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4 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| 9769346951 | |||
| 2a8adc954a | |||
| 8c996e4f54 | |||
| c5f4645980 |
@@ -1,9 +1,9 @@
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project(trnr-lib)
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project(tlib)
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add_library(trnr-lib INTERFACE)
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add_library(tlib INTERFACE)
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# Add include directories
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target_include_directories(trnr-lib INTERFACE
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target_include_directories(tlib INTERFACE
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${CMAKE_CURRENT_SOURCE_DIR}/clip
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${CMAKE_CURRENT_SOURCE_DIR}/companding
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${CMAKE_CURRENT_SOURCE_DIR}/dynamics
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@@ -30,13 +30,14 @@ namespace trnr {
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struct pump {
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double samplerate;
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float threshold_db = 0.f;
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float attack_ms = 10.f;
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float release_ms = 100.f;
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float attack_ms = 0.1f;
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float release_ms = 200.f;
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float hp_filter = 80.f;
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float ratio = 1000.f;
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float filter_frq = 40000.f;
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float filter_exp = 0.f;
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float filter_frq = 20000.f;
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float filter_exp = 1.f;
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float treble_boost = 0.f;
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float makeup = 0.f;
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float filtered = 0.f;
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float filtered_l = 0.f;
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@@ -93,6 +94,30 @@ inline void pump_set_param(pump& p, pump_param param, float value)
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}
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}
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inline float pump_get_param(const pump& p, pump_param param)
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{
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switch (param) {
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case PUMP_THRESHOLD:
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return p.threshold_db;
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case PUMP_ATTACK:
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return p.attack_ms;
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case PUMP_RELEASE:
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return p.release_ms;
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case PUMP_HP_FILTER:
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return p.hp_filter;
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case PUMP_RATIO:
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return p.ratio;
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case PUMP_FILTER_FRQ:
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return p.filter_frq;
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case PUMP_FILTER_EXP:
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return p.filter_exp;
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case PUMP_TREBLE_BOOST:
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return p.treble_boost;
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default:
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return -1.f;
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}
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}
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inline void pump_init(pump& p, double samplerate)
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{
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p.samplerate = samplerate;
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@@ -136,7 +161,8 @@ inline void pump_process_block(pump& p, sample** audio, sample** sidechain, int
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if (overshoot_db > p.envelope_db) {
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p.envelope_db = overshoot_db + p.attack_coef * (p.envelope_db - overshoot_db);
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} else {
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p.envelope_db = overshoot_db + p.release_coef * (p.envelope_db - overshoot_db);
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p.envelope_db =
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overshoot_db + p.release_coef * (p.envelope_db - overshoot_db);
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}
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float slope = 1.f / p.ratio;
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@@ -150,7 +176,8 @@ inline void pump_process_block(pump& p, sample** audio, sample** sidechain, int
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sample output_r = input_r * gain_reduction_lin;
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if (p.filter_exp > 0.f) {
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// one pole lowpass filter with envelope applied to frequency for pumping effect
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// one pole lowpass filter with envelope applied to frequency for pumping
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// effect
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float freq = p.filter_frq * pow(gain_reduction_lin, p.filter_exp);
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float lp_x = exp(-2.0 * M_PI * freq / p.samplerate);
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float lp_a0 = 1.0 - lp_x;
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@@ -166,7 +193,7 @@ inline void pump_process_block(pump& p, sample** audio, sample** sidechain, int
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output_r = p.filtered_r + (p.filtered_r - p.boosted_r) * p.treble_boost;
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// calculate makeup gain
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float makeup_lin = trnr::db_2_lin(-p.threshold_db / 5.f);
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float makeup_lin = trnr::db_2_lin(p.makeup);
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audio[0][i] = input_l * gain_reduction_lin * makeup_lin;
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audio[1][i] = input_r * gain_reduction_lin * makeup_lin;
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@@ -36,14 +36,14 @@ struct demo_noise {
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float noise_gain = 0.1f;
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};
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inline void demo_nose_init(demo_noise& d, double samplerate)
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inline void demo_noise_init(demo_noise& d, double samplerate)
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{
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d.samplerate = samplerate;
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d.counter = 0;
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}
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// overwrites the input buffer with noise in the specified time frame
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inline void process_block(demo_noise& d, float** samples, int blocksize)
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inline void demo_noise_process_block(demo_noise& d, float** samples, int blocksize)
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{
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int noise_len_samples = d.noise_len_sec * d.samplerate;
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int pause_len_samples = d.pause_len_sec * d.samplerate;
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