/src/openssl/crypto/evp/evp_fetch.c
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1 | | /* |
2 | | * Copyright 2019-2023 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 <stddef.h> |
11 | | #include <openssl/types.h> |
12 | | #include <openssl/evp.h> |
13 | | #include <openssl/core.h> |
14 | | #include "internal/cryptlib.h" |
15 | | #include "internal/thread_once.h" |
16 | | #include "internal/property.h" |
17 | | #include "internal/core.h" |
18 | | #include "internal/provider.h" |
19 | | #include "internal/namemap.h" |
20 | | #include "crypto/decoder.h" |
21 | | #include "crypto/evp.h" /* evp_local.h needs it */ |
22 | | #include "evp_local.h" |
23 | | |
24 | 738k | #define NAME_SEPARATOR ':' |
25 | | |
26 | | /* Data to be passed through ossl_method_construct() */ |
27 | | struct evp_method_data_st { |
28 | | OSSL_LIB_CTX *libctx; |
29 | | int operation_id; /* For get_evp_method_from_store() */ |
30 | | int name_id; /* For get_evp_method_from_store() */ |
31 | | const char *names; /* For get_evp_method_from_store() */ |
32 | | const char *propquery; /* For get_evp_method_from_store() */ |
33 | | |
34 | | OSSL_METHOD_STORE *tmp_store; /* For get_tmp_evp_method_store() */ |
35 | | |
36 | | unsigned int flag_construct_error_occurred : 1; |
37 | | |
38 | | void *(*method_from_algorithm)(int name_id, const OSSL_ALGORITHM *, |
39 | | OSSL_PROVIDER *); |
40 | | int (*refcnt_up_method)(void *method); |
41 | | void (*destruct_method)(void *method); |
42 | | }; |
43 | | |
44 | | /* |
45 | | * Generic routines to fetch / create EVP methods with ossl_method_construct() |
46 | | */ |
47 | | static void *get_tmp_evp_method_store(void *data) |
48 | 0 | { |
49 | 0 | struct evp_method_data_st *methdata = data; |
50 | |
|
51 | 0 | if (methdata->tmp_store == NULL) |
52 | 0 | methdata->tmp_store = ossl_method_store_new(methdata->libctx); |
53 | 0 | return methdata->tmp_store; |
54 | 0 | } |
55 | | |
56 | | static void dealloc_tmp_evp_method_store(void *store) |
57 | 10.4M | { |
58 | 10.4M | if (store != NULL) |
59 | 0 | ossl_method_store_free(store); |
60 | 10.4M | } |
61 | | |
62 | | static OSSL_METHOD_STORE *get_evp_method_store(OSSL_LIB_CTX *libctx) |
63 | 16.9M | { |
64 | 16.9M | return ossl_lib_ctx_get_data(libctx, OSSL_LIB_CTX_EVP_METHOD_STORE_INDEX); |
65 | 16.9M | } |
66 | | |
67 | | static int reserve_evp_method_store(void *store, void *data) |
68 | 2.85M | { |
69 | 2.85M | struct evp_method_data_st *methdata = data; |
70 | | |
71 | 2.85M | if (store == NULL |
72 | 2.85M | && (store = get_evp_method_store(methdata->libctx)) == NULL) |
73 | 0 | return 0; |
74 | | |
75 | 2.85M | return ossl_method_lock_store(store); |
76 | 2.85M | } |
77 | | |
78 | | static int unreserve_evp_method_store(void *store, void *data) |
79 | 2.85M | { |
80 | 2.85M | struct evp_method_data_st *methdata = data; |
81 | | |
82 | 2.85M | if (store == NULL |
83 | 2.85M | && (store = get_evp_method_store(methdata->libctx)) == NULL) |
84 | 0 | return 0; |
85 | | |
86 | 2.85M | return ossl_method_unlock_store(store); |
87 | 2.85M | } |
88 | | |
89 | | /* |
90 | | * To identify the method in the EVP method store, we mix the name identity |
