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Gilles Peskinee59236f2018-01-27 23:32:46 +01001/**
2 * \file psa/crypto_extra.h
3 *
4 * \brief PSA cryptography module: Mbed TLS vendor extensions
Gilles Peskine07c91f52018-06-28 18:02:53 +02005 *
6 * \note This file may not be included directly. Applications must
7 * include psa/crypto.h.
8 *
9 * This file is reserved for vendor-specific definitions.
Gilles Peskinee59236f2018-01-27 23:32:46 +010010 */
11/*
Bence Szépkúti1e148272020-08-07 13:07:28 +020012 * Copyright The Mbed TLS Contributors
Dave Rodgman16799db2023-11-02 19:47:20 +000013 * SPDX-License-Identifier: Apache-2.0 OR GPL-2.0-or-later
Gilles Peskinee59236f2018-01-27 23:32:46 +010014 */
15
16#ifndef PSA_CRYPTO_EXTRA_H
17#define PSA_CRYPTO_EXTRA_H
Mateusz Starzyk846f0212021-05-19 19:44:07 +020018#include "mbedtls/private_access.h"
Gilles Peskinee59236f2018-01-27 23:32:46 +010019
Gilles Peskine09c02ee2021-11-25 20:30:47 +010020#include "crypto_types.h"
Gilles Peskine7a894f22019-11-26 16:06:46 +010021#include "crypto_compat.h"
22
Gilles Peskinee59236f2018-01-27 23:32:46 +010023#ifdef __cplusplus
24extern "C" {
25#endif
26
Netanel Gonen2bcd3122018-11-19 11:53:02 +020027/* UID for secure storage seed */
avolinski0d2c2662018-11-21 17:31:07 +020028#define PSA_CRYPTO_ITS_RANDOM_SEED_UID 0xFFFFFF52
Netanel Gonen2bcd3122018-11-19 11:53:02 +020029
Bence Szépkútibb0cfeb2021-05-28 09:42:25 +020030/* See mbedtls_config.h for definition */
Steven Cooreman863470a2021-02-15 14:03:19 +010031#if !defined(MBEDTLS_PSA_KEY_SLOT_COUNT)
32#define MBEDTLS_PSA_KEY_SLOT_COUNT 32
Steven Cooreman1f968fd2021-02-15 14:00:24 +010033#endif
Jaeden Amero5e6d24c2019-02-21 10:41:29 +000034
Gilles Peskine96f0b3b2019-05-10 19:33:38 +020035/** \addtogroup attributes
36 * @{
37 */
38
39/** \brief Declare the enrollment algorithm for a key.
40 *
41 * An operation on a key may indifferently use the algorithm set with
42 * psa_set_key_algorithm() or with this function.
43 *
44 * \param[out] attributes The attribute structure to write to.
45 * \param alg2 A second algorithm that the key may be used
46 * for, in addition to the algorithm set with
47 * psa_set_key_algorithm().
48 *
49 * \warning Setting an enrollment algorithm is not recommended, because
50 * using the same key with different algorithms can allow some
51 * attacks based on arithmetic relations between different
52 * computations made with the same key, or can escalate harmless
53 * side channels into exploitable ones. Use this function only
Gilles Peskinef25c9ec2019-05-22 11:45:59 +020054 * if it is necessary to support a protocol for which it has been
Gilles Peskine96f0b3b2019-05-10 19:33:38 +020055 * verified that the usage of the key with multiple algorithms
56 * is safe.
57 */
58static inline void psa_set_key_enrollment_algorithm(
59 psa_key_attributes_t *attributes,
60 psa_algorithm_t alg2)
61{
Gilles Peskine2f107ae2024-02-28 01:26:46 +010062 attributes->MBEDTLS_PRIVATE(policy).MBEDTLS_PRIVATE(alg2) = alg2;
Gilles Peskine96f0b3b2019-05-10 19:33:38 +020063}
64
65/** Retrieve the enrollment algorithm policy from key attributes.
66 *
67 * \param[in] attributes The key attribute structure to query.
68 *
69 * \return The enrollment algorithm stored in the attribute structure.
70 */
71static inline psa_algorithm_t psa_get_key_enrollment_algorithm(
72 const psa_key_attributes_t *attributes)
73{
Gilles Peskine2f107ae2024-02-28 01:26:46 +010074 return attributes->MBEDTLS_PRIVATE(policy).MBEDTLS_PRIVATE(alg2);
Gilles Peskine96f0b3b2019-05-10 19:33:38 +020075}
76
Gilles Peskinec8000c02019-08-02 20:15:51 +020077#if defined(MBEDTLS_PSA_CRYPTO_SE_C)
78
79/** Retrieve the slot number where a key is stored.
80 *
81 * A slot number is only defined for keys that are stored in a secure
82 * element.
83 *
84 * This information is only useful if the secure element is not entirely
85 * managed through the PSA Cryptography API. It is up to the secure
86 * element driver to decide how PSA slot numbers map to any other interface
87 * that the secure element may have.
88 *
89 * \param[in] attributes The key attribute structure to query.
90 * \param[out] slot_number On success, the slot number containing the key.
91 *
92 * \retval #PSA_SUCCESS
93 * The key is located in a secure element, and \p *slot_number
94 * indicates the slot number that contains it.
95 * \retval #PSA_ERROR_NOT_PERMITTED
96 * The caller is not permitted to query the slot number.
Fredrik Hessecc207bc2021-09-28 21:06:08 +020097 * Mbed TLS currently does not return this error.
Gilles Peskinec8000c02019-08-02 20:15:51 +020098 * \retval #PSA_ERROR_INVALID_ARGUMENT
99 * The key is not located in a secure element.
100 */
101psa_status_t psa_get_key_slot_number(
102 const psa_key_attributes_t *attributes,
Gilles Peskine449bd832023-01-11 14:50:10 +0100103 psa_key_slot_number_t *slot_number);
Gilles Peskinec8000c02019-08-02 20:15:51 +0200104
105/** Choose the slot number where a key is stored.
106 *
107 * This function declares a slot number in the specified attribute
108 * structure.
109 *
110 * A slot number is only meaningful for keys that are stored in a secure
111 * element. It is up to the secure element driver to decide how PSA slot
112 * numbers map to any other interface that the secure element may have.
113 *
114 * \note Setting a slot number in key attributes for a key creation can
115 * cause the following errors when creating the key:
116 * - #PSA_ERROR_NOT_SUPPORTED if the selected secure element does
117 * not support choosing a specific slot number.
118 * - #PSA_ERROR_NOT_PERMITTED if the caller is not permitted to
119 * choose slot numbers in general or to choose this specific slot.
120 * - #PSA_ERROR_INVALID_ARGUMENT if the chosen slot number is not
121 * valid in general or not valid for this specific key.
122 * - #PSA_ERROR_ALREADY_EXISTS if there is already a key in the
123 * selected slot.
124 *
125 * \param[out] attributes The attribute structure to write to.
126 * \param slot_number The slot number to set.
127 */
128static inline void psa_set_key_slot_number(
129 psa_key_attributes_t *attributes,
Gilles Peskine449bd832023-01-11 14:50:10 +0100130 psa_key_slot_number_t slot_number)
Gilles Peskinec8000c02019-08-02 20:15:51 +0200131{
Gilles Peskine2f107ae2024-02-28 01:26:46 +0100132 attributes->MBEDTLS_PRIVATE(flags) |= MBEDTLS_PSA_KA_FLAG_HAS_SLOT_NUMBER;
133 attributes->MBEDTLS_PRIVATE(slot_number) = slot_number;
Gilles Peskinec8000c02019-08-02 20:15:51 +0200134}
135
Gilles Peskine5fe5e272019-08-02 20:30:01 +0200136/** Remove the slot number attribute from a key attribute structure.
137 *
138 * This function undoes the action of psa_set_key_slot_number().
139 *
140 * \param[out] attributes The attribute structure to write to.
141 */
142static inline void psa_clear_key_slot_number(
Gilles Peskine449bd832023-01-11 14:50:10 +0100143 psa_key_attributes_t *attributes)
Gilles Peskine5fe5e272019-08-02 20:30:01 +0200144{
Gilles Peskine2f107ae2024-02-28 01:26:46 +0100145 attributes->MBEDTLS_PRIVATE(flags) &=
Gilles Peskine449bd832023-01-11 14:50:10 +0100146 ~MBEDTLS_PSA_KA_FLAG_HAS_SLOT_NUMBER;
Gilles Peskine5fe5e272019-08-02 20:30:01 +0200147}
148
Gilles Peskined7729582019-08-05 15:55:54 +0200149/** Register a key that is already present in a secure element.
150 *
151 * The key must be located in a secure element designated by the
152 * lifetime field in \p attributes, in the slot set with
153 * psa_set_key_slot_number() in the attribute structure.
154 * This function makes the key available through the key identifier
155 * specified in \p attributes.
156 *
157 * \param[in] attributes The attributes of the existing key.
158 *
159 * \retval #PSA_SUCCESS
160 * The key was successfully registered.
161 * Note that depending on the design of the driver, this may or may
162 * not guarantee that a key actually exists in the designated slot
163 * and is compatible with the specified attributes.
164 * \retval #PSA_ERROR_ALREADY_EXISTS
165 * There is already a key with the identifier specified in
166 * \p attributes.
Gilles Peskine3efcebb2019-10-01 14:18:35 +0200167 * \retval #PSA_ERROR_NOT_SUPPORTED
168 * The secure element driver for the specified lifetime does not
169 * support registering a key.
Gilles Peskined7729582019-08-05 15:55:54 +0200170 * \retval #PSA_ERROR_INVALID_ARGUMENT
Ronald Crond3b458c2021-03-31 17:51:29 +0200171 * The identifier in \p attributes is invalid, namely the identifier is
Andrzej Kurekf7c1f742022-02-03 11:30:54 -0500172 * not in the user range, or
Gilles Peskined7729582019-08-05 15:55:54 +0200173 * \p attributes specifies a lifetime which is not located
Andrzej Kurekf7c1f742022-02-03 11:30:54 -0500174 * in a secure element, or no slot number is specified in \p attributes,
Gilles Peskined7729582019-08-05 15:55:54 +0200175 * or the specified slot number is not valid.
176 * \retval #PSA_ERROR_NOT_PERMITTED
177 * The caller is not authorized to register the specified key slot.
Gilles Peskineed733552023-02-14 19:21:09 +0100178 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY \emptydescription
179 * \retval #PSA_ERROR_INSUFFICIENT_STORAGE \emptydescription
180 * \retval #PSA_ERROR_COMMUNICATION_FAILURE \emptydescription
181 * \retval #PSA_ERROR_DATA_INVALID \emptydescription
182 * \retval #PSA_ERROR_DATA_CORRUPT \emptydescription
183 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
Gilles Peskined7729582019-08-05 15:55:54 +0200184 * \retval #PSA_ERROR_BAD_STATE
185 * The library has not been previously initialized by psa_crypto_init().
186 * It is implementation-dependent whether a failure to initialize
187 * results in this error code.
188 */
189psa_status_t mbedtls_psa_register_se_key(
190 const psa_key_attributes_t *attributes);
191
Gilles Peskinec8000c02019-08-02 20:15:51 +0200192#endif /* MBEDTLS_PSA_CRYPTO_SE_C */
193
Gilles Peskine96f0b3b2019-05-10 19:33:38 +0200194/**@}*/
195
Gilles Peskinee59236f2018-01-27 23:32:46 +0100196/**
197 * \brief Library deinitialization.
198 *
199 * This function clears all data associated with the PSA layer,
200 * including the whole key store.
Ryan Everett16abd592024-01-24 17:37:46 +0000201 * This function is not thread safe, it wipes every key slot regardless of
202 * state and reader count. It should only be called when no slot is in use.
Gilles Peskinee59236f2018-01-27 23:32:46 +0100203 *
204 * This is an Mbed TLS extension.
205 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100206void mbedtls_psa_crypto_free(void);
Gilles Peskinee59236f2018-01-27 23:32:46 +0100207
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200208/** \brief Statistics about
209 * resource consumption related to the PSA keystore.
210 *
211 * \note The content of this structure is not part of the stable API and ABI
Fredrik Hessecc207bc2021-09-28 21:06:08 +0200212 * of Mbed TLS and may change arbitrarily from version to version.
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200213 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100214typedef struct mbedtls_psa_stats_s {
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200215 /** Number of slots containing key material for a volatile key. */
Mateusz Starzyk846f0212021-05-19 19:44:07 +0200216 size_t MBEDTLS_PRIVATE(volatile_slots);
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200217 /** Number of slots containing key material for a key which is in
218 * internal persistent storage. */
Mateusz Starzyk846f0212021-05-19 19:44:07 +0200219 size_t MBEDTLS_PRIVATE(persistent_slots);
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200220 /** Number of slots containing a reference to a key in a
221 * secure element. */
Mateusz Starzyk846f0212021-05-19 19:44:07 +0200222 size_t MBEDTLS_PRIVATE(external_slots);
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200223 /** Number of slots which are occupied, but do not contain
224 * key material yet. */
Mateusz Starzyk846f0212021-05-19 19:44:07 +0200225 size_t MBEDTLS_PRIVATE(half_filled_slots);
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200226 /** Number of slots that contain cache data. */
Mateusz Starzyk846f0212021-05-19 19:44:07 +0200227 size_t MBEDTLS_PRIVATE(cache_slots);
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200228 /** Number of slots that are not used for anything. */
Mateusz Starzyk846f0212021-05-19 19:44:07 +0200229 size_t MBEDTLS_PRIVATE(empty_slots);
Ronald Cron1ad1eee2020-11-15 14:21:04 +0100230 /** Number of slots that are locked. */
Mateusz Starzyk846f0212021-05-19 19:44:07 +0200231 size_t MBEDTLS_PRIVATE(locked_slots);
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200232 /** Largest key id value among open keys in internal persistent storage. */
Mateusz Starzyk846f0212021-05-19 19:44:07 +0200233 psa_key_id_t MBEDTLS_PRIVATE(max_open_internal_key_id);
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200234 /** Largest key id value among open keys in secure elements. */
Mateusz Starzyk846f0212021-05-19 19:44:07 +0200235 psa_key_id_t MBEDTLS_PRIVATE(max_open_external_key_id);
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200236} mbedtls_psa_stats_t;
237
238/** \brief Get statistics about
239 * resource consumption related to the PSA keystore.
240 *
Fredrik Hessecc207bc2021-09-28 21:06:08 +0200241 * \note When Mbed TLS is built as part of a service, with isolation
Gilles Peskine4bac9a42019-05-23 20:32:30 +0200242 * between the application and the keystore, the service may or
243 * may not expose this function.
244 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100245void mbedtls_psa_get_stats(mbedtls_psa_stats_t *stats);
Netanel Gonen2bcd3122018-11-19 11:53:02 +0200246
Netanel Gonen2bcd3122018-11-19 11:53:02 +0200247/**
Gilles Peskineee2ffd32018-11-16 11:02:49 +0100248 * \brief Inject an initial entropy seed for the random generator into
249 * secure storage.
