- sync MSI to Wine 0.9.18
[reactos.git] / reactos / dll / win32 / msi / table.c
1 /*
2 * Implementation of the Microsoft Installer (msi.dll)
3 *
4 * Copyright 2002-2005 Mike McCormack for CodeWeavers
5 *
6 * This library is free software; you can redistribute it and/or
7 * modify it under the terms of the GNU Lesser General Public
8 * License as published by the Free Software Foundation; either
9 * version 2.1 of the License, or (at your option) any later version.
10 *
11 * This library 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 GNU
14 * Lesser General Public License for more details.
15 *
16 * You should have received a copy of the GNU Lesser General Public
17 * License along with this library; if not, write to the Free Software
18 * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
19 */
20
21 #include <stdarg.h>
22
23 #define COBJMACROS
24 #define NONAMELESSUNION
25 #define NONAMELESSSTRUCT
26
27 #include "windef.h"
28 #include "winbase.h"
29 #include "winerror.h"
30 #include "wine/debug.h"
31 #include "msi.h"
32 #include "msiquery.h"
33 #include "objbase.h"
34 #include "objidl.h"
35 #include "msipriv.h"
36 #include "winnls.h"
37
38 #include "query.h"
39
40 WINE_DEFAULT_DEBUG_CHANNEL(msidb);
41
42 #define MSITABLE_HASH_TABLE_SIZE 37
43
44 typedef struct tagMSICOLUMNHASHENTRY
45 {
46 struct tagMSICOLUMNHASHENTRY *next;
47 UINT value;
48 UINT row;
49 } MSICOLUMNHASHENTRY;
50
51 typedef struct tagMSICOLUMNINFO
52 {
53 LPCWSTR tablename;
54 UINT number;
55 LPCWSTR colname;
56 UINT type;
57 UINT offset;
58 MSICOLUMNHASHENTRY **hash_table;
59 } MSICOLUMNINFO;
60
61 struct tagMSITABLE
62 {
63 USHORT **data;
64 UINT row_count;
65 struct list entry;
66 WCHAR name[1];
67 };
68
69 typedef struct tagMSITRANSFORM {
70 struct list entry;
71 IStorage *stg;
72 } MSITRANSFORM;
73
74 #define MAX_STREAM_NAME 0x1f
75
76 static UINT table_get_column_info( MSIDATABASE *db, LPCWSTR name,
77 MSICOLUMNINFO **pcols, UINT *pcount );
78 static UINT get_tablecolumns( MSIDATABASE *db,
79 LPCWSTR szTableName, MSICOLUMNINFO *colinfo, UINT *sz);
80 static void msi_free_colinfo( MSICOLUMNINFO *colinfo, UINT count );
81
82 static inline UINT bytes_per_column( const MSICOLUMNINFO *col )
83 {
84 if( col->type & MSITYPE_STRING )
85 return 2;
86 if( (col->type & 0xff) > 4 )
87 ERR("Invalid column size!\n");
88 return col->type & 0xff;
89 }
90
91 static int utf2mime(int x)
92 {
93 if( (x>='0') && (x<='9') )
94 return x-'0';
95 if( (x>='A') && (x<='Z') )
96 return x-'A'+10;
97 if( (x>='a') && (x<='z') )
98 return x-'a'+10+26;
99 if( x=='.' )
100 return 10+26+26;
101 if( x=='_' )
102 return 10+26+26+1;
103 return -1;
104 }
105
106 static LPWSTR encode_streamname(BOOL bTable, LPCWSTR in)
107 {
108 DWORD count = MAX_STREAM_NAME;
109 DWORD ch, next;
110 LPWSTR out, p;
111
112 if( !bTable )
113 count = lstrlenW( in )+2;
114 out = msi_alloc( count*sizeof(WCHAR) );
115 p = out;
116
117 if( bTable )
118 {
119 *p++ = 0x4840;
120 count --;
121 }
122 while( count -- )
123 {
124 ch = *in++;
125 if( !ch )
126 {
127 *p = ch;
128 return out;
129 }
130 if( ( ch < 0x80 ) && ( utf2mime(ch) >= 0 ) )
131 {
132 ch = utf2mime(ch) + 0x4800;
133 next = *in;
134 if( next && (next<0x80) )
135 {
136 next = utf2mime(next);
137 if( next >= 0 )
138 {
139 next += 0x3ffffc0;
140 ch += (next<<6);
141 in++;
142 }
143 }
144 }
145 *p++ = ch;
146 }
147 ERR("Failed to encode stream name (%s)\n",debugstr_w(in));
148 msi_free( out );
149 return NULL;
150 }
151
152 static int mime2utf(int x)
153 {
154 if( x<10 )
155 return x + '0';
156 if( x<(10+26))
157 return x - 10 + 'A';
158 if( x<(10+26+26))
159 return x - 10 - 26 + 'a';
160 if( x == (10+26+26) )
161 return '.';
162 return '_';
163 }
164
165 static BOOL decode_streamname(LPWSTR in, LPWSTR out)
166 {
167 WCHAR ch;
168 DWORD count = 0;
169
170 while ( (ch = *in++) )
171 {
172 if( (ch >= 0x3800 ) && (ch < 0x4840 ) )
173 {
174 if( ch >= 0x4800 )
175 ch = mime2utf(ch-0x4800);
176 else
177 {
178 ch -= 0x3800;
179 *out++ = mime2utf(ch&0x3f);
180 count++;
181 ch = mime2utf((ch>>6)&0x3f);
182 }
183 }
184 *out++ = ch;
185 count++;
186 }
187 *out = 0;
188 return count;
189 }
190
191 void enum_stream_names( IStorage *stg )
192 {
193 IEnumSTATSTG *stgenum = NULL;
194 HRESULT r;
195 STATSTG stat;
196 ULONG n, count;
197 WCHAR name[0x40];
198
199 r = IStorage_EnumElements( stg, 0, NULL, 0, &stgenum );
200 if( FAILED( r ) )
201 return;
202
203 n = 0;
204 while( 1 )
205 {
206 count = 0;
207 r = IEnumSTATSTG_Next( stgenum, 1, &stat, &count );
208 if( FAILED( r ) || !count )
209 break;
210 decode_streamname( stat.pwcsName, name );
211 TRACE("stream %2ld -> %s %s\n", n,
212 debugstr_w(stat.pwcsName), debugstr_w(name) );
213 n++;
214 }
215
216 IEnumSTATSTG_Release( stgenum );
217 }
218
219 static UINT read_stream_data( IStorage *stg, LPCWSTR stname,
220 USHORT **pdata, UINT *psz )
221 {
222 HRESULT r;
223 UINT ret = ERROR_FUNCTION_FAILED;
224 VOID *data;
225 ULONG sz, count;
226 IStream *stm = NULL;
227 STATSTG stat;
228 LPWSTR encname;
229
230 encname = encode_streamname(TRUE, stname);
231
232 TRACE("%s -> %s\n",debugstr_w(stname),debugstr_w(encname));
233
234 r = IStorage_OpenStream(stg, encname, NULL,
235 STGM_READ | STGM_SHARE_EXCLUSIVE, 0, &stm);
236 msi_free( encname );
237 if( FAILED( r ) )
238 {
239 WARN("open stream failed r = %08lx - empty table?\n",r);
240 return ret;
241 }
242
243 r = IStream_Stat(stm, &stat, STATFLAG_NONAME );
244 if( FAILED( r ) )
245 {
246 WARN("open stream failed r = %08lx!\n",r);
247 goto end;
248 }
249
250 if( stat.cbSize.QuadPart >> 32 )
251 {
252 WARN("Too big!\n");
253 goto end;
