mirror of https://github.com/python/cpython
gh-125716: Use A Global Mutex When Initializing Global State For The _interpqueues Module (gh-125803)
This includes a drive-by cleanup in _queues_init() and _queues_fini(). This change also applies to the _interpchannels module.
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@ -28,6 +28,7 @@
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This module has the following process-global state:
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_globals (static struct globals):
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mutex (PyMutex)
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module_count (int)
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channels (struct _channels):
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numopen (int64_t)
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@ -1349,21 +1350,29 @@ typedef struct _channels {
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static void
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_channels_init(_channels *channels, PyThread_type_lock mutex)
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{
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channels->mutex = mutex;
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channels->head = NULL;
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channels->numopen = 0;
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channels->next_id = 0;
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assert(mutex != NULL);
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assert(channels->mutex == NULL);
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*channels = (_channels){
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.mutex = mutex,
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.head = NULL,
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.numopen = 0,
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.next_id = 0,
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};
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}
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static void
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_channels_fini(_channels *channels)
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_channels_fini(_channels *channels, PyThread_type_lock *p_mutex)
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{
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PyThread_type_lock mutex = channels->mutex;
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assert(mutex != NULL);
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PyThread_acquire_lock(mutex, WAIT_LOCK);
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assert(channels->numopen == 0);
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assert(channels->head == NULL);
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if (channels->mutex != NULL) {
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PyThread_free_lock(channels->mutex);
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channels->mutex = NULL;
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}
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*channels = (_channels){0};
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PyThread_release_lock(mutex);
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*p_mutex = mutex;
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}
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static int64_t
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@ -2812,6 +2821,7 @@ set_channelend_types(PyObject *mod, PyTypeObject *send, PyTypeObject *recv)
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the data that we need to share between interpreters, so it cannot
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hold PyObject values. */
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static struct globals {
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PyMutex mutex;
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int module_count;
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_channels channels;
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} _globals = {0};
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@ -2819,32 +2829,36 @@ static struct globals {
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static int
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_globals_init(void)
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{
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// XXX This isn't thread-safe.
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PyMutex_Lock(&_globals.mutex);
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assert(_globals.module_count >= 0);
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_globals.module_count++;
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if (_globals.module_count > 1) {
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// Already initialized.
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return 0;
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}
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assert(_globals.channels.mutex == NULL);
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if (_globals.module_count == 1) {
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// Called for the first time.
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PyThread_type_lock mutex = PyThread_allocate_lock();
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if (mutex == NULL) {
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_globals.module_count--;
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PyMutex_Unlock(&_globals.mutex);
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return ERR_CHANNELS_MUTEX_INIT;
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}
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_channels_init(&_globals.channels, mutex);
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}
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PyMutex_Unlock(&_globals.mutex);
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return 0;
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}
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static void
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_globals_fini(void)
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{
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// XXX This isn't thread-safe.
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PyMutex_Lock(&_globals.mutex);
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assert(_globals.module_count > 0);
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_globals.module_count--;
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if (_globals.module_count > 0) {
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return;
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if (_globals.module_count == 0) {
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PyThread_type_lock mutex;
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_channels_fini(&_globals.channels, &mutex);
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assert(mutex != NULL);
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PyThread_free_lock(mutex);
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}
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_channels_fini(&_globals.channels);
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PyMutex_Unlock(&_globals.mutex);
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}
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static _channels *
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@ -845,28 +845,31 @@ typedef struct _queues {
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static void
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_queues_init(_queues *queues, PyThread_type_lock mutex)
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{
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queues->mutex = mutex;
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queues->head = NULL;
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queues->count = 0;
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queues->next_id = 1;
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assert(mutex != NULL);
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assert(queues->mutex == NULL);
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*queues = (_queues){
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.mutex = mutex,
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.head = NULL,
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.count = 0,
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.next_id = 1,
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};
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}
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static void
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_queues_fini(_queues *queues)
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_queues_fini(_queues *queues, PyThread_type_lock *p_mutex)
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{
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PyThread_type_lock mutex = queues->mutex;
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assert(mutex != NULL);
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PyThread_acquire_lock(mutex, WAIT_LOCK);
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if (queues->count > 0) {
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PyThread_acquire_lock(queues->mutex, WAIT_LOCK);
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assert((queues->count == 0) != (queues->head != NULL));
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_queueref *head = queues->head;
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queues->head = NULL;
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queues->count = 0;
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PyThread_release_lock(queues->mutex);
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_queuerefs_clear(head);
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}
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if (queues->mutex != NULL) {
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PyThread_free_lock(queues->mutex);
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queues->mutex = NULL;
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assert(queues->head != NULL);
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_queuerefs_clear(queues->head);
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}
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*queues = (_queues){0};
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PyThread_release_lock(mutex);
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*p_mutex = mutex;
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}
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static int64_t
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@ -1398,6 +1401,7 @@ _queueobj_shared(PyThreadState *tstate, PyObject *queueobj,
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the data that we need to share between interpreters, so it cannot
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hold PyObject values. */
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static struct globals {
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PyMutex mutex;
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int module_count;
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_queues queues;
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} _globals = {0};
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@ -1405,32 +1409,36 @@ static struct globals {
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static int
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_globals_init(void)
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{
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// XXX This isn't thread-safe.
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PyMutex_Lock(&_globals.mutex);
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assert(_globals.module_count >= 0);
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_globals.module_count++;
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if (_globals.module_count > 1) {
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// Already initialized.
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return 0;
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}
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assert(_globals.queues.mutex == NULL);
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if (_globals.module_count == 1) {
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// Called for the first time.
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PyThread_type_lock mutex = PyThread_allocate_lock();
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if (mutex == NULL) {
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_globals.module_count--;
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PyMutex_Unlock(&_globals.mutex);
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return ERR_QUEUES_ALLOC;
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}
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_queues_init(&_globals.queues, mutex);
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}
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PyMutex_Unlock(&_globals.mutex);
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return 0;
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}
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static void
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_globals_fini(void)
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{
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// XXX This isn't thread-safe.
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PyMutex_Lock(&_globals.mutex);
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assert(_globals.module_count > 0);
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_globals.module_count--;
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if (_globals.module_count > 0) {
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return;
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if (_globals.module_count == 0) {
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PyThread_type_lock mutex;
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_queues_fini(&_globals.queues, &mutex);
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assert(mutex != NULL);
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PyThread_free_lock(mutex);
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}
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_queues_fini(&_globals.queues);
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PyMutex_Unlock(&_globals.mutex);
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}
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static _queues *
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