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Gilles Peskinee59236f2018-01-27 23:32:46 +01001/**
2 * \file psa/crypto.h
3 * \brief Platform Security Architecture cryptography module
4 */
Jaeden Amerocab54942018-07-25 13:26:13 +01005/*
6 * Copyright (C) 2018, ARM Limited, All Rights Reserved
7 * SPDX-License-Identifier: Apache-2.0
8 *
9 * Licensed under the Apache License, Version 2.0 (the "License"); you may
10 * not use this file except in compliance with the License.
11 * You may obtain a copy of the License at
12 *
13 * http://www.apache.org/licenses/LICENSE-2.0
14 *
15 * Unless required by applicable law or agreed to in writing, software
16 * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
17 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
18 * See the License for the specific language governing permissions and
19 * limitations under the License.
20 */
Gilles Peskinee59236f2018-01-27 23:32:46 +010021
22#ifndef PSA_CRYPTO_H
23#define PSA_CRYPTO_H
24
25#include "crypto_platform.h"
26
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +010027#include <stddef.h>
28
Gilles Peskine62a7e7e2018-02-07 21:54:47 +010029#ifdef __DOXYGEN_ONLY__
Gilles Peskinef5b9fa12018-03-07 16:40:18 +010030/* This __DOXYGEN_ONLY__ block contains mock definitions for things that
31 * must be defined in the crypto_platform.h header. These mock definitions
32 * are present in this file as a convenience to generate pretty-printed
33 * documentation that includes those definitions. */
34
Gilles Peskine62a7e7e2018-02-07 21:54:47 +010035/** \defgroup platform Implementation-specific definitions
36 * @{
37 */
38
Gilles Peskineae32aac2018-11-30 14:39:32 +010039/** \brief Key handle.
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +010040 *
Gilles Peskineae32aac2018-11-30 14:39:32 +010041 * This type represents open handles to keys. It must be an unsigned integral
Gilles Peskine308b91d2018-02-08 09:47:44 +010042 * type. The choice of type is implementation-dependent.
Gilles Peskineae32aac2018-11-30 14:39:32 +010043 *
Gilles Peskine23fd2bd2018-12-11 15:51:32 +010044 * 0 is not a valid key handle. How other handle values are assigned is
45 * implementation-dependent.
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +010046 */
Gilles Peskineae32aac2018-11-30 14:39:32 +010047typedef _unsigned_integral_type_ psa_key_handle_t;
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +010048
Gilles Peskine62a7e7e2018-02-07 21:54:47 +010049/**@}*/
Gilles Peskinef5b9fa12018-03-07 16:40:18 +010050#endif /* __DOXYGEN_ONLY__ */
Gilles Peskine62a7e7e2018-02-07 21:54:47 +010051
Gilles Peskinee59236f2018-01-27 23:32:46 +010052#ifdef __cplusplus
53extern "C" {
54#endif
55
Gilles Peskinef3b731e2018-12-12 13:38:31 +010056/* The file "crypto_types.h" declares types that encode errors,
57 * algorithms, key types, policies, etc. */
58#include "crypto_types.h"
59
60/* The file "crypto_values.h" declares macros to build and analyze values
61 * of integral types defined in "crypto_types.h". */
62#include "crypto_values.h"
63
64/** \defgroup initialization Library initialization
Gilles Peskinee59236f2018-01-27 23:32:46 +010065 * @{
66 */
67
68/**
Gilles Peskinee59236f2018-01-27 23:32:46 +010069 * \brief Library initialization.
70 *
71 * Applications must call this function before calling any other
72 * function in this module.
73 *
74 * Applications may call this function more than once. Once a call
75 * succeeds, subsequent calls are guaranteed to succeed.
76 *
itayzafrir18617092018-09-16 12:22:41 +030077 * If the application calls other functions before calling psa_crypto_init(),
78 * the behavior is undefined. Implementations are encouraged to either perform
79 * the operation as if the library had been initialized or to return
80 * #PSA_ERROR_BAD_STATE or some other applicable error. In particular,
81 * implementations should not return a success status if the lack of
82 * initialization may have security implications, for example due to improper
83 * seeding of the random number generator.
84 *
Gilles Peskine28538492018-07-11 17:34:00 +020085 * \retval #PSA_SUCCESS
86 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
87 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
88 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +020089 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Gilles Peskine28538492018-07-11 17:34:00 +020090 * \retval #PSA_ERROR_INSUFFICIENT_ENTROPY
Gilles Peskinee59236f2018-01-27 23:32:46 +010091 */
92psa_status_t psa_crypto_init(void);
93
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +010094/**@}*/
95
Gilles Peskine105f67f2019-07-23 18:16:05 +020096/** \addtogroup attributes
Gilles Peskine87a5e562019-04-17 12:28:25 +020097 * @{
98 */
99
Gilles Peskinea0c06552019-05-21 15:54:54 +0200100/** \def PSA_KEY_ATTRIBUTES_INIT
101 *
102 * This macro returns a suitable initializer for a key attribute structure
103 * of type #psa_key_attributes_t.
104 */
105#ifdef __DOXYGEN_ONLY__
106/* This is an example definition for documentation purposes.
107 * Implementations should define a suitable value in `crypto_struct.h`.
108 */
109#define PSA_KEY_ATTRIBUTES_INIT {0}
110#endif
111
112/** Return an initial value for a key attributes structure.
113 */
114static psa_key_attributes_t psa_key_attributes_init(void);
115
Gilles Peskinedc8219a2019-05-15 16:11:15 +0200116/** Declare a key as persistent and set its key identifier.
Gilles Peskine20628592019-04-19 19:29:50 +0200117 *
Gilles Peskinef1b76942019-05-16 16:10:59 +0200118 * If the attribute structure currently declares the key as volatile (which
119 * is the default content of an attribute structure), this function sets
Gilles Peskinedc8219a2019-05-15 16:11:15 +0200120 * the lifetime attribute to #PSA_KEY_LIFETIME_PERSISTENT.
Gilles Peskine20628592019-04-19 19:29:50 +0200121 *
Gilles Peskinef1b76942019-05-16 16:10:59 +0200122 * This function does not access storage, it merely stores the given
123 * value in the structure.
124 * The persistent key will be written to storage when the attribute
125 * structure is passed to a key creation function such as
Gilles Peskine35ef36b2019-05-16 19:42:05 +0200126 * psa_import_key(), psa_generate_key(),
Gilles Peskinea99d3fb2019-05-16 15:28:51 +0200127 * psa_key_derivation_output_key() or psa_copy_key().
Gilles Peskine20628592019-04-19 19:29:50 +0200128 *
Gilles Peskine20628592019-04-19 19:29:50 +0200129 * This function may be declared as `static` (i.e. without external
130 * linkage). This function may be provided as a function-like macro,
131 * but in this case it must evaluate each of its arguments exactly once.
132 *
133 * \param[out] attributes The attribute structure to write to.
134 * \param id The persistent identifier for the key.
Gilles Peskinedc8219a2019-05-15 16:11:15 +0200135 */
136static void psa_set_key_id(psa_key_attributes_t *attributes,
137 psa_key_id_t id);
138
139/** Set the location of a persistent key.
140 *
141 * To make a key persistent, you must give it a persistent key identifier
Gilles Peskinef1b76942019-05-16 16:10:59 +0200142 * with psa_set_key_id(). By default, a key that has a persistent identifier
143 * is stored in the default storage area identifier by
144 * #PSA_KEY_LIFETIME_PERSISTENT. Call this function to choose a storage
145 * area, or to explicitly declare the key as volatile.
Gilles Peskinedc8219a2019-05-15 16:11:15 +0200146 *
Gilles Peskinef1b76942019-05-16 16:10:59 +0200147 * This function does not access storage, it merely stores the given
148 * value in the structure.
149 * The persistent key will be written to storage when the attribute
150 * structure is passed to a key creation function such as
Gilles Peskine35ef36b2019-05-16 19:42:05 +0200151 * psa_import_key(), psa_generate_key(),
Gilles Peskinea99d3fb2019-05-16 15:28:51 +0200152 * psa_key_derivation_output_key() or psa_copy_key().
Gilles Peskinedc8219a2019-05-15 16:11:15 +0200153 *
154 * This function may be declared as `static` (i.e. without external
155 * linkage). This function may be provided as a function-like macro,
156 * but in this case it must evaluate each of its arguments exactly once.
157 *
158 * \param[out] attributes The attribute structure to write to.
Gilles Peskine20628592019-04-19 19:29:50 +0200159 * \param lifetime The lifetime for the key.
160 * If this is #PSA_KEY_LIFETIME_VOLATILE, the
Gilles Peskinedc8219a2019-05-15 16:11:15 +0200161 * key will be volatile, and the key identifier
162 * attribute is reset to 0.
Gilles Peskine20628592019-04-19 19:29:50 +0200163 */
Gilles Peskinedc8219a2019-05-15 16:11:15 +0200164static void psa_set_key_lifetime(psa_key_attributes_t *attributes,
165 psa_key_lifetime_t lifetime);
Gilles Peskine4747d192019-04-17 15:05:45 +0200166
Gilles Peskine20628592019-04-19 19:29:50 +0200167/** Retrieve the key identifier from key attributes.
168 *
169 * This function may be declared as `static` (i.e. without external
170 * linkage). This function may be provided as a function-like macro,
171 * but in this case it must evaluate its argument exactly once.
172 *
173 * \param[in] attributes The key attribute structure to query.
174 *
175 * \return The persistent identifier stored in the attribute structure.
176 * This value is unspecified if the attribute structure declares
177 * the key as volatile.
178 */
Gilles Peskine4747d192019-04-17 15:05:45 +0200179static psa_key_id_t psa_get_key_id(const psa_key_attributes_t *attributes);
180
Gilles Peskine20628592019-04-19 19:29:50 +0200181/** Retrieve the lifetime from key attributes.
182 *
183 * This function may be declared as `static` (i.e. without external
184 * linkage). This function may be provided as a function-like macro,
185 * but in this case it must evaluate its argument exactly once.
186 *
187 * \param[in] attributes The key attribute structure to query.
188 *
189 * \return The lifetime value stored in the attribute structure.
190 */
Gilles Peskine4747d192019-04-17 15:05:45 +0200191static psa_key_lifetime_t psa_get_key_lifetime(
192 const psa_key_attributes_t *attributes);
193
Gilles Peskine20628592019-04-19 19:29:50 +0200194/** Declare usage flags for a key.
195 *
196 * Usage flags are part of a key's usage policy. They encode what
197 * kind of operations are permitted on the key. For more details,
198 * refer to the documentation of the type #psa_key_usage_t.
199 *
200 * This function overwrites any usage flags
201 * previously set in \p attributes.
202 *
203 * This function may be declared as `static` (i.e. without external
204 * linkage). This function may be provided as a function-like macro,
205 * but in this case it must evaluate each of its arguments exactly once.
206 *
207 * \param[out] attributes The attribute structure to write to.
208 * \param usage_flags The usage flags to write.
209 */
Gilles Peskine4747d192019-04-17 15:05:45 +0200210static void psa_set_key_usage_flags(psa_key_attributes_t *attributes,
211 psa_key_usage_t usage_flags);
212
Gilles Peskine20628592019-04-19 19:29:50 +0200213/** Retrieve the usage flags from key attributes.
214 *
215 * This function may be declared as `static` (i.e. without external
216 * linkage). This function may be provided as a function-like macro,
217 * but in this case it must evaluate its argument exactly once.
218 *
219 * \param[in] attributes The key attribute structure to query.
220 *
221 * \return The usage flags stored in the attribute structure.
222 */
Gilles Peskine4747d192019-04-17 15:05:45 +0200223static psa_key_usage_t psa_get_key_usage_flags(
224 const psa_key_attributes_t *attributes);
225
Gilles Peskine20628592019-04-19 19:29:50 +0200226/** Declare the permitted algorithm policy for a key.
227 *
228 * The permitted algorithm policy of a key encodes which algorithm or
229 * algorithms are permitted to be used with this key.
230 *
231 * This function overwrites any algorithm policy
232 * previously set in \p attributes.
233 *
234 * This function may be declared as `static` (i.e. without external
235 * linkage). This function may be provided as a function-like macro,
236 * but in this case it must evaluate each of its arguments exactly once.
237 *
238 * \param[out] attributes The attribute structure to write to.
239 * \param alg The permitted algorithm policy to write.
240 */
Gilles Peskine4747d192019-04-17 15:05:45 +0200241static void psa_set_key_algorithm(psa_key_attributes_t *attributes,
242 psa_algorithm_t alg);
243
Adrian L. Shaw67e1c7a2019-05-14 15:24:21 +0100244
Gilles Peskine20628592019-04-19 19:29:50 +0200245/** Retrieve the algorithm policy from key attributes.
246 *
247 * This function may be declared as `static` (i.e. without external
248 * linkage). This function may be provided as a function-like macro,
249 * but in this case it must evaluate its argument exactly once.
250 *
251 * \param[in] attributes The key attribute structure to query.
252 *
253 * \return The algorithm stored in the attribute structure.
254 */
Gilles Peskine4747d192019-04-17 15:05:45 +0200255static psa_algorithm_t psa_get_key_algorithm(
256 const psa_key_attributes_t *attributes);
257
Gilles Peskine20628592019-04-19 19:29:50 +0200258/** Declare the type of a key.
259 *
Gilles Peskine24f10f82019-05-16 12:18:32 +0200260 * This function overwrites any key type
Gilles Peskine20628592019-04-19 19:29:50 +0200261 * previously set in \p attributes.
262 *
263 * This function may be declared as `static` (i.e. without external
264 * linkage). This function may be provided as a function-like macro,
265 * but in this case it must evaluate each of its arguments exactly once.
266 *
267 * \param[out] attributes The attribute structure to write to.
268 * \param type The key type to write.
269 */
Gilles Peskine4747d192019-04-17 15:05:45 +0200270static void psa_set_key_type(psa_key_attributes_t *attributes,
271 psa_key_type_t type);
272
Adrian L. Shaw67e1c7a2019-05-14 15:24:21 +0100273
Gilles Peskine3a4f1f82019-04-26 13:49:28 +0200274/** Declare the size of a key.
275 *
276 * This function overwrites any key size previously set in \p attributes.
277 *
278 * This function may be declared as `static` (i.e. without external
279 * linkage). This function may be provided as a function-like macro,
280 * but in this case it must evaluate each of its arguments exactly once.
281 *
282 * \param[out] attributes The attribute structure to write to.
283 * \param bits The key size in bits.
284 */
285static void psa_set_key_bits(psa_key_attributes_t *attributes,
286 size_t bits);
287
Gilles Peskine20628592019-04-19 19:29:50 +0200288/** Retrieve the key type from key attributes.
289 *
290 * This function may be declared as `static` (i.e. without external
291 * linkage). This function may be provided as a function-like macro,
292 * but in this case it must evaluate its argument exactly once.
293 *
294 * \param[in] attributes The key attribute structure to query.
295 *
296 * \return The key type stored in the attribute structure.
297 */
Gilles Peskine4747d192019-04-17 15:05:45 +0200298static psa_key_type_t psa_get_key_type(const psa_key_attributes_t *attributes);
299
Gilles Peskine20628592019-04-19 19:29:50 +0200300/** Retrieve the key size from key attributes.
301 *
302 * This function may be declared as `static` (i.e. without external
303 * linkage). This function may be provided as a function-like macro,
304 * but in this case it must evaluate its argument exactly once.
305 *
306 * \param[in] attributes The key attribute structure to query.
307 *
308 * \return The key size stored in the attribute structure, in bits.
309 */
Gilles Peskine4747d192019-04-17 15:05:45 +0200310static size_t psa_get_key_bits(const psa_key_attributes_t *attributes);
311
Gilles Peskine20628592019-04-19 19:29:50 +0200312/** Retrieve the attributes of a key.
313 *
314 * This function first resets the attribute structure as with
Gilles Peskine9c640f92019-04-28 11:36:21 +0200315 * psa_reset_key_attributes(). It then copies the attributes of
316 * the given key into the given attribute structure.
Gilles Peskine20628592019-04-19 19:29:50 +0200317 *
Gilles Peskine9c640f92019-04-28 11:36:21 +0200318 * \note This function may allocate memory or other resources.
319 * Once you have called this function on an attribute structure,
320 * you must call psa_reset_key_attributes() to free these resources.
Gilles Peskine20628592019-04-19 19:29:50 +0200321 *
Gilles Peskine20628592019-04-19 19:29:50 +0200322 * \param[in] handle Handle to the key to query.
323 * \param[in,out] attributes On success, the attributes of the key.
324 * On failure, equivalent to a
325 * freshly-initialized structure.
326 *
327 * \retval #PSA_SUCCESS
328 * \retval #PSA_ERROR_INVALID_HANDLE
329 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
330 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
Adrian L. Shaw29b64072019-08-06 16:02:12 +0100331 * \retval #PSA_ERROR_CORRUPTION_DETECTED
332 * \retval #PSA_ERROR_STORAGE_FAILURE
Adrian L. Shawdec47b62019-08-07 14:25:38 +0100333 * \retval #PSA_ERROR_BAD_STATE
334 * The library has not been previously initialized by psa_crypto_init().
335 * It is implementation-dependent whether a failure to initialize
336 * results in this error code.
Gilles Peskine20628592019-04-19 19:29:50 +0200337 */
Gilles Peskine4747d192019-04-17 15:05:45 +0200338psa_status_t psa_get_key_attributes(psa_key_handle_t handle,
339 psa_key_attributes_t *attributes);
340
Gilles Peskine20628592019-04-19 19:29:50 +0200341/** Reset a key attribute structure to a freshly initialized state.
342 *
343 * You must initialize the attribute structure as described in the
344 * documentation of the type #psa_key_attributes_t before calling this
345 * function. Once the structure has been initialized, you may call this
346 * function at any time.
347 *
348 * This function frees any auxiliary resources that the structure
349 * may contain.
350 *
351 * \param[in,out] attributes The attribute structure to reset.
352 */
Gilles Peskine8c8f2ab2019-04-18 21:44:46 +0200353void psa_reset_key_attributes(psa_key_attributes_t *attributes);
Gilles Peskine4747d192019-04-17 15:05:45 +0200354
Gilles Peskine87a5e562019-04-17 12:28:25 +0200355/**@}*/
356
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100357/** \defgroup key_management Key management
358 * @{
359 */
360
Gilles Peskinef535eb22018-11-30 14:08:36 +0100361/** Open a handle to an existing persistent key.
362 *
Gilles Peskine4754cde2019-05-21 15:56:29 +0200363 * Open a handle to a persistent key. A key is persistent if it was created
364 * with a lifetime other than #PSA_KEY_LIFETIME_VOLATILE. A persistent key
365 * always has a nonzero key identifier, set with psa_set_key_id() when
366 * creating the key. Implementations may provide additional pre-provisioned
Andrew Thoelke203491c2019-08-21 17:55:30 +0100367 * keys that can be opened with psa_open_key(). Such keys have a key identifier
368 * in the vendor range, as documented in the description of #psa_key_id_t.
Gilles Peskine4754cde2019-05-21 15:56:29 +0200369 *
370 * The application must eventually close the handle with psa_close_key()
371 * to release associated resources. If the application dies without calling
372 * psa_close_key(), the implementation should perform the equivalent of a
373 * call to psa_close_key().
Gilles Peskinef535eb22018-11-30 14:08:36 +0100374 *
Andrew Thoelke9741b112019-08-21 18:20:41 +0100375 * Some implementations permit an application to open the same key multiple
376 * times. Applications that rely on this behavior will not be portable to
377 * implementations that only permit a single key handle to be opened. See
378 * also :ref:\`key-handles\`.
379 *
Gilles Peskinef535eb22018-11-30 14:08:36 +0100380 * \param id The persistent identifier of the key.
Adrian L. Shaw67e1c7a2019-05-14 15:24:21 +0100381 * \param[out] handle On success, a handle to the key.
Gilles Peskinef535eb22018-11-30 14:08:36 +0100382 *
383 * \retval #PSA_SUCCESS
384 * Success. The application can now use the value of `*handle`
Adrian L. Shaw67e1c7a2019-05-14 15:24:21 +0100385 * to access the key.
Gilles Peskinef535eb22018-11-30 14:08:36 +0100386 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
Andrew Thoelke9741b112019-08-21 18:20:41 +0100387 * The implementation does not have sufficient resources to open the
388 * key. This can be due to reaching an implementation limit on the
389 * number of open keys, the number of open key handles, or available
390 * memory.
David Saadab4ecc272019-02-14 13:48:10 +0200391 * \retval #PSA_ERROR_DOES_NOT_EXIST
Andrew Thoelke9741b112019-08-21 18:20:41 +0100392 * There is no persistent key with key identifier \p id.
Gilles Peskinef535eb22018-11-30 14:08:36 +0100393 * \retval #PSA_ERROR_INVALID_ARGUMENT
Andrew Thoelke9741b112019-08-21 18:20:41 +0100394 * \p id is not a valid persistent key identifier.
Gilles Peskinef535eb22018-11-30 14:08:36 +0100395 * \retval #PSA_ERROR_NOT_PERMITTED
396 * The specified key exists, but the application does not have the
397 * permission to access it. Note that this specification does not
398 * define any way to create such a key, but it may be possible
399 * through implementation-specific means.
Gilles Peskine225010f2019-05-06 18:44:55 +0200400 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
401 * \retval #PSA_ERROR_STORAGE_FAILURE
Adrian L. Shawdec47b62019-08-07 14:25:38 +0100402 * \retval #PSA_ERROR_BAD_STATE
403 * The library has not been previously initialized by psa_crypto_init().
404 * It is implementation-dependent whether a failure to initialize
405 * results in this error code.
Gilles Peskinef535eb22018-11-30 14:08:36 +0100406 */
Gilles Peskine225010f2019-05-06 18:44:55 +0200407psa_status_t psa_open_key(psa_key_id_t id,
Gilles Peskinef535eb22018-11-30 14:08:36 +0100408 psa_key_handle_t *handle);
409
Adrian L. Shaw67e1c7a2019-05-14 15:24:21 +0100410
Gilles Peskinef535eb22018-11-30 14:08:36 +0100411/** Close a key handle.
412 *
Andrew Thoelke3daba812019-08-21 22:46:56 +0100413 * If the handle designates a volatile key, this will destroy the key material
414 * and free all associated resources, just like psa_destroy_key().
Gilles Peskinef535eb22018-11-30 14:08:36 +0100415 *
Andrew Thoelke3daba812019-08-21 22:46:56 +0100416 * If this is the last open handle to a persistent key, then closing the handle
417 * will free all resources associated with the key in volatile memory. The key
418 * data in persistent storage is not affected and can be opened again later
419 * with a call to psa_open_key().
Gilles Peskinef535eb22018-11-30 14:08:36 +0100420 *
Andrew Thoelke3daba812019-08-21 22:46:56 +0100421 * Closing the key handle makes the handle invalid, and the key handle
Andrew Thoelke8824dae2019-08-22 15:04:48 +0100422 * must not be used again by the application.
Andrew Thoelke3daba812019-08-21 22:46:56 +0100423 *
424 * If the key is currently in use in a multipart operation, then closing the
Andrew Thoelke8824dae2019-08-22 15:04:48 +0100425 * last remaining handle to the key will abort the multipart operation.
Gilles Peskine5f25dd02019-01-14 18:24:53 +0100426 *
Gilles Peskinef535eb22018-11-30 14:08:36 +0100427 * \param handle The key handle to close.
428 *
429 * \retval #PSA_SUCCESS
430 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskineae32aac2018-11-30 14:39:32 +0100431 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
Adrian L. Shawdec47b62019-08-07 14:25:38 +0100432 * \retval #PSA_ERROR_BAD_STATE
433 * The library has not been previously initialized by psa_crypto_init().
434 * It is implementation-dependent whether a failure to initialize
435 * results in this error code.
Gilles Peskinef535eb22018-11-30 14:08:36 +0100436 */
437psa_status_t psa_close_key(psa_key_handle_t handle);
438
Gilles Peskine3cac8c42018-11-30 14:07:45 +0100439/**@}*/
440
441/** \defgroup import_export Key import and export
442 * @{
443 */
444
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100445/**
446 * \brief Import a key in binary format.
447 *
Gilles Peskinef5b9fa12018-03-07 16:40:18 +0100448 * This function supports any output from psa_export_key(). Refer to the
Gilles Peskinef7933932018-10-31 14:07:52 +0100449 * documentation of psa_export_public_key() for the format of public keys
450 * and to the documentation of psa_export_key() for the format for
451 * other key types.
452 *
453 * This specification supports a single format for each key type.
454 * Implementations may support other formats as long as the standard
455 * format is supported. Implementations that support other formats
456 * should ensure that the formats are clearly unambiguous so as to
457 * minimize the risk that an invalid input is accidentally interpreted
458 * according to a different format.
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100459 *
Adrian L. Shaw67e1c7a2019-05-14 15:24:21 +0100460
Gilles Peskine20628592019-04-19 19:29:50 +0200461 * \param[in] attributes The attributes for the new key.
Gilles Peskine4ce2a9d2019-05-03 16:57:15 +0200462 * The key size is always determined from the
463 * \p data buffer.
464 * If the key size in \p attributes is nonzero,
465 * it must be equal to the size from \p data.
Gilles Peskine20628592019-04-19 19:29:50 +0200466 * \param[out] handle On success, a handle to the newly created key.
467 * \c 0 on failure.
Gilles Peskinef7933932018-10-31 14:07:52 +0100468 * \param[in] data Buffer containing the key data. The content of this
Gilles Peskine24f10f82019-05-16 12:18:32 +0200469 * buffer is interpreted according to the type declared
470 * in \p attributes.
