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1//-----------------------------------------------------------------------------
2// Jonathan Westhues, Aug 2005
3// Gerhard de Koning Gans, April 2008, May 2011
4//
5// This code is licensed to you under the terms of the GNU GPL, version 2 or,
6// at your option, any later version. See the LICENSE.txt file for the text of
7// the license.
8//-----------------------------------------------------------------------------
9// Definitions internal to the app source.
10//-----------------------------------------------------------------------------
11#ifndef __APPS_H
12#define __APPS_H
13
14#ifdef __cplusplus
15extern "C" {
16#endif
17
18#include <stdlib.h>
19#include <stdarg.h>
20#include "common.h"
21#include "usb_cdc.h"
22#include "crc32.h"
23#include "lfdemod.h"
24#include "BigBuf.h"
25#include "fpgaloader.h"
26#include "hitag2.h"
27#include "hitagS.h"
28#include "mifare.h"
29#include "pcf7931.h"
30#include "desfire.h"
31#include "iso14443b.h"
32//#include "iso14443a.h"
33#include "emvcard.h"
34
35extern int rsamples; // = 0;
36extern int tracing; // = TRUE;
37extern uint8_t trigger;
38
39// This may be used (sparingly) to declare a function to be copied to
40// and executed from RAM
41#define RAMFUNC __attribute((long_call, section(".ramfunc")))
42
43/// appmain.h
44void ReadMem(int addr);
45void __attribute__((noreturn)) AppMain(void);
46void SamyRun(void);
47//void DbpIntegers(int a, int b, int c);
48void DbpString(char *str);
49void Dbprintf(const char *fmt, ...);
50void DbprintfEx(uint32_t cmd, const char *fmt, ...);
51void Dbhexdump(int len, uint8_t *d, bool bAsci);
52
53// ADC Vref = 3300mV, and an (10M+1M):1M voltage divider on the HF input can measure voltages up to 36300 mV
54#define MAX_ADC_HF_VOLTAGE 36300
55// ADC Vref = 3300mV, and an (10000k+240k):240k voltage divider on the LF input can measure voltages up to 140800 mV
56#define MAX_ADC_LF_VOLTAGE 140800
57int AvgAdc(int ch);
58
59void print_result(char *name, uint8_t *buf, size_t len);
60void PrintToSendBuffer(void);
61void ToSendStuffBit(int b);
62void ToSendReset(void);
63void ListenReaderField(int limit);
64extern int ToSendMax;
65extern uint8_t ToSend[];
66
67/// lfops.h
68extern uint8_t decimation;
69extern uint8_t bits_per_sample ;
70extern bool averaging;
71
72void AcquireRawAdcSamples125k(int divisor);
73void ModThenAcquireRawAdcSamples125k(uint32_t delay_off, uint32_t period_0, uint32_t period_1, uint8_t *command);
74void ReadTItag(void);
75void WriteTItag(uint32_t idhi, uint32_t idlo, uint16_t crc);
76
77void AcquireTiType(void);
78void AcquireRawBitsTI(void);
79void SimulateTagLowFrequency(int period, int gap, int ledcontrol);
80void SimulateTagLowFrequencyBidir(int divisor, int max_bitlen);
81void CmdHIDsimTAG(int hi, int lo, int ledcontrol);
82void CmdFSKsimTAG(uint16_t arg1, uint16_t arg2, size_t size, uint8_t *BitStream);
83void CmdASKsimTag(uint16_t arg1, uint16_t arg2, size_t size, uint8_t *BitStream);
84void CmdPSKsimTag(uint16_t arg1, uint16_t arg2, size_t size, uint8_t *BitStream);
85void CmdHIDdemodFSK(int findone, int *high, int *low, int ledcontrol);
86void CmdAWIDdemodFSK(int findone, int *high, int *low, int ledcontrol); // Realtime demodulation mode for AWID26
87void CmdEM410xdemod(int findone, int *high, int *low, int ledcontrol);
88void CmdIOdemodFSK(int findone, int *high, int *low, int ledcontrol);
89void CopyIOtoT55x7(uint32_t hi, uint32_t lo); // Clone an ioProx card to T5557/T5567
90void CopyHIDtoT55x7(uint32_t hi2, uint32_t hi, uint32_t lo, uint8_t longFMT); // Clone an HID card to T5557/T5567
91void CopyVikingtoT55xx(uint32_t block1, uint32_t block2, uint8_t Q5);
