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https://github.com/asterisk/asterisk.git
synced 2025-09-04 03:50:31 +00:00
DNS: Need to use the same serializer for a pjproject SIP transaction.
All send/receive processing for a SIP transaction needs to be done under the same threadpool serializer to prevent reentrancy problems inside pjproject when using an external DNS resolver to process messages for the transaction. * Add threadpool API call to get the current serializer associated with the worker thread. * Pick a serializer from a pool of default serializers if the caller of res_pjsip.c:ast_sip_push_task() does not provide one. This is a simple way to ensure that all outgoing SIP request messages are processed under a serializer. Otherwise, any place where a pushed task is done that would result in an outgoing out-of-dialog request would need to be modified to supply a serializer. Serializers from the default serializer pool are picked in a round robin sequence for simplicity. A side effect is that the default serializer pool will limit the growth of the thread pool from random tasks. This is not necessarily a bad thing. * Made pjsip_resolver.c use the requesting thread's serializer to execute the async callback. * Made pjsip_distributor.c save the thread's serializer name on the outgoing request tdata struct so the response can be processed under the same serializer. ASTERISK-25115 #close Reported by: John Bigelow Change-Id: Iea71c16ce1132017b5791635e198b8c27973f40a
This commit is contained in:
@@ -195,6 +195,22 @@ int ast_threadpool_push(struct ast_threadpool *pool, int (*task)(void *data), vo
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*/
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void ast_threadpool_shutdown(struct ast_threadpool *pool);
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/*!
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* \brief Get the threadpool serializer currently associated with this thread.
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* \since 14.0.0
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*
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* \note The returned pointer is valid while the serializer
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* thread is running.
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*
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* \note Use ao2_ref() on serializer if you are going to keep it
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* for another thread. To unref it you must then use
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* ast_taskprocessor_unreference().
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*
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* \retval serializer on success.
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* \retval NULL on error or no serializer associated with the thread.
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*/
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struct ast_taskprocessor *ast_threadpool_serializer_get_current(void);
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/*!
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* \brief Serialized execution of tasks within a \ref ast_threadpool.
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*
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@@ -1150,13 +1150,17 @@ static struct serializer *serializer_create(struct ast_threadpool *pool)
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return ser;
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}
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AST_THREADSTORAGE_RAW(current_serializer);
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static int execute_tasks(void *data)
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{
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struct ast_taskprocessor *tps = data;
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ast_threadstorage_set_ptr(¤t_serializer, tps);
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while (ast_taskprocessor_execute(tps)) {
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/* No-op */
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}
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ast_threadstorage_set_ptr(¤t_serializer, NULL);
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ast_taskprocessor_unreference(tps);
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return 0;
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@@ -1192,6 +1196,11 @@ static struct ast_taskprocessor_listener_callbacks serializer_tps_listener_callb
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.shutdown = serializer_shutdown,
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};
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struct ast_taskprocessor *ast_threadpool_serializer_get_current(void)
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{
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return ast_threadstorage_get_ptr(¤t_serializer);
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}
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struct ast_taskprocessor *ast_threadpool_serializer(const char *name, struct ast_threadpool *pool)
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{
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RAII_VAR(struct serializer *, ser, NULL, ao2_cleanup);
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@@ -1864,6 +1864,15 @@
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#define MOD_DATA_CONTACT "contact"
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/*! Number of serializers in pool if one not supplied. */
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#define SERIALIZER_POOL_SIZE 8
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/*! Next serializer pool index to use. */
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static int serializer_pool_pos;
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/*! Pool of serializers to use if not supplied. */
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static struct ast_taskprocessor *serializer_pool[SERIALIZER_POOL_SIZE];
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static pjsip_endpoint *ast_pjsip_endpoint;
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static struct ast_threadpool *sip_threadpool;
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@@ -3323,8 +3332,62 @@ struct ast_taskprocessor *ast_sip_create_serializer(void)
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return serializer;
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}
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/*!
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* \internal
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* \brief Shutdown the serializers in the default pool.
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* \since 14.0.0
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*
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* \return Nothing
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*/
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static void serializer_pool_shutdown(void)
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{
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int idx;
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for (idx = 0; idx < SERIALIZER_POOL_SIZE; ++idx) {
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ast_taskprocessor_unreference(serializer_pool[idx]);
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serializer_pool[idx] = NULL;
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}
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}
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/*!
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* \internal
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* \brief Setup the serializers in the default pool.
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* \since 14.0.0
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*
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* \retval 0 on success.
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* \retval -1 on error.
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*/
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static int serializer_pool_setup(void)
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{
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int idx;
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for (idx = 0; idx < SERIALIZER_POOL_SIZE; ++idx) {
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serializer_pool[idx] = ast_sip_create_serializer();
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if (!serializer_pool[idx]) {
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serializer_pool_shutdown();
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return -1;
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}
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}
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return 0;
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}
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int ast_sip_push_task(struct ast_taskprocessor *serializer, int (*sip_task)(void *), void *task_data)
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{
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if (!serializer) {
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unsigned int pos;
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/*
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* Pick a serializer to use from the pool.
