Fix bug #7781 (Samba transforms "ShareName" to lowercase when adding new share via...
[samba.git] / source3 / registry / reg_backend_printing.c
1 /*
2  *  Unix SMB/CIFS implementation.
3  *  Virtual Windows Registry Layer
4  *  Copyright (C) Gerald Carter                     2002-2005
5  *
6  *  This program is free software; you can redistribute it and/or modify
7  *  it under the terms of the GNU General Public License as published by
8  *  the Free Software Foundation; either version 3 of the License, or
9  *  (at your option) any later version.
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, see <http://www.gnu.org/licenses/>.
18  */
19
20 /* Implementation of registry virtual views for printing information */
21
22 #include "includes.h"
23
24 #undef DBGC_CLASS
25 #define DBGC_CLASS DBGC_REGISTRY
26
27 /* registrt paths used in the print_registry[] */
28
29 #define KEY_MONITORS            "HKLM/SYSTEM/CURRENTCONTROLSET/CONTROL/PRINT/MONITORS"
30 #define KEY_FORMS               "HKLM/SYSTEM/CURRENTCONTROLSET/CONTROL/PRINT/FORMS"
31 #define KEY_CONTROL_PRINTERS    "HKLM/SYSTEM/CURRENTCONTROLSET/CONTROL/PRINT/PRINTERS"
32 #define KEY_ENVIRONMENTS        "HKLM/SYSTEM/CURRENTCONTROLSET/CONTROL/PRINT/ENVIRONMENTS"
33 #define KEY_CONTROL_PRINT       "HKLM/SYSTEM/CURRENTCONTROLSET/CONTROL/PRINT"
34 #define KEY_WINNT_PRINTERS      "HKLM/SOFTWARE/MICROSOFT/WINDOWS NT/CURRENTVERSION/PRINT/PRINTERS"
35 #define KEY_WINNT_PRINT         "HKLM/SOFTWARE/MICROSOFT/WINDOWS NT/CURRENTVERSION/PRINT"
36 #define KEY_PORTS               "HKLM/SOFTWARE/MICROSOFT/WINDOWS NT/CURRENTVERSION/PORTS"
37
38 /* callback table for various registry paths below the ones we service in this module */
39
40 struct reg_dyn_tree {
41         /* full key path in normalized form */
42         const char *path;
43
44         /* callbscks for fetch/store operations */
45         int ( *fetch_subkeys) ( const char *path, struct regsubkey_ctr *subkeys );
46         bool (*store_subkeys) ( const char *path, struct regsubkey_ctr *subkeys );
47         int  (*fetch_values)  ( const char *path, struct regval_ctr *values );
48         bool (*store_values)  ( const char *path, struct regval_ctr *values );
49 };
50
51 /*********************************************************************
52  *********************************************************************
53  ** Utility Functions
54  *********************************************************************
55  *********************************************************************/
56
57 /***********************************************************************
58  simple function to prune a pathname down to the basename of a file
59  **********************************************************************/
60
61 static const char *dos_basename(const char *path)
62 {
63         const char *p;
64
65         if (!(p = strrchr( path, '\\'))) {
66                 p = path;
67         } else {
68                 p++;
69         }
70
71         return p;
72 }
73
74 /*********************************************************************
75  *********************************************************************
76  ** "HKLM/SYSTEM/CURRENTCONTROLSET/CONTROL/PRINT/FORMS"
77  *********************************************************************
78  *********************************************************************/
79
80 static int key_forms_fetch_keys(const char *key, struct regsubkey_ctr *subkeys)
81 {
82         char *p = reg_remaining_path(talloc_tos(), key + strlen(KEY_FORMS));
83
84         /* no keys below Forms */
85
86         if (p) {
87                 return -1;
88         }
89
90         return 0;
91 }
92
93 /**********************************************************************
94  *********************************************************************/
95
96 static int key_forms_fetch_values(const char *key, struct regval_ctr *values)
97 {
98         uint32          data[8];
99         int             i, num_values, form_index = 1;
100         nt_forms_struct *forms_list = NULL;
101         nt_forms_struct *form;
102
103         DEBUG(10,("print_values_forms: key=>[%s]\n", key ? key : "NULL" ));
104
105         num_values = get_ntforms( &forms_list );
106
107         DEBUG(10,("hive_forms_fetch_values: [%d] user defined forms returned\n",
108                 num_values));
109
110         /* handle user defined forms */
111
112         for ( i=0; i<num_values; i++ ) {
113                 form = &forms_list[i];
114
115                 data[0] = form->width;
116                 data[1] = form->length;
117                 data[2] = form->left;
118                 data[3] = form->top;
119                 data[4] = form->right;
120                 data[5] = form->bottom;
121                 data[6] = form_index++;
122                 data[7] = form->flag;
123
124                 regval_ctr_addvalue( values, form->name, REG_BINARY, (char*)data, sizeof(data) );       
125         }
126
127         SAFE_FREE( forms_list );
128         forms_list = NULL;
129
130         /* handle built-on forms */
131
132         num_values = get_builtin_ntforms( &forms_list );
133
134         DEBUG(10,("print_subpath_values_forms: [%d] built-in forms returned\n",
135                 num_values));
136
137         for ( i=0; i<num_values; i++ ) {
138                 form = &forms_list[i];
139
140                 data[0] = form->width;
141                 data[1] = form->length;
142                 data[2] = form->left;
143                 data[3] = form->top;
144                 data[4] = form->right;
145                 data[5] = form->bottom;
146                 data[6] = form_index++;
147                 data[7] = form->flag;
148
149                 regval_ctr_addvalue(values, form->name, REG_BINARY, (char*)data, sizeof(data) );
150         }
151
152         SAFE_FREE(forms_list);
153
154         return regval_ctr_numvals(values);
155 }
156
157 /*********************************************************************
158  *********************************************************************
159  ** "HKLM/SYSTEM/CURRENTCONTROLSET/CONTROL/PRINT/PRINTERS"
160  ** "HKLM/SOFTWARE/MICROSOFT/WINDOWS NT/CURRENTVERSION/PRINT/PRINTERS"
161  *********************************************************************
162  *********************************************************************/
163
164 /*********************************************************************
165  strip off prefix for printers key.  DOes return a pointer to static
166  memory.
