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999 palkovsky 1
/*
2071 jermar 2
 * Copyright (c) 2005 Martin Decky
3730 svoboda 3
 * Copyright (c) 2008 Jiri Svoboda
999 palkovsky 4
 * All rights reserved.
5
 *
6
 * Redistribution and use in source and binary forms, with or without
7
 * modification, are permitted provided that the following conditions
8
 * are met:
9
 *
10
 * - Redistributions of source code must retain the above copyright
11
 *   notice, this list of conditions and the following disclaimer.
12
 * - Redistributions in binary form must reproduce the above copyright
13
 *   notice, this list of conditions and the following disclaimer in the
14
 *   documentation and/or other materials provided with the distribution.
15
 * - The name of the author may not be used to endorse or promote products
16
 *   derived from this software without specific prior written permission.
17
 *
18
 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19
 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20
 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21
 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22
 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23
 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24
 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25
 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26
 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27
 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28
 */
29
 
1719 decky 30
/** @addtogroup libc
1653 cejka 31
 * @{
32
 */
33
/** @file
34
 */
35
 
999 palkovsky 36
#include <string.h>
3731 svoboda 37
#include <stdlib.h>
38
#include <limits.h>
1314 cejka 39
#include <ctype.h>
3238 jermar 40
#include <malloc.h>
4226 svoboda 41
#include <errno.h>
4234 svoboda 42
#include <align.h>
4266 svoboda 43
#include <mem.h>
4226 svoboda 44
#include <string.h>
999 palkovsky 45
 
4226 svoboda 46
/** Byte mask consisting of lowest @n bits (out of 8) */
47
#define LO_MASK_8(n)  ((uint8_t) ((1 << (n)) - 1))
48
 
49
/** Byte mask consisting of lowest @n bits (out of 32) */
50
#define LO_MASK_32(n)  ((uint32_t) ((1 << (n)) - 1))
51
 
52
/** Byte mask consisting of highest @n bits (out of 8) */
53
#define HI_MASK_8(n)  (~LO_MASK_8(8 - (n)))
54
 
55
/** Number of data bits in a UTF-8 continuation byte */
56
#define CONT_BITS  6
57
 
58
/** Decode a single character from a string.
59
 *
60
 * Decode a single character from a string of size @a size. Decoding starts
61
 * at @a offset and this offset is moved to the beginning of the next
62
 * character. In case of decoding error, offset generally advances at least
63
 * by one. However, offset is never moved beyond size.
64
 *
65
 * @param str    String (not necessarily NULL-terminated).
66
 * @param offset Byte offset in string where to start decoding.
67
 * @param size   Size of the string (in bytes).
68
 *
69
 * @return Value of decoded character, U_SPECIAL on decoding error or
70
 *         NULL if attempt to decode beyond @a size.
71
 *
72
 */
73
wchar_t str_decode(const char *str, size_t *offset, size_t size)
74
{
75
	if (*offset + 1 > size)
76
		return 0;
77
 
78
	/* First byte read from string */
79
	uint8_t b0 = (uint8_t) str[(*offset)++];
80
 
81
	/* Determine code length */
82
 
83
	unsigned int b0_bits;  /* Data bits in first byte */
84
	unsigned int cbytes;   /* Number of continuation bytes */
85
 
86
	if ((b0 & 0x80) == 0) {
87
		/* 0xxxxxxx (Plain ASCII) */
88
		b0_bits = 7;
89
		cbytes = 0;
90
	} else if ((b0 & 0xe0) == 0xc0) {
91
		/* 110xxxxx 10xxxxxx */
92
		b0_bits = 5;
93
		cbytes = 1;
94
	} else if ((b0 & 0xf0) == 0xe0) {
95
		/* 1110xxxx 10xxxxxx 10xxxxxx */
96
		b0_bits = 4;
97
		cbytes = 2;
98
	} else if ((b0 & 0xf8) == 0xf0) {
99
		/* 11110xxx 10xxxxxx 10xxxxxx 10xxxxxx */
100
		b0_bits = 3;
101
		cbytes = 3;
102
	} else {
103
		/* 10xxxxxx -- unexpected continuation byte */
104
		return U_SPECIAL;
105
	}
106
 
