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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
11#include "webrtc/p2p/base/basicpacketsocketfactory.h"
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000012#include "webrtc/p2p/base/relayport.h"
13#include "webrtc/p2p/base/stunport.h"
14#include "webrtc/p2p/base/tcpport.h"
15#include "webrtc/p2p/base/testrelayserver.h"
16#include "webrtc/p2p/base/teststunserver.h"
17#include "webrtc/p2p/base/testturnserver.h"
18#include "webrtc/p2p/base/transport.h"
19#include "webrtc/p2p/base/turnport.h"
20#include "webrtc/base/crc32.h"
21#include "webrtc/base/gunit.h"
22#include "webrtc/base/helpers.h"
23#include "webrtc/base/logging.h"
24#include "webrtc/base/natserver.h"
25#include "webrtc/base/natsocketfactory.h"
26#include "webrtc/base/physicalsocketserver.h"
27#include "webrtc/base/scoped_ptr.h"
28#include "webrtc/base/socketaddress.h"
29#include "webrtc/base/ssladapter.h"
30#include "webrtc/base/stringutils.h"
31#include "webrtc/base/thread.h"
32#include "webrtc/base/virtualsocketserver.h"
33
34using rtc::AsyncPacketSocket;
35using rtc::ByteBuffer;
36using rtc::NATType;
37using rtc::NAT_OPEN_CONE;
38using rtc::NAT_ADDR_RESTRICTED;
39using rtc::NAT_PORT_RESTRICTED;
40using rtc::NAT_SYMMETRIC;
41using rtc::PacketSocketFactory;
42using rtc::scoped_ptr;
43using rtc::Socket;
44using rtc::SocketAddress;
45using namespace cricket;
46
47static const int kTimeout = 1000;
48static const SocketAddress kLocalAddr1("192.168.1.2", 0);
49static const SocketAddress kLocalAddr2("192.168.1.3", 0);
deadbeefc5d0d952015-07-16 10:22:21 -070050static const SocketAddress kNatAddr1("77.77.77.77", rtc::NAT_SERVER_UDP_PORT);
51static const SocketAddress kNatAddr2("88.88.88.88", rtc::NAT_SERVER_UDP_PORT);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000052static const SocketAddress kStunAddr("99.99.99.1", STUN_SERVER_PORT);
53static const SocketAddress kRelayUdpIntAddr("99.99.99.2", 5000);
54static const SocketAddress kRelayUdpExtAddr("99.99.99.3", 5001);
55static const SocketAddress kRelayTcpIntAddr("99.99.99.2", 5002);
56static const SocketAddress kRelayTcpExtAddr("99.99.99.3", 5003);
57static const SocketAddress kRelaySslTcpIntAddr("99.99.99.2", 5004);
58static const SocketAddress kRelaySslTcpExtAddr("99.99.99.3", 5005);
59static const SocketAddress kTurnUdpIntAddr("99.99.99.4", STUN_SERVER_PORT);
60static const SocketAddress kTurnUdpExtAddr("99.99.99.5", 0);
61static const RelayCredentials kRelayCredentials("test", "test");
62
63// TODO: Update these when RFC5245 is completely supported.
64// Magic value of 30 is from RFC3484, for IPv4 addresses.
65static const uint32 kDefaultPrflxPriority = ICE_TYPE_PREFERENCE_PRFLX << 24 |
66 30 << 8 | (256 - ICE_CANDIDATE_COMPONENT_DEFAULT);
guoweisd12140a2015-09-10 13:32:11 -070067static const int STUN_ERROR_BAD_REQUEST_AS_GICE =
68 STUN_ERROR_BAD_REQUEST / 256 * 100 + STUN_ERROR_BAD_REQUEST % 256;
69static const int STUN_ERROR_UNAUTHORIZED_AS_GICE =
70 STUN_ERROR_UNAUTHORIZED / 256 * 100 + STUN_ERROR_UNAUTHORIZED % 256;
71static const int STUN_ERROR_SERVER_ERROR_AS_GICE =
72 STUN_ERROR_SERVER_ERROR / 256 * 100 + STUN_ERROR_SERVER_ERROR % 256;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000073
74static const int kTiebreaker1 = 11111;
75static const int kTiebreaker2 = 22222;
76
Guo-wei Shiehbe508a12015-04-06 12:48:47 -070077static const char* data = "ABCDEFGHIJKLMNOPQRSTUVWXYZ1234567890";
78
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000079static Candidate GetCandidate(Port* port) {
guoweisd12140a2015-09-10 13:32:11 -070080 assert(port->Candidates().size() == 1);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +000081 return port->Candidates()[0];
82}
83
84static SocketAddress GetAddress(Port* port) {
85 return GetCandidate(port).address();
86}
87
88static IceMessage* CopyStunMessage(const IceMessage* src) {
89 IceMessage* dst = new IceMessage();
90 ByteBuffer buf;
91 src->Write(&buf);
92 dst->Read(&buf);
93 return dst;
94}
95
96static bool WriteStunMessage(const StunMessage* msg, ByteBuffer* buf) {
97 buf->Resize(0); // clear out any existing buffer contents
98 return msg->Write(buf);
99}
100
101// Stub port class for testing STUN generation and processing.
102class TestPort : public Port {
103 public:
pkasting@chromium.org332331f2014-11-06 20:19:22 +0000104 TestPort(rtc::Thread* thread,
105 const std::string& type,
106 rtc::PacketSocketFactory* factory,
107 rtc::Network* network,
108 const rtc::IPAddress& ip,
109 uint16 min_port,
110 uint16 max_port,
111 const std::string& username_fragment,
112 const std::string& password)
113 : Port(thread, type, factory, network, ip, min_port, max_port,
114 username_fragment, password) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000115 }
116 ~TestPort() {}
117
118 // Expose GetStunMessage so that we can test it.
119 using cricket::Port::GetStunMessage;
120
121 // The last StunMessage that was sent on this Port.
122 // TODO: Make these const; requires changes to SendXXXXResponse.
123 ByteBuffer* last_stun_buf() { return last_stun_buf_.get(); }
124 IceMessage* last_stun_msg() { return last_stun_msg_.get(); }
125 int last_stun_error_code() {
126 int code = 0;
127 if (last_stun_msg_) {
128 const StunErrorCodeAttribute* error_attr = last_stun_msg_->GetErrorCode();
129 if (error_attr) {
130 code = error_attr->code();
131 }
132 }
133 return code;
134 }
135
136 virtual void PrepareAddress() {
137 rtc::SocketAddress addr(ip(), min_port());
Guo-wei Shieh3d564c12015-08-19 16:51:15 -0700138 AddAddress(addr, addr, rtc::SocketAddress(), "udp", "", "", Type(),
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000139 ICE_TYPE_PREFERENCE_HOST, 0, true);
140 }
141
142 // Exposed for testing candidate building.
143 void AddCandidateAddress(const rtc::SocketAddress& addr) {
Guo-wei Shieh3d564c12015-08-19 16:51:15 -0700144 AddAddress(addr, addr, rtc::SocketAddress(), "udp", "", "", Type(),
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000145 type_preference_, 0, false);
146 }
147 void AddCandidateAddress(const rtc::SocketAddress& addr,
148 const rtc::SocketAddress& base_address,
149 const std::string& type,
150 int type_preference,
151 bool final) {
Guo-wei Shieh3d564c12015-08-19 16:51:15 -0700152 AddAddress(addr, base_address, rtc::SocketAddress(), "udp", "", "", type,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000153 type_preference, 0, final);
154 }
155
156 virtual Connection* CreateConnection(const Candidate& remote_candidate,
157 CandidateOrigin origin) {
158 Connection* conn = new ProxyConnection(this, 0, remote_candidate);
159 AddConnection(conn);
160 // Set use-candidate attribute flag as this will add USE-CANDIDATE attribute
161 // in STUN binding requests.
162 conn->set_use_candidate_attr(true);
163 return conn;
164 }
165 virtual int SendTo(
166 const void* data, size_t size, const rtc::SocketAddress& addr,
167 const rtc::PacketOptions& options, bool payload) {
168 if (!payload) {
169 IceMessage* msg = new IceMessage;
170 ByteBuffer* buf = new ByteBuffer(static_cast<const char*>(data), size);
171 ByteBuffer::ReadPosition pos(buf->GetReadPosition());
172 if (!msg->Read(buf)) {
173 delete msg;
174 delete buf;
175 return -1;
176 }
177 buf->SetReadPosition(pos);
178 last_stun_buf_.reset(buf);
179 last_stun_msg_.reset(msg);
180 }
181 return static_cast<int>(size);
182 }
183 virtual int SetOption(rtc::Socket::Option opt, int value) {
184 return 0;
185 }
186 virtual int GetOption(rtc::Socket::Option opt, int* value) {
187 return -1;
188 }
189 virtual int GetError() {
190 return 0;
191 }
192 void Reset() {
193 last_stun_buf_.reset();
194 last_stun_msg_.reset();
195 }
196 void set_type_preference(int type_preference) {
197 type_preference_ = type_preference;
198 }
199
200 private:
201 rtc::scoped_ptr<ByteBuffer> last_stun_buf_;
202 rtc::scoped_ptr<IceMessage> last_stun_msg_;
203 int type_preference_;
204};
205
206class TestChannel : public sigslot::has_slots<> {
207 public:
208 // Takes ownership of |p1| (but not |p2|).
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700209 TestChannel(Port* p1)
210 : ice_mode_(ICEMODE_FULL),
211 port_(p1),
212 complete_count_(0),
213 conn_(NULL),
214 remote_request_(),
215 nominated_(false) {
216 port_->SignalPortComplete.connect(this, &TestChannel::OnPortComplete);
217 port_->SignalUnknownAddress.connect(this, &TestChannel::OnUnknownAddress);
218 port_->SignalDestroyed.connect(this, &TestChannel::OnSrcPortDestroyed);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000219 }
220
221 int complete_count() { return complete_count_; }
222 Connection* conn() { return conn_; }
223 const SocketAddress& remote_address() { return remote_address_; }
224 const std::string remote_fragment() { return remote_frag_; }
225
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700226 void Start() { port_->PrepareAddress(); }
227 void CreateConnection(const Candidate& remote_candidate) {
228 conn_ = port_->CreateConnection(remote_candidate, Port::ORIGIN_MESSAGE);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000229 IceMode remote_ice_mode =
230 (ice_mode_ == ICEMODE_FULL) ? ICEMODE_LITE : ICEMODE_FULL;
231 conn_->set_remote_ice_mode(remote_ice_mode);
232 conn_->set_use_candidate_attr(remote_ice_mode == ICEMODE_FULL);
233 conn_->SignalStateChange.connect(
234 this, &TestChannel::OnConnectionStateChange);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700235 conn_->SignalDestroyed.connect(this, &TestChannel::OnDestroyed);
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700236 conn_->SignalReadyToSend.connect(this,
237 &TestChannel::OnConnectionReadyToSend);
238 connection_ready_to_send_ = false;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000239 }
240 void OnConnectionStateChange(Connection* conn) {
241 if (conn->write_state() == Connection::STATE_WRITABLE) {
242 conn->set_use_candidate_attr(true);
243 nominated_ = true;
244 }
245 }
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700246 void AcceptConnection(const Candidate& remote_candidate) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000247 ASSERT_TRUE(remote_request_.get() != NULL);
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700248 Candidate c = remote_candidate;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000249 c.set_address(remote_address_);
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700250 conn_ = port_->CreateConnection(c, Port::ORIGIN_MESSAGE);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700251 conn_->SignalDestroyed.connect(this, &TestChannel::OnDestroyed);
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700252 port_->SendBindingResponse(remote_request_.get(), remote_address_);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000253 remote_request_.reset();
254 }
255 void Ping() {
256 Ping(0);
257 }
258 void Ping(uint32 now) {
259 conn_->Ping(now);
260 }
261 void Stop() {
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700262 if (conn_) {
263 conn_->Destroy();
264 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000265 }
266
267 void OnPortComplete(Port* port) {
268 complete_count_++;
269 }
270 void SetIceMode(IceMode ice_mode) {
271 ice_mode_ = ice_mode;
272 }
273
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700274 int SendData(const char* data, size_t len) {
275 rtc::PacketOptions options;
276 return conn_->Send(data, len, options);
277 }
278
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000279 void OnUnknownAddress(PortInterface* port, const SocketAddress& addr,
280 ProtocolType proto,
281 IceMessage* msg, const std::string& rf,
282 bool /*port_muxed*/) {
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700283 ASSERT_EQ(port_.get(), port);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000284 if (!remote_address_.IsNil()) {
285 ASSERT_EQ(remote_address_, addr);
286 }
guoweisd12140a2015-09-10 13:32:11 -0700287 // MI and PRIORITY attribute should be present in ping requests when port
288 // is in ICEPROTO_RFC5245 mode.
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000289 const cricket::StunUInt32Attribute* priority_attr =
290 msg->GetUInt32(STUN_ATTR_PRIORITY);
291 const cricket::StunByteStringAttribute* mi_attr =
292 msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY);
293 const cricket::StunUInt32Attribute* fingerprint_attr =
294 msg->GetUInt32(STUN_ATTR_FINGERPRINT);
guoweisd12140a2015-09-10 13:32:11 -0700295 if (port_->IceProtocol() == cricket::ICEPROTO_RFC5245) {
296 EXPECT_TRUE(priority_attr != NULL);
297 EXPECT_TRUE(mi_attr != NULL);
298 EXPECT_TRUE(fingerprint_attr != NULL);
299 } else {
300 EXPECT_TRUE(priority_attr == NULL);
301 EXPECT_TRUE(mi_attr == NULL);
302 EXPECT_TRUE(fingerprint_attr == NULL);
303 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000304 remote_address_ = addr;
305 remote_request_.reset(CopyStunMessage(msg));
306 remote_frag_ = rf;
307 }
308
309 void OnDestroyed(Connection* conn) {
310 ASSERT_EQ(conn_, conn);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700311 LOG(INFO) << "OnDestroy connection " << conn << " deleted";
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000312 conn_ = NULL;
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700313 // When the connection is destroyed, also clear these fields so future
314 // connections are possible.
315 remote_request_.reset();
316 remote_address_.Clear();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000317 }
318
319 void OnSrcPortDestroyed(PortInterface* port) {
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700320 Port* destroyed_src = port_.release();
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000321 ASSERT_EQ(destroyed_src, port);
322 }
323
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700324 Port* port() { return port_.get(); }
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700325
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000326 bool nominated() const { return nominated_; }
327
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700328 void set_connection_ready_to_send(bool ready) {
329 connection_ready_to_send_ = ready;
330 }
331 bool connection_ready_to_send() const {
332 return connection_ready_to_send_;
333 }
334
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000335 private:
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700336 // ReadyToSend will only issue after a Connection recovers from EWOULDBLOCK.
