int main(int argc, char **argv)
{
    pthread_t thr;
    pthread_attr_t attr;

    fprintf(stderr,"crasher: " __TIME__ "!@\n");
    fprintf(stderr,"crasher: init pid=%d tid=%d\n", getpid(), gettid());

    if(argc > 1) {
        if(!strcmp(argv[1],"nostack")) crashnostack();
        if(!strcmp(argv[1],"ctest")) return ctest();
        if(!strcmp(argv[1],"exit")) exit(1);
        if(!strcmp(argv[1],"abort")) maybeabort();
        
        pthread_attr_init(&attr);
        pthread_attr_setdetachstate(&attr, PTHREAD_CREATE_DETACHED);
        pthread_create(&thr, &attr, test_thread, 0);
        while(1) sleep(1);
    } else {
        crash1();
//        *((int*) 0) = 42;
    }
    
    return 0;
}
Example #2
0
void do_if (void)
{	header *cond;
	int flag;
	if (!udfon)
	{	output("If only allowed in functions!\n"); error=111; return;
	}
	another : cond=scan(); if (error) return;
	flag=ctest(cond); if (error) return;
	if (!flag)
		if (scan_else()) goto another;
}
Example #3
0
static int do_action(const char* arg)
{
    fprintf(stderr,"crasher: init pid=%d tid=%d\n", getpid(), gettid());

    if (!strncmp(arg, "thread-", strlen("thread-"))) {
        return do_action_on_thread(arg + strlen("thread-"));
    } else if (!strcmp(arg,"smash-stack")) {
        return smash_stack(42);
    } else if (!strcmp(arg,"stack-overflow")) {
        overflow_stack(NULL);
    } else if (!strcmp(arg,"nostack")) {
        crashnostack();
    } else if (!strcmp(arg,"ctest")) {
        return ctest();
    } else if (!strcmp(arg,"exit")) {
        exit(1);
    } else if (!strcmp(arg,"crash")) {
        return crash(42);
    } else if (!strcmp(arg,"abort")) {
        maybeabort();
    } else if (!strcmp(arg, "heap-usage")) {
        abuse_heap();
    }

    fprintf(stderr, "%s OP\n", __progname);
    fprintf(stderr, "where OP is:\n");
    fprintf(stderr, "  smash-stack     overwrite a stack-guard canary\n");
    fprintf(stderr, "  stack-overflow  recurse until the stack overflows\n");
    fprintf(stderr, "  heap-corruption cause a libc abort by corrupting the heap\n");
    fprintf(stderr, "  heap-usage      cause a libc abort by abusing a heap function\n");
    fprintf(stderr, "  nostack         crash with a NULL stack pointer\n");
    fprintf(stderr, "  ctest           (obsoleted by thread-crash?)\n");
    fprintf(stderr, "  exit            call exit(1)\n");
    fprintf(stderr, "  crash           cause a SIGSEGV\n");
    fprintf(stderr, "  abort           call abort()\n");
    fprintf(stderr, "prefix any of the above with 'thread-' to not run\n");
    fprintf(stderr, "on the process' main thread.\n");
    return EXIT_SUCCESS;
}
static int do_action(const char* arg)
{
    fprintf(stderr,"crasher: init pid=%d tid=%d\n", getpid(), gettid());

    if (!strncmp(arg, "thread-", strlen("thread-"))) {
        return do_action_on_thread(arg + strlen("thread-"));
    } else if (!strcmp(arg, "SIGSEGV-non-null")) {
        sigsegv_non_null();
    } else if (!strcmp(arg, "smash-stack")) {
        volatile int len = 128;
        return smash_stack(&len);
    } else if (!strcmp(arg, "stack-overflow")) {
        overflow_stack(NULL);
    } else if (!strcmp(arg, "nostack")) {
        crashnostack();
    } else if (!strcmp(arg, "ctest")) {
        return ctest();
    } else if (!strcmp(arg, "exit")) {
        exit(1);
    } else if (!strcmp(arg, "crash") || !strcmp(arg, "SIGSEGV")) {
        return crash(42);
    } else if (!strcmp(arg, "abort")) {
        maybe_abort();
    } else if (!strcmp(arg, "assert")) {
        __assert("some_file.c", 123, "false");
    } else if (!strcmp(arg, "assert2")) {
        __assert2("some_file.c", 123, "some_function", "false");
    } else if (!strcmp(arg, "fortify")) {
        char buf[10];
        __read_chk(-1, buf, 32, 10);
        while (true) pause();
    } else if (!strcmp(arg, "LOG_ALWAYS_FATAL")) {
        LOG_ALWAYS_FATAL("hello %s", "world");
    } else if (!strcmp(arg, "LOG_ALWAYS_FATAL_IF")) {
        LOG_ALWAYS_FATAL_IF(true, "hello %s", "world");
    } else if (!strcmp(arg, "SIGFPE")) {
        raise(SIGFPE);
        return EXIT_SUCCESS;
    } else if (!strcmp(arg, "SIGTRAP")) {
        raise(SIGTRAP);
        return EXIT_SUCCESS;
    } else if (!strcmp(arg, "heap-usage")) {
        abuse_heap();
    } else if (!strcmp(arg, "SIGSEGV-unmapped")) {
        char* map = reinterpret_cast<char*>(mmap(NULL, sizeof(int), PROT_READ | PROT_WRITE, MAP_SHARED | MAP_ANONYMOUS, -1, 0));
        munmap(map, sizeof(int));
        map[0] = '8';
    }

    fprintf(stderr, "%s OP\n", __progname);
    fprintf(stderr, "where OP is:\n");
    fprintf(stderr, "  smash-stack           overwrite a stack-guard canary\n");
    fprintf(stderr, "  stack-overflow        recurse until the stack overflows\n");
    fprintf(stderr, "  heap-corruption       cause a libc abort by corrupting the heap\n");
    fprintf(stderr, "  heap-usage            cause a libc abort by abusing a heap function\n");
    fprintf(stderr, "  nostack               crash with a NULL stack pointer\n");
    fprintf(stderr, "  ctest                 (obsoleted by thread-crash?)\n");
    fprintf(stderr, "  exit                  call exit(1)\n");
    fprintf(stderr, "  abort                 call abort()\n");
    fprintf(stderr, "  assert                call assert() without a function\n");
    fprintf(stderr, "  assert2               call assert() with a function\n");
    fprintf(stderr, "  fortify               fail a _FORTIFY_SOURCE check\n");
    fprintf(stderr, "  LOG_ALWAYS_FATAL      call LOG_ALWAYS_FATAL\n");
    fprintf(stderr, "  LOG_ALWAYS_FATAL_IF   call LOG_ALWAYS_FATAL\n");
    fprintf(stderr, "  SIGFPE                cause a SIGFPE\n");
    fprintf(stderr, "  SIGSEGV               cause a SIGSEGV at address 0x0 (synonym: crash)\n");
    fprintf(stderr, "  SIGSEGV-non-null      cause a SIGSEGV at a non-zero address\n");
    fprintf(stderr, "  SIGSEGV-unmapped      mmap/munmap a region of memory and then attempt to access it\n");
    fprintf(stderr, "  SIGTRAP               cause a SIGTRAP\n");
    fprintf(stderr, "prefix any of the above with 'thread-' to not run\n");
    fprintf(stderr, "on the process' main thread.\n");
    return EXIT_SUCCESS;
}