Gilles Peskine20628592019-04-19 19:29:50 +0200471 * All implementations must support at least the format
472 * described in the documentation
Gilles Peskinef7933932018-10-31 14:07:52 +0100473 * of psa_export_key() or psa_export_public_key() for
Gilles Peskine20628592019-04-19 19:29:50 +0200474 * the chosen type. Implementations may allow other
475 * formats, but should be conservative: implementations
476 * should err on the side of rejecting content if it
477 * may be erroneous (e.g. wrong type or truncated data).
Gilles Peskinefa4070c2018-07-12 19:23:03 +0200478 * \param data_length Size of the \p data buffer in bytes.
Gilles Peskine308b91d2018-02-08 09:47:44 +0100479 *
Gilles Peskine28538492018-07-11 17:34:00 +0200480 * \retval #PSA_SUCCESS
Gilles Peskine308b91d2018-02-08 09:47:44 +0100481 * Success.
Gilles Peskine23fd2bd2018-12-11 15:51:32 +0100482 * If the key is persistent, the key material and the key's metadata
483 * have been saved to persistent storage.
Gilles Peskine20628592019-04-19 19:29:50 +0200484 * \retval #PSA_ERROR_ALREADY_EXISTS
485 * This is an attempt to create a persistent key, and there is
486 * already a persistent key with the given identifier.
Gilles Peskine28538492018-07-11 17:34:00 +0200487 * \retval #PSA_ERROR_NOT_SUPPORTED
Gilles Peskine65eb8582018-04-19 08:28:58 +0200488 * The key type or key size is not supported, either by the
Gilles Peskine20628592019-04-19 19:29:50 +0200489 * implementation in general or in this particular persistent location.
Gilles Peskine28538492018-07-11 17:34:00 +0200490 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine4ce2a9d2019-05-03 16:57:15 +0200491 * The key attributes, as a whole, are invalid.
492 * \retval #PSA_ERROR_INVALID_ARGUMENT
493 * The key data is not correctly formatted.
494 * \retval #PSA_ERROR_INVALID_ARGUMENT
495 * The size in \p attributes is nonzero and does not match the size
496 * of the key data.
Gilles Peskine28538492018-07-11 17:34:00 +0200497 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
498 * \retval #PSA_ERROR_INSUFFICIENT_STORAGE
499 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
Darryl Greend49a4992018-06-18 17:27:26 +0100500 * \retval #PSA_ERROR_STORAGE_FAILURE
Gilles Peskine28538492018-07-11 17:34:00 +0200501 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +0200502 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir90d8c7a2018-09-12 11:44:52 +0300503 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +0300504 * The library has not been previously initialized by psa_crypto_init().
505 * It is implementation-dependent whether a failure to initialize
506 * results in this error code.
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100507 */
Gilles Peskine87a5e562019-04-17 12:28:25 +0200508psa_status_t psa_import_key(const psa_key_attributes_t *attributes,
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100509 const uint8_t *data,
Gilles Peskine73676cb2019-05-15 20:15:10 +0200510 size_t data_length,
511 psa_key_handle_t *handle);
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100512
513/**
Gilles Peskineae32aac2018-11-30 14:39:32 +0100514 * \brief Destroy a key.
Gilles Peskine154bd952018-04-19 08:38:16 +0200515 *
Adrian L. Shaw67e1c7a2019-05-14 15:24:21 +0100516 * This function destroys a key from both volatile
Gilles Peskine154bd952018-04-19 08:38:16 +0200517 * memory and, if applicable, non-volatile storage. Implementations shall
Adrian L. Shawd56456c2019-05-15 11:36:13 +0100518 * make a best effort to ensure that that the key material cannot be recovered.
Gilles Peskine154bd952018-04-19 08:38:16 +0200519 *
Gilles Peskineae32aac2018-11-30 14:39:32 +0100520 * This function also erases any metadata such as policies and frees all
521 * resources associated with the key.
Gilles Peskine154bd952018-04-19 08:38:16 +0200522 *
Andrew Thoelke07f16b72019-08-21 22:48:47 +0100523 * Destroying a key will invalidate all existing handles to the key.
524 *
525 * If the key is currently in use in a multipart operation, then destroying the
526 * key will abort the multipart operation.
527 *
Adrian L. Shaw67e1c7a2019-05-14 15:24:21 +0100528 * \param handle Handle to the key to erase.
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100529 *
Gilles Peskine28538492018-07-11 17:34:00 +0200530 * \retval #PSA_SUCCESS
Adrian L. Shawd56456c2019-05-15 11:36:13 +0100531 * The key material has been erased.
Gilles Peskine28538492018-07-11 17:34:00 +0200532 * \retval #PSA_ERROR_NOT_PERMITTED
Adrian L. Shaw0a695bd2019-05-15 13:28:41 +0100533 * The key cannot be erased because it is
Gilles Peskine65eb8582018-04-19 08:28:58 +0200534 * read-only, either due to a policy or due to physical restrictions.
Gilles Peskineae32aac2018-11-30 14:39:32 +0100535 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine28538492018-07-11 17:34:00 +0200536 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
Gilles Peskine65eb8582018-04-19 08:28:58 +0200537 * There was an failure in communication with the cryptoprocessor.
538 * The key material may still be present in the cryptoprocessor.
Gilles Peskine28538492018-07-11 17:34:00 +0200539 * \retval #PSA_ERROR_STORAGE_FAILURE
Gilles Peskine65eb8582018-04-19 08:28:58 +0200540 * The storage is corrupted. Implementations shall make a best effort
541 * to erase key material even in this stage, however applications
542 * should be aware that it may be impossible to guarantee that the
543 * key material is not recoverable in such cases.
Gilles Peskine4b3eb692019-05-16 21:35:18 +0200544 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Gilles Peskine65eb8582018-04-19 08:28:58 +0200545 * An unexpected condition which is not a storage corruption or
546 * a communication failure occurred. The cryptoprocessor may have
547 * been compromised.
itayzafrir90d8c7a2018-09-12 11:44:52 +0300548 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +0300549 * The library has not been previously initialized by psa_crypto_init().
550 * It is implementation-dependent whether a failure to initialize
551 * results in this error code.
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100552 */
Gilles Peskineae32aac2018-11-30 14:39:32 +0100553psa_status_t psa_destroy_key(psa_key_handle_t handle);
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100554
555/**
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100556 * \brief Export a key in binary format.
557 *
558 * The output of this function can be passed to psa_import_key() to
559 * create an equivalent object.
560 *
Gilles Peskinef7933932018-10-31 14:07:52 +0100561 * If the implementation of psa_import_key() supports other formats
562 * beyond the format specified here, the output from psa_export_key()
563 * must use the representation specified here, not the original
564 * representation.
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100565 *
Gilles Peskine308b91d2018-02-08 09:47:44 +0100566 * For standard key types, the output format is as follows:
567 *
568 * - For symmetric keys (including MAC keys), the format is the
569 * raw bytes of the key.
570 * - For DES, the key data consists of 8 bytes. The parity bits must be
571 * correct.
572 * - For Triple-DES, the format is the concatenation of the
573 * two or three DES keys.
Gilles Peskinec93b80c2019-05-16 19:39:54 +0200574 * - For RSA key pairs (#PSA_KEY_TYPE_RSA_KEY_PAIR), the format
Gilles Peskine4e1e9be2018-08-10 18:57:40 +0200575 * is the non-encrypted DER encoding of the representation defined by
576 * PKCS\#1 (RFC 8017) as `RSAPrivateKey`, version 0.
577 * ```
578 * RSAPrivateKey ::= SEQUENCE {
Gilles Peskine4f6c77b2018-08-11 01:17:53 +0200579 * version INTEGER, -- must be 0
Gilles Peskine4e1e9be2018-08-10 18:57:40 +0200580 * modulus INTEGER, -- n
581 * publicExponent INTEGER, -- e
582 * privateExponent INTEGER, -- d
583 * prime1 INTEGER, -- p
584 * prime2 INTEGER, -- q
585 * exponent1 INTEGER, -- d mod (p-1)
586 * exponent2 INTEGER, -- d mod (q-1)
587 * coefficient INTEGER, -- (inverse of q) mod p
588 * }
589 * ```
Gilles Peskine4e1e9be2018-08-10 18:57:40 +0200590 * - For elliptic curve key pairs (key types for which
Gilles Peskinec93b80c2019-05-16 19:39:54 +0200591 * #PSA_KEY_TYPE_IS_ECC_KEY_PAIR is true), the format is
Gilles Peskine6c6a0232018-11-15 17:44:43 +0100592 * a representation of the private value as a `ceiling(m/8)`-byte string
593 * where `m` is the bit size associated with the curve, i.e. the bit size
594 * of the order of the curve's coordinate field. This byte string is
595 * in little-endian order for Montgomery curves (curve types
596 * `PSA_ECC_CURVE_CURVEXXX`), and in big-endian order for Weierstrass
597 * curves (curve types `PSA_ECC_CURVE_SECTXXX`, `PSA_ECC_CURVE_SECPXXX`
598 * and `PSA_ECC_CURVE_BRAINPOOL_PXXX`).
Gilles Peskinef76aa772018-10-29 19:24:33 +0100599 * This is the content of the `privateKey` field of the `ECPrivateKey`
600 * format defined by RFC 5915.
Gilles Peskinedcaefae2019-05-16 12:55:35 +0200601 * - For Diffie-Hellman key exchange key pairs (key types for which
Gilles Peskinec93b80c2019-05-16 19:39:54 +0200602 * #PSA_KEY_TYPE_IS_DH_KEY_PAIR is true), the
Jaeden Amero8851c402019-01-11 14:20:03 +0000603 * format is the representation of the private key `x` as a big-endian byte
604 * string. The length of the byte string is the private key size in bytes
605 * (leading zeroes are not stripped).
Gilles Peskine4e1e9be2018-08-10 18:57:40 +0200606 * - For public keys (key types for which #PSA_KEY_TYPE_IS_PUBLIC_KEY is
607 * true), the format is the same as for psa_export_public_key().
Gilles Peskine308b91d2018-02-08 09:47:44 +0100608 *
Gilles Peskine4318dfc2019-05-14 14:23:32 +0200609 * The policy on the key must have the usage flag #PSA_KEY_USAGE_EXPORT set.
610 *
Gilles Peskineae32aac2018-11-30 14:39:32 +0100611 * \param handle Handle to the key to export.
Gilles Peskineedd11a12018-07-12 01:08:58 +0200612 * \param[out] data Buffer where the key data is to be written.
Gilles Peskinefa4070c2018-07-12 19:23:03 +0200613 * \param data_size Size of the \p data buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +0200614 * \param[out] data_length On success, the number of bytes
615 * that make up the key data.
Gilles Peskine308b91d2018-02-08 09:47:44 +0100616 *
Gilles Peskine28538492018-07-11 17:34:00 +0200617 * \retval #PSA_SUCCESS
Gilles Peskineae32aac2018-11-30 14:39:32 +0100618 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine28538492018-07-11 17:34:00 +0200619 * \retval #PSA_ERROR_NOT_PERMITTED
Gilles Peskine4318dfc2019-05-14 14:23:32 +0200620 * The key does not have the #PSA_KEY_USAGE_EXPORT flag.
Darryl Green9e2d7a02018-07-24 16:33:30 +0100621 * \retval #PSA_ERROR_NOT_SUPPORTED
Gilles Peskine1be949b2018-08-10 19:06:59 +0200622 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
623 * The size of the \p data buffer is too small. You can determine a
624 * sufficient buffer size by calling
625 * #PSA_KEY_EXPORT_MAX_SIZE(\c type, \c bits)
626 * where \c type is the key type
627 * and \c bits is the key size in bits.
Gilles Peskine28538492018-07-11 17:34:00 +0200628 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
629 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +0200630 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shaw89b71522019-08-06 16:21:00 +0100631 * \retval #PSA_ERROR_STORAGE_FAILURE
Adrian L. Shaw0542d592019-08-06 16:34:44 +0100632 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
itayzafrir90d8c7a2018-09-12 11:44:52 +0300633 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +0300634 * The library has not been previously initialized by psa_crypto_init().
635 * It is implementation-dependent whether a failure to initialize
636 * results in this error code.
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100637 */
Gilles Peskineae32aac2018-11-30 14:39:32 +0100638psa_status_t psa_export_key(psa_key_handle_t handle,
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +0100639 uint8_t *data,
640 size_t data_size,
641 size_t *data_length);
642
Gilles Peskine7698bcf2018-03-03 21:30:44 +0100643/**
644 * \brief Export a public key or the public part of a key pair in binary format.
645 *
646 * The output of this function can be passed to psa_import_key() to
647 * create an object that is equivalent to the public key.
648 *
Jaeden Amerod3a0c2c2019-01-11 17:15:56 +0000649 * This specification supports a single format for each key type.
650 * Implementations may support other formats as long as the standard
651 * format is supported. Implementations that support other formats
652 * should ensure that the formats are clearly unambiguous so as to
653 * minimize the risk that an invalid input is accidentally interpreted
654 * according to a different format.
655 *
Jaeden Amero6b196002019-01-10 10:23:21 +0000656 * For standard key types, the output format is as follows:
657 * - For RSA public keys (#PSA_KEY_TYPE_RSA_PUBLIC_KEY), the DER encoding of
658 * the representation defined by RFC 3279 &sect;2.3.1 as `RSAPublicKey`.
659 * ```
660 * RSAPublicKey ::= SEQUENCE {
661 * modulus INTEGER, -- n
662 * publicExponent INTEGER } -- e
663 * ```
Jaeden Amero0ae445f2019-01-10 11:42:27 +0000664 * - For elliptic curve public keys (key types for which
665 * #PSA_KEY_TYPE_IS_ECC_PUBLIC_KEY is true), the format is the uncompressed
666 * representation defined by SEC1 &sect;2.3.3 as the content of an ECPoint.
667 * Let `m` be the bit size associated with the curve, i.e. the bit size of
668 * `q` for a curve over `F_q`. The representation consists of:
669 * - The byte 0x04;
670 * - `x_P` as a `ceiling(m/8)`-byte string, big-endian;
671 * - `y_P` as a `ceiling(m/8)`-byte string, big-endian.
Gilles Peskinedcaefae2019-05-16 12:55:35 +0200672 * - For Diffie-Hellman key exchange public keys (key types for which
673 * #PSA_KEY_TYPE_IS_DH_PUBLIC_KEY is true),
Jaeden Amero8851c402019-01-11 14:20:03 +0000674 * the format is the representation of the public key `y = g^x mod p` as a
675 * big-endian byte string. The length of the byte string is the length of the
676 * base prime `p` in bytes.
Gilles Peskine7698bcf2018-03-03 21:30:44 +0100677 *
Gilles Peskine4318dfc2019-05-14 14:23:32 +0200678 * Exporting a public key object or the public part of a key pair is
679 * always permitted, regardless of the key's usage flags.
680 *
Gilles Peskineae32aac2018-11-30 14:39:32 +0100681 * \param handle Handle to the key to export.
Gilles Peskineedd11a12018-07-12 01:08:58 +0200682 * \param[out] data Buffer where the key data is to be written.
Gilles Peskinefa4070c2018-07-12 19:23:03 +0200683 * \param data_size Size of the \p data buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +0200684 * \param[out] data_length On success, the number of bytes
685 * that make up the key data.
Gilles Peskine7698bcf2018-03-03 21:30:44 +0100686 *
Gilles Peskine28538492018-07-11 17:34:00 +0200687 * \retval #PSA_SUCCESS
Gilles Peskineae32aac2018-11-30 14:39:32 +0100688 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine28538492018-07-11 17:34:00 +0200689 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine1be949b2018-08-10 19:06:59 +0200690 * The key is neither a public key nor a key pair.
691 * \retval #PSA_ERROR_NOT_SUPPORTED
692 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
693 * The size of the \p data buffer is too small. You can determine a
694 * sufficient buffer size by calling
Gilles Peskinec93b80c2019-05-16 19:39:54 +0200695 * #PSA_KEY_EXPORT_MAX_SIZE(#PSA_KEY_TYPE_PUBLIC_KEY_OF_KEY_PAIR(\c type), \c bits)
Gilles Peskine1be949b2018-08-10 19:06:59 +0200696 * where \c type is the key type
697 * and \c bits is the key size in bits.
Gilles Peskine28538492018-07-11 17:34:00 +0200698 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
699 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +0200700 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shaw398b3c22019-08-06 17:22:41 +0100701 * \retval #PSA_ERROR_STORAGE_FAILURE
Adrian L. Shaw88c51ad2019-08-06 17:09:33 +0100702 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
itayzafrir90d8c7a2018-09-12 11:44:52 +0300703 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +0300704 * The library has not been previously initialized by psa_crypto_init().
705 * It is implementation-dependent whether a failure to initialize
706 * results in this error code.
Gilles Peskine7698bcf2018-03-03 21:30:44 +0100707 */
Gilles Peskineae32aac2018-11-30 14:39:32 +0100708psa_status_t psa_export_public_key(psa_key_handle_t handle,
Gilles Peskine7698bcf2018-03-03 21:30:44 +0100709 uint8_t *data,
710 size_t data_size,
711 size_t *data_length);
712
Gilles Peskine4cb9dde2019-01-19 13:40:11 +0100713/** Make a copy of a key.
Gilles Peskine7698bcf2018-03-03 21:30:44 +0100714 *
Gilles Peskine4cb9dde2019-01-19 13:40:11 +0100715 * Copy key material from one location to another.
Jaeden Amero70261c52019-01-04 11:47:20 +0000716 *
Gilles Peskineaec5a7f2019-02-05 20:26:09 +0100717 * This function is primarily useful to copy a key from one location
718 * to another, since it populates a key using the material from
719 * another key which may have a different lifetime.
Gilles Peskine6ac73a92018-07-12 19:47:19 +0200720 *
Adrian L. Shaw0a695bd2019-05-15 13:28:41 +0100721 * This function may be used to share a key with a different party,
Gilles Peskine4cb9dde2019-01-19 13:40:11 +0100722 * subject to implementation-defined restrictions on key sharing.
Gilles Peskine7e198532018-03-08 07:50:30 +0100723 *
Gilles Peskine8e0206a2019-05-14 14:24:28 +0200724 * The policy on the source key must have the usage flag
725 * #PSA_KEY_USAGE_COPY set.
Gilles Peskined6a8f5f2019-05-14 16:25:50 +0200726 * This flag is sufficient to permit the copy if the key has the lifetime
727 * #PSA_KEY_LIFETIME_VOLATILE or #PSA_KEY_LIFETIME_PERSISTENT.
728 * Some secure elements do not provide a way to copy a key without
729 * making it extractable from the secure element. If a key is located
730 * in such a secure element, then the key must have both usage flags
731 * #PSA_KEY_USAGE_COPY and #PSA_KEY_USAGE_EXPORT in order to make
732 * a copy of the key outside the secure element.
Gilles Peskine8e0206a2019-05-14 14:24:28 +0200733 *
Gilles Peskine20628592019-04-19 19:29:50 +0200734 * The resulting key may only be used in a way that conforms to
735 * both the policy of the original key and the policy specified in
736 * the \p attributes parameter:
Gilles Peskine4cb9dde2019-01-19 13:40:11 +0100737 * - The usage flags on the resulting key are the bitwise-and of the
Gilles Peskine20628592019-04-19 19:29:50 +0200738 * usage flags on the source policy and the usage flags in \p attributes.
739 * - If both allow the same algorithm or wildcard-based
Gilles Peskine4cb9dde2019-01-19 13:40:11 +0100740 * algorithm policy, the resulting key has the same algorithm policy.
Gilles Peskine20628592019-04-19 19:29:50 +0200741 * - If either of the policies allows an algorithm and the other policy
742 * allows a wildcard-based algorithm policy that includes this algorithm,
743 * the resulting key allows the same algorithm.
744 * - If the policies do not allow any algorithm in common, this function
745 * fails with the status #PSA_ERROR_INVALID_ARGUMENT.
Gilles Peskine6ac73a92018-07-12 19:47:19 +0200746 *
Gilles Peskine20628592019-04-19 19:29:50 +0200747 * The effect of this function on implementation-defined attributes is
Gilles Peskine4cb9dde2019-01-19 13:40:11 +0100748 * implementation-defined.
Gilles Peskine6ac73a92018-07-12 19:47:19 +0200749 *
Adrian L. Shaw67e1c7a2019-05-14 15:24:21 +0100750 * \param source_handle The key to copy. It must be a valid key handle.
Gilles Peskine20628592019-04-19 19:29:50 +0200751 * \param[in] attributes The attributes for the new key.
752 * They are used as follows:
Gilles Peskine4ce2a9d2019-05-03 16:57:15 +0200753 * - The key type and size may be 0. If either is
754 * nonzero, it must match the corresponding
755 * attribute of the source key.
Gilles Peskine20628592019-04-19 19:29:50 +0200756 * - The key location (the lifetime and, for
757 * persistent keys, the key identifier) is
758 * used directly.
759 * - The policy constraints (usage flags and
760 * algorithm policy) are combined from
761 * the source key and \p attributes so that
762 * both sets of restrictions apply, as
763 * described in the documentation of this function.
764 * \param[out] target_handle On success, a handle to the newly created key.
765 * \c 0 on failure.
Gilles Peskine6ac73a92018-07-12 19:47:19 +0200766 *
767 * \retval #PSA_SUCCESS
Gilles Peskineae32aac2018-11-30 14:39:32 +0100768 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine20628592019-04-19 19:29:50 +0200769 * \p source_handle is invalid.
David Saadab4ecc272019-02-14 13:48:10 +0200770 * \retval #PSA_ERROR_ALREADY_EXISTS
Gilles Peskine20628592019-04-19 19:29:50 +0200771 * This is an attempt to create a persistent key, and there is
772 * already a persistent key with the given identifier.
Gilles Peskine6ac73a92018-07-12 19:47:19 +0200773 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine20628592019-04-19 19:29:50 +0200774 * The lifetime or identifier in \p attributes are invalid.
775 * \retval #PSA_ERROR_INVALID_ARGUMENT
776 * The policy constraints on the source and specified in
777 * \p attributes are incompatible.
Gilles Peskine4ce2a9d2019-05-03 16:57:15 +0200778 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine24f10f82019-05-16 12:18:32 +0200779 * \p attributes specifies a key type or key size
Gilles Peskine4ce2a9d2019-05-03 16:57:15 +0200780 * which does not match the attributes of the source key.
Gilles Peskine4cb9dde2019-01-19 13:40:11 +0100781 * \retval #PSA_ERROR_NOT_PERMITTED
Gilles Peskine8e0206a2019-05-14 14:24:28 +0200782 * The source key does not have the #PSA_KEY_USAGE_COPY usage flag.
783 * \retval #PSA_ERROR_NOT_PERMITTED
Gilles Peskine4cb9dde2019-01-19 13:40:11 +0100784 * The source key is not exportable and its lifetime does not
785 * allow copying it to the target's lifetime.
786 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
787 * \retval #PSA_ERROR_INSUFFICIENT_STORAGE
Gilles Peskine6ac73a92018-07-12 19:47:19 +0200788 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
789 * \retval #PSA_ERROR_HARDWARE_FAILURE
Adrian L. Shaw60b03202019-08-06 17:26:16 +0100790 * \retval #PSA_ERROR_STORAGE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +0200791 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +0100792 * \retval #PSA_ERROR_BAD_STATE
793 * The library has not been previously initialized by psa_crypto_init().
794 * It is implementation-dependent whether a failure to initialize
795 * results in this error code.
Gilles Peskine7698bcf2018-03-03 21:30:44 +0100796 */
Gilles Peskine4cb9dde2019-01-19 13:40:11 +0100797psa_status_t psa_copy_key(psa_key_handle_t source_handle,
Gilles Peskine87a5e562019-04-17 12:28:25 +0200798 const psa_key_attributes_t *attributes,
799 psa_key_handle_t *target_handle);
Gilles Peskine20035e32018-02-03 22:44:14 +0100800
801/**@}*/
802
Gilles Peskine9ef733f2018-02-07 21:05:37 +0100803/** \defgroup hash Message digests
804 * @{
805 */
806
Gilles Peskine69647a42019-01-14 20:18:12 +0100807/** Calculate the hash (digest) of a message.
808 *
809 * \note To verify the hash of a message against an
810 * expected value, use psa_hash_compare() instead.
811 *
812 * \param alg The hash algorithm to compute (\c PSA_ALG_XXX value
813 * such that #PSA_ALG_IS_HASH(\p alg) is true).
814 * \param[in] input Buffer containing the message to hash.
815 * \param input_length Size of the \p input buffer in bytes.
816 * \param[out] hash Buffer where the hash is to be written.
817 * \param hash_size Size of the \p hash buffer in bytes.
818 * \param[out] hash_length On success, the number of bytes
819 * that make up the hash value. This is always
Gilles Peskined338b912019-02-15 13:01:41 +0100820 * #PSA_HASH_SIZE(\p alg).
Gilles Peskine69647a42019-01-14 20:18:12 +0100821 *
822 * \retval #PSA_SUCCESS
823 * Success.
824 * \retval #PSA_ERROR_NOT_SUPPORTED
825 * \p alg is not supported or is not a hash algorithm.
Adrian L. Shawf7d852a2019-08-06 17:50:26 +0100826 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
827 * \p hash_size is too small
Gilles Peskine69647a42019-01-14 20:18:12 +0100828 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
829 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
830 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +0200831 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +0100832 * \retval #PSA_ERROR_BAD_STATE
833 * The library has not been previously initialized by psa_crypto_init().
