blob: 5b5d2ec77130fa3f41e21fc7715324a77bc9cc01 [file] [log] [blame]
Shawn Willden9d645a02014-06-12 13:48:46 -06001/*
2 * Copyright (C) 2014 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#ifndef ANDROID_HARDWARE_KEYMASTER_DEFS_H
18#define ANDROID_HARDWARE_KEYMASTER_DEFS_H
19
20#include <stdint.h>
21#include <stdlib.h>
22#include <string.h>
23
Shawn Willden7eaa15f2015-06-03 09:03:20 -060024#ifdef __cplusplus
Shawn Willdenc51d01e2015-03-18 18:59:52 -060025extern "C" {
26#endif // __cplusplus
Shawn Willden9d645a02014-06-12 13:48:46 -060027
Shawn Willden9d645a02014-06-12 13:48:46 -060028/**
29 * Authorization tags each have an associated type. This enumeration facilitates tagging each with
30 * a type, by using the high four bits (of an implied 32-bit unsigned enum value) to specify up to
31 * 16 data types. These values are ORed with tag IDs to generate the final tag ID values.
32 */
33typedef enum {
34 KM_INVALID = 0 << 28, /* Invalid type, used to designate a tag as uninitialized */
35 KM_ENUM = 1 << 28,
36 KM_ENUM_REP = 2 << 28, /* Repeatable enumeration value. */
Shawn Willdenfe6bcfa2015-06-24 20:59:14 +000037 KM_UINT = 3 << 28,
38 KM_UINT_REP = 4 << 28, /* Repeatable integer value */
39 KM_ULONG = 5 << 28,
Shawn Willden9d645a02014-06-12 13:48:46 -060040 KM_DATE = 6 << 28,
41 KM_BOOL = 7 << 28,
42 KM_BIGNUM = 8 << 28,
43 KM_BYTES = 9 << 28,
Shawn Willdenfe6bcfa2015-06-24 20:59:14 +000044 KM_ULONG_REP = 10 << 28, /* Repeatable long value */
Shawn Willden9d645a02014-06-12 13:48:46 -060045} keymaster_tag_type_t;
46
47typedef enum {
48 KM_TAG_INVALID = KM_INVALID | 0,
49
50 /*
51 * Tags that must be semantically enforced by hardware and software implementations.
52 */
53
54 /* Crypto parameters */
Shawn Willdencf30fe12015-12-21 16:29:10 -070055 KM_TAG_PURPOSE = KM_ENUM_REP | 1, /* keymaster_purpose_t. */
56 KM_TAG_ALGORITHM = KM_ENUM | 2, /* keymaster_algorithm_t. */
57 KM_TAG_KEY_SIZE = KM_UINT | 3, /* Key size in bits. */
58 KM_TAG_BLOCK_MODE = KM_ENUM_REP | 4, /* keymaster_block_mode_t. */
59 KM_TAG_DIGEST = KM_ENUM_REP | 5, /* keymaster_digest_t. */
60 KM_TAG_PADDING = KM_ENUM_REP | 6, /* keymaster_padding_t. */
61 KM_TAG_CALLER_NONCE = KM_BOOL | 7, /* Allow caller to specify nonce or IV. */
62 KM_TAG_MIN_MAC_LENGTH = KM_UINT | 8, /* Minimum length of MAC or AEAD authentication tag in
63 * bits. */
64 KM_TAG_KDF = KM_ENUM_REP | 9, /* keymaster_kdf_t (keymaster2) */
65 KM_TAG_EC_CURVE = KM_ENUM | 10, /* keymaster_ec_curve_t (keymaster2) */
Shawn Willden9d645a02014-06-12 13:48:46 -060066
Shawn Willden9d645a02014-06-12 13:48:46 -060067 /* Algorithm-specific. */
Shawn Willdenfe6bcfa2015-06-24 20:59:14 +000068 KM_TAG_RSA_PUBLIC_EXPONENT = KM_ULONG | 200,
Thai Duong40d59c82015-04-02 21:41:37 -070069 KM_TAG_ECIES_SINGLE_HASH_MODE = KM_BOOL | 201, /* Whether the ephemeral public key is fed into
Shawn Willdencf30fe12015-12-21 16:29:10 -070070 * the KDF */
71 KM_TAG_INCLUDE_UNIQUE_ID = KM_BOOL | 202, /* If true, attestation certificates for this key
72 * will contain an application-scoped and
73 * time-bounded device-unique ID. (keymaster2) */
Shawn Willden9d645a02014-06-12 13:48:46 -060074
Shawn Willdenfb769fc2015-05-11 09:24:48 -060075 /* Other hardware-enforced. */
76 KM_TAG_BLOB_USAGE_REQUIREMENTS = KM_ENUM | 301, /* keymaster_key_blob_usage_requirements_t */
77 KM_TAG_BOOTLOADER_ONLY = KM_BOOL | 302, /* Usable only by bootloader */
78
Shawn Willden9d645a02014-06-12 13:48:46 -060079 /*
80 * Tags that should be semantically enforced by hardware if possible and will otherwise be
81 * enforced by software (keystore).
