2017-02-25 18:15:09 -08:00
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/*
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* Copyright 2017 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 <memory>
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#include "webrtc/base/fakenetwork.h"
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#include "webrtc/base/gunit.h"
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#include "webrtc/base/physicalsocketserver.h"
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#include "webrtc/base/virtualsocketserver.h"
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#include "webrtc/media/base/fakemediaengine.h"
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#include "webrtc/ortc/ortcfactory.h"
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#include "webrtc/ortc/testrtpparameters.h"
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#include "webrtc/p2p/base/fakepackettransport.h"
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namespace webrtc {
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// This test uses a virtual network and fake media engine, in order to test the
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// OrtcFactory at only an API level. Any end-to-end test should go in
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// ortcfactory_integrationtest.cc instead.
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class OrtcFactoryTest : public testing::Test {
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public:
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OrtcFactoryTest()
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: virtual_socket_server_(&physical_socket_server_),
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socket_server_scope_(&virtual_socket_server_),
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fake_packet_transport_("fake transport") {
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ortc_factory_ =
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OrtcFactory::Create(nullptr, nullptr, &fake_network_manager_, nullptr,
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nullptr,
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std::unique_ptr<cricket::MediaEngineInterface>(
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new cricket::FakeMediaEngine()))
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.MoveValue();
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}
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protected:
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// Uses a single pre-made FakePacketTransport, so shouldn't be called twice in
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// the same test.
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std::unique_ptr<RtpTransportInterface>
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CreateRtpTransportWithFakePacketTransport() {
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return ortc_factory_
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->CreateRtpTransport(MakeRtcpMuxParameters(), &fake_packet_transport_,
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nullptr, nullptr)
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.MoveValue();
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}
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rtc::PhysicalSocketServer physical_socket_server_;
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rtc::VirtualSocketServer virtual_socket_server_;
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rtc::SocketServerScope socket_server_scope_;
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rtc::FakeNetworkManager fake_network_manager_;
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rtc::FakePacketTransport fake_packet_transport_;
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std::unique_ptr<OrtcFactoryInterface> ortc_factory_;
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};
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TEST_F(OrtcFactoryTest, CanCreateMultipleRtpTransportControllers) {
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auto controller_result1 = ortc_factory_->CreateRtpTransportController();
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EXPECT_TRUE(controller_result1.ok());
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auto controller_result2 = ortc_factory_->CreateRtpTransportController();
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EXPECT_TRUE(controller_result1.ok());
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}
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// Simple test for the successful cases of CreateRtpTransport.
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TEST_F(OrtcFactoryTest, CreateRtpTransportWithAndWithoutMux) {
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rtc::FakePacketTransport rtp("rtp");
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rtc::FakePacketTransport rtcp("rtcp");
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// With muxed RTCP.
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RtcpParameters rtcp_parameters;
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rtcp_parameters.mux = true;
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auto result = ortc_factory_->CreateRtpTransport(rtcp_parameters, &rtp,
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nullptr, nullptr);
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EXPECT_TRUE(result.ok());
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result.MoveValue().reset();
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// With non-muxed RTCP.
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rtcp_parameters.mux = false;
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result =
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ortc_factory_->CreateRtpTransport(rtcp_parameters, &rtp, &rtcp, nullptr);
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EXPECT_TRUE(result.ok());
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}
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2017-03-03 14:39:06 -08:00
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// Simple test for the successful cases of CreateSrtpTransport.
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TEST_F(OrtcFactoryTest, CreateSrtpTransport) {
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rtc::FakePacketTransport rtp("rtp");
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rtc::FakePacketTransport rtcp("rtcp");
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// With muxed RTCP.
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RtcpParameters rtcp_parameters;
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rtcp_parameters.mux = true;
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auto result = ortc_factory_->CreateSrtpTransport(rtcp_parameters, &rtp,
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nullptr, nullptr);
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EXPECT_TRUE(result.ok());
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result.MoveValue().reset();
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// With non-muxed RTCP.
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rtcp_parameters.mux = false;
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result =
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ortc_factory_->CreateSrtpTransport(rtcp_parameters, &rtp, &rtcp, nullptr);
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EXPECT_TRUE(result.ok());
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}
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2017-02-25 18:15:09 -08:00
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// If no CNAME is provided, one should be generated and returned by
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// GetRtpParameters.
