This commit is contained in:
Philippe Teuwen 2019-04-06 01:00:54 +02:00
commit 26eb54b965
19 changed files with 160 additions and 160 deletions

View file

@ -25,22 +25,22 @@
#define CARD_MEMORY_SIZE 4096
#define DMA_BUFFER_SIZE 256 //128 (how big is the dma?!?
extern uint8_t *BigBuf_get_addr(void);
extern uint8_t *BigBuf_get_EM_addr(void);
extern uint16_t BigBuf_max_traceLen(void);
extern void BigBuf_Clear(void);
extern void BigBuf_Clear_ext(bool verbose);
extern void BigBuf_Clear_keep_EM(void);
extern void BigBuf_Clear_EM(void);
extern uint8_t *BigBuf_malloc(uint16_t);
extern void BigBuf_free(void);
extern void BigBuf_free_keep_EM(void);
extern void BigBuf_print_status(void);
extern uint32_t BigBuf_get_traceLen(void);
extern void clear_trace(void);
extern void set_tracing(bool enable);
extern void set_tracelen(uint32_t value);
extern bool get_tracing(void);
extern bool RAMFUNC LogTrace(const uint8_t *btBytes, uint16_t iLen, uint32_t timestamp_start, uint32_t timestamp_end, uint8_t *parity, bool readerToTag);
extern uint8_t emlSet(uint8_t *data, uint32_t offset, uint32_t length);
uint8_t *BigBuf_get_addr(void);
uint8_t *BigBuf_get_EM_addr(void);
uint16_t BigBuf_max_traceLen(void);
void BigBuf_Clear(void);
void BigBuf_Clear_ext(bool verbose);
void BigBuf_Clear_keep_EM(void);
void BigBuf_Clear_EM(void);
uint8_t *BigBuf_malloc(uint16_t);
void BigBuf_free(void);
void BigBuf_free_keep_EM(void);
void BigBuf_print_status(void);
uint32_t BigBuf_get_traceLen(void);
void clear_trace(void);
void set_tracing(bool enable);
void set_tracelen(uint32_t value);
bool get_tracing(void);
bool RAMFUNC LogTrace(const uint8_t *btBytes, uint16_t iLen, uint32_t timestamp_start, uint32_t timestamp_end, uint8_t *parity, bool readerToTag);
uint8_t emlSet(uint8_t *data, uint32_t offset, uint32_t length);
#endif /* __BIGBUF_H */

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@ -14,6 +14,6 @@
#include <stdbool.h> // for bool
#include <inttypes.h> // PRIu64
extern void RunMod();
void RunMod();
#endif /* __STANDALONE_H */

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@ -65,8 +65,8 @@ void ListenReaderField(int limit);
extern int ToSendMax;
extern uint8_t ToSend[];
extern void StandAloneMode(void);
extern void printStandAloneModes(void);
void StandAloneMode(void);
void printStandAloneModes(void);
/// lfops.h
extern uint8_t decimation;
@ -230,10 +230,10 @@ uint8_t cmd_send(uint64_t cmd, uint64_t arg0, uint64_t arg1, uint64_t arg2, void
void HfSniff(int, int);
//felica.c
extern void felica_sendraw(UsbCommand *c);
extern void felica_sniff(uint32_t samplesToSkip, uint32_t triggersToSkip);
extern void felica_sim_lite(uint64_t uid);
extern void felica_dump_lite_s();
void felica_sendraw(UsbCommand *c);
void felica_sniff(uint32_t samplesToSkip, uint32_t triggersToSkip);
void felica_sim_lite(uint64_t uid);
void felica_dump_lite_s();
#ifdef __cplusplus

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@ -20,11 +20,11 @@
#define note_7 506
#define note_8 0
extern void Ring_BEE_ONCE(uint16_t music_note);
extern void Ring_BEE_TIME(uint16_t music_note, uint16_t count);
extern void ring_2_7khz(uint16_t count);
extern void Ring_ALL(uint16_t count);
extern void Ring_Little_Star(uint16_t count);
void Ring_BEE_ONCE(uint16_t music_note);
void Ring_BEE_TIME(uint16_t music_note, uint16_t count);
void ring_2_7khz(uint16_t count);
void Ring_ALL(uint16_t count);
void Ring_Little_Star(uint16_t count);
#endif