834 * It is implementation-dependent whether a failure to initialize
835 * results in this error code.
Gilles Peskine69647a42019-01-14 20:18:12 +0100836 */
837psa_status_t psa_hash_compute(psa_algorithm_t alg,
838 const uint8_t *input,
839 size_t input_length,
840 uint8_t *hash,
841 size_t hash_size,
842 size_t *hash_length);
843
844/** Calculate the hash (digest) of a message and compare it with a
845 * reference value.
846 *
847 * \param alg The hash algorithm to compute (\c PSA_ALG_XXX value
848 * such that #PSA_ALG_IS_HASH(\p alg) is true).
849 * \param[in] input Buffer containing the message to hash.
850 * \param input_length Size of the \p input buffer in bytes.
851 * \param[out] hash Buffer containing the expected hash value.
Gilles Peskinea05602d2019-01-17 15:25:52 +0100852 * \param hash_length Size of the \p hash buffer in bytes.
Gilles Peskine69647a42019-01-14 20:18:12 +0100853 *
854 * \retval #PSA_SUCCESS
855 * The expected hash is identical to the actual hash of the input.
856 * \retval #PSA_ERROR_INVALID_SIGNATURE
857 * The hash of the message was calculated successfully, but it
858 * differs from the expected hash.
859 * \retval #PSA_ERROR_NOT_SUPPORTED
860 * \p alg is not supported or is not a hash algorithm.
861 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
862 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
863 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +0200864 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +0100865 * \retval #PSA_ERROR_BAD_STATE
866 * The library has not been previously initialized by psa_crypto_init().
867 * It is implementation-dependent whether a failure to initialize
868 * results in this error code.
Gilles Peskine69647a42019-01-14 20:18:12 +0100869 */
870psa_status_t psa_hash_compare(psa_algorithm_t alg,
871 const uint8_t *input,
872 size_t input_length,
873 const uint8_t *hash,
874 const size_t hash_length);
875
Gilles Peskine308b91d2018-02-08 09:47:44 +0100876/** The type of the state data structure for multipart hash operations.
877 *
Jaeden Amero6a25b412019-01-04 11:47:44 +0000878 * Before calling any function on a hash operation object, the application must
879 * initialize it by any of the following means:
880 * - Set the structure to all-bits-zero, for example:
881 * \code
882 * psa_hash_operation_t operation;
883 * memset(&operation, 0, sizeof(operation));
884 * \endcode
885 * - Initialize the structure to logical zero values, for example:
886 * \code
887 * psa_hash_operation_t operation = {0};
888 * \endcode
889 * - Initialize the structure to the initializer #PSA_HASH_OPERATION_INIT,
890 * for example:
891 * \code
892 * psa_hash_operation_t operation = PSA_HASH_OPERATION_INIT;
893 * \endcode
894 * - Assign the result of the function psa_hash_operation_init()
895 * to the structure, for example:
896 * \code
897 * psa_hash_operation_t operation;
898 * operation = psa_hash_operation_init();
899 * \endcode
900 *
Gilles Peskine92b30732018-03-03 21:29:30 +0100901 * This is an implementation-defined \c struct. Applications should not
Gilles Peskine308b91d2018-02-08 09:47:44 +0100902 * make any assumptions about the content of this structure except
903 * as directed by the documentation of a specific implementation. */
Gilles Peskine9ef733f2018-02-07 21:05:37 +0100904typedef struct psa_hash_operation_s psa_hash_operation_t;
905
Jaeden Amero6a25b412019-01-04 11:47:44 +0000906/** \def PSA_HASH_OPERATION_INIT
907 *
908 * This macro returns a suitable initializer for a hash operation object
909 * of type #psa_hash_operation_t.
910 */
911#ifdef __DOXYGEN_ONLY__
912/* This is an example definition for documentation purposes.
913 * Implementations should define a suitable value in `crypto_struct.h`.
914 */
915#define PSA_HASH_OPERATION_INIT {0}
916#endif
917
918/** Return an initial value for a hash operation object.
919 */
920static psa_hash_operation_t psa_hash_operation_init(void);
921
Gilles Peskinef45adda2019-01-14 18:29:18 +0100922/** Set up a multipart hash operation.
Gilles Peskine308b91d2018-02-08 09:47:44 +0100923 *
924 * The sequence of operations to calculate a hash (message digest)
925 * is as follows:
926 * -# Allocate an operation object which will be passed to all the functions
927 * listed here.
Jaeden Amero6a25b412019-01-04 11:47:44 +0000928 * -# Initialize the operation object with one of the methods described in the
929 * documentation for #psa_hash_operation_t, e.g. PSA_HASH_OPERATION_INIT.
Gilles Peskineda8191d1c2018-07-08 19:46:38 +0200930 * -# Call psa_hash_setup() to specify the algorithm.
Gilles Peskine7e4acc52018-02-16 21:24:11 +0100931 * -# Call psa_hash_update() zero, one or more times, passing a fragment
Gilles Peskine308b91d2018-02-08 09:47:44 +0100932 * of the message each time. The hash that is calculated is the hash
933 * of the concatenation of these messages in order.
934 * -# To calculate the hash, call psa_hash_finish().
935 * To compare the hash with an expected value, call psa_hash_verify().
936 *
937 * The application may call psa_hash_abort() at any time after the operation
Jaeden Amero6a25b412019-01-04 11:47:44 +0000938 * has been initialized.
Gilles Peskine308b91d2018-02-08 09:47:44 +0100939 *
Gilles Peskineda8191d1c2018-07-08 19:46:38 +0200940 * After a successful call to psa_hash_setup(), the application must
Gilles Peskineed522972018-03-20 17:54:15 +0100941 * eventually terminate the operation. The following events terminate an
942 * operation:
Gilles Peskine308b91d2018-02-08 09:47:44 +0100943 * - A failed call to psa_hash_update().
Gilles Peskine19067982018-03-20 17:54:53 +0100944 * - A call to psa_hash_finish(), psa_hash_verify() or psa_hash_abort().
Gilles Peskine308b91d2018-02-08 09:47:44 +0100945 *
Jaeden Amero6a25b412019-01-04 11:47:44 +0000946 * \param[in,out] operation The operation object to set up. It must have
947 * been initialized as per the documentation for
948 * #psa_hash_operation_t and not yet in use.
Gilles Peskineedd11a12018-07-12 01:08:58 +0200949 * \param alg The hash algorithm to compute (\c PSA_ALG_XXX value
950 * such that #PSA_ALG_IS_HASH(\p alg) is true).
Gilles Peskine308b91d2018-02-08 09:47:44 +0100951 *
Gilles Peskine28538492018-07-11 17:34:00 +0200952 * \retval #PSA_SUCCESS
Gilles Peskine308b91d2018-02-08 09:47:44 +0100953 * Success.
Gilles Peskine28538492018-07-11 17:34:00 +0200954 * \retval #PSA_ERROR_NOT_SUPPORTED
Gilles Peskinefa4070c2018-07-12 19:23:03 +0200955 * \p alg is not supported or is not a hash algorithm.
Gilles Peskine8e1addc2019-01-10 11:51:17 +0100956 * \retval #PSA_ERROR_BAD_STATE
957 * The operation state is not valid (already set up and not
958 * subsequently completed).
Gilles Peskine28538492018-07-11 17:34:00 +0200959 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
960 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
961 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +0200962 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +0100963 * \retval #PSA_ERROR_BAD_STATE
964 * The library has not been previously initialized by psa_crypto_init().
965 * It is implementation-dependent whether a failure to initialize
966 * results in this error code.
Gilles Peskine308b91d2018-02-08 09:47:44 +0100967 */
Gilles Peskineda8191d1c2018-07-08 19:46:38 +0200968psa_status_t psa_hash_setup(psa_hash_operation_t *operation,
Gilles Peskine9ef733f2018-02-07 21:05:37 +0100969 psa_algorithm_t alg);
970
Gilles Peskine308b91d2018-02-08 09:47:44 +0100971/** Add a message fragment to a multipart hash operation.
972 *
Gilles Peskineda8191d1c2018-07-08 19:46:38 +0200973 * The application must call psa_hash_setup() before calling this function.
Gilles Peskine308b91d2018-02-08 09:47:44 +0100974 *
975 * If this function returns an error status, the operation becomes inactive.
976 *
Gilles Peskineedd11a12018-07-12 01:08:58 +0200977 * \param[in,out] operation Active hash operation.
978 * \param[in] input Buffer containing the message fragment to hash.
Gilles Peskinefa4070c2018-07-12 19:23:03 +0200979 * \param input_length Size of the \p input buffer in bytes.
Gilles Peskine308b91d2018-02-08 09:47:44 +0100980 *
Gilles Peskine28538492018-07-11 17:34:00 +0200981 * \retval #PSA_SUCCESS
Gilles Peskine308b91d2018-02-08 09:47:44 +0100982 * Success.
Gilles Peskine28538492018-07-11 17:34:00 +0200983 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinef45adda2019-01-14 18:29:18 +0100984 * The operation state is not valid (not set up, or already completed).
Gilles Peskine28538492018-07-11 17:34:00 +0200985 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
986 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
987 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +0200988 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +0100989 * \retval #PSA_ERROR_BAD_STATE
990 * The library has not been previously initialized by psa_crypto_init().
991 * It is implementation-dependent whether a failure to initialize
992 * results in this error code.
Gilles Peskine308b91d2018-02-08 09:47:44 +0100993 */
Gilles Peskine9ef733f2018-02-07 21:05:37 +0100994psa_status_t psa_hash_update(psa_hash_operation_t *operation,
995 const uint8_t *input,
996 size_t input_length);
997
Gilles Peskine308b91d2018-02-08 09:47:44 +0100998/** Finish the calculation of the hash of a message.
999 *
Gilles Peskineda8191d1c2018-07-08 19:46:38 +02001000 * The application must call psa_hash_setup() before calling this function.
Gilles Peskine308b91d2018-02-08 09:47:44 +01001001 * This function calculates the hash of the message formed by concatenating
1002 * the inputs passed to preceding calls to psa_hash_update().
1003 *
1004 * When this function returns, the operation becomes inactive.
1005 *
1006 * \warning Applications should not call this function if they expect
1007 * a specific value for the hash. Call psa_hash_verify() instead.
1008 * Beware that comparing integrity or authenticity data such as
1009 * hash values with a function such as \c memcmp is risky
1010 * because the time taken by the comparison may leak information
1011 * about the hashed data which could allow an attacker to guess
1012 * a valid hash and thereby bypass security controls.
1013 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02001014 * \param[in,out] operation Active hash operation.
1015 * \param[out] hash Buffer where the hash is to be written.
1016 * \param hash_size Size of the \p hash buffer in bytes.
1017 * \param[out] hash_length On success, the number of bytes
1018 * that make up the hash value. This is always
Gilles Peskinebe42f312018-07-13 14:38:15 +02001019 * #PSA_HASH_SIZE(\c alg) where \c alg is the
Gilles Peskineedd11a12018-07-12 01:08:58 +02001020 * hash algorithm that is calculated.
Gilles Peskine308b91d2018-02-08 09:47:44 +01001021 *
Gilles Peskine28538492018-07-11 17:34:00 +02001022 * \retval #PSA_SUCCESS
Gilles Peskine308b91d2018-02-08 09:47:44 +01001023 * Success.
Gilles Peskine28538492018-07-11 17:34:00 +02001024 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinef45adda2019-01-14 18:29:18 +01001025 * The operation state is not valid (not set up, or already completed).
Gilles Peskine28538492018-07-11 17:34:00 +02001026 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001027 * The size of the \p hash buffer is too small. You can determine a
Gilles Peskine7256e6c2018-07-12 00:34:26 +02001028 * sufficient buffer size by calling #PSA_HASH_SIZE(\c alg)
Gilles Peskine308b91d2018-02-08 09:47:44 +01001029 * where \c alg is the hash algorithm that is calculated.
Gilles Peskine28538492018-07-11 17:34:00 +02001030 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1031 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1032 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001033 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001034 * \retval #PSA_ERROR_BAD_STATE
1035 * The library has not been previously initialized by psa_crypto_init().
1036 * It is implementation-dependent whether a failure to initialize
1037 * results in this error code.
Gilles Peskine308b91d2018-02-08 09:47:44 +01001038 */
Gilles Peskine9ef733f2018-02-07 21:05:37 +01001039psa_status_t psa_hash_finish(psa_hash_operation_t *operation,
1040 uint8_t *hash,
1041 size_t hash_size,
1042 size_t *hash_length);
1043
Gilles Peskine308b91d2018-02-08 09:47:44 +01001044/** Finish the calculation of the hash of a message and compare it with
1045 * an expected value.
1046 *
Gilles Peskineda8191d1c2018-07-08 19:46:38 +02001047 * The application must call psa_hash_setup() before calling this function.
Gilles Peskine308b91d2018-02-08 09:47:44 +01001048 * This function calculates the hash of the message formed by concatenating
1049 * the inputs passed to preceding calls to psa_hash_update(). It then
1050 * compares the calculated hash with the expected hash passed as a
1051 * parameter to this function.
1052 *
1053 * When this function returns, the operation becomes inactive.
1054 *
Gilles Peskine19067982018-03-20 17:54:53 +01001055 * \note Implementations shall make the best effort to ensure that the
Gilles Peskine308b91d2018-02-08 09:47:44 +01001056 * comparison between the actual hash and the expected hash is performed
1057 * in constant time.
1058 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02001059 * \param[in,out] operation Active hash operation.
1060 * \param[in] hash Buffer containing the expected hash value.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001061 * \param hash_length Size of the \p hash buffer in bytes.
Gilles Peskine308b91d2018-02-08 09:47:44 +01001062 *
Gilles Peskine28538492018-07-11 17:34:00 +02001063 * \retval #PSA_SUCCESS
Gilles Peskine308b91d2018-02-08 09:47:44 +01001064 * The expected hash is identical to the actual hash of the message.
Gilles Peskine28538492018-07-11 17:34:00 +02001065 * \retval #PSA_ERROR_INVALID_SIGNATURE
Gilles Peskine308b91d2018-02-08 09:47:44 +01001066 * The hash of the message was calculated successfully, but it
1067 * differs from the expected hash.
Gilles Peskine28538492018-07-11 17:34:00 +02001068 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinef45adda2019-01-14 18:29:18 +01001069 * The operation state is not valid (not set up, or already completed).
Gilles Peskine28538492018-07-11 17:34:00 +02001070 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1071 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1072 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001073 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001074 * \retval #PSA_ERROR_BAD_STATE
1075 * The library has not been previously initialized by psa_crypto_init().
1076 * It is implementation-dependent whether a failure to initialize
1077 * results in this error code.
Gilles Peskine308b91d2018-02-08 09:47:44 +01001078 */
Gilles Peskine9ef733f2018-02-07 21:05:37 +01001079psa_status_t psa_hash_verify(psa_hash_operation_t *operation,
1080 const uint8_t *hash,
1081 size_t hash_length);
1082
Gilles Peskine308b91d2018-02-08 09:47:44 +01001083/** Abort a hash operation.
1084 *
Gilles Peskine308b91d2018-02-08 09:47:44 +01001085 * Aborting an operation frees all associated resources except for the
Gilles Peskineb82ab6f2018-07-13 15:33:43 +02001086 * \p operation structure itself. Once aborted, the operation object
1087 * can be reused for another operation by calling
1088 * psa_hash_setup() again.
Gilles Peskine308b91d2018-02-08 09:47:44 +01001089 *
Gilles Peskineb82ab6f2018-07-13 15:33:43 +02001090 * You may call this function any time after the operation object has
1091 * been initialized by any of the following methods:
1092 * - A call to psa_hash_setup(), whether it succeeds or not.
1093 * - Initializing the \c struct to all-bits-zero.
1094 * - Initializing the \c struct to logical zeros, e.g.
1095 * `psa_hash_operation_t operation = {0}`.
Gilles Peskine308b91d2018-02-08 09:47:44 +01001096 *
Gilles Peskineb82ab6f2018-07-13 15:33:43 +02001097 * In particular, calling psa_hash_abort() after the operation has been
1098 * terminated by a call to psa_hash_abort(), psa_hash_finish() or
1099 * psa_hash_verify() is safe and has no effect.
1100 *
1101 * \param[in,out] operation Initialized hash operation.
Gilles Peskine308b91d2018-02-08 09:47:44 +01001102 *
Gilles Peskine28538492018-07-11 17:34:00 +02001103 * \retval #PSA_SUCCESS
1104 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001105 * \p operation is not an active hash operation.
Gilles Peskine28538492018-07-11 17:34:00 +02001106 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1107 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001108 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001109 * \retval #PSA_ERROR_BAD_STATE
1110 * The library has not been previously initialized by psa_crypto_init().
1111 * It is implementation-dependent whether a failure to initialize
1112 * results in this error code.
Gilles Peskine308b91d2018-02-08 09:47:44 +01001113 */
1114psa_status_t psa_hash_abort(psa_hash_operation_t *operation);
Gilles Peskine9ef733f2018-02-07 21:05:37 +01001115
Gilles Peskineebb2c3e2019-01-19 12:03:41 +01001116/** Clone a hash operation.
1117 *
Gilles Peskinee43aa392019-01-21 14:50:37 +01001118 * This function copies the state of an ongoing hash operation to
1119 * a new operation object. In other words, this function is equivalent
1120 * to calling psa_hash_setup() on \p target_operation with the same
1121 * algorithm that \p source_operation was set up for, then
1122 * psa_hash_update() on \p target_operation with the same input that
1123 * that was passed to \p source_operation. After this function returns, the
1124 * two objects are independent, i.e. subsequent calls involving one of
1125 * the objects do not affect the other object.
1126 *
Gilles Peskineebb2c3e2019-01-19 12:03:41 +01001127 * \param[in] source_operation The active hash operation to clone.
1128 * \param[in,out] target_operation The operation object to set up.
1129 * It must be initialized but not active.
1130 *
1131 * \retval #PSA_SUCCESS
1132 * \retval #PSA_ERROR_BAD_STATE
1133 * \p source_operation is not an active hash operation.
1134 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinee43aa392019-01-21 14:50:37 +01001135 * \p target_operation is active.
Gilles Peskineebb2c3e2019-01-19 12:03:41 +01001136 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1137 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001138 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001139 * \retval #PSA_ERROR_BAD_STATE
1140 * The library has not been previously initialized by psa_crypto_init().
1141 * It is implementation-dependent whether a failure to initialize
1142 * results in this error code.
Gilles Peskineebb2c3e2019-01-19 12:03:41 +01001143 */
1144psa_status_t psa_hash_clone(const psa_hash_operation_t *source_operation,
1145 psa_hash_operation_t *target_operation);
1146
Gilles Peskine9ef733f2018-02-07 21:05:37 +01001147/**@}*/
1148
Gilles Peskine8c9def32018-02-08 10:02:12 +01001149/** \defgroup MAC Message authentication codes
1150 * @{
1151 */
1152
Gilles Peskine69647a42019-01-14 20:18:12 +01001153/** Calculate the MAC (message authentication code) of a message.
1154 *
1155 * \note To verify the MAC of a message against an
1156 * expected value, use psa_mac_verify() instead.
1157 * Beware that comparing integrity or authenticity data such as
1158 * MAC values with a function such as \c memcmp is risky
1159 * because the time taken by the comparison may leak information
1160 * about the MAC value which could allow an attacker to guess
1161 * a valid MAC and thereby bypass security controls.
1162 *
1163 * \param handle Handle to the key to use for the operation.
1164 * \param alg The MAC algorithm to compute (\c PSA_ALG_XXX value
Gilles Peskine63f79302019-02-15 13:01:17 +01001165 * such that #PSA_ALG_IS_MAC(\p alg) is true).
Gilles Peskine69647a42019-01-14 20:18:12 +01001166 * \param[in] input Buffer containing the input message.
1167 * \param input_length Size of the \p input buffer in bytes.
1168 * \param[out] mac Buffer where the MAC value is to be written.
1169 * \param mac_size Size of the \p mac buffer in bytes.
1170 * \param[out] mac_length On success, the number of bytes
Gilles Peskined338b912019-02-15 13:01:41 +01001171 * that make up the MAC value.
Gilles Peskine69647a42019-01-14 20:18:12 +01001172 *
1173 * \retval #PSA_SUCCESS
1174 * Success.
1175 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine69647a42019-01-14 20:18:12 +01001176 * \retval #PSA_ERROR_NOT_PERMITTED
1177 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01001178 * \p handle is not compatible with \p alg.
Gilles Peskine69647a42019-01-14 20:18:12 +01001179 * \retval #PSA_ERROR_NOT_SUPPORTED
1180 * \p alg is not supported or is not a MAC algorithm.
1181 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1182 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1183 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001184 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawfa591c42019-08-07 10:47:47 +01001185 * \retval #PSA_ERROR_STORAGE_FAILURE
1186 * The key could not be retrieved from storage.
Gilles Peskine69647a42019-01-14 20:18:12 +01001187 * \retval #PSA_ERROR_BAD_STATE
1188 * The library has not been previously initialized by psa_crypto_init().
1189 * It is implementation-dependent whether a failure to initialize
1190 * results in this error code.
1191 */
1192psa_status_t psa_mac_compute(psa_key_handle_t handle,
1193 psa_algorithm_t alg,
1194 const uint8_t *input,
1195 size_t input_length,
1196 uint8_t *mac,
1197 size_t mac_size,
1198 size_t *mac_length);
1199
1200/** Calculate the MAC of a message and compare it with a reference value.
1201 *
1202 * \param handle Handle to the key to use for the operation.
1203 * \param alg The MAC algorithm to compute (\c PSA_ALG_XXX value
Gilles Peskine63f79302019-02-15 13:01:17 +01001204 * such that #PSA_ALG_IS_MAC(\p alg) is true).
Gilles Peskine69647a42019-01-14 20:18:12 +01001205 * \param[in] input Buffer containing the input message.
1206 * \param input_length Size of the \p input buffer in bytes.
1207 * \param[out] mac Buffer containing the expected MAC value.
1208 * \param mac_length Size of the \p mac buffer in bytes.
1209 *
1210 * \retval #PSA_SUCCESS
1211 * The expected MAC is identical to the actual MAC of the input.
1212 * \retval #PSA_ERROR_INVALID_SIGNATURE
1213 * The MAC of the message was calculated successfully, but it
1214 * differs from the expected value.
1215 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine69647a42019-01-14 20:18:12 +01001216 * \retval #PSA_ERROR_NOT_PERMITTED
1217 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01001218 * \p handle is not compatible with \p alg.
Gilles Peskine69647a42019-01-14 20:18:12 +01001219 * \retval #PSA_ERROR_NOT_SUPPORTED
1220 * \p alg is not supported or is not a MAC algorithm.
1221 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1222 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1223 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001224 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001225 * \retval #PSA_ERROR_STORAGE_FAILURE
1226 * The key could not be retrieved from storage.
1227 * \retval #PSA_ERROR_BAD_STATE
1228 * The library has not been previously initialized by psa_crypto_init().
1229 * It is implementation-dependent whether a failure to initialize
1230 * results in this error code.
Gilles Peskine69647a42019-01-14 20:18:12 +01001231 */
Gilles Peskinea05602d2019-01-17 15:25:52 +01001232psa_status_t psa_mac_verify(psa_key_handle_t handle,
1233 psa_algorithm_t alg,
Gilles Peskine69647a42019-01-14 20:18:12 +01001234 const uint8_t *input,
1235 size_t input_length,
1236 const uint8_t *mac,
1237 const size_t mac_length);
1238
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001239/** The type of the state data structure for multipart MAC operations.
1240 *
Jaeden Amero769ce272019-01-04 11:48:03 +00001241 * Before calling any function on a MAC operation object, the application must
1242 * initialize it by any of the following means:
1243 * - Set the structure to all-bits-zero, for example:
1244 * \code
1245 * psa_mac_operation_t operation;
1246 * memset(&operation, 0, sizeof(operation));
1247 * \endcode
1248 * - Initialize the structure to logical zero values, for example:
1249 * \code
1250 * psa_mac_operation_t operation = {0};
1251 * \endcode
1252 * - Initialize the structure to the initializer #PSA_MAC_OPERATION_INIT,
1253 * for example:
1254 * \code
1255 * psa_mac_operation_t operation = PSA_MAC_OPERATION_INIT;
1256 * \endcode
1257 * - Assign the result of the function psa_mac_operation_init()
1258 * to the structure, for example:
1259 * \code
1260 * psa_mac_operation_t operation;
1261 * operation = psa_mac_operation_init();
1262 * \endcode
1263 *
Gilles Peskine92b30732018-03-03 21:29:30 +01001264 * This is an implementation-defined \c struct. Applications should not
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001265 * make any assumptions about the content of this structure except
1266 * as directed by the documentation of a specific implementation. */
Gilles Peskine8c9def32018-02-08 10:02:12 +01001267typedef struct psa_mac_operation_s psa_mac_operation_t;
1268
Jaeden Amero769ce272019-01-04 11:48:03 +00001269/** \def PSA_MAC_OPERATION_INIT
1270 *
1271 * This macro returns a suitable initializer for a MAC operation object of type
1272 * #psa_mac_operation_t.
1273 */
1274#ifdef __DOXYGEN_ONLY__
1275/* This is an example definition for documentation purposes.
1276 * Implementations should define a suitable value in `crypto_struct.h`.
1277 */
1278#define PSA_MAC_OPERATION_INIT {0}
1279#endif
1280
1281/** Return an initial value for a MAC operation object.
