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split from the actual change for easier review and cherry-picking. BUG=webrtc:14605 Change-Id: I7dbaf8e1f4a03f35a5d8c4da1a2784b00589bfc3 Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/280680 Commit-Queue: Philipp Hancke <phancke@microsoft.com> Reviewed-by: Jonas Oreland <jonaso@webrtc.org> Reviewed-by: Harald Alvestrand <hta@webrtc.org> Cr-Commit-Position: refs/heads/main@{#38519}
186 lines
7.6 KiB
C++
186 lines
7.6 KiB
C++
/*
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* Copyright 2018 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/regathering_controller.h"
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#include <map>
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#include <memory>
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#include <string>
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#include <vector>
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#include "api/scoped_refptr.h"
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#include "p2p/base/fake_port_allocator.h"
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#include "p2p/base/mock_ice_transport.h"
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#include "p2p/base/p2p_constants.h"
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#include "p2p/base/port.h"
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#include "p2p/base/stun_server.h"
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#include "rtc_base/gunit.h"
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#include "rtc_base/socket_address.h"
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#include "rtc_base/thread.h"
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#include "rtc_base/virtual_socket_server.h"
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namespace {
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const int kOnlyLocalPorts = cricket::PORTALLOCATOR_DISABLE_STUN |
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cricket::PORTALLOCATOR_DISABLE_RELAY |
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cricket::PORTALLOCATOR_DISABLE_TCP;
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// The address of the public STUN server.
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const rtc::SocketAddress kStunAddr("99.99.99.1", cricket::STUN_SERVER_PORT);
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// The addresses for the public TURN server.
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const rtc::SocketAddress kTurnUdpIntAddr("99.99.99.3",
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cricket::STUN_SERVER_PORT);
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const cricket::RelayCredentials kRelayCredentials("test", "test");
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const char kIceUfrag[] = "UF00";
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const char kIcePwd[] = "TESTICEPWD00000000000000";
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constexpr uint64_t kTiebreakerDefault = 44444;
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} // namespace
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namespace webrtc {
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class RegatheringControllerTest : public ::testing::Test,
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public sigslot::has_slots<> {
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public:
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RegatheringControllerTest()
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: vss_(std::make_unique<rtc::VirtualSocketServer>()),
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thread_(vss_.get()),
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ice_transport_(std::make_unique<cricket::MockIceTransport>()),
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packet_socket_factory_(
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std::make_unique<rtc::BasicPacketSocketFactory>(vss_.get())),
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allocator_(std::make_unique<cricket::FakePortAllocator>(
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rtc::Thread::Current(),
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packet_socket_factory_.get())) {
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allocator_->SetIceTiebreaker(kTiebreakerDefault);
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BasicRegatheringController::Config regathering_config;
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regathering_config.regather_on_failed_networks_interval = 0;
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regathering_controller_.reset(new BasicRegatheringController(
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regathering_config, ice_transport_.get(), rtc::Thread::Current()));
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}
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// Initializes the allocator and gathers candidates once by StartGettingPorts.
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void InitializeAndGatherOnce() {
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cricket::ServerAddresses stun_servers;
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stun_servers.insert(kStunAddr);
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cricket::RelayServerConfig turn_server;
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turn_server.credentials = kRelayCredentials;
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turn_server.ports.push_back(
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cricket::ProtocolAddress(kTurnUdpIntAddr, cricket::PROTO_UDP));
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std::vector<cricket::RelayServerConfig> turn_servers(1, turn_server);
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allocator_->set_flags(kOnlyLocalPorts);
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allocator_->SetConfiguration(stun_servers, turn_servers, 0 /* pool size */,
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webrtc::NO_PRUNE);
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allocator_session_ = allocator_->CreateSession(
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"test", cricket::ICE_CANDIDATE_COMPONENT_RTP, kIceUfrag, kIcePwd);
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// The gathering will take place on the current thread and the following
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// call of StartGettingPorts is blocking. We will not ClearGettingPorts
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// prematurely.
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allocator_session_->StartGettingPorts();
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allocator_session_->SignalIceRegathering.connect(
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this, &RegatheringControllerTest::OnIceRegathering);
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regathering_controller_->set_allocator_session(allocator_session_.get());
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}
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// The regathering controller is initialized with the allocator session
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// cleared. Only after clearing the session, we would be able to regather. See
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// the comments for BasicRegatheringController in regatheringcontroller.h.
