/src/openssl30/crypto/o_str.c
Line | Count | Source (jump to first uncovered line) |
1 | | /* |
2 | | * Copyright 2003-2022 The OpenSSL Project Authors. All Rights Reserved. |
3 | | * |
4 | | * Licensed under the Apache License 2.0 (the "License"). You may not use |
5 | | * this file except in compliance with the License. You can obtain a copy |
6 | | * in the file LICENSE in the source distribution or at |
7 | | * https://www.openssl.org/source/license.html |
8 | | */ |
9 | | |
10 | | #include "e_os.h" |
11 | | #include <string.h> |
12 | | #include <limits.h> |
13 | | #include <openssl/crypto.h> |
14 | | #include "crypto/ctype.h" |
15 | | #include "internal/cryptlib.h" |
16 | | #include "internal/thread_once.h" |
17 | | |
18 | 0 | #define DEFAULT_SEPARATOR ':' |
19 | 36.9M | #define CH_ZERO '\0' |
20 | | |
21 | | char *CRYPTO_strdup(const char *str, const char* file, int line) |
22 | 1.05M | { |
23 | 1.05M | char *ret; |
24 | | |
25 | 1.05M | if (str == NULL) |
26 | 0 | return NULL; |
27 | 1.05M | ret = CRYPTO_malloc(strlen(str) + 1, file, line); |
28 | 1.05M | if (ret != NULL) |
29 | 1.05M | strcpy(ret, str); |
30 | 1.05M | return ret; |
31 | 1.05M | } |
32 | | |
33 | | char *CRYPTO_strndup(const char *str, size_t s, const char* file, int line) |
34 | 2.23M | { |
35 | 2.23M | size_t maxlen; |
36 | 2.23M | char *ret; |
37 | | |
38 | 2.23M | if (str == NULL) |
39 | 0 | return NULL; |
40 | | |
41 | 2.23M | maxlen = OPENSSL_strnlen(str, s); |
42 | | |
43 | 2.23M | ret = CRYPTO_malloc(maxlen + 1, file, line); |
44 | 2.23M | if (ret) { |
45 | 2.23M | memcpy(ret, str, maxlen); |
46 | 2.23M | ret[maxlen] = CH_ZERO; |
47 | 2.23M | } |
48 | 2.23M | return ret; |
49 | 2.23M | } |
50 | | |
51 | | void *CRYPTO_memdup(const void *data, size_t siz, const char* file, int line) |
52 | 55.9k | { |
53 | 55.9k | void *ret; |
54 | | |
55 | 55.9k | if (data == NULL || siz >= INT_MAX) |
56 | 0 | return NULL; |
57 | | |
58 | 55.9k | ret = CRYPTO_malloc(siz, file, line); |
59 | 55.9k | if (ret == NULL) { |
60 | 0 | ERR_raise(ERR_LIB_CRYPTO, ERR_R_MALLOC_FAILURE); |
61 | 0 | return NULL; |
62 | 0 | } |
63 | 55.9k | return memcpy(ret, data, siz); |
64 | 55.9k | } |
65 | | |
66 | | size_t OPENSSL_strnlen(const char *str, size_t maxlen) |
67 | 12.6M | { |
68 | 12.6M | const char *p; |
69 | | |
70 | 36.4M | for (p = str; maxlen-- != 0 && *p != CH_ZERO; ++p) ; |
71 | | |
72 | 12.6M | return p - str; |
73 | 12.6M | } |
74 | | |
75 | | size_t OPENSSL_strlcpy(char *dst, const char *src, size_t size) |
76 | 473k | { |
77 | 473k | size_t l = 0; |
78 | 5.38M | for (; size > 1 && *src; size--) { |
79 | 4.90M | *dst++ = *src++; |
80 | 4.90M | l++; |
81 | 4.90M | } |
82 | 473k | if (size) |
83 | 469k | *dst = CH_ZERO; |
84 | 473k | return l + strlen(src); |
85 | 473k | } |
86 | | |
87 | | size_t OPENSSL_strlcat(char *dst, const char *src, size_t size) |
88 | 185k | { |
89 | 185k | size_t l = 0; |
90 | 2.21M | for (; size > 0 && *dst; size--, dst++) |
91 | 2.02M | l++; |
