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Fabio Utzigba05f2a2017-12-05 11:00:41 -02001/**
2 * \file ecdsa.h
3 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -02004 * \brief This file contains ECDSA definitions and functions.
Fabio Utzigba05f2a2017-12-05 11:00:41 -02005 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -02006 * The Elliptic Curve Digital Signature Algorithm (ECDSA) is defined in
7 * <em>Standards for Efficient Cryptography Group (SECG):
8 * SEC1 Elliptic Curve Cryptography</em>.
9 * The use of ECDSA for TLS is defined in <em>RFC-4492: Elliptic Curve
10 * Cryptography (ECC) Cipher Suites for Transport Layer Security (TLS)</em>.
11 *
12 */
13/*
14 * Copyright (C) 2006-2018, Arm Limited (or its affiliates), All Rights Reserved
Fabio Utzigba05f2a2017-12-05 11:00:41 -020015 * SPDX-License-Identifier: Apache-2.0
16 *
17 * Licensed under the Apache License, Version 2.0 (the "License"); you may
18 * not use this file except in compliance with the License.
19 * You may obtain a copy of the License at
20 *
21 * http://www.apache.org/licenses/LICENSE-2.0
22 *
23 * Unless required by applicable law or agreed to in writing, software
24 * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
25 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
26 * See the License for the specific language governing permissions and
27 * limitations under the License.
28 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -020029 * This file is part of Mbed TLS (https://tls.mbed.org)
Fabio Utzigba05f2a2017-12-05 11:00:41 -020030 */
Fabio Utzig3ac36ea2018-12-27 12:35:39 -020031
Fabio Utzigba05f2a2017-12-05 11:00:41 -020032#ifndef MBEDTLS_ECDSA_H
33#define MBEDTLS_ECDSA_H
34
35#include "ecp.h"
36#include "md.h"
37
38/*
Fabio Utzig3ac36ea2018-12-27 12:35:39 -020039 * RFC-4492 page 20:
Fabio Utzigba05f2a2017-12-05 11:00:41 -020040 *
41 * Ecdsa-Sig-Value ::= SEQUENCE {
42 * r INTEGER,
43 * s INTEGER
44 * }
45 *
46 * Size is at most
47 * 1 (tag) + 1 (len) + 1 (initial 0) + ECP_MAX_BYTES for each of r and s,
48 * twice that + 1 (tag) + 2 (len) for the sequence
49 * (assuming ECP_MAX_BYTES is less than 126 for r and s,
50 * and less than 124 (total len <= 255) for the sequence)
51 */
52#if MBEDTLS_ECP_MAX_BYTES > 124
53#error "MBEDTLS_ECP_MAX_BYTES bigger than expected, please fix MBEDTLS_ECDSA_MAX_LEN"
54#endif
Fabio Utzig3ac36ea2018-12-27 12:35:39 -020055/** The maximal size of an ECDSA signature in Bytes. */
Fabio Utzigba05f2a2017-12-05 11:00:41 -020056#define MBEDTLS_ECDSA_MAX_LEN ( 3 + 2 * ( 3 + MBEDTLS_ECP_MAX_BYTES ) )
57
Fabio Utzigba05f2a2017-12-05 11:00:41 -020058#ifdef __cplusplus
59extern "C" {
60#endif
61
62/**
Fabio Utzig3ac36ea2018-12-27 12:35:39 -020063 * \brief The ECDSA context structure.
Fabio Utzigba05f2a2017-12-05 11:00:41 -020064 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -020065 * \warning Performing multiple operations concurrently on the same
66 * ECDSA context is not supported; objects of this type
67 * should not be shared between multiple threads.