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TEST_F(OrtcFactoryTest, CreateRtpTransportGeneratesCname) {
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rtc::FakePacketTransport rtp("rtp");
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RtcpParameters rtcp_parameters;
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rtcp_parameters.mux = true;
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auto result = ortc_factory_->CreateRtpTransport(rtcp_parameters, &rtp,
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nullptr, nullptr);
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ASSERT_TRUE(result.ok());
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EXPECT_FALSE(result.value()->GetRtcpParameters().cname.empty());
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}
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// Extension of the above test; multiple transports created by the same factory
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// should use the same generated CNAME.
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TEST_F(OrtcFactoryTest, MultipleRtpTransportsUseSameGeneratedCname) {
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rtc::FakePacketTransport packet_transport1("1");
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rtc::FakePacketTransport packet_transport2("2");
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RtcpParameters rtcp_parameters;
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rtcp_parameters.mux = true;
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// Sanity check.
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ASSERT_TRUE(rtcp_parameters.cname.empty());
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auto result = ortc_factory_->CreateRtpTransport(
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rtcp_parameters, &packet_transport1, nullptr, nullptr);
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ASSERT_TRUE(result.ok());
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auto rtp_transport1 = result.MoveValue();
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result = ortc_factory_->CreateRtpTransport(
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rtcp_parameters, &packet_transport2, nullptr, nullptr);
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ASSERT_TRUE(result.ok());
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auto rtp_transport2 = result.MoveValue();
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RtcpParameters params1 = rtp_transport1->GetRtcpParameters();
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RtcpParameters params2 = rtp_transport2->GetRtcpParameters();
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EXPECT_FALSE(params1.cname.empty());
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EXPECT_EQ(params1.cname, params2.cname);
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}
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TEST_F(OrtcFactoryTest, CreateRtpTransportWithNoPacketTransport) {
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auto result = ortc_factory_->CreateRtpTransport(MakeRtcpMuxParameters(),
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nullptr, nullptr, nullptr);
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EXPECT_EQ(RTCErrorType::INVALID_PARAMETER, result.error().type());
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}
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// If the |mux| member of the RtcpParameters is false, both an RTP and RTCP
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// packet transport are needed.
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TEST_F(OrtcFactoryTest, CreateRtpTransportWithMissingRtcpTransport) {
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rtc::FakePacketTransport rtp("rtp");
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RtcpParameters rtcp_parameters;
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rtcp_parameters.mux = false;
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auto result = ortc_factory_->CreateRtpTransport(rtcp_parameters, &rtp,
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nullptr, nullptr);
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EXPECT_EQ(RTCErrorType::INVALID_PARAMETER, result.error().type());
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}
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// If the |mux| member of the RtcpParameters is true, only an RTP packet
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// transport is necessary. So, passing in an RTCP transport is most likely
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// an accident, and thus should be treated as an error.
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TEST_F(OrtcFactoryTest, CreateRtpTransportWithExtraneousRtcpTransport) {
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rtc::FakePacketTransport rtp("rtp");
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rtc::FakePacketTransport rtcp("rtcp");
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RtcpParameters rtcp_parameters;
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rtcp_parameters.mux = true;
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auto result =
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ortc_factory_->CreateRtpTransport(rtcp_parameters, &rtp, &rtcp, nullptr);
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EXPECT_EQ(RTCErrorType::INVALID_PARAMETER, result.error().type());
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}
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// Basic test that CreateUdpTransport works with AF_INET and AF_INET6.
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TEST_F(OrtcFactoryTest, CreateUdpTransport) {
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auto result = ortc_factory_->CreateUdpTransport(AF_INET);
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EXPECT_TRUE(result.ok());
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result = ortc_factory_->CreateUdpTransport(AF_INET6);
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EXPECT_TRUE(result.ok());
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}
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// Test CreateUdpPort with the |min_port| and |max_port| arguments.
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TEST_F(OrtcFactoryTest, CreateUdpTransportWithPortRange) {
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auto socket_result1 = ortc_factory_->CreateUdpTransport(AF_INET, 2000, 2002);
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ASSERT_TRUE(socket_result1.ok());
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EXPECT_EQ(2000, socket_result1.value()->GetLocalAddress().port());
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auto socket_result2 = ortc_factory_->CreateUdpTransport(AF_INET, 2000, 2002);
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ASSERT_TRUE(socket_result2.ok());
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EXPECT_EQ(2001, socket_result2.value()->GetLocalAddress().port());
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auto socket_result3 = ortc_factory_->CreateUdpTransport(AF_INET, 2000, 2002);
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ASSERT_TRUE(socket_result3.ok());
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EXPECT_EQ(2002, socket_result3.value()->GetLocalAddress().port());
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// All sockets in the range have been exhausted, so the next call should
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// fail.