92void WriteEM410x(uint32_t card, uint32_t id_hi, uint32_t id_lo);
93void CopyIndala64toT55x7(uint32_t hi, uint32_t lo); // Clone Indala 64-bit tag by UID to T55x7
94void CopyIndala224toT55x7(uint32_t uid1, uint32_t uid2, uint32_t uid3, uint32_t uid4, uint32_t uid5, uint32_t uid6, uint32_t uid7); // Clone Indala 224-bit tag by UID to T55x7
95void T55xxResetRead(void);
96void T55xxWriteBlock(uint32_t Data, uint8_t Block, uint32_t Pwd, uint8_t PwdMode);
97void T55xxWriteBlockExt(uint32_t Data, uint8_t Block, uint32_t Pwd, uint8_t PwdMode);
98void T55xxReadBlock(uint16_t arg0, uint8_t Block, uint32_t Pwd);
99void T55xxWakeUp(uint32_t Pwd);
100void TurnReadLFOn(uint32_t delay);
101void EM4xReadWord(uint8_t addr, uint32_t pwd, uint8_t usepwd);
102void EM4xWriteWord(uint32_t flag, uint32_t data, uint32_t pwd);
103void Cotag(uint32_t arg0);
104
105/// iso14443b.h
106void SimulateIso14443bTag(uint32_t pupi);
107void AcquireRawAdcSamplesIso14443b(uint32_t parameter);
108void ReadSTMemoryIso14443b(uint8_t numofblocks);
109void RAMFUNC SnoopIso14443b(void);
110void SendRawCommand14443B(uint32_t, uint32_t, uint8_t, uint8_t[]);
111void SendRawCommand14443B_Ex(UsbCommand *c);
112void AppendCrc14443b(uint8_t* data, int len);
113void ClearFpgaShiftingRegisters(void);
114
115// iso14443a.h
116void RAMFUNC SniffIso14443a(uint8_t param);
117void SimulateIso14443aTag(int tagType, int flags, byte_t* data);
118void ReaderIso14443a(UsbCommand * c);
119// Also used in iclass.c
120//bool RAMFUNC LogTrace(const uint8_t *btBytes, uint16_t len, uint32_t timestamp_start, uint32_t timestamp_end, uint8_t *parity, bool readerToTag);
121void GetParity(const uint8_t *pbtCmd, uint16_t len, uint8_t *parity);
122void iso14a_set_trigger(bool enable);
123// also used in emv
124bool prepare_allocated_tag_modulation(tag_response_info_t * response_info);
125int GetIso14443aCommandFromReader(uint8_t *received, uint8_t *parity, int *len);
126
127// epa.h
128void EPA_PACE_Collect_Nonce(UsbCommand * c);
129void EPA_PACE_Replay(UsbCommand *c);
130
131// mifarecmd.h
132void MifareReadBlock(uint8_t arg0, uint8_t arg1, uint8_t arg2, uint8_t *data);
133void MifareUReadBlock(uint8_t arg0, uint8_t arg1, uint8_t *datain);
134void MifareUC_Auth(uint8_t arg0, uint8_t *datain);
135void MifareUReadCard(uint8_t arg0, uint16_t arg1, uint8_t arg2, uint8_t *datain);
136void MifareReadSector(uint8_t arg0, uint8_t arg1, uint8_t arg2, uint8_t *datain);
137void MifareWriteBlock(uint8_t arg0, uint8_t arg1, uint8_t arg2, uint8_t *datain);
138//void MifareUWriteBlockCompat(uint8_t arg0,uint8_t *datain);
139void MifareUWriteBlock(uint8_t arg0, uint8_t arg1, uint8_t *datain);
140void MifareNested(uint32_t arg0, uint32_t arg1, uint32_t arg2, uint8_t *datain);
141void MifareAcquireEncryptedNonces(uint32_t arg0, uint32_t arg1, uint32_t flags, uint8_t *datain);
142void MifareChkKeys(uint16_t arg0, uint8_t arg1, uint8_t arg2, uint8_t *datain);
143void Mifare1ksim(uint8_t arg0, uint8_t arg1, uint8_t arg2, uint8_t *datain);
144void MifareSetDbgLvl(uint32_t arg0, uint32_t arg1, uint32_t arg2, uint8_t *datain);
145void MifareEMemClr(uint32_t arg0, uint32_t arg1, uint32_t arg2, uint8_t *datain);
146void MifareEMemSet(uint32_t arg0, uint32_t arg1, uint32_t arg2, uint8_t *datain);
147void MifareEMemGet(uint32_t arg0, uint32_t arg1, uint32_t arg2, uint8_t *datain);
148void MifareECardLoad(uint32_t arg0, uint32_t arg1, uint32_t arg2, uint8_t *datain);
149void MifareCSetBlock(uint32_t arg0, uint32_t arg1, uint8_t *datain); // Work with "magic Chinese" card
150void MifareCGetBlock(uint32_t arg0, uint32_t arg1, uint8_t *datain);
151void MifareCIdent(); // is "magic chinese" card?