254 }
255
256 sz = stat.cbSize.QuadPart;
257 data = msi_alloc( sz );
258 if( !data )
259 {
260 WARN("couldn't allocate memory r=%08lx!\n",r);
261 ret = ERROR_NOT_ENOUGH_MEMORY;
262 goto end;
263 }
264
265 r = IStream_Read(stm, data, sz, &count );
266 if( FAILED( r ) || ( count != sz ) )
267 {
268 msi_free( data );
269 WARN("read stream failed r = %08lx!\n",r);
270 goto end;
271 }
272
273 *pdata = data;
274 *psz = sz;
275 ret = ERROR_SUCCESS;
276
277 end:
278 IStream_Release( stm );
279
280 return ret;
281 }
282
283 UINT db_get_raw_stream( MSIDATABASE *db, LPCWSTR stname, IStream **stm )
284 {
285 LPWSTR encname;
286 HRESULT r;
287
288 encname = encode_streamname(FALSE, stname);
289
290 TRACE("%s -> %s\n",debugstr_w(stname),debugstr_w(encname));
291
292 r = IStorage_OpenStream(db->storage, encname, NULL,
293 STGM_READ | STGM_SHARE_EXCLUSIVE, 0, stm);
294 if( FAILED( r ) )
295 {
296 MSITRANSFORM *transform;
297
298 LIST_FOR_EACH_ENTRY( transform, &db->transforms, MSITRANSFORM, entry )
299 {
300 TRACE("looking for %s in transform storage\n", debugstr_w(stname) );
301 r = IStorage_OpenStream( transform->stg, encname, NULL,
302 STGM_READ | STGM_SHARE_EXCLUSIVE, 0, stm );
303 if (SUCCEEDED(r))
304 break;
305 }
306 }
307
308 msi_free( encname );
309
310 return SUCCEEDED(r) ? ERROR_SUCCESS : ERROR_FUNCTION_FAILED;
311 }
312
313 UINT read_raw_stream_data( MSIDATABASE *db, LPCWSTR stname,
314 USHORT **pdata, UINT *psz )
315 {
316 HRESULT r;
317 UINT ret = ERROR_FUNCTION_FAILED;
318 VOID *data;
319 ULONG sz, count;
320 IStream *stm = NULL;
321 STATSTG stat;
322
323 r = db_get_raw_stream( db, stname, &stm );
324 if( r != ERROR_SUCCESS)
325 return ret;
326 r = IStream_Stat(stm, &stat, STATFLAG_NONAME );
327 if( FAILED( r ) )
328 {
329 WARN("open stream failed r = %08lx!\n",r);
330 goto end;
331 }
332
333 if( stat.cbSize.QuadPart >> 32 )
334 {
335 WARN("Too big!\n");
336 goto end;
337 }
338
339 sz = stat.cbSize.QuadPart;
340 data = msi_alloc( sz );
341 if( !data )
342 {
343 WARN("couldn't allocate memory r=%08lx!\n",r);
344 ret = ERROR_NOT_ENOUGH_MEMORY;
345 goto end;
346 }
347
348 r = IStream_Read(stm, data, sz, &count );
349 if( FAILED( r ) || ( count != sz ) )
350 {
351 msi_free( data );
352 WARN("read stream failed r = %08lx!\n",r);
353 goto end;
354 }
355
356 *pdata = data;
357 *psz = sz;
358 ret = ERROR_SUCCESS;
359
360 end:
361 IStream_Release( stm );
362
363 return ret;
364 }
365
366 static UINT write_stream_data( IStorage *stg, LPCWSTR stname,
367 LPVOID data, UINT sz )
368 {
369 HRESULT r;
370 UINT ret = ERROR_FUNCTION_FAILED;
371 ULONG count;
372 IStream *stm = NULL;
373 ULARGE_INTEGER size;
374 LARGE_INTEGER pos;
375 LPWSTR encname;
376
377 encname = encode_streamname(TRUE, stname );
378 r = IStorage_OpenStream( stg, encname, NULL,
379 STGM_WRITE | STGM_SHARE_EXCLUSIVE, 0, &stm);
380 if( FAILED(r) )
381 {
382 r = IStorage_CreateStream( stg, encname,
383 STGM_WRITE | STGM_SHARE_EXCLUSIVE, 0, 0, &stm);
384 }
385 msi_free( encname );
386 if( FAILED( r ) )
387 {
388 WARN("open stream failed r = %08lx\n",r);
389 return ret;
390 }
391
392 size.QuadPart = sz;
393 r = IStream_SetSize( stm, size );
394 if( FAILED( r ) )
395 {
396 WARN("Failed to SetSize\n");
397 goto end;
398 }
399
400 pos.QuadPart = 0;
401 r = IStream_Seek( stm, pos, STREAM_SEEK_SET, NULL );
402 if( FAILED( r ) )
403 {
404 WARN("Failed to Seek\n");
405 goto end;
406 }
407
408 r = IStream_Write(stm, data, sz, &count );
409 if( FAILED( r ) || ( count != sz ) )
410 {
411 WARN("Failed to Write\n");
412 goto end;
413 }
414
415 ret = ERROR_SUCCESS;
416
417 end:
418 IStream_Release( stm );
419
420 return ret;
421 }
422
423 static void free_table( MSITABLE *table )
424 {
425 int i;
426 for( i=0; i<table->row_count; i++ )
427 msi_free( table->data[i] );
428 msi_free( table->data );
429 msi_free( table );
430 }
431
432 static UINT msi_table_get_row_size( const MSICOLUMNINFO *cols, UINT count )
433 {
434 const MSICOLUMNINFO *last_col = &cols[count-1];
435 if (!count)
436 return 0;
437 return last_col->offset + bytes_per_column( last_col );
438 }
439
440 /* add this table to the list of cached tables in the database */
441 static MSITABLE *read_table_from_storage( IStorage *stg, LPCWSTR name,
442 const MSICOLUMNINFO *cols, UINT num_cols )
443 {
444 MSITABLE *t;
445 USHORT *rawdata = NULL;
446 UINT rawsize = 0, i, j, row_size = 0;
447
448 TRACE("%s\n",debugstr_w(name));
449
450 /* nonexistent tables should be interpreted as empty tables */
451 t = msi_alloc( sizeof (MSITABLE) + lstrlenW(name)*sizeof (WCHAR) );
452 if( !t )
453 return t;
454
455 row_size = msi_table_get_row_size( cols, num_cols );
456
457 t->row_count = 0;
458 t->data = NULL;
459 lstrcpyW( t->name, name );
460
461 /* if we can't read the table, just assume that it's empty */
462 read_stream_data( stg, name, &rawdata, &rawsize );
463 if( !rawdata )
464 return t;
465
466 TRACE("Read %d bytes\n", rawsize );
467
468 if( rawsize % row_size )
469 {
470 WARN("Table size is invalid %d/%d\n", rawsize, row_size );
471 goto err;
472 }
473
474 t->row_count = rawsize / row_size;
475 t->data = msi_alloc_zero( t->row_count * sizeof (USHORT*) );
476 if( !t->data )
477 goto err;
478
479 /* transpose all the data */
480 TRACE("Transposing data from %d rows\n", t->row_count );
481 for( i=0; i<t->row_count; i++ )
482 {
483 t->data[i] = msi_alloc( row_size );
484 if( !t->data[i] )
485 goto err;
486
487 for( j=0; j<num_cols; j++ )
488 {
489 UINT ofs = cols[j].offset/2;
490 UINT n = bytes_per_column( &cols[j] );
491
492 switch( n )
493 {
494 case 2:
495 t->data[i][ofs] = rawdata[ofs*t->row_count + i ];
