mirror of
https://github.com/asterisk/asterisk.git
synced 2025-09-02 11:06:31 +00:00
DEBUG_FD_LEAKS replaces calls to "open" and "close" with functions that keep track of file descriptors, even when those calls are actually callbacks defined in structures like ast_channelstorage_instance->open and don't touch file descriptors. This causes compilation failures. Those callbacks have been renamed to "open_instance" and "close_instance" respectively. Resolves: #1287
456 lines
11 KiB
C++
456 lines
11 KiB
C++
/*
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* Asterisk -- An open source telephony toolkit.
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*
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* Copyright (C) 2024, Sangoma Technologies Corporation
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*
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* George Joseph <gjoseph@sangoma.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 <memory>
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#include <string>
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#include <map>
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#include <unordered_map>
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#include <cassert>
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#include <utility>
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#include "asterisk/logger.h"
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#include "asterisk/lock.h"
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#include "channelstorage.h"
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#include "channel_private.h"
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typedef std::map<std::string, struct ast_channel *> ChannelMap;
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struct mni_channelstorage_driver_pvt {
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ChannelMap by_name;
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ChannelMap by_uniqueid;
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};
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#define getdb(driver) (((struct mni_channelstorage_driver_pvt *)driver->handle)->by_name)
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#define map_by_id(driver) (((struct mni_channelstorage_driver_pvt *)driver->handle)->by_uniqueid)
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static void rdlock(struct ast_channelstorage_instance *driver)
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{
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ast_rwlock_rdlock((ast_rwlock_t*)driver->lock_handle);
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}
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static void wrlock(struct ast_channelstorage_instance *driver)
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{
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ast_rwlock_wrlock((ast_rwlock_t*)driver->lock_handle);
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}
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static void unlock(struct ast_channelstorage_instance *driver)
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{
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ast_rwlock_unlock((ast_rwlock_t*)driver->lock_handle);
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}
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static int insert_channel(struct ast_channelstorage_instance *driver,
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struct ast_channel *chan, int flags, int lock)
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{
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char *l_name = NULL;
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char *l_uniqueid = NULL;
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bool success = false;
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if (!chan) {
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return -1;
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}
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if (lock) {
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wrlock(driver);
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}
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l_name = ast_str_to_lower(ast_strdupa(ast_channel_name(chan)));
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l_uniqueid = ast_str_to_lower(ast_strdupa(ast_channel_uniqueid(chan)));
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auto rtn = getdb(driver).emplace(l_name, ao2_bump(chan));
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if (rtn.second) {
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rtn = map_by_id(driver).emplace(l_uniqueid, ao2_bump(chan));
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if (!rtn.second) {
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ast_log(LOG_ERROR, "Unable to insert channel '%s' '%s'\n",
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ast_channel_name(chan), ast_channel_uniqueid(chan));
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ast_channel_unref(chan);
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getdb(driver).erase(l_name);
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ast_channel_unref(chan);
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}
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success = rtn.second;
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} else {
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ast_log(LOG_ERROR, "Unable to insert channel '%s'\n", ast_channel_name(chan));
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ast_channel_unref(chan);
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}
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if (success) {
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chan->linked_in_container = 1;
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}
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if (lock) {
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unlock(driver);
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}
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return success ? 0 : -1;
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}
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static int delete_channel(struct ast_channelstorage_instance *driver,
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struct ast_channel *chan, int lock)
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{
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char *l_name = NULL;
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char *l_uniqueid = NULL;
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if (!chan) {
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return -1;
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}
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if (!chan->linked_in_container) {
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return 0;
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}
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if (lock) {
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wrlock(driver);
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}
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l_name = ast_str_to_lower(ast_strdupa(ast_channel_name(chan)));
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l_uniqueid = ast_str_to_lower(ast_strdupa(ast_channel_uniqueid(chan)));
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auto deleted = getdb(driver).erase(l_name);
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if (deleted) {
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ast_channel_unref(chan);
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}
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deleted = map_by_id(driver).erase(l_uniqueid);
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if (deleted) {
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ast_channel_unref(chan);
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}
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chan->linked_in_container = 0;
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if (lock) {
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unlock(driver);
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}
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return 0;
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}
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/*! \brief returns number of active/allocated channels */
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static int active_channels(struct ast_channelstorage_instance *driver)
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{
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return driver ? getdb(driver).size() : 0;
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}
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static struct ast_channel *callback(struct ast_channelstorage_instance *driver,
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ao2_callback_data_fn *cb_fn, void *arg, void *data, int ao2_flags)
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{
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struct ast_channel *chan = NULL;
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ChannelMap::const_iterator it;
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if (!cb_fn) {
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return NULL;
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}
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rdlock(driver);
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for (it = getdb(driver).begin(); it != getdb(driver).end(); it++) {
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chan = it->second;
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if (cb_fn(chan, arg, data, ao2_flags) == (CMP_MATCH | CMP_STOP)) {
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ao2_bump(chan);
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unlock(driver);
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return chan;
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}
