1 /*
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 "webrtc/modules/remote_bitrate_estimator/test/bwe_test_framework.h"
12
13 #include <numeric>
14
15 #include "testing/gtest/include/gtest/gtest.h"
16 #include "webrtc/base/constructormagic.h"
17 #include "webrtc/modules/remote_bitrate_estimator/test/packet.h"
18 #include "webrtc/modules/remote_bitrate_estimator/test/packet_sender.h"
19 #include "webrtc/test/testsupport/fileutils.h"
20
21 namespace webrtc {
22 namespace testing {
23 namespace bwe {
24
IsSequenceNumberSorted(const Packets & packets)25 static bool IsSequenceNumberSorted(const Packets& packets) {
26 PacketsConstIt last_it = packets.begin();
27 for (PacketsConstIt it = last_it; it != packets.end(); ++it) {
28 const MediaPacket* packet = static_cast<const MediaPacket*>(*it);
29 const MediaPacket* last_packet = static_cast<const MediaPacket*>(*last_it);
30 if (IsNewerSequenceNumber(last_packet->header().sequenceNumber,
31 packet->header().sequenceNumber)) {
32 return false;
33 }
34 last_it = it;
35 }
36 return true;
37 }
38
TEST(BweTestFramework_PacketTest,IsTimeSorted)39 TEST(BweTestFramework_PacketTest, IsTimeSorted) {
40 Packets packets;
41 // Insert some packets in order...
42 EXPECT_TRUE(IsTimeSorted(packets));
43
44 packets.push_back(new MediaPacket(100, 0));
45 EXPECT_TRUE(IsTimeSorted(packets));
46
47 packets.push_back(new MediaPacket(110, 0));
48 EXPECT_TRUE(IsTimeSorted(packets));
49
50 // ...and one out-of-order...
51 packets.push_back(new MediaPacket(100, 0));
52 EXPECT_FALSE(IsTimeSorted(packets));
53
54 // ...remove the out-of-order packet, insert another in-order packet.
55 delete packets.back();
56 packets.pop_back();
57 packets.push_back(new MediaPacket(120, 0));
58 EXPECT_TRUE(IsTimeSorted(packets));
59
60 for (auto* packet : packets)
61 delete packet;
62 }
63
TEST(BweTestFramework_PacketTest,IsSequenceNumberSorted)64 TEST(BweTestFramework_PacketTest, IsSequenceNumberSorted) {
65 Packets packets;
66 // Insert some packets in order...
67 EXPECT_TRUE(IsSequenceNumberSorted(packets));
68
69 packets.push_back(new MediaPacket(0, 100));
70 EXPECT_TRUE(IsSequenceNumberSorted(packets));
71
72 packets.push_back(new MediaPacket(0, 110));
73 EXPECT_TRUE(IsSequenceNumberSorted(packets));
74
75 // ...and one out-of-order...
76 packets.push_back(new MediaPacket(0, 100));
77 EXPECT_FALSE(IsSequenceNumberSorted(packets));
78
79 // ...remove the out-of-order packet, insert another in-order packet.
80 delete packets.back();
81 packets.pop_back();
82 packets.push_back(new MediaPacket(0, 120));
83 EXPECT_TRUE(IsSequenceNumberSorted(packets));
84
85 for (auto* packet : packets)
86 delete packet;
87 }
88
TEST(BweTestFramework_StatsTest,Mean)89 TEST(BweTestFramework_StatsTest, Mean) {
90 Stats<int32_t> stats;
91 EXPECT_EQ(0, stats.GetMean());
92
93 stats.Push(1);
94 stats.Push(3);
95 EXPECT_EQ(2, stats.GetMean());
96
97 // Integer division rounds (1+3-3)/3 to 0.
98 stats.Push(-3);
99 EXPECT_EQ(0, stats.GetMean());
100 }
101
TEST(BweTestFramework_StatsTest,Variance)102 TEST(BweTestFramework_StatsTest, Variance) {
103 Stats<int32_t> stats;
104 EXPECT_EQ(0, stats.GetVariance());
105
106 // Mean is 2 ; ((1-2)*(1-2)+(3-2)*(3-2))/2 = (1+1)/2 = 1
107 stats.Push(1);
108 stats.Push(3);
109 EXPECT_EQ(1, stats.GetVariance());
110
111 // Integer division rounds 26/3 to 8
112 // Mean is 0 ; (1*1+3*3+(-4)*(-4))/3 = (1+9+16)/3 = 8
113 stats.Push(-4);
114 EXPECT_EQ(8, stats.GetVariance());
115 }
116
TEST(BweTestFramework_StatsTest,StdDev)117 TEST(BweTestFramework_StatsTest, StdDev) {
118 Stats<int32_t> stats;
119 EXPECT_EQ(0, stats.GetStdDev());
120
121 // Variance is 1 ; sqrt(1) = 1
122 stats.Push(1);
123 stats.Push(3);
124 EXPECT_EQ(1, stats.GetStdDev());
125
126 // Variance is 8 ; sqrt(8) = 2 with integers.
127 stats.Push(-4);
128 EXPECT_EQ(2, stats.GetStdDev());
129 }
130
TEST(BweTestFramework_StatsTest,MinMax)131 TEST(BweTestFramework_StatsTest, MinMax) {
132 Stats<int32_t> stats;
133 EXPECT_EQ(0, stats.GetMin());
134 EXPECT_EQ(0, stats.GetMax());
135
136 stats.Push(1);
137 EXPECT_EQ(1, stats.GetMin());
138 EXPECT_EQ(1, stats.GetMax());
139
140 stats.Push(3);
141 EXPECT_EQ(1, stats.GetMin());
142 EXPECT_EQ(3, stats.GetMax());
143
144 stats.Push(-4);
145 EXPECT_EQ(-4, stats.GetMin());
146 EXPECT_EQ(3, stats.GetMax());
147 }
148
149 class BweTestFramework_RateCounterFilterTest : public ::testing::Test {
150 public:
BweTestFramework_RateCounterFilterTest()151 BweTestFramework_RateCounterFilterTest()
152 : filter_(NULL, 0, "", ""), now_ms_(0) {}
~BweTestFramework_RateCounterFilterTest()153 virtual ~BweTestFramework_RateCounterFilterTest() {}
154
155 protected:
TestRateCounter(int64_t run_for_ms,uint32_t payload_bits,uint32_t expected_pps,uint32_t expected_bps)156 void TestRateCounter(int64_t run_for_ms, uint32_t payload_bits,
157 uint32_t expected_pps, uint32_t expected_bps) {
158 Packets packets;
159 RTPHeader header;
160 // "Send" a packet every 10 ms.
