mirror of
https://github.com/RfidResearchGroup/proxmark3.git
synced 2025-01-08 09:10:06 +08:00
adjust ask/biphase handling - more complete
also added XL EM410x formats
This commit is contained in:
parent
7a8a982bde
commit
b41534d142
4 changed files with 222 additions and 147 deletions
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@ -622,7 +622,7 @@ static void askSimBit(uint8_t c, int *n, uint8_t clock, uint8_t manchester)
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uint8_t *dest = BigBuf_get_addr();
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uint8_t halfClk = clock/2;
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// c = current bit 1 or 0
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if (manchester){
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if (manchester==1){
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memset(dest+(*n), c, halfClk);
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memset(dest+(*n) + halfClk, c^1, halfClk);
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} else {
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@ -631,26 +631,54 @@ static void askSimBit(uint8_t c, int *n, uint8_t clock, uint8_t manchester)
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*n += clock;
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}
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static void biphaseSimBit(uint8_t c, int *n, uint8_t clock, uint8_t *phase)
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{
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uint8_t *dest = BigBuf_get_addr();
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uint8_t halfClk = clock/2;
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if (c){
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memset(dest+(*n), c ^ 1 ^ *phase, halfClk);
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memset(dest+(*n) + halfClk, c ^ *phase, halfClk);
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} else {
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memset(dest+(*n), c ^ *phase, clock);
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*phase ^= 1;
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}
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}
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// args clock, ask/man or askraw, invert, transmission separator
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void CmdASKsimTag(uint16_t arg1, uint16_t arg2, size_t size, uint8_t *BitStream)
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{
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int ledcontrol = 1;
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int n=0, i=0;
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uint8_t clk = (arg1 >> 8) & 0xFF;
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uint8_t manchester = arg1 & 1;
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uint8_t encoding = arg1 & 1;
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uint8_t separator = arg2 & 1;
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uint8_t invert = (arg2 >> 8) & 1;
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for (i=0; i<size; i++){
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askSimBit(BitStream[i]^invert, &n, clk, manchester);
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}
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if (manchester==0 && BitStream[0]==BitStream[size-1]){ //run a second set inverted (for biphase phase)
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if (encoding==2){ //biphase
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uint8_t phase=0;
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for (i=0; i<size; i++){
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askSimBit(BitStream[i]^invert^1, &n, clk, manchester);
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biphaseSimBit(BitStream[i]^invert, &n, clk, &phase);
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}
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if (BitStream[0]==BitStream[size-1]){ //run a second set inverted to keep phase in check
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for (i=0; i<size; i++){
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biphaseSimBit(BitStream[i]^invert, &n, clk, &phase);
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}
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}
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} else { // ask/manchester || ask/raw
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for (i=0; i<size; i++){
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askSimBit(BitStream[i]^invert, &n, clk, encoding);
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}
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if (encoding==0 && BitStream[0]==BitStream[size-1]){ //run a second set inverted (for biphase phase)
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for (i=0; i<size; i++){
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askSimBit(BitStream[i]^invert^1, &n, clk, encoding);
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}
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}
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}
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if (separator==1) Dbprintf("sorry but separator option not yet available");
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Dbprintf("Simulating with clk: %d, invert: %d, manchester: %d, separator: %d, n: %d",clk, invert, manchester, separator, n);
