#if RTC_ENABLE_MEDIA
#include <memory>
#include "pacinghandler.hpp"
#include "impl/internals.hpp"
#include "impl/threadpool.hpp"
namespace rtc {
PacingHandler::PacingHandler(double bitsPerSecond, std::chrono::milliseconds sendInterval)
: mBytesPerSecond(bitsPerSecond / 8), mBudget(0.), mSendInterval(sendInterval){};
void PacingHandler::schedule(const message_callback &send) {
if (!mHaveScheduled.exchange(true)) {
return;
}
impl::ThreadPool::Instance().schedule(mSendInterval, [this, weak_this = weak_from_this(),
send]() {
if (auto locked = weak_this.lock()) {
const std::lock_guard<std::mutex> lock(mMutex);
mHaveScheduled.store(false);
auto newBudget =
std::chrono::duration<double>(std::chrono::high_resolution_clock::now() - mLastRun)
.count() *
mBytesPerSecond;
auto maxBudget = std::chrono::duration<double>(mSendInterval).count() * mBytesPerSecond;
mBudget = std::min(mBudget + newBudget, maxBudget);
mLastRun = std::chrono::high_resolution_clock::now();
while (!mRtpBuffer.empty() && mBudget > 0) {
auto size = int(mRtpBuffer.front()->size());
send(std::move(mRtpBuffer.front()));
mRtpBuffer.pop();
mBudget -= size;
}
if (!mRtpBuffer.empty()) {
schedule(send);
}
}
});
}
void PacingHandler::outgoing(message_vector &messages, const message_callback &send) {
std::lock_guard<std::mutex> lock(mMutex);
for (auto &m : messages) {
mRtpBuffer.push(std::move(m));
}
messages.clear();
schedule(send);
}
}
#endif