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philipelc707ab72016-04-01 02:01:54 -07001/*
2 * Copyright (c) 2016 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 <cstring>
philipel02447bc2016-05-13 06:01:03 -070012#include <map>
13#include <set>
philipela1059872016-05-09 11:41:48 +020014#include <utility>
philipelc707ab72016-04-01 02:01:54 -070015
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020016#include "common_video/h264/h264_common.h"
17#include "modules/video_coding/frame_object.h"
18#include "modules/video_coding/packet_buffer.h"
19#include "rtc_base/random.h"
20#include "system_wrappers/include/clock.h"
Rasmus Brandtedf4ff72017-10-24 10:07:48 +020021#include "test/field_trial.h"
Mirko Bonadei92ea95e2017-09-15 06:47:31 +020022#include "test/gtest.h"
philipelc707ab72016-04-01 02:01:54 -070023
24namespace webrtc {
25namespace video_coding {
26
27class TestPacketBuffer : public ::testing::Test,
philipel17deeb42016-08-11 15:09:26 +020028 public OnReceivedFrameCallback {
philipelc707ab72016-04-01 02:01:54 -070029 protected:
Rasmus Brandt88f080a2017-11-02 14:28:06 +010030 TestPacketBuffer() : TestPacketBuffer("") {}
31 explicit TestPacketBuffer(std::string field_trials)
32 : scoped_field_trials_(field_trials),
33 rand_(0x7732213),
philipelb4d31082016-07-11 08:46:29 -070034 clock_(new SimulatedClock(0)),
philipel17deeb42016-08-11 15:09:26 +020035 packet_buffer_(
36 PacketBuffer::Create(clock_.get(), kStartSize, kMaxSize, this)) {}
philipelc707ab72016-04-01 02:01:54 -070037
philipel17deeb42016-08-11 15:09:26 +020038 uint16_t Rand() { return rand_.Rand<uint16_t>(); }
philipelc707ab72016-04-01 02:01:54 -070039
philipel17deeb42016-08-11 15:09:26 +020040 void OnReceivedFrame(std::unique_ptr<RtpFrameObject> frame) override {
41 uint16_t first_seq_num = frame->first_seq_num();
42 if (frames_from_callback_.find(first_seq_num) !=
43 frames_from_callback_.end()) {
44 ADD_FAILURE() << "Already received frame with first sequence number "
45 << first_seq_num << ".";
philipelf4139332016-04-20 10:26:34 +020046 return;
47 }
philipel2c9f9f22017-06-13 02:47:28 -070048
philipelf4139332016-04-20 10:26:34 +020049 frames_from_callback_.insert(
philipel17deeb42016-08-11 15:09:26 +020050 std::make_pair(frame->first_seq_num(), std::move(frame)));
philipelc707ab72016-04-01 02:01:54 -070051 }
52
philipel17deeb42016-08-11 15:09:26 +020053 enum IsKeyFrame { kKeyFrame, kDeltaFrame };
54 enum IsFirst { kFirst, kNotFirst };
55 enum IsLast { kLast, kNotLast };
philipelc707ab72016-04-01 02:01:54 -070056
Ilya Nikolaevskiyd397a0d2018-02-21 15:57:09 +010057 bool Insert(uint16_t seq_num, // packet sequence number
58 IsKeyFrame keyframe, // is keyframe
59 IsFirst first, // is first packet of frame
60 IsLast last, // is last packet of frame
61 int data_size = 0, // size of data
62 uint8_t* data = nullptr, // data pointer
63 uint32_t timestamp = 123u) { // rtp timestamp
philipelf4139332016-04-20 10:26:34 +020064 VCMPacket packet;
65 packet.codec = kVideoCodecGeneric;
Ilya Nikolaevskiyd397a0d2018-02-21 15:57:09 +010066 packet.timestamp = timestamp;
philipelf4139332016-04-20 10:26:34 +020067 packet.seqNum = seq_num;
philipel3184f8e2017-05-18 08:08:53 -070068 packet.frameType =
69 keyframe == kKeyFrame ? kVideoFrameKey : kVideoFrameDelta;
johan0d1b2b62017-01-10 04:21:35 -080070 packet.is_first_packet_in_frame = first == kFirst;
philipelef615ea2018-09-13 11:07:48 +020071 packet.is_last_packet_in_frame = last == kLast;
philipelf4139332016-04-20 10:26:34 +020072 packet.sizeBytes = data_size;
73 packet.dataPtr = data;
74
philipel759e0b72016-11-30 01:32:05 -080075 return packet_buffer_->InsertPacket(&packet);
philipelf4139332016-04-20 10:26:34 +020076 }
77
philipel17deeb42016-08-11 15:09:26 +020078 void CheckFrame(uint16_t first_seq_num) {
79 auto frame_it = frames_from_callback_.find(first_seq_num);
80 ASSERT_FALSE(frame_it == frames_from_callback_.end())
81 << "Could not find frame with first sequence number " << first_seq_num
82 << ".";
philipelf4139332016-04-20 10:26:34 +020083 }
84
philipel227f8b92017-08-04 06:39:31 -070085 static constexpr int kStartSize = 16;
86 static constexpr int kMaxSize = 64;
philipelc707ab72016-04-01 02:01:54 -070087
Rasmus Brandt88f080a2017-11-02 14:28:06 +010088 const test::ScopedFieldTrials scoped_field_trials_;
89
philipelc707ab72016-04-01 02:01:54 -070090 Random rand_;
philipel3184f8e2017-05-18 08:08:53 -070091 std::unique_ptr<SimulatedClock> clock_;
philipel17deeb42016-08-11 15:09:26 +020092 rtc::scoped_refptr<PacketBuffer> packet_buffer_;
93 std::map<uint16_t, std::unique_ptr<RtpFrameObject>> frames_from_callback_;
philipelc707ab72016-04-01 02:01:54 -070094};
95
96TEST_F(TestPacketBuffer, InsertOnePacket) {
philipelaee3e0e2016-11-01 11:45:34 +010097 const uint16_t seq_num = Rand();
98 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kLast));
philipelc707ab72016-04-01 02:01:54 -070099}
100
101TEST_F(TestPacketBuffer, InsertMultiplePackets) {
philipelaee3e0e2016-11-01 11:45:34 +0100102 const uint16_t seq_num = Rand();
103 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kLast));
104 EXPECT_TRUE(Insert(seq_num + 1, kKeyFrame, kFirst, kLast));
105 EXPECT_TRUE(Insert(seq_num + 2, kKeyFrame, kFirst, kLast));
106 EXPECT_TRUE(Insert(seq_num + 3, kKeyFrame, kFirst, kLast));
philipelc707ab72016-04-01 02:01:54 -0700107}
108
109TEST_F(TestPacketBuffer, InsertDuplicatePacket) {
philipelaee3e0e2016-11-01 11:45:34 +0100110 const uint16_t seq_num = Rand();
111 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kLast));
112 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kLast));
113}
114
