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Side by Side Diff: webrtc/p2p/base/p2ptransportchannel_unittest.cc

Issue 1263603003: Remove PORTALLOCATOR_ENABLE_SHARED_SOCKET. Base URL: https://chromium.googlesource.com/external/webrtc.git@master
Patch Set: Created 5 years, 4 months ago
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1 /* 1 /*
2 * Copyright 2009 The WebRTC Project Authors. All rights reserved. 2 * Copyright 2009 The WebRTC Project Authors. All rights reserved.
3 * 3 *
4 * Use of this source code is governed by a BSD-style license 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 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 6 * tree. An additional intellectual property rights grant can be found
7 * in the file PATENTS. All contributing project authors may 7 * in the file PATENTS. All contributing project authors may
8 * be found in the AUTHORS file in the root of the source tree. 8 * be found in the AUTHORS file in the root of the source tree.
9 */ 9 */
10 10
(...skipping 14 matching lines...) Expand all
25 #include "webrtc/base/physicalsocketserver.h" 25 #include "webrtc/base/physicalsocketserver.h"
26 #include "webrtc/base/proxyserver.h" 26 #include "webrtc/base/proxyserver.h"
27 #include "webrtc/base/socketaddress.h" 27 #include "webrtc/base/socketaddress.h"
28 #include "webrtc/base/ssladapter.h" 28 #include "webrtc/base/ssladapter.h"
29 #include "webrtc/base/thread.h" 29 #include "webrtc/base/thread.h"
30 #include "webrtc/base/virtualsocketserver.h" 30 #include "webrtc/base/virtualsocketserver.h"
31 31
32 using cricket::kDefaultPortAllocatorFlags; 32 using cricket::kDefaultPortAllocatorFlags;
33 using cricket::kMinimumStepDelay; 33 using cricket::kMinimumStepDelay;
34 using cricket::kDefaultStepDelay; 34 using cricket::kDefaultStepDelay;
35 using cricket::PORTALLOCATOR_ENABLE_SHARED_UFRAG;
36 using cricket::PORTALLOCATOR_ENABLE_SHARED_SOCKET;
37 using cricket::ServerAddresses; 35 using cricket::ServerAddresses;
38 using rtc::SocketAddress; 36 using rtc::SocketAddress;
39 37
40 static const int kDefaultTimeout = 1000; 38 static const int kDefaultTimeout = 1000;
41 static const int kOnlyLocalPorts = cricket::PORTALLOCATOR_DISABLE_STUN | 39 static const int kOnlyLocalPorts = cricket::PORTALLOCATOR_DISABLE_STUN |
42 cricket::PORTALLOCATOR_DISABLE_RELAY | 40 cricket::PORTALLOCATOR_DISABLE_RELAY |
43 cricket::PORTALLOCATOR_DISABLE_TCP; 41 cricket::PORTALLOCATOR_DISABLE_TCP;
44 // Addresses on the public internet. 42 // Addresses on the public internet.
45 static const SocketAddress kPublicAddrs[2] = 43 static const SocketAddress kPublicAddrs[2] =
46 { SocketAddress("11.11.11.11", 0), SocketAddress("22.22.22.22", 0) }; 44 { SocketAddress("11.11.11.11", 0), SocketAddress("22.22.22.22", 0) };
(...skipping 163 matching lines...) Expand 10 before | Expand all | Expand 10 after
210 } 208 }
211 cricket::TransportChannel* channel; 209 cricket::TransportChannel* channel;
212 cricket::Candidate candidate; 210 cricket::Candidate candidate;
213 }; 211 };
214 212
215 struct Endpoint { 213 struct Endpoint {
216 Endpoint() 214 Endpoint()
217 : role_(cricket::ICEROLE_UNKNOWN), 215 : role_(cricket::ICEROLE_UNKNOWN),
218 tiebreaker_(0), 216 tiebreaker_(0),
219 role_conflict_(false), 217 role_conflict_(false),
220 save_candidates_(false), 218 save_candidates_(false) {}
221 protocol_type_(cricket::ICEPROTO_GOOGLE) {}
222 bool HasChannel(cricket::TransportChannel* ch) { 219 bool HasChannel(cricket::TransportChannel* ch) {
223 return (ch == cd1_.ch_.get() || ch == cd2_.ch_.get()); 220 return (ch == cd1_.ch_.get() || ch == cd2_.ch_.get());
224 } 221 }
225 ChannelData* GetChannelData(cricket::TransportChannel* ch) { 222 ChannelData* GetChannelData(cricket::TransportChannel* ch) {
226 if (!HasChannel(ch)) return NULL; 223 if (!HasChannel(ch)) return NULL;
227 if (cd1_.ch_.get() == ch) 224 if (cd1_.ch_.get() == ch)
228 return &cd1_; 225 return &cd1_;
229 else 226 else
230 return &cd2_; 227 return &cd2_;
231 } 228 }
232 229
233 void SetIceRole(cricket::IceRole role) { role_ = role; } 230 void SetIceRole(cricket::IceRole role) { role_ = role; }
234 cricket::IceRole ice_role() { return role_; } 231 cricket::IceRole ice_role() { return role_; }
235 void SetIceProtocolType(cricket::IceProtocolType type) {
236 protocol_type_ = type;
237 }
238 cricket::IceProtocolType protocol_type() { return protocol_type_; }
239 void SetIceTiebreaker(uint64 tiebreaker) { tiebreaker_ = tiebreaker; } 232 void SetIceTiebreaker(uint64 tiebreaker) { tiebreaker_ = tiebreaker; }
240 uint64 GetIceTiebreaker() { return tiebreaker_; } 233 uint64 GetIceTiebreaker() { return tiebreaker_; }
241 void OnRoleConflict(bool role_conflict) { role_conflict_ = role_conflict; } 234 void OnRoleConflict(bool role_conflict) { role_conflict_ = role_conflict; }
242 bool role_conflict() { return role_conflict_; } 235 bool role_conflict() { return role_conflict_; }
243 void SetAllocationStepDelay(uint32 delay) { 236 void SetAllocationStepDelay(uint32 delay) {
244 allocator_->set_step_delay(delay); 237 allocator_->set_step_delay(delay);
245 } 238 }
246 void SetAllowTcpListen(bool allow_tcp_listen) { 239 void SetAllowTcpListen(bool allow_tcp_listen) {
247 allocator_->set_allow_tcp_listen(allow_tcp_listen); 240 allocator_->set_allow_tcp_listen(allow_tcp_listen);
248 } 241 }
249 242
250 rtc::FakeNetworkManager network_manager_; 243 rtc::FakeNetworkManager network_manager_;
251 rtc::scoped_ptr<cricket::BasicPortAllocator> allocator_; 244 rtc::scoped_ptr<cricket::BasicPortAllocator> allocator_;
252 ChannelData cd1_; 245 ChannelData cd1_;
253 ChannelData cd2_; 246 ChannelData cd2_;
254 cricket::IceRole role_; 247 cricket::IceRole role_;
255 uint64 tiebreaker_; 248 uint64 tiebreaker_;
256 bool role_conflict_; 249 bool role_conflict_;
257 bool save_candidates_; 250 bool save_candidates_;
258 cricket::IceProtocolType protocol_type_;
259 std::vector<CandidateData*> saved_candidates_; 251 std::vector<CandidateData*> saved_candidates_;
260 }; 252 };
261 253
262 ChannelData* GetChannelData(cricket::TransportChannel* channel) { 254 ChannelData* GetChannelData(cricket::TransportChannel* channel) {
263 if (ep1_.HasChannel(channel)) 255 if (ep1_.HasChannel(channel))
264 return ep1_.GetChannelData(channel); 256 return ep1_.GetChannelData(channel);
265 else 257 else
266 return ep2_.GetChannelData(channel); 258 return ep2_.GetChannelData(channel);
267 } 259 }
268 260
(...skipping 35 matching lines...) Expand 10 before | Expand all | Expand 10 after
304 cricket::P2PTransportChannel* channel = new cricket::P2PTransportChannel( 296 cricket::P2PTransportChannel* channel = new cricket::P2PTransportChannel(
305 "test content name", component, NULL, GetAllocator(endpoint)); 297 "test content name", component, NULL, GetAllocator(endpoint));
306 channel->SignalRequestSignaling.connect( 298 channel->SignalRequestSignaling.connect(
307 this, &P2PTransportChannelTestBase::OnChannelRequestSignaling); 299 this, &P2PTransportChannelTestBase::OnChannelRequestSignaling);
308 channel->SignalCandidateReady.connect(this, 300 channel->SignalCandidateReady.connect(this,
309 &P2PTransportChannelTestBase::OnCandidate); 301 &P2PTransportChannelTestBase::OnCandidate);
310 channel->SignalReadPacket.connect( 302 channel->SignalReadPacket.connect(
311 this, &P2PTransportChannelTestBase::OnReadPacket); 303 this, &P2PTransportChannelTestBase::OnReadPacket);
312 channel->SignalRoleConflict.connect( 304 channel->SignalRoleConflict.connect(
313 this, &P2PTransportChannelTestBase::OnRoleConflict); 305 this, &P2PTransportChannelTestBase::OnRoleConflict);
314 channel->SetIceProtocolType(GetEndpoint(endpoint)->protocol_type());
315 channel->SetIceCredentials(local_ice_ufrag, local_ice_pwd); 306 channel->SetIceCredentials(local_ice_ufrag, local_ice_pwd);
316 if (clear_remote_candidates_ufrag_pwd_) { 307 if (clear_remote_candidates_ufrag_pwd_) {
317 // This only needs to be set if we're clearing them from the 308 // This only needs to be set if we're clearing them from the
318 // candidates. Some unit tests rely on this not being set. 309 // candidates. Some unit tests rely on this not being set.
319 channel->SetRemoteIceCredentials(remote_ice_ufrag, remote_ice_pwd); 310 channel->SetRemoteIceCredentials(remote_ice_ufrag, remote_ice_pwd);
320 } 311 }
321 channel->SetIceRole(GetEndpoint(endpoint)->ice_role()); 312 channel->SetIceRole(GetEndpoint(endpoint)->ice_role());
322 channel->SetIceTiebreaker(GetEndpoint(endpoint)->GetIceTiebreaker()); 313 channel->SetIceTiebreaker(GetEndpoint(endpoint)->GetIceTiebreaker());
323 channel->Connect(); 314 channel->Connect();
324 return channel; 315 return channel;
(...skipping 47 matching lines...) Expand 10 before | Expand all | Expand 10 after
372 void SetProxy(int endpoint, rtc::ProxyType type) { 363 void SetProxy(int endpoint, rtc::ProxyType type) {
373 rtc::ProxyInfo info; 364 rtc::ProxyInfo info;
374 info.type = type; 365 info.type = type;
375 info.address = (type == rtc::PROXY_HTTPS) ? 366 info.address = (type == rtc::PROXY_HTTPS) ?
