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Issue 430583005: Make VEA test support videos with different coded size and visible size (Closed) Base URL: https://chromium.googlesource.com/chromium/src.git@master
Patch Set: address Pawel's review comments Created 6 years, 3 months ago
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1 // Copyright 2013 The Chromium Authors. All rights reserved. 1 // Copyright 2013 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be 2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file. 3 // found in the LICENSE file.
4 4
5 #include "base/at_exit.h" 5 #include "base/at_exit.h"
6 #include "base/bind.h" 6 #include "base/bind.h"
7 #include "base/command_line.h" 7 #include "base/command_line.h"
8 #include "base/file_util.h" 8 #include "base/file_util.h"
9 #include "base/files/memory_mapped_file.h" 9 #include "base/files/memory_mapped_file.h"
10 #include "base/memory/scoped_vector.h" 10 #include "base/memory/scoped_vector.h"
(...skipping 74 matching lines...) Expand 10 before | Expand all | Expand 10 after
85 // parameters if a specific subsequent parameter is required): 85 // parameters if a specific subsequent parameter is required):
86 // - |requested_bitrate| requested bitrate in bits per second. 86 // - |requested_bitrate| requested bitrate in bits per second.
87 // - |requested_framerate| requested initial framerate. 87 // - |requested_framerate| requested initial framerate.
88 // - |requested_subsequent_bitrate| bitrate to switch to in the middle of the 88 // - |requested_subsequent_bitrate| bitrate to switch to in the middle of the
89 // stream. 89 // stream.
90 // - |requested_subsequent_framerate| framerate to switch to in the middle 90 // - |requested_subsequent_framerate| framerate to switch to in the middle
91 // of the stream. 91 // of the stream.
92 // Bitrate is only forced for tests that test bitrate. 92 // Bitrate is only forced for tests that test bitrate.
93 const char* g_default_in_filename = "bear_320x192_40frames.yuv"; 93 const char* g_default_in_filename = "bear_320x192_40frames.yuv";
94 const char* g_default_in_parameters = ":320:192:1:out.h264:200000"; 94 const char* g_default_in_parameters = ":320:192:1:out.h264:200000";
95 base::FilePath::StringType* g_test_stream_data;
96 95
97 struct TestStream { 96 struct TestStream {
98 TestStream() 97 TestStream()
99 : requested_bitrate(0), 98 : num_frames(0),
99 aligned_buffer_size(0),
100 requested_bitrate(0),
100 requested_framerate(0), 101 requested_framerate(0),
101 requested_subsequent_bitrate(0), 102 requested_subsequent_bitrate(0),
102 requested_subsequent_framerate(0) {} 103 requested_subsequent_framerate(0) {}
103 ~TestStream() {} 104 ~TestStream() {}
104 105
105 gfx::Size size; 106 gfx::Size size;
106 base::MemoryMappedFile input_file; 107 unsigned int num_frames;
108
109 // Original unaligned input file name provided as an argument to the test.
110 // And the file must be an I420 (YUV planar) raw stream.
111 std::string in_filename;
112
113 // A temporary file used to prepare aligned input buffers of |in_filename|.
114 // The file makes sure starting address of YUV planes are 64 byte-aligned.
115 base::FilePath aligned_in_file;
116
117 // The memory mapped of |aligned_in_file|
Pawel Osciak 2014/09/11 09:51:47 s/mapped/mapping/
henryhsu 2014/09/11 11:39:09 Done.
118 base::MemoryMappedFile mapped_aligned_in_file;
119
120 // Byte size of a frame of |aligned_in_file|.
121 size_t aligned_buffer_size;
122
123 // Byte size for each aligned plane of a frame
124 std::vector<size_t>* aligned_plane_size;
Pawel Osciak 2014/09/11 09:51:46 Just std::vector<> ?
henryhsu 2014/09/11 11:39:10 Done.
125
126 std::string out_filename;
107 media::VideoCodecProfile requested_profile; 127 media::VideoCodecProfile requested_profile;
108 std::string out_filename;
109 unsigned int requested_bitrate; 128 unsigned int requested_bitrate;
110 unsigned int requested_framerate; 129 unsigned int requested_framerate;
111 unsigned int requested_subsequent_bitrate; 130 unsigned int requested_subsequent_bitrate;
112 unsigned int requested_subsequent_framerate; 131 unsigned int requested_subsequent_framerate;
113 }; 132 };
114 133
134 inline static uint32 Align64Bytes(uint32 value) {
Pawel Osciak 2014/09/11 09:51:47 s/uint32/size_t/
henryhsu 2014/09/11 11:39:10 Done.
135 return (value + 63) & ~63;
136 }
137
138 // Write |data| with |size| bytes into |offset| bytes of |file|.
Pawel Osciak 2014/09/11 09:51:47 s/with/of/ s/into/at/ s/of/into/
henryhsu 2014/09/11 11:39:09 Done.
139 static bool WriteFile(base::File* file,
140 const off_t offset,
141 const uint8* data,
142 size_t size) {
143 size_t written_bytes = 0;
144 while (written_bytes < size) {
145 int bytes = file->Write(offset + written_bytes,
146 reinterpret_cast<const char*>(data + written_bytes),
147 size - written_bytes);
148 if (bytes <= 0)
149 return false;
150 written_bytes += bytes;
151 }
152 return true;
153 }
154
155 // ARM performs CPU cache management with CPU cache line granularity. We thus
156 // need to ensure our buffers are CPU cache line-aligned (64 byte-aligned).
157 // Otherwise newer kernels will refuse to accept them, and on older kernels
158 // we'll be treating ourselves to random corruption.
159 // Since we are just mapping and passing chunks of the input file directly to
160 // the VEA as input frames to avoid copying large chunks of raw data on each
161 // frame and thus affecting performance measurements, we have to prepare a
162 // temporary file with all planes aligned to 64-byte boundaries beforehand.
163 static void CreateAlignedInputStreamFile(const gfx::Size& coded_size,
164 TestStream* test_stream) {
165 // Test case may have many encoders and memory should be prepared once.
166 if (test_stream->mapped_aligned_in_file.IsValid())
Pawel Osciak 2014/09/11 09:51:46 If coded_size is different from the one you got pa
henryhsu 2014/09/11 11:39:10 Done.
167 return;
168
169 size_t num_planes = media::VideoFrame::NumPlanes(kInputFormat);
170 std::vector<size_t> padding_sizes(num_planes);
171 std::vector<size_t> coded_bpl(num_planes);
172 std::vector<size_t> visible_bpl(num_planes);
173 std::vector<size_t> visible_plane_rows(num_planes);
174 test_stream->aligned_plane_size = new std::vector<size_t>(num_planes);
175
176 // Calculate padding in bytes to be added after each plane required to keep
177 // starting addresses of all planes at a 64 byte boudnary. This padding will
178 // be added after each plane when copying to the temporary file.
179 // At the same time we also need to take into account coded_size requested by
180 // the VEA; each row of visible_bpl bytes in the original file needs to be
181 // copied into a row of coded_bpl bytes in the aligned file.
182 for (off_t i = 0; i < num_planes; i++) {
Pawel Osciak 2014/09/11 09:51:46 s/off_t/size_t/
henryhsu 2014/09/11 11:39:10 Done.
183 size_t size =
184 media::VideoFrame::PlaneAllocationSize(kInputFormat, i, coded_size);
185 size_t padding_bytes = Align64Bytes(size) - size;
Pawel Osciak 2014/09/11 09:51:46 This is not needed.
henryhsu 2014/09/11 11:39:10 Done.