337 void OnConnectionReadyToSend(Connection* conn) {
338 ASSERT_EQ(conn, conn_);
339 connection_ready_to_send_ = true;
340 }
341
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000342 IceMode ice_mode_;
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700343 rtc::scoped_ptr<Port> port_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000344
345 int complete_count_;
346 Connection* conn_;
347 SocketAddress remote_address_;
348 rtc::scoped_ptr<StunMessage> remote_request_;
349 std::string remote_frag_;
350 bool nominated_;
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700351 bool connection_ready_to_send_ = false;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000352};
353
354class PortTest : public testing::Test, public sigslot::has_slots<> {
355 public:
356 PortTest()
357 : main_(rtc::Thread::Current()),
358 pss_(new rtc::PhysicalSocketServer),
359 ss_(new rtc::VirtualSocketServer(pss_.get())),
360 ss_scope_(ss_.get()),
361 network_("unittest", "unittest", rtc::IPAddress(INADDR_ANY), 32),
362 socket_factory_(rtc::Thread::Current()),
deadbeefc5d0d952015-07-16 10:22:21 -0700363 nat_factory1_(ss_.get(), kNatAddr1, SocketAddress()),
364 nat_factory2_(ss_.get(), kNatAddr2, SocketAddress()),
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000365 nat_socket_factory1_(&nat_factory1_),
366 nat_socket_factory2_(&nat_factory2_),
367 stun_server_(TestStunServer::Create(main_, kStunAddr)),
368 turn_server_(main_, kTurnUdpIntAddr, kTurnUdpExtAddr),
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700369 relay_server_(main_,
370 kRelayUdpIntAddr,
371 kRelayUdpExtAddr,
372 kRelayTcpIntAddr,
373 kRelayTcpExtAddr,
374 kRelaySslTcpIntAddr,
375 kRelaySslTcpExtAddr),
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000376 username_(rtc::CreateRandomString(ICE_UFRAG_LENGTH)),
377 password_(rtc::CreateRandomString(ICE_PWD_LENGTH)),
guoweisd12140a2015-09-10 13:32:11 -0700378 ice_protocol_(cricket::ICEPROTO_GOOGLE),
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000379 role_conflict_(false),
380 destroyed_(false) {
381 network_.AddIP(rtc::IPAddress(INADDR_ANY));
382 }
383
384 protected:
385 void TestLocalToLocal() {
386 Port* port1 = CreateUdpPort(kLocalAddr1);
387 Port* port2 = CreateUdpPort(kLocalAddr2);
388 TestConnectivity("udp", port1, "udp", port2, true, true, true, true);
389 }
390 void TestLocalToStun(NATType ntype) {
391 Port* port1 = CreateUdpPort(kLocalAddr1);
392 nat_server2_.reset(CreateNatServer(kNatAddr2, ntype));
393 Port* port2 = CreateStunPort(kLocalAddr2, &nat_socket_factory2_);
394 TestConnectivity("udp", port1, StunName(ntype), port2,
395 ntype == NAT_OPEN_CONE, true,
396 ntype != NAT_SYMMETRIC, true);
397 }
398 void TestLocalToRelay(RelayType rtype, ProtocolType proto) {
399 Port* port1 = CreateUdpPort(kLocalAddr1);
400 Port* port2 = CreateRelayPort(kLocalAddr2, rtype, proto, PROTO_UDP);
401 TestConnectivity("udp", port1, RelayName(rtype, proto), port2,
402 rtype == RELAY_GTURN, true, true, true);
403 }
404 void TestStunToLocal(NATType ntype) {
405 nat_server1_.reset(CreateNatServer(kNatAddr1, ntype));
406 Port* port1 = CreateStunPort(kLocalAddr1, &nat_socket_factory1_);
407 Port* port2 = CreateUdpPort(kLocalAddr2);
408 TestConnectivity(StunName(ntype), port1, "udp", port2,
409 true, ntype != NAT_SYMMETRIC, true, true);
410 }
411 void TestStunToStun(NATType ntype1, NATType ntype2) {
412 nat_server1_.reset(CreateNatServer(kNatAddr1, ntype1));
413 Port* port1 = CreateStunPort(kLocalAddr1, &nat_socket_factory1_);
414 nat_server2_.reset(CreateNatServer(kNatAddr2, ntype2));
415 Port* port2 = CreateStunPort(kLocalAddr2, &nat_socket_factory2_);
416 TestConnectivity(StunName(ntype1), port1, StunName(ntype2), port2,
417 ntype2 == NAT_OPEN_CONE,
418 ntype1 != NAT_SYMMETRIC, ntype2 != NAT_SYMMETRIC,
419 ntype1 + ntype2 < (NAT_PORT_RESTRICTED + NAT_SYMMETRIC));
420 }
421 void TestStunToRelay(NATType ntype, RelayType rtype, ProtocolType proto) {
422 nat_server1_.reset(CreateNatServer(kNatAddr1, ntype));
423 Port* port1 = CreateStunPort(kLocalAddr1, &nat_socket_factory1_);
424 Port* port2 = CreateRelayPort(kLocalAddr2, rtype, proto, PROTO_UDP);
425 TestConnectivity(StunName(ntype), port1, RelayName(rtype, proto), port2,
426 rtype == RELAY_GTURN, ntype != NAT_SYMMETRIC, true, true);
427 }
428 void TestTcpToTcp() {
429 Port* port1 = CreateTcpPort(kLocalAddr1);
430 Port* port2 = CreateTcpPort(kLocalAddr2);
431 TestConnectivity("tcp", port1, "tcp", port2, true, false, true, true);
432 }
433 void TestTcpToRelay(RelayType rtype, ProtocolType proto) {
434 Port* port1 = CreateTcpPort(kLocalAddr1);
435 Port* port2 = CreateRelayPort(kLocalAddr2, rtype, proto, PROTO_TCP);
436 TestConnectivity("tcp", port1, RelayName(rtype, proto), port2,
437 rtype == RELAY_GTURN, false, true, true);
438 }
439 void TestSslTcpToRelay(RelayType rtype, ProtocolType proto) {
440 Port* port1 = CreateTcpPort(kLocalAddr1);
441 Port* port2 = CreateRelayPort(kLocalAddr2, rtype, proto, PROTO_SSLTCP);
442 TestConnectivity("ssltcp", port1, RelayName(rtype, proto), port2,
443 rtype == RELAY_GTURN, false, true, true);
444 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000445 // helpers for above functions
446 UDPPort* CreateUdpPort(const SocketAddress& addr) {
447 return CreateUdpPort(addr, &socket_factory_);
448 }
449 UDPPort* CreateUdpPort(const SocketAddress& addr,
450 PacketSocketFactory* socket_factory) {
guoweisd12140a2015-09-10 13:32:11 -0700451 UDPPort* port = UDPPort::Create(main_, socket_factory, &network_,
452 addr.ipaddr(), 0, 0, username_, password_,
453 std::string(), false);
454 port->SetIceProtocolType(ice_protocol_);
455 return port;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000456 }
457 TCPPort* CreateTcpPort(const SocketAddress& addr) {
guoweisd12140a2015-09-10 13:32:11 -0700458 TCPPort* port = CreateTcpPort(addr, &socket_factory_);
459 port->SetIceProtocolType(ice_protocol_);
460 return port;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000461 }
462 TCPPort* CreateTcpPort(const SocketAddress& addr,
463 PacketSocketFactory* socket_factory) {
guoweisd12140a2015-09-10 13:32:11 -0700464 TCPPort* port = TCPPort::Create(main_, socket_factory, &network_,
465 addr.ipaddr(), 0, 0, username_, password_,
466 true);
467 port->SetIceProtocolType(ice_protocol_);
468 return port;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000469 }
470 StunPort* CreateStunPort(const SocketAddress& addr,
471 rtc::PacketSocketFactory* factory) {
472 ServerAddresses stun_servers;
473 stun_servers.insert(kStunAddr);
guoweisd12140a2015-09-10 13:32:11 -0700474 StunPort* port = StunPort::Create(main_, factory, &network_,
475 addr.ipaddr(), 0, 0,
476 username_, password_, stun_servers,
477 std::string());
478 port->SetIceProtocolType(ice_protocol_);
479 return port;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000480 }
481 Port* CreateRelayPort(const SocketAddress& addr, RelayType rtype,
482 ProtocolType int_proto, ProtocolType ext_proto) {
483 if (rtype == RELAY_TURN) {
484 return CreateTurnPort(addr, &socket_factory_, int_proto, ext_proto);
485 } else {
486 return CreateGturnPort(addr, int_proto, ext_proto);
487 }
488 }
489 TurnPort* CreateTurnPort(const SocketAddress& addr,
490 PacketSocketFactory* socket_factory,
491 ProtocolType int_proto, ProtocolType ext_proto) {
492 return CreateTurnPort(addr, socket_factory,
493 int_proto, ext_proto, kTurnUdpIntAddr);
494 }
495 TurnPort* CreateTurnPort(const SocketAddress& addr,
496 PacketSocketFactory* socket_factory,
497 ProtocolType int_proto, ProtocolType ext_proto,
498 const rtc::SocketAddress& server_addr) {
guoweisd12140a2015-09-10 13:32:11 -0700499 TurnPort* port = TurnPort::Create(main_, socket_factory, &network_,
500 addr.ipaddr(), 0, 0,
501 username_, password_, ProtocolAddress(
502 server_addr, PROTO_UDP),
503 kRelayCredentials, 0,
504 std::string());
505 port->SetIceProtocolType(ice_protocol_);
506 return port;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000507 }
508 RelayPort* CreateGturnPort(const SocketAddress& addr,
509 ProtocolType int_proto, ProtocolType ext_proto) {
510 RelayPort* port = CreateGturnPort(addr);
511 SocketAddress addrs[] =
512 { kRelayUdpIntAddr, kRelayTcpIntAddr, kRelaySslTcpIntAddr };
513 port->AddServerAddress(ProtocolAddress(addrs[int_proto], int_proto));
514 return port;
515 }
516 RelayPort* CreateGturnPort(const SocketAddress& addr) {
guoweisd12140a2015-09-10 13:32:11 -0700517 RelayPort* port = RelayPort::Create(main_, &socket_factory_, &network_,
518 addr.ipaddr(), 0, 0,
519 username_, password_);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000520 // TODO: Add an external address for ext_proto, so that the
521 // other side can connect to this port using a non-UDP protocol.
guoweisd12140a2015-09-10 13:32:11 -0700522 port->SetIceProtocolType(ice_protocol_);
523 return port;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000524 }
525 rtc::NATServer* CreateNatServer(const SocketAddress& addr,
526 rtc::NATType type) {
deadbeefc5d0d952015-07-16 10:22:21 -0700527 return new rtc::NATServer(type, ss_.get(), addr, addr, ss_.get(), addr);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000528 }
529 static const char* StunName(NATType type) {
530 switch (type) {
531 case NAT_OPEN_CONE: return "stun(open cone)";
532 case NAT_ADDR_RESTRICTED: return "stun(addr restricted)";
533 case NAT_PORT_RESTRICTED: return "stun(port restricted)";
534 case NAT_SYMMETRIC: return "stun(symmetric)";
535 default: return "stun(?)";
536 }
537 }
538 static const char* RelayName(RelayType type, ProtocolType proto) {
539 if (type == RELAY_TURN) {
540 switch (proto) {
541 case PROTO_UDP: return "turn(udp)";
542 case PROTO_TCP: return "turn(tcp)";
543 case PROTO_SSLTCP: return "turn(ssltcp)";
544 default: return "turn(?)";
545 }
546 } else {
547 switch (proto) {
548 case PROTO_UDP: return "gturn(udp)";
549 case PROTO_TCP: return "gturn(tcp)";
550 case PROTO_SSLTCP: return "gturn(ssltcp)";
551 default: return "gturn(?)";
552 }
553 }
554 }
555
556 void TestCrossFamilyPorts(int type);
557
Peter Thatcherb8b01432015-07-07 16:45:53 -0700558 void ExpectPortsCanConnect(bool can_connect, Port* p1, Port* p2);
559
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000560 // This does all the work and then deletes |port1| and |port2|.
561 void TestConnectivity(const char* name1, Port* port1,
562 const char* name2, Port* port2,
563 bool accept, bool same_addr1,
564 bool same_addr2, bool possible);
565
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700566 // This connects the provided channels which have already started. |ch1|
567 // should have its Connection created (either through CreateConnection() or
568 // TCP reconnecting mechanism before entering this function.
569 void ConnectStartedChannels(TestChannel* ch1, TestChannel* ch2) {
570 ASSERT_TRUE(ch1->conn());
571 EXPECT_TRUE_WAIT(ch1->conn()->connected(), kTimeout); // for TCP connect
572 ch1->Ping();
573 WAIT(!ch2->remote_address().IsNil(), kTimeout);
574
575 // Send a ping from dst to src.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700576 ch2->AcceptConnection(GetCandidate(ch1->port()));
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700577 ch2->Ping();
578 EXPECT_EQ_WAIT(Connection::STATE_WRITABLE, ch2->conn()->write_state(),
579 kTimeout);
580 }
581
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000582 // This connects and disconnects the provided channels in the same sequence as
583 // TestConnectivity with all options set to |true|. It does not delete either
584 // channel.
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700585 void StartConnectAndStopChannels(TestChannel* ch1, TestChannel* ch2) {
586 // Acquire addresses.
587 ch1->Start();
588 ch2->Start();
589
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700590 ch1->CreateConnection(GetCandidate(ch2->port()));
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700591 ConnectStartedChannels(ch1, ch2);
592
593 // Destroy the connections.
594 ch1->Stop();
595 ch2->Stop();
596 }
597
598 // This disconnects both end's Connection and make sure ch2 ready for new
599 // connection.
600 void DisconnectTcpTestChannels(TestChannel* ch1, TestChannel* ch2) {
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700601 TCPConnection* tcp_conn1 = static_cast<TCPConnection*>(ch1->conn());
602 TCPConnection* tcp_conn2 = static_cast<TCPConnection*>(ch2->conn());
603 ASSERT_TRUE(
604 ss_->CloseTcpConnections(tcp_conn1->socket()->GetLocalAddress(),
605 tcp_conn2->socket()->GetLocalAddress()));
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700606
607 // Wait for both OnClose are delivered.
608 EXPECT_TRUE_WAIT(!ch1->conn()->connected(), kTimeout);
609 EXPECT_TRUE_WAIT(!ch2->conn()->connected(), kTimeout);
610
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700611 // Ensure redundant SignalClose events on TcpConnection won't break tcp
612 // reconnection. Chromium will fire SignalClose for all outstanding IPC
613 // packets during reconnection.
614 tcp_conn1->socket()->SignalClose(tcp_conn1->socket(), 0);
615 tcp_conn2->socket()->SignalClose(tcp_conn2->socket(), 0);
616
617 // Speed up destroying ch2's connection such that the test is ready to
618 // accept a new connection from ch1 before ch1's connection destroys itself.
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700619 ch2->conn()->Destroy();
620 EXPECT_TRUE_WAIT(ch2->conn() == NULL, kTimeout);
621 }
622
623 void TestTcpReconnect(bool ping_after_disconnected,
624 bool send_after_disconnected) {
625 Port* port1 = CreateTcpPort(kLocalAddr1);
626 Port* port2 = CreateTcpPort(kLocalAddr2);
627
628 port1->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
629 port2->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
630
631 // Set up channels and ensure both ports will be deleted.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700632 TestChannel ch1(port1);
633 TestChannel ch2(port2);
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700634 EXPECT_EQ(0, ch1.complete_count());
635 EXPECT_EQ(0, ch2.complete_count());
636
637 ch1.Start();
638 ch2.Start();
639 ASSERT_EQ_WAIT(1, ch1.complete_count(), kTimeout);
640 ASSERT_EQ_WAIT(1, ch2.complete_count(), kTimeout);
641
642 // Initial connecting the channel, create connection on channel1.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700643 ch1.CreateConnection(GetCandidate(port2));
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700644 ConnectStartedChannels(&ch1, &ch2);
645
646 // Shorten the timeout period.
647 const int kTcpReconnectTimeout = kTimeout;
648 static_cast<TCPConnection*>(ch1.conn())
649 ->set_reconnection_timeout(kTcpReconnectTimeout);
650 static_cast<TCPConnection*>(ch2.conn())
651 ->set_reconnection_timeout(kTcpReconnectTimeout);
652
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700653 EXPECT_FALSE(ch1.connection_ready_to_send());
654 EXPECT_FALSE(ch2.connection_ready_to_send());
655
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700656 // Once connected, disconnect them.
657 DisconnectTcpTestChannels(&ch1, &ch2);
658
659 if (send_after_disconnected || ping_after_disconnected) {
660 if (send_after_disconnected) {
661 // First SendData after disconnect should fail but will trigger
662 // reconnect.
663 EXPECT_EQ(-1, ch1.SendData(data, static_cast<int>(strlen(data))));
664 }
665
666 if (ping_after_disconnected) {
667 // Ping should trigger reconnect.
668 ch1.Ping();
669 }
670
671 // Wait for channel's outgoing TCPConnection connected.
672 EXPECT_TRUE_WAIT(ch1.conn()->connected(), kTimeout);
673
674 // Verify that we could still connect channels.
675 ConnectStartedChannels(&ch1, &ch2);
Guo-wei Shiehb5940412015-08-24 11:58:03 -0700676 EXPECT_TRUE_WAIT(ch1.connection_ready_to_send(),
677 kTcpReconnectTimeout);
678 // Channel2 is the passive one so a new connection is created during
679 // reconnect. This new connection should never have issued EWOULDBLOCK
680 // hence the connection_ready_to_send() should be false.
681 EXPECT_FALSE(ch2.connection_ready_to_send());
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700682 } else {
683 EXPECT_EQ(ch1.conn()->write_state(), Connection::STATE_WRITABLE);
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700684 // Since the reconnection never happens, the connections should have been
685 // destroyed after the timeout.
686 EXPECT_TRUE_WAIT(!ch1.conn(), kTcpReconnectTimeout + kTimeout);
687 EXPECT_TRUE(!ch2.conn());
Guo-wei Shiehbe508a12015-04-06 12:48:47 -0700688 }
689
690 // Tear down and ensure that goes smoothly.
