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1 /* | 1 /* |
2 * Copyright (c) 2015 The WebRTC project authors. All Rights Reserved. | 2 * Copyright (c) 2015 The WebRTC project authors. All Rights Reserved. |
3 * | 3 * |
4 * Use of this source code is governed by a BSD-style license | 4 * Use of this source code is governed by a BSD-style license |
5 * that can be found in the LICENSE file in the root of the source | 5 * that can be found in the LICENSE file in the root of the source |
6 * tree. An additional intellectual property rights grant can be found | 6 * tree. An additional intellectual property rights grant can be found |
7 * in the file PATENTS. All contributing project authors may | 7 * in the file PATENTS. All contributing project authors may |
8 * be found in the AUTHORS file in the root of the source tree. | 8 * be found in the AUTHORS file in the root of the source tree. |
9 */ | 9 */ |
10 | 10 |
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320 ASSERT_TRUE(apm_.get()); | 320 ASSERT_TRUE(apm_.get()); |
321 | 321 |
322 EXPECT_NOERR(apm_->gain_control()->set_stream_analog_level(msg.level())); | 322 EXPECT_NOERR(apm_->gain_control()->set_stream_analog_level(msg.level())); |
323 EXPECT_NOERR(apm_->set_stream_delay_ms(msg.delay())); | 323 EXPECT_NOERR(apm_->set_stream_delay_ms(msg.delay())); |
324 apm_->echo_cancellation()->set_stream_drift_samples(msg.drift()); | 324 apm_->echo_cancellation()->set_stream_drift_samples(msg.drift()); |
325 if (msg.has_keypress()) | 325 if (msg.has_keypress()) |
326 apm_->set_stream_key_pressed(msg.keypress()); | 326 apm_->set_stream_key_pressed(msg.keypress()); |
327 else | 327 else |
328 apm_->set_stream_key_pressed(true); | 328 apm_->set_stream_key_pressed(true); |
329 | 329 |
330 ASSERT_EQ(input_config_.num_channels(), msg.input_channel_size()); | 330 ASSERT_EQ(input_config_.num_channels(), |
| 331 static_cast<size_t>(msg.input_channel_size())); |
331 ASSERT_EQ(input_config_.num_frames() * sizeof(float), | 332 ASSERT_EQ(input_config_.num_frames() * sizeof(float), |
332 msg.input_channel(0).size()); | 333 msg.input_channel(0).size()); |
333 | 334 |
334 for (int i = 0; i < msg.input_channel_size(); ++i) { | 335 for (int i = 0; i < msg.input_channel_size(); ++i) { |
335 memcpy(input_->channels()[i], msg.input_channel(i).data(), | 336 memcpy(input_->channels()[i], msg.input_channel(i).data(), |
336 msg.input_channel(i).size()); | 337 msg.input_channel(i).size()); |
337 } | 338 } |
338 | 339 |
339 ASSERT_EQ(AudioProcessing::kNoError, | 340 ASSERT_EQ(AudioProcessing::kNoError, |
340 apm_->ProcessStream(input_->channels(), input_config_, | 341 apm_->ProcessStream(input_->channels(), input_config_, |
341 output_config_, output_->channels())); | 342 output_config_, output_->channels())); |
342 | 343 |
343 // Check that output of APM is bit-exact to the output in the dump. | 344 // Check that output of APM is bit-exact to the output in the dump. |
344 ASSERT_EQ(output_config_.num_channels(), msg.output_channel_size()); | 345 ASSERT_EQ(output_config_.num_channels(), |
| 346 static_cast<size_t>(msg.output_channel_size())); |
345 ASSERT_EQ(output_config_.num_frames() * sizeof(float), | 347 ASSERT_EQ(output_config_.num_frames() * sizeof(float), |
346 msg.output_channel(0).size()); | 348 msg.output_channel(0).size()); |
347 for (int i = 0; i < msg.output_channel_size(); ++i) { | 349 for (int i = 0; i < msg.output_channel_size(); ++i) { |
348 ASSERT_EQ(0, memcmp(output_->channels()[i], msg.output_channel(i).data(), | 350 ASSERT_EQ(0, memcmp(output_->channels()[i], msg.output_channel(i).data(), |
349 msg.output_channel(i).size())); | 351 msg.output_channel(i).size())); |
350 } | 352 } |
351 } | 353 } |
352 | 354 |
353 void DebugDumpTest::OnReverseStreamEvent(const audioproc::ReverseStream& msg) { | 355 void DebugDumpTest::OnReverseStreamEvent(const audioproc::ReverseStream& msg) { |
354 // APM should have been created. | 356 // APM should have been created. |
355 ASSERT_TRUE(apm_.get()); | 357 ASSERT_TRUE(apm_.get()); |
356 | 358 |
357 ASSERT_GT(msg.channel_size(), 0); | 359 ASSERT_GT(msg.channel_size(), 0); |
358 ASSERT_EQ(reverse_config_.num_channels(), msg.channel_size()); | 360 ASSERT_EQ(reverse_config_.num_channels(), |
| 361 static_cast<size_t>(msg.channel_size())); |
359 ASSERT_EQ(reverse_config_.num_frames() * sizeof(float), | 362 ASSERT_EQ(reverse_config_.num_frames() * sizeof(float), |
360 msg.channel(0).size()); | 363 msg.channel(0).size()); |
361 | 364 |
362 for (int i = 0; i < msg.channel_size(); ++i) { | 365 for (int i = 0; i < msg.channel_size(); ++i) { |
363 memcpy(reverse_->channels()[i], msg.channel(i).data(), | 366 memcpy(reverse_->channels()[i], msg.channel(i).data(), |
364 msg.channel(i).size()); | 367 msg.channel(i).size()); |
365 } | 368 } |
366 | 369 |
367 ASSERT_EQ(AudioProcessing::kNoError, | 370 ASSERT_EQ(AudioProcessing::kNoError, |
368 apm_->ProcessReverseStream(reverse_->channels(), | 371 apm_->ProcessReverseStream(reverse_->channels(), |
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600 config.Set<ExperimentalNs>(new ExperimentalNs(true)); | 603 config.Set<ExperimentalNs>(new ExperimentalNs(true)); |
601 DebugDumpGenerator generator(config); | 604 DebugDumpGenerator generator(config); |
602 generator.StartRecording(); | 605 generator.StartRecording(); |
603 generator.Process(100); | 606 generator.Process(100); |
604 generator.StopRecording(); | 607 generator.StopRecording(); |
605 VerifyDebugDump(generator.dump_file_name()); | 608 VerifyDebugDump(generator.dump_file_name()); |
606 } | 609 } |
607 | 610 |
608 } // namespace test | 611 } // namespace test |
609 } // namespace webrtc | 612 } // namespace webrtc |
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