toxcore/toxav/toxav.c

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/** toxav.c
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*
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* Copyright (C) 2013 Tox project All Rights Reserved.
*
* This file is part of Tox.
*
* Tox is free software: you can redistribute it and/or modify
* it under the terms of the GNU General Public License as published by
* the Free Software Foundation, either version 3 of the License, or
* (at your option) any later version.
*
* Tox is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with Tox. If not, see <http://www.gnu.org/licenses/>.
*
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*
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* Report bugs/suggestions at #tox-dev @ freenode.net:6667
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*/
#ifdef HAVE_CONFIG_H
#include "config.h"
#endif /* HAVE_CONFIG_H */
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#define _GNU_SOURCE /* implicit declaration warning */
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#include "rtp.h"
#include "media.h"
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#include "msi.h"
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#include "toxav.h"
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#include "../toxcore/logger.h"
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#include <assert.h>
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#include <stdlib.h>
#include <string.h>
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/* Assume 60 fps*/
#define MAX_ENCODE_TIME_US ((1000 / 60) * 1000)
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#define inline__ inline __attribute__((always_inline))
static const uint8_t audio_index = 0, video_index = 1;
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typedef struct _CallSpecific {
RTPSession *crtps[2]; /** Audio is first and video is second */
CodecState *cs;/** Each call have its own encoders and decoders.
* You can, but don't have to, reuse encoders for
* multiple calls. If you choose to reuse encoders,
* make sure to also reuse encoded payload for every call.
* Decoders have to be unique for each call. FIXME: Now add refcounted encoders and
* reuse them really.
*/
JitterBuffer *j_buf; /** Jitter buffer for audio */
} CallSpecific;
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struct _ToxAv {
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Messenger *messenger;
MSISession *msi_session; /** Main msi session */
CallSpecific *calls; /** Per-call params */
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uint32_t max_calls;
};
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const ToxAvCodecSettings av_DefaultSettings = {
1000000,
800,
600,
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64000,
20,
48000,
1,
20
};
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/**
* @brief Start new A/V session. There can only be one session at the time. If you register more
* it will result in undefined behaviour.
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*
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* @param messenger The messenger handle.
* @param userdata The agent handling A/V session (i.e. phone).
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* @param video_width Width of video frame.
* @param video_height Height of video frame.
* @return ToxAv*
* @retval NULL On error.
*/
ToxAv *toxav_new( Tox *messenger, int32_t max_calls)
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{
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ToxAv *av = calloc ( sizeof(ToxAv), 1);
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if (av == NULL) {
LOGGER_WARNING("Allocation failed!");
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return NULL;
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}
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av->messenger = (Messenger *)messenger;
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av->msi_session = msi_init_session(av->messenger, max_calls);
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av->msi_session->agent_handler = av;
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av->calls = calloc(sizeof(CallSpecific), max_calls);
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av->max_calls = max_calls;
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return av;
}
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/**
* @brief Remove A/V session.
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*
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* @param av Handler.
* @return void
*/
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void toxav_kill ( ToxAv *av )
{
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msi_terminate_session(av->msi_session);
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int i = 0;
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for (; i < av->max_calls; i ++) {
if ( av->calls[i].crtps[audio_index] )
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rtp_terminate_session(av->calls[i].crtps[audio_index], av->msi_session->messenger_handle);
if ( av->calls[i].crtps[video_index] )
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rtp_terminate_session(av->calls[i].crtps[video_index], av->msi_session->messenger_handle);
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if ( av->calls[i].j_buf ) terminate_queue(av->calls[i].j_buf);
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if ( av->calls[i].cs ) codec_terminate_session(av->calls[i].cs);
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}
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free(av->calls);
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free(av);
}
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/**
* @brief Register callback for call state.
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*
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* @param callback The callback
* @param id One of the ToxAvCallbackID values
* @return void
*/
void toxav_register_callstate_callback ( ToxAVCallback callback, ToxAvCallbackID id, void *userdata )
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{
msi_register_callback((MSICallback)callback, (MSICallbackID) id, userdata);
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}
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/**
* @brief Call user. Use its friend_id.
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*
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* @param av Handler.
* @param user The user.
* @param call_type Call type.
