xref: /openssl/crypto/evp/evp_fetch.c (revision 54fb2fd0)
1 /*
2  * Copyright 2019-2024 The OpenSSL Project Authors. All Rights Reserved.
3  *
4  * Licensed under the Apache License 2.0 (the "License").  You may not use
5  * this file except in compliance with the License.  You can obtain a copy
6  * in the file LICENSE in the source distribution or at
7  * https://www.openssl.org/source/license.html
8  */
9 
10 #include <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 #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  */
get_tmp_evp_method_store(void * data)47 static void *get_tmp_evp_method_store(void *data)
48 {
49     struct evp_method_data_st *methdata = data;
50 
51     if (methdata->tmp_store == NULL)
52         methdata->tmp_store = ossl_method_store_new(methdata->libctx);
53     return methdata->tmp_store;
54 }
55 
dealloc_tmp_evp_method_store(void * store)56  static void dealloc_tmp_evp_method_store(void *store)
57 {
58     if (store != NULL)
59         ossl_method_store_free(store);
60 }
61 
get_evp_method_store(OSSL_LIB_CTX * libctx)62 static OSSL_METHOD_STORE *get_evp_method_store(OSSL_LIB_CTX *libctx)
63 {
64     return ossl_lib_ctx_get_data(libctx, OSSL_LIB_CTX_EVP_METHOD_STORE_INDEX);
65 }
66 
reserve_evp_method_store(void * store,void * data)67 static int reserve_evp_method_store(void *store, void *data)
68 {
69     struct evp_method_data_st *methdata = data;
70 
71     if (store == NULL
72         && (store = get_evp_method_store(methdata->libctx)) == NULL)
73         return 0;
74 
75     return ossl_method_lock_store(store);
76 }
77 
unreserve_evp_method_store(void * store,void * data)78 static int unreserve_evp_method_store(void *store, void *data)
79 {
80     struct evp_method_data_st *methdata = data;
81 
82     if (store == NULL
83         && (store = get_evp_method_store(methdata->libctx)) == NULL)
84         return 0;
85 
86     return ossl_method_unlock_store(store);
87 }
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 #define METHOD_ID_OPERATION_MASK        0x000000FF
107 #define METHOD_ID_OPERATION_MAX         ((1 << 8) - 1)
108 #define METHOD_ID_NAME_MASK             0x7FFFFF00
109 #define METHOD_ID_NAME_OFFSET           8
110 #define METHOD_ID_NAME_MAX              ((1 << 23) - 1)
evp_method_id(int name_id,unsigned int operation_id)111 static uint32_t evp_method_id(int name_id, unsigned int operation_id)
112 {
113     if (!ossl_assert(name_id > 0 && name_id <= METHOD_ID_NAME_MAX)
114         || !ossl_assert(operation_id > 0
115                         && operation_id <= METHOD_ID_OPERATION_MAX))
116         return 0;
117     return (((name_id << METHOD_ID_NAME_OFFSET) & METHOD_ID_NAME_MASK)
118             | (operation_id & METHOD_ID_OPERATION_MASK));
119 }
120 
get_evp_method_from_store(void * store,const OSSL_PROVIDER ** prov,void * data)121 static void *get_evp_method_from_store(void *store, const OSSL_PROVIDER **prov,
122                                        void *data)
123 {
124     struct evp_method_data_st *methdata = data;
125     void *method = NULL;
126     int name_id;
127     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     if ((name_id = methdata->name_id) == 0 && methdata->names != NULL) {
135         OSSL_NAMEMAP *namemap = ossl_namemap_stored(methdata->libctx);
136         const char *names = methdata->names;
137         const char *q = strchr(names, NAME_SEPARATOR);
138         size_t l = (q == NULL ? strlen(names) : (size_t)(q - names));
139 
140         if (namemap == 0)
141             return NULL;
142         name_id = ossl_namemap_name2num_n(namemap, names, l);
143     }
144 
145     if (name_id == 0
146         || (meth_id = evp_method_id(name_id, methdata->operation_id)) == 0)
147         return NULL;
148 
149     if (store == NULL
150         && (store = get_evp_method_store(methdata->libctx)) == NULL)
151         return NULL;
152 
153     if (!ossl_method_store_fetch(store, meth_id, methdata->propquery, prov,