107
	if (*offset + cbytes > size)
108
		return U_SPECIAL;
109
 
110
	wchar_t ch = b0 & LO_MASK_8(b0_bits);
111
 
112
	/* Decode continuation bytes */
113
	while (cbytes > 0) {
114
		uint8_t b = (uint8_t) str[(*offset)++];
115
 
116
		/* Must be 10xxxxxx */
117
		if ((b & 0xc0) != 0x80)
118
			return U_SPECIAL;
119
 
120
		/* Shift data bits to ch */
121
		ch = (ch << CONT_BITS) | (wchar_t) (b & LO_MASK_8(CONT_BITS));
122
		cbytes--;
123
	}
124
 
125
	return ch;
126
}
127
 
128
/** Encode a single character to string representation.
129
 *
130
 * Encode a single character to string representation (i.e. UTF-8) and store
131
 * it into a buffer at @a offset. Encoding starts at @a offset and this offset
132
 * is moved to the position where the next character can be written to.
133
 *
134
 * @param ch     Input character.
135
 * @param str    Output buffer.
136
 * @param offset Byte offset where to start writing.
137
 * @param size   Size of the output buffer (in bytes).
138
 *
139
 * @return EOK if the character was encoded successfully, EOVERFLOW if there
140
 *	   was not enough space in the output buffer or EINVAL if the character
141
 *	   code was invalid.
142
 */
143
int chr_encode(const wchar_t ch, char *str, size_t *offset, size_t size)
144
{
145
	if (*offset >= size)
146
		return EOVERFLOW;
147
 
148
	if (!chr_check(ch))
149
		return EINVAL;
150
 
151
	/* Unsigned version of ch (bit operations should only be done
152
	   on unsigned types). */
153
	uint32_t cc = (uint32_t) ch;
154
 
155
	/* Determine how many continuation bytes are needed */
156
 
157
	unsigned int b0_bits;  /* Data bits in first byte */
158
	unsigned int cbytes;   /* Number of continuation bytes */
159
 
160
	if ((cc & ~LO_MASK_32(7)) == 0) {
161
		b0_bits = 7;
162
		cbytes = 0;
163
	} else if ((cc & ~LO_MASK_32(11)) == 0) {
164
		b0_bits = 5;
165
		cbytes = 1;
166
	} else if ((cc & ~LO_MASK_32(16)) == 0) {
167
		b0_bits = 4;
168
		cbytes = 2;
169
	} else if ((cc & ~LO_MASK_32(21)) == 0) {
170
		b0_bits = 3;
171
		cbytes = 3;
172
	} else {
173
		/* Codes longer than 21 bits are not supported */
174
		return EINVAL;
175
	}
176
 
177
	/* Check for available space in buffer */
178
	if (*offset + cbytes >= size)
179
		return EOVERFLOW;
180
 
181
	/* Encode continuation bytes */
182
	unsigned int i;
183
	for (i = cbytes; i > 0; i--) {
184
		str[*offset + i] = 0x80 | (cc & LO_MASK_32(CONT_BITS));
185
		cc = cc >> CONT_BITS;
186
	}
187
 
188
	/* Encode first byte */
189
	str[*offset] = (cc & LO_MASK_32(b0_bits)) | HI_MASK_8(8 - b0_bits - 1);
190
 
191
	/* Advance offset */
192
	*offset += cbytes + 1;
193
 
194
	return EOK;
195
}
196
 
4234 svoboda 197
/** Get size of string.
198
 *
199
 * Get the number of bytes which are used by the string @a str (excluding the
200
 * NULL-terminator).
201
 *
202
 * @param str String to consider.
203
 *
204
 * @return Number of bytes used by the string
205
 *
206
 */
207
size_t str_size(const char *str)
208
{
209
	size_t size = 0;
210
 
211
	while (*str++ != 0)
212
		size++;
213
 
214
	return size;
215
}
216
 
217
/** Get size of wide string.
218
 *
219
 * Get the number of bytes which are used by the wide string @a str (excluding the
220
 * NULL-terminator).
221
 *
222
 * @param str Wide string to consider.
223
 *
224
 * @return Number of bytes used by the wide string
225
 *
226
 */
227
size_t wstr_size(const wchar_t *str)
228
{
229
	return (wstr_length(str) * sizeof(wchar_t));
230
}
231
 