68 */
69typedef mbedtls_ecp_keypair mbedtls_ecdsa_context;
70
71#if defined(MBEDTLS_ECP_RESTARTABLE)
72
73/**
74 * \brief Internal restart context for ecdsa_verify()
Fabio Utzigba05f2a2017-12-05 11:00:41 -020075 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -020076 * \note Opaque struct, defined in ecdsa.c
77 */
78typedef struct mbedtls_ecdsa_restart_ver mbedtls_ecdsa_restart_ver_ctx;
79
80/**
81 * \brief Internal restart context for ecdsa_sign()
82 *
83 * \note Opaque struct, defined in ecdsa.c
84 */
85typedef struct mbedtls_ecdsa_restart_sig mbedtls_ecdsa_restart_sig_ctx;
86
87#if defined(MBEDTLS_ECDSA_DETERMINISTIC)
88/**
89 * \brief Internal restart context for ecdsa_sign_det()
90 *
91 * \note Opaque struct, defined in ecdsa.c
92 */
93typedef struct mbedtls_ecdsa_restart_det mbedtls_ecdsa_restart_det_ctx;
94#endif
95
96/**
97 * \brief General context for resuming ECDSA operations
98 */
99typedef struct
100{
101 mbedtls_ecp_restart_ctx ecp; /*!< base context for ECP restart and
102 shared administrative info */
103 mbedtls_ecdsa_restart_ver_ctx *ver; /*!< ecdsa_verify() sub-context */
104 mbedtls_ecdsa_restart_sig_ctx *sig; /*!< ecdsa_sign() sub-context */
105#if defined(MBEDTLS_ECDSA_DETERMINISTIC)
106 mbedtls_ecdsa_restart_det_ctx *det; /*!< ecdsa_sign_det() sub-context */
107#endif
108} mbedtls_ecdsa_restart_ctx;
109
110#else /* MBEDTLS_ECP_RESTARTABLE */
111
112/* Now we can declare functions that take a pointer to that */
113typedef void mbedtls_ecdsa_restart_ctx;
114
115#endif /* MBEDTLS_ECP_RESTARTABLE */
116
117/**
118 * \brief This function computes the ECDSA signature of a
119 * previously-hashed message.
120 *
121 * \note The deterministic version is usually preferred.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200122 *
123 * \note If the bitlength of the message hash is larger than the
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200124 * bitlength of the group order, then the hash is truncated
125 * as defined in <em>Standards for Efficient Cryptography Group
126 * (SECG): SEC1 Elliptic Curve Cryptography</em>, section
127 * 4.1.3, step 5.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200128 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200129 * \see ecp.h
130 *
131 * \param grp The ECP group.
132 * \param r The first output integer.
133 * \param s The second output integer.
134 * \param d The private signing key.
135 * \param buf The message hash.
136 * \param blen The length of \p buf.
137 * \param f_rng The RNG function.
138 * \param p_rng The RNG context.
139 *
140 * \return \c 0 on success.
141 * \return An \c MBEDTLS_ERR_ECP_XXX
142 * or \c MBEDTLS_MPI_XXX error code on failure.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200143 */
144int mbedtls_ecdsa_sign( mbedtls_ecp_group *grp, mbedtls_mpi *r, mbedtls_mpi *s,
145 const mbedtls_mpi *d, const unsigned char *buf, size_t blen,
146 int (*f_rng)(void *, unsigned char *, size_t), void *p_rng );
147
148#if defined(MBEDTLS_ECDSA_DETERMINISTIC)
149/**
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200150 * \brief This function computes the ECDSA signature of a
151 * previously-hashed message, deterministic version.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200152 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200153 * For more information, see <em>RFC-6979: Deterministic
154 * Usage of the Digital Signature Algorithm (DSA) and Elliptic
155 * Curve Digital Signature Algorithm (ECDSA)</em>.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200156 *
157 * \note If the bitlength of the message hash is larger than the
158 * bitlength of the group order, then the hash is truncated as
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200159 * defined in <em>Standards for Efficient Cryptography Group
160 * (SECG): SEC1 Elliptic Curve Cryptography</em>, section
161 * 4.1.3, step 5.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200162 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200163 * \see ecp.h
164 *
165 * \param grp The ECP group.
166 * \param r The first output integer.
167 * \param s The second output integer.
168 * \param d The private signing key.
169 * \param buf The message hash.
170 * \param blen The length of \p buf.
171 * \param md_alg The MD algorithm used to hash the message.
172 *
173 * \return \c 0 on success.
174 * \return An \c MBEDTLS_ERR_ECP_XXX or \c MBEDTLS_MPI_XXX
175 * error code on failure.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200176 */
177int mbedtls_ecdsa_sign_det( mbedtls_ecp_group *grp, mbedtls_mpi *r, mbedtls_mpi *s,
178 const mbedtls_mpi *d, const unsigned char *buf, size_t blen,
179 mbedtls_md_type_t md_alg );
180#endif /* MBEDTLS_ECDSA_DETERMINISTIC */
181
182/**
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200183 * \brief This function verifies the ECDSA signature of a
184 * previously-hashed message.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200185 *
186 * \note If the bitlength of the message hash is larger than the
187 * bitlength of the group order, then the hash is truncated as
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200188 * defined in <em>Standards for Efficient Cryptography Group
189 * (SECG): SEC1 Elliptic Curve Cryptography</em>, section
190 * 4.1.4, step 3.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200191 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200192 * \see ecp.h
193 *
194 * \param grp The ECP group.