496 break;
497 case 4:
498 t->data[i][ofs] = rawdata[ofs*t->row_count + i*2 ];
499 t->data[i][ofs+1] = rawdata[ofs*t->row_count + i*2 + 1];
500 break;
501 default:
502 ERR("oops - unknown column width %d\n", n);
503 goto err;
504 }
505 }
506 }
507
508 msi_free( rawdata );
509 return t;
510 err:
511 msi_free( rawdata );
512 free_table( t );
513 return NULL;
514 }
515
516 void free_cached_tables( MSIDATABASE *db )
517 {
518 while( !list_empty( &db->tables ) )
519 {
520 MSITABLE *t = LIST_ENTRY( list_head( &db->tables ), MSITABLE, entry );
521
522 list_remove( &t->entry );
523 free_table( t );
524 }
525 }
526
527 static MSITABLE *find_cached_table( MSIDATABASE *db, LPCWSTR name )
528 {
529 MSITABLE *t;
530
531 LIST_FOR_EACH_ENTRY( t, &db->tables, MSITABLE, entry )
532 if( !lstrcmpW( name, t->name ) )
533 return t;
534
535 return NULL;
536 }
537
538 static UINT table_get_column_info( MSIDATABASE *db, LPCWSTR name, MSICOLUMNINFO **pcols, UINT *pcount )
539 {
540 UINT r, column_count = 0;
541 MSICOLUMNINFO *columns;
542
543 /* get the number of columns in this table */
544 column_count = 0;
545 r = get_tablecolumns( db, name, NULL, &column_count );
546 if( r != ERROR_SUCCESS )
547 return r;
548
549 /* if there's no columns, there's no table */
550 if( column_count == 0 )
551 return ERROR_INVALID_PARAMETER;
552
553 TRACE("Table %s found\n", debugstr_w(name) );
554
555 columns = msi_alloc( column_count*sizeof (MSICOLUMNINFO) );
556 if( !columns )
557 return ERROR_FUNCTION_FAILED;
558
559 r = get_tablecolumns( db, name, columns, &column_count );
560 if( r != ERROR_SUCCESS )
561 {
562 msi_free( columns );
563 return ERROR_FUNCTION_FAILED;
564 }
565
566 *pcols = columns;
567 *pcount = column_count;
568
569 return r;
570 }
571
572 static MSITABLE *get_table( MSIDATABASE *db, LPCWSTR name,
573 const MSICOLUMNINFO *cols, UINT num_cols )
574 {
575 MSITABLE *table;
576
577 /* first, see if the table is cached */
578 table = find_cached_table( db, name );
579 if( table )
580 return table;
581
582 table = read_table_from_storage( db->storage, name, cols, num_cols );
583 if( table )
584 list_add_head( &db->tables, &table->entry );
585
586 return table;
587 }
588
589 static UINT save_table( MSIDATABASE *db, MSITABLE *t )
590 {
591 USHORT *rawdata = NULL, *p;
592 UINT rawsize, r, i, j, row_size, num_cols = 0;
593 MSICOLUMNINFO *cols = NULL;
594
595 TRACE("Saving %s\n", debugstr_w( t->name ) );
596
597 r = table_get_column_info( db, t->name, &cols, &num_cols );
598 if( r != ERROR_SUCCESS )
599 return r;
600
601 row_size = msi_table_get_row_size( cols, num_cols );
602
603 rawsize = t->row_count * row_size;
604 rawdata = msi_alloc_zero( rawsize );
605 if( !rawdata )
606 {
607 r = ERROR_NOT_ENOUGH_MEMORY;
608 goto err;
609 }
610
611 p = rawdata;
612 for( i=0; i<num_cols; i++ )
613 {
614 for( j=0; j<t->row_count; j++ )
615 {
616 UINT offset = cols[i].offset;
617
618 *p++ = t->data[j][offset/2];
619 if( 4 == bytes_per_column( &cols[i] ) )
620 *p++ = t->data[j][offset/2+1];
621 }
622 }
623
624 TRACE("writing %d bytes\n", rawsize);
625 r = write_stream_data( db->storage, t->name, rawdata, rawsize );
626
627 err:
628 msi_free_colinfo( cols, num_cols );
629 msi_free( cols );
630 msi_free( rawdata );
631
632 return r;
633 }
634
635 HRESULT init_string_table( IStorage *stg )
636 {
637 HRESULT r;
638 static const WCHAR szStringData[] = {
639 '_','S','t','r','i','n','g','D','a','t','a',0 };
640 static const WCHAR szStringPool[] = {
641 '_','S','t','r','i','n','g','P','o','o','l',0 };
642 USHORT zero[2] = { 0, 0 };
643 ULONG count = 0;
644 IStream *stm = NULL;
645 LPWSTR encname;
646
647 encname = encode_streamname(TRUE, szStringPool );
648
649 /* create the StringPool stream... add the zero string to it*/
650 r = IStorage_CreateStream( stg, encname,
651 STGM_WRITE | STGM_SHARE_EXCLUSIVE, 0, 0, &stm);
652 msi_free( encname );
653 if( r )
654 {
655 TRACE("Failed\n");
656 return r;
657 }
658
659 r = IStream_Write(stm, zero, sizeof zero, &count );
660 IStream_Release( stm );
661
662 if( FAILED( r ) || ( count != sizeof zero ) )
663 {
664 TRACE("Failed\n");
665 return E_FAIL;
666 }
667
668 /* create the StringData stream... make it zero length */
669 encname = encode_streamname(TRUE, szStringData );
670 r = IStorage_CreateStream( stg, encname,
671 STGM_WRITE | STGM_SHARE_EXCLUSIVE, 0, 0, &stm);
672 msi_free( encname );
673 if( r )
674 {
675 TRACE("Failed\n");
676 return E_FAIL;
677 }
678 IStream_Release( stm );
679
680 return r;
681 }
682
683 string_table *load_string_table( IStorage *stg )
684 {
685 string_table *st = NULL;
686 CHAR *data = NULL;
687 USHORT *pool = NULL;
688 UINT r, datasize = 0, poolsize = 0, codepage;
689 DWORD i, count, offset, len, n;
690 static const WCHAR szStringData[] = {
691 '_','S','t','r','i','n','g','D','a','t','a',0 };
692 static const WCHAR szStringPool[] = {
693 '_','S','t','r','i','n','g','P','o','o','l',0 };
694
695 r = read_stream_data( stg, szStringPool, &pool, &poolsize );
696 if( r != ERROR_SUCCESS)
697 goto end;
698 r = read_stream_data( stg, szStringData, (USHORT**)&data, &datasize );
699 if( r != ERROR_SUCCESS)
700 goto end;
701
702 count = poolsize/4;
703 if( poolsize > 4 )
704 codepage = pool[0] | ( pool[1] << 16 );
705 else
706 codepage = CP_ACP;
707 st = msi_init_stringtable( count, codepage );
708
709 offset = 0;
710 n = 1;
711 for( i=1; i<count; i++ )
712 {
713 len = pool[i*2];
714
715 /*
716 * If a string is over 64k, the previous string entry is made null
717 * and its the high word of the length is inserted in the null string's
718 * reference count field.
