source: trunk/src/reglookup.c @ 140

Last change on this file since 140 was 140, checked in by tim, 15 years ago

Misc error message changes.

Added and removed some comments.

Updated TODO list.

  • Property svn:keywords set to Id
File size: 16.8 KB
RevLine 
[30]1/*
[135]2 * A utility to read a Windows NT and later registry files.
[30]3 *
[135]4 * Copyright (C) 2005-2009 Timothy D. Morgan
[42]5 * Copyright (C) 2002 Richard Sharpe, rsharpe@richardsharpe.com
[30]6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
[111]9 * the Free Software Foundation; version 3 of the License.
[30]10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. 
19 *
20 * $Id: reglookup.c 140 2009-02-09 19:53:39Z tim $
21 */
22
23
24#include <stdlib.h>
[88]25#include <sysexits.h>
[30]26#include <stdio.h>
27#include <string.h>
[33]28#include <strings.h>
[42]29#include <time.h>
[79]30#include "../include/regfi.h"
[31]31#include "../include/void_stack.h"
[30]32
[40]33/* Globals, influenced by command line parameters */
34bool print_verbose = false;
35bool print_security = false;
[42]36bool print_header = true;
[40]37bool path_filter_enabled = false;
38bool type_filter_enabled = false;
39char* path_filter = NULL;
40int type_filter;
41char* registry_file = NULL;
42
[42]43/* Other globals */
[135]44REGFI_FILE* f;
[66]45
[40]46
[116]47/* XXX: A hack to share some functions with reglookup-recover.c.
[125]48 *      Should move these into a proper library at some point.
[111]49 */
50#include "common.c"
[61]51
[38]52
[135]53void printValue(const REGFI_VK_REC* vk, char* prefix)
[41]54{
[111]55  char* quoted_value = NULL;
56  char* quoted_name = NULL;
57  char* conv_error = NULL;
58  const char* str_type = NULL;
59  uint32 size = vk->data_size;
[41]60
[111]61  /* Microsoft's documentation indicates that "available memory" is
62   * the limit on value sizes.  Annoying.  We limit it to 1M which
63   * should rarely be exceeded, unless the file is corrupt or
64   * malicious. For more info, see:
65   *   http://msdn2.microsoft.com/en-us/library/ms724872.aspx
66   */
[135]67  if(size > REGFI_VK_MAX_DATA_LENGTH)
[41]68  {
[137]69    fprintf(stderr, "WARN: value data size %d larger than "
[135]70            "%d, truncating...\n", size, REGFI_VK_MAX_DATA_LENGTH);
71    size = REGFI_VK_MAX_DATA_LENGTH;
[41]72  }
[111]73 
74  quoted_name = quote_string(vk->valuename, key_special_chars);
75  if (quoted_name == NULL)
76  { /* Value names are NULL when we're looking at the "(default)" value.
77     * Currently we just return a 0-length string to try an eliminate
78     * ambiguity with a literal "(default)" value.  The data type of a line
79     * in the output allows one to differentiate between the parent key and
80     * this value.
