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243 lines
9.6 KiB
243 lines
9.6 KiB
/*
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* Copyright 2016 The WebRTC Project Authors. All rights reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "p2p/base/tcp_port.h"
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#include <list>
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#include <memory>
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#include <vector>
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#include "p2p/base/basic_packet_socket_factory.h"
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#include "p2p/base/p2p_constants.h"
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#include "p2p/base/transport_description.h"
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#include "rtc_base/gunit.h"
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#include "rtc_base/helpers.h"
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#include "rtc_base/ip_address.h"
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#include "rtc_base/third_party/sigslot/sigslot.h"
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#include "rtc_base/thread.h"
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#include "rtc_base/time_utils.h"
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#include "rtc_base/virtual_socket_server.h"
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#include "test/gtest.h"
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using cricket::Connection;
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using cricket::ICE_PWD_LENGTH;
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using cricket::ICE_UFRAG_LENGTH;
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using cricket::Port;
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using cricket::TCPPort;
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using rtc::SocketAddress;
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static int kTimeout = 1000;
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static const SocketAddress kLocalAddr("11.11.11.11", 0);
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static const SocketAddress kLocalIPv6Addr("2401:fa00:4:1000:be30:5bff:fee5:c3",
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0);
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static const SocketAddress kAlternateLocalAddr("1.2.3.4", 0);
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static const SocketAddress kRemoteAddr("22.22.22.22", 0);
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static const SocketAddress kRemoteIPv6Addr("2401:fa00:4:1000:be30:5bff:fee5:c4",
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0);
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class ConnectionObserver : public sigslot::has_slots<> {
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public:
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explicit ConnectionObserver(Connection* conn) {
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conn->SignalDestroyed.connect(this, &ConnectionObserver::OnDestroyed);
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}
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bool connection_destroyed() { return connection_destroyed_; }
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private:
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void OnDestroyed(Connection*) { connection_destroyed_ = true; }
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bool connection_destroyed_ = false;
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};
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class TCPPortTest : public ::testing::Test, public sigslot::has_slots<> {
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public:
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TCPPortTest()
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: ss_(new rtc::VirtualSocketServer()),
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main_(ss_.get()),
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socket_factory_(rtc::Thread::Current()),
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username_(rtc::CreateRandomString(ICE_UFRAG_LENGTH)),
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password_(rtc::CreateRandomString(ICE_PWD_LENGTH)) {}
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rtc::Network* MakeNetwork(const SocketAddress& addr) {
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networks_.emplace_back("unittest", "unittest", addr.ipaddr(), 32);
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networks_.back().AddIP(addr.ipaddr());
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return &networks_.back();
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}
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std::unique_ptr<TCPPort> CreateTCPPort(const SocketAddress& addr) {
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return std::unique_ptr<TCPPort>(
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TCPPort::Create(&main_, &socket_factory_, MakeNetwork(addr), 0, 0,
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username_, password_, true));
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}
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std::unique_ptr<TCPPort> CreateTCPPort(rtc::Network* network) {
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return std::unique_ptr<TCPPort>(TCPPort::Create(
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&main_, &socket_factory_, network, 0, 0, username_, password_, true));
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}
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protected:
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// When a "create port" helper method is called with an IP, we create a
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// Network with that IP and add it to this list. Using a list instead of a
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// vector so that when it grows, pointers aren't invalidated.
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std::list<rtc::Network> networks_;
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std::unique_ptr<rtc::VirtualSocketServer> ss_;
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rtc::AutoSocketServerThread main_;
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rtc::BasicPacketSocketFactory socket_factory_;
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std::string username_;
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std::string password_;
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};
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TEST_F(TCPPortTest, TestTCPPortWithLocalhostAddress) {
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SocketAddress local_address("127.0.0.1", 0);
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// After calling this, when TCPPort attempts to get a socket bound to
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// kLocalAddr, it will end up using localhost instead.
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ss_->SetAlternativeLocalAddress(kLocalAddr.ipaddr(), local_address.ipaddr());
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auto local_port = CreateTCPPort(kLocalAddr);
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auto remote_port = CreateTCPPort(kRemoteAddr);
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local_port->PrepareAddress();
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remote_port->PrepareAddress();
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Connection* conn = local_port->CreateConnection(remote_port->Candidates()[0],
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Port::ORIGIN_MESSAGE);
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EXPECT_TRUE_WAIT(conn->connected(), kTimeout);
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// Verify that the socket actually used localhost, otherwise this test isn't
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// doing what it meant to.
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ASSERT_EQ(local_address.ipaddr(),
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local_port->Candidates()[0].address().ipaddr());
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}
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// If the address the socket ends up bound to does not match any address of the
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// TCPPort's Network, then the socket should be discarded and no candidates
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// should be signaled. In the context of ICE, where one TCPPort is created for
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// each Network, when this happens it's likely that the unexpected address is
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// associated with some other Network, which another TCPPort is already
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// covering.
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TEST_F(TCPPortTest, TCPPortDiscardedIfBoundAddressDoesNotMatchNetwork) {
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// Sockets bound to kLocalAddr will actually end up with kAlternateLocalAddr.
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ss_->SetAlternativeLocalAddress(kLocalAddr.ipaddr(),
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kAlternateLocalAddr.ipaddr());
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// Create ports (local_port is the one whose IP will end up reassigned).
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auto local_port = CreateTCPPort(kLocalAddr);
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auto remote_port = CreateTCPPort(kRemoteAddr);
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local_port->PrepareAddress();
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remote_port->PrepareAddress();
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// Tell port to create a connection; it should be destroyed when it's
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// realized that it's using an unexpected address.
