1 /*
2 * GPL HEADER START
3 *
4 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License version 2 only,
8 * as published by the Free Software Foundation.
9 *
10 * This program is distributed in the hope that it will be useful, but
11 * WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
13 * General Public License version 2 for more details (a copy is included
14 * in the LICENSE file that accompanied this code).
15 *
16 * You should have received a copy of the GNU General Public License
17 * version 2 along with this program; If not, see
18 * http://www.sun.com/software/products/lustre/docs/GPLv2.pdf
19 *
20 * Please contact Sun Microsystems, Inc., 4150 Network Circle, Santa Clara,
21 * CA 95054 USA or visit www.sun.com if you need additional information or
22 * have any questions.
23 *
24 * GPL HEADER END
25 */
26 /*
27 * Copyright (c) 2008, 2010, Oracle and/or its affiliates. All rights reserved.
28 * Use is subject to license terms.
29 *
30 * Copyright (c) 2012, Intel Corporation.
31 */
32 /*
33 * This file is part of Lustre, http://www.lustre.org/
34 * Lustre is a trademark of Sun Microsystems, Inc.
35 *
36 * String manipulation functions.
37 *
38 * libcfs/libcfs/libcfs_string.c
39 *
40 * Author: Nathan Rutman <nathan.rutman@sun.com>
41 */
42
43 #include "../../include/linux/libcfs/libcfs.h"
44
45 /* Convert a text string to a bitmask */
cfs_str2mask(const char * str,const char * (* bit2str)(int bit),int * oldmask,int minmask,int allmask)46 int cfs_str2mask(const char *str, const char *(*bit2str)(int bit),
47 int *oldmask, int minmask, int allmask)
48 {
49 const char *debugstr;
50 char op = '\0';
51 int newmask = minmask, i, len, found = 0;
52
53 /* <str> must be a list of tokens separated by whitespace
54 * and optionally an operator ('+' or '-'). If an operator
55 * appears first in <str>, '*oldmask' is used as the starting point
56 * (relative), otherwise minmask is used (absolute). An operator
57 * applies to all following tokens up to the next operator. */
58 while (*str != '\0') {
59 while (isspace(*str))
60 str++;
61 if (*str == '\0')
62 break;
63 if (*str == '+' || *str == '-') {
64 op = *str++;
65 if (!found)
66 /* only if first token is relative */
67 newmask = *oldmask;
68 while (isspace(*str))
69 str++;
70 if (*str == '\0') /* trailing op */
71 return -EINVAL;
72 }
73
74 /* find token length */
75 len = 0;
76 while (str[len] != '\0' && !isspace(str[len]) &&
77 str[len] != '+' && str[len] != '-')
78 len++;
79
80 /* match token */
81 found = 0;
82 for (i = 0; i < 32; i++) {
83 debugstr = bit2str(i);
84 if (debugstr != NULL &&
85 strlen(debugstr) == len &&
86 strncasecmp(str, debugstr, len) == 0) {
87 if (op == '-')
88 newmask &= ~(1 << i);
89 else
90 newmask |= (1 << i);
91 found = 1;
92 break;
93 }
94 }
95 if (!found && len == 3 &&
96 (strncasecmp(str, "ALL", len) == 0)) {
97 if (op == '-')
98 newmask = minmask;
99 else
100 newmask = allmask;
101 found = 1;
102 }
103 if (!found) {
104 CWARN("unknown mask '%.*s'.\n"
105 "mask usage: [+|-]<all|type> ...\n", len, str);
106 return -EINVAL;
107 }
108 str += len;
109 }
110
111 *oldmask = newmask;
112 return 0;
113 }
114
115 /* get the first string out of @str */
cfs_firststr(char * str,size_t size)116 char *cfs_firststr(char *str, size_t size)
117 {
118 size_t i = 0;
119 char *end;
120
121 /* trim leading spaces */
122 while (i < size && *str && isspace(*str)) {
123 ++i;
124 ++str;
125 }
126
127 /* string with all spaces */
128 if (*str == '\0')
129 goto out;
130
131 end = str;
132 while (i < size && *end != '\0' && !isspace(*end)) {
133 ++i;
134 ++end;
135 }
136
137 *end = '\0';
138 out:
139 return str;
140 }
141 EXPORT_SYMBOL(cfs_firststr);
142
143 char *
cfs_trimwhite(char * str)144 cfs_trimwhite(char *str)
145 {
146 char *end;
147
148 while (isspace(*str))
149 str++;
150
151 end = str + strlen(str);
152 while (end > str) {
153 if (!isspace(end[-1]))
154 break;
155 end--;
156 }
157
158 *end = 0;
159 return str;
160 }
161 EXPORT_SYMBOL(cfs_trimwhite);
162
163 /**
164 * Extracts tokens from strings.