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@ -115,7 +115,7 @@
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~//
extern void Dbprintf(const char *fmt, ...);
void Dbprintf(const char *fmt, ...);
void FlashmemSetSpiBaudrate(uint32_t baudrate);
bool FlashInit();

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@ -37,7 +37,7 @@ int FpgaGetCurrent(void);
void SetAdcMuxFor(uint32_t whichGpio);
// extern and generel turn off the antenna method
extern void switch_off(void);
void switch_off(void);
// definitions for multiple FPGA config files support
#define FPGA_BITSTREAM_LF 1

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@ -22,13 +22,13 @@ struct hitag2_tag {
uint8_t sectors[12][4];
};
extern uint32_t _f20(const uint64_t x);
extern uint64_t _hitag2_init(const uint64_t key, const uint32_t serial, const uint32_t IV);
extern uint64_t _hitag2_round(uint64_t *state);
extern uint32_t _hitag2_byte(uint64_t *x);
extern void hitag2_cipher_reset(struct hitag2_tag *tag, const uint8_t *iv);
extern int hitag2_cipher_authenticate(uint64_t *cs, const uint8_t *authenticator_is);
extern int hitag2_cipher_transcrypt(uint64_t *cs, uint8_t *data, uint16_t bytes, uint16_t bits) ;
uint32_t _f20(const uint64_t x);
uint64_t _hitag2_init(const uint64_t key, const uint32_t serial, const uint32_t IV);
uint64_t _hitag2_round(uint64_t *state);
uint32_t _hitag2_byte(uint64_t *x);
void hitag2_cipher_reset(struct hitag2_tag *tag, const uint8_t *iv);
int hitag2_cipher_authenticate(uint64_t *cs, const uint8_t *authenticator_is);
int hitag2_cipher_transcrypt(uint64_t *cs, uint8_t *data, uint16_t bytes, uint16_t bits) ;
#ifdef __cplusplus
}
#endif

