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When the target bitrate is zero, currently VideoSendStream.Stats.target_media_bitrate_bps show the last set rate before the target was set to zero. BUG=webrtc::5687 b/29574845 Review-Url: https://codereview.webrtc.org/2122743003 Cr-Commit-Position: refs/heads/master@{#13386}
612 lines
20 KiB
C++
612 lines
20 KiB
C++
/*
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* Copyright (c) 2012 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "webrtc/modules/video_coding/codec_database.h"
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#include <assert.h>
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#include "webrtc/base/checks.h"
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#include "webrtc/base/logging.h"
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#include "webrtc/engine_configurations.h"
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#include "webrtc/modules/video_coding/codecs/h264/include/h264.h"
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#include "webrtc/modules/video_coding/codecs/i420/include/i420.h"
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#include "webrtc/modules/video_coding/codecs/vp8/include/vp8.h"
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#include "webrtc/modules/video_coding/codecs/vp9/include/vp9.h"
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#include "webrtc/modules/video_coding/internal_defines.h"
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namespace {
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const size_t kDefaultPayloadSize = 1440;
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const uint8_t kDefaultPayloadType = 100;
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}
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namespace webrtc {
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VideoCodecVP8 VideoEncoder::GetDefaultVp8Settings() {
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VideoCodecVP8 vp8_settings;
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memset(&vp8_settings, 0, sizeof(vp8_settings));
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vp8_settings.resilience = kResilientStream;
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vp8_settings.numberOfTemporalLayers = 1;
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vp8_settings.denoisingOn = true;
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vp8_settings.errorConcealmentOn = false;
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vp8_settings.automaticResizeOn = false;
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vp8_settings.frameDroppingOn = true;
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vp8_settings.keyFrameInterval = 3000;
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return vp8_settings;
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}
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VideoCodecVP9 VideoEncoder::GetDefaultVp9Settings() {
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VideoCodecVP9 vp9_settings;
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memset(&vp9_settings, 0, sizeof(vp9_settings));
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vp9_settings.resilience = 1;
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vp9_settings.numberOfTemporalLayers = 1;
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vp9_settings.denoisingOn = false;
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vp9_settings.frameDroppingOn = true;
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vp9_settings.keyFrameInterval = 3000;
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vp9_settings.adaptiveQpMode = true;
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vp9_settings.automaticResizeOn = true;
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vp9_settings.numberOfSpatialLayers = 1;
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vp9_settings.flexibleMode = false;
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return vp9_settings;
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}
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VideoCodecH264 VideoEncoder::GetDefaultH264Settings() {
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VideoCodecH264 h264_settings;
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memset(&h264_settings, 0, sizeof(h264_settings));
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h264_settings.profile = kProfileBase;
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h264_settings.frameDroppingOn = true;
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h264_settings.keyFrameInterval = 3000;
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h264_settings.spsData = nullptr;
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h264_settings.spsLen = 0;
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h264_settings.ppsData = nullptr;
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h264_settings.ppsLen = 0;
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return h264_settings;
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}
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VCMDecoderMapItem::VCMDecoderMapItem(VideoCodec* settings,
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int number_of_cores,
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bool require_key_frame)
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: settings(settings),
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number_of_cores(number_of_cores),
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require_key_frame(require_key_frame) {
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assert(number_of_cores >= 0);
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}
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VCMExtDecoderMapItem::VCMExtDecoderMapItem(
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VideoDecoder* external_decoder_instance,
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uint8_t payload_type)
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: payload_type(payload_type),
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external_decoder_instance(external_decoder_instance) {}
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VCMCodecDataBase::VCMCodecDataBase(
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VCMEncodedFrameCallback* encoded_frame_callback)
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: number_of_cores_(0),
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max_payload_size_(kDefaultPayloadSize),
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periodic_key_frames_(false),
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pending_encoder_reset_(true),
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send_codec_(),
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receive_codec_(),
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encoder_payload_type_(0),
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external_encoder_(nullptr),
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internal_source_(false),
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encoded_frame_callback_(encoded_frame_callback),
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ptr_decoder_(nullptr),
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dec_map_(),
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dec_external_map_() {}
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VCMCodecDataBase::~VCMCodecDataBase() {
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DeleteEncoder();
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ReleaseDecoder(ptr_decoder_);
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for (auto& kv : dec_map_)
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delete kv.second;
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for (auto& kv : dec_external_map_)
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delete kv.second;
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}
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void VCMCodecDataBase::Codec(VideoCodecType codec_type, VideoCodec* settings) {
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memset(settings, 0, sizeof(VideoCodec));
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switch (codec_type) {
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case kVideoCodecVP8:
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strncpy(settings->plName, "VP8", 4);
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settings->codecType = kVideoCodecVP8;
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// 96 to 127 dynamic payload types for video codecs.
