/src/openssl40/fuzz/provider.c
Line | Count | Source |
1 | | /* |
2 | | * Copyright 2023-2026 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 | } \ 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 | } \ |
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 | } \ |
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 | } \ |
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 | } \ |
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 | 2.81k | { \ |
33 | 2.81k | STACK_OF(evp) *obj_stack = stack; \ |
34 | 2.81k | \ |
35 | 2.81k | if (!evp##_up_ref(obj)) \ |
36 | 2.81k | return; \ |
37 | 2.81k | \ |
38 | 2.81k | if (sk_##evp##_push(obj_stack, obj) <= 0) \ |
39 | 2.81k | evp##_free(obj); \ |
40 | 2.81k | } \ provider.c:collect_EVP_MD Line | Count | Source | 32 | 258 | { \ | 33 | 258 | STACK_OF(evp) *obj_stack = stack; \ | 34 | 258 | \ | 35 | 258 | if (!evp##_up_ref(obj)) \ | 36 | 258 | return; \ | 37 | 258 | \ | 38 | 258 | if (sk_##evp##_push(obj_stack, obj) <= 0) \ | 39 | 258 | evp##_free(obj); \ | 40 | 258 | } \ |
provider.c:collect_EVP_KDF Line | Count | Source | 32 | 178 | { \ | 33 | 178 | STACK_OF(evp) *obj_stack = stack; \ | 34 | 178 | \ | 35 | 178 | if (!evp##_up_ref(obj)) \ | 36 | 178 | return; \ | 37 | 178 | \ | 38 | 178 | if (sk_##evp##_push(obj_stack, obj) <= 0) \ | 39 | 178 | evp##_free(obj); \ | 40 | 178 | } \ |
provider.c:collect_EVP_CIPHER Line | Count | Source | 32 | 1.17k | { \ | 33 | 1.17k | STACK_OF(evp) *obj_stack = stack; \ | 34 | 1.17k | \ | 35 | 1.17k | if (!evp##_up_ref(obj)) \ | 36 | 1.17k | return; \ | 37 | 1.17k | \ | 38 | 1.17k | if (sk_##evp##_push(obj_stack, obj) <= 0) \ | 39 | 1.17k | evp##_free(obj); \ | 40 | 1.17k | } \ |
provider.c:collect_EVP_KEM Line | Count | Source | 32 | 104 | { \ | 33 | 104 | STACK_OF(evp) *obj_stack = stack; \ | 34 | 104 | \ | 35 | 104 | if (!evp##_up_ref(obj)) \ | 36 | 104 | return; \ | 37 | 104 | \ | 38 | 104 | if (sk_##evp##_push(obj_stack, obj) <= 0) \ | 39 | 104 | evp##_free(obj); \ | 40 | 104 | } \ |
provider.c:collect_EVP_KEYEXCH Line | Count | Source | 32 | 63 | { \ | 33 | 63 | STACK_OF(evp) *obj_stack = stack; \ | 34 | 63 | \ | 35 | 63 | if (!evp##_up_ref(obj)) \ | 36 | 63 | return; \ | 37 | 63 | \ | 38 | 63 | if (sk_##evp##_push(obj_stack, obj) <= 0) \ | 39 | 63 | evp##_free(obj); \ | 40 | 63 | } \ |
provider.c:collect_EVP_RAND Line | Count | Source | 32 | 45 | { \ | 33 | 45 | STACK_OF(evp) *obj_stack = stack; \ | 34 | 45 | \ | 35 | 45 | if (!evp##_up_ref(obj)) \ | 36 | 45 | return; \ | 37 | 45 | \ | 38 | 45 | if (sk_##evp##_push(obj_stack, obj) <= 0) \ | 39 | 45 | evp##_free(obj); \ | 40 | 45 | } \ |
provider.c:collect_EVP_MAC Line | Count | Source | 32 | 81 | { \ | 33 | 81 | STACK_OF(evp) *obj_stack = stack; \ | 34 | 81 | \ | 35 | 81 | if (!evp##_up_ref(obj)) \ | 36 | 81 | return; \ | 37 | 81 | \ | 38 | 81 | if (sk_##evp##_push(obj_stack, obj) <= 0) \ | 39 | 81 | evp##_free(obj); \ | 40 | 81 | } \ |
provider.c:collect_EVP_KEYMGMT Line | Count | Source | 32 | 370 | { \ | 33 | 370 | STACK_OF(evp) *obj_stack = stack; \ | 34 | 370 | \ | 35 | 370 | if (!evp##_up_ref(obj)) \ | 36 | 370 | return; \ | 37 | 370 | \ | 38 | 370 | if (sk_##evp##_push(obj_stack, obj) <= 0) \ | 39 | 370 | evp##_free(obj); \ | 40 | 370 | } \ |
provider.c:collect_EVP_SIGNATURE Line | Count | Source | 32 | 531 | { \ | 33 | 531 | STACK_OF(evp) *obj_stack = stack; \ | 34 | 531 | \ | 35 | 531 | if (!evp##_up_ref(obj)) \ | 36 | 531 | return; \ | 37 | 531 | \ | 38 | 531 | if (sk_##evp##_push(obj_stack, obj) <= 0) \ | 39 | 531 | evp##_free(obj); \ | 40 | 531 | } \ |
