Chromium Code Reviews
chromiumcodereview-hr@appspot.gserviceaccount.com (chromiumcodereview-hr) | Please choose your nickname with Settings | Help | Chromium Project | Gerrit Changes | Sign out
(127)

Side by Side Diff: net/quic/quic_connection.cc

Issue 566743003: Call QuicSentPacketManager's OnPacketSerialized or OnRetransmittedPacket (Closed) Base URL: https://chromium.googlesource.com/chromium/src.git@initializing_next_stream_id_75335114
Patch Set: Created 6 years, 3 months ago
Use n/p to move between diff chunks; N/P to move between comments. Draft comments are only viewable by you.
Jump to:
View unified diff | Download patch
« no previous file with comments | « net/quic/quic_connection.h ('k') | net/quic/quic_unacked_packet_map.cc » ('j') | no next file with comments »
Toggle Intra-line Diffs ('i') | Expand Comments ('e') | Collapse Comments ('c') | Show Comments Hide Comments ('s')
OLDNEW
1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. 1 // Copyright (c) 2012 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #include "net/quic/quic_connection.h" 5 #include "net/quic/quic_connection.h"
6 6
7 #include <string.h> 7 #include <string.h>
8 #include <sys/types.h> 8 #include <sys/types.h>
9 #include <algorithm> 9 #include <algorithm>
10 #include <iterator> 10 #include <iterator>
(...skipping 142 matching lines...) Expand 10 before | Expand all | Expand 10 after
153 153
154 private: 154 private:
155 QuicConnection* connection_; 155 QuicConnection* connection_;
156 156
157 DISALLOW_COPY_AND_ASSIGN(PingAlarm); 157 DISALLOW_COPY_AND_ASSIGN(PingAlarm);
158 }; 158 };
159 159
160 } // namespace 160 } // namespace
161 161
162 QuicConnection::QueuedPacket::QueuedPacket(SerializedPacket packet, 162 QuicConnection::QueuedPacket::QueuedPacket(SerializedPacket packet,
163 EncryptionLevel level, 163 EncryptionLevel level)
164 TransmissionType transmission_type)
165 : serialized_packet(packet), 164 : serialized_packet(packet),
166 encryption_level(level), 165 encryption_level(level),
167 transmission_type(transmission_type) { 166 transmission_type(NOT_RETRANSMISSION),
167 original_sequence_number(0) {
168 }
169
170 QuicConnection::QueuedPacket::QueuedPacket(
171 SerializedPacket packet,
172 EncryptionLevel level,
173 TransmissionType transmission_type,
174 QuicPacketSequenceNumber original_sequence_number)
175 : serialized_packet(packet),
176 encryption_level(level),
177 transmission_type(transmission_type),
178 original_sequence_number(original_sequence_number) {
168 } 179 }
169 180
170 #define ENDPOINT (is_server_ ? "Server: " : " Client: ") 181 #define ENDPOINT (is_server_ ? "Server: " : " Client: ")
171 182
172 QuicConnection::QuicConnection(QuicConnectionId connection_id, 183 QuicConnection::QuicConnection(QuicConnectionId connection_id,
173 IPEndPoint address, 184 IPEndPoint address,
174 QuicConnectionHelperInterface* helper, 185 QuicConnectionHelperInterface* helper,
175 const PacketWriterFactory& writer_factory, 186 const PacketWriterFactory& writer_factory,
176 bool owns_writer, 187 bool owns_writer,
177 bool is_server, 188 bool is_server,
(...skipping 64 matching lines...) Expand 10 before | Expand all | Expand 10 after
242 } 253 }
243 254
244 QuicConnection::~QuicConnection() { 255 QuicConnection::~QuicConnection() {
245 if (owns_writer_) { 256 if (owns_writer_) {
246 delete writer_; 257 delete writer_;
247 } 258 }
248 STLDeleteElements(&undecryptable_packets_); 259 STLDeleteElements(&undecryptable_packets_);
249 STLDeleteValues(&group_map_); 260 STLDeleteValues(&group_map_);