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settings->plType = kDefaultPayloadType;
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settings->startBitrate = kDefaultStartBitrateKbps;
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settings->minBitrate = VCM_MIN_BITRATE;
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settings->maxBitrate = 0;
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settings->maxFramerate = VCM_DEFAULT_FRAME_RATE;
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settings->width = VCM_DEFAULT_CODEC_WIDTH;
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settings->height = VCM_DEFAULT_CODEC_HEIGHT;
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settings->numberOfSimulcastStreams = 0;
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settings->qpMax = 56;
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settings->codecSpecific.VP8 = VideoEncoder::GetDefaultVp8Settings();
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return;
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case kVideoCodecVP9:
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strncpy(settings->plName, "VP9", 4);
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settings->codecType = kVideoCodecVP9;
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// 96 to 127 dynamic payload types for video codecs.
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settings->plType = kDefaultPayloadType;
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settings->startBitrate = 100;
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settings->minBitrate = VCM_MIN_BITRATE;
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settings->maxBitrate = 0;
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settings->maxFramerate = VCM_DEFAULT_FRAME_RATE;
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settings->width = VCM_DEFAULT_CODEC_WIDTH;
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settings->height = VCM_DEFAULT_CODEC_HEIGHT;
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settings->numberOfSimulcastStreams = 0;
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settings->qpMax = 56;
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settings->codecSpecific.VP9 = VideoEncoder::GetDefaultVp9Settings();
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return;
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case kVideoCodecH264:
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strncpy(settings->plName, "H264", 5);
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settings->codecType = kVideoCodecH264;
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// 96 to 127 dynamic payload types for video codecs.
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settings->plType = kDefaultPayloadType;
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settings->startBitrate = kDefaultStartBitrateKbps;
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settings->minBitrate = VCM_MIN_BITRATE;
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settings->maxBitrate = 0;
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settings->maxFramerate = VCM_DEFAULT_FRAME_RATE;
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settings->width = VCM_DEFAULT_CODEC_WIDTH;
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settings->height = VCM_DEFAULT_CODEC_HEIGHT;
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settings->numberOfSimulcastStreams = 0;
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settings->qpMax = 56;
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settings->codecSpecific.H264 = VideoEncoder::GetDefaultH264Settings();
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return;
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case kVideoCodecI420:
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strncpy(settings->plName, "I420", 5);
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settings->codecType = kVideoCodecI420;
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// 96 to 127 dynamic payload types for video codecs.
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settings->plType = kDefaultPayloadType;
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// Bitrate needed for this size and framerate.
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settings->startBitrate = 3 * VCM_DEFAULT_CODEC_WIDTH *
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VCM_DEFAULT_CODEC_HEIGHT * 8 *
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VCM_DEFAULT_FRAME_RATE / 1000 / 2;
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settings->maxBitrate = settings->startBitrate;
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settings->maxFramerate = VCM_DEFAULT_FRAME_RATE;
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settings->width = VCM_DEFAULT_CODEC_WIDTH;
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settings->height = VCM_DEFAULT_CODEC_HEIGHT;
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settings->minBitrate = VCM_MIN_BITRATE;
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settings->numberOfSimulcastStreams = 0;
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return;
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case kVideoCodecRED:
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case kVideoCodecULPFEC:
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case kVideoCodecGeneric:
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case kVideoCodecUnknown:
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RTC_NOTREACHED();
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return;
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}
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}
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// Assuming only one registered encoder - since only one used, no need for more.