167  *********************************************************************/
168
169 static char *strip_printers_prefix(const char *key)
170 {
171         char *subkeypath = NULL;
172         char *path = NULL;
173         TALLOC_CTX *ctx = talloc_tos();
174
175         path = talloc_strdup(ctx, key);
176         if (!path) {
177                 return NULL;
178         }
179         path = normalize_reg_path(ctx, path);
180         if (!path) {
181                 return NULL;
182         }
183
184         /* normalizing the path does not change length, just key delimiters and case */
185
186         if (strncmp(path, KEY_WINNT_PRINTERS, strlen(KEY_WINNT_PRINTERS)) == 0) {
187                 subkeypath = reg_remaining_path(ctx, key + strlen(KEY_WINNT_PRINTERS));
188         } else {
189                 subkeypath = reg_remaining_path(ctx, key + strlen(KEY_CONTROL_PRINTERS));
190         }
191
192         TALLOC_FREE(path);
193         return subkeypath;
194 }
195
196 /*********************************************************************
197  *********************************************************************/
198
199 static int key_printers_fetch_keys( const char *key, struct regsubkey_ctr *subkeys )
200 {
201         int n_services = lp_numservices();
202         int snum;
203         fstring sname;
204         int i;
205         int num_subkeys = 0;
206         char *printers_key;
207         char *printername, *printerdatakey;
208         NT_PRINTER_INFO_LEVEL *printer = NULL;
209         fstring *subkey_names = NULL;
210
211         DEBUG(10,("key_printers_fetch_keys: key=>[%s]\n", key ? key : "NULL" ));
212
213         printers_key = strip_printers_prefix( key );
214
215         if ( !printers_key ) {
216                 /* enumerate all printers */
217
218                 for (snum=0; snum<n_services; snum++) {
219                         if ( !(lp_snum_ok(snum) && lp_print_ok(snum) ) )
220                                 continue;
221
222                         /* don't report the [printers] share */
223
224                         if ( strequal( lp_servicename(snum), PRINTERS_NAME ) )
225                                 continue;
226
227                         fstrcpy( sname, lp_servicename(snum) );
228
229                         regsubkey_ctr_addkey( subkeys, sname );
230                 }
231
232                 num_subkeys = regsubkey_ctr_numkeys( subkeys );
233                 goto done;
234         }
235
236         /* get information for a specific printer */
237
238         if (!reg_split_path( printers_key, &printername, &printerdatakey )) {
239                 return -1;
240         }
241
242         /* validate the printer name */
243
244         for (snum=0; snum<n_services; snum++) {
245                 if ( !lp_snum_ok(snum) || !lp_print_ok(snum) )
246                         continue;
247                 if (strequal( lp_servicename(snum), printername ) )
248                         break;
249         }
250
251         if ( snum>=n_services
252                 || !W_ERROR_IS_OK( get_a_printer(NULL, &printer, 2, printername) ) ) 
253         {
254                 return -1;
255         }
256
257         num_subkeys = get_printer_subkeys( printer->info_2->data, printerdatakey?printerdatakey:"", &subkey_names );
258         
259         for ( i=0; i<num_subkeys; i++ )
260                 regsubkey_ctr_addkey( subkeys, subkey_names[i] );
261         
262         free_a_printer( &printer, 2 );
263                         
264         /* no other subkeys below here */
265
266 done:   
267         SAFE_FREE( subkey_names );
268         
269         return num_subkeys;
270 }
271
272 /**********************************************************************
273  Take a list of names and call add_printer_hook() if necessary
274  Note that we do this a little differently from Windows since the 
275  keyname is the sharename and not the printer name.