195 * \param buf The message hash.
196 * \param blen The length of \p buf.
197 * \param Q The public key to use for verification.
198 * \param r The first integer of the signature.
199 * \param s The second integer of the signature.
200 *
201 * \return \c 0 on success.
202 * \return #MBEDTLS_ERR_ECP_BAD_INPUT_DATA if the signature
203 * is invalid.
204 * \return An \c MBEDTLS_ERR_ECP_XXX or \c MBEDTLS_MPI_XXX
205 * error code on failure for any other reason.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200206 */
207int mbedtls_ecdsa_verify( mbedtls_ecp_group *grp,
208 const unsigned char *buf, size_t blen,
209 const mbedtls_ecp_point *Q, const mbedtls_mpi *r, const mbedtls_mpi *s);
210
211/**
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200212 * \brief This function computes the ECDSA signature and writes it
213 * to a buffer, serialized as defined in <em>RFC-4492:
214 * Elliptic Curve Cryptography (ECC) Cipher Suites for
215 * Transport Layer Security (TLS)</em>.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200216 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200217 * \warning It is not thread-safe to use the same context in
218 * multiple threads.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200219 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200220 * \note The deterministic version is used if
221 * #MBEDTLS_ECDSA_DETERMINISTIC is defined. For more
222 * information, see <em>RFC-6979: Deterministic Usage
223 * of the Digital Signature Algorithm (DSA) and Elliptic
224 * Curve Digital Signature Algorithm (ECDSA)</em>.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200225 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200226 * \note The \p sig buffer must be at least twice as large as the
227 * size of the curve used, plus 9. For example, 73 Bytes if
228 * a 256-bit curve is used. A buffer length of
229 * #MBEDTLS_ECDSA_MAX_LEN is always safe.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200230 *
231 * \note If the bitlength of the message hash is larger than the
232 * bitlength of the group order, then the hash is truncated as
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200233 * defined in <em>Standards for Efficient Cryptography Group
234 * (SECG): SEC1 Elliptic Curve Cryptography</em>, section
235 * 4.1.3, step 5.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200236 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200237 * \see ecp.h
238 *
239 * \param ctx The ECDSA context.
240 * \param md_alg The message digest that was used to hash the message.
241 * \param hash The message hash.
242 * \param hlen The length of the hash.
243 * \param sig The buffer that holds the signature.
244 * \param slen The length of the signature written.
245 * \param f_rng The RNG function.
246 * \param p_rng The RNG context.
247 *
248 * \return \c 0 on success.
249 * \return An \c MBEDTLS_ERR_ECP_XXX, \c MBEDTLS_ERR_MPI_XXX or
250 * \c MBEDTLS_ERR_ASN1_XXX error code on failure.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200251 */
252int mbedtls_ecdsa_write_signature( mbedtls_ecdsa_context *ctx, mbedtls_md_type_t md_alg,
253 const unsigned char *hash, size_t hlen,
254 unsigned char *sig, size_t *slen,
255 int (*f_rng)(void *, unsigned char *, size_t),
256 void *p_rng );
257
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200258/**
259 * \brief This function computes the ECDSA signature and writes it
260 * to a buffer, in a restartable way.
261 *
262 * \see \c mbedtls_ecdsa_write_signature()
263 *
264 * \note This function is like \c mbedtls_ecdsa_write_signature()
265 * but it can return early and restart according to the limit
266 * set with \c mbedtls_ecp_set_max_ops() to reduce blocking.
267 *
268 * \param ctx The ECDSA context.
269 * \param md_alg The message digest that was used to hash the message.
270 * \param hash The message hash.
271 * \param hlen The length of the hash.
272 * \param sig The buffer that holds the signature.
273 * \param slen The length of the signature written.
274 * \param f_rng The RNG function.
275 * \param p_rng The RNG context.
276 * \param rs_ctx The restart context (NULL disables restart).
277 *
278 * \return \c 0 on success.
279 * \return #MBEDTLS_ERR_ECP_IN_PROGRESS if maximum number of
280 * operations was reached: see \c mbedtls_ecp_set_max_ops().