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bool VCMCodecDataBase::SetSendCodec(const VideoCodec* send_codec,
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int number_of_cores,
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size_t max_payload_size) {
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RTC_DCHECK(send_codec);
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if (max_payload_size == 0) {
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max_payload_size = kDefaultPayloadSize;
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}
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RTC_DCHECK_GE(number_of_cores, 1);
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RTC_DCHECK_GE(send_codec->plType, 1);
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// Make sure the start bit rate is sane...
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RTC_DCHECK_LE(send_codec->startBitrate, 1000000u);
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RTC_DCHECK(send_codec->codecType != kVideoCodecUnknown);
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bool reset_required = pending_encoder_reset_;
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if (number_of_cores_ != number_of_cores) {
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number_of_cores_ = number_of_cores;
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reset_required = true;
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}
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if (max_payload_size_ != max_payload_size) {
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max_payload_size_ = max_payload_size;
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reset_required = true;
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}
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VideoCodec new_send_codec;
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memcpy(&new_send_codec, send_codec, sizeof(new_send_codec));
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if (new_send_codec.maxBitrate == 0) {
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// max is one bit per pixel
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new_send_codec.maxBitrate = (static_cast<int>(send_codec->height) *
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static_cast<int>(send_codec->width) *
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static_cast<int>(send_codec->maxFramerate)) /
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1000;
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if (send_codec->startBitrate > new_send_codec.maxBitrate) {
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// But if the user tries to set a higher start bit rate we will
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// increase the max accordingly.
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new_send_codec.maxBitrate = send_codec->startBitrate;
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}
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}
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if (new_send_codec.startBitrate > new_send_codec.maxBitrate)
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new_send_codec.startBitrate = new_send_codec.maxBitrate;
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if (!reset_required) {
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reset_required = RequiresEncoderReset(new_send_codec);
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}
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memcpy(&send_codec_, &new_send_codec, sizeof(send_codec_));
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if (!reset_required) {
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return true;
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}
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// If encoder exists, will destroy it and create new one.
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DeleteEncoder();
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RTC_DCHECK_EQ(encoder_payload_type_, send_codec_.plType)
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<< "Encoder not registered for payload type " << send_codec_.plType;
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ptr_encoder_.reset(new VCMGenericEncoder(
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external_encoder_, encoded_frame_callback_, internal_source_));
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encoded_frame_callback_->SetInternalSource(internal_source_);
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if (ptr_encoder_->InitEncode(&send_codec_, number_of_cores_,
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max_payload_size_) < 0) {
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LOG(LS_ERROR) << "Failed to initialize video encoder.";
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DeleteEncoder();
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return false;
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}
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// Intentionally don't check return value since the encoder registration
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// shouldn't fail because the codec doesn't support changing the periodic key
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// frame setting.
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ptr_encoder_->SetPeriodicKeyFrames(periodic_key_frames_);
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pending_encoder_reset_ = false;
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return true;
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}
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bool VCMCodecDataBase::SendCodec(VideoCodec* current_send_codec) const {
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if (!ptr_encoder_) {
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return false;
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}
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memcpy(current_send_codec, &send_codec_, sizeof(VideoCodec));
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return true;
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}
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VideoCodecType VCMCodecDataBase::SendCodec() const {
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if (!ptr_encoder_) {
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return kVideoCodecUnknown;
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}
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return send_codec_.codecType;
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}
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bool VCMCodecDataBase::DeregisterExternalEncoder(uint8_t payload_type,
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bool* was_send_codec) {
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assert(was_send_codec);
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*was_send_codec = false;
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if (encoder_payload_type_ != payload_type) {
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return false;
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}
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if (send_codec_.plType == payload_type) {
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// De-register as send codec if needed.
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DeleteEncoder();
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memset(&send_codec_, 0, sizeof(VideoCodec));
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*was_send_codec = true;
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}
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encoder_payload_type_ = 0;
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external_encoder_ = nullptr;
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internal_source_ = false;
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return true;
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}
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void VCMCodecDataBase::RegisterExternalEncoder(VideoEncoder* external_encoder,
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uint8_t payload_type,
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bool internal_source) {
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// Since only one encoder can be used at a given time, only one external
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// encoder can be registered/used.
