blob: 32e439a1883ffe61571dd8cb7b351fef1c830c48 [file] [log] [blame]
deadbeef953c2ce2017-01-09 14:53:41 -08001/*
2 * Copyright (c) 2013 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 <errno.h>
12#include <stdarg.h>
13#include <stdio.h>
14
15#include <memory>
16#include <string>
17#include <vector>
18
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020019#include "media/sctp/sctptransport.h"
20#include "p2p/base/fakedtlstransport.h"
21#include "rtc_base/bind.h"
22#include "rtc_base/copyonwritebuffer.h"
23#include "rtc_base/criticalsection.h"
24#include "rtc_base/gunit.h"
25#include "rtc_base/helpers.h"
26#include "rtc_base/ssladapter.h"
27#include "rtc_base/thread.h"
deadbeef953c2ce2017-01-09 14:53:41 -080028
29namespace {
30static const int kDefaultTimeout = 10000; // 10 seconds.
31// Use ports other than the default 5000 for testing.
32static const int kTransport1Port = 5001;
33static const int kTransport2Port = 5002;
34}
35
36namespace cricket {
37
38// This is essentially a buffer to hold recieved data. It stores only the last
39// received data. Calling OnDataReceived twice overwrites old data with the
40// newer one.
41// TODO(ldixon): Implement constraints, and allow new data to be added to old
42// instead of replacing it.
43class SctpFakeDataReceiver : public sigslot::has_slots<> {
44 public:
45 SctpFakeDataReceiver() : received_(false) {}
46
47 void Clear() {
48 received_ = false;
49 last_data_ = "";
50 last_params_ = ReceiveDataParams();
51 }
52
deadbeef8d517c42017-02-19 14:12:24 -080053 void OnDataReceived(const ReceiveDataParams& params,
54 const rtc::CopyOnWriteBuffer& data) {
deadbeef953c2ce2017-01-09 14:53:41 -080055 received_ = true;
56 last_data_ = std::string(data.data<char>(), data.size());
57 last_params_ = params;
58 }
59
60 bool received() const { return received_; }
61 std::string last_data() const { return last_data_; }
62 ReceiveDataParams last_params() const { return last_params_; }
63
64 private:
65 bool received_;
66 std::string last_data_;
67 ReceiveDataParams last_params_;
68};
69
70class SignalReadyToSendObserver : public sigslot::has_slots<> {
71 public:
72 SignalReadyToSendObserver() : signaled_(false) {}
73
74 void OnSignaled() { signaled_ = true; }
75
76 bool IsSignaled() { return signaled_; }
77
78 private:
79 bool signaled_;
80};
81
82class SignalTransportClosedObserver : public sigslot::has_slots<> {
83 public:
84 SignalTransportClosedObserver() {}
85 void BindSelf(SctpTransport* transport) {
86 transport->SignalStreamClosedRemotely.connect(
87 this, &SignalTransportClosedObserver::OnStreamClosed);
88 }
89 void OnStreamClosed(int stream) { streams_.push_back(stream); }
90
91 int StreamCloseCount(int stream) {
92 return std::count(streams_.begin(), streams_.end(), stream);
93 }
94
95 bool WasStreamClosed(int stream) {
96 return std::find(streams_.begin(), streams_.end(), stream) !=
97 streams_.end();
98 }
99
100 private:
101 std::vector<int> streams_;
102};
103
104class SignalTransportClosedReopener : public sigslot::has_slots<> {
105 public:
106 SignalTransportClosedReopener(SctpTransport* transport, SctpTransport* peer)
107 : transport_(transport), peer_(peer) {}
108
109 void OnStreamClosed(int stream) {
110 transport_->OpenStream(stream);
111 peer_->OpenStream(stream);
112 streams_.push_back(stream);
113 }
114
115 int StreamCloseCount(int stream) {
116 return std::count(streams_.begin(), streams_.end(), stream);
117 }
118
119 private:
120 SctpTransport* transport_;
121 SctpTransport* peer_;
122 std::vector<int> streams_;
123};
124
125// SCTP Data Engine testing framework.
126class SctpTransportTest : public testing::Test, public sigslot::has_slots<> {
127 protected:
128 // usrsctp uses the NSS random number generator on non-Android platforms,
129 // so we need to initialize SSL.