250 for (QueuedPacketList::iterator it = queued_packets_.begin(); 261 for (QueuedPacketList::iterator it = queued_packets_.begin();
251 it != queued_packets_.end(); ++it) { 262 it != queued_packets_.end(); ++it) {
263 delete it->serialized_packet.retransmittable_frames;
252 delete it->serialized_packet.packet; 264 delete it->serialized_packet.packet;
253 } 265 }
254 } 266 }
255 267
256 void QuicConnection::SetFromConfig(const QuicConfig& config) { 268 void QuicConnection::SetFromConfig(const QuicConfig& config) {
257 SetIdleNetworkTimeout(config.idle_connection_state_lifetime()); 269 SetIdleNetworkTimeout(config.idle_connection_state_lifetime());
258 sent_packet_manager_.SetFromConfig(config); 270 sent_packet_manager_.SetFromConfig(config);
259 } 271 }
260 272
261 bool QuicConnection::SelectMutualVersion( 273 bool QuicConnection::SelectMutualVersion(
(...skipping 952 matching lines...) Expand 10 before | Expand all | Expand 10 after
1214 1226
1215 void QuicConnection::WriteQueuedPackets() { 1227 void QuicConnection::WriteQueuedPackets() {
1216 DCHECK(!writer_->IsWriteBlocked()); 1228 DCHECK(!writer_->IsWriteBlocked());
1217 1229
1218 if (pending_version_negotiation_packet_) { 1230 if (pending_version_negotiation_packet_) {
1219 SendVersionNegotiationPacket(); 1231 SendVersionNegotiationPacket();
1220 } 1232 }
1221 1233
1222 QueuedPacketList::iterator packet_iterator = queued_packets_.begin(); 1234 QueuedPacketList::iterator packet_iterator = queued_packets_.begin();
1223 while (packet_iterator != queued_packets_.end() && 1235 while (packet_iterator != queued_packets_.end() &&
1224 WritePacket(*packet_iterator)) { 1236 WritePacket(&(*packet_iterator))) {
1225 delete packet_iterator->serialized_packet.packet;
1226 packet_iterator = queued_packets_.erase(packet_iterator); 1237 packet_iterator = queued_packets_.erase(packet_iterator);
1227 } 1238 }
1228 } 1239 }
1229 1240
1230 void QuicConnection::WritePendingRetransmissions() { 1241 void QuicConnection::WritePendingRetransmissions() {
1231 // Keep writing as long as there's a pending retransmission which can be 1242 // Keep writing as long as there's a pending retransmission which can be
1232 // written. 1243 // written.
1233 while (sent_packet_manager_.HasPendingRetransmissions()) { 1244 while (sent_packet_manager_.HasPendingRetransmissions()) {
1234 const QuicSentPacketManager::PendingRetransmission pending = 1245 const QuicSentPacketManager::PendingRetransmission pending =
1235 sent_packet_manager_.NextPendingRetransmission(); 1246 sent_packet_manager_.NextPendingRetransmission();
1236 if (!CanWrite(HAS_RETRANSMITTABLE_DATA)) { 1247 if (!CanWrite(HAS_RETRANSMITTABLE_DATA)) {
1237 break; 1248 break;
1238 } 1249 }
1239 1250
1240 // Re-packetize the frames with a new sequence number for retransmission. 1251 // Re-packetize the frames with a new sequence number for retransmission.
1241 // Retransmitted data packets do not use FEC, even when it's enabled. 1252 // Retransmitted data packets do not use FEC, even when it's enabled.
1242 // Retransmitted packets use the same sequence number length as the 1253 // Retransmitted packets use the same sequence number length as the
1243 // original. 1254 // original.
1244 // Flush the packet generator before making a new packet. 1255 // Flush the packet generator before making a new packet.
1245 // TODO(ianswett): Implement ReserializeAllFrames as a separate path that 1256 // TODO(ianswett): Implement ReserializeAllFrames as a separate path that
1246 // does not require the creator to be flushed. 1257 // does not require the creator to be flushed.
