mirror of
https://github.com/Proxmark/proxmark3.git
synced 2024-11-21 04:50:14 -08:00
ad939de501
* make uart_communication(), storeCommand() and getCommand() static in comms.c * move receiver thread creation and respective mutexes to comms.c * add mutex and signal for tx buffer * use comms.c for flasher as well * remove comm functions from client/proxmark3.h * this completes isolating all USB communication related functions in comms.c * don't assume a port to be defined by a name. Change parameter in OpenProxmark() to void* * comms.c: set sp and serial_port_name to NULL when offline
312 lines
11 KiB
C
312 lines
11 KiB
C
//-----------------------------------------------------------------------------
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// Authored by Craig Young <cyoung@tripwire.com> based on cmdlfhid.c structure
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//
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// cmdlfhid.c is 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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// Low frequency AWID26 commands
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// FSK2a, RF/50, 96 bits (complete)
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//-----------------------------------------------------------------------------
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#include "cmdlfawid.h"
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#include <string.h>
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#include <stdio.h> // sscanf
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#include "comms.h" // Definitions, USB controls, etc
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#include "ui.h" // PrintAndLog
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#include "cmdparser.h" // CmdsParse, CmdsHelp
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#include "lfdemod.h" // parityTest +
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#include "util.h" // weigandparity
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#include "protocols.h" // for T55xx config register definitions
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#include "cmddata.h" // for printDemod and demodbuffer commands
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#include "graph.h" // for getFromGraphBuff cmds
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#include "cmdmain.h"
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static int CmdHelp(const char *Cmd);
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int usage_lf_awid_read(void) {
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PrintAndLog("Enables AWID26 compatible reader mode printing details of scanned AWID26 tags.");
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PrintAndLog("By default, values are printed and logged until the button is pressed or another USB command is issued.");
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PrintAndLog("If the ['1'] option is provided, reader mode is exited after reading a single AWID26 card.");
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PrintAndLog("");
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PrintAndLog("Usage: lf awid read ['1']");
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PrintAndLog("Options : ");
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PrintAndLog(" 1 : (optional) stop after reading a single card");
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PrintAndLog("");
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PrintAndLog("Samples : lf awid read");
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PrintAndLog(" : lf awid read 1");
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return 0;
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}
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int usage_lf_awid_sim(void) {
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PrintAndLog("Enables simulation of AWID26 card with specified facility-code and card number.");
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PrintAndLog("Simulation runs until the button is pressed or another USB command is issued.");
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PrintAndLog("Per AWID26 format, the facility-code is 8-bit and the card number is 16-bit. Larger values are truncated.");
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PrintAndLog("");
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PrintAndLog("Usage: lf awid sim <Facility-Code> <Card-Number>");
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PrintAndLog("Options : ");
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PrintAndLog(" <Facility-Code> : 8-bit value representing the AWID facility code");
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PrintAndLog(" <Card Number> : 16-bit value representing the AWID card number");
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PrintAndLog("");
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PrintAndLog("Sample : lf awid sim 224 1337");
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return 0;
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}
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int usage_lf_awid_clone(void) {
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PrintAndLog("Enables cloning of AWID26 card with specified facility-code and card number onto T55x7.");
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PrintAndLog("The T55x7 must be on the antenna when issuing this command. T55x7 blocks are calculated and printed in the process.");
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PrintAndLog("Per AWID26 format, the facility-code is 8-bit and the card number is 16-bit. Larger values are truncated.");
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PrintAndLog("");
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PrintAndLog("Usage: lf awid clone <Facility-Code> <Card-Number>");
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PrintAndLog("Options : ");