130 static void SetUpTestCase() {}
131
132 void SetupConnectedTransportsWithTwoStreams() {
jbauch46d24572017-03-10 16:20:04 -0800133 SetupConnectedTransportsWithTwoStreams(kTransport1Port, kTransport2Port);
134 }
135
136 void SetupConnectedTransportsWithTwoStreams(int port1, int port2) {
zhihuangb2cdd932017-01-19 16:54:25 -0800137 fake_dtls1_.reset(new FakeDtlsTransport("fake dtls 1", 0));
138 fake_dtls2_.reset(new FakeDtlsTransport("fake dtls 2", 0));
deadbeef953c2ce2017-01-09 14:53:41 -0800139 recv1_.reset(new SctpFakeDataReceiver());
140 recv2_.reset(new SctpFakeDataReceiver());
141 transport1_.reset(CreateTransport(fake_dtls1_.get(), recv1_.get()));
142 transport1_->set_debug_name_for_testing("transport1");
143 transport1_->SignalReadyToSendData.connect(
144 this, &SctpTransportTest::OnChan1ReadyToSend);
145 transport2_.reset(CreateTransport(fake_dtls2_.get(), recv2_.get()));
146 transport2_->set_debug_name_for_testing("transport2");
147 transport2_->SignalReadyToSendData.connect(
148 this, &SctpTransportTest::OnChan2ReadyToSend);
149 // Setup two connected transports ready to send and receive.
150 bool asymmetric = false;
151 fake_dtls1_->SetDestination(fake_dtls2_.get(), asymmetric);
152
Mirko Bonadei675513b2017-11-09 11:09:25 +0100153 RTC_LOG(LS_VERBOSE) << "Transport setup ----------------------------- ";
deadbeef953c2ce2017-01-09 14:53:41 -0800154 AddStream(1);
155 AddStream(2);
156
Mirko Bonadei675513b2017-11-09 11:09:25 +0100157 RTC_LOG(LS_VERBOSE)
158 << "Connect the transports -----------------------------";
deadbeef953c2ce2017-01-09 14:53:41 -0800159 // Both transports need to have started (with matching ports) for an
160 // association to be formed.
jbauch46d24572017-03-10 16:20:04 -0800161 transport1_->Start(port1, port2);
162 transport2_->Start(port2, port1);
deadbeef953c2ce2017-01-09 14:53:41 -0800163 }
164
165 bool AddStream(int sid) {
166 bool ret = true;
167 ret = ret && transport1_->OpenStream(sid);
168 ret = ret && transport2_->OpenStream(sid);
169 return ret;
170 }
171
zhihuangb2cdd932017-01-19 16:54:25 -0800172 SctpTransport* CreateTransport(FakeDtlsTransport* fake_dtls,
deadbeef953c2ce2017-01-09 14:53:41 -0800173 SctpFakeDataReceiver* recv) {
174 SctpTransport* transport =
175 new SctpTransport(rtc::Thread::Current(), fake_dtls);
176 // When data is received, pass it to the SctpFakeDataReceiver.
