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Gilles Peskine961849f2018-11-30 18:54:54 +01001/*
2 * PSA crypto layer on top of Mbed TLS crypto
3 */
Bence Szépkúti86974652020-06-15 11:59:37 +02004/*
Bence Szépkúti1e148272020-08-07 13:07:28 +02005 * Copyright The Mbed TLS Contributors
Dave Rodgman16799db2023-11-02 19:47:20 +00006 * SPDX-License-Identifier: Apache-2.0 OR GPL-2.0-or-later
Gilles Peskine961849f2018-11-30 18:54:54 +01007 */
8
9#ifndef PSA_CRYPTO_SLOT_MANAGEMENT_H
10#define PSA_CRYPTO_SLOT_MANAGEMENT_H
11
Gilles Peskine011e4282019-06-26 18:34:38 +020012#include "psa/crypto.h"
Ronald Cronc4d1b512020-07-31 11:26:37 +020013#include "psa_crypto_core.h"
Gilles Peskine011e4282019-06-26 18:34:38 +020014#include "psa_crypto_se.h"
15
Ronald Cron2a993152020-07-17 14:13:26 +020016/** Range of volatile key identifiers.
17 *
Steven Cooreman863470a2021-02-15 14:03:19 +010018 * The last #MBEDTLS_PSA_KEY_SLOT_COUNT identifiers of the implementation
19 * range of key identifiers are reserved for volatile key identifiers.
Ronald Cron96783552020-10-19 12:06:30 +020020 * A volatile key identifier is equal to #PSA_KEY_ID_VOLATILE_MIN plus the
Ronald Cron2a993152020-07-17 14:13:26 +020021 * index of the key slot containing the volatile key definition.
22 */
23
24/** The minimum value for a volatile key identifier.
25 */
Gilles Peskine449bd832023-01-11 14:50:10 +010026#define PSA_KEY_ID_VOLATILE_MIN (PSA_KEY_ID_VENDOR_MAX - \
27 MBEDTLS_PSA_KEY_SLOT_COUNT + 1)
Ronald Cron2a993152020-07-17 14:13:26 +020028
29/** The maximum value for a volatile key identifier.
30 */
31#define PSA_KEY_ID_VOLATILE_MAX PSA_KEY_ID_VENDOR_MAX
32
Ronald Cron97c8ad52020-10-15 11:17:11 +020033/** Test whether a key identifier is a volatile key identifier.
34 *
35 * \param key_id Key identifier to test.
36 *
37 * \retval 1
38 * The key identifier is a volatile key identifier.
39 * \retval 0
40 * The key identifier is not a volatile key identifier.
41 */
Gilles Peskine449bd832023-01-11 14:50:10 +010042static inline int psa_key_id_is_volatile(psa_key_id_t key_id)
Ronald Cron97c8ad52020-10-15 11:17:11 +020043{
Gilles Peskine449bd832023-01-11 14:50:10 +010044 return (key_id >= PSA_KEY_ID_VOLATILE_MIN) &&
45 (key_id <= PSA_KEY_ID_VOLATILE_MAX);
Ronald Cron97c8ad52020-10-15 11:17:11 +020046}
47
Ronald Cron5c522922020-11-14 16:35:34 +010048/** Get the description of a key given its identifier and lock it.
Gilles Peskine09829032018-12-10 17:00:38 +010049 *
Ronald Cron5c522922020-11-14 16:35:34 +010050 * The descriptions of volatile keys and loaded persistent keys are stored in
51 * key slots. This function returns a pointer to the key slot containing the
52 * description of a key given its identifier.
Ronald Cronc4d1b512020-07-31 11:26:37 +020053 *
Ronald Cron5c522922020-11-14 16:35:34 +010054 * In case of a persistent key, the function loads the description of the key
55 * into a key slot if not already done.
Ronald Cronc4d1b512020-07-31 11:26:37 +020056 *
Ryan Everett098c6652024-01-03 13:03:36 +000057 * On success, the returned key slot has been registered for reading.
58 * It is the responsibility of the caller to call psa_unregister_read(slot)
59 * when they have finished reading the contents of the slot.
