source: trunk/lib/regfio.c @ 77

Last change on this file since 77 was 77, checked in by tim, 17 years ago

Improved support for unknown registry types.

Fixed potential security issue.

  • Property svn:keywords set to Id
File size: 39.4 KB
RevLine 
[30]1/*
2 * Branched from Samba project Subversion repository, version #7470:
3 *   http://websvn.samba.org/cgi-bin/viewcvs.cgi/trunk/source/registry/regfio.c
4 *
5 * Unix SMB/CIFS implementation.
6 * Windows NT registry I/O library
7 *
[61]8 * Copyright (C) 2005-2006 Timothy D. Morgan
[30]9 * Copyright (C) 2005 Gerald (Jerry) Carter
10 *
11 * This program is free software; you can redistribute it and/or modify
12 * it under the terms of the GNU General Public License as published by
13 * the Free Software Foundation; version 2 of the License.
14 *
15 * This program is distributed in the hope that it will be useful,
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
18 * GNU General Public License for more details.
19 *
20 * You should have received a copy of the GNU General Public License
21 * along with this program; if not, write to the Free Software
22 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. 
23 *
24 * $Id: regfio.c 77 2007-01-07 15:19:43Z tim $
25 */
26
27#include "../include/regfio.h"
28
29
[32]30/* Registry types mapping */
[72]31const unsigned int regfio_num_reg_types = 12;
[61]32static const char* regfio_type_names[] =
[65]33  {"NONE", "SZ", "EXPAND_SZ", "BINARY", "DWORD", "DWORD_BE", "LINK",
[72]34   "MULTI_SZ", "RSRC_LIST", "RSRC_DESC", "RSRC_REQ_LIST", "QWORD"};
[30]35
[32]36
37/* Returns NULL on error */
[41]38const char* regfio_type_val2str(unsigned int val)
[32]39{
[61]40  if(val == REG_KEY)
41    return "KEY";
42 
43  if(val >= regfio_num_reg_types)
44    return NULL;
45 
46  return regfio_type_names[val];
[32]47}
48
49
[61]50/* Returns -1 on error */
[41]51int regfio_type_str2val(const char* str)
[32]52{
53  int i;
54
[61]55  if(strcmp("KEY", str) == 0)
56    return REG_KEY;
[32]57
[61]58  for(i=0; i < regfio_num_reg_types; i++)
59    if (strcmp(regfio_type_names[i], str) == 0) 
60      return i;
61
62  if(strcmp("DWORD_LE", str) == 0)
63    return REG_DWORD_LE;
64
65  return -1;
[32]66}
67
68
[53]69/* Security descriptor parsing functions  */
70
71const char* regfio_ace_type2str(uint8 type)
72{
73  static const char* map[7] 
74    = {"ALLOW", "DENY", "AUDIT", "ALARM", 
75       "ALLOW CPD", "OBJ ALLOW", "OBJ DENY"};
76  if(type < 7)
77    return map[type];
78  else
79    /* XXX: would be nice to return the unknown integer value. 
80     *      However, as it is a const string, it can't be free()ed later on,
81     *      so that would need to change.
82     */
83    return "UNKNOWN";
84}
85
86
[76]87/* XXX: need a better reference on the meaning of each flag. */
88/* For more info, see:
89 *   http://msdn2.microsoft.com/en-us/library/aa772242.aspx
90 */
[53]91char* regfio_ace_flags2str(uint8 flags)
92{
[76]93  static const char* flag_map[32] = 
94    { "OI",
95      "CI",
96      "NP",
97      "IO",
98      "IA",
99      NULL,
100      NULL,
101      NULL,
102    };
[53]103
[76]104  char* ret_val = malloc(35*sizeof(char));
105  char* fo = ret_val;
106  uint32 i;
107  uint8 f;
108
109  if(ret_val == NULL)
[53]110    return NULL;
111
[76]112  fo[0] = '\0';
[53]113  if (!flags)
[76]114    return ret_val;
[53]115
[76]116  for(i=0; i < 8; i++)
117  {
118    f = (1<<i);
119    if((flags & f) && (flag_map[i] != NULL))
120    {
121      strcpy(fo, flag_map[i]);
122      fo += strlen(flag_map[i]);
123      *(fo++) = ' ';
124      flags ^= f;
125    }
[53]126  }
[76]127 
128  /* Any remaining unknown flags are added at the end in hex. */
129  if(flags != 0)
130    sprintf(fo, "0x%.2X ", flags);
131
132  /* Chop off the last space if we've written anything to ret_val */
133  if(fo != ret_val)
134    fo[-1] = '\0';
135
136  /* XXX: what was this old VI flag for??
137     XXX: Is this check right?  0xF == 1|2|4|8, which makes it redundant...
[53]138  if (flags == 0xF) {
139    if (some) strcat(flg_output, " ");
140    some = 1;
141    strcat(flg_output, "VI");
142  }
[76]143  */
[53]144
[76]145  return ret_val;
[53]146}
147
148
149char* regfio_ace_perms2str(uint32 perms)
150{
[76]151  uint32 i, p;
152  /* This is more than is needed by a fair margin. */
153  char* ret_val = malloc(350*sizeof(char));
154  char* r = ret_val;
155
156  /* Each represents one of 32 permissions bits.  NULL is for undefined/reserved bits.
