blob: c3423ac861cb6811acdeaa4476606372b170fdf2 [file]
// Copyright 2017 The Chromium Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file.
#include "media/mojo/mojom/audio_decoder_config_mojom_traits.h"
#include <utility>
#include "base/cxx17_backports.h"
#include "media/base/audio_decoder_config.h"
#include "media/base/media_util.h"
#include "mojo/public/cpp/base/time_mojom_traits.h"
#include "testing/gtest/include/gtest/gtest.h"
namespace media {
TEST(AudioDecoderConfigStructTraitsTest, ConvertAudioDecoderConfig_Normal) {
const uint8_t kExtraData[] = "input extra data";
const std::vector<uint8_t> kExtraDataVector(
&kExtraData[0], &kExtraData[0] + base::size(kExtraData));
AudioDecoderConfig input;
input.Initialize(kCodecAAC, kSampleFormatU8, CHANNEL_LAYOUT_SURROUND, 48000,
kExtraDataVector, EncryptionScheme::kUnencrypted,
base::TimeDelta(), 0);
std::vector<uint8_t> data =
media::mojom::AudioDecoderConfig::Serialize(&input);
AudioDecoderConfig output;
EXPECT_TRUE(
media::mojom::AudioDecoderConfig::Deserialize(std::move(data), &output));
EXPECT_TRUE(output.Matches(input));
}
TEST(AudioDecoderConfigStructTraitsTest,
ConvertAudioDecoderConfig_EmptyExtraData) {
AudioDecoderConfig input;
input.Initialize(kCodecAAC, kSampleFormatU8, CHANNEL_LAYOUT_SURROUND, 48000,
EmptyExtraData(), EncryptionScheme::kUnencrypted,
base::TimeDelta(), 0);
std::vector<uint8_t> data =
media::mojom::AudioDecoderConfig::Serialize(&input);
AudioDecoderConfig output;
EXPECT_TRUE(
media::mojom::AudioDecoderConfig::Deserialize(std::move(data), &output));
EXPECT_TRUE(output.Matches(input));
}
TEST(AudioDecoderConfigStructTraitsTest, ConvertAudioDecoderConfig_Encrypted) {
AudioDecoderConfig input;
input.Initialize(kCodecAAC, kSampleFormatU8, CHANNEL_LAYOUT_SURROUND, 48000,
EmptyExtraData(), EncryptionScheme::kCenc, base::TimeDelta(),
0);
std::vector<uint8_t> data =
media::mojom::AudioDecoderConfig::Serialize(&input);
AudioDecoderConfig output;
EXPECT_TRUE(
media::mojom::AudioDecoderConfig::Deserialize(std::move(data), &output));
EXPECT_TRUE(output.Matches(input));
}
TEST(AudioDecoderConfigStructTraitsTest,
ConvertAudioDecoderConfig_WithProfile) {
AudioDecoderConfig input;
input.Initialize(kCodecAAC, kSampleFormatU8, CHANNEL_LAYOUT_SURROUND, 48000,
EmptyExtraData(), EncryptionScheme::kUnencrypted,
base::TimeDelta(), 0);
input.set_profile(AudioCodecProfile::kXHE_AAC);
std::vector<uint8_t> data =
media::mojom::AudioDecoderConfig::Serialize(&input);
AudioDecoderConfig output;
EXPECT_TRUE(
media::mojom::AudioDecoderConfig::Deserialize(std::move(data), &output));
EXPECT_TRUE(output.Matches(input));
}
TEST(AudioDecoderConfigStructTraitsTest,
ConvertAudioDecoderConfig_DisableDiscardDecoderDelay) {
AudioDecoderConfig input;
input.Initialize(kCodecAAC, kSampleFormatU8, CHANNEL_LAYOUT_SURROUND, 48000,
EmptyExtraData(), EncryptionScheme::kUnencrypted,
base::TimeDelta(), 0);
input.disable_discard_decoder_delay();
std::vector<uint8_t> data =
media::mojom::AudioDecoderConfig::Serialize(&input);
AudioDecoderConfig output;
EXPECT_TRUE(
media::mojom::AudioDecoderConfig::Deserialize(std::move(data), &output));
EXPECT_TRUE(output.Matches(input));
EXPECT_FALSE(output.should_discard_decoder_delay());
}
TEST(AudioDecoderConfigStructTraitsTest,
ConvertAudioDecoderConfig_TargetOutputChannelLayout) {
AudioDecoderConfig input;
input.Initialize(kCodecAAC, kSampleFormatU8, CHANNEL_LAYOUT_SURROUND, 48000,
EmptyExtraData(), EncryptionScheme::kUnencrypted,
base::TimeDelta(), 0);
input.set_target_output_channel_layout(CHANNEL_LAYOUT_5_1);
std::vector<uint8_t> data =
media::mojom::AudioDecoderConfig::Serialize(&input);
AudioDecoderConfig output;
EXPECT_TRUE(
media::mojom::AudioDecoderConfig::Deserialize(std::move(data), &output));
EXPECT_TRUE(output.Matches(input));
EXPECT_EQ(output.target_output_channel_layout(), CHANNEL_LAYOUT_5_1);
}
} // namespace media