?   	github.com/google/syzkaller/dashboard/dashapi	[no test files]
ok  	github.com/google/syzkaller/dashboard/app	(cached)
?   	github.com/google/syzkaller/pkg/debugtracer	[no test files]
?   	github.com/google/syzkaller/pkg/gce	[no test files]
?   	github.com/google/syzkaller/pkg/gcs	[no test files]
?   	github.com/google/syzkaller/pkg/hash	[no test files]
?   	github.com/google/syzkaller/pkg/html	[no test files]
?   	github.com/google/syzkaller/pkg/html/pages	[no test files]
?   	github.com/google/syzkaller/pkg/ifuzz/iset	[no test files]
?   	github.com/google/syzkaller/pkg/ifuzz/powerpc	[no test files]
?   	github.com/google/syzkaller/pkg/ifuzz/powerpc/generated	[no test files]
?   	github.com/google/syzkaller/pkg/ifuzz/x86	[no test files]
?   	github.com/google/syzkaller/pkg/ifuzz/x86/gen	[no test files]
?   	github.com/google/syzkaller/pkg/ifuzz/x86/generated	[no test files]
?   	github.com/google/syzkaller/pkg/ipc/ipcconfig	[no test files]
?   	github.com/google/syzkaller/pkg/kcidb	[no test files]
?   	github.com/google/syzkaller/pkg/rpctype	[no test files]
?   	github.com/google/syzkaller/pkg/signal	[no test files]
?   	github.com/google/syzkaller/pkg/testutil	[no test files]
?   	github.com/google/syzkaller/pkg/tools	[no test files]
?   	github.com/google/syzkaller/sys	[no test files]
?   	github.com/google/syzkaller/sys/akaros	[no test files]
?   	github.com/google/syzkaller/sys/akaros/gen	[no test files]
?   	github.com/google/syzkaller/sys/darwin	[no test files]
?   	github.com/google/syzkaller/sys/darwin/gen	[no test files]
?   	github.com/google/syzkaller/sys/freebsd	[no test files]
?   	github.com/google/syzkaller/sys/freebsd/gen	[no test files]
?   	github.com/google/syzkaller/sys/fuchsia	[no test files]
?   	github.com/google/syzkaller/sys/fuchsia/fidlgen	[no test files]
?   	github.com/google/syzkaller/sys/fuchsia/gen	[no test files]
?   	github.com/google/syzkaller/sys/fuchsia/layout	[no test files]
?   	github.com/google/syzkaller/sys/linux/gen	[no test files]
?   	github.com/google/syzkaller/sys/netbsd	[no test files]
?   	github.com/google/syzkaller/sys/netbsd/gen	[no test files]
?   	github.com/google/syzkaller/sys/openbsd/gen	[no test files]
?   	github.com/google/syzkaller/sys/syz-extract	[no test files]
?   	github.com/google/syzkaller/sys/syz-sysgen	[no test files]
?   	github.com/google/syzkaller/sys/targets	[no test files]
?   	github.com/google/syzkaller/sys/test	[no test files]
?   	github.com/google/syzkaller/sys/test/gen	[no test files]
?   	github.com/google/syzkaller/sys/trusty	[no test files]
?   	github.com/google/syzkaller/sys/trusty/gen	[no test files]
?   	github.com/google/syzkaller/sys/windows	[no test files]
?   	github.com/google/syzkaller/sys/windows/gen	[no test files]
?   	github.com/google/syzkaller/syz-runner	[no test files]
?   	github.com/google/syzkaller/tools/syz-benchcmp	[no test files]
?   	github.com/google/syzkaller/tools/syz-bisect	[no test files]
?   	github.com/google/syzkaller/tools/syz-build	[no test files]
?   	github.com/google/syzkaller/tools/syz-check	[no test files]
?   	github.com/google/syzkaller/tools/syz-cover	[no test files]
?   	github.com/google/syzkaller/tools/syz-crush	[no test files]
?   	github.com/google/syzkaller/tools/syz-db	[no test files]
?   	github.com/google/syzkaller/tools/syz-execprog	[no test files]
?   	github.com/google/syzkaller/tools/syz-expand	[no test files]
?   	github.com/google/syzkaller/tools/syz-fillreports	[no test files]
?   	github.com/google/syzkaller/tools/syz-fmt	[no test files]
?   	github.com/google/syzkaller/tools/syz-hubtool	[no test files]
?   	github.com/google/syzkaller/tools/syz-imagegen	[no test files]
?   	github.com/google/syzkaller/tools/syz-kcidb	[no test files]
?   	github.com/google/syzkaller/tools/syz-make	[no test files]
?   	github.com/google/syzkaller/tools/syz-minconfig	[no test files]
?   	github.com/google/syzkaller/tools/syz-mutate	[no test files]
?   	github.com/google/syzkaller/tools/syz-prog2c	[no test files]
?   	github.com/google/syzkaller/tools/syz-query-subsystems	[no test files]
?   	github.com/google/syzkaller/tools/syz-reporter	[no test files]
?   	github.com/google/syzkaller/tools/syz-repro	[no test files]
?   	github.com/google/syzkaller/tools/syz-reprolist	[no test files]
?   	github.com/google/syzkaller/tools/syz-runtest	[no test files]
?   	github.com/google/syzkaller/tools/syz-showprio	[no test files]
?   	github.com/google/syzkaller/tools/syz-stress	[no test files]
?   	github.com/google/syzkaller/tools/syz-symbolize	[no test files]
?   	github.com/google/syzkaller/tools/syz-testbed	[no test files]
?   	github.com/google/syzkaller/tools/syz-testbuild	[no test files]
?   	github.com/google/syzkaller/tools/syz-trace2syz	[no test files]
?   	github.com/google/syzkaller/tools/syz-tty	[no test files]
?   	github.com/google/syzkaller/tools/syz-upgrade	[no test files]
?   	github.com/google/syzkaller/tools/syz-usbgen	[no test files]
?   	github.com/google/syzkaller/vm/adb	[no test files]
?   	github.com/google/syzkaller/vm/bhyve	[no test files]
?   	github.com/google/syzkaller/vm/cuttlefish	[no test files]
?   	github.com/google/syzkaller/vm/gce	[no test files]
?   	github.com/google/syzkaller/vm/gvisor	[no test files]
?   	github.com/google/syzkaller/vm/kvm	[no test files]
?   	github.com/google/syzkaller/vm/odroid	[no test files]
ok  	github.com/google/syzkaller/executor	2.281s
ok  	github.com/google/syzkaller/pkg/asset	(cached)
ok  	github.com/google/syzkaller/pkg/ast	0.842s
ok  	github.com/google/syzkaller/pkg/auth	(cached)
ok  	github.com/google/syzkaller/pkg/bisect	(cached)
ok  	github.com/google/syzkaller/pkg/build	(cached)
?   	github.com/google/syzkaller/vm/proxyapp/mocks	[no test files]
?   	github.com/google/syzkaller/vm/proxyapp/proxyrpc	[no test files]
?   	github.com/google/syzkaller/vm/qemu	[no test files]
?   	github.com/google/syzkaller/vm/starnix	[no test files]
?   	github.com/google/syzkaller/vm/vmm	[no test files]
?   	github.com/google/syzkaller/vm/vmware	[no test files]
ok  	github.com/google/syzkaller/pkg/compiler	2.883s
ok  	github.com/google/syzkaller/pkg/config	(cached)
ok  	github.com/google/syzkaller/pkg/cover	(cached)
ok  	github.com/google/syzkaller/pkg/cover/backend	(cached)
--- FAIL: TestGenerate (19.23s)
    --- FAIL: TestGenerate/fuchsia/amd64 (0.04s)
        testutil.go:33: seed=1677394150969947802
        --- FAIL: TestGenerate/fuchsia/amd64/7 (0.32s)
            csource_test.go:133: opts: {Threaded:true Repeat:true RepeatTimes:0 Procs:0 Slowdown:1 Sandbox: SandboxArg:0 Leak:false NetInjection:false NetDevices:false NetReset:false Cgroups:false BinfmtMisc:false CloseFDs:false KCSAN:false DevlinkPCI:false NicVF:false USB:false VhciInjection:false Wifi:false IEEE802154:false Sysctl:false UseTmpDir:true HandleSegv:false Repro:false Trace:false LegacyOptions:{Collide:false Fault:false FaultCall:0 FaultNth:0}}
                program:
                zx_stream_seek(0x0, 0x1, 0x8, &(0x7f0000000000)=<r0=>0x0) (fail_nth: 1)
                zx_stream_readv_at(0x0, 0x0, r0, &(0x7f0000000140)=[{&(0x7f0000000040)="1dbbb25cf45e520025f9c3a033b31b3a7969f7b384ed40aed6fba77a34ac1a64d1c95f9f7230446ed1ac8ecfdb9d39ca441ead1b96b12a6fd18da42173794436402ff5b4063215ecc612fd27da75c703b9b4f6944304041476d52c130b37f7f9c0067864ce18e33f6119b30fc4e4d2b040131db7201bc5e6af7c3467b67a129df678bfb11aba6ab56fa7fddd654e325f2a80386b8754b9f2eeed19abaa249428a367bf8bf788d2c66657a67c50394fa4e76ce217b12b0722001eee20736a11156183494fae831c2edf250858bf234c4269b07d001373dc3e0df227ec3a554651f758992975d9d1238c", 0xe9}], 0x1, &(0x7f0000000180)) (async)
                zx_channel_call$fuchsia_io_DirectoryDescribe(0x0, 0x0, 0x7fffffffffffffff, &(0x7f0000010280)={&(0x7f00000001c0), &(0x7f0000000200), &(0x7f0000000240), &(0x7f0000010240)={@tty={<r1=>0x0}}, 0x10, 0x0, 0x10000, 0x1}, &(0x7f00000102c0), &(0x7f0000010300)) (rerun: 4)
                zx_stream_readv(r1, 0x0, &(0x7f00000107c0)=[{&(0x7f0000010340)="13ccbcace9bec9588ef417b72f309eabab8261a79e651e4c24", 0x19}, {&(0x7f0000010380)="34740cb62b97", 0x6}, {&(0x7f00000103c0)="168ac07f7e3b669b1ca5880a2e28dc095b3fe131ad1eb10728758dbd2f595d928ca66208e7d7b692ef2c841eefd28125bbf4d62d30c96806e729cb70e833f10cab51e6e5216509944bfdf0375ba3ffd45ed44d6f702b4d571af99d1130181cffcbb1db5bbbf0e31577d115f71ff167ae0eb9f13f64f67757293146986813812748b96a1c118f4048f4aa6e52245d87f5779e47b5b59a536b6e5fcaf43f586869a57952b92ba1eb14c14f31e7c8587ce277592a4bc12f6d1ea82acdc9b973dbe1460196899a00297e4e7132e3b00828", 0xcf}, {&(0x7f00000104c0)="db71d76cc7ccc94acb73768cdf08cadc1361e1", 0x13}, {&(0x7f0000010500)="eeb2850724606ae7ce7a5652b5b8a8f3a5c06132979557f4854614e666041c1a9414826002449785039a57863aad0d64f99b27b81bdf9150f2792c6230ccdafef21193496f8b4ebbe48dcc5ccb880a69ad2aa6ed15a3576e656acbd1d5abfe14214bfb95cf87a6215019229374f041a6ce16420fe4763ab1fecea5db14919ec69c503acc07e51e4e15b777ed58e3cb58dd7a8ac9eeb4356cb3232fc66c7701ae4e23f14d11cce19a0b881b84d02053251ba5ea826fdb7da2ba5d4ec4ea1c51ce7e0c5642b3", 0xc5}, {&(0x7f0000010600)="d35ae8f9b709073a472079b12033dfd09c6a4718646cd992b2d1cd3589446b63b30c67", 0x23}, {&(0x7f0000010640)="5063cdf3589ec6c7b9540e7514f95ff7df32dedfab4e", 0x16}, {&(0x7f0000010680)="6225f8bb38693aa65411301b35842574ddc40d87497aa2f3fe39f7b8baccc10a30c6a9d2ad6516d88365662655aebdb47320763ac28ef733b202bd", 0x3b}, {&(0x7f00000106c0)="f6cf9eeec4e1068663cd86fc0c255f051c750c853d1cc07483b73b0759d5284ebd41bc8db28eb7b5dbdf7221d87793262d57bcab1199a0ceda8b5e4c57217038c17f96f0dfff52fac698c73c2a0d69266477abf578c05fc50e75ba8461997a9c6fd9f06189516090d47ee8d81a93da8002d88cecf26d3cead9b59f230bdc46266fb0dc7608cdbef037746bc71c1d865acff03fd5afb6a4ea9a1e7f0b5c1899a287e2ee8a8da9ac0edcc302c3f96a36480b6cb31d1e29787d715f450d3c467dfc4dbd31f3562ac994b2634e91a8d3eaa7252fe0db77b2e6da554e67a34317e38e0007ec37ee584978e7c09b2806c171", 0xef}], 0x9, &(0x7f0000010880))
                zx_event_create(0xffe00, &(0x7f00000108c0)=<r2=>0x0)
                zx_channel_create$fuchsia_cobalt_SystemDataUpdater(0x0, &(0x7f0000010940), &(0x7f0000010980)=<r3=>0x0)
                r4 = get_root_resource()
                zx_vmar_allocate(r1, 0x16000000, 0xd7d1, 0xffffffffffffffff, &(0x7f00000109c0)=<r5=>0x0, &(0x7f0000010a00))
                zx_channel_write$fuchsia_process_LauncherAddHandles(r2, 0x0, &(0x7f0000010900)={{}, {0xfff}, {[{0xffffffff, 0x9}], [{}, {}]}}, 0x28, &(0x7f0000010a40)={[{r3}, {r4}, {r5}, {r1}, {r1}, {r1}]}, 0x18)
                zx_vcpu_write_state(r4, 0x80000001, &(0x7f0000010a80)=""/245, 0xf5)
                syz_execute_func(&(0x7f0000000000)="c42201041db23bae8b672e2641c704fb27270000f0410fc78b95424ed765a20a00000000000000c483c95e1805c4e2b190347bf20f59333e0f38f15bd23ef3470f2a98c1596e05c461aa11c1")
                syz_future_time(0x0)
                syz_job_default()
                syz_mmap(&(0x7f0000ffd000/0x2000)=nil, 0x2000)
                syz_process_self()
                syz_thread_self()
                syz_vmar_root_self()
                
            csource_test.go:134: failed to build program:
                // autogenerated by syzkaller (https://github.com/google/syzkaller)
                
                #define _GNU_SOURCE 
                
                #include <endian.h>
                #include <errno.h>
                #include <fcntl.h>
                #include <lib/ddk/driver.h>
                #include <lib/fdio/directory.h>
                #include <poll.h>
                #include <pthread.h>
                #include <signal.h>
                #include <stdint.h>
                #include <stdio.h>
                #include <stdlib.h>
                #include <string.h>
                #include <sys/file.h>
                #include <sys/ioctl.h>
                #include <sys/socket.h>
                #include <sys/stat.h>
                #include <sys/time.h>
                #include <sys/types.h>
                #include <sys/uio.h>
                #include <time.h>
                #include <unistd.h>
                #include <utime.h>
                #include <zircon/process.h>
                #include <zircon/status.h>
                #include <zircon/syscalls.h>
                
                static void sleep_ms(uint64_t ms)
                {
                	usleep(ms * 1000);
                }
                
                static uint64_t current_time_ms(void)
                {
                	struct timespec ts;
                	if (clock_gettime(CLOCK_MONOTONIC, &ts))
                	exit(1);
                	return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000;
                }
                
                static void use_temporary_dir(void)
                {
                	char tmpdir_template[] = "/tmp/syzkaller.XXXXXX";
                	char* tmpdir = mkdtemp(tmpdir_template);
                	if (!tmpdir)
                	exit(1);
                	if (chmod(tmpdir, 0777))
                	exit(1);
                	if (chdir(tmpdir))
                	exit(1);
                }
                
                static int inject_fault(int nth)
                {
                	return 0;
                }
                
                static void setup_fault()
                {
                }
                
                static void thread_start(void* (*fn)(void*), void* arg)
                {
                	pthread_t th;
                	pthread_attr_t attr;
                	pthread_attr_init(&attr);
                	pthread_attr_setstacksize(&attr, 128 << 10);
                	int i = 0;
                	for (; i < 100; i++) {
                		if (pthread_create(&th, &attr, fn, arg) == 0) {
                			pthread_attr_destroy(&attr);
                			return;
                		}
                		if (errno == EAGAIN) {
                			usleep(50);
                			continue;
                		}
                		break;
                	}
                	exit(1);
                }
                
                typedef struct {
                	int state;
                } event_t;
                
                static void event_init(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_reset(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_set(event_t* ev)
                {
                	if (ev->state)
                	exit(1);
                	__atomic_store_n(&ev->state, 1, __ATOMIC_RELEASE);
                }
                
                static void event_wait(event_t* ev)
                {
                	while (!__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE))
                		usleep(200);
                }
                
                static int event_isset(event_t* ev)
                {
                	return __atomic_load_n(&ev->state, __ATOMIC_ACQUIRE);
                }
                
                static int event_timedwait(event_t* ev, uint64_t timeout_ms)
                {
                	uint64_t start = current_time_ms();
                	for (;;) {
                		if (__atomic_load_n(&ev->state, __ATOMIC_RELAXED))
                			return 1;
                		if (current_time_ms() - start > timeout_ms)
                			return 0;
                		usleep(200);
                	}
                }
                
                long syz_mmap(size_t addr, size_t size)
                {
                	zx_handle_t root = zx_vmar_root_self();
                	zx_info_vmar_t info;
                	zx_status_t status = zx_object_get_info(root, ZX_INFO_VMAR, &info, sizeof(info), 0, 0);
                	if (status != ZX_OK) {
                		return status;
                	}
                	zx_handle_t vmo;
                	status = zx_vmo_create(size, 0, &vmo);
                	if (status != ZX_OK) {
                		return status;
                	}
                	uintptr_t mapped_addr;
                	status = zx_vmar_map(root, ZX_VM_FLAG_SPECIFIC_OVERWRITE | ZX_VM_FLAG_PERM_READ | ZX_VM_FLAG_PERM_WRITE,
                			     addr - info.base, vmo, 0, size,
                			     &mapped_addr);
                	zx_status_t close_vmo_status = zx_handle_close(vmo);
                	if (close_vmo_status != ZX_OK) {
                	}
                	return status;
                }
                
                static long syz_process_self(void)
                {
                	return zx_process_self();
                }
                
                static long syz_thread_self(void)
                {
                	return zx_thread_self();
                }
                
                static long syz_vmar_root_self(void)
                {
                	return zx_vmar_root_self();
                }
                
                static long syz_job_default(void)
                {
                	return zx_job_default();
                }
                
                static long syz_future_time(volatile long when)
                {
                	zx_time_t delta_ms = 10000;
                	switch (when) {
                	case 0:
                		delta_ms = 5;
                		break;
                	case 1:
                		delta_ms = 30;
                		break;
                	}
                	zx_time_t now = 0;
                	zx_clock_read(ZX_CLOCK_MONOTONIC, &now);
                	return now + delta_ms * 1000 * 1000;
                }
                
                #define CAST(f) ({void* p = (void*)f; p; })
                
                static long syz_execute_func(volatile long text)
                {
                	((void (*)(void))(text))();
                	return 0;
                }
                
                struct thread_t {
                	int created, call;
                	event_t ready, done;
                };
                
                static struct thread_t threads[16];
                static void execute_call(int call);
                static int running;
                
                static void* thr(void* arg)
                {
                	struct thread_t* th = (struct thread_t*)arg;
                	for (;;) {
                		event_wait(&th->ready);
                		event_reset(&th->ready);
                		execute_call(th->call);
                		__atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED);
                		event_set(&th->done);
                	}
                	return 0;
                }
                
                static void execute_one(void)
                {
                	int i, call, thread;
                	for (call = 0; call < 17; call++) {
                		for (thread = 0; thread < (int)(sizeof(threads) / sizeof(threads[0])); thread++) {
                			struct thread_t* th = &threads[thread];
                			if (!th->created) {
                				th->created = 1;
                				event_init(&th->ready);
                				event_init(&th->done);
                				event_set(&th->done);
                				thread_start(thr, th);
                			}
                			if (!event_isset(&th->done))
                				continue;
                			event_reset(&th->done);
                			th->call = call;
                			__atomic_fetch_add(&running, 1, __ATOMIC_RELAXED);
                			event_set(&th->ready);
                			if (call == 1)
                				break;
                			event_timedwait(&th->done, 50);
                			break;
                		}
                	}
                	for (i = 0; i < 100 && __atomic_load_n(&running, __ATOMIC_RELAXED); i++)
                		sleep_ms(1);
                }
                
                static void execute_one(void);
                static void loop(void)
                {
                	execute_one();
                }
                
                uint64_t r[6] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
                
                void execute_call(int call)
                {
                		intptr_t res = 0;
                	switch (call) {
                	case 0:
                		inject_fault(1);
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_seek))(0, 1, 8, 0x20000000);
                		if (res == ZX_OK)
                r[0] = *(uint64_t*)0x20000000;
                		break;
                	case 1:
                *(uint64_t*)0x20000140 = 0x20000040;
                memcpy((void*)0x20000040, "\x1d\xbb\xb2\x5c\xf4\x5e\x52\x00\x25\xf9\xc3\xa0\x33\xb3\x1b\x3a\x79\x69\xf7\xb3\x84\xed\x40\xae\xd6\xfb\xa7\x7a\x34\xac\x1a\x64\xd1\xc9\x5f\x9f\x72\x30\x44\x6e\xd1\xac\x8e\xcf\xdb\x9d\x39\xca\x44\x1e\xad\x1b\x96\xb1\x2a\x6f\xd1\x8d\xa4\x21\x73\x79\x44\x36\x40\x2f\xf5\xb4\x06\x32\x15\xec\xc6\x12\xfd\x27\xda\x75\xc7\x03\xb9\xb4\xf6\x94\x43\x04\x04\x14\x76\xd5\x2c\x13\x0b\x37\xf7\xf9\xc0\x06\x78\x64\xce\x18\xe3\x3f\x61\x19\xb3\x0f\xc4\xe4\xd2\xb0\x40\x13\x1d\xb7\x20\x1b\xc5\xe6\xaf\x7c\x34\x67\xb6\x7a\x12\x9d\xf6\x78\xbf\xb1\x1a\xba\x6a\xb5\x6f\xa7\xfd\xdd\x65\x4e\x32\x5f\x2a\x80\x38\x6b\x87\x54\xb9\xf2\xee\xed\x19\xab\xaa\x24\x94\x28\xa3\x67\xbf\x8b\xf7\x88\xd2\xc6\x66\x57\xa6\x7c\x50\x39\x4f\xa4\xe7\x6c\xe2\x17\xb1\x2b\x07\x22\x00\x1e\xee\x20\x73\x6a\x11\x15\x61\x83\x49\x4f\xae\x83\x1c\x2e\xdf\x25\x08\x58\xbf\x23\x4c\x42\x69\xb0\x7d\x00\x13\x73\xdc\x3e\x0d\xf2\x27\xec\x3a\x55\x46\x51\xf7\x58\x99\x29\x75\xd9\xd1\x23\x8c", 233);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv_at))(0, 0, r[0], 0x20000140, 1, 0x20000180);
                		break;
                	case 2:
                *(uint64_t*)0x20010280 = 0x200001c0;
                *(uint32_t*)0x200001c0 = 0;
                memset((void*)0x200001c4, 0, 3);
                *(uint8_t*)0x200001c7 = 1;
                *(uint64_t*)0x200001c8 = 0x1f62df5e00000000;
                *(uint64_t*)0x20010288 = 0x20000200;
                *(uint64_t*)0x20010290 = 0x20000240;
                *(uint64_t*)0x20010298 = 0x20010240;
                *(uint32_t*)0x200102a0 = 0x10;
                *(uint32_t*)0x200102a4 = 0;
                *(uint32_t*)0x200102a8 = 0x10000;
                *(uint32_t*)0x200102ac = 1;
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                		{
                		int i;
                		for(i = 0; i < 4; i++) {
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                				}
                		}
                		if (res == ZX_OK)
                r[1] = *(uint32_t*)0x20010240;
                		break;
                	case 3:
                *(uint64_t*)0x200107c0 = 0x20010340;
                memcpy((void*)0x20010340, "\x13\xcc\xbc\xac\xe9\xbe\xc9\x58\x8e\xf4\x17\xb7\x2f\x30\x9e\xab\xab\x82\x61\xa7\x9e\x65\x1e\x4c\x24", 25);
                *(uint64_t*)0x200107d0 = 0x20010380;
                memcpy((void*)0x20010380, "\x34\x74\x0c\xb6\x2b\x97", 6);
                *(uint64_t*)0x200107e0 = 0x200103c0;
                memcpy((void*)0x200103c0, "\x16\x8a\xc0\x7f\x7e\x3b\x66\x9b\x1c\xa5\x88\x0a\x2e\x28\xdc\x09\x5b\x3f\xe1\x31\xad\x1e\xb1\x07\x28\x75\x8d\xbd\x2f\x59\x5d\x92\x8c\xa6\x62\x08\xe7\xd7\xb6\x92\xef\x2c\x84\x1e\xef\xd2\x81\x25\xbb\xf4\xd6\x2d\x30\xc9\x68\x06\xe7\x29\xcb\x70\xe8\x33\xf1\x0c\xab\x51\xe6\xe5\x21\x65\x09\x94\x4b\xfd\xf0\x37\x5b\xa3\xff\xd4\x5e\xd4\x4d\x6f\x70\x2b\x4d\x57\x1a\xf9\x9d\x11\x30\x18\x1c\xff\xcb\xb1\xdb\x5b\xbb\xf0\xe3\x15\x77\xd1\x15\xf7\x1f\xf1\x67\xae\x0e\xb9\xf1\x3f\x64\xf6\x77\x57\x29\x31\x46\x98\x68\x13\x81\x27\x48\xb9\x6a\x1c\x11\x8f\x40\x48\xf4\xaa\x6e\x52\x24\x5d\x87\xf5\x77\x9e\x47\xb5\xb5\x9a\x53\x6b\x6e\x5f\xca\xf4\x3f\x58\x68\x69\xa5\x79\x52\xb9\x2b\xa1\xeb\x14\xc1\x4f\x31\xe7\xc8\x58\x7c\xe2\x77\x59\x2a\x4b\xc1\x2f\x6d\x1e\xa8\x2a\xcd\xc9\xb9\x73\xdb\xe1\x46\x01\x96\x89\x9a\x00\x29\x7e\x4e\x71\x32\xe3\xb0\x08\x28", 207);
                *(uint64_t*)0x200107f0 = 0x200104c0;
                memcpy((void*)0x200104c0, "\xdb\x71\xd7\x6c\xc7\xcc\xc9\x4a\xcb\x73\x76\x8c\xdf\x08\xca\xdc\x13\x61\xe1", 19);
                *(uint64_t*)0x20010800 = 0x20010500;
                memcpy((void*)0x20010500, "\xee\xb2\x85\x07\x24\x60\x6a\xe7\xce\x7a\x56\x52\xb5\xb8\xa8\xf3\xa5\xc0\x61\x32\x97\x95\x57\xf4\x85\x46\x14\xe6\x66\x04\x1c\x1a\x94\x14\x82\x60\x02\x44\x97\x85\x03\x9a\x57\x86\x3a\xad\x0d\x64\xf9\x9b\x27\xb8\x1b\xdf\x91\x50\xf2\x79\x2c\x62\x30\xcc\xda\xfe\xf2\x11\x93\x49\x6f\x8b\x4e\xbb\xe4\x8d\xcc\x5c\xcb\x88\x0a\x69\xad\x2a\xa6\xed\x15\xa3\x57\x6e\x65\x6a\xcb\xd1\xd5\xab\xfe\x14\x21\x4b\xfb\x95\xcf\x87\xa6\x21\x50\x19\x22\x93\x74\xf0\x41\xa6\xce\x16\x42\x0f\xe4\x76\x3a\xb1\xfe\xce\xa5\xdb\x14\x91\x9e\xc6\x9c\x50\x3a\xcc\x07\xe5\x1e\x4e\x15\xb7\x77\xed\x58\xe3\xcb\x58\xdd\x7a\x8a\xc9\xee\xb4\x35\x6c\xb3\x23\x2f\xc6\x6c\x77\x01\xae\x4e\x23\xf1\x4d\x11\xcc\xe1\x9a\x0b\x88\x1b\x84\xd0\x20\x53\x25\x1b\xa5\xea\x82\x6f\xdb\x7d\xa2\xba\x5d\x4e\xc4\xea\x1c\x51\xce\x7e\x0c\x56\x42\xb3", 197);
                *(uint64_t*)0x20010810 = 0x20010600;
                memcpy((void*)0x20010600, "\xd3\x5a\xe8\xf9\xb7\x09\x07\x3a\x47\x20\x79\xb1\x20\x33\xdf\xd0\x9c\x6a\x47\x18\x64\x6c\xd9\x92\xb2\xd1\xcd\x35\x89\x44\x6b\x63\xb3\x0c\x67", 35);
                *(uint64_t*)0x20010820 = 0x20010640;
                memcpy((void*)0x20010640, "\x50\x63\xcd\xf3\x58\x9e\xc6\xc7\xb9\x54\x0e\x75\x14\xf9\x5f\xf7\xdf\x32\xde\xdf\xab\x4e", 22);
                *(uint64_t*)0x20010830 = 0x20010680;
                memcpy((void*)0x20010680, "\x62\x25\xf8\xbb\x38\x69\x3a\xa6\x54\x11\x30\x1b\x35\x84\x25\x74\xdd\xc4\x0d\x87\x49\x7a\xa2\xf3\xfe\x39\xf7\xb8\xba\xcc\xc1\x0a\x30\xc6\xa9\xd2\xad\x65\x16\xd8\x83\x65\x66\x26\x55\xae\xbd\xb4\x73\x20\x76\x3a\xc2\x8e\xf7\x33\xb2\x02\xbd", 59);
                *(uint64_t*)0x20010840 = 0x200106c0;
                memcpy((void*)0x200106c0, "\xf6\xcf\x9e\xee\xc4\xe1\x06\x86\x63\xcd\x86\xfc\x0c\x25\x5f\x05\x1c\x75\x0c\x85\x3d\x1c\xc0\x74\x83\xb7\x3b\x07\x59\xd5\x28\x4e\xbd\x41\xbc\x8d\xb2\x8e\xb7\xb5\xdb\xdf\x72\x21\xd8\x77\x93\x26\x2d\x57\xbc\xab\x11\x99\xa0\xce\xda\x8b\x5e\x4c\x57\x21\x70\x38\xc1\x7f\x96\xf0\xdf\xff\x52\xfa\xc6\x98\xc7\x3c\x2a\x0d\x69\x26\x64\x77\xab\xf5\x78\xc0\x5f\xc5\x0e\x75\xba\x84\x61\x99\x7a\x9c\x6f\xd9\xf0\x61\x89\x51\x60\x90\xd4\x7e\xe8\xd8\x1a\x93\xda\x80\x02\xd8\x8c\xec\xf2\x6d\x3c\xea\xd9\xb5\x9f\x23\x0b\xdc\x46\x26\x6f\xb0\xdc\x76\x08\xcd\xbe\xf0\x37\x74\x6b\xc7\x1c\x1d\x86\x5a\xcf\xf0\x3f\xd5\xaf\xb6\xa4\xea\x9a\x1e\x7f\x0b\x5c\x18\x99\xa2\x87\xe2\xee\x8a\x8d\xa9\xac\x0e\xdc\xc3\x02\xc3\xf9\x6a\x36\x48\x0b\x6c\xb3\x1d\x1e\x29\x78\x7d\x71\x5f\x45\x0d\x3c\x46\x7d\xfc\x4d\xbd\x31\xf3\x56\x2a\xc9\x94\xb2\x63\x4e\x91\xa8\xd3\xea\xa7\x25\x2f\xe0\xdb\x77\xb2\xe6\xda\x55\x4e\x67\xa3\x43\x17\xe3\x8e\x00\x07\xec\x37\xee\x58\x49\x78\xe7\xc0\x9b\x28\x06\xc1\x71", 239);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv))(r[1], 0, 0x200107c0, 9, 0x20010880);
                		break;
                	case 4:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t))CAST(zx_event_create))(0xffe00, 0x200108c0);
                		if (res == ZX_OK)
                r[2] = *(uint32_t*)0x200108c0;
                		break;
                	case 5:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t))CAST(zx_channel_create))(0, 0x20010940, 0x20010980);
                		if (res == ZX_OK)
                r[3] = *(uint32_t*)0x20010980;
                		break;
                	case 6:
                		res = -1;
                res = ((intptr_t(*)())CAST(get_root_resource))();
                		if ((int)res != -1)
                				r[4] = res;
                		break;
                	case 7:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vmar_allocate))(r[1], 0x16000000, 0xd7d1, -1, 0x200109c0, 0x20010a00);
                		if (res == ZX_OK)
                r[5] = *(uint32_t*)0x200109c0;
                		break;
                	case 8:
                *(uint32_t*)0x20010900 = 0;
                memset((void*)0x20010904, 0, 3);
                *(uint8_t*)0x20010907 = 1;
                *(uint64_t*)0x20010908 = 0x5cd6900b00000000;
                *(uint64_t*)0x20010910 = 0xfff;
                *(uint64_t*)0x20010918 = 0;
                *(uint32_t*)0x20010920 = -1;
                *(uint32_t*)0x20010924 = 9;
                *(uint32_t*)0x20010a40 = r[3];
                *(uint32_t*)0x20010a44 = r[4];
                *(uint32_t*)0x20010a48 = r[5];
                *(uint32_t*)0x20010a4c = r[1];
                *(uint32_t*)0x20010a50 = r[1];
                *(uint32_t*)0x20010a54 = r[1];
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_write))(r[2], 0, 0x20010900, 0x28, 0x20010a40, 0x18);
                		break;
                	case 9:
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vcpu_write_state))(r[4], 0x80000001, 0x20010a80, 0xf5);
                		break;
                	case 10:
                memcpy((void*)0x20000000, "\xc4\x22\x01\x04\x1d\xb2\x3b\xae\x8b\x67\x2e\x26\x41\xc7\x04\xfb\x27\x27\x00\x00\xf0\x41\x0f\xc7\x8b\x95\x42\x4e\xd7\x65\xa2\x0a\x00\x00\x00\x00\x00\x00\x00\xc4\x83\xc9\x5e\x18\x05\xc4\xe2\xb1\x90\x34\x7b\xf2\x0f\x59\x33\x3e\x0f\x38\xf1\x5b\xd2\x3e\xf3\x47\x0f\x2a\x98\xc1\x59\x6e\x05\xc4\x61\xaa\x11\xc1", 76);
                syz_execute_func(0x20000000);
                		break;
                	case 11:
                syz_future_time(0);
                		break;
                	case 12:
                syz_job_default();
                		break;
                	case 13:
                syz_mmap(0x20ffd000, 0x2000);
                		break;
                	case 14:
                syz_process_self();
                		break;
                	case 15:
                syz_thread_self();
                		break;
                	case 16:
                syz_vmar_root_self();
                		break;
                	}
                
                }
                int main(void)
                {
                syz_mmap(0x20000000, 0x1000000);
                	setup_fault();
                			use_temporary_dir();
                			loop();
                	return 0;
                }
                
                <stdin>:8:10: fatal error: 'lib/ddk/driver.h' file not found
                #include <lib/ddk/driver.h>
                         ^~~~~~~~~~~~~~~~~~
                1 error generated.
                
