webrtc/modules/rtp_rtcp/source/rtcp_transceiver.cc
Mirko Bonadei 317a1f09ed Use std::make_unique instead of absl::make_unique.
WebRTC is now using C++14 so there is no need to use the Abseil version
of std::make_unique.

This CL has been created with the following steps:

git grep -l absl::make_unique | sort | uniq > /tmp/make_unique.txt
git grep -l absl::WrapUnique | sort | uniq > /tmp/wrap_unique.txt
git grep -l "#include <memory>" | sort | uniq > /tmp/memory.txt

diff --new-line-format="" --unchanged-line-format="" \
  /tmp/make_unique.txt /tmp/wrap_unique.txt | sort | \
  uniq > /tmp/only_make_unique.txt
diff --new-line-format="" --unchanged-line-format="" \
  /tmp/only_make_unique.txt /tmp/memory.txt | \
  xargs grep -l "absl/memory" > /tmp/add-memory.txt

git grep -l "\babsl::make_unique\b" | \
  xargs sed -i "s/\babsl::make_unique\b/std::make_unique/g"

git checkout PRESUBMIT.py abseil-in-webrtc.md

cat /tmp/add-memory.txt | \
  xargs sed -i \
  's/#include "absl\/memory\/memory.h"/#include <memory>/g'
git cl format
# Manual fix order of the new inserted #include <memory>

cat /tmp/only_make_unique | xargs grep -l "#include <memory>" | \
  xargs sed -i '/#include "absl\/memory\/memory.h"/d'

git ls-files | grep BUILD.gn | \
  xargs sed -i '/\/\/third_party\/abseil-cpp\/absl\/memory/d'

python tools_webrtc/gn_check_autofix.py \
  -m tryserver.webrtc -b linux_rel

# Repead the gn_check_autofix step for other platforms

git ls-files | grep BUILD.gn | \
  xargs sed -i 's/absl\/memory:memory/absl\/memory/g'
git cl format

Bug: webrtc:10945
Change-Id: I3fe28ea80f4dd3ba3cf28effd151d5e1f19aff89
Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/153221
Commit-Queue: Mirko Bonadei <mbonadei@webrtc.org>
Reviewed-by: Alessio Bazzica <alessiob@webrtc.org>
Reviewed-by: Karl Wiberg <kwiberg@webrtc.org>
Cr-Commit-Position: refs/heads/master@{#29209}
2019-09-17 15:47:29 +00:00