1247 packet_generator_.FlushAllQueuedFrames(); 1258 packet_generator_.FlushAllQueuedFrames();
1248 SerializedPacket serialized_packet = packet_generator_.ReserializeAllFrames( 1259 SerializedPacket serialized_packet = packet_generator_.ReserializeAllFrames(
1249 pending.retransmittable_frames.frames(), 1260 pending.retransmittable_frames.frames(),
1250 pending.sequence_number_length); 1261 pending.sequence_number_length);
1251 1262
1252 DVLOG(1) << ENDPOINT << "Retransmitting " << pending.sequence_number 1263 DVLOG(1) << ENDPOINT << "Retransmitting " << pending.sequence_number
1253 << " as " << serialized_packet.sequence_number; 1264 << " as " << serialized_packet.sequence_number;
1254 if (debug_visitor_.get() != NULL) { 1265 SendOrQueuePacket(
1255 debug_visitor_->OnPacketRetransmitted( 1266 QueuedPacket(serialized_packet,
1256 pending.sequence_number, serialized_packet.sequence_number); 1267 pending.retransmittable_frames.encryption_level(),
1257 } 1268 pending.transmission_type,
1258 sent_packet_manager_.OnRetransmittedPacket( 1269 pending.sequence_number));
1259 pending.sequence_number,
1260 serialized_packet.sequence_number);
1261
1262 SendOrQueuePacket(pending.retransmittable_frames.encryption_level(),
1263 serialized_packet,
1264 pending.transmission_type);
1265 } 1270 }
1266 } 1271 }
1267 1272
1268 void QuicConnection::RetransmitUnackedPackets( 1273 void QuicConnection::RetransmitUnackedPackets(
1269 TransmissionType retransmission_type) { 1274 TransmissionType retransmission_type) {
1270 sent_packet_manager_.RetransmitUnackedPackets(retransmission_type); 1275 sent_packet_manager_.RetransmitUnackedPackets(retransmission_type);
1271 1276
1272 WriteIfNotBlocked(); 1277 WriteIfNotBlocked();
1273 } 1278 }
1274 1279
(...skipping 39 matching lines...) Expand 10 before | Expand all | Expand 10 after
1314 // If the scheduler requires a delay, then we can not send this packet now. 1319 // If the scheduler requires a delay, then we can not send this packet now.
1315 if (!delay.IsZero()) { 1320 if (!delay.IsZero()) {
1316 send_alarm_->Update(now.Add(delay), QuicTime::Delta::FromMilliseconds(1)); 1321 send_alarm_->Update(now.Add(delay), QuicTime::Delta::FromMilliseconds(1));
1317 DVLOG(1) << "Delaying sending."; 1322 DVLOG(1) << "Delaying sending.";
1318 return false; 1323 return false;
1319 } 1324 }
1320 send_alarm_->Cancel(); 1325 send_alarm_->Cancel();
1321 return true; 1326 return true;
1322 } 1327 }
1323 1328
1324 bool QuicConnection::WritePacket(const QueuedPacket& packet) { 1329 bool QuicConnection::WritePacket(QueuedPacket* packet) {
1325 if (ShouldDiscardPacket(packet)) { 1330 if (!WritePacketInner(packet)) {
1331 return false;
1332 }
1333 delete packet->serialized_packet.retransmittable_frames;
1334 delete packet->serialized_packet.packet;
1335 packet->serialized_packet.retransmittable_frames = NULL;
1336 packet->serialized_packet.packet = NULL;
1337 return true;
1338 }
1339
1340 bool QuicConnection::WritePacketInner(QueuedPacket* packet) {
1341 if (ShouldDiscardPacket(*packet)) {
1326 ++stats_.packets_discarded; 1342 ++stats_.packets_discarded;
1327 return true; 1343 return true;
1328 } 1344 }
1329 // Connection close packets are encypted and saved, so don't exit early. 1345 // Connection close packets are encrypted and saved, so don't exit early.
1330 if (writer_->IsWriteBlocked() && !IsConnectionClose(packet)) { 1346 if (writer_->IsWriteBlocked() && !IsConnectionClose(*packet)) {
1331 return false; 1347 return false;
1332 } 1348 }
1333 1349
1334 QuicPacketSequenceNumber sequence_number = 1350 QuicPacketSequenceNumber sequence_number =
1335 packet.serialized_packet.sequence_number; 1351 packet->serialized_packet.sequence_number;
1336 // Some encryption algorithms require the packet sequence numbers not be 1352 // Some encryption algorithms require the packet sequence numbers not be
1337 // repeated. 1353 // repeated.