177 transport->SignalDataReceived.connect(
178 recv, &SctpFakeDataReceiver::OnDataReceived);
179 return transport;
180 }
181
182 bool SendData(SctpTransport* chan,
183 int sid,
184 const std::string& msg,
185 SendDataResult* result) {
186 SendDataParams params;
187 params.sid = sid;
188
189 return chan->SendData(params, rtc::CopyOnWriteBuffer(&msg[0], msg.length()),
190 result);
191 }
192
193 bool ReceivedData(const SctpFakeDataReceiver* recv,
194 int sid,
195 const std::string& msg) {
196 return (recv->received() && recv->last_params().sid == sid &&
197 recv->last_data() == msg);
198 }
199
200 bool ProcessMessagesUntilIdle() {
201 rtc::Thread* thread = rtc::Thread::Current();
202 while (!thread->empty()) {
203 rtc::Message msg;
204 if (thread->Get(&msg, rtc::Thread::kForever)) {
205 thread->Dispatch(&msg);
206 }
207 }
208 return !thread->IsQuitting();
209 }
210
211 SctpTransport* transport1() { return transport1_.get(); }
212 SctpTransport* transport2() { return transport2_.get(); }
213 SctpFakeDataReceiver* receiver1() { return recv1_.get(); }
214 SctpFakeDataReceiver* receiver2() { return recv2_.get(); }
zhihuangb2cdd932017-01-19 16:54:25 -0800215 FakeDtlsTransport* fake_dtls1() { return fake_dtls1_.get(); }
216 FakeDtlsTransport* fake_dtls2() { return fake_dtls2_.get(); }
deadbeef953c2ce2017-01-09 14:53:41 -0800217
218 int transport1_ready_to_send_count() {
219 return transport1_ready_to_send_count_;
220 }
221 int transport2_ready_to_send_count() {
222 return transport2_ready_to_send_count_;
223 }
224
225 private:
zhihuangb2cdd932017-01-19 16:54:25 -0800226 std::unique_ptr<FakeDtlsTransport> fake_dtls1_;
227 std::unique_ptr<FakeDtlsTransport> fake_dtls2_;
deadbeef953c2ce2017-01-09 14:53:41 -0800228 std::unique_ptr<SctpFakeDataReceiver> recv1_;
229 std::unique_ptr<SctpFakeDataReceiver> recv2_;
230 std::unique_ptr<SctpTransport> transport1_;
231 std::unique_ptr<SctpTransport> transport2_;
232
233 int transport1_ready_to_send_count_ = 0;
234 int transport2_ready_to_send_count_ = 0;
235
236 void OnChan1ReadyToSend() { ++transport1_ready_to_send_count_; }
237 void OnChan2ReadyToSend() { ++transport2_ready_to_send_count_; }
238};
239
240// Test that data can be sent end-to-end when an SCTP transport starts with one
241// transport channel (which is unwritable), and then switches to another
242// channel. A common scenario due to how BUNDLE works.
243TEST_F(SctpTransportTest, SwitchTransportChannel) {
zhihuangb2cdd932017-01-19 16:54:25 -0800244 FakeDtlsTransport black_hole("black hole", 0);
245 FakeDtlsTransport fake_dtls1("fake dtls 1", 0);
246 FakeDtlsTransport fake_dtls2("fake dtls 2", 0);
deadbeef953c2ce2017-01-09 14:53:41 -0800247 SctpFakeDataReceiver recv1;
248 SctpFakeDataReceiver recv2;
249
250 // Construct transport1 with the "black hole" channel.
251 std::unique_ptr<SctpTransport> transport1(
252 CreateTransport(&black_hole, &recv1));
253 std::unique_ptr<SctpTransport> transport2(
254 CreateTransport(&fake_dtls2, &recv2));
255
256 // Add a stream.
257 transport1->OpenStream(1);
258 transport2->OpenStream(1);
259
260 // Tell them both to start (though transport1_ is connected to black_hole).
261 transport1->Start(kTransport1Port, kTransport2Port);
262 transport2->Start(kTransport2Port, kTransport1Port);
263
264 // Switch transport1_ to the normal fake_dtls1_ channel.
265 transport1->SetTransportChannel(&fake_dtls1);
266
267 // Connect the two fake DTLS channels.
268 bool asymmetric = false;
269 fake_dtls1.SetDestination(&fake_dtls2, asymmetric);
270
271 // Make sure we end up able to send data.
272 SendDataResult result;
273 ASSERT_TRUE(SendData(transport1.get(), 1, "foo", &result));
274 ASSERT_TRUE(SendData(transport2.get(), 1, "bar", &result));
275 EXPECT_TRUE_WAIT(ReceivedData(&recv2, 1, "foo"), kDefaultTimeout);
276 EXPECT_TRUE_WAIT(ReceivedData(&recv1, 1, "bar"), kDefaultTimeout);
277}
278
279// Calling Start twice shouldn't do anything bad, if with the same parameters.
280TEST_F(SctpTransportTest, DuplicateStartCallsIgnored) {
281 SetupConnectedTransportsWithTwoStreams();
282 EXPECT_TRUE(transport1()->Start(kTransport1Port, kTransport2Port));
283
284 // Make sure we can still send/recv data.
