]>
git.zerfleddert.de Git - proxmark3-svn/blob - client/util.c
242a8a2840fa150c8700443dbbc92daf4d5e10ea
1 //-----------------------------------------------------------------------------
2 // Copyright (C) 2010 iZsh <izsh at fail0verflow.com>
4 // This code is licensed to you under the terms of the GNU GPL, version 2 or,
5 // at your option, any later version. See the LICENSE.txt file for the text of
7 //-----------------------------------------------------------------------------
9 //-----------------------------------------------------------------------------
24 #define MAX_BIN_BREAK_LENGTH (3072+384+1)
28 #include <sys/ioctl.h>
35 static struct termios Otty
, Ntty
;
37 if ( tcgetattr(STDIN_FILENO
, &Otty
) == -1 ) return -1;
40 Ntty
.c_iflag
= 0x0000; // input mode
41 Ntty
.c_oflag
= 0x0000; // output mode
42 Ntty
.c_lflag
&= ~ICANON
; // control mode = raw
43 Ntty
.c_cc
[VMIN
] = 1; // return if at least 1 character is in the queue
44 Ntty
.c_cc
[VTIME
] = 0; // no timeout. Wait forever
46 if (0 == (error
= tcsetattr(STDIN_FILENO
, TCSANOW
, &Ntty
))) { // set new attributes
47 error
+= ioctl(STDIN_FILENO
, FIONREAD
, &cnt
); // get number of characters availabe
48 error
+= tcsetattr(STDIN_FILENO
, TCSANOW
, &Otty
); // reset attributes
51 return ( error
== 0 ? cnt
: -1 );
62 // log files functions
63 void AddLogLine(char *file
, char *extData
, char *c
) {
65 char filename
[FILE_PATH_SIZE
] = {0x00};
69 if (len
> FILE_PATH_SIZE
) len
= FILE_PATH_SIZE
;
70 memcpy(filename
, file
, len
);
72 fLog
= fopen(filename
, "a");
74 printf("Could not append log file %s", filename
);
78 fprintf(fLog
, "%s", extData
);
79 fprintf(fLog
, "%s\n", c
);
83 void AddLogHex(char *fileName
, char *extData
, const uint8_t * data
, const size_t len
){
84 AddLogLine(fileName
, extData
, sprint_hex(data
, len
));
87 void AddLogUint64(char *fileName
, char *extData
, const uint64_t data
) {
89 sprintf(buf
, "%x%x", (unsigned int)((data
& 0xFFFFFFFF00000000) >> 32), (unsigned int)(data
& 0xFFFFFFFF));
90 AddLogLine(fileName
, extData
, buf
);
93 void AddLogCurrentDT(char *fileName
) {
98 curTime
= gmtime(&now
);
100 strftime (buff
, sizeof(buff
), "%Y-%m-%d %H:%M:%S", curTime
);
101 AddLogLine(fileName
, "\nanticollision: ", buff
);
104 void FillFileNameByUID(char *fileName
, uint8_t * uid
, char *ext
, int byteCount
) {
105 char * fnameptr
= fileName
;
106 memset(fileName
, 0x00, 200);
108 for (int j
= 0; j
< byteCount
; j
++, fnameptr
+= 2)
109 sprintf(fnameptr
, "%02x", (unsigned int) uid
[j
]);
110 sprintf(fnameptr
, "%s", ext
);
113 // fill buffer from structure [{uint8_t data, size_t length},...]
