blob: 48607d1355ff6032cfbda0992083d74f897c7f89 [file] [log] [blame]
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001/*
2 * Copyright 2004 The WebRTC Project Authors. All rights reserved.
3 *
4 * Use of this source code is governed by a BSD-style license
5 * that can be found in the LICENSE file in the root of the source
6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree.
9 */
10
Jonas Olssona4d87372019-07-05 19:08:33 +020011#include "p2p/base/port.h"
12
Yves Gerey3e707812018-11-28 16:47:49 +010013#include <string.h>
Jonas Olssona4d87372019-07-05 19:08:33 +020014
Yves Gerey3e707812018-11-28 16:47:49 +010015#include <cstdint>
Jonas Orelandef60c2b2020-03-26 15:10:39 +010016#include <limits>
deadbeef5c3c1042017-08-04 15:01:57 -070017#include <list>
kwiberg3ec46792016-04-27 07:22:53 -070018#include <memory>
Yves Gerey3e707812018-11-28 16:47:49 +010019#include <string>
20#include <utility>
21#include <vector>
kwiberg3ec46792016-04-27 07:22:53 -070022
Yves Gerey3e707812018-11-28 16:47:49 +010023#include "absl/types/optional.h"
24#include "api/candidate.h"
Patrik Höglund7d003422019-09-17 12:16:35 +020025#include "api/packet_socket_factory.h"
Patrik Höglund56d94522019-11-18 15:53:32 +010026#include "api/transport/stun.h"
Yves Gerey3e707812018-11-28 16:47:49 +010027#include "api/units/time_delta.h"
Steve Anton10542f22019-01-11 09:11:00 -080028#include "p2p/base/basic_packet_socket_factory.h"
29#include "p2p/base/p2p_constants.h"
Steve Anton10542f22019-01-11 09:11:00 -080030#include "p2p/base/port_allocator.h"
31#include "p2p/base/port_interface.h"
Steve Anton10542f22019-01-11 09:11:00 -080032#include "p2p/base/stun_port.h"
33#include "p2p/base/stun_server.h"
34#include "p2p/base/tcp_port.h"
Steve Anton10542f22019-01-11 09:11:00 -080035#include "p2p/base/test_stun_server.h"
36#include "p2p/base/test_turn_server.h"
37#include "p2p/base/transport_description.h"
38#include "p2p/base/turn_port.h"
39#include "p2p/base/turn_server.h"
40#include "p2p/client/relay_port_factory_interface.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020041#include "rtc_base/arraysize.h"
Steve Anton10542f22019-01-11 09:11:00 -080042#include "rtc_base/async_packet_socket.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020043#include "rtc_base/buffer.h"
Steve Anton10542f22019-01-11 09:11:00 -080044#include "rtc_base/byte_buffer.h"
Yves Gerey3e707812018-11-28 16:47:49 +010045#include "rtc_base/checks.h"
46#include "rtc_base/dscp.h"
Steve Anton10542f22019-01-11 09:11:00 -080047#include "rtc_base/fake_clock.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020048#include "rtc_base/gunit.h"
49#include "rtc_base/helpers.h"
50#include "rtc_base/logging.h"
Steve Anton10542f22019-01-11 09:11:00 -080051#include "rtc_base/nat_server.h"
52#include "rtc_base/nat_socket_factory.h"
53#include "rtc_base/nat_types.h"
54#include "rtc_base/net_helper.h"
Yves Gerey3e707812018-11-28 16:47:49 +010055#include "rtc_base/network.h"
56#include "rtc_base/network/sent_packet.h"
57#include "rtc_base/network_constants.h"
Steve Anton10542f22019-01-11 09:11:00 -080058#include "rtc_base/proxy_info.h"
Yves Gerey3e707812018-11-28 16:47:49 +010059#include "rtc_base/socket.h"
Steve Anton10542f22019-01-11 09:11:00 -080060#include "rtc_base/socket_adapters.h"
61#include "rtc_base/socket_address.h"
Yves Gerey3e707812018-11-28 16:47:49 +010062#include "rtc_base/third_party/sigslot/sigslot.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020063#include "rtc_base/thread.h"
Steve Anton10542f22019-01-11 09:11:00 -080064#include "rtc_base/time_utils.h"
65#include "rtc_base/virtual_socket_server.h"
Jonas Oreland21433ca2020-05-13 14:11:25 +020066#include "test/field_trial.h"
Yves Gerey3e707812018-11-28 16:47:49 +010067#include "test/gtest.h"
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000068
69using rtc::AsyncPacketSocket;
jbauchf1f87202016-03-30 06:43:37 -070070using rtc::ByteBufferReader;
71using rtc::ByteBufferWriter;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000072using rtc::NAT_ADDR_RESTRICTED;
Jonas Olssona4d87372019-07-05 19:08:33 +020073using rtc::NAT_OPEN_CONE;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000074using rtc::NAT_PORT_RESTRICTED;
75using rtc::NAT_SYMMETRIC;
Jonas Olssona4d87372019-07-05 19:08:33 +020076using rtc::NATType;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000077using rtc::PacketSocketFactory;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000078using rtc::Socket;
79using rtc::SocketAddress;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000080
Steve Antonbabf9172017-11-29 10:19:02 -080081namespace cricket {
82namespace {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000083
Steve Antonbabf9172017-11-29 10:19:02 -080084constexpr int kDefaultTimeout = 3000;
85constexpr int kShortTimeout = 1000;
Qingsi Wang22e623a2018-03-13 10:53:57 -070086constexpr int kMaxExpectedSimulatedRtt = 200;
Steve Antonbabf9172017-11-29 10:19:02 -080087const SocketAddress kLocalAddr1("192.168.1.2", 0);
88const SocketAddress kLocalAddr2("192.168.1.3", 0);
89const SocketAddress kNatAddr1("77.77.77.77", rtc::NAT_SERVER_UDP_PORT);
90const SocketAddress kNatAddr2("88.88.88.88", rtc::NAT_SERVER_UDP_PORT);
91const SocketAddress kStunAddr("99.99.99.1", STUN_SERVER_PORT);
Steve Antonbabf9172017-11-29 10:19:02 -080092const SocketAddress kTurnUdpIntAddr("99.99.99.4", STUN_SERVER_PORT);
93const SocketAddress kTurnTcpIntAddr("99.99.99.4", 5010);
94const SocketAddress kTurnUdpExtAddr("99.99.99.5", 0);
95const RelayCredentials kRelayCredentials("test", "test");
96
97// TODO(?): Update these when RFC5245 is completely supported.
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000098// Magic value of 30 is from RFC3484, for IPv4 addresses.
Steve Antonbabf9172017-11-29 10:19:02 -080099const uint32_t kDefaultPrflxPriority = ICE_TYPE_PREFERENCE_PRFLX << 24 |
100 30 << 8 |
101 (256 - ICE_CANDIDATE_COMPONENT_DEFAULT);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000102
Steve Antonbabf9172017-11-29 10:19:02 -0800103constexpr int kTiebreaker1 = 11111;
104constexpr int kTiebreaker2 = 22222;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000105
Steve Antonbabf9172017-11-29 10:19:02 -0800106const char* data = "ABCDEFGHIJKLMNOPQRSTUVWXYZ1234567890";
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700107
Steve Antonbabf9172017-11-29 10:19:02 -0800108Candidate GetCandidate(Port* port) {
109 RTC_DCHECK_GE(port->Candidates().size(), 1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000110 return port->Candidates()[0];
111}
112
Steve Antonbabf9172017-11-29 10:19:02 -0800113SocketAddress GetAddress(Port* port) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000114 return GetCandidate(port).address();
115}
116
Steve Anton11358fe2018-10-09 15:39:19 -0700117std::unique_ptr<IceMessage> CopyStunMessage(const IceMessage& src) {
Mirko Bonadei317a1f02019-09-17 17:06:18 +0200118 auto dst = std::make_unique<IceMessage>();
jbauchf1f87202016-03-30 06:43:37 -0700119 ByteBufferWriter buf;
Steve Anton11358fe2018-10-09 15:39:19 -0700120 src.Write(&buf);
jbauchf1f87202016-03-30 06:43:37 -0700121 ByteBufferReader read_buf(buf);
122 dst->Read(&read_buf);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000123 return dst;
124}
125
Steve Anton11358fe2018-10-09 15:39:19 -0700126bool WriteStunMessage(const StunMessage& msg, ByteBufferWriter* buf) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000127 buf->Resize(0); // clear out any existing buffer contents
Steve Anton11358fe2018-10-09 15:39:19 -0700128 return msg.Write(buf);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000129}
130
Steve Antonbabf9172017-11-29 10:19:02 -0800131} // namespace
132
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000133// Stub port class for testing STUN generation and processing.
134class TestPort : public Port {
135 public:
pkasting@chromium.org332331f2014-11-06 20:19:22 +0000136 TestPort(rtc::Thread* thread,
137 const std::string& type,
138 rtc::PacketSocketFactory* factory,
139 rtc::Network* network,
Peter Boström0c4e06b2015-10-07 12:23:21 +0200140 uint16_t min_port,
141 uint16_t max_port,
pkasting@chromium.org332331f2014-11-06 20:19:22 +0000142 const std::string& username_fragment,
143 const std::string& password)
Peter Boström0c4e06b2015-10-07 12:23:21 +0200144 : Port(thread,
145 type,
146 factory,
147 network,
Peter Boström0c4e06b2015-10-07 12:23:21 +0200148 min_port,
149 max_port,
150 username_fragment,
151 password) {}
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000152 ~TestPort() {}
153
154 // Expose GetStunMessage so that we can test it.
155 using cricket::Port::GetStunMessage;
156
157 // The last StunMessage that was sent on this Port.
Steve Antonbabf9172017-11-29 10:19:02 -0800158 // TODO(?): Make these const; requires changes to SendXXXXResponse.
Karl Wiberg4b6c2ec2018-10-03 15:17:14 +0200159 rtc::BufferT<uint8_t>* last_stun_buf() { return last_stun_buf_.get(); }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000160 IceMessage* last_stun_msg() { return last_stun_msg_.get(); }
161 int last_stun_error_code() {
162 int code = 0;
163 if (last_stun_msg_) {
164 const StunErrorCodeAttribute* error_attr = last_stun_msg_->GetErrorCode();
165 if (error_attr) {
166 code = error_attr->code();
167 }
168 }
169 return code;
170 }
171
172 virtual void PrepareAddress() {
deadbeef5c3c1042017-08-04 15:01:57 -0700173 // Act as if the socket was bound to the best IP on the network, to the
174 // first port in the allowed range.
175 rtc::SocketAddress addr(Network()->GetBestIP(), min_port());
Guo-wei Shieh3d564c12015-08-19 16:51:15 -0700176 AddAddress(addr, addr, rtc::SocketAddress(), "udp", "", "", Type(),
zhihuang26d99c22017-02-13 12:47:27 -0800177 ICE_TYPE_PREFERENCE_HOST, 0, "", true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000178 }
179
Honghai Zhangf9945b22015-12-15 12:20:13 -0800180 virtual bool SupportsProtocol(const std::string& protocol) const {
181 return true;
182 }
183
Honghai Zhangb9e7b4a2016-06-30 20:52:02 -0700184 virtual ProtocolType GetProtocol() const { return PROTO_UDP; }
185
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000186 // Exposed for testing candidate building.
187 void AddCandidateAddress(const rtc::SocketAddress& addr) {
Guo-wei Shieh3d564c12015-08-19 16:51:15 -0700188 AddAddress(addr, addr, rtc::SocketAddress(), "udp", "", "", Type(),
zhihuang26d99c22017-02-13 12:47:27 -0800189 type_preference_, 0, "", false);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000190 }
191 void AddCandidateAddress(const rtc::SocketAddress& addr,
192 const rtc::SocketAddress& base_address,
193 const std::string& type,
194 int type_preference,
195 bool final) {
Guo-wei Shieh3d564c12015-08-19 16:51:15 -0700196 AddAddress(addr, base_address, rtc::SocketAddress(), "udp", "", "", type,
zhihuang26d99c22017-02-13 12:47:27 -0800197 type_preference, 0, "", final);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000198 }
199
200 virtual Connection* CreateConnection(const Candidate& remote_candidate,
201 CandidateOrigin origin) {
202 Connection* conn = new ProxyConnection(this, 0, remote_candidate);
honghaiz36f50e82016-06-01 15:57:03 -0700203 AddOrReplaceConnection(conn);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000204 // Set use-candidate attribute flag as this will add USE-CANDIDATE attribute
205 // in STUN binding requests.
206 conn->set_use_candidate_attr(true);
207 return conn;
208 }
Yves Gerey665174f2018-06-19 15:03:05 +0200209 virtual int SendTo(const void* data,
210 size_t size,
211 const rtc::SocketAddress& addr,
212 const rtc::PacketOptions& options,
213 bool payload) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000214 if (!payload) {
Mirko Bonadei317a1f02019-09-17 17:06:18 +0200215 auto msg = std::make_unique<IceMessage>();
216 auto buf = std::make_unique<rtc::BufferT<uint8_t>>(
Steve Anton11358fe2018-10-09 15:39:19 -0700217 static_cast<const char*>(data), size);
jbauchf1f87202016-03-30 06:43:37 -0700218 ByteBufferReader read_buf(*buf);
219 if (!msg->Read(&read_buf)) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000220 return -1;
221 }
Steve Anton11358fe2018-10-09 15:39:19 -0700222 last_stun_buf_ = std::move(buf);
223 last_stun_msg_ = std::move(msg);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000224 }
225 return static_cast<int>(size);
226 }
Yves Gerey665174f2018-06-19 15:03:05 +0200227 virtual int SetOption(rtc::Socket::Option opt, int value) { return 0; }
228 virtual int GetOption(rtc::Socket::Option opt, int* value) { return -1; }
229 virtual int GetError() { return 0; }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000230 void Reset() {
231 last_stun_buf_.reset();
232 last_stun_msg_.reset();
233 }
234 void set_type_preference(int type_preference) {
235 type_preference_ = type_preference;
236 }
237
238 private:
Stefan Holmer55674ff2016-01-14 15:49:16 +0100239 void OnSentPacket(rtc::AsyncPacketSocket* socket,
240 const rtc::SentPacket& sent_packet) {
241 PortInterface::SignalSentPacket(sent_packet);
242 }
Karl Wiberg4b6c2ec2018-10-03 15:17:14 +0200243 std::unique_ptr<rtc::BufferT<uint8_t>> last_stun_buf_;
kwiberg3ec46792016-04-27 07:22:53 -0700244 std::unique_ptr<IceMessage> last_stun_msg_;
pbos7640ffa2015-11-30 09:16:59 -0800245 int type_preference_ = 0;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000246};
247
Yves Gerey665174f2018-06-19 15:03:05 +0200248static void SendPingAndReceiveResponse(Connection* lconn,
249 TestPort* lport,
250 Connection* rconn,
251 TestPort* rport,
252 rtc::ScopedFakeClock* clock,
253 int64_t ms) {
hbosbf8d3e52017-02-28 06:34:47 -0800254 lconn->Ping(rtc::TimeMillis());
255 ASSERT_TRUE_WAIT(lport->last_stun_msg(), kDefaultTimeout);
256 ASSERT_TRUE(lport->last_stun_buf());
257 rconn->OnReadPacket(lport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +0100258 lport->last_stun_buf()->size(), /* packet_time_us */ -1);
Danil Chapovalov0c626af2020-02-10 11:16:00 +0100259 clock->AdvanceTime(webrtc::TimeDelta::Millis(ms));
hbosbf8d3e52017-02-28 06:34:47 -0800260 ASSERT_TRUE_WAIT(rport->last_stun_msg(), kDefaultTimeout);
261 ASSERT_TRUE(rport->last_stun_buf());
262 lconn->OnReadPacket(rport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +0100263 rport->last_stun_buf()->size(), /* packet_time_us */ -1);
hbosbf8d3e52017-02-28 06:34:47 -0800264}
265
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000266class TestChannel : public sigslot::has_slots<> {
267 public:
Artem Titov2dbb4c92021-07-26 15:12:41 +0200268 // Takes ownership of `p1` (but not `p2`).
Steve Anton11358fe2018-10-09 15:39:19 -0700269 explicit TestChannel(std::unique_ptr<Port> p1) : port_(std::move(p1)) {
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700270 port_->SignalPortComplete.connect(this, &TestChannel::OnPortComplete);
271 port_->SignalUnknownAddress.connect(this, &TestChannel::OnUnknownAddress);
Lahiru Ginnaliya Gamathige3ba7beb2021-02-01 02:06:11 -0800272 port_->SubscribePortDestroyed(
273 [this](PortInterface* port) { OnSrcPortDestroyed(port); });
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000274 }
275
276 int complete_count() { return complete_count_; }
277 Connection* conn() { return conn_; }
278 const SocketAddress& remote_address() { return remote_address_; }
279 const std::string remote_fragment() { return remote_frag_; }
280
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700281 void Start() { port_->PrepareAddress(); }
282 void CreateConnection(const Candidate& remote_candidate) {
283 conn_ = port_->CreateConnection(remote_candidate, Port::ORIGIN_MESSAGE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000284 IceMode remote_ice_mode =
285 (ice_mode_ == ICEMODE_FULL) ? ICEMODE_LITE : ICEMODE_FULL;
286 conn_->set_remote_ice_mode(remote_ice_mode);
287 conn_->set_use_candidate_attr(remote_ice_mode == ICEMODE_FULL);
Yves Gerey665174f2018-06-19 15:03:05 +0200288 conn_->SignalStateChange.connect(this,
289 &TestChannel::OnConnectionStateChange);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700290 conn_->SignalDestroyed.connect(this, &TestChannel::OnDestroyed);
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700291 conn_->SignalReadyToSend.connect(this,
292 &TestChannel::OnConnectionReadyToSend);
293 connection_ready_to_send_ = false;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000294 }
295 void OnConnectionStateChange(Connection* conn) {
296 if (conn->write_state() == Connection::STATE_WRITABLE) {
297 conn->set_use_candidate_attr(true);
298 nominated_ = true;
299 }
300 }
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700301 void AcceptConnection(const Candidate& remote_candidate) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000302 ASSERT_TRUE(remote_request_.get() != NULL);
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700303 Candidate c = remote_candidate;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000304 c.set_address(remote_address_);
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700305 conn_ = port_->CreateConnection(c, Port::ORIGIN_MESSAGE);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700306 conn_->SignalDestroyed.connect(this, &TestChannel::OnDestroyed);
Jonas Oreland9a52bd72019-12-11 11:35:48 +0100307 conn_->SendStunBindingResponse(remote_request_.get());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000308 remote_request_.reset();
309 }
Yves Gerey665174f2018-06-19 15:03:05 +0200310 void Ping() { Ping(0); }
honghaiz34b11eb2016-03-16 08:55:44 -0700311 void Ping(int64_t now) { conn_->Ping(now); }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000312 void Stop() {
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700313 if (conn_) {
314 conn_->Destroy();
315 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000316 }
317
Yves Gerey665174f2018-06-19 15:03:05 +0200318 void OnPortComplete(Port* port) { complete_count_++; }
319 void SetIceMode(IceMode ice_mode) { ice_mode_ = ice_mode; }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000320
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700321 int SendData(const char* data, size_t len) {
322 rtc::PacketOptions options;
323 return conn_->Send(data, len, options);
324 }
325
Yves Gerey665174f2018-06-19 15:03:05 +0200326 void OnUnknownAddress(PortInterface* port,
327 const SocketAddress& addr,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000328 ProtocolType proto,
Yves Gerey665174f2018-06-19 15:03:05 +0200329 IceMessage* msg,
330 const std::string& rf,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000331 bool /*port_muxed*/) {
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700332 ASSERT_EQ(port_.get(), port);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000333 if (!remote_address_.IsNil()) {
334 ASSERT_EQ(remote_address_, addr);
335 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000336 const cricket::StunUInt32Attribute* priority_attr =
337 msg->GetUInt32(STUN_ATTR_PRIORITY);
338 const cricket::StunByteStringAttribute* mi_attr =
339 msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY);
340 const cricket::StunUInt32Attribute* fingerprint_attr =
341 msg->GetUInt32(STUN_ATTR_FINGERPRINT);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700342 EXPECT_TRUE(priority_attr != NULL);
343 EXPECT_TRUE(mi_attr != NULL);
344 EXPECT_TRUE(fingerprint_attr != NULL);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000345 remote_address_ = addr;
Steve Anton11358fe2018-10-09 15:39:19 -0700346 remote_request_ = CopyStunMessage(*msg);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000347 remote_frag_ = rf;
348 }
349
350 void OnDestroyed(Connection* conn) {
351 ASSERT_EQ(conn_, conn);
Mirko Bonadei675513b2017-11-09 11:09:25 +0100352 RTC_LOG(INFO) << "OnDestroy connection " << conn << " deleted";
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000353 conn_ = NULL;
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700354 // When the connection is destroyed, also clear these fields so future
355 // connections are possible.
