// https://syzkaller.appspot.com/bug?id=27ff0a548c81243cf6485e12df0c4dd7a2602012 // autogenerated by syzkaller (http://github.com/google/syzkaller) #define _GNU_SOURCE #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include #include __attribute__((noreturn)) static void doexit(int status) { volatile unsigned i; syscall(__NR_exit_group, status); for (i = 0;; i++) { } } #include #include #include #include #include const int kFailStatus = 67; const int kRetryStatus = 69; static void fail(const char* msg, ...) { int e = errno; va_list args; va_start(args, msg); vfprintf(stderr, msg, args); va_end(args); fprintf(stderr, " (errno %d)\n", e); doexit((e == ENOMEM || e == EAGAIN) ? kRetryStatus : kFailStatus); } #define BITMASK_LEN(type, bf_len) (type)((1ull << (bf_len)) - 1) #define BITMASK_LEN_OFF(type, bf_off, bf_len) \ (type)(BITMASK_LEN(type, (bf_len)) << (bf_off)) #define STORE_BY_BITMASK(type, addr, val, bf_off, bf_len) \ if ((bf_off) == 0 && (bf_len) == 0) { \ *(type*)(addr) = (type)(val); \ } else { \ type new_val = *(type*)(addr); \ new_val &= ~BITMASK_LEN_OFF(type, (bf_off), (bf_len)); \ new_val |= ((type)(val)&BITMASK_LEN(type, (bf_len))) << (bf_off); \ *(type*)(addr) = new_val; \ } struct csum_inet { uint32_t acc; }; static void csum_inet_init(struct csum_inet* csum) { csum->acc = 0; } static void csum_inet_update(struct csum_inet* csum, const uint8_t* data, size_t length) { if (length == 0) return; size_t i; for (i = 0; i < length - 1; i += 2) csum->acc += *(uint16_t*)&data[i]; if (length & 1) csum->acc += (uint16_t)data[length - 1]; while (csum->acc > 0xffff) csum->acc = (csum->acc & 0xffff) + (csum->acc >> 16); } static uint16_t csum_inet_digest(struct csum_inet* csum) { return ~csum->acc; } static void vsnprintf_check(char* str, size_t size, const char* format, va_list args) { int rv; rv = vsnprintf(str, size, format, args); if (rv < 0) fail("tun: snprintf failed"); if ((size_t)rv >= size) fail("tun: string '%s...' doesn't fit into buffer", str); } static void snprintf_check(char* str, size_t size, const char* format, ...) { va_list args; va_start(args, format); vsnprintf_check(str, size, format, args); va_end(args); } #define COMMAND_MAX_LEN 128 #define PATH_PREFIX \ "PATH=/usr/local/sbin:/usr/local/bin:/usr/sbin:/usr/bin:/sbin:/bin " #define PATH_PREFIX_LEN (sizeof(PATH_PREFIX) - 1) static void execute_command(bool panic, const char* format, ...) { va_list args; char command[PATH_PREFIX_LEN + COMMAND_MAX_LEN]; int rv; va_start(args, format); memcpy(command, PATH_PREFIX, PATH_PREFIX_LEN); vsnprintf_check(command + PATH_PREFIX_LEN, COMMAND_MAX_LEN, format, args); va_end(args); rv = system(command); if (rv) { if (panic) fail("command '%s' failed: %d", &command[0], rv); } } static int tunfd = -1; static int tun_frags_enabled; #define SYZ_TUN_MAX_PACKET_SIZE 1000 #define TUN_IFACE "syz_tun" #define LOCAL_MAC "aa:aa:aa:aa:aa:aa" #define REMOTE_MAC "aa:aa:aa:aa:aa:bb" #define LOCAL_IPV4 "172.20.20.170" #define REMOTE_IPV4 "172.20.20.187" #define LOCAL_IPV6 "fe80::aa" #define REMOTE_IPV6 "fe80::bb" #define IFF_NAPI 0x0010 #define IFF_NAPI_FRAGS 0x0020 static void initialize_tun(void) { tunfd = open("/dev/net/tun", O_RDWR | O_NONBLOCK); if (tunfd == -1) { printf("tun: can't open /dev/net/tun: please enable CONFIG_TUN=y\n"); printf("otherwise fuzzing or reproducing might not work as intended\n"); return; } const int kTunFd = 252; if (dup2(tunfd, kTunFd) < 0) fail("dup2(tunfd, kTunFd) failed"); close(tunfd); tunfd = kTunFd; struct ifreq ifr; memset(&ifr, 0, sizeof(ifr)); strncpy(ifr.ifr_name, TUN_IFACE, IFNAMSIZ); ifr.ifr_flags = IFF_TAP | IFF_NO_PI | IFF_NAPI | IFF_NAPI_FRAGS; if (ioctl(tunfd, TUNSETIFF, (void*)&ifr) < 0) { ifr.ifr_flags = IFF_TAP | IFF_NO_PI; if (ioctl(tunfd, TUNSETIFF, (void*)&ifr) < 0) fail("tun: ioctl(TUNSETIFF) failed"); } if (ioctl(tunfd, TUNGETIFF, (void*)&ifr) < 0) fail("tun: ioctl(TUNGETIFF) failed"); tun_frags_enabled = (ifr.ifr_flags & IFF_NAPI_FRAGS) != 0; execute_command(1, "sysctl -w net.ipv6.conf.%s.accept_dad=0", TUN_IFACE); execute_command(1, "sysctl -w net.ipv6.conf.%s.router_solicitations=0", TUN_IFACE); execute_command(1, "ip link set dev %s address %s", TUN_IFACE, LOCAL_MAC); execute_command(1, "ip addr add %s/24 dev %s", LOCAL_IPV4, TUN_IFACE); execute_command(1, "ip -6 addr add %s/120 dev %s", LOCAL_IPV6, TUN_IFACE); execute_command(1, "ip neigh add %s lladdr %s dev %s nud permanent", REMOTE_IPV4, REMOTE_MAC, TUN_IFACE); execute_command(1, "ip -6 neigh add %s lladdr %s dev %s nud permanent", REMOTE_IPV6, REMOTE_MAC, TUN_IFACE); execute_command(1, "ip link set dev %s up", TUN_IFACE); } #define DEV_IPV4 "172.20.20.%d" #define DEV_IPV6 "fe80::%02hx" #define DEV_MAC "aa:aa:aa:aa:aa:%02hx" static void initialize_netdevices(void) { unsigned i; const char* devtypes[] = {"ip6gretap", "bridge", "vcan", "bond", "team"}; const char* devnames[] = {"lo", "sit0", "bridge0", "vcan0", "tunl0", "gre0", "gretap0", "ip_vti0", "ip6_vti0", "ip6tnl0", "ip6gre0", "ip6gretap0", "erspan0", "bond0", "veth0", "veth1", "team0", "veth0_to_bridge", "veth1_to_bridge", "veth0_to_bond", "veth1_to_bond", "veth0_to_team", "veth1_to_team"}; const char* devmasters[] = {"bridge", "bond", "team"}; for (i = 0; i < sizeof(devtypes) / (sizeof(devtypes[0])); i++) execute_command(0, "ip link add dev %s0 type %s", devtypes[i], devtypes[i]); execute_command(0, "ip link add type veth"); for (i = 0; i < sizeof(devmasters) / (sizeof(devmasters[0])); i++) { execute_command( 0, "ip link add name %s_slave_0 type veth peer name veth0_to_%s", devmasters[i], devmasters[i]); execute_command( 0, "ip link add name %s_slave_1 type veth peer name veth1_to_%s", devmasters[i], devmasters[i]); execute_command(0, "ip link set %s_slave_0 master %s0", devmasters[i], devmasters[i]); execute_command(0, "ip link set %s_slave_1 master %s0", devmasters[i], devmasters[i]); execute_command(0, "ip link set veth0_to_%s up", devmasters[i]); execute_command(0, "ip link set veth1_to_%s up", devmasters[i]); } execute_command(0, "ip link set bridge_slave_0 up"); execute_command(0, "ip link set bridge_slave_1 up"); for (i = 0; i < sizeof(devnames) / (sizeof(devnames[0])); i++) { char addr[32]; snprintf_check(addr, sizeof(addr), DEV_IPV4, i + 10); execute_command(0, "ip -4 addr add %s/24 dev %s", addr, devnames[i]); snprintf_check(addr, sizeof(addr), DEV_IPV6, i + 10); execute_command(0, "ip -6 addr add %s/120 dev %s", addr, devnames[i]); snprintf_check(addr, sizeof(addr), DEV_MAC, i + 10); execute_command(0, "ip link set dev %s address %s", devnames[i], addr); execute_command(0, "ip link set dev %s up", devnames[i]); } } #define MAX_FRAGS 4 struct vnet_fragmentation { uint32_t full; uint32_t count; uint32_t frags[MAX_FRAGS]; }; static uintptr_t syz_emit_ethernet(uintptr_t a0, uintptr_t a1, uintptr_t a2) { if (tunfd < 0) return (uintptr_t)-1; uint32_t length = a0; char* data = (char*)a1; struct vnet_fragmentation* frags = (struct vnet_fragmentation*)a2; struct iovec vecs[MAX_FRAGS + 1]; uint32_t nfrags = 0; if (!tun_frags_enabled || frags == NULL) { vecs[nfrags].iov_base = data; vecs[nfrags].iov_len = length; nfrags++; } else { bool full = true; uint32_t i, count = 0; full = frags->full; count = frags->count; if (count > MAX_FRAGS) count = MAX_FRAGS; for (i = 0; i < count && length != 0; i++) { uint32_t size = 0; size = frags->frags[i]; if (size > length) size = length; vecs[nfrags].iov_base = data; vecs[nfrags].iov_len = size; nfrags++; data += size; length -= size; } if (length != 0 && (full || nfrags == 0)) { vecs[nfrags].iov_base = data; vecs[nfrags].iov_len = length; nfrags++; } } return writev(tunfd, vecs, nfrags); } static void loop(); static void sandbox_common() { prctl(PR_SET_PDEATHSIG, SIGKILL, 0, 0, 0); setpgrp(); setsid(); struct rlimit rlim; rlim.rlim_cur = rlim.rlim_max = 128 << 20; setrlimit(RLIMIT_AS, &rlim); rlim.rlim_cur = rlim.rlim_max = 8 << 20; setrlimit(RLIMIT_MEMLOCK, &rlim); rlim.rlim_cur = rlim.rlim_max = 32 << 20; setrlimit(RLIMIT_FSIZE, &rlim); rlim.rlim_cur = rlim.rlim_max = 1 << 20; setrlimit(RLIMIT_STACK, &rlim); rlim.rlim_cur = rlim.rlim_max = 