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*
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* Note: We don't care about any reentrancy behavior
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* when incrementing serializer_pool_pos. If it gets
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* incorrectly incremented it doesn't matter.
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*/
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pos = serializer_pool_pos++;
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pos %= SERIALIZER_POOL_SIZE;
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serializer = serializer_pool[pos];
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}
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if (serializer) {
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return ast_taskprocessor_push(serializer, sip_task, task_data);
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} else {
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@@ -3377,18 +3440,10 @@ int ast_sip_push_task_synchronous(struct ast_taskprocessor *serializer, int (*si
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std.task = sip_task;
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std.task_data = task_data;
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if (serializer) {
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if (ast_taskprocessor_push(serializer, sync_task, &std)) {
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ast_mutex_destroy(&std.lock);
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ast_cond_destroy(&std.cond);
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return -1;
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}
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} else {
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if (ast_threadpool_push(sip_threadpool, sync_task, &std)) {
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ast_mutex_destroy(&std.lock);
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ast_cond_destroy(&std.cond);
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return -1;
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}
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if (ast_sip_push_task(serializer, sync_task, &std)) {
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ast_mutex_destroy(&std.lock);
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ast_cond_destroy(&std.cond);
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return -1;
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}
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ast_mutex_lock(&std.lock);
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@@ -3679,6 +3734,18 @@ static int load_module(void)
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return AST_MODULE_LOAD_DECLINE;
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}
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if (serializer_pool_setup()) {
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ast_log(LOG_ERROR, "Failed to create SIP serializer pool. Aborting load\n");
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ast_threadpool_shutdown(sip_threadpool);
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ast_sip_destroy_system();
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pj_pool_release(memory_pool);
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memory_pool = NULL;
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pjsip_endpt_destroy(ast_pjsip_endpoint);
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ast_pjsip_endpoint = NULL;
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pj_caching_pool_destroy(&caching_pool);
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return AST_MODULE_LOAD_DECLINE;
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}
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pjsip_tsx_layer_init_module(ast_pjsip_endpoint);
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pjsip_ua_init_module(ast_pjsip_endpoint, NULL);
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@@ -3792,6 +3859,7 @@ static int unload_module(void)
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*/
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ast_sip_push_task_synchronous(NULL, unload_pjsip, NULL);
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serializer_pool_shutdown();
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ast_threadpool_shutdown(sip_threadpool);
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ast_sip_destroy_cli();
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@@ -22,22 +22,106 @@
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#include "asterisk/res_pjsip.h"
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#include "include/res_pjsip_private.h"
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#include "asterisk/taskprocessor.h"
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#include "asterisk/threadpool.h"
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static int distribute(void *data);
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static pj_bool_t distributor(pjsip_rx_data *rdata);
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static pj_status_t record_serializer(pjsip_tx_data *tdata);
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static pjsip_module distributor_mod = {
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.name = {"Request Distributor", 19},
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.priority = PJSIP_MOD_PRIORITY_TSX_LAYER - 6,
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.on_tx_request = record_serializer,
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.on_rx_request = distributor,
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.on_rx_response = distributor,
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};
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/*!
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* \internal
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* \brief Record the task's serializer name on the tdata structure.
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* \since 14.0.0
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*
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* \param tdata The outgoing message.
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*
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* \retval PJ_SUCCESS.
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*/
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static pj_status_t record_serializer(pjsip_tx_data *tdata)
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{
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struct ast_taskprocessor *serializer;
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serializer = ast_threadpool_serializer_get_current();
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if (serializer) {
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const char *name;
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name = ast_taskprocessor_name(serializer);
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if (!ast_strlen_zero(name)
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&& (!tdata->mod_data[distributor_mod.id]
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|| strcmp(tdata->mod_data[distributor_mod.id], name))) {
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char *tdata_name;
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/* The serializer in use changed. */
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tdata_name = pj_pool_alloc(tdata->pool, strlen(name) + 1);
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strcpy(tdata_name, name);/* Safe */
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tdata->mod_data[distributor_mod.id] = tdata_name;
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}
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}
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return PJ_SUCCESS;
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}
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/*!
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* \internal
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* \brief Find the request tdata to get the serializer it used.
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* \since 14.0.0
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*
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* \param rdata The incoming message.
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*
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* \retval serializer on success.
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* \retval NULL on error or could not find the serializer.
