/src/openssl/crypto/evp/evp_enc.c
Line  | Count  | Source (jump to first uncovered line)  | 
1  |  | /*  | 
2  |  |  * Copyright 1995-2025 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  |  | /* We need to use some engine deprecated APIs */  | 
11  |  | #define OPENSSL_SUPPRESS_DEPRECATED  | 
12  |  |  | 
13  |  | #include <stdio.h>  | 
14  |  | #include <limits.h>  | 
15  |  | #include <assert.h>  | 
16  |  | #include <openssl/evp.h>  | 
17  |  | #include <openssl/err.h>  | 
18  |  | #include <openssl/rand.h>  | 
19  |  | #ifndef FIPS_MODULE  | 
20  |  | # include <openssl/engine.h>  | 
21  |  | #endif  | 
22  |  | #include <openssl/params.h>  | 
23  |  | #include <openssl/core_names.h>  | 
24  |  | #include "internal/cryptlib.h"  | 
25  |  | #include "internal/provider.h"  | 
26  |  | #include "internal/core.h"  | 
27  |  | #include "internal/safe_math.h"  | 
28  |  | #include "crypto/evp.h"  | 
29  |  | #include "evp_local.h"  | 
30  |  |  | 
31  |  | OSSL_SAFE_MATH_SIGNED(int, int)  | 
32  |  |  | 
33  |  | int EVP_CIPHER_CTX_reset(EVP_CIPHER_CTX *ctx)  | 
34  | 58  | { | 
35  | 58  |     if (ctx == NULL)  | 
36  | 0  |         return 1;  | 
37  |  |  | 
38  | 58  |     if (ctx->cipher == NULL || ctx->cipher->prov == NULL)  | 
39  | 0  |         goto legacy;  | 
40  |  |  | 
41  | 58  |     if (ctx->algctx != NULL) { | 
42  | 58  |         if (ctx->cipher->freectx != NULL)  | 
43  | 58  |             ctx->cipher->freectx(ctx->algctx);  | 
44  | 58  |         ctx->algctx = NULL;  | 
45  | 58  |     }  | 
46  | 58  |     if (ctx->fetched_cipher != NULL)  | 
47  | 58  |         EVP_CIPHER_free(ctx->fetched_cipher);  | 
48  | 58  |     memset(ctx, 0, sizeof(*ctx));  | 
49  | 58  |     ctx->iv_len = -1;  | 
50  |  |  | 
51  | 58  |     return 1;  | 
52  |  |  | 
53  |  |     /* Remove legacy code below when legacy support is removed. */  | 
54  | 0  |  legacy:  | 
55  |  | 
  | 
56  | 0  |     if (ctx->cipher != NULL) { | 
57  | 0  |         if (ctx->cipher->cleanup && !ctx->cipher->cleanup(ctx))  | 
58  | 0  |             return 0;  | 
59  |  |         /* Cleanse cipher context data */  | 
60  | 0  |         if (ctx->cipher_data && ctx->cipher->ctx_size)  | 
61  | 0  |             OPENSSL_cleanse(ctx->cipher_data, ctx->cipher->ctx_size);  | 
62  | 0  |     }  | 
63  | 0  |     OPENSSL_free(ctx->cipher_data);  | 
64  | 0  | #if !defined(OPENSSL_NO_ENGINE) && !defined(FIPS_MODULE)  | 
65  | 0  |     ENGINE_finish(ctx->engine);  | 
66  | 0  | #endif  | 
67  | 0  |     memset(ctx, 0, sizeof(*ctx));  | 
68  | 0  |     ctx->iv_len = -1;  | 
69  | 0  |     return 1;  | 
70  | 0  | }  | 
71  |  |  | 
72  |  | EVP_CIPHER_CTX *EVP_CIPHER_CTX_new(void)  | 
73  | 58  | { | 
74  | 58  |     EVP_CIPHER_CTX *ctx;  | 
75  |  |  | 
76  | 58  |     ctx = OPENSSL_zalloc(sizeof(EVP_CIPHER_CTX));  | 
77  | 58  |     if (ctx == NULL)  | 
78  | 0  |         return NULL;  | 
79  |  |  | 
80  | 58  |     ctx->iv_len = -1;  | 
81  | 58  |     return ctx;  | 
82  | 58  | }  | 
83  |  |  | 
84  |  | void EVP_CIPHER_CTX_free(EVP_CIPHER_CTX *ctx)  | 
85  | 58  | { | 
86  | 58  |     if (ctx == NULL)  | 
87  | 0  |         return;  | 
88  | 58  |     EVP_CIPHER_CTX_reset(ctx);  | 
89  | 58  |     OPENSSL_free(ctx);  | 
90  | 58  | }  | 
91  |  |  | 
92  |  | static int evp_cipher_init_internal(EVP_CIPHER_CTX *ctx,  | 
93  |  |                                     const EVP_CIPHER *cipher,  | 
94  |  |                                     ENGINE *impl, const unsigned char *key,  | 
95  |  |                                     const unsigned char *iv, int enc,  | 
96  |  |                                     uint8_t is_pipeline,  | 
97  |  |                                     const OSSL_PARAM params[])  | 
98  | 75  | { | 
99  | 75  |     int n;  | 
100  | 75  | #if !defined(OPENSSL_NO_ENGINE) && !defined(FIPS_MODULE)  | 
101  | 75  |     ENGINE *tmpimpl = NULL;  | 
102  | 75  | #endif  | 
103  |  |  | 
104  |  |     /*  | 
105  |  |      * enc == 1 means we are encrypting.  | 
106  |  |      * enc == 0 means we are decrypting.  | 
107  |  |      * enc == -1 means, use the previously initialised value for encrypt/decrypt  | 
108  |  |      */  | 
109  | 75  |     if (enc == -1) { | 
110  | 0  |         enc = ctx->encrypt;  | 
111  | 75  |     } else { | 
112  | 75  |         if (enc)  | 
113  | 29  |             enc = 1;  | 
114  | 75  |         ctx->encrypt = enc;  | 
115  | 75  |     }  | 
116  |  |  | 
117  | 75  |     if (cipher == NULL && ctx->cipher == NULL) { | 
118  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NO_CIPHER_SET);  | 
119  | 0  |         return 0;  | 
120  | 0  |     }  | 
121  |  |  | 
122  |  |     /* Code below to be removed when legacy support is dropped. */  | 
123  | 75  |     if (is_pipeline)  | 
124  | 0  |         goto nonlegacy;  | 
125  |  |  | 
126  | 75  | #if !defined(OPENSSL_NO_ENGINE) && !defined(FIPS_MODULE)  | 
127  |  |     /*  | 
128  |  |      * Whether it's nice or not, "Inits" can be used on "Final"'d contexts so  | 
129  |  |      * this context may already have an ENGINE! Try to avoid releasing the  | 
130  |  |      * previous handle, re-querying for an ENGINE, and having a  | 
131  |  |      * reinitialisation, when it may all be unnecessary.  | 
132  |  |      */  | 
133  | 75  |     if (ctx->engine && ctx->cipher  | 
134  | 75  |         && (cipher == NULL || cipher->nid == ctx->cipher->nid))  | 
135  | 0  |         goto skip_to_init;  | 
136  |  |  | 
137  | 75  |     if (cipher != NULL && impl == NULL) { | 
138  |  |          /* Ask if an ENGINE is reserved for this job */  | 
139  | 58  |         tmpimpl = ENGINE_get_cipher_engine(cipher->nid);  | 
140  | 58  |     }  | 
141  | 75  | #endif  | 
142  |  |  | 
143  |  |     /*  | 
144  |  |      * If there are engines involved then we should use legacy handling for now.  | 
145  |  |      */  | 
146  | 75  |     if (ctx->engine != NULL  | 
147  | 75  | #if !defined(OPENSSL_NO_ENGINE) && !defined(FIPS_MODULE)  | 
148  | 75  |             || tmpimpl != NULL  | 
149  | 75  | #endif  | 
150  | 75  |             || impl != NULL  | 
151  | 75  |             || (cipher != NULL && cipher->origin == EVP_ORIG_METH)  | 
152  | 75  |             || (cipher == NULL && ctx->cipher != NULL  | 
153  | 75  |                                && ctx->cipher->origin == EVP_ORIG_METH)) { | 
154  | 0  |         if (ctx->cipher == ctx->fetched_cipher)  | 
155  | 0  |             ctx->cipher = NULL;  | 
156  | 0  |         EVP_CIPHER_free(ctx->fetched_cipher);  | 
157  | 0  |         ctx->fetched_cipher = NULL;  | 
158  | 0  |         goto legacy;  | 
159  | 0  |     }  | 
160  |  |     /*  | 
161  |  |      * Ensure a context left lying around from last time is cleared  | 
162  |  |      * (legacy code)  | 
163  |  |      */  | 
164  | 75  |     if (cipher != NULL && ctx->cipher != NULL) { | 
165  | 0  |         if (ctx->cipher->cleanup != NULL && !ctx->cipher->cleanup(ctx))  | 
166  | 0  |             return 0;  | 
167  | 0  |         OPENSSL_clear_free(ctx->cipher_data, ctx->cipher->ctx_size);  | 
168  | 0  |         ctx->cipher_data = NULL;  | 
169  | 0  |     }  | 
170  |  |  | 
171  |  |     /* Start of non-legacy code below */  | 
172  | 75  | nonlegacy:  | 
173  |  |     /* Ensure a context left lying around from last time is cleared */  | 
174  | 75  |     if (cipher != NULL && ctx->cipher != NULL) { | 
175  | 0  |         unsigned long flags = ctx->flags;  | 
176  |  | 
  | 
177  | 0  |         EVP_CIPHER_CTX_reset(ctx);  | 
178  |  |         /* Restore encrypt and flags */  | 
179  | 0  |         ctx->encrypt = enc;  | 
180  | 0  |         ctx->flags = flags;  | 
181  | 0  |     }  | 
182  |  |  | 
183  | 75  |     if (cipher == NULL)  | 
184  | 17  |         cipher = ctx->cipher;  | 
185  |  |  | 
186  | 75  |     if (cipher->prov == NULL) { | 
187  |  | #ifdef FIPS_MODULE  | 
188  |  |         /* We only do explicit fetches inside the FIPS module */  | 
189  |  |         ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
190  |  |         return 0;  | 
191  |  | #else  | 
192  | 0  |         EVP_CIPHER *provciph =  | 
193  | 0  |             EVP_CIPHER_fetch(NULL,  | 
194  | 0  |                              cipher->nid == NID_undef ? "NULL"  | 
195  | 0  |                                                       : OBJ_nid2sn(cipher->nid),  | 
196  | 0  |                              "");  | 
197  |  | 
  | 
198  | 0  |         if (provciph == NULL)  | 
199  | 0  |             return 0;  | 
200  | 0  |         cipher = provciph;  | 
201  | 0  |         EVP_CIPHER_free(ctx->fetched_cipher);  | 
202  | 0  |         ctx->fetched_cipher = provciph;  | 
203  | 0  | #endif  | 
204  | 0  |     }  | 
205  |  |  | 
206  | 75  |     if (!ossl_assert(cipher->prov != NULL)) { | 
207  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
208  | 0  |         return 0;  | 
209  | 0  |     }  | 
210  |  |  | 
211  | 75  |     if (cipher != ctx->fetched_cipher) { | 
212  | 58  |         if (!EVP_CIPHER_up_ref((EVP_CIPHER *)cipher)) { | 
213  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
214  | 0  |             return 0;  | 
215  | 0  |         }  | 
216  | 58  |         EVP_CIPHER_free(ctx->fetched_cipher);  | 
217  |  |         /* Coverity false positive, the reference counting is confusing it */  | 
218  |  |         /* coverity[use_after_free] */  | 
219  | 58  |         ctx->fetched_cipher = (EVP_CIPHER *)cipher;  | 
220  | 58  |     }  | 
221  | 75  |     ctx->cipher = cipher;  | 
222  |  |  | 
223  | 75  |     if (is_pipeline && !EVP_CIPHER_can_pipeline(cipher, enc)) { | 
224  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_PIPELINE_NOT_SUPPORTED);  | 
225  | 0  |         return 0;  | 
226  | 0  |     }  | 
227  |  |  | 
228  | 75  |     if (ctx->algctx == NULL) { | 
229  | 58  |         ctx->algctx = ctx->cipher->newctx(ossl_provider_ctx(cipher->prov));  | 
230  | 58  |         if (ctx->algctx == NULL) { | 
231  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
232  | 0  |             return 0;  | 
233  | 0  |         }  | 
234  | 58  |     }  | 
235  |  |  | 
236  | 75  |     if ((ctx->flags & EVP_CIPH_NO_PADDING) != 0) { | 
237  |  |         /*  | 
238  |  |          * If this ctx was already set up for no padding then we need to tell  | 
239  |  |          * the new cipher about it.  | 
240  |  |          */  | 
241  | 17  |         if (!EVP_CIPHER_CTX_set_padding(ctx, 0))  | 
242  | 0  |             return 0;  | 
243  | 17  |     }  | 
244  |  |  | 
245  | 75  | #ifndef FIPS_MODULE  | 
246  |  |     /*  | 
247  |  |      * Fix for CVE-2023-5363  | 
248  |  |      * Passing in a size as part of the init call takes effect late  | 
249  |  |      * so, force such to occur before the initialisation.  | 
250  |  |      *  | 
251  |  |      * The FIPS provider's internal library context is used in a manner  | 
252  |  |      * such that this is not an issue.  | 
253  |  |      */  | 
254  | 75  |     if (params != NULL) { | 
255  | 0  |         OSSL_PARAM param_lens[3] = { OSSL_PARAM_END, OSSL_PARAM_END, | 
256  | 0  |                                      OSSL_PARAM_END };  | 
257  | 0  |         OSSL_PARAM *q = param_lens;  | 
258  | 0  |         const OSSL_PARAM *p;  | 
259  |  | 
  | 
260  | 0  |         p = OSSL_PARAM_locate_const(params, OSSL_CIPHER_PARAM_KEYLEN);  | 
261  | 0  |         if (p != NULL)  | 
262  | 0  |             memcpy(q++, p, sizeof(*q));  | 
263  |  |  | 
264  |  |         /*  | 
265  |  |          * Note that OSSL_CIPHER_PARAM_AEAD_IVLEN is a synonym for  | 
266  |  |          * OSSL_CIPHER_PARAM_IVLEN so both are covered here.  | 
267  |  |          */  | 
268  | 0  |         p = OSSL_PARAM_locate_const(params, OSSL_CIPHER_PARAM_IVLEN);  | 
269  | 0  |         if (p != NULL)  | 
270  | 0  |             memcpy(q++, p, sizeof(*q));  | 
271  |  | 
  | 
272  | 0  |         if (q != param_lens) { | 
273  | 0  |             if (!EVP_CIPHER_CTX_set_params(ctx, param_lens)) { | 
274  | 0  |                 ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_LENGTH);  | 
275  | 0  |                 return 0;  | 
276  | 0  |             }  | 
277  | 0  |         }  | 
278  | 0  |     }  | 
279  | 75  | #endif  | 
280  |  |  | 
281  | 75  |     if (is_pipeline)  | 
282  | 0  |         return 1;  | 
283  |  |  | 
284  | 75  |     if (enc) { | 
285  | 29  |         if (ctx->cipher->einit == NULL) { | 
286  |  |             /*  | 
287  |  |              * We still should be able to set the IV using the new API  | 
288  |  |              * if the key is not specified and old API is not available  | 