91 | | * with the operation identity, under the assumption that we don't have more |
92 | | * than 2^23 names or more than 2^8 operation types. |
93 | | * |
94 | | * The resulting identity is a 31-bit integer, composed like this: |
95 | | * |
96 | | * +---------23 bits--------+-8 bits-+ |
97 | | * | name identity | op id | |
98 | | * +------------------------+--------+ |
99 | | * |
100 | | * We limit this composite number to 31 bits, thus leaving the top uint32_t |
101 | | * bit always zero, to avoid negative sign extension when downshifting after |
102 | | * this number happens to be passed to an int (which happens as soon as it's |
103 | | * passed to ossl_method_store_cache_set(), and it's in that form that it |
104 | | * gets passed along to filter_on_operation_id(), defined further down. |
105 | | */ |
106 | 45.4M | #define METHOD_ID_OPERATION_MASK 0x000000FF |
107 | | #define METHOD_ID_OPERATION_MAX ((1 << 8) - 1) |
108 | 9.70M | #define METHOD_ID_NAME_MASK 0x7FFFFF00 |
109 | 9.70M | #define METHOD_ID_NAME_OFFSET 8 |
110 | | #define METHOD_ID_NAME_MAX ((1 << 23) - 1) |
111 | | static uint32_t evp_method_id(int name_id, unsigned int operation_id) |
112 | 9.70M | { |
113 | 9.70M | if (!ossl_assert(name_id > 0 && name_id <= METHOD_ID_NAME_MAX) |
114 | 9.70M | || !ossl_assert(operation_id > 0 |
115 | 9.70M | && operation_id <= METHOD_ID_OPERATION_MAX)) |
116 | 0 | return 0; |
117 | 9.70M | return (((name_id << METHOD_ID_NAME_OFFSET) & METHOD_ID_NAME_MASK) |
118 | 9.70M | | (operation_id & METHOD_ID_OPERATION_MASK)); |
119 | 9.70M | } |
120 | | |
121 | | static void *get_evp_method_from_store(void *store, const OSSL_PROVIDER **prov, |
122 | | void *data) |
123 | 1.45M | { |
124 | 1.45M | struct evp_method_data_st *methdata = data; |
125 | 1.45M | void *method = NULL; |
126 | 1.45M | int name_id; |
127 | 1.45M | uint32_t meth_id; |
128 | | |
129 | | /* |
130 | | * get_evp_method_from_store() is only called to try and get the method |
131 | | * that evp_generic_fetch() is asking for, and the operation id as well |
132 | | * as the name or name id are passed via methdata. |
133 | | */ |
134 | 1.45M | if ((name_id = methdata->name_id) == 0 && methdata->names != NULL) { |
135 | 731k | OSSL_NAMEMAP *namemap = ossl_namemap_stored(methdata->libctx); |
136 | 731k | const char *names = methdata->names; |
137 | 731k | const char *q = strchr(names, NAME_SEPARATOR); |
138 | 731k | size_t l = (q == NULL ? strlen(names) : (size_t)(q - names)); |
139 | | |
140 | 731k | if (namemap == 0) |
141 | 0 | return NULL; |
142 | 731k | name_id = ossl_namemap_name2num_n(namemap, names, l); |
143 | 731k | } |
144 | | |
145 | 1.45M | if (name_id == 0 |
146 | 1.45M | || (meth_id = evp_method_id(name_id, methdata->operation_id)) == 0) |
147 | 1.12M | return NULL; |
148 | | |
149 | 333k | if (store == NULL |
150 | 333k | && (store = get_evp_method_store(methdata->libctx)) == NULL) |
151 | 0 | return NULL; |
152 | | |
153 | 333k | if (!ossl_method_store_fetch(store, meth_id, methdata->propquery, prov, |
154 | 333k | &method)) |
155 | 332k | return NULL; |
156 | 648 | return method; |
157 | 333k | } |
158 | | |
159 | | static int put_evp_method_in_store(void *store, void *method, |