719 */
720 if( pool[i*2-2] == 0 && pool[i*2-1] )
721 len += pool[i*2+1] * 0x10000;
722
723 if( (offset + len) > datasize )
724 {
725 ERR("string table corrupt?\n");
726 break;
727 }
728
729 /* don't add the high word of a string's length as a string */
730 if ( len || !pool[i*2+1] )
731 {
732 r = msi_addstring( st, n, data+offset, len, pool[i*2+1] );
733 if( r != n )
734 ERR("Failed to add string %ld\n", n );
735 n++;
736 }
737
738 offset += len;
739 }
740
741 if ( datasize != offset )
742 ERR("string table load failed! (%08x != %08lx)\n", datasize, offset );
743
744 TRACE("Loaded %ld strings\n", count);
745
746 end:
747 msi_free( pool );
748 msi_free( data );
749
750 return st;
751 }
752
753 static UINT save_string_table( MSIDATABASE *db )
754 {
755 UINT i, count, datasize, poolsize, sz, used, r, codepage;
756 UINT ret = ERROR_FUNCTION_FAILED;
757 static const WCHAR szStringData[] = {
758 '_','S','t','r','i','n','g','D','a','t','a',0 };
759 static const WCHAR szStringPool[] = {
760 '_','S','t','r','i','n','g','P','o','o','l',0 };
761 CHAR *data = NULL;
762 USHORT *pool = NULL;
763
764 TRACE("\n");
765
766 /* construct the new table in memory first */
767 datasize = msi_string_totalsize( db->strings, &count );
768 poolsize = (count + 1)*2*sizeof(USHORT);
769
770 pool = msi_alloc( poolsize );
771 if( ! pool )
772 {
773 WARN("Failed to alloc pool %d bytes\n", poolsize );
774 goto err;
775 }
776 data = msi_alloc( datasize );
777 if( ! data )
778 {
779 WARN("Failed to alloc data %d bytes\n", poolsize );
780 goto err;
781 }
782
783 used = 0;
784 codepage = msi_string_get_codepage( db->strings );
785 pool[0]=codepage&0xffff;
786 pool[1]=(codepage>>16);
787 for( i=1; i<count; i++ )
788 {
789 sz = datasize - used;
790 r = msi_id2stringA( db->strings, i, data+used, &sz );
791 if( r != ERROR_SUCCESS )
792 {
793 ERR("failed to fetch string\n");
794 sz = 0;
795 }
796 if( sz && (sz < (datasize - used ) ) )
797 sz--;
798 TRACE("adding %u bytes %s\n", sz, debugstr_a(data+used) );
799 pool[ i*2 ] = sz;
800 pool[ i*2 + 1 ] = msi_id_refcount( db->strings, i );
801 used += sz;
802 if( used > datasize )
803 {
804 ERR("oops overran %d >= %d\n", used, datasize);
805 goto err;
806 }
807 }
808
809 if( used != datasize )
810 {
811 ERR("oops used %d != datasize %d\n", used, datasize);
812 goto err;
813 }
814
815 /* write the streams */
816 r = write_stream_data( db->storage, szStringData, data, datasize );
817 TRACE("Wrote StringData r=%08x\n", r);
818 if( r )
819 goto err;
820 r = write_stream_data( db->storage, szStringPool, pool, poolsize );
821 TRACE("Wrote StringPool r=%08x\n", r);
822 if( r )
823 goto err;
824
825 ret = ERROR_SUCCESS;
826
827 err:
828 msi_free( data );
829 msi_free( pool );
830
831 return ret;
832 }
833
834 /* information for default tables */
835 static const WCHAR szTables[] = { '_','T','a','b','l','e','s',0 };
836 static const WCHAR szTable[] = { 'T','a','b','l','e',0 };
837 static const WCHAR szName[] = { 'N','a','m','e',0 };
838 static const WCHAR szColumns[] = { '_','C','o','l','u','m','n','s',0 };
839 static const WCHAR szColumn[] = { 'C','o','l','u','m','n',0 };
840 static const WCHAR szNumber[] = { 'N','u','m','b','e','r',0 };
841 static const WCHAR szType[] = { 'T','y','p','e',0 };
842
843 static const MSICOLUMNINFO _Columns_cols[4] = {
844 { szColumns, 1, szTable, MSITYPE_VALID | MSITYPE_STRING | 64, 0 },
845 { szColumns, 2, szNumber, MSITYPE_VALID | 2, 2 },
846 { szColumns, 3, szName, MSITYPE_VALID | MSITYPE_STRING | 64, 4 },
847 { szColumns, 4, szType, MSITYPE_VALID | 2, 6 },
848 };
849 static const MSICOLUMNINFO _Tables_cols[1] = {
850 { szTables, 1, szName, MSITYPE_VALID | MSITYPE_STRING | 64, 0 },
851 };
852
853 static UINT get_defaulttablecolumns( LPCWSTR name, MSICOLUMNINFO *colinfo, UINT *sz)
854 {
855 const MSICOLUMNINFO *p;
856 DWORD i, n;
857
858 TRACE("%s\n", debugstr_w(name));
859
860 if (!lstrcmpW( name, szTables ))
861 {
862 p = _Tables_cols;
863 n = 1;
864 }
865 else if (!lstrcmpW( name, szColumns ))
866 {
867 p = _Columns_cols;
868 n = 4;
869 }
870 else
871 return ERROR_FUNCTION_FAILED;
872
873 /* duplicate the string data so we can free it in msi_free_colinfo */
874 for (i=0; i<n; i++)
875 {
876 if (colinfo && (i < *sz) )
877 {
878 memcpy( &colinfo[i], &p[i], sizeof(MSICOLUMNINFO) );
879 colinfo[i].tablename = strdupW( p[i].tablename );
880 colinfo[i].colname = strdupW( p[i].colname );
881 }
882 if( colinfo && (i >= *sz) )
883 break;
884 }
885 *sz = n;
886 return ERROR_SUCCESS;
887 }
888
889 static void msi_free_colinfo( MSICOLUMNINFO *colinfo, UINT count )
890 {
891 UINT i;
892
893 for( i=0; i<count; i++ )
894 {
895 msi_free( (LPWSTR) colinfo[i].tablename );
896 msi_free( (LPWSTR) colinfo[i].colname );
897 msi_free( colinfo[i].hash_table );
898 }
899 }
900
901 LPWSTR MSI_makestring( MSIDATABASE *db, UINT stringid)
902 {
903 UINT sz=0, r;
904 LPWSTR str;
905
906 r = msi_id2stringW( db->strings, stringid, NULL, &sz );
907 if( r != ERROR_SUCCESS )
908 return NULL;
909 str = msi_alloc( sz*sizeof (WCHAR) );
910 if( !str )
911 return str;
912 r = msi_id2stringW( db->strings, stringid, str, &sz );
913 if( r == ERROR_SUCCESS )
914 return str;
915 msi_free( str );
916 return NULL;
917 }
918
919 static UINT get_tablecolumns( MSIDATABASE *db,
920 LPCWSTR szTableName, MSICOLUMNINFO *colinfo, UINT *sz)
921 {
922 UINT r, i, n=0, table_id, count, maxcount = *sz;
923 MSITABLE *table = NULL;
924
925 /* first check if there is a default table with that name */
926 r = get_defaulttablecolumns( szTableName, colinfo, sz );
927 if( ( r == ERROR_SUCCESS ) && *sz )
928 return r;
929
930 table = get_table( db, szColumns, _Columns_cols, 4 );
931 if( !table )
932 {
933 ERR("couldn't load _Columns table\n");
934 return ERROR_FUNCTION_FAILED;
935 }
936
937 /* convert table and column names to IDs from the string table */
938 r = msi_string2idW( db->strings, szTableName, &table_id );
939 if( r != ERROR_SUCCESS )
940 {
941 WARN("Couldn't find id for %s\n", debugstr_w(szTableName));
942 return r;
943 }
944
945 TRACE("Table id is %d, row count is %d\n", table_id, table->row_count);
946
947 count = table->row_count;
948 for( i=0; i<count; i++ )
949 {
950 if( table->data[ i ][ 0 ] != table_id )
951 continue;
952 if( colinfo )
953 {
954 UINT id = table->data[ i ] [ 2 ];
955 colinfo[n].tablename = MSI_makestring( db, table_id );
956 colinfo[n].number = table->data[ i ][ 1 ] - (1<<15);
957 colinfo[n].colname = MSI_makestring( db, id );
958 colinfo[n].type = table->data[ i ] [ 3 ] ^ 0x8000;
959 colinfo[n].hash_table = NULL;
