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https://github.com/Proxmark/proxmark3.git
synced 2025-08-14 02:26:59 -07:00
refactor pskdemod - remove nrz.._ext
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56de46b466
commit
6f36848f9e
4 changed files with 55 additions and 65 deletions
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@ -1761,7 +1761,8 @@ int NRZrawDemod(const char *Cmd, bool verbose)
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size_t BitLen = getFromGraphBuf(BitStream);
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if (BitLen==0) return 0;
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int errCnt=0;
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errCnt = nrzRawDemod(BitStream, &BitLen, &clk, &invert);
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int clkStartIdx = 0;
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errCnt = nrzRawDemod(BitStream, &BitLen, &clk, &invert, &clkStartIdx);
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if (errCnt > maxErr){
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if (g_debugMode) PrintAndLog("Too many errors found, clk: %d, invert: %d, numbits: %d, errCnt: %d",clk,invert,BitLen,errCnt);
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return 0;
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@ -218,7 +218,8 @@ uint8_t GetNrzClock(const char str[], bool printAns, bool verbose)
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PrintAndLog("Failed to copy from graphbuffer");
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return -1;
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}
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clock = DetectNRZClock(grph, size, 0);
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size_t clkStartIdx = 0;
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clock = DetectNRZClock(grph, size, 0, &clkStartIdx);
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// Only print this message if we're not looping something
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if (printAns){
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PrintAndLog("Auto-detected clock rate: %d", clock);
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108
common/lfdemod.c
108
common/lfdemod.c
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@ -40,6 +40,7 @@
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//---------------------------------Utilities Section--------------------------------------------
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//**********************************************************************************************
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#define LOWEST_DEFAULT_CLOCK 32
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#define FSK_PSK_THRESHOLD 123
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//to allow debug print calls when used not on device
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void dummy(char *fmt, ...){}
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#ifndef ON_DEVICE
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@ -53,11 +54,10 @@ void dummy(char *fmt, ...){}
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#endif
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uint8_t justNoise(uint8_t *BitStream, size_t size) {
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static const uint8_t THRESHOLD = 123;
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//test samples are not just noise
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uint8_t justNoise1 = 1;
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for(size_t idx=0; idx < size && justNoise1 ;idx++){
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justNoise1 = BitStream[idx] < THRESHOLD;
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justNoise1 = BitStream[idx] < FSK_PSK_THRESHOLD;
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}
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return justNoise1;
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}
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@ -72,7 +72,7 @@ int getHiLo(uint8_t *BitStream, size_t size, int *high, int *low, uint8_t fuzzHi
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if (BitStream[i] > *high) *high = BitStream[i];
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if (BitStream[i] < *low) *low = BitStream[i];
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}
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if (*high < 123) return -1; // just noise
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if (*high < FSK_PSK_THRESHOLD) return -1; // just noise
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*high = ((*high-128)*fuzzHi + 12800)/100;
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*low = ((*low-128)*fuzzLo + 12800)/100;
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return 1;
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@ -197,18 +197,18 @@ uint8_t preambleSearch(uint8_t *BitStream, uint8_t *preamble, size_t pLen, size_
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}
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// find start of modulating data (for fsk and psk) in case of beginning noise or slow chip startup.