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PrintAndLog(" <Facility-Code> : 8-bit value representing the AWID facility code");
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PrintAndLog(" <Card Number> : 16-bit value representing the AWID card number");
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PrintAndLog(" Q5 : optional - clone to Q5 (T5555) instead of T55x7 chip");
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PrintAndLog("");
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PrintAndLog("Sample : lf awid clone 224 1337");
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return 0;
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}
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int CmdAWIDReadFSK(const char *Cmd) {
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int findone=0;
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if (Cmd[0] == 'h' || Cmd[0] == 'H') return usage_lf_awid_read();
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if (Cmd[0] == '1') findone = 1;
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UsbCommand c = {CMD_AWID_DEMOD_FSK, {findone, 0, 0}};
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clearCommandBuffer();
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SendCommand(&c);
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return 0;
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}
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//by marshmellow
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//AWID Prox demod - FSK RF/50 with preamble of 00000001 (always a 96 bit data stream)
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//print full AWID Prox ID and some bit format details if found
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int CmdFSKdemodAWID(const char *Cmd)
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{
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uint8_t BitStream[MAX_GRAPH_TRACE_LEN]={0};
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size_t size = getFromGraphBuf(BitStream);
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if (size==0) return 0;
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int waveIdx = 0;
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//get binary from fsk wave
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int idx = AWIDdemodFSK(BitStream, &size, &waveIdx);
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if (idx<=0){
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if (g_debugMode){
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if (idx == -1)
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PrintAndLog("DEBUG: Error - not enough samples");
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else if (idx == -2)
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PrintAndLog("DEBUG: Error - only noise found");
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else if (idx == -3)
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PrintAndLog("DEBUG: Error - problem during FSK demod");
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else if (idx == -4)
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PrintAndLog("DEBUG: Error - AWID preamble not found");
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else if (idx == -5)
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PrintAndLog("DEBUG: Error - Size not correct: %d", size);
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else
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PrintAndLog("DEBUG: Error %d",idx);
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}
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return 0;
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}
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// Index map
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// 0 10 20 30 40 50 60
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// | | | | | | |
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// 01234567 890 1 234 5 678 9 012 3 456 7 890 1 234 5 678 9 012 3 456 7 890 1 234 5 678 9 012 3 - to 96
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// -----------------------------------------------------------------------------
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// 00000001 000 1 110 1 101 1 011 1 101 1 010 0 000 1 000 1 010 0 001 0 110 1 100 0 000 1 000 1
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// premable bbb o bbb o bbw o fff o fff o ffc o ccc o ccc o ccc o ccc o ccc o wxx o xxx o xxx o - to 96
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// |---26 bit---| |-----117----||-------------142-------------|
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// b = format bit len, o = odd parity of last 3 bits
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// f = facility code, c = card number
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// w = wiegand parity
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// (26 bit format shown)
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//get raw ID before removing parities
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uint32_t rawLo = bytebits_to_byte(BitStream+idx+64,32);
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uint32_t rawHi = bytebits_to_byte(BitStream+idx+32,32);
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uint32_t rawHi2 = bytebits_to_byte(BitStream+idx,32);
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setDemodBuf(BitStream,96,idx);
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setClockGrid(50, waveIdx + (idx*50));
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size = removeParity(BitStream, idx+8, 4, 1, 88);
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if (size != 66){
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if (g_debugMode) PrintAndLog("DEBUG: Error - at parity check-tag size does not match AWID format");
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return 0;
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}
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// ok valid card found!
