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Samba's NTLMSSP code is now fully talloc based, which should go a long way to cleaning up the memory leaks in this code. This also avoids a lot of extra copies of data, as we now allocate the 'return' blobs on a caller-supplied context. I have also been doing a lot of work towards NTLM2 signing and sealing. I have this working for sealing, but not for the verifier (MD5 integrity check on the stream) which is still incorrect. (I can aim a rpcecho sinkdata from a Win2k3 box to my server, and the data arrives intact, but the signature check fails. It does however match the test values I have...). The new torture test is cludged in - when we get a unit test suite back, I'll happliy put it in the 'right' place.... Andrew Bartlett
463 lines
14 KiB
C
463 lines
14 KiB
C
/*
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* Unix SMB/CIFS implementation.
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* Version 3.0
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* NTLMSSP Signing routines
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* Copyright (C) Luke Kenneth Casson Leighton 1996-2001
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* Copyright (C) Andrew Bartlett 2003
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*
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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 2 of the License, or
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* (at your option) any later version.
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*
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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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*
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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, write to the Free Software Foundation,
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* Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
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*/
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#include "includes.h"
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#define CLI_SIGN "session key to client-to-server signing key magic constant"
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#define CLI_SEAL "session key to client-to-server sealing key magic constant"
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#define SRV_SIGN "session key to server-to-client signing key magic constant"
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#define SRV_SEAL "session key to server-to-client sealing key magic constant"
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static void NTLMSSPcalc_ap( unsigned char *hash, unsigned char *data, int len)
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{
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unsigned char index_i = hash[256];
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unsigned char index_j = hash[257];
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int ind;
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for (ind = 0; ind < len; ind++)
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{
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unsigned char tc;
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unsigned char t;
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index_i++;
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index_j += hash[index_i];
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tc = hash[index_i];
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hash[index_i] = hash[index_j];
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hash[index_j] = tc;
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t = hash[index_i] + hash[index_j];
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data[ind] = data[ind] ^ hash[t];
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}
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hash[256] = index_i;
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hash[257] = index_j;
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}
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static void calc_hash(unsigned char hash[258], const char *key, size_t key_len)
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{
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unsigned char j = 0;
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int ind;
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for (ind = 0; ind < 256; ind++)
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{
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hash[ind] = (unsigned char)ind;
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}
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for (ind = 0; ind < 256; ind++)
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{
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unsigned char tc;
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j += (hash[ind] + key[ind%key_len]);
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tc = hash[ind];
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hash[ind] = hash[j];
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hash[j] = tc;
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}
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hash[256] = 0;
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hash[257] = 0;
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}
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/**
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* Some notes on then NTLM2 code:
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*
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* This code works correctly for the sealing part of the problem. If
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* we disable the check for valid client signatures, then we see that
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* the output of a rpcecho 'sinkdata' at smbd is correct. We get the
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* valid data, and it is validly decrypted.
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*
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* This means that the quantity of data passing though the RC4 sealing
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* pad is correct.
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*
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* This code also correctly matches test values that I have obtained,
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* claiming to be the correct output of NTLM2 signature generation.
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*
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*/
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static void calc_ntlmv2_hash(unsigned char hash[258], unsigned char subkey[16],
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DATA_BLOB session_key,
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const char *constant)
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{
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struct MD5Context ctx3;
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MD5Init(&ctx3);
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MD5Update(&ctx3, session_key.data, session_key.length);
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MD5Update(&ctx3, constant, strlen(constant)+1);
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MD5Final(subkey, &ctx3);
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calc_hash(hash, subkey, 16);
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}
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enum ntlmssp_direction {
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NTLMSSP_SEND,
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NTLMSSP_RECEIVE
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};
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static NTSTATUS ntlmssp_make_packet_signature(NTLMSSP_STATE *ntlmssp_state,
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TALLOC_CTX *sig_mem_ctx,
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const uchar *data, size_t length,
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enum ntlmssp_direction direction,
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DATA_BLOB *sig)
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{
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if (ntlmssp_state->neg_flags & NTLMSSP_NEGOTIATE_NTLM2) {