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}
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unlock(driver);
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return NULL;
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}
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enum cpp_map_iterator_type {
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ITERATOR_ALL,
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ITERATOR_BY_NAME,
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ITERATOR_BY_EXTEN,
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};
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struct mni_channel_iterator {
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ChannelMap::const_iterator it;
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ChannelMap::const_iterator it_end;
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enum cpp_map_iterator_type it_type;
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char *channel_name;
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size_t channel_name_len;
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char *context;
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char *exten;
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mni_channel_iterator(ChannelMap::const_iterator it,
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ChannelMap::const_iterator it_end, char *name, size_t name_len)
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: it(it), it_end(it_end), it_type(ITERATOR_BY_NAME), channel_name(name), channel_name_len(name_len),
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context(NULL), exten(NULL)
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{
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}
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mni_channel_iterator(ChannelMap::const_iterator it,
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ChannelMap::const_iterator it_end, char *context, char *exten)
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: it(it), it_end(it_end), it_type(ITERATOR_BY_EXTEN), channel_name(NULL), channel_name_len(0),
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context(context), exten(exten)
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{
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}
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mni_channel_iterator(ChannelMap::const_iterator it, ChannelMap::const_iterator it_end)
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: it(it), it_end(it_end), it_type(ITERATOR_ALL), channel_name(NULL), channel_name_len(0),
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context(NULL), exten(NULL)
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{
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}
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~mni_channel_iterator()
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{
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ast_free(channel_name);
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ast_free(context);
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ast_free(exten);
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}
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};
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static struct ast_channel_iterator *iterator_destroy(struct ast_channelstorage_instance *driver,
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struct ast_channel_iterator *ai)
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{
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struct mni_channel_iterator *i = (struct mni_channel_iterator *)ai;
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delete i;
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return NULL;
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}
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static struct ast_channel_iterator *iterator_all_new(struct ast_channelstorage_instance *driver)
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{
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struct mni_channel_iterator *i = new mni_channel_iterator(
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getdb(driver).begin(), getdb(driver).end());
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if (!i) {
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return NULL;
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}
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if (i->it == getdb(driver).end()) {
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delete i;
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return NULL;
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}
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return (struct ast_channel_iterator *)i;
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}
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static struct ast_channel *iterator_next(struct ast_channelstorage_instance *driver,
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struct ast_channel_iterator *ai)
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{
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struct mni_channel_iterator *i = (struct mni_channel_iterator *)ai;
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struct ast_channel *chan = NULL;
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if (i->it == i->it_end) {
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return NULL;
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}
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if (i->it_type == ITERATOR_ALL) {
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chan = ao2_bump(i->it->second);
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++i->it;
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return chan;
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}
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if (i->it_type == ITERATOR_BY_NAME) {
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chan = ao2_bump(i->it->second);
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++i->it;
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return chan;
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}
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/* ITERATOR_BY_EXTEN */
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while (i->it != i->it_end) {
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int ret = channelstorage_exten_cb(i->it->second, i->context, i->exten, 0);
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if (ret & CMP_MATCH) {
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chan = ao2_bump(i->it->second);
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++i->it;
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return chan;
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}
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++i->it;
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}
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return NULL;
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}
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static struct ast_channel_iterator *iterator_by_name_new(struct ast_channelstorage_instance *driver,
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const char *name, size_t name_len)
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{
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char *l_name = NULL;
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char *u_name = NULL;
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struct mni_channel_iterator *i;
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size_t new_name_len = 0;
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if (ast_strlen_zero(name)) {
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return NULL;
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}
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l_name = ast_str_to_lower(ast_strdupa(name));
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if (name_len == 0) {
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name_len = strlen(name);
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}
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l_name[name_len] = '\0';
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new_name_len = strlen(l_name);
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u_name = (char *)ast_alloca(new_name_len + 2);
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sprintf(u_name, "%s%c", l_name, '\xFF');
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i = new mni_channel_iterator(getdb(driver).lower_bound(l_name),
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getdb(driver).upper_bound(u_name));
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if (!i) {
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return NULL;
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}
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if (i->it == getdb(driver).end()) {
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delete i;
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return NULL;
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}
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return (struct ast_channel_iterator *)i;
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}
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static struct ast_channel_iterator *iterator_by_exten_new(struct ast_channelstorage_instance *driver,
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const char *exten, const char *context)
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{
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struct mni_channel_iterator *i =
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new mni_channel_iterator(getdb(driver).begin(),
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getdb(driver).end(),
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ast_str_to_lower(ast_strdup(context)), ast_str_to_lower(ast_strdup(exten)));
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if (!i) {
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return NULL;