                compiler invocation: /syzkaller/shared/fuchsia/prebuilt/third_party/clang/linux-x64/bin/clang [-o /tmp/syz-executor2506655466 -DGOOS_fuchsia=1 -DGOARCH_amd64=1 -DHOSTGOOS_linux=1 -x c - -Wno-deprecated -target x86_64-fuchsia -ldriver -lfdio -lzircon --sysroot /syzkaller/shared/fuchsia/out/x64/zircon_toolchain/obj/zircon/public/sysroot/sysroot -I /syzkaller/shared/fuchsia/sdk/lib/fdio/include -I /syzkaller/shared/fuchsia/zircon/system/ulib/fidl/include -I /syzkaller/shared/fuchsia/src/lib/ddk/include -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device.manager -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.nand -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.power.statecontrol -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.usb.peripheral -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/zircon/vdso/zx -L /syzkaller/shared/fuchsia/out/x64/x64-shared -O2 -pthread -Wall -Werror -Wparentheses -Wunused-const-variable -Wframe-larger-than=16384 -Wno-array-bounds -Wno-unused-command-line-argument]
        --- FAIL: TestGenerate/fuchsia/amd64/12 (0.32s)
            csource_test.go:133: opts: {Threaded:true Repeat:true RepeatTimes:0 Procs:0 Slowdown:1 Sandbox:none SandboxArg:0 Leak:false NetInjection:false NetDevices:false NetReset:false Cgroups:false BinfmtMisc:false CloseFDs:false KCSAN:false DevlinkPCI:false NicVF:false USB:false VhciInjection:false Wifi:false IEEE802154:false Sysctl:false UseTmpDir:true HandleSegv:false Repro:true Trace:false LegacyOptions:{Collide:false Fault:false FaultCall:0 FaultNth:0}}
                program:
                zx_stream_seek(0x0, 0x1, 0x8, &(0x7f0000000000)=<r0=>0x0) (fail_nth: 1)
                zx_stream_readv_at(0x0, 0x0, r0, &(0x7f0000000140)=[{&(0x7f0000000040)="1dbbb25cf45e520025f9c3a033b31b3a7969f7b384ed40aed6fba77a34ac1a64d1c95f9f7230446ed1ac8ecfdb9d39ca441ead1b96b12a6fd18da42173794436402ff5b4063215ecc612fd27da75c703b9b4f6944304041476d52c130b37f7f9c0067864ce18e33f6119b30fc4e4d2b040131db7201bc5e6af7c3467b67a129df678bfb11aba6ab56fa7fddd654e325f2a80386b8754b9f2eeed19abaa249428a367bf8bf788d2c66657a67c50394fa4e76ce217b12b0722001eee20736a11156183494fae831c2edf250858bf234c4269b07d001373dc3e0df227ec3a554651f758992975d9d1238c", 0xe9}], 0x1, &(0x7f0000000180)) (async)
                zx_channel_call$fuchsia_io_DirectoryDescribe(0x0, 0x0, 0x7fffffffffffffff, &(0x7f0000010280)={&(0x7f00000001c0), &(0x7f0000000200), &(0x7f0000000240), &(0x7f0000010240)={@tty={<r1=>0x0}}, 0x10, 0x0, 0x10000, 0x1}, &(0x7f00000102c0), &(0x7f0000010300)) (rerun: 4)
                zx_stream_readv(r1, 0x0, &(0x7f00000107c0)=[{&(0x7f0000010340)="13ccbcace9bec9588ef417b72f309eabab8261a79e651e4c24", 0x19}, {&(0x7f0000010380)="34740cb62b97", 0x6}, {&(0x7f00000103c0)="168ac07f7e3b669b1ca5880a2e28dc095b3fe131ad1eb10728758dbd2f595d928ca66208e7d7b692ef2c841eefd28125bbf4d62d30c96806e729cb70e833f10cab51e6e5216509944bfdf0375ba3ffd45ed44d6f702b4d571af99d1130181cffcbb1db5bbbf0e31577d115f71ff167ae0eb9f13f64f67757293146986813812748b96a1c118f4048f4aa6e52245d87f5779e47b5b59a536b6e5fcaf43f586869a57952b92ba1eb14c14f31e7c8587ce277592a4bc12f6d1ea82acdc9b973dbe1460196899a00297e4e7132e3b00828", 0xcf}, {&(0x7f00000104c0)="db71d76cc7ccc94acb73768cdf08cadc1361e1", 0x13}, {&(0x7f0000010500)="eeb2850724606ae7ce7a5652b5b8a8f3a5c06132979557f4854614e666041c1a9414826002449785039a57863aad0d64f99b27b81bdf9150f2792c6230ccdafef21193496f8b4ebbe48dcc5ccb880a69ad2aa6ed15a3576e656acbd1d5abfe14214bfb95cf87a6215019229374f041a6ce16420fe4763ab1fecea5db14919ec69c503acc07e51e4e15b777ed58e3cb58dd7a8ac9eeb4356cb3232fc66c7701ae4e23f14d11cce19a0b881b84d02053251ba5ea826fdb7da2ba5d4ec4ea1c51ce7e0c5642b3", 0xc5}, {&(0x7f0000010600)="d35ae8f9b709073a472079b12033dfd09c6a4718646cd992b2d1cd3589446b63b30c67", 0x23}, {&(0x7f0000010640)="5063cdf3589ec6c7b9540e7514f95ff7df32dedfab4e", 0x16}, {&(0x7f0000010680)="6225f8bb38693aa65411301b35842574ddc40d87497aa2f3fe39f7b8baccc10a30c6a9d2ad6516d88365662655aebdb47320763ac28ef733b202bd", 0x3b}, {&(0x7f00000106c0)="f6cf9eeec4e1068663cd86fc0c255f051c750c853d1cc07483b73b0759d5284ebd41bc8db28eb7b5dbdf7221d87793262d57bcab1199a0ceda8b5e4c57217038c17f96f0dfff52fac698c73c2a0d69266477abf578c05fc50e75ba8461997a9c6fd9f06189516090d47ee8d81a93da8002d88cecf26d3cead9b59f230bdc46266fb0dc7608cdbef037746bc71c1d865acff03fd5afb6a4ea9a1e7f0b5c1899a287e2ee8a8da9ac0edcc302c3f96a36480b6cb31d1e29787d715f450d3c467dfc4dbd31f3562ac994b2634e91a8d3eaa7252fe0db77b2e6da554e67a34317e38e0007ec37ee584978e7c09b2806c171", 0xef}], 0x9, &(0x7f0000010880))
                zx_event_create(0xffe00, &(0x7f00000108c0)=<r2=>0x0)
                zx_channel_create$fuchsia_cobalt_SystemDataUpdater(0x0, &(0x7f0000010940), &(0x7f0000010980)=<r3=>0x0)
                r4 = get_root_resource()
                zx_vmar_allocate(r1, 0x16000000, 0xd7d1, 0xffffffffffffffff, &(0x7f00000109c0)=<r5=>0x0, &(0x7f0000010a00))
                zx_channel_write$fuchsia_process_LauncherAddHandles(r2, 0x0, &(0x7f0000010900)={{}, {0xfff}, {[{0xffffffff, 0x9}], [{}, {}]}}, 0x28, &(0x7f0000010a40)={[{r3}, {r4}, {r5}, {r1}, {r1}, {r1}]}, 0x18)
                zx_vcpu_write_state(r4, 0x80000001, &(0x7f0000010a80)=""/245, 0xf5)
                syz_execute_func(&(0x7f0000000000)="c42201041db23bae8b672e2641c704fb27270000f0410fc78b95424ed765a20a00000000000000c483c95e1805c4e2b190347bf20f59333e0f38f15bd23ef3470f2a98c1596e05c461aa11c1")
                syz_future_time(0x0)
                syz_job_default()
                syz_mmap(&(0x7f0000ffd000/0x2000)=nil, 0x2000)
                syz_process_self()
                syz_thread_self()
                syz_vmar_root_self()
                
            csource_test.go:134: failed to build program:
                // autogenerated by syzkaller (https://github.com/google/syzkaller)
                
                #define _GNU_SOURCE 
                
                #include <endian.h>
                #include <errno.h>
                #include <fcntl.h>
                #include <lib/ddk/driver.h>
                #include <lib/fdio/directory.h>
                #include <poll.h>
                #include <pthread.h>
                #include <signal.h>
                #include <stdint.h>
                #include <stdio.h>
                #include <stdlib.h>
                #include <string.h>
                #include <sys/file.h>
                #include <sys/ioctl.h>
                #include <sys/socket.h>
                #include <sys/stat.h>
                #include <sys/time.h>
                #include <sys/types.h>
                #include <sys/uio.h>
                #include <time.h>
                #include <unistd.h>
                #include <utime.h>
                #include <zircon/process.h>
                #include <zircon/status.h>
                #include <zircon/syscalls.h>
                
                static void sleep_ms(uint64_t ms)
                {
                	usleep(ms * 1000);
                }
                
                static uint64_t current_time_ms(void)
                {
                	struct timespec ts;
                	if (clock_gettime(CLOCK_MONOTONIC, &ts))
                	exit(1);
                	return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000;
                }
                
                static void use_temporary_dir(void)
                {
                	char tmpdir_template[] = "/tmp/syzkaller.XXXXXX";
                	char* tmpdir = mkdtemp(tmpdir_template);
                	if (!tmpdir)
                	exit(1);
                	if (chmod(tmpdir, 0777))
                	exit(1);
                	if (chdir(tmpdir))
                	exit(1);
                }
                
                static int inject_fault(int nth)
                {
                	return 0;
                }
                
                static void setup_fault()
                {
                }
                
                static void thread_start(void* (*fn)(void*), void* arg)
                {
                	pthread_t th;
                	pthread_attr_t attr;
                	pthread_attr_init(&attr);
                	pthread_attr_setstacksize(&attr, 128 << 10);
                	int i = 0;
                	for (; i < 100; i++) {
                		if (pthread_create(&th, &attr, fn, arg) == 0) {
                			pthread_attr_destroy(&attr);
                			return;
                		}
                		if (errno == EAGAIN) {
                			usleep(50);
                			continue;
                		}
                		break;
                	}
                	exit(1);
                }
                
                typedef struct {
                	int state;
                } event_t;
                
                static void event_init(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_reset(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_set(event_t* ev)
                {
                	if (ev->state)
                	exit(1);
                	__atomic_store_n(&ev->state, 1, __ATOMIC_RELEASE);
                }
                
                static void event_wait(event_t* ev)
                {
                	while (!__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE))
                		usleep(200);
                }
                
                static int event_isset(event_t* ev)
                {
                	return __atomic_load_n(&ev->state, __ATOMIC_ACQUIRE);
                }
                
                static int event_timedwait(event_t* ev, uint64_t timeout_ms)
                {
                	uint64_t start = current_time_ms();
                	for (;;) {
                		if (__atomic_load_n(&ev->state, __ATOMIC_RELAXED))
                			return 1;
                		if (current_time_ms() - start > timeout_ms)
                			return 0;
                		usleep(200);
                	}
                }
                
                long syz_mmap(size_t addr, size_t size)
                {
                	zx_handle_t root = zx_vmar_root_self();
                	zx_info_vmar_t info;
                	zx_status_t status = zx_object_get_info(root, ZX_INFO_VMAR, &info, sizeof(info), 0, 0);
                	if (status != ZX_OK) {
                		return status;
                	}
                	zx_handle_t vmo;
                	status = zx_vmo_create(size, 0, &vmo);
                	if (status != ZX_OK) {
                		return status;
                	}
                	uintptr_t mapped_addr;
                	status = zx_vmar_map(root, ZX_VM_FLAG_SPECIFIC_OVERWRITE | ZX_VM_FLAG_PERM_READ | ZX_VM_FLAG_PERM_WRITE,
                			     addr - info.base, vmo, 0, size,
                			     &mapped_addr);
                	zx_status_t close_vmo_status = zx_handle_close(vmo);
                	if (close_vmo_status != ZX_OK) {
                	}
                	return status;
                }
                
                static long syz_process_self(void)
                {
                	return zx_process_self();
                }
                
                static long syz_thread_self(void)
                {
                	return zx_thread_self();
                }
                
                static long syz_vmar_root_self(void)
                {
                	return zx_vmar_root_self();
                }
                
                static long syz_job_default(void)
                {
                	return zx_job_default();
                }
                
                static long syz_future_time(volatile long when)
                {
                	zx_time_t delta_ms = 10000;
                	switch (when) {
                	case 0:
                		delta_ms = 5;
                		break;
                	case 1:
                		delta_ms = 30;
                		break;
                	}
                	zx_time_t now = 0;
                	zx_clock_read(ZX_CLOCK_MONOTONIC, &now);
                	return now + delta_ms * 1000 * 1000;
                }
                
                static void loop();
                static int do_sandbox_none(void)
                {
                	loop();
                	return 0;
                }
                #define CAST(f) ({void* p = (void*)f; p; })
                
                static long syz_execute_func(volatile long text)
                {
                	((void (*)(void))(text))();
                	return 0;
                }
                
                struct thread_t {
                	int created, call;
                	event_t ready, done;
                };
                
                static struct thread_t threads[16];
                static void execute_call(int call);
                static int running;
                
                static void* thr(void* arg)
                {
                	struct thread_t* th = (struct thread_t*)arg;
                	for (;;) {
                		event_wait(&th->ready);
                		event_reset(&th->ready);
                		execute_call(th->call);
                		__atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED);
                		event_set(&th->done);
                	}
                	return 0;
                }
                
                static void execute_one(void)
                {
                	if (write(1, "executing program\n", sizeof("executing program\n") - 1)) {
                	}
                	int i, call, thread;
                	for (call = 0; call < 17; call++) {
                		for (thread = 0; thread < (int)(sizeof(threads) / sizeof(threads[0])); thread++) {
                			struct thread_t* th = &threads[thread];
                			if (!th->created) {
                				th->created = 1;
                				event_init(&th->ready);
                				event_init(&th->done);
                				event_set(&th->done);
                				thread_start(thr, th);
                			}
                			if (!event_isset(&th->done))
                				continue;
                			event_reset(&th->done);
                			th->call = call;
                			__atomic_fetch_add(&running, 1, __ATOMIC_RELAXED);
                			event_set(&th->ready);
                			if (call == 1)
                				break;
                			event_timedwait(&th->done, 50);
                			break;
                		}
                	}
                	for (i = 0; i < 100 && __atomic_load_n(&running, __ATOMIC_RELAXED); i++)
                		sleep_ms(1);
                }
                
                static void execute_one(void);
                static void loop(void)
                {
                	execute_one();
                }
                
                uint64_t r[6] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
                
                void execute_call(int call)
                {
                		intptr_t res = 0;
                	switch (call) {
                	case 0:
                		inject_fault(1);
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_seek))(0, 1, 8, 0x20000000);
                		if (res == ZX_OK)
                r[0] = *(uint64_t*)0x20000000;
                		break;
                	case 1:
                *(uint64_t*)0x20000140 = 0x20000040;
                memcpy((void*)0x20000040, "\x1d\xbb\xb2\x5c\xf4\x5e\x52\x00\x25\xf9\xc3\xa0\x33\xb3\x1b\x3a\x79\x69\xf7\xb3\x84\xed\x40\xae\xd6\xfb\xa7\x7a\x34\xac\x1a\x64\xd1\xc9\x5f\x9f\x72\x30\x44\x6e\xd1\xac\x8e\xcf\xdb\x9d\x39\xca\x44\x1e\xad\x1b\x96\xb1\x2a\x6f\xd1\x8d\xa4\x21\x73\x79\x44\x36\x40\x2f\xf5\xb4\x06\x32\x15\xec\xc6\x12\xfd\x27\xda\x75\xc7\x03\xb9\xb4\xf6\x94\x43\x04\x04\x14\x76\xd5\x2c\x13\x0b\x37\xf7\xf9\xc0\x06\x78\x64\xce\x18\xe3\x3f\x61\x19\xb3\x0f\xc4\xe4\xd2\xb0\x40\x13\x1d\xb7\x20\x1b\xc5\xe6\xaf\x7c\x34\x67\xb6\x7a\x12\x9d\xf6\x78\xbf\xb1\x1a\xba\x6a\xb5\x6f\xa7\xfd\xdd\x65\x4e\x32\x5f\x2a\x80\x38\x6b\x87\x54\xb9\xf2\xee\xed\x19\xab\xaa\x24\x94\x28\xa3\x67\xbf\x8b\xf7\x88\xd2\xc6\x66\x57\xa6\x7c\x50\x39\x4f\xa4\xe7\x6c\xe2\x17\xb1\x2b\x07\x22\x00\x1e\xee\x20\x73\x6a\x11\x15\x61\x83\x49\x4f\xae\x83\x1c\x2e\xdf\x25\x08\x58\xbf\x23\x4c\x42\x69\xb0\x7d\x00\x13\x73\xdc\x3e\x0d\xf2\x27\xec\x3a\x55\x46\x51\xf7\x58\x99\x29\x75\xd9\xd1\x23\x8c", 233);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv_at))(0, 0, r[0], 0x20000140, 1, 0x20000180);
                		break;
                	case 2:
                *(uint64_t*)0x20010280 = 0x200001c0;
                *(uint32_t*)0x200001c0 = 0;
                memset((void*)0x200001c4, 0, 3);
                *(uint8_t*)0x200001c7 = 1;
                *(uint64_t*)0x200001c8 = 0x1f62df5e00000000;
                *(uint64_t*)0x20010288 = 0x20000200;
                *(uint64_t*)0x20010290 = 0x20000240;
                *(uint64_t*)0x20010298 = 0x20010240;
                *(uint32_t*)0x200102a0 = 0x10;
                *(uint32_t*)0x200102a4 = 0;
                *(uint32_t*)0x200102a8 = 0x10000;
                *(uint32_t*)0x200102ac = 1;
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                		{
                		int i;
                		for(i = 0; i < 4; i++) {
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                				}
                		}
                		if (res == ZX_OK)
                r[1] = *(uint32_t*)0x20010240;
                		break;
                	case 3:
                *(uint64_t*)0x200107c0 = 0x20010340;
                memcpy((void*)0x20010340, "\x13\xcc\xbc\xac\xe9\xbe\xc9\x58\x8e\xf4\x17\xb7\x2f\x30\x9e\xab\xab\x82\x61\xa7\x9e\x65\x1e\x4c\x24", 25);
                *(uint64_t*)0x200107d0 = 0x20010380;
                memcpy((void*)0x20010380, "\x34\x74\x0c\xb6\x2b\x97", 6);
                *(uint64_t*)0x200107e0 = 0x200103c0;
                memcpy((void*)0x200103c0, "\x16\x8a\xc0\x7f\x7e\x3b\x66\x9b\x1c\xa5\x88\x0a\x2e\x28\xdc\x09\x5b\x3f\xe1\x31\xad\x1e\xb1\x07\x28\x75\x8d\xbd\x2f\x59\x5d\x92\x8c\xa6\x62\x08\xe7\xd7\xb6\x92\xef\x2c\x84\x1e\xef\xd2\x81\x25\xbb\xf4\xd6\x2d\x30\xc9\x68\x06\xe7\x29\xcb\x70\xe8\x33\xf1\x0c\xab\x51\xe6\xe5\x21\x65\x09\x94\x4b\xfd\xf0\x37\x5b\xa3\xff\xd4\x5e\xd4\x4d\x6f\x70\x2b\x4d\x57\x1a\xf9\x9d\x11\x30\x18\x1c\xff\xcb\xb1\xdb\x5b\xbb\xf0\xe3\x15\x77\xd1\x15\xf7\x1f\xf1\x67\xae\x0e\xb9\xf1\x3f\x64\xf6\x77\x57\x29\x31\x46\x98\x68\x13\x81\x27\x48\xb9\x6a\x1c\x11\x8f\x40\x48\xf4\xaa\x6e\x52\x24\x5d\x87\xf5\x77\x9e\x47\xb5\xb5\x9a\x53\x6b\x6e\x5f\xca\xf4\x3f\x58\x68\x69\xa5\x79\x52\xb9\x2b\xa1\xeb\x14\xc1\x4f\x31\xe7\xc8\x58\x7c\xe2\x77\x59\x2a\x4b\xc1\x2f\x6d\x1e\xa8\x2a\xcd\xc9\xb9\x73\xdb\xe1\x46\x01\x96\x89\x9a\x00\x29\x7e\x4e\x71\x32\xe3\xb0\x08\x28", 207);
                *(uint64_t*)0x200107f0 = 0x200104c0;
                memcpy((void*)0x200104c0, "\xdb\x71\xd7\x6c\xc7\xcc\xc9\x4a\xcb\x73\x76\x8c\xdf\x08\xca\xdc\x13\x61\xe1", 19);
                *(uint64_t*)0x20010800 = 0x20010500;
                memcpy((void*)0x20010500, "\xee\xb2\x85\x07\x24\x60\x6a\xe7\xce\x7a\x56\x52\xb5\xb8\xa8\xf3\xa5\xc0\x61\x32\x97\x95\x57\xf4\x85\x46\x14\xe6\x66\x04\x1c\x1a\x94\x14\x82\x60\x02\x44\x97\x85\x03\x9a\x57\x86\x3a\xad\x0d\x64\xf9\x9b\x27\xb8\x1b\xdf\x91\x50\xf2\x79\x2c\x62\x30\xcc\xda\xfe\xf2\x11\x93\x49\x6f\x8b\x4e\xbb\xe4\x8d\xcc\x5c\xcb\x88\x0a\x69\xad\x2a\xa6\xed\x15\xa3\x57\x6e\x65\x6a\xcb\xd1\xd5\xab\xfe\x14\x21\x4b\xfb\x95\xcf\x87\xa6\x21\x50\x19\x22\x93\x74\xf0\x41\xa6\xce\x16\x42\x0f\xe4\x76\x3a\xb1\xfe\xce\xa5\xdb\x14\x91\x9e\xc6\x9c\x50\x3a\xcc\x07\xe5\x1e\x4e\x15\xb7\x77\xed\x58\xe3\xcb\x58\xdd\x7a\x8a\xc9\xee\xb4\x35\x6c\xb3\x23\x2f\xc6\x6c\x77\x01\xae\x4e\x23\xf1\x4d\x11\xcc\xe1\x9a\x0b\x88\x1b\x84\xd0\x20\x53\x25\x1b\xa5\xea\x82\x6f\xdb\x7d\xa2\xba\x5d\x4e\xc4\xea\x1c\x51\xce\x7e\x0c\x56\x42\xb3", 197);
                *(uint64_t*)0x20010810 = 0x20010600;
                memcpy((void*)0x20010600, "\xd3\x5a\xe8\xf9\xb7\x09\x07\x3a\x47\x20\x79\xb1\x20\x33\xdf\xd0\x9c\x6a\x47\x18\x64\x6c\xd9\x92\xb2\xd1\xcd\x35\x89\x44\x6b\x63\xb3\x0c\x67", 35);
                *(uint64_t*)0x20010820 = 0x20010640;
                memcpy((void*)0x20010640, "\x50\x63\xcd\xf3\x58\x9e\xc6\xc7\xb9\x54\x0e\x75\x14\xf9\x5f\xf7\xdf\x32\xde\xdf\xab\x4e", 22);
                *(uint64_t*)0x20010830 = 0x20010680;
                memcpy((void*)0x20010680, "\x62\x25\xf8\xbb\x38\x69\x3a\xa6\x54\x11\x30\x1b\x35\x84\x25\x74\xdd\xc4\x0d\x87\x49\x7a\xa2\xf3\xfe\x39\xf7\xb8\xba\xcc\xc1\x0a\x30\xc6\xa9\xd2\xad\x65\x16\xd8\x83\x65\x66\x26\x55\xae\xbd\xb4\x73\x20\x76\x3a\xc2\x8e\xf7\x33\xb2\x02\xbd", 59);
                *(uint64_t*)0x20010840 = 0x200106c0;
                memcpy((void*)0x200106c0, "\xf6\xcf\x9e\xee\xc4\xe1\x06\x86\x63\xcd\x86\xfc\x0c\x25\x5f\x05\x1c\x75\x0c\x85\x3d\x1c\xc0\x74\x83\xb7\x3b\x07\x59\xd5\x28\x4e\xbd\x41\xbc\x8d\xb2\x8e\xb7\xb5\xdb\xdf\x72\x21\xd8\x77\x93\x26\x2d\x57\xbc\xab\x11\x99\xa0\xce\xda\x8b\x5e\x4c\x57\x21\x70\x38\xc1\x7f\x96\xf0\xdf\xff\x52\xfa\xc6\x98\xc7\x3c\x2a\x0d\x69\x26\x64\x77\xab\xf5\x78\xc0\x5f\xc5\x0e\x75\xba\x84\x61\x99\x7a\x9c\x6f\xd9\xf0\x61\x89\x51\x60\x90\xd4\x7e\xe8\xd8\x1a\x93\xda\x80\x02\xd8\x8c\xec\xf2\x6d\x3c\xea\xd9\xb5\x9f\x23\x0b\xdc\x46\x26\x6f\xb0\xdc\x76\x08\xcd\xbe\xf0\x37\x74\x6b\xc7\x1c\x1d\x86\x5a\xcf\xf0\x3f\xd5\xaf\xb6\xa4\xea\x9a\x1e\x7f\x0b\x5c\x18\x99\xa2\x87\xe2\xee\x8a\x8d\xa9\xac\x0e\xdc\xc3\x02\xc3\xf9\x6a\x36\x48\x0b\x6c\xb3\x1d\x1e\x29\x78\x7d\x71\x5f\x45\x0d\x3c\x46\x7d\xfc\x4d\xbd\x31\xf3\x56\x2a\xc9\x94\xb2\x63\x4e\x91\xa8\xd3\xea\xa7\x25\x2f\xe0\xdb\x77\xb2\xe6\xda\x55\x4e\x67\xa3\x43\x17\xe3\x8e\x00\x07\xec\x37\xee\x58\x49\x78\xe7\xc0\x9b\x28\x06\xc1\x71", 239);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv))(r[1], 0, 0x200107c0, 9, 0x20010880);
                		break;
                	case 4:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t))CAST(zx_event_create))(0xffe00, 0x200108c0);
                		if (res == ZX_OK)
                r[2] = *(uint32_t*)0x200108c0;
                		break;
                	case 5:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t))CAST(zx_channel_create))(0, 0x20010940, 0x20010980);
                		if (res == ZX_OK)
                r[3] = *(uint32_t*)0x20010980;
                		break;
                	case 6:
                		res = -1;
                res = ((intptr_t(*)())CAST(get_root_resource))();
                		if ((int)res != -1)
                				r[4] = res;
                		break;
                	case 7:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vmar_allocate))(r[1], 0x16000000, 0xd7d1, -1, 0x200109c0, 0x20010a00);
                		if (res == ZX_OK)
                r[5] = *(uint32_t*)0x200109c0;
                		break;
                	case 8:
                *(uint32_t*)0x20010900 = 0;
                memset((void*)0x20010904, 0, 3);
                *(uint8_t*)0x20010907 = 1;
                *(uint64_t*)0x20010908 = 0x5cd6900b00000000;
                *(uint64_t*)0x20010910 = 0xfff;
                *(uint64_t*)0x20010918 = 0;
                *(uint32_t*)0x20010920 = -1;
                *(uint32_t*)0x20010924 = 9;
                *(uint32_t*)0x20010a40 = r[3];
                *(uint32_t*)0x20010a44 = r[4];
                *(uint32_t*)0x20010a48 = r[5];
                *(uint32_t*)0x20010a4c = r[1];
                *(uint32_t*)0x20010a50 = r[1];
                *(uint32_t*)0x20010a54 = r[1];
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_write))(r[2], 0, 0x20010900, 0x28, 0x20010a40, 0x18);
                		break;
                	case 9:
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vcpu_write_state))(r[4], 0x80000001, 0x20010a80, 0xf5);
                		break;
                	case 10:
                memcpy((void*)0x20000000, "\xc4\x22\x01\x04\x1d\xb2\x3b\xae\x8b\x67\x2e\x26\x41\xc7\x04\xfb\x27\x27\x00\x00\xf0\x41\x0f\xc7\x8b\x95\x42\x4e\xd7\x65\xa2\x0a\x00\x00\x00\x00\x00\x00\x00\xc4\x83\xc9\x5e\x18\x05\xc4\xe2\xb1\x90\x34\x7b\xf2\x0f\x59\x33\x3e\x0f\x38\xf1\x5b\xd2\x3e\xf3\x47\x0f\x2a\x98\xc1\x59\x6e\x05\xc4\x61\xaa\x11\xc1", 76);
                syz_execute_func(0x20000000);
                		break;
                	case 11:
                syz_future_time(0);
                		break;
                	case 12:
                syz_job_default();
                		break;
                	case 13:
                syz_mmap(0x20ffd000, 0x2000);
                		break;
                	case 14:
                syz_process_self();
                		break;
                	case 15:
                syz_thread_self();
                		break;
                	case 16:
                syz_vmar_root_self();
                		break;
                	}
                
                }
                int main(void)
                {
                syz_mmap(0x20000000, 0x1000000);
                	setup_fault();
                			use_temporary_dir();
                			do_sandbox_none();
                	return 0;
                }
                
                <stdin>:8:10: fatal error: 'lib/ddk/driver.h' file not found
                #include <lib/ddk/driver.h>
                         ^~~~~~~~~~~~~~~~~~
                1 error generated.
                
                compiler invocation: /syzkaller/shared/fuchsia/prebuilt/third_party/clang/linux-x64/bin/clang [-o /tmp/syz-executor4024357138 -DGOOS_fuchsia=1 -DGOARCH_amd64=1 -DHOSTGOOS_linux=1 -x c - -Wno-deprecated -target x86_64-fuchsia -ldriver -lfdio -lzircon --sysroot /syzkaller/shared/fuchsia/out/x64/zircon_toolchain/obj/zircon/public/sysroot/sysroot -I /syzkaller/shared/fuchsia/sdk/lib/fdio/include -I /syzkaller/shared/fuchsia/zircon/system/ulib/fidl/include -I /syzkaller/shared/fuchsia/src/lib/ddk/include -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device.manager -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.nand -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.power.statecontrol -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.usb.peripheral -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/zircon/vdso/zx -L /syzkaller/shared/fuchsia/out/x64/x64-shared -O2 -pthread -Wall -Werror -Wparentheses -Wunused-const-variable -Wframe-larger-than=16384 -Wno-array-bounds -Wno-unused-command-line-argument]
        --- FAIL: TestGenerate/fuchsia/amd64/0 (0.32s)
            csource_test.go:133: opts: {Threaded:false Repeat:true RepeatTimes:0 Procs:0 Slowdown:1 Sandbox:none SandboxArg:0 Leak:false NetInjection:false NetDevices:false NetReset:false Cgroups:false BinfmtMisc:false CloseFDs:false KCSAN:false DevlinkPCI:false NicVF:false USB:false VhciInjection:false Wifi:false IEEE802154:false Sysctl:false UseTmpDir:true HandleSegv:false Repro:false Trace:false LegacyOptions:{Collide:false Fault:false FaultCall:0 FaultNth:0}}
                program:
                zx_stream_seek(0x0, 0x1, 0x8, &(0x7f0000000000)=<r0=>0x0) (fail_nth: 1)
                zx_stream_readv_at(0x0, 0x0, r0, &(0x7f0000000140)=[{&(0x7f0000000040)="1dbbb25cf45e520025f9c3a033b31b3a7969f7b384ed40aed6fba77a34ac1a64d1c95f9f7230446ed1ac8ecfdb9d39ca441ead1b96b12a6fd18da42173794436402ff5b4063215ecc612fd27da75c703b9b4f6944304041476d52c130b37f7f9c0067864ce18e33f6119b30fc4e4d2b040131db7201bc5e6af7c3467b67a129df678bfb11aba6ab56fa7fddd654e325f2a80386b8754b9f2eeed19abaa249428a367bf8bf788d2c66657a67c50394fa4e76ce217b12b0722001eee20736a11156183494fae831c2edf250858bf234c4269b07d001373dc3e0df227ec3a554651f758992975d9d1238c", 0xe9}], 0x1, &(0x7f0000000180)) (async)
                zx_channel_call$fuchsia_io_DirectoryDescribe(0x0, 0x0, 0x7fffffffffffffff, &(0x7f0000010280)={&(0x7f00000001c0), &(0x7f0000000200), &(0x7f0000000240), &(0x7f0000010240)={@tty={<r1=>0x0}}, 0x10, 0x0, 0x10000, 0x1}, &(0x7f00000102c0), &(0x7f0000010300)) (rerun: 4)
                zx_stream_readv(r1, 0x0, &(0x7f00000107c0)=[{&(0x7f0000010340)="13ccbcace9bec9588ef417b72f309eabab8261a79e651e4c24", 0x19}, {&(0x7f0000010380)="34740cb62b97", 0x6}, {&(0x7f00000103c0)="168ac07f7e3b669b1ca5880a2e28dc095b3fe131ad1eb10728758dbd2f595d928ca66208e7d7b692ef2c841eefd28125bbf4d62d30c96806e729cb70e833f10cab51e6e5216509944bfdf0375ba3ffd45ed44d6f702b4d571af99d1130181cffcbb1db5bbbf0e31577d115f71ff167ae0eb9f13f64f67757293146986813812748b96a1c118f4048f4aa6e52245d87f5779e47b5b59a536b6e5fcaf43f586869a57952b92ba1eb14c14f31e7c8587ce277592a4bc12f6d1ea82acdc9b973dbe1460196899a00297e4e7132e3b00828", 0xcf}, {&(0x7f00000104c0)="db71d76cc7ccc94acb73768cdf08cadc1361e1", 0x13}, {&(0x7f0000010500)="eeb2850724606ae7ce7a5652b5b8a8f3a5c06132979557f4854614e666041c1a9414826002449785039a57863aad0d64f99b27b81bdf9150f2792c6230ccdafef21193496f8b4ebbe48dcc5ccb880a69ad2aa6ed15a3576e656acbd1d5abfe14214bfb95cf87a6215019229374f041a6ce16420fe4763ab1fecea5db14919ec69c503acc07e51e4e15b777ed58e3cb58dd7a8ac9eeb4356cb3232fc66c7701ae4e23f14d11cce19a0b881b84d02053251ba5ea826fdb7da2ba5d4ec4ea1c51ce7e0c5642b3", 0xc5}, {&(0x7f0000010600)="d35ae8f9b709073a472079b12033dfd09c6a4718646cd992b2d1cd3589446b63b30c67", 0x23}, {&(0x7f0000010640)="5063cdf3589ec6c7b9540e7514f95ff7df32dedfab4e", 0x16}, {&(0x7f0000010680)="6225f8bb38693aa65411301b35842574ddc40d87497aa2f3fe39f7b8baccc10a30c6a9d2ad6516d88365662655aebdb47320763ac28ef733b202bd", 0x3b}, {&(0x7f00000106c0)="f6cf9eeec4e1068663cd86fc0c255f051c750c853d1cc07483b73b0759d5284ebd41bc8db28eb7b5dbdf7221d87793262d57bcab1199a0ceda8b5e4c57217038c17f96f0dfff52fac698c73c2a0d69266477abf578c05fc50e75ba8461997a9c6fd9f06189516090d47ee8d81a93da8002d88cecf26d3cead9b59f230bdc46266fb0dc7608cdbef037746bc71c1d865acff03fd5afb6a4ea9a1e7f0b5c1899a287e2ee8a8da9ac0edcc302c3f96a36480b6cb31d1e29787d715f450d3c467dfc4dbd31f3562ac994b2634e91a8d3eaa7252fe0db77b2e6da554e67a34317e38e0007ec37ee584978e7c09b2806c171", 0xef}], 0x9, &(0x7f0000010880))
                zx_event_create(0xffe00, &(0x7f00000108c0)=<r2=>0x0)
                zx_channel_create$fuchsia_cobalt_SystemDataUpdater(0x0, &(0x7f0000010940), &(0x7f0000010980)=<r3=>0x0)
                r4 = get_root_resource()
                zx_vmar_allocate(r1, 0x16000000, 0xd7d1, 0xffffffffffffffff, &(0x7f00000109c0)=<r5=>0x0, &(0x7f0000010a00))
                zx_channel_write$fuchsia_process_LauncherAddHandles(r2, 0x0, &(0x7f0000010900)={{}, {0xfff}, {[{0xffffffff, 0x9}], [{}, {}]}}, 0x28, &(0x7f0000010a40)={[{r3}, {r4}, {r5}, {r1}, {r1}, {r1}]}, 0x18)
                zx_vcpu_write_state(r4, 0x80000001, &(0x7f0000010a80)=""/245, 0xf5)
                syz_execute_func(&(0x7f0000000000)="c42201041db23bae8b672e2641c704fb27270000f0410fc78b95424ed765a20a00000000000000c483c95e1805c4e2b190347bf20f59333e0f38f15bd23ef3470f2a98c1596e05c461aa11c1")
                syz_future_time(0x0)
                syz_job_default()
                syz_mmap(&(0x7f0000ffd000/0x2000)=nil, 0x2000)
                syz_process_self()
                syz_thread_self()
                syz_vmar_root_self()
                
            csource_test.go:134: failed to build program:
                // autogenerated by syzkaller (https://github.com/google/syzkaller)
                
