mirror of
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307 lines
9.9 KiB
C++
307 lines
9.9 KiB
C++
// Copyright (c) 2015 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "net/tools/quic/quic_client_base.h"
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#include "net/quic/core/crypto/quic_random.h"
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#include "net/quic/core/quic_server_id.h"
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#include "net/quic/core/spdy_utils.h"
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#include "net/quic/platform/api/quic_flags.h"
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#include "net/quic/platform/api/quic_logging.h"
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#include "net/quic/platform/api/quic_text_utils.h"
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using base::StringToInt;
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using std::string;
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namespace net {
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QuicClientBase::NetworkHelper::~NetworkHelper() = default;
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QuicClientBase::QuicClientBase(
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const QuicServerId& server_id,
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const QuicTransportVersionVector& supported_versions,
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const QuicConfig& config,
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QuicConnectionHelperInterface* helper,
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QuicAlarmFactory* alarm_factory,
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std::unique_ptr<NetworkHelper> network_helper,
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std::unique_ptr<ProofVerifier> proof_verifier)
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: server_id_(server_id),
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initialized_(false),
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local_port_(0),
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config_(config),
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crypto_config_(std::move(proof_verifier)),
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helper_(helper),
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alarm_factory_(alarm_factory),
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supported_versions_(supported_versions),
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initial_max_packet_length_(0),
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num_stateless_rejects_received_(0),
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num_sent_client_hellos_(0),
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connection_error_(QUIC_NO_ERROR),
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connected_or_attempting_connect_(false),
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network_helper_(std::move(network_helper)) {}
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QuicClientBase::~QuicClientBase() = default;
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bool QuicClientBase::Initialize() {
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num_sent_client_hellos_ = 0;
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num_stateless_rejects_received_ = 0;
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connection_error_ = QUIC_NO_ERROR;
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connected_or_attempting_connect_ = false;
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// If an initial flow control window has not explicitly been set, then use the
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// same values that Chrome uses.
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const uint32_t kSessionMaxRecvWindowSize = 15 * 1024 * 1024; // 15 MB
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const uint32_t kStreamMaxRecvWindowSize = 6 * 1024 * 1024; // 6 MB
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if (config()->GetInitialStreamFlowControlWindowToSend() ==
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kMinimumFlowControlSendWindow) {
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config()->SetInitialStreamFlowControlWindowToSend(kStreamMaxRecvWindowSize);
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}
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if (config()->GetInitialSessionFlowControlWindowToSend() ==
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kMinimumFlowControlSendWindow) {
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config()->SetInitialSessionFlowControlWindowToSend(
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kSessionMaxRecvWindowSize);
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}
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if (!network_helper_->CreateUDPSocketAndBind(server_address_,
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bind_to_address_, local_port_)) {
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return false;
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}
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initialized_ = true;
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return true;
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}
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bool QuicClientBase::Connect() {
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// Attempt multiple connects until the maximum number of client hellos have
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// been sent.
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while (!connected() &&
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GetNumSentClientHellos() <= QuicCryptoClientStream::kMaxClientHellos) {
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StartConnect();
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while (EncryptionBeingEstablished()) {
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WaitForEvents();
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}
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if (FLAGS_quic_reloadable_flag_enable_quic_stateless_reject_support &&
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connected()) {
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// Resend any previously queued data.
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ResendSavedData();
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}
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if (session() != nullptr &&
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session()->error() != QUIC_CRYPTO_HANDSHAKE_STATELESS_REJECT) {
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// We've successfully created a session but we're not connected, and there
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// is no stateless reject to recover from. Give up trying.
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break;
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}
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}
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if (!connected() &&
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GetNumSentClientHellos() > QuicCryptoClientStream::kMaxClientHellos &&
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session() != nullptr &&
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session()->error() == QUIC_CRYPTO_HANDSHAKE_STATELESS_REJECT) {
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// The overall connection failed due too many stateless rejects.
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set_connection_error(QUIC_CRYPTO_TOO_MANY_REJECTS);
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}
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return session()->connection()->connected();
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}
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void QuicClientBase::StartConnect() {
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DCHECK(initialized_);
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DCHECK(!connected());
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QuicPacketWriter* writer = network_helper_->CreateQuicPacketWriter();
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if (connected_or_attempting_connect()) {
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// If the last error was not a stateless reject, then the queued up data
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// does not need to be resent.
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if (session()->error() != QUIC_CRYPTO_HANDSHAKE_STATELESS_REJECT) {
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ClearDataToResend();
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}
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// Before we destroy the last session and create a new one, gather its stats
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// and update the stats for the overall connection.
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UpdateStats();
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}
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session_ = CreateQuicClientSession(new QuicConnection(
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GetNextConnectionId(), server_address(), helper(), alarm_factory(),
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writer,
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/* owns_writer= */ false, Perspective::IS_CLIENT, supported_versions()));
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if (initial_max_packet_length_ != 0) {
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session()->connection()->SetMaxPacketLength(initial_max_packet_length_);
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}
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// Reset |writer()| after |session()| so that the old writer outlives the old
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// session.
