finalized bw_comp + fixed missing smooth init + examples
This commit is contained in:
parent
69b74c4ccb
commit
19e37fd6e8
1
TODO
1
TODO
@ -75,6 +75,7 @@ code:
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* reset_state_multi allow NULL input?
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* process allow NULL output?
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* #if __cplusplus >= 201103L ? - see https://stackoverflow.com/questions/5047971/how-do-i-check-for-c11-support
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* get current compression level, knee
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build system:
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* make makefiles handle paths with spaces etc
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@ -30,7 +30,7 @@ void bw_example_fx_comp_set_sample_rate(bw_example_fx_comp *instance, float samp
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void bw_example_fx_comp_reset(bw_example_fx_comp *instance) {
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bw_comp_reset_coeffs(&instance->comp_coeffs);
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bw_comp_reset_state(&instance->comp_coeffs, &instance->comp_state);
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bw_comp_reset_state(&instance->comp_coeffs, &instance->comp_state, 0.f, 0.f);
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}
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void bw_example_fx_comp_process(bw_example_fx_comp *instance, const float** x, float** y, int n_samples) {
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@ -4,3 +4,6 @@ NAME := bw_example_fx_comp
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SOURCES = ${SOURCES_COMMON} ${ROOT_DIR}/../src/bw_example_fx_comp.c
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include ${ROOT_DIR}/../../common/vst3/vst3.mk
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CXXFLAGS += -DRELEASE=1 -DNDEBUG -DBW_NO_DEBUG
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#CXXFLAGS += -DDEVELOPMENT=1 -DBW_DEBUG_DEEP
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@ -4,3 +4,6 @@ NAME := bw_example_fxpp_comp
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SOURCES = ${SOURCES_COMMON} ${ROOT_DIR}/../src/bw_example_fxpp_comp.cpp
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include ${ROOT_DIR}/../../common/vst3/vst3.mk
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CXXFLAGS += -DRELEASE=1 -DNDEBUG -DBW_NO_DEBUG
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#CXXFLAGS += -DDEVELOPMENT=1 -DBW_DEBUG_DEEP
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@ -45,6 +45,7 @@
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* <li>Moved C++ code to C header.</li>
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* <li>Added overloaded C++ <code>process()</code> function taking
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* C-style arrays as arguments.</li>
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* <li>Fixed missing smoothing filter initialization.</li>
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* <li>Removed usage of reserved identifiers.</li>
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* <li>Clearly specified parameter validity ranges.</li>
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* <li>Added debugging code.</li>
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@ -290,6 +291,34 @@ static inline void bw_comp_set_gain_dB(
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* `value` must be less than or equal to `770.630f`.
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*
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* Default value: `0.f`.
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*
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* #### bw_comp_coeffs_is_valid()
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* ```>>> */
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static inline char bw_comp_coeffs_is_valid(
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const bw_comp_coeffs * BW_RESTRICT coeffs);
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/*! <<<```
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* Tries to determine whether `coeffs` is valid and returns non-`0` if it
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* seems to be the case and `0` if it is certainly not. False positives are
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* possible, false negatives are not.
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*
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* `coeffs` must at least point to a readable memory block of size greater
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* than or equal to that of `bw_comp_coeffs`.
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*
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* #### bw_comp_state_is_valid()
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* ```>>> */
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static inline char bw_comp_state_is_valid(
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const bw_comp_coeffs * BW_RESTRICT coeffs,
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const bw_comp_state * BW_RESTRICT state);
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/*! <<<```
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* Tries to determine whether `state` is valid and returns non-`0` if it
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* seems to be the case and `0` if it is certainly not. False positives are
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* possible, false negatives are not.
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*
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* If `coeffs` is not `NULL` extra cross-checks might be performed (`state`
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* is supposed to be associated to `coeffs`).
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*
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* `state` must at least point to a readable memory block of size greater
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* than or equal to that of `bw_comp_state`.