                #define _GNU_SOURCE 
                
                #include <endian.h>
                #include <fcntl.h>
                #include <lib/ddk/driver.h>
                #include <lib/fdio/directory.h>
                #include <poll.h>
                #include <signal.h>
                #include <stdint.h>
                #include <stdio.h>
                #include <stdlib.h>
                #include <string.h>
                #include <sys/file.h>
                #include <sys/ioctl.h>
                #include <sys/socket.h>
                #include <sys/stat.h>
                #include <sys/time.h>
                #include <sys/types.h>
                #include <sys/uio.h>
                #include <time.h>
                #include <unistd.h>
                #include <utime.h>
                #include <zircon/process.h>
                #include <zircon/status.h>
                #include <zircon/syscalls.h>
                
                static void use_temporary_dir(void)
                {
                	char tmpdir_template[] = "/tmp/syzkaller.XXXXXX";
                	char* tmpdir = mkdtemp(tmpdir_template);
                	if (!tmpdir)
                	exit(1);
                	if (chmod(tmpdir, 0777))
                	exit(1);
                	if (chdir(tmpdir))
                	exit(1);
                }
                
                static int inject_fault(int nth)
                {
                	return 0;
                }
                
                static void setup_fault()
                {
                }
                
                long syz_mmap(size_t addr, size_t size)
                {
                	zx_handle_t root = zx_vmar_root_self();
                	zx_info_vmar_t info;
                	zx_status_t status = zx_object_get_info(root, ZX_INFO_VMAR, &info, sizeof(info), 0, 0);
                	if (status != ZX_OK) {
                		return status;
                	}
                	zx_handle_t vmo;
                	status = zx_vmo_create(size, 0, &vmo);
                	if (status != ZX_OK) {
                		return status;
                	}
                	uintptr_t mapped_addr;
                	status = zx_vmar_map(root, ZX_VM_FLAG_SPECIFIC_OVERWRITE | ZX_VM_FLAG_PERM_READ | ZX_VM_FLAG_PERM_WRITE,
                			     addr - info.base, vmo, 0, size,
                			     &mapped_addr);
                	zx_status_t close_vmo_status = zx_handle_close(vmo);
                	if (close_vmo_status != ZX_OK) {
                	}
                	return status;
                }
                
                static long syz_process_self(void)
                {
                	return zx_process_self();
                }
                
                static long syz_thread_self(void)
                {
                	return zx_thread_self();
                }
                
                static long syz_vmar_root_self(void)
                {
                	return zx_vmar_root_self();
                }
                
                static long syz_job_default(void)
                {
                	return zx_job_default();
                }
                
                static long syz_future_time(volatile long when)
                {
                	zx_time_t delta_ms = 10000;
                	switch (when) {
                	case 0:
                		delta_ms = 5;
                		break;
                	case 1:
                		delta_ms = 30;
                		break;
                	}
                	zx_time_t now = 0;
                	zx_clock_read(ZX_CLOCK_MONOTONIC, &now);
                	return now + delta_ms * 1000 * 1000;
                }
                
                static void loop();
                static int do_sandbox_none(void)
                {
                	loop();
                	return 0;
                }
                #define CAST(f) ({void* p = (void*)f; p; })
                
                static long syz_execute_func(volatile long text)
                {
                	((void (*)(void))(text))();
                	return 0;
                }
                
                static void execute_one(void);
                static void loop(void)
                {
                	execute_one();
                }
                
                uint64_t r[6] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
                
                void execute_one(void)
                {
                		intptr_t res = 0;
                	inject_fault(1);
                	res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_seek))(0, 1, 8, 0x20000000);
                	if (res == ZX_OK)
                r[0] = *(uint64_t*)0x20000000;
                *(uint64_t*)0x20000140 = 0x20000040;
                memcpy((void*)0x20000040, "\x1d\xbb\xb2\x5c\xf4\x5e\x52\x00\x25\xf9\xc3\xa0\x33\xb3\x1b\x3a\x79\x69\xf7\xb3\x84\xed\x40\xae\xd6\xfb\xa7\x7a\x34\xac\x1a\x64\xd1\xc9\x5f\x9f\x72\x30\x44\x6e\xd1\xac\x8e\xcf\xdb\x9d\x39\xca\x44\x1e\xad\x1b\x96\xb1\x2a\x6f\xd1\x8d\xa4\x21\x73\x79\x44\x36\x40\x2f\xf5\xb4\x06\x32\x15\xec\xc6\x12\xfd\x27\xda\x75\xc7\x03\xb9\xb4\xf6\x94\x43\x04\x04\x14\x76\xd5\x2c\x13\x0b\x37\xf7\xf9\xc0\x06\x78\x64\xce\x18\xe3\x3f\x61\x19\xb3\x0f\xc4\xe4\xd2\xb0\x40\x13\x1d\xb7\x20\x1b\xc5\xe6\xaf\x7c\x34\x67\xb6\x7a\x12\x9d\xf6\x78\xbf\xb1\x1a\xba\x6a\xb5\x6f\xa7\xfd\xdd\x65\x4e\x32\x5f\x2a\x80\x38\x6b\x87\x54\xb9\xf2\xee\xed\x19\xab\xaa\x24\x94\x28\xa3\x67\xbf\x8b\xf7\x88\xd2\xc6\x66\x57\xa6\x7c\x50\x39\x4f\xa4\xe7\x6c\xe2\x17\xb1\x2b\x07\x22\x00\x1e\xee\x20\x73\x6a\x11\x15\x61\x83\x49\x4f\xae\x83\x1c\x2e\xdf\x25\x08\x58\xbf\x23\x4c\x42\x69\xb0\x7d\x00\x13\x73\xdc\x3e\x0d\xf2\x27\xec\x3a\x55\x46\x51\xf7\x58\x99\x29\x75\xd9\xd1\x23\x8c", 233);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv_at))(0, 0, r[0], 0x20000140, 1, 0x20000180);
                *(uint64_t*)0x20010280 = 0x200001c0;
                *(uint32_t*)0x200001c0 = 0;
                memset((void*)0x200001c4, 0, 3);
                *(uint8_t*)0x200001c7 = 1;
                *(uint64_t*)0x200001c8 = 0x1f62df5e00000000;
                *(uint64_t*)0x20010288 = 0x20000200;
                *(uint64_t*)0x20010290 = 0x20000240;
                *(uint64_t*)0x20010298 = 0x20010240;
                *(uint32_t*)0x200102a0 = 0x10;
                *(uint32_t*)0x200102a4 = 0;
                *(uint32_t*)0x200102a8 = 0x10000;
                *(uint32_t*)0x200102ac = 1;
                	res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                	{
                	int i;
                	for(i = 0; i < 4; i++) {
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                		}
                	}
                	if (res == ZX_OK)
                r[1] = *(uint32_t*)0x20010240;
                *(uint64_t*)0x200107c0 = 0x20010340;
                memcpy((void*)0x20010340, "\x13\xcc\xbc\xac\xe9\xbe\xc9\x58\x8e\xf4\x17\xb7\x2f\x30\x9e\xab\xab\x82\x61\xa7\x9e\x65\x1e\x4c\x24", 25);
                *(uint64_t*)0x200107d0 = 0x20010380;
                memcpy((void*)0x20010380, "\x34\x74\x0c\xb6\x2b\x97", 6);
                *(uint64_t*)0x200107e0 = 0x200103c0;
                memcpy((void*)0x200103c0, "\x16\x8a\xc0\x7f\x7e\x3b\x66\x9b\x1c\xa5\x88\x0a\x2e\x28\xdc\x09\x5b\x3f\xe1\x31\xad\x1e\xb1\x07\x28\x75\x8d\xbd\x2f\x59\x5d\x92\x8c\xa6\x62\x08\xe7\xd7\xb6\x92\xef\x2c\x84\x1e\xef\xd2\x81\x25\xbb\xf4\xd6\x2d\x30\xc9\x68\x06\xe7\x29\xcb\x70\xe8\x33\xf1\x0c\xab\x51\xe6\xe5\x21\x65\x09\x94\x4b\xfd\xf0\x37\x5b\xa3\xff\xd4\x5e\xd4\x4d\x6f\x70\x2b\x4d\x57\x1a\xf9\x9d\x11\x30\x18\x1c\xff\xcb\xb1\xdb\x5b\xbb\xf0\xe3\x15\x77\xd1\x15\xf7\x1f\xf1\x67\xae\x0e\xb9\xf1\x3f\x64\xf6\x77\x57\x29\x31\x46\x98\x68\x13\x81\x27\x48\xb9\x6a\x1c\x11\x8f\x40\x48\xf4\xaa\x6e\x52\x24\x5d\x87\xf5\x77\x9e\x47\xb5\xb5\x9a\x53\x6b\x6e\x5f\xca\xf4\x3f\x58\x68\x69\xa5\x79\x52\xb9\x2b\xa1\xeb\x14\xc1\x4f\x31\xe7\xc8\x58\x7c\xe2\x77\x59\x2a\x4b\xc1\x2f\x6d\x1e\xa8\x2a\xcd\xc9\xb9\x73\xdb\xe1\x46\x01\x96\x89\x9a\x00\x29\x7e\x4e\x71\x32\xe3\xb0\x08\x28", 207);
                *(uint64_t*)0x200107f0 = 0x200104c0;
                memcpy((void*)0x200104c0, "\xdb\x71\xd7\x6c\xc7\xcc\xc9\x4a\xcb\x73\x76\x8c\xdf\x08\xca\xdc\x13\x61\xe1", 19);
                *(uint64_t*)0x20010800 = 0x20010500;
                memcpy((void*)0x20010500, "\xee\xb2\x85\x07\x24\x60\x6a\xe7\xce\x7a\x56\x52\xb5\xb8\xa8\xf3\xa5\xc0\x61\x32\x97\x95\x57\xf4\x85\x46\x14\xe6\x66\x04\x1c\x1a\x94\x14\x82\x60\x02\x44\x97\x85\x03\x9a\x57\x86\x3a\xad\x0d\x64\xf9\x9b\x27\xb8\x1b\xdf\x91\x50\xf2\x79\x2c\x62\x30\xcc\xda\xfe\xf2\x11\x93\x49\x6f\x8b\x4e\xbb\xe4\x8d\xcc\x5c\xcb\x88\x0a\x69\xad\x2a\xa6\xed\x15\xa3\x57\x6e\x65\x6a\xcb\xd1\xd5\xab\xfe\x14\x21\x4b\xfb\x95\xcf\x87\xa6\x21\x50\x19\x22\x93\x74\xf0\x41\xa6\xce\x16\x42\x0f\xe4\x76\x3a\xb1\xfe\xce\xa5\xdb\x14\x91\x9e\xc6\x9c\x50\x3a\xcc\x07\xe5\x1e\x4e\x15\xb7\x77\xed\x58\xe3\xcb\x58\xdd\x7a\x8a\xc9\xee\xb4\x35\x6c\xb3\x23\x2f\xc6\x6c\x77\x01\xae\x4e\x23\xf1\x4d\x11\xcc\xe1\x9a\x0b\x88\x1b\x84\xd0\x20\x53\x25\x1b\xa5\xea\x82\x6f\xdb\x7d\xa2\xba\x5d\x4e\xc4\xea\x1c\x51\xce\x7e\x0c\x56\x42\xb3", 197);
                *(uint64_t*)0x20010810 = 0x20010600;
                memcpy((void*)0x20010600, "\xd3\x5a\xe8\xf9\xb7\x09\x07\x3a\x47\x20\x79\xb1\x20\x33\xdf\xd0\x9c\x6a\x47\x18\x64\x6c\xd9\x92\xb2\xd1\xcd\x35\x89\x44\x6b\x63\xb3\x0c\x67", 35);
                *(uint64_t*)0x20010820 = 0x20010640;
                memcpy((void*)0x20010640, "\x50\x63\xcd\xf3\x58\x9e\xc6\xc7\xb9\x54\x0e\x75\x14\xf9\x5f\xf7\xdf\x32\xde\xdf\xab\x4e", 22);
                *(uint64_t*)0x20010830 = 0x20010680;
                memcpy((void*)0x20010680, "\x62\x25\xf8\xbb\x38\x69\x3a\xa6\x54\x11\x30\x1b\x35\x84\x25\x74\xdd\xc4\x0d\x87\x49\x7a\xa2\xf3\xfe\x39\xf7\xb8\xba\xcc\xc1\x0a\x30\xc6\xa9\xd2\xad\x65\x16\xd8\x83\x65\x66\x26\x55\xae\xbd\xb4\x73\x20\x76\x3a\xc2\x8e\xf7\x33\xb2\x02\xbd", 59);
                *(uint64_t*)0x20010840 = 0x200106c0;
                memcpy((void*)0x200106c0, "\xf6\xcf\x9e\xee\xc4\xe1\x06\x86\x63\xcd\x86\xfc\x0c\x25\x5f\x05\x1c\x75\x0c\x85\x3d\x1c\xc0\x74\x83\xb7\x3b\x07\x59\xd5\x28\x4e\xbd\x41\xbc\x8d\xb2\x8e\xb7\xb5\xdb\xdf\x72\x21\xd8\x77\x93\x26\x2d\x57\xbc\xab\x11\x99\xa0\xce\xda\x8b\x5e\x4c\x57\x21\x70\x38\xc1\x7f\x96\xf0\xdf\xff\x52\xfa\xc6\x98\xc7\x3c\x2a\x0d\x69\x26\x64\x77\xab\xf5\x78\xc0\x5f\xc5\x0e\x75\xba\x84\x61\x99\x7a\x9c\x6f\xd9\xf0\x61\x89\x51\x60\x90\xd4\x7e\xe8\xd8\x1a\x93\xda\x80\x02\xd8\x8c\xec\xf2\x6d\x3c\xea\xd9\xb5\x9f\x23\x0b\xdc\x46\x26\x6f\xb0\xdc\x76\x08\xcd\xbe\xf0\x37\x74\x6b\xc7\x1c\x1d\x86\x5a\xcf\xf0\x3f\xd5\xaf\xb6\xa4\xea\x9a\x1e\x7f\x0b\x5c\x18\x99\xa2\x87\xe2\xee\x8a\x8d\xa9\xac\x0e\xdc\xc3\x02\xc3\xf9\x6a\x36\x48\x0b\x6c\xb3\x1d\x1e\x29\x78\x7d\x71\x5f\x45\x0d\x3c\x46\x7d\xfc\x4d\xbd\x31\xf3\x56\x2a\xc9\x94\xb2\x63\x4e\x91\xa8\xd3\xea\xa7\x25\x2f\xe0\xdb\x77\xb2\xe6\xda\x55\x4e\x67\xa3\x43\x17\xe3\x8e\x00\x07\xec\x37\xee\x58\x49\x78\xe7\xc0\x9b\x28\x06\xc1\x71", 239);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv))(r[1], 0, 0x200107c0, 9, 0x20010880);
                	res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t))CAST(zx_event_create))(0xffe00, 0x200108c0);
                	if (res == ZX_OK)
                r[2] = *(uint32_t*)0x200108c0;
                	res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t))CAST(zx_channel_create))(0, 0x20010940, 0x20010980);
                	if (res == ZX_OK)
                r[3] = *(uint32_t*)0x20010980;
                	res = -1;
                res = ((intptr_t(*)())CAST(get_root_resource))();
                	if ((int)res != -1)
                		r[4] = res;
                	res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vmar_allocate))(r[1], 0x16000000, 0xd7d1, -1, 0x200109c0, 0x20010a00);
                	if (res == ZX_OK)
                r[5] = *(uint32_t*)0x200109c0;
                *(uint32_t*)0x20010900 = 0;
                memset((void*)0x20010904, 0, 3);
                *(uint8_t*)0x20010907 = 1;
                *(uint64_t*)0x20010908 = 0x5cd6900b00000000;
                *(uint64_t*)0x20010910 = 0xfff;
                *(uint64_t*)0x20010918 = 0;
                *(uint32_t*)0x20010920 = -1;
                *(uint32_t*)0x20010924 = 9;
                *(uint32_t*)0x20010a40 = r[3];
                *(uint32_t*)0x20010a44 = r[4];
                *(uint32_t*)0x20010a48 = r[5];
                *(uint32_t*)0x20010a4c = r[1];
                *(uint32_t*)0x20010a50 = r[1];
                *(uint32_t*)0x20010a54 = r[1];
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_write))(r[2], 0, 0x20010900, 0x28, 0x20010a40, 0x18);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vcpu_write_state))(r[4], 0x80000001, 0x20010a80, 0xf5);
                memcpy((void*)0x20000000, "\xc4\x22\x01\x04\x1d\xb2\x3b\xae\x8b\x67\x2e\x26\x41\xc7\x04\xfb\x27\x27\x00\x00\xf0\x41\x0f\xc7\x8b\x95\x42\x4e\xd7\x65\xa2\x0a\x00\x00\x00\x00\x00\x00\x00\xc4\x83\xc9\x5e\x18\x05\xc4\xe2\xb1\x90\x34\x7b\xf2\x0f\x59\x33\x3e\x0f\x38\xf1\x5b\xd2\x3e\xf3\x47\x0f\x2a\x98\xc1\x59\x6e\x05\xc4\x61\xaa\x11\xc1", 76);
                syz_execute_func(0x20000000);
                syz_future_time(0);
                syz_job_default();
                syz_mmap(0x20ffd000, 0x2000);
                syz_process_self();
                syz_thread_self();
                syz_vmar_root_self();
                
                }
                int main(void)
                {
                syz_mmap(0x20000000, 0x1000000);
                	setup_fault();
                			use_temporary_dir();
                			do_sandbox_none();
                	return 0;
                }
                
                <stdin>:7:10: fatal error: 'lib/ddk/driver.h' file not found
                #include <lib/ddk/driver.h>
                         ^~~~~~~~~~~~~~~~~~
                1 error generated.
                
                compiler invocation: /syzkaller/shared/fuchsia/prebuilt/third_party/clang/linux-x64/bin/clang [-o /tmp/syz-executor3862263123 -DGOOS_fuchsia=1 -DGOARCH_amd64=1 -DHOSTGOOS_linux=1 -x c - -Wno-deprecated -target x86_64-fuchsia -ldriver -lfdio -lzircon --sysroot /syzkaller/shared/fuchsia/out/x64/zircon_toolchain/obj/zircon/public/sysroot/sysroot -I /syzkaller/shared/fuchsia/sdk/lib/fdio/include -I /syzkaller/shared/fuchsia/zircon/system/ulib/fidl/include -I /syzkaller/shared/fuchsia/src/lib/ddk/include -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device.manager -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.nand -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.power.statecontrol -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.usb.peripheral -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/zircon/vdso/zx -L /syzkaller/shared/fuchsia/out/x64/x64-shared -O2 -pthread -Wall -Werror -Wparentheses -Wunused-const-variable -Wframe-larger-than=16384 -Wno-array-bounds -Wno-unused-command-line-argument]
        --- FAIL: TestGenerate/fuchsia/amd64/14 (0.14s)
            csource_test.go:133: opts: {Threaded:true Repeat:true RepeatTimes:0 Procs:2 Slowdown:1 Sandbox:none SandboxArg:0 Leak:false NetInjection:false NetDevices:false NetReset:false Cgroups:false BinfmtMisc:false CloseFDs:false KCSAN:false DevlinkPCI:false NicVF:false USB:false VhciInjection:false Wifi:false IEEE802154:false Sysctl:false UseTmpDir:true HandleSegv:false Repro:true Trace:false LegacyOptions:{Collide:false Fault:false FaultCall:0 FaultNth:0}}
                program:
                zx_stream_seek(0x0, 0x1, 0x8, &(0x7f0000000000)=<r0=>0x0) (fail_nth: 1)
                zx_stream_readv_at(0x0, 0x0, r0, &(0x7f0000000140)=[{&(0x7f0000000040)="1dbbb25cf45e520025f9c3a033b31b3a7969f7b384ed40aed6fba77a34ac1a64d1c95f9f7230446ed1ac8ecfdb9d39ca441ead1b96b12a6fd18da42173794436402ff5b4063215ecc612fd27da75c703b9b4f6944304041476d52c130b37f7f9c0067864ce18e33f6119b30fc4e4d2b040131db7201bc5e6af7c3467b67a129df678bfb11aba6ab56fa7fddd654e325f2a80386b8754b9f2eeed19abaa249428a367bf8bf788d2c66657a67c50394fa4e76ce217b12b0722001eee20736a11156183494fae831c2edf250858bf234c4269b07d001373dc3e0df227ec3a554651f758992975d9d1238c", 0xe9}], 0x1, &(0x7f0000000180)) (async)
                zx_channel_call$fuchsia_io_DirectoryDescribe(0x0, 0x0, 0x7fffffffffffffff, &(0x7f0000010280)={&(0x7f00000001c0), &(0x7f0000000200), &(0x7f0000000240), &(0x7f0000010240)={@tty={<r1=>0x0}}, 0x10, 0x0, 0x10000, 0x1}, &(0x7f00000102c0), &(0x7f0000010300)) (rerun: 4)
                zx_stream_readv(r1, 0x0, &(0x7f00000107c0)=[{&(0x7f0000010340)="13ccbcace9bec9588ef417b72f309eabab8261a79e651e4c24", 0x19}, {&(0x7f0000010380)="34740cb62b97", 0x6}, {&(0x7f00000103c0)="168ac07f7e3b669b1ca5880a2e28dc095b3fe131ad1eb10728758dbd2f595d928ca66208e7d7b692ef2c841eefd28125bbf4d62d30c96806e729cb70e833f10cab51e6e5216509944bfdf0375ba3ffd45ed44d6f702b4d571af99d1130181cffcbb1db5bbbf0e31577d115f71ff167ae0eb9f13f64f67757293146986813812748b96a1c118f4048f4aa6e52245d87f5779e47b5b59a536b6e5fcaf43f586869a57952b92ba1eb14c14f31e7c8587ce277592a4bc12f6d1ea82acdc9b973dbe1460196899a00297e4e7132e3b00828", 0xcf}, {&(0x7f00000104c0)="db71d76cc7ccc94acb73768cdf08cadc1361e1", 0x13}, {&(0x7f0000010500)="eeb2850724606ae7ce7a5652b5b8a8f3a5c06132979557f4854614e666041c1a9414826002449785039a57863aad0d64f99b27b81bdf9150f2792c6230ccdafef21193496f8b4ebbe48dcc5ccb880a69ad2aa6ed15a3576e656acbd1d5abfe14214bfb95cf87a6215019229374f041a6ce16420fe4763ab1fecea5db14919ec69c503acc07e51e4e15b777ed58e3cb58dd7a8ac9eeb4356cb3232fc66c7701ae4e23f14d11cce19a0b881b84d02053251ba5ea826fdb7da2ba5d4ec4ea1c51ce7e0c5642b3", 0xc5}, {&(0x7f0000010600)="d35ae8f9b709073a472079b12033dfd09c6a4718646cd992b2d1cd3589446b63b30c67", 0x23}, {&(0x7f0000010640)="5063cdf3589ec6c7b9540e7514f95ff7df32dedfab4e", 0x16}, {&(0x7f0000010680)="6225f8bb38693aa65411301b35842574ddc40d87497aa2f3fe39f7b8baccc10a30c6a9d2ad6516d88365662655aebdb47320763ac28ef733b202bd", 0x3b}, {&(0x7f00000106c0)="f6cf9eeec4e1068663cd86fc0c255f051c750c853d1cc07483b73b0759d5284ebd41bc8db28eb7b5dbdf7221d87793262d57bcab1199a0ceda8b5e4c57217038c17f96f0dfff52fac698c73c2a0d69266477abf578c05fc50e75ba8461997a9c6fd9f06189516090d47ee8d81a93da8002d88cecf26d3cead9b59f230bdc46266fb0dc7608cdbef037746bc71c1d865acff03fd5afb6a4ea9a1e7f0b5c1899a287e2ee8a8da9ac0edcc302c3f96a36480b6cb31d1e29787d715f450d3c467dfc4dbd31f3562ac994b2634e91a8d3eaa7252fe0db77b2e6da554e67a34317e38e0007ec37ee584978e7c09b2806c171", 0xef}], 0x9, &(0x7f0000010880))
                zx_event_create(0xffe00, &(0x7f00000108c0)=<r2=>0x0)
                zx_channel_create$fuchsia_cobalt_SystemDataUpdater(0x0, &(0x7f0000010940), &(0x7f0000010980)=<r3=>0x0)
                r4 = get_root_resource()
                zx_vmar_allocate(r1, 0x16000000, 0xd7d1, 0xffffffffffffffff, &(0x7f00000109c0)=<r5=>0x0, &(0x7f0000010a00))
                zx_channel_write$fuchsia_process_LauncherAddHandles(r2, 0x0, &(0x7f0000010900)={{}, {0xfff}, {[{0xffffffff, 0x9}], [{}, {}]}}, 0x28, &(0x7f0000010a40)={[{r3}, {r4}, {r5}, {r1}, {r1}, {r1}]}, 0x18)
                zx_vcpu_write_state(r4, 0x80000001, &(0x7f0000010a80)=""/245, 0xf5)
                syz_execute_func(&(0x7f0000000000)="c42201041db23bae8b672e2641c704fb27270000f0410fc78b95424ed765a20a00000000000000c483c95e1805c4e2b190347bf20f59333e0f38f15bd23ef3470f2a98c1596e05c461aa11c1")
                syz_future_time(0x0)
                syz_job_default()
                syz_mmap(&(0x7f0000ffd000/0x2000)=nil, 0x2000)
                syz_process_self()
                syz_thread_self()
                syz_vmar_root_self()
                
            csource_test.go:134: failed to build program:
                // autogenerated by syzkaller (https://github.com/google/syzkaller)
                
                #define _GNU_SOURCE 
                
                #include <endian.h>
                #include <errno.h>
                #include <fcntl.h>
                #include <lib/ddk/driver.h>
                #include <lib/fdio/directory.h>
                #include <poll.h>
                #include <pthread.h>
                #include <signal.h>
                #include <stdint.h>
                #include <stdio.h>
                #include <stdlib.h>
                #include <string.h>
                #include <sys/file.h>
                #include <sys/ioctl.h>
                #include <sys/socket.h>
                #include <sys/stat.h>
                #include <sys/time.h>
                #include <sys/types.h>
                #include <sys/uio.h>
                #include <time.h>
                #include <unistd.h>
                #include <utime.h>
                #include <zircon/process.h>
                #include <zircon/status.h>
                #include <zircon/syscalls.h>
                
                static unsigned long long procid;
                
                static void sleep_ms(uint64_t ms)
                {
                	usleep(ms * 1000);
                }
                
                static uint64_t current_time_ms(void)
                {
                	struct timespec ts;
                	if (clock_gettime(CLOCK_MONOTONIC, &ts))
                	exit(1);
                	return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000;
                }
                
                static void use_temporary_dir(void)
                {
                	char tmpdir_template[] = "/tmp/syzkaller.XXXXXX";
                	char* tmpdir = mkdtemp(tmpdir_template);
                	if (!tmpdir)
                	exit(1);
                	if (chmod(tmpdir, 0777))
                	exit(1);
                	if (chdir(tmpdir))
                	exit(1);
                }
                
                static int inject_fault(int nth)
                {
                	return 0;
                }
                
                static void setup_fault()
                {
                }
                
                static void thread_start(void* (*fn)(void*), void* arg)
                {
                	pthread_t th;
                	pthread_attr_t attr;
                	pthread_attr_init(&attr);
                	pthread_attr_setstacksize(&attr, 128 << 10);
                	int i = 0;
                	for (; i < 100; i++) {
                		if (pthread_create(&th, &attr, fn, arg) == 0) {
                			pthread_attr_destroy(&attr);
                			return;
                		}
                		if (errno == EAGAIN) {
                			usleep(50);
                			continue;
                		}
                		break;
                	}
                	exit(1);
                }
                
                typedef struct {
                	int state;
                } event_t;
                
                static void event_init(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_reset(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_set(event_t* ev)
                {
                	if (ev->state)
                	exit(1);
                	__atomic_store_n(&ev->state, 1, __ATOMIC_RELEASE);
                }
                
                static void event_wait(event_t* ev)
                {
                	while (!__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE))
                		usleep(200);
                }
                
                static int event_isset(event_t* ev)
                {
                	return __atomic_load_n(&ev->state, __ATOMIC_ACQUIRE);
                }
                
                static int event_timedwait(event_t* ev, uint64_t timeout_ms)
                {
                	uint64_t start = current_time_ms();
                	for (;;) {
                		if (__atomic_load_n(&ev->state, __ATOMIC_RELAXED))
                			return 1;
                		if (current_time_ms() - start > timeout_ms)
                			return 0;
                		usleep(200);
                	}
                }
                
                long syz_mmap(size_t addr, size_t size)
                {
                	zx_handle_t root = zx_vmar_root_self();
                	zx_info_vmar_t info;
                	zx_status_t status = zx_object_get_info(root, ZX_INFO_VMAR, &info, sizeof(info), 0, 0);
                	if (status != ZX_OK) {
                		return status;
                	}
                	zx_handle_t vmo;
                	status = zx_vmo_create(size, 0, &vmo);
                	if (status != ZX_OK) {
                		return status;
                	}
                	uintptr_t mapped_addr;
                	status = zx_vmar_map(root, ZX_VM_FLAG_SPECIFIC_OVERWRITE | ZX_VM_FLAG_PERM_READ | ZX_VM_FLAG_PERM_WRITE,
                			     addr - info.base, vmo, 0, size,
                			     &mapped_addr);
                	zx_status_t close_vmo_status = zx_handle_close(vmo);
                	if (close_vmo_status != ZX_OK) {
                	}
                	return status;
                }
                
                static long syz_process_self(void)
                {
                	return zx_process_self();
                }
                
                static long syz_thread_self(void)
                {
                	return zx_thread_self();
                }
                
                static long syz_vmar_root_self(void)
                {
                	return zx_vmar_root_self();
                }
                
                static long syz_job_default(void)
                {
                	return zx_job_default();
                }
                
                static long syz_future_time(volatile long when)
                {
                	zx_time_t delta_ms = 10000;
                	switch (when) {
                	case 0:
                		delta_ms = 5;
                		break;
                	case 1:
                		delta_ms = 30;
                		break;
                	}
                	zx_time_t now = 0;
                	zx_clock_read(ZX_CLOCK_MONOTONIC, &now);
                	return now + delta_ms * 1000 * 1000;
                }
                
                static void loop();
                static int do_sandbox_none(void)
                {
                	loop();
                	return 0;
                }
                #define CAST(f) ({void* p = (void*)f; p; })
                
                static long syz_execute_func(volatile long text)
                {
                	((void (*)(void))(text))();
                	return 0;
                }
                
                struct thread_t {
                	int created, call;
                	event_t ready, done;
                };
                
                static struct thread_t threads[16];
                static void execute_call(int call);
                static int running;
                
                static void* thr(void* arg)
                {
                	struct thread_t* th = (struct thread_t*)arg;
                	for (;;) {
                		event_wait(&th->ready);
                		event_reset(&th->ready);
                		execute_call(th->call);
                		__atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED);
                		event_set(&th->done);
                	}
                	return 0;
                }
                
                static void execute_one(void)
                {
                	if (write(1, "executing program\n", sizeof("executing program\n") - 1)) {
                	}
                	int i, call, thread;
                	for (call = 0; call < 17; call++) {
                		for (thread = 0; thread < (int)(sizeof(threads) / sizeof(threads[0])); thread++) {
                			struct thread_t* th = &threads[thread];
                			if (!th->created) {
                				th->created = 1;
                				event_init(&th->ready);
                				event_init(&th->done);
                				event_set(&th->done);
                				thread_start(thr, th);
                			}
                			if (!event_isset(&th->done))
                				continue;
                			event_reset(&th->done);
                			th->call = call;
                			__atomic_fetch_add(&running, 1, __ATOMIC_RELAXED);
                			event_set(&th->ready);
                			if (call == 1)
                				break;
                			event_timedwait(&th->done, 50);
                			break;
                		}
                	}
                	for (i = 0; i < 100 && __atomic_load_n(&running, __ATOMIC_RELAXED); i++)
                		sleep_ms(1);
                }
                
                static void execute_one(void);
                static void loop(void)
                {
                	execute_one();
                }
                
                uint64_t r[6] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
                
                void execute_call(int call)
                {
                		intptr_t res = 0;
                	switch (call) {
                	case 0:
                		inject_fault(1);
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_seek))(0, 1, 8, 0x20000000);
                		if (res == ZX_OK)
                r[0] = *(uint64_t*)0x20000000;
                		break;
                	case 1:
                *(uint64_t*)0x20000140 = 0x20000040;
                memcpy((void*)0x20000040, "\x1d\xbb\xb2\x5c\xf4\x5e\x52\x00\x25\xf9\xc3\xa0\x33\xb3\x1b\x3a\x79\x69\xf7\xb3\x84\xed\x40\xae\xd6\xfb\xa7\x7a\x34\xac\x1a\x64\xd1\xc9\x5f\x9f\x72\x30\x44\x6e\xd1\xac\x8e\xcf\xdb\x9d\x39\xca\x44\x1e\xad\x1b\x96\xb1\x2a\x6f\xd1\x8d\xa4\x21\x73\x79\x44\x36\x40\x2f\xf5\xb4\x06\x32\x15\xec\xc6\x12\xfd\x27\xda\x75\xc7\x03\xb9\xb4\xf6\x94\x43\x04\x04\x14\x76\xd5\x2c\x13\x0b\x37\xf7\xf9\xc0\x06\x78\x64\xce\x18\xe3\x3f\x61\x19\xb3\x0f\xc4\xe4\xd2\xb0\x40\x13\x1d\xb7\x20\x1b\xc5\xe6\xaf\x7c\x34\x67\xb6\x7a\x12\x9d\xf6\x78\xbf\xb1\x1a\xba\x6a\xb5\x6f\xa7\xfd\xdd\x65\x4e\x32\x5f\x2a\x80\x38\x6b\x87\x54\xb9\xf2\xee\xed\x19\xab\xaa\x24\x94\x28\xa3\x67\xbf\x8b\xf7\x88\xd2\xc6\x66\x57\xa6\x7c\x50\x39\x4f\xa4\xe7\x6c\xe2\x17\xb1\x2b\x07\x22\x00\x1e\xee\x20\x73\x6a\x11\x15\x61\x83\x49\x4f\xae\x83\x1c\x2e\xdf\x25\x08\x58\xbf\x23\x4c\x42\x69\xb0\x7d\x00\x13\x73\xdc\x3e\x0d\xf2\x27\xec\x3a\x55\x46\x51\xf7\x58\x99\x29\x75\xd9\xd1\x23\x8c", 233);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv_at))(0, 0, r[0], 0x20000140, 1, 0x20000180);
                		break;
                	case 2:
                *(uint64_t*)0x20010280 = 0x200001c0;
                *(uint32_t*)0x200001c0 = 0;
                memset((void*)0x200001c4, 0, 3);
                *(uint8_t*)0x200001c7 = 1;
                *(uint64_t*)0x200001c8 = 0x1f62df5e00000000;
                *(uint64_t*)0x20010288 = 0x20000200;
                *(uint64_t*)0x20010290 = 0x20000240;
                *(uint64_t*)0x20010298 = 0x20010240;
                *(uint32_t*)0x200102a0 = 0x10;
                *(uint32_t*)0x200102a4 = 0;
                *(uint32_t*)0x200102a8 = 0x10000;
                *(uint32_t*)0x200102ac = 1;
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                		{
                		int i;
                		for(i = 0; i < 4; i++) {
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                				}
                		}
                		if (res == ZX_OK)
                r[1] = *(uint32_t*)0x20010240;
                		break;
                	case 3:
                *(uint64_t*)0x200107c0 = 0x20010340;
                memcpy((void*)0x20010340, "\x13\xcc\xbc\xac\xe9\xbe\xc9\x58\x8e\xf4\x17\xb7\x2f\x30\x9e\xab\xab\x82\x61\xa7\x9e\x65\x1e\x4c\x24", 25);
                *(uint64_t*)0x200107d0 = 0x20010380;
                memcpy((void*)0x20010380, "\x34\x74\x0c\xb6\x2b\x97", 6);
                *(uint64_t*)0x200107e0 = 0x200103c0;
                memcpy((void*)0x200103c0, "\x16\x8a\xc0\x7f\x7e\x3b\x66\x9b\x1c\xa5\x88\x0a\x2e\x28\xdc\x09\x5b\x3f\xe1\x31\xad\x1e\xb1\x07\x28\x75\x8d\xbd\x2f\x59\x5d\x92\x8c\xa6\x62\x08\xe7\xd7\xb6\x92\xef\x2c\x84\x1e\xef\xd2\x81\x25\xbb\xf4\xd6\x2d\x30\xc9\x68\x06\xe7\x29\xcb\x70\xe8\x33\xf1\x0c\xab\x51\xe6\xe5\x21\x65\x09\x94\x4b\xfd\xf0\x37\x5b\xa3\xff\xd4\x5e\xd4\x4d\x6f\x70\x2b\x4d\x57\x1a\xf9\x9d\x11\x30\x18\x1c\xff\xcb\xb1\xdb\x5b\xbb\xf0\xe3\x15\x77\xd1\x15\xf7\x1f\xf1\x67\xae\x0e\xb9\xf1\x3f\x64\xf6\x77\x57\x29\x31\x46\x98\x68\x13\x81\x27\x48\xb9\x6a\x1c\x11\x8f\x40\x48\xf4\xaa\x6e\x52\x24\x5d\x87\xf5\x77\x9e\x47\xb5\xb5\x9a\x53\x6b\x6e\x5f\xca\xf4\x3f\x58\x68\x69\xa5\x79\x52\xb9\x2b\xa1\xeb\x14\xc1\x4f\x31\xe7\xc8\x58\x7c\xe2\x77\x59\x2a\x4b\xc1\x2f\x6d\x1e\xa8\x2a\xcd\xc9\xb9\x73\xdb\xe1\x46\x01\x96\x89\x9a\x00\x29\x7e\x4e\x71\x32\xe3\xb0\x08\x28", 207);
                *(uint64_t*)0x200107f0 = 0x200104c0;
                memcpy((void*)0x200104c0, "\xdb\x71\xd7\x6c\xc7\xcc\xc9\x4a\xcb\x73\x76\x8c\xdf\x08\xca\xdc\x13\x61\xe1", 19);
                *(uint64_t*)0x20010800 = 0x20010500;
                memcpy((void*)0x20010500, "\xee\xb2\x85\x07\x24\x60\x6a\xe7\xce\x7a\x56\x52\xb5\xb8\xa8\xf3\xa5\xc0\x61\x32\x97\x95\x57\xf4\x85\x46\x14\xe6\x66\x04\x1c\x1a\x94\x14\x82\x60\x02\x44\x97\x85\x03\x9a\x57\x86\x3a\xad\x0d\x64\xf9\x9b\x27\xb8\x1b\xdf\x91\x50\xf2\x79\x2c\x62\x30\xcc\xda\xfe\xf2\x11\x93\x49\x6f\x8b\x4e\xbb\xe4\x8d\xcc\x5c\xcb\x88\x0a\x69\xad\x2a\xa6\xed\x15\xa3\x57\x6e\x65\x6a\xcb\xd1\xd5\xab\xfe\x14\x21\x4b\xfb\x95\xcf\x87\xa6\x21\x50\x19\x22\x93\x74\xf0\x41\xa6\xce\x16\x42\x0f\xe4\x76\x3a\xb1\xfe\xce\xa5\xdb\x14\x91\x9e\xc6\x9c\x50\x3a\xcc\x07\xe5\x1e\x4e\x15\xb7\x77\xed\x58\xe3\xcb\x58\xdd\x7a\x8a\xc9\xee\xb4\x35\x6c\xb3\x23\x2f\xc6\x6c\x77\x01\xae\x4e\x23\xf1\x4d\x11\xcc\xe1\x9a\x0b\x88\x1b\x84\xd0\x20\x53\x25\x1b\xa5\xea\x82\x6f\xdb\x7d\xa2\xba\x5d\x4e\xc4\xea\x1c\x51\xce\x7e\x0c\x56\x42\xb3", 197);
                *(uint64_t*)0x20010810 = 0x20010600;
                memcpy((void*)0x20010600, "\xd3\x5a\xe8\xf9\xb7\x09\x07\x3a\x47\x20\x79\xb1\x20\x33\xdf\xd0\x9c\x6a\x47\x18\x64\x6c\xd9\x92\xb2\xd1\xcd\x35\x89\x44\x6b\x63\xb3\x0c\x67", 35);
                *(uint64_t*)0x20010820 = 0x20010640;
                memcpy((void*)0x20010640, "\x50\x63\xcd\xf3\x58\x9e\xc6\xc7\xb9\x54\x0e\x75\x14\xf9\x5f\xf7\xdf\x32\xde\xdf\xab\x4e", 22);
                *(uint64_t*)0x20010830 = 0x20010680;
                memcpy((void*)0x20010680, "\x62\x25\xf8\xbb\x38\x69\x3a\xa6\x54\x11\x30\x1b\x35\x84\x25\x74\xdd\xc4\x0d\x87\x49\x7a\xa2\xf3\xfe\x39\xf7\xb8\xba\xcc\xc1\x0a\x30\xc6\xa9\xd2\xad\x65\x16\xd8\x83\x65\x66\x26\x55\xae\xbd\xb4\x73\x20\x76\x3a\xc2\x8e\xf7\x33\xb2\x02\xbd", 59);
                *(uint64_t*)0x20010840 = 0x200106c0;
                memcpy((void*)0x200106c0, "\xf6\xcf\x9e\xee\xc4\xe1\x06\x86\x63\xcd\x86\xfc\x0c\x25\x5f\x05\x1c\x75\x0c\x85\x3d\x1c\xc0\x74\x83\xb7\x3b\x07\x59\xd5\x28\x4e\xbd\x41\xbc\x8d\xb2\x8e\xb7\xb5\xdb\xdf\x72\x21\xd8\x77\x93\x26\x2d\x57\xbc\xab\x11\x99\xa0\xce\xda\x8b\x5e\x4c\x57\x21\x70\x38\xc1\x7f\x96\xf0\xdf\xff\x52\xfa\xc6\x98\xc7\x3c\x2a\x0d\x69\x26\x64\x77\xab\xf5\x78\xc0\x5f\xc5\x0e\x75\xba\x84\x61\x99\x7a\x9c\x6f\xd9\xf0\x61\x89\x51\x60\x90\xd4\x7e\xe8\xd8\x1a\x93\xda\x80\x02\xd8\x8c\xec\xf2\x6d\x3c\xea\xd9\xb5\x9f\x23\x0b\xdc\x46\x26\x6f\xb0\xdc\x76\x08\xcd\xbe\xf0\x37\x74\x6b\xc7\x1c\x1d\x86\x5a\xcf\xf0\x3f\xd5\xaf\xb6\xa4\xea\x9a\x1e\x7f\x0b\x5c\x18\x99\xa2\x87\xe2\xee\x8a\x8d\xa9\xac\x0e\xdc\xc3\x02\xc3\xf9\x6a\x36\x48\x0b\x6c\xb3\x1d\x1e\x29\x78\x7d\x71\x5f\x45\x0d\x3c\x46\x7d\xfc\x4d\xbd\x31\xf3\x56\x2a\xc9\x94\xb2\x63\x4e\x91\xa8\xd3\xea\xa7\x25\x2f\xe0\xdb\x77\xb2\xe6\xda\x55\x4e\x67\xa3\x43\x17\xe3\x8e\x00\x07\xec\x37\xee\x58\x49\x78\xe7\xc0\x9b\x28\x06\xc1\x71", 239);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv))(r[1], 0, 0x200107c0, 9, 0x20010880);
                		break;
                	case 4:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t))CAST(zx_event_create))(0xffe00, 0x200108c0);
                		if (res == ZX_OK)
                r[2] = *(uint32_t*)0x200108c0;
                		break;
                	case 5:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t))CAST(zx_channel_create))(0, 0x20010940, 0x20010980);
                		if (res == ZX_OK)
                r[3] = *(uint32_t*)0x20010980;
                		break;
                	case 6:
                		res = -1;
                res = ((intptr_t(*)())CAST(get_root_resource))();
                		if ((int)res != -1)
                				r[4] = res;
                		break;
                	case 7:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vmar_allocate))(r[1], 0x16000000, 0xd7d1, -1, 0x200109c0, 0x20010a00);
                		if (res == ZX_OK)
                r[5] = *(uint32_t*)0x200109c0;
                		break;
                	case 8:
                *(uint32_t*)0x20010900 = 0;
                memset((void*)0x20010904, 0, 3);
                *(uint8_t*)0x20010907 = 1;
                *(uint64_t*)0x20010908 = 0x5cd6900b00000000;
                *(uint64_t*)0x20010910 = 0xfff;
                *(uint64_t*)0x20010918 = 0;
                *(uint32_t*)0x20010920 = -1;
                *(uint32_t*)0x20010924 = 9;
                *(uint32_t*)0x20010a40 = r[3];
                *(uint32_t*)0x20010a44 = r[4];
                *(uint32_t*)0x20010a48 = r[5];
                *(uint32_t*)0x20010a4c = r[1];
                *(uint32_t*)0x20010a50 = r[1];
                *(uint32_t*)0x20010a54 = r[1];
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_write))(r[2], 0, 0x20010900, 0x28, 0x20010a40, 0x18);
                		break;
                	case 9:
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vcpu_write_state))(r[4], 0x80000001, 0x20010a80, 0xf5);
                		break;
                	case 10:
                memcpy((void*)0x20000000, "\xc4\x22\x01\x04\x1d\xb2\x3b\xae\x8b\x67\x2e\x26\x41\xc7\x04\xfb\x27\x27\x00\x00\xf0\x41\x0f\xc7\x8b\x95\x42\x4e\xd7\x65\xa2\x0a\x00\x00\x00\x00\x00\x00\x00\xc4\x83\xc9\x5e\x18\x05\xc4\xe2\xb1\x90\x34\x7b\xf2\x0f\x59\x33\x3e\x0f\x38\xf1\x5b\xd2\x3e\xf3\x47\x0f\x2a\x98\xc1\x59\x6e\x05\xc4\x61\xaa\x11\xc1", 76);
                syz_execute_func(0x20000000);
                		break;
                	case 11:
                syz_future_time(0);
                		break;
                	case 12:
                syz_job_default();
                		break;
                	case 13:
                syz_mmap(0x20ffd000, 0x2000);
                		break;
                	case 14:
                syz_process_self();
                		break;
                	case 15:
                syz_thread_self();
                		break;
                	case 16:
                syz_vmar_root_self();
                		break;
                	}
                
