mirror of
https://github.com/RfidResearchGroup/proxmark3.git
synced 2024-11-11 01:55:38 +08:00
7fe9b0b742
Next Step is refactoring some of the giant functions which are just copy/paste of some other ones with just a few line changes, removing unnecessary 'goto' etc. The MS Windows version is broken with this commit but will be fixed soon. Everything can't be done all at once :P The commands are now hierarchical, for example: "hf 14a read" vs. "hf 14b read". You can also request help: "hf help", "data help", "hf 15 help" etc. Indents are now space-based, not tab-based anymore. Hopefully no one will be trolling about it, considering the suicide-prone work being done here ;) client/cmdhw.c, client/proxusb.c, client/cmdhw.h, client/proxusb.h, client/cmdmain.c, client/cmdlfhid.c, client/cmdmain.h, client/cmdlfhid.h, client/data.c, client/data.h, client/cmdhf.c, client/cmdlf.c, client/cmdhf.h, client/cmdhf15.c, client/cmdhf14b.c, client/cmdlf.h, client/cmdhf15.h, client/cmdhf14b.h, client/cmddata.c, client/cmddata.h, client/ui.c, client/cmdparser.c, client/cmdlfti.c, client/ui.h, client/cmdlfem4x.c, client/cmdparser.h, client/cmdlfti.h, client/cmdlfem4x.h, client/graph.c, client/graph.h, client/cmdhf14a.c, client/cmdhf14a.h, client/cmdhflegic.c, client/cmdhflegic.c: New files. client/cli.c, client/flasher.c, client/snooper.c, client/proxmark3.c, client/proxmark3.h, client/Makefile: Update accordingly. client/flash.h, client/flash.c, client/proxgui.cpp: Cosmetic changes. client/translate.h, client/command.c, client/gui.c, client/usb.c, client/prox.h: Remove. include/usb_cmd.h (CMD_ACQUIRE_RAW_ADC_SAMPLES_ISO_14443_SIM): Remove dead cmd. common/crc16.h: New file. common/crc16.c: Modify accordingly. common/iso14443crc.h: New file. common/iso14443_crc.c: Rename to common/iso14443crc.c: and modify accordingly. armsrc/lfops.c, armsrc/iso14443.c, armsrc/iso14443a.c: include .h files from the common directory instead of including the c files. common/Makefile.common, armsrc/Makefile: Modify accordingly.
415 lines
10 KiB
C
415 lines
10 KiB
C
#include <stdio.h>
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#include "proxusb.h"
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#include "ui.h"
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#include "graph.h"
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#include "cmdparser.h"
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#include "cmddata.h"
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#include "cmdlf.h"
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#include "cmdlfem4x.h"
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static int CmdHelp(const char *Cmd);
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/* Read the ID of an EM410x tag.
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* Format:
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* 1111 1111 1 <-- standard non-repeatable header
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* XXXX [row parity bit] <-- 10 rows of 5 bits for our 40 bit tag ID
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* ....
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* CCCC <-- each bit here is parity for the 10 bits above in corresponding column
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* 0 <-- stop bit, end of tag
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*/
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int CmdEM410xRead(const char *Cmd)
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{
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int i, j, clock, header, rows, bit, hithigh, hitlow, first, bit2idx, high, low;
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int parity[4];
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char id[11];
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int retested = 0;
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int BitStream[MAX_GRAPH_TRACE_LEN];
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high = low = 0;
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/* Detect high and lows and clock */
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for (i = 0; i < GraphTraceLen; i++)
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{
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if (GraphBuffer[i] > high)
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high = GraphBuffer[i];
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else if (GraphBuffer[i] < low)
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low = GraphBuffer[i];
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}
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/* get clock */
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clock = GetClock(Cmd, high, 0);
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/* parity for our 4 columns */
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parity[0] = parity[1] = parity[2] = parity[3] = 0;
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header = rows = 0;
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/* manchester demodulate */
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bit = bit2idx = 0;
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for (i = 0; i < (int)(GraphTraceLen / clock); i++)
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{
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hithigh = 0;
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hitlow = 0;
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first = 1;
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/* Find out if we hit both high and low peaks */
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for (j = 0; j < clock; j++)
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{
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if (GraphBuffer[(i * clock) + j] == high)
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hithigh = 1;
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else if (GraphBuffer[(i * clock) + j] == low)
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hitlow = 1;
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/* it doesn't count if it's the first part of our read
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because it's really just trailing from the last sequence */
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if (first && (hithigh || hitlow))
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hithigh = hitlow = 0;
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else
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first = 0;
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if (hithigh && hitlow)
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break;
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}
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/* If we didn't hit both high and low peaks, we had a bit transition */
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if (!hithigh || !hitlow)
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bit ^= 1;
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BitStream[bit2idx++] = bit;
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}
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retest:
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/* We go till 5 before the graph ends because we'll get that far below */
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for (i = 1; i < bit2idx - 5; i++)
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{
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/* Step 2: We have our header but need our tag ID */
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if (header == 9 && rows < 10)
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{
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/* Confirm parity is correct */
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if ((BitStream[i] ^ BitStream[i+1] ^ BitStream[i+2] ^ BitStream[i+3]) == BitStream[i+4])
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{
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/* Read another byte! */
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sprintf(id+rows, "%x", (8 * BitStream[i]) + (4 * BitStream[i+1]) + (2 * BitStream[i+2]) + (1 * BitStream[i+3]));
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rows++;
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/* Keep parity info */
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parity[0] ^= BitStream[i];
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parity[1] ^= BitStream[i+1];
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parity[2] ^= BitStream[i+2];
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parity[3] ^= BitStream[i+3];
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/* Move 4 bits ahead */
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i += 4;
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}
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/* Damn, something wrong! reset */
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else
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{
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PrintAndLog("Thought we had a valid tag but failed at word %d (i=%d)", rows + 1, i);
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/* Start back rows * 5 + 9 header bits, -1 to not start at same place */
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i -= 9 + (5 * rows) - 5;
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rows = header = 0;
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}
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}