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Dbprintf("Simulating with clk: %d, invert: %d, encoding: %d, separator: %d, n: %d",clk, invert, encoding, separator, n);
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//DEBUG
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//Dbprintf("First 32:");
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//uint8_t *dest = BigBuf_get_addr();
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@ -817,8 +845,9 @@ void CmdEM410xdemod(int findone, int *high, int *low, int ledcontrol)
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{
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uint8_t *dest = BigBuf_get_addr();
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size_t size=0, idx=0;
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size_t size=0, idx=0;
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int clk=0, invert=0, errCnt=0, maxErr=20;
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uint32_t hi=0;
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uint64_t lo=0;
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// Configure to go in 125Khz listen mode
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LFSetupFPGAForADC(95, true);
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@ -828,24 +857,34 @@ void CmdEM410xdemod(int findone, int *high, int *low, int ledcontrol)
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WDT_HIT();
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if (ledcontrol) LED_A_ON();
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DoAcquisition_default(-1,true);
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size = BigBuf_max_traceLen();
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DoAcquisition_default(-1,true);
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size = BigBuf_max_traceLen();
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//Dbprintf("DEBUG: Buffer got");
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//askdemod and manchester decode
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errCnt = askmandemod(dest, &size, &clk, &invert, maxErr);
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//askdemod and manchester decode
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errCnt = askmandemod(dest, &size, &clk, &invert, maxErr);
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//Dbprintf("DEBUG: ASK Got");
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WDT_HIT();
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if (errCnt>=0){
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lo = Em410xDecode(dest, &size, &idx);
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errCnt = Em410xDecode(dest, &size, &idx, &hi, &lo);
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//Dbprintf("DEBUG: EM GOT");
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if (lo>0){
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Dbprintf("EM TAG ID: %02x%08x - (%05d_%03d_%08d)",
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(uint32_t)(lo>>32),
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(uint32_t)lo,
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(uint32_t)(lo&0xFFFF),
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(uint32_t)((lo>>16LL) & 0xFF),
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(uint32_t)(lo & 0xFFFFFF));
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if (errCnt){
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if (size>64){
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Dbprintf("EM XL TAG ID: %06x%08x%08x - (%05d_%03d_%08d)",
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hi,
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(uint32_t)(lo>>32),
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(uint32_t)lo,
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(uint32_t)(lo&0xFFFF),
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(uint32_t)((lo>>16LL) & 0xFF),
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(uint32_t)(lo & 0xFFFFFF));
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} else {
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Dbprintf("EM TAG ID: %02x%08x - (%05d_%03d_%08d)",
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(uint32_t)(lo>>32),
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(uint32_t)lo,
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(uint32_t)(lo&0xFFFF),
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(uint32_t)((lo>>16LL) & 0xFF),
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(uint32_t)(lo & 0xFFFFFF));
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}
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}
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if (findone){
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if (ledcontrol) LED_A_OFF();
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256
client/cmddata.c
256
client/cmddata.c
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@ -260,9 +260,9 @@ void printBitStream(uint8_t BitStream[], uint32_t bitLen)
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}
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//by marshmellow
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//print 64 bit EM410x ID in multiple formats
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void printEM410x(uint64_t id)
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void printEM410x(uint32_t hi, uint64_t id)
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{
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if (id !=0){
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if (id || hi){
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uint64_t iii=1;