289  |  |              */  | 
290  | 0  |             if (key == NULL && ctx->cipher->einit_skey != NULL) { | 
291  | 0  |                 return ctx->cipher->einit_skey(ctx->algctx, NULL,  | 
292  | 0  |                                                iv,  | 
293  | 0  |                                                iv == NULL ? 0  | 
294  | 0  |                                                           : EVP_CIPHER_CTX_get_iv_length(ctx),  | 
295  | 0  |                                                params);  | 
296  | 0  |             }  | 
297  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
298  | 0  |             return 0;  | 
299  | 0  |         }  | 
300  |  |  | 
301  | 29  |         return ctx->cipher->einit(ctx->algctx,  | 
302  | 29  |                                   key,  | 
303  | 29  |                                   key == NULL ? 0  | 
304  | 29  |                                               : EVP_CIPHER_CTX_get_key_length(ctx),  | 
305  | 29  |                                   iv,  | 
306  | 29  |                                   iv == NULL ? 0  | 
307  | 29  |                                              : EVP_CIPHER_CTX_get_iv_length(ctx),  | 
308  | 29  |                                   params);  | 
309  | 29  |     }  | 
310  |  |  | 
311  | 46  |     if (ctx->cipher->dinit == NULL) { | 
312  |  |         /*  | 
313  |  |          * We still should be able to set the IV using the new API  | 
314  |  |          * if the key is not specified and old API is not available  | 
315  |  |          */  | 
316  | 0  |         if (key == NULL && ctx->cipher->dinit_skey != NULL) { | 
317  | 0  |             return ctx->cipher->dinit_skey(ctx->algctx, NULL,  | 
318  | 0  |                                            iv,  | 
319  | 0  |                                            iv == NULL ? 0  | 
320  | 0  |                                                       : EVP_CIPHER_CTX_get_iv_length(ctx),  | 
321  | 0  |                                            params);  | 
322  | 0  |         }  | 
323  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
324  | 0  |         return 0;  | 
325  | 0  |     }  | 
326  |  |  | 
327  | 46  |     return ctx->cipher->dinit(ctx->algctx,  | 
328  | 46  |                               key,  | 
329  | 46  |                               key == NULL ? 0  | 
330  | 46  |                                           : EVP_CIPHER_CTX_get_key_length(ctx),  | 
331  | 46  |                               iv,  | 
332  | 46  |                               iv == NULL ? 0  | 
333  | 46  |                                          : EVP_CIPHER_CTX_get_iv_length(ctx),  | 
334  | 46  |                                   params);  | 
335  |  |  | 
336  |  |     /* Code below to be removed when legacy support is dropped. */  | 
337  | 0  |  legacy:  | 
338  |  | 
  | 
339  | 0  |     if (cipher != NULL) { | 
340  |  |         /*  | 
341  |  |          * Ensure a context left lying around from last time is cleared (we  | 
342  |  |          * previously attempted to avoid this if the same ENGINE and  | 
343  |  |          * EVP_CIPHER could be used).  | 
344  |  |          */  | 
345  | 0  |         if (ctx->cipher) { | 
346  | 0  |             unsigned long flags = ctx->flags;  | 
347  | 0  |             EVP_CIPHER_CTX_reset(ctx);  | 
348  |  |             /* Restore encrypt and flags */  | 
349  | 0  |             ctx->encrypt = enc;  | 
350  | 0  |             ctx->flags = flags;  | 
351  | 0  |         }  | 
352  | 0  | #if !defined(OPENSSL_NO_ENGINE) && !defined(FIPS_MODULE)  | 
353  | 0  |         if (impl != NULL) { | 
354  | 0  |             if (!ENGINE_init(impl)) { | 
355  | 0  |                 ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
356  | 0  |                 return 0;  | 
357  | 0  |             }  | 
358  | 0  |         } else { | 
359  | 0  |             impl = tmpimpl;  | 
360  | 0  |         }  | 
361  | 0  |         if (impl != NULL) { | 
362  |  |             /* There's an ENGINE for this job ... (apparently) */  | 
363  | 0  |             const EVP_CIPHER *c = ENGINE_get_cipher(impl, cipher->nid);  | 
364  |  | 
  | 
365  | 0  |             if (c == NULL) { | 
366  |  |                 /*  | 
367  |  |                  * One positive side-effect of US's export control history,  | 
368  |  |                  * is that we should at least be able to avoid using US  | 
369  |  |                  * misspellings of "initialisation"?  | 
370  |  |                  */  | 
371  | 0  |                 ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
372  | 0  |                 return 0;  | 
373  | 0  |             }  | 
374  |  |             /* We'll use the ENGINE's private cipher definition */  | 
375  | 0  |             cipher = c;  | 
376  |  |             /*  | 
377  |  |              * Store the ENGINE functional reference so we know 'cipher' came  | 
378  |  |              * from an ENGINE and we need to release it when done.  | 
379  |  |              */  | 
380  | 0  |             ctx->engine = impl;  | 
381  | 0  |         } else { | 
382  | 0  |             ctx->engine = NULL;  | 
383  | 0  |         }  | 
384  | 0  | #endif  | 
385  |  |  | 
386  | 0  |         ctx->cipher = cipher;  | 
387  | 0  |         if (ctx->cipher->ctx_size) { | 
388  | 0  |             ctx->cipher_data = OPENSSL_zalloc(ctx->cipher->ctx_size);  | 
389  | 0  |             if (ctx->cipher_data == NULL) { | 
390  | 0  |                 ctx->cipher = NULL;  | 
391  | 0  |                 return 0;  | 
392  | 0  |             }  | 
393  | 0  |         } else { | 
394  | 0  |             ctx->cipher_data = NULL;  | 
395  | 0  |         }  | 
396  | 0  |         ctx->key_len = cipher->key_len;  | 
397  |  |         /* Preserve wrap enable flag, zero everything else */  | 
398  | 0  |         ctx->flags &= EVP_CIPHER_CTX_FLAG_WRAP_ALLOW;  | 
399  | 0  |         if (ctx->cipher->flags & EVP_CIPH_CTRL_INIT) { | 
400  | 0  |             if (EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_INIT, 0, NULL) <= 0) { | 
401  | 0  |                 ctx->cipher = NULL;  | 
402  | 0  |                 ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
403  | 0  |                 return 0;  | 
404  | 0  |             }  | 
405  | 0  |         }  | 
406  | 0  |     }  | 
407  | 0  | #if !defined(OPENSSL_NO_ENGINE) && !defined(FIPS_MODULE)  | 
408  | 0  |  skip_to_init:  | 
409  | 0  | #endif  | 
410  | 0  |     if (ctx->cipher == NULL)  | 
411  | 0  |         return 0;  | 
412  |  |  | 
413  |  |     /* we assume block size is a power of 2 in *cryptUpdate */  | 
414  | 0  |     OPENSSL_assert(ctx->cipher->block_size == 1  | 
415  | 0  |                    || ctx->cipher->block_size == 8  | 
416  | 0  |                    || ctx->cipher->block_size == 16);  | 
417  |  | 
  | 
418  | 0  |     if (!(ctx->flags & EVP_CIPHER_CTX_FLAG_WRAP_ALLOW)  | 
419  | 0  |         && EVP_CIPHER_CTX_get_mode(ctx) == EVP_CIPH_WRAP_MODE) { | 
420  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_WRAP_MODE_NOT_ALLOWED);  | 
421  | 0  |         return 0;  | 
422  | 0  |     }  | 
423  |  |  | 
424  | 0  |     if ((EVP_CIPHER_get_flags(EVP_CIPHER_CTX_get0_cipher(ctx))  | 
425  | 0  |                 & EVP_CIPH_CUSTOM_IV) == 0) { | 
426  | 0  |         switch (EVP_CIPHER_CTX_get_mode(ctx)) { | 
427  |  |  | 
428  | 0  |         case EVP_CIPH_STREAM_CIPHER:  | 
429  | 0  |         case EVP_CIPH_ECB_MODE:  | 
430  | 0  |             break;  | 
431  |  |  | 
432  | 0  |         case EVP_CIPH_CFB_MODE:  | 
433  | 0  |         case EVP_CIPH_OFB_MODE:  | 
434  |  | 
  | 
435  | 0  |             ctx->num = 0;  | 
436  |  |             /* fall-through */  | 
437  |  | 
  | 
438  | 0  |         case EVP_CIPH_CBC_MODE:  | 
439  | 0  |             n = EVP_CIPHER_CTX_get_iv_length(ctx);  | 
440  | 0  |             if (n < 0 || n > (int)sizeof(ctx->iv)) { | 
441  | 0  |                 ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_IV_LENGTH);  | 
442  | 0  |                 return 0;  | 
443  | 0  |             }  | 
444  | 0  |             if (iv != NULL)  | 
445  | 0  |                 memcpy(ctx->oiv, iv, n);  | 
446  | 0  |             memcpy(ctx->iv, ctx->oiv, n);  | 
447  | 0  |             break;  | 
448  |  |  | 
449  | 0  |         case EVP_CIPH_CTR_MODE:  | 
450  | 0  |             ctx->num = 0;  | 
451  |  |             /* Don't reuse IV for CTR mode */  | 
452  | 0  |             if (iv != NULL) { | 
453  | 0  |                 n = EVP_CIPHER_CTX_get_iv_length(ctx);  | 
454  | 0  |                 if (n <= 0 || n > (int)sizeof(ctx->iv)) { | 
455  | 0  |                     ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_IV_LENGTH);  | 
456  | 0  |                     return 0;  | 
457  | 0  |                 }  | 
458  | 0  |                 memcpy(ctx->iv, iv, n);  | 
459  | 0  |             }  | 
460  | 0  |             break;  | 
461  |  |  | 
462  | 0  |         default:  | 
463  | 0  |             return 0;  | 
464  | 0  |         }  | 
465  | 0  |     }  | 
466  |  |  | 
467  | 0  |     if (key != NULL || (ctx->cipher->flags & EVP_CIPH_ALWAYS_CALL_INIT)) { | 
468  | 0  |         if (!ctx->cipher->init(ctx, key, iv, enc))  | 
469  | 0  |             return 0;  | 
470  | 0  |     }  | 
471  | 0  |     ctx->buf_len = 0;  | 
472  | 0  |     ctx->final_used = 0;  | 
473  | 0  |     ctx->block_mask = ctx->cipher->block_size - 1;  | 
474  | 0  |     return 1;  | 
475  | 0  | }  | 
476  |  |  | 
477  |  | /*  | 
478  |  |  * This function is basically evp_cipher_init_internal without ENGINE support.  | 
479  |  |  * They should be combined when engines are not supported any longer.  | 
480  |  |  */  | 
481  |  | static int evp_cipher_init_skey_internal(EVP_CIPHER_CTX *ctx,  | 
482  |  |                                          const EVP_CIPHER *cipher,  | 
483  |  |                                          const EVP_SKEY *skey,  | 
484  |  |                                          const unsigned char *iv, size_t iv_len,  | 
485  |  |                                          int enc, const OSSL_PARAM params[])  | 
486  | 0  | { | 
487  | 0  |     int ret;  | 
488  |  |  | 
489  |  |     /*  | 
490  |  |      * enc == 1 means we are encrypting.  | 
491  |  |      * enc == 0 means we are decrypting.  | 
492  |  |      * enc == -1 means, use the previously initialised value for encrypt/decrypt  | 
493  |  |      */  | 
494  | 0  |     if (enc == -1)  | 
495  | 0  |         enc = ctx->encrypt;  | 
496  | 0  |     else  | 
497  | 0  |         ctx->encrypt = enc != 0;  | 
498  |  | 
  | 
499  | 0  |     if (cipher == NULL && ctx->cipher == NULL) { | 
500  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NO_CIPHER_SET);  | 
501  | 0  |         return 0;  | 
502  | 0  |     }  | 
503  |  |  | 
504  |  |     /*  | 
505  |  |      * If there are engines involved then we throw an error  | 
506  |  |      */  | 
507  | 0  |     if (ctx->engine != NULL  | 
508  | 0  |             || (cipher != NULL && cipher->origin == EVP_ORIG_METH)  | 
509  | 0  |             || (cipher == NULL && ctx->cipher != NULL  | 
510  | 0  |                 && ctx->cipher->origin == EVP_ORIG_METH)) { | 
511  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
512  | 0  |         return 0;  | 
513  | 0  |     }  | 
514  |  |     /*  | 
515  |  |      * Ensure a context left lying around from last time is cleared  | 
516  |  |      * (legacy code)  | 
517  |  |      */  | 
518  | 0  |     if (cipher != NULL && ctx->cipher != NULL) { | 
519  | 0  |         if (ctx->cipher->cleanup != NULL && !ctx->cipher->cleanup(ctx))  | 
520  | 0  |             return 0;  | 
521  | 0  |         OPENSSL_clear_free(ctx->cipher_data, ctx->cipher->ctx_size);  | 
522  | 0  |         ctx->cipher_data = NULL;  | 
523  | 0  |     }  | 
524  |  |  | 
525  |  |     /* Ensure a context left lying around from last time is cleared */  | 
526  | 0  |     if (cipher != NULL && ctx->cipher != NULL) { | 
527  | 0  |         unsigned long flags = ctx->flags;  | 
528  |  | 
  | 
529  | 0  |         EVP_CIPHER_CTX_reset(ctx);  | 
530  |  |         /* Restore encrypt and flags */  | 
531  | 0  |         ctx->encrypt = enc;  | 
532  | 0  |         ctx->flags = flags;  | 
533  | 0  |     }  | 
534  |  | 
  | 
535  | 0  |     if (cipher == NULL)  | 
536  | 0  |         cipher = ctx->cipher;  | 
537  |  | 
  | 
538  | 0  |     if (cipher->prov == NULL) { | 
539  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
540  | 0  |         return 0;  | 
541  | 0  |     }  | 
542  |  |  | 