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size_t findModStart(uint8_t dest[], size_t size, uint8_t threshold_value, uint8_t expWaveSize) {
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size_t findModStart(uint8_t dest[], size_t size, uint8_t expWaveSize) {
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size_t i = 0;
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size_t waveSizeCnt = 0;
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uint8_t thresholdCnt = 0;
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bool isAboveThreshold = dest[i++] >= threshold_value;
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bool isAboveThreshold = dest[i++] >= FSK_PSK_THRESHOLD;
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for (; i < size-20; i++ ) {
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if(dest[i] < threshold_value && isAboveThreshold) {
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if(dest[i] < FSK_PSK_THRESHOLD && isAboveThreshold) {
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thresholdCnt++;
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if (thresholdCnt > 2 && waveSizeCnt < expWaveSize+1) break;
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isAboveThreshold = false;
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waveSizeCnt = 0;
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} else if (dest[i] >= threshold_value && !isAboveThreshold) {
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} else if (dest[i] >= FSK_PSK_THRESHOLD && !isAboveThreshold) {
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thresholdCnt++;
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if (thresholdCnt > 2 && waveSizeCnt < expWaveSize+1) break;
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isAboveThreshold = true;
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@ -509,7 +509,7 @@ int DetectStrongNRZClk(uint8_t *dest, size_t size, int peak, int low){
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//by marshmellow
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//detect nrz clock by reading #peaks vs no peaks(or errors)
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int DetectNRZClock_ext(uint8_t dest[], size_t size, int clock, size_t *clockStartIdx) {
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int DetectNRZClock(uint8_t dest[], size_t size, int clock, size_t *clockStartIdx) {
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size_t i=0;
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uint8_t clk[]={8,16,32,40,50,64,100,128,255};
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size_t loopCnt = 4096; //don't need to loop through entire array...
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@ -625,11 +625,6 @@ int DetectNRZClock_ext(uint8_t dest[], size_t size, int clock, size_t *clockStar
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return clk[best];
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}
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int DetectNRZClock(uint8_t dest[], size_t size, int clock) {
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size_t bestStart=0;
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return DetectNRZClock_ext(dest, size, clock, &bestStart);
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}
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//by marshmellow
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//countFC is to detect the field clock lengths.
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//counts and returns the 2 most common wave lengths
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@ -1334,9 +1329,10 @@ int askdemod(uint8_t *BinStream, size_t *size, int *clk, int *invert, int maxErr
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// by marshmellow - demodulate NRZ wave - requires a read with strong signal
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// peaks invert bit (high=1 low=0) each clock cycle = 1 bit determined by last peak
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int nrzRawDemod_ext(uint8_t *dest, size_t *size, int *clk, int *invert, int *startIdx) {
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int nrzRawDemod(uint8_t *dest, size_t *size, int *clk, int *invert, int *startIdx) {
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if (justNoise(dest, *size)) return -1;
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*clk = DetectNRZClock(dest, *size, *clk);
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size_t clkStartIdx = 0;
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*clk = DetectNRZClock(dest, *size, *clk, &clkStartIdx);
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if (*clk==0) return -2;
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size_t i, gLen = 4096;
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if (gLen>*size) gLen = *size-20;
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@ -1368,10 +1364,6 @@ int nrzRawDemod_ext(uint8_t *dest, size_t *size, int *clk, int *invert, int *sta
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*size = numBits;
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return 0;
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}
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int nrzRawDemod(uint8_t *dest, size_t *size, int *clk, int *invert) {
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int startIdx = 0;
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return nrzRawDemod_ext(dest, size, clk, invert, &startIdx);
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}
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//translate wave to 11111100000 (1 for each short wave [higher freq] 0 for each long wave [lower freq])
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size_t fsk_wave_demod(uint8_t * dest, size_t size, uint8_t fchigh, uint8_t fclow, int *startIdx) {
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@ -1380,16 +1372,15 @@ size_t fsk_wave_demod(uint8_t * dest, size_t size, uint8_t fchigh, uint8_t fclow
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if (fchigh==0) fchigh=10;
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if (fclow==0) fclow=8;
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//set the threshold close to 0 (graph) or 128 std to avoid static
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uint8_t threshold_value = 123;
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size_t preLastSample = 0;
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size_t LastSample = 0;
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size_t currSample = 0;
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if ( size < 1024 ) return 0; // not enough samples
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//find start of modulating data in trace
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idx = findModStart(dest, size, threshold_value, fchigh);
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idx = findModStart(dest, size, fchigh);
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// Need to threshold first sample
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if(dest[idx] < threshold_value) dest[0] = 0;
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if(dest[idx] < FSK_PSK_THRESHOLD) dest[0] = 0;
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else dest[0] = 1;
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last_transition = idx;
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@ -1401,7 +1392,7 @@ size_t fsk_wave_demod(uint8_t * dest, size_t size, uint8_t fchigh, uint8_t fclow
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// (could also be fc/5 && fc/7 for fsk1 = 4-9)
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for(; idx < size; idx++) {
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// threshold current value
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if (dest[idx] < threshold_value) dest[idx] = 0;
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if (dest[idx] < FSK_PSK_THRESHOLD) dest[idx] = 0;
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else dest[idx] = 1;
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// Check for 0->1 transition
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@ -1531,54 +1522,55 @@ void psk2TOpsk1(uint8_t *BitStream, size_t size) {
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return;
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}
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size_t pskFindFirstPhaseShift(uint8_t samples[], size_t size, uint8_t *curPhase, size_t waveStart, uint16_t fc, uint16_t *fullWaveLen) {
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uint16_t loopCnt = (size+3 < 4096) ? size : 4096; //don't need to loop through entire array...