161 for (int64_t i = 0; i < run_for_ms; i += 10, now_ms_ += 10) {
162 packets.push_back(
163 new MediaPacket(0, now_ms_ * 1000, payload_bits / 8, header));
164 }
165 filter_.RunFor(run_for_ms, &packets);
166 ASSERT_TRUE(IsTimeSorted(packets));
167 EXPECT_EQ(expected_pps, filter_.packets_per_second());
168 EXPECT_EQ(expected_bps, filter_.bits_per_second());
169
170 for (auto* packet : packets)
171 delete packet;
172 }
173
174 private:
175 RateCounterFilter filter_;
176 int64_t now_ms_;
177
178 RTC_DISALLOW_COPY_AND_ASSIGN(BweTestFramework_RateCounterFilterTest);
179 };
180
TEST_F(BweTestFramework_RateCounterFilterTest,Short)181 TEST_F(BweTestFramework_RateCounterFilterTest, Short) {
182 // 100ms, 100 bytes per packet, should result in 10 pps and 8 kbps. We're
183 // generating one packet every 10 ms ; 10 * 800 = 8k
184 TestRateCounter(100, 800, 10, 8000);
185 }
186
TEST_F(BweTestFramework_RateCounterFilterTest,Medium)187 TEST_F(BweTestFramework_RateCounterFilterTest, Medium) {
188 // 100ms, like above.
189 TestRateCounter(100, 800, 10, 8000);
190 // 1000ms, 100 bpp, should result in 100 pps and 80 kbps. We're still
191 // generating packets every 10 ms.
192 TestRateCounter(900, 800, 100, 80000);
193 }
194
TEST_F(BweTestFramework_RateCounterFilterTest,Long)195 TEST_F(BweTestFramework_RateCounterFilterTest, Long) {
196 // 100ms, 1000ms, like above.
197 TestRateCounter(100, 800, 10, 8000);
198 TestRateCounter(900, 800, 100, 80000);
199 // 2000ms, should only see rate of last second, so 100 pps, and 40 kbps now.
200 TestRateCounter(1000, 400, 100, 40000);
201 // 2500ms, half a second with zero payload size. We should get same pps as
202 // before, but kbps should drop to half of previous rate.
203 TestRateCounter(500, 0, 100, 20000);
204 // Another half second with zero payload size. Now the kbps rate should drop
205 // to zero.
206 TestRateCounter(500, 0, 100, 0);
207 // Increate payload size again. 200 * 100 * 0.5 = 10 kbps.
208 TestRateCounter(500, 200, 100, 10000);
209 }
210
TestLossFilter(float loss_percent,bool zero_tolerance)211 static void TestLossFilter(float loss_percent, bool zero_tolerance) {
212 LossFilter filter(NULL, 0);
213 filter.SetLoss(loss_percent);
214 Packets::size_type sent_packets = 0;
215 Packets::size_type remaining_packets = 0;
216
217 // No input should yield no output
218 {
219 Packets packets;
220 sent_packets += packets.size();
221 filter.RunFor(0, &packets);
222 ASSERT_TRUE(IsTimeSorted(packets));
223 ASSERT_TRUE(IsSequenceNumberSorted(packets));
224 remaining_packets += packets.size();
225 EXPECT_EQ(0u, sent_packets);
226 EXPECT_EQ(0u, remaining_packets);
227 for (auto* packet : packets)
228 delete packet;
229 }
230
231 // Generate and process 10000 packets in different batch sizes (some empty)
232 for (int i = 0; i < 2225; ++i) {
233 Packets packets;
234 for (int j = 0; j < i % 10; ++j)
235 packets.push_back(new MediaPacket(i, i));
236 sent_packets += packets.size();
237 filter.RunFor(0, &packets);
238 ASSERT_TRUE(IsTimeSorted(packets));
239 ASSERT_TRUE(IsSequenceNumberSorted(packets));
240 remaining_packets += packets.size();
241 for (auto* packet : packets)
242 delete packet;
243 }
244
245 float loss_fraction = 0.01f * (100.0f - loss_percent);
246 Packets::size_type expected_packets = loss_fraction * sent_packets;
247 if (zero_tolerance) {
248 EXPECT_EQ(expected_packets, remaining_packets);
249 } else {
250 // Require within 1% of expected
251 EXPECT_NEAR(expected_packets, remaining_packets, 100);
252 }
253 }
254
TEST(BweTestFramework_LossFilterTest,Loss0)255 TEST(BweTestFramework_LossFilterTest, Loss0) {
256 // With 0% loss, the result should be exact (no loss).
257 TestLossFilter(0.0f, true);
258 }
259
TEST(BweTestFramework_LossFilterTest,Loss10)260 TEST(BweTestFramework_LossFilterTest, Loss10) {
261 TestLossFilter(10.0f, false);
262 }
263
TEST(BweTestFramework_LossFilterTest,Loss50)264 TEST(BweTestFramework_LossFilterTest, Loss50) {
265 TestLossFilter(50.0f, false);
266 }
267
TEST(BweTestFramework_LossFilterTest,Loss100)268 TEST(BweTestFramework_LossFilterTest, Loss100) {
269 // With 100% loss, the result should be exact (no packets out).