Ronald Cronf95a2b12020-10-22 15:24:49 +020060 *
Ronald Cronc4d1b512020-07-31 11:26:37 +020061 * \param key Key identifier to query.
Gilles Peskine09829032018-12-10 17:00:38 +010062 * \param[out] p_slot On success, `*p_slot` contains a pointer to the
Ronald Cronc4d1b512020-07-31 11:26:37 +020063 * key slot containing the description of the key
64 * identified by \p key.
Gilles Peskine09829032018-12-10 17:00:38 +010065 *
Ronald Cronc4d1b512020-07-31 11:26:37 +020066 * \retval #PSA_SUCCESS
Ronald Cron1d12d872020-11-18 17:21:22 +010067 * \p *p_slot contains a pointer to the key slot containing the
68 * description of the key identified by \p key.
69 * The key slot counter has been incremented.
Ronald Cronc4d1b512020-07-31 11:26:37 +020070 * \retval #PSA_ERROR_BAD_STATE
Ryan Everettdfe8bf82024-01-12 17:45:05 +000071 * The library has not been initialized.
Ronald Cronc4d1b512020-07-31 11:26:37 +020072 * \retval #PSA_ERROR_INVALID_HANDLE
73 * \p key is not a valid key identifier.
74 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
75 * \p key is a persistent key identifier. The implementation does not
76 * have sufficient resources to load the persistent key. This can be
77 * due to a lack of empty key slot, or available memory.
78 * \retval #PSA_ERROR_DOES_NOT_EXIST
79 * There is no key with key identifier \p key.
Gilles Peskineed733552023-02-14 19:21:09 +010080 * \retval #PSA_ERROR_CORRUPTION_DETECTED \emptydescription
81 * \retval #PSA_ERROR_STORAGE_FAILURE \emptydescription
82 * \retval #PSA_ERROR_DATA_CORRUPT \emptydescription
Gilles Peskine09829032018-12-10 17:00:38 +010083 */
Gilles Peskine449bd832023-01-11 14:50:10 +010084psa_status_t psa_get_and_lock_key_slot(mbedtls_svc_key_id_t key,
85 psa_key_slot_t **p_slot);
Gilles Peskine66fb1262018-12-10 16:29:04 +010086
Gilles Peskine09829032018-12-10 17:00:38 +010087/** Initialize the key slot structures.
88 *
Ronald Cron96783552020-10-19 12:06:30 +020089 * \retval #PSA_SUCCESS
Gilles Peskine09829032018-12-10 17:00:38 +010090 * Currently this function always succeeds.
91 */
Gilles Peskine449bd832023-01-11 14:50:10 +010092psa_status_t psa_initialize_key_slots(void);
Gilles Peskine66fb1262018-12-10 16:29:04 +010093
Gilles Peskine09829032018-12-10 17:00:38 +010094/** Delete all data from key slots in memory.
95 *
96 * This does not affect persistent storage. */
Gilles Peskine449bd832023-01-11 14:50:10 +010097void psa_wipe_all_key_slots(void);
Gilles Peskine66fb1262018-12-10 16:29:04 +010098
Ryan Everett2afb5162023-12-22 15:59:45 +000099/** Find a free key slot and reserve it to be filled with a key.
Gilles Peskine41e50d22019-07-31 15:01:55 +0200100 *
Ryan Everett2afb5162023-12-22 15:59:45 +0000101 * This function finds a key slot that is free,
102 * sets its state to PSA_SLOT_FILLING and then returns the slot.
103 *
104 * On success, the key slot's state is PSA_SLOT_FILLING.
105 * It is the responsibility of the caller to change the slot's state to
106 * PSA_SLOT_EMPTY/FULL once key creation has finished.
Gilles Peskinef46f81c2019-05-27 14:53:10 +0200107 *
Ronald Cron2a993152020-07-17 14:13:26 +0200108 * \param[out] volatile_key_id On success, volatile key identifier
109 * associated to the returned slot.
110 * \param[out] p_slot On success, a pointer to the slot.