960 /* this assumes that columns are in order in the table */
961 if( n )
962 colinfo[n].offset = colinfo[n-1].offset
963 + bytes_per_column( &colinfo[n-1] );
964 else
965 colinfo[n].offset = 0;
966 TRACE("table %s column %d is [%s] (%d) with type %08x "
967 "offset %d at row %d\n", debugstr_w(szTableName),
968 colinfo[n].number, debugstr_w(colinfo[n].colname),
969 id, colinfo[n].type, colinfo[n].offset, i);
970 if( n != (colinfo[n].number-1) )
971 {
972 ERR("oops. data in the _Columns table isn't in the right "
973 "order for table %s\n", debugstr_w(szTableName));
974 return ERROR_FUNCTION_FAILED;
975 }
976 }
977 n++;
978 if( colinfo && ( n >= maxcount ) )
979 break;
980 }
981 *sz = n;
982
983 return ERROR_SUCCESS;
984 }
985
986 /* try to find the table name in the _Tables table */
987 BOOL TABLE_Exists( MSIDATABASE *db, LPWSTR name )
988 {
989 UINT r, table_id = 0, i, count;
990 MSITABLE *table = NULL;
991
992 if( !lstrcmpW( name, szTables ) )
993 return TRUE;
994 if( !lstrcmpW( name, szColumns ) )
995 return TRUE;
996
997 r = msi_string2idW( db->strings, name, &table_id );
998 if( r != ERROR_SUCCESS )
999 {
1000 TRACE("Couldn't find id for %s\n", debugstr_w(name));
1001 return FALSE;
1002 }
1003
1004 table = get_table( db, szTables, _Tables_cols, 1 );
1005 if( !table )
1006 {
1007 TRACE("table %s not available\n", debugstr_w(szTables));
1008 return FALSE;
1009 }
1010
1011 /* count = table->size/2; */
1012 count = table->row_count;
1013 for( i=0; i<count; i++ )
1014 if( table->data[ i ][ 0 ] == table_id )
1015 break;
1016
1017 if (i!=count)
1018 return TRUE;
1019
1020 TRACE("Searched %d tables, but %d was not found\n", count, table_id );
1021
1022 return FALSE;
1023 }
1024
1025 /* below is the query interface to a table */
1026
1027 typedef struct tagMSITABLEVIEW
1028 {
1029 MSIVIEW view;
1030 MSIDATABASE *db;
1031 MSITABLE *table;
1032 MSICOLUMNINFO *columns;
1033 UINT num_cols;
1034 UINT row_size;
1035 WCHAR name[1];
1036 } MSITABLEVIEW;
1037
1038 static UINT TABLE_fetch_int( struct tagMSIVIEW *view, UINT row, UINT col, UINT *val )
1039 {
1040 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1041 UINT offset, num_rows, n;
1042
1043 if( !tv->table )
1044 return ERROR_INVALID_PARAMETER;
1045
1046 if( (col==0) || (col>tv->num_cols) )
1047 return ERROR_INVALID_PARAMETER;
1048
1049 /* how many rows are there ? */
1050 num_rows = tv->table->row_count;
1051 if( row >= num_rows )
1052 return ERROR_NO_MORE_ITEMS;
1053
1054 if( tv->columns[col-1].offset >= tv->row_size )
1055 {
1056 ERR("Stuffed up %d >= %d\n", tv->columns[col-1].offset, tv->row_size );
1057 ERR("%p %p\n", tv, tv->columns );
1058 return ERROR_FUNCTION_FAILED;
1059 }
1060
1061 offset = row + (tv->columns[col-1].offset/2) * num_rows;
1062 n = bytes_per_column( &tv->columns[col-1] );
1063 switch( n )
1064 {
1065 case 4:
1066 offset = tv->columns[col-1].offset/2;
1067 *val = tv->table->data[row][offset] +
1068 (tv->table->data[row][offset + 1] << 16);
1069 break;
1070 case 2:
1071 offset = tv->columns[col-1].offset/2;
1072 *val = tv->table->data[row][offset];
1073 break;
1074 default:
1075 ERR("oops! what is %d bytes per column?\n", n );
1076 return ERROR_FUNCTION_FAILED;
1077 }
1078
1079 /* TRACE("Data [%d][%d] = %d\n", row, col, *val ); */
1080
1081 return ERROR_SUCCESS;
1082 }
1083
1084 /*
1085 * We need a special case for streams, as we need to reference column with
1086 * the name of the stream in the same table, and the table name
1087 * which may not be available at higher levels of the query
1088 */
1089 static UINT TABLE_fetch_stream( struct tagMSIVIEW *view, UINT row, UINT col, IStream **stm )
1090 {
1091 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1092 UINT ival = 0, refcol = 0, r;
1093 LPWSTR sval;
1094 LPWSTR full_name;
1095 DWORD len;
1096 static const WCHAR szDot[] = { '.', 0 };
1097
1098 if( !view->ops->fetch_int )
1099 return ERROR_INVALID_PARAMETER;
1100
1101 /*
1102 * The column marked with the type stream data seems to have a single number
1103 * which references the column containing the name of the stream data
1104 *
1105 * Fetch the column to reference first.
1106 */
1107 r = view->ops->fetch_int( view, row, col, &ival );
1108 if( r != ERROR_SUCCESS )
1109 return r;
1110
1111 /* now get the column with the name of the stream */
1112 r = view->ops->fetch_int( view, row, ival, &refcol );
1113 if( r != ERROR_SUCCESS )
1114 return r;
1115
1116 /* lookup the string value from the string table */
1117 sval = MSI_makestring( tv->db, refcol );
1118 if( !sval )
1119 return ERROR_INVALID_PARAMETER;
1120
1121 len = lstrlenW( tv->name ) + 2 + lstrlenW( sval );
1122 full_name = msi_alloc( len*sizeof(WCHAR) );
1123 lstrcpyW( full_name, tv->name );
1124 lstrcatW( full_name, szDot );
1125 lstrcatW( full_name, sval );
1126
1127 r = db_get_raw_stream( tv->db, full_name, stm );
1128 if( r )
1129 ERR("fetching stream %s, error = %d\n",debugstr_w(full_name), r);
1130 msi_free( full_name );
1131 msi_free( sval );
1132
1133 return r;
1134 }
1135
1136 static UINT TABLE_set_int( struct tagMSIVIEW *view, UINT row, UINT col, UINT val )
1137 {
1138 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1139 UINT offset, n;
1140
1141 if( !tv->table )
1142 return ERROR_INVALID_PARAMETER;
1143
1144 if( (col==0) || (col>tv->num_cols) )
1145 return ERROR_INVALID_PARAMETER;
1146
1147 if( tv->columns[col-1].offset >= tv->row_size )
1148 {
1149 ERR("Stuffed up %d >= %d\n", tv->columns[col-1].offset, tv->row_size );
1150 ERR("%p %p\n", tv, tv->columns );
1151 return ERROR_FUNCTION_FAILED;
1152 }
1153
1154 n = bytes_per_column( &tv->columns[col-1] );
1155 switch( n )
1156 {
1157 case 4:
1158 offset = tv->columns[col-1].offset/2;
1159 tv->table->data[row][offset] = val & 0xffff;
1160 tv->table->data[row][offset + 1] = (val>>16)&0xffff;
1161 break;
1162 case 2:
1163 offset = tv->columns[col-1].offset/2;
1164 tv->table->data[row][offset] = val;
1165 break;
1166 default:
1167 ERR("oops! what is %d bytes per column?\n", n );
1168 return ERROR_FUNCTION_FAILED;
1169 }
1170 return ERROR_SUCCESS;
1171 }
1172
1173 static UINT table_create_new_row( struct tagMSIVIEW *view, UINT *num )
1174 {
1175 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1176 USHORT **p, *row;
1177 UINT sz;
1178
1179 TRACE("%p\n", view);
1180
1181 if( !tv->table )
1182 return ERROR_INVALID_PARAMETER;
1183
1184 row = msi_alloc_zero( tv->row_size );
1185 if( !row )
1186 return ERROR_NOT_ENOUGH_MEMORY;
1187
1188 sz = (tv->table->row_count + 1) * sizeof (UINT*);
