Coverage Report

Created: 2026-09-12 06:55

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl34/fuzz/provider.c
Line
Count
Source
1
/*
2
 * Copyright 2023-2024 The OpenSSL Project Authors. All Rights Reserved.
3
 *
4
 * Licensed under the Apache License 2.0 (the "License");
5
 * you may not use this file except in compliance with the License.
6
 * You may obtain a copy of the License at
7
 * https://www.openssl.org/source/license.html
8
 * or in the file LICENSE in the source distribution.
9
 */
10
#include <string.h>
11
#include <openssl/types.h>
12
#include <openssl/crypto.h>
13
#include <openssl/core_names.h>
14
#include <openssl/kdf.h>
15
#include <openssl/evp.h>
16
#include <openssl/provider.h>
17
#include "fuzzer.h"
18
19
#define DEFINE_ALGORITHMS(name, evp)                                     \
20
    DEFINE_STACK_OF(evp)                                                 \
21
    static int cmp_##evp(const evp *const *a, const evp *const *b);      \
22
    static void collect_##evp(evp *obj, void *stack);                    \
23
    static void init_##name(OSSL_LIB_CTX *libctx);                       \
24
    static void cleanup_##name(void);                                    \
25
    static STACK_OF(evp) *name##_collection;                             \
26
    static int cmp_##evp(const evp *const *a, const evp *const *b)       \
27
1.53k
    {                                                                    \
28
1.53k
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
1.53k
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
1.53k
    }                                                                    \
provider.c:cmp_EVP_MD
Line
Count
Source
27
145
    {                                                                    \
28
145
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
145
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
145
    }                                                                    \
provider.c:cmp_EVP_KDF
Line
Count
Source
27
103
    {                                                                    \
28
103
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
103
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
103
    }                                                                    \
provider.c:cmp_EVP_CIPHER
Line
Count
Source
27
645
    {                                                                    \
28
645
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
645
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
645
    }                                                                    \
provider.c:cmp_EVP_KEM
Line
Count
Source
27
55
    {                                                                    \
28
55
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
55
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
55
    }                                                                    \
provider.c:cmp_EVP_KEYEXCH
Line
Count
Source
27
30
    {                                                                    \
28
30
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
30
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
30
    }                                                                    \
provider.c:cmp_EVP_RAND
Line
Count
Source
27
20
    {                                                                    \
28
20
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
20
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
20
    }                                                                    \
provider.c:cmp_EVP_MAC
Line
Count
Source
27
40
    {                                                                    \
28
40
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
40
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
40
    }                                                                    \
provider.c:cmp_EVP_KEYMGMT
Line
Count
Source
27
205
    {                                                                    \
28
205
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
205
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
205
    }                                                                    \
provider.c:cmp_EVP_SIGNATURE
Line
Count
Source
27
290
    {                                                                    \
28
290
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
290
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
290
    }                                                                    \
