2 * Implementation of the Microsoft Installer (msi.dll)
4 * Copyright 2002-2005 Mike McCormack for CodeWeavers
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.
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.
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
37 #include "wine/debug.h"
38 #include "wine/unicode.h"
40 WINE_DEFAULT_DEBUG_CHANNEL(msidb
);
42 #define MSITABLE_HASH_TABLE_SIZE 37
44 typedef struct tagMSICOLUMNHASHENTRY
46 struct tagMSICOLUMNHASHENTRY
*next
;
51 typedef struct tagMSICOLUMNINFO
60 MSICOLUMNHASHENTRY
**hash_table
;
66 BOOL
*data_persistent
;
69 MSICOLUMNINFO
*colinfo
;
71 MSICONDITION persistent
;
76 /* information for default tables */
77 static const WCHAR szTables
[] = {'_','T','a','b','l','e','s',0};
78 static const WCHAR szTable
[] = {'T','a','b','l','e',0};
79 static const WCHAR szColumns
[] = {'_','C','o','l','u','m','n','s',0};
80 static const WCHAR szNumber
[] = {'N','u','m','b','e','r',0};
81 static const WCHAR szType
[] = {'T','y','p','e',0};
83 static const MSICOLUMNINFO _Columns_cols
[4] = {
84 { szColumns
, 1, szTable
, MSITYPE_VALID
| MSITYPE_STRING
| MSITYPE_KEY
| 64, 0, 0, 0, NULL
},
85 { szColumns
, 2, szNumber
, MSITYPE_VALID
| MSITYPE_KEY
| 2, 2, 0, 0, NULL
},
86 { szColumns
, 3, szName
, MSITYPE_VALID
| MSITYPE_STRING
| 64, 4, 0, 0, NULL
},
87 { szColumns
, 4, szType
, MSITYPE_VALID
| 2, 6, 0, 0, NULL
},
90 static const MSICOLUMNINFO _Tables_cols
[1] = {
91 { szTables
, 1, szName
, MSITYPE_VALID
| MSITYPE_STRING
| MSITYPE_KEY
| 64, 0, 0, 0, NULL
},
94 #define MAX_STREAM_NAME 0x1f
96 static inline UINT
bytes_per_column( MSIDATABASE
*db
, const MSICOLUMNINFO
*col
, UINT bytes_per_strref
)
98 if( MSITYPE_IS_BINARY(col
->type
) )
101 if( col
->type
& MSITYPE_STRING
)
102 return bytes_per_strref
;
104 if( (col
->type
& 0xff) <= 2)
107 if( (col
->type
& 0xff) != 4 )
108 ERR("Invalid column size %u\n", col
->type
& 0xff);
113 static int utf2mime(int x
)
115 if( (x
>='0') && (x
<='9') )
117 if( (x
>='A') && (x
<='Z') )
119 if( (x
>='a') && (x
<='z') )
128 LPWSTR
encode_streamname(BOOL bTable
, LPCWSTR in
)
130 DWORD count
= MAX_STREAM_NAME
;
135 count
= lstrlenW( in
)+2;
136 if (!(out
= msi_alloc( count
*sizeof(WCHAR
) ))) return NULL
;
152 if( ( ch
< 0x80 ) && ( utf2mime(ch
) >= 0 ) )
154 ch
= utf2mime(ch
) + 0x4800;
156 if( next
&& (next
<0x80) )
158 next
= utf2mime(next
);
169 ERR("Failed to encode stream name (%s)\n",debugstr_w(in
));
174 static int mime2utf(int x
)
181 return x
- 10 - 26 + 'a';
182 if( x
== (10+26+26) )
187 BOOL
decode_streamname(LPCWSTR in
, LPWSTR out
)
192 while ( (ch
= *in
++) )
194 if( (ch
>= 0x3800 ) && (ch
< 0x4840 ) )
197 ch
= mime2utf(ch
-0x4800);
201 *out
++ = mime2utf(ch
&0x3f);
203 ch
= mime2utf((ch
>>6)&0x3f);
213 void enum_stream_names( IStorage
