/src/openssl/crypto/sm2/sm2_crypt.c
Line  | Count  | Source (jump to first uncovered line)  | 
1  |  | /*  | 
2  |  |  * Copyright 2017-2024 The OpenSSL Project Authors. All Rights Reserved.  | 
3  |  |  * Copyright 2017 Ribose Inc. All Rights Reserved.  | 
4  |  |  * Ported from Ribose contributions from Botan.  | 
5  |  |  *  | 
6  |  |  * Licensed under the Apache License 2.0 (the "License").  You may not use  | 
7  |  |  * this file except in compliance with the License.  You can obtain a copy  | 
8  |  |  * in the file LICENSE in the source distribution or at  | 
9  |  |  * https://www.openssl.org/source/license.html  | 
10  |  |  */  | 
11  |  |  | 
12  |  | /*  | 
13  |  |  * ECDSA low level APIs are deprecated for public use, but still ok for  | 
14  |  |  * internal use.  | 
15  |  |  */  | 
16  |  | #include "internal/deprecated.h"  | 
17  |  |  | 
18  |  | #include "crypto/sm2.h"  | 
19  |  | #include "crypto/sm2err.h"  | 
20  |  | #include "crypto/ec.h" /* ossl_ecdh_kdf_X9_63() */  | 
21  |  | #include <openssl/err.h>  | 
22  |  | #include <openssl/evp.h>  | 
23  |  | #include <openssl/bn.h>  | 
24  |  | #include <openssl/asn1.h>  | 
25  |  | #include <openssl/asn1t.h>  | 
26  |  | #include <string.h>  | 
27  |  |  | 
28  |  | typedef struct SM2_Ciphertext_st SM2_Ciphertext;  | 
29  |  | DECLARE_ASN1_FUNCTIONS(SM2_Ciphertext)  | 
30  |  |  | 
31  |  | struct SM2_Ciphertext_st { | 
32  |  |     BIGNUM *C1x;  | 
33  |  |     BIGNUM *C1y;  | 
34  |  |     ASN1_OCTET_STRING *C3;  | 
35  |  |     ASN1_OCTET_STRING *C2;  | 
36  |  | };  | 
37  |  |  | 
38  |  | ASN1_SEQUENCE(SM2_Ciphertext) = { | 
39  |  |     ASN1_SIMPLE(SM2_Ciphertext, C1x, BIGNUM),  | 
40  |  |     ASN1_SIMPLE(SM2_Ciphertext, C1y, BIGNUM),  | 
41  |  |     ASN1_SIMPLE(SM2_Ciphertext, C3, ASN1_OCTET_STRING),  | 
42  |  |     ASN1_SIMPLE(SM2_Ciphertext, C2, ASN1_OCTET_STRING),  | 
43  |  | } ASN1_SEQUENCE_END(SM2_Ciphertext)  | 
44  |  |  | 
45  |  | IMPLEMENT_ASN1_FUNCTIONS(SM2_Ciphertext)  | 
46  |  |  | 
47  |  | static size_t ec_field_size(const EC_GROUP *group)  | 
48  | 0  | { | 
49  | 0  |     const BIGNUM *p = EC_GROUP_get0_field(group);  | 
50  |  | 
  | 
51  | 0  |     if (p == NULL)  | 
52  | 0  |         return 0;  | 
53  |  |  | 
54  | 0  |     return BN_num_bytes(p);  | 
55  | 0  | }  | 
56  |  |  | 
57  |  | static int is_all_zeros(const unsigned char *msg, size_t msglen)  | 
58  | 0  | { | 
59  | 0  |     unsigned char re = 0;  | 
60  | 0  |     size_t i;  | 
61  |  | 
  | 
62  | 0  |     for (i = 0; i < msglen; i++) { | 
63  | 0  |         re |= msg[i];  | 
64  | 0  |     }  | 
65  |  | 
  | 
66  | 0  |     return re == 0 ? 1 : 0;  | 
67  | 0  | }  | 
68  |  |  | 
69  |  | int ossl_sm2_plaintext_size(const unsigned char *ct, size_t ct_size,  | 
70  |  |                             size_t *pt_size)  | 
71  | 0  | { | 
72  | 0  |     struct SM2_Ciphertext_st *sm2_ctext = NULL;  | 
73  |  | 
  | 
74  | 0  |     sm2_ctext = d2i_SM2_Ciphertext(NULL, &ct, ct_size);  | 
75  |  | 
  | 
76  | 0  |     if (sm2_ctext == NULL) { | 
