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195d6be38d
(This used to be commit 97c9a4042d
)
348 lines
11 KiB
C
348 lines
11 KiB
C
/*
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Unix SMB/CIFS implementation.
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code to manipulate domain credentials
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Copyright (C) Andrew Tridgell 1997-1998
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Largely rewritten by Jeremy Allison 2005.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "includes.h"
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/****************************************************************************
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Represent a credential as a string.
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****************************************************************************/
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char *credstr(const unsigned char *cred)
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{
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char *result;
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result = talloc_asprintf(talloc_tos(),
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"%02X%02X%02X%02X%02X%02X%02X%02X",
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cred[0], cred[1], cred[2], cred[3],
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cred[4], cred[5], cred[6], cred[7]);
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SMB_ASSERT(result != NULL);
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return result;
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}
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/****************************************************************************
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Setup the session key and the client and server creds in dc.
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ADS-style 128 bit session keys.
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Used by both client and server creds setup.
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****************************************************************************/
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static void creds_init_128(struct dcinfo *dc,
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const DOM_CHAL *clnt_chal_in,
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const DOM_CHAL *srv_chal_in,
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const unsigned char mach_pw[16])
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{
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unsigned char zero[4], tmp[16];
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HMACMD5Context ctx;
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struct MD5Context md5;
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/* Just in case this isn't already there */
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memcpy(dc->mach_pw, mach_pw, 16);
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ZERO_STRUCT(dc->sess_key);
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memset(zero, 0, sizeof(zero));
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hmac_md5_init_rfc2104(mach_pw, 16, &ctx);
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MD5Init(&md5);
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MD5Update(&md5, zero, sizeof(zero));
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MD5Update(&md5, clnt_chal_in->data, 8);
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MD5Update(&md5, srv_chal_in->data, 8);
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MD5Final(tmp, &md5);
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hmac_md5_update(tmp, sizeof(tmp), &ctx);
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hmac_md5_final(dc->sess_key, &ctx);
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/* debug output */
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DEBUG(5,("creds_init_128\n"));
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DEBUG(5,("\tclnt_chal_in: %s\n", credstr(clnt_chal_in->data)));
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DEBUG(5,("\tsrv_chal_in : %s\n", credstr(srv_chal_in->data)));
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dump_data_pw("\tsession_key ", (const unsigned char *)dc->sess_key, 16);
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/* Generate the next client and server creds. */
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des_crypt112(dc->clnt_chal.data, /* output */
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clnt_chal_in->data, /* input */
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dc->sess_key, /* input */
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1);
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des_crypt112(dc->srv_chal.data, /* output */
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srv_chal_in->data, /* input */
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dc->sess_key, /* input */
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1);
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/* Seed is the client chal. */
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memcpy(dc->seed_chal.data, dc->clnt_chal.data, 8);
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}
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/****************************************************************************
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Setup the session key and the client and server creds in dc.
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Used by both client and server creds setup.
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****************************************************************************/
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static void creds_init_64(struct dcinfo *dc,
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const DOM_CHAL *clnt_chal_in,
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const DOM_CHAL *srv_chal_in,
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const unsigned char mach_pw[16])
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{
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uint32 sum[2];
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unsigned char sum2[8];
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/* Just in case this isn't already there */
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if (dc->mach_pw != mach_pw) {
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memcpy(dc->mach_pw, mach_pw, 16);
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}
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sum[0] = IVAL(clnt_chal_in->data, 0) + IVAL(srv_chal_in->data, 0);
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sum[1] = IVAL(clnt_chal_in->data, 4) + IVAL(srv_chal_in->data, 4);
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SIVAL(sum2,0,sum[0]);
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SIVAL(sum2,4,sum[1]);
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ZERO_STRUCT(dc->sess_key);
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des_crypt128(dc->sess_key, sum2, dc->mach_pw);
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/* debug output */
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DEBUG(5,("creds_init_64\n"));
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DEBUG(5,("\tclnt_chal_in: %s\n", credstr(clnt_chal_in->data)));
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DEBUG(5,("\tsrv_chal_in : %s\n", credstr(srv_chal_in->data)));
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DEBUG(5,("\tclnt+srv : %s\n", credstr(sum2)));
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DEBUG(5,("\tsess_key_out : %s\n", credstr(dc->sess_key)));
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/* Generate the next client and server creds. */
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des_crypt112(dc->clnt_chal.data, /* output */
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clnt_chal_in->data, /* input */
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dc->sess_key, /* input */
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1);
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des_crypt112(dc->srv_chal.data, /* output */
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srv_chal_in->data, /* input */
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dc->sess_key, /* input */
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1);
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/* Seed is the client chal. */
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memcpy(dc->seed_chal.data, dc->clnt_chal.data, 8);
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}
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/****************************************************************************
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Utility function to step credential chain one forward.