81     */
82    quoted_name = malloc(1*sizeof(char));
83    if(quoted_name == NULL)
84      bailOut(EX_OSERR, "ERROR: Could not allocate sufficient memory.\n");
85    quoted_name[0] = '\0';
86  }
[41]87
[138]88  if(vk->data == NULL)
[41]89  {
[138]90    if(print_verbose)
91      fprintf(stderr, "INFO: While quoting value for '%s/%s', "
92              "data pointer was NULL.\n", prefix, quoted_name);
[41]93  }
[138]94  else
95  {
96    quoted_value = data_to_ascii(vk->data, size, vk->type, &conv_error);
97    if(quoted_value == NULL)
98    {
99      if(conv_error == NULL)
100        fprintf(stderr, "WARN: Could not quote value for '%s/%s'.  "
101                "Memory allocation failure likely.\n", prefix, quoted_name);
102      else
103        fprintf(stderr, "WARN: Could not quote value for '%s/%s'.  "
104                "Returned error: %s\n", prefix, quoted_name, conv_error);
105    }
106    else if(conv_error != NULL && print_verbose)
107      fprintf(stderr, "INFO: While quoting value for '%s/%s', "
108              "warning returned: %s\n", prefix, quoted_name, conv_error);
109  }
[41]110
[111]111  str_type = regfi_type_val2str(vk->type);
112  if(print_security)
[41]113  {
[111]114    if(str_type == NULL)
115      printf("%s/%s,0x%.8X,%s,,,,,\n", prefix, quoted_name,
116             vk->type, quoted_value);
[66]117    else
[111]118      printf("%s/%s,%s,%s,,,,,\n", prefix, quoted_name,
119             str_type, quoted_value);
[71]120  }
[111]121  else
122  {
123    if(str_type == NULL)
124      printf("%s/%s,0x%.8X,%s,\n", prefix, quoted_name,
125             vk->type, quoted_value);
126    else
127      printf("%s/%s,%s,%s,\n", prefix, quoted_name,
128             str_type, quoted_value);
129  }
[42]130
[111]131  if(quoted_value != NULL)
132    free(quoted_value);
133  if(quoted_name != NULL)
134    free(quoted_name);
135  if(conv_error != NULL)
136    free(conv_error);
[41]137}
138
139
[81]140char** splitPath(const char* s)
[30]141{
[81]142  char** ret_val;
[38]143  const char* cur = s;
[33]144  char* next = NULL;
[38]145  char* copy;
[81]146  uint32 ret_cur = 0;
[38]147
[135]148  ret_val = (char**)malloc((REGFI_MAX_DEPTH+1+1)*sizeof(char**));
[81]149  if (ret_val == NULL)
[38]150    return NULL;
[81]151  ret_val[0] = NULL;
152
153  /* We return a well-formed, 0-length, path even when input is icky. */
[37]154  if (s == NULL)
[81]155    return ret_val;
[38]156 
157  while((next = strchr(cur, '/')) != NULL)
[33]158  {
[38]159    if ((next-cur) > 0)
160    {
161      copy = (char*)malloc((next-cur+1)*sizeof(char));
162      if(copy == NULL)
[88]163        bailOut(EX_OSERR, "ERROR: Memory allocation problem.\n");
[38]164         
165      memcpy(copy, cur, next-cur);
166      copy[next-cur] = '\0';
[81]167      ret_val[ret_cur++] = copy;
[135]168      if(ret_cur < (REGFI_MAX_DEPTH+1+1))
[81]169        ret_val[ret_cur] = NULL;
170      else
[88]171        bailOut(EX_DATAERR, "ERROR: Registry maximum depth exceeded.\n");
[38]172    }
173    cur = next+1;
[33]174  }
[81]175
176  /* Grab last element, if path doesn't end in '/'. */
[33]177  if(strlen(cur) > 0)
[38]178  {
179    copy = strdup(cur);
[81]180    ret_val[ret_cur++] = copy;
[135]181    if(ret_cur < (REGFI_MAX_DEPTH+1+1))
[81]182      ret_val[ret_cur] = NULL;
183    else
[88]184      bailOut(EX_DATAERR, "ERROR: Registry maximum depth exceeded.\n");
[38]185  }
[33]186
187  return ret_val;
188}
189
[81]190
[83]191void freePath(char** path)
192{
193  uint32 i;
194
195  if(path == NULL)
196    return;
197
198  for(i=0; path[i] != NULL; i++)
199    free(path[i]);
200
201  free(path);
202}
203
204
[81]205/* Returns a quoted path from an iterator's stack */
206char* iter2Path(REGFI_ITERATOR* i)
[33]207{
[81]208  const REGFI_ITER_POSITION* cur;