270 TestLossFilter(100.0f, true);
271 }
272
273 class BweTestFramework_DelayFilterTest : public ::testing::Test {
274 public:
BweTestFramework_DelayFilterTest()275 BweTestFramework_DelayFilterTest()
276 : filter_(NULL, 0), now_ms_(0), sequence_number_(0) {}
~BweTestFramework_DelayFilterTest()277 virtual ~BweTestFramework_DelayFilterTest() {
278 for (auto* packet : accumulated_packets_)
279 delete packet;
280 }
281
282 protected:
TestDelayFilter(int64_t run_for_ms,uint32_t in_packets,uint32_t out_packets)283 void TestDelayFilter(int64_t run_for_ms, uint32_t in_packets,
284 uint32_t out_packets) {
285 Packets packets;
286 for (uint32_t i = 0; i < in_packets; ++i) {
287 packets.push_back(new MediaPacket(
288 now_ms_ * 1000 + (sequence_number_ >> 4), sequence_number_));
289 sequence_number_++;
290 }
291 filter_.RunFor(run_for_ms, &packets);
292 ASSERT_TRUE(IsTimeSorted(packets));
293 ASSERT_TRUE(IsSequenceNumberSorted(packets));
294 for (PacketsConstIt it = packets.begin(); it != packets.end(); ++it) {
295 EXPECT_LE(now_ms_ * 1000, (*it)->send_time_us());
296 }
297 EXPECT_EQ(out_packets, packets.size());
298 accumulated_packets_.splice(accumulated_packets_.end(), packets);
299 now_ms_ += run_for_ms;
300 }
301
TestDelayFilter(int64_t delay_ms)302 void TestDelayFilter(int64_t delay_ms) {
303 filter_.SetOneWayDelayMs(delay_ms);
304 TestDelayFilter(1, 0, 0); // No input should yield no output
305
306 // Single packet
307 TestDelayFilter(0, 1, 1);
308 TestDelayFilter(delay_ms, 0, 0);
309
310 for (int i = 0; i < delay_ms; ++i) {
311 filter_.SetOneWayDelayMs(i);
312 TestDelayFilter(1, 10, 10);
313 }
314 TestDelayFilter(0, 0, 0);
315 TestDelayFilter(delay_ms, 0, 0);
316
317 // Wait a little longer - should still see no output
318 TestDelayFilter(delay_ms, 0, 0);
319
320 for (int i = 1; i < delay_ms + 1; ++i) {
321 filter_.SetOneWayDelayMs(i);
322 TestDelayFilter(1, 5, 5);
323 }
324 TestDelayFilter(0, 0, 0);
325 filter_.SetOneWayDelayMs(2 * delay_ms);
326 TestDelayFilter(1, 0, 0);
327 TestDelayFilter(delay_ms, 13, 13);
328 TestDelayFilter(delay_ms, 0, 0);
329
330 // Wait a little longer - should still see no output
331 TestDelayFilter(delay_ms, 0, 0);
332
333 for (int i = 0; i < 2 * delay_ms; ++i) {
334 filter_.SetOneWayDelayMs(2 * delay_ms - i - 1);
335 TestDelayFilter(1, 5, 5);
336 }
337 TestDelayFilter(0, 0, 0);
338 filter_.SetOneWayDelayMs(0);
339 TestDelayFilter(0, 7, 7);
340
341 ASSERT_TRUE(IsTimeSorted(accumulated_packets_));
342 ASSERT_TRUE(IsSequenceNumberSorted(accumulated_packets_));
343 }
344
345 DelayFilter filter_;
346 Packets accumulated_packets_;
347
348 private:
349 int64_t now_ms_;
350 uint16_t sequence_number_;
351
352 RTC_DISALLOW_COPY_AND_ASSIGN(BweTestFramework_DelayFilterTest);
353 };
354
TEST_F(BweTestFramework_DelayFilterTest,Delay0)355 TEST_F(BweTestFramework_DelayFilterTest, Delay0) {
356 TestDelayFilter(1, 0, 0); // No input should yield no output
357 TestDelayFilter(1, 10, 10); // Expect no delay (delay time is zero)
358 TestDelayFilter(1, 0, 0); // Check no packets are still in buffer
359 filter_.SetOneWayDelayMs(0);
360 TestDelayFilter(1, 5, 5); // Expect no delay (delay time is zero)
361 TestDelayFilter(1, 0, 0); // Check no packets are still in buffer
362 }
363
TEST_F(BweTestFramework_DelayFilterTest,Delay1)364 TEST_F(BweTestFramework_DelayFilterTest, Delay1) {
365 TestDelayFilter(1);
366 }
367
TEST_F(BweTestFramework_DelayFilterTest,Delay2)368 TEST_F(BweTestFramework_DelayFilterTest, Delay2) {
369 TestDelayFilter(2);
370 }
371
TEST_F(BweTestFramework_DelayFilterTest,Delay20)372 TEST_F(BweTestFramework_DelayFilterTest, Delay20) {
373 TestDelayFilter(20);
374 }
375
TEST_F(BweTestFramework_DelayFilterTest,Delay100)376 TEST_F(BweTestFramework_DelayFilterTest, Delay100) {
377 TestDelayFilter(100);
378 }
379
TEST_F(BweTestFramework_DelayFilterTest,JumpToZeroDelay)380 TEST_F(BweTestFramework_DelayFilterTest, JumpToZeroDelay) {
381 DelayFilter delay(NULL, 0);
382 Packets acc;
383 Packets packets;
384
385 // Delay a bunch of packets, accumulate them to the 'acc' list.
386 delay.SetOneWayDelayMs(100.0f);
387 for (uint32_t i = 0; i < 10; ++i) {
388 packets.push_back(new MediaPacket(i * 100, i));
389 }
390 delay.RunFor(1000, &packets);
391 acc.splice(acc.end(), packets);
392 ASSERT_TRUE(IsTimeSorted(acc));
393 ASSERT_TRUE(IsSequenceNumberSorted(acc));
394
395 // Drop delay to zero, send a few more packets through the delay, append them
396 // to the 'acc' list and verify that it is all sorted.
397 delay.SetOneWayDelayMs(0.0f);
398 for (uint32_t i = 10; i < 50; ++i) {
399 packets.push_back(new MediaPacket(i * 100, i));
400 }
401 delay.RunFor(1000, &packets);
402 acc.splice(acc.end(), packets);
403 ASSERT_TRUE(IsTimeSorted(acc));
404 ASSERT_TRUE(IsSequenceNumberSorted(acc));
405
406 for (auto* packet : acc)
407 delete packet;
408 }
409
TEST_F(BweTestFramework_DelayFilterTest,IncreasingDelay)410 TEST_F(BweTestFramework_DelayFilterTest, IncreasingDelay) {
411 // Gradually increase delay.
412 for (int i = 1; i < 50; i += 4) {
413 TestDelayFilter(i);
414 }
415 // Reach a steady state.
416 filter_.SetOneWayDelayMs(100);
417 TestDelayFilter(1, 20, 20);
418 TestDelayFilter(2, 0, 0);
419 TestDelayFilter(99, 20, 20);
420 // Drop delay back down to zero.