Artem Titarenko03c592a2018-09-24 11:22:17 +0200115#if defined(WEBRTC_ANDROID)
116// Fails on android after clang update
117// TODO(crbug.com/887464): Reenable this
118#define MAYBE_SeqNumWrapOneFrame DISABLED_SeqNumWrapOneFrame
119#else
120#define MAYBE_SeqNumWrapOneFrame SeqNumWrapOneFrame
121#endif
122TEST_F(TestPacketBuffer, MAYBE_SeqNumWrapOneFrame) {
philipel2c2f34c2017-01-03 05:55:34 -0800123 EXPECT_TRUE(Insert(0xFFFF, kKeyFrame, kFirst, kNotLast));
124 EXPECT_TRUE(Insert(0x0, kKeyFrame, kNotFirst, kLast));
125
126 CheckFrame(0xFFFF);
127}
128
129TEST_F(TestPacketBuffer, SeqNumWrapTwoFrames) {
philipelaee3e0e2016-11-01 11:45:34 +0100130 EXPECT_TRUE(Insert(0xFFFF, kKeyFrame, kFirst, kLast));
131 EXPECT_TRUE(Insert(0x0, kKeyFrame, kFirst, kLast));
132
133 CheckFrame(0xFFFF);
philipel2c2f34c2017-01-03 05:55:34 -0800134 CheckFrame(0x0);
philipelaee3e0e2016-11-01 11:45:34 +0100135}
136
137TEST_F(TestPacketBuffer, InsertOldPackets) {
138 const uint16_t seq_num = Rand();
139
140 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kNotLast));
141 EXPECT_TRUE(Insert(seq_num + 2, kDeltaFrame, kFirst, kLast));
142 EXPECT_TRUE(Insert(seq_num + 1, kKeyFrame, kNotFirst, kLast));
143 ASSERT_EQ(2UL, frames_from_callback_.size());
144
145 frames_from_callback_.erase(seq_num + 2);
146 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kNotLast));
147 ASSERT_EQ(1UL, frames_from_callback_.size());
148
149 frames_from_callback_.erase(frames_from_callback_.find(seq_num));
150 ASSERT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kNotLast));
151 EXPECT_TRUE(Insert(seq_num + 2, kDeltaFrame, kFirst, kLast));
152
153 packet_buffer_->ClearTo(seq_num + 2);
154 EXPECT_FALSE(Insert(seq_num + 2, kDeltaFrame, kFirst, kLast));
155 EXPECT_TRUE(Insert(seq_num + 3, kDeltaFrame, kFirst, kLast));
156 ASSERT_EQ(2UL, frames_from_callback_.size());
philipelc707ab72016-04-01 02:01:54 -0700157}
158
philipel5ceaaae2016-05-24 10:20:47 +0200159TEST_F(TestPacketBuffer, NackCount) {
philipelaee3e0e2016-11-01 11:45:34 +0100160 const uint16_t seq_num = Rand();
philipel5ceaaae2016-05-24 10:20:47 +0200161
162 VCMPacket packet;
163 packet.codec = kVideoCodecGeneric;
164 packet.seqNum = seq_num;
165 packet.frameType = kVideoFrameKey;
johan0d1b2b62017-01-10 04:21:35 -0800166 packet.is_first_packet_in_frame = true;
philipelef615ea2018-09-13 11:07:48 +0200167 packet.is_last_packet_in_frame = false;
philipel5ceaaae2016-05-24 10:20:47 +0200168 packet.timesNacked = 0;
169
philipel759e0b72016-11-30 01:32:05 -0800170 packet_buffer_->InsertPacket(&packet);
philipel5ceaaae2016-05-24 10:20:47 +0200171
172 packet.seqNum++;
johan0d1b2b62017-01-10 04:21:35 -0800173 packet.is_first_packet_in_frame = false;
philipel5ceaaae2016-05-24 10:20:47 +0200174 packet.timesNacked = 1;
philipel759e0b72016-11-30 01:32:05 -0800175 packet_buffer_->InsertPacket(&packet);
philipel5ceaaae2016-05-24 10:20:47 +0200176
177 packet.seqNum++;
178 packet.timesNacked = 3;
philipel759e0b72016-11-30 01:32:05 -0800179 packet_buffer_->InsertPacket(&packet);
philipel5ceaaae2016-05-24 10:20:47 +0200180
181 packet.seqNum++;
philipelef615ea2018-09-13 11:07:48 +0200182 packet.is_last_packet_in_frame = true;
philipel5ceaaae2016-05-24 10:20:47 +0200183 packet.timesNacked = 1;
philipel759e0b72016-11-30 01:32:05 -0800184 packet_buffer_->InsertPacket(&packet);
philipel5ceaaae2016-05-24 10:20:47 +0200185
philipel5ceaaae2016-05-24 10:20:47 +0200186 ASSERT_EQ(1UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200187 RtpFrameObject* frame = frames_from_callback_.begin()->second.get();
188 EXPECT_EQ(3, frame->times_nacked());
philipel5ceaaae2016-05-24 10:20:47 +0200189}
190
191TEST_F(TestPacketBuffer, FrameSize) {
philipelaee3e0e2016-11-01 11:45:34 +0100192 const uint16_t seq_num = Rand();
philipel41b8ca02016-11-07 15:42:24 +0100193 uint8_t* data1 = new uint8_t[5]();
194 uint8_t* data2 = new uint8_t[5]();
195 uint8_t* data3 = new uint8_t[5]();
196 uint8_t* data4 = new uint8_t[5]();
philipel5ceaaae2016-05-24 10:20:47 +0200197
philipel41b8ca02016-11-07 15:42:24 +0100198 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kNotLast, 5, data1));
199 EXPECT_TRUE(Insert(seq_num + 1, kKeyFrame, kNotFirst, kNotLast, 5, data2));
200 EXPECT_TRUE(Insert(seq_num + 2, kKeyFrame, kNotFirst, kNotLast, 5, data3));
201 EXPECT_TRUE(Insert(seq_num + 3, kKeyFrame, kNotFirst, kLast, 5, data4));
philipel5ceaaae2016-05-24 10:20:47 +0200202
203 ASSERT_EQ(1UL, frames_from_callback_.size());
nisse37abf532016-10-28 00:37:29 -0700204 EXPECT_EQ(20UL, frames_from_callback_.begin()->second->size());
philipel5ceaaae2016-05-24 10:20:47 +0200205}
206
Ilya Nikolaevskiyd397a0d2018-02-21 15:57:09 +0100207TEST_F(TestPacketBuffer, CountsUniqueFrames) {
208 const uint16_t seq_num = Rand();
209
210 ASSERT_EQ(0, packet_buffer_->GetUniqueFramesSeen());
211
212 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kNotLast, 0, nullptr, 100));
213 ASSERT_EQ(1, packet_buffer_->GetUniqueFramesSeen());
214 // Still the same frame.
215 EXPECT_TRUE(
216 Insert(seq_num + 1, kKeyFrame, kNotFirst, kLast, 0, nullptr, 100));
217 ASSERT_EQ(1, packet_buffer_->GetUniqueFramesSeen());
218
219 // Second frame.
220 EXPECT_TRUE(
221 Insert(seq_num + 2, kKeyFrame, kFirst, kNotLast, 0, nullptr, 200));
222 ASSERT_EQ(2, packet_buffer_->GetUniqueFramesSeen());
223 EXPECT_TRUE(
224 Insert(seq_num + 3, kKeyFrame, kNotFirst, kLast, 0, nullptr, 200));
225 ASSERT_EQ(2, packet_buffer_->GetUniqueFramesSeen());
226
227 // Old packet.
228 EXPECT_TRUE(
229 Insert(seq_num + 1, kKeyFrame, kNotFirst, kLast, 0, nullptr, 100));
230 ASSERT_EQ(2, packet_buffer_->GetUniqueFramesSeen());
231
232 // Missing middle packet.