232
/** Get size of string with length limit.
233
 *
234
 * Get the number of bytes which are used by up to @a max_len first
235
 * characters in the string @a str. If @a max_len is greater than
236
 * the length of @a str, the entire string is measured (excluding the
237
 * NULL-terminator).
238
 *
239
 * @param str     String to consider.
240
 * @param max_len Maximum number of characters to measure.
241
 *
242
 * @return Number of bytes used by the characters.
243
 *
244
 */
245
size_t str_lsize(const char *str, count_t max_len)
246
{
247
	count_t len = 0;
248
	size_t offset = 0;
249
 
250
	while (len < max_len) {
251
		if (str_decode(str, &offset, STR_NO_LIMIT) == 0)
252
			break;
253
 
254
		len++;
255
	}
256
 
257
	return offset;
258
}
259
 
260
/** Get size of wide string with length limit.
261
 *
262
 * Get the number of bytes which are used by up to @a max_len first
263
 * wide characters in the wide string @a str. If @a max_len is greater than
264
 * the length of @a str, the entire wide string is measured (excluding the
265
 * NULL-terminator).
266
 *
267
 * @param str     Wide string to consider.
268
 * @param max_len Maximum number of wide characters to measure.
269
 *
270
 * @return Number of bytes used by the wide characters.
271
 *
272
 */
273
size_t wstr_lsize(const wchar_t *str, count_t max_len)
274
{
275
	return (wstr_nlength(str, max_len * sizeof(wchar_t)) * sizeof(wchar_t));
276
}
277
 
278
/** Get number of characters in a string.
279
 *
280
 * @param str NULL-terminated string.
281
 *
282
 * @return Number of characters in string.
283
 *
284
 */
285
count_t str_length(const char *str)
286
{
287
	count_t len = 0;
288
	size_t offset = 0;
289
 
290
	while (str_decode(str, &offset, STR_NO_LIMIT) != 0)
291
		len++;
292
 
293
	return len;
294
}
295
 
296
/** Get number of characters in a wide string.
297
 *
298
 * @param str NULL-terminated wide string.
299
 *
300
 * @return Number of characters in @a str.
301
 *
302
 */
303
count_t wstr_length(const wchar_t *wstr)
304
{
305
	count_t len = 0;
306
 
307
	while (*wstr++ != 0)
308
		len++;
309
 
310
	return len;
311
}
312
 
313
/** Get number of characters in a string with size limit.
314
 *
315
 * @param str  NULL-terminated string.
316
 * @param size Maximum number of bytes to consider.
317
 *
318
 * @return Number of characters in string.
319
 *
320
 */
321
count_t str_nlength(const char *str, size_t size)
322
{
323
	count_t len = 0;
324
	size_t offset = 0;
325
 
326
	while (str_decode(str, &offset, size) != 0)
327
		len++;
328
 
329
	return len;
330
}
331
 
332
/** Get number of characters in a string with size limit.
333
 *
334
 * @param str  NULL-terminated string.
335
 * @param size Maximum number of bytes to consider.
336
 *
337
 * @return Number of characters in string.
338
 *
339
 */
340
count_t wstr_nlength(const wchar_t *str, size_t size)
341
{
342
	count_t len = 0;
343
	count_t limit = ALIGN_DOWN(size, sizeof(wchar_t));
344
	count_t offset = 0;
345
 
346
	while ((offset < limit) && (*str++ != 0)) {
347
		len++;
348
		offset += sizeof(wchar_t);
349
	}
350
 
351
	return len;
352
}
353
 
354
/** Check whether character is plain ASCII.
355
 *
356
 * @return True if character is plain ASCII.
357
 *
358
 */
359
bool ascii_check(wchar_t ch)
360
{
361
	if ((ch >= 0) && (ch <= 127))
362
		return true;
363
 
364
	return false;
365
}
366
 
4226 svoboda 367
/** Check whether character is valid
368
 *
369
 * @return True if character is a valid Unicode code point.
370
 *
371
 */
4234 svoboda 372
bool chr_check(wchar_t ch)
4226 svoboda 373
{
374
	if ((ch >= 0) && (ch <= 1114111))
375
		return true;
376
 