82 */
83
84 /* Key validity period */
85 KM_TAG_ACTIVE_DATETIME = KM_DATE | 400, /* Start of validity */
86 KM_TAG_ORIGINATION_EXPIRE_DATETIME = KM_DATE | 401, /* Date when new "messages" should no
87 longer be created. */
88 KM_TAG_USAGE_EXPIRE_DATETIME = KM_DATE | 402, /* Date when existing "messages" should no
89 longer be trusted. */
Shawn Willdenfe6bcfa2015-06-24 20:59:14 +000090 KM_TAG_MIN_SECONDS_BETWEEN_OPS = KM_UINT | 403, /* Minimum elapsed time between
Shawn Willden9d645a02014-06-12 13:48:46 -060091 cryptographic operations with the key. */
Shawn Willdenfe6bcfa2015-06-24 20:59:14 +000092 KM_TAG_MAX_USES_PER_BOOT = KM_UINT | 404, /* Number of times the key can be used per
Shawn Willdendc0007b2015-01-23 01:01:21 -070093 boot. */
Shawn Willden9d645a02014-06-12 13:48:46 -060094
95 /* User authentication */
Shawn Willdenfe6bcfa2015-06-24 20:59:14 +000096 KM_TAG_ALL_USERS = KM_BOOL | 500, /* Reserved for future use -- ignore */
97 KM_TAG_USER_ID = KM_UINT | 501, /* Reserved for future use -- ignore */
98 KM_TAG_USER_SECURE_ID = KM_ULONG_REP | 502, /* Secure ID of authorized user or authenticator(s).
99 Disallowed if KM_TAG_ALL_USERS or
100 KM_TAG_NO_AUTH_REQUIRED is present. */
101 KM_TAG_NO_AUTH_REQUIRED = KM_BOOL | 503, /* If key is usable without authentication. */
102 KM_TAG_USER_AUTH_TYPE = KM_ENUM | 504, /* Bitmask of authenticator types allowed when
103 * KM_TAG_USER_SECURE_ID contains a secure user ID,
104 * rather than a secure authenticator ID. Defined in
105 * hw_authenticator_type_t in hw_auth_token.h. */
106 KM_TAG_AUTH_TIMEOUT = KM_UINT | 505, /* Required freshness of user authentication for
107 private/secret key operations, in seconds.
108 Public key operations require no authentication.
109 If absent, authentication is required for every
110 use. Authentication state is lost when the
111 device is powered off. */
Shawn Willden9d645a02014-06-12 13:48:46 -0600112
113 /* Application access control */
Shawn Willdencf30fe12015-12-21 16:29:10 -0700114 KM_TAG_ALL_APPLICATIONS = KM_BOOL | 600, /* Specified to indicate key is usable by all
115 * applications. */
116 KM_TAG_APPLICATION_ID = KM_BYTES | 601, /* Byte string identifying the authorized
117 * application. */
118 KM_TAG_EXPORTABLE = KM_BOOL | 602, /* If true, private/secret key can be exported, but
119 * only if all access control requirements for use are
120 * met. (keymaster2) */
Shawn Willden9d645a02014-06-12 13:48:46 -0600121
122 /*
123 * Semantically unenforceable tags, either because they have no specific meaning or because
124 * they're informational only.