1282 */
1283static psa_mac_operation_t psa_mac_operation_init(void);
1284
Gilles Peskinef45adda2019-01-14 18:29:18 +01001285/** Set up a multipart MAC calculation operation.
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001286 *
Gilles Peskine89167cb2018-07-08 20:12:23 +02001287 * This function sets up the calculation of the MAC
1288 * (message authentication code) of a byte string.
1289 * To verify the MAC of a message against an
1290 * expected value, use psa_mac_verify_setup() instead.
1291 *
1292 * The sequence of operations to calculate a MAC is as follows:
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001293 * -# Allocate an operation object which will be passed to all the functions
1294 * listed here.
Jaeden Amero769ce272019-01-04 11:48:03 +00001295 * -# Initialize the operation object with one of the methods described in the
1296 * documentation for #psa_mac_operation_t, e.g. PSA_MAC_OPERATION_INIT.
Gilles Peskine89167cb2018-07-08 20:12:23 +02001297 * -# Call psa_mac_sign_setup() to specify the algorithm and key.
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001298 * -# Call psa_mac_update() zero, one or more times, passing a fragment
1299 * of the message each time. The MAC that is calculated is the MAC
1300 * of the concatenation of these messages in order.
Gilles Peskine89167cb2018-07-08 20:12:23 +02001301 * -# At the end of the message, call psa_mac_sign_finish() to finish
1302 * calculating the MAC value and retrieve it.
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001303 *
1304 * The application may call psa_mac_abort() at any time after the operation
Jaeden Amero769ce272019-01-04 11:48:03 +00001305 * has been initialized.
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001306 *
Gilles Peskine89167cb2018-07-08 20:12:23 +02001307 * After a successful call to psa_mac_sign_setup(), the application must
1308 * eventually terminate the operation through one of the following methods:
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001309 * - A failed call to psa_mac_update().
Gilles Peskine89167cb2018-07-08 20:12:23 +02001310 * - A call to psa_mac_sign_finish() or psa_mac_abort().
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001311 *
Jaeden Amero769ce272019-01-04 11:48:03 +00001312 * \param[in,out] operation The operation object to set up. It must have
1313 * been initialized as per the documentation for
1314 * #psa_mac_operation_t and not yet in use.
Gilles Peskineae32aac2018-11-30 14:39:32 +01001315 * \param handle Handle to the key to use for the operation.
Gilles Peskine5f25dd02019-01-14 18:24:53 +01001316 * It must remain valid until the operation
1317 * terminates.
Gilles Peskineedd11a12018-07-12 01:08:58 +02001318 * \param alg The MAC algorithm to compute (\c PSA_ALG_XXX value
Gilles Peskine63f79302019-02-15 13:01:17 +01001319 * such that #PSA_ALG_IS_MAC(\p alg) is true).
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001320 *
Gilles Peskine28538492018-07-11 17:34:00 +02001321 * \retval #PSA_SUCCESS
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001322 * Success.
Gilles Peskineae32aac2018-11-30 14:39:32 +01001323 * \retval #PSA_ERROR_INVALID_HANDLE
David Saadab4ecc272019-02-14 13:48:10 +02001324 * \retval #PSA_ERROR_DOES_NOT_EXIST
Gilles Peskine28538492018-07-11 17:34:00 +02001325 * \retval #PSA_ERROR_NOT_PERMITTED
1326 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01001327 * \p handle is not compatible with \p alg.
Gilles Peskine28538492018-07-11 17:34:00 +02001328 * \retval #PSA_ERROR_NOT_SUPPORTED
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001329 * \p alg is not supported or is not a MAC algorithm.
Gilles Peskine28538492018-07-11 17:34:00 +02001330 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1331 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1332 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001333 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir90d8c7a2018-09-12 11:44:52 +03001334 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskine8e1addc2019-01-10 11:51:17 +01001335 * The operation state is not valid (already set up and not
1336 * subsequently completed).
1337 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03001338 * The library has not been previously initialized by psa_crypto_init().
1339 * It is implementation-dependent whether a failure to initialize
1340 * results in this error code.
Gilles Peskine7e4acc52018-02-16 21:24:11 +01001341 */
Gilles Peskine89167cb2018-07-08 20:12:23 +02001342psa_status_t psa_mac_sign_setup(psa_mac_operation_t *operation,
Gilles Peskineae32aac2018-11-30 14:39:32 +01001343 psa_key_handle_t handle,
Gilles Peskine89167cb2018-07-08 20:12:23 +02001344 psa_algorithm_t alg);
1345
Gilles Peskinef45adda2019-01-14 18:29:18 +01001346/** Set up a multipart MAC verification operation.
Gilles Peskine89167cb2018-07-08 20:12:23 +02001347 *
1348 * This function sets up the verification of the MAC
1349 * (message authentication code) of a byte string against an expected value.
1350 *
1351 * The sequence of operations to verify a MAC is as follows:
1352 * -# Allocate an operation object which will be passed to all the functions
1353 * listed here.
Jaeden Amero769ce272019-01-04 11:48:03 +00001354 * -# Initialize the operation object with one of the methods described in the
1355 * documentation for #psa_mac_operation_t, e.g. PSA_MAC_OPERATION_INIT.
Gilles Peskine89167cb2018-07-08 20:12:23 +02001356 * -# Call psa_mac_verify_setup() to specify the algorithm and key.
Gilles Peskine89167cb2018-07-08 20:12:23 +02001357 * -# Call psa_mac_update() zero, one or more times, passing a fragment
1358 * of the message each time. The MAC that is calculated is the MAC
1359 * of the concatenation of these messages in order.
1360 * -# At the end of the message, call psa_mac_verify_finish() to finish
1361 * calculating the actual MAC of the message and verify it against
1362 * the expected value.
1363 *
1364 * The application may call psa_mac_abort() at any time after the operation
Jaeden Amero769ce272019-01-04 11:48:03 +00001365 * has been initialized.
Gilles Peskine89167cb2018-07-08 20:12:23 +02001366 *
1367 * After a successful call to psa_mac_verify_setup(), the application must
1368 * eventually terminate the operation through one of the following methods:
1369 * - A failed call to psa_mac_update().
1370 * - A call to psa_mac_verify_finish() or psa_mac_abort().
1371 *
Jaeden Amero769ce272019-01-04 11:48:03 +00001372 * \param[in,out] operation The operation object to set up. It must have
1373 * been initialized as per the documentation for
1374 * #psa_mac_operation_t and not yet in use.
Gilles Peskineae32aac2018-11-30 14:39:32 +01001375 * \param handle Handle to the key to use for the operation.
Gilles Peskine5f25dd02019-01-14 18:24:53 +01001376 * It must remain valid until the operation
1377 * terminates.
Gilles Peskineedd11a12018-07-12 01:08:58 +02001378 * \param alg The MAC algorithm to compute (\c PSA_ALG_XXX value
1379 * such that #PSA_ALG_IS_MAC(\p alg) is true).
Gilles Peskine89167cb2018-07-08 20:12:23 +02001380 *
Gilles Peskine28538492018-07-11 17:34:00 +02001381 * \retval #PSA_SUCCESS
Gilles Peskine89167cb2018-07-08 20:12:23 +02001382 * Success.
Gilles Peskineae32aac2018-11-30 14:39:32 +01001383 * \retval #PSA_ERROR_INVALID_HANDLE
David Saadab4ecc272019-02-14 13:48:10 +02001384 * \retval #PSA_ERROR_DOES_NOT_EXIST
Gilles Peskine28538492018-07-11 17:34:00 +02001385 * \retval #PSA_ERROR_NOT_PERMITTED
1386 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine89167cb2018-07-08 20:12:23 +02001387 * \c key is not compatible with \c alg.
Gilles Peskine28538492018-07-11 17:34:00 +02001388 * \retval #PSA_ERROR_NOT_SUPPORTED
Gilles Peskine89167cb2018-07-08 20:12:23 +02001389 * \c alg is not supported or is not a MAC algorithm.
Gilles Peskine28538492018-07-11 17:34:00 +02001390 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1391 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1392 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001393 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir90d8c7a2018-09-12 11:44:52 +03001394 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskine8e1addc2019-01-10 11:51:17 +01001395 * The operation state is not valid (already set up and not
1396 * subsequently completed).
1397 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03001398 * The library has not been previously initialized by psa_crypto_init().
1399 * It is implementation-dependent whether a failure to initialize
1400 * results in this error code.
Gilles Peskine89167cb2018-07-08 20:12:23 +02001401 */
1402psa_status_t psa_mac_verify_setup(psa_mac_operation_t *operation,
Gilles Peskineae32aac2018-11-30 14:39:32 +01001403 psa_key_handle_t handle,
Gilles Peskine89167cb2018-07-08 20:12:23 +02001404 psa_algorithm_t alg);
Gilles Peskine8c9def32018-02-08 10:02:12 +01001405
Gilles Peskinedcd14942018-07-12 00:30:52 +02001406/** Add a message fragment to a multipart MAC operation.
1407 *
1408 * The application must call psa_mac_sign_setup() or psa_mac_verify_setup()
1409 * before calling this function.
1410 *
1411 * If this function returns an error status, the operation becomes inactive.
1412 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02001413 * \param[in,out] operation Active MAC operation.
1414 * \param[in] input Buffer containing the message fragment to add to
1415 * the MAC calculation.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001416 * \param input_length Size of the \p input buffer in bytes.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001417 *
1418 * \retval #PSA_SUCCESS
1419 * Success.
1420 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinef45adda2019-01-14 18:29:18 +01001421 * The operation state is not valid (not set up, or already completed).
Gilles Peskinedcd14942018-07-12 00:30:52 +02001422 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1423 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1424 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001425 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001426 * \retval #PSA_ERROR_BAD_STATE
1427 * The library has not been previously initialized by psa_crypto_init().
1428 * It is implementation-dependent whether a failure to initialize
1429 * results in this error code.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001430 */
Gilles Peskine8c9def32018-02-08 10:02:12 +01001431psa_status_t psa_mac_update(psa_mac_operation_t *operation,
1432 const uint8_t *input,
1433 size_t input_length);
1434
Gilles Peskinedcd14942018-07-12 00:30:52 +02001435/** Finish the calculation of the MAC of a message.
1436 *
1437 * The application must call psa_mac_sign_setup() before calling this function.
1438 * This function calculates the MAC of the message formed by concatenating
1439 * the inputs passed to preceding calls to psa_mac_update().
1440 *
1441 * When this function returns, the operation becomes inactive.
1442 *
1443 * \warning Applications should not call this function if they expect
1444 * a specific value for the MAC. Call psa_mac_verify_finish() instead.
1445 * Beware that comparing integrity or authenticity data such as
1446 * MAC values with a function such as \c memcmp is risky
1447 * because the time taken by the comparison may leak information
1448 * about the MAC value which could allow an attacker to guess
1449 * a valid MAC and thereby bypass security controls.
1450 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02001451 * \param[in,out] operation Active MAC operation.
1452 * \param[out] mac Buffer where the MAC value is to be written.
1453 * \param mac_size Size of the \p mac buffer in bytes.
1454 * \param[out] mac_length On success, the number of bytes
1455 * that make up the MAC value. This is always
Gilles Peskinedda3bd32018-07-12 19:40:46 +02001456 * #PSA_MAC_FINAL_SIZE(\c key_type, \c key_bits, \c alg)
Gilles Peskineedd11a12018-07-12 01:08:58 +02001457 * where \c key_type and \c key_bits are the type and
Gilles Peskinedda3bd32018-07-12 19:40:46 +02001458 * bit-size respectively of the key and \c alg is the
Gilles Peskineedd11a12018-07-12 01:08:58 +02001459 * MAC algorithm that is calculated.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001460 *
1461 * \retval #PSA_SUCCESS
1462 * Success.
1463 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinef45adda2019-01-14 18:29:18 +01001464 * The operation state is not valid (not set up, or already completed).
Gilles Peskinedcd14942018-07-12 00:30:52 +02001465 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001466 * The size of the \p mac buffer is too small. You can determine a
Gilles Peskinedcd14942018-07-12 00:30:52 +02001467 * sufficient buffer size by calling PSA_MAC_FINAL_SIZE().
1468 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1469 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1470 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001471 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001472 * \retval #PSA_ERROR_BAD_STATE
1473 * The library has not been previously initialized by psa_crypto_init().
1474 * It is implementation-dependent whether a failure to initialize
1475 * results in this error code.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001476 */
Gilles Peskineacd4be32018-07-08 19:56:25 +02001477psa_status_t psa_mac_sign_finish(psa_mac_operation_t *operation,
1478 uint8_t *mac,
1479 size_t mac_size,
1480 size_t *mac_length);
Gilles Peskine8c9def32018-02-08 10:02:12 +01001481
Gilles Peskinedcd14942018-07-12 00:30:52 +02001482/** Finish the calculation of the MAC of a message and compare it with
1483 * an expected value.
1484 *
1485 * The application must call psa_mac_verify_setup() before calling this function.
1486 * This function calculates the MAC of the message formed by concatenating
1487 * the inputs passed to preceding calls to psa_mac_update(). It then
1488 * compares the calculated MAC with the expected MAC passed as a
1489 * parameter to this function.
1490 *
1491 * When this function returns, the operation becomes inactive.
1492 *
1493 * \note Implementations shall make the best effort to ensure that the
1494 * comparison between the actual MAC and the expected MAC is performed
1495 * in constant time.
1496 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02001497 * \param[in,out] operation Active MAC operation.
1498 * \param[in] mac Buffer containing the expected MAC value.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001499 * \param mac_length Size of the \p mac buffer in bytes.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001500 *
1501 * \retval #PSA_SUCCESS
1502 * The expected MAC is identical to the actual MAC of the message.
1503 * \retval #PSA_ERROR_INVALID_SIGNATURE
1504 * The MAC of the message was calculated successfully, but it
1505 * differs from the expected MAC.
1506 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinef45adda2019-01-14 18:29:18 +01001507 * The operation state is not valid (not set up, or already completed).
Gilles Peskinedcd14942018-07-12 00:30:52 +02001508 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1509 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1510 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001511 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001512 * \retval #PSA_ERROR_BAD_STATE
1513 * The library has not been previously initialized by psa_crypto_init().
1514 * It is implementation-dependent whether a failure to initialize
1515 * results in this error code.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001516 */
Gilles Peskineacd4be32018-07-08 19:56:25 +02001517psa_status_t psa_mac_verify_finish(psa_mac_operation_t *operation,
1518 const uint8_t *mac,
1519 size_t mac_length);
Gilles Peskine8c9def32018-02-08 10:02:12 +01001520
Gilles Peskinedcd14942018-07-12 00:30:52 +02001521/** Abort a MAC operation.
1522 *
Gilles Peskinedcd14942018-07-12 00:30:52 +02001523 * Aborting an operation frees all associated resources except for the
Gilles Peskineb82ab6f2018-07-13 15:33:43 +02001524 * \p operation structure itself. Once aborted, the operation object
1525 * can be reused for another operation by calling
1526 * psa_mac_sign_setup() or psa_mac_verify_setup() again.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001527 *
Gilles Peskineb82ab6f2018-07-13 15:33:43 +02001528 * You may call this function any time after the operation object has
1529 * been initialized by any of the following methods:
1530 * - A call to psa_mac_sign_setup() or psa_mac_verify_setup(), whether
1531 * it succeeds or not.
1532 * - Initializing the \c struct to all-bits-zero.
1533 * - Initializing the \c struct to logical zeros, e.g.
1534 * `psa_mac_operation_t operation = {0}`.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001535 *
Gilles Peskineb82ab6f2018-07-13 15:33:43 +02001536 * In particular, calling psa_mac_abort() after the operation has been
1537 * terminated by a call to psa_mac_abort(), psa_mac_sign_finish() or
1538 * psa_mac_verify_finish() is safe and has no effect.
1539 *
1540 * \param[in,out] operation Initialized MAC operation.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001541 *
1542 * \retval #PSA_SUCCESS
1543 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001544 * \p operation is not an active MAC operation.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001545 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1546 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001547 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001548 * \retval #PSA_ERROR_BAD_STATE
1549 * The library has not been previously initialized by psa_crypto_init().
1550 * It is implementation-dependent whether a failure to initialize
1551 * results in this error code.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001552 */
Gilles Peskine8c9def32018-02-08 10:02:12 +01001553psa_status_t psa_mac_abort(psa_mac_operation_t *operation);
1554
1555/**@}*/
1556
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001557/** \defgroup cipher Symmetric ciphers
1558 * @{
1559 */
1560
Gilles Peskine69647a42019-01-14 20:18:12 +01001561/** Encrypt a message using a symmetric cipher.
1562 *
1563 * This function encrypts a message with a random IV (initialization
1564 * vector).
1565 *
1566 * \param handle Handle to the key to use for the operation.
1567 * It must remain valid until the operation
1568 * terminates.
1569 * \param alg The cipher algorithm to compute
1570 * (\c PSA_ALG_XXX value such that
1571 * #PSA_ALG_IS_CIPHER(\p alg) is true).
1572 * \param[in] input Buffer containing the message to encrypt.
1573 * \param input_length Size of the \p input buffer in bytes.
1574 * \param[out] output Buffer where the output is to be written.
1575 * The output contains the IV followed by
1576 * the ciphertext proper.
1577 * \param output_size Size of the \p output buffer in bytes.
1578 * \param[out] output_length On success, the number of bytes
1579 * that make up the output.
1580 *
1581 * \retval #PSA_SUCCESS
1582 * Success.
1583 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine69647a42019-01-14 20:18:12 +01001584 * \retval #PSA_ERROR_NOT_PERMITTED
1585 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01001586 * \p handle is not compatible with \p alg.
Gilles Peskine69647a42019-01-14 20:18:12 +01001587 * \retval #PSA_ERROR_NOT_SUPPORTED
1588 * \p alg is not supported or is not a cipher algorithm.
1589 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
1590 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1591 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1592 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001593 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001594 * \retval #PSA_ERROR_BAD_STATE
1595 * The library has not been previously initialized by psa_crypto_init().
1596 * It is implementation-dependent whether a failure to initialize
1597 * results in this error code.
Gilles Peskine69647a42019-01-14 20:18:12 +01001598 */
1599psa_status_t psa_cipher_encrypt(psa_key_handle_t handle,
1600 psa_algorithm_t alg,
1601 const uint8_t *input,
1602 size_t input_length,
1603 uint8_t *output,
1604 size_t output_size,
1605 size_t *output_length);
1606
1607/** Decrypt a message using a symmetric cipher.
1608 *
1609 * This function decrypts a message encrypted with a symmetric cipher.
1610 *
1611 * \param handle Handle to the key to use for the operation.
1612 * It must remain valid until the operation
1613 * terminates.
1614 * \param alg The cipher algorithm to compute
1615 * (\c PSA_ALG_XXX value such that
1616 * #PSA_ALG_IS_CIPHER(\p alg) is true).
1617 * \param[in] input Buffer containing the message to decrypt.
1618 * This consists of the IV followed by the
1619 * ciphertext proper.
1620 * \param input_length Size of the \p input buffer in bytes.
1621 * \param[out] output Buffer where the plaintext is to be written.
1622 * \param output_size Size of the \p output buffer in bytes.
1623 * \param[out] output_length On success, the number of bytes
1624 * that make up the output.
1625 *
1626 * \retval #PSA_SUCCESS
1627 * Success.
1628 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine69647a42019-01-14 20:18:12 +01001629 * \retval #PSA_ERROR_NOT_PERMITTED
1630 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01001631 * \p handle is not compatible with \p alg.
Gilles Peskine69647a42019-01-14 20:18:12 +01001632 * \retval #PSA_ERROR_NOT_SUPPORTED
1633 * \p alg is not supported or is not a cipher algorithm.
1634 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
1635 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1636 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1637 * \retval #PSA_ERROR_HARDWARE_FAILURE
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001638 * \retval #PSA_ERROR_BAD_STATE
1639 * The library has not been previously initialized by psa_crypto_init().
1640 * It is implementation-dependent whether a failure to initialize
1641 * results in this error code. * \retval #PSA_ERROR_CORRUPTION_DETECTED
1642
Gilles Peskine69647a42019-01-14 20:18:12 +01001643 */
1644psa_status_t psa_cipher_decrypt(psa_key_handle_t handle,
1645 psa_algorithm_t alg,
1646 const uint8_t *input,
1647 size_t input_length,
1648 uint8_t *output,
1649 size_t output_size,
1650 size_t *output_length);
1651
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001652/** The type of the state data structure for multipart cipher operations.
1653 *
Jaeden Amero5bae2272019-01-04 11:48:27 +00001654 * Before calling any function on a cipher operation object, the application
1655 * must initialize it by any of the following means:
1656 * - Set the structure to all-bits-zero, for example:
1657 * \code
1658 * psa_cipher_operation_t operation;
1659 * memset(&operation, 0, sizeof(operation));
1660 * \endcode
1661 * - Initialize the structure to logical zero values, for example:
1662 * \code
1663 * psa_cipher_operation_t operation = {0};
1664 * \endcode
1665 * - Initialize the structure to the initializer #PSA_CIPHER_OPERATION_INIT,
1666 * for example:
1667 * \code
1668 * psa_cipher_operation_t operation = PSA_CIPHER_OPERATION_INIT;
1669 * \endcode
1670 * - Assign the result of the function psa_cipher_operation_init()
1671 * to the structure, for example:
1672 * \code
1673 * psa_cipher_operation_t operation;
1674 * operation = psa_cipher_operation_init();
1675 * \endcode
1676 *
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001677 * This is an implementation-defined \c struct. Applications should not
1678 * make any assumptions about the content of this structure except
1679 * as directed by the documentation of a specific implementation. */
1680typedef struct psa_cipher_operation_s psa_cipher_operation_t;
1681
Jaeden Amero5bae2272019-01-04 11:48:27 +00001682/** \def PSA_CIPHER_OPERATION_INIT
1683 *
1684 * This macro returns a suitable initializer for a cipher operation object of
1685 * type #psa_cipher_operation_t.
1686 */
1687#ifdef __DOXYGEN_ONLY__
1688/* This is an example definition for documentation purposes.
1689 * Implementations should define a suitable value in `crypto_struct.h`.
1690 */
1691#define PSA_CIPHER_OPERATION_INIT {0}
1692#endif
1693
1694/** Return an initial value for a cipher operation object.
1695 */
1696static psa_cipher_operation_t psa_cipher_operation_init(void);
1697
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001698/** Set the key for a multipart symmetric encryption operation.
1699 *
1700 * The sequence of operations to encrypt a message with a symmetric cipher
1701 * is as follows:
1702 * -# Allocate an operation object which will be passed to all the functions
1703 * listed here.
Jaeden Amero5bae2272019-01-04 11:48:27 +00001704 * -# Initialize the operation object with one of the methods described in the
1705 * documentation for #psa_cipher_operation_t, e.g.
1706 * PSA_CIPHER_OPERATION_INIT.
Gilles Peskinefe119512018-07-08 21:39:34 +02001707 * -# Call psa_cipher_encrypt_setup() to specify the algorithm and key.
itayzafrired7382f2018-08-02 14:19:33 +03001708 * -# Call either psa_cipher_generate_iv() or psa_cipher_set_iv() to
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001709 * generate or set the IV (initialization vector). You should use
itayzafrired7382f2018-08-02 14:19:33 +03001710 * psa_cipher_generate_iv() unless the protocol you are implementing
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001711 * requires a specific IV value.
1712 * -# Call psa_cipher_update() zero, one or more times, passing a fragment
1713 * of the message each time.
1714 * -# Call psa_cipher_finish().
1715 *
1716 * The application may call psa_cipher_abort() at any time after the operation
Jaeden Amero5bae2272019-01-04 11:48:27 +00001717 * has been initialized.
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001718 *
Gilles Peskinefe119512018-07-08 21:39:34 +02001719 * After a successful call to psa_cipher_encrypt_setup(), the application must
Gilles Peskineed522972018-03-20 17:54:15 +01001720 * eventually terminate the operation. The following events terminate an
1721 * operation:
Gilles Peskinef45adda2019-01-14 18:29:18 +01001722 * - A failed call to any of the \c psa_cipher_xxx functions.
Gilles Peskine19067982018-03-20 17:54:53 +01001723 * - A call to psa_cipher_finish() or psa_cipher_abort().
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001724 *
Jaeden Amero5bae2272019-01-04 11:48:27 +00001725 * \param[in,out] operation The operation object to set up. It must have
1726 * been initialized as per the documentation for
1727 * #psa_cipher_operation_t and not yet in use.
Gilles Peskineae32aac2018-11-30 14:39:32 +01001728 * \param handle Handle to the key to use for the operation.
Gilles Peskine5f25dd02019-01-14 18:24:53 +01001729 * It must remain valid until the operation
1730 * terminates.
Gilles Peskineedd11a12018-07-12 01:08:58 +02001731 * \param alg The cipher algorithm to compute
1732 * (\c PSA_ALG_XXX value such that
1733 * #PSA_ALG_IS_CIPHER(\p alg) is true).
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001734 *
Gilles Peskine28538492018-07-11 17:34:00 +02001735 * \retval #PSA_SUCCESS
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001736 * Success.
Gilles Peskineae32aac2018-11-30 14:39:32 +01001737 * \retval #PSA_ERROR_INVALID_HANDLE
David Saadab4ecc272019-02-14 13:48:10 +02001738 * \retval #PSA_ERROR_DOES_NOT_EXIST
Gilles Peskine28538492018-07-11 17:34:00 +02001739 * \retval #PSA_ERROR_NOT_PERMITTED
1740 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01001741 * \p handle is not compatible with \p alg.
