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Apply clang-format 18
Summary: Previously this code conformed from clang-format 12. Reviewed By: igorsugak Differential Revision: D56065247 fbshipit-source-id: f5a985dd8f8b84f2f9e1818b3719b43c5a1b05b3
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Facebook GitHub Bot
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71fac54812
@ -801,9 +801,8 @@ bool CryptoStreamScheduler::writeCryptoData(PacketBuilderInterface& builder) {
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if (!res) {
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return cryptoDataWritten;
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}
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VLOG(4) << "Wrote retransmitted crypto"
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<< " offset=" << buffer.offset << " bytes=" << res->len << " "
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<< conn_;
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VLOG(4) << "Wrote retransmitted crypto" << " offset=" << buffer.offset
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<< " bytes=" << res->len << " " << conn_;
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cryptoDataWritten = true;
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}
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@ -970,8 +970,8 @@ QuicTransportBase::setPeekCallbackInternal(
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peekCbIt = peekCallbacks_.emplace(id, PeekCallbackData(cb)).first;
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}
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if (!cb) {
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VLOG(10) << "Resetting the peek callback to nullptr "
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<< "stream=" << id << " peekCb=" << peekCbIt->second.peekCb;
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VLOG(10) << "Resetting the peek callback to nullptr " << "stream=" << id
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<< " peekCb=" << peekCbIt->second.peekCb;
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}
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peekCbIt->second.peekCb = cb;
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updatePeekLooper();
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@ -2624,8 +2624,7 @@ folly::Expected<folly::Unit, LocalErrorCode> QuicTransportBase::setPingCallback(
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if (closeState_ != CloseState::OPEN) {
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return folly::makeUnexpected(LocalErrorCode::CONNECTION_CLOSED);
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}
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VLOG(4) << "Setting ping callback "
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<< " cb=" << cb << " " << *this;
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VLOG(4) << "Setting ping callback " << " cb=" << cb << " " << *this;
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pingCallback_ = cb;
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return folly::unit;
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@ -2763,8 +2762,8 @@ void QuicTransportBase::scheduleAckTimeout() {
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timeMin(conn_->ackStates.maxAckDelay, factoredRtt));
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auto timeoutMs = folly::chrono::ceil<std::chrono::milliseconds>(timeout);
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VLOG(10) << __func__ << " timeout=" << timeoutMs.count() << "ms"
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<< " factoredRtt=" << factoredRtt.count() << "us"
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<< " " << *this;
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<< " factoredRtt=" << factoredRtt.count() << "us" << " "
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<< *this;
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scheduleTimeout(&ackTimeout_, timeoutMs);
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}
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} else {
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@ -2993,8 +2992,7 @@ QuicTransportBase::setDatagramCallback(DatagramCallback* cb) {
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if (closeState_ != CloseState::OPEN) {
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return folly::makeUnexpected(LocalErrorCode::CONNECTION_CLOSED);
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}
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VLOG(4) << "Setting datagram callback "
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<< " cb=" << cb << " " << *this;
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VLOG(4) << "Setting datagram callback " << " cb=" << cb << " " << *this;
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datagramCallback_ = cb;
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updateReadLooper();
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@ -1747,8 +1747,7 @@ bool hasAckDataToWrite(const QuicConnectionStateBase& conn) {
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WriteDataReason hasNonAckDataToWrite(const QuicConnectionStateBase& conn) {
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if (cryptoHasWritableData(conn)) {
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VLOG(10) << nodeToString(conn.nodeType)
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<< " needs write because of crypto stream"
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<< " " << conn;
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<< " needs write because of crypto stream" << " " << conn;
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return WriteDataReason::CRYPTO_STREAM;
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}
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if (!conn.oneRttWriteCipher &&
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@ -616,8 +616,8 @@ void QuicClientTransport::processUdpPacketData(
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}
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case QuicFrame::Type::DatagramFrame: {
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DatagramFrame& frame = *quicFrame.asDatagramFrame();
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VLOG(10) << "Client received datagram data: "
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<< "len=" << frame.length << " " << *this;
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VLOG(10) << "Client received datagram data: " << "len=" << frame.length
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<< " " << *this;
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// Datagram isn't retransmittable. But we would like to ack them early.