* @param ringing_seconds Ringing timeout.
* @return int
* @retval 0 Success.
* @retval ToxAvError On error.
*/
int toxav_call (ToxAv *av, int32_t *call_index, int user, ToxAvCallType call_type, int ringing_seconds )
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{
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return msi_invite(av->msi_session, call_index, call_type, ringing_seconds * 1000, user);
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}
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/**
* @brief Hangup active call.
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*
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* @param av Handler.
* @return int
* @retval 0 Success.
* @retval ToxAvError On error.
*/
int toxav_hangup ( ToxAv *av, int32_t call_index )
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{
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if ( !av->msi_session->calls[call_index] ) {
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return ErrorNoCall;
}
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if ( av->msi_session->calls[call_index]->state != call_active ) {
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return ErrorInvalidState;
}
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return msi_hangup(av->msi_session, call_index);
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}
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/**
* @brief Answer incomming call.
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*
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* @param av Handler.
* @param call_type Answer with...
* @return int
* @retval 0 Success.
* @retval ToxAvError On error.
*/
int toxav_answer ( ToxAv *av, int32_t call_index, ToxAvCallType call_type )
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{
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if ( !av->msi_session->calls[call_index] ) {
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return ErrorNoCall;
}
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if ( av->msi_session->calls[call_index]->state != call_starting ) {
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return ErrorInvalidState;
}
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return msi_answer(av->msi_session, call_index, call_type);
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}
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/**
* @brief Reject incomming call.
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*
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* @param av Handler.
* @param reason Optional reason. Set NULL if none.
* @return int
* @retval 0 Success.
* @retval ToxAvError On error.
*/
int toxav_reject ( ToxAv *av, int32_t call_index, const char *reason )
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{
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if ( !av->msi_session->calls[call_index] ) {
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return ErrorNoCall;
}
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if ( av->msi_session->calls[call_index]->state != call_starting ) {
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return ErrorInvalidState;
}
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return msi_reject(av->msi_session, call_index, (const uint8_t *) reason);
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}
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/**
* @brief Cancel outgoing request.
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*
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* @param av Handler.
* @param reason Optional reason.
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* @param peer_id peer friend_id
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* @return int
* @retval 0 Success.
* @retval ToxAvError On error.
*/
int toxav_cancel ( ToxAv *av, int32_t call_index, int peer_id, const char *reason )
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{
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if ( !av->msi_session->calls[call_index] ) {
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return ErrorNoCall;
}
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return msi_cancel(av->msi_session, call_index, peer_id, reason);
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}
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/**
* @brief Terminate transmission. Note that transmission will be terminated without informing remote peer.
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*
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* @param av Handler.
* @return int
* @retval 0 Success.
* @retval ToxAvError On error.
*/
int toxav_stop_call ( ToxAv *av, int32_t call_index )
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{
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if ( !av->msi_session->calls[call_index] ) {
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return ErrorNoCall;
}
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return msi_stopcall(av->msi_session, call_index);
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}
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/**
* @brief Must be call before any RTP transmission occurs.
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*
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* @param av Handler.
* @return int
* @retval 0 Success.
* @retval ToxAvError On error.
*/
int toxav_prepare_transmission ( ToxAv *av, int32_t call_index, ToxAvCodecSettings *codec_settings, int support_video )
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{
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if ( !av->msi_session || av->msi_session->max_calls <= call_index || !av->msi_session->calls[call_index] ) {
/*fprintf(stderr, "Error while starting audio RTP session: invalid call!\n");*/
return ErrorInternal;
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}
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CallSpecific *call = &av->calls[call_index];
call->crtps[audio_index] =
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rtp_init_session(
type_audio,
av->messenger,
av->msi_session->calls[call_index]->peers[0],
av->msi_session->calls[call_index]->key_peer,
av->msi_session->calls[call_index]->key_local,
av->msi_session->calls[call_index]->nonce_peer,
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av->msi_session->calls[call_index]->nonce_local);
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if ( !call->crtps[audio_index] ) {
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/*fprintf(stderr, "Error while starting audio RTP session!\n");*/
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return ErrorStartingAudioRtp;
}
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if ( support_video ) {
call->crtps[video_index] =
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rtp_init_session (
type_video,
av->messenger,
av->msi_session->calls[call_index]->peers[0],
av->msi_session->calls[call_index]->key_peer,
av->msi_session->calls[call_index]->key_local,
av->msi_session->calls[call_index]->nonce_peer,
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av->msi_session->calls[call_index]->nonce_local);
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if ( !call->crtps[video_index] ) {
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/*fprintf(stderr, "Error while starting video RTP session!\n");*/
return ErrorStartingVideoRtp;
}
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}
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if ( !(call->j_buf = create_queue(codec_settings->jbuf_capacity)) ) return ErrorInternal;
call->cs = codec_init_session(codec_settings->audio_bitrate,
codec_settings->audio_frame_duration,
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codec_settings->audio_sample_rate,
codec_settings->audio_channels,
codec_settings->video_width,
codec_settings->video_height,
codec_settings->video_bitrate);
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return call->cs ? ErrorNone : ErrorInternal;
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}
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/**
* @brief Call this at the end of the transmission.