1338 DCHECK_LE(sequence_number_of_last_sent_packet_, sequence_number); 1354 DCHECK_LE(sequence_number_of_last_sent_packet_, sequence_number);
1339 sequence_number_of_last_sent_packet_ = sequence_number; 1355 sequence_number_of_last_sent_packet_ = sequence_number;
1340 1356
1341 QuicEncryptedPacket* encrypted = framer_.EncryptPacket( 1357 QuicEncryptedPacket* encrypted = framer_.EncryptPacket(
1342 packet.encryption_level, 1358 packet->encryption_level,
1343 sequence_number, 1359 sequence_number,
1344 *packet.serialized_packet.packet); 1360 *packet->serialized_packet.packet);
1345 if (encrypted == NULL) { 1361 if (encrypted == NULL) {
1346 LOG(DFATAL) << ENDPOINT << "Failed to encrypt packet number " 1362 LOG(DFATAL) << ENDPOINT << "Failed to encrypt packet number "
1347 << sequence_number; 1363 << sequence_number;
1348 // CloseConnection does not send close packet, so no infinite loop here. 1364 // CloseConnection does not send close packet, so no infinite loop here.
1349 CloseConnection(QUIC_ENCRYPTION_FAILURE, false); 1365 CloseConnection(QUIC_ENCRYPTION_FAILURE, false);
1350 return false; 1366 return false;
1351 } 1367 }
1352 1368
1353 // Connection close packets are eventually owned by TimeWaitListManager. 1369 // Connection close packets are eventually owned by TimeWaitListManager.
1354 // Others are deleted at the end of this call. 1370 // Others are deleted at the end of this call.
1355 scoped_ptr<QuicEncryptedPacket> encrypted_deleter; 1371 scoped_ptr<QuicEncryptedPacket> encrypted_deleter;
1356 if (IsConnectionClose(packet)) { 1372 if (IsConnectionClose(*packet)) {
1357 DCHECK(connection_close_packet_.get() == NULL); 1373 DCHECK(connection_close_packet_.get() == NULL);
1358 connection_close_packet_.reset(encrypted); 1374 connection_close_packet_.reset(encrypted);
1359 // This assures we won't try to write *forced* packets when blocked. 1375 // This assures we won't try to write *forced* packets when blocked.
1360 // Return true to stop processing. 1376 // Return true to stop processing.
1361 if (writer_->IsWriteBlocked()) { 1377 if (writer_->IsWriteBlocked()) {
1362 visitor_->OnWriteBlocked(); 1378 visitor_->OnWriteBlocked();
1363 return true; 1379 return true;
1364 } 1380 }
1365 } else { 1381 } else {
1366 encrypted_deleter.reset(encrypted); 1382 encrypted_deleter.reset(encrypted);
1367 } 1383 }
1368 1384
1369 if (!FLAGS_quic_allow_oversized_packets_for_test) { 1385 if (!FLAGS_quic_allow_oversized_packets_for_test) {
1370 DCHECK_LE(encrypted->length(), kMaxPacketSize); 1386 DCHECK_LE(encrypted->length(), kMaxPacketSize);
1371 } 1387 }
1372 DCHECK_LE(encrypted->length(), packet_generator_.max_packet_length()); 1388 DCHECK_LE(encrypted->length(), packet_generator_.max_packet_length());
1373 DVLOG(1) << ENDPOINT << "Sending packet " << sequence_number << " : " 1389 DVLOG(1) << ENDPOINT << "Sending packet " << sequence_number << " : "
1374 << (packet.serialized_packet.packet->is_fec_packet() ? "FEC " : 1390 << (packet->serialized_packet.packet->is_fec_packet() ? "FEC " :
1375 (IsRetransmittable(packet) == HAS_RETRANSMITTABLE_DATA 1391 (IsRetransmittable(*packet) == HAS_RETRANSMITTABLE_DATA
1376 ? "data bearing " : " ack only ")) 1392 ? "data bearing " : " ack only "))
1377 << ", encryption level: " 1393 << ", encryption level: "
1378 << QuicUtils::EncryptionLevelToString(packet.encryption_level) 1394 << QuicUtils::EncryptionLevelToString(packet->encryption_level)
1379 << ", length:" 1395 << ", length:"
1380 << packet.serialized_packet.packet->length() 1396 << packet->serialized_packet.packet->length()
1381 << ", encrypted length:" 1397 << ", encrypted length:"
1382 << encrypted->length(); 1398 << encrypted->length();
1383 DVLOG(2) << ENDPOINT << "packet(" << sequence_number << "): " << std::endl 1399 DVLOG(2) << ENDPOINT << "packet(" << sequence_number << "): " << std::endl
1384 << QuicUtils::StringToHexASCIIDump( 1400 << QuicUtils::StringToHexASCIIDump(
1385 packet.serialized_packet.packet->AsStringPiece()); 1401 packet->serialized_packet.packet->AsStringPiece());
1386 1402
1387 WriteResult result = writer_->WritePacket(encrypted->data(), 1403 WriteResult result = writer_->WritePacket(encrypted->data(),
1388 encrypted->length(), 1404 encrypted->length(),
1389 self_address().address(), 1405 self_address().address(),
1390 peer_address()); 1406 peer_address());
1391 if (result.error_code == ERR_IO_PENDING) { 1407 if (result.error_code == ERR_IO_PENDING) {
1392 DCHECK_EQ(WRITE_STATUS_BLOCKED, result.status); 1408 DCHECK_EQ(WRITE_STATUS_BLOCKED, result.status);
1393 } 1409 }
1394 if (debug_visitor_.get() != NULL) { 1410 if (debug_visitor_.get() != NULL) {
1395 // Pass the write result to the visitor. 1411 // Pass the write result to the visitor.