377
	return false;
378
}
379
 
4234 svoboda 380
/** Compare two NULL terminated strings.
381
 *
382
 * Do a char-by-char comparison of two NULL-terminated strings.
383
 * The strings are considered equal iff they consist of the same
384
 * characters on the minimum of their lengths.
385
 *
386
 * @param s1 First string to compare.
387
 * @param s2 Second string to compare.
388
 *
389
 * @return 0 if the strings are equal, -1 if first is smaller,
390
 *         1 if second smaller.
391
 *
392
 */
393
int str_cmp(const char *s1, const char *s2)
394
{
395
	wchar_t c1 = 0;
396
	wchar_t c2 = 0;
397
 
398
	size_t off1 = 0;
399
	size_t off2 = 0;
400
 
401
	while (true) {
402
		c1 = str_decode(s1, &off1, STR_NO_LIMIT);
403
		c2 = str_decode(s2, &off2, STR_NO_LIMIT);
404
 
405
		if (c1 < c2)
406
			return -1;
407
 
408
		if (c1 > c2)
409
			return 1;
410
 
411
		if (c1 == 0 || c2 == 0)
412
			break;		
413
	}
414
 
415
	return 0;
416
}
417
 
418
/** Compare two NULL terminated strings with length limit.
419
 *
420
 * Do a char-by-char comparison of two NULL-terminated strings.
421
 * The strings are considered equal iff they consist of the same
422
 * characters on the minimum of their lengths and the length limit.
423
 *
424
 * @param s1      First string to compare.
425
 * @param s2      Second string to compare.
426
 * @param max_len Maximum number of characters to consider.
427
 *
428
 * @return 0 if the strings are equal, -1 if first is smaller,
429
 *         1 if second smaller.
430
 *
431
 */
432
int str_lcmp(const char *s1, const char *s2, count_t max_len)
433
{
434
	wchar_t c1 = 0;
435
	wchar_t c2 = 0;
436
 
437
	size_t off1 = 0;
438
	size_t off2 = 0;
439
 
440
	count_t len = 0;
441
 
442
	while (true) {
443
		if (len >= max_len)
444
			break;
445
 
446
		c1 = str_decode(s1, &off1, STR_NO_LIMIT);
447
		c2 = str_decode(s2, &off2, STR_NO_LIMIT);
448
 
449
		if (c1 < c2)
450
			return -1;
451
 
452
		if (c1 > c2)
453
			return 1;
454
 
455
		if (c1 == 0 || c2 == 0)
456
			break;
457
 
458
		++len;	
459
	}
460
 
461
	return 0;
462
 
463
}
464
 
4268 svoboda 465
/** Copy string.
4234 svoboda 466
 *
4268 svoboda 467
 * Copy source string @a src to destination buffer @a dest.
468
 * No more than @a size bytes are written. If the size of the output buffer
469
 * is at least one byte, the output string will always be well-formed, i.e.
470
 * null-terminated and containing only complete characters.
4234 svoboda 471
 *
472
 * @param dst   Destination buffer.
473
 * @param count Size of the destination buffer.
4268 svoboda 474
 * @param src   Source string.
4234 svoboda 475
 */
4268 svoboda 476
void str_cpy(char *dest, size_t size, const char *src)
4234 svoboda 477
{
4268 svoboda 478
	wchar_t ch;
479
	size_t src_off;
480
	size_t dest_off;
481
 
482
	/* No space for the NULL-terminator in the buffer. */
4234 svoboda 483
	if (size == 0)
484
		return;
485
 
4268 svoboda 486
	src_off = 0;
487
	dest_off = 0;
488
 
489
	while ((ch = str_decode(src, &src_off, STR_NO_LIMIT)) != 0) {
490
		if (chr_encode(ch, dest, &dest_off, size - 1) != EOK)
491
			break;
492
	}
493
 
494
	dest[dest_off] = '\0';
495
}
496
 
497
/** Copy size-limited substring.
498
 *
499
 * Copy source string @a src to destination buffer @a dest.
500
 * No more than @a size bytes are written. If the size of the output buffer
501
 * is at least one byte, the output string will always be well-formed, i.e.
502
 * null-terminated and containing only complete characters.
503
 *
504
 * No more than @a n bytes are read from the input string, so it does not
505
 * have to be null-terminated.
506
 *
507
 * @param dst   Destination buffer.
508
 * @param count Size of the destination buffer.
509
 * @param src   Source string.
510
 */
511
void str_ncpy(char *dest, size_t size, const char *src, size_t n)
512
{
4234 svoboda 513
	wchar_t ch;
4268 svoboda 514
	size_t src_off;
515
	size_t dest_off;
516
 