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*
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* @param av Handler.
* @return int
* @retval 0 Success.
* @retval ToxAvError On error.
*/
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int toxav_kill_transmission ( ToxAv *av, int32_t call_index )
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{
CallSpecific *call = &av->calls[call_index];
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if ( call->crtps[audio_index] && -1 == rtp_terminate_session(call->crtps[audio_index], av->messenger) ) {
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/*fprintf(stderr, "Error while terminating audio RTP session!\n");*/
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return ErrorTerminatingAudioRtp;
}
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if ( call->crtps[video_index] && -1 == rtp_terminate_session(call->crtps[video_index], av->messenger) ) {
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/*fprintf(stderr, "Error while terminating video RTP session!\n");*/
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return ErrorTerminatingVideoRtp;
}
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call->crtps[audio_index] = NULL;
call->crtps[video_index] = NULL;
if ( call->j_buf ) {
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terminate_queue(call->j_buf);
call->j_buf = NULL;
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LOGGER_DEBUG("Terminated j queue");
} else LOGGER_DEBUG("No j queue");
if ( call->cs ) {
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codec_terminate_session(call->cs);
call->cs = NULL;
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LOGGER_DEBUG("Terminated codec session");
} else LOGGER_DEBUG("No codec session");
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return ErrorNone;
}
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/**
* @brief Send RTP payload.
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*
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* @param av Handler.
* @param type Type of payload.
* @param payload The payload.
* @param length Size of it.
* @return int
* @retval 0 Success.
* @retval -1 Failure.
*/
inline__ int toxav_send_rtp_payload ( ToxAv *av, int32_t call_index, ToxAvCallType type, const uint8_t *payload,
uint16_t length )
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{
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if ( av->calls[call_index].crtps[type - TypeAudio] )
return rtp_send_msg ( av->calls[call_index].crtps[type - TypeAudio], av->msi_session->messenger_handle, payload,
length );
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else return -1;
}
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/**
* @brief Receive RTP payload.
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*
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* @param av Handler.
* @param type Type of the payload.
* @param dest Storage.
* @return int
* @retval ToxAvError On Error.
* @retval >=0 Size of received payload.
*/
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inline__ int toxav_recv_rtp_payload ( ToxAv *av, int32_t call_index, ToxAvCallType type, uint8_t *dest )
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{
if ( !dest ) return ErrorInternal;
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CallSpecific *call = &av->calls[call_index];
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if ( !call->crtps[type - TypeAudio] ) return ErrorNoRtpSession;
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RTPMessage *message;
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if ( type == TypeAudio ) {
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do {
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message = rtp_recv_msg(call->crtps[audio_index]);
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if (message) {
/* push the packet into the queue */
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queue(call->j_buf, message);
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}
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} while (message);
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int success = 0;
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message = dequeue(call->j_buf, &success);
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if ( success == 2) return ErrorAudioPacketLost;
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} else {
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message = rtp_recv_msg(call->crtps[video_index]);
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}
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if ( message ) {
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memcpy(dest, message->data, message->length);
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int length = message->length;
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rtp_free_msg(NULL, message);
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return length;
}
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return 0;
}
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/**
* @brief Receive decoded video packet.
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*
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* @param av Handler.
* @param output Storage.