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uint64_t id2lo=0;
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uint32_t ii=0;
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@ -272,16 +272,21 @@ void printEM410x(uint64_t id)
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id2lo=(id2lo<<1LL) | ((id & (iii << (i+((ii-1)*8)))) >> (i+((ii-1)*8)));
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}
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}
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//output em id
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PrintAndLog("EM TAG ID : %010llx", id);
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PrintAndLog("Unique TAG ID: %010llx", id2lo);
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PrintAndLog("DEZ 8 : %08lld",id & 0xFFFFFF);
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PrintAndLog("DEZ 10 : %010lld",id & 0xFFFFFF);
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PrintAndLog("DEZ 5.5 : %05lld.%05lld",(id>>16LL) & 0xFFFF,(id & 0xFFFF));
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PrintAndLog("DEZ 3.5A : %03lld.%05lld",(id>>32ll),(id & 0xFFFF));
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PrintAndLog("DEZ 14/IK2 : %014lld",id);
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PrintAndLog("DEZ 15/IK3 : %015lld",id2lo);
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PrintAndLog("Other : %05lld_%03lld_%08lld",(id&0xFFFF),((id>>16LL) & 0xFF),(id & 0xFFFFFF));
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if (hi){
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//output 88 bit em id
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PrintAndLog("EM TAG ID : %06x%016llx", hi, id);
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} else{
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//output 40 bit em id
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PrintAndLog("EM TAG ID : %010llx", id);
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PrintAndLog("Unique TAG ID: %010llx", id2lo);
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PrintAndLog("DEZ 8 : %08lld",id & 0xFFFFFF);
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PrintAndLog("DEZ 10 : %010lld",id & 0xFFFFFF);
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PrintAndLog("DEZ 5.5 : %05lld.%05lld",(id>>16LL) & 0xFFFF,(id & 0xFFFF));
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PrintAndLog("DEZ 3.5A : %03lld.%05lld",(id>>32ll),(id & 0xFFFF));
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PrintAndLog("DEZ 14/IK2 : %014lld",id);
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PrintAndLog("DEZ 15/IK3 : %015lld",id2lo);
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PrintAndLog("Other : %05lld_%03lld_%08lld",(id&0xFFFF),((id>>16LL) & 0xFF),(id & 0xFFFFFF));
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}
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}
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return;
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}
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@ -292,9 +297,6 @@ void printEM410x(uint64_t id)
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//prints binary found and saves in graphbuffer for further commands
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int CmdAskEM410xDemod(const char *Cmd)
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{
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int invert=0;
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int clk=0;
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int maxErr=100;
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char cmdp = param_getchar(Cmd, 0);
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if (strlen(Cmd) > 10 || cmdp == 'h' || cmdp == 'H') {
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PrintAndLog("Usage: data askem410xdemod [clock] <0|1> [maxError]");
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@ -307,50 +309,21 @@ int CmdAskEM410xDemod(const char *Cmd)
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PrintAndLog(" : data askem410xdemod 32 1 = demod an EM410x Tag ID from GraphBuffer using a clock of RF/32 and inverting data");
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PrintAndLog(" : data askem410xdemod 1 = demod an EM410x Tag ID from GraphBuffer while inverting data");
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PrintAndLog(" : data askem410xdemod 64 1 0 = demod an EM410x Tag ID from GraphBuffer using a clock of RF/64 and inverting data and allowing 0 demod errors");
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return 0;
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}
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int ans = ASKmanDemod(Cmd, FALSE, FALSE);
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if (!ans) return 0;
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uint8_t BitStream[MAX_GRAPH_TRACE_LEN]={0};
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sscanf(Cmd, "%i %i %i", &clk, &invert, &maxErr);
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if (invert != 0 && invert != 1) {
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PrintAndLog("Invalid argument: %s", Cmd);
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return 0;
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}
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size_t BitLen = getFromGraphBuf(BitStream);
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if (g_debugMode==1) PrintAndLog("DEBUG: Bitlen from grphbuff: %d",BitLen);
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if (BitLen==0) return 0;