233 EXPECT_TRUE(
234 Insert(seq_num + 4, kKeyFrame, kFirst, kNotLast, 0, nullptr, 300));
235 EXPECT_TRUE(
236 Insert(seq_num + 6, kKeyFrame, kNotFirst, kLast, 0, nullptr, 300));
237 ASSERT_EQ(3, packet_buffer_->GetUniqueFramesSeen());
238}
239
240TEST_F(TestPacketBuffer, HasHistoryOfUniqueFrames) {
241 const int kNumFrames = 1500;
242 const int kRequiredHistoryLength = 1000;
243 const uint16_t seq_num = Rand();
244 const uint32_t timestamp = 0xFFFFFFF0; // Large enough to cause wrap-around.
245
246 for (int i = 0; i < kNumFrames; ++i) {
247 EXPECT_TRUE(Insert(seq_num + i, kKeyFrame, kFirst, kNotLast, 0, nullptr,
248 timestamp + 10 * i));
249 }
250 ASSERT_EQ(kNumFrames, packet_buffer_->GetUniqueFramesSeen());
251
252 // Old packets within history should not affect number of seen unique frames.
253 for (int i = kNumFrames - kRequiredHistoryLength; i < kNumFrames; ++i) {
254 EXPECT_TRUE(Insert(seq_num + i, kKeyFrame, kFirst, kNotLast, 0, nullptr,
255 timestamp + 10 * i));
256 }
257 ASSERT_EQ(kNumFrames, packet_buffer_->GetUniqueFramesSeen());
258
259 // Very old packets should be treated as unique.
260 EXPECT_TRUE(
261 Insert(seq_num, kKeyFrame, kFirst, kNotLast, 0, nullptr, timestamp));
262 ASSERT_EQ(kNumFrames + 1, packet_buffer_->GetUniqueFramesSeen());
263}
264
philipelc707ab72016-04-01 02:01:54 -0700265TEST_F(TestPacketBuffer, ExpandBuffer) {
philipelaee3e0e2016-11-01 11:45:34 +0100266 const uint16_t seq_num = Rand();
philipelc707ab72016-04-01 02:01:54 -0700267
268 for (int i = 0; i < kStartSize + 1; ++i) {
philipelaee3e0e2016-11-01 11:45:34 +0100269 EXPECT_TRUE(Insert(seq_num + i, kKeyFrame, kFirst, kLast));
philipelc707ab72016-04-01 02:01:54 -0700270 }
271}
272
philipelaee3e0e2016-11-01 11:45:34 +0100273TEST_F(TestPacketBuffer, SingleFrameExpandsBuffer) {
274 const uint16_t seq_num = Rand();
275
276 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kNotLast));
277 for (int i = 1; i < kStartSize; ++i)
278 EXPECT_TRUE(Insert(seq_num + i, kKeyFrame, kNotFirst, kNotLast));
279 EXPECT_TRUE(Insert(seq_num + kStartSize, kKeyFrame, kNotFirst, kLast));
280
281 ASSERT_EQ(1UL, frames_from_callback_.size());
282 CheckFrame(seq_num);
283}
284
philipelc707ab72016-04-01 02:01:54 -0700285TEST_F(TestPacketBuffer, ExpandBufferOverflow) {
philipelaee3e0e2016-11-01 11:45:34 +0100286 const uint16_t seq_num = Rand();
philipelc707ab72016-04-01 02:01:54 -0700287
philipelaee3e0e2016-11-01 11:45:34 +0100288 for (int i = 0; i < kMaxSize; ++i)
289 EXPECT_TRUE(Insert(seq_num + i, kKeyFrame, kFirst, kLast));
philipelc703dc22017-03-23 06:50:37 -0700290 EXPECT_TRUE(Insert(seq_num + kMaxSize + 1, kKeyFrame, kFirst, kLast));
philipelc707ab72016-04-01 02:01:54 -0700291}
292
philipel17deeb42016-08-11 15:09:26 +0200293TEST_F(TestPacketBuffer, OnePacketOneFrame) {
philipelaee3e0e2016-11-01 11:45:34 +0100294 const uint16_t seq_num = Rand();
295 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kLast));
philipelf4139332016-04-20 10:26:34 +0200296 ASSERT_EQ(1UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200297 CheckFrame(seq_num);
philipelc707ab72016-04-01 02:01:54 -0700298}
299
philipel17deeb42016-08-11 15:09:26 +0200300TEST_F(TestPacketBuffer, TwoPacketsTwoFrames) {
philipelaee3e0e2016-11-01 11:45:34 +0100301 const uint16_t seq_num = Rand();
philipelf4139332016-04-20 10:26:34 +0200302
philipelaee3e0e2016-11-01 11:45:34 +0100303 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kLast));
304 EXPECT_TRUE(Insert(seq_num + 1, kKeyFrame, kFirst, kLast));
philipelf4139332016-04-20 10:26:34 +0200305
philipelc707ab72016-04-01 02:01:54 -0700306 EXPECT_EQ(2UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200307 CheckFrame(seq_num);
308 CheckFrame(seq_num + 1);
philipelc707ab72016-04-01 02:01:54 -0700309}
310
philipel17deeb42016-08-11 15:09:26 +0200311TEST_F(TestPacketBuffer, TwoPacketsOneFrames) {
philipelaee3e0e2016-11-01 11:45:34 +0100312 const uint16_t seq_num = Rand();
philipelf4139332016-04-20 10:26:34 +0200313
philipelaee3e0e2016-11-01 11:45:34 +0100314 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kNotLast));
315 EXPECT_TRUE(Insert(seq_num + 1, kKeyFrame, kNotFirst, kLast));
philipelf4139332016-04-20 10:26:34 +0200316
philipelc707ab72016-04-01 02:01:54 -0700317 EXPECT_EQ(1UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200318 CheckFrame(seq_num);
philipelc707ab72016-04-01 02:01:54 -0700319}
320
philipel17deeb42016-08-11 15:09:26 +0200321TEST_F(TestPacketBuffer, ThreePacketReorderingOneFrame) {
philipelaee3e0e2016-11-01 11:45:34 +0100322 const uint16_t seq_num = Rand();
philipelc707ab72016-04-01 02:01:54 -0700323
philipelaee3e0e2016-11-01 11:45:34 +0100324 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kNotLast));
325 EXPECT_TRUE(Insert(seq_num + 2, kKeyFrame, kNotFirst, kLast));
326 EXPECT_TRUE(Insert(seq_num + 1, kKeyFrame, kNotFirst, kNotLast));
philipelf4139332016-04-20 10:26:34 +0200327
philipelc707ab72016-04-01 02:01:54 -0700328 EXPECT_EQ(1UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200329 CheckFrame(seq_num);
philipelc707ab72016-04-01 02:01:54 -0700330}
331
philipel17deeb42016-08-11 15:09:26 +0200332TEST_F(TestPacketBuffer, Frames) {
philipelaee3e0e2016-11-01 11:45:34 +0100333 const uint16_t seq_num = Rand();
philipelf4139332016-04-20 10:26:34 +0200334
philipelaee3e0e2016-11-01 11:45:34 +0100335 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kLast));
336 EXPECT_TRUE(Insert(seq_num + 1, kDeltaFrame, kFirst, kLast));
337 EXPECT_TRUE(Insert(seq_num + 2, kDeltaFrame, kFirst, kLast));
338 EXPECT_TRUE(Insert(seq_num + 3, kDeltaFrame, kFirst, kLast));
philipelf4139332016-04-20 10:26:34 +0200339
340 ASSERT_EQ(4UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200341 CheckFrame(seq_num);
342 CheckFrame(seq_num + 1);
343 CheckFrame(seq_num + 2);
344 CheckFrame(seq_num + 3);
philipelf4139332016-04-20 10:26:34 +0200345}
346
