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  /external/webrtc/webrtc/modules/audio_processing/beamformer/
nonlinear_beamformer_test.cc 72 Deinterleave(&interleaved[0], in_buf.num_frames(),
  /external/webrtc/webrtc/common_audio/resampler/
push_resampler.cc 86 Deinterleave(src, src_length_mono, num_channels_, deinterleaved);
  /external/webrtc/webrtc/common_audio/
audio_util_unittest.cc 114 Deinterleave(kInterleaved, kSamplesPerChannel, kNumChannels, deinterleaved);
131 Deinterleave(kInterleaved, kSamplesPerChannel, kNumChannels, deinterleaved);
  /external/webrtc/webrtc/modules/audio_processing/test/
test_utils.cc 48 Deinterleave(&interleaved_[0], buffer->num_frames(), buffer->num_channels(),
audio_processing_unittest.cc 71 Deinterleave(int_data,
329 Deinterleave(float_data, cb->num_frames(), 2,
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  /external/webrtc/webrtc/common_audio/include/
audio_util.h 83 // Deinterleave audio from |interleaved| to the channel buffers pointed to
88 void Deinterleave(const T* interleaved,
  /external/webrtc/webrtc/modules/audio_processing/
audio_buffer.cc 388 // Downmix and deinterleave simultaneously.
393 Deinterleave(frame->data_,
  /external/libvorbis/doc/
08-residue.tex 426 channel. After decode, deinterleave the vector into independent vectors, one for each output channel. That is:
431 \item Post decode: Deinterleave the single vector \varname{[v]} returned by format 1 decode as described above into \emph{ch} independent vectors, one for each outputchannel, according to:

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