[37]209  uint32 buf_left = 127;
210  uint32 buf_len = buf_left+1;
211  uint32 name_len = 0;
212  uint32 grow_amt;
[81]213  char* buf;
[31]214  char* new_buf;
[66]215  char* name;
[81]216  const char* cur_name;
[31]217  void_stack_iterator* iter;
218 
219  buf = (char*)malloc((buf_len)*sizeof(char));
220  if (buf == NULL)
221    return NULL;
[54]222  buf[0] = '\0';
[30]223
[81]224  iter = void_stack_iterator_new(i->key_positions);
[31]225  if (iter == NULL)
[30]226  {
[31]227    free(buf);
228    return NULL;
[30]229  }
230
[33]231  /* skip root element */
[81]232  if(void_stack_size(i->key_positions) < 1)
233  {
234    buf[0] = '/';
235    buf[1] = '\0';
236    return buf;
237  }
[33]238  cur = void_stack_iterator_next(iter);
239
[81]240  do
[31]241  {
[81]242    cur = void_stack_iterator_next(iter);
243    if (cur == NULL)
244      cur_name = i->cur_key->keyname;
245    else
246      cur_name = cur->nk->keyname;
247
[33]248    buf[buf_len-buf_left-1] = '/';
249    buf_left -= 1;
[81]250    name = quote_string(cur_name, key_special_chars);
[66]251    name_len = strlen(name);
[31]252    if(name_len+1 > buf_left)
253    {
[37]254      grow_amt = (uint32)(buf_len/2);
[31]255      buf_len += name_len+1+grow_amt-buf_left;
256      if((new_buf = realloc(buf, buf_len)) == NULL)
257      {
[136]258        free(name);
[31]259        free(buf);
260        free(iter);
261        return NULL;
262      }
263      buf = new_buf;
264      buf_left = grow_amt + name_len + 1;
265    }
[66]266    strncpy(buf+(buf_len-buf_left-1), name, name_len);
[31]267    buf_left -= name_len;
268    buf[buf_len-buf_left-1] = '\0';
[66]269    free(name);
[81]270  } while(cur != NULL);
[30]271
[31]272  return buf;
273}
[30]274
[31]275
[137]276void printValueList(REGFI_ITERATOR* iter, char* prefix)
[32]277{
[135]278  const REGFI_VK_REC* value;
[80]279
[137]280  value = regfi_iterator_first_value(iter);
[80]281  while(value != NULL)
[81]282  {
283    if(!type_filter_enabled || (value->type == type_filter))
[80]284      printValue(value, prefix);
[137]285    value = regfi_iterator_next_value(iter);
[138]286    printMsgs(iter->f);
[81]287  }
[33]288}
289
[37]290
[137]291void printKey(REGFI_ITERATOR* iter, char* full_path)
[33]292{
[43]293  static char empty_str[1] = "";
[42]294  char* owner = NULL;
295  char* group = NULL;
296  char* sacl = NULL;
297  char* dacl = NULL;
[125]298  char* quoted_classname;
[126]299  char* error_msg = NULL;
[42]300  char mtime[20];
301  time_t tmp_time[1];
302  struct tm* tmp_time_s = NULL;
[135]303  const REGFI_SK_REC* sk;
[137]304  const REGFI_NK_REC* k = regfi_iterator_cur_key(iter);
[42]305
[43]306  *tmp_time = nt_time_to_unix(&k->mtime);
307  tmp_time_s = gmtime(tmp_time);
308  strftime(mtime, sizeof(mtime), "%Y-%m-%d %H:%M:%S", tmp_time_s);
309
[137]310  if(print_security && (sk=regfi_iterator_cur_sk(iter)))
[43]311  {
[109]312    owner = regfi_get_owner(sk->sec_desc);
313    group = regfi_get_group(sk->sec_desc);
314    sacl = regfi_get_sacl(sk->sec_desc);
315    dacl = regfi_get_dacl(sk->sec_desc);
[43]316    if(owner == NULL)
317      owner = empty_str;
318    if(group == NULL)
319      group = empty_str;
320    if(sacl == NULL)
321      sacl = empty_str;
322    if(dacl == NULL)
323      dacl = empty_str;
324
[125]325    if(k->classname != NULL)
[126]326    {
327      quoted_classname = quote_unicode((uint8*)k->classname, k->classname_length,
328                                       key_special_chars, &error_msg);
329      if(quoted_classname == NULL)
330      {
331        if(error_msg == NULL)
332          fprintf(stderr, "ERROR: Could not quote classname"
333                  " for key '%s' due to unknown error.\n", full_path);
334        else
335        {