provider.c:cmp_EVP_ASYM_CIPHER
Line
Count
Source
27
5
    {                                                                    \
28
5
        return strcmp(OSSL_PROVIDER_get0_name(evp##_get0_provider(*a)),  \
29
5
            OSSL_PROVIDER_get0_name(evp##_get0_provider(*b)));           \
30
5
    }                                                                    \
31
    static void collect_##evp(evp *obj, void *stack)                     \
32
524
    {                                                                    \
33
524
        STACK_OF(evp) *obj_stack = stack;                                \
34
524
                                                                         \
35
524
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
524
            evp##_up_ref(obj);                                           \
37
524
    }                                                                    \
provider.c:collect_EVP_MD
Line
Count
Source
32
54
    {                                                                    \
33
54
        STACK_OF(evp) *obj_stack = stack;                                \
34
54
                                                                         \
35
54
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
54
            evp##_up_ref(obj);                                           \
37
54
    }                                                                    \
provider.c:collect_EVP_KDF
Line
Count
Source
32
32
    {                                                                    \
33
32
        STACK_OF(evp) *obj_stack = stack;                                \
34
32
                                                                         \
35
32
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
32
            evp##_up_ref(obj);                                           \
37
32
    }                                                                    \
provider.c:collect_EVP_CIPHER
Line
Count
Source
32
260
    {                                                                    \
33
260
        STACK_OF(evp) *obj_stack = stack;                                \
34
260
                                                                         \
35
260
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
260
            evp##_up_ref(obj);                                           \
37
260
    }                                                                    \
provider.c:collect_EVP_KEM
Line
Count
Source
32
8
    {                                                                    \
33
8
        STACK_OF(evp) *obj_stack = stack;                                \
34
8
                                                                         \
35
8
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
8
            evp##_up_ref(obj);                                           \
37
8
    }                                                                    \
provider.c:collect_EVP_KEYEXCH
Line
Count
Source
32
14
    {                                                                    \
33
14
        STACK_OF(evp) *obj_stack = stack;                                \
34
14
                                                                         \
35
14
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
14
            evp##_up_ref(obj);                                           \
37
14
    }                                                                    \
provider.c:collect_EVP_RAND
Line
Count
Source
32
10
    {                                                                    \
33
10
        STACK_OF(evp) *obj_stack = stack;                                \
34
10
                                                                         \
35
10
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
10
            evp##_up_ref(obj);                                           \
37
10
    }                                                                    \
provider.c:collect_EVP_MAC
Line
Count
Source
32
18
    {                                                                    \
33
18
        STACK_OF(evp) *obj_stack = stack;                                \
34
18
                                                                         \
35
18
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
18
            evp##_up_ref(obj);                                           \
37
18
    }                                                                    \
provider.c:collect_EVP_KEYMGMT
Line
Count
Source
32
36
    {                                                                    \
