bw_comb tenative plus surrouding changes
* bw_delay: added const to state in bw_delay_read and added bw_delay_get_length * bw_math: added bw_intfracf * bw_wah: fixed bw_wah_process doc * cosmetic changes to bw_one_pole
This commit is contained in:
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721dc3da27
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2
TODO
2
TODO
@ -36,6 +36,8 @@ code:
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* add initial state (x0) to reset state of lp1, ap1, mm1, hs1, ls1, others? all?
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* multichannel process (multiple buffers, non interleaved)
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* check unused param warning visual studio
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* bw_comb: should also modulate feedback?
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* bw_comb: integer target delay values?
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build system:
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* make makefiles handle paths with spaces etc
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340
include/bw_comb.h
Normal file
340
include/bw_comb.h
Normal file
@ -0,0 +1,340 @@
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/*
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* Brickworks
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*
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* Copyright (C) 2022, 2023 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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* along with Brickworks. If not, see <http://www.gnu.org/licenses/>.
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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 {{{ 0.4.0 }}}
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* requires {{{
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* bw_buf bw_config bw_common bw_delay bw_gain bw_math bw_one_pole
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* }}}
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* description {{{
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* Comb filter / delay effect with feedforward and feedback paths.
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*
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* Essentially an implementation of the structure described in
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*
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* J. Dattorro, "Effect Design, Part 2: Delay-Line Modulation and Chorus",
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* J. Audio Eng. Soc., vol. 45, no. 10, pp. 764-788, October 1997.
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*
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* Unlike in the original paper, the feedback signal is not subtracted but
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* rather added to the input.
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* }}}
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* changelog {{{
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* <ul>
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* <li>Version <strong>0.4.0</strong>:
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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_COMB_H
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#define _BW_COMB_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_comb_coeffs
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* ```>>> */
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typedef struct _bw_comb_coeffs bw_comb_coeffs;
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/*! <<<```
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* Coefficients and related.
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*
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* ### bw_comb_state
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* ```>>> */
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typedef struct _bw_comb_state bw_comb_state;
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/*! <<<```
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* Internal state and related.
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*
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* #### bw_comb_init()
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* ```>>> */
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static inline void bw_comb_init(bw_comb_coeffs *BW_RESTRICT coeffs, float max_delay);
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/*! <<<```
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* Initializes input parameter values in `coeffs` using `max_delay` (s) as
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* the maximum delay time.
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*
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* #### bw_comb_set_sample_rate()
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* ```>>> */
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static inline void bw_comb_set_sample_rate(bw_comb_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_delay_mem_req()
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* ```>>> */
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static inline BW_SIZE_T bw_delay_mem_req(bw_delay_coeffs *BW_RESTRICT coeffs);
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/*! <<<```
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* Returns the size, in bytes, of contiguous memory to be supplied to
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* `bw_delay_mem_set()` using `coeffs`.
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*
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* ### bw_delay_mem_set()
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* ```>>> */
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static inline void bw_delay_mem_set(bw_delay_state *BW_RESTRICT state, void *mem);
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/*! <<<```
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* Associates the contiguous memory block `mem` to the given `state`.
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*
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* #### bw_comb_reset_coeffs()
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* ```>>> */
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static inline void bw_comb_reset_coeffs(bw_comb_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_comb_reset_state()
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* ```>>> */
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static inline void bw_comb_reset_state(const bw_comb_coeffs *BW_RESTRICT coeffs, bw_comb_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_comb_update_coeffs_ctrl()
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* ```>>> */
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static inline void bw_comb_update_coeffs_ctrl(bw_comb_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_comb_update_coeffs_audio()
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* ```>>> */
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static inline void bw_comb_update_coeffs_audio(bw_comb_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_comb_process1()
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* ```>>> */
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static inline float bw_comb_process1(const bw_comb_coeffs *BW_RESTRICT coeffs, bw_comb_state *BW_RESTRICT state, float x, float x_mod);
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/*! <<<```
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* Processes one input sample `x` using `coeffs` and the feedforward delay
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* time modulation term `x_mod` (s), while using and updating `state`.
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* Returns the corresponding output sample.
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*
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* #### bw_comb_process()
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* ```>>> */
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static inline void bw_comb_process(bw_comb_coeffs *BW_RESTRICT coeffs, bw_comb_state *BW_RESTRICT state, const float *x, const float *x_mod, float *y, int n_samples);
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/*! <<<```
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* Processes the first `n_samples` of the input buffer `x` and fills the
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* first `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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* `x_mod` can either be `NULL`, in which case the feedforward delay time is
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* not modulated, or it points to a buffer whose first `n_samples` contain
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* values (s) used for modulating the feedforward delay time.
