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654 lines
16 KiB
654 lines
16 KiB
/*
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* Asterisk -- An open source telephony toolkit.
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*
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* Copyright (C) 1999 - 2010, Digium, Inc.
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*
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* Mark Spencer <markster@digium.com>
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* Russell Bryant <russell@digium.com>
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*
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* See http://www.asterisk.org for more information about
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* the Asterisk project. Please do not directly contact
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* any of the maintainers of this project for assistance;
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* the project provides a web site, mailing lists and IRC
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* channels for your use.
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*
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* This program is free software, distributed under the terms of
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* the GNU General Public License Version 2. See the LICENSE file
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* at the top of the source tree.
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*/
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/*! \file
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*
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* \brief Scheduler Routines (from cheops-NG)
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*
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* \author Mark Spencer <markster@digium.com>
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*/
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#include "asterisk.h"
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ASTERISK_FILE_VERSION(__FILE__, "$Revision$")
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#ifdef DEBUG_SCHEDULER
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#define DEBUG(a) do { \
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if (option_debug) \
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DEBUG_M(a) \
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} while (0)
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#else
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#define DEBUG(a)
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#endif
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#include <sys/time.h>
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#include "asterisk/sched.h"
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#include "asterisk/channel.h"
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#include "asterisk/lock.h"
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#include "asterisk/utils.h"
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#include "asterisk/linkedlists.h"
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#include "asterisk/dlinkedlists.h"
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#include "asterisk/hashtab.h"
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#include "asterisk/heap.h"
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#include "asterisk/threadstorage.h"
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/*!
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* \brief Max num of schedule structs
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*
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* \note The max number of schedule structs to keep around
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* for use. Undefine to disable schedule structure
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* caching. (Only disable this on very low memory
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* machines)
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*/
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#define SCHED_MAX_CACHE 128
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AST_THREADSTORAGE(last_del_id);
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struct sched {
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AST_LIST_ENTRY(sched) list;
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int id; /*!< ID number of event */
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struct timeval when; /*!< Absolute time event should take place */
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int resched; /*!< When to reschedule */
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int variable; /*!< Use return value from callback to reschedule */
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const void *data; /*!< Data */
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ast_sched_cb callback; /*!< Callback */
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ssize_t __heap_index;
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};
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struct sched_thread {
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pthread_t thread;
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ast_cond_t cond;
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unsigned int stop:1;
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};
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struct ast_sched_context {
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ast_mutex_t lock;
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unsigned int eventcnt; /*!< Number of events processed */
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unsigned int schedcnt; /*!< Number of outstanding schedule events */
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unsigned int highwater; /*!< highest count so far */
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struct ast_hashtab *schedq_ht; /*!< hash table for fast searching */
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struct ast_heap *sched_heap;
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struct sched_thread *sched_thread;
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#ifdef SCHED_MAX_CACHE
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AST_LIST_HEAD_NOLOCK(, sched) schedc; /*!< Cache of unused schedule structures and how many */
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unsigned int schedccnt;
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#endif
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};
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static void *sched_run(void *data)
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{
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struct ast_sched_context *con = data;
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while (!con->sched_thread->stop) {
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int ms;
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struct timespec ts = {
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.tv_sec = 0,
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};
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ast_mutex_lock(&con->lock);
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if (con->sched_thread->stop) {
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ast_mutex_unlock(&con->lock);
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return NULL;
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}
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ms = ast_sched_wait(con);
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if (ms == -1) {
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ast_cond_wait(&con->sched_thread->cond, &con->lock);
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} else {
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struct timeval tv;
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tv = ast_tvadd(ast_tvnow(), ast_samp2tv(ms, 1000));
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ts.tv_sec = tv.tv_sec;
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ts.tv_nsec = tv.tv_usec * 1000;
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ast_cond_timedwait(&con->sched_thread->cond, &con->lock, &ts);
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}
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ast_mutex_unlock(&con->lock);
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if (con->sched_thread->stop) {
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return NULL;
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}
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ast_sched_runq(con);
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}
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return NULL;
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}
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static void sched_thread_destroy(struct ast_sched_context *con)
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{
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if (!con->sched_thread) {
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return;
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}
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if (con->sched_thread->thread != AST_PTHREADT_NULL) {
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ast_mutex_lock(&con->lock);
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con->sched_thread->stop = 1;
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ast_cond_signal(&con->sched_thread->cond);
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ast_mutex_unlock(&con->lock);
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pthread_join(con->sched_thread->thread, NULL);
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con->sched_thread->thread = AST_PTHREADT_NULL;
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}
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ast_cond_destroy(&con->sched_thread->cond);