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int errCnt=0;
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errCnt = askmandemod(BitStream, &BitLen, &clk, &invert, maxErr);
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if (errCnt<0||BitLen<16){ //if fatal error (or -1)
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if (g_debugMode==1) PrintAndLog("no data found %d, errors:%d, bitlen:%d, clock:%d",errCnt,invert,BitLen,clk);
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return 0;
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}
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PrintAndLog("\nUsing Clock: %d - Invert: %d - Bits Found: %d",clk,invert,BitLen);
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//output
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if (errCnt>0){
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PrintAndLog("# Errors during Demoding (shown as 77 in bit stream): %d",errCnt);
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}
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//PrintAndLog("ASK/Manchester decoded bitstream:");
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// Now output the bitstream to the scrollback by line of 16 bits
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setDemodBuf(BitStream,BitLen,0);
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//printDemodBuff();
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uint64_t lo =0;
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uint32_t hi =0;
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size_t idx=0;
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lo = Em410xDecode(BitStream, &BitLen, &idx);
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if (lo>0){
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//set GraphBuffer for clone or sim command
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setDemodBuf(BitStream, BitLen, idx);
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if (Em410xDecode(DemodBuffer,(size_t *) &DemodBufferLen, &idx, &hi, &lo)){
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if (g_debugMode){
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PrintAndLog("DEBUG: idx: %d, Len: %d, Printing Demod Buffer:", idx, BitLen);
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PrintAndLog("DEBUG: idx: %d, Len: %d, Printing Demod Buffer:", idx, DemodBufferLen);
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printDemodBuff();
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}
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PrintAndLog("EM410x pattern found: ");
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if (BitLen > 64) PrintAndLog("\nWarning! Length not what is expected - Length: %d bits\n",BitLen);
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printEM410x(lo);
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printEM410x(hi, lo);
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return 1;
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}
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return 0;
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@ -381,21 +354,21 @@ int ASKmanDemod(const char *Cmd, bool verbose, bool emSearch)
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if (g_debugMode==1) PrintAndLog("no data found %d, errors:%d, bitlen:%d, clock:%d",errCnt,invert,BitLen,clk);
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return 0;
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}
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if (verbose) PrintAndLog("\nUsing Clock: %d - Invert: %d - Bits Found: %d",clk,invert,BitLen);
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if (verbose || g_debugMode) PrintAndLog("\nUsing Clock: %d - Invert: %d - Bits Found: %d",clk,invert,BitLen);
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//output
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if (errCnt>0){
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if (verbose) PrintAndLog("# Errors during Demoding (shown as 77 in bit stream): %d",errCnt);
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if (verbose || g_debugMode) PrintAndLog("# Errors during Demoding (shown as 77 in bit stream): %d",errCnt);
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}
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if (verbose) PrintAndLog("ASK/Manchester decoded bitstream:");
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if (verbose || g_debugMode) PrintAndLog("ASK/Manchester decoded bitstream:");
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// Now output the bitstream to the scrollback by line of 16 bits
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setDemodBuf(BitStream,BitLen,0);
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if (verbose) printDemodBuff();
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if (verbose || g_debugMode) printDemodBuff();
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uint64_t lo =0;
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uint32_t hi =0;
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size_t idx=0;
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if (emSearch){
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lo = Em410xDecode(BitStream, &BitLen, &idx);
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if (lo>0){
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if (Em410xDecode(BitStream, &BitLen, &idx, &hi, &lo)){
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//set GraphBuffer for clone or sim command
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setDemodBuf(BitStream, BitLen, idx);