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external_encoder_ = external_encoder;
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encoder_payload_type_ = payload_type;
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internal_source_ = internal_source;
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pending_encoder_reset_ = true;
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}
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bool VCMCodecDataBase::RequiresEncoderReset(const VideoCodec& new_send_codec) {
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if (!ptr_encoder_)
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return true;
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// Does not check startBitrate or maxFramerate
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if (new_send_codec.codecType != send_codec_.codecType ||
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strcmp(new_send_codec.plName, send_codec_.plName) != 0 ||
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new_send_codec.plType != send_codec_.plType ||
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new_send_codec.width != send_codec_.width ||
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new_send_codec.height != send_codec_.height ||
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new_send_codec.maxBitrate != send_codec_.maxBitrate ||
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new_send_codec.minBitrate != send_codec_.minBitrate ||
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new_send_codec.qpMax != send_codec_.qpMax ||
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new_send_codec.numberOfSimulcastStreams !=
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send_codec_.numberOfSimulcastStreams ||
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new_send_codec.mode != send_codec_.mode) {
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return true;
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}
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switch (new_send_codec.codecType) {
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case kVideoCodecVP8:
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if (memcmp(&new_send_codec.codecSpecific.VP8,
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&send_codec_.codecSpecific.VP8,
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sizeof(new_send_codec.codecSpecific.VP8)) != 0) {
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return true;
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}
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break;
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case kVideoCodecVP9:
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if (memcmp(&new_send_codec.codecSpecific.VP9,
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&send_codec_.codecSpecific.VP9,
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sizeof(new_send_codec.codecSpecific.VP9)) != 0) {
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return true;
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}
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break;
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case kVideoCodecH264:
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if (memcmp(&new_send_codec.codecSpecific.H264,
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&send_codec_.codecSpecific.H264,
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sizeof(new_send_codec.codecSpecific.H264)) != 0) {
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return true;
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}
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break;
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case kVideoCodecGeneric:
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break;
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// Known codecs without payload-specifics
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case kVideoCodecI420:
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case kVideoCodecRED:
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case kVideoCodecULPFEC:
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break;
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// Unknown codec type, reset just to be sure.
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case kVideoCodecUnknown:
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return true;
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}
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if (new_send_codec.numberOfSimulcastStreams > 0) {
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for (unsigned char i = 0; i < new_send_codec.numberOfSimulcastStreams;
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++i) {
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if (memcmp(&new_send_codec.simulcastStream[i],
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&send_codec_.simulcastStream[i],
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sizeof(new_send_codec.simulcastStream[i])) != 0) {
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return true;
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}
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}
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}
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return false;
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}
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VCMGenericEncoder* VCMCodecDataBase::GetEncoder() {
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return ptr_encoder_.get();
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}
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bool VCMCodecDataBase::SetPeriodicKeyFrames(bool enable) {
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periodic_key_frames_ = enable;
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if (ptr_encoder_) {
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return (ptr_encoder_->SetPeriodicKeyFrames(periodic_key_frames_) == 0);
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}
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return true;
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}
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bool VCMCodecDataBase::DeregisterExternalDecoder(uint8_t payload_type) {
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ExternalDecoderMap::iterator it = dec_external_map_.find(payload_type);
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if (it == dec_external_map_.end()) {
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// Not found
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return false;
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}
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// We can't use payload_type to check if the decoder is currently in use,
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// because payload type may be out of date (e.g. before we decode the first
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// frame after RegisterReceiveCodec)
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if (ptr_decoder_ != nullptr &&
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ptr_decoder_->_decoder == (*it).second->external_decoder_instance) {
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// Release it if it was registered and in use.
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ReleaseDecoder(ptr_decoder_);
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ptr_decoder_ = nullptr;
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}
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DeregisterReceiveCodec(payload_type);
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delete it->second;
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dec_external_map_.erase(it);
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return true;
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}
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// Add the external encoder object to the list of external decoders.
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// Won't be registered as a receive codec until RegisterReceiveCodec is called.
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void VCMCodecDataBase::RegisterExternalDecoder(VideoDecoder* external_decoder,
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uint8_t payload_type) {
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// Check if payload value already exists, if so - erase old and insert new.
