Coverage Report

Created: 2026-01-09 07:00

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/openssl/include/crypto/evp.h
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Count
Source
1
/*
2
 * Copyright 2015-2025 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
#ifndef OSSL_CRYPTO_EVP_H
11
#define OSSL_CRYPTO_EVP_H
12
#pragma once
13
14
#include <openssl/evp.h>
15
#include <openssl/core_dispatch.h>
16
#include "internal/refcount.h"
17
#include "crypto/ecx.h"
18
19
/*
20
 * Default PKCS5 PBE KDF salt lengths
21
 * In RFC 8018, PBE1 uses 8 bytes (64 bits) for its salt length.
22
 * It also specifies to use at least 8 bytes for PBES2.
23
 * The NIST requirement for PBKDF2 is 128 bits so we use this as the
24
 * default for PBE2 (scrypt and HKDF2)
25
 */
26
0
#define PKCS5_DEFAULT_PBE1_SALT_LEN PKCS5_SALT_LEN
27
0
#define PKCS5_DEFAULT_PBE2_SALT_LEN 16
28
/*
29
 * Don't free up md_ctx->pctx in EVP_MD_CTX_reset, use the reserved flag
30
 * values in evp.h
31
 */
32
18.1k
#define EVP_MD_CTX_FLAG_KEEP_PKEY_CTX 0x0400
33
53.5k
#define EVP_MD_CTX_FLAG_FINALISED 0x0800
34
35
#define evp_pkey_ctx_is_legacy(ctx) \
36
0
    ((ctx)->keymgmt == NULL)
37
#define evp_pkey_ctx_is_provided(ctx) \
38
0
    (!evp_pkey_ctx_is_legacy(ctx))
39
40
struct evp_pkey_ctx_st {
41
    /* Actual operation */
42
    int operation;
43
44
    /*
45
     * Library context, property query, keytype and keymgmt associated with
46
     * this context
47
     */
48
    OSSL_LIB_CTX *libctx;
49
    char *propquery;
50
    const char *keytype;
51
    /* If |pkey| below is set, this field is always a reference to its keymgmt */
52
    EVP_KEYMGMT *keymgmt;
53
54
    union {
55
        struct {
56
            void *genctx;
57
        } keymgmt;
58
59
        struct {
60
            EVP_KEYEXCH *exchange;
61
            /*
62
             * Opaque ctx returned from a providers exchange algorithm
63
             * implementation OSSL_FUNC_keyexch_newctx()
64
             */
65
            void *algctx;
66
        } kex;
67
68
        struct {
69
            EVP_SIGNATURE *signature;
70
            /*
71
             * Opaque ctx returned from a providers signature algorithm
72
             * implementation OSSL_FUNC_signature_newctx()
73
             */
74
            void *algctx;
75
        } sig;
76
77
        struct {
78
            EVP_ASYM_CIPHER *cipher;
79
            /*
80
             * Opaque ctx returned from a providers asymmetric cipher algorithm
81
             * implementation OSSL_FUNC_asym_cipher_newctx()
82
             */
83
            void *algctx;
84
        } ciph;
85
        struct {
86
            EVP_KEM *kem;
87
            /*
88
             * Opaque ctx returned from a providers KEM algorithm
89
             * implementation OSSL_FUNC_kem_newctx()
90
             */
91
            void *algctx;
92
        } encap;
93
    } op;
94
95
    /*
96
     * Cached parameters.  Inits of operations that depend on these should
97
     * call evp_pkey_ctx_use_delayed_data() when the operation has been set
98
     * up properly.
99
     */
100
    struct {
101
        /* Distinguishing Identifier, ISO/IEC 15946-3, FIPS 196 */
102
        char *dist_id_name; /* The name used with EVP_PKEY_CTX_ctrl_str() */
103
        void *dist_id; /* The distinguishing ID itself */
104
        size_t dist_id_len; /* The length of the distinguishing ID */
105
106
        /* Indicators of what has been set.  Keep them together! */
107
        unsigned int dist_id_set : 1;
108
    } cached_parameters;
109
110
    /* Application specific data, usually used by the callback */
111
    void *app_data;
112
    /* Keygen callback */
113
    EVP_PKEY_gen_cb *pkey_gencb;
114
    /* implementation specific keygen data */
115
    int *keygen_info;
116
    int keygen_info_count;
117
118
    /* Legacy fields below */
119
120
    /* EVP_PKEY identity */
121
    int legacy_keytype;
122
    /* Key: may be NULL */
123
    EVP_PKEY *pkey;
124
    /* Peer key for key agreement, may be NULL */
125
    EVP_PKEY *peerkey;
126
    /* Algorithm specific data */
127
    void *data;
128
    /*
129
     * Used to support taking custody of memory in the case of a provider being
130
     * used with the deprecated EVP_PKEY_CTX_set_rsa_keygen_pubexp() API. This
131
     * member should NOT be used for any other purpose and should be removed
132
     * when said deprecated API is excised completely.