Gilles Peskine28538492018-07-11 17:34:00 +02001742 * \retval #PSA_ERROR_NOT_SUPPORTED
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001743 * \p alg is not supported or is not a cipher algorithm.
Gilles Peskine28538492018-07-11 17:34:00 +02001744 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1745 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1746 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001747 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir90d8c7a2018-09-12 11:44:52 +03001748 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskine8e1addc2019-01-10 11:51:17 +01001749 * The operation state is not valid (already set up and not
1750 * subsequently completed).
1751 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03001752 * The library has not been previously initialized by psa_crypto_init().
1753 * It is implementation-dependent whether a failure to initialize
1754 * results in this error code.
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001755 */
Gilles Peskinefe119512018-07-08 21:39:34 +02001756psa_status_t psa_cipher_encrypt_setup(psa_cipher_operation_t *operation,
Gilles Peskineae32aac2018-11-30 14:39:32 +01001757 psa_key_handle_t handle,
Gilles Peskinefe119512018-07-08 21:39:34 +02001758 psa_algorithm_t alg);
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001759
1760/** Set the key for a multipart symmetric decryption operation.
1761 *
1762 * The sequence of operations to decrypt a message with a symmetric cipher
1763 * is as follows:
1764 * -# Allocate an operation object which will be passed to all the functions
1765 * listed here.
Jaeden Amero5bae2272019-01-04 11:48:27 +00001766 * -# Initialize the operation object with one of the methods described in the
1767 * documentation for #psa_cipher_operation_t, e.g.
1768 * PSA_CIPHER_OPERATION_INIT.
Gilles Peskinefe119512018-07-08 21:39:34 +02001769 * -# Call psa_cipher_decrypt_setup() to specify the algorithm and key.
Gilles Peskinef45adda2019-01-14 18:29:18 +01001770 * -# Call psa_cipher_set_iv() with the IV (initialization vector) for the
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001771 * decryption. If the IV is prepended to the ciphertext, you can call
1772 * psa_cipher_update() on a buffer containing the IV followed by the
1773 * beginning of the message.
1774 * -# Call psa_cipher_update() zero, one or more times, passing a fragment
1775 * of the message each time.
1776 * -# Call psa_cipher_finish().
1777 *
1778 * The application may call psa_cipher_abort() at any time after the operation
Jaeden Amero5bae2272019-01-04 11:48:27 +00001779 * has been initialized.
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001780 *
Gilles Peskinefe119512018-07-08 21:39:34 +02001781 * After a successful call to psa_cipher_decrypt_setup(), the application must
Gilles Peskineed522972018-03-20 17:54:15 +01001782 * eventually terminate the operation. The following events terminate an
1783 * operation:
Gilles Peskinef45adda2019-01-14 18:29:18 +01001784 * - A failed call to any of the \c psa_cipher_xxx functions.
Gilles Peskine19067982018-03-20 17:54:53 +01001785 * - A call to psa_cipher_finish() or psa_cipher_abort().
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001786 *
Jaeden Amero5bae2272019-01-04 11:48:27 +00001787 * \param[in,out] operation The operation object to set up. It must have
1788 * been initialized as per the documentation for
1789 * #psa_cipher_operation_t and not yet in use.
Gilles Peskineae32aac2018-11-30 14:39:32 +01001790 * \param handle Handle to the key to use for the operation.
Gilles Peskine5f25dd02019-01-14 18:24:53 +01001791 * It must remain valid until the operation
1792 * terminates.
Gilles Peskineedd11a12018-07-12 01:08:58 +02001793 * \param alg The cipher algorithm to compute
1794 * (\c PSA_ALG_XXX value such that
1795 * #PSA_ALG_IS_CIPHER(\p alg) is true).
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001796 *
Gilles Peskine28538492018-07-11 17:34:00 +02001797 * \retval #PSA_SUCCESS
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001798 * Success.
Gilles Peskineae32aac2018-11-30 14:39:32 +01001799 * \retval #PSA_ERROR_INVALID_HANDLE
David Saadab4ecc272019-02-14 13:48:10 +02001800 * \retval #PSA_ERROR_DOES_NOT_EXIST
Gilles Peskine28538492018-07-11 17:34:00 +02001801 * \retval #PSA_ERROR_NOT_PERMITTED
1802 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01001803 * \p handle is not compatible with \p alg.
Gilles Peskine28538492018-07-11 17:34:00 +02001804 * \retval #PSA_ERROR_NOT_SUPPORTED
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001805 * \p alg is not supported or is not a cipher algorithm.
Gilles Peskine28538492018-07-11 17:34:00 +02001806 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1807 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1808 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001809 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir90d8c7a2018-09-12 11:44:52 +03001810 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskine8e1addc2019-01-10 11:51:17 +01001811 * The operation state is not valid (already set up and not
1812 * subsequently completed).
1813 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03001814 * The library has not been previously initialized by psa_crypto_init().
1815 * It is implementation-dependent whether a failure to initialize
1816 * results in this error code.
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001817 */
Gilles Peskinefe119512018-07-08 21:39:34 +02001818psa_status_t psa_cipher_decrypt_setup(psa_cipher_operation_t *operation,
Gilles Peskineae32aac2018-11-30 14:39:32 +01001819 psa_key_handle_t handle,
Gilles Peskinefe119512018-07-08 21:39:34 +02001820 psa_algorithm_t alg);
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001821
Gilles Peskinedcd14942018-07-12 00:30:52 +02001822/** Generate an IV for a symmetric encryption operation.
1823 *
1824 * This function generates a random IV (initialization vector), nonce
1825 * or initial counter value for the encryption operation as appropriate
1826 * for the chosen algorithm, key type and key size.
1827 *
1828 * The application must call psa_cipher_encrypt_setup() before
1829 * calling this function.
1830 *
1831 * If this function returns an error status, the operation becomes inactive.
1832 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02001833 * \param[in,out] operation Active cipher operation.
1834 * \param[out] iv Buffer where the generated IV is to be written.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001835 * \param iv_size Size of the \p iv buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02001836 * \param[out] iv_length On success, the number of bytes of the
1837 * generated IV.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001838 *
1839 * \retval #PSA_SUCCESS
1840 * Success.
1841 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinef45adda2019-01-14 18:29:18 +01001842 * The operation state is not valid (not set up, or IV already set).
Gilles Peskinedcd14942018-07-12 00:30:52 +02001843 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
Gilles Peskinedda3bd32018-07-12 19:40:46 +02001844 * The size of the \p iv buffer is too small.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001845 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1846 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1847 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001848 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001849 * \retval #PSA_ERROR_BAD_STATE
1850 * The library has not been previously initialized by psa_crypto_init().
1851 * It is implementation-dependent whether a failure to initialize
1852 * results in this error code.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001853 */
Gilles Peskinefe119512018-07-08 21:39:34 +02001854psa_status_t psa_cipher_generate_iv(psa_cipher_operation_t *operation,
Andrew Thoelke47629d02019-03-22 11:24:17 +00001855 uint8_t *iv,
Gilles Peskinefe119512018-07-08 21:39:34 +02001856 size_t iv_size,
1857 size_t *iv_length);
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001858
Gilles Peskinedcd14942018-07-12 00:30:52 +02001859/** Set the IV for a symmetric encryption or decryption operation.
1860 *
Gilles Peskinef45adda2019-01-14 18:29:18 +01001861 * This function sets the IV (initialization vector), nonce
Gilles Peskinedcd14942018-07-12 00:30:52 +02001862 * or initial counter value for the encryption or decryption operation.
1863 *
1864 * The application must call psa_cipher_encrypt_setup() before
1865 * calling this function.
1866 *
1867 * If this function returns an error status, the operation becomes inactive.
1868 *
1869 * \note When encrypting, applications should use psa_cipher_generate_iv()
1870 * instead of this function, unless implementing a protocol that requires
1871 * a non-random IV.
1872 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02001873 * \param[in,out] operation Active cipher operation.
1874 * \param[in] iv Buffer containing the IV to use.
1875 * \param iv_length Size of the IV in bytes.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001876 *
1877 * \retval #PSA_SUCCESS
1878 * Success.
1879 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinef45adda2019-01-14 18:29:18 +01001880 * The operation state is not valid (not set up, or IV already set).
Gilles Peskinedcd14942018-07-12 00:30:52 +02001881 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001882 * The size of \p iv is not acceptable for the chosen algorithm,
Gilles Peskinedcd14942018-07-12 00:30:52 +02001883 * or the chosen algorithm does not use an IV.
1884 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1885 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1886 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001887 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001888 * \retval #PSA_ERROR_BAD_STATE
1889 * The library has not been previously initialized by psa_crypto_init().
1890 * It is implementation-dependent whether a failure to initialize
1891 * results in this error code.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001892 */
Gilles Peskinefe119512018-07-08 21:39:34 +02001893psa_status_t psa_cipher_set_iv(psa_cipher_operation_t *operation,
Andrew Thoelke47629d02019-03-22 11:24:17 +00001894 const uint8_t *iv,
Gilles Peskinefe119512018-07-08 21:39:34 +02001895 size_t iv_length);
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001896
Gilles Peskinedcd14942018-07-12 00:30:52 +02001897/** Encrypt or decrypt a message fragment in an active cipher operation.
1898 *
Gilles Peskine9ac94262018-07-12 20:15:32 +02001899 * Before calling this function, you must:
1900 * 1. Call either psa_cipher_encrypt_setup() or psa_cipher_decrypt_setup().
1901 * The choice of setup function determines whether this function
1902 * encrypts or decrypts its input.
1903 * 2. If the algorithm requires an IV, call psa_cipher_generate_iv()
1904 * (recommended when encrypting) or psa_cipher_set_iv().
Gilles Peskinedcd14942018-07-12 00:30:52 +02001905 *
1906 * If this function returns an error status, the operation becomes inactive.
1907 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02001908 * \param[in,out] operation Active cipher operation.
1909 * \param[in] input Buffer containing the message fragment to
1910 * encrypt or decrypt.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001911 * \param input_length Size of the \p input buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02001912 * \param[out] output Buffer where the output is to be written.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001913 * \param output_size Size of the \p output buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02001914 * \param[out] output_length On success, the number of bytes
1915 * that make up the returned output.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001916 *
1917 * \retval #PSA_SUCCESS
1918 * Success.
1919 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinef45adda2019-01-14 18:29:18 +01001920 * The operation state is not valid (not set up, IV required but
Gilles Peskinedcd14942018-07-12 00:30:52 +02001921 * not set, or already completed).
1922 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
1923 * The size of the \p output buffer is too small.
1924 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1925 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1926 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001927 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001928 * \retval #PSA_ERROR_BAD_STATE
1929 * The library has not been previously initialized by psa_crypto_init().
1930 * It is implementation-dependent whether a failure to initialize
1931 * results in this error code.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001932 */
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001933psa_status_t psa_cipher_update(psa_cipher_operation_t *operation,
1934 const uint8_t *input,
mohammad1603503973b2018-03-12 15:59:30 +02001935 size_t input_length,
Andrew Thoelke47629d02019-03-22 11:24:17 +00001936 uint8_t *output,
Gilles Peskine2d277862018-06-18 15:41:12 +02001937 size_t output_size,
mohammad1603503973b2018-03-12 15:59:30 +02001938 size_t *output_length);
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001939
Gilles Peskinedcd14942018-07-12 00:30:52 +02001940/** Finish encrypting or decrypting a message in a cipher operation.
1941 *
1942 * The application must call psa_cipher_encrypt_setup() or
1943 * psa_cipher_decrypt_setup() before calling this function. The choice
1944 * of setup function determines whether this function encrypts or
1945 * decrypts its input.
1946 *
1947 * This function finishes the encryption or decryption of the message
1948 * formed by concatenating the inputs passed to preceding calls to
1949 * psa_cipher_update().
1950 *
1951 * When this function returns, the operation becomes inactive.
1952 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02001953 * \param[in,out] operation Active cipher operation.
1954 * \param[out] output Buffer where the output is to be written.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02001955 * \param output_size Size of the \p output buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02001956 * \param[out] output_length On success, the number of bytes
1957 * that make up the returned output.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001958 *
1959 * \retval #PSA_SUCCESS
1960 * Success.
1961 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinef45adda2019-01-14 18:29:18 +01001962 * The operation state is not valid (not set up, IV required but
Gilles Peskinedcd14942018-07-12 00:30:52 +02001963 * not set, or already completed).
1964 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
1965 * The size of the \p output buffer is too small.
1966 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
1967 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
1968 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02001969 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01001970 * \retval #PSA_ERROR_BAD_STATE
1971 * The library has not been previously initialized by psa_crypto_init().
1972 * It is implementation-dependent whether a failure to initialize
1973 * results in this error code.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001974 */
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001975psa_status_t psa_cipher_finish(psa_cipher_operation_t *operation,
mohammad1603503973b2018-03-12 15:59:30 +02001976 uint8_t *output,
Moran Peker0071b872018-04-22 20:16:58 +03001977 size_t output_size,
mohammad1603503973b2018-03-12 15:59:30 +02001978 size_t *output_length);
Gilles Peskine428dc5a2018-03-03 21:27:18 +01001979
Gilles Peskinedcd14942018-07-12 00:30:52 +02001980/** Abort a cipher operation.
1981 *
Gilles Peskinedcd14942018-07-12 00:30:52 +02001982 * Aborting an operation frees all associated resources except for the
Gilles Peskineb82ab6f2018-07-13 15:33:43 +02001983 * \p operation structure itself. Once aborted, the operation object
1984 * can be reused for another operation by calling
1985 * psa_cipher_encrypt_setup() or psa_cipher_decrypt_setup() again.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001986 *
Gilles Peskineb82ab6f2018-07-13 15:33:43 +02001987 * You may call this function any time after the operation object has
1988 * been initialized by any of the following methods:
1989 * - A call to psa_cipher_encrypt_setup() or psa_cipher_decrypt_setup(),
1990 * whether it succeeds or not.
1991 * - Initializing the \c struct to all-bits-zero.
1992 * - Initializing the \c struct to logical zeros, e.g.
1993 * `psa_cipher_operation_t operation = {0}`.
Gilles Peskinedcd14942018-07-12 00:30:52 +02001994 *
Gilles Peskineb82ab6f2018-07-13 15:33:43 +02001995 * In particular, calling psa_cipher_abort() after the operation has been
1996 * terminated by a call to psa_cipher_abort() or psa_cipher_finish()
1997 * is safe and has no effect.
1998 *
1999 * \param[in,out] operation Initialized cipher operation.
Gilles Peskinedcd14942018-07-12 00:30:52 +02002000 *
2001 * \retval #PSA_SUCCESS
2002 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002003 * \p operation is not an active cipher operation.
Gilles Peskinedcd14942018-07-12 00:30:52 +02002004 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2005 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002006 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01002007 * \retval #PSA_ERROR_BAD_STATE
2008 * The library has not been previously initialized by psa_crypto_init().
2009 * It is implementation-dependent whether a failure to initialize
2010 * results in this error code.
Gilles Peskinedcd14942018-07-12 00:30:52 +02002011 */
Gilles Peskine428dc5a2018-03-03 21:27:18 +01002012psa_status_t psa_cipher_abort(psa_cipher_operation_t *operation);
2013
2014/**@}*/
2015
Gilles Peskine3b555712018-03-03 21:27:57 +01002016/** \defgroup aead Authenticated encryption with associated data (AEAD)
2017 * @{
2018 */
2019
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002020/** Process an authenticated encryption operation.
Gilles Peskine3b555712018-03-03 21:27:57 +01002021 *
Gilles Peskineae32aac2018-11-30 14:39:32 +01002022 * \param handle Handle to the key to use for the operation.
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002023 * \param alg The AEAD algorithm to compute
2024 * (\c PSA_ALG_XXX value such that
Gilles Peskine7256e6c2018-07-12 00:34:26 +02002025 * #PSA_ALG_IS_AEAD(\p alg) is true).
Gilles Peskineedd11a12018-07-12 01:08:58 +02002026 * \param[in] nonce Nonce or IV to use.
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002027 * \param nonce_length Size of the \p nonce buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002028 * \param[in] additional_data Additional data that will be authenticated
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002029 * but not encrypted.
2030 * \param additional_data_length Size of \p additional_data in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002031 * \param[in] plaintext Data that will be authenticated and
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002032 * encrypted.
2033 * \param plaintext_length Size of \p plaintext in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002034 * \param[out] ciphertext Output buffer for the authenticated and
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002035 * encrypted data. The additional data is not
2036 * part of this output. For algorithms where the
2037 * encrypted data and the authentication tag
2038 * are defined as separate outputs, the
2039 * authentication tag is appended to the
2040 * encrypted data.
2041 * \param ciphertext_size Size of the \p ciphertext buffer in bytes.
2042 * This must be at least
2043 * #PSA_AEAD_ENCRYPT_OUTPUT_SIZE(\p alg,
2044 * \p plaintext_length).
Gilles Peskineedd11a12018-07-12 01:08:58 +02002045 * \param[out] ciphertext_length On success, the size of the output
Gilles Peskine4c6fdbb2019-02-08 11:22:39 +01002046 * in the \p ciphertext buffer.
Gilles Peskine3b555712018-03-03 21:27:57 +01002047 *
Gilles Peskine28538492018-07-11 17:34:00 +02002048 * \retval #PSA_SUCCESS
Gilles Peskine3b555712018-03-03 21:27:57 +01002049 * Success.
Gilles Peskineae32aac2018-11-30 14:39:32 +01002050 * \retval #PSA_ERROR_INVALID_HANDLE
David Saadab4ecc272019-02-14 13:48:10 +02002051 * \retval #PSA_ERROR_DOES_NOT_EXIST
Gilles Peskine28538492018-07-11 17:34:00 +02002052 * \retval #PSA_ERROR_NOT_PERMITTED
2053 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002054 * \p handle is not compatible with \p alg.
Gilles Peskine28538492018-07-11 17:34:00 +02002055 * \retval #PSA_ERROR_NOT_SUPPORTED
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002056 * \p alg is not supported or is not an AEAD algorithm.
Gilles Peskine28538492018-07-11 17:34:00 +02002057 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2058 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2059 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002060 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir90d8c7a2018-09-12 11:44:52 +03002061 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03002062 * The library has not been previously initialized by psa_crypto_init().
2063 * It is implementation-dependent whether a failure to initialize
2064 * results in this error code.
Gilles Peskine3b555712018-03-03 21:27:57 +01002065 */
Gilles Peskineae32aac2018-11-30 14:39:32 +01002066psa_status_t psa_aead_encrypt(psa_key_handle_t handle,
Gilles Peskine9fb0e012018-07-19 15:51:49 +02002067 psa_algorithm_t alg,
2068 const uint8_t *nonce,
2069 size_t nonce_length,
2070 const uint8_t *additional_data,
2071 size_t additional_data_length,
2072 const uint8_t *plaintext,
2073 size_t plaintext_length,
2074 uint8_t *ciphertext,
2075 size_t ciphertext_size,
2076 size_t *ciphertext_length);
Gilles Peskine3b555712018-03-03 21:27:57 +01002077
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002078/** Process an authenticated decryption operation.
Gilles Peskine3b555712018-03-03 21:27:57 +01002079 *
Gilles Peskineae32aac2018-11-30 14:39:32 +01002080 * \param handle Handle to the key to use for the operation.
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002081 * \param alg The AEAD algorithm to compute
2082 * (\c PSA_ALG_XXX value such that
Gilles Peskine7256e6c2018-07-12 00:34:26 +02002083 * #PSA_ALG_IS_AEAD(\p alg) is true).
Gilles Peskineedd11a12018-07-12 01:08:58 +02002084 * \param[in] nonce Nonce or IV to use.
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002085 * \param nonce_length Size of the \p nonce buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002086 * \param[in] additional_data Additional data that has been authenticated
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002087 * but not encrypted.
2088 * \param additional_data_length Size of \p additional_data in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002089 * \param[in] ciphertext Data that has been authenticated and
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002090 * encrypted. For algorithms where the
2091 * encrypted data and the authentication tag
2092 * are defined as separate inputs, the buffer
2093 * must contain the encrypted data followed
2094 * by the authentication tag.
2095 * \param ciphertext_length Size of \p ciphertext in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002096 * \param[out] plaintext Output buffer for the decrypted data.
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002097 * \param plaintext_size Size of the \p plaintext buffer in bytes.
2098 * This must be at least
2099 * #PSA_AEAD_DECRYPT_OUTPUT_SIZE(\p alg,
2100 * \p ciphertext_length).
Gilles Peskineedd11a12018-07-12 01:08:58 +02002101 * \param[out] plaintext_length On success, the size of the output
Gilles Peskine4c6fdbb2019-02-08 11:22:39 +01002102 * in the \p plaintext buffer.
Gilles Peskine3b555712018-03-03 21:27:57 +01002103 *
Gilles Peskine28538492018-07-11 17:34:00 +02002104 * \retval #PSA_SUCCESS
Gilles Peskine3b555712018-03-03 21:27:57 +01002105 * Success.
Gilles Peskineae32aac2018-11-30 14:39:32 +01002106 * \retval #PSA_ERROR_INVALID_HANDLE
David Saadab4ecc272019-02-14 13:48:10 +02002107 * \retval #PSA_ERROR_DOES_NOT_EXIST
Gilles Peskine28538492018-07-11 17:34:00 +02002108 * \retval #PSA_ERROR_INVALID_SIGNATURE
Gilles Peskine1e7d8f12018-06-01 16:29:38 +02002109 * The ciphertext is not authentic.
Gilles Peskine28538492018-07-11 17:34:00 +02002110 * \retval #PSA_ERROR_NOT_PERMITTED
2111 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002112 * \p handle is not compatible with \p alg.
Gilles Peskine28538492018-07-11 17:34:00 +02002113 * \retval #PSA_ERROR_NOT_SUPPORTED
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002114 * \p alg is not supported or is not an AEAD algorithm.
Gilles Peskine28538492018-07-11 17:34:00 +02002115 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2116 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2117 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002118 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir90d8c7a2018-09-12 11:44:52 +03002119 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03002120 * The library has not been previously initialized by psa_crypto_init().
2121 * It is implementation-dependent whether a failure to initialize
2122 * results in this error code.
Gilles Peskine3b555712018-03-03 21:27:57 +01002123 */
Gilles Peskineae32aac2018-11-30 14:39:32 +01002124psa_status_t psa_aead_decrypt(psa_key_handle_t handle,
Gilles Peskine9fb0e012018-07-19 15:51:49 +02002125 psa_algorithm_t alg,
2126 const uint8_t *nonce,
2127 size_t nonce_length,
2128 const uint8_t *additional_data,
2129 size_t additional_data_length,
2130 const uint8_t *ciphertext,
2131 size_t ciphertext_length,
2132 uint8_t *plaintext,
2133 size_t plaintext_size,
2134 size_t *plaintext_length);
Gilles Peskine3b555712018-03-03 21:27:57 +01002135
Gilles Peskine30a9e412019-01-14 18:36:12 +01002136/** The type of the state data structure for multipart AEAD operations.
2137 *
2138 * Before calling any function on an AEAD operation object, the application
2139 * must initialize it by any of the following means:
2140 * - Set the structure to all-bits-zero, for example:
2141 * \code
2142 * psa_aead_operation_t operation;
2143 * memset(&operation, 0, sizeof(operation));
2144 * \endcode
2145 * - Initialize the structure to logical zero values, for example:
2146 * \code
2147 * psa_aead_operation_t operation = {0};
2148 * \endcode
2149 * - Initialize the structure to the initializer #PSA_AEAD_OPERATION_INIT,
2150 * for example:
2151 * \code
2152 * psa_aead_operation_t operation = PSA_AEAD_OPERATION_INIT;
2153 * \endcode
2154 * - Assign the result of the function psa_aead_operation_init()
2155 * to the structure, for example:
2156 * \code
2157 * psa_aead_operation_t operation;
2158 * operation = psa_aead_operation_init();
2159 * \endcode
2160 *
2161 * This is an implementation-defined \c struct. Applications should not
2162 * make any assumptions about the content of this structure except
2163 * as directed by the documentation of a specific implementation. */
2164typedef struct psa_aead_operation_s psa_aead_operation_t;
2165
2166/** \def PSA_AEAD_OPERATION_INIT
2167 *
2168 * This macro returns a suitable initializer for an AEAD operation object of
2169 * type #psa_aead_operation_t.
2170 */
2171#ifdef __DOXYGEN_ONLY__
2172/* This is an example definition for documentation purposes.
2173 * Implementations should define a suitable value in `crypto_struct.h`.
2174 */
2175#define PSA_AEAD_OPERATION_INIT {0}
2176#endif
2177
2178/** Return an initial value for an AEAD operation object.
2179 */
2180static psa_aead_operation_t psa_aead_operation_init(void);
2181
2182/** Set the key for a multipart authenticated encryption operation.
2183 *
2184 * The sequence of operations to encrypt a message with authentication
2185 * is as follows:
2186 * -# Allocate an operation object which will be passed to all the functions
2187 * listed here.
2188 * -# Initialize the operation object with one of the methods described in the
2189 * documentation for #psa_aead_operation_t, e.g.
2190 * PSA_AEAD_OPERATION_INIT.
2191 * -# Call psa_aead_encrypt_setup() to specify the algorithm and key.
Gilles Peskinebc59c852019-01-17 15:26:08 +01002192 * -# If needed, call psa_aead_set_lengths() to specify the length of the
2193 * inputs to the subsequent calls to psa_aead_update_ad() and
2194 * psa_aead_update(). See the documentation of psa_aead_set_lengths()
2195 * for details.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002196 * -# Call either psa_aead_generate_nonce() or psa_aead_set_nonce() to
2197 * generate or set the nonce. You should use
2198 * psa_aead_generate_nonce() unless the protocol you are implementing
2199 * requires a specific nonce value.
