mirror of
https://github.com/samba-team/samba.git
synced 2025-01-20 14:03:59 +03:00
8fc1504ff8
groupdb/aliasdb.c groupdb/aliasfile.c groupdb/groupfile.c: Don't use snprinf, use slprintf. include/includes.h: Fix YP problem. include/smb.h: Fix ZERO_STRUCTP. lib/util_sock.c: Added strerror() in debugs. passdb/ldap.c: Don't use snprinf, use slprintf. rpc_client/cli_lsarpc.c rpc_client/cli_pipe.c rpc_parse/parse_sec.c rpc_server/srv_pipe.c: Don't use snprinf, use slprintf. script/installman.sh: DGUX changes. smbd/open.c smbd/oplock.c: Fixed gcc warnings. web/swat.c: Changes USER to SWAT_USER. (This used to be commit 4c2b5a00983501e5d4aad1456ba8b5ab0dfd9b4c)
509 lines
12 KiB
C
509 lines
12 KiB
C
/*
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* Unix SMB/Netbios implementation.
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* Version 1.9.
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* RPC Pipe client / server routines
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* Copyright (C) Andrew Tridgell 1992-1998,
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* Copyright (C) Jeremy R. Allison 1995-1998
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* Copyright (C) Luke Kenneth Casson Leighton 1996-1998,
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* Copyright (C) Paul Ashton 1997-1998.
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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
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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 DEBUGLEVEL;
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/*******************************************************************
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makes a structure.
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********************************************************************/
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void make_sec_access(SEC_ACCESS *t, uint32 mask)
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{
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t->mask = mask;
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}
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/*******************************************************************
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reads or writes a structure.
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********************************************************************/
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void sec_io_access(char *desc, SEC_ACCESS *t, prs_struct *ps, int depth)
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{
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if (t == NULL) return;
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prs_debug(ps, depth, desc, "sec_io_access");
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depth++;
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prs_align(ps);
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prs_uint32("mask", ps, depth, &(t->mask));
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}
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/*******************************************************************
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makes a structure.
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********************************************************************/
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void make_sec_ace(SEC_ACE *t, DOM_SID *sid, uint8 type, SEC_ACCESS mask, uint8 flag)
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{
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t->type = type;
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t->flags = flag;
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t->size = sid_size(sid) + 8;
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t->info = mask;
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sid_copy(&t->sid, sid);
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}
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/*******************************************************************
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reads or writes a structure.
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********************************************************************/
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void sec_io_ace(char *desc, SEC_ACE *t, prs_struct *ps, int depth)
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{
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uint32 old_offset;
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uint32 offset_ace_size;
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if (t == NULL) return;
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prs_debug(ps, depth, desc, "sec_io_ace");
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depth++;
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prs_align(ps);
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old_offset = ps->offset;
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prs_uint8 ("type ", ps, depth, &(t->type));
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prs_uint8 ("flags", ps, depth, &(t->flags));
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prs_uint16_pre("size ", ps, depth, &(t->size ), &offset_ace_size);
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sec_io_access ("info ", &t->info, ps, depth);
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prs_align(ps);
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smb_io_dom_sid("sid ", &t->sid , ps, depth);
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prs_uint16_post("size ", ps, depth, &t->size, offset_ace_size, old_offset);
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}
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/*******************************************************************
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makes a structure.
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********************************************************************/
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void make_sec_acl(SEC_ACL *t, uint16 revision, int num_aces, SEC_ACE *ace)
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{
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int i;
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t->revision = revision;
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t->num_aces = num_aces;
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t->size = 4;
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t->ace = ace;
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for (i = 0; i < num_aces; i++)
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{
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t->size += ace[i].size;
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}
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}
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/*******************************************************************
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frees a structure.
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********************************************************************/
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void free_sec_acl(SEC_ACL *t)
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{
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if (t->ace != NULL)
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{
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free(t->ace);
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}
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}
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/*******************************************************************
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reads or writes a structure.
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first of the xx_io_xx functions that allocates its data structures
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for you as it reads them.