543  | 0  |     if (cipher != ctx->fetched_cipher) { | 
544  | 0  |         if (!EVP_CIPHER_up_ref((EVP_CIPHER *)cipher)) { | 
545  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
546  | 0  |             return 0;  | 
547  | 0  |         }  | 
548  | 0  |         EVP_CIPHER_free(ctx->fetched_cipher);  | 
549  |  |         /* Coverity false positive, the reference counting is confusing it */  | 
550  |  |         /* coverity[use_after_free] */  | 
551  | 0  |         ctx->fetched_cipher = (EVP_CIPHER *)cipher;  | 
552  | 0  |     }  | 
553  | 0  |     ctx->cipher = cipher;  | 
554  | 0  |     if (ctx->algctx == NULL) { | 
555  | 0  |         ctx->algctx = ctx->cipher->newctx(ossl_provider_ctx(cipher->prov));  | 
556  | 0  |         if (ctx->algctx == NULL) { | 
557  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
558  | 0  |             return 0;  | 
559  | 0  |         }  | 
560  | 0  |     }  | 
561  |  |  | 
562  | 0  |     if (skey != NULL && ctx->cipher->prov != skey->skeymgmt->prov) { | 
563  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
564  | 0  |         return 0;  | 
565  | 0  |     }  | 
566  |  |  | 
567  | 0  |     if ((ctx->flags & EVP_CIPH_NO_PADDING) != 0) { | 
568  |  |         /*  | 
569  |  |          * If this ctx was already set up for no padding then we need to tell  | 
570  |  |          * the new cipher about it.  | 
571  |  |          */  | 
572  | 0  |         if (!EVP_CIPHER_CTX_set_padding(ctx, 0))  | 
573  | 0  |             return 0;  | 
574  | 0  |     }  | 
575  |  |  | 
576  | 0  |     if (iv == NULL)  | 
577  | 0  |         iv_len = 0;  | 
578  |  |  | 
579  |  |     /* We have a data managed via key management, using the new callbacks */  | 
580  | 0  |     if (enc) { | 
581  | 0  |         if (ctx->cipher->einit_skey == NULL) { | 
582  |  |             /*  | 
583  |  |              *  When skey is NULL, it's a multiple-step init as the current API does.  | 
584  |  |              *  Otherwise we try to fallback for providers that do not support SKEYs.  | 
585  |  |              */  | 
586  | 0  |             const unsigned char *keydata = NULL;  | 
587  | 0  |             size_t keylen = 0;  | 
588  |  | 
  | 
589  | 0  |             if (skey != NULL && !EVP_SKEY_get0_raw_key(skey, &keydata, &keylen)) { | 
590  | 0  |                 ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
591  | 0  |                 return 0;  | 
592  | 0  |             }  | 
593  |  |  | 
594  | 0  |             ret = ctx->cipher->einit(ctx->algctx, keydata, keylen,  | 
595  | 0  |                                      iv, iv_len, params);  | 
596  | 0  |         } else { | 
597  | 0  |             ret = ctx->cipher->einit_skey(ctx->algctx,  | 
598  | 0  |                                           skey == NULL ? NULL : skey->keydata,  | 
599  | 0  |                                           iv, iv_len, params);  | 
600  | 0  |         }  | 
601  | 0  |     } else { | 
602  | 0  |         if (ctx->cipher->dinit_skey == NULL) { | 
603  |  |             /*  | 
604  |  |              *  When skey is NULL, it's a multiple-step init as the current API does.  | 
605  |  |              *  Otherwise we try to fallback for providers that do not support SKEYs.  | 
606  |  |              */  | 
607  | 0  |             const unsigned char *keydata = NULL;  | 
608  | 0  |             size_t keylen = 0;  | 
609  |  | 
  | 
610  | 0  |             if (skey != NULL && !EVP_SKEY_get0_raw_key(skey, &keydata, &keylen)) { | 
611  | 0  |                 ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
612  | 0  |                 return 0;  | 
613  | 0  |             }  | 
614  |  |  | 
615  | 0  |             ret = ctx->cipher->dinit(ctx->algctx, keydata, keylen,  | 
616  | 0  |                                      iv, iv_len, params);  | 
617  | 0  |         } else { | 
618  | 0  |             ret = ctx->cipher->dinit_skey(ctx->algctx,  | 
619  | 0  |                                           skey == NULL ? NULL : skey->keydata,  | 
620  | 0  |                                           iv, iv_len, params);  | 
621  | 0  |         }  | 
622  | 0  |     }  | 
623  |  |  | 
624  | 0  |     return ret;  | 
625  | 0  | }  | 
626  |  |  | 
627  |  | int EVP_CipherInit_SKEY(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
628  |  |                         EVP_SKEY *skey, const unsigned char *iv, size_t iv_len,  | 
629  |  |                         int enc, const OSSL_PARAM params[])  | 
630  | 0  | { | 
631  | 0  |     return evp_cipher_init_skey_internal(ctx, cipher, skey, iv, iv_len, enc, params);  | 
632  | 0  | }  | 
633  |  |  | 
634  |  | int EVP_CipherInit_ex2(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
635  |  |                        const unsigned char *key, const unsigned char *iv,  | 
636  |  |                        int enc, const OSSL_PARAM params[])  | 
637  | 0  | { | 
638  | 0  |     return evp_cipher_init_internal(ctx, cipher, NULL, key, iv, enc, 0, params);  | 
639  | 0  | }  | 
640  |  |  | 
641  |  | int EVP_CipherInit(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
642  |  |                    const unsigned char *key, const unsigned char *iv, int enc)  | 
643  | 0  | { | 
644  | 0  |     if (cipher != NULL)  | 
645  | 0  |         EVP_CIPHER_CTX_reset(ctx);  | 
646  | 0  |     return evp_cipher_init_internal(ctx, cipher, NULL, key, iv, enc, 0, NULL);  | 
647  | 0  | }  | 
648  |  |  | 
649  |  | int EVP_CipherInit_ex(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
650  |  |                       ENGINE *impl, const unsigned char *key,  | 
651  |  |                       const unsigned char *iv, int enc)  | 
652  | 75  | { | 
653  | 75  |     return evp_cipher_init_internal(ctx, cipher, impl, key, iv, enc, 0, NULL);  | 
654  | 75  | }  | 
655  |  |  | 
656  |  | int EVP_CipherPipelineEncryptInit(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
657  |  |                                   const unsigned char *key, size_t keylen,  | 
658  |  |                                   size_t numpipes,  | 
659  |  |                                   const unsigned char **iv, size_t ivlen)  | 
660  | 0  | { | 
661  | 0  |     if (numpipes > EVP_MAX_PIPES) { | 
662  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_TOO_MANY_PIPES);  | 
663  | 0  |         return 0;  | 
664  | 0  |     }  | 
665  |  |  | 
666  | 0  |     ctx->numpipes = numpipes;  | 
667  |  | 
  | 
668  | 0  |     if (!evp_cipher_init_internal(ctx, cipher, NULL, NULL, NULL, 1, 1,  | 
669  | 0  |                                   NULL))  | 
670  | 0  |         return 0;  | 
671  |  |  | 
672  | 0  |     if (ctx->cipher->p_einit == NULL) { | 
673  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
674  | 0  |         return 0;  | 
675  | 0  |     }  | 
676  |  |  | 
677  | 0  |     return ctx->cipher->p_einit(ctx->algctx,  | 
678  | 0  |                                 key,  | 
679  | 0  |                                 keylen,  | 
680  | 0  |                                 numpipes,  | 
681  | 0  |                                 iv,  | 
682  | 0  |                                 ivlen,  | 
683  | 0  |                                 NULL);  | 
684  | 0  | }  | 
685  |  |  | 
686  |  | int EVP_CipherPipelineDecryptInit(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
687  |  |                                   const unsigned char *key, size_t keylen,  | 
688  |  |                                   size_t numpipes,  | 
689  |  |                                   const unsigned char **iv, size_t ivlen)  | 
690  | 0  | { | 
691  | 0  |     if (numpipes > EVP_MAX_PIPES) { | 
692  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_TOO_MANY_PIPES);  | 
693  | 0  |         return 0;  | 
694  | 0  |     }  | 
695  |  |  | 
696  | 0  |     ctx->numpipes = numpipes;  | 
697  |  | 
  | 
698  | 0  |     if (!evp_cipher_init_internal(ctx, cipher, NULL, NULL, NULL, 0, 1,  | 
699  | 0  |                                   NULL))  | 
700  | 0  |         return 0;  | 
701  |  |  | 
702  | 0  |     if (ctx->cipher->p_dinit == NULL) { | 
703  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
704  | 0  |         return 0;  | 
705  | 0  |     }  | 
706  |  |  | 
707  | 0  |     return ctx->cipher->p_dinit(ctx->algctx,  | 
708  | 0  |                                 key,  | 
709  | 0  |                                 keylen,  | 
710  | 0  |                                 numpipes,  | 
711  | 0  |                                 iv,  | 
712  | 0  |                                 ivlen,  | 
713  | 0  |                                 NULL);  | 
714  | 0  | }  | 
715  |  |  | 
716  |  | int EVP_CipherUpdate(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl,  | 
717  |  |                      const unsigned char *in, int inl)  | 
718  | 0  | { | 
719  | 0  |     if (ctx->encrypt)  | 
720  | 0  |         return EVP_EncryptUpdate(ctx, out, outl, in, inl);  | 
721  | 0  |     else  | 
722  | 0  |         return EVP_DecryptUpdate(ctx, out, outl, in, inl);  | 
723  | 0  | }  | 
724  |  |  | 
725  |  | int EVP_CipherPipelineUpdate(EVP_CIPHER_CTX *ctx,  | 
726  |  |                              unsigned char **out, size_t *outl,  | 
727  |  |                              const size_t *outsize,  | 
728  |  |                              const unsigned char **in, const size_t *inl)  | 
729  | 0  | { | 
730  | 0  |     size_t i;  | 
731  |  | 
  | 
732  | 0  |     if (ossl_unlikely(outl == NULL || inl == NULL)) { | 
733  | 0  |         ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_NULL_PARAMETER);  | 
734  | 0  |         return 0;  | 
735  | 0  |     }  | 
736  |  |  | 
737  | 0  |     if (ossl_unlikely(ctx->cipher == NULL)) { | 
738  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NO_CIPHER_SET);  | 
739  | 0  |         return 0;  | 
740  | 0  |     }  | 
741  |  |  | 
742  | 0  |     if (ossl_unlikely(ctx->cipher->prov == NULL)) { | 
743  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_OPERATION);  | 
744  | 0  |         return 0;  | 
745  | 0  |     }  | 
746  |  |  | 
747  | 0  |     if (ossl_unlikely(ctx->cipher->p_cupdate == NULL)) { | 
748  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_UPDATE_ERROR);  | 
749  | 0  |         return 0;  | 
750  | 0  |     }  | 
751  |  |  | 
752  | 0  |     for (i = 0; i < ctx->numpipes; i++)  | 
753  | 0  |         outl[i] = 0;  | 
754  |  | 
  | 
755  | 0  |     return ctx->cipher->p_cupdate(ctx->algctx, ctx->numpipes,  | 
756  | 0  |                                   out, outl, outsize,  | 
757  | 0  |                                   in, inl);  | 
758  | 0  | }  | 
759  |  |  | 
760  |  | int EVP_CipherFinal_ex(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl)  | 
761  | 0  | { | 
762  | 0  |     if (ctx->encrypt)  | 
763  | 0  |         return EVP_EncryptFinal_ex(ctx, out, outl);  | 
764  | 0  |     else  | 
765  | 0  |         return EVP_DecryptFinal_ex(ctx, out, outl);  | 
766  | 0  | }  | 
767  |  |  | 
768  |  | int EVP_CipherFinal(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl)  | 
769  | 0  | { | 
770  | 0  |     if (ctx->encrypt)  | 
771  | 0  |         return EVP_EncryptFinal(ctx, out, outl);  | 
772  | 0  |     else  | 
773  | 0  |         return EVP_DecryptFinal(ctx, out, outl);  | 
774  | 0  | }  | 
775  |  |  | 
776  |  | int EVP_CipherPipelineFinal(EVP_CIPHER_CTX *ctx,  | 
777  |  |                             unsigned char **out, size_t *outl,  | 
778  |  |                             const size_t *outsize)  | 
779  | 0  | { | 
780  | 0  |     size_t i;  | 
781  |  | 
  | 
782  | 0  |     if (ossl_unlikely(outl == NULL)) { | 
783  | 0  |         ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_NULL_PARAMETER);  | 
784  | 0  |         return 0;  | 
785  | 0  |     }  | 
786  |  |  | 
787  | 0  |     if (ossl_unlikely(ctx->cipher == NULL)) { | 
788  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NO_CIPHER_SET);  | 
789  | 0  |         return 0;  | 
790  | 0  |     }  | 
791  |  |  | 
792  | 0  |     if (ossl_unlikely(ctx->cipher->prov == NULL)) { | 
793  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_OPERATION);  | 
794  | 0  |         return 0;  | 
795  | 0  |     }  | 
796  |  |  | 
797  | 0  |     if (ossl_unlikely(ctx->cipher->p_cfinal == NULL)) { | 
798  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_FINAL_ERROR);  | 
799  | 0  |         return 0;  | 
800  | 0  |     }  | 
801  |  |  | 
802  | 0  |     for (i = 0; i < ctx->numpipes; i++)  | 
803  | 0  |         outl[i] = 0;  | 
804  |  | 
  | 
805  | 0  |     return ctx->cipher->p_cfinal(ctx->algctx, ctx->numpipes,  | 
