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https://github.com/Proxmark/proxmark3.git
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Add basic LEGIC RF communication in tag simulation mode
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parent
bb4d2cca76
commit
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6 changed files with 200 additions and 1 deletions
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@ -19,6 +19,7 @@ THUMBSRC = start.c \
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lfops.c \
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util.c \
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hitag2.c \
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legicrf.c \
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usb.c
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# These are to be compiled in ARM mode
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@ -8,6 +8,7 @@
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#include <proxmark3.h>
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#include <stdlib.h>
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#include "apps.h"
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#include "legicrf.h"
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#ifdef WITH_LCD
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#include "fonts.h"
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#include "LCD.h"
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@ -583,11 +584,15 @@ void UsbPacketReceived(BYTE *packet, int len)
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case CMD_SIMULATE_TAG_ISO_14443:
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SimulateIso14443Tag();
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break;
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case CMD_SIMULATE_TAG_ISO_14443a:
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SimulateIso14443aTag(c->ext1, c->ext2); // ## Simulate iso14443a tag - pass tag type & UID
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break;
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case CMD_SIMULATE_TAG_LEGIC_RF:
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LegicRfSimulate();
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break;
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case CMD_MEASURE_ANTENNA_TUNING:
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MeasureAntennaTuning();
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break;
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172
armsrc/legicrf.c
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172
armsrc/legicrf.c
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@ -0,0 +1,172 @@
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/*
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* LEGIC RF simulation code
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*
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* (c) 2009 Henryk Plötz <henryk@ploetzli.ch>
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*/
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#include <proxmark3.h>
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#include "apps.h"
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#include "legicrf.h"
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static struct legic_frame {
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int num_bytes;
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int num_bits;
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char data[10];
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} current_frame;
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static char response = 0x2b; /* 1101 01 */
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static void frame_send(char *response, int num_bytes, int num_bits)
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{
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#if 0
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/* Use the SSC to send a response. 8-bit transfers, LSBit first, 100us per bit */
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#else
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/* Bitbang the response */
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AT91C_BASE_PIOA->PIO_CODR = GPIO_SSC_DOUT;
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AT91C_BASE_PIOA->PIO_OER = GPIO_SSC_DOUT;
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AT91C_BASE_PIOA->PIO_PER = GPIO_SSC_DOUT;
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/* Wait for the frame start */
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while(AT91C_BASE_TC1->TC_CV < 490) ;
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int i;
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for(i=0; i<(num_bytes*8+num_bits); i++) {
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int nextbit = AT91C_BASE_TC1->TC_CV + 150;
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int bit = response[i/8] & (1<<(i%8));
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if(bit)
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AT91C_BASE_PIOA->PIO_SODR = GPIO_SSC_DOUT;
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else
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AT91C_BASE_PIOA->PIO_CODR = GPIO_SSC_DOUT;
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while(AT91C_BASE_TC1->TC_CV < nextbit) ;
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}
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AT91C_BASE_PIOA->PIO_CODR = GPIO_SSC_DOUT;
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#endif
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}
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static void frame_respond(struct legic_frame *f)
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{
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LED_D_ON();
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if(f->num_bytes == 0 && f->num_bits == 7) {
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/* This seems to be the initial dialogue, just send 6 bits of static data */
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frame_send(&response, 0, 6);
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}
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LED_D_OFF();
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}
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static void frame_append_bit(struct legic_frame *f, int bit)
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{
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if(f->num_bytes >= (int)sizeof(f->data))
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return; /* Overflow, won't happen */
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f->data[f->num_bytes] |= (bit<<f->num_bits);
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f->num_bits++;
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if(f->num_bits > 7) {
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f->num_bits = 0;
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f->num_bytes++;
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}
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}
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static int frame_is_empty(struct legic_frame *f)
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{
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return( (f->num_bytes + f->num_bits) <= 4 );
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}
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static void frame_handle(struct legic_frame *f)
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{
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if( !frame_is_empty(f) ) {
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frame_respond(f);
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}
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}
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static void frame_clean(struct legic_frame *f)
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{
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if(!frame_is_empty(f))
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memset(f->data, 0, sizeof(f->data));
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f->num_bits = 0;
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f->num_bytes = 0;
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}
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static void emit(int bit)
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{
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if(bit == -1) {
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frame_handle(¤t_frame);
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frame_clean(¤t_frame);
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} else if(bit == 0) {
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frame_append_bit(¤t_frame, 0);
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} else if(bit == 1) {
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frame_append_bit(¤t_frame, 1);
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}
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}
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void LegicRfSimulate(void)
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{
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/* ADC path high-frequency peak detector, FPGA in high-frequency simulator mode,
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* modulation mode set to 212kHz subcarrier. We are getting the incoming raw
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* envelope waveform on DIN and should send our response on DOUT.
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*
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* The LEGIC RF protocol is pulse-pause-encoding from reader to card, so we'll
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* measure the time between two rising edges on DIN, and no encoding on the
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* subcarrier from card to reader, so we'll just shift out our verbatim data
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* on DOUT, 1 bit is 100us. The time from reader to card frame is still unclear,
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* seems to be 300us-ish.
