Coverage Report

Created: 2025-12-31 06:58

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl35/crypto/stack/stack.c
Line
Count
Source
1
/*
2
 * Copyright 1995-2024 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 <stdio.h>
11
#include "internal/cryptlib.h"
12
#include "internal/numbers.h"
13
#include "internal/safe_math.h"
14
#include <openssl/stack.h>
15
#include <errno.h>
16
#include <openssl/e_os2.h> /* For ossl_inline */
17
18
OSSL_SAFE_MATH_SIGNED(int, int)
19
20
/*
21
 * The initial number of nodes in the array.
22
 */
23
static const int min_nodes = 4;
24
static const int max_nodes = SIZE_MAX / sizeof(void *) < INT_MAX
25
    ? (int)(SIZE_MAX / sizeof(void *))
26
    : INT_MAX;
27
28
struct stack_st {
29
    int num;
30
    const void **data;
31
    int sorted;
32
    int num_alloc;
33
    OPENSSL_sk_compfunc comp;
34
};
35
36
OPENSSL_sk_compfunc OPENSSL_sk_set_cmp_func(OPENSSL_STACK *sk,
37
    OPENSSL_sk_compfunc c)
38
255k
{
39
255k
    OPENSSL_sk_compfunc old = sk->comp;
40
41
255k
    if (sk->comp != c)
42
255k
        sk->sorted = 0;
43
255k
    sk->comp = c;
44
45
255k
    return old;
46
255k
}
47
48
OPENSSL_STACK *OPENSSL_sk_dup(const OPENSSL_STACK *sk)
49
40.6M
{
50
40.6M
    OPENSSL_STACK *ret;
51
52
40.6M
    if ((ret = OPENSSL_malloc(sizeof(*ret))) == NULL)
53
0
        goto err;
54
55
40.6M
    if (sk == NULL) {
56
196
        ret->num = 0;
57
196
        ret->sorted = 0;
58
196
        ret->comp = NULL;
59
40.6M
    } else {
60
        /* direct structure assignment */
61
40.6M
        *ret = *sk;
62
40.6M
    }
63
64
40.6M
    if (sk == NULL || sk->num == 0) {
65
        /* postpone |ret->data| allocation */
66
211
        ret->data = NULL;
67
211
        ret->num_alloc = 0;
68
211
        return ret;
69
211
    }
70
71
    /* duplicate |sk->data| content */
72
40.6M
    ret->data = OPENSSL_malloc(sizeof(*ret->data) * sk->num_alloc);
73
40.6M
    if (ret->data == NULL)
74
0
        goto err;
75
40.6M
    memcpy(ret->data, sk->data, sizeof(void *) * sk->num);
76
40.6M
    return ret;
77
78
0
err:
79
0
    OPENSSL_sk_free(ret);
80
0
    return NULL;
81
40.6M
}
82
83
OPENSSL_STACK *OPENSSL_sk_deep_copy(const OPENSSL_STACK *sk,
84
    OPENSSL_sk_copyfunc copy_func,
85
    OPENSSL_sk_freefunc free_func)
86
1.53M
{
87
1.53M
    OPENSSL_STACK *ret;
88
1.53M
    int i;
89
90
1.53M
    if ((ret = OPENSSL_malloc(sizeof(*ret))) == NULL)
91
0
        goto err;
92
93
1.53M
    if (sk == NULL) {
94
188
        ret->num = 0;
95
188
        ret->sorted = 0;
96
188
        ret->comp = NULL;
97
1.53M
    } else {
98
        /* direct structure assignment */
99
1.53M
        *ret = *sk;
100
1.53M
    }
101
102
1.53M
    if (sk == NULL || sk->num == 0) {
103
        /* postpone |ret| data allocation */
104
188
        ret->data = NULL;
105
188
        ret->num_alloc = 0;
106
188
        return ret;
107
188
    }
108
109
1.53M
    ret->num_alloc = sk->num > min_nodes ? sk->num : min_nodes;
110
1.53M
    ret->data = OPENSSL_zalloc(sizeof(*ret->data) * ret->num_alloc);
111
1.53M
    if (ret->data == NULL)
112
0
        goto err;
113
114
16.6M
    for (i = 0; i < ret->num; ++i) {
115
15.0M
        if (sk->data[i] == NULL)
116
0
            continue;
117
15.0M
        if ((ret->data[i] = copy_func(sk->data[i])) == NULL) {
118
0
            while (--i >= 0)
119
0
                if (ret->data[i] != NULL)
120
0
                    free_func((void *)ret->data[i]);
121
0
            goto err;
122
0
        }
123
15.0M
    }
124
1.53M
    return ret;
125
126
0
err:
127
0
    OPENSSL_sk_free(ret);
128
0
    return NULL;
129
1.53M
}
130
131
OPENSSL_STACK *OPENSSL_sk_new_null(void)
132
164M
{
133
164M
    return OPENSSL_sk_new_reserve(NULL, 0);
134
164M
}
135
136
OPENSSL_STACK *OPENSSL_sk_new(OPENSSL_sk_compfunc c)
137
23.1M
{
138
23.1M
    return OPENSSL_sk_new_reserve(c, 0);
139
23.1M
}
140
141
/*
142
 * Calculate the array growth based on the target size.
