blob: 77067d5328d9cd980d7c1246d02e186b2fed3131 [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. */
37 KM_INT = 3 << 28,
38 KM_INT_REP = 4 << 28, /* Repeatable integer value */
39 KM_LONG = 5 << 28,
40 KM_DATE = 6 << 28,
41 KM_BOOL = 7 << 28,
42 KM_BIGNUM = 8 << 28,
43 KM_BYTES = 9 << 28,
Shawn Willden4719aca2015-03-14 07:54:52 -060044 KM_LONG_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 Willden79d79342015-02-10 14:29:46 -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_INT | 3, /* Key size in bits. */
Shawn Willdenfe895d12015-02-25 17:33:40 -070058 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. */
Shawn Willden4144c642015-06-01 11:40:34 -060061 KM_TAG_CALLER_NONCE = KM_BOOL | 7, /* Allow caller to specify nonce or IV. */
Shawn Willden9d645a02014-06-12 13:48:46 -060062
Shawn Willden9d645a02014-06-12 13:48:46 -060063 /* Algorithm-specific. */
64 KM_TAG_RSA_PUBLIC_EXPONENT = KM_LONG | 200, /* Defaults to 2^16+1 */
Shawn Willden9d645a02014-06-12 13:48:46 -060065
Shawn Willdenfb769fc2015-05-11 09:24:48 -060066 /* Other hardware-enforced. */
67 KM_TAG_BLOB_USAGE_REQUIREMENTS = KM_ENUM | 301, /* keymaster_key_blob_usage_requirements_t */
68 KM_TAG_BOOTLOADER_ONLY = KM_BOOL | 302, /* Usable only by bootloader */
69
Shawn Willden9d645a02014-06-12 13:48:46 -060070 /*
71 * Tags that should be semantically enforced by hardware if possible and will otherwise be
72 * enforced by software (keystore).
73 */
74
75 /* Key validity period */
76 KM_TAG_ACTIVE_DATETIME = KM_DATE | 400, /* Start of validity */
77 KM_TAG_ORIGINATION_EXPIRE_DATETIME = KM_DATE | 401, /* Date when new "messages" should no
78 longer be created. */
79 KM_TAG_USAGE_EXPIRE_DATETIME = KM_DATE | 402, /* Date when existing "messages" should no
80 longer be trusted. */
81 KM_TAG_MIN_SECONDS_BETWEEN_OPS = KM_INT | 403, /* Minimum elapsed time between
82 cryptographic operations with the key. */
Shawn Willdendc0007b2015-01-23 01:01:21 -070083 KM_TAG_MAX_USES_PER_BOOT = KM_INT | 404, /* Number of times the key can be used per
84 boot. */
Shawn Willden9d645a02014-06-12 13:48:46 -060085
86 /* User authentication */
Shawn Willden4719aca2015-03-14 07:54:52 -060087 KM_TAG_ALL_USERS = KM_BOOL | 500, /* If key is usable by all users. */
88 KM_TAG_USER_ID = KM_INT | 501, /* ID of authorized user. Disallowed if
89 KM_TAG_ALL_USERS is present. */
90 KM_TAG_USER_SECURE_ID = KM_LONG_REP | 502, /* Secure ID of authorized user or authenticator(s).
91 Disallowed if KM_TAG_ALL_USERS or
92 KM_TAG_NO_AUTH_REQUIRED is present. */
93 KM_TAG_NO_AUTH_REQUIRED = KM_BOOL | 503, /* If key is usable without authentication. */
94 KM_TAG_USER_AUTH_TYPE = KM_ENUM | 504, /* Bitmask of authenticator types allowed when
95 * KM_TAG_USER_SECURE_ID contains a secure user ID,
96 * rather than a secure authenticator ID. Defined in
97 * hw_authenticator_type_t in hw_auth_token.h. */
98 KM_TAG_AUTH_TIMEOUT = KM_INT | 505, /* Required freshness of user authentication for
99 private/secret key operations, in seconds.