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@ -97,45 +97,45 @@ typedef struct {
# define CheckCrc14A(data, len) check_crc(CRC_14443_A, (data), (len))
#endif
extern void GetParity(const uint8_t *pbtCmd, uint16_t len, uint8_t *par);
void GetParity(const uint8_t *pbtCmd, uint16_t len, uint8_t *par);
extern tDemod *GetDemod(void);
extern void DemodReset(void);
extern void DemodInit(uint8_t *data, uint8_t *parity);
extern tUart *GetUart(void);
extern void UartReset(void);
extern void UartInit(uint8_t *data, uint8_t *parity);
extern RAMFUNC bool MillerDecoding(uint8_t bit, uint32_t non_real_time);
extern RAMFUNC int ManchesterDecoding(uint8_t bit, uint16_t offset, uint32_t non_real_time);
tDemod *GetDemod(void);
void DemodReset(void);
void DemodInit(uint8_t *data, uint8_t *parity);
tUart *GetUart(void);
void UartReset(void);
void UartInit(uint8_t *data, uint8_t *parity);
RAMFUNC bool MillerDecoding(uint8_t bit, uint32_t non_real_time);
RAMFUNC int ManchesterDecoding(uint8_t bit, uint16_t offset, uint32_t non_real_time);
extern void RAMFUNC SniffIso14443a(uint8_t param);
extern void SimulateIso14443aTag(int tagType, int flags, uint8_t *data);
extern void iso14443a_antifuzz(uint32_t flags);
extern void ReaderIso14443a(UsbCommand *c);
extern void ReaderTransmit(uint8_t *frame, uint16_t len, uint32_t *timing);
extern void ReaderTransmitBitsPar(uint8_t *frame, uint16_t bits, uint8_t *par, uint32_t *timing);
extern void ReaderTransmitPar(uint8_t *frame, uint16_t len, uint8_t *par, uint32_t *timing);
extern int ReaderReceive(uint8_t *receivedAnswer, uint8_t *par);
void RAMFUNC SniffIso14443a(uint8_t param);
void SimulateIso14443aTag(int tagType, int flags, uint8_t *data);
void iso14443a_antifuzz(uint32_t flags);
void ReaderIso14443a(UsbCommand *c);
void ReaderTransmit(uint8_t *frame, uint16_t len, uint32_t *timing);
void ReaderTransmitBitsPar(uint8_t *frame, uint16_t bits, uint8_t *par, uint32_t *timing);
void ReaderTransmitPar(uint8_t *frame, uint16_t len, uint8_t *par, uint32_t *timing);
int ReaderReceive(uint8_t *receivedAnswer, uint8_t *par);
extern void iso14443a_setup(uint8_t fpga_minor_mode);
extern int iso14_apdu(uint8_t *cmd, uint16_t cmd_len, bool send_chaining, void *data, uint8_t *res);
extern int iso14443a_select_card(uint8_t *uid_ptr, iso14a_card_select_t *resp_data, uint32_t *cuid_ptr, bool anticollision, uint8_t num_cascades, bool no_rats);
extern int iso14443a_fast_select_card(uint8_t *uid_ptr, uint8_t num_cascades);
extern void iso14a_set_trigger(bool enable);
void iso14443a_setup(uint8_t fpga_minor_mode);
int iso14_apdu(uint8_t *cmd, uint16_t cmd_len, bool send_chaining, void *data, uint8_t *res);
int iso14443a_select_card(uint8_t *uid_ptr, iso14a_card_select_t *resp_data, uint32_t *cuid_ptr, bool anticollision, uint8_t num_cascades, bool no_rats);
int iso14443a_fast_select_card(uint8_t *uid_ptr, uint8_t num_cascades);
void iso14a_set_trigger(bool enable);
extern int EmSendCmd14443aRaw(uint8_t *resp, uint16_t respLen);
extern int EmSend4bit(uint8_t resp);
extern int EmSendCmd(uint8_t *resp, uint16_t respLen);
extern int EmSendCmdEx(uint8_t *resp, uint16_t respLen, bool collision);
extern int EmGetCmd(uint8_t *received, uint16_t *len, uint8_t *parity);
extern int EmSendCmdPar(uint8_t *resp, uint16_t respLen, uint8_t *par);
extern int EmSendCmdParEx(uint8_t *resp, uint16_t respLen, uint8_t *par, bool collision);
extern int EmSendPrecompiledCmd(tag_response_info_t *response_info);
int EmSendCmd14443aRaw(uint8_t *resp, uint16_t respLen);
int EmSend4bit(uint8_t resp);
int EmSendCmd(uint8_t *resp, uint16_t respLen);
int EmSendCmdEx(uint8_t *resp, uint16_t respLen, bool collision);
int EmGetCmd(uint8_t *received, uint16_t *len, uint8_t *parity);
int EmSendCmdPar(uint8_t *resp, uint16_t respLen, uint8_t *par);
int EmSendCmdParEx(uint8_t *resp, uint16_t respLen, uint8_t *par, bool collision);
int EmSendPrecompiledCmd(tag_response_info_t *response_info);
bool EmLogTrace(uint8_t *reader_data, uint16_t reader_len, uint32_t reader_StartTime, uint32_t reader_EndTime, uint8_t *reader_Parity,
uint8_t *tag_data, uint16_t tag_len, uint32_t tag_StartTime, uint32_t tag_EndTime, uint8_t *tag_Parity);
//extern bool prepare_allocated_tag_modulation(tag_response_info_t *response_info, uint8_t **buffer, size_t *buffer_size);
//bool prepare_allocated_tag_modulation(tag_response_info_t *response_info, uint8_t **buffer, size_t *buffer_size);
void ReaderMifare(bool first_try, uint8_t block, uint8_t keytype);
void DetectNACKbug();