376 kHttpsProxyAddrs[endpoint] : kSocksProxyAddrs[endpoint]; 367 kHttpsProxyAddrs[endpoint] : kSocksProxyAddrs[endpoint];
377 GetAllocator(endpoint)->set_proxy("unittest/1.0", info); 368 GetAllocator(endpoint)->set_proxy("unittest/1.0", info);
378 } 369 }
379 void SetAllocatorFlags(int endpoint, int flags) { 370 void SetAllocatorFlags(int endpoint, int flags) {
380 GetAllocator(endpoint)->set_flags(flags); 371 GetAllocator(endpoint)->set_flags(flags);
381 } 372 }
382 void SetIceProtocol(int endpoint, cricket::IceProtocolType type) {
383 GetEndpoint(endpoint)->SetIceProtocolType(type);
384 }
385 void SetIceRole(int endpoint, cricket::IceRole role) { 373 void SetIceRole(int endpoint, cricket::IceRole role) {
386 GetEndpoint(endpoint)->SetIceRole(role); 374 GetEndpoint(endpoint)->SetIceRole(role);
387 } 375 }
388 void SetIceTiebreaker(int endpoint, uint64 tiebreaker) { 376 void SetIceTiebreaker(int endpoint, uint64 tiebreaker) {
389 GetEndpoint(endpoint)->SetIceTiebreaker(tiebreaker); 377 GetEndpoint(endpoint)->SetIceTiebreaker(tiebreaker);
390 } 378 }
391 bool GetRoleConflict(int endpoint) { 379 bool GetRoleConflict(int endpoint) {
392 return GetEndpoint(endpoint)->role_conflict(); 380 return GetEndpoint(endpoint)->role_conflict();
393 } 381 }
394 void SetAllocationStepDelay(int endpoint, uint32 delay) { 382 void SetAllocationStepDelay(int endpoint, uint32 delay) {
395 return GetEndpoint(endpoint)->SetAllocationStepDelay(delay); 383 return GetEndpoint(endpoint)->SetAllocationStepDelay(delay);
396 } 384 }
397 void SetAllowTcpListen(int endpoint, bool allow_tcp_listen) { 385 void SetAllowTcpListen(int endpoint, bool allow_tcp_listen) {
398 return GetEndpoint(endpoint)->SetAllowTcpListen(allow_tcp_listen); 386 return GetEndpoint(endpoint)->SetAllowTcpListen(allow_tcp_listen);
399 } 387 }
400 388
389 bool CandidateTypesEqual(const std::string& type1,
390 const std::string& type2) {
391 // "prflx" is just as good as "local".
392 return (type1 == type2) || (type1 == "local" && type2 == "prflx")
393 || (type2 == "local" && type1 == "prflx");
394 }
395
396 bool LocalCandidateTypeEquals(
397 cricket::P2PTransportChannel* ch, const std::string& type) {
398 return CandidateTypesEqual(LocalCandidate(ch)->type(), type);
399 }
400
401 bool RemoteCandidateTypeEquals(
402 cricket::P2PTransportChannel* ch, const std::string& type) {
403 return CandidateTypesEqual(RemoteCandidate(ch)->type(), type);
404 }
405
401 void Test(const Result& expected) { 406 void Test(const Result& expected) {
402 int32 connect_start = rtc::Time(), connect_time; 407 int32 connect_start = rtc::Time(), connect_time;
403 408
404 // Create the channels and wait for them to connect. 409 // Create the channels and wait for them to connect.
405 CreateChannels(1); 410 CreateChannels(1);
406 EXPECT_TRUE_WAIT_MARGIN(ep1_ch1() != NULL && 411 EXPECT_TRUE_WAIT_MARGIN(ep1_ch1() != NULL &&
407 ep2_ch1() != NULL && 412 ep2_ch1() != NULL &&
408 ep1_ch1()->readable() && 413 ep1_ch1()->readable() &&
409 ep1_ch1()->writable() && 414 ep1_ch1()->writable() &&
410 ep2_ch1()->readable() && 415 ep2_ch1()->readable() &&
411 ep2_ch1()->writable(), 416 ep2_ch1()->writable(),
412 expected.connect_wait, 417 expected.connect_wait,
413 1000); 418 1000);
414 connect_time = rtc::TimeSince(connect_start); 419 connect_time = rtc::TimeSince(connect_start);
415 if (connect_time < expected.connect_wait) { 420 if (connect_time < expected.connect_wait) {
416 LOG(LS_INFO) << "Connect time: " << connect_time << " ms"; 421 LOG(LS_INFO) << "Connect time: " << connect_time << " ms";
417 } else { 422 } else {
418 LOG(LS_INFO) << "Connect time: " << "TIMEOUT (" 423 LOG(LS_INFO) << "Connect time: " << "TIMEOUT ("
419 << expected.connect_wait << " ms)"; 424 << expected.connect_wait << " ms)";
420 } 425 }
421 426
422 // Allow a few turns of the crank for the best connections to emerge. 427 // Allow a few turns of the crank for the best connections to emerge.
423 // This may take up to 2 seconds. 428 // This may take up to 2 seconds.
424 if (ep1_ch1()->best_connection() && 429 if (ep1_ch1()->best_connection() &&
425 ep2_ch1()->best_connection()) { 430 ep2_ch1()->best_connection()) {
426 int32 converge_start = rtc::Time(), converge_time; 431 int32 converge_start = rtc::Time(), converge_time;
427 int converge_wait = 2000; 432 int converge_wait = 2000;
428 EXPECT_TRUE_WAIT_MARGIN( 433 EXPECT_TRUE_WAIT_MARGIN(
429 LocalCandidate(ep1_ch1())->type() == expected.local_type && 434 LocalCandidateTypeEquals(ep1_ch1(), expected.local_type) &&
430 LocalCandidate(ep1_ch1())->protocol() == expected.local_proto && 435 LocalCandidate(ep1_ch1())->protocol() == expected.local_proto &&
431 RemoteCandidate(ep1_ch1())->type() == expected.remote_type && 436 RemoteCandidateTypeEquals(ep1_ch1(), expected.remote_type) &&
432 RemoteCandidate(ep1_ch1())->protocol() == expected.remote_proto, 437 RemoteCandidate(ep1_ch1())->protocol() == expected.remote_proto,
433 converge_wait, 438 converge_wait,
434 converge_wait); 439 converge_wait);
435 440
436 // Also do EXPECT_EQ on each part so that failures are more verbose. 441 // Also do EXPECT_EQ on each part so that failures are more verbose.
437 EXPECT_EQ(expected.local_type, LocalCandidate(ep1_ch1())->type()); 442 EXPECT_TRUE(LocalCandidateTypeEquals(ep1_ch1(), expected.local_type));
438 EXPECT_EQ(expected.local_proto, LocalCandidate(ep1_ch1())->protocol()); 443 EXPECT_EQ(expected.local_proto, LocalCandidate(ep1_ch1())->protocol());
439 EXPECT_EQ(expected.remote_type, RemoteCandidate(ep1_ch1())->type()); 444 EXPECT_TRUE(RemoteCandidateTypeEquals(ep1_ch1(), expected.remote_type));
440 EXPECT_EQ(expected.remote_proto, RemoteCandidate(ep1_ch1())->protocol()); 445 EXPECT_EQ(expected.remote_proto, RemoteCandidate(ep1_ch1())->protocol());
441 446
442 // Verifying remote channel best connection information. This is done 447 // Verifying remote channel best connection information. This is done
443 // only for the RFC 5245 as controlled agent will use USE-CANDIDATE 448 // only for the RFC 5245 as controlled agent will use USE-CANDIDATE
444 // from controlling (ep1) agent. We can easily predict from EP1 result 449 // from controlling (ep1) agent. We can easily predict from EP1 result
445 // matrix. 450 // matrix.
446 if (ep2_.protocol_type_ == cricket::ICEPROTO_RFC5245) {
447 // Checking for best connection candidates information at remote.
448 EXPECT_TRUE_WAIT(
449 LocalCandidate(ep2_ch1())->type() == expected.local_type2 &&
450 LocalCandidate(ep2_ch1())->protocol() == expected.local_proto2 &&
451 RemoteCandidate(ep2_ch1())->protocol() == expected.remote_proto2,
452 kDefaultTimeout);
453 451
454 // For verbose 452 // Checking for best connection candidates information at remote.
455 EXPECT_EQ(expected.local_type2, LocalCandidate(ep2_ch1())->type()); 453 EXPECT_TRUE_WAIT(
456 EXPECT_EQ(expected.local_proto2, LocalCandidate(ep2_ch1())->protocol()); 454 LocalCandidateTypeEquals(ep2_ch1(), expected.local_type2) &&
457 EXPECT_EQ(expected.remote_proto2, 455 LocalCandidate(ep2_ch1())->protocol() == expected.local_proto2 &&
458 RemoteCandidate(ep2_ch1())->protocol()); 456 RemoteCandidate(ep2_ch1())->protocol() == expected.remote_proto2,
459 // Removed remote_type comparision aginst best connection remote 457 kDefaultTimeout);
460 // candidate. This is done to handle remote type discrepancy from 458
461 // local to stun based on the test type. 459 // For verbose
462 // For example in case of Open -> NAT, ep2 channels will have LULU 460 EXPECT_TRUE(LocalCandidateTypeEquals(ep2_ch1(), expected.local_type2));
463 // and in other cases like NAT -> NAT it will be LUSU. To avoid these 461 EXPECT_EQ(expected.local_proto2, LocalCandidate(ep2_ch1())->protocol());
464 // mismatches and we are doing comparision in different way. 462 EXPECT_EQ(expected.remote_proto2,
465 // i.e. when don't match its remote type is either local or stun. 463 RemoteCandidate(ep2_ch1())->protocol());
466 // TODO(ronghuawu): Refine the test criteria. 464 // Removed remote_type comparision aginst best connection remote
467 // https://code.google.com/p/webrtc/issues/detail?id=1953 465 // candidate. This is done to handle remote type discrepancy from
468 if (expected.remote_type2 != RemoteCandidate(ep2_ch1())->type()) { 466 // local to stun based on the test type.
