mirror of
https://github.com/radio95-rnt/fm95.git
synced 2026-02-26 19:23:51 +01:00
add new preemp
This commit is contained in:
2
.vscode/.server-controller-port.log
vendored
2
.vscode/.server-controller-port.log
vendored
@@ -1,5 +1,5 @@
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{
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"port": 13452,
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"time": 1738326357935,
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"time": 1738336716329,
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"version": "0.0.3"
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}
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@@ -1,19 +1,51 @@
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#include "filters.h"
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void init_rc(ResistorCapacitor *rc, float alpha) {
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rc->prev_sample = 0.0f;
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rc->alpha = alpha;
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}
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void init_preemphasis(BiquadFilter *filter, float tau, float sample_rate) {
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/*
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premphasis should go like this:
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cutoff: +0
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2cutoff: +6
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3cutoff: +12
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4cutoff: +18
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...
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*/
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void init_rc_tau(ResistorCapacitor *rc, float tau, float sample_rate) {
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rc->prev_sample = 0.0f;
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rc->alpha = exp(-1 / (tau * sample_rate));
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}
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// Calculate the cutoff frequency from tau (f_c = 1/(2πτ))
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float cutoff_freq = 1.0f / (2.0f * M_PI * tau);
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// Pre-warp the cutoff frequency for the bilinear transform
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float omega = 2.0f * M_PI * cutoff_freq / sample_rate;
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float K = tanf(omega / 2.0f);
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float apply_pre_emphasis(ResistorCapacitor *rc, float sample) {
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float audio = sample-rc->alpha*rc->prev_sample;
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rc->prev_sample = audio;
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return audio;
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// Calculate filter coefficients for 1st-order high-pass (converted to biquad)
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float alpha = 1.0f + K;
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filter->b0 = 1.0f / alpha;
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filter->b1 = -filter->b0;
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filter->b2 = 0.0f;
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filter->a1 = (K - 1.0f) / alpha;
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filter->a2 = 0.0f;
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// Reset state variables
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filter->x1 = 0.0f;
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filter->x2 = 0.0f;
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filter->y1 = 0.0f;
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filter->y2 = 0.0f;
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}
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float apply_preemphasis(BiquadFilter *filter, float input) {
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// Direct Form I implementation
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float output = filter->b0 * input
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+ filter->b1 * filter->x1
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+ filter->b2 * filter->x2
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- filter->a1 * filter->y1
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- filter->a2 * filter->y2;
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// Update state variables
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filter->x2 = filter->x1;
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filter->x1 = input;
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filter->y2 = filter->y1;
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filter->y1 = output;
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return output;
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}
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void init_lpf(FrequencyFilter* filter, float cutoffFreq, float sampleRate) {
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@@ -6,13 +6,14 @@
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#include "constants.h"
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typedef struct {
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float alpha;
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float prev_sample;
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} ResistorCapacitor;
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float b0, b1, b2;
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float a1, a2;
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float x1, x2;
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float y1, y2;
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} BiquadFilter;
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void init_rc(ResistorCapacitor *pe, float alpha);
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void init_rc_tau(ResistorCapacitor *pe, float tau, float sample_rate);
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float apply_pre_emphasis(ResistorCapacitor *pe, float sample);
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void init_preemphasis(BiquadFilter *filter, float tau, float sample_rate);
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float apply_preemphasis(BiquadFilter *filter, float input);
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typedef struct {
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float coeffs[FILTER_TAPS];
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10
src/fm95.c
10
src/fm95.c
@@ -456,9 +456,9 @@ int main(int argc, char **argv) {
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DelayLine monoDelay; // Hilbert introduces a delay, this should be here to sync the mono with stereo to a sample
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init_delay_line(&monoDelay, (HILBERT_TAPS-1)/2);
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ResistorCapacitor preemp_l, preemp_r;
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init_rc_tau(&preemp_l, preemphasis_tau, SAMPLE_RATE);
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init_rc_tau(&preemp_r, preemphasis_tau, SAMPLE_RATE);
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BiquadFilter preemp_l, preemp_r;
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init_preemphasis(&preemp_l, preemphasis_tau, SAMPLE_RATE);
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init_preemphasis(&preemp_r, preemphasis_tau, SAMPLE_RATE);
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FrequencyFilter lpf_l, lpf_r;
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init_lpf(&lpf_l, LPF_CUTOFF, SAMPLE_RATE);
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@@ -514,8 +514,8 @@ int main(int argc, char **argv) {
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float ready_r = apply_frequency_filter(&lpf_r, l_in);
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ready_l = apply_frequency_filter(&hpf_l, ready_l);
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ready_r = apply_frequency_filter(&hpf_r, ready_r);
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ready_l = apply_pre_emphasis(&preemp_l, ready_l)*2;
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ready_r = apply_pre_emphasis(&preemp_r, ready_r)*2;
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ready_l = apply_preemphasis(&preemp_l, ready_l);
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ready_r = apply_preemphasis(&preemp_r, ready_r);
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ready_l = soft_clip(ready_l, soft_clipper_threshold);
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ready_r = soft_clip(ready_r, soft_clipper_threshold);
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ready_l = hard_clip(ready_l, clipper_threshold);
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