*stg
)
215 IEnumSTATSTG
*stgenum
= NULL
;
221 r
= IStorage_EnumElements( stg
, 0, NULL
, 0, &stgenum
);
229 r
= IEnumSTATSTG_Next( stgenum
, 1, &stat
, &count
);
230 if( FAILED( r
) || !count
)
232 decode_streamname( stat
.pwcsName
, name
);
233 TRACE("stream %2d -> %s %s\n", n
,
234 debugstr_w(stat
.pwcsName
), debugstr_w(name
) );
235 CoTaskMemFree( stat
.pwcsName
);
239 IEnumSTATSTG_Release( stgenum
);
242 UINT
read_stream_data( IStorage
*stg
, LPCWSTR stname
, BOOL table
,
243 BYTE
**pdata
, UINT
*psz
)
246 UINT ret
= ERROR_FUNCTION_FAILED
;
253 encname
= encode_streamname(table
, stname
);
255 TRACE("%s -> %s\n",debugstr_w(stname
),debugstr_w(encname
));
257 r
= IStorage_OpenStream(stg
, encname
, NULL
,
258 STGM_READ
| STGM_SHARE_EXCLUSIVE
, 0, &stm
);
262 WARN("open stream failed r = %08x - empty table?\n", r
);
266 r
= IStream_Stat(stm
, &stat
, STATFLAG_NONAME
);
269 WARN("open stream failed r = %08x!\n", r
);
273 if( stat
.cbSize
.QuadPart
>> 32 )
279 sz
= stat
.cbSize
.QuadPart
;
280 data
= msi_alloc( sz
);
283 WARN("couldn't allocate memory r=%08x!\n", r
);
284 ret
= ERROR_NOT_ENOUGH_MEMORY
;
288 r
= IStream_Read(stm
, data
, sz
, &count
);
289 if( FAILED( r
) || ( count
!= sz
) )
292 WARN("read stream failed r = %08x!\n", r
);
301 IStream_Release( stm
);
306 UINT
write_stream_data( IStorage
*stg
, LPCWSTR stname
,
307 LPCVOID data
, UINT sz
, BOOL bTable
)
310 UINT ret
= ERROR_FUNCTION_FAILED
;
317 encname
= encode_streamname(bTable
, stname
);
318 r
= IStorage_OpenStream( stg
, encname
, NULL
,
319 STGM_WRITE
| STGM_SHARE_EXCLUSIVE
, 0, &stm
);
322 r
= IStorage_CreateStream( stg
, encname
,
323 STGM_WRITE
| STGM_SHARE_EXCLUSIVE
, 0, 0, &stm
);
328 WARN("open stream failed r = %08x\n", r
);
333 r
= IStream_SetSize( stm
, size
);
336 WARN("Failed to SetSize\n");
341 r
= IStream_Seek( stm
, pos
, STREAM_SEEK_SET
, NULL
);
344 WARN("Failed to Seek\n");
350 r
= IStream_Write(stm
, data
, sz
, &count
);
351 if( FAILED( r
) || ( count
!= sz
) )
353 WARN("Failed to Write\n");
361 IStream_Release( stm
);
366 static void msi_free_colinfo( MSICOLUMNINFO
*colinfo
, UINT count
)
369 for (i
= 0; i
< count
; i
++) msi_free( colinfo
[i
].hash_table
);
372 static void free_table( MSITABLE
*table
)
375 for( i
=0; i
<table
->row_count
; i
++ )
376 msi_free( table
->data
[i
] );
377 msi_free( table
->data
);
378 msi_free( table
->data_persistent
);
379 msi_free_colinfo( table
->colinfo
, table
->col_count
);
380 msi_free( table
->colinfo
);
384 static UINT
msi_table_get_row_size( MSIDATABASE
*db
, const MSICOLUMNINFO
*cols
, UINT count
, UINT bytes_per_strref
)
386 const MSICOLUMNINFO
*last_col
;
391 if (bytes_per_strref
!= LONG_STR_BYTES
)
394 for (i
= 0; i
< count
; i
++) size
+= bytes_per_column( db
, &cols
[i
], bytes_per_strref
