/src/openssl31/crypto/params_dup.c
Line | Count | Source (jump to first uncovered line) |
1 | | /* |
2 | | * Copyright 2021-2022 The OpenSSL Project Authors. All Rights Reserved. |
3 | | * |
4 | | * Licensed under the Apache License 2.0 (the "License"). You may not use |
5 | | * this file except in compliance with the License. You can obtain a copy |
6 | | * in the file LICENSE in the source distribution or at |
7 | | * https://www.openssl.org/source/license.html |
8 | | */ |
9 | | |
10 | | #include <string.h> |
11 | | #include <openssl/params.h> |
12 | | #include <openssl/param_build.h> |
13 | | #include "internal/param_build_set.h" |
14 | | |
15 | 360k | #define OSSL_PARAM_ALLOCATED_END 127 |
16 | 0 | #define OSSL_PARAM_MERGE_LIST_MAX 128 |
17 | | |
18 | 266 | #define OSSL_PARAM_BUF_PUBLIC 0 |
19 | 399 | #define OSSL_PARAM_BUF_SECURE 1 |
20 | | #define OSSL_PARAM_BUF_MAX (OSSL_PARAM_BUF_SECURE + 1) |
21 | | |
22 | | typedef struct { |
23 | | OSSL_PARAM_ALIGNED_BLOCK *alloc; /* The allocated buffer */ |
24 | | OSSL_PARAM_ALIGNED_BLOCK *cur; /* Current position in the allocated buf */ |
25 | | size_t blocks; /* Number of aligned blocks */ |
26 | | size_t alloc_sz; /* The size of the allocated buffer (in bytes) */ |
27 | | } OSSL_PARAM_BUF; |
28 | | |
29 | | size_t ossl_param_bytes_to_blocks(size_t bytes) |
30 | 1.29M | { |
31 | 1.29M | return (bytes + OSSL_PARAM_ALIGN_SIZE - 1) / OSSL_PARAM_ALIGN_SIZE; |
32 | 1.29M | } |
33 | | |
34 | | static int ossl_param_buf_alloc(OSSL_PARAM_BUF *out, size_t extra_blocks, |
35 | | int is_secure) |
36 | | { |
37 | | size_t sz = OSSL_PARAM_ALIGN_SIZE * (extra_blocks + out->blocks); |
38 | | |
39 | | out->alloc = is_secure ? OPENSSL_secure_zalloc(sz) : OPENSSL_zalloc(sz); |
40 | | if (out->alloc == NULL) { |
41 | | ERR_raise(ERR_LIB_CRYPTO, is_secure ? CRYPTO_R_SECURE_MALLOC_FAILURE |
42 | | : ERR_R_MALLOC_FAILURE); |
43 | | return 0; |
44 | | } |
45 | | out->alloc_sz = sz; |
46 | | out->cur = out->alloc + extra_blocks; |
47 | | return 1; |
48 | | } |
49 | | |
50 | | void ossl_param_set_secure_block(OSSL_PARAM *last, void *secure_buffer, |
51 | | size_t secure_buffer_sz) |
52 | 178k | { |
53 | 178k | last->key = NULL; |
54 | 178k | last->data_size = secure_buffer_sz; |
55 | 178k | last->data = secure_buffer; |
56 | 178k | last->data_type = OSSL_PARAM_ALLOCATED_END; |
57 | 178k | } |
58 | | |
59 | | static OSSL_PARAM *ossl_param_dup(const OSSL_PARAM *src, OSSL_PARAM *dst, |
60 | | OSSL_PARAM_BUF buf[OSSL_PARAM_BUF_MAX], |
61 | | int *param_count) |
62 | 266 | { |
63 | 266 | const OSSL_PARAM *in; |
64 | 266 | int has_dst = (dst != NULL); |
65 | 266 | int is_secure; |
66 | 266 | size_t param_sz, blks; |
67 | | |
68 | 812 | for (in = src; in->key != NULL; in++) { |
69 | 546 | is_secure = CRYPTO_secure_allocated(in->data); |
70 | 546 | if (has_dst) { |
71 | 273 | *dst = *in; |
72 | 273 | dst->data = buf[is_secure].cur; |
73 | 273 | } |
74 | | |
75 | 546 | if (in->data_type == OSSL_PARAM_OCTET_PTR |
76 | 546 | || in->data_type == OSSL_PARAM_UTF8_PTR) { |
