blob: 08761778cb2aa994e815f332ac8c0a6cd6b80c6f [file] [log] [blame]
Gilles Peskine0cad07c2018-06-27 19:49:02 +02001/**
2 * \file psa/crypto_sizes.h
3 *
4 * \brief PSA cryptography module: Mbed TLS buffer size macros
5 *
Gilles Peskine07c91f52018-06-28 18:02:53 +02006 * \note This file may not be included directly. Applications must
7 * include psa/crypto.h.
8 *
Gilles Peskine0cad07c2018-06-27 19:49:02 +02009 * This file contains the definitions of macros that are useful to
10 * compute buffer sizes. The signatures and semantics of these macros
11 * are standardized, but the definitions are not, because they depend on
12 * the available algorithms and, in some cases, on permitted tolerances
13 * on buffer sizes.
Gilles Peskine49cee6c2018-06-27 21:03:58 +020014 *
Gilles Peskine07c91f52018-06-28 18:02:53 +020015 * In implementations with isolation between the application and the
16 * cryptography module, implementers should take care to ensure that
17 * the definitions that are exposed to applications match what the
18 * module implements.
19 *
Gilles Peskine49cee6c2018-06-27 21:03:58 +020020 * Macros that compute sizes whose values do not depend on the
21 * implementation are in crypto.h.
Gilles Peskine0cad07c2018-06-27 19:49:02 +020022 */
23/*
Bence Szépkúti1e148272020-08-07 13:07:28 +020024 * Copyright The Mbed TLS Contributors
Gilles Peskine0cad07c2018-06-27 19:49:02 +020025 * SPDX-License-Identifier: Apache-2.0
26 *
27 * Licensed under the Apache License, Version 2.0 (the "License"); you may
28 * not use this file except in compliance with the License.
29 * You may obtain a copy of the License at
30 *
31 * http://www.apache.org/licenses/LICENSE-2.0
32 *
33 * Unless required by applicable law or agreed to in writing, software
34 * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
35 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
36 * See the License for the specific language governing permissions and
37 * limitations under the License.
Gilles Peskine0cad07c2018-06-27 19:49:02 +020038 */
39
40#ifndef PSA_CRYPTO_SIZES_H
41#define PSA_CRYPTO_SIZES_H
42
Ronald Cronf6236f02023-01-26 16:22:25 +010043/*
44 * Include the build-time configuration information file. Here, we do not
45 * include `"mbedtls/build_info.h"` directly but `"psa/build_info.h"`, which
46 * is basically just an alias to it. This is to ease the maintenance of the
47 * PSA cryptography repository which has a different build system and
48 * configuration.
49 */
50#include "psa/build_info.h"
Gilles Peskine0cad07c2018-06-27 19:49:02 +020051
Gilles Peskinea7c26db2018-12-12 13:42:25 +010052#define PSA_BITS_TO_BYTES(bits) (((bits) + 7) / 8)
53#define PSA_BYTES_TO_BITS(bytes) ((bytes) * 8)
Przemek Stekiel654bef02022-12-15 13:28:02 +010054#define PSA_MAX_OF_THREE(a, b, c) ((a) <= (b) ? (b) <= (c) ? \
55 (c) : (b) : (a) <= (c) ? (c) : (a))
Gilles Peskinea7c26db2018-12-12 13:42:25 +010056
Gilles Peskine248010c2019-05-14 16:08:59 +020057#define PSA_ROUND_UP_TO_MULTIPLE(block_size, length) \
58 (((length) + (block_size) - 1) / (block_size) * (block_size))
59
Gilles Peskinea7c26db2018-12-12 13:42:25 +010060/** The size of the output of psa_hash_finish(), in bytes.
61 *
62 * This is also the hash size that psa_hash_verify() expects.
63 *
64 * \param alg A hash algorithm (\c PSA_ALG_XXX value such that
65 * #PSA_ALG_IS_HASH(\p alg) is true), or an HMAC algorithm
66 * (#PSA_ALG_HMAC(\c hash_alg) where \c hash_alg is a
67 * hash algorithm).
68 *
69 * \return The hash size for the specified hash algorithm.
70 * If the hash algorithm is not recognized, return 0.
Gilles Peskinea7c26db2018-12-12 13:42:25 +010071 */
gabor-mezei-armcbcec212020-12-18 14:23:51 +010072#define PSA_HASH_LENGTH(alg) \
73 ( \
Gilles Peskinea7c26db2018-12-12 13:42:25 +010074 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_MD5 ? 16 : \
75 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_RIPEMD160 ? 20 : \
76 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_1 ? 20 : \
77 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_224 ? 28 : \
78 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_256 ? 32 : \
79 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_384 ? 48 : \
80 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_512 ? 64 : \
81 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_512_224 ? 28 : \
82 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_512_256 ? 32 : \
83 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA3_224 ? 28 : \
84 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA3_256 ? 32 : \
85 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA3_384 ? 48 : \
86 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA3_512 ? 64 : \
87 0)
88
Mateusz Starzyk7d262dd2021-08-26 13:28:46 +020089/** The input block size of a hash algorithm, in bytes.
90 *
91 * Hash algorithms process their input data in blocks. Hash operations will
92 * retain any partial blocks until they have enough input to fill the block or
93 * until the operation is finished.
94 * This affects the output from psa_hash_suspend().
95 *
96 * \param alg A hash algorithm (\c PSA_ALG_XXX value such that
97 * PSA_ALG_IS_HASH(\p alg) is true).
98 *
99 * \return The block size in bytes for the specified hash algorithm.
100 * If the hash algorithm is not recognized, return 0.
101 * An implementation can return either 0 or the correct size for a
102 * hash algorithm that it recognizes, but does not support.
103 */
104#define PSA_HASH_BLOCK_LENGTH(alg) \
105 ( \
106 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_MD5 ? 64 : \
107 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_RIPEMD160 ? 64 : \
108 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_1 ? 64 : \
109 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_224 ? 64 : \
110 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_256 ? 64 : \
111 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_384 ? 128 : \
112 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_512 ? 128 : \
113 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_512_224 ? 128 : \
114 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA_512_256 ? 128 : \
115 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA3_224 ? 144 : \
116 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA3_256 ? 136 : \
117 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA3_384 ? 104 : \
118 PSA_ALG_HMAC_GET_HASH(alg) == PSA_ALG_SHA3_512 ? 72 : \
119 0)
120
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200121/** \def PSA_HASH_MAX_SIZE
122 *
123 * Maximum size of a hash.
124 *
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100125 * This macro expands to a compile-time constant integer. This value
126 * is the maximum size of a hash in bytes.
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200127 */
Gilles Peskine3052f532018-09-17 14:13:26 +0200128/* Note: for HMAC-SHA-3, the block size is 144 bytes for HMAC-SHA3-226,
129 * 136 bytes for HMAC-SHA3-256, 104 bytes for SHA3-384, 72 bytes for
130 * HMAC-SHA3-512. */
Manuel Pégourié-Gonnardc9d98292023-05-24 12:28:38 +0200131/* Note: PSA_HASH_MAX_SIZE should be kept in sync with MBEDTLS_MD_MAX_SIZE,
132 * see the note on MBEDTLS_MD_MAX_SIZE for details. */
Manuel Pégourié-Gonnard45b34512023-03-30 12:19:35 +0200133#if defined(PSA_WANT_ALG_SHA_512)
Gilles Peskine0cad07c2018-06-27 19:49:02 +0200134#define PSA_HASH_MAX_SIZE 64
135#define PSA_HMAC_MAX_HASH_BLOCK_SIZE 128
Manuel Pégourié-Gonnard45b34512023-03-30 12:19:35 +0200136#elif defined(PSA_WANT_ALG_SHA_384)
137#define PSA_HASH_MAX_SIZE 48
138#define PSA_HMAC_MAX_HASH_BLOCK_SIZE 128
139#elif defined(PSA_WANT_ALG_SHA_256)
Gilles Peskine0cad07c2018-06-27 19:49:02 +0200140#define PSA_HASH_MAX_SIZE 32
141#define PSA_HMAC_MAX_HASH_BLOCK_SIZE 64
Manuel Pégourié-Gonnard45b34512023-03-30 12:19:35 +0200142#elif defined(PSA_WANT_ALG_SHA_224)
143#define PSA_HASH_MAX_SIZE 28
144#define PSA_HMAC_MAX_HASH_BLOCK_SIZE 64
145#else /* SHA-1 or smaller */
146#define PSA_HASH_MAX_SIZE 20
147#define PSA_HMAC_MAX_HASH_BLOCK_SIZE 64
Gilles Peskine0cad07c2018-06-27 19:49:02 +0200148#endif
149
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200150/** \def PSA_MAC_MAX_SIZE
151 *
152 * Maximum size of a MAC.
153 *
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100154 * This macro expands to a compile-time constant integer. This value
155 * is the maximum size of a MAC in bytes.
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200156 */
157/* All non-HMAC MACs have a maximum size that's smaller than the
158 * minimum possible value of PSA_HASH_MAX_SIZE in this implementation. */
Gilles Peskinee1f2d7d2018-08-21 14:54:54 +0200159/* Note that the encoding of truncated MAC algorithms limits this value
160 * to 64 bytes.
161 */
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200162#define PSA_MAC_MAX_SIZE PSA_HASH_MAX_SIZE
163
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100164/** The length of a tag for an AEAD algorithm, in bytes.
Gilles Peskinea7c26db2018-12-12 13:42:25 +0100165 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100166 * This macro can be used to allocate a buffer of sufficient size to store the
167 * tag output from psa_aead_finish().
168 *
169 * See also #PSA_AEAD_TAG_MAX_SIZE.
170 *
171 * \param key_type The type of the AEAD key.
172 * \param key_bits The size of the AEAD key in bits.
Gilles Peskinea7c26db2018-12-12 13:42:25 +0100173 * \param alg An AEAD algorithm
174 * (\c PSA_ALG_XXX value such that
175 * #PSA_ALG_IS_AEAD(\p alg) is true).