2200 * -# Call psa_aead_update_ad() zero, one or more times, passing a fragment
2201 * of the non-encrypted additional authenticated data each time.
2202 * -# Call psa_aead_update() zero, one or more times, passing a fragment
Gilles Peskinea05602d2019-01-17 15:25:52 +01002203 * of the message to encrypt each time.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002204 * -# Call psa_aead_finish().
2205 *
2206 * The application may call psa_aead_abort() at any time after the operation
2207 * has been initialized.
2208 *
2209 * After a successful call to psa_aead_encrypt_setup(), the application must
2210 * eventually terminate the operation. The following events terminate an
2211 * operation:
2212 * - A failed call to any of the \c psa_aead_xxx functions.
2213 * - A call to psa_aead_finish(), psa_aead_verify() or psa_aead_abort().
2214 *
2215 * \param[in,out] operation The operation object to set up. It must have
2216 * been initialized as per the documentation for
2217 * #psa_aead_operation_t and not yet in use.
2218 * \param handle Handle to the key to use for the operation.
2219 * It must remain valid until the operation
2220 * terminates.
2221 * \param alg The AEAD algorithm to compute
2222 * (\c PSA_ALG_XXX value such that
2223 * #PSA_ALG_IS_AEAD(\p alg) is true).
2224 *
2225 * \retval #PSA_SUCCESS
2226 * Success.
2227 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine30a9e412019-01-14 18:36:12 +01002228 * \retval #PSA_ERROR_NOT_PERMITTED
2229 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002230 * \p handle is not compatible with \p alg.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002231 * \retval #PSA_ERROR_NOT_SUPPORTED
2232 * \p alg is not supported or is not an AEAD algorithm.
2233 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2234 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2235 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002236 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Gilles Peskine30a9e412019-01-14 18:36:12 +01002237 * \retval #PSA_ERROR_BAD_STATE
2238 * The library has not been previously initialized by psa_crypto_init().
2239 * It is implementation-dependent whether a failure to initialize
2240 * results in this error code.
2241 */
2242psa_status_t psa_aead_encrypt_setup(psa_aead_operation_t *operation,
2243 psa_key_handle_t handle,
2244 psa_algorithm_t alg);
2245
2246/** Set the key for a multipart authenticated decryption operation.
2247 *
2248 * The sequence of operations to decrypt a message with authentication
2249 * is as follows:
2250 * -# Allocate an operation object which will be passed to all the functions
2251 * listed here.
2252 * -# Initialize the operation object with one of the methods described in the
2253 * documentation for #psa_aead_operation_t, e.g.
2254 * PSA_AEAD_OPERATION_INIT.
2255 * -# Call psa_aead_decrypt_setup() to specify the algorithm and key.
Gilles Peskinebc59c852019-01-17 15:26:08 +01002256 * -# If needed, call psa_aead_set_lengths() to specify the length of the
2257 * inputs to the subsequent calls to psa_aead_update_ad() and
2258 * psa_aead_update(). See the documentation of psa_aead_set_lengths()
2259 * for details.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002260 * -# Call psa_aead_set_nonce() with the nonce for the decryption.
2261 * -# Call psa_aead_update_ad() zero, one or more times, passing a fragment
2262 * of the non-encrypted additional authenticated data each time.
2263 * -# Call psa_aead_update() zero, one or more times, passing a fragment
Gilles Peskinea05602d2019-01-17 15:25:52 +01002264 * of the ciphertext to decrypt each time.
2265 * -# Call psa_aead_verify().
Gilles Peskine30a9e412019-01-14 18:36:12 +01002266 *
2267 * The application may call psa_aead_abort() at any time after the operation
2268 * has been initialized.
2269 *
2270 * After a successful call to psa_aead_decrypt_setup(), the application must
2271 * eventually terminate the operation. The following events terminate an
2272 * operation:
2273 * - A failed call to any of the \c psa_aead_xxx functions.
2274 * - A call to psa_aead_finish(), psa_aead_verify() or psa_aead_abort().
2275 *
2276 * \param[in,out] operation The operation object to set up. It must have
2277 * been initialized as per the documentation for
2278 * #psa_aead_operation_t and not yet in use.
2279 * \param handle Handle to the key to use for the operation.
2280 * It must remain valid until the operation
2281 * terminates.
2282 * \param alg The AEAD algorithm to compute
2283 * (\c PSA_ALG_XXX value such that
2284 * #PSA_ALG_IS_AEAD(\p alg) is true).
2285 *
2286 * \retval #PSA_SUCCESS
2287 * Success.
2288 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine30a9e412019-01-14 18:36:12 +01002289 * \retval #PSA_ERROR_NOT_PERMITTED
2290 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002291 * \p handle is not compatible with \p alg.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002292 * \retval #PSA_ERROR_NOT_SUPPORTED
2293 * \p alg is not supported or is not an AEAD algorithm.
2294 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2295 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2296 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002297 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Gilles Peskine30a9e412019-01-14 18:36:12 +01002298 * \retval #PSA_ERROR_BAD_STATE
2299 * The library has not been previously initialized by psa_crypto_init().
2300 * It is implementation-dependent whether a failure to initialize
2301 * results in this error code.
2302 */
2303psa_status_t psa_aead_decrypt_setup(psa_aead_operation_t *operation,
2304 psa_key_handle_t handle,
2305 psa_algorithm_t alg);
2306
2307/** Generate a random nonce for an authenticated encryption operation.
2308 *
2309 * This function generates a random nonce for the authenticated encryption
2310 * operation with an appropriate size for the chosen algorithm, key type
2311 * and key size.
2312 *
2313 * The application must call psa_aead_encrypt_setup() before
2314 * calling this function.
2315 *
2316 * If this function returns an error status, the operation becomes inactive.
2317 *
2318 * \param[in,out] operation Active AEAD operation.
2319 * \param[out] nonce Buffer where the generated nonce is to be
2320 * written.
2321 * \param nonce_size Size of the \p nonce buffer in bytes.
2322 * \param[out] nonce_length On success, the number of bytes of the
2323 * generated nonce.
2324 *
2325 * \retval #PSA_SUCCESS
2326 * Success.
2327 * \retval #PSA_ERROR_BAD_STATE
2328 * The operation state is not valid (not set up, or nonce already set).
2329 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
2330 * The size of the \p nonce buffer is too small.
2331 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2332 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2333 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002334 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01002335 * \retval #PSA_ERROR_BAD_STATE
2336 * The library has not been previously initialized by psa_crypto_init().
2337 * It is implementation-dependent whether a failure to initialize
2338 * results in this error code.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002339 */
2340psa_status_t psa_aead_generate_nonce(psa_aead_operation_t *operation,
Andrew Thoelked16bdac2019-05-15 12:34:01 +01002341 uint8_t *nonce,
Gilles Peskine30a9e412019-01-14 18:36:12 +01002342 size_t nonce_size,
2343 size_t *nonce_length);
2344
2345/** Set the nonce for an authenticated encryption or decryption operation.
2346 *
2347 * This function sets the nonce for the authenticated
2348 * encryption or decryption operation.
2349 *
2350 * The application must call psa_aead_encrypt_setup() before
2351 * calling this function.
2352 *
2353 * If this function returns an error status, the operation becomes inactive.
2354 *
Gilles Peskinea05602d2019-01-17 15:25:52 +01002355 * \note When encrypting, applications should use psa_aead_generate_nonce()
Gilles Peskine30a9e412019-01-14 18:36:12 +01002356 * instead of this function, unless implementing a protocol that requires
2357 * a non-random IV.
2358 *
2359 * \param[in,out] operation Active AEAD operation.
Gilles Peskinea05602d2019-01-17 15:25:52 +01002360 * \param[in] nonce Buffer containing the nonce to use.
2361 * \param nonce_length Size of the nonce in bytes.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002362 *
2363 * \retval #PSA_SUCCESS
2364 * Success.
2365 * \retval #PSA_ERROR_BAD_STATE
2366 * The operation state is not valid (not set up, or nonce already set).
2367 * \retval #PSA_ERROR_INVALID_ARGUMENT
2368 * The size of \p nonce is not acceptable for the chosen algorithm.
2369 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2370 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2371 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002372 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01002373 * \retval #PSA_ERROR_BAD_STATE
2374 * The library has not been previously initialized by psa_crypto_init().
2375 * It is implementation-dependent whether a failure to initialize
2376 * results in this error code.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002377 */
2378psa_status_t psa_aead_set_nonce(psa_aead_operation_t *operation,
Andrew Thoelked16bdac2019-05-15 12:34:01 +01002379 const uint8_t *nonce,
Gilles Peskine30a9e412019-01-14 18:36:12 +01002380 size_t nonce_length);
2381
Gilles Peskinebc59c852019-01-17 15:26:08 +01002382/** Declare the lengths of the message and additional data for AEAD.
2383 *
2384 * The application must call this function before calling
2385 * psa_aead_update_ad() or psa_aead_update() if the algorithm for
2386 * the operation requires it. If the algorithm does not require it,
2387 * calling this function is optional, but if this function is called
2388 * then the implementation must enforce the lengths.
2389 *
2390 * You may call this function before or after setting the nonce with
2391 * psa_aead_set_nonce() or psa_aead_generate_nonce().
2392 *
2393 * - For #PSA_ALG_CCM, calling this function is required.
2394 * - For the other AEAD algorithms defined in this specification, calling
2395 * this function is not required.
2396 * - For vendor-defined algorithm, refer to the vendor documentation.
2397 *
2398 * \param[in,out] operation Active AEAD operation.
2399 * \param ad_length Size of the non-encrypted additional
2400 * authenticated data in bytes.
2401 * \param plaintext_length Size of the plaintext to encrypt in bytes.
2402 *
2403 * \retval #PSA_SUCCESS
2404 * Success.
2405 * \retval #PSA_ERROR_BAD_STATE
2406 * The operation state is not valid (not set up, already completed,
2407 * or psa_aead_update_ad() or psa_aead_update() already called).
2408 * \retval #PSA_ERROR_INVALID_ARGUMENT
2409 * At least one of the lengths is not acceptable for the chosen
2410 * algorithm.
2411 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2412 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2413 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002414 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01002415 * \retval #PSA_ERROR_BAD_STATE
2416 * The library has not been previously initialized by psa_crypto_init().
2417 * It is implementation-dependent whether a failure to initialize
2418 * results in this error code.
Gilles Peskinebc59c852019-01-17 15:26:08 +01002419 */
2420psa_status_t psa_aead_set_lengths(psa_aead_operation_t *operation,
2421 size_t ad_length,
2422 size_t plaintext_length);
2423
Gilles Peskine30a9e412019-01-14 18:36:12 +01002424/** Pass additional data to an active AEAD operation.
2425 *
2426 * Additional data is authenticated, but not encrypted.
2427 *
2428 * You may call this function multiple times to pass successive fragments
2429 * of the additional data. You may not call this function after passing
2430 * data to encrypt or decrypt with psa_aead_update().
2431 *
2432 * Before calling this function, you must:
2433 * 1. Call either psa_aead_encrypt_setup() or psa_aead_decrypt_setup().
2434 * 2. Set the nonce with psa_aead_generate_nonce() or psa_aead_set_nonce().
2435 *
2436 * If this function returns an error status, the operation becomes inactive.
2437 *
2438 * \warning When decrypting, until psa_aead_verify() has returned #PSA_SUCCESS,
2439 * there is no guarantee that the input is valid. Therefore, until
2440 * you have called psa_aead_verify() and it has returned #PSA_SUCCESS,
2441 * treat the input as untrusted and prepare to undo any action that
2442 * depends on the input if psa_aead_verify() returns an error status.
2443 *
2444 * \param[in,out] operation Active AEAD operation.
2445 * \param[in] input Buffer containing the fragment of
2446 * additional data.
2447 * \param input_length Size of the \p input buffer in bytes.
2448 *
2449 * \retval #PSA_SUCCESS
2450 * Success.
2451 * \retval #PSA_ERROR_BAD_STATE
2452 * The operation state is not valid (not set up, nonce not set,
2453 * psa_aead_update() already called, or operation already completed).
Gilles Peskinebc59c852019-01-17 15:26:08 +01002454 * \retval #PSA_ERROR_INVALID_ARGUMENT
2455 * The total input length overflows the additional data length that
2456 * was previously specified with psa_aead_set_lengths().
Gilles Peskine30a9e412019-01-14 18:36:12 +01002457 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2458 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2459 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002460 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01002461 * \retval #PSA_ERROR_BAD_STATE
2462 * The library has not been previously initialized by psa_crypto_init().
2463 * It is implementation-dependent whether a failure to initialize
2464 * results in this error code.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002465 */
2466psa_status_t psa_aead_update_ad(psa_aead_operation_t *operation,
2467 const uint8_t *input,
2468 size_t input_length);
2469
2470/** Encrypt or decrypt a message fragment in an active AEAD operation.
2471 *
2472 * Before calling this function, you must:
2473 * 1. Call either psa_aead_encrypt_setup() or psa_aead_decrypt_setup().
2474 * The choice of setup function determines whether this function
2475 * encrypts or decrypts its input.
2476 * 2. Set the nonce with psa_aead_generate_nonce() or psa_aead_set_nonce().
2477 * 3. Call psa_aead_update_ad() to pass all the additional data.
2478 *
2479 * If this function returns an error status, the operation becomes inactive.
2480 *
2481 * \warning When decrypting, until psa_aead_verify() has returned #PSA_SUCCESS,
2482 * there is no guarantee that the input is valid. Therefore, until
2483 * you have called psa_aead_verify() and it has returned #PSA_SUCCESS:
2484 * - Do not use the output in any way other than storing it in a
2485 * confidential location. If you take any action that depends
2486 * on the tentative decrypted data, this action will need to be
2487 * undone if the input turns out not to be valid. Furthermore,
2488 * if an adversary can observe that this action took place
2489 * (for example through timing), they may be able to use this
2490 * fact as an oracle to decrypt any message encrypted with the
2491 * same key.
2492 * - In particular, do not copy the output anywhere but to a
2493 * memory or storage space that you have exclusive access to.
2494 *
Gilles Peskinef02aec92019-05-06 15:42:54 +02002495 * This function does not require the input to be aligned to any
2496 * particular block boundary. If the implementation can only process
Gilles Peskineac99e322019-05-14 16:10:53 +02002497 * a whole block at a time, it must consume all the input provided, but
2498 * it may delay the end of the corresponding output until a subsequent
2499 * call to psa_aead_update(), psa_aead_finish() or psa_aead_verify()
2500 * provides sufficient input. The amount of data that can be delayed
2501 * in this way is bounded by #PSA_AEAD_UPDATE_OUTPUT_SIZE.
Gilles Peskinef02aec92019-05-06 15:42:54 +02002502 *
Gilles Peskine30a9e412019-01-14 18:36:12 +01002503 * \param[in,out] operation Active AEAD operation.
2504 * \param[in] input Buffer containing the message fragment to
2505 * encrypt or decrypt.
2506 * \param input_length Size of the \p input buffer in bytes.
2507 * \param[out] output Buffer where the output is to be written.
2508 * \param output_size Size of the \p output buffer in bytes.
Gilles Peskine49dd8d82019-05-06 15:16:19 +02002509 * This must be at least
2510 * #PSA_AEAD_UPDATE_OUTPUT_SIZE(\c alg,
2511 * \p input_length) where \c alg is the
2512 * algorithm that is being calculated.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002513 * \param[out] output_length On success, the number of bytes
2514 * that make up the returned output.
2515 *
2516 * \retval #PSA_SUCCESS
2517 * Success.
2518 * \retval #PSA_ERROR_BAD_STATE
2519 * The operation state is not valid (not set up, nonce not set
2520 * or already completed).
2521 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
2522 * The size of the \p output buffer is too small.
Gilles Peskine49dd8d82019-05-06 15:16:19 +02002523 * You can determine a sufficient buffer size by calling
2524 * #PSA_AEAD_UPDATE_OUTPUT_SIZE(\c alg, \p input_length)
2525 * where \c alg is the algorithm that is being calculated.
Gilles Peskinebc59c852019-01-17 15:26:08 +01002526 * \retval #PSA_ERROR_INVALID_ARGUMENT
2527 * The total length of input to psa_aead_update_ad() so far is
2528 * less than the additional data length that was previously
2529 * specified with psa_aead_set_lengths().
2530 * \retval #PSA_ERROR_INVALID_ARGUMENT
2531 * The total input length overflows the plaintext length that
2532 * was previously specified with psa_aead_set_lengths().
Gilles Peskine30a9e412019-01-14 18:36:12 +01002533 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2534 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2535 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002536 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01002537 * \retval #PSA_ERROR_BAD_STATE
2538 * The library has not been previously initialized by psa_crypto_init().
2539 * It is implementation-dependent whether a failure to initialize
2540 * results in this error code.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002541 */
2542psa_status_t psa_aead_update(psa_aead_operation_t *operation,
2543 const uint8_t *input,
2544 size_t input_length,
Andrew Thoelked16bdac2019-05-15 12:34:01 +01002545 uint8_t *output,
Gilles Peskine30a9e412019-01-14 18:36:12 +01002546 size_t output_size,
2547 size_t *output_length);
2548
2549/** Finish encrypting a message in an AEAD operation.
2550 *
2551 * The operation must have been set up with psa_aead_encrypt_setup().
2552 *
2553 * This function finishes the authentication of the additional data
2554 * formed by concatenating the inputs passed to preceding calls to
2555 * psa_aead_update_ad() with the plaintext formed by concatenating the
2556 * inputs passed to preceding calls to psa_aead_update().
2557 *
2558 * This function has two output buffers:
2559 * - \p ciphertext contains trailing ciphertext that was buffered from
Gilles Peskinef02aec92019-05-06 15:42:54 +02002560 * preceding calls to psa_aead_update().
Gilles Peskine30a9e412019-01-14 18:36:12 +01002561 * - \p tag contains the authentication tag. Its length is always
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002562 * #PSA_AEAD_TAG_LENGTH(\c alg) where \c alg is the AEAD algorithm
Gilles Peskine30a9e412019-01-14 18:36:12 +01002563 * that the operation performs.
2564 *
2565 * When this function returns, the operation becomes inactive.
2566 *
2567 * \param[in,out] operation Active AEAD operation.
2568 * \param[out] ciphertext Buffer where the last part of the ciphertext
2569 * is to be written.
2570 * \param ciphertext_size Size of the \p ciphertext buffer in bytes.
Gilles Peskine49dd8d82019-05-06 15:16:19 +02002571 * This must be at least
2572 * #PSA_AEAD_FINISH_OUTPUT_SIZE(\c alg) where
2573 * \c alg is the algorithm that is being
2574 * calculated.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002575 * \param[out] ciphertext_length On success, the number of bytes of
2576 * returned ciphertext.
2577 * \param[out] tag Buffer where the authentication tag is
2578 * to be written.
2579 * \param tag_size Size of the \p tag buffer in bytes.
Gilles Peskine49dd8d82019-05-06 15:16:19 +02002580 * This must be at least
2581 * #PSA_AEAD_TAG_LENGTH(\c alg) where \c alg is
2582 * the algorithm that is being calculated.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002583 * \param[out] tag_length On success, the number of bytes
2584 * that make up the returned tag.
2585 *
2586 * \retval #PSA_SUCCESS
2587 * Success.
2588 * \retval #PSA_ERROR_BAD_STATE
2589 * The operation state is not valid (not set up, nonce not set,
2590 * decryption, or already completed).
2591 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002592 * The size of the \p ciphertext or \p tag buffer is too small.
Gilles Peskine49dd8d82019-05-06 15:16:19 +02002593 * You can determine a sufficient buffer size for \p ciphertext by
2594 * calling #PSA_AEAD_FINISH_OUTPUT_SIZE(\c alg)
2595 * where \c alg is the algorithm that is being calculated.
2596 * You can determine a sufficient buffer size for \p tag by
2597 * calling #PSA_AEAD_TAG_LENGTH(\c alg).
Gilles Peskinebc59c852019-01-17 15:26:08 +01002598 * \retval #PSA_ERROR_INVALID_ARGUMENT
2599 * The total length of input to psa_aead_update_ad() so far is
2600 * less than the additional data length that was previously
2601 * specified with psa_aead_set_lengths().
2602 * \retval #PSA_ERROR_INVALID_ARGUMENT
2603 * The total length of input to psa_aead_update() so far is
2604 * less than the plaintext length that was previously
2605 * specified with psa_aead_set_lengths().
Gilles Peskine30a9e412019-01-14 18:36:12 +01002606 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2607 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2608 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002609 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01002610 * \retval #PSA_ERROR_BAD_STATE
2611 * The library has not been previously initialized by psa_crypto_init().
2612 * It is implementation-dependent whether a failure to initialize
2613 * results in this error code.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002614 */
2615psa_status_t psa_aead_finish(psa_aead_operation_t *operation,
Gilles Peskinea05602d2019-01-17 15:25:52 +01002616 uint8_t *ciphertext,
2617 size_t ciphertext_size,
2618 size_t *ciphertext_length,
Gilles Peskine30a9e412019-01-14 18:36:12 +01002619 uint8_t *tag,
2620 size_t tag_size,
2621 size_t *tag_length);
2622
2623/** Finish authenticating and decrypting a message in an AEAD operation.
2624 *
2625 * The operation must have been set up with psa_aead_decrypt_setup().
2626 *
2627 * This function finishes the authentication of the additional data
2628 * formed by concatenating the inputs passed to preceding calls to
2629 * psa_aead_update_ad() with the ciphertext formed by concatenating the
2630 * inputs passed to preceding calls to psa_aead_update().
2631 *
2632 * When this function returns, the operation becomes inactive.
2633 *
2634 * \param[in,out] operation Active AEAD operation.
Gilles Peskine5211efb2019-05-06 15:56:05 +02002635 * \param[out] plaintext Buffer where the last part of the plaintext
Gilles Peskineac99e322019-05-14 16:10:53 +02002636 * is to be written. This is the remaining data
Gilles Peskine5211efb2019-05-06 15:56:05 +02002637 * from previous calls to psa_aead_update()
2638 * that could not be processed until the end
2639 * of the input.
2640 * \param plaintext_size Size of the \p plaintext buffer in bytes.
Gilles Peskine49dd8d82019-05-06 15:16:19 +02002641 * This must be at least
2642 * #PSA_AEAD_VERIFY_OUTPUT_SIZE(\c alg) where
2643 * \c alg is the algorithm that is being
2644 * calculated.
Gilles Peskine5211efb2019-05-06 15:56:05 +02002645 * \param[out] plaintext_length On success, the number of bytes of
2646 * returned plaintext.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002647 * \param[in] tag Buffer containing the authentication tag.
2648 * \param tag_length Size of the \p tag buffer in bytes.
2649 *
2650 * \retval #PSA_SUCCESS
2651 * Success.
2652 * \retval #PSA_ERROR_BAD_STATE
2653 * The operation state is not valid (not set up, nonce not set,
2654 * encryption, or already completed).
Gilles Peskine49dd8d82019-05-06 15:16:19 +02002655 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
2656 * The size of the \p plaintext buffer is too small.
2657 * You can determine a sufficient buffer size for \p plaintext by
2658 * calling #PSA_AEAD_VERIFY_OUTPUT_SIZE(\c alg)
2659 * where \c alg is the algorithm that is being calculated.
Gilles Peskinebc59c852019-01-17 15:26:08 +01002660 * \retval #PSA_ERROR_INVALID_ARGUMENT
2661 * The total length of input to psa_aead_update_ad() so far is
2662 * less than the additional data length that was previously
2663 * specified with psa_aead_set_lengths().
2664 * \retval #PSA_ERROR_INVALID_ARGUMENT
2665 * The total length of input to psa_aead_update() so far is
2666 * less than the plaintext length that was previously
2667 * specified with psa_aead_set_lengths().
Gilles Peskine30a9e412019-01-14 18:36:12 +01002668 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2669 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2670 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002671 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01002672 * \retval #PSA_ERROR_BAD_STATE
2673 * The library has not been previously initialized by psa_crypto_init().
2674 * It is implementation-dependent whether a failure to initialize
2675 * results in this error code.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002676 */
2677psa_status_t psa_aead_verify(psa_aead_operation_t *operation,
Gilles Peskine5211efb2019-05-06 15:56:05 +02002678 uint8_t *plaintext,
2679 size_t plaintext_size,
2680 size_t *plaintext_length,
Gilles Peskine30a9e412019-01-14 18:36:12 +01002681 const uint8_t *tag,
2682 size_t tag_length);
2683
2684/** Abort an AEAD operation.
2685 *
2686 * Aborting an operation frees all associated resources except for the
2687 * \p operation structure itself. Once aborted, the operation object
2688 * can be reused for another operation by calling
2689 * psa_aead_encrypt_setup() or psa_aead_decrypt_setup() again.
2690 *
2691 * You may call this function any time after the operation object has
2692 * been initialized by any of the following methods:
2693 * - A call to psa_aead_encrypt_setup() or psa_aead_decrypt_setup(),
2694 * whether it succeeds or not.
2695 * - Initializing the \c struct to all-bits-zero.
2696 * - Initializing the \c struct to logical zeros, e.g.
2697 * `psa_aead_operation_t operation = {0}`.
2698 *
2699 * In particular, calling psa_aead_abort() after the operation has been
2700 * terminated by a call to psa_aead_abort() or psa_aead_finish()
2701 * is safe and has no effect.
