586 lines
16 KiB
C
586 lines
16 KiB
C
#include <stdint.h>
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#include <inttypes.h>
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#include <util/circlebuf.h>
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#include <obs-module.h>
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#ifdef LIBSPEEXDSP_ENABLED
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#include <speex/speex_preprocess.h>
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#endif
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#ifdef LIBRNNOISE_ENABLED
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#ifdef _MSC_VER
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#define ssize_t intptr_t
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#endif
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#include <rnnoise.h>
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#include <media-io/audio-resampler.h>
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#endif
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/* -------------------------------------------------------- */
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#define do_log(level, format, ...) \
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blog(level, "[noise suppress: '%s'] " format, \
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obs_source_get_name(ng->context), ##__VA_ARGS__)
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#define warn(format, ...) do_log(LOG_WARNING, format, ##__VA_ARGS__)
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#define info(format, ...) do_log(LOG_INFO, format, ##__VA_ARGS__)
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#ifdef _DEBUG
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#define debug(format, ...) do_log(LOG_DEBUG, format, ##__VA_ARGS__)
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#else
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#define debug(format, ...)
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#endif
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/* -------------------------------------------------------- */
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#define S_SUPPRESS_LEVEL "suppress_level"
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#define S_METHOD "method"
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#define S_METHOD_SPEEX "speex"
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#define S_METHOD_RNN "rnnoise"
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#define MT_ obs_module_text
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#define TEXT_SUPPRESS_LEVEL MT_("NoiseSuppress.SuppressLevel")
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#define TEXT_METHOD MT_("NoiseSuppress.Method")
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#define TEXT_METHOD_SPEEX MT_("NoiseSuppress.Method.Speex")
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#define TEXT_METHOD_RNN MT_("NoiseSuppress.Method.RNNoise")
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#define MAX_PREPROC_CHANNELS 8
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/* RNNoise constants, these can't be changed */
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#define RNNOISE_SAMPLE_RATE 48000
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#define RNNOISE_FRAME_SIZE 480
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/* If the following constant changes, RNNoise breaks */
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#define BUFFER_SIZE_MSEC 10
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/* -------------------------------------------------------- */
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struct noise_suppress_data {
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obs_source_t *context;
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int suppress_level;
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uint64_t last_timestamp;
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uint64_t latency;
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size_t frames;
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size_t channels;
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struct circlebuf info_buffer;
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struct circlebuf input_buffers[MAX_PREPROC_CHANNELS];
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struct circlebuf output_buffers[MAX_PREPROC_CHANNELS];
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bool use_rnnoise;
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#ifdef LIBSPEEXDSP_ENABLED
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/* Speex preprocessor state */
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SpeexPreprocessState *spx_states[MAX_PREPROC_CHANNELS];
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#endif
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#ifdef LIBRNNOISE_ENABLED
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/* RNNoise state */
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DenoiseState *rnn_states[MAX_PREPROC_CHANNELS];
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/* Resampler */
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audio_resampler_t *rnn_resampler;
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audio_resampler_t *rnn_resampler_back;
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#endif
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/* PCM buffers */
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float *copy_buffers[MAX_PREPROC_CHANNELS];
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#ifdef LIBSPEEXDSP_ENABLED
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spx_int16_t *spx_segment_buffers[MAX_PREPROC_CHANNELS];
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#endif
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#ifdef LIBRNNOISE_ENABLED
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float *rnn_segment_buffers[MAX_PREPROC_CHANNELS];
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#endif
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/* output data */
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struct obs_audio_data output_audio;
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DARRAY(float) output_data;
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};
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/* -------------------------------------------------------- */
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#define SUP_MIN -60
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#define SUP_MAX 0
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static const float c_32_to_16 = (float)INT16_MAX;
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static const float c_16_to_32 = ((float)INT16_MAX + 1.0f);
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/* -------------------------------------------------------- */
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static const char *noise_suppress_name(void *unused)
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{
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UNUSED_PARAMETER(unused);
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return obs_module_text("NoiseSuppress");
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}
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static void noise_suppress_destroy(void *data)
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{
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struct noise_suppress_data *ng = data;
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for (size_t i = 0; i < ng->channels; i++) {
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#ifdef LIBSPEEXDSP_ENABLED
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speex_preprocess_state_destroy(ng->spx_states[i]);