165 *
166 * Looks for \a delim in string \a next, sets \a res to point to
167 * substring before the delimiter, sets \a next right after the found
168 * delimiter.
169 *
170 * \retval 1 if \a res points to a string of non-whitespace characters
171 * \retval 0 otherwise
172 */
173 int
cfs_gettok(struct cfs_lstr * next,char delim,struct cfs_lstr * res)174 cfs_gettok(struct cfs_lstr *next, char delim, struct cfs_lstr *res)
175 {
176 char *end;
177
178 if (next->ls_str == NULL)
179 return 0;
180
181 /* skip leading white spaces */
182 while (next->ls_len) {
183 if (!isspace(*next->ls_str))
184 break;
185 next->ls_str++;
186 next->ls_len--;
187 }
188
189 if (next->ls_len == 0) /* whitespaces only */
190 return 0;
191
192 if (*next->ls_str == delim) {
193 /* first non-writespace is the delimiter */
194 return 0;
195 }
196
197 res->ls_str = next->ls_str;
198 end = memchr(next->ls_str, delim, next->ls_len);
199 if (end == NULL) {
200 /* there is no the delimeter in the string */
201 end = next->ls_str + next->ls_len;
202 next->ls_str = NULL;
203 } else {
204 next->ls_str = end + 1;
205 next->ls_len -= (end - res->ls_str + 1);
206 }
207
208 /* skip ending whitespaces */
209 while (--end != res->ls_str) {
210 if (!isspace(*end))
211 break;
212 }
213
214 res->ls_len = end - res->ls_str + 1;
215 return 1;
216 }
217
218 /**
219 * Converts string to integer.
220 *
221 * Accepts decimal and hexadecimal number recordings.
222 *
223 * \retval 1 if first \a nob chars of \a str convert to decimal or
224 * hexadecimal integer in the range [\a min, \a max]
225 * \retval 0 otherwise
226 */
227 int
cfs_str2num_check(char * str,int nob,unsigned * num,unsigned min,unsigned max)228 cfs_str2num_check(char *str, int nob, unsigned *num,
229 unsigned min, unsigned max)
230 {
231 char *endp;
232
233 str = cfs_trimwhite(str);
234 *num = strtoul(str, &endp, 0);
235 if (endp == str)
236 return 0;
237
238 for (; endp < str + nob; endp++) {
239 if (!isspace(*endp))
240 return 0;
241 }
242
243 return (*num >= min && *num <= max);
244 }
245
246 /**
247 * Parses \<range_expr\> token of the syntax. If \a bracketed is false,
248 * \a src should only have a single token which can be \<number\> or \*
249 *
250 * \retval pointer to allocated range_expr and initialized
251 * range_expr::re_lo, range_expr::re_hi and range_expr:re_stride if \a
252 `* src parses to
253 * \<number\> |
254 * \<number\> '-' \<number\> |
255 * \<number\> '-' \<number\> '/' \<number\>
256 * \retval 0 will be returned if it can be parsed, otherwise -EINVAL or
257 * -ENOMEM will be returned.