691 ch1.Stop();
692 ch2.Stop();
693 EXPECT_TRUE_WAIT(ch1.conn() == NULL, kTimeout);
694 EXPECT_TRUE_WAIT(ch2.conn() == NULL, kTimeout);
695 }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000696
guoweisd12140a2015-09-10 13:32:11 -0700697 void SetIceProtocolType(cricket::IceProtocolType protocol) {
698 ice_protocol_ = protocol;
699 }
700
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000701 IceMessage* CreateStunMessage(int type) {
702 IceMessage* msg = new IceMessage();
703 msg->SetType(type);
704 msg->SetTransactionID("TESTTESTTEST");
705 return msg;
706 }
707 IceMessage* CreateStunMessageWithUsername(int type,
708 const std::string& username) {
709 IceMessage* msg = CreateStunMessage(type);
710 msg->AddAttribute(
711 new StunByteStringAttribute(STUN_ATTR_USERNAME, username));
712 return msg;
713 }
714 TestPort* CreateTestPort(const rtc::SocketAddress& addr,
715 const std::string& username,
716 const std::string& password) {
717 TestPort* port = new TestPort(main_, "test", &socket_factory_, &network_,
718 addr.ipaddr(), 0, 0, username, password);
719 port->SignalRoleConflict.connect(this, &PortTest::OnRoleConflict);
720 return port;
721 }
722 TestPort* CreateTestPort(const rtc::SocketAddress& addr,
723 const std::string& username,
724 const std::string& password,
guoweisd12140a2015-09-10 13:32:11 -0700725 cricket::IceProtocolType type,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000726 cricket::IceRole role,
727 int tiebreaker) {
728 TestPort* port = CreateTestPort(addr, username, password);
guoweisd12140a2015-09-10 13:32:11 -0700729 port->SetIceProtocolType(type);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000730 port->SetIceRole(role);
731 port->SetIceTiebreaker(tiebreaker);
732 return port;
733 }
734
735 void OnRoleConflict(PortInterface* port) {
736 role_conflict_ = true;
737 }
738 bool role_conflict() const { return role_conflict_; }
739
740 void ConnectToSignalDestroyed(PortInterface* port) {
741 port->SignalDestroyed.connect(this, &PortTest::OnDestroyed);
742 }
743
744 void OnDestroyed(PortInterface* port) {
745 destroyed_ = true;
746 }
747 bool destroyed() const { return destroyed_; }
748
749 rtc::BasicPacketSocketFactory* nat_socket_factory1() {
750 return &nat_socket_factory1_;
751 }
752
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700753 protected:
754 rtc::VirtualSocketServer* vss() { return ss_.get(); }
755
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000756 private:
757 rtc::Thread* main_;
758 rtc::scoped_ptr<rtc::PhysicalSocketServer> pss_;
759 rtc::scoped_ptr<rtc::VirtualSocketServer> ss_;
760 rtc::SocketServerScope ss_scope_;
761 rtc::Network network_;
762 rtc::BasicPacketSocketFactory socket_factory_;
763 rtc::scoped_ptr<rtc::NATServer> nat_server1_;
764 rtc::scoped_ptr<rtc::NATServer> nat_server2_;
765 rtc::NATSocketFactory nat_factory1_;
766 rtc::NATSocketFactory nat_factory2_;
767 rtc::BasicPacketSocketFactory nat_socket_factory1_;
768 rtc::BasicPacketSocketFactory nat_socket_factory2_;
769 scoped_ptr<TestStunServer> stun_server_;
770 TestTurnServer turn_server_;
771 TestRelayServer relay_server_;
772 std::string username_;
773 std::string password_;
guoweisd12140a2015-09-10 13:32:11 -0700774 cricket::IceProtocolType ice_protocol_;
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000775 bool role_conflict_;
776 bool destroyed_;
777};
778
779void PortTest::TestConnectivity(const char* name1, Port* port1,
780 const char* name2, Port* port2,
781 bool accept, bool same_addr1,
782 bool same_addr2, bool possible) {
783 LOG(LS_INFO) << "Test: " << name1 << " to " << name2 << ": ";
784 port1->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
785 port2->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
786
787 // Set up channels and ensure both ports will be deleted.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700788 TestChannel ch1(port1);
789 TestChannel ch2(port2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000790 EXPECT_EQ(0, ch1.complete_count());
791 EXPECT_EQ(0, ch2.complete_count());
792
793 // Acquire addresses.
794 ch1.Start();
795 ch2.Start();
796 ASSERT_EQ_WAIT(1, ch1.complete_count(), kTimeout);
797 ASSERT_EQ_WAIT(1, ch2.complete_count(), kTimeout);
798
799 // Send a ping from src to dst. This may or may not make it.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700800 ch1.CreateConnection(GetCandidate(port2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000801 ASSERT_TRUE(ch1.conn() != NULL);
802 EXPECT_TRUE_WAIT(ch1.conn()->connected(), kTimeout); // for TCP connect
803 ch1.Ping();
804 WAIT(!ch2.remote_address().IsNil(), kTimeout);
805
806 if (accept) {
807 // We are able to send a ping from src to dst. This is the case when
808 // sending to UDP ports and cone NATs.
809 EXPECT_TRUE(ch1.remote_address().IsNil());
810 EXPECT_EQ(ch2.remote_fragment(), port1->username_fragment());
811
812 // Ensure the ping came from the same address used for src.
813 // This is the case unless the source NAT was symmetric.
814 if (same_addr1) EXPECT_EQ(ch2.remote_address(), GetAddress(port1));
815 EXPECT_TRUE(same_addr2);
816
817 // Send a ping from dst to src.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700818 ch2.AcceptConnection(GetCandidate(port1));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000819 ASSERT_TRUE(ch2.conn() != NULL);
820 ch2.Ping();
821 EXPECT_EQ_WAIT(Connection::STATE_WRITABLE, ch2.conn()->write_state(),
822 kTimeout);
823 } else {
824 // We can't send a ping from src to dst, so flip it around. This will happen
825 // when the destination NAT is addr/port restricted or symmetric.
826 EXPECT_TRUE(ch1.remote_address().IsNil());
827 EXPECT_TRUE(ch2.remote_address().IsNil());
828
829 // Send a ping from dst to src. Again, this may or may not make it.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700830 ch2.CreateConnection(GetCandidate(port1));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000831 ASSERT_TRUE(ch2.conn() != NULL);
832 ch2.Ping();
833 WAIT(ch2.conn()->write_state() == Connection::STATE_WRITABLE, kTimeout);
834
835 if (same_addr1 && same_addr2) {
836 // The new ping got back to the source.
837 EXPECT_EQ(Connection::STATE_READABLE, ch1.conn()->read_state());
838 EXPECT_EQ(Connection::STATE_WRITABLE, ch2.conn()->write_state());
839
840 // First connection may not be writable if the first ping did not get
841 // through. So we will have to do another.
842 if (ch1.conn()->write_state() == Connection::STATE_WRITE_INIT) {
843 ch1.Ping();
844 EXPECT_EQ_WAIT(Connection::STATE_WRITABLE, ch1.conn()->write_state(),
845 kTimeout);
846 }
847 } else if (!same_addr1 && possible) {
848 // The new ping went to the candidate address, but that address was bad.
849 // This will happen when the source NAT is symmetric.
850 EXPECT_TRUE(ch1.remote_address().IsNil());
851 EXPECT_TRUE(ch2.remote_address().IsNil());
852
853 // However, since we have now sent a ping to the source IP, we should be
854 // able to get a ping from it. This gives us the real source address.
855 ch1.Ping();
856 EXPECT_TRUE_WAIT(!ch2.remote_address().IsNil(), kTimeout);
857 EXPECT_EQ(Connection::STATE_READ_INIT, ch2.conn()->read_state());
858 EXPECT_TRUE(ch1.remote_address().IsNil());
859
860 // Pick up the actual address and establish the connection.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700861 ch2.AcceptConnection(GetCandidate(port1));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000862 ASSERT_TRUE(ch2.conn() != NULL);
863 ch2.Ping();
864 EXPECT_EQ_WAIT(Connection::STATE_WRITABLE, ch2.conn()->write_state(),
865 kTimeout);
866 } else if (!same_addr2 && possible) {
867 // The new ping came in, but from an unexpected address. This will happen
868 // when the destination NAT is symmetric.
869 EXPECT_FALSE(ch1.remote_address().IsNil());
870 EXPECT_EQ(Connection::STATE_READ_INIT, ch1.conn()->read_state());
871
872 // Update our address and complete the connection.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -0700873 ch1.AcceptConnection(GetCandidate(port2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000874 ch1.Ping();
875 EXPECT_EQ_WAIT(Connection::STATE_WRITABLE, ch1.conn()->write_state(),
876 kTimeout);
877 } else { // (!possible)
878 // There should be s no way for the pings to reach each other. Check it.
879 EXPECT_TRUE(ch1.remote_address().IsNil());
880 EXPECT_TRUE(ch2.remote_address().IsNil());
881 ch1.Ping();
882 WAIT(!ch2.remote_address().IsNil(), kTimeout);
883 EXPECT_TRUE(ch1.remote_address().IsNil());
884 EXPECT_TRUE(ch2.remote_address().IsNil());
885 }
886 }
887
888 // Everything should be good, unless we know the situation is impossible.
889 ASSERT_TRUE(ch1.conn() != NULL);
890 ASSERT_TRUE(ch2.conn() != NULL);
891 if (possible) {
892 EXPECT_EQ(Connection::STATE_READABLE, ch1.conn()->read_state());
893 EXPECT_EQ(Connection::STATE_WRITABLE, ch1.conn()->write_state());
894 EXPECT_EQ(Connection::STATE_READABLE, ch2.conn()->read_state());
895 EXPECT_EQ(Connection::STATE_WRITABLE, ch2.conn()->write_state());
896 } else {
897 EXPECT_NE(Connection::STATE_READABLE, ch1.conn()->read_state());
898 EXPECT_NE(Connection::STATE_WRITABLE, ch1.conn()->write_state());
899 EXPECT_NE(Connection::STATE_READABLE, ch2.conn()->read_state());
900 EXPECT_NE(Connection::STATE_WRITABLE, ch2.conn()->write_state());
901 }
902
903 // Tear down and ensure that goes smoothly.
904 ch1.Stop();
905 ch2.Stop();
906 EXPECT_TRUE_WAIT(ch1.conn() == NULL, kTimeout);
907 EXPECT_TRUE_WAIT(ch2.conn() == NULL, kTimeout);
908}
909
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000910class FakePacketSocketFactory : public rtc::PacketSocketFactory {
911 public:
912 FakePacketSocketFactory()
913 : next_udp_socket_(NULL),
914 next_server_tcp_socket_(NULL),
915 next_client_tcp_socket_(NULL) {
916 }
pkasting@chromium.org332331f2014-11-06 20:19:22 +0000917 ~FakePacketSocketFactory() override { }
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000918
pkasting@chromium.org332331f2014-11-06 20:19:22 +0000919 AsyncPacketSocket* CreateUdpSocket(const SocketAddress& address,
920 uint16 min_port,
921 uint16 max_port) override {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000922 EXPECT_TRUE(next_udp_socket_ != NULL);
923 AsyncPacketSocket* result = next_udp_socket_;
924 next_udp_socket_ = NULL;
925 return result;
926 }
927
pkasting@chromium.org332331f2014-11-06 20:19:22 +0000928 AsyncPacketSocket* CreateServerTcpSocket(const SocketAddress& local_address,
929 uint16 min_port,
930 uint16 max_port,
931 int opts) override {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000932 EXPECT_TRUE(next_server_tcp_socket_ != NULL);
933 AsyncPacketSocket* result = next_server_tcp_socket_;
934 next_server_tcp_socket_ = NULL;
935 return result;
936 }
937
938 // TODO: |proxy_info| and |user_agent| should be set
939 // per-factory and not when socket is created.
pkasting@chromium.org332331f2014-11-06 20:19:22 +0000940 AsyncPacketSocket* CreateClientTcpSocket(const SocketAddress& local_address,
941 const SocketAddress& remote_address,
942 const rtc::ProxyInfo& proxy_info,
943 const std::string& user_agent,
944 int opts) override {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +0000945 EXPECT_TRUE(next_client_tcp_socket_ != NULL);
946 AsyncPacketSocket* result = next_client_tcp_socket_;
947 next_client_tcp_socket_ = NULL;
948 return result;
949 }
950
951 void set_next_udp_socket(AsyncPacketSocket* next_udp_socket) {
952 next_udp_socket_ = next_udp_socket;
953 }
954 void set_next_server_tcp_socket(AsyncPacketSocket* next_server_tcp_socket) {
955 next_server_tcp_socket_ = next_server_tcp_socket;
956 }
957 void set_next_client_tcp_socket(AsyncPacketSocket* next_client_tcp_socket) {
958 next_client_tcp_socket_ = next_client_tcp_socket;
959 }
960 rtc::AsyncResolverInterface* CreateAsyncResolver() {
961 return NULL;
962 }
963
964 private:
965 AsyncPacketSocket* next_udp_socket_;
966 AsyncPacketSocket* next_server_tcp_socket_;
967 AsyncPacketSocket* next_client_tcp_socket_;
968};
969
970class FakeAsyncPacketSocket : public AsyncPacketSocket {
971 public:
972 // Returns current local address. Address may be set to NULL if the
973 // socket is not bound yet (GetState() returns STATE_BINDING).
974 virtual SocketAddress GetLocalAddress() const {
975 return SocketAddress();
976 }
977
978 // Returns remote address. Returns zeroes if this is not a client TCP socket.
979 virtual SocketAddress GetRemoteAddress() const {
980 return SocketAddress();
981 }
982
983 // Send a packet.
984 virtual int Send(const void *pv, size_t cb,
985 const rtc::PacketOptions& options) {
986 return static_cast<int>(cb);
987 }
988 virtual int SendTo(const void *pv, size_t cb, const SocketAddress& addr,
989 const rtc::PacketOptions& options) {
990 return static_cast<int>(cb);
991 }
992 virtual int Close() {
993 return 0;
994 }
995
996 virtual State GetState() const { return state_; }
997 virtual int GetOption(Socket::Option opt, int* value) { return 0; }
998 virtual int SetOption(Socket::Option opt, int value) { return 0; }
999 virtual int GetError() const { return 0; }
1000 virtual void SetError(int error) { }
1001
1002 void set_state(State state) { state_ = state; }
1003
1004 private:
1005 State state_;
1006};
1007
1008// Local -> XXXX
1009TEST_F(PortTest, TestLocalToLocal) {
1010 TestLocalToLocal();
1011}
1012
1013TEST_F(PortTest, TestLocalToConeNat) {
1014 TestLocalToStun(NAT_OPEN_CONE);
1015}
1016
1017TEST_F(PortTest, TestLocalToARNat) {
1018 TestLocalToStun(NAT_ADDR_RESTRICTED);
1019}
1020
1021TEST_F(PortTest, TestLocalToPRNat) {
1022 TestLocalToStun(NAT_PORT_RESTRICTED);
1023}
1024
1025TEST_F(PortTest, TestLocalToSymNat) {
1026 TestLocalToStun(NAT_SYMMETRIC);
1027}
1028
1029// Flaky: https://code.google.com/p/webrtc/issues/detail?id=3316.