176 *
Bence Szépkútibd98df72021-04-27 04:37:18 +0200177 * \return The tag length for the specified algorithm and key.
Gilles Peskinea7c26db2018-12-12 13:42:25 +0100178 * If the AEAD algorithm does not have an identified
179 * tag that can be distinguished from the rest of
180 * the ciphertext, return 0.
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100181 * If the key type or AEAD algorithm is not
182 * recognized, or the parameters are incompatible,
183 * return 0.
Gilles Peskinea7c26db2018-12-12 13:42:25 +0100184 */
Bence Szépkúti12116bc2021-03-11 15:59:24 +0100185#define PSA_AEAD_TAG_LENGTH(key_type, key_bits, alg) \
Bence Szépkútif5a1fe92021-04-21 10:13:08 +0200186 (PSA_AEAD_NONCE_LENGTH(key_type, alg) != 0 ? \
Bence Szépkúti7e310092021-04-08 12:05:18 +0200187 PSA_ALG_AEAD_GET_TAG_LENGTH(alg) : \
Bence Szépkúti0d8da392021-03-19 19:28:52 +0100188 ((void) (key_bits), 0))
Gilles Peskinea7c26db2018-12-12 13:42:25 +0100189
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200190/** The maximum tag size for all supported AEAD algorithms, in bytes.
191 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100192 * See also #PSA_AEAD_TAG_LENGTH(\p key_type, \p key_bits, \p alg).
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200193 */
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100194#define PSA_AEAD_TAG_MAX_SIZE 16
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200195
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200196/* The maximum size of an RSA key on this implementation, in bits.
197 * This is a vendor-specific macro.
198 *
199 * Mbed TLS does not set a hard limit on the size of RSA keys: any key
200 * whose parameters fit in a bignum is accepted. However large keys can
201 * induce a large memory usage and long computation times. Unlike other
202 * auxiliary macros in this file and in crypto.h, which reflect how the
203 * library is configured, this macro defines how the library is
204 * configured. This implementation refuses to import or generate an
205 * RSA key whose size is larger than the value defined here.
206 *
207 * Note that an implementation may set different size limits for different
208 * operations, and does not need to accept all key sizes up to the limit. */
209#define PSA_VENDOR_RSA_MAX_KEY_BITS 4096
210
Waleed Elmelegyab570712023-07-05 16:40:58 +0000211/* The minimum size of an RSA key on this implementation, in bits.
212 * This is a vendor-specific macro.
213 *
Waleed Elmelegyd7bdbbe2023-07-20 16:26:58 +0000214 * Limits RSA key generation to a minimum due to avoid accidental misuse.
Waleed Elmelegyab570712023-07-05 16:40:58 +0000215 * This value cannot be less than 128 bits.
216 */
Waleed Elmelegyd7bdbbe2023-07-20 16:26:58 +0000217#if defined(MBEDTLS_RSA_GEN_KEY_MIN_BITS)
218#define PSA_VENDOR_RSA_GENERATE_MIN_KEY_BITS MBEDTLS_RSA_GEN_KEY_MIN_BITS
Waleed Elmelegyab570712023-07-05 16:40:58 +0000219#else
Waleed Elmelegyd7bdbbe2023-07-20 16:26:58 +0000220#define PSA_VENDOR_RSA_GENERATE_MIN_KEY_BITS 1024
Waleed Elmelegyab570712023-07-05 16:40:58 +0000221#endif
222
Przemek Stekiel6d85afa2023-04-28 11:42:17 +0200223/* The maximum size of an DH key on this implementation, in bits.
Przemek Stekieled23b612022-12-01 15:00:41 +0100224 *
225 * Note that an implementation may set different size limits for different
226 * operations, and does not need to accept all key sizes up to the limit. */
227#define PSA_VENDOR_FFDH_MAX_KEY_BITS 8192
228
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200229/* The maximum size of an ECC key on this implementation, in bits.
230 * This is a vendor-specific macro. */
Valerio Setti271c12e2023-03-23 16:30:27 +0100231#if defined(PSA_WANT_ECC_SECP_R1_521)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200232#define PSA_VENDOR_ECC_MAX_CURVE_BITS 521
Valerio Setti271c12e2023-03-23 16:30:27 +0100233#elif defined(PSA_WANT_ECC_BRAINPOOL_P_R1_512)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200234#define PSA_VENDOR_ECC_MAX_CURVE_BITS 512
Valerio Setti271c12e2023-03-23 16:30:27 +0100235#elif defined(PSA_WANT_ECC_MONTGOMERY_448)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200236#define PSA_VENDOR_ECC_MAX_CURVE_BITS 448
Valerio Setti271c12e2023-03-23 16:30:27 +0100237#elif defined(PSA_WANT_ECC_SECP_R1_384)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200238#define PSA_VENDOR_ECC_MAX_CURVE_BITS 384
Valerio Setti271c12e2023-03-23 16:30:27 +0100239#elif defined(PSA_WANT_ECC_BRAINPOOL_P_R1_384)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200240#define PSA_VENDOR_ECC_MAX_CURVE_BITS 384
Valerio Setti271c12e2023-03-23 16:30:27 +0100241#elif defined(PSA_WANT_ECC_SECP_R1_256)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200242#define PSA_VENDOR_ECC_MAX_CURVE_BITS 256
Valerio Setti271c12e2023-03-23 16:30:27 +0100243#elif defined(PSA_WANT_ECC_SECP_K1_256)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200244#define PSA_VENDOR_ECC_MAX_CURVE_BITS 256
Valerio Setti271c12e2023-03-23 16:30:27 +0100245#elif defined(PSA_WANT_ECC_BRAINPOOL_P_R1_256)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200246#define PSA_VENDOR_ECC_MAX_CURVE_BITS 256
Valerio Setti271c12e2023-03-23 16:30:27 +0100247#elif defined(PSA_WANT_ECC_MONTGOMERY_255)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200248#define PSA_VENDOR_ECC_MAX_CURVE_BITS 255
Valerio Setti271c12e2023-03-23 16:30:27 +0100249#elif defined(PSA_WANT_ECC_SECP_R1_224)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200250#define PSA_VENDOR_ECC_MAX_CURVE_BITS 224
Valerio Setti271c12e2023-03-23 16:30:27 +0100251#elif defined(PSA_WANT_ECC_SECP_K1_224)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200252#define PSA_VENDOR_ECC_MAX_CURVE_BITS 224
Valerio Setti271c12e2023-03-23 16:30:27 +0100253#elif defined(PSA_WANT_ECC_SECP_R1_192)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200254#define PSA_VENDOR_ECC_MAX_CURVE_BITS 192
Valerio Setti271c12e2023-03-23 16:30:27 +0100255#elif defined(PSA_WANT_ECC_SECP_K1_192)
Gilles Peskineaf3baab2018-06-27 22:55:52 +0200256#define PSA_VENDOR_ECC_MAX_CURVE_BITS 192
257#else
258#define PSA_VENDOR_ECC_MAX_CURVE_BITS 0
259#endif
260
gabor-mezei-armbdae9182021-01-28 14:33:10 +0100261/** This macro returns the maximum supported length of the PSK for the
262 * TLS-1.2 PSK-to-MS key derivation
Gilles Peskine364d12c2021-03-08 17:23:47 +0100263 * (#PSA_ALG_TLS12_PSK_TO_MS(\c hash_alg)).
gabor-mezei-armbdae9182021-01-28 14:33:10 +0100264 *
265 * The maximum supported length does not depend on the chosen hash algorithm.
Hanno Becker8dbfca42018-10-12 11:56:55 +0100266 *
267 * Quoting RFC 4279, Sect 5.3:
268 * TLS implementations supporting these ciphersuites MUST support
269 * arbitrary PSK identities up to 128 octets in length, and arbitrary
270 * PSKs up to 64 octets in length. Supporting longer identities and
271 * keys is RECOMMENDED.
272 *
273 * Therefore, no implementation should define a value smaller than 64
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100274 * for #PSA_TLS12_PSK_TO_MS_PSK_MAX_SIZE.
Hanno Becker8dbfca42018-10-12 11:56:55 +0100275 */
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100276#define PSA_TLS12_PSK_TO_MS_PSK_MAX_SIZE 128
Hanno Becker8dbfca42018-10-12 11:56:55 +0100277
Andrzej Kurek08d34b82022-07-29 10:00:16 -0400278/* The expected size of input passed to psa_tls12_ecjpake_to_pms_input,
279 * which is expected to work with P-256 curve only. */
280#define PSA_TLS12_ECJPAKE_TO_PMS_INPUT_SIZE 65
281
282/* The size of a serialized K.X coordinate to be used in
283 * psa_tls12_ecjpake_to_pms_input. This function only accepts the P-256
284 * curve. */
285#define PSA_TLS12_ECJPAKE_TO_PMS_DATA_SIZE 32
286
Kusumit Ghoderaoe66a8ad2023-05-24 12:30:43 +0530287/* The maximum number of iterations for PBKDF2 on this implementation, in bits.
288 * This is a vendor-specific macro. This can be configured if necessary */
289#define PSA_VENDOR_PBKDF2_MAX_ITERATIONS 0xffffffff
290
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100291/** The maximum size of a block cipher. */
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100292#define PSA_BLOCK_CIPHER_BLOCK_MAX_SIZE 16
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200293
Gilles Peskineacd4be32018-07-08 19:56:25 +0200294/** The size of the output of psa_mac_sign_finish(), in bytes.
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200295 *
Gilles Peskineacd4be32018-07-08 19:56:25 +0200296 * This is also the MAC size that psa_mac_verify_finish() expects.
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200297 *
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100298 * \warning This macro may evaluate its arguments multiple times or
299 * zero times, so you should not pass arguments that contain
300 * side effects.
301 *
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200302 * \param key_type The type of the MAC key.
303 * \param key_bits The size of the MAC key in bits.
304 * \param alg A MAC algorithm (\c PSA_ALG_XXX value such that
Gilles Peskine63f79302019-02-15 13:01:17 +0100305 * #PSA_ALG_IS_MAC(\p alg) is true).
