type* indicates
 *		the protocol of the header and can be one of:
 *
 *		**BPF_LWT_ENCAP_SEG6**
 *			IPv6 encapsulation with Segment Routing Header
 *			(**struct ipv6_sr_hdr**). *hdr* only contains the SRH,
 *			the IPv6 header is computed by the kernel.
 *		**BPF_LWT_ENCAP_SEG6_INLINE**
 *			Only works if *skb* contains an IPv6 packet. Insert a
 *			Segment Routing Header (**struct ipv6_sr_hdr**) inside
 *			the IPv6 header.
 *		**BPF_LWT_ENCAP_IP**
 *			IP encapsulation (GRE/GUE/IPIP/etc). The outer header
 *			must be IPv4 or IPv6, followed by zero or more
 *			additional headers, up to **LWT_BPF_MAX_HEADROOM**
 *			total bytes in all prepended headers. Please note that
 *			if **skb_is_gso**\ (*skb*) is true, no more than two
 *			headers can be prepended, and the inner header, if
 *			present, should be either GRE or UDP/GUE.
 *
 *		**BPF_LWT_ENCAP_SEG6**\ \* types can be called by BPF programs
 *		of type **BPF_PROG_TYPE_LWT_IN**; **BPF_LWT_ENCAP_IP** type can
 *		be called by bpf programs of types **BPF_PROG_TYPE_LWT_IN** and
 *		**BPF_PROG_TYPE_LWT_XMIT**.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 *	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_lwt_seg6_store_bytes(struct sk_buff *skb, u32 offset, const void *from, u32 len)
 *	Description
 *		Store *len* bytes from address *from* into the packet
 *		associated to *skb*, at *offset*. Only the flags, tag and TLVs
 *		inside the outermost IPv6 Segment Routing Header can be
 *		modified through this helper.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 *	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_lwt_seg6_adjust_srh(struct sk_buff *skb, u32 offset, s32 delta)
 *	Description
 *		Adjust the size allocated to TLVs in the outermost IPv6
 *		Segment Routing Header contained in the packet associated to
 *		*skb*, at position *offset* by *delta* bytes. Only offsets
 *		after the segments are accepted. *delta* can be as well
 *		positive (growing) as negative (shrinking).
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 *	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_lwt_seg6_action(struct sk_buff *skb, u32 action, void *param, u32 param_len)
 *	Description
 *		Apply an IPv6 Segment Routing action of type *action* to the
 *		packet associated to *skb*. Each action takes a parameter
 *		contained at address *param*, and of length *param_len* bytes.
 *		*action* can be one of:
 *
 *		**SEG6_LOCAL_ACTION_END_X**
 *			End.X action: Endpoint with Layer-3 cross-connect.
 *			Type of *param*: **struct in6_addr**.
 *		**SEG6_LOCAL_ACTION_END_T**
 *			End.T action: Endpoint with specific IPv6 table lookup.
 *			Type of *param*: **int**.
 *		**SEG6_LOCAL_ACTION_END_B6**
 *			End.B6 action: Endpoint bound to an SRv6 policy.
 *			Type of *param*: **struct ipv6_sr_hdr**.
 *		**SEG6_LOCAL_ACTION_END_B6_ENCAP**
 *			End.B6.Encap action: Endpoint bound to an SRv6
 *			encapsulation policy.
 *			Type of *param*: **struct ipv6_sr_hdr**.
 *
 * 		A call to this helper is susceptible to change the underlying
 * 		packet buffer. Therefore, at load time, all checks on pointers
 * 		previously done by the verifier are invalidated and must be
 * 		performed again, if the helper is used in combination with
 * 		direct packet access.
 *	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_rc_repeat(void *ctx)
 *	Description
 *		This helper is used in programs implementing IR decoding, to
 *		report a successfully decoded repeat key message. This delays
 *		the generation of a key up event for previously generated
 *		key down event.
 *
 *		Some IR protocols like NEC have a special IR message for
 *		repeating last button, for when a button is held down.
 *
 *		The *ctx* should point to the lirc sample as passed into
 *		the program.
 *
 *		This helper is only available is the kernel was compiled with
 *		the **CONFIG_BPF_LIRC_MODE2** configuration option set to
 *		"**y**".
 *	Return
 *		0
 *
 * long bpf_rc_keydown(void *ctx, u32 protocol, u64 scancode, u32 toggle)
 *	Description
 *		This helper is used in programs implementing IR decoding, to
 *		report a successfully decoded key press with *scancode*,
 *		*toggle* value in the given *protocol*. The scancode will be
 *		translated to a keycode using the rc keymap, and reported as
 *		an input key down event. After a period a key up event is
 *		generated. This period can be extended by calling either
 *		**bpf_rc_keydown**\ () again with the same values, or calling
 *		**bpf_rc_repeat**\ ().
 *
 *		Some protocols include a toggle bit, in case the button was
 *		released and pressed again between consecutive scancodes.
 *
 *		The *ctx* should point to the lirc sample as passed into
 *		the program.
 *
 *		The *protocol* is the decoded protocol number (see
 *		**enum rc_proto** for some predefined values).
 *
 *		This helper is only available is the kernel was compiled with
 *		the **CONFIG_BPF_LIRC_MODE2** configuration option set to
 *		"**y**".
 *	Return
 *		0
 *
 * u64 bpf_skb_cgroup_id(struct sk_buff *skb)
 * 	Description
 * 		Return the cgroup v2 id of the socket associated with the *skb*.
 * 		This is roughly similar to the **bpf_get_cgroup_classid**\ ()
 * 		helper for cgroup v1 by providing a tag resp. identifier that
 * 		can be matched on or used for map lookups e.g. to implement
 * 		policy. The cgroup v2 id of a given path in the hierarchy is
 * 		exposed in user space through the f_handle API in order to get
 * 		to the same 64-bit id.
 *
 * 		This helper can be used on TC egress path, but not on ingress,
 * 		and is available only if the kernel was compiled with the
 * 		**CONFIG_SOCK_CGROUP_DATA** configuration option.
 * 	Return
 * 		The id is returned or 0 in case the id could not be retrieved.
 *
 * u64 bpf_get_current_cgroup_id(void)
 * 	Description
 * 		Get the current cgroup id based on the cgroup within which
 * 		the current task is running.
 * 	Return
 * 		A 64-bit integer containing the current cgroup id based
 * 		on the cgroup within which the current task is running.
 *
 * void *bpf_get_local_storage(void *map, u64 flags)
 *	Description
 *		Get the pointer to the local storage area.
 *		The type and the size of the local storage is defined
 *		by the *map* argument.
 *		The *flags* meaning is specific for each map type,
 *		and has to be 0 for cgroup local storage.
 *
 *		Depending on the BPF program type, a local storage area
 *		can be shared between multiple instances of the BPF program,
 *		running simultaneously.
 *
 *		A user should care about the synchronization by himself.
 *		For example, by using the **BPF_ATOMIC** instructions to alter
 *		the shared data.
 *	Return
 *		A pointer to the local storage area.
 *
 * long bpf_sk_select_reuseport(struct sk_reuseport_md *reuse, struct bpf_map *map, void *key, u64 flags)
 *	Description
 *		Select a **SO_REUSEPORT** socket from a
 *		**BPF_MAP_TYPE_REUSEPORT_SOCKARRAY** *map*.
 *		It checks the selected socket is matching the incoming
 *		request in the socket buffer.
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * u64 bpf_skb_ancestor_cgroup_id(struct sk_buff *skb, int ancestor_level)
 *	Description
 *		Return id of cgroup v2 that is ancestor of cgroup associated
 *		with the *skb* at the *ancestor_level*.  The root cgroup is at
 *		*ancestor_level* zero and each step down the hierarchy
 *		increments the level. If *ancestor_level* == level of cgroup
 *		associated with *skb*, then return value will be same as that
 *		of **bpf_skb_cgroup_id**\ ().
 *
 *		The helper is useful to implement policies based on cgroups
 *		that are upper in hierarchy than immediate cgroup associated
 *		with *skb*.
 *
 *		The format of returned id and helper limitations are same as in
 *		**bpf_skb_cgroup_id**\ ().
 *	Return
 *		The id is returned or 0 in case the id could not be retrieved.
 *
 * struct bpf_sock *bpf_sk_lookup_tcp(void *ctx, struct bpf_sock_tuple *tuple, u32 tuple_size, u64 netns, u64 flags)
 *	Description
 *		Look for TCP socket matching *tuple*, optionally in a child
 *		network namespace *netns*. The return value must be checked,
 *		and if non-**NULL**, released via **bpf_sk_release**\ ().
 *
 *		The *ctx* should point to the context of the program, such as
 *		the skb or socket (depending on the hook in use). This is used
 *		to determine the base network namespace for the lookup.
 *
 *		*tuple_size* must be one of:
 *
 *		**sizeof**\ (*tuple*\ **->ipv4**)
 *			Look for an IPv4 socket.
 *		**sizeof**\ (*tuple*\ **->ipv6**)
 *			Look for an IPv6 socket.
 *
 *		If the *netns* is a negative signed 32-bit integer, then the
 *		socket lookup table in the netns associated with the *ctx*
 *		will be used. For the TC hooks, this is the netns of the device
 *		in the skb. For socket hooks, this is the netns of the socket.
 *		If *netns* is any other signed 32-bit value greater than or
 *		equal to zero then it specifies the ID of the netns relative to
 *		the netns associated with the *ctx*. *netns* values beyond the
 *		range of 32-bit integers are reserved for future use.
 *
 *		All values for *flags* are reserved for future usage, and must
 *		be left at zero.
 *
 *		This helper is available only if the kernel was compiled with
 *		**CONFIG_NET** configuration option.
 *	Return
 *		Pointer to **struct bpf_sock**, or **NULL** in case of failure.
 *		For sockets with reuseport option, the **struct bpf_sock**
 *		result is from *reuse*\ **->socks**\ [] using the hash of the
 *		tuple.
 *
 * struct bpf_sock *bpf_sk_lookup_udp(void *ctx, struct bpf_sock_tuple *tuple, u32 tuple_size, u64 netns, u64 flags)
 *	Description
 *		Look for UDP socket matching *tuple*, optionally in a child
 *		network namespace *netns*. The return value must be checked,
 *		and if non-**NULL**, released via **bpf_sk_release**\ ().
 *
 *		The *ctx* should point to the context of the program, such as
 *		the skb or socket (depending on the hook in use). This is used
 *		to determine the base network namespace for the lookup.
 *
 *		*tuple_size* must be one of:
 *
 *		**sizeof**\ (*tuple*\ **->ipv4**)
 *			Look for an IPv4 socket.
 *		**sizeof**\ (*tuple*\ **->ipv6**)
 *			Look for an IPv6 socket.
 *
 *		If the *netns* is a negative signed 32-bit integer, then the
 *		socket lookup table in the netns associated with the *ctx*
 *		will be used. For the TC hooks, this is the netns of the device
 *		in the skb. For socket hooks, this is the netns of the socket.
 *		If *netns* is any other signed 32-bit value greater than or
 *		equal to zero then it specifies the ID of the netns relative to
 *		the netns associated with the *ctx*. *netns* values beyond the
 *		range of 32-bit integers are reserved for future use.
 *
 *		All values for *flags* are reserved for future usage, and must
 *		be left at zero.
 *
 *		This helper is available only if the kernel was compiled with
 *		**CONFIG_NET** configuration option.
 *	Return
 *		Pointer to **struct bpf_sock**, or **NULL** in case of failure.
 *		For sockets with reuseport option, the **struct bpf_sock**
 *		result is from *reuse*\ **->socks**\ [] using the hash of the
 *		tuple.
 *
 * long bpf_sk_release(void *sock)
 *	Description
 *		Release the reference held by *sock*. *sock* must be a
 *		non-**NULL** pointer that was returned from
 *		**bpf_sk_lookup_xxx**\ ().
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * long bpf_map_push_elem(struct bpf_map *map, const void *value, u64 flags)
 * 	Description
 * 		Push an element *value* in *map*. *flags* is one of:
 *
 * 		**BPF_EXIST**
 * 			If the queue/stack is full, the oldest element is
 * 			removed to make room for this.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_map_pop_elem(struct bpf_map *map, void *value)
 * 	Description
 * 		Pop an element from *map*.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_map_peek_elem(struct bpf_map *map, void *value)
 * 	Description
 * 		Get an element from *map* without removing it.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_msg_push_data(struct sk_msg_buff *msg, u32 start, u32 len, u64 flags)
 *	Description
 *		For socket policies, insert *len* bytes into *msg* at offset
 *		*start*.
 *
 *		If a program of type **BPF_PROG_TYPE_SK_MSG** is run on a
 *		*msg* it may want to insert metadata or options into the *msg*.
 *		This can later be read and used by any of the lower layer BPF
 *		hooks.
 *
 *		This helper may fail if under memory pressure (a malloc
 *		fails) in these cases BPF programs will get an appropriate
 *		error and BPF programs will need to handle them.
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * long bpf_msg_pop_data(struct sk_msg_buff *msg, u32 start, u32 len, u64 flags)
 *	Description
 *		Will remove *len* bytes from a *msg* starting at byte *start*.
 *		This may result in **ENOMEM** errors under certain situations if
 *		an allocation and copy are required due to a full ring buffer.
 *		However, the helper will try to avoid doing the allocation
 *		if possible. Other errors can occur if input parameters are
 *		invalid either due to *start* byte not being valid part of *msg*
 *		payload and/or *pop* value being to large.
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * long bpf_rc_pointer_rel(void *ctx, s32 rel_x, s32 rel_y)
 *	Description
 *		This helper is used in programs implementing IR decoding, to
 *		report a successfully decoded pointer movement.
 *
 *		The *ctx* should point to the lirc sample as passed into
 *		the program.
 *
 *		This helper is only available is the kernel was compiled with
 *		the **CONFIG_BPF_LIRC_MODE2** configuration option set to
 *		"**y**".
 *	Return
 *		0
 *
 * long bpf_spin_lock(struct bpf_spin_lock *lock)
 *	Description
 *		Acquire a spinlock represented by the pointer *lock*, which is
 *		stored as part of a value of a map. Taking the lock allows to
 *		safely update the rest of the fields in that value. The
 *		spinlock can (and must) later be released with a call to
 *		**bpf_spin_unlock**\ (\ *lock*\ ).
 *
 *		Spinlocks in BPF programs come with a number of restrictions
 *		and constraints:
 *
 *		* **bpf_spin_lock** objects are only allowed inside maps of
 *		  types **BPF_MAP_TYPE_HASH** and **BPF_MAP_TYPE_ARRAY** (this
 *		  list could be extended in the future).
 *		* BTF description of the map is mandatory.
 *		* The BPF program can take ONE lock at a time, since taking two
 *		  or more could cause dead locks.
 *		* Only one **struct bpf_spin_lock** is allowed per map element.
 *		* When the lock is taken, calls (either BPF to BPF or helpers)
 *		  are not allowed.
 *		* The **BPF_LD_ABS** and **BPF_LD_IND** instructions are not
 *		  allowed inside a spinlock-ed region.
 *		* The BPF program MUST call **bpf_spin_unlock**\ () to release
 *		  the lock, on all execution paths, before it returns.
 *		* The BPF program can access **struct bpf_spin_lock** only via
 *		  the **bpf_spin_lock**\ () and **bpf_spin_unlock**\ ()
 *		  helpers. Loading or storing data into the **struct
 *		  bpf_spin_lock** *lock*\ **;** field of a map is not allowed.
 *		* To use the **bpf_spin_lock**\ () helper, the BTF description
 *		  of the map value must be a struct and have **struct
 *		  bpf_spin_lock** *anyname*\ **;** field at the top level.
 *		  Nested lock inside another struct is not allowed.
 *		* The **struct bpf_spin_lock** *lock* field in a map value must
 *		  be aligned on a multiple of 4 bytes in that value.
 *		* Syscall with command **BPF_MAP_LOOKUP_ELEM** does not copy
 *		  the **bpf_spin_lock** field to user space.
 *		* Syscall with command **BPF_MAP_UPDATE_ELEM**, or update from
 *		  a BPF program, do not update the **bpf_spin_lock** field.
 *		* **bpf_spin_lock** cannot be on the stack or inside a
 *		  networking packet (it can only be inside of a map values).
 *		* **bpf_spin_lock** is available to root only.
 *		* Tracing programs and socket filter programs cannot use
 *		  **bpf_spin_lock**\ () due to insufficient preemption checks
 *		  (but this may change in the future).
 *		* **bpf_spin_lock** is not allowed in inner maps of map-in-map.
 *	Return
 *		0
 *
 * long bpf_spin_unlock(struct bpf_spin_lock *lock)
 *	Description
 *		Release the *lock* previously locked by a call to
 *		**bpf_spin_lock**\ (\ *lock*\ ).
 *	Return
 *		0
 *
 * struct bpf_sock *bpf_sk_fullsock(struct bpf_sock *sk)
 *	Description
 *		This helper gets a **struct bpf_sock** pointer such
 *		that all the fields in this **bpf_sock** can be accessed.
 *	Return
 *		A **struct bpf_sock** pointer on success, or **NULL** in
 *		case of failure.
 *
 * struct bpf_tcp_sock *bpf_tcp_sock(struct bpf_sock *sk)
 *	Description
 *		This helper gets a **struct bpf_tcp_sock** pointer from a
 *		**struct bpf_sock** pointer.
 *	Return
 *		A **struct bpf_tcp_sock** pointer on success, or **NULL** in
 *		case of failure.
 *
 * long bpf_skb_ecn_set_ce(struct sk_buff *skb)
 *	Description
 *		Set ECN (Explicit Congestion Notification) field of IP header
 *		to **CE** (Congestion Encountered) if current value is **ECT**
 *		(ECN Capable Transport). Otherwise, do nothing. Works with IPv6
 *		and IPv4.
 *	Return
 *		1 if the **CE** flag is set (either by the current helper call
 *		or because it was already present), 0 if it is not set.
 *
 * struct bpf_sock *bpf_get_listener_sock(struct bpf_sock *sk)
 *	Description
 *		Return a **struct bpf_sock** pointer in **TCP_LISTEN** state.
 *		**bpf_sk_release**\ () is unnecessary and not allowed.
 *	Return
 *		A **struct bpf_sock** pointer on success, or **NULL** in
 *		case of failure.
 *
 * struct bpf_sock *bpf_skc_lookup_tcp(void *ctx, struct bpf_sock_tuple *tuple, u32 tuple_size, u64 netns, u64 flags)
 *	Description
 *		Look for TCP socket matching *tuple*, optionally in a child
 *		network namespace *netns*. The return value must be checked,
 *		and if non-**NULL**, released via **bpf_sk_release**\ ().
 *
 *		This function is identical to **bpf_sk_lookup_tcp**\ (), except
 *		that it also returns timewait or request sockets. Use
 *		**bpf_sk_fullsock**\ () or **bpf_tcp_sock**\ () to access the
 *		full structure.
 *
 *		This helper is available only if the kernel was compiled with
 *		**CONFIG_NET** configuration option.
 *	Return
 *		Pointer to **struct bpf_sock**, or **NULL** in case of failure.
 *		For sockets with reuseport option, the **struct bpf_sock**
 *		result is from *reuse*\ **->socks**\ [] using the hash of the
 *		tuple.
 *
 * long bpf_tcp_check_syncookie(void *sk, void *iph, u32 iph_len, struct tcphdr *th, u32 th_len)
 * 	Description
 * 		Check whether *iph* and *th* contain a valid SYN cookie ACK for
 * 		the listening socket in *sk*.
 *
 * 		*iph* points to the start of the IPv4 or IPv6 header, while
 * 		*iph_len* contains **sizeof**\ (**struct iphdr**) or
 * 		**sizeof**\ (**struct ipv6hdr**).
 *
 * 		*th* points to the start of the TCP header, while *th_len*
 *		contains the length of the TCP header (at least
 *		**sizeof**\ (**struct tcphdr**)).
 * 	Return
 * 		0 if *iph* and *th* are a valid SYN cookie ACK, or a negative
 * 		error otherwise.
 *
 * long bpf_sysctl_get_name(struct bpf_sysctl *ctx, char *buf, size_t buf_len, u64 flags)
 *	Description
 *		Get name of sysctl in /proc/sys/ and copy it into provided by
 *		program buffer *buf* of size *buf_len*.
 *
 *		The buffer is always NUL terminated, unless it's zero-sized.
 *
 *		If *flags* is zero, full name (e.g. "net/ipv4/tcp_mem") is
 *		copied. Use **BPF_F_SYSCTL_BASE_NAME** flag to copy base name
 *		only (e.g. "tcp_mem").
 *	Return
 *		Number of character copied (not including the trailing NUL).
 *
 *		**-E2BIG** if the buffer wasn't big enough (*buf* will contain
 *		truncated name in this case).
 *
 * long bpf_sysctl_get_current_value(struct bpf_sysctl *ctx, char *buf, size_t buf_len)
 *	Description
 *		Get current value of sysctl as it is presented in /proc/sys
 *		(incl. newline, etc), and copy it as a string into provided
 *		by program buffer *buf* of size *buf_len*.
 *
 *		The whole value is copied, no matter what file position user
 *		space issued e.g. sys_read at.
 *
 *		The buffer is always NUL terminated, unless it's zero-sized.
 *	Return
 *		Number of character copied (not including the trailing NUL).
 *
 *		**-E2BIG** if the buffer wasn't big enough (*buf* will contain
 *		truncated name in this case).
 *
 *		**-EINVAL** if current value was unavailable, e.g. because
 *		sysctl is uninitialized and read returns -EIO for it.
 *
 * long bpf_sysctl_get_new_value(struct bpf_sysctl *ctx, char *buf, size_t buf_len)
 *	Description
 *		Get new value being written by user space to sysctl (before
 *		the actual write happens) and copy it as a string into
 *		provided by program buffer *buf* of size *buf_len*.
 *
 *		User space may write new value at file position > 0.
 *
 *		The buffer is always NUL terminated, unless it's zero-sized.
 *	Return
 *		Number of character copied (not including the trailing NUL).
 *
 *		**-E2BIG** if the buffer wasn't big enough (*buf* will contain
 *		truncated name in this case).
 *
 *		**-EINVAL** if sysctl is being read.
 *
 * long bpf_sysctl_set_new_value(struct bpf_sysctl *ctx, const char *buf, size_t buf_len)
 *	Description
 *		Override new value being written by user space to sysctl with
 *		value provided by program in buffer *buf* of size *buf_len*.
 *
 *		*buf* should contain a string in same form as provided by user
 *		space on sysctl write.
 *
 *		User space may write new value at file position > 0. To override
 *		the whole sysctl value file position should be set to zero.
 *	Return
 *		0 on success.
 *
 *		**-E2BIG** if the *buf_len* is too big.
 *
 *		**-EINVAL** if sysctl is being read.
 *
 * long bpf_strtol(const char *buf, size_t buf_len, u64 flags, long *res)
 *	Description
 *		Convert the initial part of the string from buffer *buf* of
 *		size *buf_len* to a long integer according to the given base
 *		and save the result in *res*.
 *
 *		The string may begin with an arbitrary amount of white space
 *		(as determined by **isspace**\ (3)) followed by a single
 *		optional '**-**' sign.
 *
 *		Five least significant bits of *flags* encode base, other bits
 *		are currently unused.
 *
 *		Base must be either 8, 10, 16 or 0 to detect it automatically
 *		similar to user space **strtol**\ (3).
 *	Return
 *		Number of characters consumed on success. Must be positive but
 *		no more than *buf_len*.
 *
 *		**-EINVAL** if no valid digits were found or unsupported base
 *		was provided.
 *
 *		**-ERANGE** if resulting value was out of range.
 *
 * long bpf_strtoul(const char *buf, size_t buf_len, u64 flags, unsigned long *res)
 *	Description
 *		Convert the initial part of the string from buffer *buf* of
 *		size *buf_len* to an unsigned long integer according to the
 *		given base and save the result in *res*.
 *
 *		The string may begin with an arbitrary amount of white space
 *		(as determined by **isspace**\ (3)).
 *
 *		Five least significant bits of *flags* encode base, other bits
 *		are currently unused.
 *
 *		Base must be either 8, 10, 16 or 0 to detect it automatically
 *		similar to user space **strtoul**\ (3).
 *	Return
 *		Number of characters consumed on success. Must be positive but
 *		no more than *buf_len*.
 *
 *		**-EINVAL** if no valid digits were found or unsupported base
 *		was provided.
 *
 *		**-ERANGE** if resulting value was out of range.
 *
 * void *bpf_sk_storage_get(struct bpf_map *map, void *sk, void *value, u64 flags)
 *	Description
 *		Get a bpf-local-storage from a *sk*.
 *
 *		Logically, it could be thought of getting the value from
 *		a *map* with *sk* as the **key**.  From this
 *		perspective,  the usage is not much different from
 *		**bpf_map_lookup_elem**\ (*map*, **&**\ *sk*) except this
 *		helper enforces the key must be a full socket and the map must
 *		be a **BPF_MAP_TYPE_SK_STORAGE** also.
 *
 *		Underneath, the value is stored locally at *sk* instead of
 *		the *map*.  The *map* is used as the bpf-local-storage
 *		"type". The bpf-local-storage "type" (i.e. the *map*) is
 *		searched against all bpf-local-storages residing at *sk*.
 *
 *		*sk* is a kernel **struct sock** pointer for LSM program.
 *		*sk* is a **struct bpf_sock** pointer for other program types.
 *
 *		An optional *flags* (**BPF_SK_STORAGE_GET_F_CREATE**) can be
 *		used such that a new bpf-local-storage will be
 *		created if one does not exist.  *value* can be used
 *		together with **BPF_SK_STORAGE_GET_F_CREATE** to specify
 *		the initial value of a bpf-local-storage.  If *value* is
 *		**NULL**, the new bpf-local-storage will be zero initialized.
 *	Return
 *		A bpf-local-storage pointer is returned on success.
 *
 *		**NULL** if not found or there was an error in adding
 *		a new bpf-local-storage.
 *
 * long bpf_sk_storage_delete(struct bpf_map *map, void *sk)
 *	Description
 *		Delete a bpf-local-storage from a *sk*.
 *	Return
 *		0 on success.
 *
 *		**-ENOENT** if the bpf-local-storage cannot be found.
 *		**-EINVAL** if sk is not a fullsock (e.g. a request_sock).
 *
 * long bpf_send_signal(u32 sig)
 *	Description
 *		Send signal *sig* to the process of the current task.
 *		The signal may be delivered to any of this process's threads.
 *	Return
 *		0 on success or successfully queued.
 *
 *		**-EBUSY** if work queue under nmi is full.
 *
 *		**-EINVAL** if *sig* is invalid.
 *
 *		**-EPERM** if no permission to send the *sig*.
 *