114 int FillBuffer(uint8_t *data
, size_t maxDataLength
, size_t *dataLength
, ...) {
117 va_start(valist
, dataLength
);
119 uint8_t *vdata
= NULL
;
122 vdata
= va_arg(valist
, uint8_t *);
126 vlength
= va_arg(valist
, size_t);
127 if (*dataLength
+ vlength
> maxDataLength
) {
132 memcpy(&data
[*dataLength
], vdata
, vlength
);
133 *dataLength
+= vlength
;
142 void hex_to_buffer(const uint8_t *buf
, const uint8_t *hex_data
, const size_t hex_len
, const size_t hex_max_len
,
143 const size_t min_str_len
, const size_t spaces_between
, bool uppercase
) {
145 char *tmp
= (char *)buf
;
147 memset(tmp
, 0x00, hex_max_len
);
149 int maxLen
= ( hex_len
> hex_max_len
) ? hex_max_len
: hex_len
;
151 for (i
= 0; i
< maxLen
; ++i
, tmp
+= 2 + spaces_between
) {
152 sprintf(tmp
, (uppercase
) ? "%02X" : "%02x", (unsigned int) hex_data
[i
]);
154 for (int j
= 0; j
< spaces_between
; j
++)
155 sprintf(tmp
+ 2 + j
, " ");
158 i
*= (2 + spaces_between
);
159 int minStrLen
= min_str_len
> i
? min_str_len
: 0;
160 if (minStrLen
> hex_max_len
)
161 minStrLen
= hex_max_len
;
162 for(; i
< minStrLen
; i
++, tmp
+= 1)
168 // printing and converting functions
170 char *sprint_hex(const uint8_t *data
, const size_t len
) {
171 static char buf
[4097] = {0};
173 hex_to_buffer((uint8_t *)buf
, data
, len
, sizeof(buf
) - 1, 0, 1, false);
178 char *sprint_hex_inrow_ex(const uint8_t *data
, const size_t len
, const size_t min_str_len
) {
179 static char buf
[4097] = {0};
181 hex_to_buffer((uint8_t *)buf
, data
, len
, sizeof(buf
) - 1, min_str_len
, 0, false);
186 char *sprint_hex_inrow(const uint8_t *data
, const size_t len
) {
187 return sprint_hex_inrow_ex(data
, len
, 0);
190 char *sprint_bin_break(const uint8_t *data
, const size_t len
, const uint8_t breaks
) {
191 // make sure we don't go beyond our char array memory
194 max_len
= ( len
> MAX_BIN_BREAK_LENGTH
) ? MAX_BIN_BREAK_LENGTH
: len
;
196 max_len
= ( len
+(len
/breaks
) > MAX_BIN_BREAK_LENGTH
) ? MAX_BIN_BREAK_LENGTH
: len
+(len
/breaks
);
198 static char buf
[MAX_BIN_BREAK_LENGTH
]; // 3072 + end of line characters if broken at 8 bits
200 memset(buf
, 0x00, sizeof(buf
));
204 // loop through the out_index to make sure we don't go too far
205 for (size_t out_index
=0; out_index
< max_len
; out_index
++) {
206 // set character - (should be binary but verify it isn't more than 1 digit)
207 if (data
[in_index
]<10)
208 sprintf(tmp
++, "%u", (unsigned int) data
[in_index
]);
209 // check if a line break is needed and we have room to print it in our array
210 if ( (breaks
> 0) && !((in_index
+1) % breaks
) && (out_index
+1 < max_len
) ) {
211 // increment and print line break
213 sprintf(tmp
++, "%s","\n");
221 char *sprint_bin(const uint8_t *data
, const size_t len
) {
222 return sprint_bin_break(data
, len
, 0);
225 char *sprint_ascii_ex(const uint8_t *data
, const size_t len
, const size_t min_str_len
) {
226 static char buf
[1024];
228 memset(buf
, 0x00, 1024);
229 size_t max_len
= (len
> 1010) ? 1010 : len
;
233 tmp
[i
] = ((c
< 32) || (c
== 127)) ? '.' : c
;
237 int minStrLen
= min_str_len
> i
? min_str_len
: 0;
238 for(; i
< minStrLen
; ++i
)
244 void num_to_bytes(uint64_t n
, size_t len
, uint8_t* dest
)
247 dest
[len
] = (uint8_t) n
;
252 uint64_t bytes_to_num(uint8_t* src
, size_t len
)
257 num
= (num
<< 8) | (*src
);
263 void num_to_bytebits(uint64_t n
, size_t len
, uint8_t *dest
) {
270 //least significant bit first
271 void num_to_bytebitsLSBF(uint64_t n
, size_t len
, uint8_t *dest
) {
272 for(int i
= 0 ; i
< len
; ++i
) {
278 // Swap bit order on a uint32_t value. Can be limited by nrbits just use say 8bits reversal
279 // And clears the rest of the bits.