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set_writer(writer);
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InitializeSession();
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set_connected_or_attempting_connect(true);
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}
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void QuicClientBase::InitializeSession() {
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session()->Initialize();
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}
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void QuicClientBase::Disconnect() {
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DCHECK(initialized_);
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if (connected()) {
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session()->connection()->CloseConnection(
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QUIC_PEER_GOING_AWAY, "Client disconnecting",
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ConnectionCloseBehavior::SEND_CONNECTION_CLOSE_PACKET);
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}
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ClearDataToResend();
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network_helper_->CleanUpAllUDPSockets();
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initialized_ = false;
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}
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ProofVerifier* QuicClientBase::proof_verifier() const {
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return crypto_config_.proof_verifier();
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}
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bool QuicClientBase::EncryptionBeingEstablished() {
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return !session_->IsEncryptionEstablished() &&
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session_->connection()->connected();
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}
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bool QuicClientBase::WaitForEvents() {
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DCHECK(connected());
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network_helper_->RunEventLoop();
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DCHECK(session() != nullptr);
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if (!connected() &&
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session()->error() == QUIC_CRYPTO_HANDSHAKE_STATELESS_REJECT) {
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DCHECK(FLAGS_quic_reloadable_flag_enable_quic_stateless_reject_support);
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QUIC_DLOG(INFO) << "Detected stateless reject while waiting for events. "
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<< "Attempting to reconnect.";
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Connect();
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}
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return session()->num_active_requests() != 0;
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}
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bool QuicClientBase::MigrateSocket(const QuicIpAddress& new_host) {
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if (!connected()) {
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return false;
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}
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network_helper_->CleanUpAllUDPSockets();
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set_bind_to_address(new_host);
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if (!network_helper_->CreateUDPSocketAndBind(server_address_,
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bind_to_address_, local_port_)) {
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return false;
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}
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session()->connection()->SetSelfAddress(
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network_helper_->GetLatestClientAddress());
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QuicPacketWriter* writer = network_helper_->CreateQuicPacketWriter();
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set_writer(writer);
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session()->connection()->SetQuicPacketWriter(writer, false);
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return true;
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}
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QuicSession* QuicClientBase::session() {
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return session_.get();
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}
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QuicClientBase::NetworkHelper* QuicClientBase::network_helper() {
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return network_helper_.get();
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}
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const QuicClientBase::NetworkHelper* QuicClientBase::network_helper() const {
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return network_helper_.get();
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}
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void QuicClientBase::WaitForStreamToClose(QuicStreamId id) {
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DCHECK(connected());
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while (connected() && !session_->IsClosedStream(id)) {
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WaitForEvents();
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}
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}
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bool QuicClientBase::WaitForCryptoHandshakeConfirmed() {
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DCHECK(connected());
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while (connected() && !session_->IsCryptoHandshakeConfirmed()) {
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WaitForEvents();
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}
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// If the handshake fails due to a timeout, the connection will be closed.
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QUIC_LOG_IF(ERROR, !connected()) << "Handshake with server failed.";
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return connected();
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}
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bool QuicClientBase::connected() const {
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return session_.get() && session_->connection() &&
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session_->connection()->connected();
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}
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bool QuicClientBase::goaway_received() const {
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return session_ != nullptr && session_->goaway_received();
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}
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int QuicClientBase::GetNumSentClientHellos() {
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// If we are not actively attempting to connect, the session object
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// corresponds to the previous connection and should not be used.
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const int current_session_hellos = !connected_or_attempting_connect_
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? 0
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: GetNumSentClientHellosFromSession();
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return num_sent_client_hellos_ + current_session_hellos;
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}
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void QuicClientBase::UpdateStats() {
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num_sent_client_hellos_ += GetNumSentClientHellosFromSession();
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if (session()->error() == QUIC_CRYPTO_HANDSHAKE_STATELESS_REJECT) {
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++num_stateless_rejects_received_;
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}
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}
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int QuicClientBase::GetNumReceivedServerConfigUpdates() {
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// If we are not actively attempting to connect, the session object
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// corresponds to the previous connection and should not be used.
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// We do not need to take stateless rejects into account, since we
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// don't expect any scup messages to be sent during a
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// statelessly-rejected connection.
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return !connected_or_attempting_connect_
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? 0
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: GetNumReceivedServerConfigUpdatesFromSession();
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}
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QuicErrorCode QuicClientBase::connection_error() const {
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// Return the high-level error if there was one. Otherwise, return the
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// connection error from the last session.
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if (connection_error_ != QUIC_NO_ERROR) {
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return connection_error_;
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}
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if (session_ == nullptr) {
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return QUIC_NO_ERROR;
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}
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return session_->error();
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}
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QuicConnectionId QuicClientBase::GetNextConnectionId() {
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QuicConnectionId server_designated_id = GetNextServerDesignatedConnectionId();
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return server_designated_id ? server_designated_id
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: GenerateNewConnectionId();
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}
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QuicConnectionId QuicClientBase::GetNextServerDesignatedConnectionId() {
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QuicCryptoClientConfig::CachedState* cached =
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crypto_config_.LookupOrCreate(server_id_);
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// If the cached state indicates that we should use a server-designated
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// connection ID, then return that connection ID.
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CHECK(cached != nullptr) << "QuicClientCryptoConfig::LookupOrCreate returned "
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<< "unexpected nullptr.";
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return cached->has_server_designated_connection_id()
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? cached->GetNextServerDesignatedConnectionId()
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: 0;
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}
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QuicConnectionId QuicClientBase::GenerateNewConnectionId() {
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return QuicRandom::GetInstance()->RandUint64();
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}
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} // namespace net
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