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* }}} */
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#ifdef __cplusplus
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@ -357,6 +386,7 @@ static inline void bw_comp_init(
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bw_env_follow_init(&coeffs->env_follow_coeffs);
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bw_gain_init(&coeffs->gain_coeffs);
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bw_one_pole_init(&coeffs->smooth_coeffs);
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bw_one_pole_set_tau(&coeffs->smooth_coeffs, 0.05f);
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coeffs->thresh = 1.f;
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coeffs->ratio = 1.f;
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@ -411,26 +441,109 @@ static inline void bw_comp_reset_coeffs(
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static inline float bw_comp_reset_state(
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const bw_comp_coeffs * BW_RESTRICT coeffs,
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bw_comp_state * BW_RESTRICT state,
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float x_0,
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float x_sc_0) {
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(void)x_0;
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bw_env_follow_reset_state(&coeffs->env_follow_coeffs, &state->env_follow_state, x_sc_0);
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bw_comp_state * BW_RESTRICT state,
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float x_0,
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float x_sc_0) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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BW_ASSERT(state != NULL);
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BW_ASSERT(bw_is_finite(x_0));
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const float env = bw_env_follow_reset_state(&coeffs->env_follow_coeffs, &state->env_follow_state, x_sc_0);
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const float thresh = bw_one_pole_get_y_z1(&coeffs->smooth_thresh_state);
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float y;
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if (env > thresh) {
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float v = thresh * bw_rcpf(env);
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if (v >= 1.175494350822287e-38f) {
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v = coeffs->kc * bw_log2f(v);
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y = v > -126.f ? bw_pow2f(v) * x_0 : thresh;
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} else
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y = thresh;
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} else
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y = x_0;
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y = bw_gain_get_gain_cur(&coeffs->gain_coeffs) * y;
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#ifdef BW_DEBUG_DEEP
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state->hash = bw_hash_sdbm("bw_comp_state");
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state->coeffs_reset_id = coeffs->reset_id;
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#endif
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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BW_ASSERT_DEEP(bw_comp_state_is_valid(coeffs, state));
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BW_ASSERT(bw_is_finite(y));
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return y;
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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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static inline void bw_comp_reset_state_multi(
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const bw_comp_coeffs * BW_RESTRICT coeffs,
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bw_comp_state * BW_RESTRICT const * BW_RESTRICT state,
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const float * x_0,
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const float * x_sc_0,
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float * y_0,
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size_t n_channels) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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BW_ASSERT(state != NULL);
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BW_ASSERT(x_0 != NULL);
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BW_ASSERT(x_sc_0 != NULL);
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if (y_0 != NULL)
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for (size_t i = 0; i < n_channels; i++)
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y_0[i] = bw_comp_reset_state(coeffs, state[i], x_0[i], x_sc_0[i]);
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else
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for (size_t i = 0; i < n_channels; i++)
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bw_comp_reset_state(coeffs, state[i], x_0[i], x_sc_0[i]);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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BW_ASSERT_DEEP(bw_has_only_finite(y_0, n_channels));