);
397 last_col
= &cols
[count
- 1];
398 return last_col
->offset
+ bytes_per_column( db
, last_col
, bytes_per_strref
);
401 /* add this table to the list of cached tables in the database */
402 static UINT
read_table_from_storage( MSIDATABASE
*db
, MSITABLE
*t
, IStorage
*stg
)
404 BYTE
*rawdata
= NULL
;
405 UINT rawsize
= 0, i
, j
, row_size
, row_size_mem
;
407 TRACE("%s\n",debugstr_w(t
->name
));
409 row_size
= msi_table_get_row_size( db
, t
->colinfo
, t
->col_count
, db
->bytes_per_strref
);
410 row_size_mem
= msi_table_get_row_size( db
, t
->colinfo
, t
->col_count
, LONG_STR_BYTES
);
412 /* if we can't read the table, just assume that it's empty */
413 read_stream_data( stg
, t
->name
, TRUE
, &rawdata
, &rawsize
);
415 return ERROR_SUCCESS
;
417 TRACE("Read %d bytes\n", rawsize
);
419 if( rawsize
% row_size
)
421 WARN("Table size is invalid %d/%d\n", rawsize
, row_size
);
425 if ((t
->row_count
= rawsize
/ row_size
))
427 if (!(t
->data
= msi_alloc_zero( t
->row_count
* sizeof(USHORT
*) ))) goto err
;
428 if (!(t
->data_persistent
= msi_alloc_zero( t
->row_count
* sizeof(BOOL
) ))) goto err
;
431 /* transpose all the data */
432 TRACE("Transposing data from %d rows\n", t
->row_count
);
433 for (i
= 0; i
< t
->row_count
; i
++)
435 UINT ofs
= 0, ofs_mem
= 0;
437 t
->data
[i
] = msi_alloc( row_size_mem
);
440 t
->data_persistent
[i
] = TRUE
;
442 for (j
= 0; j
< t
->col_count
; j
++)
444 UINT m
= bytes_per_column( db
, &t
->colinfo
[j
], LONG_STR_BYTES
);
445 UINT n
= bytes_per_column( db
, &t
->colinfo
[j
], db
->bytes_per_strref
);
448 if ( n
!= 2 && n
!= 3 && n
!= 4 )
450 ERR("oops - unknown column width %d\n", n
);
453 if (t
->colinfo
[j
].type
& MSITYPE_STRING
&& n
< m
)
455 for (k
= 0; k
< m
; k
++)
458 t
->data
[i
][ofs_mem
+ k
] = rawdata
[ofs
* t
->row_count
+ i
* n
+ k
];
460 t
->data
[i
][ofs_mem
+ k
] = 0;
465 for (k
= 0; k
< n
; k
++)
466 t
->data
[i
][ofs_mem
+ k
] = rawdata
[ofs
* t
->row_count
+ i
* n
+ k
];
474 return ERROR_SUCCESS
;
477 return ERROR_FUNCTION_FAILED
;
480 void free_cached_tables( MSIDATABASE
*db
)
482 while( !list_empty( &db
->tables
) )
484 MSITABLE
*t
= LIST_ENTRY( list_head( &db
->tables
), MSITABLE
, entry
);
486 list_remove( &t
->entry
);
491 static MSITABLE
*find_cached_table( MSIDATABASE
*db
, LPCWSTR name
)
495 LIST_FOR_EACH_ENTRY( t
, &db
->tables
, MSITABLE
, entry
)
496 if( !strcmpW( name
, t
->name
) )
502 static void table_calc_column_offsets( MSIDATABASE
*db
, MSICOLUMNINFO
*colinfo
, DWORD count
)
506 for (i
= 0; colinfo
&& i
< count
; i
++)
508 assert( i
+ 1 == colinfo
[i
].number
);
509 if (i
) colinfo
[i
].offset
= colinfo
[i
- 1].offset
+
510 bytes_per_column( db
, &colinfo
[i
- 1], LONG_STR_BYTES
);
511 else colinfo
[i
].offset
= 0;
513 TRACE("column %d is [%s] with type %08x ofs %d\n",