157   * For more information, see:
158   *   http://msdn2.microsoft.com/en-gb/library/aa374892.aspx
159   *   http://msdn2.microsoft.com/en-gb/library/ms724878.aspx
160   */
161  static const char* perm_map[32] = 
162    {/* object-specific permissions (registry keys, in this case) */
163      "QRY_VAL",       /* KEY_QUERY_VALUE */
164      "SET_VAL",       /* KEY_SET_VALUE */
165      "CREATE_KEY",    /* KEY_CREATE_SUB_KEY */
166      "ENUM_KEYS",     /* KEY_ENUMERATE_SUB_KEYS */
167      "NOTIFY",        /* KEY_NOTIFY */
168      "CREATE_LNK",    /* KEY_CREATE_LINK - Reserved for system use. */
169      NULL,
170      NULL,
171      "WOW64_64",      /* KEY_WOW64_64KEY */
172      "WOW64_32",      /* KEY_WOW64_32KEY */
173      NULL,
174      NULL,
175      NULL,
176      NULL,
177      NULL,
178      NULL,
179      /* standard access rights */
180      "DELETE",        /* DELETE */
181      "R_CONT",        /* READ_CONTROL */
182      "W_DAC",         /* WRITE_DAC */
183      "W_OWNER",       /* WRITE_OWNER */
184      "SYNC",          /* SYNCHRONIZE - Shouldn't be set in registries */
185      NULL,
186      NULL,
187      NULL,
188      /* other generic */
189      "SYS_SEC",       /* ACCESS_SYSTEM_SECURITY */
190      "MAX_ALLWD",     /* MAXIMUM_ALLOWED */
191      NULL,
192      NULL,
193      "GEN_A",         /* GENERIC_ALL */
194      "GEN_X",         /* GENERIC_EXECUTE */
195      "GEN_W",         /* GENERIC_WRITE */
196      "GEN_R",         /* GENERIC_READ */
197    };
198
199
[53]200  if(ret_val == NULL)
201    return NULL;
202
[76]203  r[0] = '\0';
204  for(i=0; i < 32; i++)
205  {
206    p = (1<<i);
207    if((perms & p) && (perm_map[i] != NULL))
208    {
209      strcpy(r, perm_map[i]);
210      r += strlen(perm_map[i]);
211      *(r++) = ' ';
212      perms ^= p;
213    }
214  }
215 
216  /* Any remaining unknown permission bits are added at the end in hex. */
217  if(perms != 0)
218    sprintf(r, "0x%.8X ", perms);
[53]219
[76]220  /* Chop off the last space if we've written anything to ret_val */
221  if(r != ret_val)
222    r[-1] = '\0';
223
[53]224  return ret_val;
225}
226
227
228char* regfio_sid2str(DOM_SID* sid)
229{
230  uint32 i, size = MAXSUBAUTHS*11 + 24;
231  uint32 left = size;
232  uint8 comps = sid->num_auths;
233  char* ret_val = malloc(size);
234 
235  if(ret_val == NULL)
236    return NULL;
237
238  if(comps > MAXSUBAUTHS)
239    comps = MAXSUBAUTHS;
240
241  left -= sprintf(ret_val, "S-%u-%u", sid->sid_rev_num, sid->id_auth[5]);
242
243  for (i = 0; i < comps; i++) 
244    left -= snprintf(ret_val+(size-left), left, "-%u", sid->sub_auths[i]);
245
246  return ret_val;
247}
248
249
250char* regfio_get_acl(SEC_ACL* acl)
251{
252  uint32 i, extra, size = 0;
253  const char* type_str;
254  char* flags_str;
255  char* perms_str;
256  char* sid_str;
[61]257  char* ace_delim = "";
[53]258  char* ret_val = NULL;
[61]259  char* tmp_val = NULL;
260  bool failed = false;
[53]261  char field_delim = ':';
262
[61]263  for (i = 0; i < acl->num_aces && !failed; i++)
[53]264  {
265    sid_str = regfio_sid2str(&acl->ace[i].trustee);
266    type_str = regfio_ace_type2str(acl->ace[i].type);
267    perms_str = regfio_ace_perms2str(acl->ace[i].info.mask);
268    flags_str = regfio_ace_flags2str(acl->ace[i].flags);
269   
[61]270    if(flags_str != NULL && perms_str != NULL 
271       && type_str != NULL && sid_str != NULL)
272    {
273      /* XXX: this is slow */
274      extra = strlen(sid_str) + strlen(type_str) 
275        + strlen(perms_str) + strlen(flags_str)+5;
276      tmp_val = realloc(ret_val, size+extra);
[53]277
[61]278      if(tmp_val == NULL)
279      {
280        free(ret_val);
281        failed = true;
282      }
283      else
284      {
285        ret_val = tmp_val;
286        size += snprintf(ret_val+size, extra, "%s%s%c%s%c%s%c%s",
287                         ace_delim,sid_str,
288                         field_delim,type_str,
289                         field_delim,perms_str,
290                         field_delim,flags_str);
291        ace_delim = "|";
292      }
293    }
294    else
295      failed = true;
296
297    if(sid_str != NULL)
298      free(sid_str);
299    if(sid_str != NULL)
300      free(perms_str);
301    if(sid_str != NULL)
302      free(flags_str);
[53]303  }
304
305  return ret_val;
306}
307
308
309char* regfio_get_sacl(SEC_DESC *sec_desc)
310{
311  if (sec_desc->sacl)
312    return regfio_get_acl(sec_desc->sacl);
313  else
314    return NULL;
315}
316
317
318char* regfio_get_dacl(SEC_DESC *sec_desc)
319{
320  if (sec_desc->dacl)
321    return regfio_get_acl(sec_desc->dacl);
322  else
323    return NULL;
324}
325
326
327char* regfio_get_owner(SEC_DESC *sec_desc)
328{
329  return regfio_sid2str(sec_desc->owner_sid);
330}
331
332
333char* regfio_get_group(SEC_DESC *sec_desc)
334{
335  return regfio_sid2str(sec_desc->grp_sid);
336}
337
338
339
[30]340/*******************************************************************
[31]341 *******************************************************************/
[30]342static int read_block( REGF_FILE *file, prs_struct *ps, uint32 file_offset, 
343                       uint32 block_size )
344{
[61]345  const int hdr_size = 0x20;
[31]346  int bytes_read, returned;
347  char *buffer;
348  SMB_STRUCT_STAT sbuf;
[30]349
[31]350  /* check for end of file */
[30]351
[31]352  if ( fstat( file->fd, &sbuf ) ) {
353    /*DEBUG(0,("read_block: stat() failed! (%s)\n", strerror(errno)));*/
354    return -1;
355  }
[30]356
[31]357  if ( (size_t)file_offset >= sbuf.st_size )
358    return -1;
[30]359       
[31]360  /* if block_size == 0, we are parsnig HBIN records and need
361     to read some of the header to get the block_size from there */
[30]362           
[31]363  if ( block_size == 0 ) {
364    uint8 hdr[0x20];
[30]365
[31]366    if ( lseek( file->fd, file_offset, SEEK_SET ) == -1 ) {
367      /*DEBUG(0,("read_block: lseek() failed! (%s)\n", strerror(errno) ));*/
368      return -1;
369    }
[30]370
[61]371    bytes_read = returned = 0;
372    while (bytes_read < hdr_size)
373    {
374      returned = read(file->fd, hdr + bytes_read, hdr_size - bytes_read);
375      if(returned == -1 && errno != EINTR && errno != EAGAIN)
376      {
377        /*DEBUG(0,("read_block: read of hdr failed (%s)\n",strerror(errno)));*/
378        return -1;
379      }
380
381      if(returned == 0)
382        return -1;
383
384      bytes_read += returned;
[31]385    }
[30]386
[31]387    /* make sure this is an hbin header */
[30]388
[53]389    if ( strncmp( (char*)hdr, "hbin", HBIN_HDR_SIZE ) != 0 ) {
[31]390      /*DEBUG(0,("read_block: invalid block header!\n"));*/