276  *********************************************************************/
277
278 static bool add_printers_by_registry( struct regsubkey_ctr *subkeys )
279 {
280         int i, num_keys, snum;
281         char *printername_in;
282         NT_PRINTER_INFO_LEVEL_2 info2;
283         NT_PRINTER_INFO_LEVEL printer;
284         
285         ZERO_STRUCT( info2 );
286         printer.info_2 = &info2;
287         
288         num_keys = regsubkey_ctr_numkeys( subkeys );
289         
290         become_root();
291         for ( i=0; i<num_keys; i++ ) {
292                 fstring printername;
293                 printername_in = regsubkey_ctr_specific_key( subkeys, i );
294                 snum = find_service(printername_in, printername);
295                 
296                 /* just verify a valied snum for now */
297                 if ( snum == -1 ) {
298                         fstrcpy( info2.printername, printername );
299                         fstrcpy( info2.sharename, printername );
300                         if ( !add_printer_hook(talloc_tos(), NULL, &printer ) ) {
301                                 DEBUG(0,("add_printers_by_registry: Failed to add printer [%s]\n",
302                                         printername));
303                         }       
304                 }
305         }
306         unbecome_root();
307
308         return True;
309 }
310
311 /**********************************************************************
312  *********************************************************************/
313
314 static bool key_printers_store_keys( const char *key, struct regsubkey_ctr *subkeys )
315 {
316         char *printers_key;
317         char *printername, *printerdatakey;
318         NT_PRINTER_INFO_LEVEL *printer = NULL;
319         int i, num_subkeys, num_existing_keys;
320         char *subkeyname;
321         fstring *existing_subkeys = NULL;
322         
323         printers_key = strip_printers_prefix( key );
324         
325         if ( !printers_key ) {
326                 /* have to deal with some new or deleted printer */
327                 return add_printers_by_registry( subkeys );
328         }
329         
330         if (!reg_split_path( printers_key, &printername, &printerdatakey )) {
331                 return False;
332         }
333         
334         /* lookup the printer */
335         
336         if ( !W_ERROR_IS_OK(get_a_printer(NULL, &printer, 2, printername)) ) {
337                 DEBUG(0,("key_printers_store_keys: Tried to store subkey for bad printername %s\n", 
338                         printername));
339                 return False;
340         }
341         
342         /* get the top level printer keys */
343         
344         num_existing_keys = get_printer_subkeys( printer->info_2->data, "", &existing_subkeys );
345         
346         for ( i=0; i<num_existing_keys; i++ ) {
347         
348                 /* remove the key if it has been deleted */
349                 
350                 if ( !regsubkey_ctr_key_exists( subkeys, existing_subkeys[i] ) ) {
351                         DEBUG(5,("key_printers_store_keys: deleting key %s\n", 
352                                 existing_subkeys[i]));
353                         delete_printer_key( printer->info_2->data, existing_subkeys[i] );
354                 }
355         }
356
357         num_subkeys = regsubkey_ctr_numkeys( subkeys );
358         for ( i=0; i<num_subkeys; i++ ) {
359                 subkeyname = regsubkey_ctr_specific_key(subkeys, i);
360                 /* add any missing printer keys */
361                 if ( lookup_printerkey(printer->info_2->data, subkeyname) == -1 ) {
362                         DEBUG(5,("key_printers_store_keys: adding key %s\n", 
363                                 existing_subkeys[i]));
364                         if ( add_new_printer_key( printer->info_2->data, subkeyname ) == -1 ) {
365                                 SAFE_FREE( existing_subkeys );
366                                 return False;
367                         }
368                 }
369         }
370         
371         /* write back to disk */
372         
373         mod_a_printer( printer, 2 );
374         
375         /* cleanup */
376         
377         free_a_printer( &printer, 2 );
378
379         SAFE_FREE( existing_subkeys );
380
381         return True;
382 }
383
384 /**********************************************************************
385  *********************************************************************/
386
387 static void fill_in_printer_values(NT_PRINTER_INFO_LEVEL_2 *info2, struct regval_ctr *values)
388 {
389         struct spoolss_DeviceMode *devmode;
390         char            *p;
391         uint32 printer_status = PRINTER_STATUS_OK;
392         
393         regval_ctr_addvalue( values, "Attributes",       REG_DWORD, (char*)&info2->attributes,       sizeof(info2->attributes) );
394         regval_ctr_addvalue( values, "Priority",         REG_DWORD, (char*)&info2->priority,         sizeof(info2->attributes) );
395         regval_ctr_addvalue( values, "ChangeID",         REG_DWORD, (char*)&info2->changeid,         sizeof(info2->changeid) );
396         regval_ctr_addvalue( values, "Default Priority", REG_DWORD, (char*)&info2->default_priority, sizeof(info2->default_priority) );
397         
398         /* lie and say everything is ok since we don't want to call print_queue_length() to get the real status */
399         regval_ctr_addvalue( values, "Status",           REG_DWORD, (char*)&printer_status,          sizeof(info2->status) );
400
401         regval_ctr_addvalue( values, "StartTime",        REG_DWORD, (char*)&info2->starttime,        sizeof(info2->starttime) );
402         regval_ctr_addvalue( values, "UntilTime",        REG_DWORD, (char*)&info2->untiltime,        sizeof(info2->untiltime) );
403
404         /* strip the \\server\ from this string */
405         if ( !(p = strrchr( info2->printername, '\\' ) ) )
406                 p = info2->printername;
407         else
408                 p++;
409
410         regval_ctr_addvalue_sz(values, "Name", p);
411         regval_ctr_addvalue_sz(values, "Location", info2->location);
412         regval_ctr_addvalue_sz(values, "Description", info2->comment);
413         regval_ctr_addvalue_sz(values, "Parameters", info2->parameters);
414         regval_ctr_addvalue_sz(values, "Port", info2->portname);
415         regval_ctr_addvalue_sz(values, "Share Name", info2->sharename);
416         regval_ctr_addvalue_sz(values, "Printer Driver", info2->drivername);
417         regval_ctr_addvalue_sz(values, "Separator File", info2->sepfile);
418         regval_ctr_addvalue_sz(values, "Print Processor", "WinPrint");
419         regval_ctr_addvalue_sz(values, "Datatype", "RAW");