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200306 *
307 * \return The MAC size for the specified algorithm with
308 * the specified key parameters.
309 * \return 0 if the MAC algorithm is not recognized.
310 * \return Either 0 or the correct size for a MAC algorithm that
311 * the implementation recognizes, but does not support.
312 * \return Unspecified if the key parameters are not consistent
313 * with the algorithm.
314 */
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100315#define PSA_MAC_LENGTH(key_type, key_bits, alg) \
316 ((alg) & PSA_ALG_MAC_TRUNCATION_MASK ? PSA_MAC_TRUNCATED_LENGTH(alg) : \
317 PSA_ALG_IS_HMAC(alg) ? PSA_HASH_LENGTH(PSA_ALG_HMAC_GET_HASH(alg)) : \
318 PSA_ALG_IS_BLOCK_CIPHER_MAC(alg) ? PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type) : \
Gilles Peskine449bd832023-01-11 14:50:10 +0100319 ((void) (key_type), (void) (key_bits), 0))
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200320
321/** The maximum size of the output of psa_aead_encrypt(), in bytes.
322 *
323 * If the size of the ciphertext buffer is at least this large, it is
324 * guaranteed that psa_aead_encrypt() will not fail due to an
325 * insufficient buffer size. Depending on the algorithm, the actual size of
326 * the ciphertext may be smaller.
327 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100328 * See also #PSA_AEAD_ENCRYPT_OUTPUT_MAX_SIZE(\p plaintext_length).
329 *
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100330 * \warning This macro may evaluate its arguments multiple times or
331 * zero times, so you should not pass arguments that contain
332 * side effects.
333 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100334 * \param key_type A symmetric key type that is
335 * compatible with algorithm \p alg.
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200336 * \param alg An AEAD algorithm
337 * (\c PSA_ALG_XXX value such that
Gilles Peskine63f79302019-02-15 13:01:17 +0100338 * #PSA_ALG_IS_AEAD(\p alg) is true).
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200339 * \param plaintext_length Size of the plaintext in bytes.
340 *
341 * \return The AEAD ciphertext size for the specified
342 * algorithm.
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100343 * If the key type or AEAD algorithm is not
344 * recognized, or the parameters are incompatible,
345 * return 0.
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200346 */
Bence Szépkúti12116bc2021-03-11 15:59:24 +0100347#define PSA_AEAD_ENCRYPT_OUTPUT_SIZE(key_type, alg, plaintext_length) \
Bence Szépkútif5a1fe92021-04-21 10:13:08 +0200348 (PSA_AEAD_NONCE_LENGTH(key_type, alg) != 0 ? \
Bence Szépkúti7e310092021-04-08 12:05:18 +0200349 (plaintext_length) + PSA_ALG_AEAD_GET_TAG_LENGTH(alg) : \
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200350 0)
351
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200352/** A sufficient output buffer size for psa_aead_encrypt(), for any of the
353 * supported key types and AEAD algorithms.
354 *
355 * If the size of the ciphertext buffer is at least this large, it is guaranteed
356 * that psa_aead_encrypt() will not fail due to an insufficient buffer size.
357 *
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100358 * \note This macro returns a compile-time constant if its arguments are
359 * compile-time constants.
360 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100361 * See also #PSA_AEAD_ENCRYPT_OUTPUT_SIZE(\p key_type, \p alg,
362 * \p plaintext_length).
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200363 *
364 * \param plaintext_length Size of the plaintext in bytes.
365 *
366 * \return A sufficient output buffer size for any of the
367 * supported key types and AEAD algorithms.
368 *
369 */
370#define PSA_AEAD_ENCRYPT_OUTPUT_MAX_SIZE(plaintext_length) \
371 ((plaintext_length) + PSA_AEAD_TAG_MAX_SIZE)
372
373
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200374/** The maximum size of the output of psa_aead_decrypt(), in bytes.
375 *
376 * If the size of the plaintext buffer is at least this large, it is
377 * guaranteed that psa_aead_decrypt() will not fail due to an
378 * insufficient buffer size. Depending on the algorithm, the actual size of
379 * the plaintext may be smaller.
380 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100381 * See also #PSA_AEAD_DECRYPT_OUTPUT_MAX_SIZE(\p ciphertext_length).
382 *
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100383 * \warning This macro may evaluate its arguments multiple times or
384 * zero times, so you should not pass arguments that contain
385 * side effects.
386 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100387 * \param key_type A symmetric key type that is
388 * compatible with algorithm \p alg.
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200389 * \param alg An AEAD algorithm
390 * (\c PSA_ALG_XXX value such that
Gilles Peskine63f79302019-02-15 13:01:17 +0100391 * #PSA_ALG_IS_AEAD(\p alg) is true).
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200392 * \param ciphertext_length Size of the plaintext in bytes.
393 *
394 * \return The AEAD ciphertext size for the specified
395 * algorithm.
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100396 * If the key type or AEAD algorithm is not
397 * recognized, or the parameters are incompatible,
398 * return 0.
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200399 */
Bence Szépkúti12116bc2021-03-11 15:59:24 +0100400#define PSA_AEAD_DECRYPT_OUTPUT_SIZE(key_type, alg, ciphertext_length) \
Bence Szépkúti1dda21c2021-04-21 11:09:50 +0200401 (PSA_AEAD_NONCE_LENGTH(key_type, alg) != 0 && \
Gilles Peskine449bd832023-01-11 14:50:10 +0100402 (ciphertext_length) > PSA_ALG_AEAD_GET_TAG_LENGTH(alg) ? \
403 (ciphertext_length) - PSA_ALG_AEAD_GET_TAG_LENGTH(alg) : \
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200404 0)
405
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200406/** A sufficient output buffer size for psa_aead_decrypt(), for any of the
407 * supported key types and AEAD algorithms.
408 *
409 * If the size of the plaintext buffer is at least this large, it is guaranteed
410 * that psa_aead_decrypt() will not fail due to an insufficient buffer size.
411 *
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100412 * \note This macro returns a compile-time constant if its arguments are
413 * compile-time constants.
414 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100415 * See also #PSA_AEAD_DECRYPT_OUTPUT_SIZE(\p key_type, \p alg,
416 * \p ciphertext_length).
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200417 *
418 * \param ciphertext_length Size of the ciphertext in bytes.
419 *
420 * \return A sufficient output buffer size for any of the
421 * supported key types and AEAD algorithms.
422 *
423 */
424#define PSA_AEAD_DECRYPT_OUTPUT_MAX_SIZE(ciphertext_length) \
Gilles Peskine449bd832023-01-11 14:50:10 +0100425 (ciphertext_length)
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200426
gabor-mezei-arma200ee62020-12-17 14:09:38 +0100427/** The default nonce size for an AEAD algorithm, in bytes.
428 *
429 * This macro can be used to allocate a buffer of sufficient size to
430 * store the nonce output from #psa_aead_generate_nonce().
431 *
432 * See also #PSA_AEAD_NONCE_MAX_SIZE.
433 *
434 * \note This is not the maximum size of nonce supported as input to
435 * #psa_aead_set_nonce(), #psa_aead_encrypt() or #psa_aead_decrypt(),
436 * just the default size that is generated by #psa_aead_generate_nonce().
437 *
438 * \warning This macro may evaluate its arguments multiple times or
439 * zero times, so you should not pass arguments that contain
440 * side effects.
441 *
442 * \param key_type A symmetric key type that is compatible with
443 * algorithm \p alg.
444 *
445 * \param alg An AEAD algorithm (\c PSA_ALG_XXX value such that
446 * #PSA_ALG_IS_AEAD(\p alg) is true).
447 *
448 * \return The default nonce size for the specified key type and algorithm.
449 * If the key type or AEAD algorithm is not recognized,
450 * or the parameters are incompatible, return 0.
gabor-mezei-arma200ee62020-12-17 14:09:38 +0100451 */
452#define PSA_AEAD_NONCE_LENGTH(key_type, alg) \
Bence Szépkúti0153c942021-03-04 10:32:59 +0100453 (PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type) == 16 ? \
Gilles Peskine449bd832023-01-11 14:50:10 +0100454 MBEDTLS_PSA_ALG_AEAD_EQUAL(alg, PSA_ALG_CCM) ? 13 : \
455 MBEDTLS_PSA_ALG_AEAD_EQUAL(alg, PSA_ALG_GCM) ? 12 : \
456 0 : \
gabor-mezei-arma200ee62020-12-17 14:09:38 +0100457 (key_type) == PSA_KEY_TYPE_CHACHA20 && \
Gilles Peskine449bd832023-01-11 14:50:10 +0100458 MBEDTLS_PSA_ALG_AEAD_EQUAL(alg, PSA_ALG_CHACHA20_POLY1305) ? 12 : \
gabor-mezei-arma200ee62020-12-17 14:09:38 +0100459 0)
460
461/** The maximum default nonce size among all supported pairs of key types and
462 * AEAD algorithms, in bytes.
463 *
464 * This is equal to or greater than any value that #PSA_AEAD_NONCE_LENGTH()
465 * may return.
466 *
467 * \note This is not the maximum size of nonce supported as input to
468 * #psa_aead_set_nonce(), #psa_aead_encrypt() or #psa_aead_decrypt(),
469 * just the largest size that may be generated by
470 * #psa_aead_generate_nonce().
471 */
Bence Szépkúti0153c942021-03-04 10:32:59 +0100472#define PSA_AEAD_NONCE_MAX_SIZE 13
gabor-mezei-arma200ee62020-12-17 14:09:38 +0100473
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200474/** A sufficient output buffer size for psa_aead_update().
475 *
476 * If the size of the output buffer is at least this large, it is
Gilles Peskineac99e322019-05-14 16:10:53 +0200477 * guaranteed that psa_aead_update() will not fail due to an
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200478 * insufficient buffer size. The actual size of the output may be smaller
479 * in any given call.
480 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100481 * See also #PSA_AEAD_UPDATE_OUTPUT_MAX_SIZE(\p input_length).
