Coverage Report

Created: 2025-06-13 06:58

/src/openssl30/crypto/o_str.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * Copyright 2003-2024 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
2.18G
#define CH_ZERO '\0'
20
21
char *CRYPTO_strdup(const char *str, const char* file, int line)
22
112M
{
23
112M
    char *ret;
24
25
112M
    if (str == NULL)
26
0
        return NULL;
27
112M
    ret = CRYPTO_malloc(strlen(str) + 1, file, line);
28
112M
    if (ret != NULL)
29
112M
        strcpy(ret, str);
30
112M
    return ret;
31
112M
}
32
33
char *CRYPTO_strndup(const char *str, size_t s, const char* file, int line)
34
232M
{
35
232M
    size_t maxlen;
36
232M
    char *ret;
37
38
232M
    if (str == NULL)
39
0
        return NULL;
40
41
232M
    maxlen = OPENSSL_strnlen(str, s);
42
43
232M
    ret = CRYPTO_malloc(maxlen + 1, file, line);
44
232M
    if (ret) {
45
232M
        memcpy(ret, str, maxlen);
46
232M
        ret[maxlen] = CH_ZERO;
47
232M
    }
48
232M
    return ret;
49
232M
}
50
51
void *CRYPTO_memdup(const void *data, size_t siz, const char* file, int line)
52
20.0M
{
53
20.0M
    void *ret;
54
55
20.0M
    if (data == NULL || siz >= INT_MAX)
56
0
        return NULL;
57
58
20.0M
    ret = CRYPTO_malloc(siz, file, line);
59
20.0M
    if (ret == NULL) {
60
0
        ERR_raise(ERR_LIB_CRYPTO, ERR_R_MALLOC_FAILURE);
61
0
        return NULL;
62
0
    }
63
20.0M
    return memcpy(ret, data, siz);
64
20.0M
}
65
66
size_t OPENSSL_strnlen(const char *str, size_t maxlen)
67
407M
{
68
407M
    const char *p;
69
70
2.13G
    for (p = str; maxlen-- != 0 && *p != CH_ZERO; ++p) ;
71
72
407M
    return p - str;
73
407M
}
74
75
size_t OPENSSL_strlcpy(char *dst, const char *src, size_t size)
76
51.2M
{
77
51.2M
    size_t l = 0;
78
551M
    for (; size > 1 && *src; size--) {
79
500M
        *dst++ = *src++;
80
500M
        l++;
81
500M
    }
82
51.2M
    if (size)
83
51.1M
        *dst = CH_ZERO;
84
51.2M
    return l + strlen(src);
85
51.2M
}
86
87
size_t OPENSSL_strlcat(char *dst, const char *src, size_t size)
88
38.5M
{
89
38.5M
    size_t l = 0;
90
490M
    for (; size > 0 && *dst; size--, dst++)
91
452M
        l++;
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38.5M
    return l + OPENSSL_strlcpy(dst, src, size);
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38.5M
}
94
95
int OPENSSL_hexchar2int(unsigned char c)
96
102
{
97
#ifdef CHARSET_EBCDIC
98
    c = os_toebcdic[c];
99
#endif
100
101
102
    switch (c) {
102
3
    case '0':
103
3
        return 0;
104
6
    case '1':
105
6
        return 1;
106
6
    case '2':
107
6
        return 2;
108
6
    case '3':
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6
        return 3;
110
13
    case '4':
111
13
          return 4;
112
5
    case '5':
113
5
          return 5;
114
5
    case '6':
115
5
          return 6;
116
7
    case '7':
117
7
          return 7;
118
7
    case '8':
119
7
          return 8;
120
8
    case '9':
121
8
          return 9;
122
10
    case 'a': case 'A':
123
10
          return 0x0A;
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2
    case 'b': case 'B':
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2
          return 0x0B;
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1
    case 'c': case 'C':
127
1
          return 0x0C;
128
6
    case 'd': case 'D':
129
6
          return 0x0D;
130
3
    case 'e': case 'E':
131
3
          return 0x0E;
132
4
    case 'f': case 'F':
133
4
          return 0x0F;
134
102
    }
135
10
    return -1;
136
102
}
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
74.6k
{
225
74.6k
    static const char hexdig[] = "0123456789ABCDEF";
226
74.6k
    const unsigned char *p;
227
74.6k
    char *q;
228
74.6k
    size_t i;
229
74.6k
    int has_sep = (sep != CH_ZERO);
230
74.6k
    size_t len = has_sep ? buflen * 3 : 1 + buflen * 2;
231
232
74.6k
    if (len == 0)
233
0
        ++len;
234
74.6k
    if (strlength != NULL)
235
0
        *strlength = len;
236
74.6k
    if (str == NULL)
237
0
        return 1;
238
239
74.6k
    if (str_n < len) {
240
0
        ERR_raise(ERR_LIB_CRYPTO, CRYPTO_R_TOO_SMALL_BUFFER);
241
0
        return 0;
242
0
    }
243
244
74.6k