469 EXPECT_TRUE(expected.remote_type2 == cricket::LOCAL_PORT_TYPE || 467 // For example in case of Open -> NAT, ep2 channels will have LULU
470 expected.remote_type2 == cricket::STUN_PORT_TYPE); 468 // and in other cases like NAT -> NAT it will be LUSU. To avoid these
471 EXPECT_TRUE( 469 // mismatches and we are doing comparision in different way.
472 RemoteCandidate(ep2_ch1())->type() == cricket::LOCAL_PORT_TYPE || 470 // i.e. when don't match its remote type is either local or stun.
473 RemoteCandidate(ep2_ch1())->type() == cricket::STUN_PORT_TYPE || 471 // TODO(ronghuawu): Refine the test criteria.
474 RemoteCandidate(ep2_ch1())->type() == cricket::PRFLX_PORT_TYPE); 472 // https://code.google.com/p/webrtc/issues/detail?id=1953
475 } 473 if (!RemoteCandidateTypeEquals(ep2_ch1(), expected.remote_type2)) {
474 EXPECT_TRUE(expected.remote_type2 == cricket::LOCAL_PORT_TYPE ||
475 expected.remote_type2 == cricket::STUN_PORT_TYPE);
476 EXPECT_TRUE(
477 RemoteCandidate(ep2_ch1())->type() == cricket::LOCAL_PORT_TYPE ||
478 RemoteCandidate(ep2_ch1())->type() == cricket::STUN_PORT_TYPE ||
479 RemoteCandidate(ep2_ch1())->type() == cricket::PRFLX_PORT_TYPE);
476 } 480 }
477 481
478 converge_time = rtc::TimeSince(converge_start); 482 converge_time = rtc::TimeSince(converge_start);
479 if (converge_time < converge_wait) { 483 if (converge_time < converge_wait) {
480 LOG(LS_INFO) << "Converge time: " << converge_time << " ms"; 484 LOG(LS_INFO) << "Converge time: " << converge_time << " ms";
481 } else { 485 } else {
482 LOG(LS_INFO) << "Converge time: " << "TIMEOUT (" 486 LOG(LS_INFO) << "Converge time: " << "TIMEOUT ("
483 << converge_wait << " ms)"; 487 << converge_wait << " ms)";
484 } 488 }
485 } 489 }
(...skipping 57 matching lines...) Expand 10 before | Expand all | Expand 10 after
543 old_remote_candidate1->generation(), 547 old_remote_candidate1->generation(),
544 1000, 1000); 548 1000, 1000);
545 EXPECT_TRUE_WAIT_MARGIN(RemoteCandidate(ep2_ch1())->generation() != 549 EXPECT_TRUE_WAIT_MARGIN(RemoteCandidate(ep2_ch1())->generation() !=
546 old_remote_candidate2->generation(), 550 old_remote_candidate2->generation(),
547 1000, 1000); 551 1000, 1000);
548 EXPECT_EQ(1u, RemoteCandidate(ep2_ch1())->generation()); 552 EXPECT_EQ(1u, RemoteCandidate(ep2_ch1())->generation());
549 EXPECT_EQ(1u, RemoteCandidate(ep1_ch1())->generation()); 553 EXPECT_EQ(1u, RemoteCandidate(ep1_ch1())->generation());
550 } 554 }
551 555
552 void TestSignalRoleConflict() { 556 void TestSignalRoleConflict() {
553 SetIceProtocol(0, cricket::ICEPROTO_RFC5245);
554 SetIceTiebreaker(0, kTiebreaker1); // Default EP1 is in controlling state. 557 SetIceTiebreaker(0, kTiebreaker1); // Default EP1 is in controlling state.
555 558
556 SetIceProtocol(1, cricket::ICEPROTO_RFC5245);
557 SetIceRole(1, cricket::ICEROLE_CONTROLLING); 559 SetIceRole(1, cricket::ICEROLE_CONTROLLING);
558 SetIceTiebreaker(1, kTiebreaker2); 560 SetIceTiebreaker(1, kTiebreaker2);
559 561
560 // Creating channels with both channels role set to CONTROLLING. 562 // Creating channels with both channels role set to CONTROLLING.
561 CreateChannels(1); 563 CreateChannels(1);
562 // Since both the channels initiated with controlling state and channel2 564 // Since both the channels initiated with controlling state and channel2
563 // has higher tiebreaker value, channel1 should receive SignalRoleConflict. 565 // has higher tiebreaker value, channel1 should receive SignalRoleConflict.
564 EXPECT_TRUE_WAIT(GetRoleConflict(0), 1000); 566 EXPECT_TRUE_WAIT(GetRoleConflict(0), 1000);
565 EXPECT_FALSE(GetRoleConflict(1)); 567 EXPECT_FALSE(GetRoleConflict(1));
566 568
567 EXPECT_TRUE_WAIT(ep1_ch1()->readable() && 569 EXPECT_TRUE_WAIT(ep1_ch1()->readable() &&
568 ep1_ch1()->writable() && 570 ep1_ch1()->writable() &&
569 ep2_ch1()->readable() && 571 ep2_ch1()->readable() &&
570 ep2_ch1()->writable(), 572 ep2_ch1()->writable(),
571 1000); 573 1000);
572 574
573 EXPECT_TRUE(ep1_ch1()->best_connection() && 575 EXPECT_TRUE(ep1_ch1()->best_connection() &&
574 ep2_ch1()->best_connection()); 576 ep2_ch1()->best_connection());
575 577
576 TestSendRecv(1); 578 TestSendRecv(1);
577 } 579 }
578 580
579 void TestHybridConnectivity(cricket::IceProtocolType proto) {
580 AddAddress(0, kPublicAddrs[0]);
581 AddAddress(1, kPublicAddrs[1]);
582
583 SetAllocationStepDelay(0, kMinimumStepDelay);
584 SetAllocationStepDelay(1, kMinimumStepDelay);
585
586 SetIceRole(0, cricket::ICEROLE_CONTROLLING);
587 SetIceProtocol(0, cricket::ICEPROTO_HYBRID);
588 SetIceTiebreaker(0, kTiebreaker1);
589 SetIceRole(1, cricket::ICEROLE_CONTROLLED);
590 SetIceProtocol(1, proto);
591 SetIceTiebreaker(1, kTiebreaker2);
592
593 CreateChannels(1);
594 // When channel is in hybrid and it's controlling agent, channel will
595 // receive ping request from the remote. Hence connection is readable.
596 // Since channel is in hybrid, it will not send any pings, so no writable
597 // connection. Since channel2 is in controlled state, it will not have
598 // any connections which are readable or writable, as it didn't received
599 // pings (or none) with USE-CANDIDATE attribute.
600 EXPECT_TRUE_WAIT(ep1_ch1()->readable(), 1000);
601
602 // Set real protocol type.
603 ep1_ch1()->SetIceProtocolType(proto);
604
605 // Channel should able to send ping requests and connections become writable
606 // in both directions.
607 EXPECT_TRUE_WAIT(ep1_ch1()->readable() && ep1_ch1()->writable() &&
608 ep2_ch1()->readable() && ep2_ch1()->writable(),
609 1000);
610 EXPECT_TRUE(
611 ep1_ch1()->best_connection() && ep2_ch1()->best_connection() &&
612 LocalCandidate(ep1_ch1())->address().EqualIPs(kPublicAddrs[0]) &&
613 RemoteCandidate(ep1_ch1())->address().EqualIPs(kPublicAddrs[1]));
614
615 TestSendRecv(1);
616 DestroyChannels();
617 }
618
619 void OnChannelRequestSignaling(cricket::TransportChannelImpl* channel) { 581 void OnChannelRequestSignaling(cricket::TransportChannelImpl* channel) {
620 channel->OnSignalingReady(); 582 channel->OnSignalingReady();
621 } 583 }
622 // We pass the candidates directly to the other side. 584 // We pass the candidates directly to the other side.
623 void OnCandidate(cricket::TransportChannelImpl* ch, 585 void OnCandidate(cricket::TransportChannelImpl* ch,
624 const cricket::Candidate& c) { 586 const cricket::Candidate& c) {
625 if (force_relay_ && c.type() != cricket::RELAY_PORT_TYPE) 587 if (force_relay_ && c.type() != cricket::RELAY_PORT_TYPE)
626 return; 588 return;
627 589
628 if (GetEndpoint(ch)->save_candidates_) { 590 if (GetEndpoint(ch)->save_candidates_) {
(...skipping 158 matching lines...) Expand 10 before | Expand all | Expand 10 after
787 "local", "tcp", "prflx", "tcp", 3000); 749 "local", "tcp", "prflx", "tcp", 3000);
788 750
789 // Test the matrix of all the connectivity types we expect to see in the wild. 751 // Test the matrix of all the connectivity types we expect to see in the wild.
790 // Just test every combination of the configs in the Config enum. 752 // Just test every combination of the configs in the Config enum.
791 class P2PTransportChannelTest : public P2PTransportChannelTestBase { 753 class P2PTransportChannelTest : public P2PTransportChannelTestBase {
792 protected: 754 protected:
793 static const Result* kMatrix[NUM_CONFIGS][NUM_CONFIGS]; 755 static const Result* kMatrix[NUM_CONFIGS][NUM_CONFIGS];
794 static const Result* kMatrixSharedUfrag[NUM_CONFIGS][NUM_CONFIGS]; 756 static const Result* kMatrixSharedUfrag[NUM_CONFIGS][NUM_CONFIGS];
795 static const Result* kMatrixSharedSocketAsGice[NUM_CONFIGS][NUM_CONFIGS]; 757 static const Result* kMatrixSharedSocketAsGice[NUM_CONFIGS][NUM_CONFIGS];
796 static const Result* kMatrixSharedSocketAsIce[NUM_CONFIGS][NUM_CONFIGS]; 758 static const Result* kMatrixSharedSocketAsIce[NUM_CONFIGS][NUM_CONFIGS];
797 void ConfigureEndpoints(Config config1, Config config2, 759 void ConfigureEndpoints(Config config1, Config config2) {
798 int allocator_flags1, int allocator_flags2,
799 int delay1, int delay2,
800 cricket::IceProtocolType type) {
801 // Ideally we want to use TURN server for both GICE and ICE, but in case
802 // of GICE, TURN server usage is not producing results reliabally.
803 // TODO(mallinath): Remove Relay and use TURN server for all tests.