517
	/* No space for the null terminator in the buffer. */
518
	if (size == 0)
519
		return;
4234 svoboda 520
 
4268 svoboda 521
	src_off = 0;
522
	dest_off = 0;
523
 
524
	while ((ch = str_decode(src, &src_off, n)) != 0) {
525
		if (chr_encode(ch, dest, &dest_off, size - 1) != EOK)
4234 svoboda 526
			break;
527
	}
4268 svoboda 528
 
529
	dest[dest_off] = '\0';
4234 svoboda 530
}
531
 
532
/** Copy NULL-terminated wide string to string
533
 *
534
 * Copy source wide string @a src to destination buffer @a dst.
535
 * No more than @a size bytes are written. NULL-terminator is always
536
 * written after the last succesfully copied character (i.e. if the
537
 * destination buffer is has at least 1 byte, it will be always
538
 * NULL-terminated).
539
 *
540
 * @param src   Source wide string.
541
 * @param dst   Destination buffer.
542
 * @param count Size of the destination buffer.
543
 *
544
 */
545
void wstr_nstr(char *dst, const wchar_t *src, size_t size)
546
{
547
	/* No space for the NULL-terminator in the buffer */
548
	if (size == 0)
549
		return;
550
 
551
	wchar_t ch;
552
	count_t src_idx = 0;
553
	size_t dst_off = 0;
554
 
555
	while ((ch = src[src_idx++]) != 0) {
556
		if (chr_encode(ch, dst, &dst_off, size) != EOK)
557
			break;
558
	}
559
 
560
	if (dst_off >= size)
561
		dst[size - 1] = 0;
562
	else
563
		dst[dst_off] = 0;
564
}
565
 
566
/** Find first occurence of character in string.
567
 *
568
 * @param str String to search.
569
 * @param ch  Character to look for.
570
 *
571
 * @return Pointer to character in @a str or NULL if not found.
572
 */
573
const char *str_chr(const char *str, wchar_t ch)
574
{
575
	wchar_t acc;
576
	size_t off = 0;
577
 
578
	while ((acc = str_decode(str, &off, STR_NO_LIMIT)) != 0) {
579
		if (acc == ch)
580
			return (str + off);
581
	}
582
 
583
	return NULL;
584
}
585
 
4265 svoboda 586
/** Find last occurence of character in string.
587
 *
588
 * @param str String to search.
589
 * @param ch  Character to look for.
590
 *
591
 * @return Pointer to character in @a str or NULL if not found.
592
 */
593
const char *str_rchr(const char *str, wchar_t ch)
594
{
595
	wchar_t acc;
596
	size_t off = 0;
597
	char *res;
598
 
599
	res = NULL;
600
	while ((acc = str_decode(str, &off, STR_NO_LIMIT)) != 0) {
601
		if (acc == ch)
602
			res = (str + off);
603
	}
604
 
605
	return res;
606
}
607
 
4234 svoboda 608
/** Insert a wide character into a wide string.
609
 *
610
 * Insert a wide character into a wide string at position
611
 * @a pos. The characters after the position are shifted.
612
 *
613
 * @param str     String to insert to.
614
 * @param ch      Character to insert to.
615
 * @param pos     Character index where to insert.
616
 @ @param max_pos Characters in the buffer.
617
 *
618
 * @return True if the insertion was sucessful, false if the position
619
 *         is out of bounds.
620
 *
621
 */
622
bool wstr_linsert(wchar_t *str, wchar_t ch, count_t pos, count_t max_pos)
623
{
624
	count_t len = wstr_length(str);
625
 
626
	if ((pos > len) || (pos + 1 > max_pos))
627
		return false;
628
 
629
	count_t i;
630
	for (i = len; i + 1 > pos; i--)
631
		str[i + 1] = str[i];
632
 
633
	str[pos] = ch;
634
 
635
	return true;
636
}
637
 
638
/** Remove a wide character from a wide string.
639
 *
640
 * Remove a wide character from a wide string at position
641
 * @a pos. The characters after the position are shifted.
642
 *
643
 * @param str String to remove from.
644
 * @param pos Character index to remove.
645
 *
646
 * @return True if the removal was sucessful, false if the position
647
 *         is out of bounds.
648
 *
649
 */
650
bool wstr_remove(wchar_t *str, count_t pos)
651
{
652
	count_t len = wstr_length(str);
653
 