186 (*test_stream->aligned_plane_size)[i] = Align64Bytes(size);
187 test_stream->aligned_buffer_size += Align64Bytes(size);
Pawel Osciak 2014/09/11 09:51:46 += aligned_plane_size
henryhsu 2014/09/11 11:39:10 Done.
188
189 coded_bpl[i] =
190 media::VideoFrame::RowBytes(i, kInputFormat, coded_size.width());
191 visible_bpl[i] =
192 media::VideoFrame::RowBytes(i, kInputFormat, test_stream->size.width());
193 visible_plane_rows[i] =
194 media::VideoFrame::Rows(i, kInputFormat, test_stream->size.height());
195 size_t padding_rows =
Pawel Osciak 2014/09/11 09:51:47 This should just be coded_size.height() - size.hei
henryhsu 2014/09/11 11:39:10 For UV planes, the value should be (coded_size.hei
Pawel Osciak 2014/09/17 09:58:28 Ah sorry, you are right. My bad.
196 media::VideoFrame::Rows(i, kInputFormat, coded_size.height()) -
197 visible_plane_rows[i];
198 padding_sizes[i] = padding_rows * coded_bpl[i] + padding_bytes;
Pawel Osciak 2014/09/11 09:51:47 This can be Align64Bytes(padding_rows * coded_bpl
henryhsu 2014/09/11 11:39:10 Done.
199 }
200
201 base::MemoryMappedFile src_file;
202 CHECK(src_file.Initialize(base::FilePath(test_stream->in_filename)));
203 CHECK(base::CreateTemporaryFile(&test_stream->aligned_in_file));
204
205 size_t visible_buffer_size =
206 media::VideoFrame::AllocationSize(kInputFormat, test_stream->size);
207 CHECK_EQ(src_file.length() % visible_buffer_size, 0U)
208 << "Stream byte size is not a product of calculated frame byte size";
209
210 test_stream->num_frames = src_file.length() / visible_buffer_size;
211 uint32 flags = base::File::FLAG_CREATE_ALWAYS | base::File::FLAG_WRITE |
212 base::File::FLAG_READ;
213
214 // Create a temporary file with coded_size length.
215 base::File dest_file(test_stream->aligned_in_file, flags);
216 CHECK_GT(test_stream->aligned_buffer_size, 0UL);
217 dest_file.SetLength(test_stream->aligned_buffer_size *
218 test_stream->num_frames);
219
220 const uint8* src = src_file.data();
221 off_t dest_offset = 0;
222 for (off_t frame = 0; frame < test_stream->num_frames; frame++) {
Pawel Osciak 2014/09/11 09:51:47 s/off_t/size_t/
henryhsu 2014/09/11 11:39:10 Done.
223 for (off_t i = 0; i < num_planes; i++) {
Pawel Osciak 2014/09/11 09:51:47 s/off_t/size_t/
henryhsu 2014/09/11 11:39:10 Done.
224 // Assert that each plane of frame starts at 64 byte boundary.
225 ASSERT_EQ(dest_offset & 63, 0)
226 << "Planes of frame should be mapped at a 64 byte boundary";
227 for (off_t j = 0; j < visible_plane_rows[i]; j++) {
Pawel Osciak 2014/09/11 09:51:46 size_t
henryhsu 2014/09/11 11:39:10 Done.
228 CHECK(WriteFile(&dest_file, dest_offset, src, visible_bpl[i]));
229 src += visible_bpl[i];
230 dest_offset += coded_bpl[i];
231 }
232 dest_offset += padding_sizes[i];
233 }
234 }
235 CHECK(test_stream->mapped_aligned_in_file.Initialize(dest_file.Pass()));
236 // Assert that memory mapped of file starts at 64 byte boundary. So each
237 // plane of frames also start at 64 byte boundary.
238 ASSERT_EQ(
239 reinterpret_cast<off_t>(test_stream->mapped_aligned_in_file.data()) & 63,
240 0)
241 << "File should be mapped at a 64 byte boundary";
242
243 CHECK_EQ(test_stream->mapped_aligned_in_file.length() %
244 test_stream->aligned_buffer_size,
245 0U)
246 << "Stream byte size is not a product of calculated frame byte size";
247 CHECK_GT(test_stream->num_frames, 0UL);
248 CHECK_LE(test_stream->num_frames, kMaxFrameNum);
249 }
250
115 // Parse |data| into its constituent parts, set the various output fields 251 // Parse |data| into its constituent parts, set the various output fields
116 // accordingly, read in video stream, and store them to |test_streams|. 252 // accordingly, read in video stream, and store them to |test_streams|.
117 static void ParseAndReadTestStreamData(const base::FilePath::StringType& data, 253 static void ParseAndReadTestStreamData(const base::FilePath::StringType& data,
118 ScopedVector<TestStream>* test_streams) { 254 ScopedVector<TestStream>* test_streams) {
119 // Split the string to individual test stream data. 255 // Split the string to individual test stream data.
120 std::vector<base::FilePath::StringType> test_streams_data; 256 std::vector<base::FilePath::StringType> test_streams_data;
121 base::SplitString(data, ';', &test_streams_data); 257 base::SplitString(data, ';', &test_streams_data);
122 CHECK_GE(test_streams_data.size(), 1U) << data; 258 CHECK_GE(test_streams_data.size(), 1U) << data;
123 259
124 // Parse each test stream data and read the input file. 260 // Parse each test stream data and read the input file.
125 for (size_t index = 0; index < test_streams_data.size(); ++index) { 261 for (size_t index = 0; index < test_streams_data.size(); ++index) {
126 std::vector<base::FilePath::StringType> fields; 262 std::vector<base::FilePath::StringType> fields;
127 base::SplitString(test_streams_data[index], ':', &fields); 263 base::SplitString(test_streams_data[index], ':', &fields);
128 CHECK_GE(fields.size(), 4U) << data; 264 CHECK_GE(fields.size(), 4U) << data;
129 CHECK_LE(fields.size(), 9U) << data; 265 CHECK_LE(fields.size(), 9U) << data;
130 TestStream* test_stream = new TestStream(); 266 TestStream* test_stream = new TestStream();
131 267
132 base::FilePath::StringType filename = fields[0]; 268 test_stream->in_filename = fields[0];
133 int width, height; 269 int width, height;
134 CHECK(base::StringToInt(fields[1], &width)); 270 CHECK(base::StringToInt(fields[1], &width));
135 CHECK(base::StringToInt(fields[2], &height)); 271 CHECK(base::StringToInt(fields[2], &height));
136 test_stream->size = gfx::Size(width, height); 272 test_stream->size = gfx::Size(width, height);
137 CHECK(!test_stream->size.IsEmpty()); 273 CHECK(!test_stream->size.IsEmpty());
138 int profile; 274 int profile;
139 CHECK(base::StringToInt(fields[3], &profile)); 275 CHECK(base::StringToInt(fields[3], &profile));
140 CHECK_GT(profile, media::VIDEO_CODEC_PROFILE_UNKNOWN); 276 CHECK_GT(profile, media::VIDEO_CODEC_PROFILE_UNKNOWN);
141 CHECK_LE(profile, media::VIDEO_CODEC_PROFILE_MAX); 277 CHECK_LE(profile, media::VIDEO_CODEC_PROFILE_MAX);
142 test_stream->requested_profile = 278 test_stream->requested_profile =
(...skipping 10 matching lines...) Expand all
153 289
154 if (fields.size() >= 8 && !fields[7].empty()) { 290 if (fields.size() >= 8 && !fields[7].empty()) {
155 CHECK(base::StringToUint(fields[7], 291 CHECK(base::StringToUint(fields[7],
156 &test_stream->requested_subsequent_bitrate)); 292 &test_stream->requested_subsequent_bitrate));
157 } 293 }
158 294
159 if (fields.size() >= 9 && !fields[8].empty()) { 295 if (fields.size() >= 9 && !fields[8].empty()) {
160 CHECK(base::StringToUint(fields[8], 296 CHECK(base::StringToUint(fields[8],
161 &test_stream->requested_subsequent_framerate)); 297 &test_stream->requested_subsequent_framerate));
162 } 298 }
163
164 CHECK(test_stream->input_file.Initialize(base::FilePath(filename)));
165 test_streams->push_back(test_stream); 299 test_streams->push_back(test_stream);
166 } 300 }
167 } 301 }
168 302
169 // Set default parameters of |test_streams| and update the parameters according
170 // to |mid_stream_bitrate_switch| and |mid_stream_framerate_switch|.