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if (g_debugMode){
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@ -403,7 +376,7 @@ int ASKmanDemod(const char *Cmd, bool verbose, bool emSearch)
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printDemodBuff();
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}
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if (verbose) PrintAndLog("EM410x pattern found: ");
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if (verbose) printEM410x(lo);
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if (verbose) printEM410x(hi, lo);
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return 1;
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}
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}
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@ -473,13 +446,13 @@ int Cmdmandecoderaw(const char *Cmd)
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printBitStream(BitStream, size);
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if (errCnt==0){
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uint64_t id = 0;
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uint32_t hi = 0;
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size_t idx=0;
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id = Em410xDecode(BitStream, &size, &idx);
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if (id>0){
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if (Em410xDecode(BitStream, &size, &idx, &hi, &id)){
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//need to adjust to set bitstream back to manchester encoded data
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//setDemodBuf(BitStream, size, idx);
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printEM410x(id);
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printEM410x(hi, id);
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}
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}
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return 1;
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@ -497,53 +470,52 @@ int Cmdmandecoderaw(const char *Cmd)
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// width waves vs small width waves to help the decode positioning) or askbiphdemod
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int CmdBiphaseDecodeRaw(const char *Cmd)
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{
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int i = 0;
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int errCnt=0;
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size_t size=0;
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int offset=0;
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int invert=0;
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int high=0, low=0;
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int offset=0, invert=0, maxErr=20, errCnt=0;
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char cmdp = param_getchar(Cmd, 0);
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if (strlen(Cmd) > 3 || cmdp == 'h' || cmdp == 'H') {
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PrintAndLog("Usage: data biphaserawdecode [offset] <invert>");
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PrintAndLog(" Converts 10 or 01 to 0 and 11 or 00 to 1");
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PrintAndLog("Usage: data biphaserawdecode [offset] [invert] [maxErr]");
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PrintAndLog(" Converts 10 or 01 to 1 and 11 or 00 to 0");
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PrintAndLog(" --must have binary sequence in demodbuffer (run data askrawdemod first)");
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PrintAndLog("");
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PrintAndLog(" [offset <0|1>], set to 0 not to adjust start position or to 1 to adjust decode start position");
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PrintAndLog(" [invert <0|1>], set to 1 to invert output");
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PrintAndLog(" [maxErr int], set max errors tolerated - default=20");
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PrintAndLog("");
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PrintAndLog(" sample: data biphaserawdecode = decode biphase bitstream from the demodbuffer");
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PrintAndLog(" sample: data biphaserawdecode 1 1 = decode biphase bitstream from the demodbuffer, set offset, and invert output");
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return 0;
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}
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sscanf(Cmd, "%i %i", &offset, &invert);
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if (DemodBufferLen==0) return 0;
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uint8_t BitStream[MAX_GRAPH_TRACE_LEN]={0};
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//get graphbuffer & high and low
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for (;i<DemodBufferLen;++i){
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if(DemodBuffer[i]>high)high=DemodBuffer[i];
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else if(DemodBuffer[i]<low)low=DemodBuffer[i];
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BitStream[i]=DemodBuffer[i];
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}
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if (high>1 || low <0){
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PrintAndLog("Error: please raw demod the wave first then decode");