133
     */
134
    BIGNUM *rsa_pubexp;
135
} /* EVP_PKEY_CTX */;
136
137
#define EVP_PKEY_FLAG_DYNAMIC 1
138
139
void evp_pkey_set_cb_translate(BN_GENCB *cb, EVP_PKEY_CTX *ctx);
140
141
struct evp_mac_st {
142
    OSSL_PROVIDER *prov;
143
    int name_id;
144
    char *type_name;
145
    const char *description;
146
147
    CRYPTO_REF_COUNT refcnt;
148
149
    OSSL_FUNC_mac_newctx_fn *newctx;
150
    OSSL_FUNC_mac_dupctx_fn *dupctx;
151
    OSSL_FUNC_mac_freectx_fn *freectx;
152
    OSSL_FUNC_mac_init_fn *init;
153
    OSSL_FUNC_mac_update_fn *update;
154
    OSSL_FUNC_mac_final_fn *final;
155
    OSSL_FUNC_mac_gettable_params_fn *gettable_params;
156
    OSSL_FUNC_mac_gettable_ctx_params_fn *gettable_ctx_params;
157
    OSSL_FUNC_mac_settable_ctx_params_fn *settable_ctx_params;
158
    OSSL_FUNC_mac_get_params_fn *get_params;
159
    OSSL_FUNC_mac_get_ctx_params_fn *get_ctx_params;
160
    OSSL_FUNC_mac_set_ctx_params_fn *set_ctx_params;
161
    OSSL_FUNC_mac_init_skey_fn *init_skey;
162
};
163
164
struct evp_kdf_st {
165
    OSSL_PROVIDER *prov;
166
    int name_id;
167
    char *type_name;
168
    const char *description;
169
    CRYPTO_REF_COUNT refcnt;
170
171
    OSSL_FUNC_kdf_newctx_fn *newctx;
172
    OSSL_FUNC_kdf_dupctx_fn *dupctx;
173
    OSSL_FUNC_kdf_freectx_fn *freectx;
174
    OSSL_FUNC_kdf_reset_fn *reset;
175
    OSSL_FUNC_kdf_derive_fn *derive;
176
    OSSL_FUNC_kdf_gettable_params_fn *gettable_params;
177
    OSSL_FUNC_kdf_gettable_ctx_params_fn *gettable_ctx_params;
178
    OSSL_FUNC_kdf_settable_ctx_params_fn *settable_ctx_params;
179
    OSSL_FUNC_kdf_get_params_fn *get_params;
180
    OSSL_FUNC_kdf_get_ctx_params_fn *get_ctx_params;
181
    OSSL_FUNC_kdf_set_ctx_params_fn *set_ctx_params;
182
    OSSL_FUNC_kdf_set_skey_fn *set_skey;
183
    OSSL_FUNC_kdf_derive_skey_fn *derive_skey;
184
};
185
186
2.01M
#define EVP_ORIG_DYNAMIC 0
187
18
#define EVP_ORIG_GLOBAL 1
188
189
struct evp_md_st {
190
    /* nid */
191
    int type;
192
193
    /* Legacy structure members */
194
    int pkey_type;
195
    int md_size;
196
    unsigned long flags;
197
    int origin;
198
    int (*init)(EVP_MD_CTX *ctx);
199
    int (*update)(EVP_MD_CTX *ctx, const void *data, size_t count);
200
    int (*final)(EVP_MD_CTX *ctx, unsigned char *md);
201
    int (*copy)(EVP_MD_CTX *to, const EVP_MD_CTX *from);
202
    int (*cleanup)(EVP_MD_CTX *ctx);
203
    int block_size;
204
    int ctx_size; /* how big does the ctx->md_data need to be */
205
    /* control function */
206
    int (*md_ctrl)(EVP_MD_CTX *ctx, int cmd, int p1, void *p2);
207
208
    /* New structure members */
209
    /* Above comment to be removed when legacy has gone */
210
    int name_id;
211
    char *type_name;
212
    const char *description;
213
    OSSL_PROVIDER *prov;
214
    CRYPTO_REF_COUNT refcnt;
215
    OSSL_FUNC_digest_newctx_fn *newctx;
216
    OSSL_FUNC_digest_init_fn *dinit;
217
    OSSL_FUNC_digest_update_fn *dupdate;
218
    OSSL_FUNC_digest_final_fn *dfinal;
219
    OSSL_FUNC_digest_squeeze_fn *dsqueeze;
220
    OSSL_FUNC_digest_digest_fn *digest;
221
    OSSL_FUNC_digest_freectx_fn *freectx;
222
    OSSL_FUNC_digest_copyctx_fn *copyctx;
223
    OSSL_FUNC_digest_dupctx_fn *dupctx;
224
    OSSL_FUNC_digest_get_params_fn *get_params;
225
    OSSL_FUNC_digest_set_ctx_params_fn *set_ctx_params;
226
    OSSL_FUNC_digest_get_ctx_params_fn *get_ctx_params;
227
    OSSL_FUNC_digest_gettable_params_fn *gettable_params;
228
    OSSL_FUNC_digest_settable_ctx_params_fn *settable_ctx_params;
229
    OSSL_FUNC_digest_gettable_ctx_params_fn *gettable_ctx_params;
230
    OSSL_FUNC_digest_serialize_fn *serialize;
231
    OSSL_FUNC_digest_deserialize_fn *deserialize;
232
233
} /* EVP_MD */;
234
235
struct evp_cipher_st {
236
    int nid;
237
238
    int block_size;
239
    /* Default value for variable length ciphers */
240
    int key_len;
241
    int iv_len;
242
243
    /* Legacy structure members */
244
    /* Various flags */
245
    unsigned long flags;
246
    /* How the EVP_CIPHER was created. */
247
    int origin;
248
    /* init key */
249
    int (*init)(EVP_CIPHER_CTX *ctx, const unsigned char *key,
250
        const unsigned char *iv, int enc);
251
    /* encrypt/decrypt data */
252
    int (*do_cipher)(EVP_CIPHER_CTX *ctx, unsigned char *out,
253
        const unsigned char *in, size_t inl);
254
    /* cleanup ctx */
255
    int (*cleanup)(EVP_CIPHER_CTX *);
256
    /* how big ctx->cipher_data needs to be */
257
    int ctx_size;
258
    /* Populate a ASN1_TYPE with parameters */
259
    int (*set_asn1_parameters)(EVP_CIPHER_CTX *, ASN1_TYPE *);
260
    /* Get parameters from a ASN1_TYPE */
261
    int (*get_asn1_parameters)(EVP_CIPHER_CTX *, ASN1_TYPE *);
262
    /* Miscellaneous operations */
263
    int (*ctrl)(EVP_CIPHER_CTX *, int type, int arg, void *ptr);
264
    /* Application data */
265
    void *app_data;
266
267
    /* New structure members */
268
    /* Above comment to be removed when legacy has gone */
269
    int name_id;
270
    char *type_name;
271
    const char *description;
272
    OSSL_PROVIDER *prov;
273
    CRYPTO_REF_COUNT refcnt;
274
    OSSL_FUNC_cipher_newctx_fn *newctx;
275
    OSSL_FUNC_cipher_encrypt_init_fn *einit;
276
    OSSL_FUNC_cipher_decrypt_init_fn *dinit;
277
    OSSL_FUNC_cipher_update_fn *cupdate;
278
    OSSL_FUNC_cipher_final_fn *cfinal;
279
    OSSL_FUNC_cipher_cipher_fn *ccipher;
280
    OSSL_FUNC_cipher_pipeline_encrypt_init_fn *p_einit;
281
    OSSL_FUNC_cipher_pipeline_decrypt_init_fn *p_dinit;
282
    OSSL_FUNC_cipher_pipeline_update_fn *p_cupdate;
283
    OSSL_FUNC_cipher_pipeline_final_fn *p_cfinal;
284
    OSSL_FUNC_cipher_freectx_fn *freectx;
285
    OSSL_FUNC_cipher_dupctx_fn *dupctx;
286
    OSSL_FUNC_cipher_get_params_fn *get_params;
287
    OSSL_FUNC_cipher_get_ctx_params_fn *get_ctx_params;
288
    OSSL_FUNC_cipher_set_ctx_params_fn *set_ctx_params;
289
    OSSL_FUNC_cipher_gettable_params_fn *gettable_params;
290
    OSSL_FUNC_cipher_gettable_ctx_params_fn *gettable_ctx_params;
291
    OSSL_FUNC_cipher_settable_ctx_params_fn *settable_ctx_params;
292
    OSSL_FUNC_cipher_encrypt_skey_init_fn *einit_skey;
293
    OSSL_FUNC_cipher_decrypt_skey_init_fn *dinit_skey;
294
} /* EVP_CIPHER */;
295
296
/* Macros to code block cipher wrappers */
297
298
/* Wrapper functions for each cipher mode */
299
300
#define EVP_C_DATA(kstruct, ctx) \
301
0
    ((kstruct *)EVP_CIPHER_CTX_get_cipher_data(ctx))
302
303
#define BLOCK_CIPHER_ecb_loop()                       \
304
0
    size_t i, bl;                                     \
305
0
    bl = EVP_CIPHER_CTX_get0_cipher(ctx)->block_size; \
306
0
    if (inl < bl)                                     \
307
0
        return 1;                                     \
308
0
    inl -= bl;                                        \
309
0
    for (i = 0; i <= inl; i += bl)
310
311
#define BLOCK_CIPHER_func_ecb(cname, cprefix, kstruct, ksched)                                                            \
312
    static int cname##_ecb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out, const unsigned char *in, size_t inl)           \
313
0
    {                                                                                                                     \
314
0