77 | 0 | param_sz = sizeof(in->data); |
78 | 0 | if (has_dst) |
79 | 0 | *((const void **)dst->data) = *(const void **)in->data; |
80 | 546 | } else { |
81 | 546 | param_sz = in->data_size; |
82 | 546 | if (has_dst) |
83 | 273 | memcpy(dst->data, in->data, param_sz); |
84 | 546 | } |
85 | 546 | if (in->data_type == OSSL_PARAM_UTF8_STRING) |
86 | 0 | param_sz++; /* NULL terminator */ |
87 | 546 | blks = ossl_param_bytes_to_blocks(param_sz); |
88 | | |
89 | 546 | if (has_dst) { |
90 | 273 | dst++; |
91 | 273 | buf[is_secure].cur += blks; |
92 | 273 | } else { |
93 | 273 | buf[is_secure].blocks += blks; |
94 | 273 | } |
95 | 546 | if (param_count != NULL) |
96 | 273 | ++*param_count; |
97 | 546 | } |
98 | 266 | return dst; |
99 | 266 | } |
100 | | |
101 | | OSSL_PARAM *OSSL_PARAM_dup(const OSSL_PARAM *src) |
102 | 133 | { |
103 | 133 | size_t param_blocks; |
104 | 133 | OSSL_PARAM_BUF buf[OSSL_PARAM_BUF_MAX]; |
105 | 133 | OSSL_PARAM *last, *dst; |
106 | 133 | int param_count = 1; /* Include terminator in the count */ |
107 | | |
108 | 133 | if (src == NULL) { |
109 | 0 | ERR_raise(ERR_LIB_CRYPTO, ERR_R_PASSED_NULL_PARAMETER); |
110 | 0 | return NULL; |
111 | 0 | } |
112 | | |
113 | 133 | memset(buf, 0, sizeof(buf)); |
114 | | |
115 | | /* First Pass: get the param_count and block sizes required */ |
116 | 133 | (void)ossl_param_dup(src, NULL, buf, ¶m_count); |
117 | | |
118 | 133 | param_blocks = ossl_param_bytes_to_blocks(param_count * sizeof(*src)); |
119 | | /* |
120 | | * The allocated buffer consists of an array of OSSL_PARAM followed by |
121 | | * aligned data bytes that the array elements will point to. |
122 | | */ |
123 | 133 | if (!ossl_param_buf_alloc(&buf[OSSL_PARAM_BUF_PUBLIC], param_blocks, 0)) |
124 | 0 | return NULL; |
125 | | |
126 | | /* Allocate a secure memory buffer if required */ |
127 | 133 | if (buf[OSSL_PARAM_BUF_SECURE].blocks > 0 |
128 | 133 | && !ossl_param_buf_alloc(&buf[OSSL_PARAM_BUF_SECURE], 0, 1)) { |
129 | 0 | OPENSSL_free(buf[OSSL_PARAM_BUF_PUBLIC].alloc); |
130 | 0 | return NULL; |
131 | 0 | } |
132 | | |
133 | 133 | dst = (OSSL_PARAM *)buf[OSSL_PARAM_BUF_PUBLIC].alloc; |
134 | 133 | last = ossl_param_dup(src, dst, buf, NULL); |
135 | | /* Store the allocated secure memory buffer in the last param block */ |
136 | 133 | ossl_param_set_secure_block(last, buf[OSSL_PARAM_BUF_SECURE].alloc, |
137 | 133 | buf[OSSL_PARAM_BUF_SECURE].alloc_sz); |
138 | 133 | return dst; |
139 | 133 | } |
140 | | |
141 | | static int compare_params(const void *left, const void *right) |
142 | 0 | { |
143 | 0 | const OSSL_PARAM *l = *(const OSSL_PARAM **)left; |
144 | 0 | const OSSL_PARAM *r = *(const OSSL_PARAM **)right; |
145 | |
|
146 | 0 | return OPENSSL_strcasecmp(l->key, r->key); |
147 | 0 | } |
148 | | |
149 | | OSSL_PARAM *OSSL_PARAM_merge(const OSSL_PARAM *p1, const OSSL_PARAM *p2) |
150 | 0 | { |
151 | 0 | const OSSL_PARAM *list1[OSSL_PARAM_MERGE_LIST_MAX + 1]; |
152 | 0 | const OSSL_PARAM *list2[OSSL_PARAM_MERGE_LIST_MAX + 1]; |