391      return -1;
392    }
[30]393
[31]394    block_size = IVAL( hdr, 0x08 );
395  }
[30]396
[31]397  /*DEBUG(10,("read_block: block_size == 0x%x\n", block_size ));*/
[30]398
[31]399  /* set the offset, initialize the buffer, and read the block from disk */
[30]400
[31]401  if ( lseek( file->fd, file_offset, SEEK_SET ) == -1 ) {
402    /*DEBUG(0,("read_block: lseek() failed! (%s)\n", strerror(errno) ));*/
403    return -1;
404  }
[30]405       
[31]406  prs_init( ps, block_size, file->mem_ctx, UNMARSHALL );
407  buffer = ps->data_p;
408  bytes_read = returned = 0;
[30]409
[32]410  while ( bytes_read < block_size ) 
411  {
[61]412    returned = read(file->fd, buffer+bytes_read, block_size-bytes_read);
413    if(returned == -1 && errno != EINTR && errno != EAGAIN)
[32]414    {
[31]415      /*DEBUG(0,("read_block: read() failed (%s)\n", strerror(errno) ));*/
[61]416      return -1;
[31]417    }
[61]418
[32]419    if ((returned == 0) && (bytes_read < block_size)) 
420    {
[31]421      /*DEBUG(0,("read_block: not a vald registry file ?\n" ));*/
[61]422      return -1;
[31]423    }   
[32]424
[31]425    bytes_read += returned;
426  }
[30]427       
[31]428  return bytes_read;
[30]429}
430
431
432/*******************************************************************
[31]433 *******************************************************************/
[53]434static bool prs_regf_block(const char *desc, prs_struct *ps, 
435                           int depth, REGF_FILE *file)
[30]436{
[31]437  depth++;
[30]438       
[53]439  if(!prs_uint8s(true, "header", ps, depth, file->header, sizeof(file->header)))
[31]440    return false;
[30]441       
[31]442  /* yes, these values are always identical so store them only once */
[30]443       
[31]444  if ( !prs_uint32( "unknown1", ps, depth, &file->unknown1 ))
445    return false;
446  if ( !prs_uint32( "unknown1 (again)", ps, depth, &file->unknown1 ))
447    return false;
[30]448
[31]449  /* get the modtime */
[30]450       
[31]451  if ( !prs_set_offset( ps, 0x0c ) )
452    return false;
453  if ( !smb_io_time( "modtime", &file->mtime, ps, depth ) )
454    return false;
[30]455
[31]456  /* constants */
[30]457       
[31]458  if ( !prs_uint32( "unknown2", ps, depth, &file->unknown2 ))
459    return false;
460  if ( !prs_uint32( "unknown3", ps, depth, &file->unknown3 ))
461    return false;
462  if ( !prs_uint32( "unknown4", ps, depth, &file->unknown4 ))
463    return false;
464  if ( !prs_uint32( "unknown5", ps, depth, &file->unknown5 ))
465    return false;
[30]466
[31]467  /* get file offsets */
[30]468       
[31]469  if ( !prs_set_offset( ps, 0x24 ) )
470    return false;
471  if ( !prs_uint32( "data_offset", ps, depth, &file->data_offset ))
472    return false;
473  if ( !prs_uint32( "last_block", ps, depth, &file->last_block ))
474    return false;
[30]475               
[31]476  /* one more constant */
[30]477       
[31]478  if ( !prs_uint32( "unknown6", ps, depth, &file->unknown6 ))
479    return false;
[30]480               
[31]481  /* get the checksum */
[30]482       
[31]483  if ( !prs_set_offset( ps, 0x01fc ) )
484    return false;
485  if ( !prs_uint32( "checksum", ps, depth, &file->checksum ))
486    return false;
[30]487       
[31]488  return true;
[30]489}
490
491
492/*******************************************************************
[31]493 *******************************************************************/
[53]494static bool prs_hbin_block(const char *desc, prs_struct *ps, 
495                           int depth, REGF_HBIN *hbin)
[30]496{
[31]497  uint32 block_size2;
[30]498
[31]499  depth++;
[30]500       
[53]501  if(!prs_uint8s(true, "header", ps, depth, hbin->header, sizeof(hbin->header)))
[31]502    return false;
[30]503
[31]504  if ( !prs_uint32( "first_hbin_off", ps, depth, &hbin->first_hbin_off ))
505    return false;
[30]506
[31]507  /* The dosreg.cpp comments say that the block size is at 0x1c.
508     According to a WINXP NTUSER.dat file, this is wrong.  The block_size
509     is at 0x08 */
[30]510
[31]511  if ( !prs_uint32( "block_size", ps, depth, &hbin->block_size ))
512    return false;
[30]513
[31]514  block_size2 = hbin->block_size;
515  prs_set_offset( ps, 0x1c );
516  if ( !prs_uint32( "block_size2", ps, depth, &block_size2 ))
517    return false;
[30]518
[31]519  if ( !ps->io )
520    hbin->dirty = true;
[30]521       
522
[31]523  return true;
[30]524}
525
526
527/*******************************************************************
[31]528 *******************************************************************/
[33]529static bool prs_nk_rec( const char *desc, prs_struct *ps, 
530                        int depth, REGF_NK_REC *nk )
[30]531{
[31]532  uint16 class_length, name_length;
533  uint32 start;
534  uint32 data_size, start_off, end_off;
535  uint32 unknown_off = REGF_OFFSET_NONE;
[30]536
[31]537  nk->hbin_off = ps->data_offset;
538  start = nk->hbin_off;
[30]539       
[31]540  depth++;
[30]541       
[33]542  /* back up and get the data_size */   
[31]543  if ( !prs_set_offset( ps, ps->data_offset-sizeof(uint32)) )
544    return false;
545  start_off = ps->data_offset;
546  if ( !prs_uint32( "rec_size", ps, depth, &nk->rec_size ))
547    return false;
[30]548       
[33]549  if (!prs_uint8s(true, "header", ps, depth, nk->header, sizeof(nk->header)))
[31]550    return false;
[30]551               
[31]552  if ( !prs_uint16( "key_type", ps, depth, &nk->key_type ))
553    return false;
554  if ( !smb_io_time( "mtime", &nk->mtime, ps, depth ))
555    return false;
[30]556               
[31]557  if ( !prs_set_offset( ps, start+0x0010 ) )
558    return false;
559  if ( !prs_uint32( "parent_off", ps, depth, &nk->parent_off ))
560    return false;
561  if ( !prs_uint32( "num_subkeys", ps, depth, &nk->num_subkeys ))
562    return false;
[30]563               
[31]564  if ( !prs_set_offset( ps, start+0x001c ) )
565    return false;
566  if ( !prs_uint32( "subkeys_off", ps, depth, &nk->subkeys_off ))
567    return false;
568  if ( !prs_uint32( "unknown_off", ps, depth, &unknown_off) )
569    return false;
[30]570               
[31]571  if ( !prs_set_offset( ps, start+0x0024 ) )
572    return false;
573  if ( !prs_uint32( "num_values", ps, depth, &nk->num_values ))
574    return false;
575  if ( !prs_uint32( "values_off", ps, depth, &nk->values_off ))
576    return false;
577  if ( !prs_uint32( "sk_off", ps, depth, &nk->sk_off ))
578    return false;
579  if ( !prs_uint32( "classname_off", ps, depth, &nk->classname_off ))
580    return false;
[30]581
[33]582  if (!prs_uint32("max_bytes_subkeyname", ps, depth, &nk->max_bytes_subkeyname))