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void InitializeAndGatherOnceWithSessionCleared() {
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InitializeAndGatherOnce();
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allocator_session_->ClearGettingPorts();
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}
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void OnIceRegathering(cricket::PortAllocatorSession* allocator_session,
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cricket::IceRegatheringReason reason) {
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++count_[reason];
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}
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int GetRegatheringReasonCount(cricket::IceRegatheringReason reason) {
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return count_[reason];
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}
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BasicRegatheringController* regathering_controller() {
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return regathering_controller_.get();
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}
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private:
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std::unique_ptr<rtc::VirtualSocketServer> vss_;
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rtc::AutoSocketServerThread thread_;
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std::unique_ptr<cricket::IceTransportInternal> ice_transport_;
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std::unique_ptr<BasicRegatheringController> regathering_controller_;
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std::unique_ptr<rtc::PacketSocketFactory> packet_socket_factory_;
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std::unique_ptr<cricket::PortAllocator> allocator_;
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std::unique_ptr<cricket::PortAllocatorSession> allocator_session_;
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std::map<cricket::IceRegatheringReason, int> count_;
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};
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// Tests that ICE regathering occurs only if the port allocator session is
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// cleared. A port allocation session is not cleared if the initial gathering is
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// still in progress or the continual gathering is not enabled.
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TEST_F(RegatheringControllerTest,
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IceRegatheringDoesNotOccurIfSessionNotCleared) {
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rtc::ScopedFakeClock clock;
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InitializeAndGatherOnce(); // Session not cleared.
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BasicRegatheringController::Config config;
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config.regather_on_failed_networks_interval = 2000;
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regathering_controller()->SetConfig(config);
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regathering_controller()->Start();
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SIMULATED_WAIT(false, 10000, clock);
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// Expect no regathering in the last 10s.
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EXPECT_EQ(0, GetRegatheringReasonCount(
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cricket::IceRegatheringReason::NETWORK_FAILURE));
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}
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TEST_F(RegatheringControllerTest, IceRegatheringRepeatsAsScheduled) {
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rtc::ScopedFakeClock clock;
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InitializeAndGatherOnceWithSessionCleared();
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BasicRegatheringController::Config config;
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config.regather_on_failed_networks_interval = 2000;
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regathering_controller()->SetConfig(config);
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regathering_controller()->Start();
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SIMULATED_WAIT(false, 2000 - 1, clock);
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// Expect no regathering.
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EXPECT_EQ(0, GetRegatheringReasonCount(
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cricket::IceRegatheringReason::NETWORK_FAILURE));
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SIMULATED_WAIT(false, 2, clock);
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// Expect regathering on all networks and on failed networks to happen once
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// respectively in that last 2s with 2s interval.
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EXPECT_EQ(1, GetRegatheringReasonCount(
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cricket::IceRegatheringReason::NETWORK_FAILURE));
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SIMULATED_WAIT(false, 11000, clock);
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// Expect regathering to happen for another 5 times in 11s with 2s interval.
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EXPECT_EQ(6, GetRegatheringReasonCount(
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cricket::IceRegatheringReason::NETWORK_FAILURE));
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}
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// Tests that the schedule of ICE regathering on failed networks can be canceled
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// and replaced by a new recurring schedule.
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TEST_F(RegatheringControllerTest,
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ScheduleOfIceRegatheringOnFailedNetworksCanBeReplaced) {
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rtc::ScopedFakeClock clock;
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InitializeAndGatherOnceWithSessionCleared();
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BasicRegatheringController::Config config;
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config.regather_on_failed_networks_interval = 2000;
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regathering_controller()->SetConfig(config);
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regathering_controller()->Start();
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config.regather_on_failed_networks_interval = 5000;
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regathering_controller()->SetConfig(config);
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SIMULATED_WAIT(false, 3000, clock);
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// Expect no regathering from the previous schedule.
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EXPECT_EQ(0, GetRegatheringReasonCount(
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cricket::IceRegatheringReason::NETWORK_FAILURE));
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SIMULATED_WAIT(false, 11000 - 3000, clock);
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// Expect regathering to happen twice in the last 11s with 5s interval.
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EXPECT_EQ(2, GetRegatheringReasonCount(
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cricket::IceRegatheringReason::NETWORK_FAILURE));
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}
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} // namespace webrtc
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