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*
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* #### bw_comb_set_delay_ff()
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* ```>>> */
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static inline void bw_comb_set_delay_ff(bw_comb_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the feedforward delay time `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_comb_set_delay_fb()
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* ```>>> */
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static inline void bw_comb_set_delay_fb(bw_comb_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the feedback delay time `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_comb_set_blend()
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* ```>>> */
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static inline void bw_mm1_set_coeff_blend(bw_mm1_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the blend coefficient `value` in `coeffs`.
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*
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* Default value: `1.f`.
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*
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* #### bw_comb_set_coeff_ff()
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* ```>>> */
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static inline void bw_mm1_set_coeff_ff(bw_mm1_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the feedforward coefficient `value` in `coeffs`.
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*
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* Default value: `0.f`.
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*
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* #### bw_comb_set_coeff_fb()
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* ```>>> */
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static inline void bw_mm1_set_coeff_fb(bw_mm1_coeffs *BW_RESTRICT coeffs, float value);
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/*! <<<```
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* Sets the feedback coefficient `value` 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_delay.h>
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#include <bw_gain.h>
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#include <bw_math.h>
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struct _bw_comb_coeffs {
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// Sub-components
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bw_delay_coeffs delay_coeffs;
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bw_gain_coeffs blend_coeffs;
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bw_gain_coeffs ff_coeffs;
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bw_gain_coeffs fb_coeffs;
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bw_one_pole smooth_coeffs;
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bw_one_pole smooth_delay_ff_state;
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bw_one_pole smooth_delay_fb_state;
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// Coefficients
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float fs;
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BW_SIZE_T dfbi;
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float dfbf;
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// Parameters
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float delay_ff;
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float delay_fb;
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};
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struct _bw_comb_state {
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// Sub-components
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bw_delay_state delay_state;
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};
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static inline void bw_comb_init(bw_comb_coeffs *BW_RESTRICT coeffs, float max_delay) {
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bw_delay_init(&coeffs->delay_coeffs, max_delay);
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bw_gain_init(&coeffs->blend_coeffs);
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bw_gain_init(&coeffs->ff_coeffs);
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bw_gain_init(&coeffs->fb_coeffs);
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bw_one_pole_init(&coeffs->smooth_coeffs);
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bw_one_pole_set_tau(&coeffs->smooth_coeffs, 0.005f);
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bw_gain_set_gain_lin(&coeffs->ff_coeffs, 0.f);
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bw_gain_set_gain_lin(&coeffs->fb_coeffs, 0.f);
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coeffs->delay_ff = 0.f;
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coeffs->delay_fb = 0.f;
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}
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static inline void bw_comb_set_sample_rate(bw_comb_coeffs *BW_RESTRICT coeffs, float sample_rate) {
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bw_delay_set_sample_rate(&coeffs->delay_coeffs, sample_rate);
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bw_gain_set_sample_rate(&coeffs->blend_coeffs, sample_rate);
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bw_gain_set_sample_rate(&coeffs->ff_coeffs, sample_rate);
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bw_gain_set_sample_rate(&coeffs->fb_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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coeffs->fs = sample_rate;
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}
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static inline BW_SIZE_T bw_delay_mem_req(bw_delay_coeffs *BW_RESTRICT coeffs) {
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return bw_delay_mem_req(&coeffs->delay_coeffs);
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}
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static inline void bw_delay_mem_set(bw_delay_state *BW_RESTRICT state, void *mem) {
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bw_delay_mem_set(&state->delay_state, mem);
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}
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static inline void bw_comb_reset_coeffs(bw_comb_coeffs *BW_RESTRICT coeffs) {
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bw_delay_reset_coeffs(&coeffs->delay_coeffs);
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bw_gain_reset_coeffs(&coeffs->blend_coeffs);
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bw_gain_reset_coeffs(&coeffs->ff_coeffs);
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bw_gain_reset_coeffs(&coeffs->fb_coeffs);
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bw_one_pole_reset_state(&coeffs->smooth_coeffs, &coeffs->smooth_delay_ff_state, coeffs->fs * coeffs->delay_ff);
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bw_one_pole_reset_state(&coeffs->smooth_coeffs, &coeffs->smooth_delay_fb_state, coeffs->fs * coeffs->delay_fb);