806  | 0  |                                  out, outl, outsize);  | 
807  | 0  | }  | 
808  |  |  | 
809  |  | int EVP_EncryptInit(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
810  |  |                     const unsigned char *key, const unsigned char *iv)  | 
811  | 0  | { | 
812  | 0  |     return EVP_CipherInit(ctx, cipher, key, iv, 1);  | 
813  | 0  | }  | 
814  |  |  | 
815  |  | int EVP_EncryptInit_ex(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
816  |  |                        ENGINE *impl, const unsigned char *key,  | 
817  |  |                        const unsigned char *iv)  | 
818  | 29  | { | 
819  | 29  |     return EVP_CipherInit_ex(ctx, cipher, impl, key, iv, 1);  | 
820  | 29  | }  | 
821  |  |  | 
822  |  | int EVP_EncryptInit_ex2(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
823  |  |                         const unsigned char *key, const unsigned char *iv,  | 
824  |  |                         const OSSL_PARAM params[])  | 
825  | 0  | { | 
826  | 0  |     return EVP_CipherInit_ex2(ctx, cipher, key, iv, 1, params);  | 
827  | 0  | }  | 
828  |  |  | 
829  |  | int EVP_DecryptInit(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
830  |  |                     const unsigned char *key, const unsigned char *iv)  | 
831  | 0  | { | 
832  | 0  |     return EVP_CipherInit(ctx, cipher, key, iv, 0);  | 
833  | 0  | }  | 
834  |  |  | 
835  |  | int EVP_DecryptInit_ex(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
836  |  |                        ENGINE *impl, const unsigned char *key,  | 
837  |  |                        const unsigned char *iv)  | 
838  | 46  | { | 
839  | 46  |     return EVP_CipherInit_ex(ctx, cipher, impl, key, iv, 0);  | 
840  | 46  | }  | 
841  |  |  | 
842  |  | int EVP_DecryptInit_ex2(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,  | 
843  |  |                         const unsigned char *key, const unsigned char *iv,  | 
844  |  |                         const OSSL_PARAM params[])  | 
845  | 0  | { | 
846  | 0  |     return EVP_CipherInit_ex2(ctx, cipher, key, iv, 0, params);  | 
847  | 0  | }  | 
848  |  |  | 
849  |  | /*  | 
850  |  |  * According to the letter of standard difference between pointers  | 
851  |  |  * is specified to be valid only within same object. This makes  | 
852  |  |  * it formally challenging to determine if input and output buffers  | 
853  |  |  * are not partially overlapping with standard pointer arithmetic.  | 
854  |  |  */  | 
855  |  | #ifdef PTRDIFF_T  | 
856  |  | # undef PTRDIFF_T  | 
857  |  | #endif  | 
858  |  | #if defined(OPENSSL_SYS_VMS) && __INITIAL_POINTER_SIZE==64  | 
859  |  | /*  | 
860  |  |  * Then we have VMS that distinguishes itself by adhering to  | 
861  |  |  * sizeof(size_t)==4 even in 64-bit builds, which means that  | 
862  |  |  * difference between two pointers might be truncated to 32 bits.  | 
863  |  |  * In the context one can even wonder how comparison for  | 
864  |  |  * equality is implemented. To be on the safe side we adhere to  | 
865  |  |  * PTRDIFF_T even for comparison for equality.  | 
866  |  |  */  | 
867  |  | # define PTRDIFF_T uint64_t  | 
868  |  | #else  | 
869  | 0  | # define PTRDIFF_T size_t  | 
870  |  | #endif  | 
871  |  |  | 
872  |  | int ossl_is_partially_overlapping(const void *ptr1, const void *ptr2, int len)  | 
873  | 0  | { | 
874  | 0  |     PTRDIFF_T diff = (PTRDIFF_T)ptr1-(PTRDIFF_T)ptr2;  | 
875  |  |     /*  | 
876  |  |      * Check for partially overlapping buffers. [Binary logical  | 
877  |  |      * operations are used instead of boolean to minimize number  | 
878  |  |      * of conditional branches.]  | 
879  |  |      */  | 
880  | 0  |     int overlapped = (len > 0) & (diff != 0) & ((diff < (PTRDIFF_T)len) |  | 
881  | 0  |                                                 (diff > (0 - (PTRDIFF_T)len)));  | 
882  |  | 
  | 
883  | 0  |     return overlapped;  | 
884  | 0  | }  | 
885  |  |  | 
886  |  | static int evp_EncryptDecryptUpdate(EVP_CIPHER_CTX *ctx,  | 
887  |  |                                     unsigned char *out, int *outl,  | 
888  |  |                                     const unsigned char *in, int inl)  | 
889  | 0  | { | 
890  | 0  |     int i, j, bl, cmpl = inl;  | 
891  |  | 
  | 
892  | 0  |     if (EVP_CIPHER_CTX_test_flags(ctx, EVP_CIPH_FLAG_LENGTH_BITS))  | 
893  | 0  |         cmpl = safe_div_round_up_int(cmpl, 8, NULL);  | 
894  |  | 
  | 
895  | 0  |     bl = ctx->cipher->block_size;  | 
896  |  | 
  | 
897  | 0  |     if (ctx->cipher->flags & EVP_CIPH_FLAG_CUSTOM_CIPHER) { | 
898  |  |         /* If block size > 1 then the cipher will have to do this check */  | 
899  | 0  |         if (bl == 1 && ossl_is_partially_overlapping(out, in, cmpl)) { | 
900  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_PARTIALLY_OVERLAPPING);  | 
901  | 0  |             return 0;  | 
902  | 0  |         }  | 
903  |  |  | 
904  | 0  |         i = ctx->cipher->do_cipher(ctx, out, in, inl);  | 
905  | 0  |         if (i < 0)  | 
906  | 0  |             return 0;  | 
907  | 0  |         else  | 
908  | 0  |             *outl = i;  | 
909  | 0  |         return 1;  | 
910  | 0  |     }  | 
911  |  |  | 
912  | 0  |     if (inl <= 0) { | 
913  | 0  |         *outl = 0;  | 
914  | 0  |         return inl == 0;  | 
915  | 0  |     }  | 
916  | 0  |     if (ossl_is_partially_overlapping(out + ctx->buf_len, in, cmpl)) { | 
917  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_PARTIALLY_OVERLAPPING);  | 
918  | 0  |         return 0;  | 
919  | 0  |     }  | 
920  |  |  | 
921  | 0  |     if (ctx->buf_len == 0 && (inl & (ctx->block_mask)) == 0) { | 
922  | 0  |         if (ctx->cipher->do_cipher(ctx, out, in, inl)) { | 
923  | 0  |             *outl = inl;  | 
924  | 0  |             return 1;  | 
925  | 0  |         } else { | 
926  | 0  |             *outl = 0;  | 
927  | 0  |             return 0;  | 
928  | 0  |         }  | 
929  | 0  |     }  | 
930  | 0  |     i = ctx->buf_len;  | 
931  | 0  |     OPENSSL_assert(bl <= (int)sizeof(ctx->buf));  | 
932  | 0  |     if (i != 0) { | 
933  | 0  |         if (bl - i > inl) { | 
934  | 0  |             memcpy(&(ctx->buf[i]), in, inl);  | 
935  | 0  |             ctx->buf_len += inl;  | 
936  | 0  |             *outl = 0;  | 
937  | 0  |             return 1;  | 
938  | 0  |         } else { | 
939  | 0  |             j = bl - i;  | 
940  |  |  | 
941  |  |             /*  | 
942  |  |              * Once we've processed the first j bytes from in, the amount of  | 
943  |  |              * data left that is a multiple of the block length is:  | 
944  |  |              * (inl - j) & ~(bl - 1)  | 
945  |  |              * We must ensure that this amount of data, plus the one block that  | 
946  |  |              * we process from ctx->buf does not exceed INT_MAX  | 
947  |  |              */  | 
948  | 0  |             if (((inl - j) & ~(bl - 1)) > INT_MAX - bl) { | 
949  | 0  |                 ERR_raise(ERR_LIB_EVP, EVP_R_OUTPUT_WOULD_OVERFLOW);  | 
950  | 0  |                 return 0;  | 
951  | 0  |             }  | 
952  | 0  |             memcpy(&(ctx->buf[i]), in, j);  | 
953  | 0  |             inl -= j;  | 
954  | 0  |             in += j;  | 
955  | 0  |             if (!ctx->cipher->do_cipher(ctx, out, ctx->buf, bl))  | 
956  | 0  |                 return 0;  | 
957  | 0  |             out += bl;  | 
958  | 0  |             *outl = bl;  | 
959  | 0  |         }  | 
960  | 0  |     } else  | 
961  | 0  |         *outl = 0;  | 
962  | 0  |     i = inl & (bl - 1);  | 
963  | 0  |     inl -= i;  | 
964  | 0  |     if (inl > 0) { | 
965  | 0  |         if (!ctx->cipher->do_cipher(ctx, out, in, inl))  | 
966  | 0  |             return 0;  | 
967  | 0  |         *outl += inl;  | 
968  | 0  |     }  | 
969  |  |  | 
970  | 0  |     if (i != 0)  | 
971  | 0  |         memcpy(ctx->buf, &(in[inl]), i);  | 
972  | 0  |     ctx->buf_len = i;  | 
973  | 0  |     return 1;  | 
974  | 0  | }  | 
975  |  |  | 
976  |  |  | 
977  |  | int EVP_EncryptUpdate(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl,  | 
978  |  |                       const unsigned char *in, int inl)  | 
979  | 0  | { | 
980  | 0  |     int ret;  | 
981  | 0  |     size_t soutl, inl_ = (size_t)inl;  | 
982  | 0  |     int blocksize;  | 
983  |  | 
  | 
984  | 0  |     if (ossl_likely(outl != NULL)) { | 
985  | 0  |         *outl = 0;  | 
986  | 0  |     } else { | 
987  | 0  |         ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_NULL_PARAMETER);  | 
988  | 0  |         return 0;  | 
989  | 0  |     }  | 
990  |  |  | 
991  |  |     /* Prevent accidental use of decryption context when encrypting */  | 
992  | 0  |     if (ossl_unlikely(!ctx->encrypt)) { | 
993  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_OPERATION);  | 
994  | 0  |         return 0;  | 
995  | 0  |     }  | 
996  |  |  | 
997  | 0  |     if (ossl_unlikely(ctx->cipher == NULL)) { | 
998  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NO_CIPHER_SET);  | 
999  | 0  |         return 0;  | 
1000  | 0  |     }  | 
1001  |  |  | 
1002  | 0  |     if (ossl_unlikely(ctx->cipher->prov == NULL))  | 
1003  | 0  |         goto legacy;  | 
1004  |  |  | 
1005  | 0  |     blocksize = ctx->cipher->block_size;  | 
1006  |  | 
  | 
1007  | 0  |     if (ossl_unlikely(ctx->cipher->cupdate == NULL || blocksize < 1)) { | 
1008  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_UPDATE_ERROR);  | 
1009  | 0  |         return 0;  | 
1010  | 0  |     }  | 
1011  |  |  | 
1012  | 0  |     ret = ctx->cipher->cupdate(ctx->algctx, out, &soutl,  | 
1013  | 0  |                                inl_ + (size_t)(blocksize == 1 ? 0 : blocksize),  | 
1014  | 0  |                                in, inl_);  | 
1015  |  | 
  | 
1016  | 0  |     if (ossl_likely(ret)) { | 
1017  | 0  |         if (soutl > INT_MAX) { | 
1018  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_UPDATE_ERROR);  | 
1019  | 0  |             return 0;  | 
1020  | 0  |         }  | 
1021  | 0  |         *outl = soutl;  | 
1022  | 0  |     }  | 
1023  |  |  | 
1024  | 0  |     return ret;  | 
1025  |  |  | 
1026  |  |     /* Code below to be removed when legacy support is dropped. */  | 
1027  | 0  |  legacy:  | 
1028  |  | 
  | 
1029  | 0  |     return evp_EncryptDecryptUpdate(ctx, out, outl, in, inl);  | 
1030  | 0  | }  | 
1031  |  |  | 
1032  |  | int EVP_EncryptFinal(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl)  | 
1033  | 0  | { | 
1034  | 0  |     int ret;  | 
1035  | 0  |     ret = EVP_EncryptFinal_ex(ctx, out, outl);  | 
1036  | 0  |     return ret;  | 
1037  | 0  | }  | 
1038  |  |  | 
1039  |  | int EVP_EncryptFinal_ex(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl)  | 
1040  | 0  | { | 
1041  | 0  |     int n, ret;  | 
1042  | 0  |     unsigned int i, b, bl;  | 
1043  | 0  |     size_t soutl;  | 
1044  | 0  |     int blocksize;  | 
1045  |  | 
  | 
1046  | 0  |     if (outl != NULL) { | 
1047  | 0  |         *outl = 0;  | 
1048  | 0  |     } else { | 
1049  | 0  |         ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_NULL_PARAMETER);  | 
1050  | 0  |         return 0;  | 
1051  | 0  |     }  | 
1052  |  |  | 
1053  |  |     /* Prevent accidental use of decryption context when encrypting */  | 
1054  | 0  |     if (!ctx->encrypt) { | 
1055  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_OPERATION);  | 
1056  | 0  |         return 0;  | 
1057  | 0  |     }  | 
1058  |  |  | 
1059  | 0  |     if (ctx->cipher == NULL) { | 
1060  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NO_CIPHER_SET);  | 
1061  | 0  |         return 0;  | 
1062  | 0  |     }  | 
1063  | 0  |     if (ctx->cipher->prov == NULL)  | 
1064  | 0  |         goto legacy;  | 
1065  |  |  | 
1066  | 0  |     blocksize = EVP_CIPHER_CTX_get_block_size(ctx);  | 
1067  |  | 
  | 
1068  | 0  |     if (blocksize < 1 || ctx->cipher->cfinal == NULL) { | 
1069  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_FINAL_ERROR);  | 
1070  | 0  |         return 0;  | 
1071  | 0  |     }  | 
1072  |  |  | 
1073  | 0  |     ret = ctx->cipher->cfinal(ctx->algctx, out, &soutl,  | 
1074  | 0  |                               blocksize == 1 ? 0 : blocksize);  | 
1075  |  | 
  | 
1076  | 0  |     if (ret) { | 
1077  | 0  |         if (soutl > INT_MAX) { | 
1078  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_FINAL_ERROR);  | 
1079  | 0  |             return 0;  | 
1080  | 0  |         }  | 
1081  | 0  |         *outl = soutl;  | 
1082  | 0  |     }  | 
1083  |  |  | 
1084  | 0  |     return ret;  | 
1085  |  |  | 