1030TEST_F(PortTest, DISABLED_TestLocalToTurn) {
1031 TestLocalToRelay(RELAY_TURN, PROTO_UDP);
1032}
1033
1034TEST_F(PortTest, TestLocalToGturn) {
1035 TestLocalToRelay(RELAY_GTURN, PROTO_UDP);
1036}
1037
1038TEST_F(PortTest, TestLocalToTcpGturn) {
1039 TestLocalToRelay(RELAY_GTURN, PROTO_TCP);
1040}
1041
1042TEST_F(PortTest, TestLocalToSslTcpGturn) {
1043 TestLocalToRelay(RELAY_GTURN, PROTO_SSLTCP);
1044}
1045
1046// Cone NAT -> XXXX
1047TEST_F(PortTest, TestConeNatToLocal) {
1048 TestStunToLocal(NAT_OPEN_CONE);
1049}
1050
1051TEST_F(PortTest, TestConeNatToConeNat) {
1052 TestStunToStun(NAT_OPEN_CONE, NAT_OPEN_CONE);
1053}
1054
1055TEST_F(PortTest, TestConeNatToARNat) {
1056 TestStunToStun(NAT_OPEN_CONE, NAT_ADDR_RESTRICTED);
1057}
1058
1059TEST_F(PortTest, TestConeNatToPRNat) {
1060 TestStunToStun(NAT_OPEN_CONE, NAT_PORT_RESTRICTED);
1061}
1062
1063TEST_F(PortTest, TestConeNatToSymNat) {
1064 TestStunToStun(NAT_OPEN_CONE, NAT_SYMMETRIC);
1065}
1066
1067TEST_F(PortTest, TestConeNatToTurn) {
1068 TestStunToRelay(NAT_OPEN_CONE, RELAY_TURN, PROTO_UDP);
1069}
1070
1071TEST_F(PortTest, TestConeNatToGturn) {
1072 TestStunToRelay(NAT_OPEN_CONE, RELAY_GTURN, PROTO_UDP);
1073}
1074
1075TEST_F(PortTest, TestConeNatToTcpGturn) {
1076 TestStunToRelay(NAT_OPEN_CONE, RELAY_GTURN, PROTO_TCP);
1077}
1078
1079// Address-restricted NAT -> XXXX
1080TEST_F(PortTest, TestARNatToLocal) {
1081 TestStunToLocal(NAT_ADDR_RESTRICTED);
1082}
1083
1084TEST_F(PortTest, TestARNatToConeNat) {
1085 TestStunToStun(NAT_ADDR_RESTRICTED, NAT_OPEN_CONE);
1086}
1087
1088TEST_F(PortTest, TestARNatToARNat) {
1089 TestStunToStun(NAT_ADDR_RESTRICTED, NAT_ADDR_RESTRICTED);
1090}
1091
1092TEST_F(PortTest, TestARNatToPRNat) {
1093 TestStunToStun(NAT_ADDR_RESTRICTED, NAT_PORT_RESTRICTED);
1094}
1095
1096TEST_F(PortTest, TestARNatToSymNat) {
1097 TestStunToStun(NAT_ADDR_RESTRICTED, NAT_SYMMETRIC);
1098}
1099
1100TEST_F(PortTest, TestARNatToTurn) {
1101 TestStunToRelay(NAT_ADDR_RESTRICTED, RELAY_TURN, PROTO_UDP);
1102}
1103
1104TEST_F(PortTest, TestARNatToGturn) {
1105 TestStunToRelay(NAT_ADDR_RESTRICTED, RELAY_GTURN, PROTO_UDP);
1106}
1107
1108TEST_F(PortTest, TestARNATNatToTcpGturn) {
1109 TestStunToRelay(NAT_ADDR_RESTRICTED, RELAY_GTURN, PROTO_TCP);
1110}
1111
1112// Port-restricted NAT -> XXXX
1113TEST_F(PortTest, TestPRNatToLocal) {
1114 TestStunToLocal(NAT_PORT_RESTRICTED);
1115}
1116
1117TEST_F(PortTest, TestPRNatToConeNat) {
1118 TestStunToStun(NAT_PORT_RESTRICTED, NAT_OPEN_CONE);
1119}
1120
1121TEST_F(PortTest, TestPRNatToARNat) {
1122 TestStunToStun(NAT_PORT_RESTRICTED, NAT_ADDR_RESTRICTED);
1123}
1124
1125TEST_F(PortTest, TestPRNatToPRNat) {
1126 TestStunToStun(NAT_PORT_RESTRICTED, NAT_PORT_RESTRICTED);
1127}
1128
1129TEST_F(PortTest, TestPRNatToSymNat) {
1130 // Will "fail"
1131 TestStunToStun(NAT_PORT_RESTRICTED, NAT_SYMMETRIC);
1132}
1133
1134TEST_F(PortTest, TestPRNatToTurn) {
1135 TestStunToRelay(NAT_PORT_RESTRICTED, RELAY_TURN, PROTO_UDP);
1136}
1137
1138TEST_F(PortTest, TestPRNatToGturn) {
1139 TestStunToRelay(NAT_PORT_RESTRICTED, RELAY_GTURN, PROTO_UDP);
1140}
1141
1142TEST_F(PortTest, TestPRNatToTcpGturn) {
1143 TestStunToRelay(NAT_PORT_RESTRICTED, RELAY_GTURN, PROTO_TCP);
1144}
1145
1146// Symmetric NAT -> XXXX
1147TEST_F(PortTest, TestSymNatToLocal) {
1148 TestStunToLocal(NAT_SYMMETRIC);
1149}
1150
1151TEST_F(PortTest, TestSymNatToConeNat) {
1152 TestStunToStun(NAT_SYMMETRIC, NAT_OPEN_CONE);
1153}
1154
1155TEST_F(PortTest, TestSymNatToARNat) {
1156 TestStunToStun(NAT_SYMMETRIC, NAT_ADDR_RESTRICTED);
1157}
1158
1159TEST_F(PortTest, TestSymNatToPRNat) {
1160 // Will "fail"
1161 TestStunToStun(NAT_SYMMETRIC, NAT_PORT_RESTRICTED);
1162}
1163
1164TEST_F(PortTest, TestSymNatToSymNat) {
1165 // Will "fail"
1166 TestStunToStun(NAT_SYMMETRIC, NAT_SYMMETRIC);
1167}
1168
1169TEST_F(PortTest, TestSymNatToTurn) {
1170 TestStunToRelay(NAT_SYMMETRIC, RELAY_TURN, PROTO_UDP);
1171}
1172
1173TEST_F(PortTest, TestSymNatToGturn) {
1174 TestStunToRelay(NAT_SYMMETRIC, RELAY_GTURN, PROTO_UDP);
1175}
1176
1177TEST_F(PortTest, TestSymNatToTcpGturn) {
1178 TestStunToRelay(NAT_SYMMETRIC, RELAY_GTURN, PROTO_TCP);
1179}
1180
1181// Outbound TCP -> XXXX
1182TEST_F(PortTest, TestTcpToTcp) {
1183 TestTcpToTcp();
1184}
1185
Guo-wei Shiehbe508a12015-04-06 12:48:47 -07001186TEST_F(PortTest, TestTcpReconnectOnSendPacket) {
1187 TestTcpReconnect(false /* ping */, true /* send */);
1188}
1189
1190TEST_F(PortTest, TestTcpReconnectOnPing) {
1191 TestTcpReconnect(true /* ping */, false /* send */);
1192}
1193
1194TEST_F(PortTest, TestTcpReconnectTimeout) {
1195 TestTcpReconnect(false /* ping */, false /* send */);
1196}
1197
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07001198// Test when TcpConnection never connects, the OnClose() will be called to
1199// destroy the connection.
1200TEST_F(PortTest, TestTcpNeverConnect) {
1201 Port* port1 = CreateTcpPort(kLocalAddr1);
1202 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
1203 port1->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
1204
1205 // Set up a channel and ensure the port will be deleted.
1206 TestChannel ch1(port1);
1207 EXPECT_EQ(0, ch1.complete_count());
1208
1209 ch1.Start();
1210 ASSERT_EQ_WAIT(1, ch1.complete_count(), kTimeout);
1211
1212 rtc::scoped_ptr<rtc::AsyncSocket> server(
1213 vss()->CreateAsyncSocket(kLocalAddr2.family(), SOCK_STREAM));
1214 // Bind but not listen.
1215 EXPECT_EQ(0, server->Bind(kLocalAddr2));
1216
1217 Candidate c = GetCandidate(port1);
1218 c.set_address(server->GetLocalAddress());
1219
1220 ch1.CreateConnection(c);
1221 EXPECT_TRUE(ch1.conn());
1222 EXPECT_TRUE_WAIT(!ch1.conn(), kTimeout); // for TCP connect
1223}
1224
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001225/* TODO: Enable these once testrelayserver can accept external TCP.
1226TEST_F(PortTest, TestTcpToTcpRelay) {
1227 TestTcpToRelay(PROTO_TCP);
1228}
1229
1230TEST_F(PortTest, TestTcpToSslTcpRelay) {
1231 TestTcpToRelay(PROTO_SSLTCP);
1232}
1233*/
1234
1235// Outbound SSLTCP -> XXXX
1236/* TODO: Enable these once testrelayserver can accept external SSL.
1237TEST_F(PortTest, TestSslTcpToTcpRelay) {
1238 TestSslTcpToRelay(PROTO_TCP);
1239}
1240
1241TEST_F(PortTest, TestSslTcpToSslTcpRelay) {
1242 TestSslTcpToRelay(PROTO_SSLTCP);
1243}
1244*/
1245
1246// This test case verifies standard ICE features in STUN messages. Currently it
1247// verifies Message Integrity attribute in STUN messages and username in STUN
1248// binding request will have colon (":") between remote and local username.
guoweisd12140a2015-09-10 13:32:11 -07001249TEST_F(PortTest, TestLocalToLocalAsIce) {
1250 SetIceProtocolType(cricket::ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001251 UDPPort* port1 = CreateUdpPort(kLocalAddr1);
1252 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
1253 port1->SetIceTiebreaker(kTiebreaker1);
guoweisd12140a2015-09-10 13:32:11 -07001254 ASSERT_EQ(cricket::ICEPROTO_RFC5245, port1->IceProtocol());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001255 UDPPort* port2 = CreateUdpPort(kLocalAddr2);
1256 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
1257 port2->SetIceTiebreaker(kTiebreaker2);
guoweisd12140a2015-09-10 13:32:11 -07001258 ASSERT_EQ(cricket::ICEPROTO_RFC5245, port2->IceProtocol());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001259 // Same parameters as TestLocalToLocal above.
1260 TestConnectivity("udp", port1, "udp", port2, true, true, true, true);
1261}
1262
1263// This test is trying to validate a successful and failure scenario in a
1264// loopback test when protocol is RFC5245. For success IceTiebreaker, username
1265// should remain equal to the request generated by the port and role of port
1266// must be in controlling.
guoweisd12140a2015-09-10 13:32:11 -07001267TEST_F(PortTest, TestLoopbackCallAsIce) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001268 rtc::scoped_ptr<TestPort> lport(
1269 CreateTestPort(kLocalAddr1, "lfrag", "lpass"));
guoweisd12140a2015-09-10 13:32:11 -07001270 lport->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001271 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1272 lport->SetIceTiebreaker(kTiebreaker1);
1273 lport->PrepareAddress();
1274 ASSERT_FALSE(lport->Candidates().empty());
1275 Connection* conn = lport->CreateConnection(lport->Candidates()[0],
1276 Port::ORIGIN_MESSAGE);
1277 conn->Ping(0);
1278
1279 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, 1000);
1280 IceMessage* msg = lport->last_stun_msg();
1281 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
1282 conn->OnReadPacket(lport->last_stun_buf()->Data(),
1283 lport->last_stun_buf()->Length(),
1284 rtc::PacketTime());
1285 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, 1000);
1286 msg = lport->last_stun_msg();
1287 EXPECT_EQ(STUN_BINDING_RESPONSE, msg->type());
1288
1289 // If the tiebreaker value is different from port, we expect a error
1290 // response.
1291 lport->Reset();
1292 lport->AddCandidateAddress(kLocalAddr2);
1293 // Creating a different connection as |conn| is in STATE_READABLE.
1294 Connection* conn1 = lport->CreateConnection(lport->Candidates()[1],
1295 Port::ORIGIN_MESSAGE);
1296 conn1->Ping(0);
1297
1298 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, 1000);
1299 msg = lport->last_stun_msg();
1300 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
1301 rtc::scoped_ptr<IceMessage> modified_req(
1302 CreateStunMessage(STUN_BINDING_REQUEST));
1303 const StunByteStringAttribute* username_attr = msg->GetByteString(
1304 STUN_ATTR_USERNAME);
1305 modified_req->AddAttribute(new StunByteStringAttribute(
1306 STUN_ATTR_USERNAME, username_attr->GetString()));
1307 // To make sure we receive error response, adding tiebreaker less than
1308 // what's present in request.
1309 modified_req->AddAttribute(new StunUInt64Attribute(
1310 STUN_ATTR_ICE_CONTROLLING, kTiebreaker1 - 1));
1311 modified_req->AddMessageIntegrity("lpass");
1312 modified_req->AddFingerprint();
1313
1314 lport->Reset();
1315 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
1316 WriteStunMessage(modified_req.get(), buf.get());
1317 conn1->OnReadPacket(buf->Data(), buf->Length(), rtc::PacketTime());
1318 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, 1000);
1319 msg = lport->last_stun_msg();
1320 EXPECT_EQ(STUN_BINDING_ERROR_RESPONSE, msg->type());
1321}
1322
1323// This test verifies role conflict signal is received when there is
1324// conflict in the role. In this case both ports are in controlling and
1325// |rport| has higher tiebreaker value than |lport|. Since |lport| has lower
1326// value of tiebreaker, when it receives ping request from |rport| it will
1327// send role conflict signal.
1328TEST_F(PortTest, TestIceRoleConflict) {
1329 rtc::scoped_ptr<TestPort> lport(
1330 CreateTestPort(kLocalAddr1, "lfrag", "lpass"));
guoweisd12140a2015-09-10 13:32:11 -07001331 lport->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001332 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1333 lport->SetIceTiebreaker(kTiebreaker1);
1334 rtc::scoped_ptr<TestPort> rport(
1335 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
guoweisd12140a2015-09-10 13:32:11 -07001336 rport->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001337 rport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1338 rport->SetIceTiebreaker(kTiebreaker2);
1339
1340 lport->PrepareAddress();
1341 rport->PrepareAddress();
1342 ASSERT_FALSE(lport->Candidates().empty());
1343 ASSERT_FALSE(rport->Candidates().empty());
1344 Connection* lconn = lport->CreateConnection(rport->Candidates()[0],
1345 Port::ORIGIN_MESSAGE);
1346 Connection* rconn = rport->CreateConnection(lport->Candidates()[0],
1347 Port::ORIGIN_MESSAGE);
1348 rconn->Ping(0);
1349
1350 ASSERT_TRUE_WAIT(rport->last_stun_msg() != NULL, 1000);
1351 IceMessage* msg = rport->last_stun_msg();
1352 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
1353 // Send rport binding request to lport.
1354 lconn->OnReadPacket(rport->last_stun_buf()->Data(),
1355 rport->last_stun_buf()->Length(),
1356 rtc::PacketTime());
1357
1358 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, 1000);
1359 EXPECT_EQ(STUN_BINDING_RESPONSE, lport->last_stun_msg()->type());
1360 EXPECT_TRUE(role_conflict());
1361}
1362
1363TEST_F(PortTest, TestTcpNoDelay) {
1364 TCPPort* port1 = CreateTcpPort(kLocalAddr1);
1365 int option_value = -1;
1366 int success = port1->GetOption(rtc::Socket::OPT_NODELAY,
1367 &option_value);
1368 ASSERT_EQ(0, success); // GetOption() should complete successfully w/ 0
1369 ASSERT_EQ(1, option_value);
1370 delete port1;
1371}
1372
1373TEST_F(PortTest, TestDelayedBindingUdp) {
1374 FakeAsyncPacketSocket *socket = new FakeAsyncPacketSocket();
1375 FakePacketSocketFactory socket_factory;
1376
1377 socket_factory.set_next_udp_socket(socket);
1378 scoped_ptr<UDPPort> port(
1379 CreateUdpPort(kLocalAddr1, &socket_factory));
1380
1381 socket->set_state(AsyncPacketSocket::STATE_BINDING);
1382 port->PrepareAddress();
1383
1384 EXPECT_EQ(0U, port->Candidates().size());
1385 socket->SignalAddressReady(socket, kLocalAddr2);
1386
1387 EXPECT_EQ(1U, port->Candidates().size());
1388}
1389
1390TEST_F(PortTest, TestDelayedBindingTcp) {
1391 FakeAsyncPacketSocket *socket = new FakeAsyncPacketSocket();
1392 FakePacketSocketFactory socket_factory;
1393
1394 socket_factory.set_next_server_tcp_socket(socket);
1395 scoped_ptr<TCPPort> port(
1396 CreateTcpPort(kLocalAddr1, &socket_factory));
1397
1398 socket->set_state(AsyncPacketSocket::STATE_BINDING);
1399 port->PrepareAddress();
1400
1401 EXPECT_EQ(0U, port->Candidates().size());
1402 socket->SignalAddressReady(socket, kLocalAddr2);
1403
1404 EXPECT_EQ(1U, port->Candidates().size());
1405}
1406
1407void PortTest::TestCrossFamilyPorts(int type) {
1408 FakePacketSocketFactory factory;
1409 scoped_ptr<Port> ports[4];
1410 SocketAddress addresses[4] = {SocketAddress("192.168.1.3", 0),
1411 SocketAddress("192.168.1.4", 0),
1412 SocketAddress("2001:db8::1", 0),
1413 SocketAddress("2001:db8::2", 0)};
1414 for (int i = 0; i < 4; i++) {
1415 FakeAsyncPacketSocket *socket = new FakeAsyncPacketSocket();
1416 if (type == SOCK_DGRAM) {
1417 factory.set_next_udp_socket(socket);
1418 ports[i].reset(CreateUdpPort(addresses[i], &factory));
1419 } else if (type == SOCK_STREAM) {
1420 factory.set_next_server_tcp_socket(socket);
1421 ports[i].reset(CreateTcpPort(addresses[i], &factory));
1422 }
1423 socket->set_state(AsyncPacketSocket::STATE_BINDING);
1424 socket->SignalAddressReady(socket, addresses[i]);
1425 ports[i]->PrepareAddress();
1426 }
1427
1428 // IPv4 Port, connects to IPv6 candidate and then to IPv4 candidate.
1429 if (type == SOCK_STREAM) {
1430 FakeAsyncPacketSocket* clientsocket = new FakeAsyncPacketSocket();
1431 factory.set_next_client_tcp_socket(clientsocket);
1432 }
1433 Connection* c = ports[0]->CreateConnection(GetCandidate(ports[2].get()),
1434 Port::ORIGIN_MESSAGE);
1435 EXPECT_TRUE(NULL == c);
1436 EXPECT_EQ(0U, ports[0]->connections().size());
1437 c = ports[0]->CreateConnection(GetCandidate(ports[1].get()),
1438 Port::ORIGIN_MESSAGE);
1439 EXPECT_FALSE(NULL == c);
1440 EXPECT_EQ(1U, ports[0]->connections().size());
1441
1442 // IPv6 Port, connects to IPv4 candidate and to IPv6 candidate.
