forked from Mirrors/freeswitch
179 lines
5.4 KiB
C
179 lines
5.4 KiB
C
/* Licensed to the Apache Software Foundation (ASF) under one or more
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* contributor license agreements. See the NOTICE file distributed with
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* this work for additional information regarding copyright ownership.
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* The ASF licenses this file to You under the Apache License, Version 2.0
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* (the "License"); you may not use this file except in compliance with
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* the License. You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#include "apr.h"
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#include "apr_private.h"
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#include "apr_general.h"
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#include "apr_strings.h"
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#include "win32/apr_arch_thread_rwlock.h"
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#include "apr_portable.h"
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static apr_status_t thread_rwlock_cleanup(void *data)
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{
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apr_thread_rwlock_t *rwlock = data;
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if (! CloseHandle(rwlock->read_event))
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return apr_get_os_error();
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DeleteCriticalSection(&rwlock->read_section);
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if (! CloseHandle(rwlock->write_mutex))
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return apr_get_os_error();
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return APR_SUCCESS;
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}
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APR_DECLARE(apr_status_t)apr_thread_rwlock_create(apr_thread_rwlock_t **rwlock,
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apr_pool_t *pool)
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{
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*rwlock = apr_palloc(pool, sizeof(**rwlock));
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(*rwlock)->pool = pool;
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(*rwlock)->readers = 0;
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if (! ((*rwlock)->read_event = CreateEvent(NULL, TRUE, FALSE, NULL))) {
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*rwlock = NULL;
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return apr_get_os_error();
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}
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if (! ((*rwlock)->write_mutex = CreateMutex(NULL, FALSE, NULL))) {
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CloseHandle((*rwlock)->read_event);
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*rwlock = NULL;
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return apr_get_os_error();
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}
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InitializeCriticalSection(&(*rwlock)->read_section);
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apr_pool_cleanup_register(pool, *rwlock, thread_rwlock_cleanup,
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apr_pool_cleanup_null);
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return APR_SUCCESS;
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}
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static apr_status_t apr_thread_rwlock_rdlock_core(apr_thread_rwlock_t *rwlock,
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DWORD milliseconds)
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{
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DWORD code;
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EnterCriticalSection(&rwlock->read_section);
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code = WaitForSingleObject(rwlock->write_mutex, milliseconds);
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if (code == WAIT_FAILED || code == WAIT_TIMEOUT) {
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LeaveCriticalSection(&rwlock->read_section);
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return APR_FROM_OS_ERROR(code);
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}
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/* We've successfully acquired the writer mutex, we can't be locked
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* for write, so it's OK to add the reader lock. The writer mutex
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* doubles as race condition protection for the readers counter.
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*/
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InterlockedIncrement(&rwlock->readers);
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if (! ResetEvent(rwlock->read_event)) {
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LeaveCriticalSection(&rwlock->read_section);
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return apr_get_os_error();
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}
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if (! ReleaseMutex(rwlock->write_mutex)) {
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LeaveCriticalSection(&rwlock->read_section);
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return apr_get_os_error();
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}
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LeaveCriticalSection(&rwlock->read_section);
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return APR_SUCCESS;
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}
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APR_DECLARE(apr_status_t) apr_thread_rwlock_rdlock(apr_thread_rwlock_t *rwlock)
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{
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return apr_thread_rwlock_rdlock_core(rwlock, INFINITE);
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}
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APR_DECLARE(apr_status_t)
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apr_thread_rwlock_tryrdlock(apr_thread_rwlock_t *rwlock)
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{
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return apr_thread_rwlock_rdlock_core(rwlock, 0);
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}
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static apr_status_t
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apr_thread_rwlock_wrlock_core(apr_thread_rwlock_t *rwlock, DWORD milliseconds)
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{
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DWORD code = WaitForSingleObject(rwlock->write_mutex, milliseconds);
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if (code == WAIT_FAILED || code == WAIT_TIMEOUT)
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return APR_FROM_OS_ERROR(code);
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/* We've got the writer lock but we have to wait for all readers to
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* unlock before it's ok to use it.
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*/
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if (rwlock->readers) {
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/* Must wait for readers to finish before returning, unless this
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* is an trywrlock (milliseconds == 0):
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*/
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code = milliseconds
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? WaitForSingleObject(rwlock->read_event, milliseconds)
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: WAIT_TIMEOUT;
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if (code == WAIT_FAILED || code == WAIT_TIMEOUT) {
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/* Unable to wait for readers to finish, release write lock: */
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if (! ReleaseMutex(rwlock->write_mutex))
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return apr_get_os_error();
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return APR_FROM_OS_ERROR(code);
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}
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}
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return APR_SUCCESS;
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}
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APR_DECLARE(apr_status_t) apr_thread_rwlock_wrlock(apr_thread_rwlock_t *rwlock)
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{
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return apr_thread_rwlock_wrlock_core(rwlock, INFINITE);
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}
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APR_DECLARE(apr_status_t)apr_thread_rwlock_trywrlock(apr_thread_rwlock_t *rwlock)
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{
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return apr_thread_rwlock_wrlock_core(rwlock, 0);
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}
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APR_DECLARE(apr_status_t) apr_thread_rwlock_unlock(apr_thread_rwlock_t *rwlock)
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{
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apr_status_t rv = 0;
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/* First, guess that we're unlocking a writer */
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if (! ReleaseMutex(rwlock->write_mutex))
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rv = apr_get_os_error();
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if (rv == APR_FROM_OS_ERROR(ERROR_NOT_OWNER)) {
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/* Nope, we must have a read lock */
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if (rwlock->readers &&
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! InterlockedDecrement(&rwlock->readers) &&
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! SetEvent(rwlock->read_event)) {
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rv = apr_get_os_error();
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}
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else {
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rv = 0;
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}
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}
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return rv;
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}
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APR_DECLARE(apr_status_t) apr_thread_rwlock_destroy(apr_thread_rwlock_t *rwlock)
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{
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return apr_pool_cleanup_run(rwlock->pool, rwlock, thread_rwlock_cleanup);
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}
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APR_POOL_IMPLEMENT_ACCESSOR(thread_rwlock)
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