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BW_ASSERT_DEEP(y_0 != NULL ? bw_has_only_finite(y_0, n_channels) : 1);
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}
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static inline void bw_comp_update_coeffs_ctrl(
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bw_comp_coeffs * BW_RESTRICT coeffs) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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bw_env_follow_update_coeffs_ctrl(&coeffs->env_follow_coeffs);
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bw_gain_update_coeffs_ctrl(&coeffs->gain_coeffs);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_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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static inline void bw_comp_update_coeffs_audio(
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bw_comp_coeffs * BW_RESTRICT coeffs) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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bw_env_follow_update_coeffs_audio(&coeffs->env_follow_coeffs);
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bw_gain_update_coeffs_audio(&coeffs->gain_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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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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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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static inline float bw_comp_process1(
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const bw_comp_coeffs * BW_RESTRICT coeffs,
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bw_comp_state * BW_RESTRICT state,
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float x,
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float x_sc) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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BW_ASSERT(state != NULL);
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BW_ASSERT_DEEP(bw_comp_state_is_valid(coeffs, state));
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BW_ASSERT(bw_is_finite(x));
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BW_ASSERT(bw_is_finite(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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float y;
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@ -438,58 +551,231 @@ static inline float bw_comp_process1(const bw_comp_coeffs *BW_RESTRICT coeffs, b
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float v = thresh * bw_rcpf(env);
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if (v >= 1.175494350822287e-38f) {
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v = coeffs->kc * bw_log2f(v);
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y = v > -126.f ? bw_pow2f(v) * x: thresh;
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y = v > -126.f ? bw_pow2f(v) * x : thresh;
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} else
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y = thresh;
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} else
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y = x;
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y = bw_gain_process1(&coeffs->gain_coeffs, y);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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BW_ASSERT_DEEP(bw_comp_state_is_valid(coeffs, state));
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BW_ASSERT(bw_is_finite(y));
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return 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, size_t n_samples) {
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static inline void bw_comp_process(
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bw_comp_coeffs * BW_RESTRICT coeffs,
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bw_comp_state * BW_RESTRICT state,
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const float * x,
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const float * x_sc,
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float * y,
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size_t n_samples) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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BW_ASSERT(state != NULL);
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BW_ASSERT_DEEP(bw_comp_state_is_valid(coeffs, state));
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BW_ASSERT(x != NULL);
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BW_ASSERT_DEEP(bw_has_only_finite(x, n_samples));
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BW_ASSERT(y != NULL);
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bw_comp_update_coeffs_ctrl(coeffs);
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for (size_t 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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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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BW_ASSERT_DEEP(bw_comp_state_is_valid(coeffs, state));
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BW_ASSERT_DEEP(bw_has_only_finite(y, n_samples));
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}