92 | 185k | return l + OPENSSL_strlcpy(dst, src, size); |
93 | 185k | } |
94 | | |
95 | | int OPENSSL_hexchar2int(unsigned char c) |
96 | 0 | { |
97 | | #ifdef CHARSET_EBCDIC |
98 | | c = os_toebcdic[c]; |
99 | | #endif |
100 | |
|
101 | 0 | switch (c) { |
102 | 0 | case '0': |
103 | 0 | return 0; |
104 | 0 | case '1': |
105 | 0 | return 1; |
106 | 0 | case '2': |
107 | 0 | return 2; |
108 | 0 | case '3': |
109 | 0 | return 3; |
110 | 0 | case '4': |
111 | 0 | return 4; |
112 | 0 | case '5': |
113 | 0 | return 5; |
114 | 0 | case '6': |
115 | 0 | return 6; |
116 | 0 | case '7': |
117 | 0 | return 7; |
118 | 0 | case '8': |
119 | 0 | return 8; |
120 | 0 | case '9': |
121 | 0 | return 9; |
122 | 0 | case 'a': case 'A': |
123 | 0 | return 0x0A; |
124 | 0 | case 'b': case 'B': |
125 | 0 | return 0x0B; |
126 | 0 | case 'c': case 'C': |
127 | 0 | return 0x0C; |
128 | 0 | case 'd': case 'D': |
129 | 0 | return 0x0D; |
130 | 0 | case 'e': case 'E': |
131 | 0 | return 0x0E; |
132 | 0 | case 'f': case 'F': |
133 | 0 | return 0x0F; |
134 | 0 | } |
135 | 0 | return -1; |
136 | 0 | } |
137 | | |
138 | | static int hexstr2buf_sep(unsigned char *buf, size_t buf_n, size_t *buflen, |
139 | | const char *str, const char sep) |
140 | 0 | { |
141 | 0 | unsigned char *q; |
142 | 0 | unsigned char ch, cl; |
143 | 0 | int chi, cli; |
144 | 0 | const unsigned char *p; |
145 | 0 | size_t cnt; |
146 | |
|
147 | 0 | for (p = (const unsigned char *)str, q = buf, cnt = 0; *p; ) { |
148 | 0 | ch = *p++; |
149 | | /* A separator of CH_ZERO means there is no separator */ |
150 | 0 | if (ch == sep && sep != CH_ZERO) |
151 | 0 | continue; |
152 | 0 | cl = *p++; |
153 | 0 | if (!cl) { |
154 | 0 | ERR_raise(ERR_LIB_CRYPTO, CRYPTO_R_ODD_NUMBER_OF_DIGITS); |
155 | 0 | return 0; |
156 | 0 | } |
157 | 0 | cli = OPENSSL_hexchar2int(cl); |
158 | 0 | chi = OPENSSL_hexchar2int(ch); |
159 | 0 | if (cli < 0 || chi < 0) { |
160 | 0 | ERR_raise(ERR_LIB_CRYPTO, CRYPTO_R_ILLEGAL_HEX_DIGIT); |
161 | 0 | return 0; |
162 | 0 | } |
163 | 0 | cnt++; |
164 | 0 | if (q != NULL) { |
165 | 0 | if (cnt > buf_n) { |
166 | 0 | ERR_raise(ERR_LIB_CRYPTO, CRYPTO_R_TOO_SMALL_BUFFER); |
167 | 0 | return 0; |
168 | 0 | } |
169 | 0 | *q++ = (unsigned char)((chi << 4) | cli); |
170 | 0 | } |
171 | 0 | } |
172 | | |
173 | 0 | if (buflen != NULL) |
174 | 0 | *buflen = cnt; |
175 | 0 | return 1; |
176 | 0 | } |
177 | | |
178 | | /* |
179 | | * Given a string of hex digits convert to a buffer |
180 | | */ |
181 | | int OPENSSL_hexstr2buf_ex(unsigned char *buf, size_t buf_n, size_t *buflen, |
182 | | const char *str, const char sep) |
183 | 0 | { |
184 | 0 | return hexstr2buf_sep(buf, buf_n, buflen, str, sep); |
185 | 0 | } |
186 | | |
187 | | unsigned char *ossl_hexstr2buf_sep(const char *str, long *buflen, |
188 | | const char sep) |
189 | 0 | { |
190 | 0 | unsigned char *buf; |
191 | 0 | size_t buf_n, tmp_buflen; |
192 | |
|
193 | 0 | buf_n = strlen(str); |
194 | 0 | if (buf_n <= 1) { |
195 | 0 | ERR_raise(ERR_LIB_CRYPTO, CRYPTO_R_HEX_STRING_TOO_SHORT); |