125 */
126 KM_TAG_APPLICATION_DATA = KM_BYTES | 700, /* Data provided by authorized application. */
127 KM_TAG_CREATION_DATETIME = KM_DATE | 701, /* Key creation time */
128 KM_TAG_ORIGIN = KM_ENUM | 702, /* keymaster_key_origin_t. */
129 KM_TAG_ROLLBACK_RESISTANT = KM_BOOL | 703, /* Whether key is rollback-resistant. */
Shawn Willden70335f32015-07-08 09:57:16 -0600130 KM_TAG_ROOT_OF_TRUST = KM_BYTES | 704, /* Root of trust ID. */
Shawn Willdencf30fe12015-12-21 16:29:10 -0700131 KM_TAG_OS_VERSION = KM_UINT | 705, /* Version of system (keymaster2) */
132 KM_TAG_OS_PATCHLEVEL = KM_UINT | 706, /* Patch level of system (keymaster2) */
133 KM_TAG_UNIQUE_ID = KM_BYTES | 707, /* Used to provide unique ID in attestation */
Shawn Willden9d645a02014-06-12 13:48:46 -0600134
Shawn Willden67ba9e82015-02-06 17:04:53 -0700135 /* Tags used only to provide data to or receive data from operations */
136 KM_TAG_ASSOCIATED_DATA = KM_BYTES | 1000, /* Used to provide associated data for AEAD modes. */
Shawn Willden41e91e92015-01-30 06:23:26 -0700137 KM_TAG_NONCE = KM_BYTES | 1001, /* Nonce or Initialization Vector */
Shawn Willdenda89dde2015-06-18 12:09:20 -0600138 KM_TAG_AUTH_TOKEN = KM_BYTES | 1002, /* Authentication token that proves secure user
Shawn Willdenc3ab05c2015-03-14 08:23:41 -0600139 authentication has been performed. Structure
140 defined in hw_auth_token_t in hw_auth_token.h. */
Shawn Willdencf30fe12015-12-21 16:29:10 -0700141 KM_TAG_MAC_LENGTH = KM_UINT | 1003, /* MAC or AEAD authentication tag length in
142 * bits. */
143
144 KM_TAG_RESET_SINCE_ID_ROTATION = KM_BOOL | 1004, /* Whether the device has beeen factory reset
145 since the last unique ID rotation. Used for
146 key attestation. */
Shawn Willden9d645a02014-06-12 13:48:46 -0600147} keymaster_tag_t;
148
149/**
150 * Algorithms that may be provided by keymaster implementations. Those that must be provided by all
Shawn Willdenfd4b4d52015-02-24 09:17:38 -0700151 * implementations are tagged as "required".
Shawn Willden9d645a02014-06-12 13:48:46 -0600152 */
153typedef enum {
154 /* Asymmetric algorithms. */
Shawn Willdene9797a72015-04-07 13:39:12 -0600155 KM_ALGORITHM_RSA = 1,
156 // KM_ALGORITHM_DSA = 2, -- Removed, do not re-use value 2.
157 KM_ALGORITHM_EC = 3,
158
159 /* Block ciphers algorithms */
160 KM_ALGORITHM_AES = 32,
161
Shawn Willden9d645a02014-06-12 13:48:46 -0600162 /* MAC algorithms */
Shawn Willdene9797a72015-04-07 13:39:12 -0600163 KM_ALGORITHM_HMAC = 128,
Shawn Willden9d645a02014-06-12 13:48:46 -0600164} keymaster_algorithm_t;
165
166/**
Shawn Willdenc7deeda2015-04-07 13:40:00 -0600167 * Symmetric block cipher modes provided by keymaster implementations.
Shawn Willden9d645a02014-06-12 13:48:46 -0600168 */
169typedef enum {
170 /* Unauthenticated modes, usable only for encryption/decryption and not generally recommended
171 * except for compatibility with existing other protocols. */
Shawn Willden4c19a3a2015-06-01 11:40:24 -0600172 KM_MODE_ECB = 1,
Shawn Willdenc7deeda2015-04-07 13:40:00 -0600173 KM_MODE_CBC = 2,
Shawn Willden4c19a3a2015-06-01 11:40:24 -0600174 KM_MODE_CTR = 3,
Shawn Willdenc7deeda2015-04-07 13:40:00 -0600175
Shawn Willden9d645a02014-06-12 13:48:46 -0600176 /* Authenticated modes, usable for encryption/decryption and signing/verification. Recommended
Shawn Willdenc7deeda2015-04-07 13:40:00 -0600177 * over unauthenticated modes for all purposes. */
Shawn Willden4c19a3a2015-06-01 11:40:24 -0600178 KM_MODE_GCM = 32,
Shawn Willden9d645a02014-06-12 13:48:46 -0600179} keymaster_block_mode_t;
180
181/**
182 * Padding modes that may be applied to plaintext for encryption operations. This list includes
183 * padding modes for both symmetric and asymmetric algorithms. Note that implementations should not
184 * provide all possible combinations of algorithm and padding, only the
185 * cryptographically-appropriate pairs.
186 */
187typedef enum {
Shawn Willden8412fdc2015-04-07 13:41:30 -0600188 KM_PAD_NONE = 1, /* deprecated */
189 KM_PAD_RSA_OAEP = 2,
190 KM_PAD_RSA_PSS = 3,
Shawn Willden9d645a02014-06-12 13:48:46 -0600191 KM_PAD_RSA_PKCS1_1_5_ENCRYPT = 4,
192 KM_PAD_RSA_PKCS1_1_5_SIGN = 5,
Shawn Willden8412fdc2015-04-07 13:41:30 -0600193 KM_PAD_PKCS7 = 64,
Shawn Willden9d645a02014-06-12 13:48:46 -0600194} keymaster_padding_t;
195
196/**
Shawn Willdenfe6c4f02015-04-07 14:02:28 -0600197 * Digests provided by keymaster implementations.
