xref: /optee_os/lib/libmbedtls/mbedtls/library/pk_internal.h (revision b0563631928755fe864b97785160fb3088e9efdc)
1*b0563631STom Van Eyck /**
2*b0563631STom Van Eyck  * \file pk_internal.h
3*b0563631STom Van Eyck  *
4*b0563631STom Van Eyck  * \brief Public Key abstraction layer: internal (i.e. library only) functions
5*b0563631STom Van Eyck  *        and definitions.
6*b0563631STom Van Eyck  */
7*b0563631STom Van Eyck /*
8*b0563631STom Van Eyck  *  Copyright The Mbed TLS Contributors
9*b0563631STom Van Eyck  *  SPDX-License-Identifier: Apache-2.0 OR GPL-2.0-or-later
10*b0563631STom Van Eyck  */
11*b0563631STom Van Eyck #ifndef MBEDTLS_PK_INTERNAL_H
12*b0563631STom Van Eyck #define MBEDTLS_PK_INTERNAL_H
13*b0563631STom Van Eyck 
14*b0563631STom Van Eyck #include "mbedtls/pk.h"
15*b0563631STom Van Eyck 
16*b0563631STom Van Eyck #if defined(MBEDTLS_PK_HAVE_ECC_KEYS)
17*b0563631STom Van Eyck #include "mbedtls/ecp.h"
18*b0563631STom Van Eyck #endif
19*b0563631STom Van Eyck 
20*b0563631STom Van Eyck #if defined(MBEDTLS_PSA_CRYPTO_CLIENT)
21*b0563631STom Van Eyck #include "psa/crypto.h"
22*b0563631STom Van Eyck 
23*b0563631STom Van Eyck #include "psa_util_internal.h"
24*b0563631STom Van Eyck #define PSA_PK_TO_MBEDTLS_ERR(status) psa_pk_status_to_mbedtls(status)
25*b0563631STom Van Eyck #define PSA_PK_RSA_TO_MBEDTLS_ERR(status) PSA_TO_MBEDTLS_ERR_LIST(status,     \
26*b0563631STom Van Eyck                                                                   psa_to_pk_rsa_errors,            \
27*b0563631STom Van Eyck                                                                   psa_pk_status_to_mbedtls)
28*b0563631STom Van Eyck #define PSA_PK_ECDSA_TO_MBEDTLS_ERR(status) PSA_TO_MBEDTLS_ERR_LIST(status,   \
29*b0563631STom Van Eyck                                                                     psa_to_pk_ecdsa_errors,        \
30*b0563631STom Van Eyck                                                                     psa_pk_status_to_mbedtls)
31*b0563631STom Van Eyck #endif /* MBEDTLS_PSA_CRYPTO_CLIENT */
32*b0563631STom Van Eyck 
33*b0563631STom Van Eyck /* Headers/footers for PEM files */
34*b0563631STom Van Eyck #define PEM_BEGIN_PUBLIC_KEY    "-----BEGIN PUBLIC KEY-----"
35*b0563631STom Van Eyck #define PEM_END_PUBLIC_KEY      "-----END PUBLIC KEY-----"
36*b0563631STom Van Eyck #define PEM_BEGIN_PRIVATE_KEY_RSA   "-----BEGIN RSA PRIVATE KEY-----"
37*b0563631STom Van Eyck #define PEM_END_PRIVATE_KEY_RSA     "-----END RSA PRIVATE KEY-----"
38*b0563631STom Van Eyck #define PEM_BEGIN_PUBLIC_KEY_RSA     "-----BEGIN RSA PUBLIC KEY-----"
39*b0563631STom Van Eyck #define PEM_END_PUBLIC_KEY_RSA     "-----END RSA PUBLIC KEY-----"
40*b0563631STom Van Eyck #define PEM_BEGIN_PRIVATE_KEY_EC    "-----BEGIN EC PRIVATE KEY-----"
41*b0563631STom Van Eyck #define PEM_END_PRIVATE_KEY_EC      "-----END EC PRIVATE KEY-----"
42*b0563631STom Van Eyck #define PEM_BEGIN_PRIVATE_KEY_PKCS8 "-----BEGIN PRIVATE KEY-----"
43*b0563631STom Van Eyck #define PEM_END_PRIVATE_KEY_PKCS8   "-----END PRIVATE KEY-----"
44*b0563631STom Van Eyck #define PEM_BEGIN_ENCRYPTED_PRIVATE_KEY_PKCS8 "-----BEGIN ENCRYPTED PRIVATE KEY-----"
45*b0563631STom Van Eyck #define PEM_END_ENCRYPTED_PRIVATE_KEY_PKCS8   "-----END ENCRYPTED PRIVATE KEY-----"
46*b0563631STom Van Eyck 
47*b0563631STom Van Eyck #if defined(MBEDTLS_PK_HAVE_ECC_KEYS) && !defined(MBEDTLS_PK_USE_PSA_EC_DATA)
48*b0563631STom Van Eyck /**
49*b0563631STom Van Eyck  * Public function mbedtls_pk_ec() can be used to get direct access to the
50*b0563631STom Van Eyck  * wrapped ecp_keypair structure pointed to the pk_ctx. However this is not
51*b0563631STom Van Eyck  * ideal because it bypasses the PK module on the control of its internal
52*b0563631STom Van Eyck  * structure (pk_context) fields.