Gilles Peskine0338ded2018-11-15 18:19:27 +0100250 *
251 * This function injects data to be used as a seed for the random generator
252 * used by the PSA Crypto implementation. On devices that lack a trusted
253 * entropy source (preferably a hardware random number generator),
254 * the Mbed PSA Crypto implementation uses this value to seed its
255 * random generator.
256 *
257 * On devices without a trusted entropy source, this function must be
258 * called exactly once in the lifetime of the device. On devices with
259 * a trusted entropy source, calling this function is optional.
260 * In all cases, this function may only be called before calling any
261 * other function in the PSA Crypto API, including psa_crypto_init().
262 *
263 * When this function returns successfully, it populates a file in
264 * persistent storage. Once the file has been created, this function
265 * can no longer succeed.
Gilles Peskineee2ffd32018-11-16 11:02:49 +0100266 *
267 * If any error occurs, this function does not change the system state.
268 * You can call this function again after correcting the reason for the
269 * error if possible.
Netanel Gonen2bcd3122018-11-19 11:53:02 +0200270 *
271 * \warning This function **can** fail! Callers MUST check the return status.
272 *
Gilles Peskine0338ded2018-11-15 18:19:27 +0100273 * \warning If you use this function, you should use it as part of a
274 * factory provisioning process. The value of the injected seed
275 * is critical to the security of the device. It must be
276 * *secret*, *unpredictable* and (statistically) *unique per device*.
277 * You should be generate it randomly using a cryptographically
278 * secure random generator seeded from trusted entropy sources.
279 * You should transmit it securely to the device and ensure
280 * that its value is not leaked or stored anywhere beyond the
281 * needs of transmitting it from the point of generation to
282 * the call of this function, and erase all copies of the value
283 * once this function returns.
Netanel Gonen2bcd3122018-11-19 11:53:02 +0200284 *
Gilles Peskine0338ded2018-11-15 18:19:27 +0100285 * This is an Mbed TLS extension.
286 *
Netanel Gonen1d7195f2018-11-22 16:24:48 +0200287 * \note This function is only available on the following platforms:
Gilles Peskinee3dbdd82019-02-25 11:04:06 +0100288 * * If the compile-time option MBEDTLS_PSA_INJECT_ENTROPY is enabled.
289 * Note that you must provide compatible implementations of
290 * mbedtls_nv_seed_read and mbedtls_nv_seed_write.
Gilles Peskine0cfaed12018-11-22 17:11:45 +0200291 * * In a client-server integration of PSA Cryptography, on the client side,
Netanel Gonen1d7195f2018-11-22 16:24:48 +0200292 * if the server supports this feature.
Netanel Gonen596e65e2018-11-22 18:41:43 +0200293 * \param[in] seed Buffer containing the seed value to inject.
Gilles Peskine0cfaed12018-11-22 17:11:45 +0200294 * \param[in] seed_size Size of the \p seed buffer.
Netanel Gonen596e65e2018-11-22 18:41:43 +0200295 * The size of the seed in bytes must be greater
Chris Jones3848e312021-03-11 16:17:59 +0000296 * or equal to both #MBEDTLS_ENTROPY_BLOCK_SIZE
297 * and the value of \c MBEDTLS_ENTROPY_MIN_PLATFORM
298 * in `library/entropy_poll.h` in the Mbed TLS source
299 * code.
Netanel Gonen596e65e2018-11-22 18:41:43 +0200300 * It must be less or equal to
301 * #MBEDTLS_ENTROPY_MAX_SEED_SIZE.
Netanel Gonen2bcd3122018-11-19 11:53:02 +0200302 *
303 * \retval #PSA_SUCCESS
Gilles Peskine0338ded2018-11-15 18:19:27 +0100304 * The seed value was injected successfully. The random generator
305 * of the PSA Crypto implementation is now ready for use.
306 * You may now call psa_crypto_init() and use the PSA Crypto
307 * implementation.
Netanel Gonen2bcd3122018-11-19 11:53:02 +0200308 * \retval #PSA_ERROR_INVALID_ARGUMENT
Gilles Peskineee2ffd32018-11-16 11:02:49 +0100309 * \p seed_size is out of range.
Netanel Gonen2bcd3122018-11-19 11:53:02 +0200310 * \retval #PSA_ERROR_STORAGE_FAILURE
Gilles Peskine0338ded2018-11-15 18:19:27 +0100311 * There was a failure reading or writing from storage.
Netanel Gonen2bcd3122018-11-19 11:53:02 +0200312 * \retval #PSA_ERROR_NOT_PERMITTED
Gilles Peskine0338ded2018-11-15 18:19:27 +0100313 * The library has already been initialized. It is no longer
314 * possible to call this function.
Netanel Gonen2bcd3122018-11-19 11:53:02 +0200315 */
Jaeden Ameroc7529c92019-08-19 11:08:04 +0100316psa_status_t mbedtls_psa_inject_entropy(const uint8_t *seed,
Netanel Gonen2bcd3122018-11-19 11:53:02 +0200317 size_t seed_size);
318
Gilles Peskinee38ab1a2019-05-16 13:51:50 +0200319/** \addtogroup crypto_types
320 * @{
321 */
322
Gilles Peskinea1302192019-05-16 13:58:24 +0200323/** DSA public key.
324 *
325 * The import and export format is the
326 * representation of the public key `y = g^x mod p` as a big-endian byte
327 * string. The length of the byte string is the length of the base prime `p`
328 * in bytes.
329 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100330#define PSA_KEY_TYPE_DSA_PUBLIC_KEY ((psa_key_type_t) 0x4002)
Gilles Peskinea1302192019-05-16 13:58:24 +0200331
332/** DSA key pair (private and public key).
333 *
334 * The import and export format is the
335 * representation of the private key `x` as a big-endian byte string. The
336 * length of the byte string is the private key size in bytes (leading zeroes
337 * are not stripped).
338 *
Shaun Case8b0ecbc2021-12-20 21:14:10 -0800339 * Deterministic DSA key derivation with psa_generate_derived_key follows
Gilles Peskinea1302192019-05-16 13:58:24 +0200340 * FIPS 186-4 §B.1.2: interpret the byte string as integer
341 * in big-endian order. Discard it if it is not in the range
342 * [0, *N* - 2] where *N* is the boundary of the private key domain
343 * (the prime *p* for Diffie-Hellman, the subprime *q* for DSA,
344 * or the order of the curve's base point for ECC).
345 * Add 1 to the resulting integer and use this as the private key *x*.
346 *
347 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100348#define PSA_KEY_TYPE_DSA_KEY_PAIR ((psa_key_type_t) 0x7002)
Gilles Peskinea1302192019-05-16 13:58:24 +0200349
Tom Cosgrovece7f18c2022-07-28 05:50:56 +0100350/** Whether a key type is a DSA key (pair or public-only). */
Gilles Peskinee38ab1a2019-05-16 13:51:50 +0200351#define PSA_KEY_TYPE_IS_DSA(type) \
Gilles Peskinec93b80c2019-05-16 19:39:54 +0200352 (PSA_KEY_TYPE_PUBLIC_KEY_OF_KEY_PAIR(type) == PSA_KEY_TYPE_DSA_PUBLIC_KEY)
Gilles Peskinee38ab1a2019-05-16 13:51:50 +0200353
Gilles Peskine449bd832023-01-11 14:50:10 +0100354#define PSA_ALG_DSA_BASE ((psa_algorithm_t) 0x06000400)
Gilles Peskinee38ab1a2019-05-16 13:51:50 +0200355/** DSA signature with hashing.
356 *
357 * This is the signature scheme defined by FIPS 186-4,
358 * with a random per-message secret number (*k*).
359 *
360 * \param hash_alg A hash algorithm (\c PSA_ALG_XXX value such that
361 * #PSA_ALG_IS_HASH(\p hash_alg) is true).
362 * This includes #PSA_ALG_ANY_HASH
363 * when specifying the algorithm in a usage policy.
364 *
365 * \return The corresponding DSA signature algorithm.
366 * \return Unspecified if \p hash_alg is not a supported
367 * hash algorithm.
368 */
369#define PSA_ALG_DSA(hash_alg) \
370 (PSA_ALG_DSA_BASE | ((hash_alg) & PSA_ALG_HASH_MASK))
Gilles Peskine449bd832023-01-11 14:50:10 +0100371#define PSA_ALG_DETERMINISTIC_DSA_BASE ((psa_algorithm_t) 0x06000500)
Gilles Peskine972630e2019-11-29 11:55:48 +0100372#define PSA_ALG_DSA_DETERMINISTIC_FLAG PSA_ALG_ECDSA_DETERMINISTIC_FLAG
Gilles Peskinee38ab1a2019-05-16 13:51:50 +0200373/** Deterministic DSA signature with hashing.
374 *
375 * This is the deterministic variant defined by RFC 6979 of
376 * the signature scheme defined by FIPS 186-4.
377 *
378 * \param hash_alg A hash algorithm (\c PSA_ALG_XXX value such that
379 * #PSA_ALG_IS_HASH(\p hash_alg) is true).
380 * This includes #PSA_ALG_ANY_HASH
381 * when specifying the algorithm in a usage policy.
382 *
383 * \return The corresponding DSA signature algorithm.
384 * \return Unspecified if \p hash_alg is not a supported
385 * hash algorithm.
386 */
387#define PSA_ALG_DETERMINISTIC_DSA(hash_alg) \
388 (PSA_ALG_DETERMINISTIC_DSA_BASE | ((hash_alg) & PSA_ALG_HASH_MASK))
389#define PSA_ALG_IS_DSA(alg) \
390 (((alg) & ~PSA_ALG_HASH_MASK & ~PSA_ALG_DSA_DETERMINISTIC_FLAG) == \
391 PSA_ALG_DSA_BASE)
392#define PSA_ALG_DSA_IS_DETERMINISTIC(alg) \
393 (((alg) & PSA_ALG_DSA_DETERMINISTIC_FLAG) != 0)
394#define PSA_ALG_IS_DETERMINISTIC_DSA(alg) \
395 (PSA_ALG_IS_DSA(alg) && PSA_ALG_DSA_IS_DETERMINISTIC(alg))
396#define PSA_ALG_IS_RANDOMIZED_DSA(alg) \
397 (PSA_ALG_IS_DSA(alg) && !PSA_ALG_DSA_IS_DETERMINISTIC(alg))
398
399
400/* We need to expand the sample definition of this macro from
401 * the API definition. */
Gilles Peskine6d400852021-02-24 21:39:52 +0100402#undef PSA_ALG_IS_VENDOR_HASH_AND_SIGN
403#define PSA_ALG_IS_VENDOR_HASH_AND_SIGN(alg) \
404 PSA_ALG_IS_DSA(alg)
Gilles Peskinee38ab1a2019-05-16 13:51:50 +0200405
406/**@}*/
407
Gilles Peskine24f10f82019-05-16 12:18:32 +0200408/** \addtogroup attributes
409 * @{
410 */
411
Przemek Stekiel251e86a2023-02-17 14:30:50 +0100412/** PAKE operation stages. */
Przemek Stekiel1c3cfb42023-01-26 10:35:02 +0100413#define PSA_PAKE_OPERATION_STAGE_SETUP 0
414#define PSA_PAKE_OPERATION_STAGE_COLLECT_INPUTS 1
415#define PSA_PAKE_OPERATION_STAGE_COMPUTATION 2
Gilles Peskinedcaefae2019-05-16 12:55:35 +0200416
Gilles Peskine24f10f82019-05-16 12:18:32 +0200417/**@}*/
418
Gilles Peskine5055b232019-12-12 17:49:31 +0100419
Gilles Peskineb8af2282020-11-13 18:00:34 +0100420/** \defgroup psa_external_rng External random generator
421 * @{
422 */
423
424#if defined(MBEDTLS_PSA_CRYPTO_EXTERNAL_RNG)
425/** External random generator function, implemented by the platform.
426 *
427 * When the compile-time option #MBEDTLS_PSA_CRYPTO_EXTERNAL_RNG is enabled,
428 * this function replaces Mbed TLS's entropy and DRBG modules for all
429 * random generation triggered via PSA crypto interfaces.
430 *
Gilles Peskineb663a602020-11-18 15:27:37 +0100431 * \note This random generator must deliver random numbers with cryptographic
432 * quality and high performance. It must supply unpredictable numbers
433 * with a uniform distribution. The implementation of this function
434 * is responsible for ensuring that the random generator is seeded
435 * with sufficient entropy. If you have a hardware TRNG which is slow
436 * or delivers non-uniform output, declare it as an entropy source
437 * with mbedtls_entropy_add_source() instead of enabling this option.
438 *
Gilles Peskineb8af2282020-11-13 18:00:34 +0100439 * \param[in,out] context Pointer to the random generator context.
440 * This is all-bits-zero on the first call
441 * and preserved between successive calls.
442 * \param[out] output Output buffer. On success, this buffer
443 * contains random data with a uniform
444 * distribution.
445 * \param output_size The size of the \p output buffer in bytes.
446 * \param[out] output_length On success, set this value to \p output_size.
447 *
448 * \retval #PSA_SUCCESS
Gilles Peskinee995b9b2020-11-30 12:08:00 +0100449 * Success. The output buffer contains \p output_size bytes of
450 * cryptographic-quality random data, and \c *output_length is
451 * set to \p output_size.
452 * \retval #PSA_ERROR_INSUFFICIENT_ENTROPY
453 * The random generator requires extra entropy and there is no
454 * way to obtain entropy under current environment conditions.
455 * This error should not happen under normal circumstances since
456 * this function is responsible for obtaining as much entropy as
457 * it needs. However implementations of this function may return
458 * #PSA_ERROR_INSUFFICIENT_ENTROPY if there is no way to obtain
459 * entropy without blocking indefinitely.
Gilles Peskineb8af2282020-11-13 18:00:34 +0100460 * \retval #PSA_ERROR_HARDWARE_FAILURE
Gilles Peskinee995b9b2020-11-30 12:08:00 +0100461 * A failure of the random generator hardware that isn't covered
462 * by #PSA_ERROR_INSUFFICIENT_ENTROPY.
Gilles Peskineb8af2282020-11-13 18:00:34 +0100463 */
464psa_status_t mbedtls_psa_external_get_random(
465 mbedtls_psa_external_random_context_t *context,
Gilles Peskine449bd832023-01-11 14:50:10 +0100466 uint8_t *output, size_t output_size, size_t *output_length);
Gilles Peskineb8af2282020-11-13 18:00:34 +0100467#endif /* MBEDTLS_PSA_CRYPTO_EXTERNAL_RNG */
468
469/**@}*/
470
Steven Cooreman6801f082021-02-19 17:21:22 +0100471/** \defgroup psa_builtin_keys Built-in keys
472 * @{
473 */
474
475/** The minimum value for a key identifier that is built into the
476 * implementation.
477 *
478 * The range of key identifiers from #MBEDTLS_PSA_KEY_ID_BUILTIN_MIN
479 * to #MBEDTLS_PSA_KEY_ID_BUILTIN_MAX within the range from
480 * #PSA_KEY_ID_VENDOR_MIN and #PSA_KEY_ID_VENDOR_MAX and must not intersect
481 * with any other set of implementation-chosen key identifiers.
482 *
483 * This value is part of the library's ABI since changing it would invalidate
484 * the values of built-in key identifiers in applications.