Gilles Peskinef46f81c2019-05-27 14:53:10 +0200111 *
Gilles Peskineed733552023-02-14 19:21:09 +0100112 * \retval #PSA_SUCCESS \emptydescription
Ryan Everett2afb5162023-12-22 15:59:45 +0000113 * \retval #PSA_ERROR_INSUFFICIENT_MEMORY
114 * There were no free key slots.
Ryan Everettdfe8bf82024-01-12 17:45:05 +0000115 * \retval #PSA_ERROR_BAD_STATE \emptydescription
116 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Ryan Everett2afb5162023-12-22 15:59:45 +0000117 * This function attempted to operate on a key slot which was in an
118 * unexpected state.
Gilles Peskinef46f81c2019-05-27 14:53:10 +0200119 */
Ryan Everett2afb5162023-12-22 15:59:45 +0000120psa_status_t psa_reserve_free_key_slot(psa_key_id_t *volatile_key_id,
121 psa_key_slot_t **p_slot);
122
Ryan Everett4a782772024-01-04 10:53:26 +0000123/** Change the state of a key slot.
124 *
125 * This function changes the state of the key slot from expected_state to
126 * new state. If the state of the slot was not expected_state, the state is
127 * unchanged.
128 *
Ryan Everettfb02d572024-01-08 11:13:03 +0000129 * If multi-threading is enabled, the caller must hold the
130 * global key slot mutex.
131 *
Ryan Everett4a782772024-01-04 10:53:26 +0000132 * \param[in] slot The key slot.
133 * \param[in] expected_state The current state of the slot.
134 * \param[in] new_state The new state of the slot.
135 *
136 * \retval #PSA_SUCCESS
137 The key slot's state variable is new_state.
Ryan Everettdfe8bf82024-01-12 17:45:05 +0000138 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Ryan Everett4a782772024-01-04 10:53:26 +0000139 * The slot's state was not expected_state.
140 */
141static inline psa_status_t psa_key_slot_state_transition(
142 psa_key_slot_t *slot, psa_key_slot_state_t expected_state,
143 psa_key_slot_state_t new_state)
144{
145 if (slot->state != expected_state) {
Ryan Everettdfe8bf82024-01-12 17:45:05 +0000146 return PSA_ERROR_CORRUPTION_DETECTED;
Ryan Everett4a782772024-01-04 10:53:26 +0000147 }
148 slot->state = new_state;
149 return PSA_SUCCESS;
150}
Gilles Peskinef46f81c2019-05-27 14:53:10 +0200151
Ryan Everett39cc9d72023-12-21 17:57:14 +0000152/** Register as a reader of a key slot.
Ronald Cronf95a2b12020-10-22 15:24:49 +0200153 *
Ryan Everett39cc9d72023-12-21 17:57:14 +0000154 * This function increments the key slot registered reader counter by one.
Ryan Everettfb02d572024-01-08 11:13:03 +0000155 * If multi-threading is enabled, the caller must hold the
156 * global key slot mutex.
Ryan Everett7aeacc12024-01-19 13:02:58 +0000157 *
Ronald Cronf95a2b12020-10-22 15:24:49 +0200158 * \param[in] slot The key slot.
Ronald Croncbf6a1d2020-11-13 15:59:59 +0100159 *
160 * \retval #PSA_SUCCESS
Ryan Everett39cc9d72023-12-21 17:57:14 +0000161 The key slot registered reader counter was incremented.
Ronald Croncbf6a1d2020-11-13 15:59:59 +0100162 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Ryan Everett39cc9d72023-12-21 17:57:14 +0000163 * The reader counter already reached its maximum value and was not
Ryan Everettdfe8bf82024-01-12 17:45:05 +0000164 * increased, or the slot's state was not PSA_SLOT_FULL.