196 | 0 | return NULL; |
197 | 0 | } |
198 | 0 | buf_n /= 2; |
199 | 0 | if ((buf = OPENSSL_malloc(buf_n)) == NULL) { |
200 | 0 | ERR_raise(ERR_LIB_CRYPTO, ERR_R_MALLOC_FAILURE); |
201 | 0 | return NULL; |
202 | 0 | } |
203 | | |
204 | 0 | if (buflen != NULL) |
205 | 0 | *buflen = 0; |
206 | 0 | tmp_buflen = 0; |
207 | 0 | if (hexstr2buf_sep(buf, buf_n, &tmp_buflen, str, sep)) { |
208 | 0 | if (buflen != NULL) |
209 | 0 | *buflen = (long)tmp_buflen; |
210 | 0 | return buf; |
211 | 0 | } |
212 | 0 | OPENSSL_free(buf); |
213 | 0 | return NULL; |
214 | 0 | } |
215 | | |
216 | | unsigned char *OPENSSL_hexstr2buf(const char *str, long *buflen) |
217 | 0 | { |
218 | 0 | return ossl_hexstr2buf_sep(str, buflen, DEFAULT_SEPARATOR); |
219 | 0 | } |
220 | | |
221 | | static int buf2hexstr_sep(char *str, size_t str_n, size_t *strlength, |
222 | | const unsigned char *buf, size_t buflen, |
223 | | const char sep) |
224 | 4.56k | { |
225 | 4.56k | static const char hexdig[] = "0123456789ABCDEF"; |
226 | 4.56k | const unsigned char *p; |
227 | 4.56k | char *q; |
228 | 4.56k | size_t i; |
229 | 4.56k | int has_sep = (sep != CH_ZERO); |
230 | 4.56k | size_t len = has_sep ? buflen * 3 : 1 + buflen * 2; |
231 | | |
232 | 4.56k | if (strlength != NULL) |
233 | 0 | *strlength = len; |
234 | 4.56k | if (str == NULL) |
235 | 0 | return 1; |
236 | | |
237 | 4.56k | if (str_n < (unsigned long)len) { |
238 | 0 | ERR_raise(ERR_LIB_CRYPTO, CRYPTO_R_TOO_SMALL_BUFFER); |
239 | 0 | return 0; |
240 | 0 | } |
241 | | |
242 | 4.56k | q = str; |
243 | 48.3k | for (i = 0, p = buf; i < buflen; i++, p++) { |
244 | 43.7k | *q++ = hexdig[(*p >> 4) & 0xf]; |
245 | 43.7k | *q++ = hexdig[*p & 0xf]; |
246 | 43.7k | if (has_sep) |
247 | 10.4k | *q++ = sep; |
248 | 43.7k | } |
249 | 4.56k | if (has_sep) |
250 | 398 | --q; |
251 | 4.56k | *q = CH_ZERO; |
252 | | |
253 | | #ifdef CHARSET_EBCDIC |
254 | | ebcdic2ascii(str, str, q - str - 1); |
255 | | #endif |
256 | 4.56k | return 1; |
257 | 4.56k | } |
258 | | |
259 | | int OPENSSL_buf2hexstr_ex(char *str, size_t str_n, size_t *strlength, |
260 | | const unsigned char *buf, size_t buflen, |
261 | | const char sep) |
262 | 0 | { |
263 | 0 | return buf2hexstr_sep(str, str_n, strlength, buf, buflen, sep); |
264 | 0 | } |
265 | | |
266 | | char *ossl_buf2hexstr_sep(const unsigned char *buf, long buflen, char sep) |
267 | 4.57k | { |
268 | 4.57k | char *tmp; |
269 | 4.57k | size_t tmp_n; |
270 | | |
271 | 4.57k | if (buflen == 0) |
272 | 15 | return OPENSSL_zalloc(1); |
273 | | |
274 | 4.56k | tmp_n = (sep != CH_ZERO) ? buflen * 3 : 1 + buflen * 2; |
275 | 4.56k | if ((tmp = OPENSSL_malloc(tmp_n)) == NULL) { |
276 | 0 | ERR_raise(ERR_LIB_CRYPTO, ERR_R_MALLOC_FAILURE); |
277 | 0 | return NULL; |
278 | 0 | } |
279 | | |
280 | 4.56k | if (buf2hexstr_sep(tmp, tmp_n, NULL, buf, buflen, sep)) |
281 | 4.56k | return tmp; |
282 | 0 | OPENSSL_free(tmp); |
283 | 0 | return NULL; |
284 | 4.56k | } |
285 | | |
286 | | |
287 | | /* |