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VCMExtDecoderMapItem* ext_decoder =
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new VCMExtDecoderMapItem(external_decoder, payload_type);
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DeregisterExternalDecoder(payload_type);
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dec_external_map_[payload_type] = ext_decoder;
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}
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bool VCMCodecDataBase::DecoderRegistered() const {
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return !dec_map_.empty();
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}
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bool VCMCodecDataBase::RegisterReceiveCodec(const VideoCodec* receive_codec,
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int number_of_cores,
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bool require_key_frame) {
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if (number_of_cores < 0) {
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return false;
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}
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// Check if payload value already exists, if so - erase old and insert new.
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DeregisterReceiveCodec(receive_codec->plType);
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if (receive_codec->codecType == kVideoCodecUnknown) {
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return false;
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}
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VideoCodec* new_receive_codec = new VideoCodec(*receive_codec);
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dec_map_[receive_codec->plType] = new VCMDecoderMapItem(
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new_receive_codec, number_of_cores, require_key_frame);
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return true;
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}
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bool VCMCodecDataBase::DeregisterReceiveCodec(uint8_t payload_type) {
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DecoderMap::iterator it = dec_map_.find(payload_type);
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if (it == dec_map_.end()) {
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return false;
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}
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delete it->second;
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dec_map_.erase(it);
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if (receive_codec_.plType == payload_type) {
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// This codec is currently in use.
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memset(&receive_codec_, 0, sizeof(VideoCodec));
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}
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return true;
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}
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bool VCMCodecDataBase::ReceiveCodec(VideoCodec* current_receive_codec) const {
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assert(current_receive_codec);
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if (!ptr_decoder_) {
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return false;
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}
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memcpy(current_receive_codec, &receive_codec_, sizeof(VideoCodec));
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return true;
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}
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VideoCodecType VCMCodecDataBase::ReceiveCodec() const {
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if (!ptr_decoder_) {
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return kVideoCodecUnknown;
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}
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return receive_codec_.codecType;
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}
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VCMGenericDecoder* VCMCodecDataBase::GetDecoder(
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const VCMEncodedFrame& frame,
|
|
VCMDecodedFrameCallback* decoded_frame_callback) {
|
|
uint8_t payload_type = frame.PayloadType();
|
|
if (payload_type == receive_codec_.plType || payload_type == 0) {
|
|
return ptr_decoder_;
|
|
}
|
|
// Check for exisitng decoder, if exists - delete.
|
|
if (ptr_decoder_) {
|
|
ReleaseDecoder(ptr_decoder_);
|
|
ptr_decoder_ = nullptr;
|
|
memset(&receive_codec_, 0, sizeof(VideoCodec));
|
|
}
|
|
ptr_decoder_ = CreateAndInitDecoder(frame, &receive_codec_);
|
|
if (!ptr_decoder_) {
|
|
return nullptr;
|
|
}
|
|
VCMReceiveCallback* callback = decoded_frame_callback->UserReceiveCallback();
|
|
if (callback)
|
|
callback->OnIncomingPayloadType(receive_codec_.plType);
|
|
if (ptr_decoder_->RegisterDecodeCompleteCallback(decoded_frame_callback) <
|
|
0) {
|
|
ReleaseDecoder(ptr_decoder_);
|
|
ptr_decoder_ = nullptr;
|
|
memset(&receive_codec_, 0, sizeof(VideoCodec));
|
|
return nullptr;
|
|
}
|
|
return ptr_decoder_;
|
|
}
|
|
|
|
void VCMCodecDataBase::ReleaseDecoder(VCMGenericDecoder* decoder) const {
|
|
if (decoder) {
|
|
assert(decoder->_decoder);
|
|
decoder->Release();
|
|
if (!decoder->External()) {
|
|
delete decoder->_decoder;
|
|
}
|
|
delete decoder;
|
|
}
|
|
}
|
|
|
|
bool VCMCodecDataBase::PrefersLateDecoding() const {
|
|
if (!ptr_decoder_)
|
|
return true;
|
|
return ptr_decoder_->PrefersLateDecoding();
|
|
}
|
|
|
|
bool VCMCodecDataBase::MatchesCurrentResolution(int width, int height) const {
|
|
return send_codec_.width == width && send_codec_.height == height;
|
|
}
|
|
|
|
VCMGenericDecoder* VCMCodecDataBase::CreateAndInitDecoder(
|
|
const VCMEncodedFrame& frame,
|
|
VideoCodec* new_codec) const {
|
|
uint8_t payload_type = frame.PayloadType();
|
|
LOG(LS_INFO) << "Initializing decoder with payload type '"
|
|
<< static_cast<int>(payload_type) << "'.";
|
|
assert(new_codec);
|
|
const VCMDecoderMapItem* decoder_item = FindDecoderItem(payload_type);
|
|
if (!decoder_item) {
|
|
LOG(LS_ERROR) << "Can't find a decoder associated with payload type: "
|
|
<< static_cast<int>(payload_type);
|
|
return nullptr;
|
|
}
|
|
VCMGenericDecoder* ptr_decoder = nullptr;
|
|
const VCMExtDecoderMapItem* external_dec_item =
|
|
FindExternalDecoderItem(payload_type);
|
|
if (external_dec_item) {
|
|
// External codec.