Ronald Cronf95a2b12020-10-22 15:24:49 +0200165 */
Ryan Everett39cc9d72023-12-21 17:57:14 +0000166static inline psa_status_t psa_register_read(psa_key_slot_t *slot)
Ronald Cronf95a2b12020-10-22 15:24:49 +0200167{
Ryan Everettdfe8bf82024-01-12 17:45:05 +0000168 if ((slot->state != PSA_SLOT_FULL) ||
169 (slot->registered_readers >= SIZE_MAX)) {
Gilles Peskine449bd832023-01-11 14:50:10 +0100170 return PSA_ERROR_CORRUPTION_DETECTED;
171 }
Ryan Everett39cc9d72023-12-21 17:57:14 +0000172 slot->registered_readers++;
Ronald Croncbf6a1d2020-11-13 15:59:59 +0100173
Gilles Peskine449bd832023-01-11 14:50:10 +0100174 return PSA_SUCCESS;
Ronald Cronf95a2b12020-10-22 15:24:49 +0200175}
176
Ryan Everett39cc9d72023-12-21 17:57:14 +0000177/** Unregister from reading a key slot.
Ronald Cronf95a2b12020-10-22 15:24:49 +0200178 *
Ryan Everett39cc9d72023-12-21 17:57:14 +0000179 * This function decrements the key slot registered reader counter by one.
180 * If the state of the slot is PSA_SLOT_PENDING_DELETION,
181 * and there is only one registered reader (the caller),
Ryan Everett558da2f2024-01-19 12:59:28 +0000182 * this function will call psa_wipe_key_slot().
Ryan Everettfb02d572024-01-08 11:13:03 +0000183 * If multi-threading is enabled, the caller must hold the
184 * global key slot mutex.
Ronald Cronf95a2b12020-10-22 15:24:49 +0200185 *
186 * \note To ease the handling of errors in retrieving a key slot
187 * a NULL input pointer is valid, and the function returns
188 * successfully without doing anything in that case.
189 *
190 * \param[in] slot The key slot.
191 * \retval #PSA_SUCCESS
Ryan Everett39cc9d72023-12-21 17:57:14 +0000192 * \p slot is NULL or the key slot reader counter has been
193 * decremented (and potentially wiped) successfully.
Ronald Cronf95a2b12020-10-22 15:24:49 +0200194 * \retval #PSA_ERROR_CORRUPTION_DETECTED
Ryan Everett39cc9d72023-12-21 17:57:14 +0000195 * The slot's state was neither PSA_SLOT_FULL nor
Ryan Everettdfe8bf82024-01-12 17:45:05 +0000196 * PSA_SLOT_PENDING_DELETION.
197 * Or a wipe was attempted and the slot's state was not
198 * PSA_SLOT_PENDING_DELETION.
199 * Or registered_readers was equal to 0.
Ronald Cronf95a2b12020-10-22 15:24:49 +0200200 */
Ryan Everett39cc9d72023-12-21 17:57:14 +0000201psa_status_t psa_unregister_read(psa_key_slot_t *slot);
Ronald Cronf95a2b12020-10-22 15:24:49 +0200202
Ryan Everetteb1722a2024-01-31 13:36:39 +0000203/** Wrap a call to psa_unregister_read in the global key slot mutex.
204 *
205 * If threading is disabled, this simply calls psa_unregister_read.
206 *
207 * \note To ease the handling of errors in retrieving a key slot
208 * a NULL input pointer is valid, and the function returns
209 * successfully without doing anything in that case.
210 *
211 * \param[in] slot The key slot.
212 * \retval #PSA_SUCCESS
213 * \p slot is NULL or the key slot reader counter has been
214 * decremented (and potentially wiped) successfully.
215 * \retval #PSA_ERROR_CORRUPTION_DETECTED
216 * The slot's state was neither PSA_SLOT_FULL nor
217 * PSA_SLOT_PENDING_DELETION.
218 * Or a wipe was attempted and the slot's state was not
219 * PSA_SLOT_PENDING_DELETION.
220 * Or registered_readers was equal to 0.
221 */
222psa_status_t psa_unregister_read_under_mutex(psa_key_slot_t *slot);
223
Gilles Peskine011e4282019-06-26 18:34:38 +0200224/** Test whether a lifetime designates a key in an external cryptoprocessor.
225 *
226 * \param lifetime The lifetime to test.