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/* Step 3: Got our 40 bits! confirm column parity */
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else if (rows == 10)
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{
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/* We need to make sure our 4 bits of parity are correct and we have a stop bit */
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if (BitStream[i] == parity[0] && BitStream[i+1] == parity[1] &&
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BitStream[i+2] == parity[2] && BitStream[i+3] == parity[3] &&
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BitStream[i+4] == 0)
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{
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/* Sweet! */
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PrintAndLog("EM410x Tag ID: %s", id);
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/* Stop any loops */
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return 1;
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}
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/* Crap! Incorrect parity or no stop bit, start all over */
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else
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{
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rows = header = 0;
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/* Go back 59 bits (9 header bits + 10 rows at 4+1 parity) */
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i -= 59;
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}
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}
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/* Step 1: get our header */
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else if (header < 9)
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{
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/* Need 9 consecutive 1's */
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if (BitStream[i] == 1)
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header++;
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/* We don't have a header, not enough consecutive 1 bits */
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else
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header = 0;
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}
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}
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/* if we've already retested after flipping bits, return */
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if (retested++)
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return 0;
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/* if this didn't work, try flipping bits */
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for (i = 0; i < bit2idx; i++)
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BitStream[i] ^= 1;
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goto retest;
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}
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/* emulate an EM410X tag
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* Format:
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* 1111 1111 1 <-- standard non-repeatable header
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* XXXX [row parity bit] <-- 10 rows of 5 bits for our 40 bit tag ID
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* ....
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* CCCC <-- each bit here is parity for the 10 bits above in corresponding column
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* 0 <-- stop bit, end of tag
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*/
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int CmdEM410xSim(const char *Cmd)
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{
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int i, n, j, h, binary[4], parity[4];
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/* clock is 64 in EM410x tags */
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int clock = 64;
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/* clear our graph */
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ClearGraph(0);
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/* write it out a few times */
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for (h = 0; h < 4; h++)
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{
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/* write 9 start bits */
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for (i = 0; i < 9; i++)
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AppendGraph(0, clock, 1);
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/* for each hex char */
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parity[0] = parity[1] = parity[2] = parity[3] = 0;
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for (i = 0; i < 10; i++)
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{
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/* read each hex char */
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sscanf(&Cmd[i], "%1x", &n);
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for (j = 3; j >= 0; j--, n/= 2)
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binary[j] = n % 2;
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/* append each bit */
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AppendGraph(0, clock, binary[0]);
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AppendGraph(0, clock, binary[1]);
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AppendGraph(0, clock, binary[2]);
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AppendGraph(0, clock, binary[3]);
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/* append parity bit */
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AppendGraph(0, clock, binary[0] ^ binary[1] ^ binary[2] ^ binary[3]);
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/* keep track of column parity */
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parity[0] ^= binary[0];
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parity[1] ^= binary[1];
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parity[2] ^= binary[2];
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parity[3] ^= binary[3];
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}
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/* parity columns */
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AppendGraph(0, clock, parity[0]);
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AppendGraph(0, clock, parity[1]);
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AppendGraph(0, clock, parity[2]);
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AppendGraph(0, clock, parity[3]);
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/* stop bit */
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AppendGraph(0, clock, 0);
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}
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/* modulate that biatch */
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CmdManchesterMod("");
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/* booyah! */
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RepaintGraphWindow();
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CmdLFSim("");
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return 0;
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}
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/* Function is equivalent of loread + losamples + em410xread
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* looped until an EM410x tag is detected */
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int CmdEM410xWatch(const char *Cmd)
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{
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char *zero = "";
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char *twok = "2000";
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int stop = 0;
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do
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{
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CmdLFRead(zero);
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CmdLFSamples(twok);
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stop = CmdEM410xRead(zero);
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} while (!stop);
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return 0;
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}
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/* Read the transmitted data of an EM4x50 tag
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* Format:
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*
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* XXXXXXXX [row parity bit (even)] <- 8 bits plus parity
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* XXXXXXXX [row parity bit (even)] <- 8 bits plus parity
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* XXXXXXXX [row parity bit (even)] <- 8 bits plus parity
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* XXXXXXXX [row parity bit (even)] <- 8 bits plus parity
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* CCCCCCCC <- column parity bits
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* 0 <- stop bit
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* LW <- Listen Window
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*
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* This pattern repeats for every block of data being transmitted.