154                                  &method))
155         return NULL;
156     return method;
157 }
158 
put_evp_method_in_store(void * store,void * method,const OSSL_PROVIDER * prov,const char * names,const char * propdef,void * data)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 {
164     struct evp_method_data_st *methdata = data;
165     OSSL_NAMEMAP *namemap;
166     int name_id;
167     uint32_t meth_id;
168     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     if (names != NULL) {
177         const char *q = strchr(names, NAME_SEPARATOR);
178 
179         l = (q == NULL ? strlen(names) : (size_t)(q - names));
180     }
181 
182     if ((namemap = ossl_namemap_stored(methdata->libctx)) == NULL
183         || (name_id = ossl_namemap_name2num_n(namemap, names, l)) == 0
184         || (meth_id = evp_method_id(name_id, methdata->operation_id)) == 0)
185         return 0;
186 
187     if (store == NULL
188         && (store = get_evp_method_store(methdata->libctx)) == NULL)
189         return 0;
190 
191     return ossl_method_store_add(store, prov, meth_id, propdef, method,
192                                  methdata->refcnt_up_method,
193                                  methdata->destruct_method);
194 }
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  */
construct_evp_method(const OSSL_ALGORITHM * algodef,OSSL_PROVIDER * prov,void * data)200 static void *construct_evp_method(const OSSL_ALGORITHM *algodef,
201                                   OSSL_PROVIDER *prov, void *data)
202 {
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     struct evp_method_data_st *methdata = data;
211     OSSL_LIB_CTX *libctx = ossl_provider_libctx(prov);
212     OSSL_NAMEMAP *namemap = ossl_namemap_stored(libctx);
213     const char *names = algodef->algorithm_names;
214     int name_id = ossl_namemap_add_names(namemap, 0, names, NAME_SEPARATOR);
215     void *method;
216 
217     if (name_id == 0)
218         return NULL;
219 
220     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     if (method == NULL)
228         methdata->flag_construct_error_occurred = 1;
229 
230     return method;
231 }
232 
destruct_evp_method(void * method,void * data)233 static void destruct_evp_method(void *method, void *data)
234 {
235     struct evp_method_data_st *methdata = data;
236 
237     methdata->destruct_method(method);
238 }
239 
240 static void *
inner_evp_generic_fetch(struct evp_method_data_st * methdata,OSSL_PROVIDER * prov,int operation_id,const char * name,const char * properties,void * (* new_method)(int name_id,const OSSL_ALGORITHM * algodef,OSSL_PROVIDER * prov),int (* up_ref_method)(void *),void (* free_method)(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 {
250     OSSL_METHOD_STORE *store = get_evp_method_store(methdata->libctx);
251     OSSL_NAMEMAP *namemap = ossl_namemap_stored(methdata->libctx);
252     const char *const propq = properties != NULL ? properties : "";
253     uint32_t meth_id = 0;
254     void *method = NULL;
255     int unsupported, name_id;
256 
257     if (store == NULL || namemap == NULL) {
258         ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_INVALID_ARGUMENT);
259         return NULL;
260     }
261 
262     /*
263      * If there's ever an operation_id == 0 passed, we have an internal
264      * programming error.
265      */
266     if (!ossl_assert(operation_id > 0)) {
267         ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
268         return NULL;
269     }
270 
271     /* If we haven't received a name id yet, try to get one for the name */
272     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     if (name_id != 0 && (meth_id = evp_method_id(name_id, operation_id)) == 0) {
283         ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
284         return NULL;
285     }
286 
287     /*
288      * If we haven't found the name yet, chances are that the algorithm to
289      * be fetched is unsupported.
