ecdsatest.c revision 1.8 1 1.2 christos /*
2 1.8 christos * Copyright 2002-2023 The OpenSSL Project Authors. All Rights Reserved.
3 1.3 christos * Copyright (c) 2002, Oracle and/or its affiliates. All rights reserved
4 1.2 christos *
5 1.7 christos * Licensed under the Apache License 2.0 (the "License"). You may not use
6 1.2 christos * this file except in compliance with the License. You can obtain a copy
7 1.2 christos * in the file LICENSE in the source distribution or at
8 1.2 christos * https://www.openssl.org/source/license.html
9 1.2 christos */
10 1.2 christos
11 1.7 christos /*
12 1.7 christos * Low level APIs are deprecated for public use, but still ok for internal use.
13 1.7 christos */
14 1.7 christos #include "internal/deprecated.h"
15 1.7 christos
16 1.2 christos #include <openssl/opensslconf.h> /* To see if OPENSSL_NO_EC is defined */
17 1.4 christos #include "testutil.h"
18 1.2 christos
19 1.3 christos #ifndef OPENSSL_NO_EC
20 1.2 christos
21 1.2 christos # include <openssl/evp.h>
22 1.2 christos # include <openssl/bn.h>
23 1.2 christos # include <openssl/ec.h>
24 1.2 christos # include <openssl/rand.h>
25 1.6 christos # include "internal/nelem.h"
26 1.6 christos # include "ecdsatest.h"
27 1.2 christos
28 1.7 christos static fake_random_generate_cb fbytes;
29 1.2 christos
30 1.6 christos static const char *numbers[2];
31 1.6 christos static size_t crv_len = 0;
32 1.6 christos static EC_builtin_curve *curves = NULL;
33 1.7 christos static OSSL_PROVIDER *fake_rand = NULL;
34 1.2 christos
35 1.7 christos static int fbytes(unsigned char *buf, size_t num, ossl_unused const char *name,
36 1.7 christos EVP_RAND_CTX *ctx)
37 1.2 christos {
38 1.3 christos int ret = 0;
39 1.6 christos static int fbytes_counter = 0;
40 1.2 christos BIGNUM *tmp = NULL;
41 1.2 christos
42 1.7 christos fake_rand_set_callback(ctx, NULL);
43 1.2 christos
44 1.6 christos if (!TEST_ptr(tmp = BN_new())
45 1.6 christos || !TEST_int_lt(fbytes_counter, OSSL_NELEM(numbers))
46 1.6 christos || !TEST_true(BN_hex2bn(&tmp, numbers[fbytes_counter]))
47 1.6 christos /* tmp might need leading zeros so pad it out */
48 1.6 christos || !TEST_int_le(BN_num_bytes(tmp), num)
49 1.7 christos || !TEST_int_gt(BN_bn2binpad(tmp, buf, num), 0))
50 1.6 christos goto err;
51 1.6 christos
52 1.6 christos fbytes_counter = (fbytes_counter + 1) % OSSL_NELEM(numbers);
53 1.6 christos ret = 1;
54 1.6 christos err:
55 1.2 christos BN_free(tmp);
56 1.2 christos return ret;
57 1.2 christos }
58 1.2 christos
59 1.6 christos /*-
60 1.6 christos * This function hijacks the RNG to feed it the chosen ECDSA key and nonce.
61 1.6 christos * The ECDSA KATs are from:
62 1.6 christos * - the X9.62 draft (4)
63 1.6 christos * - NIST CAVP (720)
64 1.6 christos *
65 1.6 christos * It uses the low-level ECDSA_sign_setup instead of EVP to control the RNG.
66 1.6 christos * NB: This is not how applications should use ECDSA; this is only for testing.