provider.c:collect_EVP_ASYM_CIPHER Line | Count | Source | 32 | 18 | { \ | 33 | 18 | STACK_OF(evp) *obj_stack = stack; \ | 34 | 18 | \ | 35 | 18 | if (!evp##_up_ref(obj)) \ | 36 | 18 | return; \ | 37 | 18 | \ | 38 | 18 | if (sk_##evp##_push(obj_stack, obj) <= 0) \ | 39 | 18 | evp##_free(obj); \ | 40 | 18 | } \ |
|
41 | | static void init_##name(OSSL_LIB_CTX *libctx) \ |
42 | 110 | { \ |
43 | 110 | name##_collection = sk_##evp##_new(cmp_##evp); \ |
44 | 110 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ |
45 | 110 | } \ Line | Count | Source | 42 | 11 | { \ | 43 | 11 | name##_collection = sk_##evp##_new(cmp_##evp); \ | 44 | 11 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ | 45 | 11 | } \ |
Line | Count | Source | 42 | 11 | { \ | 43 | 11 | name##_collection = sk_##evp##_new(cmp_##evp); \ | 44 | 11 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ | 45 | 11 | } \ |
Line | Count | Source | 42 | 11 | { \ | 43 | 11 | name##_collection = sk_##evp##_new(cmp_##evp); \ | 44 | 11 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ | 45 | 11 | } \ |
Line | Count | Source | 42 | 11 | { \ | 43 | 11 | name##_collection = sk_##evp##_new(cmp_##evp); \ | 44 | 11 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ | 45 | 11 | } \ |
Line | Count | Source | 42 | 11 | { \ | 43 | 11 | name##_collection = sk_##evp##_new(cmp_##evp); \ | 44 | 11 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ | 45 | 11 | } \ |
Line | Count | Source | 42 | 11 | { \ | 43 | 11 | name##_collection = sk_##evp##_new(cmp_##evp); \ | 44 | 11 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ | 45 | 11 | } \ |
Line | Count | Source | 42 | 11 | { \ | 43 | 11 | name##_collection = sk_##evp##_new(cmp_##evp); \ | 44 | 11 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ | 45 | 11 | } \ |
Line | Count | Source | 42 | 11 | { \ | 43 | 11 | name##_collection = sk_##evp##_new(cmp_##evp); \ | 44 | 11 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ | 45 | 11 | } \ |
provider.c:init_signature Line | Count | Source | 42 | 11 | { \ | 43 | 11 | name##_collection = sk_##evp##_new(cmp_##evp); \ | 44 | 11 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ | 45 | 11 | } \ |
provider.c:init_asym_ciphers Line | Count | Source | 42 | 11 | { \ | 43 | 11 | name##_collection = sk_##evp##_new(cmp_##evp); \ | 44 | 11 | evp##_do_all_provided(libctx, collect_##evp, name##_collection); \ | 45 | 11 | } \ |
|
46 | | static void cleanup_##name(void) \ |
47 | 0 | { \ |
48 | 0 | sk_##evp##_pop_free(name##_collection, evp##_free); \ |
49 | 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 |
50 | | |
51 | | DEFINE_ALGORITHMS(digests, EVP_MD) |
52 | | |
53 | | DEFINE_ALGORITHMS(kdf, EVP_KDF) |
54 | | |
55 | | DEFINE_ALGORITHMS(cipher, EVP_CIPHER) |
56 | | |
57 | | DEFINE_ALGORITHMS(kem, EVP_KEM) |
58 | | |
59 | | DEFINE_ALGORITHMS(keyexch, EVP_KEYEXCH) |
60 | | |
61 | | DEFINE_ALGORITHMS(rand, EVP_RAND) |
62 | | |
63 | | DEFINE_ALGORITHMS(mac, EVP_MAC) |
64 | | |
65 | | DEFINE_ALGORITHMS(keymgmt, EVP_KEYMGMT) |
66 | | |
67 | | DEFINE_ALGORITHMS(signature, EVP_SIGNATURE) |
68 | | |
69 | | DEFINE_ALGORITHMS(asym_ciphers, EVP_ASYM_CIPHER) |
70 | | |
71 | | static OSSL_LIB_CTX *libctx = NULL; |
72 | | |
73 | | int FuzzerInitialize(int *argc, char ***argv) |
74 | 28 | { |
75 | 28 | libctx = OSSL_LIB_CTX_new(); |
76 | 28 | if (libctx == NULL) |
77 | 0 | return 0; |
78 | | |
79 | 28 | init_digests(libctx); |
80 | 28 | init_kdf(libctx); |
81 | 28 | init_cipher(libctx); |