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}
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static inline void bw_comb_reset_state(const bw_comb_coeffs *BW_RESTRICT coeffs, bw_comb_state *BW_RESTRICT state) {
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bw_delay_reset_state(&coeffs->delay_coeffs, &state->delay_state);
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}
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static inline void bw_comb_update_coeffs_ctrl(bw_comb_coeffs *BW_RESTRICT coeffs) {
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bw_gain_update_coeffs_ctrl(&coeffs->blend_coeffs);
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bw_gain_update_coeffs_ctrl(&coeffs->ff_coeffs);
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bw_gain_update_coeffs_ctrl(&coeffs->fb_coeffs);
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}
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static inline void bw_comb_update_coeffs_audio(bw_comb_coeffs *BW_RESTRICT coeffs) {
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bw_gain_update_coeffs_audio(&coeffs->blend_coeffs);
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bw_gain_update_coeffs_audio(&coeffs->ff_coeffs);
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bw_gain_update_coeffs_audio(&coeffs->fb_coeffs);
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bw_one_pole_process1(&coeffs->smooth_coeffs, &coeffs->smooth_delay_ff_state, coeffs->fs * coeffs->delay_ff);
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bw_one_pole_process1(&coeffs->smooth_coeffs, &coeffs->smooth_delay_fb_state, coeffs->fs * coeffs->delay_fb);
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const BW_SIZE_T len = bw_delay_get_length(&coeffs->delay_coeffs);
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const float dfb = bw_maxf(bw_one_pole_get_y_z1(&coeffs->smooth_delay_fb_state), 1.f) - 1.f;
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float dfbif, dfbf;
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bw_intfracf(dfb, &dfbif, &dfbf);
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BW_SIZE_T dfbi = (BW_SIZE_T)dfbif;
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if (dfbi >= len) {
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dfbi = len;
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dfbf = 0.f;
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}
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coeffs->dfbi = dfbi;
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coeffs->dfbf = dfbf;
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}
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static inline float bw_comb_process1(const bw_comb_coeffs *BW_RESTRICT coeffs, bw_comb_state *BW_RESTRICT state, float x, float x_mod) {
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const BW_SIZE_T len = bw_delay_get_length(&coeffs->delay_coeffs);
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const float dff = bw_maxf(bw_one_pole_get_y_z1(&coeffs->smooth_delay_ff_state) + x_mod, 0.f);
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float dffif, dfff;
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bw_intfracf(dff, &dffif, &dfff);
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BW_SIZE_T dffi = (BW_SIZE_T)dffif;
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if (dffi >= len) {
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dffi = len;
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dfff = 0.f;
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}
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const float fb = bw_delay_read(&coeffs->delay_coeffs, &state->delay_state, dfbi, dfbf);
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const float v = x + fb;
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bw_delay_write(&coeffs->delay_coeffs, &state->delay_state, v);
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const float ff = bw_delay_read(&coeffs->delay_coeffs, &state->delay_state, dffi, dfff);
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return bw_gain_process1(&coeffs->blend_coeffs, v) + bw_gain_process1(&coeffs->ff_coeffs, ff);
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}
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static inline void bw_comb_process(bw_comb_coeffs *BW_RESTRICT coeffs, bw_comb_state *BW_RESTRICT state, const float *x, const float *x_mod, float *y, int n_samples) {
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bw_comb_update_coeffs_ctrl(coeffs);
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if (x_mod != NULL)
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for (int i = 0; i < n_samples; i++) {
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bw_comb_update_coeffs_audio(coeffs);
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y[i] = bw_comb_process1(coeffs, state, x[i], x_mod[i]);
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}
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else
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for (int i = 0; i < n_samples; i++) {
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bw_comb_update_coeffs_audio(coeffs);
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y[i] = bw_comb_process1(coeffs, state, x[i], 0.f);
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}
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}
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static inline void bw_comb_set_delay_ff(bw_comb_coeffs *BW_RESTRICT coeffs, float value) {
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coeffs->delay_ff = value;
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}
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static inline void bw_comb_set_delay_fb(bw_comb_coeffs *BW_RESTRICT coeffs, float value) {
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coeffs->delay_fb = value;
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}
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static inline void bw_mm1_set_coeff_blend(bw_mm1_coeffs *BW_RESTRICT coeffs, float value) {
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bw_gain_set_gain_lin(&coeffs->blend_coeffs, value);
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}
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static inline void bw_mm1_set_coeff_ff(bw_mm1_coeffs *BW_RESTRICT coeffs, float value) {
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bw_gain_set_gain_lin(&coeffs->ff_coeffs, value);
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}
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static inline void bw_mm1_set_coeff_fb(bw_mm1_coeffs *BW_RESTRICT coeffs, float value) {
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bw_gain_set_gain_lin(&coeffs->fb_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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@ -23,7 +23,7 @@
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* version {{{ 0.4.0 }}}
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* requires {{{ bw_buf bw_config bw_common bw_math }}}
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* description {{{
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* Interpolated delay line.