53*b0563631STom Van Eyck  * For backward compatibility we keep mbedtls_pk_ec() when ECP_C is defined, but
54*b0563631STom Van Eyck  * we provide 2 very similar functions when only ECP_LIGHT is enabled and not
55*b0563631STom Van Eyck  * ECP_C.
56*b0563631STom Van Eyck  * These variants embed the "ro" or "rw" keywords in their name to make the
57*b0563631STom Van Eyck  * usage of the returned pointer explicit. Of course the returned value is
58*b0563631STom Van Eyck  * const or non-const accordingly.
59*b0563631STom Van Eyck  */
mbedtls_pk_ec_ro(const mbedtls_pk_context pk)60*b0563631STom Van Eyck static inline const mbedtls_ecp_keypair *mbedtls_pk_ec_ro(const mbedtls_pk_context pk)
61*b0563631STom Van Eyck {
62*b0563631STom Van Eyck     switch (mbedtls_pk_get_type(&pk)) {
63*b0563631STom Van Eyck         case MBEDTLS_PK_ECKEY:
64*b0563631STom Van Eyck         case MBEDTLS_PK_ECKEY_DH:
65*b0563631STom Van Eyck         case MBEDTLS_PK_ECDSA:
66*b0563631STom Van Eyck             return (const mbedtls_ecp_keypair *) (pk).MBEDTLS_PRIVATE(pk_ctx);
67*b0563631STom Van Eyck         default:
68*b0563631STom Van Eyck             return NULL;
69*b0563631STom Van Eyck     }
70*b0563631STom Van Eyck }
71*b0563631STom Van Eyck 
mbedtls_pk_ec_rw(const mbedtls_pk_context pk)72*b0563631STom Van Eyck static inline mbedtls_ecp_keypair *mbedtls_pk_ec_rw(const mbedtls_pk_context pk)
73*b0563631STom Van Eyck {
74*b0563631STom Van Eyck     switch (mbedtls_pk_get_type(&pk)) {
75*b0563631STom Van Eyck         case MBEDTLS_PK_ECKEY:
76*b0563631STom Van Eyck         case MBEDTLS_PK_ECKEY_DH:
77*b0563631STom Van Eyck         case MBEDTLS_PK_ECDSA:
78*b0563631STom Van Eyck             return (mbedtls_ecp_keypair *) (pk).MBEDTLS_PRIVATE(pk_ctx);
79*b0563631STom Van Eyck         default:
80*b0563631STom Van Eyck             return NULL;
81*b0563631STom Van Eyck     }
82*b0563631STom Van Eyck }
83*b0563631STom Van Eyck #endif /* MBEDTLS_PK_HAVE_ECC_KEYS && !MBEDTLS_PK_USE_PSA_EC_DATA */
84*b0563631STom Van Eyck 
85*b0563631STom Van Eyck #if defined(MBEDTLS_PK_HAVE_ECC_KEYS)
mbedtls_pk_get_ec_group_id(const mbedtls_pk_context * pk)86*b0563631STom Van Eyck static inline mbedtls_ecp_group_id mbedtls_pk_get_ec_group_id(const mbedtls_pk_context *pk)
87*b0563631STom Van Eyck {
88*b0563631STom Van Eyck     mbedtls_ecp_group_id id;
89*b0563631STom Van Eyck 
90*b0563631STom Van Eyck #if defined(MBEDTLS_USE_PSA_CRYPTO)
91*b0563631STom Van Eyck     if (mbedtls_pk_get_type(pk) == MBEDTLS_PK_OPAQUE) {
92*b0563631STom Van Eyck         psa_key_attributes_t opaque_attrs = PSA_KEY_ATTRIBUTES_INIT;
93*b0563631STom Van Eyck         psa_key_type_t opaque_key_type;
94*b0563631STom Van Eyck         psa_ecc_family_t curve;
95*b0563631STom Van Eyck 
96*b0563631STom Van Eyck         if (psa_get_key_attributes(pk->priv_id, &opaque_attrs) != PSA_SUCCESS) {
97*b0563631STom Van Eyck             return MBEDTLS_ECP_DP_NONE;
98*b0563631STom Van Eyck         }
99*b0563631STom Van Eyck         opaque_key_type = psa_get_key_type(&opaque_attrs);
100*b0563631STom Van Eyck         curve = PSA_KEY_TYPE_ECC_GET_FAMILY(opaque_key_type);