285 SendDataResult result;
286 ASSERT_TRUE(SendData(transport1(), 1, "foo", &result));
287 ASSERT_TRUE(SendData(transport2(), 1, "bar", &result));
288 EXPECT_TRUE_WAIT(ReceivedData(receiver2(), 1, "foo"), kDefaultTimeout);
289 EXPECT_TRUE_WAIT(ReceivedData(receiver1(), 1, "bar"), kDefaultTimeout);
290}
291
292// Calling Start a second time with a different port should fail.
293TEST_F(SctpTransportTest, CallingStartWithDifferentPortFails) {
294 SetupConnectedTransportsWithTwoStreams();
295 EXPECT_FALSE(transport1()->Start(kTransport1Port, 1234));
296 EXPECT_FALSE(transport1()->Start(1234, kTransport2Port));
297}
298
299// A value of -1 for the local/remote port should be treated as the default
300// (5000).
301TEST_F(SctpTransportTest, NegativeOnePortTreatedAsDefault) {
zhihuangb2cdd932017-01-19 16:54:25 -0800302 FakeDtlsTransport fake_dtls1("fake dtls 1", 0);
303 FakeDtlsTransport fake_dtls2("fake dtls 2", 0);
deadbeef953c2ce2017-01-09 14:53:41 -0800304 SctpFakeDataReceiver recv1;
305 SctpFakeDataReceiver recv2;
306 std::unique_ptr<SctpTransport> transport1(
307 CreateTransport(&fake_dtls1, &recv1));
308 std::unique_ptr<SctpTransport> transport2(
309 CreateTransport(&fake_dtls2, &recv2));
310
311 // Add a stream.
312 transport1->OpenStream(1);
313 transport2->OpenStream(1);
314
315 // Tell them both to start, giving one transport the default port and the
316 // other transport -1.
317 transport1->Start(kSctpDefaultPort, kSctpDefaultPort);
318 transport2->Start(-1, -1);
319
320 // Connect the two fake DTLS channels.
321 bool asymmetric = false;
322 fake_dtls1.SetDestination(&fake_dtls2, asymmetric);
323
324 // Make sure we end up able to send data.
325 SendDataResult result;
326 ASSERT_TRUE(SendData(transport1.get(), 1, "foo", &result));
327 ASSERT_TRUE(SendData(transport2.get(), 1, "bar", &result));
328 EXPECT_TRUE_WAIT(ReceivedData(&recv2, 1, "foo"), kDefaultTimeout);
329 EXPECT_TRUE_WAIT(ReceivedData(&recv1, 1, "bar"), kDefaultTimeout);
330}
331
332TEST_F(SctpTransportTest, OpenStreamWithAlreadyOpenedStreamFails) {
zhihuangb2cdd932017-01-19 16:54:25 -0800333 FakeDtlsTransport fake_dtls("fake dtls", 0);
deadbeef953c2ce2017-01-09 14:53:41 -0800334 SctpFakeDataReceiver recv;
335 std::unique_ptr<SctpTransport> transport(CreateTransport(&fake_dtls, &recv));
336 EXPECT_TRUE(transport->OpenStream(1));
337 EXPECT_FALSE(transport->OpenStream(1));
338}
339
340TEST_F(SctpTransportTest, ResetStreamWithAlreadyResetStreamFails) {
zhihuangb2cdd932017-01-19 16:54:25 -0800341 FakeDtlsTransport fake_dtls("fake dtls", 0);
deadbeef953c2ce2017-01-09 14:53:41 -0800342 SctpFakeDataReceiver recv;
343 std::unique_ptr<SctpTransport> transport(CreateTransport(&fake_dtls, &recv));
344 EXPECT_TRUE(transport->OpenStream(1));
345 EXPECT_TRUE(transport->ResetStream(1));
346 EXPECT_FALSE(transport->ResetStream(1));
347}
348
349// Test that SignalReadyToSendData is fired after Start has been called and the
350// DTLS channel is writable.