82 | 28 | init_kem(libctx); |
83 | 28 | init_keyexch(libctx); |
84 | 28 | init_rand(libctx); |
85 | 28 | init_mac(libctx); |
86 | 28 | init_keymgmt(libctx); |
87 | 28 | init_signature(libctx); |
88 | 28 | init_asym_ciphers(libctx); |
89 | 28 | return 1; |
90 | 28 | } |
91 | | |
92 | | void FuzzerCleanup(void) |
93 | 0 | { |
94 | 0 | cleanup_digests(); |
95 | 0 | cleanup_kdf(); |
96 | 0 | cleanup_cipher(); |
97 | 0 | cleanup_kem(); |
98 | 0 | cleanup_keyexch(); |
99 | 0 | cleanup_rand(); |
100 | 0 | cleanup_mac(); |
101 | 0 | cleanup_keymgmt(); |
102 | 0 | cleanup_signature(); |
103 | 0 | cleanup_asym_ciphers(); |
104 | |
|
105 | 0 | OSSL_LIB_CTX_free(libctx); |
106 | 0 | } |
107 | | |
108 | | static int read_uint(const uint8_t **buf, size_t *len, uint64_t **res) |
109 | 6.34k | { |
110 | 6.34k | int r = 1; |
111 | | |
112 | 6.34k | if (*len < sizeof(uint64_t)) { |
113 | 150 | r = 0; |
114 | 150 | goto end; |
115 | 150 | } |
116 | | |
117 | 6.19k | *res = OPENSSL_malloc(sizeof(uint64_t)); |
118 | 6.19k | if (*res == NULL) { |
119 | 0 | r = 0; |
120 | 0 | goto end; |
121 | 0 | } |
122 | 6.19k | **res = (uint64_t)**buf; |
123 | | |
124 | 6.19k | *buf += sizeof(uint64_t); |
125 | 6.19k | *len -= sizeof(uint64_t); |
126 | 6.34k | end: |
127 | 6.34k | return r; |
128 | 6.19k | } |
129 | | |
130 | | static int read_int(const uint8_t **buf, size_t *len, int64_t **res) |
131 | 26.7k | { |
132 | 26.7k | int r = 1; |
133 | | |
134 | 26.7k | if (*len < sizeof(int64_t)) { |
135 | 6.33k | r = 0; |
136 | 6.33k | goto end; |
137 | 6.33k | } |
138 | | |
139 | 20.4k | *res = OPENSSL_malloc(sizeof(int64_t)); |
140 | 20.4k | if (*res == NULL) { |
141 | 0 | r = 0; |
142 | 0 | goto end; |
143 | 0 | } |
144 | 20.4k | **res = (int64_t)**buf; |
145 | | |
146 | 20.4k | *buf += sizeof(int64_t); |
147 | 20.4k | *len -= sizeof(int64_t); |
148 | 26.7k | end: |
149 | 26.7k | return r; |
150 | 20.4k | } |
151 | | |
152 | | static int read_double(const uint8_t **buf, size_t *len, double **res) |
153 | 0 | { |
154 | 0 | int r = 1; |
155 | |
|
156 | 0 | if (*len < sizeof(double)) { |
157 | 0 | r = 0; |
158 | 0 | goto end; |
159 | 0 | } |
160 | | |
161 | 0 | *res = OPENSSL_malloc(sizeof(double)); |
162 | 0 | if (*res == NULL) { |
163 | 0 | r = 0; |
164 | 0 | goto end; |
165 | 0 | } |
166 | 0 | **res = (double)**buf; |
167 | |
|
168 | 0 | *buf += sizeof(double); |
169 | 0 | *len -= sizeof(double); |
170 | 0 | end: |
171 | 0 | return r; |
172 | 0 | } |
173 | | |
174 | | static int read_utf8_string(const uint8_t **buf, size_t *len, char **res) |
175 | 16.6k | { |
176 | 16.6k | size_t found_len; |
177 | 16.6k | int r; |
178 | | |
179 | 16.6k | found_len = OPENSSL_strnlen((const char *)*buf, *len); |
180 | | |
181 | 16.6k | if (found_len == *len) { |
182 | 1.29k | r = -1; |
183 | 1.29k | goto end; |
184 | 1.29k | } |
185 | | |
186 | 15.3k | found_len++; /* skip over the \0 byte */ |
187 | | |
188 | 15.3k | r = (int)found_len; |
189 | | |
190 | 15.3k | *res = (char *)*buf; |
191 | 15.3k | *len -= found_len; |
192 | 15.3k | *buf = *buf + found_len; /* continue after the \0 byte */ |
193 | 16.6k | end: |
194 | 16.6k | return r; |
195 | 15.3k | } |
196 | | |
197 | | static int read_utf8_ptr(const uint8_t **buf, size_t *len, char **res) |
198 | 0 | { |
199 | 0 | if (*len > 0 && **buf == 0xFF) { |
200 | | /* represent NULL somehow */ |
201 | 0 | *res = NULL; |
202 | 0 | *buf += 1; |
203 | 0 | *len -= 1; |
204 | 0 | return 0; |
205 | 0 | } |
206 | 0 | return read_utf8_string(buf, len, res); |
207 | 0 | } |
208 | | |