485 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100486#define MBEDTLS_PSA_KEY_ID_BUILTIN_MIN ((psa_key_id_t) 0x7fff0000)
Steven Cooreman6801f082021-02-19 17:21:22 +0100487
488/** The maximum value for a key identifier that is built into the
489 * implementation.
490 *
491 * See #MBEDTLS_PSA_KEY_ID_BUILTIN_MIN for more information.
492 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100493#define MBEDTLS_PSA_KEY_ID_BUILTIN_MAX ((psa_key_id_t) 0x7fffefff)
Steven Cooreman6801f082021-02-19 17:21:22 +0100494
495/** A slot number identifying a key in a driver.
496 *
497 * Values of this type are used to identify built-in keys.
498 */
499typedef uint64_t psa_drv_slot_number_t;
500
501#if defined(MBEDTLS_PSA_CRYPTO_BUILTIN_KEYS)
502/** Test whether a key identifier belongs to the builtin key range.
503 *
504 * \param key_id Key identifier to test.
505 *
506 * \retval 1
507 * The key identifier is a builtin key identifier.
508 * \retval 0
509 * The key identifier is not a builtin key identifier.
510 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100511static inline int psa_key_id_is_builtin(psa_key_id_t key_id)
Steven Cooreman6801f082021-02-19 17:21:22 +0100512{
Gilles Peskine449bd832023-01-11 14:50:10 +0100513 return (key_id >= MBEDTLS_PSA_KEY_ID_BUILTIN_MIN) &&
514 (key_id <= MBEDTLS_PSA_KEY_ID_BUILTIN_MAX);
Steven Cooreman6801f082021-02-19 17:21:22 +0100515}
516
Steven Cooremanb938b0b2021-04-06 13:08:42 +0200517/** Platform function to obtain the location and slot number of a built-in key.
Steven Cooreman6801f082021-02-19 17:21:22 +0100518 *
519 * An application-specific implementation of this function must be provided if
Steven Cooreman203bcbb2021-03-18 17:17:40 +0100520 * #MBEDTLS_PSA_CRYPTO_BUILTIN_KEYS is enabled. This would typically be provided
Steven Cooreman6801f082021-02-19 17:21:22 +0100521 * as part of a platform's system image.
522 *
Steven Cooremanc8b95342021-03-18 20:48:06 +0100523 * #MBEDTLS_SVC_KEY_ID_GET_KEY_ID(\p key_id) needs to be in the range from
Steven Cooreman6801f082021-02-19 17:21:22 +0100524 * #MBEDTLS_PSA_KEY_ID_BUILTIN_MIN to #MBEDTLS_PSA_KEY_ID_BUILTIN_MAX.
525 *
526 * In a multi-application configuration
527 * (\c MBEDTLS_PSA_CRYPTO_KEY_ID_ENCODES_OWNER is defined),
528 * this function should check that #MBEDTLS_SVC_KEY_ID_GET_OWNER_ID(\p key_id)
529 * is allowed to use the given key.
530 *
Steven Cooremanc8b95342021-03-18 20:48:06 +0100531 * \param key_id The key ID for which to retrieve the
532 * location and slot attributes.
533 * \param[out] lifetime On success, the lifetime associated with the key
534 * corresponding to \p key_id. Lifetime is a
535 * combination of which driver contains the key,
Steven Cooreman31e27af2021-04-14 10:32:05 +0200536 * and with what persistence level the key is
537 * intended to be used. If the platform
538 * implementation does not contain specific
539 * information about the intended key persistence
540 * level, the persistence level may be reported as
541 * #PSA_KEY_PERSISTENCE_DEFAULT.
Steven Cooremanc8b95342021-03-18 20:48:06 +0100542 * \param[out] slot_number On success, the slot number known to the driver
543 * registered at the lifetime location reported
Steven Cooremanb938b0b2021-04-06 13:08:42 +0200544 * through \p lifetime which corresponds to the
Steven Cooreman6801f082021-02-19 17:21:22 +0100545 * requested built-in key.
546 *
547 * \retval #PSA_SUCCESS
548 * The requested key identifier designates a built-in key.
549 * In a multi-application configuration, the requested owner
550 * is allowed to access it.
551 * \retval #PSA_ERROR_DOES_NOT_EXIST
552 * The requested key identifier is not a built-in key which is known
553 * to this function. If a key exists in the key storage with this
554 * identifier, the data from the storage will be used.
Steven Cooreman203bcbb2021-03-18 17:17:40 +0100555 * \return (any other error)
Steven Cooreman6801f082021-02-19 17:21:22 +0100556 * Any other error is propagated to the function that requested the key.
557 * Common errors include:
558 * - #PSA_ERROR_NOT_PERMITTED: the key exists but the requested owner
559 * is not allowed to access it.
560 */
561psa_status_t mbedtls_psa_platform_get_builtin_key(
Steven Cooremanc8b95342021-03-18 20:48:06 +0100562 mbedtls_svc_key_id_t key_id,
563 psa_key_lifetime_t *lifetime,
Gilles Peskine449bd832023-01-11 14:50:10 +0100564 psa_drv_slot_number_t *slot_number);
Steven Cooreman6801f082021-02-19 17:21:22 +0100565#endif /* MBEDTLS_PSA_CRYPTO_BUILTIN_KEYS */
566
567/** @} */
568
Janos Follath702cf092021-05-26 12:58:23 +0100569/** \addtogroup crypto_types
570 * @{
571 */
572
Gilles Peskine449bd832023-01-11 14:50:10 +0100573#define PSA_ALG_CATEGORY_PAKE ((psa_algorithm_t) 0x0a000000)
Janos Follath702cf092021-05-26 12:58:23 +0100574
575/** Whether the specified algorithm is a password-authenticated key exchange.
576 *
577 * \param alg An algorithm identifier (value of type #psa_algorithm_t).
578 *
579 * \return 1 if \p alg is a password-authenticated key exchange (PAKE)
580 * algorithm, 0 otherwise.
581 * This macro may return either 0 or 1 if \p alg is not a supported
582 * algorithm identifier.
583 */
584#define PSA_ALG_IS_PAKE(alg) \
585 (((alg) & PSA_ALG_CATEGORY_MASK) == PSA_ALG_CATEGORY_PAKE)
586
587/** The Password-authenticated key exchange by juggling (J-PAKE) algorithm.
588 *
589 * This is J-PAKE as defined by RFC 8236, instantiated with the following
590 * parameters:
591 *
592 * - The group can be either an elliptic curve or defined over a finite field.
593 * - Schnorr NIZK proof as defined by RFC 8235 and using the same group as the
594 * J-PAKE algorithm.
Janos Follath46c02372021-06-08 15:22:51 +0100595 * - A cryptographic hash function.
Janos Follath702cf092021-05-26 12:58:23 +0100596 *
Janos Follath46c02372021-06-08 15:22:51 +0100597 * To select these parameters and set up the cipher suite, call these functions
598 * in any order:
Janos Follathb384ec12021-06-03 14:48:51 +0100599 *
600 * \code
601 * psa_pake_cs_set_algorithm(cipher_suite, PSA_ALG_JPAKE);
602 * psa_pake_cs_set_primitive(cipher_suite,
603 * PSA_PAKE_PRIMITIVE(type, family, bits));
604 * psa_pake_cs_set_hash(cipher_suite, hash);
605 * \endcode
Janos Follath702cf092021-05-26 12:58:23 +0100606 *
607 * For more information on how to set a specific curve or field, refer to the
608 * documentation of the individual \c PSA_PAKE_PRIMITIVE_TYPE_XXX constants.
609 *
610 * After initializing a J-PAKE operation, call
Janos Follathb384ec12021-06-03 14:48:51 +0100611 *
612 * \code
613 * psa_pake_setup(operation, cipher_suite);
614 * psa_pake_set_user(operation, ...);
615 * psa_pake_set_peer(operation, ...);
616 * psa_pake_set_password_key(operation, ...);
617 * \endcode
Janos Follath702cf092021-05-26 12:58:23 +0100618 *
Neil Armstrong16145372022-05-20 10:42:36 +0200619 * The password is provided as a key. This can be the password text itself,
620 * in an agreed character encoding, or some value derived from the password
621 * as required by a higher level protocol.
Janos Follath702cf092021-05-26 12:58:23 +0100622 *
Neil Armstrong16145372022-05-20 10:42:36 +0200623 * (The implementation converts the key material to a number as described in
Janos Follath702cf092021-05-26 12:58:23 +0100624 * Section 2.3.8 of _SEC 1: Elliptic Curve Cryptography_
625 * (https://www.secg.org/sec1-v2.pdf), before reducing it modulo \c q. Here
626 * \c q is order of the group defined by the primitive set in the cipher suite.
Neil Armstrong5892aa62022-05-27 09:44:47 +0200627 * The \c psa_pake_set_password_key() function returns an error if the result
Janos Follath702cf092021-05-26 12:58:23 +0100628 * of the reduction is 0.)
629 *
630 * The key exchange flow for J-PAKE is as follows:
631 * -# To get the first round data that needs to be sent to the peer, call
Janos Follathb384ec12021-06-03 14:48:51 +0100632 * \code
633 * // Get g1
634 * psa_pake_output(operation, #PSA_PAKE_STEP_KEY_SHARE, ...);
635 * // Get the ZKP public key for x1
636 * psa_pake_output(operation, #PSA_PAKE_STEP_ZK_PUBLIC, ...);
637 * // Get the ZKP proof for x1
638 * psa_pake_output(operation, #PSA_PAKE_STEP_ZK_PROOF, ...);
639 * // Get g2
640 * psa_pake_output(operation, #PSA_PAKE_STEP_KEY_SHARE, ...);
641 * // Get the ZKP public key for x2
642 * psa_pake_output(operation, #PSA_PAKE_STEP_ZK_PUBLIC, ...);
643 * // Get the ZKP proof for x2
644 * psa_pake_output(operation, #PSA_PAKE_STEP_ZK_PROOF, ...);
645 * \endcode
Janos Follath702cf092021-05-26 12:58:23 +0100646 * -# To provide the first round data received from the peer to the operation,
647 * call
Janos Follathb384ec12021-06-03 14:48:51 +0100648 * \code
649 * // Set g3
650 * psa_pake_input(operation, #PSA_PAKE_STEP_KEY_SHARE, ...);
651 * // Set the ZKP public key for x3
652 * psa_pake_input(operation, #PSA_PAKE_STEP_ZK_PUBLIC, ...);
653 * // Set the ZKP proof for x3
654 * psa_pake_input(operation, #PSA_PAKE_STEP_ZK_PROOF, ...);
655 * // Set g4
656 * psa_pake_input(operation, #PSA_PAKE_STEP_KEY_SHARE, ...);
657 * // Set the ZKP public key for x4
658 * psa_pake_input(operation, #PSA_PAKE_STEP_ZK_PUBLIC, ...);
659 * // Set the ZKP proof for x4
660 * psa_pake_input(operation, #PSA_PAKE_STEP_ZK_PROOF, ...);
661 * \endcode
Janos Follath702cf092021-05-26 12:58:23 +0100662 * -# To get the second round data that needs to be sent to the peer, call
Janos Follathb384ec12021-06-03 14:48:51 +0100663 * \code
664 * // Get A
665 * psa_pake_output(operation, #PSA_PAKE_STEP_KEY_SHARE, ...);
666 * // Get ZKP public key for x2*s
667 * psa_pake_output(operation, #PSA_PAKE_STEP_ZK_PUBLIC, ...);
668 * // Get ZKP proof for x2*s
669 * psa_pake_output(operation, #PSA_PAKE_STEP_ZK_PROOF, ...);
670 * \endcode
Janos Follath702cf092021-05-26 12:58:23 +0100671 * -# To provide the second round data received from the peer to the operation,
672 * call
Janos Follathb384ec12021-06-03 14:48:51 +0100673 * \code
674 * // Set B
675 * psa_pake_input(operation, #PSA_PAKE_STEP_KEY_SHARE, ...);
676 * // Set ZKP public key for x4*s
677 * psa_pake_input(operation, #PSA_PAKE_STEP_ZK_PUBLIC, ...);
678 * // Set ZKP proof for x4*s
679 * psa_pake_input(operation, #PSA_PAKE_STEP_ZK_PROOF, ...);
680 * \endcode
Janos Follath702cf092021-05-26 12:58:23 +0100681 * -# To access the shared secret call
Janos Follathb384ec12021-06-03 14:48:51 +0100682 * \code
683 * // Get Ka=Kb=K
684 * psa_pake_get_implicit_key()
685 * \endcode
Janos Follath702cf092021-05-26 12:58:23 +0100686 *
687 * For more information consult the documentation of the individual
688 * \c PSA_PAKE_STEP_XXX constants.
689 *
690 * At this point there is a cryptographic guarantee that only the authenticated
691 * party who used the same password is able to compute the key. But there is no
Janos Follatha46e28f2021-06-03 13:07:03 +0100692 * guarantee that the peer is the party it claims to be and was able to do so.
Janos Follath702cf092021-05-26 12:58:23 +0100693 *
694 * That is, the authentication is only implicit (the peer is not authenticated
695 * at this point, and no action should be taken that assume that they are - like
696 * for example accessing restricted files).
697 *
698 * To make the authentication explicit there are various methods, see Section 5
699 * of RFC 8236 for two examples.
700 *
701 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100702#define PSA_ALG_JPAKE ((psa_algorithm_t) 0x0a000100)
Janos Follath702cf092021-05-26 12:58:23 +0100703
704/** @} */
705
706/** \defgroup pake Password-authenticated key exchange (PAKE)
Janos Follath7d69b3a2021-05-26 13:10:56 +0100707 *
708 * This is a proposed PAKE interface for the PSA Crypto API. It is not part of
709 * the official PSA Crypto API yet.
710 *
711 * \note The content of this section is not part of the stable API and ABI
Fredrik Hessecc207bc2021-09-28 21:06:08 +0200712 * of Mbed TLS and may change arbitrarily from version to version.
Janos Follath7d69b3a2021-05-26 13:10:56 +0100713 * Same holds for the corresponding macros #PSA_ALG_CATEGORY_PAKE and
714 * #PSA_ALG_JPAKE.
Janos Follath702cf092021-05-26 12:58:23 +0100715 * @{
716 */
717
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +0200718/** \brief Encoding of the application role of PAKE
Janos Follath702cf092021-05-26 12:58:23 +0100719 *
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +0200720 * Encodes the application's role in the algorithm is being executed. For more
721 * information see the documentation of individual \c PSA_PAKE_ROLE_XXX
722 * constants.
Janos Follath702cf092021-05-26 12:58:23 +0100723 */
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +0200724typedef uint8_t psa_pake_role_t;
Janos Follath702cf092021-05-26 12:58:23 +0100725
726/** Encoding of input and output indicators for PAKE.
727 *
728 * Some PAKE algorithms need to exchange more data than just a single key share.
729 * This type is for encoding additional input and output data for such
730 * algorithms.
731 */
732typedef uint8_t psa_pake_step_t;
733
734/** Encoding of the type of the PAKE's primitive.
735 *
736 * Values defined by this standard will never be in the range 0x80-0xff.