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ast_free(con->sched_thread);
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con->sched_thread = NULL;
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}
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int ast_sched_start_thread(struct ast_sched_context *con)
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{
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struct sched_thread *st;
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if (con->sched_thread) {
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ast_log(LOG_ERROR, "Thread already started on this scheduler context\n");
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return -1;
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}
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if (!(st = ast_calloc(1, sizeof(*st)))) {
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return -1;
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}
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ast_cond_init(&st->cond, NULL);
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st->thread = AST_PTHREADT_NULL;
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con->sched_thread = st;
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if (ast_pthread_create_background(&st->thread, NULL, sched_run, con)) {
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ast_log(LOG_ERROR, "Failed to create scheduler thread\n");
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sched_thread_destroy(con);
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return -1;
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}
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return 0;
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}
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static int sched_cmp(const void *a, const void *b)
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{
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const struct sched *as = a;
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const struct sched *bs = b;
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return as->id != bs->id; /* return 0 on a match like strcmp would */
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}
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static unsigned int sched_hash(const void *obj)
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{
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const struct sched *s = obj;
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unsigned int h = s->id;
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return h;
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}
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static int sched_time_cmp(void *a, void *b)
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{
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return ast_tvcmp(((struct sched *) b)->when, ((struct sched *) a)->when);
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}
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struct ast_sched_context *ast_sched_context_create(void)
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{
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struct ast_sched_context *tmp;
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if (!(tmp = ast_calloc(1, sizeof(*tmp)))) {
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return NULL;
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}
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ast_mutex_init(&tmp->lock);
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tmp->eventcnt = 1;
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tmp->schedq_ht = ast_hashtab_create(23, sched_cmp, ast_hashtab_resize_java, ast_hashtab_newsize_java, sched_hash, 1);
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if (!(tmp->sched_heap = ast_heap_create(8, sched_time_cmp,
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offsetof(struct sched, __heap_index)))) {
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ast_sched_context_destroy(tmp);
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return NULL;
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}
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return tmp;
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}
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void ast_sched_context_destroy(struct ast_sched_context *con)
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{
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struct sched *s;
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sched_thread_destroy(con);
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con->sched_thread = NULL;
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ast_mutex_lock(&con->lock);
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#ifdef SCHED_MAX_CACHE
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while ((s = AST_LIST_REMOVE_HEAD(&con->schedc, list))) {
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ast_free(s);
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}
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#endif
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if (con->sched_heap) {
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while ((s = ast_heap_pop(con->sched_heap))) {
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ast_free(s);
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}
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ast_heap_destroy(con->sched_heap);
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con->sched_heap = NULL;
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}
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ast_hashtab_destroy(con->schedq_ht, NULL);
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con->schedq_ht = NULL;
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ast_mutex_unlock(&con->lock);
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ast_mutex_destroy(&con->lock);
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ast_free(con);
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}
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static struct sched *sched_alloc(struct ast_sched_context *con)
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{
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struct sched *tmp;
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/*
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* We keep a small cache of schedule entries
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* to minimize the number of necessary malloc()'s
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*/
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#ifdef SCHED_MAX_CACHE
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if ((tmp = AST_LIST_REMOVE_HEAD(&con->schedc, list)))
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con->schedccnt--;
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else
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#endif
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tmp = ast_calloc(1, sizeof(*tmp));
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return tmp;
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}
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static void sched_release(struct ast_sched_context *con, struct sched *tmp)
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{
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/*
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* Add to the cache, or just free() if we
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* already have too many cache entries
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*/
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#ifdef SCHED_MAX_CACHE
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if (con->schedccnt < SCHED_MAX_CACHE) {
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AST_LIST_INSERT_HEAD(&con->schedc, tmp, list);
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con->schedccnt++;
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} else
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#endif
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ast_free(tmp);
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}
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/*! \brief
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* Return the number of milliseconds
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* until the next scheduled event
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*/
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int ast_sched_wait(struct ast_sched_context *con)
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{
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int ms;
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struct sched *s;
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DEBUG(ast_debug(1, "ast_sched_wait()\n"));
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ast_mutex_lock(&con->lock);
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if ((s = ast_heap_peek(con->sched_heap, 1))) {
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ms = ast_tvdiff_ms(s->when, ast_tvnow());
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if (ms < 0) {
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ms = 0;
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}
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} else {
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ms = -1;
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}
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ast_mutex_unlock(&con->lock);
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return ms;
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}
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/*! \brief
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* Take a sched structure and put it in the
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* queue, such that the soonest event is
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* first in the list.