1086  |  |     /* Code below to be removed when legacy support is dropped. */  | 
1087  | 0  |  legacy:  | 
1088  |  | 
  | 
1089  | 0  |     if (ctx->cipher->flags & EVP_CIPH_FLAG_CUSTOM_CIPHER) { | 
1090  | 0  |         ret = ctx->cipher->do_cipher(ctx, out, NULL, 0);  | 
1091  | 0  |         if (ret < 0)  | 
1092  | 0  |             return 0;  | 
1093  | 0  |         else  | 
1094  | 0  |             *outl = ret;  | 
1095  | 0  |         return 1;  | 
1096  | 0  |     }  | 
1097  |  |  | 
1098  | 0  |     b = ctx->cipher->block_size;  | 
1099  | 0  |     OPENSSL_assert(b <= sizeof(ctx->buf));  | 
1100  | 0  |     if (b == 1) { | 
1101  | 0  |         *outl = 0;  | 
1102  | 0  |         return 1;  | 
1103  | 0  |     }  | 
1104  | 0  |     bl = ctx->buf_len;  | 
1105  | 0  |     if (ctx->flags & EVP_CIPH_NO_PADDING) { | 
1106  | 0  |         if (bl) { | 
1107  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_DATA_NOT_MULTIPLE_OF_BLOCK_LENGTH);  | 
1108  | 0  |             return 0;  | 
1109  | 0  |         }  | 
1110  | 0  |         *outl = 0;  | 
1111  | 0  |         return 1;  | 
1112  | 0  |     }  | 
1113  |  |  | 
1114  | 0  |     n = b - bl;  | 
1115  | 0  |     for (i = bl; i < b; i++)  | 
1116  | 0  |         ctx->buf[i] = n;  | 
1117  | 0  |     ret = ctx->cipher->do_cipher(ctx, out, ctx->buf, b);  | 
1118  |  | 
  | 
1119  | 0  |     if (ret)  | 
1120  | 0  |         *outl = b;  | 
1121  |  | 
  | 
1122  | 0  |     return ret;  | 
1123  | 0  | }  | 
1124  |  |  | 
1125  |  | int EVP_DecryptUpdate(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl,  | 
1126  |  |                       const unsigned char *in, int inl)  | 
1127  | 17  | { | 
1128  | 17  |     int fix_len, cmpl = inl, ret;  | 
1129  | 17  |     unsigned int b;  | 
1130  | 17  |     size_t soutl, inl_ = (size_t)inl;  | 
1131  | 17  |     int blocksize;  | 
1132  |  |  | 
1133  | 17  |     if (ossl_likely(outl != NULL)) { | 
1134  | 17  |         *outl = 0;  | 
1135  | 17  |     } else { | 
1136  | 0  |         ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_NULL_PARAMETER);  | 
1137  | 0  |         return 0;  | 
1138  | 0  |     }  | 
1139  |  |  | 
1140  |  |     /* Prevent accidental use of encryption context when decrypting */  | 
1141  | 17  |     if (ossl_unlikely(ctx->encrypt)) { | 
1142  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_OPERATION);  | 
1143  | 0  |         return 0;  | 
1144  | 0  |     }  | 
1145  |  |  | 
1146  | 17  |     if (ossl_unlikely(ctx->cipher == NULL)) { | 
1147  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NO_CIPHER_SET);  | 
1148  | 0  |         return 0;  | 
1149  | 0  |     }  | 
1150  | 17  |     if (ossl_unlikely(ctx->cipher->prov == NULL))  | 
1151  | 0  |         goto legacy;  | 
1152  |  |  | 
1153  | 17  |     blocksize = EVP_CIPHER_CTX_get_block_size(ctx);  | 
1154  |  |  | 
1155  | 17  |     if (ossl_unlikely(ctx->cipher->cupdate == NULL || blocksize < 1)) { | 
1156  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_UPDATE_ERROR);  | 
1157  | 0  |         return 0;  | 
1158  | 0  |     }  | 
1159  | 17  |     ret = ctx->cipher->cupdate(ctx->algctx, out, &soutl,  | 
1160  | 17  |                                inl_ + (size_t)(blocksize == 1 ? 0 : blocksize),  | 
1161  | 17  |                                in, inl_);  | 
1162  |  |  | 
1163  | 17  |     if (ossl_likely(ret)) { | 
1164  | 17  |         if (soutl > INT_MAX) { | 
1165  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_UPDATE_ERROR);  | 
1166  | 0  |             return 0;  | 
1167  | 0  |         }  | 
1168  | 17  |         *outl = soutl;  | 
1169  | 17  |     }  | 
1170  |  |  | 
1171  | 17  |     return ret;  | 
1172  |  |  | 
1173  |  |     /* Code below to be removed when legacy support is dropped. */  | 
1174  | 0  |  legacy:  | 
1175  |  | 
  | 
1176  | 0  |     b = ctx->cipher->block_size;  | 
1177  |  | 
  | 
1178  | 0  |     if (EVP_CIPHER_CTX_test_flags(ctx, EVP_CIPH_FLAG_LENGTH_BITS))  | 
1179  | 0  |         cmpl = safe_div_round_up_int(cmpl, 8, NULL);  | 
1180  |  | 
  | 
1181  | 0  |     if (ctx->cipher->flags & EVP_CIPH_FLAG_CUSTOM_CIPHER) { | 
1182  | 0  |         if (b == 1 && ossl_is_partially_overlapping(out, in, cmpl)) { | 
1183  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_PARTIALLY_OVERLAPPING);  | 
1184  | 0  |             return 0;  | 
1185  | 0  |         }  | 
1186  |  |  | 
1187  | 0  |         fix_len = ctx->cipher->do_cipher(ctx, out, in, inl);  | 
1188  | 0  |         if (fix_len < 0) { | 
1189  | 0  |             *outl = 0;  | 
1190  | 0  |             return 0;  | 
1191  | 0  |         } else  | 
1192  | 0  |             *outl = fix_len;  | 
1193  | 0  |         return 1;  | 
1194  | 0  |     }  | 
1195  |  |  | 
1196  | 0  |     if (inl <= 0) { | 
1197  | 0  |         *outl = 0;  | 
1198  | 0  |         return inl == 0;  | 
1199  | 0  |     }  | 
1200  |  |  | 
1201  | 0  |     if (ctx->flags & EVP_CIPH_NO_PADDING)  | 
1202  | 0  |         return evp_EncryptDecryptUpdate(ctx, out, outl, in, inl);  | 
1203  |  |  | 
1204  | 0  |     OPENSSL_assert(b <= sizeof(ctx->final));  | 
1205  |  | 
  | 
1206  | 0  |     if (ctx->final_used) { | 
1207  |  |         /* see comment about PTRDIFF_T comparison above */  | 
1208  | 0  |         if (((PTRDIFF_T)out == (PTRDIFF_T)in)  | 
1209  | 0  |             || ossl_is_partially_overlapping(out, in, b)) { | 
1210  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_PARTIALLY_OVERLAPPING);  | 
1211  | 0  |             return 0;  | 
1212  | 0  |         }  | 
1213  |  |         /*  | 
1214  |  |          * final_used is only ever set if buf_len is 0. Therefore the maximum  | 
1215  |  |          * length output we will ever see from evp_EncryptDecryptUpdate is  | 
1216  |  |          * the maximum multiple of the block length that is <= inl, or just:  | 
1217  |  |          * inl & ~(b - 1)  | 
1218  |  |          * Since final_used has been set then the final output length is:  | 
1219  |  |          * (inl & ~(b - 1)) + b  | 
1220  |  |          * This must never exceed INT_MAX  | 
1221  |  |          */  | 
1222  | 0  |         if ((inl & ~(b - 1)) > INT_MAX - b) { | 
1223  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_OUTPUT_WOULD_OVERFLOW);  | 
1224  | 0  |             return 0;  | 
1225  | 0  |         }  | 
1226  | 0  |         memcpy(out, ctx->final, b);  | 
1227  | 0  |         out += b;  | 
1228  | 0  |         fix_len = 1;  | 
1229  | 0  |     } else  | 
1230  | 0  |         fix_len = 0;  | 
1231  |  |  | 
1232  | 0  |     if (!evp_EncryptDecryptUpdate(ctx, out, outl, in, inl))  | 
1233  | 0  |         return 0;  | 
1234  |  |  | 
1235  |  |     /*  | 
1236  |  |      * if we have 'decrypted' a multiple of block size, make sure we have a  | 
1237  |  |      * copy of this last block  | 
1238  |  |      */  | 
1239  | 0  |     if (b > 1 && !ctx->buf_len) { | 
1240  | 0  |         *outl -= b;  | 
1241  | 0  |         ctx->final_used = 1;  | 
1242  | 0  |         memcpy(ctx->final, &out[*outl], b);  | 
1243  | 0  |     } else  | 
1244  | 0  |         ctx->final_used = 0;  | 
1245  |  | 
  | 
1246  | 0  |     if (fix_len)  | 
1247  | 0  |         *outl += b;  | 
1248  |  | 
  | 
1249  | 0  |     return 1;  | 
1250  | 0  | }  | 
1251  |  |  | 
1252  |  | int EVP_DecryptFinal(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl)  | 
1253  | 17  | { | 
1254  | 17  |     int ret;  | 
1255  | 17  |     ret = EVP_DecryptFinal_ex(ctx, out, outl);  | 
1256  | 17  |     return ret;  | 
1257  | 17  | }  | 
1258  |  |  | 
1259  |  | int EVP_DecryptFinal_ex(EVP_CIPHER_CTX *ctx, unsigned char *out, int *outl)  | 
1260  | 17  | { | 
1261  | 17  |     int i, n;  | 
1262  | 17  |     unsigned int b;  | 
1263  | 17  |     size_t soutl;  | 
1264  | 17  |     int ret;  | 
1265  | 17  |     int blocksize;  | 
1266  |  |  | 
1267  | 17  |     if (outl != NULL) { | 
1268  | 17  |         *outl = 0;  | 
1269  | 17  |     } else { | 
1270  | 0  |         ERR_raise(ERR_LIB_EVP, ERR_R_PASSED_NULL_PARAMETER);  | 
1271  | 0  |         return 0;  | 
1272  | 0  |     }  | 
1273  |  |  | 
1274  |  |     /* Prevent accidental use of encryption context when decrypting */  | 
1275  | 17  |     if (ctx->encrypt) { | 
1276  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_OPERATION);  | 
1277  | 0  |         return 0;  | 
1278  | 0  |     }  | 
1279  |  |  | 
1280  | 17  |     if (ctx->cipher == NULL) { | 
1281  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NO_CIPHER_SET);  | 
1282  | 0  |         return 0;  | 
1283  | 0  |     }  | 
1284  |  |  | 
1285  | 17  |     if (ctx->cipher->prov == NULL)  | 
1286  | 0  |         goto legacy;  | 
1287  |  |  | 
1288  | 17  |     blocksize = EVP_CIPHER_CTX_get_block_size(ctx);  | 
1289  |  |  | 
1290  | 17  |     if (blocksize < 1 || ctx->cipher->cfinal == NULL) { | 
1291  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_FINAL_ERROR);  | 
1292  | 0  |         return 0;  | 
1293  | 0  |     }  | 
1294  |  |  | 
1295  | 17  |     ret = ctx->cipher->cfinal(ctx->algctx, out, &soutl,  | 
1296  | 17  |                               blocksize == 1 ? 0 : blocksize);  | 
1297  |  |  | 
1298  | 17  |     if (ret) { | 
1299  | 17  |         if (soutl > INT_MAX) { | 
1300  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_FINAL_ERROR);  | 
1301  | 0  |             return 0;  | 
1302  | 0  |         }  | 
1303  | 17  |         *outl = soutl;  | 
1304  | 17  |     }  | 
1305  |  |  | 
1306  | 17  |     return ret;  | 
1307  |  |  | 
1308  |  |     /* Code below to be removed when legacy support is dropped. */  | 
1309  | 0  |  legacy:  | 
1310  |  | 
  | 
1311  | 0  |     *outl = 0;  | 
1312  | 0  |     if (ctx->cipher->flags & EVP_CIPH_FLAG_CUSTOM_CIPHER) { | 
1313  | 0  |         i = ctx->cipher->do_cipher(ctx, out, NULL, 0);  | 
1314  | 0  |         if (i < 0)  | 
1315  | 0  |             return 0;  | 
1316  | 0  |         else  | 
1317  | 0  |             *outl = i;  | 
1318  | 0  |         return 1;  | 
1319  | 0  |     }  | 
1320  |  |  | 
1321  | 0  |     b = ctx->cipher->block_size;  | 
1322  | 0  |     if (ctx->flags & EVP_CIPH_NO_PADDING) { | 
1323  | 0  |         if (ctx->buf_len) { | 
1324  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_DATA_NOT_MULTIPLE_OF_BLOCK_LENGTH);  | 
1325  | 0  |             return 0;  | 
1326  | 0  |         }  | 
1327  | 0  |         *outl = 0;  | 
1328  | 0  |         return 1;  | 
1329  | 0  |     }  | 
1330  | 0  |     if (b > 1) { | 
1331  | 0  |         if (ctx->buf_len || !ctx->final_used) { | 
1332  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_WRONG_FINAL_BLOCK_LENGTH);  | 
1333  | 0  |             return 0;  | 
1334  | 0  |         }  | 
1335  | 0  |         OPENSSL_assert(b <= sizeof(ctx->final));  | 
1336  |  |  | 
1337  |  |         /*  | 
1338  |  |          * The following assumes that the ciphertext has been authenticated.  | 
1339  |  |          * Otherwise it provides a padding oracle.  | 
1340  |  |          */  | 
1341  | 0  |         n = ctx->final[b - 1];  | 
1342  | 0  |         if (n == 0 || n > (int)b) { | 
1343  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_BAD_DECRYPT);  | 
1344  | 0  |             return 0;  | 
1345  | 0  |         }  | 
1346  | 0  |         for (i = 0; i < n; i++) { | 
1347  | 0  |             if (ctx->final[--b] != n) { | 
1348  | 0  |                 ERR_raise(ERR_LIB_EVP, EVP_R_BAD_DECRYPT);  | 
1349  | 0  |                 return 0;  | 
1350  | 0  |             }  | 
1351  | 0  |         }  | 
1352  | 0  |         n = ctx->cipher->block_size - n;  | 
1353  | 0  |         for (i = 0; i < n; i++)  | 
1354  | 0  |             out[i] = ctx->final[i];  | 
1355  | 0  |         *outl = n;  | 
1356  | 0  |     }  | 
1357  | 0  |     return 1;  | 
1358  | 0  | }  | 
1359  |  |  | 
1360  |  | int EVP_CIPHER_CTX_set_key_length(EVP_CIPHER_CTX *c, int keylen)  | 
1361  | 0  | { | 
1362  | 0  |     if (c->cipher->prov != NULL) { | 
1363  | 0  |         int ok;  | 
1364  | 0  |         OSSL_PARAM params[2] = { OSSL_PARAM_END, OSSL_PARAM_END }; | 
1365  | 0  |         size_t len;  | 
1366  |  | 
  | 
1367  | 0  |         if (EVP_CIPHER_CTX_get_key_length(c) == keylen)  | 
1368  | 0  |             return 1;  | 
1369  |  |  | 
1370  |  |         /* Check the cipher actually understands this parameter */  | 
1371  | 0  |         if (OSSL_PARAM_locate_const(EVP_CIPHER_settable_ctx_params(c->cipher),  | 
1372  | 0  |                                     OSSL_CIPHER_PARAM_KEYLEN) == NULL) { | 
1373  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_KEY_LENGTH);  | 