Shawn Willden9d645a02014-06-12 13:48:46 -0600198 */
199typedef enum {
Shawn Willdenfe6c4f02015-04-07 14:02:28 -0600200 KM_DIGEST_NONE = 0,
201 KM_DIGEST_MD5 = 1, /* Optional, may not be implemented in hardware, will be handled in software
202 * if needed. */
203 KM_DIGEST_SHA1 = 2,
204 KM_DIGEST_SHA_2_224 = 3,
205 KM_DIGEST_SHA_2_256 = 4,
206 KM_DIGEST_SHA_2_384 = 5,
207 KM_DIGEST_SHA_2_512 = 6,
Shawn Willden9d645a02014-06-12 13:48:46 -0600208} keymaster_digest_t;
209
Thai Duong40d59c82015-04-02 21:41:37 -0700210/*
211 * Key derivation functions, mostly used in ECIES.
212 */
213typedef enum {
Shawn Willdencf30fe12015-12-21 16:29:10 -0700214 /* Do not apply a key derivation function; use the raw agreed key */
215 KM_KDF_NONE = 0,
Thai Duong40d59c82015-04-02 21:41:37 -0700216 /* HKDF defined in RFC 5869 with SHA256 */
Shawn Willdencf30fe12015-12-21 16:29:10 -0700217 KM_KDF_RFC5869_SHA256 = 1,
Thai Duong40d59c82015-04-02 21:41:37 -0700218 /* KDF1 defined in ISO 18033-2 with SHA1 */
Shawn Willdencf30fe12015-12-21 16:29:10 -0700219 KM_KDF_ISO18033_2_KDF1_SHA1 = 2,
Thai Duong40d59c82015-04-02 21:41:37 -0700220 /* KDF1 defined in ISO 18033-2 with SHA256 */
Shawn Willdencf30fe12015-12-21 16:29:10 -0700221 KM_KDF_ISO18033_2_KDF1_SHA256 = 3,
Thai Duong40d59c82015-04-02 21:41:37 -0700222 /* KDF2 defined in ISO 18033-2 with SHA1 */
Shawn Willdencf30fe12015-12-21 16:29:10 -0700223 KM_KDF_ISO18033_2_KDF2_SHA1 = 4,
Thai Duong40d59c82015-04-02 21:41:37 -0700224 /* KDF2 defined in ISO 18033-2 with SHA256 */
Shawn Willdencf30fe12015-12-21 16:29:10 -0700225 KM_KDF_ISO18033_2_KDF2_SHA256 = 5,
Thai Duong40d59c82015-04-02 21:41:37 -0700226} keymaster_kdf_t;
227
228/**
229 * Supported EC curves, used in ECDSA/ECIES.
230 */
231typedef enum {
232 KM_EC_CURVE_P_224 = 0,
233 KM_EC_CURVE_P_256 = 1,
234 KM_EC_CURVE_P_384 = 2,
235 KM_EC_CURVE_P_521 = 3,
236} keymaster_ec_curve_t;
237
Shawn Willden9d645a02014-06-12 13:48:46 -0600238/**
Shawn Willden8d6cf252015-04-07 13:56:30 -0600239 * The origin of a key (or pair), i.e. where it was generated. Note that KM_TAG_ORIGIN can be found
240 * in either the hardware-enforced or software-enforced list for a key, indicating whether the key
241 * is hardware or software-based. Specifically, a key with KM_ORIGIN_GENERATED in the
242 * hardware-enforced list is guaranteed never to have existed outide the secure hardware.
Shawn Willden9d645a02014-06-12 13:48:46 -0600243 */
244typedef enum {
Shawn Willdencf30fe12015-12-21 16:29:10 -0700245 KM_ORIGIN_GENERATED = 0, /* Generated in keymaster. Should not exist outside the TEE. */
246 KM_ORIGIN_DERIVED = 1, /* Derived inside keymaster. Likely exists off-device. */
247 KM_ORIGIN_IMPORTED = 2, /* Imported into keymaster. Existed as cleartext in Android. */
Shawn Willdend359b042015-04-13 11:07:24 -0600248 KM_ORIGIN_UNKNOWN = 3, /* Keymaster did not record origin. This value can only be seen on
249 * keys in a keymaster0 implementation. The keymaster0 adapter uses
250 * this value to document the fact that it is unkown whether the key
251 * was generated inside or imported into keymaster. */
Shawn Willden9d645a02014-06-12 13:48:46 -0600252} keymaster_key_origin_t;
253
254/**
255 * Usability requirements of key blobs. This defines what system functionality must be available
256 * for the key to function. For example, key "blobs" which are actually handles referencing
257 * encrypted key material stored in the file system cannot be used until the file system is
258 * available, and should have BLOB_REQUIRES_FILE_SYSTEM. Other requirements entries will be added
Shawn Willdencf30fe12015-12-21 16:29:10 -0700259 * as needed for implementations.