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*/
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static void schedule(struct ast_sched_context *con, struct sched *s)
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{
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ast_heap_push(con->sched_heap, s);
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if (!ast_hashtab_insert_safe(con->schedq_ht, s)) {
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ast_log(LOG_WARNING,"Schedule Queue entry %d is already in table!\n", s->id);
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}
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con->schedcnt++;
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if (con->schedcnt > con->highwater) {
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con->highwater = con->schedcnt;
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}
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}
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/*! \brief
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* given the last event *tv and the offset in milliseconds 'when',
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* computes the next value,
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*/
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static int sched_settime(struct timeval *t, int when)
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{
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struct timeval now = ast_tvnow();
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/*ast_debug(1, "TV -> %lu,%lu\n", tv->tv_sec, tv->tv_usec);*/
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if (ast_tvzero(*t)) /* not supplied, default to now */
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*t = now;
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*t = ast_tvadd(*t, ast_samp2tv(when, 1000));
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if (ast_tvcmp(*t, now) < 0) {
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*t = now;
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}
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return 0;
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}
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int ast_sched_replace_variable(int old_id, struct ast_sched_context *con, int when, ast_sched_cb callback, const void *data, int variable)
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{
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/* 0 means the schedule item is new; do not delete */
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if (old_id > 0) {
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AST_SCHED_DEL(con, old_id);
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}
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return ast_sched_add_variable(con, when, callback, data, variable);
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}
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/*! \brief
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* Schedule callback(data) to happen when ms into the future
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*/
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int ast_sched_add_variable(struct ast_sched_context *con, int when, ast_sched_cb callback, const void *data, int variable)
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{
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struct sched *tmp;
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int res = -1;
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DEBUG(ast_debug(1, "ast_sched_add()\n"));
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ast_mutex_lock(&con->lock);
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if ((tmp = sched_alloc(con))) {
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tmp->id = con->eventcnt++;
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tmp->callback = callback;
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tmp->data = data;
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tmp->resched = when;
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tmp->variable = variable;
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tmp->when = ast_tv(0, 0);
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if (sched_settime(&tmp->when, when)) {
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sched_release(con, tmp);
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} else {
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schedule(con, tmp);
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res = tmp->id;
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}
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}
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#ifdef DUMP_SCHEDULER
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/* Dump contents of the context while we have the lock so nothing gets screwed up by accident. */
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if (option_debug)
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ast_sched_dump(con);
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#endif
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if (con->sched_thread) {
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ast_cond_signal(&con->sched_thread->cond);
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}
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ast_mutex_unlock(&con->lock);
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return res;
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}
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int ast_sched_replace(int old_id, struct ast_sched_context *con, int when, ast_sched_cb callback, const void *data)
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{
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if (old_id > -1) {
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AST_SCHED_DEL(con, old_id);
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}
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return ast_sched_add(con, when, callback, data);
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}
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int ast_sched_add(struct ast_sched_context *con, int when, ast_sched_cb callback, const void *data)
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{
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return ast_sched_add_variable(con, when, callback, data, 0);
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}
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const void *ast_sched_find_data(struct ast_sched_context *con, int id)
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{
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struct sched tmp,*res;
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tmp.id = id;
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res = ast_hashtab_lookup(con->schedq_ht, &tmp);
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if (res)
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return res->data;
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return NULL;
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}
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/*! \brief
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* Delete the schedule entry with number
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* "id". It's nearly impossible that there
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* would be two or more in the list with that
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* id.