77  | 0  |         ERR_raise(ERR_LIB_SM2, SM2_R_INVALID_ENCODING);  | 
78  | 0  |         return 0;  | 
79  | 0  |     }  | 
80  |  |  | 
81  | 0  |     *pt_size = sm2_ctext->C2->length;  | 
82  | 0  |     SM2_Ciphertext_free(sm2_ctext);  | 
83  |  | 
  | 
84  | 0  |     return 1;  | 
85  | 0  | }  | 
86  |  |  | 
87  |  | int ossl_sm2_ciphertext_size(const EC_KEY *key, const EVP_MD *digest,  | 
88  |  |                              size_t msg_len, size_t *ct_size)  | 
89  | 0  | { | 
90  | 0  |     const size_t field_size = ec_field_size(EC_KEY_get0_group(key));  | 
91  | 0  |     const int md_size = EVP_MD_get_size(digest);  | 
92  | 0  |     size_t sz;  | 
93  |  | 
  | 
94  | 0  |     if (field_size == 0 || md_size <= 0)  | 
95  | 0  |         return 0;  | 
96  |  |  | 
97  |  |     /* Integer and string are simple type; set constructed = 0, means primitive and definite length encoding. */  | 
98  | 0  |     sz = 2 * ASN1_object_size(0, field_size + 1, V_ASN1_INTEGER)  | 
99  | 0  |          + ASN1_object_size(0, md_size, V_ASN1_OCTET_STRING)  | 
100  | 0  |          + ASN1_object_size(0, msg_len, V_ASN1_OCTET_STRING);  | 
101  |  |     /* Sequence is structured type; set constructed = 1, means constructed and definite length encoding. */  | 
102  | 0  |     *ct_size = ASN1_object_size(1, sz, V_ASN1_SEQUENCE);  | 
103  |  | 
  | 
104  | 0  |     return 1;  | 
105  | 0  | }  | 
106  |  |  | 
107  |  | int ossl_sm2_encrypt(const EC_KEY *key,  | 
108  |  |                      const EVP_MD *digest,  | 
109  |  |                      const uint8_t *msg, size_t msg_len,  | 
110  |  |                      uint8_t *ciphertext_buf, size_t *ciphertext_len)  | 
111  | 0  | { | 
112  | 0  |     int rc = 0, ciphertext_leni;  | 
113  | 0  |     size_t i;  | 
114  | 0  |     BN_CTX *ctx = NULL;  | 
115  | 0  |     BIGNUM *k = NULL;  | 
116  | 0  |     BIGNUM *x1 = NULL;  | 
117  | 0  |     BIGNUM *y1 = NULL;  | 
118  | 0  |     BIGNUM *x2 = NULL;  | 
119  | 0  |     BIGNUM *y2 = NULL;  | 
120  | 0  |     EVP_MD_CTX *hash = EVP_MD_CTX_new();  | 
121  | 0  |     struct SM2_Ciphertext_st ctext_struct;  | 
122  | 0  |     const EC_GROUP *group = EC_KEY_get0_group(key);  | 
123  | 0  |     const BIGNUM *order = EC_GROUP_get0_order(group);  | 
124  | 0  |     const EC_POINT *P = EC_KEY_get0_public_key(key);  | 
125  | 0  |     EC_POINT *kG = NULL;  | 
126  | 0  |     EC_POINT *kP = NULL;  | 
127  | 0  |     uint8_t *msg_mask = NULL;  | 
128  | 0  |     uint8_t *x2y2 = NULL;  | 
129  | 0  |     uint8_t *C3 = NULL;  | 
130  | 0  |     size_t field_size;  | 
131  | 0  |     const int C3_size = EVP_MD_get_size(digest);  | 
132  | 0  |     EVP_MD *fetched_digest = NULL;  | 
133  | 0  |     OSSL_LIB_CTX *libctx = ossl_ec_key_get_libctx(key);  | 
134  | 0  |     const char *propq = ossl_ec_key_get0_propq(key);  | 
135  |  |  | 
136  |  |     /* NULL these before any "goto done" */  | 
137  | 0  |     ctext_struct.C2 = NULL;  | 
138  | 0  |     ctext_struct.C3 = NULL;  | 
139  |  | 
  | 
140  | 0  |     if (hash == NULL || C3_size <= 0) { | 