737 * Vendors who define additional types must use an encoding in this range.
738 *
739 * For more information see the documentation of individual
740 * \c PSA_PAKE_PRIMITIVE_TYPE_XXX constants.
741 */
742typedef uint8_t psa_pake_primitive_type_t;
743
744/** \brief Encoding of the family of the primitive associated with the PAKE.
745 *
746 * For more information see the documentation of individual
747 * \c PSA_PAKE_PRIMITIVE_TYPE_XXX constants.
748 */
749typedef uint8_t psa_pake_family_t;
750
751/** \brief Encoding of the primitive associated with the PAKE.
752 *
753 * For more information see the documentation of the #PSA_PAKE_PRIMITIVE macro.
754 */
755typedef uint32_t psa_pake_primitive_t;
756
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +0200757/** A value to indicate no role in a PAKE algorithm.
758 * This value can be used in a call to psa_pake_set_role() for symmetric PAKE
759 * algorithms which do not assign roles.
760 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100761#define PSA_PAKE_ROLE_NONE ((psa_pake_role_t) 0x00)
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +0200762
Janos Follath702cf092021-05-26 12:58:23 +0100763/** The first peer in a balanced PAKE.
764 *
765 * Although balanced PAKE algorithms are symmetric, some of them needs an
766 * ordering of peers for the transcript calculations. If the algorithm does not
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +0200767 * need this, both #PSA_PAKE_ROLE_FIRST and #PSA_PAKE_ROLE_SECOND are
Janos Follath702cf092021-05-26 12:58:23 +0100768 * accepted.
769 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100770#define PSA_PAKE_ROLE_FIRST ((psa_pake_role_t) 0x01)
Janos Follath702cf092021-05-26 12:58:23 +0100771
772/** The second peer in a balanced PAKE.
773 *
774 * Although balanced PAKE algorithms are symmetric, some of them needs an
775 * ordering of peers for the transcript calculations. If the algorithm does not
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +0200776 * need this, either #PSA_PAKE_ROLE_FIRST or #PSA_PAKE_ROLE_SECOND are
Janos Follath702cf092021-05-26 12:58:23 +0100777 * accepted.
778 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100779#define PSA_PAKE_ROLE_SECOND ((psa_pake_role_t) 0x02)
Janos Follath702cf092021-05-26 12:58:23 +0100780
781/** The client in an augmented PAKE.
782 *
783 * Augmented PAKE algorithms need to differentiate between client and server.
784 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100785#define PSA_PAKE_ROLE_CLIENT ((psa_pake_role_t) 0x11)
Janos Follath702cf092021-05-26 12:58:23 +0100786
787/** The server in an augmented PAKE.
788 *
789 * Augmented PAKE algorithms need to differentiate between client and server.
790 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100791#define PSA_PAKE_ROLE_SERVER ((psa_pake_role_t) 0x12)
Janos Follath702cf092021-05-26 12:58:23 +0100792
793/** The PAKE primitive type indicating the use of elliptic curves.
794 *
795 * The values of the \c family and \c bits fields of the cipher suite identify a
796 * specific elliptic curve, using the same mapping that is used for ECC
797 * (::psa_ecc_family_t) keys.
798 *
799 * (Here \c family means the value returned by psa_pake_cs_get_family() and
800 * \c bits means the value returned by psa_pake_cs_get_bits().)
801 *
802 * Input and output during the operation can involve group elements and scalar
803 * values:
804 * -# The format for group elements is the same as for public keys on the
805 * specific curve would be. For more information, consult the documentation of
806 * psa_export_public_key().
807 * -# The format for scalars is the same as for private keys on the specific
808 * curve would be. For more information, consult the documentation of
809 * psa_export_key().
810 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100811#define PSA_PAKE_PRIMITIVE_TYPE_ECC ((psa_pake_primitive_type_t) 0x01)
Janos Follath702cf092021-05-26 12:58:23 +0100812
813/** The PAKE primitive type indicating the use of Diffie-Hellman groups.
814 *
815 * The values of the \c family and \c bits fields of the cipher suite identify
816 * a specific Diffie-Hellman group, using the same mapping that is used for
817 * Diffie-Hellman (::psa_dh_family_t) keys.
818 *
819 * (Here \c family means the value returned by psa_pake_cs_get_family() and
820 * \c bits means the value returned by psa_pake_cs_get_bits().)
821 *
822 * Input and output during the operation can involve group elements and scalar
823 * values:
824 * -# The format for group elements is the same as for public keys on the
825 * specific group would be. For more information, consult the documentation of
826 * psa_export_public_key().
827 * -# The format for scalars is the same as for private keys on the specific
828 * group would be. For more information, consult the documentation of
829 * psa_export_key().
830 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100831#define PSA_PAKE_PRIMITIVE_TYPE_DH ((psa_pake_primitive_type_t) 0x02)
Janos Follath702cf092021-05-26 12:58:23 +0100832
833/** Construct a PAKE primitive from type, family and bit-size.
834 *
835 * \param pake_type The type of the primitive
836 * (value of type ::psa_pake_primitive_type_t).
837 * \param pake_family The family of the primitive
838 * (the type and interpretation of this parameter depends
Andrzej Kurek3bedb5b2022-02-17 14:39:00 -0500839 * on \p pake_type, for more information consult the
Janos Follath702cf092021-05-26 12:58:23 +0100840 * documentation of individual ::psa_pake_primitive_type_t
841 * constants).
842 * \param pake_bits The bit-size of the primitive
843 * (Value of type \c size_t. The interpretation
Andrzej Kurek3bedb5b2022-02-17 14:39:00 -0500844 * of this parameter depends on \p pake_family, for more
Janos Follath702cf092021-05-26 12:58:23 +0100845 * information consult the documentation of individual
846 * ::psa_pake_primitive_type_t constants).
847 *
848 * \return The constructed primitive value of type ::psa_pake_primitive_t.
849 * Return 0 if the requested primitive can't be encoded as
850 * ::psa_pake_primitive_t.
851 */
852#define PSA_PAKE_PRIMITIVE(pake_type, pake_family, pake_bits) \
853 ((pake_bits & 0xFFFF) != pake_bits) ? 0 : \
854 ((psa_pake_primitive_t) (((pake_type) << 24 | \
Gilles Peskine449bd832023-01-11 14:50:10 +0100855 (pake_family) << 16) | (pake_bits)))
Janos Follath702cf092021-05-26 12:58:23 +0100856
857/** The key share being sent to or received from the peer.
858 *
859 * The format for both input and output at this step is the same as for public
860 * keys on the group determined by the primitive (::psa_pake_primitive_t) would
861 * be.
862 *
863 * For more information on the format, consult the documentation of
864 * psa_export_public_key().
865 *
866 * For information regarding how the group is determined, consult the
867 * documentation #PSA_PAKE_PRIMITIVE.
868 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100869#define PSA_PAKE_STEP_KEY_SHARE ((psa_pake_step_t) 0x01)
Janos Follath702cf092021-05-26 12:58:23 +0100870
871/** A Schnorr NIZKP public key.
872 *
Janos Follath55dd5dc2021-06-03 15:51:09 +0100873 * This is the ephemeral public key in the Schnorr Non-Interactive
874 * Zero-Knowledge Proof (the value denoted by the letter 'V' in RFC 8235).
875 *
Janos Follath702cf092021-05-26 12:58:23 +0100876 * The format for both input and output at this step is the same as for public
877 * keys on the group determined by the primitive (::psa_pake_primitive_t) would
878 * be.
879 *
880 * For more information on the format, consult the documentation of
881 * psa_export_public_key().
882 *
883 * For information regarding how the group is determined, consult the
884 * documentation #PSA_PAKE_PRIMITIVE.
885 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100886#define PSA_PAKE_STEP_ZK_PUBLIC ((psa_pake_step_t) 0x02)
Janos Follath702cf092021-05-26 12:58:23 +0100887
888/** A Schnorr NIZKP proof.
889 *
Janos Follath55dd5dc2021-06-03 15:51:09 +0100890 * This is the proof in the Schnorr Non-Interactive Zero-Knowledge Proof (the
891 * value denoted by the letter 'r' in RFC 8235).
Janos Follath702cf092021-05-26 12:58:23 +0100892 *
Janos Follath1f013182021-06-08 15:30:48 +0100893 * Both for input and output, the value at this step is an integer less than
894 * the order of the group selected in the cipher suite. The format depends on
895 * the group as well:
Janos Follath702cf092021-05-26 12:58:23 +0100896 *
Janos Follath1f013182021-06-08 15:30:48 +0100897 * - For Montgomery curves, the encoding is little endian.
Janos Follath55dd5dc2021-06-03 15:51:09 +0100898 * - For everything else the encoding is big endian (see Section 2.3.8 of
899 * _SEC 1: Elliptic Curve Cryptography_ at https://www.secg.org/sec1-v2.pdf).
Janos Follath702cf092021-05-26 12:58:23 +0100900 *
Janos Follath1f013182021-06-08 15:30:48 +0100901 * In both cases leading zeroes are allowed as long as the length in bytes does
902 * not exceed the byte length of the group order.
903 *
Janos Follath702cf092021-05-26 12:58:23 +0100904 * For information regarding how the group is determined, consult the
905 * documentation #PSA_PAKE_PRIMITIVE.
906 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100907#define PSA_PAKE_STEP_ZK_PROOF ((psa_pake_step_t) 0x03)
Janos Follath702cf092021-05-26 12:58:23 +0100908
Shaun Case8b0ecbc2021-12-20 21:14:10 -0800909/** The type of the data structure for PAKE cipher suites.
Janos Follath702cf092021-05-26 12:58:23 +0100910 *
911 * This is an implementation-defined \c struct. Applications should not
912 * make any assumptions about the content of this structure.
913 * Implementation details can change in future versions without notice.
914 */
915typedef struct psa_pake_cipher_suite_s psa_pake_cipher_suite_t;
916
Neil Armstrong5ff6a7f2022-05-20 10:12:01 +0200917/** Return an initial value for a PAKE cipher suite object.
918 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100919static psa_pake_cipher_suite_t psa_pake_cipher_suite_init(void);
Neil Armstrong5ff6a7f2022-05-20 10:12:01 +0200920
Janos Follath702cf092021-05-26 12:58:23 +0100921/** Retrieve the PAKE algorithm from a PAKE cipher suite.
922 *
Janos Follath702cf092021-05-26 12:58:23 +0100923 * \param[in] cipher_suite The cipher suite structure to query.
924 *
925 * \return The PAKE algorithm stored in the cipher suite structure.
926 */
927static psa_algorithm_t psa_pake_cs_get_algorithm(
Gilles Peskine449bd832023-01-11 14:50:10 +0100928 const psa_pake_cipher_suite_t *cipher_suite);
Janos Follath702cf092021-05-26 12:58:23 +0100929
930/** Declare the PAKE algorithm for the cipher suite.
931 *
932 * This function overwrites any PAKE algorithm
933 * previously set in \p cipher_suite.
934 *
Janos Follath702cf092021-05-26 12:58:23 +0100935 * \param[out] cipher_suite The cipher suite structure to write to.
936 * \param algorithm The PAKE algorithm to write.
937 * (`PSA_ALG_XXX` values of type ::psa_algorithm_t
938 * such that #PSA_ALG_IS_PAKE(\c alg) is true.)
939 * If this is 0, the PAKE algorithm in
940 * \p cipher_suite becomes unspecified.
941 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100942static void psa_pake_cs_set_algorithm(psa_pake_cipher_suite_t *cipher_suite,
943 psa_algorithm_t algorithm);
Janos Follath702cf092021-05-26 12:58:23 +0100944
945/** Retrieve the primitive from a PAKE cipher suite.
946 *
Janos Follath702cf092021-05-26 12:58:23 +0100947 * \param[in] cipher_suite The cipher suite structure to query.
948 *
949 * \return The primitive stored in the cipher suite structure.
950 */
951static psa_pake_primitive_t psa_pake_cs_get_primitive(
Gilles Peskine449bd832023-01-11 14:50:10 +0100952 const psa_pake_cipher_suite_t *cipher_suite);
Janos Follath702cf092021-05-26 12:58:23 +0100953
954/** Declare the primitive for a PAKE cipher suite.
955 *
956 * This function overwrites any primitive previously set in \p cipher_suite.
957 *
Janos Follath702cf092021-05-26 12:58:23 +0100958 * \param[out] cipher_suite The cipher suite structure to write to.
959 * \param primitive The primitive to write. If this is 0, the
960 * primitive type in \p cipher_suite becomes
961 * unspecified.
962 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100963static void psa_pake_cs_set_primitive(psa_pake_cipher_suite_t *cipher_suite,
964 psa_pake_primitive_t primitive);
Janos Follath702cf092021-05-26 12:58:23 +0100965
Neil Armstrongff9cac72022-05-20 10:25:15 +0200966/** Retrieve the PAKE family from a PAKE cipher suite.
967 *
Neil Armstrongff9cac72022-05-20 10:25:15 +0200968 * \param[in] cipher_suite The cipher suite structure to query.
969 *
970 * \return The PAKE family stored in the cipher suite structure.
971 */
972static psa_pake_family_t psa_pake_cs_get_family(
Gilles Peskine449bd832023-01-11 14:50:10 +0100973 const psa_pake_cipher_suite_t *cipher_suite);
Neil Armstrongff9cac72022-05-20 10:25:15 +0200974
Neil Armstrongd5a48252022-05-20 10:26:36 +0200975/** Retrieve the PAKE primitive bit-size from a PAKE cipher suite.
976 *
Neil Armstrongd5a48252022-05-20 10:26:36 +0200977 * \param[in] cipher_suite The cipher suite structure to query.
978 *
979 * \return The PAKE primitive bit-size stored in the cipher suite structure.
980 */
981static uint16_t psa_pake_cs_get_bits(
Gilles Peskine449bd832023-01-11 14:50:10 +0100982 const psa_pake_cipher_suite_t *cipher_suite);
Neil Armstrongd5a48252022-05-20 10:26:36 +0200983
Janos Follath702cf092021-05-26 12:58:23 +0100984/** Retrieve the hash algorithm from a PAKE cipher suite.
985 *
Janos Follath702cf092021-05-26 12:58:23 +0100986 * \param[in] cipher_suite The cipher suite structure to query.
987 *
988 * \return The hash algorithm stored in the cipher suite structure. The return
989 * value is 0 if the PAKE is not parametrised by a hash algorithm or if
990 * the hash algorithm is not set.
991 */
992static psa_algorithm_t psa_pake_cs_get_hash(
Gilles Peskine449bd832023-01-11 14:50:10 +0100993 const psa_pake_cipher_suite_t *cipher_suite);
Janos Follath702cf092021-05-26 12:58:23 +0100994
995/** Declare the hash algorithm for a PAKE cipher suite.
996 *
997 * This function overwrites any hash algorithm
998 * previously set in \p cipher_suite.
999 *
Janos Follath702cf092021-05-26 12:58:23 +01001000 * Refer to the documentation of individual PAKE algorithm types (`PSA_ALG_XXX`
1001 * values of type ::psa_algorithm_t such that #PSA_ALG_IS_PAKE(\c alg) is true)
1002 * for more information.