281 * \return Another \c MBEDTLS_ERR_ECP_XXX, \c MBEDTLS_ERR_MPI_XXX or
282 * \c MBEDTLS_ERR_ASN1_XXX error code on failure.
283 */
284int mbedtls_ecdsa_write_signature_restartable( mbedtls_ecdsa_context *ctx,
285 mbedtls_md_type_t md_alg,
286 const unsigned char *hash, size_t hlen,
287 unsigned char *sig, size_t *slen,
288 int (*f_rng)(void *, unsigned char *, size_t),
289 void *p_rng,
290 mbedtls_ecdsa_restart_ctx *rs_ctx );
291
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200292#if defined(MBEDTLS_ECDSA_DETERMINISTIC)
293#if ! defined(MBEDTLS_DEPRECATED_REMOVED)
294#if defined(MBEDTLS_DEPRECATED_WARNING)
295#define MBEDTLS_DEPRECATED __attribute__((deprecated))
296#else
297#define MBEDTLS_DEPRECATED
298#endif
299/**
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200300 * \brief This function computes an ECDSA signature and writes
301 * it to a buffer, serialized as defined in <em>RFC-4492:
302 * Elliptic Curve Cryptography (ECC) Cipher Suites for
303 * Transport Layer Security (TLS)</em>.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200304 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200305 * The deterministic version is defined in <em>RFC-6979:
306 * Deterministic Usage of the Digital Signature Algorithm (DSA)
307 * and Elliptic Curve Digital Signature Algorithm (ECDSA)</em>.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200308 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200309 * \warning It is not thread-safe to use the same context in
310 * multiple threads.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200311 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200312 * \note The \p sig buffer must be at least twice as large as the
313 * size of the curve used, plus 9. For example, 73 Bytes if a
314 * 256-bit curve is used. A buffer length of
315 * #MBEDTLS_ECDSA_MAX_LEN is always safe.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200316 *
317 * \note If the bitlength of the message hash is larger than the
318 * bitlength of the group order, then the hash is truncated as
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200319 * defined in <em>Standards for Efficient Cryptography Group
320 * (SECG): SEC1 Elliptic Curve Cryptography</em>, section
321 * 4.1.3, step 5.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200322 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200323 * \see ecp.h
324 *
325 * \deprecated Superseded by mbedtls_ecdsa_write_signature() in
326 * Mbed TLS version 2.0 and later.
327 *
328 * \param ctx The ECDSA context.
329 * \param hash The message hash.
330 * \param hlen The length of the hash.
331 * \param sig The buffer that holds the signature.
332 * \param slen The length of the signature written.
333 * \param md_alg The MD algorithm used to hash the message.
334 *
335 * \return \c 0 on success.
336 * \return An \c MBEDTLS_ERR_ECP_XXX, \c MBEDTLS_ERR_MPI_XXX or
337 * \c MBEDTLS_ERR_ASN1_XXX error code on failure.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200338 */
339int mbedtls_ecdsa_write_signature_det( mbedtls_ecdsa_context *ctx,
340 const unsigned char *hash, size_t hlen,
341 unsigned char *sig, size_t *slen,
342 mbedtls_md_type_t md_alg ) MBEDTLS_DEPRECATED;
343#undef MBEDTLS_DEPRECATED
344#endif /* MBEDTLS_DEPRECATED_REMOVED */
345#endif /* MBEDTLS_ECDSA_DETERMINISTIC */
346
347/**
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200348 * \brief This function reads and verifies an ECDSA signature.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200349 *
350 * \note If the bitlength of the message hash is larger than the
351 * bitlength of the group order, then the hash is truncated as
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200352 * defined in <em>Standards for Efficient Cryptography Group
353 * (SECG): SEC1 Elliptic Curve Cryptography</em>, section
354 * 4.1.4, step 3.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200355 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200356 * \see ecp.h
357 *
358 * \param ctx The ECDSA context.
359 * \param hash The message hash.
360 * \param hlen The size of the hash.
361 * \param sig The signature to read and verify.
362 * \param slen The size of \p sig.
363 *
364 * \return \c 0 on success.
365 * \return #MBEDTLS_ERR_ECP_BAD_INPUT_DATA if signature is invalid.
366 * \return #MBEDTLS_ERR_ECP_SIG_LEN_MISMATCH if there is a valid
367 * signature in \p sig, but its length is less than \p siglen.