1443 if (type == SOCK_STREAM) {
1444 FakeAsyncPacketSocket* clientsocket = new FakeAsyncPacketSocket();
1445 factory.set_next_client_tcp_socket(clientsocket);
1446 }
1447 c = ports[2]->CreateConnection(GetCandidate(ports[0].get()),
1448 Port::ORIGIN_MESSAGE);
1449 EXPECT_TRUE(NULL == c);
1450 EXPECT_EQ(0U, ports[2]->connections().size());
1451 c = ports[2]->CreateConnection(GetCandidate(ports[3].get()),
1452 Port::ORIGIN_MESSAGE);
1453 EXPECT_FALSE(NULL == c);
1454 EXPECT_EQ(1U, ports[2]->connections().size());
1455}
1456
1457TEST_F(PortTest, TestSkipCrossFamilyTcp) {
1458 TestCrossFamilyPorts(SOCK_STREAM);
1459}
1460
1461TEST_F(PortTest, TestSkipCrossFamilyUdp) {
1462 TestCrossFamilyPorts(SOCK_DGRAM);
1463}
1464
Peter Thatcherb8b01432015-07-07 16:45:53 -07001465void PortTest::ExpectPortsCanConnect(bool can_connect, Port* p1, Port* p2) {
1466 Connection* c = p1->CreateConnection(GetCandidate(p2),
1467 Port::ORIGIN_MESSAGE);
1468 if (can_connect) {
1469 EXPECT_FALSE(NULL == c);
1470 EXPECT_EQ(1U, p1->connections().size());
1471 } else {
1472 EXPECT_TRUE(NULL == c);
1473 EXPECT_EQ(0U, p1->connections().size());
1474 }
1475}
1476
1477TEST_F(PortTest, TestUdpV6CrossTypePorts) {
1478 FakePacketSocketFactory factory;
1479 scoped_ptr<Port> ports[4];
1480 SocketAddress addresses[4] = {SocketAddress("2001:db8::1", 0),
1481 SocketAddress("fe80::1", 0),
1482 SocketAddress("fe80::2", 0),
1483 SocketAddress("::1", 0)};
1484 for (int i = 0; i < 4; i++) {
1485 FakeAsyncPacketSocket *socket = new FakeAsyncPacketSocket();
1486 factory.set_next_udp_socket(socket);
1487 ports[i].reset(CreateUdpPort(addresses[i], &factory));
1488 socket->set_state(AsyncPacketSocket::STATE_BINDING);
1489 socket->SignalAddressReady(socket, addresses[i]);
1490 ports[i]->PrepareAddress();
1491 }
1492
1493 Port* standard = ports[0].get();
1494 Port* link_local1 = ports[1].get();
1495 Port* link_local2 = ports[2].get();
1496 Port* localhost = ports[3].get();
1497
1498 ExpectPortsCanConnect(false, link_local1, standard);
1499 ExpectPortsCanConnect(false, standard, link_local1);
1500 ExpectPortsCanConnect(false, link_local1, localhost);
1501 ExpectPortsCanConnect(false, localhost, link_local1);
1502
1503 ExpectPortsCanConnect(true, link_local1, link_local2);
1504 ExpectPortsCanConnect(true, localhost, standard);
1505 ExpectPortsCanConnect(true, standard, localhost);
1506}
1507
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001508// This test verifies DSCP value set through SetOption interface can be
1509// get through DefaultDscpValue.
1510TEST_F(PortTest, TestDefaultDscpValue) {
1511 int dscp;
1512 rtc::scoped_ptr<UDPPort> udpport(CreateUdpPort(kLocalAddr1));
1513 EXPECT_EQ(0, udpport->SetOption(rtc::Socket::OPT_DSCP,
1514 rtc::DSCP_CS6));
1515 EXPECT_EQ(0, udpport->GetOption(rtc::Socket::OPT_DSCP, &dscp));
1516 rtc::scoped_ptr<TCPPort> tcpport(CreateTcpPort(kLocalAddr1));
1517 EXPECT_EQ(0, tcpport->SetOption(rtc::Socket::OPT_DSCP,
1518 rtc::DSCP_AF31));
1519 EXPECT_EQ(0, tcpport->GetOption(rtc::Socket::OPT_DSCP, &dscp));
1520 EXPECT_EQ(rtc::DSCP_AF31, dscp);
1521 rtc::scoped_ptr<StunPort> stunport(
1522 CreateStunPort(kLocalAddr1, nat_socket_factory1()));
1523 EXPECT_EQ(0, stunport->SetOption(rtc::Socket::OPT_DSCP,
1524 rtc::DSCP_AF41));
1525 EXPECT_EQ(0, stunport->GetOption(rtc::Socket::OPT_DSCP, &dscp));
1526 EXPECT_EQ(rtc::DSCP_AF41, dscp);
1527 rtc::scoped_ptr<TurnPort> turnport1(CreateTurnPort(
1528 kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP));
1529 // Socket is created in PrepareAddress.
1530 turnport1->PrepareAddress();
1531 EXPECT_EQ(0, turnport1->SetOption(rtc::Socket::OPT_DSCP,
1532 rtc::DSCP_CS7));
1533 EXPECT_EQ(0, turnport1->GetOption(rtc::Socket::OPT_DSCP, &dscp));
1534 EXPECT_EQ(rtc::DSCP_CS7, dscp);
1535 // This will verify correct value returned without the socket.
1536 rtc::scoped_ptr<TurnPort> turnport2(CreateTurnPort(
1537 kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP));
1538 EXPECT_EQ(0, turnport2->SetOption(rtc::Socket::OPT_DSCP,
1539 rtc::DSCP_CS6));
1540 EXPECT_EQ(0, turnport2->GetOption(rtc::Socket::OPT_DSCP, &dscp));
1541 EXPECT_EQ(rtc::DSCP_CS6, dscp);
1542}
1543
guoweisd12140a2015-09-10 13:32:11 -07001544// Test sending STUN messages in GICE format.
1545TEST_F(PortTest, TestSendStunMessageAsGice) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001546 rtc::scoped_ptr<TestPort> lport(
1547 CreateTestPort(kLocalAddr1, "lfrag", "lpass"));
1548 rtc::scoped_ptr<TestPort> rport(
1549 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
guoweisd12140a2015-09-10 13:32:11 -07001550 lport->SetIceProtocolType(ICEPROTO_GOOGLE);
1551 rport->SetIceProtocolType(ICEPROTO_GOOGLE);
1552
1553 // Send a fake ping from lport to rport.
1554 lport->PrepareAddress();
1555 rport->PrepareAddress();
1556 ASSERT_FALSE(rport->Candidates().empty());
1557 Connection* conn = lport->CreateConnection(rport->Candidates()[0],
1558 Port::ORIGIN_MESSAGE);
1559 rport->CreateConnection(lport->Candidates()[0], Port::ORIGIN_MESSAGE);
1560 conn->Ping(0);
1561
1562 // Check that it's a proper BINDING-REQUEST.
1563 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, 1000);
1564 IceMessage* msg = lport->last_stun_msg();
1565 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
1566 EXPECT_FALSE(msg->IsLegacy());
1567 const StunByteStringAttribute* username_attr = msg->GetByteString(
1568 STUN_ATTR_USERNAME);
1569 ASSERT_TRUE(username_attr != NULL);
1570 EXPECT_EQ("rfraglfrag", username_attr->GetString());
1571 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY) == NULL);
1572 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_PRIORITY) == NULL);
1573 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_FINGERPRINT) == NULL);
1574
1575 // Save a copy of the BINDING-REQUEST for use below.
1576 rtc::scoped_ptr<IceMessage> request(CopyStunMessage(msg));
1577
1578 // Respond with a BINDING-RESPONSE.
1579 rport->SendBindingResponse(request.get(), lport->Candidates()[0].address());
1580 msg = rport->last_stun_msg();
1581 ASSERT_TRUE(msg != NULL);
1582 EXPECT_EQ(STUN_BINDING_RESPONSE, msg->type());
1583 EXPECT_FALSE(msg->IsLegacy());
1584 username_attr = msg->GetByteString(STUN_ATTR_USERNAME);
1585 ASSERT_TRUE(username_attr != NULL); // GICE has a username in the response.
1586 EXPECT_EQ("rfraglfrag", username_attr->GetString());
1587 const StunAddressAttribute* addr_attr = msg->GetAddress(
1588 STUN_ATTR_MAPPED_ADDRESS);
1589 ASSERT_TRUE(addr_attr != NULL);
1590 EXPECT_EQ(lport->Candidates()[0].address(), addr_attr->GetAddress());
1591 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_XOR_MAPPED_ADDRESS) == NULL);
1592 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY) == NULL);
1593 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_PRIORITY) == NULL);
1594 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_FINGERPRINT) == NULL);
1595
1596 // Respond with a BINDING-ERROR-RESPONSE. This wouldn't happen in real life,
1597 // but we can do it here.
1598 rport->SendBindingErrorResponse(request.get(),
1599 rport->Candidates()[0].address(),
1600 STUN_ERROR_SERVER_ERROR,
1601 STUN_ERROR_REASON_SERVER_ERROR);
1602 msg = rport->last_stun_msg();
1603 ASSERT_TRUE(msg != NULL);
1604 EXPECT_EQ(STUN_BINDING_ERROR_RESPONSE, msg->type());
1605 EXPECT_FALSE(msg->IsLegacy());
1606 username_attr = msg->GetByteString(STUN_ATTR_USERNAME);
1607 ASSERT_TRUE(username_attr != NULL); // GICE has a username in the response.
1608 EXPECT_EQ("rfraglfrag", username_attr->GetString());
1609 const StunErrorCodeAttribute* error_attr = msg->GetErrorCode();
1610 ASSERT_TRUE(error_attr != NULL);
1611 // The GICE wire format for error codes is incorrect.
1612 EXPECT_EQ(STUN_ERROR_SERVER_ERROR_AS_GICE, error_attr->code());
1613 EXPECT_EQ(STUN_ERROR_SERVER_ERROR / 256, error_attr->eclass());
1614 EXPECT_EQ(STUN_ERROR_SERVER_ERROR % 256, error_attr->number());
1615 EXPECT_EQ(std::string(STUN_ERROR_REASON_SERVER_ERROR), error_attr->reason());
1616 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_PRIORITY) == NULL);
1617 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY) == NULL);
1618 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_FINGERPRINT) == NULL);
1619}
1620
1621// Test sending STUN messages in ICE format.
1622TEST_F(PortTest, TestSendStunMessageAsIce) {
1623 rtc::scoped_ptr<TestPort> lport(
1624 CreateTestPort(kLocalAddr1, "lfrag", "lpass"));
1625 rtc::scoped_ptr<TestPort> rport(
1626 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
1627 lport->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001628 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1629 lport->SetIceTiebreaker(kTiebreaker1);
guoweisd12140a2015-09-10 13:32:11 -07001630 rport->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001631 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
1632 rport->SetIceTiebreaker(kTiebreaker2);
1633
1634 // Send a fake ping from lport to rport.
1635 lport->PrepareAddress();
1636 rport->PrepareAddress();
1637 ASSERT_FALSE(rport->Candidates().empty());
1638 Connection* lconn = lport->CreateConnection(
1639 rport->Candidates()[0], Port::ORIGIN_MESSAGE);
1640 Connection* rconn = rport->CreateConnection(
1641 lport->Candidates()[0], Port::ORIGIN_MESSAGE);
1642 lconn->Ping(0);
1643
1644 // Check that it's a proper BINDING-REQUEST.
1645 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, 1000);
1646 IceMessage* msg = lport->last_stun_msg();
1647 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
1648 EXPECT_FALSE(msg->IsLegacy());
1649 const StunByteStringAttribute* username_attr =
1650 msg->GetByteString(STUN_ATTR_USERNAME);
1651 ASSERT_TRUE(username_attr != NULL);
1652 const StunUInt32Attribute* priority_attr = msg->GetUInt32(STUN_ATTR_PRIORITY);
1653 ASSERT_TRUE(priority_attr != NULL);
1654 EXPECT_EQ(kDefaultPrflxPriority, priority_attr->value());
1655 EXPECT_EQ("rfrag:lfrag", username_attr->GetString());
1656 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY) != NULL);
1657 EXPECT_TRUE(StunMessage::ValidateMessageIntegrity(
1658 lport->last_stun_buf()->Data(), lport->last_stun_buf()->Length(),
1659 "rpass"));
1660 const StunUInt64Attribute* ice_controlling_attr =
1661 msg->GetUInt64(STUN_ATTR_ICE_CONTROLLING);
1662 ASSERT_TRUE(ice_controlling_attr != NULL);
1663 EXPECT_EQ(lport->IceTiebreaker(), ice_controlling_attr->value());
1664 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_ICE_CONTROLLED) == NULL);
1665 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USE_CANDIDATE) != NULL);
1666 EXPECT_TRUE(msg->GetUInt32(STUN_ATTR_FINGERPRINT) != NULL);
1667 EXPECT_TRUE(StunMessage::ValidateFingerprint(
1668 lport->last_stun_buf()->Data(), lport->last_stun_buf()->Length()));
1669
1670 // Request should not include ping count.
1671 ASSERT_TRUE(msg->GetUInt32(STUN_ATTR_RETRANSMIT_COUNT) == NULL);
1672
1673 // Save a copy of the BINDING-REQUEST for use below.
1674 rtc::scoped_ptr<IceMessage> request(CopyStunMessage(msg));
1675
1676 // Respond with a BINDING-RESPONSE.
1677 rport->SendBindingResponse(request.get(), lport->Candidates()[0].address());
1678 msg = rport->last_stun_msg();
1679 ASSERT_TRUE(msg != NULL);
1680 EXPECT_EQ(STUN_BINDING_RESPONSE, msg->type());
1681
1682
1683 EXPECT_FALSE(msg->IsLegacy());
1684 const StunAddressAttribute* addr_attr = msg->GetAddress(
1685 STUN_ATTR_XOR_MAPPED_ADDRESS);
1686 ASSERT_TRUE(addr_attr != NULL);
1687 EXPECT_EQ(lport->Candidates()[0].address(), addr_attr->GetAddress());
1688 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY) != NULL);
1689 EXPECT_TRUE(StunMessage::ValidateMessageIntegrity(
1690 rport->last_stun_buf()->Data(), rport->last_stun_buf()->Length(),
1691 "rpass"));
1692 EXPECT_TRUE(msg->GetUInt32(STUN_ATTR_FINGERPRINT) != NULL);
1693 EXPECT_TRUE(StunMessage::ValidateFingerprint(
1694 lport->last_stun_buf()->Data(), lport->last_stun_buf()->Length()));
1695 // No USERNAME or PRIORITY in ICE responses.
1696 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USERNAME) == NULL);
1697 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_PRIORITY) == NULL);
1698 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MAPPED_ADDRESS) == NULL);
1699 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_ICE_CONTROLLING) == NULL);
1700 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_ICE_CONTROLLED) == NULL);
1701 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USE_CANDIDATE) == NULL);
1702
1703 // Response should not include ping count.
1704 ASSERT_TRUE(msg->GetUInt32(STUN_ATTR_RETRANSMIT_COUNT) == NULL);
1705
1706 // Respond with a BINDING-ERROR-RESPONSE. This wouldn't happen in real life,
1707 // but we can do it here.
1708 rport->SendBindingErrorResponse(request.get(),
1709 lport->Candidates()[0].address(),
1710 STUN_ERROR_SERVER_ERROR,
1711 STUN_ERROR_REASON_SERVER_ERROR);
1712 msg = rport->last_stun_msg();
1713 ASSERT_TRUE(msg != NULL);
1714 EXPECT_EQ(STUN_BINDING_ERROR_RESPONSE, msg->type());
1715 EXPECT_FALSE(msg->IsLegacy());
1716 const StunErrorCodeAttribute* error_attr = msg->GetErrorCode();
1717 ASSERT_TRUE(error_attr != NULL);
1718 EXPECT_EQ(STUN_ERROR_SERVER_ERROR, error_attr->code());
1719 EXPECT_EQ(std::string(STUN_ERROR_REASON_SERVER_ERROR), error_attr->reason());
1720 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_MESSAGE_INTEGRITY) != NULL);
1721 EXPECT_TRUE(StunMessage::ValidateMessageIntegrity(
1722 rport->last_stun_buf()->Data(), rport->last_stun_buf()->Length(),
1723 "rpass"));
1724 EXPECT_TRUE(msg->GetUInt32(STUN_ATTR_FINGERPRINT) != NULL);
1725 EXPECT_TRUE(StunMessage::ValidateFingerprint(
1726 lport->last_stun_buf()->Data(), lport->last_stun_buf()->Length()));
1727 // No USERNAME with ICE.
1728 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USERNAME) == NULL);
1729 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_PRIORITY) == NULL);
1730
1731 // Testing STUN binding requests from rport --> lport, having ICE_CONTROLLED
1732 // and (incremented) RETRANSMIT_COUNT attributes.
1733 rport->Reset();
1734 rport->set_send_retransmit_count_attribute(true);
1735 rconn->Ping(0);
1736 rconn->Ping(0);
1737 rconn->Ping(0);
1738 ASSERT_TRUE_WAIT(rport->last_stun_msg() != NULL, 1000);
1739 msg = rport->last_stun_msg();
1740 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
1741 const StunUInt64Attribute* ice_controlled_attr =
1742 msg->GetUInt64(STUN_ATTR_ICE_CONTROLLED);
1743 ASSERT_TRUE(ice_controlled_attr != NULL);
1744 EXPECT_EQ(rport->IceTiebreaker(), ice_controlled_attr->value());
1745 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USE_CANDIDATE) == NULL);
1746
1747 // Request should include ping count.