 *		**-EAGAIN** if bpf program can try again.
 *
 * s64 bpf_tcp_gen_syncookie(void *sk, void *iph, u32 iph_len, struct tcphdr *th, u32 th_len)
 *	Description
 *		Try to issue a SYN cookie for the packet with corresponding
 *		IP/TCP headers, *iph* and *th*, on the listening socket in *sk*.
 *
 *		*iph* points to the start of the IPv4 or IPv6 header, while
 *		*iph_len* contains **sizeof**\ (**struct iphdr**) or
 *		**sizeof**\ (**struct ipv6hdr**).
 *
 *		*th* points to the start of the TCP header, while *th_len*
 *		contains the length of the TCP header with options (at least
 *		**sizeof**\ (**struct tcphdr**)).
 *	Return
 *		On success, lower 32 bits hold the generated SYN cookie in
 *		followed by 16 bits which hold the MSS value for that cookie,
 *		and the top 16 bits are unused.
 *
 *		On failure, the returned value is one of the following:
 *
 *		**-EINVAL** SYN cookie cannot be issued due to error
 *
 *		**-ENOENT** SYN cookie should not be issued (no SYN flood)
 *
 *		**-EOPNOTSUPP** kernel configuration does not enable SYN cookies
 *
 *		**-EPROTONOSUPPORT** IP packet version is not 4 or 6
 *
 * long bpf_skb_output(void *ctx, struct bpf_map *map, u64 flags, void *data, u64 size)
 * 	Description
 * 		Write raw *data* blob into a special BPF perf event held by
 * 		*map* of type **BPF_MAP_TYPE_PERF_EVENT_ARRAY**. This perf
 * 		event must have the following attributes: **PERF_SAMPLE_RAW**
 * 		as **sample_type**, **PERF_TYPE_SOFTWARE** as **type**, and
 * 		**PERF_COUNT_SW_BPF_OUTPUT** as **config**.
 *
 * 		The *flags* are used to indicate the index in *map* for which
 * 		the value must be put, masked with **BPF_F_INDEX_MASK**.
 * 		Alternatively, *flags* can be set to **BPF_F_CURRENT_CPU**
 * 		to indicate that the index of the current CPU core should be
 * 		used.
 *
 * 		The value to write, of *size*, is passed through eBPF stack and
 * 		pointed by *data*.
 *
 * 		*ctx* is a pointer to in-kernel struct sk_buff.
 *
 * 		This helper is similar to **bpf_perf_event_output**\ () but
 * 		restricted to raw_tracepoint bpf programs.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_probe_read_user(void *dst, u32 size, const void *unsafe_ptr)
 * 	Description
 * 		Safely attempt to read *size* bytes from user space address
 * 		*unsafe_ptr* and store the data in *dst*.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_probe_read_kernel(void *dst, u32 size, const void *unsafe_ptr)
 * 	Description
 * 		Safely attempt to read *size* bytes from kernel space address
 * 		*unsafe_ptr* and store the data in *dst*.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_probe_read_user_str(void *dst, u32 size, const void *unsafe_ptr)
 * 	Description
 * 		Copy a NUL terminated string from an unsafe user address
 * 		*unsafe_ptr* to *dst*. The *size* should include the
 * 		terminating NUL byte. In case the string length is smaller than
 * 		*size*, the target is not padded with further NUL bytes. If the
 * 		string length is larger than *size*, just *size*-1 bytes are
 * 		copied and the last byte is set to NUL.
 *
 * 		On success, returns the number of bytes that were written,
 * 		including the terminal NUL. This makes this helper useful in
 * 		tracing programs for reading strings, and more importantly to
 * 		get its length at runtime. See the following snippet:
 *
 * 		::
 *
 * 			SEC("kprobe/sys_open")
 * 			void bpf_sys_open(struct pt_regs *ctx)
 * 			{
 * 			        char buf[PATHLEN]; // PATHLEN is defined to 256
 * 			        int res = bpf_probe_read_user_str(buf, sizeof(buf),
 * 				                                  ctx->di);
 *
 * 				// Consume buf, for example push it to
 * 				// userspace via bpf_perf_event_output(); we
 * 				// can use res (the string length) as event
 * 				// size, after checking its boundaries.
 * 			}
 *
 * 		In comparison, using **bpf_probe_read_user**\ () helper here
 * 		instead to read the string would require to estimate the length
 * 		at compile time, and would often result in copying more memory
 * 		than necessary.
 *
 * 		Another useful use case is when parsing individual process
 * 		arguments or individual environment variables navigating
 * 		*current*\ **->mm->arg_start** and *current*\
 * 		**->mm->env_start**: using this helper and the return value,
 * 		one can quickly iterate at the right offset of the memory area.
 * 	Return
 * 		On success, the strictly positive length of the output string,
 * 		including the trailing NUL character. On error, a negative
 * 		value.
 *
 * long bpf_probe_read_kernel_str(void *dst, u32 size, const void *unsafe_ptr)
 * 	Description
 * 		Copy a NUL terminated string from an unsafe kernel address *unsafe_ptr*
 * 		to *dst*. Same semantics as with **bpf_probe_read_user_str**\ () apply.
 * 	Return
 * 		On success, the strictly positive length of the string, including
 * 		the trailing NUL character. On error, a negative value.
 *
 * long bpf_tcp_send_ack(void *tp, u32 rcv_nxt)
 *	Description
 *		Send out a tcp-ack. *tp* is the in-kernel struct **tcp_sock**.
 *		*rcv_nxt* is the ack_seq to be sent out.
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * long bpf_send_signal_thread(u32 sig)
 *	Description
 *		Send signal *sig* to the thread corresponding to the current task.
 *	Return
 *		0 on success or successfully queued.
 *
 *		**-EBUSY** if work queue under nmi is full.
 *
 *		**-EINVAL** if *sig* is invalid.
 *
 *		**-EPERM** if no permission to send the *sig*.
 *
 *		**-EAGAIN** if bpf program can try again.
 *
 * u64 bpf_jiffies64(void)
 *	Description
 *		Obtain the 64bit jiffies
 *	Return
 *		The 64 bit jiffies
 *
 * long bpf_read_branch_records(struct bpf_perf_event_data *ctx, void *buf, u32 size, u64 flags)
 *	Description
 *		For an eBPF program attached to a perf event, retrieve the
 *		branch records (**struct perf_branch_entry**) associated to *ctx*
 *		and store it in the buffer pointed by *buf* up to size
 *		*size* bytes.
 *	Return
 *		On success, number of bytes written to *buf*. On error, a
 *		negative value.
 *
 *		The *flags* can be set to **BPF_F_GET_BRANCH_RECORDS_SIZE** to
 *		instead return the number of bytes required to store all the
 *		branch entries. If this flag is set, *buf* may be NULL.
 *
 *		**-EINVAL** if arguments invalid or **size** not a multiple
 *		of **sizeof**\ (**struct perf_branch_entry**\ ).
 *
 *		**-ENOENT** if architecture does not support branch records.
 *
 * long bpf_get_ns_current_pid_tgid(u64 dev, u64 ino, struct bpf_pidns_info *nsdata, u32 size)
 *	Description
 *		Returns 0 on success, values for *pid* and *tgid* as seen from the current
 *		*namespace* will be returned in *nsdata*.
 *	Return
 *		0 on success, or one of the following in case of failure:
 *
 *		**-EINVAL** if dev and inum supplied don't match dev_t and inode number
 *              with nsfs of current task, or if dev conversion to dev_t lost high bits.
 *
 *		**-ENOENT** if pidns does not exists for the current task.
 *
 * long bpf_xdp_output(void *ctx, struct bpf_map *map, u64 flags, void *data, u64 size)
 *	Description
 *		Write raw *data* blob into a special BPF perf event held by
 *		*map* of type **BPF_MAP_TYPE_PERF_EVENT_ARRAY**. This perf
 *		event must have the following attributes: **PERF_SAMPLE_RAW**
 *		as **sample_type**, **PERF_TYPE_SOFTWARE** as **type**, and
 *		**PERF_COUNT_SW_BPF_OUTPUT** as **config**.
 *
 *		The *flags* are used to indicate the index in *map* for which
 *		the value must be put, masked with **BPF_F_INDEX_MASK**.
 *		Alternatively, *flags* can be set to **BPF_F_CURRENT_CPU**
 *		to indicate that the index of the current CPU core should be
 *		used.
 *
 *		The value to write, of *size*, is passed through eBPF stack and
 *		pointed by *data*.
 *
 *		*ctx* is a pointer to in-kernel struct xdp_buff.
 *
 *		This helper is similar to **bpf_perf_eventoutput**\ () but
 *		restricted to raw_tracepoint bpf programs.
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * u64 bpf_get_netns_cookie(void *ctx)
 * 	Description
 * 		Retrieve the cookie (generated by the kernel) of the network
 * 		namespace the input *ctx* is associated with. The network
 * 		namespace cookie remains stable for its lifetime and provides
 * 		a global identifier that can be assumed unique. If *ctx* is
 * 		NULL, then the helper returns the cookie for the initial
 * 		network namespace. The cookie itself is very similar to that
 * 		of **bpf_get_socket_cookie**\ () helper, but for network
 * 		namespaces instead of sockets.
 * 	Return
 * 		A 8-byte long opaque number.
 *
 * u64 bpf_get_current_ancestor_cgroup_id(int ancestor_level)
 * 	Description
 * 		Return id of cgroup v2 that is ancestor of the cgroup associated
 * 		with the current task at the *ancestor_level*. The root cgroup
 * 		is at *ancestor_level* zero and each step down the hierarchy
 * 		increments the level. If *ancestor_level* == level of cgroup
 * 		associated with the current task, then return value will be the
 * 		same as that of **bpf_get_current_cgroup_id**\ ().
 *
 * 		The helper is useful to implement policies based on cgroups
 * 		that are upper in hierarchy than immediate cgroup associated
 * 		with the current task.
 *
 * 		The format of returned id and helper limitations are same as in
 * 		**bpf_get_current_cgroup_id**\ ().
 * 	Return
 * 		The id is returned or 0 in case the id could not be retrieved.
 *
 * long bpf_sk_assign(struct sk_buff *skb, void *sk, u64 flags)
 *	Description
 *		Helper is overloaded depending on BPF program type. This
 *		description applies to **BPF_PROG_TYPE_SCHED_CLS** and
 *		**BPF_PROG_TYPE_SCHED_ACT** programs.
 *
 *		Assign the *sk* to the *skb*. When combined with appropriate
 *		routing configuration to receive the packet towards the socket,
 *		will cause *skb* to be delivered to the specified socket.
 *		Subsequent redirection of *skb* via  **bpf_redirect**\ (),
 *		**bpf_clone_redirect**\ () or other methods outside of BPF may
 *		interfere with successful delivery to the socket.
 *
 *		This operation is only valid from TC ingress path.
 *
 *		The *flags* argument must be zero.
 *	Return
 *		0 on success, or a negative error in case of failure:
 *
 *		**-EINVAL** if specified *flags* are not supported.
 *
 *		**-ENOENT** if the socket is unavailable for assignment.
 *
 *		**-ENETUNREACH** if the socket is unreachable (wrong netns).
 *
 *		**-EOPNOTSUPP** if the operation is not supported, for example
 *		a call from outside of TC ingress.
 *
 * long bpf_sk_assign(struct bpf_sk_lookup *ctx, struct bpf_sock *sk, u64 flags)
 *	Description
 *		Helper is overloaded depending on BPF program type. This
 *		description applies to **BPF_PROG_TYPE_SK_LOOKUP** programs.
 *
 *		Select the *sk* as a result of a socket lookup.
 *
 *		For the operation to succeed passed socket must be compatible
 *		with the packet description provided by the *ctx* object.
 *
 *		L4 protocol (**IPPROTO_TCP** or **IPPROTO_UDP**) must
 *		be an exact match. While IP family (**AF_INET** or
 *		**AF_INET6**) must be compatible, that is IPv6 sockets
 *		that are not v6-only can be selected for IPv4 packets.
 *
 *		Only TCP listeners and UDP unconnected sockets can be
 *		selected. *sk* can also be NULL to reset any previous
 *		selection.
 *
 *		*flags* argument can combination of following values:
 *
 *		* **BPF_SK_LOOKUP_F_REPLACE** to override the previous
 *		  socket selection, potentially done by a BPF program
 *		  that ran before us.
 *
 *		* **BPF_SK_LOOKUP_F_NO_REUSEPORT** to skip
 *		  load-balancing within reuseport group for the socket
 *		  being selected.
 *
 *		On success *ctx->sk* will point to the selected socket.
 *
 *	Return
 *		0 on success, or a negative errno in case of failure.
 *
 *		* **-EAFNOSUPPORT** if socket family (*sk->family*) is
 *		  not compatible with packet family (*ctx->family*).
 *
 *		* **-EEXIST** if socket has been already selected,
 *		  potentially by another program, and
 *		  **BPF_SK_LOOKUP_F_REPLACE** flag was not specified.
 *
 *		* **-EINVAL** if unsupported flags were specified.
 *
 *		* **-EPROTOTYPE** if socket L4 protocol
 *		  (*sk->protocol*) doesn't match packet protocol
 *		  (*ctx->protocol*).
 *
 *		* **-ESOCKTNOSUPPORT** if socket is not in allowed
 *		  state (TCP listening or UDP unconnected).
 *
 * u64 bpf_ktime_get_boot_ns(void)
 * 	Description
 * 		Return the time elapsed since system boot, in nanoseconds.
 * 		Does include the time the system was suspended.
 * 		See: **clock_gettime**\ (**CLOCK_BOOTTIME**)
 * 	Return
 * 		Current *ktime*.
 *
 * long bpf_seq_printf(struct seq_file *m, const char *fmt, u32 fmt_size, const void *data, u32 data_len)
 * 	Description
 * 		**bpf_seq_printf**\ () uses seq_file **seq_printf**\ () to print
 * 		out the format string.
 * 		The *m* represents the seq_file. The *fmt* and *fmt_size* are for
 * 		the format string itself. The *data* and *data_len* are format string
 * 		arguments. The *data* are a **u64** array and corresponding format string
 * 		values are stored in the array. For strings and pointers where pointees
 * 		are accessed, only the pointer values are stored in the *data* array.
 * 		The *data_len* is the size of *data* in bytes - must be a multiple of 8.
 *
 *		Formats **%s**, **%p{i,I}{4,6}** requires to read kernel memory.
 *		Reading kernel memory may fail due to either invalid address or
 *		valid address but requiring a major memory fault. If reading kernel memory
 *		fails, the string for **%s** will be an empty string, and the ip
 *		address for **%p{i,I}{4,6}** will be 0. Not returning error to
 *		bpf program is consistent with what **bpf_trace_printk**\ () does for now.
 * 	Return
 * 		0 on success, or a negative error in case of failure:
 *
 *		**-EBUSY** if per-CPU memory copy buffer is busy, can try again
 *		by returning 1 from bpf program.
 *
 *		**-EINVAL** if arguments are invalid, or if *fmt* is invalid/unsupported.
 *
 *		**-E2BIG** if *fmt* contains too many format specifiers.
 *
 *		**-EOVERFLOW** if an overflow happened: The same object will be tried again.
 *
 * long bpf_seq_write(struct seq_file *m, const void *data, u32 len)
 * 	Description
 * 		**bpf_seq_write**\ () uses seq_file **seq_write**\ () to write the data.
 * 		The *m* represents the seq_file. The *data* and *len* represent the
 * 		data to write in bytes.
 * 	Return
 * 		0 on success, or a negative error in case of failure:
 *
 *		**-EOVERFLOW** if an overflow happened: The same object will be tried again.
 *
 * u64 bpf_sk_cgroup_id(void *sk)
 *	Description
 *		Return the cgroup v2 id of the socket *sk*.
 *
 *		*sk* must be a non-**NULL** pointer to a socket, e.g. one
 *		returned from **bpf_sk_lookup_xxx**\ (),
 *		**bpf_sk_fullsock**\ (), etc. The format of returned id is
 *		same as in **bpf_skb_cgroup_id**\ ().
 *
 *		This helper is available only if the kernel was compiled with
 *		the **CONFIG_SOCK_CGROUP_DATA** configuration option.
 *	Return
 *		The id is returned or 0 in case the id could not be retrieved.
 *
 * u64 bpf_sk_ancestor_cgroup_id(void *sk, int ancestor_level)
 *	Description
 *		Return id of cgroup v2 that is ancestor of cgroup associated
 *		with the *sk* at the *ancestor_level*.  The root cgroup is at
 *		*ancestor_level* zero and each step down the hierarchy
 *		increments the level. If *ancestor_level* == level of cgroup
 *		associated with *sk*, then return value will be same as that
 *		of **bpf_sk_cgroup_id**\ ().
 *
 *		The helper is useful to implement policies based on cgroups
 *		that are upper in hierarchy than immediate cgroup associated
 *		with *sk*.
 *
 *		The format of returned id and helper limitations are same as in
 *		**bpf_sk_cgroup_id**\ ().
 *	Return
 *		The id is returned or 0 in case the id could not be retrieved.
 *
 * long bpf_ringbuf_output(void *ringbuf, void *data, u64 size, u64 flags)
 * 	Description
 * 		Copy *size* bytes from *data* into a ring buffer *ringbuf*.
 * 		If **BPF_RB_NO_WAKEUP** is specified in *flags*, no notification
 * 		of new data availability is sent.
 * 		If **BPF_RB_FORCE_WAKEUP** is specified in *flags*, notification
 * 		of new data availability is sent unconditionally.
 * 		If **0** is specified in *flags*, an adaptive notification
 * 		of new data availability is sent.
 *
 * 		An adaptive notification is a notification sent whenever the user-space
 * 		process has caught up and consumed all available payloads. In case the user-space
 * 		process is still processing a previous payload, then no notification is needed
 * 		as it will process the newly added payload automatically.
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * void *bpf_ringbuf_reserve(void *ringbuf, u64 size, u64 flags)
 * 	Description
 * 		Reserve *size* bytes of payload in a ring buffer *ringbuf*.
 * 		*flags* must be 0.
 * 	Return
 * 		Valid pointer with *size* bytes of memory available; NULL,
 * 		otherwise.
 *
 * void bpf_ringbuf_submit(void *data, u64 flags)
 * 	Description
 * 		Submit reserved ring buffer sample, pointed to by *data*.
 * 		If **BPF_RB_NO_WAKEUP** is specified in *flags*, no notification
 * 		of new data availability is sent.
 * 		If **BPF_RB_FORCE_WAKEUP** is specified in *flags*, notification
 * 		of new data availability is sent unconditionally.
 * 		If **0** is specified in *flags*, an adaptive notification
 * 		of new data availability is sent.
 *
 * 		See 'bpf_ringbuf_output()' for the definition of adaptive notification.
 * 	Return
 * 		Nothing. Always succeeds.
 *
 * void bpf_ringbuf_discard(void *data, u64 flags)
 * 	Description
 * 		Discard reserved ring buffer sample, pointed to by *data*.
 * 		If **BPF_RB_NO_WAKEUP** is specified in *flags*, no notification
 * 		of new data availability is sent.
 * 		If **BPF_RB_FORCE_WAKEUP** is specified in *flags*, notification
 * 		of new data availability is sent unconditionally.
 * 		If **0** is specified in *flags*, an adaptive notification
 * 		of new data availability is sent.
 *
 * 		See 'bpf_ringbuf_output()' for the definition of adaptive notification.
 * 	Return
 * 		Nothing. Always succeeds.
 *
 * u64 bpf_ringbuf_query(void *ringbuf, u64 flags)
 *	Description
 *		Query various characteristics of provided ring buffer. What
 *		exactly is queries is determined by *flags*:
 *
 *		* **BPF_RB_AVAIL_DATA**: Amount of data not yet consumed.
 *		* **BPF_RB_RING_SIZE**: The size of ring buffer.
 *		* **BPF_RB_CONS_POS**: Consumer position (can wrap around).
 *		* **BPF_RB_PROD_POS**: Producer(s) position (can wrap around).
 *
 *		Data returned is just a momentary snapshot of actual values
 *		and could be inaccurate, so this facility should be used to
 *		power heuristics and for reporting, not to make 100% correct
 *		calculation.
 *	Return
 *		Requested value, or 0, if *flags* are not recognized.
 *
 * long bpf_csum_level(struct sk_buff *skb, u64 level)
 * 	Description
 * 		Change the skbs checksum level by one layer up or down, or
 * 		reset it entirely to none in order to have the stack perform
 * 		checksum validation. The level is applicable to the following
 * 		protocols: TCP, UDP, GRE, SCTP, FCOE. For example, a decap of
 * 		| ETH | IP | UDP | GUE | IP | TCP | into | ETH | IP | TCP |
 * 		through **bpf_skb_adjust_room**\ () helper with passing in
 * 		**BPF_F_ADJ_ROOM_NO_CSUM_RESET** flag would require one	call
 * 		to **bpf_csum_level**\ () with **BPF_CSUM_LEVEL_DEC** since
 * 		the UDP header is removed. Similarly, an encap of the latter
 * 		into the former could be accompanied by a helper call to
 * 		**bpf_csum_level**\ () with **BPF_CSUM_LEVEL_INC** if the
 * 		skb is still intended to be processed in higher layers of the
 * 		stack instead of just egressing at tc.
 *
 * 		There are three supported level settings at this time:
 *
 * 		* **BPF_CSUM_LEVEL_INC**: Increases skb->csum_level for skbs
 * 		  with CHECKSUM_UNNECESSARY.
 * 		* **BPF_CSUM_LEVEL_DEC**: Decreases skb->csum_level for skbs
 * 		  with CHECKSUM_UNNECESSARY.
 * 		* **BPF_CSUM_LEVEL_RESET**: Resets skb->csum_level to 0 and
 * 		  sets CHECKSUM_NONE to force checksum validation by the stack.
 * 		* **BPF_CSUM_LEVEL_QUERY**: No-op, returns the current
 * 		  skb->csum_level.
 * 	Return
 * 		0 on success, or a negative error in case of failure. In the
 * 		case of **BPF_CSUM_LEVEL_QUERY**, the current skb->csum_level
 * 		is returned or the error code -EACCES in case the skb is not
 * 		subject to CHECKSUM_UNNECESSARY.
 *
 * struct tcp6_sock *bpf_skc_to_tcp6_sock(void *sk)
 *	Description
 *		Dynamically cast a *sk* pointer to a *tcp6_sock* pointer.
 *	Return
 *		*sk* if casting is valid, or **NULL** otherwise.
 *
 * struct tcp_sock *bpf_skc_to_tcp_sock(void *sk)
 *	Description
 *		Dynamically cast a *sk* pointer to a *tcp_sock* pointer.
 *	Return
 *		*sk* if casting is valid, or **NULL** otherwise.
 *
 * struct tcp_timewait_sock *bpf_skc_to_tcp_timewait_sock(void *sk)
 * 	Description
 *		Dynamically cast a *sk* pointer to a *tcp_timewait_sock* pointer.
 *	Return
 *		*sk* if casting is valid, or **NULL** otherwise.
 *
 * struct tcp_request_sock *bpf_skc_to_tcp_request_sock(void *sk)
 * 	Description
 *		Dynamically cast a *sk* pointer to a *tcp_request_sock* pointer.
 *	Return
 *		*sk* if casting is valid, or **NULL** otherwise.
 *
 * struct udp6_sock *bpf_skc_to_udp6_sock(void *sk)
 * 	Description
 *		Dynamically cast a *sk* pointer to a *udp6_sock* pointer.
 *	Return
 *		*sk* if casting is valid, or **NULL** otherwise.
 *
 * long bpf_get_task_stack(struct task_struct *task, void *buf, u32 size, u64 flags)
 *	Description
 *		Return a user or a kernel stack in bpf program provided buffer.
 *		Note: the user stack will only be populated if the *task* is
 *		the current task; all other tasks will return -EOPNOTSUPP.
 *		To achieve this, the helper needs *task*, which is a valid
 *		pointer to **struct task_struct**. To store the stacktrace, the
 *		bpf program provides *buf* with a nonnegative *size*.
 *
 *		The last argument, *flags*, holds the number of stack frames to
 *		skip (from 0 to 255), masked with
 *		**BPF_F_SKIP_FIELD_MASK**. The next bits can be used to set
 *		the following flags:
 *
 *		**BPF_F_USER_STACK**
 *			Collect a user space stack instead of a kernel stack.
 *			The *task* must be the current task.
 *		**BPF_F_USER_BUILD_ID**
 *			Collect buildid+offset instead of ips for user stack,
 *			only valid if **BPF_F_USER_STACK** is also specified.
 *
 *		**bpf_get_task_stack**\ () can collect up to
 *		**PERF_MAX_STACK_DEPTH** both kernel and user frames, subject
 *		to sufficient large buffer size. Note that
 *		this limit can be controlled with the **sysctl** program, and
 *		that it should be manually increased in order to profile long
 *		user stacks (such as stacks for Java programs). To do so, use:
 *
 *		::
 *
 *			# sysctl kernel.perf_event_max_stack=<new value>
 *	Return
 * 		The non-negative copied *buf* length equal to or less than
 * 		*size* on success, or a negative error in case of failure.
 *
 * long bpf_load_hdr_opt(struct bpf_sock_ops *skops, void *searchby_res, u32 len, u64 flags)
 *	Description
 *		Load header option.  Support reading a particular TCP header
 *		option for bpf program (**BPF_PROG_TYPE_SOCK_OPS**).
 *
 *		If *flags* is 0, it will search the option from the
 *		*skops*\ **->skb_data**.  The comment in **struct bpf_sock_ops**
 *		has details on what skb_data contains under different
 *		*skops*\ **->op**.
 *
 *		The first byte of the *searchby_res* specifies the
 *		kind that it wants to search.
 *
 *		If the searching kind is an experimental kind
 *		(i.e. 253 or 254 according to RFC6994).  It also
 *		needs to specify the "magic" which is either
 *		2 bytes or 4 bytes.  It then also needs to
 *		specify the size of the magic by using
 *		the 2nd byte which is "kind-length" of a TCP
 *		header option and the "kind-length" also
 *		includes the first 2 bytes "kind" and "kind-length"
 *		itself as a normal TCP header option also does.
 *
 *		For example, to search experimental kind 254 with
 *		2 byte magic 0xeB9F, the searchby_res should be
 *		[ 254, 4, 0xeB, 0x9F, 0, 0, .... 0 ].
 *
 *		To search for the standard window scale option (3),
 *		the *searchby_res* should be [ 3, 0, 0, .... 0 ].
 *		Note, kind-length must be 0 for regular option.
 *
 *		Searching for No-Op (0) and End-of-Option-List (1) are
 *		not supported.
 *
 *		*len* must be at least 2 bytes which is the minimal size
 *		of a header option.
 *
 *		Supported flags:
 *
 *		* **BPF_LOAD_HDR_OPT_TCP_SYN** to search from the
 *		  saved_syn packet or the just-received syn packet.
 *
 *	Return
 *		> 0 when found, the header option is copied to *searchby_res*.
 *		The return value is the total length copied. On failure, a
 *		negative error code is returned:
 *
 *		**-EINVAL** if a parameter is invalid.
 *
 *		**-ENOMSG** if the option is not found.
 *
 *		**-ENOENT** if no syn packet is available when
 *		**BPF_LOAD_HDR_OPT_TCP_SYN** is used.
 *
 *		**-ENOSPC** if there is not enough space.  Only *len* number of
 *		bytes are copied.
 *
 *		**-EFAULT** on failure to parse the header options in the
 *		packet.
 *
 *		**-EPERM** if the helper cannot be used under the current
 *		*skops*\ **->op**.
 *
 * long bpf_store_hdr_opt(struct bpf_sock_ops *skops, const void *from, u32 len, u64 flags)
 *	Description
 *		Store header option.  The data will be copied
 *		from buffer *from* with length *len* to the TCP header.
 *
