Replace slave -> helper, master -> reference
A slight simplification of the NetEq code is also included. The subtrees below common_audio, modules/audio_coding and modules/audio_processing were scanned while making this CL. Bug: webrtc:11680 Change-Id: I33bb1c75b2e3d1c6793fd1c5741ca59f4b6e8455 Reviewed-on: https://webrtc-review.googlesource.com/c/src/+/178361 Reviewed-by: Sam Zackrisson <saza@webrtc.org> Commit-Queue: Henrik Lundin <henrik.lundin@webrtc.org> Cr-Commit-Position: refs/heads/master@{#31578}
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@ -90,8 +90,8 @@ class Resampler {
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size_t num_channels_;
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// Extra instance for stereo
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Resampler* slave_left_;
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Resampler* slave_right_;
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Resampler* helper_left_;
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Resampler* helper_right_;
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};
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} // namespace webrtc
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@ -37,8 +37,8 @@ Resampler::Resampler()
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my_out_frequency_khz_(0),
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my_mode_(kResamplerMode1To1),
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num_channels_(0),
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slave_left_(nullptr),
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slave_right_(nullptr) {}
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helper_left_(nullptr),
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helper_right_(nullptr) {}
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Resampler::Resampler(int inFreq, int outFreq, size_t num_channels)
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: Resampler() {
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@ -61,11 +61,11 @@ Resampler::~Resampler() {
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if (out_buffer_) {
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free(out_buffer_);
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}
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if (slave_left_) {
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delete slave_left_;
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if (helper_left_) {
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delete helper_left_;
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}
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if (slave_right_) {
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delete slave_right_;
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if (helper_right_) {
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delete helper_right_;
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}
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}
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@ -120,13 +120,13 @@ int Resampler::Reset(int inFreq, int outFreq, size_t num_channels) {
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free(out_buffer_);
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out_buffer_ = nullptr;
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}
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if (slave_left_) {
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delete slave_left_;
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slave_left_ = nullptr;
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if (helper_left_) {
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delete helper_left_;
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helper_left_ = nullptr;
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}
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if (slave_right_) {
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delete slave_right_;
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slave_right_ = nullptr;
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if (helper_right_) {
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delete helper_right_;
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helper_right_ = nullptr;
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}
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in_buffer_size_ = 0;
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@ -140,8 +140,8 @@ int Resampler::Reset(int inFreq, int outFreq, size_t num_channels) {
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if (num_channels_ == 2) {
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// Create two mono resamplers.
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slave_left_ = new Resampler(inFreq, outFreq, 1);
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slave_right_ = new Resampler(inFreq, outFreq, 1);
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helper_left_ = new Resampler(inFreq, outFreq, 1);
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helper_right_ = new Resampler(inFreq, outFreq, 1);
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}
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// Now create the states we need.
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@ -401,7 +401,7 @@ int Resampler::Push(const int16_t* samplesIn,
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size_t maxLen,
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size_t& outLen) {
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if (num_channels_ == 2) {
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// Split up the signal and call the slave object for each channel
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// Split up the signal and call the helper object for each channel
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int16_t* left =
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static_cast<int16_t*>(malloc(lengthIn * sizeof(int16_t) / 2));
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int16_t* right =
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@ -422,9 +422,9 @@ int Resampler::Push(const int16_t* samplesIn,
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size_t actualOutLen_left = 0;
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size_t actualOutLen_right = 0;
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// Do resampling for right channel
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res |= slave_left_->Push(left, lengthIn, out_left, maxLen / 2,
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res |= helper_left_->Push(left, lengthIn, out_left, maxLen / 2,
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actualOutLen_left);
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res |= slave_right_->Push(right, lengthIn, out_right, maxLen / 2,
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res |= helper_right_->Push(right, lengthIn, out_right, maxLen / 2,
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actualOutLen_right);
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if (res || (actualOutLen_left != actualOutLen_right)) {
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free(left);
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@ -80,7 +80,7 @@ size_t Merge::Process(int16_t* input,
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if (channel == 0) {
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// Downsample, correlate, and find strongest correlation period for the
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// master (i.e., first) channel only.
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// reference (i.e., first) channel only.
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// Downsample to 4kHz sample rate.
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Downsample(input_channel.get(), input_length_per_channel,
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expanded_channel.get(), expanded_length);
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@ -43,7 +43,7 @@ TimeStretch::ReturnCodes TimeStretch::Process(const int16_t* input,
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signal_len = input_len / num_channels_;
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signal_array.reset(new int16_t[signal_len]);
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signal = signal_array.get();
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size_t j = master_channel_;
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size_t j = kRefChannel;
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for (size_t i = 0; i < signal_len; ++i) {
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signal_array[i] = input[j];
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j += num_channels_;
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@ -187,7 +187,7 @@ bool TimeStretch::SpeechDetection(int32_t vec1_energy,
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(static_cast<int64_t>(vec1_energy) + vec2_energy) / 16);
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int32_t right_side;
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if (background_noise_.initialized()) {
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right_side = background_noise_.Energy(master_channel_);
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right_side = background_noise_.Energy(kRefChannel);
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} else {
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// If noise parameters have not been estimated, use a fixed threshold.
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right_side = 75000;
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@ -40,13 +40,11 @@ class TimeStretch {
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: sample_rate_hz_(sample_rate_hz),
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fs_mult_(sample_rate_hz / 8000),
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num_channels_(num_channels),
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master_channel_(0), // First channel is master.
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background_noise_(background_noise),
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max_input_value_(0) {
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assert(sample_rate_hz_ == 8000 || sample_rate_hz_ == 16000 ||
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sample_rate_hz_ == 32000 || sample_rate_hz_ == 48000);
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assert(num_channels_ > 0);
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assert(master_channel_ < num_channels_);
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memset(auto_correlation_, 0, sizeof(auto_correlation_));
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}
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@ -86,11 +84,11 @@ class TimeStretch {
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static const size_t kMaxLag = 60;
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static const size_t kDownsampledLen = kCorrelationLen + kMaxLag;
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static const int kCorrelationThreshold = 14746; // 0.9 in Q14.
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static constexpr size_t kRefChannel = 0; // First channel is reference.
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const int sample_rate_hz_;
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const int fs_mult_; // Sample rate multiplier = sample_rate_hz_ / 8000.
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const size_t num_channels_;
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const size_t master_channel_;
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const BackgroundNoise& background_noise_;
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int16_t max_input_value_;
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int16_t downsampled_input_[kDownsampledLen];
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