2702 *
2703 * \param[in,out] operation Initialized AEAD operation.
2704 *
2705 * \retval #PSA_SUCCESS
2706 * \retval #PSA_ERROR_BAD_STATE
2707 * \p operation is not an active AEAD operation.
2708 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2709 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002710 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01002711 * \retval #PSA_ERROR_BAD_STATE
2712 * The library has not been previously initialized by psa_crypto_init().
2713 * It is implementation-dependent whether a failure to initialize
2714 * results in this error code.
Gilles Peskine30a9e412019-01-14 18:36:12 +01002715 */
2716psa_status_t psa_aead_abort(psa_aead_operation_t *operation);
2717
Gilles Peskine3b555712018-03-03 21:27:57 +01002718/**@}*/
2719
Gilles Peskine20035e32018-02-03 22:44:14 +01002720/** \defgroup asymmetric Asymmetric cryptography
2721 * @{
2722 */
2723
2724/**
2725 * \brief Sign a hash or short message with a private key.
2726 *
Gilles Peskine08bac712018-06-26 16:14:46 +02002727 * Note that to perform a hash-and-sign signature algorithm, you must
Gilles Peskineda8191d1c2018-07-08 19:46:38 +02002728 * first calculate the hash by calling psa_hash_setup(), psa_hash_update()
Gilles Peskine08bac712018-06-26 16:14:46 +02002729 * and psa_hash_finish(). Then pass the resulting hash as the \p hash
2730 * parameter to this function. You can use #PSA_ALG_SIGN_GET_HASH(\p alg)
2731 * to determine the hash algorithm to use.
2732 *
Gilles Peskineae32aac2018-11-30 14:39:32 +01002733 * \param handle Handle to the key to use for the operation.
2734 * It must be an asymmetric key pair.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002735 * \param alg A signature algorithm that is compatible with
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002736 * the type of \p handle.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002737 * \param[in] hash The hash or message to sign.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002738 * \param hash_length Size of the \p hash buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002739 * \param[out] signature Buffer where the signature is to be written.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002740 * \param signature_size Size of the \p signature buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002741 * \param[out] signature_length On success, the number of bytes
2742 * that make up the returned signature value.
Gilles Peskine308b91d2018-02-08 09:47:44 +01002743 *
Gilles Peskine28538492018-07-11 17:34:00 +02002744 * \retval #PSA_SUCCESS
2745 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002746 * The size of the \p signature buffer is too small. You can
Gilles Peskine308b91d2018-02-08 09:47:44 +01002747 * determine a sufficient buffer size by calling
Gilles Peskine7256e6c2018-07-12 00:34:26 +02002748 * #PSA_ASYMMETRIC_SIGN_OUTPUT_SIZE(\c key_type, \c key_bits, \p alg)
Gilles Peskine308b91d2018-02-08 09:47:44 +01002749 * where \c key_type and \c key_bits are the type and bit-size
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002750 * respectively of \p handle.
Gilles Peskine28538492018-07-11 17:34:00 +02002751 * \retval #PSA_ERROR_NOT_SUPPORTED
2752 * \retval #PSA_ERROR_INVALID_ARGUMENT
2753 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2754 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2755 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002756 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Gilles Peskine28538492018-07-11 17:34:00 +02002757 * \retval #PSA_ERROR_INSUFFICIENT_ENTROPY
itayzafrir90d8c7a2018-09-12 11:44:52 +03002758 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03002759 * The library has not been previously initialized by psa_crypto_init().
2760 * It is implementation-dependent whether a failure to initialize
2761 * results in this error code.
Gilles Peskine20035e32018-02-03 22:44:14 +01002762 */
Gilles Peskineae32aac2018-11-30 14:39:32 +01002763psa_status_t psa_asymmetric_sign(psa_key_handle_t handle,
Gilles Peskine20035e32018-02-03 22:44:14 +01002764 psa_algorithm_t alg,
2765 const uint8_t *hash,
2766 size_t hash_length,
Gilles Peskine20035e32018-02-03 22:44:14 +01002767 uint8_t *signature,
2768 size_t signature_size,
2769 size_t *signature_length);
2770
2771/**
2772 * \brief Verify the signature a hash or short message using a public key.
2773 *
Gilles Peskine08bac712018-06-26 16:14:46 +02002774 * Note that to perform a hash-and-sign signature algorithm, you must
Gilles Peskineda8191d1c2018-07-08 19:46:38 +02002775 * first calculate the hash by calling psa_hash_setup(), psa_hash_update()
Gilles Peskine08bac712018-06-26 16:14:46 +02002776 * and psa_hash_finish(). Then pass the resulting hash as the \p hash
2777 * parameter to this function. You can use #PSA_ALG_SIGN_GET_HASH(\p alg)
2778 * to determine the hash algorithm to use.
2779 *
Gilles Peskineae32aac2018-11-30 14:39:32 +01002780 * \param handle Handle to the key to use for the operation.
2781 * It must be a public key or an asymmetric key pair.
Gilles Peskine308b91d2018-02-08 09:47:44 +01002782 * \param alg A signature algorithm that is compatible with
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002783 * the type of \p handle.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002784 * \param[in] hash The hash or message whose signature is to be
Gilles Peskine08bac712018-06-26 16:14:46 +02002785 * verified.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002786 * \param hash_length Size of the \p hash buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002787 * \param[in] signature Buffer containing the signature to verify.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002788 * \param signature_length Size of the \p signature buffer in bytes.
Gilles Peskine308b91d2018-02-08 09:47:44 +01002789 *
Gilles Peskine28538492018-07-11 17:34:00 +02002790 * \retval #PSA_SUCCESS
Gilles Peskine308b91d2018-02-08 09:47:44 +01002791 * The signature is valid.
Gilles Peskine28538492018-07-11 17:34:00 +02002792 * \retval #PSA_ERROR_INVALID_SIGNATURE
Gilles Peskine308b91d2018-02-08 09:47:44 +01002793 * The calculation was perfomed successfully, but the passed
2794 * signature is not a valid signature.
Gilles Peskine28538492018-07-11 17:34:00 +02002795 * \retval #PSA_ERROR_NOT_SUPPORTED
2796 * \retval #PSA_ERROR_INVALID_ARGUMENT
2797 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2798 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2799 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002800 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir90d8c7a2018-09-12 11:44:52 +03002801 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03002802 * The library has not been previously initialized by psa_crypto_init().
2803 * It is implementation-dependent whether a failure to initialize
2804 * results in this error code.
Gilles Peskine20035e32018-02-03 22:44:14 +01002805 */
Gilles Peskineae32aac2018-11-30 14:39:32 +01002806psa_status_t psa_asymmetric_verify(psa_key_handle_t handle,
Gilles Peskine20035e32018-02-03 22:44:14 +01002807 psa_algorithm_t alg,
2808 const uint8_t *hash,
2809 size_t hash_length,
Gilles Peskinee9191ff2018-06-27 14:58:41 +02002810 const uint8_t *signature,
Gilles Peskine526fab02018-06-27 18:19:40 +02002811 size_t signature_length);
Gilles Peskine20035e32018-02-03 22:44:14 +01002812
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002813/**
2814 * \brief Encrypt a short message with a public key.
2815 *
Gilles Peskineae32aac2018-11-30 14:39:32 +01002816 * \param handle Handle to the key to use for the operation.
2817 * It must be a public key or an asymmetric
2818 * key pair.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002819 * \param alg An asymmetric encryption algorithm that is
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002820 * compatible with the type of \p handle.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002821 * \param[in] input The message to encrypt.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002822 * \param input_length Size of the \p input buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002823 * \param[in] salt A salt or label, if supported by the
2824 * encryption algorithm.
2825 * If the algorithm does not support a
2826 * salt, pass \c NULL.
2827 * If the algorithm supports an optional
2828 * salt and you do not want to pass a salt,
2829 * pass \c NULL.
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002830 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02002831 * - For #PSA_ALG_RSA_PKCS1V15_CRYPT, no salt is
2832 * supported.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002833 * \param salt_length Size of the \p salt buffer in bytes.
2834 * If \p salt is \c NULL, pass 0.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002835 * \param[out] output Buffer where the encrypted message is to
2836 * be written.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002837 * \param output_size Size of the \p output buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002838 * \param[out] output_length On success, the number of bytes
2839 * that make up the returned output.
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002840 *
Gilles Peskine28538492018-07-11 17:34:00 +02002841 * \retval #PSA_SUCCESS
2842 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002843 * The size of the \p output buffer is too small. You can
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002844 * determine a sufficient buffer size by calling
Gilles Peskine7256e6c2018-07-12 00:34:26 +02002845 * #PSA_ASYMMETRIC_ENCRYPT_OUTPUT_SIZE(\c key_type, \c key_bits, \p alg)
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002846 * where \c key_type and \c key_bits are the type and bit-size
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002847 * respectively of \p handle.
Gilles Peskine28538492018-07-11 17:34:00 +02002848 * \retval #PSA_ERROR_NOT_SUPPORTED
2849 * \retval #PSA_ERROR_INVALID_ARGUMENT
2850 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2851 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2852 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002853 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Gilles Peskine28538492018-07-11 17:34:00 +02002854 * \retval #PSA_ERROR_INSUFFICIENT_ENTROPY
itayzafrir90d8c7a2018-09-12 11:44:52 +03002855 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03002856 * The library has not been previously initialized by psa_crypto_init().
2857 * It is implementation-dependent whether a failure to initialize
2858 * results in this error code.
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002859 */
Gilles Peskineae32aac2018-11-30 14:39:32 +01002860psa_status_t psa_asymmetric_encrypt(psa_key_handle_t handle,
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002861 psa_algorithm_t alg,
2862 const uint8_t *input,
2863 size_t input_length,
2864 const uint8_t *salt,
2865 size_t salt_length,
2866 uint8_t *output,
2867 size_t output_size,
2868 size_t *output_length);
2869
2870/**
2871 * \brief Decrypt a short message with a private key.
2872 *
Gilles Peskineae32aac2018-11-30 14:39:32 +01002873 * \param handle Handle to the key to use for the operation.
2874 * It must be an asymmetric key pair.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002875 * \param alg An asymmetric encryption algorithm that is
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002876 * compatible with the type of \p handle.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002877 * \param[in] input The message to decrypt.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002878 * \param input_length Size of the \p input buffer in bytes.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002879 * \param[in] salt A salt or label, if supported by the
2880 * encryption algorithm.
2881 * If the algorithm does not support a
2882 * salt, pass \c NULL.
2883 * If the algorithm supports an optional
2884 * salt and you do not want to pass a salt,
2885 * pass \c NULL.
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002886 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02002887 * - For #PSA_ALG_RSA_PKCS1V15_CRYPT, no salt is
2888 * supported.
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002889 * \param salt_length Size of the \p salt buffer in bytes.
2890 * If \p salt is \c NULL, pass 0.
Gilles Peskineedd11a12018-07-12 01:08:58 +02002891 * \param[out] output Buffer where the decrypted message is to
2892 * be written.
2893 * \param output_size Size of the \c output buffer in bytes.
2894 * \param[out] output_length On success, the number of bytes
2895 * that make up the returned output.
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002896 *
Gilles Peskine28538492018-07-11 17:34:00 +02002897 * \retval #PSA_SUCCESS
2898 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
Gilles Peskinefa4070c2018-07-12 19:23:03 +02002899 * The size of the \p output buffer is too small. You can
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002900 * determine a sufficient buffer size by calling
Gilles Peskinedda3bd32018-07-12 19:40:46 +02002901 * #PSA_ASYMMETRIC_DECRYPT_OUTPUT_SIZE(\c key_type, \c key_bits, \p alg)
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002902 * where \c key_type and \c key_bits are the type and bit-size
Gilles Peskine3be6b7f2019-03-05 19:32:26 +01002903 * respectively of \p handle.
Gilles Peskine28538492018-07-11 17:34:00 +02002904 * \retval #PSA_ERROR_NOT_SUPPORTED
2905 * \retval #PSA_ERROR_INVALID_ARGUMENT
2906 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
2907 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
2908 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02002909 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Gilles Peskine28538492018-07-11 17:34:00 +02002910 * \retval #PSA_ERROR_INSUFFICIENT_ENTROPY
2911 * \retval #PSA_ERROR_INVALID_PADDING
itayzafrir90d8c7a2018-09-12 11:44:52 +03002912 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03002913 * The library has not been previously initialized by psa_crypto_init().
2914 * It is implementation-dependent whether a failure to initialize
2915 * results in this error code.
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002916 */
Gilles Peskineae32aac2018-11-30 14:39:32 +01002917psa_status_t psa_asymmetric_decrypt(psa_key_handle_t handle,
Gilles Peskine6944f9a2018-03-28 14:18:39 +02002918 psa_algorithm_t alg,
2919 const uint8_t *input,
2920 size_t input_length,
2921 const uint8_t *salt,
2922 size_t salt_length,
2923 uint8_t *output,
2924 size_t output_size,
2925 size_t *output_length);
2926
Gilles Peskine2f9c4dc2018-01-28 13:16:24 +01002927/**@}*/
2928
Gilles Peskine35675b62019-05-16 17:26:11 +02002929/** \defgroup key_derivation Key derivation and pseudorandom generation
Gilles Peskineeab56e42018-07-12 17:12:33 +02002930 * @{
2931 */
2932
Gilles Peskine35675b62019-05-16 17:26:11 +02002933/** The type of the state data structure for key derivation operations.
Gilles Peskineeab56e42018-07-12 17:12:33 +02002934 *
Gilles Peskine35675b62019-05-16 17:26:11 +02002935 * Before calling any function on a key derivation operation object, the
2936 * application must initialize it by any of the following means:
Gilles Peskineeab56e42018-07-12 17:12:33 +02002937 * - Set the structure to all-bits-zero, for example:
2938 * \code
Gilles Peskine35675b62019-05-16 17:26:11 +02002939 * psa_key_derivation_operation_t operation;
2940 * memset(&operation, 0, sizeof(operation));
Gilles Peskineeab56e42018-07-12 17:12:33 +02002941 * \endcode
2942 * - Initialize the structure to logical zero values, for example:
2943 * \code
Gilles Peskine35675b62019-05-16 17:26:11 +02002944 * psa_key_derivation_operation_t operation = {0};
Gilles Peskineeab56e42018-07-12 17:12:33 +02002945 * \endcode
Gilles Peskinea99d3fb2019-05-16 15:28:51 +02002946 * - Initialize the structure to the initializer #PSA_KEY_DERIVATION_OPERATION_INIT,
Gilles Peskineeab56e42018-07-12 17:12:33 +02002947 * for example:
2948 * \code
Gilles Peskine35675b62019-05-16 17:26:11 +02002949 * psa_key_derivation_operation_t operation = PSA_KEY_DERIVATION_OPERATION_INIT;
Gilles Peskineeab56e42018-07-12 17:12:33 +02002950 * \endcode
Gilles Peskinea99d3fb2019-05-16 15:28:51 +02002951 * - Assign the result of the function psa_key_derivation_operation_init()
Gilles Peskineeab56e42018-07-12 17:12:33 +02002952 * to the structure, for example:
2953 * \code
Gilles Peskine35675b62019-05-16 17:26:11 +02002954 * psa_key_derivation_operation_t operation;
2955 * operation = psa_key_derivation_operation_init();
Gilles Peskineeab56e42018-07-12 17:12:33 +02002956 * \endcode
2957 *
2958 * This is an implementation-defined \c struct. Applications should not
2959 * make any assumptions about the content of this structure except
2960 * as directed by the documentation of a specific implementation.
2961 */
Gilles Peskinecbe66502019-05-16 16:59:18 +02002962typedef struct psa_key_derivation_s psa_key_derivation_operation_t;
Gilles Peskineeab56e42018-07-12 17:12:33 +02002963
Gilles Peskinea99d3fb2019-05-16 15:28:51 +02002964/** \def PSA_KEY_DERIVATION_OPERATION_INIT
Gilles Peskineeab56e42018-07-12 17:12:33 +02002965 *
Gilles Peskine35675b62019-05-16 17:26:11 +02002966 * This macro returns a suitable initializer for a key derivation operation
2967 * object of type #psa_key_derivation_operation_t.
Gilles Peskineeab56e42018-07-12 17:12:33 +02002968 */
2969#ifdef __DOXYGEN_ONLY__
2970/* This is an example definition for documentation purposes.
2971 * Implementations should define a suitable value in `crypto_struct.h`.
2972 */
Gilles Peskinea99d3fb2019-05-16 15:28:51 +02002973#define PSA_KEY_DERIVATION_OPERATION_INIT {0}
Gilles Peskineeab56e42018-07-12 17:12:33 +02002974#endif
2975
Gilles Peskine35675b62019-05-16 17:26:11 +02002976/** Return an initial value for a key derivation operation object.
Gilles Peskineeab56e42018-07-12 17:12:33 +02002977 */
Gilles Peskinea99d3fb2019-05-16 15:28:51 +02002978static psa_key_derivation_operation_t psa_key_derivation_operation_init(void);
Gilles Peskineeab56e42018-07-12 17:12:33 +02002979
Gilles Peskine1cb9a082019-05-16 17:56:47 +02002980/** Set up a key derivation operation.
2981 *
2982 * A key derivation algorithm takes some inputs and uses them to generate
2983 * a byte stream in a deterministic way.
2984 * This byte stream can be used to produce keys and other
2985 * cryptographic material.
2986 *
2987 * To derive a key:
2988 * - Start with an initialized object of type #psa_key_derivation_operation_t.
2989 * - Call psa_key_derivation_setup() to select the algorithm.
2990 * - Provide the inputs for the key derivation by calling
2991 * psa_key_derivation_input_bytes() or psa_key_derivation_input_key()
2992 * as appropriate. Which inputs are needed, in what order, and whether
2993 * they may be keys and if so of what type depends on the algorithm.
2994 * - Optionally set the operation's maximum capacity with
2995 * psa_key_derivation_set_capacity(). You may do this before, in the middle
2996 * of or after providing inputs. For some algorithms, this step is mandatory
2997 * because the output depends on the maximum capacity.
2998 * - To derive a key, call psa_key_derivation_output_key().
2999 * To derive a byte string for a different purpose, call
3000 * - psa_key_derivation_output_bytes().
3001 * Successive calls to these functions use successive output bytes
3002 * calculated by the key derivation algorithm.
3003 * - Clean up the key derivation operation object with
3004 * psa_key_derivation_abort().
3005 *
3006 * \param[in,out] operation The key derivation operation object
3007 * to set up. It must
3008 * have been initialized but not set up yet.
3009 * \param alg The key derivation algorithm to compute
3010 * (\c PSA_ALG_XXX value such that
3011 * #PSA_ALG_IS_KEY_DERIVATION(\p alg) is true).
3012 *
3013 * \retval #PSA_SUCCESS
3014 * Success.
3015 * \retval #PSA_ERROR_INVALID_ARGUMENT
3016 * \c alg is not a key derivation algorithm.
3017 * \retval #PSA_ERROR_NOT_SUPPORTED
3018 * \c alg is not supported or is not a key derivation algorithm.
3019 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
3020 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
3021 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02003022 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Gilles Peskine1cb9a082019-05-16 17:56:47 +02003023 * \retval #PSA_ERROR_BAD_STATE
Adrian L. Shawdec47b62019-08-07 14:25:38 +01003024 * The operation state is either not initialized or has been setup.
3025 * \retval #PSA_ERROR_BAD_STATE
3026 * The library has not been previously initialized by psa_crypto_init().
3027 * It is implementation-dependent whether a failure to initialize
3028 * results in this error code.
Gilles Peskine1cb9a082019-05-16 17:56:47 +02003029 */
3030psa_status_t psa_key_derivation_setup(
3031 psa_key_derivation_operation_t *operation,
3032 psa_algorithm_t alg);
3033
Gilles Peskine35675b62019-05-16 17:26:11 +02003034/** Retrieve the current capacity of a key derivation operation.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003035 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003036 * The capacity of a key derivation is the maximum number of bytes that it can
3037 * return. When you get *N* bytes of output from a key derivation operation,
3038 * this reduces its capacity by *N*.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003039 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003040 * \param[in] operation The operation to query.
3041 * \param[out] capacity On success, the capacity of the operation.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003042 *
Gilles Peskine644cd5f2018-12-11 16:47:35 +01003043 * \retval #PSA_SUCCESS
Gilles Peskine644cd5f2018-12-11 16:47:35 +01003044 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
Adrian L. Shawdec47b62019-08-07 14:25:38 +01003045 * \retval #PSA_ERROR_BAD_STATE
3046 * The operation state is not valid.
3047 * \retval #PSA_ERROR_BAD_STATE
3048 * The library has not been previously initialized by psa_crypto_init().
3049 * It is implementation-dependent whether a failure to initialize
3050 * results in this error code.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003051 */
Gilles Peskinecf7292e2019-05-16 17:53:40 +02003052psa_status_t psa_key_derivation_get_capacity(
3053 const psa_key_derivation_operation_t *operation,
3054 size_t *capacity);
Gilles Peskineeab56e42018-07-12 17:12:33 +02003055
Gilles Peskine35675b62019-05-16 17:26:11 +02003056/** Set the maximum capacity of a key derivation operation.
Gilles Peskineb70a0fd2019-01-07 22:59:38 +01003057 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003058 * The capacity of a key derivation operation is the maximum number of bytes
3059 * that the key derivation operation can return from this point onwards.
3060 *
3061 * \param[in,out] operation The key derivation operation object to modify.
3062 * \param capacity The new capacity of the operation.
3063 * It must be less or equal to the operation's
Gilles Peskineb70a0fd2019-01-07 22:59:38 +01003064 * current capacity.
3065 *
3066 * \retval #PSA_SUCCESS
3067 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskine35675b62019-05-16 17:26:11 +02003068 * \p capacity is larger than the operation's current capacity.
3069 * In this case, the operation object remains valid and its capacity
3070 * remains unchanged.
Gilles Peskineb70a0fd2019-01-07 22:59:38 +01003071 * \retval #PSA_ERROR_BAD_STATE
Adrian L. Shawdec47b62019-08-07 14:25:38 +01003072 * The operation state is not valid.
Gilles Peskineb70a0fd2019-01-07 22:59:38 +01003073 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
Adrian L. Shawdec47b62019-08-07 14:25:38 +01003074 * \retval #PSA_ERROR_BAD_STATE
3075 * The library has not been previously initialized by psa_crypto_init().
3076 * It is implementation-dependent whether a failure to initialize
3077 * results in this error code.
Gilles Peskineb70a0fd2019-01-07 22:59:38 +01003078 */
Gilles Peskinecf7292e2019-05-16 17:53:40 +02003079psa_status_t psa_key_derivation_set_capacity(
3080 psa_key_derivation_operation_t *operation,
3081 size_t capacity);
Gilles Peskineb70a0fd2019-01-07 22:59:38 +01003082
Gilles Peskine1cb9a082019-05-16 17:56:47 +02003083/** Use the maximum possible capacity for a key derivation operation.
3084 *
3085 * Use this value as the capacity argument when setting up a key derivation
3086 * to indicate that the operation should have the maximum possible capacity.
3087 * The value of the maximum possible capacity depends on the key derivation
3088 * algorithm.
3089 */
3090#define PSA_KEY_DERIVATION_UNLIMITED_CAPACITY ((size_t)(-1))
3091
3092/** Provide an input for key derivation or key agreement.
3093 *
3094 * Which inputs are required and in what order depends on the algorithm.
3095 * Refer to the documentation of each key derivation or key agreement
3096 * algorithm for information.
3097 *
3098 * This function passes direct inputs. Some inputs must be passed as keys
3099 * using psa_key_derivation_input_key() instead of this function. Refer to
3100 * the documentation of individual step types for information.
3101 *
3102 * \param[in,out] operation The key derivation operation object to use.
3103 * It must have been set up with
3104 * psa_key_derivation_setup() and must not
3105 * have produced any output yet.
3106 * \param step Which step the input data is for.
3107 * \param[in] data Input data to use.
3108 * \param data_length Size of the \p data buffer in bytes.
3109 *
3110 * \retval #PSA_SUCCESS
3111 * Success.
3112 * \retval #PSA_ERROR_INVALID_ARGUMENT
3113 * \c step is not compatible with the operation's algorithm.
3114 * \retval #PSA_ERROR_INVALID_ARGUMENT
3115 * \c step does not allow direct inputs.
3116 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
3117 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
3118 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02003119 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Gilles Peskine1cb9a082019-05-16 17:56:47 +02003120 * \retval #PSA_ERROR_BAD_STATE
3121 * The value of \p step is not valid given the state of \p operation.
3122 * \retval #PSA_ERROR_BAD_STATE
3123 * The library has not been previously initialized by psa_crypto_init().
3124 * It is implementation-dependent whether a failure to initialize
3125 * results in this error code.
3126 */
3127psa_status_t psa_key_derivation_input_bytes(
3128 psa_key_derivation_operation_t *operation,
3129 psa_key_derivation_step_t step,
3130 const uint8_t *data,
3131 size_t data_length);
3132
3133/** Provide an input for key derivation in the form of a key.
3134 *
3135 * Which inputs are required and in what order depends on the algorithm.
3136 * Refer to the documentation of each key derivation or key agreement
3137 * algorithm for information.
3138 *
3139 * This function passes key inputs. Some inputs must be passed as keys
3140 * of the appropriate type using this function, while others must be
3141 * passed as direct inputs using psa_key_derivation_input_bytes(). Refer to
3142 * the documentation of individual step types for information.
3143 *
3144 * \param[in,out] operation The key derivation operation object to use.
3145 * It must have been set up with
3146 * psa_key_derivation_setup() and must not
3147 * have produced any output yet.