philipelaee3e0e2016-11-01 11:45:34 +0100347TEST_F(TestPacketBuffer, ClearSinglePacket) {
348 const uint16_t seq_num = Rand();
philipelf4139332016-04-20 10:26:34 +0200349
philipelaee3e0e2016-11-01 11:45:34 +0100350 for (int i = 0; i < kMaxSize; ++i)
351 EXPECT_TRUE(Insert(seq_num + i, kDeltaFrame, kFirst, kLast));
352
353 packet_buffer_->ClearTo(seq_num);
354 EXPECT_TRUE(Insert(seq_num + kMaxSize, kDeltaFrame, kFirst, kLast));
355}
356
philipelc5fb4682017-08-02 04:28:57 -0700357TEST_F(TestPacketBuffer, ClearFullBuffer) {
358 for (int i = 0; i < kMaxSize; ++i)
359 EXPECT_TRUE(Insert(i, kDeltaFrame, kFirst, kLast));
360
361 packet_buffer_->ClearTo(kMaxSize - 1);
362
363 for (int i = kMaxSize; i < 2 * kMaxSize; ++i)
364 EXPECT_TRUE(Insert(i, kDeltaFrame, kFirst, kLast));
365}
366
367TEST_F(TestPacketBuffer, DontClearNewerPacket) {
368 EXPECT_TRUE(Insert(0, kKeyFrame, kFirst, kLast));
369 packet_buffer_->ClearTo(0);
370 EXPECT_TRUE(Insert(2 * kStartSize, kKeyFrame, kFirst, kLast));
371 EXPECT_TRUE(Insert(3 * kStartSize + 1, kKeyFrame, kFirst, kNotLast));
372 packet_buffer_->ClearTo(2 * kStartSize);
373 EXPECT_TRUE(Insert(3 * kStartSize + 2, kKeyFrame, kNotFirst, kLast));
374
375 ASSERT_EQ(3UL, frames_from_callback_.size());
376 CheckFrame(0);
377 CheckFrame(2 * kStartSize);
378 CheckFrame(3 * kStartSize + 1);
379}
380
philipelaee3e0e2016-11-01 11:45:34 +0100381TEST_F(TestPacketBuffer, OneIncompleteFrame) {
382 const uint16_t seq_num = Rand();
383
384 EXPECT_TRUE(Insert(seq_num, kDeltaFrame, kFirst, kNotLast));
385 EXPECT_TRUE(Insert(seq_num + 1, kDeltaFrame, kNotFirst, kLast));
386 EXPECT_TRUE(Insert(seq_num - 1, kDeltaFrame, kNotFirst, kLast));
387
388 ASSERT_EQ(1UL, frames_from_callback_.size());
389 CheckFrame(seq_num);
390}
391
392TEST_F(TestPacketBuffer, TwoIncompleteFramesFullBuffer) {
393 const uint16_t seq_num = Rand();
394
395 for (int i = 1; i < kMaxSize - 1; ++i)
396 EXPECT_TRUE(Insert(seq_num + i, kDeltaFrame, kNotFirst, kNotLast));
397 EXPECT_TRUE(Insert(seq_num, kDeltaFrame, kFirst, kNotLast));
398 EXPECT_TRUE(Insert(seq_num - 1, kDeltaFrame, kNotFirst, kLast));
399
400 ASSERT_EQ(0UL, frames_from_callback_.size());
401}
402
403TEST_F(TestPacketBuffer, FramesReordered) {
404 const uint16_t seq_num = Rand();
405
406 EXPECT_TRUE(Insert(seq_num + 1, kDeltaFrame, kFirst, kLast));
407 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kLast));
408 EXPECT_TRUE(Insert(seq_num + 3, kDeltaFrame, kFirst, kLast));
409 EXPECT_TRUE(Insert(seq_num + 2, kDeltaFrame, kFirst, kLast));
philipelf4139332016-04-20 10:26:34 +0200410
411 ASSERT_EQ(4UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200412 CheckFrame(seq_num);
413 CheckFrame(seq_num + 1);
414 CheckFrame(seq_num + 2);
415 CheckFrame(seq_num + 3);
philipelf4139332016-04-20 10:26:34 +0200416}
417
philipel36928452016-11-07 10:42:36 +0100418TEST_F(TestPacketBuffer, GetBitstream) {
philipelc707ab72016-04-01 02:01:54 -0700419 // "many bitstream, such data" with null termination.
philipel41b8ca02016-11-07 15:42:24 +0100420 uint8_t many_data[] = {0x6d, 0x61, 0x6e, 0x79, 0x20};
421 uint8_t bitstream_data[] = {0x62, 0x69, 0x74, 0x73, 0x74, 0x72,
422 0x65, 0x61, 0x6d, 0x2c, 0x20};
423 uint8_t such_data[] = {0x73, 0x75, 0x63, 0x68, 0x20};
424 uint8_t data_data[] = {0x64, 0x61, 0x74, 0x61, 0x0};
425
426 uint8_t* many = new uint8_t[sizeof(many_data)];
427 uint8_t* bitstream = new uint8_t[sizeof(bitstream_data)];
428 uint8_t* such = new uint8_t[sizeof(such_data)];
429 uint8_t* data = new uint8_t[sizeof(data_data)];
430
431 memcpy(many, many_data, sizeof(many_data));
432 memcpy(bitstream, bitstream_data, sizeof(bitstream_data));
433 memcpy(such, such_data, sizeof(such_data));
434 memcpy(data, data_data, sizeof(data_data));
435
436 uint8_t result[sizeof(many_data) + sizeof(bitstream_data) +
437 sizeof(such_data) + sizeof(data_data)];
philipelc707ab72016-04-01 02:01:54 -0700438
philipelaee3e0e2016-11-01 11:45:34 +0100439 const uint16_t seq_num = Rand();
philipelc707ab72016-04-01 02:01:54 -0700440
philipelaee3e0e2016-11-01 11:45:34 +0100441 EXPECT_TRUE(
philipel41b8ca02016-11-07 15:42:24 +0100442 Insert(seq_num, kKeyFrame, kFirst, kNotLast, sizeof(many_data), many));
443 EXPECT_TRUE(Insert(seq_num + 1, kDeltaFrame, kNotFirst, kNotLast,
444 sizeof(bitstream_data), bitstream));
445 EXPECT_TRUE(Insert(seq_num + 2, kDeltaFrame, kNotFirst, kNotLast,
446 sizeof(such_data), such));
447 EXPECT_TRUE(Insert(seq_num + 3, kDeltaFrame, kNotFirst, kLast,
448 sizeof(data_data), data));
philipelf4139332016-04-20 10:26:34 +0200449
450 ASSERT_EQ(1UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200451 CheckFrame(seq_num);
philipel227f8b92017-08-04 06:39:31 -0700452 EXPECT_EQ(frames_from_callback_[seq_num]->size(), sizeof(result));
philipel17deeb42016-08-11 15:09:26 +0200453 EXPECT_TRUE(frames_from_callback_[seq_num]->GetBitstream(result));
philipel9b2ce6b2016-07-05 05:04:46 -0700454 EXPECT_EQ(memcmp(result, "many bitstream, such data", sizeof(result)), 0);
philipelc707ab72016-04-01 02:01:54 -0700455}
456
philipel227f8b92017-08-04 06:39:31 -0700457TEST_F(TestPacketBuffer, GetBitstreamOneFrameOnePacket) {
458 uint8_t bitstream_data[] = "All the bitstream data for this frame!";
459 uint8_t result[sizeof(bitstream_data)];
460 uint8_t* data = new uint8_t[sizeof(bitstream_data)];
461 memcpy(data, bitstream_data, sizeof(bitstream_data));
462
463 EXPECT_TRUE(
464 Insert(0, kKeyFrame, kFirst, kLast, sizeof(bitstream_data), data));
465
466 ASSERT_EQ(1UL, frames_from_callback_.size());
467 CheckFrame(0);
468 EXPECT_EQ(frames_from_callback_[0]->size(), sizeof(bitstream_data));
469 EXPECT_TRUE(frames_from_callback_[0]->GetBitstream(result));
470 EXPECT_EQ(memcmp(result, data, sizeof(bitstream_data)), 0);
471}
472
473TEST_F(TestPacketBuffer, GetBitstreamOneFrameFullBuffer) {
474 uint8_t* data_arr[kStartSize];
475 uint8_t expected[kStartSize];