356 remote_request_.reset();
357 remote_address_.Clear();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000358 }
359
360 void OnSrcPortDestroyed(PortInterface* port) {
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700361 Port* destroyed_src = port_.release();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000362 ASSERT_EQ(destroyed_src, port);
363 }
364
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700365 Port* port() { return port_.get(); }
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700366
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000367 bool nominated() const { return nominated_; }
368
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700369 void set_connection_ready_to_send(bool ready) {
370 connection_ready_to_send_ = ready;
371 }
Yves Gerey665174f2018-06-19 15:03:05 +0200372 bool connection_ready_to_send() const { return connection_ready_to_send_; }
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700373
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000374 private:
skvladc309e0e2016-07-28 17:15:20 -0700375 // ReadyToSend will only issue after a Connection recovers from ENOTCONN
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700376 void OnConnectionReadyToSend(Connection* conn) {
377 ASSERT_EQ(conn, conn_);
378 connection_ready_to_send_ = true;
379 }
380
Steve Anton11358fe2018-10-09 15:39:19 -0700381 IceMode ice_mode_ = ICEMODE_FULL;
kwiberg3ec46792016-04-27 07:22:53 -0700382 std::unique_ptr<Port> port_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000383
Steve Anton11358fe2018-10-09 15:39:19 -0700384 int complete_count_ = 0;
385 Connection* conn_ = nullptr;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000386 SocketAddress remote_address_;
kwiberg3ec46792016-04-27 07:22:53 -0700387 std::unique_ptr<StunMessage> remote_request_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000388 std::string remote_frag_;
Steve Anton11358fe2018-10-09 15:39:19 -0700389 bool nominated_ = false;
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700390 bool connection_ready_to_send_ = false;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000391};
392
Mirko Bonadei6a489f22019-04-09 15:11:12 +0200393class PortTest : public ::testing::Test, public sigslot::has_slots<> {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000394 public:
395 PortTest()
deadbeef98e186c2017-05-16 18:00:06 -0700396 : ss_(new rtc::VirtualSocketServer()),
nisse7eaa4ea2017-05-08 05:25:41 -0700397 main_(ss_.get()),
Niels Möller9def9942021-09-07 09:16:49 +0200398 socket_factory_(ss_.get()),
deadbeefc5d0d952015-07-16 10:22:21 -0700399 nat_factory1_(ss_.get(), kNatAddr1, SocketAddress()),
400 nat_factory2_(ss_.get(), kNatAddr2, SocketAddress()),
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000401 nat_socket_factory1_(&nat_factory1_),
402 nat_socket_factory2_(&nat_factory2_),
Niels Möller091617d2020-12-02 15:32:08 +0100403 stun_server_(TestStunServer::Create(ss_.get(), kStunAddr)),
nisse7eaa4ea2017-05-08 05:25:41 -0700404 turn_server_(&main_, kTurnUdpIntAddr, kTurnUdpExtAddr),
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000405 username_(rtc::CreateRandomString(ICE_UFRAG_LENGTH)),
406 password_(rtc::CreateRandomString(ICE_PWD_LENGTH)),
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000407 role_conflict_(false),
Yves Gerey665174f2018-06-19 15:03:05 +0200408 ports_destroyed_(0) {}
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000409
410 protected:
Jonas Oreland9a52bd72019-12-11 11:35:48 +0100411 std::string password() { return password_; }
412
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000413 void TestLocalToLocal() {
Steve Anton11358fe2018-10-09 15:39:19 -0700414 auto port1 = CreateUdpPort(kLocalAddr1);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700415 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Steve Anton11358fe2018-10-09 15:39:19 -0700416 auto port2 = CreateUdpPort(kLocalAddr2);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700417 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
Steve Anton11358fe2018-10-09 15:39:19 -0700418 TestConnectivity("udp", std::move(port1), "udp", std::move(port2), true,
419 true, true, true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000420 }
421 void TestLocalToStun(NATType ntype) {
Steve Anton11358fe2018-10-09 15:39:19 -0700422 auto port1 = CreateUdpPort(kLocalAddr1);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700423 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Steve Anton11358fe2018-10-09 15:39:19 -0700424 nat_server2_ = CreateNatServer(kNatAddr2, ntype);
425 auto port2 = CreateStunPort(kLocalAddr2, &nat_socket_factory2_);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700426 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
Steve Anton11358fe2018-10-09 15:39:19 -0700427 TestConnectivity("udp", std::move(port1), StunName(ntype), std::move(port2),
Yves Gerey665174f2018-06-19 15:03:05 +0200428 ntype == NAT_OPEN_CONE, true, ntype != NAT_SYMMETRIC,
429 true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000430 }
Niels Möller191e38f2019-11-04 08:49:12 +0100431 void TestLocalToRelay(ProtocolType proto) {
Steve Anton11358fe2018-10-09 15:39:19 -0700432 auto port1 = CreateUdpPort(kLocalAddr1);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700433 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Niels Möller191e38f2019-11-04 08:49:12 +0100434 auto port2 = CreateRelayPort(kLocalAddr2, proto, PROTO_UDP);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700435 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
Niels Möller191e38f2019-11-04 08:49:12 +0100436 TestConnectivity("udp", std::move(port1), RelayName(proto),
437 std::move(port2), false, true, true, true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000438 }
439 void TestStunToLocal(NATType ntype) {
Steve Anton11358fe2018-10-09 15:39:19 -0700440 nat_server1_ = CreateNatServer(kNatAddr1, ntype);
441 auto port1 = CreateStunPort(kLocalAddr1, &nat_socket_factory1_);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700442 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Steve Anton11358fe2018-10-09 15:39:19 -0700443 auto port2 = CreateUdpPort(kLocalAddr2);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700444 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
Steve Anton11358fe2018-10-09 15:39:19 -0700445 TestConnectivity(StunName(ntype), std::move(port1), "udp", std::move(port2),
446 true, ntype != NAT_SYMMETRIC, true, true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000447 }
448 void TestStunToStun(NATType ntype1, NATType ntype2) {
Steve Anton11358fe2018-10-09 15:39:19 -0700449 nat_server1_ = CreateNatServer(kNatAddr1, ntype1);
450 auto port1 = CreateStunPort(kLocalAddr1, &nat_socket_factory1_);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700451 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Steve Anton11358fe2018-10-09 15:39:19 -0700452 nat_server2_ = CreateNatServer(kNatAddr2, ntype2);
453 auto port2 = CreateStunPort(kLocalAddr2, &nat_socket_factory2_);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700454 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
Steve Anton11358fe2018-10-09 15:39:19 -0700455 TestConnectivity(StunName(ntype1), std::move(port1), StunName(ntype2),
456 std::move(port2), ntype2 == NAT_OPEN_CONE,
457 ntype1 != NAT_SYMMETRIC, ntype2 != NAT_SYMMETRIC,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000458 ntype1 + ntype2 < (NAT_PORT_RESTRICTED + NAT_SYMMETRIC));
459 }
Niels Möller191e38f2019-11-04 08:49:12 +0100460 void TestStunToRelay(NATType ntype, ProtocolType proto) {
Steve Anton11358fe2018-10-09 15:39:19 -0700461 nat_server1_ = CreateNatServer(kNatAddr1, ntype);
462 auto port1 = CreateStunPort(kLocalAddr1, &nat_socket_factory1_);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700463 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Niels Möller191e38f2019-11-04 08:49:12 +0100464 auto port2 = CreateRelayPort(kLocalAddr2, proto, PROTO_UDP);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700465 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
Niels Möller191e38f2019-11-04 08:49:12 +0100466 TestConnectivity(StunName(ntype), std::move(port1), RelayName(proto),
467 std::move(port2), false, ntype != NAT_SYMMETRIC, true,
468 true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000469 }
470 void TestTcpToTcp() {
Steve Anton11358fe2018-10-09 15:39:19 -0700471 auto port1 = CreateTcpPort(kLocalAddr1);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700472 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Steve Anton11358fe2018-10-09 15:39:19 -0700473 auto port2 = CreateTcpPort(kLocalAddr2);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700474 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
Steve Anton11358fe2018-10-09 15:39:19 -0700475 TestConnectivity("tcp", std::move(port1), "tcp", std::move(port2), true,
476 false, true, true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000477 }
Niels Möller191e38f2019-11-04 08:49:12 +0100478 void TestTcpToRelay(ProtocolType proto) {
Steve Anton11358fe2018-10-09 15:39:19 -0700479 auto port1 = CreateTcpPort(kLocalAddr1);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700480 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Niels Möller191e38f2019-11-04 08:49:12 +0100481 auto port2 = CreateRelayPort(kLocalAddr2, proto, PROTO_TCP);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700482 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
Niels Möller191e38f2019-11-04 08:49:12 +0100483 TestConnectivity("tcp", std::move(port1), RelayName(proto),
484 std::move(port2), false, false, true, true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000485 }
Niels Möller191e38f2019-11-04 08:49:12 +0100486 void TestSslTcpToRelay(ProtocolType proto) {
Steve Anton11358fe2018-10-09 15:39:19 -0700487 auto port1 = CreateTcpPort(kLocalAddr1);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700488 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Niels Möller191e38f2019-11-04 08:49:12 +0100489 auto port2 = CreateRelayPort(kLocalAddr2, proto, PROTO_SSLTCP);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700490 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
Niels Möller191e38f2019-11-04 08:49:12 +0100491 TestConnectivity("ssltcp", std::move(port1), RelayName(proto),
492 std::move(port2), false, false, true, true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000493 }
deadbeef5c3c1042017-08-04 15:01:57 -0700494
495 rtc::Network* MakeNetwork(const SocketAddress& addr) {
496 networks_.emplace_back("unittest", "unittest", addr.ipaddr(), 32);
497 networks_.back().AddIP(addr.ipaddr());
498 return &networks_.back();
499 }
500
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000501 // helpers for above functions
Steve Anton11358fe2018-10-09 15:39:19 -0700502 std::unique_ptr<UDPPort> CreateUdpPort(const SocketAddress& addr) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000503 return CreateUdpPort(addr, &socket_factory_);
504 }
Steve Anton11358fe2018-10-09 15:39:19 -0700505 std::unique_ptr<UDPPort> CreateUdpPort(const SocketAddress& addr,
506 PacketSocketFactory* socket_factory) {
Steve Antona8f1e562018-10-10 11:29:44 -0700507 return UDPPort::Create(&main_, socket_factory, MakeNetwork(addr), 0, 0,
508 username_, password_, std::string(), true,
509 absl::nullopt);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000510 }
Steve Anton11358fe2018-10-09 15:39:19 -0700511 std::unique_ptr<TCPPort> CreateTcpPort(const SocketAddress& addr) {
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700512 return CreateTcpPort(addr, &socket_factory_);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000513 }
Steve Anton11358fe2018-10-09 15:39:19 -0700514 std::unique_ptr<TCPPort> CreateTcpPort(const SocketAddress& addr,
515 PacketSocketFactory* socket_factory) {
Steve Antona8f1e562018-10-10 11:29:44 -0700516 return TCPPort::Create(&main_, socket_factory, MakeNetwork(addr), 0, 0,
517 username_, password_, true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000518 }
Steve Anton11358fe2018-10-09 15:39:19 -0700519 std::unique_ptr<StunPort> CreateStunPort(const SocketAddress& addr,
520 rtc::PacketSocketFactory* factory) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000521 ServerAddresses stun_servers;
522 stun_servers.insert(kStunAddr);
Steve Antona8f1e562018-10-10 11:29:44 -0700523 return StunPort::Create(&main_, factory, MakeNetwork(addr), 0, 0, username_,
524 password_, stun_servers, std::string(),
525 absl::nullopt);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000526 }
Steve Anton11358fe2018-10-09 15:39:19 -0700527 std::unique_ptr<Port> CreateRelayPort(const SocketAddress& addr,
Steve Anton11358fe2018-10-09 15:39:19 -0700528 ProtocolType int_proto,
529 ProtocolType ext_proto) {
Niels Möller191e38f2019-11-04 08:49:12 +0100530 return CreateTurnPort(addr, &socket_factory_, int_proto, ext_proto);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000531 }
Steve Anton11358fe2018-10-09 15:39:19 -0700532 std::unique_ptr<TurnPort> CreateTurnPort(const SocketAddress& addr,
533 PacketSocketFactory* socket_factory,
534 ProtocolType int_proto,
535 ProtocolType ext_proto) {
Honghai Zhang80f1db92016-01-27 11:54:45 -0800536 SocketAddress server_addr =
537 int_proto == PROTO_TCP ? kTurnTcpIntAddr : kTurnUdpIntAddr;
538 return CreateTurnPort(addr, socket_factory, int_proto, ext_proto,
539 server_addr);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000540 }
Steve Anton11358fe2018-10-09 15:39:19 -0700541 std::unique_ptr<TurnPort> CreateTurnPort(
542 const SocketAddress& addr,
543 PacketSocketFactory* socket_factory,
544 ProtocolType int_proto,
545 ProtocolType ext_proto,
546 const rtc::SocketAddress& server_addr) {
Steve Antonf7dd9df2018-10-10 15:06:28 -0700547 return TurnPort::Create(&main_, socket_factory, MakeNetwork(addr), 0, 0,
548 username_, password_,
549 ProtocolAddress(server_addr, int_proto),
550 kRelayCredentials, 0, "", {}, {}, nullptr, nullptr);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000551 }
Steve Anton11358fe2018-10-09 15:39:19 -0700552 std::unique_ptr<rtc::NATServer> CreateNatServer(const SocketAddress& addr,
553 rtc::NATType type) {
Mirko Bonadei317a1f02019-09-17 17:06:18 +0200554 return std::make_unique<rtc::NATServer>(type, ss_.get(), addr, addr,
555 ss_.get(), addr);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000556 }
557 static const char* StunName(NATType type) {
558 switch (type) {
hnsl277b2502016-12-13 05:17:23 -0800559 case NAT_OPEN_CONE:
560 return "stun(open cone)";
561 case NAT_ADDR_RESTRICTED:
562 return "stun(addr restricted)";
563 case NAT_PORT_RESTRICTED:
564 return "stun(port restricted)";
565 case NAT_SYMMETRIC:
566 return "stun(symmetric)";
567 default:
568 return "stun(?)";
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000569 }
570 }
Niels Möller191e38f2019-11-04 08:49:12 +0100571 static const char* RelayName(ProtocolType proto) {
572 switch (proto) {
573 case PROTO_UDP:
574 return "turn(udp)";
575 case PROTO_TCP:
576 return "turn(tcp)";
577 case PROTO_SSLTCP:
578 return "turn(ssltcp)";
579 case PROTO_TLS:
580 return "turn(tls)";
581 default:
582 return "turn(?)";
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000583 }
584 }
585
586 void TestCrossFamilyPorts(int type);
587
Peter Thatcherb8b01432015-07-07 16:45:53 -0700588 void ExpectPortsCanConnect(bool can_connect, Port* p1, Port* p2);
589
Artem Titov2dbb4c92021-07-26 15:12:41 +0200590 // This does all the work and then deletes `port1` and `port2`.
Yves Gerey665174f2018-06-19 15:03:05 +0200591 void TestConnectivity(const char* name1,
Steve Anton11358fe2018-10-09 15:39:19 -0700592 std::unique_ptr<Port> port1,
Yves Gerey665174f2018-06-19 15:03:05 +0200593 const char* name2,
Steve Anton11358fe2018-10-09 15:39:19 -0700594 std::unique_ptr<Port> port2,
Yves Gerey665174f2018-06-19 15:03:05 +0200595 bool accept,
596 bool same_addr1,
597 bool same_addr2,
598 bool possible);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000599
Artem Titov2dbb4c92021-07-26 15:12:41 +0200600 // This connects the provided channels which have already started. `ch1`
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700601 // should have its Connection created (either through CreateConnection() or
602 // TCP reconnecting mechanism before entering this function.
603 void ConnectStartedChannels(TestChannel* ch1, TestChannel* ch2) {
604 ASSERT_TRUE(ch1->conn());
Honghai Zhang161a5862016-10-20 11:47:02 -0700605 EXPECT_TRUE_WAIT(ch1->conn()->connected(),
606 kDefaultTimeout); // for TCP connect
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700607 ch1->Ping();
Honghai Zhang161a5862016-10-20 11:47:02 -0700608 WAIT(!ch2->remote_address().IsNil(), kShortTimeout);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700609
610 // Send a ping from dst to src.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700611 ch2->AcceptConnection(GetCandidate(ch1->port()));
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700612 ch2->Ping();
613 EXPECT_EQ_WAIT(Connection::STATE_WRITABLE, ch2->conn()->write_state(),
Honghai Zhang161a5862016-10-20 11:47:02 -0700614 kDefaultTimeout);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700615 }
616
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000617 // This connects and disconnects the provided channels in the same sequence as
Artem Titov2dbb4c92021-07-26 15:12:41 +0200618 // TestConnectivity with all options set to `true`. It does not delete either
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000619 // channel.
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700620 void StartConnectAndStopChannels(TestChannel* ch1, TestChannel* ch2) {
621 // Acquire addresses.
622 ch1->Start();
623 ch2->Start();
624
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700625 ch1->CreateConnection(GetCandidate(ch2->port()));
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700626 ConnectStartedChannels(ch1, ch2);
627
628 // Destroy the connections.
629 ch1->Stop();
630 ch2->Stop();
631 }
632
633 // This disconnects both end's Connection and make sure ch2 ready for new
634 // connection.
635 void DisconnectTcpTestChannels(TestChannel* ch1, TestChannel* ch2) {
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700636 TCPConnection* tcp_conn1 = static_cast<TCPConnection*>(ch1->conn());
637 TCPConnection* tcp_conn2 = static_cast<TCPConnection*>(ch2->conn());
638 ASSERT_TRUE(
639 ss_->CloseTcpConnections(tcp_conn1->socket()->GetLocalAddress(),
640 tcp_conn2->socket()->GetLocalAddress()));
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700641
642 // Wait for both OnClose are delivered.
Honghai Zhang161a5862016-10-20 11:47:02 -0700643 EXPECT_TRUE_WAIT(!ch1->conn()->connected(), kDefaultTimeout);
644 EXPECT_TRUE_WAIT(!ch2->conn()->connected(), kDefaultTimeout);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700645
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700646 // Ensure redundant SignalClose events on TcpConnection won't break tcp
647 // reconnection. Chromium will fire SignalClose for all outstanding IPC
648 // packets during reconnection.
649 tcp_conn1->socket()->SignalClose(tcp_conn1->socket(), 0);
650 tcp_conn2->socket()->SignalClose(tcp_conn2->socket(), 0);
651
652 // Speed up destroying ch2's connection such that the test is ready to
653 // accept a new connection from ch1 before ch1's connection destroys itself.
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700654 ch2->conn()->Destroy();
Honghai Zhang161a5862016-10-20 11:47:02 -0700655 EXPECT_TRUE_WAIT(ch2->conn() == NULL, kDefaultTimeout);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700656 }
657
658 void TestTcpReconnect(bool ping_after_disconnected,
659 bool send_after_disconnected) {
Steve Anton11358fe2018-10-09 15:39:19 -0700660 auto port1 = CreateTcpPort(kLocalAddr1);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700661 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Steve Anton11358fe2018-10-09 15:39:19 -0700662 auto port2 = CreateTcpPort(kLocalAddr2);
Peter Thatcher7cbd1882015-09-17 18:54:52 -0700663 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700664
665 port1->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
666 port2->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
667
668 // Set up channels and ensure both ports will be deleted.
Steve Anton11358fe2018-10-09 15:39:19 -0700669 TestChannel ch1(std::move(port1));
670 TestChannel ch2(std::move(port2));
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700671 EXPECT_EQ(0, ch1.complete_count());
672 EXPECT_EQ(0, ch2.complete_count());
673
674 ch1.Start();
675 ch2.Start();
Honghai Zhang161a5862016-10-20 11:47:02 -0700676 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
677 ASSERT_EQ_WAIT(1, ch2.complete_count(), kDefaultTimeout);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700678
679 // Initial connecting the channel, create connection on channel1.
Steve Anton11358fe2018-10-09 15:39:19 -0700680 ch1.CreateConnection(GetCandidate(ch2.port()));
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700681 ConnectStartedChannels(&ch1, &ch2);
682
683 // Shorten the timeout period.
Honghai Zhang161a5862016-10-20 11:47:02 -0700684 const int kTcpReconnectTimeout = kDefaultTimeout;
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700685 static_cast<TCPConnection*>(ch1.conn())
686 ->set_reconnection_timeout(kTcpReconnectTimeout);
687 static_cast<TCPConnection*>(ch2.conn())
688 ->set_reconnection_timeout(kTcpReconnectTimeout);
689
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700690 EXPECT_FALSE(ch1.connection_ready_to_send());
691 EXPECT_FALSE(ch2.connection_ready_to_send());
692
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700693 // Once connected, disconnect them.
694 DisconnectTcpTestChannels(&ch1, &ch2);
695
696 if (send_after_disconnected || ping_after_disconnected) {
697 if (send_after_disconnected) {
698 // First SendData after disconnect should fail but will trigger
699 // reconnect.
700 EXPECT_EQ(-1, ch1.SendData(data, static_cast<int>(strlen(data))));
701 }
702
703 if (ping_after_disconnected) {
704 // Ping should trigger reconnect.
705 ch1.Ping();
706 }
707
708 // Wait for channel's outgoing TCPConnection connected.
Honghai Zhang161a5862016-10-20 11:47:02 -0700709 EXPECT_TRUE_WAIT(ch1.conn()->connected(), kDefaultTimeout);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700710
711 // Verify that we could still connect channels.
712 ConnectStartedChannels(&ch1, &ch2);
Yves Gerey665174f2018-06-19 15:03:05 +0200713 EXPECT_TRUE_WAIT(ch1.connection_ready_to_send(), kTcpReconnectTimeout);
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700714 // Channel2 is the passive one so a new connection is created during
skvladc309e0e2016-07-28 17:15:20 -0700715 // reconnect. This new connection should never have issued ENOTCONN
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700716 // hence the connection_ready_to_send() should be false.
717 EXPECT_FALSE(ch2.connection_ready_to_send());
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700718 } else {
719 EXPECT_EQ(ch1.conn()->write_state(), Connection::STATE_WRITABLE);
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700720 // Since the reconnection never happens, the connections should have been
721 // destroyed after the timeout.
Honghai Zhang161a5862016-10-20 11:47:02 -0700722 EXPECT_TRUE_WAIT(!ch1.conn(), kTcpReconnectTimeout + kDefaultTimeout);
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700723 EXPECT_TRUE(!ch2.conn());
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700724 }
725
726 // Tear down and ensure that goes smoothly.
727 ch1.Stop();
728 ch2.Stop();
Honghai Zhang161a5862016-10-20 11:47:02 -0700729 EXPECT_TRUE_WAIT(ch1.conn() == NULL, kDefaultTimeout);
730 EXPECT_TRUE_WAIT(ch2.conn() == NULL, kDefaultTimeout);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700731 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000732
Steve Anton11358fe2018-10-09 15:39:19 -0700733 std::unique_ptr<IceMessage> CreateStunMessage(int type) {
Mirko Bonadei317a1f02019-09-17 17:06:18 +0200734 auto msg = std::make_unique<IceMessage>();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000735 msg->SetType(type);
736 msg->SetTransactionID("TESTTESTTEST");
737 return msg;
738 }
Steve Anton11358fe2018-10-09 15:39:19 -0700739 std::unique_ptr<IceMessage> CreateStunMessageWithUsername(
740 int type,
741 const std::string& username) {
742 std::unique_ptr<IceMessage> msg = CreateStunMessage(type);
Mirko Bonadei317a1f02019-09-17 17:06:18 +0200743 msg->AddAttribute(std::make_unique<StunByteStringAttribute>(
Karl Wiberg918f50c2018-07-05 11:40:33 +0200744 STUN_ATTR_USERNAME, username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000745 return msg;
746 }
Steve Anton11358fe2018-10-09 15:39:19 -0700747 std::unique_ptr<TestPort> CreateTestPort(const rtc::SocketAddress& addr,
748 const std::string& username,
749 const std::string& password) {
Mirko Bonadei317a1f02019-09-17 17:06:18 +0200750 auto port =
751 std::make_unique<TestPort>(&main_, "test", &socket_factory_,
752 MakeNetwork(addr), 0, 0, username, password);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000753 port->SignalRoleConflict.connect(this, &PortTest::OnRoleConflict);
754 return port;
755 }
Steve Anton11358fe2018-10-09 15:39:19 -0700756 std::unique_ptr<TestPort> CreateTestPort(const rtc::SocketAddress& addr,
757 const std::string& username,
758 const std::string& password,
759 cricket::IceRole role,
760 int tiebreaker) {
761 auto port = CreateTestPort(addr, username, password);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000762 port->SetIceRole(role);
763 port->SetIceTiebreaker(tiebreaker);
764 return port;
765 }
deadbeef5c3c1042017-08-04 15:01:57 -0700766 // Overload to create a test port given an rtc::Network directly.
Steve Anton11358fe2018-10-09 15:39:19 -0700767 std::unique_ptr<TestPort> CreateTestPort(rtc::Network* network,
768 const std::string& username,
769 const std::string& password) {
Mirko Bonadei317a1f02019-09-17 17:06:18 +0200770 auto port = std::make_unique<TestPort>(&main_, "test", &socket_factory_,
771 network, 0, 0, username, password);
deadbeef5c3c1042017-08-04 15:01:57 -0700772 port->SignalRoleConflict.connect(this, &PortTest::OnRoleConflict);
773 return port;
774 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000775
Yves Gerey665174f2018-06-19 15:03:05 +0200776 void OnRoleConflict(PortInterface* port) { role_conflict_ = true; }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000777 bool role_conflict() const { return role_conflict_; }
778
779 void ConnectToSignalDestroyed(PortInterface* port) {
Lahiru Ginnaliya Gamathigec3a486c2021-02-09 00:31:39 -0800780 port->SubscribePortDestroyed(
781 [this](PortInterface* port) { OnDestroyed(port); });
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000782 }
783
Honghai Zhanga74363c2016-07-28 18:06:15 -0700784 void OnDestroyed(PortInterface* port) { ++ports_destroyed_; }
785 int ports_destroyed() const { return ports_destroyed_; }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000786
787 rtc::BasicPacketSocketFactory* nat_socket_factory1() {
788 return &nat_socket_factory1_;
789 }
790
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700791 rtc::VirtualSocketServer* vss() { return ss_.get(); }
792
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000793 private:
deadbeef5c3c1042017-08-04 15:01:57 -0700794 // When a "create port" helper method is called with an IP, we create a
795 // Network with that IP and add it to this list. Using a list instead of a
796 // vector so that when it grows, pointers aren't invalidated.
797 std::list<rtc::Network> networks_;
kwiberg3ec46792016-04-27 07:22:53 -0700798 std::unique_ptr<rtc::VirtualSocketServer> ss_;
nisse7eaa4ea2017-05-08 05:25:41 -0700799 rtc::AutoSocketServerThread main_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000800 rtc::BasicPacketSocketFactory socket_factory_;
kwiberg3ec46792016-04-27 07:22:53 -0700801 std::unique_ptr<rtc::NATServer> nat_server1_;
802 std::unique_ptr<rtc::NATServer> nat_server2_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000803 rtc::NATSocketFactory nat_factory1_;
804 rtc::NATSocketFactory nat_factory2_;
805 rtc::BasicPacketSocketFactory nat_socket_factory1_;
806 rtc::BasicPacketSocketFactory nat_socket_factory2_;
kwiberg3ec46792016-04-27 07:22:53 -0700807 std::unique_ptr<TestStunServer> stun_server_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000808 TestTurnServer turn_server_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000809 std::string username_;
810 std::string password_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000811 bool role_conflict_;
Honghai Zhanga74363c2016-07-28 18:06:15 -0700812 int ports_destroyed_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000813};
814
Yves Gerey665174f2018-06-19 15:03:05 +0200815void PortTest::TestConnectivity(const char* name1,
Steve Anton11358fe2018-10-09 15:39:19 -0700816 std::unique_ptr<Port> port1,
Yves Gerey665174f2018-06-19 15:03:05 +0200817 const char* name2,
Steve Anton11358fe2018-10-09 15:39:19 -0700818 std::unique_ptr<Port> port2,
Yves Gerey665174f2018-06-19 15:03:05 +0200819 bool accept,
820 bool same_addr1,
821 bool same_addr2,
822 bool possible) {
Honghai Zhang161a5862016-10-20 11:47:02 -0700823 rtc::ScopedFakeClock clock;
Mirko Bonadei675513b2017-11-09 11:09:25 +0100824 RTC_LOG(LS_INFO) << "Test: " << name1 << " to " << name2 << ": ";
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000825 port1->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
826 port2->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
827
828 // Set up channels and ensure both ports will be deleted.
Steve Anton11358fe2018-10-09 15:39:19 -0700829 TestChannel ch1(std::move(port1));
830 TestChannel ch2(std::move(port2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000831 EXPECT_EQ(0, ch1.complete_count());
832 EXPECT_EQ(0, ch2.complete_count());
833
834 // Acquire addresses.
835 ch1.Start();
836 ch2.Start();
Honghai Zhang161a5862016-10-20 11:47:02 -0700837 ASSERT_EQ_SIMULATED_WAIT(1, ch1.complete_count(), kDefaultTimeout, clock);
838 ASSERT_EQ_SIMULATED_WAIT(1, ch2.complete_count(), kDefaultTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000839
840 // Send a ping from src to dst. This may or may not make it.
Steve Anton11358fe2018-10-09 15:39:19 -0700841 ch1.CreateConnection(GetCandidate(ch2.port()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000842 ASSERT_TRUE(ch1.conn() != NULL);
Honghai Zhang161a5862016-10-20 11:47:02 -0700843 EXPECT_TRUE_SIMULATED_WAIT(ch1.conn()->connected(), kDefaultTimeout,
844 clock); // for TCP connect
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000845 ch1.Ping();
Honghai Zhang161a5862016-10-20 11:47:02 -0700846 SIMULATED_WAIT(!ch2.remote_address().IsNil(), kShortTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000847
848 if (accept) {
849 // We are able to send a ping from src to dst. This is the case when
850 // sending to UDP ports and cone NATs.
851 EXPECT_TRUE(ch1.remote_address().IsNil());
Steve Anton11358fe2018-10-09 15:39:19 -0700852 EXPECT_EQ(ch2.remote_fragment(), ch1.port()->username_fragment());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000853
854 // Ensure the ping came from the same address used for src.
855 // This is the case unless the source NAT was symmetric.
Yves Gerey665174f2018-06-19 15:03:05 +0200856 if (same_addr1)
Steve Anton11358fe2018-10-09 15:39:19 -0700857 EXPECT_EQ(ch2.remote_address(), GetAddress(ch1.port()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000858 EXPECT_TRUE(same_addr2);
859
860 // Send a ping from dst to src.
Steve Anton11358fe2018-10-09 15:39:19 -0700861 ch2.AcceptConnection(GetCandidate(ch1.port()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000862 ASSERT_TRUE(ch2.conn() != NULL);
863 ch2.Ping();
Honghai Zhang161a5862016-10-20 11:47:02 -0700864 EXPECT_EQ_SIMULATED_WAIT(Connection::STATE_WRITABLE,
865 ch2.conn()->write_state(), kDefaultTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000866 } else {
867 // We can't send a ping from src to dst, so flip it around. This will happen
868 // when the destination NAT is addr/port restricted or symmetric.
869 EXPECT_TRUE(ch1.remote_address().IsNil());
870 EXPECT_TRUE(ch2.remote_address().IsNil());
871
872 // Send a ping from dst to src. Again, this may or may not make it.
Steve Anton11358fe2018-10-09 15:39:19 -0700873 ch2.CreateConnection(GetCandidate(ch1.port()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000874 ASSERT_TRUE(ch2.conn() != NULL);
875 ch2.Ping();
Honghai Zhang161a5862016-10-20 11:47:02 -0700876 SIMULATED_WAIT(ch2.conn()->write_state() == Connection::STATE_WRITABLE,
877 kShortTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000878
879 if (same_addr1 && same_addr2) {
880 // The new ping got back to the source.
Peter Thatcher04ac81f2015-09-21 11:48:28 -0700881 EXPECT_TRUE(ch1.conn()->receiving());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000882 EXPECT_EQ(Connection::STATE_WRITABLE, ch2.conn()->write_state());
883
884 // First connection may not be writable if the first ping did not get
885 // through. So we will have to do another.
886 if (ch1.conn()->write_state() == Connection::STATE_WRITE_INIT) {
887 ch1.Ping();
Honghai Zhang161a5862016-10-20 11:47:02 -0700888 EXPECT_EQ_SIMULATED_WAIT(Connection::STATE_WRITABLE,
889 ch1.conn()->write_state(), kDefaultTimeout,
890 clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000891 }
892 } else if (!same_addr1 && possible) {
893 // The new ping went to the candidate address, but that address was bad.
894 // This will happen when the source NAT is symmetric.
895 EXPECT_TRUE(ch1.remote_address().IsNil());
896 EXPECT_TRUE(ch2.remote_address().IsNil());
897
898 // However, since we have now sent a ping to the source IP, we should be
899 // able to get a ping from it. This gives us the real source address.