420
421         /* stream the device mode */
422
423         devmode = construct_dev_mode(values,info2->sharename);
424         if (devmode) {
425                 DATA_BLOB blob;
426                 enum ndr_err_code ndr_err;
427
428                 ndr_err = ndr_push_struct_blob(&blob, values, NULL, devmode,
429                                 (ndr_push_flags_fn_t)ndr_push_spoolss_DeviceMode);
430
431                 if (NDR_ERR_CODE_IS_SUCCESS(ndr_err)) {
432                         regval_ctr_addvalue(values, "Default Devmode", REG_BINARY,
433                                             (const char *)blob.data, blob.length);
434                 }
435         }
436
437         /* stream the printer security descriptor */
438
439         if (info2->secdesc_buf &&
440             info2->secdesc_buf->sd &&
441             info2->secdesc_buf->sd_size)
442         {
443                 NTSTATUS status;
444                 DATA_BLOB blob;
445
446                 status = marshall_sec_desc(values, info2->secdesc_buf->sd,
447                                            &blob.data, &blob.length);
448                 if (NT_STATUS_IS_OK(status)) {
449                         regval_ctr_addvalue(values, "Security", REG_BINARY,
450                                             (const char *)blob.data, blob.length);
451                 }
452         }
453
454         return;
455 }
456
457 /**********************************************************************
458  *********************************************************************/
459
460 static int key_printers_fetch_values(const char *key, struct regval_ctr *values)
461 {
462         int             num_values;
463         char            *printers_key;
464         char            *printername, *printerdatakey;
465         NT_PRINTER_INFO_LEVEL   *printer = NULL;
466         NT_PRINTER_DATA *p_data;
467         int             i, key_index;
468         
469         printers_key = strip_printers_prefix( key );    
470         
471         /* top level key values stored in the registry has no values */
472         
473         if ( !printers_key ) {
474                 /* normalize to the 'HKLM\SOFTWARE\...\Print\Printers' key */
475                 return regdb_fetch_values( KEY_WINNT_PRINTERS, values );
476         }
477         
478         /* lookup the printer object */
479         
480         if (!reg_split_path( printers_key, &printername, &printerdatakey )) {
481                 return -1;
482         }
483         
484         if ( !W_ERROR_IS_OK( get_a_printer(NULL, &printer, 2, printername) ) )
485                 goto done;
486                 
487         if ( !printerdatakey ) {
488                 fill_in_printer_values( printer->info_2, values );
489                 goto done;
490         }
491                 
492         /* iterate over all printer data keys and fill the regval container */
493         
494         p_data = printer->info_2->data;
495         if ( (key_index = lookup_printerkey( p_data, printerdatakey )) == -1  ) {
496                 /* failure....should never happen if the client has a valid open handle first */
497                 DEBUG(10,("key_printers_fetch_values: Unknown keyname [%s]\n", printerdatakey));
498                 free_a_printer( &printer, 2 );
499                 return -1;
500         }
501         
502         num_values = regval_ctr_numvals( p_data->keys[key_index].values );      
503         for ( i=0; i<num_values; i++ )
504                 regval_ctr_copyvalue( values, regval_ctr_specific_value(p_data->keys[key_index].values, i) );
505                         
506
507 done:
508         if ( printer )
509                 free_a_printer( &printer, 2 );
510                 
511         return regval_ctr_numvals( values );
512 }
513
514 /**********************************************************************
515  *********************************************************************/
516
517 #define REG_IDX_ATTRIBUTES              1
518 #define REG_IDX_PRIORITY                2
519 #define REG_IDX_DEFAULT_PRIORITY        3
520 #define REG_IDX_CHANGEID                4
521 #define REG_IDX_STATUS                  5
522 #define REG_IDX_STARTTIME               6
523 #define REG_IDX_NAME                    7
524 #define REG_IDX_LOCATION                8
525 #define REG_IDX_DESCRIPTION             9
526 #define REG_IDX_PARAMETERS              10
527 #define REG_IDX_PORT                    12
528 #define REG_IDX_SHARENAME               13
529 #define REG_IDX_DRIVER                  14
530 #define REG_IDX_SEP_FILE                15
531 #define REG_IDX_PRINTPROC               16
532 #define REG_IDX_DATATYPE                17
533 #define REG_IDX_DEVMODE                 18
534 #define REG_IDX_SECDESC                 19
535 #define REG_IDX_UNTILTIME               20
536
537 struct {
538         const char *name;
539         int index;      
540 } printer_values_map[] = {
541         { "Attributes",         REG_IDX_ATTRIBUTES },
542         { "Priority",           REG_IDX_PRIORITY },
543         { "Default Priority",   REG_IDX_DEFAULT_PRIORITY },
544         { "ChangeID",           REG_IDX_CHANGEID },
545         { "Status",             REG_IDX_STATUS },
546         { "StartTime",          REG_IDX_STARTTIME },
547         { "UntilTime",          REG_IDX_UNTILTIME },
548         { "Name",               REG_IDX_NAME },
549         { "Location",           REG_IDX_LOCATION },
550         { "Description",        REG_IDX_DESCRIPTION },
551         { "Parameters",         REG_IDX_PARAMETERS },
552         { "Port",               REG_IDX_PORT },
553         { "Share Name",         REG_IDX_SHARENAME },
554         { "Printer Driver",     REG_IDX_DRIVER },
555         { "Separator File",     REG_IDX_SEP_FILE },
556         { "Print Processor",    REG_IDX_PRINTPROC },
557         { "Datatype",           REG_IDX_DATATYPE },
558         { "Default Devmode",    REG_IDX_DEVMODE },
559         { "Security",           REG_IDX_SECDESC },
560         { NULL, -1 }
561 };
562
563
564 static int find_valuename_index( const char *valuename )
565 {
566         int i;
567         
568         for ( i=0; printer_values_map[i].name; i++ ) {
569                 if ( strequal( valuename, printer_values_map[i].name ) )
570                         return printer_values_map[i].index;
571         }
572         
573         return -1;
574 }
575
576 /**********************************************************************
577  *********************************************************************/
578
579 static void pull_reg_sz_fstring(TALLOC_CTX *mem_ctx, const DATA_BLOB *blob, fstring s)
580 {
581         const char *str;
582         pull_reg_sz(mem_ctx, blob, &str);