290      */
291     unsupported = name_id == 0;
292 
293     if (meth_id == 0
294         || !ossl_method_store_cache_get(store, prov, meth_id, propq, &method)) {
295         OSSL_METHOD_CONSTRUCT_METHOD mcm = {
296             get_tmp_evp_method_store,
297             reserve_evp_method_store,
298             unreserve_evp_method_store,
299             get_evp_method_from_store,
300             put_evp_method_in_store,
301             construct_evp_method,
302             destruct_evp_method
303         };
304 
305         methdata->operation_id = operation_id;
306         methdata->name_id = name_id;
307         methdata->names = name;
308         methdata->propquery = propq;
309         methdata->method_from_algorithm = new_method;
310         methdata->refcnt_up_method = up_ref_method;
311         methdata->destruct_method = free_method;
312         methdata->flag_construct_error_occurred = 0;
313         if ((method = ossl_method_construct(methdata->libctx, operation_id,
314                                             &prov, 0 /* !force_cache */,
315                                             &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              * Note that there is a corner case here, in which, if a user
322              * passes a name of the form name1:name2:..., then the construction
323              * will create a method against all names, but the lookup will fail
324              * as ossl_namemap_name2num treats the name string as a single name
325              * rather than introducing new features where in the EVP_<obj>_fetch
326              * parses the string and queries for each, return an error.
327              */
328             if (name_id == 0)
329                 name_id = ossl_namemap_name2num(namemap, name);
330             if (name_id == 0) {
331                 ERR_raise_data(ERR_LIB_EVP, ERR_R_FETCH_FAILED,
332                                "Algorithm %s cannot be found", name);
333                 free_method(method);
334                 method = NULL;
335             } else {
336                 meth_id = evp_method_id(name_id, operation_id);
337                 if (meth_id != 0)
338                     ossl_method_store_cache_set(store, prov, meth_id, propq,
339                                                 method, up_ref_method, free_method);
340             }
341         }
342 
343         /*
344          * If we never were in the constructor, the algorithm to be fetched
345          * is unsupported.
346          */
347         unsupported = !methdata->flag_construct_error_occurred;
348     }
349 
350     if ((name_id != 0 || name != NULL) && method == NULL) {
351         int code = unsupported ? ERR_R_UNSUPPORTED : ERR_R_FETCH_FAILED;
352 
353         if (name == NULL)
354             name = ossl_namemap_num2name(namemap, name_id, 0);
355         ERR_raise_data(ERR_LIB_EVP, code,
356                        "%s, Algorithm (%s : %d), Properties (%s)",
357                        ossl_lib_ctx_get_descriptor(methdata->libctx),
358                        name == NULL ? "<null>" : name, name_id,
359                        properties == NULL ? "<null>" : properties);
360     }
361 
362     return method;
363 }
364 
evp_generic_fetch(OSSL_LIB_CTX * libctx,int operation_id,const char * name,const char * properties,void * (* new_method)(int name_id,const OSSL_ALGORITHM * algodef,OSSL_PROVIDER * prov),int (* up_ref_method)(void *),void (* free_method)(void *))365 void *evp_generic_fetch(OSSL_LIB_CTX *libctx, int operation_id,
366                         const char *name, const char *properties,
367                         void *(*new_method)(int name_id,
368                                             const OSSL_ALGORITHM *algodef,
369                                             OSSL_PROVIDER *prov),
370                         int (*up_ref_method)(void *),
371                         void (*free_method)(void *))
372 {
373     struct evp_method_data_st methdata;
374     void *method;
375 
376     methdata.libctx = libctx;
377     methdata.tmp_store = NULL;
378     method = inner_evp_generic_fetch(&methdata, NULL, operation_id,
379                                      name, properties,
380                                      new_method, up_ref_method, free_method);
381     dealloc_tmp_evp_method_store(methdata.tmp_store);
382     return method;
383 }
384 
385 /*
386  * evp_generic_fetch_from_prov() is special, and only returns methods from
387  * the given provider.
388  * This is meant to be used when one method needs to fetch an associated
389  * method.