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#endif
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#ifdef LIBRNNOISE_ENABLED
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rnnoise_destroy(ng->rnn_states[i]);
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#endif
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circlebuf_free(&ng->input_buffers[i]);
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circlebuf_free(&ng->output_buffers[i]);
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}
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#ifdef LIBSPEEXDSP_ENABLED
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bfree(ng->spx_segment_buffers[0]);
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#endif
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#ifdef LIBRNNOISE_ENABLED
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bfree(ng->rnn_segment_buffers[0]);
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if (ng->rnn_resampler) {
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audio_resampler_destroy(ng->rnn_resampler);
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audio_resampler_destroy(ng->rnn_resampler_back);
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}
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#endif
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bfree(ng->copy_buffers[0]);
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circlebuf_free(&ng->info_buffer);
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da_free(ng->output_data);
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bfree(ng);
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}
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static inline void alloc_channel(struct noise_suppress_data *ng,
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uint32_t sample_rate, size_t channel,
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size_t frames)
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{
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#ifdef LIBSPEEXDSP_ENABLED
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ng->spx_states[channel] =
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speex_preprocess_state_init((int)frames, sample_rate);
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#endif
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#ifdef LIBRNNOISE_ENABLED
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ng->rnn_states[channel] = rnnoise_create(NULL);
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#endif
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circlebuf_reserve(&ng->input_buffers[channel], frames * sizeof(float));
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circlebuf_reserve(&ng->output_buffers[channel], frames * sizeof(float));
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}
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static inline enum speaker_layout convert_speaker_layout(uint8_t channels)
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{
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switch (channels) {
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case 0:
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return SPEAKERS_UNKNOWN;
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case 1:
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return SPEAKERS_MONO;
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case 2:
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return SPEAKERS_STEREO;
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case 3:
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return SPEAKERS_2POINT1;
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case 4:
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return SPEAKERS_4POINT0;
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case 5:
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return SPEAKERS_4POINT1;
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case 6:
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return SPEAKERS_5POINT1;
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case 8:
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return SPEAKERS_7POINT1;
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default:
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return SPEAKERS_UNKNOWN;
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}
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}
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static void noise_suppress_update(void *data, obs_data_t *s)
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{
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struct noise_suppress_data *ng = data;
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uint32_t sample_rate = audio_output_get_sample_rate(obs_get_audio());
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size_t channels = audio_output_get_channels(obs_get_audio());
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size_t frames = (size_t)sample_rate / (1000 / BUFFER_SIZE_MSEC);
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const char *method = obs_data_get_string(s, S_METHOD);
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ng->suppress_level = (int)obs_data_get_int(s, S_SUPPRESS_LEVEL);
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ng->latency = 1000000000LL / (1000 / BUFFER_SIZE_MSEC);
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ng->use_rnnoise = strcmp(method, S_METHOD_RNN) == 0;
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/* Process 10 millisecond segments to keep latency low */
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/* Also RNNoise only supports buffers of this exact size. */
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ng->frames = frames;
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ng->channels = channels;
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/* Ignore if already allocated */
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#if defined(LIBSPEEXDSP_ENABLED)
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if (ng->spx_states[0])
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return;
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#else
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if (ng->rnn_states[0])
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return;
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#endif
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/* One speex/rnnoise state for each channel (limit 2) */
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ng->copy_buffers[0] = bmalloc(frames * channels * sizeof(float));
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#ifdef LIBSPEEXDSP_ENABLED
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ng->spx_segment_buffers[0] =
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bmalloc(frames * channels * sizeof(spx_int16_t));
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#endif
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#ifdef LIBRNNOISE_ENABLED
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ng->rnn_segment_buffers[0] =
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bmalloc(RNNOISE_FRAME_SIZE * channels * sizeof(float));
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#endif
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for (size_t c = 1; c < channels; ++c) {
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ng->copy_buffers[c] = ng->copy_buffers[c - 1] + frames;
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#ifdef LIBSPEEXDSP_ENABLED
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ng->spx_segment_buffers[c] =
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ng->spx_segment_buffers[c - 1] + frames;