258 */
259 static int
cfs_range_expr_parse(struct cfs_lstr * src,unsigned min,unsigned max,int bracketed,struct cfs_range_expr ** expr)260 cfs_range_expr_parse(struct cfs_lstr *src, unsigned min, unsigned max,
261 int bracketed, struct cfs_range_expr **expr)
262 {
263 struct cfs_range_expr *re;
264 struct cfs_lstr tok;
265
266 LIBCFS_ALLOC(re, sizeof(*re));
267 if (re == NULL)
268 return -ENOMEM;
269
270 if (src->ls_len == 1 && src->ls_str[0] == '*') {
271 re->re_lo = min;
272 re->re_hi = max;
273 re->re_stride = 1;
274 goto out;
275 }
276
277 if (cfs_str2num_check(src->ls_str, src->ls_len,
278 &re->re_lo, min, max)) {
279 /* <number> is parsed */
280 re->re_hi = re->re_lo;
281 re->re_stride = 1;
282 goto out;
283 }
284
285 if (!bracketed || !cfs_gettok(src, '-', &tok))
286 goto failed;
287
288 if (!cfs_str2num_check(tok.ls_str, tok.ls_len,
289 &re->re_lo, min, max))
290 goto failed;
291
292 /* <number> - */
293 if (cfs_str2num_check(src->ls_str, src->ls_len,
294 &re->re_hi, min, max)) {
295 /* <number> - <number> is parsed */
296 re->re_stride = 1;
297 goto out;
298 }
299
300 /* go to check <number> '-' <number> '/' <number> */
301 if (cfs_gettok(src, '/', &tok)) {
302 if (!cfs_str2num_check(tok.ls_str, tok.ls_len,
303 &re->re_hi, min, max))
304 goto failed;
305
306 /* <number> - <number> / ... */
307 if (cfs_str2num_check(src->ls_str, src->ls_len,
308 &re->re_stride, min, max)) {
309 /* <number> - <number> / <number> is parsed */
310 goto out;
311 }
312 }
313
314 out:
315 *expr = re;
316 return 0;
317
318 failed:
319 LIBCFS_FREE(re, sizeof(*re));
320 return -EINVAL;
321 }
322
323 /**
324 * Matches value (\a value) against ranges expression list \a expr_list.
325 *
326 * \retval 1 if \a value matches
327 * \retval 0 otherwise
328 */
329 int
cfs_expr_list_match(__u32 value,struct cfs_expr_list * expr_list)330 cfs_expr_list_match(__u32 value, struct cfs_expr_list *expr_list)
331 {
332 struct cfs_range_expr *expr;
333
334 list_for_each_entry(expr, &expr_list->el_exprs, re_link) {
335 if (value >= expr->re_lo && value <= expr->re_hi &&
336 ((value - expr->re_lo) % expr->re_stride) == 0)
337 return 1;
338 }
339
340 return 0;
341 }
342
343 /**
344 * Convert express list (\a expr_list) to an array of all matched values
345 *
346 * \retval N N is total number of all matched values
347 * \retval 0 if expression list is empty
348 * \retval < 0 for failure
349 */
350 int
cfs_expr_list_values(struct cfs_expr_list * expr_list,int max,__u32 ** valpp)351 cfs_expr_list_values(struct cfs_expr_list *expr_list, int max, __u32 **valpp)
352 {
353 struct cfs_range_expr *expr;
354 __u32 *val;
355 int count = 0;
356 int i;
357
358 list_for_each_entry(expr, &expr_list->el_exprs, re_link) {
359 for (i = expr->re_lo; i <= expr->re_hi; i++) {
360 if (((i - expr->re_lo) % expr->re_stride) == 0)
361 count++;
362 }
363 }
364
365 if (count == 0) /* empty expression list */
366 return 0;
367
368 if (count > max) {
369 CERROR("Number of values %d exceeds max allowed %d\n",
370 max, count);
371 return -EINVAL;
372 }
373
374 LIBCFS_ALLOC(val, sizeof(val[0]) * count);
375 if (val == NULL)
376 return -ENOMEM;
377
378 count = 0;
379 list_for_each_entry(expr, &expr_list->el_exprs, re_link) {
380 for (i = expr->re_lo; i <= expr->re_hi; i++) {
381 if (((i - expr->re_lo) % expr->re_stride) == 0)
382 val[count++] = i;
383 }
384 }
385
386 *valpp = val;
387 return count;
388 }
389 EXPORT_SYMBOL(cfs_expr_list_values);
390
391 /**
392 * Frees cfs_range_expr structures of \a expr_list.
393 *
394 * \retval none
395 */
396 void
cfs_expr_list_free(struct cfs_expr_list * expr_list)397 cfs_expr_list_free(struct cfs_expr_list *expr_list)
398 {
399 while (!list_empty(&expr_list->el_exprs)) {
400 struct cfs_range_expr *expr;
401
402 expr = list_entry(expr_list->el_exprs.next,
403 struct cfs_range_expr, re_link),
404 list_del(&expr->re_link);
405 LIBCFS_FREE(expr, sizeof(*expr));
406 }
407
408 LIBCFS_FREE(expr_list, sizeof(*expr_list));
409 }
410 EXPORT_SYMBOL(cfs_expr_list_free);
411
412 /**
413 * Parses \<cfs_expr_list\> token of the syntax.