    q = str;
245
19.0M
    for (i = 0, p = buf; i < buflen; i++, p++) {
246
19.0M
        *q++ = hexdig[(*p >> 4) & 0xf];
247
19.0M
        *q++ = hexdig[*p & 0xf];
248
19.0M
        if (has_sep)
249
18.8M
            *q++ = sep;
250
19.0M
    }
251
74.6k
    if (has_sep && buflen > 0)
252
51.4k
        --q;
253
74.6k
    *q = CH_ZERO;
254
255
#ifdef CHARSET_EBCDIC
256
    ebcdic2ascii(str, str, q - str);
257
#endif
258
74.6k
    return 1;
259
74.6k
}
260
261
int OPENSSL_buf2hexstr_ex(char *str, size_t str_n, size_t *strlength,
262
                          const unsigned char *buf, size_t buflen,
263
                          const char sep)
264
0
{
265
0
    return buf2hexstr_sep(str, str_n, strlength, buf, buflen, sep);
266
0
}
267
268
char *ossl_buf2hexstr_sep(const unsigned char *buf, long buflen, char sep)
269
81.8k
{
270
81.8k
    char *tmp;
271
81.8k
    size_t tmp_n;
272
273
81.8k
    if (buflen == 0)
274
7.13k
        return OPENSSL_zalloc(1);
275
276
74.6k
    tmp_n = (sep != CH_ZERO) ? buflen * 3 : 1 + buflen * 2;
277
74.6k
    if ((tmp = OPENSSL_malloc(tmp_n)) == NULL) {
278
0
        ERR_raise(ERR_LIB_CRYPTO, ERR_R_MALLOC_FAILURE);
279
0
        return NULL;
280
0
    }
281
282
74.6k
    if (buf2hexstr_sep(tmp, tmp_n, NULL, buf, buflen, sep))
283
74.6k
        return tmp;
284
0
    OPENSSL_free(tmp);
285
0
    return NULL;
286
74.6k
}
287
288
289
/*
290
 * Given a buffer of length 'len' return a OPENSSL_malloc'ed string with its
291
 * hex representation @@@ (Contents of buffer are always kept in ASCII, also
292
 * on EBCDIC machines)
293
 */
294
char *OPENSSL_buf2hexstr(const unsigned char *buf, long buflen)
295
58.5k
{
296
58.5k
    return ossl_buf2hexstr_sep(buf, buflen, ':');
297
58.5k
}
298
299
int openssl_strerror_r(int errnum, char *buf, size_t buflen)
300
0
{
301
#if defined(_MSC_VER) && _MSC_VER>=1400 && !defined(_WIN32_WCE)
302
    return !strerror_s(buf, buflen, errnum);
303
#elif defined(_GNU_SOURCE)
304
    char *err;
305
306
    /*
307
     * GNU strerror_r may not actually set buf.
308
     * It can return a pointer to some (immutable) static string in which case
309
     * buf is left unused.
310
     */
311
    err = strerror_r(errnum, buf, buflen);
312
    if (err == NULL || buflen == 0)
313
        return 0;
314
    /*
315
     * If err is statically allocated, err != buf and we need to copy the data.
316
     * If err points somewhere inside buf, OPENSSL_strlcpy can handle this,
317
     * since src and dest are not annotated with __restrict and the function
318
     * reads src byte for byte and writes to dest.
319
     * If err == buf we do not have to copy anything.
320
     */
321
    if (err != buf)
322
        OPENSSL_strlcpy(buf, err, buflen);
323
    return 1;
324
#elif (defined(_POSIX_C_SOURCE) && _POSIX_C_SOURCE >= 200112L) || \
325
      (defined(_XOPEN_SOURCE) && _XOPEN_SOURCE >= 600)
326
    /*
327
     * We can use "real" strerror_r. The OpenSSL version differs in that it
328
     * gives 1 on success and 0 on failure for consistency with other OpenSSL
329
     * functions. Real strerror_r does it the other way around
330
     */
331
0
    return !strerror_r(errnum, buf, buflen);
332
#else
333
    char *err;
334
335
    /* Fall back to non-thread safe strerror()...its all we can do */
336
    if (buflen < 2)
337
        return 0;
338
    err = strerror(errnum);
339
    /* Can this ever happen? */
340
    if (err == NULL)
341
        return 0;
342
    OPENSSL_strlcpy(buf, err, buflen);
343
    return 1;
344
#endif
345
0
}
346
347
int OPENSSL_strcasecmp(const char *s1, const char *s2)
348
241M
{
349
241M
    int t;
350
351
1.40G
    while ((t = ossl_tolower(*s1) - ossl_tolower(*s2++)) == 0)
352
1.37G
        if (*s1++ == '\0')
353
210M
            return 0;
354
30.9M
    return t;
355
241M
}
356
357
int OPENSSL_strncasecmp(const char *s1, const char *s2, size_t n)
358
5.15M
{
359
5.15M
    int t;
360
5.15M
    size_t i;
361
362
9.18M
    for (i = 0; i < n; i++)
363
8.03M
        if ((t = ossl_tolower(*s1) - ossl_tolower(*s2++)) != 0)
364
4.00M
            return t;
365
4.02M
        else if (*s1++ == '\0')
366
0
            return 0;
367
1.14M
    return 0;
368
5.15M
}