395 lines
14 KiB
C++
395 lines
14 KiB
C++
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/*
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* Copyright (c) 2016 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/call/rtc_event_log_parser.h"
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#include <string.h>
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#include <fstream>
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#include "webrtc/base/checks.h"
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#include "webrtc/base/logging.h"
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#include "webrtc/call.h"
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#include "webrtc/call/rtc_event_log.h"
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#include "webrtc/modules/rtp_rtcp/include/rtp_rtcp_defines.h"
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#include "webrtc/system_wrappers/include/file_wrapper.h"
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namespace webrtc {
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namespace {
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MediaType GetRuntimeMediaType(rtclog::MediaType media_type) {
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switch (media_type) {
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case rtclog::MediaType::ANY:
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return MediaType::ANY;
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case rtclog::MediaType::AUDIO:
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return MediaType::AUDIO;
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case rtclog::MediaType::VIDEO:
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return MediaType::VIDEO;
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case rtclog::MediaType::DATA:
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return MediaType::DATA;
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}
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RTC_NOTREACHED();
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return MediaType::ANY;
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}
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RtcpMode GetRuntimeRtcpMode(rtclog::VideoReceiveConfig::RtcpMode rtcp_mode) {
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switch (rtcp_mode) {
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case rtclog::VideoReceiveConfig::RTCP_COMPOUND:
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return RtcpMode::kCompound;
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case rtclog::VideoReceiveConfig::RTCP_REDUCEDSIZE:
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return RtcpMode::kReducedSize;
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}
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RTC_NOTREACHED();
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return RtcpMode::kOff;
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}
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ParsedRtcEventLog::EventType GetRuntimeEventType(
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rtclog::Event::EventType event_type) {
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switch (event_type) {
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case rtclog::Event::UNKNOWN_EVENT:
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return ParsedRtcEventLog::EventType::UNKNOWN_EVENT;
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case rtclog::Event::LOG_START:
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return ParsedRtcEventLog::EventType::LOG_START;
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case rtclog::Event::LOG_END:
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return ParsedRtcEventLog::EventType::LOG_END;
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case rtclog::Event::RTP_EVENT:
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return ParsedRtcEventLog::EventType::RTP_EVENT;
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case rtclog::Event::RTCP_EVENT:
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return ParsedRtcEventLog::EventType::RTCP_EVENT;
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case rtclog::Event::AUDIO_PLAYOUT_EVENT:
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return ParsedRtcEventLog::EventType::AUDIO_PLAYOUT_EVENT;
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case rtclog::Event::BWE_PACKET_LOSS_EVENT:
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return ParsedRtcEventLog::EventType::BWE_PACKET_LOSS_EVENT;
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case rtclog::Event::BWE_PACKET_DELAY_EVENT:
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return ParsedRtcEventLog::EventType::BWE_PACKET_DELAY_EVENT;
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case rtclog::Event::VIDEO_RECEIVER_CONFIG_EVENT:
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return ParsedRtcEventLog::EventType::VIDEO_RECEIVER_CONFIG_EVENT;
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case rtclog::Event::VIDEO_SENDER_CONFIG_EVENT:
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return ParsedRtcEventLog::EventType::VIDEO_SENDER_CONFIG_EVENT;
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case rtclog::Event::AUDIO_RECEIVER_CONFIG_EVENT:
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return ParsedRtcEventLog::EventType::AUDIO_RECEIVER_CONFIG_EVENT;
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case rtclog::Event::AUDIO_SENDER_CONFIG_EVENT:
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return ParsedRtcEventLog::EventType::AUDIO_SENDER_CONFIG_EVENT;
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}
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RTC_NOTREACHED();
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return ParsedRtcEventLog::EventType::UNKNOWN_EVENT;
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}
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bool ParseVarInt(std::FILE* file, uint64_t* varint, size_t* bytes_read) {
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uint8_t byte;
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*varint = 0;
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for (*bytes_read = 0; *bytes_read < 10 && fread(&byte, 1, 1, file) == 1;
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++(*bytes_read)) {
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// The most significant bit of each byte is 0 if it is the last byte in
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// the varint and 1 otherwise. Thus, we take the 7 least significant bits
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// of each byte and shift them 7 bits for each byte read previously to get
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// the (unsigned) integer.