1374  | 0  |             return 0;  | 
1375  | 0  |         }  | 
1376  |  |  | 
1377  | 0  |         params[0] = OSSL_PARAM_construct_size_t(OSSL_CIPHER_PARAM_KEYLEN, &len);  | 
1378  | 0  |         if (!OSSL_PARAM_set_int(params, keylen))  | 
1379  | 0  |             return 0;  | 
1380  | 0  |         ok = evp_do_ciph_ctx_setparams(c->cipher, c->algctx, params);  | 
1381  | 0  |         if (ok <= 0)  | 
1382  | 0  |             return 0;  | 
1383  | 0  |         c->key_len = keylen;  | 
1384  | 0  |         return 1;  | 
1385  | 0  |     }  | 
1386  |  |  | 
1387  |  |     /* Code below to be removed when legacy support is dropped. */  | 
1388  |  |  | 
1389  |  |     /*  | 
1390  |  |      * Note there have never been any built-in ciphers that define this flag  | 
1391  |  |      * since it was first introduced.  | 
1392  |  |      */  | 
1393  | 0  |     if (c->cipher->flags & EVP_CIPH_CUSTOM_KEY_LENGTH)  | 
1394  | 0  |         return EVP_CIPHER_CTX_ctrl(c, EVP_CTRL_SET_KEY_LENGTH, keylen, NULL);  | 
1395  | 0  |     if (EVP_CIPHER_CTX_get_key_length(c) == keylen)  | 
1396  | 0  |         return 1;  | 
1397  | 0  |     if ((keylen > 0) && (c->cipher->flags & EVP_CIPH_VARIABLE_LENGTH)) { | 
1398  | 0  |         c->key_len = keylen;  | 
1399  | 0  |         return 1;  | 
1400  | 0  |     }  | 
1401  | 0  |     ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_KEY_LENGTH);  | 
1402  | 0  |     return 0;  | 
1403  | 0  | }  | 
1404  |  |  | 
1405  |  | int EVP_CIPHER_CTX_set_padding(EVP_CIPHER_CTX *ctx, int pad)  | 
1406  | 75  | { | 
1407  | 75  |     int ok;  | 
1408  | 75  |     OSSL_PARAM params[2] = { OSSL_PARAM_END, OSSL_PARAM_END }; | 
1409  | 75  |     unsigned int pd = pad;  | 
1410  |  |  | 
1411  | 75  |     if (pad)  | 
1412  | 0  |         ctx->flags &= ~EVP_CIPH_NO_PADDING;  | 
1413  | 75  |     else  | 
1414  | 75  |         ctx->flags |= EVP_CIPH_NO_PADDING;  | 
1415  |  |  | 
1416  | 75  |     if (ctx->cipher != NULL && ctx->cipher->prov == NULL)  | 
1417  | 0  |         return 1;  | 
1418  | 75  |     params[0] = OSSL_PARAM_construct_uint(OSSL_CIPHER_PARAM_PADDING, &pd);  | 
1419  | 75  |     ok = evp_do_ciph_ctx_setparams(ctx->cipher, ctx->algctx, params);  | 
1420  |  |  | 
1421  | 75  |     return ok != 0;  | 
1422  | 75  | }  | 
1423  |  |  | 
1424  |  | int EVP_CIPHER_CTX_ctrl(EVP_CIPHER_CTX *ctx, int type, int arg, void *ptr)  | 
1425  | 0  | { | 
1426  | 0  |     int ret = EVP_CTRL_RET_UNSUPPORTED;  | 
1427  | 0  |     int set_params = 1;  | 
1428  | 0  |     size_t sz = arg;  | 
1429  | 0  |     unsigned int i;  | 
1430  | 0  |     OSSL_PARAM params[4] = { | 
1431  | 0  |         OSSL_PARAM_END, OSSL_PARAM_END, OSSL_PARAM_END, OSSL_PARAM_END  | 
1432  | 0  |     };  | 
1433  |  | 
  | 
1434  | 0  |     if (ctx == NULL || ctx->cipher == NULL) { | 
1435  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NO_CIPHER_SET);  | 
1436  | 0  |         return 0;  | 
1437  | 0  |     }  | 
1438  |  |  | 
1439  | 0  |     if (ctx->cipher->prov == NULL)  | 
1440  | 0  |         goto legacy;  | 
1441  |  |  | 
1442  | 0  |     switch (type) { | 
1443  | 0  |     case EVP_CTRL_SET_KEY_LENGTH:  | 
1444  | 0  |         if (arg < 0)  | 
1445  | 0  |             return 0;  | 
1446  | 0  |         if (ctx->key_len == arg)  | 
1447  |  |             /* Skip calling into provider if unchanged. */  | 
1448  | 0  |             return 1;  | 
1449  | 0  |         params[0] = OSSL_PARAM_construct_size_t(OSSL_CIPHER_PARAM_KEYLEN, &sz);  | 
1450  | 0  |         ctx->key_len = -1;  | 
1451  | 0  |         break;  | 
1452  | 0  |     case EVP_CTRL_RAND_KEY:      /* Used by DES */  | 
1453  | 0  |         set_params = 0;  | 
1454  | 0  |         params[0] =  | 
1455  | 0  |             OSSL_PARAM_construct_octet_string(OSSL_CIPHER_PARAM_RANDOM_KEY,  | 
1456  | 0  |                                               ptr, sz);  | 
1457  | 0  |         break;  | 
1458  |  |  | 
1459  | 0  |     case EVP_CTRL_INIT:  | 
1460  |  |         /*  | 
1461  |  |          * EVP_CTRL_INIT is purely legacy, no provider counterpart.  | 
1462  |  |          * As a matter of fact, this should be dead code, but some caller  | 
1463  |  |          * might still do a direct control call with this command, so...  | 
1464  |  |          * Legacy methods return 1 except for exceptional circumstances, so  | 
1465  |  |          * we do the same here to not be disruptive.  | 
1466  |  |          */  | 
1467  | 0  |         return 1;  | 
1468  | 0  |     case EVP_CTRL_SET_PIPELINE_OUTPUT_BUFS: /* Used by DASYNC */  | 
1469  | 0  |     default:  | 
1470  | 0  |         goto end;  | 
1471  | 0  |     case EVP_CTRL_AEAD_SET_IVLEN:  | 
1472  | 0  |         if (arg < 0)  | 
1473  | 0  |             return 0;  | 
1474  | 0  |         if (ctx->iv_len == arg)  | 
1475  |  |             /* Skip calling into provider if unchanged. */  | 
1476  | 0  |             return 1;  | 
1477  | 0  |         params[0] = OSSL_PARAM_construct_size_t(OSSL_CIPHER_PARAM_IVLEN, &sz);  | 
1478  | 0  |         ctx->iv_len = -1;  | 
1479  | 0  |         break;  | 
1480  | 0  |     case EVP_CTRL_CCM_SET_L:  | 
1481  | 0  |         if (arg < 2 || arg > 8)  | 
1482  | 0  |             return 0;  | 
1483  | 0  |         sz = 15 - arg;  | 
1484  | 0  |         params[0] = OSSL_PARAM_construct_size_t(OSSL_CIPHER_PARAM_IVLEN, &sz);  | 
1485  | 0  |         ctx->iv_len = -1;  | 
1486  | 0  |         break;  | 
1487  | 0  |     case EVP_CTRL_AEAD_SET_IV_FIXED:  | 
1488  | 0  |         params[0] = OSSL_PARAM_construct_octet_string(  | 
1489  | 0  |                         OSSL_CIPHER_PARAM_AEAD_TLS1_IV_FIXED, ptr, sz);  | 
1490  | 0  |         break;  | 
1491  | 0  |     case EVP_CTRL_GCM_IV_GEN:  | 
1492  | 0  |         set_params = 0;  | 
1493  | 0  |         if (arg < 0)  | 
1494  | 0  |             sz = 0; /* special case that uses the iv length */  | 
1495  | 0  |         params[0] = OSSL_PARAM_construct_octet_string(  | 
1496  | 0  |                         OSSL_CIPHER_PARAM_AEAD_TLS1_GET_IV_GEN, ptr, sz);  | 
1497  | 0  |         break;  | 
1498  | 0  |     case EVP_CTRL_GCM_SET_IV_INV:  | 
1499  | 0  |         if (arg < 0)  | 
1500  | 0  |             return 0;  | 
1501  | 0  |         params[0] = OSSL_PARAM_construct_octet_string(  | 
1502  | 0  |                         OSSL_CIPHER_PARAM_AEAD_TLS1_SET_IV_INV, ptr, sz);  | 
1503  | 0  |         break;  | 
1504  | 0  |     case EVP_CTRL_GET_RC5_ROUNDS:  | 
1505  | 0  |         set_params = 0; /* Fall thru */  | 
1506  | 0  |     case EVP_CTRL_SET_RC5_ROUNDS:  | 
1507  | 0  |         if (arg < 0)  | 
1508  | 0  |             return 0;  | 
1509  | 0  |         i = (unsigned int)arg;  | 
1510  | 0  |         params[0] = OSSL_PARAM_construct_uint(OSSL_CIPHER_PARAM_ROUNDS, &i);  | 
1511  | 0  |         break;  | 
1512  | 0  |     case EVP_CTRL_SET_SPEED:  | 
1513  | 0  |         if (arg < 0)  | 
1514  | 0  |             return 0;  | 
1515  | 0  |         i = (unsigned int)arg;  | 
1516  | 0  |         params[0] = OSSL_PARAM_construct_uint(OSSL_CIPHER_PARAM_SPEED, &i);  | 
1517  | 0  |         break;  | 
1518  | 0  |     case EVP_CTRL_AEAD_GET_TAG:  | 
1519  | 0  |         set_params = 0; /* Fall thru */  | 
1520  | 0  |     case EVP_CTRL_AEAD_SET_TAG:  | 
1521  | 0  |         params[0] = OSSL_PARAM_construct_octet_string(OSSL_CIPHER_PARAM_AEAD_TAG,  | 
1522  | 0  |                                                       ptr, sz);  | 
1523  | 0  |         break;  | 
1524  | 0  |     case EVP_CTRL_AEAD_TLS1_AAD:  | 
1525  |  |         /* This one does a set and a get - since it returns a size */  | 
1526  | 0  |         params[0] =  | 
1527  | 0  |             OSSL_PARAM_construct_octet_string(OSSL_CIPHER_PARAM_AEAD_TLS1_AAD,  | 
1528  | 0  |                                               ptr, sz);  | 
1529  | 0  |         ret = evp_do_ciph_ctx_setparams(ctx->cipher, ctx->algctx, params);  | 
1530  | 0  |         if (ret <= 0)  | 
1531  | 0  |             goto end;  | 
1532  | 0  |         params[0] =  | 
1533  | 0  |             OSSL_PARAM_construct_size_t(OSSL_CIPHER_PARAM_AEAD_TLS1_AAD_PAD, &sz);  | 
1534  | 0  |         ret = evp_do_ciph_ctx_getparams(ctx->cipher, ctx->algctx, params);  | 
1535  | 0  |         if (ret <= 0)  | 
1536  | 0  |             goto end;  | 
1537  | 0  |         return sz;  | 
1538  | 0  | #ifndef OPENSSL_NO_RC2  | 
1539  | 0  |     case EVP_CTRL_GET_RC2_KEY_BITS:  | 
1540  | 0  |         set_params = 0; /* Fall thru */  | 
1541  | 0  |     case EVP_CTRL_SET_RC2_KEY_BITS:  | 
1542  | 0  |         params[0] = OSSL_PARAM_construct_size_t(OSSL_CIPHER_PARAM_RC2_KEYBITS, &sz);  | 
1543  | 0  |         break;  | 
1544  | 0  | #endif /* OPENSSL_NO_RC2 */  | 
1545  | 0  | #if !defined(OPENSSL_NO_MULTIBLOCK)  | 
1546  | 0  |     case EVP_CTRL_TLS1_1_MULTIBLOCK_MAX_BUFSIZE:  | 
1547  | 0  |         params[0] = OSSL_PARAM_construct_size_t(  | 
1548  | 0  |                 OSSL_CIPHER_PARAM_TLS1_MULTIBLOCK_MAX_SEND_FRAGMENT, &sz);  | 
1549  | 0  |         ret = evp_do_ciph_ctx_setparams(ctx->cipher, ctx->algctx, params);  | 
1550  | 0  |         if (ret <= 0)  | 
1551  | 0  |             return 0;  | 
1552  |  |  | 
1553  | 0  |         params[0] = OSSL_PARAM_construct_size_t(  | 
1554  | 0  |                 OSSL_CIPHER_PARAM_TLS1_MULTIBLOCK_MAX_BUFSIZE, &sz);  | 
1555  | 0  |         params[1] = OSSL_PARAM_construct_end();  | 
1556  | 0  |         ret = evp_do_ciph_ctx_getparams(ctx->cipher, ctx->algctx, params);  | 
1557  | 0  |         if (ret <= 0)  | 
1558  | 0  |             return 0;  | 
1559  | 0  |         return sz;  | 
1560  | 0  |     case EVP_CTRL_TLS1_1_MULTIBLOCK_AAD: { | 
1561  | 0  |         EVP_CTRL_TLS1_1_MULTIBLOCK_PARAM *p =  | 
1562  | 0  |             (EVP_CTRL_TLS1_1_MULTIBLOCK_PARAM *)ptr;  | 
1563  |  | 
  | 
1564  | 0  |         if (arg < (int)sizeof(EVP_CTRL_TLS1_1_MULTIBLOCK_PARAM))  | 
1565  | 0  |             return 0;  | 
1566  |  |  | 
1567  | 0  |         params[0] = OSSL_PARAM_construct_octet_string(  | 
1568  | 0  |                 OSSL_CIPHER_PARAM_TLS1_MULTIBLOCK_AAD, (void*)p->inp, p->len);  | 
1569  | 0  |         params[1] = OSSL_PARAM_construct_uint(  | 
1570  | 0  |                 OSSL_CIPHER_PARAM_TLS1_MULTIBLOCK_INTERLEAVE, &p->interleave);  | 
1571  | 0  |         ret = evp_do_ciph_ctx_setparams(ctx->cipher, ctx->algctx, params);  | 
1572  | 0  |         if (ret <= 0)  | 
1573  | 0  |             return ret;  | 
1574  |  |         /* Retrieve the return values changed by the set */  | 
1575  | 0  |         params[0] = OSSL_PARAM_construct_size_t(  | 
1576  | 0  |                 OSSL_CIPHER_PARAM_TLS1_MULTIBLOCK_AAD_PACKLEN, &sz);  | 
1577  | 0  |         params[1] = OSSL_PARAM_construct_uint(  | 
1578  | 0  |                 OSSL_CIPHER_PARAM_TLS1_MULTIBLOCK_INTERLEAVE, &p->interleave);  | 
1579  | 0  |         params[2] = OSSL_PARAM_construct_end();  | 
1580  | 0  |         ret = evp_do_ciph_ctx_getparams(ctx->cipher, ctx->algctx, params);  | 
1581  | 0  |         if (ret <= 0)  | 
1582  | 0  |             return 0;  | 
1583  | 0  |         return sz;  | 
1584  | 0  |     }  | 
1585  | 0  |     case EVP_CTRL_TLS1_1_MULTIBLOCK_ENCRYPT: { | 
1586  | 0  |         EVP_CTRL_TLS1_1_MULTIBLOCK_PARAM *p =  | 
1587  | 0  |             (EVP_CTRL_TLS1_1_MULTIBLOCK_PARAM *)ptr;  | 
1588  |  | 
  | 
1589  | 0  |         params[0] = OSSL_PARAM_construct_octet_string(  | 
1590  | 0  |                         OSSL_CIPHER_PARAM_TLS1_MULTIBLOCK_ENC, p->out, p->len);  | 
1591  |  | 
  | 
1592  | 0  |         params[1] = OSSL_PARAM_construct_octet_string(  | 
1593  | 0  |                 OSSL_CIPHER_PARAM_TLS1_MULTIBLOCK_ENC_IN, (void*)p->inp,  | 
1594  | 0  |                 p->len);  | 
1595  | 0  |         params[2] = OSSL_PARAM_construct_uint(  | 
1596  | 0  |                 OSSL_CIPHER_PARAM_TLS1_MULTIBLOCK_INTERLEAVE, &p->interleave);  | 
1597  | 0  |         ret = evp_do_ciph_ctx_setparams(ctx->cipher, ctx->algctx, params);  | 
1598  | 0  |         if (ret <= 0)  | 
1599  | 0  |             return ret;  | 
1600  | 0  |         params[0] = OSSL_PARAM_construct_size_t(  | 
1601  | 0  |                         OSSL_CIPHER_PARAM_TLS1_MULTIBLOCK_ENC_LEN, &sz);  | 
1602  | 0  |         params[1] = OSSL_PARAM_construct_end();  | 
1603  | 0  |         ret = evp_do_ciph_ctx_getparams(ctx->cipher, ctx->algctx, params);  | 
1604  | 0  |         if (ret <= 0)  | 
1605  | 0  |             return 0;  | 
1606  | 0  |         return sz;  | 
1607  | 0  |     }  | 
1608  | 0  | #endif /* OPENSSL_NO_MULTIBLOCK */  | 
1609  | 0  |     case EVP_CTRL_AEAD_SET_MAC_KEY:  | 