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static inline void bw_comp_process_multi(bw_comp_coeffs *BW_RESTRICT coeffs, bw_comp_state *BW_RESTRICT const *BW_RESTRICT state, const float * const *x, const float * const *x_sc, float * const *y, size_t n_channels, size_t n_samples) {
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static inline void bw_comp_process_multi(
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bw_comp_coeffs * BW_RESTRICT coeffs,
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bw_comp_state * BW_RESTRICT const * BW_RESTRICT state,
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const float * const * x,
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const float * const * x_sc,
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float * const * y,
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size_t n_channels,
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size_t n_samples) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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BW_ASSERT(state != NULL);
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BW_ASSERT(x != NULL);
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BW_ASSERT(x_sc != NULL);
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BW_ASSERT(y != NULL);
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bw_comp_update_coeffs_ctrl(coeffs);
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for (size_t i = 0; i < n_samples; i++) {
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bw_comp_update_coeffs_audio(coeffs);
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for (size_t j = 0; j < n_channels; j++)
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y[j][i] = bw_comp_process1(coeffs, state[j], x[j][i], x_sc[j][i]);
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}
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_reset_coeffs);
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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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static inline void bw_comp_set_thresh_lin(
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bw_comp_coeffs * BW_RESTRICT coeffs,
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float value) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
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BW_ASSERT(bw_is_finite(value));
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BW_ASSERT(value >= 1e-20f && value <= 1e20f);
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coeffs->thresh = value;
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
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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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static inline void bw_comp_set_thresh_dBFS(
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bw_comp_coeffs * BW_RESTRICT coeffs,
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float value) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
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BW_ASSERT(bw_is_finite(value));
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BW_ASSERT(value >= -400.f && value <= 400.f);
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coeffs->thresh = bw_dB2linf(value);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
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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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static inline void bw_comp_set_ratio(
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bw_comp_coeffs * BW_RESTRICT coeffs,
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float value) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
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BW_ASSERT(bw_is_finite(value));
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BW_ASSERT(value >= 0.f && value <= 1.f);
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coeffs->ratio = value;
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
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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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static inline void bw_comp_set_attack_tau(
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bw_comp_coeffs * BW_RESTRICT coeffs,
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float value) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
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BW_ASSERT(bw_is_finite(value));
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BW_ASSERT(value >= 0.f);
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bw_env_follow_set_attack_tau(&coeffs->env_follow_coeffs, value);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
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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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static inline void bw_comp_set_release_tau(
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bw_comp_coeffs * BW_RESTRICT coeffs,
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float value) {
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BW_ASSERT(coeffs != NULL);
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BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
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BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