33
36
        STACK_OF(evp) *obj_stack = stack;                                \
34
36
                                                                         \
35
36
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
36
            evp##_up_ref(obj);                                           \
37
36
    }                                                                    \
provider.c:collect_EVP_SIGNATURE
Line
Count
Source
32
88
    {                                                                    \
33
88
        STACK_OF(evp) *obj_stack = stack;                                \
34
88
                                                                         \
35
88
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
88
            evp##_up_ref(obj);                                           \
37
88
    }                                                                    \
provider.c:collect_EVP_ASYM_CIPHER
Line
Count
Source
32
4
    {                                                                    \
33
4
        STACK_OF(evp) *obj_stack = stack;                                \
34
4
                                                                         \
35
4
        if (sk_##evp##_push(obj_stack, obj) > 0)                         \
36
4
            evp##_up_ref(obj);                                           \
37
4
    }                                                                    \
38
    static void init_##name(OSSL_LIB_CTX *libctx)                        \
39
110
    {                                                                    \
40
110
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
110
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
110
    }                                                                    \
provider.c:init_digests
Line
Count
Source
39
11
    {                                                                    \
40
11
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
11
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
11
    }                                                                    \
provider.c:init_kdf
Line
Count
Source
39
11
    {                                                                    \
40
11
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
11
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
11
    }                                                                    \
provider.c:init_cipher
Line
Count
Source
39
11
    {                                                                    \
40
11
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
11
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
11
    }                                                                    \
provider.c:init_kem
Line
Count
Source
39
11
    {                                                                    \
40
11
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
11
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
11
    }                                                                    \
provider.c:init_keyexch
Line
Count
Source
39
11
    {                                                                    \
40
11
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
11
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
11
    }                                                                    \
provider.c:init_rand
Line
Count
Source
39
11
    {                                                                    \
40
11
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
11
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
11
    }                                                                    \
provider.c:init_mac
Line
Count
Source
39
11
    {                                                                    \
40
11
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
11
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
11
    }                                                                    \
provider.c:init_keymgmt
Line
Count
Source
39
11
    {                                                                    \
40
11
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
11
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
11
    }                                                                    \
provider.c:init_signature
Line
Count
Source
39
11
    {                                                                    \
40
11
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
11