583         fstrcpy(s, str);
584 }
585
586 static void convert_values_to_printer_info_2(TALLOC_CTX *mem_ctx,
587                                              NT_PRINTER_INFO_LEVEL_2 *printer2,
588                                              struct regval_ctr *values)
589 {
590         int num_values = regval_ctr_numvals( values );
591         uint32 value_index;
592         struct regval_blob *val;
593         int i;
594         
595         for ( i=0; i<num_values; i++ ) {
596                 DATA_BLOB blob;
597                 val = regval_ctr_specific_value( values, i );
598                 value_index = find_valuename_index( regval_name( val ) );
599
600                 blob = data_blob_const(regval_data_p(val), regval_size(val));
601                 
602                 switch( value_index ) {
603                         case REG_IDX_ATTRIBUTES:
604                                 printer2->attributes = (uint32)(*regval_data_p(val));
605                                 break;
606                         case REG_IDX_PRIORITY:
607                                 printer2->priority = (uint32)(*regval_data_p(val));
608                                 break;
609                         case REG_IDX_DEFAULT_PRIORITY:
610                                 printer2->default_priority = (uint32)(*regval_data_p(val));
611                                 break;
612                         case REG_IDX_CHANGEID:
613                                 printer2->changeid = (uint32)(*regval_data_p(val));
614                                 break;
615                         case REG_IDX_STARTTIME:
616                                 printer2->starttime = (uint32)(*regval_data_p(val));
617                                 break;
618                         case REG_IDX_UNTILTIME:
619                                 printer2->untiltime = (uint32)(*regval_data_p(val));
620                                 break;
621                         case REG_IDX_NAME:
622                                 pull_reg_sz_fstring(mem_ctx, &blob, printer2->printername);
623                                 break;
624                         case REG_IDX_LOCATION:
625                                 pull_reg_sz_fstring(mem_ctx, &blob, printer2->location);
626                                 break;
627                         case REG_IDX_DESCRIPTION:
628                                 pull_reg_sz_fstring(mem_ctx, &blob, printer2->comment);
629                                 break;
630                         case REG_IDX_PARAMETERS:
631                                 pull_reg_sz_fstring(mem_ctx, &blob, printer2->parameters);
632                                 break;
633                         case REG_IDX_PORT:
634                                 pull_reg_sz_fstring(mem_ctx, &blob, printer2->portname);
635                                 break;
636                         case REG_IDX_SHARENAME:
637                                 pull_reg_sz_fstring(mem_ctx, &blob, printer2->sharename);
638                                 break;
639                         case REG_IDX_DRIVER:
640                                 pull_reg_sz_fstring(mem_ctx, &blob, printer2->drivername);
641                                 break;
642                         case REG_IDX_SEP_FILE:
643                                 pull_reg_sz_fstring(mem_ctx, &blob, printer2->sepfile);
644                                 break;
645                         case REG_IDX_PRINTPROC:
646                                 pull_reg_sz_fstring(mem_ctx, &blob, printer2->printprocessor);
647                                 break;
648                         case REG_IDX_DATATYPE:
649                                 pull_reg_sz_fstring(mem_ctx, &blob, printer2->datatype);
650                                 break;
651                         case REG_IDX_DEVMODE:
652                                 break;
653                         case REG_IDX_SECDESC:
654                                 break;          
655                         default:
656                                 /* unsupported value...throw away */
657                                 DEBUG(8,("convert_values_to_printer_info_2: Unsupported registry value [%s]\n", 
658                                         regval_name( val ) ));
659                 }
660         }
661         
662         return;
663 }       
664
665 /**********************************************************************
666  *********************************************************************/
667
668 static bool key_printers_store_values(const char *key, struct regval_ctr *values)
669 {
670         char *printers_key;
671         char *printername, *keyname;
672         NT_PRINTER_INFO_LEVEL   *printer = NULL;
673         WERROR result;
674         TALLOC_CTX *mem_ctx = talloc_init("key_printers_store_values");
675         
676         printers_key = strip_printers_prefix( key );
677         
678         /* values in the top level key get stored in the registry */
679
680         if ( !printers_key ) {
681                 /* normalize on the 'HKLM\SOFTWARE\....\Print\Printers' key */
682                 return regdb_store_values( KEY_WINNT_PRINTERS, values );
683         }
684         
685         if (!reg_split_path( printers_key, &printername, &keyname )) {
686                 return False;
687         }
688
689         if ( !W_ERROR_IS_OK(get_a_printer(NULL, &printer, 2, printername) ) )
690                 return False;
691
692         /* deal with setting values directly under the printername */
693
694         if ( !keyname ) {
695                 convert_values_to_printer_info_2(mem_ctx, printer->info_2, values );
696         }
697         else {
698                 int num_values = regval_ctr_numvals( values );
699                 int i;
700                 struct regval_blob *val;
701                 
702                 delete_printer_key( printer->info_2->data, keyname );
703                 
704                 /* deal with any subkeys */
705                 for ( i=0; i<num_values; i++ ) {
706                         val = regval_ctr_specific_value( values, i );
707                         result = set_printer_dataex( printer, keyname, 
708                                 regval_name( val ),
709                                 regval_type( val ),
710                                 regval_data_p( val ),
711                                 regval_size( val ) );
712                         if ( !W_ERROR_IS_OK(result) ) {
713                                 DEBUG(0,("key_printers_store_values: failed to set printer data [%s]!\n",
714                                         keyname));
715                                 free_a_printer( &printer, 2 );
716                                 talloc_destroy(mem_ctx);