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BW_ASSERT(bw_is_finite(value));
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BW_ASSERT(value >= 0.f);
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|
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bw_env_follow_set_release_tau(&coeffs->env_follow_coeffs, value);
|
||||
|
||||
BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
|
||||
BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
|
||||
}
|
||||
|
||||
static inline void bw_comp_set_gain_lin(bw_comp_coeffs *BW_RESTRICT coeffs, float value) {
|
||||
static inline void bw_comp_set_gain_lin(
|
||||
bw_comp_coeffs * BW_RESTRICT coeffs,
|
||||
float value) {
|
||||
BW_ASSERT(coeffs != NULL);
|
||||
BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
|
||||
BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
|
||||
BW_ASSERT(bw_is_finite(value));
|
||||
|
||||
bw_gain_set_gain_lin(&coeffs->gain_coeffs, value);
|
||||
|
||||
BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
|
||||
BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
|
||||
}
|
||||
|
||||
static inline void bw_comp_set_gain_dB(bw_comp_coeffs *BW_RESTRICT coeffs, float value) {
|
||||
static inline void bw_comp_set_gain_dB(
|
||||
bw_comp_coeffs * BW_RESTRICT coeffs,
|
||||
float value) {
|
||||
BW_ASSERT(coeffs != NULL);
|
||||
BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
|
||||
BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
|
||||
BW_ASSERT(!bw_is_nan(value));
|
||||
BW_ASSERT(value <= 770.630f);
|
||||
|
||||
bw_gain_set_gain_dB(&coeffs->gain_coeffs, value);
|
||||
|
||||
BW_ASSERT_DEEP(bw_comp_coeffs_is_valid(coeffs));
|
||||
BW_ASSERT_DEEP(coeffs->state >= bw_comp_coeffs_state_init);
|
||||
}
|
||||
|
||||
static inline char bw_comp_coeffs_is_valid(
|
||||
const bw_comp_coeffs * BW_RESTRICT coeffs) {
|
||||
BW_ASSERT(coeffs != NULL);
|
||||
|
||||
#ifdef BW_DEBUG_DEEP
|
||||
if (coeffs->hash != bw_hash_sdbm("bw_comp_coeffs"))
|
||||
return 0;
|
||||
if (coeffs->state < bw_comp_coeffs_state_init || coeffs->state > bw_comp_coeffs_state_reset_coeffs)
|
||||
return 0;
|
||||
#endif
|
||||
|
||||
if (!bw_is_finite(coeffs->thresh) || coeffs->thresh < 1e-20f || coeffs->thresh > 1e20f)
|
||||
return 0;
|
||||
if (!bw_is_finite(coeffs->ratio) || coeffs->ratio < 0.f || coeffs->ratio > 1.f)
|
||||
return 0;
|
||||
|
||||
if (!bw_one_pole_coeffs_is_valid(&coeffs->smooth_coeffs))
|
||||
return 0;
|
||||
|
||||
#ifdef BW_DEBUG_DEEP
|
||||
if (coeffs->state >= bw_comp_coeffs_state_reset_coeffs) {
|
||||
if (!bw_is_finite(coeffs->kc) || coeffs->kc < 0.f || coeffs->kc > 1.f)
|
||||
return 0;
|
||||
|
||||
if (!bw_one_pole_state_is_valid(&coeffs->smooth_coeffs, &coeffs->smooth_thresh_state))
|
||||
return 0;
|
||||
if (!bw_one_pole_state_is_valid(&coeffs->smooth_coeffs, &coeffs->smooth_ratio_state))
|
||||
return 0;
|
||||
}
|
||||
#endif
|
||||
|
||||
return bw_env_follow_coeffs_is_valid(&coeffs->env_follow_coeffs)
|
||||
&& bw_gain_coeffs_is_valid(&coeffs->gain_coeffs);
|
||||
}
|
||||
|
||||
static inline char bw_comp_state_is_valid(
|
||||
const bw_comp_coeffs * BW_RESTRICT coeffs,
|
||||
const bw_comp_state * BW_RESTRICT state) {
|
||||
BW_ASSERT(state != NULL);
|
||||
|
||||
#ifdef BW_DEBUG_DEEP
|
||||
if (state->hash != bw_hash_sdbm("bw_comp_state"))
|
||||
return 0;
|
||||
|
||||
if (coeffs != NULL && coeffs->reset_id != state->coeffs_reset_id)
|
||||
return 0;
|
||||
#endif
|
||||
|
||||
(void)coeffs;
|
||||
|
||||
return bw_env_follow_state_is_valid(&coeffs->env_follow_coeffs, &state->env_follow_state);
|
||||
}
|
||||
|
||||
#ifdef __cplusplus
|
||||
@ -509,34 +795,61 @@ class Comp {
|
||||
public:
|
||||
Comp();
|
||||
|
||||
void setSampleRate(float sampleRate);
|
||||
void reset(
|
||||
float x_0 = 0.f,
|
||||
float x_sc_0 = 0.f);
|
||||
void reset(
|
||||
const float *x_0,
|
||||
const float *x_sc_0);
|
||||
void reset(
|
||||
const std::array<float, N_CHANNELS> x_0,
|
||||
const std::array<float, N_CHANNELS> x_sc_0);
|
||||
void process(
|
||||
const float * const *x,
|
||||
const float * const *x_sc,
|
||||
float * const *y,
|
||||
size_t nSamples);
|
||||
void process(
|
||||
const std::array<const float *, N_CHANNELS> x,
|
||||
const std::array<const float *, N_CHANNELS> x_sc,
|
||||
const std::array<float *, N_CHANNELS> y,
|
||||
size_t nSamples);
|
||||
void setSampleRate(
|
||||
float sampleRate);
|
||||
|
||||
void setTreshLin(float value);
|
||||
void setTreshDBFS(float value);
|
||||
void setRatio(float value);
|
||||
void setAttackTau(float value);
|
||||
void setReleaseTau(float value);
|
||||
void setGainLin(float value);
|
||||
void setGainDB(float value);
|
||||
void reset(
|
||||
float x0 = 0.f,
|
||||
float xSc0 = 0.f,
|
||||
float * BW_RESTRICT y0 = nullptr);
|
||||
|
||||
void reset(
|
||||
float x0,
|
||||
float xSc0,
|
||||
std::array<float, N_CHANNELS> * BW_RESTRICT y0);
|
||||
|
||||
void reset(
|
||||
const float * x0,
|
||||
const float * xSc0,
|
||||
float * y0 = nullptr);
|
||||
|
||||
void reset(
|
||||
std::array<float, N_CHANNELS> x0,
|
||||
std::array<float, N_CHANNELS> xSc0,
|
||||
std::array<float, N_CHANNELS> * BW_RESTRICT y0 = nullptr);
|
||||
|
||||
void process(
|
||||
const float * const * x,
|
||||
const float * const * xSc,
|
||||
float * const * y,
|
||||
size_t nSamples);
|
||||
|
||||
void process(
|
||||
std::array<const float *, N_CHANNELS> x,
|
||||