1003 *
1004 * \param[out] cipher_suite The cipher suite structure to write to.
1005 * \param hash The hash involved in the cipher suite.
1006 * (`PSA_ALG_XXX` values of type ::psa_algorithm_t
1007 * such that #PSA_ALG_IS_HASH(\c alg) is true.)
1008 * If this is 0, the hash algorithm in
1009 * \p cipher_suite becomes unspecified.
1010 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001011static void psa_pake_cs_set_hash(psa_pake_cipher_suite_t *cipher_suite,
1012 psa_algorithm_t hash);
Janos Follath702cf092021-05-26 12:58:23 +01001013
1014/** The type of the state data structure for PAKE operations.
1015 *
1016 * Before calling any function on a PAKE operation object, the application
1017 * must initialize it by any of the following means:
1018 * - Set the structure to all-bits-zero, for example:
1019 * \code
1020 * psa_pake_operation_t operation;
1021 * memset(&operation, 0, sizeof(operation));
1022 * \endcode
1023 * - Initialize the structure to logical zero values, for example:
1024 * \code
1025 * psa_pake_operation_t operation = {0};
1026 * \endcode
1027 * - Initialize the structure to the initializer #PSA_PAKE_OPERATION_INIT,
1028 * for example:
1029 * \code
1030 * psa_pake_operation_t operation = PSA_PAKE_OPERATION_INIT;
1031 * \endcode
1032 * - Assign the result of the function psa_pake_operation_init()
1033 * to the structure, for example:
1034 * \code
1035 * psa_pake_operation_t operation;
1036 * operation = psa_pake_operation_init();
1037 * \endcode
1038 *
1039 * This is an implementation-defined \c struct. Applications should not
1040 * make any assumptions about the content of this structure.
1041 * Implementation details can change in future versions without notice. */
1042typedef struct psa_pake_operation_s psa_pake_operation_t;
1043
Przemek Stekiel51eac532022-12-07 11:04:51 +01001044/** The type of input values for PAKE operations. */
1045typedef struct psa_crypto_driver_pake_inputs_s psa_crypto_driver_pake_inputs_t;
1046
Przemek Stekielb09c4872023-01-17 12:05:38 +01001047/** The type of computation stage for J-PAKE operations. */
Przemek Stekiele12ed362022-12-21 12:54:46 +01001048typedef struct psa_jpake_computation_stage_s psa_jpake_computation_stage_t;
1049
Tom Cosgrovece7f18c2022-07-28 05:50:56 +01001050/** Return an initial value for a PAKE operation object.
Janos Follath702cf092021-05-26 12:58:23 +01001051 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001052static psa_pake_operation_t psa_pake_operation_init(void);
Janos Follath702cf092021-05-26 12:58:23 +01001053
Przemek Stekielc0e62502023-03-14 11:49:36 +01001054/** Get the length of the password in bytes from given inputs.
Przemek Stekielca8d2b22023-01-17 16:21:33 +01001055 *
1056 * \param[in] inputs Operation inputs.
Przemek Stekielc0e62502023-03-14 11:49:36 +01001057 * \param[out] password_len Password length.
Przemek Stekielca8d2b22023-01-17 16:21:33 +01001058 *
1059 * \retval #PSA_SUCCESS
1060 * Success.
1061 * \retval #PSA_ERROR_BAD_STATE
1062 * Password hasn't been set yet.
1063 */
1064psa_status_t psa_crypto_driver_pake_get_password_len(
1065 const psa_crypto_driver_pake_inputs_t *inputs,
1066 size_t *password_len);
1067
1068/** Get the password from given inputs.
1069 *
1070 * \param[in] inputs Operation inputs.
1071 * \param[out] buffer Return buffer for password.
Przemek Stekiel6b648622023-02-19 22:55:33 +01001072 * \param buffer_size Size of the return buffer in bytes.
1073 * \param[out] buffer_length Actual size of the password in bytes.
Przemek Stekielca8d2b22023-01-17 16:21:33 +01001074 *
1075 * \retval #PSA_SUCCESS
1076 * Success.
1077 * \retval #PSA_ERROR_BAD_STATE
1078 * Password hasn't been set yet.
1079 */
1080psa_status_t psa_crypto_driver_pake_get_password(
1081 const psa_crypto_driver_pake_inputs_t *inputs,
1082 uint8_t *buffer, size_t buffer_size, size_t *buffer_length);
1083
Przemek Stekielc0e62502023-03-14 11:49:36 +01001084/** Get the length of the user id in bytes from given inputs.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001085 *
1086 * \param[in] inputs Operation inputs.
Przemek Stekielc0e62502023-03-14 11:49:36 +01001087 * \param[out] user_len User id length.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001088 *
1089 * \retval #PSA_SUCCESS
1090 * Success.
1091 * \retval #PSA_ERROR_BAD_STATE
Przemek Stekield7f6ad72023-03-06 13:39:52 +01001092 * User id hasn't been set yet.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001093 */
1094psa_status_t psa_crypto_driver_pake_get_user_len(
1095 const psa_crypto_driver_pake_inputs_t *inputs,
1096 size_t *user_len);
1097
Przemek Stekielc0e62502023-03-14 11:49:36 +01001098/** Get the length of the peer id in bytes from given inputs.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001099 *
1100 * \param[in] inputs Operation inputs.
Przemek Stekielc0e62502023-03-14 11:49:36 +01001101 * \param[out] peer_len Peer id length.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001102 *
1103 * \retval #PSA_SUCCESS
1104 * Success.
1105 * \retval #PSA_ERROR_BAD_STATE
Przemek Stekield7f6ad72023-03-06 13:39:52 +01001106 * Peer id hasn't been set yet.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001107 */
1108psa_status_t psa_crypto_driver_pake_get_peer_len(
1109 const psa_crypto_driver_pake_inputs_t *inputs,
1110 size_t *peer_len);
1111
Przemek Stekield7f6ad72023-03-06 13:39:52 +01001112/** Get the user id from given inputs.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001113 *
1114 * \param[in] inputs Operation inputs.
Przemek Stekielc0e62502023-03-14 11:49:36 +01001115 * \param[out] user_id User id.
1116 * \param user_id_size Size of \p user_id in bytes.
1117 * \param[out] user_id_len Size of the user id in bytes.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001118 *
1119 * \retval #PSA_SUCCESS
1120 * Success.
1121 * \retval #PSA_ERROR_BAD_STATE
Przemek Stekield7f6ad72023-03-06 13:39:52 +01001122 * User id hasn't been set yet.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001123 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
Przemek Stekielc0e62502023-03-14 11:49:36 +01001124 * The size of the \p user_id is too small.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001125 */
1126psa_status_t psa_crypto_driver_pake_get_user(
1127 const psa_crypto_driver_pake_inputs_t *inputs,
Przemek Stekielc0e62502023-03-14 11:49:36 +01001128 uint8_t *user_id, size_t user_id_size, size_t *user_id_len);
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001129
Przemek Stekield7f6ad72023-03-06 13:39:52 +01001130/** Get the peer id from given inputs.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001131 *
1132 * \param[in] inputs Operation inputs.
Przemek Stekielc0e62502023-03-14 11:49:36 +01001133 * \param[out] peer_id Peer id.
1134 * \param peer_id_size Size of \p peer_id in bytes.
1135 * \param[out] peer_id_length Size of the peer id in bytes.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001136 *
1137 * \retval #PSA_SUCCESS
1138 * Success.
1139 * \retval #PSA_ERROR_BAD_STATE
Przemek Stekield7f6ad72023-03-06 13:39:52 +01001140 * Peer id hasn't been set yet.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001141 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
Przemek Stekielc0e62502023-03-14 11:49:36 +01001142 * The size of the \p peer_id is too small.
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001143 */
1144psa_status_t psa_crypto_driver_pake_get_peer(
1145 const psa_crypto_driver_pake_inputs_t *inputs,
Przemek Stekielc0e62502023-03-14 11:49:36 +01001146 uint8_t *peer_id, size_t peer_id_size, size_t *peer_id_length);
Przemek Stekiel1e7a9272023-02-28 14:38:58 +01001147
Przemek Stekielca8d2b22023-01-17 16:21:33 +01001148/** Get the cipher suite from given inputs.
1149 *
1150 * \param[in] inputs Operation inputs.
1151 * \param[out] cipher_suite Return buffer for role.
1152 *
1153 * \retval #PSA_SUCCESS
1154 * Success.
1155 * \retval #PSA_ERROR_BAD_STATE
1156 * Cipher_suite hasn't been set yet.
1157 */
1158psa_status_t psa_crypto_driver_pake_get_cipher_suite(
1159 const psa_crypto_driver_pake_inputs_t *inputs,
1160 psa_pake_cipher_suite_t *cipher_suite);
1161
Janos Follath702cf092021-05-26 12:58:23 +01001162/** Set the session information for a password-authenticated key exchange.
1163 *
1164 * The sequence of operations to set up a password-authenticated key exchange
1165 * is as follows:
1166 * -# Allocate an operation object which will be passed to all the functions
1167 * listed here.
1168 * -# Initialize the operation object with one of the methods described in the
1169 * documentation for #psa_pake_operation_t, e.g.
1170 * #PSA_PAKE_OPERATION_INIT.
1171 * -# Call psa_pake_setup() to specify the cipher suite.
1172 * -# Call \c psa_pake_set_xxx() functions on the operation to complete the
1173 * setup. The exact sequence of \c psa_pake_set_xxx() functions that needs
1174 * to be called depends on the algorithm in use.
1175 *
1176 * Refer to the documentation of individual PAKE algorithm types (`PSA_ALG_XXX`
1177 * values of type ::psa_algorithm_t such that #PSA_ALG_IS_PAKE(\c alg) is true)
1178 * for more information.
1179 *
1180 * A typical sequence of calls to perform a password-authenticated key
1181 * exchange:
1182 * -# Call psa_pake_output(operation, #PSA_PAKE_STEP_KEY_SHARE, ...) to get the
1183 * key share that needs to be sent to the peer.
1184 * -# Call psa_pake_input(operation, #PSA_PAKE_STEP_KEY_SHARE, ...) to provide
1185 * the key share that was received from the peer.
1186 * -# Depending on the algorithm additional calls to psa_pake_output() and
1187 * psa_pake_input() might be necessary.
1188 * -# Call psa_pake_get_implicit_key() for accessing the shared secret.
1189 *
1190 * Refer to the documentation of individual PAKE algorithm types (`PSA_ALG_XXX`
1191 * values of type ::psa_algorithm_t such that #PSA_ALG_IS_PAKE(\c alg) is true)
1192 * for more information.
1193 *
1194 * If an error occurs at any step after a call to psa_pake_setup(),
1195 * the operation will need to be reset by a call to psa_pake_abort(). The
1196 * application may call psa_pake_abort() at any time after the operation
1197 * has been initialized.
1198 *
1199 * After a successful call to psa_pake_setup(), the application must
1200 * eventually terminate the operation. The following events terminate an
1201 * operation:
1202 * - A call to psa_pake_abort().
1203 * - A successful call to psa_pake_get_implicit_key().
1204 *
1205 * \param[in,out] operation The operation object to set up. It must have
Janos Follath3293dae2021-06-03 13:21:33 +01001206 * been initialized but not set up yet.
Neil Armstrong47e700e2022-05-20 10:16:41 +02001207 * \param[in] cipher_suite The cipher suite to use. (A cipher suite fully
Janos Follath702cf092021-05-26 12:58:23 +01001208 * characterizes a PAKE algorithm and determines
1209 * the algorithm as well.)
1210 *
1211 * \retval #PSA_SUCCESS
1212 * Success.
Neil Armstrong4721a6f2022-05-20 10:53:00 +02001213 * \retval #PSA_ERROR_INVALID_ARGUMENT
1214 * The algorithm in \p cipher_suite is not a PAKE algorithm, or the
1215 * PAKE primitive in \p cipher_suite is not compatible with the
1216 * PAKE algorithm, or the hash algorithm in \p cipher_suite is invalid
1217 * or not compatible with the PAKE algorithm and primitive.
Janos Follath702cf092021-05-26 12:58:23 +01001218 * \retval #PSA_ERROR_NOT_SUPPORTED
Neil Armstrong4721a6f2022-05-20 10:53:00 +02001219 * The algorithm in \p cipher_suite is not a supported PAKE algorithm,
1220 * or the PAKE primitive in \p cipher_suite is not supported or not
1221 * compatible with the PAKE algorithm, or the hash algorithm in
1222 * \p cipher_suite is not supported or not compatible with the PAKE
1223 * algorithm and primitive.
Gilles Peskineed733552023-02-14 19:21:09 +01001224 * \retval #PSA_ERROR_COMMUNICATION_FAILURE \emptydescription
1225 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
Janos Follath702cf092021-05-26 12:58:23 +01001226 * \retval #PSA_ERROR_BAD_STATE
Andrzej Kurekf7c1f742022-02-03 11:30:54 -05001227 * The operation state is not valid, or
1228 * the library has not been previously initialized by psa_crypto_init().
Janos Follath702cf092021-05-26 12:58:23 +01001229 * It is implementation-dependent whether a failure to initialize
1230 * results in this error code.
1231 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001232psa_status_t psa_pake_setup(psa_pake_operation_t *operation,
1233 const psa_pake_cipher_suite_t *cipher_suite);
Janos Follath702cf092021-05-26 12:58:23 +01001234
1235/** Set the password for a password-authenticated key exchange from key ID.
1236 *
1237 * Call this function when the password, or a value derived from the password,
Janos Follath52f9efa2021-05-27 08:40:16 +01001238 * is already present in the key store.
Janos Follath702cf092021-05-26 12:58:23 +01001239 *
1240 * \param[in,out] operation The operation object to set the password for. It
1241 * must have been set up by psa_pake_setup() and
1242 * not yet in use (neither psa_pake_output() nor
1243 * psa_pake_input() has been called yet). It must
1244 * be on operation for which the password hasn't
Janos Follath52f9efa2021-05-27 08:40:16 +01001245 * been set yet (psa_pake_set_password_key()
Janos Follath559f05e2021-05-26 15:44:30 +01001246 * hasn't been called yet).
Janos Follath702cf092021-05-26 12:58:23 +01001247 * \param password Identifier of the key holding the password or a
1248 * value derived from the password (eg. by a
1249 * memory-hard function). It must remain valid
1250 * until the operation terminates. It must be of
1251 * type #PSA_KEY_TYPE_PASSWORD or
1252 * #PSA_KEY_TYPE_PASSWORD_HASH. It has to allow
1253 * the usage #PSA_KEY_USAGE_DERIVE.
1254 *
1255 * \retval #PSA_SUCCESS
1256 * Success.
Janos Follath702cf092021-05-26 12:58:23 +01001257 * \retval #PSA_ERROR_INVALID_HANDLE
Neil Armstrong71cae612022-05-20 11:00:49 +02001258 * \p password is not a valid key identifier.
Janos Follath702cf092021-05-26 12:58:23 +01001259 * \retval #PSA_ERROR_NOT_PERMITTED
Neil Armstrong71cae612022-05-20 11:00:49 +02001260 * The key does not have the #PSA_KEY_USAGE_DERIVE flag, or it does not
1261 * permit the \p operation's algorithm.