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}
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if (i->it == getdb(driver).end()) {
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delete i;
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return NULL;
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}
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return (struct ast_channel_iterator *)i;
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}
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static struct ast_channel *get_by_uniqueid(struct ast_channelstorage_instance *driver,
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const char *uniqueid)
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{
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struct ast_channel *chan = NULL;
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char *search = uniqueid ? ast_str_to_lower(ast_strdupa(uniqueid)) : NULL;
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if (ast_strlen_zero(uniqueid)) {
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return NULL;
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}
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auto rtn = map_by_id(driver).find(search);
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if (rtn != map_by_id(driver).end()) {
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chan = ao2_bump((struct ast_channel *)rtn->second);
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}
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return chan;
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}
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static struct ast_channel *get_by_name_exact(struct ast_channelstorage_instance *driver,
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const char *name)
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{
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char *search = name ? ast_str_to_lower(ast_strdupa(name)) : NULL;
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if (ast_strlen_zero(name)) {
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return NULL;
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}
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auto chan = getdb(driver).find(search);
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if (chan != getdb(driver).end()) {
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return ao2_bump((struct ast_channel *)chan->second);
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}
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return NULL;
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}
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static struct ast_channel *get_by_name_prefix(struct ast_channelstorage_instance *driver,
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const char *name, size_t name_len)
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{
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struct ast_channel *chan = NULL;
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char *l_name = NULL;
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if (name_len == 0) {
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chan = get_by_name_exact(driver, name);
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return chan;
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}
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l_name = ast_str_to_lower(ast_strdupa(name));
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auto rtn = getdb(driver).lower_bound(l_name);
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if (rtn != getdb(driver).end()) {
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chan = ao2_bump((struct ast_channel *)rtn->second);
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}
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return chan;
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}
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static void close_instance(struct ast_channelstorage_instance *driver)
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{
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ast_debug(1, "Closing channel storage driver %s\n", driver ? driver->name : "NULL");
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if (!driver) {
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return;
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}
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if (driver->handle) {
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delete (struct mni_channelstorage_driver_pvt *)driver->handle;
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driver->handle = NULL;
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}
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ast_free(driver->lock_handle);
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driver->lock_handle = NULL;
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ast_free(driver);
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}
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static struct ast_channelstorage_instance channelstorage_instance = {
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.handle = NULL,
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.lock_handle = NULL,
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.close_instance = close_instance,
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.insert = insert_channel,
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.remove = delete_channel,
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.rdlock = rdlock,
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.wrlock = wrlock,
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.unlock = unlock,
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.active_channels = active_channels,
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.callback = callback,
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.get_by_name_prefix= get_by_name_prefix,
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.get_by_name_prefix_or_uniqueid = channelstorage_by_name_prefix_or_uniqueid,
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.get_by_exten = channelstorage_by_exten,
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.get_by_uniqueid = get_by_uniqueid,
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.iterator_all_new = iterator_all_new,
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.iterator_by_exten_new = iterator_by_exten_new,
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.iterator_by_name_new = iterator_by_name_new,
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.iterator_next = iterator_next,
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.iterator_destroy = iterator_destroy,
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};
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static struct ast_channelstorage_instance* get_instance(const char *name)
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{
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const char *_name = name ? name : "default";
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struct ast_channelstorage_instance* driver =
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(struct ast_channelstorage_instance*)ast_calloc(1,
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sizeof(*driver) + strlen(_name) + 1);
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ast_debug(1, "Opening channel storage driver %s\n", _name);
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if (!driver) {
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ast_log(LOG_ERROR, "Failed to allocate memory for channel storage driver %s\n",
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_name);
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return NULL;
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}
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memcpy(driver, &channelstorage_instance, sizeof(*driver));
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strcpy(driver->name, _name); /* Safe */
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driver->handle = (struct ast_channelstorage_driver_pvt *)new mni_channelstorage_driver_pvt();
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if (!driver->handle) {
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ast_log(LOG_ERROR, "Failed to create channel storage driver %s\n",
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_name);
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ast_free(driver);
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return NULL;
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}
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driver->lock_handle = ast_calloc(1, sizeof(ast_rwlock_t));
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if (!driver->lock_handle) {
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ast_log(LOG_ERROR, "Failed to create container lock for channel storage driver %s\n",
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_name);
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close_instance(driver);
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return NULL;
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}
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ast_rwlock_init((ast_rwlock_t *)driver->lock_handle);
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return driver;
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}
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static struct ast_channelstorage_driver driver_type = {
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.driver_name = "cpp_map_name_id",
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.open_instance = get_instance,
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};
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static void __attribute__((constructor)) __startup(void)
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{
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ast_channelstorage_register_driver(&driver_type);
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}
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