390  */
evp_generic_fetch_from_prov(OSSL_PROVIDER * prov,int operation_id,const char * name,const char * properties,void * (* new_method)(int name_id,const OSSL_ALGORITHM * algodef,OSSL_PROVIDER * prov),int (* up_ref_method)(void *),void (* free_method)(void *))391 void *evp_generic_fetch_from_prov(OSSL_PROVIDER *prov, int operation_id,
392                                   const char *name, const char *properties,
393                                   void *(*new_method)(int name_id,
394                                                       const OSSL_ALGORITHM *algodef,
395                                                       OSSL_PROVIDER *prov),
396                                   int (*up_ref_method)(void *),
397                                   void (*free_method)(void *))
398 {
399     struct evp_method_data_st methdata;
400     void *method;
401 
402     methdata.libctx = ossl_provider_libctx(prov);
403     methdata.tmp_store = NULL;
404     method = inner_evp_generic_fetch(&methdata, prov, operation_id,
405                                      name, properties,
406                                      new_method, up_ref_method, free_method);
407     dealloc_tmp_evp_method_store(methdata.tmp_store);
408     return method;
409 }
410 
evp_method_store_cache_flush(OSSL_LIB_CTX * libctx)411 int evp_method_store_cache_flush(OSSL_LIB_CTX *libctx)
412 {
413     OSSL_METHOD_STORE *store = get_evp_method_store(libctx);
414 
415     if (store != NULL)
416         return ossl_method_store_cache_flush_all(store);
417     return 1;
418 }
419 
evp_method_store_remove_all_provided(const OSSL_PROVIDER * prov)420 int evp_method_store_remove_all_provided(const OSSL_PROVIDER *prov)
421 {
422     OSSL_LIB_CTX *libctx = ossl_provider_libctx(prov);
423     OSSL_METHOD_STORE *store = get_evp_method_store(libctx);
424 
425     if (store != NULL)
426         return ossl_method_store_remove_all_provided(store, prov);
427     return 1;
428 }
429 
evp_set_parsed_default_properties(OSSL_LIB_CTX * libctx,OSSL_PROPERTY_LIST * def_prop,int loadconfig,int mirrored)430 static int evp_set_parsed_default_properties(OSSL_LIB_CTX *libctx,
431                                              OSSL_PROPERTY_LIST *def_prop,
432                                              int loadconfig,
433                                              int mirrored)
434 {
435     OSSL_METHOD_STORE *store = get_evp_method_store(libctx);
436     OSSL_PROPERTY_LIST **plp = ossl_ctx_global_properties(libctx, loadconfig);
437 
438     if (plp != NULL && store != NULL) {
439         int ret;
440 #ifndef FIPS_MODULE
441         char *propstr = NULL;
442         size_t strsz;
443 
444         if (mirrored) {
445             if (ossl_global_properties_no_mirrored(libctx))
446                 return 0;
447         } else {
448             /*
449              * These properties have been explicitly set on this libctx, so
450              * don't allow any mirroring from a parent libctx.