                }
                int main(void)
                {
                syz_mmap(0x20000000, 0x1000000);
                	setup_fault();
                	for (procid = 0; procid < 2; procid++) {
                		if (fork() == 0) {
                			use_temporary_dir();
                			do_sandbox_none();
                		}
                	}
                	sleep(1000000);
                	return 0;
                }
                
                <stdin>:8:10: fatal error: 'lib/ddk/driver.h' file not found
                #include <lib/ddk/driver.h>
                         ^~~~~~~~~~~~~~~~~~
                1 error generated.
                
                compiler invocation: /syzkaller/shared/fuchsia/prebuilt/third_party/clang/linux-x64/bin/clang [-o /tmp/syz-executor467016753 -DGOOS_fuchsia=1 -DGOARCH_amd64=1 -DHOSTGOOS_linux=1 -x c - -Wno-deprecated -target x86_64-fuchsia -ldriver -lfdio -lzircon --sysroot /syzkaller/shared/fuchsia/out/x64/zircon_toolchain/obj/zircon/public/sysroot/sysroot -I /syzkaller/shared/fuchsia/sdk/lib/fdio/include -I /syzkaller/shared/fuchsia/zircon/system/ulib/fidl/include -I /syzkaller/shared/fuchsia/src/lib/ddk/include -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device.manager -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.nand -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.power.statecontrol -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.usb.peripheral -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/zircon/vdso/zx -L /syzkaller/shared/fuchsia/out/x64/x64-shared -O2 -pthread -Wall -Werror -Wparentheses -Wunused-const-variable -Wframe-larger-than=16384 -Wno-array-bounds -Wno-unused-command-line-argument]
        --- FAIL: TestGenerate/fuchsia/amd64/4 (0.14s)
            csource_test.go:133: opts: {Threaded:true Repeat:true RepeatTimes:0 Procs:1 Slowdown:1 Sandbox:none SandboxArg:0 Leak:false NetInjection:false NetDevices:false NetReset:false Cgroups:false BinfmtMisc:false CloseFDs:false KCSAN:false DevlinkPCI:false NicVF:false USB:false VhciInjection:false Wifi:false IEEE802154:false Sysctl:false UseTmpDir:true HandleSegv:false Repro:false Trace:false LegacyOptions:{Collide:false Fault:false FaultCall:0 FaultNth:0}}
                program:
                zx_stream_seek(0x0, 0x1, 0x8, &(0x7f0000000000)=<r0=>0x0) (fail_nth: 1)
                zx_stream_readv_at(0x0, 0x0, r0, &(0x7f0000000140)=[{&(0x7f0000000040)="1dbbb25cf45e520025f9c3a033b31b3a7969f7b384ed40aed6fba77a34ac1a64d1c95f9f7230446ed1ac8ecfdb9d39ca441ead1b96b12a6fd18da42173794436402ff5b4063215ecc612fd27da75c703b9b4f6944304041476d52c130b37f7f9c0067864ce18e33f6119b30fc4e4d2b040131db7201bc5e6af7c3467b67a129df678bfb11aba6ab56fa7fddd654e325f2a80386b8754b9f2eeed19abaa249428a367bf8bf788d2c66657a67c50394fa4e76ce217b12b0722001eee20736a11156183494fae831c2edf250858bf234c4269b07d001373dc3e0df227ec3a554651f758992975d9d1238c", 0xe9}], 0x1, &(0x7f0000000180)) (async)
                zx_channel_call$fuchsia_io_DirectoryDescribe(0x0, 0x0, 0x7fffffffffffffff, &(0x7f0000010280)={&(0x7f00000001c0), &(0x7f0000000200), &(0x7f0000000240), &(0x7f0000010240)={@tty={<r1=>0x0}}, 0x10, 0x0, 0x10000, 0x1}, &(0x7f00000102c0), &(0x7f0000010300)) (rerun: 4)
                zx_stream_readv(r1, 0x0, &(0x7f00000107c0)=[{&(0x7f0000010340)="13ccbcace9bec9588ef417b72f309eabab8261a79e651e4c24", 0x19}, {&(0x7f0000010380)="34740cb62b97", 0x6}, {&(0x7f00000103c0)="168ac07f7e3b669b1ca5880a2e28dc095b3fe131ad1eb10728758dbd2f595d928ca66208e7d7b692ef2c841eefd28125bbf4d62d30c96806e729cb70e833f10cab51e6e5216509944bfdf0375ba3ffd45ed44d6f702b4d571af99d1130181cffcbb1db5bbbf0e31577d115f71ff167ae0eb9f13f64f67757293146986813812748b96a1c118f4048f4aa6e52245d87f5779e47b5b59a536b6e5fcaf43f586869a57952b92ba1eb14c14f31e7c8587ce277592a4bc12f6d1ea82acdc9b973dbe1460196899a00297e4e7132e3b00828", 0xcf}, {&(0x7f00000104c0)="db71d76cc7ccc94acb73768cdf08cadc1361e1", 0x13}, {&(0x7f0000010500)="eeb2850724606ae7ce7a5652b5b8a8f3a5c06132979557f4854614e666041c1a9414826002449785039a57863aad0d64f99b27b81bdf9150f2792c6230ccdafef21193496f8b4ebbe48dcc5ccb880a69ad2aa6ed15a3576e656acbd1d5abfe14214bfb95cf87a6215019229374f041a6ce16420fe4763ab1fecea5db14919ec69c503acc07e51e4e15b777ed58e3cb58dd7a8ac9eeb4356cb3232fc66c7701ae4e23f14d11cce19a0b881b84d02053251ba5ea826fdb7da2ba5d4ec4ea1c51ce7e0c5642b3", 0xc5}, {&(0x7f0000010600)="d35ae8f9b709073a472079b12033dfd09c6a4718646cd992b2d1cd3589446b63b30c67", 0x23}, {&(0x7f0000010640)="5063cdf3589ec6c7b9540e7514f95ff7df32dedfab4e", 0x16}, {&(0x7f0000010680)="6225f8bb38693aa65411301b35842574ddc40d87497aa2f3fe39f7b8baccc10a30c6a9d2ad6516d88365662655aebdb47320763ac28ef733b202bd", 0x3b}, {&(0x7f00000106c0)="f6cf9eeec4e1068663cd86fc0c255f051c750c853d1cc07483b73b0759d5284ebd41bc8db28eb7b5dbdf7221d87793262d57bcab1199a0ceda8b5e4c57217038c17f96f0dfff52fac698c73c2a0d69266477abf578c05fc50e75ba8461997a9c6fd9f06189516090d47ee8d81a93da8002d88cecf26d3cead9b59f230bdc46266fb0dc7608cdbef037746bc71c1d865acff03fd5afb6a4ea9a1e7f0b5c1899a287e2ee8a8da9ac0edcc302c3f96a36480b6cb31d1e29787d715f450d3c467dfc4dbd31f3562ac994b2634e91a8d3eaa7252fe0db77b2e6da554e67a34317e38e0007ec37ee584978e7c09b2806c171", 0xef}], 0x9, &(0x7f0000010880))
                zx_event_create(0xffe00, &(0x7f00000108c0)=<r2=>0x0)
                zx_channel_create$fuchsia_cobalt_SystemDataUpdater(0x0, &(0x7f0000010940), &(0x7f0000010980)=<r3=>0x0)
                r4 = get_root_resource()
                zx_vmar_allocate(r1, 0x16000000, 0xd7d1, 0xffffffffffffffff, &(0x7f00000109c0)=<r5=>0x0, &(0x7f0000010a00))
                zx_channel_write$fuchsia_process_LauncherAddHandles(r2, 0x0, &(0x7f0000010900)={{}, {0xfff}, {[{0xffffffff, 0x9}], [{}, {}]}}, 0x28, &(0x7f0000010a40)={[{r3}, {r4}, {r5}, {r1}, {r1}, {r1}]}, 0x18)
                zx_vcpu_write_state(r4, 0x80000001, &(0x7f0000010a80)=""/245, 0xf5)
                syz_execute_func(&(0x7f0000000000)="c42201041db23bae8b672e2641c704fb27270000f0410fc78b95424ed765a20a00000000000000c483c95e1805c4e2b190347bf20f59333e0f38f15bd23ef3470f2a98c1596e05c461aa11c1")
                syz_future_time(0x0)
                syz_job_default()
                syz_mmap(&(0x7f0000ffd000/0x2000)=nil, 0x2000)
                syz_process_self()
                syz_thread_self()
                syz_vmar_root_self()
                
            csource_test.go:134: failed to build program:
                // autogenerated by syzkaller (https://github.com/google/syzkaller)
                
                #define _GNU_SOURCE 
                
                #include <endian.h>
                #include <errno.h>
                #include <fcntl.h>
                #include <lib/ddk/driver.h>
                #include <lib/fdio/directory.h>
                #include <poll.h>
                #include <pthread.h>
                #include <signal.h>
                #include <stdint.h>
                #include <stdio.h>
                #include <stdlib.h>
                #include <string.h>
                #include <sys/file.h>
                #include <sys/ioctl.h>
                #include <sys/socket.h>
                #include <sys/stat.h>
                #include <sys/time.h>
                #include <sys/types.h>
                #include <sys/uio.h>
                #include <time.h>
                #include <unistd.h>
                #include <utime.h>
                #include <zircon/process.h>
                #include <zircon/status.h>
                #include <zircon/syscalls.h>
                
                static void sleep_ms(uint64_t ms)
                {
                	usleep(ms * 1000);
                }
                
                static uint64_t current_time_ms(void)
                {
                	struct timespec ts;
                	if (clock_gettime(CLOCK_MONOTONIC, &ts))
                	exit(1);
                	return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000;
                }
                
                static void use_temporary_dir(void)
                {
                	char tmpdir_template[] = "/tmp/syzkaller.XXXXXX";
                	char* tmpdir = mkdtemp(tmpdir_template);
                	if (!tmpdir)
                	exit(1);
                	if (chmod(tmpdir, 0777))
                	exit(1);
                	if (chdir(tmpdir))
                	exit(1);
                }
                
                static int inject_fault(int nth)
                {
                	return 0;
                }
                
                static void setup_fault()
                {
                }
                
                static void thread_start(void* (*fn)(void*), void* arg)
                {
                	pthread_t th;
                	pthread_attr_t attr;
                	pthread_attr_init(&attr);
                	pthread_attr_setstacksize(&attr, 128 << 10);
                	int i = 0;
                	for (; i < 100; i++) {
                		if (pthread_create(&th, &attr, fn, arg) == 0) {
                			pthread_attr_destroy(&attr);
                			return;
                		}
                		if (errno == EAGAIN) {
                			usleep(50);
                			continue;
                		}
                		break;
                	}
                	exit(1);
                }
                
                typedef struct {
                	int state;
                } event_t;
                
                static void event_init(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_reset(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_set(event_t* ev)
                {
                	if (ev->state)
                	exit(1);
                	__atomic_store_n(&ev->state, 1, __ATOMIC_RELEASE);
                }
                
                static void event_wait(event_t* ev)
                {
                	while (!__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE))
                		usleep(200);
                }
                
                static int event_isset(event_t* ev)
                {
                	return __atomic_load_n(&ev->state, __ATOMIC_ACQUIRE);
                }
                
                static int event_timedwait(event_t* ev, uint64_t timeout_ms)
                {
                	uint64_t start = current_time_ms();
                	for (;;) {
                		if (__atomic_load_n(&ev->state, __ATOMIC_RELAXED))
                			return 1;
                		if (current_time_ms() - start > timeout_ms)
                			return 0;
                		usleep(200);
                	}
                }
                
                long syz_mmap(size_t addr, size_t size)
                {
                	zx_handle_t root = zx_vmar_root_self();
                	zx_info_vmar_t info;
                	zx_status_t status = zx_object_get_info(root, ZX_INFO_VMAR, &info, sizeof(info), 0, 0);
                	if (status != ZX_OK) {
                		return status;
                	}
                	zx_handle_t vmo;
                	status = zx_vmo_create(size, 0, &vmo);
                	if (status != ZX_OK) {
                		return status;
                	}
                	uintptr_t mapped_addr;
                	status = zx_vmar_map(root, ZX_VM_FLAG_SPECIFIC_OVERWRITE | ZX_VM_FLAG_PERM_READ | ZX_VM_FLAG_PERM_WRITE,
                			     addr - info.base, vmo, 0, size,
                			     &mapped_addr);
                	zx_status_t close_vmo_status = zx_handle_close(vmo);
                	if (close_vmo_status != ZX_OK) {
                	}
                	return status;
                }
                
                static long syz_process_self(void)
                {
                	return zx_process_self();
                }
                
                static long syz_thread_self(void)
                {
                	return zx_thread_self();
                }
                
                static long syz_vmar_root_self(void)
                {
                	return zx_vmar_root_self();
                }
                
                static long syz_job_default(void)
                {
                	return zx_job_default();
                }
                
                static long syz_future_time(volatile long when)
                {
                	zx_time_t delta_ms = 10000;
                	switch (when) {
                	case 0:
                		delta_ms = 5;
                		break;
                	case 1:
                		delta_ms = 30;
                		break;
                	}
                	zx_time_t now = 0;
                	zx_clock_read(ZX_CLOCK_MONOTONIC, &now);
                	return now + delta_ms * 1000 * 1000;
                }
                
                static void loop();
                static int do_sandbox_none(void)
                {
                	loop();
                	return 0;
                }
                #define CAST(f) ({void* p = (void*)f; p; })
                
                static long syz_execute_func(volatile long text)
                {
                	((void (*)(void))(text))();
                	return 0;
                }
                
                struct thread_t {
                	int created, call;
                	event_t ready, done;
                };
                
                static struct thread_t threads[16];
                static void execute_call(int call);
                static int running;
                
                static void* thr(void* arg)
                {
                	struct thread_t* th = (struct thread_t*)arg;
                	for (;;) {
                		event_wait(&th->ready);
                		event_reset(&th->ready);
                		execute_call(th->call);
                		__atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED);
                		event_set(&th->done);
                	}
                	return 0;
                }
                
                static void execute_one(void)
                {
                	int i, call, thread;
                	for (call = 0; call < 17; call++) {
                		for (thread = 0; thread < (int)(sizeof(threads) / sizeof(threads[0])); thread++) {
                			struct thread_t* th = &threads[thread];
                			if (!th->created) {
                				th->created = 1;
                				event_init(&th->ready);
                				event_init(&th->done);
                				event_set(&th->done);
                				thread_start(thr, th);
                			}
                			if (!event_isset(&th->done))
                				continue;
                			event_reset(&th->done);
                			th->call = call;
                			__atomic_fetch_add(&running, 1, __ATOMIC_RELAXED);
                			event_set(&th->ready);
                			if (call == 1)
                				break;
                			event_timedwait(&th->done, 50);
                			break;
                		}
                	}
                	for (i = 0; i < 100 && __atomic_load_n(&running, __ATOMIC_RELAXED); i++)
                		sleep_ms(1);
                }
                
                static void execute_one(void);
                static void loop(void)
                {
                	execute_one();
                }
                
                uint64_t r[6] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
                
                void execute_call(int call)
                {
                		intptr_t res = 0;
                	switch (call) {
                	case 0:
                		inject_fault(1);
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_seek))(0, 1, 8, 0x20000000);
                		if (res == ZX_OK)
                r[0] = *(uint64_t*)0x20000000;
                		break;
                	case 1:
                *(uint64_t*)0x20000140 = 0x20000040;
                memcpy((void*)0x20000040, "\x1d\xbb\xb2\x5c\xf4\x5e\x52\x00\x25\xf9\xc3\xa0\x33\xb3\x1b\x3a\x79\x69\xf7\xb3\x84\xed\x40\xae\xd6\xfb\xa7\x7a\x34\xac\x1a\x64\xd1\xc9\x5f\x9f\x72\x30\x44\x6e\xd1\xac\x8e\xcf\xdb\x9d\x39\xca\x44\x1e\xad\x1b\x96\xb1\x2a\x6f\xd1\x8d\xa4\x21\x73\x79\x44\x36\x40\x2f\xf5\xb4\x06\x32\x15\xec\xc6\x12\xfd\x27\xda\x75\xc7\x03\xb9\xb4\xf6\x94\x43\x04\x04\x14\x76\xd5\x2c\x13\x0b\x37\xf7\xf9\xc0\x06\x78\x64\xce\x18\xe3\x3f\x61\x19\xb3\x0f\xc4\xe4\xd2\xb0\x40\x13\x1d\xb7\x20\x1b\xc5\xe6\xaf\x7c\x34\x67\xb6\x7a\x12\x9d\xf6\x78\xbf\xb1\x1a\xba\x6a\xb5\x6f\xa7\xfd\xdd\x65\x4e\x32\x5f\x2a\x80\x38\x6b\x87\x54\xb9\xf2\xee\xed\x19\xab\xaa\x24\x94\x28\xa3\x67\xbf\x8b\xf7\x88\xd2\xc6\x66\x57\xa6\x7c\x50\x39\x4f\xa4\xe7\x6c\xe2\x17\xb1\x2b\x07\x22\x00\x1e\xee\x20\x73\x6a\x11\x15\x61\x83\x49\x4f\xae\x83\x1c\x2e\xdf\x25\x08\x58\xbf\x23\x4c\x42\x69\xb0\x7d\x00\x13\x73\xdc\x3e\x0d\xf2\x27\xec\x3a\x55\x46\x51\xf7\x58\x99\x29\x75\xd9\xd1\x23\x8c", 233);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv_at))(0, 0, r[0], 0x20000140, 1, 0x20000180);
                		break;
                	case 2:
                *(uint64_t*)0x20010280 = 0x200001c0;
                *(uint32_t*)0x200001c0 = 0;
                memset((void*)0x200001c4, 0, 3);
                *(uint8_t*)0x200001c7 = 1;
                *(uint64_t*)0x200001c8 = 0x1f62df5e00000000;
                *(uint64_t*)0x20010288 = 0x20000200;
                *(uint64_t*)0x20010290 = 0x20000240;
                *(uint64_t*)0x20010298 = 0x20010240;
                *(uint32_t*)0x200102a0 = 0x10;
                *(uint32_t*)0x200102a4 = 0;
                *(uint32_t*)0x200102a8 = 0x10000;
                *(uint32_t*)0x200102ac = 1;
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                		{
                		int i;
                		for(i = 0; i < 4; i++) {
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                				}
                		}
                		if (res == ZX_OK)
                r[1] = *(uint32_t*)0x20010240;
                		break;
                	case 3:
                *(uint64_t*)0x200107c0 = 0x20010340;
                memcpy((void*)0x20010340, "\x13\xcc\xbc\xac\xe9\xbe\xc9\x58\x8e\xf4\x17\xb7\x2f\x30\x9e\xab\xab\x82\x61\xa7\x9e\x65\x1e\x4c\x24", 25);
                *(uint64_t*)0x200107d0 = 0x20010380;
                memcpy((void*)0x20010380, "\x34\x74\x0c\xb6\x2b\x97", 6);
                *(uint64_t*)0x200107e0 = 0x200103c0;
                memcpy((void*)0x200103c0, "\x16\x8a\xc0\x7f\x7e\x3b\x66\x9b\x1c\xa5\x88\x0a\x2e\x28\xdc\x09\x5b\x3f\xe1\x31\xad\x1e\xb1\x07\x28\x75\x8d\xbd\x2f\x59\x5d\x92\x8c\xa6\x62\x08\xe7\xd7\xb6\x92\xef\x2c\x84\x1e\xef\xd2\x81\x25\xbb\xf4\xd6\x2d\x30\xc9\x68\x06\xe7\x29\xcb\x70\xe8\x33\xf1\x0c\xab\x51\xe6\xe5\x21\x65\x09\x94\x4b\xfd\xf0\x37\x5b\xa3\xff\xd4\x5e\xd4\x4d\x6f\x70\x2b\x4d\x57\x1a\xf9\x9d\x11\x30\x18\x1c\xff\xcb\xb1\xdb\x5b\xbb\xf0\xe3\x15\x77\xd1\x15\xf7\x1f\xf1\x67\xae\x0e\xb9\xf1\x3f\x64\xf6\x77\x57\x29\x31\x46\x98\x68\x13\x81\x27\x48\xb9\x6a\x1c\x11\x8f\x40\x48\xf4\xaa\x6e\x52\x24\x5d\x87\xf5\x77\x9e\x47\xb5\xb5\x9a\x53\x6b\x6e\x5f\xca\xf4\x3f\x58\x68\x69\xa5\x79\x52\xb9\x2b\xa1\xeb\x14\xc1\x4f\x31\xe7\xc8\x58\x7c\xe2\x77\x59\x2a\x4b\xc1\x2f\x6d\x1e\xa8\x2a\xcd\xc9\xb9\x73\xdb\xe1\x46\x01\x96\x89\x9a\x00\x29\x7e\x4e\x71\x32\xe3\xb0\x08\x28", 207);
                *(uint64_t*)0x200107f0 = 0x200104c0;
                memcpy((void*)0x200104c0, "\xdb\x71\xd7\x6c\xc7\xcc\xc9\x4a\xcb\x73\x76\x8c\xdf\x08\xca\xdc\x13\x61\xe1", 19);
                *(uint64_t*)0x20010800 = 0x20010500;
                memcpy((void*)0x20010500, "\xee\xb2\x85\x07\x24\x60\x6a\xe7\xce\x7a\x56\x52\xb5\xb8\xa8\xf3\xa5\xc0\x61\x32\x97\x95\x57\xf4\x85\x46\x14\xe6\x66\x04\x1c\x1a\x94\x14\x82\x60\x02\x44\x97\x85\x03\x9a\x57\x86\x3a\xad\x0d\x64\xf9\x9b\x27\xb8\x1b\xdf\x91\x50\xf2\x79\x2c\x62\x30\xcc\xda\xfe\xf2\x11\x93\x49\x6f\x8b\x4e\xbb\xe4\x8d\xcc\x5c\xcb\x88\x0a\x69\xad\x2a\xa6\xed\x15\xa3\x57\x6e\x65\x6a\xcb\xd1\xd5\xab\xfe\x14\x21\x4b\xfb\x95\xcf\x87\xa6\x21\x50\x19\x22\x93\x74\xf0\x41\xa6\xce\x16\x42\x0f\xe4\x76\x3a\xb1\xfe\xce\xa5\xdb\x14\x91\x9e\xc6\x9c\x50\x3a\xcc\x07\xe5\x1e\x4e\x15\xb7\x77\xed\x58\xe3\xcb\x58\xdd\x7a\x8a\xc9\xee\xb4\x35\x6c\xb3\x23\x2f\xc6\x6c\x77\x01\xae\x4e\x23\xf1\x4d\x11\xcc\xe1\x9a\x0b\x88\x1b\x84\xd0\x20\x53\x25\x1b\xa5\xea\x82\x6f\xdb\x7d\xa2\xba\x5d\x4e\xc4\xea\x1c\x51\xce\x7e\x0c\x56\x42\xb3", 197);
                *(uint64_t*)0x20010810 = 0x20010600;
                memcpy((void*)0x20010600, "\xd3\x5a\xe8\xf9\xb7\x09\x07\x3a\x47\x20\x79\xb1\x20\x33\xdf\xd0\x9c\x6a\x47\x18\x64\x6c\xd9\x92\xb2\xd1\xcd\x35\x89\x44\x6b\x63\xb3\x0c\x67", 35);
                *(uint64_t*)0x20010820 = 0x20010640;
                memcpy((void*)0x20010640, "\x50\x63\xcd\xf3\x58\x9e\xc6\xc7\xb9\x54\x0e\x75\x14\xf9\x5f\xf7\xdf\x32\xde\xdf\xab\x4e", 22);
                *(uint64_t*)0x20010830 = 0x20010680;
                memcpy((void*)0x20010680, "\x62\x25\xf8\xbb\x38\x69\x3a\xa6\x54\x11\x30\x1b\x35\x84\x25\x74\xdd\xc4\x0d\x87\x49\x7a\xa2\xf3\xfe\x39\xf7\xb8\xba\xcc\xc1\x0a\x30\xc6\xa9\xd2\xad\x65\x16\xd8\x83\x65\x66\x26\x55\xae\xbd\xb4\x73\x20\x76\x3a\xc2\x8e\xf7\x33\xb2\x02\xbd", 59);
                *(uint64_t*)0x20010840 = 0x200106c0;
                memcpy((void*)0x200106c0, "\xf6\xcf\x9e\xee\xc4\xe1\x06\x86\x63\xcd\x86\xfc\x0c\x25\x5f\x05\x1c\x75\x0c\x85\x3d\x1c\xc0\x74\x83\xb7\x3b\x07\x59\xd5\x28\x4e\xbd\x41\xbc\x8d\xb2\x8e\xb7\xb5\xdb\xdf\x72\x21\xd8\x77\x93\x26\x2d\x57\xbc\xab\x11\x99\xa0\xce\xda\x8b\x5e\x4c\x57\x21\x70\x38\xc1\x7f\x96\xf0\xdf\xff\x52\xfa\xc6\x98\xc7\x3c\x2a\x0d\x69\x26\x64\x77\xab\xf5\x78\xc0\x5f\xc5\x0e\x75\xba\x84\x61\x99\x7a\x9c\x6f\xd9\xf0\x61\x89\x51\x60\x90\xd4\x7e\xe8\xd8\x1a\x93\xda\x80\x02\xd8\x8c\xec\xf2\x6d\x3c\xea\xd9\xb5\x9f\x23\x0b\xdc\x46\x26\x6f\xb0\xdc\x76\x08\xcd\xbe\xf0\x37\x74\x6b\xc7\x1c\x1d\x86\x5a\xcf\xf0\x3f\xd5\xaf\xb6\xa4\xea\x9a\x1e\x7f\x0b\x5c\x18\x99\xa2\x87\xe2\xee\x8a\x8d\xa9\xac\x0e\xdc\xc3\x02\xc3\xf9\x6a\x36\x48\x0b\x6c\xb3\x1d\x1e\x29\x78\x7d\x71\x5f\x45\x0d\x3c\x46\x7d\xfc\x4d\xbd\x31\xf3\x56\x2a\xc9\x94\xb2\x63\x4e\x91\xa8\xd3\xea\xa7\x25\x2f\xe0\xdb\x77\xb2\xe6\xda\x55\x4e\x67\xa3\x43\x17\xe3\x8e\x00\x07\xec\x37\xee\x58\x49\x78\xe7\xc0\x9b\x28\x06\xc1\x71", 239);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv))(r[1], 0, 0x200107c0, 9, 0x20010880);
                		break;
                	case 4:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t))CAST(zx_event_create))(0xffe00, 0x200108c0);
                		if (res == ZX_OK)
                r[2] = *(uint32_t*)0x200108c0;
                		break;
                	case 5:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t))CAST(zx_channel_create))(0, 0x20010940, 0x20010980);
                		if (res == ZX_OK)
                r[3] = *(uint32_t*)0x20010980;
                		break;
                	case 6:
                		res = -1;
                res = ((intptr_t(*)())CAST(get_root_resource))();
                		if ((int)res != -1)
                				r[4] = res;
                		break;
                	case 7:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vmar_allocate))(r[1], 0x16000000, 0xd7d1, -1, 0x200109c0, 0x20010a00);
                		if (res == ZX_OK)
                r[5] = *(uint32_t*)0x200109c0;
                		break;
                	case 8:
                *(uint32_t*)0x20010900 = 0;
                memset((void*)0x20010904, 0, 3);
                *(uint8_t*)0x20010907 = 1;
                *(uint64_t*)0x20010908 = 0x5cd6900b00000000;
                *(uint64_t*)0x20010910 = 0xfff;
                *(uint64_t*)0x20010918 = 0;
                *(uint32_t*)0x20010920 = -1;
                *(uint32_t*)0x20010924 = 9;
                *(uint32_t*)0x20010a40 = r[3];
                *(uint32_t*)0x20010a44 = r[4];
                *(uint32_t*)0x20010a48 = r[5];
                *(uint32_t*)0x20010a4c = r[1];
                *(uint32_t*)0x20010a50 = r[1];
                *(uint32_t*)0x20010a54 = r[1];
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_write))(r[2], 0, 0x20010900, 0x28, 0x20010a40, 0x18);
                		break;
                	case 9:
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vcpu_write_state))(r[4], 0x80000001, 0x20010a80, 0xf5);
                		break;
                	case 10:
                memcpy((void*)0x20000000, "\xc4\x22\x01\x04\x1d\xb2\x3b\xae\x8b\x67\x2e\x26\x41\xc7\x04\xfb\x27\x27\x00\x00\xf0\x41\x0f\xc7\x8b\x95\x42\x4e\xd7\x65\xa2\x0a\x00\x00\x00\x00\x00\x00\x00\xc4\x83\xc9\x5e\x18\x05\xc4\xe2\xb1\x90\x34\x7b\xf2\x0f\x59\x33\x3e\x0f\x38\xf1\x5b\xd2\x3e\xf3\x47\x0f\x2a\x98\xc1\x59\x6e\x05\xc4\x61\xaa\x11\xc1", 76);
                syz_execute_func(0x20000000);
                		break;
                	case 11:
                syz_future_time(0);
                		break;
                	case 12:
                syz_job_default();
                		break;
                	case 13:
                syz_mmap(0x20ffd000, 0x2000);
                		break;
                	case 14:
                syz_process_self();
                		break;
                	case 15:
                syz_thread_self();
                		break;
                	case 16:
                syz_vmar_root_self();
                		break;
                	}
                
                }
                int main(void)
                {
                syz_mmap(0x20000000, 0x1000000);
                	setup_fault();
                			use_temporary_dir();
                			do_sandbox_none();
                	return 0;
                }
                
                <stdin>:8:10: fatal error: 'lib/ddk/driver.h' file not found
                #include <lib/ddk/driver.h>
                         ^~~~~~~~~~~~~~~~~~
                1 error generated.
                