101*b0563631STom Van Eyck         id = mbedtls_ecc_group_from_psa(curve, psa_get_key_bits(&opaque_attrs));
102*b0563631STom Van Eyck         psa_reset_key_attributes(&opaque_attrs);
103*b0563631STom Van Eyck     } else
104*b0563631STom Van Eyck #endif /* MBEDTLS_USE_PSA_CRYPTO */
105*b0563631STom Van Eyck     {
106*b0563631STom Van Eyck #if defined(MBEDTLS_PK_USE_PSA_EC_DATA)
107*b0563631STom Van Eyck         id = mbedtls_ecc_group_from_psa(pk->ec_family, pk->ec_bits);
108*b0563631STom Van Eyck #else /* MBEDTLS_PK_USE_PSA_EC_DATA */
109*b0563631STom Van Eyck         id = mbedtls_pk_ec_ro(*pk)->grp.id;
110*b0563631STom Van Eyck #endif /* MBEDTLS_PK_USE_PSA_EC_DATA */
111*b0563631STom Van Eyck     }
112*b0563631STom Van Eyck 
113*b0563631STom Van Eyck     return id;
114*b0563631STom Van Eyck }
115*b0563631STom Van Eyck 
116*b0563631STom Van Eyck /* Helper for Montgomery curves */
117*b0563631STom Van Eyck #if defined(MBEDTLS_ECP_HAVE_CURVE25519) || defined(MBEDTLS_ECP_HAVE_CURVE448)
118*b0563631STom Van Eyck #define MBEDTLS_PK_HAVE_RFC8410_CURVES
119*b0563631STom Van Eyck #endif /* MBEDTLS_ECP_HAVE_CURVE25519 || MBEDTLS_ECP_DP_CURVE448 */
120*b0563631STom Van Eyck 
121*b0563631STom Van Eyck #define MBEDTLS_PK_IS_RFC8410_GROUP_ID(id)  \
122*b0563631STom Van Eyck     ((id == MBEDTLS_ECP_DP_CURVE25519) || (id == MBEDTLS_ECP_DP_CURVE448))
123*b0563631STom Van Eyck 
mbedtls_pk_is_rfc8410(const mbedtls_pk_context * pk)124*b0563631STom Van Eyck static inline int mbedtls_pk_is_rfc8410(const mbedtls_pk_context *pk)
125*b0563631STom Van Eyck {
126*b0563631STom Van Eyck     mbedtls_ecp_group_id id = mbedtls_pk_get_ec_group_id(pk);
127*b0563631STom Van Eyck 
128*b0563631STom Van Eyck     return MBEDTLS_PK_IS_RFC8410_GROUP_ID(id);
129*b0563631STom Van Eyck }
130*b0563631STom Van Eyck 
131*b0563631STom Van Eyck /*
132*b0563631STom Van Eyck  * Set the group used by this key.
133*b0563631STom Van Eyck  *
134*b0563631STom Van Eyck  * [in/out] pk: in: must have been pk_setup() to an ECC type
135*b0563631STom Van Eyck  *              out: will have group (curve) information set
136*b0563631STom Van Eyck  * [in] grp_in: a supported group ID (not NONE)
137*b0563631STom Van Eyck  */
138*b0563631STom Van Eyck int mbedtls_pk_ecc_set_group(mbedtls_pk_context *pk, mbedtls_ecp_group_id grp_id);
139*b0563631STom Van Eyck 
140*b0563631STom Van Eyck /*
141*b0563631STom Van Eyck  * Set the private key material
142*b0563631STom Van Eyck  *
143*b0563631STom Van Eyck  * [in/out] pk: in: must have the group set already, see mbedtls_pk_ecc_set_group().
144*b0563631STom Van Eyck  *              out: will have the private key set.
145*b0563631STom Van Eyck  * [in] key, key_len: the raw private key (no ASN.1 wrapping).
146*b0563631STom Van Eyck  */
147*b0563631STom Van Eyck int mbedtls_pk_ecc_set_key(mbedtls_pk_context *pk, unsigned char *key, size_t key_len);
148*b0563631STom Van Eyck 
149*b0563631STom Van Eyck /*
150*b0563631STom Van Eyck  * Set the public key.
151*b0563631STom Van Eyck  *
152*b0563631STom Van Eyck  * [in/out] pk: in: must have its group set, see mbedtls_pk_ecc_set_group().