157 lines
5.2 KiB
C++

/*
* Copyright (c) 2017 The WebRTC project authors. All Rights Reserved.
*
* Use of this source code is governed by a BSD-style license
* that can be found in the LICENSE file in the root of the source
* tree. An additional intellectual property rights grant can be found
* in the file PATENTS. All contributing project authors may
* be found in the AUTHORS file in the root of the source tree.
*/
#include "modules/rtp_rtcp/source/rtcp_transceiver.h"
#include <memory>
#include <utility>
#include "modules/rtp_rtcp/source/rtcp_packet/transport_feedback.h"
#include "rtc_base/checks.h"
#include "rtc_base/event.h"
#include "rtc_base/task_utils/to_queued_task.h"
#include "rtc_base/time_utils.h"
namespace webrtc {
RtcpTransceiver::RtcpTransceiver(const RtcpTransceiverConfig& config)
: task_queue_(config.task_queue),
rtcp_transceiver_(std::make_unique<RtcpTransceiverImpl>(config)) {
RTC_DCHECK(task_queue_);
}
RtcpTransceiver::~RtcpTransceiver() {
if (!rtcp_transceiver_)
return;
auto rtcp_transceiver = std::move(rtcp_transceiver_);
task_queue_->PostTask([rtcp_transceiver = std::move(rtcp_transceiver)] {
rtcp_transceiver->StopPeriodicTask();
});
RTC_DCHECK(!rtcp_transceiver_);
}
void RtcpTransceiver::Stop(std::function<void()> on_destroyed) {
RTC_DCHECK(rtcp_transceiver_);
auto rtcp_transceiver = std::move(rtcp_transceiver_);
task_queue_->PostTask(ToQueuedTask(
[rtcp_transceiver = std::move(rtcp_transceiver)] {
rtcp_transceiver->StopPeriodicTask();
},
std::move(on_destroyed)));
RTC_DCHECK(!rtcp_transceiver_);
}
void RtcpTransceiver::AddMediaReceiverRtcpObserver(
uint32_t remote_ssrc,
MediaReceiverRtcpObserver* observer) {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
task_queue_->PostTask([ptr, remote_ssrc, observer] {
ptr->AddMediaReceiverRtcpObserver(remote_ssrc, observer);
});
}
void RtcpTransceiver::RemoveMediaReceiverRtcpObserver(
uint32_t remote_ssrc,
MediaReceiverRtcpObserver* observer,
std::function<void()> on_removed) {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
auto remove = [ptr, remote_ssrc, observer] {
ptr->RemoveMediaReceiverRtcpObserver(remote_ssrc, observer);
};
task_queue_->PostTask(ToQueuedTask(std::move(remove), std::move(on_removed)));
}
void RtcpTransceiver::SetReadyToSend(bool ready) {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
task_queue_->PostTask([ptr, ready] { ptr->SetReadyToSend(ready); });
}
void RtcpTransceiver::ReceivePacket(rtc::CopyOnWriteBuffer packet) {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
int64_t now_us = rtc::TimeMicros();
task_queue_->PostTask(
[ptr, packet, now_us] { ptr->ReceivePacket(packet, now_us); });
}
void RtcpTransceiver::SendCompoundPacket() {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
task_queue_->PostTask([ptr] { ptr->SendCompoundPacket(); });
}
void RtcpTransceiver::SetRemb(int64_t bitrate_bps,
std::vector<uint32_t> ssrcs) {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
task_queue_->PostTask([ptr, bitrate_bps, ssrcs = std::move(ssrcs)]() mutable {
ptr->SetRemb(bitrate_bps, std::move(ssrcs));
});
}
void RtcpTransceiver::UnsetRemb() {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
task_queue_->PostTask([ptr] { ptr->UnsetRemb(); });
}
uint32_t RtcpTransceiver::SSRC() const {
return rtcp_transceiver_->sender_ssrc();
}
bool RtcpTransceiver::SendFeedbackPacket(
const rtcp::TransportFeedback& packet) {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
rtc::Buffer raw_packet = packet.Build();
task_queue_->PostTask([ptr, raw_packet = std::move(raw_packet)] {
ptr->SendRawPacket(raw_packet);
});
return true;
}
bool RtcpTransceiver::SendNetworkStateEstimatePacket(
const rtcp::RemoteEstimate& packet) {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
rtc::Buffer raw_packet = packet.Build();
task_queue_->PostTask([ptr, raw_packet = std::move(raw_packet)] {
ptr->SendRawPacket(raw_packet);
});
return true;
}
void RtcpTransceiver::SendNack(uint32_t ssrc,
std::vector<uint16_t> sequence_numbers) {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
task_queue_->PostTask(
[ptr, ssrc, sequence_numbers = std::move(sequence_numbers)]() mutable {
ptr->SendNack(ssrc, std::move(sequence_numbers));
});
}
void RtcpTransceiver::SendPictureLossIndication(uint32_t ssrc) {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
task_queue_->PostTask([ptr, ssrc] { ptr->SendPictureLossIndication(ssrc); });
}
void RtcpTransceiver::SendFullIntraRequest(std::vector<uint32_t> ssrcs) {
RTC_CHECK(rtcp_transceiver_);
RtcpTransceiverImpl* ptr = rtcp_transceiver_.get();
task_queue_->PostTask(
[ptr, ssrcs = std::move(ssrcs)] { ptr->SendFullIntraRequest(ssrcs); });
}
} // namespace webrtc