1748 const StunUInt32Attribute* retransmit_attr =
1749 msg->GetUInt32(STUN_ATTR_RETRANSMIT_COUNT);
1750 ASSERT_TRUE(retransmit_attr != NULL);
1751 EXPECT_EQ(2U, retransmit_attr->value());
1752
1753 // Respond with a BINDING-RESPONSE.
1754 request.reset(CopyStunMessage(msg));
1755 lport->SendBindingResponse(request.get(), rport->Candidates()[0].address());
1756 msg = lport->last_stun_msg();
1757
1758 // Response should include same ping count.
1759 retransmit_attr = msg->GetUInt32(STUN_ATTR_RETRANSMIT_COUNT);
1760 ASSERT_TRUE(retransmit_attr != NULL);
1761 EXPECT_EQ(2U, retransmit_attr->value());
1762}
1763
1764TEST_F(PortTest, TestUseCandidateAttribute) {
1765 rtc::scoped_ptr<TestPort> lport(
1766 CreateTestPort(kLocalAddr1, "lfrag", "lpass"));
1767 rtc::scoped_ptr<TestPort> rport(
1768 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
guoweisd12140a2015-09-10 13:32:11 -07001769 lport->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001770 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
1771 lport->SetIceTiebreaker(kTiebreaker1);
guoweisd12140a2015-09-10 13:32:11 -07001772 rport->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001773 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
1774 rport->SetIceTiebreaker(kTiebreaker2);
1775
1776 // Send a fake ping from lport to rport.
1777 lport->PrepareAddress();
1778 rport->PrepareAddress();
1779 ASSERT_FALSE(rport->Candidates().empty());
1780 Connection* lconn = lport->CreateConnection(
1781 rport->Candidates()[0], Port::ORIGIN_MESSAGE);
1782 lconn->Ping(0);
1783 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, 1000);
1784 IceMessage* msg = lport->last_stun_msg();
1785 const StunUInt64Attribute* ice_controlling_attr =
1786 msg->GetUInt64(STUN_ATTR_ICE_CONTROLLING);
1787 ASSERT_TRUE(ice_controlling_attr != NULL);
1788 const StunByteStringAttribute* use_candidate_attr = msg->GetByteString(
1789 STUN_ATTR_USE_CANDIDATE);
1790 ASSERT_TRUE(use_candidate_attr != NULL);
1791}
1792
guoweisd12140a2015-09-10 13:32:11 -07001793// Test handling STUN messages in GICE format.
1794TEST_F(PortTest, TestHandleStunMessageAsGice) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001795 // Our port will act as the "remote" port.
1796 rtc::scoped_ptr<TestPort> port(
1797 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
guoweisd12140a2015-09-10 13:32:11 -07001798 port->SetIceProtocolType(ICEPROTO_GOOGLE);
1799
1800 rtc::scoped_ptr<IceMessage> in_msg, out_msg;
1801 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
1802 rtc::SocketAddress addr(kLocalAddr1);
1803 std::string username;
1804
1805 // BINDING-REQUEST from local to remote with valid GICE username and no M-I.
1806 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
1807 "rfraglfrag"));
1808 WriteStunMessage(in_msg.get(), buf.get());
1809 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1810 out_msg.accept(), &username));
1811 EXPECT_TRUE(out_msg.get() != NULL); // Succeeds, since this is GICE.
1812 EXPECT_EQ("lfrag", username);
1813
1814 // Add M-I; should be ignored and rest of message parsed normally.
1815 in_msg->AddMessageIntegrity("password");
1816 WriteStunMessage(in_msg.get(), buf.get());
1817 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1818 out_msg.accept(), &username));
1819 EXPECT_TRUE(out_msg.get() != NULL);
1820 EXPECT_EQ("lfrag", username);
1821
1822 // BINDING-RESPONSE with username, as done in GICE. Should succeed.
1823 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_RESPONSE,
1824 "rfraglfrag"));
1825 in_msg->AddAttribute(
1826 new StunAddressAttribute(STUN_ATTR_MAPPED_ADDRESS, kLocalAddr2));
1827 WriteStunMessage(in_msg.get(), buf.get());
1828 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1829 out_msg.accept(), &username));
1830 EXPECT_TRUE(out_msg.get() != NULL);
1831 EXPECT_EQ("", username);
1832
1833 // BINDING-RESPONSE without username. Should be tolerated as well.
1834 in_msg.reset(CreateStunMessage(STUN_BINDING_RESPONSE));
1835 in_msg->AddAttribute(
1836 new StunAddressAttribute(STUN_ATTR_MAPPED_ADDRESS, kLocalAddr2));
1837 WriteStunMessage(in_msg.get(), buf.get());
1838 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1839 out_msg.accept(), &username));
1840 EXPECT_TRUE(out_msg.get() != NULL);
1841 EXPECT_EQ("", username);
1842
1843 // BINDING-ERROR-RESPONSE with username and error code.
1844 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_ERROR_RESPONSE,
1845 "rfraglfrag"));
1846 in_msg->AddAttribute(new StunErrorCodeAttribute(STUN_ATTR_ERROR_CODE,
1847 STUN_ERROR_SERVER_ERROR_AS_GICE, STUN_ERROR_REASON_SERVER_ERROR));
1848 WriteStunMessage(in_msg.get(), buf.get());
1849 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1850 out_msg.accept(), &username));
1851 ASSERT_TRUE(out_msg.get() != NULL);
1852 EXPECT_EQ("", username);
1853 ASSERT_TRUE(out_msg->GetErrorCode() != NULL);
1854 // GetStunMessage doesn't unmunge the GICE error code (happens downstream).
1855 EXPECT_EQ(STUN_ERROR_SERVER_ERROR_AS_GICE, out_msg->GetErrorCode()->code());
1856 EXPECT_EQ(std::string(STUN_ERROR_REASON_SERVER_ERROR),
1857 out_msg->GetErrorCode()->reason());
1858}
1859
1860// Test handling STUN messages in ICE format.
1861TEST_F(PortTest, TestHandleStunMessageAsIce) {
1862 // Our port will act as the "remote" port.
1863 rtc::scoped_ptr<TestPort> port(
1864 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
1865 port->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00001866
1867 rtc::scoped_ptr<IceMessage> in_msg, out_msg;
1868 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
1869 rtc::SocketAddress addr(kLocalAddr1);
1870 std::string username;
1871
1872 // BINDING-REQUEST from local to remote with valid ICE username,
1873 // MESSAGE-INTEGRITY, and FINGERPRINT.
1874 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
1875 "rfrag:lfrag"));
1876 in_msg->AddMessageIntegrity("rpass");
1877 in_msg->AddFingerprint();
1878 WriteStunMessage(in_msg.get(), buf.get());
1879 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1880 out_msg.accept(), &username));
1881 EXPECT_TRUE(out_msg.get() != NULL);
1882 EXPECT_EQ("lfrag", username);
1883
1884 // BINDING-RESPONSE without username, with MESSAGE-INTEGRITY and FINGERPRINT.
1885 in_msg.reset(CreateStunMessage(STUN_BINDING_RESPONSE));
1886 in_msg->AddAttribute(
1887 new StunXorAddressAttribute(STUN_ATTR_XOR_MAPPED_ADDRESS, kLocalAddr2));
1888 in_msg->AddMessageIntegrity("rpass");
1889 in_msg->AddFingerprint();
1890 WriteStunMessage(in_msg.get(), buf.get());
1891 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1892 out_msg.accept(), &username));
1893 EXPECT_TRUE(out_msg.get() != NULL);
1894 EXPECT_EQ("", username);
1895
1896 // BINDING-ERROR-RESPONSE without username, with error, M-I, and FINGERPRINT.
1897 in_msg.reset(CreateStunMessage(STUN_BINDING_ERROR_RESPONSE));
1898 in_msg->AddAttribute(new StunErrorCodeAttribute(STUN_ATTR_ERROR_CODE,
1899 STUN_ERROR_SERVER_ERROR, STUN_ERROR_REASON_SERVER_ERROR));
1900 in_msg->AddFingerprint();
1901 WriteStunMessage(in_msg.get(), buf.get());
1902 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1903 out_msg.accept(), &username));
1904 EXPECT_TRUE(out_msg.get() != NULL);
1905 EXPECT_EQ("", username);
1906 ASSERT_TRUE(out_msg->GetErrorCode() != NULL);
1907 EXPECT_EQ(STUN_ERROR_SERVER_ERROR, out_msg->GetErrorCode()->code());
1908 EXPECT_EQ(std::string(STUN_ERROR_REASON_SERVER_ERROR),
1909 out_msg->GetErrorCode()->reason());
1910}
1911
guoweisd12140a2015-09-10 13:32:11 -07001912// This test verifies port can handle ICE messages in Hybrid mode and switches
1913// ICEPROTO_RFC5245 mode after successfully handling the message.
1914TEST_F(PortTest, TestHandleStunMessageAsIceInHybridMode) {
1915 // Our port will act as the "remote" port.
minyuel5bdafd42015-08-21 15:52:48 +02001916 rtc::scoped_ptr<TestPort> port(
1917 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
guoweisd12140a2015-09-10 13:32:11 -07001918 port->SetIceProtocolType(ICEPROTO_HYBRID);
1919
1920 rtc::scoped_ptr<IceMessage> in_msg, out_msg;
1921 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
1922 rtc::SocketAddress addr(kLocalAddr1);
1923 std::string username;
1924
1925 // BINDING-REQUEST from local to remote with valid ICE username,
1926 // MESSAGE-INTEGRITY, and FINGERPRINT.
1927 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
1928 "rfrag:lfrag"));
1929 in_msg->AddMessageIntegrity("rpass");
1930 in_msg->AddFingerprint();
1931 WriteStunMessage(in_msg.get(), buf.get());
1932 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1933 out_msg.accept(), &username));
1934 EXPECT_TRUE(out_msg.get() != NULL);
1935 EXPECT_EQ("lfrag", username);
1936 EXPECT_EQ(ICEPROTO_RFC5245, port->IceProtocol());
1937}
1938
1939// This test verifies port can handle GICE messages in Hybrid mode and switches
1940// ICEPROTO_GOOGLE mode after successfully handling the message.
1941TEST_F(PortTest, TestHandleStunMessageAsGiceInHybridMode) {
1942 // Our port will act as the "remote" port.
1943 rtc::scoped_ptr<TestPort> port(
1944 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
1945 port->SetIceProtocolType(ICEPROTO_HYBRID);
1946
1947 rtc::scoped_ptr<IceMessage> in_msg, out_msg;
1948 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
1949 rtc::SocketAddress addr(kLocalAddr1);
1950 std::string username;
1951
1952 // BINDING-REQUEST from local to remote with valid GICE username and no M-I.
1953 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
1954 "rfraglfrag"));
1955 WriteStunMessage(in_msg.get(), buf.get());
1956 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1957 out_msg.accept(), &username));
1958 EXPECT_TRUE(out_msg.get() != NULL); // Succeeds, since this is GICE.
1959 EXPECT_EQ("lfrag", username);
1960 EXPECT_EQ(ICEPROTO_GOOGLE, port->IceProtocol());
1961}
1962
1963// Verify port is not switched out of RFC5245 mode if GICE message is received
1964// in that mode.
1965TEST_F(PortTest, TestHandleStunMessageAsGiceInIceMode) {
1966 // Our port will act as the "remote" port.
1967 rtc::scoped_ptr<TestPort> port(
1968 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
1969 port->SetIceProtocolType(ICEPROTO_RFC5245);
1970
1971 rtc::scoped_ptr<IceMessage> in_msg, out_msg;
1972 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
1973 rtc::SocketAddress addr(kLocalAddr1);
1974 std::string username;
1975
1976 // BINDING-REQUEST from local to remote with valid GICE username and no M-I.
1977 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
1978 "rfraglfrag"));
1979 WriteStunMessage(in_msg.get(), buf.get());
1980 // Should fail as there is no MI and fingerprint.
1981 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
1982 out_msg.accept(), &username));
1983 EXPECT_EQ(ICEPROTO_RFC5245, port->IceProtocol());
1984}
1985
1986
1987// Tests handling of GICE binding requests with missing or incorrect usernames.
1988TEST_F(PortTest, TestHandleStunMessageAsGiceBadUsername) {
1989 rtc::scoped_ptr<TestPort> port(
1990 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
1991 port->SetIceProtocolType(ICEPROTO_GOOGLE);
1992
1993 rtc::scoped_ptr<IceMessage> in_msg, out_msg;
1994 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
1995 rtc::SocketAddress addr(kLocalAddr1);
1996 std::string username;
1997
1998 // BINDING-REQUEST with no username.
1999 in_msg.reset(CreateStunMessage(STUN_BINDING_REQUEST));
2000 WriteStunMessage(in_msg.get(), buf.get());
2001 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2002 out_msg.accept(), &username));
2003 EXPECT_TRUE(out_msg.get() == NULL);
2004 EXPECT_EQ("", username);
2005 EXPECT_EQ(STUN_ERROR_BAD_REQUEST_AS_GICE, port->last_stun_error_code());
2006
2007 // BINDING-REQUEST with empty username.
2008 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST, ""));
2009 WriteStunMessage(in_msg.get(), buf.get());
2010 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2011 out_msg.accept(), &username));
2012 EXPECT_TRUE(out_msg.get() == NULL);
2013 EXPECT_EQ("", username);
2014 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED_AS_GICE, port->last_stun_error_code());
2015
2016 // BINDING-REQUEST with too-short username.
2017 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "lfra"));
2018 WriteStunMessage(in_msg.get(), buf.get());
2019 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2020 out_msg.accept(), &username));
2021 EXPECT_TRUE(out_msg.get() == NULL);
2022 EXPECT_EQ("", username);
2023 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED_AS_GICE, port->last_stun_error_code());
2024
2025 // BINDING-REQUEST with reversed username.
2026 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
2027 "lfragrfrag"));
2028 WriteStunMessage(in_msg.get(), buf.get());
2029 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2030 out_msg.accept(), &username));
2031 EXPECT_TRUE(out_msg.get() == NULL);
2032 EXPECT_EQ("", username);
2033 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED_AS_GICE, port->last_stun_error_code());
2034
2035 // BINDING-REQUEST with garbage username.
2036 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
2037 "abcdefgh"));
2038 WriteStunMessage(in_msg.get(), buf.get());
2039 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2040 out_msg.accept(), &username));
2041 EXPECT_TRUE(out_msg.get() == NULL);
2042 EXPECT_EQ("", username);
2043 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED_AS_GICE, port->last_stun_error_code());
2044}
2045
2046// Tests handling of ICE binding requests with missing or incorrect usernames.
2047TEST_F(PortTest, TestHandleStunMessageAsIceBadUsername) {
2048 rtc::scoped_ptr<TestPort> port(
2049 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
2050 port->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002051
2052 rtc::scoped_ptr<IceMessage> in_msg, out_msg;
2053 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
2054 rtc::SocketAddress addr(kLocalAddr1);
2055 std::string username;
2056
2057 // BINDING-REQUEST with no username.
2058 in_msg.reset(CreateStunMessage(STUN_BINDING_REQUEST));
2059 in_msg->AddMessageIntegrity("rpass");
2060 in_msg->AddFingerprint();
2061 WriteStunMessage(in_msg.get(), buf.get());
2062 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2063 out_msg.accept(), &username));
2064 EXPECT_TRUE(out_msg.get() == NULL);
2065 EXPECT_EQ("", username);
2066 EXPECT_EQ(STUN_ERROR_BAD_REQUEST, port->last_stun_error_code());
2067
2068 // BINDING-REQUEST with empty username.
2069 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST, ""));
2070 in_msg->AddMessageIntegrity("rpass");
2071 in_msg->AddFingerprint();
2072 WriteStunMessage(in_msg.get(), buf.get());
2073 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2074 out_msg.accept(), &username));
2075 EXPECT_TRUE(out_msg.get() == NULL);
2076 EXPECT_EQ("", username);
2077 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED, port->last_stun_error_code());
2078
2079 // BINDING-REQUEST with too-short username.
2080 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST, "rfra"));
2081 in_msg->AddMessageIntegrity("rpass");
2082 in_msg->AddFingerprint();
2083 WriteStunMessage(in_msg.get(), buf.get());
2084 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2085 out_msg.accept(), &username));
2086 EXPECT_TRUE(out_msg.get() == NULL);
2087 EXPECT_EQ("", username);
2088 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED, port->last_stun_error_code());
2089
2090 // BINDING-REQUEST with reversed username.
2091 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
2092 "lfrag:rfrag"));
2093 in_msg->AddMessageIntegrity("rpass");
2094 in_msg->AddFingerprint();
2095 WriteStunMessage(in_msg.get(), buf.get());
2096 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2097 out_msg.accept(), &username));
2098 EXPECT_TRUE(out_msg.get() == NULL);
2099 EXPECT_EQ("", username);
2100 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED, port->last_stun_error_code());
2101
2102 // BINDING-REQUEST with garbage username.