804 ServerAddresses stun_servers; 760 ServerAddresses stun_servers;
805 stun_servers.insert(kStunAddr); 761 stun_servers.insert(kStunAddr);
806 GetEndpoint(0)->allocator_.reset( 762 GetEndpoint(0)->allocator_.reset(
807 new cricket::BasicPortAllocator(&(GetEndpoint(0)->network_manager_), 763 new cricket::BasicPortAllocator(&(GetEndpoint(0)->network_manager_),
808 stun_servers, 764 stun_servers,
809 rtc::SocketAddress(), rtc::SocketAddress(), 765 rtc::SocketAddress(), rtc::SocketAddress(),
810 rtc::SocketAddress())); 766 rtc::SocketAddress()));
811 GetEndpoint(1)->allocator_.reset( 767 GetEndpoint(1)->allocator_.reset(
812 new cricket::BasicPortAllocator(&(GetEndpoint(1)->network_manager_), 768 new cricket::BasicPortAllocator(&(GetEndpoint(1)->network_manager_),
813 stun_servers, 769 stun_servers,
814 rtc::SocketAddress(), rtc::SocketAddress(), 770 rtc::SocketAddress(), rtc::SocketAddress(),
815 rtc::SocketAddress())); 771 rtc::SocketAddress()));
816 772
817 cricket::RelayServerConfig relay_server(cricket::RELAY_GTURN); 773 cricket::RelayServerConfig relay_server(cricket::RELAY_TURN);
818 if (type == cricket::ICEPROTO_RFC5245) { 774 relay_server.credentials = kRelayCredentials;
819 relay_server.type = cricket::RELAY_TURN; 775 relay_server.ports.push_back(cricket::ProtocolAddress(
820 relay_server.credentials = kRelayCredentials; 776 kTurnUdpIntAddr, cricket::PROTO_UDP, false));
821 relay_server.ports.push_back(cricket::ProtocolAddress(
822 kTurnUdpIntAddr, cricket::PROTO_UDP, false));
823 } else {
824 relay_server.ports.push_back(cricket::ProtocolAddress(
825 kRelayUdpIntAddr, cricket::PROTO_UDP, false));
826 relay_server.ports.push_back(cricket::ProtocolAddress(
827 kRelayTcpIntAddr, cricket::PROTO_TCP, false));
828 relay_server.ports.push_back(cricket::ProtocolAddress(
829 kRelaySslTcpIntAddr, cricket::PROTO_SSLTCP, false));
830 }
831 GetEndpoint(0)->allocator_->AddRelay(relay_server); 777 GetEndpoint(0)->allocator_->AddRelay(relay_server);
832 GetEndpoint(1)->allocator_->AddRelay(relay_server); 778 GetEndpoint(1)->allocator_->AddRelay(relay_server);
833 779
834 ConfigureEndpoint(0, config1); 780 ConfigureEndpoint(0, config1);
835 SetIceProtocol(0, type); 781 SetAllocationStepDelay(0, kMinimumStepDelay);
836 SetAllocatorFlags(0, allocator_flags1);
837 SetAllocationStepDelay(0, delay1);
838 ConfigureEndpoint(1, config2); 782 ConfigureEndpoint(1, config2);
839 SetIceProtocol(1, type); 783 SetAllocationStepDelay(1, kMinimumStepDelay);
840 SetAllocatorFlags(1, allocator_flags2);
841 SetAllocationStepDelay(1, delay2);
842 784
843 if (type == cricket::ICEPROTO_RFC5245) { 785 set_clear_remote_candidates_ufrag_pwd(true);
844 set_clear_remote_candidates_ufrag_pwd(true);
845 }
846 } 786 }
847 void ConfigureEndpoint(int endpoint, Config config) { 787 void ConfigureEndpoint(int endpoint, Config config) {
848 switch (config) { 788 switch (config) {
849 case OPEN: 789 case OPEN:
850 AddAddress(endpoint, kPublicAddrs[endpoint]); 790 AddAddress(endpoint, kPublicAddrs[endpoint]);
851 break; 791 break;
852 case NAT_FULL_CONE: 792 case NAT_FULL_CONE:
853 case NAT_ADDR_RESTRICTED: 793 case NAT_ADDR_RESTRICTED:
854 case NAT_PORT_RESTRICTED: 794 case NAT_PORT_RESTRICTED:
855 case NAT_SYMMETRIC: 795 case NAT_SYMMETRIC:
(...skipping 171 matching lines...) Expand 10 before | Expand all | Expand 10 after
1027 /*SC*/ {PULU, PUSU, PUSU, PURU, PURU, PUSU, PURU, NULL, NULL, LSRS, NULL, LTRT}, 967 /*SC*/ {PULU, PUSU, PUSU, PURU, PURU, PUSU, PURU, NULL, NULL, LSRS, NULL, LTRT},
1028 /*!U*/ {PTLT, NULL, NULL, NULL, NULL, NULL, NULL, PTLT, LTPT, LSRS, NULL, LTRT}, 968 /*!U*/ {PTLT, NULL, NULL, NULL, NULL, NULL, NULL, PTLT, LTPT, LSRS, NULL, LTRT},
1029 /*!T*/ {LTRT, NULL, NULL, NULL, NULL, NULL, NULL, PTLT, LTRT, LSRS, NULL, LTRT}, 969 /*!T*/ {LTRT, NULL, NULL, NULL, NULL, NULL, NULL, PTLT, LTRT, LSRS, NULL, LTRT},
1030 /*HT*/ {LSRS, LSRS, LSRS, LSRS, LSRS, LSRS, LSRS, LSRS, LSRS, LSRS, NULL, LSRS}, 970 /*HT*/ {LSRS, LSRS, LSRS, LSRS, LSRS, LSRS, LSRS, LSRS, LSRS, LSRS, NULL, LSRS},
1031 /*PR*/ {NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL}, 971 /*PR*/ {NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL, NULL},
1032 /*PR*/ {LTRT, LTRT, LTRT, LTRT, LTRT, LTRT, LTRT, LTRT, LTRT, LSRS, NULL, LTRT}, 972 /*PR*/ {LTRT, LTRT, LTRT, LTRT, LTRT, LTRT, LTRT, LTRT, LTRT, LSRS, NULL, LTRT},
1033 }; 973 };
1034 974
1035 // The actual tests that exercise all the various configurations. 975 // The actual tests that exercise all the various configurations.
1036 // Test names are of the form P2PTransportChannelTest_TestOPENToNAT_FULL_CONE 976 // Test names are of the form P2PTransportChannelTest_TestOPENToNAT_FULL_CONE
1037 // Same test case is run in both GICE and ICE mode.
1038 // kDefaultStepDelay - is used for all Gice cases.
1039 // kMinimumStepDelay - is used when both end points have
1040 // PORTALLOCATOR_ENABLE_SHARED_UFRAG flag enabled.
1041 // Technically we should be able to use kMinimumStepDelay irrespective of
1042 // protocol type. But which might need modifications to current result matrices
1043 // for tests in this file.
1044 #define P2P_TEST_DECLARATION(x, y, z) \ 977 #define P2P_TEST_DECLARATION(x, y, z) \
1045 TEST_F(P2PTransportChannelTest, z##Test##x##To##y##AsGiceNoneSharedUfrag) { \ 978 TEST_F(P2PTransportChannelTest, z##Test##x##To##y) { \
1046 ConfigureEndpoints(x, y, kDefaultPortAllocatorFlags, \ 979 ConfigureEndpoints(x, y); \
1047 kDefaultPortAllocatorFlags, \
1048 kDefaultStepDelay, kDefaultStepDelay, \
1049 cricket::ICEPROTO_GOOGLE); \
1050 if (kMatrix[x][y] != NULL) \
1051 Test(*kMatrix[x][y]); \
1052 else \
1053 LOG(LS_WARNING) << "Not yet implemented"; \
1054 } \
1055 TEST_F(P2PTransportChannelTest, z##Test##x##To##y##AsGiceP0SharedUfrag) { \
1056 ConfigureEndpoints(x, y, PORTALLOCATOR_ENABLE_SHARED_UFRAG, \
1057 kDefaultPortAllocatorFlags, \
1058 kDefaultStepDelay, kDefaultStepDelay, \
1059 cricket::ICEPROTO_GOOGLE); \
1060 if (kMatrix[x][y] != NULL) \
1061 Test(*kMatrix[x][y]); \
1062 else \
1063 LOG(LS_WARNING) << "Not yet implemented"; \
1064 } \
1065 TEST_F(P2PTransportChannelTest, z##Test##x##To##y##AsGiceP1SharedUfrag) { \
1066 ConfigureEndpoints(x, y, kDefaultPortAllocatorFlags, \
1067 PORTALLOCATOR_ENABLE_SHARED_UFRAG, \
1068 kDefaultStepDelay, kDefaultStepDelay, \
1069 cricket::ICEPROTO_GOOGLE); \
1070 if (kMatrixSharedUfrag[x][y] != NULL) \
1071 Test(*kMatrixSharedUfrag[x][y]); \
1072 else \
1073 LOG(LS_WARNING) << "Not yet implemented"; \
1074 } \
1075 TEST_F(P2PTransportChannelTest, z##Test##x##To##y##AsGiceBothSharedUfrag) { \
1076 ConfigureEndpoints(x, y, PORTALLOCATOR_ENABLE_SHARED_UFRAG, \
1077 PORTALLOCATOR_ENABLE_SHARED_UFRAG, \
1078 kDefaultStepDelay, kDefaultStepDelay, \
1079 cricket::ICEPROTO_GOOGLE); \
1080 if (kMatrixSharedUfrag[x][y] != NULL) \
1081 Test(*kMatrixSharedUfrag[x][y]); \
1082 else \
1083 LOG(LS_WARNING) << "Not yet implemented"; \
1084 } \
1085 TEST_F(P2PTransportChannelTest, \
1086 z##Test##x##To##y##AsGiceBothSharedUfragWithMinimumStepDelay) { \
1087 ConfigureEndpoints(x, y, PORTALLOCATOR_ENABLE_SHARED_UFRAG, \
1088 PORTALLOCATOR_ENABLE_SHARED_UFRAG, \
1089 kMinimumStepDelay, kMinimumStepDelay, \
1090 cricket::ICEPROTO_GOOGLE); \
1091 if (kMatrixSharedUfrag[x][y] != NULL) \
1092 Test(*kMatrixSharedUfrag[x][y]); \
1093 else \
1094 LOG(LS_WARNING) << "Not yet implemented"; \
1095 } \
1096 TEST_F(P2PTransportChannelTest, \
1097 z##Test##x##To##y##AsGiceBothSharedUfragSocket) { \