900 ch1.Ping();
Honghai Zhang161a5862016-10-20 11:47:02 -0700901 EXPECT_TRUE_SIMULATED_WAIT(!ch2.remote_address().IsNil(), kDefaultTimeout,
902 clock);
Peter Thatcher04ac81f2015-09-21 11:48:28 -0700903 EXPECT_FALSE(ch2.conn()->receiving());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000904 EXPECT_TRUE(ch1.remote_address().IsNil());
905
906 // Pick up the actual address and establish the connection.
Steve Anton11358fe2018-10-09 15:39:19 -0700907 ch2.AcceptConnection(GetCandidate(ch1.port()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000908 ASSERT_TRUE(ch2.conn() != NULL);
909 ch2.Ping();
Honghai Zhang161a5862016-10-20 11:47:02 -0700910 EXPECT_EQ_SIMULATED_WAIT(Connection::STATE_WRITABLE,
911 ch2.conn()->write_state(), kDefaultTimeout,
912 clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000913 } else if (!same_addr2 && possible) {
914 // The new ping came in, but from an unexpected address. This will happen
915 // when the destination NAT is symmetric.
916 EXPECT_FALSE(ch1.remote_address().IsNil());
Peter Thatcher04ac81f2015-09-21 11:48:28 -0700917 EXPECT_FALSE(ch1.conn()->receiving());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000918
919 // Update our address and complete the connection.
Steve Anton11358fe2018-10-09 15:39:19 -0700920 ch1.AcceptConnection(GetCandidate(ch2.port()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000921 ch1.Ping();
Honghai Zhang161a5862016-10-20 11:47:02 -0700922 EXPECT_EQ_SIMULATED_WAIT(Connection::STATE_WRITABLE,
923 ch1.conn()->write_state(), kDefaultTimeout,
924 clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000925 } else { // (!possible)
926 // There should be s no way for the pings to reach each other. Check it.
927 EXPECT_TRUE(ch1.remote_address().IsNil());
928 EXPECT_TRUE(ch2.remote_address().IsNil());
929 ch1.Ping();
Honghai Zhang161a5862016-10-20 11:47:02 -0700930 SIMULATED_WAIT(!ch2.remote_address().IsNil(), kShortTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000931 EXPECT_TRUE(ch1.remote_address().IsNil());
932 EXPECT_TRUE(ch2.remote_address().IsNil());
933 }
934 }
935
936 // Everything should be good, unless we know the situation is impossible.
937 ASSERT_TRUE(ch1.conn() != NULL);
938 ASSERT_TRUE(ch2.conn() != NULL);
939 if (possible) {
Peter Thatcher04ac81f2015-09-21 11:48:28 -0700940 EXPECT_TRUE(ch1.conn()->receiving());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000941 EXPECT_EQ(Connection::STATE_WRITABLE, ch1.conn()->write_state());
Peter Thatcher04ac81f2015-09-21 11:48:28 -0700942 EXPECT_TRUE(ch2.conn()->receiving());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000943 EXPECT_EQ(Connection::STATE_WRITABLE, ch2.conn()->write_state());
944 } else {
Peter Thatcher04ac81f2015-09-21 11:48:28 -0700945 EXPECT_FALSE(ch1.conn()->receiving());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000946 EXPECT_NE(Connection::STATE_WRITABLE, ch1.conn()->write_state());
Peter Thatcher04ac81f2015-09-21 11:48:28 -0700947 EXPECT_FALSE(ch2.conn()->receiving());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000948 EXPECT_NE(Connection::STATE_WRITABLE, ch2.conn()->write_state());
949 }
950
951 // Tear down and ensure that goes smoothly.
952 ch1.Stop();
953 ch2.Stop();
Honghai Zhang161a5862016-10-20 11:47:02 -0700954 EXPECT_TRUE_SIMULATED_WAIT(ch1.conn() == NULL, kDefaultTimeout, clock);
955 EXPECT_TRUE_SIMULATED_WAIT(ch2.conn() == NULL, kDefaultTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000956}
957
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000958class FakePacketSocketFactory : public rtc::PacketSocketFactory {
959 public:
960 FakePacketSocketFactory()
Jonas Oreland7a284e12020-01-28 09:21:54 +0100961 : next_udp_socket_(NULL), next_server_tcp_socket_(NULL) {}
Yves Gerey665174f2018-06-19 15:03:05 +0200962 ~FakePacketSocketFactory() override {}
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000963
pkasting@chromium.org332331f2014-11-06 20:19:22 +0000964 AsyncPacketSocket* CreateUdpSocket(const SocketAddress& address,
Peter Boström0c4e06b2015-10-07 12:23:21 +0200965 uint16_t min_port,
966 uint16_t max_port) override {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000967 EXPECT_TRUE(next_udp_socket_ != NULL);
968 AsyncPacketSocket* result = next_udp_socket_;
969 next_udp_socket_ = NULL;
970 return result;
971 }
972
pkasting@chromium.org332331f2014-11-06 20:19:22 +0000973 AsyncPacketSocket* CreateServerTcpSocket(const SocketAddress& local_address,
Peter Boström0c4e06b2015-10-07 12:23:21 +0200974 uint16_t min_port,
975 uint16_t max_port,
pkasting@chromium.org332331f2014-11-06 20:19:22 +0000976 int opts) override {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000977 EXPECT_TRUE(next_server_tcp_socket_ != NULL);
978 AsyncPacketSocket* result = next_server_tcp_socket_;
979 next_server_tcp_socket_ = NULL;
980 return result;
981 }
982
Patrik Höglund662e31f2019-09-05 14:35:04 +0200983 AsyncPacketSocket* CreateClientTcpSocket(
984 const SocketAddress& local_address,
985 const SocketAddress& remote_address,
986 const rtc::ProxyInfo& proxy_info,
987 const std::string& user_agent,
988 const rtc::PacketSocketTcpOptions& opts) override {
Jonas Oreland7a284e12020-01-28 09:21:54 +0100989 EXPECT_TRUE(next_client_tcp_socket_.has_value());
990 AsyncPacketSocket* result = *next_client_tcp_socket_;
991 next_client_tcp_socket_ = nullptr;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000992 return result;
993 }
994
995 void set_next_udp_socket(AsyncPacketSocket* next_udp_socket) {
996 next_udp_socket_ = next_udp_socket;
997 }
998 void set_next_server_tcp_socket(AsyncPacketSocket* next_server_tcp_socket) {
999 next_server_tcp_socket_ = next_server_tcp_socket;
1000 }
1001 void set_next_client_tcp_socket(AsyncPacketSocket* next_client_tcp_socket) {
1002 next_client_tcp_socket_ = next_client_tcp_socket;
1003 }
Yves Gerey665174f2018-06-19 15:03:05 +02001004 rtc::AsyncResolverInterface* CreateAsyncResolver() override { return NULL; }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001005
1006 private:
1007 AsyncPacketSocket* next_udp_socket_;
1008 AsyncPacketSocket* next_server_tcp_socket_;
Jonas Oreland7a284e12020-01-28 09:21:54 +01001009 absl::optional<AsyncPacketSocket*> next_client_tcp_socket_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001010};
1011
1012class FakeAsyncPacketSocket : public AsyncPacketSocket {
1013 public:
1014 // Returns current local address. Address may be set to NULL if the
1015 // socket is not bound yet (GetState() returns STATE_BINDING).
Jonas Oreland7a284e12020-01-28 09:21:54 +01001016 virtual SocketAddress GetLocalAddress() const { return local_address_; }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001017
1018 // Returns remote address. Returns zeroes if this is not a client TCP socket.
Jonas Oreland7a284e12020-01-28 09:21:54 +01001019 virtual SocketAddress GetRemoteAddress() const { return remote_address_; }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001020
1021 // Send a packet.
Yves Gerey665174f2018-06-19 15:03:05 +02001022 virtual int Send(const void* pv,
1023 size_t cb,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001024 const rtc::PacketOptions& options) {
Jonas Oreland7a284e12020-01-28 09:21:54 +01001025 if (error_ == 0) {
1026 return static_cast<int>(cb);
1027 } else {
1028 return -1;
1029 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001030 }
Yves Gerey665174f2018-06-19 15:03:05 +02001031 virtual int SendTo(const void* pv,
1032 size_t cb,
1033 const SocketAddress& addr,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001034 const rtc::PacketOptions& options) {
Jonas Oreland7a284e12020-01-28 09:21:54 +01001035 if (error_ == 0) {
1036 return static_cast<int>(cb);
1037 } else {
1038 return -1;
1039 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001040 }
Yves Gerey665174f2018-06-19 15:03:05 +02001041 virtual int Close() { return 0; }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001042
1043 virtual State GetState() const { return state_; }
1044 virtual int GetOption(Socket::Option opt, int* value) { return 0; }
1045 virtual int SetOption(Socket::Option opt, int value) { return 0; }
1046 virtual int GetError() const { return 0; }
Jonas Oreland7a284e12020-01-28 09:21:54 +01001047 virtual void SetError(int error) { error_ = error; }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001048
1049 void set_state(State state) { state_ = state; }
1050
Jonas Oreland7a284e12020-01-28 09:21:54 +01001051 SocketAddress local_address_;
1052 SocketAddress remote_address_;
1053
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001054 private:
Jonas Oreland7a284e12020-01-28 09:21:54 +01001055 int error_ = 0;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001056 State state_;
1057};
1058
1059// Local -> XXXX
1060TEST_F(PortTest, TestLocalToLocal) {
1061 TestLocalToLocal();
1062}
1063
1064TEST_F(PortTest, TestLocalToConeNat) {
1065 TestLocalToStun(NAT_OPEN_CONE);
1066}
1067
1068TEST_F(PortTest, TestLocalToARNat) {
1069 TestLocalToStun(NAT_ADDR_RESTRICTED);
1070}
1071
1072TEST_F(PortTest, TestLocalToPRNat) {
1073 TestLocalToStun(NAT_PORT_RESTRICTED);
1074}
1075
1076TEST_F(PortTest, TestLocalToSymNat) {
1077 TestLocalToStun(NAT_SYMMETRIC);
1078}
1079
1080// Flaky: https://code.google.com/p/webrtc/issues/detail?id=3316.
1081TEST_F(PortTest, DISABLED_TestLocalToTurn) {
Niels Möller191e38f2019-11-04 08:49:12 +01001082 TestLocalToRelay(PROTO_UDP);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001083}
1084
1085// Cone NAT -> XXXX
1086TEST_F(PortTest, TestConeNatToLocal) {
1087 TestStunToLocal(NAT_OPEN_CONE);
1088}
1089
1090TEST_F(PortTest, TestConeNatToConeNat) {
1091 TestStunToStun(NAT_OPEN_CONE, NAT_OPEN_CONE);
1092}
1093
1094TEST_F(PortTest, TestConeNatToARNat) {
1095 TestStunToStun(NAT_OPEN_CONE, NAT_ADDR_RESTRICTED);
1096}
1097
1098TEST_F(PortTest, TestConeNatToPRNat) {
1099 TestStunToStun(NAT_OPEN_CONE, NAT_PORT_RESTRICTED);
1100}
1101
1102TEST_F(PortTest, TestConeNatToSymNat) {
1103 TestStunToStun(NAT_OPEN_CONE, NAT_SYMMETRIC);
1104}
1105
1106TEST_F(PortTest, TestConeNatToTurn) {
Niels Möller191e38f2019-11-04 08:49:12 +01001107 TestStunToRelay(NAT_OPEN_CONE, PROTO_UDP);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001108}
1109
1110// Address-restricted NAT -> XXXX
1111TEST_F(PortTest, TestARNatToLocal) {
1112 TestStunToLocal(NAT_ADDR_RESTRICTED);
1113}
1114
1115TEST_F(PortTest, TestARNatToConeNat) {
1116 TestStunToStun(NAT_ADDR_RESTRICTED, NAT_OPEN_CONE);
1117}
1118
1119TEST_F(PortTest, TestARNatToARNat) {
1120 TestStunToStun(NAT_ADDR_RESTRICTED, NAT_ADDR_RESTRICTED);
1121}
1122
1123TEST_F(PortTest, TestARNatToPRNat) {
1124 TestStunToStun(NAT_ADDR_RESTRICTED, NAT_PORT_RESTRICTED);
1125}
1126
1127TEST_F(PortTest, TestARNatToSymNat) {
1128 TestStunToStun(NAT_ADDR_RESTRICTED, NAT_SYMMETRIC);
1129}
1130
1131TEST_F(PortTest, TestARNatToTurn) {
Niels Möller191e38f2019-11-04 08:49:12 +01001132 TestStunToRelay(NAT_ADDR_RESTRICTED, PROTO_UDP);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001133}
1134
1135// Port-restricted NAT -> XXXX
1136TEST_F(PortTest, TestPRNatToLocal) {
1137 TestStunToLocal(NAT_PORT_RESTRICTED);
1138}
1139
1140TEST_F(PortTest, TestPRNatToConeNat) {
1141 TestStunToStun(NAT_PORT_RESTRICTED, NAT_OPEN_CONE);
1142}
1143
1144TEST_F(PortTest, TestPRNatToARNat) {
1145 TestStunToStun(NAT_PORT_RESTRICTED, NAT_ADDR_RESTRICTED);
1146}
1147
1148TEST_F(PortTest, TestPRNatToPRNat) {
1149 TestStunToStun(NAT_PORT_RESTRICTED, NAT_PORT_RESTRICTED);
1150}
1151
1152TEST_F(PortTest, TestPRNatToSymNat) {
1153 // Will "fail"
1154 TestStunToStun(NAT_PORT_RESTRICTED, NAT_SYMMETRIC);
1155}
1156
1157TEST_F(PortTest, TestPRNatToTurn) {
Niels Möller191e38f2019-11-04 08:49:12 +01001158 TestStunToRelay(NAT_PORT_RESTRICTED, PROTO_UDP);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001159}
1160
1161// Symmetric NAT -> XXXX
1162TEST_F(PortTest, TestSymNatToLocal) {
1163 TestStunToLocal(NAT_SYMMETRIC);
1164}
1165
1166TEST_F(PortTest, TestSymNatToConeNat) {
1167 TestStunToStun(NAT_SYMMETRIC, NAT_OPEN_CONE);
1168}
1169
1170TEST_F(PortTest, TestSymNatToARNat) {
1171 TestStunToStun(NAT_SYMMETRIC, NAT_ADDR_RESTRICTED);
1172}
1173
1174TEST_F(PortTest, TestSymNatToPRNat) {
1175 // Will "fail"
1176 TestStunToStun(NAT_SYMMETRIC, NAT_PORT_RESTRICTED);
1177}
1178
1179TEST_F(PortTest, TestSymNatToSymNat) {
1180 // Will "fail"
1181 TestStunToStun(NAT_SYMMETRIC, NAT_SYMMETRIC);
1182}
1183
1184TEST_F(PortTest, TestSymNatToTurn) {
Niels Möller191e38f2019-11-04 08:49:12 +01001185 TestStunToRelay(NAT_SYMMETRIC, PROTO_UDP);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001186}
1187
1188// Outbound TCP -> XXXX
1189TEST_F(PortTest, TestTcpToTcp) {
1190 TestTcpToTcp();
1191}
1192
Guo-wei Shiehbe508a12015-04-06 12:48:47 -07001193TEST_F(PortTest, TestTcpReconnectOnSendPacket) {
1194 TestTcpReconnect(false /* ping */, true /* send */);
1195}
1196
1197TEST_F(PortTest, TestTcpReconnectOnPing) {
1198 TestTcpReconnect(true /* ping */, false /* send */);
1199}
1200
1201TEST_F(PortTest, TestTcpReconnectTimeout) {
1202 TestTcpReconnect(false /* ping */, false /* send */);
1203}
1204
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07001205// Test when TcpConnection never connects, the OnClose() will be called to
1206// destroy the connection.
1207TEST_F(PortTest, TestTcpNeverConnect) {
Steve Anton11358fe2018-10-09 15:39:19 -07001208 auto port1 = CreateTcpPort(kLocalAddr1);
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07001209 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
1210 port1->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
1211
1212 // Set up a channel and ensure the port will be deleted.
Steve Anton11358fe2018-10-09 15:39:19 -07001213 TestChannel ch1(std::move(port1));
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07001214 EXPECT_EQ(0, ch1.complete_count());
1215
1216 ch1.Start();
Honghai Zhang161a5862016-10-20 11:47:02 -07001217 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07001218
Niels Möllerd0b88792021-08-12 10:32:30 +02001219 std::unique_ptr<rtc::Socket> server(
1220 vss()->CreateSocket(kLocalAddr2.family(), SOCK_STREAM));
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07001221 // Bind but not listen.
1222 EXPECT_EQ(0, server->Bind(kLocalAddr2));
1223
Steve Anton11358fe2018-10-09 15:39:19 -07001224 Candidate c = GetCandidate(ch1.port());
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07001225 c.set_address(server->GetLocalAddress());
1226
1227 ch1.CreateConnection(c);
1228 EXPECT_TRUE(ch1.conn());
Honghai Zhang161a5862016-10-20 11:47:02 -07001229 EXPECT_TRUE_WAIT(!ch1.conn(), kDefaultTimeout); // for TCP connect
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07001230}
1231
Steve Antonbabf9172017-11-29 10:19:02 -08001232/* TODO(?): Enable these once testrelayserver can accept external TCP.
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001233TEST_F(PortTest, TestTcpToTcpRelay) {
1234 TestTcpToRelay(PROTO_TCP);
1235}
1236
1237TEST_F(PortTest, TestTcpToSslTcpRelay) {
1238 TestTcpToRelay(PROTO_SSLTCP);
1239}
1240*/
1241
1242// Outbound SSLTCP -> XXXX
Steve Antonbabf9172017-11-29 10:19:02 -08001243/* TODO(?): Enable these once testrelayserver can accept external SSL.
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001244TEST_F(PortTest, TestSslTcpToTcpRelay) {
1245 TestSslTcpToRelay(PROTO_TCP);
1246}
1247
1248TEST_F(PortTest, TestSslTcpToSslTcpRelay) {
1249 TestSslTcpToRelay(PROTO_SSLTCP);
1250}
1251*/
1252
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001253// Test that a connection will be dead and deleted if
1254// i) it has never received anything for MIN_CONNECTION_LIFETIME milliseconds
1255// since it was created, or
1256// ii) it has not received anything for DEAD_CONNECTION_RECEIVE_TIMEOUT
1257// milliseconds since last receiving.
1258TEST_F(PortTest, TestConnectionDead) {
Steve Anton11358fe2018-10-09 15:39:19 -07001259 TestChannel ch1(CreateUdpPort(kLocalAddr1));
1260 TestChannel ch2(CreateUdpPort(kLocalAddr2));
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001261 // Acquire address.
1262 ch1.Start();
1263 ch2.Start();
Honghai Zhang161a5862016-10-20 11:47:02 -07001264 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
1265 ASSERT_EQ_WAIT(1, ch2.complete_count(), kDefaultTimeout);
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001266
honghaiz37389b42016-01-04 21:57:33 -08001267 // Test case that the connection has never received anything.
nisse1bffc1d2016-05-02 08:18:55 -07001268 int64_t before_created = rtc::TimeMillis();
Steve Anton11358fe2018-10-09 15:39:19 -07001269 ch1.CreateConnection(GetCandidate(ch2.port()));
nisse1bffc1d2016-05-02 08:18:55 -07001270 int64_t after_created = rtc::TimeMillis();
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001271 Connection* conn = ch1.conn();
nissec8ee8822017-01-18 07:20:55 -08001272 ASSERT_NE(conn, nullptr);
honghaiz37389b42016-01-04 21:57:33 -08001273 // It is not dead if it is after MIN_CONNECTION_LIFETIME but not pruned.
1274 conn->UpdateState(after_created + MIN_CONNECTION_LIFETIME + 1);
1275 rtc::Thread::Current()->ProcessMessages(0);
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001276 EXPECT_TRUE(ch1.conn() != nullptr);
honghaiz37389b42016-01-04 21:57:33 -08001277 // It is not dead if it is before MIN_CONNECTION_LIFETIME and pruned.
1278 conn->UpdateState(before_created + MIN_CONNECTION_LIFETIME - 1);
1279 conn->Prune();
1280 rtc::Thread::Current()->ProcessMessages(0);
1281 EXPECT_TRUE(ch1.conn() != nullptr);
1282 // It will be dead after MIN_CONNECTION_LIFETIME and pruned.
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001283 conn->UpdateState(after_created + MIN_CONNECTION_LIFETIME + 1);
Honghai Zhang161a5862016-10-20 11:47:02 -07001284 EXPECT_TRUE_WAIT(ch1.conn() == nullptr, kDefaultTimeout);
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001285
honghaiz37389b42016-01-04 21:57:33 -08001286 // Test case that the connection has received something.
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001287 // Create a connection again and receive a ping.
Steve Anton11358fe2018-10-09 15:39:19 -07001288 ch1.CreateConnection(GetCandidate(ch2.port()));
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001289 conn = ch1.conn();
nissec8ee8822017-01-18 07:20:55 -08001290 ASSERT_NE(conn, nullptr);
nisse1bffc1d2016-05-02 08:18:55 -07001291 int64_t before_last_receiving = rtc::TimeMillis();
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001292 conn->ReceivedPing();
nisse1bffc1d2016-05-02 08:18:55 -07001293 int64_t after_last_receiving = rtc::TimeMillis();
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001294 // The connection will be dead after DEAD_CONNECTION_RECEIVE_TIMEOUT
Yves Gerey665174f2018-06-19 15:03:05 +02001295 conn->UpdateState(before_last_receiving + DEAD_CONNECTION_RECEIVE_TIMEOUT -
1296 1);
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001297 rtc::Thread::Current()->ProcessMessages(100);
1298 EXPECT_TRUE(ch1.conn() != nullptr);
1299 conn->UpdateState(after_last_receiving + DEAD_CONNECTION_RECEIVE_TIMEOUT + 1);
Honghai Zhang161a5862016-10-20 11:47:02 -07001300 EXPECT_TRUE_WAIT(ch1.conn() == nullptr, kDefaultTimeout);
Honghai Zhang2cd7afe2015-11-12 11:14:33 -08001301}
1302
Jonas Oreland21433ca2020-05-13 14:11:25 +02001303TEST_F(PortTest, TestConnectionDeadWithDeadConnectionTimeout) {
1304 TestChannel ch1(CreateUdpPort(kLocalAddr1));
1305 TestChannel ch2(CreateUdpPort(kLocalAddr2));
1306 // Acquire address.
1307 ch1.Start();
1308 ch2.Start();
1309 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
1310 ASSERT_EQ_WAIT(1, ch2.complete_count(), kDefaultTimeout);
1311
1312 // Note: set field trials manually since they are parsed by
1313 // P2PTransportChannel but P2PTransportChannel is not used in this test.
1314 IceFieldTrials field_trials;
1315 field_trials.dead_connection_timeout_ms = 90000;
1316
1317 // Create a connection again and receive a ping.
1318 ch1.CreateConnection(GetCandidate(ch2.port()));
1319 auto conn = ch1.conn();
1320 conn->SetIceFieldTrials(&field_trials);
1321
1322 ASSERT_NE(conn, nullptr);
1323 int64_t before_last_receiving = rtc::TimeMillis();
1324 conn->ReceivedPing();
1325 int64_t after_last_receiving = rtc::TimeMillis();
1326 // The connection will be dead after 90s
1327 conn->UpdateState(before_last_receiving + 90000 - 1);
1328 rtc::Thread::Current()->ProcessMessages(100);
1329 EXPECT_TRUE(ch1.conn() != nullptr);
1330 conn->UpdateState(after_last_receiving + 90000 + 1);
1331 EXPECT_TRUE_WAIT(ch1.conn() == nullptr, kDefaultTimeout);
1332}
1333
1334TEST_F(PortTest, TestConnectionDeadOutstandingPing) {
1335 auto port1 = CreateUdpPort(kLocalAddr1);
1336 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
1337 port1->SetIceTiebreaker(kTiebreaker1);
1338 auto port2 = CreateUdpPort(kLocalAddr2);
1339 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
1340 port2->SetIceTiebreaker(kTiebreaker2);
1341
1342 TestChannel ch1(std::move(port1));
1343 TestChannel ch2(std::move(port2));
1344 // Acquire address.
1345 ch1.Start();
1346 ch2.Start();
1347 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
1348 ASSERT_EQ_WAIT(1, ch2.complete_count(), kDefaultTimeout);
1349
1350 // Note: set field trials manually since they are parsed by
1351 // P2PTransportChannel but P2PTransportChannel is not used in this test.
1352 IceFieldTrials field_trials;
1353 field_trials.dead_connection_timeout_ms = 360000;
1354
1355 // Create a connection again and receive a ping and then send
1356 // a ping and keep it outstanding.
1357 ch1.CreateConnection(GetCandidate(ch2.port()));
1358 auto conn = ch1.conn();
1359 conn->SetIceFieldTrials(&field_trials);
1360
1361 ASSERT_NE(conn, nullptr);
1362 conn->ReceivedPing();
1363 int64_t send_ping_timestamp = rtc::TimeMillis();
1364 conn->Ping(send_ping_timestamp);
1365
1366 // The connection will be dead 30s after the ping was sent.
1367 conn->UpdateState(send_ping_timestamp + DEAD_CONNECTION_RECEIVE_TIMEOUT - 1);
1368 rtc::Thread::Current()->ProcessMessages(100);
1369 EXPECT_TRUE(ch1.conn() != nullptr);
1370 conn->UpdateState(send_ping_timestamp + DEAD_CONNECTION_RECEIVE_TIMEOUT + 1);
1371 EXPECT_TRUE_WAIT(ch1.conn() == nullptr, kDefaultTimeout);
1372}
1373
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001374// This test case verifies standard ICE features in STUN messages. Currently it
1375// verifies Message Integrity attribute in STUN messages and username in STUN
1376// binding request will have colon (":") between remote and local username.
Peter Thatcher7cbd1882015-09-17 18:54:52 -07001377TEST_F(PortTest, TestLocalToLocalStandard) {
Steve Anton11358fe2018-10-09 15:39:19 -07001378 auto port1 = CreateUdpPort(kLocalAddr1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001379 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
1380 port1->SetIceTiebreaker(kTiebreaker1);
Steve Anton11358fe2018-10-09 15:39:19 -07001381 auto port2 = CreateUdpPort(kLocalAddr2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001382 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
1383 port2->SetIceTiebreaker(kTiebreaker2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001384 // Same parameters as TestLocalToLocal above.
Steve Anton11358fe2018-10-09 15:39:19 -07001385 TestConnectivity("udp", std::move(port1), "udp", std::move(port2), true, true,
1386 true, true);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001387}
1388
1389// This test is trying to validate a successful and failure scenario in a
1390// loopback test when protocol is RFC5245. For success IceTiebreaker, username
1391// should remain equal to the request generated by the port and role of port
1392// must be in controlling.