        BLOCK_CIPHER_ecb_loop()                                                                                           \
315
0
            cprefix##_ecb_encrypt(in + i, out + i, &EVP_C_DATA(kstruct, ctx)->ksched, EVP_CIPHER_CTX_is_encrypting(ctx)); \
316
0
        return 1;                                                                                                         \
317
0
    }
Unexecuted instantiation: e_aria.c:aria_128_ecb_cipher
Unexecuted instantiation: e_aria.c:aria_192_ecb_cipher
Unexecuted instantiation: e_aria.c:aria_256_ecb_cipher
Unexecuted instantiation: e_bf.c:bf_ecb_cipher
Unexecuted instantiation: e_cast.c:cast5_ecb_cipher
Unexecuted instantiation: e_rc2.c:rc2_ecb_cipher
Unexecuted instantiation: e_seed.c:seed_ecb_cipher
318
319
0
#define EVP_MAXCHUNK ((size_t)1 << 30)
320
321
#define BLOCK_CIPHER_func_ofb(cname, cprefix, cbits, kstruct, ksched)                                                      \
322
    static int cname##_ofb_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out, const unsigned char *in, size_t inl)            \
323
0
    {                                                                                                                      \
324
0
        while (inl >= EVP_MAXCHUNK) {                                                                                      \
325
0
            int num = EVP_CIPHER_CTX_get_num(ctx);                                                                         \
326
0
            cprefix##_ofb##cbits##_encrypt(in, out, (long)EVP_MAXCHUNK, &EVP_C_DATA(kstruct, ctx)->ksched, ctx->iv, &num); \
327
0
            EVP_CIPHER_CTX_set_num(ctx, num);                                                                              \
328
0
            inl -= EVP_MAXCHUNK;                                                                                           \
329
0
            in += EVP_MAXCHUNK;                                                                                            \
330
0
            out += EVP_MAXCHUNK;                                                                                           \
331
0
        }                                                                                                                  \
332
0
        if (inl) {                                                                                                         \
333
0
            int num = EVP_CIPHER_CTX_get_num(ctx);                                                                         \
334
0
            cprefix##_ofb##cbits##_encrypt(in, out, (long)inl, &EVP_C_DATA(kstruct, ctx)->ksched, ctx->iv, &num);          \
335
0
            EVP_CIPHER_CTX_set_num(ctx, num);                                                                              \
336
0
        }                                                                                                                  \
337
0
        return 1;                                                                                                          \
338
0
    }
Unexecuted instantiation: e_aria.c:aria_128_ofb_cipher
Unexecuted instantiation: e_aria.c:aria_192_ofb_cipher
Unexecuted instantiation: e_aria.c:aria_256_ofb_cipher
Unexecuted instantiation: e_bf.c:bf_ofb_cipher
Unexecuted instantiation: e_cast.c:cast5_ofb_cipher
Unexecuted instantiation: e_idea.c:idea_ofb_cipher
Unexecuted instantiation: e_rc2.c:rc2_ofb_cipher
Unexecuted instantiation: e_seed.c:seed_ofb_cipher
339
340
#define BLOCK_CIPHER_func_cbc(cname, cprefix, kstruct, ksched)                                                                                 \
341
    static int cname##_cbc_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out, const unsigned char *in, size_t inl)                                \
342
0
    {                                                                                                                                          \
343
0
        while (inl >= EVP_MAXCHUNK) {                                                                                                          \
344
0
            cprefix##_cbc_encrypt(in, out, (long)EVP_MAXCHUNK, &EVP_C_DATA(kstruct, ctx)->ksched, ctx->iv, EVP_CIPHER_CTX_is_encrypting(ctx)); \
345
0
            inl -= EVP_MAXCHUNK;                                                                                                               \
346
0
            in += EVP_MAXCHUNK;                                                                                                                \
347
0
            out += EVP_MAXCHUNK;                                                                                                               \
348
0
        }                                                                                                                                      \
349
0
        if (inl)                                                                                                                               \
350
0
            cprefix##_cbc_encrypt(in, out, (long)inl, &EVP_C_DATA(kstruct, ctx)->ksched, ctx->iv, EVP_CIPHER_CTX_is_encrypting(ctx));          \
351
0
        return 1;                                                                                                                              \
352
0
    }
Unexecuted instantiation: e_aria.c:aria_128_cbc_cipher
Unexecuted instantiation: e_aria.c:aria_192_cbc_cipher
Unexecuted instantiation: e_aria.c:aria_256_cbc_cipher
Unexecuted instantiation: e_bf.c:bf_cbc_cipher
Unexecuted instantiation: e_cast.c:cast5_cbc_cipher
Unexecuted instantiation: e_idea.c:idea_cbc_cipher
Unexecuted instantiation: e_rc2.c:rc2_cbc_cipher
Unexecuted instantiation: e_seed.c:seed_cbc_cipher
353
354
#define BLOCK_CIPHER_func_cfb(cname, cprefix, cbits, kstruct, ksched)                                                                                       \
355
    static int cname##_cfb##cbits##_cipher(EVP_CIPHER_CTX *ctx, unsigned char *out, const unsigned char *in, size_t inl)                                    \
356
0
    {                                                                                                                                                       \
357
0
        size_t chunk = EVP_MAXCHUNK;                                                                                                                        \
358
0
        if (cbits == 1)                                                                                                                                     \
359
0
            chunk >>= 3;                                                                                                                                    \
360
0
        if (inl < chunk)                                                                                                                                    \
361
0
            chunk = inl;                                                                                                                                    \
362
0
        while (inl && inl >= chunk) {                                                                                                                       \
363
0
            int num = EVP_CIPHER_CTX_get_num(ctx);                                                                                                          \
364