476 uint8_t result[kStartSize];
477
478 for (uint8_t i = 0; i < kStartSize; ++i) {
479 data_arr[i] = new uint8_t[1];
480 data_arr[i][0] = i;
481 expected[i] = i;
482 }
483
484 EXPECT_TRUE(Insert(0, kKeyFrame, kFirst, kNotLast, 1, data_arr[0]));
485 for (uint8_t i = 1; i < kStartSize - 1; ++i)
486 EXPECT_TRUE(Insert(i, kKeyFrame, kNotFirst, kNotLast, 1, data_arr[i]));
487 EXPECT_TRUE(Insert(kStartSize - 1, kKeyFrame, kNotFirst, kLast, 1,
488 data_arr[kStartSize - 1]));
489
490 ASSERT_EQ(1UL, frames_from_callback_.size());
491 CheckFrame(0);
492 EXPECT_EQ(frames_from_callback_[0]->size(), static_cast<size_t>(kStartSize));
493 EXPECT_TRUE(frames_from_callback_[0]->GetBitstream(result));
494 EXPECT_EQ(memcmp(result, expected, kStartSize), 0);
495}
496
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100497// If |sps_pps_idr_is_keyframe| is true, we require keyframes to contain
498// SPS/PPS/IDR and the keyframes we create as part of the test do contain
499// SPS/PPS/IDR. If |sps_pps_idr_is_keyframe| is false, we only require and
500// create keyframes containing only IDR.
501class TestPacketBufferH264 : public TestPacketBuffer {
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200502 protected:
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200503 explicit TestPacketBufferH264(bool sps_pps_idr_is_keyframe)
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100504 : TestPacketBuffer(sps_pps_idr_is_keyframe
505 ? "WebRTC-SpsPpsIdrIsH264Keyframe/Enabled/"
506 : ""),
507 sps_pps_idr_is_keyframe_(sps_pps_idr_is_keyframe) {}
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200508
509 bool InsertH264(uint16_t seq_num, // packet sequence number
510 IsKeyFrame keyframe, // is keyframe
511 IsFirst first, // is first packet of frame
512 IsLast last, // is last packet of frame
513 uint32_t timestamp, // rtp timestamp
514 int data_size = 0, // size of data
515 uint8_t* data = nullptr) { // data pointer
516 VCMPacket packet;
517 packet.codec = kVideoCodecH264;
philipel7d745e52018-08-02 14:03:53 +0200518 auto& h264_header =
519 packet.video_header.video_type_header.emplace<RTPVideoHeaderH264>();
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200520 packet.seqNum = seq_num;
521 packet.timestamp = timestamp;
522 if (keyframe == kKeyFrame) {
523 if (sps_pps_idr_is_keyframe_) {
philipel7d745e52018-08-02 14:03:53 +0200524 h264_header.nalus[0].type = H264::NaluType::kSps;
525 h264_header.nalus[1].type = H264::NaluType::kPps;
526 h264_header.nalus[2].type = H264::NaluType::kIdr;
527 h264_header.nalus_length = 3;
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200528 } else {
philipel7d745e52018-08-02 14:03:53 +0200529 h264_header.nalus[0].type = H264::NaluType::kIdr;
530 h264_header.nalus_length = 1;
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200531 }
532 }
533 packet.is_first_packet_in_frame = first == kFirst;
philipelef615ea2018-09-13 11:07:48 +0200534 packet.is_last_packet_in_frame = last == kLast;
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200535 packet.sizeBytes = data_size;
536 packet.dataPtr = data;
537
538 return packet_buffer_->InsertPacket(&packet);
539 }
540
541 const bool sps_pps_idr_is_keyframe_;
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100542};
543
544// This fixture is used to test the general behaviour of the packet buffer
545// in both configurations.
546class TestPacketBufferH264Parameterized
547 : public ::testing::WithParamInterface<bool>,
548 public TestPacketBufferH264 {
549 protected:
550 TestPacketBufferH264Parameterized() : TestPacketBufferH264(GetParam()) {}
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200551};
552
553INSTANTIATE_TEST_CASE_P(SpsPpsIdrIsKeyframe,
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100554 TestPacketBufferH264Parameterized,
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200555 ::testing::Values(false, true));
556
philipelbc5a4082017-12-06 10:41:08 +0100557TEST_P(TestPacketBufferH264Parameterized, DontRemoveMissingPacketOnClearTo) {
558 EXPECT_TRUE(InsertH264(0, kKeyFrame, kFirst, kLast, 0));
559 EXPECT_TRUE(InsertH264(2, kDeltaFrame, kFirst, kNotLast, 2));
560 packet_buffer_->ClearTo(0);
561 EXPECT_TRUE(InsertH264(3, kDeltaFrame, kNotFirst, kLast, 2));
562
563 ASSERT_EQ(1UL, frames_from_callback_.size());
564 CheckFrame(0);
565}
566
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100567TEST_P(TestPacketBufferH264Parameterized, GetBitstreamOneFrameFullBuffer) {
philipel227f8b92017-08-04 06:39:31 -0700568 uint8_t* data_arr[kStartSize];
569 uint8_t expected[kStartSize];
570 uint8_t result[kStartSize];
571
572 for (uint8_t i = 0; i < kStartSize; ++i) {
573 data_arr[i] = new uint8_t[1];
574 data_arr[i][0] = i;
575 expected[i] = i;
576 }
577
578 EXPECT_TRUE(InsertH264(0, kKeyFrame, kFirst, kNotLast, 1, 1, data_arr[0]));
579 for (uint8_t i = 1; i < kStartSize - 1; ++i) {
580 EXPECT_TRUE(
581 InsertH264(i, kKeyFrame, kNotFirst, kNotLast, 1, 1, data_arr[i]));
582 }
583 EXPECT_TRUE(InsertH264(kStartSize - 1, kKeyFrame, kNotFirst, kLast, 1, 1,
584 data_arr[kStartSize - 1]));
585
586 ASSERT_EQ(1UL, frames_from_callback_.size());
587 CheckFrame(0);
588 EXPECT_EQ(frames_from_callback_[0]->size(), static_cast<size_t>(kStartSize));
589 EXPECT_TRUE(frames_from_callback_[0]->GetBitstream(result));
590 EXPECT_EQ(memcmp(result, expected, kStartSize), 0);
591}
592
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100593TEST_P(TestPacketBufferH264Parameterized, GetBitstreamBufferPadding) {
philipel36928452016-11-07 10:42:36 +0100594 uint16_t seq_num = Rand();
philipel41b8ca02016-11-07 15:42:24 +0100595 uint8_t data_data[] = "some plain old data";
596 uint8_t* data = new uint8_t[sizeof(data_data)];
597 memcpy(data, data_data, sizeof(data_data));
philipel36928452016-11-07 10:42:36 +0100598
599 // EncodedImage::kBufferPaddingBytesH264 is unknown at compile time.