0; setrlimit(RLIMIT_CORE, &rlim); if (unshare(CLONE_NEWNS)) { } if (unshare(CLONE_NEWIPC)) { } if (unshare(0x02000000)) { } if (unshare(CLONE_NEWUTS)) { } if (unshare(CLONE_SYSVSEM)) { } } static int do_sandbox_none(void) { if (unshare(CLONE_NEWPID)) { } int pid = fork(); if (pid < 0) fail("sandbox fork failed"); if (pid) return pid; sandbox_common(); if (unshare(CLONE_NEWNET)) { } initialize_tun(); initialize_netdevices(); loop(); doexit(1); } static void execute_one(); extern unsigned long long procid; void loop() { while (1) { execute_one(); } } uint64_t r[1] = {0xffffffffffffffff}; void execute_one() { long res = 0; memcpy((void*)0x20000040, "./file0", 8); syscall(__NR_chroot, 0x20000040); *(uint8_t*)0x20000000 = -1; *(uint8_t*)0x20000001 = -1; *(uint8_t*)0x20000002 = -1; *(uint8_t*)0x20000003 = -1; *(uint8_t*)0x20000004 = -1; *(uint8_t*)0x20000005 = -1; *(uint8_t*)0x20000006 = 0xaa; *(uint8_t*)0x20000007 = 0xaa; *(uint8_t*)0x20000008 = 0xaa; *(uint8_t*)0x20000009 = 0xaa; *(uint8_t*)0x2000000a = 0xaa; *(uint8_t*)0x2000000b = 0xaa; *(uint16_t*)0x2000000c = htobe16(0x800); STORE_BY_BITMASK(uint8_t, 0x2000000e, 0x10, 0, 4); STORE_BY_BITMASK(uint8_t, 0x2000000e, 4, 4, 4); STORE_BY_BITMASK(uint8_t, 0x2000000f, 0, 0, 2); STORE_BY_BITMASK(uint8_t, 0x2000000f, 0, 2, 6); *(uint16_t*)0x20000010 = htobe16(0x48); *(uint16_t*)0x20000012 = htobe16(0); *(uint16_t*)0x20000014 = htobe16(0); *(uint8_t*)0x20000016 = 0; *(uint8_t*)0x20000017 = 0; *(uint16_t*)0x20000018 = 0; *(uint32_t*)0x2000001a = htobe32(0); *(uint32_t*)0x2000001e = htobe32(0x7f000001); *(uint8_t*)0x20000022 = 0x44; *(uint8_t*)0x20000023 = 0x2c; *(uint8_t*)0x20000024 = 0; STORE_BY_BITMASK(uint8_t, 0x20000025, 0, 0, 4); STORE_BY_BITMASK(uint8_t, 0x20000025, 0, 4, 4); *(uint32_t*)0x20000026 = htobe32(0); *(uint32_t*)0x2000002a = htobe32(0); *(uint32_t*)0x2000002e = htobe32(0); *(uint32_t*)0x20000032 = htobe32(0); *(uint8_t*)0x20000036 = 0xac; *(uint8_t*)0x20000037 = 0x14; *(uint8_t*)0x20000038 = 0x14; *(uint8_t*)0x20000039 = 0; *(uint32_t*)0x2000003a = htobe32(0); *(uint32_t*)0x2000003e = htobe32(0); *(uint32_t*)0x20000042 = htobe32(0); *(uint32_t*)0x20000046 = htobe32(-1); *(uint32_t*)0x2000004a = htobe32(0); *(uint8_t*)0x2000004e = 0; *(uint8_t*)0x2000004f = 0; *(uint16_t*)0x20000050 = 0; *(uint32_t*)0x20000052 = htobe32(0xe0000002); *(uint32_t*)0x20775000 = 0; *(uint32_t*)0x20775004 = 0; *(uint32_t*)0x20775008 = 0; *(uint32_t*)0x2077500c = 0; *(uint32_t*)0x20775010 = 0; *(uint32_t*)0x20775014 = 0; struct csum_inet csum_1; csum_inet_init(&csum_1); csum_inet_update(&csum_1, (const uint8_t*)0x2000004e, 8); *(uint16_t*)0x20000050 = csum_inet_digest(&csum_1); struct csum_inet csum_2; csum_inet_init(&csum_2); csum_inet_update(&csum_2, (const