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********************************************************************/
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void sec_io_acl(char *desc, SEC_ACL *t, prs_struct *ps, int depth)
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{
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int i;
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uint32 old_offset;
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uint32 offset_acl_size;
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if (t == NULL) return;
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prs_debug(ps, depth, desc, "sec_io_acl");
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depth++;
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prs_align(ps);
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old_offset = ps->offset;
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prs_uint16("revision", ps, depth, &(t->revision));
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prs_uint16_pre("size ", ps, depth, &(t->size ), &offset_acl_size);
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prs_uint32("num_aces ", ps, depth, &(t->num_aces ));
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if (ps->io && t->num_aces != 0)
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{
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/* reading */
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t->ace = malloc(sizeof(t->ace[0]) * t->num_aces);
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ZERO_STRUCTP(t->ace);
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}
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if (t->ace == NULL && t->num_aces != 0)
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{
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DEBUG(0,("INVALID ACL\n"));
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ps->offset = 0xfffffffe;
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return;
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}
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for (i = 0; i < MIN(t->num_aces, MAX_SEC_ACES); i++)
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{
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fstring tmp;
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slprintf(tmp, sizeof(tmp)-1, "ace[%02d]: ", i);
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sec_io_ace(tmp, &t->ace[i], ps, depth);
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}
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prs_align(ps);
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prs_uint16_post("size ", ps, depth, &t->size , offset_acl_size, old_offset);
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}
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/*******************************************************************
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makes a structure
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********************************************************************/
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int make_sec_desc(SEC_DESC *t, uint16 revision, uint16 type,
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DOM_SID *owner_sid, DOM_SID *grp_sid,
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SEC_ACL *sacl, SEC_ACL *dacl)
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{
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uint32 offset;
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t->revision = revision;
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t->type = type;
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t->off_owner_sid = 0;
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t->off_grp_sid = 0;
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t->off_sacl = 0;
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t->off_dacl = 0;
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t->dacl = dacl;
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t->sacl = sacl;
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t->owner_sid = owner_sid;
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t->grp_sid = grp_sid;
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offset = 0x0;
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if (dacl != NULL)
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{
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if (offset == 0)
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{
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offset = 0x14;
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}
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t->off_dacl = offset;
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offset += dacl->size;
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}
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if (sacl != NULL)
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{
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if (offset == 0)
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{
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offset = 0x14;
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}
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t->off_dacl = offset;
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offset += dacl->size;
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}
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if (owner_sid != NULL)
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{
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if (offset == 0)
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{
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offset = 0x14;
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}
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t->off_owner_sid = offset;
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offset += sid_size(owner_sid);
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}
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if (grp_sid != NULL)
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{
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if (offset == 0)
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{
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offset = 0x14;
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}
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t->off_grp_sid = offset;
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offset += sid_size(grp_sid);
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}
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return (offset == 0) ? 0x14 : offset;
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}
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/*******************************************************************
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frees a structure
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********************************************************************/
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void free_sec_desc(SEC_DESC *t)
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{
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if (t->dacl != NULL)
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{
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free_sec_acl(t->dacl);
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}
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if (t->sacl != NULL)
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{
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free_sec_acl(t->dacl);
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}
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if (t->owner_sid != NULL)
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{
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free(t->owner_sid);
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}
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if (t->grp_sid != NULL)
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{
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free(t->grp_sid);
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}
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}
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/*******************************************************************
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reads or writes a structure.
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********************************************************************/
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static void sec_io_desc(char *desc, SEC_DESC *t, prs_struct *ps, int depth)
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{
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#if 0
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uint32 off_owner_sid;
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uint32 off_grp_sid ;
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uint32 off_sacl ;
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uint32 off_dacl ;
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#endif
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uint32 old_offset;
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uint32 max_offset = 0; /* after we're done, move offset to end */
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if (t == NULL) return;
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prs_debug(ps, depth, desc, "sec_io_desc");
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depth++;
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prs_align(ps);
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/* start of security descriptor stored for back-calc offset purposes */
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old_offset = ps->offset;
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prs_uint16("revision ", ps, depth, &(t->revision ));
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prs_uint16("type ", ps, depth, &(t->type ));
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prs_uint32("off_owner_sid", ps, depth, &(t->off_owner_sid));
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prs_uint32("off_grp_sid ", ps, depth, &(t->off_grp_sid ));
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prs_uint32("off_sacl ", ps, depth, &(t->off_sacl ));
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prs_uint32("off_dacl ", ps, depth, &(t->off_dacl ));
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#if 0
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prs_uint32_pre("off_owner_sid", ps, depth, &(t->off_owner_sid), &off_owner_sid);
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prs_uint32_pre("off_grp_sid ", ps, depth, &(t->off_grp_sid ), &off_grp_sid );
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prs_uint32_pre("off_sacl ", ps, depth, &(t->off_sacl ), &off_sacl );
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prs_uint32_pre("off_dacl ", ps, depth, &(t->off_dacl ), &off_dacl );
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#endif
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max_offset = MAX(max_offset, ps->offset);
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if (IS_BITS_SET_ALL(t->type, SEC_DESC_DACL_PRESENT))
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{
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#if 0
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prs_uint32_post("off_dacl ", ps, depth, &(t->off_dacl ), off_dacl , ps->offset - old_offset);
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#endif
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ps->offset = old_offset + t->off_dacl;
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if (ps->io)
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{
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/* reading */
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t->dacl = malloc(sizeof(*t->dacl));
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ZERO_STRUCTP(t->dacl);
