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68 lines
3.4 KiB
C
68 lines
3.4 KiB
C
//-----------------------------------------------------------------------------
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// Jonathan Westhues, Aug 2005
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// Gerhard de Koning Gans, April 2008, May 2011
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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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// Definitions internal to the app source.
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//-----------------------------------------------------------------------------
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#ifndef __LFOPS_H
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#define __LFOPS_H
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#include "common.h"
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#include "pm3_cmd.h" // struct
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void ModThenAcquireRawAdcSamples125k(uint32_t delay_off, uint16_t period_0, uint16_t period_1, uint8_t *symbol_extra, uint16_t *period_extra, uint8_t *command, bool verbose, uint32_t samples);
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void ReadTItag(void);
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void WriteTItag(uint32_t idhi, uint32_t idlo, uint16_t crc);
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void AcquireTiType(void);
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void AcquireRawBitsTI(void);
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void SimulateTagLowFrequencyEx(int period, int gap, bool ledcontrol, int numcycles);
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void SimulateTagLowFrequency(int period, int gap, bool ledcontrol);
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void SimulateTagLowFrequencyBidir(int divisor, int max_bitlen);
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void CmdHIDsimTAGEx(uint32_t hi2, uint32_t hi, uint32_t lo, uint8_t longFMT, bool ledcontrol, int numcycles);
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void CmdHIDsimTAG(uint32_t hi2, uint32_t hi, uint32_t lo, uint8_t longFMT, bool ledcontrol);
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void CmdFSKsimTAGEx(uint8_t fchigh, uint8_t fclow, uint8_t separator, uint8_t clk, uint16_t bitslen, uint8_t *bits, bool ledcontrol, int numcycles);
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void CmdFSKsimTAG(uint8_t fchigh, uint8_t fclow, uint8_t separator, uint8_t clk, uint16_t bitslen, uint8_t *bits, bool ledcontrol);
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void CmdASKsimTAG(uint8_t encoding, uint8_t invert, uint8_t separator, uint8_t clk, uint16_t size, uint8_t *bits, bool ledcontrol);
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void CmdPSKsimTAG(uint8_t carrier, uint8_t invert, uint8_t clk, uint16_t size, uint8_t *bits, bool ledcontrol);
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void CmdNRZsimTAG(uint8_t invert, uint8_t separator, uint8_t clk, uint16_t size, uint8_t *bits, bool ledcontrol);
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int lf_hid_watch(int findone, uint32_t *high, uint32_t *low);
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int lf_awid_watch(int findone, uint32_t *high, uint32_t *low); // Realtime demodulation mode for AWID26
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int lf_em410x_watch(int findone, uint32_t *high, uint64_t *low);
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int lf_io_watch(int findone, uint32_t *high, uint32_t *low);
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void CopyHIDtoT55x7(uint32_t hi2, uint32_t hi, uint32_t lo, uint8_t longFMT); // Clone an HID card to T5557/T5567
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void CopyVikingtoT55xx(uint8_t *blocks, uint8_t Q5);
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int copy_em410x_to_t55xx(uint8_t card, uint8_t clock, uint32_t id_hi, uint32_t id_lo);
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void T55xxResetRead(uint8_t flags);
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//id T55xxWriteBlock(uint32_t data, uint8_t blockno, uint32_t pwd, uint8_t flags);
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void T55xxWriteBlock(uint8_t *data);
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// void T55xxWriteBlockExt(uint32_t data, uint8_t blockno, uint32_t pwd, uint8_t flags);
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void T55xxReadBlock(uint8_t page, bool pwd_mode, bool brute_mem, uint8_t block, uint32_t pwd, uint8_t downlink_mode);
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void T55xxWakeUp(uint32_t pwd, uint8_t flags);
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void T55xx_ChkPwds(uint8_t flags);
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void T55xxDangerousRawTest(uint8_t *data);
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void TurnReadLFOn(uint32_t delay);
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void EM4xReadWord(uint8_t addr, uint32_t pwd, uint8_t usepwd);
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void EM4xWriteWord(uint8_t addr, uint32_t data, uint32_t pwd, uint8_t usepwd);
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void Cotag(uint32_t arg0);
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void setT55xxConfig(uint8_t arg0, t55xx_configurations_t *c);
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t55xx_configurations_t *getT55xxConfig(void);
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void printT55xxConfig(void);
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void loadT55xxConfig(void);
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#endif
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