1610  | 0  |         if (arg < 0)  | 
1611  | 0  |             return -1;  | 
1612  | 0  |         params[0] = OSSL_PARAM_construct_octet_string(  | 
1613  | 0  |                 OSSL_CIPHER_PARAM_AEAD_MAC_KEY, ptr, sz);  | 
1614  | 0  |         break;  | 
1615  | 0  |     }  | 
1616  |  |  | 
1617  | 0  |     if (set_params)  | 
1618  | 0  |         ret = evp_do_ciph_ctx_setparams(ctx->cipher, ctx->algctx, params);  | 
1619  | 0  |     else  | 
1620  | 0  |         ret = evp_do_ciph_ctx_getparams(ctx->cipher, ctx->algctx, params);  | 
1621  | 0  |     goto end;  | 
1622  |  |  | 
1623  |  |     /* Code below to be removed when legacy support is dropped. */  | 
1624  | 0  | legacy:  | 
1625  | 0  |     if (ctx->cipher->ctrl == NULL) { | 
1626  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_CTRL_NOT_IMPLEMENTED);  | 
1627  | 0  |         return 0;  | 
1628  | 0  |     }  | 
1629  |  |  | 
1630  | 0  |     ret = ctx->cipher->ctrl(ctx, type, arg, ptr);  | 
1631  |  | 
  | 
1632  | 0  |  end:  | 
1633  | 0  |     if (ret == EVP_CTRL_RET_UNSUPPORTED) { | 
1634  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_CTRL_OPERATION_NOT_IMPLEMENTED);  | 
1635  | 0  |         return 0;  | 
1636  | 0  |     }  | 
1637  | 0  |     return ret;  | 
1638  | 0  | }  | 
1639  |  |  | 
1640  |  | int EVP_CIPHER_get_params(EVP_CIPHER *cipher, OSSL_PARAM params[])  | 
1641  | 0  | { | 
1642  | 0  |     if (cipher != NULL && cipher->get_params != NULL)  | 
1643  | 0  |         return cipher->get_params(params);  | 
1644  | 0  |     return 0;  | 
1645  | 0  | }  | 
1646  |  |  | 
1647  |  | int EVP_CIPHER_CTX_set_params(EVP_CIPHER_CTX *ctx, const OSSL_PARAM params[])  | 
1648  | 0  | { | 
1649  | 0  |     int r = 0;  | 
1650  | 0  |     const OSSL_PARAM *p;  | 
1651  |  | 
  | 
1652  | 0  |     if (ctx->cipher != NULL && ctx->cipher->set_ctx_params != NULL) { | 
1653  | 0  |         r = ctx->cipher->set_ctx_params(ctx->algctx, params);  | 
1654  | 0  |         if (r > 0) { | 
1655  | 0  |             p = OSSL_PARAM_locate_const(params, OSSL_CIPHER_PARAM_KEYLEN);  | 
1656  | 0  |             if (p != NULL && !OSSL_PARAM_get_int(p, &ctx->key_len)) { | 
1657  | 0  |                 r = 0;  | 
1658  | 0  |                 ctx->key_len = -1;  | 
1659  | 0  |             }  | 
1660  | 0  |         }  | 
1661  | 0  |         if (r > 0) { | 
1662  | 0  |             p = OSSL_PARAM_locate_const(params, OSSL_CIPHER_PARAM_IVLEN);  | 
1663  | 0  |             if (p != NULL && !OSSL_PARAM_get_int(p, &ctx->iv_len)) { | 
1664  | 0  |                 r = 0;  | 
1665  | 0  |                 ctx->iv_len = -1;  | 
1666  | 0  |             }  | 
1667  | 0  |         }  | 
1668  | 0  |     }  | 
1669  | 0  |     return r;  | 
1670  | 0  | }  | 
1671  |  |  | 
1672  |  | int EVP_CIPHER_CTX_get_params(EVP_CIPHER_CTX *ctx, OSSL_PARAM params[])  | 
1673  | 0  | { | 
1674  | 0  |     if (ctx->cipher != NULL && ctx->cipher->get_ctx_params != NULL)  | 
1675  | 0  |         return ctx->cipher->get_ctx_params(ctx->algctx, params);  | 
1676  | 0  |     return 0;  | 
1677  | 0  | }  | 
1678  |  |  | 
1679  |  | const OSSL_PARAM *EVP_CIPHER_gettable_params(const EVP_CIPHER *cipher)  | 
1680  | 0  | { | 
1681  | 0  |     if (cipher != NULL && cipher->gettable_params != NULL)  | 
1682  | 0  |         return cipher->gettable_params(  | 
1683  | 0  |                    ossl_provider_ctx(EVP_CIPHER_get0_provider(cipher)));  | 
1684  | 0  |     return NULL;  | 
1685  | 0  | }  | 
1686  |  |  | 
1687  |  | const OSSL_PARAM *EVP_CIPHER_settable_ctx_params(const EVP_CIPHER *cipher)  | 
1688  | 0  | { | 
1689  | 0  |     void *provctx;  | 
1690  |  | 
  | 
1691  | 0  |     if (cipher != NULL && cipher->settable_ctx_params != NULL) { | 
1692  | 0  |         provctx = ossl_provider_ctx(EVP_CIPHER_get0_provider(cipher));  | 
1693  | 0  |         return cipher->settable_ctx_params(NULL, provctx);  | 
1694  | 0  |     }  | 
1695  | 0  |     return NULL;  | 
1696  | 0  | }  | 
1697  |  |  | 
1698  |  | const OSSL_PARAM *EVP_CIPHER_gettable_ctx_params(const EVP_CIPHER *cipher)  | 
1699  | 158  | { | 
1700  | 158  |     void *provctx;  | 
1701  |  |  | 
1702  | 158  |     if (cipher != NULL && cipher->gettable_ctx_params != NULL) { | 
1703  | 158  |         provctx = ossl_provider_ctx(EVP_CIPHER_get0_provider(cipher));  | 
1704  | 158  |         return cipher->gettable_ctx_params(NULL, provctx);  | 
1705  | 158  |     }  | 
1706  | 0  |     return NULL;  | 
1707  | 158  | }  | 
1708  |  |  | 
1709  |  | const OSSL_PARAM *EVP_CIPHER_CTX_settable_params(EVP_CIPHER_CTX *cctx)  | 
1710  | 0  | { | 
1711  | 0  |     void *alg;  | 
1712  |  | 
  | 
1713  | 0  |     if (cctx != NULL && cctx->cipher->settable_ctx_params != NULL) { | 
1714  | 0  |         alg = ossl_provider_ctx(EVP_CIPHER_get0_provider(cctx->cipher));  | 
1715  | 0  |         return cctx->cipher->settable_ctx_params(cctx->algctx, alg);  | 
1716  | 0  |     }  | 
1717  | 0  |     return NULL;  | 
1718  | 0  | }  | 
1719  |  |  | 
1720  |  | const OSSL_PARAM *EVP_CIPHER_CTX_gettable_params(EVP_CIPHER_CTX *cctx)  | 
1721  | 0  | { | 
1722  | 0  |     void *provctx;  | 
1723  |  | 
  | 
1724  | 0  |     if (cctx != NULL && cctx->cipher->gettable_ctx_params != NULL) { | 
1725  | 0  |         provctx = ossl_provider_ctx(EVP_CIPHER_get0_provider(cctx->cipher));  | 
1726  | 0  |         return cctx->cipher->gettable_ctx_params(cctx->algctx, provctx);  | 
1727  | 0  |     }  | 
1728  | 0  |     return NULL;  | 
1729  | 0  | }  | 
1730  |  |  | 
1731  |  | #ifndef FIPS_MODULE  | 
1732  |  | static OSSL_LIB_CTX *EVP_CIPHER_CTX_get_libctx(EVP_CIPHER_CTX *ctx)  | 
1733  | 0  | { | 
1734  | 0  |     const EVP_CIPHER *cipher = ctx->cipher;  | 
1735  | 0  |     const OSSL_PROVIDER *prov;  | 
1736  |  | 
  | 
1737  | 0  |     if (cipher == NULL)  | 
1738  | 0  |         return NULL;  | 
1739  |  |  | 
1740  | 0  |     prov = EVP_CIPHER_get0_provider(cipher);  | 
1741  | 0  |     return ossl_provider_libctx(prov);  | 
1742  | 0  | }  | 
1743  |  | #endif  | 
1744  |  |  | 
1745  |  | int EVP_CIPHER_CTX_rand_key(EVP_CIPHER_CTX *ctx, unsigned char *key)  | 
1746  | 0  | { | 
1747  | 0  |     if (ctx->cipher->flags & EVP_CIPH_RAND_KEY)  | 
1748  | 0  |         return EVP_CIPHER_CTX_ctrl(ctx, EVP_CTRL_RAND_KEY, 0, key);  | 
1749  |  |  | 
1750  |  | #ifdef FIPS_MODULE  | 
1751  |  |     return 0;  | 
1752  |  | #else  | 
1753  | 0  |     { | 
1754  | 0  |         int kl;  | 
1755  | 0  |         OSSL_LIB_CTX *libctx = EVP_CIPHER_CTX_get_libctx(ctx);  | 
1756  |  | 
  | 
1757  | 0  |         kl = EVP_CIPHER_CTX_get_key_length(ctx);  | 
1758  | 0  |         if (kl <= 0 || RAND_priv_bytes_ex(libctx, key, kl, 0) <= 0)  | 
1759  | 0  |             return 0;  | 
1760  | 0  |         return 1;  | 
1761  | 0  |     }  | 
1762  | 0  | #endif /* FIPS_MODULE */  | 
1763  | 0  | }  | 
1764  |  |  | 
1765  |  | EVP_CIPHER_CTX *EVP_CIPHER_CTX_dup(const EVP_CIPHER_CTX *in)  | 
1766  | 0  | { | 
1767  | 0  |     EVP_CIPHER_CTX *out = EVP_CIPHER_CTX_new();  | 
1768  |  | 
  | 
1769  | 0  |     if (out != NULL && !EVP_CIPHER_CTX_copy(out, in)) { | 
1770  | 0  |         EVP_CIPHER_CTX_free(out);  | 
1771  | 0  |         out = NULL;  | 
1772  | 0  |     }  | 
1773  | 0  |     return out;  | 
1774  | 0  | }  | 
1775  |  |  | 
1776  |  | int EVP_CIPHER_CTX_copy(EVP_CIPHER_CTX *out, const EVP_CIPHER_CTX *in)  | 
1777  | 0  | { | 
1778  | 0  |     if ((in == NULL) || (in->cipher == NULL)) { | 
1779  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INPUT_NOT_INITIALIZED);  | 
1780  | 0  |         return 0;  | 
1781  | 0  |     }  | 
1782  |  |  | 
1783  | 0  |     if (in->cipher->prov == NULL)  | 
1784  | 0  |         goto legacy;  | 
1785  |  |  | 
1786  | 0  |     if (in->cipher->dupctx == NULL) { | 
1787  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NOT_ABLE_TO_COPY_CTX);  | 
1788  | 0  |         return 0;  | 
1789  | 0  |     }  | 
1790  |  |  | 
1791  | 0  |     EVP_CIPHER_CTX_reset(out);  | 
1792  |  | 
  | 
1793  | 0  |     *out = *in;  | 
1794  | 0  |     out->algctx = NULL;  | 
1795  |  | 
  | 
1796  | 0  |     if (in->fetched_cipher != NULL && !EVP_CIPHER_up_ref(in->fetched_cipher)) { | 
1797  | 0  |         out->fetched_cipher = NULL;  | 
1798  | 0  |         return 0;  | 
1799  | 0  |     }  | 
1800  |  |  | 
1801  | 0  |     out->algctx = in->cipher->dupctx(in->algctx);  | 
1802  | 0  |     if (out->algctx == NULL) { | 
1803  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_NOT_ABLE_TO_COPY_CTX);  | 
1804  | 0  |         return 0;  | 
1805  | 0  |     }  | 
1806  |  |  | 
1807  | 0  |     return 1;  | 
1808  |  |  | 
1809  |  |     /* Code below to be removed when legacy support is dropped. */  | 
1810  | 0  |  legacy:  | 
1811  |  | 
  | 
1812  | 0  | #if !defined(OPENSSL_NO_ENGINE) && !defined(FIPS_MODULE)  | 
1813  |  |     /* Make sure it's safe to copy a cipher context using an ENGINE */  | 
1814  | 0  |     if (in->engine && !ENGINE_init(in->engine)) { | 
1815  | 0  |         ERR_raise(ERR_LIB_EVP, ERR_R_ENGINE_LIB);  | 
1816  | 0  |         return 0;  | 
1817  | 0  |     }  | 
1818  | 0  | #endif  | 
1819  |  |  | 
1820  | 0  |     EVP_CIPHER_CTX_reset(out);  | 
1821  | 0  |     memcpy(out, in, sizeof(*out));  | 
1822  |  | 
  | 
1823  | 0  |     if (in->cipher_data && in->cipher->ctx_size) { | 
1824  | 0  |         out->cipher_data = OPENSSL_malloc(in->cipher->ctx_size);  | 
1825  | 0  |         if (out->cipher_data == NULL) { | 
1826  | 0  |             out->cipher = NULL;  | 
1827  | 0  |             return 0;  | 
1828  | 0  |         }  | 
1829  | 0  |         memcpy(out->cipher_data, in->cipher_data, in->cipher->ctx_size);  | 
1830  | 0  |     }  | 
1831  |  |  | 
1832  | 0  |     if (in->cipher->flags & EVP_CIPH_CUSTOM_COPY)  | 
1833  | 0  |         if (!in->cipher->ctrl((EVP_CIPHER_CTX *)in, EVP_CTRL_COPY, 0, out)) { | 
1834  | 0  |             out->cipher = NULL;  | 
1835  | 0  |             ERR_raise(ERR_LIB_EVP, EVP_R_INITIALIZATION_ERROR);  | 
1836  | 0  |             return 0;  | 
1837  | 0  |         }  | 
1838  | 0  |     return 1;  | 
1839  | 0  | }  | 
1840  |  |  | 
1841  |  | EVP_CIPHER *evp_cipher_new(void)  | 
1842  | 158  | { | 
1843  | 158  |     EVP_CIPHER *cipher = OPENSSL_zalloc(sizeof(EVP_CIPHER));  | 
1844  |  |  | 
1845  | 158  |     if (cipher != NULL && !CRYPTO_NEW_REF(&cipher->refcnt, 1)) { | 
1846  | 0  |         OPENSSL_free(cipher);  | 
1847  | 0  |         return NULL;  | 
1848  | 0  |     }  | 
1849  | 158  |     return cipher;  | 
1850  | 158  | }  | 
1851  |  |  | 
1852  |  | /*  | 
1853  |  |  * FIPS module note: since internal fetches will be entirely  | 
1854  |  |  * provider based, we know that none of its code depends on legacy  | 
1855  |  |  * NIDs or any functionality that use them.  | 
1856  |  |  */  | 
1857  |  | #ifndef FIPS_MODULE  | 
1858  |  | /* After removal of legacy support get rid of the need for legacy NIDs */  | 
1859  |  | static void set_legacy_nid(const char *name, void *vlegacy_nid)  | 
1860  | 300  | { | 
1861  | 300  |     int nid;  | 
1862  | 300  |     int *legacy_nid = vlegacy_nid;  | 
1863  |  |     /*  | 
1864  |  |      * We use lowest level function to get the associated method, because  | 
1865  |  |      * higher level functions such as EVP_get_cipherbyname() have changed  | 
1866  |  |      * to look at providers too.  | 
1867  |  |      */  | 
1868  | 300  |     const void *legacy_method = OBJ_NAME_get(name, OBJ_NAME_TYPE_CIPHER_METH);  | 
1869  |  |  | 
1870  | 300  |     if (*legacy_nid == -1)       /* We found a clash already */  | 
1871  | 0  |         return;  | 
1872  | 300  |     if (legacy_method == NULL)  | 
1873  | 126  |         return;  | 
1874  | 174  |     nid = EVP_CIPHER_get_nid(legacy_method);  | 
1875  | 174  |     if (*legacy_nid != NID_undef && *legacy_nid != nid) { | 
1876  | 0  |         *legacy_nid = -1;  | 
1877  | 0  |         return;  | 
1878  | 0  |     }  | 
1879  | 174  |     *legacy_nid = nid;  | 
1880  | 174  | }  | 
1881  |  | #endif  | 
1882  |  |  | 
1883  |  | static void *evp_cipher_from_algorithm(const int name_id,  | 
1884  |  |                                        const OSSL_ALGORITHM *algodef,  | 
1885  |  |                                        OSSL_PROVIDER *prov)  | 
1886  | 158  | { | 
1887  | 158  |     const OSSL_DISPATCH *fns = algodef->implementation;  | 
1888  | 158  |     EVP_CIPHER *cipher = NULL;  | 
1889  | 158  |     int fnciphcnt = 0, encinit = 0, decinit = 0, fnpipecnt = 0, fnctxcnt = 0;  | 
1890  |  |  | 
1891  | 158  |     if ((cipher = evp_cipher_new()) == NULL) { | 
