| Index: webrtc/common_audio/wav_file_unittest.cc
 | 
| diff --git a/webrtc/common_audio/wav_file_unittest.cc b/webrtc/common_audio/wav_file_unittest.cc
 | 
| index 78b0a34de91aacf5325f7ce3d09e97dc798f2a05..3732079f4f37b47c2784f0e10341c36a39e698b1 100644
 | 
| --- a/webrtc/common_audio/wav_file_unittest.cc
 | 
| +++ b/webrtc/common_audio/wav_file_unittest.cc
 | 
| @@ -26,7 +26,7 @@ static const float kSamples[] = {0.0, 10.0, 4e4, -1e9};
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|  // Write a tiny WAV file with the C++ interface and verify the result.
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|  TEST(WavWriterTest, CPP) {
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|    const std::string outfile = test::OutputPath() + "wavtest1.wav";
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| -  static const uint32_t kNumSamples = 3;
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| +  static const size_t kNumSamples = 3;
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|    {
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|      WavWriter w(outfile, 14099, 1);
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|      EXPECT_EQ(14099, w.sample_rate());
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| @@ -64,10 +64,10 @@ TEST(WavWriterTest, CPP) {
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|      0xff, 0x7f,  // third sample: 4e4 (saturated)
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|      kMetadata[0], kMetadata[1],
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|    };
 | 
| -  static const int kContentSize =
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| +  static const size_t kContentSize =
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|        kWavHeaderSize + kNumSamples * sizeof(int16_t) + sizeof(kMetadata);
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|    static_assert(sizeof(kExpectedContents) == kContentSize, "content size");
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| -  EXPECT_EQ(size_t(kContentSize), test::GetFileSize(outfile));
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| +  EXPECT_EQ(kContentSize, test::GetFileSize(outfile));
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|    FILE* f = fopen(outfile.c_str(), "rb");
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|    ASSERT_TRUE(f);
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|    uint8_t contents[kContentSize];
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| @@ -95,7 +95,7 @@ TEST(WavWriterTest, C) {
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|    EXPECT_EQ(11904, rtc_WavSampleRate(w));
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|    EXPECT_EQ(2, rtc_WavNumChannels(w));
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|    EXPECT_EQ(0u, rtc_WavNumSamples(w));
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| -  static const uint32_t kNumSamples = 4;
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| +  static const size_t kNumSamples = 4;
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|    rtc_WavWriteSamples(w, &kSamples[0], 2);
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|    EXPECT_EQ(2u, rtc_WavNumSamples(w));
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|    rtc_WavWriteSamples(w, &kSamples[2], kNumSamples - 2);
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| @@ -120,10 +120,10 @@ TEST(WavWriterTest, C) {
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|      0xff, 0x7f,  // third sample: 4e4 (saturated)
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|      0, 0x80,  // fourth sample: -1e9 (saturated)
 | 
|    };
 | 
| -  static const int kContentSize =
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| +  static const size_t kContentSize =
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|        kWavHeaderSize + kNumSamples * sizeof(int16_t);
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|    static_assert(sizeof(kExpectedContents) == kContentSize, "content size");
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| -  EXPECT_EQ(size_t(kContentSize), test::GetFileSize(outfile));
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| +  EXPECT_EQ(kContentSize, test::GetFileSize(outfile));
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|    FILE* f = fopen(outfile.c_str(), "rb");
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|    ASSERT_TRUE(f);
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|    uint8_t contents[kContentSize];
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| @@ -137,9 +137,9 @@ TEST(WavWriterTest, LargeFile) {
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|    std::string outfile = test::OutputPath() + "wavtest3.wav";
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|    static const int kSampleRate = 8000;
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|    static const int kNumChannels = 2;
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| -  static const uint32_t kNumSamples = 3 * kSampleRate * kNumChannels;
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| +  static const size_t kNumSamples = 3 * kSampleRate * kNumChannels;
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|    float samples[kNumSamples];
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| -  for (uint32_t i = 0; i < kNumSamples; i += kNumChannels) {
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| +  for (size_t i = 0; i < kNumSamples; i += kNumChannels) {
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|      // A nice periodic beeping sound.
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|      static const double kToneHz = 440;
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|      const double t = static_cast<double>(i) / (kNumChannels * kSampleRate);
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| 
 |