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@ -34,15 +34,15 @@ extern "C" {
# define AddCrc14B(data, len) compute_crc(CRC_14443_B, (data), (len), (data)+(len), (data)+(len)+1)
#endif
extern void SendRawCommand14443B_Ex(UsbCommand *c);
extern void iso14443b_setup();
extern uint8_t iso14443b_apdu(uint8_t const *message, size_t message_length, uint8_t *response);
extern uint8_t iso14443b_select_card(iso14b_card_select_t *card);
extern uint8_t iso14443b_select_card_srx(iso14b_card_select_t *card);
void SendRawCommand14443B_Ex(UsbCommand *c);
void iso14443b_setup();
uint8_t iso14443b_apdu(uint8_t const *message, size_t message_length, uint8_t *response);
uint8_t iso14443b_select_card(iso14b_card_select_t *card);
uint8_t iso14443b_select_card_srx(iso14b_card_select_t *card);
// testfunctions
extern void WaitForFpgaDelayQueueIsEmpty(uint16_t delay);
extern void ClearFpgaShiftingRegisters(void);
void WaitForFpgaDelayQueueIsEmpty(uint16_t delay);
void ClearFpgaShiftingRegisters(void);
// States for 14B SIM command
#define SIM_NOFIELD 0

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@ -14,8 +14,8 @@
#include "proxmark3.h"
extern void LegicRfInfo(void);
extern void LegicRfReader(uint16_t offset, uint16_t len, uint8_t iv);
extern void LegicRfWriter(uint16_t offset, uint16_t byte, uint8_t iv, uint8_t *data);
void LegicRfInfo(void);
void LegicRfReader(uint16_t offset, uint16_t len, uint8_t iv);
void LegicRfWriter(uint16_t offset, uint16_t byte, uint8_t iv, uint8_t *data);
#endif /* __LEGICRF_H */

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@ -14,6 +14,6 @@
#include "proxmark3.h"
extern void LegicRfSimulate(uint8_t tagtype);
void LegicRfSimulate(uint8_t tagtype);
#endif /* __LEGICRFSIM_H */

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@ -37,11 +37,11 @@ void StartCountSspClk();
void ResetSspClk(void);
uint32_t RAMFUNC GetCountSspClk();
extern void StartTicks(void);
extern uint32_t GetTicks(void);
extern void WaitTicks(uint32_t ticks);
extern void WaitUS(uint16_t us);
extern void WaitMS(uint16_t ms);
void StartTicks(void);
uint32_t GetTicks(void);
void WaitTicks(uint32_t ticks);
void WaitUS(uint16_t us);
void WaitMS(uint16_t ms);
extern void StopTicks(void);
void StopTicks(void);
#endif

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@ -84,9 +84,9 @@
size_t nbytes(size_t nbits);
extern uint32_t reflect(uint32_t v, int b); // used in crc.c ...
extern uint8_t reflect8(uint8_t b); // dedicated 8bit reversal
extern uint16_t reflect16(uint16_t b); // dedicated 16bit reversal
uint32_t reflect(uint32_t v, int b); // used in crc.c ...
uint8_t reflect8(uint8_t b); // dedicated 8bit reversal
uint16_t reflect16(uint16_t b); // dedicated 16bit reversal
void num_to_bytes(uint64_t n, size_t len, uint8_t *dest);
uint64_t bytes_to_num(uint8_t *src, size_t len);

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@ -51,7 +51,7 @@ uint8_t lfsr_rollback_bit(struct Crypto1State *s, uint32_t in, int fb);
uint8_t lfsr_rollback_byte(struct Crypto1State *s, uint32_t in, int fb);
uint32_t lfsr_rollback_word(struct Crypto1State *s, uint32_t in, int fb);
int nonce_distance(uint32_t from, uint32_t to);
extern bool validate_prng_nonce(uint32_t nonce);
bool validate_prng_nonce(uint32_t nonce);
#define FOREACH_VALID_NONCE(N, FILTER, FSIZE)\
uint32_t __n = 0,__M = 0, N = 0;\
int __i;\