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// So, make Datagram frames count towards ack policy
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pktHasRetransmittableData = true;
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@ -244,8 +244,8 @@ TEST(FunctionLooperTest, TimerTickSize) {
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auto evb = std::make_shared<FollyQuicEventBase>(&backingEvb);
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QuicTimer::SharedPtr pacingTimer =
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std::make_shared<HighResQuicTimer>(evb->getBackingEventBase(), 123ms);
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FunctionLooper::Ptr looper(new FunctionLooper(
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evb, [&]() {}, LooperType::ReadLooper));
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FunctionLooper::Ptr looper(
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new FunctionLooper(evb, [&]() {}, LooperType::ReadLooper));
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looper->setPacingTimer(std::move(pacingTimer));
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EXPECT_EQ(123ms, looper->getTimerTickInterval());
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}
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@ -255,8 +255,8 @@ TEST(FunctionLooperTest, TimerTickSizeAfterNewEvb) {
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auto evb = std::make_shared<FollyQuicEventBase>(&backingEvb);
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QuicTimer::SharedPtr pacingTimer =
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std::make_shared<HighResQuicTimer>(evb->getBackingEventBase(), 123ms);
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FunctionLooper::Ptr looper(new FunctionLooper(
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evb, [&]() {}, LooperType::ReadLooper));
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FunctionLooper::Ptr looper(
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new FunctionLooper(evb, [&]() {}, LooperType::ReadLooper));
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looper->setPacingTimer(std::move(pacingTimer));
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EXPECT_EQ(123ms, looper->getTimerTickInterval());
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looper->detachEventBase();
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@ -238,8 +238,7 @@ void Copa::onPacketAcked(const AckEvent& ack) {
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} else if (
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ack.ackTime - lastCwndDoubleTime_.value() > conn_.lossState.srtt) {
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VLOG(10) << __func__ << " doubling cwnd per RTT from=" << cwndBytes_
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<< " due to slow start"
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<< " " << conn_;
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<< " due to slow start" << " " << conn_;
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addAndCheckOverflow(cwndBytes_, cwndBytes_);
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lastCwndDoubleTime_ = ack.ackTime;
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}
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@ -340,11 +339,9 @@ uint64_t Copa::getBytesInFlight() const noexcept {
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return conn_.lossState.inflightBytes;
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}
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void Copa::setAppIdle(bool, TimePoint) noexcept { /* unsupported */
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}
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void Copa::setAppIdle(bool, TimePoint) noexcept { /* unsupported */ }
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void Copa::setAppLimited() { /* unsupported */
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}
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void Copa::setAppLimited() { /* unsupported */ }
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bool Copa::isAppLimited() const noexcept {
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return false; // not supported
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@ -177,11 +177,9 @@ uint64_t NewReno::getBytesInFlight() const noexcept {
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return conn_.lossState.inflightBytes;
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}
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void NewReno::setAppIdle(bool, TimePoint) noexcept { /* unsupported */
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}
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void NewReno::setAppIdle(bool, TimePoint) noexcept { /* unsupported */ }
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void NewReno::setAppLimited() { /* unsupported */
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}
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void NewReno::setAppLimited() { /* unsupported */ }
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bool NewReno::isAppLimited() const noexcept {
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return false; // unsupported
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@ -415,8 +415,8 @@ folly::Optional<CongestionController::LossEvent> detectLossPackets(
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conn.transportSettings.timeReorderingThreshDivisor;
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VLOG(10) << __func__ << " outstanding=" << conn.outstandings.numOutstanding()
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<< " largestAcked=" << ackState.largestAckedByPeer.value_or(0)
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<< " delayUntilLost=" << delayUntilLost.count() << "us"
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<< " " << conn;
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<< " delayUntilLost=" << delayUntilLost.count() << "us" << " "
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<< conn;
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CongestionController::LossEvent lossEvent(lossTime);
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folly::Optional<SocketObserverInterface::LossEvent> observerLossEvent;
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{
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@ -511,8 +511,7 @@ folly::Optional<CongestionController::LossEvent> detectLossPackets(
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// are unacked, so we can set the early retransmit timer for them.