0
            cprefix##_cfb##cbits##_encrypt(in, out, (long)((cbits == 1) && !EVP_CIPHER_CTX_test_flags(ctx, EVP_CIPH_FLAG_LENGTH_BITS) ? chunk * 8 : chunk), \
365
0
                &EVP_C_DATA(kstruct, ctx)->ksched, ctx->iv,                                                                                                 \
366
0
                &num, EVP_CIPHER_CTX_is_encrypting(ctx));                                                                                                   \
367
0
            EVP_CIPHER_CTX_set_num(ctx, num);                                                                                                               \
368
0
            inl -= chunk;                                                                                                                                   \
369
0
            in += chunk;                                                                                                                                    \
370
0
            out += chunk;                                                                                                                                   \
371
0
            if (inl < chunk)                                                                                                                                \
372
0
                chunk = inl;                                                                                                                                \
373
0
        }                                                                                                                                                   \
374
0
        return 1;                                                                                                                                           \
375
0
    }
Unexecuted instantiation: e_aria.c:aria_128_cfb128_cipher
Unexecuted instantiation: e_aria.c:aria_192_cfb128_cipher
Unexecuted instantiation: e_aria.c:aria_256_cfb128_cipher
Unexecuted instantiation: e_aria.c:aria_128_cfb1_cipher
Unexecuted instantiation: e_aria.c:aria_192_cfb1_cipher
Unexecuted instantiation: e_aria.c:aria_256_cfb1_cipher
Unexecuted instantiation: e_aria.c:aria_128_cfb8_cipher
Unexecuted instantiation: e_aria.c:aria_192_cfb8_cipher
Unexecuted instantiation: e_aria.c:aria_256_cfb8_cipher
Unexecuted instantiation: e_bf.c:bf_cfb64_cipher
Unexecuted instantiation: e_cast.c:cast5_cfb64_cipher
Unexecuted instantiation: e_idea.c:idea_cfb64_cipher
Unexecuted instantiation: e_rc2.c:rc2_cfb64_cipher
Unexecuted instantiation: e_seed.c:seed_cfb128_cipher
376
377
#define BLOCK_CIPHER_all_funcs(cname, cprefix, cbits, kstruct, ksched) \
378
    BLOCK_CIPHER_func_cbc(cname, cprefix, kstruct, ksched)             \
379
        BLOCK_CIPHER_func_cfb(cname, cprefix, cbits, kstruct, ksched)  \
380
            BLOCK_CIPHER_func_ecb(cname, cprefix, kstruct, ksched)     \
381
                BLOCK_CIPHER_func_ofb(cname, cprefix, cbits, kstruct, ksched)
382
383
#define BLOCK_CIPHER_def1(cname, nmode, mode, MODE, kstruct, nid, block_size, \
384
    key_len, iv_len, flags, init_key, cleanup,                                \
385
    set_asn1, get_asn1, ctrl)                                                 \
386
    static const EVP_CIPHER cname##_##mode = {                                \
387
        nid##_##nmode, block_size, key_len, iv_len,                           \
388
        flags | EVP_CIPH_##MODE##_MODE,                                       \
389
        EVP_ORIG_GLOBAL,                                                      \
390
        init_key,                                                             \
391
        cname##_##mode##_cipher,                                              \
392
        cleanup,                                                              \
393
        sizeof(kstruct),                                                      \
394
        set_asn1, get_asn1,                                                   \
395
        ctrl,                                                                 \
396
        NULL                                                                  \
397
    };                                                                        \
398
156
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_128_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_128_cfb128
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_128_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_128_ecb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_192_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_192_cfb128
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_192_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_192_ecb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_256_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_256_cfb128
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_256_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_256_ecb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_128_cfb1
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_192_cfb1
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_256_cfb1
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_128_cfb8
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_192_cfb8
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_aria_256_cfb8
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_bf_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_bf_cfb64
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_bf_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_bf_ecb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_cast5_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_cast5_cfb64
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_cast5_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_cast5_ecb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_cfb64
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_ecb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_cfb1
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_cfb8
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_ede_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_ede_cfb64
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_ede_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
Unexecuted instantiation: EVP_des_ede_ecb
EVP_des_ede3_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_ede3_cfb64
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_ede3_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
Unexecuted instantiation: EVP_des_ede3_ecb
EVP_des_ede3_cfb1
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_des_ede3_cfb8
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_idea_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_idea_cfb64
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_idea_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_idea_ecb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_rc2_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_rc2_cfb64
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_rc2_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_rc2_ecb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_seed_cbc
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_seed_cfb128
