blob: e1ab4e6c07eed27ead1409853d66d936d05390c7 [file] [log] [blame]
// KMSAN: uninit-value in copy_page_to_iter (2)
// https://syzkaller.appspot.com/bug?id=6b9583639c32480350009d25789358dc6e4b6c88
// status:invalid
// autogenerated by syzkaller (http://github.com/google/syzkaller)
#define _GNU_SOURCE
#include <endian.h>
#include <linux/futex.h>
#include <pthread.h>
#include <stdint.h>
#include <stdlib.h>
#include <string.h>
#include <sys/syscall.h>
#include <unistd.h>
struct thread_t {
int created, running, call;
pthread_t th;
};
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 (;;) {
while (!__atomic_load_n(&th->running, __ATOMIC_ACQUIRE))
syscall(SYS_futex, &th->running, FUTEX_WAIT, 0, 0);
execute_call(th->call);
__atomic_fetch_sub(&running, 1, __ATOMIC_RELAXED);
__atomic_store_n(&th->running, 0, __ATOMIC_RELEASE);
syscall(SYS_futex, &th->running, FUTEX_WAKE);
}
return 0;
}
static void execute(int num_calls)
{
int call, thread;
running = 0;
for (call = 0; call < num_calls; call++) {
for (thread = 0; thread < sizeof(threads) / sizeof(threads[0]); thread++) {
struct thread_t* th = &threads[thread];
if (!th->created) {
th->created = 1;
pthread_attr_t attr;
pthread_attr_init(&attr);
pthread_attr_setstacksize(&attr, 128 << 10);
pthread_create(&th->th, &attr, thr, th);
}
if (!__atomic_load_n(&th->running, __ATOMIC_ACQUIRE)) {
th->call = call;
__atomic_fetch_add(&running, 1, __ATOMIC_RELAXED);
__atomic_store_n(&th->running, 1, __ATOMIC_RELEASE);
syscall(SYS_futex, &th->running, FUTEX_WAKE);
struct timespec ts;
ts.tv_sec = 0;
ts.tv_nsec = 20 * 1000 * 1000;
syscall(SYS_futex, &th->running, FUTEX_WAIT, 1, &ts);
if (running)
usleep((call == num_calls - 1) ? 10000 : 1000);
break;
}
}
}
}
uint64_t r[1] = {0x0};
void execute_call(int call)
{
long res;
switch (call) {
case 0:
res = syscall(__NR_getpid);
if (res != -1)
r[0] = res;
break;
case 1:
*(uint64_t*)0x20001040 = 0x20000040;
*(uint64_t*)0x20001048 = 0x1000;
*(uint64_t*)0x20001480 = 0x20001540;
*(uint64_t*)0x20001488 = 5;
*(uint64_t*)0x20001490 = 0x20001500;
*(uint64_t*)0x20001498 = 0x2d;
*(uint64_t*)0x200014a0 = 0x20001100;
*(uint64_t*)0x200014a8 = 0xb7;
*(uint64_t*)0x200014b0 = 0x200011c0;
*(uint64_t*)0x200014b8 = 0x9c;
*(uint64_t*)0x200014c0 = 0x20001280;
*(uint64_t*)0x200014c8 = 0x1c;
*(uint64_t*)0x200014d0 = 0x200012c0;
*(uint64_t*)0x200014d8 = 0xd2;
*(uint64_t*)0x200014e0 = 0x200013c0;
*(uint64_t*)0x200014e8 = 0x81;
syscall(__NR_process_vm_readv, r[0], 0x20001040, 1, 0x20001480, 5, 0);
break;
}
}
void loop()
{
execute(2);
}
int main()
{
syscall(__NR_mmap, 0x20000000, 0x1000000, 3, 0x32, -1, 0);
loop();
return 0;
}