482 *
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100483 * \warning This macro may evaluate its arguments multiple times or
484 * zero times, so you should not pass arguments that contain
485 * side effects.
486 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100487 * \param key_type A symmetric key type that is
488 * compatible with algorithm \p alg.
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200489 * \param alg An AEAD algorithm
490 * (\c PSA_ALG_XXX value such that
491 * #PSA_ALG_IS_AEAD(\p alg) is true).
492 * \param input_length Size of the input in bytes.
493 *
494 * \return A sufficient output buffer size for the specified
495 * algorithm.
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100496 * If the key type or AEAD algorithm is not
497 * recognized, or the parameters are incompatible,
498 * return 0.
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200499 */
500/* For all the AEAD modes defined in this specification, it is possible
501 * to emit output without delay. However, hardware may not always be
502 * capable of this. So for modes based on a block cipher, allow the
503 * implementation to delay the output until it has a full block. */
Bence Szépkúti12116bc2021-03-11 15:59:24 +0100504#define PSA_AEAD_UPDATE_OUTPUT_SIZE(key_type, alg, input_length) \
Bence Szépkútif5a1fe92021-04-21 10:13:08 +0200505 (PSA_AEAD_NONCE_LENGTH(key_type, alg) != 0 ? \
Gilles Peskine449bd832023-01-11 14:50:10 +0100506 PSA_ALG_IS_AEAD_ON_BLOCK_CIPHER(alg) ? \
507 PSA_ROUND_UP_TO_MULTIPLE(PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type), (input_length)) : \
508 (input_length) : \
Bence Szépkúti12116bc2021-03-11 15:59:24 +0100509 0)
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200510
511/** A sufficient output buffer size for psa_aead_update(), for any of the
512 * supported key types and AEAD algorithms.
513 *
514 * If the size of the output buffer is at least this large, it is guaranteed
515 * that psa_aead_update() will not fail due to an insufficient buffer size.
516 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100517 * See also #PSA_AEAD_UPDATE_OUTPUT_SIZE(\p key_type, \p alg, \p input_length).
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200518 *
519 * \param input_length Size of the input in bytes.
520 */
521#define PSA_AEAD_UPDATE_OUTPUT_MAX_SIZE(input_length) \
522 (PSA_ROUND_UP_TO_MULTIPLE(PSA_BLOCK_CIPHER_BLOCK_MAX_SIZE, (input_length)))
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200523
524/** A sufficient ciphertext buffer size for psa_aead_finish().
Gilles Peskinebdc27862019-05-06 15:45:16 +0200525 *
526 * If the size of the ciphertext buffer is at least this large, it is
527 * guaranteed that psa_aead_finish() will not fail due to an
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200528 * insufficient ciphertext buffer size. The actual size of the output may
529 * be smaller in any given call.
Gilles Peskinebdc27862019-05-06 15:45:16 +0200530 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100531 * See also #PSA_AEAD_FINISH_OUTPUT_MAX_SIZE.
532 *
533 * \param key_type A symmetric key type that is
534 compatible with algorithm \p alg.
Gilles Peskinebdc27862019-05-06 15:45:16 +0200535 * \param alg An AEAD algorithm
536 * (\c PSA_ALG_XXX value such that
537 * #PSA_ALG_IS_AEAD(\p alg) is true).
538 *
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200539 * \return A sufficient ciphertext buffer size for the
Gilles Peskinebdc27862019-05-06 15:45:16 +0200540 * specified algorithm.
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100541 * If the key type or AEAD algorithm is not
542 * recognized, or the parameters are incompatible,
543 * return 0.
Gilles Peskinebdc27862019-05-06 15:45:16 +0200544 */
Bence Szépkútif5a1fe92021-04-21 10:13:08 +0200545#define PSA_AEAD_FINISH_OUTPUT_SIZE(key_type, alg) \
546 (PSA_AEAD_NONCE_LENGTH(key_type, alg) != 0 && \
Gilles Peskine449bd832023-01-11 14:50:10 +0100547 PSA_ALG_IS_AEAD_ON_BLOCK_CIPHER(alg) ? \
548 PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type) : \
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200549 0)
550
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200551/** A sufficient ciphertext buffer size for psa_aead_finish(), for any of the
552 * supported key types and AEAD algorithms.
553 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100554 * See also #PSA_AEAD_FINISH_OUTPUT_SIZE(\p key_type, \p alg).
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200555 */
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200556#define PSA_AEAD_FINISH_OUTPUT_MAX_SIZE (PSA_BLOCK_CIPHER_BLOCK_MAX_SIZE)
gabor-mezei-arm0687b2b2020-05-06 16:05:37 +0200557
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200558/** A sufficient plaintext buffer size for psa_aead_verify().
559 *
560 * If the size of the plaintext buffer is at least this large, it is
561 * guaranteed that psa_aead_verify() will not fail due to an
562 * insufficient plaintext buffer size. The actual size of the output may
563 * be smaller in any given call.
564 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100565 * See also #PSA_AEAD_VERIFY_OUTPUT_MAX_SIZE.
566 *
567 * \param key_type A symmetric key type that is
568 * compatible with algorithm \p alg.
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200569 * \param alg An AEAD algorithm
570 * (\c PSA_ALG_XXX value such that
571 * #PSA_ALG_IS_AEAD(\p alg) is true).
572 *
573 * \return A sufficient plaintext buffer size for the
574 * specified algorithm.
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100575 * If the key type or AEAD algorithm is not
576 * recognized, or the parameters are incompatible,
577 * return 0.
Gilles Peskine49dd8d82019-05-06 15:16:19 +0200578 */
Bence Szépkútif5a1fe92021-04-21 10:13:08 +0200579#define PSA_AEAD_VERIFY_OUTPUT_SIZE(key_type, alg) \
580 (PSA_AEAD_NONCE_LENGTH(key_type, alg) != 0 && \
Gilles Peskine449bd832023-01-11 14:50:10 +0100581 PSA_ALG_IS_AEAD_ON_BLOCK_CIPHER(alg) ? \
582 PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type) : \
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200583 0)
584
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200585/** A sufficient plaintext buffer size for psa_aead_verify(), for any of the
586 * supported key types and AEAD algorithms.
587 *
Bence Szépkútieb1a3012021-03-18 10:33:33 +0100588 * See also #PSA_AEAD_VERIFY_OUTPUT_SIZE(\p key_type, \p alg).
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200589 */
590#define PSA_AEAD_VERIFY_OUTPUT_MAX_SIZE (PSA_BLOCK_CIPHER_BLOCK_MAX_SIZE)
591
Jaeden Amero7f042142019-02-07 10:44:38 +0000592#define PSA_RSA_MINIMUM_PADDING_SIZE(alg) \
593 (PSA_ALG_IS_RSA_OAEP(alg) ? \
gabor-mezei-armd25ea722021-01-21 12:20:08 +0100594 2 * PSA_HASH_LENGTH(PSA_ALG_RSA_OAEP_GET_HASH(alg)) + 1 : \
Gilles Peskinea7c26db2018-12-12 13:42:25 +0100595 11 /*PKCS#1v1.5*/)
596
597/**
598 * \brief ECDSA signature size for a given curve bit size
599 *
600 * \param curve_bits Curve size in bits.
601 * \return Signature size in bytes.
602 *
603 * \note This macro returns a compile-time constant if its argument is one.
604 */
605#define PSA_ECDSA_SIGNATURE_SIZE(curve_bits) \
606 (PSA_BITS_TO_BYTES(curve_bits) * 2)
607
Gilles Peskine89d8c5c2019-11-26 17:01:59 +0100608/** Sufficient signature buffer size for psa_sign_hash().
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200609 *
Gilles Peskine56e2dc82019-05-21 15:59:56 +0200610 * This macro returns a sufficient buffer size for a signature using a key
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200611 * of the specified type and size, with the specified algorithm.
612 * Note that the actual size of the signature may be smaller
613 * (some algorithms produce a variable-size signature).
614 *
615 * \warning This function may call its arguments multiple times or
616 * zero times, so you should not pass arguments that contain
617 * side effects.
618 *
619 * \param key_type An asymmetric key type (this may indifferently be a
620 * key pair type or a public key type).
621 * \param key_bits The size of the key in bits.
622 * \param alg The signature algorithm.
623 *
624 * \return If the parameters are valid and supported, return
625 * a buffer size in bytes that guarantees that
Gilles Peskine89d8c5c2019-11-26 17:01:59 +0100626 * psa_sign_hash() will not fail with
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200627 * #PSA_ERROR_BUFFER_TOO_SMALL.
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100628 * If the parameters are a valid combination that is not supported,
629 * return either a sensible size or 0.
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200630 * If the parameters are not valid, the
631 * return value is unspecified.
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200632 */
Gilles Peskine89d8c5c2019-11-26 17:01:59 +0100633#define PSA_SIGN_OUTPUT_SIZE(key_type, key_bits, alg) \
Gilles Peskine449bd832023-01-11 14:50:10 +0100634 (PSA_KEY_TYPE_IS_RSA(key_type) ? ((void) alg, PSA_BITS_TO_BYTES(key_bits)) : \
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200635 PSA_KEY_TYPE_IS_ECC(key_type) ? PSA_ECDSA_SIGNATURE_SIZE(key_bits) : \
Gilles Peskine449bd832023-01-11 14:50:10 +0100636 ((void) alg, 0))
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200637
Gilles Peskine29755712019-11-08 15:49:40 +0100638#define PSA_VENDOR_ECDSA_SIGNATURE_MAX_SIZE \
639 PSA_ECDSA_SIGNATURE_SIZE(PSA_VENDOR_ECC_MAX_CURVE_BITS)
640
Gilles Peskine89d8c5c2019-11-26 17:01:59 +0100641/** \def PSA_SIGNATURE_MAX_SIZE
Gilles Peskine29755712019-11-08 15:49:40 +0100642 *
643 * Maximum size of an asymmetric signature.
644 *
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100645 * This macro expands to a compile-time constant integer. This value
646 * is the maximum size of a signature in bytes.