[31]583    return false;
[33]584  if ( !prs_uint32( "max_bytes_subkeyclassname", ps, 
585                    depth, &nk->max_bytes_subkeyclassname))
586  { return false; }
[31]587  if ( !prs_uint32( "max_bytes_valuename", ps, depth, &nk->max_bytes_valuename))
588    return false;
589  if ( !prs_uint32( "max_bytes_value", ps, depth, &nk->max_bytes_value))
590    return false;
591  if ( !prs_uint32( "unknown index", ps, depth, &nk->unk_index))
592    return false;
[30]593
[31]594  name_length = nk->keyname ? strlen(nk->keyname) : 0 ;
595  class_length = nk->classname ? strlen(nk->classname) : 0 ;
596  if ( !prs_uint16( "name_length", ps, depth, &name_length ))
597    return false;
598  if ( !prs_uint16( "class_length", ps, depth, &class_length ))
599    return false;       
[30]600               
[33]601  if ( class_length ) 
602  {
[31]603    ;;
604  }
[30]605       
[33]606  if ( name_length ) 
607  {
608    if(ps->io && !(nk->keyname = (char*)zcalloc(sizeof(char), name_length+1)))
[31]609        return false;
[30]610
[53]611    if(!prs_uint8s(true, "name", ps, depth, (uint8*)nk->keyname, name_length))
[31]612      return false;
[30]613
[53]614    if(ps->io)
[31]615      nk->keyname[name_length] = '\0';
616  }
[30]617
[31]618  end_off = ps->data_offset;
[30]619
[33]620  /* data_size must be divisible by 8 and large enough to hold
621     the original record */
[30]622
[31]623  data_size = ((start_off - end_off) & 0xfffffff8 );
[33]624  /*if ( data_size > nk->rec_size )
625      DEBUG(10,("Encountered reused record (0x%x < 0x%x)\n", data_size, nk->rec_size));*/
[30]626
[33]627  if ( !ps->io )
628    nk->hbin->dirty = true;
629 
630  nk->subkey_index = 0;
[31]631  return true;
[30]632}
633
634
635/*******************************************************************
[31]636 *******************************************************************/
[30]637static uint32 regf_block_checksum( prs_struct *ps )
638{
[31]639  char *buffer = ps->data_p;
640  uint32 checksum, x;
641  int i;
[30]642
[31]643  /* XOR of all bytes 0x0000 - 0x01FB */
[30]644               
[31]645  checksum = x = 0;
[30]646       
[31]647  for ( i=0; i<0x01FB; i+=4 ) {
648    x = IVAL(buffer, i );
649    checksum ^= x;
650  }
[30]651       
[31]652  return checksum;
[30]653}
654
655
656/*******************************************************************
[31]657 *******************************************************************/
[30]658static bool read_regf_block( REGF_FILE *file )
659{
[31]660  prs_struct ps;
661  uint32 checksum;
[30]662       
[31]663  /* grab the first block from the file */
[30]664               
[31]665  if ( read_block( file, &ps, 0, REGF_BLOCKSIZE ) == -1 )
666    return false;
[30]667       
[31]668  /* parse the block and verify the checksum */
[30]669       
[31]670  if ( !prs_regf_block( "regf_header", &ps, 0, file ) )
671    return false;       
[30]672               
[31]673  checksum = regf_block_checksum( &ps );
[30]674       
[31]675  if(ps.is_dynamic)
676    SAFE_FREE(ps.data_p);
677  ps.is_dynamic = false;
678  ps.buffer_size = 0;
679  ps.data_offset = 0;
[30]680
[31]681  if ( file->checksum !=  checksum ) {
682    /*DEBUG(0,("read_regf_block: invalid checksum\n" ));*/
683    return false;
684  }
[30]685
[31]686  return true;
[30]687}
688
689
690/*******************************************************************
[31]691 *******************************************************************/
[30]692static REGF_HBIN* read_hbin_block( REGF_FILE *file, off_t offset )
693{
[31]694  REGF_HBIN *hbin;
695  uint32 record_size, curr_off, block_size, header;
[30]696       
[31]697  if ( !(hbin = (REGF_HBIN*)zalloc(sizeof(REGF_HBIN))) ) 
698    return NULL;
699  hbin->file_off = offset;
700  hbin->free_off = -1;
[30]701               
[31]702  if ( read_block( file, &hbin->ps, offset, 0 ) == -1 )
703    return NULL;
[30]704       
[31]705  if ( !prs_hbin_block( "hbin", &hbin->ps, 0, hbin ) )
706    return NULL;       
[30]707
[31]708  /* this should be the same thing as hbin->block_size but just in case */
[30]709
[31]710  block_size = hbin->ps.buffer_size;
[30]711
[31]712  /* Find the available free space offset.  Always at the end,
713     so walk the record list and stop when you get to the end.
714     The end is defined by a record header of 0xffffffff.  The
715     previous 4 bytes contains the amount of free space remaining
716     in the hbin block. */
[30]717
[31]718  /* remember that the record_size is in the 4 bytes preceeding the record itself */
[30]719
[31]720  if ( !prs_set_offset( &hbin->ps, file->data_offset+HBIN_HDR_SIZE-sizeof(uint32) ) )
721    return false;
[30]722
[31]723  record_size = 0;
724  curr_off = hbin->ps.data_offset;
725  while ( header != 0xffffffff ) {
726    /* not done yet so reset the current offset to the
727       next record_size field */
[30]728
[31]729    curr_off = curr_off+record_size;
[30]730
[31]731    /* for some reason the record_size of the last record in
732       an hbin block can extend past the end of the block
733       even though the record fits within the remaining
734       space....aaarrrgggghhhhhh */
[30]735
[31]736    if ( curr_off >= block_size ) {
737      record_size = -1;
738      curr_off = -1;
739      break;
740    }
[30]741
[31]742    if ( !prs_set_offset( &hbin->ps, curr_off) )
743      return false;
[30]744
[31]745    if ( !prs_uint32( "rec_size", &hbin->ps, 0, &record_size ) )
746      return false;
747    if ( !prs_uint32( "header", &hbin->ps, 0, &header ) )
748      return false;
[30]749               
[31]750    assert( record_size != 0 );
[30]751
[31]752    if ( record_size & 0x80000000 ) {
753      /* absolute_value(record_size) */
754      record_size = (record_size ^ 0xffffffff) + 1;
755    }
756  }
[30]757
[31]758  /* save the free space offset */
[30]759
[31]760  if ( header == 0xffffffff ) {
[30]761
[31]762    /* account for the fact that the curr_off is 4 bytes behind the actual
763       record header */
[30]764
[31]765    hbin->free_off = curr_off + sizeof(uint32);
766    hbin->free_size = record_size;
767  }
[30]768
[31]769  /*DEBUG(10,("read_hbin_block: free space offset == 0x%x\n", hbin->free_off));*/
[30]770
[31]771  if ( !prs_set_offset( &hbin->ps, file->data_offset+HBIN_HDR_SIZE )  )
772    return false;
[30]773       
[31]774  return hbin;
[30]775}
776
777
778/*******************************************************************
779 Input a randon offset and receive the correpsonding HBIN
780 block for it
781*******************************************************************/
782static bool hbin_contains_offset( REGF_HBIN *hbin, uint32 offset )