141  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_INTERNAL_ERROR);  | 
142  | 0  |         goto done;  | 
143  | 0  |     }  | 
144  |  |  | 
145  | 0  |     field_size = ec_field_size(group);  | 
146  | 0  |     if (field_size == 0) { | 
147  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_INTERNAL_ERROR);  | 
148  | 0  |         goto done;  | 
149  | 0  |     }  | 
150  |  |  | 
151  | 0  |     kG = EC_POINT_new(group);  | 
152  | 0  |     kP = EC_POINT_new(group);  | 
153  | 0  |     if (kG == NULL || kP == NULL) { | 
154  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_EC_LIB);  | 
155  | 0  |         goto done;  | 
156  | 0  |     }  | 
157  | 0  |     ctx = BN_CTX_new_ex(libctx);  | 
158  | 0  |     if (ctx == NULL) { | 
159  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_BN_LIB);  | 
160  | 0  |         goto done;  | 
161  | 0  |     }  | 
162  |  |  | 
163  | 0  |     BN_CTX_start(ctx);  | 
164  | 0  |     k = BN_CTX_get(ctx);  | 
165  | 0  |     x1 = BN_CTX_get(ctx);  | 
166  | 0  |     x2 = BN_CTX_get(ctx);  | 
167  | 0  |     y1 = BN_CTX_get(ctx);  | 
168  | 0  |     y2 = BN_CTX_get(ctx);  | 
169  |  | 
  | 
170  | 0  |     if (y2 == NULL) { | 
171  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_BN_LIB);  | 
172  | 0  |         goto done;  | 
173  | 0  |     }  | 
174  |  |  | 
175  | 0  |     x2y2 = OPENSSL_zalloc(2 * field_size);  | 
176  | 0  |     C3 = OPENSSL_zalloc(C3_size);  | 
177  |  | 
  | 
178  | 0  |     if (x2y2 == NULL || C3 == NULL)  | 
179  | 0  |         goto done;  | 
180  |  |  | 
181  | 0  |     memset(ciphertext_buf, 0, *ciphertext_len);  | 
182  |  | 
  | 
183  | 0  |     msg_mask = OPENSSL_zalloc(msg_len);  | 
184  | 0  |     if (msg_mask == NULL)  | 
185  | 0  |        goto done;  | 
186  |  |  | 
187  | 0  | again:  | 
188  | 0  |     if (!BN_priv_rand_range_ex(k, order, 0, ctx)) { | 
189  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_INTERNAL_ERROR);  | 
190  | 0  |         goto done;  | 
191  | 0  |     }  | 
192  |  |  | 
193  | 0  |     if (!EC_POINT_mul(group, kG, k, NULL, NULL, ctx)  | 
194  | 0  |             || !EC_POINT_get_affine_coordinates(group, kG, x1, y1, ctx)  | 
195  | 0  |             || !EC_POINT_mul(group, kP, NULL, P, k, ctx)  | 
196  | 0  |             || !EC_POINT_get_affine_coordinates(group, kP, x2, y2, ctx)) { | 
197  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_EC_LIB);  | 
198  | 0  |         goto done;  | 
199  | 0  |     }  | 
200  |  |  | 
201  | 0  |     if (BN_bn2binpad(x2, x2y2, field_size) < 0  | 
202  | 0  |             || BN_bn2binpad(y2, x2y2 + field_size, field_size) < 0) { | 
203  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_INTERNAL_ERROR);  | 
204  | 0  |         goto done;  | 
205  | 0  |     }  | 
206  |  |  | 
207  |  |     /* X9.63 with no salt happens to match the KDF used in SM2 */  | 
208  | 0  |     if (!ossl_ecdh_kdf_X9_63(msg_mask, msg_len, x2y2, 2 * field_size, NULL, 0,  | 
209  | 0  |                              digest, libctx, propq)) { | 