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* Interpolated delay line, not smoothed.
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*
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* You can either use the usual API for updating coefficients and processing
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* signals or you can directly write and read from the delay line which,
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@ -102,7 +102,7 @@ static inline void bw_delay_reset_state(const bw_delay_coeffs *BW_RESTRICT coeff
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*
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* #### bw_delay_read()
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* ```>>> */
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static float bw_delay_read(const bw_delay_coeffs *BW_RESTRICT coeffs, bw_delay_state *BW_RESTRICT state, BW_SIZE_T di, float df);
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static float bw_delay_read(const bw_delay_coeffs *BW_RESTRICT coeffs, const bw_delay_state *BW_RESTRICT state, BW_SIZE_T di, float df);
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/*! <<<```
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* Returns the interpolated value read from the delay line identified by
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* `coeffs` and `state` by applying a delay of `di` + `df` samples.
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@ -135,7 +135,7 @@ static inline float bw_delay_process1(const bw_delay_coeffs *BW_RESTRICT coeffs,
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* Processes one input sample `x` using `coeffs`, while using and updating
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* `state`. Returns the corresponding output sample.
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*
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* #### bw_env_follow_process()
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* #### bw_delay_process()
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* ```>>> */
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static inline void bw_delay_process(bw_delay_coeffs *BW_RESTRICT coeffs, bw_delay_state *BW_RESTRICT state, const float *x, float *y, int n_samples);
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/*! <<<```
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@ -150,6 +150,12 @@ static inline void bw_delay_set_delay(bw_delay_coeffs *BW_RESTRICT coeffs, float
|
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* Sets the delay time `value` (s) in `coeffs`.
|
||||
*
|
||||
* Default value: `0.f`.
|
||||
*
|
||||
* #### bw_delay_get_length()
|
||||
* ```>>> */
|
||||
static inline BW_SIZE_T bw_delay_get_length(bw_delay_coeffs *BW_RESTRICT coeffs);
|
||||
/*! <<<```
|
||||
* Returns the length of the delay line in samples.
|
||||
* }}} */
|
||||
|
||||
/*** Implementation ***/
|
||||
@ -207,7 +213,7 @@ static inline void bw_delay_reset_state(const bw_delay_coeffs *BW_RESTRICT coeff
|
||||
state->idx = 0;
|
||||
}
|
||||
|
||||
static float bw_delay_read(const bw_delay_coeffs *BW_RESTRICT coeffs, bw_delay_state *BW_RESTRICT state, BW_SIZE_T di, float df) {
|
||||
static float bw_delay_read(const bw_delay_coeffs *BW_RESTRICT coeffs, const bw_delay_state *BW_RESTRICT state, BW_SIZE_T di, float df) {
|
||||
const BW_SIZE_T n = (state->idx + (state->idx >= di ? 0 : coeffs->len)) - di;
|
||||
const BW_SIZE_T p = (n ? n : coeffs->len) - 1;
|
||||
return state->buf[n] + df * (state->buf[p] - state->buf[n]);
|
||||
@ -221,10 +227,9 @@ static void bw_delay_write(const bw_delay_coeffs *BW_RESTRICT coeffs, bw_delay_s
|
||||
|
||||
static inline void bw_delay_update_coeffs_ctrl(bw_delay_coeffs *BW_RESTRICT coeffs) {
|
||||
if (coeffs->delay_changed) {
|
||||
const float s = coeffs->delay * coeffs->fs;
|
||||
const float f = bw_floorf(s);
|
||||
coeffs->di = (BW_SIZE_T)f;
|
||||
coeffs->df = s - f;
|
||||
float i;
|
||||
bw_intfracf(coeffs->fs * coeffs->delay, &i, &coeffs->df);
|
||||
coeffs->di = (BW_SIZE_T)i;
|
||||
coeffs->delay_changed = 0;
|
||||
}
|
||||
}
|
||||
@ -251,6 +256,10 @@ static inline void bw_delay_set_delay(bw_delay_coeffs *BW_RESTRICT coeffs, float
|
||||
}
|
||||
}
|
||||
|
||||
static inline BW_SIZE_T bw_delay_get_length(bw_delay_coeffs *BW_RESTRICT coeffs) {
|
||||
return coeffs->len;
|
||||
}
|
||||
|
||||
#ifdef __cplusplus
|
||||
}
|
||||
#endif
|
||||
|
@ -72,8 +72,8 @@
|
||||
* <ul>
|
||||
* <li>Version <strong>0.4.0</strong>:
|
||||
* <ul>
|
||||
* <li>Added `bw_ceilf()`, `bw_sinhf_3()`, `bw_coshf_3()`,
|
||||
* `bw_asinhf_3()`, and `bw_acoshf_3()`.</li>
|
||||
* <li>Added `bw_ceilf()`, `bw_intfracf()`, `bw_sinhf_3()`,
|
||||
* `bw_coshf_3()`, `bw_asinhf_3()`, and `bw_acoshf_3()`.</li>
|
||||
* </ul>
|
||||
* </li>
|
||||
* <li>Version <strong>0.3.0</strong>:
|
||||
@ -241,6 +241,13 @@ static inline float bw_ceilf(float x);
|
||||
* Returns the smallest integer greater or equal than `x` (i.e., `x` is
|
||||
* rounded up).