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HMACMD5Context ctx;
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uchar seq_num[4];
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uchar digest[16];
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SIVAL(seq_num, 0, ntlmssp_state->ntlmssp_seq_num);
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switch (direction) {
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case NTLMSSP_SEND:
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hmac_md5_init_limK_to_64(ntlmssp_state->send_sign_key,
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sizeof(ntlmssp_state->send_sign_key), &ctx);
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break;
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case NTLMSSP_RECEIVE:
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hmac_md5_init_limK_to_64(ntlmssp_state->recv_sign_key,
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sizeof(ntlmssp_state->recv_sign_key), &ctx);
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break;
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}
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hmac_md5_update(seq_num, 4, &ctx);
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hmac_md5_update(data, length, &ctx);
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hmac_md5_final(digest, &ctx);
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if (ntlmssp_state->neg_flags & NTLMSSP_NEGOTIATE_KEY_EXCH) {
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switch (direction) {
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case NTLMSSP_SEND:
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NTLMSSPcalc_ap(ntlmssp_state->send_seal_hash, digest, 8);
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break;
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case NTLMSSP_RECEIVE:
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NTLMSSPcalc_ap(ntlmssp_state->recv_seal_hash, digest, 8);
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break;
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}
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}
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*sig = data_blob_talloc(sig_mem_ctx, NULL, 16);
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SIVAL(sig->data, 0, NTLMSSP_SIGN_VERSION);
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memcpy(sig->data + 4, digest, 8);
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memcpy(sig->data + 12, seq_num, 4);
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} else {
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uint32 crc;
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crc = crc32_calc_buffer((const char *)data, length);
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if (!msrpc_gen(sig_mem_ctx, sig, "dddd", NTLMSSP_SIGN_VERSION, 0, crc, ntlmssp_state->ntlmssp_seq_num)) {
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return NT_STATUS_NO_MEMORY;
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}
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dump_data_pw("ntlmssp hash:\n", ntlmssp_state->ntlmssp_hash,
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sizeof(ntlmssp_state->ntlmssp_hash));
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NTLMSSPcalc_ap(ntlmssp_state->ntlmssp_hash, sig->data+4, sig->length-4);
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}
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return NT_STATUS_OK;
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}
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NTSTATUS ntlmssp_sign_packet(NTLMSSP_STATE *ntlmssp_state,
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TALLOC_CTX *sig_mem_ctx,
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const uchar *data, size_t length,
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DATA_BLOB *sig)
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{
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NTSTATUS nt_status;
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if (!ntlmssp_state->session_key.length) {
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DEBUG(3, ("NO session key, cannot check sign packet\n"));
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return NT_STATUS_NO_USER_SESSION_KEY;
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}
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nt_status = ntlmssp_make_packet_signature(ntlmssp_state, sig_mem_ctx,
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data, length, NTLMSSP_SEND, sig);
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/* increment counter on send */
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ntlmssp_state->ntlmssp_seq_num++;
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return nt_status;
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}
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/**
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* Check the signature of an incoming packet
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*
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*/
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NTSTATUS ntlmssp_check_packet(NTLMSSP_STATE *ntlmssp_state,
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TALLOC_CTX *sig_mem_ctx,
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const uchar *data, size_t length,
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const DATA_BLOB *sig)
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{
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DATA_BLOB local_sig;
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NTSTATUS nt_status;
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if (!ntlmssp_state->session_key.length) {
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DEBUG(3, ("NO session key, cannot check packet signature\n"));
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return NT_STATUS_NO_USER_SESSION_KEY;
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}
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if (sig->length < 8) {
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DEBUG(0, ("NTLMSSP packet check failed due to short signature (%lu bytes)!\n",
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(unsigned long)sig->length));
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}
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nt_status = ntlmssp_make_packet_signature(ntlmssp_state, sig_mem_ctx, data,
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length, NTLMSSP_RECEIVE, &local_sig);
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if (!NT_STATUS_IS_OK(nt_status)) {
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DEBUG(0, ("NTLMSSP packet check failed with %s\n", nt_errstr(nt_status)));
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return nt_status;
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}
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/* increment counter on recv */
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ntlmssp_state->ntlmssp_seq_num++;
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if (ntlmssp_state->neg_flags & NTLMSSP_NEGOTIATE_NTLM2) {
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if (local_sig.length != sig->length ||
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memcmp(local_sig.data,
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sig->data, sig->length) != 0) {
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DEBUG(5, ("BAD SIG NTLM2: wanted signature of\n"));
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dump_data(5, local_sig.data, local_sig.length);
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DEBUG(5, ("BAD SIG: got signature of\n"));
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dump_data(5, sig->data, sig->length);
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DEBUG(0, ("NTLMSSP NTLM2 packet check failed due to invalid signature!\n"));
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return NT_STATUS_ACCESS_DENIED;
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}
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} else {
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if (local_sig.length != sig->length ||
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memcmp(local_sig.data + 8,
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sig->data + 8, sig->length - 8) != 0) {