Honghai Zhang161a5862016-10-20 11:47:02 -07001393TEST_F(PortTest, TestLoopbackCall) {
Steve Anton11358fe2018-10-09 15:39:19 -07001394 auto lport = CreateTestPort(kLocalAddr1, "lfrag", "lpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001395 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1396 lport->SetIceTiebreaker(kTiebreaker1);
1397 lport->PrepareAddress();
1398 ASSERT_FALSE(lport->Candidates().empty());
Yves Gerey665174f2018-06-19 15:03:05 +02001399 Connection* conn =
1400 lport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001401 conn->Ping(0);
1402
Honghai Zhang161a5862016-10-20 11:47:02 -07001403 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001404 IceMessage* msg = lport->last_stun_msg();
1405 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
jbauchf1f87202016-03-30 06:43:37 -07001406 conn->OnReadPacket(lport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +01001407 lport->last_stun_buf()->size(), /* packet_time_us */ -1);
Honghai Zhang161a5862016-10-20 11:47:02 -07001408 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001409 msg = lport->last_stun_msg();
1410 EXPECT_EQ(STUN_BINDING_RESPONSE, msg->type());
1411
1412 // If the tiebreaker value is different from port, we expect a error
1413 // response.
1414 lport->Reset();
1415 lport->AddCandidateAddress(kLocalAddr2);
Artem Titov2dbb4c92021-07-26 15:12:41 +02001416 // Creating a different connection as `conn` is receiving.
Yves Gerey665174f2018-06-19 15:03:05 +02001417 Connection* conn1 =
1418 lport->CreateConnection(lport->Candidates()[1], Port::ORIGIN_MESSAGE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001419 conn1->Ping(0);
1420
Honghai Zhang161a5862016-10-20 11:47:02 -07001421 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001422 msg = lport->last_stun_msg();
1423 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
kwiberg3ec46792016-04-27 07:22:53 -07001424 std::unique_ptr<IceMessage> modified_req(
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001425 CreateStunMessage(STUN_BINDING_REQUEST));
Yves Gerey665174f2018-06-19 15:03:05 +02001426 const StunByteStringAttribute* username_attr =
1427 msg->GetByteString(STUN_ATTR_USERNAME);
Mirko Bonadei317a1f02019-09-17 17:06:18 +02001428 modified_req->AddAttribute(std::make_unique<StunByteStringAttribute>(
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001429 STUN_ATTR_USERNAME, username_attr->GetString()));
1430 // To make sure we receive error response, adding tiebreaker less than
1431 // what's present in request.
Mirko Bonadei317a1f02019-09-17 17:06:18 +02001432 modified_req->AddAttribute(std::make_unique<StunUInt64Attribute>(
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001433 STUN_ATTR_ICE_CONTROLLING, kTiebreaker1 - 1));
1434 modified_req->AddMessageIntegrity("lpass");
1435 modified_req->AddFingerprint();
1436
1437 lport->Reset();
Mirko Bonadei317a1f02019-09-17 17:06:18 +02001438 auto buf = std::make_unique<ByteBufferWriter>();
Steve Anton11358fe2018-10-09 15:39:19 -07001439 WriteStunMessage(*modified_req, buf.get());
Niels Möllere6933812018-11-05 13:01:41 +01001440 conn1->OnReadPacket(buf->Data(), buf->Length(), /* packet_time_us */ -1);
Honghai Zhang161a5862016-10-20 11:47:02 -07001441 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001442 msg = lport->last_stun_msg();
1443 EXPECT_EQ(STUN_BINDING_ERROR_RESPONSE, msg->type());
1444}
1445
1446// This test verifies role conflict signal is received when there is
1447// conflict in the role. In this case both ports are in controlling and
Artem Titov2dbb4c92021-07-26 15:12:41 +02001448// `rport` has higher tiebreaker value than `lport`. Since `lport` has lower
1449// value of tiebreaker, when it receives ping request from `rport` it will
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001450// send role conflict signal.
1451TEST_F(PortTest, TestIceRoleConflict) {
Steve Anton11358fe2018-10-09 15:39:19 -07001452 auto lport = CreateTestPort(kLocalAddr1, "lfrag", "lpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001453 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1454 lport->SetIceTiebreaker(kTiebreaker1);
Steve Anton11358fe2018-10-09 15:39:19 -07001455 auto rport = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001456 rport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1457 rport->SetIceTiebreaker(kTiebreaker2);
1458
1459 lport->PrepareAddress();
1460 rport->PrepareAddress();
1461 ASSERT_FALSE(lport->Candidates().empty());
1462 ASSERT_FALSE(rport->Candidates().empty());
Yves Gerey665174f2018-06-19 15:03:05 +02001463 Connection* lconn =
1464 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
1465 Connection* rconn =
1466 rport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001467 rconn->Ping(0);
1468
Honghai Zhang161a5862016-10-20 11:47:02 -07001469 ASSERT_TRUE_WAIT(rport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001470 IceMessage* msg = rport->last_stun_msg();
1471 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
1472 // Send rport binding request to lport.
jbauchf1f87202016-03-30 06:43:37 -07001473 lconn->OnReadPacket(rport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +01001474 rport->last_stun_buf()->size(), /* packet_time_us */ -1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001475
Honghai Zhang161a5862016-10-20 11:47:02 -07001476 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001477 EXPECT_EQ(STUN_BINDING_RESPONSE, lport->last_stun_msg()->type());
1478 EXPECT_TRUE(role_conflict());
1479}
1480
1481TEST_F(PortTest, TestTcpNoDelay) {
Steve Anton11358fe2018-10-09 15:39:19 -07001482 auto port1 = CreateTcpPort(kLocalAddr1);
Peter Thatcher7cbd1882015-09-17 18:54:52 -07001483 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001484 int option_value = -1;
Yves Gerey665174f2018-06-19 15:03:05 +02001485 int success = port1->GetOption(rtc::Socket::OPT_NODELAY, &option_value);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001486 ASSERT_EQ(0, success); // GetOption() should complete successfully w/ 0
1487 ASSERT_EQ(1, option_value);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001488}
1489
1490TEST_F(PortTest, TestDelayedBindingUdp) {
Benjamin Wrightd6f86e82018-05-08 13:12:25 -07001491 FakeAsyncPacketSocket* socket = new FakeAsyncPacketSocket();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001492 FakePacketSocketFactory socket_factory;
1493
1494 socket_factory.set_next_udp_socket(socket);
Steve Anton11358fe2018-10-09 15:39:19 -07001495 auto port = CreateUdpPort(kLocalAddr1, &socket_factory);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001496
1497 socket->set_state(AsyncPacketSocket::STATE_BINDING);
1498 port->PrepareAddress();
1499
1500 EXPECT_EQ(0U, port->Candidates().size());
1501 socket->SignalAddressReady(socket, kLocalAddr2);
1502
1503 EXPECT_EQ(1U, port->Candidates().size());
1504}
1505
Jonas Oreland7a284e12020-01-28 09:21:54 +01001506TEST_F(PortTest, TestDisableInterfaceOfTcpPort) {
1507 FakeAsyncPacketSocket* lsocket = new FakeAsyncPacketSocket();
1508 FakeAsyncPacketSocket* rsocket = new FakeAsyncPacketSocket();
1509 FakePacketSocketFactory socket_factory;
1510
1511 socket_factory.set_next_server_tcp_socket(lsocket);
1512 auto lport = CreateTcpPort(kLocalAddr1, &socket_factory);
1513
1514 socket_factory.set_next_server_tcp_socket(rsocket);
1515 auto rport = CreateTcpPort(kLocalAddr2, &socket_factory);
1516
Niels Möller4a1c2c42021-09-28 10:17:07 +02001517 lsocket->set_state(AsyncPacketSocket::STATE_BOUND);
1518 lsocket->local_address_ = kLocalAddr1;
1519 rsocket->set_state(AsyncPacketSocket::STATE_BOUND);
1520 rsocket->local_address_ = kLocalAddr2;
Jonas Oreland7a284e12020-01-28 09:21:54 +01001521
1522 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1523 lport->SetIceTiebreaker(kTiebreaker1);
1524 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
1525 rport->SetIceTiebreaker(kTiebreaker2);
1526
1527 lport->PrepareAddress();
1528 rport->PrepareAddress();
1529 ASSERT_FALSE(rport->Candidates().empty());
1530
1531 // A client socket.
1532 FakeAsyncPacketSocket* socket = new FakeAsyncPacketSocket();
1533 socket->local_address_ = kLocalAddr1;
1534 socket->remote_address_ = kLocalAddr2;
1535 socket_factory.set_next_client_tcp_socket(socket);
1536 Connection* lconn =
1537 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
1538 ASSERT_NE(lconn, nullptr);
1539 socket->SignalConnect(socket);
1540 lconn->Ping(0);
1541
1542 // Now disconnect the client socket...
1543 socket->SignalClose(socket, 1);
1544
1545 // And prevent new sockets from being created.
1546 socket_factory.set_next_client_tcp_socket(nullptr);
1547
1548 // Test that Ping() does not cause SEGV.
1549 lconn->Ping(0);
1550}
1551
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001552void PortTest::TestCrossFamilyPorts(int type) {
1553 FakePacketSocketFactory factory;
kwiberg3ec46792016-04-27 07:22:53 -07001554 std::unique_ptr<Port> ports[4];
Yves Gerey665174f2018-06-19 15:03:05 +02001555 SocketAddress addresses[4] = {
1556 SocketAddress("192.168.1.3", 0), SocketAddress("192.168.1.4", 0),
1557 SocketAddress("2001:db8::1", 0), SocketAddress("2001:db8::2", 0)};
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001558 for (int i = 0; i < 4; i++) {
Benjamin Wrightd6f86e82018-05-08 13:12:25 -07001559 FakeAsyncPacketSocket* socket = new FakeAsyncPacketSocket();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001560 if (type == SOCK_DGRAM) {
1561 factory.set_next_udp_socket(socket);
Steve Anton11358fe2018-10-09 15:39:19 -07001562 ports[i] = CreateUdpPort(addresses[i], &factory);
Niels Möller4a1c2c42021-09-28 10:17:07 +02001563 socket->set_state(AsyncPacketSocket::STATE_BINDING);
1564 socket->SignalAddressReady(socket, addresses[i]);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001565 } else if (type == SOCK_STREAM) {
1566 factory.set_next_server_tcp_socket(socket);
Steve Anton11358fe2018-10-09 15:39:19 -07001567 ports[i] = CreateTcpPort(addresses[i], &factory);
Niels Möller4a1c2c42021-09-28 10:17:07 +02001568 socket->set_state(AsyncPacketSocket::STATE_BOUND);
1569 socket->local_address_ = addresses[i];
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001570 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001571 ports[i]->PrepareAddress();
1572 }
1573
1574 // IPv4 Port, connects to IPv6 candidate and then to IPv4 candidate.
1575 if (type == SOCK_STREAM) {
1576 FakeAsyncPacketSocket* clientsocket = new FakeAsyncPacketSocket();
1577 factory.set_next_client_tcp_socket(clientsocket);
1578 }
1579 Connection* c = ports[0]->CreateConnection(GetCandidate(ports[2].get()),
1580 Port::ORIGIN_MESSAGE);
1581 EXPECT_TRUE(NULL == c);
1582 EXPECT_EQ(0U, ports[0]->connections().size());
1583 c = ports[0]->CreateConnection(GetCandidate(ports[1].get()),
1584 Port::ORIGIN_MESSAGE);
1585 EXPECT_FALSE(NULL == c);
1586 EXPECT_EQ(1U, ports[0]->connections().size());
1587
1588 // IPv6 Port, connects to IPv4 candidate and to IPv6 candidate.
1589 if (type == SOCK_STREAM) {
1590 FakeAsyncPacketSocket* clientsocket = new FakeAsyncPacketSocket();
1591 factory.set_next_client_tcp_socket(clientsocket);
1592 }
1593 c = ports[2]->CreateConnection(GetCandidate(ports[0].get()),
1594 Port::ORIGIN_MESSAGE);
1595 EXPECT_TRUE(NULL == c);
1596 EXPECT_EQ(0U, ports[2]->connections().size());
1597 c = ports[2]->CreateConnection(GetCandidate(ports[3].get()),
1598 Port::ORIGIN_MESSAGE);
1599 EXPECT_FALSE(NULL == c);
1600 EXPECT_EQ(1U, ports[2]->connections().size());
1601}
1602
1603TEST_F(PortTest, TestSkipCrossFamilyTcp) {
1604 TestCrossFamilyPorts(SOCK_STREAM);
1605}
1606
1607TEST_F(PortTest, TestSkipCrossFamilyUdp) {
1608 TestCrossFamilyPorts(SOCK_DGRAM);
1609}
1610
Peter Thatcherb8b01432015-07-07 16:45:53 -07001611void PortTest::ExpectPortsCanConnect(bool can_connect, Port* p1, Port* p2) {
Yves Gerey665174f2018-06-19 15:03:05 +02001612 Connection* c = p1->CreateConnection(GetCandidate(p2), Port::ORIGIN_MESSAGE);
Peter Thatcherb8b01432015-07-07 16:45:53 -07001613 if (can_connect) {
1614 EXPECT_FALSE(NULL == c);
1615 EXPECT_EQ(1U, p1->connections().size());
1616 } else {
1617 EXPECT_TRUE(NULL == c);
1618 EXPECT_EQ(0U, p1->connections().size());
1619 }
1620}
1621
1622TEST_F(PortTest, TestUdpV6CrossTypePorts) {
1623 FakePacketSocketFactory factory;
kwiberg3ec46792016-04-27 07:22:53 -07001624 std::unique_ptr<Port> ports[4];
Yves Gerey665174f2018-06-19 15:03:05 +02001625 SocketAddress addresses[4] = {
1626 SocketAddress("2001:db8::1", 0), SocketAddress("fe80::1", 0),
1627 SocketAddress("fe80::2", 0), SocketAddress("::1", 0)};
Peter Thatcherb8b01432015-07-07 16:45:53 -07001628 for (int i = 0; i < 4; i++) {
Benjamin Wrightd6f86e82018-05-08 13:12:25 -07001629 FakeAsyncPacketSocket* socket = new FakeAsyncPacketSocket();
Peter Thatcherb8b01432015-07-07 16:45:53 -07001630 factory.set_next_udp_socket(socket);
Steve Anton11358fe2018-10-09 15:39:19 -07001631 ports[i] = CreateUdpPort(addresses[i], &factory);
Peter Thatcherb8b01432015-07-07 16:45:53 -07001632 socket->set_state(AsyncPacketSocket::STATE_BINDING);
1633 socket->SignalAddressReady(socket, addresses[i]);
1634 ports[i]->PrepareAddress();
1635 }
1636
1637 Port* standard = ports[0].get();
1638 Port* link_local1 = ports[1].get();
1639 Port* link_local2 = ports[2].get();
1640 Port* localhost = ports[3].get();
1641
1642 ExpectPortsCanConnect(false, link_local1, standard);
1643 ExpectPortsCanConnect(false, standard, link_local1);
1644 ExpectPortsCanConnect(false, link_local1, localhost);
1645 ExpectPortsCanConnect(false, localhost, link_local1);
1646
1647 ExpectPortsCanConnect(true, link_local1, link_local2);
1648 ExpectPortsCanConnect(true, localhost, standard);
1649 ExpectPortsCanConnect(true, standard, localhost);
1650}
1651
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001652// This test verifies DSCP value set through SetOption interface can be
1653// get through DefaultDscpValue.
1654TEST_F(PortTest, TestDefaultDscpValue) {
1655 int dscp;
Steve Anton11358fe2018-10-09 15:39:19 -07001656 auto udpport = CreateUdpPort(kLocalAddr1);
Yves Gerey665174f2018-06-19 15:03:05 +02001657 EXPECT_EQ(0, udpport->SetOption(rtc::Socket::OPT_DSCP, rtc::DSCP_CS6));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001658 EXPECT_EQ(0, udpport->GetOption(rtc::Socket::OPT_DSCP, &dscp));
Steve Anton11358fe2018-10-09 15:39:19 -07001659 auto tcpport = CreateTcpPort(kLocalAddr1);
Yves Gerey665174f2018-06-19 15:03:05 +02001660 EXPECT_EQ(0, tcpport->SetOption(rtc::Socket::OPT_DSCP, rtc::DSCP_AF31));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001661 EXPECT_EQ(0, tcpport->GetOption(rtc::Socket::OPT_DSCP, &dscp));
1662 EXPECT_EQ(rtc::DSCP_AF31, dscp);
Steve Anton11358fe2018-10-09 15:39:19 -07001663 auto stunport = CreateStunPort(kLocalAddr1, nat_socket_factory1());
Yves Gerey665174f2018-06-19 15:03:05 +02001664 EXPECT_EQ(0, stunport->SetOption(rtc::Socket::OPT_DSCP, rtc::DSCP_AF41));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001665 EXPECT_EQ(0, stunport->GetOption(rtc::Socket::OPT_DSCP, &dscp));
1666 EXPECT_EQ(rtc::DSCP_AF41, dscp);
Steve Anton11358fe2018-10-09 15:39:19 -07001667 auto turnport1 =
1668 CreateTurnPort(kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001669 // Socket is created in PrepareAddress.
1670 turnport1->PrepareAddress();
Yves Gerey665174f2018-06-19 15:03:05 +02001671 EXPECT_EQ(0, turnport1->SetOption(rtc::Socket::OPT_DSCP, rtc::DSCP_CS7));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001672 EXPECT_EQ(0, turnport1->GetOption(rtc::Socket::OPT_DSCP, &dscp));
1673 EXPECT_EQ(rtc::DSCP_CS7, dscp);
1674 // This will verify correct value returned without the socket.
Steve Anton11358fe2018-10-09 15:39:19 -07001675 auto turnport2 =
1676 CreateTurnPort(kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP);
Yves Gerey665174f2018-06-19 15:03:05 +02001677 EXPECT_EQ(0, turnport2->SetOption(rtc::Socket::OPT_DSCP, rtc::DSCP_CS6));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001678 EXPECT_EQ(0, turnport2->GetOption(rtc::Socket::OPT_DSCP, &dscp));
1679 EXPECT_EQ(rtc::DSCP_CS6, dscp);
1680}
1681
Peter Thatcher7cbd1882015-09-17 18:54:52 -07001682// Test sending STUN messages.
1683TEST_F(PortTest, TestSendStunMessage) {
Steve Anton11358fe2018-10-09 15:39:19 -07001684 auto lport = CreateTestPort(kLocalAddr1, "lfrag", "lpass");
1685 auto rport = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001686 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1687 lport->SetIceTiebreaker(kTiebreaker1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001688 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
1689 rport->SetIceTiebreaker(kTiebreaker2);
1690
1691 // Send a fake ping from lport to rport.
1692 lport->PrepareAddress();
1693 rport->PrepareAddress();
1694 ASSERT_FALSE(rport->Candidates().empty());
Yves Gerey665174f2018-06-19 15:03:05 +02001695 Connection* lconn =
1696 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
1697 Connection* rconn =
1698 rport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001699 lconn->Ping(0);
1700
1701 // Check that it's a proper BINDING-REQUEST.
Honghai Zhang161a5862016-10-20 11:47:02 -07001702 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001703 IceMessage* msg = lport->last_stun_msg();
1704 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
1705 EXPECT_FALSE(msg->IsLegacy());
1706 const StunByteStringAttribute* username_attr =
1707 msg->GetByteString(STUN_ATTR_USERNAME);
1708 ASSERT_TRUE(username_attr != NULL);
1709 const StunUInt32Attribute* priority_attr = msg->GetUInt32(STUN_ATTR_PRIORITY);
1710 ASSERT_TRUE(priority_attr != NULL);
1711 EXPECT_EQ(kDefaultPrflxPriority, priority_attr->value());
1712 EXPECT_EQ("rfrag:lfrag", username_attr->GetString());
1713 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY) != NULL);
Harald Alvestrand07d83c82021-03-02 08:09:53 +00001714 EXPECT_EQ(StunMessage::IntegrityStatus::kIntegrityOk,
1715 msg->ValidateMessageIntegrity("rpass"));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001716 const StunUInt64Attribute* ice_controlling_attr =
1717 msg->GetUInt64(STUN_ATTR_ICE_CONTROLLING);
1718 ASSERT_TRUE(ice_controlling_attr != NULL);
1719 EXPECT_EQ(lport->IceTiebreaker(), ice_controlling_attr->value());
1720 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_ICE_CONTROLLED) == NULL);
1721 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USE_CANDIDATE) != NULL);
1722 EXPECT_TRUE(msg->GetUInt32(STUN_ATTR_FINGERPRINT) != NULL);
1723 EXPECT_TRUE(StunMessage::ValidateFingerprint(
jbauchf1f87202016-03-30 06:43:37 -07001724 lport->last_stun_buf()->data<char>(), lport->last_stun_buf()->size()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001725
1726 // Request should not include ping count.
1727 ASSERT_TRUE(msg->GetUInt32(STUN_ATTR_RETRANSMIT_COUNT) == NULL);
1728
1729 // Save a copy of the BINDING-REQUEST for use below.
Steve Anton11358fe2018-10-09 15:39:19 -07001730 std::unique_ptr<IceMessage> request = CopyStunMessage(*msg);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001731
zhihuang5ecf16c2016-06-01 17:09:15 -07001732 // Receive the BINDING-REQUEST and respond with BINDING-RESPONSE.
1733 rconn->OnReadPacket(lport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +01001734 lport->last_stun_buf()->size(), /* packet_time_us */ -1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001735 msg = rport->last_stun_msg();
1736 ASSERT_TRUE(msg != NULL);
1737 EXPECT_EQ(STUN_BINDING_RESPONSE, msg->type());
zhihuang5ecf16c2016-06-01 17:09:15 -07001738 // Received a BINDING-RESPONSE.
1739 lconn->OnReadPacket(rport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +01001740 rport->last_stun_buf()->size(), /* packet_time_us */ -1);
zhihuang5ecf16c2016-06-01 17:09:15 -07001741 // Verify the STUN Stats.
1742 EXPECT_EQ(1U, lconn->stats().sent_ping_requests_total);
1743 EXPECT_EQ(1U, lconn->stats().sent_ping_requests_before_first_response);
1744 EXPECT_EQ(1U, lconn->stats().recv_ping_responses);
1745 EXPECT_EQ(1U, rconn->stats().recv_ping_requests);
1746 EXPECT_EQ(1U, rconn->stats().sent_ping_responses);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001747
1748 EXPECT_FALSE(msg->IsLegacy());
Yves Gerey665174f2018-06-19 15:03:05 +02001749 const StunAddressAttribute* addr_attr =
1750 msg->GetAddress(STUN_ATTR_XOR_MAPPED_ADDRESS);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001751 ASSERT_TRUE(addr_attr != NULL);
1752 EXPECT_EQ(lport->Candidates()[0].address(), addr_attr->GetAddress());
1753 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY) != NULL);
Harald Alvestrand07d83c82021-03-02 08:09:53 +00001754 EXPECT_EQ(StunMessage::IntegrityStatus::kIntegrityOk,
1755 msg->ValidateMessageIntegrity("rpass"));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001756 EXPECT_TRUE(msg->GetUInt32(STUN_ATTR_FINGERPRINT) != NULL);
1757 EXPECT_TRUE(StunMessage::ValidateFingerprint(
jbauchf1f87202016-03-30 06:43:37 -07001758 lport->last_stun_buf()->data<char>(), lport->last_stun_buf()->size()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001759 // No USERNAME or PRIORITY in ICE responses.
1760 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USERNAME) == NULL);
1761 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_PRIORITY) == NULL);
1762 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MAPPED_ADDRESS) == NULL);
1763 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_ICE_CONTROLLING) == NULL);
1764 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_ICE_CONTROLLED) == NULL);
1765 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USE_CANDIDATE) == NULL);
1766
1767 // Response should not include ping count.
1768 ASSERT_TRUE(msg->GetUInt32(STUN_ATTR_RETRANSMIT_COUNT) == NULL);
1769
1770 // Respond with a BINDING-ERROR-RESPONSE. This wouldn't happen in real life,
1771 // but we can do it here.
Yves Gerey665174f2018-06-19 15:03:05 +02001772 rport->SendBindingErrorResponse(
1773 request.get(), lport->Candidates()[0].address(), STUN_ERROR_SERVER_ERROR,
1774 STUN_ERROR_REASON_SERVER_ERROR);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001775 msg = rport->last_stun_msg();
1776 ASSERT_TRUE(msg != NULL);
1777 EXPECT_EQ(STUN_BINDING_ERROR_RESPONSE, msg->type());
1778 EXPECT_FALSE(msg->IsLegacy());
1779 const StunErrorCodeAttribute* error_attr = msg->GetErrorCode();
1780 ASSERT_TRUE(error_attr != NULL);
1781 EXPECT_EQ(STUN_ERROR_SERVER_ERROR, error_attr->code());
1782 EXPECT_EQ(std::string(STUN_ERROR_REASON_SERVER_ERROR), error_attr->reason());
1783 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY) != NULL);
Harald Alvestrand07d83c82021-03-02 08:09:53 +00001784 EXPECT_EQ(StunMessage::IntegrityStatus::kIntegrityOk,
1785 msg->ValidateMessageIntegrity("rpass"));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001786 EXPECT_TRUE(msg->GetUInt32(STUN_ATTR_FINGERPRINT) != NULL);
1787 EXPECT_TRUE(StunMessage::ValidateFingerprint(
jbauchf1f87202016-03-30 06:43:37 -07001788 lport->last_stun_buf()->data<char>(), lport->last_stun_buf()->size()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001789 // No USERNAME with ICE.
1790 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USERNAME) == NULL);
1791 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_PRIORITY) == NULL);
1792
1793 // Testing STUN binding requests from rport --> lport, having ICE_CONTROLLED
1794 // and (incremented) RETRANSMIT_COUNT attributes.
1795 rport->Reset();
1796 rport->set_send_retransmit_count_attribute(true);
1797 rconn->Ping(0);
1798 rconn->Ping(0);
1799 rconn->Ping(0);
Honghai Zhang161a5862016-10-20 11:47:02 -07001800 ASSERT_TRUE_WAIT(rport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001801 msg = rport->last_stun_msg();
1802 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
1803 const StunUInt64Attribute* ice_controlled_attr =
1804 msg->GetUInt64(STUN_ATTR_ICE_CONTROLLED);
1805 ASSERT_TRUE(ice_controlled_attr != NULL);
1806 EXPECT_EQ(rport->IceTiebreaker(), ice_controlled_attr->value());
1807 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USE_CANDIDATE) == NULL);
1808
1809 // Request should include ping count.
1810 const StunUInt32Attribute* retransmit_attr =
1811 msg->GetUInt32(STUN_ATTR_RETRANSMIT_COUNT);
1812 ASSERT_TRUE(retransmit_attr != NULL);
1813 EXPECT_EQ(2U, retransmit_attr->value());
1814
1815 // Respond with a BINDING-RESPONSE.
Steve Anton11358fe2018-10-09 15:39:19 -07001816 request = CopyStunMessage(*msg);
zhihuang5ecf16c2016-06-01 17:09:15 -07001817 lconn->OnReadPacket(rport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +01001818 rport->last_stun_buf()->size(), /* packet_time_us */ -1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001819 msg = lport->last_stun_msg();
zhihuang5ecf16c2016-06-01 17:09:15 -07001820 // Receive the BINDING-RESPONSE.