421 filter_.SetOneWayDelayMs(0);
422 TestDelayFilter(1, 100, 100);
423 TestDelayFilter(23010, 0, 0);
424 ASSERT_TRUE(IsTimeSorted(accumulated_packets_));
425 ASSERT_TRUE(IsSequenceNumberSorted(accumulated_packets_));
426 }
427
TestJitterFilter(int64_t max_jitter_ms)428 static void TestJitterFilter(int64_t max_jitter_ms) {
429 JitterFilter filter(NULL, 0);
430 filter.SetMaxJitter(max_jitter_ms);
431
432 int64_t now_ms = 0;
433 uint16_t sequence_number = 0;
434
435 // Generate packets, add jitter to them, accumulate the altered packets.
436 Packets original;
437 Packets jittered;
438 for (uint32_t i = 0; i < 1000; ++i) {
439 Packets packets;
440 for (uint32_t j = 0; j < i % 100; ++j) {
441 packets.push_back(new MediaPacket(now_ms * 1000, sequence_number));
442 original.push_back(new MediaPacket(now_ms * 1000, sequence_number));
443 ++sequence_number;
444 now_ms += 5 * max_jitter_ms;
445 }
446 filter.RunFor(max_jitter_ms, &packets);
447 jittered.splice(jittered.end(), packets);
448 }
449
450 // Jittered packets should still be in order.
451 ASSERT_TRUE(IsTimeSorted(original));
452 ASSERT_TRUE(IsTimeSorted(jittered));
453 ASSERT_TRUE(IsSequenceNumberSorted(original));
454 ASSERT_TRUE(IsSequenceNumberSorted(jittered));
455 EXPECT_EQ(original.size(), jittered.size());
456
457 // Make sure jittered and original packets are in same order. Collect time
458 // difference (jitter) in stats, then check that mean jitter is close to zero
459 // and standard deviation of jitter is what we set it to.
460 Stats<double> jitter_us;
461 int64_t max_jitter_obtained_us = 0;
462 for (PacketsIt it1 = original.begin(), it2 = jittered.begin();
463 it1 != original.end() && it2 != jittered.end(); ++it1, ++it2) {
464 const MediaPacket* packet1 = static_cast<const MediaPacket*>(*it1);
465 const MediaPacket* packet2 = static_cast<const MediaPacket*>(*it2);
466 EXPECT_EQ(packet1->header().sequenceNumber,
467 packet2->header().sequenceNumber);
468 max_jitter_obtained_us =
469 std::max(max_jitter_obtained_us,
470 packet2->send_time_us() - packet1->send_time_us());
471 jitter_us.Push(packet2->send_time_us() - packet1->send_time_us());
472 }
473 EXPECT_NEAR(filter.MeanUs(), jitter_us.GetMean(),
474 max_jitter_ms * 1000.0 * 0.01);
475 EXPECT_NEAR(max_jitter_ms * 1000.0, max_jitter_obtained_us,
476 max_jitter_ms * 1000.0 * 0.01);
477 for (auto* packet : original)
478 delete packet;
479 for (auto* packet : jittered)
480 delete packet;
481 }
482
TEST(BweTestFramework_JitterFilterTest,Jitter0)483 TEST(BweTestFramework_JitterFilterTest, Jitter0) {
484 TestJitterFilter(0);
485 }
486
TEST(BweTestFramework_JitterFilterTest,Jitter1)487 TEST(BweTestFramework_JitterFilterTest, Jitter1) {
488 TestJitterFilter(1);
489 }
490
TEST(BweTestFramework_JitterFilterTest,Jitter5)491 TEST(BweTestFramework_JitterFilterTest, Jitter5) {
492 TestJitterFilter(5);
493 }
494
TEST(BweTestFramework_JitterFilterTest,Jitter10)495 TEST(BweTestFramework_JitterFilterTest, Jitter10) {
496 TestJitterFilter(10);
497 }
498
TEST(BweTestFramework_JitterFilterTest,Jitter1031)499 TEST(BweTestFramework_JitterFilterTest, Jitter1031) {
500 TestJitterFilter(1031);
501 }
502
TestReorderFilter(uint16_t reorder_percent)503 static void TestReorderFilter(uint16_t reorder_percent) {
504 const uint16_t kPacketCount = 10000;
505
506 // Generate packets with 10 ms interval.
507 Packets packets;
508 int64_t now_ms = 0;
509 uint16_t sequence_number = 1;
510 for (uint16_t i = 0; i < kPacketCount; ++i, now_ms += 10) {
511 packets.push_back(new MediaPacket(now_ms * 1000, sequence_number++));
512 }
513 ASSERT_TRUE(IsTimeSorted(packets));
514 ASSERT_TRUE(IsSequenceNumberSorted(packets));
515
516 // Reorder packets, verify that send times are still in order.
517 ReorderFilter filter(NULL, 0);
518 filter.SetReorder(reorder_percent);
519 filter.RunFor(now_ms, &packets);
520 ASSERT_TRUE(IsTimeSorted(packets));
521
522 // We measure the amount of reordering by summing the distance by which out-
523 // of-order packets have been moved in the stream.
524 uint16_t distance = 0;
525 uint16_t last_sequence_number = 0;
526 for (auto* packet : packets) {
527 const MediaPacket* media_packet = static_cast<const MediaPacket*>(packet);
528 uint16_t sequence_number = media_packet->header().sequenceNumber;
529 // The expected position for sequence number s is in position s-1.
530 if (sequence_number < last_sequence_number) {
531 distance += last_sequence_number - sequence_number;
532 }
533 last_sequence_number = sequence_number;
534 }
535
536 // The probability that two elements are swapped is p = reorder_percent / 100.
537 double p = static_cast<double>(reorder_percent) / 100;
538 // The expected number of swaps we perform is p * (PacketCount - 1),
539 // and each swap increases the distance by one.
540 double mean = p * (kPacketCount - 1);
541 // If pair i is chosen to be swapped with probability p, the variance for that
542 // pair is p * (1 - p). Since there are (kPacketCount - 1) independent pairs,
543 // the variance for the number of swaps is (kPacketCount - 1) * p * (1 - p).
544 double std_deviation = sqrt((kPacketCount - 1) * p * (1 - p));
545 EXPECT_NEAR(mean, distance, 3 * std_deviation);
546
547 for (auto* packet : packets)
548 delete packet;
549 }
550
TEST(BweTestFramework_ReorderFilterTest,Reorder0)551 TEST(BweTestFramework_ReorderFilterTest, Reorder0) {
552 // For 0% reordering, no packets should have been moved, so result is exact.