783{
[31]784  if ( !hbin )
785    return false;
[30]786       
[31]787  if ( (offset > hbin->first_hbin_off) && (offset < (hbin->first_hbin_off+hbin->block_size)) )
788    return true;
[30]789               
[31]790  return false;
[30]791}
792
793
794/*******************************************************************
795 Input a randon offset and receive the correpsonding HBIN
796 block for it
797*******************************************************************/
798static REGF_HBIN* lookup_hbin_block( REGF_FILE *file, uint32 offset )
799{
[31]800  REGF_HBIN *hbin = NULL;
801  uint32 block_off;
[30]802
[31]803  /* start with the open list */
[30]804
[31]805  for ( hbin=file->block_list; hbin; hbin=hbin->next ) {
806    /* DEBUG(10,("lookup_hbin_block: address = 0x%x [0x%x]\n", hbin->file_off, (uint32)hbin ));*/
807    if ( hbin_contains_offset( hbin, offset ) )
808      return hbin;
809  }
[30]810       
[31]811  if ( !hbin ) {
812    /* start at the beginning */
[30]813
[31]814    block_off = REGF_BLOCKSIZE;
815    do {
816      /* cleanup before the next round */
817      if ( hbin )
818      {
819        if(hbin->ps.is_dynamic)
820          SAFE_FREE(hbin->ps.data_p);
821        hbin->ps.is_dynamic = false;
822        hbin->ps.buffer_size = 0;
823        hbin->ps.data_offset = 0;
824      }
[30]825
[31]826      hbin = read_hbin_block( file, block_off );
[30]827
[31]828      if ( hbin ) 
829        block_off = hbin->file_off + hbin->block_size;
[30]830
[31]831    } while ( hbin && !hbin_contains_offset( hbin, offset ) );
832  }
[30]833
[31]834  if ( hbin )
835    DLIST_ADD( file->block_list, hbin );
[30]836
[31]837  return hbin;
[30]838}
839
840
841/*******************************************************************
[31]842 *******************************************************************/
[30]843static bool prs_hash_rec( const char *desc, prs_struct *ps, int depth, REGF_HASH_REC *hash )
844{
[31]845  depth++;
[30]846
[31]847  if ( !prs_uint32( "nk_off", ps, depth, &hash->nk_off ))
848    return false;
849  if ( !prs_uint8s( true, "keycheck", ps, depth, hash->keycheck, sizeof( hash->keycheck )) )
850    return false;
[30]851       
[31]852  return true;
[30]853}
854
855
856/*******************************************************************
[31]857 *******************************************************************/
[53]858static bool hbin_prs_lf_records(const char *desc, REGF_HBIN *hbin, 
859                                int depth, REGF_NK_REC *nk)
[30]860{
[31]861  int i;
862  REGF_LF_REC *lf = &nk->subkeys;
863  uint32 data_size, start_off, end_off;
[30]864
[31]865  depth++;
[30]866
[31]867  /* check if we have anything to do first */
[30]868       
[31]869  if ( nk->num_subkeys == 0 )
870    return true;
[30]871
[31]872  /* move to the LF record */
[30]873
[31]874  if ( !prs_set_offset( &hbin->ps, nk->subkeys_off + HBIN_HDR_SIZE - hbin->first_hbin_off ) )
875    return false;
[30]876
[31]877  /* backup and get the data_size */
[30]878       
[31]879  if ( !prs_set_offset( &hbin->ps, hbin->ps.data_offset-sizeof(uint32)) )
880    return false;
881  start_off = hbin->ps.data_offset;
882  if ( !prs_uint32( "rec_size", &hbin->ps, depth, &lf->rec_size ))
883    return false;
[30]884
[53]885  if(!prs_uint8s(true, "header", &hbin->ps, depth, 
886                 lf->header, sizeof(lf->header)))
[31]887    return false;
[30]888               
[31]889  if ( !prs_uint16( "num_keys", &hbin->ps, depth, &lf->num_keys))
890    return false;
[30]891
[31]892  if ( hbin->ps.io ) {
893    if ( !(lf->hashes = (REGF_HASH_REC*)zcalloc(sizeof(REGF_HASH_REC), lf->num_keys )) )
894      return false;
895  }
[30]896
[31]897  for ( i=0; i<lf->num_keys; i++ ) {
898    if ( !prs_hash_rec( "hash_rec", &hbin->ps, depth, &lf->hashes[i] ) )
899      return false;
900  }
[30]901
[31]902  end_off = hbin->ps.data_offset;
[30]903
[31]904  /* data_size must be divisible by 8 and large enough to hold the original record */
[30]905
[31]906  data_size = ((start_off - end_off) & 0xfffffff8 );
[33]907  /*  if ( data_size > lf->rec_size )*/
[31]908    /*DEBUG(10,("Encountered reused record (0x%x < 0x%x)\n", data_size, lf->rec_size));*/
[30]909
[33]910  if ( !hbin->ps.io )
911    hbin->dirty = true;
[30]912
[31]913  return true;
[30]914}
915
916
917/*******************************************************************
[31]918 *******************************************************************/
[30]919static bool hbin_prs_sk_rec( const char *desc, REGF_HBIN *hbin, int depth, REGF_SK_REC *sk )
920{
[31]921  prs_struct *ps = &hbin->ps;
922  uint16 tag = 0xFFFF;
923  uint32 data_size, start_off, end_off;
[30]924
925
[31]926  depth++;
[30]927
[31]928  if ( !prs_set_offset( &hbin->ps, sk->sk_off + HBIN_HDR_SIZE - hbin->first_hbin_off ) )
929    return false;
[30]930
[31]931  /* backup and get the data_size */
[30]932       
[31]933  if ( !prs_set_offset( &hbin->ps, hbin->ps.data_offset-sizeof(uint32)) )
934    return false;
935  start_off = hbin->ps.data_offset;
936  if ( !prs_uint32( "rec_size", &hbin->ps, depth, &sk->rec_size ))
937    return false;
[30]938
[53]939  if (!prs_uint8s(true, "header", ps, depth, sk->header, sizeof(sk->header)))
[31]940    return false;
941  if ( !prs_uint16( "tag", ps, depth, &tag))
942    return false;
[30]943
[31]944  if ( !prs_uint32( "prev_sk_off", ps, depth, &sk->prev_sk_off))
945    return false;
946  if ( !prs_uint32( "next_sk_off", ps, depth, &sk->next_sk_off))
947    return false;
948  if ( !prs_uint32( "ref_count", ps, depth, &sk->ref_count))
949    return false;
950  if ( !prs_uint32( "size", ps, depth, &sk->size))
951    return false;
[30]952
[31]953  if ( !sec_io_desc( "sec_desc", &sk->sec_desc, ps, depth )) 
954    return false;
[30]955
[31]956  end_off = hbin->ps.data_offset;
[30]957
[31]958  /* data_size must be divisible by 8 and large enough to hold the original record */
[30]959
[31]960  data_size = ((start_off - end_off) & 0xfffffff8 );
[33]961  /*  if ( data_size > sk->rec_size )*/
[31]962    /*DEBUG(10,("Encountered reused record (0x%x < 0x%x)\n", data_size, sk->rec_size));*/
[30]963
[33]964  if ( !hbin->ps.io )
965    hbin->dirty = true;
[30]966
[31]967  return true;
[30]968}
969
970
971/*******************************************************************
[31]972 *******************************************************************/
[30]973static bool hbin_prs_vk_rec( const char *desc, REGF_HBIN *hbin, int depth, 
974                             REGF_VK_REC *vk, REGF_FILE *file )
975{
[31]976  uint32 offset;
977  uint16 name_length;
978  prs_struct *ps = &hbin->ps;