 *		The buffer *from* should have the whole option that
 *		includes the kind, kind-length, and the actual
 *		option data.  The *len* must be at least kind-length
 *		long.  The kind-length does not have to be 4 byte
 *		aligned.  The kernel will take care of the padding
 *		and setting the 4 bytes aligned value to th->doff.
 *
 *		This helper will check for duplicated option
 *		by searching the same option in the outgoing skb.
 *
 *		This helper can only be called during
 *		**BPF_SOCK_OPS_WRITE_HDR_OPT_CB**.
 *
 *	Return
 *		0 on success, or negative error in case of failure:
 *
 *		**-EINVAL** If param is invalid.
 *
 *		**-ENOSPC** if there is not enough space in the header.
 *		Nothing has been written
 *
 *		**-EEXIST** if the option already exists.
 *
 *		**-EFAULT** on failure to parse the existing header options.
 *
 *		**-EPERM** if the helper cannot be used under the current
 *		*skops*\ **->op**.
 *
 * long bpf_reserve_hdr_opt(struct bpf_sock_ops *skops, u32 len, u64 flags)
 *	Description
 *		Reserve *len* bytes for the bpf header option.  The
 *		space will be used by **bpf_store_hdr_opt**\ () later in
 *		**BPF_SOCK_OPS_WRITE_HDR_OPT_CB**.
 *
 *		If **bpf_reserve_hdr_opt**\ () is called multiple times,
 *		the total number of bytes will be reserved.
 *
 *		This helper can only be called during
 *		**BPF_SOCK_OPS_HDR_OPT_LEN_CB**.
 *
 *	Return
 *		0 on success, or negative error in case of failure:
 *
 *		**-EINVAL** if a parameter is invalid.
 *
 *		**-ENOSPC** if there is not enough space in the header.
 *
 *		**-EPERM** if the helper cannot be used under the current
 *		*skops*\ **->op**.
 *
 * void *bpf_inode_storage_get(struct bpf_map *map, void *inode, void *value, u64 flags)
 *	Description
 *		Get a bpf_local_storage from an *inode*.
 *
 *		Logically, it could be thought of as getting the value from
 *		a *map* with *inode* as the **key**.  From this
 *		perspective,  the usage is not much different from
 *		**bpf_map_lookup_elem**\ (*map*, **&**\ *inode*) except this
 *		helper enforces the key must be an inode and the map must also
 *		be a **BPF_MAP_TYPE_INODE_STORAGE**.
 *
 *		Underneath, the value is stored locally at *inode* instead of
 *		the *map*.  The *map* is used as the bpf-local-storage
 *		"type". The bpf-local-storage "type" (i.e. the *map*) is
 *		searched against all bpf_local_storage residing at *inode*.
 *
 *		An optional *flags* (**BPF_LOCAL_STORAGE_GET_F_CREATE**) can be
 *		used such that a new bpf_local_storage will be
 *		created if one does not exist.  *value* can be used
 *		together with **BPF_LOCAL_STORAGE_GET_F_CREATE** to specify
 *		the initial value of a bpf_local_storage.  If *value* is
 *		**NULL**, the new bpf_local_storage will be zero initialized.
 *	Return
 *		A bpf_local_storage pointer is returned on success.
 *
 *		**NULL** if not found or there was an error in adding
 *		a new bpf_local_storage.
 *
 * int bpf_inode_storage_delete(struct bpf_map *map, void *inode)
 *	Description
 *		Delete a bpf_local_storage from an *inode*.
 *	Return
 *		0 on success.
 *
 *		**-ENOENT** if the bpf_local_storage cannot be found.
 *
 * long bpf_d_path(struct path *path, char *buf, u32 sz)
 *	Description
 *		Return full path for given **struct path** object, which
 *		needs to be the kernel BTF *path* object. The path is
 *		returned in the provided buffer *buf* of size *sz* and
 *		is zero terminated.
 *
 *	Return
 *		On success, the strictly positive length of the string,
 *		including the trailing NUL character. On error, a negative
 *		value.
 *
 * long bpf_copy_from_user(void *dst, u32 size, const void *user_ptr)
 * 	Description
 * 		Read *size* bytes from user space address *user_ptr* and store
 * 		the data in *dst*. This is a wrapper of **copy_from_user**\ ().
 * 	Return
 * 		0 on success, or a negative error in case of failure.
 *
 * long bpf_snprintf_btf(char *str, u32 str_size, struct btf_ptr *ptr, u32 btf_ptr_size, u64 flags)
 *	Description
 *		Use BTF to store a string representation of *ptr*->ptr in *str*,
 *		using *ptr*->type_id.  This value should specify the type
 *		that *ptr*->ptr points to. LLVM __builtin_btf_type_id(type, 1)
 *		can be used to look up vmlinux BTF type ids. Traversing the
 *		data structure using BTF, the type information and values are
 *		stored in the first *str_size* - 1 bytes of *str*.  Safe copy of
 *		the pointer data is carried out to avoid kernel crashes during
 *		operation.  Smaller types can use string space on the stack;
 *		larger programs can use map data to store the string
 *		representation.
 *
 *		The string can be subsequently shared with userspace via
 *		bpf_perf_event_output() or ring buffer interfaces.
 *		bpf_trace_printk() is to be avoided as it places too small
 *		a limit on string size to be useful.
 *
 *		*flags* is a combination of
 *
 *		**BTF_F_COMPACT**
 *			no formatting around type information
 *		**BTF_F_NONAME**
 *			no struct/union member names/types
 *		**BTF_F_PTR_RAW**
 *			show raw (unobfuscated) pointer values;
 *			equivalent to printk specifier %px.
 *		**BTF_F_ZERO**
 *			show zero-valued struct/union members; they
 *			are not displayed by default
 *
 *	Return
 *		The number of bytes that were written (or would have been
 *		written if output had to be truncated due to string size),
 *		or a negative error in cases of failure.
 *
 * long bpf_seq_printf_btf(struct seq_file *m, struct btf_ptr *ptr, u32 ptr_size, u64 flags)
 *	Description
 *		Use BTF to write to seq_write a string representation of
 *		*ptr*->ptr, using *ptr*->type_id as per bpf_snprintf_btf().
 *		*flags* are identical to those used for bpf_snprintf_btf.
 *	Return
 *		0 on success or a negative error in case of failure.
 *
 * u64 bpf_skb_cgroup_classid(struct sk_buff *skb)
 * 	Description
 * 		See **bpf_get_cgroup_classid**\ () for the main description.
 * 		This helper differs from **bpf_get_cgroup_classid**\ () in that
 * 		the cgroup v1 net_cls class is retrieved only from the *skb*'s
 * 		associated socket instead of the current process.
 * 	Return
 * 		The id is returned or 0 in case the id could not be retrieved.
 *
 * long bpf_redirect_neigh(u32 ifindex, struct bpf_redir_neigh *params, int plen, u64 flags)
 * 	Description
 * 		Redirect the packet to another net device of index *ifindex*
 * 		and fill in L2 addresses from neighboring subsystem. This helper
 * 		is somewhat similar to **bpf_redirect**\ (), except that it
 * 		populates L2 addresses as well, meaning, internally, the helper
 * 		relies on the neighbor lookup for the L2 address of the nexthop.
 *
 * 		The helper will perform a FIB lookup based on the skb's
 * 		networking header to get the address of the next hop, unless
 * 		this is supplied by the caller in the *params* argument. The
 * 		*plen* argument indicates the len of *params* and should be set
 * 		to 0 if *params* is NULL.
 *
 * 		The *flags* argument is reserved and must be 0. The helper is
 * 		currently only supported for tc BPF program types, and enabled
 * 		for IPv4 and IPv6 protocols.
 * 	Return
 * 		The helper returns **TC_ACT_REDIRECT** on success or
 * 		**TC_ACT_SHOT** on error.
 *
 * void *bpf_per_cpu_ptr(const void *percpu_ptr, u32 cpu)
 *     Description
 *             Take a pointer to a percpu ksym, *percpu_ptr*, and return a
 *             pointer to the percpu kernel variable on *cpu*. A ksym is an
 *             extern variable decorated with '__ksym'. For ksym, there is a
 *             global var (either static or global) defined of the same name
 *             in the kernel. The ksym is percpu if the global var is percpu.
 *             The returned pointer points to the global percpu var on *cpu*.
 *
 *             bpf_per_cpu_ptr() has the same semantic as per_cpu_ptr() in the
 *             kernel, except that bpf_per_cpu_ptr() may return NULL. This
 *             happens if *cpu* is larger than nr_cpu_ids. The caller of
 *             bpf_per_cpu_ptr() must check the returned value.
 *     Return
 *             A pointer pointing to the kernel percpu variable on *cpu*, or
 *             NULL, if *cpu* is invalid.
 *
 * void *bpf_this_cpu_ptr(const void *percpu_ptr)
 *	Description
 *		Take a pointer to a percpu ksym, *percpu_ptr*, and return a
 *		pointer to the percpu kernel variable on this cpu. See the
 *		description of 'ksym' in **bpf_per_cpu_ptr**\ ().
 *
 *		bpf_this_cpu_ptr() has the same semantic as this_cpu_ptr() in
 *		the kernel. Different from **bpf_per_cpu_ptr**\ (), it would
 *		never return NULL.
 *	Return
 *		A pointer pointing to the kernel percpu variable on this cpu.
 *
 * long bpf_redirect_peer(u32 ifindex, u64 flags)
 * 	Description
 * 		Redirect the packet to another net device of index *ifindex*.
 * 		This helper is somewhat similar to **bpf_redirect**\ (), except
 * 		that the redirection happens to the *ifindex*' peer device and
 * 		the netns switch takes place from ingress to ingress without
 * 		going through the CPU's backlog queue.
 *
 * 		*skb*\ **->mark** and *skb*\ **->tstamp** are not cleared during
 * 		the netns switch.
 *
 * 		The *flags* argument is reserved and must be 0. The helper is
 * 		currently only supported for tc BPF program types at the
 * 		ingress hook and for veth and netkit target device types. The
 * 		peer device must reside in a different network namespace.
 * 	Return
 * 		The helper returns **TC_ACT_REDIRECT** on success or
 * 		**TC_ACT_SHOT** on error.
 *
 * void *bpf_task_storage_get(struct bpf_map *map, struct task_struct *task, void *value, u64 flags)
 *	Description
 *		Get a bpf_local_storage from the *task*.
 *
 *		Logically, it could be thought of as getting the value from
 *		a *map* with *task* as the **key**.  From this
 *		perspective,  the usage is not much different from
 *		**bpf_map_lookup_elem**\ (*map*, **&**\ *task*) except this
 *		helper enforces the key must be a task_struct and the map must also
 *		be a **BPF_MAP_TYPE_TASK_STORAGE**.
 *
 *		Underneath, the value is stored locally at *task* instead of
 *		the *map*.  The *map* is used as the bpf-local-storage
 *		"type". The bpf-local-storage "type" (i.e. the *map*) is
 *		searched against all bpf_local_storage residing at *task*.
 *
 *		An optional *flags* (**BPF_LOCAL_STORAGE_GET_F_CREATE**) can be
 *		used such that a new bpf_local_storage will be
 *		created if one does not exist.  *value* can be used
 *		together with **BPF_LOCAL_STORAGE_GET_F_CREATE** to specify
 *		the initial value of a bpf_local_storage.  If *value* is
 *		**NULL**, the new bpf_local_storage will be zero initialized.
 *	Return
 *		A bpf_local_storage pointer is returned on success.
 *
 *		**NULL** if not found or there was an error in adding
 *		a new bpf_local_storage.
 *
 * long bpf_task_storage_delete(struct bpf_map *map, struct task_struct *task)
 *	Description
 *		Delete a bpf_local_storage from a *task*.
 *	Return
 *		0 on success.
 *
 *		**-ENOENT** if the bpf_local_storage cannot be found.
 *
 * struct task_struct *bpf_get_current_task_btf(void)
 *	Description
 *		Return a BTF pointer to the "current" task.
 *		This pointer can also be used in helpers that accept an
 *		*ARG_PTR_TO_BTF_ID* of type *task_struct*.
 *	Return
 *		Pointer to the current task.
 *
 * long bpf_bprm_opts_set(struct linux_binprm *bprm, u64 flags)
 *	Description
 *		Set or clear certain options on *bprm*:
 *
 *		**BPF_F_BPRM_SECUREEXEC** Set the secureexec bit
 *		which sets the **AT_SECURE** auxv for glibc. The bit
 *		is cleared if the flag is not specified.
 *	Return
 *		**-EINVAL** if invalid *flags* are passed, zero otherwise.
 *
 * u64 bpf_ktime_get_coarse_ns(void)
 * 	Description
 * 		Return a coarse-grained version of the time elapsed since
 * 		system boot, in nanoseconds. Does not include time the system
 * 		was suspended.
 *
 * 		See: **clock_gettime**\ (**CLOCK_MONOTONIC_COARSE**)
 * 	Return
 * 		Current *ktime*.
 *
 * long bpf_ima_inode_hash(struct inode *inode, void *dst, u32 size)
 *	Description
 *		Returns the stored IMA hash of the *inode* (if it's available).
 *		If the hash is larger than *size*, then only *size*
 *		bytes will be copied to *dst*
 *	Return
 *		The **hash_algo** is returned on success,
 *		**-EOPNOTSUPP** if IMA is disabled or **-EINVAL** if
 *		invalid arguments are passed.
 *
 * struct socket *bpf_sock_from_file(struct file *file)
 *	Description
 *		If the given file represents a socket, returns the associated
 *		socket.
 *	Return
 *		A pointer to a struct socket on success or NULL if the file is
 *		not a socket.
 *
 * long bpf_check_mtu(void *ctx, u32 ifindex, u32 *mtu_len, s32 len_diff, u64 flags)
 *	Description
 *		Check packet size against exceeding MTU of net device (based
 *		on *ifindex*).  This helper will likely be used in combination
 *		with helpers that adjust/change the packet size.
 *
 *		The argument *len_diff* can be used for querying with a planned
 *		size change. This allows to check MTU prior to changing packet
 *		ctx. Providing a *len_diff* adjustment that is larger than the
 *		actual packet size (resulting in negative packet size) will in
 *		principle not exceed the MTU, which is why it is not considered
 *		a failure.  Other BPF helpers are needed for performing the
 *		planned size change; therefore the responsibility for catching
 *		a negative packet size belongs in those helpers.
 *
 *		Specifying *ifindex* zero means the MTU check is performed
 *		against the current net device.  This is practical if this isn't
 *		used prior to redirect.
 *
 *		On input *mtu_len* must be a valid pointer, else verifier will
 *		reject BPF program.  If the value *mtu_len* is initialized to
 *		zero then the ctx packet size is use.  When value *mtu_len* is
 *		provided as input this specify the L3 length that the MTU check
 *		is done against. Remember XDP and TC length operate at L2, but
 *		this value is L3 as this correlate to MTU and IP-header tot_len
 *		values which are L3 (similar behavior as bpf_fib_lookup).
 *
 *		The Linux kernel route table can configure MTUs on a more
 *		specific per route level, which is not provided by this helper.
 *		For route level MTU checks use the **bpf_fib_lookup**\ ()
 *		helper.
 *
 *		*ctx* is either **struct xdp_md** for XDP programs or
 *		**struct sk_buff** for tc cls_act programs.
 *
 *		The *flags* argument can be a combination of one or more of the
 *		following values:
 *
 *		**BPF_MTU_CHK_SEGS**
 *			This flag will only works for *ctx* **struct sk_buff**.
 *			If packet context contains extra packet segment buffers
 *			(often knows as GSO skb), then MTU check is harder to
 *			check at this point, because in transmit path it is
 *			possible for the skb packet to get re-segmented
 *			(depending on net device features).  This could still be
 *			a MTU violation, so this flag enables performing MTU
 *			check against segments, with a different violation
 *			return code to tell it apart. Check cannot use len_diff.
 *
 *		On return *mtu_len* pointer contains the MTU value of the net
 *		device.  Remember the net device configured MTU is the L3 size,
 *		which is returned here and XDP and TC length operate at L2.
 *		Helper take this into account for you, but remember when using
 *		MTU value in your BPF-code.
 *
 *	Return
 *		* 0 on success, and populate MTU value in *mtu_len* pointer.
 *
 *		* < 0 if any input argument is invalid (*mtu_len* not updated)
 *
 *		MTU violations return positive values, but also populate MTU
 *		value in *mtu_len* pointer, as this can be needed for
 *		implementing PMTU handing:
 *
 *		* **BPF_MTU_CHK_RET_FRAG_NEEDED**
 *		* **BPF_MTU_CHK_RET_SEGS_TOOBIG**
 *
 * long bpf_for_each_map_elem(struct bpf_map *map, void *callback_fn, void *callback_ctx, u64 flags)
 *	Description
 *		For each element in **map**, call **callback_fn** function with
 *		**map**, **callback_ctx** and other map-specific parameters.
 *		The **callback_fn** should be a static function and
 *		the **callback_ctx** should be a pointer to the stack.
 *		The **flags** is used to control certain aspects of the helper.
 *		Currently, the **flags** must be 0.
 *
 *		The following are a list of supported map types and their
 *		respective expected callback signatures:
 *
 *		BPF_MAP_TYPE_HASH, BPF_MAP_TYPE_PERCPU_HASH,
 *		BPF_MAP_TYPE_LRU_HASH, BPF_MAP_TYPE_LRU_PERCPU_HASH,
 *		BPF_MAP_TYPE_ARRAY, BPF_MAP_TYPE_PERCPU_ARRAY
 *
 *		long (\*callback_fn)(struct bpf_map \*map, const void \*key, void \*value, void \*ctx);
 *
 *		For per_cpu maps, the map_value is the value on the cpu where the
 *		bpf_prog is running.
 *
 *		If **callback_fn** return 0, the helper will continue to the next
 *		element. If return value is 1, the helper will skip the rest of
 *		elements and return. Other return values are not used now.
 *
 *	Return
 *		The number of traversed map elements for success, **-EINVAL** for
 *		invalid **flags**.
 *
 * long bpf_snprintf(char *str, u32 str_size, const char *fmt, u64 *data, u32 data_len)
 *	Description
 *		Outputs a string into the **str** buffer of size **str_size**
 *		based on a format string stored in a read-only map pointed by
 *		**fmt**.
 *
 *		Each format specifier in **fmt** corresponds to one u64 element
 *		in the **data** array. For strings and pointers where pointees
 *		are accessed, only the pointer values are stored in the *data*
 *		array. The *data_len* is the size of *data* in bytes - must be
 *		a multiple of 8.
 *
 *		Formats **%s** and **%p{i,I}{4,6}** require to read kernel
 *		memory. Reading kernel memory may fail due to either invalid
 *		address or valid address but requiring a major memory fault. If
 *		reading kernel memory fails, the string for **%s** will be an
 *		empty string, and the ip address for **%p{i,I}{4,6}** will be 0.
 *		Not returning error to bpf program is consistent with what
 *		**bpf_trace_printk**\ () does for now.
 *
 *	Return
 *		The strictly positive length of the formatted string, including
 *		the trailing zero character. If the return value is greater than
 *		**str_size**, **str** contains a truncated string, guaranteed to
 *		be zero-terminated except when **str_size** is 0.
 *
 *		Or **-EBUSY** if the per-CPU memory copy buffer is busy.
 *
 * long bpf_sys_bpf(u32 cmd, void *attr, u32 attr_size)
 * 	Description
 * 		Execute bpf syscall with given arguments.
 * 	Return
 * 		A syscall result.
 *
 * long bpf_btf_find_by_name_kind(char *name, int name_sz, u32 kind, int flags)
 * 	Description
 * 		Find BTF type with given name and kind in vmlinux BTF or in module's BTFs.
 * 	Return
 * 		Returns btf_id and btf_obj_fd in lower and upper 32 bits.
 *
 * long bpf_sys_close(u32 fd)
 * 	Description
 * 		Execute close syscall for given FD.
 * 	Return
 * 		A syscall result.
 *
 * long bpf_timer_init(struct bpf_timer *timer, struct bpf_map *map, u64 flags)
 *	Description
 *		Initialize the timer.
 *		First 4 bits of *flags* specify clockid.
 *		Only CLOCK_MONOTONIC, CLOCK_REALTIME, CLOCK_BOOTTIME are allowed.
 *		All other bits of *flags* are reserved.
 *		The verifier will reject the program if *timer* is not from
 *		the same *map*.
 *	Return
 *		0 on success.
 *		**-EBUSY** if *timer* is already initialized.
 *		**-EINVAL** if invalid *flags* are passed.
 *		**-EPERM** if *timer* is in a map that doesn't have any user references.
 *		The user space should either hold a file descriptor to a map with timers
 *		or pin such map in bpffs. When map is unpinned or file descriptor is
 *		closed all timers in the map will be cancelled and freed.
 *
 * long bpf_timer_set_callback(struct bpf_timer *timer, void *callback_fn)
 *	Description
 *		Configure the timer to call *callback_fn* static function.
 *	Return
 *		0 on success.
 *		**-EINVAL** if *timer* was not initialized with bpf_timer_init() earlier.
 *		**-EPERM** if *timer* is in a map that doesn't have any user references.
 *		The user space should either hold a file descriptor to a map with timers
 *		or pin such map in bpffs. When map is unpinned or file descriptor is
 *		closed all timers in the map will be cancelled and freed.
 *
 * long bpf_timer_start(struct bpf_timer *timer, u64 nsecs, u64 flags)
 *	Description
 *		Set timer expiration N nanoseconds from the current time. The
 *		configured callback will be invoked in soft irq context on some cpu
 *		and will not repeat unless another bpf_timer_start() is made.
 *		In such case the next invocation can migrate to a different cpu.
 *		Since struct bpf_timer is a field inside map element the map
 *		owns the timer. The bpf_timer_set_callback() will increment refcnt
 *		of BPF program to make sure that callback_fn code stays valid.
 *		When user space reference to a map reaches zero all timers
 *		in a map are cancelled and corresponding program's refcnts are
 *		decremented. This is done to make sure that Ctrl-C of a user
 *		process doesn't leave any timers running. If map is pinned in
 *		bpffs the callback_fn can re-arm itself indefinitely.
 *		bpf_map_update/delete_elem() helpers and user space sys_bpf commands
 *		cancel and free the timer in the given map element.
 *		The map can contain timers that invoke callback_fn-s from different
 *		programs. The same callback_fn can serve different timers from
 *		different maps if key/value layout matches across maps.
 *		Every bpf_timer_set_callback() can have different callback_fn.
 *
 *		*flags* can be one of:
 *
 *		**BPF_F_TIMER_ABS**
 *			Start the timer in absolute expire value instead of the
 *			default relative one.
 *		**BPF_F_TIMER_CPU_PIN**
 *			Timer will be pinned to the CPU of the caller.
 *
 *	Return
 *		0 on success.
 *		**-EINVAL** if *timer* was not initialized with bpf_timer_init() earlier
 *		or invalid *flags* are passed.
 *
 * long bpf_timer_cancel(struct bpf_timer *timer)
 *	Description
 *		Cancel the timer and wait for callback_fn to finish if it was running.
 *	Return
 *		0 if the timer was not active.
 *		1 if the timer was active.
 *		**-EINVAL** if *timer* was not initialized with bpf_timer_init() earlier.
 *		**-EDEADLK** if callback_fn tried to call bpf_timer_cancel() on its
 *		own timer which would have led to a deadlock otherwise.
 *
 * u64 bpf_get_func_ip(void *ctx)
 * 	Description
 * 		Get address of the traced function (for tracing and kprobe programs).
 *
 * 		When called for kprobe program attached as uprobe it returns
 * 		probe address for both entry and return uprobe.
 *
 * 	Return
 * 		Address of the traced function for kprobe.
 * 		0 for kprobes placed within the function (not at the entry).
 * 		Address of the probe for uprobe and return uprobe.
 *
 * u64 bpf_get_attach_cookie(void *ctx)
 * 	Description
 * 		Get bpf_cookie value provided (optionally) during the program
 * 		attachment. It might be different for each individual
 * 		attachment, even if BPF program itself is the same.
 * 		Expects BPF program context *ctx* as a first argument.
 *
 * 		Supported for the following program types:
 *			- kprobe/uprobe;
 *			- tracepoint;
 *			- perf_event.
 * 	Return
 *		Value specified by user at BPF link creation/attachment time
 *		or 0, if it was not specified.
 *
 * long bpf_task_pt_regs(struct task_struct *task)
 *	Description
 *		Get the struct pt_regs associated with **task**.
 *	Return
 *		A pointer to struct pt_regs.
 *
 * long bpf_get_branch_snapshot(void *entries, u32 size, u64 flags)
 *	Description
 *		Get branch trace from hardware engines like Intel LBR. The
 *		hardware engine is stopped shortly after the helper is
 *		called. Therefore, the user need to filter branch entries
 *		based on the actual use case. To capture branch trace
 *		before the trigger point of the BPF program, the helper
 *		should be called at the beginning of the BPF program.
 *
 *		The data is stored as struct perf_branch_entry into output
 *		buffer *entries*. *size* is the size of *entries* in bytes.
 *		*flags* is reserved for now and must be zero.
 *
 *	Return
 *		On success, number of bytes written to *buf*. On error, a
 *		negative value.
 *
 *		**-EINVAL** if *flags* is not zero.
 *
 *		**-ENOENT** if architecture does not support branch records.
 *
 * long bpf_trace_vprintk(const char *fmt, u32 fmt_size, const void *data, u32 data_len)
 *	Description
 *		Behaves like **bpf_trace_printk**\ () helper, but takes an array of u64
 *		to format and can handle more format args as a result.
 *
 *		Arguments are to be used as in **bpf_seq_printf**\ () helper.
 *	Return
 *		The number of bytes written to the buffer, or a negative error
 *		in case of failure.
 *
 * struct unix_sock *bpf_skc_to_unix_sock(void *sk)
 * 	Description
 *		Dynamically cast a *sk* pointer to a *unix_sock* pointer.
 *	Return
 *		*sk* if casting is valid, or **NULL** otherwise.
 *
 * long bpf_kallsyms_lookup_name(const char *name, int name_sz, int flags, u64 *res)
 *	Description
 *		Get the address of a kernel symbol, returned in *res*. *res* is
 *		set to 0 if the symbol is not found.
 *	Return
 *		On success, zero. On error, a negative value.
 *
 *		**-EINVAL** if *flags* is not zero.
 *
 *		**-EINVAL** if string *name* is not the same size as *name_sz*.
 *
 *		**-ENOENT** if symbol is not found.
 *
 *		**-EPERM** if caller does not have permission to obtain kernel address.
 *
 * long bpf_find_vma(struct task_struct *task, u64 addr, void *callback_fn, void *callback_ctx, u64 flags)
 *	Description
 *		Find vma of *task* that contains *addr*, call *callback_fn*
 *		function with *task*, *vma*, and *callback_ctx*.