1396 debug_visitor_->OnPacketSent(sequence_number, 1412 debug_visitor_->OnPacketSent(sequence_number,
1397 packet.encryption_level, 1413 packet->encryption_level,
1398 packet.transmission_type, 1414 packet->transmission_type,
1399 *encrypted, 1415 *encrypted,
1400 result); 1416 result);
1401 } 1417 }
1402 1418
1403 if (result.status == WRITE_STATUS_BLOCKED) { 1419 if (result.status == WRITE_STATUS_BLOCKED) {
1404 visitor_->OnWriteBlocked(); 1420 visitor_->OnWriteBlocked();
1405 // If the socket buffers the the data, then the packet should not 1421 // If the socket buffers the the data, then the packet should not
1406 // be queued and sent again, which would result in an unnecessary 1422 // be queued and sent again, which would result in an unnecessary
1407 // duplicate packet being sent. The helper must call OnCanWrite 1423 // duplicate packet being sent. The helper must call OnCanWrite
1408 // when the write completes, and OnWriteError if an error occurs. 1424 // when the write completes, and OnWriteError if an error occurs.
1409 if (!writer_->IsWriteBlockedDataBuffered()) { 1425 if (!writer_->IsWriteBlockedDataBuffered()) {
1410 return false; 1426 return false;
1411 } 1427 }
1412 } 1428 }
1413 QuicTime now = clock_->Now(); 1429 QuicTime now = clock_->Now();
1414 if (packet.transmission_type == NOT_RETRANSMISSION) { 1430 if (packet->transmission_type == NOT_RETRANSMISSION) {
1415 time_of_last_sent_new_packet_ = now; 1431 time_of_last_sent_new_packet_ = now;
1416 } 1432 }
1417 SetPingAlarm(); 1433 SetPingAlarm();
1418 DVLOG(1) << ENDPOINT << "time of last sent packet: " 1434 DVLOG(1) << ENDPOINT << "time of last sent packet: "
1419 << now.ToDebuggingValue(); 1435 << now.ToDebuggingValue();
1420 1436
1421 // TODO(ianswett): Change the sequence number length and other packet creator 1437 // TODO(ianswett): Change the sequence number length and other packet creator
1422 // options by a more explicit API than setting a struct value directly, 1438 // options by a more explicit API than setting a struct value directly,
1423 // perhaps via the NetworkChangeVisitor. 1439 // perhaps via the NetworkChangeVisitor.
1424 packet_generator_.UpdateSequenceNumberLength( 1440 packet_generator_.UpdateSequenceNumberLength(
1425 sent_packet_manager_.least_packet_awaited_by_peer(), 1441 sent_packet_manager_.least_packet_awaited_by_peer(),
1426 sent_packet_manager_.GetCongestionWindow()); 1442 sent_packet_manager_.GetCongestionWindow());
1427 1443
1444 if (packet->original_sequence_number == 0) {
1445 sent_packet_manager_.OnSerializedPacket(packet->serialized_packet);
1446 } else {
1447 if (debug_visitor_.get() != NULL) {
1448 debug_visitor_->OnPacketRetransmitted(
1449 packet->original_sequence_number, sequence_number);
1450 }
1451 sent_packet_manager_.OnRetransmittedPacket(packet->original_sequence_number,
1452 sequence_number);
1453 }
1428 bool reset_retransmission_alarm = sent_packet_manager_.OnPacketSent( 1454 bool reset_retransmission_alarm = sent_packet_manager_.OnPacketSent(
1429 sequence_number, 1455 sequence_number,
1430 now, 1456 now,
1431 encrypted->length(), 1457 encrypted->length(),
1432 packet.transmission_type, 1458 packet->transmission_type,
1433 IsRetransmittable(packet)); 1459 IsRetransmittable(*packet));
1460 // The SentPacketManager now owns the retransmittable frames.