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
11
    }                                                                    \
provider.c:init_asym_ciphers
Line
Count
Source
39
11
    {                                                                    \
40
11
        name##_collection = sk_##evp##_new(cmp_##evp);                   \
41
11
        evp##_do_all_provided(libctx, collect_##evp, name##_collection); \
42
11
    }                                                                    \
43
    static void cleanup_##name(void)                                     \
44
0
    {                                                                    \
45
0
        sk_##evp##_pop_free(name##_collection, evp##_free);              \
46
0
    }
Unexecuted instantiation: provider.c:cleanup_digests
Unexecuted instantiation: provider.c:cleanup_kdf
Unexecuted instantiation: provider.c:cleanup_cipher
Unexecuted instantiation: provider.c:cleanup_kem
Unexecuted instantiation: provider.c:cleanup_keyexch
Unexecuted instantiation: provider.c:cleanup_rand
Unexecuted instantiation: provider.c:cleanup_mac
Unexecuted instantiation: provider.c:cleanup_keymgmt
Unexecuted instantiation: provider.c:cleanup_signature
Unexecuted instantiation: provider.c:cleanup_asym_ciphers
47
48
DEFINE_ALGORITHMS(digests, EVP_MD)
49
50
DEFINE_ALGORITHMS(kdf, EVP_KDF)
51
52
DEFINE_ALGORITHMS(cipher, EVP_CIPHER)
53
54
DEFINE_ALGORITHMS(kem, EVP_KEM)
55
56
DEFINE_ALGORITHMS(keyexch, EVP_KEYEXCH)
57
58
DEFINE_ALGORITHMS(rand, EVP_RAND)
59
60
DEFINE_ALGORITHMS(mac, EVP_MAC)
61
62
DEFINE_ALGORITHMS(keymgmt, EVP_KEYMGMT)
63
64
DEFINE_ALGORITHMS(signature, EVP_SIGNATURE)
65
66
DEFINE_ALGORITHMS(asym_ciphers, EVP_ASYM_CIPHER)
67
68
static OSSL_LIB_CTX *libctx = NULL;
69
70
int FuzzerInitialize(int *argc, char ***argv)
71
28
{
72
28
    libctx = OSSL_LIB_CTX_new();
73
28
    if (libctx == NULL)
74
0
        return 0;
75
76
28
    init_digests(libctx);
77
28
    init_kdf(libctx);
78
28
    init_cipher(libctx);
79
28
    init_kem(libctx);
80
28
    init_keyexch(libctx);
81
28
    init_rand(libctx);
82
28
    init_mac(libctx);
83
28
    init_keymgmt(libctx);
84
28
    init_signature(libctx);
85
28
    init_asym_ciphers(libctx);
86
28
    return 1;
87
28
}
88
89
void FuzzerCleanup(void)
90
0
{
91
0
    cleanup_digests();
92
0
    cleanup_kdf();
93
0
    cleanup_cipher();
94
0
    cleanup_kem();
95
0
    cleanup_keyexch();
96
0
    cleanup_rand();
97
0
    cleanup_mac();
98
0
    cleanup_keymgmt();
99
0
    cleanup_signature();
100
0
    cleanup_asym_ciphers();
101
102
0
    OSSL_LIB_CTX_free(libctx);
103
0
}
104
105
static int read_uint(const uint8_t **buf, size_t *len, uint64_t **res)
106
11.3k
{
107
11.3k
    int r = 1;
108
109
11.3k
    if (*len < sizeof(uint64_t)) {
110
168
        r = 0;
111
168
        goto end;
112
168
    }
113
114
11.2k
    *res = OPENSSL_malloc(sizeof(uint64_t));
115
11.2k
    **res = (uint64_t)**buf;
116
117
11.2k
    *buf += sizeof(uint64_t);
118
11.2k
    *len -= sizeof(uint64_t);
119
11.3k
end:
120
11.3k
    return r;
121
11.2k
}
122
123
static int read_int(const uint8_t **buf, size_t *len, int64_t **res)
124
51.7k
{
125
51.7k
    int r = 1;
126
127
51.7k
    if (*len < sizeof(int64_t)) {
128
13.5k
        r = 0;
129
13.5k
        goto end;
130
13.5k
    }
131
132
38.2k
    *res = OPENSSL_malloc(sizeof(int64_t));
133
38.2k
    **res = (int64_t)**buf;
134
135
38.2k
    *buf += sizeof(int64_t);
136
38.2k
    *len -= sizeof(int64_t);
137
51.7k
end:
138
51.7k
    return r;
139
38.2k
}
140
141
static int read_double(const uint8_t **buf, size_t *len, double **res)
142
0
{
143
0
    int r = 1;
144
145
0
    if (*len < sizeof(double)) {
146
0
        r = 0;
147
0
        goto end;
148
0
    }
149
150
0
    *res = OPENSSL_malloc(sizeof(double));
151
0
    **res = (double)**buf;
152
153
0
    *buf += sizeof(double);
154
0
    *len -= sizeof(double);
155
0
end:
156
0
    return r;
157
0
}
158
159
static int read_utf8_string(const uint8_t **buf, size_t *len, char **res)
160
16.6k
{
161
16.6k
    size_t found_len;
162
16.6k
    int r;
163
164
16.6k
    found_len = OPENSSL_strnlen((const char *)*buf, *len);
165
166
16.6k
    if (found_len == *len) {
167
1.29k
        r = -1;
168
1.29k
        goto end;
169
1.29k
    }
170
171
15.3k
    found_len++; /* skip over the \0 byte */
172
173
15.3k
    r = (int)found_len;
174
175
15.3k
    *res = (char *)*buf;
176
15.3k
    *len -= found_len;
177
15.3k
    *buf = *buf + found_len; /* continue after the \0 byte */
178
16.6k
end:
179
16.6k
    return r;
180
15.3k
}
181
182