 *		The *callback_fn* should be a static function and
 *		the *callback_ctx* should be a pointer to the stack.
 *		The *flags* is used to control certain aspects of the helper.
 *		Currently, the *flags* must be 0.
 *
 *		The expected callback signature is
 *
 *		long (\*callback_fn)(struct task_struct \*task, struct vm_area_struct \*vma, void \*callback_ctx);
 *
 *	Return
 *		0 on success.
 *		**-ENOENT** if *task->mm* is NULL, or no vma contains *addr*.
 *		**-EBUSY** if failed to try lock mmap_lock.
 *		**-EINVAL** for invalid **flags**.
 *
 * long bpf_loop(u32 nr_loops, void *callback_fn, void *callback_ctx, u64 flags)
 *	Description
 *		For **nr_loops**, call **callback_fn** function
 *		with **callback_ctx** as the context parameter.
 *		The **callback_fn** should be a static function and
 *		the **callback_ctx** should be a pointer to the stack.
 *		The **flags** is used to control certain aspects of the helper.
 *		Currently, the **flags** must be 0. Currently, nr_loops is
 *		limited to 1 << 23 (~8 million) loops.
 *
 *		long (\*callback_fn)(u64 index, void \*ctx);
 *
 *		where **index** is the current index in the loop. The index
 *		is zero-indexed.
 *
 *		If **callback_fn** returns 0, the helper will continue to the next
 *		loop. If return value is 1, the helper will skip the rest of
 *		the loops and return. Other return values are not used now,
 *		and will be rejected by the verifier.
 *
 *	Return
 *		The number of loops performed, **-EINVAL** for invalid **flags**,
 *		**-E2BIG** if **nr_loops** exceeds the maximum number of loops.
 *
 * long bpf_strncmp(const char *s1, u32 s1_sz, const char *s2)
 *	Description
 *		Do strncmp() between **s1** and **s2**. **s1** doesn't need
 *		to be null-terminated and **s1_sz** is the maximum storage
 *		size of **s1**. **s2** must be a read-only string.
 *	Return
 *		An integer less than, equal to, or greater than zero
 *		if the first **s1_sz** bytes of **s1** is found to be
 *		less than, to match, or be greater than **s2**.
 *
 * long bpf_get_func_arg(void *ctx, u32 n, u64 *value)
 *	Description
 *		Get **n**-th argument register (zero based) of the traced function (for tracing programs)
 *		returned in **value**.
 *
 *	Return
 *		0 on success.
 *		**-EINVAL** if n >= argument register count of traced function.
 *
 * long bpf_get_func_ret(void *ctx, u64 *value)
 *	Description
 *		Get return value of the traced function (for tracing programs)
 *		in **value**.
 *
 *	Return
 *		0 on success.
 *		**-EOPNOTSUPP** for tracing programs other than BPF_TRACE_FEXIT or BPF_MODIFY_RETURN.
 *
 * long bpf_get_func_arg_cnt(void *ctx)
 *	Description
 *		Get number of registers of the traced function (for tracing programs) where
 *		function arguments are stored in these registers.
 *
 *	Return
 *		The number of argument registers of the traced function.
 *
 * int bpf_get_retval(void)
 *	Description
 *		Get the BPF program's return value that will be returned to the upper layers.
 *
 *		This helper is currently supported by cgroup programs and only by the hooks
 *		where BPF program's return value is returned to the userspace via errno.
 *	Return
 *		The BPF program's return value.
 *
 * int bpf_set_retval(int retval)
 *	Description
 *		Set the BPF program's return value that will be returned to the upper layers.
 *
 *		This helper is currently supported by cgroup programs and only by the hooks
 *		where BPF program's return value is returned to the userspace via errno.
 *
 *		Note that there is the following corner case where the program exports an error
 *		via bpf_set_retval but signals success via 'return 1':
 *
 *			bpf_set_retval(-EPERM);
 *			return 1;
 *
 *		In this case, the BPF program's return value will use helper's -EPERM. This
 *		still holds true for cgroup/bind{4,6} which supports extra 'return 3' success case.
 *
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * u64 bpf_xdp_get_buff_len(struct xdp_buff *xdp_md)
 *	Description
 *		Get the total size of a given xdp buff (linear and paged area)
 *	Return
 *		The total size of a given xdp buffer.
 *
 * long bpf_xdp_load_bytes(struct xdp_buff *xdp_md, u32 offset, void *buf, u32 len)
 *	Description
 *		This helper is provided as an easy way to load data from a
 *		xdp buffer. It can be used to load *len* bytes from *offset* from
 *		the frame associated to *xdp_md*, into the buffer pointed by
 *		*buf*.
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * long bpf_xdp_store_bytes(struct xdp_buff *xdp_md, u32 offset, void *buf, u32 len)
 *	Description
 *		Store *len* bytes from buffer *buf* into the frame
 *		associated to *xdp_md*, at *offset*.
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * long bpf_copy_from_user_task(void *dst, u32 size, const void *user_ptr, struct task_struct *tsk, u64 flags)
 *	Description
 *		Read *size* bytes from user space address *user_ptr* in *tsk*'s
 *		address space, and stores the data in *dst*. *flags* is not
 *		used yet and is provided for future extensibility. This helper
 *		can only be used by sleepable programs.
 *	Return
 *		0 on success, or a negative error in case of failure. On error
 *		*dst* buffer is zeroed out.
 *
 * long bpf_skb_set_tstamp(struct sk_buff *skb, u64 tstamp, u32 tstamp_type)
 *	Description
 *		Change the __sk_buff->tstamp_type to *tstamp_type*
 *		and set *tstamp* to the __sk_buff->tstamp together.
 *
 *		If there is no need to change the __sk_buff->tstamp_type,
 *		the tstamp value can be directly written to __sk_buff->tstamp
 *		instead.
 *
 *		BPF_SKB_TSTAMP_DELIVERY_MONO is the only tstamp that
 *		will be kept during bpf_redirect_*().  A non zero
 *		*tstamp* must be used with the BPF_SKB_TSTAMP_DELIVERY_MONO
 *		*tstamp_type*.
 *
 *		A BPF_SKB_TSTAMP_UNSPEC *tstamp_type* can only be used
 *		with a zero *tstamp*.
 *
 *		Only IPv4 and IPv6 skb->protocol are supported.
 *
 *		This function is most useful when it needs to set a
 *		mono delivery time to __sk_buff->tstamp and then
 *		bpf_redirect_*() to the egress of an iface.  For example,
 *		changing the (rcv) timestamp in __sk_buff->tstamp at
 *		ingress to a mono delivery time and then bpf_redirect_*()
 *		to sch_fq@phy-dev.
 *	Return
 *		0 on success.
 *		**-EINVAL** for invalid input
 *		**-EOPNOTSUPP** for unsupported protocol
 *
 * long bpf_ima_file_hash(struct file *file, void *dst, u32 size)
 *	Description
 *		Returns a calculated IMA hash of the *file*.
 *		If the hash is larger than *size*, then only *size*
 *		bytes will be copied to *dst*
 *	Return
 *		The **hash_algo** is returned on success,
 *		**-EOPNOTSUPP** if the hash calculation failed or **-EINVAL** if
 *		invalid arguments are passed.
 *
 * void *bpf_kptr_xchg(void *dst, void *ptr)
 *	Description
 *		Exchange kptr at pointer *dst* with *ptr*, and return the old value.
 *		*dst* can be map value or local kptr. *ptr* can be NULL, otherwise
 *		it must be a referenced pointer which will be released when this helper
 *		is called.
 *	Return
 *		The old value of kptr (which can be NULL). The returned pointer
 *		if not NULL, is a reference which must be released using its
 *		corresponding release function, or moved into a BPF map before
 *		program exit.
 *
 * void *bpf_map_lookup_percpu_elem(struct bpf_map *map, const void *key, u32 cpu)
 * 	Description
 * 		Perform a lookup in *percpu map* for an entry associated to
 * 		*key* on *cpu*.
 * 	Return
 * 		Map value associated to *key* on *cpu*, or **NULL** if no entry
 * 		was found or *cpu* is invalid.
 *
 * struct mptcp_sock *bpf_skc_to_mptcp_sock(void *sk)
 *	Description
 *		Dynamically cast a *sk* pointer to a *mptcp_sock* pointer.
 *	Return
 *		*sk* if casting is valid, or **NULL** otherwise.
 *
 * long bpf_dynptr_from_mem(void *data, u32 size, u64 flags, struct bpf_dynptr *ptr)
 *	Description
 *		Get a dynptr to local memory *data*.
 *
 *		*data* must be a ptr to a map value.
 *		The maximum *size* supported is DYNPTR_MAX_SIZE.
 *		*flags* is currently unused.
 *	Return
 *		0 on success, -E2BIG if the size exceeds DYNPTR_MAX_SIZE,
 *		-EINVAL if flags is not 0.
 *
 * long bpf_ringbuf_reserve_dynptr(void *ringbuf, u32 size, u64 flags, struct bpf_dynptr *ptr)
 *	Description
 *		Reserve *size* bytes of payload in a ring buffer *ringbuf*
 *		through the dynptr interface. *flags* must be 0.
 *
 *		Please note that a corresponding bpf_ringbuf_submit_dynptr or
 *		bpf_ringbuf_discard_dynptr must be called on *ptr*, even if the
 *		reservation fails. This is enforced by the verifier.
 *	Return
 *		0 on success, or a negative error in case of failure.
 *
 * void bpf_ringbuf_submit_dynptr(struct bpf_dynptr *ptr, u64 flags)
 *	Description
 *		Submit reserved ring buffer sample, pointed to by *data*,
 *		through the dynptr interface. This is a no-op if the dynptr is
 *		invalid/null.
 *
 *		For more information on *flags*, please see
 *		'bpf_ringbuf_submit'.
 *	Return
 *		Nothing. Always succeeds.
 *
 * void bpf_ringbuf_discard_dynptr(struct bpf_dynptr *ptr, u64 flags)
 *	Description
 *		Discard reserved ring buffer sample through the dynptr
 *		interface. This is a no-op if the dynptr is invalid/null.
 *
 *		For more information on *flags*, please see
 *		'bpf_ringbuf_discard'.
 *	Return
 *		Nothing. Always succeeds.
 *
 * long bpf_dynptr_read(void *dst, u32 len, const struct bpf_dynptr *src, u32 offset, u64 flags)
 *	Description
 *		Read *len* bytes from *src* into *dst*, starting from *offset*
 *		into *src*.
 *		*flags* is currently unused.
 *	Return
 *		0 on success, -E2BIG if *offset* + *len* exceeds the length
 *		of *src*'s data, -EINVAL if *src* is an invalid dynptr or if
 *		*flags* is not 0.
 *
 * long bpf_dynptr_write(const struct bpf_dynptr *dst, u32 offset, void *src, u32 len, u64 flags)
 *	Description
 *		Write *len* bytes from *src* into *dst*, starting from *offset*
 *		into *dst*.
 *
 *		*flags* must be 0 except for skb-type dynptrs.
 *
 *		For skb-type dynptrs:
 *		    *  All data slices of the dynptr are automatically
 *		       invalidated after **bpf_dynptr_write**\ (). This is
 *		       because writing may pull the skb and change the
 *		       underlying packet buffer.
 *
 *		    *  For *flags*, please see the flags accepted by
 *		       **bpf_skb_store_bytes**\ ().
 *	Return
 *		0 on success, -E2BIG if *offset* + *len* exceeds the length
 *		of *dst*'s data, -EINVAL if *dst* is an invalid dynptr or if *dst*
 *		is a read-only dynptr or if *flags* is not correct. For skb-type dynptrs,
 *		other errors correspond to errors returned by **bpf_skb_store_bytes**\ ().
 *
 * void *bpf_dynptr_data(const struct bpf_dynptr *ptr, u32 offset, u32 len)
 *	Description
 *		Get a pointer to the underlying dynptr data.
 *
 *		*len* must be a statically known value. The returned data slice
 *		is invalidated whenever the dynptr is invalidated.
 *
 *		skb and xdp type dynptrs may not use bpf_dynptr_data. They should
 *		instead use bpf_dynptr_slice and bpf_dynptr_slice_rdwr.
 *	Return
 *		Pointer to the underlying dynptr data, NULL if the dynptr is
 *		read-only, if the dynptr is invalid, or if the offset and length
 *		is out of bounds.
 *
 * s64 bpf_tcp_raw_gen_syncookie_ipv4(struct iphdr *iph, struct tcphdr *th, u32 th_len)
 *	Description
 *		Try to issue a SYN cookie for the packet with corresponding
 *		IPv4/TCP headers, *iph* and *th*, without depending on a
 *		listening socket.
 *
 *		*iph* points to the IPv4 header.
 *
 *		*th* points to the start of the TCP header, while *th_len*
 *		contains the length of the TCP header (at least
 *		**sizeof**\ (**struct tcphdr**)).
 *	Return
 *		On success, lower 32 bits hold the generated SYN cookie in
 *		followed by 16 bits which hold the MSS value for that cookie,
 *		and the top 16 bits are unused.
 *
 *		On failure, the returned value is one of the following:
 *
 *		**-EINVAL** if *th_len* is invalid.
 *
 * s64 bpf_tcp_raw_gen_syncookie_ipv6(struct ipv6hdr *iph, struct tcphdr *th, u32 th_len)
 *	Description
 *		Try to issue a SYN cookie for the packet with corresponding
 *		IPv6/TCP headers, *iph* and *th*, without depending on a
 *		listening socket.
 *
 *		*iph* points to the IPv6 header.
 *
 *		*th* points to the start of the TCP header, while *th_len*
 *		contains the length of the TCP header (at least
 *		**sizeof**\ (**struct tcphdr**)).
 *	Return
 *		On success, lower 32 bits hold the generated SYN cookie in
 *		followed by 16 bits which hold the MSS value for that cookie,
 *		and the top 16 bits are unused.
 *
 *		On failure, the returned value is one of the following:
 *
 *		**-EINVAL** if *th_len* is invalid.
 *
 *		**-EPROTONOSUPPORT** if CONFIG_IPV6 is not builtin.
 *
 * long bpf_tcp_raw_check_syncookie_ipv4(struct iphdr *iph, struct tcphdr *th)
 *	Description
 *		Check whether *iph* and *th* contain a valid SYN cookie ACK
 *		without depending on a listening socket.
 *
 *		*iph* points to the IPv4 header.
 *
 *		*th* points to the TCP header.
 *	Return
 *		0 if *iph* and *th* are a valid SYN cookie ACK.
 *
 *		On failure, the returned value is one of the following:
 *
 *		**-EACCES** if the SYN cookie is not valid.
 *
 * long bpf_tcp_raw_check_syncookie_ipv6(struct ipv6hdr *iph, struct tcphdr *th)
 *	Description
 *		Check whether *iph* and *th* contain a valid SYN cookie ACK
 *		without depending on a listening socket.
 *
 *		*iph* points to the IPv6 header.
 *
 *		*th* points to the TCP header.
 *	Return
 *		0 if *iph* and *th* are a valid SYN cookie ACK.
 *
 *		On failure, the returned value is one of the following:
 *
 *		**-EACCES** if the SYN cookie is not valid.
 *
 *		**-EPROTONOSUPPORT** if CONFIG_IPV6 is not builtin.
 *
 * u64 bpf_ktime_get_tai_ns(void)
 *	Description
 *		A nonsettable system-wide clock derived from wall-clock time but
 *		ignoring leap seconds.  This clock does not experience
 *		discontinuities and backwards jumps caused by NTP inserting leap
 *		seconds as CLOCK_REALTIME does.
 *
 *		See: **clock_gettime**\ (**CLOCK_TAI**)
 *	Return
 *		Current *ktime*.
 *
 * long bpf_user_ringbuf_drain(struct bpf_map *map, void *callback_fn, void *ctx, u64 flags)
 *	Description
 *		Drain samples from the specified user ring buffer, and invoke
 *		the provided callback for each such sample:
 *
 *		long (\*callback_fn)(const struct bpf_dynptr \*dynptr, void \*ctx);
 *
 *		If **callback_fn** returns 0, the helper will continue to try
 *		and drain the next sample, up to a maximum of
 *		BPF_MAX_USER_RINGBUF_SAMPLES samples. If the return value is 1,
 *		the helper will skip the rest of the samples and return. Other
 *		return values are not used now, and will be rejected by the
 *		verifier.
 *	Return
 *		The number of drained samples if no error was encountered while
 *		draining samples, or 0 if no samples were present in the ring
 *		buffer. If a user-space producer was epoll-waiting on this map,
 *		and at least one sample was drained, they will receive an event
 *		notification notifying them of available space in the ring
 *		buffer. If the BPF_RB_NO_WAKEUP flag is passed to this
 *		function, no wakeup notification will be sent. If the
 *		BPF_RB_FORCE_WAKEUP flag is passed, a wakeup notification will
 *		be sent even if no sample was drained.
 *
 *		On failure, the returned value is one of the following:
 *
 *		**-EBUSY** if the ring buffer is contended, and another calling
 *		context was concurrently draining the ring buffer.
 *
 *		**-EINVAL** if user-space is not properly tracking the ring
 *		buffer due to the producer position not being aligned to 8
 *		bytes, a sample not being aligned to 8 bytes, or the producer
 *		position not matching the advertised length of a sample.
 *
 *		**-E2BIG** if user-space has tried to publish a sample which is
 *		larger than the size of the ring buffer, or which cannot fit
 *		within a struct bpf_dynptr.
 *
 * void *bpf_cgrp_storage_get(struct bpf_map *map, struct cgroup *cgroup, void *value, u64 flags)
 *	Description
 *		Get a bpf_local_storage from the *cgroup*.
 *
 *		Logically, it could be thought of as getting the value from
 *		a *map* with *cgroup* as the **key**.  From this
 *		perspective,  the usage is not much different from
 *		**bpf_map_lookup_elem**\ (*map*, **&**\ *cgroup*) except this
 *		helper enforces the key must be a cgroup struct and the map must also
 *		be a **BPF_MAP_TYPE_CGRP_STORAGE**.
 *
 *		In reality, the local-storage value is embedded directly inside of the
 *		*cgroup* object itself, rather than being located in the
 *		**BPF_MAP_TYPE_CGRP_STORAGE** map. When the local-storage value is
 *		queried for some *map* on a *cgroup* object, the kernel will perform an
 *		O(n) iteration over all of the live local-storage values for that
 *		*cgroup* object until the local-storage value for the *map* is found.
 *
 *		An optional *flags* (**BPF_LOCAL_STORAGE_GET_F_CREATE**) can be
 *		used such that a new bpf_local_storage will be
 *		created if one does not exist.  *value* can be used
 *		together with **BPF_LOCAL_STORAGE_GET_F_CREATE** to specify
 *		the initial value of a bpf_local_storage.  If *value* is
 *		**NULL**, the new bpf_local_storage will be zero initialized.
 *	Return
 *		A bpf_local_storage pointer is returned on success.
 *
 *		**NULL** if not found or there was an error in adding
 *		a new bpf_local_storage.
 *
 * long bpf_cgrp_storage_delete(struct bpf_map *map, struct cgroup *cgroup)
 *	Description
 *		Delete a bpf_local_storage from a *cgroup*.
 *	Return
 *		0 on success.
 *
 *		**-ENOENT** if the bpf_local_storage cannot be found.
 */
#define ___BPF_FUNC_MAPPER(FN, ctx...)			\
	FN(unspec, 0, ##ctx)				\
	FN(map_lookup_elem, 1, ##ctx)			\
	FN(map_update_elem, 2, ##ctx)			\
	FN(map_delete_elem, 3, ##ctx)			\
	FN(probe_read, 4, ##ctx)			\
	FN(ktime_get_ns, 5, ##ctx)			\
	FN(trace_printk, 6, ##ctx)			\
	FN(get_prandom_u32, 7, ##ctx)			\
	FN(get_smp_processor_id, 8, ##ctx)		\
	FN(skb_store_bytes, 9, ##ctx)			\
	FN(l3_csum_replace, 10, ##ctx)			\
	FN(l4_csum_replace, 11, ##ctx)			\
	FN(tail_call, 12, ##ctx)			\
	FN(clone_redirect, 13, ##ctx)			\
	FN(get_current_pid_tgid, 14, ##ctx)		\
	FN(get_current_uid_gid, 15, ##ctx)		\
	FN(get_current_comm, 16, ##ctx)			\
	FN(get_cgroup_classid, 17, ##ctx)		\
	FN(skb_vlan_push, 18, ##ctx)			\
	FN(skb_vlan_pop, 19, ##ctx)			\
	FN(skb_get_tunnel_key, 20, ##ctx)		\
	FN(skb_set_tunnel_key, 21, ##ctx)		\
	FN(perf_event_read, 22, ##ctx)			\
	FN(redirect, 23, ##ctx)				\
	FN(get_route_realm, 24, ##ctx)			\
	FN(perf_event_output, 25, ##ctx)		\
	FN(skb_load_bytes, 26, ##ctx)			\
	FN(get_stackid, 27, ##ctx)			\
	FN(csum_diff, 28, ##ctx)			\
	FN(skb_get_tunnel_opt, 29, ##ctx)		\
	FN(skb_set_tunnel_opt, 30, ##ctx)		\
	FN(skb_change_proto, 31, ##ctx)			\
	FN(skb_change_type, 32, ##ctx)			\
	FN(skb_under_cgroup, 33, ##ctx)			\
	FN(get_hash_recalc, 34, ##ctx)			\
	FN(get_current_task, 35, ##ctx)			\
	FN(probe_write_user, 36, ##ctx)			\
	FN(current_task_under_cgroup, 37, ##ctx)	\
	FN(skb_change_tail, 38, ##ctx)			\
	FN(skb_pull_data, 39, ##ctx)			\
	FN(csum_update, 40, ##ctx)			\
	FN(set_hash_invalid, 41, ##ctx)			\
	FN(get_numa_node_id, 42, ##ctx)			\
	FN(skb_change_head, 43, ##ctx)			\
	FN(xdp_adjust_head, 44, ##ctx)			\
	FN(probe_read_str, 45, ##ctx)			\
	FN(get_socket_cookie, 46, ##ctx)		\
	FN(get_socket_uid, 47, ##ctx)			\
	FN(set_hash, 48, ##ctx)				\
	FN(setsockopt, 49, ##ctx)			\
	FN(skb_adjust_room, 50, ##ctx)			\
	FN(redirect_map, 51, ##ctx)			\
	FN(sk_redirect_map, 52, ##ctx)			\
	FN(sock_map_update, 53, ##ctx)			\
	FN(xdp_adjust_meta, 54, ##ctx)			\
	FN(perf_event_read_value, 55, ##ctx)		\
	FN(perf_prog_read_value, 56, ##ctx)		\
	FN(getsockopt, 57, ##ctx)			\
	FN(override_return, 58, ##ctx)			\
	FN(sock_ops_cb_flags_set, 59, ##ctx)		\
	FN(msg_redirect_map, 60, ##ctx)			\
	FN(msg_apply_bytes, 61, ##ctx)			\
	FN(msg_cork_bytes, 62, ##ctx)			\
	FN(msg_pull_data, 63, ##ctx)			\
	FN(bind, 64, ##ctx)				\
	FN(xdp_adjust_tail, 65, ##ctx)			\
	FN(skb_get_xfrm_state, 66, ##ctx)		\
	FN(get_stack, 67, ##ctx)			\
	FN(skb_load_bytes_relative, 68, ##ctx)		\
	FN(fib_lookup, 69, ##ctx)			\
	FN(sock_hash_update, 70, ##ctx)			\
	FN(msg_redirect_hash, 71, ##ctx)		\
	FN(sk_redirect_hash, 72, ##ctx)			\
	FN(lwt_push_encap, 73, ##ctx)			\
	FN(lwt_seg6_store_bytes, 74, ##ctx)		\
	FN(lwt_seg6_adjust_srh, 75, ##ctx)		\
	FN(lwt_seg6_action, 76, ##ctx)			\
	FN(rc_repeat, 77, ##ctx)			\
	FN(rc_keydown, 78, ##ctx)			\
	FN(skb_cgroup_id, 79, ##ctx)			\
	FN(get_current_cgroup_id, 80, ##ctx)		\
	FN(get_local_storage, 81, ##ctx)		\
	FN(sk_select_reuseport, 82, ##ctx)		\
	FN(skb_ancestor_cgroup_id, 83, ##ctx)		\
	FN(sk_lookup_tcp, 84, ##ctx)			\
	FN(sk_lookup_udp, 85, ##ctx)			\
	FN(sk_release, 86, ##ctx)			\
	FN(map_push_elem, 87, ##ctx)			\
	FN(map_pop_elem, 88, ##ctx)			\
	FN(map_peek_elem, 89, ##ctx)			\
	FN(msg_push_data, 90, ##ctx)			\
	FN(msg_pop_data, 91, ##ctx)			\
	FN(rc_pointer_rel, 92, ##ctx)			\
	FN(spin_lock, 93, ##ctx)			\
	FN(spin_unlock, 94, ##ctx)			\
	FN(sk_fullsock, 95, ##ctx)			\
	FN(tcp_sock, 96, ##ctx)				\
	FN(skb_ecn_set_ce, 97, ##ctx)			\
	FN(get_listener_sock, 98, ##ctx)		\
	FN(skc_lookup_tcp, 99, ##ctx)			\
	FN(tcp_check_syncookie, 100, ##ctx)		\
	FN(sysctl_get_name, 101, ##ctx)			\
	FN(sysctl_get_current_value, 102, ##ctx)	\
	FN(sysctl_get_new_value, 103, ##ctx)		\
	FN(sysctl_set_new_value, 104, ##ctx)		\
	FN(strtol, 105, ##ctx)				\
	FN(strtoul, 106, ##ctx)				\
	FN(sk_storage_get, 107, ##ctx)			\
	FN(sk_storage_delete, 108, ##ctx)		\
	FN(send_signal, 109, ##ctx)			\
	FN(tcp_gen_syncookie, 110, ##ctx)		\
	FN(skb_output, 111, ##ctx)			\
	FN(probe_read_user, 112, ##ctx)			\
	FN(probe_read_kernel, 113, ##ctx)		\
	FN(probe_read_user_str, 114, ##ctx)		\
	FN(probe_read_kernel_str, 115, ##ctx)		\
	FN(tcp_send_ack, 116, ##ctx)			\
	FN(send_signal_thread, 117, ##ctx)		\
	FN(jiffies64, 118, ##ctx)			\
	FN(read_branch_records, 119, ##ctx)		\
	FN(get_ns_current_pid_tgid, 120, ##ctx)		\
	FN(xdp_output, 121, ##ctx)			\
	FN(get_netns_cookie, 122, ##ctx)		\
	FN(get_current_ancestor_cgroup_id, 123, ##ctx)	\
	FN(sk_assign, 124, ##ctx)			\
	FN(ktime_get_boot_ns, 125, ##ctx)		\
	FN(seq_printf, 126, ##ctx)			\
	FN(seq_write, 127, ##ctx)			\
	FN(sk_cgroup_id, 128, ##ctx)			\
	FN(sk_ancestor_cgroup_id, 129, ##ctx)		\
	FN(ringbuf_output, 130, ##ctx)			\
	FN(ringbuf_reserve, 131, ##ctx)			\
	FN(ringbuf_submit, 132, ##ctx)			\
	FN(ringbuf_discard, 133, ##ctx)			\
	FN(ringbuf_query, 134, ##ctx)			\
	FN(csum_level, 135, ##ctx)			\
	FN(skc_to_tcp6_sock, 136, ##ctx)		\
	FN(skc_to_tcp_sock, 137, ##ctx)			\
	FN(skc_to_tcp_timewait_sock, 138, ##ctx)	\
	FN(skc_to_tcp_request_sock, 139, ##ctx)		\
	FN(skc_to_udp6_sock, 140, ##ctx)		\
	FN(get_task_stack, 141, ##ctx)			\
	FN(load_hdr_opt, 142, ##ctx)			\
	FN(store_hdr_opt, 143, ##ctx)			\
	FN(reserve_hdr_opt, 144, ##ctx)			\
	FN(inode_storage_get, 145, ##ctx)		\
	FN(inode_storage_delete, 146, ##ctx)		\
	FN(d_path, 147, ##ctx)				\
	FN(copy_from_user, 148, ##ctx)			\
	FN(snprintf_btf, 149, ##ctx)			\
	FN(seq_printf_btf, 150, ##ctx)			\
	FN(skb_cgroup_classid, 151, ##ctx)		\
	FN(redirect_neigh, 152, ##ctx)			\
	FN(per_cpu_ptr, 153, ##ctx)			\
	FN(this_cpu_ptr, 154, ##ctx)			\
	FN(redirect_peer, 155, ##ctx)			\
	FN(task_storage_get, 156, ##ctx)		\
	FN(task_storage_delete, 157, ##ctx)		\
	FN(get_current_task_btf, 158, ##ctx)		\
	FN(bprm_opts_set, 159, ##ctx)			\
	FN(ktime_get_coarse_ns, 160, ##ctx)		\
	FN(ima_inode_hash, 161, ##ctx)			\
	FN(sock_from_file, 162, ##ctx)			\
	FN(check_mtu, 163, ##ctx)			\
	FN(for_each_map_elem, 164, ##ctx)		\
	FN(snprintf, 165, ##ctx)			\
	FN(sys_bpf, 166, ##ctx)				\
	FN(btf_find_by_name_kind, 167, ##ctx)		\
	FN(sys_close, 168, ##ctx)			\
	FN(timer_init, 169, ##ctx)			\
	FN(timer_set_callback, 170, ##ctx)		\
	FN(timer_start, 171, ##ctx)			\
	FN(timer_cancel, 172, ##ctx)			\
	FN(get_func_ip, 173, ##ctx)			\
	FN(get_attach_cookie, 174, ##ctx)		\
	FN(task_pt_regs, 175, ##ctx)			\
	FN(get_branch_snapshot, 176, ##ctx)		\
	FN(trace_vprintk, 177, ##ctx)			\
	FN(skc_to_unix_sock, 178, ##ctx)		\
	FN(kallsyms_lookup_name, 179, ##ctx)		\
	FN(find_vma, 180, ##ctx)			\
	FN(loop, 181, ##ctx)				\
	FN(strncmp, 182, ##ctx)				\
	FN(get_func_arg, 183, ##ctx)			\
	FN(get_func_ret, 184, ##ctx)			\
	FN(get_func_arg_cnt, 185, ##ctx)		\
	FN(get_retval, 186, ##ctx)			\
	FN(set_retval, 187, ##ctx)			\
	FN(xdp_get_buff_len, 188, ##ctx)		\
	FN(xdp_load_bytes, 189, ##ctx)			\
	FN(xdp_store_bytes, 190, ##ctx)			\
	FN(copy_from_user_task, 191, ##ctx)		\
	FN(skb_set_tstamp, 192, ##ctx)			\
	FN(ima_file_hash, 193, ##ctx)			\
	FN(kptr_xchg, 194, ##ctx)			\
	FN(map_lookup_percpu_elem, 195, ##ctx)		\
	FN(skc_to_mptcp_sock, 196, ##ctx)		\
	FN(dynptr_from_mem, 197, ##ctx)			\
	FN(ringbuf_reserve_dynptr, 198, ##ctx)		\
	FN(ringbuf_submit_dynptr, 199, ##ctx)		\
	FN(ringbuf_discard_dynptr, 200, ##ctx)		\
	FN(dynptr_read, 201, ##ctx)			\
	FN(dynptr_write, 202, ##ctx)			\
	FN(dynptr_data, 203, ##ctx)			\
	FN(tcp_raw_gen_syncookie_ipv4, 204, ##ctx)	\
	FN(tcp_raw_gen_syncookie_ipv6, 205, ##ctx)	\
	FN(tcp_raw_check_syncookie_ipv4, 206, ##ctx)	\
	FN(tcp_raw_check_syncookie_ipv6, 207, ##ctx)	\
	FN(ktime_get_tai_ns, 208, ##ctx)		\
	FN(user_ringbuf_drain, 209, ##ctx)		\
	FN(cgrp_storage_get, 210, ##ctx)		\
	FN(cgrp_storage_delete, 211, ##ctx)		\
	/* This helper list is effectively frozen. If you are trying to	\
	 * add a new helper, you should add a kfunc instead which has	\
	 * less stability guarantees. See Documentation/bpf/kfuncs.rst	\
	 */