280 uint32_t SwapBits(uint32_t value
, int nrbits
) {
281 uint32_t newvalue
= 0;
282 for(int i
= 0; i
< nrbits
; i
++) {
283 newvalue
^= ((value
>> i
) & 1) << (nrbits
- 1 - i
);
288 // aa,bb,cc,dd,ee,ff,gg,hh, ii,jj,kk,ll,mm,nn,oo,pp
290 // hh,gg,ff,ee,dd,cc,bb,aa, pp,oo,nn,mm,ll,kk,jj,ii
291 // up to 64 bytes or 512 bits
292 uint8_t *SwapEndian64(const uint8_t *src
, const size_t len
, const uint8_t blockSize
){
293 static uint8_t buf
[64];
294 memset(buf
, 0x00, 64);
296 for (uint8_t block
=0; block
< (uint8_t)(len
/blockSize
); block
++){
297 for (size_t i
= 0; i
< blockSize
; i
++){
298 tmp
[i
+(blockSize
*block
)] = src
[(blockSize
-1-i
)+(blockSize
*block
)];
304 //assumes little endian
305 char * printBits(size_t const size
, void const * const ptr
)
307 unsigned char *b
= (unsigned char*) ptr
;
309 static char buf
[1024];
313 for (i
=size
-1;i
>=0;i
--)
317 byte
= b
[i
] & (1<<j
);
319 sprintf(tmp
, "%u", (unsigned int)byte
);
326 char * printBitsPar(const uint8_t *b
, size_t len
) {
327 static char buf1
[512] = {0};
328 static char buf2
[512] = {0};
334 memset(buf
, 0x00, 512);
336 for (int i
= 0; i
< len
; i
++) {
337 buf
[i
] = ((b
[i
/ 8] << (i
% 8)) & 0x80) ? '1':'0';
343 // -------------------------------------------------------------------------
344 // string parameters lib
345 // -------------------------------------------------------------------------
347 // -------------------------------------------------------------------------
349 // bg, en - symbol numbers in param line of beginning and ending parameter
350 // paramnum - param number (from 0)
351 // -------------------------------------------------------------------------
352 int param_getptr(const char *line
, int *bg
, int *en
, int paramnum
)
355 int len
= strlen(line
);
361 while (line
[*bg
] ==' ' || line
[*bg
]=='\t') (*bg
)++;
366 for (i
= 0; i
< paramnum
; i
++) {
367 while (line
[*bg
]!=' ' && line
[*bg
]!='\t' && line
[*bg
] != '\0') (*bg
)++;
368 while (line
[*bg
]==' ' || line
[*bg
]=='\t') (*bg
)++;
370 if (line
[*bg
] == '\0') return 1;
374 while (line
[*en
] != ' ' && line
[*en
] != '\t' && line
[*en
] != '\0') (*en
)++;
382 int param_getlength(const char *line
, int paramnum
)
386 if (param_getptr(line
, &bg
, &en
, paramnum
)) return 0;
391 char param_getchar(const char *line
, int paramnum
) {
392 return param_getchar_indx(line
, 0, paramnum
);
395 char param_getchar_indx(const char *line
, int indx
, int paramnum
) {
398 if (param_getptr(line
, &bg
, &en
, paramnum
)) return 0x00;
403 return line
[bg
+ indx
];
406 uint8_t param_get8(const char *line
, int paramnum
)
408 return param_get8ex(line
, paramnum
, 0, 10);
412 * @brief Reads a decimal integer (actually, 0-254, not 255)
415 * @return -1 if error
417 uint8_t param_getdec(const char *line
, int paramnum
, uint8_t *destination
)
419 uint8_t val
= param_get8ex(line
