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370 lines
11 KiB
370 lines
11 KiB
/*
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* Asterisk -- An open source telephony toolkit.
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*
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* Copyright (C) 2011, Digium, Inc.
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*
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* David Vossel <dvossel@digium.com>
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*
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* See http://www.asterisk.org for more information about
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* the Asterisk project. Please do not directly contact
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* any of the maintainers of this project for assistance;
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* the project provides a web site, mailing lists and IRC
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* channels for your use.
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*
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* This program is free software, distributed under the terms of
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* the GNU General Public License Version 2. See the LICENSE file
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* at the top of the source tree.
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*/
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/*! \file
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*
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* \brief Put a jitterbuffer on the read side of a channel
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*
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* \author David Vossel <dvossel@digium.com>
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*
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* \ingroup functions
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*/
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#include "asterisk.h"
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ASTERISK_FILE_VERSION(__FILE__, "$Revision$")
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#include "asterisk/module.h"
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#include "asterisk/channel.h"
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#include "asterisk/framehook.h"
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#include "asterisk/pbx.h"
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#include "asterisk/abstract_jb.h"
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#include "asterisk/timing.h"
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#include "asterisk/app.h"
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/*** DOCUMENTATION
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<function name="JITTERBUFFER" language="en_US">
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<synopsis>
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Add a Jitterbuffer to the Read side of the channel. This dejitters the audio stream before it reaches the Asterisk core. This is a write only function.
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</synopsis>
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<syntax>
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<parameter name="jitterbuffer type" required="true">
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<para>Jitterbuffer type can be either <literal>fixed</literal> or <literal>adaptive</literal>.</para>
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<para>Used as follows. </para>
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<para>Set(JITTERBUFFER(type)=max_size[,resync_threshold[,target_extra]])</para>
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<para>Set(JITTERBUFFER(type)=default) </para>
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</parameter>
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</syntax>
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<description>
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<para>max_size: Defaults to 200 ms</para>
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<para>Length in milliseconds of buffer.</para>
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<para> </para>
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<para>resync_threshold: Defaults to 1000ms </para>
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<para>The length in milliseconds over which a timestamp difference will result in resyncing the jitterbuffer. </para>
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<para> </para>
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<para>target_extra: Defaults to 40ms</para>
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<para>This option only affects the adaptive jitterbuffer. It represents the amount time in milliseconds by which the new jitter buffer will pad its size.</para>
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<para> </para>
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<para>Examples:</para>
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<para>exten => 1,1,Set(JITTERBUFFER(fixed)=default);Fixed with defaults. </para>
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<para>exten => 1,1,Set(JITTERBUFFER(fixed)=200);Fixed with max size 200ms, default resync threshold and target extra. </para>
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<para>exten => 1,1,Set(JITTERBUFFER(fixed)=200,1500);Fixed with max size 200ms resync threshold 1500. </para>
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<para>exten => 1,1,Set(JITTERBUFFER(adaptive)=default);Adaptive with defaults. </para>
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<para>exten => 1,1,Set(JITTERBUFFER(adaptive)=200,,60);Adaptive with max size 200ms, default resync threshold and 40ms target extra. </para>
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</description>
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</function>
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***/
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#define DEFAULT_TIMER_INTERVAL 20
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#define DEFAULT_SIZE 200
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#define DEFAULT_TARGET_EXTRA 40
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#define DEFAULT_RESYNC 1000
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#define DEFAULT_TYPE AST_JB_FIXED
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struct jb_framedata {
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const struct ast_jb_impl *jb_impl;
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struct ast_jb_conf jb_conf;
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struct timeval start_tv;
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struct ast_format last_format;
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struct ast_timer *timer;
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int timer_interval; /* ms between deliveries */
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int timer_fd;
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int first;
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void *jb_obj;
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};
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static void jb_framedata_destroy(struct jb_framedata *framedata)
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{
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if (framedata->timer) {
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ast_timer_close(framedata->timer);
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framedata->timer = NULL;
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}
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if (framedata->jb_impl && framedata->jb_obj) {
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struct ast_frame *f;
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while (framedata->jb_impl->remove(framedata->jb_obj, &f) == AST_JB_IMPL_OK) {
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ast_frfree(f);
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}
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framedata->jb_impl->destroy(framedata->jb_obj);
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framedata->jb_obj = NULL;
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}
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ast_free(framedata);
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}
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static void jb_conf_default(struct ast_jb_conf *conf)
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{
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conf->max_size = DEFAULT_SIZE;
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conf->resync_threshold = DEFAULT_RESYNC;
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ast_copy_string(conf->impl, "fixed", sizeof(conf->impl));