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uint16_t avgWaveVal=0, lastAvgWaveVal=0;
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size_t i = waveStart, waveEnd, waveLenCnt, firstFullWave;
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for (; i<loopCnt; i++) {
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// find peak
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if (samples[i]+fc < samples[i+1] && samples[i+1] >= samples[i+2]){
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waveEnd = i+1;
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if (g_debugMode == 2) prnt("DEBUG PSK: waveEnd: %u, waveStart: %u", waveEnd, waveStart);
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waveLenCnt = waveEnd-waveStart;
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if (waveLenCnt > fc && waveStart > fc && !(waveLenCnt > fc+8)){ //not first peak and is a large wave but not out of whack
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lastAvgWaveVal = avgWaveVal/(waveLenCnt);
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firstFullWave = waveStart;
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*fullWaveLen = waveLenCnt;
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//if average wave value is > graph 0 then it is an up wave or a 1 (could cause inverting)
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if (lastAvgWaveVal > FSK_PSK_THRESHOLD) *curPhase ^= 1;
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return firstFullWave;
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}
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waveStart = i+1;
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avgWaveVal = 0;
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}
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avgWaveVal += samples[i+2];
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}
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return 0;
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}
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//by marshmellow - demodulate PSK1 wave
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//uses wave lengths (# Samples)
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int pskRawDemod_ext(uint8_t dest[], size_t *size, int *clock, int *invert, int *startIdx) {
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if (size == 0) return -1;
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uint16_t loopCnt = 4096; //don't need to loop through entire array...
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if (*size<loopCnt) loopCnt = *size;
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if (*size < 170) return -1;
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size_t numBits=0;
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uint8_t curPhase = *invert;
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size_t i=0, waveStart=1, waveEnd=0, firstFullWave=0, lastClkBit=0;
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uint16_t fc=0, fullWaveLen=0, tol=1;
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uint16_t errCnt=0, waveLenCnt=0, errCnt2=0;
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size_t i=0, numBits=0, waveStart=1, waveEnd=0, firstFullWave=0, lastClkBit=0;
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uint16_t fc=0, fullWaveLen=0, waveLenCnt=0, avgWaveVal, tol=1;
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uint16_t errCnt=0, errCnt2=0;
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fc = countFC(dest, *size, 1);
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uint8_t fc2 = fc >> 8;
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if (fc2 == 10) return -1; //fsk found - quit
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if ((fc >> 8) == 10) return -1; //fsk found - quit
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fc = fc & 0xFF;
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if (fc!=2 && fc!=4 && fc!=8) return -1;
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//PrintAndLog("DEBUG: FC: %d",fc);
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*clock = DetectPSKClock(dest, *size, *clock);
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if (*clock == 0) return -1;
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//find start of modulating data in trace
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uint8_t threshold_value = 123; //-5
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i = findModStart(dest, *size, threshold_value, fc);
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i = findModStart(dest, *size, fc);
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//find first phase shift
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int avgWaveVal=0, lastAvgWaveVal=0;
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waveStart = i;
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for (; i<loopCnt; i++) {
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// find peak
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if (dest[i]+fc < dest[i+1] && dest[i+1] >= dest[i+2]){
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waveEnd = i+1;
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if (g_debugMode == 2) prnt("DEBUG PSK: waveEnd: %u, waveStart: %u",waveEnd, waveStart);
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waveLenCnt = waveEnd-waveStart;
