433 lines
12 KiB
C
433 lines
12 KiB
C
/*
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* Asterisk -- An open source telephony toolkit.
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*
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* Copyright (C) 2014, Digium, Inc.
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*
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* Joshua Colp <jcolp@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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#include "asterisk.h"
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#include <signal.h>
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#include <pjsip.h>
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#include <pjsip_ua.h>
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#include "asterisk/res_pjsip.h"
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#include "asterisk/module.h"
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#include "asterisk/astobj2.h"
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#include "include/res_pjsip_private.h"
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/*! \brief Number of buckets for monitored transports */
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#define TRANSPORTS_BUCKETS 127
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#define IDLE_TIMEOUT (pjsip_cfg()->tsx.td)
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/*! \brief The keep alive packet to send */
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static const pj_str_t keepalive_packet = { "\r\n\r\n", 4 };
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/*! \brief Global container of active transports */
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static AO2_GLOBAL_OBJ_STATIC(monitored_transports);
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/*! \brief Scheduler context for timing out connections with no data received */
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static struct ast_sched_context *sched;
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/*! \brief Thread keeping things alive */
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static pthread_t keepalive_thread = AST_PTHREADT_NULL;
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/*! \brief The global interval at which to send keepalives */
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static unsigned int keepalive_interval;
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/*! \brief Structure for transport to be monitored */
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struct monitored_transport {
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/*! \brief The underlying PJSIP transport */
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pjsip_transport *transport;
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/*! \brief Non-zero if a PJSIP request was received */
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int sip_received;
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};
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static void keepalive_transport_send_keepalive(struct monitored_transport *monitored)
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{
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pjsip_tpselector selector = {
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.type = PJSIP_TPSELECTOR_TRANSPORT,
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.u.transport = monitored->transport,
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};
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pjsip_tpmgr_send_raw(pjsip_endpt_get_tpmgr(ast_sip_get_pjsip_endpoint()),
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monitored->transport->key.type,
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&selector,
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NULL,
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keepalive_packet.ptr,
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keepalive_packet.slen,
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&monitored->transport->key.rem_addr,
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pj_sockaddr_get_len(&monitored->transport->key.rem_addr),
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NULL, NULL);
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}
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/*! \brief Thread which sends keepalives to all active connection-oriented transports */
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static void *keepalive_transport_thread(void *data)
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{
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struct ao2_container *transports;
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pj_thread_desc desc = { 0 };
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pj_thread_t *thread;
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if (pj_thread_register("Asterisk Keepalive Thread", desc, &thread) != PJ_SUCCESS) {
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ast_log(LOG_ERROR, "Could not register keepalive thread with PJLIB, keepalives will not occur.\n");
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return NULL;
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}
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transports = ao2_global_obj_ref(monitored_transports);
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if (!transports) {
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return NULL;
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}
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/*
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* Once loaded this module just keeps on going as it is unsafe to stop
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* and change the underlying callback for the transport manager.
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*/
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while (keepalive_interval) {
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struct ao2_iterator iter;
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struct monitored_transport *monitored;
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sleep(keepalive_interval);
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/*
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* We must use the iterator to avoid deadlock between the container lock
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* and the pjproject transport manager group lock when sending
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* the keepalive packet.
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*/
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iter = ao2_iterator_init(transports, 0);
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for (; (monitored = ao2_iterator_next(&iter)); ao2_ref(monitored, -1)) {
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keepalive_transport_send_keepalive(monitored);
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}
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ao2_iterator_destroy(&iter);
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}
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ao2_ref(transports, -1);
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return NULL;
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}
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AST_THREADSTORAGE(desc_storage);
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static int idle_sched_init_pj_thread(void)
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{
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if (!pj_thread_is_registered()) {
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pj_thread_t *thread;
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pj_thread_desc *desc;
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desc = ast_threadstorage_get(&desc_storage, sizeof(pj_thread_desc));
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if (!desc) {
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ast_log(LOG_ERROR, "Could not get thread desc from thread-local storage.\n");
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return -1;
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}
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pj_bzero(*desc, sizeof(*desc));
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pj_thread_register("Transport Monitor", *desc, &thread);
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}
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return 0;
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}
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static struct monitored_transport *get_monitored_transport_by_name(const char *obj_name)
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{
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struct ao2_container *transports;
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struct monitored_transport *monitored = NULL;
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transports = ao2_global_obj_ref(monitored_transports);
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if (transports) {
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monitored = ao2_find(transports, obj_name, OBJ_SEARCH_KEY);
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}
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ao2_cleanup(transports);
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/* Caller is responsible for cleaning up reference */
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return monitored;
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}
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static int idle_sched_cb(const void *data)
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{
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char *obj_name = (char *) data;