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_seed_ofb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
EVP_seed_ecb
Line
Count
Source
398
3
    const EVP_CIPHER *EVP_##cname##_##mode(void) { return &cname##_##mode; }
399
400
#define BLOCK_CIPHER_def_cbc(cname, kstruct, nid, block_size, key_len,         \
401
    iv_len, flags, init_key, cleanup, set_asn1,                                \
402
    get_asn1, ctrl)                                                            \
403
    BLOCK_CIPHER_def1(cname, cbc, cbc, CBC, kstruct, nid, block_size, key_len, \
404
        iv_len, flags, init_key, cleanup, set_asn1, get_asn1, ctrl)
405
406
#define BLOCK_CIPHER_def_cfb(cname, kstruct, nid, key_len,                 \
407
    iv_len, cbits, flags, init_key, cleanup,                               \
408
    set_asn1, get_asn1, ctrl)                                              \
409
    BLOCK_CIPHER_def1(cname, cfb##cbits, cfb##cbits, CFB, kstruct, nid, 1, \
410
        key_len, iv_len, flags, init_key, cleanup, set_asn1,               \
411
        get_asn1, ctrl)
412
413
#define BLOCK_CIPHER_def_ofb(cname, kstruct, nid, key_len,          \
414
    iv_len, cbits, flags, init_key, cleanup,                        \
415
    set_asn1, get_asn1, ctrl)                                       \
416
    BLOCK_CIPHER_def1(cname, ofb##cbits, ofb, OFB, kstruct, nid, 1, \
417
        key_len, iv_len, flags, init_key, cleanup, set_asn1,        \
418
        get_asn1, ctrl)
419
420
#define BLOCK_CIPHER_def_ecb(cname, kstruct, nid, block_size, key_len,         \
421
    flags, init_key, cleanup, set_asn1,                                        \
422
    get_asn1, ctrl)                                                            \
423
    BLOCK_CIPHER_def1(cname, ecb, ecb, ECB, kstruct, nid, block_size, key_len, \
424
        0, flags, init_key, cleanup, set_asn1, get_asn1, ctrl)
425
426
#define BLOCK_CIPHER_defs(cname, kstruct,                                             \
427
    nid, block_size, key_len, iv_len, cbits, flags,                                   \
428
    init_key, cleanup, set_asn1, get_asn1, ctrl)                                      \
429
    BLOCK_CIPHER_def_cbc(cname, kstruct, nid, block_size, key_len, iv_len, flags,     \
430
        init_key, cleanup, set_asn1, get_asn1, ctrl)                                  \
431
        BLOCK_CIPHER_def_cfb(cname, kstruct, nid, key_len, iv_len, cbits,             \
432
            flags, init_key, cleanup, set_asn1, get_asn1, ctrl)                       \
433
            BLOCK_CIPHER_def_ofb(cname, kstruct, nid, key_len, iv_len, cbits,         \
434
                flags, init_key, cleanup, set_asn1, get_asn1, ctrl)                   \
435
                BLOCK_CIPHER_def_ecb(cname, kstruct, nid, block_size, key_len, flags, \
436
                    init_key, cleanup, set_asn1, get_asn1, ctrl)
437
438
/*-
439
#define BLOCK_CIPHER_defs(cname, kstruct, \
440
                                nid, block_size, key_len, iv_len, flags,\
441
                                 init_key, cleanup, set_asn1, get_asn1, ctrl)\
442
static const EVP_CIPHER cname##_cbc = {\
443
        nid##_cbc, block_size, key_len, iv_len, \
444
        flags | EVP_CIPH_CBC_MODE,\
445
        EVP_ORIG_GLOBAL,\
446
        init_key,\
447
        cname##_cbc_cipher,\
448
        cleanup,\
449
        sizeof(EVP_CIPHER_CTX)-sizeof((((EVP_CIPHER_CTX *)NULL)->c))+\
450
                sizeof((((EVP_CIPHER_CTX *)NULL)->c.kstruct)),\
451
        set_asn1, get_asn1,\
452
        ctrl, \
453
        NULL \
454
};\
455
const EVP_CIPHER *EVP_##cname##_cbc(void) { return &cname##_cbc; }\
456
static const EVP_CIPHER cname##_cfb = {\
457
        nid##_cfb64, 1, key_len, iv_len, \
458
        flags | EVP_CIPH_CFB_MODE,\
459
        EVP_ORIG_GLOBAL,\
460
        init_key,\
461
        cname##_cfb_cipher,\
462
        cleanup,\
463
        sizeof(EVP_CIPHER_CTX)-sizeof((((EVP_CIPHER_CTX *)NULL)->c))+\
464
                sizeof((((EVP_CIPHER_CTX *)NULL)->c.kstruct)),\
465
        set_asn1, get_asn1,\
466
        ctrl,\
467
        NULL \
468
};\
469
const EVP_CIPHER *EVP_##cname##_cfb(void) { return &cname##_cfb; }\
470
static const EVP_CIPHER cname##_ofb = {\
471
        nid##_ofb64, 1, key_len, iv_len, \
472
        flags | EVP_CIPH_OFB_MODE,\
473
        EVP_ORIG_GLOBAL,\
474
        init_key,\
475
        cname##_ofb_cipher,\
476
        cleanup,\
477
        sizeof(EVP_CIPHER_CTX)-sizeof((((EVP_CIPHER_CTX *)NULL)->c))+\
478
                sizeof((((EVP_CIPHER_CTX *)NULL)->c.kstruct)),\
479
        set_asn1, get_asn1,\
480
        ctrl,\
481
        NULL \
482
};\
483
const EVP_CIPHER *EVP_##cname##_ofb(void) { return &cname##_ofb; }\
484
static const EVP_CIPHER cname##_ecb = {\
485
        nid##_ecb, block_size, key_len, iv_len, \
486
        flags | EVP_CIPH_ECB_MODE,\
487
        EVP_ORIG_GLOBAL,\
488
        init_key,\
489
        cname##_ecb_cipher,\
490
        cleanup,\
491
        sizeof(EVP_CIPHER_CTX)-sizeof((((EVP_CIPHER_CTX *)NULL)->c))+\
492
                sizeof((((EVP_CIPHER_CTX *)NULL)->c.kstruct)),\
493
        set_asn1, get_asn1,\
494
        ctrl,\
495
        NULL \
496
};\
497
const EVP_CIPHER *EVP_##cname##_ecb(void) { return &cname##_ecb; }
498
*/
499
500
#define IMPLEMENT_BLOCK_CIPHER(cname, ksched, cprefix, kstruct, nid,        \
501
    block_size, key_len, iv_len, cbits,                                     \
502
    flags, init_key,                                                        \
503
    cleanup, set_asn1, get_asn1, ctrl)                                      \
504
    BLOCK_CIPHER_all_funcs(cname, cprefix, cbits, kstruct, ksched)          \
505
        BLOCK_CIPHER_defs(cname, kstruct, nid, block_size, key_len, iv_len, \
506
            cbits, flags, init_key, cleanup, set_asn1,                      \
507
            get_asn1, ctrl)
508
509
#define IMPLEMENT_CFBR(cipher, cprefix, kstruct, ksched, keysize, cbits, iv_len, fl) \
510
    BLOCK_CIPHER_func_cfb(cipher##_##keysize, cprefix, cbits, kstruct, ksched)       \
511
        BLOCK_CIPHER_def_cfb(cipher##_##keysize, kstruct,                            \
512
            NID_##cipher##_##keysize, keysize / 8, iv_len, cbits,                    \
513
            (fl) | EVP_CIPH_FLAG_DEFAULT_ASN1,                                       \
514
            cipher##_init_key, NULL, NULL, NULL, NULL)
515
516
typedef struct {
517
    unsigned char iv[EVP_MAX_IV_LENGTH];
518
    unsigned int iv_len;
519
    unsigned int tag_len;
520
} evp_cipher_aead_asn1_params;
521
522
int evp_cipher_param_to_asn1_ex(EVP_CIPHER_CTX *c, ASN1_TYPE *type,
523
    evp_cipher_aead_asn1_params *params);
524
525
int evp_cipher_asn1_to_param_ex(EVP_CIPHER_CTX *c, ASN1_TYPE *type,
526
    evp_cipher_aead_asn1_params *params);
527
528
/*
529
 * To support transparent execution of operation in backends other
530
 * than the "origin" key, we support transparent export/import to
531
 * those providers, and maintain a cache of the imported keydata,
532
 * so we don't need to redo the export/import every time we perform
533
 * the same operation in that same provider.
534
 * This requires that the "origin" backend (whether it's a legacy or a
535
 * provider "origin") implements exports, and that the target provider
536
 * has an EVP_KEYMGMT that implements import.