std::array<const float *, N_CHANNELS> xSc,
|
||||
std::array<float *, N_CHANNELS> y,
|
||||
size_t nSamples);
|
||||
|
||||
void setTreshLin(
|
||||
float value);
|
||||
|
||||
void setTreshDBFS(
|
||||
float value);
|
||||
|
||||
void setRatio(
|
||||
float value);
|
||||
|
||||
void setAttackTau(
|
||||
float value);
|
||||
|
||||
void setReleaseTau(
|
||||
float value);
|
||||
|
||||
void setGainLin(
|
||||
float value);
|
||||
|
||||
void setGainDB(
|
||||
float value);
|
||||
/*! <<<...
|
||||
* }
|
||||
* ```
|
||||
@ -548,9 +861,9 @@ public:
|
||||
* change at any time in future versions. Please, do not use it directly. */
|
||||
|
||||
private:
|
||||
bw_comp_coeffs coeffs;
|
||||
bw_comp_state states[N_CHANNELS];
|
||||
bw_comp_state *BW_RESTRICT statesP[N_CHANNELS];
|
||||
bw_comp_coeffs coeffs;
|
||||
bw_comp_state states[N_CHANNELS];
|
||||
bw_comp_state * BW_RESTRICT statesP[N_CHANNELS];
|
||||
};
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
@ -561,85 +874,107 @@ inline Comp<N_CHANNELS>::Comp() {
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::setSampleRate(float sampleRate) {
|
||||
inline void Comp<N_CHANNELS>::setSampleRate(
|
||||
float sampleRate) {
|
||||
bw_comp_set_sample_rate(&coeffs, sampleRate);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::reset(
|
||||
float x_0,
|
||||
float x_sc_0) {
|
||||
float x0,
|
||||
float xSc0,
|
||||
float * BW_RESTRICT y0) {
|
||||
bw_comp_reset_coeffs(&coeffs);
|
||||
for (size_t i = 0; i < N_CHANNELS; i++)
|
||||
bw_comp_reset_state(&coeffs, states + i, x_0, x_sc_0);
|
||||
if (y0 != nullptr)
|
||||
for (size_t i = 0; i < N_CHANNELS; i++)
|
||||
y0[i] = bw_comp_reset_state(&coeffs, states + i, x0, xSc0);
|
||||
else
|
||||
for (size_t i = 0; i < N_CHANNELS; i++)
|
||||
bw_comp_reset_state(&coeffs, states + i, x0, xSc0);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::reset(
|
||||
const float *x_0,
|
||||
const float *x_sc_0) {
|
||||
bw_comp_reset_coeffs(&coeffs);
|
||||
for (size_t i = 0; i < N_CHANNELS; i++)
|
||||
bw_comp_reset_state(&coeffs, states + i, x_0[i], x_sc_0[i]);
|
||||
float x0,
|
||||
float xSc0,
|
||||
std::array<float, N_CHANNELS> * BW_RESTRICT y0) {
|
||||
reset(x0, xSc0, y0 != nullptr ? y0->data() : nullptr);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::reset(
|
||||
const std::array<float, N_CHANNELS> x_0,
|
||||
const std::array<float, N_CHANNELS> x_sc_0) {
|
||||
reset(x_0.data(), x_sc_0.data());
|
||||
const float * x0,
|
||||
const float * xSc0,
|
||||
float * y0) {
|
||||
bw_comp_reset_coeffs(&coeffs);
|
||||
bw_comp_reset_state_multi(&coeffs, statesP, x0, xSc0, y0, N_CHANNELS);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::reset(
|
||||
std::array<float, N_CHANNELS> x0,
|
||||
std::array<float, N_CHANNELS> xSc0,
|
||||
std::array<float, N_CHANNELS> * BW_RESTRICT y0) {
|
||||
reset(x0.data(), xSc0.data(), y0 != nullptr ? y0->data() : nullptr);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::process(
|
||||
const float * const *x,
|
||||
const float * const *x_sc,
|
||||
float * const *y,
|
||||
size_t nSamples) {
|
||||
bw_comp_process_multi(&coeffs, statesP, x, x_sc, y, N_CHANNELS, nSamples);
|
||||
const float * const * x,
|
||||
const float * const * xSc,
|
||||
float * const * y,
|
||||
size_t nSamples) {
|
||||
bw_comp_process_multi(&coeffs, statesP, x, xSc, y, N_CHANNELS, nSamples);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::process(
|
||||
const std::array<const float *, N_CHANNELS> x,
|
||||
const std::array<const float *, N_CHANNELS> x_sc,
|
||||
const std::array<float *, N_CHANNELS> y,
|
||||
size_t nSamples) {
|
||||
process(x.data(), x_sc.data(), y.data(), nSamples);
|
||||
std::array<const float *, N_CHANNELS> x,
|
||||
std::array<const float *, N_CHANNELS> xSc,
|
||||
std::array<float *, N_CHANNELS> y,
|
||||
size_t nSamples) {
|
||||
process(x.data(), xSc.data(), y.data(), nSamples);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::setTreshLin(float value) {
|
||||
inline void Comp<N_CHANNELS>::setTreshLin(
|
||||
float value) {
|
||||
bw_comp_set_thresh_lin(&coeffs, value);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::setTreshDBFS(float value) {
|
||||
inline void Comp<N_CHANNELS>::setTreshDBFS(
|
||||
float value) {
|
||||
bw_comp_set_thresh_dBFS(&coeffs, value);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::setRatio(float value) {
|
||||
inline void Comp<N_CHANNELS>::setRatio(
|
||||
float value) {
|
||||
bw_comp_set_ratio(&coeffs, value);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::setAttackTau(float value) {
|
||||
inline void Comp<N_CHANNELS>::setAttackTau(
|
||||
float value) {
|
||||
bw_comp_set_attack_tau(&coeffs, value);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::setReleaseTau(float value) {
|
||||
inline void Comp<N_CHANNELS>::setReleaseTau(
|
||||
float value) {
|
||||
bw_comp_set_release_tau(&coeffs, value);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::setGainLin(float value) {
|
||||
inline void Comp<N_CHANNELS>::setGainLin(
|
||||
float value) {
|
||||
bw_comp_set_gain_lin(&coeffs, value);
|
||||
}
|
||||
|
||||
template<size_t N_CHANNELS>
|
||||
inline void Comp<N_CHANNELS>::setGainDB(float value) {
|
||||
inline void Comp<N_CHANNELS>::setGainDB(
|
||||
float value) {
|
||||
bw_comp_set_gain_dB(&coeffs, value);
|
||||
}
|
||||
|
||||
|
Loading…
Reference in New Issue
Block a user