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Connection* conn = local_port->CreateConnection(remote_port->Candidates()[0],
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Port::ORIGIN_MESSAGE);
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ConnectionObserver observer(conn);
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EXPECT_TRUE_WAIT(observer.connection_destroyed(), kTimeout);
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}
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// A caveat for the above logic: if the socket ends up bound to one of the IPs
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// associated with the Network, just not the "best" one, this is ok.
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TEST_F(TCPPortTest, TCPPortNotDiscardedIfNotBoundToBestIP) {
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// Sockets bound to kLocalAddr will actually end up with kAlternateLocalAddr.
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ss_->SetAlternativeLocalAddress(kLocalAddr.ipaddr(),
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kAlternateLocalAddr.ipaddr());
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// Set up a network with kLocalAddr1 as the "best" IP, and kAlternateLocalAddr
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// as an alternate.
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rtc::Network* network = MakeNetwork(kLocalAddr);
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network->AddIP(kAlternateLocalAddr.ipaddr());
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ASSERT_EQ(kLocalAddr.ipaddr(), network->GetBestIP());
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// Create ports (using our special 2-IP Network for local_port).
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auto local_port = CreateTCPPort(network);
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auto remote_port = CreateTCPPort(kRemoteAddr);
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local_port->PrepareAddress();
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remote_port->PrepareAddress();
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// Expect connection to succeed.
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Connection* conn = local_port->CreateConnection(remote_port->Candidates()[0],
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Port::ORIGIN_MESSAGE);
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EXPECT_TRUE_WAIT(conn->connected(), kTimeout);
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// Verify that the socket actually used the alternate address, otherwise this
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// test isn't doing what it meant to.
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ASSERT_EQ(kAlternateLocalAddr.ipaddr(),
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local_port->Candidates()[0].address().ipaddr());
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}
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// Regression test for crbug.com/webrtc/8972, caused by buggy comparison
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// between rtc::IPAddress and rtc::InterfaceAddress.
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TEST_F(TCPPortTest, TCPPortNotDiscardedIfBoundToTemporaryIP) {
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networks_.emplace_back("unittest", "unittest", kLocalIPv6Addr.ipaddr(), 32);
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networks_.back().AddIP(rtc::InterfaceAddress(
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kLocalIPv6Addr.ipaddr(), rtc::IPV6_ADDRESS_FLAG_TEMPORARY));
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auto local_port = CreateTCPPort(&networks_.back());
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auto remote_port = CreateTCPPort(kRemoteIPv6Addr);
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local_port->PrepareAddress();
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remote_port->PrepareAddress();
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// Connection should succeed if the port isn't discarded.
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Connection* conn = local_port->CreateConnection(remote_port->Candidates()[0],
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Port::ORIGIN_MESSAGE);
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ASSERT_NE(nullptr, conn);
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EXPECT_TRUE_WAIT(conn->connected(), kTimeout);
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}
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class SentPacketCounter : public sigslot::has_slots<> {
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public:
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explicit SentPacketCounter(TCPPort* p) {
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p->SignalSentPacket.connect(this, &SentPacketCounter::OnSentPacket);
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}
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int sent_packets() const { return sent_packets_; }
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private:
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void OnSentPacket(const rtc::SentPacket&) { ++sent_packets_; }
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int sent_packets_ = 0;
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};
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// Test that SignalSentPacket is fired when a packet is successfully sent, for
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// both TCP client and server sockets.
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TEST_F(TCPPortTest, SignalSentPacket) {
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std::unique_ptr<TCPPort> client(CreateTCPPort(kLocalAddr));
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std::unique_ptr<TCPPort> server(CreateTCPPort(kRemoteAddr));
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client->SetIceRole(cricket::ICEROLE_CONTROLLING);
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server->SetIceRole(cricket::ICEROLE_CONTROLLED);
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client->PrepareAddress();
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server->PrepareAddress();
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Connection* client_conn =
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client->CreateConnection(server->Candidates()[0], Port::ORIGIN_MESSAGE);
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ASSERT_NE(nullptr, client_conn);
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ASSERT_TRUE_WAIT(client_conn->connected(), kTimeout);
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// Need to get the port of the actual outgoing socket, not the server socket..
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cricket::Candidate client_candidate = client->Candidates()[0];
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client_candidate.set_address(static_cast<cricket::TCPConnection*>(client_conn)
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->socket()
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->GetLocalAddress());
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Connection* server_conn =
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server->CreateConnection(client_candidate, Port::ORIGIN_THIS_PORT);
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ASSERT_NE(nullptr, server_conn);
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ASSERT_TRUE_WAIT(server_conn->connected(), kTimeout);
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client_conn->Ping(rtc::TimeMillis());
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server_conn->Ping(rtc::TimeMillis());
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ASSERT_TRUE_WAIT(client_conn->writable(), kTimeout);
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ASSERT_TRUE_WAIT(server_conn->writable(), kTimeout);
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SentPacketCounter client_counter(client.get());
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SentPacketCounter server_counter(server.get());
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static const char kData[] = "hello";
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for (int i = 0; i < 10; ++i) {
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client_conn->Send(&kData, sizeof(kData), rtc::PacketOptions());
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server_conn->Send(&kData, sizeof(kData), rtc::PacketOptions());
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}
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EXPECT_EQ_WAIT(10, client_counter.sent_packets(), kTimeout);
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EXPECT_EQ_WAIT(10, server_counter.sent_packets(), kTimeout);
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}
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