Shawn Willden9d645a02014-06-12 13:48:46 -0600260 */
261typedef enum {
262 KM_BLOB_STANDALONE = 0,
263 KM_BLOB_REQUIRES_FILE_SYSTEM = 1,
264} keymaster_key_blob_usage_requirements_t;
265
266/**
Shawn Willdencf30fe12015-12-21 16:29:10 -0700267 * Possible purposes of a key (or pair).
Shawn Willden9d645a02014-06-12 13:48:46 -0600268 */
269typedef enum {
Shawn Willdencf30fe12015-12-21 16:29:10 -0700270 KM_PURPOSE_ENCRYPT = 0, /* Usable with RSA, EC and AES keys. */
271 KM_PURPOSE_DECRYPT = 1, /* Usable with RSA, EC and AES keys. */
272 KM_PURPOSE_SIGN = 2, /* Usable with RSA, EC and HMAC keys. */
273 KM_PURPOSE_VERIFY = 3, /* Usable with RSA, EC and HMAC keys. */
274 KM_PURPOSE_DERIVE_KEY = 4, /* Usable with EC keys. */
Shawn Willden9d645a02014-06-12 13:48:46 -0600275} keymaster_purpose_t;
276
277typedef struct {
278 const uint8_t* data;
279 size_t data_length;
280} keymaster_blob_t;
281
282typedef struct {
283 keymaster_tag_t tag;
284 union {
285 uint32_t enumerated; /* KM_ENUM and KM_ENUM_REP */
286 bool boolean; /* KM_BOOL */
287 uint32_t integer; /* KM_INT and KM_INT_REP */
288 uint64_t long_integer; /* KM_LONG */
289 uint64_t date_time; /* KM_DATE */
290 keymaster_blob_t blob; /* KM_BIGNUM and KM_BYTES*/
291 };
292} keymaster_key_param_t;
293
294typedef struct {
295 keymaster_key_param_t* params; /* may be NULL if length == 0 */
296 size_t length;
297} keymaster_key_param_set_t;
298
299/**
300 * Parameters that define a key's characteristics, including authorized modes of usage and access
301 * control restrictions. The parameters are divided into two categories, those that are enforced by
302 * secure hardware, and those that are not. For a software-only keymaster implementation the
303 * enforced array must NULL. Hardware implementations must enforce everything in the enforced
304 * array.
305 */
306typedef struct {
307 keymaster_key_param_set_t hw_enforced;
308 keymaster_key_param_set_t sw_enforced;
309} keymaster_key_characteristics_t;
310
311typedef struct {
312 const uint8_t* key_material;
313 size_t key_material_size;
314} keymaster_key_blob_t;
315
Shawn Willdencf30fe12015-12-21 16:29:10 -0700316typedef struct {
317 keymaster_blob_t* entries;
318 size_t entry_count;
319} keymaster_cert_chain_t;
320
Shawn Willden9d645a02014-06-12 13:48:46 -0600321/**
Shawn Willdencf30fe12015-12-21 16:29:10 -0700322 * Formats for key import and export.
Shawn Willden9d645a02014-06-12 13:48:46 -0600323 */
324typedef enum {
Shawn Willdenfb769fc2015-05-11 09:24:48 -0600325 KM_KEY_FORMAT_X509 = 0, /* for public key export */
326 KM_KEY_FORMAT_PKCS8 = 1, /* for asymmetric key pair import */
Shawn Willdencf30fe12015-12-21 16:29:10 -0700327 KM_KEY_FORMAT_RAW = 3, /* for symmetric key import and export*/
Shawn Willden9d645a02014-06-12 13:48:46 -0600328} keymaster_key_format_t;
329
330/**
331 * The keymaster operation API consists of begin, update, finish and abort. This is the type of the
332 * handle used to tie the sequence of calls together. A 64-bit value is used because it's important
333 * that handles not be predictable. Implementations must use strong random numbers for handle
334 * values.