143
 *
144
 * The growth factor is a rational number and is defined by a numerator
145
 * and a denominator.  According to Andrew Koenig in his paper "Why Are
146
 * Vectors Efficient?" from JOOP 11(5) 1998, this factor should be less
147
 * than the golden ratio (1.618...).
148
 *
149
 * Considering only the Fibonacci ratios less than the golden ratio, the
150
 * number of steps from the minimum allocation to integer overflow is:
151
 *      factor  decimal    growths
152
 *       3/2     1.5          51
153
 *       8/5     1.6          45
154
 *      21/13    1.615...     44
155
 *
156
 * All larger factors have the same number of growths.
157
 *
158
 * 3/2 and 8/5 have nice power of two shifts, so seem like a good choice.
159
 */
160
static ossl_inline int compute_growth(int target, int current)
161
5.04M
{
162
5.04M
    int err = 0;
163
164
10.0M
    while (current < target) {
165
5.04M
        if (current >= max_nodes)
166
0
            return 0;
167
168
5.04M
        current = safe_muldiv_int(current, 8, 5, &err);
169
5.04M
        if (err != 0)
170
0
            return 0;
171
5.04M
        if (current >= max_nodes)
172
0
            current = max_nodes;
173
5.04M
    }
174
5.04M
    return current;
175
5.04M
}
176
177
/* internal STACK storage allocation */
178
static int sk_reserve(OPENSSL_STACK *st, int n, int exact)
179
407M
{
180
407M
    const void **tmpdata;
181
407M
    int num_alloc;
182
183
    /* Check to see the reservation isn't exceeding the hard limit */
184
407M
    if (n > max_nodes - st->num) {
185
0
        ERR_raise(ERR_LIB_CRYPTO, CRYPTO_R_TOO_MANY_RECORDS);
186
0
        return 0;
187
0
    }
188
189
    /* Figure out the new size */
190
407M
    num_alloc = st->num + n;
191
407M
    if (num_alloc < min_nodes)
192
38.5M
        num_alloc = min_nodes;
193
194
    /* If |st->data| allocation was postponed */
195
407M
    if (st->data == NULL) {
196
        /*
197
         * At this point, |st->num_alloc| and |st->num| are 0;
198
         * so |num_alloc| value is |n| or |min_nodes| if greater than |n|.
199
         */
200
27.0M
        if ((st->data = OPENSSL_zalloc(sizeof(void *) * num_alloc)) == NULL)
201
0
            return 0;
202
27.0M
        st->num_alloc = num_alloc;
203
27.0M
        return 1;
204
27.0M
    }
205
206
380M
    if (!exact) {
207
380M
        if (num_alloc <= st->num_alloc)
208
370M
            return 1;
209
9.14M
        num_alloc = compute_growth(num_alloc, st->num_alloc);
210
9.14M
        if (num_alloc == 0) {
211
0
            ERR_raise(ERR_LIB_CRYPTO, CRYPTO_R_TOO_MANY_RECORDS);
212
0
            return 0;
213
0
        }
214
9.14M
    } else if (num_alloc == st->num_alloc) {
215
0
        return 1;
216
0
    }
217
218
9.14M
    tmpdata = OPENSSL_realloc((void *)st->data, sizeof(void *) * num_alloc);
219
9.14M
    if (tmpdata == NULL)
220
0
        return 0;
221
222
9.14M
    st->data = tmpdata;
223
9.14M
    st->num_alloc = num_alloc;
224
9.14M
    return 1;
225
9.14M
}
226
227
OPENSSL_STACK *OPENSSL_sk_new_reserve(OPENSSL_sk_compfunc c, int n)
228
188M
{
229
188M
    OPENSSL_STACK *st = OPENSSL_zalloc(sizeof(OPENSSL_STACK));
230
231
188M
    if (st == NULL)
232
0
        return NULL;
233
234
188M
    st->comp = c;
235
236
188M
    if (n <= 0)
237
187M
        return st;
238
239
1.09M
    if (!sk_reserve(st, n, 1)) {
240
0
        OPENSSL_sk_free(st);
241
0
        return NULL;
242
0
    }
243
244
1.09M
    return st;
245
1.09M
}
246
247
int OPENSSL_sk_reserve(OPENSSL_STACK *st, int n)
248
0
{
249
0
    if (st == NULL) {
250
0
        ERR_raise(ERR_LIB_CRYPTO, ERR_R_PASSED_NULL_PARAMETER);
251
0
        return 0;