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*varint |= static_cast<uint64_t>(byte & 0x7F) << (7 * *bytes_read);
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if ((byte & 0x80) == 0) {
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return true;
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}
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}
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return false;
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}
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} // namespace
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bool ParsedRtcEventLog::ParseFile(const std::string& filename) {
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stream_.clear();
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const size_t kMaxEventSize = (1u << 16) - 1;
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char tmp_buffer[kMaxEventSize];
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std::FILE* file = fopen(filename.c_str(), "rb");
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if (!file) {
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LOG(LS_WARNING) << "Could not open file for reading.";
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return false;
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}
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while (1) {
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// Peek at the next message tag. The tag number is defined as
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// (fieldnumber << 3) | wire_type. In our case, the field number is
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// supposed to be 1 and the wire type for an length-delimited field is 2.
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const uint64_t kExpectedTag = (1 << 3) | 2;
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uint64_t tag;
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size_t bytes_read;
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if (!ParseVarInt(file, &tag, &bytes_read) || tag != kExpectedTag) {
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fclose(file);
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if (bytes_read == 0) {
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return true; // Reached end of file.
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}
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LOG(LS_WARNING) << "Missing field tag from beginning of protobuf event.";
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return false;
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}
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// Peek at the length field.
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uint64_t message_length;
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if (!ParseVarInt(file, &message_length, &bytes_read)) {
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LOG(LS_WARNING) << "Missing message length after protobuf field tag.";
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fclose(file);
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return false;
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} else if (message_length > kMaxEventSize) {
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LOG(LS_WARNING) << "Protobuf message length is too large.";
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fclose(file);
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return false;
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}
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if (fread(tmp_buffer, 1, message_length, file) != message_length) {
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LOG(LS_WARNING) << "Failed to read protobuf message from file.";
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fclose(file);
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return false;
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}
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rtclog::Event event;
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if (!event.ParseFromArray(tmp_buffer, message_length)) {
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LOG(LS_WARNING) << "Failed to parse protobuf message.";
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fclose(file);
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return false;
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}
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stream_.push_back(event);
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}
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}
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size_t ParsedRtcEventLog::GetNumberOfEvents() const {
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return stream_.size();
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}
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int64_t ParsedRtcEventLog::GetTimestamp(size_t index) const {
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RTC_CHECK_LT(index, GetNumberOfEvents());
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const rtclog::Event& event = stream_[index];
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RTC_CHECK(event.has_timestamp_us());
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return event.timestamp_us();
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}
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ParsedRtcEventLog::EventType ParsedRtcEventLog::GetEventType(
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size_t index) const {
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RTC_CHECK_LT(index, GetNumberOfEvents());
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const rtclog::Event& event = stream_[index];
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RTC_CHECK(event.has_type());
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return GetRuntimeEventType(event.type());
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}
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// The header must have space for at least IP_PACKET_SIZE bytes.
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void ParsedRtcEventLog::GetRtpHeader(size_t index,
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PacketDirection* incoming,
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MediaType* media_type,
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uint8_t* header,
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size_t* header_length,
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size_t* total_length) const {
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RTC_CHECK_LT(index, GetNumberOfEvents());
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const rtclog::Event& event = stream_[index];
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RTC_CHECK(event.has_type());
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RTC_CHECK_EQ(event.type(), rtclog::Event::RTP_EVENT);
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RTC_CHECK(event.has_rtp_packet());
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const rtclog::RtpPacket& rtp_packet = event.rtp_packet();
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// Get direction of packet.
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RTC_CHECK(rtp_packet.has_incoming());
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if (incoming != nullptr) {
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*incoming = rtp_packet.incoming() ? kIncomingPacket : kOutgoingPacket;
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}
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// Get media type.
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RTC_CHECK(rtp_packet.has_type());
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if (media_type != nullptr) {
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*media_type = GetRuntimeMediaType(rtp_packet.type());
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}
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// Get packet length.
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RTC_CHECK(rtp_packet.has_packet_length());
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if (total_length != nullptr) {
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*total_length = rtp_packet.packet_length();
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}
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// Get header length.
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RTC_CHECK(rtp_packet.has_header());
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if (header_length != nullptr) {
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*header_length = rtp_packet.header().size();
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}
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// Get header contents.
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if (header != nullptr) {
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const size_t kMinRtpHeaderSize = 12;
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RTC_CHECK_GE(rtp_packet.header().size(), kMinRtpHeaderSize);
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RTC_CHECK_LE(rtp_packet.header().size(),
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static_cast<size_t>(IP_PACKET_SIZE));
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memcpy(header, rtp_packet.header().data(), rtp_packet.header().size());
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}
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}
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// The packet must have space for at least IP_PACKET_SIZE bytes.