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@ -30,25 +30,25 @@ typedef struct crc {
* refin is the setting for reversing (bitwise) the bytes during crc
* refot is the setting for reversing (bitwise) the crc byte before returning it.
*/
extern void crc_init_ref(crc_t *crc, int order, uint32_t polynom, uint32_t initial_value, uint32_t final_xor, bool refin, bool refout);
void crc_init_ref(crc_t *crc, int order, uint32_t polynom, uint32_t initial_value, uint32_t final_xor, bool refin, bool refout);
/* Initialize a crc structure. order is the order of the polynom, e.g. 32 for a CRC-32
* polynom is the CRC polynom. initial_value is the initial value of a clean state.
* final_xor is XORed onto the state before returning it from crc_result(). */
extern void crc_init(crc_t *crc, int order, uint32_t polynom, uint32_t initial_value, uint32_t final_xor);
void crc_init(crc_t *crc, int order, uint32_t polynom, uint32_t initial_value, uint32_t final_xor);
/* Update the crc state. data is the data of length data_width bits (only the
* data_width lower-most bits are used).
*/
extern void crc_update(crc_t *crc, uint32_t data, int data_width);
extern void crc_update2(crc_t *crc, uint32_t data, int data_width);
void crc_update(crc_t *crc, uint32_t data, int data_width);
void crc_update2(crc_t *crc, uint32_t data, int data_width);
/* Clean the crc state, e.g. reset it to initial_value */
extern void crc_clear(crc_t *crc);
void crc_clear(crc_t *crc);
/* Get the result of the crc calculation */
extern uint32_t crc_finish(crc_t *crc);
uint32_t crc_finish(crc_t *crc);
// Calculate CRC-8/Maxim checksum
uint32_t CRC8Maxim(uint8_t *buff, size_t size);

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@ -51,7 +51,7 @@
//to allow debug print calls when used not on dev
//void dummy(char *fmt, ...){}
extern void Dbprintf(const char *fmt, ...);
void Dbprintf(const char *fmt, ...);
#ifndef ON_DEVICE
#include "ui.h"

