j--; // overwrite parity with next data
// if parity fails then return 0
switch (pType) {
- case 3: if (BitStream[j]==1) return 0; break; //should be 0 spacer bit
- case 2: if (BitStream[j]==0) return 0; break; //should be 1 spacer bit
- default: //test parity
- if (parityTest(parityWd, pLen, pType) == 0) return 0; break;
+ case 3: if (BitStream[j]==1) { return 0 }; break; //should be 0 spacer bit
+ case 2: if (BitStream[j]==0) { return 0 }; break; //should be 1 spacer bit
+ default: if (parityTest(parityWd, pLen, pType) == 0) { return 0; } break; //test parity
}
bitCnt+=(pLen-1);
parityWd = 0;
//search for given preamble in given BitStream and return success=1 or fail=0 and startIndex and length
uint8_t preambleSearch(uint8_t *BitStream, uint8_t *preamble, size_t pLen, size_t *size, size_t *startIdx)
{
- uint8_t foundCnt=0;
- for (int idx=0; idx < *size - pLen; idx++){
+ // Sanity check. If preamble length is bigger than bitstream length.
+ if ( *size <= pLen ) return 0;
+
+ uint8_t foundCnt = 0;
+ for (int idx = 0; idx < *size - pLen; idx++){
if (memcmp(BitStream+idx, preamble, pLen) == 0){
//first index found
foundCnt++;
{
if (justNoise(dest, *size)) return -1;
- size_t numStart=0, size2=*size, startIdx=0;
+ size_t numStart=0, size2 = *size, startIdx=0;
// FSK demodulator
*size = fskdemod(dest, size2,50,1,10,8); //fsk2a
if (*size < 96*2) return -2;
{
if (justNoise(dest, *size)) return -1;
- size_t numStart=0, size2=*size, startIdx=0;
+ size_t numStart=0, size2 = *size, startIdx=0;
// FSK demodulator
*size = fskdemod(dest, size2,50,1,10,8); //fsk2a
if (*size < 96) return -2;
size_t startIdx = 0;
// 0xFFFF preamble, 64bits
- uint8_t preamble[] = {1,1,1,1,1,1,1,1,1,1,1,1,1,1,1,1};
+ uint8_t preamble[] = {
+ 1,1,1,1,
+ 1,1,1,1,
+ 1,1,1,1,
+ 1,1,1,1,
+ 0
+ };
uint8_t errChk = preambleSearch(dest, preamble, sizeof(preamble), size, &startIdx);
if (errChk == 0) return -4; //preamble not found
+ if (*size != 64) return -3;
- uint8_t checkCalc = 0;
+ uint8_t checkchksum = 0;
for (int i=16; i < 56; i += 8) {
- checkCalc += bytebits_to_byte(dest+startIdx+i,8);
+ checkchksum += bytebits_to_byte(dest+startIdx+i,8);
}
- checkCalc ^= 0x3A;
+ checkchksum ^= 0x3A;
- uint8_t crc = bytebits_to_byte(dest+startIdx+56,8);
+ uint8_t crc = bytebits_to_byte(dest+startIdx+56, 8);
- if ( checkCalc != crc ) return -5;
- if (*size != 64) return -6;
+ if ( checkchksum != crc ) return -5;
return (int)startIdx;
}