227 *
228 * \retval 1
229 * The lifetime designates an external key. There should be a
230 * registered driver for this lifetime, otherwise the key cannot
231 * be created or manipulated.
232 * \retval 0
233 * The lifetime designates a key that is volatile or in internal
234 * storage.
235 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100236static inline int psa_key_lifetime_is_external(psa_key_lifetime_t lifetime)
Gilles Peskine011e4282019-06-26 18:34:38 +0200237{
Gilles Peskine449bd832023-01-11 14:50:10 +0100238 return PSA_KEY_LIFETIME_GET_LOCATION(lifetime)
239 != PSA_KEY_LOCATION_LOCAL_STORAGE;
Gilles Peskine011e4282019-06-26 18:34:38 +0200240}
241
Steven Cooreman8c1e7592020-06-17 14:52:05 +0200242/** Validate a key's location.
Gilles Peskined167b942019-04-19 18:19:40 +0200243 *
Steven Cooreman81fe7c32020-06-08 18:37:19 +0200244 * This function checks whether the key's attributes point to a location that
245 * is known to the PSA Core, and returns the driver function table if the key
246 * is to be found in an external location.
Gilles Peskined167b942019-04-19 18:19:40 +0200247 *
Steven Cooreman8c1e7592020-06-17 14:52:05 +0200248 * \param[in] lifetime The key lifetime attribute.
Steven Cooreman81fe7c32020-06-08 18:37:19 +0200249 * \param[out] p_drv On success, when a key is located in external
250 * storage, returns a pointer to the driver table
251 * associated with the key's storage location.
Gilles Peskine011e4282019-06-26 18:34:38 +0200252 *
Gilles Peskineed733552023-02-14 19:21:09 +0100253 * \retval #PSA_SUCCESS \emptydescription
254 * \retval #PSA_ERROR_INVALID_ARGUMENT \emptydescription
Gilles Peskined167b942019-04-19 18:19:40 +0200255 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100256psa_status_t psa_validate_key_location(psa_key_lifetime_t lifetime,
257 psa_se_drv_table_entry_t **p_drv);
Steven Cooreman81fe7c32020-06-08 18:37:19 +0200258
Ronald Crond2ed4812020-07-17 16:11:30 +0200259/** Validate the persistence of a key.
Steven Cooreman81fe7c32020-06-08 18:37:19 +0200260 *
Ronald Cron27238fc2020-07-23 12:30:41 +0200261 * \param[in] lifetime The key lifetime attribute.
Steven Cooreman81fe7c32020-06-08 18:37:19 +0200262 *
Gilles Peskineed733552023-02-14 19:21:09 +0100263 * \retval #PSA_SUCCESS \emptydescription
Ronald Cronde825e62021-04-01 13:59:10 +0200264 * \retval #PSA_ERROR_NOT_SUPPORTED The key is persistent but persistent keys
265 * are not supported.
Steven Cooreman81fe7c32020-06-08 18:37:19 +0200266 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100267psa_status_t psa_validate_key_persistence(psa_key_lifetime_t lifetime);
Ronald Crond2ed4812020-07-17 16:11:30 +0200268
269/** Validate a key identifier.
270 *
Ronald Cronfc9c5562020-10-15 19:24:49 +0200271 * \param[in] key The key identifier.
272 * \param[in] vendor_ok Non-zero to indicate that key identifiers in the
273 * vendor range are allowed, volatile key identifiers
274 * excepted \c 0 otherwise.
Ronald Crond2ed4812020-07-17 16:11:30 +0200275 *
Ronald Cron77e412c2021-03-31 17:36:31 +0200276 * \retval <> 0 if the key identifier is valid, 0 otherwise.
Ronald Crond2ed4812020-07-17 16:11:30 +0200277 */
Gilles Peskine449bd832023-01-11 14:50:10 +0100278int psa_is_valid_key_id(mbedtls_svc_key_id_t key, int vendor_ok);
Gilles Peskined167b942019-04-19 18:19:40 +0200279
Gilles Peskine961849f2018-11-30 18:54:54 +0100280#endif /* PSA_CRYPTO_SLOT_MANAGEMENT_H */