153*b0563631STom Van Eyck  *              out: will have the public key set.
154*b0563631STom Van Eyck  * [in] pub, pub_len: the raw public key (an ECPoint).
155*b0563631STom Van Eyck  *
156*b0563631STom Van Eyck  * Return:
157*b0563631STom Van Eyck  * - 0 on success;
158*b0563631STom Van Eyck  * - MBEDTLS_ERR_ECP_FEATURE_UNAVAILABLE if the format is potentially valid
159*b0563631STom Van Eyck  *   but not supported;
160*b0563631STom Van Eyck  * - another error code otherwise.
161*b0563631STom Van Eyck  */
162*b0563631STom Van Eyck int mbedtls_pk_ecc_set_pubkey(mbedtls_pk_context *pk, const unsigned char *pub, size_t pub_len);
163*b0563631STom Van Eyck 
164*b0563631STom Van Eyck /*
165*b0563631STom Van Eyck  * Derive a public key from its private counterpart.
166*b0563631STom Van Eyck  * Computationally intensive, only use when public key is not available.
167*b0563631STom Van Eyck  *
168*b0563631STom Van Eyck  * [in/out] pk: in: must have the private key set, see mbedtls_pk_ecc_set_key().
169*b0563631STom Van Eyck  *              out: will have the public key set.
170*b0563631STom Van Eyck  * [in] prv, prv_len: the raw private key (see note below).
171*b0563631STom Van Eyck  * [in] f_rng, p_rng: RNG function and context.
172*b0563631STom Van Eyck  *
173*b0563631STom Van Eyck  * Note: the private key information is always available from pk,
174*b0563631STom Van Eyck  * however for convenience the serialized version is also passed,
175*b0563631STom Van Eyck  * as it's available at each calling site, and useful in some configs
176*b0563631STom Van Eyck  * (as otherwise we would have to re-serialize it from the pk context).
177*b0563631STom Van Eyck  *
178*b0563631STom Van Eyck  * There are three implementations of this function:
179*b0563631STom Van Eyck  * 1. MBEDTLS_PK_USE_PSA_EC_DATA,
180*b0563631STom Van Eyck  * 2. MBEDTLS_USE_PSA_CRYPTO but not MBEDTLS_PK_USE_PSA_EC_DATA,
181*b0563631STom Van Eyck  * 3. not MBEDTLS_USE_PSA_CRYPTO.
182*b0563631STom Van Eyck  */
183*b0563631STom Van Eyck int mbedtls_pk_ecc_set_pubkey_from_prv(mbedtls_pk_context *pk,
184*b0563631STom Van Eyck                                        const unsigned char *prv, size_t prv_len,
185*b0563631STom Van Eyck                                        int (*f_rng)(void *, unsigned char *, size_t), void *p_rng);
186*b0563631STom Van Eyck #endif /* MBEDTLS_PK_HAVE_ECC_KEYS */
187*b0563631STom Van Eyck 
188*b0563631STom Van Eyck /* Helper for (deterministic) ECDSA */
189*b0563631STom Van Eyck #if defined(MBEDTLS_ECDSA_DETERMINISTIC)
190*b0563631STom Van Eyck #define MBEDTLS_PK_PSA_ALG_ECDSA_MAYBE_DET  PSA_ALG_DETERMINISTIC_ECDSA
191*b0563631STom Van Eyck #else
192*b0563631STom Van Eyck #define MBEDTLS_PK_PSA_ALG_ECDSA_MAYBE_DET  PSA_ALG_ECDSA
193*b0563631STom Van Eyck #endif
194*b0563631STom Van Eyck 
195*b0563631STom Van Eyck #if defined(MBEDTLS_TEST_HOOKS)
196*b0563631STom Van Eyck MBEDTLS_STATIC_TESTABLE int mbedtls_pk_parse_key_pkcs8_encrypted_der(
197*b0563631STom Van Eyck     mbedtls_pk_context *pk,
198*b0563631STom Van Eyck     unsigned char *key, size_t keylen,
199*b0563631STom Van Eyck     const unsigned char *pwd, size_t pwdlen,
200*b0563631STom Van Eyck     int (*f_rng)(void *, unsigned char *, size_t), void *p_rng);
201*b0563631STom Van Eyck #endif
202*b0563631STom Van Eyck 
203*b0563631STom Van Eyck #if defined(MBEDTLS_FS_IO)
204*b0563631STom Van Eyck int mbedtls_pk_load_file(const char *path, unsigned char **buf, size_t *n);
205*b0563631STom Van Eyck #endif
206*b0563631STom Van Eyck 
207*b0563631STom Van Eyck #endif /* MBEDTLS_PK_INTERNAL_H */
208