1821 rconn->OnReadPacket(lport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +01001822 lport->last_stun_buf()->size(), /* packet_time_us */ -1);
zhihuang5ecf16c2016-06-01 17:09:15 -07001823
1824 // Verify the Stun ping stats.
1825 EXPECT_EQ(3U, rconn->stats().sent_ping_requests_total);
1826 EXPECT_EQ(3U, rconn->stats().sent_ping_requests_before_first_response);
1827 EXPECT_EQ(1U, rconn->stats().recv_ping_responses);
1828 EXPECT_EQ(1U, lconn->stats().sent_ping_responses);
1829 EXPECT_EQ(1U, lconn->stats().recv_ping_requests);
1830 // Ping after receiver the first response
1831 rconn->Ping(0);
1832 rconn->Ping(0);
1833 EXPECT_EQ(5U, rconn->stats().sent_ping_requests_total);
1834 EXPECT_EQ(3U, rconn->stats().sent_ping_requests_before_first_response);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001835
1836 // Response should include same ping count.
1837 retransmit_attr = msg->GetUInt32(STUN_ATTR_RETRANSMIT_COUNT);
1838 ASSERT_TRUE(retransmit_attr != NULL);
1839 EXPECT_EQ(2U, retransmit_attr->value());
1840}
1841
hbos92eaec62017-02-27 01:38:08 -08001842TEST_F(PortTest, TestNomination) {
Steve Anton11358fe2018-10-09 15:39:19 -07001843 auto lport = CreateTestPort(kLocalAddr1, "lfrag", "lpass");
1844 auto rport = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
hbos92eaec62017-02-27 01:38:08 -08001845 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1846 lport->SetIceTiebreaker(kTiebreaker1);
1847 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
1848 rport->SetIceTiebreaker(kTiebreaker2);
1849
1850 lport->PrepareAddress();
1851 rport->PrepareAddress();
1852 ASSERT_FALSE(lport->Candidates().empty());
1853 ASSERT_FALSE(rport->Candidates().empty());
Yves Gerey665174f2018-06-19 15:03:05 +02001854 Connection* lconn =
1855 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
1856 Connection* rconn =
1857 rport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
hbos92eaec62017-02-27 01:38:08 -08001858
Artem Titov2dbb4c92021-07-26 15:12:41 +02001859 // `lconn` is controlling, `rconn` is controlled.
hbos92eaec62017-02-27 01:38:08 -08001860 uint32_t nomination = 1234;
1861 lconn->set_nomination(nomination);
1862
1863 EXPECT_FALSE(lconn->nominated());
1864 EXPECT_FALSE(rconn->nominated());
1865 EXPECT_EQ(lconn->nominated(), lconn->stats().nominated);
1866 EXPECT_EQ(rconn->nominated(), rconn->stats().nominated);
1867
Artem Titov2dbb4c92021-07-26 15:12:41 +02001868 // Send ping (including the nomination value) from `lconn` to `rconn`. This
1869 // should set the remote nomination of `rconn`.
hbos92eaec62017-02-27 01:38:08 -08001870 lconn->Ping(0);
1871 ASSERT_TRUE_WAIT(lport->last_stun_msg(), kDefaultTimeout);
1872 ASSERT_TRUE(lport->last_stun_buf());
1873 rconn->OnReadPacket(lport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +01001874 lport->last_stun_buf()->size(), /* packet_time_us */ -1);
hbos92eaec62017-02-27 01:38:08 -08001875 EXPECT_EQ(nomination, rconn->remote_nomination());
1876 EXPECT_FALSE(lconn->nominated());
1877 EXPECT_TRUE(rconn->nominated());
1878 EXPECT_EQ(lconn->nominated(), lconn->stats().nominated);
1879 EXPECT_EQ(rconn->nominated(), rconn->stats().nominated);
1880
Artem Titov2dbb4c92021-07-26 15:12:41 +02001881 // This should result in an acknowledgment sent back from `rconn` to `lconn`,
1882 // updating the acknowledged nomination of `lconn`.
hbos92eaec62017-02-27 01:38:08 -08001883 ASSERT_TRUE_WAIT(rport->last_stun_msg(), kDefaultTimeout);
1884 ASSERT_TRUE(rport->last_stun_buf());
1885 lconn->OnReadPacket(rport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +01001886 rport->last_stun_buf()->size(), /* packet_time_us */ -1);
hbos92eaec62017-02-27 01:38:08 -08001887 EXPECT_EQ(nomination, lconn->acked_nomination());
1888 EXPECT_TRUE(lconn->nominated());
1889 EXPECT_TRUE(rconn->nominated());
1890 EXPECT_EQ(lconn->nominated(), lconn->stats().nominated);
1891 EXPECT_EQ(rconn->nominated(), rconn->stats().nominated);
1892}
1893
hbosbf8d3e52017-02-28 06:34:47 -08001894TEST_F(PortTest, TestRoundTripTime) {
1895 rtc::ScopedFakeClock clock;
1896
Steve Anton11358fe2018-10-09 15:39:19 -07001897 auto lport = CreateTestPort(kLocalAddr1, "lfrag", "lpass");
1898 auto rport = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
hbosbf8d3e52017-02-28 06:34:47 -08001899 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1900 lport->SetIceTiebreaker(kTiebreaker1);
1901 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
1902 rport->SetIceTiebreaker(kTiebreaker2);
1903
1904 lport->PrepareAddress();
1905 rport->PrepareAddress();
1906 ASSERT_FALSE(lport->Candidates().empty());
1907 ASSERT_FALSE(rport->Candidates().empty());
Yves Gerey665174f2018-06-19 15:03:05 +02001908 Connection* lconn =
1909 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
1910 Connection* rconn =
1911 rport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
hbosbf8d3e52017-02-28 06:34:47 -08001912
1913 EXPECT_EQ(0u, lconn->stats().total_round_trip_time_ms);
1914 EXPECT_FALSE(lconn->stats().current_round_trip_time_ms);
1915
Yves Gerey665174f2018-06-19 15:03:05 +02001916 SendPingAndReceiveResponse(lconn, lport.get(), rconn, rport.get(), &clock,
1917 10);
hbosbf8d3e52017-02-28 06:34:47 -08001918 EXPECT_EQ(10u, lconn->stats().total_round_trip_time_ms);
1919 ASSERT_TRUE(lconn->stats().current_round_trip_time_ms);
1920 EXPECT_EQ(10u, *lconn->stats().current_round_trip_time_ms);
1921
Yves Gerey665174f2018-06-19 15:03:05 +02001922 SendPingAndReceiveResponse(lconn, lport.get(), rconn, rport.get(), &clock,
1923 20);
hbosbf8d3e52017-02-28 06:34:47 -08001924 EXPECT_EQ(30u, lconn->stats().total_round_trip_time_ms);
1925 ASSERT_TRUE(lconn->stats().current_round_trip_time_ms);
1926 EXPECT_EQ(20u, *lconn->stats().current_round_trip_time_ms);
1927
Yves Gerey665174f2018-06-19 15:03:05 +02001928 SendPingAndReceiveResponse(lconn, lport.get(), rconn, rport.get(), &clock,
1929 30);
hbosbf8d3e52017-02-28 06:34:47 -08001930 EXPECT_EQ(60u, lconn->stats().total_round_trip_time_ms);
1931 ASSERT_TRUE(lconn->stats().current_round_trip_time_ms);
1932 EXPECT_EQ(30u, *lconn->stats().current_round_trip_time_ms);
1933}
1934
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001935TEST_F(PortTest, TestUseCandidateAttribute) {
Steve Anton11358fe2018-10-09 15:39:19 -07001936 auto lport = CreateTestPort(kLocalAddr1, "lfrag", "lpass");
1937 auto rport = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001938 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1939 lport->SetIceTiebreaker(kTiebreaker1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001940 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
1941 rport->SetIceTiebreaker(kTiebreaker2);
1942
1943 // Send a fake ping from lport to rport.
1944 lport->PrepareAddress();
1945 rport->PrepareAddress();
1946 ASSERT_FALSE(rport->Candidates().empty());
Yves Gerey665174f2018-06-19 15:03:05 +02001947 Connection* lconn =
1948 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001949 lconn->Ping(0);
Honghai Zhang161a5862016-10-20 11:47:02 -07001950 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001951 IceMessage* msg = lport->last_stun_msg();
1952 const StunUInt64Attribute* ice_controlling_attr =
1953 msg->GetUInt64(STUN_ATTR_ICE_CONTROLLING);
1954 ASSERT_TRUE(ice_controlling_attr != NULL);
Yves Gerey665174f2018-06-19 15:03:05 +02001955 const StunByteStringAttribute* use_candidate_attr =
1956 msg->GetByteString(STUN_ATTR_USE_CANDIDATE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001957 ASSERT_TRUE(use_candidate_attr != NULL);
1958}
1959
Honghai Zhang351d77b2016-05-20 15:08:29 -07001960// Tests that when the network type changes, the network cost of the port will
1961// change, the network cost of the local candidates will change. Also tests that
1962// the remote network costs are updated with the stun binding requests.
1963TEST_F(PortTest, TestNetworkCostChange) {
deadbeef5c3c1042017-08-04 15:01:57 -07001964 rtc::Network* test_network = MakeNetwork(kLocalAddr1);
Steve Anton11358fe2018-10-09 15:39:19 -07001965 auto lport = CreateTestPort(test_network, "lfrag", "lpass");
1966 auto rport = CreateTestPort(test_network, "rfrag", "rpass");
Honghai Zhang351d77b2016-05-20 15:08:29 -07001967 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1968 lport->SetIceTiebreaker(kTiebreaker1);
1969 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
1970 rport->SetIceTiebreaker(kTiebreaker2);
1971 lport->PrepareAddress();
1972 rport->PrepareAddress();
1973
1974 // Default local port cost is rtc::kNetworkCostUnknown.
1975 EXPECT_EQ(rtc::kNetworkCostUnknown, lport->network_cost());
1976 ASSERT_TRUE(!lport->Candidates().empty());
1977 for (const cricket::Candidate& candidate : lport->Candidates()) {
1978 EXPECT_EQ(rtc::kNetworkCostUnknown, candidate.network_cost());
1979 }
1980
1981 // Change the network type to wifi.
deadbeef5c3c1042017-08-04 15:01:57 -07001982 test_network->set_type(rtc::ADAPTER_TYPE_WIFI);
Honghai Zhang351d77b2016-05-20 15:08:29 -07001983 EXPECT_EQ(rtc::kNetworkCostLow, lport->network_cost());
1984 for (const cricket::Candidate& candidate : lport->Candidates()) {
1985 EXPECT_EQ(rtc::kNetworkCostLow, candidate.network_cost());
1986 }
1987
1988 // Add a connection and then change the network type.
1989 Connection* lconn =
1990 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
1991 // Change the network type to cellular.
deadbeef5c3c1042017-08-04 15:01:57 -07001992 test_network->set_type(rtc::ADAPTER_TYPE_CELLULAR);
Honghai Zhang351d77b2016-05-20 15:08:29 -07001993 EXPECT_EQ(rtc::kNetworkCostHigh, lport->network_cost());
1994 for (const cricket::Candidate& candidate : lport->Candidates()) {
1995 EXPECT_EQ(rtc::kNetworkCostHigh, candidate.network_cost());
1996 }
1997
deadbeef5c3c1042017-08-04 15:01:57 -07001998 test_network->set_type(rtc::ADAPTER_TYPE_WIFI);
Honghai Zhang351d77b2016-05-20 15:08:29 -07001999 Connection* rconn =
2000 rport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
deadbeef5c3c1042017-08-04 15:01:57 -07002001 test_network->set_type(rtc::ADAPTER_TYPE_CELLULAR);
Honghai Zhang351d77b2016-05-20 15:08:29 -07002002 lconn->Ping(0);
2003 // The rconn's remote candidate cost is rtc::kNetworkCostLow, but the ping
2004 // contains an attribute of network cost of rtc::kNetworkCostHigh. Once the
2005 // message is handled in rconn, The rconn's remote candidate will have cost
2006 // rtc::kNetworkCostHigh;
2007 EXPECT_EQ(rtc::kNetworkCostLow, rconn->remote_candidate().network_cost());
Honghai Zhang161a5862016-10-20 11:47:02 -07002008 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
Honghai Zhang351d77b2016-05-20 15:08:29 -07002009 IceMessage* msg = lport->last_stun_msg();
2010 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
2011 // Pass the binding request to rport.
2012 rconn->OnReadPacket(lport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +01002013 lport->last_stun_buf()->size(), /* packet_time_us */ -1);
Honghai Zhang351d77b2016-05-20 15:08:29 -07002014 // Wait until rport sends the response and then check the remote network cost.
Honghai Zhang161a5862016-10-20 11:47:02 -07002015 ASSERT_TRUE_WAIT(rport->last_stun_msg() != NULL, kDefaultTimeout);
Honghai Zhang351d77b2016-05-20 15:08:29 -07002016 EXPECT_EQ(rtc::kNetworkCostHigh, rconn->remote_candidate().network_cost());
2017}
2018
honghaiza0c44ea2016-03-23 16:07:48 -07002019TEST_F(PortTest, TestNetworkInfoAttribute) {
deadbeef5c3c1042017-08-04 15:01:57 -07002020 rtc::Network* test_network = MakeNetwork(kLocalAddr1);
Steve Anton11358fe2018-10-09 15:39:19 -07002021 auto lport = CreateTestPort(test_network, "lfrag", "lpass");
2022 auto rport = CreateTestPort(test_network, "rfrag", "rpass");
honghaiza0c44ea2016-03-23 16:07:48 -07002023 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
2024 lport->SetIceTiebreaker(kTiebreaker1);
2025 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
2026 rport->SetIceTiebreaker(kTiebreaker2);
2027
2028 uint16_t lnetwork_id = 9;
2029 lport->Network()->set_id(lnetwork_id);
2030 // Send a fake ping from lport to rport.
2031 lport->PrepareAddress();
2032 rport->PrepareAddress();
2033 Connection* lconn =
2034 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
2035 lconn->Ping(0);
Honghai Zhang161a5862016-10-20 11:47:02 -07002036 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
honghaiza0c44ea2016-03-23 16:07:48 -07002037 IceMessage* msg = lport->last_stun_msg();
2038 const StunUInt32Attribute* network_info_attr =
Jonas Orelandfa543642020-09-16 10:44:54 +02002039 msg->GetUInt32(STUN_ATTR_GOOG_NETWORK_INFO);
honghaiza0c44ea2016-03-23 16:07:48 -07002040 ASSERT_TRUE(network_info_attr != NULL);
2041 uint32_t network_info = network_info_attr->value();
2042 EXPECT_EQ(lnetwork_id, network_info >> 16);
Honghai Zhang351d77b2016-05-20 15:08:29 -07002043 // Default network has unknown type and cost kNetworkCostUnknown.
2044 EXPECT_EQ(rtc::kNetworkCostUnknown, network_info & 0xFFFF);
honghaiza0c44ea2016-03-23 16:07:48 -07002045
Honghai Zhang351d77b2016-05-20 15:08:29 -07002046 // Set the network type to be cellular so its cost will be kNetworkCostHigh.
honghaiza0c44ea2016-03-23 16:07:48 -07002047 // Send a fake ping from rport to lport.
deadbeef5c3c1042017-08-04 15:01:57 -07002048 test_network->set_type(rtc::ADAPTER_TYPE_CELLULAR);
honghaiza0c44ea2016-03-23 16:07:48 -07002049 uint16_t rnetwork_id = 8;
2050 rport->Network()->set_id(rnetwork_id);
2051 Connection* rconn =
2052 rport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
2053 rconn->Ping(0);
Honghai Zhang161a5862016-10-20 11:47:02 -07002054 ASSERT_TRUE_WAIT(rport->last_stun_msg() != NULL, kDefaultTimeout);
honghaiza0c44ea2016-03-23 16:07:48 -07002055 msg = rport->last_stun_msg();
Jonas Orelandfa543642020-09-16 10:44:54 +02002056 network_info_attr = msg->GetUInt32(STUN_ATTR_GOOG_NETWORK_INFO);
honghaiza0c44ea2016-03-23 16:07:48 -07002057 ASSERT_TRUE(network_info_attr != NULL);
2058 network_info = network_info_attr->value();
2059 EXPECT_EQ(rnetwork_id, network_info >> 16);
Honghai Zhang351d77b2016-05-20 15:08:29 -07002060 EXPECT_EQ(rtc::kNetworkCostHigh, network_info & 0xFFFF);
honghaiza0c44ea2016-03-23 16:07:48 -07002061}
2062
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002063// Test handling STUN messages.
2064TEST_F(PortTest, TestHandleStunMessage) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002065 // Our port will act as the "remote" port.
Steve Anton11358fe2018-10-09 15:39:19 -07002066 auto port = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002067
kwiberg3ec46792016-04-27 07:22:53 -07002068 std::unique_ptr<IceMessage> in_msg, out_msg;
Mirko Bonadei317a1f02019-09-17 17:06:18 +02002069 auto buf = std::make_unique<ByteBufferWriter>();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002070 rtc::SocketAddress addr(kLocalAddr1);
2071 std::string username;
2072
2073 // BINDING-REQUEST from local to remote with valid ICE username,
2074 // MESSAGE-INTEGRITY, and FINGERPRINT.
Steve Anton11358fe2018-10-09 15:39:19 -07002075 in_msg = CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "rfrag:lfrag");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002076 in_msg->AddMessageIntegrity("rpass");
2077 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002078 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002079 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2080 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002081 EXPECT_TRUE(out_msg.get() != NULL);
2082 EXPECT_EQ("lfrag", username);
2083
2084 // BINDING-RESPONSE without username, with MESSAGE-INTEGRITY and FINGERPRINT.
Steve Anton11358fe2018-10-09 15:39:19 -07002085 in_msg = CreateStunMessage(STUN_BINDING_RESPONSE);
Mirko Bonadei317a1f02019-09-17 17:06:18 +02002086 in_msg->AddAttribute(std::make_unique<StunXorAddressAttribute>(
zsteinf42cc9d2017-03-27 16:17:19 -07002087 STUN_ATTR_XOR_MAPPED_ADDRESS, kLocalAddr2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002088 in_msg->AddMessageIntegrity("rpass");
2089 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002090 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002091 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2092 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002093 EXPECT_TRUE(out_msg.get() != NULL);
2094 EXPECT_EQ("", username);
2095
2096 // BINDING-ERROR-RESPONSE without username, with error, M-I, and FINGERPRINT.
Steve Anton11358fe2018-10-09 15:39:19 -07002097 in_msg = CreateStunMessage(STUN_BINDING_ERROR_RESPONSE);
Mirko Bonadei317a1f02019-09-17 17:06:18 +02002098 in_msg->AddAttribute(std::make_unique<StunErrorCodeAttribute>(
zsteinf42cc9d2017-03-27 16:17:19 -07002099 STUN_ATTR_ERROR_CODE, STUN_ERROR_SERVER_ERROR,
2100 STUN_ERROR_REASON_SERVER_ERROR));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002101 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002102 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002103 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2104 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002105 EXPECT_TRUE(out_msg.get() != NULL);
2106 EXPECT_EQ("", username);
2107 ASSERT_TRUE(out_msg->GetErrorCode() != NULL);
2108 EXPECT_EQ(STUN_ERROR_SERVER_ERROR, out_msg->GetErrorCode()->code());
2109 EXPECT_EQ(std::string(STUN_ERROR_REASON_SERVER_ERROR),
Yves Gerey665174f2018-06-19 15:03:05 +02002110 out_msg->GetErrorCode()->reason());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002111}
2112
guoweisd12140a2015-09-10 13:32:11 -07002113// Tests handling of ICE binding requests with missing or incorrect usernames.
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002114TEST_F(PortTest, TestHandleStunMessageBadUsername) {
Steve Anton11358fe2018-10-09 15:39:19 -07002115 auto port = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002116
kwiberg3ec46792016-04-27 07:22:53 -07002117 std::unique_ptr<IceMessage> in_msg, out_msg;
Mirko Bonadei317a1f02019-09-17 17:06:18 +02002118 auto buf = std::make_unique<ByteBufferWriter>();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002119 rtc::SocketAddress addr(kLocalAddr1);
2120 std::string username;
2121
2122 // BINDING-REQUEST with no username.
Steve Anton11358fe2018-10-09 15:39:19 -07002123 in_msg = CreateStunMessage(STUN_BINDING_REQUEST);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002124 in_msg->AddMessageIntegrity("rpass");
2125 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002126 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002127 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2128 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002129 EXPECT_TRUE(out_msg.get() == NULL);
2130 EXPECT_EQ("", username);
2131 EXPECT_EQ(STUN_ERROR_BAD_REQUEST, port->last_stun_error_code());
2132
2133 // BINDING-REQUEST with empty username.
Steve Anton11358fe2018-10-09 15:39:19 -07002134 in_msg = CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002135 in_msg->AddMessageIntegrity("rpass");
2136 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002137 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002138 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2139 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002140 EXPECT_TRUE(out_msg.get() == NULL);
2141 EXPECT_EQ("", username);
2142 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED, port->last_stun_error_code());
2143
2144 // BINDING-REQUEST with too-short username.
Steve Anton11358fe2018-10-09 15:39:19 -07002145 in_msg = CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "rfra");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002146 in_msg->AddMessageIntegrity("rpass");
2147 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002148 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002149 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2150 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002151 EXPECT_TRUE(out_msg.get() == NULL);
2152 EXPECT_EQ("", username);
2153 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED, port->last_stun_error_code());
2154
2155 // BINDING-REQUEST with reversed username.
Steve Anton11358fe2018-10-09 15:39:19 -07002156 in_msg = CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "lfrag:rfrag");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002157 in_msg->AddMessageIntegrity("rpass");
2158 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002159 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002160 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2161 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002162 EXPECT_TRUE(out_msg.get() == NULL);
2163 EXPECT_EQ("", username);
2164 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED, port->last_stun_error_code());
2165
2166 // BINDING-REQUEST with garbage username.
Steve Anton11358fe2018-10-09 15:39:19 -07002167 in_msg = CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "abcd:efgh");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002168 in_msg->AddMessageIntegrity("rpass");
2169 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002170 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002171 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2172 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002173 EXPECT_TRUE(out_msg.get() == NULL);
2174 EXPECT_EQ("", username);
2175 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED, port->last_stun_error_code());
2176}
2177
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002178// Test handling STUN messages with missing or malformed M-I.
2179TEST_F(PortTest, TestHandleStunMessageBadMessageIntegrity) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002180 // Our port will act as the "remote" port.
Steve Anton11358fe2018-10-09 15:39:19 -07002181 auto port = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002182
kwiberg3ec46792016-04-27 07:22:53 -07002183 std::unique_ptr<IceMessage> in_msg, out_msg;
Mirko Bonadei317a1f02019-09-17 17:06:18 +02002184 auto buf = std::make_unique<ByteBufferWriter>();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002185 rtc::SocketAddress addr(kLocalAddr1);
2186 std::string username;
2187
2188 // BINDING-REQUEST from local to remote with valid ICE username and
2189 // FINGERPRINT, but no MESSAGE-INTEGRITY.
Steve Anton11358fe2018-10-09 15:39:19 -07002190 in_msg = CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "rfrag:lfrag");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002191 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002192 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002193 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2194 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002195 EXPECT_TRUE(out_msg.get() == NULL);
2196 EXPECT_EQ("", username);
2197 EXPECT_EQ(STUN_ERROR_BAD_REQUEST, port->last_stun_error_code());
2198
2199 // BINDING-REQUEST from local to remote with valid ICE username and
2200 // FINGERPRINT, but invalid MESSAGE-INTEGRITY.
Steve Anton11358fe2018-10-09 15:39:19 -07002201 in_msg = CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "rfrag:lfrag");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002202 in_msg->AddMessageIntegrity("invalid");
2203 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002204 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002205 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2206 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002207 EXPECT_TRUE(out_msg.get() == NULL);
2208 EXPECT_EQ("", username);
2209 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED, port->last_stun_error_code());
2210
Steve Antonbabf9172017-11-29 10:19:02 -08002211 // TODO(?): BINDING-RESPONSES and BINDING-ERROR-RESPONSES are checked
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002212 // by the Connection, not the Port, since they require the remote username.
2213 // Change this test to pass in data via Connection::OnReadPacket instead.
2214}
2215
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002216// Test handling STUN messages with missing or malformed FINGERPRINT.
2217TEST_F(PortTest, TestHandleStunMessageBadFingerprint) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002218 // Our port will act as the "remote" port.
Steve Anton11358fe2018-10-09 15:39:19 -07002219 auto port = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002220
kwiberg3ec46792016-04-27 07:22:53 -07002221 std::unique_ptr<IceMessage> in_msg, out_msg;
Mirko Bonadei317a1f02019-09-17 17:06:18 +02002222 auto buf = std::make_unique<ByteBufferWriter>();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002223 rtc::SocketAddress addr(kLocalAddr1);
2224 std::string username;
2225
2226 // BINDING-REQUEST from local to remote with valid ICE username and
2227 // MESSAGE-INTEGRITY, but no FINGERPRINT; GetStunMessage should fail.
Steve Anton11358fe2018-10-09 15:39:19 -07002228 in_msg = CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "rfrag:lfrag");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002229 in_msg->AddMessageIntegrity("rpass");
Steve Anton11358fe2018-10-09 15:39:19 -07002230 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002231 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2232 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002233 EXPECT_EQ(0, port->last_stun_error_code());
2234
2235 // Now, add a fingerprint, but munge the message so it's not valid.
2236 in_msg->AddFingerprint();
2237 in_msg->SetTransactionID("TESTTESTBADD");
Steve Anton11358fe2018-10-09 15:39:19 -07002238 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002239 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2240 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002241 EXPECT_EQ(0, port->last_stun_error_code());
2242
2243 // Valid BINDING-RESPONSE, except no FINGERPRINT.
Steve Anton11358fe2018-10-09 15:39:19 -07002244 in_msg = CreateStunMessage(STUN_BINDING_RESPONSE);
Mirko Bonadei317a1f02019-09-17 17:06:18 +02002245 in_msg->AddAttribute(std::make_unique<StunXorAddressAttribute>(
zsteinf42cc9d2017-03-27 16:17:19 -07002246 STUN_ATTR_XOR_MAPPED_ADDRESS, kLocalAddr2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002247 in_msg->AddMessageIntegrity("rpass");
Steve Anton11358fe2018-10-09 15:39:19 -07002248 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002249 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2250 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002251 EXPECT_EQ(0, port->last_stun_error_code());
2252
2253 // Now, add a fingerprint, but munge the message so it's not valid.
2254 in_msg->AddFingerprint();
2255 in_msg->SetTransactionID("TESTTESTBADD");
Steve Anton11358fe2018-10-09 15:39:19 -07002256 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002257 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2258 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002259 EXPECT_EQ(0, port->last_stun_error_code());
2260
2261 // Valid BINDING-ERROR-RESPONSE, except no FINGERPRINT.
