static int Handle14443UartBit(int bit)
{
switch(Uart.state) {
- case STATE_UNSYNCD:
+ case STATE_UNSYNCD:
LED_A_OFF();
if(!bit) {
// we went low, so this could be the beginning
clear_trace();
set_tracing(TRUE);
- // The command (reader -> tag) that we're receiving.
- uint8_t *receivedCmd = ((uint8_t *)BigBuf) + RECV_CMD_OFFSET;
-
- // The response (tag -> reader) that we're receiving.
- uint8_t *receivedResponse = ((uint8_t *)BigBuf) + RECV_RESP_OFFSET;
-
// The DMA buffer, used to stream samples from the FPGA.
int8_t *dmaBuf = ((int8_t *)BigBuf) + DMA_BUFFER_OFFSET;
int lastRxCounter;
if(Handle14443UartBit(ci & 1)) {
if(triggered && tracing) {
- GetParity(receivedCmd, Uart.byteCnt, parity);
- LogTrace(receivedCmd,Uart.byteCnt,samples, samples,parity,TRUE);
+ GetParity(Uart.output, Uart.byteCnt, parity);
+ LogTrace(Uart.output,Uart.byteCnt,samples, samples,parity,TRUE);
}
/* And ready to receive another command. */
UartReset();
}
if(Handle14443UartBit(cq & 1)) {
if(triggered && tracing) {
- GetParity(receivedCmd, Uart.byteCnt, parity);
- LogTrace(receivedCmd,Uart.byteCnt,samples, samples,parity,TRUE);
+ GetParity(Uart.output, Uart.byteCnt, parity);
+ LogTrace(Uart.output,Uart.byteCnt,samples, samples,parity,TRUE);
}
/* And ready to receive another command. */
UartReset();
if(tracing)
{
uint8_t parity[MAX_PARITY_SIZE];
- GetParity(receivedResponse, Demod.len, parity);
- LogTrace(receivedResponse,Demod.len,samples, samples,parity,FALSE);
+ GetParity(Demod.output, Demod.len, parity);
+ LogTrace(Demod.output,Demod.len,samples, samples,parity,FALSE);
}
triggered = TRUE;
LED_A_OFF();