209 | | static int read_octet_string(const uint8_t **buf, size_t *len, char **res) |
210 | 15.8k | { |
211 | 15.8k | int r; |
212 | 15.8k | size_t i; |
213 | 15.8k | const uint8_t *ptr = *buf; |
214 | 15.8k | int found = 0; |
215 | | |
216 | 203M | for (i = 0; i < *len; ++i) { |
217 | 203M | if (*ptr == 0xFF && (i + 1 < *len && *(ptr + 1) == 0xFF)) { |
218 | 11.6k | ptr++; |
219 | 11.6k | found = 1; |
220 | 11.6k | break; |
221 | 11.6k | } |
222 | 203M | ptr++; |
223 | 203M | } |
224 | | |
225 | 15.8k | if (!found) { |
226 | 4.19k | r = -1; |
227 | 4.19k | goto end; |
228 | 4.19k | } |
229 | | |
230 | 11.6k | *res = (char *)*buf; |
231 | | |
232 | 11.6k | r = (int)(ptr - *buf); |
233 | 11.6k | *len -= r; |
234 | 11.6k | *buf = ptr; |
235 | | |
236 | 15.8k | end: |
237 | 15.8k | return r; |
238 | 11.6k | } |
239 | | |
240 | | static int read_octet_ptr(const uint8_t **buf, size_t *len, char **res) |
241 | 0 | { |
242 | | /* TODO: This representation could need an improvement potentially. */ |
243 | 0 | if (*len > 1 && **buf == 0xFF && *(*buf + 1) == 0xFF) { |
244 | | /* represent NULL somehow */ |
245 | 0 | *res = NULL; |
246 | 0 | *buf += 2; |
247 | 0 | *len -= 2; |
248 | 0 | return 0; |
249 | 0 | } |
250 | 0 | return read_octet_string(buf, len, res); |
251 | 0 | } |
252 | | |
253 | | static char *DFLT_STR = ""; |
254 | | static char *DFLT_UTF8_PTR = NULL; |
255 | | static char *DFLT_OCTET_STRING = ""; |
256 | | static char *DFLT_OCTET_PTR = NULL; |
257 | | |
258 | | static int64_t ITERS = 1; |
259 | | static uint64_t UITERS = 1; |
260 | | static int64_t BLOCKSIZE = 8; |
261 | | static uint64_t UBLOCKSIZE = 8; |
262 | | |
263 | | static void free_params(OSSL_PARAM *param) |
264 | 11.5k | { |
265 | 76.7k | for (; param != NULL && param->key != NULL; param++) { |
266 | 65.2k | switch (param->data_type) { |
267 | 4.59k | case OSSL_PARAM_INTEGER: |
268 | 18.4k | case OSSL_PARAM_UNSIGNED_INTEGER: |
269 | 18.4k | case OSSL_PARAM_REAL: |
270 | 18.4k | if (param->data != NULL) { |
271 | 18.4k | OPENSSL_free(param->data); |
272 | 18.4k | } |
273 | 18.4k | break; |
274 | 65.2k | } |
275 | 65.2k | } |
276 | 11.5k | } |
277 | | |
278 | | static OSSL_PARAM *fuzz_params(OSSL_PARAM *param, const uint8_t **buf, size_t *len) |
279 | 4.05k | { |
280 | 4.05k | OSSL_PARAM *p; |
281 | 4.05k | OSSL_PARAM *fuzzed_parameters; |
282 | 4.05k | int p_num = 0; |
283 | | |
284 | 26.1k | for (p = param; p != NULL && p->key != NULL; p++) |
285 | 22.1k | p_num++; |
286 | | |
287 | 4.05k | fuzzed_parameters = OPENSSL_calloc(p_num + 1, sizeof(OSSL_PARAM)); |
288 | 4.05k | if (fuzzed_parameters == NULL) |
289 | 0 | return NULL; |
290 | 4.05k | p = fuzzed_parameters; |
291 | | |
292 | 26.1k | for (; param != NULL && param->key != NULL; param++) { |
293 | 22.1k | int64_t *use_param = NULL; |
294 | 22.1k | int64_t *p_value_int = NULL; |
295 | 22.1k | uint64_t *p_value_uint = NULL; |
296 | 22.1k | double *p_value_double = NULL; |
297 | 22.1k | char *p_value_utf8_str = DFLT_STR; |
298 | 22.1k | char *p_value_octet_str = DFLT_OCTET_STRING; |
299 | 22.1k | char *p_value_utf8_ptr = DFLT_UTF8_PTR; |
300 | 22.1k | char *p_value_octet_ptr = DFLT_OCTET_PTR; |
301 | | |
302 | 22.1k | int data_len = 0; |
303 | | |
304 | 22.1k | if (!read_int(buf, len, &use_param)) { |
305 | 6.28k | use_param = OPENSSL_malloc(sizeof(uint64_t)); |
306 | 6.28k | if (use_param == NULL) { |
307 | 0 | OPENSSL_free(fuzzed_parameters); |
308 | 0 | return NULL; |
309 | 0 | } |
310 | 6.28k | *use_param = 0; |
311 | 6.28k | } |
312 | | |
313 | 22.1k | switch (param->data_type) { |