Steve Anton11358fe2018-10-09 15:39:19 -07002262 in_msg = CreateStunMessage(STUN_BINDING_ERROR_RESPONSE);
Mirko Bonadei317a1f02019-09-17 17:06:18 +02002263 in_msg->AddAttribute(std::make_unique<StunErrorCodeAttribute>(
zsteinf42cc9d2017-03-27 16:17:19 -07002264 STUN_ATTR_ERROR_CODE, STUN_ERROR_SERVER_ERROR,
2265 STUN_ERROR_REASON_SERVER_ERROR));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002266 in_msg->AddMessageIntegrity("rpass");
Steve Anton11358fe2018-10-09 15:39:19 -07002267 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002268 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2269 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002270 EXPECT_EQ(0, port->last_stun_error_code());
2271
2272 // Now, add a fingerprint, but munge the message so it's not valid.
2273 in_msg->AddFingerprint();
2274 in_msg->SetTransactionID("TESTTESTBADD");
Steve Anton11358fe2018-10-09 15:39:19 -07002275 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002276 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2277 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002278 EXPECT_EQ(0, port->last_stun_error_code());
2279}
2280
Taylor Brandstetterfb4351b2020-03-23 16:00:31 -07002281// Test handling a STUN message with unknown attributes in the
2282// "comprehension-required" range. Should respond with an error with the
2283// unknown attributes' IDs.
2284TEST_F(PortTest,
2285 TestHandleStunRequestWithUnknownComprehensionRequiredAttribute) {
2286 // Our port will act as the "remote" port.
2287 std::unique_ptr<TestPort> port(CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
2288
2289 std::unique_ptr<IceMessage> in_msg, out_msg;
2290 auto buf = std::make_unique<ByteBufferWriter>();
2291 rtc::SocketAddress addr(kLocalAddr1);
2292 std::string username;
2293
2294 // Build ordinary message with valid ufrag/pass.
2295 in_msg = CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "rfrag:lfrag");
2296 in_msg->AddMessageIntegrity("rpass");
2297 // Add a couple attributes with ID in comprehension-required range.
2298 in_msg->AddAttribute(StunAttribute::CreateUInt32(0x7777));
2299 in_msg->AddAttribute(StunAttribute::CreateUInt32(0x4567));
2300 // ... And one outside the range.
2301 in_msg->AddAttribute(StunAttribute::CreateUInt32(0xdead));
2302 in_msg->AddFingerprint();
2303 WriteStunMessage(*in_msg, buf.get());
2304 ASSERT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2305 &username));
2306 IceMessage* error_response = port->last_stun_msg();
2307 ASSERT_NE(nullptr, error_response);
2308
2309 // Verify that the "unknown attribute" error response has the right error
2310 // code, and includes an attribute that lists out the unrecognized attribute
2311 // types.
2312 EXPECT_EQ(STUN_ERROR_UNKNOWN_ATTRIBUTE, error_response->GetErrorCodeValue());
2313 const StunUInt16ListAttribute* unknown_attributes =
2314 error_response->GetUnknownAttributes();
2315 ASSERT_NE(nullptr, unknown_attributes);
2316 ASSERT_EQ(2u, unknown_attributes->Size());
2317 EXPECT_EQ(0x7777, unknown_attributes->GetType(0));
2318 EXPECT_EQ(0x4567, unknown_attributes->GetType(1));
2319}
2320
2321// Similar to the above, but with a response instead of a request. In this
2322// case the response should just be ignored and transaction treated is failed.
2323TEST_F(PortTest,
2324 TestHandleStunResponseWithUnknownComprehensionRequiredAttribute) {
2325 // Generic setup.
2326 auto lport = CreateTestPort(kLocalAddr1, "lfrag", "lpass");
2327 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
2328 auto rport = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
2329 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
2330 lport->PrepareAddress();
2331 rport->PrepareAddress();
2332 ASSERT_FALSE(lport->Candidates().empty());
2333 ASSERT_FALSE(rport->Candidates().empty());
2334 Connection* lconn =
2335 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
2336 Connection* rconn =
2337 rport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
2338
2339 // Send request.
2340 lconn->Ping(0);
2341 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
2342 rconn->OnReadPacket(lport->last_stun_buf()->data<char>(),
2343 lport->last_stun_buf()->size(), /* packet_time_us */ -1);
2344
2345 // Intercept request and add comprehension required attribute.
2346 ASSERT_TRUE_WAIT(rport->last_stun_msg() != NULL, kDefaultTimeout);
2347 auto modified_response = rport->last_stun_msg()->Clone();
2348 modified_response->AddAttribute(StunAttribute::CreateUInt32(0x7777));
2349 modified_response->RemoveAttribute(STUN_ATTR_FINGERPRINT);
2350 modified_response->AddFingerprint();
2351 ByteBufferWriter buf;
2352 WriteStunMessage(*modified_response, &buf);
2353 lconn->OnReadPacket(buf.Data(), buf.Length(), /* packet_time_us */ -1);
2354 // Response should have been ignored, leaving us unwritable still.
2355 EXPECT_FALSE(lconn->writable());
2356}
2357
2358// Similar to the above, but with an indication. As with a response, it should
2359// just be ignored.
2360TEST_F(PortTest,
2361 TestHandleStunIndicationWithUnknownComprehensionRequiredAttribute) {
2362 // Generic set up.
2363 auto lport = CreateTestPort(kLocalAddr2, "lfrag", "lpass");
2364 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
2365 auto rport = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
2366 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
2367 lport->PrepareAddress();
2368 rport->PrepareAddress();
2369 ASSERT_FALSE(lport->Candidates().empty());
2370 ASSERT_FALSE(rport->Candidates().empty());
2371 Connection* lconn =
2372 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
2373
2374 // Generate indication with comprehension required attribute and verify it
2375 // doesn't update last_ping_received.
2376 auto in_msg = CreateStunMessage(STUN_BINDING_INDICATION);
2377 in_msg->AddAttribute(StunAttribute::CreateUInt32(0x7777));
2378 in_msg->AddFingerprint();
2379 ByteBufferWriter buf;
2380 WriteStunMessage(*in_msg, &buf);
2381 lconn->OnReadPacket(buf.Data(), buf.Length(), /* packet_time_us */ -1);
2382 EXPECT_EQ(0u, lconn->last_ping_received());
2383}
2384
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002385// Test handling of STUN binding indication messages . STUN binding
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002386// indications are allowed only to the connection which is in read mode.
2387TEST_F(PortTest, TestHandleStunBindingIndication) {
Steve Anton11358fe2018-10-09 15:39:19 -07002388 auto lport = CreateTestPort(kLocalAddr2, "lfrag", "lpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002389 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
2390 lport->SetIceTiebreaker(kTiebreaker1);
2391
2392 // Verifying encoding and decoding STUN indication message.
kwiberg3ec46792016-04-27 07:22:53 -07002393 std::unique_ptr<IceMessage> in_msg, out_msg;
2394 std::unique_ptr<ByteBufferWriter> buf(new ByteBufferWriter());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002395 rtc::SocketAddress addr(kLocalAddr1);
2396 std::string username;
2397
Steve Anton11358fe2018-10-09 15:39:19 -07002398 in_msg = CreateStunMessage(STUN_BINDING_INDICATION);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002399 in_msg->AddFingerprint();
Steve Anton11358fe2018-10-09 15:39:19 -07002400 WriteStunMessage(*in_msg, buf.get());
kwiberg6baec032016-03-15 11:09:39 -07002401 EXPECT_TRUE(lport->GetStunMessage(buf->Data(), buf->Length(), addr, &out_msg,
2402 &username));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002403 EXPECT_TRUE(out_msg.get() != NULL);
2404 EXPECT_EQ(out_msg->type(), STUN_BINDING_INDICATION);
2405 EXPECT_EQ("", username);
2406
2407 // Verify connection can handle STUN indication and updates
2408 // last_ping_received.
Steve Anton11358fe2018-10-09 15:39:19 -07002409 auto rport = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002410 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
2411 rport->SetIceTiebreaker(kTiebreaker2);
2412
2413 lport->PrepareAddress();
2414 rport->PrepareAddress();
2415 ASSERT_FALSE(lport->Candidates().empty());
2416 ASSERT_FALSE(rport->Candidates().empty());
2417
Yves Gerey665174f2018-06-19 15:03:05 +02002418 Connection* lconn =
2419 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
2420 Connection* rconn =
2421 rport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002422 rconn->Ping(0);
2423
Honghai Zhang161a5862016-10-20 11:47:02 -07002424 ASSERT_TRUE_WAIT(rport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002425 IceMessage* msg = rport->last_stun_msg();
2426 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
2427 // Send rport binding request to lport.
jbauchf1f87202016-03-30 06:43:37 -07002428 lconn->OnReadPacket(rport->last_stun_buf()->data<char>(),
Niels Möllere6933812018-11-05 13:01:41 +01002429 rport->last_stun_buf()->size(), /* packet_time_us */ -1);
Honghai Zhang161a5862016-10-20 11:47:02 -07002430 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002431 EXPECT_EQ(STUN_BINDING_RESPONSE, lport->last_stun_msg()->type());
honghaiz34b11eb2016-03-16 08:55:44 -07002432 int64_t last_ping_received1 = lconn->last_ping_received();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002433
2434 // Adding a delay of 100ms.
2435 rtc::Thread::Current()->ProcessMessages(100);
2436 // Pinging lconn using stun indication message.
Niels Möllere6933812018-11-05 13:01:41 +01002437 lconn->OnReadPacket(buf->Data(), buf->Length(), /* packet_time_us */ -1);
honghaiz34b11eb2016-03-16 08:55:44 -07002438 int64_t last_ping_received2 = lconn->last_ping_received();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002439 EXPECT_GT(last_ping_received2, last_ping_received1);
2440}
2441
2442TEST_F(PortTest, TestComputeCandidatePriority) {
Steve Anton11358fe2018-10-09 15:39:19 -07002443 auto port = CreateTestPort(kLocalAddr1, "name", "pass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002444 port->set_type_preference(90);
2445 port->set_component(177);
2446 port->AddCandidateAddress(SocketAddress("192.168.1.4", 1234));
2447 port->AddCandidateAddress(SocketAddress("2001:db8::1234", 1234));
2448 port->AddCandidateAddress(SocketAddress("fc12:3456::1234", 1234));
2449 port->AddCandidateAddress(SocketAddress("::ffff:192.168.1.4", 1234));
2450 port->AddCandidateAddress(SocketAddress("::192.168.1.4", 1234));
2451 port->AddCandidateAddress(SocketAddress("2002::1234:5678", 1234));
2452 port->AddCandidateAddress(SocketAddress("2001::1234:5678", 1234));
2453 port->AddCandidateAddress(SocketAddress("fecf::1234:5678", 1234));
2454 port->AddCandidateAddress(SocketAddress("3ffe::1234:5678", 1234));
2455 // These should all be:
2456 // (90 << 24) | ([rfc3484 pref value] << 8) | (256 - 177)
Peter Boström0c4e06b2015-10-07 12:23:21 +02002457 uint32_t expected_priority_v4 = 1509957199U;
2458 uint32_t expected_priority_v6 = 1509959759U;
2459 uint32_t expected_priority_ula = 1509962319U;
2460 uint32_t expected_priority_v4mapped = expected_priority_v4;
2461 uint32_t expected_priority_v4compat = 1509949775U;
2462 uint32_t expected_priority_6to4 = 1509954639U;
2463 uint32_t expected_priority_teredo = 1509952079U;
2464 uint32_t expected_priority_sitelocal = 1509949775U;
2465 uint32_t expected_priority_6bone = 1509949775U;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002466 ASSERT_EQ(expected_priority_v4, port->Candidates()[0].priority());
2467 ASSERT_EQ(expected_priority_v6, port->Candidates()[1].priority());
2468 ASSERT_EQ(expected_priority_ula, port->Candidates()[2].priority());
2469 ASSERT_EQ(expected_priority_v4mapped, port->Candidates()[3].priority());
2470 ASSERT_EQ(expected_priority_v4compat, port->Candidates()[4].priority());
2471 ASSERT_EQ(expected_priority_6to4, port->Candidates()[5].priority());
2472 ASSERT_EQ(expected_priority_teredo, port->Candidates()[6].priority());
2473 ASSERT_EQ(expected_priority_sitelocal, port->Candidates()[7].priority());
2474 ASSERT_EQ(expected_priority_6bone, port->Candidates()[8].priority());
2475}
2476
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002477// In the case of shared socket, one port may be shared by local and stun.
2478// Test that candidates with different types will have different foundation.
2479TEST_F(PortTest, TestFoundation) {
Steve Anton11358fe2018-10-09 15:39:19 -07002480 auto testport = CreateTestPort(kLocalAddr1, "name", "pass");
Yves Gerey665174f2018-06-19 15:03:05 +02002481 testport->AddCandidateAddress(kLocalAddr1, kLocalAddr1, LOCAL_PORT_TYPE,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002482 cricket::ICE_TYPE_PREFERENCE_HOST, false);
Yves Gerey665174f2018-06-19 15:03:05 +02002483 testport->AddCandidateAddress(kLocalAddr2, kLocalAddr1, STUN_PORT_TYPE,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002484 cricket::ICE_TYPE_PREFERENCE_SRFLX, true);
2485 EXPECT_NE(testport->Candidates()[0].foundation(),
2486 testport->Candidates()[1].foundation());
2487}
2488
2489// This test verifies the foundation of different types of ICE candidates.
2490TEST_F(PortTest, TestCandidateFoundation) {
kwiberg3ec46792016-04-27 07:22:53 -07002491 std::unique_ptr<rtc::NATServer> nat_server(
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002492 CreateNatServer(kNatAddr1, NAT_OPEN_CONE));
Steve Anton11358fe2018-10-09 15:39:19 -07002493 auto udpport1 = CreateUdpPort(kLocalAddr1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002494 udpport1->PrepareAddress();
Steve Anton11358fe2018-10-09 15:39:19 -07002495 auto udpport2 = CreateUdpPort(kLocalAddr1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002496 udpport2->PrepareAddress();
2497 EXPECT_EQ(udpport1->Candidates()[0].foundation(),
2498 udpport2->Candidates()[0].foundation());
Steve Anton11358fe2018-10-09 15:39:19 -07002499 auto tcpport1 = CreateTcpPort(kLocalAddr1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002500 tcpport1->PrepareAddress();
Steve Anton11358fe2018-10-09 15:39:19 -07002501 auto tcpport2 = CreateTcpPort(kLocalAddr1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002502 tcpport2->PrepareAddress();
2503 EXPECT_EQ(tcpport1->Candidates()[0].foundation(),
2504 tcpport2->Candidates()[0].foundation());
Steve Anton11358fe2018-10-09 15:39:19 -07002505 auto stunport = CreateStunPort(kLocalAddr1, nat_socket_factory1());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002506 stunport->PrepareAddress();
Honghai Zhang161a5862016-10-20 11:47:02 -07002507 ASSERT_EQ_WAIT(1U, stunport->Candidates().size(), kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002508 EXPECT_NE(tcpport1->Candidates()[0].foundation(),
2509 stunport->Candidates()[0].foundation());
2510 EXPECT_NE(tcpport2->Candidates()[0].foundation(),
2511 stunport->Candidates()[0].foundation());
2512 EXPECT_NE(udpport1->Candidates()[0].foundation(),
2513 stunport->Candidates()[0].foundation());
2514 EXPECT_NE(udpport2->Candidates()[0].foundation(),
2515 stunport->Candidates()[0].foundation());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002516 // Verifying TURN candidate foundation.
Steve Anton11358fe2018-10-09 15:39:19 -07002517 auto turnport1 =
2518 CreateTurnPort(kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002519 turnport1->PrepareAddress();
Honghai Zhang161a5862016-10-20 11:47:02 -07002520 ASSERT_EQ_WAIT(1U, turnport1->Candidates().size(), kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002521 EXPECT_NE(udpport1->Candidates()[0].foundation(),
2522 turnport1->Candidates()[0].foundation());
2523 EXPECT_NE(udpport2->Candidates()[0].foundation(),
2524 turnport1->Candidates()[0].foundation());
2525 EXPECT_NE(stunport->Candidates()[0].foundation(),
2526 turnport1->Candidates()[0].foundation());
Steve Anton11358fe2018-10-09 15:39:19 -07002527 auto turnport2 =
2528 CreateTurnPort(kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002529 turnport2->PrepareAddress();
Honghai Zhang161a5862016-10-20 11:47:02 -07002530 ASSERT_EQ_WAIT(1U, turnport2->Candidates().size(), kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002531 EXPECT_EQ(turnport1->Candidates()[0].foundation(),
2532 turnport2->Candidates()[0].foundation());
2533
2534 // Running a second turn server, to get different base IP address.
2535 SocketAddress kTurnUdpIntAddr2("99.99.98.4", STUN_SERVER_PORT);
2536 SocketAddress kTurnUdpExtAddr2("99.99.98.5", 0);
Yves Gerey665174f2018-06-19 15:03:05 +02002537 TestTurnServer turn_server2(rtc::Thread::Current(), kTurnUdpIntAddr2,
2538 kTurnUdpExtAddr2);
Steve Anton11358fe2018-10-09 15:39:19 -07002539 auto turnport3 = CreateTurnPort(kLocalAddr1, nat_socket_factory1(), PROTO_UDP,
2540 PROTO_UDP, kTurnUdpIntAddr2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002541 turnport3->PrepareAddress();
Honghai Zhang161a5862016-10-20 11:47:02 -07002542 ASSERT_EQ_WAIT(1U, turnport3->Candidates().size(), kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002543 EXPECT_NE(turnport3->Candidates()[0].foundation(),
2544 turnport2->Candidates()[0].foundation());
Honghai Zhang80f1db92016-01-27 11:54:45 -08002545
2546 // Start a TCP turn server, and check that two turn candidates have
2547 // different foundations if their relay protocols are different.
2548 TestTurnServer turn_server3(rtc::Thread::Current(), kTurnTcpIntAddr,
2549 kTurnUdpExtAddr, PROTO_TCP);
Steve Anton11358fe2018-10-09 15:39:19 -07002550 auto turnport4 =
2551 CreateTurnPort(kLocalAddr1, nat_socket_factory1(), PROTO_TCP, PROTO_UDP);
Honghai Zhang80f1db92016-01-27 11:54:45 -08002552 turnport4->PrepareAddress();
Honghai Zhang161a5862016-10-20 11:47:02 -07002553 ASSERT_EQ_WAIT(1U, turnport4->Candidates().size(), kDefaultTimeout);
Honghai Zhang80f1db92016-01-27 11:54:45 -08002554 EXPECT_NE(turnport2->Candidates()[0].foundation(),
2555 turnport4->Candidates()[0].foundation());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002556}
2557
2558// This test verifies the related addresses of different types of
2559// ICE candiates.
2560TEST_F(PortTest, TestCandidateRelatedAddress) {
Steve Anton11358fe2018-10-09 15:39:19 -07002561 auto nat_server = CreateNatServer(kNatAddr1, NAT_OPEN_CONE);
2562 auto udpport = CreateUdpPort(kLocalAddr1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002563 udpport->PrepareAddress();
2564 // For UDPPort, related address will be empty.
2565 EXPECT_TRUE(udpport->Candidates()[0].related_address().IsNil());
2566 // Testing related address for stun candidates.
2567 // For stun candidate related address must be equal to the base
2568 // socket address.
Steve Anton11358fe2018-10-09 15:39:19 -07002569 auto stunport = CreateStunPort(kLocalAddr1, nat_socket_factory1());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002570 stunport->PrepareAddress();
Honghai Zhang161a5862016-10-20 11:47:02 -07002571 ASSERT_EQ_WAIT(1U, stunport->Candidates().size(), kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002572 // Check STUN candidate address.
Yves Gerey665174f2018-06-19 15:03:05 +02002573 EXPECT_EQ(stunport->Candidates()[0].address().ipaddr(), kNatAddr1.ipaddr());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002574 // Check STUN candidate related address.
2575 EXPECT_EQ(stunport->Candidates()[0].related_address(),
2576 stunport->GetLocalAddress());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002577 // Verifying the related address for TURN candidate.
2578 // For TURN related address must be equal to the mapped address.
Steve Anton11358fe2018-10-09 15:39:19 -07002579 auto turnport =
2580 CreateTurnPort(kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002581 turnport->PrepareAddress();
Honghai Zhang161a5862016-10-20 11:47:02 -07002582 ASSERT_EQ_WAIT(1U, turnport->Candidates().size(), kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002583 EXPECT_EQ(kTurnUdpExtAddr.ipaddr(),
2584 turnport->Candidates()[0].address().ipaddr());
2585 EXPECT_EQ(kNatAddr1.ipaddr(),
2586 turnport->Candidates()[0].related_address().ipaddr());
2587}
2588
2589// Test priority value overflow handling when preference is set to 3.
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002590TEST_F(PortTest, TestCandidatePriority) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002591 cricket::Candidate cand1;
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002592 cand1.set_priority(3);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002593 cricket::Candidate cand2;
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002594 cand2.set_priority(1);
2595 EXPECT_TRUE(cand1.priority() > cand2.priority());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002596}
2597
2598// Test the Connection priority is calculated correctly.
2599TEST_F(PortTest, TestConnectionPriority) {
Steve Anton11358fe2018-10-09 15:39:19 -07002600 auto lport = CreateTestPort(kLocalAddr1, "lfrag", "lpass");
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002601 lport->set_type_preference(cricket::ICE_TYPE_PREFERENCE_HOST);
Steve Anton11358fe2018-10-09 15:39:19 -07002602 auto rport = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
hnsl277b2502016-12-13 05:17:23 -08002603 rport->set_type_preference(cricket::ICE_TYPE_PREFERENCE_RELAY_UDP);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002604 lport->set_component(123);
2605 lport->AddCandidateAddress(SocketAddress("192.168.1.4", 1234));
2606 rport->set_component(23);
2607 rport->AddCandidateAddress(SocketAddress("10.1.1.100", 1234));
2608
2609 EXPECT_EQ(0x7E001E85U, lport->Candidates()[0].priority());
2610 EXPECT_EQ(0x2001EE9U, rport->Candidates()[0].priority());
2611
2612 // RFC 5245
2613 // pair priority = 2^32*MIN(G,D) + 2*MAX(G,D) + (G>D?1:0)
2614 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
2615 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
Yves Gerey665174f2018-06-19 15:03:05 +02002616 Connection* lconn =
2617 lport->CreateConnection(rport->Candidates()[0], Port::ORIGIN_MESSAGE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002618#if defined(WEBRTC_WIN)
2619 EXPECT_EQ(0x2001EE9FC003D0BU, lconn->priority());
2620#else
2621 EXPECT_EQ(0x2001EE9FC003D0BLLU, lconn->priority());
2622#endif
2623
2624 lport->SetIceRole(cricket::ICEROLE_CONTROLLED);
2625 rport->SetIceRole(cricket::ICEROLE_CONTROLLING);
Yves Gerey665174f2018-06-19 15:03:05 +02002626 Connection* rconn =
2627 rport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002628#if defined(WEBRTC_WIN)
2629 EXPECT_EQ(0x2001EE9FC003D0AU, rconn->priority());
2630#else
2631 EXPECT_EQ(0x2001EE9FC003D0ALLU, rconn->priority());
2632#endif
2633}
2634
Qingsi Wang22e623a2018-03-13 10:53:57 -07002635// Note that UpdateState takes into account the estimated RTT, and the
Artem Titov2dbb4c92021-07-26 15:12:41 +02002636// correctness of using `kMaxExpectedSimulatedRtt` as an upper bound of RTT in
Qingsi Wang22e623a2018-03-13 10:53:57 -07002637// the following tests depends on the link rate and the delay distriubtion
2638// configured in VirtualSocketServer::AddPacketToNetwork. The tests below use
2639// the default setup where the RTT is deterministically one, which generates an
Artem Titov2dbb4c92021-07-26 15:12:41 +02002640// estimate given by `MINIMUM_RTT` = 100.
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002641TEST_F(PortTest, TestWritableState) {
Honghai Zhang161a5862016-10-20 11:47:02 -07002642 rtc::ScopedFakeClock clock;
Steve Anton11358fe2018-10-09 15:39:19 -07002643 auto port1 = CreateUdpPort(kLocalAddr1);
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002644 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Steve Anton11358fe2018-10-09 15:39:19 -07002645 auto port2 = CreateUdpPort(kLocalAddr2);
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002646 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002647
2648 // Set up channels.
Steve Anton11358fe2018-10-09 15:39:19 -07002649 TestChannel ch1(std::move(port1));
2650 TestChannel ch2(std::move(port2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002651
2652 // Acquire addresses.
2653 ch1.Start();
2654 ch2.Start();
Honghai Zhang161a5862016-10-20 11:47:02 -07002655 ASSERT_EQ_SIMULATED_WAIT(1, ch1.complete_count(), kDefaultTimeout, clock);
2656 ASSERT_EQ_SIMULATED_WAIT(1, ch2.complete_count(), kDefaultTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002657
2658 // Send a ping from src to dst.
Steve Anton11358fe2018-10-09 15:39:19 -07002659 ch1.CreateConnection(GetCandidate(ch2.port()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002660 ASSERT_TRUE(ch1.conn() != NULL);
2661 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
Honghai Zhang161a5862016-10-20 11:47:02 -07002662 // for TCP connect
2663 EXPECT_TRUE_SIMULATED_WAIT(ch1.conn()->connected(), kDefaultTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002664 ch1.Ping();
Honghai Zhang161a5862016-10-20 11:47:02 -07002665 SIMULATED_WAIT(!ch2.remote_address().IsNil(), kShortTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002666
Taylor Brandstetter6bb1ef22016-06-27 18:09:03 -07002667 // Data should be sendable before the connection is accepted.
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002668 char data[] = "abcd";
tfarina5237aaf2015-11-10 23:44:30 -08002669 int data_size = arraysize(data);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002670 rtc::PacketOptions options;
Taylor Brandstetter6bb1ef22016-06-27 18:09:03 -07002671 EXPECT_EQ(data_size, ch1.conn()->Send(data, data_size, options));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002672
2673 // Accept the connection to return the binding response, transition to
2674 // writable, and allow data to be sent.
Steve Anton11358fe2018-10-09 15:39:19 -07002675 ch2.AcceptConnection(GetCandidate(ch1.port()));
Honghai Zhang161a5862016-10-20 11:47:02 -07002676 EXPECT_EQ_SIMULATED_WAIT(Connection::STATE_WRITABLE,
2677 ch1.conn()->write_state(), kDefaultTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002678 EXPECT_EQ(data_size, ch1.conn()->Send(data, data_size, options));
2679
2680 // Ask the connection to update state as if enough time has passed to lose
2681 // full writability and 5 pings went unresponded to. We'll accomplish the
2682 // latter by sending pings but not pumping messages.
Peter Boström0c4e06b2015-10-07 12:23:21 +02002683 for (uint32_t i = 1; i <= CONNECTION_WRITE_CONNECT_FAILURES; ++i) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002684 ch1.Ping(i);
2685 }
Qingsi Wang22e623a2018-03-13 10:53:57 -07002686 int unreliable_timeout_delay =
2687 CONNECTION_WRITE_CONNECT_TIMEOUT + kMaxExpectedSimulatedRtt;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002688 ch1.conn()->UpdateState(unreliable_timeout_delay);
2689 EXPECT_EQ(Connection::STATE_WRITE_UNRELIABLE, ch1.conn()->write_state());
2690
2691 // Data should be able to be sent in this state.