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sscanf(Cmd, "%i %i %i", &offset, &invert, &maxErr);
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if (DemodBufferLen==0){
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PrintAndLog("DemodBuffer Empty - run 'data rawdemod ar' first");
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return 0;
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}
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size=i;
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uint8_t BitStream[MAX_GRAPH_TRACE_LEN]={0};
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memcpy(BitStream, DemodBuffer, DemodBufferLen);
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size = DemodBufferLen;
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errCnt=BiphaseRawDecode(BitStream, &size, offset, invert);
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if (errCnt>=20){
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if (errCnt<0){
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PrintAndLog("Error during decode:%d", errCnt);
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return 0;
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}
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if (errCnt>maxErr){
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PrintAndLog("Too many errors attempting to decode: %d",errCnt);
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return 0;
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}
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PrintAndLog("Biphase Decoded using offset: %d - # errors:%d - data:",offset,errCnt);
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if (errCnt>0){
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PrintAndLog("# Errors found during Demod (shown as 77 in bit stream): %d",errCnt);
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}
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PrintAndLog("Biphase Decoded using offset: %d - # invert:%d - data:",offset,invert);
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printBitStream(BitStream, size);
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PrintAndLog("\nif bitstream does not look right try offset=1");
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if (offset == 1) setDemodBuf(DemodBuffer,DemodBufferLen-1,1); //remove first bit from raw demod
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if (offset) setDemodBuf(DemodBuffer,DemodBufferLen-offset, offset); //remove first bit from raw demod
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return 1;
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}
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// set demod buffer back to raw after biphase demod
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void setBiphaseDemodBuf(uint8_t *BitStream, size_t size)
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void setBiphasetoRawDemodBuf(uint8_t *BitStream, size_t size)
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{
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uint8_t rawStream[512]={0x00};
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size_t i=0;
|
||||
|
@ -565,6 +537,7 @@ void setBiphaseDemodBuf(uint8_t *BitStream, size_t size)
|
|||
setDemodBuf(rawStream,i,0);
|
||||
return;
|
||||
}
|
||||
|
||||
//by marshmellow
|
||||
//takes 4 arguments - clock, invert, maxErr as integers and amplify as char
|
||||
//attempts to demodulate ask only
|
||||
|
@ -579,7 +552,7 @@ int ASKrawDemod(const char *Cmd, bool verbose)
|
|||
uint8_t BitStream[MAX_GRAPH_TRACE_LEN]={0};
|
||||
sscanf(Cmd, "%i %i %i %c", &clk, &invert, &maxErr, &);
|
||||
if (invert != 0 && invert != 1) {
|
||||
if (verbose) PrintAndLog("Invalid argument: %s", Cmd);
|
||||
if (verbose || g_debugMode) PrintAndLog("Invalid argument: %s", Cmd);
|
||||
return 0;
|
||||
}
|
||||
if (clk==1){
|
||||
|
@ -592,20 +565,20 @@ int ASKrawDemod(const char *Cmd, bool verbose)
|
|||
int errCnt=0;
|
||||
errCnt = askrawdemod(BitStream, &BitLen, &clk, &invert, maxErr, askAmp);
|
||||
if (errCnt==-1||BitLen<16){ //throw away static - allow 1 and -1 (in case of threshold command first)
|
||||
if (verbose) PrintAndLog("no data found");
|
||||
if (g_debugMode==1 && verbose) PrintAndLog("errCnt: %d, BitLen: %d, clk: %d, invert: %d", errCnt, BitLen, clk, invert);
|
||||
if (verbose || g_debugMode) PrintAndLog("no data found");
|
||||
if (g_debugMode) PrintAndLog("errCnt: %d, BitLen: %d, clk: %d, invert: %d", errCnt, BitLen, clk, invert);
|
||||
return 0;
|
||||
}
|
||||
if (verbose) PrintAndLog("Using Clock: %d - invert: %d - Bits Found: %d", clk, invert, BitLen);
|
||||
if (verbose || g_debugMode) PrintAndLog("Using Clock: %d - invert: %d - Bits Found: %d", clk, invert, BitLen);
|
||||
|
||||
//move BitStream back to DemodBuffer
|
||||
setDemodBuf(BitStream,BitLen,0);
|
||||
|
||||
//output
|
||||
if (errCnt>0 && verbose){
|
||||
if (errCnt>0 && (verbose || g_debugMode)){
|
||||
PrintAndLog("# Errors during Demoding (shown as 77 in bit stream): %d", errCnt);
|
||||
}
|
||||
if (verbose){
|
||||
if (verbose || g_debugMode){
|
||||
PrintAndLog("ASK demoded bitstream:");
|
||||
// Now output the bitstream to the scrollback by line of 16 bits
|
||||
printBitStream(BitStream,BitLen);
|
||||
|
@ -613,6 +586,71 @@ int ASKrawDemod(const char *Cmd, bool verbose)
|
|||
return 1;
|
||||
}
|
||||
|
||||
//by marshmellow
|
||||
// - ASK Demod then Biphase decode GraphBuffer samples
|
||||
int ASKbiphaseDemod(const char *Cmd, bool verbose)
|
||||
{
|
||||
//ask raw demod GraphBuffer first
|
||||
int offset=0, clk=0, invert=0, maxErr=0, ans=0;