537
 */
538
typedef struct {
539
    EVP_KEYMGMT *keymgmt;
540
    void *keydata;
541
    int selection;
542
} OP_CACHE_ELEM;
543
544
DEFINE_STACK_OF(OP_CACHE_ELEM)
545
546
/*
547
 * An EVP_PKEY can have the following states:
548
 *
549
 * untyped & empty:
550
 *
551
 *     type == EVP_PKEY_NONE && keymgmt == NULL
552
 *
553
 * typed & empty:
554
 *
555
 *     (type != EVP_PKEY_NONE && pkey.ptr == NULL)      ## legacy (libcrypto only)
556
 *     || (keymgmt != NULL && keydata == NULL)          ## provider side
557
 *
558
 * fully assigned:
559
 *
560
 *     (type != EVP_PKEY_NONE && pkey.ptr != NULL)      ## legacy (libcrypto only)
561
 *     || (keymgmt != NULL && keydata != NULL)          ## provider side
562
 *
563
 * The easiest way to detect a legacy key is:
564
 *
565
 *     keymgmt == NULL && type != EVP_PKEY_NONE
566
 *
567
 * The easiest way to detect a provider side key is:
568
 *
569
 *     keymgmt != NULL
570
 */
571
#define evp_pkey_is_blank(pk) \
572
0
    ((pk)->type == EVP_PKEY_NONE && (pk)->keymgmt == NULL)
573
#define evp_pkey_is_typed(pk) \
574
0
    ((pk)->type != EVP_PKEY_NONE || (pk)->keymgmt != NULL)
575
#ifndef FIPS_MODULE
576
#define evp_pkey_is_assigned(pk) \
577
0
    ((pk)->pkey.ptr != NULL || (pk)->keydata != NULL)
578
#else
579
#define evp_pkey_is_assigned(pk) \
580
    ((pk)->keydata != NULL)
581
#endif
582
#define evp_pkey_is_legacy(pk) \
583
0
    ((pk)->type != EVP_PKEY_NONE && (pk)->keymgmt == NULL)
584
#define evp_pkey_is_provided(pk) \
585
0
    ((pk)->keymgmt != NULL)
586
587
union legacy_pkey_st {
588
    void *ptr;
589
    struct rsa_st *rsa; /* RSA */
590
#ifndef OPENSSL_NO_DSA
591
    struct dsa_st *dsa; /* DSA */
592
#endif
593
#ifndef OPENSSL_NO_DH
594
    struct dh_st *dh; /* DH */
595
#endif
596
#ifndef OPENSSL_NO_EC
597
    struct ec_key_st *ec; /* ECC */
598
#ifndef OPENSSL_NO_ECX
599
    ECX_KEY *ecx; /* X25519, X448, Ed25519, Ed448 */
600
#endif
601
#endif
602
};
603
604
struct evp_pkey_st {
605
    /* == Legacy attributes == */
606
    int type;
607
    int save_type;
608
609
#ifndef FIPS_MODULE
610
    /*
611
     * Legacy key "origin" is composed of a pointer to an EVP_PKEY_ASN1_METHOD,
612
     * a pointer to a low level key and possibly a pointer to an engine.
613
     */
614
    const EVP_PKEY_ASN1_METHOD *ameth;
615
616
    /* Union to store the reference to an origin legacy key */
617
    union legacy_pkey_st pkey;
618
619
    /* Union to store the reference to a non-origin legacy key */
620
    union legacy_pkey_st legacy_cache_pkey;
621
#endif
622
623
    /* == Common attributes == */
624
    CRYPTO_REF_COUNT references;
625
    CRYPTO_RWLOCK *lock;
626
#ifndef FIPS_MODULE
627
    STACK_OF(X509_ATTRIBUTE) *attributes; /* [ 0 ] */
628
    int save_parameters;
629
    unsigned int foreign : 1; /* the low-level key is using an engine or an app-method */
630
    CRYPTO_EX_DATA ex_data;
631
#endif
632
633
    /* == Provider attributes == */
634
635
    /*
636
     * Provider keydata "origin" is composed of a pointer to an EVP_KEYMGMT
637
     * and a pointer to the provider side key data.  This is never used at
638
     * the same time as the legacy key data above.
639
     */
640
    EVP_KEYMGMT *keymgmt;
641
    void *keydata;
642
    /*
643
     * If any libcrypto code does anything that may modify the keydata
644
     * contents, this dirty counter must be incremented.
645
     */
646
    size_t dirty_cnt;
647
648
    /*
649
     * To support transparent execution of operation in backends other
650
     * than the "origin" key, we support transparent export/import to
651
     * those providers, and maintain a cache of the imported keydata,
652
     * so we don't need to redo the export/import every time we perform
653
     * the same operation in that same provider.
654
     */
655
    STACK_OF(OP_CACHE_ELEM) *operation_cache;
656
657
    /*
658
     * We keep a copy of that "origin"'s dirty count, so we know if the
659
     * operation cache needs flushing.
660
     */
661
    size_t dirty_cnt_copy;
662
663
    /* Cache of key object information */
664
    struct {
665
        int bits;
666
        int security_bits;
667
        int security_category;
668
        int size;
669
    } cache;
670
}; /* EVP_PKEY */
671
672
/* The EVP_PKEY_OP_TYPE_ macros are found in include/openssl/evp.h */
673
674
#define EVP_PKEY_CTX_IS_SIGNATURE_OP(ctx) \
675
173M
    (((ctx)->operation & EVP_PKEY_OP_TYPE_SIG) != 0)
676
677
#define EVP_PKEY_CTX_IS_DERIVE_OP(ctx) \
678
0
    (((ctx)->operation & EVP_PKEY_OP_TYPE_DERIVE) != 0)
679
680
#define EVP_PKEY_CTX_IS_ASYM_CIPHER_OP(ctx) \
681
0
    (((ctx)->operation & EVP_PKEY_OP_TYPE_CRYPT) != 0)
682
683
#define EVP_PKEY_CTX_IS_GEN_OP(ctx) \
684
0
    (((ctx)->operation & EVP_PKEY_OP_TYPE_GEN) != 0)
685
686
#define EVP_PKEY_CTX_IS_FROMDATA_OP(ctx) \
687
0
    (((ctx)->operation & EVP_PKEY_OP_TYPE_DATA) != 0)
688
689
#define EVP_PKEY_CTX_IS_KEM_OP(ctx) \
690
0
    (((ctx)->operation & EVP_PKEY_OP_TYPE_KEM) != 0)
691
692
struct evp_skey_st {
693
    /* == Common attributes == */
694
    CRYPTO_REF_COUNT references;
695
    CRYPTO_RWLOCK *lock;
696
697
    void *keydata; /* Alg-specific key data */
698
    EVP_SKEYMGMT *skeymgmt; /* Import, export, manage */
699
}; /* EVP_SKEY */
700
701
void openssl_add_all_ciphers_int(void);
702
void openssl_add_all_digests_int(void);
703
void evp_cleanup_int(void);
704
void *evp_pkey_export_to_provider(EVP_PKEY *pk, OSSL_LIB_CTX *libctx,
705
    EVP_KEYMGMT **keymgmt,
706
    const char *propquery);
707
#ifndef FIPS_MODULE
708
int evp_pkey_copy_downgraded(EVP_PKEY **dest, const EVP_PKEY *src);
709
void *evp_pkey_get_legacy(EVP_PKEY *pk);
710
void evp_pkey_free_legacy(EVP_PKEY *x);
711
EVP_PKEY *evp_pkcs82pkey_legacy(const PKCS8_PRIV_KEY_INFO *p8inf,