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if (waveLenCnt > fc && waveStart > fc && !(waveLenCnt > fc+3)){ //not first peak and is a large wave but not out of whack
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lastAvgWaveVal = avgWaveVal/(waveLenCnt);
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firstFullWave = waveStart;
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fullWaveLen=waveLenCnt;
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//if average wave value is > graph 0 then it is an up wave or a 1 (could cause inverting)
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if (lastAvgWaveVal > threshold_value) curPhase ^= 1;
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break;
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}
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waveStart = i+1;
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avgWaveVal = 0;
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}
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avgWaveVal += dest[i+2];
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}
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firstFullWave = pskFindFirstPhaseShift(dest, *size, &curPhase, i, fc, &fullWaveLen);
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if (firstFullWave == 0) {
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// no phase shift detected - could be all 1's or 0's - doesn't matter where we start
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// so skip a little to ensure we are past any Start Signal
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@ -1606,9 +1598,7 @@ int pskRawDemod_ext(uint8_t dest[], size_t *size, int *clock, int *invert, int *
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} else { //waveEnd
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waveEnd = i+1;
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waveLenCnt = waveEnd-waveStart;
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lastAvgWaveVal = avgWaveVal/waveLenCnt;
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if (waveLenCnt > fc){
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//PrintAndLog("DEBUG: avgWaveVal: %d, waveSum: %d",lastAvgWaveVal,avgWaveVal);
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//this wave is a phase shift
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//PrintAndLog("DEBUG: phase shift at: %d, len: %d, nextClk: %d, i: %d, fc: %d",waveStart,waveLenCnt,lastClkBit+*clock-tol,i+1,fc);
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if (i+1 >= lastClkBit + *clock - tol){ //should be a clock bit
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@ -29,8 +29,7 @@ extern int DetectASKClock(uint8_t dest[], size_t size, int *clock, int maxE
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extern uint8_t DetectCleanAskWave(uint8_t dest[], size_t size, uint8_t high, uint8_t low);
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extern uint8_t detectFSKClk(uint8_t *BitStream, size_t size, uint8_t fcHigh, uint8_t fcLow);
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extern uint8_t detectFSKClk_ext(uint8_t *BitStream, size_t size, uint8_t fcHigh, uint8_t fcLow, int *firstClockEdge);
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extern int DetectNRZClock(uint8_t dest[], size_t size, int clock);
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extern int DetectNRZClock_ext(uint8_t dest[], size_t size, int clock, size_t *clockStartIdx);
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extern int DetectNRZClock(uint8_t dest[], size_t size, int clock, size_t *clockStartIdx);
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extern int DetectPSKClock(uint8_t dest[], size_t size, int clock);
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extern int DetectPSKClock_ext(uint8_t dest[], size_t size, int clock, int *firstPhaseShift);
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extern int DetectStrongAskClock(uint8_t dest[], size_t size, int high, int low, int *clock);
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@ -42,8 +41,7 @@ extern int getHiLo(uint8_t *BitStream, size_t size, int *high, int *low, ui
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extern uint32_t manchesterEncode2Bytes(uint16_t datain);
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extern int ManchesterEncode(uint8_t *BitStream, size_t size);
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extern int manrawdecode(uint8_t *BitStream, size_t *size, uint8_t invert, uint8_t *alignPos);
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extern int nrzRawDemod(uint8_t *dest, size_t *size, int *clk, int *invert);
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extern int nrzRawDemod_ext(uint8_t *dest, size_t *size, int *clk, int *invert, int *startIdx);
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extern int nrzRawDemod(uint8_t *dest, size_t *size, int *clk, int *invert, int *startIdx);
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extern uint8_t parityTest(uint32_t bits, uint8_t bitLen, uint8_t pType);
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extern uint8_t preambleSearch(uint8_t *BitStream, uint8_t *preamble, size_t pLen, size_t *size, size_t *startIdx);
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extern bool preambleSearchEx(uint8_t *BitStream, uint8_t *preamble, size_t pLen, size_t *size, size_t *startIdx, bool findone);
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