314 | 1.32k | case OSSL_PARAM_INTEGER: |
315 | 1.32k | if (strcmp(param->key, OSSL_KDF_PARAM_ITER) == 0) { |
316 | 0 | p_value_int = OPENSSL_malloc(sizeof(ITERS)); |
317 | 0 | if (p_value_int == NULL) { |
318 | 0 | OPENSSL_free(fuzzed_parameters); |
319 | 0 | OPENSSL_free(use_param); |
320 | 0 | return NULL; |
321 | 0 | } |
322 | 0 | *p_value_int = ITERS; |
323 | 1.32k | } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_N) == 0) { |
324 | 0 | p_value_int = OPENSSL_malloc(sizeof(ITERS)); |
325 | 0 | if (p_value_int == NULL) { |
326 | 0 | OPENSSL_free(fuzzed_parameters); |
327 | 0 | OPENSSL_free(use_param); |
328 | 0 | return NULL; |
329 | 0 | } |
330 | 0 | *p_value_int = ITERS; |
331 | 1.32k | } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_R) == 0) { |
332 | 203 | p_value_int = OPENSSL_malloc(sizeof(BLOCKSIZE)); |
333 | 203 | if (p_value_int == NULL) { |
334 | 0 | OPENSSL_free(fuzzed_parameters); |
335 | 0 | OPENSSL_free(use_param); |
336 | 0 | return NULL; |
337 | 0 | } |
338 | 203 | *p_value_int = BLOCKSIZE; |
339 | 1.12k | } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_P) == 0) { |
340 | 0 | p_value_int = OPENSSL_malloc(sizeof(BLOCKSIZE)); |
341 | 0 | if (p_value_int == NULL) { |
342 | 0 | OPENSSL_free(fuzzed_parameters); |
343 | 0 | OPENSSL_free(use_param); |
344 | 0 | return NULL; |
345 | 0 | } |
346 | 0 | *p_value_int = BLOCKSIZE; |
347 | 1.12k | } else if (!*use_param || !read_int(buf, len, &p_value_int)) { |
348 | 625 | p_value_int = OPENSSL_malloc(sizeof(int64_t)); |
349 | 625 | if (p_value_int == NULL) { |
350 | 0 | OPENSSL_free(fuzzed_parameters); |
351 | 0 | OPENSSL_free(use_param); |
352 | 0 | return NULL; |
353 | 0 | } |
354 | 625 | *p_value_int = 0; |
355 | 625 | } |
356 | | |
357 | 1.32k | *p = *param; |
358 | 1.32k | p->data = p_value_int; |
359 | 1.32k | p++; |
360 | 1.32k | break; |
361 | 5.44k | case OSSL_PARAM_UNSIGNED_INTEGER: |
362 | 5.44k | if (strcmp(param->key, OSSL_KDF_PARAM_ITER) == 0) { |
363 | 556 | p_value_uint = OPENSSL_malloc(sizeof(UITERS)); |
364 | 556 | if (p_value_uint == NULL) { |
365 | 0 | OPENSSL_free(fuzzed_parameters); |
366 | 0 | OPENSSL_free(use_param); |
367 | 0 | return NULL; |
368 | 0 | } |
369 | 556 | *p_value_uint = UITERS; |
370 | 4.89k | } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_N) == 0) { |
371 | 32 | p_value_uint = OPENSSL_malloc(sizeof(UITERS)); |
372 | 32 | if (p_value_uint == NULL) { |
373 | 0 | OPENSSL_free(fuzzed_parameters); |
374 | 0 | OPENSSL_free(use_param); |
375 | 0 | return NULL; |
376 | 0 | } |
377 | 32 | *p_value_uint = UITERS; |
378 | 4.86k | } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_R) == 0) { |
379 | 32 | p_value_uint = OPENSSL_malloc(sizeof(UBLOCKSIZE)); |
380 | 32 | if (p_value_uint == NULL) { |
381 | 0 | OPENSSL_free(fuzzed_parameters); |
382 | 0 | OPENSSL_free(use_param); |
383 | 0 | return NULL; |
384 | 0 | } |
385 | 32 | *p_value_uint = UBLOCKSIZE; |
386 | 4.82k | } else if (strcmp(param->key, OSSL_KDF_PARAM_SCRYPT_P) == 0) { |
387 | 32 | p_value_uint = OPENSSL_malloc(sizeof(UBLOCKSIZE)); |
388 | 32 | if (p_value_uint == NULL) { |
389 | 0 | OPENSSL_free(fuzzed_parameters); |
390 | 0 | OPENSSL_free(use_param); |
391 | 0 | return NULL; |
392 | 0 | } |
393 | 32 | *p_value_uint = UBLOCKSIZE; |
394 | 4.79k | } else if (!*use_param || !read_uint(buf, len, &p_value_uint)) { |
395 | 2.67k | p_value_uint = OPENSSL_malloc(sizeof(uint64_t)); |
396 | 2.67k | if (p_value_uint == NULL) { |
397 | 0 | OPENSSL_free(fuzzed_parameters); |
398 | 0 | OPENSSL_free(use_param); |