712
    OSSL_LIB_CTX *libctx, const char *propq);
713
#endif
714
715
/*
716
 * KEYMGMT utility functions
717
 */
718
719
/*
720
 * Key import structure and helper function, to be used as an export callback
721
 */
722
struct evp_keymgmt_util_try_import_data_st {
723
    EVP_KEYMGMT *keymgmt;
724
    void *keydata;
725
726
    int selection;
727
};
728
int evp_keymgmt_util_try_import(const OSSL_PARAM params[], void *arg);
729
int evp_keymgmt_util_assign_pkey(EVP_PKEY *pkey, EVP_KEYMGMT *keymgmt,
730
    void *keydata);
731
EVP_PKEY *evp_keymgmt_util_make_pkey(EVP_KEYMGMT *keymgmt, void *keydata);
732
733
int evp_keymgmt_util_export(const EVP_PKEY *pk, int selection,
734
    OSSL_CALLBACK *export_cb, void *export_cbarg);
735
void *evp_keymgmt_util_export_to_provider(EVP_PKEY *pk, EVP_KEYMGMT *keymgmt,
736
    int selection);
737
OP_CACHE_ELEM *evp_keymgmt_util_find_operation_cache(EVP_PKEY *pk,
738
    EVP_KEYMGMT *keymgmt,
739
    int selection);
740
int evp_keymgmt_util_clear_operation_cache(EVP_PKEY *pk);
741
int evp_keymgmt_util_cache_keydata(EVP_PKEY *pk, EVP_KEYMGMT *keymgmt,
742
    void *keydata, int selection);
743
void evp_keymgmt_util_cache_keyinfo(EVP_PKEY *pk);
744
void *evp_keymgmt_util_fromdata(EVP_PKEY *target, EVP_KEYMGMT *keymgmt,
745
    int selection, const OSSL_PARAM params[]);
746
int evp_keymgmt_util_has(EVP_PKEY *pk, int selection);
747
int evp_keymgmt_util_match(EVP_PKEY *pk1, EVP_PKEY *pk2, int selection);
748
int evp_keymgmt_util_copy(EVP_PKEY *to, EVP_PKEY *from, int selection);
749
void *evp_keymgmt_util_gen(EVP_PKEY *target, EVP_KEYMGMT *keymgmt,
750
    void *genctx, OSSL_CALLBACK *cb, void *cbarg);
751
int evp_keymgmt_util_get_deflt_digest_name(EVP_KEYMGMT *keymgmt,
752
    void *keydata,
753
    char *mdname, size_t mdname_sz);
754
const char *evp_keymgmt_util_query_operation_name(EVP_KEYMGMT *keymgmt,
755
    int op_id);
756
757
/*
758
 * KEYMGMT provider interface functions
759
 */
760
void *evp_keymgmt_newdata(const EVP_KEYMGMT *keymgmt);
761
void evp_keymgmt_freedata(const EVP_KEYMGMT *keymgmt, void *keyddata);
762
int evp_keymgmt_get_params(const EVP_KEYMGMT *keymgmt,
763
    void *keydata, OSSL_PARAM params[]);
764
int evp_keymgmt_set_params(const EVP_KEYMGMT *keymgmt,
765
    void *keydata, const OSSL_PARAM params[]);
766
void *evp_keymgmt_gen_init(const EVP_KEYMGMT *keymgmt, int selection,
767
    const OSSL_PARAM params[]);
768
int evp_keymgmt_gen_set_template(const EVP_KEYMGMT *keymgmt, void *genctx,
769
    void *templ);
770
int evp_keymgmt_gen_set_params(const EVP_KEYMGMT *keymgmt, void *genctx,
771
    const OSSL_PARAM params[]);
772
int evp_keymgmt_gen_get_params(const EVP_KEYMGMT *keymgmt,
773
    void *genctx, OSSL_PARAM params[]);
774
void *evp_keymgmt_gen(const EVP_KEYMGMT *keymgmt, void *genctx,
775
    OSSL_CALLBACK *cb, void *cbarg);
776
void evp_keymgmt_gen_cleanup(const EVP_KEYMGMT *keymgmt, void *genctx);
777
778
int evp_keymgmt_has_load(const EVP_KEYMGMT *keymgmt);
779
void *evp_keymgmt_load(const EVP_KEYMGMT *keymgmt,
780
    const void *objref, size_t objref_sz);
781
782
int evp_keymgmt_has(const EVP_KEYMGMT *keymgmt, void *keyddata, int selection);
783
int evp_keymgmt_validate(const EVP_KEYMGMT *keymgmt, void *keydata,
784
    int selection, int checktype);
785
int evp_keymgmt_match(const EVP_KEYMGMT *keymgmt,
786
    const void *keydata1, const void *keydata2,
787
    int selection);
788
789
int evp_keymgmt_import(const EVP_KEYMGMT *keymgmt, void *keydata,
790
    int selection, const OSSL_PARAM params[]);
791
const OSSL_PARAM *evp_keymgmt_import_types(const EVP_KEYMGMT *keymgmt,
792
    int selection);
793
int evp_keymgmt_export(const EVP_KEYMGMT *keymgmt, void *keydata,
794
    int selection, OSSL_CALLBACK *param_cb, void *cbarg);
795
const OSSL_PARAM *evp_keymgmt_export_types(const EVP_KEYMGMT *keymgmt,
796
    int selection);
797
void *evp_keymgmt_dup(const EVP_KEYMGMT *keymgmt,
798
    const void *keydata_from, int selection);
799
EVP_KEYMGMT *evp_keymgmt_fetch_from_prov(OSSL_PROVIDER *prov,
800
    const char *name,
801
    const char *properties);
802
803
/*
804
 * SKEYMGMT provider interface functions
805
 */
806
EVP_SKEY *evp_skey_alloc(EVP_SKEYMGMT *skeymgmt);
807
void evp_skeymgmt_freedata(const EVP_SKEYMGMT *keymgmt, void *keyddata);
808
void *evp_skeymgmt_import(const EVP_SKEYMGMT *skeymgmt, int selection, const OSSL_PARAM params[]);
809
int evp_skeymgmt_export(const EVP_SKEYMGMT *skeymgmt, void *keydata,
810
    int selection, OSSL_CALLBACK *param_cb, void *cbarg);
811
void *evp_skeymgmt_generate(const EVP_SKEYMGMT *skeymgmt, const OSSL_PARAM params[]);
812
EVP_SKEYMGMT *evp_skeymgmt_fetch_from_prov(OSSL_PROVIDER *prov,
813
    const char *name,
814
    const char *properties);
815
816
/* Pulling defines out of C source files */
817
818
#define EVP_RC4_KEY_SIZE 16
819
#ifndef TLS1_1_VERSION
820
#define TLS1_1_VERSION 0x0302
821
#endif
822
823
void evp_encode_ctx_set_flags(EVP_ENCODE_CTX *ctx, unsigned int flags);
824
825
/* EVP_ENCODE_CTX flags */
826
/* Don't generate new lines when encoding */
827
0
#define EVP_ENCODE_CTX_NO_NEWLINES 1
828
/* Use the SRP base64 alphabet instead of the standard one */
829
0
#define EVP_ENCODE_CTX_USE_SRP_ALPHABET 2
830
831
const EVP_CIPHER *evp_get_cipherbyname_ex(OSSL_LIB_CTX *libctx,
832
    const char *name);
833
const EVP_MD *evp_get_digestbyname_ex(OSSL_LIB_CTX *libctx,
834
    const char *name);
835
836
int ossl_pkcs5_pbkdf2_hmac_ex(const char *pass, int passlen,
837
    const unsigned char *salt, int saltlen, int iter,
838
    const EVP_MD *digest, int keylen,
839
    unsigned char *out,
840
    OSSL_LIB_CTX *libctx, const char *propq);
841
842
#ifndef FIPS_MODULE
843
/*
844
 * Internal helpers for stricter EVP_PKEY_CTX_{set,get}_params().
