mirror of
https://github.com/RfidResearchGroup/proxmark3.git
synced 2024-11-11 01:55:38 +08:00
208 lines
5.1 KiB
C
208 lines
5.1 KiB
C
//-----------------------------------------------------------------------------
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// Copyright (C) 2009 Michael Gernoth <michael at gernoth.net>
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// Copyright (C) 2010 iZsh <izsh at fail0verflow.com>
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//
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// This code is licensed to you under the terms of the GNU GPL, version 2 or,
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// at your option, any later version. See the LICENSE.txt file for the text of
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// the license.
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//-----------------------------------------------------------------------------
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// UI utilities
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//-----------------------------------------------------------------------------
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#include <stdarg.h>
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#include <stdlib.h>
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#include <stdio.h>
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#include <stdbool.h>
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#include <time.h>
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#include <readline/readline.h>
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#include <pthread.h>
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#include "loclass/cipherutils.h"
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#include "ui.h"
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#include "cmdmain.h"
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#include "cmddata.h"
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#include "graph.h"
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#define M_PI 3.14159265358979323846264338327
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double CursorScaleFactor;
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int PlotGridX, PlotGridY, PlotGridXdefault= 64, PlotGridYdefault= 64;
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int offline;
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int flushAfterWrite = 0;
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extern pthread_mutex_t print_lock;
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static char *logfilename = "proxmark3.log";
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void PrintAndLog(char *fmt, ...)
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{
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char *saved_line;
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int saved_point;
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va_list argptr, argptr2;
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static FILE *logfile = NULL;
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static int logging = 1;
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// lock this section to avoid interlacing prints from different threats
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pthread_mutex_lock(&print_lock);
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if (logging && !logfile) {
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logfile = fopen(logfilename, "a");
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if (!logfile) {
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fprintf(stderr, "Can't open logfile, logging disabled!\n");
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logging=0;
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}
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}
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int need_hack = (rl_readline_state & RL_STATE_READCMD) > 0;
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if (need_hack) {
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saved_point = rl_point;
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saved_line = rl_copy_text(0, rl_end);
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rl_save_prompt();
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rl_replace_line("", 0);
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rl_redisplay();
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}
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va_start(argptr, fmt);
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va_copy(argptr2, argptr);
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vprintf(fmt, argptr);
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printf(" "); // cleaning prompt
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va_end(argptr);
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printf("\n");
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if (need_hack) {
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rl_restore_prompt();
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rl_replace_line(saved_line, 0);
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rl_point = saved_point;
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rl_redisplay();
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free(saved_line);
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}
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if (logging && logfile) {
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vfprintf(logfile, fmt, argptr2);
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fprintf(logfile,"\n");
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fflush(logfile);
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}
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va_end(argptr2);
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if (flushAfterWrite == 1) {
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fflush(NULL);
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}
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//release lock
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pthread_mutex_unlock(&print_lock);
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}
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void SetLogFilename(char *fn) {
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logfilename = fn;
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}
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void iceFsk3(int * data, const size_t len){
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int i,j;
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int * output = (int* ) malloc(sizeof(int) * len);
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memset(output, 0x00, len);
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float fc = 0.1125f; // center frequency
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size_t adjustedLen = len;
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// create very simple low-pass filter to remove images (2nd-order Butterworth)
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float complex iir_buf[3] = {0,0,0};
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float b[3] = {0.003621681514929, 0.007243363029857, 0.003621681514929};
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float a[3] = {1.000000000000000, -1.822694925196308, 0.837181651256023};
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float sample = 0; // input sample read from file
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float complex x_prime = 1.0f; // save sample for estimating frequency
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float complex x;
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for (i=0; i<adjustedLen; ++i) {
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sample = data[i]+128;
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// remove DC offset and mix to complex baseband
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x = (sample - 127.5f) * cexpf( _Complex_I * 2 * M_PI * fc * i );
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// apply low-pass filter, removing spectral image (IIR using direct-form II)
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iir_buf[2] = iir_buf[1];
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iir_buf[1] = iir_buf[0];
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iir_buf[0] = x - a[1]*iir_buf[1] - a[2]*iir_buf[2];
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x = b[0]*iir_buf[0] +
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b[1]*iir_buf[1] +
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b[2]*iir_buf[2];
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// compute instantaneous frequency by looking at phase difference
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// between adjacent samples
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float freq = cargf(x*conjf(x_prime));
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x_prime = x; // retain this sample for next iteration
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output[i] =(freq > 0)? 10 : -10;
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}
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// show data
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for (j=0; j<adjustedLen; ++j)
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data[j] = output[j];
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CmdLtrim("30");
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adjustedLen -= 30;
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// zero crossings.
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for (j=0; j<adjustedLen; ++j){
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if ( data[j] == 10) break;
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}
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int startOne =j;
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for (;j<adjustedLen; ++j){
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if ( data[j] == -10 ) break;
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}
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int stopOne = j-1;
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int fieldlen = stopOne-startOne;
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fieldlen = (fieldlen == 39 || fieldlen == 41)? 40 : fieldlen;
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fieldlen = (fieldlen == 59 || fieldlen == 51)? 50 : fieldlen;
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if ( fieldlen != 40 && fieldlen != 50){
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printf("Detected field Length: %d \n", fieldlen);
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printf("Can only handle 40 or 50. Aborting...\n");
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free(output);
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return;
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}
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// FSK sequence start == 000111
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int startPos = 0;
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for (i =0; i<adjustedLen; ++i){
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int dec = 0;
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for ( j = 0; j < 6*fieldlen; ++j){
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dec += data[i + j];
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}
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if (dec == 0) {
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startPos = i;
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break;
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}
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}
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printf("000111 position: %d \n", startPos);
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startPos += 6*fieldlen+5;
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int bit =0;
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printf("BINARY\n");
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printf("R/40 : ");
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for (i =startPos ; i < adjustedLen; i += 40){
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bit = data[i]>0 ? 1:0;
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printf("%d", bit );
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}
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printf("\n");
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printf("R/50 : ");
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for (i =startPos ; i < adjustedLen; i += 50){
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bit = data[i]>0 ? 1:0;
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printf("%d", bit ); }
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printf("\n");
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free(output);
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}
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float complex cexpf (float complex Z)
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{
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float complex Res;
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double rho = exp (__real__ Z);
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__real__ Res = rho * cosf(__imag__ Z);
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__imag__ Res = rho * sinf(__imag__ Z);
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return Res;
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}
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