553 TestReorderFilter(0);
554 }
555
TEST(BweTestFramework_ReorderFilterTest,Reorder10)556 TEST(BweTestFramework_ReorderFilterTest, Reorder10) {
557 TestReorderFilter(10);
558 }
559
TEST(BweTestFramework_ReorderFilterTest,Reorder20)560 TEST(BweTestFramework_ReorderFilterTest, Reorder20) {
561 TestReorderFilter(20);
562 }
563
TEST(BweTestFramework_ReorderFilterTest,Reorder50)564 TEST(BweTestFramework_ReorderFilterTest, Reorder50) {
565 TestReorderFilter(50);
566 }
567
TEST(BweTestFramework_ReorderFilterTest,Reorder70)568 TEST(BweTestFramework_ReorderFilterTest, Reorder70) {
569 TestReorderFilter(70);
570 }
571
TEST(BweTestFramework_ReorderFilterTest,Reorder100)572 TEST(BweTestFramework_ReorderFilterTest, Reorder100) {
573 // Note that because the implementation works by optionally swapping two
574 // adjacent packets, when the likelihood of a swap is 1.0, a swap will always
575 // occur, so the stream will be in order except for the first packet, which
576 // has been moved to the end. Therefore we expect the result to be exact here.
577 TestReorderFilter(100.0);
578 }
579
580 class BweTestFramework_ChokeFilterTest : public ::testing::Test {
581 public:
BweTestFramework_ChokeFilterTest()582 BweTestFramework_ChokeFilterTest()
583 : now_ms_(0),
584 sequence_number_(0),
585 output_packets_(),
586 send_times_us_() {
587 }
~BweTestFramework_ChokeFilterTest()588 virtual ~BweTestFramework_ChokeFilterTest() {
589 for (auto* packet : output_packets_)
590 delete packet;
591 }
592
593 protected:
TestChoke(PacketProcessor * filter,int64_t run_for_ms,uint32_t packets_to_generate,size_t expected_kbit_transmitted)594 void TestChoke(PacketProcessor* filter,
595 int64_t run_for_ms,
596 uint32_t packets_to_generate,
597 size_t expected_kbit_transmitted) {
598 // Generate a bunch of packets, apply choke, verify output is ordered.
599 Packets packets;
600 RTPHeader header;
601 for (uint32_t i = 0; i < packets_to_generate; ++i) {
602 int64_t send_time_ms = now_ms_ + (i * run_for_ms) / packets_to_generate;
603 header.sequenceNumber = sequence_number_++;
604 // Payload is 1000 bits.
605 packets.push_back(new MediaPacket(0, send_time_ms * 1000, 125, header));
606 send_times_us_.push_back(send_time_ms * 1000);
607 }
608 ASSERT_TRUE(IsTimeSorted(packets));
609 filter->RunFor(run_for_ms, &packets);
610 now_ms_ += run_for_ms;
611 output_packets_.splice(output_packets_.end(), packets);
612 ASSERT_TRUE(IsTimeSorted(output_packets_));
613 ASSERT_TRUE(IsSequenceNumberSorted(output_packets_));
614
615 // Sum up the transmitted bytes up until the current time.
616 size_t bytes_transmitted = 0;
617 while (!output_packets_.empty()) {
618 const Packet* packet = output_packets_.front();
619 if (packet->send_time_us() > now_ms_ * 1000) {
620 break;
621 }
622 bytes_transmitted += packet->payload_size();
623 delete output_packets_.front();
624 output_packets_.pop_front();
625 }
626 EXPECT_EQ(expected_kbit_transmitted, (bytes_transmitted * 8 + 500) / 1000);
627 }
628
CheckMaxDelay(int64_t max_delay_ms)629 void CheckMaxDelay(int64_t max_delay_ms) {
630 for (const auto* packet : output_packets_) {
631 const MediaPacket* media_packet = static_cast<const MediaPacket*>(packet);
632 int64_t delay_us = media_packet->send_time_us() -
633 send_times_us_[media_packet->header().sequenceNumber];
634 EXPECT_GE(max_delay_ms * 1000, delay_us);
635 }
636 }
637
638 private:
639 int64_t now_ms_;
640 uint16_t sequence_number_;
641 Packets output_packets_;
642 std::vector<int64_t> send_times_us_;
643
644 RTC_DISALLOW_COPY_AND_ASSIGN(BweTestFramework_ChokeFilterTest);
645 };
646
TEST_F(BweTestFramework_ChokeFilterTest,NoQueue)647 TEST_F(BweTestFramework_ChokeFilterTest, NoQueue) {
648 const int kCapacityKbps = 10;
649 const size_t kPacketSizeBytes = 125;
650 const int64_t kExpectedSendTimeUs =
651 (kPacketSizeBytes * 8 * 1000 + kCapacityKbps / 2) / kCapacityKbps;
652 uint16_t sequence_number = 0;
653 int64_t send_time_us = 0;
654 ChokeFilter filter(NULL, 0);
655 filter.set_capacity_kbps(10);
656 Packets packets;
657 RTPHeader header;
658 for (int i = 0; i < 2; ++i) {
659 header.sequenceNumber = sequence_number++;
660 // Payload is 1000 bits.
661 packets.push_back(
662 new MediaPacket(0, send_time_us, kPacketSizeBytes, header));
663 // Packets are sent far enough a part plus an extra millisecond so that they
664 // will never be in the choke queue at the same time.
665 send_time_us += kExpectedSendTimeUs + 1000;
666 }
667 ASSERT_TRUE(IsTimeSorted(packets));
668 filter.RunFor(2 * kExpectedSendTimeUs + 1000, &packets);
669 EXPECT_EQ(kExpectedSendTimeUs, packets.front()->send_time_us());
670 delete packets.front();
671 packets.pop_front();
672 EXPECT_EQ(2 * kExpectedSendTimeUs + 1000, packets.front()->send_time_us());
673 delete packets.front();
674 packets.pop_front();
675 }
676
TEST_F(BweTestFramework_ChokeFilterTest,Short)677 TEST_F(BweTestFramework_ChokeFilterTest, Short) {
678 // 100ms, 100 packets, 10 kbps choke -> 1 kbit of data should have propagated.
679 // That is actually just a single packet, since each packet has 1000 bits of
680 // payload.