uint8_t*)0x2000000e, 64); *(uint16_t*)0x20000018 = csum_inet_digest(&csum_2); syz_emit_ethernet(0x56, 0x20000000, 0x20775000); res = syscall(__NR_socket, 0xa, 3, 0x3c); if (res != -1) r[0] = res; *(uint16_t*)0x20039000 = 0xa; *(uint16_t*)0x20039002 = htobe16(0); *(uint32_t*)0x20039004 = 0; *(uint8_t*)0x20039008 = -1; *(uint8_t*)0x20039009 = 2; *(uint8_t*)0x2003900a = 0; *(uint8_t*)0x2003900b = 0; *(uint8_t*)0x2003900c = 0; *(uint8_t*)0x2003900d = 0; *(uint8_t*)0x2003900e = 0; *(uint8_t*)0x2003900f = 0; *(uint8_t*)0x20039010 = 0; *(uint8_t*)0x20039011 = 0; *(uint8_t*)0x20039012 = 0; *(uint8_t*)0x20039013 = 0; *(uint8_t*)0x20039014 = 0; *(uint8_t*)0x20039015 = 0; *(uint8_t*)0x20039016 = 0; *(uint8_t*)0x20039017 = 1; *(uint32_t*)0x20039018 = 9; syscall(__NR_connect, r[0], 0x20039000, 0x1c); *(uint64_t*)0x20009fc8 = 0; *(uint32_t*)0x20009fd0 = 0; *(uint64_t*)0x20009fd8 = 0x2002c000; *(uint64_t*)0x2002c000 = 0x20000000; *(uint64_t*)0x2002c008 = 0; *(uint64_t*)0x20009fe0 = 1; *(uint64_t*)0x20009fe8 = 0x20021000; *(uint64_t*)0x20009ff0 = 0; *(uint32_t*)0x20009ff8 = 0; syscall(__NR_sendmsg, r[0], 0x20009fc8, 0xc100); *(uint64_t*)0x20000a40 = 0; *(uint32_t*)0x20000a48 = 0; *(uint64_t*)0x20000a50 = 0x20000380; *(uint64_t*)0x20000380 = 0x20000040; *(uint64_t*)0x20000388 = 0; *(uint64_t*)0x20000390 = 0x20000180; memcpy((void*)0x20000180, "\xbe\x8b\x41\x85\x39\x34\xbc\xef\xc6\x22\xa5\xa7\x29\x51\xcf\x8d\xc0" "\xee\xcd\xe8\x91\x05\x12\x50\xca\x60\x05\x15\xac\x47\x65\x2f\x16\x74" "\x42\x31\xe7\xed\x7b\xc3\x6f\x22\xe4\x41\xfd\x42\x5e\x7c\x3a\xb1\xd1" "\xe3\xdd\x54\x94\x40\x1e\xf0\xae\x5b\xf6\x3b\x57\x38\x6d\x30\x2b\x4c" "\xdf\xec\x4d\x2c\x4c\x10\x00\x31\x7d\xd8\x3d\xde\x0d\x81\xca\x1b\xa0" "\xa9\x16\x36\xa4\x2c\x44\x23\x29\xa1\x4c\x9d\xcc\x19\x1f\x09\x6d\x1a" "\xb3\x14\x52\x49\x59\xe8\xca\xe7\x55\xb8\x98\xd8\x1d\xfb\x9d\xbb\x6b" "\xd3\x95\x68\x3b\x75\x62\x60\x8f\x57\xa0\x9b\x7b\xa6\xee\x94\x36\xc2" "\xa2\xec\x32\x50\xf6\x9c\x0b\xda\x3c\x98\x6e\x13\x5f\xba\x64\x7d\x2b" "\xea\x00\x09\x10\x6a\x6e\x41\xf7\xd7\x8b\x04\x3a\xb8\xca\x52\x81\xe0" "\xa7\xad\x6c\x1c\x82\xce\xe2\x6d\xea\xf9\xc1\xf9\xf2\x82\x40\x0b\x99" "\xbf\x6a\x00\xec\xd9\xb6\xe8\x9c\x89\xae\x9a\x1e\xfd\x0b\xbb\x24\x0f" "\x0a\xfb\x30\xb7\x53\xa5\x46\x9d\x77\x66\x03\x8d\x03\xaa\x7e\x31\x5e" "\x88\xb1\xa1\x4a\x85\xd7", 227); *(uint64_t*)0x20000398 = 0xe3; *(uint64_t*)0x20000a58 = 2; *(uint64_t*)0x20000a60 = 0x20003b40; *(uint64_t*)0x20000a68 = 0; *(uint32_t*)0x20000a70 = 0; syscall(__NR_sendmsg, r[0], 0x20000a40, 0); } int main() { syscall(__NR_mmap, 0x20000000, 0x1000000, 3, 0x32, -1, 0); for (;;) { int pid = do_sandbox_none(); int status = 0; while (waitpid(pid, &status, __WALL) != pid) { } } }