351TEST_F(SctpTransportTest, SignalReadyToSendDataAfterDtlsWritable) {
zhihuangb2cdd932017-01-19 16:54:25 -0800352 FakeDtlsTransport fake_dtls("fake dtls", 0);
deadbeef953c2ce2017-01-09 14:53:41 -0800353 SctpFakeDataReceiver recv;
354 std::unique_ptr<SctpTransport> transport(CreateTransport(&fake_dtls, &recv));
355
356 SignalReadyToSendObserver signal_observer;
357 transport->SignalReadyToSendData.connect(
358 &signal_observer, &SignalReadyToSendObserver::OnSignaled);
359
360 transport->Start(kSctpDefaultPort, kSctpDefaultPort);
361 fake_dtls.SetWritable(true);
362 EXPECT_TRUE_WAIT(signal_observer.IsSignaled(), kDefaultTimeout);
363}
364
365// Test that after an SCTP socket's buffer is filled, SignalReadyToSendData
366// is fired after it begins to be drained.
367TEST_F(SctpTransportTest, SignalReadyToSendDataAfterBlocked) {
368 SetupConnectedTransportsWithTwoStreams();
369 // Wait for initial SCTP association to be formed.
370 EXPECT_EQ_WAIT(1, transport1_ready_to_send_count(), kDefaultTimeout);
371 // Make the fake transport unwritable so that messages pile up for the SCTP
372 // socket.
373 fake_dtls1()->SetWritable(false);
374 // Send messages until we get EWOULDBLOCK.
375 static const int kMaxMessages = 1024;
376 SendDataParams params;
377 params.sid = 1;
378 rtc::CopyOnWriteBuffer buf(1024);
379 memset(buf.data<uint8_t>(), 0, 1024);
380 SendDataResult result;
381 int message_count;
382 for (message_count = 0; message_count < kMaxMessages; ++message_count) {
383 if (!transport1()->SendData(params, buf, &result) && result == SDR_BLOCK) {
384 break;
385 }
386 }
387 ASSERT_NE(kMaxMessages, message_count)
388 << "Sent max number of messages without getting SDR_BLOCK?";
389 // Make sure the ready-to-send count hasn't changed.
390 EXPECT_EQ(1, transport1_ready_to_send_count());
391 // Make the transport writable again and expect a "SignalReadyToSendData" at
392 // some point.
393 fake_dtls1()->SetWritable(true);
394 EXPECT_EQ_WAIT(2, transport1_ready_to_send_count(), kDefaultTimeout);
395}
396
397TEST_F(SctpTransportTest, SendData) {
398 SetupConnectedTransportsWithTwoStreams();
399
400 SendDataResult result;
Mirko Bonadei675513b2017-11-09 11:09:25 +0100401 RTC_LOG(LS_VERBOSE)
deadbeef953c2ce2017-01-09 14:53:41 -0800402 << "transport1 sending: 'hello?' -----------------------------";
403 ASSERT_TRUE(SendData(transport1(), 1, "hello?", &result));
404 EXPECT_EQ(SDR_SUCCESS, result);
405 EXPECT_TRUE_WAIT(ReceivedData(receiver2(), 1, "hello?"), kDefaultTimeout);
Mirko Bonadei675513b2017-11-09 11:09:25 +0100406 RTC_LOG(LS_VERBOSE) << "recv2.received=" << receiver2()->received()
407 << ", recv2.last_params.sid="
408 << receiver2()->last_params().sid
409 << ", recv2.last_params.timestamp="
410 << receiver2()->last_params().timestamp
411 << ", recv2.last_params.seq_num="
412 << receiver2()->last_params().seq_num
413 << ", recv2.last_data=" << receiver2()->last_data();
deadbeef953c2ce2017-01-09 14:53:41 -0800414
Mirko Bonadei675513b2017-11-09 11:09:25 +0100415 RTC_LOG(LS_VERBOSE)
deadbeef953c2ce2017-01-09 14:53:41 -0800416 << "transport2 sending: 'hi transport1' -----------------------------";
417 ASSERT_TRUE(SendData(transport2(), 2, "hi transport1", &result));
418 EXPECT_EQ(SDR_SUCCESS, result);
419 EXPECT_TRUE_WAIT(ReceivedData(receiver1(), 2, "hi transport1"),
420 kDefaultTimeout);
Mirko Bonadei675513b2017-11-09 11:09:25 +0100421 RTC_LOG(LS_VERBOSE) << "recv1.received=" << receiver1()->received()
422 << ", recv1.last_params.sid="
423 << receiver1()->last_params().sid
424 << ", recv1.last_params.timestamp="
425 << receiver1()->last_params().timestamp
426 << ", recv1.last_params.seq_num="
427 << receiver1()->last_params().seq_num
428 << ", recv1.last_data=" << receiver1()->last_data();
deadbeef953c2ce2017-01-09 14:53:41 -0800429}
430
431// Sends a lot of large messages at once and verifies SDR_BLOCK is returned.