100 Public key operations require no authentication.
101 If absent, authentication is required for every
102 use. Authentication state is lost when the
103 device is powered off. */
Shawn Willden9d645a02014-06-12 13:48:46 -0600104
105 /* Application access control */
106 KM_TAG_ALL_APPLICATIONS = KM_BOOL | 600, /* If key is usable by all applications. */
107 KM_TAG_APPLICATION_ID = KM_BYTES | 601, /* ID of authorized application. Disallowed if
108 KM_TAG_ALL_APPLICATIONS is present. */
109
110 /*
111 * Semantically unenforceable tags, either because they have no specific meaning or because
112 * they're informational only.
113 */
114 KM_TAG_APPLICATION_DATA = KM_BYTES | 700, /* Data provided by authorized application. */
115 KM_TAG_CREATION_DATETIME = KM_DATE | 701, /* Key creation time */
116 KM_TAG_ORIGIN = KM_ENUM | 702, /* keymaster_key_origin_t. */
117 KM_TAG_ROLLBACK_RESISTANT = KM_BOOL | 703, /* Whether key is rollback-resistant. */
118 KM_TAG_ROOT_OF_TRUST = KM_BYTES | 704, /* Root of trust ID. Empty array means usable by all
119 roots. */
120
Shawn Willden67ba9e82015-02-06 17:04:53 -0700121 /* Tags used only to provide data to or receive data from operations */
122 KM_TAG_ASSOCIATED_DATA = KM_BYTES | 1000, /* Used to provide associated data for AEAD modes. */
Shawn Willden41e91e92015-01-30 06:23:26 -0700123 KM_TAG_NONCE = KM_BYTES | 1001, /* Nonce or Initialization Vector */
Shawn Willden4144c642015-06-01 11:40:34 -0600124 KM_TAG_AEAD_TAG = KM_BYTES | 1002, /* AEAD tag data. Returned from finish() during AEAD
125 * encryption and provided to begin() during AEAD
126 * decryption.*/
Shawn Willdenc3ab05c2015-03-14 08:23:41 -0600127 KM_TAG_AUTH_TOKEN = KM_BYTES | 1003, /* Authentication token that proves secure user
128 authentication has been performed. Structure
129 defined in hw_auth_token_t in hw_auth_token.h. */
Shawn Willdenfe895d12015-02-25 17:33:40 -0700130 KM_TAG_MAC_LENGTH = KM_INT | 1004, /* MAC or AEAD authentication tag length in bits. */
Shawn Willden9d645a02014-06-12 13:48:46 -0600131} keymaster_tag_t;
132
133/**
134 * Algorithms that may be provided by keymaster implementations. Those that must be provided by all
Shawn Willdenfd4b4d52015-02-24 09:17:38 -0700135 * implementations are tagged as "required".
Shawn Willden9d645a02014-06-12 13:48:46 -0600136 */
137typedef enum {
138 /* Asymmetric algorithms. */
Shawn Willdene9797a72015-04-07 13:39:12 -0600139 KM_ALGORITHM_RSA = 1,
140 // KM_ALGORITHM_DSA = 2, -- Removed, do not re-use value 2.
141 KM_ALGORITHM_EC = 3,
142
143 /* Block ciphers algorithms */
144 KM_ALGORITHM_AES = 32,
145
Shawn Willden9d645a02014-06-12 13:48:46 -0600146 /* MAC algorithms */
Shawn Willdene9797a72015-04-07 13:39:12 -0600147 KM_ALGORITHM_HMAC = 128,
Shawn Willden9d645a02014-06-12 13:48:46 -0600148} keymaster_algorithm_t;
149
150/**
Shawn Willdenc7deeda2015-04-07 13:40:00 -0600151 * Symmetric block cipher modes provided by keymaster implementations.