399 | 0 | return NULL; |
400 | 0 | } |
401 | 2.67k | *p_value_uint = 0; |
402 | 2.67k | } |
403 | | |
404 | 5.44k | *p = *param; |
405 | 5.44k | p->data = p_value_uint; |
406 | 5.44k | p++; |
407 | 5.44k | break; |
408 | 0 | case OSSL_PARAM_REAL: |
409 | 0 | if (!*use_param || !read_double(buf, len, &p_value_double)) { |
410 | 0 | p_value_double = OPENSSL_malloc(sizeof(double)); |
411 | 0 | if (p_value_double == NULL) { |
412 | 0 | OPENSSL_free(fuzzed_parameters); |
413 | 0 | OPENSSL_free(use_param); |
414 | 0 | return NULL; |
415 | 0 | } |
416 | 0 | *p_value_double = 0; |
417 | 0 | } |
418 | | |
419 | 0 | *p = *param; |
420 | 0 | p->data = p_value_double; |
421 | 0 | p++; |
422 | 0 | break; |
423 | 7.41k | case OSSL_PARAM_UTF8_STRING: |
424 | 7.41k | if (*use_param && (data_len = read_utf8_string(buf, len, &p_value_utf8_str)) < 0) |
425 | 489 | data_len = 0; |
426 | 7.41k | *p = *param; |
427 | 7.41k | p->data = p_value_utf8_str; |
428 | 7.41k | p->data_size = data_len; |
429 | 7.41k | p++; |
430 | 7.41k | break; |
431 | 7.92k | case OSSL_PARAM_OCTET_STRING: |
432 | 7.92k | if (*use_param && (data_len = read_octet_string(buf, len, &p_value_octet_str)) < 0) |
433 | 1.34k | data_len = 0; |
434 | 7.92k | *p = *param; |
435 | 7.92k | p->data = p_value_octet_str; |
436 | 7.92k | p->data_size = data_len; |
437 | 7.92k | p++; |
438 | 7.92k | break; |
439 | 0 | case OSSL_PARAM_UTF8_PTR: |
440 | 0 | if (*use_param && (data_len = read_utf8_ptr(buf, len, &p_value_utf8_ptr)) < 0) |
441 | 0 | data_len = 0; |
442 | 0 | *p = *param; |
443 | 0 | p->data = p_value_utf8_ptr; |
444 | 0 | p->data_size = data_len; |
445 | 0 | p++; |
446 | 0 | break; |
447 | 0 | case OSSL_PARAM_OCTET_PTR: |
448 | 0 | if (*use_param && (data_len = read_octet_ptr(buf, len, &p_value_octet_ptr)) < 0) |
449 | 0 | data_len = 0; |
450 | 0 | *p = *param; |
451 | 0 | p->data = p_value_octet_ptr; |
452 | 0 | p->data_size = data_len; |
453 | 0 | p++; |
454 | 0 | break; |
455 | 0 | default: |
456 | 0 | break; |
457 | 22.1k | } |
458 | | |
459 | 22.1k | OPENSSL_free(use_param); |
460 | 22.1k | } |
461 | | |
462 | 4.05k | return fuzzed_parameters; |
463 | 4.05k | } |
464 | | |
465 | | static int do_evp_cipher(const EVP_CIPHER *evp_cipher, const OSSL_PARAM param[]) |
466 | 119 | { |
467 | 119 | unsigned char outbuf[1024]; |
468 | 119 | int outlen, tmplen; |
469 | 119 | unsigned char key[] = { 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15 }; |
470 | 119 | unsigned char iv[] = { 1, 2, 3, 4, 5, 6, 7, 8 }; |
471 | 119 | const char intext[] = "text"; |
472 | 119 | EVP_CIPHER_CTX *ctx; |
473 | | |
474 | 119 | ctx = EVP_CIPHER_CTX_new(); |
475 | | |
476 | 119 | if (!EVP_CIPHER_CTX_set_params(ctx, param)) { |
477 | 119 | EVP_CIPHER_CTX_free(ctx); |
478 | 119 | return 0; |
479 | 119 | } |
480 | | |
481 | 0 | if (!EVP_EncryptInit_ex2(ctx, evp_cipher, key, iv, NULL)) { |
482 | | /* Error */ |
483 | 0 | EVP_CIPHER_CTX_free(ctx); |
484 | 0 | return 0; |
485 | 0 | } |
486 | | |
487 | 0 | if (!EVP_EncryptUpdate(ctx, outbuf, &outlen, (const unsigned char *)intext, |
488 | 0 | (int)strlen(intext))) { |
489 | | /* Error */ |
490 | 0 | EVP_CIPHER_CTX_free(ctx); |
491 | 0 | return 0; |
492 | 0 | } |
493 | | /* |
494 | | * Buffer passed to EVP_EncryptFinal() must be after data just |
495 | | * encrypted to avoid overwriting it. |
496 | | */ |
497 | 0 | if (!EVP_EncryptFinal_ex(ctx, outbuf + outlen, &tmplen)) { |
498 | | /* Error */ |
499 | 0 | EVP_CIPHER_CTX_free(ctx); |
500 | 0 | return 0; |
501 | 0 | } |