1098 ConfigureEndpoints(x, y, PORTALLOCATOR_ENABLE_SHARED_UFRAG | \
1099 PORTALLOCATOR_ENABLE_SHARED_SOCKET, \
1100 PORTALLOCATOR_ENABLE_SHARED_UFRAG | \
1101 PORTALLOCATOR_ENABLE_SHARED_SOCKET, \
1102 kMinimumStepDelay, kMinimumStepDelay, \
1103 cricket::ICEPROTO_GOOGLE); \
1104 if (kMatrixSharedSocketAsGice[x][y] != NULL) \
1105 Test(*kMatrixSharedSocketAsGice[x][y]); \
1106 else \
1107 LOG(LS_WARNING) << "Not yet implemented"; \
1108 } \
1109 TEST_F(P2PTransportChannelTest, z##Test##x##To##y##AsIce) { \
1110 ConfigureEndpoints(x, y, PORTALLOCATOR_ENABLE_SHARED_UFRAG | \
1111 PORTALLOCATOR_ENABLE_SHARED_SOCKET, \
1112 PORTALLOCATOR_ENABLE_SHARED_UFRAG | \
1113 PORTALLOCATOR_ENABLE_SHARED_SOCKET, \
1114 kMinimumStepDelay, kMinimumStepDelay, \
1115 cricket::ICEPROTO_RFC5245); \
1116 if (kMatrixSharedSocketAsIce[x][y] != NULL) \ 980 if (kMatrixSharedSocketAsIce[x][y] != NULL) \
1117 Test(*kMatrixSharedSocketAsIce[x][y]); \ 981 Test(*kMatrixSharedSocketAsIce[x][y]); \
1118 else \ 982 else \
1119 LOG(LS_WARNING) << "Not yet implemented"; \ 983 LOG(LS_WARNING) << "Not yet implemented"; \
1120 } 984 }
1121 985
1122 #define P2P_TEST(x, y) \ 986 #define P2P_TEST(x, y) \
1123 P2P_TEST_DECLARATION(x, y,) 987 P2P_TEST_DECLARATION(x, y,)
1124 988
1125 #define FLAKY_P2P_TEST(x, y) \ 989 #define FLAKY_P2P_TEST(x, y) \
(...skipping 37 matching lines...) Expand 10 before | Expand all | Expand 10 after
1163 P2P_TEST_SET(NAT_DOUBLE_CONE) 1027 P2P_TEST_SET(NAT_DOUBLE_CONE)
1164 P2P_TEST_SET(NAT_SYMMETRIC_THEN_CONE) 1028 P2P_TEST_SET(NAT_SYMMETRIC_THEN_CONE)
1165 P2P_TEST_SET(BLOCK_UDP) 1029 P2P_TEST_SET(BLOCK_UDP)
1166 P2P_TEST_SET(BLOCK_UDP_AND_INCOMING_TCP) 1030 P2P_TEST_SET(BLOCK_UDP_AND_INCOMING_TCP)
1167 P2P_TEST_SET(BLOCK_ALL_BUT_OUTGOING_HTTP) 1031 P2P_TEST_SET(BLOCK_ALL_BUT_OUTGOING_HTTP)
1168 P2P_TEST_SET(PROXY_HTTPS) 1032 P2P_TEST_SET(PROXY_HTTPS)
1169 P2P_TEST_SET(PROXY_SOCKS) 1033 P2P_TEST_SET(PROXY_SOCKS)
1170 1034
1171 // Test that we restart candidate allocation when local ufrag&pwd changed. 1035 // Test that we restart candidate allocation when local ufrag&pwd changed.
1172 // Standard Ice protocol is used. 1036 // Standard Ice protocol is used.
1173 TEST_F(P2PTransportChannelTest, HandleUfragPwdChangeAsIce) { 1037 TEST_F(P2PTransportChannelTest, HandleUfragPwdChange) {
1174 ConfigureEndpoints(OPEN, OPEN, 1038 ConfigureEndpoints(OPEN, OPEN);
1175 PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1176 PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1177 kMinimumStepDelay, kMinimumStepDelay,
1178 cricket::ICEPROTO_RFC5245);
1179 CreateChannels(1); 1039 CreateChannels(1);
1180 TestHandleIceUfragPasswordChanged(); 1040 TestHandleIceUfragPasswordChanged();
1181 DestroyChannels(); 1041 DestroyChannels();
1182 }
1183
1184 // Test that we restart candidate allocation when local ufrag&pwd changed.
1185 // Google Ice protocol is used.
1186 TEST_F(P2PTransportChannelTest, HandleUfragPwdChangeAsGice) {
1187 ConfigureEndpoints(OPEN, OPEN,
1188 PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1189 PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1190 kDefaultStepDelay, kDefaultStepDelay,
1191 cricket::ICEPROTO_GOOGLE);
1192 CreateChannels(1);
1193 TestHandleIceUfragPasswordChanged();
1194 DestroyChannels();
1195 } 1042 }
1196 1043
1197 // Test the operation of GetStats. 1044 // Test the operation of GetStats.
1198 TEST_F(P2PTransportChannelTest, GetStats) { 1045 TEST_F(P2PTransportChannelTest, GetStats) {
1199 ConfigureEndpoints(OPEN, OPEN, 1046 ConfigureEndpoints(OPEN, OPEN);
1200 kDefaultPortAllocatorFlags,
1201 kDefaultPortAllocatorFlags,
1202 kDefaultStepDelay, kDefaultStepDelay,
1203 cricket::ICEPROTO_GOOGLE);
1204 CreateChannels(1); 1047 CreateChannels(1);
1205 EXPECT_TRUE_WAIT_MARGIN(ep1_ch1()->readable() && ep1_ch1()->writable() && 1048 EXPECT_TRUE_WAIT_MARGIN(ep1_ch1()->readable() && ep1_ch1()->writable() &&
1206 ep2_ch1()->readable() && ep2_ch1()->writable(), 1049 ep2_ch1()->readable() && ep2_ch1()->writable(),
1207 1000, 1000); 1050 1000, 1000);
1208 TestSendRecv(1); 1051 TestSendRecv(1);
1209 cricket::ConnectionInfos infos; 1052 cricket::ConnectionInfos infos;
1210 ASSERT_TRUE(ep1_ch1()->GetStats(&infos)); 1053 ASSERT_TRUE(ep1_ch1()->GetStats(&infos));
1211 ASSERT_EQ(1U, infos.size()); 1054 ASSERT_EQ(1U, infos.size());
1212 EXPECT_TRUE(infos[0].new_connection); 1055 EXPECT_TRUE(infos[0].new_connection);
1213 EXPECT_TRUE(infos[0].best_connection); 1056 EXPECT_TRUE(infos[0].best_connection);
1214 EXPECT_TRUE(infos[0].readable); 1057 EXPECT_TRUE(infos[0].readable);
1215 EXPECT_TRUE(infos[0].writable); 1058 EXPECT_TRUE(infos[0].writable);
1216 EXPECT_FALSE(infos[0].timeout); 1059 EXPECT_FALSE(infos[0].timeout);
1217 EXPECT_EQ(10U, infos[0].sent_total_packets); 1060 EXPECT_EQ(10U, infos[0].sent_total_packets);
1218 EXPECT_EQ(0U, infos[0].sent_discarded_packets); 1061 EXPECT_EQ(0U, infos[0].sent_discarded_packets);
1219 EXPECT_EQ(10 * 36U, infos[0].sent_total_bytes); 1062 EXPECT_EQ(10 * 36U, infos[0].sent_total_bytes);
1220 EXPECT_EQ(10 * 36U, infos[0].recv_total_bytes); 1063 EXPECT_EQ(10 * 36U, infos[0].recv_total_bytes);
1221 EXPECT_GT(infos[0].rtt, 0U); 1064 EXPECT_GT(infos[0].rtt, 0U);
1222 DestroyChannels(); 1065 DestroyChannels();
1223 } 1066 }
1224 1067
1225 // Test that we properly create a connection on a STUN ping from unknown address 1068 // Test that we properly create a connection on a STUN ping from unknown address
1226 // when the signaling is slow. 1069 // when the signaling is slow.
1227 TEST_F(P2PTransportChannelTest, PeerReflexiveCandidateBeforeSignaling) { 1070 TEST_F(P2PTransportChannelTest, PeerReflexiveCandidateBeforeSignaling) {
1228 ConfigureEndpoints(OPEN, OPEN, 1071 ConfigureEndpoints(OPEN, OPEN);
1229 PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1230 PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1231 kDefaultStepDelay, kDefaultStepDelay,
1232 cricket::ICEPROTO_RFC5245);
1233 // Emulate no remote credentials coming in. 1072 // Emulate no remote credentials coming in.
1234 set_clear_remote_candidates_ufrag_pwd(false); 1073 set_clear_remote_candidates_ufrag_pwd(false);
1235 CreateChannels(1); 1074 CreateChannels(1);
1236 // Only have remote credentials come in for ep2, not ep1. 1075 // Only have remote credentials come in for ep2, not ep1.
1237 ep2_ch1()->SetRemoteIceCredentials(kIceUfrag[3], kIcePwd[3]); 1076 ep2_ch1()->SetRemoteIceCredentials(kIceUfrag[3], kIcePwd[3]);
1238 1077
1239 // Pause sending ep2's candidates to ep1 until ep1 receives the peer reflexive 1078 // Pause sending ep2's candidates to ep1 until ep1 receives the peer reflexive
1240 // candidate. 1079 // candidate.
1241 PauseCandidates(1); 1080 PauseCandidates(1);
1242 1081
(...skipping 22 matching lines...) Expand all
1265 "local", 1104 "local",
1266 ep1_ch1()->best_connection()->remote_candidate().type(), 1105 ep1_ch1()->best_connection()->remote_candidate().type(),
1267 2000); 1106 2000);
1268 EXPECT_EQ(best_connection, ep1_ch1()->best_connection()); 1107 EXPECT_EQ(best_connection, ep1_ch1()->best_connection());
1269 DestroyChannels(); 1108 DestroyChannels();
1270 } 1109 }
1271 1110
1272 // Test that we properly create a connection on a STUN ping from unknown address 1111 // Test that we properly create a connection on a STUN ping from unknown address
1273 // when the signaling is slow and the end points are behind NAT. 1112 // when the signaling is slow and the end points are behind NAT.