210  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_EVP_LIB);  | 
211  | 0  |         goto done;  | 
212  | 0  |     }  | 
213  |  |  | 
214  | 0  |     if (is_all_zeros(msg_mask, msg_len)) { | 
215  | 0  |         memset(x2y2, 0, 2 * field_size);  | 
216  | 0  |         goto again;  | 
217  | 0  |     }  | 
218  |  |  | 
219  | 0  |     for (i = 0; i != msg_len; ++i)  | 
220  | 0  |         msg_mask[i] ^= msg[i];  | 
221  |  | 
  | 
222  | 0  |     fetched_digest = EVP_MD_fetch(libctx, EVP_MD_get0_name(digest), propq);  | 
223  | 0  |     if (fetched_digest == NULL) { | 
224  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_INTERNAL_ERROR);  | 
225  | 0  |         goto done;  | 
226  | 0  |     }  | 
227  | 0  |     if (EVP_DigestInit(hash, fetched_digest) == 0  | 
228  | 0  |             || EVP_DigestUpdate(hash, x2y2, field_size) == 0  | 
229  | 0  |             || EVP_DigestUpdate(hash, msg, msg_len) == 0  | 
230  | 0  |             || EVP_DigestUpdate(hash, x2y2 + field_size, field_size) == 0  | 
231  | 0  |             || EVP_DigestFinal(hash, C3, NULL) == 0) { | 
232  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_EVP_LIB);  | 
233  | 0  |         goto done;  | 
234  | 0  |     }  | 
235  |  |  | 
236  | 0  |     ctext_struct.C1x = x1;  | 
237  | 0  |     ctext_struct.C1y = y1;  | 
238  | 0  |     ctext_struct.C3 = ASN1_OCTET_STRING_new();  | 
239  | 0  |     ctext_struct.C2 = ASN1_OCTET_STRING_new();  | 
240  |  | 
  | 
241  | 0  |     if (ctext_struct.C3 == NULL || ctext_struct.C2 == NULL) { | 
242  | 0  |        ERR_raise(ERR_LIB_SM2, ERR_R_ASN1_LIB);  | 
243  | 0  |        goto done;  | 
244  | 0  |     }  | 
245  | 0  |     if (!ASN1_OCTET_STRING_set(ctext_struct.C3, C3, C3_size)  | 
246  | 0  |             || !ASN1_OCTET_STRING_set(ctext_struct.C2, msg_mask, msg_len)) { | 
247  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_INTERNAL_ERROR);  | 
248  | 0  |         goto done;  | 
249  | 0  |     }  | 
250  |  |  | 
251  | 0  |     ciphertext_leni = i2d_SM2_Ciphertext(&ctext_struct, &ciphertext_buf);  | 
252  |  |     /* Ensure cast to size_t is safe */  | 
253  | 0  |     if (ciphertext_leni < 0) { | 
254  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_INTERNAL_ERROR);  | 
255  | 0  |         goto done;  | 
256  | 0  |     }  | 
257  | 0  |     *ciphertext_len = (size_t)ciphertext_leni;  | 
258  |  | 
  | 
259  | 0  |     rc = 1;  | 
260  |  | 
  | 
261  | 0  |  done:  | 
262  | 0  |     EVP_MD_free(fetched_digest);  | 
263  | 0  |     ASN1_OCTET_STRING_free(ctext_struct.C2);  | 
264  | 0  |     ASN1_OCTET_STRING_free(ctext_struct.C3);  | 
265  | 0  |     OPENSSL_free(msg_mask);  | 
266  | 0  |     OPENSSL_free(x2y2);  | 
267  | 0  |     OPENSSL_free(C3);  | 
268  | 0  |     EVP_MD_CTX_free(hash);  | 
269  | 0  |     BN_CTX_free(ctx);  | 
270  | 0  |     EC_POINT_free(kG);  | 
271  | 0  |     EC_POINT_free(kP);  | 
272  | 0  |     return rc;  | 
273  | 0  | }  | 
274  |  |  | 
275  |  | int ossl_sm2_decrypt(const EC_KEY *key,  | 
276  |  |                      const EVP_MD *digest,  | 
