| Index: webrtc/modules/audio_processing/beamformer/nonlinear_beamformer.cc
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| diff --git a/webrtc/modules/audio_processing/beamformer/nonlinear_beamformer.cc b/webrtc/modules/audio_processing/beamformer/nonlinear_beamformer.cc
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| index 029fa089fc761704dc69dec031f0abcf79471580..0544104b79e9cab12b92d58383462d71ae450eae 100644
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| --- a/webrtc/modules/audio_processing/beamformer/nonlinear_beamformer.cc
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| +++ b/webrtc/modules/audio_processing/beamformer/nonlinear_beamformer.cc
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| @@ -163,7 +163,7 @@ void TransposedConjugatedProduct(const ComplexMatrix<float>& in,
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|  }
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|  
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|  std::vector<Point> GetCenteredArray(std::vector<Point> array_geometry) {
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| -  for (int dim = 0; dim < 3; ++dim) {
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| +  for (size_t dim = 0; dim < 3; ++dim) {
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|      float center = 0.f;
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|      for (size_t i = 0; i < array_geometry.size(); ++i) {
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|        center += array_geometry[i].c[dim];
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| @@ -379,7 +379,7 @@ void NonlinearBeamformer::ProcessChunk(const ChannelBuffer<float>& input,
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|        (high_pass_postfilter_mask_ - old_high_pass_mask) /
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|        input.num_frames_per_band();
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|    // Apply the smoothed high-pass mask to the first channel of each band.
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| -  // This can be done because the effct of the linear beamformer is negligible
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| +  // This can be done because the effect of the linear beamformer is negligible
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|    // compared to the post-filter.
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|    for (size_t i = 1; i < input.num_bands(); ++i) {
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|      float smoothed_mask = old_high_pass_mask;
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| @@ -412,9 +412,9 @@ void NonlinearBeamformer::ProcessAudioBlock(const complex_f* const* input,
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|                                              size_t num_freq_bins,
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|                                              int num_output_channels,
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|                                              complex_f* const* output) {
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| -  RTC_CHECK_EQ(num_freq_bins, kNumFreqBins);
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| -  RTC_CHECK_EQ(num_input_channels, num_input_channels_);
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| -  RTC_CHECK_EQ(num_output_channels, 1);
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| +  RTC_CHECK_EQ(kNumFreqBins, num_freq_bins);
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| +  RTC_CHECK_EQ(num_input_channels_, num_input_channels);
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| +  RTC_CHECK_EQ(1, num_output_channels);
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|  
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|    // Calculating the post-filter masks. Note that we need two for each
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|    // frequency bin to account for the positive and negative interferer
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| 
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