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#endif
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#ifdef LIBRNNOISE_ENABLED
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ng->rnn_segment_buffers[c] =
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ng->rnn_segment_buffers[c - 1] + RNNOISE_FRAME_SIZE;
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#endif
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}
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for (size_t i = 0; i < channels; i++)
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alloc_channel(ng, sample_rate, i, frames);
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#ifdef LIBRNNOISE_ENABLED
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if (sample_rate == RNNOISE_SAMPLE_RATE) {
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ng->rnn_resampler = NULL;
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ng->rnn_resampler_back = NULL;
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} else {
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struct resample_info src, dst;
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src.samples_per_sec = sample_rate;
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src.format = AUDIO_FORMAT_FLOAT_PLANAR;
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src.speakers = convert_speaker_layout((uint8_t)channels);
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dst.samples_per_sec = RNNOISE_SAMPLE_RATE;
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dst.format = AUDIO_FORMAT_FLOAT_PLANAR;
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dst.speakers = convert_speaker_layout((uint8_t)channels);
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ng->rnn_resampler = audio_resampler_create(&dst, &src);
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ng->rnn_resampler_back = audio_resampler_create(&src, &dst);
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}
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#endif
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}
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static void *noise_suppress_create(obs_data_t *settings, obs_source_t *filter)
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{
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struct noise_suppress_data *ng =
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bzalloc(sizeof(struct noise_suppress_data));
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ng->context = filter;
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noise_suppress_update(ng, settings);
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return ng;
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}
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static inline void process_speexdsp(struct noise_suppress_data *ng)
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{
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#ifdef LIBSPEEXDSP_ENABLED
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/* Set args */
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for (size_t i = 0; i < ng->channels; i++)
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speex_preprocess_ctl(ng->spx_states[i],
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SPEEX_PREPROCESS_SET_NOISE_SUPPRESS,
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&ng->suppress_level);
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/* Convert to 16bit */
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for (size_t i = 0; i < ng->channels; i++)
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for (size_t j = 0; j < ng->frames; j++) {
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float s = ng->copy_buffers[i][j];
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if (s > 1.0f)
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s = 1.0f;
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else if (s < -1.0f)
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s = -1.0f;
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ng->spx_segment_buffers[i][j] =
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(spx_int16_t)(s * c_32_to_16);
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}
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/* Execute */
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for (size_t i = 0; i < ng->channels; i++)
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speex_preprocess_run(ng->spx_states[i],
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ng->spx_segment_buffers[i]);
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/* Convert back to 32bit */
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for (size_t i = 0; i < ng->channels; i++)
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for (size_t j = 0; j < ng->frames; j++)
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ng->copy_buffers[i][j] =
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(float)ng->spx_segment_buffers[i][j] /
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c_16_to_32;
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#endif
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}
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static inline void process_rnnoise(struct noise_suppress_data *ng)
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{
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#ifdef LIBRNNOISE_ENABLED
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/* Adjust signal level to what RNNoise expects, resample if necessary */
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if (ng->rnn_resampler) {
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float *output[MAX_PREPROC_CHANNELS];
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uint32_t out_frames;
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uint64_t ts_offset;
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audio_resampler_resample(ng->rnn_resampler, (uint8_t **)output,
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&out_frames, &ts_offset,
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(const uint8_t **)ng->copy_buffers,
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(uint32_t)ng->frames);
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for (size_t i = 0; i < ng->channels; i++) {
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for (ssize_t j = 0, k = (ssize_t)out_frames -
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RNNOISE_FRAME_SIZE;
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j < RNNOISE_FRAME_SIZE; ++j, ++k) {
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if (k >= 0) {
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ng->rnn_segment_buffers[i][j] =
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output[i][k] * 32768.0f;
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} else {
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ng->rnn_segment_buffers[i][j] = 0;
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}
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}
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}
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} else {
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for (size_t i = 0; i < ng->channels; i++) {
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for (size_t j = 0; j < RNNOISE_FRAME_SIZE; ++j) {
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ng->rnn_segment_buffers[i][j] =
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ng->copy_buffers[i][j] * 32768.0f;
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}
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}
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}
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/* Execute */
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for (size_t i = 0; i < ng->channels; i++) {