67 1.6 christos *
68 1.6 christos * Tests the library can successfully:
69 1.6 christos * - generate public keys that matches those KATs
70 1.6 christos * - create ECDSA signatures that match those KATs
71 1.6 christos * - accept those signatures as valid
72 1.6 christos */
73 1.6 christos static int x9_62_tests(int n)
74 1.2 christos {
75 1.6 christos int nid, md_nid, ret = 0;
76 1.6 christos const char *r_in = NULL, *s_in = NULL, *tbs = NULL;
77 1.6 christos unsigned char *pbuf = NULL, *qbuf = NULL, *message = NULL;
78 1.6 christos unsigned char digest[EVP_MAX_MD_SIZE];
79 1.2 christos unsigned int dgst_len = 0;
80 1.6 christos long q_len, msg_len = 0;
81 1.6 christos size_t p_len;
82 1.6 christos EVP_MD_CTX *mctx = NULL;
83 1.2 christos EC_KEY *key = NULL;
84 1.2 christos ECDSA_SIG *signature = NULL;
85 1.2 christos BIGNUM *r = NULL, *s = NULL;
86 1.2 christos BIGNUM *kinv = NULL, *rp = NULL;
87 1.6 christos const BIGNUM *sig_r = NULL, *sig_s = NULL;
88 1.2 christos
89 1.6 christos nid = ecdsa_cavs_kats[n].nid;
90 1.6 christos md_nid = ecdsa_cavs_kats[n].md_nid;
91 1.6 christos r_in = ecdsa_cavs_kats[n].r;
92 1.6 christos s_in = ecdsa_cavs_kats[n].s;
93 1.6 christos tbs = ecdsa_cavs_kats[n].msg;
94 1.6 christos numbers[0] = ecdsa_cavs_kats[n].d;
95 1.6 christos numbers[1] = ecdsa_cavs_kats[n].k;
96 1.6 christos
97 1.6 christos TEST_info("ECDSA KATs for curve %s", OBJ_nid2sn(nid));
98 1.6 christos
99 1.7 christos #ifdef FIPS_MODULE
100 1.7 christos if (EC_curve_nid2nist(nid) == NULL)
101 1.7 christos return TEST_skip("skip non approved curves");
102 1.7 christos #endif /* FIPS_MODULE */
103 1.7 christos
104 1.6 christos if (!TEST_ptr(mctx = EVP_MD_CTX_new())
105 1.6 christos /* get the message digest */
106 1.6 christos || !TEST_ptr(message = OPENSSL_hexstr2buf(tbs, &msg_len))
107 1.6 christos || !TEST_true(EVP_DigestInit_ex(mctx, EVP_get_digestbynid(md_nid), NULL))
108 1.6 christos || !TEST_true(EVP_DigestUpdate(mctx, message, msg_len))
109 1.6 christos || !TEST_true(EVP_DigestFinal_ex(mctx, digest, &dgst_len))
110 1.6 christos /* create the key */
111 1.6 christos || !TEST_ptr(key = EC_KEY_new_by_curve_name(nid))
112 1.6 christos /* load KAT variables */
113 1.6 christos || !TEST_ptr(r = BN_new())
114 1.6 christos || !TEST_ptr(s = BN_new())
115 1.6 christos || !TEST_true(BN_hex2bn(&r, r_in))
116 1.7 christos || !TEST_true(BN_hex2bn(&s, s_in)))
117 1.6 christos goto err;
118 1.2 christos
119 1.6 christos /* public key must match KAT */
120 1.7 christos fake_rand_set_callback(RAND_get0_private(NULL), &fbytes);
121 1.6 christos if (!TEST_true(EC_KEY_generate_key(key))
122 1.6 christos || !TEST_true(p_len = EC_KEY_key2buf(key, POINT_CONVERSION_UNCOMPRESSED,
123 1.6 christos &pbuf, NULL))
124 1.6 christos || !TEST_ptr(qbuf = OPENSSL_hexstr2buf(ecdsa_cavs_kats[n].Q, &q_len))
125 1.6 christos || !TEST_int_eq(q_len, p_len)
126 1.6 christos || !TEST_mem_eq(qbuf, q_len, pbuf, p_len))
127 1.6 christos goto err;
128 1.3 christos
129 1.6 christos /* create the signature via ECDSA_sign_setup to avoid use of ECDSA nonces */