                compiler invocation: /syzkaller/shared/fuchsia/prebuilt/third_party/clang/linux-x64/bin/clang [-o /tmp/syz-executor3044981869 -DGOOS_fuchsia=1 -DGOARCH_amd64=1 -DHOSTGOOS_linux=1 -x c - -Wno-deprecated -target x86_64-fuchsia -ldriver -lfdio -lzircon --sysroot /syzkaller/shared/fuchsia/out/x64/zircon_toolchain/obj/zircon/public/sysroot/sysroot -I /syzkaller/shared/fuchsia/sdk/lib/fdio/include -I /syzkaller/shared/fuchsia/zircon/system/ulib/fidl/include -I /syzkaller/shared/fuchsia/src/lib/ddk/include -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device.manager -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.nand -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.power.statecontrol -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.usb.peripheral -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/zircon/vdso/zx -L /syzkaller/shared/fuchsia/out/x64/x64-shared -O2 -pthread -Wall -Werror -Wparentheses -Wunused-const-variable -Wframe-larger-than=16384 -Wno-array-bounds -Wno-unused-command-line-argument]
        --- FAIL: TestGenerate/fuchsia/amd64/13 (0.15s)
            csource_test.go:133: opts: {Threaded:true Repeat:true RepeatTimes:0 Procs:0 Slowdown:1 Sandbox:none SandboxArg:0 Leak:false NetInjection:false NetDevices:false NetReset:false Cgroups:false BinfmtMisc:false CloseFDs:false KCSAN:false DevlinkPCI:false NicVF:false USB:false VhciInjection:false Wifi:false IEEE802154:false Sysctl:false UseTmpDir:true HandleSegv:false Repro:false Trace:true LegacyOptions:{Collide:false Fault:false FaultCall:0 FaultNth:0}}
                program:
                zx_stream_seek(0x0, 0x1, 0x8, &(0x7f0000000000)=<r0=>0x0) (fail_nth: 1)
                zx_stream_readv_at(0x0, 0x0, r0, &(0x7f0000000140)=[{&(0x7f0000000040)="1dbbb25cf45e520025f9c3a033b31b3a7969f7b384ed40aed6fba77a34ac1a64d1c95f9f7230446ed1ac8ecfdb9d39ca441ead1b96b12a6fd18da42173794436402ff5b4063215ecc612fd27da75c703b9b4f6944304041476d52c130b37f7f9c0067864ce18e33f6119b30fc4e4d2b040131db7201bc5e6af7c3467b67a129df678bfb11aba6ab56fa7fddd654e325f2a80386b8754b9f2eeed19abaa249428a367bf8bf788d2c66657a67c50394fa4e76ce217b12b0722001eee20736a11156183494fae831c2edf250858bf234c4269b07d001373dc3e0df227ec3a554651f758992975d9d1238c", 0xe9}], 0x1, &(0x7f0000000180)) (async)
                zx_channel_call$fuchsia_io_DirectoryDescribe(0x0, 0x0, 0x7fffffffffffffff, &(0x7f0000010280)={&(0x7f00000001c0), &(0x7f0000000200), &(0x7f0000000240), &(0x7f0000010240)={@tty={<r1=>0x0}}, 0x10, 0x0, 0x10000, 0x1}, &(0x7f00000102c0), &(0x7f0000010300)) (rerun: 4)
                zx_stream_readv(r1, 0x0, &(0x7f00000107c0)=[{&(0x7f0000010340)="13ccbcace9bec9588ef417b72f309eabab8261a79e651e4c24", 0x19}, {&(0x7f0000010380)="34740cb62b97", 0x6}, {&(0x7f00000103c0)="168ac07f7e3b669b1ca5880a2e28dc095b3fe131ad1eb10728758dbd2f595d928ca66208e7d7b692ef2c841eefd28125bbf4d62d30c96806e729cb70e833f10cab51e6e5216509944bfdf0375ba3ffd45ed44d6f702b4d571af99d1130181cffcbb1db5bbbf0e31577d115f71ff167ae0eb9f13f64f67757293146986813812748b96a1c118f4048f4aa6e52245d87f5779e47b5b59a536b6e5fcaf43f586869a57952b92ba1eb14c14f31e7c8587ce277592a4bc12f6d1ea82acdc9b973dbe1460196899a00297e4e7132e3b00828", 0xcf}, {&(0x7f00000104c0)="db71d76cc7ccc94acb73768cdf08cadc1361e1", 0x13}, {&(0x7f0000010500)="eeb2850724606ae7ce7a5652b5b8a8f3a5c06132979557f4854614e666041c1a9414826002449785039a57863aad0d64f99b27b81bdf9150f2792c6230ccdafef21193496f8b4ebbe48dcc5ccb880a69ad2aa6ed15a3576e656acbd1d5abfe14214bfb95cf87a6215019229374f041a6ce16420fe4763ab1fecea5db14919ec69c503acc07e51e4e15b777ed58e3cb58dd7a8ac9eeb4356cb3232fc66c7701ae4e23f14d11cce19a0b881b84d02053251ba5ea826fdb7da2ba5d4ec4ea1c51ce7e0c5642b3", 0xc5}, {&(0x7f0000010600)="d35ae8f9b709073a472079b12033dfd09c6a4718646cd992b2d1cd3589446b63b30c67", 0x23}, {&(0x7f0000010640)="5063cdf3589ec6c7b9540e7514f95ff7df32dedfab4e", 0x16}, {&(0x7f0000010680)="6225f8bb38693aa65411301b35842574ddc40d87497aa2f3fe39f7b8baccc10a30c6a9d2ad6516d88365662655aebdb47320763ac28ef733b202bd", 0x3b}, {&(0x7f00000106c0)="f6cf9eeec4e1068663cd86fc0c255f051c750c853d1cc07483b73b0759d5284ebd41bc8db28eb7b5dbdf7221d87793262d57bcab1199a0ceda8b5e4c57217038c17f96f0dfff52fac698c73c2a0d69266477abf578c05fc50e75ba8461997a9c6fd9f06189516090d47ee8d81a93da8002d88cecf26d3cead9b59f230bdc46266fb0dc7608cdbef037746bc71c1d865acff03fd5afb6a4ea9a1e7f0b5c1899a287e2ee8a8da9ac0edcc302c3f96a36480b6cb31d1e29787d715f450d3c467dfc4dbd31f3562ac994b2634e91a8d3eaa7252fe0db77b2e6da554e67a34317e38e0007ec37ee584978e7c09b2806c171", 0xef}], 0x9, &(0x7f0000010880))
                zx_event_create(0xffe00, &(0x7f00000108c0)=<r2=>0x0)
                zx_channel_create$fuchsia_cobalt_SystemDataUpdater(0x0, &(0x7f0000010940), &(0x7f0000010980)=<r3=>0x0)
                r4 = get_root_resource()
                zx_vmar_allocate(r1, 0x16000000, 0xd7d1, 0xffffffffffffffff, &(0x7f00000109c0)=<r5=>0x0, &(0x7f0000010a00))
                zx_channel_write$fuchsia_process_LauncherAddHandles(r2, 0x0, &(0x7f0000010900)={{}, {0xfff}, {[{0xffffffff, 0x9}], [{}, {}]}}, 0x28, &(0x7f0000010a40)={[{r3}, {r4}, {r5}, {r1}, {r1}, {r1}]}, 0x18)
                zx_vcpu_write_state(r4, 0x80000001, &(0x7f0000010a80)=""/245, 0xf5)
                syz_execute_func(&(0x7f0000000000)="c42201041db23bae8b672e2641c704fb27270000f0410fc78b95424ed765a20a00000000000000c483c95e1805c4e2b190347bf20f59333e0f38f15bd23ef3470f2a98c1596e05c461aa11c1")
                syz_future_time(0x0)
                syz_job_default()
                syz_mmap(&(0x7f0000ffd000/0x2000)=nil, 0x2000)
                syz_process_self()
                syz_thread_self()
                syz_vmar_root_self()
                
            csource_test.go:134: failed to build program:
                // autogenerated by syzkaller (https://github.com/google/syzkaller)
                
                #define _GNU_SOURCE 
                
                #include <endian.h>
                #include <errno.h>
                #include <fcntl.h>
                #include <lib/ddk/driver.h>
                #include <lib/fdio/directory.h>
                #include <poll.h>
                #include <pthread.h>
                #include <signal.h>
                #include <stdint.h>
                #include <stdio.h>
                #include <stdlib.h>
                #include <string.h>
                #include <sys/file.h>
                #include <sys/ioctl.h>
                #include <sys/socket.h>
                #include <sys/stat.h>
                #include <sys/time.h>
                #include <sys/types.h>
                #include <sys/uio.h>
                #include <time.h>
                #include <unistd.h>
                #include <utime.h>
                #include <zircon/process.h>
                #include <zircon/status.h>
                #include <zircon/syscalls.h>
                
                static void sleep_ms(uint64_t ms)
                {
                	usleep(ms * 1000);
                }
                
                static uint64_t current_time_ms(void)
                {
                	struct timespec ts;
                	if (clock_gettime(CLOCK_MONOTONIC, &ts))
                	exit(1);
                	return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000;
                }
                
                static void use_temporary_dir(void)
                {
                	char tmpdir_template[] = "/tmp/syzkaller.XXXXXX";
                	char* tmpdir = mkdtemp(tmpdir_template);
                	if (!tmpdir)
                	exit(1);
                	if (chmod(tmpdir, 0777))
                	exit(1);
                	if (chdir(tmpdir))
                	exit(1);
                }
                
                static int inject_fault(int nth)
                {
                	return 0;
                }
                
                static void setup_fault()
                {
                }
                
                static void thread_start(void* (*fn)(void*), void* arg)
                {
                	pthread_t th;
                	pthread_attr_t attr;
                	pthread_attr_init(&attr);
                	pthread_attr_setstacksize(&attr, 128 << 10);
                	int i = 0;
                	for (; i < 100; i++) {
                		if (pthread_create(&th, &attr, fn, arg) == 0) {
                			pthread_attr_destroy(&attr);
                			return;
                		}
                		if (errno == EAGAIN) {
                			usleep(50);
                			continue;
                		}
                		break;
                	}
                	exit(1);
                }
                
                typedef struct {
                	int state;
                } event_t;
                
                static void event_init(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_reset(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_set(event_t* ev)
                {
                	if (ev->state)
                	exit(1);
                	__atomic_store_n(&ev->state, 1, __ATOMIC_RELEASE);
                }
                
                static void event_wait(event_t* ev)
                {
                	while (!__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE))
                		usleep(200);
                }
                
                static int event_isset(event_t* ev)
                {
                	return __atomic_load_n(&ev->state, __ATOMIC_ACQUIRE);
                }
                
                static int event_timedwait(event_t* ev, uint64_t timeout_ms)
                {
                	uint64_t start = current_time_ms();
                	for (;;) {
                		if (__atomic_load_n(&ev->state, __ATOMIC_RELAXED))
                			return 1;
                		if (current_time_ms() - start > timeout_ms)
                			return 0;
                		usleep(200);
                	}
                }
                
                long syz_mmap(size_t addr, size_t size)
                {
                	zx_handle_t root = zx_vmar_root_self();
                	zx_info_vmar_t info;
                	zx_status_t status = zx_object_get_info(root, ZX_INFO_VMAR, &info, sizeof(info), 0, 0);
                	if (status != ZX_OK) {
                		return status;
                	}
                	zx_handle_t vmo;
                	status = zx_vmo_create(size, 0, &vmo);
                	if (status != ZX_OK) {
                		return status;
                	}
                	uintptr_t mapped_addr;
                	status = zx_vmar_map(root, ZX_VM_FLAG_SPECIFIC_OVERWRITE | ZX_VM_FLAG_PERM_READ | ZX_VM_FLAG_PERM_WRITE,
                			     addr - info.base, vmo, 0, size,
                			     &mapped_addr);
                	zx_status_t close_vmo_status = zx_handle_close(vmo);
                	if (close_vmo_status != ZX_OK) {
                	}
                	return status;
                }
                
                static long syz_process_self(void)
                {
                	return zx_process_self();
                }
                
                static long syz_thread_self(void)
                {
                	return zx_thread_self();
                }
                
                static long syz_vmar_root_self(void)
                {
                	return zx_vmar_root_self();
                }
                
                static long syz_job_default(void)
                {
                	return zx_job_default();
                }
                
                static long syz_future_time(volatile long when)
                {
                	zx_time_t delta_ms = 10000;
                	switch (when) {
                	case 0:
                		delta_ms = 5;
                		break;
                	case 1:
                		delta_ms = 30;
                		break;
                	}
                	zx_time_t now = 0;
                	zx_clock_read(ZX_CLOCK_MONOTONIC, &now);
                	return now + delta_ms * 1000 * 1000;
                }
                
                static void loop();
                static int do_sandbox_none(void)
                {
                	loop();
                	return 0;
                }
                #define CAST(f) ({void* p = (void*)f; p; })
                
                static long syz_execute_func(volatile long text)
                {
                	((void (*)(void))(text))();
                	return 0;
                }
                
                struct thread_t {
                	int created, call;
                	event_t ready, done;
                };
                
                static struct thread_t threads[16];
                static void execute_call(int call);
                static int running;
                
                static void* thr(void* arg)
                {
                	struct thread_t* th = (struct thread_t*)arg;
                	for (;;) {
                		event_wait(&th->ready);
                		event_reset(&th->ready);
                		execute_call(th->call);
                		__atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED);
                		event_set(&th->done);
                	}
                	return 0;
                }
                
                static void execute_one(void)
                {
                	fprintf(stderr, "### start\n");
                	int i, call, thread;
                	for (call = 0; call < 17; call++) {
                		for (thread = 0; thread < (int)(sizeof(threads) / sizeof(threads[0])); thread++) {
                			struct thread_t* th = &threads[thread];
                			if (!th->created) {
                				th->created = 1;
                				event_init(&th->ready);
                				event_init(&th->done);
                				event_set(&th->done);
                				thread_start(thr, th);
                			}
                			if (!event_isset(&th->done))
                				continue;
                			event_reset(&th->done);
                			th->call = call;
                			__atomic_fetch_add(&running, 1, __ATOMIC_RELAXED);
                			event_set(&th->ready);
                			if (call == 1)
                				break;
                			event_timedwait(&th->done, 50);
                			break;
                		}
                	}
                	for (i = 0; i < 100 && __atomic_load_n(&running, __ATOMIC_RELAXED); i++)
                		sleep_ms(1);
                }
                
                static void execute_one(void);
                static void loop(void)
                {
                	execute_one();
                }
                
                uint64_t r[6] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
                
                void execute_call(int call)
                {
                		intptr_t res = 0;
                	switch (call) {
                	case 0:
                		inject_fault(1);
                		res = -1;
                		errno = EFAULT;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_seek))(0, 1, 8, 0x20000000);
                		fprintf(stderr, "### call=0 errno=%u\n", (intptr_t)(int)res == -1 ? errno : 0);
                		if (res == ZX_OK)
                r[0] = *(uint64_t*)0x20000000;
                		break;
                	case 1:
                *(uint64_t*)0x20000140 = 0x20000040;
                memcpy((void*)0x20000040, "\x1d\xbb\xb2\x5c\xf4\x5e\x52\x00\x25\xf9\xc3\xa0\x33\xb3\x1b\x3a\x79\x69\xf7\xb3\x84\xed\x40\xae\xd6\xfb\xa7\x7a\x34\xac\x1a\x64\xd1\xc9\x5f\x9f\x72\x30\x44\x6e\xd1\xac\x8e\xcf\xdb\x9d\x39\xca\x44\x1e\xad\x1b\x96\xb1\x2a\x6f\xd1\x8d\xa4\x21\x73\x79\x44\x36\x40\x2f\xf5\xb4\x06\x32\x15\xec\xc6\x12\xfd\x27\xda\x75\xc7\x03\xb9\xb4\xf6\x94\x43\x04\x04\x14\x76\xd5\x2c\x13\x0b\x37\xf7\xf9\xc0\x06\x78\x64\xce\x18\xe3\x3f\x61\x19\xb3\x0f\xc4\xe4\xd2\xb0\x40\x13\x1d\xb7\x20\x1b\xc5\xe6\xaf\x7c\x34\x67\xb6\x7a\x12\x9d\xf6\x78\xbf\xb1\x1a\xba\x6a\xb5\x6f\xa7\xfd\xdd\x65\x4e\x32\x5f\x2a\x80\x38\x6b\x87\x54\xb9\xf2\xee\xed\x19\xab\xaa\x24\x94\x28\xa3\x67\xbf\x8b\xf7\x88\xd2\xc6\x66\x57\xa6\x7c\x50\x39\x4f\xa4\xe7\x6c\xe2\x17\xb1\x2b\x07\x22\x00\x1e\xee\x20\x73\x6a\x11\x15\x61\x83\x49\x4f\xae\x83\x1c\x2e\xdf\x25\x08\x58\xbf\x23\x4c\x42\x69\xb0\x7d\x00\x13\x73\xdc\x3e\x0d\xf2\x27\xec\x3a\x55\x46\x51\xf7\x58\x99\x29\x75\xd9\xd1\x23\x8c", 233);
                		res = -1;
                		errno = EFAULT;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv_at))(0, 0, r[0], 0x20000140, 1, 0x20000180);
                		fprintf(stderr, "### call=1 errno=%u\n", (intptr_t)(int)res == -1 ? errno : 0);
                		break;
                	case 2:
                *(uint64_t*)0x20010280 = 0x200001c0;
                *(uint32_t*)0x200001c0 = 0;
                memset((void*)0x200001c4, 0, 3);
                *(uint8_t*)0x200001c7 = 1;
                *(uint64_t*)0x200001c8 = 0x1f62df5e00000000;
                *(uint64_t*)0x20010288 = 0x20000200;
                *(uint64_t*)0x20010290 = 0x20000240;
                *(uint64_t*)0x20010298 = 0x20010240;
                *(uint32_t*)0x200102a0 = 0x10;
                *(uint32_t*)0x200102a4 = 0;
                *(uint32_t*)0x200102a8 = 0x10000;
                *(uint32_t*)0x200102ac = 1;
                		res = -1;
                		errno = EFAULT;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                		fprintf(stderr, "### call=2 errno=%u\n", (intptr_t)(int)res == -1 ? errno : 0);
                		{
                		int i;
                		for(i = 0; i < 4; i++) {
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                				}
                		}
                		if (res == ZX_OK)
                r[1] = *(uint32_t*)0x20010240;
                		break;
                	case 3:
                *(uint64_t*)0x200107c0 = 0x20010340;
                memcpy((void*)0x20010340, "\x13\xcc\xbc\xac\xe9\xbe\xc9\x58\x8e\xf4\x17\xb7\x2f\x30\x9e\xab\xab\x82\x61\xa7\x9e\x65\x1e\x4c\x24", 25);
                *(uint64_t*)0x200107d0 = 0x20010380;
                memcpy((void*)0x20010380, "\x34\x74\x0c\xb6\x2b\x97", 6);
                *(uint64_t*)0x200107e0 = 0x200103c0;
                memcpy((void*)0x200103c0, "\x16\x8a\xc0\x7f\x7e\x3b\x66\x9b\x1c\xa5\x88\x0a\x2e\x28\xdc\x09\x5b\x3f\xe1\x31\xad\x1e\xb1\x07\x28\x75\x8d\xbd\x2f\x59\x5d\x92\x8c\xa6\x62\x08\xe7\xd7\xb6\x92\xef\x2c\x84\x1e\xef\xd2\x81\x25\xbb\xf4\xd6\x2d\x30\xc9\x68\x06\xe7\x29\xcb\x70\xe8\x33\xf1\x0c\xab\x51\xe6\xe5\x21\x65\x09\x94\x4b\xfd\xf0\x37\x5b\xa3\xff\xd4\x5e\xd4\x4d\x6f\x70\x2b\x4d\x57\x1a\xf9\x9d\x11\x30\x18\x1c\xff\xcb\xb1\xdb\x5b\xbb\xf0\xe3\x15\x77\xd1\x15\xf7\x1f\xf1\x67\xae\x0e\xb9\xf1\x3f\x64\xf6\x77\x57\x29\x31\x46\x98\x68\x13\x81\x27\x48\xb9\x6a\x1c\x11\x8f\x40\x48\xf4\xaa\x6e\x52\x24\x5d\x87\xf5\x77\x9e\x47\xb5\xb5\x9a\x53\x6b\x6e\x5f\xca\xf4\x3f\x58\x68\x69\xa5\x79\x52\xb9\x2b\xa1\xeb\x14\xc1\x4f\x31\xe7\xc8\x58\x7c\xe2\x77\x59\x2a\x4b\xc1\x2f\x6d\x1e\xa8\x2a\xcd\xc9\xb9\x73\xdb\xe1\x46\x01\x96\x89\x9a\x00\x29\x7e\x4e\x71\x32\xe3\xb0\x08\x28", 207);
                *(uint64_t*)0x200107f0 = 0x200104c0;
                memcpy((void*)0x200104c0, "\xdb\x71\xd7\x6c\xc7\xcc\xc9\x4a\xcb\x73\x76\x8c\xdf\x08\xca\xdc\x13\x61\xe1", 19);
                *(uint64_t*)0x20010800 = 0x20010500;
                memcpy((void*)0x20010500, "\xee\xb2\x85\x07\x24\x60\x6a\xe7\xce\x7a\x56\x52\xb5\xb8\xa8\xf3\xa5\xc0\x61\x32\x97\x95\x57\xf4\x85\x46\x14\xe6\x66\x04\x1c\x1a\x94\x14\x82\x60\x02\x44\x97\x85\x03\x9a\x57\x86\x3a\xad\x0d\x64\xf9\x9b\x27\xb8\x1b\xdf\x91\x50\xf2\x79\x2c\x62\x30\xcc\xda\xfe\xf2\x11\x93\x49\x6f\x8b\x4e\xbb\xe4\x8d\xcc\x5c\xcb\x88\x0a\x69\xad\x2a\xa6\xed\x15\xa3\x57\x6e\x65\x6a\xcb\xd1\xd5\xab\xfe\x14\x21\x4b\xfb\x95\xcf\x87\xa6\x21\x50\x19\x22\x93\x74\xf0\x41\xa6\xce\x16\x42\x0f\xe4\x76\x3a\xb1\xfe\xce\xa5\xdb\x14\x91\x9e\xc6\x9c\x50\x3a\xcc\x07\xe5\x1e\x4e\x15\xb7\x77\xed\x58\xe3\xcb\x58\xdd\x7a\x8a\xc9\xee\xb4\x35\x6c\xb3\x23\x2f\xc6\x6c\x77\x01\xae\x4e\x23\xf1\x4d\x11\xcc\xe1\x9a\x0b\x88\x1b\x84\xd0\x20\x53\x25\x1b\xa5\xea\x82\x6f\xdb\x7d\xa2\xba\x5d\x4e\xc4\xea\x1c\x51\xce\x7e\x0c\x56\x42\xb3", 197);
                *(uint64_t*)0x20010810 = 0x20010600;
                memcpy((void*)0x20010600, "\xd3\x5a\xe8\xf9\xb7\x09\x07\x3a\x47\x20\x79\xb1\x20\x33\xdf\xd0\x9c\x6a\x47\x18\x64\x6c\xd9\x92\xb2\xd1\xcd\x35\x89\x44\x6b\x63\xb3\x0c\x67", 35);
                *(uint64_t*)0x20010820 = 0x20010640;
                memcpy((void*)0x20010640, "\x50\x63\xcd\xf3\x58\x9e\xc6\xc7\xb9\x54\x0e\x75\x14\xf9\x5f\xf7\xdf\x32\xde\xdf\xab\x4e", 22);
                *(uint64_t*)0x20010830 = 0x20010680;
                memcpy((void*)0x20010680, "\x62\x25\xf8\xbb\x38\x69\x3a\xa6\x54\x11\x30\x1b\x35\x84\x25\x74\xdd\xc4\x0d\x87\x49\x7a\xa2\xf3\xfe\x39\xf7\xb8\xba\xcc\xc1\x0a\x30\xc6\xa9\xd2\xad\x65\x16\xd8\x83\x65\x66\x26\x55\xae\xbd\xb4\x73\x20\x76\x3a\xc2\x8e\xf7\x33\xb2\x02\xbd", 59);
                *(uint64_t*)0x20010840 = 0x200106c0;
                memcpy((void*)0x200106c0, "\xf6\xcf\x9e\xee\xc4\xe1\x06\x86\x63\xcd\x86\xfc\x0c\x25\x5f\x05\x1c\x75\x0c\x85\x3d\x1c\xc0\x74\x83\xb7\x3b\x07\x59\xd5\x28\x4e\xbd\x41\xbc\x8d\xb2\x8e\xb7\xb5\xdb\xdf\x72\x21\xd8\x77\x93\x26\x2d\x57\xbc\xab\x11\x99\xa0\xce\xda\x8b\x5e\x4c\x57\x21\x70\x38\xc1\x7f\x96\xf0\xdf\xff\x52\xfa\xc6\x98\xc7\x3c\x2a\x0d\x69\x26\x64\x77\xab\xf5\x78\xc0\x5f\xc5\x0e\x75\xba\x84\x61\x99\x7a\x9c\x6f\xd9\xf0\x61\x89\x51\x60\x90\xd4\x7e\xe8\xd8\x1a\x93\xda\x80\x02\xd8\x8c\xec\xf2\x6d\x3c\xea\xd9\xb5\x9f\x23\x0b\xdc\x46\x26\x6f\xb0\xdc\x76\x08\xcd\xbe\xf0\x37\x74\x6b\xc7\x1c\x1d\x86\x5a\xcf\xf0\x3f\xd5\xaf\xb6\xa4\xea\x9a\x1e\x7f\x0b\x5c\x18\x99\xa2\x87\xe2\xee\x8a\x8d\xa9\xac\x0e\xdc\xc3\x02\xc3\xf9\x6a\x36\x48\x0b\x6c\xb3\x1d\x1e\x29\x78\x7d\x71\x5f\x45\x0d\x3c\x46\x7d\xfc\x4d\xbd\x31\xf3\x56\x2a\xc9\x94\xb2\x63\x4e\x91\xa8\xd3\xea\xa7\x25\x2f\xe0\xdb\x77\xb2\xe6\xda\x55\x4e\x67\xa3\x43\x17\xe3\x8e\x00\x07\xec\x37\xee\x58\x49\x78\xe7\xc0\x9b\x28\x06\xc1\x71", 239);
                		res = -1;
                		errno = EFAULT;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv))(r[1], 0, 0x200107c0, 9, 0x20010880);
                		fprintf(stderr, "### call=3 errno=%u\n", (intptr_t)(int)res == -1 ? errno : 0);
                		break;
                	case 4:
                		res = -1;
                		errno = EFAULT;
                res = ((intptr_t(*)(intptr_t,intptr_t))CAST(zx_event_create))(0xffe00, 0x200108c0);
                		fprintf(stderr, "### call=4 errno=%u\n", (intptr_t)(int)res == -1 ? errno : 0);
                		if (res == ZX_OK)
                r[2] = *(uint32_t*)0x200108c0;
                		break;
                	case 5:
                		res = -1;
                		errno = EFAULT;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t))CAST(zx_channel_create))(0, 0x20010940, 0x20010980);
                		fprintf(stderr, "### call=5 errno=%u\n", (intptr_t)(int)res == -1 ? errno : 0);
                		if (res == ZX_OK)
                r[3] = *(uint32_t*)0x20010980;
                		break;
                	case 6:
                		res = -1;
                		errno = EFAULT;
                res = ((intptr_t(*)())CAST(get_root_resource))();
                		fprintf(stderr, "### call=6 errno=%u\n", (intptr_t)(int)res == -1 ? errno : 0);
                		if ((int)res != -1)
                				r[4] = res;
                		break;
                	case 7:
                		res = -1;
                		errno = EFAULT;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vmar_allocate))(r[1], 0x16000000, 0xd7d1, -1, 0x200109c0, 0x20010a00);
                		fprintf(stderr, "### call=7 errno=%u\n", (intptr_t)(int)res == -1 ? errno : 0);
                		if (res == ZX_OK)
                r[5] = *(uint32_t*)0x200109c0;
                		break;
                	case 8:
                *(uint32_t*)0x20010900 = 0;
                memset((void*)0x20010904, 0, 3);
                *(uint8_t*)0x20010907 = 1;
                *(uint64_t*)0x20010908 = 0x5cd6900b00000000;
                *(uint64_t*)0x20010910 = 0xfff;
                *(uint64_t*)0x20010918 = 0;
                *(uint32_t*)0x20010920 = -1;
                *(uint32_t*)0x20010924 = 9;
                *(uint32_t*)0x20010a40 = r[3];
                *(uint32_t*)0x20010a44 = r[4];
                *(uint32_t*)0x20010a48 = r[5];
                *(uint32_t*)0x20010a4c = r[1];
                *(uint32_t*)0x20010a50 = r[1];
                *(uint32_t*)0x20010a54 = r[1];
                		res = -1;
                		errno = EFAULT;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_write))(r[2], 0, 0x20010900, 0x28, 0x20010a40, 0x18);
                		fprintf(stderr, "### call=8 errno=%u\n", (intptr_t)(int)res == -1 ? errno : 0);
                		break;
                	case 9:
                		res = -1;
                		errno = EFAULT;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vcpu_write_state))(r[4], 0x80000001, 0x20010a80, 0xf5);
                		fprintf(stderr, "### call=9 errno=%u\n", (intptr_t)(int)res == -1 ? errno : 0);
                		break;
                	case 10:
                memcpy((void*)0x20000000, "\xc4\x22\x01\x04\x1d\xb2\x3b\xae\x8b\x67\x2e\x26\x41\xc7\x04\xfb\x27\x27\x00\x00\xf0\x41\x0f\xc7\x8b\x95\x42\x4e\xd7\x65\xa2\x0a\x00\x00\x00\x00\x00\x00\x00\xc4\x83\xc9\x5e\x18\x05\xc4\xe2\xb1\x90\x34\x7b\xf2\x0f\x59\x33\x3e\x0f\x38\xf1\x5b\xd2\x3e\xf3\x47\x0f\x2a\x98\xc1\x59\x6e\x05\xc4\x61\xaa\x11\xc1", 76);
                		res = -1;
                		errno = EFAULT;
                res = syz_execute_func(0x20000000);
                		fprintf(stderr, "### call=10 errno=%u\n", res == -1 ? errno : 0);
                		break;
                	case 11:
                		res = -1;
                		errno = EFAULT;
                res = syz_future_time(0);
                		fprintf(stderr, "### call=11 errno=%u\n", res == -1 ? errno : 0);
                		break;
                	case 12:
                		res = -1;
                		errno = EFAULT;
                res = syz_job_default();
                		fprintf(stderr, "### call=12 errno=%u\n", res == -1 ? errno : 0);
                		break;
                	case 13:
                		res = -1;
                		errno = EFAULT;
                res = syz_mmap(0x20ffd000, 0x2000);
                		fprintf(stderr, "### call=13 errno=%u\n", res == -1 ? errno : 0);
                		break;
                	case 14:
                		res = -1;
                		errno = EFAULT;
                res = syz_process_self();
                		fprintf(stderr, "### call=14 errno=%u\n", res == -1 ? errno : 0);
                		break;
                	case 15:
                		res = -1;
                		errno = EFAULT;
                res = syz_thread_self();
                		fprintf(stderr, "### call=15 errno=%u\n", res == -1 ? errno : 0);
                		break;
                	case 16:
                		res = -1;
                		errno = EFAULT;
                res = syz_vmar_root_self();
                		fprintf(stderr, "### call=16 errno=%u\n", res == -1 ? errno : 0);
                		break;
                	}
                
                }
                int main(void)
                {
                syz_mmap(0x20000000, 0x1000000);
                	setup_fault();
                			use_temporary_dir();
                			do_sandbox_none();
                	return 0;
                }
                
                <stdin>:8:10: fatal error: 'lib/ddk/driver.h' file not found
                #include <lib/ddk/driver.h>
                         ^~~~~~~~~~~~~~~~~~
                1 error generated.
                
                compiler invocation: /syzkaller/shared/fuchsia/prebuilt/third_party/clang/linux-x64/bin/clang [-o /tmp/syz-executor2442643194 -DGOOS_fuchsia=1 -DGOARCH_amd64=1 -DHOSTGOOS_linux=1 -x c - -Wno-deprecated -target x86_64-fuchsia -ldriver -lfdio -lzircon --sysroot /syzkaller/shared/fuchsia/out/x64/zircon_toolchain/obj/zircon/public/sysroot/sysroot -I /syzkaller/shared/fuchsia/sdk/lib/fdio/include -I /syzkaller/shared/fuchsia/zircon/system/ulib/fidl/include -I /syzkaller/shared/fuchsia/src/lib/ddk/include -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device.manager -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.nand -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.power.statecontrol -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.usb.peripheral -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/zircon/vdso/zx -L /syzkaller/shared/fuchsia/out/x64/x64-shared -O2 -pthread -Wall -Werror -Wparentheses -Wunused-const-variable -Wframe-larger-than=16384 -Wno-array-bounds -Wno-unused-command-line-argument]
        --- FAIL: TestGenerate/fuchsia/amd64/6 (0.16s)
            csource_test.go:133: opts: {Threaded:true Repeat:true RepeatTimes:0 Procs:0 Slowdown:10 Sandbox:none SandboxArg:0 Leak:false NetInjection:false NetDevices:false NetReset:false Cgroups:false BinfmtMisc:false CloseFDs:false KCSAN:false DevlinkPCI:false NicVF:false USB:false VhciInjection:false Wifi:false IEEE802154:false Sysctl:false UseTmpDir:true HandleSegv:false Repro:false Trace:false LegacyOptions:{Collide:false Fault:false FaultCall:0 FaultNth:0}}
                program:
                zx_stream_seek(0x0, 0x1, 0x8, &(0x7f0000000000)=<r0=>0x0) (fail_nth: 1)
                zx_stream_readv_at(0x0, 0x0, r0, &(0x7f0000000140)=[{&(0x7f0000000040)="1dbbb25cf45e520025f9c3a033b31b3a7969f7b384ed40aed6fba77a34ac1a64d1c95f9f7230446ed1ac8ecfdb9d39ca441ead1b96b12a6fd18da42173794436402ff5b4063215ecc612fd27da75c703b9b4f6944304041476d52c130b37f7f9c0067864ce18e33f6119b30fc4e4d2b040131db7201bc5e6af7c3467b67a129df678bfb11aba6ab56fa7fddd654e325f2a80386b8754b9f2eeed19abaa249428a367bf8bf788d2c66657a67c50394fa4e76ce217b12b0722001eee20736a11156183494fae831c2edf250858bf234c4269b07d001373dc3e0df227ec3a554651f758992975d9d1238c", 0xe9}], 0x1, &(0x7f0000000180)) (async)
                zx_channel_call$fuchsia_io_DirectoryDescribe(0x0, 0x0, 0x7fffffffffffffff, &(0x7f0000010280)={&(0x7f00000001c0), &(0x7f0000000200), &(0x7f0000000240), &(0x7f0000010240)={@tty={<r1=>0x0}}, 0x10, 0x0, 0x10000, 0x1}, &(0x7f00000102c0), &(0x7f0000010300)) (rerun: 4)
                zx_stream_readv(r1, 0x0, &(0x7f00000107c0)=[{&(0x7f0000010340)="13ccbcace9bec9588ef417b72f309eabab8261a79e651e4c24", 0x19}, {&(0x7f0000010380)="34740cb62b97", 0x6}, {&(0x7f00000103c0)="168ac07f7e3b669b1ca5880a2e28dc095b3fe131ad1eb10728758dbd2f595d928ca66208e7d7b692ef2c841eefd28125bbf4d62d30c96806e729cb70e833f10cab51e6e5216509944bfdf0375ba3ffd45ed44d6f702b4d571af99d1130181cffcbb1db5bbbf0e31577d115f71ff167ae0eb9f13f64f67757293146986813812748b96a1c118f4048f4aa6e52245d87f5779e47b5b59a536b6e5fcaf43f586869a57952b92ba1eb14c14f31e7c8587ce277592a4bc12f6d1ea82acdc9b973dbe1460196899a00297e4e7132e3b00828", 0xcf}, {&(0x7f00000104c0)="db71d76cc7ccc94acb73768cdf08cadc1361e1", 0x13}, {&(0x7f0000010500)="eeb2850724606ae7ce7a5652b5b8a8f3a5c06132979557f4854614e666041c1a9414826002449785039a57863aad0d64f99b27b81bdf9150f2792c6230ccdafef21193496f8b4ebbe48dcc5ccb880a69ad2aa6ed15a3576e656acbd1d5abfe14214bfb95cf87a6215019229374f041a6ce16420fe4763ab1fecea5db14919ec69c503acc07e51e4e15b777ed58e3cb58dd7a8ac9eeb4356cb3232fc66c7701ae4e23f14d11cce19a0b881b84d02053251ba5ea826fdb7da2ba5d4ec4ea1c51ce7e0c5642b3", 0xc5}, {&(0x7f0000010600)="d35ae8f9b709073a472079b12033dfd09c6a4718646cd992b2d1cd3589446b63b30c67", 0x23}, {&(0x7f0000010640)="5063cdf3589ec6c7b9540e7514f95ff7df32dedfab4e", 0x16}, {&(0x7f0000010680)="6225f8bb38693aa65411301b35842574ddc40d87497aa2f3fe39f7b8baccc10a30c6a9d2ad6516d88365662655aebdb47320763ac28ef733b202bd", 0x3b}, {&(0x7f00000106c0)="f6cf9eeec4e1068663cd86fc0c255f051c750c853d1cc07483b73b0759d5284ebd41bc8db28eb7b5dbdf7221d87793262d57bcab1199a0ceda8b5e4c57217038c17f96f0dfff52fac698c73c2a0d69266477abf578c05fc50e75ba8461997a9c6fd9f06189516090d47ee8d81a93da8002d88cecf26d3cead9b59f230bdc46266fb0dc7608cdbef037746bc71c1d865acff03fd5afb6a4ea9a1e7f0b5c1899a287e2ee8a8da9ac0edcc302c3f96a36480b6cb31d1e29787d715f450d3c467dfc4dbd31f3562ac994b2634e91a8d3eaa7252fe0db77b2e6da554e67a34317e38e0007ec37ee584978e7c09b2806c171", 0xef}], 0x9, &(0x7f0000010880))
                zx_event_create(0xffe00, &(0x7f00000108c0)=<r2=>0x0)
                zx_channel_create$fuchsia_cobalt_SystemDataUpdater(0x0, &(0x7f0000010940), &(0x7f0000010980)=<r3=>0x0)
                r4 = get_root_resource()
                zx_vmar_allocate(r1, 0x16000000, 0xd7d1, 0xffffffffffffffff, &(0x7f00000109c0)=<r5=>0x0, &(0x7f0000010a00))
                zx_channel_write$fuchsia_process_LauncherAddHandles(r2, 0x0, &(0x7f0000010900)={{}, {0xfff}, {[{0xffffffff, 0x9}], [{}, {}]}}, 0x28, &(0x7f0000010a40)={[{r3}, {r4}, {r5}, {r1}, {r1}, {r1}]}, 0x18)
                zx_vcpu_write_state(r4, 0x80000001, &(0x7f0000010a80)=""/245, 0xf5)
                syz_execute_func(&(0x7f0000000000)="c42201041db23bae8b672e2641c704fb27270000f0410fc78b95424ed765a20a00000000000000c483c95e1805c4e2b190347bf20f59333e0f38f15bd23ef3470f2a98c1596e05c461aa11c1")
                syz_future_time(0x0)
                syz_job_default()
                syz_mmap(&(0x7f0000ffd000/0x2000)=nil, 0x2000)
                syz_process_self()
                syz_thread_self()
                syz_vmar_root_self()
                
            csource_test.go:134: failed to build program:
                // autogenerated by syzkaller (https://github.com/google/syzkaller)
                