451              */
452             ossl_global_properties_stop_mirroring(libctx);
453         }
454 
455         strsz = ossl_property_list_to_string(libctx, def_prop, NULL, 0);
456         if (strsz > 0)
457             propstr = OPENSSL_malloc(strsz);
458         if (propstr == NULL) {
459             ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
460             return 0;
461         }
462         if (ossl_property_list_to_string(libctx, def_prop, propstr,
463                                          strsz) == 0) {
464             OPENSSL_free(propstr);
465             ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
466             return 0;
467         }
468         ossl_provider_default_props_update(libctx, propstr);
469         OPENSSL_free(propstr);
470 #endif
471         ossl_property_free(*plp);
472         *plp = def_prop;
473 
474         ret = ossl_method_store_cache_flush_all(store);
475 #ifndef FIPS_MODULE
476         ossl_decoder_cache_flush(libctx);
477 #endif
478         return ret;
479     }
480     ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
481     return 0;
482 }
483 
evp_set_default_properties_int(OSSL_LIB_CTX * libctx,const char * propq,int loadconfig,int mirrored)484 int evp_set_default_properties_int(OSSL_LIB_CTX *libctx, const char *propq,
485                                    int loadconfig, int mirrored)
486 {
487     OSSL_PROPERTY_LIST *pl = NULL;
488 
489     if (propq != NULL && (pl = ossl_parse_query(libctx, propq, 1)) == NULL) {
490         ERR_raise(ERR_LIB_EVP, EVP_R_DEFAULT_QUERY_PARSE_ERROR);
491         return 0;
492     }
493     if (!evp_set_parsed_default_properties(libctx, pl, loadconfig, mirrored)) {
494         ossl_property_free(pl);
495         return 0;
496     }
497     return 1;
498 }
499 
EVP_set_default_properties(OSSL_LIB_CTX * libctx,const char * propq)500 int EVP_set_default_properties(OSSL_LIB_CTX *libctx, const char *propq)
501 {
502     return evp_set_default_properties_int(libctx, propq, 1, 0);
503 }
504 
evp_default_properties_merge(OSSL_LIB_CTX * libctx,const char * propq,int loadconfig)505 static int evp_default_properties_merge(OSSL_LIB_CTX *libctx, const char *propq,
506                                         int loadconfig)
507 {
508     OSSL_PROPERTY_LIST **plp = ossl_ctx_global_properties(libctx, loadconfig);
509     OSSL_PROPERTY_LIST *pl1, *pl2;
510 
511     if (propq == NULL)
512         return 1;
513     if (plp == NULL || *plp == NULL)
514         return evp_set_default_properties_int(libctx, propq, 0, 0);
515     if ((pl1 = ossl_parse_query(libctx, propq, 1)) == NULL) {
516         ERR_raise(ERR_LIB_EVP, EVP_R_DEFAULT_QUERY_PARSE_ERROR);
517         return 0;
518     }
519     pl2 = ossl_property_merge(pl1, *plp);
520     ossl_property_free(pl1);
521     if (pl2 == NULL) {
522         ERR_raise(ERR_LIB_EVP, ERR_R_CRYPTO_LIB);
523         return 0;
524     }
525     if (!evp_set_parsed_default_properties(libctx, pl2, 0, 0)) {
526         ossl_property_free(pl2);
527         return 0;
528     }
529     return 1;
530 }
531 
evp_default_property_is_enabled(OSSL_LIB_CTX * libctx,const char * prop_name)532 static int evp_default_property_is_enabled(OSSL_LIB_CTX *libctx,
533                                            const char *prop_name)
534 {
535     OSSL_PROPERTY_LIST **plp = ossl_ctx_global_properties(libctx, 1);
536 
537     return plp != NULL && ossl_property_is_enabled(libctx, prop_name, *plp);
538 }
539 
EVP_default_properties_is_fips_enabled(OSSL_LIB_CTX * libctx)540 int EVP_default_properties_is_fips_enabled(OSSL_LIB_CTX *libctx)
541 {
542     return evp_default_property_is_enabled(libctx, "fips");
543 }
544 
evp_default_properties_enable_fips_int(OSSL_LIB_CTX * libctx,int enable,int loadconfig)545 int evp_default_properties_enable_fips_int(OSSL_LIB_CTX *libctx, int enable,
546                                            int loadconfig)
547 {
548     const char *query = (enable != 0) ? "fips=yes" : "-fips";
549 
550     return evp_default_properties_merge(libctx, query, loadconfig);
551 }
552 
EVP_default_properties_enable_fips(OSSL_LIB_CTX * libctx,int enable)553 int EVP_default_properties_enable_fips(OSSL_LIB_CTX *libctx, int enable)
554 {