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}
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if (t->dacl == NULL)
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{
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DEBUG(0,("INVALID DACL\n"));
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ps->offset = 0xfffffffe;
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return;
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}
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sec_io_acl ("dacl" , t->dacl , ps, depth);
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prs_align(ps);
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}
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#if 0
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else
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{
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prs_uint32_post("off_dacl ", ps, depth, &(t->off_dacl ), off_dacl , 0);
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}
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#endif
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max_offset = MAX(max_offset, ps->offset);
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if (IS_BITS_SET_ALL(t->type, SEC_DESC_SACL_PRESENT))
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{
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#if 0
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prs_uint32_post("off_sacl ", ps, depth, &(t->off_sacl ), off_sacl , ps->offset - old_offset);
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#endif
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ps->offset = old_offset + t->off_sacl;
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if (ps->io)
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{
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/* reading */
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t->sacl = malloc(sizeof(*t->sacl));
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ZERO_STRUCTP(t->sacl);
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}
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if (t->sacl == NULL)
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{
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DEBUG(0,("INVALID SACL\n"));
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ps->offset = 0xfffffffe;
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return;
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}
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sec_io_acl ("sacl" , t->sacl , ps, depth);
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prs_align(ps);
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}
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#if 0
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else
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{
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prs_uint32_post("off_sacl ", ps, depth, &(t->off_sacl ), off_sacl , 0);
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}
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#endif
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max_offset = MAX(max_offset, ps->offset);
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#if 0
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prs_uint32_post("off_owner_sid", ps, depth, &(t->off_owner_sid), off_owner_sid, ps->offset - old_offset);
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#endif
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if (t->off_owner_sid != 0)
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{
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if (ps->io)
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{
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ps->offset = old_offset + t->off_owner_sid;
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}
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if (ps->io)
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{
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/* reading */
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t->owner_sid = malloc(sizeof(*t->owner_sid));
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ZERO_STRUCTP(t->owner_sid);
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}
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if (t->owner_sid == NULL)
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{
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DEBUG(0,("INVALID OWNER SID\n"));
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ps->offset = 0xfffffffe;
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return;
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}
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smb_io_dom_sid("owner_sid ", t->owner_sid , ps, depth);
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prs_align(ps);
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}
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max_offset = MAX(max_offset, ps->offset);
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#if 0
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prs_uint32_post("off_grp_sid ", ps, depth, &(t->off_grp_sid ), off_grp_sid , ps->offset - old_offset);
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#endif
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if (t->off_grp_sid != 0)
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{
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if (ps->io)
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{
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ps->offset = old_offset + t->off_grp_sid;
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}
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if (ps->io)
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{
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/* reading */
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t->grp_sid = malloc(sizeof(*t->grp_sid));
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ZERO_STRUCTP(t->grp_sid);
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}
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if (t->grp_sid == NULL)
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{
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DEBUG(0,("INVALID GROUP SID\n"));
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ps->offset = 0xfffffffe;
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return;
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}
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smb_io_dom_sid("grp_sid", t->grp_sid, ps, depth);
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prs_align(ps);
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}
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max_offset = MAX(max_offset, ps->offset);
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ps->offset = max_offset;
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}
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/*******************************************************************
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creates a SEC_DESC_BUF structure.
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********************************************************************/
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void make_sec_desc_buf(SEC_DESC_BUF *buf, int len, SEC_DESC *data)
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{
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ZERO_STRUCTP(buf);
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/* max buffer size (allocated size) */
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buf->max_len = len;
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buf->undoc = 0;
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buf->len = data != NULL ? len : 0;
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buf->sec = data;
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}
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/*******************************************************************
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frees a SEC_DESC_BUF structure.
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********************************************************************/
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void free_sec_desc_buf(SEC_DESC_BUF *buf)
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{
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if (buf->sec != NULL)
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{
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free_sec_desc(buf->sec);
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free(buf->sec);
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}
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}
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/*******************************************************************
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reads or writes a SEC_DESC_BUF structure.
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********************************************************************/
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void sec_io_desc_buf(char *desc, SEC_DESC_BUF *sec, prs_struct *ps, int depth)
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{
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uint32 off_len;
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uint32 off_max_len;
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uint32 old_offset;
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uint32 size;
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if (sec == NULL) return;
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prs_debug(ps, depth, desc, "sec_io_desc_buf");
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depth++;
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prs_align(ps);
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prs_uint32_pre("max_len", ps, depth, &(sec->max_len), &off_max_len);
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prs_uint32 ("undoc ", ps, depth, &(sec->undoc ));
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prs_uint32_pre("len ", ps, depth, &(sec->len ), &off_len);
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old_offset = ps->offset;
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if (sec->len != 0 && ps->io)
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{
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/* reading */
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sec->sec = malloc(sizeof(*sec->sec));
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ZERO_STRUCTP(sec->sec);
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if (sec->sec == NULL)
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{
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DEBUG(0,("INVALID SEC_DESC\n"));
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ps->offset = 0xfffffffe;
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return;
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}
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}
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/* reading, length is non-zero; writing, descriptor is non-NULL */
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if ((sec->len != 0 || (!ps->io)) && sec->sec != NULL)
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{
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sec_io_desc("sec ", sec->sec, ps, depth);
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}
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size = ps->offset - old_offset;
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prs_uint32_post("max_len", ps, depth, &(sec->max_len), off_max_len, size == 0 ? sec->max_len : size);
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prs_uint32_post("len ", ps, depth, &(sec->len ), off_len , size);
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}
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