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DEBUG(5, ("BAD SIG NTLM1: wanted signature of\n"));
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dump_data(5, (const char *)local_sig.data, local_sig.length);
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DEBUG(5, ("BAD SIG: got signature of\n"));
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dump_data(5, (const char *)(sig->data), sig->length);
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DEBUG(0, ("NTLMSSP NTLM1 packet check failed due to invalid signature!\n"));
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return NT_STATUS_ACCESS_DENIED;
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}
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}
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return NT_STATUS_OK;
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}
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/**
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* Seal data with the NTLMSSP algorithm
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*
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*/
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NTSTATUS ntlmssp_seal_packet(NTLMSSP_STATE *ntlmssp_state,
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TALLOC_CTX *sig_mem_ctx,
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uchar *data, size_t length,
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DATA_BLOB *sig)
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{
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if (!ntlmssp_state->session_key.length) {
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DEBUG(3, ("NO session key, cannot seal packet\n"));
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return NT_STATUS_NO_USER_SESSION_KEY;
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}
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DEBUG(10,("ntlmssp_seal_data: seal\n"));
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dump_data_pw("ntlmssp clear data\n", data, length);
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if (ntlmssp_state->neg_flags & NTLMSSP_NEGOTIATE_NTLM2) {
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HMACMD5Context ctx;
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uchar seq_num[4];
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uchar digest[16];
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SIVAL(seq_num, 0, ntlmssp_state->ntlmssp_seq_num);
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hmac_md5_init_limK_to_64(ntlmssp_state->send_sign_key,
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sizeof(ntlmssp_state->send_sign_key), &ctx);
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hmac_md5_update(seq_num, 4, &ctx);
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hmac_md5_update(data, length, &ctx);
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hmac_md5_final(digest, &ctx);
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/* The order of these two operations matters - we must first seal the packet,
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then seal the sequence number - this is becouse the send_seal_hash is not
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constant, but is is rather updated with each iteration */
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NTLMSSPcalc_ap(ntlmssp_state->send_seal_hash, data, length);
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if (ntlmssp_state->neg_flags & NTLMSSP_NEGOTIATE_KEY_EXCH) {
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NTLMSSPcalc_ap(ntlmssp_state->send_seal_hash, digest, 8);
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}
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*sig = data_blob_talloc(sig_mem_ctx, NULL, 16);
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SIVAL(sig->data, 0, NTLMSSP_SIGN_VERSION);
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memcpy(sig->data + 4, digest, 8);
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memcpy(sig->data + 12, seq_num, 4);
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} else {
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uint32 crc;
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crc = crc32_calc_buffer((const char *)data, length);
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if (!msrpc_gen(sig_mem_ctx, sig, "dddd", NTLMSSP_SIGN_VERSION, 0, crc, ntlmssp_state->ntlmssp_seq_num)) {
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return NT_STATUS_NO_MEMORY;
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}
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/* The order of these two operations matters - we must first seal the packet,
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then seal the sequence number - this is becouse the ntlmssp_hash is not
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constant, but is is rather updated with each iteration */
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dump_data_pw("ntlmssp hash:\n", ntlmssp_state->ntlmssp_hash,
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sizeof(ntlmssp_state->ntlmssp_hash));
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NTLMSSPcalc_ap(ntlmssp_state->ntlmssp_hash, data, length);
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dump_data_pw("ntlmssp hash:\n", ntlmssp_state->ntlmssp_hash,
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sizeof(ntlmssp_state->ntlmssp_hash));
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NTLMSSPcalc_ap(ntlmssp_state->ntlmssp_hash, sig->data+4, sig->length-4);
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}
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dump_data_pw("ntlmssp sealed data\n", data, length);
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/* increment counter on send */
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ntlmssp_state->ntlmssp_seq_num++;
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return NT_STATUS_OK;
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}
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/**
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* Unseal data with the NTLMSSP algorithm
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*
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*/
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NTSTATUS ntlmssp_unseal_packet(NTLMSSP_STATE *ntlmssp_state,
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TALLOC_CTX *sig_mem_ctx,
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uchar *data, size_t length,
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DATA_BLOB *sig)
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{
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if (!ntlmssp_state->session_key.length) {
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DEBUG(3, ("NO session key, cannot unseal packet\n"));
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return NT_STATUS_NO_USER_SESSION_KEY;
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}
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DEBUG(10,("ntlmssp__unseal_data: seal\n"));
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dump_data_pw("ntlmssp sealed data\n", data, length);
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if (ntlmssp_state->neg_flags & NTLMSSP_NEGOTIATE_NTLM2) {
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NTLMSSPcalc_ap(ntlmssp_state->recv_seal_hash, data, length);
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} else {
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dump_data_pw("ntlmssp hash:\n", ntlmssp_state->ntlmssp_hash,
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sizeof(ntlmssp_state->ntlmssp_hash));
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NTLMSSPcalc_ap(ntlmssp_state->ntlmssp_hash, data, length);
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}
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dump_data_pw("ntlmssp clear data\n", data, length);
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return ntlmssp_check_packet(ntlmssp_state, sig_mem_ctx, data, length, sig);
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/* increment counter on recv */
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ntlmssp_state->ntlmssp_seq_num++;
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}
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/**
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Initialise the state for NTLMSSP signing.