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*/
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static struct ast_taskprocessor *find_request_serializer(pjsip_rx_data *rdata)
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{
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struct ast_taskprocessor *serializer = NULL;
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pj_str_t tsx_key;
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pjsip_transaction *tsx;
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pjsip_tsx_create_key(rdata->tp_info.pool, &tsx_key, PJSIP_ROLE_UAC,
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&rdata->msg_info.cseq->method, rdata);
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tsx = pjsip_tsx_layer_find_tsx(&tsx_key, PJ_TRUE);
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if (!tsx) {
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ast_debug(1, "Could not find %.*s transaction for %d response.\n",
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(int) pj_strlen(&rdata->msg_info.cseq->method.name),
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pj_strbuf(&rdata->msg_info.cseq->method.name),
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rdata->msg_info.msg->line.status.code);
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return NULL;
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}
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if (tsx->last_tx) {
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const char *serializer_name;
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serializer_name = tsx->last_tx->mod_data[distributor_mod.id];
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if (!ast_strlen_zero(serializer_name)) {
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serializer = ast_taskprocessor_get(serializer_name, TPS_REF_IF_EXISTS);
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}
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}
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#ifdef HAVE_PJ_TRANSACTION_GRP_LOCK
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pj_grp_lock_release(tsx->grp_lock);
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#else
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pj_mutex_unlock(tsx->mutex);
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#endif
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return serializer;
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}
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/*! Dialog-specific information the distributor uses */
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struct distributor_dialog_data {
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/* Serializer to distribute tasks to for this dialog */
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/*! Serializer to distribute tasks to for this dialog */
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struct ast_taskprocessor *serializer;
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/* Endpoint associated with this dialog */
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/*! Endpoint associated with this dialog */
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struct ast_sip_endpoint *endpoint;
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};
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@@ -167,6 +251,7 @@ static pj_bool_t distributor(pjsip_rx_data *rdata)
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pjsip_dialog *dlg = find_dialog(rdata);
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struct distributor_dialog_data *dist = NULL;
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struct ast_taskprocessor *serializer = NULL;
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struct ast_taskprocessor *req_serializer = NULL;
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pjsip_rx_data *clone;
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if (dlg) {
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@@ -176,11 +261,16 @@ static pj_bool_t distributor(pjsip_rx_data *rdata)
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}
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}
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if (rdata->msg_info.msg->type == PJSIP_REQUEST_MSG && (
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!pjsip_method_cmp(&rdata->msg_info.msg->line.req.method, &pjsip_cancel_method) ||
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!pjsip_method_cmp(&rdata->msg_info.msg->line.req.method, &pjsip_bye_method)) &&
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!serializer) {
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pjsip_endpt_respond_stateless(ast_sip_get_pjsip_endpoint(), rdata, 481, NULL, NULL, NULL);
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if (serializer) {
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/* We have a serializer so we know where to send the message. */
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} else if (rdata->msg_info.msg->type == PJSIP_RESPONSE_MSG) {
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req_serializer = find_request_serializer(rdata);
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serializer = req_serializer;
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} else if (!pjsip_method_cmp(&rdata->msg_info.msg->line.req.method, &pjsip_cancel_method)
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|| !pjsip_method_cmp(&rdata->msg_info.msg->line.req.method, &pjsip_bye_method)) {
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/* We have a BYE or CANCEL request without a serializer. */
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pjsip_endpt_respond_stateless(ast_sip_get_pjsip_endpoint(), rdata,
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PJSIP_SC_CALL_TSX_DOES_NOT_EXIST, NULL, NULL, NULL);
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goto end;
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}
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@@ -196,6 +286,7 @@ end:
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if (dlg) {
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pjsip_dlg_dec_lock(dlg);
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}
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ast_taskprocessor_unreference(req_serializer);
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return PJ_TRUE;
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}
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@@ -30,6 +30,8 @@
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#include "asterisk/dns_naptr.h"
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#include "asterisk/res_pjsip.h"
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#include "include/res_pjsip_private.h"
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#include "asterisk/taskprocessor.h"
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#include "asterisk/threadpool.h"
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#ifdef HAVE_PJSIP_EXTERNAL_RESOLVER
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@@ -52,6 +54,8 @@ struct sip_resolve {
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struct ast_dns_query_set *queries;
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/*! \brief Current viable server addresses */
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pjsip_server_addresses addresses;
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/*! \brief Serializer to run async callback into pjlib. */
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struct ast_taskprocessor *serializer;
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/*! \brief Callback to invoke upon completion */
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pjsip_resolver_callback *callback;
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/*! \brief User provided data */
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@@ -97,6 +101,7 @@ static void sip_resolve_destroy(void *data)
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AST_VECTOR_FREE(&resolve->resolving);
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ao2_cleanup(resolve->queries);
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ast_taskprocessor_unreference(resolve->serializer);
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}
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/*!
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@@ -398,7 +403,7 @@ static void sip_resolve_callback(const struct ast_dns_query_set *query_set)
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/* Push a task to invoke the callback, we do this so it is guaranteed to run in a PJSIP thread */
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ao2_ref(resolve, +1);
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if (ast_sip_push_task(NULL, sip_resolve_invoke_user_callback, resolve)) {
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if (ast_sip_push_task(resolve->serializer, sip_resolve_invoke_user_callback, resolve)) {
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ao2_ref(resolve, -1);
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}
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@@ -572,6 +577,8 @@ static void sip_resolve(pjsip_resolver_t *resolver, pj_pool_t *pool, const pjsip
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return;
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}
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resolve->serializer = ao2_bump(ast_threadpool_serializer_get_current());
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ast_debug(2, "[%p] Starting initial resolution using parallel queries for target '%s'\n", resolve, host);
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ast_dns_query_set_resolve_async(resolve->queries, sip_resolve_callback, resolve);
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