1262 * \retval #PSA_ERROR_INVALID_ARGUMENT
1263 * The key type for \p password is not #PSA_KEY_TYPE_PASSWORD or
1264 * #PSA_KEY_TYPE_PASSWORD_HASH, or \p password is not compatible with
1265 * the \p operation's cipher suite.
1266 * \retval #PSA_ERROR_NOT_SUPPORTED
1267 * The key type or key size of \p password is not supported with the
1268 * \p operation's cipher suite.
Gilles Peskineed733552023-02-14 19:21:09 +01001269 * \retval #PSA_ERROR_COMMUNICATION_FAILURE \emptydescription
1270 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
1271 * \retval #PSA_ERROR_STORAGE_FAILURE \emptydescription
1272 * \retval #PSA_ERROR_DATA_CORRUPT \emptydescription
1273 * \retval #PSA_ERROR_DATA_INVALID \emptydescription
Janos Follath702cf092021-05-26 12:58:23 +01001274 * \retval #PSA_ERROR_BAD_STATE
Andrzej Kurekf7c1f742022-02-03 11:30:54 -05001275 * The operation state is not valid (it must have been set up.), or
1276 * the library has not been previously initialized by psa_crypto_init().
Janos Follath702cf092021-05-26 12:58:23 +01001277 * It is implementation-dependent whether a failure to initialize
1278 * results in this error code.
1279 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001280psa_status_t psa_pake_set_password_key(psa_pake_operation_t *operation,
1281 mbedtls_svc_key_id_t password);
Janos Follath702cf092021-05-26 12:58:23 +01001282
Janos Follath702cf092021-05-26 12:58:23 +01001283/** Set the user ID for a password-authenticated key exchange.
1284 *
1285 * Call this function to set the user ID. For PAKE algorithms that associate a
1286 * user identifier with each side of the session you need to call
1287 * psa_pake_set_peer() as well. For PAKE algorithms that associate a single
1288 * user identifier with the session, call psa_pake_set_user() only.
1289 *
1290 * Refer to the documentation of individual PAKE algorithm types (`PSA_ALG_XXX`
1291 * values of type ::psa_algorithm_t such that #PSA_ALG_IS_PAKE(\c alg) is true)
1292 * for more information.
1293 *
1294 * \param[in,out] operation The operation object to set the user ID for. It
1295 * must have been set up by psa_pake_setup() and
1296 * not yet in use (neither psa_pake_output() nor
1297 * psa_pake_input() has been called yet). It must
1298 * be on operation for which the user ID hasn't
1299 * been set (psa_pake_set_user() hasn't been
1300 * called yet).
1301 * \param[in] user_id The user ID to authenticate with.
1302 * \param user_id_len Size of the \p user_id buffer in bytes.
1303 *
1304 * \retval #PSA_SUCCESS
1305 * Success.
Andrzej Kurekf7c1f742022-02-03 11:30:54 -05001306 * \retval #PSA_ERROR_INVALID_ARGUMENT
Neil Armstrong35851682022-05-20 11:02:37 +02001307 * \p user_id is not valid for the \p operation's algorithm and cipher
1308 * suite.
1309 * \retval #PSA_ERROR_NOT_SUPPORTED
1310 * The value of \p user_id is not supported by the implementation.
Gilles Peskineed733552023-02-14 19:21:09 +01001311 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY \emptydescription
1312 * \retval #PSA_ERROR_COMMUNICATION_FAILURE \emptydescription
1313 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
Janos Follath702cf092021-05-26 12:58:23 +01001314 * \retval #PSA_ERROR_BAD_STATE
Andrzej Kurekf7c1f742022-02-03 11:30:54 -05001315 * The operation state is not valid, or
1316 * the library has not been previously initialized by psa_crypto_init().
Janos Follath702cf092021-05-26 12:58:23 +01001317 * It is implementation-dependent whether a failure to initialize
1318 * results in this error code.
1319 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001320psa_status_t psa_pake_set_user(psa_pake_operation_t *operation,
1321 const uint8_t *user_id,
1322 size_t user_id_len);
Janos Follath702cf092021-05-26 12:58:23 +01001323
1324/** Set the peer ID for a password-authenticated key exchange.
1325 *
1326 * Call this function in addition to psa_pake_set_user() for PAKE algorithms
1327 * that associate a user identifier with each side of the session. For PAKE
1328 * algorithms that associate a single user identifier with the session, call
1329 * psa_pake_set_user() only.
1330 *
1331 * Refer to the documentation of individual PAKE algorithm types (`PSA_ALG_XXX`
1332 * values of type ::psa_algorithm_t such that #PSA_ALG_IS_PAKE(\c alg) is true)
1333 * for more information.
1334 *
1335 * \param[in,out] operation The operation object to set the peer ID for. It
1336 * must have been set up by psa_pake_setup() and
1337 * not yet in use (neither psa_pake_output() nor
1338 * psa_pake_input() has been called yet). It must
1339 * be on operation for which the peer ID hasn't
1340 * been set (psa_pake_set_peer() hasn't been
1341 * called yet).
1342 * \param[in] peer_id The peer's ID to authenticate.
1343 * \param peer_id_len Size of the \p peer_id buffer in bytes.
1344 *
1345 * \retval #PSA_SUCCESS
1346 * Success.
Neil Armstrong16ff7882022-05-20 11:04:20 +02001347 * \retval #PSA_ERROR_INVALID_ARGUMENT
Andrzej Kurek00b54e62023-05-06 09:38:57 -04001348 * \p peer_id is not valid for the \p operation's algorithm and cipher
Neil Armstrong16ff7882022-05-20 11:04:20 +02001349 * suite.
Janos Follath702cf092021-05-26 12:58:23 +01001350 * \retval #PSA_ERROR_NOT_SUPPORTED
1351 * The algorithm doesn't associate a second identity with the session.
Gilles Peskineed733552023-02-14 19:21:09 +01001352 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY \emptydescription
1353 * \retval #PSA_ERROR_COMMUNICATION_FAILURE \emptydescription
1354 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
Janos Follath702cf092021-05-26 12:58:23 +01001355 * \retval #PSA_ERROR_BAD_STATE
Neil Armstrong0d245752022-05-20 11:35:40 +02001356 * Calling psa_pake_set_peer() is invalid with the \p operation's
1357 * algorithm, the operation state is not valid, or the library has not
Andrzej Kurekf7c1f742022-02-03 11:30:54 -05001358 * been previously initialized by psa_crypto_init().
Janos Follath702cf092021-05-26 12:58:23 +01001359 * It is implementation-dependent whether a failure to initialize
1360 * results in this error code.
1361 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001362psa_status_t psa_pake_set_peer(psa_pake_operation_t *operation,
1363 const uint8_t *peer_id,
1364 size_t peer_id_len);
Janos Follath702cf092021-05-26 12:58:23 +01001365
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +02001366/** Set the application role for a password-authenticated key exchange.
Janos Follath702cf092021-05-26 12:58:23 +01001367 *
1368 * Not all PAKE algorithms need to differentiate the communicating entities.
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +02001369 * It is optional to call this function for PAKEs that don't require a role
1370 * to be specified. For such PAKEs the application role parameter is ignored,
1371 * or #PSA_PAKE_ROLE_NONE can be passed as \c role.
Janos Follath702cf092021-05-26 12:58:23 +01001372 *
1373 * Refer to the documentation of individual PAKE algorithm types (`PSA_ALG_XXX`
1374 * values of type ::psa_algorithm_t such that #PSA_ALG_IS_PAKE(\c alg) is true)
1375 * for more information.
1376 *
Neil Armstrongef157512022-05-25 11:49:45 +02001377 * \param[in,out] operation The operation object to specify the
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +02001378 * application's role for. It must have been set up
1379 * by psa_pake_setup() and not yet in use (neither
1380 * psa_pake_output() nor psa_pake_input() has been
1381 * called yet). It must be on operation for which
1382 * the application's role hasn't been specified
1383 * (psa_pake_set_role() hasn't been called yet).
1384 * \param role A value of type ::psa_pake_role_t indicating the
1385 * application's role in the PAKE the algorithm
1386 * that is being set up. For more information see
1387 * the documentation of \c PSA_PAKE_ROLE_XXX
1388 * constants.
Janos Follath702cf092021-05-26 12:58:23 +01001389 *
1390 * \retval #PSA_SUCCESS
1391 * Success.
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +02001392 * \retval #PSA_ERROR_INVALID_ARGUMENT
1393 * The \p role is not a valid PAKE role in the \p operation’s algorithm.
Janos Follath702cf092021-05-26 12:58:23 +01001394 * \retval #PSA_ERROR_NOT_SUPPORTED
Neil Armstrong2a6dd9c2022-05-20 11:17:10 +02001395 * The \p role for this algorithm is not supported or is not valid.
Gilles Peskineed733552023-02-14 19:21:09 +01001396 * \retval #PSA_ERROR_COMMUNICATION_FAILURE \emptydescription
1397 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
Janos Follath702cf092021-05-26 12:58:23 +01001398 * \retval #PSA_ERROR_BAD_STATE
Andrzej Kurekf7c1f742022-02-03 11:30:54 -05001399 * The operation state is not valid, or
1400 * the library has not been previously initialized by psa_crypto_init().
Janos Follath702cf092021-05-26 12:58:23 +01001401 * It is implementation-dependent whether a failure to initialize
1402 * results in this error code.
1403 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001404psa_status_t psa_pake_set_role(psa_pake_operation_t *operation,
1405 psa_pake_role_t role);
Janos Follath702cf092021-05-26 12:58:23 +01001406
1407/** Get output for a step of a password-authenticated key exchange.
1408 *
1409 * Depending on the algorithm being executed, you might need to call this
1410 * function several times or you might not need to call this at all.
1411 *
1412 * The exact sequence of calls to perform a password-authenticated key
1413 * exchange depends on the algorithm in use. Refer to the documentation of
1414 * individual PAKE algorithm types (`PSA_ALG_XXX` values of type
1415 * ::psa_algorithm_t such that #PSA_ALG_IS_PAKE(\c alg) is true) for more
1416 * information.
1417 *
1418 * If this function returns an error status, the operation enters an error
1419 * state and must be aborted by calling psa_pake_abort().
1420 *
1421 * \param[in,out] operation Active PAKE operation.
1422 * \param step The step of the algorithm for which the output is
1423 * requested.
1424 * \param[out] output Buffer where the output is to be written in the
1425 * format appropriate for this \p step. Refer to
1426 * the documentation of the individual
1427 * \c PSA_PAKE_STEP_XXX constants for more
1428 * information.
1429 * \param output_size Size of the \p output buffer in bytes. This must
Andrzej Kurek00b54e62023-05-06 09:38:57 -04001430 * be at least #PSA_PAKE_OUTPUT_SIZE(\c alg, \c
1431 * primitive, \p output_step) where \c alg and
Neil Armstrong7bc71e92022-05-20 10:36:14 +02001432 * \p primitive are the PAKE algorithm and primitive
1433 * in the operation's cipher suite, and \p step is
1434 * the output step.
Janos Follath702cf092021-05-26 12:58:23 +01001435 *
1436 * \param[out] output_length On success, the number of bytes of the returned
1437 * output.
1438 *
1439 * \retval #PSA_SUCCESS
1440 * Success.
Janos Follath702cf092021-05-26 12:58:23 +01001441 * \retval #PSA_ERROR_BUFFER_TOO_SMALL
1442 * The size of the \p output buffer is too small.
Neil Armstrong664077e2022-05-20 11:24:41 +02001443 * \retval #PSA_ERROR_INVALID_ARGUMENT
1444 * \p step is not compatible with the operation's algorithm.
1445 * \retval #PSA_ERROR_NOT_SUPPORTED
1446 * \p step is not supported with the operation's algorithm.
Gilles Peskineed733552023-02-14 19:21:09 +01001447 * \retval #PSA_ERROR_INSUFFICIENT_ENTROPY \emptydescription
1448 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY \emptydescription
1449 * \retval #PSA_ERROR_COMMUNICATION_FAILURE \emptydescription
1450 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
1451 * \retval #PSA_ERROR_STORAGE_FAILURE \emptydescription
1452 * \retval #PSA_ERROR_DATA_CORRUPT \emptydescription
1453 * \retval #PSA_ERROR_DATA_INVALID \emptydescription
Janos Follath702cf092021-05-26 12:58:23 +01001454 * \retval #PSA_ERROR_BAD_STATE
Neil Armstronge9b45812022-05-20 11:39:09 +02001455 * The operation state is not valid (it must be active, and fully set
1456 * up, and this call must conform to the algorithm's requirements
1457 * for ordering of input and output steps), or
Andrzej Kurekf7c1f742022-02-03 11:30:54 -05001458 * the library has not been previously initialized by psa_crypto_init().
Janos Follath702cf092021-05-26 12:58:23 +01001459 * It is implementation-dependent whether a failure to initialize
1460 * results in this error code.
1461 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001462psa_status_t psa_pake_output(psa_pake_operation_t *operation,
1463 psa_pake_step_t step,
1464 uint8_t *output,
1465 size_t output_size,
1466 size_t *output_length);
Janos Follath702cf092021-05-26 12:58:23 +01001467
1468/** Provide input for a step of a password-authenticated key exchange.
1469 *
1470 * Depending on the algorithm being executed, you might need to call this
1471 * function several times or you might not need to call this at all.
1472 *
1473 * The exact sequence of calls to perform a password-authenticated key
1474 * exchange depends on the algorithm in use. Refer to the documentation of
1475 * individual PAKE algorithm types (`PSA_ALG_XXX` values of type
1476 * ::psa_algorithm_t such that #PSA_ALG_IS_PAKE(\c alg) is true) for more
1477 * information.
1478 *
1479 * If this function returns an error status, the operation enters an error
1480 * state and must be aborted by calling psa_pake_abort().
1481 *
1482 * \param[in,out] operation Active PAKE operation.
1483 * \param step The step for which the input is provided.
Neil Armstrong799106b2022-05-20 10:18:53 +02001484 * \param[in] input Buffer containing the input in the format
Janos Follath702cf092021-05-26 12:58:23 +01001485 * appropriate for this \p step. Refer to the
1486 * documentation of the individual
1487 * \c PSA_PAKE_STEP_XXX constants for more
1488 * information.
Neil Armstrong799106b2022-05-20 10:18:53 +02001489 * \param input_length Size of the \p input buffer in bytes.
Janos Follath702cf092021-05-26 12:58:23 +01001490 *
1491 * \retval #PSA_SUCCESS
1492 * Success.
Neil Armstrong407b27b2022-05-20 11:28:23 +02001493 * \retval #PSA_ERROR_INVALID_SIGNATURE
1494 * The verification fails for a #PSA_PAKE_STEP_ZK_PROOF input step.
Andrzej Kurekf7c1f742022-02-03 11:30:54 -05001495 * \retval #PSA_ERROR_INVALID_ARGUMENT
Andrzej Kurek00b54e62023-05-06 09:38:57 -04001496 * \p input_length is not compatible with the \p operation’s algorithm,
1497 * or the \p input is not valid for the \p operation's algorithm,
1498 * cipher suite or \p step.