502 | 0 | outlen += tmplen; |
503 | 0 | EVP_CIPHER_CTX_free(ctx); |
504 | 0 | return 1; |
505 | 0 | } |
506 | | |
507 | | static int do_evp_kdf(EVP_KDF *evp_kdf, const OSSL_PARAM params[]) |
508 | 7.23k | { |
509 | 7.23k | int r = 1; |
510 | 7.23k | EVP_KDF_CTX *kctx = NULL; |
511 | 7.23k | unsigned char derived[32]; |
512 | | |
513 | 7.23k | kctx = EVP_KDF_CTX_new(evp_kdf); |
514 | | |
515 | 7.23k | if (kctx == NULL) { |
516 | 0 | r = 0; |
517 | 0 | goto end; |
518 | 0 | } |
519 | | |
520 | 7.23k | if (EVP_KDF_CTX_set_params(kctx, params) <= 0) { |
521 | 2.92k | r = 0; |
522 | 2.92k | goto end; |
523 | 2.92k | } |
524 | | |
525 | 4.30k | if (EVP_KDF_derive(kctx, derived, sizeof(derived), NULL) <= 0) { |
526 | 1.17k | r = 0; |
527 | 1.17k | goto end; |
528 | 1.17k | } |
529 | | |
530 | 7.23k | end: |
531 | 7.23k | EVP_KDF_CTX_free(kctx); |
532 | 7.23k | return r; |
533 | 4.30k | } |
534 | | |
535 | | static int do_evp_mac(EVP_MAC *evp_mac, const OSSL_PARAM params[]) |
536 | 2.03k | { |
537 | 2.03k | int r = 1; |
538 | 2.03k | const char *key = "mac_key"; |
539 | 2.03k | char text[] = "Some Crypto Text"; |
540 | 2.03k | EVP_MAC_CTX *ctx = NULL; |
541 | 2.03k | unsigned char buf[4096]; |
542 | 2.03k | size_t final_l; |
543 | | |
544 | 2.03k | if ((ctx = EVP_MAC_CTX_new(evp_mac)) == NULL |
545 | 2.03k | || !EVP_MAC_init(ctx, (const unsigned char *)key, strlen(key), |
546 | 2.03k | params)) { |
547 | 1.22k | r = 0; |
548 | 1.22k | goto end; |
549 | 1.22k | } |
550 | | |
551 | 815 | if (EVP_MAC_CTX_set_params(ctx, params) <= 0) { |
552 | 0 | r = 0; |
553 | 0 | goto end; |
554 | 0 | } |
555 | | |
556 | 815 | if (!EVP_MAC_update(ctx, (unsigned char *)text, sizeof(text))) { |
557 | 102 | r = 0; |
558 | 102 | goto end; |
559 | 102 | } |
560 | | |
561 | 713 | if (!EVP_MAC_final(ctx, buf, &final_l, sizeof(buf))) { |
562 | 0 | r = 0; |
563 | 0 | goto end; |
564 | 0 | } |
565 | | |
566 | 2.03k | end: |
567 | 2.03k | EVP_MAC_CTX_free(ctx); |
568 | 2.03k | return r; |
569 | 713 | } |
570 | | |
571 | | static int do_evp_rand(EVP_RAND *evp_rand, const OSSL_PARAM params[]) |
572 | 1.31k | { |
573 | 1.31k | int r = 1; |
574 | 1.31k | EVP_RAND_CTX *ctx = NULL; |
575 | 1.31k | unsigned char buf[4096]; |
576 | | |
577 | 1.31k | if (!(ctx = EVP_RAND_CTX_new(evp_rand, NULL))) { |
578 | 0 | r = 0; |
579 | 0 | goto end; |
580 | 0 | } |
581 | | |
582 | 1.31k | if (EVP_RAND_CTX_set_params(ctx, params) <= 0) { |
583 | 392 | r = 0; |
584 | 392 | goto end; |
585 | 392 | } |
586 | | |
587 | 919 | if (!EVP_RAND_generate(ctx, buf, sizeof(buf), 0, 0, NULL, 0)) { |
588 | 207 | r = 0; |
589 | 207 | goto end; |
590 | 207 | } |
591 | | |
592 | 712 | if (!EVP_RAND_reseed(ctx, 0, 0, 0, NULL, 0)) { |
593 | 0 | r = 0; |
594 | 0 | goto end; |
595 | 0 | } |
596 | | |
597 | 1.31k | end: |
598 | 1.31k | EVP_RAND_CTX_free(ctx); |
599 | 1.31k | return r; |
600 | 712 | } |
601 | | |
602 | | static int do_evp_sig(EVP_SIGNATURE *evp_sig, const OSSL_PARAM params[]) |
603 | 155 | { |
604 | 155 | return 0; |
605 | 155 | } |
606 | | |
607 | | static int do_evp_asym_cipher(EVP_ASYM_CIPHER *evp_asym_cipher, const OSSL_PARAM params[]) |
608 | 34 | { |
609 | 34 | return 0; |
610 | 34 | } |
611 | | |
612 | | static int do_evp_kem(EVP_KEM *evp_kem, const OSSL_PARAM params[]) |
613 | 67 | { |
614 | 67 | return 0; |
615 | 67 | } |
616 | | |
617 | | static int do_evp_key_exch(EVP_KEYEXCH *evp_kdf, const OSSL_PARAM params[]) |
618 | 121 | { |
619 | 121 | return 0; |
620 | 121 | } |
621 | | |
622 | | static int do_evp_md(EVP_MD *evp_md, const OSSL_PARAM params[]) |