160 | | const OSSL_PROVIDER *prov, |
161 | | const char *names, const char *propdef, |
162 | | void *data) |
163 | 3.60k | { |
164 | 3.60k | struct evp_method_data_st *methdata = data; |
165 | 3.60k | OSSL_NAMEMAP *namemap; |
166 | 3.60k | int name_id; |
167 | 3.60k | uint32_t meth_id; |
168 | 3.60k | size_t l = 0; |
169 | | |
170 | | /* |
171 | | * put_evp_method_in_store() is only called with an EVP method that was |
172 | | * successfully created by construct_method() below, which means that |
173 | | * all the names should already be stored in the namemap with the same |
174 | | * numeric identity, so just use the first to get that identity. |
175 | | */ |
176 | 3.60k | if (names != NULL) { |
177 | 3.60k | const char *q = strchr(names, NAME_SEPARATOR); |
178 | | |
179 | 3.60k | l = (q == NULL ? strlen(names) : (size_t)(q - names)); |
180 | 3.60k | } |
181 | | |
182 | 3.60k | if ((namemap = ossl_namemap_stored(methdata->libctx)) == NULL |
183 | 3.60k | || (name_id = ossl_namemap_name2num_n(namemap, names, l)) == 0 |
184 | 3.60k | || (meth_id = evp_method_id(name_id, methdata->operation_id)) == 0) |
185 | 0 | return 0; |
186 | | |
187 | 3.60k | if (store == NULL |
188 | 3.60k | && (store = get_evp_method_store(methdata->libctx)) == NULL) |
189 | 0 | return 0; |
190 | | |
191 | 3.60k | return ossl_method_store_add(store, prov, meth_id, propdef, method, |
192 | 3.60k | methdata->refcnt_up_method, |
193 | 3.60k | methdata->destruct_method); |
194 | 3.60k | } |
195 | | |
196 | | /* |
197 | | * The core fetching functionality passes the name of the implementation. |
198 | | * This function is responsible to getting an identity number for it. |
199 | | */ |
200 | | static void *construct_evp_method(const OSSL_ALGORITHM *algodef, |
201 | | OSSL_PROVIDER *prov, void *data) |
202 | 3.60k | { |
203 | | /* |
204 | | * This function is only called if get_evp_method_from_store() returned |
205 | | * NULL, so it's safe to say that of all the spots to create a new |
206 | | * namemap entry, this is it. Should the name already exist there, we |
207 | | * know that ossl_namemap_add_name() will return its corresponding |
208 | | * number. |
209 | | */ |
210 | 3.60k | struct evp_method_data_st *methdata = data; |
211 | 3.60k | OSSL_LIB_CTX *libctx = ossl_provider_libctx(prov); |
212 | 3.60k | OSSL_NAMEMAP *namemap = ossl_namemap_stored(libctx); |
213 | 3.60k | const char *names = algodef->algorithm_names; |
214 | 3.60k | int name_id = ossl_namemap_add_names(namemap, 0, names, NAME_SEPARATOR); |
215 | 3.60k | void *method; |
216 | | |
217 | 3.60k | if (name_id == 0) |
218 | 0 | return NULL; |
219 | | |
220 | 3.60k | method = methdata->method_from_algorithm(name_id, algodef, prov); |
221 | | |
222 | | /* |
223 | | * Flag to indicate that there was actual construction errors. This |
224 | | * helps inner_evp_generic_fetch() determine what error it should |
225 | | * record on inaccessible algorithms. |
226 | | */ |
227 | 3.60k | if (method == NULL) |
228 | 0 | methdata->flag_construct_error_occurred = 1; |
229 | | |
230 | 3.60k | return method; |
231 | 3.60k | } |
232 | | |
