#include "bs412.h" #define BS412_TIME 60 #define ENABLE_TIME 45 #define CLAMP(x, lo, hi) (((x) < (lo)) ? (lo) : ((x) > (hi) ? (hi) : (x))) inline float power_to_dbr(float power, float ref) { if (power < 1e-12f) return -100.0f; return 10*log10f(power / ref); } void init_bs412(BS412Compressor* comp, uint32_t mpx_deviation, float target_power, float attack, float release, float max_gain, float gate, uint32_t sample_rate) { comp->reference = (19000.0f / mpx_deviation) * (19000.0f / mpx_deviation); // 0 dbr is a signal which generates a deviation of 19 khz comp->avg_power = 0.0f; comp->alpha = 1.0f / (BS412_TIME * sample_rate); comp->sample_rate = sample_rate; comp->attack = expf(-1.0f / (attack * sample_rate)); comp->release = expf(-1.0f / (release * sample_rate)); comp->target = comp->reference * powf(10.0f, target_power / 10.0f);; comp->gain = 1.0f; comp->can_compress = 0; comp->second_counter = 0; comp->max_gain = max_gain; comp->gate_threshold = comp->reference * powf(10.0f, gate / 10.0f); comp->init = true; #ifdef BS412_DEBUG debug_printf("Initialized MPX power measurement with sample rate: %d\n", sample_rate); #endif } void reinit_bs412(BS412Compressor* comp, uint32_t mpx_deviation, float target_power, float attack, float release, float max_gain, float gate) { comp->reference = (19000.0f / mpx_deviation) * (19000.0f / mpx_deviation); // 0 dbr is a signal which generates a deviation of 19 khz comp->target = comp->reference * powf(10.0f, target_power / 10.0f);; comp->gate_threshold = comp->reference * powf(10.0f, gate / 10.0f); comp->attack = expf(-1.0f / (attack * comp->sample_rate)); comp->release = expf(-1.0f / (release * comp->sample_rate)); comp->max_gain = max_gain; } float bs412_compress(BS412Compressor* comp, float audio, float sample_mpx, float* mpx_power) { float combined = audio + sample_mpx; float output_sample = (audio * comp->gain) + sample_mpx; float inst_power = output_sample * output_sample; float audio_power = (audio * comp->gain) * (audio * comp->gain); float w = (audio_power - comp->gate_threshold) / comp->gate_threshold; w = CLAMP(w, 0.0f, 1.0f); comp->avg_power += comp->alpha * w * (inst_power - comp->avg_power); if(comp->sample_counter >= comp->sample_rate) { comp->sample_counter = 0; if(comp->can_compress == 0) comp->second_counter++; } if(comp->can_compress == 0 && comp->second_counter > ENABLE_TIME) { #ifdef BS412_DEBUG debug_printf("Can compress.\n"); #endif comp->can_compress = 1; comp->second_counter = 0; } float safe_power = fmaxf(comp->avg_power, 1e-12f); float target_gain = sqrtf(comp->target / safe_power); if (comp->avg_power > comp->target) comp->gain = comp->attack * comp->gain + (1.0f - comp->attack) * target_gain; else comp->gain = comp->release * comp->gain + (1.0f - comp->release) * target_gain; comp->gain = CLAMP(comp->gain, 0.01f, comp->max_gain); comp->sample_counter++; if(mpx_power != NULL) *mpx_power += power_to_dbr(comp->avg_power, comp->reference); if(comp->can_compress) return output_sample; return combined; }