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*/
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#ifndef AST_DEVMODE
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int ast_sched_del(struct ast_sched_context *con, int id)
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#else
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int _ast_sched_del(struct ast_sched_context *con, int id, const char *file, int line, const char *function)
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#endif
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{
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struct sched *s, tmp = {
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.id = id,
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};
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int *last_id = ast_threadstorage_get(&last_del_id, sizeof(int *));
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DEBUG(ast_debug(1, "ast_sched_del(%d)\n", id));
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if (id < 0) {
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return 0;
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}
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ast_mutex_lock(&con->lock);
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s = ast_hashtab_lookup(con->schedq_ht, &tmp);
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if (s) {
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if (!ast_heap_remove(con->sched_heap, s)) {
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ast_log(LOG_WARNING,"sched entry %d not in the sched heap?\n", s->id);
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}
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if (!ast_hashtab_remove_this_object(con->schedq_ht, s)) {
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ast_log(LOG_WARNING,"Found sched entry %d, then couldn't remove it?\n", s->id);
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}
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con->schedcnt--;
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sched_release(con, s);
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}
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#ifdef DUMP_SCHEDULER
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/* Dump contents of the context while we have the lock so nothing gets screwed up by accident. */
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if (option_debug)
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ast_sched_dump(con);
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#endif
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if (con->sched_thread) {
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ast_cond_signal(&con->sched_thread->cond);
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}
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ast_mutex_unlock(&con->lock);
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if (!s && *last_id != id) {
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ast_debug(1, "Attempted to delete nonexistent schedule entry %d!\n", id);
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#ifndef AST_DEVMODE
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ast_assert(s != NULL);
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#else
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{
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char buf[100];
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snprintf(buf, sizeof(buf), "s != NULL, id=%d", id);
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_ast_assert(0, buf, file, line, function);
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}
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#endif
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*last_id = id;
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return -1;
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} else if (!s) {
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return -1;
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}
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return 0;
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}
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void ast_sched_report(struct ast_sched_context *con, struct ast_str **buf, struct ast_cb_names *cbnames)
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{
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int i, x;
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struct sched *cur;
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int countlist[cbnames->numassocs + 1];
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size_t heap_size;
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memset(countlist, 0, sizeof(countlist));
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ast_str_set(buf, 0, " Highwater = %d\n schedcnt = %d\n", con->highwater, con->schedcnt);
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ast_mutex_lock(&con->lock);
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heap_size = ast_heap_size(con->sched_heap);
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for (x = 1; x <= heap_size; x++) {
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cur = ast_heap_peek(con->sched_heap, x);
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/* match the callback to the cblist */
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for (i = 0; i < cbnames->numassocs; i++) {
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if (cur->callback == cbnames->cblist[i]) {
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break;
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}
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}
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if (i < cbnames->numassocs) {
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countlist[i]++;
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} else {
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countlist[cbnames->numassocs]++;
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}
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}
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ast_mutex_unlock(&con->lock);
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for (i = 0; i < cbnames->numassocs; i++) {
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ast_str_append(buf, 0, " %s : %d\n", cbnames->list[i], countlist[i]);
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}
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ast_str_append(buf, 0, " <unknown> : %d\n", countlist[cbnames->numassocs]);
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}
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/*! \brief Dump the contents of the scheduler to LOG_DEBUG */
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void ast_sched_dump(struct ast_sched_context *con)
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{
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struct sched *q;
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struct timeval when = ast_tvnow();
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int x;
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size_t heap_size;
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#ifdef SCHED_MAX_CACHE
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ast_debug(1, "Asterisk Schedule Dump (%d in Q, %d Total, %d Cache, %d high-water)\n", con->schedcnt, con->eventcnt - 1, con->schedccnt, con->highwater);
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#else
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ast_debug(1, "Asterisk Schedule Dump (%d in Q, %d Total, %d high-water)\n", con->schedcnt, con->eventcnt - 1, con->highwater);
|
|
#endif
|
|
|
|
ast_debug(1, "=============================================================\n");
|
|
ast_debug(1, "|ID Callback Data Time (sec:ms) |\n");
|
|
ast_debug(1, "+-----+-----------------+-----------------+-----------------+\n");
|
|
ast_mutex_lock(&con->lock);
|
|
heap_size = ast_heap_size(con->sched_heap);
|
|
for (x = 1; x <= heap_size; x++) {
|
|
struct timeval delta;
|
|
q = ast_heap_peek(con->sched_heap, x);
|
|
delta = ast_tvsub(q->when, when);
|
|
ast_debug(1, "|%.4d | %-15p | %-15p | %.6ld : %.6ld |\n",
|
|
q->id,
|
|
q->callback,
|
|
q->data,
|
|
(long)delta.tv_sec,
|
|
(long int)delta.tv_usec);
|
|
}
|
|
ast_mutex_unlock(&con->lock);
|
|
ast_debug(1, "=============================================================\n");
|
|
}
|
|
|
|
/*! \brief
|
|
* Launch all events which need to be run at this time.