979  uint32 data_size, start_off, end_off;
[30]980
[31]981  depth++;
[30]982
[31]983  /* backup and get the data_size */
[30]984       
[31]985  if ( !prs_set_offset( &hbin->ps, hbin->ps.data_offset-sizeof(uint32)) )
986    return false;
987  start_off = hbin->ps.data_offset;
988  if ( !prs_uint32( "rec_size", &hbin->ps, depth, &vk->rec_size ))
989    return false;
[30]990
[31]991  if ( !prs_uint8s( true, "header", ps, depth, vk->header, sizeof( vk->header )) )
992    return false;
[30]993
[31]994  if ( !hbin->ps.io )
995    name_length = strlen(vk->valuename);
[30]996
[31]997  if ( !prs_uint16( "name_length", ps, depth, &name_length ))
998    return false;
999  if ( !prs_uint32( "data_size", ps, depth, &vk->data_size ))
1000    return false;
1001  if ( !prs_uint32( "data_off", ps, depth, &vk->data_off ))
1002    return false;
1003  if ( !prs_uint32( "type", ps, depth, &vk->type))
1004    return false;
1005  if ( !prs_uint16( "flag", ps, depth, &vk->flag))
1006    return false;
[30]1007
[31]1008  offset = ps->data_offset;
1009  offset += 2;  /* skip 2 bytes */
1010  prs_set_offset( ps, offset );
[30]1011
[31]1012  /* get the name */
[30]1013
[31]1014  if ( vk->flag&VK_FLAG_NAME_PRESENT ) {
[30]1015
[31]1016    if ( hbin->ps.io ) {
1017      if ( !(vk->valuename = (char*)zcalloc(sizeof(char), name_length+1 )))
1018        return false;
1019    }
[53]1020    if ( !prs_uint8s(true, "name", ps, depth, 
1021                     (uint8*)vk->valuename, name_length) )
[31]1022      return false;
1023  }
[30]1024
[31]1025  end_off = hbin->ps.data_offset;
[30]1026
[31]1027  /* get the data if necessary */
[30]1028
[32]1029  if ( vk->data_size != 0 ) 
1030  {
[31]1031    bool charmode = false;
[30]1032
[31]1033    if ( (vk->type == REG_SZ) || (vk->type == REG_MULTI_SZ) )
1034      charmode = true;
[30]1035
[31]1036    /* the data is stored in the offset if the size <= 4 */
[32]1037    if ( !(vk->data_size & VK_DATA_IN_OFFSET) ) 
1038    {
[31]1039      REGF_HBIN *hblock = hbin;
1040      uint32 data_rec_size;
[30]1041
[32]1042      if ( hbin->ps.io ) 
1043      {
[31]1044        if ( !(vk->data = (uint8*)zcalloc(sizeof(uint8), vk->data_size) ) )
1045          return false;
1046      }
[30]1047
[31]1048      /* this data can be in another hbin */
[32]1049      if ( !hbin_contains_offset( hbin, vk->data_off ) ) 
1050      {
[31]1051        if ( !(hblock = lookup_hbin_block( file, vk->data_off )) )
1052          return false;
1053      }
[32]1054      if (!(prs_set_offset(&hblock->ps, 
1055                           (vk->data_off
1056                            + HBIN_HDR_SIZE
1057                            - hblock->first_hbin_off)
1058                           - sizeof(uint32))))
1059      { return false; }
[30]1060
[32]1061      if ( !hblock->ps.io ) 
1062      {
[31]1063        data_rec_size = ( (vk->data_size+sizeof(uint32)) & 0xfffffff8 ) + 8;
1064        data_rec_size = ( data_rec_size - 1 ) ^ 0xFFFFFFFF;
1065      }
1066      if ( !prs_uint32( "data_rec_size", &hblock->ps, depth, &data_rec_size ))
1067        return false;
[32]1068      if(!prs_uint8s(charmode, "data", &hblock->ps, depth, 
1069                     vk->data, vk->data_size))
[31]1070        return false;
[30]1071
[31]1072      if ( !hblock->ps.io )
1073        hblock->dirty = true;
1074    }
[32]1075    else 
1076    {
1077      if(!(vk->data = zcalloc(sizeof(uint8), 4)))
[31]1078        return false;
1079      SIVAL( vk->data, 0, vk->data_off );
1080    }
[30]1081               
[31]1082  }
[30]1083
[31]1084  /* data_size must be divisible by 8 and large enough to hold the original record */
[30]1085
[31]1086  data_size = ((start_off - end_off ) & 0xfffffff8 );
[77]1087  /* XXX: should probably print a warning here */
[32]1088  /*if ( data_size !=  vk->rec_size )
1089    DEBUG(10,("prs_vk_rec: data_size check failed (0x%x < 0x%x)\n", data_size, vk->rec_size));*/
[30]1090
[32]1091  if ( !hbin->ps.io )
1092    hbin->dirty = true;
[30]1093
[31]1094  return true;
[30]1095}
1096
1097
1098/*******************************************************************
1099 read a VK record which is contained in the HBIN block stored
1100 in the prs_struct *ps.
1101*******************************************************************/
[32]1102static bool hbin_prs_vk_records(const char *desc, REGF_HBIN *hbin, 
1103                                int depth, REGF_NK_REC *nk, REGF_FILE *file)
[30]1104{
[31]1105  int i;
1106  uint32 record_size;
[30]1107
[31]1108  depth++;
[30]1109       
[31]1110  /* check if we have anything to do first */
[32]1111  if(nk->num_values == 0)
[31]1112    return true;
[30]1113               
[32]1114  if(hbin->ps.io)
1115  {
1116    if (!(nk->values = (REGF_VK_REC*)zcalloc(sizeof(REGF_VK_REC), 
1117                                              nk->num_values )))
[31]1118      return false;
1119  }
[30]1120       
[31]1121  /* convert the offset to something relative to this HBIN block */
[32]1122  if (!prs_set_offset(&hbin->ps, 
1123                      nk->values_off
1124                      + HBIN_HDR_SIZE
1125                      - hbin->first_hbin_off
1126                      - sizeof(uint32)))
1127  { return false; }
[30]1128
[32]1129  if ( !hbin->ps.io ) 
1130  { 
[31]1131    record_size = ( ( nk->num_values * sizeof(uint32) ) & 0xfffffff8 ) + 8;
1132    record_size = (record_size - 1) ^ 0xFFFFFFFF;
1133  }
[30]1134
[31]1135  if ( !prs_uint32( "record_size", &hbin->ps, depth, &record_size ) )
1136    return false;
[30]1137               
[32]1138  for ( i=0; i<nk->num_values; i++ ) 
1139  {
[31]1140    if ( !prs_uint32( "vk_off", &hbin->ps, depth, &nk->values[i].rec_off ) )
1141      return false;
1142  }
[30]1143
[32]1144  for ( i=0; i<nk->num_values; i++ ) 
1145  {
[31]1146    REGF_HBIN *sub_hbin = hbin;
1147    uint32 new_offset;
[30]1148       
[32]1149    if ( !hbin_contains_offset( hbin, nk->values[i].rec_off ) ) 
1150    {
[31]1151      sub_hbin = lookup_hbin_block( file, nk->values[i].rec_off );
[32]1152      if ( !sub_hbin ) 
1153      {
[31]1154        /*DEBUG(0,("hbin_prs_vk_records: Failed to find HBIN block containing offset [0x%x]\n",
1155          nk->values[i].hbin_off));*/
1156        return false;
1157      }
1158    }
[30]1159               
[32]1160    new_offset = nk->values[i].rec_off
1161      + HBIN_HDR_SIZE
1162      - sub_hbin->first_hbin_off;
1163
1164    if (!prs_set_offset(&sub_hbin->ps, new_offset))
[31]1165      return false;
[32]1166    if (!hbin_prs_vk_rec("vk_rec", sub_hbin, depth, &nk->values[i], file))
[31]1167      return false;
1168  }
[30]1169
[31]1170  if ( !hbin->ps.io )
1171    hbin->dirty = true;