233 | | static void destruct_evp_method(void *method, void *data) |
234 | 3.60k | { |
235 | 3.60k | struct evp_method_data_st *methdata = data; |
236 | | |
237 | 3.60k | methdata->destruct_method(method); |
238 | 3.60k | } |
239 | | |
240 | | static void * |
241 | | inner_evp_generic_fetch(struct evp_method_data_st *methdata, |
242 | | OSSL_PROVIDER *prov, int operation_id, |
243 | | const char *name, const char *properties, |
244 | | void *(*new_method)(int name_id, |
245 | | const OSSL_ALGORITHM *algodef, |
246 | | OSSL_PROVIDER *prov), |
247 | | int (*up_ref_method)(void *), |
248 | | void (*free_method)(void *)) |
249 | 8.60M | { |
250 | 8.60M | OSSL_METHOD_STORE *store = get_evp_method_store(methdata->libctx); |
251 | 8.60M | OSSL_NAMEMAP *namemap = ossl_namemap_stored(methdata->libctx); |
252 | 8.60M | const char *const propq = properties != NULL ? properties : ""; |
253 | 8.60M | uint32_t meth_id = 0; |
254 | 8.60M | void *method = NULL; |
255 | 8.60M | int unsupported, name_id; |
256 | | |
257 | 8.60M | if (store == NULL || namemap == NULL) { |
258 | 0 | ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_INVALID_ARGUMENT); |
259 | 0 | return NULL; |
260 | 0 | } |
261 | | |
262 | | /* |
263 | | * If there's ever an operation_id == 0 passed, we have an internal |
264 | | * programming error. |
265 | | */ |
266 | 8.60M | if (!ossl_assert(operation_id > 0)) { |
267 | 0 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR); |
268 | 0 | return NULL; |
269 | 0 | } |
270 | | |
271 | | /* If we haven't received a name id yet, try to get one for the name */ |
272 | 8.60M | name_id = name != NULL ? ossl_namemap_name2num(namemap, name) : 0; |
273 | | |
274 | | /* |
275 | | * If we have a name id, calculate a method id with evp_method_id(). |
276 | | * |
277 | | * evp_method_id returns 0 if we have too many operations (more than |
278 | | * about 2^8) or too many names (more than about 2^24). In that case, |
279 | | * we can't create any new method. |
280 | | * For all intents and purposes, this is an internal error. |
281 | | */ |
282 | 8.60M | if (name_id != 0 && (meth_id = evp_method_id(name_id, operation_id)) == 0) { |
283 | 0 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR); |
284 | 0 | return NULL; |
285 | 0 | } |
286 | | |
287 | | /* |
288 | | * If we haven't found the name yet, chances are that the algorithm to |
289 | | * be fetched is unsupported. |
290 | | */ |
291 | 8.60M | unsupported = name_id == 0; |
292 | | |
293 | 8.60M | if (meth_id == 0 |
294 | 8.60M | || !ossl_method_store_cache_get(store, prov, meth_id, propq, &method)) { |
295 | 997k | OSSL_METHOD_CONSTRUCT_METHOD mcm = { |
296 | 997k | get_tmp_evp_method_store, |
297 | 997k | reserve_evp_method_store, |
298 | 997k | unreserve_evp_method_store, |
299 | 997k | get_evp_method_from_store, |
300 | 997k | put_evp_method_in_store, |
301 | 997k | construct_evp_method, |
302 | 997k | destruct_evp_method |
303 | 997k | }; |
304 | | |
305 | 997k | methdata->operation_id = operation_id; |
306 | 997k | methdata->name_id = name_id; |
307 | 997k | methdata->names = name; |
308 | 997k | methdata->propquery = propq; |
309 | 997k | methdata->method_from_algorithm = new_method; |