Shawn Willden9d645a02014-06-12 13:48:46 -0600152 */
153typedef enum {
154 /* Unauthenticated modes, usable only for encryption/decryption and not generally recommended
155 * except for compatibility with existing other protocols. */
Shawn Willden4c19a3a2015-06-01 11:40:24 -0600156 KM_MODE_ECB = 1,
Shawn Willdenc7deeda2015-04-07 13:40:00 -0600157 KM_MODE_CBC = 2,
Shawn Willden4c19a3a2015-06-01 11:40:24 -0600158 KM_MODE_CTR = 3,
Shawn Willdenc7deeda2015-04-07 13:40:00 -0600159
Shawn Willden9d645a02014-06-12 13:48:46 -0600160 /* Authenticated modes, usable for encryption/decryption and signing/verification. Recommended
Shawn Willdenc7deeda2015-04-07 13:40:00 -0600161 * over unauthenticated modes for all purposes. */
Shawn Willden4c19a3a2015-06-01 11:40:24 -0600162 KM_MODE_GCM = 32,
Shawn Willden9d645a02014-06-12 13:48:46 -0600163} keymaster_block_mode_t;
164
165/**
166 * Padding modes that may be applied to plaintext for encryption operations. This list includes
167 * padding modes for both symmetric and asymmetric algorithms. Note that implementations should not
168 * provide all possible combinations of algorithm and padding, only the
169 * cryptographically-appropriate pairs.
170 */
171typedef enum {
Shawn Willden8412fdc2015-04-07 13:41:30 -0600172 KM_PAD_NONE = 1, /* deprecated */
173 KM_PAD_RSA_OAEP = 2,
174 KM_PAD_RSA_PSS = 3,
Shawn Willden9d645a02014-06-12 13:48:46 -0600175 KM_PAD_RSA_PKCS1_1_5_ENCRYPT = 4,
176 KM_PAD_RSA_PKCS1_1_5_SIGN = 5,
Shawn Willden8412fdc2015-04-07 13:41:30 -0600177 KM_PAD_PKCS7 = 64,
Shawn Willden9d645a02014-06-12 13:48:46 -0600178} keymaster_padding_t;
179
180/**
Shawn Willdenfe6c4f02015-04-07 14:02:28 -0600181 * Digests provided by keymaster implementations.
Shawn Willden9d645a02014-06-12 13:48:46 -0600182 */
183typedef enum {
Shawn Willdenfe6c4f02015-04-07 14:02:28 -0600184 KM_DIGEST_NONE = 0,
185 KM_DIGEST_MD5 = 1, /* Optional, may not be implemented in hardware, will be handled in software
186 * if needed. */
187 KM_DIGEST_SHA1 = 2,
188 KM_DIGEST_SHA_2_224 = 3,
189 KM_DIGEST_SHA_2_256 = 4,
190 KM_DIGEST_SHA_2_384 = 5,
191 KM_DIGEST_SHA_2_512 = 6,
Shawn Willden9d645a02014-06-12 13:48:46 -0600192} keymaster_digest_t;
193
194/**
Shawn Willden8d6cf252015-04-07 13:56:30 -0600195 * The origin of a key (or pair), i.e. where it was generated. Note that KM_TAG_ORIGIN can be found
196 * in either the hardware-enforced or software-enforced list for a key, indicating whether the key
197 * is hardware or software-based. Specifically, a key with KM_ORIGIN_GENERATED in the
198 * hardware-enforced list is guaranteed never to have existed outide the secure hardware.
Shawn Willden9d645a02014-06-12 13:48:46 -0600199 */
200typedef enum {
Shawn Willden8d6cf252015-04-07 13:56:30 -0600201 KM_ORIGIN_GENERATED = 0, /* Generated in keymaster */
Shawn Willdend359b042015-04-13 11:07:24 -0600202 KM_ORIGIN_IMPORTED = 2, /* Imported, origin unknown */
203 KM_ORIGIN_UNKNOWN = 3, /* Keymaster did not record origin. This value can only be seen on
204 * keys in a keymaster0 implementation. The keymaster0 adapter uses
205 * this value to document the fact that it is unkown whether the key
206 * was generated inside or imported into keymaster. */
Shawn Willden9d645a02014-06-12 13:48:46 -0600207} keymaster_key_origin_t;
208
209/**
210 * Usability requirements of key blobs. This defines what system functionality must be available
211 * for the key to function. For example, key "blobs" which are actually handles referencing
212 * encrypted key material stored in the file system cannot be used until the file system is
213 * available, and should have BLOB_REQUIRES_FILE_SYSTEM. Other requirements entries will be added
214 * as needed for implementations. This type is new in 0_4.