368 * \return An \c MBEDTLS_ERR_ECP_XXX or \c MBEDTLS_ERR_MPI_XXX
369 * error code on failure for any other reason.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200370 */
371int mbedtls_ecdsa_read_signature( mbedtls_ecdsa_context *ctx,
372 const unsigned char *hash, size_t hlen,
373 const unsigned char *sig, size_t slen );
374
375/**
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200376 * \brief This function reads and verifies an ECDSA signature,
377 * in a restartable way.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200378 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200379 * \see \c mbedtls_ecdsa_read_signature()
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200380 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200381 * \note This function is like \c mbedtls_ecdsa_read_signature()
382 * but it can return early and restart according to the limit
383 * set with \c mbedtls_ecp_set_max_ops() to reduce blocking.
384 *
385 * \param ctx The ECDSA context.
386 * \param hash The message hash.
387 * \param hlen The size of the hash.
388 * \param sig The signature to read and verify.
389 * \param slen The size of \p sig.
390 * \param rs_ctx The restart context (NULL disables restart).
391 *
392 * \return \c 0 on success.
393 * \return #MBEDTLS_ERR_ECP_BAD_INPUT_DATA if signature is invalid.
394 * \return #MBEDTLS_ERR_ECP_SIG_LEN_MISMATCH if there is a valid
395 * signature in \p sig, but its length is less than \p siglen.
396 * \return #MBEDTLS_ERR_ECP_IN_PROGRESS if maximum number of
397 * operations was reached: see \c mbedtls_ecp_set_max_ops().
398 * \return Another \c MBEDTLS_ERR_ECP_XXX or \c MBEDTLS_ERR_MPI_XXX
399 * error code on failure for any other reason.
400 */
401int mbedtls_ecdsa_read_signature_restartable( mbedtls_ecdsa_context *ctx,
402 const unsigned char *hash, size_t hlen,
403 const unsigned char *sig, size_t slen,
404 mbedtls_ecdsa_restart_ctx *rs_ctx );
405
406/**
407 * \brief This function generates an ECDSA keypair on the given curve.
408 *
409 * \see ecp.h
410 *
411 * \param ctx The ECDSA context to store the keypair in.
412 * \param gid The elliptic curve to use. One of the various
413 * \c MBEDTLS_ECP_DP_XXX macros depending on configuration.
414 * \param f_rng The RNG function.
415 * \param p_rng The RNG context.
416 *
417 * \return \c 0 on success.
418 * \return An \c MBEDTLS_ERR_ECP_XXX code on failure.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200419 */
420int mbedtls_ecdsa_genkey( mbedtls_ecdsa_context *ctx, mbedtls_ecp_group_id gid,
421 int (*f_rng)(void *, unsigned char *, size_t), void *p_rng );
422
423/**
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200424 * \brief This function sets an ECDSA context from an EC key pair.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200425 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200426 * \see ecp.h
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200427 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200428 * \param ctx The ECDSA context to set.
429 * \param key The EC key to use.
430 *
431 * \return \c 0 on success.
432 * \return An \c MBEDTLS_ERR_ECP_XXX code on failure.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200433 */
434int mbedtls_ecdsa_from_keypair( mbedtls_ecdsa_context *ctx, const mbedtls_ecp_keypair *key );
435
436/**
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200437 * \brief This function initializes an ECDSA context.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200438 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200439 * \param ctx The ECDSA context to initialize.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200440 */
441void mbedtls_ecdsa_init( mbedtls_ecdsa_context *ctx );
442
443/**
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200444 * \brief This function frees an ECDSA context.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200445 *
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200446 * \param ctx The ECDSA context to free.
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200447 */
448void mbedtls_ecdsa_free( mbedtls_ecdsa_context *ctx );
449
Fabio Utzig3ac36ea2018-12-27 12:35:39 -0200450#if defined(MBEDTLS_ECP_RESTARTABLE)
451/**
452 * \brief Initialize a restart context
453 */
454void mbedtls_ecdsa_restart_init( mbedtls_ecdsa_restart_ctx *ctx );
455
456/**
457 * \brief Free the components of a restart context
458 */
459void mbedtls_ecdsa_restart_free( mbedtls_ecdsa_restart_ctx *ctx );
460#endif /* MBEDTLS_ECP_RESTARTABLE */
461
Fabio Utzigba05f2a2017-12-05 11:00:41 -0200462#ifdef __cplusplus
463}
464#endif
465
466#endif /* ecdsa.h */