289 lines
9.5 KiB
C
289 lines
9.5 KiB
C
/*
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* Brickworks
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*
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* Copyright (C) 2022 Orastron Srl unipersonale
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*
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* Brickworks is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, version 3 of the License.
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*
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* Brickworks is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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*
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* File author: Stefano D'Angelo
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*/
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/*!
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* module_type {{{ dsp }}}
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* version {{{ 0.3.0 }}}
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* requires {{{ bw_config bw_common bw_env_follow bw_one_pole bw_math bw_vol }}}
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* description {{{
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* Feedforward compressor/limiter with independent sidechain input.
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* }}}
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* changelog {{{
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* <ul>
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* <li>Version <strong>0.3.0</strong>:
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* <ul>
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* <li>First release.</li>
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* </ul>
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* </li>
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* </ul>
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* }}}
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*/
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#ifndef _BW_COMP_H
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#define _BW_COMP_H
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <bw_common.h>
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/*! api {{{
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* #### bw_comp_coeffs
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* ```>>> */
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typedef struct _bw_comp_coeffs bw_comp_coeffs;
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/*! <<<```
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* Coefficients and related.
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*
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* ### bw_comp_state
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* ```>>> */
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typedef struct _bw_comp_state bw_comp_state;
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/*! <<<```
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* Internal state and related.
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*
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* #### bw_comp_init()
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* ```>>> */
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static inline void bw_comp_init(bw_comp_coeffs *BW_RESTRICT coeffs);
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/*! <<<```
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* Initializes input parameter values in `coeffs`.
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*
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* #### bw_comp_set_sample_rate()
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* ```>>> */
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static inline void bw_comp_set_sample_rate(bw_comp_coeffs *BW_RESTRICT coeffs, float sample_rate);
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/*! <<<```
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* Sets the `sample_rate` (Hz) value in `coeffs`.
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*
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* #### bw_comp_reset_coeffs()
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* ```>>> */
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static inline void bw_comp_reset_coeffs(bw_comp_coeffs *BW_RESTRICT coeffs);
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/*! <<<```
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* Resets coefficients in `coeffs` to assume their target values.
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*
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* #### bw_comp_reset_state()
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* ```>>> */
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static inline void bw_comp_reset_state(const bw_comp_coeffs *BW_RESTRICT coeffs, bw_comp_state *BW_RESTRICT state);
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/*! <<<```
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* Resets the given `state` to its initial values using the given `coeffs`.
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*
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* #### bw_comp_update_coeffs_ctrl()
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* ```>>> */
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static inline void bw_comp_update_coeffs_ctrl(bw_comp_coeffs *BW_RESTRICT coeffs);
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/*! <<<```
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* Triggers control-rate update of coefficients in `coeffs`.
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*
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* #### bw_comp_update_coeffs_audio()
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* ```>>> */
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static inline void bw_comp_update_coeffs_audio(bw_comp_coeffs *BW_RESTRICT coeffs);
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/*! <<<```
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* Triggers audio-rate update of coefficients in `coeffs`.
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*
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* #### bw_comp_process1()
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* ```>>> */
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static inline float bw_comp_process1(const bw_comp_coeffs *BW_RESTRICT coeffs, bw_comp_state *BW_RESTRICT state, float x, float x_sc);
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/*! <<<```
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* Processes one input sample `x` and the corresponding sidechain input
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* sample `x_sc` using `coeffs`, while using and updating `state`. Returns
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* the corresponding output sample.
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*
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* #### bw_comp_process()
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* ```>>> */
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static inline void bw_comp_process(bw_comp_coeffs *BW_RESTRICT coeffs, bw_comp_state *BW_RESTRICT state, const float *x, const float *x_sc, float *y, int n_samples);
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/*! <<<```
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* Processes the first `n_samples` of the input buffer `x` and the first
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* `n_samples` of the sidechain input buffer `x_sc`, and fills the first
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* `n_samples` of the output buffer `y`, while using and updating both
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* `coeffs` and `state` (control and audio rate).