215 */
216typedef enum {
217 KM_BLOB_STANDALONE = 0,
218 KM_BLOB_REQUIRES_FILE_SYSTEM = 1,
219} keymaster_key_blob_usage_requirements_t;
220
221/**
222 * Possible purposes of a key (or pair). This type is new in 0_4.
223 */
224typedef enum {
225 KM_PURPOSE_ENCRYPT = 0,
226 KM_PURPOSE_DECRYPT = 1,
227 KM_PURPOSE_SIGN = 2,
228 KM_PURPOSE_VERIFY = 3,
229} keymaster_purpose_t;
230
231typedef struct {
232 const uint8_t* data;
233 size_t data_length;
234} keymaster_blob_t;
235
236typedef struct {
237 keymaster_tag_t tag;
238 union {
239 uint32_t enumerated; /* KM_ENUM and KM_ENUM_REP */
240 bool boolean; /* KM_BOOL */
241 uint32_t integer; /* KM_INT and KM_INT_REP */
242 uint64_t long_integer; /* KM_LONG */
243 uint64_t date_time; /* KM_DATE */
244 keymaster_blob_t blob; /* KM_BIGNUM and KM_BYTES*/
245 };
246} keymaster_key_param_t;
247
248typedef struct {
249 keymaster_key_param_t* params; /* may be NULL if length == 0 */
250 size_t length;
251} keymaster_key_param_set_t;
252
253/**
254 * Parameters that define a key's characteristics, including authorized modes of usage and access
255 * control restrictions. The parameters are divided into two categories, those that are enforced by
256 * secure hardware, and those that are not. For a software-only keymaster implementation the
257 * enforced array must NULL. Hardware implementations must enforce everything in the enforced
258 * array.
259 */
260typedef struct {
261 keymaster_key_param_set_t hw_enforced;
262 keymaster_key_param_set_t sw_enforced;
263} keymaster_key_characteristics_t;
264
265typedef struct {
266 const uint8_t* key_material;
267 size_t key_material_size;
268} keymaster_key_blob_t;
269
270/**
271 * Formats for key import and export. At present, only asymmetric key import/export is supported.
272 * In the future this list will expand greatly to accommodate asymmetric key import/export.
273 */
274typedef enum {
Shawn Willdenfb769fc2015-05-11 09:24:48 -0600275 KM_KEY_FORMAT_X509 = 0, /* for public key export */
276 KM_KEY_FORMAT_PKCS8 = 1, /* for asymmetric key pair import */
277 KM_KEY_FORMAT_RAW = 3, /* for symmetric key import */
Shawn Willden9d645a02014-06-12 13:48:46 -0600278} keymaster_key_format_t;
279
280/**
281 * The keymaster operation API consists of begin, update, finish and abort. This is the type of the
282 * handle used to tie the sequence of calls together. A 64-bit value is used because it's important
283 * that handles not be predictable. Implementations must use strong random numbers for handle
284 * values.