                #define _GNU_SOURCE 
                
                #include <endian.h>
                #include <errno.h>
                #include <fcntl.h>
                #include <lib/ddk/driver.h>
                #include <lib/fdio/directory.h>
                #include <poll.h>
                #include <pthread.h>
                #include <signal.h>
                #include <stdint.h>
                #include <stdio.h>
                #include <stdlib.h>
                #include <string.h>
                #include <sys/file.h>
                #include <sys/ioctl.h>
                #include <sys/socket.h>
                #include <sys/stat.h>
                #include <sys/time.h>
                #include <sys/types.h>
                #include <sys/uio.h>
                #include <time.h>
                #include <unistd.h>
                #include <utime.h>
                #include <zircon/process.h>
                #include <zircon/status.h>
                #include <zircon/syscalls.h>
                
                static void sleep_ms(uint64_t ms)
                {
                	usleep(ms * 1000);
                }
                
                static uint64_t current_time_ms(void)
                {
                	struct timespec ts;
                	if (clock_gettime(CLOCK_MONOTONIC, &ts))
                	exit(1);
                	return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000;
                }
                
                static void use_temporary_dir(void)
                {
                	char tmpdir_template[] = "/tmp/syzkaller.XXXXXX";
                	char* tmpdir = mkdtemp(tmpdir_template);
                	if (!tmpdir)
                	exit(1);
                	if (chmod(tmpdir, 0777))
                	exit(1);
                	if (chdir(tmpdir))
                	exit(1);
                }
                
                static int inject_fault(int nth)
                {
                	return 0;
                }
                
                static void setup_fault()
                {
                }
                
                static void thread_start(void* (*fn)(void*), void* arg)
                {
                	pthread_t th;
                	pthread_attr_t attr;
                	pthread_attr_init(&attr);
                	pthread_attr_setstacksize(&attr, 128 << 10);
                	int i = 0;
                	for (; i < 100; i++) {
                		if (pthread_create(&th, &attr, fn, arg) == 0) {
                			pthread_attr_destroy(&attr);
                			return;
                		}
                		if (errno == EAGAIN) {
                			usleep(50);
                			continue;
                		}
                		break;
                	}
                	exit(1);
                }
                
                typedef struct {
                	int state;
                } event_t;
                
                static void event_init(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_reset(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_set(event_t* ev)
                {
                	if (ev->state)
                	exit(1);
                	__atomic_store_n(&ev->state, 1, __ATOMIC_RELEASE);
                }
                
                static void event_wait(event_t* ev)
                {
                	while (!__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE))
                		usleep(200);
                }
                
                static int event_isset(event_t* ev)
                {
                	return __atomic_load_n(&ev->state, __ATOMIC_ACQUIRE);
                }
                
                static int event_timedwait(event_t* ev, uint64_t timeout_ms)
                {
                	uint64_t start = current_time_ms();
                	for (;;) {
                		if (__atomic_load_n(&ev->state, __ATOMIC_RELAXED))
                			return 1;
                		if (current_time_ms() - start > timeout_ms)
                			return 0;
                		usleep(200);
                	}
                }
                
                long syz_mmap(size_t addr, size_t size)
                {
                	zx_handle_t root = zx_vmar_root_self();
                	zx_info_vmar_t info;
                	zx_status_t status = zx_object_get_info(root, ZX_INFO_VMAR, &info, sizeof(info), 0, 0);
                	if (status != ZX_OK) {
                		return status;
                	}
                	zx_handle_t vmo;
                	status = zx_vmo_create(size, 0, &vmo);
                	if (status != ZX_OK) {
                		return status;
                	}
                	uintptr_t mapped_addr;
                	status = zx_vmar_map(root, ZX_VM_FLAG_SPECIFIC_OVERWRITE | ZX_VM_FLAG_PERM_READ | ZX_VM_FLAG_PERM_WRITE,
                			     addr - info.base, vmo, 0, size,
                			     &mapped_addr);
                	zx_status_t close_vmo_status = zx_handle_close(vmo);
                	if (close_vmo_status != ZX_OK) {
                	}
                	return status;
                }
                
                static long syz_process_self(void)
                {
                	return zx_process_self();
                }
                
                static long syz_thread_self(void)
                {
                	return zx_thread_self();
                }
                
                static long syz_vmar_root_self(void)
                {
                	return zx_vmar_root_self();
                }
                
                static long syz_job_default(void)
                {
                	return zx_job_default();
                }
                
                static long syz_future_time(volatile long when)
                {
                	zx_time_t delta_ms = 10000;
                	switch (when) {
                	case 0:
                		delta_ms = 5;
                		break;
                	case 1:
                		delta_ms = 30;
                		break;
                	}
                	zx_time_t now = 0;
                	zx_clock_read(ZX_CLOCK_MONOTONIC, &now);
                	return now + delta_ms * 1000 * 1000;
                }
                
                static void loop();
                static int do_sandbox_none(void)
                {
                	loop();
                	return 0;
                }
                #define CAST(f) ({void* p = (void*)f; p; })
                
                static long syz_execute_func(volatile long text)
                {
                	((void (*)(void))(text))();
                	return 0;
                }
                
                struct thread_t {
                	int created, call;
                	event_t ready, done;
                };
                
                static struct thread_t threads[16];
                static void execute_call(int call);
                static int running;
                
                static void* thr(void* arg)
                {
                	struct thread_t* th = (struct thread_t*)arg;
                	for (;;) {
                		event_wait(&th->ready);
                		event_reset(&th->ready);
                		execute_call(th->call);
                		__atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED);
                		event_set(&th->done);
                	}
                	return 0;
                }
                
                static void execute_one(void)
                {
                	int i, call, thread;
                	for (call = 0; call < 17; call++) {
                		for (thread = 0; thread < (int)(sizeof(threads) / sizeof(threads[0])); thread++) {
                			struct thread_t* th = &threads[thread];
                			if (!th->created) {
                				th->created = 1;
                				event_init(&th->ready);
                				event_init(&th->done);
                				event_set(&th->done);
                				thread_start(thr, th);
                			}
                			if (!event_isset(&th->done))
                				continue;
                			event_reset(&th->done);
                			th->call = call;
                			__atomic_fetch_add(&running, 1, __ATOMIC_RELAXED);
                			event_set(&th->ready);
                			if (call == 1)
                				break;
                			event_timedwait(&th->done, 500);
                			break;
                		}
                	}
                	for (i = 0; i < 100 && __atomic_load_n(&running, __ATOMIC_RELAXED); i++)
                		sleep_ms(1);
                }
                
                static void execute_one(void);
                static void loop(void)
                {
                	execute_one();
                }
                
                uint64_t r[6] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
                
                void execute_call(int call)
                {
                		intptr_t res = 0;
                	switch (call) {
                	case 0:
                		inject_fault(1);
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_seek))(0, 1, 8, 0x20000000);
                		if (res == ZX_OK)
                r[0] = *(uint64_t*)0x20000000;
                		break;
                	case 1:
                *(uint64_t*)0x20000140 = 0x20000040;
                memcpy((void*)0x20000040, "\x1d\xbb\xb2\x5c\xf4\x5e\x52\x00\x25\xf9\xc3\xa0\x33\xb3\x1b\x3a\x79\x69\xf7\xb3\x84\xed\x40\xae\xd6\xfb\xa7\x7a\x34\xac\x1a\x64\xd1\xc9\x5f\x9f\x72\x30\x44\x6e\xd1\xac\x8e\xcf\xdb\x9d\x39\xca\x44\x1e\xad\x1b\x96\xb1\x2a\x6f\xd1\x8d\xa4\x21\x73\x79\x44\x36\x40\x2f\xf5\xb4\x06\x32\x15\xec\xc6\x12\xfd\x27\xda\x75\xc7\x03\xb9\xb4\xf6\x94\x43\x04\x04\x14\x76\xd5\x2c\x13\x0b\x37\xf7\xf9\xc0\x06\x78\x64\xce\x18\xe3\x3f\x61\x19\xb3\x0f\xc4\xe4\xd2\xb0\x40\x13\x1d\xb7\x20\x1b\xc5\xe6\xaf\x7c\x34\x67\xb6\x7a\x12\x9d\xf6\x78\xbf\xb1\x1a\xba\x6a\xb5\x6f\xa7\xfd\xdd\x65\x4e\x32\x5f\x2a\x80\x38\x6b\x87\x54\xb9\xf2\xee\xed\x19\xab\xaa\x24\x94\x28\xa3\x67\xbf\x8b\xf7\x88\xd2\xc6\x66\x57\xa6\x7c\x50\x39\x4f\xa4\xe7\x6c\xe2\x17\xb1\x2b\x07\x22\x00\x1e\xee\x20\x73\x6a\x11\x15\x61\x83\x49\x4f\xae\x83\x1c\x2e\xdf\x25\x08\x58\xbf\x23\x4c\x42\x69\xb0\x7d\x00\x13\x73\xdc\x3e\x0d\xf2\x27\xec\x3a\x55\x46\x51\xf7\x58\x99\x29\x75\xd9\xd1\x23\x8c", 233);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv_at))(0, 0, r[0], 0x20000140, 1, 0x20000180);
                		break;
                	case 2:
                *(uint64_t*)0x20010280 = 0x200001c0;
                *(uint32_t*)0x200001c0 = 0;
                memset((void*)0x200001c4, 0, 3);
                *(uint8_t*)0x200001c7 = 1;
                *(uint64_t*)0x200001c8 = 0x1f62df5e00000000;
                *(uint64_t*)0x20010288 = 0x20000200;
                *(uint64_t*)0x20010290 = 0x20000240;
                *(uint64_t*)0x20010298 = 0x20010240;
                *(uint32_t*)0x200102a0 = 0x10;
                *(uint32_t*)0x200102a4 = 0;
                *(uint32_t*)0x200102a8 = 0x10000;
                *(uint32_t*)0x200102ac = 1;
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                		{
                		int i;
                		for(i = 0; i < 4; i++) {
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                				}
                		}
                		if (res == ZX_OK)
                r[1] = *(uint32_t*)0x20010240;
                		break;
                	case 3:
                *(uint64_t*)0x200107c0 = 0x20010340;
                memcpy((void*)0x20010340, "\x13\xcc\xbc\xac\xe9\xbe\xc9\x58\x8e\xf4\x17\xb7\x2f\x30\x9e\xab\xab\x82\x61\xa7\x9e\x65\x1e\x4c\x24", 25);
                *(uint64_t*)0x200107d0 = 0x20010380;
                memcpy((void*)0x20010380, "\x34\x74\x0c\xb6\x2b\x97", 6);
                *(uint64_t*)0x200107e0 = 0x200103c0;
                memcpy((void*)0x200103c0, "\x16\x8a\xc0\x7f\x7e\x3b\x66\x9b\x1c\xa5\x88\x0a\x2e\x28\xdc\x09\x5b\x3f\xe1\x31\xad\x1e\xb1\x07\x28\x75\x8d\xbd\x2f\x59\x5d\x92\x8c\xa6\x62\x08\xe7\xd7\xb6\x92\xef\x2c\x84\x1e\xef\xd2\x81\x25\xbb\xf4\xd6\x2d\x30\xc9\x68\x06\xe7\x29\xcb\x70\xe8\x33\xf1\x0c\xab\x51\xe6\xe5\x21\x65\x09\x94\x4b\xfd\xf0\x37\x5b\xa3\xff\xd4\x5e\xd4\x4d\x6f\x70\x2b\x4d\x57\x1a\xf9\x9d\x11\x30\x18\x1c\xff\xcb\xb1\xdb\x5b\xbb\xf0\xe3\x15\x77\xd1\x15\xf7\x1f\xf1\x67\xae\x0e\xb9\xf1\x3f\x64\xf6\x77\x57\x29\x31\x46\x98\x68\x13\x81\x27\x48\xb9\x6a\x1c\x11\x8f\x40\x48\xf4\xaa\x6e\x52\x24\x5d\x87\xf5\x77\x9e\x47\xb5\xb5\x9a\x53\x6b\x6e\x5f\xca\xf4\x3f\x58\x68\x69\xa5\x79\x52\xb9\x2b\xa1\xeb\x14\xc1\x4f\x31\xe7\xc8\x58\x7c\xe2\x77\x59\x2a\x4b\xc1\x2f\x6d\x1e\xa8\x2a\xcd\xc9\xb9\x73\xdb\xe1\x46\x01\x96\x89\x9a\x00\x29\x7e\x4e\x71\x32\xe3\xb0\x08\x28", 207);
                *(uint64_t*)0x200107f0 = 0x200104c0;
                memcpy((void*)0x200104c0, "\xdb\x71\xd7\x6c\xc7\xcc\xc9\x4a\xcb\x73\x76\x8c\xdf\x08\xca\xdc\x13\x61\xe1", 19);
                *(uint64_t*)0x20010800 = 0x20010500;
                memcpy((void*)0x20010500, "\xee\xb2\x85\x07\x24\x60\x6a\xe7\xce\x7a\x56\x52\xb5\xb8\xa8\xf3\xa5\xc0\x61\x32\x97\x95\x57\xf4\x85\x46\x14\xe6\x66\x04\x1c\x1a\x94\x14\x82\x60\x02\x44\x97\x85\x03\x9a\x57\x86\x3a\xad\x0d\x64\xf9\x9b\x27\xb8\x1b\xdf\x91\x50\xf2\x79\x2c\x62\x30\xcc\xda\xfe\xf2\x11\x93\x49\x6f\x8b\x4e\xbb\xe4\x8d\xcc\x5c\xcb\x88\x0a\x69\xad\x2a\xa6\xed\x15\xa3\x57\x6e\x65\x6a\xcb\xd1\xd5\xab\xfe\x14\x21\x4b\xfb\x95\xcf\x87\xa6\x21\x50\x19\x22\x93\x74\xf0\x41\xa6\xce\x16\x42\x0f\xe4\x76\x3a\xb1\xfe\xce\xa5\xdb\x14\x91\x9e\xc6\x9c\x50\x3a\xcc\x07\xe5\x1e\x4e\x15\xb7\x77\xed\x58\xe3\xcb\x58\xdd\x7a\x8a\xc9\xee\xb4\x35\x6c\xb3\x23\x2f\xc6\x6c\x77\x01\xae\x4e\x23\xf1\x4d\x11\xcc\xe1\x9a\x0b\x88\x1b\x84\xd0\x20\x53\x25\x1b\xa5\xea\x82\x6f\xdb\x7d\xa2\xba\x5d\x4e\xc4\xea\x1c\x51\xce\x7e\x0c\x56\x42\xb3", 197);
                *(uint64_t*)0x20010810 = 0x20010600;
                memcpy((void*)0x20010600, "\xd3\x5a\xe8\xf9\xb7\x09\x07\x3a\x47\x20\x79\xb1\x20\x33\xdf\xd0\x9c\x6a\x47\x18\x64\x6c\xd9\x92\xb2\xd1\xcd\x35\x89\x44\x6b\x63\xb3\x0c\x67", 35);
                *(uint64_t*)0x20010820 = 0x20010640;
                memcpy((void*)0x20010640, "\x50\x63\xcd\xf3\x58\x9e\xc6\xc7\xb9\x54\x0e\x75\x14\xf9\x5f\xf7\xdf\x32\xde\xdf\xab\x4e", 22);
                *(uint64_t*)0x20010830 = 0x20010680;
                memcpy((void*)0x20010680, "\x62\x25\xf8\xbb\x38\x69\x3a\xa6\x54\x11\x30\x1b\x35\x84\x25\x74\xdd\xc4\x0d\x87\x49\x7a\xa2\xf3\xfe\x39\xf7\xb8\xba\xcc\xc1\x0a\x30\xc6\xa9\xd2\xad\x65\x16\xd8\x83\x65\x66\x26\x55\xae\xbd\xb4\x73\x20\x76\x3a\xc2\x8e\xf7\x33\xb2\x02\xbd", 59);
                *(uint64_t*)0x20010840 = 0x200106c0;
                memcpy((void*)0x200106c0, "\xf6\xcf\x9e\xee\xc4\xe1\x06\x86\x63\xcd\x86\xfc\x0c\x25\x5f\x05\x1c\x75\x0c\x85\x3d\x1c\xc0\x74\x83\xb7\x3b\x07\x59\xd5\x28\x4e\xbd\x41\xbc\x8d\xb2\x8e\xb7\xb5\xdb\xdf\x72\x21\xd8\x77\x93\x26\x2d\x57\xbc\xab\x11\x99\xa0\xce\xda\x8b\x5e\x4c\x57\x21\x70\x38\xc1\x7f\x96\xf0\xdf\xff\x52\xfa\xc6\x98\xc7\x3c\x2a\x0d\x69\x26\x64\x77\xab\xf5\x78\xc0\x5f\xc5\x0e\x75\xba\x84\x61\x99\x7a\x9c\x6f\xd9\xf0\x61\x89\x51\x60\x90\xd4\x7e\xe8\xd8\x1a\x93\xda\x80\x02\xd8\x8c\xec\xf2\x6d\x3c\xea\xd9\xb5\x9f\x23\x0b\xdc\x46\x26\x6f\xb0\xdc\x76\x08\xcd\xbe\xf0\x37\x74\x6b\xc7\x1c\x1d\x86\x5a\xcf\xf0\x3f\xd5\xaf\xb6\xa4\xea\x9a\x1e\x7f\x0b\x5c\x18\x99\xa2\x87\xe2\xee\x8a\x8d\xa9\xac\x0e\xdc\xc3\x02\xc3\xf9\x6a\x36\x48\x0b\x6c\xb3\x1d\x1e\x29\x78\x7d\x71\x5f\x45\x0d\x3c\x46\x7d\xfc\x4d\xbd\x31\xf3\x56\x2a\xc9\x94\xb2\x63\x4e\x91\xa8\xd3\xea\xa7\x25\x2f\xe0\xdb\x77\xb2\xe6\xda\x55\x4e\x67\xa3\x43\x17\xe3\x8e\x00\x07\xec\x37\xee\x58\x49\x78\xe7\xc0\x9b\x28\x06\xc1\x71", 239);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv))(r[1], 0, 0x200107c0, 9, 0x20010880);
                		break;
                	case 4:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t))CAST(zx_event_create))(0xffe00, 0x200108c0);
                		if (res == ZX_OK)
                r[2] = *(uint32_t*)0x200108c0;
                		break;
                	case 5:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t))CAST(zx_channel_create))(0, 0x20010940, 0x20010980);
                		if (res == ZX_OK)
                r[3] = *(uint32_t*)0x20010980;
                		break;
                	case 6:
                		res = -1;
                res = ((intptr_t(*)())CAST(get_root_resource))();
                		if ((int)res != -1)
                				r[4] = res;
                		break;
                	case 7:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vmar_allocate))(r[1], 0x16000000, 0xd7d1, -1, 0x200109c0, 0x20010a00);
                		if (res == ZX_OK)
                r[5] = *(uint32_t*)0x200109c0;
                		break;
                	case 8:
                *(uint32_t*)0x20010900 = 0;
                memset((void*)0x20010904, 0, 3);
                *(uint8_t*)0x20010907 = 1;
                *(uint64_t*)0x20010908 = 0x5cd6900b00000000;
                *(uint64_t*)0x20010910 = 0xfff;
                *(uint64_t*)0x20010918 = 0;
                *(uint32_t*)0x20010920 = -1;
                *(uint32_t*)0x20010924 = 9;
                *(uint32_t*)0x20010a40 = r[3];
                *(uint32_t*)0x20010a44 = r[4];
                *(uint32_t*)0x20010a48 = r[5];
                *(uint32_t*)0x20010a4c = r[1];
                *(uint32_t*)0x20010a50 = r[1];
                *(uint32_t*)0x20010a54 = r[1];
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_write))(r[2], 0, 0x20010900, 0x28, 0x20010a40, 0x18);
                		break;
                	case 9:
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vcpu_write_state))(r[4], 0x80000001, 0x20010a80, 0xf5);
                		break;
                	case 10:
                memcpy((void*)0x20000000, "\xc4\x22\x01\x04\x1d\xb2\x3b\xae\x8b\x67\x2e\x26\x41\xc7\x04\xfb\x27\x27\x00\x00\xf0\x41\x0f\xc7\x8b\x95\x42\x4e\xd7\x65\xa2\x0a\x00\x00\x00\x00\x00\x00\x00\xc4\x83\xc9\x5e\x18\x05\xc4\xe2\xb1\x90\x34\x7b\xf2\x0f\x59\x33\x3e\x0f\x38\xf1\x5b\xd2\x3e\xf3\x47\x0f\x2a\x98\xc1\x59\x6e\x05\xc4\x61\xaa\x11\xc1", 76);
                syz_execute_func(0x20000000);
                		break;
                	case 11:
                syz_future_time(0);
                		break;
                	case 12:
                syz_job_default();
                		break;
                	case 13:
                syz_mmap(0x20ffd000, 0x2000);
                		break;
                	case 14:
                syz_process_self();
                		break;
                	case 15:
                syz_thread_self();
                		break;
                	case 16:
                syz_vmar_root_self();
                		break;
                	}
                
                }
                int main(void)
                {
                syz_mmap(0x20000000, 0x1000000);
                	setup_fault();
                			use_temporary_dir();
                			do_sandbox_none();
                	return 0;
                }
                
                <stdin>:8:10: fatal error: 'lib/ddk/driver.h' file not found
                #include <lib/ddk/driver.h>
                         ^~~~~~~~~~~~~~~~~~
                1 error generated.
                
                compiler invocation: /syzkaller/shared/fuchsia/prebuilt/third_party/clang/linux-x64/bin/clang [-o /tmp/syz-executor2995423631 -DGOOS_fuchsia=1 -DGOARCH_amd64=1 -DHOSTGOOS_linux=1 -x c - -Wno-deprecated -target x86_64-fuchsia -ldriver -lfdio -lzircon --sysroot /syzkaller/shared/fuchsia/out/x64/zircon_toolchain/obj/zircon/public/sysroot/sysroot -I /syzkaller/shared/fuchsia/sdk/lib/fdio/include -I /syzkaller/shared/fuchsia/zircon/system/ulib/fidl/include -I /syzkaller/shared/fuchsia/src/lib/ddk/include -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device.manager -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.nand -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.power.statecontrol -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.usb.peripheral -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/zircon/vdso/zx -L /syzkaller/shared/fuchsia/out/x64/x64-shared -O2 -pthread -Wall -Werror -Wparentheses -Wunused-const-variable -Wframe-larger-than=16384 -Wno-array-bounds -Wno-unused-command-line-argument]
        --- FAIL: TestGenerate/fuchsia/amd64/5 (0.23s)
            csource_test.go:133: opts: {Threaded:true Repeat:true RepeatTimes:0 Procs:4 Slowdown:1 Sandbox:none SandboxArg:0 Leak:false NetInjection:false NetDevices:false NetReset:false Cgroups:false BinfmtMisc:false CloseFDs:false KCSAN:false DevlinkPCI:false NicVF:false USB:false VhciInjection:false Wifi:false IEEE802154:false Sysctl:false UseTmpDir:true HandleSegv:false Repro:false Trace:false LegacyOptions:{Collide:false Fault:false FaultCall:0 FaultNth:0}}
                program:
                zx_stream_seek(0x0, 0x1, 0x8, &(0x7f0000000000)=<r0=>0x0) (fail_nth: 1)
                zx_stream_readv_at(0x0, 0x0, r0, &(0x7f0000000140)=[{&(0x7f0000000040)="1dbbb25cf45e520025f9c3a033b31b3a7969f7b384ed40aed6fba77a34ac1a64d1c95f9f7230446ed1ac8ecfdb9d39ca441ead1b96b12a6fd18da42173794436402ff5b4063215ecc612fd27da75c703b9b4f6944304041476d52c130b37f7f9c0067864ce18e33f6119b30fc4e4d2b040131db7201bc5e6af7c3467b67a129df678bfb11aba6ab56fa7fddd654e325f2a80386b8754b9f2eeed19abaa249428a367bf8bf788d2c66657a67c50394fa4e76ce217b12b0722001eee20736a11156183494fae831c2edf250858bf234c4269b07d001373dc3e0df227ec3a554651f758992975d9d1238c", 0xe9}], 0x1, &(0x7f0000000180)) (async)
                zx_channel_call$fuchsia_io_DirectoryDescribe(0x0, 0x0, 0x7fffffffffffffff, &(0x7f0000010280)={&(0x7f00000001c0), &(0x7f0000000200), &(0x7f0000000240), &(0x7f0000010240)={@tty={<r1=>0x0}}, 0x10, 0x0, 0x10000, 0x1}, &(0x7f00000102c0), &(0x7f0000010300)) (rerun: 4)
                zx_stream_readv(r1, 0x0, &(0x7f00000107c0)=[{&(0x7f0000010340)="13ccbcace9bec9588ef417b72f309eabab8261a79e651e4c24", 0x19}, {&(0x7f0000010380)="34740cb62b97", 0x6}, {&(0x7f00000103c0)="168ac07f7e3b669b1ca5880a2e28dc095b3fe131ad1eb10728758dbd2f595d928ca66208e7d7b692ef2c841eefd28125bbf4d62d30c96806e729cb70e833f10cab51e6e5216509944bfdf0375ba3ffd45ed44d6f702b4d571af99d1130181cffcbb1db5bbbf0e31577d115f71ff167ae0eb9f13f64f67757293146986813812748b96a1c118f4048f4aa6e52245d87f5779e47b5b59a536b6e5fcaf43f586869a57952b92ba1eb14c14f31e7c8587ce277592a4bc12f6d1ea82acdc9b973dbe1460196899a00297e4e7132e3b00828", 0xcf}, {&(0x7f00000104c0)="db71d76cc7ccc94acb73768cdf08cadc1361e1", 0x13}, {&(0x7f0000010500)="eeb2850724606ae7ce7a5652b5b8a8f3a5c06132979557f4854614e666041c1a9414826002449785039a57863aad0d64f99b27b81bdf9150f2792c6230ccdafef21193496f8b4ebbe48dcc5ccb880a69ad2aa6ed15a3576e656acbd1d5abfe14214bfb95cf87a6215019229374f041a6ce16420fe4763ab1fecea5db14919ec69c503acc07e51e4e15b777ed58e3cb58dd7a8ac9eeb4356cb3232fc66c7701ae4e23f14d11cce19a0b881b84d02053251ba5ea826fdb7da2ba5d4ec4ea1c51ce7e0c5642b3", 0xc5}, {&(0x7f0000010600)="d35ae8f9b709073a472079b12033dfd09c6a4718646cd992b2d1cd3589446b63b30c67", 0x23}, {&(0x7f0000010640)="5063cdf3589ec6c7b9540e7514f95ff7df32dedfab4e", 0x16}, {&(0x7f0000010680)="6225f8bb38693aa65411301b35842574ddc40d87497aa2f3fe39f7b8baccc10a30c6a9d2ad6516d88365662655aebdb47320763ac28ef733b202bd", 0x3b}, {&(0x7f00000106c0)="f6cf9eeec4e1068663cd86fc0c255f051c750c853d1cc07483b73b0759d5284ebd41bc8db28eb7b5dbdf7221d87793262d57bcab1199a0ceda8b5e4c57217038c17f96f0dfff52fac698c73c2a0d69266477abf578c05fc50e75ba8461997a9c6fd9f06189516090d47ee8d81a93da8002d88cecf26d3cead9b59f230bdc46266fb0dc7608cdbef037746bc71c1d865acff03fd5afb6a4ea9a1e7f0b5c1899a287e2ee8a8da9ac0edcc302c3f96a36480b6cb31d1e29787d715f450d3c467dfc4dbd31f3562ac994b2634e91a8d3eaa7252fe0db77b2e6da554e67a34317e38e0007ec37ee584978e7c09b2806c171", 0xef}], 0x9, &(0x7f0000010880))
                zx_event_create(0xffe00, &(0x7f00000108c0)=<r2=>0x0)
                zx_channel_create$fuchsia_cobalt_SystemDataUpdater(0x0, &(0x7f0000010940), &(0x7f0000010980)=<r3=>0x0)
                r4 = get_root_resource()
                zx_vmar_allocate(r1, 0x16000000, 0xd7d1, 0xffffffffffffffff, &(0x7f00000109c0)=<r5=>0x0, &(0x7f0000010a00))
                zx_channel_write$fuchsia_process_LauncherAddHandles(r2, 0x0, &(0x7f0000010900)={{}, {0xfff}, {[{0xffffffff, 0x9}], [{}, {}]}}, 0x28, &(0x7f0000010a40)={[{r3}, {r4}, {r5}, {r1}, {r1}, {r1}]}, 0x18)
                zx_vcpu_write_state(r4, 0x80000001, &(0x7f0000010a80)=""/245, 0xf5)
                syz_execute_func(&(0x7f0000000000)="c42201041db23bae8b672e2641c704fb27270000f0410fc78b95424ed765a20a00000000000000c483c95e1805c4e2b190347bf20f59333e0f38f15bd23ef3470f2a98c1596e05c461aa11c1")
                syz_future_time(0x0)
                syz_job_default()
                syz_mmap(&(0x7f0000ffd000/0x2000)=nil, 0x2000)
                syz_process_self()
                syz_thread_self()
                syz_vmar_root_self()
                
            csource_test.go:134: failed to build program:
                // autogenerated by syzkaller (https://github.com/google/syzkaller)
                
                #define _GNU_SOURCE 
                
                #include <endian.h>
                #include <errno.h>
                #include <fcntl.h>
                #include <lib/ddk/driver.h>
                #include <lib/fdio/directory.h>
                #include <poll.h>
                #include <pthread.h>
                #include <signal.h>
                #include <stdint.h>
                #include <stdio.h>
                #include <stdlib.h>
                #include <string.h>
                #include <sys/file.h>
                #include <sys/ioctl.h>
                #include <sys/socket.h>
                #include <sys/stat.h>
                #include <sys/time.h>
                #include <sys/types.h>
                #include <sys/uio.h>
                #include <time.h>
                #include <unistd.h>
                #include <utime.h>
                #include <zircon/process.h>
                #include <zircon/status.h>
                #include <zircon/syscalls.h>
                
                static unsigned long long procid;
                
                static void sleep_ms(uint64_t ms)
                {
                	usleep(ms * 1000);
                }
                
                static uint64_t current_time_ms(void)
                {
                	struct timespec ts;
                	if (clock_gettime(CLOCK_MONOTONIC, &ts))
                	exit(1);
                	return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000;
                }
                
                static void use_temporary_dir(void)
                {
                	char tmpdir_template[] = "/tmp/syzkaller.XXXXXX";
                	char* tmpdir = mkdtemp(tmpdir_template);
                	if (!tmpdir)
                	exit(1);
                	if (chmod(tmpdir, 0777))
                	exit(1);
                	if (chdir(tmpdir))
                	exit(1);
                }
                
                static int inject_fault(int nth)
                {
                	return 0;
                }
                
                static void setup_fault()
                {
                }
                
                static void thread_start(void* (*fn)(void*), void* arg)
                {
                	pthread_t th;
                	pthread_attr_t attr;
                	pthread_attr_init(&attr);
                	pthread_attr_setstacksize(&attr, 128 << 10);
                	int i = 0;
                	for (; i < 100; i++) {
                		if (pthread_create(&th, &attr, fn, arg) == 0) {
                			pthread_attr_destroy(&attr);
                			return;
                		}
                		if (errno == EAGAIN) {
                			usleep(50);
                			continue;
                		}
                		break;
                	}
                	exit(1);
                }
                
                typedef struct {
                	int state;
                } event_t;
                
                static void event_init(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_reset(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_set(event_t* ev)
                {
                	if (ev->state)
                	exit(1);
                	__atomic_store_n(&ev->state, 1, __ATOMIC_RELEASE);
                }
                
                static void event_wait(event_t* ev)
                {
                	while (!__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE))
                		usleep(200);
                }
                
                static int event_isset(event_t* ev)
                {
                	return __atomic_load_n(&ev->state, __ATOMIC_ACQUIRE);
                }
                
                static int event_timedwait(event_t* ev, uint64_t timeout_ms)
                {
                	uint64_t start = current_time_ms();
                	for (;;) {
                		if (__atomic_load_n(&ev->state, __ATOMIC_RELAXED))
                			return 1;
                		if (current_time_ms() - start > timeout_ms)
                			return 0;
                		usleep(200);
                	}
                }
                
                long syz_mmap(size_t addr, size_t size)
                {
                	zx_handle_t root = zx_vmar_root_self();
                	zx_info_vmar_t info;
                	zx_status_t status = zx_object_get_info(root, ZX_INFO_VMAR, &info, sizeof(info), 0, 0);
                	if (status != ZX_OK) {
                		return status;
                	}
                	zx_handle_t vmo;
                	status = zx_vmo_create(size, 0, &vmo);
                	if (status != ZX_OK) {
                		return status;
                	}
                	uintptr_t mapped_addr;
                	status = zx_vmar_map(root, ZX_VM_FLAG_SPECIFIC_OVERWRITE | ZX_VM_FLAG_PERM_READ | ZX_VM_FLAG_PERM_WRITE,
                			     addr - info.base, vmo, 0, size,
                			     &mapped_addr);
                	zx_status_t close_vmo_status = zx_handle_close(vmo);
                	if (close_vmo_status != ZX_OK) {
                	}
                	return status;
                }
                
                static long syz_process_self(void)
                {
                	return zx_process_self();
                }
                
                static long syz_thread_self(void)
                {
                	return zx_thread_self();
                }
                
                static long syz_vmar_root_self(void)
                {
                	return zx_vmar_root_self();
                }
                
                static long syz_job_default(void)
                {
                	return zx_job_default();
                }
                
                static long syz_future_time(volatile long when)
                {
                	zx_time_t delta_ms = 10000;
                	switch (when) {
                	case 0:
                		delta_ms = 5;
                		break;
                	case 1:
                		delta_ms = 30;
                		break;
                	}
                	zx_time_t now = 0;
                	zx_clock_read(ZX_CLOCK_MONOTONIC, &now);
                	return now + delta_ms * 1000 * 1000;
                }
                
                static void loop();
                static int do_sandbox_none(void)
                {
                	loop();
                	return 0;
                }
                #define CAST(f) ({void* p = (void*)f; p; })
                
                static long syz_execute_func(volatile long text)
                {
                	((void (*)(void))(text))();
                	return 0;
                }
                
                struct thread_t {
                	int created, call;
                	event_t ready, done;
                };
                
                static struct thread_t threads[16];
                static void execute_call(int call);
                static int running;
                
                static void* thr(void* arg)
                {
                	struct thread_t* th = (struct thread_t*)arg;
                	for (;;) {
                		event_wait(&th->ready);
                		event_reset(&th->ready);
                		execute_call(th->call);
                		__atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED);
                		event_set(&th->done);
                	}
                	return 0;
                }
                
                static void execute_one(void)
                {
                	int i, call, thread;
                	for (call = 0; call < 17; call++) {
                		for (thread = 0; thread < (int)(sizeof(threads) / sizeof(threads[0])); thread++) {
                			struct thread_t* th = &threads[thread];
                			if (!th->created) {
                				th->created = 1;
                				event_init(&th->ready);
                				event_init(&th->done);
                				event_set(&th->done);
                				thread_start(thr, th);
                			}
                			if (!event_isset(&th->done))
                				continue;
                			event_reset(&th->done);
                			th->call = call;
                			__atomic_fetch_add(&running, 1, __ATOMIC_RELAXED);
                			event_set(&th->ready);
                			if (call == 1)
                				break;
                			event_timedwait(&th->done, 50);
                			break;
                		}
                	}
                	for (i = 0; i < 100 && __atomic_load_n(&running, __ATOMIC_RELAXED); i++)
                		sleep_ms(1);
                }
                
                static void execute_one(void);
                static void loop(void)
                {
                	execute_one();
                }
                