/* backwards-compatibility macros for users of __BPF_FUNC_MAPPER that don't
 * know or care about integer value that is now passed as second argument
 */
#define __BPF_FUNC_MAPPER_APPLY(name, value, FN) FN(name),
#define __BPF_FUNC_MAPPER(FN) ___BPF_FUNC_MAPPER(__BPF_FUNC_MAPPER_APPLY, FN)

/* integer value in 'imm' field of BPF_CALL instruction selects which helper
 * function eBPF program intends to call
 */
#define __BPF_ENUM_FN(x, y) BPF_FUNC_ ## x = y,
enum bpf_func_id {
	___BPF_FUNC_MAPPER(__BPF_ENUM_FN)
	__BPF_FUNC_MAX_ID,
};
#undef __BPF_ENUM_FN

/* All flags used by eBPF helper functions, placed here. */

/* BPF_FUNC_skb_store_bytes flags. */
enum {
	BPF_F_RECOMPUTE_CSUM		= (1ULL << 0),
	BPF_F_INVALIDATE_HASH		= (1ULL << 1),
};

/* BPF_FUNC_l3_csum_replace and BPF_FUNC_l4_csum_replace flags.
 * First 4 bits are for passing the header field size.
 */
enum {
	BPF_F_HDR_FIELD_MASK		= 0xfULL,
};

/* BPF_FUNC_l4_csum_replace flags. */
enum {
	BPF_F_PSEUDO_HDR		= (1ULL << 4),
	BPF_F_MARK_MANGLED_0		= (1ULL << 5),
	BPF_F_MARK_ENFORCE		= (1ULL << 6),
	BPF_F_IPV6			= (1ULL << 7),
};

/* BPF_FUNC_skb_set_tunnel_key and BPF_FUNC_skb_get_tunnel_key flags. */
enum {
	BPF_F_TUNINFO_IPV6		= (1ULL << 0),
};

/* flags for both BPF_FUNC_get_stackid and BPF_FUNC_get_stack. */
enum {
	BPF_F_SKIP_FIELD_MASK		= 0xffULL,
	BPF_F_USER_STACK		= (1ULL << 8),
/* flags used by BPF_FUNC_get_stackid only. */
	BPF_F_FAST_STACK_CMP		= (1ULL << 9),
	BPF_F_REUSE_STACKID		= (1ULL << 10),
/* flags used by BPF_FUNC_get_stack only. */
	BPF_F_USER_BUILD_ID		= (1ULL << 11),
};

/* BPF_FUNC_skb_set_tunnel_key flags. */
enum {
	BPF_F_ZERO_CSUM_TX		= (1ULL << 1),
	BPF_F_DONT_FRAGMENT		= (1ULL << 2),
	BPF_F_SEQ_NUMBER		= (1ULL << 3),
	BPF_F_NO_TUNNEL_KEY		= (1ULL << 4),
};

/* BPF_FUNC_skb_get_tunnel_key flags. */
enum {
	BPF_F_TUNINFO_FLAGS		= (1ULL << 4),
};

/* BPF_FUNC_perf_event_output, BPF_FUNC_perf_event_read and
 * BPF_FUNC_perf_event_read_value flags.
 */
enum {
	BPF_F_INDEX_MASK		= 0xffffffffULL,
	BPF_F_CURRENT_CPU		= BPF_F_INDEX_MASK,
/* BPF_FUNC_perf_event_output for sk_buff input context. */
	BPF_F_CTXLEN_MASK		= (0xfffffULL << 32),
};

/* Current network namespace */
enum {
	BPF_F_CURRENT_NETNS		= (-1L),
};

/* BPF_FUNC_csum_level level values. */
enum {
	BPF_CSUM_LEVEL_QUERY,
	BPF_CSUM_LEVEL_INC,
	BPF_CSUM_LEVEL_DEC,
	BPF_CSUM_LEVEL_RESET,
};

/* BPF_FUNC_skb_adjust_room flags. */
enum {
	BPF_F_ADJ_ROOM_FIXED_GSO	= (1ULL << 0),
	BPF_F_ADJ_ROOM_ENCAP_L3_IPV4	= (1ULL << 1),
	BPF_F_ADJ_ROOM_ENCAP_L3_IPV6	= (1ULL << 2),
	BPF_F_ADJ_ROOM_ENCAP_L4_GRE	= (1ULL << 3),
	BPF_F_ADJ_ROOM_ENCAP_L4_UDP	= (1ULL << 4),
	BPF_F_ADJ_ROOM_NO_CSUM_RESET	= (1ULL << 5),
	BPF_F_ADJ_ROOM_ENCAP_L2_ETH	= (1ULL << 6),
	BPF_F_ADJ_ROOM_DECAP_L3_IPV4	= (1ULL << 7),
	BPF_F_ADJ_ROOM_DECAP_L3_IPV6	= (1ULL << 8),
};

enum {
	BPF_ADJ_ROOM_ENCAP_L2_MASK	= 0xff,
	BPF_ADJ_ROOM_ENCAP_L2_SHIFT	= 56,
};

#define BPF_F_ADJ_ROOM_ENCAP_L2(len)	(((__u64)len & \
					  BPF_ADJ_ROOM_ENCAP_L2_MASK) \
					 << BPF_ADJ_ROOM_ENCAP_L2_SHIFT)

/* BPF_FUNC_sysctl_get_name flags. */
enum {
	BPF_F_SYSCTL_BASE_NAME		= (1ULL << 0),
};

/* BPF_FUNC_<kernel_obj>_storage_get flags */
enum {
	BPF_LOCAL_STORAGE_GET_F_CREATE	= (1ULL << 0),
	/* BPF_SK_STORAGE_GET_F_CREATE is only kept for backward compatibility
	 * and BPF_LOCAL_STORAGE_GET_F_CREATE must be used instead.
	 */
	BPF_SK_STORAGE_GET_F_CREATE  = BPF_LOCAL_STORAGE_GET_F_CREATE,
};

/* BPF_FUNC_read_branch_records flags. */
enum {
	BPF_F_GET_BRANCH_RECORDS_SIZE	= (1ULL << 0),
};

/* BPF_FUNC_bpf_ringbuf_commit, BPF_FUNC_bpf_ringbuf_discard, and
 * BPF_FUNC_bpf_ringbuf_output flags.
 */
enum {
	BPF_RB_NO_WAKEUP		= (1ULL << 0),
	BPF_RB_FORCE_WAKEUP		= (1ULL << 1),
};

/* BPF_FUNC_bpf_ringbuf_query flags */
enum {
	BPF_RB_AVAIL_DATA = 0,
	BPF_RB_RING_SIZE = 1,
	BPF_RB_CONS_POS = 2,
	BPF_RB_PROD_POS = 3,
};

/* BPF ring buffer constants */
enum {
	BPF_RINGBUF_BUSY_BIT		= (1U << 31),
	BPF_RINGBUF_DISCARD_BIT		= (1U << 30),
	BPF_RINGBUF_HDR_SZ		= 8,
};

/* BPF_FUNC_sk_assign flags in bpf_sk_lookup context. */
enum {
	BPF_SK_LOOKUP_F_REPLACE		= (1ULL << 0),
	BPF_SK_LOOKUP_F_NO_REUSEPORT	= (1ULL << 1),
};

/* Mode for BPF_FUNC_skb_adjust_room helper. */
enum bpf_adj_room_mode {
	BPF_ADJ_ROOM_NET,
	BPF_ADJ_ROOM_MAC,
};

/* Mode for BPF_FUNC_skb_load_bytes_relative helper. */
enum bpf_hdr_start_off {
	BPF_HDR_START_MAC,
	BPF_HDR_START_NET,
};

/* Encapsulation type for BPF_FUNC_lwt_push_encap helper. */
enum bpf_lwt_encap_mode {
	BPF_LWT_ENCAP_SEG6,
	BPF_LWT_ENCAP_SEG6_INLINE,
	BPF_LWT_ENCAP_IP,
};

/* Flags for bpf_bprm_opts_set helper */
enum {
	BPF_F_BPRM_SECUREEXEC	= (1ULL << 0),
};

/* Flags for bpf_redirect and bpf_redirect_map helpers */
enum {
	BPF_F_INGRESS		= (1ULL << 0), /* used for skb path */
	BPF_F_BROADCAST		= (1ULL << 3), /* used for XDP path */
	BPF_F_EXCLUDE_INGRESS	= (1ULL << 4), /* used for XDP path */
#define BPF_F_REDIRECT_FLAGS (BPF_F_INGRESS | BPF_F_BROADCAST | BPF_F_EXCLUDE_INGRESS)
};

#define __bpf_md_ptr(type, name)	\
union {					\
	type name;			\
	__u64 :64;			\
} __attribute__((aligned(8)))

/* The enum used in skb->tstamp_type. It specifies the clock type
 * of the time stored in the skb->tstamp.
 */
enum {
	BPF_SKB_TSTAMP_UNSPEC = 0,		/* DEPRECATED */
	BPF_SKB_TSTAMP_DELIVERY_MONO = 1,	/* DEPRECATED */
	BPF_SKB_CLOCK_REALTIME = 0,
	BPF_SKB_CLOCK_MONOTONIC = 1,
	BPF_SKB_CLOCK_TAI = 2,
	/* For any future BPF_SKB_CLOCK_* that the bpf prog cannot handle,
	 * the bpf prog can try to deduce it by ingress/egress/skb->sk->sk_clockid.
	 */
};

/* user accessible mirror of in-kernel sk_buff.
 * new fields can only be added to the end of this structure
 */
struct __sk_buff {
	__u32 len;
	__u32 pkt_type;
	__u32 mark;
	__u32 queue_mapping;
	__u32 protocol;
	__u32 vlan_present;
	__u32 vlan_tci;
	__u32 vlan_proto;
	__u32 priority;
	__u32 ingress_ifindex;
	__u32 ifindex;
	__u32 tc_index;
	__u32 cb[5];
	__u32 hash;
	__u32 tc_classid;
	__u32 data;
	__u32 data_end;
	__u32 napi_id;

	/* Accessed by BPF_PROG_TYPE_sk_skb types from here to ... */
	__u32 family;
	__u32 remote_ip4;	/* Stored in network byte order */
	__u32 local_ip4;	/* Stored in network byte order */
	__u32 remote_ip6[4];	/* Stored in network byte order */
	__u32 local_ip6[4];	/* Stored in network byte order */
	__u32 remote_port;	/* Stored in network byte order */
	__u32 local_port;	/* stored in host byte order */
	/* ... here. */

	__u32 data_meta;
	__bpf_md_ptr(struct bpf_flow_keys *, flow_keys);
	__u64 tstamp;
	__u32 wire_len;
	__u32 gso_segs;
	__bpf_md_ptr(struct bpf_sock *, sk);
	__u32 gso_size;
	__u8  tstamp_type;
	__u32 :24;		/* Padding, future use. */
	__u64 hwtstamp;
};

struct bpf_tunnel_key {
	__u32 tunnel_id;
	union {
		__u32 remote_ipv4;
		__u32 remote_ipv6[4];
	};
	__u8 tunnel_tos;
	__u8 tunnel_ttl;
	union {
		__u16 tunnel_ext;	/* compat */
		__be16 tunnel_flags;
	};
	__u32 tunnel_label;
	union {
		__u32 local_ipv4;
		__u32 local_ipv6[4];
	};
};

/* user accessible mirror of in-kernel xfrm_state.
 * new fields can only be added to the end of this structure
 */
struct bpf_xfrm_state {
	__u32 reqid;
	__u32 spi;	/* Stored in network byte order */
	__u16 family;
	__u16 ext;	/* Padding, future use. */
	union {
		__u32 remote_ipv4;	/* Stored in network byte order */
		__u32 remote_ipv6[4];	/* Stored in network byte order */
	};
};

/* Generic BPF return codes which all BPF program types may support.
 * The values are binary compatible with their TC_ACT_* counter-part to
 * provide backwards compatibility with existing SCHED_CLS and SCHED_ACT
 * programs.
 *
 * XDP is handled seprately, see XDP_*.
 */
enum bpf_ret_code {
	BPF_OK = 0,
	/* 1 reserved */
	BPF_DROP = 2,
	/* 3-6 reserved */
	BPF_REDIRECT = 7,
	/* >127 are reserved for prog type specific return codes.
	 *
	 * BPF_LWT_REROUTE: used by BPF_PROG_TYPE_LWT_IN and
	 *    BPF_PROG_TYPE_LWT_XMIT to indicate that skb had been
	 *    changed and should be routed based on its new L3 header.
	 *    (This is an L3 redirect, as opposed to L2 redirect
	 *    represented by BPF_REDIRECT above).
	 */
	BPF_LWT_REROUTE = 128,
	/* BPF_FLOW_DISSECTOR_CONTINUE: used by BPF_PROG_TYPE_FLOW_DISSECTOR
	 *   to indicate that no custom dissection was performed, and
	 *   fallback to standard dissector is requested.
	 */
	BPF_FLOW_DISSECTOR_CONTINUE = 129,
};

struct bpf_sock {
	__u32 bound_dev_if;
	__u32 family;
	__u32 type;
	__u32 protocol;
	__u32 mark;
	__u32 priority;
	/* IP address also allows 1 and 2 bytes access */
	__u32 src_ip4;
	__u32 src_ip6[4];
	__u32 src_port;		/* host byte order */
	__be16 dst_port;	/* network byte order */
	__u16 :16;		/* zero padding */
	__u32 dst_ip4;
	__u32 dst_ip6[4];
	__u32 state;
	__s32 rx_queue_mapping;
};

struct bpf_tcp_sock {
	__u32 snd_cwnd;		/* Sending congestion window		*/
	__u32 srtt_us;		/* smoothed round trip time << 3 in usecs */
	__u32 rtt_min;
	__u32 snd_ssthresh;	/* Slow start size threshold		*/
	__u32 rcv_nxt;		/* What we want to receive next		*/
	__u32 snd_nxt;		/* Next sequence we send		*/
	__u32 snd_una;		/* First byte we want an ack for	*/
	__u32 mss_cache;	/* Cached effective mss, not including SACKS */
	__u32 ecn_flags;	/* ECN status bits.			*/
	__u32 rate_delivered;	/* saved rate sample: packets delivered */
	__u32 rate_interval_us;	/* saved rate sample: time elapsed */
	__u32 packets_out;	/* Packets which are "in flight"	*/
	__u32 retrans_out;	/* Retransmitted packets out		*/
	__u32 total_retrans;	/* Total retransmits for entire connection */
	__u32 segs_in;		/* RFC4898 tcpEStatsPerfSegsIn
				 * total number of segments in.
				 */
	__u32 data_segs_in;	/* RFC4898 tcpEStatsPerfDataSegsIn
				 * total number of data segments in.
				 */
	__u32 segs_out;		/* RFC4898 tcpEStatsPerfSegsOut
				 * The total number of segments sent.
				 */
	__u32 data_segs_out;	/* RFC4898 tcpEStatsPerfDataSegsOut
				 * total number of data segments sent.
				 */
	__u32 lost_out;		/* Lost packets			*/
	__u32 sacked_out;	/* SACK'd packets			*/
	__u64 bytes_received;	/* RFC4898 tcpEStatsAppHCThruOctetsReceived
				 * sum(delta(rcv_nxt)), or how many bytes
				 * were acked.
				 */
	__u64 bytes_acked;	/* RFC4898 tcpEStatsAppHCThruOctetsAcked
				 * sum(delta(snd_una)), or how many bytes
				 * were acked.
				 */
	__u32 dsack_dups;	/* RFC4898 tcpEStatsStackDSACKDups
				 * total number of DSACK blocks received
				 */
	__u32 delivered;	/* Total data packets delivered incl. rexmits */
	__u32 delivered_ce;	/* Like the above but only ECE marked packets */
	__u32 icsk_retransmits;	/* Number of unrecovered [RTO] timeouts */
};

struct bpf_sock_tuple {
	union {
		struct {
			__be32 saddr;
			__be32 daddr;
			__be16 sport;
			__be16 dport;
		} ipv4;
		struct {
			__be32 saddr[4];
			__be32 daddr[4];
			__be16 sport;
			__be16 dport;
		} ipv6;
	};
};

/* (Simplified) user return codes for tcx prog type.
 * A valid tcx program must return one of these defined values. All other
 * return codes are reserved for future use. Must remain compatible with
 * their TC_ACT_* counter-parts. For compatibility in behavior, unknown
 * return codes are mapped to TCX_NEXT.
 */
enum tcx_action_base {
	TCX_NEXT	= -1,
	TCX_PASS	= 0,
	TCX_DROP	= 2,
	TCX_REDIRECT	= 7,
};

struct bpf_xdp_sock {
	__u32 queue_id;
};

#define XDP_PACKET_HEADROOM 256

/* User return codes for XDP prog type.
 * A valid XDP program must return one of these defined values. All other
 * return codes are reserved for future use. Unknown return codes will
 * result in packet drops and a warning via bpf_warn_invalid_xdp_action().
 */
enum xdp_action {
	XDP_ABORTED = 0,
	XDP_DROP,
	XDP_PASS,
	XDP_TX,
	XDP_REDIRECT,
};

/* user accessible metadata for XDP packet hook
 * new fields must be added to the end of this structure
 */
struct xdp_md {
	__u32 data;
	__u32 data_end;
	__u32 data_meta;
	/* Below access go through struct xdp_rxq_info */
	__u32 ingress_ifindex; /* rxq->dev->ifindex */
	__u32 rx_queue_index;  /* rxq->queue_index  */

	__u32 egress_ifindex;  /* txq->dev->ifindex */
};

/* DEVMAP map-value layout
 *
 * The struct data-layout of map-value is a configuration interface.
 * New members can only be added to the end of this structure.
 */
struct bpf_devmap_val {
	__u32 ifindex;   /* device index */
	union {
		int   fd;  /* prog fd on map write */
		__u32 id;  /* prog id on map read */
	} bpf_prog;
};

/* CPUMAP map-value layout
 *
 * The struct data-layout of map-value is a configuration interface.
 * New members can only be added to the end of this structure.
 */
struct bpf_cpumap_val {
	__u32 qsize;	/* queue size to remote target CPU */
	union {
		int   fd;	/* prog fd on map write */
		__u32 id;	/* prog id on map read */
	} bpf_prog;
};

enum sk_action {
	SK_DROP = 0,
	SK_PASS,
};

/* user accessible metadata for SK_MSG packet hook, new fields must
 * be added to the end of this structure
 */
struct sk_msg_md {
	__bpf_md_ptr(void *, data);
	__bpf_md_ptr(void *, data_end);

	__u32 family;
	__u32 remote_ip4;	/* Stored in network byte order */
	__u32 local_ip4;	/* Stored in network byte order */
	__u32 remote_ip6[4];	/* Stored in network byte order */
	__u32 local_ip6[4];	/* Stored in network byte order */
	__u32 remote_port;	/* Stored in network byte order */
	__u32 local_port;	/* stored in host byte order */
	__u32 size;		/* Total size of sk_msg */

	__bpf_md_ptr(struct bpf_sock *, sk); /* current socket */
};

struct sk_reuseport_md {
	/*
	 * Start of directly accessible data. It begins from
	 * the tcp/udp header.
	 */
	__bpf_md_ptr(void *, data);
	/* End of directly accessible data */
	__bpf_md_ptr(void *, data_end);
	/*
	 * Total length of packet (starting from the tcp/udp header).
	 * Note that the directly accessible bytes (data_end - data)
	 * could be less than this "len".  Those bytes could be
	 * indirectly read by a helper "bpf_skb_load_bytes()".
	 */
	__u32 len;
	/*
	 * Eth protocol in the mac header (network byte order). e.g.
	 * ETH_P_IP(0x0800) and ETH_P_IPV6(0x86DD)
	 */
	__u32 eth_protocol;
	__u32 ip_protocol;	/* IP protocol. e.g. IPPROTO_TCP, IPPROTO_UDP */
	__u32 bind_inany;	/* Is sock bound to an INANY address? */
	__u32 hash;		/* A hash of the packet 4 tuples */
	/* When reuse->migrating_sk is NULL, it is selecting a sk for the
	 * new incoming connection request (e.g. selecting a listen sk for
	 * the received SYN in the TCP case).  reuse->sk is one of the sk
	 * in the reuseport group. The bpf prog can use reuse->sk to learn
	 * the local listening ip/port without looking into the skb.
	 *
	 * When reuse->migrating_sk is not NULL, reuse->sk is closed and
	 * reuse->migrating_sk is the socket that needs to be migrated
	 * to another listening socket.  migrating_sk could be a fullsock
	 * sk that is fully established or a reqsk that is in-the-middle
	 * of 3-way handshake.
	 */
	__bpf_md_ptr(struct bpf_sock *, sk);
	__bpf_md_ptr(struct bpf_sock *, migrating_sk);
};

#define BPF_TAG_SIZE	8

struct bpf_prog_info {
	__u32 type;
	__u32 id;
	__u8  tag[BPF_TAG_SIZE];
	__u32 jited_prog_len;
	__u32 xlated_prog_len;
	__aligned_u64 jited_prog_insns;
	__aligned_u64 xlated_prog_insns;
	__u64 load_time;	/* ns since boottime */
	__u32 created_by_uid;
	__u32 nr_map_ids;
	__aligned_u64 map_ids;
	char name[BPF_OBJ_NAME_LEN];
	__u32 ifindex;
	__u32 gpl_compatible:1;
	__u32 :31; /* alignment pad */
	__u64 netns_dev;
	__u64 netns_ino;
	__u32 nr_jited_ksyms;
	__u32 nr_jited_func_lens;
	__aligned_u64 jited_ksyms;
	__aligned_u64 jited_func_lens;
	__u32 btf_id;
	__u32 func_info_rec_size;
	__aligned_u64 func_info;
	__u32 nr_func_info;
	__u32 nr_line_info;
	__aligned_u64 line_info;
	__aligned_u64 jited_line_info;
	__u32 nr_jited_line_info;
	__u32 line_info_rec_size;
	__u32 jited_line_info_rec_size;
	__u32 nr_prog_tags;
	__aligned_u64 prog_tags;
	__u64 run_time_ns;
	__u64 run_cnt;
	__u64 recursion_misses;
	__u32 verified_insns;
	__u32 attach_btf_obj_id;
	__u32 attach_btf_id;
} __attribute__((aligned(8)));

struct bpf_map_info {
	__u32 type;
	__u32 id;
	__u32 key_size;
	__u32 value_size;
	__u32 max_entries;
	__u32 map_flags;
	char  name[BPF_OBJ_NAME_LEN];
	__u32 ifindex;
	__u32 btf_vmlinux_value_type_id;
	__u64 netns_dev;
	__u64 netns_ino;
	__u32 btf_id;
	__u32 btf_key_type_id;
	__u32 btf_value_type_id;
	__u32 btf_vmlinux_id;
	__u64 map_extra;
} __attribute__((aligned(8)));

struct bpf_btf_info {
	__aligned_u64 btf;
	__u32 btf_size;
	__u32 id;
	__aligned_u64 name;
	__u32 name_len;
	__u32 kernel_btf;
} __attribute__((aligned(8)));

struct bpf_link_info {
	__u32 type;
	__u32 id;
	__u32 prog_id;
	union {
		struct {
			__aligned_u64 tp_name; /* in/out: tp_name buffer ptr */
			__u32 tp_name_len;     /* in/out: tp_name buffer len */
			__u32 :32;
			__u64 cookie;
		} raw_tracepoint;
		struct {
			__u32 attach_type;
			__u32 target_obj_id; /* prog_id for PROG_EXT, otherwise btf object id */
			__u32 target_btf_id; /* BTF type id inside the object */
			__u32 :32;
			__u64 cookie;
		} tracing;
		struct {
			__u64 cgroup_id;
			__u32 attach_type;
		} cgroup;
		struct {
			__aligned_u64 target_name; /* in/out: target_name buffer ptr */
			__u32 target_name_len;	   /* in/out: target_name buffer len */