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* Transmission starts with two Listen Windows (LW - a modulated
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* pattern of 320 cycles each (32/32/128/64/64)).
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*
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* Note that this data may or may not be the UID. It is whatever data
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* is stored in the blocks defined in the control word First and Last
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* Word Read values. UID is stored in block 32.
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*/
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int CmdEM4x50Read(const char *Cmd)
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{
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int i, j, startblock, clock, skip, block, start, end, low, high;
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bool complete= false;
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int tmpbuff[MAX_GRAPH_TRACE_LEN / 64];
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char tmp[6];
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high= low= 0;
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clock= 64;
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/* first get high and low values */
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for (i = 0; i < GraphTraceLen; i++)
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{
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if (GraphBuffer[i] > high)
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high = GraphBuffer[i];
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else if (GraphBuffer[i] < low)
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low = GraphBuffer[i];
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}
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/* populate a buffer with pulse lengths */
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i= 0;
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j= 0;
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while (i < GraphTraceLen)
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{
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// measure from low to low
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while ((GraphBuffer[i] > low) && (i<GraphTraceLen))
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++i;
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start= i;
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while ((GraphBuffer[i] < high) && (i<GraphTraceLen))
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++i;
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while ((GraphBuffer[i] > low) && (i<GraphTraceLen))
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++i;
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if (j>(MAX_GRAPH_TRACE_LEN/64)) {
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break;
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}
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tmpbuff[j++]= i - start;
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}
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/* look for data start - should be 2 pairs of LW (pulses of 192,128) */
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start= -1;
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skip= 0;
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for (i= 0; i < j - 4 ; ++i)
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{
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skip += tmpbuff[i];
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if (tmpbuff[i] >= 190 && tmpbuff[i] <= 194)
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if (tmpbuff[i+1] >= 126 && tmpbuff[i+1] <= 130)
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if (tmpbuff[i+2] >= 190 && tmpbuff[i+2] <= 194)
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if (tmpbuff[i+3] >= 126 && tmpbuff[i+3] <= 130)
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{
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start= i + 3;
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break;
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}
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}
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startblock= i + 3;
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/* skip over the remainder of the LW */
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skip += tmpbuff[i+1]+tmpbuff[i+2];
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while (skip < MAX_GRAPH_TRACE_LEN && GraphBuffer[skip] > low)
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++skip;
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skip += 8;
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/* now do it again to find the end */
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end= start;
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for (i += 3; i < j - 4 ; ++i)
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{
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end += tmpbuff[i];
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if (tmpbuff[i] >= 190 && tmpbuff[i] <= 194)
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if (tmpbuff[i+1] >= 126 && tmpbuff[i+1] <= 130)
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if (tmpbuff[i+2] >= 190 && tmpbuff[i+2] <= 194)
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if (tmpbuff[i+3] >= 126 && tmpbuff[i+3] <= 130)
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{
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complete= true;
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break;
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}
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}
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if (start >= 0)
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PrintAndLog("Found data at sample: %i",skip);
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else
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{
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PrintAndLog("No data found!");
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PrintAndLog("Try again with more samples.");
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return 0;
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}
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if (!complete)
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{
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PrintAndLog("*** Warning!");
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PrintAndLog("Partial data - no end found!");
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PrintAndLog("Try again with more samples.");
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}
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/* get rid of leading crap */
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sprintf(tmp,"%i",skip);
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CmdLtrim(tmp);
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/* now work through remaining buffer printing out data blocks */
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block= 0;
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i= startblock;
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while (block < 6)
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{
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PrintAndLog("Block %i:", block);
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// mandemod routine needs to be split so we can call it for data
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// just print for now for debugging
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CmdManchesterDemod("i 64");
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skip= 0;
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/* look for LW before start of next block */
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for ( ; i < j - 4 ; ++i)
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{
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skip += tmpbuff[i];
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if (tmpbuff[i] >= 190 && tmpbuff[i] <= 194)
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if (tmpbuff[i+1] >= 126 && tmpbuff[i+1] <= 130)
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break;
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}
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while (GraphBuffer[skip] > low)
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++skip;
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skip += 8;
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sprintf(tmp,"%i",skip);
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CmdLtrim(tmp);
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start += skip;
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block++;
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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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{
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{"help", CmdHelp, 1, "This help"},
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{"em410xread", CmdEM410xRead, 1, "[clock rate] -- Extract ID from EM410x tag"},
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{"em410xsim", CmdEM410xSim, 0, "<UID> -- Simulate EM410x tag"},
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{"em410xwatch", CmdEM410xWatch, 0, "Watches for EM410x tags"},
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{"em4x50read", CmdEM4x50Read, 1, "Extract data from EM4x50 tag"},
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{NULL, NULL, 0, NULL}
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};
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int CmdLFEM4X(const char *Cmd)
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{
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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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{
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CmdsHelp(CommandTable);
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return 0;
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}
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