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rnnoise_process_frame(ng->rnn_states[i],
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ng->rnn_segment_buffers[i],
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ng->rnn_segment_buffers[i]);
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}
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/* Revert signal level adjustment, resample back if necessary */
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if (ng->rnn_resampler) {
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float *output[MAX_PREPROC_CHANNELS];
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uint32_t out_frames;
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uint64_t ts_offset;
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audio_resampler_resample(
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ng->rnn_resampler_back, (uint8_t **)output, &out_frames,
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&ts_offset, (const uint8_t **)ng->rnn_segment_buffers,
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RNNOISE_FRAME_SIZE);
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for (size_t i = 0; i < ng->channels; i++) {
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for (ssize_t j = 0,
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k = (ssize_t)out_frames - ng->frames;
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j < (ssize_t)ng->frames; ++j, ++k) {
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if (k >= 0) {
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ng->copy_buffers[i][j] =
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output[i][k] / 32768.0f;
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} else {
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ng->copy_buffers[i][j] = 0;
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}
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}
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}
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} else {
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for (size_t i = 0; i < ng->channels; i++) {
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for (size_t j = 0; j < RNNOISE_FRAME_SIZE; ++j) {
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ng->copy_buffers[i][j] =
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ng->rnn_segment_buffers[i][j] /
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32768.0f;
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}
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}
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}
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#else
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UNUSED_PARAMETER(ng);
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#endif
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}
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static inline void process(struct noise_suppress_data *ng)
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{
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/* Pop from input circlebuf */
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for (size_t i = 0; i < ng->channels; i++)
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circlebuf_pop_front(&ng->input_buffers[i], ng->copy_buffers[i],
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ng->frames * sizeof(float));
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if (ng->use_rnnoise) {
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process_rnnoise(ng);
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} else {
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process_speexdsp(ng);
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}
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/* Push to output circlebuf */
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for (size_t i = 0; i < ng->channels; i++)
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circlebuf_push_back(&ng->output_buffers[i], ng->copy_buffers[i],
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ng->frames * sizeof(float));
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}
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struct ng_audio_info {
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uint32_t frames;
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uint64_t timestamp;
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};
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static inline void clear_circlebuf(struct circlebuf *buf)
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{
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circlebuf_pop_front(buf, NULL, buf->size);
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}
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static void reset_data(struct noise_suppress_data *ng)
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{
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for (size_t i = 0; i < ng->channels; i++) {
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clear_circlebuf(&ng->input_buffers[i]);
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clear_circlebuf(&ng->output_buffers[i]);
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}
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clear_circlebuf(&ng->info_buffer);
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}
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static struct obs_audio_data *
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noise_suppress_filter_audio(void *data, struct obs_audio_data *audio)
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{
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struct noise_suppress_data *ng = data;
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struct ng_audio_info info;
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size_t segment_size = ng->frames * sizeof(float);
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size_t out_size;
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#ifdef LIBSPEEXDSP_ENABLED
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if (!ng->spx_states[0])
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return audio;
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#else
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if (!ng->rnn_states[0])
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return audio;
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#endif
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/* -----------------------------------------------
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* if timestamp has dramatically changed, consider it a new stream of
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* audio data. clear all circular buffers to prevent old audio data
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* from being processed as part of the new data. */
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if (ng->last_timestamp) {
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int64_t diff = llabs((int64_t)ng->last_timestamp -
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(int64_t)audio->timestamp);
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if (diff > 1000000000LL)
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reset_data(ng);
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}
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ng->last_timestamp = audio->timestamp;
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/* -----------------------------------------------
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* push audio packet info (timestamp/frame count) to info circlebuf */
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info.frames = audio->frames;