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* @return int
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* @retval 0 Success.
* @retval ToxAvError On Error.
*/
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inline__ int toxav_recv_video ( ToxAv *av, int32_t call_index, vpx_image_t **output)
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{
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if ( !output ) return ErrorInternal;
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uint8_t packet [RTP_PAYLOAD_SIZE];
int recved_size = 0;
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int rc;
CallSpecific *call = &av->calls[call_index];
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do {
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recved_size = toxav_recv_rtp_payload(av, call_index, TypeVideo, packet);
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if (recved_size > 0 && ( rc = vpx_codec_decode(&call->cs->v_decoder, packet, recved_size, NULL, 0) ) != VPX_CODEC_OK) {
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/*fprintf(stderr, "Error decoding video: %s\n", vpx_codec_err_to_string(rc));*/
return ErrorInternal;
}
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} while (recved_size > 0);
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vpx_codec_iter_t iter = NULL;
vpx_image_t *img;
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img = vpx_codec_get_frame(&call->cs->v_decoder, &iter);
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*output = img;
return 0;
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}
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/**
* @brief Encode and send video packet.
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*
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* @param av Handler.
* @param input The packet.
* @return int
* @retval 0 Success.
* @retval ToxAvError On error.
*/
inline__ int toxav_send_video ( ToxAv *av, int32_t call_index, const uint8_t *frame, int frame_size)
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{
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return toxav_send_rtp_payload(av, call_index, TypeVideo, frame, frame_size);
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}
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/**
* @brief Encode video frame
*
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* @param av Handler
* @param dest Where to
* @param dest_max Max size
* @param input What to encode
* @return int
* @retval ToxAvError On error.
* @retval >0 On success
*/
inline__ int toxav_prepare_video_frame(ToxAv *av, int32_t call_index, uint8_t *dest, int dest_max, vpx_image_t *input)
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{
CallSpecific *call = &av->calls[call_index];
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int rc = vpx_codec_encode(&call->cs->v_encoder, input, call->cs->frame_counter, 1, 0, MAX_ENCODE_TIME_US);
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if ( rc != VPX_CODEC_OK) {
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fprintf(stderr, "Could not encode video frame: %s\n", vpx_codec_err_to_string(rc));
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return ErrorInternal;
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}
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++call->cs->frame_counter;
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vpx_codec_iter_t iter = NULL;
const vpx_codec_cx_pkt_t *pkt;
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int copied = 0;
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while ( (pkt = vpx_codec_get_cx_data(&call->cs->v_encoder, &iter)) ) {
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if (pkt->kind == VPX_CODEC_CX_FRAME_PKT) {
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if ( copied + pkt->data.frame.sz > dest_max ) return ErrorPacketTooLarge;
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mempcpy(dest + copied, pkt->data.frame.buf, pkt->data.frame.sz);
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copied += pkt->data.frame.sz;
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}
}
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return copied;
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}
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/**
* @brief Receive decoded audio frame.
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*
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* @param av Handler.
* @param frame_size The size of dest in frames/samples (one frame/sample is 16 bits or 2 bytes
* and corresponds to one sample of audio.)
* @param dest Destination of the raw audio (16 bit signed pcm with AUDIO_CHANNELS channels).
* Make sure it has enough space for frame_size frames/samples.
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* @return int
* @retval >=0 Size of received data in frames/samples.
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* @retval ToxAvError On error.
*/
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inline__ int toxav_recv_audio ( ToxAv *av, int32_t call_index, int frame_size, int16_t *dest )
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{
if ( !dest ) return ErrorInternal;
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CallSpecific *call = &av->calls[call_index];
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uint8_t packet [RTP_PAYLOAD_SIZE];
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int recved_size = toxav_recv_rtp_payload(av, call_index, TypeAudio, packet);
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if ( recved_size == ErrorAudioPacketLost ) {
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int dec_size = opus_decode(call->cs->audio_decoder, NULL, 0, dest, frame_size, 1);
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if ( dec_size < 0 ) {
LOGGER_WARNING("Decoding error: %s", opus_strerror(dec_size));
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return ErrorInternal;
} else return dec_size;
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} else if ( recved_size ) {
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int dec_size = opus_decode(call->cs->audio_decoder, packet, recved_size, dest, frame_size, 0);
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if ( dec_size < 0 ) {
LOGGER_WARNING("Decoding error: %s", opus_strerror(dec_size));
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return ErrorInternal;
} else return dec_size;
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} else {
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return 0; /* Nothing received */
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}
}
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/**
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* @brief Send audio frame.