1189 if( tv->table->data )
1190 p = msi_realloc( tv->table->data, sz );
1191 else
1192 p = msi_alloc( sz );
1193 if( !p )
1194 {
1195 msi_free( row );
1196 return ERROR_NOT_ENOUGH_MEMORY;
1197 }
1198
1199 tv->table->data = p;
1200 tv->table->data[tv->table->row_count] = row;
1201 *num = tv->table->row_count;
1202 tv->table->row_count++;
1203
1204 return ERROR_SUCCESS;
1205 }
1206
1207 static UINT TABLE_execute( struct tagMSIVIEW *view, MSIRECORD *record )
1208 {
1209 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1210
1211 TRACE("%p %p\n", tv, record);
1212
1213 TRACE("There are %d columns\n", tv->num_cols );
1214 tv->table = get_table( tv->db, tv->name, tv->columns, tv->num_cols );
1215 if( !tv->table )
1216 return ERROR_FUNCTION_FAILED;
1217
1218 return ERROR_SUCCESS;
1219 }
1220
1221 static UINT TABLE_close( struct tagMSIVIEW *view )
1222 {
1223 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1224
1225 TRACE("%p\n", view );
1226
1227 if( !tv->table )
1228 return ERROR_FUNCTION_FAILED;
1229
1230 tv->table = NULL;
1231
1232 return ERROR_SUCCESS;
1233 }
1234
1235 static UINT TABLE_get_dimensions( struct tagMSIVIEW *view, UINT *rows, UINT *cols)
1236 {
1237 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1238
1239 TRACE("%p %p %p\n", view, rows, cols );
1240
1241 if( cols )
1242 *cols = tv->num_cols;
1243 if( rows )
1244 {
1245 if( !tv->table )
1246 return ERROR_INVALID_PARAMETER;
1247 *rows = tv->table->row_count;
1248 }
1249
1250 return ERROR_SUCCESS;
1251 }
1252
1253 static UINT TABLE_get_column_info( struct tagMSIVIEW *view,
1254 UINT n, LPWSTR *name, UINT *type )
1255 {
1256 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1257
1258 TRACE("%p %d %p %p\n", tv, n, name, type );
1259
1260 if( ( n == 0 ) || ( n > tv->num_cols ) )
1261 return ERROR_INVALID_PARAMETER;
1262
1263 if( name )
1264 {
1265 *name = strdupW( tv->columns[n-1].colname );
1266 if( !*name )
1267 return ERROR_FUNCTION_FAILED;
1268 }
1269 if( type )
1270 *type = tv->columns[n-1].type;
1271
1272 return ERROR_SUCCESS;
1273 }
1274
1275 static UINT msi_table_find_row( MSITABLEVIEW *tv, MSIRECORD *rec, UINT *row );
1276
1277 static UINT table_validate_new( MSITABLEVIEW *tv, MSIRECORD *rec )
1278 {
1279 UINT r, row;
1280
1281 r = msi_table_find_row( tv, rec, &row );
1282 if (r != ERROR_SUCCESS)
1283 return ERROR_SUCCESS;
1284 return ERROR_INVALID_DATA;
1285 }
1286
1287 static UINT msi_table_modify_row( MSITABLEVIEW *tv, MSIRECORD *rec,
1288 UINT row, UINT mask )
1289 {
1290 UINT i, val, r = ERROR_SUCCESS;
1291
1292 TRACE("%p %p %u %08x\n", tv, rec, row, mask );
1293
1294 for( i = 0; i < tv->num_cols; i++ )
1295 {
1296 /* set keys or values specified in the mask */
1297 if( (~tv->columns[i].type & MSITYPE_KEY) && (~mask & (1<<i)) )
1298 continue;
1299
1300 if( (tv->columns[i].type & MSITYPE_STRING) &&
1301 ! MSITYPE_IS_BINARY(tv->columns[i].type) )
1302 {
1303 const WCHAR *str = MSI_RecordGetString( rec, i+1 );
1304 val = msi_addstringW( tv->db->strings, 0, str, -1, 1 );
1305 }
1306 else
1307 {
1308 val = MSI_RecordGetInteger( rec, i+1 );
1309 if ( 2 == bytes_per_column( &tv->columns[i] ) )
1310 val ^= 0x8000;
1311 else
1312 val ^= 0x80000000;
1313 }
1314 r = TABLE_set_int( &tv->view, row, i+1, val );
1315 if( r )
1316 break;
1317 }
1318
1319 return r;
1320 }
1321
1322 static UINT TABLE_insert_row( struct tagMSIVIEW *view, MSIRECORD *rec )
1323 {
1324 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1325 UINT r, row = -1;
1326
1327 TRACE("%p %p\n", tv, rec );
1328
1329 r = table_create_new_row( view, &row );
1330 TRACE("insert_row returned %08x\n", r);
1331 if( r != ERROR_SUCCESS )
1332 return r;
1333
1334 return msi_table_modify_row( tv, rec, row, ~0 );
1335 }
1336
1337 static UINT TABLE_modify( struct tagMSIVIEW *view, MSIMODIFY eModifyMode,
1338 MSIRECORD *rec)
1339 {
1340 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1341 UINT r;
1342
1343 TRACE("%p %d %p\n", view, eModifyMode, rec );
1344
1345 if (!tv->table)
1346 {
1347 r = TABLE_execute( view, NULL );
1348 if( r )
1349 return r;
1350 }
1351
1352 switch (eModifyMode)
1353 {
1354 case MSIMODIFY_VALIDATE_NEW:
1355 r = table_validate_new( tv, rec );
1356 break;
1357
1358 case MSIMODIFY_INSERT_TEMPORARY:
1359 r = table_validate_new( tv, rec );
1360 if (r != ERROR_SUCCESS)
1361 break;
1362 r = TABLE_insert_row( view, rec );
1363 break;
1364
1365 case MSIMODIFY_REFRESH:
1366 case MSIMODIFY_INSERT:
1367 case MSIMODIFY_UPDATE:
1368 case MSIMODIFY_ASSIGN:
1369 case MSIMODIFY_REPLACE:
1370 case MSIMODIFY_MERGE:
1371 case MSIMODIFY_DELETE:
1372 case MSIMODIFY_VALIDATE:
1373 case MSIMODIFY_VALIDATE_FIELD:
1374 case MSIMODIFY_VALIDATE_DELETE:
1375 FIXME("%p %d %p - mode not implemented\n", view, eModifyMode, rec );
1376 r = ERROR_CALL_NOT_IMPLEMENTED;
1377 break;
1378
1379 default:
1380 r = ERROR_INVALID_DATA;
1381 }
1382
1383 return r;
1384 }
1385
1386 static UINT TABLE_delete( struct tagMSIVIEW *view )
1387 {
1388 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1389
1390 TRACE("%p\n", view );
1391
1392 tv->table = NULL;
1393
1394 if( tv->columns )
1395 {
1396 msi_free_colinfo( tv->columns, tv->num_cols );
1397 msi_free( tv->columns );
1398 }
1399 tv->columns = NULL;
1400
1401 msi_free( tv );
1402
1403 return ERROR_SUCCESS;
1404 }
1405
1406 static UINT TABLE_find_matching_rows( struct tagMSIVIEW *view, UINT col,
1407 UINT val, UINT *row, MSIITERHANDLE *handle )
1408 {
1409 MSITABLEVIEW *tv = (MSITABLEVIEW*)view;
1410 const MSICOLUMNHASHENTRY *entry;
1411
1412 TRACE("%p, %d, %u, %p\n", view, col, val, *handle);
1413
1414 if( !tv->table )
1415 return ERROR_INVALID_PARAMETER;
1416
1417 if( (col==0) || (col > tv->num_cols) )
1418 return ERROR_INVALID_PARAMETER;
1419
1420 if( !tv->columns[col-1].hash_table )
1421 {
1422 UINT i;
1423 UINT num_rows = tv->table->row_count;
1424 MSICOLUMNHASHENTRY **hash_table;
1425 MSICOLUMNHASHENTRY *new_entry;
1426
1427 if( tv->columns[col-1].offset >= tv->row_size )
1428 {
1429 ERR("Stuffed up %d >= %d\n", tv->columns[col-1].offset, tv->row_size );
1430 ERR("%p %p\n", tv, tv->columns );
1431 return ERROR_FUNCTION_FAILED;
1432 }
1433
1434 /* allocate contiguous memory for the table and its entries so we
1435 * don't have to do an expensive cleanup */
1436 hash_table = msi_alloc(MSITABLE_HASH_TABLE_SIZE * sizeof(MSICOLUMNHASHENTRY*) +
1437 num_rows * sizeof(MSICOLUMNHASHENTRY));
1438 if (!hash_table)
1439 return ERROR_OUTOFMEMORY;
1440
1441 memset(hash_table, 0, MSITABLE_HASH_TABLE_SIZE * sizeof(MSICOLUMNHASHENTRY*));