2103 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
2104 "abcd:efgh"));
2105 in_msg->AddMessageIntegrity("rpass");
2106 in_msg->AddFingerprint();
2107 WriteStunMessage(in_msg.get(), buf.get());
2108 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2109 out_msg.accept(), &username));
2110 EXPECT_TRUE(out_msg.get() == NULL);
2111 EXPECT_EQ("", username);
2112 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED, port->last_stun_error_code());
2113}
2114
guoweisd12140a2015-09-10 13:32:11 -07002115// Test handling STUN messages (as ICE) with missing or malformed M-I.
2116TEST_F(PortTest, TestHandleStunMessageAsIceBadMessageIntegrity) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002117 // Our port will act as the "remote" port.
2118 rtc::scoped_ptr<TestPort> port(
2119 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
guoweisd12140a2015-09-10 13:32:11 -07002120 port->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002121
2122 rtc::scoped_ptr<IceMessage> in_msg, out_msg;
2123 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
2124 rtc::SocketAddress addr(kLocalAddr1);
2125 std::string username;
2126
2127 // BINDING-REQUEST from local to remote with valid ICE username and
2128 // FINGERPRINT, but no MESSAGE-INTEGRITY.
2129 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
2130 "rfrag:lfrag"));
2131 in_msg->AddFingerprint();
2132 WriteStunMessage(in_msg.get(), buf.get());
2133 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2134 out_msg.accept(), &username));
2135 EXPECT_TRUE(out_msg.get() == NULL);
2136 EXPECT_EQ("", username);
2137 EXPECT_EQ(STUN_ERROR_BAD_REQUEST, port->last_stun_error_code());
2138
2139 // BINDING-REQUEST from local to remote with valid ICE username and
2140 // FINGERPRINT, but invalid MESSAGE-INTEGRITY.
2141 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
2142 "rfrag:lfrag"));
2143 in_msg->AddMessageIntegrity("invalid");
2144 in_msg->AddFingerprint();
2145 WriteStunMessage(in_msg.get(), buf.get());
2146 EXPECT_TRUE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2147 out_msg.accept(), &username));
2148 EXPECT_TRUE(out_msg.get() == NULL);
2149 EXPECT_EQ("", username);
2150 EXPECT_EQ(STUN_ERROR_UNAUTHORIZED, port->last_stun_error_code());
2151
2152 // TODO: BINDING-RESPONSES and BINDING-ERROR-RESPONSES are checked
2153 // by the Connection, not the Port, since they require the remote username.
2154 // Change this test to pass in data via Connection::OnReadPacket instead.
2155}
2156
guoweisd12140a2015-09-10 13:32:11 -07002157// Test handling STUN messages (as ICE) with missing or malformed FINGERPRINT.
2158TEST_F(PortTest, TestHandleStunMessageAsIceBadFingerprint) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002159 // Our port will act as the "remote" port.
2160 rtc::scoped_ptr<TestPort> port(
2161 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
guoweisd12140a2015-09-10 13:32:11 -07002162 port->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002163
2164 rtc::scoped_ptr<IceMessage> in_msg, out_msg;
2165 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
2166 rtc::SocketAddress addr(kLocalAddr1);
2167 std::string username;
2168
2169 // BINDING-REQUEST from local to remote with valid ICE username and
2170 // MESSAGE-INTEGRITY, but no FINGERPRINT; GetStunMessage should fail.
2171 in_msg.reset(CreateStunMessageWithUsername(STUN_BINDING_REQUEST,
2172 "rfrag:lfrag"));
2173 in_msg->AddMessageIntegrity("rpass");
2174 WriteStunMessage(in_msg.get(), buf.get());
2175 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2176 out_msg.accept(), &username));
2177 EXPECT_EQ(0, port->last_stun_error_code());
2178
2179 // Now, add a fingerprint, but munge the message so it's not valid.
2180 in_msg->AddFingerprint();
2181 in_msg->SetTransactionID("TESTTESTBADD");
2182 WriteStunMessage(in_msg.get(), buf.get());
2183 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2184 out_msg.accept(), &username));
2185 EXPECT_EQ(0, port->last_stun_error_code());
2186
2187 // Valid BINDING-RESPONSE, except no FINGERPRINT.
2188 in_msg.reset(CreateStunMessage(STUN_BINDING_RESPONSE));
2189 in_msg->AddAttribute(
2190 new StunXorAddressAttribute(STUN_ATTR_XOR_MAPPED_ADDRESS, kLocalAddr2));
2191 in_msg->AddMessageIntegrity("rpass");
2192 WriteStunMessage(in_msg.get(), buf.get());
2193 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2194 out_msg.accept(), &username));
2195 EXPECT_EQ(0, port->last_stun_error_code());
2196
2197 // Now, add a fingerprint, but munge the message so it's not valid.
2198 in_msg->AddFingerprint();
2199 in_msg->SetTransactionID("TESTTESTBADD");
2200 WriteStunMessage(in_msg.get(), buf.get());
2201 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2202 out_msg.accept(), &username));
2203 EXPECT_EQ(0, port->last_stun_error_code());
2204
2205 // Valid BINDING-ERROR-RESPONSE, except no FINGERPRINT.
2206 in_msg.reset(CreateStunMessage(STUN_BINDING_ERROR_RESPONSE));
2207 in_msg->AddAttribute(new StunErrorCodeAttribute(STUN_ATTR_ERROR_CODE,
2208 STUN_ERROR_SERVER_ERROR, STUN_ERROR_REASON_SERVER_ERROR));
2209 in_msg->AddMessageIntegrity("rpass");
2210 WriteStunMessage(in_msg.get(), buf.get());
2211 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2212 out_msg.accept(), &username));
2213 EXPECT_EQ(0, port->last_stun_error_code());
2214
2215 // Now, add a fingerprint, but munge the message so it's not valid.
2216 in_msg->AddFingerprint();
2217 in_msg->SetTransactionID("TESTTESTBADD");
2218 WriteStunMessage(in_msg.get(), buf.get());
2219 EXPECT_FALSE(port->GetStunMessage(buf->Data(), buf->Length(), addr,
2220 out_msg.accept(), &username));
2221 EXPECT_EQ(0, port->last_stun_error_code());
2222}
2223
guoweisd12140a2015-09-10 13:32:11 -07002224// Test handling of STUN binding indication messages (as ICE). STUN binding
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002225// indications are allowed only to the connection which is in read mode.
2226TEST_F(PortTest, TestHandleStunBindingIndication) {
2227 rtc::scoped_ptr<TestPort> lport(
2228 CreateTestPort(kLocalAddr2, "lfrag", "lpass"));
guoweisd12140a2015-09-10 13:32:11 -07002229 lport->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002230 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
2231 lport->SetIceTiebreaker(kTiebreaker1);
2232
2233 // Verifying encoding and decoding STUN indication message.
2234 rtc::scoped_ptr<IceMessage> in_msg, out_msg;
2235 rtc::scoped_ptr<ByteBuffer> buf(new ByteBuffer());
2236 rtc::SocketAddress addr(kLocalAddr1);
2237 std::string username;
2238
2239 in_msg.reset(CreateStunMessage(STUN_BINDING_INDICATION));
2240 in_msg->AddFingerprint();
2241 WriteStunMessage(in_msg.get(), buf.get());
2242 EXPECT_TRUE(lport->GetStunMessage(buf->Data(), buf->Length(), addr,
2243 out_msg.accept(), &username));
2244 EXPECT_TRUE(out_msg.get() != NULL);
2245 EXPECT_EQ(out_msg->type(), STUN_BINDING_INDICATION);
2246 EXPECT_EQ("", username);
2247
2248 // Verify connection can handle STUN indication and updates
2249 // last_ping_received.
2250 rtc::scoped_ptr<TestPort> rport(
2251 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
guoweisd12140a2015-09-10 13:32:11 -07002252 rport->SetIceProtocolType(ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002253 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
2254 rport->SetIceTiebreaker(kTiebreaker2);
2255
2256 lport->PrepareAddress();
2257 rport->PrepareAddress();
2258 ASSERT_FALSE(lport->Candidates().empty());
2259 ASSERT_FALSE(rport->Candidates().empty());
2260
2261 Connection* lconn = lport->CreateConnection(rport->Candidates()[0],
2262 Port::ORIGIN_MESSAGE);
2263 Connection* rconn = rport->CreateConnection(lport->Candidates()[0],
2264 Port::ORIGIN_MESSAGE);
2265 rconn->Ping(0);
2266
2267 ASSERT_TRUE_WAIT(rport->last_stun_msg() != NULL, 1000);
2268 IceMessage* msg = rport->last_stun_msg();
2269 EXPECT_EQ(STUN_BINDING_REQUEST, msg->type());
2270 // Send rport binding request to lport.
2271 lconn->OnReadPacket(rport->last_stun_buf()->Data(),
2272 rport->last_stun_buf()->Length(),
2273 rtc::PacketTime());
2274 ASSERT_TRUE_WAIT(lport->last_stun_msg() != NULL, 1000);
2275 EXPECT_EQ(STUN_BINDING_RESPONSE, lport->last_stun_msg()->type());
2276 uint32 last_ping_received1 = lconn->last_ping_received();
2277
2278 // Adding a delay of 100ms.
2279 rtc::Thread::Current()->ProcessMessages(100);
2280 // Pinging lconn using stun indication message.
2281 lconn->OnReadPacket(buf->Data(), buf->Length(), rtc::PacketTime());
2282 uint32 last_ping_received2 = lconn->last_ping_received();
2283 EXPECT_GT(last_ping_received2, last_ping_received1);
2284}
2285
2286TEST_F(PortTest, TestComputeCandidatePriority) {
2287 rtc::scoped_ptr<TestPort> port(
2288 CreateTestPort(kLocalAddr1, "name", "pass"));
2289 port->set_type_preference(90);
2290 port->set_component(177);
2291 port->AddCandidateAddress(SocketAddress("192.168.1.4", 1234));
2292 port->AddCandidateAddress(SocketAddress("2001:db8::1234", 1234));
2293 port->AddCandidateAddress(SocketAddress("fc12:3456::1234", 1234));
2294 port->AddCandidateAddress(SocketAddress("::ffff:192.168.1.4", 1234));
2295 port->AddCandidateAddress(SocketAddress("::192.168.1.4", 1234));
2296 port->AddCandidateAddress(SocketAddress("2002::1234:5678", 1234));
2297 port->AddCandidateAddress(SocketAddress("2001::1234:5678", 1234));
2298 port->AddCandidateAddress(SocketAddress("fecf::1234:5678", 1234));
2299 port->AddCandidateAddress(SocketAddress("3ffe::1234:5678", 1234));
2300 // These should all be:
2301 // (90 << 24) | ([rfc3484 pref value] << 8) | (256 - 177)
2302 uint32 expected_priority_v4 = 1509957199U;
2303 uint32 expected_priority_v6 = 1509959759U;
2304 uint32 expected_priority_ula = 1509962319U;
2305 uint32 expected_priority_v4mapped = expected_priority_v4;
2306 uint32 expected_priority_v4compat = 1509949775U;
2307 uint32 expected_priority_6to4 = 1509954639U;
2308 uint32 expected_priority_teredo = 1509952079U;
2309 uint32 expected_priority_sitelocal = 1509949775U;
2310 uint32 expected_priority_6bone = 1509949775U;
2311 ASSERT_EQ(expected_priority_v4, port->Candidates()[0].priority());
2312 ASSERT_EQ(expected_priority_v6, port->Candidates()[1].priority());
2313 ASSERT_EQ(expected_priority_ula, port->Candidates()[2].priority());
2314 ASSERT_EQ(expected_priority_v4mapped, port->Candidates()[3].priority());
2315 ASSERT_EQ(expected_priority_v4compat, port->Candidates()[4].priority());
2316 ASSERT_EQ(expected_priority_6to4, port->Candidates()[5].priority());
2317 ASSERT_EQ(expected_priority_teredo, port->Candidates()[6].priority());
2318 ASSERT_EQ(expected_priority_sitelocal, port->Candidates()[7].priority());
2319 ASSERT_EQ(expected_priority_6bone, port->Candidates()[8].priority());
2320}
2321
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002322// In the case of shared socket, one port may be shared by local and stun.
2323// Test that candidates with different types will have different foundation.
2324TEST_F(PortTest, TestFoundation) {
2325 rtc::scoped_ptr<TestPort> testport(
2326 CreateTestPort(kLocalAddr1, "name", "pass"));
2327 testport->AddCandidateAddress(kLocalAddr1, kLocalAddr1,
2328 LOCAL_PORT_TYPE,
2329 cricket::ICE_TYPE_PREFERENCE_HOST, false);
2330 testport->AddCandidateAddress(kLocalAddr2, kLocalAddr1,
2331 STUN_PORT_TYPE,
2332 cricket::ICE_TYPE_PREFERENCE_SRFLX, true);
2333 EXPECT_NE(testport->Candidates()[0].foundation(),
2334 testport->Candidates()[1].foundation());
2335}
2336
2337// This test verifies the foundation of different types of ICE candidates.
2338TEST_F(PortTest, TestCandidateFoundation) {
2339 rtc::scoped_ptr<rtc::NATServer> nat_server(
2340 CreateNatServer(kNatAddr1, NAT_OPEN_CONE));
2341 rtc::scoped_ptr<UDPPort> udpport1(CreateUdpPort(kLocalAddr1));
2342 udpport1->PrepareAddress();
2343 rtc::scoped_ptr<UDPPort> udpport2(CreateUdpPort(kLocalAddr1));
2344 udpport2->PrepareAddress();
2345 EXPECT_EQ(udpport1->Candidates()[0].foundation(),
2346 udpport2->Candidates()[0].foundation());
2347 rtc::scoped_ptr<TCPPort> tcpport1(CreateTcpPort(kLocalAddr1));
2348 tcpport1->PrepareAddress();
2349 rtc::scoped_ptr<TCPPort> tcpport2(CreateTcpPort(kLocalAddr1));
2350 tcpport2->PrepareAddress();
2351 EXPECT_EQ(tcpport1->Candidates()[0].foundation(),
2352 tcpport2->Candidates()[0].foundation());
2353 rtc::scoped_ptr<Port> stunport(
2354 CreateStunPort(kLocalAddr1, nat_socket_factory1()));
2355 stunport->PrepareAddress();
2356 ASSERT_EQ_WAIT(1U, stunport->Candidates().size(), kTimeout);
2357 EXPECT_NE(tcpport1->Candidates()[0].foundation(),
2358 stunport->Candidates()[0].foundation());
2359 EXPECT_NE(tcpport2->Candidates()[0].foundation(),
2360 stunport->Candidates()[0].foundation());
2361 EXPECT_NE(udpport1->Candidates()[0].foundation(),
2362 stunport->Candidates()[0].foundation());
2363 EXPECT_NE(udpport2->Candidates()[0].foundation(),
2364 stunport->Candidates()[0].foundation());
2365 // Verify GTURN candidate foundation.
2366 rtc::scoped_ptr<RelayPort> relayport(
2367 CreateGturnPort(kLocalAddr1));
2368 relayport->AddServerAddress(
2369 cricket::ProtocolAddress(kRelayUdpIntAddr, cricket::PROTO_UDP));
2370 relayport->PrepareAddress();
2371 ASSERT_EQ_WAIT(1U, relayport->Candidates().size(), kTimeout);
2372 EXPECT_NE(udpport1->Candidates()[0].foundation(),
2373 relayport->Candidates()[0].foundation());
2374 EXPECT_NE(udpport2->Candidates()[0].foundation(),
2375 relayport->Candidates()[0].foundation());
2376 // Verifying TURN candidate foundation.
2377 rtc::scoped_ptr<Port> turnport1(CreateTurnPort(
2378 kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP));
2379 turnport1->PrepareAddress();
2380 ASSERT_EQ_WAIT(1U, turnport1->Candidates().size(), kTimeout);
2381 EXPECT_NE(udpport1->Candidates()[0].foundation(),
2382 turnport1->Candidates()[0].foundation());
2383 EXPECT_NE(udpport2->Candidates()[0].foundation(),
2384 turnport1->Candidates()[0].foundation());
2385 EXPECT_NE(stunport->Candidates()[0].foundation(),
2386 turnport1->Candidates()[0].foundation());
2387 rtc::scoped_ptr<Port> turnport2(CreateTurnPort(
2388 kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP));
2389 turnport2->PrepareAddress();
2390 ASSERT_EQ_WAIT(1U, turnport2->Candidates().size(), kTimeout);
2391 EXPECT_EQ(turnport1->Candidates()[0].foundation(),
2392 turnport2->Candidates()[0].foundation());
2393
2394 // Running a second turn server, to get different base IP address.
2395 SocketAddress kTurnUdpIntAddr2("99.99.98.4", STUN_SERVER_PORT);
2396 SocketAddress kTurnUdpExtAddr2("99.99.98.5", 0);
2397 TestTurnServer turn_server2(
2398 rtc::Thread::Current(), kTurnUdpIntAddr2, kTurnUdpExtAddr2);
2399 rtc::scoped_ptr<Port> turnport3(CreateTurnPort(
2400 kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP,
2401 kTurnUdpIntAddr2));
2402 turnport3->PrepareAddress();
2403 ASSERT_EQ_WAIT(1U, turnport3->Candidates().size(), kTimeout);
2404 EXPECT_NE(turnport3->Candidates()[0].foundation(),
2405 turnport2->Candidates()[0].foundation());
2406}
2407
2408// This test verifies the related addresses of different types of
2409// ICE candiates.
