move x509 processing to rsa_import_x509()
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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_import(const unsigned char *in, unsigned long inlen, rsa_key *key);
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int rsa_import_x509(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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@ -29,8 +29,7 @@ int rsa_import(const unsigned char *in, unsigned long inlen, rsa_key *key)
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   int           err;
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   void         *zero;
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   unsigned char *tmpbuf=NULL;
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   unsigned long tmpbuf_len, tmp_inlen;
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   ltc_asn1_list *decoded_list = NULL, *l;
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   unsigned long tmpbuf_len;
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   LTC_ARGCHK(in          != NULL);
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   LTC_ARGCHK(key         != NULL);
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@ -54,53 +53,6 @@ int rsa_import(const unsigned char *in, unsigned long inlen, rsa_key *key)
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        PKA_RSA, tmpbuf, &tmpbuf_len,
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        LTC_ASN1_NULL, NULL, 0);
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   tmp_inlen = inlen;
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   if (err != CRYPT_OK &&
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         der_decode_sequence_flexi(in, &tmp_inlen, &decoded_list) == CRYPT_OK) {
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      l = decoded_list;
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      /* Move 2 levels up in the tree
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         SEQUENCE
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             SEQUENCE
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                 ...
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       */
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      if (l->type == LTC_ASN1_SEQUENCE && l->child) {
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         l = l->child;
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         if (l->type == LTC_ASN1_SEQUENCE && l->child) {
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            l = l->child;
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            /* Move forward in the tree until we find this combination
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                 ...
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                 SEQUENCE
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                     SEQUENCE
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                         OBJECT IDENTIFIER 1.2.840.113549.1.1.1
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                         NULL
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                     BIT STRING
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             */
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            do {
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               /* The additional check for l->data is there to make sure
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                * we won't try to decode a list that has been 'shrunk'
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                */
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               if (l->type == LTC_ASN1_SEQUENCE && l->data && l->child &&
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                     l->child->type == LTC_ASN1_SEQUENCE && l->child->child &&
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                     l->child->child->type == LTC_ASN1_OBJECT_IDENTIFIER && l->child->next &&
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                     l->child->next->type == LTC_ASN1_BIT_STRING) {
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                  err = der_decode_subject_public_key_info(l->data, l->size,
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                       PKA_RSA, tmpbuf, &tmpbuf_len,
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                       LTC_ASN1_NULL, NULL, 0);
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                  if (err == CRYPT_OK) {
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                     break;
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                  }
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               }
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               l = l->next;
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            } while(l);
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         }
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      }
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   }
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   if (decoded_list) {
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      der_free_sequence_flexi(decoded_list);
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   }
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   if (err == CRYPT_OK) { /* SubjectPublicKeyInfo format */
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      /* now it should be SEQUENCE { INTEGER, INTEGER } */
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										120
									
								
								src/pk/rsa/rsa_import_x509.c
									
									
									
									
									
										Normal file
									
								
							
							
						
						
									
										120
									
								
								src/pk/rsa/rsa_import_x509.c
									
									
									
									
									
										Normal file
									
								
							@ -0,0 +1,120 @@
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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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  @file rsa_import.c
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  Import an RSA key from a X.509 certificate, Steffen Jaeckel
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*/
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#ifdef LTC_MRSA
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/**
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  Import an RSA key from a X.509 certificate
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  @param in      The packet to import from
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  @param inlen   It's length (octets)
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  @param key     [out] Destination for newly 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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int rsa_import_x509(const unsigned char *in, unsigned long inlen, rsa_key *key)
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{
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   int           err;
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   unsigned char *tmpbuf=NULL;
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   unsigned long tmpbuf_len, tmp_inlen;
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   ltc_asn1_list *decoded_list = NULL, *l;
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   LTC_ARGCHK(in          != NULL);
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   LTC_ARGCHK(key         != NULL);
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   LTC_ARGCHK(ltc_mp.name != NULL);
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   /* init key */
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   if ((err = mp_init_multi(&key->e, &key->d, &key->N, &key->dQ,
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                            &key->dP, &key->qP, &key->p, &key->q, NULL)) != CRYPT_OK) {
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      return err;
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   }
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   tmpbuf_len = MAX_RSA_SIZE * 8;
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   tmpbuf = XCALLOC(1, tmpbuf_len);
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   if (tmpbuf == NULL) {
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       err = CRYPT_MEM;
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       goto LBL_ERR;
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   }
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   tmp_inlen = inlen;
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   if ((err = der_decode_sequence_flexi(in, &tmp_inlen, &decoded_list)) == CRYPT_OK) {
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      l = decoded_list;
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      /* Move 2 levels up in the tree
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         SEQUENCE
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             SEQUENCE
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                 ...
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       */
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      if (l->type == LTC_ASN1_SEQUENCE && l->child) {
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         l = l->child;
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         if (l->type == LTC_ASN1_SEQUENCE && l->child) {
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            l = l->child;
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            err = CRYPT_ERROR;
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            /* Move forward in the tree until we find this combination
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                 ...
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                 SEQUENCE
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                     SEQUENCE
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                         OBJECT IDENTIFIER 1.2.840.113549.1.1.1
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                         NULL
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                     BIT STRING
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             */
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            do {
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               /* The additional check for l->data is there to make sure
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                * we won't try to decode a list that has been 'shrunk'
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                */
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               if (l->type == LTC_ASN1_SEQUENCE && l->data && l->child &&
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                     l->child->type == LTC_ASN1_SEQUENCE && l->child->child &&
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                     l->child->child->type == LTC_ASN1_OBJECT_IDENTIFIER && l->child->next &&
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                     l->child->next->type == LTC_ASN1_BIT_STRING) {
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                  err = der_decode_subject_public_key_info(l->data, l->size,
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                       PKA_RSA, tmpbuf, &tmpbuf_len,
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                       LTC_ASN1_NULL, NULL, 0);
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                  if (err == CRYPT_OK) {
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                     /* now it should be SEQUENCE { INTEGER, INTEGER } */
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                     if ((err = der_decode_sequence_multi(tmpbuf, tmpbuf_len,
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                                                          LTC_ASN1_INTEGER, 1UL, key->N,
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                                                          LTC_ASN1_INTEGER, 1UL, key->e,
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                                                          LTC_ASN1_EOL,     0UL, NULL)) != CRYPT_OK) {
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                        goto LBL_ERR;
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                     }
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                     key->type = PK_PUBLIC;
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                     err = CRYPT_OK;
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                     goto LBL_FREE;
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                  }
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               }
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               l = l->next;
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            } while(l);
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         }
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      }
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   }
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LBL_ERR:
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   rsa_free(key);
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LBL_FREE:
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   if (decoded_list) der_free_sequence_flexi(decoded_list);
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   if (tmpbuf != NULL) XFREE(tmpbuf);
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   return err;
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}
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#endif /* LTC_MRSA */
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/* $Source$ */
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/* $Revision$ */
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/* $Date$ */
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@ -543,7 +543,7 @@ for (cnt = 0; cnt < len; ) {
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   len3 = sizeof(tmp);
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   DO(base64_decode(_der_tests_cacert_root_cert, _der_tests_cacert_root_cert_size, tmp, &len3));
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   DO(rsa_import(tmp, len3, &key));
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   DO(rsa_import_x509(tmp, len3, &key));
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   /* free the key and return */
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   rsa_free(&key);
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