654
	if (pos >= len)
655
		return false;
656
 
657
	count_t i;
658
	for (i = pos + 1; i <= len; i++)
659
		str[i - 1] = str[i];
660
 
661
	return true;
662
}
663
 
2640 cejka 664
int strncmp(const char *a, const char *b, size_t n)
665
{
666
	size_t c = 0;
1319 vana 667
 
2640 cejka 668
	while (c < n && a[c] && b[c] && (!(a[c] - b[c])))
669
		c++;
670
 
671
	return ( c < n ? a[c] - b[c] : 0);
672
 
673
}
674
 
3271 jermar 675
int stricmp(const char *a, const char *b)
676
{
677
	int c = 0;
678
 
679
	while (a[c] && b[c] && (!(tolower(a[c]) - tolower(b[c]))))
680
		c++;
681
 
682
	return (tolower(a[c]) - tolower(b[c]));
683
}
684
 
1314 cejka 685
/** Convert string to a number. 
686
 * Core of strtol and strtoul functions.
3261 jermar 687
 *
688
 * @param nptr		Pointer to string.
689
 * @param endptr	If not NULL, function stores here pointer to the first
690
 * 			invalid character.
691
 * @param base		Zero or number between 2 and 36 inclusive.
692
 * @param sgn		It's set to 1 if minus found.
693
 * @return		Result of conversion.
1314 cejka 694
 */
3261 jermar 695
static unsigned long
696
_strtoul(const char *nptr, char **endptr, int base, char *sgn)
1314 cejka 697
{
698
	unsigned char c;
699
	unsigned long result = 0;
700
	unsigned long a, b;
701
	const char *str = nptr;
702
	const char *tmpptr;
703
 
704
	while (isspace(*str))
705
		str++;
706
 
707
	if (*str == '-') {
708
		*sgn = 1;
709
		++str;
710
	} else if (*str == '+')
711
		++str;
712
 
713
	if (base) {
714
		if ((base == 1) || (base > 36)) {
715
			/* FIXME: set errno to EINVAL */
716
			return 0;
717
		}
3261 jermar 718
		if ((base == 16) && (*str == '0') && ((str[1] == 'x') ||
719
		    (str[1] == 'X'))) {
1314 cejka 720
			str += 2;
721
		}
722
	} else {
723
		base = 10;
724
 
725
		if (*str == '0') {
726
			base = 8;
727
			if ((str[1] == 'X') || (str[1] == 'x'))  {
728
				base = 16;
729
				str += 2;
730
			}
731
		} 
732
	}
733
 
734
	tmpptr = str;
735
 
736
	while (*str) {
737
		c = *str;
3261 jermar 738
		c = (c >= 'a' ? c - 'a' + 10 : (c >= 'A' ? c - 'A' + 10 :
739
		    (c <= '9' ? c - '0' : 0xff)));
1314 cejka 740
		if (c > base) {
741
			break;
742
		}
743
 
744
		a = (result & 0xff) * base + c;
745
		b = (result >> 8) * base + (a >> 8);
746
 
747
		if (b > (ULONG_MAX >> 8)) {
748
			/* overflow */
749
			/* FIXME: errno = ERANGE*/
750
			return ULONG_MAX;
751
		}
752
 
753
		result = (b << 8) + (a & 0xff);
754
		++str;
755
	}
756
 
757
	if (str == tmpptr) {
3261 jermar 758
		/*
759
		 * No number was found => first invalid character is the first
760
		 * character of the string.
761
		 */
1314 cejka 762
		/* FIXME: set errno to EINVAL */
763
		str = nptr;
764
		result = 0;
765
	}
766
 
767
	if (endptr)
1719 decky 768
		*endptr = (char *) str;
1314 cejka 769
 
770
	if (nptr == str) { 
771
		/*FIXME: errno = EINVAL*/
772
		return 0;
773
	}
774
 