                uint64_t r[6] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
                
                void execute_call(int call)
                {
                		intptr_t res = 0;
                	switch (call) {
                	case 0:
                		inject_fault(1);
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_seek))(0, 1, 8, 0x20000000);
                		if (res == ZX_OK)
                r[0] = *(uint64_t*)0x20000000;
                		break;
                	case 1:
                *(uint64_t*)0x20000140 = 0x20000040;
                memcpy((void*)0x20000040, "\x1d\xbb\xb2\x5c\xf4\x5e\x52\x00\x25\xf9\xc3\xa0\x33\xb3\x1b\x3a\x79\x69\xf7\xb3\x84\xed\x40\xae\xd6\xfb\xa7\x7a\x34\xac\x1a\x64\xd1\xc9\x5f\x9f\x72\x30\x44\x6e\xd1\xac\x8e\xcf\xdb\x9d\x39\xca\x44\x1e\xad\x1b\x96\xb1\x2a\x6f\xd1\x8d\xa4\x21\x73\x79\x44\x36\x40\x2f\xf5\xb4\x06\x32\x15\xec\xc6\x12\xfd\x27\xda\x75\xc7\x03\xb9\xb4\xf6\x94\x43\x04\x04\x14\x76\xd5\x2c\x13\x0b\x37\xf7\xf9\xc0\x06\x78\x64\xce\x18\xe3\x3f\x61\x19\xb3\x0f\xc4\xe4\xd2\xb0\x40\x13\x1d\xb7\x20\x1b\xc5\xe6\xaf\x7c\x34\x67\xb6\x7a\x12\x9d\xf6\x78\xbf\xb1\x1a\xba\x6a\xb5\x6f\xa7\xfd\xdd\x65\x4e\x32\x5f\x2a\x80\x38\x6b\x87\x54\xb9\xf2\xee\xed\x19\xab\xaa\x24\x94\x28\xa3\x67\xbf\x8b\xf7\x88\xd2\xc6\x66\x57\xa6\x7c\x50\x39\x4f\xa4\xe7\x6c\xe2\x17\xb1\x2b\x07\x22\x00\x1e\xee\x20\x73\x6a\x11\x15\x61\x83\x49\x4f\xae\x83\x1c\x2e\xdf\x25\x08\x58\xbf\x23\x4c\x42\x69\xb0\x7d\x00\x13\x73\xdc\x3e\x0d\xf2\x27\xec\x3a\x55\x46\x51\xf7\x58\x99\x29\x75\xd9\xd1\x23\x8c", 233);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv_at))(0, 0, r[0], 0x20000140, 1, 0x20000180);
                		break;
                	case 2:
                *(uint64_t*)0x20010280 = 0x200001c0;
                *(uint32_t*)0x200001c0 = 0;
                memset((void*)0x200001c4, 0, 3);
                *(uint8_t*)0x200001c7 = 1;
                *(uint64_t*)0x200001c8 = 0x1f62df5e00000000;
                *(uint64_t*)0x20010288 = 0x20000200;
                *(uint64_t*)0x20010290 = 0x20000240;
                *(uint64_t*)0x20010298 = 0x20010240;
                *(uint32_t*)0x200102a0 = 0x10;
                *(uint32_t*)0x200102a4 = 0;
                *(uint32_t*)0x200102a8 = 0x10000;
                *(uint32_t*)0x200102ac = 1;
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                		{
                		int i;
                		for(i = 0; i < 4; i++) {
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                				}
                		}
                		if (res == ZX_OK)
                r[1] = *(uint32_t*)0x20010240;
                		break;
                	case 3:
                *(uint64_t*)0x200107c0 = 0x20010340;
                memcpy((void*)0x20010340, "\x13\xcc\xbc\xac\xe9\xbe\xc9\x58\x8e\xf4\x17\xb7\x2f\x30\x9e\xab\xab\x82\x61\xa7\x9e\x65\x1e\x4c\x24", 25);
                *(uint64_t*)0x200107d0 = 0x20010380;
                memcpy((void*)0x20010380, "\x34\x74\x0c\xb6\x2b\x97", 6);
                *(uint64_t*)0x200107e0 = 0x200103c0;
                memcpy((void*)0x200103c0, "\x16\x8a\xc0\x7f\x7e\x3b\x66\x9b\x1c\xa5\x88\x0a\x2e\x28\xdc\x09\x5b\x3f\xe1\x31\xad\x1e\xb1\x07\x28\x75\x8d\xbd\x2f\x59\x5d\x92\x8c\xa6\x62\x08\xe7\xd7\xb6\x92\xef\x2c\x84\x1e\xef\xd2\x81\x25\xbb\xf4\xd6\x2d\x30\xc9\x68\x06\xe7\x29\xcb\x70\xe8\x33\xf1\x0c\xab\x51\xe6\xe5\x21\x65\x09\x94\x4b\xfd\xf0\x37\x5b\xa3\xff\xd4\x5e\xd4\x4d\x6f\x70\x2b\x4d\x57\x1a\xf9\x9d\x11\x30\x18\x1c\xff\xcb\xb1\xdb\x5b\xbb\xf0\xe3\x15\x77\xd1\x15\xf7\x1f\xf1\x67\xae\x0e\xb9\xf1\x3f\x64\xf6\x77\x57\x29\x31\x46\x98\x68\x13\x81\x27\x48\xb9\x6a\x1c\x11\x8f\x40\x48\xf4\xaa\x6e\x52\x24\x5d\x87\xf5\x77\x9e\x47\xb5\xb5\x9a\x53\x6b\x6e\x5f\xca\xf4\x3f\x58\x68\x69\xa5\x79\x52\xb9\x2b\xa1\xeb\x14\xc1\x4f\x31\xe7\xc8\x58\x7c\xe2\x77\x59\x2a\x4b\xc1\x2f\x6d\x1e\xa8\x2a\xcd\xc9\xb9\x73\xdb\xe1\x46\x01\x96\x89\x9a\x00\x29\x7e\x4e\x71\x32\xe3\xb0\x08\x28", 207);
                *(uint64_t*)0x200107f0 = 0x200104c0;
                memcpy((void*)0x200104c0, "\xdb\x71\xd7\x6c\xc7\xcc\xc9\x4a\xcb\x73\x76\x8c\xdf\x08\xca\xdc\x13\x61\xe1", 19);
                *(uint64_t*)0x20010800 = 0x20010500;
                memcpy((void*)0x20010500, "\xee\xb2\x85\x07\x24\x60\x6a\xe7\xce\x7a\x56\x52\xb5\xb8\xa8\xf3\xa5\xc0\x61\x32\x97\x95\x57\xf4\x85\x46\x14\xe6\x66\x04\x1c\x1a\x94\x14\x82\x60\x02\x44\x97\x85\x03\x9a\x57\x86\x3a\xad\x0d\x64\xf9\x9b\x27\xb8\x1b\xdf\x91\x50\xf2\x79\x2c\x62\x30\xcc\xda\xfe\xf2\x11\x93\x49\x6f\x8b\x4e\xbb\xe4\x8d\xcc\x5c\xcb\x88\x0a\x69\xad\x2a\xa6\xed\x15\xa3\x57\x6e\x65\x6a\xcb\xd1\xd5\xab\xfe\x14\x21\x4b\xfb\x95\xcf\x87\xa6\x21\x50\x19\x22\x93\x74\xf0\x41\xa6\xce\x16\x42\x0f\xe4\x76\x3a\xb1\xfe\xce\xa5\xdb\x14\x91\x9e\xc6\x9c\x50\x3a\xcc\x07\xe5\x1e\x4e\x15\xb7\x77\xed\x58\xe3\xcb\x58\xdd\x7a\x8a\xc9\xee\xb4\x35\x6c\xb3\x23\x2f\xc6\x6c\x77\x01\xae\x4e\x23\xf1\x4d\x11\xcc\xe1\x9a\x0b\x88\x1b\x84\xd0\x20\x53\x25\x1b\xa5\xea\x82\x6f\xdb\x7d\xa2\xba\x5d\x4e\xc4\xea\x1c\x51\xce\x7e\x0c\x56\x42\xb3", 197);
                *(uint64_t*)0x20010810 = 0x20010600;
                memcpy((void*)0x20010600, "\xd3\x5a\xe8\xf9\xb7\x09\x07\x3a\x47\x20\x79\xb1\x20\x33\xdf\xd0\x9c\x6a\x47\x18\x64\x6c\xd9\x92\xb2\xd1\xcd\x35\x89\x44\x6b\x63\xb3\x0c\x67", 35);
                *(uint64_t*)0x20010820 = 0x20010640;
                memcpy((void*)0x20010640, "\x50\x63\xcd\xf3\x58\x9e\xc6\xc7\xb9\x54\x0e\x75\x14\xf9\x5f\xf7\xdf\x32\xde\xdf\xab\x4e", 22);
                *(uint64_t*)0x20010830 = 0x20010680;
                memcpy((void*)0x20010680, "\x62\x25\xf8\xbb\x38\x69\x3a\xa6\x54\x11\x30\x1b\x35\x84\x25\x74\xdd\xc4\x0d\x87\x49\x7a\xa2\xf3\xfe\x39\xf7\xb8\xba\xcc\xc1\x0a\x30\xc6\xa9\xd2\xad\x65\x16\xd8\x83\x65\x66\x26\x55\xae\xbd\xb4\x73\x20\x76\x3a\xc2\x8e\xf7\x33\xb2\x02\xbd", 59);
                *(uint64_t*)0x20010840 = 0x200106c0;
                memcpy((void*)0x200106c0, "\xf6\xcf\x9e\xee\xc4\xe1\x06\x86\x63\xcd\x86\xfc\x0c\x25\x5f\x05\x1c\x75\x0c\x85\x3d\x1c\xc0\x74\x83\xb7\x3b\x07\x59\xd5\x28\x4e\xbd\x41\xbc\x8d\xb2\x8e\xb7\xb5\xdb\xdf\x72\x21\xd8\x77\x93\x26\x2d\x57\xbc\xab\x11\x99\xa0\xce\xda\x8b\x5e\x4c\x57\x21\x70\x38\xc1\x7f\x96\xf0\xdf\xff\x52\xfa\xc6\x98\xc7\x3c\x2a\x0d\x69\x26\x64\x77\xab\xf5\x78\xc0\x5f\xc5\x0e\x75\xba\x84\x61\x99\x7a\x9c\x6f\xd9\xf0\x61\x89\x51\x60\x90\xd4\x7e\xe8\xd8\x1a\x93\xda\x80\x02\xd8\x8c\xec\xf2\x6d\x3c\xea\xd9\xb5\x9f\x23\x0b\xdc\x46\x26\x6f\xb0\xdc\x76\x08\xcd\xbe\xf0\x37\x74\x6b\xc7\x1c\x1d\x86\x5a\xcf\xf0\x3f\xd5\xaf\xb6\xa4\xea\x9a\x1e\x7f\x0b\x5c\x18\x99\xa2\x87\xe2\xee\x8a\x8d\xa9\xac\x0e\xdc\xc3\x02\xc3\xf9\x6a\x36\x48\x0b\x6c\xb3\x1d\x1e\x29\x78\x7d\x71\x5f\x45\x0d\x3c\x46\x7d\xfc\x4d\xbd\x31\xf3\x56\x2a\xc9\x94\xb2\x63\x4e\x91\xa8\xd3\xea\xa7\x25\x2f\xe0\xdb\x77\xb2\xe6\xda\x55\x4e\x67\xa3\x43\x17\xe3\x8e\x00\x07\xec\x37\xee\x58\x49\x78\xe7\xc0\x9b\x28\x06\xc1\x71", 239);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv))(r[1], 0, 0x200107c0, 9, 0x20010880);
                		break;
                	case 4:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t))CAST(zx_event_create))(0xffe00, 0x200108c0);
                		if (res == ZX_OK)
                r[2] = *(uint32_t*)0x200108c0;
                		break;
                	case 5:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t))CAST(zx_channel_create))(0, 0x20010940, 0x20010980);
                		if (res == ZX_OK)
                r[3] = *(uint32_t*)0x20010980;
                		break;
                	case 6:
                		res = -1;
                res = ((intptr_t(*)())CAST(get_root_resource))();
                		if ((int)res != -1)
                				r[4] = res;
                		break;
                	case 7:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vmar_allocate))(r[1], 0x16000000, 0xd7d1, -1, 0x200109c0, 0x20010a00);
                		if (res == ZX_OK)
                r[5] = *(uint32_t*)0x200109c0;
                		break;
                	case 8:
                *(uint32_t*)0x20010900 = 0;
                memset((void*)0x20010904, 0, 3);
                *(uint8_t*)0x20010907 = 1;
                *(uint64_t*)0x20010908 = 0x5cd6900b00000000;
                *(uint64_t*)0x20010910 = 0xfff;
                *(uint64_t*)0x20010918 = 0;
                *(uint32_t*)0x20010920 = -1;
                *(uint32_t*)0x20010924 = 9;
                *(uint32_t*)0x20010a40 = r[3];
                *(uint32_t*)0x20010a44 = r[4];
                *(uint32_t*)0x20010a48 = r[5];
                *(uint32_t*)0x20010a4c = r[1];
                *(uint32_t*)0x20010a50 = r[1];
                *(uint32_t*)0x20010a54 = r[1];
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_write))(r[2], 0, 0x20010900, 0x28, 0x20010a40, 0x18);
                		break;
                	case 9:
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vcpu_write_state))(r[4], 0x80000001, 0x20010a80, 0xf5);
                		break;
                	case 10:
                memcpy((void*)0x20000000, "\xc4\x22\x01\x04\x1d\xb2\x3b\xae\x8b\x67\x2e\x26\x41\xc7\x04\xfb\x27\x27\x00\x00\xf0\x41\x0f\xc7\x8b\x95\x42\x4e\xd7\x65\xa2\x0a\x00\x00\x00\x00\x00\x00\x00\xc4\x83\xc9\x5e\x18\x05\xc4\xe2\xb1\x90\x34\x7b\xf2\x0f\x59\x33\x3e\x0f\x38\xf1\x5b\xd2\x3e\xf3\x47\x0f\x2a\x98\xc1\x59\x6e\x05\xc4\x61\xaa\x11\xc1", 76);
                syz_execute_func(0x20000000);
                		break;
                	case 11:
                syz_future_time(0);
                		break;
                	case 12:
                syz_job_default();
                		break;
                	case 13:
                syz_mmap(0x20ffd000, 0x2000);
                		break;
                	case 14:
                syz_process_self();
                		break;
                	case 15:
                syz_thread_self();
                		break;
                	case 16:
                syz_vmar_root_self();
                		break;
                	}
                
                }
                int main(void)
                {
                syz_mmap(0x20000000, 0x1000000);
                	setup_fault();
                	for (procid = 0; procid < 4; procid++) {
                		if (fork() == 0) {
                			use_temporary_dir();
                			do_sandbox_none();
                		}
                	}
                	sleep(1000000);
                	return 0;
                }
                
                <stdin>:8:10: fatal error: 'lib/ddk/driver.h' file not found
                #include <lib/ddk/driver.h>
                         ^~~~~~~~~~~~~~~~~~
                1 error generated.
                
                compiler invocation: /syzkaller/shared/fuchsia/prebuilt/third_party/clang/linux-x64/bin/clang [-o /tmp/syz-executor2208787288 -DGOOS_fuchsia=1 -DGOARCH_amd64=1 -DHOSTGOOS_linux=1 -x c - -Wno-deprecated -target x86_64-fuchsia -ldriver -lfdio -lzircon --sysroot /syzkaller/shared/fuchsia/out/x64/zircon_toolchain/obj/zircon/public/sysroot/sysroot -I /syzkaller/shared/fuchsia/sdk/lib/fdio/include -I /syzkaller/shared/fuchsia/zircon/system/ulib/fidl/include -I /syzkaller/shared/fuchsia/src/lib/ddk/include -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device.manager -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.nand -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.power.statecontrol -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.usb.peripheral -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/zircon/vdso/zx -L /syzkaller/shared/fuchsia/out/x64/x64-shared -O2 -pthread -Wall -Werror -Wparentheses -Wunused-const-variable -Wframe-larger-than=16384 -Wno-array-bounds -Wno-unused-command-line-argument]
        --- FAIL: TestGenerate/fuchsia/amd64/3 (0.23s)
            csource_test.go:133: opts: {Threaded:true Repeat:true RepeatTimes:10 Procs:0 Slowdown:1 Sandbox:none SandboxArg:0 Leak:false NetInjection:false NetDevices:false NetReset:false Cgroups:false BinfmtMisc:false CloseFDs:false KCSAN:false DevlinkPCI:false NicVF:false USB:false VhciInjection:false Wifi:false IEEE802154:false Sysctl:false UseTmpDir:true HandleSegv:false Repro:false Trace:false LegacyOptions:{Collide:false Fault:false FaultCall:0 FaultNth:0}}
                program:
                zx_stream_seek(0x0, 0x1, 0x8, &(0x7f0000000000)=<r0=>0x0) (fail_nth: 1)
                zx_stream_readv_at(0x0, 0x0, r0, &(0x7f0000000140)=[{&(0x7f0000000040)="1dbbb25cf45e520025f9c3a033b31b3a7969f7b384ed40aed6fba77a34ac1a64d1c95f9f7230446ed1ac8ecfdb9d39ca441ead1b96b12a6fd18da42173794436402ff5b4063215ecc612fd27da75c703b9b4f6944304041476d52c130b37f7f9c0067864ce18e33f6119b30fc4e4d2b040131db7201bc5e6af7c3467b67a129df678bfb11aba6ab56fa7fddd654e325f2a80386b8754b9f2eeed19abaa249428a367bf8bf788d2c66657a67c50394fa4e76ce217b12b0722001eee20736a11156183494fae831c2edf250858bf234c4269b07d001373dc3e0df227ec3a554651f758992975d9d1238c", 0xe9}], 0x1, &(0x7f0000000180)) (async)
                zx_channel_call$fuchsia_io_DirectoryDescribe(0x0, 0x0, 0x7fffffffffffffff, &(0x7f0000010280)={&(0x7f00000001c0), &(0x7f0000000200), &(0x7f0000000240), &(0x7f0000010240)={@tty={<r1=>0x0}}, 0x10, 0x0, 0x10000, 0x1}, &(0x7f00000102c0), &(0x7f0000010300)) (rerun: 4)
                zx_stream_readv(r1, 0x0, &(0x7f00000107c0)=[{&(0x7f0000010340)="13ccbcace9bec9588ef417b72f309eabab8261a79e651e4c24", 0x19}, {&(0x7f0000010380)="34740cb62b97", 0x6}, {&(0x7f00000103c0)="168ac07f7e3b669b1ca5880a2e28dc095b3fe131ad1eb10728758dbd2f595d928ca66208e7d7b692ef2c841eefd28125bbf4d62d30c96806e729cb70e833f10cab51e6e5216509944bfdf0375ba3ffd45ed44d6f702b4d571af99d1130181cffcbb1db5bbbf0e31577d115f71ff167ae0eb9f13f64f67757293146986813812748b96a1c118f4048f4aa6e52245d87f5779e47b5b59a536b6e5fcaf43f586869a57952b92ba1eb14c14f31e7c8587ce277592a4bc12f6d1ea82acdc9b973dbe1460196899a00297e4e7132e3b00828", 0xcf}, {&(0x7f00000104c0)="db71d76cc7ccc94acb73768cdf08cadc1361e1", 0x13}, {&(0x7f0000010500)="eeb2850724606ae7ce7a5652b5b8a8f3a5c06132979557f4854614e666041c1a9414826002449785039a57863aad0d64f99b27b81bdf9150f2792c6230ccdafef21193496f8b4ebbe48dcc5ccb880a69ad2aa6ed15a3576e656acbd1d5abfe14214bfb95cf87a6215019229374f041a6ce16420fe4763ab1fecea5db14919ec69c503acc07e51e4e15b777ed58e3cb58dd7a8ac9eeb4356cb3232fc66c7701ae4e23f14d11cce19a0b881b84d02053251ba5ea826fdb7da2ba5d4ec4ea1c51ce7e0c5642b3", 0xc5}, {&(0x7f0000010600)="d35ae8f9b709073a472079b12033dfd09c6a4718646cd992b2d1cd3589446b63b30c67", 0x23}, {&(0x7f0000010640)="5063cdf3589ec6c7b9540e7514f95ff7df32dedfab4e", 0x16}, {&(0x7f0000010680)="6225f8bb38693aa65411301b35842574ddc40d87497aa2f3fe39f7b8baccc10a30c6a9d2ad6516d88365662655aebdb47320763ac28ef733b202bd", 0x3b}, {&(0x7f00000106c0)="f6cf9eeec4e1068663cd86fc0c255f051c750c853d1cc07483b73b0759d5284ebd41bc8db28eb7b5dbdf7221d87793262d57bcab1199a0ceda8b5e4c57217038c17f96f0dfff52fac698c73c2a0d69266477abf578c05fc50e75ba8461997a9c6fd9f06189516090d47ee8d81a93da8002d88cecf26d3cead9b59f230bdc46266fb0dc7608cdbef037746bc71c1d865acff03fd5afb6a4ea9a1e7f0b5c1899a287e2ee8a8da9ac0edcc302c3f96a36480b6cb31d1e29787d715f450d3c467dfc4dbd31f3562ac994b2634e91a8d3eaa7252fe0db77b2e6da554e67a34317e38e0007ec37ee584978e7c09b2806c171", 0xef}], 0x9, &(0x7f0000010880))
                zx_event_create(0xffe00, &(0x7f00000108c0)=<r2=>0x0)
                zx_channel_create$fuchsia_cobalt_SystemDataUpdater(0x0, &(0x7f0000010940), &(0x7f0000010980)=<r3=>0x0)
                r4 = get_root_resource()
                zx_vmar_allocate(r1, 0x16000000, 0xd7d1, 0xffffffffffffffff, &(0x7f00000109c0)=<r5=>0x0, &(0x7f0000010a00))
                zx_channel_write$fuchsia_process_LauncherAddHandles(r2, 0x0, &(0x7f0000010900)={{}, {0xfff}, {[{0xffffffff, 0x9}], [{}, {}]}}, 0x28, &(0x7f0000010a40)={[{r3}, {r4}, {r5}, {r1}, {r1}, {r1}]}, 0x18)
                zx_vcpu_write_state(r4, 0x80000001, &(0x7f0000010a80)=""/245, 0xf5)
                syz_execute_func(&(0x7f0000000000)="c42201041db23bae8b672e2641c704fb27270000f0410fc78b95424ed765a20a00000000000000c483c95e1805c4e2b190347bf20f59333e0f38f15bd23ef3470f2a98c1596e05c461aa11c1")
                syz_future_time(0x0)
                syz_job_default()
                syz_mmap(&(0x7f0000ffd000/0x2000)=nil, 0x2000)
                syz_process_self()
                syz_thread_self()
                syz_vmar_root_self()
                
            csource_test.go:134: failed to build program:
                // autogenerated by syzkaller (https://github.com/google/syzkaller)
                
                #define _GNU_SOURCE 
                
                #include <endian.h>
                #include <errno.h>
                #include <fcntl.h>
                #include <lib/ddk/driver.h>
                #include <lib/fdio/directory.h>
                #include <poll.h>
                #include <pthread.h>
                #include <signal.h>
                #include <stdint.h>
                #include <stdio.h>
                #include <stdlib.h>
                #include <string.h>
                #include <sys/file.h>
                #include <sys/ioctl.h>
                #include <sys/socket.h>
                #include <sys/stat.h>
                #include <sys/time.h>
                #include <sys/types.h>
                #include <sys/uio.h>
                #include <time.h>
                #include <unistd.h>
                #include <utime.h>
                #include <zircon/process.h>
                #include <zircon/status.h>
                #include <zircon/syscalls.h>
                
                static void sleep_ms(uint64_t ms)
                {
                	usleep(ms * 1000);
                }
                
                static uint64_t current_time_ms(void)
                {
                	struct timespec ts;
                	if (clock_gettime(CLOCK_MONOTONIC, &ts))
                	exit(1);
                	return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000;
                }
                
                static void use_temporary_dir(void)
                {
                	char tmpdir_template[] = "/tmp/syzkaller.XXXXXX";
                	char* tmpdir = mkdtemp(tmpdir_template);
                	if (!tmpdir)
                	exit(1);
                	if (chmod(tmpdir, 0777))
                	exit(1);
                	if (chdir(tmpdir))
                	exit(1);
                }
                
                static int inject_fault(int nth)
                {
                	return 0;
                }
                
                static void setup_fault()
                {
                }
                
                static void thread_start(void* (*fn)(void*), void* arg)
                {
                	pthread_t th;
                	pthread_attr_t attr;
                	pthread_attr_init(&attr);
                	pthread_attr_setstacksize(&attr, 128 << 10);
                	int i = 0;
                	for (; i < 100; i++) {
                		if (pthread_create(&th, &attr, fn, arg) == 0) {
                			pthread_attr_destroy(&attr);
                			return;
                		}
                		if (errno == EAGAIN) {
                			usleep(50);
                			continue;
                		}
                		break;
                	}
                	exit(1);
                }
                
                typedef struct {
                	int state;
                } event_t;
                
                static void event_init(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_reset(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_set(event_t* ev)
                {
                	if (ev->state)
                	exit(1);
                	__atomic_store_n(&ev->state, 1, __ATOMIC_RELEASE);
                }
                
                static void event_wait(event_t* ev)
                {
                	while (!__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE))
                		usleep(200);
                }
                
                static int event_isset(event_t* ev)
                {
                	return __atomic_load_n(&ev->state, __ATOMIC_ACQUIRE);
                }
                
                static int event_timedwait(event_t* ev, uint64_t timeout_ms)
                {
                	uint64_t start = current_time_ms();
                	for (;;) {
                		if (__atomic_load_n(&ev->state, __ATOMIC_RELAXED))
                			return 1;
                		if (current_time_ms() - start > timeout_ms)
                			return 0;
                		usleep(200);
                	}
                }
                
                long syz_mmap(size_t addr, size_t size)
                {
                	zx_handle_t root = zx_vmar_root_self();
                	zx_info_vmar_t info;
                	zx_status_t status = zx_object_get_info(root, ZX_INFO_VMAR, &info, sizeof(info), 0, 0);
                	if (status != ZX_OK) {
                		return status;
                	}
                	zx_handle_t vmo;
                	status = zx_vmo_create(size, 0, &vmo);
                	if (status != ZX_OK) {
                		return status;
                	}
                	uintptr_t mapped_addr;
                	status = zx_vmar_map(root, ZX_VM_FLAG_SPECIFIC_OVERWRITE | ZX_VM_FLAG_PERM_READ | ZX_VM_FLAG_PERM_WRITE,
                			     addr - info.base, vmo, 0, size,
                			     &mapped_addr);
                	zx_status_t close_vmo_status = zx_handle_close(vmo);
                	if (close_vmo_status != ZX_OK) {
                	}
                	return status;
                }
                
                static long syz_process_self(void)
                {
                	return zx_process_self();
                }
                
                static long syz_thread_self(void)
                {
                	return zx_thread_self();
                }
                
                static long syz_vmar_root_self(void)
                {
                	return zx_vmar_root_self();
                }
                
                static long syz_job_default(void)
                {
                	return zx_job_default();
                }
                
                static long syz_future_time(volatile long when)
                {
                	zx_time_t delta_ms = 10000;
                	switch (when) {
                	case 0:
                		delta_ms = 5;
                		break;
                	case 1:
                		delta_ms = 30;
                		break;
                	}
                	zx_time_t now = 0;
                	zx_clock_read(ZX_CLOCK_MONOTONIC, &now);
                	return now + delta_ms * 1000 * 1000;
                }
                
                static void loop();
                static int do_sandbox_none(void)
                {
                	loop();
                	return 0;
                }
                #define CAST(f) ({void* p = (void*)f; p; })
                
                static long syz_execute_func(volatile long text)
                {
                	((void (*)(void))(text))();
                	return 0;
                }
                
                struct thread_t {
                	int created, call;
                	event_t ready, done;
                };
                
                static struct thread_t threads[16];
                static void execute_call(int call);
                static int running;
                
                static void* thr(void* arg)
                {
                	struct thread_t* th = (struct thread_t*)arg;
                	for (;;) {
                		event_wait(&th->ready);
                		event_reset(&th->ready);
                		execute_call(th->call);
                		__atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED);
                		event_set(&th->done);
                	}
                	return 0;
                }
                
                static void execute_one(void)
                {
                	int i, call, thread;
                	for (call = 0; call < 17; call++) {
                		for (thread = 0; thread < (int)(sizeof(threads) / sizeof(threads[0])); thread++) {
                			struct thread_t* th = &threads[thread];
                			if (!th->created) {
                				th->created = 1;
                				event_init(&th->ready);
                				event_init(&th->done);
                				event_set(&th->done);
                				thread_start(thr, th);
                			}
                			if (!event_isset(&th->done))
                				continue;
                			event_reset(&th->done);
                			th->call = call;
                			__atomic_fetch_add(&running, 1, __ATOMIC_RELAXED);
                			event_set(&th->ready);
                			if (call == 1)
                				break;
                			event_timedwait(&th->done, 50);
                			break;
                		}
                	}
                	for (i = 0; i < 100 && __atomic_load_n(&running, __ATOMIC_RELAXED); i++)
                		sleep_ms(1);
                }
                
                static void execute_one(void);
                static void loop(void)
                {
                	execute_one();
                }
                
                uint64_t r[6] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
                
                void execute_call(int call)
                {
                		intptr_t res = 0;
                	switch (call) {
                	case 0:
                		inject_fault(1);
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_seek))(0, 1, 8, 0x20000000);
                		if (res == ZX_OK)
                r[0] = *(uint64_t*)0x20000000;
                		break;
                	case 1:
                *(uint64_t*)0x20000140 = 0x20000040;
                memcpy((void*)0x20000040, "\x1d\xbb\xb2\x5c\xf4\x5e\x52\x00\x25\xf9\xc3\xa0\x33\xb3\x1b\x3a\x79\x69\xf7\xb3\x84\xed\x40\xae\xd6\xfb\xa7\x7a\x34\xac\x1a\x64\xd1\xc9\x5f\x9f\x72\x30\x44\x6e\xd1\xac\x8e\xcf\xdb\x9d\x39\xca\x44\x1e\xad\x1b\x96\xb1\x2a\x6f\xd1\x8d\xa4\x21\x73\x79\x44\x36\x40\x2f\xf5\xb4\x06\x32\x15\xec\xc6\x12\xfd\x27\xda\x75\xc7\x03\xb9\xb4\xf6\x94\x43\x04\x04\x14\x76\xd5\x2c\x13\x0b\x37\xf7\xf9\xc0\x06\x78\x64\xce\x18\xe3\x3f\x61\x19\xb3\x0f\xc4\xe4\xd2\xb0\x40\x13\x1d\xb7\x20\x1b\xc5\xe6\xaf\x7c\x34\x67\xb6\x7a\x12\x9d\xf6\x78\xbf\xb1\x1a\xba\x6a\xb5\x6f\xa7\xfd\xdd\x65\x4e\x32\x5f\x2a\x80\x38\x6b\x87\x54\xb9\xf2\xee\xed\x19\xab\xaa\x24\x94\x28\xa3\x67\xbf\x8b\xf7\x88\xd2\xc6\x66\x57\xa6\x7c\x50\x39\x4f\xa4\xe7\x6c\xe2\x17\xb1\x2b\x07\x22\x00\x1e\xee\x20\x73\x6a\x11\x15\x61\x83\x49\x4f\xae\x83\x1c\x2e\xdf\x25\x08\x58\xbf\x23\x4c\x42\x69\xb0\x7d\x00\x13\x73\xdc\x3e\x0d\xf2\x27\xec\x3a\x55\x46\x51\xf7\x58\x99\x29\x75\xd9\xd1\x23\x8c", 233);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv_at))(0, 0, r[0], 0x20000140, 1, 0x20000180);
                		break;
                	case 2:
                *(uint64_t*)0x20010280 = 0x200001c0;
                *(uint32_t*)0x200001c0 = 0;
                memset((void*)0x200001c4, 0, 3);
                *(uint8_t*)0x200001c7 = 1;
                *(uint64_t*)0x200001c8 = 0x1f62df5e00000000;
                *(uint64_t*)0x20010288 = 0x20000200;
                *(uint64_t*)0x20010290 = 0x20000240;
                *(uint64_t*)0x20010298 = 0x20010240;
                *(uint32_t*)0x200102a0 = 0x10;
                *(uint32_t*)0x200102a4 = 0;
                *(uint32_t*)0x200102a8 = 0x10000;
                *(uint32_t*)0x200102ac = 1;
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                		{
                		int i;
                		for(i = 0; i < 4; i++) {
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                				}
                		}
                		if (res == ZX_OK)
                r[1] = *(uint32_t*)0x20010240;
                		break;
                	case 3:
                *(uint64_t*)0x200107c0 = 0x20010340;
                memcpy((void*)0x20010340, "\x13\xcc\xbc\xac\xe9\xbe\xc9\x58\x8e\xf4\x17\xb7\x2f\x30\x9e\xab\xab\x82\x61\xa7\x9e\x65\x1e\x4c\x24", 25);
                *(uint64_t*)0x200107d0 = 0x20010380;
                memcpy((void*)0x20010380, "\x34\x74\x0c\xb6\x2b\x97", 6);
                *(uint64_t*)0x200107e0 = 0x200103c0;
                memcpy((void*)0x200103c0, "\x16\x8a\xc0\x7f\x7e\x3b\x66\x9b\x1c\xa5\x88\x0a\x2e\x28\xdc\x09\x5b\x3f\xe1\x31\xad\x1e\xb1\x07\x28\x75\x8d\xbd\x2f\x59\x5d\x92\x8c\xa6\x62\x08\xe7\xd7\xb6\x92\xef\x2c\x84\x1e\xef\xd2\x81\x25\xbb\xf4\xd6\x2d\x30\xc9\x68\x06\xe7\x29\xcb\x70\xe8\x33\xf1\x0c\xab\x51\xe6\xe5\x21\x65\x09\x94\x4b\xfd\xf0\x37\x5b\xa3\xff\xd4\x5e\xd4\x4d\x6f\x70\x2b\x4d\x57\x1a\xf9\x9d\x11\x30\x18\x1c\xff\xcb\xb1\xdb\x5b\xbb\xf0\xe3\x15\x77\xd1\x15\xf7\x1f\xf1\x67\xae\x0e\xb9\xf1\x3f\x64\xf6\x77\x57\x29\x31\x46\x98\x68\x13\x81\x27\x48\xb9\x6a\x1c\x11\x8f\x40\x48\xf4\xaa\x6e\x52\x24\x5d\x87\xf5\x77\x9e\x47\xb5\xb5\x9a\x53\x6b\x6e\x5f\xca\xf4\x3f\x58\x68\x69\xa5\x79\x52\xb9\x2b\xa1\xeb\x14\xc1\x4f\x31\xe7\xc8\x58\x7c\xe2\x77\x59\x2a\x4b\xc1\x2f\x6d\x1e\xa8\x2a\xcd\xc9\xb9\x73\xdb\xe1\x46\x01\x96\x89\x9a\x00\x29\x7e\x4e\x71\x32\xe3\xb0\x08\x28", 207);
                *(uint64_t*)0x200107f0 = 0x200104c0;
                memcpy((void*)0x200104c0, "\xdb\x71\xd7\x6c\xc7\xcc\xc9\x4a\xcb\x73\x76\x8c\xdf\x08\xca\xdc\x13\x61\xe1", 19);
                *(uint64_t*)0x20010800 = 0x20010500;
                memcpy((void*)0x20010500, "\xee\xb2\x85\x07\x24\x60\x6a\xe7\xce\x7a\x56\x52\xb5\xb8\xa8\xf3\xa5\xc0\x61\x32\x97\x95\x57\xf4\x85\x46\x14\xe6\x66\x04\x1c\x1a\x94\x14\x82\x60\x02\x44\x97\x85\x03\x9a\x57\x86\x3a\xad\x0d\x64\xf9\x9b\x27\xb8\x1b\xdf\x91\x50\xf2\x79\x2c\x62\x30\xcc\xda\xfe\xf2\x11\x93\x49\x6f\x8b\x4e\xbb\xe4\x8d\xcc\x5c\xcb\x88\x0a\x69\xad\x2a\xa6\xed\x15\xa3\x57\x6e\x65\x6a\xcb\xd1\xd5\xab\xfe\x14\x21\x4b\xfb\x95\xcf\x87\xa6\x21\x50\x19\x22\x93\x74\xf0\x41\xa6\xce\x16\x42\x0f\xe4\x76\x3a\xb1\xfe\xce\xa5\xdb\x14\x91\x9e\xc6\x9c\x50\x3a\xcc\x07\xe5\x1e\x4e\x15\xb7\x77\xed\x58\xe3\xcb\x58\xdd\x7a\x8a\xc9\xee\xb4\x35\x6c\xb3\x23\x2f\xc6\x6c\x77\x01\xae\x4e\x23\xf1\x4d\x11\xcc\xe1\x9a\x0b\x88\x1b\x84\xd0\x20\x53\x25\x1b\xa5\xea\x82\x6f\xdb\x7d\xa2\xba\x5d\x4e\xc4\xea\x1c\x51\xce\x7e\x0c\x56\x42\xb3", 197);
                *(uint64_t*)0x20010810 = 0x20010600;
                memcpy((void*)0x20010600, "\xd3\x5a\xe8\xf9\xb7\x09\x07\x3a\x47\x20\x79\xb1\x20\x33\xdf\xd0\x9c\x6a\x47\x18\x64\x6c\xd9\x92\xb2\xd1\xcd\x35\x89\x44\x6b\x63\xb3\x0c\x67", 35);
                *(uint64_t*)0x20010820 = 0x20010640;
                memcpy((void*)0x20010640, "\x50\x63\xcd\xf3\x58\x9e\xc6\xc7\xb9\x54\x0e\x75\x14\xf9\x5f\xf7\xdf\x32\xde\xdf\xab\x4e", 22);
                *(uint64_t*)0x20010830 = 0x20010680;
                memcpy((void*)0x20010680, "\x62\x25\xf8\xbb\x38\x69\x3a\xa6\x54\x11\x30\x1b\x35\x84\x25\x74\xdd\xc4\x0d\x87\x49\x7a\xa2\xf3\xfe\x39\xf7\xb8\xba\xcc\xc1\x0a\x30\xc6\xa9\xd2\xad\x65\x16\xd8\x83\x65\x66\x26\x55\xae\xbd\xb4\x73\x20\x76\x3a\xc2\x8e\xf7\x33\xb2\x02\xbd", 59);
                *(uint64_t*)0x20010840 = 0x200106c0;
                memcpy((void*)0x200106c0, "\xf6\xcf\x9e\xee\xc4\xe1\x06\x86\x63\xcd\x86\xfc\x0c\x25\x5f\x05\x1c\x75\x0c\x85\x3d\x1c\xc0\x74\x83\xb7\x3b\x07\x59\xd5\x28\x4e\xbd\x41\xbc\x8d\xb2\x8e\xb7\xb5\xdb\xdf\x72\x21\xd8\x77\x93\x26\x2d\x57\xbc\xab\x11\x99\xa0\xce\xda\x8b\x5e\x4c\x57\x21\x70\x38\xc1\x7f\x96\xf0\xdf\xff\x52\xfa\xc6\x98\xc7\x3c\x2a\x0d\x69\x26\x64\x77\xab\xf5\x78\xc0\x5f\xc5\x0e\x75\xba\x84\x61\x99\x7a\x9c\x6f\xd9\xf0\x61\x89\x51\x60\x90\xd4\x7e\xe8\xd8\x1a\x93\xda\x80\x02\xd8\x8c\xec\xf2\x6d\x3c\xea\xd9\xb5\x9f\x23\x0b\xdc\x46\x26\x6f\xb0\xdc\x76\x08\xcd\xbe\xf0\x37\x74\x6b\xc7\x1c\x1d\x86\x5a\xcf\xf0\x3f\xd5\xaf\xb6\xa4\xea\x9a\x1e\x7f\x0b\x5c\x18\x99\xa2\x87\xe2\xee\x8a\x8d\xa9\xac\x0e\xdc\xc3\x02\xc3\xf9\x6a\x36\x48\x0b\x6c\xb3\x1d\x1e\x29\x78\x7d\x71\x5f\x45\x0d\x3c\x46\x7d\xfc\x4d\xbd\x31\xf3\x56\x2a\xc9\x94\xb2\x63\x4e\x91\xa8\xd3\xea\xa7\x25\x2f\xe0\xdb\x77\xb2\xe6\xda\x55\x4e\x67\xa3\x43\x17\xe3\x8e\x00\x07\xec\x37\xee\x58\x49\x78\xe7\xc0\x9b\x28\x06\xc1\x71", 239);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv))(r[1], 0, 0x200107c0, 9, 0x20010880);
                		break;
                	case 4:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t))CAST(zx_event_create))(0xffe00, 0x200108c0);
                		if (res == ZX_OK)
                r[2] = *(uint32_t*)0x200108c0;
                		break;
                	case 5:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t))CAST(zx_channel_create))(0, 0x20010940, 0x20010980);
                		if (res == ZX_OK)
                r[3] = *(uint32_t*)0x20010980;
                		break;
                	case 6:
                		res = -1;
                res = ((intptr_t(*)())CAST(get_root_resource))();
                		if ((int)res != -1)
                				r[4] = res;
                		break;
                	case 7:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vmar_allocate))(r[1], 0x16000000, 0xd7d1, -1, 0x200109c0, 0x20010a00);
                		if (res == ZX_OK)
                r[5] = *(uint32_t*)0x200109c0;
                		break;
                	case 8:
                *(uint32_t*)0x20010900 = 0;
                memset((void*)0x20010904, 0, 3);
                *(uint8_t*)0x20010907 = 1;
                *(uint64_t*)0x20010908 = 0x5cd6900b00000000;
                *(uint64_t*)0x20010910 = 0xfff;
                *(uint64_t*)0x20010918 = 0;
                *(uint32_t*)0x20010920 = -1;
                *(uint32_t*)0x20010924 = 9;
                *(uint32_t*)0x20010a40 = r[3];
                *(uint32_t*)0x20010a44 = r[4];
                *(uint32_t*)0x20010a48 = r[5];
                *(uint32_t*)0x20010a4c = r[1];
                *(uint32_t*)0x20010a50 = r[1];
                *(uint32_t*)0x20010a54 = r[1];
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_write))(r[2], 0, 0x20010900, 0x28, 0x20010a40, 0x18);
                		break;
                	case 9:
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vcpu_write_state))(r[4], 0x80000001, 0x20010a80, 0xf5);
                		break;
                	case 10:
                memcpy((void*)0x20000000, "\xc4\x22\x01\x04\x1d\xb2\x3b\xae\x8b\x67\x2e\x26\x41\xc7\x04\xfb\x27\x27\x00\x00\xf0\x41\x0f\xc7\x8b\x95\x42\x4e\xd7\x65\xa2\x0a\x00\x00\x00\x00\x00\x00\x00\xc4\x83\xc9\x5e\x18\x05\xc4\xe2\xb1\x90\x34\x7b\xf2\x0f\x59\x33\x3e\x0f\x38\xf1\x5b\xd2\x3e\xf3\x47\x0f\x2a\x98\xc1\x59\x6e\x05\xc4\x61\xaa\x11\xc1", 76);
                syz_execute_func(0x20000000);
                		break;
                	case 11:
                syz_future_time(0);
                		break;
                	case 12:
                syz_job_default();
                		break;
                	case 13:
                syz_mmap(0x20ffd000, 0x2000);
                		break;
                	case 14:
                syz_process_self();
                		break;
                	case 15:
                syz_thread_self();
                		break;
                	case 16:
                syz_vmar_root_self();
                		break;
                	}
                