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VLOG(10) << __func__ << " early retransmit timer outstanding="
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<< conn.outstandings.packets.empty() << " delayUntilLost"
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<< delayUntilLost.count() << "us"
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<< " " << conn;
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<< delayUntilLost.count() << "us" << " " << conn;
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getLossTime(conn, pnSpace) = delayUntilLost + earliest->metadata.time;
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}
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if (lossEvent.largestLostPacketNum.hasValue()) {
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@ -92,8 +92,7 @@ calculateAlarmDuration(const QuicConnectionStateBase& conn) {
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<< " lastSentPacketTime="
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<< lastSentPacketTime.time_since_epoch().count()
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<< " now=" << now.time_since_epoch().count()
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<< " alarm=" << alarmDuration.count() << "us"
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<< " deadline="
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<< " alarm=" << alarmDuration.count() << "us" << " deadline="
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<< (lastSentPacketTime + alarmDuration).time_since_epoch().count()
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<< " " << conn;
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}
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@ -1257,8 +1257,8 @@ void onServerReadDataFromOpen(
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}
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case QuicFrame::Type::DatagramFrame: {
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DatagramFrame& frame = *quicFrame.asDatagramFrame();
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VLOG(10) << "Server received datagram data: "
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<< " len=" << frame.length;
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VLOG(10) << "Server received datagram data: " << " len="
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<< frame.length;
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// Datagram isn't retransmittable. But we would like to ack them
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// early. So, make Datagram frames count towards ack policy
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pktHasRetransmittableData = true;
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@ -112,8 +112,7 @@ AckEvent processAckFrame(
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VLOG(10) << __func__ << " less than all outstanding packets outstanding="
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<< conn.outstandings.numOutstanding() << " range=["
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<< ackBlockIt->startPacket << ", " << ackBlockIt->endPacket
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<< "]"
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<< " " << conn;
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<< "]" << " " << conn;
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ackBlockIt++;
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break;
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}
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@ -43,8 +43,8 @@ void receiveReadStreamFrameSMHandler(
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appendDataToReadBuffer(
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stream, StreamBuffer(std::move(frame.data), frame.offset, frame.fin));
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if (isAllDataReceived(stream)) {
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VLOG(10) << "Open: Transition to Closed"
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<< " stream=" << stream.id << " " << stream.conn;
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VLOG(10) << "Open: Transition to Closed" << " stream=" << stream.id
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<< " " << stream.conn;
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stream.recvState = StreamRecvState::Closed;
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if (stream.inTerminalStates()) {
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stream.conn.streamManager->addClosed(stream.id);
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@ -108,7 +108,8 @@ void writeChecksum(
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// This is going to point to the beginning of the UDP header
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auto* payload =
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(uint32_t*)(packet + (isV6 ? sizeof(ipv6hdr) : sizeof(iphdr)) + sizeof(ethhdr));
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(uint32_t*)(packet + (isV6 ? sizeof(ipv6hdr) : sizeof(iphdr)) +
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sizeof(ethhdr));
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uint64_t sum = (len + 17) << 8;
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@ -152,8 +153,8 @@ void writeChecksum(
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checksum = 0xFFFF;
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}
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auto* upd_hdr =
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(udphdr*)(packet + (isV6 ? sizeof(ipv6hdr) : sizeof(iphdr)) + sizeof(ethhdr));
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auto* upd_hdr = (udphdr*)(packet + (isV6 ? sizeof(ipv6hdr) : sizeof(iphdr)) +
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sizeof(ethhdr));
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upd_hdr->check = checksum;
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}
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