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*
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* #### bw_comp_set_thresh_lin()
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* ```>>> */
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static inline void bw_comp_set_thresh_lin(bw_comp_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the threshold `value` (linear) in `coeffs`.
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*
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* Default value: `1.f`.
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*
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* #### bw_comp_set_thresh_dBFS()
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* ```>>> */
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static inline void bw_comp_set_thresh_dBFS(bw_comp_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the threshold `value` (dBFS) in `coeffs`.
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*
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* Default value: `0.f`.
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*
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* #### bw_comp_set_ratio()
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* ```>>> */
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static inline void bw_comp_set_ratio(bw_comp_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the copmpression ratio `value` in `coeffs`.
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*
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* `value` is actually the outcome of the division in the compression ratio,
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* hence `1.f` means no compression and `0.f` is a hard limit.
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*
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* Default value: `1.f`.
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*
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* #### bw_comp_set_attack_tau()
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* ```>>> */
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static inline void bw_comp_set_attack_tau(bw_comp_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the attack time constant `value` (s) in `coeffs`.
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*
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* Default value: `0.f`.
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*
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* #### bw_comp_set_release_tau()
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* ```>>> */
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static inline void bw_comp_set_release_tau(bw_comp_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the release time constant `value` (s) in `coeffs`.
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*
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* Default value: `0.f`.
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*
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* #### bw_comp_set_gain_lin()
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* ```>>> */
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static inline void bw_comp_set_gain_lin(bw_comp_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the output makeup gain `value` (linear ratio) in `coeffs`.
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*
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* Default value: `1.f`.
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*
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* #### bw_comp_set_gain_dB()
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* ```>>> */
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static inline void bw_comp_set_gain_dB(bw_comp_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the output makeup gain `value` (dB) in `coeffs`.
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*
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* Default value: `0.f`.
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* }}} */
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/*** Implementation ***/
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/* WARNING: This part of the file is not part of the public API. Its content may
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* change at any time in future versions. Please, do not use it directly. */
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#include <bw_math.h>
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#include <bw_env_follow.h>
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#include <bw_vol.h>
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#include <bw_one_pole.h>
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struct _bw_comp_coeffs {
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// Sub-components
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bw_env_follow_coeffs env_follow_coeffs;
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bw_vol_coeffs vol_coeffs;
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bw_one_pole_coeffs smooth_coeffs;
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bw_one_pole_state smooth_thresh_state;
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bw_one_pole_state smooth_ratio_state;
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// Coefficients
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float kc;
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// Parameters
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float thresh;
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float ratio;
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};
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struct _bw_comp_state {
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bw_env_follow_state env_follow_state;
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};
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static inline void bw_comp_init(bw_comp_coeffs *BW_RESTRICT coeffs) {
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bw_env_follow_init(&coeffs->env_follow_coeffs);
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bw_vol_init(&coeffs->vol_coeffs);
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bw_one_pole_set_tau(&coeffs->smooth_coeffs, 0.05f);
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coeffs->thresh = 1.f;
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coeffs->ratio = 1.f;
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}