336          fprintf(stderr, "ERROR: Could not quote classname"
337                  " for key '%s' due to error: %s\n", full_path, error_msg);
338          free(error_msg);
339        }
340      }
341      else if (error_msg != NULL)
342      {
343        if(print_verbose)
[138]344          fprintf(stderr, "INFO: While converting classname"
[126]345                  " for key '%s': %s.\n", full_path, error_msg);
346        free(error_msg);
347      }
348    }
[125]349    else
350      quoted_classname = empty_str;
[43]351
[138]352    printMsgs(iter->f);
[125]353    printf("%s,KEY,,%s,%s,%s,%s,%s,%s\n", full_path, mtime, 
354           owner, group, sacl, dacl, quoted_classname);
355
[43]356    if(owner != empty_str)
357      free(owner);
358    if(group != empty_str)
359      free(group);
360    if(sacl != empty_str)
361      free(sacl);
362    if(dacl != empty_str)
363      free(dacl);
[125]364    if(quoted_classname != empty_str)
365      free(quoted_classname);
[43]366  }
367  else
[66]368    printf("%s,KEY,,%s\n", full_path, mtime);
[43]369}
370
371
[81]372void printKeyTree(REGFI_ITERATOR* iter)
[43]373{
[135]374  const REGFI_NK_REC* root = NULL;
375  const REGFI_NK_REC* cur = NULL;
376  const REGFI_NK_REC* sub = NULL;
[43]377  char* path = NULL;
[78]378  int key_type = regfi_type_str2val("KEY");
[81]379  bool print_this = true;
380
381  root = cur = regfi_iterator_cur_key(iter);
382  sub = regfi_iterator_first_subkey(iter);
[138]383  printMsgs(iter->f);
[137]384
[81]385  if(root == NULL)
[88]386    bailOut(EX_DATAERR, "ERROR: root cannot be NULL.\n");
[81]387 
388  do
[31]389  {
[81]390    if(print_this)
[54]391    {
[81]392      path = iter2Path(iter);
393      if(path == NULL)
[88]394        bailOut(EX_OSERR, "ERROR: Could not construct iterator's path.\n");
[137]395
[81]396      if(!type_filter_enabled || (key_type == type_filter))
[109]397        printKey(iter, path);
[81]398      if(!type_filter_enabled || (key_type != type_filter))
399        printValueList(iter, path);
400     
401      free(path);
[54]402    }
[66]403   
[81]404    if(sub == NULL)
[31]405    {
[81]406      if(cur != root)
[31]407      {
[81]408        /* We're done with this sub-tree, going up and hitting other branches. */
409        if(!regfi_iterator_up(iter))
[137]410        {
[138]411          printMsgs(iter->f);
[88]412          bailOut(EX_DATAERR, "ERROR: could not traverse iterator upward.\n");
[137]413        }
414
[81]415        cur = regfi_iterator_cur_key(iter);
416        if(cur == NULL)
[137]417        {
[138]418          printMsgs(iter->f);
[88]419          bailOut(EX_DATAERR, "ERROR: unexpected NULL for key.\n");
[137]420        }
421
[81]422        sub = regfi_iterator_next_subkey(iter);
[66]423      }
[81]424      print_this = false;
[31]425    }
[81]426    else
427    { /* We have unexplored sub-keys. 
428       * Let's move down and print this first sub-tree out.
429       */
430      if(!regfi_iterator_down(iter))
[137]431      {
[138]432        printMsgs(iter->f);
[88]433        bailOut(EX_DATAERR, "ERROR: could not traverse iterator downward.\n");
[137]434      }
[81]435
436      cur = sub;
437      sub = regfi_iterator_first_subkey(iter);
438      print_this = true;
439    }
[138]440    printMsgs(iter->f);
[81]441  } while(!((cur == root) && (sub == NULL)));
442
[54]443  if(print_verbose)
[138]444    fprintf(stderr, "INFO: Finished printing key tree.\n");
[30]445}
446
[81]447
[140]448/* XXX: What if there is BOTH a value AND a key with that name??
449 *      What if there are multiple keys/values with the same name??
450 */
[33]451/*
[80]452 * Returns 0 if path was not found.
453 * Returns 1 if path was found as value.
454 * Returns 2 if path was found as key.
[33]455 * Returns less than 0 on other error.
