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The transport management code that checks for idle connections keeps a reference to PJSIP's transport for IDLE_TIMEOUT milliseconds (32000 by default). Because of this, if the transport is closed before this timeout, the idle checking code will keep the transport from actually being shutdown until the timeout expires. Rather than passing the AO2 object to the scheduler task, we just pass its key and look it up when it is time to potentially close the idle connection. The other transport management code handles cleaning up everything else for us. Additionally, because we use the address of the transport when generating its name, we concatenate an incrementing ID to the end of the name to guarantee uniqueness. Related to ASTERISK~28231 Change-Id: I02ee9f4073b6abca9169d30c47aa69b5e8ae9afb
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;
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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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