mirror of
git://projects.qi-hardware.com/openwrt-xburst.git
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85f89d5d09
which can provide remote access to your device, even if the ip and firewall settings are broken git-svn-id: svn://svn.openwrt.org/openwrt/trunk@13738 3c298f89-4303-0410-b956-a3cf2f4a3e73
288 lines
7.5 KiB
C
288 lines
7.5 KiB
C
/*
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* Copyright (c) 1997-1999 The Stanford SRP Authentication Project
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* All Rights Reserved.
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*
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* Permission is hereby granted, free of charge, to any person obtaining
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* a copy of this software and associated documentation files (the
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* "Software"), to deal in the Software without restriction, including
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* without limitation the rights to use, copy, modify, merge, publish,
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* distribute, sublicense, and/or sell copies of the Software, and to
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* permit persons to whom the Software is furnished to do so, subject to
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* the following conditions:
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*
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* The above copyright notice and this permission notice shall be
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* included in all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS-IS" AND WITHOUT WARRANTY OF ANY KIND,
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* EXPRESS, IMPLIED OR OTHERWISE, INCLUDING WITHOUT LIMITATION, ANY
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* WARRANTY OF MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
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*
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* IN NO EVENT SHALL STANFORD BE LIABLE FOR ANY SPECIAL, INCIDENTAL,
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* INDIRECT OR CONSEQUENTIAL DAMAGES OF ANY KIND, OR ANY DAMAGES WHATSOEVER
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* RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER OR NOT ADVISED OF
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* THE POSSIBILITY OF DAMAGE, AND ON ANY THEORY OF LIABILITY, ARISING OUT
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* OF OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
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*
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* In addition, the following conditions apply:
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*
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* 1. Any software that incorporates the SRP authentication technology
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* must display the following acknowlegment:
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* "This product uses the 'Secure Remote Password' cryptographic
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* authentication system developed by Tom Wu (tjw@CS.Stanford.EDU)."
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*
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* 2. Any software that incorporates all or part of the SRP distribution
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* itself must also display the following acknowledgment:
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* "This product includes software developed by Tom Wu and Eugene
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* Jhong for the SRP Distribution (http://srp.stanford.edu/srp/)."
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*
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* 3. Redistributions in source or binary form must retain an intact copy
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* of this copyright notice and list of conditions.
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*/
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#include <stdio.h>
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#include "t_defines.h"
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#include "t_pwd.h"
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#include "t_client.h"
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#include "t_sha.h"
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_TYPE( struct t_client * )
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t_clientopen(u, n, g, s)
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const char * u;
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struct t_num * n;
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struct t_num * g;
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struct t_num * s;
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{
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struct t_client * tc;
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unsigned char buf1[SHA_DIGESTSIZE], buf2[SHA_DIGESTSIZE];
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SHA1_CTX ctxt;
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int i, validated;
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struct t_preconf * tpc;
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BigInteger nn, gg, n12, r;
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validated = 0;
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if(n->len < MIN_MOD_BYTES)
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return 0;
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for(i = 0; i < t_getprecount(); ++i) {
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tpc = t_getpreparam(i);
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if(tpc->modulus.len == n->len && tpc->generator.len == g->len &&
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memcmp(tpc->modulus.data, n->data, n->len) == 0 &&
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memcmp(tpc->generator.data, g->data, g->len) == 0) {
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validated = 1; /* Match found, done */
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break;
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}
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}
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if(validated == 0)
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return 0;
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if((tc = malloc(sizeof(struct t_client))) == 0)
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return 0;
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strncpy(tc->username, u, MAXUSERLEN);
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SHA1Init(&tc->hash);
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tc->n.len = n->len;
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tc->n.data = tc->nbuf;
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memcpy(tc->n.data, n->data, tc->n.len);
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SHA1Init(&ctxt);
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SHA1Update(&ctxt, tc->n.data, tc->n.len);
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SHA1Final(buf1, &ctxt);
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tc->g.len = g->len;
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tc->g.data = tc->gbuf;
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memcpy(tc->g.data, g->data, tc->g.len);
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SHA1Init(&ctxt);
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SHA1Update(&ctxt, tc->g.data, tc->g.len);
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SHA1Final(buf2, &ctxt);
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for(i = 0; i < sizeof(buf1); ++i)
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buf1[i] ^= buf2[i];
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SHA1Update(&tc->hash, buf1, sizeof(buf1));
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SHA1Init(&ctxt);
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SHA1Update(&ctxt, tc->username, strlen(tc->username));
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SHA1Final(buf1, &ctxt);
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SHA1Update(&tc->hash, buf1, sizeof(buf1));
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tc->s.len = s->len;
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tc->s.data = tc->sbuf;
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memcpy(tc->s.data, s->data, tc->s.len);
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SHA1Update(&tc->hash, tc->s.data, tc->s.len);
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tc->a.data = tc->abuf;
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tc->A.data = tc->Abuf;
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tc->p.data = tc->pbuf;
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tc->v.data = tc->vbuf;
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SHA1Init(&tc->ckhash);
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return tc;
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}
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_TYPE( struct t_num * )
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t_clientgenexp(tc)
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struct t_client * tc;
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{
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BigInteger a, A, n, g;
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if(tc->n.len < ALEN)
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tc->a.len = tc->n.len;