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@ -45,42 +45,42 @@ void getNextHigh(uint8_t *samples, size_t size, int high, size_t *i);
bool loadWaveCounters(uint8_t *samples, size_t size, int lowToLowWaveLen[], int highToLowWaveLen[], int *waveCnt, int *skip, int *minClk, int *high, int *low);
size_t pskFindFirstPhaseShift(uint8_t *samples, size_t size, uint8_t *curPhase, size_t waveStart, uint16_t fc, uint16_t *fullWaveLen);
extern size_t addParity(uint8_t *src, uint8_t *dest, uint8_t sourceLen, uint8_t pLen, uint8_t pType);
extern int askdemod(uint8_t *bits, size_t *size, int *clk, int *invert, int maxErr, uint8_t amp, uint8_t askType);
extern int askdemod_ext(uint8_t *bits, size_t *size, int *clk, int *invert, int maxErr, uint8_t amp, uint8_t askType, int *startIdx);
extern void askAmp(uint8_t *bits, size_t size);
extern int BiphaseRawDecode(uint8_t *bits, size_t *size, int *offset, int invert);
extern uint8_t bits_to_array(const uint8_t *bits, size_t size, uint8_t *dest);
extern uint32_t bytebits_to_byte(uint8_t *src, size_t numbits);
extern uint32_t bytebits_to_byteLSBF(uint8_t *src, size_t numbits);
extern uint16_t countFC(uint8_t *bits, size_t size, bool fskAdj);
extern int DetectASKClock(uint8_t *dest, size_t size, int *clock, int maxErr);
extern bool DetectCleanAskWave(uint8_t *dest, size_t size, uint8_t high, uint8_t low);
extern uint8_t detectFSKClk(uint8_t *bits, size_t size, uint8_t fcHigh, uint8_t fcLow, int *firstClockEdge);
extern int DetectNRZClock(uint8_t *dest, size_t size, int clock, size_t *clockStartIdx);
extern int DetectPSKClock(uint8_t *dest, size_t size, int clock, size_t *firstPhaseShift, uint8_t *curPhase, uint8_t *fc);
extern int DetectStrongAskClock(uint8_t *dest, size_t size, int high, int low, int *clock);
extern bool DetectST(uint8_t *buffer, size_t *size, int *foundclock, size_t *ststart, size_t *stend);
extern size_t fskdemod(uint8_t *dest, size_t size, uint8_t rfLen, uint8_t invert, uint8_t fchigh, uint8_t fclow, int *start_idx);
//extern void getHiLo(uint8_t *bits, size_t size, int *high, int *low, uint8_t fuzzHi, uint8_t fuzzLo);
extern void getHiLo(int *high, int *low, uint8_t fuzzHi, uint8_t fuzzLo);
extern uint32_t manchesterEncode2Bytes(uint16_t datain);
extern int ManchesterEncode(uint8_t *bits, size_t size);
extern int manrawdecode(uint8_t *bits, size_t *size, uint8_t invert, uint8_t *alignPos);
extern int nrzRawDemod(uint8_t *dest, size_t *size, int *clk, int *invert, int *startIdx);
extern bool parityTest(uint32_t bits, uint8_t bitLen, uint8_t pType);
extern bool preambleSearch(uint8_t *bits, uint8_t *preamble, size_t pLen, size_t *size, size_t *startIdx);
extern bool preambleSearchEx(uint8_t *bits, uint8_t *preamble, size_t pLen, size_t *size, size_t *startIdx, bool findone);
extern int pskRawDemod(uint8_t *dest, size_t *size, int *clock, int *invert);
extern int pskRawDemod_ext(uint8_t *dest, size_t *size, int *clock, int *invert, int *startIdx);
extern void psk2TOpsk1(uint8_t *bits, size_t size);
extern void psk1TOpsk2(uint8_t *bits, size_t size);
extern size_t removeParity(uint8_t *bits, size_t startIdx, uint8_t pLen, uint8_t pType, size_t bLen);
size_t addParity(uint8_t *src, uint8_t *dest, uint8_t sourceLen, uint8_t pLen, uint8_t pType);
int askdemod(uint8_t *bits, size_t *size, int *clk, int *invert, int maxErr, uint8_t amp, uint8_t askType);
int askdemod_ext(uint8_t *bits, size_t *size, int *clk, int *invert, int maxErr, uint8_t amp, uint8_t askType, int *startIdx);
void askAmp(uint8_t *bits, size_t size);
int BiphaseRawDecode(uint8_t *bits, size_t *size, int *offset, int invert);
uint8_t bits_to_array(const uint8_t *bits, size_t size, uint8_t *dest);
uint32_t bytebits_to_byte(uint8_t *src, size_t numbits);
uint32_t bytebits_to_byteLSBF(uint8_t *src, size_t numbits);
uint16_t countFC(uint8_t *bits, size_t size, bool fskAdj);
int DetectASKClock(uint8_t *dest, size_t size, int *clock, int maxErr);
bool DetectCleanAskWave(uint8_t *dest, size_t size, uint8_t high, uint8_t low);
uint8_t detectFSKClk(uint8_t *bits, size_t size, uint8_t fcHigh, uint8_t fcLow, int *firstClockEdge);
int DetectNRZClock(uint8_t *dest, size_t size, int clock, size_t *clockStartIdx);
int DetectPSKClock(uint8_t *dest, size_t size, int clock, size_t *firstPhaseShift, uint8_t *curPhase, uint8_t *fc);
int DetectStrongAskClock(uint8_t *dest, size_t size, int high, int low, int *clock);
bool DetectST(uint8_t *buffer, size_t *size, int *foundclock, size_t *ststart, size_t *stend);
size_t fskdemod(uint8_t *dest, size_t size, uint8_t rfLen, uint8_t invert, uint8_t fchigh, uint8_t fclow, int *start_idx);
//void getHiLo(uint8_t *bits, size_t size, int *high, int *low, uint8_t fuzzHi, uint8_t fuzzLo);
void getHiLo(int *high, int *low, uint8_t fuzzHi, uint8_t fuzzLo);
uint32_t manchesterEncode2Bytes(uint16_t datain);
int ManchesterEncode(uint8_t *bits, size_t size);
int manrawdecode(uint8_t *bits, size_t *size, uint8_t invert, uint8_t *alignPos);
int nrzRawDemod(uint8_t *dest, size_t *size, int *clk, int *invert, int *startIdx);
bool parityTest(uint32_t bits, uint8_t bitLen, uint8_t pType);
bool preambleSearch(uint8_t *bits, uint8_t *preamble, size_t pLen, size_t *size, size_t *startIdx);
bool preambleSearchEx(uint8_t *bits, uint8_t *preamble, size_t pLen, size_t *size, size_t *startIdx, bool findone);
int pskRawDemod(uint8_t *dest, size_t *size, int *clock, int *invert);
int pskRawDemod_ext(uint8_t *dest, size_t *size, int *clock, int *invert, int *startIdx);
void psk2TOpsk1(uint8_t *bits, size_t size);
void psk1TOpsk2(uint8_t *bits, size_t size);
size_t removeParity(uint8_t *bits, size_t startIdx, uint8_t pLen, uint8_t pType, size_t bLen);
//tag specific
extern int detectAWID(uint8_t *dest, size_t *size, int *waveStartIdx);
extern int Em410xDecode(uint8_t *bits, size_t *size, size_t *start_idx, uint32_t *hi, uint64_t *lo);
extern int HIDdemodFSK(uint8_t *dest, size_t *size, uint32_t *hi2, uint32_t *hi, uint32_t *lo, int *waveStartIdx);
extern int detectIdteck(uint8_t *dest, size_t *size);
extern int detectIOProx(uint8_t *dest, size_t *size, int *waveStartIdx);
int detectAWID(uint8_t *dest, size_t *size, int *waveStartIdx);
int Em410xDecode(uint8_t *bits, size_t *size, size_t *start_idx, uint32_t *hi, uint64_t *lo);
int HIDdemodFSK(uint8_t *dest, size_t *size, uint32_t *hi2, uint32_t *hi, uint32_t *lo, int *waveStartIdx);
int detectIdteck(uint8_t *dest, size_t *size);
int detectIOProx(uint8_t *dest, size_t *size, int *waveStartIdx);
#endif