|
|
ptr_decoder = new VCMGenericDecoder(
|
|
external_dec_item->external_decoder_instance, true);
|
|
} else {
|
|
// Create decoder.
|
|
ptr_decoder = CreateDecoder(decoder_item->settings->codecType);
|
|
}
|
|
if (!ptr_decoder)
|
|
return nullptr;
|
|
|
|
// Copy over input resolutions to prevent codec reinitialization due to
|
|
// the first frame being of a different resolution than the database values.
|
|
// This is best effort, since there's no guarantee that width/height have been
|
|
// parsed yet (and may be zero).
|
|
if (frame.EncodedImage()._encodedWidth > 0 &&
|
|
frame.EncodedImage()._encodedHeight > 0) {
|
|
decoder_item->settings->width = frame.EncodedImage()._encodedWidth;
|
|
decoder_item->settings->height = frame.EncodedImage()._encodedHeight;
|
|
}
|
|
if (ptr_decoder->InitDecode(decoder_item->settings.get(),
|
|
decoder_item->number_of_cores) < 0) {
|
|
ReleaseDecoder(ptr_decoder);
|
|
return nullptr;
|
|
}
|
|
memcpy(new_codec, decoder_item->settings.get(), sizeof(VideoCodec));
|
|
return ptr_decoder;
|
|
}
|
|
|
|
void VCMCodecDataBase::DeleteEncoder() {
|
|
if (!ptr_encoder_)
|
|
return;
|
|
ptr_encoder_->Release();
|
|
ptr_encoder_.reset();
|
|
}
|
|
|
|
VCMGenericDecoder* VCMCodecDataBase::CreateDecoder(VideoCodecType type) const {
|
|
switch (type) {
|
|
case kVideoCodecVP8:
|
|
return new VCMGenericDecoder(VP8Decoder::Create());
|
|
case kVideoCodecVP9:
|
|
return new VCMGenericDecoder(VP9Decoder::Create());
|
|
case kVideoCodecI420:
|
|
return new VCMGenericDecoder(new I420Decoder());
|
|
case kVideoCodecH264:
|
|
if (H264Decoder::IsSupported()) {
|
|
return new VCMGenericDecoder(H264Decoder::Create());
|
|
}
|
|
break;
|
|
default:
|
|
break;
|
|
}
|
|
LOG(LS_WARNING) << "No internal decoder of this type exists.";
|
|
return nullptr;
|
|
}
|
|
|
|
const VCMDecoderMapItem* VCMCodecDataBase::FindDecoderItem(
|
|
uint8_t payload_type) const {
|
|
DecoderMap::const_iterator it = dec_map_.find(payload_type);
|
|
if (it != dec_map_.end()) {
|
|
return (*it).second;
|
|
}
|
|
return nullptr;
|
|
}
|
|
|
|
const VCMExtDecoderMapItem* VCMCodecDataBase::FindExternalDecoderItem(
|
|
uint8_t payload_type) const {
|
|
ExternalDecoderMap::const_iterator it = dec_external_map_.find(payload_type);
|
|
if (it != dec_external_map_.end()) {
|
|
return (*it).second;
|
|
}
|
|
return nullptr;
|
|
}
|
|
} // namespace webrtc
|