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*/
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NTSTATUS ntlmssp_sign_init(NTLMSSP_STATE *ntlmssp_state)
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{
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unsigned char p24[24];
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ZERO_STRUCT(p24);
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DEBUG(3, ("NTLMSSP Sign/Seal - Initialising with flags:\n"));
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debug_ntlmssp_flags(ntlmssp_state->neg_flags);
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if (!ntlmssp_state->session_key.length) {
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DEBUG(3, ("NO session key, cannot intialise signing\n"));
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return NT_STATUS_NO_USER_SESSION_KEY;
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}
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if (ntlmssp_state->neg_flags & NTLMSSP_NEGOTIATE_NTLM2)
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{
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const char *send_sign_const;
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const char *send_seal_const;
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const char *recv_sign_const;
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const char *recv_seal_const;
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switch (ntlmssp_state->role) {
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case NTLMSSP_CLIENT:
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send_sign_const = CLI_SIGN;
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send_seal_const = CLI_SEAL;
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recv_sign_const = SRV_SIGN;
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recv_seal_const = SRV_SEAL;
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break;
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case NTLMSSP_SERVER:
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send_sign_const = SRV_SIGN;
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send_seal_const = SRV_SEAL;
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recv_sign_const = CLI_SIGN;
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recv_seal_const = CLI_SEAL;
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break;
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}
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/* SEND */
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calc_ntlmv2_hash(ntlmssp_state->send_sign_hash,
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ntlmssp_state->send_sign_key,
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ntlmssp_state->session_key, send_sign_const);
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dump_data_pw("NTLMSSP send sign key:\n",
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ntlmssp_state->send_sign_key,
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sizeof(ntlmssp_state->send_sign_key));
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dump_data_pw("NTLMSSP send sign hash:\n",
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ntlmssp_state->send_sign_hash,
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sizeof(ntlmssp_state->send_sign_hash));
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calc_ntlmv2_hash(ntlmssp_state->send_seal_hash,
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ntlmssp_state->send_seal_key,
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ntlmssp_state->session_key, send_seal_const);
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dump_data_pw("NTLMSSP send seal key:\n",
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ntlmssp_state->send_seal_key,
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sizeof(ntlmssp_state->send_seal_key));
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dump_data_pw("NTLMSSP send sesl hash:\n",
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ntlmssp_state->send_seal_hash,
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sizeof(ntlmssp_state->send_seal_hash));
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/* RECV */
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calc_ntlmv2_hash(ntlmssp_state->recv_sign_hash,
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ntlmssp_state->recv_sign_key,
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ntlmssp_state->session_key, recv_sign_const);
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dump_data_pw("NTLMSSP recv sign key:\n",
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ntlmssp_state->recv_sign_key,
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sizeof(ntlmssp_state->recv_sign_key));
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dump_data_pw("NTLMSSP receive sign hash:\n",
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ntlmssp_state->recv_sign_hash,
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sizeof(ntlmssp_state->recv_sign_hash));
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calc_ntlmv2_hash(ntlmssp_state->recv_seal_hash,
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ntlmssp_state->recv_seal_key,
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ntlmssp_state->session_key, recv_seal_const);
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dump_data_pw("NTLMSSP recv seal key:\n",
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ntlmssp_state->recv_sign_key,
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sizeof(ntlmssp_state->recv_seal_key));
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dump_data_pw("NTLMSSP receive seal hash:\n",
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ntlmssp_state->recv_sign_hash,
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sizeof(ntlmssp_state->recv_sign_hash));
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} else {
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if (!ntlmssp_state->session_key.data) {
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/* can't sign or check signatures yet */
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DEBUG(5, ("NTLMSSP Sign/Seal - cannot use NT KEY\n"));
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return NT_STATUS_UNSUCCESSFUL;
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}
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|
|
DEBUG(5, ("NTLMSSP Sign/Seal - using NT KEY\n"));
|
|
|
|
calc_hash(ntlmssp_state->ntlmssp_hash, (const char *)(ntlmssp_state->session_key.data), ntlmssp_state->session_key.length);
|
|
dump_data_pw("NTLMSSP hash:\n", ntlmssp_state->ntlmssp_hash,
|
|
sizeof(ntlmssp_state->ntlmssp_hash));
|
|
}
|
|
|
|
ntlmssp_state->ntlmssp_seq_num = 0;
|
|
|
|
return NT_STATUS_OK;
|
|
}
|