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*
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* @param av Handler.
* @param frame The frame (raw 16 bit signed pcm with AUDIO_CHANNELS channels audio.)
* @param frame_size Its size in number of frames/samples (one frame/sample is 16 bits or 2 bytes)
* frame size should be AUDIO_FRAME_SIZE.
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* @return int
* @retval 0 Success.
* @retval ToxAvError On error.
*/
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inline__ int toxav_send_audio ( ToxAv *av, int32_t call_index, const uint8_t *frame, int frame_size)
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{
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return toxav_send_rtp_payload(av, call_index, TypeAudio, frame, frame_size);
}
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/**
* @brief Encode audio frame
*
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* @param av Handler
* @param dest dest
* @param dest_max Max dest size
* @param frame The frame
* @param frame_size The frame size
* @return int
* @retval ToxAvError On error.
* @retval >0 On success
*/
inline__ int toxav_prepare_audio_frame ( ToxAv *av, int32_t call_index, uint8_t *dest, int dest_max,
const int16_t *frame, int frame_size)
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{
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int32_t rc = opus_encode(av->calls[call_index].cs->audio_encoder, frame, frame_size, dest, dest_max);
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if (rc < 0) {
fprintf(stderr, "Failed to encode payload: %s\n", opus_strerror(rc));
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return ErrorInternal;
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}
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return rc;
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}
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/**
* @brief Get peer transmission type. It can either be audio or video.
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*
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* @param av Handler.
* @param peer The peer
* @return int
* @retval ToxAvCallType On success.
* @retval ToxAvError On error.
*/
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int toxav_get_peer_transmission_type ( ToxAv *av, int32_t call_index, int peer )
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{
assert(av->msi_session);
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if ( peer < 0 || !av->msi_session->calls[call_index] || av->msi_session->calls[call_index]->peer_count <= peer )
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return ErrorInternal;
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return av->msi_session->calls[call_index]->type_peer[peer];
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}
/**
* @brief Get id of peer participating in conversation
*
* @param av Handler
* @param peer peer index
* @return int
* @retval ToxAvError No peer id
*/
int toxav_get_peer_id ( ToxAv *av, int32_t call_index, int peer )
{
assert(av->msi_session);
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if ( peer < 0 || !av->msi_session->calls[call_index] || av->msi_session->calls[call_index]->peer_count <= peer )
return ErrorInternal;
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return av->msi_session->calls[call_index]->peers[peer];
}
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/**
* @brief Is certain capability supported
*
* @param av Handler
* @return int
* @retval 1 Yes.
* @retval 0 No.
*/
inline__ int toxav_capability_supported ( ToxAv *av, int32_t call_index, ToxAvCapabilities capability )
{
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return av->calls[call_index].cs ? av->calls[call_index].cs->capabilities & (Capabilities) capability : 0;
/* 0 is error here */
}
/**
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* @brief Set queue limit
*
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* @param av Handler
* @param call_index index
* @param limit the limit
* @return void
*/
inline__ int toxav_set_audio_queue_limit(ToxAv *av, int32_t call_index, uint64_t limit)
{
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if ( av->calls[call_index].crtps[audio_index] )
rtp_queue_adjust_limit(av->calls[call_index].crtps[audio_index], limit);
else
return ErrorNoRtpSession;
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return ErrorNone;
}
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/**
* @brief Set queue limit
*
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* @param av Handler
* @param call_index index
* @param limit the limit
* @return void
*/
inline__ int toxav_set_video_queue_limit(ToxAv *av, int32_t call_index, uint64_t limit)
{
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if ( av->calls[call_index].crtps[video_index] )
rtp_queue_adjust_limit(av->calls[call_index].crtps[video_index], limit);
else
return ErrorNoRtpSession;
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return ErrorNone;
}
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inline__ Tox *toxav_get_tox(ToxAv *av)
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{
return (Tox *)av->messenger;
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}