555     return evp_default_properties_enable_fips_int(libctx, enable, 1);
556 }
557 
evp_get_global_properties_str(OSSL_LIB_CTX * libctx,int loadconfig)558 char *evp_get_global_properties_str(OSSL_LIB_CTX *libctx, int loadconfig)
559 {
560     OSSL_PROPERTY_LIST **plp = ossl_ctx_global_properties(libctx, loadconfig);
561     char *propstr = NULL;
562     size_t sz;
563 
564     if (plp == NULL)
565         return OPENSSL_strdup("");
566 
567     sz = ossl_property_list_to_string(libctx, *plp, NULL, 0);
568     if (sz == 0) {
569         ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
570         return NULL;
571     }
572 
573     propstr = OPENSSL_malloc(sz);
574     if (propstr == NULL)
575         return NULL;
576     if (ossl_property_list_to_string(libctx, *plp, propstr, sz) == 0) {
577         ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);
578         OPENSSL_free(propstr);
579         return NULL;
580     }
581     return propstr;
582 }
583 
EVP_get1_default_properties(OSSL_LIB_CTX * libctx)584 char *EVP_get1_default_properties(OSSL_LIB_CTX *libctx)
585 {
586     return evp_get_global_properties_str(libctx, ossl_lib_ctx_is_global_default(libctx));
587 }
588 
589 struct filter_data_st {
590     int operation_id;
591     void (*user_fn)(void *method, void *arg);
592     void *user_arg;
593 };
594 
filter_on_operation_id(int id,void * method,void * arg)595 static void filter_on_operation_id(int id, void *method, void *arg)
596 {
597     struct filter_data_st *data = arg;
598 
599     if ((id & METHOD_ID_OPERATION_MASK) == data->operation_id)
600         data->user_fn(method, data->user_arg);
601 }
602 
evp_generic_do_all(OSSL_LIB_CTX * libctx,int operation_id,void (* user_fn)(void * method,void * arg),void * user_arg,void * (* new_method)(int name_id,const OSSL_ALGORITHM * algodef,OSSL_PROVIDER * prov),int (* up_ref_method)(void *),void (* free_method)(void *))603 void evp_generic_do_all(OSSL_LIB_CTX *libctx, int operation_id,
604                         void (*user_fn)(void *method, void *arg),
605                         void *user_arg,
606                         void *(*new_method)(int name_id,
607                                             const OSSL_ALGORITHM *algodef,
608                                             OSSL_PROVIDER *prov),
609                         int (*up_ref_method)(void *),
610                         void (*free_method)(void *))
611 {
612     struct evp_method_data_st methdata;
613     struct filter_data_st data;
614 
615     methdata.libctx = libctx;
616     methdata.tmp_store = NULL;
617     (void)inner_evp_generic_fetch(&methdata, NULL, operation_id, NULL, NULL,
618                                   new_method, up_ref_method, free_method);
619 
620     data.operation_id = operation_id;
621     data.user_fn = user_fn;
622     data.user_arg = user_arg;
623     if (methdata.tmp_store != NULL)
624         ossl_method_store_do_all(methdata.tmp_store, &filter_on_operation_id,
625                                  &data);
626     ossl_method_store_do_all(get_evp_method_store(libctx),
627                              &filter_on_operation_id, &data);
628     dealloc_tmp_evp_method_store(methdata.tmp_store);
629 }
630 
evp_is_a(OSSL_PROVIDER * prov,int number,const char * legacy_name,const char * name)631 int evp_is_a(OSSL_PROVIDER *prov, int number,
632              const char *legacy_name, const char *name)
633 {
634     /*
635      * For a |prov| that is NULL, the library context will be NULL
636      */
637     OSSL_LIB_CTX *libctx = ossl_provider_libctx(prov);
638     OSSL_NAMEMAP *namemap = ossl_namemap_stored(libctx);
639 
640     if (prov == NULL)
641         number = ossl_namemap_name2num(namemap, legacy_name);
642     return ossl_namemap_name2num(namemap, name) == number;
643 }
644 
evp_names_do_all(OSSL_PROVIDER * prov,int number,void (* fn)(const char * name,void * data),void * data)645 int evp_names_do_all(OSSL_PROVIDER *prov, int number,
646                      void (*fn)(const char *name, void *data),
647                      void *data)
648 {
649     OSSL_LIB_CTX *libctx = ossl_provider_libctx(prov);
650     OSSL_NAMEMAP *namemap = ossl_namemap_stored(libctx);
651 
652     return ossl_namemap_doall_names(namemap, number, fn, data);
653 }
654