681 ChokeFilter filter(NULL, 0);
682 filter.set_capacity_kbps(10);
683 TestChoke(&filter, 100, 100, 1);
684 }
685
TEST_F(BweTestFramework_ChokeFilterTest,Medium)686 TEST_F(BweTestFramework_ChokeFilterTest, Medium) {
687 // 100ms, 10 packets, 10 kbps choke -> 1 packet through, or 1 kbit.
688 ChokeFilter filter(NULL, 0);
689 filter.set_capacity_kbps(10);
690 TestChoke(&filter, 100, 10, 1);
691 // 200ms, no new packets -> another packet through.
692 TestChoke(&filter, 100, 0, 1);
693 // 1000ms, no new packets -> 8 more packets.
694 TestChoke(&filter, 800, 0, 8);
695 // 2000ms, no new packets -> queue is empty so no output.
696 TestChoke(&filter, 1000, 0, 0);
697 }
698
TEST_F(BweTestFramework_ChokeFilterTest,Long)699 TEST_F(BweTestFramework_ChokeFilterTest, Long) {
700 // 100ms, 100 packets in queue, 10 kbps choke -> 1 packet through, or 1 kbit.
701 ChokeFilter filter(NULL, 0);
702 filter.set_capacity_kbps(10);
703 TestChoke(&filter, 100, 100, 1);
704 // 200ms, no input, another packet through.
705 TestChoke(&filter, 100, 0, 1);
706 // 1000ms, no input, 8 packets through.
707 TestChoke(&filter, 800, 0, 8);
708 // 10000ms, no input, raise choke to 100 kbps. Remaining 90 packets in queue
709 // should be propagated, for a total of 90 kbps.
710 filter.set_capacity_kbps(100);
711 TestChoke(&filter, 9000, 0, 90);
712 // 10100ms, 20 more packets -> 10 packets or 10 kbit through.
713 TestChoke(&filter, 100, 20, 10);
714 // 10300ms, 10 more packets -> 20 packets out.
715 TestChoke(&filter, 200, 10, 20);
716 // 11300ms, no input, queue should be empty.
717 filter.set_capacity_kbps(10);
718 TestChoke(&filter, 1000, 0, 0);
719 }
720
TEST_F(BweTestFramework_ChokeFilterTest,MaxDelay)721 TEST_F(BweTestFramework_ChokeFilterTest, MaxDelay) {
722 // 10 kbps choke, 500 ms delay cap
723 ChokeFilter filter(NULL, 0);
724 filter.set_capacity_kbps(10);
725 filter.set_max_delay_ms(500);
726 // 100ms, 100 packets in queue, 10 kbps choke -> 1 packet through, or 1 kbit.
727 TestChoke(&filter, 100, 100, 1);
728 CheckMaxDelay(500);
729 // 500ms, no input, 4 more packets through.
730 TestChoke(&filter, 400, 0, 4);
731 // 10000ms, no input, remaining packets should have been dropped.
732 TestChoke(&filter, 9500, 0, 0);
733
734 // 100 ms delay cap
735 filter.set_max_delay_ms(100);
736 // 10100ms, 50 more packets -> 1 packets or 1 kbit through.
737 TestChoke(&filter, 100, 50, 1);
738 CheckMaxDelay(100);
739 // 20000ms, no input, remaining packets in queue should have been dropped.
740 TestChoke(&filter, 9900, 0, 0);
741
742 // Reset delay cap (0 is no cap) and verify no packets are dropped.
743 filter.set_capacity_kbps(10);
744 filter.set_max_delay_ms(0);
745 TestChoke(&filter, 100, 100, 1);
746 TestChoke(&filter, 9900, 0, 99);
747 }
748
TEST_F(BweTestFramework_ChokeFilterTest,ShortTrace)749 TEST_F(BweTestFramework_ChokeFilterTest, ShortTrace) {
750 // According to the input file 6 packets should be transmitted within
751 // 100 milliseconds.
752 TraceBasedDeliveryFilter filter(NULL, 0);
753 ASSERT_TRUE(filter.Init(test::ResourcePath("synthetic-trace", "rx")));
754 TestChoke(&filter, 100, 100, 6);
755 }
756
TEST_F(BweTestFramework_ChokeFilterTest,ShortTraceTwoWraps)757 TEST_F(BweTestFramework_ChokeFilterTest, ShortTraceTwoWraps) {
758 // According to the input file 19 packets should be transmitted within
759 // 280 milliseconds (at the wrapping point two packets are sent back to back).
760 TraceBasedDeliveryFilter filter(NULL, 0);
761 ASSERT_TRUE(filter.Init(test::ResourcePath("synthetic-trace", "rx")));
762 TestChoke(&filter, 280, 100, 19);
763 }
764
TEST_F(BweTestFramework_ChokeFilterTest,ShortTraceMaxDelay)765 TEST_F(BweTestFramework_ChokeFilterTest, ShortTraceMaxDelay) {
766 TraceBasedDeliveryFilter filter(NULL, 0);
767 filter.set_max_delay_ms(25);
768 ASSERT_TRUE(filter.Init(test::ResourcePath("synthetic-trace", "rx")));
769 // Uses all slots up to 110 ms. Several packets are being dropped.
770 TestChoke(&filter, 110, 20, 9);
771 CheckMaxDelay(25);
772 // Simulate enough time for the next slot (at 135 ms) to be used. This makes
773 // sure that a slot isn't missed between runs.