|
||||
*
|
||||
* #### bw_intfracf()
|
||||
* ```>>> */
|
||||
static inline void bw_intfracf(float x, float *i, float *f);
|
||||
/*! <<<```
|
||||
* Puts the integer part (floor) of `x` in `i` and the fractional part in
|
||||
* `f`.
|
||||
*
|
||||
* #### bw_rcpf_2()
|
||||
* ```>>> */
|
||||
static inline float bw_rcpf_2(float x);
|
||||
@ -576,6 +583,11 @@ static inline float bw_ceilf(float x) {
|
||||
return t.f + s.f;
|
||||
}
|
||||
|
||||
static inline void bw_intfracf(float x, float *i, float *f) {
|
||||
*i = bw_floorf(x);
|
||||
*f = x - *i;
|
||||
}
|
||||
|
||||
static inline float bw_rcpf_2(float x) {
|
||||
_bw_floatint v = {.f = x};
|
||||
v.i = 0x7ef0e840 - v.i;
|
||||
|
@ -129,7 +129,7 @@ static inline float bw_one_pole_process1_asym(const bw_one_pole_coeffs *BW_RESTR
|
||||
static inline float bw_one_pole_process1_asym_sticky_abs(const bw_one_pole_coeffs *BW_RESTRICT coeffs, bw_one_pole_state *BW_RESTRICT state, float x);
|
||||
static inline float bw_one_pole_process1_asym_sticky_rel(const bw_one_pole_coeffs *BW_RESTRICT coeffs, bw_one_pole_state *BW_RESTRICT state, float x);
|
||||
/*! <<<```
|
||||
* These function process one input sample `x` using `coeffs`, while using
|
||||
* These functions process one input sample `x` using `coeffs`, while using
|
||||
* and updating `state`. They return the corresponding output sample.
|
||||
*
|
||||
* In particular:
|
||||
|
@ -21,7 +21,7 @@
|
||||
/*!
|
||||
* module_type {{{ dsp }}}
|
||||
* version {{{ 0.4.0 }}}
|
||||
* requires {{{ bw_config bw_common bw_one_pole bw_math bw_svf }}}
|
||||
* requires {{{ bw_config bw_common bw_math bw_one_pole bw_svf }}}
|
||||
* description {{{
|
||||
* Wah effect.
|
||||
*
|
||||
@ -33,7 +33,8 @@
|
||||
* <ul>
|
||||
* <li>Now specifying `0.f` as initial input value for
|
||||
* `bw_svf_reset_state()`.</li>
|
||||
* <li>Fixed documentation for `bw_wah_state` and `bw_wah_reset_state()`.</li>
|
||||
* <li>Fixed documentation for `bw_wah_state`, `bw_wah_reset_state()`,
|
||||
* and `bw_wah_process()`.</li>
|
||||
* </ul>
|
||||
* </li>
|
||||
* <li>Version <strong>0.3.0</strong>:
|
||||
@ -115,7 +116,7 @@ static inline float bw_wah_process1(const bw_wah_coeffs *BW_RESTRICT coeffs, bw_
|
||||
* Processes one input sample `x` using `coeffs`, while using and updating
|
||||
* `state`. Returns the corresponding output sample.
|
||||
*
|
||||
* #### bw_env_follow_process()
|
||||
* #### bw_wah_process()
|
||||
* ```>>> */
|
||||
static inline void bw_wah_process(bw_wah_coeffs *BW_RESTRICT coeffs, bw_wah_state *BW_RESTRICT state, const float *x, float *y, int n_samples);
|
||||
/*! <<<```
|
||||
|
Loading…
Reference in New Issue
Block a user