514 colinfo
[i
].number
, debugstr_w(colinfo
[i
].colname
),
515 colinfo
[i
].type
, colinfo
[i
].offset
);
519 static UINT
get_defaulttablecolumns( MSIDATABASE
*db
, LPCWSTR name
, MSICOLUMNINFO
*colinfo
, UINT
*sz
)
521 const MSICOLUMNINFO
*p
;
524 TRACE("%s\n", debugstr_w(name
));
526 if (!strcmpW( name
, szTables
))
531 else if (!strcmpW( name
, szColumns
))
536 else return ERROR_FUNCTION_FAILED
;
538 for (i
= 0; i
< n
; i
++)
540 if (colinfo
&& i
< *sz
) colinfo
[i
] = p
[i
];
541 if (colinfo
&& i
>= *sz
) break;
543 table_calc_column_offsets( db
, colinfo
, n
);
545 return ERROR_SUCCESS
;
548 static UINT
get_tablecolumns( MSIDATABASE
*db
, LPCWSTR szTableName
, MSICOLUMNINFO
*colinfo
, UINT
*sz
);
550 static UINT
table_get_column_info( MSIDATABASE
*db
, LPCWSTR name
, MSICOLUMNINFO
**pcols
, UINT
*pcount
)
552 UINT r
, column_count
= 0;
553 MSICOLUMNINFO
*columns
;
555 /* get the number of columns in this table */
557 r
= get_tablecolumns( db
, name
, NULL
, &column_count
);
558 if (r
!= ERROR_SUCCESS
)
561 *pcount
= column_count
;
563 /* if there are no columns, there's no table */
565 return ERROR_INVALID_PARAMETER
;
567 TRACE("table %s found\n", debugstr_w(name
));
569 columns
= msi_alloc( column_count
* sizeof(MSICOLUMNINFO
) );
571 return ERROR_FUNCTION_FAILED
;
573 r
= get_tablecolumns( db
, name
, columns
, &column_count
);
574 if (r
!= ERROR_SUCCESS
)
577 return ERROR_FUNCTION_FAILED
;
583 static UINT
get_table( MSIDATABASE
*db
, LPCWSTR name
, MSITABLE
**table_ret
)
588 /* first, see if the table is cached */
589 table
= find_cached_table( db
, name
);
593 return ERROR_SUCCESS
;
596 /* nonexistent tables should be interpreted as empty tables */
597 table
= msi_alloc( sizeof(MSITABLE
) + lstrlenW( name
) * sizeof(WCHAR
) );
599 return ERROR_FUNCTION_FAILED
;
601 table
->row_count
= 0;
603 table
->data_persistent
= NULL
;
604 table
->colinfo
= NULL
;
605 table
->col_count
= 0;
606 table
->persistent
= MSICONDITION_TRUE
;
607 lstrcpyW( table
->name
, name
);
609 if (!strcmpW( name
, szTables
) || !strcmpW( name
, szColumns
))
610 table
->persistent
= MSICONDITION_NONE
;
612 r
= table_get_column_info( db
, name
, &table
->colinfo
, &table
->col_count
);
613 if (r
!= ERROR_SUCCESS
)
618 r
= read_table_from_storage( db
, table
, db
->storage
);
619 if (r
!= ERROR_SUCCESS
)
624 list_add_head( &db
->tables
, &table
->entry
);
626 return ERROR_SUCCESS
;
629 static UINT
read_table_int( BYTE
*const *data
, UINT row
, UINT col
, UINT bytes
)
633 for (i
= 0; i
< bytes
; i
++)
634 ret
+= data
[row
][col
+ i
] << i
* 8;
639 static UINT
get_tablecolumns( MSIDATABASE
*db
, LPCWSTR szTableName
, MSICOLUMNINFO
*colinfo
, UINT
*sz
)
641 UINT r
, i
, n
= 0, table_id
, count
, maxcount
= *sz
;
642 MSITABLE
*table