[30]1172
[31]1173  return true;
[30]1174}
1175
1176
1177/*******************************************************************
[31]1178 *******************************************************************/
[30]1179static REGF_SK_REC* find_sk_record_by_offset( REGF_FILE *file, uint32 offset )
1180{
[31]1181  REGF_SK_REC *p_sk;
[30]1182       
[31]1183  for ( p_sk=file->sec_desc_list; p_sk; p_sk=p_sk->next ) {
1184    if ( p_sk->sk_off == offset ) 
1185      return p_sk;
1186  }
[30]1187       
[31]1188  return NULL;
[30]1189}
1190
[32]1191
[30]1192/*******************************************************************
[31]1193 *******************************************************************/
[30]1194static REGF_SK_REC* find_sk_record_by_sec_desc( REGF_FILE *file, SEC_DESC *sd )
1195{
[31]1196  REGF_SK_REC *p;
[30]1197
[31]1198  for ( p=file->sec_desc_list; p; p=p->next ) {
1199    if ( sec_desc_equal( p->sec_desc, sd ) )
1200      return p;
1201  }
[30]1202
[31]1203  /* failure */
[30]1204
[31]1205  return NULL;
[30]1206}
1207
[32]1208
[30]1209/*******************************************************************
[31]1210 *******************************************************************/
[30]1211static bool hbin_prs_key( REGF_FILE *file, REGF_HBIN *hbin, REGF_NK_REC *nk )
1212{
[31]1213  int depth = 0;
1214  REGF_HBIN *sub_hbin;
[30]1215       
[31]1216  depth++;
[30]1217
[31]1218  /* get the initial nk record */
[33]1219  if (!prs_nk_rec("nk_rec", &hbin->ps, depth, nk))
[31]1220    return false;
[30]1221
[31]1222  /* fill in values */
[32]1223  if ( nk->num_values && (nk->values_off!=REGF_OFFSET_NONE) ) 
1224  {
[31]1225    sub_hbin = hbin;
[32]1226    if ( !hbin_contains_offset( hbin, nk->values_off ) ) 
1227    {
[31]1228      sub_hbin = lookup_hbin_block( file, nk->values_off );
[32]1229      if ( !sub_hbin ) 
1230      {
[31]1231        /*DEBUG(0,("hbin_prs_key: Failed to find HBIN block containing value_list_offset [0x%x]\n",
1232          nk->values_off));*/
1233        return false;
1234      }
1235    }
[30]1236               
[32]1237    if(!hbin_prs_vk_records("vk_rec", sub_hbin, depth, nk, file))
[31]1238      return false;
1239  }
[30]1240               
[31]1241  /* now get subkeys */
[32]1242  if ( nk->num_subkeys && (nk->subkeys_off!=REGF_OFFSET_NONE) ) 
1243  {
[31]1244    sub_hbin = hbin;
[32]1245    if ( !hbin_contains_offset( hbin, nk->subkeys_off ) ) 
1246    {
[31]1247      sub_hbin = lookup_hbin_block( file, nk->subkeys_off );
[32]1248      if ( !sub_hbin ) 
1249      {
[31]1250        /*DEBUG(0,("hbin_prs_key: Failed to find HBIN block containing subkey_offset [0x%x]\n",
1251          nk->subkeys_off));*/
1252        return false;
1253      }
1254    }
[30]1255               
[32]1256    if (!hbin_prs_lf_records("lf_rec", sub_hbin, depth, nk))
[31]1257      return false;
1258  }
[30]1259
[31]1260  /* get the to the security descriptor.  First look if we have already parsed it */
[30]1261       
[32]1262  if ((nk->sk_off!=REGF_OFFSET_NONE) 
1263      && !(nk->sec_desc = find_sk_record_by_offset( file, nk->sk_off )))
1264  {
[31]1265    sub_hbin = hbin;
[32]1266    if (!hbin_contains_offset(hbin, nk->sk_off))
1267    {
[31]1268      sub_hbin = lookup_hbin_block( file, nk->sk_off );
1269      if ( !sub_hbin ) {
1270        /*DEBUG(0,("hbin_prs_key: Failed to find HBIN block containing sk_offset [0x%x]\n",
1271          nk->subkeys_off));*/
1272        return false;
1273      }
1274    }
[30]1275               
[31]1276    if ( !(nk->sec_desc = (REGF_SK_REC*)zalloc(sizeof(REGF_SK_REC) )) )
1277      return false;
1278    nk->sec_desc->sk_off = nk->sk_off;
1279    if ( !hbin_prs_sk_rec( "sk_rec", sub_hbin, depth, nk->sec_desc ))
1280      return false;
[30]1281                       
[31]1282    /* add to the list of security descriptors (ref_count has been read from the files) */
[30]1283
[31]1284    nk->sec_desc->sk_off = nk->sk_off;
1285    DLIST_ADD( file->sec_desc_list, nk->sec_desc );
1286  }
[30]1287               
[31]1288  return true;
[30]1289}
1290
[32]1291
[30]1292/*******************************************************************
[31]1293 *******************************************************************/
[30]1294static bool next_record( REGF_HBIN *hbin, const char *hdr, bool *eob )
1295{
[53]1296  uint8 header[REC_HDR_SIZE] = "";
[31]1297  uint32 record_size;
1298  uint32 curr_off, block_size;
1299  bool found = false;
1300  prs_struct *ps = &hbin->ps;
[30]1301       
[31]1302  curr_off = ps->data_offset;
1303  if ( curr_off == 0 )
1304    prs_set_offset( ps, HBIN_HEADER_REC_SIZE );
[30]1305
[31]1306  /* assume that the current offset is at the reacord header
1307     and we need to backup to read the record size */
1308  curr_off -= sizeof(uint32);
[30]1309
[31]1310  block_size = ps->buffer_size;
1311  record_size = 0;
[32]1312  while ( !found ) 
1313  {
[31]1314    curr_off = curr_off+record_size;
1315    if ( curr_off >= block_size ) 
1316      break;
[30]1317
[31]1318    if ( !prs_set_offset( &hbin->ps, curr_off) )
1319      return false;
[30]1320
[31]1321    if ( !prs_uint32( "record_size", ps, 0, &record_size ) )
1322      return false;
1323    if ( !prs_uint8s( true, "header", ps, 0, header, REC_HDR_SIZE ) )
1324      return false;
[30]1325
[31]1326    if ( record_size & 0x80000000 ) {
1327      /* absolute_value(record_size) */
1328      record_size = (record_size ^ 0xffffffff) + 1;
1329    }
[30]1330
[31]1331    if ( memcmp( header, hdr, REC_HDR_SIZE ) == 0 ) {
1332      found = true;
1333      curr_off += sizeof(uint32);
1334    }
1335  } 
[30]1336
[31]1337  /* mark prs_struct as done ( at end ) if no more SK records */
[32]1338  /* mark end-of-block as true */       
1339  if ( !found )
[31]1340  {
1341    prs_set_offset( &hbin->ps, hbin->ps.buffer_size );
1342    *eob = true;
1343    return false;
1344  }
[32]1345
1346  if (!prs_set_offset(ps, curr_off))
[31]1347    return false;
[30]1348
[31]1349  return true;
[30]1350}
1351
1352
1353/*******************************************************************
[31]1354 *******************************************************************/
[32]1355static bool next_nk_record(REGF_FILE *file, REGF_HBIN *hbin, 
1356                           REGF_NK_REC *nk, bool *eob)
[30]1357{
[32]1358  if (next_record(hbin, "nk", eob) 
1359      && hbin_prs_key(file, hbin, nk))
[31]1360    return true;
[30]1361       
[31]1362  return false;
[30]1363}
1364
1365
1366/*******************************************************************
1367 Open the registry file and then read in the REGF block to get the
1368 first hbin offset.