|
||||
ans = sscanf(Cmd, "%i %i %i %i", &offset, &clk, &invert, &maxErr);
|
||||
if (ans>0)
|
||||
ans = ASKrawDemod(Cmd+2, FALSE);
|
||||
else
|
||||
ans = ASKrawDemod(Cmd, FALSE);
|
||||
if (!ans) {
|
||||
if (g_debugMode || verbose) PrintAndLog("Error AskrawDemod: %d", ans);
|
||||
return 0;
|
||||
}
|
||||
|
||||
//attempt to Biphase decode DemodBuffer
|
||||
size_t size = DemodBufferLen;
|
||||
uint8_t BitStream[MAX_DEMOD_BUF_LEN];
|
||||
memcpy(BitStream, DemodBuffer, DemodBufferLen);
|
||||
|
||||
int errCnt = BiphaseRawDecode(BitStream, &size, offset, invert);
|
||||
if (errCnt < 0){
|
||||
if (g_debugMode || verbose) PrintAndLog("Error BiphaseRawDecode: %d", errCnt);
|
||||
return 0;
|
||||
}
|
||||
if (errCnt > maxErr) {
|
||||
if (g_debugMode || verbose) PrintAndLog("Error BiphaseRawDecode too many errors: %d", errCnt);
|
||||
return 0;
|
||||
}
|
||||
//success set DemodBuffer and return
|
||||
setDemodBuf(BitStream, size, 0);
|
||||
if (g_debugMode || verbose){
|
||||
PrintAndLog("Biphase Decoded using offset: %d - # errors:%d - data:",offset,errCnt);
|
||||
printDemodBuff();
|
||||
}
|
||||
return 1;
|
||||
}
|
||||
//by marshmellow - see ASKbiphaseDemod
|
||||
int Cmdaskbiphdemod(const char *Cmd)
|
||||
{
|
||||
char cmdp = param_getchar(Cmd, 0);
|
||||
if (strlen(Cmd) > 12 || cmdp == 'h' || cmdp == 'H') {
|
||||
PrintAndLog("Usage: data rawdemod ab [offset] [clock] <invert> [maxError] <amplify>");
|
||||
PrintAndLog(" [offset], offset to begin biphase, default=0");
|
||||
PrintAndLog(" [set clock as integer] optional, if not set, autodetect");
|
||||
PrintAndLog(" <invert>, 1 to invert output");
|
||||
PrintAndLog(" [set maximum allowed errors], default = 100");
|
||||
PrintAndLog(" <amplify>, 'a' to attempt demod with ask amplification, default = no amp");
|
||||
PrintAndLog(" NOTE: <invert> can be entered as second or third argument");
|
||||
PrintAndLog(" NOTE: <amplify> can be entered as first, second or last argument");
|
||||
PrintAndLog(" NOTE: any other arg must have previous args set to work");
|
||||
PrintAndLog("");
|
||||
PrintAndLog(" sample: data rawdemod ab = demod an ask/biph tag from GraphBuffer");
|
||||
PrintAndLog(" : data rawdemod ab a = demod an ask/biph tag from GraphBuffer, amplified");
|
||||
PrintAndLog(" : data rawdemod ab 1 32 = demod an ask/biph tag from GraphBuffer using an offset of 1 and a clock of RF/32");
|
||||
PrintAndLog(" : data rawdemod ab 0 32 1 = demod an ask/biph tag from GraphBuffer using a clock of RF/32 and inverting data");
|
||||
PrintAndLog(" : data rawdemod ab 0 1 = demod an ask/biph tag from GraphBuffer while inverting data");
|
||||
PrintAndLog(" : data rawdemod ab 0 64 1 0 = demod an ask/biph tag from GraphBuffer using a clock of RF/64, inverting data and allowing 0 demod errors");
|
||||
PrintAndLog(" : data rawdemod ab 0 64 1 0 a = demod an ask/biph tag from GraphBuffer using a clock of RF/64, inverting data and allowing 0 demod errors, and amp");
|
||||
return 0;
|
||||
}
|
||||
return ASKbiphaseDemod(Cmd, TRUE);
|
||||
}
|
||||
|
||||
//by marshmellow
|
||||
//attempts to demodulate and identify a G_Prox_II verex/chubb card
|
||||
//WARNING: if it fails during some points it will destroy the DemodBuffer data
|
||||
|
@ -620,32 +658,16 @@ int ASKrawDemod(const char *Cmd, bool verbose)
|
|||
//if successful it will push askraw data back to demod buffer ready for emulation
|
||||
int CmdG_Prox_II_Demod(const char *Cmd)
|
||||
{
|
||||
int ans = ASKrawDemod(Cmd, FALSE);
|
||||
if (ans <= 0) {
|
||||
if (g_debugMode) PrintAndLog("Error AskrawDemod: %d",ans);
|
||||
return 0; //ans;
|
||||
if (!ASKbiphaseDemod(Cmd, FALSE)){
|
||||
if (g_debugMode) PrintAndLog("ASKbiphaseDemod failed 1st try");
|
||||
return 0;
|
||||
}
|
||||
size_t size = DemodBufferLen;
|
||||
ans = BiphaseRawDecode(DemodBuffer, &size, 0, 0);
|
||||
if (ans !=0) {
|
||||
if (g_debugMode) PrintAndLog("Error BiphaseRawDecode: %d",ans);
|
||||
return 0; //ans;
|
||||
}
|
||||
//call lfdemod.c demod for gProxII
|
||||
ans = gProxII_Demod(DemodBuffer, &size);
|
||||
int ans = gProxII_Demod(DemodBuffer, &size);
|
||||
if (ans < 0){
|
||||
if (g_debugMode) PrintAndLog("Error gProxII_Demod 1st Try: %d",ans);
|
||||
//try biphase again
|
||||
ans = BiphaseRawDecode(DemodBuffer, &size, 1, 0);
|
||||
if (ans != 0) {
|
||||
if (g_debugMode) PrintAndLog("Error BiphaseRawDecode: %d",ans);
|
||||
return 0;//ans;
|
||||
}
|
||||
ans = gProxII_Demod(DemodBuffer, &size);
|
||||
if (ans < 0) {
|
||||
if (g_debugMode) PrintAndLog("Error gProxII_Demod 1st Try: %d",ans);
|
||||
return ans;
|
||||
}
|
||||
if (g_debugMode) PrintAndLog("Error gProxII_Demod");
|
||||
return 0;
|
||||
}
|
||||
//got a good demod
|
||||
uint32_t ByteStream[65] = {0x00};
|
||||
|
@ -659,7 +681,7 @@ int CmdG_Prox_II_Demod(const char *Cmd)
|
|||
//spacer bit - should be 0
|
||||
if (DemodBuffer[startIdx+idx] != 0) {
|
||||
if (g_debugMode) PrintAndLog("Error spacer not 0: %d, pos: %d",DemodBuffer[startIdx+idx],startIdx+idx);
|
||||
return -1;
|
||||
return 0;
|
||||
}
|
||||
continue;
|
||||
}
|
||||
|
@ -703,7 +725,7 @@ int CmdG_Prox_II_Demod(const char *Cmd)
|
|||
PrintAndLog("Unknown G-Prox-II Fmt Found: FmtLen %d",fmtLen);
|
||||
}
|
||||
PrintAndLog("Raw: %08x%08x%08x", raw1,raw2,raw3);
|
||||
setBiphaseDemodBuf(DemodBuffer+ans, 96);
|
||||
setDemodBuf(DemodBuffer+ans, 96, 0);
|
||||
return 1;
|
||||
}
|
||||
|
||||
|
@ -1950,12 +1972,14 @@ int CmdRawDemod(const char *Cmd)
|
|||
|
||||
if (strlen(Cmd) > 14 || cmdp == 'h' || cmdp == 'H' || strlen(Cmd)<2) {
|
||||
PrintAndLog("Usage: data rawdemod [modulation] <help>|<options>");
|
||||