171 static void UpdateTestStreamData(bool mid_stream_bitrate_switch,
172 bool mid_stream_framerate_switch,
173 ScopedVector<TestStream>* test_streams) {
174 for (size_t i = 0; i < test_streams->size(); i++) {
175 TestStream* test_stream = (*test_streams)[i];
176 // Use defaults for bitrate/framerate if they are not provided.
177 if (test_stream->requested_bitrate == 0)
178 test_stream->requested_bitrate = kDefaultBitrate;
179
180 if (test_stream->requested_framerate == 0)
181 test_stream->requested_framerate = kDefaultFramerate;
182
183 // If bitrate/framerate switch is requested, use the subsequent values if
184 // provided, or, if not, calculate them from their initial values using
185 // the default ratios.
186 // Otherwise, if a switch is not requested, keep the initial values.
187 if (mid_stream_bitrate_switch) {
188 if (test_stream->requested_subsequent_bitrate == 0) {
189 test_stream->requested_subsequent_bitrate =
190 test_stream->requested_bitrate * kDefaultSubsequentBitrateRatio;
191 }
192 } else {
193 test_stream->requested_subsequent_bitrate =
194 test_stream->requested_bitrate;
195 }
196 if (test_stream->requested_subsequent_bitrate == 0)
197 test_stream->requested_subsequent_bitrate = 1;
198
199 if (mid_stream_framerate_switch) {
200 if (test_stream->requested_subsequent_framerate == 0) {
201 test_stream->requested_subsequent_framerate =
202 test_stream->requested_framerate * kDefaultSubsequentFramerateRatio;
203 }
204 } else {
205 test_stream->requested_subsequent_framerate =
206 test_stream->requested_framerate;
207 }
208 if (test_stream->requested_subsequent_framerate == 0)
209 test_stream->requested_subsequent_framerate = 1;
210 }
211 }
212
213 enum ClientState { 303 enum ClientState {
214 CS_CREATED, 304 CS_CREATED,
215 CS_ENCODER_SET, 305 CS_ENCODER_SET,
216 CS_INITIALIZED, 306 CS_INITIALIZED,
217 CS_ENCODING, 307 CS_ENCODING,
218 CS_FINISHED, 308 CS_FINISHED,
219 CS_ERROR, 309 CS_ERROR,
220 }; 310 };
221 311
222 // Performs basic, codec-specific sanity checks on the stream buffers passed 312 // Performs basic, codec-specific sanity checks on the stream buffers passed
(...skipping 138 matching lines...) Expand 10 before | Expand all | Expand 10 after
361 validator.reset(new VP8Validator(frame_cb)); 451 validator.reset(new VP8Validator(frame_cb));
362 } else { 452 } else {
363 LOG(FATAL) << "Unsupported profile: " << profile; 453 LOG(FATAL) << "Unsupported profile: " << profile;
364 } 454 }
365 455
366 return validator.Pass(); 456 return validator.Pass();
367 } 457 }
368 458
369 class VEAClient : public VideoEncodeAccelerator::Client { 459 class VEAClient : public VideoEncodeAccelerator::Client {
370 public: 460 public:
371 VEAClient(const TestStream& test_stream, 461 VEAClient(TestStream& test_stream,
372 ClientStateNotification<ClientState>* note, 462 ClientStateNotification<ClientState>* note,
373 bool save_to_file, 463 bool save_to_file,
374 unsigned int keyframe_period, 464 unsigned int keyframe_period,
375 bool force_bitrate, 465 bool force_bitrate,
376 bool test_perf); 466 bool test_perf,
467 bool mid_stream_bitrate_switch,
468 bool mid_stream_framerate_switch);
377 virtual ~VEAClient(); 469 virtual ~VEAClient();
378 void CreateEncoder(); 470 void CreateEncoder();
379 void DestroyEncoder(); 471 void DestroyEncoder();
380 472
381 // Return the number of encoded frames per second. 473 // Return the number of encoded frames per second.
382 double frames_per_second(); 474 double frames_per_second();
383 475
384 // VideoDecodeAccelerator::Client implementation. 476 // VideoDecodeAccelerator::Client implementation.
385 virtual void RequireBitstreamBuffers(unsigned int input_count, 477 virtual void RequireBitstreamBuffers(unsigned int input_count,
386 const gfx::Size& input_coded_size, 478 const gfx::Size& input_coded_size,
(...skipping 33 matching lines...) Expand 10 before | Expand all | Expand 10 after
420 void VerifyStreamProperties(); 512 void VerifyStreamProperties();
421 513
422 // Test codec performance, failing the test if we are currently running 514 // Test codec performance, failing the test if we are currently running
423 // the performance test. 515 // the performance test.
424 void VerifyPerf(); 516 void VerifyPerf();
425 517
426 // Prepare and return a frame wrapping the data at |position| bytes in 518 // Prepare and return a frame wrapping the data at |position| bytes in
427 // the input stream, ready to be sent to encoder. 519 // the input stream, ready to be sent to encoder.
428 scoped_refptr<media::VideoFrame> PrepareInputFrame(off_t position); 520 scoped_refptr<media::VideoFrame> PrepareInputFrame(off_t position);
429 521
522 // Update the parameters according to |mid_stream_bitrate_switch| and
523 // |mid_stream_framerate_switch|.
524 void UpdateTestStreamData(bool mid_stream_bitrate_switch,
525 bool mid_stream_framerate_switch);
526
430 ClientState state_; 527 ClientState state_;
431 scoped_ptr<VideoEncodeAccelerator> encoder_; 528 scoped_ptr<VideoEncodeAccelerator> encoder_;
432 529
433 const TestStream& test_stream_; 530 TestStream& test_stream_;
Pawel Osciak 2014/09/11 09:51:47 I'm not sure this is allowed. Pointer?
henryhsu 2014/09/11 11:39:10 Done.
434 // Used to notify another thread about the state. VEAClient does not own this. 531 // Used to notify another thread about the state. VEAClient does not own this.
435 ClientStateNotification<ClientState>* note_; 532 ClientStateNotification<ClientState>* note_;
436 533
437 // Ids assigned to VideoFrames (start at 1 for easy comparison with 534 // Ids assigned to VideoFrames (start at 1 for easy comparison with
438 // num_encoded_frames_). 535 // num_encoded_frames_).
439 std::set<int32> inputs_at_client_; 536 std::set<int32> inputs_at_client_;
440 int32 next_input_id_; 537 int32 next_input_id_;
441 538
442 // Ids for output BitstreamBuffers. 539 // Ids for output BitstreamBuffers.