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conf->target_extra = DEFAULT_TARGET_EXTRA;
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}
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/* set defaults */
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static int jb_framedata_init(struct jb_framedata *framedata, const char *data, const char *value)
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{
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int jb_impl_type = DEFAULT_TYPE;
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/* Initialize defaults */
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framedata->timer_fd = -1;
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jb_conf_default(&framedata->jb_conf);
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if (!(framedata->jb_impl = ast_jb_get_impl(jb_impl_type))) {
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return -1;
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}
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if (!(framedata->timer = ast_timer_open())) {
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return -1;
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}
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framedata->timer_fd = ast_timer_fd(framedata->timer);
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framedata->timer_interval = DEFAULT_TIMER_INTERVAL;
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ast_timer_set_rate(framedata->timer, 1000 / framedata->timer_interval);
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framedata->start_tv = ast_tvnow();
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/* Now check user options to see if any of the defaults need to change. */
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if (!ast_strlen_zero(data)) {
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if (!strcasecmp(data, "fixed")) {
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jb_impl_type = AST_JB_FIXED;
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} else if (!strcasecmp(data, "adaptive")) {
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jb_impl_type = AST_JB_ADAPTIVE;
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} else {
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ast_log(LOG_WARNING, "Unknown Jitterbuffer type %s. Failed to create jitterbuffer.\n", data);
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return -1;
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}
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ast_copy_string(framedata->jb_conf.impl, data, sizeof(framedata->jb_conf.impl));
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}
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if (!ast_strlen_zero(value) && strcasecmp(value, "default")) {
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char *parse = ast_strdupa(value);
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int res = 0;
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AST_DECLARE_APP_ARGS(args,
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AST_APP_ARG(max_size);
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AST_APP_ARG(resync_threshold);
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AST_APP_ARG(target_extra);
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);
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AST_STANDARD_APP_ARGS(args, parse);
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if (!ast_strlen_zero(args.max_size)) {
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res |= ast_jb_read_conf(&framedata->jb_conf,
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"jbmaxsize",
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args.max_size);
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}
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if (!ast_strlen_zero(args.resync_threshold)) {
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res |= ast_jb_read_conf(&framedata->jb_conf,
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"jbresyncthreshold",
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args.resync_threshold);
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}
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if (!ast_strlen_zero(args.target_extra)) {
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res |= ast_jb_read_conf(&framedata->jb_conf,
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"jbtargetextra",
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args.target_extra);
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}
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if (res) {
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ast_log(LOG_WARNING, "Invalid jitterbuffer parameters %s\n", value);
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}
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}
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/* now that all the user parsing is done and nothing will change, create the jb obj */
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framedata->jb_obj = framedata->jb_impl->create(&framedata->jb_conf, framedata->jb_conf.resync_threshold);
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return 0;
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}
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static void datastore_destroy_cb(void *data) {
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ast_free(data);
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ast_debug(1, "JITTERBUFFER datastore destroyed\n");
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}
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static const struct ast_datastore_info jb_datastore = {
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.type = "jitterbuffer",
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.destroy = datastore_destroy_cb
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};
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static void hook_destroy_cb(void *framedata)
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{
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ast_debug(1, "JITTERBUFFER hook destroyed\n");
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jb_framedata_destroy((struct jb_framedata *) framedata);
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}
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static struct ast_frame *hook_event_cb(struct ast_channel *chan, struct ast_frame *frame, enum ast_framehook_event event, void *data)
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{
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struct jb_framedata *framedata = data;
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struct timeval now_tv;
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unsigned long now;
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switch (event) {
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case AST_FRAMEHOOK_EVENT_READ:
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break;
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case AST_FRAMEHOOK_EVENT_ATTACHED:
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case AST_FRAMEHOOK_EVENT_DETACHED:
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case AST_FRAMEHOOK_EVENT_WRITE:
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return frame;
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}
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if (chan->fdno == AST_JITTERBUFFER_FD && framedata->timer) {
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ast_timer_ack(framedata->timer, 1);
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}
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if (!frame) {
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return frame;
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}
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now_tv = ast_tvnow();
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now = ast_tvdiff_ms(now_tv, framedata->start_tv);
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if (frame->frametype == AST_FRAME_VOICE) {
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int res;
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struct ast_frame *jbframe;
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if (!ast_test_flag(frame, AST_FRFLAG_HAS_TIMING_INFO) || frame->len < 2 || frame->ts < 0) {
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/* only frames with timing info can enter the jitterbuffer */
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return frame;
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}
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jbframe = ast_frisolate(frame);
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ast_format_copy(&framedata->last_format, &frame->subclass.format);
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if (frame->len && (frame->len != framedata->timer_interval)) {
