Replace BPF with LPF after I/Q conversion
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09b4c2c169
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4e6a29abbc
72
src/main.c
72
src/main.c
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@ -382,10 +382,36 @@ static void rf_rx_stop(void)
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dma_t_samp = -1;
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dma_t_samp = -1;
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}
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}
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inline static int next_sample(const uint32_t *buf, int *h)
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{
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int x1 = 2 * (buf[0] - buf[1]);
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int x2 = 0;
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int x3 = -2 * (buf[4] - buf[5]);
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int x4 = 0;
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int sample = 18 * h[9] + 14 * h[8] - 32 * h[7] - 33 * h[6] + 106 * h[5] + 362 * h[4] +
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565 * h[3] + 565 * h[2] + 362 * h[1] + 106 * h[0] - 33 * x1 - 32 * x2 +
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14 * x3 + 18 * x4;
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h[9] = h[5];
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h[8] = h[4];
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h[7] = h[3];
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h[6] = h[2];
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h[5] = h[1];
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h[4] = h[0];
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h[3] = x1;
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h[2] = x2;
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h[1] = x3;
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h[0] = x4;
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return sample >> 10;
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}
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static void rf_rx(void)
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static void rf_rx(void)
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{
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{
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const uint32_t base = (uint32_t)rx_cos;
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const uint32_t base = (uint32_t)rx_cos;
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int prev1 = 0, prev2 = 0, prev3 = 0, prev4 = 0;
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int prevI[10] = { 0 };
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int prevQ[10] = { 0 };
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int pos = 0;
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int pos = 0;
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while (true) {
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while (true) {
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@ -416,48 +442,16 @@ static void rf_rx(void)
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/*
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/*
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* Since every 2 samples add to either +1 or -1,
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* Since every 2 samples add to either +1 or -1,
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* the maximum amplitude in one direction is 1/2.
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* the maximum amplitude in one direction is 1/2.
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*/
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*
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int64_t max_amplitude = CLK_SYS_HZ / 2;
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/*
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* We are allowing the counters to only go as high
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* We are allowing the counters to only go as high
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* as sampling rate, but the I/Q conversion splits
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* as sampling rate.
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* samples between two channels.
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*/
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*/
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max_amplitude /= sample_rate * 2;
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int64_t max_amplitude = CLK_SYS_HZ / 2 / sample_rate;
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for (int i = 0; i < IQ_SAMPLES; i++) {
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for (int i = 0; i < IQ_SAMPLES; i++) {
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int sI = 0, sQ = 0;
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int64_t I = next_sample(cos_ptr + 0, prevI);
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int pos, neg;
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int64_t Q = next_sample(cos_ptr + 2, prevQ);
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cos_ptr += 8;
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#define next_sample ((-(pos - neg) + prev2 * 2 - prev4))
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// +I
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pos = *cos_ptr++;
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neg = *cos_ptr++;
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sI += next_sample;
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prev4 = prev3, prev3 = prev2, prev2 = prev1, prev1 = pos - neg;
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// +Q
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pos = *cos_ptr++;
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neg = *cos_ptr++;
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sQ += next_sample;
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prev4 = prev3, prev3 = prev2, prev2 = prev1, prev1 = pos - neg;
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// -I
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pos = *cos_ptr++;
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neg = *cos_ptr++;
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sI -= next_sample;
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prev4 = prev3, prev3 = prev2, prev2 = prev1, prev1 = pos - neg;
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// -Q
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pos = *cos_ptr++;
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neg = *cos_ptr++;
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sQ -= next_sample;
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prev4 = prev3, prev3 = prev2, prev2 = prev1, prev1 = pos - neg;
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int64_t I = sI / 4;
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int64_t Q = sQ / 4;
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I *= gain;
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I *= gain;
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I -= (max_amplitude * 181) / 256;
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I -= (max_amplitude * 181) / 256;
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