Neil Armstrong407b27b2022-05-20 11:28:23 +02001499 * \retval #PSA_ERROR_NOT_SUPPORTED
1500 * \p step p is not supported with the \p operation's algorithm, or the
1501 * \p input is not supported for the \p operation's algorithm, cipher
1502 * suite or \p step.
Gilles Peskineed733552023-02-14 19:21:09 +01001503 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY \emptydescription
1504 * \retval #PSA_ERROR_COMMUNICATION_FAILURE \emptydescription
1505 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
1506 * \retval #PSA_ERROR_STORAGE_FAILURE \emptydescription
1507 * \retval #PSA_ERROR_DATA_CORRUPT \emptydescription
1508 * \retval #PSA_ERROR_DATA_INVALID \emptydescription
Janos Follath702cf092021-05-26 12:58:23 +01001509 * \retval #PSA_ERROR_BAD_STATE
Neil Armstronge9b45812022-05-20 11:39:09 +02001510 * The operation state is not valid (it must be active, and fully set
1511 * up, and this call must conform to the algorithm's requirements
1512 * for ordering of input and output steps), or
Andrzej Kurekf7c1f742022-02-03 11:30:54 -05001513 * the library has not been previously initialized by psa_crypto_init().
Janos Follath702cf092021-05-26 12:58:23 +01001514 * It is implementation-dependent whether a failure to initialize
1515 * results in this error code.
1516 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001517psa_status_t psa_pake_input(psa_pake_operation_t *operation,
1518 psa_pake_step_t step,
1519 const uint8_t *input,
1520 size_t input_length);
Janos Follath702cf092021-05-26 12:58:23 +01001521
1522/** Get implicitly confirmed shared secret from a PAKE.
1523 *
1524 * At this point there is a cryptographic guarantee that only the authenticated
1525 * party who used the same password is able to compute the key. But there is no
Janos Follatha46e28f2021-06-03 13:07:03 +01001526 * guarantee that the peer is the party it claims to be and was able to do so.
Janos Follath702cf092021-05-26 12:58:23 +01001527 *
Janos Follathb4db90f2021-06-03 13:17:09 +01001528 * That is, the authentication is only implicit. Since the peer is not
1529 * authenticated yet, no action should be taken yet that assumes that the peer
1530 * is who it claims to be. For example, do not access restricted files on the
1531 * peer's behalf until an explicit authentication has succeeded.
Janos Follath702cf092021-05-26 12:58:23 +01001532 *
1533 * This function can be called after the key exchange phase of the operation
1534 * has completed. It imports the shared secret output of the PAKE into the
1535 * provided derivation operation. The input step
1536 * #PSA_KEY_DERIVATION_INPUT_SECRET is used when placing the shared key
1537 * material in the key derivation operation.
1538 *
1539 * The exact sequence of calls to perform a password-authenticated key
1540 * exchange depends on the algorithm in use. Refer to the documentation of
1541 * individual PAKE algorithm types (`PSA_ALG_XXX` values of type
1542 * ::psa_algorithm_t such that #PSA_ALG_IS_PAKE(\c alg) is true) for more
1543 * information.
1544 *
1545 * When this function returns successfully, \p operation becomes inactive.
1546 * If this function returns an error status, both \p operation
Andrzej Kurek3bedb5b2022-02-17 14:39:00 -05001547 * and \c key_derivation operations enter an error state and must be aborted by
Janos Follath702cf092021-05-26 12:58:23 +01001548 * calling psa_pake_abort() and psa_key_derivation_abort() respectively.
1549 *
1550 * \param[in,out] operation Active PAKE operation.
1551 * \param[out] output A key derivation operation that is ready
1552 * for an input step of type
1553 * #PSA_KEY_DERIVATION_INPUT_SECRET.
1554 *
1555 * \retval #PSA_SUCCESS
1556 * Success.
Janos Follath702cf092021-05-26 12:58:23 +01001557 * \retval #PSA_ERROR_INVALID_ARGUMENT
Neil Armstrong97d74b82022-05-20 11:30:31 +02001558 * #PSA_KEY_DERIVATION_INPUT_SECRET is not compatible with the
1559 * algorithm in the \p output key derivation operation.
1560 * \retval #PSA_ERROR_NOT_SUPPORTED
1561 * Input from a PAKE is not supported by the algorithm in the \p output
1562 * key derivation operation.
Gilles Peskineed733552023-02-14 19:21:09 +01001563 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY \emptydescription
1564 * \retval #PSA_ERROR_COMMUNICATION_FAILURE \emptydescription
1565 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
1566 * \retval #PSA_ERROR_STORAGE_FAILURE \emptydescription
1567 * \retval #PSA_ERROR_DATA_CORRUPT \emptydescription
1568 * \retval #PSA_ERROR_DATA_INVALID \emptydescription
Janos Follath702cf092021-05-26 12:58:23 +01001569 * \retval #PSA_ERROR_BAD_STATE
Andrzej Kurekf7c1f742022-02-03 11:30:54 -05001570 * The PAKE operation state is not valid (it must be active, but beyond
1571 * that validity is specific to the algorithm), or
1572 * the library has not been previously initialized by psa_crypto_init(),
1573 * or the state of \p output is not valid for
1574 * the #PSA_KEY_DERIVATION_INPUT_SECRET step. This can happen if the
1575 * step is out of order or the application has done this step already
1576 * and it may not be repeated.
Janos Follath702cf092021-05-26 12:58:23 +01001577 * It is implementation-dependent whether a failure to initialize
1578 * results in this error code.
1579 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001580psa_status_t psa_pake_get_implicit_key(psa_pake_operation_t *operation,
1581 psa_key_derivation_operation_t *output);
Janos Follath702cf092021-05-26 12:58:23 +01001582
Neil Armstrong0c8ef932022-05-20 10:23:51 +02001583/** Abort a PAKE operation.
1584 *
1585 * Aborting an operation frees all associated resources except for the \c
1586 * operation structure itself. Once aborted, the operation object can be reused
1587 * for another operation by calling psa_pake_setup() again.
1588 *
1589 * This function may be called at any time after the operation
1590 * object has been initialized as described in #psa_pake_operation_t.
1591 *
1592 * In particular, calling psa_pake_abort() after the operation has been
1593 * terminated by a call to psa_pake_abort() or psa_pake_get_implicit_key()
1594 * is safe and has no effect.
1595 *
1596 * \param[in,out] operation The operation to abort.
1597 *
1598 * \retval #PSA_SUCCESS
Neil Armstrong59fa8ee2022-05-20 11:31:04 +02001599 * Success.
Gilles Peskineed733552023-02-14 19:21:09 +01001600 * \retval #PSA_ERROR_COMMUNICATION_FAILURE \emptydescription
1601 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
Neil Armstrong0c8ef932022-05-20 10:23:51 +02001602 * \retval #PSA_ERROR_BAD_STATE
1603 * The library has not been previously initialized by psa_crypto_init().
1604 * It is implementation-dependent whether a failure to initialize
1605 * results in this error code.
1606 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001607psa_status_t psa_pake_abort(psa_pake_operation_t *operation);
Neil Armstrong0c8ef932022-05-20 10:23:51 +02001608
Janos Follath702cf092021-05-26 12:58:23 +01001609/**@}*/
1610
1611/** A sufficient output buffer size for psa_pake_output().
1612 *
1613 * If the size of the output buffer is at least this large, it is guaranteed
1614 * that psa_pake_output() will not fail due to an insufficient output buffer
1615 * size. The actual size of the output might be smaller in any given call.
1616 *
1617 * See also #PSA_PAKE_OUTPUT_MAX_SIZE
1618 *
Janos Follath46c02372021-06-08 15:22:51 +01001619 * \param alg A PAKE algorithm (\c PSA_ALG_XXX value such that
Janos Follath702cf092021-05-26 12:58:23 +01001620 * #PSA_ALG_IS_PAKE(\p alg) is true).
1621 * \param primitive A primitive of type ::psa_pake_primitive_t that is
1622 * compatible with algorithm \p alg.
1623 * \param output_step A value of type ::psa_pake_step_t that is valid for the
1624 * algorithm \p alg.
1625 * \return A sufficient output buffer size for the specified
Neil Armstrongcd974d52022-05-20 10:30:12 +02001626 * PAKE algorithm, primitive, and output step. If the
1627 * PAKE algorithm, primitive, or output step is not
1628 * recognized, or the parameters are incompatible,
1629 * return 0.
Janos Follath702cf092021-05-26 12:58:23 +01001630 */
Neil Armstrong7aaa34a2022-06-08 14:05:02 +02001631#define PSA_PAKE_OUTPUT_SIZE(alg, primitive, output_step) \
Gilles Peskine449bd832023-01-11 14:50:10 +01001632 (alg == PSA_ALG_JPAKE && \
1633 primitive == PSA_PAKE_PRIMITIVE(PSA_PAKE_PRIMITIVE_TYPE_ECC, \
1634 PSA_ECC_FAMILY_SECP_R1, 256) ? \
1635 ( \
1636 output_step == PSA_PAKE_STEP_KEY_SHARE ? 65 : \
1637 output_step == PSA_PAKE_STEP_ZK_PUBLIC ? 65 : \
1638 32 \
1639 ) : \
1640 0)
Janos Follath702cf092021-05-26 12:58:23 +01001641
1642/** A sufficient input buffer size for psa_pake_input().
1643 *
Janos Follathb4db90f2021-06-03 13:17:09 +01001644 * The value returned by this macro is guaranteed to be large enough for any
1645 * valid input to psa_pake_input() in an operation with the specified
1646 * parameters.
Janos Follath702cf092021-05-26 12:58:23 +01001647 *
1648 * See also #PSA_PAKE_INPUT_MAX_SIZE
1649 *
Janos Follath46c02372021-06-08 15:22:51 +01001650 * \param alg A PAKE algorithm (\c PSA_ALG_XXX value such that
Janos Follath702cf092021-05-26 12:58:23 +01001651 * #PSA_ALG_IS_PAKE(\p alg) is true).
1652 * \param primitive A primitive of type ::psa_pake_primitive_t that is
1653 * compatible with algorithm \p alg.
Janos Follathec83eb62021-05-27 08:41:59 +01001654 * \param input_step A value of type ::psa_pake_step_t that is valid for the
Janos Follath702cf092021-05-26 12:58:23 +01001655 * algorithm \p alg.
Janos Follath38d29db2021-06-03 13:14:42 +01001656 * \return A sufficient input buffer size for the specified
1657 * input, cipher suite and algorithm. If the cipher suite,
1658 * the input type or PAKE algorithm is not recognized, or
Janos Follath702cf092021-05-26 12:58:23 +01001659 * the parameters are incompatible, return 0.
1660 */
Neil Armstrong7aaa34a2022-06-08 14:05:02 +02001661#define PSA_PAKE_INPUT_SIZE(alg, primitive, input_step) \
Gilles Peskine449bd832023-01-11 14:50:10 +01001662 (alg == PSA_ALG_JPAKE && \
1663 primitive == PSA_PAKE_PRIMITIVE(PSA_PAKE_PRIMITIVE_TYPE_ECC, \
1664 PSA_ECC_FAMILY_SECP_R1, 256) ? \
1665 ( \
1666 input_step == PSA_PAKE_STEP_KEY_SHARE ? 65 : \
1667 input_step == PSA_PAKE_STEP_ZK_PUBLIC ? 65 : \
1668 32 \
1669 ) : \
1670 0)
Janos Follath702cf092021-05-26 12:58:23 +01001671
Neil Armstrong2056ce52022-05-25 11:38:15 +02001672/** Output buffer size for psa_pake_output() for any of the supported PAKE
1673 * algorithm and primitive suites and output step.
Janos Follath702cf092021-05-26 12:58:23 +01001674 *
1675 * This macro must expand to a compile-time constant integer.
1676 *
Przemek Stekiel7921a032023-04-14 14:29:57 +02001677 * The value of this macro must be at least as large as the largest value
1678 * returned by PSA_PAKE_OUTPUT_SIZE()
1679 *
Andrzej Kurek00b54e62023-05-06 09:38:57 -04001680 * See also #PSA_PAKE_OUTPUT_SIZE(\p alg, \p primitive, \p output_step).
Janos Follath702cf092021-05-26 12:58:23 +01001681 */
Manuel Pégourié-Gonnardec7012d2022-10-05 12:17:34 +02001682#define PSA_PAKE_OUTPUT_MAX_SIZE 65
Janos Follath702cf092021-05-26 12:58:23 +01001683
Neil Armstrong2056ce52022-05-25 11:38:15 +02001684/** Input buffer size for psa_pake_input() for any of the supported PAKE
1685 * algorithm and primitive suites and input step.
Janos Follath702cf092021-05-26 12:58:23 +01001686 *
1687 * This macro must expand to a compile-time constant integer.
1688 *
Przemek Stekiel7921a032023-04-14 14:29:57 +02001689 * The value of this macro must be at least as large as the largest value
1690 * returned by PSA_PAKE_INPUT_SIZE()
1691 *
Andrzej Kurek00b54e62023-05-06 09:38:57 -04001692 * See also #PSA_PAKE_INPUT_SIZE(\p alg, \p primitive, \p output_step).
Janos Follath702cf092021-05-26 12:58:23 +01001693 */
Manuel Pégourié-Gonnardec7012d2022-10-05 12:17:34 +02001694#define PSA_PAKE_INPUT_MAX_SIZE 65
Janos Follath702cf092021-05-26 12:58:23 +01001695
Neil Armstrongfb993022022-05-20 10:08:58 +02001696/** Returns a suitable initializer for a PAKE cipher suite object of type
1697 * psa_pake_cipher_suite_t.
1698 */
Gilles Peskine449bd832023-01-11 14:50:10 +01001699#define PSA_PAKE_CIPHER_SUITE_INIT { PSA_ALG_NONE, 0, 0, 0, PSA_ALG_NONE }
Neil Armstrongfb993022022-05-20 10:08:58 +02001700
Neil Armstrong0151c552022-05-20 10:13:53 +02001701/** Returns a suitable initializer for a PAKE operation object of type
1702 * psa_pake_operation_t.
