// https://syzkaller.appspot.com/bug?id=a038e666f2e27a98b03aa605054c088e6ef2bb5d // autogenerated by syzkaller (https://github.com/google/syzkaller) #define _GNU_SOURCE #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include static unsigned long long procid; static __thread int skip_segv; static __thread jmp_buf segv_env; static void segv_handler(int sig, siginfo_t* info, void* ctx) { uintptr_t addr = (uintptr_t)info->si_addr; const uintptr_t prog_start = 1 << 20; const uintptr_t prog_end = 100 << 20; if (__atomic_load_n(&skip_segv, __ATOMIC_RELAXED) && (addr < prog_start || addr > prog_end)) { _longjmp(segv_env, 1); } exit(sig); } static void install_segv_handler(void) { struct sigaction sa; memset(&sa, 0, sizeof(sa)); sa.sa_sigaction = segv_handler; sa.sa_flags = SA_NODEFER | SA_SIGINFO; sigaction(SIGSEGV, &sa, NULL); sigaction(SIGBUS, &sa, NULL); } #define NONFAILING(...) \ { \ __atomic_fetch_add(&skip_segv, 1, __ATOMIC_SEQ_CST); \ if (_setjmp(segv_env) == 0) { \ __VA_ARGS__; \ } \ __atomic_fetch_sub(&skip_segv, 1, __ATOMIC_SEQ_CST); \ } static void kill_and_wait(int pid, int* status) { kill(pid, SIGKILL); while (waitpid(-1, status, 0) != pid) { } } 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 execute_one(void); #define WAIT_FLAGS 0 static void loop(void) { int iter; for (iter = 0;; iter++) { int pid = fork(); if (pid < 0) exit(1); if (pid == 0) { execute_one(); exit(0); } int status = 0; uint64_t start = current_time_ms(); for (;;) { if (waitpid(-1, &status, WNOHANG | WAIT_FLAGS) == pid) break; sleep_ms(1); if (current_time_ms() - start < 5 * 1000) continue; kill_and_wait(pid, &status); break; } } } uint64_t r[1] = {0xffffffffffffffff}; void execute_one(void) { intptr_t res = 0; res = syscall(SYS_socket, 2, 5, 0x84); if (res != -1) r[0] = res; NONFAILING(*(uint8_t*)0x100001c0 = 0x10); NONFAILING(*(uint8_t*)0x100001c1 = 2); NONFAILING(*(uint16_t*)0x100001c2 = htobe16(0x4e20 + procid * 4)); NONFAILING(*(uint8_t*)0x100001c4 = 0xac); NONFAILING(*(uint8_t*)0x100001c5 = 0x14); NONFAILING(*(uint8_t*)0x100001c6 = 0 + procid * 1); NONFAILING(*(uint8_t*)0x100001c7 = 0xaa); NONFAILING(*(uint8_t*)0x100001c8 = 0); NONFAILING(*(uint8_t*)0x100001c9 = 0); NONFAILING(*(uint8_t*)0x100001ca = 0); NONFAILING(*(uint8_t*)0x100001cb = 0); NONFAILING(*(uint8_t*)0x100001cc = 0); NONFAILING(*(uint8_t*)0x100001cd = 0); NONFAILING(*(uint8_t*)0x100001ce = 0); NONFAILING(*(uint8_t*)0x100001cf = 0); NONFAILING(*(uint64_t*)0x100001d0 = 0); NONFAILING(*(uint64_t*)0x100001d8 = 0); NONFAILING(*(uint64_t*)0x100001e0 = 0); NONFAILING(*(uint64_t*)0x100001e8 = 0); NONFAILING(*(uint64_t*)0x100001f0 = 0); NONFAILING(*(uint64_t*)0x100001f8 = 0); NONFAILING(*(uint64_t*)0x10000200 = 0); NONFAILING(*(uint64_t*)0x10000208 = 0); NONFAILING(*(uint64_t*)0x10000210 = 0); NONFAILING(*(uint64_t*)0x10000218 = 0); NONFAILING(*(uint64_t*)0x10000220 = 0); NONFAILING(*(uint64_t*)0x10000228 = 0); NONFAILING(*(uint64_t*)0x10000230 = 0); NONFAILING(*(uint64_t*)0x10000238 = 0); NONFAILING(*(uint64_t*)0x10000240 = 0); NONFAILING(*(uint32_t*)0x10000248 = 0); NONFAILING(*(uint32_t*)0x1000024c = 4); NONFAILING(*(uint32_t*)0x10000250 = 0); NONFAILING(*(uint32_t*)0x10000254 = 0); NONFAILING(*(uint32_t*)0x10000258 = 0); NONFAILING(*(uint16_t*)0x1000025c = 0); NONFAILING(*(uint8_t*)0x1000025e = 0); syscall(SYS_setsockopt, (intptr_t)r[0], 0x84, 0x8002, 0x100001c0, 0xa0); } int main(void) { syscall(SYS_mmap, 0x10000000, 0x1000000, 7, 0x1012, -1, 0); install_segv_handler(); for (procid = 0; procid < 4; procid++) { if (fork() == 0) { loop(); } } sleep(1000000); return 0; }