1369*******************************************************************/
1370REGF_FILE* regfio_open( const char *filename )
1371{
[31]1372  REGF_FILE *rb;
1373  int flags = O_RDONLY;
[30]1374
[31]1375  if ( !(rb = (REGF_FILE*)malloc(sizeof(REGF_FILE))) ) {
1376    /* DEBUG(0,("ERROR allocating memory\n")); */
1377    return NULL;
1378  }
1379  memset(rb, 0, sizeof(REGF_FILE));
1380  rb->fd = -1;
[30]1381       
[31]1382  /*    if ( !(rb->mem_ctx = talloc_init( "read_regf_block" )) )
1383    {
1384    regfio_close( rb );
1385    return NULL;
1386    }
1387  */
1388  rb->open_flags = flags;
[30]1389       
[31]1390  /* open and existing file */
[30]1391
[31]1392  if ( (rb->fd = open(filename, flags)) == -1 ) {
1393    /* DEBUG(0,("regfio_open: failure to open %s (%s)\n", filename, strerror(errno)));*/
1394    regfio_close( rb );
1395    return NULL;
1396  }
[30]1397       
[31]1398  /* read in an existing file */
[30]1399       
[31]1400  if ( !read_regf_block( rb ) ) {
1401    /* DEBUG(0,("regfio_open: Failed to read initial REGF block\n"));*/
1402    regfio_close( rb );
1403    return NULL;
1404  }
[30]1405       
[31]1406  /* success */
[30]1407       
[31]1408  return rb;
[30]1409}
1410
1411
1412/*******************************************************************
[31]1413 *******************************************************************/
[30]1414static void regfio_mem_free( REGF_FILE *file )
1415{
[31]1416  /* free any zalloc()'d memory */
[30]1417       
1418  /*    if ( file && file->mem_ctx )
[31]1419    free(file->mem_ctx);
[30]1420  */
1421}
1422
1423
1424/*******************************************************************
[31]1425 *******************************************************************/
[30]1426int regfio_close( REGF_FILE *file )
1427{
[31]1428  int fd;
[30]1429
[31]1430  regfio_mem_free( file );
[30]1431
[31]1432  /* nothing to do if there is no open file */
[30]1433
[31]1434  if ( !file || (file->fd == -1) )
1435    return 0;
[30]1436               
[31]1437  fd = file->fd;
1438  file->fd = -1;
1439  SAFE_FREE( file );
[30]1440
[31]1441  return close( fd );
[30]1442}
1443
1444
1445/*******************************************************************
1446 There should be only *one* root key in the registry file based
1447 on my experience.  --jerry
1448*******************************************************************/
1449REGF_NK_REC* regfio_rootkey( REGF_FILE *file )
1450{
[31]1451  REGF_NK_REC *nk;
1452  REGF_HBIN   *hbin;
1453  uint32      offset = REGF_BLOCKSIZE;
1454  bool        found = false;
1455  bool        eob;
[30]1456       
[31]1457  if ( !file )
1458    return NULL;
[30]1459               
[31]1460  if ( !(nk = (REGF_NK_REC*)zalloc(sizeof(REGF_NK_REC) )) ) {
1461    /*DEBUG(0,("regfio_rootkey: zalloc() failed!\n"));*/
1462    return NULL;
1463  }
[30]1464       
[31]1465  /* scan through the file on HBIN block at a time looking
1466     for an NK record with a type == 0x002c.
1467     Normally this is the first nk record in the first hbin
1468     block (but I'm not assuming that for now) */
[30]1469       
[31]1470  while ( (hbin = read_hbin_block( file, offset )) ) {
1471    eob = false;
[30]1472
[31]1473    while ( !eob) {
1474      if ( next_nk_record( file, hbin, nk, &eob ) ) {
1475        if ( nk->key_type == NK_TYPE_ROOTKEY ) {
1476          found = true;
1477          break;
1478        }
1479      }
1480      if(hbin->ps.is_dynamic)
1481        SAFE_FREE(hbin->ps.data_p);
1482      hbin->ps.is_dynamic = false;
1483      hbin->ps.buffer_size = 0;
1484      hbin->ps.data_offset = 0;
1485    }
[30]1486               
[31]1487    if ( found ) 
1488      break;
[30]1489
[31]1490    offset += hbin->block_size;
1491  }
[30]1492       
[31]1493  if ( !found ) {
1494    /*DEBUG(0,("regfio_rootkey: corrupt registry file ?  No root key record located\n"));*/
1495    return NULL;
1496  }
[30]1497
[31]1498  DLIST_ADD( file->block_list, hbin );
[30]1499
[31]1500  return nk;           
[30]1501}
1502
1503
[33]1504/* XXX: An interator struct should be used instead, and this function
1505 *   should operate on it, so the state of iteration isn't stored in the
1506 * REGF_NK_REC struct itself.
1507 */
[30]1508/*******************************************************************
1509 This acts as an interator over the subkeys defined for a given
1510 NK record.  Remember that offsets are from the *first* HBIN block.
1511*******************************************************************/
1512REGF_NK_REC* regfio_fetch_subkey( REGF_FILE *file, REGF_NK_REC *nk )
1513{
[31]1514  REGF_NK_REC *subkey;
1515  REGF_HBIN   *hbin;
1516  uint32      nk_offset;
[30]1517
[31]1518  /* see if there is anything left to report */
[32]1519  if (!nk || (nk->subkeys_off==REGF_OFFSET_NONE) 
1520      || (nk->subkey_index >= nk->num_subkeys))
[31]1521    return NULL;
[30]1522
[31]1523  /* find the HBIN block which should contain the nk record */
1524  if(!(hbin
1525       = lookup_hbin_block(file, nk->subkeys.hashes[nk->subkey_index].nk_off )))
1526  {
1527    /*DEBUG(0,("hbin_prs_key: Failed to find HBIN block containing offset [0x%x]\n",
1528      nk->subkeys.hashes[nk->subkey_index].nk_off));*/
1529    return NULL;
1530  }
[30]1531       
[31]1532  nk_offset = nk->subkeys.hashes[nk->subkey_index].nk_off;
[32]1533  if(!prs_set_offset(&hbin->ps, 
1534                     (HBIN_HDR_SIZE + nk_offset - hbin->first_hbin_off)))
[31]1535    return NULL;
[30]1536               
[31]1537  nk->subkey_index++;
[32]1538  if(!(subkey = (REGF_NK_REC*)zalloc(sizeof(REGF_NK_REC))))
[31]1539    return NULL;
[30]1540
[32]1541  if(!hbin_prs_key(file, hbin, subkey))
[31]1542    return NULL;
[32]1543
[31]1544  return subkey;
[30]1545}
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