717                                 return False;
718                         }
719                 }
720         }
721
722         result = mod_a_printer( printer, 2 );
723
724         free_a_printer( &printer, 2 );
725         talloc_destroy(mem_ctx);
726
727         return W_ERROR_IS_OK(result);
728 }
729
730 /*********************************************************************
731  *********************************************************************
732  ** "HKLM/SYSTEM/CURRENTCONTROLSET/CONTROL/PRINT/ENVIRONMENTS"
733  *********************************************************************
734  *********************************************************************/
735
736 static int key_driver_fetch_keys( const char *key, struct regsubkey_ctr *subkeys )
737 {
738         const char *environments[] = {
739                 "Windows 4.0",
740                 "Windows NT x86",
741                 "Windows NT R4000",
742                 "Windows NT Alpha_AXP",
743                 "Windows NT PowerPC",
744                 "Windows IA64",
745                 "Windows x64",
746                 NULL };
747         fstring *drivers = NULL;
748         int i, env_index, num_drivers;
749         char *keystr, *base, *subkeypath;
750         char *key2 = NULL;
751         int num_subkeys = -1;
752         int version;
753         TALLOC_CTX *ctx = talloc_tos();
754
755         DEBUG(10,("key_driver_fetch_keys key=>[%s]\n", key ? key : "NULL" ));
756
757         keystr = reg_remaining_path(ctx, key + strlen(KEY_ENVIRONMENTS) );
758
759         /* list all possible architectures */
760
761         if ( !keystr ) {
762                 for ( num_subkeys=0; environments[num_subkeys]; num_subkeys++ )
763                         regsubkey_ctr_addkey( subkeys,  environments[num_subkeys] );
764
765                 return num_subkeys;
766         }
767
768         /* we are dealing with a subkey of "Environments */
769         key2 = talloc_strdup(ctx, keystr);
770         if (!key2) {
771                 return -1;
772         }
773         keystr = key2;
774         if (!reg_split_path(keystr, &base, &subkeypath )) {
775                 return -1;
776         }
777
778         /* sanity check */
779
780         for ( env_index=0; environments[env_index]; env_index++ ) {
781                 if ( strequal( environments[env_index], base ) )
782                         break;
783         }
784         if ( !environments[env_index] )
785                 return -1;
786
787         /* ...\Print\Environements\...\ */
788
789         if ( !subkeypath ) {
790                 regsubkey_ctr_addkey( subkeys, "Drivers" );
791                 regsubkey_ctr_addkey( subkeys, "Print Processors" );
792
793                 return 2;
794         }
795
796         /* more of the key path to process */
797
798         keystr = subkeypath;
799         if (!reg_split_path( keystr, &base, &subkeypath )) {
800                 return -1;
801         }
802
803         /* ...\Print\Environements\...\Drivers\ */
804
805         if ( !subkeypath ) {
806                 if ( strequal(base, "Drivers") ) {
807                         switch ( env_index ) {
808                                 case 0: /* Win9x */
809                                         regsubkey_ctr_addkey( subkeys, "Version-0" );
810                                         break;
811                                 default: /* Windows NT based systems */
812                                         regsubkey_ctr_addkey( subkeys, "Version-2" );
813                                         regsubkey_ctr_addkey( subkeys, "Version-3" );
814                                         break;
815                         }
816
817                         return regsubkey_ctr_numkeys( subkeys );
818                 } else if ( strequal(base, "Print Processors") ) {
819                         if ( env_index == 1 || env_index == 5 || env_index == 6 )
820
821
822                         return regsubkey_ctr_numkeys( subkeys );
823                 } else
824                         return -1;      /* bad path */
825         }
826
827         /* we finally get to enumerate the drivers */
828
829         /* only one possible subkey below PrintProc key */
830
831         if ( strequal(base, "Print Processors") ) {
832                 keystr = subkeypath;
833                 if (!reg_split_path( keystr, &base, &subkeypath )) {
834                         return -1;
835                 }
836
837                 /* no subkeys below this point */
838
839                 if ( subkeypath )
840                         return -1;
841
842                 /* only allow one keyname here -- 'winprint' */
843
844                 return strequal( base, "winprint" ) ? 0 : -1;
845         }
846
847         /* only dealing with drivers from here on out */
848
849         keystr = subkeypath;
850         if (!reg_split_path( keystr, &base, &subkeypath )) {
851                 return -1;
852         }
853
854         version = atoi(&base[strlen(base)-1]);
855
856         switch (env_index) {
857         case 0:
858                 if ( version != 0 )
859                         return -1;
860                 break;
861         default:
862                 if ( version != 2 && version != 3 )
863                         return -1;
864                 break;
865         }
866
867
868         if ( !subkeypath ) {
869                 num_drivers = get_ntdrivers( &drivers, environments[env_index], version );
870                 for ( i=0; i<num_drivers; i++ )
871                         regsubkey_ctr_addkey( subkeys, drivers[i] );
872
873                 return regsubkey_ctr_numkeys( subkeys );
874         }
875
876         /* if anything else left, just say if has no subkeys */
877
878         DEBUG(1,("key_driver_fetch_keys unhandled key [%s] (subkey == %s)\n",
879                 key, subkeypath ));
880
881         return 0;
882 }
883
884
885 /**********************************************************************
886  *********************************************************************/
887
888 static void fill_in_driver_values(const struct spoolss_DriverInfo8 *r,
889                                   struct regval_ctr *values)
890 {
891         char *buffer = NULL;
892         int buffer_size = 0;
893         int i, length;
894         const char *filename;
895         DATA_BLOB data;
896
897         filename = dos_basename(r->driver_path);
898         regval_ctr_addvalue_sz(values, "Driver", filename);
899
900         filename = dos_basename(r->config_file);
901         regval_ctr_addvalue_sz(values, "Configuration File", filename);
902
903         filename = dos_basename(r->data_file);
904         regval_ctr_addvalue_sz(values, "Data File", filename);
905