Gilles Peskine29755712019-11-08 15:49:40 +0100647 */
Gilles Peskine89d8c5c2019-11-26 17:01:59 +0100648#define PSA_SIGNATURE_MAX_SIZE \
Gilles Peskine29755712019-11-08 15:49:40 +0100649 (PSA_BITS_TO_BYTES(PSA_VENDOR_RSA_MAX_KEY_BITS) > PSA_VENDOR_ECDSA_SIGNATURE_MAX_SIZE ? \
650 PSA_BITS_TO_BYTES(PSA_VENDOR_RSA_MAX_KEY_BITS) : \
651 PSA_VENDOR_ECDSA_SIGNATURE_MAX_SIZE)
652
Gilles Peskine56e2dc82019-05-21 15:59:56 +0200653/** Sufficient output buffer size for psa_asymmetric_encrypt().
Gilles Peskinedcd14942018-07-12 00:30:52 +0200654 *
Gilles Peskine56e2dc82019-05-21 15:59:56 +0200655 * This macro returns a sufficient buffer size for a ciphertext produced using
Gilles Peskinedcd14942018-07-12 00:30:52 +0200656 * a key of the specified type and size, with the specified algorithm.
657 * Note that the actual size of the ciphertext may be smaller, depending
658 * on the algorithm.
659 *
660 * \warning This function may call its arguments multiple times or
661 * zero times, so you should not pass arguments that contain
662 * side effects.
663 *
664 * \param key_type An asymmetric key type (this may indifferently be a
665 * key pair type or a public key type).
666 * \param key_bits The size of the key in bits.
Gilles Peskine9ff8d1f2020-05-05 16:00:17 +0200667 * \param alg The asymmetric encryption algorithm.
Gilles Peskinedcd14942018-07-12 00:30:52 +0200668 *
669 * \return If the parameters are valid and supported, return
670 * a buffer size in bytes that guarantees that
671 * psa_asymmetric_encrypt() will not fail with
672 * #PSA_ERROR_BUFFER_TOO_SMALL.
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100673 * If the parameters are a valid combination that is not supported,
674 * return either a sensible size or 0.
Gilles Peskinedcd14942018-07-12 00:30:52 +0200675 * If the parameters are not valid, the
676 * return value is unspecified.
677 */
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200678#define PSA_ASYMMETRIC_ENCRYPT_OUTPUT_SIZE(key_type, key_bits, alg) \
679 (PSA_KEY_TYPE_IS_RSA(key_type) ? \
Gilles Peskine449bd832023-01-11 14:50:10 +0100680 ((void) alg, PSA_BITS_TO_BYTES(key_bits)) : \
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200681 0)
Gilles Peskinedcd14942018-07-12 00:30:52 +0200682
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200683/** A sufficient output buffer size for psa_asymmetric_encrypt(), for any
684 * supported asymmetric encryption.
685 *
686 * See also #PSA_ASYMMETRIC_ENCRYPT_OUTPUT_SIZE(\p key_type, \p key_bits, \p alg).
687 */
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100688/* This macro assumes that RSA is the only supported asymmetric encryption. */
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200689#define PSA_ASYMMETRIC_ENCRYPT_OUTPUT_MAX_SIZE \
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100690 (PSA_BITS_TO_BYTES(PSA_VENDOR_RSA_MAX_KEY_BITS))
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200691
Gilles Peskine56e2dc82019-05-21 15:59:56 +0200692/** Sufficient output buffer size for psa_asymmetric_decrypt().
Gilles Peskinedcd14942018-07-12 00:30:52 +0200693 *
Gilles Peskine76689602020-05-05 16:01:22 +0200694 * This macro returns a sufficient buffer size for a plaintext produced using
Gilles Peskinedcd14942018-07-12 00:30:52 +0200695 * a key of the specified type and size, with the specified algorithm.
Gilles Peskine76689602020-05-05 16:01:22 +0200696 * Note that the actual size of the plaintext may be smaller, depending
Gilles Peskinedcd14942018-07-12 00:30:52 +0200697 * on the algorithm.
698 *
699 * \warning This function may call its arguments multiple times or
700 * zero times, so you should not pass arguments that contain
701 * side effects.
702 *
703 * \param key_type An asymmetric key type (this may indifferently be a
704 * key pair type or a public key type).
705 * \param key_bits The size of the key in bits.
Gilles Peskine9ff8d1f2020-05-05 16:00:17 +0200706 * \param alg The asymmetric encryption algorithm.
Gilles Peskinedcd14942018-07-12 00:30:52 +0200707 *
708 * \return If the parameters are valid and supported, return
709 * a buffer size in bytes that guarantees that
710 * psa_asymmetric_decrypt() will not fail with
711 * #PSA_ERROR_BUFFER_TOO_SMALL.
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100712 * If the parameters are a valid combination that is not supported,
713 * return either a sensible size or 0.
Gilles Peskinedcd14942018-07-12 00:30:52 +0200714 * If the parameters are not valid, the
715 * return value is unspecified.
716 */
Gilles Peskine49cee6c2018-06-27 21:03:58 +0200717#define PSA_ASYMMETRIC_DECRYPT_OUTPUT_SIZE(key_type, key_bits, alg) \
718 (PSA_KEY_TYPE_IS_RSA(key_type) ? \
719 PSA_BITS_TO_BYTES(key_bits) - PSA_RSA_MINIMUM_PADDING_SIZE(alg) : \
720 0)
721
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200722/** A sufficient output buffer size for psa_asymmetric_decrypt(), for any
723 * supported asymmetric decryption.
724 *
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100725 * This macro assumes that RSA is the only supported asymmetric encryption.
726 *
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200727 * See also #PSA_ASYMMETRIC_DECRYPT_OUTPUT_SIZE(\p key_type, \p key_bits, \p alg).
728 */
729#define PSA_ASYMMETRIC_DECRYPT_OUTPUT_MAX_SIZE \
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100730 (PSA_BITS_TO_BYTES(PSA_VENDOR_RSA_MAX_KEY_BITS))
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200731
Gilles Peskine1be949b2018-08-10 19:06:59 +0200732/* Maximum size of the ASN.1 encoding of an INTEGER with the specified
733 * number of bits.
734 *
735 * This definition assumes that bits <= 2^19 - 9 so that the length field
736 * is at most 3 bytes. The length of the encoding is the length of the
737 * bit string padded to a whole number of bytes plus:
738 * - 1 type byte;
739 * - 1 to 3 length bytes;
740 * - 0 to 1 bytes of leading 0 due to the sign bit.
741 */
742#define PSA_KEY_EXPORT_ASN1_INTEGER_MAX_SIZE(bits) \
743 ((bits) / 8 + 5)
744
745/* Maximum size of the export encoding of an RSA public key.
746 * Assumes that the public exponent is less than 2^32.
747 *
Gilles Peskine1be949b2018-08-10 19:06:59 +0200748 * RSAPublicKey ::= SEQUENCE {
749 * modulus INTEGER, -- n
750 * publicExponent INTEGER } -- e
751 *
Jaeden Amero25384a22019-01-10 10:23:21 +0000752 * - 4 bytes of SEQUENCE overhead;
Gilles Peskine1be949b2018-08-10 19:06:59 +0200753 * - n : INTEGER;
754 * - 7 bytes for the public exponent.
755 */
756#define PSA_KEY_EXPORT_RSA_PUBLIC_KEY_MAX_SIZE(key_bits) \
Jaeden Amero25384a22019-01-10 10:23:21 +0000757 (PSA_KEY_EXPORT_ASN1_INTEGER_MAX_SIZE(key_bits) + 11)
Gilles Peskine1be949b2018-08-10 19:06:59 +0200758
759/* Maximum size of the export encoding of an RSA key pair.
Tom Cosgrove1797b052022-12-04 17:19:59 +0000760 * Assumes that the public exponent is less than 2^32 and that the size
Gilles Peskine1be949b2018-08-10 19:06:59 +0200761 * difference between the two primes is at most 1 bit.
762 *
763 * RSAPrivateKey ::= SEQUENCE {
764 * version Version, -- 0
765 * modulus INTEGER, -- N-bit
766 * publicExponent INTEGER, -- 32-bit
767 * privateExponent INTEGER, -- N-bit
768 * prime1 INTEGER, -- N/2-bit
769 * prime2 INTEGER, -- N/2-bit
770 * exponent1 INTEGER, -- N/2-bit
771 * exponent2 INTEGER, -- N/2-bit
772 * coefficient INTEGER, -- N/2-bit
773 * }
774 *
775 * - 4 bytes of SEQUENCE overhead;
776 * - 3 bytes of version;
777 * - 7 half-size INTEGERs plus 2 full-size INTEGERs,
778 * overapproximated as 9 half-size INTEGERS;
779 * - 7 bytes for the public exponent.
780 */
Gilles Peskinec93b80c2019-05-16 19:39:54 +0200781#define PSA_KEY_EXPORT_RSA_KEY_PAIR_MAX_SIZE(key_bits) \
Gilles Peskine1be949b2018-08-10 19:06:59 +0200782 (9 * PSA_KEY_EXPORT_ASN1_INTEGER_MAX_SIZE((key_bits) / 2 + 1) + 14)
783
784/* Maximum size of the export encoding of a DSA public key.
785 *
786 * SubjectPublicKeyInfo ::= SEQUENCE {
787 * algorithm AlgorithmIdentifier,
788 * subjectPublicKey BIT STRING } -- contains DSAPublicKey
789 * AlgorithmIdentifier ::= SEQUENCE {
790 * algorithm OBJECT IDENTIFIER,
bootstrap-prime6dbbf442022-05-17 19:30:44 -0400791 * parameters Dss-Params } -- SEQUENCE of 3 INTEGERs
Gilles Peskine1be949b2018-08-10 19:06:59 +0200792 * DSAPublicKey ::= INTEGER -- public key, Y
793 *
794 * - 3 * 4 bytes of SEQUENCE overhead;
795 * - 1 + 1 + 7 bytes of algorithm (DSA OID);
796 * - 4 bytes of BIT STRING overhead;
797 * - 3 full-size INTEGERs (p, g, y);
798 * - 1 + 1 + 32 bytes for 1 sub-size INTEGER (q <= 256 bits).