			/* If the iter specific field is 32 bits, it can be put
			 * in the first or second union. Otherwise it should be
			 * put in the second union.
			 */
			union {
				struct {
					__u32 map_id;
				} map;
			};
			union {
				struct {
					__u64 cgroup_id;
					__u32 order;
				} cgroup;
				struct {
					__u32 tid;
					__u32 pid;
				} task;
			};
		} iter;
		struct  {
			__u32 netns_ino;
			__u32 attach_type;
		} netns;
		struct {
			__u32 ifindex;
		} xdp;
		struct {
			__u32 map_id;
		} struct_ops;
		struct {
			__u32 pf;
			__u32 hooknum;
			__s32 priority;
			__u32 flags;
		} netfilter;
		struct {
			__aligned_u64 addrs;
			__u32 count; /* in/out: kprobe_multi function count */
			__u32 flags;
			__u64 missed;
			__aligned_u64 cookies;
		} kprobe_multi;
		struct {
			__aligned_u64 path;
			__aligned_u64 offsets;
			__aligned_u64 ref_ctr_offsets;
			__aligned_u64 cookies;
			__u32 path_size; /* in/out: real path size on success, including zero byte */
			__u32 count; /* in/out: uprobe_multi offsets/ref_ctr_offsets/cookies count */
			__u32 flags;
			__u32 pid;
		} uprobe_multi;
		struct {
			__u32 type; /* enum bpf_perf_event_type */
			__u32 :32;
			union {
				struct {
					__aligned_u64 file_name; /* in/out */
					__u32 name_len;
					__u32 offset; /* offset from file_name */
					__u64 cookie;
					__u64 ref_ctr_offset;
				} uprobe; /* BPF_PERF_EVENT_UPROBE, BPF_PERF_EVENT_URETPROBE */
				struct {
					__aligned_u64 func_name; /* in/out */
					__u32 name_len;
					__u32 offset; /* offset from func_name */
					__u64 addr;
					__u64 missed;
					__u64 cookie;
				} kprobe; /* BPF_PERF_EVENT_KPROBE, BPF_PERF_EVENT_KRETPROBE */
				struct {
					__aligned_u64 tp_name;   /* in/out */
					__u32 name_len;
					__u32 :32;
					__u64 cookie;
				} tracepoint; /* BPF_PERF_EVENT_TRACEPOINT */
				struct {
					__u64 config;
					__u32 type;
					__u32 :32;
					__u64 cookie;
				} event; /* BPF_PERF_EVENT_EVENT */
			};
		} perf_event;
		struct {
			__u32 ifindex;
			__u32 attach_type;
		} tcx;
		struct {
			__u32 ifindex;
			__u32 attach_type;
		} netkit;
		struct {
			__u32 map_id;
			__u32 attach_type;
		} sockmap;
	};
} __attribute__((aligned(8)));

struct bpf_token_info {
	__u64 allowed_cmds;
	__u64 allowed_maps;
	__u64 allowed_progs;
	__u64 allowed_attachs;
} __attribute__((aligned(8)));

/* User bpf_sock_addr struct to access socket fields and sockaddr struct passed
 * by user and intended to be used by socket (e.g. to bind to, depends on
 * attach type).
 */
struct bpf_sock_addr {
	__u32 user_family;	/* Allows 4-byte read, but no write. */
	__u32 user_ip4;		/* Allows 1,2,4-byte read and 4-byte write.
				 * Stored in network byte order.
				 */
	__u32 user_ip6[4];	/* Allows 1,2,4,8-byte read and 4,8-byte write.
				 * Stored in network byte order.
				 */
	__u32 user_port;	/* Allows 1,2,4-byte read and 4-byte write.
				 * Stored in network byte order
				 */
	__u32 family;		/* Allows 4-byte read, but no write */
	__u32 type;		/* Allows 4-byte read, but no write */
	__u32 protocol;		/* Allows 4-byte read, but no write */
	__u32 msg_src_ip4;	/* Allows 1,2,4-byte read and 4-byte write.
				 * Stored in network byte order.
				 */
	__u32 msg_src_ip6[4];	/* Allows 1,2,4,8-byte read and 4,8-byte write.
				 * Stored in network byte order.
				 */
	__bpf_md_ptr(struct bpf_sock *, sk);
};

/* User bpf_sock_ops struct to access socket values and specify request ops
 * and their replies.
 * Some of this fields are in network (bigendian) byte order and may need
 * to be converted before use (bpf_ntohl() defined in samples/bpf/bpf_endian.h).
 * New fields can only be added at the end of this structure
 */
struct bpf_sock_ops {
	__u32 op;
	union {
		__u32 args[4];		/* Optionally passed to bpf program */
		__u32 reply;		/* Returned by bpf program	    */
		__u32 replylong[4];	/* Optionally returned by bpf prog  */
	};
	__u32 family;
	__u32 remote_ip4;	/* Stored in network byte order */
	__u32 local_ip4;	/* Stored in network byte order */
	__u32 remote_ip6[4];	/* Stored in network byte order */
	__u32 local_ip6[4];	/* Stored in network byte order */
	__u32 remote_port;	/* Stored in network byte order */
	__u32 local_port;	/* stored in host byte order */
	__u32 is_fullsock;	/* Some TCP fields are only valid if
				 * there is a full socket. If not, the
				 * fields read as zero.
				 */
	__u32 snd_cwnd;
	__u32 srtt_us;		/* Averaged RTT << 3 in usecs */
	__u32 bpf_sock_ops_cb_flags; /* flags defined in uapi/linux/tcp.h */
	__u32 state;
	__u32 rtt_min;
	__u32 snd_ssthresh;
	__u32 rcv_nxt;
	__u32 snd_nxt;
	__u32 snd_una;
	__u32 mss_cache;
	__u32 ecn_flags;
	__u32 rate_delivered;
	__u32 rate_interval_us;
	__u32 packets_out;
	__u32 retrans_out;
	__u32 total_retrans;
	__u32 segs_in;
	__u32 data_segs_in;
	__u32 segs_out;
	__u32 data_segs_out;
	__u32 lost_out;
	__u32 sacked_out;
	__u32 sk_txhash;
	__u64 bytes_received;
	__u64 bytes_acked;
	__bpf_md_ptr(struct bpf_sock *, sk);
	/* [skb_data, skb_data_end) covers the whole TCP header.
	 *
	 * BPF_SOCK_OPS_PARSE_HDR_OPT_CB: The packet received
	 * BPF_SOCK_OPS_HDR_OPT_LEN_CB:   Not useful because the
	 *                                header has not been written.
	 * BPF_SOCK_OPS_WRITE_HDR_OPT_CB: The header and options have
	 *				  been written so far.
	 * BPF_SOCK_OPS_ACTIVE_ESTABLISHED_CB:  The SYNACK that concludes
	 *					the 3WHS.
	 * BPF_SOCK_OPS_PASSIVE_ESTABLISHED_CB: The ACK that concludes
	 *					the 3WHS.
	 *
	 * bpf_load_hdr_opt() can also be used to read a particular option.
	 */
	__bpf_md_ptr(void *, skb_data);
	__bpf_md_ptr(void *, skb_data_end);
	__u32 skb_len;		/* The total length of a packet.
				 * It includes the header, options,
				 * and payload.
				 */
	__u32 skb_tcp_flags;	/* tcp_flags of the header.  It provides
				 * an easy way to check for tcp_flags
				 * without parsing skb_data.
				 *
				 * In particular, the skb_tcp_flags
				 * will still be available in
				 * BPF_SOCK_OPS_HDR_OPT_LEN even though
				 * the outgoing header has not
				 * been written yet.
				 */
	__u64 skb_hwtstamp;
};

/* Definitions for bpf_sock_ops_cb_flags */
enum {
	BPF_SOCK_OPS_RTO_CB_FLAG	= (1<<0),
	BPF_SOCK_OPS_RETRANS_CB_FLAG	= (1<<1),
	BPF_SOCK_OPS_STATE_CB_FLAG	= (1<<2),
	BPF_SOCK_OPS_RTT_CB_FLAG	= (1<<3),
	/* Call bpf for all received TCP headers.  The bpf prog will be
	 * called under sock_ops->op == BPF_SOCK_OPS_PARSE_HDR_OPT_CB
	 *
	 * Please refer to the comment in BPF_SOCK_OPS_PARSE_HDR_OPT_CB
	 * for the header option related helpers that will be useful
	 * to the bpf programs.
	 *
	 * It could be used at the client/active side (i.e. connect() side)
	 * when the server told it that the server was in syncookie
	 * mode and required the active side to resend the bpf-written
	 * options.  The active side can keep writing the bpf-options until
	 * it received a valid packet from the server side to confirm
	 * the earlier packet (and options) has been received.  The later
	 * example patch is using it like this at the active side when the
	 * server is in syncookie mode.
	 *
	 * The bpf prog will usually turn this off in the common cases.
	 */
	BPF_SOCK_OPS_PARSE_ALL_HDR_OPT_CB_FLAG	= (1<<4),
	/* Call bpf when kernel has received a header option that
	 * the kernel cannot handle.  The bpf prog will be called under
	 * sock_ops->op == BPF_SOCK_OPS_PARSE_HDR_OPT_CB.
	 *
	 * Please refer to the comment in BPF_SOCK_OPS_PARSE_HDR_OPT_CB
	 * for the header option related helpers that will be useful
	 * to the bpf programs.
	 */
	BPF_SOCK_OPS_PARSE_UNKNOWN_HDR_OPT_CB_FLAG = (1<<5),
	/* Call bpf when the kernel is writing header options for the
	 * outgoing packet.  The bpf prog will first be called
	 * to reserve space in a skb under
	 * sock_ops->op == BPF_SOCK_OPS_HDR_OPT_LEN_CB.  Then
	 * the bpf prog will be called to write the header option(s)
	 * under sock_ops->op == BPF_SOCK_OPS_WRITE_HDR_OPT_CB.
	 *
	 * Please refer to the comment in BPF_SOCK_OPS_HDR_OPT_LEN_CB
	 * and BPF_SOCK_OPS_WRITE_HDR_OPT_CB for the header option
	 * related helpers that will be useful to the bpf programs.
	 *
	 * The kernel gets its chance to reserve space and write
	 * options first before the BPF program does.
	 */
	BPF_SOCK_OPS_WRITE_HDR_OPT_CB_FLAG = (1<<6),
/* Mask of all currently supported cb flags */
	BPF_SOCK_OPS_ALL_CB_FLAGS       = 0x7F,
};

enum {
	SK_BPF_CB_TX_TIMESTAMPING	= 1<<0,
	SK_BPF_CB_MASK			= (SK_BPF_CB_TX_TIMESTAMPING - 1) |
					   SK_BPF_CB_TX_TIMESTAMPING
};

/* List of known BPF sock_ops operators.
 * New entries can only be added at the end
 */
enum {
	BPF_SOCK_OPS_VOID,
	BPF_SOCK_OPS_TIMEOUT_INIT,	/* Should return SYN-RTO value to use or
					 * -1 if default value should be used
					 */
	BPF_SOCK_OPS_RWND_INIT,		/* Should return initial advertized
					 * window (in packets) or -1 if default
					 * value should be used
					 */
	BPF_SOCK_OPS_TCP_CONNECT_CB,	/* Calls BPF program right before an
					 * active connection is initialized
					 */
	BPF_SOCK_OPS_ACTIVE_ESTABLISHED_CB,	/* Calls BPF program when an
						 * active connection is
						 * established
						 */
	BPF_SOCK_OPS_PASSIVE_ESTABLISHED_CB,	/* Calls BPF program when a
						 * passive connection is
						 * established
						 */
	BPF_SOCK_OPS_NEEDS_ECN,		/* If connection's congestion control
					 * needs ECN
					 */
	BPF_SOCK_OPS_BASE_RTT,		/* Get base RTT. The correct value is
					 * based on the path and may be
					 * dependent on the congestion control
					 * algorithm. In general it indicates
					 * a congestion threshold. RTTs above
					 * this indicate congestion
					 */
	BPF_SOCK_OPS_RTO_CB,		/* Called when an RTO has triggered.
					 * Arg1: value of icsk_retransmits
					 * Arg2: value of icsk_rto
					 * Arg3: whether RTO has expired
					 */
	BPF_SOCK_OPS_RETRANS_CB,	/* Called when skb is retransmitted.
					 * Arg1: sequence number of 1st byte
					 * Arg2: # segments
					 * Arg3: return value of
					 *       tcp_transmit_skb (0 => success)
					 */
	BPF_SOCK_OPS_STATE_CB,		/* Called when TCP changes state.
					 * Arg1: old_state
					 * Arg2: new_state
					 */
	BPF_SOCK_OPS_TCP_LISTEN_CB,	/* Called on listen(2), right after
					 * socket transition to LISTEN state.
					 */
	BPF_SOCK_OPS_RTT_CB,		/* Called on every RTT.
					 * Arg1: measured RTT input (mrtt)
					 * Arg2: updated srtt
					 */
	BPF_SOCK_OPS_PARSE_HDR_OPT_CB,	/* Parse the header option.
					 * It will be called to handle
					 * the packets received at
					 * an already established
					 * connection.
					 *
					 * sock_ops->skb_data:
					 * Referring to the received skb.
					 * It covers the TCP header only.
					 *
					 * bpf_load_hdr_opt() can also
					 * be used to search for a
					 * particular option.
					 */
	BPF_SOCK_OPS_HDR_OPT_LEN_CB,	/* Reserve space for writing the
					 * header option later in
					 * BPF_SOCK_OPS_WRITE_HDR_OPT_CB.
					 * Arg1: bool want_cookie. (in
					 *       writing SYNACK only)
					 *
					 * sock_ops->skb_data:
					 * Not available because no header has
					 * been	written yet.
					 *
					 * sock_ops->skb_tcp_flags:
					 * The tcp_flags of the
					 * outgoing skb. (e.g. SYN, ACK, FIN).
					 *
					 * bpf_reserve_hdr_opt() should
					 * be used to reserve space.
					 */
	BPF_SOCK_OPS_WRITE_HDR_OPT_CB,	/* Write the header options
					 * Arg1: bool want_cookie. (in
					 *       writing SYNACK only)
					 *
					 * sock_ops->skb_data:
					 * Referring to the outgoing skb.
					 * It covers the TCP header
					 * that has already been written
					 * by the kernel and the
					 * earlier bpf-progs.
					 *
					 * sock_ops->skb_tcp_flags:
					 * The tcp_flags of the outgoing
					 * skb. (e.g. SYN, ACK, FIN).
					 *
					 * bpf_store_hdr_opt() should
					 * be used to write the
					 * option.
					 *
					 * bpf_load_hdr_opt() can also
					 * be used to search for a
					 * particular option that
					 * has already been written
					 * by the kernel or the
					 * earlier bpf-progs.
					 */
	BPF_SOCK_OPS_TSTAMP_SCHED_CB,	/* Called when skb is passing
					 * through dev layer when
					 * SK_BPF_CB_TX_TIMESTAMPING
					 * feature is on.
					 */
	BPF_SOCK_OPS_TSTAMP_SND_SW_CB,	/* Called when skb is about to send
					 * to the nic when SK_BPF_CB_TX_TIMESTAMPING
					 * feature is on.
					 */
	BPF_SOCK_OPS_TSTAMP_SND_HW_CB,	/* Called in hardware phase when
					 * SK_BPF_CB_TX_TIMESTAMPING feature
					 * is on.
					 */
	BPF_SOCK_OPS_TSTAMP_ACK_CB,	/* Called when all the skbs in the
					 * same sendmsg call are acked
					 * when SK_BPF_CB_TX_TIMESTAMPING
					 * feature is on.
					 */
	BPF_SOCK_OPS_TSTAMP_SENDMSG_CB,	/* Called when every sendmsg syscall
					 * is triggered. It's used to correlate
					 * sendmsg timestamp with corresponding
					 * tskey.
					 */
};

/* List of TCP states. There is a build check in net/ipv4/tcp.c to detect
 * changes between the TCP and BPF versions. Ideally this should never happen.
 * If it does, we need to add code to convert them before calling
 * the BPF sock_ops function.
 */
enum {
	BPF_TCP_ESTABLISHED = 1,
	BPF_TCP_SYN_SENT,
	BPF_TCP_SYN_RECV,
	BPF_TCP_FIN_WAIT1,
	BPF_TCP_FIN_WAIT2,
	BPF_TCP_TIME_WAIT,
	BPF_TCP_CLOSE,
	BPF_TCP_CLOSE_WAIT,
	BPF_TCP_LAST_ACK,
	BPF_TCP_LISTEN,
	BPF_TCP_CLOSING,	/* Now a valid state */
	BPF_TCP_NEW_SYN_RECV,
	BPF_TCP_BOUND_INACTIVE,

	BPF_TCP_MAX_STATES	/* Leave at the end! */
};

enum {
	TCP_BPF_IW		= 1001,	/* Set TCP initial congestion window */
	TCP_BPF_SNDCWND_CLAMP	= 1002,	/* Set sndcwnd_clamp */
	TCP_BPF_DELACK_MAX	= 1003, /* Max delay ack in usecs */
	TCP_BPF_RTO_MIN		= 1004, /* Min delay ack in usecs */
	/* Copy the SYN pkt to optval
	 *
	 * BPF_PROG_TYPE_SOCK_OPS only.  It is similar to the
	 * bpf_getsockopt(TCP_SAVED_SYN) but it does not limit
	 * to only getting from the saved_syn.  It can either get the
	 * syn packet from:
	 *
	 * 1. the just-received SYN packet (only available when writing the
	 *    SYNACK).  It will be useful when it is not necessary to
	 *    save the SYN packet for latter use.  It is also the only way
	 *    to get the SYN during syncookie mode because the syn
	 *    packet cannot be saved during syncookie.
	 *
	 * OR
	 *
	 * 2. the earlier saved syn which was done by
	 *    bpf_setsockopt(TCP_SAVE_SYN).
	 *
	 * The bpf_getsockopt(TCP_BPF_SYN*) option will hide where the
	 * SYN packet is obtained.
	 *
	 * If the bpf-prog does not need the IP[46] header,  the
	 * bpf-prog can avoid parsing the IP header by using
	 * TCP_BPF_SYN.  Otherwise, the bpf-prog can get both
	 * IP[46] and TCP header by using TCP_BPF_SYN_IP.
	 *
	 *      >0: Total number of bytes copied
	 * -ENOSPC: Not enough space in optval. Only optlen number of
	 *          bytes is copied.
	 * -ENOENT: The SYN skb is not available now and the earlier SYN pkt
	 *	    is not saved by setsockopt(TCP_SAVE_SYN).
	 */
	TCP_BPF_SYN		= 1005, /* Copy the TCP header */
	TCP_BPF_SYN_IP		= 1006, /* Copy the IP[46] and TCP header */
	TCP_BPF_SYN_MAC         = 1007, /* Copy the MAC, IP[46], and TCP header */
	TCP_BPF_SOCK_OPS_CB_FLAGS = 1008, /* Get or Set TCP sock ops flags */
	SK_BPF_CB_FLAGS		= 1009, /* Get or set sock ops flags in socket */
};

enum {
	BPF_LOAD_HDR_OPT_TCP_SYN = (1ULL << 0),
};

/* args[0] value during BPF_SOCK_OPS_HDR_OPT_LEN_CB and
 * BPF_SOCK_OPS_WRITE_HDR_OPT_CB.
 */
enum {
	BPF_WRITE_HDR_TCP_CURRENT_MSS = 1,	/* Kernel is finding the
						 * total option spaces
						 * required for an established
						 * sk in order to calculate the
						 * MSS.  No skb is actually
						 * sent.
						 */
	BPF_WRITE_HDR_TCP_SYNACK_COOKIE = 2,	/* Kernel is in syncookie mode
						 * when sending a SYN.
						 */
};

struct bpf_perf_event_value {
	__u64 counter;
	__u64 enabled;
	__u64 running;
};

enum {
	BPF_DEVCG_ACC_MKNOD	= (1ULL << 0),
	BPF_DEVCG_ACC_READ	= (1ULL << 1),
	BPF_DEVCG_ACC_WRITE	= (1ULL << 2),
};

enum {
	BPF_DEVCG_DEV_BLOCK	= (1ULL << 0),
	BPF_DEVCG_DEV_CHAR	= (1ULL << 1),
};

struct bpf_cgroup_dev_ctx {
	/* access_type encoded as (BPF_DEVCG_ACC_* << 16) | BPF_DEVCG_DEV_* */
	__u32 access_type;
	__u32 major;
	__u32 minor;
};

struct bpf_raw_tracepoint_args {
	__u64 args[0];
};

/* DIRECT:  Skip the FIB rules and go to FIB table associated with device
 * OUTPUT:  Do lookup from egress perspective; default is ingress
 */
enum {
	BPF_FIB_LOOKUP_DIRECT  = (1U << 0),
	BPF_FIB_LOOKUP_OUTPUT  = (1U << 1),
	BPF_FIB_LOOKUP_SKIP_NEIGH = (1U << 2),
	BPF_FIB_LOOKUP_TBID    = (1U << 3),
	BPF_FIB_LOOKUP_SRC     = (1U << 4),
	BPF_FIB_LOOKUP_MARK    = (1U << 5),
};

enum {
	BPF_FIB_LKUP_RET_SUCCESS,      /* lookup successful */
	BPF_FIB_LKUP_RET_BLACKHOLE,    /* dest is blackholed; can be dropped */
	BPF_FIB_LKUP_RET_UNREACHABLE,  /* dest is unreachable; can be dropped */
	BPF_FIB_LKUP_RET_PROHIBIT,     /* dest not allowed; can be dropped */
	BPF_FIB_LKUP_RET_NOT_FWDED,    /* packet is not forwarded */
	BPF_FIB_LKUP_RET_FWD_DISABLED, /* fwding is not enabled on ingress */
	BPF_FIB_LKUP_RET_UNSUPP_LWT,   /* fwd requires encapsulation */
	BPF_FIB_LKUP_RET_NO_NEIGH,     /* no neighbor entry for nh */
	BPF_FIB_LKUP_RET_FRAG_NEEDED,  /* fragmentation required to fwd */
	BPF_FIB_LKUP_RET_NO_SRC_ADDR,  /* failed to derive IP src addr */
};

struct bpf_fib_lookup {
	/* input:  network family for lookup (AF_INET, AF_INET6)
	 * output: network family of egress nexthop
	 */
	__u8	family;

	/* set if lookup is to consider L4 data - e.g., FIB rules */
	__u8	l4_protocol;
	__be16	sport;
	__be16	dport;

	union {	/* used for MTU check */
		/* input to lookup */
		__u16	tot_len; /* L3 length from network hdr (iph->tot_len) */

		/* output: MTU value */
		__u16	mtu_result;
	} __attribute__((packed, aligned(2)));
	/* input: L3 device index for lookup
	 * output: device index from FIB lookup
	 */
	__u32	ifindex;

	union {
		/* inputs to lookup */
		__u8	tos;		/* AF_INET  */
		__be32	flowinfo;	/* AF_INET6, flow_label + priority */

		/* output: metric of fib result (IPv4/IPv6 only) */
		__u32	rt_metric;
	};

	/* input: source address to consider for lookup
	 * output: source address result from lookup
	 */
	union {
		__be32		ipv4_src;
		__u32		ipv6_src[4];  /* in6_addr; network order */
	};

	/* input to bpf_fib_lookup, ipv{4,6}_dst is destination address in
	 * network header. output: bpf_fib_lookup sets to gateway address
	 * if FIB lookup returns gateway route
	 */
	union {
		__be32		ipv4_dst;
		__u32		ipv6_dst[4];  /* in6_addr; network order */
	};

	union {
		struct {
			/* output */
			__be16	h_vlan_proto;
			__be16	h_vlan_TCI;
		};
		/* input: when accompanied with the
		 * 'BPF_FIB_LOOKUP_DIRECT | BPF_FIB_LOOKUP_TBID` flags, a
		 * specific routing table to use for the fib lookup.
		 */
		__u32	tbid;
	};

	union {
		/* input */
		struct {
			__u32	mark;   /* policy routing */
			/* 2 4-byte holes for input */
		};

		/* output: source and dest mac */
		struct {
			__u8	smac[6];	/* ETH_ALEN */
			__u8	dmac[6];	/* ETH_ALEN */
		};
	};
};

struct bpf_redir_neigh {
	/* network family for lookup (AF_INET, AF_INET6) */
	__u32 nh_family;
	/* network address of nexthop; skips fib lookup to find gateway */
	union {
		__be32		ipv4_nh;
		__u32		ipv6_nh[4];  /* in6_addr; network order */
	};
};

/* bpf_check_mtu flags*/
enum  bpf_check_mtu_flags {
	BPF_MTU_CHK_SEGS  = (1U << 0),
};

enum bpf_check_mtu_ret {
	BPF_MTU_CHK_RET_SUCCESS,      /* check and lookup successful */
	BPF_MTU_CHK_RET_FRAG_NEEDED,  /* fragmentation required to fwd */
	BPF_MTU_CHK_RET_SEGS_TOOBIG,  /* GSO re-segmentation needed to fwd */
};

enum bpf_task_fd_type {
	BPF_FD_TYPE_RAW_TRACEPOINT,	/* tp name */
	BPF_FD_TYPE_TRACEPOINT,		/* tp name */
	BPF_FD_TYPE_KPROBE,		/* (symbol + offset) or addr */
	BPF_FD_TYPE_KRETPROBE,		/* (symbol + offset) or addr */
	BPF_FD_TYPE_UPROBE,		/* filename + offset */
	BPF_FD_TYPE_URETPROBE,		/* filename + offset */
};

enum {
	BPF_FLOW_DISSECTOR_F_PARSE_1ST_FRAG		= (1U << 0),
	BPF_FLOW_DISSECTOR_F_STOP_AT_FLOW_LABEL		= (1U << 1),
	BPF_FLOW_DISSECTOR_F_STOP_AT_ENCAP		= (1U << 2),
};

struct bpf_flow_keys {
	__u16	nhoff;
	__u16	thoff;
	__u16	addr_proto;			/* ETH_P_* of valid addrs */
	__u8	is_frag;
	__u8	is_first_frag;
	__u8	is_encap;
	__u8	ip_proto;
	__be16	n_proto;
	__be16	sport;
	__be16	dport;
	union {
		struct {
			__be32	ipv4_src;
			__be32	ipv4_dst;
		};
		struct {
			__u32	ipv6_src[4];	/* in6_addr; network order */
			__u32	ipv6_dst[4];	/* in6_addr; network order */
		};
	};
	__u32	flags;
	__be32	flow_label;
};

struct bpf_func_info {
	__u32	insn_off;
	__u32	type_id;
};