277  |  |                      const uint8_t *ciphertext, size_t ciphertext_len,  | 
278  |  |                      uint8_t *ptext_buf, size_t *ptext_len)  | 
279  | 0  | { | 
280  | 0  |     int rc = 0;  | 
281  | 0  |     int i;  | 
282  | 0  |     BN_CTX *ctx = NULL;  | 
283  | 0  |     const EC_GROUP *group = EC_KEY_get0_group(key);  | 
284  | 0  |     EC_POINT *C1 = NULL;  | 
285  | 0  |     struct SM2_Ciphertext_st *sm2_ctext = NULL;  | 
286  | 0  |     BIGNUM *x2 = NULL;  | 
287  | 0  |     BIGNUM *y2 = NULL;  | 
288  | 0  |     uint8_t *x2y2 = NULL;  | 
289  | 0  |     uint8_t *computed_C3 = NULL;  | 
290  | 0  |     const size_t field_size = ec_field_size(group);  | 
291  | 0  |     const int hash_size = EVP_MD_get_size(digest);  | 
292  | 0  |     uint8_t *msg_mask = NULL;  | 
293  | 0  |     const uint8_t *C2 = NULL;  | 
294  | 0  |     const uint8_t *C3 = NULL;  | 
295  | 0  |     int msg_len = 0;  | 
296  | 0  |     EVP_MD_CTX *hash = NULL;  | 
297  | 0  |     OSSL_LIB_CTX *libctx = ossl_ec_key_get_libctx(key);  | 
298  | 0  |     const char *propq = ossl_ec_key_get0_propq(key);  | 
299  |  | 
  | 
300  | 0  |     if (field_size == 0 || hash_size <= 0)  | 
301  | 0  |        goto done;  | 
302  |  |  | 
303  | 0  |     memset(ptext_buf, 0xFF, *ptext_len);  | 
304  |  | 
  | 
305  | 0  |     sm2_ctext = d2i_SM2_Ciphertext(NULL, &ciphertext, ciphertext_len);  | 
306  |  | 
  | 
307  | 0  |     if (sm2_ctext == NULL) { | 
308  | 0  |         ERR_raise(ERR_LIB_SM2, SM2_R_ASN1_ERROR);  | 
309  | 0  |         goto done;  | 
310  | 0  |     }  | 
311  |  |  | 
312  | 0  |     if (sm2_ctext->C3->length != hash_size) { | 
313  | 0  |         ERR_raise(ERR_LIB_SM2, SM2_R_INVALID_ENCODING);  | 
314  | 0  |         goto done;  | 
315  | 0  |     }  | 
316  |  |  | 
317  | 0  |     C2 = sm2_ctext->C2->data;  | 
318  | 0  |     C3 = sm2_ctext->C3->data;  | 
319  | 0  |     msg_len = sm2_ctext->C2->length;  | 
320  | 0  |     if (*ptext_len < (size_t)msg_len) { | 
321  | 0  |         ERR_raise(ERR_LIB_SM2, SM2_R_BUFFER_TOO_SMALL);  | 
322  | 0  |         goto done;  | 
323  | 0  |     }  | 
324  |  |  | 
325  | 0  |     ctx = BN_CTX_new_ex(libctx);  | 
326  | 0  |     if (ctx == NULL) { | 
327  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_BN_LIB);  | 
328  | 0  |         goto done;  | 
329  | 0  |     }  | 
330  |  |  | 
331  | 0  |     BN_CTX_start(ctx);  | 
332  | 0  |     x2 = BN_CTX_get(ctx);  | 
333  | 0  |     y2 = BN_CTX_get(ctx);  | 
334  |  | 
  | 
335  | 0  |     if (y2 == NULL) { | 
336  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_BN_LIB);  | 
337  | 0  |         goto done;  | 
338  | 0  |     }  | 
339  |  |  | 
340  | 0  |     msg_mask = OPENSSL_zalloc(msg_len);  | 
341  | 0  |     x2y2 = OPENSSL_zalloc(2 * field_size);  | 
342  | 0  |     computed_C3 = OPENSSL_zalloc(hash_size);  | 
343  |  | 
  | 
344  | 0  |     if (msg_mask == NULL || x2y2 == NULL || computed_C3 == NULL)  | 
345  | 0  |         goto done;  | 
346  |  |  | 
347  | 0  |     C1 = EC_POINT_new(group);  | 