285 */
286typedef uint64_t keymaster_operation_handle_t;
287
288typedef enum {
289 KM_ERROR_OK = 0,
290 KM_ERROR_ROOT_OF_TRUST_ALREADY_SET = -1,
291 KM_ERROR_UNSUPPORTED_PURPOSE = -2,
292 KM_ERROR_INCOMPATIBLE_PURPOSE = -3,
293 KM_ERROR_UNSUPPORTED_ALGORITHM = -4,
294 KM_ERROR_INCOMPATIBLE_ALGORITHM = -5,
295 KM_ERROR_UNSUPPORTED_KEY_SIZE = -6,
296 KM_ERROR_UNSUPPORTED_BLOCK_MODE = -7,
297 KM_ERROR_INCOMPATIBLE_BLOCK_MODE = -8,
Shawn Willden6b424be2015-01-26 13:04:28 -0700298 KM_ERROR_UNSUPPORTED_MAC_LENGTH = -9,
Shawn Willden9d645a02014-06-12 13:48:46 -0600299 KM_ERROR_UNSUPPORTED_PADDING_MODE = -10,
300 KM_ERROR_INCOMPATIBLE_PADDING_MODE = -11,
301 KM_ERROR_UNSUPPORTED_DIGEST = -12,
302 KM_ERROR_INCOMPATIBLE_DIGEST = -13,
303 KM_ERROR_INVALID_EXPIRATION_TIME = -14,
304 KM_ERROR_INVALID_USER_ID = -15,
305 KM_ERROR_INVALID_AUTHORIZATION_TIMEOUT = -16,
306 KM_ERROR_UNSUPPORTED_KEY_FORMAT = -17,
307 KM_ERROR_INCOMPATIBLE_KEY_FORMAT = -18,
308 KM_ERROR_UNSUPPORTED_KEY_ENCRYPTION_ALGORITHM = -19, /* For PKCS8 & PKCS12 */
309 KM_ERROR_UNSUPPORTED_KEY_VERIFICATION_ALGORITHM = -20, /* For PKCS8 & PKCS12 */
310 KM_ERROR_INVALID_INPUT_LENGTH = -21,
311 KM_ERROR_KEY_EXPORT_OPTIONS_INVALID = -22,
312 KM_ERROR_DELEGATION_NOT_ALLOWED = -23,
313 KM_ERROR_KEY_NOT_YET_VALID = -24,
314 KM_ERROR_KEY_EXPIRED = -25,
315 KM_ERROR_KEY_USER_NOT_AUTHENTICATED = -26,
316 KM_ERROR_OUTPUT_PARAMETER_NULL = -27,
317 KM_ERROR_INVALID_OPERATION_HANDLE = -28,
318 KM_ERROR_INSUFFICIENT_BUFFER_SPACE = -29,
319 KM_ERROR_VERIFICATION_FAILED = -30,
320 KM_ERROR_TOO_MANY_OPERATIONS = -31,
321 KM_ERROR_UNEXPECTED_NULL_POINTER = -32,
322 KM_ERROR_INVALID_KEY_BLOB = -33,
323 KM_ERROR_IMPORTED_KEY_NOT_ENCRYPTED = -34,
324 KM_ERROR_IMPORTED_KEY_DECRYPTION_FAILED = -35,
325 KM_ERROR_IMPORTED_KEY_NOT_SIGNED = -36,
326 KM_ERROR_IMPORTED_KEY_VERIFICATION_FAILED = -37,
327 KM_ERROR_INVALID_ARGUMENT = -38,
328 KM_ERROR_UNSUPPORTED_TAG = -39,
329 KM_ERROR_INVALID_TAG = -40,
330 KM_ERROR_MEMORY_ALLOCATION_FAILED = -41,
Shawn Willden9d645a02014-06-12 13:48:46 -0600331 KM_ERROR_IMPORT_PARAMETER_MISMATCH = -44,
332 KM_ERROR_SECURE_HW_ACCESS_DENIED = -45,
333 KM_ERROR_OPERATION_CANCELLED = -46,
334 KM_ERROR_CONCURRENT_ACCESS_CONFLICT = -47,
335 KM_ERROR_SECURE_HW_BUSY = -48,
336 KM_ERROR_SECURE_HW_COMMUNICATION_FAILED = -49,
337 KM_ERROR_UNSUPPORTED_EC_FIELD = -50,
Shawn Willdened941112015-03-11 21:53:59 -0600338 KM_ERROR_MISSING_NONCE = -51,
339 KM_ERROR_INVALID_NONCE = -52,
Shawn Willden4144c642015-06-01 11:40:34 -0600340 KM_ERROR_MISSING_MAC_LENGTH = -53,
Shawn Willden4bdd7cb2015-04-28 00:00:27 -0600341 KM_ERROR_CALLER_NONCE_PROHIBITED = -55,
Shawn Willdened941112015-03-11 21:53:59 -0600342
Shawn Willden9d645a02014-06-12 13:48:46 -0600343 KM_ERROR_UNIMPLEMENTED = -100,
344 KM_ERROR_VERSION_MISMATCH = -101,
345
346 /* Additional error codes may be added by implementations, but implementers should coordinate