432TEST_F(SctpTransportTest, SendDataBlocked) {
433 SetupConnectedTransportsWithTwoStreams();
434
435 SendDataResult result;
436 SendDataParams params;
437 params.sid = 1;
438
439 std::vector<char> buffer(1024 * 64, 0);
440
441 for (size_t i = 0; i < 100; ++i) {
442 transport1()->SendData(
443 params, rtc::CopyOnWriteBuffer(&buffer[0], buffer.size()), &result);
444 if (result == SDR_BLOCK)
445 break;
446 }
447
448 EXPECT_EQ(SDR_BLOCK, result);
449}
450
451// Trying to send data for a nonexistent stream should fail.
452TEST_F(SctpTransportTest, SendDataWithNonexistentStreamFails) {
453 SetupConnectedTransportsWithTwoStreams();
454 SendDataResult result;
455 EXPECT_FALSE(SendData(transport2(), 123, "some data", &result));
456 EXPECT_EQ(SDR_ERROR, result);
457}
458
jbauch46d24572017-03-10 16:20:04 -0800459TEST_F(SctpTransportTest, SendDataHighPorts) {
460 SetupConnectedTransportsWithTwoStreams(32768, 32769);
461
462 SendDataResult result;
463 ASSERT_TRUE(SendData(transport1(), 1, "hello?", &result));
464 EXPECT_EQ(SDR_SUCCESS, result);
465 EXPECT_TRUE_WAIT(ReceivedData(receiver2(), 1, "hello?"), kDefaultTimeout);
466
467 ASSERT_TRUE(SendData(transport2(), 2, "hi transport1", &result));
468 EXPECT_EQ(SDR_SUCCESS, result);
469 EXPECT_TRUE_WAIT(ReceivedData(receiver1(), 2, "hi transport1"),
470 kDefaultTimeout);
471}
472
deadbeef953c2ce2017-01-09 14:53:41 -0800473TEST_F(SctpTransportTest, ClosesRemoteStream) {
474 SetupConnectedTransportsWithTwoStreams();
475 SignalTransportClosedObserver transport1_sig_receiver,
476 transport2_sig_receiver;
477 transport1_sig_receiver.BindSelf(transport1());
478 transport2_sig_receiver.BindSelf(transport2());
479
480 SendDataResult result;
481 ASSERT_TRUE(SendData(transport1(), 1, "hello?", &result));
482 EXPECT_EQ(SDR_SUCCESS, result);
483 EXPECT_TRUE_WAIT(ReceivedData(receiver2(), 1, "hello?"), kDefaultTimeout);
484 ASSERT_TRUE(SendData(transport2(), 2, "hi transport1", &result));
485 EXPECT_EQ(SDR_SUCCESS, result);
486 EXPECT_TRUE_WAIT(ReceivedData(receiver1(), 2, "hi transport1"),
487 kDefaultTimeout);
488
489 // Close transport 1. Transport 2 should notify us.
490 transport1()->ResetStream(1);
491 EXPECT_TRUE_WAIT(transport2_sig_receiver.WasStreamClosed(1), kDefaultTimeout);
492}
493
494TEST_F(SctpTransportTest, ClosesTwoRemoteStreams) {
495 SetupConnectedTransportsWithTwoStreams();
496 AddStream(3);
497 SignalTransportClosedObserver transport1_sig_receiver,
498 transport2_sig_receiver;
499 transport1_sig_receiver.BindSelf(transport1());
500 transport2_sig_receiver.BindSelf(transport2());
501
502 SendDataResult result;
503 ASSERT_TRUE(SendData(transport1(), 1, "hello?", &result));
504 EXPECT_EQ(SDR_SUCCESS, result);
505 EXPECT_TRUE_WAIT(ReceivedData(receiver2(), 1, "hello?"), kDefaultTimeout);
506 ASSERT_TRUE(SendData(transport2(), 2, "hi transport1", &result));
507 EXPECT_EQ(SDR_SUCCESS, result);
508 EXPECT_TRUE_WAIT(ReceivedData(receiver1(), 2, "hi transport1"),
509 kDefaultTimeout);
510
511 // Close two streams on one side.