130 1.7 christos fake_rand_set_callback(RAND_get0_private(NULL), &fbytes);
131 1.6 christos if (!TEST_true(ECDSA_sign_setup(key, NULL, &kinv, &rp))
132 1.6 christos || !TEST_ptr(signature = ECDSA_do_sign_ex(digest, dgst_len,
133 1.6 christos kinv, rp, key))
134 1.6 christos /* verify the signature */
135 1.6 christos || !TEST_int_eq(ECDSA_do_verify(digest, dgst_len, signature, key), 1))
136 1.6 christos goto err;
137 1.3 christos
138 1.2 christos /* compare the created signature with the expected signature */
139 1.2 christos ECDSA_SIG_get0(signature, &sig_r, &sig_s);
140 1.3 christos if (!TEST_BN_eq(sig_r, r)
141 1.6 christos || !TEST_BN_eq(sig_s, s))
142 1.6 christos goto err;
143 1.3 christos
144 1.6 christos ret = 1;
145 1.2 christos
146 1.6 christos err:
147 1.6 christos OPENSSL_free(message);
148 1.6 christos OPENSSL_free(pbuf);
149 1.6 christos OPENSSL_free(qbuf);
150 1.2 christos EC_KEY_free(key);
151 1.2 christos ECDSA_SIG_free(signature);
152 1.2 christos BN_free(r);
153 1.2 christos BN_free(s);
154 1.6 christos EVP_MD_CTX_free(mctx);
155 1.2 christos BN_clear_free(kinv);
156 1.2 christos BN_clear_free(rp);
157 1.2 christos return ret;
158 1.2 christos }
159 1.2 christos
160 1.6 christos /*-
161 1.6 christos * Positive and negative ECDSA testing through EVP interface:
162 1.6 christos * - EVP_DigestSign (this is the one-shot version)
163 1.6 christos * - EVP_DigestVerify
164 1.6 christos *
165 1.6 christos * Tests the library can successfully:
166 1.6 christos * - create a key
167 1.6 christos * - create a signature
168 1.6 christos * - accept that signature
169 1.6 christos * - reject that signature with a different public key
170 1.6 christos * - reject that signature if its length is not correct
171 1.6 christos * - reject that signature after modifying the message
172 1.6 christos * - accept that signature after un-modifying the message
173 1.6 christos * - reject that signature after modifying the signature
174 1.6 christos * - accept that signature after un-modifying the signature
175 1.6 christos */
176 1.7 christos static int set_sm2_id(EVP_MD_CTX *mctx, EVP_PKEY *pkey)
177 1.7 christos {
178 1.7 christos /* With the SM2 key type, the SM2 ID is mandatory */
179 1.7 christos static const char sm2_id[] = { 1, 2, 3, 4, 'l', 'e', 't', 't', 'e', 'r' };
180 1.7 christos EVP_PKEY_CTX *pctx;
181 1.7 christos
182 1.7 christos if (!TEST_ptr(pctx = EVP_MD_CTX_get_pkey_ctx(mctx))
183 1.7 christos || !TEST_int_gt(EVP_PKEY_CTX_set1_id(pctx, sm2_id, sizeof(sm2_id)), 0))
184 1.7 christos return 0;
185 1.7 christos return 1;
186 1.7 christos }
187 1.7 christos
188 1.7 christos static int test_builtin(int n, int as)
189 1.2 christos {
190 1.6 christos EC_KEY *eckey_neg = NULL, *eckey = NULL;
191 1.6 christos unsigned char dirt, offset, tbs[128];
192 1.6 christos unsigned char *sig = NULL;
193 1.7 christos EVP_PKEY *pkey_neg = NULL, *pkey = NULL, *dup_pk = NULL;
194 1.6 christos EVP_MD_CTX *mctx = NULL;
195 1.6 christos size_t sig_len;
196 1.6 christos int nid, ret = 0;
197 1.7 christos int temp;
198 1.2 christos