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info.timestamp = audio->timestamp;
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circlebuf_push_back(&ng->info_buffer, &info, sizeof(info));
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/* -----------------------------------------------
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* push back current audio data to input circlebuf */
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for (size_t i = 0; i < ng->channels; i++)
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circlebuf_push_back(&ng->input_buffers[i], audio->data[i],
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audio->frames * sizeof(float));
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/* -----------------------------------------------
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* pop/process each 10ms segments, push back to output circlebuf */
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while (ng->input_buffers[0].size >= segment_size)
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process(ng);
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/* -----------------------------------------------
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* peek front of info circlebuf, check to see if we have enough to
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* pop the expected packet size, if not, return null */
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memset(&info, 0, sizeof(info));
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circlebuf_peek_front(&ng->info_buffer, &info, sizeof(info));
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out_size = info.frames * sizeof(float);
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if (ng->output_buffers[0].size < out_size)
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return NULL;
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/* -----------------------------------------------
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* if there's enough audio data buffered in the output circlebuf,
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* pop and return a packet */
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circlebuf_pop_front(&ng->info_buffer, NULL, sizeof(info));
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da_resize(ng->output_data, out_size * ng->channels);
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for (size_t i = 0; i < ng->channels; i++) {
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ng->output_audio.data[i] =
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(uint8_t *)&ng->output_data.array[i * out_size];
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circlebuf_pop_front(&ng->output_buffers[i],
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ng->output_audio.data[i], out_size);
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}
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ng->output_audio.frames = info.frames;
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ng->output_audio.timestamp = info.timestamp - ng->latency;
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return &ng->output_audio;
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}
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static bool noise_suppress_method_modified(obs_properties_t *props,
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obs_property_t *property,
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obs_data_t *settings)
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{
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obs_property_t *p_suppress_level =
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obs_properties_get(props, S_SUPPRESS_LEVEL);
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const char *method = obs_data_get_string(settings, S_METHOD);
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bool enable_level = strcmp(method, S_METHOD_SPEEX) == 0;
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|
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obs_property_set_visible(p_suppress_level, enable_level);
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UNUSED_PARAMETER(property);
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return true;
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}
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|
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static void noise_suppress_defaults_v1(obs_data_t *s)
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|
{
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obs_data_set_default_int(s, S_SUPPRESS_LEVEL, -30);
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#if defined(LIBRNNOISE_ENABLED) && !defined(LIBSPEEXDSP_ENABLED)
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obs_data_set_default_string(s, S_METHOD, S_METHOD_RNN);
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#else
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obs_data_set_default_string(s, S_METHOD, S_METHOD_SPEEX);
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#endif
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}
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|
|
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static void noise_suppress_defaults_v2(obs_data_t *s)
|
|
{
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obs_data_set_default_int(s, S_SUPPRESS_LEVEL, -30);
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#if defined(LIBRNNOISE_ENABLED)
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obs_data_set_default_string(s, S_METHOD, S_METHOD_RNN);
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#else
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obs_data_set_default_string(s, S_METHOD, S_METHOD_SPEEX);
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#endif
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|
}
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|
|
|
static obs_properties_t *noise_suppress_properties(void *data)
|
|
{
|
|
obs_properties_t *ppts = obs_properties_create();
|
|
|
|
#if defined(LIBRNNOISE_ENABLED) && defined(LIBSPEEXDSP_ENABLED)
|
|
obs_property_t *method = obs_properties_add_list(
|
|
ppts, S_METHOD, TEXT_METHOD, OBS_COMBO_TYPE_LIST,
|
|
OBS_COMBO_FORMAT_STRING);
|
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obs_property_list_add_string(method, TEXT_METHOD_SPEEX, S_METHOD_SPEEX);
|
|
obs_property_list_add_string(method, TEXT_METHOD_RNN, S_METHOD_RNN);
|
|
|
|
obs_property_set_modified_callback(method,
|
|
noise_suppress_method_modified);
|
|
#endif
|
|
|
|
#ifdef LIBSPEEXDSP_ENABLED
|
|
obs_property_t *speex_slider = obs_properties_add_int_slider(
|
|
ppts, S_SUPPRESS_LEVEL, TEXT_SUPPRESS_LEVEL, SUP_MIN, SUP_MAX,
|
|
1);
|
|
obs_property_int_set_suffix(speex_slider, " dB");
|
|
#endif
|
|
|
|
UNUSED_PARAMETER(data);
|
|
return ppts;
|
|
}
|
|
|
|
struct obs_source_info noise_suppress_filter = {
|
|
.id = "noise_suppress_filter",
|
|
.type = OBS_SOURCE_TYPE_FILTER,
|
|
.output_flags = OBS_SOURCE_AUDIO | OBS_SOURCE_CAP_OBSOLETE,
|
|
.get_name = noise_suppress_name,
|
|
.create = noise_suppress_create,
|
|
.destroy = noise_suppress_destroy,
|
|
.update = noise_suppress_update,
|
|
.filter_audio = noise_suppress_filter_audio,
|
|
.get_defaults = noise_suppress_defaults_v1,
|
|
.get_properties = noise_suppress_properties,
|
|
};
|
|
|
|
struct obs_source_info noise_suppress_filter_v2 = {
|
|
.id = "noise_suppress_filter",
|
|
.version = 2,
|
|
.type = OBS_SOURCE_TYPE_FILTER,
|
|
.output_flags = OBS_SOURCE_AUDIO,
|
|
.get_name = noise_suppress_name,
|
|
.create = noise_suppress_create,
|
|
.destroy = noise_suppress_destroy,
|
|
.update = noise_suppress_update,
|
|
.filter_audio = noise_suppress_filter_audio,
|
|
.get_defaults = noise_suppress_defaults_v2,
|
|
.get_properties = noise_suppress_properties,
|
|
};
|