static int read_utf8_ptr(const uint8_t **buf, size_t *len, char **res)
183
0
{
184
0
    if (*len > 0 && **buf == 0xFF) {
185
        /* represent NULL somehow */
186
0
        *res = NULL;
187
0
        *buf += 1;
188
0
        *len -= 1;
189
0
        return 0;
190
0
    }
191
0
    return read_utf8_string(buf, len, res);
192
0
}
193
194
static int read_octet_string(const uint8_t **buf, size_t *len, char **res)
195
15.8k
{
196
15.8k
    int r;
197
15.8k
    size_t i;
198
15.8k
    const uint8_t *ptr = *buf;
199
15.8k
    int found = 0;
200
201
203M
    for (i = 0; i < *len; ++i) {
202
203M
        if (*ptr == 0xFF && (i + 1 < *len && *(ptr + 1) == 0xFF)) {
203
11.6k
            ptr++;
204
11.6k
            found = 1;
205
11.6k
            break;
206
11.6k
        }
207
203M
        ptr++;
208
203M
    }
209
210
15.8k
    if (!found) {
211
4.19k
        r = -1;
212
4.19k
        goto end;
213
4.19k
    }
214
215
11.6k
    *res = (char *)*buf;
216
217
11.6k
    r = ptr - *buf;
218
11.6k
    *len -= r;
219
11.6k
    *buf = ptr;
220
221
15.8k
end:
222
15.8k
    return r;
223
11.6k
}
224
225
static int read_octet_ptr(const uint8_t **buf, size_t *len, char **res)
226
0
{
227
    /* TODO: This representation could need an improvement potentially. */
228
0
    if (*len > 1 && **buf == 0xFF && *(*buf + 1) == 0xFF) {
229
        /* represent NULL somehow */
230
0
        *res = NULL;
231
0
        *buf += 2;
232
0
        *len -= 2;
233
0
        return 0;
234
0
    }
235
0
    return read_octet_string(buf, len, res);
236
0
}
237
238
static char *DFLT_STR = "";
239
static char *DFLT_UTF8_PTR = NULL;
240
static char *DFLT_OCTET_STRING = "";
241
static char *DFLT_OCTET_PTR = NULL;
242
243
static int64_t ITERS = 1;
244
static uint64_t UITERS = 1;
245
static int64_t BLOCKSIZE = 8;
246
static uint64_t UBLOCKSIZE = 8;
247
248
static void free_params(OSSL_PARAM *param)
249
11.5k
{
250
76.7k
    for (; param != NULL && param->key != NULL; param++) {
251
65.2k
        switch (param->data_type) {
252
4.59k
        case OSSL_PARAM_INTEGER:
253
18.4k
        case OSSL_PARAM_UNSIGNED_INTEGER:
254
18.4k
        case OSSL_PARAM_REAL:
255
18.4k
            if (param->data != NULL) {
256
18.4k
                OPENSSL_free(param->data);
257
18.4k
            }
258
18.4k
            break;
259
65.2k
        }
260
65.2k
    }
261
11.5k
}
262
263
static OSSL_PARAM *fuzz_params(OSSL_PARAM *param, const uint8_t **buf, size_t *len)
264
7.46k
{
265
7.46k
    OSSL_PARAM *p;
266
7.46k
    OSSL_PARAM *fuzzed_parameters;
267
7.46k
    int p_num = 0;
268
269
50.5k
    for (p = param; p != NULL && p->key != NULL; p++)
270
43.1k
        p_num++;
271
272
7.46k
    fuzzed_parameters = OPENSSL_zalloc(sizeof(OSSL_PARAM) * (p_num + 1));
273
7.46k
    p = fuzzed_parameters;
274
275
50.5k
    for (; param != NULL && param->key != NULL; param++) {
276
43.1k
        int64_t *use_param = NULL;
277
43.1k
        int64_t *p_value_int = NULL;
278
43.1k
        uint64_t *p_value_uint = NULL;
279
43.1k
        double *p_value_double = NULL;
280
43.1k
        char *p_value_utf8_str = DFLT_STR;
281
43.1k
        char *p_value_octet_str = DFLT_OCTET_STRING;
282
43.1k
        char *p_value_utf8_ptr = DFLT_UTF8_PTR;
283
43.1k
        char *p_value_octet_ptr = DFLT_OCTET_PTR;
284
285
43.1k
        int data_len = 0;
286
287
43.1k
        if (!read_int(buf, len, &use_param)) {
288
13.4k
            use_param = OPENSSL_malloc(sizeof(uint64_t));
289
13.4k
            *use_param = 0;
290
13.4k
        }
291
292
43.1k
        switch (param->data_type) {
293
3.26k
        case OSSL_PARAM_INTEGER:
294
3.26k
            if (strcmp(param->key, OSSL_KDF_PARAM_ITER) == 0) {
295
0
                p_value_int = OPENSSL_malloc(sizeof(ITERS));
296
0
                *p_value_int = ITERS;
297
3.26k
            } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_N) == 0) {
298
0
                p_value_int = OPENSSL_malloc(sizeof(ITERS));
299
0
                *p_value_int = ITERS;
300
3.26k
            } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_R) == 0) {
301
528
                p_value_int = OPENSSL_malloc(sizeof(BLOCKSIZE));
302
528
                *p_value_int = BLOCKSIZE;
303
2.74k
            } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_P) == 0) {
304
0
                p_value_int = OPENSSL_malloc(sizeof(BLOCKSIZE));
305
0
                *p_value_int = BLOCKSIZE;
306
2.74k
            } else if (!*use_param || !read_int(buf, len, &p_value_int)) {
307
1.66k
                p_value_int = OPENSSL_malloc(sizeof(int64_t));
308
1.66k