= NULL
;
644 TRACE("%s\n", debugstr_w(szTableName
));
646 /* first check if there is a default table with that name */
647 r
= get_defaulttablecolumns( db
, szTableName
, colinfo
, sz
);
648 if (r
== ERROR_SUCCESS
&& *sz
)
651 r
= get_table( db
, szColumns
, &table
);
652 if (r
!= ERROR_SUCCESS
)
654 ERR("couldn't load _Columns table\n");
655 return ERROR_FUNCTION_FAILED
;
658 /* convert table and column names to IDs from the string table */
659 r
= msi_string2id( db
->strings
, szTableName
, -1, &table_id
);
660 if (r
!= ERROR_SUCCESS
)
662 WARN("Couldn't find id for %s\n", debugstr_w(szTableName
));
665 TRACE("Table id is %d, row count is %d\n", table_id
, table
->row_count
);
667 /* Note: _Columns table doesn't have non-persistent data */
669 /* if maxcount is non-zero, assume it's exactly right for this table */
670 if (colinfo
) memset( colinfo
, 0, maxcount
* sizeof(*colinfo
) );
671 count
= table
->row_count
;
672 for (i
= 0; i
< count
; i
++)
674 if (read_table_int( table
->data
, i
, 0, LONG_STR_BYTES
) != table_id
) continue;
677 UINT id
= read_table_int( table
->data
, i
, table
->colinfo
[2].offset
, LONG_STR_BYTES
);
678 UINT col
= read_table_int( table
->data
, i
, table
->colinfo
[1].offset
, sizeof(USHORT
) ) - (1 << 15);
680 /* check the column number is in range */
681 if (col
< 1 || col
> maxcount
)
683 ERR("column %d out of range (maxcount: %d)\n", col
, maxcount
);
686 /* check if this column was already set */
687 if (colinfo
[col
- 1].number
)
689 ERR("duplicate column %d\n", col
);
692 colinfo
[col
- 1].tablename
= msi_string_lookup( db
->strings
, table_id
, NULL
);
693 colinfo
[col
- 1].number
= col
;
694 colinfo
[col
- 1].colname
= msi_string_lookup( db
->strings
, id
, NULL
);
695 colinfo
[col
- 1].type
= read_table_int( table
->data
, i
, table
->colinfo
[3].offset
,
696 sizeof(USHORT
) ) - (1 << 15);
697 colinfo
[col
- 1].offset
= 0;
698 colinfo
[col
- 1].ref_count
= 0;
699 colinfo
[col
- 1].hash_table
= NULL
;
703 TRACE("%s has %d columns\n", debugstr_w(szTableName
), n
);
705 if (colinfo
&& n
!= maxcount
)
707 ERR("missing column in table %s\n", debugstr_w(szTableName
));
708 msi_free_colinfo( colinfo
, maxcount
);
709 return ERROR_FUNCTION_FAILED
;
711 table_calc_column_offsets( db
, colinfo
, n
);
713 return ERROR_SUCCESS
;
716 UINT
msi_create_table( MSIDATABASE
*db
, LPCWSTR name
, column_info
*col_info
,
717 MSICONDITION persistent
)
719 enum StringPersistence string_persistence
= (persistent
) ? StringPersistent
: StringNonPersistent
;
722 MSIRECORD
*rec
= NULL
;
727 /* only add tables that don't exist already */
728 if( TABLE_Exists(db
, name
) )
730 WARN("table %s exists\n", debugstr_w(name
));
731 return ERROR_BAD_QUERY_SYNTAX
;
734 table
= msi_alloc( sizeof (MSITABLE
) + lstrlenW(name