335 */
336typedef uint64_t keymaster_operation_handle_t;
337
338typedef enum {
339 KM_ERROR_OK = 0,
340 KM_ERROR_ROOT_OF_TRUST_ALREADY_SET = -1,
341 KM_ERROR_UNSUPPORTED_PURPOSE = -2,
342 KM_ERROR_INCOMPATIBLE_PURPOSE = -3,
343 KM_ERROR_UNSUPPORTED_ALGORITHM = -4,
344 KM_ERROR_INCOMPATIBLE_ALGORITHM = -5,
345 KM_ERROR_UNSUPPORTED_KEY_SIZE = -6,
346 KM_ERROR_UNSUPPORTED_BLOCK_MODE = -7,
347 KM_ERROR_INCOMPATIBLE_BLOCK_MODE = -8,
Shawn Willden6b424be2015-01-26 13:04:28 -0700348 KM_ERROR_UNSUPPORTED_MAC_LENGTH = -9,
Shawn Willden9d645a02014-06-12 13:48:46 -0600349 KM_ERROR_UNSUPPORTED_PADDING_MODE = -10,
350 KM_ERROR_INCOMPATIBLE_PADDING_MODE = -11,
351 KM_ERROR_UNSUPPORTED_DIGEST = -12,
352 KM_ERROR_INCOMPATIBLE_DIGEST = -13,
353 KM_ERROR_INVALID_EXPIRATION_TIME = -14,
354 KM_ERROR_INVALID_USER_ID = -15,
355 KM_ERROR_INVALID_AUTHORIZATION_TIMEOUT = -16,
356 KM_ERROR_UNSUPPORTED_KEY_FORMAT = -17,
357 KM_ERROR_INCOMPATIBLE_KEY_FORMAT = -18,
358 KM_ERROR_UNSUPPORTED_KEY_ENCRYPTION_ALGORITHM = -19, /* For PKCS8 & PKCS12 */
359 KM_ERROR_UNSUPPORTED_KEY_VERIFICATION_ALGORITHM = -20, /* For PKCS8 & PKCS12 */
360 KM_ERROR_INVALID_INPUT_LENGTH = -21,
361 KM_ERROR_KEY_EXPORT_OPTIONS_INVALID = -22,
362 KM_ERROR_DELEGATION_NOT_ALLOWED = -23,
363 KM_ERROR_KEY_NOT_YET_VALID = -24,
364 KM_ERROR_KEY_EXPIRED = -25,
365 KM_ERROR_KEY_USER_NOT_AUTHENTICATED = -26,
366 KM_ERROR_OUTPUT_PARAMETER_NULL = -27,
367 KM_ERROR_INVALID_OPERATION_HANDLE = -28,
368 KM_ERROR_INSUFFICIENT_BUFFER_SPACE = -29,
369 KM_ERROR_VERIFICATION_FAILED = -30,
370 KM_ERROR_TOO_MANY_OPERATIONS = -31,
371 KM_ERROR_UNEXPECTED_NULL_POINTER = -32,
372 KM_ERROR_INVALID_KEY_BLOB = -33,
373 KM_ERROR_IMPORTED_KEY_NOT_ENCRYPTED = -34,
374 KM_ERROR_IMPORTED_KEY_DECRYPTION_FAILED = -35,
375 KM_ERROR_IMPORTED_KEY_NOT_SIGNED = -36,
376 KM_ERROR_IMPORTED_KEY_VERIFICATION_FAILED = -37,
377 KM_ERROR_INVALID_ARGUMENT = -38,
378 KM_ERROR_UNSUPPORTED_TAG = -39,
379 KM_ERROR_INVALID_TAG = -40,
380 KM_ERROR_MEMORY_ALLOCATION_FAILED = -41,
Shawn Willden9d645a02014-06-12 13:48:46 -0600381 KM_ERROR_IMPORT_PARAMETER_MISMATCH = -44,
382 KM_ERROR_SECURE_HW_ACCESS_DENIED = -45,
383 KM_ERROR_OPERATION_CANCELLED = -46,
384 KM_ERROR_CONCURRENT_ACCESS_CONFLICT = -47,
385 KM_ERROR_SECURE_HW_BUSY = -48,
386 KM_ERROR_SECURE_HW_COMMUNICATION_FAILED = -49,
387 KM_ERROR_UNSUPPORTED_EC_FIELD = -50,
Shawn Willdened941112015-03-11 21:53:59 -0600388 KM_ERROR_MISSING_NONCE = -51,
389 KM_ERROR_INVALID_NONCE = -52,
Shawn Willden4144c642015-06-01 11:40:34 -0600390 KM_ERROR_MISSING_MAC_LENGTH = -53,
Shawn Willden396d6cb2015-06-18 12:16:17 -0600391 KM_ERROR_KEY_RATE_LIMIT_EXCEEDED = -54,
Shawn Willden4bdd7cb2015-04-28 00:00:27 -0600392 KM_ERROR_CALLER_NONCE_PROHIBITED = -55,
Shawn Willden396d6cb2015-06-18 12:16:17 -0600393 KM_ERROR_KEY_MAX_OPS_EXCEEDED = -56,
Shawn Willdena3f0ab52015-07-08 06:04:52 -0600394 KM_ERROR_INVALID_MAC_LENGTH = -57,
395 KM_ERROR_MISSING_MIN_MAC_LENGTH = -58,
396 KM_ERROR_UNSUPPORTED_MIN_MAC_LENGTH = -59,
Thai Duong40d59c82015-04-02 21:41:37 -0700397 KM_ERROR_UNSUPPORTED_KDF = -60,
398 KM_ERROR_UNSUPPORTED_EC_CURVE = -61,
Shawn Willdencf30fe12015-12-21 16:29:10 -0700399 KM_ERROR_KEY_REQUIRES_UPGRADE = -62,
Shawn Willdened941112015-03-11 21:53:59 -0600400