512 transport2()->ResetStream(2);
513 transport2()->ResetStream(3);
514 EXPECT_TRUE_WAIT(transport1_sig_receiver.WasStreamClosed(2), kDefaultTimeout);
515 EXPECT_TRUE_WAIT(transport1_sig_receiver.WasStreamClosed(3), kDefaultTimeout);
516}
517
518TEST_F(SctpTransportTest, ClosesStreamsOnBothSides) {
519 SetupConnectedTransportsWithTwoStreams();
520 AddStream(3);
521 AddStream(4);
522 SignalTransportClosedObserver transport1_sig_receiver,
523 transport2_sig_receiver;
524 transport1_sig_receiver.BindSelf(transport1());
525 transport2_sig_receiver.BindSelf(transport2());
526
527 SendDataResult result;
528 ASSERT_TRUE(SendData(transport1(), 1, "hello?", &result));
529 EXPECT_EQ(SDR_SUCCESS, result);
530 EXPECT_TRUE_WAIT(ReceivedData(receiver2(), 1, "hello?"), kDefaultTimeout);
531 ASSERT_TRUE(SendData(transport2(), 2, "hi transport1", &result));
532 EXPECT_EQ(SDR_SUCCESS, result);
533 EXPECT_TRUE_WAIT(ReceivedData(receiver1(), 2, "hi transport1"),
534 kDefaultTimeout);
535
536 // Close one stream on transport1(), while closing three streams on
537 // transport2(). They will conflict (only one side can close anything at a
538 // time, apparently). Test the resolution of the conflict.
539 transport1()->ResetStream(1);
540
541 transport2()->ResetStream(2);
542 transport2()->ResetStream(3);
543 transport2()->ResetStream(4);
544 EXPECT_TRUE_WAIT(transport2_sig_receiver.WasStreamClosed(1), kDefaultTimeout);
545 EXPECT_TRUE_WAIT(transport1_sig_receiver.WasStreamClosed(2), kDefaultTimeout);
546 EXPECT_TRUE_WAIT(transport1_sig_receiver.WasStreamClosed(3), kDefaultTimeout);
547 EXPECT_TRUE_WAIT(transport1_sig_receiver.WasStreamClosed(4), kDefaultTimeout);
548}
549
550TEST_F(SctpTransportTest, RefusesHighNumberedTransports) {
551 SetupConnectedTransportsWithTwoStreams();
552 EXPECT_TRUE(AddStream(kMaxSctpSid));
553 EXPECT_FALSE(AddStream(kMaxSctpSid + 1));
554}
555
556// Flaky, see webrtc:4453.
557TEST_F(SctpTransportTest, DISABLED_ReusesAStream) {
558 // Shut down transport 1, then open it up again for reuse.
559 SetupConnectedTransportsWithTwoStreams();
560 SendDataResult result;
561 SignalTransportClosedObserver transport2_sig_receiver;
562 transport2_sig_receiver.BindSelf(transport2());
563
564 ASSERT_TRUE(SendData(transport1(), 1, "hello?", &result));
565 EXPECT_EQ(SDR_SUCCESS, result);
566 EXPECT_TRUE_WAIT(ReceivedData(receiver2(), 1, "hello?"), kDefaultTimeout);
567
568 transport1()->ResetStream(1);
569 EXPECT_TRUE_WAIT(transport2_sig_receiver.WasStreamClosed(1), kDefaultTimeout);
570 // Transport 1 is gone now.
571
572 // Create a new transport 1.
573 AddStream(1);
574 ASSERT_TRUE(SendData(transport1(), 1, "hi?", &result));
575 EXPECT_EQ(SDR_SUCCESS, result);
576 EXPECT_TRUE_WAIT(ReceivedData(receiver2(), 1, "hi?"), kDefaultTimeout);
577 transport1()->ResetStream(1);
578 EXPECT_TRUE_WAIT(transport2_sig_receiver.StreamCloseCount(1) == 2,
579 kDefaultTimeout);
580}
581
582} // namespace cricket