252
0
    }
253
254
0
    if (n < 0)
255
0
        return 1;
256
0
    return sk_reserve(st, n, 1);
257
0
}
258
259
int OPENSSL_sk_insert(OPENSSL_STACK *st, const void *data, int loc)
260
320M
{
261
320M
    if (st == NULL) {
262
0
        ERR_raise(ERR_LIB_CRYPTO, ERR_R_PASSED_NULL_PARAMETER);
263
0
        return 0;
264
0
    }
265
320M
    if (st->num == max_nodes) {
266
0
        ERR_raise(ERR_LIB_CRYPTO, CRYPTO_R_TOO_MANY_RECORDS);
267
0
        return 0;
268
0
    }
269
270
320M
    if (!sk_reserve(st, 1, 0))
271
0
        return 0;
272
273
320M
    if ((loc >= st->num) || (loc < 0)) {
274
320M
        st->data[st->num] = data;
275
320M
    } else {
276
5.62k
        memmove(&st->data[loc + 1], &st->data[loc],
277
5.62k
            sizeof(st->data[0]) * (st->num - loc));
278
5.62k
        st->data[loc] = data;
279
5.62k
    }
280
320M
    st->num++;
281
320M
    st->sorted = 0;
282
320M
    return st->num;
283
320M
}
284
285
static ossl_inline void *internal_delete(OPENSSL_STACK *st, int loc)
286
2.29M
{
287
2.29M
    const void *ret = st->data[loc];
288
289
2.29M
    if (loc != st->num - 1)
290
236k
        memmove(&st->data[loc], &st->data[loc + 1],
291
236k
            sizeof(st->data[0]) * (st->num - loc - 1));
292
2.29M
    st->num--;
293
294
2.29M
    return (void *)ret;
295
2.29M
}
296
297
void *OPENSSL_sk_delete_ptr(OPENSSL_STACK *st, const void *p)
298
148k
{
299
148k
    int i;
300
301
148k
    if (st == NULL)
302
0
        return NULL;
303
304
452k
    for (i = 0; i < st->num; i++)
305
452k
        if (st->data[i] == p)
306
148k
            return internal_delete(st, i);
307
0
    return NULL;
308
148k
}
309
310
void *OPENSSL_sk_delete(OPENSSL_STACK *st, int loc)
311
341k
{
312
341k
    if (st == NULL || loc < 0 || loc >= st->num)
313
0
        return NULL;
314
315
341k
    return internal_delete(st, loc);
316
341k
}
317
318
static int internal_find(OPENSSL_STACK *st, const void *data,
319
    int ret_val_options, int *pnum_matched)
320
248k
{
321
248k
    const void *r;
322
248k
    int i, count = 0;
323
248k
    int *pnum = pnum_matched;
324
325
248k
    if (st == NULL || st->num == 0)
326
97.3k
        return -1;
327
328
150k
    if (pnum == NULL)
329
143k
        pnum = &count;
330
331
150k
    if (st->comp == NULL) {
332
3.10M
        for (i = 0; i < st->num; i++)
333
3.10M
            if (st->data[i] == data) {
334
29.7k
                *pnum = 1;
335
29.7k
                return i;
336
29.7k
            }
337
2.39k
        *pnum = 0;
338
2.39k
        return -1;
339
32.1k
    }
340
341
118k
    if (data == NULL)
342
0
        return -1;
343
344
118k
    if (!st->sorted) {
345
0
        int res = -1;
346
347
0
        for (i = 0; i < st->num; i++)
348
0
            if (st->comp(&data, st->data + i) == 0) {
349
0
                if (res == -1)
350
0
                    res = i;
351
0
                ++*pnum;
352
                /* Check if only one result is wanted and exit if so */
353
0
                if (pnum_matched == NULL)
354
0
                    return i;
355
0
            }
356
0
        if (res == -1)
357
0
            *pnum = 0;
358
0
        return res;
359
0
    }
360
361
118k
    if (pnum_matched != NULL)
362
7.33k
        ret_val_options |= OSSL_BSEARCH_FIRST_VALUE_ON_MATCH;
363
118k
    r = ossl_bsearch(&data, st->data, st->num, sizeof(void *), st->comp,
364
118k
        ret_val_options);
365
366
118k
    if (pnum_matched != NULL) {
367
7.33k
        *pnum = 0;
368
7.33k
        if (r != NULL) {
369
4.56k
            const void **p = (const void **)r;
370
371
9.12k
            while (p < st->data + st->num) {
372
4.56k
