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313f2c9ff7
We now cope wiith multiple WINS groups and multiple failover servers for release and refresh as well as registration. We also do the regitrations in the same fashion as W2K does, where we don't try to register the next IP in the list for a name until the WINS server has acked the previos IP. This prevents us flooding the WINS server and also seems to make for much more reliable multi-homed registration. I also changed the dead WINS server code to mark pairs of IPs dead, not individual IPs. The idea is that a WINS server might be dead from the point of view of one of our interfaces, but not another, so we need to keep talking to it on one while moving onto a failover WINS server on the other interface. This copes much better with partial LAN outages and weird routing tables.
265 lines
7.9 KiB
C
265 lines
7.9 KiB
C
/*
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Unix SMB/CIFS implementation.
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NBT netbios library routines
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Copyright (C) Andrew Tridgell 1994-1998
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Copyright (C) Luke Kenneth Casson Leighton 1994-1998
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Copyright (C) Jeremy Allison 1994-1998
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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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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, write to the Free Software
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Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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*/
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#include "includes.h"
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extern int ClientNMB;
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int num_response_packets = 0;
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/***************************************************************************
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Add an expected response record into the list
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**************************************************************************/
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static void add_response_record(struct subnet_record *subrec,
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struct response_record *rrec)
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{
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struct response_record *rrec2;
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num_response_packets++; /* count of total number of packets still around */
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DEBUG(4,("add_response_record: adding response record id:%hu to subnet %s. num_records:%d\n",
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rrec->response_id, subrec->subnet_name, num_response_packets));
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if (!subrec->responselist)
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{
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subrec->responselist = rrec;
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rrec->prev = NULL;
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rrec->next = NULL;
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return;
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}
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for (rrec2 = subrec->responselist; rrec2->next; rrec2 = rrec2->next)
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;
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rrec2->next = rrec;
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rrec->next = NULL;
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rrec->prev = rrec2;
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}
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/***************************************************************************
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Remove an expected response record from the list
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**************************************************************************/
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void remove_response_record(struct subnet_record *subrec,
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struct response_record *rrec)
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{
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if (rrec->prev)
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rrec->prev->next = rrec->next;
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if (rrec->next)
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rrec->next->prev = rrec->prev;
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if (subrec->responselist == rrec)
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subrec->responselist = rrec->next;
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if(rrec->userdata)
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{
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if(rrec->userdata->free_fn) {
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(*rrec->userdata->free_fn)(rrec->userdata);
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} else {
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ZERO_STRUCTP(rrec->userdata);
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SAFE_FREE(rrec->userdata);
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}
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}
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/* Ensure we can delete. */
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rrec->packet->locked = False;
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free_packet(rrec->packet);
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ZERO_STRUCTP(rrec);
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SAFE_FREE(rrec);
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num_response_packets--; /* count of total number of packets still around */
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}
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/****************************************************************************
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Create a response record for an outgoing packet.