152void MifareUSetPwd(uint8_t arg0, uint8_t *datain);
153void OnSuccessMagic();
154void OnErrorMagic(uint8_t reason);
155
156int32_t dist_nt(uint32_t nt1, uint32_t nt2);
157void ReaderMifare(bool first_try, uint8_t block, uint8_t keytype );
158void RAMFUNC SniffMifare(uint8_t param);
159
160//desfire
161void Mifare_DES_Auth1(uint8_t arg0,uint8_t *datain);
162void Mifare_DES_Auth2(uint32_t arg0, uint8_t *datain);
163
164// mifaredesfire.h
165bool InitDesfireCard();
166void MifareSendCommand(uint8_t arg0,uint8_t arg1, uint8_t *datain);
167void MifareDesfireGetInformation();
168void MifareDES_Auth1(uint8_t arg0,uint8_t arg1,uint8_t arg2, uint8_t *datain);
169void ReaderMifareDES(uint32_t param, uint32_t param2, uint8_t * datain);
170int DesfireAPDU(uint8_t *cmd, size_t cmd_len, uint8_t *dataout);
171size_t CreateAPDU( uint8_t *datain, size_t len, uint8_t *dataout);
172void OnSuccess();
173void OnError(uint8_t reason);
174
175// desfire_crypto.h
176void *mifare_cryto_preprocess_data (desfiretag_t tag, void *data, size_t *nbytes, size_t offset, int communication_settings);
177void *mifare_cryto_postprocess_data (desfiretag_t tag, void *data, size_t *nbytes, int communication_settings);
178void mifare_cypher_single_block (desfirekey_t key, uint8_t *data, uint8_t *ivect, MifareCryptoDirection direction, MifareCryptoOperation operation, size_t block_size);
179void mifare_cypher_blocks_chained (desfiretag_t tag, desfirekey_t key, uint8_t *ivect, uint8_t *data, size_t data_size, MifareCryptoDirection direction, MifareCryptoOperation operation);
180size_t key_block_size (const desfirekey_t key);
181size_t padded_data_length (const size_t nbytes, const size_t block_size);
182size_t maced_data_length (const desfirekey_t key, const size_t nbytes);
183size_t enciphered_data_length (const desfiretag_t tag, const size_t nbytes, int communication_settings);
184void cmac_generate_subkeys (desfirekey_t key);
185void cmac (const desfirekey_t key, uint8_t *ivect, const uint8_t *data, size_t len, uint8_t *cmac);
186
187// iso15693.h
188void RecordRawAdcSamplesIso15693(void);
189void AcquireRawAdcSamplesIso15693(void);
190void ReaderIso15693(uint32_t parameter); // Simulate an ISO15693 reader - greg
191void SimTagIso15693(uint32_t parameter, uint8_t *uid); // simulate an ISO15693 tag - greg
192void BruteforceIso15693Afi(uint32_t speed); // find an AFI of a tag - atrox
193void DirectTag15693Command(uint32_t datalen,uint32_t speed, uint32_t recv, uint8_t data[]); // send arbitrary commands from CLI - atrox
194void SetDebugIso15693(uint32_t flag);
195
196// iclass.h
197void RAMFUNC SnoopIClass(void);
198void SimulateIClass(uint32_t arg0, uint32_t arg1, uint32_t arg2, uint8_t *datain);
199void ReaderIClass(uint8_t arg0);
200void ReaderIClass_Replay(uint8_t arg0,uint8_t *MAC);
201void IClass_iso14443A_GetPublic(uint8_t arg0);
202void iClass_Authentication(uint8_t *MAC);
203void iClass_WriteBlock(uint8_t blockNo, uint8_t *data);
204void iClass_ReadBlk(uint8_t blockNo);
205bool iClass_ReadBlock(uint8_t blockNo, uint8_t *readdata);
206void iClass_Dump(uint8_t blockno, uint8_t numblks);
207void iClass_Clone(uint8_t startblock, uint8_t endblock, uint8_t *data);
208void iClass_ReadCheck(uint8_t blockNo, uint8_t keyType);
209
210// hitag2.h
211void SnoopHitag(uint32_t type);
212void SimulateHitagTag(bool tag_mem_supplied, byte_t* data);
213void ReaderHitag(hitag_function htf, hitag_data* htd);
214
215//hitagS.h
216void SimulateHitagSTag(bool tag_mem_supplied, byte_t* data);
217void ReadHitagS(hitag_function htf, hitag_data* htd);
218void WritePageHitagS(hitag_function htf, hitag_data* htd,int page);
219void check_challenges(bool file_given, byte_t* data);
220
221// cmd.h
222bool cmd_receive(UsbCommand* cmd);
223bool cmd_send(uint32_t cmd, uint32_t arg0, uint32_t arg1, uint32_t arg2, void* data, size_t len);
224
225// util.h
226void HfSnoop(int , int);
227
228//EMV functions
229// emvcmd.h
230void EMVTransaction(void);
231void EMVgetUDOL(void);
232void EMVloadvalue(uint32_t tag, uint8_t* datain);
233void EMVdumpcard(void);
234//void EMVSelect(uint8_t arg0, uint8_t arg1, uint8_t arg2, uint8_t *data);
235void EMVFuzz_RATS(uint8_t ratslen, uint8_t* RATS);
236void EMVReadRecord(uint8_t arg0, uint8_t arg1,emvcard* inputcard);
237void EMVSelectPPSE();
238void EMVSelectAID(uint8_t *AID, uint8_t AIDlen, emvcard* inputcard);
239void EMVTransaction();
240void EMVClone(uint8_t maxsfi, uint8_t maxrecord);
241void EMVSim();
242void EMVTest();
243void SimulateEMVcard();
244
245#ifdef __cplusplus
246}
247#endif
248
249#endif
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