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void ParsedRtcEventLog::GetRtcpPacket(size_t index,
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PacketDirection* incoming,
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MediaType* media_type,
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uint8_t* packet,
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size_t* length) const {
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RTC_CHECK_LT(index, GetNumberOfEvents());
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const rtclog::Event& event = stream_[index];
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RTC_CHECK(event.has_type());
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RTC_CHECK_EQ(event.type(), rtclog::Event::RTCP_EVENT);
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RTC_CHECK(event.has_rtcp_packet());
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const rtclog::RtcpPacket& rtcp_packet = event.rtcp_packet();
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// Get direction of packet.
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RTC_CHECK(rtcp_packet.has_incoming());
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if (incoming != nullptr) {
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*incoming = rtcp_packet.incoming() ? kIncomingPacket : kOutgoingPacket;
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}
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// Get media type.
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RTC_CHECK(rtcp_packet.has_type());
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if (media_type != nullptr) {
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*media_type = GetRuntimeMediaType(rtcp_packet.type());
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}
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// Get packet length.
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RTC_CHECK(rtcp_packet.has_packet_data());
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if (length != nullptr) {
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*length = rtcp_packet.packet_data().size();
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}
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// Get packet contents.
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if (packet != nullptr) {
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RTC_CHECK_LE(rtcp_packet.packet_data().size(),
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static_cast<unsigned>(IP_PACKET_SIZE));
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memcpy(packet, rtcp_packet.packet_data().data(),
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rtcp_packet.packet_data().size());
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}
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}
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void ParsedRtcEventLog::GetVideoReceiveConfig(
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size_t index,
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VideoReceiveStream::Config* config) const {
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RTC_CHECK_LT(index, GetNumberOfEvents());
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const rtclog::Event& event = stream_[index];
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RTC_CHECK(config != nullptr);
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RTC_CHECK(event.has_type());
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RTC_CHECK_EQ(event.type(), rtclog::Event::VIDEO_RECEIVER_CONFIG_EVENT);
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RTC_CHECK(event.has_video_receiver_config());
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const rtclog::VideoReceiveConfig& receiver_config =
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event.video_receiver_config();
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// Get SSRCs.
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RTC_CHECK(receiver_config.has_remote_ssrc());
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config->rtp.remote_ssrc = receiver_config.remote_ssrc();
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RTC_CHECK(receiver_config.has_local_ssrc());
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config->rtp.local_ssrc = receiver_config.local_ssrc();
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// Get RTCP settings.
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RTC_CHECK(receiver_config.has_rtcp_mode());
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config->rtp.rtcp_mode = GetRuntimeRtcpMode(receiver_config.rtcp_mode());
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RTC_CHECK(receiver_config.has_remb());
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config->rtp.remb = receiver_config.remb();
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// Get RTX map.
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config->rtp.rtx.clear();
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for (int i = 0; i < receiver_config.rtx_map_size(); i++) {
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const rtclog::RtxMap& map = receiver_config.rtx_map(i);
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RTC_CHECK(map.has_payload_type());
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RTC_CHECK(map.has_config());
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RTC_CHECK(map.config().has_rtx_ssrc());
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RTC_CHECK(map.config().has_rtx_payload_type());
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webrtc::VideoReceiveStream::Config::Rtp::Rtx rtx_pair;
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rtx_pair.ssrc = map.config().rtx_ssrc();
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rtx_pair.payload_type = map.config().rtx_payload_type();
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config->rtp.rtx.insert(std::make_pair(map.payload_type(), rtx_pair));
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}
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// Get header extensions.
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config->rtp.extensions.clear();
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for (int i = 0; i < receiver_config.header_extensions_size(); i++) {
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RTC_CHECK(receiver_config.header_extensions(i).has_name());
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RTC_CHECK(receiver_config.header_extensions(i).has_id());
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const std::string& name = receiver_config.header_extensions(i).name();
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int id = receiver_config.header_extensions(i).id();
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config->rtp.extensions.push_back(RtpExtension(name, id));
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}
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// Get decoders.