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**************************************************************************/
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struct response_record *make_response_record( struct subnet_record *subrec,
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struct packet_struct *p,
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response_function resp_fn,
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timeout_response_function timeout_fn,
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success_function success_fn,
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fail_function fail_fn,
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struct userdata_struct *userdata)
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{
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struct response_record *rrec;
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struct nmb_packet *nmb = &p->packet.nmb;
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if (!(rrec = (struct response_record *)malloc(sizeof(*rrec))))
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{
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DEBUG(0,("make_response_queue_record: malloc fail for response_record.\n"));
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return NULL;
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}
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memset((char *)rrec, '\0', sizeof(*rrec));
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rrec->response_id = nmb->header.name_trn_id;
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rrec->resp_fn = resp_fn;
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rrec->timeout_fn = timeout_fn;
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rrec->success_fn = success_fn;
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rrec->fail_fn = fail_fn;
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rrec->packet = p;
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if(userdata)
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{
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/* Intelligent userdata. */
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if(userdata->copy_fn)
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{
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if((rrec->userdata = (*userdata->copy_fn)(userdata)) == NULL)
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{
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DEBUG(0,("make_response_queue_record: copy fail for userdata.\n"));
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ZERO_STRUCTP(rrec);
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SAFE_FREE(rrec);
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return NULL;
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}
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}
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else
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{
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/* Primitive userdata, do a memcpy. */
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if((rrec->userdata = (struct userdata_struct *)
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malloc(sizeof(struct userdata_struct)+userdata->userdata_len)) == NULL)
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{
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DEBUG(0,("make_response_queue_record: malloc fail for userdata.\n"));
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ZERO_STRUCTP(rrec);
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SAFE_FREE(rrec);
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return NULL;
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}
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rrec->userdata->copy_fn = userdata->copy_fn;
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rrec->userdata->free_fn = userdata->free_fn;
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rrec->userdata->userdata_len = userdata->userdata_len;
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memcpy(rrec->userdata->data, userdata->data, userdata->userdata_len);
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}
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}
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else
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rrec->userdata = NULL;
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rrec->num_msgs = 0;
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if(!nmb->header.nm_flags.bcast)
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rrec->repeat_interval = 5; /* 5 seconds for unicast packets. */
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else
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rrec->repeat_interval = 1; /* XXXX should be in ms */
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rrec->repeat_count = 3; /* 3 retries */
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rrec->repeat_time = time(NULL) + rrec->repeat_interval; /* initial retry time */
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/* This packet is not being processed. */
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rrec->in_expiration_processing = False;
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/* Lock the packet so we won't lose it while it's on the list. */
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p->locked = True;
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add_response_record(subrec, rrec);
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return rrec;
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}
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/****************************************************************************
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Find a response in a subnet's name query response list.
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**************************************************************************/
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static struct response_record *find_response_record_on_subnet(
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struct subnet_record *subrec, uint16 id)
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{
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struct response_record *rrec = NULL;
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for (rrec = subrec->responselist; rrec; rrec = rrec->next)
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{
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if (rrec->response_id == id)
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{
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DEBUG(4, ("find_response_record: found response record id = %hu on subnet %s\n",
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id, subrec->subnet_name));
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break;
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}
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}
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return rrec;
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}
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/****************************************************************************
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Find a response in any subnet's name query response list.
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**************************************************************************/
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struct response_record *find_response_record(struct subnet_record **ppsubrec,
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uint16 id)
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{
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struct response_record *rrec = NULL;
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for ((*ppsubrec) = FIRST_SUBNET; (*ppsubrec);
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(*ppsubrec) = NEXT_SUBNET_INCLUDING_UNICAST(*ppsubrec))
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{
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if((rrec = find_response_record_on_subnet(*ppsubrec, id)) != NULL)
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return rrec;
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}
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/* There should never be response records on the remote_broadcast subnet.
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Sanity check to ensure this is so. */
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if(remote_broadcast_subnet->responselist != NULL)
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{
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DEBUG(0,("find_response_record: response record found on subnet %s. This should \
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never happen !\n", remote_broadcast_subnet->subnet_name));
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}
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/* Now check the WINS server subnet if it exists. */
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if(wins_server_subnet != NULL)
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{
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*ppsubrec = wins_server_subnet;
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if((rrec = find_response_record_on_subnet(*ppsubrec, id))!= NULL)
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return rrec;
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}
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DEBUG(0,("find_response_record: response packet id %hu received with no \
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matching record.\n", id));
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*ppsubrec = NULL;
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return NULL;
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}
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/****************************************************************************
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Check if a refresh is queued for a particular name on a particular subnet.
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**************************************************************************/
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BOOL is_refresh_already_queued(struct subnet_record *subrec, struct name_record *namerec)
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{
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struct response_record *rrec = NULL;
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for (rrec = subrec->responselist; rrec; rrec = rrec->next)
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{
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struct packet_struct *p = rrec->packet;
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struct nmb_packet *nmb = &p->packet.nmb;
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if((nmb->header.opcode == NMB_NAME_REFRESH_OPCODE_8) ||
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(nmb->header.opcode == NMB_NAME_REFRESH_OPCODE_9))
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{
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/* Yes it's a queued refresh - check if the name is correct. */
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if(nmb_name_equal(&nmb->question.question_name, &namerec->name))
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return True;
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}
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}
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return False;
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}
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