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@ -41,23 +41,23 @@
#include "proxmark3.h" // USB_CONNECT()
#include "common.h"
extern void usb_disable();
extern void usb_enable();
extern bool usb_check();
extern bool usb_poll();
extern bool usb_poll_validate_length();
extern uint32_t usb_read(uint8_t *data, size_t len);
extern uint32_t usb_write(const uint8_t *data, const size_t len);
void usb_disable();
void usb_enable();
bool usb_check();
bool usb_poll();
bool usb_poll_validate_length();
uint32_t usb_read(uint8_t *data, size_t len);
uint32_t usb_write(const uint8_t *data, const size_t len);
extern void SetUSBreconnect(int value);
extern int GetUSBreconnect(void);
extern void SetUSBconfigured(int value);
extern int GetUSBconfigured(void);
void SetUSBreconnect(int value);
int GetUSBreconnect(void);
void SetUSBconfigured(int value);
int GetUSBconfigured(void);
extern void AT91F_USB_SendData(AT91PS_UDP pUdp, const char *pData, uint32_t length);
extern void AT91F_USB_SendZlp(AT91PS_UDP pUdp);
extern void AT91F_USB_SendStall(AT91PS_UDP pUdp);
extern void AT91F_CDC_Enumerate();
void AT91F_USB_SendData(AT91PS_UDP pUdp, const char *pData, uint32_t length);
void AT91F_USB_SendZlp(AT91PS_UDP pUdp);
void AT91F_USB_SendStall(AT91PS_UDP pUdp);
void AT91F_CDC_Enumerate();
#endif // _USB_CDC_H_

View file

@ -10,9 +10,9 @@
#define __LEGIC_PRNG_H
#include <stdint.h>
extern void legic_prng_init(uint8_t iv);
extern void legic_prng_forward(int count);
extern uint8_t legic_prng_get_bit();
extern uint32_t legic_prng_get_bits(uint8_t len);
void legic_prng_init(uint8_t iv);
void legic_prng_forward(int count);
uint8_t legic_prng_get_bit();
uint32_t legic_prng_get_bits(uint8_t len);
#endif