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framedata->timer_interval = frame->len;
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ast_timer_set_rate(framedata->timer, 1000 / framedata->timer_interval);
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}
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if (!framedata->first) {
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framedata->first = 1;
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res = framedata->jb_impl->put_first(framedata->jb_obj, jbframe, now);
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} else {
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res = framedata->jb_impl->put(framedata->jb_obj, jbframe, now);
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}
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if (res == AST_JB_IMPL_OK) {
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frame = &ast_null_frame;
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}
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}
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if (frame->frametype == AST_FRAME_NULL) {
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int res;
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long next = framedata->jb_impl->next(framedata->jb_obj);
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if (now < next) {
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return frame;
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}
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res = framedata->jb_impl->get(framedata->jb_obj, &frame, now, framedata->timer_interval);
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switch (res) {
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case AST_JB_IMPL_OK:
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/* got it, and pass it through */
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break;
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case AST_JB_IMPL_DROP:
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ast_frfree(frame);
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frame = &ast_null_frame;
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break;
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case AST_JB_IMPL_INTERP:
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if (framedata->last_format.id) {
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struct ast_frame tmp = { 0, };
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tmp.frametype = AST_FRAME_VOICE;
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ast_format_copy(&tmp.subclass.format, &framedata->last_format);
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/* example: 8000hz / (1000 / 20ms) = 160 samples */
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tmp.samples = ast_format_rate(&framedata->last_format) / (1000 / framedata->timer_interval);
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tmp.delivery = ast_tvadd(framedata->start_tv, ast_samp2tv(next, 1000));
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tmp.offset = AST_FRIENDLY_OFFSET;
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tmp.src = "func_jitterbuffer interpolation";
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frame = ast_frdup(&tmp);
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break;
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}
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/* else fall through */
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case AST_JB_IMPL_NOFRAME:
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frame = &ast_null_frame;
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break;
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}
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}
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return frame;
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}
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static int jb_helper(struct ast_channel *chan, const char *cmd, char *data, const char *value)
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{
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struct jb_framedata *framedata;
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struct ast_datastore *datastore = NULL;
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struct ast_framehook_interface interface = {
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.version = AST_FRAMEHOOK_INTERFACE_VERSION,
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.event_cb = hook_event_cb,
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.destroy_cb = hook_destroy_cb,
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};
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int i = 0;
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if (!(framedata = ast_calloc(1, sizeof(*framedata)))) {
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return 0;
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}
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if (jb_framedata_init(framedata, data, value)) {
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jb_framedata_destroy(framedata);
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return 0;
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}
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interface.data = framedata;
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ast_channel_lock(chan);
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i = ast_framehook_attach(chan, &interface);
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if (i >= 0) {
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int *id;
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if ((datastore = ast_channel_datastore_find(chan, &jb_datastore, NULL))) {
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id = datastore->data;
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ast_framehook_detach(chan, *id);
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ast_channel_datastore_remove(chan, datastore);
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}
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if (!(datastore = ast_datastore_alloc(&jb_datastore, NULL))) {
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ast_framehook_detach(chan, i);
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ast_channel_unlock(chan);
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return 0;
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}
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if (!(id = ast_calloc(1, sizeof(int)))) {
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ast_datastore_free(datastore);
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ast_framehook_detach(chan, i);
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ast_channel_unlock(chan);
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return 0;
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}
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*id = i; /* Store off the id. The channel is still locked so it is safe to access this ptr. */
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datastore->data = id;
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ast_channel_datastore_add(chan, datastore);
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ast_channel_set_fd(chan, AST_JITTERBUFFER_FD, framedata->timer_fd);
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} else {
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jb_framedata_destroy(framedata);
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framedata = NULL;
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}
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ast_channel_unlock(chan);
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return 0;
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}
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static struct ast_custom_function jb_function = {
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.name = "JITTERBUFFER",
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.write = jb_helper,
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};
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static int unload_module(void)
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{
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return ast_custom_function_unregister(&jb_function);
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}
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static int load_module(void)
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{
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int res = ast_custom_function_register(&jb_function);
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return res ? AST_MODULE_LOAD_DECLINE : AST_MODULE_LOAD_SUCCESS;
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}
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AST_MODULE_INFO_STANDARD(ASTERISK_GPL_KEY, "Jitter buffer for read side of channel.");
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