                }
                int main(void)
                {
                syz_mmap(0x20000000, 0x1000000);
                	setup_fault();
                			use_temporary_dir();
                			do_sandbox_none();
                	return 0;
                }
                
                <stdin>:8:10: fatal error: 'lib/ddk/driver.h' file not found
                #include <lib/ddk/driver.h>
                         ^~~~~~~~~~~~~~~~~~
                1 error generated.
                
                compiler invocation: /syzkaller/shared/fuchsia/prebuilt/third_party/clang/linux-x64/bin/clang [-o /tmp/syz-executor2516150918 -DGOOS_fuchsia=1 -DGOARCH_amd64=1 -DHOSTGOOS_linux=1 -x c - -Wno-deprecated -target x86_64-fuchsia -ldriver -lfdio -lzircon --sysroot /syzkaller/shared/fuchsia/out/x64/zircon_toolchain/obj/zircon/public/sysroot/sysroot -I /syzkaller/shared/fuchsia/sdk/lib/fdio/include -I /syzkaller/shared/fuchsia/zircon/system/ulib/fidl/include -I /syzkaller/shared/fuchsia/src/lib/ddk/include -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device.manager -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.nand -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.power.statecontrol -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.usb.peripheral -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/zircon/vdso/zx -L /syzkaller/shared/fuchsia/out/x64/x64-shared -O2 -pthread -Wall -Werror -Wparentheses -Wunused-const-variable -Wframe-larger-than=16384 -Wno-array-bounds -Wno-unused-command-line-argument]
        --- FAIL: TestGenerate/fuchsia/amd64/2 (0.24s)
            csource_test.go:133: opts: {Threaded:true Repeat:false RepeatTimes:0 Procs:0 Slowdown:1 Sandbox:none SandboxArg:0 Leak:false NetInjection:false NetDevices:false NetReset:false Cgroups:false BinfmtMisc:false CloseFDs:false KCSAN:false DevlinkPCI:false NicVF:false USB:false VhciInjection:false Wifi:false IEEE802154:false Sysctl:false UseTmpDir:true HandleSegv:false Repro:false Trace:false LegacyOptions:{Collide:false Fault:false FaultCall:0 FaultNth:0}}
                program:
                zx_stream_seek(0x0, 0x1, 0x8, &(0x7f0000000000)=<r0=>0x0) (fail_nth: 1)
                zx_stream_readv_at(0x0, 0x0, r0, &(0x7f0000000140)=[{&(0x7f0000000040)="1dbbb25cf45e520025f9c3a033b31b3a7969f7b384ed40aed6fba77a34ac1a64d1c95f9f7230446ed1ac8ecfdb9d39ca441ead1b96b12a6fd18da42173794436402ff5b4063215ecc612fd27da75c703b9b4f6944304041476d52c130b37f7f9c0067864ce18e33f6119b30fc4e4d2b040131db7201bc5e6af7c3467b67a129df678bfb11aba6ab56fa7fddd654e325f2a80386b8754b9f2eeed19abaa249428a367bf8bf788d2c66657a67c50394fa4e76ce217b12b0722001eee20736a11156183494fae831c2edf250858bf234c4269b07d001373dc3e0df227ec3a554651f758992975d9d1238c", 0xe9}], 0x1, &(0x7f0000000180)) (async)
                zx_channel_call$fuchsia_io_DirectoryDescribe(0x0, 0x0, 0x7fffffffffffffff, &(0x7f0000010280)={&(0x7f00000001c0), &(0x7f0000000200), &(0x7f0000000240), &(0x7f0000010240)={@tty={<r1=>0x0}}, 0x10, 0x0, 0x10000, 0x1}, &(0x7f00000102c0), &(0x7f0000010300)) (rerun: 4)
                zx_stream_readv(r1, 0x0, &(0x7f00000107c0)=[{&(0x7f0000010340)="13ccbcace9bec9588ef417b72f309eabab8261a79e651e4c24", 0x19}, {&(0x7f0000010380)="34740cb62b97", 0x6}, {&(0x7f00000103c0)="168ac07f7e3b669b1ca5880a2e28dc095b3fe131ad1eb10728758dbd2f595d928ca66208e7d7b692ef2c841eefd28125bbf4d62d30c96806e729cb70e833f10cab51e6e5216509944bfdf0375ba3ffd45ed44d6f702b4d571af99d1130181cffcbb1db5bbbf0e31577d115f71ff167ae0eb9f13f64f67757293146986813812748b96a1c118f4048f4aa6e52245d87f5779e47b5b59a536b6e5fcaf43f586869a57952b92ba1eb14c14f31e7c8587ce277592a4bc12f6d1ea82acdc9b973dbe1460196899a00297e4e7132e3b00828", 0xcf}, {&(0x7f00000104c0)="db71d76cc7ccc94acb73768cdf08cadc1361e1", 0x13}, {&(0x7f0000010500)="eeb2850724606ae7ce7a5652b5b8a8f3a5c06132979557f4854614e666041c1a9414826002449785039a57863aad0d64f99b27b81bdf9150f2792c6230ccdafef21193496f8b4ebbe48dcc5ccb880a69ad2aa6ed15a3576e656acbd1d5abfe14214bfb95cf87a6215019229374f041a6ce16420fe4763ab1fecea5db14919ec69c503acc07e51e4e15b777ed58e3cb58dd7a8ac9eeb4356cb3232fc66c7701ae4e23f14d11cce19a0b881b84d02053251ba5ea826fdb7da2ba5d4ec4ea1c51ce7e0c5642b3", 0xc5}, {&(0x7f0000010600)="d35ae8f9b709073a472079b12033dfd09c6a4718646cd992b2d1cd3589446b63b30c67", 0x23}, {&(0x7f0000010640)="5063cdf3589ec6c7b9540e7514f95ff7df32dedfab4e", 0x16}, {&(0x7f0000010680)="6225f8bb38693aa65411301b35842574ddc40d87497aa2f3fe39f7b8baccc10a30c6a9d2ad6516d88365662655aebdb47320763ac28ef733b202bd", 0x3b}, {&(0x7f00000106c0)="f6cf9eeec4e1068663cd86fc0c255f051c750c853d1cc07483b73b0759d5284ebd41bc8db28eb7b5dbdf7221d87793262d57bcab1199a0ceda8b5e4c57217038c17f96f0dfff52fac698c73c2a0d69266477abf578c05fc50e75ba8461997a9c6fd9f06189516090d47ee8d81a93da8002d88cecf26d3cead9b59f230bdc46266fb0dc7608cdbef037746bc71c1d865acff03fd5afb6a4ea9a1e7f0b5c1899a287e2ee8a8da9ac0edcc302c3f96a36480b6cb31d1e29787d715f450d3c467dfc4dbd31f3562ac994b2634e91a8d3eaa7252fe0db77b2e6da554e67a34317e38e0007ec37ee584978e7c09b2806c171", 0xef}], 0x9, &(0x7f0000010880))
                zx_event_create(0xffe00, &(0x7f00000108c0)=<r2=>0x0)
                zx_channel_create$fuchsia_cobalt_SystemDataUpdater(0x0, &(0x7f0000010940), &(0x7f0000010980)=<r3=>0x0)
                r4 = get_root_resource()
                zx_vmar_allocate(r1, 0x16000000, 0xd7d1, 0xffffffffffffffff, &(0x7f00000109c0)=<r5=>0x0, &(0x7f0000010a00))
                zx_channel_write$fuchsia_process_LauncherAddHandles(r2, 0x0, &(0x7f0000010900)={{}, {0xfff}, {[{0xffffffff, 0x9}], [{}, {}]}}, 0x28, &(0x7f0000010a40)={[{r3}, {r4}, {r5}, {r1}, {r1}, {r1}]}, 0x18)
                zx_vcpu_write_state(r4, 0x80000001, &(0x7f0000010a80)=""/245, 0xf5)
                syz_execute_func(&(0x7f0000000000)="c42201041db23bae8b672e2641c704fb27270000f0410fc78b95424ed765a20a00000000000000c483c95e1805c4e2b190347bf20f59333e0f38f15bd23ef3470f2a98c1596e05c461aa11c1")
                syz_future_time(0x0)
                syz_job_default()
                syz_mmap(&(0x7f0000ffd000/0x2000)=nil, 0x2000)
                syz_process_self()
                syz_thread_self()
                syz_vmar_root_self()
                
            csource_test.go:134: failed to build program:
                // autogenerated by syzkaller (https://github.com/google/syzkaller)
                
                #define _GNU_SOURCE 
                
                #include <endian.h>
                #include <errno.h>
                #include <fcntl.h>
                #include <lib/ddk/driver.h>
                #include <lib/fdio/directory.h>
                #include <poll.h>
                #include <pthread.h>
                #include <signal.h>
                #include <stdint.h>
                #include <stdio.h>
                #include <stdlib.h>
                #include <string.h>
                #include <sys/file.h>
                #include <sys/ioctl.h>
                #include <sys/socket.h>
                #include <sys/stat.h>
                #include <sys/time.h>
                #include <sys/types.h>
                #include <sys/uio.h>
                #include <time.h>
                #include <unistd.h>
                #include <utime.h>
                #include <zircon/process.h>
                #include <zircon/status.h>
                #include <zircon/syscalls.h>
                
                static void sleep_ms(uint64_t ms)
                {
                	usleep(ms * 1000);
                }
                
                static uint64_t current_time_ms(void)
                {
                	struct timespec ts;
                	if (clock_gettime(CLOCK_MONOTONIC, &ts))
                	exit(1);
                	return (uint64_t)ts.tv_sec * 1000 + (uint64_t)ts.tv_nsec / 1000000;
                }
                
                static void use_temporary_dir(void)
                {
                	char tmpdir_template[] = "/tmp/syzkaller.XXXXXX";
                	char* tmpdir = mkdtemp(tmpdir_template);
                	if (!tmpdir)
                	exit(1);
                	if (chmod(tmpdir, 0777))
                	exit(1);
                	if (chdir(tmpdir))
                	exit(1);
                }
                
                static int inject_fault(int nth)
                {
                	return 0;
                }
                
                static void setup_fault()
                {
                }
                
                static void thread_start(void* (*fn)(void*), void* arg)
                {
                	pthread_t th;
                	pthread_attr_t attr;
                	pthread_attr_init(&attr);
                	pthread_attr_setstacksize(&attr, 128 << 10);
                	int i = 0;
                	for (; i < 100; i++) {
                		if (pthread_create(&th, &attr, fn, arg) == 0) {
                			pthread_attr_destroy(&attr);
                			return;
                		}
                		if (errno == EAGAIN) {
                			usleep(50);
                			continue;
                		}
                		break;
                	}
                	exit(1);
                }
                
                typedef struct {
                	int state;
                } event_t;
                
                static void event_init(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_reset(event_t* ev)
                {
                	ev->state = 0;
                }
                
                static void event_set(event_t* ev)
                {
                	if (ev->state)
                	exit(1);
                	__atomic_store_n(&ev->state, 1, __ATOMIC_RELEASE);
                }
                
                static void event_wait(event_t* ev)
                {
                	while (!__atomic_load_n(&ev->state, __ATOMIC_ACQUIRE))
                		usleep(200);
                }
                
                static int event_isset(event_t* ev)
                {
                	return __atomic_load_n(&ev->state, __ATOMIC_ACQUIRE);
                }
                
                static int event_timedwait(event_t* ev, uint64_t timeout_ms)
                {
                	uint64_t start = current_time_ms();
                	for (;;) {
                		if (__atomic_load_n(&ev->state, __ATOMIC_RELAXED))
                			return 1;
                		if (current_time_ms() - start > timeout_ms)
                			return 0;
                		usleep(200);
                	}
                }
                
                long syz_mmap(size_t addr, size_t size)
                {
                	zx_handle_t root = zx_vmar_root_self();
                	zx_info_vmar_t info;
                	zx_status_t status = zx_object_get_info(root, ZX_INFO_VMAR, &info, sizeof(info), 0, 0);
                	if (status != ZX_OK) {
                		return status;
                	}
                	zx_handle_t vmo;
                	status = zx_vmo_create(size, 0, &vmo);
                	if (status != ZX_OK) {
                		return status;
                	}
                	uintptr_t mapped_addr;
                	status = zx_vmar_map(root, ZX_VM_FLAG_SPECIFIC_OVERWRITE | ZX_VM_FLAG_PERM_READ | ZX_VM_FLAG_PERM_WRITE,
                			     addr - info.base, vmo, 0, size,
                			     &mapped_addr);
                	zx_status_t close_vmo_status = zx_handle_close(vmo);
                	if (close_vmo_status != ZX_OK) {
                	}
                	return status;
                }
                
                static long syz_process_self(void)
                {
                	return zx_process_self();
                }
                
                static long syz_thread_self(void)
                {
                	return zx_thread_self();
                }
                
                static long syz_vmar_root_self(void)
                {
                	return zx_vmar_root_self();
                }
                
                static long syz_job_default(void)
                {
                	return zx_job_default();
                }
                
                static long syz_future_time(volatile long when)
                {
                	zx_time_t delta_ms = 10000;
                	switch (when) {
                	case 0:
                		delta_ms = 5;
                		break;
                	case 1:
                		delta_ms = 30;
                		break;
                	}
                	zx_time_t now = 0;
                	zx_clock_read(ZX_CLOCK_MONOTONIC, &now);
                	return now + delta_ms * 1000 * 1000;
                }
                
                static void loop();
                static int do_sandbox_none(void)
                {
                	loop();
                	return 0;
                }
                #define CAST(f) ({void* p = (void*)f; p; })
                
                static long syz_execute_func(volatile long text)
                {
                	((void (*)(void))(text))();
                	return 0;
                }
                
                struct thread_t {
                	int created, call;
                	event_t ready, done;
                };
                
                static struct thread_t threads[16];
                static void execute_call(int call);
                static int running;
                
                static void* thr(void* arg)
                {
                	struct thread_t* th = (struct thread_t*)arg;
                	for (;;) {
                		event_wait(&th->ready);
                		event_reset(&th->ready);
                		execute_call(th->call);
                		__atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED);
                		event_set(&th->done);
                	}
                	return 0;
                }
                
                static void loop(void)
                {
                	int i, call, thread;
                	for (call = 0; call < 17; call++) {
                		for (thread = 0; thread < (int)(sizeof(threads) / sizeof(threads[0])); thread++) {
                			struct thread_t* th = &threads[thread];
                			if (!th->created) {
                				th->created = 1;
                				event_init(&th->ready);
                				event_init(&th->done);
                				event_set(&th->done);
                				thread_start(thr, th);
                			}
                			if (!event_isset(&th->done))
                				continue;
                			event_reset(&th->done);
                			th->call = call;
                			__atomic_fetch_add(&running, 1, __ATOMIC_RELAXED);
                			event_set(&th->ready);
                			if (call == 1)
                				break;
                			event_timedwait(&th->done, 50);
                			break;
                		}
                	}
                	for (i = 0; i < 100 && __atomic_load_n(&running, __ATOMIC_RELAXED); i++)
                		sleep_ms(1);
                }
                
                uint64_t r[6] = {0x0, 0x0, 0x0, 0x0, 0x0, 0x0};
                
                void execute_call(int call)
                {
                		intptr_t res = 0;
                	switch (call) {
                	case 0:
                		inject_fault(1);
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_seek))(0, 1, 8, 0x20000000);
                		if (res == ZX_OK)
                r[0] = *(uint64_t*)0x20000000;
                		break;
                	case 1:
                *(uint64_t*)0x20000140 = 0x20000040;
                memcpy((void*)0x20000040, "\x1d\xbb\xb2\x5c\xf4\x5e\x52\x00\x25\xf9\xc3\xa0\x33\xb3\x1b\x3a\x79\x69\xf7\xb3\x84\xed\x40\xae\xd6\xfb\xa7\x7a\x34\xac\x1a\x64\xd1\xc9\x5f\x9f\x72\x30\x44\x6e\xd1\xac\x8e\xcf\xdb\x9d\x39\xca\x44\x1e\xad\x1b\x96\xb1\x2a\x6f\xd1\x8d\xa4\x21\x73\x79\x44\x36\x40\x2f\xf5\xb4\x06\x32\x15\xec\xc6\x12\xfd\x27\xda\x75\xc7\x03\xb9\xb4\xf6\x94\x43\x04\x04\x14\x76\xd5\x2c\x13\x0b\x37\xf7\xf9\xc0\x06\x78\x64\xce\x18\xe3\x3f\x61\x19\xb3\x0f\xc4\xe4\xd2\xb0\x40\x13\x1d\xb7\x20\x1b\xc5\xe6\xaf\x7c\x34\x67\xb6\x7a\x12\x9d\xf6\x78\xbf\xb1\x1a\xba\x6a\xb5\x6f\xa7\xfd\xdd\x65\x4e\x32\x5f\x2a\x80\x38\x6b\x87\x54\xb9\xf2\xee\xed\x19\xab\xaa\x24\x94\x28\xa3\x67\xbf\x8b\xf7\x88\xd2\xc6\x66\x57\xa6\x7c\x50\x39\x4f\xa4\xe7\x6c\xe2\x17\xb1\x2b\x07\x22\x00\x1e\xee\x20\x73\x6a\x11\x15\x61\x83\x49\x4f\xae\x83\x1c\x2e\xdf\x25\x08\x58\xbf\x23\x4c\x42\x69\xb0\x7d\x00\x13\x73\xdc\x3e\x0d\xf2\x27\xec\x3a\x55\x46\x51\xf7\x58\x99\x29\x75\xd9\xd1\x23\x8c", 233);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv_at))(0, 0, r[0], 0x20000140, 1, 0x20000180);
                		break;
                	case 2:
                *(uint64_t*)0x20010280 = 0x200001c0;
                *(uint32_t*)0x200001c0 = 0;
                memset((void*)0x200001c4, 0, 3);
                *(uint8_t*)0x200001c7 = 1;
                *(uint64_t*)0x200001c8 = 0x1f62df5e00000000;
                *(uint64_t*)0x20010288 = 0x20000200;
                *(uint64_t*)0x20010290 = 0x20000240;
                *(uint64_t*)0x20010298 = 0x20010240;
                *(uint32_t*)0x200102a0 = 0x10;
                *(uint32_t*)0x200102a4 = 0;
                *(uint32_t*)0x200102a8 = 0x10000;
                *(uint32_t*)0x200102ac = 1;
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                		{
                		int i;
                		for(i = 0; i < 4; i++) {
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_call))(0, 0, 0x7fffffffffffffff, 0x20010280, 0x200102c0, 0x20010300);
                				}
                		}
                		if (res == ZX_OK)
                r[1] = *(uint32_t*)0x20010240;
                		break;
                	case 3:
                *(uint64_t*)0x200107c0 = 0x20010340;
                memcpy((void*)0x20010340, "\x13\xcc\xbc\xac\xe9\xbe\xc9\x58\x8e\xf4\x17\xb7\x2f\x30\x9e\xab\xab\x82\x61\xa7\x9e\x65\x1e\x4c\x24", 25);
                *(uint64_t*)0x200107d0 = 0x20010380;
                memcpy((void*)0x20010380, "\x34\x74\x0c\xb6\x2b\x97", 6);
                *(uint64_t*)0x200107e0 = 0x200103c0;
                memcpy((void*)0x200103c0, "\x16\x8a\xc0\x7f\x7e\x3b\x66\x9b\x1c\xa5\x88\x0a\x2e\x28\xdc\x09\x5b\x3f\xe1\x31\xad\x1e\xb1\x07\x28\x75\x8d\xbd\x2f\x59\x5d\x92\x8c\xa6\x62\x08\xe7\xd7\xb6\x92\xef\x2c\x84\x1e\xef\xd2\x81\x25\xbb\xf4\xd6\x2d\x30\xc9\x68\x06\xe7\x29\xcb\x70\xe8\x33\xf1\x0c\xab\x51\xe6\xe5\x21\x65\x09\x94\x4b\xfd\xf0\x37\x5b\xa3\xff\xd4\x5e\xd4\x4d\x6f\x70\x2b\x4d\x57\x1a\xf9\x9d\x11\x30\x18\x1c\xff\xcb\xb1\xdb\x5b\xbb\xf0\xe3\x15\x77\xd1\x15\xf7\x1f\xf1\x67\xae\x0e\xb9\xf1\x3f\x64\xf6\x77\x57\x29\x31\x46\x98\x68\x13\x81\x27\x48\xb9\x6a\x1c\x11\x8f\x40\x48\xf4\xaa\x6e\x52\x24\x5d\x87\xf5\x77\x9e\x47\xb5\xb5\x9a\x53\x6b\x6e\x5f\xca\xf4\x3f\x58\x68\x69\xa5\x79\x52\xb9\x2b\xa1\xeb\x14\xc1\x4f\x31\xe7\xc8\x58\x7c\xe2\x77\x59\x2a\x4b\xc1\x2f\x6d\x1e\xa8\x2a\xcd\xc9\xb9\x73\xdb\xe1\x46\x01\x96\x89\x9a\x00\x29\x7e\x4e\x71\x32\xe3\xb0\x08\x28", 207);
                *(uint64_t*)0x200107f0 = 0x200104c0;
                memcpy((void*)0x200104c0, "\xdb\x71\xd7\x6c\xc7\xcc\xc9\x4a\xcb\x73\x76\x8c\xdf\x08\xca\xdc\x13\x61\xe1", 19);
                *(uint64_t*)0x20010800 = 0x20010500;
                memcpy((void*)0x20010500, "\xee\xb2\x85\x07\x24\x60\x6a\xe7\xce\x7a\x56\x52\xb5\xb8\xa8\xf3\xa5\xc0\x61\x32\x97\x95\x57\xf4\x85\x46\x14\xe6\x66\x04\x1c\x1a\x94\x14\x82\x60\x02\x44\x97\x85\x03\x9a\x57\x86\x3a\xad\x0d\x64\xf9\x9b\x27\xb8\x1b\xdf\x91\x50\xf2\x79\x2c\x62\x30\xcc\xda\xfe\xf2\x11\x93\x49\x6f\x8b\x4e\xbb\xe4\x8d\xcc\x5c\xcb\x88\x0a\x69\xad\x2a\xa6\xed\x15\xa3\x57\x6e\x65\x6a\xcb\xd1\xd5\xab\xfe\x14\x21\x4b\xfb\x95\xcf\x87\xa6\x21\x50\x19\x22\x93\x74\xf0\x41\xa6\xce\x16\x42\x0f\xe4\x76\x3a\xb1\xfe\xce\xa5\xdb\x14\x91\x9e\xc6\x9c\x50\x3a\xcc\x07\xe5\x1e\x4e\x15\xb7\x77\xed\x58\xe3\xcb\x58\xdd\x7a\x8a\xc9\xee\xb4\x35\x6c\xb3\x23\x2f\xc6\x6c\x77\x01\xae\x4e\x23\xf1\x4d\x11\xcc\xe1\x9a\x0b\x88\x1b\x84\xd0\x20\x53\x25\x1b\xa5\xea\x82\x6f\xdb\x7d\xa2\xba\x5d\x4e\xc4\xea\x1c\x51\xce\x7e\x0c\x56\x42\xb3", 197);
                *(uint64_t*)0x20010810 = 0x20010600;
                memcpy((void*)0x20010600, "\xd3\x5a\xe8\xf9\xb7\x09\x07\x3a\x47\x20\x79\xb1\x20\x33\xdf\xd0\x9c\x6a\x47\x18\x64\x6c\xd9\x92\xb2\xd1\xcd\x35\x89\x44\x6b\x63\xb3\x0c\x67", 35);
                *(uint64_t*)0x20010820 = 0x20010640;
                memcpy((void*)0x20010640, "\x50\x63\xcd\xf3\x58\x9e\xc6\xc7\xb9\x54\x0e\x75\x14\xf9\x5f\xf7\xdf\x32\xde\xdf\xab\x4e", 22);
                *(uint64_t*)0x20010830 = 0x20010680;
                memcpy((void*)0x20010680, "\x62\x25\xf8\xbb\x38\x69\x3a\xa6\x54\x11\x30\x1b\x35\x84\x25\x74\xdd\xc4\x0d\x87\x49\x7a\xa2\xf3\xfe\x39\xf7\xb8\xba\xcc\xc1\x0a\x30\xc6\xa9\xd2\xad\x65\x16\xd8\x83\x65\x66\x26\x55\xae\xbd\xb4\x73\x20\x76\x3a\xc2\x8e\xf7\x33\xb2\x02\xbd", 59);
                *(uint64_t*)0x20010840 = 0x200106c0;
                memcpy((void*)0x200106c0, "\xf6\xcf\x9e\xee\xc4\xe1\x06\x86\x63\xcd\x86\xfc\x0c\x25\x5f\x05\x1c\x75\x0c\x85\x3d\x1c\xc0\x74\x83\xb7\x3b\x07\x59\xd5\x28\x4e\xbd\x41\xbc\x8d\xb2\x8e\xb7\xb5\xdb\xdf\x72\x21\xd8\x77\x93\x26\x2d\x57\xbc\xab\x11\x99\xa0\xce\xda\x8b\x5e\x4c\x57\x21\x70\x38\xc1\x7f\x96\xf0\xdf\xff\x52\xfa\xc6\x98\xc7\x3c\x2a\x0d\x69\x26\x64\x77\xab\xf5\x78\xc0\x5f\xc5\x0e\x75\xba\x84\x61\x99\x7a\x9c\x6f\xd9\xf0\x61\x89\x51\x60\x90\xd4\x7e\xe8\xd8\x1a\x93\xda\x80\x02\xd8\x8c\xec\xf2\x6d\x3c\xea\xd9\xb5\x9f\x23\x0b\xdc\x46\x26\x6f\xb0\xdc\x76\x08\xcd\xbe\xf0\x37\x74\x6b\xc7\x1c\x1d\x86\x5a\xcf\xf0\x3f\xd5\xaf\xb6\xa4\xea\x9a\x1e\x7f\x0b\x5c\x18\x99\xa2\x87\xe2\xee\x8a\x8d\xa9\xac\x0e\xdc\xc3\x02\xc3\xf9\x6a\x36\x48\x0b\x6c\xb3\x1d\x1e\x29\x78\x7d\x71\x5f\x45\x0d\x3c\x46\x7d\xfc\x4d\xbd\x31\xf3\x56\x2a\xc9\x94\xb2\x63\x4e\x91\xa8\xd3\xea\xa7\x25\x2f\xe0\xdb\x77\xb2\xe6\xda\x55\x4e\x67\xa3\x43\x17\xe3\x8e\x00\x07\xec\x37\xee\x58\x49\x78\xe7\xc0\x9b\x28\x06\xc1\x71", 239);
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_stream_readv))(r[1], 0, 0x200107c0, 9, 0x20010880);
                		break;
                	case 4:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t))CAST(zx_event_create))(0xffe00, 0x200108c0);
                		if (res == ZX_OK)
                r[2] = *(uint32_t*)0x200108c0;
                		break;
                	case 5:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t))CAST(zx_channel_create))(0, 0x20010940, 0x20010980);
                		if (res == ZX_OK)
                r[3] = *(uint32_t*)0x20010980;
                		break;
                	case 6:
                		res = -1;
                res = ((intptr_t(*)())CAST(get_root_resource))();
                		if ((int)res != -1)
                				r[4] = res;
                		break;
                	case 7:
                		res = -1;
                res = ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vmar_allocate))(r[1], 0x16000000, 0xd7d1, -1, 0x200109c0, 0x20010a00);
                		if (res == ZX_OK)
                r[5] = *(uint32_t*)0x200109c0;
                		break;
                	case 8:
                *(uint32_t*)0x20010900 = 0;
                memset((void*)0x20010904, 0, 3);
                *(uint8_t*)0x20010907 = 1;
                *(uint64_t*)0x20010908 = 0x5cd6900b00000000;
                *(uint64_t*)0x20010910 = 0xfff;
                *(uint64_t*)0x20010918 = 0;
                *(uint32_t*)0x20010920 = -1;
                *(uint32_t*)0x20010924 = 9;
                *(uint32_t*)0x20010a40 = r[3];
                *(uint32_t*)0x20010a44 = r[4];
                *(uint32_t*)0x20010a48 = r[5];
                *(uint32_t*)0x20010a4c = r[1];
                *(uint32_t*)0x20010a50 = r[1];
                *(uint32_t*)0x20010a54 = r[1];
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_channel_write))(r[2], 0, 0x20010900, 0x28, 0x20010a40, 0x18);
                		break;
                	case 9:
                ((intptr_t(*)(intptr_t,intptr_t,intptr_t,intptr_t))CAST(zx_vcpu_write_state))(r[4], 0x80000001, 0x20010a80, 0xf5);
                		break;
                	case 10:
                memcpy((void*)0x20000000, "\xc4\x22\x01\x04\x1d\xb2\x3b\xae\x8b\x67\x2e\x26\x41\xc7\x04\xfb\x27\x27\x00\x00\xf0\x41\x0f\xc7\x8b\x95\x42\x4e\xd7\x65\xa2\x0a\x00\x00\x00\x00\x00\x00\x00\xc4\x83\xc9\x5e\x18\x05\xc4\xe2\xb1\x90\x34\x7b\xf2\x0f\x59\x33\x3e\x0f\x38\xf1\x5b\xd2\x3e\xf3\x47\x0f\x2a\x98\xc1\x59\x6e\x05\xc4\x61\xaa\x11\xc1", 76);
                syz_execute_func(0x20000000);
                		break;
                	case 11:
                syz_future_time(0);
                		break;
                	case 12:
                syz_job_default();
                		break;
                	case 13:
                syz_mmap(0x20ffd000, 0x2000);
                		break;
                	case 14:
                syz_process_self();
                		break;
                	case 15:
                syz_thread_self();
                		break;
                	case 16:
                syz_vmar_root_self();
                		break;
                	}
                
                }
                int main(void)
                {
                syz_mmap(0x20000000, 0x1000000);
                	setup_fault();
                			use_temporary_dir();
                			do_sandbox_none();
                	return 0;
                }
                
                <stdin>:8:10: fatal error: 'lib/ddk/driver.h' file not found
                #include <lib/ddk/driver.h>
                         ^~~~~~~~~~~~~~~~~~
                1 error generated.
                
                compiler invocation: /syzkaller/shared/fuchsia/prebuilt/third_party/clang/linux-x64/bin/clang [-o /tmp/syz-executor2112417633 -DGOOS_fuchsia=1 -DGOARCH_amd64=1 -DHOSTGOOS_linux=1 -x c - -Wno-deprecated -target x86_64-fuchsia -ldriver -lfdio -lzircon --sysroot /syzkaller/shared/fuchsia/out/x64/zircon_toolchain/obj/zircon/public/sysroot/sysroot -I /syzkaller/shared/fuchsia/sdk/lib/fdio/include -I /syzkaller/shared/fuchsia/zircon/system/ulib/fidl/include -I /syzkaller/shared/fuchsia/src/lib/ddk/include -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.device.manager -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.nand -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.power.statecontrol -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/sdk/fidl/fuchsia.hardware.usb.peripheral -I /syzkaller/shared/fuchsia/out/x64/fidling/gen/zircon/vdso/zx -L /syzkaller/shared/fuchsia/out/x64/x64-shared -O2 -pthread -Wall -Werror -Wparentheses -Wunused-const-variable -Wframe-larger-than=16384 -Wno-array-bounds -Wno-unused-command-line-argument]
        --- FAIL: TestGenerate/fuchsia/amd64/9 (0.18s)
            csource_test.go:131: 
        --- FAIL: TestGenerate/fuchsia/amd64/10 (0.19s)
            csource_test.go:131: 
        --- FAIL: TestGenerate/fuchsia/amd64/1 (0.20s)
            csource_test.go:131: 
        --- FAIL: TestGenerate/fuchsia/amd64/8 (0.20s)
            csource_test.go:131: 
FAIL
FAIL	github.com/google/syzkaller/pkg/csource	21.181s
ok  	github.com/google/syzkaller/pkg/db	(cached)
ok  	github.com/google/syzkaller/pkg/email	(cached)
ok  	github.com/google/syzkaller/pkg/host	(cached)
ok  	github.com/google/syzkaller/pkg/ifuzz	(cached)
ok  	github.com/google/syzkaller/pkg/image	(cached)
ok  	github.com/google/syzkaller/pkg/instance	(cached)
ok  	github.com/google/syzkaller/pkg/ipc	(cached)
ok  	github.com/google/syzkaller/pkg/kconfig	0.411s
ok  	github.com/google/syzkaller/pkg/kd	(cached)
ok  	github.com/google/syzkaller/pkg/log	(cached)
ok  	github.com/google/syzkaller/pkg/mgrconfig	(cached)
ok  	github.com/google/syzkaller/pkg/osutil	(cached)
ok  	github.com/google/syzkaller/pkg/report	(cached)
ok  	github.com/google/syzkaller/pkg/repro	(cached)
ok  	github.com/google/syzkaller/pkg/runtest	(cached)
ok  	github.com/google/syzkaller/pkg/serializer	(cached)
ok  	github.com/google/syzkaller/pkg/stats	(cached)
ok  	github.com/google/syzkaller/pkg/subsystem	(cached)
ok  	github.com/google/syzkaller/pkg/subsystem/linux	(cached)
ok  	github.com/google/syzkaller/pkg/subsystem/lists	(cached)
ok  	github.com/google/syzkaller/pkg/symbolizer	(cached)
ok  	github.com/google/syzkaller/pkg/tool	(cached)
ok  	github.com/google/syzkaller/pkg/vcs	(cached)
ok  	github.com/google/syzkaller/prog	(cached)
ok  	github.com/google/syzkaller/prog/test	(cached)
ok  	github.com/google/syzkaller/sys/linux	(cached)
ok  	github.com/google/syzkaller/sys/openbsd	(cached)
ok  	github.com/google/syzkaller/syz-ci	(cached)
ok  	github.com/google/syzkaller/syz-fuzzer	(cached)
ok  	github.com/google/syzkaller/syz-hub	(cached)
ok  	github.com/google/syzkaller/syz-hub/state	(cached)
ok  	github.com/google/syzkaller/syz-manager	(cached)
ok  	github.com/google/syzkaller/syz-verifier	(cached)
ok  	github.com/google/syzkaller/tools/syz-kconf	(cached)
ok  	github.com/google/syzkaller/tools/syz-linter	(cached)
ok  	github.com/google/syzkaller/tools/syz-trace2syz/parser	(cached)
ok  	github.com/google/syzkaller/tools/syz-trace2syz/proggen	(cached)
ok  	github.com/google/syzkaller/vm	(cached)
ok  	github.com/google/syzkaller/vm/isolated	(cached)
ok  	github.com/google/syzkaller/vm/proxyapp	(cached)
ok  	github.com/google/syzkaller/vm/vmimpl	(cached)
FAIL