Noise floor measurement is too expensive to be worth it, disable it.
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demod_2400.c
16
demod_2400.c
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@ -19,6 +19,12 @@
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#include "dump1090.h"
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//
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// Measuring the noise power is actually surprisingly expensive on an ARM -
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// it increases the CPU use of the demodulator by 1/3. So it's off by default.
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// You can turn it back on here:
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#undef MEASURE_NOISE
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// 2.4MHz sampling rate version
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//
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// When sampling at 2.4MHz we have exactly 6 samples per 5 symbols.
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@ -153,14 +159,18 @@ void demodulate2400(uint16_t *m, uint32_t mlen) {
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struct modesMessage mm;
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unsigned char msg1[MODES_LONG_MSG_BYTES], msg2[MODES_LONG_MSG_BYTES], *msg;
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uint32_t j;
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#ifdef MEASURE_NOISE
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uint32_t last_message_end = 0;
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#endif
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unsigned char *bestmsg;
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int bestscore, bestphase;
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#ifdef MEASURE_NOISE
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// noise floor:
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uint32_t noise_power_count = 0;
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uint64_t noise_power_sum = 0;
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#endif
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memset(&mm, 0, sizeof(mm));
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msg = msg1;
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@ -172,6 +182,7 @@ void demodulate2400(uint16_t *m, uint32_t mlen) {
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int initial_phase, first_phase, last_phase, try_phase;
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int msglen;
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#ifdef MEASURE_NOISE
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// update noise for all samples that aren't part of a message
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// (we don't know if m[j] is or not, yet, so work one sample
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// in arrears)
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@ -182,6 +193,7 @@ void demodulate2400(uint16_t *m, uint32_t mlen) {
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noise_power_sum += s * s;
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noise_power_count++;
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}
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#endif
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// Look for a message starting at around sample 0 with phase offset 3..7
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@ -462,14 +474,18 @@ void demodulate2400(uint16_t *m, uint32_t mlen) {
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// where the preamble of the second message clobbered the last
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// few bits of the first message, but the message bits didn't
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// overlap)
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#ifdef MEASURE_NOISE
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last_message_end = j + (8 + msglen)*12/5;
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#endif
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j += (8 + msglen - 8)*12/5 - 1;
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// Pass data to the next layer
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useModesMessage(&mm);
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}
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#ifdef MEASURE_NOISE
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Modes.stats_current.noise_power_sum += (noise_power_sum / MAX_POWER / noise_power_count);
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Modes.stats_current.noise_power_count ++;
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#endif
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}
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