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Deliberately doesn't update the seed. See reseed comment below.
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****************************************************************************/
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static void creds_step(struct dcinfo *dc)
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{
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DOM_CHAL time_chal;
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DEBUG(5,("\tsequence = 0x%x\n", (unsigned int)dc->sequence ));
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DEBUG(5,("\tseed: %s\n", credstr(dc->seed_chal.data) ));
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SIVAL(time_chal.data, 0, IVAL(dc->seed_chal.data, 0) + dc->sequence);
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SIVAL(time_chal.data, 4, IVAL(dc->seed_chal.data, 4));
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DEBUG(5,("\tseed+seq %s\n", credstr(time_chal.data) ));
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des_crypt112(dc->clnt_chal.data, time_chal.data, dc->sess_key, 1);
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DEBUG(5,("\tCLIENT %s\n", credstr(dc->clnt_chal.data) ));
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SIVAL(time_chal.data, 0, IVAL(dc->seed_chal.data, 0) + dc->sequence + 1);
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SIVAL(time_chal.data, 4, IVAL(dc->seed_chal.data, 4));
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DEBUG(5,("\tseed+seq+1 %s\n", credstr(time_chal.data) ));
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des_crypt112(dc->srv_chal.data, time_chal.data, dc->sess_key, 1);
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DEBUG(5,("\tSERVER %s\n", credstr(dc->srv_chal.data) ));
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}
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/****************************************************************************
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Create a server credential struct.
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****************************************************************************/
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void creds_server_init(uint32 neg_flags,
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struct dcinfo *dc,
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DOM_CHAL *clnt_chal,
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DOM_CHAL *srv_chal,
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const unsigned char mach_pw[16],
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DOM_CHAL *init_chal_out)
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{
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DEBUG(10,("creds_server_init: neg_flags : %x\n", (unsigned int)neg_flags));
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DEBUG(10,("creds_server_init: client chal : %s\n", credstr(clnt_chal->data) ));
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DEBUG(10,("creds_server_init: server chal : %s\n", credstr(srv_chal->data) ));
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dump_data_pw("creds_server_init: machine pass", mach_pw, 16);
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/* Generate the session key and the next client and server creds. */
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if (neg_flags & NETLOGON_NEG_128BIT) {
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creds_init_128(dc,
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clnt_chal,
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srv_chal,
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mach_pw);
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} else {
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creds_init_64(dc,
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clnt_chal,
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srv_chal,
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mach_pw);
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}
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dump_data_pw("creds_server_init: session key", dc->sess_key, 16);
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DEBUG(10,("creds_server_init: clnt : %s\n", credstr(dc->clnt_chal.data) ));
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DEBUG(10,("creds_server_init: server : %s\n", credstr(dc->srv_chal.data) ));
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DEBUG(10,("creds_server_init: seed : %s\n", credstr(dc->seed_chal.data) ));
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memcpy(init_chal_out->data, dc->srv_chal.data, 8);
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}
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/****************************************************************************
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Check a credential sent by the client.
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****************************************************************************/
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bool creds_server_check(const struct dcinfo *dc, const DOM_CHAL *rcv_cli_chal_in)
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{
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if (memcmp(dc->clnt_chal.data, rcv_cli_chal_in->data, 8)) {
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DEBUG(5,("creds_server_check: challenge : %s\n", credstr(rcv_cli_chal_in->data)));
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DEBUG(5,("calculated: %s\n", credstr(dc->clnt_chal.data)));
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DEBUG(2,("creds_server_check: credentials check failed.\n"));
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return False;
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}
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DEBUG(10,("creds_server_check: credentials check OK.\n"));
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return True;
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}
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/****************************************************************************
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Replace current seed chal. Internal function - due to split server step below.