                if (st->comp(&data, p) != 0)
373
0
                    break;
374
4.56k
                ++*pnum;
375
4.56k
                ++p;
376
4.56k
            }
377
4.56k
        }
378
7.33k
    }
379
380
118k
    return r == NULL ? -1 : (int)((const void **)r - st->data);
381
118k
}
382
383
int OPENSSL_sk_find(OPENSSL_STACK *st, const void *data)
384
171k
{
385
171k
    return internal_find(st, data, OSSL_BSEARCH_FIRST_VALUE_ON_MATCH, NULL);
386
171k
}
387
388
int OPENSSL_sk_find_ex(OPENSSL_STACK *st, const void *data)
389
0
{
390
0
    return internal_find(st, data, OSSL_BSEARCH_VALUE_ON_NOMATCH, NULL);
391
0
}
392
393
int OPENSSL_sk_find_all(OPENSSL_STACK *st, const void *data, int *pnum)
394
101k
{
395
101k
    return internal_find(st, data, OSSL_BSEARCH_FIRST_VALUE_ON_MATCH, pnum);
396
101k
}
397
398
int OPENSSL_sk_push(OPENSSL_STACK *st, const void *data)
399
405M
{
400
405M
    if (st == NULL)
401
0
        return 0;
402
405M
    return OPENSSL_sk_insert(st, data, st->num);
403
405M
}
404
405
int OPENSSL_sk_unshift(OPENSSL_STACK *st, const void *data)
406
0
{
407
0
    return OPENSSL_sk_insert(st, data, 0);
408
0
}
409
410
void *OPENSSL_sk_shift(OPENSSL_STACK *st)
411
0
{
412
0
    if (st == NULL || st->num == 0)
413
0
        return NULL;
414
0
    return internal_delete(st, 0);
415
0
}
416
417
void *OPENSSL_sk_pop(OPENSSL_STACK *st)
418
2.38M
{
419
2.38M
    if (st == NULL || st->num == 0)
420
10.0k
        return NULL;
421
2.37M
    return internal_delete(st, st->num - 1);
422
2.38M
}
423
424
void OPENSSL_sk_zero(OPENSSL_STACK *st)
425
0
{
426
0
    if (st == NULL || st->num == 0)
427
0
        return;
428
0
    memset(st->data, 0, sizeof(*st->data) * st->num);
429
0
    st->num = 0;
430
0
}
431
432
void OPENSSL_sk_pop_free(OPENSSL_STACK *st, OPENSSL_sk_freefunc func)
433
49.0M
{
434
49.0M
    int i;
435
436
49.0M
    if (st == NULL)
437
11.0M
        return;
438
212M
    for (i = 0; i < st->num; i++)
439
174M
        if (st->data[i] != NULL)
440
174M
            func((char *)st->data[i]);
441
38.0M
    OPENSSL_sk_free(st);
442
38.0M
}
443
444
void OPENSSL_sk_free(OPENSSL_STACK *st)
445
283M
{
446
283M
    if (st == NULL)
447
53.0M
        return;
448
230M
    OPENSSL_free(st->data);
449
230M
    OPENSSL_free(st);
450
230M
}
451
452
int OPENSSL_sk_num(const OPENSSL_STACK *st)
453
1.25G
{
454
1.25G
    return st == NULL ? -1 : st->num;
455
1.25G
}
456
457
void *OPENSSL_sk_value(const OPENSSL_STACK *st, int i)
458
1.40G
{
459
1.40G
    if (st == NULL || i < 0 || i >= st->num)
460
4.88k
        return NULL;
461
1.40G
    return (void *)st->data[i];
462
1.40G
}
463
464
void *OPENSSL_sk_set(OPENSSL_STACK *st, int i, const void *data)
465
12.9M
{
466
12.9M
    if (st == NULL) {
467
0
        ERR_raise(ERR_LIB_CRYPTO, ERR_R_PASSED_NULL_PARAMETER);
468
0
        return NULL;
469
0
    }
470
12.9M
    if (i < 0 || i >= st->num) {
471
0
        ERR_raise_data(ERR_LIB_CRYPTO, ERR_R_PASSED_INVALID_ARGUMENT,
472
0
            "i=%d", i);
473
0
        return NULL;
474
0
    }
475
12.9M
    st->data[i] = data;
476
12.9M
    st->sorted = 0;
477
12.9M
    return (void *)st->data[i];
478
12.9M
}
479
480
void OPENSSL_sk_sort(OPENSSL_STACK *st)
481
23.3M
{
482
23.3M
    if (st != NULL && !st->sorted && st->comp != NULL) {
483
18.9M
        if (st->num > 1)
484
298k
            qsort(st->data, st->num, sizeof(void *), st->comp);
485
18.9M
        st->sorted = 1; /* empty or single-element stack is considered sorted */
486
18.9M
    }
487
23.3M
}
488
489
int OPENSSL_sk_is_sorted(const OPENSSL_STACK *st)
490
81.1k
{
491
81.1k
    return st == NULL ? 1 : st->sorted;
492
81.1k
}