1274 TEST_F(P2PTransportChannelTest, PeerReflexiveCandidateBeforeSignalingWithNAT) { 1113 TEST_F(P2PTransportChannelTest, PeerReflexiveCandidateBeforeSignalingWithNAT) {
1275 ConfigureEndpoints(OPEN, NAT_SYMMETRIC, 1114 ConfigureEndpoints(OPEN, NAT_SYMMETRIC);
1276 PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1277 PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1278 kDefaultStepDelay, kDefaultStepDelay,
1279 cricket::ICEPROTO_RFC5245);
1280 // Emulate no remote credentials coming in. 1115 // Emulate no remote credentials coming in.
1281 set_clear_remote_candidates_ufrag_pwd(false); 1116 set_clear_remote_candidates_ufrag_pwd(false);
1282 CreateChannels(1); 1117 CreateChannels(1);
1283 // Only have remote credentials come in for ep2, not ep1. 1118 // Only have remote credentials come in for ep2, not ep1.
1284 ep2_ch1()->SetRemoteIceCredentials(kIceUfrag[3], kIcePwd[3]); 1119 ep2_ch1()->SetRemoteIceCredentials(kIceUfrag[3], kIcePwd[3]);
1285 // Pause sending ep2's candidates to ep1 until ep1 receives the peer reflexive 1120 // Pause sending ep2's candidates to ep1 until ep1 receives the peer reflexive
1286 // candidate. 1121 // candidate.
1287 PauseCandidates(1); 1122 PauseCandidates(1);
1288 1123
1289 // The caller should have the best connection connected to the peer reflexive 1124 // The caller should have the best connection connected to the peer reflexive
(...skipping 20 matching lines...) Expand all
1310 // Wait to verify the connection is not culled. 1145 // Wait to verify the connection is not culled.
1311 WAIT(ep1_ch1()->writable(), 2000); 1146 WAIT(ep1_ch1()->writable(), 2000);
1312 EXPECT_EQ(ep2_ch1()->best_connection(), best_connection); 1147 EXPECT_EQ(ep2_ch1()->best_connection(), best_connection);
1313 EXPECT_EQ("prflx", ep1_ch1()->best_connection()->remote_candidate().type()); 1148 EXPECT_EQ("prflx", ep1_ch1()->best_connection()->remote_candidate().type());
1314 DestroyChannels(); 1149 DestroyChannels();
1315 } 1150 }
1316 1151
1317 // Test that if remote candidates don't have ufrag and pwd, we still work. 1152 // Test that if remote candidates don't have ufrag and pwd, we still work.
1318 TEST_F(P2PTransportChannelTest, RemoteCandidatesWithoutUfragPwd) { 1153 TEST_F(P2PTransportChannelTest, RemoteCandidatesWithoutUfragPwd) {
1319 set_clear_remote_candidates_ufrag_pwd(true); 1154 set_clear_remote_candidates_ufrag_pwd(true);
1320 ConfigureEndpoints(OPEN, OPEN, 1155 ConfigureEndpoints(OPEN, OPEN);
1321 PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1322 PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1323 kMinimumStepDelay, kMinimumStepDelay,
1324 cricket::ICEPROTO_GOOGLE);
1325 CreateChannels(1); 1156 CreateChannels(1);
1326 const cricket::Connection* best_connection = NULL; 1157 const cricket::Connection* best_connection = NULL;
1327 // Wait until the callee's connections are created. 1158 // Wait until the callee's connections are created.
1328 WAIT((best_connection = ep2_ch1()->best_connection()) != NULL, 1000); 1159 WAIT((best_connection = ep2_ch1()->best_connection()) != NULL, 1000);
1329 // Wait to see if they get culled; they shouldn't. 1160 // Wait to see if they get culled; they shouldn't.
1330 WAIT(ep2_ch1()->best_connection() != best_connection, 1000); 1161 WAIT(ep2_ch1()->best_connection() != best_connection, 1000);
1331 EXPECT_TRUE(ep2_ch1()->best_connection() == best_connection); 1162 EXPECT_TRUE(ep2_ch1()->best_connection() == best_connection);
1332 DestroyChannels(); 1163 DestroyChannels();
1333 } 1164 }
1334 1165
1335 // Test that a host behind NAT cannot be reached when incoming_only 1166 // Test that a host behind NAT cannot be reached when incoming_only
1336 // is set to true. 1167 // is set to true.
1337 TEST_F(P2PTransportChannelTest, IncomingOnlyBlocked) { 1168 TEST_F(P2PTransportChannelTest, IncomingOnlyBlocked) {
1338 ConfigureEndpoints(NAT_FULL_CONE, OPEN, 1169 ConfigureEndpoints(NAT_FULL_CONE, OPEN);
1339 kDefaultPortAllocatorFlags,
1340 kDefaultPortAllocatorFlags,
1341 kDefaultStepDelay, kDefaultStepDelay,
1342 cricket::ICEPROTO_GOOGLE);
1343
1344 SetAllocatorFlags(0, kOnlyLocalPorts); 1170 SetAllocatorFlags(0, kOnlyLocalPorts);
1345 CreateChannels(1); 1171 CreateChannels(1);
1346 ep1_ch1()->set_incoming_only(true); 1172 ep1_ch1()->set_incoming_only(true);
1347 1173
1348 // Pump for 1 second and verify that the channels are not connected. 1174 // Pump for 1 second and verify that the channels are not connected.
1349 rtc::Thread::Current()->ProcessMessages(1000); 1175 rtc::Thread::Current()->ProcessMessages(1000);
1350 1176
1351 EXPECT_FALSE(ep1_ch1()->readable()); 1177 EXPECT_FALSE(ep1_ch1()->readable());
1352 EXPECT_FALSE(ep1_ch1()->writable()); 1178 EXPECT_FALSE(ep1_ch1()->writable());
1353 EXPECT_FALSE(ep2_ch1()->readable()); 1179 EXPECT_FALSE(ep2_ch1()->readable());
1354 EXPECT_FALSE(ep2_ch1()->writable()); 1180 EXPECT_FALSE(ep2_ch1()->writable());
1355 1181
1356 DestroyChannels(); 1182 DestroyChannels();
1357 } 1183 }
1358 1184
1359 // Test that a peer behind NAT can connect to a peer that has 1185 // Test that a peer behind NAT can connect to a peer that has
1360 // incoming_only flag set. 1186 // incoming_only flag set.
1361 TEST_F(P2PTransportChannelTest, IncomingOnlyOpen) { 1187 TEST_F(P2PTransportChannelTest, IncomingOnlyOpen) {
1362 ConfigureEndpoints(OPEN, NAT_FULL_CONE, 1188 ConfigureEndpoints(OPEN, NAT_FULL_CONE);
1363 kDefaultPortAllocatorFlags,
1364 kDefaultPortAllocatorFlags,
1365 kDefaultStepDelay, kDefaultStepDelay,
1366 cricket::ICEPROTO_GOOGLE);
1367
1368 SetAllocatorFlags(0, kOnlyLocalPorts); 1189 SetAllocatorFlags(0, kOnlyLocalPorts);
1369 CreateChannels(1); 1190 CreateChannels(1);
1370 ep1_ch1()->set_incoming_only(true); 1191 ep1_ch1()->set_incoming_only(true);
1371 1192
1372 EXPECT_TRUE_WAIT_MARGIN(ep1_ch1() != NULL && ep2_ch1() != NULL && 1193 EXPECT_TRUE_WAIT_MARGIN(ep1_ch1() != NULL && ep2_ch1() != NULL &&
1373 ep1_ch1()->readable() && ep1_ch1()->writable() && 1194 ep1_ch1()->readable() && ep1_ch1()->writable() &&
1374 ep2_ch1()->readable() && ep2_ch1()->writable(), 1195 ep2_ch1()->readable() && ep2_ch1()->writable(),
1375 1000, 1000); 1196 1000, 1000);
1376 1197
1377 DestroyChannels(); 1198 DestroyChannels();
1378 } 1199 }
1379 1200
1380 TEST_F(P2PTransportChannelTest, TestTcpConnectionsFromActiveToPassive) { 1201 TEST_F(P2PTransportChannelTest, TestTcpConnectionsFromActiveToPassive) {
1381 AddAddress(0, kPublicAddrs[0]); 1202 AddAddress(0, kPublicAddrs[0]);
1382 AddAddress(1, kPublicAddrs[1]); 1203 AddAddress(1, kPublicAddrs[1]);
1383 1204
1384 SetAllocationStepDelay(0, kMinimumStepDelay); 1205 SetAllocationStepDelay(0, kMinimumStepDelay);
1385 SetAllocationStepDelay(1, kMinimumStepDelay); 1206 SetAllocationStepDelay(1, kMinimumStepDelay);
1386 1207
1387 int kOnlyLocalTcpPorts = cricket::PORTALLOCATOR_DISABLE_UDP | 1208 int kOnlyLocalTcpPorts = cricket::PORTALLOCATOR_DISABLE_UDP |
1388 cricket::PORTALLOCATOR_DISABLE_STUN | 1209 cricket::PORTALLOCATOR_DISABLE_STUN |
1389 cricket::PORTALLOCATOR_DISABLE_RELAY | 1210 cricket::PORTALLOCATOR_DISABLE_RELAY;
1390 cricket::PORTALLOCATOR_ENABLE_SHARED_UFRAG;
1391 // Disable all protocols except TCP. 1211 // Disable all protocols except TCP.
1392 SetAllocatorFlags(0, kOnlyLocalTcpPorts); 1212 SetAllocatorFlags(0, kOnlyLocalTcpPorts);
1393 SetAllocatorFlags(1, kOnlyLocalTcpPorts); 1213 SetAllocatorFlags(1, kOnlyLocalTcpPorts);
1394 1214
1395 SetAllowTcpListen(0, true); // actpass. 1215 SetAllowTcpListen(0, true); // actpass.
1396 SetAllowTcpListen(1, false); // active. 1216 SetAllowTcpListen(1, false); // active.
1397 1217
1398 CreateChannels(1); 1218 CreateChannels(1);
1399 1219
1400 EXPECT_TRUE_WAIT(ep1_ch1()->readable() && ep1_ch1()->writable() && 1220 EXPECT_TRUE_WAIT(ep1_ch1()->readable() && ep1_ch1()->writable() &&
(...skipping 20 matching lines...) Expand all
1421 TestSignalRoleConflict(); 1241 TestSignalRoleConflict();
1422 } 1242 }
1423 1243
1424 // Tests that the ice configs (protocol, tiebreaker and role) can be passed 1244 // Tests that the ice configs (protocol, tiebreaker and role) can be passed
1425 // down to ports. 1245 // down to ports.