1442 tv->columns[col-1].hash_table = hash_table;
1443
1444 new_entry = (MSICOLUMNHASHENTRY *)(hash_table + MSITABLE_HASH_TABLE_SIZE);
1445
1446 for (i = 0; i < num_rows; i++, new_entry++)
1447 {
1448 UINT row_value, n;
1449 UINT offset = i + (tv->columns[col-1].offset/2) * num_rows;
1450 n = bytes_per_column( &tv->columns[col-1] );
1451 switch( n )
1452 {
1453 case 4:
1454 offset = tv->columns[col-1].offset/2;
1455 row_value = tv->table->data[i][offset] +
1456 (tv->table->data[i][offset + 1] << 16);
1457 break;
1458 case 2:
1459 offset = tv->columns[col-1].offset/2;
1460 row_value = tv->table->data[i][offset];
1461 break;
1462 default:
1463 ERR("oops! what is %d bytes per column?\n", n );
1464 continue;
1465 }
1466
1467 new_entry->next = NULL;
1468 new_entry->value = row_value;
1469 new_entry->row = i;
1470 if (hash_table[row_value % MSITABLE_HASH_TABLE_SIZE])
1471 {
1472 MSICOLUMNHASHENTRY *prev_entry = hash_table[row_value % MSITABLE_HASH_TABLE_SIZE];
1473 while (prev_entry->next)
1474 prev_entry = prev_entry->next;
1475 prev_entry->next = new_entry;
1476 }
1477 else
1478 hash_table[row_value % MSITABLE_HASH_TABLE_SIZE] = new_entry;
1479 }
1480 }
1481
1482 if( !*handle )
1483 entry = tv->columns[col-1].hash_table[val % MSITABLE_HASH_TABLE_SIZE];
1484 else
1485 entry = ((const MSICOLUMNHASHENTRY *)*handle)->next;
1486
1487 while (entry && entry->value != val)
1488 entry = entry->next;
1489
1490 *handle = (MSIITERHANDLE)entry;
1491 if (!entry)
1492 return ERROR_NO_MORE_ITEMS;
1493
1494 *row = entry->row;
1495 return ERROR_SUCCESS;
1496 }
1497
1498
1499 static const MSIVIEWOPS table_ops =
1500 {
1501 TABLE_fetch_int,
1502 TABLE_fetch_stream,
1503 TABLE_set_int,
1504 TABLE_insert_row,
1505 TABLE_execute,
1506 TABLE_close,
1507 TABLE_get_dimensions,
1508 TABLE_get_column_info,
1509 TABLE_modify,
1510 TABLE_delete,
1511 TABLE_find_matching_rows
1512 };
1513
1514 UINT TABLE_CreateView( MSIDATABASE *db, LPCWSTR name, MSIVIEW **view )
1515 {
1516 MSITABLEVIEW *tv ;
1517 UINT r, sz, column_count;
1518 MSICOLUMNINFO *columns;
1519
1520 TRACE("%p %s %p\n", db, debugstr_w(name), view );
1521
1522 /* get the number of columns in this table */
1523 column_count = 0;
1524 r = get_tablecolumns( db, name, NULL, &column_count );
1525 if( r != ERROR_SUCCESS )
1526 return r;
1527
1528 /* if there's no columns, there's no table */
1529 if( column_count == 0 )
1530 return ERROR_INVALID_PARAMETER;
1531
1532 TRACE("Table found\n");
1533
1534 sz = sizeof *tv + lstrlenW(name)*sizeof name[0] ;
1535 tv = msi_alloc_zero( sz );
1536 if( !tv )
1537 return ERROR_FUNCTION_FAILED;
1538
1539 columns = msi_alloc( column_count*sizeof (MSICOLUMNINFO));
1540 if( !columns )
1541 {
1542 msi_free( tv );
1543 return ERROR_FUNCTION_FAILED;
1544 }
1545
1546 r = get_tablecolumns( db, name, columns, &column_count );
1547 if( r != ERROR_SUCCESS )
1548 {
1549 msi_free( columns );
1550 msi_free( tv );
1551 return ERROR_FUNCTION_FAILED;
1552 }
1553
1554 TRACE("Table has %d columns\n", column_count);
1555
1556 /* fill the structure */
1557 tv->view.ops = &table_ops;
1558 tv->db = db;
1559 tv->columns = columns;
1560 tv->num_cols = column_count;
1561 tv->table = NULL;
1562 tv->row_size = msi_table_get_row_size( columns, column_count );
1563
1564 TRACE("%s one row is %d bytes\n", debugstr_w(name), tv->row_size );
1565
1566 *view = (MSIVIEW*) tv;
1567 lstrcpyW( tv->name, name );
1568
1569 return ERROR_SUCCESS;
1570 }
1571
1572 UINT MSI_CommitTables( MSIDATABASE *db )
1573 {
1574 UINT r;
1575 MSITABLE *table = NULL;
1576
1577 TRACE("%p\n",db);
1578
1579 r = save_string_table( db );
1580 if( r != ERROR_SUCCESS )
1581 {
1582 WARN("failed to save string table r=%08x\n",r);
1583 return r;
1584 }
1585
1586 LIST_FOR_EACH_ENTRY( table, &db->tables, MSITABLE, entry )
1587 {
1588 r = save_table( db, table );
1589 if( r != ERROR_SUCCESS )
1590 {
1591 WARN("failed to save table %s (r=%08x)\n",
1592 debugstr_w(table->name), r);
1593 return r;
1594 }
1595 }
1596
1597 /* force everything to reload next time */
1598 free_cached_tables( db );
1599
1600 return ERROR_SUCCESS;
1601 }
1602
1603 static MSIRECORD *msi_get_transform_record( MSITABLEVIEW *tv, string_table *st, USHORT *rawdata )
1604 {
1605 UINT i, val, ofs = 0;
1606 USHORT mask = *rawdata++;
1607 MSICOLUMNINFO *columns = tv->columns;
1608 MSIRECORD *rec;
1609
1610 rec = MSI_CreateRecord( tv->num_cols );
1611 if( !rec )
1612 return rec;
1613
1614 TRACE("row -> ");
1615 for( i=0; i<tv->num_cols; i++ )
1616 {
1617 UINT n = bytes_per_column( &columns[i] );
1618
1619 if ( (mask&1) && (i>=(mask>>8)) )
1620 break;
1621 /* all keys must be present */
1622 if ( (~mask&1) && (~columns[i].type & MSITYPE_KEY) && ((1<<i) & ~mask) )
1623 continue;
1624
1625 switch( n )
1626 {
1627 case 2:
1628 val = rawdata[ofs];
1629 if( (columns[i].type & MSITYPE_STRING) &&
1630 ! MSITYPE_IS_BINARY(tv->columns[i].type) )
1631 {
1632 LPCWSTR sval = msi_string_lookup_id( st, val );
1633 MSI_RecordSetStringW( rec, i+1, sval );
1634 TRACE("[%s]", debugstr_w(sval));
1635 }
1636 else
1637 {
1638 val ^= 0x8000;
1639 MSI_RecordSetInteger( rec, i+1, val );
1640 TRACE("[0x%04x]", val );
1641 }
1642 break;
1643 case 4:
1644 val = rawdata[ofs] + (rawdata[ofs + 1]<<16);
1645 /* val ^= 0x80000000; */
1646 MSI_RecordSetInteger( rec, i+1, val );
1647 TRACE("[0x%08x]", val );
1648 break;
1649 default:
1650 ERR("oops - unknown column width %d\n", n);
1651 break;
1652 }
1653 ofs += n/2;
1654 }
1655 TRACE("\n");
1656 return rec;
1657 }
1658
1659 static void dump_record( MSIRECORD *rec )
1660 {
1661 UINT i, n;
1662
1663 n = MSI_RecordGetFieldCount( rec );
1664 for( i=1; i<=n; i++ )
1665 {
1666 LPCWSTR sval = MSI_RecordGetString( rec, i );
1667
1668 if( MSI_RecordIsNull( rec, i ) )
1669 TRACE("row -> []\n");
1670 else if( (sval = MSI_RecordGetString( rec, i )) )
1671 TRACE("row -> [%s]\n", debugstr_w(sval));
1672 else
1673 TRACE("row -> [0x%08x]\n", MSI_RecordGetInteger( rec, i ) );
1674 }
1675 }
1676
1677 static void dump_table( string_table *st, USHORT *rawdata, UINT rawsize )
1678 {
1679 LPCWSTR sval;
1680 UINT i;
1681
1682 for( i=0; i<(rawsize/2); i++ )
1683 {
1684 sval = msi_string_lookup_id( st, rawdata[i] );
1685 MESSAGE(" %04x %s\n", rawdata[i], debugstr_w(sval) );
1686 }
1687 }
1688
1689 static UINT* msi_record_to_row( MSITABLEVIEW *tv, MSIRECORD *rec )
1690 {
1691 LPCWSTR str;
1692 UINT i, r, *data;
1693
1694 data = msi_alloc( tv->num_cols *sizeof (UINT) );
1695 for( i=0; i<tv->num_cols; i++ )
1696 {
1697 data[i] = 0;
1698
1699 if ( ~tv->columns[i].type & MSITYPE_KEY )