288 | | * Given a buffer of length 'len' return a OPENSSL_malloc'ed string with its |
289 | | * hex representation @@@ (Contents of buffer are always kept in ASCII, also |
290 | | * on EBCDIC machines) |
291 | | */ |
292 | | char *OPENSSL_buf2hexstr(const unsigned char *buf, long buflen) |
293 | 413 | { |
294 | 413 | return ossl_buf2hexstr_sep(buf, buflen, ':'); |
295 | 413 | } |
296 | | |
297 | | int openssl_strerror_r(int errnum, char *buf, size_t buflen) |
298 | 0 | { |
299 | | #if defined(_MSC_VER) && _MSC_VER>=1400 && !defined(_WIN32_WCE) |
300 | | return !strerror_s(buf, buflen, errnum); |
301 | | #elif defined(_GNU_SOURCE) |
302 | | char *err; |
303 | | |
304 | | /* |
305 | | * GNU strerror_r may not actually set buf. |
306 | | * It can return a pointer to some (immutable) static string in which case |
307 | | * buf is left unused. |
308 | | */ |
309 | | err = strerror_r(errnum, buf, buflen); |
310 | | if (err == NULL || buflen == 0) |
311 | | return 0; |
312 | | /* |
313 | | * If err is statically allocated, err != buf and we need to copy the data. |
314 | | * If err points somewhere inside buf, OPENSSL_strlcpy can handle this, |
315 | | * since src and dest are not annotated with __restrict and the function |
316 | | * reads src byte for byte and writes to dest. |
317 | | * If err == buf we do not have to copy anything. |
318 | | */ |
319 | | if (err != buf) |
320 | | OPENSSL_strlcpy(buf, err, buflen); |
321 | | return 1; |
322 | | #elif (defined(_POSIX_C_SOURCE) && _POSIX_C_SOURCE >= 200112L) || \ |
323 | | (defined(_XOPEN_SOURCE) && _XOPEN_SOURCE >= 600) |
324 | | /* |
325 | | * We can use "real" strerror_r. The OpenSSL version differs in that it |
326 | | * gives 1 on success and 0 on failure for consistency with other OpenSSL |
327 | | * functions. Real strerror_r does it the other way around |
328 | | */ |
329 | 0 | return !strerror_r(errnum, buf, buflen); |
330 | | #else |
331 | | char *err; |
332 | | |
333 | | /* Fall back to non-thread safe strerror()...its all we can do */ |
334 | | if (buflen < 2) |
335 | | return 0; |
336 | | err = strerror(errnum); |
337 | | /* Can this ever happen? */ |
338 | | if (err == NULL) |
339 | | return 0; |
340 | | OPENSSL_strlcpy(buf, err, buflen); |
341 | | return 1; |
342 | | #endif |
343 | 0 | } |
344 | | |
345 | | int OPENSSL_strcasecmp(const char *s1, const char *s2) |
346 | 1.78M | { |
347 | 1.78M | int t; |
348 | | |
349 | 12.6M | while ((t = ossl_tolower(*s1) - ossl_tolower(*s2++)) == 0) |
350 | 12.5M | if (*s1++ == '\0') |
351 | 1.77M | return 0; |
352 | 13.2k | return t; |
353 | 1.78M | } |
354 | | |
355 | | int OPENSSL_strncasecmp(const char *s1, const char *s2, size_t n) |
356 | 3.87k | { |
357 | 3.87k | int t; |
358 | 3.87k | size_t i; |
359 | | |
360 | 10.4k | for (i = 0; i < n; i++) |
361 | 7.85k | if ((t = ossl_tolower(*s1) - ossl_tolower(*s2++)) != 0) |
362 | 1.31k | return t; |
363 | 6.53k | else if (*s1++ == '\0') |
364 | 0 | return 0; |
365 | 2.55k | return 0; |
366 | 3.87k | } |