799 */
800#define PSA_KEY_EXPORT_DSA_PUBLIC_KEY_MAX_SIZE(key_bits) \
801 (PSA_KEY_EXPORT_ASN1_INTEGER_MAX_SIZE(key_bits) * 3 + 59)
802
803/* Maximum size of the export encoding of a DSA key pair.
804 *
805 * DSAPrivateKey ::= SEQUENCE {
806 * version Version, -- 0
807 * prime INTEGER, -- p
808 * subprime INTEGER, -- q
809 * generator INTEGER, -- g
810 * public INTEGER, -- y
811 * private INTEGER, -- x
812 * }
813 *
814 * - 4 bytes of SEQUENCE overhead;
815 * - 3 bytes of version;
816 * - 3 full-size INTEGERs (p, g, y);
817 * - 2 * (1 + 1 + 32) bytes for 2 sub-size INTEGERs (q, x <= 256 bits).
818 */
Gilles Peskinec93b80c2019-05-16 19:39:54 +0200819#define PSA_KEY_EXPORT_DSA_KEY_PAIR_MAX_SIZE(key_bits) \
Gilles Peskine1be949b2018-08-10 19:06:59 +0200820 (PSA_KEY_EXPORT_ASN1_INTEGER_MAX_SIZE(key_bits) * 3 + 75)
821
822/* Maximum size of the export encoding of an ECC public key.
823 *
Jaeden Ameroccdce902019-01-10 11:42:27 +0000824 * The representation of an ECC public key is:
825 * - The byte 0x04;
826 * - `x_P` as a `ceiling(m/8)`-byte string, big-endian;
827 * - `y_P` as a `ceiling(m/8)`-byte string, big-endian;
828 * - where m is the bit size associated with the curve.
Gilles Peskine1be949b2018-08-10 19:06:59 +0200829 *
Jaeden Ameroccdce902019-01-10 11:42:27 +0000830 * - 1 byte + 2 * point size.
Gilles Peskine1be949b2018-08-10 19:06:59 +0200831 */
832#define PSA_KEY_EXPORT_ECC_PUBLIC_KEY_MAX_SIZE(key_bits) \
Jaeden Ameroccdce902019-01-10 11:42:27 +0000833 (2 * PSA_BITS_TO_BYTES(key_bits) + 1)
Gilles Peskine1be949b2018-08-10 19:06:59 +0200834
835/* Maximum size of the export encoding of an ECC key pair.
836 *
Gilles Peskine5eb15212018-10-31 13:24:35 +0100837 * An ECC key pair is represented by the secret value.
Gilles Peskine1be949b2018-08-10 19:06:59 +0200838 */
Gilles Peskinec93b80c2019-05-16 19:39:54 +0200839#define PSA_KEY_EXPORT_ECC_KEY_PAIR_MAX_SIZE(key_bits) \
Gilles Peskine5eb15212018-10-31 13:24:35 +0100840 (PSA_BITS_TO_BYTES(key_bits))
Gilles Peskine1be949b2018-08-10 19:06:59 +0200841
Przemek Stekiel6d85afa2023-04-28 11:42:17 +0200842/* Maximum size of the export encoding of an DH key pair.
Przemek Stekieled23b612022-12-01 15:00:41 +0100843 *
Przemek Stekiel6d85afa2023-04-28 11:42:17 +0200844 * An DH key pair is represented by the secret value.
Przemek Stekieled23b612022-12-01 15:00:41 +0100845 */
846#define PSA_KEY_EXPORT_FFDH_KEY_PAIR_MAX_SIZE(key_bits) \
847 (PSA_BITS_TO_BYTES(key_bits))
848
Przemek Stekiel6d85afa2023-04-28 11:42:17 +0200849/* Maximum size of the export encoding of an DH public key.
Przemek Stekieled23b612022-12-01 15:00:41 +0100850 */
851#define PSA_KEY_EXPORT_FFDH_PUBLIC_KEY_MAX_SIZE(key_bits) \
852 (PSA_BITS_TO_BYTES(key_bits))
853
gabor-mezei-armbdae9182021-01-28 14:33:10 +0100854/** Sufficient output buffer size for psa_export_key() or
855 * psa_export_public_key().
Gilles Peskine1be949b2018-08-10 19:06:59 +0200856 *
857 * This macro returns a compile-time constant if its arguments are
858 * compile-time constants.
859 *
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100860 * \warning This macro may evaluate its arguments multiple times or
Gilles Peskine1be949b2018-08-10 19:06:59 +0200861 * zero times, so you should not pass arguments that contain
862 * side effects.
863 *
864 * The following code illustrates how to allocate enough memory to export
865 * a key by querying the key type and size at runtime.
866 * \code{c}
Gilles Peskined7d43b92019-05-21 15:56:03 +0200867 * psa_key_attributes_t attributes = PSA_KEY_ATTRIBUTES_INIT;
Gilles Peskine1be949b2018-08-10 19:06:59 +0200868 * psa_status_t status;
Gilles Peskined7d43b92019-05-21 15:56:03 +0200869 * status = psa_get_key_attributes(key, &attributes);
Gilles Peskine1be949b2018-08-10 19:06:59 +0200870 * if (status != PSA_SUCCESS) handle_error(...);
Gilles Peskined7d43b92019-05-21 15:56:03 +0200871 * psa_key_type_t key_type = psa_get_key_type(&attributes);
872 * size_t key_bits = psa_get_key_bits(&attributes);
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100873 * size_t buffer_size = PSA_EXPORT_KEY_OUTPUT_SIZE(key_type, key_bits);
Gilles Peskined7d43b92019-05-21 15:56:03 +0200874 * psa_reset_key_attributes(&attributes);
Gilles Peskinef82088a2019-07-15 11:07:38 +0200875 * uint8_t *buffer = malloc(buffer_size);
Gilles Peskined7d43b92019-05-21 15:56:03 +0200876 * if (buffer == NULL) handle_error(...);
Gilles Peskine1be949b2018-08-10 19:06:59 +0200877 * size_t buffer_length;
878 * status = psa_export_key(key, buffer, buffer_size, &buffer_length);
879 * if (status != PSA_SUCCESS) handle_error(...);
880 * \endcode
881 *
Gilles Peskine1be949b2018-08-10 19:06:59 +0200882 * \param key_type A supported key type.
883 * \param key_bits The size of the key in bits.
Gilles Peskine1be949b2018-08-10 19:06:59 +0200884 *
885 * \return If the parameters are valid and supported, return
886 * a buffer size in bytes that guarantees that
gabor-mezei-armbdae9182021-01-28 14:33:10 +0100887 * psa_export_key() or psa_export_public_key() will not fail with
Gilles Peskine1be949b2018-08-10 19:06:59 +0200888 * #PSA_ERROR_BUFFER_TOO_SMALL.
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100889 * If the parameters are a valid combination that is not supported,
890 * return either a sensible size or 0.
891 * If the parameters are not valid, the return value is unspecified.
Gilles Peskine1be949b2018-08-10 19:06:59 +0200892 */
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100893#define PSA_EXPORT_KEY_OUTPUT_SIZE(key_type, key_bits) \
894 (PSA_KEY_TYPE_IS_UNSTRUCTURED(key_type) ? PSA_BITS_TO_BYTES(key_bits) : \
Przemek Stekieled23b612022-12-01 15:00:41 +0100895 PSA_KEY_TYPE_IS_DH(key_type) ? PSA_BITS_TO_BYTES(key_bits) : \
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100896 (key_type) == PSA_KEY_TYPE_RSA_KEY_PAIR ? PSA_KEY_EXPORT_RSA_KEY_PAIR_MAX_SIZE(key_bits) : \
Gilles Peskine1be949b2018-08-10 19:06:59 +0200897 (key_type) == PSA_KEY_TYPE_RSA_PUBLIC_KEY ? PSA_KEY_EXPORT_RSA_PUBLIC_KEY_MAX_SIZE(key_bits) : \
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100898 (key_type) == PSA_KEY_TYPE_DSA_KEY_PAIR ? PSA_KEY_EXPORT_DSA_KEY_PAIR_MAX_SIZE(key_bits) : \
Gilles Peskine1be949b2018-08-10 19:06:59 +0200899 (key_type) == PSA_KEY_TYPE_DSA_PUBLIC_KEY ? PSA_KEY_EXPORT_DSA_PUBLIC_KEY_MAX_SIZE(key_bits) : \
gabor-mezei-armcbcec212020-12-18 14:23:51 +0100900 PSA_KEY_TYPE_IS_ECC_KEY_PAIR(key_type) ? PSA_KEY_EXPORT_ECC_KEY_PAIR_MAX_SIZE(key_bits) : \
901 PSA_KEY_TYPE_IS_ECC_PUBLIC_KEY(key_type) ? PSA_KEY_EXPORT_ECC_PUBLIC_KEY_MAX_SIZE(key_bits) : \
Gilles Peskine1be949b2018-08-10 19:06:59 +0200902 0)
903
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200904/** Sufficient output buffer size for psa_export_public_key().
905 *
906 * This macro returns a compile-time constant if its arguments are
907 * compile-time constants.
908 *
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100909 * \warning This macro may evaluate its arguments multiple times or
910 * zero times, so you should not pass arguments that contain
911 * side effects.
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200912 *
913 * The following code illustrates how to allocate enough memory to export
914 * a public key by querying the key type and size at runtime.
915 * \code{c}
916 * psa_key_attributes_t attributes = PSA_KEY_ATTRIBUTES_INIT;
917 * psa_status_t status;
918 * status = psa_get_key_attributes(key, &attributes);
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100919 * if (status != PSA_SUCCESS) handle_error(...);
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200920 * psa_key_type_t key_type = psa_get_key_type(&attributes);
921 * size_t key_bits = psa_get_key_bits(&attributes);
922 * size_t buffer_size = PSA_EXPORT_PUBLIC_KEY_OUTPUT_SIZE(key_type, key_bits);
923 * psa_reset_key_attributes(&attributes);
924 * uint8_t *buffer = malloc(buffer_size);
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100925 * if (buffer == NULL) handle_error(...);
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200926 * size_t buffer_length;
927 * status = psa_export_public_key(key, buffer, buffer_size, &buffer_length);
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100928 * if (status != PSA_SUCCESS) handle_error(...);
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200929 * \endcode
930 *
931 * \param key_type A public key or key pair key type.