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*/
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SetAdcMuxFor(GPIO_MUXSEL_HIPKD);
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FpgaSetupSsc();
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FpgaWriteConfWord(FPGA_MAJOR_MODE_HF_SIMULATOR | FPGA_HF_SIMULATOR_MODULATE_212K);
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/* Bitbang the receiver */
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AT91C_BASE_PIOA->PIO_ODR = GPIO_SSC_DIN;
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AT91C_BASE_PIOA->PIO_PER = GPIO_SSC_DIN;
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/* Set up Timer 1 to use for measuring time between pulses. Since we're bit-banging
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* this it won't be terribly accurate but should be good enough.
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*/
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AT91C_BASE_PMC->PMC_PCER = (1 << AT91C_ID_TC1);
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AT91C_BASE_TC1->TC_CCR = AT91C_TC_CLKDIS;
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AT91C_BASE_TC1->TC_CMR = TC_CMR_TCCLKS_TIMER_CLOCK3;
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AT91C_BASE_TC1->TC_CCR = AT91C_TC_CLKEN | AT91C_TC_SWTRG;
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int old_level = 0;
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/* At TIMER_CLOCK3 (MCK/32) */
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#define BIT_TIME_1 150
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#define BIT_TIME_0 90
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#define BIT_TIME_FUZZ 20
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int active = 0;
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while(!BUTTON_PRESS()) {
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int level = !!(AT91C_BASE_PIOA->PIO_PDSR & GPIO_SSC_DIN);
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int time = AT91C_BASE_TC1->TC_CV;
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if(level != old_level) {
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if(level == 1) {
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AT91C_BASE_TC1->TC_CCR = AT91C_TC_CLKEN | AT91C_TC_SWTRG;
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if(time > (BIT_TIME_1-BIT_TIME_FUZZ) && time < (BIT_TIME_1+BIT_TIME_FUZZ)) {
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/* 1 bit */
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emit(1);
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active = 1;
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} else if(time > (BIT_TIME_0-BIT_TIME_FUZZ) && time < (BIT_TIME_0+BIT_TIME_FUZZ)) {
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/* 0 bit */
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emit(0);
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active = 0;
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} else {
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/* invalid */
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emit(-1);
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active = 0;
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}
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}
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}
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if(time >= (BIT_TIME_1+2*BIT_TIME_FUZZ) && active) {
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/* Frame end */
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emit(-1);
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active = 0;
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}
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if(time >= (20*BIT_TIME_1) && (AT91C_BASE_TC1->TC_SR & AT91C_TC_CLKSTA)) {
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AT91C_BASE_TC1->TC_CCR = AT91C_TC_CLKDIS;
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}
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old_level = level;
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WDT_HIT();
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}
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}
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12
armsrc/legicrf.h
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12
armsrc/legicrf.h
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/*
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* LEGIC RF emulation public interface
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*
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* (c) 2009 Henryk Plötz <henryk@ploetzli.ch>
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*/
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#ifndef LEGICRF_H_
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#define LEGICRF_H_
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extern void LegicRfSimulate(void);
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#endif /* LEGICRF_H_ */
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@ -69,6 +69,7 @@ typedef struct {
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#define CMD_SIMULATE_TAG_ISO_14443a 0x0384
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#define CMD_READER_ISO_14443a 0x0385
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#define CMD_SIMULATE_MIFARE_CARD 0x0386
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#define CMD_SIMULATE_TAG_LEGIC_RF 0x387
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// For measurements of the antenna tuning
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#define CMD_MEASURE_ANTENNA_TUNING 0x0400
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@ -207,6 +207,13 @@ static void CmdHi14asnoop(char *str)
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SendCommand(&c, FALSE);
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}
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static void CmdLegicRfSim(char *str)
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{
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UsbCommand c;
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c.cmd = CMD_SIMULATE_TAG_LEGIC_RF;
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SendCommand(&c, FALSE);
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}
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static void CmdFPGAOff(char *str) // ## FPGA Control
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{
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UsbCommand c;
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{"indalademod", CmdIndalademod, 0, "['224'] -- Demodulate samples for Indala 64 bit UID (option '224' for 224 bit)"},
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{"lcd", CmdLcd, 0, "<HEX command> <count> -- Send command/data to LCD"},
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{"lcdreset", CmdLcdReset, 0, "Hardware reset LCD"},
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{"legicrfsim", CmdLegicRfSim, 0, "Start the LEGIC RF tag simulator"},
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{"load", CmdLoad, 1, "<filename> -- Load trace (to graph window"},
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{"locomread", CmdLoCommandRead, 0, "<off period> <'0' period> <'1' period> <command> ['h'] -- Modulate LF reader field to send command before read (all periods in microseconds) (option 'h' for 134)"},
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{"loread", CmdLoread, 0, "['h'] -- Read 125/134 kHz LF ID-only tag (option 'h' for 134)"},
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