310 | 997k | methdata->refcnt_up_method = up_ref_method; |
311 | 997k | methdata->destruct_method = free_method; |
312 | 997k | methdata->flag_construct_error_occurred = 0; |
313 | 997k | if ((method = ossl_method_construct(methdata->libctx, operation_id, |
314 | 997k | &prov, 0 /* !force_cache */, |
315 | 997k | &mcm, methdata)) != NULL) { |
316 | | /* |
317 | | * If construction did create a method for us, we know that |
318 | | * there is a correct name_id and meth_id, since those have |
319 | | * already been calculated in get_evp_method_from_store() and |
320 | | * put_evp_method_in_store() above. |
321 | | */ |
322 | 513 | if (name_id == 0) |
323 | 25 | name_id = ossl_namemap_name2num(namemap, name); |
324 | 513 | meth_id = evp_method_id(name_id, operation_id); |
325 | 513 | if (name_id != 0) |
326 | 513 | ossl_method_store_cache_set(store, prov, meth_id, propq, |
327 | 513 | method, up_ref_method, free_method); |
328 | 513 | } |
329 | | |
330 | | /* |
331 | | * If we never were in the constructor, the algorithm to be fetched |
332 | | * is unsupported. |
333 | | */ |
334 | 997k | unsupported = !methdata->flag_construct_error_occurred; |
335 | 997k | } |
336 | | |
337 | 8.60M | if ((name_id != 0 || name != NULL) && method == NULL) { |
338 | 873k | int code = unsupported ? ERR_R_UNSUPPORTED : ERR_R_FETCH_FAILED; |
339 | | |
340 | 873k | if (name == NULL) |
341 | 0 | name = ossl_namemap_num2name(namemap, name_id, 0); |
342 | 873k | ERR_raise_data(ERR_LIB_EVP, code, |
343 | 873k | "%s, Algorithm (%s : %d), Properties (%s)", |
344 | 873k | ossl_lib_ctx_get_descriptor(methdata->libctx), |
345 | 873k | name == NULL ? "<null>" : name, name_id, |
346 | 873k | properties == NULL ? "<null>" : properties); |
347 | 873k | } |
348 | | |
349 | 8.60M | return method; |
350 | 8.60M | } |
351 | | |
352 | | void *evp_generic_fetch(OSSL_LIB_CTX *libctx, int operation_id, |
353 | | const char *name, const char *properties, |
354 | | void *(*new_method)(int name_id, |
355 | | const OSSL_ALGORITHM *algodef, |
356 | | OSSL_PROVIDER *prov), |
357 | | int (*up_ref_method)(void *), |
358 | | void (*free_method)(void *)) |
359 | 10.0M | { |
360 | 10.0M | struct evp_method_data_st methdata; |
361 | 10.0M | void *method; |
362 | | |
363 | 10.0M | methdata.libctx = libctx; |
364 | 10.0M | methdata.tmp_store = NULL; |
365 | 10.0M | method = inner_evp_generic_fetch(&methdata, NULL, operation_id, |
366 | 10.0M | name, properties, |
367 | 10.0M | new_method, up_ref_method, free_method); |
368 | 10.0M | dealloc_tmp_evp_method_store(methdata.tmp_store); |
369 | 10.0M | return method; |
370 | 10.0M | } |
371 | | |
372 | | /* |
373 | | * evp_generic_fetch_from_prov() is special, and only returns methods from |
374 | | * the given provider. |
375 | | * This is meant to be used when one method needs to fetch an associated |
376 | | * method. |
377 | | */ |
378 | | void *evp_generic_fetch_from_prov(OSSL_PROVIDER *prov, int operation_id, |
379 | | const char *name, const char *properties, |
380 | | void *(*new_method)(int name_id, |
381 | | const OSSL_ALGORITHM *algodef, |
382 | | OSSL_PROVIDER *prov), |
383 | | int (*up_ref_method)(void *), |