|
|
*/
|
|
int ast_sched_runq(struct ast_sched_context *con)
|
|
{
|
|
struct sched *current;
|
|
struct timeval when;
|
|
int numevents;
|
|
int res;
|
|
|
|
DEBUG(ast_debug(1, "ast_sched_runq()\n"));
|
|
|
|
ast_mutex_lock(&con->lock);
|
|
|
|
when = ast_tvadd(ast_tvnow(), ast_tv(0, 1000));
|
|
for (numevents = 0; (current = ast_heap_peek(con->sched_heap, 1)); numevents++) {
|
|
/* schedule all events which are going to expire within 1ms.
|
|
* We only care about millisecond accuracy anyway, so this will
|
|
* help us get more than one event at one time if they are very
|
|
* close together.
|
|
*/
|
|
if (ast_tvcmp(current->when, when) != -1) {
|
|
break;
|
|
}
|
|
|
|
current = ast_heap_pop(con->sched_heap);
|
|
|
|
if (!ast_hashtab_remove_this_object(con->schedq_ht, current)) {
|
|
ast_log(LOG_ERROR,"Sched entry %d was in the schedq list but not in the hashtab???\n", current->id);
|
|
}
|
|
|
|
con->schedcnt--;
|
|
|
|
/*
|
|
* At this point, the schedule queue is still intact. We
|
|
* have removed the first event and the rest is still there,
|
|
* so it's permissible for the callback to add new events, but
|
|
* trying to delete itself won't work because it isn't in
|
|
* the schedule queue. If that's what it wants to do, it
|
|
* should return 0.
|
|
*/
|
|
|
|
ast_mutex_unlock(&con->lock);
|
|
res = current->callback(current->data);
|
|
ast_mutex_lock(&con->lock);
|
|
|
|
if (res) {
|
|
/*
|
|
* If they return non-zero, we should schedule them to be
|
|
* run again.
|
|
*/
|
|
if (sched_settime(¤t->when, current->variable? res : current->resched)) {
|
|
sched_release(con, current);
|
|
} else {
|
|
schedule(con, current);
|
|
}
|
|
} else {
|
|
/* No longer needed, so release it */
|
|
sched_release(con, current);
|
|
}
|
|
}
|
|
|
|
ast_mutex_unlock(&con->lock);
|
|
|
|
return numevents;
|
|
}
|
|
|
|
long ast_sched_when(struct ast_sched_context *con,int id)
|
|
{
|
|
struct sched *s, tmp;
|
|
long secs = -1;
|
|
DEBUG(ast_debug(1, "ast_sched_when()\n"));
|
|
|
|
ast_mutex_lock(&con->lock);
|
|
|
|
/* these next 2 lines replace a lookup loop */
|
|
tmp.id = id;
|
|
s = ast_hashtab_lookup(con->schedq_ht, &tmp);
|
|
|
|
if (s) {
|
|
struct timeval now = ast_tvnow();
|
|
secs = s->when.tv_sec - now.tv_sec;
|
|
}
|
|
ast_mutex_unlock(&con->lock);
|
|
|
|
return secs;
|
|
}
|