2410TEST_F(PortTest, TestCandidateRelatedAddress) {
2411 rtc::scoped_ptr<rtc::NATServer> nat_server(
2412 CreateNatServer(kNatAddr1, NAT_OPEN_CONE));
2413 rtc::scoped_ptr<UDPPort> udpport(CreateUdpPort(kLocalAddr1));
2414 udpport->PrepareAddress();
2415 // For UDPPort, related address will be empty.
2416 EXPECT_TRUE(udpport->Candidates()[0].related_address().IsNil());
2417 // Testing related address for stun candidates.
2418 // For stun candidate related address must be equal to the base
2419 // socket address.
2420 rtc::scoped_ptr<StunPort> stunport(
2421 CreateStunPort(kLocalAddr1, nat_socket_factory1()));
2422 stunport->PrepareAddress();
2423 ASSERT_EQ_WAIT(1U, stunport->Candidates().size(), kTimeout);
2424 // Check STUN candidate address.
2425 EXPECT_EQ(stunport->Candidates()[0].address().ipaddr(),
2426 kNatAddr1.ipaddr());
2427 // Check STUN candidate related address.
2428 EXPECT_EQ(stunport->Candidates()[0].related_address(),
2429 stunport->GetLocalAddress());
2430 // Verifying the related address for the GTURN candidates.
2431 // NOTE: In case of GTURN related address will be equal to the mapped
2432 // address, but address(mapped) will not be XOR.
2433 rtc::scoped_ptr<RelayPort> relayport(
2434 CreateGturnPort(kLocalAddr1));
2435 relayport->AddServerAddress(
2436 cricket::ProtocolAddress(kRelayUdpIntAddr, cricket::PROTO_UDP));
2437 relayport->PrepareAddress();
2438 ASSERT_EQ_WAIT(1U, relayport->Candidates().size(), kTimeout);
2439 // For Gturn related address is set to "0.0.0.0:0"
2440 EXPECT_EQ(rtc::SocketAddress(),
2441 relayport->Candidates()[0].related_address());
2442 // Verifying the related address for TURN candidate.
2443 // For TURN related address must be equal to the mapped address.
2444 rtc::scoped_ptr<Port> turnport(CreateTurnPort(
2445 kLocalAddr1, nat_socket_factory1(), PROTO_UDP, PROTO_UDP));
2446 turnport->PrepareAddress();
2447 ASSERT_EQ_WAIT(1U, turnport->Candidates().size(), kTimeout);
2448 EXPECT_EQ(kTurnUdpExtAddr.ipaddr(),
2449 turnport->Candidates()[0].address().ipaddr());
2450 EXPECT_EQ(kNatAddr1.ipaddr(),
2451 turnport->Candidates()[0].related_address().ipaddr());
2452}
2453
2454// Test priority value overflow handling when preference is set to 3.
guoweisd12140a2015-09-10 13:32:11 -07002455TEST_F(PortTest, TestCandidatePreference) {
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002456 cricket::Candidate cand1;
guoweisd12140a2015-09-10 13:32:11 -07002457 cand1.set_preference(3);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002458 cricket::Candidate cand2;
guoweisd12140a2015-09-10 13:32:11 -07002459 cand2.set_preference(1);
2460 EXPECT_TRUE(cand1.preference() > cand2.preference());
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002461}
2462
2463// Test the Connection priority is calculated correctly.
2464TEST_F(PortTest, TestConnectionPriority) {
2465 rtc::scoped_ptr<TestPort> lport(
2466 CreateTestPort(kLocalAddr1, "lfrag", "lpass"));
2467 lport->set_type_preference(cricket::ICE_TYPE_PREFERENCE_HOST);
2468 rtc::scoped_ptr<TestPort> rport(
2469 CreateTestPort(kLocalAddr2, "rfrag", "rpass"));
2470 rport->set_type_preference(cricket::ICE_TYPE_PREFERENCE_RELAY);
2471 lport->set_component(123);
2472 lport->AddCandidateAddress(SocketAddress("192.168.1.4", 1234));
2473 rport->set_component(23);
2474 rport->AddCandidateAddress(SocketAddress("10.1.1.100", 1234));
2475
2476 EXPECT_EQ(0x7E001E85U, lport->Candidates()[0].priority());
2477 EXPECT_EQ(0x2001EE9U, rport->Candidates()[0].priority());
2478
2479 // RFC 5245
2480 // pair priority = 2^32*MIN(G,D) + 2*MAX(G,D) + (G>D?1:0)
2481 lport->SetIceRole(cricket::ICEROLE_CONTROLLING);
2482 rport->SetIceRole(cricket::ICEROLE_CONTROLLED);
2483 Connection* lconn = lport->CreateConnection(
2484 rport->Candidates()[0], Port::ORIGIN_MESSAGE);
2485#if defined(WEBRTC_WIN)
2486 EXPECT_EQ(0x2001EE9FC003D0BU, lconn->priority());
2487#else
2488 EXPECT_EQ(0x2001EE9FC003D0BLLU, lconn->priority());
2489#endif
2490
2491 lport->SetIceRole(cricket::ICEROLE_CONTROLLED);
2492 rport->SetIceRole(cricket::ICEROLE_CONTROLLING);
2493 Connection* rconn = rport->CreateConnection(
2494 lport->Candidates()[0], Port::ORIGIN_MESSAGE);
2495#if defined(WEBRTC_WIN)
2496 EXPECT_EQ(0x2001EE9FC003D0AU, rconn->priority());
2497#else
2498 EXPECT_EQ(0x2001EE9FC003D0ALLU, rconn->priority());
2499#endif
2500}
2501
2502TEST_F(PortTest, TestWritableState) {
2503 UDPPort* port1 = CreateUdpPort(kLocalAddr1);
2504 UDPPort* port2 = CreateUdpPort(kLocalAddr2);
2505
2506 // Set up channels.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07002507 TestChannel ch1(port1);
2508 TestChannel ch2(port2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002509
2510 // Acquire addresses.
2511 ch1.Start();
2512 ch2.Start();
2513 ASSERT_EQ_WAIT(1, ch1.complete_count(), kTimeout);
2514 ASSERT_EQ_WAIT(1, ch2.complete_count(), kTimeout);
2515
2516 // Send a ping from src to dst.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07002517 ch1.CreateConnection(GetCandidate(port2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002518 ASSERT_TRUE(ch1.conn() != NULL);
2519 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
2520 EXPECT_TRUE_WAIT(ch1.conn()->connected(), kTimeout); // for TCP connect
2521 ch1.Ping();
2522 WAIT(!ch2.remote_address().IsNil(), kTimeout);
2523
2524 // Data should be unsendable until the connection is accepted.
2525 char data[] = "abcd";
2526 int data_size = ARRAY_SIZE(data);
2527 rtc::PacketOptions options;
2528 EXPECT_EQ(SOCKET_ERROR, ch1.conn()->Send(data, data_size, options));
2529
2530 // Accept the connection to return the binding response, transition to
2531 // writable, and allow data to be sent.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07002532 ch2.AcceptConnection(GetCandidate(port1));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002533 EXPECT_EQ_WAIT(Connection::STATE_WRITABLE, ch1.conn()->write_state(),
2534 kTimeout);
2535 EXPECT_EQ(data_size, ch1.conn()->Send(data, data_size, options));
2536
2537 // Ask the connection to update state as if enough time has passed to lose
2538 // full writability and 5 pings went unresponded to. We'll accomplish the
2539 // latter by sending pings but not pumping messages.
2540 for (uint32 i = 1; i <= CONNECTION_WRITE_CONNECT_FAILURES; ++i) {
2541 ch1.Ping(i);
2542 }
2543 uint32 unreliable_timeout_delay = CONNECTION_WRITE_CONNECT_TIMEOUT + 500u;
2544 ch1.conn()->UpdateState(unreliable_timeout_delay);
2545 EXPECT_EQ(Connection::STATE_WRITE_UNRELIABLE, ch1.conn()->write_state());
2546
2547 // Data should be able to be sent in this state.
2548 EXPECT_EQ(data_size, ch1.conn()->Send(data, data_size, options));
2549
2550 // And now allow the other side to process the pings and send binding
2551 // responses.
2552 EXPECT_EQ_WAIT(Connection::STATE_WRITABLE, ch1.conn()->write_state(),
2553 kTimeout);
2554
2555 // Wait long enough for a full timeout (past however long we've already
2556 // waited).
2557 for (uint32 i = 1; i <= CONNECTION_WRITE_CONNECT_FAILURES; ++i) {
2558 ch1.Ping(unreliable_timeout_delay + i);
2559 }
2560 ch1.conn()->UpdateState(unreliable_timeout_delay + CONNECTION_WRITE_TIMEOUT +
2561 500u);
2562 EXPECT_EQ(Connection::STATE_WRITE_TIMEOUT, ch1.conn()->write_state());
2563
2564 // Now that the connection has completely timed out, data send should fail.
2565 EXPECT_EQ(SOCKET_ERROR, ch1.conn()->Send(data, data_size, options));
2566
2567 ch1.Stop();
2568 ch2.Stop();
2569}
2570
2571TEST_F(PortTest, TestTimeoutForNeverWritable) {
2572 UDPPort* port1 = CreateUdpPort(kLocalAddr1);
2573 UDPPort* port2 = CreateUdpPort(kLocalAddr2);
2574
2575 // Set up channels.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07002576 TestChannel ch1(port1);
2577 TestChannel ch2(port2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002578
2579 // Acquire addresses.
2580 ch1.Start();
2581 ch2.Start();
2582
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07002583 ch1.CreateConnection(GetCandidate(port2));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002584 ASSERT_TRUE(ch1.conn() != NULL);
2585 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
2586
2587 // Attempt to go directly to write timeout.
2588 for (uint32 i = 1; i <= CONNECTION_WRITE_CONNECT_FAILURES; ++i) {
2589 ch1.Ping(i);
2590 }
2591 ch1.conn()->UpdateState(CONNECTION_WRITE_TIMEOUT + 500u);
2592 EXPECT_EQ(Connection::STATE_WRITE_TIMEOUT, ch1.conn()->write_state());
2593}
2594
2595// This test verifies the connection setup between ICEMODE_FULL
2596// and ICEMODE_LITE.
2597// In this test |ch1| behaves like FULL mode client and we have created
2598// port which responds to the ping message just like LITE client.
2599TEST_F(PortTest, TestIceLiteConnectivity) {
2600 TestPort* ice_full_port = CreateTestPort(
guoweisd12140a2015-09-10 13:32:11 -07002601 kLocalAddr1, "lfrag", "lpass", cricket::ICEPROTO_RFC5245,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002602 cricket::ICEROLE_CONTROLLING, kTiebreaker1);
2603
2604 rtc::scoped_ptr<TestPort> ice_lite_port(CreateTestPort(
guoweisd12140a2015-09-10 13:32:11 -07002605 kLocalAddr2, "rfrag", "rpass", cricket::ICEPROTO_RFC5245,
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002606 cricket::ICEROLE_CONTROLLED, kTiebreaker2));
2607 // Setup TestChannel. This behaves like FULL mode client.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07002608 TestChannel ch1(ice_full_port);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002609 ch1.SetIceMode(ICEMODE_FULL);
2610
2611 // Start gathering candidates.
2612 ch1.Start();
2613 ice_lite_port->PrepareAddress();
2614
2615 ASSERT_EQ_WAIT(1, ch1.complete_count(), kTimeout);
2616 ASSERT_FALSE(ice_lite_port->Candidates().empty());
2617
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07002618 ch1.CreateConnection(GetCandidate(ice_lite_port.get()));
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002619 ASSERT_TRUE(ch1.conn() != NULL);
2620 EXPECT_EQ(Connection::STATE_WRITE_INIT, ch1.conn()->write_state());
2621
2622 // Send ping from full mode client.
2623 // This ping must not have USE_CANDIDATE_ATTR.
2624 ch1.Ping();
2625
2626 // Verify stun ping is without USE_CANDIDATE_ATTR. Getting message directly
2627 // from port.
2628 ASSERT_TRUE_WAIT(ice_full_port->last_stun_msg() != NULL, 1000);
2629 IceMessage* msg = ice_full_port->last_stun_msg();
2630 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USE_CANDIDATE) == NULL);
2631
2632 // Respond with a BINDING-RESPONSE from litemode client.
2633 // NOTE: Ideally we should't create connection at this stage from lite
2634 // port, as it should be done only after receiving ping with USE_CANDIDATE.
2635 // But we need a connection to send a response message.
2636 ice_lite_port->CreateConnection(
2637 ice_full_port->Candidates()[0], cricket::Port::ORIGIN_MESSAGE);
2638 rtc::scoped_ptr<IceMessage> request(CopyStunMessage(msg));
2639 ice_lite_port->SendBindingResponse(
2640 request.get(), ice_full_port->Candidates()[0].address());
2641
2642 // Feeding the respone message from litemode to the full mode connection.
2643 ch1.conn()->OnReadPacket(ice_lite_port->last_stun_buf()->Data(),
2644 ice_lite_port->last_stun_buf()->Length(),
2645 rtc::PacketTime());
2646 // Verifying full mode connection becomes writable from the response.
2647 EXPECT_EQ_WAIT(Connection::STATE_WRITABLE, ch1.conn()->write_state(),
2648 kTimeout);
2649 EXPECT_TRUE_WAIT(ch1.nominated(), kTimeout);
2650
2651 // Clear existing stun messsages. Otherwise we will process old stun
2652 // message right after we send ping.
2653 ice_full_port->Reset();
2654 // Send ping. This must have USE_CANDIDATE_ATTR.
2655 ch1.Ping();
2656 ASSERT_TRUE_WAIT(ice_full_port->last_stun_msg() != NULL, 1000);
2657 msg = ice_full_port->last_stun_msg();
2658 EXPECT_TRUE(msg->GetByteString(STUN_ATTR_USE_CANDIDATE) != NULL);
2659 ch1.Stop();
2660}
2661
2662// This test case verifies that the CONTROLLING port does not time out.
2663TEST_F(PortTest, TestControllingNoTimeout) {
guoweisd12140a2015-09-10 13:32:11 -07002664 SetIceProtocolType(cricket::ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002665 UDPPort* port1 = CreateUdpPort(kLocalAddr1);
2666 ConnectToSignalDestroyed(port1);
2667 port1->set_timeout_delay(10); // milliseconds
2668 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
2669 port1->SetIceTiebreaker(kTiebreaker1);
2670
2671 UDPPort* port2 = CreateUdpPort(kLocalAddr2);
2672 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
2673 port2->SetIceTiebreaker(kTiebreaker2);
2674
2675 // Set up channels and ensure both ports will be deleted.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07002676 TestChannel ch1(port1);
2677 TestChannel ch2(port2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002678
2679 // Simulate a connection that succeeds, and then is destroyed.
Guo-wei Shiehbe508a12015-04-06 12:48:47 -07002680 StartConnectAndStopChannels(&ch1, &ch2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002681
2682 // After the connection is destroyed, the port should not be destroyed.
2683 rtc::Thread::Current()->ProcessMessages(kTimeout);
2684 EXPECT_FALSE(destroyed());
2685}
2686
2687// This test case verifies that the CONTROLLED port does time out, but only
2688// after connectivity is lost.
2689TEST_F(PortTest, TestControlledTimeout) {
guoweisd12140a2015-09-10 13:32:11 -07002690 SetIceProtocolType(cricket::ICEPROTO_RFC5245);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002691 UDPPort* port1 = CreateUdpPort(kLocalAddr1);
2692 port1->SetIceRole(cricket::ICEROLE_CONTROLLING);
2693 port1->SetIceTiebreaker(kTiebreaker1);
2694
2695 UDPPort* port2 = CreateUdpPort(kLocalAddr2);
2696 ConnectToSignalDestroyed(port2);
2697 port2->set_timeout_delay(10); // milliseconds
2698 port2->SetIceRole(cricket::ICEROLE_CONTROLLED);
2699 port2->SetIceTiebreaker(kTiebreaker2);
2700
2701 // The connection must not be destroyed before a connection is attempted.
2702 EXPECT_FALSE(destroyed());
2703
2704 port1->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
2705 port2->set_component(cricket::ICE_CANDIDATE_COMPONENT_DEFAULT);
2706
2707 // Set up channels and ensure both ports will be deleted.
Guo-wei Shieh1eb87c72015-08-25 11:02:55 -07002708 TestChannel ch1(port1);
2709 TestChannel ch2(port2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002710
2711 // Simulate a connection that succeeds, and then is destroyed.
Guo-wei Shiehbe508a12015-04-06 12:48:47 -07002712 StartConnectAndStopChannels(&ch1, &ch2);
henrike@webrtc.org269fb4b2014-10-28 22:20:11 +00002713
2714 // The controlled port should be destroyed after 10 milliseconds.
2715 EXPECT_TRUE_WAIT(destroyed(), kTimeout);
2716}