#define BPF_LINE_INFO_LINE_NUM(line_col)	((line_col) >> 10)
#define BPF_LINE_INFO_LINE_COL(line_col)	((line_col) & 0x3ff)

struct bpf_line_info {
	__u32	insn_off;
	__u32	file_name_off;
	__u32	line_off;
	__u32	line_col;
};

struct bpf_spin_lock {
	__u32	val;
};

struct bpf_timer {
	__u64 __opaque[2];
} __attribute__((aligned(8)));

struct bpf_wq {
	__u64 __opaque[2];
} __attribute__((aligned(8)));

struct bpf_dynptr {
	__u64 __opaque[2];
} __attribute__((aligned(8)));

struct bpf_list_head {
	__u64 __opaque[2];
} __attribute__((aligned(8)));

struct bpf_list_node {
	__u64 __opaque[3];
} __attribute__((aligned(8)));

struct bpf_rb_root {
	__u64 __opaque[2];
} __attribute__((aligned(8)));

struct bpf_rb_node {
	__u64 __opaque[4];
} __attribute__((aligned(8)));

struct bpf_refcount {
	__u32 __opaque[1];
} __attribute__((aligned(4)));

struct bpf_sysctl {
	__u32	write;		/* Sysctl is being read (= 0) or written (= 1).
				 * Allows 1,2,4-byte read, but no write.
				 */
	__u32	file_pos;	/* Sysctl file position to read from, write to.
				 * Allows 1,2,4-byte read an 4-byte write.
				 */
};

struct bpf_sockopt {
	__bpf_md_ptr(struct bpf_sock *, sk);
	__bpf_md_ptr(void *, optval);
	__bpf_md_ptr(void *, optval_end);

	__s32	level;
	__s32	optname;
	__s32	optlen;
	__s32	retval;
};

struct bpf_pidns_info {
	__u32 pid;
	__u32 tgid;
};

/* User accessible data for SK_LOOKUP programs. Add new fields at the end. */
struct bpf_sk_lookup {
	union {
		__bpf_md_ptr(struct bpf_sock *, sk); /* Selected socket */
		__u64 cookie; /* Non-zero if socket was selected in PROG_TEST_RUN */
	};

	__u32 family;		/* Protocol family (AF_INET, AF_INET6) */
	__u32 protocol;		/* IP protocol (IPPROTO_TCP, IPPROTO_UDP) */
	__u32 remote_ip4;	/* Network byte order */
	__u32 remote_ip6[4];	/* Network byte order */
	__be16 remote_port;	/* Network byte order */
	__u16 :16;		/* Zero padding */
	__u32 local_ip4;	/* Network byte order */
	__u32 local_ip6[4];	/* Network byte order */
	__u32 local_port;	/* Host byte order */
	__u32 ingress_ifindex;		/* The arriving interface. Determined by inet_iif. */
};

/*
 * struct btf_ptr is used for typed pointer representation; the
 * type id is used to render the pointer data as the appropriate type
 * via the bpf_snprintf_btf() helper described above.  A flags field -
 * potentially to specify additional details about the BTF pointer
 * (rather than its mode of display) - is included for future use.
 * Display flags - BTF_F_* - are passed to bpf_snprintf_btf separately.
 */
struct btf_ptr {
	void *ptr;
	__u32 type_id;
	__u32 flags;		/* BTF ptr flags; unused at present. */
};

/*
 * Flags to control bpf_snprintf_btf() behaviour.
 *     - BTF_F_COMPACT: no formatting around type information
 *     - BTF_F_NONAME: no struct/union member names/types
 *     - BTF_F_PTR_RAW: show raw (unobfuscated) pointer values;
 *       equivalent to %px.
 *     - BTF_F_ZERO: show zero-valued struct/union members; they
 *       are not displayed by default
 */
enum {
	BTF_F_COMPACT	=	(1ULL << 0),
	BTF_F_NONAME	=	(1ULL << 1),
	BTF_F_PTR_RAW	=	(1ULL << 2),
	BTF_F_ZERO	=	(1ULL << 3),
};

/* bpf_core_relo_kind encodes which aspect of captured field/type/enum value
 * has to be adjusted by relocations. It is emitted by llvm and passed to
 * libbpf and later to the kernel.
 */
enum bpf_core_relo_kind {
	BPF_CORE_FIELD_BYTE_OFFSET = 0,      /* field byte offset */
	BPF_CORE_FIELD_BYTE_SIZE = 1,        /* field size in bytes */
	BPF_CORE_FIELD_EXISTS = 2,           /* field existence in target kernel */
	BPF_CORE_FIELD_SIGNED = 3,           /* field signedness (0 - unsigned, 1 - signed) */
	BPF_CORE_FIELD_LSHIFT_U64 = 4,       /* bitfield-specific left bitshift */
	BPF_CORE_FIELD_RSHIFT_U64 = 5,       /* bitfield-specific right bitshift */
	BPF_CORE_TYPE_ID_LOCAL = 6,          /* type ID in local BPF object */
	BPF_CORE_TYPE_ID_TARGET = 7,         /* type ID in target kernel */
	BPF_CORE_TYPE_EXISTS = 8,            /* type existence in target kernel */
	BPF_CORE_TYPE_SIZE = 9,              /* type size in bytes */
	BPF_CORE_ENUMVAL_EXISTS = 10,        /* enum value existence in target kernel */
	BPF_CORE_ENUMVAL_VALUE = 11,         /* enum value integer value */
	BPF_CORE_TYPE_MATCHES = 12,          /* type match in target kernel */
};

/*
 * "struct bpf_core_relo" is used to pass relocation data form LLVM to libbpf
 * and from libbpf to the kernel.
 *
 * CO-RE relocation captures the following data:
 * - insn_off - instruction offset (in bytes) within a BPF program that needs
 *   its insn->imm field to be relocated with actual field info;
 * - type_id - BTF type ID of the "root" (containing) entity of a relocatable
 *   type or field;
 * - access_str_off - offset into corresponding .BTF string section. String
 *   interpretation depends on specific relocation kind:
 *     - for field-based relocations, string encodes an accessed field using
 *       a sequence of field and array indices, separated by colon (:). It's
 *       conceptually very close to LLVM's getelementptr ([0]) instruction's
 *       arguments for identifying offset to a field.
 *     - for type-based relocations, strings is expected to be just "0";
 *     - for enum value-based relocations, string contains an index of enum
 *       value within its enum type;
 * - kind - one of enum bpf_core_relo_kind;
 *
 * Example:
 *   struct sample {
 *       int a;
 *       struct {
 *           int b[10];
 *       };
 *   };
 *
 *   struct sample *s = ...;
 *   int *x = &s->a;     // encoded as "0:0" (a is field #0)
 *   int *y = &s->b[5];  // encoded as "0:1:0:5" (anon struct is field #1,
 *                       // b is field #0 inside anon struct, accessing elem #5)
 *   int *z = &s[10]->b; // encoded as "10:1" (ptr is used as an array)
 *
 * type_id for all relocs in this example will capture BTF type id of
 * `struct sample`.
 *
 * Such relocation is emitted when using __builtin_preserve_access_index()
 * Clang built-in, passing expression that captures field address, e.g.:
 *
 * bpf_probe_read(&dst, sizeof(dst),
 *		  __builtin_preserve_access_index(&src->a.b.c));
 *
 * In this case Clang will emit field relocation recording necessary data to
 * be able to find offset of embedded `a.b.c` field within `src` struct.
 *
 * [0] https://llvm.org/docs/LangRef.html#getelementptr-instruction
 */
struct bpf_core_relo {
	__u32 insn_off;
	__u32 type_id;
	__u32 access_str_off;
	enum bpf_core_relo_kind kind;
};

/*
 * Flags to control bpf_timer_start() behaviour.
 *     - BPF_F_TIMER_ABS: Timeout passed is absolute time, by default it is
 *       relative to current time.
 *     - BPF_F_TIMER_CPU_PIN: Timer will be pinned to the CPU of the caller.
 */
enum {
	BPF_F_TIMER_ABS = (1ULL << 0),
	BPF_F_TIMER_CPU_PIN = (1ULL << 1),
};

/* BPF numbers iterator state */
struct bpf_iter_num {
	/* opaque iterator state; having __u64 here allows to preserve correct
	 * alignment requirements in vmlinux.h, generated from BTF
	 */
	__u64 __opaque[1];
} __attribute__((aligned(8)));

/*
 * Flags to control BPF kfunc behaviour.
 *     - BPF_F_PAD_ZEROS: Pad destination buffer with zeros. (See the respective
 *       helper documentation for details.)
 */
enum bpf_kfunc_flags {
	BPF_F_PAD_ZEROS = (1ULL << 0),
};

#endif /* _UAPI__LINUX_BPF_H__ */
]

20/2 2026/05/14 16:08 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 165541
							output: 43
							thoughts: 1124
						

Thoughts:
**Analyzing a BPF-Triggered SIGFPE**

Okay, let's break this down. First, I see `BPF_FUNC_send_signal` with ID 109, which means we're dealing with `bpf_send_signal`.  This BPF program's doing a `call bpf_send_signal`. I need to figure out the signal and what this means. The BPF program has this instruction: `r1 = 0x04ea000000000008` (though the disassembly says two different values, I need to investigate further whether there is a confusion with sign extension and bit shifting here).  I need to check how to interpret the value being sent to bpf_send_signal.

Aha! `bpf_send_signal` takes `u32 sig`, so it's the lower 32 bits, which is `0x00000008`, or 8. That means it's sending SIGFPE, a floating-point exception. So, the program is calling `bpf_send_signal(8)`, i.e. it's sending a SIGFPE.

Now, who's getting this signal? The BPF program is attached to the `mm_page_alloc` tracepoint. This is key. The program sends the signal to the current task. If it's attached to a *global* tracepoint like `mm_page_alloc`, that signal can go to *any* process that calls `mm_page_alloc`!  This could include a bunch of processes.  But let's look at where we're seeing the panic.

The panic stack trace shows: `encoding/binary.AppendUvarint(...) /usr/local/go/src/encoding/binary/varint.go:46` and `github.com/google/syzkaller/pkg/rpcserver.(*Runner).sendRequest(...)`. The first thing, `encoding/binary.AppendUvarint`, indicates a Go panic, which is a big clue. The second, `rpcserver`, indicates that this crash is inside the `syz-manager`'s RPC server. So, it is `syz-manager` that is panicking. However, if this is `syz-manager` it's running on the host, which means, a signal from the guest can't directly crash it.

But...wait a minute!  The `syz-fuzzer` is the one running in the guest. And it is written in Go. The trace point being triggered is in the guest. This means if `syz-fuzzer` allocates a page it can trigger the BPF program that sends the signal to the fuzzer itself. However, the stack trace indicates that we are seeing a crash on the RPC server, `syz-manager`. So, the crash is on the host. If `syz-manager` is on the host, how is it receiving the signal?

Aha! We need to consider how `syzkaller` works in "local" mode. In local mode, `syz-manager`, `syz-fuzzer`, and `syz-executor` *all* run on the same machineβ€”the host! In that scenario, the kernel being fuzzed *is* the host kernel. If the host kernel calls `mm_page_alloc`, the BPF program will run! When `syz-manager` allocates memory it is actually triggering `mm_page_alloc` on the host, which triggers the BPF program.

So, in "local" mode, the host kernel is the fuzzed kernel and the BPF program is triggered on the host. When `syz-manager` (which is written in Go) allocates a page, that triggers the BPF program. The BPF program sends SIGFPE to `syz-manager`, which causes a panic due to the floating-point exception handler in the Go runtime.

So the bug is the intentional sending of SIGFPE to the process running on the host. But this BPF program had to be loaded. Are unprivileged users able to load such a program? No. Loading a BPF program with `BPF_PROG_TYPE_RAW_TRACEPOINT` requires `CAP_SYS_ADMIN` or `CAP_PERFMON`.  This isn't a kernel bug. It's a configured behavior in the "local" syzkaller setup combined with a privileged program or user. This explains the panic. Now I need to check where the bpf program is loaded.



21/2 2026/05/14 16:08 tool codesearch-definition-source
0m Args:
map[ContextFile:kernel/bpf/syscall.c IncludeLines:true Name:bpf_prog_load]

Results:
map[SourceCode:2767:	static int bpf_prog_load(union bpf_attr *attr, bpfptr_t uattr, u32 uattr_size)
2768:	{
2769:		enum bpf_prog_type type = attr->prog_type;
2770:		struct bpf_prog *prog, *dst_prog = NULL;
2771:		struct btf *attach_btf = NULL;
2772:		struct bpf_token *token = NULL;
2773:		bool bpf_cap;
2774:		int err;
2775:		char license[128];
2776:	
2777:		if (CHECK_ATTR(BPF_PROG_LOAD))
2778:			return -EINVAL;
2779:	
2780:		if (attr->prog_flags & ~(BPF_F_STRICT_ALIGNMENT |
2781:					 BPF_F_ANY_ALIGNMENT |
2782:					 BPF_F_TEST_STATE_FREQ |
2783:					 BPF_F_SLEEPABLE |
2784:					 BPF_F_TEST_RND_HI32 |
2785:					 BPF_F_XDP_HAS_FRAGS |
2786:					 BPF_F_XDP_DEV_BOUND_ONLY |
2787:					 BPF_F_TEST_REG_INVARIANTS |
2788:					 BPF_F_TOKEN_FD))
2789:			return -EINVAL;
2790:	
2791:		bpf_prog_load_fixup_attach_type(attr);
2792:	
2793:		if (attr->prog_flags & BPF_F_TOKEN_FD) {
2794:			token = bpf_token_get_from_fd(attr->prog_token_fd);
2795:			if (IS_ERR(token))
2796:				return PTR_ERR(token);
2797:			/* if current token doesn't grant prog loading permissions,
2798:			 * then we can't use this token, so ignore it and rely on
2799:			 * system-wide capabilities checks
2800:			 */
2801:			if (!bpf_token_allow_cmd(token, BPF_PROG_LOAD) ||
2802:			    !bpf_token_allow_prog_type(token, attr->prog_type,
2803:						       attr->expected_attach_type)) {
2804:				bpf_token_put(token);
2805:				token = NULL;
2806:			}
2807:		}
2808:	
2809:		bpf_cap = bpf_token_capable(token, CAP_BPF);
2810:		err = -EPERM;
2811:	
2812:		if (!IS_ENABLED(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS) &&
2813:		    (attr->prog_flags & BPF_F_ANY_ALIGNMENT) &&
2814:		    !bpf_cap)
2815:			goto put_token;
2816:	
2817:		/* Intent here is for unprivileged_bpf_disabled to block BPF program
2818:		 * creation for unprivileged users; other actions depend
2819:		 * on fd availability and access to bpffs, so are dependent on
2820:		 * object creation success. Even with unprivileged BPF disabled,
2821:		 * capability checks are still carried out for these
2822:		 * and other operations.
2823:		 */
2824:		if (sysctl_unprivileged_bpf_disabled && !bpf_cap)
2825:			goto put_token;
2826:	
2827:		if (attr->insn_cnt == 0 ||
2828:		    attr->insn_cnt > (bpf_cap ? BPF_COMPLEXITY_LIMIT_INSNS : BPF_MAXINSNS)) {
2829:			err = -E2BIG;
2830:			goto put_token;
2831:		}
2832:		if (type != BPF_PROG_TYPE_SOCKET_FILTER &&
2833:		    type != BPF_PROG_TYPE_CGROUP_SKB &&
2834:		    !bpf_cap)
2835:			goto put_token;
2836:	
2837:		if (is_net_admin_prog_type(type) && !bpf_token_capable(token, CAP_NET_ADMIN))
2838:			goto put_token;
2839:		if (is_perfmon_prog_type(type) && !bpf_token_capable(token, CAP_PERFMON))
2840:			goto put_token;
2841:	
2842:		/* attach_prog_fd/attach_btf_obj_fd can specify fd of either bpf_prog
2843:		 * or btf, we need to check which one it is
2844:		 */
2845:		if (attr->attach_prog_fd) {
2846:			dst_prog = bpf_prog_get(attr->attach_prog_fd);
2847:			if (IS_ERR(dst_prog)) {
2848:				dst_prog = NULL;
2849:				attach_btf = btf_get_by_fd(attr->attach_btf_obj_fd);
2850:				if (IS_ERR(attach_btf)) {
2851:					err = -EINVAL;
2852:					goto put_token;
2853:				}
2854:				if (!btf_is_kernel(attach_btf)) {
2855:					/* attaching through specifying bpf_prog's BTF
2856:					 * objects directly might be supported eventually
2857:					 */
2858:					btf_put(attach_btf);
2859:					err = -ENOTSUPP;
2860:					goto put_token;
2861:				}
2862:			}
2863:		} else if (attr->attach_btf_id) {
2864:			/* fall back to vmlinux BTF, if BTF type ID is specified */
2865:			attach_btf = bpf_get_btf_vmlinux();
2866:			if (IS_ERR(attach_btf)) {
2867:				err = PTR_ERR(attach_btf);
2868:				goto put_token;
2869:			}
2870:			if (!attach_btf) {
2871:				err = -EINVAL;
2872:				goto put_token;
2873:			}
2874:			btf_get(attach_btf);
2875:		}
2876:	
2877:		if (bpf_prog_load_check_attach(type, attr->expected_attach_type,
2878:					       attach_btf, attr->attach_btf_id,
2879:					       dst_prog)) {
2880:			if (dst_prog)
2881:				bpf_prog_put(dst_prog);
2882:			if (attach_btf)
2883:				btf_put(attach_btf);
2884:			err = -EINVAL;
2885:			goto put_token;
2886:		}
2887:	
2888:		/* plain bpf_prog allocation */
2889:		prog = bpf_prog_alloc(bpf_prog_size(attr->insn_cnt), GFP_USER);
2890:		if (!prog) {
2891:			if (dst_prog)
2892:				bpf_prog_put(dst_prog);
2893:			if (attach_btf)
2894:				btf_put(attach_btf);
2895:			err = -EINVAL;
2896:			goto put_token;
2897:		}
2898:	
2899:		prog->expected_attach_type = attr->expected_attach_type;
2900:		prog->sleepable = !!(attr->prog_flags & BPF_F_SLEEPABLE);
2901:		prog->aux->attach_btf = attach_btf;
2902:		prog->aux->attach_btf_id = attr->attach_btf_id;
2903:		prog->aux->dst_prog = dst_prog;
2904:		prog->aux->dev_bound = !!attr->prog_ifindex;
2905:		prog->aux->xdp_has_frags = attr->prog_flags & BPF_F_XDP_HAS_FRAGS;
2906:	
2907:		/* move token into prog->aux, reuse taken refcnt */
2908:		prog->aux->token = token;
2909:		token = NULL;
2910:	
2911:		prog->aux->user = get_current_user();
2912:		prog->len = attr->insn_cnt;
2913:	
2914:		err = -EFAULT;
2915:		if (copy_from_bpfptr(prog->insns,
2916:				     make_bpfptr(attr->insns, uattr.is_kernel),
2917:				     bpf_prog_insn_size(prog)) != 0)
2918:			goto free_prog;
2919:		/* copy eBPF program license from user space */
2920:		if (strncpy_from_bpfptr(license,
2921:					make_bpfptr(attr->license, uattr.is_kernel),
2922:					sizeof(license) - 1) < 0)
2923:			goto free_prog;
2924:		license[sizeof(license) - 1] = 0;
2925:	
2926:		/* eBPF programs must be GPL compatible to use GPL-ed functions */
2927:		prog->gpl_compatible = license_is_gpl_compatible(license) ? 1 : 0;
2928:	
2929:		prog->orig_prog = NULL;
2930:		prog->jited = 0;
2931:	
2932:		atomic64_set(&prog->aux->refcnt, 1);
2933:	
2934:		if (bpf_prog_is_dev_bound(prog->aux)) {
2935:			err = bpf_prog_dev_bound_init(prog, attr);
2936:			if (err)
2937:				goto free_prog;
2938:		}
2939:	
2940:		if (type == BPF_PROG_TYPE_EXT && dst_prog &&
2941:		    bpf_prog_is_dev_bound(dst_prog->aux)) {
2942:			err = bpf_prog_dev_bound_inherit(prog, dst_prog);
2943:			if (err)
2944:				goto free_prog;
2945:		}
2946:	
2947:		/*
2948:		 * Bookkeeping for managing the program attachment chain.
2949:		 *
2950:		 * It might be tempting to set attach_tracing_prog flag at the attachment
2951:		 * time, but this will not prevent from loading bunch of tracing prog
2952:		 * first, then attach them one to another.
2953:		 *
2954:		 * The flag attach_tracing_prog is set for the whole program lifecycle, and
2955:		 * doesn't have to be cleared in bpf_tracing_link_release, since tracing
2956:		 * programs cannot change attachment target.
2957:		 */
2958:		if (type == BPF_PROG_TYPE_TRACING && dst_prog &&
2959:		    dst_prog->type == BPF_PROG_TYPE_TRACING) {
2960:			prog->aux->attach_tracing_prog = true;
2961:		}
2962:	
2963:		/* find program type: socket_filter vs tracing_filter */
2964:		err = find_prog_type(type, prog);
2965:		if (err < 0)
2966:			goto free_prog;
2967:	
2968:		prog->aux->load_time = ktime_get_boottime_ns();
2969:		err = bpf_obj_name_cpy(prog->aux->name, attr->prog_name,
2970:				       sizeof(attr->prog_name));
2971:		if (err < 0)
2972:			goto free_prog;
2973:	
2974:		err = security_bpf_prog_load(prog, attr, token, uattr.is_kernel);
2975:		if (err)
2976:			goto free_prog_sec;
2977:	
2978:		/* run eBPF verifier */
2979:		err = bpf_check(&prog, attr, uattr, uattr_size);
2980:		if (err < 0)
2981:			goto free_used_maps;
2982:	
2983:		prog = bpf_prog_select_runtime(prog, &err);
2984:		if (err < 0)
2985:			goto free_used_maps;
2986:	
2987:		err = bpf_prog_alloc_id(prog);
2988:		if (err)
2989:			goto free_used_maps;
2990:	
2991:		/* Upon success of bpf_prog_alloc_id(), the BPF prog is
2992:		 * effectively publicly exposed. However, retrieving via
2993:		 * bpf_prog_get_fd_by_id() will take another reference,
2994:		 * therefore it cannot be gone underneath us.
2995:		 *
2996:		 * Only for the time /after/ successful bpf_prog_new_fd()
2997:		 * and before returning to userspace, we might just hold
2998:		 * one reference and any parallel close on that fd could
2999:		 * rip everything out. Hence, below notifications must
3000:		 * happen before bpf_prog_new_fd().
3001:		 *
3002:		 * Also, any failure handling from this point onwards must
3003:		 * be using bpf_prog_put() given the program is exposed.
3004:		 */
3005:		bpf_prog_kallsyms_add(prog);
3006:		perf_event_bpf_event(prog, PERF_BPF_EVENT_PROG_LOAD, 0);
3007:		bpf_audit_prog(prog, BPF_AUDIT_LOAD);
3008:	
3009:		err = bpf_prog_new_fd(prog);
3010:		if (err < 0)
3011:			bpf_prog_put(prog);
3012:		return err;
3013:	
3014:	free_used_maps:
3015:		/* In case we have subprogs, we need to wait for a grace
3016:		 * period before we can tear down JIT memory since symbols
3017:		 * are already exposed under kallsyms.
3018:		 */
3019:		__bpf_prog_put_noref(prog, prog->aux->real_func_cnt);
3020:		return err;
3021:	
3022:	free_prog_sec:
3023:		security_bpf_prog_free(prog);
3024:	free_prog:
3025:		free_uid(prog->aux->user);
3026:		if (prog->aux->attach_btf)
3027:			btf_put(prog->aux->attach_btf);
3028:		bpf_prog_free(prog);
3029:	put_token:
3030:		bpf_token_put(token);
3031:		return err;
3032:	}
 SourceFile:kernel/bpf/syscall.c]

22/2 2026/05/14 16:08 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 172099
							output: 45
							thoughts: 71
						

Thoughts:
Here's my summary, as the thought process unfolds:

**Examining BPF Program Loading and Capabilities**

Okay, so I'm digging into how BPF programs are loaded, and I've hit this snippet within `bpf_prog_load`. Right away, the first thing that jumps out is this conditional: `if (is_perfmon_prog_type(type) && !bpf_token_capable(token, CAP_PERFMON))`. Essentially, it's a security check. It seems the code is making sure that if a program is of the `perfmon` type, then the associated `token` needs to have `CAP_PERFMON`. Otherwise, it bails out, using `goto put_token`. That makes sense; we definitely want to restrict `perfmon` programs unless they are trusted.

The immediate question now is: what is the meaning of `is_perfmon_prog_type`? I need to understand that function; the success of this check really hinges on that.



23/2 2026/05/14 16:08 tool codesearch-definition-source
0m Args:
map[ContextFile:kernel/bpf/syscall.c IncludeLines:true Name:is_perfmon_prog_type]

Results:
map[SourceCode:2746:	static bool is_perfmon_prog_type(enum bpf_prog_type prog_type)
2747:	{
2748:		switch (prog_type) {
2749:		case BPF_PROG_TYPE_KPROBE:
2750:		case BPF_PROG_TYPE_TRACEPOINT:
2751:		case BPF_PROG_TYPE_PERF_EVENT:
2752:		case BPF_PROG_TYPE_RAW_TRACEPOINT:
2753:		case BPF_PROG_TYPE_RAW_TRACEPOINT_WRITABLE:
2754:		case BPF_PROG_TYPE_TRACING:
2755:		case BPF_PROG_TYPE_LSM:
2756:		case BPF_PROG_TYPE_STRUCT_OPS: /* has access to struct sock */
2757:		case BPF_PROG_TYPE_EXT: /* extends any prog */
2758:			return true;
2759:		default:
2760:			return false;
2761:		}
2762:	}
 SourceFile:kernel/bpf/syscall.c]

24/2 2026/05/14 16:08 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 172755
							output: 43
							thoughts: 70
						

Thoughts:
**My BPF Security Analysis**

Okay, so I'm digging into this `BPF_PROG_TYPE_RAW_TRACEPOINT` program type, and my immediate thought is, "Ah, right, this one needs `CAP_PERFMON`." That's the baseline. Now, if it absolutely *needs* that capability, then any unprivileged user is completely locked out of loading it. That's a pretty significant constraint.

But hold on a second... is that *always* the case? This is where things get interesting. What about user namespaces? Can I work around this restriction somehow by leveraging the isolation provided by a user namespace? Let me pull up `bpf_token_capable` and take a closer look at the interaction there. I need to fully understand how that logic plays out in this scenario.



25/2 2026/05/14 16:09 tool codesearch-definition-source
0m Args:
map[ContextFile:kernel/bpf/syscall.c IncludeLines:true Name:bpf_token_capable]

Results:
map[SourceCode:  16:	bool bpf_token_capable(const struct bpf_token *token, int cap)
  17:	{
  18:		struct user_namespace *userns;
  19:	
  20:		/* BPF token allows ns_capable() level of capabilities */
  21:		userns = token ? token->userns : &init_user_ns;
  22:		if (!bpf_ns_capable(userns, cap))
  23:			return false;
  24:		if (token && security_bpf_token_capable(token, cap) < 0)
  25:			return false;
  26:		return true;
  27:	}
 SourceFile:kernel/bpf/token.c]

26/2 2026/05/14 16:09 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 173250
							output: 43
							thoughts: 19
						

Thoughts:
Here's my take on those thoughts:

**Deep Dive on Capability Checks**

Okay, so I'm digging into this `bpf_token_capable` function, and something's starting to click. I was expecting a direct check, but hold on... it looks like `bpf_token_capable` is actually *relying* on `bpf_ns_capable`! That's interesting. I need to understand why this indirection is in place. Is it for separation of concerns? Maybe `bpf_ns_capable` handles some more granular namespace-related permissions that are a prerequisite for token validation. I need to unravel the logic flow to understand what specific capabilities `bpf_ns_capable` is checking for, and how those intersect with the token validation process. This likely affects the overall security model for BPF programs, which means the interplay between namespaces and tokens in this context is pretty important. Let me trace the code path now and figure out where this fits into the bigger picture.