623 | 168 | { |
624 | 168 | int r = 1; |
625 | 168 | unsigned char md_value[EVP_MAX_MD_SIZE]; |
626 | 168 | unsigned int md_len; |
627 | 168 | EVP_MD_CTX *mdctx = NULL; |
628 | | |
629 | 168 | if (!(mdctx = EVP_MD_CTX_new())) { |
630 | 0 | r = 0; |
631 | 0 | goto end; |
632 | 0 | } |
633 | | |
634 | 168 | if (!EVP_MD_CTX_set_params(mdctx, params)) { |
635 | 74 | r = 0; |
636 | 74 | goto end; |
637 | 74 | } |
638 | | |
639 | 94 | if (!EVP_DigestInit_ex2(mdctx, evp_md, NULL)) { |
640 | 71 | r = 0; |
641 | 71 | goto end; |
642 | 71 | } |
643 | 23 | if (!EVP_DigestUpdate(mdctx, "Test", strlen("Test"))) { |
644 | 0 | r = 0; |
645 | 0 | goto end; |
646 | 0 | } |
647 | 23 | if (!EVP_DigestFinal_ex(mdctx, md_value, &md_len)) { |
648 | 19 | r = 0; |
649 | 19 | goto end; |
650 | 19 | } |
651 | | |
652 | 168 | end: |
653 | 168 | EVP_MD_CTX_free(mdctx); |
654 | 168 | return r; |
655 | 23 | } |
656 | | |
657 | | #define EVP_FUZZ(source, evp, f) \ |
658 | 11.5k | do { \ |
659 | 11.5k | evp *alg = sk_##evp##_value(source, *algorithm % sk_##evp##_num(source)); \ |
660 | 11.5k | OSSL_PARAM *fuzzed_params; \ |
661 | 11.5k | \ |
662 | 11.5k | if (alg == NULL) \ |
663 | 11.5k | break; \ |
664 | 11.5k | fuzzed_params = fuzz_params((OSSL_PARAM *)evp##_settable_ctx_params(alg), &buf, &len); \ |
665 | 11.5k | if (fuzzed_params != NULL) \ |
666 | 11.5k | f(alg, fuzzed_params); \ |
667 | 11.5k | free_params(fuzzed_params); \ |
668 | 11.5k | OSSL_PARAM_free(fuzzed_params); \ |
669 | 11.5k | } while (0); |
670 | | |
671 | | int FuzzerTestOneInput(const uint8_t *buf, size_t len) |
672 | 11.5k | { |
673 | 11.5k | int r = 1; |
674 | 11.5k | uint64_t *operation = NULL; |
675 | 11.5k | int64_t *algorithm = NULL; |
676 | | |
677 | 11.5k | if (!read_uint(&buf, &len, &operation)) { |
678 | 20 | r = 0; |
679 | 20 | goto end; |
680 | 20 | } |
681 | | |
682 | 11.5k | if (!read_int(&buf, &len, &algorithm)) { |
683 | 25 | r = 0; |
684 | 25 | goto end; |
685 | 25 | } |
686 | | |
687 | 11.5k | switch (*operation % 10) { |
688 | 168 | case 0: |
689 | 168 | EVP_FUZZ(digests_collection, EVP_MD, do_evp_md); |
690 | 168 | break; |
691 | 397 | case 1: |
692 | 397 | EVP_FUZZ(cipher_collection, EVP_CIPHER, do_evp_cipher); |
693 | 397 | break; |
694 | 7.23k | case 2: |
695 | 7.23k | EVP_FUZZ(kdf_collection, EVP_KDF, do_evp_kdf); |
696 | 7.23k | break; |
697 | 2.03k | case 3: |
698 | 2.03k | EVP_FUZZ(mac_collection, EVP_MAC, do_evp_mac); |
699 | 2.03k | break; |
700 | 67 | case 4: |
701 | 67 | EVP_FUZZ(kem_collection, EVP_KEM, do_evp_kem); |
702 | 67 | break; |
703 | 1.31k | case 5: |
704 | 1.31k | EVP_FUZZ(rand_collection, EVP_RAND, do_evp_rand); |
705 | 1.31k | break; |
706 | 34 | case 6: |
707 | 34 | EVP_FUZZ(asym_ciphers_collection, EVP_ASYM_CIPHER, do_evp_asym_cipher); |
708 | 34 | break; |
709 | 155 | case 7: |
710 | 155 | EVP_FUZZ(signature_collection, EVP_SIGNATURE, do_evp_sig); |
711 | 155 | break; |
712 | 121 | case 8: |
713 | 121 | EVP_FUZZ(keyexch_collection, EVP_KEYEXCH, do_evp_key_exch); |
714 | 121 | break; |
715 | 5 | case 9: |
716 | | /* |
717 | | Implement and call: |
718 | | static int do_evp_keymgmt(EVP_KEYMGMT *evp_kdf, const OSSL_PARAM params[]) |
719 | | { |
720 | | return 0; |
721 | | } |
722 | | */ |
723 | | /* not yet implemented */ |
724 | 5 | break; |
725 | 0 | default: |
726 | 0 | r = 0; |
727 | 0 | goto end; |
728 | 11.5k | } |
729 | | |
730 | 11.5k | end: |
731 | 11.5k | OPENSSL_free(operation); |
732 | 11.5k | OPENSSL_free(algorithm); |
733 | 11.5k | return r; |
734 | 11.5k | } |