347 * with Google to avoid code collision. */
348 KM_ERROR_UNKNOWN_ERROR = -1000,
349} keymaster_error_t;
350
Shawn Willden9d645a02014-06-12 13:48:46 -0600351/* Convenience functions for manipulating keymaster tag types */
352
353static inline keymaster_tag_type_t keymaster_tag_get_type(keymaster_tag_t tag) {
354 return (keymaster_tag_type_t)(tag & (0xF << 28));
355}
356
357static inline uint32_t keymaster_tag_mask_type(keymaster_tag_t tag) {
358 return tag & 0x0FFFFFFF;
359}
360
361static inline bool keymaster_tag_type_repeatable(keymaster_tag_type_t type) {
362 switch (type) {
363 case KM_INT_REP:
364 case KM_ENUM_REP:
365 return true;
366 default:
367 return false;
368 }
369}
370
371static inline bool keymaster_tag_repeatable(keymaster_tag_t tag) {
372 return keymaster_tag_type_repeatable(keymaster_tag_get_type(tag));
373}
374
375/* Convenience functions for manipulating keymaster_key_param_t structs */
376
377inline keymaster_key_param_t keymaster_param_enum(keymaster_tag_t tag, uint32_t value) {
378 // assert(keymaster_tag_get_type(tag) == KM_ENUM || keymaster_tag_get_type(tag) == KM_ENUM_REP);
379 keymaster_key_param_t param;
380 memset(&param, 0, sizeof(param));
381 param.tag = tag;
382 param.enumerated = value;
383 return param;
384}
385
386inline keymaster_key_param_t keymaster_param_int(keymaster_tag_t tag, uint32_t value) {
387 // assert(keymaster_tag_get_type(tag) == KM_INT || keymaster_tag_get_type(tag) == KM_INT_REP);
388 keymaster_key_param_t param;
389 memset(&param, 0, sizeof(param));
390 param.tag = tag;
391 param.integer = value;
392 return param;
393}
394
395inline keymaster_key_param_t keymaster_param_long(keymaster_tag_t tag, uint64_t value) {
396 // assert(keymaster_tag_get_type(tag) == KM_LONG);
397 keymaster_key_param_t param;
398 memset(&param, 0, sizeof(param));
399 param.tag = tag;
400 param.long_integer = value;
401 return param;
402}
403
404inline keymaster_key_param_t keymaster_param_blob(keymaster_tag_t tag, const uint8_t* bytes,
405 size_t bytes_len) {
406 // assert(keymaster_tag_get_type(tag) == KM_BYTES || keymaster_tag_get_type(tag) == KM_BIGNUM);
407 keymaster_key_param_t param;
408 memset(&param, 0, sizeof(param));
409 param.tag = tag;
410 param.blob.data = (uint8_t*)bytes;
411 param.blob.data_length = bytes_len;
412 return param;
413}
414
415inline keymaster_key_param_t keymaster_param_bool(keymaster_tag_t tag) {
416 // assert(keymaster_tag_get_type(tag) == KM_BOOL);
417 keymaster_key_param_t param;
418 memset(&param, 0, sizeof(param));
419 param.tag = tag;
420 param.boolean = true;
421 return param;
422}
423
424inline keymaster_key_param_t keymaster_param_date(keymaster_tag_t tag, uint64_t value) {
425 // assert(keymaster_tag_get_type(tag) == KM_DATE);
426 keymaster_key_param_t param;
427 memset(&param, 0, sizeof(param));
428 param.tag = tag;
429 param.date_time = value;