, paramnum
, 255, 10);
420 if( (int8_t) val
== -1) return 1;
421 (*destination
) = val
;
425 * @brief Checks if param is decimal
430 uint8_t param_isdec(const char *line
, int paramnum
)
433 //TODO, check more thorougly
434 if (!param_getptr(line
, &bg
, &en
, paramnum
)) return 1;
435 // return strtoul(&line[bg], NULL, 10) & 0xff;
440 uint8_t param_get8ex(const char *line
, int paramnum
, int deflt
, int base
)
444 if (!param_getptr(line
, &bg
, &en
, paramnum
))
445 return strtoul(&line
[bg
], NULL
, base
) & 0xff;
450 uint32_t param_get32ex(const char *line
, int paramnum
, int deflt
, int base
)
454 if (!param_getptr(line
, &bg
, &en
, paramnum
))
455 return strtoul(&line
[bg
], NULL
, base
);
460 uint64_t param_get64ex(const char *line
, int paramnum
, int deflt
, int base
)
464 if (!param_getptr(line
, &bg
, &en
, paramnum
))
465 return strtoull(&line
[bg
], NULL
, base
);
470 int param_gethex(const char *line
, int paramnum
, uint8_t * data
, int hexcnt
)
477 if (param_getptr(line
, &bg
, &en
, paramnum
)) return 1;
479 if (en
- bg
+ 1 != hexcnt
)
482 for(i
= 0; i
< hexcnt
; i
+= 2) {
483 if (!(isxdigit((unsigned char)line
[bg
+ i
]) && isxdigit((unsigned char)line
[bg
+ i
+ 1])) ) return 1;
485 sscanf((char[]){line
[bg
+ i
], line
[bg
+ i
+ 1], 0}, "%X", &temp
);
486 data
[i
/ 2] = temp
& 0xff;
491 int param_gethex_ex(const char *line
, int paramnum
, uint8_t * data
, int *hexcnt
)
498 if (param_getptr(line
, &bg
, &en
, paramnum
)) return 1;
500 *hexcnt
= en
- bg
+ 1;
501 if (*hexcnt
% 2) //error if not complete hex bytes
504 for(i
= 0; i
< *hexcnt
; i
+= 2) {
505 if (!(isxdigit((unsigned char)line
[bg
+ i
]) && isxdigit((unsigned char)line
[bg
+ i
+ 1])) ) return 1;
507 sscanf((char[]){line
[bg
+ i
], line
[bg
+ i
+ 1], 0}, "%X", &temp
);
508 data
[i
/ 2] = temp
& 0xff;
514 int param_gethex_to_eol(const char *line
, int paramnum
, uint8_t * data
, int maxdatalen
, int *datalen
) {
519 if (param_getptr(line
, &bg
, &en
, paramnum
)) return 1;
525 if (line
[indx
] == '\t' || line
[indx
] == ' ') {
530 if (isxdigit((unsigned char)line
[indx
])) {
531 buf
[strlen(buf
) + 1] = 0x00;
532 buf
[strlen(buf
)] = line
[indx
];
534 // if we have symbols other than spaces and hex
538 if (*datalen
>= maxdatalen
) {
539 // if we dont have space in buffer and have symbols to translate
543 if (strlen(buf
) >= 2) {
544 sscanf(buf
, "%x", &temp
);
545 data
[*datalen
] = (uint8_t)(temp
& 0xff);
554 //error when not completed hex bytes
560 int param_getstr(const char *line
, int paramnum
, char * str
, size_t buffersize
)
564 if (param_getptr(line
, &bg
, &en
, paramnum
)) {
568 // Prevent out of bounds errors
569 if (en
- bg
+ 1 >= buffersize
) {
570 printf("out of bounds error: want %d bytes have %zd bytes\n", en
- bg
+ 1 + 1, buffersize
);
574 memcpy(str
, line
+ bg
, en
- bg
+ 1);
575 str
[en
- bg
+ 1] = 0;