1700 continue;
1701
1702 /* turn the transform column value into a row value */
1703 if ( ( tv->columns[i].type & MSITYPE_STRING ) &&
1704 ! MSITYPE_IS_BINARY(tv->columns[i].type) )
1705 {
1706 str = MSI_RecordGetString( rec, i+1 );
1707 r = msi_string2idW( tv->db->strings, str, &data[i] );
1708
1709 /* if there's no matching string in the string table,
1710 these keys can't match any record, so fail now. */
1711 if( ERROR_SUCCESS != r )
1712 {
1713 msi_free( data );
1714 return NULL;
1715 }
1716 }
1717 else
1718 data[i] = MSI_RecordGetInteger( rec, i+1 );
1719 }
1720 return data;
1721 }
1722
1723 static UINT msi_row_matches( MSITABLEVIEW *tv, UINT row, UINT *data )
1724 {
1725 UINT i, r, x, ret = ERROR_FUNCTION_FAILED;
1726
1727 for( i=0; i<tv->num_cols; i++ )
1728 {
1729 if ( ~tv->columns[i].type & MSITYPE_KEY )
1730 continue;
1731
1732 /* turn the transform column value into a row value */
1733 r = TABLE_fetch_int( &tv->view, row, i+1, &x );
1734 if ( r != ERROR_SUCCESS )
1735 {
1736 ERR("TABLE_fetch_int shouldn't fail here\n");
1737 break;
1738 }
1739
1740 /* if this key matches, move to the next column */
1741 if ( x != data[i] )
1742 {
1743 ret = ERROR_FUNCTION_FAILED;
1744 break;
1745 }
1746
1747 ret = ERROR_SUCCESS;
1748 }
1749
1750 return ret;
1751 }
1752
1753 static UINT msi_table_find_row( MSITABLEVIEW *tv, MSIRECORD *rec, UINT *row )
1754 {
1755 UINT i, r = ERROR_FUNCTION_FAILED, *data;
1756
1757 data = msi_record_to_row( tv, rec );
1758 if( !data )
1759 return r;
1760 for( i=0; i<tv->table->row_count; i++ )
1761 {
1762 r = msi_row_matches( tv, i, data );
1763 if( r == ERROR_SUCCESS )
1764 {
1765 *row = i;
1766 break;
1767 }
1768 }
1769 msi_free( data );
1770 return r;
1771 }
1772
1773 static UINT msi_delete_row( MSITABLEVIEW *tv, UINT row )
1774 {
1775 UINT i;
1776 for( i=1; i<=tv->num_cols; i++ )
1777 tv->view.ops->set_int( &tv->view, row, i, 0 );
1778 return ERROR_SUCCESS;
1779 }
1780
1781 static UINT msi_table_load_transform( MSIDATABASE *db, IStorage *stg,
1782 string_table *st, LPCWSTR name )
1783 {
1784 UINT rawsize = 0;
1785 USHORT *rawdata = NULL;
1786 MSITABLEVIEW *tv = NULL;
1787 UINT r, n, sz, i, mask;
1788 MSIRECORD *rec = NULL;
1789
1790 TRACE("%p %p %p %s\n", db, stg, st, debugstr_w(name) );
1791
1792 /* create a table view */
1793 r = TABLE_CreateView( db, name, (MSIVIEW**) &tv );
1794 if( r != ERROR_SUCCESS )
1795 goto err;
1796
1797 r = tv->view.ops->execute( &tv->view, NULL );
1798 if( r != ERROR_SUCCESS )
1799 goto err;
1800
1801 /* read the transform data */
1802 r = ERROR_FUNCTION_FAILED;
1803 read_stream_data( stg, name, &rawdata, &rawsize );
1804 if( !rawdata || (rawsize < 2) )
1805 {
1806 ERR("odd sized transform for table %s\n", debugstr_w(name));
1807 goto err;
1808 }
1809
1810 TRACE("name = %s columns = %u row_size = %u raw size = %u\n",
1811 debugstr_w(name), tv->num_cols, tv->row_size, rawsize );
1812
1813 /* interpret the data */
1814 r = ERROR_SUCCESS;
1815 for( n=0; n < (rawsize/2); )
1816 {
1817 mask = rawdata[n];
1818
1819 if (mask&1)
1820 {
1821 /*
1822 * if the low bit is set, columns are continuous and
1823 * the number of columns is specified in the high byte
1824 */
1825 sz = 2 + tv->row_size;
1826 }
1827 else
1828 {
1829 /*
1830 * If the low bit is not set, rowdata[n] is a bitmask.
1831 * Excepting for key fields, which are always present,
1832 * each bit indicates that a field is present in the transform record.
1833 *
1834 * rawdata[n] == 0 is a special case ... only the keys will be present
1835 * and it means that this row should be deleted.
1836 */
1837 sz = 2;
1838 for( i=0; i<tv->num_cols; i++ )
1839 {
1840 if( (tv->columns[i].type & MSITYPE_KEY) || ((1<<i)&mask))
1841 sz += bytes_per_column( &tv->columns[i] );
1842 }
1843 }
1844
1845 /* check we didn't run of the end of the table */
1846 if ( (n+sz) > rawsize )
1847 {
1848 ERR("borked.\n");
1849 dump_table( st, rawdata, rawsize );
1850 break;
1851 }
1852
1853 rec = msi_get_transform_record( tv, st, &rawdata[n] );
1854 if (rec)
1855 {
1856 UINT row = 0;
1857
1858 r = msi_table_find_row( tv, rec, &row );
1859
1860 if( rawdata[n] & 1)
1861 {
1862 TRACE("insert [%d]: ", row);
1863 TABLE_insert_row( &tv->view, rec );
1864 }
1865 else if( mask & 0xff )
1866 {
1867 TRACE("modify [%d]: ", row);
1868 msi_table_modify_row( tv, rec, row, mask );
1869 }
1870 else
1871 {
1872 TRACE("delete [%d]: ", row);
1873 msi_delete_row( tv, row );
1874 }
1875 if( TRACE_ON(msidb) ) dump_record( rec );
1876 msiobj_release( &rec->hdr );
1877 }
1878
1879 n += sz/2;
1880
1881 }
1882
1883 err:
1884 /* no need to free the table, it's associated with the database */
1885 msi_free( rawdata );
1886 if( tv )
1887 tv->view.ops->delete( &tv->view );
1888
1889 return ERROR_SUCCESS;
1890 }
1891
1892 /*
1893 * msi_table_apply_transform
1894 *
1895 * Enumerate the table transforms in a transform storage and apply each one.
1896 */
1897 UINT msi_table_apply_transform( MSIDATABASE *db, IStorage *stg )
1898 {
1899 IEnumSTATSTG *stgenum = NULL;
1900 HRESULT r;
1901 STATSTG stat;
1902 ULONG n, count;
1903 WCHAR name[0x40];
1904 string_table *strings;
1905 UINT ret = ERROR_FUNCTION_FAILED;
1906
1907 TRACE("%p %p\n", db, stg );
1908
1909 strings = load_string_table( stg );
1910 if( !strings )
1911 goto end;
1912
1913 r = IStorage_EnumElements( stg, 0, NULL, 0, &stgenum );
1914 if( FAILED( r ) )
1915 goto end;
1916
1917 n = 0;
1918 ret = ERROR_SUCCESS;
1919
1920 while( r == ERROR_SUCCESS )
1921 {
1922 count = 0;
1923 r = IEnumSTATSTG_Next( stgenum, 1, &stat, &count );
1924 if( FAILED( r ) || !count )
1925 break;
1926 decode_streamname( stat.pwcsName, name );
1927 if( ( name[0] == 0x4840 ) && ( name[1] != '_' ) )
1928 ret = msi_table_load_transform( db, stg, strings, name+1 );
1929 else
1930 TRACE("transform contains stream %s\n", debugstr_w(name));
1931 n++;
1932 }
1933
1934 if ( ret == ERROR_SUCCESS )
1935 {
1936 MSITRANSFORM *t;
1937
1938 t = msi_alloc( sizeof *t );
1939 t->stg = stg;
1940 IStorage_AddRef( stg );
1941 list_add_tail( &db->transforms, &t->entry );
1942 }
1943
1944 end:
1945 if ( stgenum )
1946 IEnumSTATSTG_Release( stgenum );
1947 if ( strings )
1948 msi_destroy_stringtable( strings );
1949
1950 return ret;
1951 }
1952
1953 void msi_free_transforms( MSIDATABASE *db )
1954 {
1955 while( !list_empty( &db->transforms ) )
1956 {
1957 MSITRANSFORM *t = LIST_ENTRY( list_head( &db->transforms ),
1958 MSITRANSFORM, entry );
1959 list_remove( &t->entry );
1960 IStorage_Release( t->stg );
1961 msi_free( t );
1962 }
1963 }