443 typedef std::map<int32, base::SharedMemory*> IdToSHM; 540 typedef std::map<int32, base::SharedMemory*> IdToSHM;
444 ScopedVector<base::SharedMemory> output_shms_; 541 ScopedVector<base::SharedMemory> output_shms_;
445 IdToSHM output_buffers_at_client_; 542 IdToSHM output_buffers_at_client_;
446 int32 next_output_buffer_id_; 543 int32 next_output_buffer_id_;
447 544
448 // Current offset into input stream. 545 // Current offset into input stream.
449 off_t pos_in_input_stream_; 546 off_t pos_in_input_stream_;
450 // Byte size of an input frame.
451 size_t input_buffer_size_;
452 gfx::Size input_coded_size_; 547 gfx::Size input_coded_size_;
453 // Requested by encoder. 548 // Requested by encoder.
454 unsigned int num_required_input_buffers_; 549 unsigned int num_required_input_buffers_;
455 size_t output_buffer_size_; 550 size_t output_buffer_size_;
456 551
457 // Precalculated number of frames in the stream. 552 // Number of frames to encode. This may differ from the number of frames in
458 unsigned int num_frames_in_stream_; 553 // stream if we need more frames for bitrate tests.
459
460 // Number of frames to encode. This may differ from num_frames_in_stream_ if
461 // we need more frames for bitrate tests.
462 unsigned int num_frames_to_encode_; 554 unsigned int num_frames_to_encode_;
463 555
464 // Number of encoded frames we've got from the encoder thus far. 556 // Number of encoded frames we've got from the encoder thus far.
465 unsigned int num_encoded_frames_; 557 unsigned int num_encoded_frames_;
466 558
467 // Frames since last bitrate verification. 559 // Frames since last bitrate verification.
468 unsigned int num_frames_since_last_check_; 560 unsigned int num_frames_since_last_check_;
469 561
470 // True if received a keyframe while processing current bitstream buffer. 562 // True if received a keyframe while processing current bitstream buffer.
471 bool seen_keyframe_in_this_buffer_; 563 bool seen_keyframe_in_this_buffer_;
(...skipping 26 matching lines...) Expand all
498 scoped_ptr<StreamValidator> validator_; 590 scoped_ptr<StreamValidator> validator_;
499 591
500 // The time when the encoding started. 592 // The time when the encoding started.
501 base::TimeTicks encode_start_time_; 593 base::TimeTicks encode_start_time_;
502 594
503 // The time when the last encoded frame is ready. 595 // The time when the last encoded frame is ready.
504 base::TimeTicks last_frame_ready_time_; 596 base::TimeTicks last_frame_ready_time_;
505 597
506 // All methods of this class should be run on the same thread. 598 // All methods of this class should be run on the same thread.
507 base::ThreadChecker thread_checker_; 599 base::ThreadChecker thread_checker_;
600
601 // Requested bitrate in bits per second.
602 unsigned int requested_bitrate_;
603
604 // Requested initial framerate.
605 unsigned int requested_framerate_;
606
607 // Bitrate to switch to in the middle of the stream.
608 unsigned int requested_subsequent_bitrate_;
609
610 // Framerate to switch to in the middle of the stream.
611 unsigned int requested_subsequent_framerate_;
508 }; 612 };
509 613
510 VEAClient::VEAClient(const TestStream& test_stream, 614 VEAClient::VEAClient(TestStream& test_stream,
511 ClientStateNotification<ClientState>* note, 615 ClientStateNotification<ClientState>* note,
512 bool save_to_file, 616 bool save_to_file,
513 unsigned int keyframe_period, 617 unsigned int keyframe_period,
514 bool force_bitrate, 618 bool force_bitrate,
515 bool test_perf) 619 bool test_perf,
620 bool mid_stream_bitrate_switch,
621 bool mid_stream_framerate_switch)
516 : state_(CS_CREATED), 622 : state_(CS_CREATED),
517 test_stream_(test_stream), 623 test_stream_(test_stream),
518 note_(note), 624 note_(note),
519 next_input_id_(1), 625 next_input_id_(1),
520 next_output_buffer_id_(0), 626 next_output_buffer_id_(0),
521 pos_in_input_stream_(0), 627 pos_in_input_stream_(0),
522 input_buffer_size_(0),
523 num_required_input_buffers_(0), 628 num_required_input_buffers_(0),
524 output_buffer_size_(0), 629 output_buffer_size_(0),
525 num_frames_in_stream_(0),
526 num_frames_to_encode_(0), 630 num_frames_to_encode_(0),
527 num_encoded_frames_(0), 631 num_encoded_frames_(0),
528 num_frames_since_last_check_(0), 632 num_frames_since_last_check_(0),
529 seen_keyframe_in_this_buffer_(false), 633 seen_keyframe_in_this_buffer_(false),
530 save_to_file_(save_to_file), 634 save_to_file_(save_to_file),
531 keyframe_period_(keyframe_period), 635 keyframe_period_(keyframe_period),
532 keyframe_requested_at_(kMaxFrameNum), 636 keyframe_requested_at_(kMaxFrameNum),
533 force_bitrate_(force_bitrate), 637 force_bitrate_(force_bitrate),
534 current_requested_bitrate_(0), 638 current_requested_bitrate_(0),
535 current_framerate_(0), 639 current_framerate_(0),
536 encoded_stream_size_since_last_check_(0), 640 encoded_stream_size_since_last_check_(0),
537 test_perf_(test_perf) { 641 test_perf_(test_perf),
642 requested_bitrate_(0),
643 requested_framerate_(0),
644 requested_subsequent_bitrate_(0),
645 requested_subsequent_framerate_(0) {
538 if (keyframe_period_) 646 if (keyframe_period_)
539 CHECK_LT(kMaxKeyframeDelay, keyframe_period_); 647 CHECK_LT(kMaxKeyframeDelay, keyframe_period_);
540 648
541 validator_ = StreamValidator::Create( 649 validator_ = StreamValidator::Create(
542 test_stream_.requested_profile, 650 test_stream_.requested_profile,
543 base::Bind(&VEAClient::HandleEncodedFrame, base::Unretained(this))); 651 base::Bind(&VEAClient::HandleEncodedFrame, base::Unretained(this)));
544 652
545 CHECK(validator_.get()); 653 CHECK(validator_.get());
546 654
547 if (save_to_file_) { 655 if (save_to_file_) {
548 CHECK(!test_stream_.out_filename.empty()); 656 CHECK(!test_stream_.out_filename.empty());
549 base::FilePath out_filename(test_stream_.out_filename); 657 base::FilePath out_filename(test_stream_.out_filename);
550 // This creates or truncates out_filename. 658 // This creates or truncates out_filename.
551 // Without it, AppendToFile() will not work. 659 // Without it, AppendToFile() will not work.
552 EXPECT_EQ(0, base::WriteFile(out_filename, NULL, 0)); 660 EXPECT_EQ(0, base::WriteFile(out_filename, NULL, 0));
553 } 661 }
554 662
555 input_buffer_size_ = 663 // Initialize the parameters of the test streams.
556 media::VideoFrame::AllocationSize(kInputFormat, test_stream.size); 664 UpdateTestStreamData(mid_stream_bitrate_switch, mid_stream_framerate_switch);
557 CHECK_GT(input_buffer_size_, 0UL);
558
559 // Calculate the number of frames in the input stream by dividing its length
560 // in bytes by frame size in bytes.
561 CHECK_EQ(test_stream_.input_file.length() % input_buffer_size_, 0U)
562 << "Stream byte size is not a product of calculated frame byte size";
563 num_frames_in_stream_ = test_stream_.input_file.length() / input_buffer_size_;
564 CHECK_GT(num_frames_in_stream_, 0UL);
565 CHECK_LE(num_frames_in_stream_, kMaxFrameNum);
566
567 // We may need to loop over the stream more than once if more frames than
568 // provided is required for bitrate tests.