906         filename = dos_basename(r->help_file);
907         regval_ctr_addvalue_sz(values, "Help File", filename);
908
909         regval_ctr_addvalue_sz(values, "Data Type", r->default_datatype);
910
911         regval_ctr_addvalue( values, "Version", REG_DWORD, (char*)&r->version,
912                 sizeof(r->version) );
913
914         if (r->dependent_files) {
915                 /* place the list of dependent files in a single
916                    character buffer, separating each file name by
917                    a NULL */
918
919                 for (i=0; r->dependent_files[i] && strcmp(r->dependent_files[i], ""); i++) {
920                         /* strip the path to only the file's base name */
921
922                         filename = dos_basename(r->dependent_files[i]);
923
924                         length = strlen(filename);
925
926                         buffer = (char *)SMB_REALLOC( buffer, buffer_size + (length + 1)*sizeof(uint16) );
927                         if ( !buffer ) {
928                                 break;
929                         }
930
931                         push_reg_sz(talloc_tos(), &data, filename);
932                         memcpy( buffer+buffer_size, (char*)data.data, data.length);
933
934                         buffer_size += (length + 1)*sizeof(uint16);
935                 }
936
937                 /* terminated by double NULL.  Add the final one here */
938
939                 buffer = (char *)SMB_REALLOC( buffer, buffer_size + 2 );
940                 if ( !buffer ) {
941                         buffer_size = 0;
942                 } else {
943                         buffer[buffer_size++] = '\0';
944                         buffer[buffer_size++] = '\0';
945                 }
946         }
947
948         regval_ctr_addvalue( values, "Dependent Files",    REG_MULTI_SZ, buffer, buffer_size );
949
950         SAFE_FREE( buffer );
951
952         return;
953 }
954
955 /**********************************************************************
956  *********************************************************************/
957
958 static int driver_arch_fetch_values(char *key, struct regval_ctr *values)
959 {
960         char            *keystr, *base, *subkeypath;
961         fstring         arch_environment;
962         fstring         driver;
963         int             version;
964         struct spoolss_DriverInfo8 *driver_ctr;
965         WERROR          w_result;
966
967         if (!reg_split_path( key, &base, &subkeypath )) {
968                 return -1;
969         }
970
971         /* no values in 'Environments\Drivers\Windows NT x86' */
972
973         if ( !subkeypath )
974                 return 0;
975
976         /* We have the Architecture string and some subkey name:
977            Currently we only support
978            * Drivers
979            * Print Processors
980            Anything else is an error.
981            */
982
983         fstrcpy( arch_environment, base );
984
985         keystr = subkeypath;
986         if (!reg_split_path( keystr, &base, &subkeypath )) {
987                 return -1;
988         }
989
990         if ( strequal(base, "Print Processors") )
991                 return 0;
992
993         /* only Drivers key can be left */
994
995         if ( !strequal(base, "Drivers") )
996                 return -1;
997
998         if ( !subkeypath )
999                 return 0;
1000
1001         /* We know that we have Architechure\Drivers with some subkey name
1002            The subkey name has to be Version-XX */
1003
1004         keystr = subkeypath;
1005         if (!reg_split_path( keystr, &base, &subkeypath )) {
1006                 return -1;
1007         }
1008
1009         if ( !subkeypath )
1010                 return 0;
1011
1012         version = atoi(&base[strlen(base)-1]);
1013
1014         /* BEGIN PRINTER DRIVER NAME BLOCK */
1015
1016         keystr = subkeypath;
1017         if (!reg_split_path( keystr, &base, &subkeypath )) {
1018                 return -1;
1019         }
1020
1021         /* don't go any deeper for now */
1022
1023         fstrcpy( driver, base );
1024
1025         w_result = get_a_printer_driver(talloc_tos(), &driver_ctr, driver, arch_environment, version);
1026
1027         if ( !W_ERROR_IS_OK(w_result) )
1028                 return -1;
1029
1030         fill_in_driver_values(driver_ctr, values);
1031
1032         free_a_printer_driver(driver_ctr);
1033
1034         /* END PRINTER DRIVER NAME BLOCK */
1035
1036
1037         DEBUG(8,("key_driver_fetch_values: Exit\n"));
1038
1039         return regval_ctr_numvals( values );
1040 }
1041
1042 /**********************************************************************
1043  *********************************************************************/
1044
1045 static int key_driver_fetch_values(const char *key, struct regval_ctr *values)
1046 {
1047         char *keystr = NULL;
1048         char *subkey = NULL;
1049         TALLOC_CTX *ctx = talloc_tos();
1050
1051         DEBUG(8,("key_driver_fetch_values: Enter key => [%s]\n", key ? key : "NULL"));
1052
1053         /* no values in the Environments key */
1054
1055         if (!(keystr = reg_remaining_path(ctx, key + strlen(KEY_ENVIRONMENTS))))
1056                 return 0;
1057
1058         subkey = talloc_strdup(ctx, keystr);
1059         if (!subkey) {
1060                 return 0;
1061         }
1062
1063         /* pass off to handle subkeys */
1064
1065         return driver_arch_fetch_values( subkey, values );
1066 }
1067
1068 /*********************************************************************
1069  *********************************************************************
1070  ** "HKLM/SYSTEM/CURRENTCONTROLSET/CONTROL/PRINT"
1071  *********************************************************************
1072  *********************************************************************/
1073
1074 static int key_print_fetch_keys( const char *key, struct regsubkey_ctr *subkeys )
1075 {
1076         int key_len = strlen(key);
1077
1078         /* no keys below 'Print' handled here */
1079
1080         if ( (key_len != strlen(KEY_CONTROL_PRINT)) && (key_len != strlen(KEY_WINNT_PRINT)) )
1081                 return -1;
1082
1083         regsubkey_ctr_addkey( subkeys, "Environments" );
1084         regsubkey_ctr_addkey( subkeys, "Monitors" );
1085         regsubkey_ctr_addkey( subkeys, "Forms" );
1086         regsubkey_ctr_addkey( subkeys, "Printers" );
1087
1088         return regsubkey_ctr_numkeys( subkeys );
1089 }
1090
1091 /**********************************************************************
1092  *********************************************************************
1093  ** Structure to hold dispatch table of ops for various printer keys.