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static inline void bw_comp_set_sample_rate(bw_comp_coeffs *BW_RESTRICT coeffs, float sample_rate) {
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bw_env_follow_set_sample_rate(&coeffs->env_follow_coeffs, sample_rate);
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bw_vol_set_sample_rate(&coeffs->vol_coeffs, sample_rate);
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bw_one_pole_set_sample_rate(&coeffs->smooth_coeffs, sample_rate);
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bw_one_pole_reset_coeffs(&coeffs->smooth_coeffs);
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}
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static inline void bw_comp_reset_coeffs(bw_comp_coeffs *BW_RESTRICT coeffs) {
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bw_env_follow_reset_coeffs(&coeffs->env_follow_coeffs);
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bw_vol_reset_coeffs(&coeffs->vol_coeffs);
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bw_one_pole_reset_state(&coeffs->smooth_coeffs, &coeffs->smooth_thresh_state, coeffs->thresh);
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bw_one_pole_reset_state(&coeffs->smooth_coeffs, &coeffs->smooth_ratio_state, coeffs->ratio);
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}
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static inline void bw_comp_reset_state(const bw_comp_coeffs *BW_RESTRICT coeffs, bw_comp_state *BW_RESTRICT state) {
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bw_env_follow_reset_state(&coeffs->env_follow_coeffs, &state->env_follow_state);
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}
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static inline void bw_comp_update_coeffs_ctrl(bw_comp_coeffs *BW_RESTRICT coeffs) {
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bw_env_follow_update_coeffs_ctrl(&coeffs->env_follow_coeffs);
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bw_vol_update_coeffs_ctrl(&coeffs->vol_coeffs);
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}
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static inline void bw_comp_update_coeffs_audio(bw_comp_coeffs *BW_RESTRICT coeffs) {
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bw_env_follow_update_coeffs_audio(&coeffs->env_follow_coeffs);
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bw_vol_update_coeffs_audio(&coeffs->vol_coeffs);
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bw_one_pole_process1(&coeffs->smooth_coeffs, &coeffs->smooth_thresh_state, coeffs->thresh);
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coeffs->kc = 1.f - bw_one_pole_process1(&coeffs->smooth_coeffs, &coeffs->smooth_ratio_state, coeffs->ratio);
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}
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static inline float bw_comp_process1(const bw_comp_coeffs *BW_RESTRICT coeffs, bw_comp_state *BW_RESTRICT state, float x, float x_sc) {
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const float env = bw_env_follow_process1(&coeffs->env_follow_coeffs, &state->env_follow_state, x_sc);
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const float thresh = bw_one_pole_get_y_z1(&coeffs->smooth_thresh_state);
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const float y = env > thresh ? bw_pow2f_3(coeffs->kc * bw_log2f_3(thresh * bw_rcpf_2(env))) * x : x;
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return bw_vol_process1(&coeffs->vol_coeffs, y);
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}
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static inline void bw_comp_process(bw_comp_coeffs *BW_RESTRICT coeffs, bw_comp_state *BW_RESTRICT state, const float *x, const float *x_sc, float *y, int n_samples) {
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bw_comp_update_coeffs_ctrl(coeffs);
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for (int i = 0; i < n_samples; i++) {
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bw_comp_update_coeffs_audio(coeffs);
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y[i] = bw_comp_process1(coeffs, state, x[i], x_sc[i]);
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}
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}
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static inline void bw_comp_set_thresh_lin(bw_comp_coeffs *BW_RESTRICT coeffs, float value) {
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coeffs->thresh = value;
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}
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static inline void bw_comp_set_thresh_dBFS(bw_comp_coeffs *BW_RESTRICT coeffs, float value) {
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coeffs->thresh = bw_dB2linf_3(value);
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}
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static inline void bw_comp_set_ratio(bw_comp_coeffs *BW_RESTRICT coeffs, float value) {
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coeffs->ratio = value;
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}
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static inline void bw_comp_set_attack_tau(bw_comp_coeffs *BW_RESTRICT coeffs, float value) {
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bw_env_follow_set_attack_tau(&coeffs->env_follow_coeffs, value);
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}
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static inline void bw_comp_set_release_tau(bw_comp_coeffs *BW_RESTRICT coeffs, float value) {
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bw_env_follow_set_release_tau(&coeffs->env_follow_coeffs, value);
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}
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static inline void bw_comp_set_gain_lin(bw_comp_coeffs *BW_RESTRICT coeffs, float value) {
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bw_vol_set_volume_lin(&coeffs->vol_coeffs, value);
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}
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static inline void bw_comp_set_gain_dB(bw_comp_coeffs *BW_RESTRICT coeffs, float value) {
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bw_vol_set_volume_dB(&coeffs->vol_coeffs, value);
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}
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#ifdef __cplusplus
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}
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#endif
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#endif
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