Shawn Willden9d645a02014-06-12 13:48:46 -0600401 KM_ERROR_UNIMPLEMENTED = -100,
402 KM_ERROR_VERSION_MISMATCH = -101,
403
Shawn Willden9d645a02014-06-12 13:48:46 -0600404 KM_ERROR_UNKNOWN_ERROR = -1000,
405} keymaster_error_t;
406
Shawn Willden9d645a02014-06-12 13:48:46 -0600407/* Convenience functions for manipulating keymaster tag types */
408
409static inline keymaster_tag_type_t keymaster_tag_get_type(keymaster_tag_t tag) {
410 return (keymaster_tag_type_t)(tag & (0xF << 28));
411}
412
413static inline uint32_t keymaster_tag_mask_type(keymaster_tag_t tag) {
414 return tag & 0x0FFFFFFF;
415}
416
417static inline bool keymaster_tag_type_repeatable(keymaster_tag_type_t type) {
418 switch (type) {
Shawn Willdenfe6bcfa2015-06-24 20:59:14 +0000419 case KM_UINT_REP:
Shawn Willden9d645a02014-06-12 13:48:46 -0600420 case KM_ENUM_REP:
421 return true;
422 default:
423 return false;
424 }
425}
426
427static inline bool keymaster_tag_repeatable(keymaster_tag_t tag) {
428 return keymaster_tag_type_repeatable(keymaster_tag_get_type(tag));
429}
430
431/* Convenience functions for manipulating keymaster_key_param_t structs */
432
433inline keymaster_key_param_t keymaster_param_enum(keymaster_tag_t tag, uint32_t value) {
434 // assert(keymaster_tag_get_type(tag) == KM_ENUM || keymaster_tag_get_type(tag) == KM_ENUM_REP);
435 keymaster_key_param_t param;
436 memset(&param, 0, sizeof(param));
437 param.tag = tag;
438 param.enumerated = value;
439 return param;
440}
441
442inline keymaster_key_param_t keymaster_param_int(keymaster_tag_t tag, uint32_t value) {
443 // assert(keymaster_tag_get_type(tag) == KM_INT || keymaster_tag_get_type(tag) == KM_INT_REP);
444 keymaster_key_param_t param;
445 memset(&param, 0, sizeof(param));
446 param.tag = tag;
447 param.integer = value;
448 return param;
449}
450
451inline keymaster_key_param_t keymaster_param_long(keymaster_tag_t tag, uint64_t value) {
452 // assert(keymaster_tag_get_type(tag) == KM_LONG);
453 keymaster_key_param_t param;
454 memset(&param, 0, sizeof(param));
455 param.tag = tag;
456 param.long_integer = value;
457 return param;
458}
459
460inline keymaster_key_param_t keymaster_param_blob(keymaster_tag_t tag, const uint8_t* bytes,
461 size_t bytes_len) {
462 // assert(keymaster_tag_get_type(tag) == KM_BYTES || keymaster_tag_get_type(tag) == KM_BIGNUM);
463 keymaster_key_param_t param;
464 memset(&param, 0, sizeof(param));
465 param.tag = tag;
466 param.blob.data = (uint8_t*)bytes;
467 param.blob.data_length = bytes_len;
468 return param;
469}
470
471inline keymaster_key_param_t keymaster_param_bool(keymaster_tag_t tag) {
472 // assert(keymaster_tag_get_type(tag) == KM_BOOL);
473 keymaster_key_param_t param;
474 memset(&param, 0, sizeof(param));
475 param.tag = tag;
476 param.boolean = true;
477 return param;
478}
479
480inline keymaster_key_param_t keymaster_param_date(keymaster_tag_t tag, uint64_t value) {
481 // assert(keymaster_tag_get_type(tag) == KM_DATE);
482 keymaster_key_param_t param;
483 memset(&param, 0, sizeof(param));
484 param.tag = tag;
485 param.date_time = value;
486 return param;
487}
488
Shawn Willden67411d62015-03-04 10:00:38 -0700489#define KEYMASTER_SIMPLE_COMPARE(a, b) (a < b) ? -1 : ((a > b) ? 1 : 0)