philipel41b8ca02016-11-07 15:42:24 +0100600 std::unique_ptr<uint8_t[]> result(
601 new uint8_t[sizeof(data_data) + EncodedImage::kBufferPaddingBytesH264]);
philipel36928452016-11-07 10:42:36 +0100602
603 VCMPacket packet;
philipel7d745e52018-08-02 14:03:53 +0200604 auto& h264_header =
605 packet.video_header.video_type_header.emplace<RTPVideoHeaderH264>();
606 h264_header.nalus_length = 1;
607 h264_header.nalus[0].type = H264::NaluType::kIdr;
608 h264_header.packetization_type = kH264SingleNalu;
philipel36928452016-11-07 10:42:36 +0100609 packet.seqNum = seq_num;
610 packet.codec = kVideoCodecH264;
611 packet.insertStartCode = true;
philipel36928452016-11-07 10:42:36 +0100612 packet.dataPtr = data;
philipel41b8ca02016-11-07 15:42:24 +0100613 packet.sizeBytes = sizeof(data_data);
johan0d1b2b62017-01-10 04:21:35 -0800614 packet.is_first_packet_in_frame = true;
philipelef615ea2018-09-13 11:07:48 +0200615 packet.is_last_packet_in_frame = true;
philipel759e0b72016-11-30 01:32:05 -0800616 packet_buffer_->InsertPacket(&packet);
philipel36928452016-11-07 10:42:36 +0100617
618 ASSERT_EQ(1UL, frames_from_callback_.size());
619 EXPECT_EQ(frames_from_callback_[seq_num]->EncodedImage()._length,
philipel41b8ca02016-11-07 15:42:24 +0100620 sizeof(data_data));
philipel36928452016-11-07 10:42:36 +0100621 EXPECT_EQ(frames_from_callback_[seq_num]->EncodedImage()._size,
philipel41b8ca02016-11-07 15:42:24 +0100622 sizeof(data_data) + EncodedImage::kBufferPaddingBytesH264);
623 EXPECT_TRUE(frames_from_callback_[seq_num]->GetBitstream(result.get()));
624 EXPECT_EQ(memcmp(result.get(), data, sizeof(data_data)), 0);
philipel36928452016-11-07 10:42:36 +0100625}
626
philipelc707ab72016-04-01 02:01:54 -0700627TEST_F(TestPacketBuffer, FreeSlotsOnFrameDestruction) {
philipelaee3e0e2016-11-01 11:45:34 +0100628 const uint16_t seq_num = Rand();
philipelf4139332016-04-20 10:26:34 +0200629
philipelaee3e0e2016-11-01 11:45:34 +0100630 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kNotLast));
631 EXPECT_TRUE(Insert(seq_num + 1, kDeltaFrame, kNotFirst, kNotLast));
632 EXPECT_TRUE(Insert(seq_num + 2, kDeltaFrame, kNotFirst, kLast));
philipelc707ab72016-04-01 02:01:54 -0700633 EXPECT_EQ(1UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200634 CheckFrame(seq_num);
philipelc707ab72016-04-01 02:01:54 -0700635
636 frames_from_callback_.clear();
637
philipel17deeb42016-08-11 15:09:26 +0200638 // Insert frame that fills the whole buffer.
philipelaee3e0e2016-11-01 11:45:34 +0100639 EXPECT_TRUE(Insert(seq_num + 3, kKeyFrame, kFirst, kNotLast));
philipel17deeb42016-08-11 15:09:26 +0200640 for (int i = 0; i < kMaxSize - 2; ++i)
philipelaee3e0e2016-11-01 11:45:34 +0100641 EXPECT_TRUE(Insert(seq_num + i + 4, kDeltaFrame, kNotFirst, kNotLast));
642 EXPECT_TRUE(Insert(seq_num + kMaxSize + 2, kKeyFrame, kNotFirst, kLast));
philipelc707ab72016-04-01 02:01:54 -0700643 EXPECT_EQ(1UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200644 CheckFrame(seq_num + 3);
philipelc707ab72016-04-01 02:01:54 -0700645}
646
philipel02447bc2016-05-13 06:01:03 -0700647TEST_F(TestPacketBuffer, Clear) {
philipelaee3e0e2016-11-01 11:45:34 +0100648 const uint16_t seq_num = Rand();
philipelf4139332016-04-20 10:26:34 +0200649
philipelaee3e0e2016-11-01 11:45:34 +0100650 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kNotLast));
651 EXPECT_TRUE(Insert(seq_num + 1, kDeltaFrame, kNotFirst, kNotLast));
652 EXPECT_TRUE(Insert(seq_num + 2, kDeltaFrame, kNotFirst, kLast));
philipelf4139332016-04-20 10:26:34 +0200653 EXPECT_EQ(1UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200654 CheckFrame(seq_num);
philipelf4139332016-04-20 10:26:34 +0200655
philipel02447bc2016-05-13 06:01:03 -0700656 packet_buffer_->Clear();
philipelf4139332016-04-20 10:26:34 +0200657
philipelaee3e0e2016-11-01 11:45:34 +0100658 EXPECT_TRUE(Insert(seq_num + kStartSize, kKeyFrame, kFirst, kNotLast));
659 EXPECT_TRUE(
660 Insert(seq_num + kStartSize + 1, kDeltaFrame, kNotFirst, kNotLast));
661 EXPECT_TRUE(Insert(seq_num + kStartSize + 2, kDeltaFrame, kNotFirst, kLast));
philipelc707ab72016-04-01 02:01:54 -0700662 EXPECT_EQ(2UL, frames_from_callback_.size());
philipel17deeb42016-08-11 15:09:26 +0200663 CheckFrame(seq_num + kStartSize);
philipelc707ab72016-04-01 02:01:54 -0700664}
665
philipel02447bc2016-05-13 06:01:03 -0700666TEST_F(TestPacketBuffer, InvalidateFrameByClearing) {
philipelaee3e0e2016-11-01 11:45:34 +0100667 const uint16_t seq_num = Rand();
668
669 EXPECT_TRUE(Insert(seq_num, kKeyFrame, kFirst, kLast));
philipelc707ab72016-04-01 02:01:54 -0700670 ASSERT_EQ(1UL, frames_from_callback_.size());
671
philipel02447bc2016-05-13 06:01:03 -0700672 packet_buffer_->Clear();
philipelf4139332016-04-20 10:26:34 +0200673 EXPECT_FALSE(frames_from_callback_.begin()->second->GetBitstream(nullptr));
674}
675
philipel20dce342016-11-28 16:14:57 +0100676TEST_F(TestPacketBuffer, FramesAfterClear) {
677 Insert(9025, kDeltaFrame, kFirst, kLast);
678 Insert(9024, kKeyFrame, kFirst, kLast);
679 packet_buffer_->ClearTo(9025);
680 Insert(9057, kDeltaFrame, kFirst, kLast);
681 Insert(9026, kDeltaFrame, kFirst, kLast);
682
683 CheckFrame(9024);
684 CheckFrame(9025);
685 CheckFrame(9026);
686 CheckFrame(9057);
687}
688
philipel759e0b72016-11-30 01:32:05 -0800689TEST_F(TestPacketBuffer, DontLeakPayloadData) {
690 // NOTE! Any eventual leak is suppose to be detected by valgrind
691 // or any other similar tool.