2692 EXPECT_EQ(data_size, ch1.conn()->Send(data, data_size, options));
2693
2694 // And now allow the other side to process the pings and send binding
2695 // responses.
Honghai Zhang161a5862016-10-20 11:47:02 -07002696 EXPECT_EQ_SIMULATED_WAIT(Connection::STATE_WRITABLE,
2697 ch1.conn()->write_state(), kDefaultTimeout, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002698 // Wait long enough for a full timeout (past however long we've already
2699 // waited).
Peter Boström0c4e06b2015-10-07 12:23:21 +02002700 for (uint32_t i = 1; i <= CONNECTION_WRITE_CONNECT_FAILURES; ++i) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002701 ch1.Ping(unreliable_timeout_delay + i);
2702 }
2703 ch1.conn()->UpdateState(unreliable_timeout_delay + CONNECTION_WRITE_TIMEOUT +
Qingsi Wang22e623a2018-03-13 10:53:57 -07002704 kMaxExpectedSimulatedRtt);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002705 EXPECT_EQ(Connection::STATE_WRITE_TIMEOUT, ch1.conn()->write_state());
2706
Taylor Brandstetter6bb1ef22016-06-27 18:09:03 -07002707 // Even if the connection has timed out, the Connection shouldn't block
2708 // the sending of data.
2709 EXPECT_EQ(data_size, ch1.conn()->Send(data, data_size, options));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002710
2711 ch1.Stop();
2712 ch2.Stop();
2713}
2714
Qingsi Wang22e623a2018-03-13 10:53:57 -07002715// Test writability states using the configured threshold value to replace
Artem Titov2dbb4c92021-07-26 15:12:41 +02002716// the default value given by `CONNECTION_WRITE_CONNECT_TIMEOUT` and
2717// `CONNECTION_WRITE_CONNECT_FAILURES`.
Qingsi Wang22e623a2018-03-13 10:53:57 -07002718TEST_F(PortTest, TestWritableStateWithConfiguredThreshold) {
2719 rtc::ScopedFakeClock clock;
Steve Anton11358fe2018-10-09 15:39:19 -07002720 auto port1 = CreateUdpPort(kLocalAddr1);
Qingsi Wang22e623a2018-03-13 10:53:57 -07002721 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Steve Anton11358fe2018-10-09 15:39:19 -07002722 auto port2 = CreateUdpPort(kLocalAddr2);
Qingsi Wang22e623a2018-03-13 10:53:57 -07002723 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
2724
2725 // Set up channels.
Steve Anton11358fe2018-10-09 15:39:19 -07002726 TestChannel ch1(std::move(port1));
2727 TestChannel ch2(std::move(port2));
Qingsi Wang22e623a2018-03-13 10:53:57 -07002728
2729 // Acquire addresses.
2730 ch1.Start();
2731 ch2.Start();
2732 ASSERT_EQ_SIMULATED_WAIT(1, ch1.complete_count(), kDefaultTimeout, clock);
2733 ASSERT_EQ_SIMULATED_WAIT(1, ch2.complete_count(), kDefaultTimeout, clock);
2734
2735 // Send a ping from src to dst.
Steve Anton11358fe2018-10-09 15:39:19 -07002736 ch1.CreateConnection(GetCandidate(ch2.port()));
Qingsi Wang22e623a2018-03-13 10:53:57 -07002737 ASSERT_TRUE(ch1.conn() != NULL);
2738 ch1.Ping();
2739 SIMULATED_WAIT(!ch2.remote_address().IsNil(), kShortTimeout, clock);
2740
2741 // Accept the connection to return the binding response, transition to
2742 // writable, and allow data to be sent.
Steve Anton11358fe2018-10-09 15:39:19 -07002743 ch2.AcceptConnection(GetCandidate(ch1.port()));
Qingsi Wang22e623a2018-03-13 10:53:57 -07002744 EXPECT_EQ_SIMULATED_WAIT(Connection::STATE_WRITABLE,
2745 ch1.conn()->write_state(), kDefaultTimeout, clock);
2746
2747 ch1.conn()->set_unwritable_timeout(1000);
2748 ch1.conn()->set_unwritable_min_checks(3);
2749 // Send two checks.
2750 ch1.Ping(1);
2751 ch1.Ping(2);
2752 // We have not reached the timeout nor have we sent the minimum number of
2753 // checks to change the state to Unreliable.
2754 ch1.conn()->UpdateState(999);
2755 EXPECT_EQ(Connection::STATE_WRITABLE, ch1.conn()->write_state());
2756 // We have not sent the minimum number of checks without responses.
2757 ch1.conn()->UpdateState(1000 + kMaxExpectedSimulatedRtt);
2758 EXPECT_EQ(Connection::STATE_WRITABLE, ch1.conn()->write_state());
2759 // Last ping after which the candidate pair should become Unreliable after
2760 // timeout.
2761 ch1.Ping(3);
2762 // We have not reached the timeout.
2763 ch1.conn()->UpdateState(999);
2764 EXPECT_EQ(Connection::STATE_WRITABLE, ch1.conn()->write_state());
2765 // We should be in the state Unreliable now.
2766 ch1.conn()->UpdateState(1000 + kMaxExpectedSimulatedRtt);
2767 EXPECT_EQ(Connection::STATE_WRITE_UNRELIABLE, ch1.conn()->write_state());
2768
2769 ch1.Stop();
2770 ch2.Stop();
2771}
2772
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002773TEST_F(PortTest, TestTimeoutForNeverWritable) {
Steve Anton11358fe2018-10-09 15:39:19 -07002774 auto port1 = CreateUdpPort(kLocalAddr1);
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002775 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
Steve Anton11358fe2018-10-09 15:39:19 -07002776 auto port2 = CreateUdpPort(kLocalAddr2);
Peter Thatcher7cbd1882015-09-17 18:54:52 -07002777 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002778
2779 // Set up channels.
Steve Anton11358fe2018-10-09 15:39:19 -07002780 TestChannel ch1(std::move(port1));
2781 TestChannel ch2(std::move(port2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002782
2783 // Acquire addresses.
2784 ch1.Start();
2785 ch2.Start();
2786
Steve Anton11358fe2018-10-09 15:39:19 -07002787 ch1.CreateConnection(GetCandidate(ch2.port()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002788 ASSERT_TRUE(ch1.conn() != NULL);
2789 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
2790
2791 // Attempt to go directly to write timeout.
Peter Boström0c4e06b2015-10-07 12:23:21 +02002792 for (uint32_t i = 1; i <= CONNECTION_WRITE_CONNECT_FAILURES; ++i) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002793 ch1.Ping(i);
2794 }
Qingsi Wang22e623a2018-03-13 10:53:57 -07002795 ch1.conn()->UpdateState(CONNECTION_WRITE_TIMEOUT + kMaxExpectedSimulatedRtt);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002796 EXPECT_EQ(Connection::STATE_WRITE_TIMEOUT, ch1.conn()->write_state());
2797}
2798
2799// This test verifies the connection setup between ICEMODE_FULL
2800// and ICEMODE_LITE.
Artem Titov2dbb4c92021-07-26 15:12:41 +02002801// In this test `ch1` behaves like FULL mode client and we have created
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002802// port which responds to the ping message just like LITE client.
2803TEST_F(PortTest, TestIceLiteConnectivity) {
Steve Anton11358fe2018-10-09 15:39:19 -07002804 auto ice_full_port =
Yves Gerey665174f2018-06-19 15:03:05 +02002805 CreateTestPort(kLocalAddr1, "lfrag", "lpass",
2806 cricket::ICEROLE_CONTROLLING, kTiebreaker1);
Steve Anton11358fe2018-10-09 15:39:19 -07002807 auto* ice_full_port_ptr = ice_full_port.get();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002808
Steve Anton11358fe2018-10-09 15:39:19 -07002809 auto ice_lite_port = CreateTestPort(
2810 kLocalAddr2, "rfrag", "rpass", cricket::ICEROLE_CONTROLLED, kTiebreaker2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002811 // Setup TestChannel. This behaves like FULL mode client.
Steve Anton11358fe2018-10-09 15:39:19 -07002812 TestChannel ch1(std::move(ice_full_port));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002813 ch1.SetIceMode(ICEMODE_FULL);
2814
2815 // Start gathering candidates.
2816 ch1.Start();
2817 ice_lite_port->PrepareAddress();
2818
Honghai Zhang161a5862016-10-20 11:47:02 -07002819 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002820 ASSERT_FALSE(ice_lite_port->Candidates().empty());
2821
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07002822 ch1.CreateConnection(GetCandidate(ice_lite_port.get()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002823 ASSERT_TRUE(ch1.conn() != NULL);
2824 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
2825
2826 // Send ping from full mode client.
2827 // This ping must not have USE_CANDIDATE_ATTR.
2828 ch1.Ping();
2829
2830 // Verify stun ping is without USE_CANDIDATE_ATTR. Getting message directly
2831 // from port.
Steve Anton11358fe2018-10-09 15:39:19 -07002832 ASSERT_TRUE_WAIT(ice_full_port_ptr->last_stun_msg() != NULL, kDefaultTimeout);
2833 IceMessage* msg = ice_full_port_ptr->last_stun_msg();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002834 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USE_CANDIDATE) == NULL);
2835
2836 // Respond with a BINDING-RESPONSE from litemode client.
2837 // NOTE: Ideally we should't create connection at this stage from lite
2838 // port, as it should be done only after receiving ping with USE_CANDIDATE.
2839 // But we need a connection to send a response message.
Jonas Orelandd0036622019-11-29 15:58:13 +01002840 auto* con = ice_lite_port->CreateConnection(
2841 ice_full_port_ptr->Candidates()[0], cricket::Port::ORIGIN_MESSAGE);
Steve Anton11358fe2018-10-09 15:39:19 -07002842 std::unique_ptr<IceMessage> request = CopyStunMessage(*msg);
Jonas Oreland9a52bd72019-12-11 11:35:48 +01002843 con->SendStunBindingResponse(request.get());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002844
2845 // Feeding the respone message from litemode to the full mode connection.
jbauchf1f87202016-03-30 06:43:37 -07002846 ch1.conn()->OnReadPacket(ice_lite_port->last_stun_buf()->data<char>(),
2847 ice_lite_port->last_stun_buf()->size(),
Niels Möllere6933812018-11-05 13:01:41 +01002848 /* packet_time_us */ -1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002849 // Verifying full mode connection becomes writable from the response.
2850 EXPECT_EQ_WAIT(Connection::STATE_WRITABLE, ch1.conn()->write_state(),
Honghai Zhang161a5862016-10-20 11:47:02 -07002851 kDefaultTimeout);
2852 EXPECT_TRUE_WAIT(ch1.nominated(), kDefaultTimeout);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002853
2854 // Clear existing stun messsages. Otherwise we will process old stun
2855 // message right after we send ping.
Steve Anton11358fe2018-10-09 15:39:19 -07002856 ice_full_port_ptr->Reset();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002857 // Send ping. This must have USE_CANDIDATE_ATTR.
2858 ch1.Ping();
Steve Anton11358fe2018-10-09 15:39:19 -07002859 ASSERT_TRUE_WAIT(ice_full_port_ptr->last_stun_msg() != NULL, kDefaultTimeout);
2860 msg = ice_full_port_ptr->last_stun_msg();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002861 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USE_CANDIDATE) != NULL);
2862 ch1.Stop();
2863}
2864
Jonas Oreland9a52bd72019-12-11 11:35:48 +01002865namespace {
2866
2867// Utility function for testing goog ping.
Jonas Oreland219d8ce2020-01-15 15:29:48 +01002868absl::optional<int> GetSupportedGoogPingVersion(const StunMessage* msg) {
2869 auto goog_misc = msg->GetUInt16List(STUN_ATTR_GOOG_MISC_INFO);
Jonas Oreland9a52bd72019-12-11 11:35:48 +01002870 if (goog_misc == nullptr) {
2871 return absl::nullopt;
2872 }
2873
Jonas Oreland219d8ce2020-01-15 15:29:48 +01002874 if (msg->type() == STUN_BINDING_REQUEST) {
2875 if (goog_misc->Size() <
2876 static_cast<int>(cricket::IceGoogMiscInfoBindingRequestAttributeIndex::
2877 SUPPORT_GOOG_PING_VERSION)) {
2878 return absl::nullopt;
2879 }
2880
2881 return goog_misc->GetType(
2882 static_cast<int>(cricket::IceGoogMiscInfoBindingRequestAttributeIndex::
2883 SUPPORT_GOOG_PING_VERSION));
Jonas Oreland9a52bd72019-12-11 11:35:48 +01002884 }
2885
Jonas Oreland219d8ce2020-01-15 15:29:48 +01002886 if (msg->type() == STUN_BINDING_RESPONSE) {
2887 if (goog_misc->Size() <
2888 static_cast<int>(cricket::IceGoogMiscInfoBindingResponseAttributeIndex::
2889 SUPPORT_GOOG_PING_VERSION)) {
2890 return absl::nullopt;
2891 }
2892
2893 return goog_misc->GetType(
2894 static_cast<int>(cricket::IceGoogMiscInfoBindingResponseAttributeIndex::
2895 SUPPORT_GOOG_PING_VERSION));
2896 }
2897 return absl::nullopt;
Jonas Oreland9a52bd72019-12-11 11:35:48 +01002898}
2899
2900} // namespace
2901
2902class GoogPingTest
2903 : public PortTest,
2904 public ::testing::WithParamInterface<std::pair<bool, bool>> {};
2905
2906// This test verifies the announce/enable on/off behavior
2907TEST_P(GoogPingTest, TestGoogPingAnnounceEnable) {
2908 IceFieldTrials trials;
2909 trials.announce_goog_ping = GetParam().first;
2910 trials.enable_goog_ping = GetParam().second;
2911 RTC_LOG(LS_INFO) << "Testing combination: "
Jonas Olssonb2b20312020-01-14 12:11:31 +01002912 " announce: "
2913 << trials.announce_goog_ping
Jonas Oreland9a52bd72019-12-11 11:35:48 +01002914 << " enable:" << trials.enable_goog_ping;
2915
2916 auto port1_unique =
2917 CreateTestPort(kLocalAddr1, "lfrag", "lpass",
2918 cricket::ICEROLE_CONTROLLING, kTiebreaker1);
2919 auto* port1 = port1_unique.get();
2920 auto port2 = CreateTestPort(kLocalAddr2, "rfrag", "rpass",
2921 cricket::ICEROLE_CONTROLLED, kTiebreaker2);
2922
2923 TestChannel ch1(std::move(port1_unique));
2924 // Block usage of STUN_ATTR_USE_CANDIDATE so that
2925 // ch1.conn() will sent GOOG_PING_REQUEST directly.
2926 // This only makes test a bit shorter...
2927 ch1.SetIceMode(ICEMODE_LITE);
2928 // Start gathering candidates.
2929 ch1.Start();
2930 port2->PrepareAddress();
2931
2932 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
2933 ASSERT_FALSE(port2->Candidates().empty());
2934
2935 ch1.CreateConnection(GetCandidate(port2.get()));
2936 ASSERT_TRUE(ch1.conn() != NULL);
2937 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
2938 ch1.conn()->SetIceFieldTrials(&trials);
2939
2940 // Send ping.
2941 ch1.Ping();
2942
2943 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
2944 const IceMessage* request1 = port1->last_stun_msg();
Jonas Oreland219d8ce2020-01-15 15:29:48 +01002945
2946 ASSERT_EQ(trials.enable_goog_ping,
2947 GetSupportedGoogPingVersion(request1) &&
2948 GetSupportedGoogPingVersion(request1) >= kGoogPingVersion);
2949
Jonas Oreland9a52bd72019-12-11 11:35:48 +01002950 auto* con = port2->CreateConnection(port1->Candidates()[0],
2951 cricket::Port::ORIGIN_MESSAGE);
2952 con->SetIceFieldTrials(&trials);
2953
2954 con->SendStunBindingResponse(request1);
2955
2956 // Then check the response matches the settings.
2957 const auto* response = port2->last_stun_msg();
Jonas Oreland219d8ce2020-01-15 15:29:48 +01002958 EXPECT_EQ(response->type(), STUN_BINDING_RESPONSE);
2959 EXPECT_EQ(trials.enable_goog_ping && trials.announce_goog_ping,
Jonas Oreland9a52bd72019-12-11 11:35:48 +01002960 GetSupportedGoogPingVersion(response) &&
2961 GetSupportedGoogPingVersion(response) >= kGoogPingVersion);
2962
2963 // Feeding the respone message back.
2964 ch1.conn()->OnReadPacket(port2->last_stun_buf()->data<char>(),
2965 port2->last_stun_buf()->size(),
2966 /* packet_time_us */ -1);
2967
2968 port1->Reset();
2969 port2->Reset();
2970
2971 ch1.Ping();
2972 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
2973 const IceMessage* request2 = port1->last_stun_msg();
2974
2975 // It should be a GOOG_PING if both of these are TRUE
2976 if (trials.announce_goog_ping && trials.enable_goog_ping) {
2977 ASSERT_EQ(request2->type(), GOOG_PING_REQUEST);
2978 con->SendGoogPingResponse(request2);
2979 } else {
2980 ASSERT_EQ(request2->type(), STUN_BINDING_REQUEST);
Jonas Oreland219d8ce2020-01-15 15:29:48 +01002981 // If we sent a BINDING with enable, and we got a reply that
2982 // didn't contain announce, the next ping should not contain
2983 // the enable again.
2984 ASSERT_FALSE(GetSupportedGoogPingVersion(request2).has_value());
Jonas Oreland9a52bd72019-12-11 11:35:48 +01002985 con->SendStunBindingResponse(request2);
2986 }
2987
2988 const auto* response2 = port2->last_stun_msg();
2989 ASSERT_TRUE(response2 != nullptr);
2990
2991 // It should be a GOOG_PING_RESPONSE if both of these are TRUE
2992 if (trials.announce_goog_ping && trials.enable_goog_ping) {
2993 ASSERT_EQ(response2->type(), GOOG_PING_RESPONSE);
2994 } else {
2995 ASSERT_EQ(response2->type(), STUN_BINDING_RESPONSE);
2996 }
2997
2998 ch1.Stop();
2999}
3000
Jonas Oreland219d8ce2020-01-15 15:29:48 +01003001// This test if a someone send a STUN_BINDING with unsupported version
3002// (kGoogPingVersion == 0)
3003TEST_F(PortTest, TestGoogPingUnsupportedVersionInStunBinding) {
3004 IceFieldTrials trials;
3005 trials.announce_goog_ping = true;
3006 trials.enable_goog_ping = true;
3007
3008 auto port1_unique =
3009 CreateTestPort(kLocalAddr1, "lfrag", "lpass",
3010 cricket::ICEROLE_CONTROLLING, kTiebreaker1);
3011 auto* port1 = port1_unique.get();
3012 auto port2 = CreateTestPort(kLocalAddr2, "rfrag", "rpass",
3013 cricket::ICEROLE_CONTROLLED, kTiebreaker2);
3014
3015 TestChannel ch1(std::move(port1_unique));
3016 // Block usage of STUN_ATTR_USE_CANDIDATE so that
3017 // ch1.conn() will sent GOOG_PING_REQUEST directly.
3018 // This only makes test a bit shorter...
3019 ch1.SetIceMode(ICEMODE_LITE);
3020 // Start gathering candidates.
3021 ch1.Start();
3022 port2->PrepareAddress();
3023
3024 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
3025 ASSERT_FALSE(port2->Candidates().empty());
3026
3027 ch1.CreateConnection(GetCandidate(port2.get()));
3028 ASSERT_TRUE(ch1.conn() != NULL);
3029 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
3030 ch1.conn()->SetIceFieldTrials(&trials);
3031
3032 // Send ping.
3033 ch1.Ping();
3034
3035 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
3036 const IceMessage* request1 = port1->last_stun_msg();
3037
3038 ASSERT_TRUE(GetSupportedGoogPingVersion(request1) &&
3039 GetSupportedGoogPingVersion(request1) >= kGoogPingVersion);
3040
3041 // Modify the STUN message request1 to send GetSupportedGoogPingVersion == 0
3042 auto modified_request1 = request1->Clone();
3043 ASSERT_TRUE(modified_request1->RemoveAttribute(STUN_ATTR_GOOG_MISC_INFO) !=
3044 nullptr);
3045 ASSERT_TRUE(modified_request1->RemoveAttribute(STUN_ATTR_MESSAGE_INTEGRITY) !=
3046 nullptr);
3047 {
3048 auto list =
3049 StunAttribute::CreateUInt16ListAttribute(STUN_ATTR_GOOG_MISC_INFO);
3050 list->AddTypeAtIndex(
3051 static_cast<uint16_t>(
3052 cricket::IceGoogMiscInfoBindingRequestAttributeIndex::
3053 SUPPORT_GOOG_PING_VERSION),
3054 /* version */ 0);
3055 modified_request1->AddAttribute(std::move(list));
3056 modified_request1->AddMessageIntegrity("rpass");
3057 }
3058 auto* con = port2->CreateConnection(port1->Candidates()[0],
3059 cricket::Port::ORIGIN_MESSAGE);
3060 con->SetIceFieldTrials(&trials);
3061
3062 con->SendStunBindingResponse(modified_request1.get());
3063
3064 // Then check the response matches the settings.
3065 const auto* response = port2->last_stun_msg();
3066 EXPECT_EQ(response->type(), STUN_BINDING_RESPONSE);
3067 EXPECT_FALSE(GetSupportedGoogPingVersion(response));
3068
3069 ch1.Stop();
3070}
3071
3072// This test if a someone send a STUN_BINDING_RESPONSE with unsupported version
3073// (kGoogPingVersion == 0)
3074TEST_F(PortTest, TestGoogPingUnsupportedVersionInStunBindingResponse) {
3075 IceFieldTrials trials;
3076 trials.announce_goog_ping = true;
3077 trials.enable_goog_ping = true;
3078
3079 auto port1_unique =
3080 CreateTestPort(kLocalAddr1, "lfrag", "lpass",
3081 cricket::ICEROLE_CONTROLLING, kTiebreaker1);
3082 auto* port1 = port1_unique.get();
3083 auto port2 = CreateTestPort(kLocalAddr2, "rfrag", "rpass",
3084 cricket::ICEROLE_CONTROLLED, kTiebreaker2);
3085
3086 TestChannel ch1(std::move(port1_unique));
3087 // Block usage of STUN_ATTR_USE_CANDIDATE so that
3088 // ch1.conn() will sent GOOG_PING_REQUEST directly.
3089 // This only makes test a bit shorter...
3090 ch1.SetIceMode(ICEMODE_LITE);
3091 // Start gathering candidates.
3092 ch1.Start();
3093 port2->PrepareAddress();
3094
3095 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
3096 ASSERT_FALSE(port2->Candidates().empty());
3097
3098 ch1.CreateConnection(GetCandidate(port2.get()));
3099 ASSERT_TRUE(ch1.conn() != NULL);
3100 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
3101 ch1.conn()->SetIceFieldTrials(&trials);
3102
3103 // Send ping.
3104 ch1.Ping();
3105
3106 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
3107 const IceMessage* request1 = port1->last_stun_msg();
3108
3109 ASSERT_TRUE(GetSupportedGoogPingVersion(request1) &&
3110 GetSupportedGoogPingVersion(request1) >= kGoogPingVersion);
3111
3112 auto* con = port2->CreateConnection(port1->Candidates()[0],
3113 cricket::Port::ORIGIN_MESSAGE);
3114 con->SetIceFieldTrials(&trials);
3115
3116 con->SendStunBindingResponse(request1);
3117
3118 // Then check the response matches the settings.
3119 const auto* response = port2->last_stun_msg();
3120 EXPECT_EQ(response->type(), STUN_BINDING_RESPONSE);
3121 EXPECT_TRUE(GetSupportedGoogPingVersion(response));
3122
3123 // Modify the STUN message response to contain GetSupportedGoogPingVersion ==
3124 // 0
3125 auto modified_response = response->Clone();
3126 ASSERT_TRUE(modified_response->RemoveAttribute(STUN_ATTR_GOOG_MISC_INFO) !=
3127 nullptr);
3128 ASSERT_TRUE(modified_response->RemoveAttribute(STUN_ATTR_MESSAGE_INTEGRITY) !=
3129 nullptr);
3130 ASSERT_TRUE(modified_response->RemoveAttribute(STUN_ATTR_FINGERPRINT) !=
3131 nullptr);
3132 {
3133 auto list =
3134 StunAttribute::CreateUInt16ListAttribute(STUN_ATTR_GOOG_MISC_INFO);
3135 list->AddTypeAtIndex(
3136 static_cast<uint16_t>(
3137 cricket::IceGoogMiscInfoBindingResponseAttributeIndex::
3138 SUPPORT_GOOG_PING_VERSION),
3139 /* version */ 0);
3140 modified_response->AddAttribute(std::move(list));
3141 modified_response->AddMessageIntegrity("rpass");
3142 modified_response->AddFingerprint();
3143 }
3144
3145 rtc::ByteBufferWriter buf;
3146 modified_response->Write(&buf);
3147
3148 // Feeding the modified respone message back.
3149 ch1.conn()->OnReadPacket(buf.Data(), buf.Length(), /* packet_time_us */ -1);
3150
3151 port1->Reset();
3152 port2->Reset();
3153
3154 ch1.Ping();
3155 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
3156
3157 // This should now be a STUN_BINDING...without a kGoogPingVersion
3158 const IceMessage* request2 = port1->last_stun_msg();
3159 EXPECT_EQ(request2->type(), STUN_BINDING_REQUEST);
3160 EXPECT_FALSE(GetSupportedGoogPingVersion(request2));
3161
3162 ch1.Stop();
3163}
3164
Jonas Oreland9a52bd72019-12-11 11:35:48 +01003165INSTANTIATE_TEST_SUITE_P(GoogPingTest,
3166 GoogPingTest,
3167 // test all combinations of <announce, enable> pairs.
3168 ::testing::Values(std::make_pair(false, false),
3169 std::make_pair(true, false),
3170 std::make_pair(false, true),
3171 std::make_pair(true, true)));
3172
3173// This test checks that a change in attributes falls back to STUN_BINDING
3174TEST_F(PortTest, TestChangeInAttributeMakesGoogPingFallsbackToStunBinding) {
3175 IceFieldTrials trials;
3176 trials.announce_goog_ping = true;
3177 trials.enable_goog_ping = true;
3178
3179 auto port1_unique =
3180 CreateTestPort(kLocalAddr1, "lfrag", "lpass",
3181 cricket::ICEROLE_CONTROLLING, kTiebreaker1);
3182 auto* port1 = port1_unique.get();
3183 auto port2 = CreateTestPort(kLocalAddr2, "rfrag", "rpass",
3184 cricket::ICEROLE_CONTROLLED, kTiebreaker2);
3185
3186 TestChannel ch1(std::move(port1_unique));
3187 // Block usage of STUN_ATTR_USE_CANDIDATE so that
3188 // ch1.conn() will sent GOOG_PING_REQUEST directly.