569 if (force_bitrate_ && num_frames_in_stream_ < kMinFramesForBitrateTests) {
570 DVLOG(1) << "Stream too short for bitrate test (" << num_frames_in_stream_
571 << " frames), will loop it to reach " << kMinFramesForBitrateTests
572 << " frames";
573 num_frames_to_encode_ = kMinFramesForBitrateTests;
574 } else {
575 num_frames_to_encode_ = num_frames_in_stream_;
576 }
577 665
578 thread_checker_.DetachFromThread(); 666 thread_checker_.DetachFromThread();
579 } 667 }
580 668
581 VEAClient::~VEAClient() { CHECK(!has_encoder()); } 669 VEAClient::~VEAClient() { CHECK(!has_encoder()); }
582 670
583 void VEAClient::CreateEncoder() { 671 void VEAClient::CreateEncoder() {
584 DCHECK(thread_checker_.CalledOnValidThread()); 672 DCHECK(thread_checker_.CalledOnValidThread());
585 CHECK(!has_encoder()); 673 CHECK(!has_encoder());
586 674
587 #if defined(OS_CHROMEOS) && defined(ARCH_CPU_ARMEL) 675 #if defined(OS_CHROMEOS) && defined(ARCH_CPU_ARMEL)
588 scoped_ptr<V4L2Device> device = V4L2Device::Create(V4L2Device::kEncoder); 676 scoped_ptr<V4L2Device> device = V4L2Device::Create(V4L2Device::kEncoder);
589 encoder_.reset(new V4L2VideoEncodeAccelerator(device.Pass())); 677 encoder_.reset(new V4L2VideoEncodeAccelerator(device.Pass()));
590 #elif defined(OS_CHROMEOS) && defined(ARCH_CPU_X86_FAMILY) && defined(USE_X11) 678 #elif defined(OS_CHROMEOS) && defined(ARCH_CPU_X86_FAMILY) && defined(USE_X11)
591 encoder_.reset(new VaapiVideoEncodeAccelerator(gfx::GetXDisplay())); 679 encoder_.reset(new VaapiVideoEncodeAccelerator(gfx::GetXDisplay()));
592 #endif 680 #endif
593 681
594 SetState(CS_ENCODER_SET); 682 SetState(CS_ENCODER_SET);
595 683
596 DVLOG(1) << "Profile: " << test_stream_.requested_profile 684 DVLOG(1) << "Profile: " << test_stream_.requested_profile
597 << ", initial bitrate: " << test_stream_.requested_bitrate; 685 << ", initial bitrate: " << requested_bitrate_;
598 if (!encoder_->Initialize(kInputFormat, 686 if (!encoder_->Initialize(kInputFormat,
599 test_stream_.size, 687 test_stream_.size,
600 test_stream_.requested_profile, 688 test_stream_.requested_profile,
601 test_stream_.requested_bitrate, 689 requested_bitrate_,
602 this)) { 690 this)) {
603 DLOG(ERROR) << "VideoEncodeAccelerator::Initialize() failed"; 691 DLOG(ERROR) << "VideoEncodeAccelerator::Initialize() failed";
604 SetState(CS_ERROR); 692 SetState(CS_ERROR);
605 return; 693 return;
606 } 694 }
607 695
608 SetStreamParameters(test_stream_.requested_bitrate, 696 SetStreamParameters(requested_bitrate_, requested_framerate_);
609 test_stream_.requested_framerate);
610 SetState(CS_INITIALIZED); 697 SetState(CS_INITIALIZED);
611 } 698 }
612 699
613 void VEAClient::DestroyEncoder() { 700 void VEAClient::DestroyEncoder() {
614 DCHECK(thread_checker_.CalledOnValidThread()); 701 DCHECK(thread_checker_.CalledOnValidThread());
615 if (!has_encoder()) 702 if (!has_encoder())
616 return; 703 return;
617 encoder_.reset(); 704 encoder_.reset();
618 } 705 }
619 706
707 void VEAClient::UpdateTestStreamData(bool mid_stream_bitrate_switch,
708 bool mid_stream_framerate_switch) {
709 // Use defaults for bitrate/framerate if they are not provided.
710 if (test_stream_.requested_bitrate == 0)
711 requested_bitrate_ = kDefaultBitrate;
712 else
713 requested_bitrate_ = test_stream_.requested_bitrate;
714
715 if (test_stream_.requested_framerate == 0)
716 requested_framerate_ = kDefaultFramerate;
717 else
718 requested_framerate_ = test_stream_.requested_framerate;
719
720 // If bitrate/framerate switch is requested, use the subsequent values if
721 // provided, or, if not, calculate them from their initial values using
722 // the default ratios.
723 // Otherwise, if a switch is not requested, keep the initial values.
724 if (mid_stream_bitrate_switch) {
725 if (test_stream_.requested_subsequent_bitrate == 0)
726 requested_subsequent_bitrate_ =
727 requested_bitrate_ * kDefaultSubsequentBitrateRatio;
728 else
729 requested_subsequent_bitrate_ = test_stream_.requested_subsequent_bitrate;
730 } else {
731 requested_subsequent_bitrate_ = requested_bitrate_;
732 }
733 if (requested_subsequent_bitrate_ == 0)
734 requested_subsequent_bitrate_ = 1;
735
736 if (mid_stream_framerate_switch) {
737 if (test_stream_.requested_subsequent_framerate == 0)
738 requested_subsequent_framerate_ =
739 requested_framerate_ * kDefaultSubsequentFramerateRatio;
740 else
741 requested_subsequent_framerate_ =
742 test_stream_.requested_subsequent_framerate;
743 } else {
744 requested_subsequent_framerate_ = requested_framerate_;
745 }
746 if (requested_subsequent_framerate_ == 0)
747 requested_subsequent_framerate_ = 1;
748 }
749
620 double VEAClient::frames_per_second() { 750 double VEAClient::frames_per_second() {
621 base::TimeDelta duration = last_frame_ready_time_ - encode_start_time_; 751 base::TimeDelta duration = last_frame_ready_time_ - encode_start_time_;
622 return num_encoded_frames_ / duration.InSecondsF(); 752 return num_encoded_frames_ / duration.InSecondsF();
623 } 753 }
624 754
625 void VEAClient::RequireBitstreamBuffers(unsigned int input_count, 755 void VEAClient::RequireBitstreamBuffers(unsigned int input_count,
626 const gfx::Size& input_coded_size, 756 const gfx::Size& input_coded_size,
627 size_t output_size) { 757 size_t output_size) {
628 DCHECK(thread_checker_.CalledOnValidThread()); 758 DCHECK(thread_checker_.CalledOnValidThread());
629 ASSERT_EQ(state_, CS_INITIALIZED); 759 ASSERT_EQ(state_, CS_INITIALIZED);
630 SetState(CS_ENCODING); 760 SetState(CS_ENCODING);
631 761
632 // TODO(posciak): For now we only support input streams that meet encoder 762 CreateAlignedInputStreamFile(input_coded_size, &test_stream_);
633 // size requirements exactly (i.e. coded size == visible size), so that we 763
634 // can simply mmap the stream file and feed the encoder directly with chunks 764 // We may need to loop over the stream more than once if more frames than
635 // of that, instead of memcpying from mmapped file into a separate set of 765 // provided is required for bitrate tests.