199 1.6 christos nid = curves[n].nid;
200 1.3 christos
201 1.6 christos /* skip built-in curves where ord(G) is not prime */
202 1.6 christos if (nid == NID_ipsec4 || nid == NID_ipsec3) {
203 1.6 christos TEST_info("skipped: ECDSA unsupported for curve %s", OBJ_nid2sn(nid));
204 1.6 christos return 1;
205 1.6 christos }
206 1.2 christos
207 1.7 christos /*
208 1.7 christos * skip SM2 curve if 'as' is equal to EVP_PKEY_EC or, skip all curves
209 1.7 christos * except SM2 curve if 'as' is equal to EVP_PKEY_SM2
210 1.7 christos */
211 1.7 christos if (nid == NID_sm2 && as == EVP_PKEY_EC) {
212 1.7 christos TEST_info("skipped: EC key type unsupported for curve %s",
213 1.7 christos OBJ_nid2sn(nid));
214 1.7 christos return 1;
215 1.7 christos } else if (nid != NID_sm2 && as == EVP_PKEY_SM2) {
216 1.7 christos TEST_info("skipped: SM2 key type unsupported for curve %s",
217 1.7 christos OBJ_nid2sn(nid));
218 1.7 christos return 1;
219 1.7 christos }
220 1.7 christos
221 1.7 christos TEST_info("testing ECDSA for curve %s as %s key type", OBJ_nid2sn(nid),
222 1.7 christos as == EVP_PKEY_EC ? "EC" : "SM2");
223 1.2 christos
224 1.6 christos if (!TEST_ptr(mctx = EVP_MD_CTX_new())
225 1.6 christos /* get some random message data */
226 1.7 christos || !TEST_int_gt(RAND_bytes(tbs, sizeof(tbs)), 0)
227 1.6 christos /* real key */
228 1.6 christos || !TEST_ptr(eckey = EC_KEY_new_by_curve_name(nid))
229 1.6 christos || !TEST_true(EC_KEY_generate_key(eckey))
230 1.6 christos || !TEST_ptr(pkey = EVP_PKEY_new())
231 1.6 christos || !TEST_true(EVP_PKEY_assign_EC_KEY(pkey, eckey))
232 1.6 christos /* fake key for negative testing */
233 1.6 christos || !TEST_ptr(eckey_neg = EC_KEY_new_by_curve_name(nid))
234 1.6 christos || !TEST_true(EC_KEY_generate_key(eckey_neg))
235 1.6 christos || !TEST_ptr(pkey_neg = EVP_PKEY_new())
236 1.7 christos || !TEST_false(EVP_PKEY_assign_EC_KEY(pkey_neg, NULL))
237 1.6 christos || !TEST_true(EVP_PKEY_assign_EC_KEY(pkey_neg, eckey_neg)))
238 1.6 christos goto err;
239 1.6 christos
240 1.7 christos if (!TEST_ptr(dup_pk = EVP_PKEY_dup(pkey))
241 1.7 christos || !TEST_int_eq(EVP_PKEY_eq(pkey, dup_pk), 1))
242 1.7 christos goto err;
243 1.7 christos
244 1.7 christos temp = ECDSA_size(eckey);
245 1.6 christos
246 1.7 christos if (!TEST_int_ge(temp, 0)
247 1.7 christos || !TEST_ptr(sig = OPENSSL_malloc(sig_len = (size_t)temp))
248 1.6 christos /* create a signature */
249 1.6 christos || !TEST_true(EVP_DigestSignInit(mctx, NULL, NULL, NULL, pkey))
250 1.7 christos || (as == EVP_PKEY_SM2 && !set_sm2_id(mctx, pkey))
251 1.6 christos || !TEST_true(EVP_DigestSign(mctx, sig, &sig_len, tbs, sizeof(tbs)))
252 1.6 christos || !TEST_int_le(sig_len, ECDSA_size(eckey))
253 1.7 christos || !TEST_true(EVP_MD_CTX_reset(mctx))
254 1.6 christos /* negative test, verify with wrong key, 0 return */
255 1.6 christos || !TEST_true(EVP_DigestVerifyInit(mctx, NULL, NULL, NULL, pkey_neg))
256 1.7 christos || (as == EVP_PKEY_SM2 && !set_sm2_id(mctx, pkey_neg))
257 1.6 christos || !TEST_int_eq(EVP_DigestVerify(mctx, sig, sig_len, tbs, sizeof(tbs)), 0)