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config->decoders.clear();
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for (int i = 0; i < receiver_config.decoders_size(); i++) {
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RTC_CHECK(receiver_config.decoders(i).has_name());
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RTC_CHECK(receiver_config.decoders(i).has_payload_type());
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VideoReceiveStream::Decoder decoder;
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decoder.payload_name = receiver_config.decoders(i).name();
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decoder.payload_type = receiver_config.decoders(i).payload_type();
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config->decoders.push_back(decoder);
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}
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}
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void ParsedRtcEventLog::GetVideoSendConfig(
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size_t index,
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VideoSendStream::Config* config) const {
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RTC_CHECK_LT(index, GetNumberOfEvents());
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const rtclog::Event& event = stream_[index];
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RTC_CHECK(config != nullptr);
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RTC_CHECK(event.has_type());
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RTC_CHECK_EQ(event.type(), rtclog::Event::VIDEO_SENDER_CONFIG_EVENT);
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RTC_CHECK(event.has_video_sender_config());
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const rtclog::VideoSendConfig& sender_config = event.video_sender_config();
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// Get SSRCs.
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config->rtp.ssrcs.clear();
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for (int i = 0; i < sender_config.ssrcs_size(); i++) {
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config->rtp.ssrcs.push_back(sender_config.ssrcs(i));
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}
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// Get header extensions.
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config->rtp.extensions.clear();
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for (int i = 0; i < sender_config.header_extensions_size(); i++) {
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RTC_CHECK(sender_config.header_extensions(i).has_name());
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RTC_CHECK(sender_config.header_extensions(i).has_id());
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const std::string& name = sender_config.header_extensions(i).name();
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int id = sender_config.header_extensions(i).id();
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config->rtp.extensions.push_back(RtpExtension(name, id));
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}
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// Get RTX settings.
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config->rtp.rtx.ssrcs.clear();
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for (int i = 0; i < sender_config.rtx_ssrcs_size(); i++) {
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config->rtp.rtx.ssrcs.push_back(sender_config.rtx_ssrcs(i));
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}
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if (sender_config.rtx_ssrcs_size() > 0) {
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RTC_CHECK(sender_config.has_rtx_payload_type());
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config->rtp.rtx.payload_type = sender_config.rtx_payload_type();
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} else {
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// Reset RTX payload type default value if no RTX SSRCs are used.
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config->rtp.rtx.payload_type = -1;
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}
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// Get encoder.
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RTC_CHECK(sender_config.has_encoder());
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RTC_CHECK(sender_config.encoder().has_name());
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RTC_CHECK(sender_config.encoder().has_payload_type());
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config->encoder_settings.payload_name = sender_config.encoder().name();
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config->encoder_settings.payload_type =
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sender_config.encoder().payload_type();
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}
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void ParsedRtcEventLog::GetAudioPlayout(size_t index, uint32_t* ssrc) const {
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RTC_CHECK_LT(index, GetNumberOfEvents());
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const rtclog::Event& event = stream_[index];
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RTC_CHECK(event.has_type());
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RTC_CHECK_EQ(event.type(), rtclog::Event::AUDIO_PLAYOUT_EVENT);
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RTC_CHECK(event.has_audio_playout_event());
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const rtclog::AudioPlayoutEvent& loss_event = event.audio_playout_event();
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RTC_CHECK(loss_event.has_local_ssrc());
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if (ssrc != nullptr) {
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*ssrc = loss_event.local_ssrc();
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}
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}
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void ParsedRtcEventLog::GetBwePacketLossEvent(size_t index,
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int32_t* bitrate,
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uint8_t* fraction_loss,
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int32_t* total_packets) const {
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RTC_CHECK_LT(index, GetNumberOfEvents());
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const rtclog::Event& event = stream_[index];
|
||
|
RTC_CHECK(event.has_type());
|
||
|
RTC_CHECK_EQ(event.type(), rtclog::Event::BWE_PACKET_LOSS_EVENT);
|
||
|
RTC_CHECK(event.has_bwe_packet_loss_event());
|
||
|
const rtclog::BwePacketLossEvent& loss_event = event.bwe_packet_loss_event();
|
||
|
RTC_CHECK(loss_event.has_bitrate());
|
||
|
if (bitrate != nullptr) {
|
||
|
*bitrate = loss_event.bitrate();
|
||
|
}
|
||
|
RTC_CHECK(loss_event.has_fraction_loss());
|
||
|
if (fraction_loss != nullptr) {
|
||
|
*fraction_loss = loss_event.fraction_loss();
|
||
|
}
|
||
|
RTC_CHECK(loss_event.has_total_packets());
|
||
|
if (total_packets != nullptr) {
|
||
|
*total_packets = loss_event.total_packets();
|
||
|
}
|
||
|
}
|
||
|
|
||
|
} // namespace webrtc
|