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auto failed_result = ortc_factory_->CreateUdpTransport(AF_INET, 2000, 2002);
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EXPECT_EQ(RTCErrorType::RESOURCE_EXHAUSTED, failed_result.error().type());
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// If one socket is destroyed, that port should be freed up again.
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socket_result2.MoveValue().reset();
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auto socket_result4 = ortc_factory_->CreateUdpTransport(AF_INET, 2000, 2002);
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ASSERT_TRUE(socket_result4.ok());
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EXPECT_EQ(2001, socket_result4.value()->GetLocalAddress().port());
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}
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// Basic test that CreateUdpTransport works with AF_INET and AF_INET6.
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TEST_F(OrtcFactoryTest, CreateUdpTransportWithInvalidAddressFamily) {
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auto result = ortc_factory_->CreateUdpTransport(12345);
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EXPECT_EQ(RTCErrorType::INVALID_PARAMETER, result.error().type());
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}
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TEST_F(OrtcFactoryTest, CreateUdpTransportWithInvalidPortRange) {
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auto result = ortc_factory_->CreateUdpTransport(AF_INET, 3000, 2000);
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EXPECT_EQ(RTCErrorType::INVALID_RANGE, result.error().type());
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}
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// Just sanity check that each "GetCapabilities" method returns some codecs.
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TEST_F(OrtcFactoryTest, GetSenderAndReceiverCapabilities) {
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RtpCapabilities audio_send_caps =
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ortc_factory_->GetRtpSenderCapabilities(cricket::MEDIA_TYPE_AUDIO);
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EXPECT_GT(audio_send_caps.codecs.size(), 0u);
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RtpCapabilities video_send_caps =
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ortc_factory_->GetRtpSenderCapabilities(cricket::MEDIA_TYPE_VIDEO);
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EXPECT_GT(video_send_caps.codecs.size(), 0u);
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RtpCapabilities audio_receive_caps =
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ortc_factory_->GetRtpReceiverCapabilities(cricket::MEDIA_TYPE_AUDIO);
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EXPECT_GT(audio_receive_caps.codecs.size(), 0u);
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RtpCapabilities video_receive_caps =
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ortc_factory_->GetRtpReceiverCapabilities(cricket::MEDIA_TYPE_VIDEO);
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EXPECT_GT(video_receive_caps.codecs.size(), 0u);
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}
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// Calling CreateRtpSender with a null track should fail, since that makes it
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// impossible to know whether to create an audio or video sender. The
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// application should be using the method that takes a cricket::MediaType
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// instead.
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TEST_F(OrtcFactoryTest, CreateSenderWithNullTrack) {
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auto rtp_transport = CreateRtpTransportWithFakePacketTransport();
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auto result = ortc_factory_->CreateRtpSender(nullptr, rtp_transport.get());
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EXPECT_EQ(RTCErrorType::INVALID_PARAMETER, result.error().type());
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}
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// Calling CreateRtpSender or CreateRtpReceiver with MEDIA_TYPE_DATA should
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// fail.
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TEST_F(OrtcFactoryTest, CreateSenderOrReceieverWithInvalidKind) {
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auto rtp_transport = CreateRtpTransportWithFakePacketTransport();
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auto sender_result = ortc_factory_->CreateRtpSender(cricket::MEDIA_TYPE_DATA,
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rtp_transport.get());
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EXPECT_EQ(RTCErrorType::INVALID_PARAMETER, sender_result.error().type());
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auto receiver_result = ortc_factory_->CreateRtpReceiver(
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cricket::MEDIA_TYPE_DATA, rtp_transport.get());
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EXPECT_EQ(RTCErrorType::INVALID_PARAMETER, receiver_result.error().type());
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}
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TEST_F(OrtcFactoryTest, CreateSendersOrReceieversWithNullTransport) {
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auto sender_result =
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ortc_factory_->CreateRtpSender(cricket::MEDIA_TYPE_AUDIO, nullptr);
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EXPECT_EQ(RTCErrorType::INVALID_PARAMETER, sender_result.error().type());
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auto receiver_result =
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ortc_factory_->CreateRtpReceiver(cricket::MEDIA_TYPE_AUDIO, nullptr);
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EXPECT_EQ(RTCErrorType::INVALID_PARAMETER, receiver_result.error().type());
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}
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} // namespace webrtc
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