636 // input buffers that would meet the coded size and alignment requirements. 766 if (force_bitrate_ && test_stream_.num_frames < kMinFramesForBitrateTests) {
637 // If/when this is changed, the ARM-specific alignment check below should be 767 DVLOG(1) << "Stream too short for bitrate test (" << test_stream_.num_frames
638 // redone as well. 768 << " frames), will loop it to reach " << kMinFramesForBitrateTests
769 << " frames";
770 num_frames_to_encode_ = kMinFramesForBitrateTests;
771 } else {
772 num_frames_to_encode_ = test_stream_.num_frames;
773 }
774
639 input_coded_size_ = input_coded_size; 775 input_coded_size_ = input_coded_size;
640 ASSERT_EQ(input_coded_size_, test_stream_.size);
641 #if defined(ARCH_CPU_ARMEL)
642 // ARM performs CPU cache management with CPU cache line granularity. We thus
643 // need to ensure our buffers are CPU cache line-aligned (64 byte-aligned).
644 // Otherwise newer kernels will refuse to accept them, and on older kernels
645 // we'll be treating ourselves to random corruption.
646 // Since we are just mmapping and passing chunks of the input file, to ensure
647 // alignment, if the starting virtual addresses of the frames in it were not
648 // 64 byte-aligned, we'd have to use a separate set of input buffers and copy
649 // the frames into them before sending to the encoder. It would have been an
650 // overkill here though, because, for now at least, we only test resolutions
651 // that result in proper alignment, and it would have also interfered with
652 // performance testing. So just assert that the frame size is a multiple of
653 // 64 bytes. This ensures all frames start at 64-byte boundary, because
654 // MemoryMappedFile should be mmapp()ed at virtual page start as well.
655 ASSERT_EQ(input_buffer_size_ & 63, 0u)
656 << "Frame size has to be a multiple of 64 bytes";
657 ASSERT_EQ(reinterpret_cast<off_t>(test_stream_.input_file.data()) & 63, 0)
658 << "Mapped file should be mapped at a 64 byte boundary";
659 #endif
660
661 num_required_input_buffers_ = input_count; 776 num_required_input_buffers_ = input_count;
662 ASSERT_GT(num_required_input_buffers_, 0UL); 777 ASSERT_GT(num_required_input_buffers_, 0UL);
663 778
664 output_buffer_size_ = output_size; 779 output_buffer_size_ = output_size;
665 ASSERT_GT(output_buffer_size_, 0UL); 780 ASSERT_GT(output_buffer_size_, 0UL);
666 781
667 for (unsigned int i = 0; i < kNumOutputBuffers; ++i) { 782 for (unsigned int i = 0; i < kNumOutputBuffers; ++i) {
668 base::SharedMemory* shm = new base::SharedMemory(); 783 base::SharedMemory* shm = new base::SharedMemory();
669 CHECK(shm->CreateAndMapAnonymous(output_buffer_size_)); 784 CHECK(shm->CreateAndMapAnonymous(output_buffer_size_));
670 output_shms_.push_back(shm); 785 output_shms_.push_back(shm);
(...skipping 63 matching lines...) Expand 10 before | Expand all | Expand 10 after
734 } 849 }
735 850
736 void VEAClient::InputNoLongerNeededCallback(int32 input_id) { 851 void VEAClient::InputNoLongerNeededCallback(int32 input_id) {
737 std::set<int32>::iterator it = inputs_at_client_.find(input_id); 852 std::set<int32>::iterator it = inputs_at_client_.find(input_id);
738 ASSERT_NE(it, inputs_at_client_.end()); 853 ASSERT_NE(it, inputs_at_client_.end());
739 inputs_at_client_.erase(it); 854 inputs_at_client_.erase(it);
740 FeedEncoderWithInputs(); 855 FeedEncoderWithInputs();
741 } 856 }
742 857
743 scoped_refptr<media::VideoFrame> VEAClient::PrepareInputFrame(off_t position) { 858 scoped_refptr<media::VideoFrame> VEAClient::PrepareInputFrame(off_t position) {
744 CHECK_LE(position + input_buffer_size_, test_stream_.input_file.length()); 859 CHECK_LE(position + test_stream_.aligned_buffer_size,
860 test_stream_.mapped_aligned_in_file.length());
745 861
746 uint8* frame_data = 862 uint8* frame_data_y =
747 const_cast<uint8*>(test_stream_.input_file.data() + position); 863 const_cast<uint8*>(test_stream_.mapped_aligned_in_file.data() + position);
864 uint8* frame_data_u = frame_data_y + (*test_stream_.aligned_plane_size)[0];
865 uint8* frame_data_v = frame_data_u + (*test_stream_.aligned_plane_size)[1];
748 866
749 CHECK_GT(current_framerate_, 0U); 867 CHECK_GT(current_framerate_, 0U);
750 scoped_refptr<media::VideoFrame> frame = 868 scoped_refptr<media::VideoFrame> frame =
751 media::VideoFrame::WrapExternalYuvData( 869 media::VideoFrame::WrapExternalYuvData(
752 kInputFormat, 870 kInputFormat,
753 input_coded_size_, 871 input_coded_size_,
754 gfx::Rect(test_stream_.size), 872 gfx::Rect(test_stream_.size),
755 test_stream_.size, 873 test_stream_.size,
756 input_coded_size_.width(), 874 input_coded_size_.width(),
757 input_coded_size_.width() / 2, 875 input_coded_size_.width() / 2,
758 input_coded_size_.width() / 2, 876 input_coded_size_.width() / 2,
759 frame_data, 877 frame_data_y,
760 frame_data + input_coded_size_.GetArea(), 878 frame_data_u,
761 frame_data + (input_coded_size_.GetArea() * 5 / 4), 879 frame_data_v,
762 base::TimeDelta().FromMilliseconds( 880 base::TimeDelta().FromMilliseconds(
763 next_input_id_ * base::Time::kMillisecondsPerSecond / 881 next_input_id_ * base::Time::kMillisecondsPerSecond /
764 current_framerate_), 882 current_framerate_),
765 media::BindToCurrentLoop( 883 media::BindToCurrentLoop(
766 base::Bind(&VEAClient::InputNoLongerNeededCallback, 884 base::Bind(&VEAClient::InputNoLongerNeededCallback,
767 base::Unretained(this), 885 base::Unretained(this),
768 next_input_id_))); 886 next_input_id_)));
769 887
770 CHECK(inputs_at_client_.insert(next_input_id_).second); 888 CHECK(inputs_at_client_.insert(next_input_id_).second);
771 ++next_input_id_; 889 ++next_input_id_;
772 890
773 return frame; 891 return frame;
774 } 892 }
775 893
776 void VEAClient::FeedEncoderWithInputs() { 894 void VEAClient::FeedEncoderWithInputs() {
777 if (!has_encoder()) 895 if (!has_encoder())
778 return; 896 return;
779 897
780 if (state_ != CS_ENCODING) 898 if (state_ != CS_ENCODING)
781 return; 899 return;
782 900
783 while (inputs_at_client_.size() < 901 while (inputs_at_client_.size() <
784 num_required_input_buffers_ + kNumExtraInputFrames) { 902 num_required_input_buffers_ + kNumExtraInputFrames) {
785 size_t bytes_left = test_stream_.input_file.length() - pos_in_input_stream_; 903 size_t bytes_left =
786 if (bytes_left < input_buffer_size_) { 904 test_stream_.mapped_aligned_in_file.length() - pos_in_input_stream_;
905 if (bytes_left < test_stream_.aligned_buffer_size) {
787 DCHECK_EQ(bytes_left, 0UL); 906 DCHECK_EQ(bytes_left, 0UL);
788 // Rewind if at the end of stream and we are still encoding. 907 // Rewind if at the end of stream and we are still encoding.