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else
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tc->a.len = ALEN;
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t_random(tc->a.data, tc->a.len);
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a = BigIntegerFromBytes(tc->a.data, tc->a.len);
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n = BigIntegerFromBytes(tc->n.data, tc->n.len);
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g = BigIntegerFromBytes(tc->g.data, tc->g.len);
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A = BigIntegerFromInt(0);
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BigIntegerModExp(A, g, a, n);
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tc->A.len = BigIntegerToBytes(A, tc->A.data);
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BigIntegerFree(A);
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BigIntegerFree(a);
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BigIntegerFree(g);
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BigIntegerFree(n);
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SHA1Update(&tc->hash, tc->A.data, tc->A.len);
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SHA1Update(&tc->ckhash, tc->A.data, tc->A.len);
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return &tc->A;
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}
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_TYPE( void )
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t_clientpasswd(tc, password)
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struct t_client * tc;
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char * password;
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{
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BigInteger n, g, p, v;
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SHA1_CTX ctxt;
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unsigned char dig[SHA_DIGESTSIZE];
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n = BigIntegerFromBytes(tc->n.data, tc->n.len);
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g = BigIntegerFromBytes(tc->g.data, tc->g.len);
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SHA1Init(&ctxt);
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SHA1Update(&ctxt, tc->username, strlen(tc->username));
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SHA1Update(&ctxt, ":", 1);
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SHA1Update(&ctxt, password, strlen(password));
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SHA1Final(dig, &ctxt);
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SHA1Init(&ctxt);
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SHA1Update(&ctxt, tc->s.data, tc->s.len);
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SHA1Update(&ctxt, dig, sizeof(dig));
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SHA1Final(dig, &ctxt);
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p = BigIntegerFromBytes(dig, sizeof(dig));
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v = BigIntegerFromInt(0);
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BigIntegerModExp(v, g, p, n);
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tc->p.len = BigIntegerToBytes(p, tc->p.data);
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BigIntegerFree(p);
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tc->v.len = BigIntegerToBytes(v, tc->v.data);
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BigIntegerFree(v);
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}
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_TYPE( unsigned char * )
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t_clientgetkey(tc, serverval)
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struct t_client * tc;
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struct t_num * serverval;
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{
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BigInteger n, B, v, p, a, sum, S;
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unsigned char sbuf[MAXPARAMLEN];
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unsigned char dig[SHA_DIGESTSIZE];
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unsigned slen;
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unsigned int u;
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SHA1_CTX ctxt;
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SHA1Init(&ctxt);
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SHA1Update(&ctxt, serverval->data, serverval->len);
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SHA1Final(dig, &ctxt);
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u = (dig[0] << 24) | (dig[1] << 16) | (dig[2] << 8) | dig[3];
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if(u == 0)
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return NULL;
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SHA1Update(&tc->hash, serverval->data, serverval->len);
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B = BigIntegerFromBytes(serverval->data, serverval->len);
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n = BigIntegerFromBytes(tc->n.data, tc->n.len);
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if(BigIntegerCmp(B, n) >= 0 || BigIntegerCmpInt(B, 0) == 0) {
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BigIntegerFree(B);
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BigIntegerFree(n);
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return NULL;
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}
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v = BigIntegerFromBytes(tc->v.data, tc->v.len);
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if(BigIntegerCmp(B, v) < 0)
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BigIntegerAdd(B, B, n);
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BigIntegerSub(B, B, v);
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BigIntegerFree(v);
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a = BigIntegerFromBytes(tc->a.data, tc->a.len);
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p = BigIntegerFromBytes(tc->p.data, tc->p.len);
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sum = BigIntegerFromInt(0);
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BigIntegerMulInt(sum, p, u);
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BigIntegerAdd(sum, sum, a);
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BigIntegerFree(p);
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BigIntegerFree(a);
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S = BigIntegerFromInt(0);
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BigIntegerModExp(S, B, sum, n);
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slen = BigIntegerToBytes(S, sbuf);
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BigIntegerFree(S);
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BigIntegerFree(sum);
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BigIntegerFree(B);
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BigIntegerFree(n);
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t_sessionkey(tc->session_key, sbuf, slen);
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memset(sbuf, 0, slen);
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SHA1Update(&tc->hash, tc->session_key, sizeof(tc->session_key));
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SHA1Final(tc->session_response, &tc->hash);
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SHA1Update(&tc->ckhash, tc->session_response, sizeof(tc->session_response));
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SHA1Update(&tc->ckhash, tc->session_key, sizeof(tc->session_key));
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return tc->session_key;
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}
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_TYPE( int )
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t_clientverify(tc, resp)
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struct t_client * tc;
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unsigned char * resp;
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{
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unsigned char expected[SHA_DIGESTSIZE];
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SHA1Final(expected, &tc->ckhash);
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return memcmp(expected, resp, sizeof(expected));
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}
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_TYPE( unsigned char * )
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t_clientresponse(tc)
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struct t_client * tc;
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{
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return tc->session_response;
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}
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_TYPE( void )
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t_clientclose(tc)
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struct t_client * tc;
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{
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memset(tc->abuf, 0, sizeof(tc->abuf));
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memset(tc->pbuf, 0, sizeof(tc->pbuf));
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memset(tc->vbuf, 0, sizeof(tc->vbuf));
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memset(tc->session_key, 0, sizeof(tc->session_key));
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free(tc);
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}
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