554e6f3240
The metag ABI has stacks growing upwards so clone expects the stack argument to point at the bottom of the stack instead of the top. * test/threaded_execve.c [__metag__]: Define clone2 differently to avoid a segfault at runtime. Signed-off-by: James Hogan <james.hogan@imgtec.com>
148 lines
3.9 KiB
C
148 lines
3.9 KiB
C
/*
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* Create NUM_THREADS threads which print "1" and sleep in pause().
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* Then create another thread which prints "2", and re-execs the program.
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* The leader then either sleeps in pause(), or exits if $LEADER_EXIT is set.
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* This triggers "execve'ed thread replaces thread leader" case.
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*
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* gcc -Wall -Os -o threaded_execve threaded_execve.c
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*
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* Try running it under strace like this:
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*
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* # Should not be confused by traced execve-ing thread
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* # replacing traced leader:
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* strace -oLOG -f ./threaded_execve
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*
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* # Same, but different output mode. Output after execve
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* # should go into leader's LOG.<pid> file, not into execve'ed
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* # thread's log file:
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* strace -oLOG -ff ./threaded_execve
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*
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* # Should not be confused by non-traced execve-ing thread
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* # replacing traced leader:
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* strace -oLOG ./threaded_execve
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* ^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
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* In Linux 3.2, non-traced execve-ing thread does not
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* become traced after execve, even though it has pid == leader's pid
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* after execve. And yet, strace's waitpid doesn't return ECHILD.
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*
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* # Run for NUM seconds, not just one second.
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* # Watch top to check for memory leaks in strace:
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* strace -oLOG -f ./threaded_execve <NUM>
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*
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*/
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#define NUM_THREADS 1
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#define _GNU_SOURCE 1
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#include <assert.h>
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#include <limits.h>
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#include <stddef.h>
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#include <stdlib.h>
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#include <string.h>
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#include <unistd.h>
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#include <errno.h>
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#include <stdio.h>
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#include <sched.h>
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#include <signal.h>
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#include <dirent.h>
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#include <fcntl.h>
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#include <sys/types.h>
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#include <sys/wait.h>
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#include <sys/syscall.h>
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/* Define clone2 for all arches */
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#ifdef __ia64__
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extern int __clone2(int (*fn) (void *), void *child_stack_base,
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size_t stack_size, int flags, void *arg, ...);
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#define clone2 __clone2
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#elif defined(__metag__)
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#define clone2(func, stack_base, size, flags, arg...) \
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clone(func, stack_base, flags, arg)
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#else
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#define clone2(func, stack_base, size, flags, arg...) \
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clone(func, (stack_base) + (size), flags, arg)
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#endif
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/* Direct calls to syscalls, avoiding libc wrappers */
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#define syscall_tgkill(pid, tid, sig) syscall(__NR_tgkill, (pid), (tid), (sig))
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#define syscall_getpid() syscall(__NR_getpid)
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#define syscall_gettid() syscall(__NR_gettid)
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#define syscall_exit(v) syscall(__NR_exit, (v));
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static char my_name[PATH_MAX];
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static int leader_final_action;
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static int
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thread1(void *unused)
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{
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write(1, "1", 1);
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for(;;) pause();
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return 0;
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}
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static int
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thread2(void *unused)
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{
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char buf[64];
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sprintf(buf, "%d", leader_final_action);
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write(1, "2", 1);
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usleep(20*1000);
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/* This fails with ENOENT if leader has exited by now! :) */
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execl("/proc/self/exe", "exe", "exe", buf, NULL);
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/* So fall back to resolved name */
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execl(my_name, "exe", "exe", buf, NULL);
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for(;;) pause();
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return 0;
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}
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static void
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thread_leader(void)
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{
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/* malloc gives sufficiently aligned buffer.
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* long buf[] does not! (on ia64).
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*/
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int cnt = NUM_THREADS;
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while (--cnt >= 0) {
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/* As seen in pthread_create(): */
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clone2(thread1, malloc(16 * 1024), 16 * 1024, 0
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| CLONE_VM
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| CLONE_FS
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| CLONE_FILES | CLONE_SIGHAND | CLONE_THREAD | CLONE_SYSVSEM
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| 0 /* no signal to send on death */
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, NULL);
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usleep(20*1000);
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}
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clone2(thread2, malloc(16 * 1024), 16 * 1024, 0
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| CLONE_VM
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| CLONE_FS
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| CLONE_FILES | CLONE_SIGHAND | CLONE_THREAD | CLONE_SYSVSEM
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| 0 /* no signal to send on death */
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, NULL);
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/* Various states leader can be while other thread execve's: */
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switch (leader_final_action % 3) {
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case 0: syscall_exit(42); /* leader is dead */
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case 1: for(;;) pause(); /* leader is in syscall */
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default: for(;;) continue; /* leader is in userspace */
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}
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}
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int
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main(int argc, char **argv)
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{
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if (readlink("/proc/self/exe", my_name, sizeof(my_name)-1) <= 0)
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return 1;
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setbuf(stdout, NULL);
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if (argv[1] && strcmp(argv[1], "exe") == 0) {
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leader_final_action = atoi(argv[2]) + 1;
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thread_leader();
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}
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printf("%d: thread leader\n", getpid());
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alarm(argv[1] ? atoi(argv[1]) : 1);
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thread_leader();
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return 0;
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}
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