384 | | void (*free_method)(void *)) |
385 | 89.2k | { |
386 | 89.2k | struct evp_method_data_st methdata; |
387 | 89.2k | void *method; |
388 | | |
389 | 89.2k | methdata.libctx = ossl_provider_libctx(prov); |
390 | 89.2k | methdata.tmp_store = NULL; |
391 | 89.2k | method = inner_evp_generic_fetch(&methdata, prov, operation_id, |
392 | 89.2k | name, properties, |
393 | 89.2k | new_method, up_ref_method, free_method); |
394 | 89.2k | dealloc_tmp_evp_method_store(methdata.tmp_store); |
395 | 89.2k | return method; |
396 | 89.2k | } |
397 | | |
398 | | int evp_method_store_cache_flush(OSSL_LIB_CTX *libctx) |
399 | 48 | { |
400 | 48 | OSSL_METHOD_STORE *store = get_evp_method_store(libctx); |
401 | | |
402 | 48 | if (store != NULL) |
403 | 48 | return ossl_method_store_cache_flush_all(store); |
404 | 0 | return 1; |
405 | 48 | } |
406 | | |
407 | | int evp_method_store_remove_all_provided(const OSSL_PROVIDER *prov) |
408 | 0 | { |
409 | 0 | OSSL_LIB_CTX *libctx = ossl_provider_libctx(prov); |
410 | 0 | OSSL_METHOD_STORE *store = get_evp_method_store(libctx); |
411 | |
|
412 | 0 | if (store != NULL) |
413 | 0 | return ossl_method_store_remove_all_provided(store, prov); |
414 | 0 | return 1; |
415 | 0 | } |
416 | | |
417 | | static int evp_set_parsed_default_properties(OSSL_LIB_CTX *libctx, |
418 | | OSSL_PROPERTY_LIST *def_prop, |
419 | | int loadconfig, |
420 | | int mirrored) |
421 | 0 | { |
422 | 0 | OSSL_METHOD_STORE *store = get_evp_method_store(libctx); |
423 | 0 | OSSL_PROPERTY_LIST **plp = ossl_ctx_global_properties(libctx, loadconfig); |
424 | |
|
425 | 0 | if (plp != NULL && store != NULL) { |
426 | 0 | int ret; |
427 | 0 | #ifndef FIPS_MODULE |
428 | 0 | char *propstr = NULL; |
429 | 0 | size_t strsz; |
430 | |
|
431 | 0 | if (mirrored) { |
432 | 0 | if (ossl_global_properties_no_mirrored(libctx)) |
433 | 0 | return 0; |
434 | 0 | } else { |
435 | | /* |
436 | | * These properties have been explicitly set on this libctx, so |
437 | | * don't allow any mirroring from a parent libctx. |
438 | | */ |
439 | 0 | ossl_global_properties_stop_mirroring(libctx); |
440 | 0 | } |
441 | | |
442 | 0 | strsz = ossl_property_list_to_string(libctx, def_prop, NULL, 0); |
443 | 0 | if (strsz > 0) |
444 | 0 | propstr = OPENSSL_malloc(strsz); |
445 | 0 | if (propstr == NULL) { |
446 | 0 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR); |
447 | 0 | return 0; |
448 | 0 | } |
449 | 0 | if (ossl_property_list_to_string(libctx, def_prop, propstr, |
450 | 0 | strsz) == 0) { |
451 | 0 | OPENSSL_free(propstr); |
452 | 0 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR); |
453 | 0 | return 0; |
454 | 0 | } |
455 | 0 | ossl_provider_default_props_update(libctx, propstr); |
456 | 0 | OPENSSL_free(propstr); |
457 | 0 | #endif |
458 | 0 | ossl_property_free(*plp); |
459 | 0 | *plp = def_prop; |
460 | |
|
461 | 0 | ret = ossl_method_store_cache_flush_all(store); |
462 | 0 | #ifndef FIPS_MODULE |
463 | 0 | ossl_decoder_cache_flush(libctx); |
464 | 0 | #endif |
465 | 0 | return ret; |
466 | 0 | } |
467 | 0 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR); |
468 | 0 | return 0; |
469 | 0 | } |
470 | | |
