2011-05-26 20:55:15 +08:00
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//-----------------------------------------------------------------------------
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// Merlok, May 2011
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// Many authors, that makes it possible
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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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// code for work with mifare cards.
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//-----------------------------------------------------------------------------
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2011-06-10 21:35:10 +08:00
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2011-06-07 20:35:52 +08:00
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#ifndef __MIFAREUTIL_H
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#define __MIFAREUTIL_H
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2011-05-26 20:55:15 +08:00
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2011-06-10 21:35:10 +08:00
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// mifare authentication
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2011-05-26 23:20:03 +08:00
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#define CRYPT_NONE 0
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#define CRYPT_ALL 1
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#define CRYPT_REQUEST 2
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#define AUTH_FIRST 0
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#define AUTH_NESTED 2
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2011-06-16 22:43:49 +08:00
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// mifare 4bit card answers
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#define CARD_ACK 0x0A // 1010 - ACK
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#define CARD_NACK_NA 0x04 // 0100 - NACK, not allowed (command not allowed)
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#define CARD_NACK_TR 0x05 // 0101 - NACK, transmission error
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2011-06-10 21:35:10 +08:00
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// reader voltage field detector
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#define MF_MINFIELDV 4000
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2011-06-07 20:35:52 +08:00
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// debug
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// 0 - no debug messages 1 - error messages 2 - all messages 4 - extended debug mode
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#define MF_DBG_NONE 0
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#define MF_DBG_ERROR 1
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#define MF_DBG_ALL 2
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#define MF_DBG_EXTENDED 4
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extern int MF_DBGLEVEL;
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//mifare nested
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#define MEM_CHUNK 10000
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#define TRY_KEYS 50
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#define NS_TOLERANCE 10 // [distance avg-value, distance avg+value]
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#define NS_RETRIES_GETNONCE 15
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#define NES_MAX_INFO 5
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2011-06-10 21:35:10 +08:00
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//mifare emulator states
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2011-06-25 21:03:01 +08:00
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#define MFEMUL_NOFIELD 0
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#define MFEMUL_IDLE 1
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#define MFEMUL_SELECT1 2
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#define MFEMUL_SELECT2 3
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#define MFEMUL_AUTH1 4
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#define MFEMUL_AUTH2 5
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#define MFEMUL_WORK 6
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#define MFEMUL_WRITEBL2 7
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#define MFEMUL_INTREG_INC 8
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#define MFEMUL_INTREG_DEC 9
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#define MFEMUL_INTREG_REST 10
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#define MFEMUL_HALTED 11
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#define cardSTATE_TO_IDLE() cardSTATE = MFEMUL_IDLE; LED_B_OFF(); LED_C_OFF();
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2011-06-01 22:12:11 +08:00
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//functions
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2011-05-31 19:31:20 +08:00
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uint8_t* mifare_get_bigbufptr(void);
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int mifare_sendcmd_short(struct Crypto1State *pcs, uint8_t crypted, uint8_t cmd, uint8_t data, uint8_t* answer);
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int mifare_sendcmd_shortex(struct Crypto1State *pcs, uint8_t crypted, uint8_t cmd, uint8_t data, uint8_t* answer, uint32_t * parptr);
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2011-05-26 20:55:15 +08:00
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int mifare_classic_auth(struct Crypto1State *pcs, uint32_t uid, \
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2011-05-31 19:31:20 +08:00
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uint8_t blockNo, uint8_t keyType, uint64_t ui64Key, uint64_t isNested);
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int mifare_classic_authex(struct Crypto1State *pcs, uint32_t uid, \
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uint8_t blockNo, uint8_t keyType, uint64_t ui64Key, uint64_t isNested, uint32_t * ntptr);
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2011-05-26 20:55:15 +08:00
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int mifare_classic_readblock(struct Crypto1State *pcs, uint32_t uid, uint8_t blockNo, uint8_t *blockData);
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int mifare_classic_writeblock(struct Crypto1State *pcs, uint32_t uid, uint8_t blockNo, uint8_t *blockData);
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int mifare_classic_halt(struct Crypto1State *pcs, uint32_t uid);
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2011-06-16 22:43:49 +08:00
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// crypto functions
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void mf_crypto1_decrypt(struct Crypto1State *pcs, uint8_t *receivedCmd, int len);
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void mf_crypto1_encrypt(struct Crypto1State *pcs, uint8_t *data, int len, uint32_t *par);
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uint8_t mf_crypto1_encrypt4bit(struct Crypto1State *pcs, uint8_t data);
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// memory management
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uint8_t* mifare_get_bigbufptr(void);
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uint8_t* eml_get_bigbufptr_sendbuf(void);
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uint8_t* eml_get_bigbufptr_recbuf(void);
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// emulator functions
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void emlClearMem(void);
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void emlSetMem(uint8_t *data, int blockNum, int blocksCount);
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void emlGetMem(uint8_t *data, int blockNum, int blocksCount);
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void emlGetMemBt(uint8_t *data, int bytePtr, int byteCount);
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2011-06-18 02:39:54 +08:00
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uint64_t emlGetKey(int sectorNum, int keyType);
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2011-06-25 21:03:01 +08:00
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int emlGetValBl(uint32_t *blReg, uint8_t *blBlock, int blockNum);
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int emlSetValBl(uint32_t blReg, uint8_t blBlock, int blockNum);
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int emlCheckValBl(int blockNum);
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2011-06-16 22:43:49 +08:00
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2011-06-07 20:35:52 +08:00
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#endif
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