789 // This is to flush the encoder with additional frames from the beginning 908 // This is to flush the encoder with additional frames from the beginning
790 // of the stream, or if the stream is shorter that the number of frames 909 // of the stream, or if the stream is shorter that the number of frames
791 // we require for bitrate tests. 910 // we require for bitrate tests.
792 pos_in_input_stream_ = 0; 911 pos_in_input_stream_ = 0;
793 continue; 912 continue;
794 } 913 }
795 914
796 bool force_keyframe = false; 915 bool force_keyframe = false;
797 if (keyframe_period_ && next_input_id_ % keyframe_period_ == 0) { 916 if (keyframe_period_ && next_input_id_ % keyframe_period_ == 0) {
798 keyframe_requested_at_ = next_input_id_; 917 keyframe_requested_at_ = next_input_id_;
799 force_keyframe = true; 918 force_keyframe = true;
800 } 919 }
801 920
802 scoped_refptr<media::VideoFrame> video_frame = 921 scoped_refptr<media::VideoFrame> video_frame =
803 PrepareInputFrame(pos_in_input_stream_); 922 PrepareInputFrame(pos_in_input_stream_);
804 pos_in_input_stream_ += input_buffer_size_; 923 pos_in_input_stream_ += test_stream_.aligned_buffer_size;
805 924
806 encoder_->Encode(video_frame, force_keyframe); 925 encoder_->Encode(video_frame, force_keyframe);
807 } 926 }
808 } 927 }
809 928
810 void VEAClient::FeedEncoderWithOutput(base::SharedMemory* shm) { 929 void VEAClient::FeedEncoderWithOutput(base::SharedMemory* shm) {
811 if (!has_encoder()) 930 if (!has_encoder())
812 return; 931 return;
813 932
814 if (state_ != CS_ENCODING) 933 if (state_ != CS_ENCODING)
(...skipping 32 matching lines...) Expand 10 before | Expand all | Expand 10 after
847 // is asynchronous, i.e. not bound to any concrete frame, and because 966 // is asynchronous, i.e. not bound to any concrete frame, and because
848 // the pipeline can be deeper than one frame), at that frame, or after. 967 // the pipeline can be deeper than one frame), at that frame, or after.
849 // So the only constraints we put here is that we get a keyframe not 968 // So the only constraints we put here is that we get a keyframe not
850 // earlier than we requested one (in time), and not later than 969 // earlier than we requested one (in time), and not later than
851 // kMaxKeyframeDelay frames after the frame, for which we requested 970 // kMaxKeyframeDelay frames after the frame, for which we requested
852 // it, comes back encoded. 971 // it, comes back encoded.
853 EXPECT_LE(num_encoded_frames_, keyframe_requested_at_ + kMaxKeyframeDelay); 972 EXPECT_LE(num_encoded_frames_, keyframe_requested_at_ + kMaxKeyframeDelay);
854 973
855 if (num_encoded_frames_ == num_frames_to_encode_ / 2) { 974 if (num_encoded_frames_ == num_frames_to_encode_ / 2) {
856 VerifyStreamProperties(); 975 VerifyStreamProperties();
857 if (test_stream_.requested_subsequent_bitrate != 976 if (requested_subsequent_bitrate_ != current_requested_bitrate_ ||
858 current_requested_bitrate_ || 977 requested_subsequent_framerate_ != current_framerate_) {
859 test_stream_.requested_subsequent_framerate != current_framerate_) { 978 SetStreamParameters(requested_subsequent_bitrate_,
860 SetStreamParameters(test_stream_.requested_subsequent_bitrate, 979 requested_subsequent_framerate_);
861 test_stream_.requested_subsequent_framerate);
862 } 980 }
863 } else if (num_encoded_frames_ == num_frames_to_encode_) { 981 } else if (num_encoded_frames_ == num_frames_to_encode_) {
864 VerifyPerf(); 982 VerifyPerf();
865 VerifyStreamProperties(); 983 VerifyStreamProperties();
866 SetState(CS_FINISHED); 984 SetState(CS_FINISHED);
867 return false; 985 return false;
868 } 986 }
869 987
870 return true; 988 return true;
871 } 989 }
(...skipping 18 matching lines...) Expand all
890 num_frames_since_last_check_ = 0; 1008 num_frames_since_last_check_ = 0;
891 encoded_stream_size_since_last_check_ = 0; 1009 encoded_stream_size_since_last_check_ = 0;
892 1010
893 if (force_bitrate_) { 1011 if (force_bitrate_) {
894 EXPECT_NEAR(bitrate, 1012 EXPECT_NEAR(bitrate,
895 current_requested_bitrate_, 1013 current_requested_bitrate_,
896 kBitrateTolerance * current_requested_bitrate_); 1014 kBitrateTolerance * current_requested_bitrate_);
897 } 1015 }
898 } 1016 }
899 1017
1018 // Setup test stream data and delete temporary aligned files at the beginning
1019 // and end of unittest. We only need to setup once for all test cases.
1020 class VideoEncodeAcceleratorTestEnvironment : public ::testing::Environment {
1021 public:
1022 virtual void SetUp() {
1023 ParseAndReadTestStreamData(*test_stream_data, &test_streams);
1024 }
1025
1026 virtual void TearDown() {
1027 for (size_t i = 0; i < test_streams.size(); i++) {
1028 base::DeleteFile(test_streams[i]->aligned_in_file, false);
1029 delete test_streams[i]->aligned_plane_size;
1030 }
1031 }
1032
1033 base::FilePath::StringType* test_stream_data;
1034 ScopedVector<TestStream> test_streams;
1035 };
1036 VideoEncodeAcceleratorTestEnvironment* g_env;
Pawel Osciak 2014/09/11 09:51:47 Please define globals together at the top of the f
henryhsu 2014/09/11 11:39:10 Done.
1037
900 // Test parameters: 1038 // Test parameters:
901 // - Number of concurrent encoders. 1039 // - Number of concurrent encoders.
902 // - If true, save output to file (provided an output filename was supplied). 1040 // - If true, save output to file (provided an output filename was supplied).
903 // - Force a keyframe every n frames. 1041 // - Force a keyframe every n frames.
904 // - Force bitrate; the actual required value is provided as a property 1042 // - Force bitrate; the actual required value is provided as a property
905 // of the input stream, because it depends on stream type/resolution/etc. 1043 // of the input stream, because it depends on stream type/resolution/etc.
906 // - If true, measure performance. 1044 // - If true, measure performance.
907 // - If true, switch bitrate mid-stream. 1045 // - If true, switch bitrate mid-stream.
908 // - If true, switch framerate mid-stream. 1046 // - If true, switch framerate mid-stream.
909 class VideoEncodeAcceleratorTest 1047 class VideoEncodeAcceleratorTest
910 : public ::testing::TestWithParam< 1048 : public ::testing::TestWithParam<
911 Tuple7<int, bool, int, bool, bool, bool, bool> > {}; 1049 Tuple7<int, bool, int, bool, bool, bool, bool> > {};
912 1050
913 TEST_P(VideoEncodeAcceleratorTest, TestSimpleEncode) { 1051 TEST_P(VideoEncodeAcceleratorTest, TestSimpleEncode) {
914 const size_t num_concurrent_encoders = GetParam().a; 1052 const size_t num_concurrent_encoders = GetParam().a;
915 const bool save_to_file = GetParam().b; 1053 const bool save_to_file = GetParam().b;
916 const unsigned int keyframe_period = GetParam().c; 1054 const unsigned int keyframe_period = GetParam().c;
917 const bool force_bitrate = GetParam().d; 1055 const bool force_bitrate = GetParam().d;
918 const bool test_perf = GetParam().e; 1056 const bool test_perf = GetParam().e;
919 const bool mid_stream_bitrate_switch = GetParam().f; 1057 const bool mid_stream_bitrate_switch = GetParam().f;
920 const bool mid_stream_framerate_switch = GetParam().g; 1058 const bool mid_stream_framerate_switch = GetParam().g;
921 1059
922 // Initialize the test streams.