692 uint8_t* data1 = new uint8_t[5];
693 uint8_t* data2 = new uint8_t[5];
694 uint8_t* data3 = new uint8_t[5];
695 uint8_t* data4 = new uint8_t[5];
696
697 // Expected to free data1 upon PacketBuffer destruction.
698 EXPECT_TRUE(Insert(2, kKeyFrame, kFirst, kNotLast, 5, data1));
699
700 // Expect to free data2 upon insertion.
701 EXPECT_TRUE(Insert(2, kKeyFrame, kFirst, kNotLast, 5, data2));
702
703 // Expect to free data3 upon insertion (old packet).
704 packet_buffer_->ClearTo(1);
705 EXPECT_FALSE(Insert(1, kKeyFrame, kFirst, kNotLast, 5, data3));
706
707 // Expect to free data4 upon insertion (packet buffer is full).
philipelc703dc22017-03-23 06:50:37 -0700708 EXPECT_TRUE(Insert(2 + kMaxSize, kKeyFrame, kFirst, kNotLast, 5, data4));
philipel759e0b72016-11-30 01:32:05 -0800709}
710
philipelea142f82017-01-11 02:01:56 -0800711TEST_F(TestPacketBuffer, ContinuousSeqNumDoubleMarkerBit) {
712 Insert(2, kKeyFrame, kNotFirst, kNotLast);
713 Insert(1, kKeyFrame, kFirst, kLast);
714 frames_from_callback_.clear();
715 Insert(3, kKeyFrame, kNotFirst, kLast);
716
717 EXPECT_EQ(0UL, frames_from_callback_.size());
718}
719
philipel3184f8e2017-05-18 08:08:53 -0700720TEST_F(TestPacketBuffer, PacketTimestamps) {
Danil Chapovalov0040b662018-06-18 10:48:16 +0200721 absl::optional<int64_t> packet_ms;
722 absl::optional<int64_t> packet_keyframe_ms;
philipel3184f8e2017-05-18 08:08:53 -0700723
724 packet_ms = packet_buffer_->LastReceivedPacketMs();
725 packet_keyframe_ms = packet_buffer_->LastReceivedKeyframePacketMs();
726 EXPECT_FALSE(packet_ms);
727 EXPECT_FALSE(packet_keyframe_ms);
728
729 int64_t keyframe_ms = clock_->TimeInMilliseconds();
730 EXPECT_TRUE(Insert(100, kKeyFrame, kFirst, kLast));
731 packet_ms = packet_buffer_->LastReceivedPacketMs();
732 packet_keyframe_ms = packet_buffer_->LastReceivedKeyframePacketMs();
733 EXPECT_TRUE(packet_ms);
734 EXPECT_TRUE(packet_keyframe_ms);
735 EXPECT_EQ(keyframe_ms, *packet_ms);
736 EXPECT_EQ(keyframe_ms, *packet_keyframe_ms);
737
738 clock_->AdvanceTimeMilliseconds(100);
739 int64_t delta_ms = clock_->TimeInMilliseconds();
740 EXPECT_TRUE(Insert(101, kDeltaFrame, kFirst, kLast));
741 packet_ms = packet_buffer_->LastReceivedPacketMs();
742 packet_keyframe_ms = packet_buffer_->LastReceivedKeyframePacketMs();
743 EXPECT_TRUE(packet_ms);
744 EXPECT_TRUE(packet_keyframe_ms);
745 EXPECT_EQ(delta_ms, *packet_ms);
746 EXPECT_EQ(keyframe_ms, *packet_keyframe_ms);
747
748 packet_buffer_->Clear();
749 packet_ms = packet_buffer_->LastReceivedPacketMs();
750 packet_keyframe_ms = packet_buffer_->LastReceivedKeyframePacketMs();
751 EXPECT_FALSE(packet_ms);
752 EXPECT_FALSE(packet_keyframe_ms);
753}
754
philipel09133af2018-05-17 14:11:09 +0200755TEST_F(TestPacketBuffer, IncomingCodecChange) {
756 VCMPacket packet;
757 packet.is_first_packet_in_frame = true;
philipelef615ea2018-09-13 11:07:48 +0200758 packet.is_last_packet_in_frame = true;
philipel09133af2018-05-17 14:11:09 +0200759 packet.sizeBytes = 0;
760 packet.dataPtr = nullptr;
761
762 packet.codec = kVideoCodecVP8;
763 packet.timestamp = 1;
764 packet.seqNum = 1;
765 packet.frameType = kVideoFrameKey;
766 EXPECT_TRUE(packet_buffer_->InsertPacket(&packet));
767
768 packet.codec = kVideoCodecH264;
philipel7d745e52018-08-02 14:03:53 +0200769 auto& h264_header =
770 packet.video_header.video_type_header.emplace<RTPVideoHeaderH264>();
771 h264_header.nalus_length = 1;
philipel09133af2018-05-17 14:11:09 +0200772 packet.timestamp = 3;
773 packet.seqNum = 3;
774 EXPECT_TRUE(packet_buffer_->InsertPacket(&packet));
775
776 packet.codec = kVideoCodecVP8;
777 packet.timestamp = 2;
778 packet.seqNum = 2;
779 packet.frameType = kVideoFrameDelta;
780
781 EXPECT_TRUE(packet_buffer_->InsertPacket(&packet));
782
783 EXPECT_EQ(3UL, frames_from_callback_.size());
784}
785
786TEST_F(TestPacketBuffer, TooManyNalusInPacket) {
787 VCMPacket packet;
788 packet.codec = kVideoCodecH264;
789 packet.timestamp = 1;
790 packet.seqNum = 1;
791 packet.frameType = kVideoFrameKey;
792 packet.is_first_packet_in_frame = true;
philipelef615ea2018-09-13 11:07:48 +0200793 packet.is_last_packet_in_frame = true;
philipel7d745e52018-08-02 14:03:53 +0200794 auto& h264_header =
795 packet.video_header.video_type_header.emplace<RTPVideoHeaderH264>();
796 h264_header.nalus_length = kMaxNalusPerPacket;
philipel09133af2018-05-17 14:11:09 +0200797 packet.sizeBytes = 0;
798 packet.dataPtr = nullptr;
799 EXPECT_TRUE(packet_buffer_->InsertPacket(&packet));
800
801 EXPECT_EQ(0UL, frames_from_callback_.size());
802}
803
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100804TEST_P(TestPacketBufferH264Parameterized, OneFrameFillBuffer) {
philipel2c9f9f22017-06-13 02:47:28 -0700805 InsertH264(0, kKeyFrame, kFirst, kNotLast, 1000);
806 for (int i = 1; i < kStartSize - 1; ++i)
807 InsertH264(i, kKeyFrame, kNotFirst, kNotLast, 1000);
808 InsertH264(kStartSize - 1, kKeyFrame, kNotFirst, kLast, 1000);
809
810 EXPECT_EQ(1UL, frames_from_callback_.size());
811 CheckFrame(0);
812}
813
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100814TEST_P(TestPacketBufferH264Parameterized, CreateFramesAfterFilledBuffer) {
philipel227f8b92017-08-04 06:39:31 -0700815 InsertH264(kStartSize - 2, kKeyFrame, kFirst, kLast, 0);
816 ASSERT_EQ(1UL, frames_from_callback_.size());
817 frames_from_callback_.clear();
818
819 InsertH264(kStartSize, kDeltaFrame, kFirst, kNotLast, 2000);
820 for (int i = 1; i < kStartSize; ++i)
821 InsertH264(kStartSize + i, kDeltaFrame, kNotFirst, kNotLast, 2000);
822 InsertH264(kStartSize + kStartSize, kDeltaFrame, kNotFirst, kLast, 2000);
823 ASSERT_EQ(0UL, frames_from_callback_.size());
824
825 InsertH264(kStartSize - 1, kKeyFrame, kFirst, kLast, 1000);