)*sizeof (WCHAR
) );
736 return ERROR_FUNCTION_FAILED
;
738 table
->ref_count
= 1;
739 table
->row_count
= 0;
741 table
->data_persistent
= NULL
;
742 table
->colinfo
= NULL
;
743 table
->col_count
= 0;
744 table
->persistent
= persistent
;
745 lstrcpyW( table
->name
, name
);
747 for( col
= col_info
; col
; col
= col
->next
)
750 table
->colinfo
= msi_alloc( table
->col_count
* sizeof(MSICOLUMNINFO
) );
754 return ERROR_FUNCTION_FAILED
;
757 for( i
= 0, col
= col_info
; col
; i
++, col
= col
->next
)
759 UINT table_id
= msi_add_string( db
->strings
, col
->table
, -1, string_persistence
);
760 UINT col_id
= msi_add_string( db
->strings
, col
->column
, -1, string_persistence
);
762 table
->colinfo
[ i
].tablename
= msi_string_lookup( db
->strings
, table_id
, NULL
);
763 table
->colinfo
[ i
].number
= i
+ 1;
764 table
->colinfo
[ i
].colname
= msi_string_lookup( db
->strings
, col_id
, NULL
);
765 table
->colinfo
[ i
].type
= col
->type
;
766 table
->colinfo
[ i
].offset
= 0;
767 table
->colinfo
[ i
].ref_count
= 0;
768 table
->colinfo
[ i
].hash_table
= NULL
;
769 table
->colinfo
[ i
].temporary
= col
->temporary
;
771 table_calc_column_offsets( db
, table
->colinfo
, table
->col_count
);
773 r
= TABLE_CreateView( db
, szTables
, &tv
);
774 TRACE("CreateView returned %x\n", r
);
781 r
= tv
->ops
->execute( tv
, 0 );
782 TRACE("tv execute returned %x\n", r
);
786 rec
= MSI_CreateRecord( 1 );
790 r
= MSI_RecordSetStringW( rec
, 1, name
);
794 r
= tv
->ops
->insert_row( tv
, rec
, -1, persistent
== MSICONDITION_FALSE
);
795 TRACE("insert_row returned %x\n", r
);
799 tv
->ops
->delete( tv
);
802 msiobj_release( &rec
->hdr
);
805 if( persistent
!= MSICONDITION_FALSE
)
807 /* add each column to the _Columns table */
808 r
= TABLE_CreateView( db
, szColumns
, &tv
);
812 r
= tv
->ops
->execute( tv
, 0 );
813 TRACE("tv execute returned %x\n", r
);
817 rec
= MSI_CreateRecord( 4 );
821 r
= MSI_RecordSetStringW( rec
, 1, name
);
826 * need to set the table, column number, col name and type
827 * for each column we enter in the table
830 for( col
= col_info
; col
; col
= col
->next
)
832 r
= MSI_RecordSetInteger( rec
, 2, nField
);
836 r
= MSI_RecordSetStringW( rec
, 3, col
->column
);
840 r
= MSI_RecordSetInteger( rec
, 4, col
->type
);
844 r
= tv
->ops
->insert_row( tv
, rec
, -1, FALSE
);
856 msiobj_release( &rec
->hdr
);
857 /* FIXME: remove values from the string table on error */
859 tv
->ops
->delete( tv
);
861 if (r
== ERROR_SUCCESS
)
862 list_add_head( &db
->tables
, &table
->entry
);
869 static UINT
save_table( MSIDATABASE
*db
, const MSITABLE
*t
, UINT bytes_per_strref
)
871 BYTE
*rawdata
= NULL
;
872 UINT rawsize
, i
, j
, row_size
, row_count
;
873 UINT r
= ERROR_FUNCTION_FAILED
;
875 /* Nothing to do for non-persistent tables */