                *p_value_int = 0;
309
1.66k
            }
310
311
3.26k
            *p = *param;
312
3.26k
            p->data = p_value_int;
313
3.26k
            p++;
314
3.26k
            break;
315
8.42k
        case OSSL_PARAM_UNSIGNED_INTEGER:
316
8.42k
            if (strcmp(param->key, OSSL_KDF_PARAM_ITER) == 0) {
317
1.18k
                p_value_uint = OPENSSL_malloc(sizeof(UITERS));
318
1.18k
                *p_value_uint = UITERS;
319
7.23k
            } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_N) == 0) {
320
71
                p_value_uint = OPENSSL_malloc(sizeof(UITERS));
321
71
                *p_value_uint = UITERS;
322
7.16k
            } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_R) == 0) {
323
71
                p_value_uint = OPENSSL_malloc(sizeof(UBLOCKSIZE));
324
71
                *p_value_uint = UBLOCKSIZE;
325
7.09k
            } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_P) == 0) {
326
71
                p_value_uint = OPENSSL_malloc(sizeof(UBLOCKSIZE));
327
71
                *p_value_uint = UBLOCKSIZE;
328
7.02k
            } else if (!*use_param || !read_uint(buf, len, &p_value_uint)) {
329
3.28k
                p_value_uint = OPENSSL_malloc(sizeof(uint64_t));
330
3.28k
                *p_value_uint = 0;
331
3.28k
            }
332
333
8.42k
            *p = *param;
334
8.42k
            p->data = p_value_uint;
335
8.42k
            p++;
336
8.42k
            break;
337
0
        case OSSL_PARAM_REAL:
338
0
            if (!*use_param || !read_double(buf, len, &p_value_double)) {
339
0
                p_value_double = OPENSSL_malloc(sizeof(double));
340
0
                *p_value_double = 0;
341
0
            }
342
343
0
            *p = *param;
344
0
            p->data = p_value_double;
345
0
            p++;
346
0
            break;
347
14.7k
        case OSSL_PARAM_UTF8_STRING:
348
14.7k
            if (*use_param && (data_len = read_utf8_string(buf, len, &p_value_utf8_str)) < 0)
349
808
                data_len = 0;
350
14.7k
            *p = *param;
351
14.7k
            p->data = p_value_utf8_str;
352
14.7k
            p->data_size = data_len;
353
14.7k
            p++;
354
14.7k
            break;
355
16.6k
        case OSSL_PARAM_OCTET_STRING:
356
16.6k
            if (*use_param && (data_len = read_octet_string(buf, len, &p_value_octet_str)) < 0)
357
2.85k
                data_len = 0;
358
16.6k
            *p = *param;
359
16.6k
            p->data = p_value_octet_str;
360
16.6k
            p->data_size = data_len;
361
16.6k
            p++;
362
16.6k
            break;
363
0
        case OSSL_PARAM_UTF8_PTR:
364
0
            if (*use_param && (data_len = read_utf8_ptr(buf, len, &p_value_utf8_ptr)) < 0)
365
0
                data_len = 0;
366
0
            *p = *param;
367
0
            p->data = p_value_utf8_ptr;
368
0
            p->data_size = data_len;
369
0
            p++;
370
0
            break;
371
0
        case OSSL_PARAM_OCTET_PTR:
372
0
            if (*use_param && (data_len = read_octet_ptr(buf, len, &p_value_octet_ptr)) < 0)
373
0
                data_len = 0;
374
0
            *p = *param;
375
0
            p->data = p_value_octet_ptr;
376
0
            p->data_size = data_len;
377
0
            p++;
378
0
            break;
379
0
        default:
380
0
            break;
381
43.1k
        }
382
383
43.1k
        OPENSSL_free(use_param);
384
43.1k
    }
385
386
7.46k
    return fuzzed_parameters;
387
7.46k
}
388
389
static int do_evp_cipher(const EVP_CIPHER *evp_cipher, const OSSL_PARAM param[])
390
119
{
391
119
    unsigned char outbuf[1024];
392
119
    int outlen, tmplen;
393
119
    unsigned char key[] = { 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15 };
394
119
    unsigned char iv[] = { 1, 2, 3, 4, 5, 6, 7, 8 };
395
119
    const char intext[] = "text";
396
119
    EVP_CIPHER_CTX *ctx;
397
398
119
    ctx = EVP_CIPHER_CTX_new();
399
400
119
    if (!EVP_CIPHER_CTX_set_params(ctx, param)) {
401
119
        EVP_CIPHER_CTX_free(ctx);
402
119
        return 0;
403
119
    }
404
405
0
    if (!EVP_EncryptInit_ex2(ctx, evp_cipher, key, iv, NULL)) {
406
        /* Error */
407
0
        EVP_CIPHER_CTX_free(ctx);
408
0
        return 0;
409
0
    }
410
411
0
    if (!EVP_EncryptUpdate(ctx, outbuf, &outlen, (const unsigned char *)intext, strlen(intext))) {
412
        /* Error */
413
0
        EVP_CIPHER_CTX_free(ctx);
414
0
        return 0;
415
0
    }
416
    /*
417
     * Buffer passed to EVP_EncryptFinal() must be after data just
418
     * encrypted to avoid overwriting it.
