#ifndef MODULES_AUDIO_PROCESSING_AUDIO_BUFFER_H_
#define MODULES_AUDIO_PROCESSING_AUDIO_BUFFER_H_
#include <stddef.h>
#include <stdint.h>
#include <memory>
#include <vector>
#include "api/audio/audio_processing.h"
#include "api/audio/audio_view.h"
#include "common_audio/channel_buffer.h"
#include "common_audio/include/audio_util.h"
namespace webrtc {
class PushSincResampler;
class SplittingFilter;
enum Band { kBand0To8kHz = 0, kBand8To16kHz = 1, kBand16To24kHz = 2 };
class AudioBuffer {
public:
static const int kSplitBandSize = 160;
static const int kMaxSampleRate = webrtc::kMaxSampleRateHz;
AudioBuffer(size_t input_rate,
size_t input_num_channels,
size_t buffer_rate,
size_t buffer_num_channels,
size_t output_rate,
size_t output_num_channels);
virtual ~AudioBuffer();
AudioBuffer(const AudioBuffer&) = delete;
AudioBuffer& operator=(const AudioBuffer&) = delete;
void set_downmixing_to_specific_channel(size_t channel);
void set_downmixing_by_averaging();
void set_num_channels(size_t num_channels);
DeinterleavedView<float> view() {
return DeinterleavedView<float>(
num_channels_ && buffer_num_frames_ ? channels()[0] : nullptr,
buffer_num_frames_, num_channels_);
}
size_t num_channels() const { return num_channels_; }
size_t num_frames() const { return buffer_num_frames_; }
size_t num_frames_per_band() const { return num_split_frames_; }
size_t num_bands() const { return num_bands_; }
float* const* channels() { return data_->channels(); }
const float* const* channels_const() const { return data_->channels(); }
const float* const* split_bands_const(size_t channel) const {
return split_data_.get() ? split_data_->bands(channel)
: data_->bands(channel);
}
float* const* split_bands(size_t channel) {
return split_data_.get() ? split_data_->bands(channel)
: data_->bands(channel);
}
const float* const* split_channels_const(Band band) const {
if (split_data_.get()) {
return split_data_->channels(band);
} else {
return band == kBand0To8kHz ? data_->channels() : nullptr;
}
}
void CopyFrom(const int16_t* const interleaved_data,
const StreamConfig& stream_config);
void CopyFrom(const float* const* stacked_data,
const StreamConfig& stream_config);
void CopyTo(const StreamConfig& stream_config,
int16_t* const interleaved_data);
void CopyTo(const StreamConfig& stream_config, float* const* stacked_data);
void CopyTo(AudioBuffer* buffer) const;
void SplitIntoFrequencyBands();
void MergeFrequencyBands();
void ExportSplitChannelData(size_t channel,
int16_t* const* split_band_data) const;
void ImportSplitChannelData(size_t channel,
const int16_t* const* split_band_data);
static const size_t kMaxSplitFrameLength = 160;
static const size_t kMaxNumBands = 3;
float* const* channels_f() { return channels(); }
const float* const* channels_const_f() const { return channels_const(); }
const float* const* split_bands_const_f(size_t channel) const {
return split_bands_const(channel);
}
float* const* split_bands_f(size_t channel) { return split_bands(channel); }
const float* const* split_channels_const_f(Band band) const {
return split_channels_const(band);
}
private:
FRIEND_TEST_ALL_PREFIXES(AudioBufferTest,
SetNumChannelsSetsChannelBuffersNumChannels);
void RestoreNumChannels();
const size_t input_num_frames_;
const size_t input_num_channels_;
const size_t buffer_num_frames_;
const size_t buffer_num_channels_;
const size_t output_num_frames_;
const size_t output_num_channels_;
size_t num_channels_;
size_t num_bands_;
size_t num_split_frames_;
std::unique_ptr<ChannelBuffer<float>> data_;
std::unique_ptr<ChannelBuffer<float>> split_data_;
std::unique_ptr<SplittingFilter> splitting_filter_;
std::vector<std::unique_ptr<PushSincResampler>> input_resamplers_;
std::vector<std::unique_ptr<PushSincResampler>> output_resamplers_;
bool downmix_by_averaging_ = true;
size_t channel_for_downmixing_ = 0;
};
}
#endif