490inline int keymaster_param_compare(const keymaster_key_param_t* a, const keymaster_key_param_t* b) {
491 int retval = KEYMASTER_SIMPLE_COMPARE(a->tag, b->tag);
492 if (retval != 0)
493 return retval;
494
495 switch (keymaster_tag_get_type(a->tag)) {
496 case KM_INVALID:
497 case KM_BOOL:
498 return 0;
499 case KM_ENUM:
500 case KM_ENUM_REP:
501 return KEYMASTER_SIMPLE_COMPARE(a->enumerated, b->enumerated);
Shawn Willdenfe6bcfa2015-06-24 20:59:14 +0000502 case KM_UINT:
503 case KM_UINT_REP:
Shawn Willden67411d62015-03-04 10:00:38 -0700504 return KEYMASTER_SIMPLE_COMPARE(a->integer, b->integer);
Shawn Willdenfe6bcfa2015-06-24 20:59:14 +0000505 case KM_ULONG:
506 case KM_ULONG_REP:
Shawn Willden67411d62015-03-04 10:00:38 -0700507 return KEYMASTER_SIMPLE_COMPARE(a->long_integer, b->long_integer);
508 case KM_DATE:
509 return KEYMASTER_SIMPLE_COMPARE(a->date_time, b->date_time);
510 case KM_BIGNUM:
511 case KM_BYTES:
512 // Handle the empty cases.
513 if (a->blob.data_length != 0 && b->blob.data_length == 0)
514 return -1;
515 if (a->blob.data_length == 0 && b->blob.data_length == 0)
516 return 0;
517 if (a->blob.data_length == 0 && b->blob.data_length > 0)
518 return 1;
519
520 retval = memcmp(a->blob.data, b->blob.data, a->blob.data_length < b->blob.data_length
521 ? a->blob.data_length
522 : b->blob.data_length);
523 if (retval != 0)
524 return retval;
525 else if (a->blob.data_length != b->blob.data_length) {
526 // Equal up to the common length; longer one is larger.
527 if (a->blob.data_length < b->blob.data_length)
528 return -1;
529 if (a->blob.data_length > b->blob.data_length)
530 return 1;
531 };
532 }
533
534 return 0;
535}
536#undef KEYMASTER_SIMPLE_COMPARE
537
Shawn Willden9d645a02014-06-12 13:48:46 -0600538inline void keymaster_free_param_values(keymaster_key_param_t* param, size_t param_count) {
539 while (param_count-- > 0) {
540 switch (keymaster_tag_get_type(param->tag)) {
541 case KM_BIGNUM:
542 case KM_BYTES:
543 free((void*)param->blob.data);
544 param->blob.data = NULL;
545 break;
546 default:
547 // NOP
548 break;
549 }
550 ++param;
551 }
552}
553
554inline void keymaster_free_param_set(keymaster_key_param_set_t* set) {
555 if (set) {
556 keymaster_free_param_values(set->params, set->length);
557 free(set->params);
558 set->params = NULL;
559 }
560}
561
562inline void keymaster_free_characteristics(keymaster_key_characteristics_t* characteristics) {
563 if (characteristics) {
564 keymaster_free_param_set(&characteristics->hw_enforced);
565 keymaster_free_param_set(&characteristics->sw_enforced);
566 }
567}
568
Shawn Willdencf30fe12015-12-21 16:29:10 -0700569inline void keymaster_free_cert_chain(keymaster_cert_chain_t* chain) {
570 if (chain) {
571 for (size_t i = 0; i < chain->entry_count; ++i) {
572 free((uint8_t*)chain->entries[i].data);
573 chain->entries[i].data = NULL;
574 chain->entries[i].data_length = 0;
575 }
576 free(chain->entries);
577 chain->entries = NULL;
578 chain->entry_count = 0;
579 }
580}
581
Shawn Willden7eaa15f2015-06-03 09:03:20 -0600582#ifdef __cplusplus
Shawn Willdenc51d01e2015-03-18 18:59:52 -0600583} // extern "C"
584#endif // __cplusplus
Shawn Willden9d645a02014-06-12 13:48:46 -0600585
586#endif // ANDROID_HARDWARE_KEYMASTER_DEFS_H