826 ASSERT_EQ(2UL, frames_from_callback_.size());
827 CheckFrame(kStartSize - 1);
828 CheckFrame(kStartSize);
829}
830
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100831TEST_P(TestPacketBufferH264Parameterized, OneFrameMaxSeqNum) {
philipel2c9f9f22017-06-13 02:47:28 -0700832 InsertH264(65534, kKeyFrame, kFirst, kNotLast, 1000);
833 InsertH264(65535, kKeyFrame, kNotFirst, kLast, 1000);
834
835 EXPECT_EQ(1UL, frames_from_callback_.size());
836 CheckFrame(65534);
837}
838
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100839TEST_P(TestPacketBufferH264Parameterized, ClearMissingPacketsOnKeyframe) {
philipel2c9f9f22017-06-13 02:47:28 -0700840 InsertH264(0, kKeyFrame, kFirst, kLast, 1000);
841 InsertH264(2, kKeyFrame, kFirst, kLast, 3000);
842 InsertH264(3, kDeltaFrame, kFirst, kNotLast, 4000);
843 InsertH264(4, kDeltaFrame, kNotFirst, kLast, 4000);
844
845 ASSERT_EQ(3UL, frames_from_callback_.size());
846
847 InsertH264(kStartSize + 1, kKeyFrame, kFirst, kLast, 18000);
848
849 ASSERT_EQ(4UL, frames_from_callback_.size());
850 CheckFrame(0);
851 CheckFrame(2);
852 CheckFrame(3);
853 CheckFrame(kStartSize + 1);
854}
855
Rasmus Brandt88f080a2017-11-02 14:28:06 +0100856TEST_P(TestPacketBufferH264Parameterized, FindFramesOnPadding) {
philipel2c9f9f22017-06-13 02:47:28 -0700857 InsertH264(0, kKeyFrame, kFirst, kLast, 1000);
858 InsertH264(2, kDeltaFrame, kFirst, kLast, 1000);
859
860 ASSERT_EQ(1UL, frames_from_callback_.size());
861 packet_buffer_->PaddingReceived(1);
862 ASSERT_EQ(2UL, frames_from_callback_.size());
863 CheckFrame(0);
864 CheckFrame(2);
865}
866
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200867class TestPacketBufferH264XIsKeyframe : public TestPacketBufferH264 {
868 protected:
869 const uint16_t kSeqNum = 5;
870
871 explicit TestPacketBufferH264XIsKeyframe(bool sps_pps_idr_is_keyframe)
872 : TestPacketBufferH264(sps_pps_idr_is_keyframe) {
873 packet_.codec = kVideoCodecH264;
874 packet_.seqNum = kSeqNum;
875
876 packet_.is_first_packet_in_frame = true;
philipelef615ea2018-09-13 11:07:48 +0200877 packet_.is_last_packet_in_frame = true;
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200878 }
879
880 VCMPacket packet_;
881};
882
883class TestPacketBufferH264IdrIsKeyframe
884 : public TestPacketBufferH264XIsKeyframe {
885 protected:
886 TestPacketBufferH264IdrIsKeyframe()
887 : TestPacketBufferH264XIsKeyframe(false) {}
888};
889
890TEST_F(TestPacketBufferH264IdrIsKeyframe, IdrIsKeyframe) {
philipel7d745e52018-08-02 14:03:53 +0200891 auto& h264_header =
892 packet_.video_header.video_type_header.emplace<RTPVideoHeaderH264>();
893 h264_header.nalus[0].type = H264::NaluType::kIdr;
894 h264_header.nalus_length = 1;
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200895 packet_buffer_->InsertPacket(&packet_);
896
897 ASSERT_EQ(1u, frames_from_callback_.size());
898 EXPECT_EQ(kVideoFrameKey, frames_from_callback_[kSeqNum]->frame_type());
899}
900
901TEST_F(TestPacketBufferH264IdrIsKeyframe, SpsPpsIdrIsKeyframe) {
philipel7d745e52018-08-02 14:03:53 +0200902 auto& h264_header =
903 packet_.video_header.video_type_header.emplace<RTPVideoHeaderH264>();
904 h264_header.nalus[0].type = H264::NaluType::kSps;
905 h264_header.nalus[1].type = H264::NaluType::kPps;
906 h264_header.nalus[2].type = H264::NaluType::kIdr;
907 h264_header.nalus_length = 3;
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200908
909 packet_buffer_->InsertPacket(&packet_);
910
911 ASSERT_EQ(1u, frames_from_callback_.size());
912 EXPECT_EQ(kVideoFrameKey, frames_from_callback_[kSeqNum]->frame_type());
913}
914
915class TestPacketBufferH264SpsPpsIdrIsKeyframe
916 : public TestPacketBufferH264XIsKeyframe {
917 protected:
918 TestPacketBufferH264SpsPpsIdrIsKeyframe()
919 : TestPacketBufferH264XIsKeyframe(true) {}
920};
921
922TEST_F(TestPacketBufferH264SpsPpsIdrIsKeyframe, IdrIsNotKeyframe) {
philipel7d745e52018-08-02 14:03:53 +0200923 auto& h264_header =
924 packet_.video_header.video_type_header.emplace<RTPVideoHeaderH264>();
925 h264_header.nalus[0].type = H264::NaluType::kIdr;
926 h264_header.nalus_length = 1;
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200927
928 packet_buffer_->InsertPacket(&packet_);
929
930 ASSERT_EQ(1u, frames_from_callback_.size());
931 EXPECT_EQ(kVideoFrameDelta, frames_from_callback_[5]->frame_type());
932}
933
934TEST_F(TestPacketBufferH264SpsPpsIdrIsKeyframe, SpsPpsIsNotKeyframe) {
philipel7d745e52018-08-02 14:03:53 +0200935 auto& h264_header =
936 packet_.video_header.video_type_header.emplace<RTPVideoHeaderH264>();
937 h264_header.nalus[0].type = H264::NaluType::kSps;
938 h264_header.nalus[1].type = H264::NaluType::kPps;
939 h264_header.nalus_length = 2;
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200940
941 packet_buffer_->InsertPacket(&packet_);
942
943 ASSERT_EQ(1u, frames_from_callback_.size());
944 EXPECT_EQ(kVideoFrameDelta, frames_from_callback_[kSeqNum]->frame_type());
945}
946
947TEST_F(TestPacketBufferH264SpsPpsIdrIsKeyframe, SpsPpsIdrIsKeyframe) {
philipel7d745e52018-08-02 14:03:53 +0200948 auto& h264_header =
949 packet_.video_header.video_type_header.emplace<RTPVideoHeaderH264>();
950 h264_header.nalus[0].type = H264::NaluType::kSps;
951 h264_header.nalus[1].type = H264::NaluType::kPps;
952 h264_header.nalus[2].type = H264::NaluType::kIdr;
953 h264_header.nalus_length = 3;
Rasmus Brandtedf4ff72017-10-24 10:07:48 +0200954
955 packet_buffer_->InsertPacket(&packet_);
956
957 ASSERT_EQ(1u, frames_from_callback_.size());
958 EXPECT_EQ(kVideoFrameKey, frames_from_callback_[kSeqNum]->frame_type());
959}
960
philipelc707ab72016-04-01 02:01:54 -0700961} // namespace video_coding
962} // namespace webrtc