471 | | int evp_set_default_properties_int(OSSL_LIB_CTX *libctx, const char *propq, |
472 | | int loadconfig, int mirrored) |
473 | 0 | { |
474 | 0 | OSSL_PROPERTY_LIST *pl = NULL; |
475 | |
|
476 | 0 | if (propq != NULL && (pl = ossl_parse_query(libctx, propq, 1)) == NULL) { |
477 | 0 | ERR_raise(ERR_LIB_EVP, EVP_R_DEFAULT_QUERY_PARSE_ERROR); |
478 | 0 | return 0; |
479 | 0 | } |
480 | 0 | if (!evp_set_parsed_default_properties(libctx, pl, loadconfig, mirrored)) { |
481 | 0 | ossl_property_free(pl); |
482 | 0 | return 0; |
483 | 0 | } |
484 | 0 | return 1; |
485 | 0 | } |
486 | | |
487 | | int EVP_set_default_properties(OSSL_LIB_CTX *libctx, const char *propq) |
488 | 0 | { |
489 | 0 | return evp_set_default_properties_int(libctx, propq, 1, 0); |
490 | 0 | } |
491 | | |
492 | | static int evp_default_properties_merge(OSSL_LIB_CTX *libctx, const char *propq, |
493 | | int loadconfig) |
494 | 0 | { |
495 | 0 | OSSL_PROPERTY_LIST **plp = ossl_ctx_global_properties(libctx, loadconfig); |
496 | 0 | OSSL_PROPERTY_LIST *pl1, *pl2; |
497 | |
|
498 | 0 | if (propq == NULL) |
499 | 0 | return 1; |
500 | 0 | if (plp == NULL || *plp == NULL) |
501 | 0 | return evp_set_default_properties_int(libctx, propq, 0, 0); |
502 | 0 | if ((pl1 = ossl_parse_query(libctx, propq, 1)) == NULL) { |
503 | 0 | ERR_raise(ERR_LIB_EVP, EVP_R_DEFAULT_QUERY_PARSE_ERROR); |
504 | 0 | return 0; |
505 | 0 | } |
506 | 0 | pl2 = ossl_property_merge(pl1, *plp); |
507 | 0 | ossl_property_free(pl1); |
508 | 0 | if (pl2 == NULL) { |
509 | 0 | ERR_raise(ERR_LIB_EVP, ERR_R_CRYPTO_LIB); |
510 | 0 | return 0; |
511 | 0 | } |
512 | 0 | if (!evp_set_parsed_default_properties(libctx, pl2, 0, 0)) { |
513 | 0 | ossl_property_free(pl2); |
514 | 0 | return 0; |
515 | 0 | } |
516 | 0 | return 1; |
517 | 0 | } |
518 | | |
519 | | static int evp_default_property_is_enabled(OSSL_LIB_CTX *libctx, |
520 | | const char *prop_name) |
521 | 0 | { |
522 | 0 | OSSL_PROPERTY_LIST **plp = ossl_ctx_global_properties(libctx, 1); |
523 | |
|
524 | 0 | return plp != NULL && ossl_property_is_enabled(libctx, prop_name, *plp); |
525 | 0 | } |
526 | | |
527 | | int EVP_default_properties_is_fips_enabled(OSSL_LIB_CTX *libctx) |
528 | 0 | { |
529 | 0 | return evp_default_property_is_enabled(libctx, "fips"); |
530 | 0 | } |
531 | | |
532 | | int evp_default_properties_enable_fips_int(OSSL_LIB_CTX *libctx, int enable, |
533 | | int loadconfig) |
534 | 0 | { |
535 | 0 | const char *query = (enable != 0) ? "fips=yes" : "-fips"; |
536 | |
|
537 | 0 | return evp_default_properties_merge(libctx, query, loadconfig); |
538 | 0 | } |
539 | | |
540 | | int EVP_default_properties_enable_fips(OSSL_LIB_CTX *libctx, int enable) |
541 | 0 | { |
542 | 0 | return evp_default_properties_enable_fips_int(libctx, enable, 1); |
543 | 0 | } |
544 | | |
545 | | char *evp_get_global_properties_str(OSSL_LIB_CTX *libctx, int loadconfig) |
546 | 0 | { |
547 | 0 | OSSL_PROPERTY_LIST **plp = ossl_ctx_global_properties(libctx, loadconfig); |
548 | 0 | char *propstr = NULL; |
549 | 0 | size_t sz; |
550 | |
|
551 | 0 | if (plp == NULL) |
552 | 0 | return OPENSSL_strdup(""); |
553 | | |
554 | 0 | sz = ossl_property_list_to_string(libctx, *plp, NULL, 0); |