581 The following methods comes from Rfidler sourcecode.
582 https://github.com/ApertureLabsLtd/RFIDler/blob/master/firmware/Pic32/RFIDler.X/src/
585 // convert hex to sequence of 0/1 bit values
586 // returns number of bits converted
587 int hextobinarray(char *target
, char *source
)
589 int length
, i
, count
= 0;
590 char* start
= source
;
593 length
= strlen(source
);
594 // process 4 bits (1 hex digit) at a time
599 if (x
>= 'a' && x
<= 'f')
601 // convert to numeric value
602 if (x
>= '0' && x
<= '9')
604 else if (x
>= 'A' && x
<= 'F')
607 printf("Discovered unknown character %c %d at idx %tu of %s\n", x
, x
, source
- start
, start
);
611 for(i
= 0 ; i
< 4 ; ++i
, ++count
)
612 *(target
++)= (x
>> (3 - i
)) & 1;
618 // convert binary array of 0x00/0x01 values to hex (safe to do in place as target will always be shorter than source)
619 // return number of bits converted
620 int binarraytohex(char *target
,char *source
, int length
)
630 for(i
= x
= 0 ; i
< 4 ; ++i
)
631 x
+= ( source
[i
] << (3 - i
));
632 sprintf(target
,"%X", (unsigned int)x
);
640 // return parity bit required to match type
641 uint8_t GetParity( uint8_t *bits
, uint8_t type
, int length
)
645 for(x
= 0 ; length
> 0 ; --length
)
646 x
+= bits
[length
- 1];
652 // add HID parity to binary array: EVEN prefix for 1st half of ID, ODD suffix for 2nd half
653 void wiegand_add_parity(uint8_t *target
, uint8_t *source
, uint8_t length
)
655 *(target
++)= GetParity(source
, EVEN
, length
/ 2);
656 memcpy(target
, source
, length
);
658 *(target
)= GetParity(source
+ length
/ 2, ODD
, length
/ 2);
661 // xor two arrays together for len items. The dst array contains the new xored values.
662 void xor(unsigned char *dst
, unsigned char *src
, size_t len
) {
663 for( ; len
> 0; len
--,dst
++,src
++)
667 // RotateLeft - Ultralight, Desfire, works on byte level
668 // 00-01-02 >> 01-02-00
669 void rol(uint8_t *data
, const size_t len
){
670 uint8_t first
= data
[0];
671 for (size_t i
= 0; i
< len
-1; i
++) {
678 // Replace unprintable characters with a dot in char buffer
679 void clean_ascii(unsigned char *buf
, size_t len
) {
680 for (size_t i
= 0; i
< len
; i
++) {
681 if (!isprint(buf
[i
]))
686 // replace \r \n to \0
687 void strcleanrn(char *buf
, size_t len
) {
688 strcreplace(buf
, len
, '\n', '\0');
689 strcreplace(buf
, len
, '\r', '\0');
692 // replace char in buffer
693 void strcreplace(char *buf
, size_t len
, char from
, char to
) {
694 for (size_t i
= 0; i
< len
; i
++) {
700 char *strmcopy(char *buf
) {
702 if ((str
= (char*) malloc(strlen(buf
) + 1)) != NULL
) {
703 memset(str
, 0, strlen(buf
) + 1);
710 // determine number of logical CPU cores (use for multithreaded functions)
711 extern int num_CPUs(void)
714 #include <sysinfoapi.h>
716 GetSystemInfo(&sysinfo
);
717 return sysinfo
.dwNumberOfProcessors
;
718 #elif defined(__linux__) || defined(__APPLE__)
720 return sysconf(_SC_NPROCESSORS_ONLN
);