1892  | 0  |         ERR_raise(ERR_LIB_EVP, ERR_R_EVP_LIB);  | 
1893  | 0  |         return NULL;  | 
1894  | 0  |     }  | 
1895  |  |  | 
1896  | 158  | #ifndef FIPS_MODULE  | 
1897  | 158  |     cipher->nid = NID_undef;  | 
1898  | 158  |     if (!evp_names_do_all(prov, name_id, set_legacy_nid, &cipher->nid)  | 
1899  | 158  |             || cipher->nid == -1) { | 
1900  | 0  |         ERR_raise(ERR_LIB_EVP, ERR_R_INTERNAL_ERROR);  | 
1901  | 0  |         goto err;  | 
1902  | 0  |     }  | 
1903  | 158  | #endif  | 
1904  |  |  | 
1905  | 158  |     cipher->name_id = name_id;  | 
1906  | 158  |     if ((cipher->type_name = ossl_algorithm_get1_first_name(algodef)) == NULL)  | 
1907  | 0  |         goto err;  | 
1908  |  |  | 
1909  | 158  |     cipher->description = algodef->algorithm_description;  | 
1910  |  |  | 
1911  | 2.52k  |     for (; fns->function_id != 0; fns++) { | 
1912  | 2.36k  |         switch (fns->function_id) { | 
1913  | 158  |         case OSSL_FUNC_CIPHER_NEWCTX:  | 
1914  | 158  |             if (cipher->newctx != NULL)  | 
1915  | 0  |                 break;  | 
1916  | 158  |             cipher->newctx = OSSL_FUNC_cipher_newctx(fns);  | 
1917  | 158  |             fnctxcnt++;  | 
1918  | 158  |             break;  | 
1919  | 158  |         case OSSL_FUNC_CIPHER_ENCRYPT_INIT:  | 
1920  | 158  |             if (cipher->einit != NULL)  | 
1921  | 0  |                 break;  | 
1922  | 158  |             cipher->einit = OSSL_FUNC_cipher_encrypt_init(fns);  | 
1923  | 158  |             encinit = 1;  | 
1924  | 158  |             break;  | 
1925  | 158  |         case OSSL_FUNC_CIPHER_DECRYPT_INIT:  | 
1926  | 158  |             if (cipher->dinit != NULL)  | 
1927  | 0  |                 break;  | 
1928  | 158  |             cipher->dinit = OSSL_FUNC_cipher_decrypt_init(fns);  | 
1929  | 158  |             decinit = 1;  | 
1930  | 158  |             break;  | 
1931  | 84  |         case OSSL_FUNC_CIPHER_ENCRYPT_SKEY_INIT:  | 
1932  | 84  |             if (cipher->einit_skey != NULL)  | 
1933  | 0  |                 break;  | 
1934  | 84  |             cipher->einit_skey = OSSL_FUNC_cipher_encrypt_skey_init(fns);  | 
1935  | 84  |             encinit = 1;  | 
1936  | 84  |             break;  | 
1937  | 84  |         case OSSL_FUNC_CIPHER_DECRYPT_SKEY_INIT:  | 
1938  | 84  |             if (cipher->dinit_skey != NULL)  | 
1939  | 0  |                 break;  | 
1940  | 84  |             cipher->dinit_skey = OSSL_FUNC_cipher_decrypt_skey_init(fns);  | 
1941  | 84  |             decinit = 1;  | 
1942  | 84  |             break;  | 
1943  | 158  |         case OSSL_FUNC_CIPHER_UPDATE:  | 
1944  | 158  |             if (cipher->cupdate != NULL)  | 
1945  | 0  |                 break;  | 
1946  | 158  |             cipher->cupdate = OSSL_FUNC_cipher_update(fns);  | 
1947  | 158  |             fnciphcnt++;  | 
1948  | 158  |             break;  | 
1949  | 158  |         case OSSL_FUNC_CIPHER_FINAL:  | 
1950  | 158  |             if (cipher->cfinal != NULL)  | 
1951  | 0  |                 break;  | 
1952  | 158  |             cipher->cfinal = OSSL_FUNC_cipher_final(fns);  | 
1953  | 158  |             fnciphcnt++;  | 
1954  | 158  |             break;  | 
1955  | 146  |         case OSSL_FUNC_CIPHER_CIPHER:  | 
1956  | 146  |             if (cipher->ccipher != NULL)  | 
1957  | 0  |                 break;  | 
1958  | 146  |             cipher->ccipher = OSSL_FUNC_cipher_cipher(fns);  | 
1959  | 146  |             break;  | 
1960  | 0  |         case OSSL_FUNC_CIPHER_PIPELINE_ENCRYPT_INIT:  | 
1961  | 0  |             if (cipher->p_einit != NULL)  | 
1962  | 0  |                 break;  | 
1963  | 0  |             cipher->p_einit = OSSL_FUNC_cipher_pipeline_encrypt_init(fns);  | 
1964  | 0  |             fnpipecnt++;  | 
1965  | 0  |             break;  | 
1966  | 0  |         case OSSL_FUNC_CIPHER_PIPELINE_DECRYPT_INIT:  | 
1967  | 0  |             if (cipher->p_dinit != NULL)  | 
1968  | 0  |                 break;  | 
1969  | 0  |             cipher->p_dinit = OSSL_FUNC_cipher_pipeline_decrypt_init(fns);  | 
1970  | 0  |             fnpipecnt++;  | 
1971  | 0  |             break;  | 
1972  | 0  |         case OSSL_FUNC_CIPHER_PIPELINE_UPDATE:  | 
1973  | 0  |             if (cipher->p_cupdate != NULL)  | 
1974  | 0  |                 break;  | 
1975  | 0  |             cipher->p_cupdate = OSSL_FUNC_cipher_pipeline_update(fns);  | 
1976  | 0  |             fnpipecnt++;  | 
1977  | 0  |             break;  | 
1978  | 0  |         case OSSL_FUNC_CIPHER_PIPELINE_FINAL:  | 
1979  | 0  |             if (cipher->p_cfinal != NULL)  | 
1980  | 0  |                 break;  | 
1981  | 0  |             cipher->p_cfinal = OSSL_FUNC_cipher_pipeline_final(fns);  | 
1982  | 0  |             fnpipecnt++;  | 
1983  | 0  |             break;  | 
1984  | 158  |         case OSSL_FUNC_CIPHER_FREECTX:  | 
1985  | 158  |             if (cipher->freectx != NULL)  | 
1986  | 0  |                 break;  | 
1987  | 158  |             cipher->freectx = OSSL_FUNC_cipher_freectx(fns);  | 
1988  | 158  |             fnctxcnt++;  | 
1989  | 158  |             break;  | 
1990  | 157  |         case OSSL_FUNC_CIPHER_DUPCTX:  | 
1991  | 157  |             if (cipher->dupctx != NULL)  | 
1992  | 0  |                 break;  | 
1993  | 157  |             cipher->dupctx = OSSL_FUNC_cipher_dupctx(fns);  | 
1994  | 157  |             break;  | 
1995  | 158  |         case OSSL_FUNC_CIPHER_GET_PARAMS:  | 
1996  | 158  |             if (cipher->get_params != NULL)  | 
1997  | 0  |                 break;  | 
1998  | 158  |             cipher->get_params = OSSL_FUNC_cipher_get_params(fns);  | 
1999  | 158  |             break;  | 
2000  | 158  |         case OSSL_FUNC_CIPHER_GET_CTX_PARAMS:  | 
2001  | 158  |             if (cipher->get_ctx_params != NULL)  | 
2002  | 0  |                 break;  | 
2003  | 158  |             cipher->get_ctx_params = OSSL_FUNC_cipher_get_ctx_params(fns);  | 
2004  | 158  |             break;  | 
2005  | 158  |         case OSSL_FUNC_CIPHER_SET_CTX_PARAMS:  | 
2006  | 158  |             if (cipher->set_ctx_params != NULL)  | 
2007  | 0  |                 break;  | 
2008  | 158  |             cipher->set_ctx_params = OSSL_FUNC_cipher_set_ctx_params(fns);  | 
2009  | 158  |             break;  | 
2010  | 158  |         case OSSL_FUNC_CIPHER_GETTABLE_PARAMS:  | 
2011  | 158  |             if (cipher->gettable_params != NULL)  | 
2012  | 0  |                 break;  | 
2013  | 158  |             cipher->gettable_params = OSSL_FUNC_cipher_gettable_params(fns);  | 
2014  | 158  |             break;  | 
2015  | 158  |         case OSSL_FUNC_CIPHER_GETTABLE_CTX_PARAMS:  | 
2016  | 158  |             if (cipher->gettable_ctx_params != NULL)  | 
2017  | 0  |                 break;  | 
2018  | 158  |             cipher->gettable_ctx_params =  | 
2019  | 158  |                 OSSL_FUNC_cipher_gettable_ctx_params(fns);  | 
2020  | 158  |             break;  | 
2021  | 158  |         case OSSL_FUNC_CIPHER_SETTABLE_CTX_PARAMS:  | 
2022  | 158  |             if (cipher->settable_ctx_params != NULL)  | 
2023  | 0  |                 break;  | 
2024  | 158  |             cipher->settable_ctx_params =  | 
2025  | 158  |                 OSSL_FUNC_cipher_settable_ctx_params(fns);  | 
2026  | 158  |             break;  | 
2027  | 2.36k  |         }  | 
2028  | 2.36k  |     }  | 
2029  | 158  |     fnciphcnt += encinit + decinit;  | 
2030  | 158  |     if ((fnciphcnt != 0 && fnciphcnt != 3 && fnciphcnt != 4)  | 
2031  | 158  |             || (fnciphcnt == 0 && cipher->ccipher == NULL && fnpipecnt == 0)  | 
2032  | 158  |             || (fnpipecnt != 0 && (fnpipecnt < 3 || cipher->p_cupdate == NULL  | 
2033  | 0  |                                    || cipher->p_cfinal == NULL))  | 
2034  | 158  |             || fnctxcnt != 2) { | 
2035  |  |         /*  | 
2036  |  |          * In order to be a consistent set of functions we must have at least  | 
2037  |  |          * a complete set of "encrypt" functions, or a complete set of "decrypt"  | 
2038  |  |          * functions, or a single "cipher" function. In all cases we need both  | 
2039  |  |          * the "newctx" and "freectx" functions.  | 
2040  |  |          */  | 
2041  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_INVALID_PROVIDER_FUNCTIONS);  | 
2042  | 0  |         goto err;  | 
2043  | 0  |     }  | 
2044  | 158  |     if (prov != NULL && !ossl_provider_up_ref(prov))  | 
2045  | 0  |         goto err;  | 
2046  |  |  | 
2047  | 158  |     cipher->prov = prov;  | 
2048  |  |  | 
2049  | 158  |     if (!evp_cipher_cache_constants(cipher)) { | 
2050  | 0  |         ERR_raise(ERR_LIB_EVP, EVP_R_CACHE_CONSTANTS_FAILED);  | 
2051  | 0  |         goto err;  | 
2052  | 0  |     }  | 
2053  |  |  | 
2054  | 158  |     return cipher;  | 
2055  |  |  | 
2056  | 0  | err:  | 
2057  | 0  |     EVP_CIPHER_free(cipher);  | 
2058  | 0  |     return NULL;  | 
2059  | 158  | }  | 
2060  |  |  | 
2061  |  | static int evp_cipher_up_ref(void *cipher)  | 
2062  | 188  | { | 
2063  | 188  |     return EVP_CIPHER_up_ref(cipher);  | 
2064  | 188  | }  | 
2065  |  |  | 
2066  |  | static void evp_cipher_free(void *cipher)  | 
2067  | 158  | { | 
2068  | 158  |     EVP_CIPHER_free(cipher);  | 
2069  | 158  | }  | 
2070  |  |  | 
2071  |  | EVP_CIPHER *EVP_CIPHER_fetch(OSSL_LIB_CTX *ctx, const char *algorithm,  | 
2072  |  |                              const char *properties)  | 
2073  | 29  | { | 
2074  | 29  |     EVP_CIPHER *cipher =  | 
2075  | 29  |         evp_generic_fetch(ctx, OSSL_OP_CIPHER, algorithm, properties,  | 
2076  | 29  |                           evp_cipher_from_algorithm, evp_cipher_up_ref,  | 
2077  | 29  |                           evp_cipher_free);  | 
2078  |  |  | 
2079  | 29  |     return cipher;  | 
2080  | 29  | }  | 
2081  |  |  | 
2082  |  | EVP_CIPHER *evp_cipher_fetch_from_prov(OSSL_PROVIDER *prov,  | 
2083  |  |                                        const char *algorithm,  | 
2084  |  |                                        const char *properties)  | 
2085  | 0  | { | 
2086  | 0  |     return evp_generic_fetch_from_prov(prov, OSSL_OP_CIPHER,  | 
2087  | 0  |                                        algorithm, properties,  | 
2088  | 0  |                                        evp_cipher_from_algorithm,  | 
2089  | 0  |                                        evp_cipher_up_ref,  | 
2090  | 0  |                                        evp_cipher_free);  | 
2091  | 0  | }  | 
2092  |  |  | 
2093  |  | int EVP_CIPHER_can_pipeline(const EVP_CIPHER *cipher, int enc)  | 
2094  | 0  | { | 
2095  | 0  |     if (((enc && cipher->p_einit != NULL) || (!enc && cipher->p_dinit != NULL))  | 
2096  | 0  |         && cipher->p_cupdate != NULL && cipher->p_cfinal != NULL)  | 
2097  | 0  |         return 1;  | 
2098  |  |  | 
2099  | 0  |     return 0;  | 
2100  | 0  | }  | 
2101  |  |  | 
2102  |  | int EVP_CIPHER_up_ref(EVP_CIPHER *cipher)  | 
2103  | 246  | { | 
2104  | 246  |     int ref = 0;  | 
2105  |  |  | 
2106  | 246  |     if (cipher->origin == EVP_ORIG_DYNAMIC)  | 
2107  | 246  |         CRYPTO_UP_REF(&cipher->refcnt, &ref);  | 
2108  | 246  |     return 1;  | 
2109  | 246  | }  | 
2110  |  |  | 
2111  |  | void evp_cipher_free_int(EVP_CIPHER *cipher)  | 
2112  | 0  | { | 
2113  | 0  |     OPENSSL_free(cipher->type_name);  | 
2114  | 0  |     ossl_provider_free(cipher->prov);  | 
2115  | 0  |     CRYPTO_FREE_REF(&cipher->refcnt);  | 
2116  | 0  |     OPENSSL_free(cipher);  | 
2117  | 0  | }  | 
2118  |  |  | 
2119  |  | void EVP_CIPHER_free(EVP_CIPHER *cipher)  | 
2120  | 303  | { | 
2121  | 303  |     int i;  | 
2122  |  |  | 
2123  | 303  |     if (cipher == NULL || cipher->origin != EVP_ORIG_DYNAMIC)  | 
2124  | 58  |         return;  | 
2125  |  |  | 
2126  | 245  |     CRYPTO_DOWN_REF(&cipher->refcnt, &i);  | 
2127  | 245  |     if (i > 0)  | 
2128  | 245  |         return;  | 
2129  | 0  |     evp_cipher_free_int(cipher);  | 
2130  | 0  | }  | 
2131  |  |  | 
2132  |  | void EVP_CIPHER_do_all_provided(OSSL_LIB_CTX *libctx,  | 
2133  |  |                                 void (*fn)(EVP_CIPHER *mac, void *arg),  | 
2134  |  |                                 void *arg)  | 
2135  | 0  | { | 
2136  | 0  |     evp_generic_do_all(libctx, OSSL_OP_CIPHER,  | 
2137  | 0  |                        (void (*)(void *, void *))fn, arg,  | 
2138  | 0  |                        evp_cipher_from_algorithm, evp_cipher_up_ref,  | 
2139  | 0  |                        evp_cipher_free);  | 
2140  | 0  | }  |