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// Index map
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// 0 10 20 30 40 50 60
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// | | | | | | |
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// 01234567 8 90123456 7890123456789012 3 456789012345678901234567890123456
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// -----------------------------------------------------------------------------
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// 00011010 1 01110101 0000000010001110 1 000000000000000000000000000000000
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// bbbbbbbb w ffffffff cccccccccccccccc w xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx
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// |26 bit| |-117--| |-----142------|
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// b = format bit len, o = odd parity of last 3 bits
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// f = facility code, c = card number
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// w = wiegand parity
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// (26 bit format shown)
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uint32_t fc = 0;
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uint32_t cardnum = 0;
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uint32_t code1 = 0;
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uint32_t code2 = 0;
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uint8_t fmtLen = bytebits_to_byte(BitStream,8);
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if (fmtLen==26){
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fc = bytebits_to_byte(BitStream+9, 8);
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cardnum = bytebits_to_byte(BitStream+17, 16);
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code1 = bytebits_to_byte(BitStream+8,fmtLen);
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PrintAndLog("AWID Found - BitLength: %d, FC: %d, Card: %d - Wiegand: %x, Raw: %08x%08x%08x", fmtLen, fc, cardnum, code1, rawHi2, rawHi, rawLo);
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} else {
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cardnum = bytebits_to_byte(BitStream+8+(fmtLen-17), 16);
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if (fmtLen>32){
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code1 = bytebits_to_byte(BitStream+8,fmtLen-32);
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code2 = bytebits_to_byte(BitStream+8+(fmtLen-32),32);
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PrintAndLog("AWID Found - BitLength: %d -unknown BitLength- (%d) - Wiegand: %x%08x, Raw: %08x%08x%08x", fmtLen, cardnum, code1, code2, rawHi2, rawHi, rawLo);
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} else{
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code1 = bytebits_to_byte(BitStream+8,fmtLen);
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PrintAndLog("AWID Found - BitLength: %d -unknown BitLength- (%d) - Wiegand: %x, Raw: %08x%08x%08x", fmtLen, cardnum, code1, rawHi2, rawHi, rawLo);
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}
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}
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if (g_debugMode){
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PrintAndLog("DEBUG: idx: %d, Len: %d Printing Demod Buffer:", idx, 96);
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printDemodBuff();
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}
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//todo - convert hi2, hi, lo to demodbuffer for future sim/clone commands
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return 1;
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}
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//refactored by marshmellow
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int getAWIDBits(uint32_t fc, uint32_t cn, uint8_t *AWIDBits) {
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uint8_t pre[66];
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memset(pre, 0, sizeof(pre));
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AWIDBits[7]=1;
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num_to_bytebits(26, 8, pre);
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uint8_t wiegand[24];
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num_to_bytebits(fc, 8, wiegand);
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num_to_bytebits(cn, 16, wiegand+8);
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wiegand_add_parity(pre+8, wiegand, 24);
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size_t bitLen = addParity(pre, AWIDBits+8, 66, 4, 1);
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if (bitLen != 88) return 0;
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//for (uint8_t i = 0; i<3; i++){
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// PrintAndLog("DEBUG: %08X", bytebits_to_byte(AWIDBits+(32*i),32));
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//}
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return 1;
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}
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int CmdAWIDSim(const char *Cmd) {
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uint32_t fcode = 0, cnum = 0, fc=0, cn=0;
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uint8_t BitStream[96];
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uint8_t *bs = BitStream;
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size_t size = sizeof(BitStream);
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memset(bs, 0, size);
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uint64_t arg1 = (10<<8) + 8; // fcHigh = 10, fcLow = 8
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uint64_t arg2 = 50; // clk RF/50 invert=0
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if (sscanf(Cmd, "%u %u", &fc, &cn ) != 2) return usage_lf_awid_sim();
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fcode = (fc & 0x000000FF);
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cnum = (cn & 0x0000FFFF);
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if (fc != fcode) PrintAndLog("Facility-Code (%u) truncated to 8-bits: %u",fc,fcode);
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if (cn != cnum) PrintAndLog("Card number (%u) truncated to 16-bits: %u",cn,cnum);
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PrintAndLog("Emulating AWID26 -- FC: %u; CN: %u\n",fcode,cnum);