430 return param;
431}
432
Shawn Willden67411d62015-03-04 10:00:38 -0700433#define KEYMASTER_SIMPLE_COMPARE(a, b) (a < b) ? -1 : ((a > b) ? 1 : 0)
434inline int keymaster_param_compare(const keymaster_key_param_t* a, const keymaster_key_param_t* b) {
435 int retval = KEYMASTER_SIMPLE_COMPARE(a->tag, b->tag);
436 if (retval != 0)
437 return retval;
438
439 switch (keymaster_tag_get_type(a->tag)) {
440 case KM_INVALID:
441 case KM_BOOL:
442 return 0;
443 case KM_ENUM:
444 case KM_ENUM_REP:
445 return KEYMASTER_SIMPLE_COMPARE(a->enumerated, b->enumerated);
446 case KM_INT:
447 case KM_INT_REP:
448 return KEYMASTER_SIMPLE_COMPARE(a->integer, b->integer);
449 case KM_LONG:
Shawn Willden4719aca2015-03-14 07:54:52 -0600450 case KM_LONG_REP:
Shawn Willden67411d62015-03-04 10:00:38 -0700451 return KEYMASTER_SIMPLE_COMPARE(a->long_integer, b->long_integer);
452 case KM_DATE:
453 return KEYMASTER_SIMPLE_COMPARE(a->date_time, b->date_time);
454 case KM_BIGNUM:
455 case KM_BYTES:
456 // Handle the empty cases.
457 if (a->blob.data_length != 0 && b->blob.data_length == 0)
458 return -1;
459 if (a->blob.data_length == 0 && b->blob.data_length == 0)
460 return 0;
461 if (a->blob.data_length == 0 && b->blob.data_length > 0)
462 return 1;
463
464 retval = memcmp(a->blob.data, b->blob.data, a->blob.data_length < b->blob.data_length
465 ? a->blob.data_length
466 : b->blob.data_length);
467 if (retval != 0)
468 return retval;
469 else if (a->blob.data_length != b->blob.data_length) {
470 // Equal up to the common length; longer one is larger.
471 if (a->blob.data_length < b->blob.data_length)
472 return -1;
473 if (a->blob.data_length > b->blob.data_length)
474 return 1;
475 };
476 }
477
478 return 0;
479}
480#undef KEYMASTER_SIMPLE_COMPARE
481
Shawn Willden9d645a02014-06-12 13:48:46 -0600482inline void keymaster_free_param_values(keymaster_key_param_t* param, size_t param_count) {
483 while (param_count-- > 0) {
484 switch (keymaster_tag_get_type(param->tag)) {
485 case KM_BIGNUM:
486 case KM_BYTES:
487 free((void*)param->blob.data);
488 param->blob.data = NULL;
489 break;
490 default:
491 // NOP
492 break;
493 }
494 ++param;
495 }
496}
497
498inline void keymaster_free_param_set(keymaster_key_param_set_t* set) {
499 if (set) {
500 keymaster_free_param_values(set->params, set->length);
501 free(set->params);
502 set->params = NULL;
503 }
504}
505
506inline void keymaster_free_characteristics(keymaster_key_characteristics_t* characteristics) {
507 if (characteristics) {
508 keymaster_free_param_set(&characteristics->hw_enforced);
509 keymaster_free_param_set(&characteristics->sw_enforced);
510 }
511}
512
Shawn Willden7eaa15f2015-06-03 09:03:20 -0600513#ifdef __cplusplus
Shawn Willdenc51d01e2015-03-18 18:59:52 -0600514} // extern "C"
515#endif // __cplusplus
Shawn Willden9d645a02014-06-12 13:48:46 -0600516
517#endif // ANDROID_HARDWARE_KEYMASTER_DEFS_H