153 | 0 | const OSSL_PARAM *p = NULL; |
154 | 0 | const OSSL_PARAM **p1cur, **p2cur; |
155 | 0 | OSSL_PARAM *params, *dst; |
156 | 0 | size_t list1_sz = 0, list2_sz = 0; |
157 | 0 | int diff; |
158 | |
|
159 | 0 | if (p1 == NULL && p2 == NULL) { |
160 | 0 | ERR_raise(ERR_LIB_CRYPTO, ERR_R_PASSED_NULL_PARAMETER); |
161 | 0 | return NULL; |
162 | 0 | } |
163 | | |
164 | | /* Copy p1 to list1 */ |
165 | 0 | if (p1 != NULL) { |
166 | 0 | for (p = p1; p->key != NULL && list1_sz < OSSL_PARAM_MERGE_LIST_MAX; p++) |
167 | 0 | list1[list1_sz++] = p; |
168 | 0 | } |
169 | 0 | list1[list1_sz] = NULL; |
170 | | |
171 | | /* copy p2 to a list2 */ |
172 | 0 | if (p2 != NULL) { |
173 | 0 | for (p = p2; p->key != NULL && list2_sz < OSSL_PARAM_MERGE_LIST_MAX; p++) |
174 | 0 | list2[list2_sz++] = p; |
175 | 0 | } |
176 | 0 | list2[list2_sz] = NULL; |
177 | 0 | if (list1_sz == 0 && list2_sz == 0) { |
178 | 0 | ERR_raise(ERR_LIB_CRYPTO, CRYPTO_R_NO_PARAMS_TO_MERGE); |
179 | 0 | return NULL; |
180 | 0 | } |
181 | | |
182 | | /* Sort the 2 lists */ |
183 | 0 | qsort(list1, list1_sz, sizeof(OSSL_PARAM *), compare_params); |
184 | 0 | qsort(list2, list2_sz, sizeof(OSSL_PARAM *), compare_params); |
185 | | |
186 | | /* Allocate enough space to store the merged parameters */ |
187 | 0 | params = OPENSSL_zalloc((list1_sz + list2_sz + 1) * sizeof(*p1)); |
188 | 0 | if (params == NULL) { |
189 | 0 | ERR_raise(ERR_LIB_CRYPTO, ERR_R_MALLOC_FAILURE); |
190 | 0 | return NULL; |
191 | 0 | } |
192 | 0 | dst = params; |
193 | 0 | p1cur = list1; |
194 | 0 | p2cur = list2; |
195 | 0 | while (1) { |
196 | | /* If list1 is finished just tack list2 onto the end */ |
197 | 0 | if (*p1cur == NULL) { |
198 | 0 | do { |
199 | 0 | *dst++ = **p2cur; |
200 | 0 | p2cur++; |
201 | 0 | } while (*p2cur != NULL); |
202 | 0 | break; |
203 | 0 | } |
204 | | /* If list2 is finished just tack list1 onto the end */ |
205 | 0 | if (*p2cur == NULL) { |
206 | 0 | do { |
207 | 0 | *dst++ = **p1cur; |
208 | 0 | p1cur++; |
209 | 0 | } while (*p1cur != NULL); |
210 | 0 | break; |
211 | 0 | } |
212 | | /* consume the list element with the smaller key */ |
213 | 0 | diff = OPENSSL_strcasecmp((*p1cur)->key, (*p2cur)->key); |
214 | 0 | if (diff == 0) { |
215 | | /* If the keys are the same then throw away the list1 element */ |
216 | 0 | *dst++ = **p2cur; |
217 | 0 | p2cur++; |
218 | 0 | p1cur++; |
219 | 0 | } else if (diff > 0) { |
220 | 0 | *dst++ = **p2cur; |
221 | 0 | p2cur++; |
222 | 0 | } else { |
223 | 0 | *dst++ = **p1cur; |
224 | 0 | p1cur++; |
225 | 0 | } |
226 | 0 | } |
227 | 0 | return params; |
228 | 0 | } |
229 | | |
230 | | void OSSL_PARAM_free(OSSL_PARAM *params) |
231 | 181k | { |
232 | 181k | if (params != NULL) { |
233 | 181k | OSSL_PARAM *p; |
234 | | |
235 | 1.30M | for (p = params; p->key != NULL; p++) |
236 | 1.12M | ; |
237 | 181k | if (p->data_type == OSSL_PARAM_ALLOCATED_END) |
238 | 178k | OPENSSL_secure_clear_free(p->data, p->data_size); |
239 | 181k | OPENSSL_free(params); |
240 | 181k | } |
241 | 181k | } |