mirror of
https://github.com/fluencelabs/musl
synced 2025-05-02 02:22:15 +00:00
235 lines
6.1 KiB
C
235 lines
6.1 KiB
C
#include "pthread_impl.h"
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#include "stdio_impl.h"
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#include <sys/mman.h>
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static void dummy_0()
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{
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}
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weak_alias(dummy_0, __acquire_ptc);
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weak_alias(dummy_0, __release_ptc);
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weak_alias(dummy_0, __pthread_tsd_run_dtors);
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_Noreturn void pthread_exit(void *result)
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{
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pthread_t self = pthread_self();
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sigset_t set;
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self->result = result;
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while (self->cancelbuf) {
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void (*f)(void *) = self->cancelbuf->__f;
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void *x = self->cancelbuf->__x;
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self->cancelbuf = self->cancelbuf->__next;
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f(x);
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}
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__pthread_tsd_run_dtors();
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__lock(self->exitlock);
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/* Mark this thread dead before decrementing count */
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__lock(self->killlock);
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self->dead = 1;
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__unlock(self->killlock);
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/* Block all signals before decrementing the live thread count.
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* This is important to ensure that dynamically allocated TLS
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* is not under-allocated/over-committed, and possibly for other
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* reasons as well. */
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__syscall(SYS_rt_sigprocmask, SIG_BLOCK, SIGALL_SET, &set, _NSIG/8);
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/* It's impossible to determine whether this is "the last thread"
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* until performing the atomic decrement, since multiple threads
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* could exit at the same time. For the last thread, revert the
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* decrement and unblock signals to give the atexit handlers and
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* stdio cleanup code a consistent state. */
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if (a_fetch_add(&libc.threads_minus_1, -1)==0) {
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libc.threads_minus_1 = 0;
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__syscall(SYS_rt_sigprocmask, SIG_SETMASK, &set, 0, _NSIG/8);
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exit(0);
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}
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if (self->detached && self->map_base) {
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/* Detached threads must avoid the kernel clear_child_tid
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* feature, since the virtual address will have been
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* unmapped and possibly already reused by a new mapping
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* at the time the kernel would perform the write. In
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* the case of threads that started out detached, the
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* initial clone flags are correct, but if the thread was
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* detached later (== 2), we need to clear it here. */
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if (self->detached == 2) __syscall(SYS_set_tid_address, 0);
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/* The following call unmaps the thread's stack mapping
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* and then exits without touching the stack. */
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__unmapself(self->map_base, self->map_size);
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}
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for (;;) __syscall(SYS_exit, 0);
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}
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void __do_cleanup_push(struct __ptcb *cb)
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{
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struct pthread *self = pthread_self();
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cb->__next = self->cancelbuf;
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self->cancelbuf = cb;
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}
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void __do_cleanup_pop(struct __ptcb *cb)
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{
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__pthread_self()->cancelbuf = cb->__next;
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}
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static int start(void *p)
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{
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pthread_t self = p;
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if (self->startlock[0]) {
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__wait(self->startlock, 0, 1, 1);
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if (self->startlock[0]) {
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self->detached = 2;
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pthread_exit(0);
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}
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__syscall(SYS_rt_sigprocmask, SIG_SETMASK,
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self->sigmask, 0, _NSIG/8);
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}
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if (self->unblock_cancel)
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__syscall(SYS_rt_sigprocmask, SIG_UNBLOCK,
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SIGPT_SET, 0, _NSIG/8);
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pthread_exit(self->start(self->start_arg));
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return 0;
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}
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#define ROUND(x) (((x)+PAGE_SIZE-1)&-PAGE_SIZE)
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/* pthread_key_create.c overrides this */
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static const size_t dummy = 0;
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weak_alias(dummy, __pthread_tsd_size);
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static FILE *const dummy_file = 0;
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weak_alias(dummy_file, __stdin_used);
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weak_alias(dummy_file, __stdout_used);
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weak_alias(dummy_file, __stderr_used);
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static void init_file_lock(FILE *f)
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{
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if (f && f->lock<0) f->lock = 0;
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}
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void *__copy_tls(unsigned char *);