1461 packet->serialized_packet.retransmittable_frames = NULL;
1434 1462
1435 if (reset_retransmission_alarm || !retransmission_alarm_->IsSet()) { 1463 if (reset_retransmission_alarm || !retransmission_alarm_->IsSet()) {
1436 retransmission_alarm_->Update(sent_packet_manager_.GetRetransmissionTime(), 1464 retransmission_alarm_->Update(sent_packet_manager_.GetRetransmissionTime(),
1437 QuicTime::Delta::FromMilliseconds(1)); 1465 QuicTime::Delta::FromMilliseconds(1));
1438 } 1466 }
1439 1467
1440 stats_.bytes_sent += result.bytes_written; 1468 stats_.bytes_sent += result.bytes_written;
1441 ++stats_.packets_sent; 1469 ++stats_.packets_sent;
1442 if (packet.transmission_type != NOT_RETRANSMISSION) { 1470 if (packet->transmission_type != NOT_RETRANSMISSION) {
1443 stats_.bytes_retransmitted += result.bytes_written; 1471 stats_.bytes_retransmitted += result.bytes_written;
1444 ++stats_.packets_retransmitted; 1472 ++stats_.packets_retransmitted;
1445 } 1473 }
1446 1474
1447 if (result.status == WRITE_STATUS_ERROR) { 1475 if (result.status == WRITE_STATUS_ERROR) {
1448 OnWriteError(result.error_code); 1476 OnWriteError(result.error_code);
1449 return false; 1477 return false;
1450 } 1478 }
1451 1479
1452 return true; 1480 return true;
1453 } 1481 }
1454 1482
1455 bool QuicConnection::ShouldDiscardPacket(const QueuedPacket& packet) { 1483 bool QuicConnection::ShouldDiscardPacket(const QueuedPacket& packet) {
1456 if (!connected_) { 1484 if (!connected_) {
1457 DVLOG(1) << ENDPOINT 1485 DVLOG(1) << ENDPOINT
1458 << "Not sending packet as connection is disconnected."; 1486 << "Not sending packet as connection is disconnected.";
1459 return true; 1487 return true;
1460 } 1488 }
1461 1489
1462 QuicPacketSequenceNumber sequence_number = 1490 QuicPacketSequenceNumber sequence_number =
1463 packet.serialized_packet.sequence_number; 1491 packet.serialized_packet.sequence_number;
1464 // If the packet has been discarded before sending, don't send it.
1465 // This occurs if a packet gets serialized, queued, then discarded.
1466 if (!sent_packet_manager_.IsUnacked(sequence_number)) {
1467 DVLOG(1) << ENDPOINT << "Dropping packet before sending: "
1468 << sequence_number << " since it has already been discarded.";
1469 return true;
1470 }
1471
1472 if (encryption_level_ == ENCRYPTION_FORWARD_SECURE && 1492 if (encryption_level_ == ENCRYPTION_FORWARD_SECURE &&
1473 packet.encryption_level == ENCRYPTION_NONE) { 1493 packet.encryption_level == ENCRYPTION_NONE) {
1474 // Drop packets that are NULL encrypted since the peer won't accept them 1494 // Drop packets that are NULL encrypted since the peer won't accept them
1475 // anymore. 1495 // anymore.
1476 DVLOG(1) << ENDPOINT << "Dropping NULL encrypted packet: " 1496 DVLOG(1) << ENDPOINT << "Dropping NULL encrypted packet: "
1477 << sequence_number << " since the connection is forward secure."; 1497 << sequence_number << " since the connection is forward secure.";
1478 LOG_IF(DFATAL,
1479 sent_packet_manager_.HasRetransmittableFrames(sequence_number))
1480 << "Once forward secure, all NULL encrypted packets should be "
1481 << "neutered.";
1482 return true; 1498 return true;
1483 } 1499 }
1484 1500
1501 // If a retransmission has been acked before sending, don't send it.
1502 // This occurs if a packet gets serialized, queued, then discarded.