1703 */
Antonio de Angelis4380a332024-02-02 14:21:24 +00001704#if defined(MBEDTLS_PSA_CRYPTO_CLIENT) && !defined(MBEDTLS_PSA_CRYPTO_C)
1705#define PSA_PAKE_OPERATION_INIT { 0 }
1706#else
Przemek Stekiel656b2592023-03-22 13:15:33 +01001707#define PSA_PAKE_OPERATION_INIT { 0, PSA_ALG_NONE, 0, PSA_PAKE_OPERATION_STAGE_SETUP, \
Przemek Stekiel251e86a2023-02-17 14:30:50 +01001708 { 0 }, { { 0 } } }
Antonio de Angelis4380a332024-02-02 14:21:24 +00001709#endif
Neil Armstrong0151c552022-05-20 10:13:53 +02001710
Gilles Peskine449bd832023-01-11 14:50:10 +01001711struct psa_pake_cipher_suite_s {
Janos Follath702cf092021-05-26 12:58:23 +01001712 psa_algorithm_t algorithm;
1713 psa_pake_primitive_type_t type;
1714 psa_pake_family_t family;
1715 uint16_t bits;
1716 psa_algorithm_t hash;
1717};
1718
1719static inline psa_algorithm_t psa_pake_cs_get_algorithm(
Gilles Peskine449bd832023-01-11 14:50:10 +01001720 const psa_pake_cipher_suite_t *cipher_suite)
Janos Follath702cf092021-05-26 12:58:23 +01001721{
Gilles Peskine449bd832023-01-11 14:50:10 +01001722 return cipher_suite->algorithm;
Janos Follath702cf092021-05-26 12:58:23 +01001723}
1724
1725static inline void psa_pake_cs_set_algorithm(
1726 psa_pake_cipher_suite_t *cipher_suite,
1727 psa_algorithm_t algorithm)
1728{
Gilles Peskine449bd832023-01-11 14:50:10 +01001729 if (!PSA_ALG_IS_PAKE(algorithm)) {
Janos Follath702cf092021-05-26 12:58:23 +01001730 cipher_suite->algorithm = 0;
Gilles Peskine449bd832023-01-11 14:50:10 +01001731 } else {
Janos Follath702cf092021-05-26 12:58:23 +01001732 cipher_suite->algorithm = algorithm;
Gilles Peskine449bd832023-01-11 14:50:10 +01001733 }
Janos Follath702cf092021-05-26 12:58:23 +01001734}
1735
1736static inline psa_pake_primitive_t psa_pake_cs_get_primitive(
Gilles Peskine449bd832023-01-11 14:50:10 +01001737 const psa_pake_cipher_suite_t *cipher_suite)
Janos Follath702cf092021-05-26 12:58:23 +01001738{
Gilles Peskine449bd832023-01-11 14:50:10 +01001739 return PSA_PAKE_PRIMITIVE(cipher_suite->type, cipher_suite->family,
1740 cipher_suite->bits);
Janos Follath702cf092021-05-26 12:58:23 +01001741}
1742
1743static inline void psa_pake_cs_set_primitive(
Gilles Peskine449bd832023-01-11 14:50:10 +01001744 psa_pake_cipher_suite_t *cipher_suite,
1745 psa_pake_primitive_t primitive)
Janos Follath702cf092021-05-26 12:58:23 +01001746{
1747 cipher_suite->type = (psa_pake_primitive_type_t) (primitive >> 24);
1748 cipher_suite->family = (psa_pake_family_t) (0xFF & (primitive >> 16));
1749 cipher_suite->bits = (uint16_t) (0xFFFF & primitive);
1750}
1751
Neil Armstrongff9cac72022-05-20 10:25:15 +02001752static inline psa_pake_family_t psa_pake_cs_get_family(
Gilles Peskine449bd832023-01-11 14:50:10 +01001753 const psa_pake_cipher_suite_t *cipher_suite)
Neil Armstrongff9cac72022-05-20 10:25:15 +02001754{
Gilles Peskine449bd832023-01-11 14:50:10 +01001755 return cipher_suite->family;
Neil Armstrongff9cac72022-05-20 10:25:15 +02001756}
1757
Neil Armstrongd5a48252022-05-20 10:26:36 +02001758static inline uint16_t psa_pake_cs_get_bits(
Gilles Peskine449bd832023-01-11 14:50:10 +01001759 const psa_pake_cipher_suite_t *cipher_suite)
Neil Armstrongd5a48252022-05-20 10:26:36 +02001760{
Gilles Peskine449bd832023-01-11 14:50:10 +01001761 return cipher_suite->bits;
Neil Armstrongd5a48252022-05-20 10:26:36 +02001762}
1763
Janos Follath702cf092021-05-26 12:58:23 +01001764static inline psa_algorithm_t psa_pake_cs_get_hash(
Gilles Peskine449bd832023-01-11 14:50:10 +01001765 const psa_pake_cipher_suite_t *cipher_suite)
Janos Follath702cf092021-05-26 12:58:23 +01001766{
Gilles Peskine449bd832023-01-11 14:50:10 +01001767 return cipher_suite->hash;
Janos Follath702cf092021-05-26 12:58:23 +01001768}
1769
Gilles Peskine449bd832023-01-11 14:50:10 +01001770static inline void psa_pake_cs_set_hash(psa_pake_cipher_suite_t *cipher_suite,
1771 psa_algorithm_t hash)
Janos Follath702cf092021-05-26 12:58:23 +01001772{
Gilles Peskine449bd832023-01-11 14:50:10 +01001773 if (!PSA_ALG_IS_HASH(hash)) {
Janos Follath702cf092021-05-26 12:58:23 +01001774 cipher_suite->hash = 0;
Gilles Peskine449bd832023-01-11 14:50:10 +01001775 } else {
Janos Follath702cf092021-05-26 12:58:23 +01001776 cipher_suite->hash = hash;
Gilles Peskine449bd832023-01-11 14:50:10 +01001777 }
Janos Follath702cf092021-05-26 12:58:23 +01001778}
1779
Przemek Stekiel51eac532022-12-07 11:04:51 +01001780struct psa_crypto_driver_pake_inputs_s {
Gilles Peskine449bd832023-01-11 14:50:10 +01001781 uint8_t *MBEDTLS_PRIVATE(password);
Przemek Stekiel152ae072022-11-17 13:24:36 +01001782 size_t MBEDTLS_PRIVATE(password_len);
Przemek Stekiel26c909d2023-02-28 12:34:03 +01001783 uint8_t *MBEDTLS_PRIVATE(user);
1784 size_t MBEDTLS_PRIVATE(user_len);
1785 uint8_t *MBEDTLS_PRIVATE(peer);
1786 size_t MBEDTLS_PRIVATE(peer_len);
Przemek Stekiel9dd24402023-01-26 15:06:09 +01001787 psa_key_attributes_t MBEDTLS_PRIVATE(attributes);
Przemek Stekiel51eac532022-12-07 11:04:51 +01001788 psa_pake_cipher_suite_t MBEDTLS_PRIVATE(cipher_suite);
1789};
1790
Przemek Stekiel251e86a2023-02-17 14:30:50 +01001791typedef enum psa_crypto_driver_pake_step {
Przemek Stekielb09c4872023-01-17 12:05:38 +01001792 PSA_JPAKE_STEP_INVALID = 0, /* Invalid step */
1793 PSA_JPAKE_X1_STEP_KEY_SHARE = 1, /* Round 1: input/output key share (for ephemeral private key X1).*/
1794 PSA_JPAKE_X1_STEP_ZK_PUBLIC = 2, /* Round 1: input/output Schnorr NIZKP public key for the X1 key */
1795 PSA_JPAKE_X1_STEP_ZK_PROOF = 3, /* Round 1: input/output Schnorr NIZKP proof for the X1 key */
1796 PSA_JPAKE_X2_STEP_KEY_SHARE = 4, /* Round 1: input/output key share (for ephemeral private key X2).*/
1797 PSA_JPAKE_X2_STEP_ZK_PUBLIC = 5, /* Round 1: input/output Schnorr NIZKP public key for the X2 key */
1798 PSA_JPAKE_X2_STEP_ZK_PROOF = 6, /* Round 1: input/output Schnorr NIZKP proof for the X2 key */
1799 PSA_JPAKE_X2S_STEP_KEY_SHARE = 7, /* Round 2: output X2S key (our key) */
1800 PSA_JPAKE_X2S_STEP_ZK_PUBLIC = 8, /* Round 2: output Schnorr NIZKP public key for the X2S key (our key) */
1801 PSA_JPAKE_X2S_STEP_ZK_PROOF = 9, /* Round 2: output Schnorr NIZKP proof for the X2S key (our key) */
1802 PSA_JPAKE_X4S_STEP_KEY_SHARE = 10, /* Round 2: input X4S key (from peer) */
1803 PSA_JPAKE_X4S_STEP_ZK_PUBLIC = 11, /* Round 2: input Schnorr NIZKP public key for the X4S key (from peer) */
1804 PSA_JPAKE_X4S_STEP_ZK_PROOF = 12 /* Round 2: input Schnorr NIZKP proof for the X4S key (from peer) */
Przemek Stekiel251e86a2023-02-17 14:30:50 +01001805} psa_crypto_driver_pake_step_t;
Przemek Stekiel57980032023-01-09 15:07:26 +01001806
David Horstmanne7f21e62023-05-12 18:17:21 +01001807typedef enum psa_jpake_round {
David Horstmann5da95602023-06-08 15:37:12 +01001808 PSA_JPAKE_FIRST = 0,
1809 PSA_JPAKE_SECOND = 1,
1810 PSA_JPAKE_FINISHED = 2
David Horstmanne7f21e62023-05-12 18:17:21 +01001811} psa_jpake_round_t;
1812
1813typedef enum psa_jpake_io_mode {
David Horstmann5da95602023-06-08 15:37:12 +01001814 PSA_JPAKE_INPUT = 0,
1815 PSA_JPAKE_OUTPUT = 1
David Horstmanne7f21e62023-05-12 18:17:21 +01001816} psa_jpake_io_mode_t;
Przemek Stekielb09c4872023-01-17 12:05:38 +01001817
Przemek Stekiele12ed362022-12-21 12:54:46 +01001818struct psa_jpake_computation_stage_s {
David Horstmanne7f21e62023-05-12 18:17:21 +01001819 /* The J-PAKE round we are currently on */
1820 psa_jpake_round_t MBEDTLS_PRIVATE(round);
1821 /* The 'mode' we are currently in (inputting or outputting) */
David Horstmann024e5c52023-06-14 15:48:21 +01001822 psa_jpake_io_mode_t MBEDTLS_PRIVATE(io_mode);
David Horstmann279d2272023-06-14 17:13:56 +01001823 /* The number of completed inputs so far this round */
David Horstmanne7f21e62023-05-12 18:17:21 +01001824 uint8_t MBEDTLS_PRIVATE(inputs);
David Horstmann279d2272023-06-14 17:13:56 +01001825 /* The number of completed outputs so far this round */
David Horstmanne7f21e62023-05-12 18:17:21 +01001826 uint8_t MBEDTLS_PRIVATE(outputs);
1827 /* The next expected step (KEY_SHARE, ZK_PUBLIC or ZK_PROOF) */
1828 psa_pake_step_t MBEDTLS_PRIVATE(step);
Przemek Stekiele12ed362022-12-21 12:54:46 +01001829};
1830
David Horstmann5dbe17d2023-06-27 10:30:28 +01001831#define PSA_JPAKE_EXPECTED_INPUTS(round) ((round) == PSA_JPAKE_FINISHED ? 0 : \
1832 ((round) == PSA_JPAKE_FIRST ? 2 : 1))
1833#define PSA_JPAKE_EXPECTED_OUTPUTS(round) ((round) == PSA_JPAKE_FINISHED ? 0 : \
1834 ((round) == PSA_JPAKE_FIRST ? 2 : 1))
David Horstmanne7f21e62023-05-12 18:17:21 +01001835
Janos Follath702cf092021-05-26 12:58:23 +01001836struct psa_pake_operation_s {
Antonio de Angelis4380a332024-02-02 14:21:24 +00001837#if defined(MBEDTLS_PSA_CRYPTO_CLIENT) && !defined(MBEDTLS_PSA_CRYPTO_C)
1838 mbedtls_psa_client_handle_t handle;
1839#else
Przemek Stekield91bcb72022-11-22 14:00:51 +01001840 /** Unique ID indicating which driver got assigned to do the
1841 * operation. Since driver contexts are driver-specific, swapping
1842 * drivers halfway through the operation is not supported.
1843 * ID values are auto-generated in psa_crypto_driver_wrappers.h
1844 * ID value zero means the context is not valid or not assigned to
1845 * any driver (i.e. none of the driver contexts are active). */
1846 unsigned int MBEDTLS_PRIVATE(id);
Przemek Stekiel6b648622023-02-19 22:55:33 +01001847 /* Algorithm of the PAKE operation */
Przemek Stekiele12ed362022-12-21 12:54:46 +01001848 psa_algorithm_t MBEDTLS_PRIVATE(alg);
Przemek Stekiel656b2592023-03-22 13:15:33 +01001849 /* A primitive of type compatible with algorithm */
1850 psa_pake_primitive_t MBEDTLS_PRIVATE(primitive);
Przemek Stekiel6b648622023-02-19 22:55:33 +01001851 /* Stage of the PAKE operation: waiting for the setup, collecting inputs
1852 * or computing. */
Przemek Stekiel51eac532022-12-07 11:04:51 +01001853 uint8_t MBEDTLS_PRIVATE(stage);
Przemek Stekiele12ed362022-12-21 12:54:46 +01001854 /* Holds computation stage of the PAKE algorithms. */
Gilles Peskine449bd832023-01-11 14:50:10 +01001855 union {
Przemek Stekiel251e86a2023-02-17 14:30:50 +01001856 uint8_t MBEDTLS_PRIVATE(dummy);
Przemek Stekiel4aa99402023-02-27 13:00:57 +01001857#if defined(PSA_WANT_ALG_JPAKE)
Przemek Stekieldde6a912023-01-26 08:46:37 +01001858 psa_jpake_computation_stage_t MBEDTLS_PRIVATE(jpake);
Neil Armstrong35269d92022-05-25 11:26:31 +02001859#endif
Przemek Stekieldde6a912023-01-26 08:46:37 +01001860 } MBEDTLS_PRIVATE(computation_stage);
Przemek Stekiel51eac532022-12-07 11:04:51 +01001861 union {
Przemek Stekiel51eac532022-12-07 11:04:51 +01001862 psa_driver_pake_context_t MBEDTLS_PRIVATE(ctx);
Przemek Stekielac067d72023-01-26 16:31:03 +01001863 psa_crypto_driver_pake_inputs_t MBEDTLS_PRIVATE(inputs);
Przemek Stekiel51eac532022-12-07 11:04:51 +01001864 } MBEDTLS_PRIVATE(data);
Antonio de Angelis4380a332024-02-02 14:21:24 +00001865#endif
Janos Follath702cf092021-05-26 12:58:23 +01001866};
1867
Gilles Peskine449bd832023-01-11 14:50:10 +01001868static inline struct psa_pake_cipher_suite_s psa_pake_cipher_suite_init(void)
Neil Armstrong5ff6a7f2022-05-20 10:12:01 +02001869{
1870 const struct psa_pake_cipher_suite_s v = PSA_PAKE_CIPHER_SUITE_INIT;
Gilles Peskine449bd832023-01-11 14:50:10 +01001871 return v;
Neil Armstrong5ff6a7f2022-05-20 10:12:01 +02001872}
1873
Gilles Peskine449bd832023-01-11 14:50:10 +01001874static inline struct psa_pake_operation_s psa_pake_operation_init(void)
Janos Follath702cf092021-05-26 12:58:23 +01001875{
1876 const struct psa_pake_operation_s v = PSA_PAKE_OPERATION_INIT;
Gilles Peskine449bd832023-01-11 14:50:10 +01001877 return v;
Janos Follath702cf092021-05-26 12:58:23 +01001878}
1879
Gilles Peskinee59236f2018-01-27 23:32:46 +01001880#ifdef __cplusplus
1881}
1882#endif
1883
1884#endif /* PSA_CRYPTO_EXTRA_H */