348  | 0  |     if (C1 == NULL) { | 
349  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_EC_LIB);  | 
350  | 0  |         goto done;  | 
351  | 0  |     }  | 
352  |  |  | 
353  | 0  |     if (!EC_POINT_set_affine_coordinates(group, C1, sm2_ctext->C1x,  | 
354  | 0  |                                          sm2_ctext->C1y, ctx)  | 
355  | 0  |             || !EC_POINT_mul(group, C1, NULL, C1, EC_KEY_get0_private_key(key),  | 
356  | 0  |                              ctx)  | 
357  | 0  |             || !EC_POINT_get_affine_coordinates(group, C1, x2, y2, ctx)) { | 
358  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_EC_LIB);  | 
359  | 0  |         goto done;  | 
360  | 0  |     }  | 
361  |  |  | 
362  | 0  |     if (BN_bn2binpad(x2, x2y2, field_size) < 0  | 
363  | 0  |             || BN_bn2binpad(y2, x2y2 + field_size, field_size) < 0  | 
364  | 0  |             || !ossl_ecdh_kdf_X9_63(msg_mask, msg_len, x2y2, 2 * field_size,  | 
365  | 0  |                                     NULL, 0, digest, libctx, propq)) { | 
366  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_INTERNAL_ERROR);  | 
367  | 0  |         goto done;  | 
368  | 0  |     }  | 
369  |  |  | 
370  | 0  |     if (is_all_zeros(msg_mask, msg_len)) { | 
371  | 0  |         ERR_raise(ERR_LIB_SM2, SM2_R_INVALID_ENCODING);  | 
372  | 0  |         goto done;  | 
373  | 0  |     }  | 
374  |  |  | 
375  | 0  |     for (i = 0; i != msg_len; ++i)  | 
376  | 0  |         ptext_buf[i] = C2[i] ^ msg_mask[i];  | 
377  |  | 
  | 
378  | 0  |     hash = EVP_MD_CTX_new();  | 
379  | 0  |     if (hash == NULL) { | 
380  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_EVP_LIB);  | 
381  | 0  |         goto done;  | 
382  | 0  |     }  | 
383  |  |  | 
384  | 0  |     if (!EVP_DigestInit(hash, digest)  | 
385  | 0  |             || !EVP_DigestUpdate(hash, x2y2, field_size)  | 
386  | 0  |             || !EVP_DigestUpdate(hash, ptext_buf, msg_len)  | 
387  | 0  |             || !EVP_DigestUpdate(hash, x2y2 + field_size, field_size)  | 
388  | 0  |             || !EVP_DigestFinal(hash, computed_C3, NULL)) { | 
389  | 0  |         ERR_raise(ERR_LIB_SM2, ERR_R_EVP_LIB);  | 
390  | 0  |         goto done;  | 
391  | 0  |     }  | 
392  |  |  | 
393  | 0  |     if (CRYPTO_memcmp(computed_C3, C3, hash_size) != 0) { | 
394  | 0  |         ERR_raise(ERR_LIB_SM2, SM2_R_INVALID_DIGEST);  | 
395  | 0  |         goto done;  | 
396  | 0  |     }  | 
397  |  |  | 
398  | 0  |     rc = 1;  | 
399  | 0  |     *ptext_len = msg_len;  | 
400  |  | 
  | 
401  | 0  |  done:  | 
402  | 0  |     if (rc == 0)  | 
403  | 0  |         memset(ptext_buf, 0, *ptext_len);  | 
404  |  | 
  | 
405  | 0  |     OPENSSL_free(msg_mask);  | 
406  | 0  |     OPENSSL_free(x2y2);  | 
407  | 0  |     OPENSSL_free(computed_C3);  | 
408  | 0  |     EC_POINT_free(C1);  | 
409  | 0  |     BN_CTX_free(ctx);  | 
410  | 0  |     SM2_Ciphertext_free(sm2_ctext);  | 
411  | 0  |     EVP_MD_CTX_free(hash);  | 
412  |  | 
  | 
413  | 0  |     return rc;  | 
414  | 0  | }  |