1485 if (packet.transmission_type != NOT_RETRANSMISSION && 1503 if (packet.transmission_type != NOT_RETRANSMISSION &&
1486 !sent_packet_manager_.HasRetransmittableFrames(sequence_number)) { 1504 (!sent_packet_manager_.IsUnacked(packet.original_sequence_number) ||
1505 !sent_packet_manager_.HasRetransmittableFrames(
1506 packet.original_sequence_number))) {
1487 DVLOG(1) << ENDPOINT << "Dropping unacked packet: " << sequence_number 1507 DVLOG(1) << ENDPOINT << "Dropping unacked packet: " << sequence_number
1488 << " A previous transmission was acked while write blocked."; 1508 << " A previous transmission was acked while write blocked.";
1489 return true; 1509 return true;
1490 } 1510 }
1491 1511
1492 return false; 1512 return false;
1493 } 1513 }
1494 1514
1495 void QuicConnection::OnWriteError(int error_code) { 1515 void QuicConnection::OnWriteError(int error_code) {
1496 DVLOG(1) << ENDPOINT << "Write failed with error: " << error_code 1516 DVLOG(1) << ENDPOINT << "Write failed with error: " << error_code
1497 << " (" << ErrorToString(error_code) << ")"; 1517 << " (" << ErrorToString(error_code) << ")";
1498 // We can't send an error as the socket is presumably borked. 1518 // We can't send an error as the socket is presumably borked.
1499 CloseConnection(QUIC_PACKET_WRITE_ERROR, false); 1519 CloseConnection(QUIC_PACKET_WRITE_ERROR, false);
1500 } 1520 }
1501 1521
1502 void QuicConnection::OnSerializedPacket( 1522 void QuicConnection::OnSerializedPacket(
1503 const SerializedPacket& serialized_packet) { 1523 const SerializedPacket& serialized_packet) {
1504 if (serialized_packet.retransmittable_frames) { 1524 if (serialized_packet.retransmittable_frames) {
1505 serialized_packet.retransmittable_frames-> 1525 serialized_packet.retransmittable_frames->
1506 set_encryption_level(encryption_level_); 1526 set_encryption_level(encryption_level_);
1507 } 1527 }
1508 sent_packet_manager_.OnSerializedPacket(serialized_packet); 1528 SendOrQueuePacket(QueuedPacket(serialized_packet, encryption_level_));
1509 // The TransmissionType is NOT_RETRANSMISSION because all retransmissions
1510 // serialize packets and invoke SendOrQueuePacket directly.
1511 SendOrQueuePacket(encryption_level_, serialized_packet, NOT_RETRANSMISSION);
1512 } 1529 }
1513 1530
1514 void QuicConnection::OnCongestionWindowChange(QuicByteCount congestion_window) { 1531 void QuicConnection::OnCongestionWindowChange(QuicByteCount congestion_window) {
1515 packet_generator_.OnCongestionWindowChange(congestion_window); 1532 packet_generator_.OnCongestionWindowChange(congestion_window);
1516 visitor_->OnCongestionWindowChange(clock_->ApproximateNow()); 1533 visitor_->OnCongestionWindowChange(clock_->ApproximateNow());
1517 } 1534 }
1518 1535
1519 void QuicConnection::OnHandshakeComplete() { 1536 void QuicConnection::OnHandshakeComplete() {
1520 sent_packet_manager_.SetHandshakeConfirmed(); 1537 sent_packet_manager_.SetHandshakeConfirmed();
1521 } 1538 }
1522 1539
1523 void QuicConnection::SendOrQueuePacket(EncryptionLevel level, 1540 void QuicConnection::SendOrQueuePacket(QueuedPacket packet) {
1524 const SerializedPacket& packet,
1525 TransmissionType transmission_type) {
1526 // The caller of this function is responsible for checking CanWrite(). 1541 // The caller of this function is responsible for checking CanWrite().