932 * \param key_bits The size of the key in bits.
933 *
934 * \return If the parameters are valid and supported, return
935 * a buffer size in bytes that guarantees that
936 * psa_export_public_key() will not fail with
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100937 * #PSA_ERROR_BUFFER_TOO_SMALL.
938 * If the parameters are a valid combination that is not
939 * supported, return either a sensible size or 0.
940 * If the parameters are not valid,
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200941 * the return value is unspecified.
942 *
943 * If the parameters are valid and supported,
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100944 * return the same result as
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200945 * #PSA_EXPORT_KEY_OUTPUT_SIZE(
946 * \p #PSA_KEY_TYPE_PUBLIC_KEY_OF_KEY_PAIR(\p key_type),
947 * \p key_bits).
948 */
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100949#define PSA_EXPORT_PUBLIC_KEY_OUTPUT_SIZE(key_type, key_bits) \
950 (PSA_KEY_TYPE_IS_RSA(key_type) ? PSA_KEY_EXPORT_RSA_PUBLIC_KEY_MAX_SIZE(key_bits) : \
951 PSA_KEY_TYPE_IS_ECC(key_type) ? PSA_KEY_EXPORT_ECC_PUBLIC_KEY_MAX_SIZE(key_bits) : \
Przemek Stekieled23b612022-12-01 15:00:41 +0100952 PSA_KEY_TYPE_IS_DH(key_type) ? PSA_BITS_TO_BYTES(key_bits) : \
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200953 0)
954
955/** Sufficient buffer size for exporting any asymmetric key pair.
956 *
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100957 * This macro expands to a compile-time constant integer. This value is
958 * a sufficient buffer size when calling psa_export_key() to export any
959 * asymmetric key pair, regardless of the exact key type and key size.
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200960 *
961 * See also #PSA_EXPORT_KEY_OUTPUT_SIZE(\p key_type, \p key_bits).
962 */
Przemek Stekiel5357a7a2023-04-27 11:22:36 +0200963#define PSA_EXPORT_KEY_PAIR_MAX_SIZE \
964 PSA_MAX_OF_THREE(PSA_KEY_EXPORT_RSA_KEY_PAIR_MAX_SIZE(PSA_VENDOR_RSA_MAX_KEY_BITS), \
965 PSA_KEY_EXPORT_ECC_KEY_PAIR_MAX_SIZE(PSA_VENDOR_ECC_MAX_CURVE_BITS), \
966 PSA_KEY_EXPORT_FFDH_KEY_PAIR_MAX_SIZE(PSA_VENDOR_FFDH_MAX_KEY_BITS))
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200967
968/** Sufficient buffer size for exporting any asymmetric public key.
969 *
gabor-mezei-armc6f24802021-02-15 15:56:29 +0100970 * This macro expands to a compile-time constant integer. This value is
971 * a sufficient buffer size when calling psa_export_key() or
972 * psa_export_public_key() to export any asymmetric public key,
973 * regardless of the exact key type and key size.
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200974 *
975 * See also #PSA_EXPORT_PUBLIC_KEY_OUTPUT_SIZE(\p key_type, \p key_bits).
976 */
Przemek Stekiel5357a7a2023-04-27 11:22:36 +0200977#define PSA_EXPORT_PUBLIC_KEY_MAX_SIZE \
978 PSA_MAX_OF_THREE(PSA_KEY_EXPORT_RSA_PUBLIC_KEY_MAX_SIZE(PSA_VENDOR_RSA_MAX_KEY_BITS), \
Przemek Stekiel654bef02022-12-15 13:28:02 +0100979 PSA_KEY_EXPORT_ECC_PUBLIC_KEY_MAX_SIZE(PSA_VENDOR_ECC_MAX_CURVE_BITS), \
980 PSA_KEY_EXPORT_FFDH_PUBLIC_KEY_MAX_SIZE(PSA_VENDOR_FFDH_MAX_KEY_BITS))
981
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200982
983/** Sufficient output buffer size for psa_raw_key_agreement().
984 *
985 * This macro returns a compile-time constant if its arguments are
986 * compile-time constants.
987 *
gabor-mezei-arme86bdca2021-01-07 14:26:12 +0100988 * \warning This macro may evaluate its arguments multiple times or
989 * zero times, so you should not pass arguments that contain
990 * side effects.
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +0200991 *
992 * See also #PSA_RAW_KEY_AGREEMENT_OUTPUT_MAX_SIZE.
993 *
994 * \param key_type A supported key type.
995 * \param key_bits The size of the key in bits.
996 *
997 * \return If the parameters are valid and supported, return
998 * a buffer size in bytes that guarantees that
999 * psa_raw_key_agreement() will not fail with
gabor-mezei-armc6f24802021-02-15 15:56:29 +01001000 * #PSA_ERROR_BUFFER_TOO_SMALL.
1001 * If the parameters are a valid combination that
1002 * is not supported, return either a sensible size or 0.
1003 * If the parameters are not valid,
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001004 * the return value is unspecified.
1005 */
1006#define PSA_RAW_KEY_AGREEMENT_OUTPUT_SIZE(key_type, key_bits) \
Przemek Stekiel654bef02022-12-15 13:28:02 +01001007 ((PSA_KEY_TYPE_IS_ECC_KEY_PAIR(key_type) || \
1008 PSA_KEY_TYPE_IS_DH_KEY_PAIR(key_type)) ? PSA_BITS_TO_BYTES(key_bits) : 0)
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001009
1010/** Maximum size of the output from psa_raw_key_agreement().
1011 *
gabor-mezei-armc6f24802021-02-15 15:56:29 +01001012 * This macro expands to a compile-time constant integer. This value is the
1013 * maximum size of the output any raw key agreement algorithm, in bytes.
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001014 *
1015 * See also #PSA_RAW_KEY_AGREEMENT_OUTPUT_SIZE(\p key_type, \p key_bits).
1016 */
Przemek Stekiel4ce52322023-04-28 13:40:34 +02001017#define PSA_RAW_KEY_AGREEMENT_OUTPUT_MAX_SIZE \
1018 (PSA_BITS_TO_BYTES(PSA_VENDOR_ECC_MAX_CURVE_BITS) > \
1019 PSA_BITS_TO_BYTES(PSA_VENDOR_FFDH_MAX_KEY_BITS) ? \
1020 PSA_BITS_TO_BYTES(PSA_VENDOR_ECC_MAX_CURVE_BITS) : \
1021 PSA_BITS_TO_BYTES(PSA_VENDOR_FFDH_MAX_KEY_BITS))
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001022
Bence Szépkúti423d3e72020-10-29 11:07:39 +01001023/** The default IV size for a cipher algorithm, in bytes.
1024 *
1025 * The IV that is generated as part of a call to #psa_cipher_encrypt() is always
1026 * the default IV length for the algorithm.
1027 *
1028 * This macro can be used to allocate a buffer of sufficient size to
1029 * store the IV output from #psa_cipher_generate_iv() when using
1030 * a multi-part cipher operation.
1031 *
1032 * See also #PSA_CIPHER_IV_MAX_SIZE.
1033 *
1034 * \warning This macro may evaluate its arguments multiple times or
1035 * zero times, so you should not pass arguments that contain
1036 * side effects.
1037 *
1038 * \param key_type A symmetric key type that is compatible with algorithm \p alg.
1039 *
1040 * \param alg A cipher algorithm (\c PSA_ALG_XXX value such that #PSA_ALG_IS_CIPHER(\p alg) is true).
1041 *
1042 * \return The default IV size for the specified key type and algorithm.
1043 * If the algorithm does not use an IV, return 0.
1044 * If the key type or cipher algorithm is not recognized,
1045 * or the parameters are incompatible, return 0.
Bence Szépkúti423d3e72020-10-29 11:07:39 +01001046 */
1047#define PSA_CIPHER_IV_LENGTH(key_type, alg) \
gabor-mezei-armcbcec212020-12-18 14:23:51 +01001048 (PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type) > 1 && \
Gilles Peskine449bd832023-01-11 14:50:10 +01001049 ((alg) == PSA_ALG_CTR || \
1050 (alg) == PSA_ALG_CFB || \
1051 (alg) == PSA_ALG_OFB || \
1052 (alg) == PSA_ALG_XTS || \
1053 (alg) == PSA_ALG_CBC_NO_PADDING || \
1054 (alg) == PSA_ALG_CBC_PKCS7) ? PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type) : \
Bence Szépkúti423d3e72020-10-29 11:07:39 +01001055 (key_type) == PSA_KEY_TYPE_CHACHA20 && \
Gilles Peskine449bd832023-01-11 14:50:10 +01001056 (alg) == PSA_ALG_STREAM_CIPHER ? 12 : \
1057 (alg) == PSA_ALG_CCM_STAR_NO_TAG ? 13 : \
1058 0)
Bence Szépkúti423d3e72020-10-29 11:07:39 +01001059
1060/** The maximum IV size for all supported cipher algorithms, in bytes.
1061 *
1062 * See also #PSA_CIPHER_IV_LENGTH().
1063 */
1064#define PSA_CIPHER_IV_MAX_SIZE 16
1065
gabor-mezei-arm8809fb62020-06-02 14:27:06 +02001066/** The maximum size of the output of psa_cipher_encrypt(), in bytes.
1067 *
1068 * If the size of the output buffer is at least this large, it is guaranteed
1069 * that psa_cipher_encrypt() will not fail due to an insufficient buffer size.
1070 * Depending on the algorithm, the actual size of the output might be smaller.
1071 *
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001072 * See also #PSA_CIPHER_ENCRYPT_OUTPUT_MAX_SIZE(\p input_length).