774 TestChoke(&filter, 25, 1, 1);
775 }
776
TestVideoSender(VideoSender * sender,int64_t run_for_ms,uint32_t expected_packets,uint32_t expected_payload_size,size_t expected_total_payload_size)777 void TestVideoSender(VideoSender* sender,
778 int64_t run_for_ms,
779 uint32_t expected_packets,
780 uint32_t expected_payload_size,
781 size_t expected_total_payload_size) {
782 assert(sender);
783 Packets packets;
784 sender->RunFor(run_for_ms, &packets);
785 ASSERT_TRUE(IsTimeSorted(packets));
786 ASSERT_TRUE(IsSequenceNumberSorted(packets));
787 EXPECT_EQ(expected_packets, packets.size());
788
789 int64_t send_time_us = -1;
790 size_t total_payload_size = 0;
791 uint32_t absolute_send_time = 0;
792 uint32_t absolute_send_time_wraps = 0;
793 uint32_t rtp_timestamp = 0;
794 uint32_t rtp_timestamp_wraps = 0;
795
796 for (const auto* packet : packets) {
797 const MediaPacket* media_packet = static_cast<const MediaPacket*>(packet);
798 EXPECT_LE(send_time_us, media_packet->send_time_us());
799 send_time_us = media_packet->send_time_us();
800 if (sender->source()->max_payload_size_bytes() !=
801 media_packet->payload_size()) {
802 EXPECT_EQ(expected_payload_size, media_packet->payload_size());
803 }
804 total_payload_size += media_packet->payload_size();
805 if (absolute_send_time >
806 media_packet->header().extension.absoluteSendTime) {
807 absolute_send_time_wraps++;
808 }
809 absolute_send_time = media_packet->header().extension.absoluteSendTime;
810 if (rtp_timestamp > media_packet->header().timestamp) {
811 rtp_timestamp_wraps++;
812 }
813 rtp_timestamp = media_packet->header().timestamp;
814 }
815
816 EXPECT_EQ(expected_total_payload_size, total_payload_size);
817 EXPECT_GE(1u, absolute_send_time_wraps);
818 EXPECT_GE(1u, rtp_timestamp_wraps);
819
820 for (auto* packet : packets)
821 delete packet;
822 }
823
824 // Random {-1, 0, +1} ms was added to frame timestamps.
825
TEST(BweTestFramework_VideoSenderTest,Fps1Kbps80_1s)826 TEST(BweTestFramework_VideoSenderTest, Fps1Kbps80_1s) {
827 // 1 fps, 80 kbps
828 VideoSource source(0, 1.0f, 80, 0x1234, 0);
829 VideoSender sender(NULL, &source, kNullEstimator);
830 EXPECT_EQ(80000u, source.bits_per_second());
831 // We're at 1 fps, so all packets should be generated on first call, giving 10
832 // packets of each 1000 bytes, total 10000 bytes.
833 TestVideoSender(&sender, 1, 9, 400, 10000);
834 // 998ms, should see no output here.
835 TestVideoSender(&sender, 997, 0, 0, 0);
836 // 1001ms, should get data for one more frame.
837 TestVideoSender(&sender, 3, 9, 400, 10000);
838 // 1998ms, should see no output here.
839 TestVideoSender(&sender, 997, 0, 0, 0);
840 // 2001ms, one more frame.
841 TestVideoSender(&sender, 3, 9, 400, 10000);
842 // 2998ms, should see nothing.
843 TestVideoSender(&sender, 997, 0, 0, 0);
844 }
845
TEST(BweTestFramework_VideoSenderTest,Fps1Kbps80_1s_Offset)846 TEST(BweTestFramework_VideoSenderTest, Fps1Kbps80_1s_Offset) {
847 // 1 fps, 80 kbps, offset 0.5 of a frame period, ==0.5s in this case.
848 VideoSource source(0, 1.0f, 80, 0x1234, 500);
849 VideoSender sender(NULL, &source, kNullEstimator);
850 EXPECT_EQ(80000u, source.bits_per_second());
851 // 498ms, no output.
852 TestVideoSender(&sender, 498, 0, 0, 0);
853 // 501ms, first frame (this is the offset we set), 10 packets of 1000 bytes.
854 TestVideoSender(&sender, 3, 9, 400, 10000);
855 // 1498ms, nothing.
856 TestVideoSender(&sender, 997, 0, 0, 0);
857 // 1501ms, second frame.
858 TestVideoSender(&sender, 3, 9, 400, 10000);
859 // 2498ms, nothing.
860 TestVideoSender(&sender, 997, 0, 0, 0);
861 // 2501ms, third frame.
862 TestVideoSender(&sender, 3, 9, 400, 10000);
863 // 3498ms, nothing.
864 TestVideoSender(&sender, 997, 0, 0, 0);
865 }
866
TEST(BweTestFramework_VideoSenderTest,Fps50Kpbs80_11s)867 TEST(BweTestFramework_VideoSenderTest, Fps50Kpbs80_11s) {
868 // 50 fps, 80 kbps.
869 VideoSource source(0, 50.0f, 80, 0x1234, 0);
870 VideoSender sender(NULL, &source, kNullEstimator);
871 EXPECT_EQ(80000u, source.bits_per_second());
872 // 9981, should see 500 frames, 200 byte payloads, total 100000 bytes.
873 TestVideoSender(&sender, 9981, 500, 200, 100000);
874 // 9998ms, nothing.
875 TestVideoSender(&sender, 17, 0, 0, 0);
876 // 10001ms, 501st frame as a single packet.
877 TestVideoSender(&sender, 3, 1, 200, 200);
878 // 10981ms, 49 more frames.
879 TestVideoSender(&sender, 981, 49, 200, 9800);
880 // 10998ms, nothing.
881 TestVideoSender(&sender, 17, 0, 0, 0);
882 }
883
TEST(BweTestFramework_VideoSenderTest,Fps20Kpbs120_1s)884 TEST(BweTestFramework_VideoSenderTest, Fps20Kpbs120_1s) {
885 // 20 fps, 120 kbps.
886 VideoSource source(0, 20.0f, 120, 0x1234, 0);
887 VideoSender sender(NULL, &source, kNullEstimator);
888 EXPECT_EQ(120000u, source.bits_per_second());
889 // 451ms, 10 frames with 750 byte payloads, total 7500 bytes.
890 TestVideoSender(&sender, 451, 10, 750, 7500);
891 // 498ms, nothing.
892 TestVideoSender(&sender, 47, 0, 0, 0);
893 // 501ms, one more frame.
894 TestVideoSender(&sender, 3, 1, 750, 750);
895 // 951ms, 9 more frames.
896 TestVideoSender(&sender, 450, 9, 750, 6750);
897 // 998ms, nothing.
898 TestVideoSender(&sender, 47, 0, 0, 0);
899 }
900
TEST(BweTestFramework_VideoSenderTest,Fps25Kbps820_20s)901 TEST(BweTestFramework_VideoSenderTest, Fps25Kbps820_20s) {
902 // 25 fps, 820 kbps.
903 VideoSource source(0, 25.0f, 820, 0x1234, 0);
904 VideoSender sender(NULL, &source, kNullEstimator);
905 EXPECT_EQ(820000u, source.bits_per_second());
906 // 9961ms, 250 frames. 820 kbps = 102500 bytes/s, so total should be 1025000.