456 */
[80]457int retrievePath(REGFI_ITERATOR* iter, char** path)
[33]458{
[135]459  const REGFI_VK_REC* value;
[81]460  char* tmp_path_joined;
461  const char** tmp_path;
[80]462  uint32 i;
463 
464  if(path == NULL)
[33]465    return -1;
466
[80]467  /* One extra for any value at the end, and one more for NULL */
[135]468  tmp_path = (const char**)malloc(sizeof(const char**)*(REGFI_MAX_DEPTH+1+1));
[80]469  if(tmp_path == NULL)
[33]470    return -2;
471
[80]472  /* Strip any potential value name at end of path */
473  for(i=0; 
[136]474      (path[i] != NULL) && (path[i+1] != NULL) && (i < REGFI_MAX_DEPTH+1);
[80]475      i++)
[136]476  { tmp_path[i] = path[i]; }
[80]477  tmp_path[i] = NULL;
478
[54]479  if(print_verbose)
[138]480    fprintf(stderr, "INFO: Attempting to retrieve specified path: %s\n",
[54]481            path_filter);
482
[82]483  /* Special check for '/' path filter */
484  if(path[0] == NULL)
485  {
486    if(print_verbose)
[138]487      fprintf(stderr, "INFO: Found final path element as root key.\n");
[136]488    free(tmp_path);
[82]489    return 2;
490  }
491
[80]492  if(!regfi_iterator_walk_path(iter, tmp_path))
[33]493  {
[138]494    printMsgs(iter->f);
[80]495    free(tmp_path);
496    return 0;
[33]497  }
498
[80]499  if(regfi_iterator_find_value(iter, path[i]))
500  {
501    if(print_verbose)
[138]502      fprintf(stderr, "INFO: Found final path element as value.\n");
[33]503
[80]504    value = regfi_iterator_cur_value(iter);
[138]505    printMsgs(iter->f);
[81]506    tmp_path_joined = iter2Path(iter);
[54]507
[80]508    if((value == NULL) || (tmp_path_joined == NULL))
[88]509      bailOut(EX_OSERR, "ERROR: Unexpected error before printValue.\n");
[54]510
[121]511    if(!type_filter_enabled || (value->type == type_filter))
512      printValue(value, tmp_path_joined);
[54]513
[80]514    free(tmp_path);
515    free(tmp_path_joined);
516    return 1;
[33]517  }
[80]518  else if(regfi_iterator_find_subkey(iter, path[i]))
[33]519  {
[138]520    printMsgs(iter->f);
[80]521    if(print_verbose)
[138]522      fprintf(stderr, "INFO: Found final path element as key.\n");
[82]523
524    if(!regfi_iterator_down(iter))
[137]525    {
[138]526      printMsgs(iter->f);
[88]527      bailOut(EX_DATAERR, "ERROR: Unexpected error on traversing path filter key.\n");
[137]528    }
[82]529
[80]530    return 2;
[33]531  }
[138]532  printMsgs(iter->f);
[33]533
[54]534  if(print_verbose)
[138]535    fprintf(stderr, "INFO: Could not find last element of path.\n");
[54]536
[80]537  return 0;
[33]538}
539
540
[37]541static void usage(void)
542{
[61]543  fprintf(stderr, "Usage: reglookup [-v] [-s]"
[40]544          " [-p <PATH_FILTER>] [-t <TYPE_FILTER>]"
[39]545          " <REGISTRY_FILE>\n");
[111]546  fprintf(stderr, "Version: %s\n", REGLOOKUP_VERSION);
[39]547  fprintf(stderr, "Options:\n");
548  fprintf(stderr, "\t-v\t sets verbose mode.\n");
[47]549  fprintf(stderr, "\t-h\t enables header row. (default)\n");
550  fprintf(stderr, "\t-H\t disables header row.\n");
[44]551  fprintf(stderr, "\t-s\t enables security descriptor output.\n");
552  fprintf(stderr, "\t-S\t disables security descriptor output. (default)\n");
[40]553  fprintf(stderr, "\t-p\t restrict output to elements below this path.\n");
554  fprintf(stderr, "\t-t\t restrict results to this specific data type.\n");
[37]555  fprintf(stderr, "\n");
556}
557
558
[30]559int main(int argc, char** argv)
560{
[80]561  char** path = NULL;
562  REGFI_ITERATOR* iter;