258 1.7 christos || !TEST_true(EVP_MD_CTX_reset(mctx))
259 1.6 christos /* negative test, verify with wrong signature length, -1 return */
260 1.6 christos || !TEST_true(EVP_DigestVerifyInit(mctx, NULL, NULL, NULL, pkey))
261 1.7 christos || (as == EVP_PKEY_SM2 && !set_sm2_id(mctx, pkey))
262 1.6 christos || !TEST_int_eq(EVP_DigestVerify(mctx, sig, sig_len - 1, tbs, sizeof(tbs)), -1)
263 1.7 christos || !TEST_true(EVP_MD_CTX_reset(mctx))
264 1.6 christos /* positive test, verify with correct key, 1 return */
265 1.6 christos || !TEST_true(EVP_DigestVerifyInit(mctx, NULL, NULL, NULL, pkey))
266 1.7 christos || (as == EVP_PKEY_SM2 && !set_sm2_id(mctx, pkey))
267 1.7 christos || !TEST_int_eq(EVP_DigestVerify(mctx, sig, sig_len, tbs, sizeof(tbs)), 1)
268 1.7 christos || !TEST_true(EVP_MD_CTX_reset(mctx)))
269 1.6 christos goto err;
270 1.6 christos
271 1.6 christos /* muck with the message, test it fails with 0 return */
272 1.6 christos tbs[0] ^= 1;
273 1.7 christos if (!TEST_true(EVP_DigestVerifyInit(mctx, NULL, NULL, NULL, pkey))
274 1.7 christos || (as == EVP_PKEY_SM2 && !set_sm2_id(mctx, pkey))
275 1.7 christos || !TEST_int_eq(EVP_DigestVerify(mctx, sig, sig_len, tbs, sizeof(tbs)), 0)
276 1.7 christos || !TEST_true(EVP_MD_CTX_reset(mctx)))
277 1.6 christos goto err;
278 1.6 christos /* un-muck and test it verifies */
279 1.6 christos tbs[0] ^= 1;
280 1.7 christos if (!TEST_true(EVP_DigestVerifyInit(mctx, NULL, NULL, NULL, pkey))
281 1.7 christos || (as == EVP_PKEY_SM2 && !set_sm2_id(mctx, pkey))
282 1.7 christos || !TEST_int_eq(EVP_DigestVerify(mctx, sig, sig_len, tbs, sizeof(tbs)), 1)
283 1.7 christos || !TEST_true(EVP_MD_CTX_reset(mctx)))
284 1.6 christos goto err;
285 1.6 christos
286 1.6 christos /*-
287 1.6 christos * Muck with the ECDSA signature. The DER encoding is one of:
288 1.6 christos * - 30 LL 02 ..
289 1.6 christos * - 30 81 LL 02 ..
290 1.6 christos *
291 1.6 christos * - Sometimes this mucks with the high level DER sequence wrapper:
292 1.6 christos * in that case, DER-parsing of the whole signature should fail.
293 1.6 christos *
294 1.6 christos * - Sometimes this mucks with the DER-encoding of ECDSA.r:
295 1.6 christos * in that case, DER-parsing of ECDSA.r should fail.
296 1.6 christos *
297 1.6 christos * - Sometimes this mucks with the DER-encoding of ECDSA.s:
298 1.6 christos * in that case, DER-parsing of ECDSA.s should fail.
299 1.6 christos *
300 1.6 christos * - Sometimes this mucks with ECDSA.r:
301 1.6 christos * in that case, the signature verification should fail.
302 1.6 christos *
303 1.6 christos * - Sometimes this mucks with ECDSA.s:
304 1.6 christos * in that case, the signature verification should fail.
305 1.6 christos *
306 1.6 christos * The usual case is changing the integer value of ECDSA.r or ECDSA.s.
307 1.6 christos * Because the ratio of DER overhead to signature bytes is small.
308 1.6 christos * So most of the time it will be one of the last two cases.
309 1.6 christos *
310 1.6 christos * In any case, EVP_PKEY_verify should not return 1 for valid.