3148 * \param step Which step the input data is for.
3149 * \param handle Handle to the key. It must have an
3150 * appropriate type for \p step and must
3151 * allow the usage #PSA_KEY_USAGE_DERIVE.
3152 *
3153 * \retval #PSA_SUCCESS
3154 * Success.
3155 * \retval #PSA_ERROR_INVALID_HANDLE
3156 * \retval #PSA_ERROR_DOES_NOT_EXIST
3157 * \retval #PSA_ERROR_NOT_PERMITTED
3158 * \retval #PSA_ERROR_INVALID_ARGUMENT
3159 * \c step is not compatible with the operation's algorithm.
3160 * \retval #PSA_ERROR_INVALID_ARGUMENT
3161 * \c step does not allow key inputs.
3162 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
3163 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
3164 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02003165 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Gilles Peskine1cb9a082019-05-16 17:56:47 +02003166 * \retval #PSA_ERROR_BAD_STATE
3167 * The value of \p step is not valid given the state of \p operation.
3168 * \retval #PSA_ERROR_BAD_STATE
3169 * The library has not been previously initialized by psa_crypto_init().
3170 * It is implementation-dependent whether a failure to initialize
3171 * results in this error code.
3172 */
3173psa_status_t psa_key_derivation_input_key(
3174 psa_key_derivation_operation_t *operation,
3175 psa_key_derivation_step_t step,
3176 psa_key_handle_t handle);
3177
3178/** Perform a key agreement and use the shared secret as input to a key
3179 * derivation.
3180 *
3181 * A key agreement algorithm takes two inputs: a private key \p private_key
3182 * a public key \p peer_key.
3183 * The result of this function is passed as input to a key derivation.
3184 * The output of this key derivation can be extracted by reading from the
3185 * resulting operation to produce keys and other cryptographic material.
3186 *
3187 * \param[in,out] operation The key derivation operation object to use.
3188 * It must have been set up with
3189 * psa_key_derivation_setup() with a
3190 * key agreement and derivation algorithm
3191 * \c alg (\c PSA_ALG_XXX value such that
3192 * #PSA_ALG_IS_KEY_AGREEMENT(\c alg) is true
3193 * and #PSA_ALG_IS_RAW_KEY_AGREEMENT(\c alg)
3194 * is false).
3195 * The operation must be ready for an
3196 * input of the type given by \p step.
3197 * \param step Which step the input data is for.
3198 * \param private_key Handle to the private key to use.
3199 * \param[in] peer_key Public key of the peer. The peer key must be in the
3200 * same format that psa_import_key() accepts for the
3201 * public key type corresponding to the type of
3202 * private_key. That is, this function performs the
3203 * equivalent of
3204 * #psa_import_key(...,
3205 * `peer_key`, `peer_key_length`) where
3206 * with key attributes indicating the public key
3207 * type corresponding to the type of `private_key`.
3208 * For example, for EC keys, this means that peer_key
3209 * is interpreted as a point on the curve that the
3210 * private key is on. The standard formats for public
3211 * keys are documented in the documentation of
3212 * psa_export_public_key().
3213 * \param peer_key_length Size of \p peer_key in bytes.
3214 *
3215 * \retval #PSA_SUCCESS
3216 * Success.
3217 * \retval #PSA_ERROR_INVALID_HANDLE
3218 * \retval #PSA_ERROR_DOES_NOT_EXIST
3219 * \retval #PSA_ERROR_NOT_PERMITTED
3220 * \retval #PSA_ERROR_INVALID_ARGUMENT
3221 * \c private_key is not compatible with \c alg,
3222 * or \p peer_key is not valid for \c alg or not compatible with
3223 * \c private_key.
3224 * \retval #PSA_ERROR_NOT_SUPPORTED
3225 * \c alg is not supported or is not a key derivation algorithm.
3226 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
3227 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
3228 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02003229 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01003230 * \retval #PSA_ERROR_BAD_STATE
3231 * The library has not been previously initialized by psa_crypto_init().
3232 * It is implementation-dependent whether a failure to initialize
3233 * results in this error code.
Gilles Peskine1cb9a082019-05-16 17:56:47 +02003234 */
3235psa_status_t psa_key_derivation_key_agreement(
3236 psa_key_derivation_operation_t *operation,
3237 psa_key_derivation_step_t step,
3238 psa_key_handle_t private_key,
3239 const uint8_t *peer_key,
3240 size_t peer_key_length);
3241
Gilles Peskine35675b62019-05-16 17:26:11 +02003242/** Read some data from a key derivation operation.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003243 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003244 * This function calculates output bytes from a key derivation algorithm and
3245 * return those bytes.
3246 * If you view the key derivation's output as a stream of bytes, this
3247 * function destructively reads the requested number of bytes from the
3248 * stream.
3249 * The operation's capacity decreases by the number of bytes read.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003250 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003251 * \param[in,out] operation The key derivation operation object to read from.
3252 * \param[out] output Buffer where the output will be written.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003253 * \param output_length Number of bytes to output.
3254 *
Gilles Peskine644cd5f2018-12-11 16:47:35 +01003255 * \retval #PSA_SUCCESS
David Saadab4ecc272019-02-14 13:48:10 +02003256 * \retval #PSA_ERROR_INSUFFICIENT_DATA
Gilles Peskine35675b62019-05-16 17:26:11 +02003257 * The operation's capacity was less than
3258 * \p output_length bytes. Note that in this case,
3259 * no output is written to the output buffer.
3260 * The operation's capacity is set to 0, thus
Gilles Peskineeab56e42018-07-12 17:12:33 +02003261 * subsequent calls to this function will not
3262 * succeed, even with a smaller output buffer.
Gilles Peskine644cd5f2018-12-11 16:47:35 +01003263 * \retval #PSA_ERROR_BAD_STATE
3264 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
3265 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
3266 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02003267 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01003268 * \retval #PSA_ERROR_BAD_STATE
3269 * The library has not been previously initialized by psa_crypto_init().
3270 * It is implementation-dependent whether a failure to initialize
3271 * results in this error code.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003272 */
Gilles Peskinecf7292e2019-05-16 17:53:40 +02003273psa_status_t psa_key_derivation_output_bytes(
3274 psa_key_derivation_operation_t *operation,
3275 uint8_t *output,
3276 size_t output_length);
Gilles Peskineeab56e42018-07-12 17:12:33 +02003277
Gilles Peskine35675b62019-05-16 17:26:11 +02003278/** Derive a key from an ongoing key derivation operation.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003279 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003280 * This function calculates output bytes from a key derivation algorithm
3281 * and uses those bytes to generate a key deterministically.
3282 * If you view the key derivation's output as a stream of bytes, this
3283 * function destructively reads as many bytes as required from the
3284 * stream.
3285 * The operation's capacity decreases by the number of bytes read.
3286 *
3287 * How much output is produced and consumed from the operation, and how
3288 * the key is derived, depends on the key type:
Gilles Peskineeab56e42018-07-12 17:12:33 +02003289 *
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003290 * - For key types for which the key is an arbitrary sequence of bytes
Gilles Peskinecf7292e2019-05-16 17:53:40 +02003291 * of a given size, this function is functionally equivalent to
3292 * calling #psa_key_derivation_output_bytes
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003293 * and passing the resulting output to #psa_import_key.
3294 * However, this function has a security benefit:
3295 * if the implementation provides an isolation boundary then
3296 * the key material is not exposed outside the isolation boundary.
3297 * As a consequence, for these key types, this function always consumes
Gilles Peskine35675b62019-05-16 17:26:11 +02003298 * exactly (\p bits / 8) bytes from the operation.
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003299 * The following key types defined in this specification follow this scheme:
3300 *
3301 * - #PSA_KEY_TYPE_AES;
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003302 * - #PSA_KEY_TYPE_ARC4;
3303 * - #PSA_KEY_TYPE_CAMELLIA;
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003304 * - #PSA_KEY_TYPE_DERIVE;
3305 * - #PSA_KEY_TYPE_HMAC.
3306 *
3307 * - For ECC keys on a Montgomery elliptic curve
Gilles Peskinec93b80c2019-05-16 19:39:54 +02003308 * (#PSA_KEY_TYPE_ECC_KEY_PAIR(\c curve) where \c curve designates a
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003309 * Montgomery curve), this function always draws a byte string whose
3310 * length is determined by the curve, and sets the mandatory bits
3311 * accordingly. That is:
3312 *
3313 * - #PSA_ECC_CURVE_CURVE25519: draw a 32-byte string
3314 * and process it as specified in RFC 7748 &sect;5.
3315 * - #PSA_ECC_CURVE_CURVE448: draw a 56-byte string
3316 * and process it as specified in RFC 7748 &sect;5.
3317 *
3318 * - For key types for which the key is represented by a single sequence of
3319 * \p bits bits with constraints as to which bit sequences are acceptable,
3320 * this function draws a byte string of length (\p bits / 8) bytes rounded
3321 * up to the nearest whole number of bytes. If the resulting byte string
3322 * is acceptable, it becomes the key, otherwise the drawn bytes are discarded.
3323 * This process is repeated until an acceptable byte string is drawn.
Gilles Peskine35675b62019-05-16 17:26:11 +02003324 * The byte string drawn from the operation is interpreted as specified
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003325 * for the output produced by psa_export_key().
3326 * The following key types defined in this specification follow this scheme:
3327 *
Gilles Peskine2de2c0d2019-03-11 17:59:16 +01003328 * - #PSA_KEY_TYPE_DES.
3329 * Force-set the parity bits, but discard forbidden weak keys.
3330 * For 2-key and 3-key triple-DES, the three keys are generated
3331 * successively (for example, for 3-key triple-DES,
3332 * if the first 8 bytes specify a weak key and the next 8 bytes do not,
3333 * discard the first 8 bytes, use the next 8 bytes as the first key,
Gilles Peskine35675b62019-05-16 17:26:11 +02003334 * and continue reading output from the operation to derive the other
Gilles Peskine2de2c0d2019-03-11 17:59:16 +01003335 * two keys).
Gilles Peskinec93b80c2019-05-16 19:39:54 +02003336 * - Finite-field Diffie-Hellman keys (#PSA_KEY_TYPE_DH_KEY_PAIR(\c group)
Gilles Peskinea1302192019-05-16 13:58:24 +02003337 * where \c group designates any Diffie-Hellman group) and
Gilles Peskine2de2c0d2019-03-11 17:59:16 +01003338 * ECC keys on a Weierstrass elliptic curve
Gilles Peskinec93b80c2019-05-16 19:39:54 +02003339 * (#PSA_KEY_TYPE_ECC_KEY_PAIR(\c curve) where \c curve designates a
Gilles Peskine2de2c0d2019-03-11 17:59:16 +01003340 * Weierstrass curve).
3341 * For these key types, interpret the byte string as integer
3342 * in big-endian order. Discard it if it is not in the range
3343 * [0, *N* - 2] where *N* is the boundary of the private key domain
3344 * (the prime *p* for Diffie-Hellman, the subprime *q* for DSA,
Gilles Peskine55799712019-03-12 11:50:26 +01003345 * or the order of the curve's base point for ECC).
Gilles Peskine2de2c0d2019-03-11 17:59:16 +01003346 * Add 1 to the resulting integer and use this as the private key *x*.
Gilles Peskine55799712019-03-12 11:50:26 +01003347 * This method allows compliance to NIST standards, specifically
3348 * the methods titled "key-pair generation by testing candidates"
Gilles Peskine2de2c0d2019-03-11 17:59:16 +01003349 * in NIST SP 800-56A &sect;5.6.1.1.4 for Diffie-Hellman,
3350 * in FIPS 186-4 &sect;B.1.2 for DSA, and
3351 * in NIST SP 800-56A &sect;5.6.1.2.2 or
3352 * FIPS 186-4 &sect;B.4.2 for elliptic curve keys.
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003353 *
Gilles Peskinec93b80c2019-05-16 19:39:54 +02003354 * - For other key types, including #PSA_KEY_TYPE_RSA_KEY_PAIR,
Gilles Peskine35675b62019-05-16 17:26:11 +02003355 * the way in which the operation output is consumed is
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003356 * implementation-defined.
3357 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003358 * In all cases, the data that is read is discarded from the operation.
3359 * The operation's capacity is decreased by the number of bytes read.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003360 *
Gilles Peskine20628592019-04-19 19:29:50 +02003361 * \param[in] attributes The attributes for the new key.
Gilles Peskine35675b62019-05-16 17:26:11 +02003362 * \param[in,out] operation The key derivation operation object to read from.
Gilles Peskine20628592019-04-19 19:29:50 +02003363 * \param[out] handle On success, a handle to the newly created key.
3364 * \c 0 on failure.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003365 *
Gilles Peskine644cd5f2018-12-11 16:47:35 +01003366 * \retval #PSA_SUCCESS
Gilles Peskineeab56e42018-07-12 17:12:33 +02003367 * Success.
Gilles Peskine23fd2bd2018-12-11 15:51:32 +01003368 * If the key is persistent, the key material and the key's metadata
3369 * have been saved to persistent storage.
Gilles Peskine20628592019-04-19 19:29:50 +02003370 * \retval #PSA_ERROR_ALREADY_EXISTS
3371 * This is an attempt to create a persistent key, and there is
3372 * already a persistent key with the given identifier.
David Saadab4ecc272019-02-14 13:48:10 +02003373 * \retval #PSA_ERROR_INSUFFICIENT_DATA
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003374 * There was not enough data to create the desired key.
3375 * Note that in this case, no output is written to the output buffer.
Gilles Peskine35675b62019-05-16 17:26:11 +02003376 * The operation's capacity is set to 0, thus subsequent calls to
Gilles Peskinefa4486d2019-03-11 17:30:31 +01003377 * this function will not succeed, even with a smaller output buffer.
Gilles Peskine644cd5f2018-12-11 16:47:35 +01003378 * \retval #PSA_ERROR_NOT_SUPPORTED
Gilles Peskineeab56e42018-07-12 17:12:33 +02003379 * The key type or key size is not supported, either by the
Adrian L. Shaw67e1c7a2019-05-14 15:24:21 +01003380 * implementation in general or in this particular location.
k-stachowiakb9b4f092019-08-15 19:01:59 +02003381 * \retval #PSA_ERROR_INVALID_ARGUMENT
3382 * The provided key attributes are not valid for the operation.
Gilles Peskine644cd5f2018-12-11 16:47:35 +01003383 * \retval #PSA_ERROR_BAD_STATE
Gilles Peskine644cd5f2018-12-11 16:47:35 +01003384 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
3385 * \retval #PSA_ERROR_INSUFFICIENT_STORAGE
3386 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
3387 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02003388 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir90d8c7a2018-09-12 11:44:52 +03003389 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03003390 * The library has not been previously initialized by psa_crypto_init().
3391 * It is implementation-dependent whether a failure to initialize
3392 * results in this error code.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003393 */
Gilles Peskinecf7292e2019-05-16 17:53:40 +02003394psa_status_t psa_key_derivation_output_key(
3395 const psa_key_attributes_t *attributes,
3396 psa_key_derivation_operation_t *operation,
3397 psa_key_handle_t *handle);
Gilles Peskineeab56e42018-07-12 17:12:33 +02003398
Gilles Peskine35675b62019-05-16 17:26:11 +02003399/** Abort a key derivation operation.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003400 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003401 * Once a key derivation operation has been aborted, its capacity is zero.
3402 * Aborting an operation frees all associated resources except for the
3403 * \c operation structure itself.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003404 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003405 * This function may be called at any time as long as the operation
Gilles Peskinea99d3fb2019-05-16 15:28:51 +02003406 * object has been initialized to #PSA_KEY_DERIVATION_OPERATION_INIT, to
Gilles Peskinecf7292e2019-05-16 17:53:40 +02003407 * psa_key_derivation_operation_init() or a zero value. In particular,
3408 * it is valid to call psa_key_derivation_abort() twice, or to call
3409 * psa_key_derivation_abort() on an operation that has not been set up.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003410 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003411 * Once aborted, the key derivation operation object may be called.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003412 *
Gilles Peskine35675b62019-05-16 17:26:11 +02003413 * \param[in,out] operation The operation to abort.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003414 *
Gilles Peskine644cd5f2018-12-11 16:47:35 +01003415 * \retval #PSA_SUCCESS
3416 * \retval #PSA_ERROR_BAD_STATE
3417 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
3418 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02003419 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01003420 * \retval #PSA_ERROR_BAD_STATE
3421 * The library has not been previously initialized by psa_crypto_init().
3422 * It is implementation-dependent whether a failure to initialize
3423 * results in this error code.
Gilles Peskineeab56e42018-07-12 17:12:33 +02003424 */
Gilles Peskinecf7292e2019-05-16 17:53:40 +02003425psa_status_t psa_key_derivation_abort(
3426 psa_key_derivation_operation_t *operation);
Gilles Peskineeab56e42018-07-12 17:12:33 +02003427
Gilles Peskine58fe9e82019-05-16 18:01:45 +02003428/** Perform a key agreement and return the raw shared secret.
Gilles Peskine769c7a62019-01-18 16:42:29 +01003429 *
3430 * \warning The raw result of a key agreement algorithm such as finite-field
3431 * Diffie-Hellman or elliptic curve Diffie-Hellman has biases and should
3432 * not be used directly as key material. It should instead be passed as
3433 * input to a key derivation algorithm. To chain a key agreement with
Gilles Peskinecf7292e2019-05-16 17:53:40 +02003434 * a key derivation, use psa_key_derivation_key_agreement() and other
3435 * functions from the key derivation interface.
Gilles Peskine769c7a62019-01-18 16:42:29 +01003436 *
Gilles Peskine47e79fb2019-02-08 11:24:59 +01003437 * \param alg The key agreement algorithm to compute
3438 * (\c PSA_ALG_XXX value such that
3439 * #PSA_ALG_IS_RAW_KEY_AGREEMENT(\p alg)
3440 * is true).
Gilles Peskine769c7a62019-01-18 16:42:29 +01003441 * \param private_key Handle to the private key to use.
3442 * \param[in] peer_key Public key of the peer. It must be
3443 * in the same format that psa_import_key()
3444 * accepts. The standard formats for public
3445 * keys are documented in the documentation
3446 * of psa_export_public_key().
3447 * \param peer_key_length Size of \p peer_key in bytes.
3448 * \param[out] output Buffer where the decrypted message is to
3449 * be written.
3450 * \param output_size Size of the \c output buffer in bytes.
3451 * \param[out] output_length On success, the number of bytes
3452 * that make up the returned output.
3453 *
3454 * \retval #PSA_SUCCESS
3455 * Success.
3456 * \retval #PSA_ERROR_INVALID_HANDLE
Gilles Peskine769c7a62019-01-18 16:42:29 +01003457 * \retval #PSA_ERROR_NOT_PERMITTED
3458 * \retval #PSA_ERROR_INVALID_ARGUMENT
3459 * \p alg is not a key agreement algorithm
3460 * \retval #PSA_ERROR_INVALID_ARGUMENT
3461 * \p private_key is not compatible with \p alg,
3462 * or \p peer_key is not valid for \p alg or not compatible with
3463 * \p private_key.
3464 * \retval #PSA_ERROR_NOT_SUPPORTED
3465 * \p alg is not a supported key agreement algorithm.
3466 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
3467 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
3468 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02003469 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Adrian L. Shawdec47b62019-08-07 14:25:38 +01003470 * \retval #PSA_ERROR_BAD_STATE
3471 * The library has not been previously initialized by psa_crypto_init().
3472 * It is implementation-dependent whether a failure to initialize
3473 * results in this error code.
Gilles Peskine769c7a62019-01-18 16:42:29 +01003474 */
Gilles Peskinebe697d82019-05-16 18:00:41 +02003475psa_status_t psa_raw_key_agreement(psa_algorithm_t alg,
3476 psa_key_handle_t private_key,
3477 const uint8_t *peer_key,
3478 size_t peer_key_length,
3479 uint8_t *output,
3480 size_t output_size,
3481 size_t *output_length);
Gilles Peskine01d718c2018-09-18 12:01:02 +02003482
Gilles Peskineea0fb492018-07-12 17:17:20 +02003483/**@}*/
3484
Gilles Peskineedd76872018-07-20 17:42:05 +02003485/** \defgroup random Random generation
Gilles Peskine9e7dc712018-03-28 14:18:50 +02003486 * @{
3487 */
3488
3489/**
3490 * \brief Generate random bytes.
3491 *
3492 * \warning This function **can** fail! Callers MUST check the return status
3493 * and MUST NOT use the content of the output buffer if the return
3494 * status is not #PSA_SUCCESS.
3495 *
Gilles Peskine35ef36b2019-05-16 19:42:05 +02003496 * \note To generate a key, use psa_generate_key() instead.
Gilles Peskine9e7dc712018-03-28 14:18:50 +02003497 *
Gilles Peskineedd11a12018-07-12 01:08:58 +02003498 * \param[out] output Output buffer for the generated data.
Gilles Peskine9e7dc712018-03-28 14:18:50 +02003499 * \param output_size Number of bytes to generate and output.
3500 *
Gilles Peskine28538492018-07-11 17:34:00 +02003501 * \retval #PSA_SUCCESS
3502 * \retval #PSA_ERROR_NOT_SUPPORTED
3503 * \retval #PSA_ERROR_INSUFFICIENT_ENTROPY
3504 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
3505 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02003506 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir0adf0fc2018-09-06 16:24:41 +03003507 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03003508 * The library has not been previously initialized by psa_crypto_init().
3509 * It is implementation-dependent whether a failure to initialize
3510 * results in this error code.
Gilles Peskine9e7dc712018-03-28 14:18:50 +02003511 */
3512psa_status_t psa_generate_random(uint8_t *output,
3513 size_t output_size);
3514
3515/**
3516 * \brief Generate a key or key pair.
3517 *
Gilles Peskinee56e8782019-04-26 17:34:02 +02003518 * The key is generated randomly.
3519 * Its location, policy, type and size are taken from \p attributes.
3520 *
Gilles Peskine20a77ae2019-05-16 14:05:56 +02003521 * The following type-specific considerations apply:
Gilles Peskinec93b80c2019-05-16 19:39:54 +02003522 * - For RSA keys (#PSA_KEY_TYPE_RSA_KEY_PAIR),
Gilles Peskine20a77ae2019-05-16 14:05:56 +02003523 * the public exponent is 65537.
3524 * The modulus is a product of two probabilistic primes
3525 * between 2^{n-1} and 2^n where n is the bit size specified in the
3526 * attributes.
3527 *
Gilles Peskine20628592019-04-19 19:29:50 +02003528 * \param[in] attributes The attributes for the new key.
Gilles Peskine20628592019-04-19 19:29:50 +02003529 * \param[out] handle On success, a handle to the newly created key.
3530 * \c 0 on failure.
Gilles Peskine9e7dc712018-03-28 14:18:50 +02003531 *
Gilles Peskine28538492018-07-11 17:34:00 +02003532 * \retval #PSA_SUCCESS
Gilles Peskine23fd2bd2018-12-11 15:51:32 +01003533 * Success.
3534 * If the key is persistent, the key material and the key's metadata
3535 * have been saved to persistent storage.
David Saadab4ecc272019-02-14 13:48:10 +02003536 * \retval #PSA_ERROR_ALREADY_EXISTS
Gilles Peskine20628592019-04-19 19:29:50 +02003537 * This is an attempt to create a persistent key, and there is
3538 * already a persistent key with the given identifier.
Gilles Peskine28538492018-07-11 17:34:00 +02003539 * \retval #PSA_ERROR_NOT_SUPPORTED
3540 * \retval #PSA_ERROR_INVALID_ARGUMENT
3541 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
3542 * \retval #PSA_ERROR_INSUFFICIENT_ENTROPY
3543 * \retval #PSA_ERROR_COMMUNICATION_FAILURE
3544 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskine4b3eb692019-05-16 21:35:18 +02003545 * \retval #PSA_ERROR_CORRUPTION_DETECTED
itayzafrir90d8c7a2018-09-12 11:44:52 +03003546 * \retval #PSA_ERROR_BAD_STATE
itayzafrir18617092018-09-16 12:22:41 +03003547 * The library has not been previously initialized by psa_crypto_init().
3548 * It is implementation-dependent whether a failure to initialize
3549 * results in this error code.
Gilles Peskine9e7dc712018-03-28 14:18:50 +02003550 */
Gilles Peskine35ef36b2019-05-16 19:42:05 +02003551psa_status_t psa_generate_key(const psa_key_attributes_t *attributes,
Gilles Peskinee56e8782019-04-26 17:34:02 +02003552 psa_key_handle_t *handle);
Gilles Peskine9e7dc712018-03-28 14:18:50 +02003553
3554/**@}*/
3555
Gilles Peskinee59236f2018-01-27 23:32:46 +01003556#ifdef __cplusplus
3557}
3558#endif
3559
Gilles Peskine0cad07c2018-06-27 19:49:02 +02003560/* The file "crypto_sizes.h" contains definitions for size calculation
3561 * macros whose definitions are implementation-specific. */
3562#include "crypto_sizes.h"
3563
Gilles Peskine9ef733f2018-02-07 21:05:37 +01003564/* The file "crypto_struct.h" contains definitions for
3565 * implementation-specific structs that are declared above. */
3566#include "crypto_struct.h"
3567
3568/* The file "crypto_extra.h" contains vendor-specific definitions. This
3569 * can include vendor-defined algorithms, extra functions, etc. */
Gilles Peskinee59236f2018-01-27 23:32:46 +01003570#include "crypto_extra.h"
3571
3572#endif /* PSA_CRYPTO_H */