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PrintAndLog("Press pm3-button to abort simulation or run another command");
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if (!getAWIDBits(fc, cn, bs)) {
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PrintAndLog("Error with tag bitstream generation.");
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return 1;
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}
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// AWID uses: fcHigh: 10, fcLow: 8, clk: 50, invert: 0
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UsbCommand c = {CMD_FSK_SIM_TAG, {arg1, arg2, size}};
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memcpy(c.d.asBytes, bs, size);
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clearCommandBuffer();
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SendCommand(&c);
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return 0;
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}
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int CmdAWIDClone(const char *Cmd) {
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uint32_t blocks[4] = {T55x7_MODULATION_FSK2a | T55x7_BITRATE_RF_50 | 3<<T55x7_MAXBLOCK_SHIFT, 0, 0, 0};
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uint32_t fc=0,cn=0;
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uint8_t BitStream[96];
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uint8_t *bs=BitStream;
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memset(bs,0,sizeof(BitStream));
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if (sscanf(Cmd, "%u %u", &fc, &cn ) != 2) return usage_lf_awid_clone();
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if (param_getchar(Cmd, 3) == 'Q' || param_getchar(Cmd, 3) == 'q')
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blocks[0] = T5555_MODULATION_FSK2 | T5555_INVERT_OUTPUT | ((50-2)>>1)<<T5555_BITRATE_SHIFT | 3<<T5555_MAXBLOCK_SHIFT;
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if ((fc & 0xFF) != fc) {
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fc &= 0xFF;
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PrintAndLog("Facility-Code Truncated to 8-bits (AWID26): %u", fc);
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}
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if ((cn & 0xFFFF) != cn) {
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cn &= 0xFFFF;
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PrintAndLog("Card Number Truncated to 16-bits (AWID26): %u", cn);
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}
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if ( !getAWIDBits(fc, cn, bs)) {
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PrintAndLog("Error with tag bitstream generation.");
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return 1;
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}
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blocks[1] = bytebits_to_byte(bs,32);
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blocks[2] = bytebits_to_byte(bs+32,32);
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blocks[3] = bytebits_to_byte(bs+64,32);
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PrintAndLog("Preparing to clone AWID26 to T55x7 with FC: %u, CN: %u",
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fc, cn);
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PrintAndLog("Blk | Data ");
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PrintAndLog("----+------------");
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PrintAndLog(" 00 | 0x%08x", blocks[0]);
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PrintAndLog(" 01 | 0x%08x", blocks[1]);
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PrintAndLog(" 02 | 0x%08x", blocks[2]);
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PrintAndLog(" 03 | 0x%08x", blocks[3]);
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UsbCommand resp;
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UsbCommand c = {CMD_T55XX_WRITE_BLOCK, {0,0,0}};
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for (uint8_t i=0; i<4; i++) {
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c.cmd = CMD_T55XX_WRITE_BLOCK;
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c.arg[0] = blocks[i];
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c.arg[1] = i;
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c.arg[2] = 0;
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clearCommandBuffer();
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SendCommand(&c);
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if (!WaitForResponseTimeout(CMD_ACK, &resp, 1000)){
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PrintAndLog("Error occurred, device did not respond during write operation.");
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return -1;
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}
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}
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return 0;
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}
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static command_t CommandTable[] = {
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{"help", CmdHelp, 1, "This help"},
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{"demod", CmdFSKdemodAWID, 1, "Demodulate an AWID FSK tag from the GraphBuffer"},
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{"read", CmdAWIDReadFSK, 0, "['1'] Realtime AWID FSK read from the antenna (option '1' for one tag only)"},
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{"sim", CmdAWIDSim, 0, "<Facility-Code> <Card Number> -- AWID tag simulator"},
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{"clone", CmdAWIDClone, 0, "<Facility-Code> <Card Number> <Q5> -- Clone AWID to T55x7 (tag must be in range of antenna)"},
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{NULL, NULL, 0, NULL}
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};
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int CmdLFAWID(const char *Cmd) {
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CmdsParse(CommandTable, Cmd);
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return 0;
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}
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int CmdHelp(const char *Cmd) {
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CmdsHelp(CommandTable);
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return 0;
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}
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