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****************************************************************************/
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static void creds_reseed(struct dcinfo *dc)
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{
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DOM_CHAL time_chal;
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SIVAL(time_chal.data, 0, IVAL(dc->seed_chal.data, 0) + dc->sequence + 1);
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SIVAL(time_chal.data, 4, IVAL(dc->seed_chal.data, 4));
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dc->seed_chal = time_chal;
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DEBUG(5,("cred_reseed: seed %s\n", credstr(dc->seed_chal.data) ));
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}
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/****************************************************************************
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Step the server credential chain one forward.
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****************************************************************************/
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bool creds_server_step(struct dcinfo *dc, const DOM_CRED *received_cred, DOM_CRED *cred_out)
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{
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bool ret;
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struct dcinfo tmp_dc = *dc;
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/* Do all operations on a temporary copy of the dc,
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which we throw away if the checks fail. */
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tmp_dc.sequence = received_cred->timestamp.time;
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creds_step(&tmp_dc);
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/* Create the outgoing credentials */
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cred_out->timestamp.time = tmp_dc.sequence + 1;
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cred_out->challenge = tmp_dc.srv_chal;
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creds_reseed(&tmp_dc);
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ret = creds_server_check(&tmp_dc, &received_cred->challenge);
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if (!ret) {
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return False;
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}
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/* creds step succeeded - replace the current creds. */
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*dc = tmp_dc;
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return True;
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}
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/****************************************************************************
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Create a client credential struct.
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****************************************************************************/
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void creds_client_init(uint32 neg_flags,
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struct dcinfo *dc,
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DOM_CHAL *clnt_chal,
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DOM_CHAL *srv_chal,
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const unsigned char mach_pw[16],
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DOM_CHAL *init_chal_out)
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{
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dc->sequence = time(NULL);
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DEBUG(10,("creds_client_init: neg_flags : %x\n", (unsigned int)neg_flags));
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DEBUG(10,("creds_client_init: client chal : %s\n", credstr(clnt_chal->data) ));
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DEBUG(10,("creds_client_init: server chal : %s\n", credstr(srv_chal->data) ));
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dump_data_pw("creds_client_init: machine pass", (const unsigned char *)mach_pw, 16);
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/* Generate the session key and the next client and server creds. */
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if (neg_flags & NETLOGON_NEG_128BIT) {
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creds_init_128(dc,
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clnt_chal,
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srv_chal,
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mach_pw);
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} else {
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creds_init_64(dc,
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clnt_chal,
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srv_chal,
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mach_pw);
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}
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dump_data_pw("creds_client_init: session key", dc->sess_key, 16);
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DEBUG(10,("creds_client_init: clnt : %s\n", credstr(dc->clnt_chal.data) ));
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DEBUG(10,("creds_client_init: server : %s\n", credstr(dc->srv_chal.data) ));
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DEBUG(10,("creds_client_init: seed : %s\n", credstr(dc->seed_chal.data) ));
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memcpy(init_chal_out->data, dc->clnt_chal.data, 8);
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}
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/****************************************************************************
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Check a credential returned by the server.
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****************************************************************************/
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bool creds_client_check(const struct dcinfo *dc, const DOM_CHAL *rcv_srv_chal_in)
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{
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if (memcmp(dc->srv_chal.data, rcv_srv_chal_in->data, 8)) {
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DEBUG(5,("creds_client_check: challenge : %s\n", credstr(rcv_srv_chal_in->data)));
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DEBUG(5,("calculated: %s\n", credstr(dc->srv_chal.data)));
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DEBUG(0,("creds_client_check: credentials check failed.\n"));
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return False;
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}
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DEBUG(10,("creds_client_check: credentials check OK.\n"));
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return True;
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}
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/****************************************************************************
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Step the client credentials to the next element in the chain, updating the
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current client and server credentials and the seed
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produce the next authenticator in the sequence ready to send to
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the server
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****************************************************************************/
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void creds_client_step(struct dcinfo *dc, DOM_CRED *next_cred_out)
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{
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dc->sequence += 2;
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creds_step(dc);
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creds_reseed(dc);
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next_cred_out->challenge = dc->clnt_chal;
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next_cred_out->timestamp.time = dc->sequence;
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}
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