[33]563  int retr_path_ret;
[44]564  uint32 argi, arge;
[31]565
[37]566  /* Process command line arguments */
[30]567  if(argc < 2)
568  {
[37]569    usage();
[88]570    bailOut(EX_USAGE, "ERROR: Requires at least one argument.\n");
[30]571  }
[37]572 
[44]573  arge = argc-1;
574  for(argi = 1; argi < arge; argi++)
[37]575  {
[40]576    if (strcmp("-p", argv[argi]) == 0)
[37]577    {
[44]578      if(++argi >= arge)
[37]579      {
580        usage();
[88]581        bailOut(EX_USAGE, "ERROR: '-p' option requires parameter.\n");
[37]582      }
[40]583      if((path_filter = strdup(argv[argi])) == NULL)
[88]584        bailOut(EX_OSERR, "ERROR: Memory allocation problem.\n");
[38]585
[40]586      path_filter_enabled = true;
[37]587    }
588    else if (strcmp("-t", argv[argi]) == 0)
589    {
[44]590      if(++argi >= arge)
[37]591      {
592        usage();
[88]593        bailOut(EX_USAGE, "ERROR: '-t' option requires parameter.\n");
[37]594      }
[78]595      if((type_filter = regfi_type_str2val(argv[argi])) < 0)
[40]596      {
597        fprintf(stderr, "ERROR: Invalid type specified: %s.\n", argv[argi]);
[88]598        bailOut(EX_USAGE, "");
[40]599      }
[37]600      type_filter_enabled = true;
601    }
[47]602    else if (strcmp("-h", argv[argi]) == 0)
603      print_header = true;
604    else if (strcmp("-H", argv[argi]) == 0)
605      print_header = false;
[37]606    else if (strcmp("-s", argv[argi]) == 0)
607      print_security = true;
[44]608    else if (strcmp("-S", argv[argi]) == 0)
609      print_security = false;
[37]610    else if (strcmp("-v", argv[argi]) == 0)
611      print_verbose = true;
[44]612    else
[37]613    {
[38]614      usage();
[37]615      fprintf(stderr, "ERROR: Unrecognized option: %s\n", argv[argi]);
[88]616      bailOut(EX_USAGE, "");
[37]617    }
618  }
[44]619  if((registry_file = strdup(argv[argi])) == NULL)
[88]620    bailOut(EX_OSERR, "ERROR: Memory allocation problem.\n");
[30]621
[110]622  f = regfi_open(registry_file);
[37]623  if(f == NULL)
624  {
625    fprintf(stderr, "ERROR: Couldn't open registry file: %s\n", registry_file);
[88]626    bailOut(EX_NOINPUT, "");
[37]627  }
[38]628
[138]629  if(print_verbose)
630    regfi_set_message_mask(f, REGFI_MSG_INFO|REGFI_MSG_WARN|REGFI_MSG_ERROR);
631
[80]632  iter = regfi_iterator_new(f);
633  if(iter == NULL)
[88]634    bailOut(EX_OSERR, "ERROR: Couldn't create registry iterator.\n");
[30]635
[81]636  if(print_header)
637  {
638    if(print_security)
[125]639      printf("PATH,TYPE,VALUE,MTIME,OWNER,GROUP,SACL,DACL,CLASS\n");
[81]640    else
641      printf("PATH,TYPE,VALUE,MTIME\n");
642  }
643
[80]644  if(path_filter_enabled && path_filter != NULL)
645    path = splitPath(path_filter);
[81]646
[80]647  if(path != NULL)
[33]648  {
[80]649    retr_path_ret = retrievePath(iter, path);
[138]650    printMsgs(iter->f);
[83]651    freePath(path);
652
[80]653    if(retr_path_ret == 0)
[137]654      fprintf(stderr, "WARN: specified path not found.\n");
[80]655    else if (retr_path_ret == 2)
[81]656      printKeyTree(iter);
[93]657    else if(retr_path_ret < 0)
658    {
659      fprintf(stderr, "ERROR: retrievePath() returned %d.\n", 
660              retr_path_ret);
661      bailOut(EX_DATAERR,"ERROR: Unknown error occurred in retrieving path.\n");
662    }
[33]663  }
[37]664  else
[81]665    printKeyTree(iter);
[31]666
[80]667  regfi_iterator_free(iter);
[78]668  regfi_close(f);
[30]669
670  return 0;
671}
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