1073 *
gabor-mezei-arme86bdca2021-01-07 14:26:12 +01001074 * \warning This macro may evaluate its arguments multiple times or
1075 * zero times, so you should not pass arguments that contain
1076 * side effects.
gabor-mezei-arm8809fb62020-06-02 14:27:06 +02001077 *
1078 * \param key_type A symmetric key type that is compatible with algorithm
1079 * alg.
1080 * \param alg A cipher algorithm (\c PSA_ALG_XXX value such that
1081 * #PSA_ALG_IS_CIPHER(\p alg) is true).
1082 * \param input_length Size of the input in bytes.
1083 *
1084 * \return A sufficient output size for the specified key type and
1085 * algorithm. If the key type or cipher algorithm is not
1086 * recognized, or the parameters are incompatible,
gabor-mezei-arme86bdca2021-01-07 14:26:12 +01001087 * return 0.
gabor-mezei-arm8809fb62020-06-02 14:27:06 +02001088 */
gabor-mezei-arme86bdca2021-01-07 14:26:12 +01001089#define PSA_CIPHER_ENCRYPT_OUTPUT_SIZE(key_type, alg, input_length) \
1090 (alg == PSA_ALG_CBC_PKCS7 ? \
Paul Elliottc22950c2021-07-08 16:50:01 +01001091 (PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type) != 0 ? \
Gilles Peskine449bd832023-01-11 14:50:10 +01001092 PSA_ROUND_UP_TO_MULTIPLE(PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type), \
1093 (input_length) + 1) + \
1094 PSA_CIPHER_IV_LENGTH((key_type), (alg)) : 0) : \
gabor-mezei-arme86bdca2021-01-07 14:26:12 +01001095 (PSA_ALG_IS_CIPHER(alg) ? \
1096 (input_length) + PSA_CIPHER_IV_LENGTH((key_type), (alg)) : \
Gilles Peskine449bd832023-01-11 14:50:10 +01001097 0))
gabor-mezei-arm8809fb62020-06-02 14:27:06 +02001098
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001099/** A sufficient output buffer size for psa_cipher_encrypt(), for any of the
1100 * supported key types and cipher algorithms.
1101 *
1102 * If the size of the output buffer is at least this large, it is guaranteed
1103 * that psa_cipher_encrypt() will not fail due to an insufficient buffer size.
1104 *
1105 * See also #PSA_CIPHER_ENCRYPT_OUTPUT_SIZE(\p key_type, \p alg, \p input_length).
1106 *
1107 * \param input_length Size of the input in bytes.
1108 *
1109 */
1110#define PSA_CIPHER_ENCRYPT_OUTPUT_MAX_SIZE(input_length) \
1111 (PSA_ROUND_UP_TO_MULTIPLE(PSA_BLOCK_CIPHER_BLOCK_MAX_SIZE, \
gabor-mezei-arm56991012021-03-10 16:43:14 +01001112 (input_length) + 1) + \
1113 PSA_CIPHER_IV_MAX_SIZE)
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001114
gabor-mezei-arm8809fb62020-06-02 14:27:06 +02001115/** The maximum size of the output of psa_cipher_decrypt(), in bytes.
1116 *
1117 * If the size of the output buffer is at least this large, it is guaranteed
1118 * that psa_cipher_decrypt() will not fail due to an insufficient buffer size.
1119 * Depending on the algorithm, the actual size of the output might be smaller.
1120 *
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001121 * See also #PSA_CIPHER_DECRYPT_OUTPUT_MAX_SIZE(\p input_length).
gabor-mezei-arm8809fb62020-06-02 14:27:06 +02001122 *
1123 * \param key_type A symmetric key type that is compatible with algorithm
1124 * alg.
1125 * \param alg A cipher algorithm (\c PSA_ALG_XXX value such that
1126 * #PSA_ALG_IS_CIPHER(\p alg) is true).
1127 * \param input_length Size of the input in bytes.
1128 *
1129 * \return A sufficient output size for the specified key type and
1130 * algorithm. If the key type or cipher algorithm is not
1131 * recognized, or the parameters are incompatible,
gabor-mezei-armc6f24802021-02-15 15:56:29 +01001132 * return 0.
gabor-mezei-arm8809fb62020-06-02 14:27:06 +02001133 */
gabor-mezei-armee6bb562020-06-17 10:11:11 +02001134#define PSA_CIPHER_DECRYPT_OUTPUT_SIZE(key_type, alg, input_length) \
1135 (PSA_ALG_IS_CIPHER(alg) && \
1136 ((key_type) & PSA_KEY_TYPE_CATEGORY_MASK) == PSA_KEY_TYPE_CATEGORY_SYMMETRIC ? \
1137 (input_length) : \
gabor-mezei-arm8809fb62020-06-02 14:27:06 +02001138 0)
1139
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001140/** A sufficient output buffer size for psa_cipher_decrypt(), for any of the
1141 * supported key types and cipher algorithms.
1142 *
1143 * If the size of the output buffer is at least this large, it is guaranteed
1144 * that psa_cipher_decrypt() will not fail due to an insufficient buffer size.
1145 *
1146 * See also #PSA_CIPHER_DECRYPT_OUTPUT_SIZE(\p key_type, \p alg, \p input_length).
1147 *
1148 * \param input_length Size of the input in bytes.
1149 */
1150#define PSA_CIPHER_DECRYPT_OUTPUT_MAX_SIZE(input_length) \
1151 (input_length)
1152
1153/** A sufficient output buffer size for psa_cipher_update().
1154 *
1155 * If the size of the output buffer is at least this large, it is guaranteed
1156 * that psa_cipher_update() will not fail due to an insufficient buffer size.
1157 * The actual size of the output might be smaller in any given call.
1158 *
1159 * See also #PSA_CIPHER_UPDATE_OUTPUT_MAX_SIZE(\p input_length).
1160 *
1161 * \param key_type A symmetric key type that is compatible with algorithm
1162 * alg.
1163 * \param alg A cipher algorithm (PSA_ALG_XXX value such that
1164 * #PSA_ALG_IS_CIPHER(\p alg) is true).
1165 * \param input_length Size of the input in bytes.
1166 *
1167 * \return A sufficient output size for the specified key type and
1168 * algorithm. If the key type or cipher algorithm is not
1169 * recognized, or the parameters are incompatible, return 0.
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001170 */
gabor-mezei-arme86bdca2021-01-07 14:26:12 +01001171#define PSA_CIPHER_UPDATE_OUTPUT_SIZE(key_type, alg, input_length) \
1172 (PSA_ALG_IS_CIPHER(alg) ? \
Gilles Peskine449bd832023-01-11 14:50:10 +01001173 (PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type) != 0 ? \
1174 (((alg) == PSA_ALG_CBC_PKCS7 || \
1175 (alg) == PSA_ALG_CBC_NO_PADDING || \
1176 (alg) == PSA_ALG_ECB_NO_PADDING) ? \
1177 PSA_ROUND_UP_TO_MULTIPLE(PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type), \
gabor-mezei-arme86bdca2021-01-07 14:26:12 +01001178 input_length) : \
Gilles Peskine449bd832023-01-11 14:50:10 +01001179 (input_length)) : 0) : \
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001180 0)
1181
1182/** A sufficient output buffer size for psa_cipher_update(), for any of the
1183 * supported key types and cipher algorithms.
1184 *
1185 * If the size of the output buffer is at least this large, it is guaranteed
1186 * that psa_cipher_update() will not fail due to an insufficient buffer size.
1187 *
1188 * See also #PSA_CIPHER_UPDATE_OUTPUT_SIZE(\p key_type, \p alg, \p input_length).
1189 *
1190 * \param input_length Size of the input in bytes.
1191 */
1192#define PSA_CIPHER_UPDATE_OUTPUT_MAX_SIZE(input_length) \
gabor-mezei-arm286a36e2021-03-05 15:54:21 +01001193 (PSA_ROUND_UP_TO_MULTIPLE(PSA_BLOCK_CIPHER_BLOCK_MAX_SIZE, input_length))
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001194
1195/** A sufficient ciphertext buffer size for psa_cipher_finish().
1196 *
1197 * If the size of the ciphertext buffer is at least this large, it is
1198 * guaranteed that psa_cipher_finish() will not fail due to an insufficient
1199 * ciphertext buffer size. The actual size of the output might be smaller in
1200 * any given call.
1201 *
1202 * See also #PSA_CIPHER_FINISH_OUTPUT_MAX_SIZE().
1203 *
1204 * \param key_type A symmetric key type that is compatible with algorithm
1205 * alg.
1206 * \param alg A cipher algorithm (PSA_ALG_XXX value such that
1207 * #PSA_ALG_IS_CIPHER(\p alg) is true).
1208 * \return A sufficient output size for the specified key type and
1209 * algorithm. If the key type or cipher algorithm is not
1210 * recognized, or the parameters are incompatible, return 0.
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001211 */
gabor-mezei-arme86bdca2021-01-07 14:26:12 +01001212#define PSA_CIPHER_FINISH_OUTPUT_SIZE(key_type, alg) \
1213 (PSA_ALG_IS_CIPHER(alg) ? \
1214 (alg == PSA_ALG_CBC_PKCS7 ? \
1215 PSA_BLOCK_CIPHER_BLOCK_LENGTH(key_type) : \
1216 0) : \
gabor-mezei-armfbd9f1e2020-06-29 10:38:39 +02001217 0)
1218
1219/** A sufficient ciphertext buffer size for psa_cipher_finish(), for any of the
1220 * supported key types and cipher algorithms.
1221 *
1222 * See also #PSA_CIPHER_FINISH_OUTPUT_SIZE(\p key_type, \p alg).
1223 */
1224#define PSA_CIPHER_FINISH_OUTPUT_MAX_SIZE \
1225 (PSA_BLOCK_CIPHER_BLOCK_MAX_SIZE)
1226
Gilles Peskine0cad07c2018-06-27 19:49:02 +02001227#endif /* PSA_CRYPTO_SIZES_H */