PrintAndLog(" [modulation] as 2 char, 'am' for ask/manchester, 'ar' for ask/raw, 'fs' for fsk, 'nr' for nrz/direct, 'p1' for psk1, 'p2' for psk2");
|
||||
PrintAndLog(" [modulation] as 2 char, 'ab' for ask/biphase, 'am' for ask/manchester, 'ar' for ask/raw, 'fs' for fsk, ...");
|
||||
PrintAndLog(" 'nr' for nrz/direct, 'p1' for psk1, 'p2' for psk2");
|
||||
PrintAndLog(" <help> as 'h', prints the help for the specific modulation");
|
||||
PrintAndLog(" <options> see specific modulation help for optional parameters");
|
||||
PrintAndLog("");
|
||||
PrintAndLog(" sample: data rawdemod fs h = print help for ask/raw demod");
|
||||
PrintAndLog(" : data rawdemod fs = demod GraphBuffer using: fsk - autodetect");
|
||||
PrintAndLog(" : data rawdemod ab = demod GraphBuffer using: ask/biphase - autodetect");
|
||||
PrintAndLog(" : data rawdemod am = demod GraphBuffer using: ask/manchester - autodetect");
|
||||
PrintAndLog(" : data rawdemod ar = demod GraphBuffer using: ask/raw - autodetect");
|
||||
PrintAndLog(" : data rawdemod nr = demod GraphBuffer using: nrz/direct - autodetect");
|
||||
|
@ -1967,6 +1991,8 @@ int CmdRawDemod(const char *Cmd)
|
|||
int ans = 0;
|
||||
if (cmdp == 'f' && cmdp2 == 's'){
|
||||
ans = CmdFSKrawdemod(Cmd+3);
|
||||
} else if(cmdp == 'a' && cmdp2 == 'b'){
|
||||
ans = Cmdaskbiphdemod(Cmd+3);
|
||||
} else if(cmdp == 'a' && cmdp2 == 'm'){
|
||||
ans = Cmdaskmandemod(Cmd+3);
|
||||
} else if(cmdp == 'a' && cmdp2 == 'r'){
|
||||
|
|
|
@ -63,6 +63,7 @@ int CmdThreshold(const char *Cmd);
|
|||
int CmdDirectionalThreshold(const char *Cmd);
|
||||
int CmdZerocrossings(const char *Cmd);
|
||||
int CmdIndalaDecode(const char *Cmd);
|
||||
int ASKbiphaseDemod(const char *Cmd, bool verbose);
|
||||
int ASKmanDemod(const char *Cmd, bool verbose, bool emSearch);
|
||||
int ASKrawDemod(const char *Cmd, bool verbose);
|
||||
int FSKrawDemod(const char *Cmd, bool verbose);
|
||||
|
|
|
@ -570,12 +570,13 @@ int usage_lf_simfsk(void)
|
|||
int usage_lf_simask(void)
|
||||
{
|
||||
//print help
|
||||
PrintAndLog("Usage: lf simask [c <clock>] [i] [m|r] [s] [d <raw hex to sim>]");
|
||||
PrintAndLog("Usage: lf simask [c <clock>] [i] [b|m|r] [s] [d <raw hex to sim>]");
|
||||
PrintAndLog("Options: ");
|
||||
PrintAndLog(" h This help");
|
||||
PrintAndLog(" c <clock> Manually set clock - can autodetect if using DemodBuffer");
|
||||
PrintAndLog(" i invert data");
|
||||
PrintAndLog(" m sim ask/manchester");
|
||||
PrintAndLog(" b sim ask/biphase");
|
||||
PrintAndLog(" m sim ask/manchester - Default");
|
||||
PrintAndLog(" r sim ask/raw");
|
||||
PrintAndLog(" s TBD- -to enable a gap between playback repetitions - default: no gap");
|
||||
PrintAndLog(" d <hexdata> Data to sim as hex - omit to sim from DemodBuffer");
|
||||
|
@ -703,7 +704,7 @@ int CmdLFaskSim(const char *Cmd)
|
|||
{
|
||||
//autodetect clock from Graphbuffer if using demod buffer
|
||||
//will need clock, invert, manchester/raw as m or r, separator as s, and bitstream
|
||||
uint8_t manchester = 1, separator = 0;
|
||||
uint8_t encoding = 1, separator = 0;
|
||||
//char cmdp = Cmd[0], par3='m', par4=0;
|
||||
uint8_t clk=0, invert=0;
|
||||
bool errors = FALSE;
|
||||
|
@ -725,12 +726,16 @@ int CmdLFaskSim(const char *Cmd)
|
|||
errors |= param_getdec(Cmd,cmdp+1,&clk);
|
||||
cmdp+=2;
|
||||
break;
|
||||
case 'b':
|
||||
encoding=2; //biphase
|
||||
cmdp++;
|
||||
break;
|
||||
case 'm':
|
||||
manchester=1;
|
||||
encoding=1;
|
||||
cmdp++;
|
||||
break;
|
||||
case 'r':
|
||||
manchester=0;
|
||||
encoding=0;
|
||||
cmdp++;
|
||||
break;
|
||||
case 's':
|
||||
|
@ -771,10 +776,10 @@ int CmdLFaskSim(const char *Cmd)
|
|||
setDemodBuf(data, dataLen, 0);
|
||||
}
|
||||
if (clk == 0) clk = 64;
|
||||
if (manchester == 0) clk = clk/2; //askraw needs to double the clock speed
|
||||
if (encoding == 0) clk = clk/2; //askraw needs to double the clock speed
|
||||
uint16_t arg1, arg2;
|
||||
size_t size=DemodBufferLen;
|
||||
arg1 = clk << 8 | manchester;
|
||||
arg1 = clk << 8 | encoding;
|
||||
arg2 = invert << 8 | separator;
|
||||
if (size > USB_CMD_DATA_SIZE) {
|
||||
PrintAndLog("DemodBuffer too long for current implementation - length: %d - max: %d", size, USB_CMD_DATA_SIZE);
|
||||
|
@ -1082,24 +1087,28 @@ int CmdLFfind(const char *Cmd)
|
|||
PrintAndLog("\nChecking for Unknown tags:\n");
|
||||
ans=AutoCorrelate(4000, FALSE, FALSE);
|
||||
if (ans > 0) PrintAndLog("Possible Auto Correlation of %d repeating samples",ans);
|
||||
ans=CmdDetectClockRate("F"); //GetFSKClock("",TRUE,FALSE);
|
||||
ans=GetFskClock("",FALSE,FALSE); //CmdDetectClockRate("F"); //
|
||||
if (ans != 0){ //fsk
|
||||
ans=CmdFSKrawdemod("");
|
||||
ans=FSKrawDemod("",FALSE);
|
||||
if (ans>0) {
|
||||
PrintAndLog("\nUnknown FSK Modulated Tag Found!");
|
||||
printDemodBuff();
|
||||
return 1;
|
||||
}
|
||||
}
|
||||
ans=Cmdaskmandemod("");
|
||||
ans=ASKmanDemod("",FALSE,FALSE);
|
||||
if (ans>0) {
|
||||
PrintAndLog("\nUnknown ASK Modulated and Manchester encoded Tag Found!");
|
||||
PrintAndLog("\nif it does not look right it could instead be ASK/Biphase - try 'data rawdemod ab'");
|
||||
printDemodBuff();
|
||||
return 1;
|
||||
}
|
||||
ans=CmdPSK1rawDemod("");
|
||||
if (ans>0) {
|
||||
PrintAndLog("Possible unknown PSK1 Modulated Tag Found above!\n\nCould also be PSK2 - try 'data psk2rawdemod'");
|
||||
PrintAndLog("Possible unknown PSK1 Modulated Tag Found above!\n\nCould also be PSK2 - try 'data rawdemod p2'");
|
||||
PrintAndLog("\nCould also be PSK3 - [currently not supported]");
|
||||
PrintAndLog("\nCould also be NRZ - try 'data nrzrawdemod");
|
||||
printDemodBuff();
|
||||
return 1;
|
||||
}
|
||||
PrintAndLog("\nNo Data Found!\n");
|
||||
|
|
Loading…
Reference in a new issue