775
	return result;
776
}
777
 
778
/** Convert initial part of string to long int according to given base.
3261 jermar 779
 * The number may begin with an arbitrary number of whitespaces followed by
780
 * optional sign (`+' or `-'). If the base is 0 or 16, the prefix `0x' may be
781
 * inserted and the number will be taken as hexadecimal one. If the base is 0
782
 * and the number begin with a zero, number will be taken as octal one (as with
783
 * base 8). Otherwise the base 0 is taken as decimal.
784
 *
785
 * @param nptr		Pointer to string.
786
 * @param endptr	If not NULL, function stores here pointer to the first
787
 * 			invalid character.
788
 * @param base		Zero or number between 2 and 36 inclusive.
789
 * @return		Result of conversion.
1314 cejka 790
 */
791
long int strtol(const char *nptr, char **endptr, int base)
792
{
793
	char sgn = 0;
794
	unsigned long number = 0;
795
 
796
	number = _strtoul(nptr, endptr, base, &sgn);
797
 
798
	if (number > LONG_MAX) {
1719 decky 799
		if ((sgn) && (number == (unsigned long) (LONG_MAX) + 1)) {
1314 cejka 800
			/* FIXME: set 0 to errno */
801
			return number;		
802
		}
803
		/* FIXME: set ERANGE to errno */
1719 decky 804
		return (sgn ? LONG_MIN : LONG_MAX);	
1314 cejka 805
	}
806
 
1719 decky 807
	return (sgn ? -number : number);
1314 cejka 808
}
809
 
810
 
811
/** Convert initial part of string to unsigned long according to given base.
3261 jermar 812
 * The number may begin with an arbitrary number of whitespaces followed by
813
 * optional sign (`+' or `-'). If the base is 0 or 16, the prefix `0x' may be
814
 * inserted and the number will be taken as hexadecimal one. If the base is 0
815
 * and the number begin with a zero, number will be taken as octal one (as with
816
 * base 8). Otherwise the base 0 is taken as decimal.
817
 *
818
 * @param nptr		Pointer to string.
819
 * @param endptr	If not NULL, function stores here pointer to the first
820
 * 			invalid character
821
 * @param base		Zero or number between 2 and 36 inclusive.
822
 * @return		Result of conversion.
1314 cejka 823
 */
824
unsigned long strtoul(const char *nptr, char **endptr, int base)
825
{
826
	char sgn = 0;
827
	unsigned long number = 0;
828
 
829
	number = _strtoul(nptr, endptr, base, &sgn);
830
 
1719 decky 831
	return (sgn ? -number : number);
1314 cejka 832
}
1472 palkovsky 833
 
2754 jermar 834
char *strcat(char *dest, const char *src)
835
{
836
	char *orig = dest;
837
	while (*dest++)
838
		;
839
	--dest;
840
	while ((*dest++ = *src++))
841
		;
842
	return orig;
843
}
844
 
4266 svoboda 845
char *str_dup(const char *src)
3238 jermar 846
{
4266 svoboda 847
	size_t size = str_size(src);
848
	void *dest = malloc(size + 1);
3238 jermar 849
 
4266 svoboda 850
	if (dest == NULL)
3238 jermar 851
		return (char *) NULL;
852
 
4266 svoboda 853
	return (char *) memcpy(dest, src, size + 1);
3238 jermar 854
}
855
 
3730 svoboda 856
char *strtok(char *s, const char *delim)
3427 post 857
{
3730 svoboda 858
	static char *next;
3427 post 859
 
3730 svoboda 860
	return strtok_r(s, delim, &next);
861
}
3427 post 862
 
3730 svoboda 863
char *strtok_r(char *s, const char *delim, char **next)
864
{
865
	char *start, *end;
3427 post 866
 
3730 svoboda 867
	if (s == NULL)
868
		s = *next;
3427 post 869
 
3730 svoboda 870
	/* Skip over leading delimiters. */
4265 svoboda 871
	while (*s && (str_chr(delim, *s) != NULL)) ++s;
3730 svoboda 872
	start = s;
3427 post 873
 
3730 svoboda 874
	/* Skip over token characters. */
4265 svoboda 875
	while (*s && (str_chr(delim, *s) == NULL)) ++s;
3730 svoboda 876
	end = s;
877
	*next = (*s ? s + 1 : s);
878
 
879
	if (start == end) {
880
		return NULL;	/* No more tokens. */
3427 post 881
	}
882
 
3730 svoboda 883
	/* Overwrite delimiter with NULL terminator. */
884
	*end = '\0';
885
	return start;
3427 post 886
}
887
 
1719 decky 888
/** @}
1653 cejka 889
 */