414 *
415 * \retval 1 if \a str parses to \<number\> | \<expr_list\>
416 * \retval 0 otherwise
417 */
418 int
cfs_expr_list_parse(char * str,int len,unsigned min,unsigned max,struct cfs_expr_list ** elpp)419 cfs_expr_list_parse(char *str, int len, unsigned min, unsigned max,
420 struct cfs_expr_list **elpp)
421 {
422 struct cfs_expr_list *expr_list;
423 struct cfs_range_expr *expr;
424 struct cfs_lstr src;
425 int rc;
426
427 LIBCFS_ALLOC(expr_list, sizeof(*expr_list));
428 if (expr_list == NULL)
429 return -ENOMEM;
430
431 src.ls_str = str;
432 src.ls_len = len;
433
434 INIT_LIST_HEAD(&expr_list->el_exprs);
435
436 if (src.ls_str[0] == '[' &&
437 src.ls_str[src.ls_len - 1] == ']') {
438 src.ls_str++;
439 src.ls_len -= 2;
440
441 rc = -EINVAL;
442 while (src.ls_str != NULL) {
443 struct cfs_lstr tok;
444
445 if (!cfs_gettok(&src, ',', &tok)) {
446 rc = -EINVAL;
447 break;
448 }
449
450 rc = cfs_range_expr_parse(&tok, min, max, 1, &expr);
451 if (rc != 0)
452 break;
453
454 list_add_tail(&expr->re_link,
455 &expr_list->el_exprs);
456 }
457 } else {
458 rc = cfs_range_expr_parse(&src, min, max, 0, &expr);
459 if (rc == 0) {
460 list_add_tail(&expr->re_link,
461 &expr_list->el_exprs);
462 }
463 }
464
465 if (rc != 0)
466 cfs_expr_list_free(expr_list);
467 else
468 *elpp = expr_list;
469
470 return rc;
471 }
472 EXPORT_SYMBOL(cfs_expr_list_parse);
473
474 /**
475 * Frees cfs_expr_list structures of \a list.
476 *
477 * For each struct cfs_expr_list structure found on \a list it frees
478 * range_expr list attached to it and frees the cfs_expr_list itself.
479 *
480 * \retval none
481 */
482 void
cfs_expr_list_free_list(struct list_head * list)483 cfs_expr_list_free_list(struct list_head *list)
484 {
485 struct cfs_expr_list *el;
486
487 while (!list_empty(list)) {
488 el = list_entry(list->next,
489 struct cfs_expr_list, el_link);
490 list_del(&el->el_link);
491 cfs_expr_list_free(el);
492 }
493 }
494
495 int
cfs_ip_addr_parse(char * str,int len,struct list_head * list)496 cfs_ip_addr_parse(char *str, int len, struct list_head *list)
497 {
498 struct cfs_expr_list *el;
499 struct cfs_lstr src;
500 int rc;
501 int i;
502
503 src.ls_str = str;
504 src.ls_len = len;
505 i = 0;
506
507 while (src.ls_str != NULL) {
508 struct cfs_lstr res;
509
510 if (!cfs_gettok(&src, '.', &res)) {
511 rc = -EINVAL;
512 goto out;
513 }
514
515 rc = cfs_expr_list_parse(res.ls_str, res.ls_len, 0, 255, &el);
516 if (rc != 0)
517 goto out;
518
519 list_add_tail(&el->el_link, list);
520 i++;
521 }
522
523 if (i == 4)
524 return 0;
525
526 rc = -EINVAL;
527 out:
528 cfs_expr_list_free_list(list);
529
530 return rc;
531 }
532 EXPORT_SYMBOL(cfs_ip_addr_parse);
533
534 /**
535 * Matches address (\a addr) against address set encoded in \a list.
536 *
537 * \retval 1 if \a addr matches
538 * \retval 0 otherwise
539 */
540 int
cfs_ip_addr_match(__u32 addr,struct list_head * list)541 cfs_ip_addr_match(__u32 addr, struct list_head *list)
542 {
543 struct cfs_expr_list *el;
544 int i = 0;
545
546 list_for_each_entry_reverse(el, list, el_link) {
547 if (!cfs_expr_list_match(addr & 0xff, el))
548 return 0;
549 addr >>= 8;
550 i++;
551 }
552
553 return i == 4;
554 }
555 EXPORT_SYMBOL(cfs_ip_addr_match);
556
557 void
cfs_ip_addr_free(struct list_head * list)558 cfs_ip_addr_free(struct list_head *list)
559 {
560 cfs_expr_list_free_list(list);
561 }
562 EXPORT_SYMBOL(cfs_ip_addr_free);
563