845
 *
846
 * Return 1 on success, 0 or negative for errors.
847
 *
848
 * In particular they return -2 if any of the params is not supported.
849
 *
850
 * They are not available in FIPS_MODULE as they depend on
851
 *      - EVP_PKEY_CTX_{get,set}_params()
852
 *      - EVP_PKEY_CTX_{gettable,settable}_params()
853
 *
854
 */
855
int evp_pkey_ctx_set_params_strict(EVP_PKEY_CTX *ctx, OSSL_PARAM *params);
856
int evp_pkey_ctx_get_params_strict(EVP_PKEY_CTX *ctx, OSSL_PARAM *params);
857
858
EVP_MD_CTX *evp_md_ctx_new_ex(EVP_PKEY *pkey, const ASN1_OCTET_STRING *id,
859
    OSSL_LIB_CTX *libctx, const char *propq);
860
int evp_pkey_name2type(const char *name);
861
const char *evp_pkey_type2name(int type);
862
863
int evp_pkey_ctx_use_cached_data(EVP_PKEY_CTX *ctx);
864
#endif /* !defined(FIPS_MODULE) */
865
866
int evp_method_store_cache_flush(OSSL_LIB_CTX *libctx);
867
int evp_method_store_remove_all_provided(const OSSL_PROVIDER *prov);
868
869
int evp_default_properties_enable_fips_int(OSSL_LIB_CTX *libctx, int enable,
870
    int loadconfig);
871
int evp_set_default_properties_int(OSSL_LIB_CTX *libctx, const char *propq,
872
    int loadconfig, int mirrored);
873
char *evp_get_global_properties_str(OSSL_LIB_CTX *libctx, int loadconfig);
874
875
void evp_md_ctx_clear_digest(EVP_MD_CTX *ctx, int force, int keep_digest);
876
/* just free the algctx if set, returns 0 on inconsistent state of ctx */
877
int evp_md_ctx_free_algctx(EVP_MD_CTX *ctx);
878
879
/* Three possible states: */
880
0
#define EVP_PKEY_STATE_UNKNOWN 0
881
0
#define EVP_PKEY_STATE_LEGACY 1
882
0
#define EVP_PKEY_STATE_PROVIDER 2
883
int evp_pkey_ctx_state(const EVP_PKEY_CTX *ctx);
884
885
/* These two must ONLY be called for provider side operations */
886
int evp_pkey_ctx_ctrl_to_param(EVP_PKEY_CTX *ctx,
887
    int keytype, int optype,
888
    int cmd, int p1, void *p2);
889
int evp_pkey_ctx_ctrl_str_to_param(EVP_PKEY_CTX *ctx,
890
    const char *name, const char *value);
891
892
/* These two must ONLY be called for legacy operations */
893
int evp_pkey_ctx_set_params_to_ctrl(EVP_PKEY_CTX *ctx, const OSSL_PARAM *params);
894
int evp_pkey_ctx_get_params_to_ctrl(EVP_PKEY_CTX *ctx, OSSL_PARAM *params);
895
896
/* This must ONLY be called for legacy EVP_PKEYs */
897
int evp_pkey_get_params_to_ctrl(const EVP_PKEY *pkey, OSSL_PARAM *params);
898
899
/* Same as the public get0 functions but are not const */
900
#ifndef OPENSSL_NO_DEPRECATED_3_0
901
DH *evp_pkey_get0_DH_int(const EVP_PKEY *pkey);
902
EC_KEY *evp_pkey_get0_EC_KEY_int(const EVP_PKEY *pkey);
903
RSA *evp_pkey_get0_RSA_int(const EVP_PKEY *pkey);
904
#endif
905
906
/* Get internal identification number routines */
907
int evp_asym_cipher_get_number(const EVP_ASYM_CIPHER *cipher);
908
int evp_cipher_get_number(const EVP_CIPHER *cipher);
909
int evp_kdf_get_number(const EVP_KDF *kdf);
910
int evp_kem_get_number(const EVP_KEM *wrap);
911
int evp_keyexch_get_number(const EVP_KEYEXCH *keyexch);
912
int evp_keymgmt_get_number(const EVP_KEYMGMT *keymgmt);
913
int evp_keymgmt_get_legacy_alg(const EVP_KEYMGMT *keymgmt);
914
int evp_mac_get_number(const EVP_MAC *mac);
915
int evp_md_get_number(const EVP_MD *md);
916
int evp_rand_get_number(const EVP_RAND *rand);
917
int evp_rand_can_seed(EVP_RAND_CTX *ctx);
918
size_t evp_rand_get_seed(EVP_RAND_CTX *ctx,
919
    unsigned char **buffer,
920
    int entropy, size_t min_len, size_t max_len,
921
    int prediction_resistance,
922
    const unsigned char *adin, size_t adin_len);
923
void evp_rand_clear_seed(EVP_RAND_CTX *ctx,
924
    unsigned char *buffer, size_t b_len);
925
int evp_signature_get_number(const EVP_SIGNATURE *signature);
926
927
int evp_pkey_decrypt_alloc(EVP_PKEY_CTX *ctx, unsigned char **outp,
928
    size_t *outlenp, size_t expected_outlen,
929
    const unsigned char *in, size_t inlen);
930
931
int ossl_md2hmacnid(int mdnid);
932
int ossl_hmac2mdnid(int hmac_nid);
933
934
#endif /* OSSL_CRYPTO_EVP_H */