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struct monitored_transport *monitored;
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if (idle_sched_init_pj_thread()) {
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ast_free(obj_name);
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return 0;
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}
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monitored = get_monitored_transport_by_name(obj_name);
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if (monitored) {
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if (!monitored->sip_received) {
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ast_log(LOG_NOTICE, "Shutting down transport '%s' since no request was received in %d seconds\n",
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monitored->transport->info, IDLE_TIMEOUT / 1000);
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pjsip_transport_shutdown(monitored->transport);
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}
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ao2_ref(monitored, -1);
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}
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ast_free(obj_name);
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return 0;
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}
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static int idle_sched_cleanup(const void *data)
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{
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char *obj_name = (char *) data;
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struct monitored_transport *monitored;
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if (idle_sched_init_pj_thread()) {
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ast_free(obj_name);
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return 0;
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}
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monitored = get_monitored_transport_by_name(obj_name);
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if (monitored) {
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pjsip_transport_shutdown(monitored->transport);
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ao2_ref(monitored, -1);
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}
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ast_free(obj_name);
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return 0;
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}
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/*! \brief Destructor for keepalive transport */
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static void monitored_transport_destroy(void *obj)
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{
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struct monitored_transport *monitored = obj;
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pjsip_transport_dec_ref(monitored->transport);
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}
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/*! \brief Callback invoked when transport changes occur */
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static void monitored_transport_state_callback(pjsip_transport *transport, pjsip_transport_state state,
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const pjsip_transport_state_info *info)
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{
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struct ao2_container *transports;
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/* We only care about reliable transports */
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if (PJSIP_TRANSPORT_IS_RELIABLE(transport)
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&& (transport->dir == PJSIP_TP_DIR_INCOMING || keepalive_interval)
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&& (transports = ao2_global_obj_ref(monitored_transports))) {
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struct monitored_transport *monitored;
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switch (state) {
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case PJSIP_TP_STATE_CONNECTED:
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monitored = ao2_alloc_options(sizeof(*monitored),
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monitored_transport_destroy, AO2_ALLOC_OPT_LOCK_NOLOCK);
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if (!monitored) {
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break;
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}
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monitored->transport = transport;
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pjsip_transport_add_ref(monitored->transport);
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ao2_link(transports, monitored);
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if (transport->dir == PJSIP_TP_DIR_INCOMING) {
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char *obj_name = ast_strdup(transport->obj_name);
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if (!obj_name
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|| ast_sched_add_variable(sched, IDLE_TIMEOUT, idle_sched_cb, obj_name, 1) < 0) {
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/* Shut down the transport if anything fails */
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pjsip_transport_shutdown(transport);
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ast_free(obj_name);
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}
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}
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ao2_ref(monitored, -1);
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break;
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case PJSIP_TP_STATE_SHUTDOWN:
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case PJSIP_TP_STATE_DISCONNECTED:
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ao2_find(transports, transport->obj_name, OBJ_SEARCH_KEY | OBJ_NODATA | OBJ_UNLINK);
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break;
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default:
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break;
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}
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ao2_ref(transports, -1);
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}
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}
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struct ast_sip_tpmgr_state_callback monitored_transport_reg = {
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monitored_transport_state_callback,
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};
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/*! \brief Hashing function for monitored transport */
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static int monitored_transport_hash_fn(const void *obj, int flags)
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{
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const struct monitored_transport *object;
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const char *key;
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switch (flags & OBJ_SEARCH_MASK) {
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case OBJ_SEARCH_KEY:
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key = obj;
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break;
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case OBJ_SEARCH_OBJECT:
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object = obj;
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key = object->transport->obj_name;
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break;
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default:
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/* Hash can only work on something with a full key. */
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ast_assert(0);
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return 0;
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}
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return ast_str_hash(key);
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}
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/*! \brief Comparison function for monitored transport */
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static int monitored_transport_cmp_fn(void *obj, void *arg, int flags)
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{
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const struct monitored_transport *object_left = obj;
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const struct monitored_transport *object_right = arg;
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const char *right_key = arg;
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int cmp;
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switch (flags & OBJ_SEARCH_MASK) {
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case OBJ_SEARCH_OBJECT:
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right_key = object_right->transport->obj_name;
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/* Fall through */
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case OBJ_SEARCH_KEY:
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cmp = strcmp(object_left->transport->obj_name, right_key);
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break;
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case OBJ_SEARCH_PARTIAL_KEY:
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/*
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* We could also use a partial key struct containing a length
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* so strlen() does not get called for every comparison instead.
