forked from luck/tmp_suning_uos_patched
crypto: rsa - Store rest of the private key components
When parsing a private key, store all non-optional fields. These are required for enabling CRT mode for decrypt and verify Signed-off-by: Salvatore Benedetto <salvatore.benedetto@intel.com> Signed-off-by: Herbert Xu <herbert@gondor.apana.org.au>
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@ -78,6 +78,81 @@ int rsa_get_d(void *context, size_t hdrlen, unsigned char tag,
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return 0;
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return 0;
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}
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}
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int rsa_get_p(void *context, size_t hdrlen, unsigned char tag,
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const void *value, size_t vlen)
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{
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struct rsa_key *key = context;
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/* invalid key provided */
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if (!value || !vlen || vlen > key->n_sz)
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return -EINVAL;
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key->p = value;
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key->p_sz = vlen;
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return 0;
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}
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int rsa_get_q(void *context, size_t hdrlen, unsigned char tag,
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const void *value, size_t vlen)
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{
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struct rsa_key *key = context;
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/* invalid key provided */
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if (!value || !vlen || vlen > key->n_sz)
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return -EINVAL;
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key->q = value;
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key->q_sz = vlen;
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return 0;
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}
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int rsa_get_dp(void *context, size_t hdrlen, unsigned char tag,
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const void *value, size_t vlen)
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{
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struct rsa_key *key = context;
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/* invalid key provided */
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if (!value || !vlen || vlen > key->n_sz)
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return -EINVAL;
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key->dp = value;
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key->dp_sz = vlen;
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return 0;
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}
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int rsa_get_dq(void *context, size_t hdrlen, unsigned char tag,
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const void *value, size_t vlen)
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{
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struct rsa_key *key = context;
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/* invalid key provided */
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if (!value || !vlen || vlen > key->n_sz)
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return -EINVAL;
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key->dq = value;
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key->dq_sz = vlen;
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return 0;
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}
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int rsa_get_qinv(void *context, size_t hdrlen, unsigned char tag,
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const void *value, size_t vlen)
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{
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struct rsa_key *key = context;
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/* invalid key provided */
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if (!value || !vlen || vlen > key->n_sz)
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return -EINVAL;
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key->qinv = value;
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key->qinv_sz = vlen;
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return 0;
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}
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/**
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/**
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* rsa_parse_pub_key() - decodes the BER encoded buffer and stores in the
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* rsa_parse_pub_key() - decodes the BER encoded buffer and stores in the
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* provided struct rsa_key, pointers to the raw key as is,
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* provided struct rsa_key, pointers to the raw key as is,
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@ -3,9 +3,9 @@ RsaPrivKey ::= SEQUENCE {
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n INTEGER ({ rsa_get_n }),
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n INTEGER ({ rsa_get_n }),
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e INTEGER ({ rsa_get_e }),
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e INTEGER ({ rsa_get_e }),
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d INTEGER ({ rsa_get_d }),
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d INTEGER ({ rsa_get_d }),
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prime1 INTEGER,
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prime1 INTEGER ({ rsa_get_p }),
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prime2 INTEGER,
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prime2 INTEGER ({ rsa_get_q }),
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exponent1 INTEGER,
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exponent1 INTEGER ({ rsa_get_dp }),
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exponent2 INTEGER,
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exponent2 INTEGER ({ rsa_get_dq }),
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coefficient INTEGER
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coefficient INTEGER ({ rsa_get_qinv })
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}
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}
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@ -19,17 +19,37 @@
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* @n : RSA modulus raw byte stream
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* @n : RSA modulus raw byte stream
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* @e : RSA public exponent raw byte stream
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* @e : RSA public exponent raw byte stream
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* @d : RSA private exponent raw byte stream
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* @d : RSA private exponent raw byte stream
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* @p : RSA prime factor p of n raw byte stream
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* @q : RSA prime factor q of n raw byte stream
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* @dp : RSA exponent d mod (p - 1) raw byte stream
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* @dq : RSA exponent d mod (q - 1) raw byte stream
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* @qinv : RSA CRT coefficient q^(-1) mod p raw byte stream
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* @n_sz : length in bytes of RSA modulus n
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* @n_sz : length in bytes of RSA modulus n
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* @e_sz : length in bytes of RSA public exponent
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* @e_sz : length in bytes of RSA public exponent
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* @d_sz : length in bytes of RSA private exponent
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* @d_sz : length in bytes of RSA private exponent
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* @p_sz : length in bytes of p field
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* @q_sz : length in bytes of q field
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* @dp_sz : length in bytes of dp field
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* @dq_sz : length in bytes of dq field
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* @qinv_sz : length in bytes of qinv field
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*/
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*/
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struct rsa_key {
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struct rsa_key {
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const u8 *n;
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const u8 *n;
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const u8 *e;
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const u8 *e;
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const u8 *d;
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const u8 *d;
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const u8 *p;
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const u8 *q;
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const u8 *dp;
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const u8 *dq;
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const u8 *qinv;
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size_t n_sz;
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size_t n_sz;
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size_t e_sz;
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size_t e_sz;
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size_t d_sz;
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size_t d_sz;
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size_t p_sz;
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size_t q_sz;
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size_t dp_sz;
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size_t dq_sz;
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size_t qinv_sz;
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};
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};
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int rsa_parse_pub_key(struct rsa_key *rsa_key, const void *key,
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int rsa_parse_pub_key(struct rsa_key *rsa_key, const void *key,
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