
Trying to submit all changes at once proved impossible since there were too many changes in too many files. The changes to PRESUBMIT.py will be uploaded in the last CL. (original CL: https://codereview.webrtc.org/1528503003/) BUG=webrtc:5309 TBR=mflodman@webrtc.org Review URL: https://codereview.webrtc.org/1541803002 Cr-Commit-Position: refs/heads/master@{#11100}
617 lines
21 KiB
C++
617 lines
21 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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VideoEncoderRateObserver* encoder_rate_observer,
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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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encoder_rate_observer_(encoder_rate_observer),
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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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encoded_frame_callback_->SetPayloadType(send_codec_.plType);
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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(
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new VCMGenericEncoder(external_encoder_, encoder_rate_observer_,
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encoded_frame_callback_, internal_source_));
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encoded_frame_callback_->SetPayloadType(send_codec_.plType);
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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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new_send_codec.extra_options != send_codec_.extra_options) {
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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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|
}
|
|
return receive_codec_.codecType;
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|
}
|
|
|
|
VCMGenericDecoder* VCMCodecDataBase::GetDecoder(
|
|
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();
|
|
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
|