1426 TEST_F(P2PTransportChannelTest, TestIceConfigWillPassDownToPort) { 1246 TEST_F(P2PTransportChannelTest, TestIceConfigWillPassDownToPort) {
1427 AddAddress(0, kPublicAddrs[0]); 1247 AddAddress(0, kPublicAddrs[0]);
1428 AddAddress(1, kPublicAddrs[1]); 1248 AddAddress(1, kPublicAddrs[1]);
1429 1249
1430 SetIceRole(0, cricket::ICEROLE_CONTROLLING); 1250 SetIceRole(0, cricket::ICEROLE_CONTROLLING);
1431 SetIceProtocol(0, cricket::ICEPROTO_GOOGLE);
1432 SetIceTiebreaker(0, kTiebreaker1); 1251 SetIceTiebreaker(0, kTiebreaker1);
1433 SetIceRole(1, cricket::ICEROLE_CONTROLLING); 1252 SetIceRole(1, cricket::ICEROLE_CONTROLLING);
1434 SetIceProtocol(1, cricket::ICEPROTO_RFC5245);
1435 SetIceTiebreaker(1, kTiebreaker2); 1253 SetIceTiebreaker(1, kTiebreaker2);
1436 1254
1437 CreateChannels(1); 1255 CreateChannels(1);
1438 1256
1439 EXPECT_EQ_WAIT(2u, ep1_ch1()->ports().size(), 1000); 1257 EXPECT_EQ_WAIT(2u, ep1_ch1()->ports().size(), 1000);
1440 1258
1441 const std::vector<cricket::PortInterface *> ports_before = ep1_ch1()->ports(); 1259 const std::vector<cricket::PortInterface *> ports_before = ep1_ch1()->ports();
1442 for (size_t i = 0; i < ports_before.size(); ++i) { 1260 for (size_t i = 0; i < ports_before.size(); ++i) {
1443 EXPECT_EQ(cricket::ICEROLE_CONTROLLING, ports_before[i]->GetIceRole()); 1261 EXPECT_EQ(cricket::ICEROLE_CONTROLLING, ports_before[i]->GetIceRole());
1444 EXPECT_EQ(cricket::ICEPROTO_GOOGLE, ports_before[i]->IceProtocol());
1445 EXPECT_EQ(kTiebreaker1, ports_before[i]->IceTiebreaker()); 1262 EXPECT_EQ(kTiebreaker1, ports_before[i]->IceTiebreaker());
1446 } 1263 }
1447 1264
1448 ep1_ch1()->SetIceRole(cricket::ICEROLE_CONTROLLED); 1265 ep1_ch1()->SetIceRole(cricket::ICEROLE_CONTROLLED);
1449 ep1_ch1()->SetIceProtocolType(cricket::ICEPROTO_RFC5245);
1450 ep1_ch1()->SetIceTiebreaker(kTiebreaker2); 1266 ep1_ch1()->SetIceTiebreaker(kTiebreaker2);
1451 1267
1452 const std::vector<cricket::PortInterface *> ports_after = ep1_ch1()->ports(); 1268 const std::vector<cricket::PortInterface *> ports_after = ep1_ch1()->ports();
1453 for (size_t i = 0; i < ports_after.size(); ++i) { 1269 for (size_t i = 0; i < ports_after.size(); ++i) {
1454 EXPECT_EQ(cricket::ICEROLE_CONTROLLED, ports_before[i]->GetIceRole()); 1270 EXPECT_EQ(cricket::ICEROLE_CONTROLLED, ports_before[i]->GetIceRole());
1455 EXPECT_EQ(cricket::ICEPROTO_RFC5245, ports_before[i]->IceProtocol());
1456 // SetIceTiebreaker after Connect() has been called will fail. So expect the 1271 // SetIceTiebreaker after Connect() has been called will fail. So expect the
1457 // original value. 1272 // original value.
1458 EXPECT_EQ(kTiebreaker1, ports_before[i]->IceTiebreaker()); 1273 EXPECT_EQ(kTiebreaker1, ports_before[i]->IceTiebreaker());
1459 } 1274 }
1460 1275
1461 EXPECT_TRUE_WAIT(ep1_ch1()->readable() && 1276 EXPECT_TRUE_WAIT(ep1_ch1()->readable() &&
1462 ep1_ch1()->writable() && 1277 ep1_ch1()->writable() &&
1463 ep2_ch1()->readable() && 1278 ep2_ch1()->readable() &&
1464 ep2_ch1()->writable(), 1279 ep2_ch1()->writable(),
1465 1000); 1280 1000);
1466 1281
1467 EXPECT_TRUE(ep1_ch1()->best_connection() && 1282 EXPECT_TRUE(ep1_ch1()->best_connection() &&
1468 ep2_ch1()->best_connection()); 1283 ep2_ch1()->best_connection());
1469 1284
1470 TestSendRecv(1); 1285 TestSendRecv(1);
1471 DestroyChannels(); 1286 DestroyChannels();
1472 } 1287 }
1473 1288
1474 // This test verifies channel can handle ice messages when channel is in
1475 // hybrid mode.
1476 TEST_F(P2PTransportChannelTest, TestConnectivityBetweenHybridandIce) {
1477 TestHybridConnectivity(cricket::ICEPROTO_RFC5245);
1478 }
1479
1480 // This test verifies channel can handle Gice messages when channel is in
1481 // hybrid mode.
1482 TEST_F(P2PTransportChannelTest, TestConnectivityBetweenHybridandGice) {
1483 TestHybridConnectivity(cricket::ICEPROTO_GOOGLE);
1484 }
1485
1486 // Verify that we can set DSCP value and retrieve properly from P2PTC. 1289 // Verify that we can set DSCP value and retrieve properly from P2PTC.
1487 TEST_F(P2PTransportChannelTest, TestDefaultDscpValue) { 1290 TEST_F(P2PTransportChannelTest, TestDefaultDscpValue) {
1488 AddAddress(0, kPublicAddrs[0]); 1291 AddAddress(0, kPublicAddrs[0]);
1489 AddAddress(1, kPublicAddrs[1]); 1292 AddAddress(1, kPublicAddrs[1]);
1490 1293
1491 CreateChannels(1); 1294 CreateChannels(1);
1492 EXPECT_EQ(rtc::DSCP_NO_CHANGE, 1295 EXPECT_EQ(rtc::DSCP_NO_CHANGE,
1493 GetEndpoint(0)->cd1_.ch_->DefaultDscpValue()); 1296 GetEndpoint(0)->cd1_.ch_->DefaultDscpValue());
1494 EXPECT_EQ(rtc::DSCP_NO_CHANGE, 1297 EXPECT_EQ(rtc::DSCP_NO_CHANGE,
1495 GetEndpoint(1)->cd1_.ch_->DefaultDscpValue()); 1298 GetEndpoint(1)->cd1_.ch_->DefaultDscpValue());
(...skipping 38 matching lines...) Expand 10 before | Expand all | Expand 10 after
1534 ep1_ch1()->best_connection() && ep2_ch1()->best_connection() && 1337 ep1_ch1()->best_connection() && ep2_ch1()->best_connection() &&
1535 LocalCandidate(ep1_ch1())->address().EqualIPs(kIPv6PublicAddrs[0]) && 1338 LocalCandidate(ep1_ch1())->address().EqualIPs(kIPv6PublicAddrs[0]) &&
1536 RemoteCandidate(ep1_ch1())->address().EqualIPs(kIPv6PublicAddrs[1])); 1339 RemoteCandidate(ep1_ch1())->address().EqualIPs(kIPv6PublicAddrs[1]));
1537 1340
1538 TestSendRecv(1); 1341 TestSendRecv(1);
1539 DestroyChannels(); 1342 DestroyChannels();
1540 } 1343 }
1541 1344
1542 // Testing forceful TURN connections. 1345 // Testing forceful TURN connections.
1543 TEST_F(P2PTransportChannelTest, TestForceTurn) { 1346 TEST_F(P2PTransportChannelTest, TestForceTurn) {
1544 ConfigureEndpoints(NAT_PORT_RESTRICTED, NAT_SYMMETRIC, 1347 ConfigureEndpoints(NAT_PORT_RESTRICTED, NAT_SYMMETRIC);
1545 kDefaultPortAllocatorFlags |
1546 cricket::PORTALLOCATOR_ENABLE_SHARED_SOCKET |
1547 cricket::PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1548 kDefaultPortAllocatorFlags |
1549 cricket::PORTALLOCATOR_ENABLE_SHARED_SOCKET |
1550 cricket::PORTALLOCATOR_ENABLE_SHARED_UFRAG,
1551 kDefaultStepDelay, kDefaultStepDelay,
1552 cricket::ICEPROTO_RFC5245);
1553 set_force_relay(true); 1348 set_force_relay(true);
1554 1349
1555 SetAllocationStepDelay(0, kMinimumStepDelay); 1350 SetAllocationStepDelay(0, kMinimumStepDelay);
1556 SetAllocationStepDelay(1, kMinimumStepDelay); 1351 SetAllocationStepDelay(1, kMinimumStepDelay);
1557 1352
1558 CreateChannels(1); 1353 CreateChannels(1);
1559 1354
1560 EXPECT_TRUE_WAIT(ep1_ch1()->readable() && 1355 EXPECT_TRUE_WAIT(ep1_ch1()->readable() &&
1561 ep1_ch1()->writable() && 1356 ep1_ch1()->writable() &&
1562 ep2_ch1()->readable() && 1357 ep2_ch1()->readable() &&
(...skipping 35 matching lines...) Expand 10 before | Expand all | Expand 10 after
1598 AddAddress(endpoint, kCascadedPrivateAddrs[endpoint]); 1393 AddAddress(endpoint, kCascadedPrivateAddrs[endpoint]);
1599 nat->AddTranslator(kPrivateAddrs[endpoint], kCascadedNatAddrs[endpoint], 1394 nat->AddTranslator(kPrivateAddrs[endpoint], kCascadedNatAddrs[endpoint],
1600 static_cast<rtc::NATType>(config - NAT_FULL_CONE))->AddClient( 1395 static_cast<rtc::NATType>(config - NAT_FULL_CONE))->AddClient(
1601 kCascadedPrivateAddrs[endpoint]); 1396 kCascadedPrivateAddrs[endpoint]);
1602 } 1397 }
1603 } 1398 }
1604 }; 1399 };
1605 1400
1606 TEST_F(P2PTransportChannelSameNatTest, TestConesBehindSameCone) { 1401 TEST_F(P2PTransportChannelSameNatTest, TestConesBehindSameCone) {
1607 ConfigureEndpoints(NAT_FULL_CONE, NAT_FULL_CONE, NAT_FULL_CONE); 1402 ConfigureEndpoints(NAT_FULL_CONE, NAT_FULL_CONE, NAT_FULL_CONE);
1608 Test(kLocalUdpToStunUdp); 1403 Test(P2PTransportChannelTestBase::Result(
1404 "local", "udp", "stun", "udp",
1405 "stun", "udp", "local", "udp", 1000));
1609 } 1406 }
1610 1407
1611 // Test what happens when we have multiple available pathways. 1408 // Test what happens when we have multiple available pathways.
