adding rsa_import_radix
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@ -107,6 +107,7 @@ int rsa_sign_saltlen_get_max_ex(int padding, int hash_idx, rsa_key *key);
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int rsa_export(unsigned char *out, unsigned long *outlen, int type, rsa_key *key);
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int rsa_export(unsigned char *out, unsigned long *outlen, int type, rsa_key *key);
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int rsa_import(const unsigned char *in, unsigned long inlen, rsa_key *key);
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int rsa_import(const unsigned char *in, unsigned long inlen, rsa_key *key);
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int rsa_import_radix(int radix, char *N, char *e, char *d, char *p, char *q, char *dP, char *dQ, char *qP, rsa_key *key);
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#endif
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#endif
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/* ---- Katja ---- */
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/* ---- Katja ---- */
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64
src/pk/rsa/rsa_import_radix.c
Executable file
64
src/pk/rsa/rsa_import_radix.c
Executable file
@ -0,0 +1,64 @@
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/* LibTomCrypt, modular cryptographic library -- Tom St Denis
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*
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* LibTomCrypt is a library that provides various cryptographic
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* algorithms in a highly modular and flexible manner.
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*
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* The library is free for all purposes without any express
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* guarantee it works.
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*
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* Tom St Denis, tomstdenis@gmail.com, http://libtom.org
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*/
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#include "tomcrypt.h"
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/**
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Import RSA public or private key from raw numbers
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@param radix the radix the numbers are represented in (2-64, 16 = hexadecimal)
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@param N RSA's N in radix representation
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@param e RSA's e in radix representation
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@param d RSA's d in radix representation (only private key, NULL for public key)
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@param p RSA's p in radix representation (only private key, NULL for public key)
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@param q RSA's q in radix representation (only private key, NULL for public key)
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@param dP RSA's dP in radix representation (only private key, NULL for public key)
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@param dQ RSA's dQ in radix representation (only private key, NULL for public key)
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@param qP RSA's qP in radix representation (only private key, NULL for public key)
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@param key [out] the destination for the imported key
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@return CRYPT_OK if successful, upon error allocated memory is freed
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*/
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#ifdef LTC_MRSA
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int rsa_import_radix(int radix, char *N, char *e, char *d, char *p, char *q, char *dP, char *dQ, char *qP, rsa_key *key)
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{
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int err;
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LTC_ARGCHK(key != NULL);
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LTC_ARGCHK(N != NULL);
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LTC_ARGCHK(e != NULL);
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LTC_ARGCHK(ltc_mp.name != NULL);
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err = mp_init_multi(&key->e, &key->d, &key->N, &key->dQ, &key->dP, &key->qP, &key->p, &key->q, NULL);
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if (err != CRYPT_OK) return err;
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if ((err = mp_read_radix(key->N , N , radix)) != CRYPT_OK) { goto LBL_ERR; }
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if ((err = mp_read_radix(key->e , e , radix)) != CRYPT_OK) { goto LBL_ERR; }
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if (d && p && q && dP && dQ && qP && strlen(d)>0 && strlen(p)>0 &&
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strlen(q)>0 && strlen(dP)>0 && strlen(dQ)>0 && strlen(qP)>0) {
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if ((err = mp_read_radix(key->d , d , radix)) != CRYPT_OK) { goto LBL_ERR; }
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if ((err = mp_read_radix(key->p , p , radix)) != CRYPT_OK) { goto LBL_ERR; }
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if ((err = mp_read_radix(key->q , q , radix)) != CRYPT_OK) { goto LBL_ERR; }
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if ((err = mp_read_radix(key->dP, dP, radix)) != CRYPT_OK) { goto LBL_ERR; }
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if ((err = mp_read_radix(key->dQ, dQ, radix)) != CRYPT_OK) { goto LBL_ERR; }
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if ((err = mp_read_radix(key->qP, qP, radix)) != CRYPT_OK) { goto LBL_ERR; }
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key->type = PK_PRIVATE;
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}
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else {
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key->type = PK_PUBLIC;
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}
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return CRYPT_OK;
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LBL_ERR:
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mp_clear_multi(key->d, key->e, key->N, key->dQ, key->dP, key->qP, key->p, key->q, NULL);
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return err;
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}
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#endif /* LTC_MRSA */
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