1527 if (packet.packet == NULL) { 1542 if (packet.serialized_packet.packet == NULL) {
1528 LOG(DFATAL) << "NULL packet passed in to SendOrQueuePacket"; 1543 LOG(DFATAL) << "NULL packet passed in to SendOrQueuePacket";
1529 return; 1544 return;
1530 } 1545 }
1531 1546
1532 sent_entropy_manager_.RecordPacketEntropyHash(packet.sequence_number, 1547 sent_entropy_manager_.RecordPacketEntropyHash(
1533 packet.entropy_hash); 1548 packet.serialized_packet.sequence_number,
1534 QueuedPacket queued_packet(packet, level, transmission_type); 1549 packet.serialized_packet.entropy_hash);
1535 LOG_IF(DFATAL, !queued_packets_.empty() && !writer_->IsWriteBlocked()) 1550 LOG_IF(DFATAL, !queued_packets_.empty() && !writer_->IsWriteBlocked())
1536 << "Packets should only be left queued if we're write blocked."; 1551 << "Packets should only be left queued if we're write blocked.";
1537 if (WritePacket(queued_packet)) { 1552 if (!WritePacket(&packet)) {
1538 delete packet.packet; 1553 queued_packets_.push_back(packet);
1539 } else {
1540 queued_packets_.push_back(queued_packet);
1541 } 1554 }
1542 } 1555 }
1543 1556
1544 void QuicConnection::UpdateStopWaiting(QuicStopWaitingFrame* stop_waiting) { 1557 void QuicConnection::UpdateStopWaiting(QuicStopWaitingFrame* stop_waiting) {
1545 stop_waiting->least_unacked = GetLeastUnacked(); 1558 stop_waiting->least_unacked = GetLeastUnacked();
1546 stop_waiting->entropy_hash = sent_entropy_manager_.GetCumulativeEntropy( 1559 stop_waiting->entropy_hash = sent_entropy_manager_.GetCumulativeEntropy(
1547 stop_waiting->least_unacked - 1); 1560 stop_waiting->least_unacked - 1);
1548 } 1561 }
1549 1562
1550 void QuicConnection::SendPing() { 1563 void QuicConnection::SendPing() {
(...skipping 335 matching lines...) Expand 10 before | Expand all | Expand 10 after
1886 } else { 1899 } else {
1887 overall_connection_timeout_ = timeout; 1900 overall_connection_timeout_ = timeout;
1888 } 1901 }
1889 } 1902 }
1890 1903
1891 bool QuicConnection::CheckForTimeout() { 1904 bool QuicConnection::CheckForTimeout() {
1892 QuicTime now = clock_->ApproximateNow(); 1905 QuicTime now = clock_->ApproximateNow();
1893 QuicTime time_of_last_packet = max(time_of_last_received_packet_, 1906 QuicTime time_of_last_packet = max(time_of_last_received_packet_,
1894 time_of_last_sent_new_packet_); 1907 time_of_last_sent_new_packet_);
1895 1908
1896 // If no packets have been sent or recieved, then don't timeout. 1909 // If no packets have been sent or received, then don't timeout.
1897 if (FLAGS_quic_timeouts_require_activity && 1910 if (FLAGS_quic_timeouts_require_activity &&
1898 !time_of_last_packet.IsInitialized()) { 1911 !time_of_last_packet.IsInitialized()) {
1899 timeout_alarm_->Cancel(); 1912 timeout_alarm_->Cancel();
1900 timeout_alarm_->Set(now.Add(idle_network_timeout_)); 1913 timeout_alarm_->Set(now.Add(idle_network_timeout_));
1901 return false; 1914 return false;
1902 } 1915 }
1903 1916
1904 // |delta| can be < 0 as |now| is approximate time but |time_of_last_packet| 1917 // |delta| can be < 0 as |now| is approximate time but |time_of_last_packet|
1905 // is accurate time. However, this should not change the behavior of 1918 // is accurate time. However, this should not change the behavior of
1906 // timeout handling. 1919 // timeout handling.
(...skipping 112 matching lines...) Expand 10 before | Expand all | Expand 10 after
2019 } 2032 }
2020 for (size_t i = 0; i < retransmittable_frames->frames().size(); ++i) { 2033 for (size_t i = 0; i < retransmittable_frames->frames().size(); ++i) {
2021 if (retransmittable_frames->frames()[i].type == CONNECTION_CLOSE_FRAME) { 2034 if (retransmittable_frames->frames()[i].type == CONNECTION_CLOSE_FRAME) {
2022 return true; 2035 return true;
2023 } 2036 }
2024 } 2037 }
2025 return false; 2038 return false;
2026 } 2039 }
2027 2040
2028 } // namespace net 2041 } // namespace net
OLDNEW
« no previous file with comments | « net/quic/quic_connection.h ('k') | net/quic/quic_unacked_packet_map.cc » ('j') | no next file with comments »

Powered by Google App Engine
This is Rietveld 408576698