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https://github.com/jart/cosmopolitan.git
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2f48a02b44
Recursive mutexes now go as fast as normal mutexes. The tradeoff is they are no longer safe to use in signal handlers. However you can still have signal safe mutexes if you set your mutex to both recursive and pshared. You can also make functions that use recursive mutexes signal safe using sigprocmask to ensure recursion doesn't happen due to any signal handler The impact of this change is that, on Windows, many functions which edit the file descriptor table rely on recursive mutexes, e.g. open(). If you develop your app so it uses pread() and pwrite() then your app should go very fast when performing a heavily multithreaded and contended workload For example, when scaling to 40+ cores, *NSYNC mutexes can go as much as 1000x faster (in CPU time) than the naive recursive lock implementation. Now recursive will use *NSYNC under the hood when it's possible to do so
164 lines
6.2 KiB
C
164 lines
6.2 KiB
C
/*-*- mode:c;indent-tabs-mode:nil;c-basic-offset:2;tab-width:8;coding:utf-8 -*-│
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│ vi: set et ft=c ts=2 sts=2 sw=2 fenc=utf-8 :vi │
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╞══════════════════════════════════════════════════════════════════════════════╡
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│ Copyright 2023 Justine Alexandra Roberts Tunney │
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│ │
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│ Permission to use, copy, modify, and/or distribute this software for │
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│ any purpose with or without fee is hereby granted, provided that the │
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│ above copyright notice and this permission notice appear in all copies. │
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│ │
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│ THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL │
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│ WARRANTIES WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED │
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│ WARRANTIES OF MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE │
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│ AUTHOR BE LIABLE FOR ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL │
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│ DAMAGES OR ANY DAMAGES WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR │
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│ PROFITS, WHETHER IN AN ACTION OF CONTRACT, NEGLIGENCE OR OTHER │
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│ TORTIOUS ACTION, ARISING OUT OF OR IN CONNECTION WITH THE USE OR │
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│ PERFORMANCE OF THIS SOFTWARE. │
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╚─────────────────────────────────────────────────────────────────────────────*/
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#include "libc/calls/calls.h"
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#include "libc/dce.h"
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#include "libc/errno.h"
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#include "libc/intrin/atomic.h"
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#include "libc/intrin/weaken.h"
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#include "libc/runtime/internal.h"
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#include "libc/thread/lock.h"
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#include "libc/thread/thread.h"
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#include "third_party/nsync/futex.internal.h"
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#include "third_party/nsync/mu.h"
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static errno_t pthread_mutex_trylock_spin(atomic_int *word) {
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if (!atomic_exchange_explicit(word, 1, memory_order_acquire))
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return 0;
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return EBUSY;
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}
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static errno_t pthread_mutex_trylock_drepper(atomic_int *futex) {
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int word = 0;
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if (atomic_compare_exchange_strong_explicit(
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futex, &word, 1, memory_order_acquire, memory_order_acquire))
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return 0;
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return EBUSY;
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}
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static errno_t pthread_mutex_trylock_recursive(pthread_mutex_t *mutex,
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uint64_t word) {
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uint64_t lock;
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int me = gettid();
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for (;;) {
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if (MUTEX_OWNER(word) == me) {
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if (MUTEX_TYPE(word) != PTHREAD_MUTEX_ERRORCHECK) {
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if (MUTEX_DEPTH(word) < MUTEX_DEPTH_MAX) {
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if (atomic_compare_exchange_weak_explicit(
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&mutex->_word, &word, MUTEX_INC_DEPTH(word),
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memory_order_relaxed, memory_order_relaxed))
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return 0;
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continue;
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} else {
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return EAGAIN;
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}
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} else {
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return EDEADLK;
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}
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}
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word = MUTEX_UNLOCK(word);
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lock = MUTEX_LOCK(word);
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lock = MUTEX_SET_OWNER(lock, me);
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if (atomic_compare_exchange_weak_explicit(&mutex->_word, &word, lock,
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memory_order_acquire,
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memory_order_relaxed)) {
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mutex->_pid = __pid;
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return 0;
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}
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return EBUSY;
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}
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}
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static errno_t pthread_mutex_trylock_recursive_nsync(pthread_mutex_t *mutex,
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uint64_t word) {
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int me = gettid();
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for (;;) {
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if (MUTEX_OWNER(word) == me) {
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if (MUTEX_TYPE(word) != PTHREAD_MUTEX_ERRORCHECK) {
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if (MUTEX_DEPTH(word) < MUTEX_DEPTH_MAX) {
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if (atomic_compare_exchange_weak_explicit(
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&mutex->_word, &word, MUTEX_INC_DEPTH(word),
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memory_order_relaxed, memory_order_relaxed))
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return 0;
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continue;
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} else {
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return EAGAIN;
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}
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} else {
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return EDEADLK;
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}
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}
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if (_weaken(nsync_mu_trylock)((nsync_mu *)mutex->_nsyncx)) {
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word = MUTEX_UNLOCK(word);
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word = MUTEX_LOCK(word);
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word = MUTEX_SET_OWNER(word, me);
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mutex->_word = word;
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mutex->_pid = __pid;
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return 0;
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} else {
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return EBUSY;
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}
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}
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}
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/**
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* Attempts acquiring lock.
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*
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* Unlike pthread_mutex_lock() this function won't block and instead
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* returns an error immediately if the lock couldn't be acquired.
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*
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* @return 0 if lock was acquired, otherwise an errno
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* @raise EAGAIN if maximum number of recursive locks is held
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* @raise EBUSY if lock is currently held in read or write mode
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* @raise EINVAL if `mutex` doesn't refer to an initialized lock
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* @raise EDEADLK if `mutex` is `PTHREAD_MUTEX_ERRORCHECK` and the
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* current thread already holds this mutex
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*/
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errno_t pthread_mutex_trylock(pthread_mutex_t *mutex) {
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// get current state of lock
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uint64_t word = atomic_load_explicit(&mutex->_word, memory_order_relaxed);
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#if PTHREAD_USE_NSYNC
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// use superior mutexes if possible
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if (MUTEX_TYPE(word) == PTHREAD_MUTEX_NORMAL &&
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MUTEX_PSHARED(word) == PTHREAD_PROCESS_PRIVATE && //
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_weaken(nsync_mu_trylock)) {
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// on apple silicon we should just put our faith in ulock
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// otherwise *nsync gets struck down by the eye of sauron
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if (!IsXnuSilicon()) {
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if (_weaken(nsync_mu_trylock)((nsync_mu *)mutex)) {
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return 0;
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} else {
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return EBUSY;
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}
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}
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}
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#endif
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// handle normal mutexes
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if (MUTEX_TYPE(word) == PTHREAD_MUTEX_NORMAL) {
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if (_weaken(nsync_futex_wait_)) {
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return pthread_mutex_trylock_drepper(&mutex->_futex);
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} else {
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return pthread_mutex_trylock_spin(&mutex->_futex);
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}
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}
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// handle recursive and error checking mutexes
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#if PTHREAD_USE_NSYNC
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if (_weaken(nsync_mu_trylock) &&
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MUTEX_PSHARED(word) == PTHREAD_PROCESS_PRIVATE) {
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return pthread_mutex_trylock_recursive_nsync(mutex, word);
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} else {
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return pthread_mutex_trylock_recursive(mutex, word);
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}
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#else
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return pthread_mutex_trylock_recursive(mutex, word);
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#endif
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}
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