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*/
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cmp = strncmp(object_left->transport->obj_name, right_key, strlen(right_key));
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break;
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default:
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/*
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* What arg points to is specific to this traversal callback
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* and has no special meaning to astobj2.
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*/
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cmp = 0;
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break;
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}
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return !cmp ? CMP_MATCH : 0;
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}
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static void keepalive_global_loaded(const char *object_type)
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{
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unsigned int new_interval = ast_sip_get_keep_alive_interval();
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if (new_interval) {
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keepalive_interval = new_interval;
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} else if (keepalive_interval) {
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ast_log(LOG_NOTICE, "Keepalive support can not be disabled once activated.\n");
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return;
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} else {
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/* This will occur if no keepalive interval has been specified at initial start */
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return;
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}
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if (keepalive_thread != AST_PTHREADT_NULL) {
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return;
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}
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if (ast_pthread_create(&keepalive_thread, NULL, keepalive_transport_thread, NULL)) {
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ast_log(LOG_ERROR, "Could not create thread for sending keepalive messages.\n");
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keepalive_thread = AST_PTHREADT_NULL;
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keepalive_interval = 0;
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}
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}
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/*! \brief Observer which is used to update our interval when the global setting changes */
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static struct ast_sorcery_observer keepalive_global_observer = {
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.loaded = keepalive_global_loaded,
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};
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/*!
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* \brief
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* On incoming TCP connections, when we receive a SIP request, we mark that we have
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* received a valid SIP request. This way, we will not shut the transport down for
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* idleness
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*/
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static pj_bool_t idle_monitor_on_rx_request(pjsip_rx_data *rdata)
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{
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struct monitored_transport *idle_trans;
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idle_trans = get_monitored_transport_by_name(rdata->tp_info.transport->obj_name);
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if (idle_trans) {
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idle_trans->sip_received = 1;
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ao2_ref(idle_trans, -1);
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}
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return PJ_FALSE;
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}
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static pjsip_module idle_monitor_module = {
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.name = {"idle monitor module", 19},
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.priority = PJSIP_MOD_PRIORITY_TRANSPORT_LAYER + 3,
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.on_rx_request = idle_monitor_on_rx_request,
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};
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int ast_sip_initialize_transport_management(void)
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{
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struct ao2_container *transports;
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transports = ao2_container_alloc_hash(AO2_ALLOC_OPT_LOCK_MUTEX, 0, TRANSPORTS_BUCKETS,
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monitored_transport_hash_fn, NULL, monitored_transport_cmp_fn);
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if (!transports) {
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ast_log(LOG_ERROR, "Could not create container for transports to perform keepalive on.\n");
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return AST_MODULE_LOAD_DECLINE;
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}
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ao2_global_obj_replace_unref(monitored_transports, transports);
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ao2_ref(transports, -1);
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sched = ast_sched_context_create();
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if (!sched) {
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ast_log(LOG_ERROR, "Failed to create keepalive scheduler context.\n");
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ao2_global_obj_release(monitored_transports);
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return AST_MODULE_LOAD_DECLINE;
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}
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if (ast_sched_start_thread(sched)) {
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ast_log(LOG_ERROR, "Failed to start keepalive scheduler thread\n");
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ast_sched_context_destroy(sched);
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sched = NULL;
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ao2_global_obj_release(monitored_transports);
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return AST_MODULE_LOAD_DECLINE;
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}
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ast_sip_register_service(&idle_monitor_module);
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ast_sip_transport_state_register(&monitored_transport_reg);
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ast_sorcery_observer_add(ast_sip_get_sorcery(), "global", &keepalive_global_observer);
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ast_sorcery_reload_object(ast_sip_get_sorcery(), "global");
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return AST_MODULE_LOAD_SUCCESS;
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}
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void ast_sip_destroy_transport_management(void)
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{
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if (keepalive_interval) {
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keepalive_interval = 0;
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if (keepalive_thread != AST_PTHREADT_NULL) {
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pthread_kill(keepalive_thread, SIGURG);
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pthread_join(keepalive_thread, NULL);
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keepalive_thread = AST_PTHREADT_NULL;
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}
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}
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ast_sorcery_observer_remove(ast_sip_get_sorcery(), "global", &keepalive_global_observer);
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ast_sip_transport_state_unregister(&monitored_transport_reg);
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ast_sip_unregister_service(&idle_monitor_module);
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ast_sched_clean_by_callback(sched, idle_sched_cb, idle_sched_cleanup);
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ast_sched_context_destroy(sched);
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sched = NULL;
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ao2_global_obj_release(monitored_transports);
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}
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