419
     */
420
0
    if (!EVP_EncryptFinal_ex(ctx, outbuf + outlen, &tmplen)) {
421
        /* Error */
422
0
        EVP_CIPHER_CTX_free(ctx);
423
0
        return 0;
424
0
    }
425
0
    outlen += tmplen;
426
0
    EVP_CIPHER_CTX_free(ctx);
427
0
    return 1;
428
0
}
429
430
static int do_evp_kdf(EVP_KDF *evp_kdf, const OSSL_PARAM params[])
431
7.23k
{
432
7.23k
    int r = 1;
433
7.23k
    EVP_KDF_CTX *kctx = NULL;
434
7.23k
    unsigned char derived[32];
435
436
7.23k
    kctx = EVP_KDF_CTX_new(evp_kdf);
437
438
7.23k
    if (kctx == NULL) {
439
0
        r = 0;
440
0
        goto end;
441
0
    }
442
443
7.23k
    if (EVP_KDF_CTX_set_params(kctx, params) <= 0) {
444
2.92k
        r = 0;
445
2.92k
        goto end;
446
2.92k
    }
447
448
4.30k
    if (EVP_KDF_derive(kctx, derived, sizeof(derived), NULL) <= 0) {
449
1.17k
        r = 0;
450
1.17k
        goto end;
451
1.17k
    }
452
453
7.23k
end:
454
7.23k
    EVP_KDF_CTX_free(kctx);
455
7.23k
    return r;
456
4.30k
}
457
458
static int do_evp_mac(EVP_MAC *evp_mac, const OSSL_PARAM params[])
459
2.03k
{
460
2.03k
    int r = 1;
461
2.03k
    const char *key = "mac_key";
462
2.03k
    char text[] = "Some Crypto Text";
463
2.03k
    EVP_MAC_CTX *ctx = NULL;
464
2.03k
    unsigned char buf[4096];
465
2.03k
    size_t final_l;
466
467
2.03k
    if ((ctx = EVP_MAC_CTX_new(evp_mac)) == NULL
468
2.03k
        || !EVP_MAC_init(ctx, (const unsigned char *)key, strlen(key),
469
2.03k
            params)) {
470
1.22k
        r = 0;
471
1.22k
        goto end;
472
1.22k
    }
473
474
815
    if (EVP_MAC_CTX_set_params(ctx, params) <= 0) {
475
0
        r = 0;
476
0
        goto end;
477
0
    }
478
479
815
    if (!EVP_MAC_update(ctx, (unsigned char *)text, sizeof(text))) {
480
102
        r = 0;
481
102
        goto end;
482
102
    }
483
484
713
    if (!EVP_MAC_final(ctx, buf, &final_l, sizeof(buf))) {
485
0
        r = 0;
486
0
        goto end;
487
0
    }
488
489
2.03k
end:
490
2.03k
    EVP_MAC_CTX_free(ctx);
491
2.03k
    return r;
492
713
}
493
494
static int do_evp_rand(EVP_RAND *evp_rand, const OSSL_PARAM params[])
495
1.31k
{
496
1.31k
    int r = 1;
497
1.31k
    EVP_RAND_CTX *ctx = NULL;
498
1.31k
    unsigned char buf[4096];
499
500
1.31k
    if (!(ctx = EVP_RAND_CTX_new(evp_rand, NULL))) {
501
0
        r = 0;
502
0
        goto end;
503
0
    }
504
505
1.31k
    if (EVP_RAND_CTX_set_params(ctx, params) <= 0) {
506
392
        r = 0;
507
392
        goto end;
508
392
    }
509
510
919
    if (!EVP_RAND_generate(ctx, buf, sizeof(buf), 0, 0, NULL, 0)) {
511
207
        r = 0;
512
207
        goto end;
513
207
    }
514
515
712
    if (!EVP_RAND_reseed(ctx, 0, 0, 0, NULL, 0)) {
516
0
        r = 0;
517
0
        goto end;
518
0
    }
519
520
1.31k
end:
521
1.31k
    EVP_RAND_CTX_free(ctx);
522
1.31k
    return r;
523
712
}
524
525
static int do_evp_sig(EVP_SIGNATURE *evp_sig, const OSSL_PARAM params[])
526
155
{
527
155
    return 0;
528
155
}
529
530
static int do_evp_asym_cipher(EVP_ASYM_CIPHER *evp_asym_cipher, const OSSL_PARAM params[])
531
34
{
532
34
    return 0;
533
34
}
534
535
static int do_evp_kem(EVP_KEM *evp_kem, const OSSL_PARAM params[])
536
67
{
537
67
    return 0;
538
67
}
539
540
static int do_evp_key_exch(EVP_KEYEXCH *evp_kdf, const OSSL_PARAM params[])
541
121
{
542
121
    return 0;
543
121
}
544
545
static int do_evp_md(EVP_MD *evp_md, const OSSL_PARAM params[])
546
168
{
547
168
    int r = 1;
548
168
    unsigned char md_value[EVP_MAX_MD_SIZE];
549
168
    unsigned int md_len;
550
168
    EVP_MD_CTX *mdctx = NULL;
551
552
168
    if (!(mdctx = EVP_MD_CTX_new())) {
553
0
        r = 0;
554
0
        goto end;
555
0
    }
556
557
168
    if (!EVP_MD_CTX_set_params(mdctx, params)) {
558
74
        r = 0;
559
74
        goto end;