555 | 0 | if (sz == 0) { |
556 | 0 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR); |
557 | 0 | return NULL; |
558 | 0 | } |
559 | | |
560 | 0 | propstr = OPENSSL_malloc(sz); |
561 | 0 | if (propstr == NULL) |
562 | 0 | return NULL; |
563 | 0 | if (ossl_property_list_to_string(libctx, *plp, propstr, sz) == 0) { |
564 | 0 | ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR); |
565 | 0 | OPENSSL_free(propstr); |
566 | 0 | return NULL; |
567 | 0 | } |
568 | 0 | return propstr; |
569 | 0 | } |
570 | | |
571 | | struct filter_data_st { |
572 | | int operation_id; |
573 | | void (*user_fn)(void *method, void *arg); |
574 | | void *user_arg; |
575 | | }; |
576 | | |
577 | | static void filter_on_operation_id(int id, void *method, void *arg) |
578 | 35.7M | { |
579 | 35.7M | struct filter_data_st *data = arg; |
580 | | |
581 | 35.7M | if ((id & METHOD_ID_OPERATION_MASK) == data->operation_id) |
582 | 7.09M | data->user_fn(method, data->user_arg); |
583 | 35.7M | } |
584 | | |
585 | | void evp_generic_do_all(OSSL_LIB_CTX *libctx, int operation_id, |
586 | | void (*user_fn)(void *method, void *arg), |
587 | | void *user_arg, |
588 | | void *(*new_method)(int name_id, |
589 | | const OSSL_ALGORITHM *algodef, |
590 | | OSSL_PROVIDER *prov), |
591 | | int (*up_ref_method)(void *), |
592 | | void (*free_method)(void *)) |
593 | 394k | { |
594 | 394k | struct evp_method_data_st methdata; |
595 | 394k | struct filter_data_st data; |
596 | | |
597 | 394k | methdata.libctx = libctx; |
598 | 394k | methdata.tmp_store = NULL; |
599 | 394k | (void)inner_evp_generic_fetch(&methdata, NULL, operation_id, NULL, NULL, |
600 | 394k | new_method, up_ref_method, free_method); |
601 | | |
602 | 394k | data.operation_id = operation_id; |
603 | 394k | data.user_fn = user_fn; |
604 | 394k | data.user_arg = user_arg; |
605 | 394k | if (methdata.tmp_store != NULL) |
606 | 0 | ossl_method_store_do_all(methdata.tmp_store, &filter_on_operation_id, |
607 | 0 | &data); |
608 | 394k | ossl_method_store_do_all(get_evp_method_store(libctx), |
609 | 394k | &filter_on_operation_id, &data); |
610 | 394k | dealloc_tmp_evp_method_store(methdata.tmp_store); |
611 | 394k | } |
612 | | |
613 | | int evp_is_a(OSSL_PROVIDER *prov, int number, |
614 | | const char *legacy_name, const char *name) |
615 | 7.47M | { |
616 | | /* |
617 | | * For a |prov| that is NULL, the library context will be NULL |
618 | | */ |
619 | 7.47M | OSSL_LIB_CTX *libctx = ossl_provider_libctx(prov); |
620 | 7.47M | OSSL_NAMEMAP *namemap = ossl_namemap_stored(libctx); |
621 | | |
622 | 7.47M | if (prov == NULL) |
623 | 245k | number = ossl_namemap_name2num(namemap, legacy_name); |
624 | 7.47M | return ossl_namemap_name2num(namemap, name) == number; |
625 | 7.47M | } |
626 | | |
627 | | int evp_names_do_all(OSSL_PROVIDER *prov, int number, |
628 | | void (*fn)(const char *name, void *data), |
629 | | void *data) |
630 | 3.49M | { |
631 | 3.49M | OSSL_LIB_CTX *libctx = ossl_provider_libctx(prov); |
632 | 3.49M | OSSL_NAMEMAP *namemap = ossl_namemap_stored(libctx); |
633 | | |
634 | 3.49M | return ossl_namemap_doall_names(namemap, number, fn, data); |
635 | 3.49M | } |