27/2 2026/05/14 16:09 tool codesearch-definition-source
0m Args:
map[ContextFile:kernel/bpf/token.c IncludeLines:true Name:bpf_ns_capable]

Results:
map[SourceCode:  11:	static bool bpf_ns_capable(struct user_namespace *ns, int cap)
  12:	{
  13:		return ns_capable(ns, cap) || (cap != CAP_SYS_ADMIN && ns_capable(ns, CAP_SYS_ADMIN));
  14:	}
 SourceFile:kernel/bpf/token.c]

28/2 2026/05/14 16:09 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 173631
							output: 43
							thoughts: 272
						

Thoughts:
**Analyzing the BPF Program Loading Vulnerability**

Okay, so I'm looking at this code and immediately see a check for `ns_capable(ns, CAP_PERFMON)`. My initial thought is, "Can an unprivileged user even *get* `CAP_PERFMON` by creating a user namespace?" The answer is yes, they can, within that new namespace. But hold on, what's `token->userns` doing in this context? Ah, right, if the `token` is NULL, then `userns` defaults to `&init_user_ns`. So, if no security token is passed in, this whole thing checks `ns_capable(&init_user_ns, CAP_PERFMON)`. Meaning the user needs `CAP_PERFMON` in the *initial* user namespace!

The reproducer shows a `syscall` call but there is no token being provided! The implications of that are starting to become clear. If no token is provided, this check mandates `CAP_PERFMON` in the initial user namespace. This immediately means that an unprivileged user, even one *inside* a user namespace, *can't* load this BPF program as it currently stands. That's a key observation.

But wait, what if the user *does* create a BPF token? We can't immediately say this is a dead end. I need to investigate the behavior of `BPF_TOKEN_CREATE`.



29/2 2026/05/14 16:09 tool codesearch-definition-source
0m Args:
map[ContextFile:kernel/bpf/syscall.c IncludeLines:true Name:bpf_token_create]

Results:
map[SourceCode: 111:	int bpf_token_create(union bpf_attr *attr)
 112:	{
 113:		struct bpf_mount_opts *mnt_opts;
 114:		struct bpf_token *token = NULL;
 115:		struct user_namespace *userns;
 116:		struct inode *inode;
 117:		struct file *file;
 118:		CLASS(fd, f)(attr->token_create.bpffs_fd);
 119:		struct path path;
 120:		struct super_block *sb;
 121:		umode_t mode;
 122:		int err, fd;
 123:	
 124:		if (fd_empty(f))
 125:			return -EBADF;
 126:	
 127:		path = fd_file(f)->f_path;
 128:		sb = path.dentry->d_sb;
 129:	
 130:		if (path.dentry != sb->s_root)
 131:			return -EINVAL;
 132:		if (sb->s_op != &bpf_super_ops)
 133:			return -EINVAL;
 134:		err = path_permission(&path, MAY_ACCESS);
 135:		if (err)
 136:			return err;
 137:	
 138:		userns = sb->s_user_ns;
 139:		/*
 140:		 * Enforce that creators of BPF tokens are in the same user
 141:		 * namespace as the BPF FS instance. This makes reasoning about
 142:		 * permissions a lot easier and we can always relax this later.
 143:		 */
 144:		if (current_user_ns() != userns)
 145:			return -EPERM;
 146:		if (!ns_capable(userns, CAP_BPF))
 147:			return -EPERM;
 148:	
 149:		/* Creating BPF token in init_user_ns doesn't make much sense. */
 150:		if (current_user_ns() == &init_user_ns)
 151:			return -EOPNOTSUPP;
 152:	
 153:		mnt_opts = sb->s_fs_info;
 154:		if (mnt_opts->delegate_cmds == 0 &&
 155:		    mnt_opts->delegate_maps == 0 &&
 156:		    mnt_opts->delegate_progs == 0 &&
 157:		    mnt_opts->delegate_attachs == 0)
 158:			return -ENOENT; /* no BPF token delegation is set up */
 159:	
 160:		mode = S_IFREG | ((S_IRUSR | S_IWUSR) & ~current_umask());
 161:		inode = bpf_get_inode(sb, NULL, mode);
 162:		if (IS_ERR(inode))
 163:			return PTR_ERR(inode);
 164:	
 165:		inode->i_op = &bpf_token_iops;
 166:		inode->i_fop = &bpf_token_fops;
 167:		clear_nlink(inode); /* make sure it is unlinked */
 168:	
 169:		file = alloc_file_pseudo(inode, path.mnt, BPF_TOKEN_INODE_NAME, O_RDWR, &bpf_token_fops);
 170:		if (IS_ERR(file)) {
 171:			iput(inode);
 172:			return PTR_ERR(file);
 173:		}
 174:	
 175:		token = kzalloc(sizeof(*token), GFP_USER);
 176:		if (!token) {
 177:			err = -ENOMEM;
 178:			goto out_file;
 179:		}
 180:	
 181:		atomic64_set(&token->refcnt, 1);
 182:	
 183:		/* remember bpffs owning userns for future ns_capable() checks */
 184:		token->userns = get_user_ns(userns);
 185:	
 186:		token->allowed_cmds = mnt_opts->delegate_cmds;
 187:		token->allowed_maps = mnt_opts->delegate_maps;
 188:		token->allowed_progs = mnt_opts->delegate_progs;
 189:		token->allowed_attachs = mnt_opts->delegate_attachs;
 190:	
 191:		err = security_bpf_token_create(token, attr, &path);
 192:		if (err)
 193:			goto out_token;
 194:	
 195:		fd = get_unused_fd_flags(O_CLOEXEC);
 196:		if (fd < 0) {
 197:			err = fd;
 198:			goto out_token;
 199:		}
 200:	
 201:		file->private_data = token;
 202:		fd_install(fd, file);
 203:	
 204:		return fd;
 205:	
 206:	out_token:
 207:		bpf_token_free(token);
 208:	out_file:
 209:		fput(file);
 210:		return err;
 211:	}
 SourceFile:kernel/bpf/token.c]

30/2 2026/05/14 16:09 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 175807
							output: 30
							thoughts: 829
						

Thoughts:
**Analyzing the BPF SIGFPE Incident**

Okay, let's break this down systematically. My initial thought was about the `BPF_TOKEN_CREATE` requiring delegation options, and how that implies an unprivileged user can't load a `BPF_PROG_TYPE_RAW_TRACEPOINT`. But the prompt specifies we're looking at whether this is exploitable by a *non-root* user.

I had to clarify that the panic isn't in the kernel itself. The `syz-manager` is crashing because of an intentional SIGFPE sent by a BPF program – `bpf_send_signal(8)` – attached to `mm_page_alloc`. This isn't a kernel bug; it's the expected behavior of the injected program. The program is specifically designed to crash the executing process, which, in this case, is `syz-manager`.

The important thing is that `bpf_send_signal` targets the *current* process, which is why `syz-manager` crashes when it allocates a page and the tracepoint fires. It's a known pitfall with syzkaller, where it's able to load BPF programs that deliberately crash the system or user-space processes. It's not a security vulnerability, though, because loading such a program requires root privileges or `CAP_PERFMON` in the initial user namespace. Root has the ability to crash the system anyway.

Therefore, since this behavior is by design, all the dimensions are false. Exploitable is false, DenialOfService is false (only from root). Unprivileged is false, UserNamespace is false, VMGuestTrigger is false, VMHostTrigger is false, NetworkTrigger is false, RemoteTrigger is false, PeripheralTrigger is false, and FilesystemTrigger is false.

I just wanted to make sure that `bpf_send_signal` can only signal the current process, which it does. Also, I'll need to check if unprivileged BPF programs can call `bpf_send_signal`, but based on default configuration and allowed program types, it seems unlikely.



31/2 2026/05/14 16:10 tool codesearch-find-references
0m Args:
map[IncludeSnippetLines:0 Name:bpf_send_signal]

Results:
map[References:<nil> TruncatedOutput:false]

32/2 2026/05/14 16:10 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 177133
							output: 32
							thoughts: 15
						

Thoughts:
Okay, let's see. My mind is jumping around a bit here, focusing in on this particular function name.

**Focusing on bpf_send_signal_proto**

Hmm, so the function I need to be concerned with is actually called `bpf_send_signal_proto`. It's easy to get functions mixed up, especially when there's a family of related functions. Now that I have the correct name, I can start to build out the next steps. I need to think about what this name is telling me. I know "bpf" implies Berkeley Packet Filter, but this is a signal function. So, is this a way to signal BPF programs? Or does it use BPF internals? The "proto" part suggests it may relate to network protocols somehow. I need to keep these clues at the front of my mind. Okay, `bpf_send_signal_proto`. Got it. Now, what's next? Let's trace how that integrates with the kernel...



33/2 2026/05/14 16:10 tool codesearch-find-references
0m Args:
map[IncludeSnippetLines:0 Name:bpf_send_signal_proto]

Results:
map[References:<nil> TruncatedOutput:false]

34/2 2026/05/14 16:10 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 177410
							output: 22
							thoughts: 15
						

Thoughts:
Okay, here's my interpretation of that thought process, tailored for an expert audience, and written in the first person:

**Initial Investigation into a Kernel Function**

Alright, the objective here is to understand the context or usage of `bpf_send_signal_proto`. My immediate instinct is to start with a grep search. This function name strongly suggests interactions with BPF (Berkeley Packet Filter) and signaling, likely related to how a BPF program interacts with the kernel's signal mechanism or user-space processes. I need to get a list of references.
The grep should be focused to avoid noise from unrelated code. Given I'm looking at a particular function call, the search would quickly tell me where it’s defined and used. I'll need to specify what I am searching for in the codebase.
The search needs to be comprehensive, but focused. I might need to consider variations on the name if I don't get the initial hits I expect – perhaps it's defined in a header file with a slightly different name, or used indirectly through macros or inline functions. I'm assuming that the tool will be used to see where it comes from in the code and what it is being used for, to gain context, but it may also be useful to quickly get a list of references. This allows me to understand the calling contexts and see how signal delivery from BPF is actually implemented in the kernel. Let's see what the grep reveals.



35/2 2026/05/14 16:10 tool grepper
0m Args:
map[Expression:bpf_send_signal_proto]

Results:
map[Output:kernel/bpf/helpers.c=1909=const struct bpf_func_proto bpf_perf_event_read_proto __weak;
kernel/bpf/helpers.c:1910:const struct bpf_func_proto bpf_send_signal_proto __weak;
kernel/bpf/helpers.c-1911-const struct bpf_func_proto bpf_send_signal_thread_proto __weak;
--
kernel/bpf/helpers.c=1917=bpf_base_func_proto(enum bpf_func_id func_id, const struct bpf_prog *prog)
--
kernel/bpf/helpers.c-2084-	case BPF_FUNC_send_signal:
kernel/bpf/helpers.c:2085:		return &bpf_send_signal_proto;
kernel/bpf/helpers.c-2086-	case BPF_FUNC_send_signal_thread:
--
kernel/trace/bpf_trace.c=879=BPF_CALL_1(bpf_send_signal, u32, sig)
--
kernel/trace/bpf_trace.c-883-
kernel/trace/bpf_trace.c:884:const struct bpf_func_proto bpf_send_signal_proto = {
kernel/trace/bpf_trace.c-885-	.func		= bpf_send_signal,
]

36/2 2026/05/14 16:10 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 178116
							output: 45
							thoughts: 40
						

Thoughts:
Okay, here's my take on those thoughts, tailored for an expert audience:

**Analyzing BPF Function Prototypes**

Right, so `bpf_send_signal_proto`... that's the return type of `bpf_base_func_proto`, isn't it? Okay, time to check my memory, and re-familiarize myself with the exact definition of `bpf_base_func_proto`. Let's see... I need to refresh the details around how that base function prototype is structured, the constraints it imposes, and the implications of it returning `bpf_send_signal_proto`. Specifically, I'm interested in the relationship between these prototypes and the signal delivery mechanisms. Understanding how signals are handled within this context is critical.



37/2 2026/05/14 16:10 tool codesearch-definition-source
0m Args:
map[ContextFile:kernel/bpf/helpers.c IncludeLines:true Name:bpf_base_func_proto]

Results:
map[SourceCode:1916:	const struct bpf_func_proto *
1917:	bpf_base_func_proto(enum bpf_func_id func_id, const struct bpf_prog *prog)
1918:	{
1919:		switch (func_id) {
1920:		case BPF_FUNC_map_lookup_elem:
1921:			return &bpf_map_lookup_elem_proto;
1922:		case BPF_FUNC_map_update_elem:
1923:			return &bpf_map_update_elem_proto;
1924:		case BPF_FUNC_map_delete_elem:
1925:			return &bpf_map_delete_elem_proto;
1926:		case BPF_FUNC_map_push_elem:
1927:			return &bpf_map_push_elem_proto;
1928:		case BPF_FUNC_map_pop_elem:
1929:			return &bpf_map_pop_elem_proto;
1930:		case BPF_FUNC_map_peek_elem:
1931:			return &bpf_map_peek_elem_proto;
1932:		case BPF_FUNC_map_lookup_percpu_elem:
1933:			return &bpf_map_lookup_percpu_elem_proto;
1934:		case BPF_FUNC_get_prandom_u32:
1935:			return &bpf_get_prandom_u32_proto;
1936:		case BPF_FUNC_get_smp_processor_id:
1937:			return &bpf_get_raw_smp_processor_id_proto;
1938:		case BPF_FUNC_get_numa_node_id:
1939:			return &bpf_get_numa_node_id_proto;
1940:		case BPF_FUNC_tail_call:
1941:			return &bpf_tail_call_proto;
1942:		case BPF_FUNC_ktime_get_ns:
1943:			return &bpf_ktime_get_ns_proto;
1944:		case BPF_FUNC_ktime_get_boot_ns:
1945:			return &bpf_ktime_get_boot_ns_proto;
1946:		case BPF_FUNC_ktime_get_tai_ns:
1947:			return &bpf_ktime_get_tai_ns_proto;
1948:		case BPF_FUNC_ringbuf_output:
1949:			return &bpf_ringbuf_output_proto;
1950:		case BPF_FUNC_ringbuf_reserve:
1951:			return &bpf_ringbuf_reserve_proto;
1952:		case BPF_FUNC_ringbuf_submit:
1953:			return &bpf_ringbuf_submit_proto;
1954:		case BPF_FUNC_ringbuf_discard:
1955:			return &bpf_ringbuf_discard_proto;
1956:		case BPF_FUNC_ringbuf_query:
1957:			return &bpf_ringbuf_query_proto;
1958:		case BPF_FUNC_strncmp:
1959:			return &bpf_strncmp_proto;
1960:		case BPF_FUNC_strtol:
1961:			return &bpf_strtol_proto;
1962:		case BPF_FUNC_strtoul:
1963:			return &bpf_strtoul_proto;
1964:		case BPF_FUNC_get_current_pid_tgid:
1965:			return &bpf_get_current_pid_tgid_proto;
1966:		case BPF_FUNC_get_ns_current_pid_tgid:
1967:			return &bpf_get_ns_current_pid_tgid_proto;
1968:		case BPF_FUNC_get_current_uid_gid:
1969:			return &bpf_get_current_uid_gid_proto;
1970:		default:
1971:			break;
1972:		}
1973:	
1974:		if (!bpf_token_capable(prog->aux->token, CAP_BPF))
1975:			return NULL;
1976:	
1977:		switch (func_id) {
1978:		case BPF_FUNC_spin_lock:
1979:			return &bpf_spin_lock_proto;
1980:		case BPF_FUNC_spin_unlock:
1981:			return &bpf_spin_unlock_proto;
1982:		case BPF_FUNC_jiffies64:
1983:			return &bpf_jiffies64_proto;
1984:		case BPF_FUNC_per_cpu_ptr:
1985:			return &bpf_per_cpu_ptr_proto;
1986:		case BPF_FUNC_this_cpu_ptr:
1987:			return &bpf_this_cpu_ptr_proto;
1988:		case BPF_FUNC_timer_init:
1989:			return &bpf_timer_init_proto;
1990:		case BPF_FUNC_timer_set_callback:
1991:			return &bpf_timer_set_callback_proto;
1992:		case BPF_FUNC_timer_start:
1993:			return &bpf_timer_start_proto;
1994:		case BPF_FUNC_timer_cancel:
1995:			return &bpf_timer_cancel_proto;
1996:		case BPF_FUNC_kptr_xchg:
1997:			return &bpf_kptr_xchg_proto;
1998:		case BPF_FUNC_for_each_map_elem:
1999:			return &bpf_for_each_map_elem_proto;
2000:		case BPF_FUNC_loop:
2001:			return &bpf_loop_proto;
2002:		case BPF_FUNC_user_ringbuf_drain:
2003:			return &bpf_user_ringbuf_drain_proto;
2004:		case BPF_FUNC_ringbuf_reserve_dynptr:
2005:			return &bpf_ringbuf_reserve_dynptr_proto;
2006:		case BPF_FUNC_ringbuf_submit_dynptr:
2007:			return &bpf_ringbuf_submit_dynptr_proto;
2008:		case BPF_FUNC_ringbuf_discard_dynptr:
2009:			return &bpf_ringbuf_discard_dynptr_proto;
2010:		case BPF_FUNC_dynptr_from_mem:
2011:			return &bpf_dynptr_from_mem_proto;
2012:		case BPF_FUNC_dynptr_read:
2013:			return &bpf_dynptr_read_proto;
2014:		case BPF_FUNC_dynptr_write:
2015:			return &bpf_dynptr_write_proto;
2016:		case BPF_FUNC_dynptr_data:
2017:			return &bpf_dynptr_data_proto;
2018:	#ifdef CONFIG_CGROUPS
2019:		case BPF_FUNC_cgrp_storage_get:
2020:			return &bpf_cgrp_storage_get_proto;
2021:		case BPF_FUNC_cgrp_storage_delete:
2022:			return &bpf_cgrp_storage_delete_proto;
2023:		case BPF_FUNC_get_current_cgroup_id:
2024:			return &bpf_get_current_cgroup_id_proto;
2025:		case BPF_FUNC_get_current_ancestor_cgroup_id:
2026:			return &bpf_get_current_ancestor_cgroup_id_proto;
2027:		case BPF_FUNC_current_task_under_cgroup:
2028:			return &bpf_current_task_under_cgroup_proto;
2029:	#endif
2030:	#ifdef CONFIG_CGROUP_NET_CLASSID
2031:		case BPF_FUNC_get_cgroup_classid:
2032:			return &bpf_get_cgroup_classid_curr_proto;
2033:	#endif
2034:		case BPF_FUNC_task_storage_get:
2035:			if (bpf_prog_check_recur(prog))
2036:				return &bpf_task_storage_get_recur_proto;
2037:			return &bpf_task_storage_get_proto;
2038:		case BPF_FUNC_task_storage_delete:
2039:			if (bpf_prog_check_recur(prog))
2040:				return &bpf_task_storage_delete_recur_proto;
2041:			return &bpf_task_storage_delete_proto;
2042:		default:
2043:			break;
2044:		}
2045:	
2046:		if (!bpf_token_capable(prog->aux->token, CAP_PERFMON))
2047:			return NULL;
2048:	
2049:		switch (func_id) {
2050:		case BPF_FUNC_trace_printk:
2051:			return bpf_get_trace_printk_proto();
2052:		case BPF_FUNC_get_current_task:
2053:			return &bpf_get_current_task_proto;
2054:		case BPF_FUNC_get_current_task_btf:
2055:			return &bpf_get_current_task_btf_proto;
2056:		case BPF_FUNC_get_current_comm:
2057:			return &bpf_get_current_comm_proto;
2058:		case BPF_FUNC_probe_read_user:
2059:			return &bpf_probe_read_user_proto;
2060:		case BPF_FUNC_probe_read_kernel:
2061:			return security_locked_down(LOCKDOWN_BPF_READ_KERNEL) < 0 ?
2062:			       NULL : &bpf_probe_read_kernel_proto;
2063:		case BPF_FUNC_probe_read_user_str:
2064:			return &bpf_probe_read_user_str_proto;
2065:		case BPF_FUNC_probe_read_kernel_str:
2066:			return security_locked_down(LOCKDOWN_BPF_READ_KERNEL) < 0 ?
2067:			       NULL : &bpf_probe_read_kernel_str_proto;
2068:		case BPF_FUNC_copy_from_user:
2069:			return &bpf_copy_from_user_proto;
2070:		case BPF_FUNC_copy_from_user_task:
2071:			return &bpf_copy_from_user_task_proto;
2072:		case BPF_FUNC_snprintf_btf:
2073:			return &bpf_snprintf_btf_proto;
2074:		case BPF_FUNC_snprintf:
2075:			return &bpf_snprintf_proto;
2076:		case BPF_FUNC_task_pt_regs:
2077:			return &bpf_task_pt_regs_proto;
2078:		case BPF_FUNC_trace_vprintk:
2079:			return bpf_get_trace_vprintk_proto();
2080:		case BPF_FUNC_perf_event_read_value:
2081:			return bpf_get_perf_event_read_value_proto();
2082:		case BPF_FUNC_perf_event_read:
2083:			return &bpf_perf_event_read_proto;
2084:		case BPF_FUNC_send_signal:
2085:			return &bpf_send_signal_proto;
2086:		case BPF_FUNC_send_signal_thread:
2087:			return &bpf_send_signal_thread_proto;
2088:		case BPF_FUNC_get_task_stack:
2089:			return prog->sleepable ? &bpf_get_task_stack_sleepable_proto
2090:					       : &bpf_get_task_stack_proto;
2091:		case BPF_FUNC_get_branch_snapshot:
2092:			return &bpf_get_branch_snapshot_proto;
2093:		case BPF_FUNC_find_vma:
2094:			return &bpf_find_vma_proto;
2095:		default:
2096:			return NULL;
2097:		}
2098:	}
 SourceFile:kernel/bpf/helpers.c]

38/2 2026/05/14 16:10 llm expert
0m Model:
gemini-3.1-pro-preview

Tokens:
							input: 181855
							output: 66
							thoughts: 617
						

Thoughts:
**Analyzing the BPF `bpf_send_signal` Requirement**

Right, so `bpf_send_signal` needs `CAP_PERFMON`. I see it right there in the code; if the token check fails, it returns null. This means an unprivileged user can't just load a BPF program and start sending signals. They *need* `CAP_PERFMON` in the initial user namespace, since `bpf_token_capable` is ultimately checking `ns_capable(userns, CAP_PERFMON)`, and this checks against `&init_user_ns` unless a token is present. If a token *is* provided, it means someone with `CAP_BPF` in the BPF FS's user namespace created it, and the BPF FS needs to have been mounted with delegation. But, even with the token, `CAP_PERFMON` is still a hard requirement! Then I remember that `bpf_token_capable` does check the userns, which means if the user is in a user namespace, they'll have `CAP_PERFMON` there. Unless `security_bpf_token_capable` gets in the way. Regardless, it's clear: `bpf_send_signal` is not a capability accessible to unprivileged users.

Given that, I'm thinking the bug report is likely related to Syzkaller fuzzing itself. Let me just confirm if there's any other vector to cause this issue. Nope, the reproducer explicitly loads a BPF program and attaches it to a raw tracepoint: that requires root or something like `CAP_SYS_ADMIN` or `CAP_PERFMON`. And the panic is in Go runtime, meaning this is a user-space crash. The BPF program is sending a SIGFPE to the current process, which is probably `syz-manager` or `syz-fuzzer` or whatever triggered `mm_page_alloc`. This is a known non-bug.

Therefore, all dimensions are false. I'll explain that this is a user-space crash intentionally caused by the BPF program sending a signal to the process, and this requires root privileges, because the program has to be loaded first.



39/2 2026/05/14 16:11 tool set-results
0m Args:
map[DenialOfService:false Exploitable:false FilesystemTrigger:false NetworkTrigger:false PeripheralTrigger:false RemoteTrigger:false Unprivileged:false UserNamespace:false VMGuestTrigger:false VMHostTrigger:false]

Results:
map[DenialOfService:false Exploitable:false FilesystemTrigger:false NetworkTrigger:false PeripheralTrigger:false RemoteTrigger:false Unprivileged:false UserNamespace:false VMGuestTrigger:false VMHostTrigger:false]

40/2 2026/05/14 16:11 llm expert
1m Model:
gemini-3.1-pro-preview

Tokens:
							input: 183080
							output: 417
							thoughts: 439
						

Thoughts:
**My Analysis of the Panic in syzkaller**

Okay, the results are in, time to synthesize a final response. This looks like a straightforward case. The bug report details a `SIGFPE` signal and panic in the Go runtime within `syzkaller`, specifically the `syz-manager`. The stack trace points directly to that process.

Looking at the reproducer, it's clear the issue stems from an eBPF program. It's concise; it loads an eBPF program, hooks it into the `mm_page_alloc` tracepoint, and that's the killer. The eBPF program itself is the issue: all it does is call `bpf_send_signal(8)`, which triggers a `SIGFPE`. That's that.

The key is the tracepoint; any process hitting that memory allocation event will trigger this eBPF, including `syzkaller` as it allocates memory. The kernel's behavior is as expected here. It's correctly executing the program and sending the signal, it's operating exactly as it was instructed.

Also the fact that the eBPF program has a `BPF_PROG_TYPE_RAW_TRACEPOINT` type and that it uses the `bpf_send_signal` helper, both require the `CAP_PERFMON` (or `CAP_SYS_ADMIN`) capability.

Therefore, this is a deliberate action of a privileged program, not a kernel vulnerability. All analysis dimensions must be set to false. We can close this as intended behavior.



41/1 2026/05/14 16:12 action format-explanation
0m Results:
map[Explanation:The provided bug report is not a Linux kernel vulnerability. The crash occurred
in the user-space `syzkaller` process (written in Go) due to a `SIGFPE`
(floating-point exception) signal.

The C reproducer loads an eBPF program and attaches it to the `mm_page_alloc`
raw tracepoint. The eBPF program consists of the following instructions:
```
18 01 00 00 08 00 00 00 00 00 00 00 00 00 ea 04 -> r1 = 8
85 00 00 00 6d 00 00 00                         -> call bpf_send_signal (109)
95                                              -> exit
```
This eBPF program simply calls the `bpf_send_signal(8)` helper function, which
sends a `SIGFPE` (signal 8) to the current process. Since the program is
attached to the global `mm_page_alloc` tracepoint, any process that allocates a
memory page will trigger the tracepoint and receive a `SIGFPE`. In this case,
the `syzkaller` process itself allocated memory, triggered the tracepoint,
received the `SIGFPE`, and crashed.

This is not a bug in the Linux kernel. The kernel is correctly executing the
loaded eBPF program and sending the requested signal.

Furthermore, loading a `BPF_PROG_TYPE_RAW_TRACEPOINT` program and using the
`bpf_send_signal` helper function both require the `CAP_PERFMON` (or
`CAP_SYS_ADMIN`) capability. Therefore, an unprivileged user cannot load this
program or trigger this behavior.

All analysis dimensions are set to false as this is an intentional behavior of a
privileged eBPF program and not a kernel vulnerability.]

LLM Calls Summary:
Total Calls Total Tokens Avg Tokens Total Duration (Seconds) Avg Duration (Seconds)
Tool Calls Summary:
Total Calls Total Duration (Seconds) Avg Duration (Seconds)