560
74
    }
561
562
94
    if (!EVP_DigestInit_ex2(mdctx, evp_md, NULL)) {
563
71
        r = 0;
564
71
        goto end;
565
71
    }
566
23
    if (!EVP_DigestUpdate(mdctx, "Test", strlen("Test"))) {
567
0
        r = 0;
568
0
        goto end;
569
0
    }
570
23
    if (!EVP_DigestFinal_ex(mdctx, md_value, &md_len)) {
571
19
        r = 0;
572
19
        goto end;
573
19
    }
574
575
168
end:
576
168
    EVP_MD_CTX_free(mdctx);
577
168
    return r;
578
23
}
579
580
#define EVP_FUZZ(source, evp, f)                                                               \
581
11.5k
    do {                                                                                       \
582
11.5k
        evp *alg = sk_##evp##_value(source, *algorithm % sk_##evp##_num(source));              \
583
11.5k
        OSSL_PARAM *fuzzed_params;                                                             \
584
11.5k
                                                                                               \
585
11.5k
        if (alg == NULL)                                                                       \
586
11.5k
            break;                                                                             \
587
11.5k
        fuzzed_params = fuzz_params((OSSL_PARAM *)evp##_settable_ctx_params(alg), &buf, &len); \
588
11.5k
        if (fuzzed_params != NULL)                                                             \
589
11.5k
            f(alg, fuzzed_params);                                                             \
590
11.5k
        free_params(fuzzed_params);                                                            \
591
11.5k
        OSSL_PARAM_free(fuzzed_params);                                                        \
592
11.5k
    } while (0);
593
594
int FuzzerTestOneInput(const uint8_t *buf, size_t len)
595
11.5k
{
596
11.5k
    int r = 1;
597
11.5k
    uint64_t *operation = NULL;
598
11.5k
    int64_t *algorithm = NULL;
599
600
11.5k
    if (!read_uint(&buf, &len, &operation)) {
601
20
        r = 0;
602
20
        goto end;
603
20
    }
604
605
11.5k
    if (!read_int(&buf, &len, &algorithm)) {
606
25
        r = 0;
607
25
        goto end;
608
25
    }
609
610
11.5k
    switch (*operation % 10) {
611
168
    case 0:
612
168
        EVP_FUZZ(digests_collection, EVP_MD, do_evp_md);
613
168
        break;
614
397
    case 1:
615
397
        EVP_FUZZ(cipher_collection, EVP_CIPHER, do_evp_cipher);
616
397
        break;
617
7.23k
    case 2:
618
7.23k
        EVP_FUZZ(kdf_collection, EVP_KDF, do_evp_kdf);
619
7.23k
        break;
620
2.03k
    case 3:
621
2.03k
        EVP_FUZZ(mac_collection, EVP_MAC, do_evp_mac);
622
2.03k
        break;
623
67
    case 4:
624
67
        EVP_FUZZ(kem_collection, EVP_KEM, do_evp_kem);
625
67
        break;
626
1.31k
    case 5:
627
1.31k
        EVP_FUZZ(rand_collection, EVP_RAND, do_evp_rand);
628
1.31k
        break;
629
34
    case 6:
630
34
        EVP_FUZZ(asym_ciphers_collection, EVP_ASYM_CIPHER, do_evp_asym_cipher);
631
34
        break;
632
155
    case 7:
633
155
        EVP_FUZZ(signature_collection, EVP_SIGNATURE, do_evp_sig);
634
155
        break;
635
121
    case 8:
636
121
        EVP_FUZZ(keyexch_collection, EVP_KEYEXCH, do_evp_key_exch);
637
121
        break;
638
5
    case 9:
639
        /*
640
        Implement and call:
641
        static int do_evp_keymgmt(EVP_KEYMGMT *evp_kdf, const OSSL_PARAM params[])
642
        {
643
            return 0;
644
        }
645
        */
646
        /* not yet implemented */
647
5
        break;
648
0
    default:
649
0
        r = 0;
650
0
        goto end;
651
11.5k
    }
652
653
11.5k
end:
654
11.5k
    OPENSSL_free(operation);
655
11.5k
    OPENSSL_free(algorithm);
656
11.5k
    return r;
657
11.5k
}