3189 // This only makes test a bit shorter...
3190 ch1.SetIceMode(ICEMODE_LITE);
3191 // Start gathering candidates.
3192 ch1.Start();
3193 port2->PrepareAddress();
3194
3195 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
3196 ASSERT_FALSE(port2->Candidates().empty());
3197
3198 ch1.CreateConnection(GetCandidate(port2.get()));
3199 ASSERT_TRUE(ch1.conn() != nullptr);
3200 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
3201 ch1.conn()->SetIceFieldTrials(&trials);
3202
3203 // Send ping.
3204 ch1.Ping();
3205
3206 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
3207 const IceMessage* msg = port1->last_stun_msg();
3208 auto* con = port2->CreateConnection(port1->Candidates()[0],
3209 cricket::Port::ORIGIN_MESSAGE);
3210 con->SetIceFieldTrials(&trials);
3211
3212 // Feed the message into the connection.
3213 con->SendStunBindingResponse(msg);
3214
3215 // The check reply wrt to settings.
3216 const auto* response = port2->last_stun_msg();
3217 ASSERT_EQ(response->type(), STUN_BINDING_RESPONSE);
3218 ASSERT_TRUE(GetSupportedGoogPingVersion(response) >= kGoogPingVersion);
3219
3220 // Feeding the respone message back.
3221 ch1.conn()->OnReadPacket(port2->last_stun_buf()->data<char>(),
3222 port2->last_stun_buf()->size(),
3223 /* packet_time_us */ -1);
3224
3225 port1->Reset();
3226 port2->Reset();
3227
3228 ch1.Ping();
3229 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
3230 const IceMessage* msg2 = port1->last_stun_msg();
3231
3232 // It should be a GOOG_PING if both of these are TRUE
3233 ASSERT_EQ(msg2->type(), GOOG_PING_REQUEST);
3234 con->SendGoogPingResponse(msg2);
3235
3236 const auto* response2 = port2->last_stun_msg();
3237 ASSERT_TRUE(response2 != nullptr);
3238
3239 // It should be a GOOG_PING_RESPONSE.
3240 ASSERT_EQ(response2->type(), GOOG_PING_RESPONSE);
3241
3242 // And now the third ping.
3243 port1->Reset();
3244 port2->Reset();
3245
3246 // Modify the message to be sent.
3247 ch1.conn()->set_use_candidate_attr(!ch1.conn()->use_candidate_attr());
3248
3249 ch1.Ping();
3250 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
3251 const IceMessage* msg3 = port1->last_stun_msg();
3252
3253 // It should be a STUN_BINDING_REQUEST
3254 ASSERT_EQ(msg3->type(), STUN_BINDING_REQUEST);
3255
3256 ch1.Stop();
3257}
3258
3259// This test that an error response fall back to STUN_BINDING.
3260TEST_F(PortTest, TestErrorResponseMakesGoogPingFallBackToStunBinding) {
3261 IceFieldTrials trials;
3262 trials.announce_goog_ping = true;
3263 trials.enable_goog_ping = true;
3264
3265 auto port1_unique =
3266 CreateTestPort(kLocalAddr1, "lfrag", "lpass",
3267 cricket::ICEROLE_CONTROLLING, kTiebreaker1);
3268 auto* port1 = port1_unique.get();
3269 auto port2 = CreateTestPort(kLocalAddr2, "rfrag", "rpass",
3270 cricket::ICEROLE_CONTROLLED, kTiebreaker2);
3271
3272 TestChannel ch1(std::move(port1_unique));
3273 // Block usage of STUN_ATTR_USE_CANDIDATE so that
3274 // ch1.conn() will sent GOOG_PING_REQUEST directly.
3275 // This only makes test a bit shorter...
3276 ch1.SetIceMode(ICEMODE_LITE);
3277 // Start gathering candidates.
3278 ch1.Start();
3279 port2->PrepareAddress();
3280
3281 ASSERT_EQ_WAIT(1, ch1.complete_count(), kDefaultTimeout);
3282 ASSERT_FALSE(port2->Candidates().empty());
3283
3284 ch1.CreateConnection(GetCandidate(port2.get()));
3285 ASSERT_TRUE(ch1.conn() != NULL);
3286 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
3287 ch1.conn()->SetIceFieldTrials(&trials);
3288
3289 // Send ping.
3290 ch1.Ping();
3291
3292 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
3293 const IceMessage* msg = port1->last_stun_msg();
3294 auto* con = port2->CreateConnection(port1->Candidates()[0],
3295 cricket::Port::ORIGIN_MESSAGE);
3296 con->SetIceFieldTrials(&trials);
3297
3298 // Feed the message into the connection.
3299 con->SendStunBindingResponse(msg);
3300
3301 // The check reply wrt to settings.
3302 const auto* response = port2->last_stun_msg();
3303 ASSERT_EQ(response->type(), STUN_BINDING_RESPONSE);
3304 ASSERT_TRUE(GetSupportedGoogPingVersion(response) >= kGoogPingVersion);
3305
3306 // Feeding the respone message back.
3307 ch1.conn()->OnReadPacket(port2->last_stun_buf()->data<char>(),
3308 port2->last_stun_buf()->size(),
3309 /* packet_time_us */ -1);
3310
3311 port1->Reset();
3312 port2->Reset();
3313
3314 ch1.Ping();
3315 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
3316 const IceMessage* msg2 = port1->last_stun_msg();
3317
3318 // It should be a GOOG_PING.
3319 ASSERT_EQ(msg2->type(), GOOG_PING_REQUEST);
3320 con->SendGoogPingResponse(msg2);
3321
3322 const auto* response2 = port2->last_stun_msg();
3323 ASSERT_TRUE(response2 != nullptr);
3324
3325 // It should be a GOOG_PING_RESPONSE.
3326 ASSERT_EQ(response2->type(), GOOG_PING_RESPONSE);
3327
3328 // But rather than the RESPONSE...feedback an error.
3329 StunMessage error_response;
3330 error_response.SetType(GOOG_PING_ERROR_RESPONSE);
3331 error_response.SetTransactionID(response2->transaction_id());
3332 error_response.AddMessageIntegrity32("rpass");
3333 rtc::ByteBufferWriter buf;
3334 error_response.Write(&buf);
3335
3336 ch1.conn()->OnReadPacket(buf.Data(), buf.Length(),
3337 /* packet_time_us */ -1);
3338
3339 // And now the third ping...this should be a binding.
3340 port1->Reset();
3341 port2->Reset();
3342
3343 ch1.Ping();
3344 ASSERT_TRUE_WAIT(port1->last_stun_msg() != NULL, kDefaultTimeout);
3345 const IceMessage* msg3 = port1->last_stun_msg();
3346
3347 // It should be a STUN_BINDING_REQUEST
3348 ASSERT_EQ(msg3->type(), STUN_BINDING_REQUEST);
3349
3350 ch1.Stop();
3351}
3352
Honghai Zhanga74363c2016-07-28 18:06:15 -07003353// This test case verifies that both the controlling port and the controlled
3354// port will time out after connectivity is lost, if they are not marked as
3355// "keep alive until pruned."
3356TEST_F(PortTest, TestPortTimeoutIfNotKeptAlive) {
3357 rtc::ScopedFakeClock clock;
3358 int timeout_delay = 100;
Steve Anton11358fe2018-10-09 15:39:19 -07003359 auto port1 = CreateUdpPort(kLocalAddr1);
3360 ConnectToSignalDestroyed(port1.get());
Honghai Zhanga74363c2016-07-28 18:06:15 -07003361 port1->set_timeout_delay(timeout_delay); // milliseconds
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00003362 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
3363 port1->SetIceTiebreaker(kTiebreaker1);
3364
Steve Anton11358fe2018-10-09 15:39:19 -07003365 auto port2 = CreateUdpPort(kLocalAddr2);
3366 ConnectToSignalDestroyed(port2.get());
Honghai Zhanga74363c2016-07-28 18:06:15 -07003367 port2->set_timeout_delay(timeout_delay); // milliseconds
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00003368 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
3369 port2->SetIceTiebreaker(kTiebreaker2);
3370
3371 // Set up channels and ensure both ports will be deleted.
Steve Anton11358fe2018-10-09 15:39:19 -07003372 TestChannel ch1(std::move(port1));
3373 TestChannel ch2(std::move(port2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00003374
3375 // Simulate a connection that succeeds, and then is destroyed.
Guo-wei Shiehbe508a12015-04-06 12:48:47 -07003376 StartConnectAndStopChannels(&ch1, &ch2);
Honghai Zhanga74363c2016-07-28 18:06:15 -07003377 // After the connection is destroyed, the port will be destroyed because
3378 // none of them is marked as "keep alive until pruned.
3379 EXPECT_EQ_SIMULATED_WAIT(2, ports_destroyed(), 110, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00003380}
3381
Honghai Zhanga74363c2016-07-28 18:06:15 -07003382// Test that if after all connection are destroyed, new connections are created
3383// and destroyed again, ports won't be destroyed until a timeout period passes
3384// after the last set of connections are all destroyed.
3385TEST_F(PortTest, TestPortTimeoutAfterNewConnectionCreatedAndDestroyed) {
Honghai Zhangb5db1ec2016-07-28 13:23:05 -07003386 rtc::ScopedFakeClock clock;
Honghai Zhanga74363c2016-07-28 18:06:15 -07003387 int timeout_delay = 100;
Steve Anton11358fe2018-10-09 15:39:19 -07003388 auto port1 = CreateUdpPort(kLocalAddr1);
3389 ConnectToSignalDestroyed(port1.get());
Honghai Zhanga74363c2016-07-28 18:06:15 -07003390 port1->set_timeout_delay(timeout_delay); // milliseconds
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00003391 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
3392 port1->SetIceTiebreaker(kTiebreaker1);
3393
Steve Anton11358fe2018-10-09 15:39:19 -07003394 auto port2 = CreateUdpPort(kLocalAddr2);
3395 ConnectToSignalDestroyed(port2.get());
Honghai Zhanga74363c2016-07-28 18:06:15 -07003396 port2->set_timeout_delay(timeout_delay); // milliseconds
3397
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00003398 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
3399 port2->SetIceTiebreaker(kTiebreaker2);
3400
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00003401 // Set up channels and ensure both ports will be deleted.
Steve Anton11358fe2018-10-09 15:39:19 -07003402 TestChannel ch1(std::move(port1));
3403 TestChannel ch2(std::move(port2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00003404
3405 // Simulate a connection that succeeds, and then is destroyed.
Guo-wei Shiehbe508a12015-04-06 12:48:47 -07003406 StartConnectAndStopChannels(&ch1, &ch2);
Honghai Zhanga74363c2016-07-28 18:06:15 -07003407 SIMULATED_WAIT(ports_destroyed() > 0, 80, clock);
3408 EXPECT_EQ(0, ports_destroyed());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00003409
Honghai Zhanga74363c2016-07-28 18:06:15 -07003410 // Start the second set of connection and destroy them.
3411 ch1.CreateConnection(GetCandidate(ch2.port()));
Honghai Zhangb5db1ec2016-07-28 13:23:05 -07003412 ch2.CreateConnection(GetCandidate(ch1.port()));
Honghai Zhanga74363c2016-07-28 18:06:15 -07003413 ch1.Stop();
Honghai Zhangb5db1ec2016-07-28 13:23:05 -07003414 ch2.Stop();
Honghai Zhangb5db1ec2016-07-28 13:23:05 -07003415
Honghai Zhanga74363c2016-07-28 18:06:15 -07003416 SIMULATED_WAIT(ports_destroyed() > 0, 80, clock);
3417 EXPECT_EQ(0, ports_destroyed());
3418
3419 // The ports on both sides should be destroyed after timeout.
3420 EXPECT_TRUE_SIMULATED_WAIT(ports_destroyed() == 2, 30, clock);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00003421}
honghaizd0b31432015-09-30 12:42:17 -07003422
Honghai Zhanga74363c2016-07-28 18:06:15 -07003423// This test case verifies that neither the controlling port nor the controlled
3424// port will time out after connectivity is lost if they are marked as "keep
3425// alive until pruned". They will time out after they are pruned.
3426TEST_F(PortTest, TestPortNotTimeoutUntilPruned) {
3427 rtc::ScopedFakeClock clock;
3428 int timeout_delay = 100;
Steve Anton11358fe2018-10-09 15:39:19 -07003429 auto port1 = CreateUdpPort(kLocalAddr1);
3430 ConnectToSignalDestroyed(port1.get());
Honghai Zhanga74363c2016-07-28 18:06:15 -07003431 port1->set_timeout_delay(timeout_delay); // milliseconds
honghaizd0b31432015-09-30 12:42:17 -07003432 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
3433 port1->SetIceTiebreaker(kTiebreaker1);
3434
Steve Anton11358fe2018-10-09 15:39:19 -07003435 auto port2 = CreateUdpPort(kLocalAddr2);
3436 ConnectToSignalDestroyed(port2.get());
Honghai Zhanga74363c2016-07-28 18:06:15 -07003437 port2->set_timeout_delay(timeout_delay); // milliseconds
honghaizd0b31432015-09-30 12:42:17 -07003438 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
3439 port2->SetIceTiebreaker(kTiebreaker2);
honghaizd0b31432015-09-30 12:42:17 -07003440 // The connection must not be destroyed before a connection is attempted.
Honghai Zhanga74363c2016-07-28 18:06:15 -07003441 EXPECT_EQ(0, ports_destroyed());
honghaizd0b31432015-09-30 12:42:17 -07003442
3443 port1->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
3444 port2->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
3445
Honghai Zhanga74363c2016-07-28 18:06:15 -07003446 // Set up channels and keep the port alive.
Steve Anton11358fe2018-10-09 15:39:19 -07003447 TestChannel ch1(std::move(port1));
3448 TestChannel ch2(std::move(port2));
Honghai Zhanga74363c2016-07-28 18:06:15 -07003449 // Simulate a connection that succeeds, and then is destroyed. But ports
3450 // are kept alive. Ports won't be destroyed.
honghaizd0b31432015-09-30 12:42:17 -07003451 StartConnectAndStopChannels(&ch1, &ch2);
Steve Anton11358fe2018-10-09 15:39:19 -07003452 ch1.port()->KeepAliveUntilPruned();
3453 ch2.port()->KeepAliveUntilPruned();
Honghai Zhanga74363c2016-07-28 18:06:15 -07003454 SIMULATED_WAIT(ports_destroyed() > 0, 150, clock);
3455 EXPECT_EQ(0, ports_destroyed());
honghaizd0b31432015-09-30 12:42:17 -07003456
Honghai Zhanga74363c2016-07-28 18:06:15 -07003457 // If they are pruned now, they will be destroyed right away.
Steve Anton11358fe2018-10-09 15:39:19 -07003458 ch1.port()->Prune();
3459 ch2.port()->Prune();
Honghai Zhanga74363c2016-07-28 18:06:15 -07003460 // The ports on both sides should be destroyed after timeout.
3461 EXPECT_TRUE_SIMULATED_WAIT(ports_destroyed() == 2, 1, clock);
honghaizd0b31432015-09-30 12:42:17 -07003462}
Honghai Zhangf9945b22015-12-15 12:20:13 -08003463
3464TEST_F(PortTest, TestSupportsProtocol) {
Steve Anton11358fe2018-10-09 15:39:19 -07003465 auto udp_port = CreateUdpPort(kLocalAddr1);
Honghai Zhangf9945b22015-12-15 12:20:13 -08003466 EXPECT_TRUE(udp_port->SupportsProtocol(UDP_PROTOCOL_NAME));
3467 EXPECT_FALSE(udp_port->SupportsProtocol(TCP_PROTOCOL_NAME));
3468
Steve Anton11358fe2018-10-09 15:39:19 -07003469 auto stun_port = CreateStunPort(kLocalAddr1, nat_socket_factory1());
Honghai Zhangf9945b22015-12-15 12:20:13 -08003470 EXPECT_TRUE(stun_port->SupportsProtocol(UDP_PROTOCOL_NAME));
3471 EXPECT_FALSE(stun_port->SupportsProtocol(TCP_PROTOCOL_NAME));
3472
Steve Anton11358fe2018-10-09 15:39:19 -07003473 auto tcp_port = CreateTcpPort(kLocalAddr1);
Honghai Zhangf9945b22015-12-15 12:20:13 -08003474 EXPECT_TRUE(tcp_port->SupportsProtocol(TCP_PROTOCOL_NAME));
3475 EXPECT_TRUE(tcp_port->SupportsProtocol(SSLTCP_PROTOCOL_NAME));
3476 EXPECT_FALSE(tcp_port->SupportsProtocol(UDP_PROTOCOL_NAME));
3477
Steve Anton11358fe2018-10-09 15:39:19 -07003478 auto turn_port =
3479 CreateTurnPort(kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP);
Honghai Zhangf9945b22015-12-15 12:20:13 -08003480 EXPECT_TRUE(turn_port->SupportsProtocol(UDP_PROTOCOL_NAME));
3481 EXPECT_FALSE(turn_port->SupportsProtocol(TCP_PROTOCOL_NAME));
3482}
Taylor Brandstettera1c30352016-05-13 08:15:11 -07003483
3484// Test that SetIceParameters updates the component, ufrag and password
3485// on both the port itself and its candidates.
3486TEST_F(PortTest, TestSetIceParameters) {
Steve Anton11358fe2018-10-09 15:39:19 -07003487 auto port = CreateTestPort(kLocalAddr1, "ufrag1", "password1");
Taylor Brandstettera1c30352016-05-13 08:15:11 -07003488 port->PrepareAddress();
3489 EXPECT_EQ(1UL, port->Candidates().size());
3490 port->SetIceParameters(1, "ufrag2", "password2");
3491 EXPECT_EQ(1, port->component());
3492 EXPECT_EQ("ufrag2", port->username_fragment());
3493 EXPECT_EQ("password2", port->password());
3494 const Candidate& candidate = port->Candidates()[0];
3495 EXPECT_EQ(1, candidate.component());
3496 EXPECT_EQ("ufrag2", candidate.username());
3497 EXPECT_EQ("password2", candidate.password());
3498}
honghaiz36f50e82016-06-01 15:57:03 -07003499
3500TEST_F(PortTest, TestAddConnectionWithSameAddress) {
Steve Anton11358fe2018-10-09 15:39:19 -07003501 auto port = CreateTestPort(kLocalAddr1, "ufrag1", "password1");
honghaiz36f50e82016-06-01 15:57:03 -07003502 port->PrepareAddress();
3503 EXPECT_EQ(1u, port->Candidates().size());
3504 rtc::SocketAddress address("1.1.1.1", 5000);
3505 cricket::Candidate candidate(1, "udp", address, 0, "", "", "relay", 0, "");
3506 cricket::Connection* conn1 =
3507 port->CreateConnection(candidate, Port::ORIGIN_MESSAGE);
3508 cricket::Connection* conn_in_use = port->GetConnection(address);
3509 EXPECT_EQ(conn1, conn_in_use);
3510 EXPECT_EQ(0u, conn_in_use->remote_candidate().generation());
3511
3512 // Creating with a candidate with the same address again will get us a
3513 // different connection with the new candidate.
3514 candidate.set_generation(2);
3515 cricket::Connection* conn2 =
3516 port->CreateConnection(candidate, Port::ORIGIN_MESSAGE);
3517 EXPECT_NE(conn1, conn2);
3518 conn_in_use = port->GetConnection(address);
3519 EXPECT_EQ(conn2, conn_in_use);
3520 EXPECT_EQ(2u, conn_in_use->remote_candidate().generation());
3521
3522 // Make sure the new connection was not deleted.
3523 rtc::Thread::Current()->ProcessMessages(300);
3524 EXPECT_TRUE(port->GetConnection(address) != nullptr);
3525}
Steve Antonbabf9172017-11-29 10:19:02 -08003526
Jonas Orelandef60c2b2020-03-26 15:10:39 +01003527// TODO(webrtc:11463) : Move Connection tests into separate unit test
3528// splitting out shared test code as needed.
3529
3530class ConnectionTest : public PortTest {
3531 public:
3532 ConnectionTest() {
3533 lport_ = CreateTestPort(kLocalAddr1, "lfrag", "lpass");
3534 rport_ = CreateTestPort(kLocalAddr2, "rfrag", "rpass");
3535 lport_->SetIceRole(cricket::ICEROLE_CONTROLLING);
3536 lport_->SetIceTiebreaker(kTiebreaker1);
3537 rport_->SetIceRole(cricket::ICEROLE_CONTROLLED);
3538 rport_->SetIceTiebreaker(kTiebreaker2);
3539
3540 lport_->PrepareAddress();
3541 rport_->PrepareAddress();
3542 }
3543
3544 rtc::ScopedFakeClock clock_;
3545 int num_state_changes_ = 0;
3546
3547 Connection* CreateConnection(IceRole role) {
3548 Connection* conn;
3549 if (role == cricket::ICEROLE_CONTROLLING) {
3550 conn = lport_->CreateConnection(rport_->Candidates()[0],
3551 Port::ORIGIN_MESSAGE);
3552 } else {
3553 conn = rport_->CreateConnection(lport_->Candidates()[0],
3554 Port::ORIGIN_MESSAGE);
3555 }
3556 conn->SignalStateChange.connect(this,
3557 &ConnectionTest::OnConnectionStateChange);
3558 return conn;
3559 }
3560
3561 void SendPingAndCaptureReply(Connection* lconn,
3562 Connection* rconn,
3563 int64_t ms,
3564 rtc::BufferT<uint8_t>* reply) {
3565 TestPort* lport =
3566 lconn->PortForTest() == lport_.get() ? lport_.get() : rport_.get();
3567 TestPort* rport =
3568 rconn->PortForTest() == rport_.get() ? rport_.get() : lport_.get();
3569 lconn->Ping(rtc::TimeMillis());
3570 ASSERT_TRUE_WAIT(lport->last_stun_msg(), kDefaultTimeout);
3571 ASSERT_TRUE(lport->last_stun_buf());
3572 rconn->OnReadPacket(lport->last_stun_buf()->data<char>(),
3573 lport->last_stun_buf()->size(),
3574 /* packet_time_us */ -1);
3575 clock_.AdvanceTime(webrtc::TimeDelta::Millis(ms));
3576 ASSERT_TRUE_WAIT(rport->last_stun_msg(), kDefaultTimeout);
3577 ASSERT_TRUE(rport->last_stun_buf());
3578 *reply = std::move(*rport->last_stun_buf());
3579 }
3580
3581 void SendPingAndReceiveResponse(Connection* lconn,
3582 Connection* rconn,
3583 int64_t ms) {
3584 rtc::BufferT<uint8_t> reply;
3585 SendPingAndCaptureReply(lconn, rconn, ms, &reply);
3586 lconn->OnReadPacket(reply.data<char>(), reply.size(),
3587 /* packet_time_us */ -1);
3588 }
3589
3590 void OnConnectionStateChange(Connection* connection) { num_state_changes_++; }
3591
3592 private:
3593 std::unique_ptr<TestPort> lport_;
3594 std::unique_ptr<TestPort> rport_;
3595};
3596
3597TEST_F(ConnectionTest, ConnectionForgetLearnedState) {
3598 Connection* lconn = CreateConnection(ICEROLE_CONTROLLING);
3599 Connection* rconn = CreateConnection(ICEROLE_CONTROLLED);
3600
3601 EXPECT_FALSE(lconn->writable());
3602 EXPECT_FALSE(lconn->receiving());
3603 EXPECT_TRUE(std::isnan(lconn->GetRttEstimate().GetAverage()));
3604 EXPECT_EQ(lconn->GetRttEstimate().GetVariance(),
3605 std::numeric_limits<double>::infinity());
3606
3607 SendPingAndReceiveResponse(lconn, rconn, 10);
3608
3609 EXPECT_TRUE(lconn->writable());
3610 EXPECT_TRUE(lconn->receiving());
3611 EXPECT_EQ(lconn->GetRttEstimate().GetAverage(), 10);
3612 EXPECT_EQ(lconn->GetRttEstimate().GetVariance(),
3613 std::numeric_limits<double>::infinity());
3614
3615 SendPingAndReceiveResponse(lconn, rconn, 11);
3616
3617 EXPECT_TRUE(lconn->writable());
3618 EXPECT_TRUE(lconn->receiving());
3619 EXPECT_NEAR(lconn->GetRttEstimate().GetAverage(), 10, 0.5);
3620 EXPECT_LT(lconn->GetRttEstimate().GetVariance(),
3621 std::numeric_limits<double>::infinity());
3622
3623 lconn->ForgetLearnedState();
3624
3625 EXPECT_FALSE(lconn->writable());
3626 EXPECT_FALSE(lconn->receiving());
3627 EXPECT_TRUE(std::isnan(lconn->GetRttEstimate().GetAverage()));
3628 EXPECT_EQ(lconn->GetRttEstimate().GetVariance(),
3629 std::numeric_limits<double>::infinity());
3630}
3631
3632TEST_F(ConnectionTest, ConnectionForgetLearnedStateDiscardsPendingPings) {
3633 Connection* lconn = CreateConnection(ICEROLE_CONTROLLING);
3634 Connection* rconn = CreateConnection(ICEROLE_CONTROLLED);
3635
3636 SendPingAndReceiveResponse(lconn, rconn, 10);
3637
3638 EXPECT_TRUE(lconn->writable());
3639 EXPECT_TRUE(lconn->receiving());
3640
3641 rtc::BufferT<uint8_t> reply;
3642 SendPingAndCaptureReply(lconn, rconn, 10, &reply);
3643
3644 lconn->ForgetLearnedState();
3645
3646 EXPECT_FALSE(lconn->writable());
3647 EXPECT_FALSE(lconn->receiving());
3648
3649 lconn->OnReadPacket(reply.data<char>(), reply.size(),
3650 /* packet_time_us */ -1);
3651
3652 // That reply was discarded due to the ForgetLearnedState() while it was
3653 // outstanding.
3654 EXPECT_FALSE(lconn->writable());
3655 EXPECT_FALSE(lconn->receiving());
3656
3657 // But sending a new ping and getting a reply works.
3658 SendPingAndReceiveResponse(lconn, rconn, 11);
3659 EXPECT_TRUE(lconn->writable());
3660 EXPECT_TRUE(lconn->receiving());
3661}
3662
3663TEST_F(ConnectionTest, ConnectionForgetLearnedStateDoesNotTriggerStateChange) {
3664 Connection* lconn = CreateConnection(ICEROLE_CONTROLLING);
3665 Connection* rconn = CreateConnection(ICEROLE_CONTROLLED);
3666
3667 EXPECT_EQ(num_state_changes_, 0);
3668 SendPingAndReceiveResponse(lconn, rconn, 10);
3669
3670 EXPECT_TRUE(lconn->writable());
3671 EXPECT_TRUE(lconn->receiving());
3672 EXPECT_EQ(num_state_changes_, 2);
3673
3674 lconn->ForgetLearnedState();
3675
3676 EXPECT_FALSE(lconn->writable());
3677 EXPECT_FALSE(lconn->receiving());
3678 EXPECT_EQ(num_state_changes_, 2);
3679}
3680
Steve Antonbabf9172017-11-29 10:19:02 -08003681} // namespace cricket