907 // Each frame is 102500/25=4100 bytes, or 5 packets (4 @1000 bytes, 1 @100),
908 // so packet count should be 5*250=1250 and last packet of each frame has
909 // 100 bytes of payload.
910 TestVideoSender(&sender, 9961, 1000, 500, 1025000);
911 // 9998ms, nothing.
912 TestVideoSender(&sender, 37, 0, 0, 0);
913 // 19961ms, 250 more frames.
914 TestVideoSender(&sender, 9963, 1000, 500, 1025000);
915 // 19998ms, nothing.
916 TestVideoSender(&sender, 37, 0, 0, 0);
917 // 20001ms, one more frame, as described above (25fps == 40ms/frame).
918 TestVideoSender(&sender, 3, 4, 500, 4100);
919 // 20038ms, nothing.
920 TestVideoSender(&sender, 37, 0, 0, 0);
921 }
922
TEST(BweTestFramework_VideoSenderTest,TestAppendInOrder)923 TEST(BweTestFramework_VideoSenderTest, TestAppendInOrder) {
924 // 1 fps, 80 kbps, 250ms offset.
925 VideoSource source1(0, 1.0f, 80, 0x1234, 250);
926 VideoSender sender1(NULL, &source1, kNullEstimator);
927 EXPECT_EQ(80000u, source1.bits_per_second());
928 Packets packets;
929 // Generate some packets, verify they are sorted.
930 sender1.RunFor(999, &packets);
931 ASSERT_TRUE(IsTimeSorted(packets));
932 ASSERT_TRUE(IsSequenceNumberSorted(packets));
933 EXPECT_EQ(9u, packets.size());
934 // Generate some more packets and verify they are appended to end of list.
935 sender1.RunFor(1000, &packets);
936 ASSERT_TRUE(IsTimeSorted(packets));
937 ASSERT_TRUE(IsSequenceNumberSorted(packets));
938 EXPECT_EQ(18u, packets.size());
939
940 // Another sender, 2 fps, 160 kbps, 150ms offset
941 VideoSource source2(0, 2.0f, 160, 0x2234, 150);
942 VideoSender sender2(NULL, &source2, kNullEstimator);
943 EXPECT_EQ(160000u, source2.bits_per_second());
944 // Generate some packets, verify that they are merged with the packets already
945 // on the list.
946 sender2.RunFor(999, &packets);
947 ASSERT_TRUE(IsTimeSorted(packets));
948 EXPECT_EQ(36u, packets.size());
949 // Generate some more.
950 sender2.RunFor(1000, &packets);
951 ASSERT_TRUE(IsTimeSorted(packets));
952 EXPECT_EQ(54u, packets.size());
953
954 for (auto* packet : packets)
955 delete packet;
956 }
957
TEST(BweTestFramework_VideoSenderTest,FeedbackIneffective)958 TEST(BweTestFramework_VideoSenderTest, FeedbackIneffective) {
959 VideoSource source(0, 25.0f, 820, 0x1234, 0);
960 VideoSender sender(NULL, &source, kNullEstimator);
961
962 EXPECT_EQ(820000u, source.bits_per_second());
963 TestVideoSender(&sender, 9961, 1000, 500, 1025000);
964
965 // Make sure feedback has no effect on a regular video sender.
966 RembFeedback* feedback = new RembFeedback(0, 0, 0, 512000, RTCPReportBlock());
967 Packets packets;
968 packets.push_back(feedback);
969 sender.RunFor(0, &packets);
970 EXPECT_EQ(820000u, source.bits_per_second());
971 TestVideoSender(&sender, 10000, 1000, 500, 1025000);
972 }
973
TEST(BweTestFramework_AdaptiveVideoSenderTest,FeedbackChangesBitrate)974 TEST(BweTestFramework_AdaptiveVideoSenderTest, FeedbackChangesBitrate) {
975 AdaptiveVideoSource source(0, 25.0f, 820, 0x1234, 0);
976 VideoSender sender(NULL, &source, kRembEstimator);
977 EXPECT_EQ(820000u, source.bits_per_second());
978 TestVideoSender(&sender, 9961, 1000, 500, 1025000);
979
980 // Make sure we can reduce the bitrate.
981 RembFeedback* feedback = new RembFeedback(0, 0, 0, 512000, RTCPReportBlock());
982 Packets packets;
983 packets.push_back(feedback);
984 sender.RunFor(0, &packets);
985 EXPECT_EQ(512000u, source.bits_per_second());
986 TestVideoSender(&sender, 10000, 750, 160, 640000);
987
988 // Increase the bitrate to the initial bitrate and verify that the output is
989 // the same.
990 feedback = new RembFeedback(0, 0, 0, 820000, RTCPReportBlock());
991 packets.push_back(feedback);
992 sender.RunFor(10000, &packets);
993 EXPECT_EQ(820000u, source.bits_per_second());
994
995 for (auto* packet : packets)
996 delete packet;
997 }
998
TEST(BweTestFramework_AdaptiveVideoSenderTest,Paced_FeedbackChangesBitrate)999 TEST(BweTestFramework_AdaptiveVideoSenderTest, Paced_FeedbackChangesBitrate) {
1000 AdaptiveVideoSource source(0, 25.0f, 820, 0x1234, 0);
1001 PacedVideoSender sender(NULL, &source, kRembEstimator);
1002 EXPECT_EQ(820000u, source.bits_per_second());
1003 TestVideoSender(&sender, 9998, 1000, 500, 1025000);
1004
1005 // Make sure we can reduce the bitrate.
1006 RembFeedback* feedback = new RembFeedback(0, 1, 0, 512000, RTCPReportBlock());
1007 Packets packets;
1008 packets.push_back(feedback);
1009 sender.RunFor(10000, &packets);
1010 ASSERT_EQ(512000u, source.bits_per_second());
1011 TestVideoSender(&sender, 10000, 750, 160, 640000);
1012
1013 // Increase the bitrate to the initial bitrate and verify that the output is
1014 // the same.
1015 feedback = new RembFeedback(0, 0, 0, 820000, RTCPReportBlock());
1016 packets.push_back(feedback);
1017 sender.RunFor(10000, &packets);
1018 EXPECT_EQ(820000u, source.bits_per_second());
1019
1020 for (auto* packet : packets)
1021 delete packet;
1022 }
1023 } // namespace bwe
1024 } // namespace testing
1025 } // namespace webrtc
1026