1612 // In the future we will try different RTTs and configs for the different 1409 // In the future we will try different RTTs and configs for the different
1613 // interfaces, so that we can simulate a user with Ethernet and VPN networks. 1410 // interfaces, so that we can simulate a user with Ethernet and VPN networks.
1614 class P2PTransportChannelMultihomedTest : public P2PTransportChannelTestBase { 1411 class P2PTransportChannelMultihomedTest : public P2PTransportChannelTestBase {
1615 }; 1412 };
1616 1413
1617 // Test that we can establish connectivity when both peers are multihomed. 1414 // Test that we can establish connectivity when both peers are multihomed.
1618 TEST_F(P2PTransportChannelMultihomedTest, DISABLED_TestBasic) { 1415 TEST_F(P2PTransportChannelMultihomedTest, DISABLED_TestBasic) {
(...skipping 38 matching lines...) Expand 10 before | Expand all | Expand 10 after
1657 // when we lose writability. 1454 // when we lose writability.
1658 EXPECT_TRUE_WAIT( 1455 EXPECT_TRUE_WAIT(
1659 ep1_ch1()->best_connection() && ep2_ch1()->best_connection() && 1456 ep1_ch1()->best_connection() && ep2_ch1()->best_connection() &&
1660 LocalCandidate(ep1_ch1())->address().EqualIPs(kPublicAddrs[0]) && 1457 LocalCandidate(ep1_ch1())->address().EqualIPs(kPublicAddrs[0]) &&
1661 RemoteCandidate(ep1_ch1())->address().EqualIPs(kAlternateAddrs[1]), 1458 RemoteCandidate(ep1_ch1())->address().EqualIPs(kAlternateAddrs[1]),
1662 3000); 1459 3000);
1663 1460
1664 DestroyChannels(); 1461 DestroyChannels();
1665 } 1462 }
1666 1463
1464 /*
1465
1466 TODO(pthatcher): Once have a way to handle network interfaces changes
1467 without signalling an ICE restart, put a test like this back. In the
1468 mean time, this test only worked for GICE. With ICE, it's currently
1469 not possible without an ICE restart.
1470
1667 // Test that we can switch links in a coordinated fashion. 1471 // Test that we can switch links in a coordinated fashion.
1668 TEST_F(P2PTransportChannelMultihomedTest, TestDrain) { 1472 TEST_F(P2PTransportChannelMultihomedTest, TestDrain) {
1669 AddAddress(0, kPublicAddrs[0]); 1473 AddAddress(0, kPublicAddrs[0]);
1670 AddAddress(1, kPublicAddrs[1]); 1474 AddAddress(1, kPublicAddrs[1]);
1671 // Use only local ports for simplicity. 1475 // Use only local ports for simplicity.
1672 SetAllocatorFlags(0, kOnlyLocalPorts); 1476 SetAllocatorFlags(0, kOnlyLocalPorts);
1673 SetAllocatorFlags(1, kOnlyLocalPorts); 1477 SetAllocatorFlags(1, kOnlyLocalPorts);
1674 1478
1675 // Create channels and let them go writable, as usual. 1479 // Create channels and let them go writable, as usual.
1676 CreateChannels(1); 1480 CreateChannels(1);
1677 EXPECT_TRUE_WAIT(ep1_ch1()->readable() && ep1_ch1()->writable() && 1481 EXPECT_TRUE_WAIT(ep1_ch1()->readable() && ep1_ch1()->writable() &&
1678 ep2_ch1()->readable() && ep2_ch1()->writable(), 1482 ep2_ch1()->readable() && ep2_ch1()->writable(),
1679 1000); 1483 1000);
1680 EXPECT_TRUE( 1484 EXPECT_TRUE(
1681 ep1_ch1()->best_connection() && ep2_ch1()->best_connection() && 1485 ep1_ch1()->best_connection() && ep2_ch1()->best_connection() &&
1682 LocalCandidate(ep1_ch1())->address().EqualIPs(kPublicAddrs[0]) && 1486 LocalCandidate(ep1_ch1())->address().EqualIPs(kPublicAddrs[0]) &&
1683 RemoteCandidate(ep1_ch1())->address().EqualIPs(kPublicAddrs[1])); 1487 RemoteCandidate(ep1_ch1())->address().EqualIPs(kPublicAddrs[1]));
1684 1488
1489
1685 // Remove the public interface, add the alternate interface, and allocate 1490 // Remove the public interface, add the alternate interface, and allocate
1686 // a new generation of candidates for the new interface (via Connect()). 1491 // a new generation of candidates for the new interface (via Connect()).
1687 LOG(LS_INFO) << "Draining..."; 1492 LOG(LS_INFO) << "Draining...";
1688 AddAddress(1, kAlternateAddrs[1]); 1493 AddAddress(1, kAlternateAddrs[1]);
1689 RemoveAddress(1, kPublicAddrs[1]); 1494 RemoveAddress(1, kPublicAddrs[1]);
1690 ep2_ch1()->Connect(); 1495 ep2_ch1()->Connect();
1691 1496
1692 // We should switch over to use the alternate address after 1497 // We should switch over to use the alternate address after
1693 // an exchange of pings. 1498 // an exchange of pings.
1694 EXPECT_TRUE_WAIT( 1499 EXPECT_TRUE_WAIT(
1695 ep1_ch1()->best_connection() && ep2_ch1()->best_connection() && 1500 ep1_ch1()->best_connection() && ep2_ch1()->best_connection() &&
1696 LocalCandidate(ep1_ch1())->address().EqualIPs(kPublicAddrs[0]) && 1501 LocalCandidate(ep1_ch1())->address().EqualIPs(kPublicAddrs[0]) &&
1697 RemoteCandidate(ep1_ch1())->address().EqualIPs(kAlternateAddrs[1]), 1502 RemoteCandidate(ep1_ch1())->address().EqualIPs(kAlternateAddrs[1]),
1698 3000); 1503 3000);
1699 1504
1700 DestroyChannels(); 1505 DestroyChannels();
1701 } 1506 }
1702 1507
1508 */
1509
1703 // A collection of tests which tests a single P2PTransportChannel by sending 1510 // A collection of tests which tests a single P2PTransportChannel by sending
1704 // pings. 1511 // pings.
1705 class P2PTransportChannelPingTest : public testing::Test, 1512 class P2PTransportChannelPingTest : public testing::Test,
1706 public sigslot::has_slots<> { 1513 public sigslot::has_slots<> {
1707 public: 1514 public:
1708 P2PTransportChannelPingTest() 1515 P2PTransportChannelPingTest()
1709 : pss_(new rtc::PhysicalSocketServer), 1516 : pss_(new rtc::PhysicalSocketServer),
1710 vss_(new rtc::VirtualSocketServer(pss_.get())), 1517 vss_(new rtc::VirtualSocketServer(pss_.get())),
1711 ss_scope_(vss_.get()) {} 1518 ss_scope_(vss_.get()) {}
1712 1519
1713 protected: 1520 protected:
1714 void PrepareChannel(cricket::P2PTransportChannel* ch) { 1521 void PrepareChannel(cricket::P2PTransportChannel* ch) {
1715 ch->SignalRequestSignaling.connect( 1522 ch->SignalRequestSignaling.connect(
1716 this, &P2PTransportChannelPingTest::OnChannelRequestSignaling); 1523 this, &P2PTransportChannelPingTest::OnChannelRequestSignaling);
1717 ch->SetIceProtocolType(cricket::ICEPROTO_RFC5245);
1718 ch->SetIceRole(cricket::ICEROLE_CONTROLLING); 1524 ch->SetIceRole(cricket::ICEROLE_CONTROLLING);
1719 ch->SetIceCredentials(kIceUfrag[0], kIcePwd[0]); 1525 ch->SetIceCredentials(kIceUfrag[0], kIcePwd[0]);
1720 ch->SetRemoteIceCredentials(kIceUfrag[1], kIcePwd[1]); 1526 ch->SetRemoteIceCredentials(kIceUfrag[1], kIcePwd[1]);
1721 } 1527 }
1722 1528
1723 void OnChannelRequestSignaling(cricket::TransportChannelImpl* channel) { 1529 void OnChannelRequestSignaling(cricket::TransportChannelImpl* channel) {
1724 channel->OnSignalingReady(); 1530 channel->OnSignalingReady();
1725 } 1531 }
1726 1532
1727 cricket::Candidate CreateCandidate(const std::string& ip, 1533 cricket::Candidate CreateCandidate(const std::string& ip,
(...skipping 149 matching lines...) Expand 10 before | Expand all | Expand 10 after
1877 ch.OnCandidate(CreateCandidate("1.1.1.1", 1, 1)); 1683 ch.OnCandidate(CreateCandidate("1.1.1.1", 1, 1));
1878 cricket::Connection* conn1 = WaitForConnectionTo(&ch, "1.1.1.1", 1); 1684 cricket::Connection* conn1 = WaitForConnectionTo(&ch, "1.1.1.1", 1);
1879 ASSERT_TRUE(conn1 != nullptr); 1685 ASSERT_TRUE(conn1 != nullptr);
1880 1686
1881 conn1->ReceivedPing(); 1687 conn1->ReceivedPing();
1882 conn1->OnReadPacket("ABC", 3, rtc::CreatePacketTime(0)); 1688 conn1->OnReadPacket("ABC", 3, rtc::CreatePacketTime(0));
1883 EXPECT_TRUE_WAIT(ch.best_connection() != nullptr, 1000) 1689 EXPECT_TRUE_WAIT(ch.best_connection() != nullptr, 1000)
1884 EXPECT_TRUE_WAIT(ch.receiving(), 1000); 1690 EXPECT_TRUE_WAIT(ch.receiving(), 1000);
1885 EXPECT_TRUE_WAIT(!ch.receiving(), 1000); 1691 EXPECT_TRUE_WAIT(!ch.receiving(), 1000);
1886 } 1692 }
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