1094  ** Make sure to always store deeper keys along the same path first so
1095  ** we ge a more specific match.
1096  *********************************************************************
1097  *********************************************************************/
1098
1099 static struct reg_dyn_tree print_registry[] = {
1100 /* just pass the monitor onto the registry tdb */
1101 { KEY_MONITORS,
1102         &regdb_fetch_keys,
1103         &regdb_store_keys,
1104         &regdb_fetch_values,
1105         &regdb_store_values },
1106 { KEY_FORMS,
1107         &key_forms_fetch_keys,
1108         NULL,
1109         &key_forms_fetch_values,
1110         NULL },
1111 { KEY_CONTROL_PRINTERS,
1112         &key_printers_fetch_keys,
1113         &key_printers_store_keys,
1114         &key_printers_fetch_values,
1115         &key_printers_store_values },
1116 { KEY_ENVIRONMENTS,
1117         &key_driver_fetch_keys,
1118         NULL,
1119         &key_driver_fetch_values,
1120         NULL },
1121 { KEY_CONTROL_PRINT,
1122         &key_print_fetch_keys,
1123         NULL,
1124         NULL,
1125         NULL },
1126 { KEY_WINNT_PRINTERS,
1127         &key_printers_fetch_keys,
1128         &key_printers_store_keys,
1129         &key_printers_fetch_values,
1130         &key_printers_store_values },
1131 { KEY_PORTS,
1132         &regdb_fetch_keys,
1133         &regdb_store_keys,
1134         &regdb_fetch_values,
1135         &regdb_store_values },
1136
1137 { NULL, NULL, NULL, NULL, NULL }
1138 };
1139
1140
1141 /**********************************************************************
1142  *********************************************************************
1143  ** Main reg_printing interface functions
1144  *********************************************************************
1145  *********************************************************************/
1146
1147 /***********************************************************************
1148  Lookup a key in the print_registry table, returning its index.
1149  -1 on failure
1150  **********************************************************************/
1151
1152 static int match_registry_path(const char *key)
1153 {
1154         int i;
1155         char *path = NULL;
1156         TALLOC_CTX *ctx = talloc_tos();
1157
1158         if ( !key )
1159                 return -1;
1160
1161         path = talloc_strdup(ctx, key);
1162         if (!path) {
1163                 return -1;
1164         }
1165         path = normalize_reg_path(ctx, path);
1166         if (!path) {
1167                 return -1;
1168         }
1169
1170         for ( i=0; print_registry[i].path; i++ ) {
1171                 if (strncmp( path, print_registry[i].path, strlen(print_registry[i].path) ) == 0 )
1172                         return i;
1173         }
1174
1175         return -1;
1176 }
1177
1178 /***********************************************************************
1179  **********************************************************************/
1180
1181 static int regprint_fetch_reg_keys( const char *key, struct regsubkey_ctr *subkeys )
1182 {
1183         int i = match_registry_path( key );
1184
1185         if ( i == -1 )
1186                 return -1;
1187
1188         if ( !print_registry[i].fetch_subkeys )
1189                 return -1;
1190
1191         return print_registry[i].fetch_subkeys( key, subkeys );
1192 }
1193
1194 /**********************************************************************
1195  *********************************************************************/
1196
1197 static bool regprint_store_reg_keys( const char *key, struct regsubkey_ctr *subkeys )
1198 {
1199         int i = match_registry_path( key );
1200
1201         if ( i == -1 )
1202                 return False;
1203
1204         if ( !print_registry[i].store_subkeys )
1205                 return False;
1206
1207         return print_registry[i].store_subkeys( key, subkeys );
1208 }
1209
1210 /**********************************************************************
1211  *********************************************************************/
1212
1213 static int regprint_fetch_reg_values(const char *key, struct regval_ctr *values)
1214 {
1215         int i = match_registry_path( key );
1216
1217         if ( i == -1 )
1218                 return -1;
1219
1220         /* return 0 values by default since we know the key had
1221            to exist because the client opened a handle */
1222
1223         if ( !print_registry[i].fetch_values )
1224                 return 0;
1225
1226         return print_registry[i].fetch_values( key, values );
1227 }
1228
1229 /**********************************************************************
1230  *********************************************************************/
1231
1232 static bool regprint_store_reg_values(const char *key, struct regval_ctr *values)
1233 {
1234         int i = match_registry_path( key );
1235
1236         if ( i == -1 )
1237                 return False;
1238
1239         if ( !print_registry[i].store_values )
1240                 return False;
1241
1242         return print_registry[i].store_values( key, values );
1243 }
1244
1245 /*
1246  * Table of function pointers for accessing printing data
1247  */
1248
1249 struct registry_ops printing_ops = {
1250         .fetch_subkeys = regprint_fetch_reg_keys,
1251         .fetch_values = regprint_fetch_reg_values,
1252         .store_subkeys = regprint_store_reg_keys,
1253         .store_values = regprint_store_reg_values,
1254 };