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int pthread_create(pthread_t *restrict res, const pthread_attr_t *restrict attrp, void *(*entry)(void *), void *restrict arg)
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{
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int ret;
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size_t size, guard;
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struct pthread *self = pthread_self(), *new;
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unsigned char *map = 0, *stack = 0, *tsd = 0, *stack_limit;
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unsigned flags = 0x7d8f00;
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int do_sched = 0;
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pthread_attr_t attr = {0};
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if (!self) return ENOSYS;
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if (!libc.threaded) {
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for (FILE *f=libc.ofl_head; f; f=f->next)
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init_file_lock(f);
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init_file_lock(__stdin_used);
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init_file_lock(__stdout_used);
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init_file_lock(__stderr_used);
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libc.threaded = 1;
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}
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if (attrp) attr = *attrp;
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__acquire_ptc();
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if (attr._a_stackaddr) {
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size_t need = libc.tls_size + __pthread_tsd_size;
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size = attr._a_stacksize + DEFAULT_STACK_SIZE;
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stack = (void *)(attr._a_stackaddr & -16);
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stack_limit = (void *)(attr._a_stackaddr - size);
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/* Use application-provided stack for TLS only when
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* it does not take more than ~12% or 2k of the
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* application's stack space. */
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if (need < size/8 && need < 2048) {
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tsd = stack - __pthread_tsd_size;
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stack = tsd - libc.tls_size;
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} else {
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size = ROUND(need);
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guard = 0;
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}
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} else {
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guard = ROUND(DEFAULT_GUARD_SIZE + attr._a_guardsize);
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size = guard + ROUND(DEFAULT_STACK_SIZE + attr._a_stacksize
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+ libc.tls_size + __pthread_tsd_size);
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}
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if (!tsd) {
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if (guard) {
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map = mmap(0, size, PROT_NONE, MAP_PRIVATE|MAP_ANON, -1, 0);
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if (map == MAP_FAILED) goto fail;
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if (mprotect(map+guard, size-guard, PROT_READ|PROT_WRITE)) {
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munmap(map, size);
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goto fail;
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}
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} else {
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map = mmap(0, size, PROT_READ|PROT_WRITE, MAP_PRIVATE|MAP_ANON, -1, 0);
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if (map == MAP_FAILED) goto fail;
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}
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tsd = map + size - __pthread_tsd_size;
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if (!stack) {
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stack = tsd - libc.tls_size;
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stack_limit = map + guard;
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}
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}
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new = __copy_tls(tsd - libc.tls_size);
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new->map_base = map;
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new->map_size = size;
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new->stack = stack;
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new->stack_size = stack - stack_limit;
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new->pid = self->pid;
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new->errno_ptr = &new->errno_val;
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new->start = entry;
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new->start_arg = arg;
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new->self = new;
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new->tsd = (void *)tsd;
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if (attr._a_detach) {
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new->detached = 1;
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flags -= 0x200000;
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}
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if (attr._a_sched) {
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do_sched = new->startlock[0] = 1;
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__syscall(SYS_rt_sigprocmask, SIG_BLOCK,
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SIGALL_SET, new->sigmask, _NSIG/8);
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}
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new->unblock_cancel = self->cancel;
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new->canary = self->canary;
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a_inc(&libc.threads_minus_1);
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ret = __clone(start, stack, flags, new, &new->tid, TP_ADJ(new), &new->tid);
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__release_ptc();
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if (do_sched) {
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__syscall(SYS_rt_sigprocmask, SIG_SETMASK,
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new->sigmask, 0, _NSIG/8);
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}
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if (ret < 0) {
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a_dec(&libc.threads_minus_1);
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if (map) munmap(map, size);
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return EAGAIN;
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}
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if (do_sched) {
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ret = __syscall(SYS_sched_setscheduler, new->tid,
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attr._a_policy, &attr._a_prio);
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a_store(new->startlock, ret<0 ? 2 : 0);
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__wake(new->startlock, 1, 1);
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if (ret < 0) return -ret;
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}
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*res = new;
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return 0;
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fail:
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__release_ptc();
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return EAGAIN;
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}
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