923 ScopedVector<TestStream> test_streams;
924 ParseAndReadTestStreamData(*g_test_stream_data, &test_streams);
925 UpdateTestStreamData(
926 mid_stream_bitrate_switch, mid_stream_framerate_switch, &test_streams);
927
928 ScopedVector<ClientStateNotification<ClientState> > notes; 1060 ScopedVector<ClientStateNotification<ClientState> > notes;
929 ScopedVector<VEAClient> clients; 1061 ScopedVector<VEAClient> clients;
930 base::Thread encoder_thread("EncoderThread"); 1062 base::Thread encoder_thread("EncoderThread");
931 ASSERT_TRUE(encoder_thread.Start()); 1063 ASSERT_TRUE(encoder_thread.Start());
932 1064
933 // Create all encoders. 1065 // Create all encoders.
934 for (size_t i = 0; i < num_concurrent_encoders; i++) { 1066 for (size_t i = 0; i < num_concurrent_encoders; i++) {
935 size_t test_stream_index = i % test_streams.size(); 1067 size_t test_stream_index = i % g_env->test_streams.size();
936 // Disregard save_to_file if we didn't get an output filename. 1068 // Disregard save_to_file if we didn't get an output filename.
937 bool encoder_save_to_file = 1069 bool encoder_save_to_file =
938 (save_to_file && 1070 (save_to_file &&
939 !test_streams[test_stream_index]->out_filename.empty()); 1071 !g_env->test_streams[test_stream_index]->out_filename.empty());
940 1072
941 notes.push_back(new ClientStateNotification<ClientState>()); 1073 notes.push_back(new ClientStateNotification<ClientState>());
942 clients.push_back(new VEAClient(*test_streams[test_stream_index], 1074 clients.push_back(new VEAClient(*g_env->test_streams[test_stream_index],
943 notes.back(), 1075 notes.back(),
944 encoder_save_to_file, 1076 encoder_save_to_file,
945 keyframe_period, 1077 keyframe_period,
946 force_bitrate, 1078 force_bitrate,
947 test_perf)); 1079 test_perf,
1080 mid_stream_bitrate_switch,
1081 mid_stream_framerate_switch));
948 1082
949 encoder_thread.message_loop()->PostTask( 1083 encoder_thread.message_loop()->PostTask(
950 FROM_HERE, 1084 FROM_HERE,
951 base::Bind(&VEAClient::CreateEncoder, 1085 base::Bind(&VEAClient::CreateEncoder,
952 base::Unretained(clients.back()))); 1086 base::Unretained(clients.back())));
953 } 1087 }
954 1088
955 // All encoders must pass through states in this order. 1089 // All encoders must pass through states in this order.
956 enum ClientState state_transitions[] = {CS_ENCODER_SET, CS_INITIALIZED, 1090 enum ClientState state_transitions[] = {CS_ENCODER_SET, CS_INITIALIZED,
957 CS_ENCODING, CS_FINISHED}; 1091 CS_ENCODING, CS_FINISHED};
(...skipping 63 matching lines...) Expand 10 before | Expand all | Expand 10 after
1021 // TODO(posciak): more tests: 1155 // TODO(posciak): more tests:
1022 // - async FeedEncoderWithOutput 1156 // - async FeedEncoderWithOutput
1023 // - out-of-order return of outputs to encoder 1157 // - out-of-order return of outputs to encoder
1024 // - multiple encoders + decoders 1158 // - multiple encoders + decoders
1025 // - mid-stream encoder_->Destroy() 1159 // - mid-stream encoder_->Destroy()
1026 1160
1027 } // namespace 1161 } // namespace
1028 } // namespace content 1162 } // namespace content
1029 1163
1030 int main(int argc, char** argv) { 1164 int main(int argc, char** argv) {
1165 content::g_env =
1166 reinterpret_cast<content::VideoEncodeAcceleratorTestEnvironment*>(
1167 testing::AddGlobalTestEnvironment(
1168 new content::VideoEncodeAcceleratorTestEnvironment));
1031 testing::InitGoogleTest(&argc, argv); // Removes gtest-specific args. 1169 testing::InitGoogleTest(&argc, argv); // Removes gtest-specific args.
1032 base::CommandLine::Init(argc, argv); 1170 base::CommandLine::Init(argc, argv);
1033 1171
1034 base::ShadowingAtExitManager at_exit_manager; 1172 base::ShadowingAtExitManager at_exit_manager;
1035 scoped_ptr<base::FilePath::StringType> test_stream_data( 1173 scoped_ptr<base::FilePath::StringType> test_stream_data(
1036 new base::FilePath::StringType( 1174 new base::FilePath::StringType(
1037 media::GetTestDataFilePath(content::g_default_in_filename).value() + 1175 media::GetTestDataFilePath(content::g_default_in_filename).value() +
1038 content::g_default_in_parameters)); 1176 content::g_default_in_parameters));
1039 content::g_test_stream_data = test_stream_data.get(); 1177 content::g_env->test_stream_data = test_stream_data.get();
Pawel Osciak 2014/09/11 09:51:46 This should be an argument to the constructor of e
henryhsu 2014/09/11 11:39:10 Done.
1040 1178
1041 // Needed to enable DVLOG through --vmodule. 1179 // Needed to enable DVLOG through --vmodule.
1042 logging::LoggingSettings settings; 1180 logging::LoggingSettings settings;
1043 settings.logging_dest = logging::LOG_TO_SYSTEM_DEBUG_LOG; 1181 settings.logging_dest = logging::LOG_TO_SYSTEM_DEBUG_LOG;
1044 CHECK(logging::InitLogging(settings)); 1182 CHECK(logging::InitLogging(settings));
1045 1183
1046 const base::CommandLine* cmd_line = base::CommandLine::ForCurrentProcess(); 1184 const base::CommandLine* cmd_line = base::CommandLine::ForCurrentProcess();
1047 DCHECK(cmd_line); 1185 DCHECK(cmd_line);
1048 1186
1049 base::CommandLine::SwitchMap switches = cmd_line->GetSwitches(); 1187 base::CommandLine::SwitchMap switches = cmd_line->GetSwitches();
1050 for (base::CommandLine::SwitchMap::const_iterator it = switches.begin(); 1188 for (base::CommandLine::SwitchMap::const_iterator it = switches.begin();
1051 it != switches.end(); 1189 it != switches.end();
1052 ++it) { 1190 ++it) {
1053 if (it->first == "test_stream_data") { 1191 if (it->first == "test_stream_data") {
1054 test_stream_data->assign(it->second.c_str()); 1192 test_stream_data->assign(it->second.c_str());
1055 continue; 1193 continue;
1056 } 1194 }
1057 if (it->first == "v" || it->first == "vmodule") 1195 if (it->first == "v" || it->first == "vmodule")
1058 continue; 1196 continue;
1059 LOG(FATAL) << "Unexpected switch: " << it->first << ":" << it->second; 1197 LOG(FATAL) << "Unexpected switch: " << it->first << ":" << it->second;
1060 } 1198 }
1061
Pawel Osciak 2014/09/11 09:51:47 Please don't remove this line.
henryhsu 2014/09/11 11:39:10 Done.
1062 return RUN_ALL_TESTS(); 1199 return RUN_ALL_TESTS();
1063 } 1200 }
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