311 1.6 christos */
312 1.6 christos offset = tbs[0] % sig_len;
313 1.6 christos dirt = tbs[1] ? tbs[1] : 1;
314 1.6 christos sig[offset] ^= dirt;
315 1.7 christos if (!TEST_true(EVP_DigestVerifyInit(mctx, NULL, NULL, NULL, pkey))
316 1.7 christos || (as == EVP_PKEY_SM2 && !set_sm2_id(mctx, pkey))
317 1.7 christos || !TEST_int_ne(EVP_DigestVerify(mctx, sig, sig_len, tbs, sizeof(tbs)), 1)
318 1.7 christos || !TEST_true(EVP_MD_CTX_reset(mctx)))
319 1.6 christos goto err;
320 1.6 christos /* un-muck and test it verifies */
321 1.6 christos sig[offset] ^= dirt;
322 1.7 christos if (!TEST_true(EVP_DigestVerifyInit(mctx, NULL, NULL, NULL, pkey))
323 1.7 christos || (as == EVP_PKEY_SM2 && !set_sm2_id(mctx, pkey))
324 1.7 christos || !TEST_int_eq(EVP_DigestVerify(mctx, sig, sig_len, tbs, sizeof(tbs)), 1)
325 1.7 christos || !TEST_true(EVP_MD_CTX_reset(mctx)))
326 1.6 christos goto err;
327 1.2 christos
328 1.2 christos ret = 1;
329 1.6 christos err:
330 1.6 christos EVP_PKEY_free(pkey);
331 1.6 christos EVP_PKEY_free(pkey_neg);
332 1.7 christos EVP_PKEY_free(dup_pk);
333 1.6 christos EVP_MD_CTX_free(mctx);
334 1.6 christos OPENSSL_free(sig);
335 1.2 christos return ret;
336 1.2 christos }
337 1.7 christos
338 1.7 christos static int test_builtin_as_ec(int n)
339 1.7 christos {
340 1.7 christos return test_builtin(n, EVP_PKEY_EC);
341 1.7 christos }
342 1.7 christos
343 1.7 christos # ifndef OPENSSL_NO_SM2
344 1.7 christos static int test_builtin_as_sm2(int n)
345 1.7 christos {
346 1.7 christos return test_builtin(n, EVP_PKEY_SM2);
347 1.7 christos }
348 1.7 christos # endif
349 1.8 christos
350 1.8 christos static int test_ecdsa_sig_NULL(void)
351 1.8 christos {
352 1.8 christos int ret;
353 1.8 christos unsigned int siglen;
354 1.8 christos unsigned char dgst[128] = { 0 };
355 1.8 christos EC_KEY *eckey = NULL;
356 1.8 christos
357 1.8 christos ret = TEST_ptr(eckey = EC_KEY_new_by_curve_name(NID_X9_62_prime256v1))
358 1.8 christos && TEST_int_eq(EC_KEY_generate_key(eckey), 1)
359 1.8 christos && TEST_int_eq(ECDSA_sign(0, dgst, sizeof(dgst), NULL, &siglen, eckey), 1)
360 1.8 christos && TEST_int_gt(siglen, 0);
361 1.8 christos EC_KEY_free(eckey);
362 1.8 christos return ret;
363 1.8 christos }
364 1.8 christos
365 1.7 christos #endif /* OPENSSL_NO_EC */
366 1.2 christos
367 1.3 christos int setup_tests(void)
368 1.2 christos {
369 1.3 christos #ifdef OPENSSL_NO_EC
370 1.3 christos TEST_note("Elliptic curves are disabled.");
371 1.3 christos #else
372 1.7 christos fake_rand = fake_rand_start(NULL);
373 1.7 christos if (fake_rand == NULL)
374 1.7 christos return 0;
375 1.7 christos
376 1.6 christos /* get a list of all internal curves */
377 1.6 christos crv_len = EC_get_builtin_curves(NULL, 0);
378 1.6 christos if (!TEST_ptr(curves = OPENSSL_malloc(sizeof(*curves) * crv_len))
379 1.7 christos || !TEST_true(EC_get_builtin_curves(curves, crv_len))) {
380 1.7 christos fake_rand_finish(fake_rand);
381 1.6 christos return 0;
382 1.7 christos }
383 1.7 christos ADD_ALL_TESTS(test_builtin_as_ec, crv_len);
384 1.8 christos ADD_TEST(test_ecdsa_sig_NULL);
385 1.7 christos # ifndef OPENSSL_NO_SM2
386 1.7 christos ADD_ALL_TESTS(test_builtin_as_sm2, crv_len);
387 1.7 christos # endif
388 1.6 christos ADD_ALL_TESTS(x9_62_tests, OSSL_NELEM(ecdsa_cavs_kats));
389 1.2 christos #endif
390 1.3 christos return 1;
391 1.2 christos }
392 1.6 christos
393 1.6 christos void cleanup_tests(void)
394 1.6 christos {
395 1.6 christos #ifndef OPENSSL_NO_EC
396 1.7 christos fake_rand_finish(fake_rand);
397 1.6 christos OPENSSL_free(curves);
398 1.6 christos #endif
399 1.6 christos }
400