876 if( t
->persistent
== MSICONDITION_FALSE
)
877 return ERROR_SUCCESS
;
879 TRACE("Saving %s\n", debugstr_w( t
->name
) );
881 row_size
= msi_table_get_row_size( db
, t
->colinfo
, t
->col_count
, bytes_per_strref
);
882 row_count
= t
->row_count
;
883 for (i
= 0; i
< t
->row_count
; i
++)
885 if (!t
->data_persistent
[i
])
887 row_count
= 1; /* yes, this is bizarre */
891 rawsize
= row_count
* row_size
;
892 rawdata
= msi_alloc_zero( rawsize
);
895 r
= ERROR_NOT_ENOUGH_MEMORY
;
900 for (i
= 0; i
< row_count
; i
++)
902 UINT ofs
= 0, ofs_mem
= 0;
904 if (!t
->data_persistent
[i
]) break;
906 for (j
= 0; j
< t
->col_count
; j
++)
908 UINT m
= bytes_per_column( db
, &t
->colinfo
[j
], LONG_STR_BYTES
);
909 UINT n
= bytes_per_column( db
, &t
->colinfo
[j
], bytes_per_strref
);
912 if (n
!= 2 && n
!= 3 && n
!= 4)
914 ERR("oops - unknown column width %d\n", n
);
917 if (t
->colinfo
[j
].type
& MSITYPE_STRING
&& n
< m
)
919 UINT id
= read_table_int( t
->data
, i
, ofs_mem
, LONG_STR_BYTES
);
920 if (id
> 1 << bytes_per_strref
* 8)
922 ERR("string id %u out of range\n", id
);
926 for (k
= 0; k
< n
; k
++)
928 rawdata
[ofs
* row_count
+ i
* n
+ k
] = t
->data
[i
][ofs_mem
+ k
];
936 TRACE("writing %d bytes\n", rawsize
);
937 r
= write_stream_data( db
->storage
, t
->name
, rawdata
, rawsize
, TRUE
);
944 static void msi_update_table_columns( MSIDATABASE
*db
, LPCWSTR name
)
947 UINT size
, offset
, old_count
;
950 if (!(table
= find_cached_table( db
, name
))) return;
951 old_count
= table
->col_count
;
952 msi_free_colinfo( table
->colinfo
, table
->col_count
);
953 msi_free( table
->colinfo
);
954 table
->colinfo
= NULL
;
956 table_get_column_info( db
, name
, &table
->colinfo
, &table
->col_count
);
957 if (!table
->col_count
) return;
959 size
= msi_table_get_row_size( db
, table
->colinfo
, table
->col_count
, LONG_STR_BYTES
);
960 offset
= table
->colinfo
[table
->col_count
- 1].offset
;
962 for ( n
= 0; n
< table
->row_count
; n
++ )
964 table
->data
[n
] = msi_realloc( table
->data
[n
], size
);
965 if (old_count
< table
->col_count
)
966 memset( &table
->data
[n
][offset
], 0, size
- offset
);
970 /* try to find the table name in the _Tables table */
971 BOOL
TABLE_Exists( MSIDATABASE
*db
, LPCWSTR name
)
976 if( !strcmpW( name
, szTables
) || !strcmpW( name
, szColumns
) ||
977 !strcmpW( name
, szStreams
) || !strcmpW( name
, szStorages
) )
980 r
= msi_string2id( db
->strings
, name
, -1, &table_id
);
981 if( r
!= ERROR_SUCCESS
)
983 TRACE("Couldn't find id for %s\n", debugstr_w(name
));
987 r
= get_table( db
, szTables
, &table
);
988 if( r
!= ERROR_SUCCESS
)
990 ERR("table %s not available\n", debugstr_w(szTables
));
994 for( i
= 0; i
< table
->row_count
; i
++ )
996 if( read_table_int( table
->data
, i
, 0, LONG_STR_BYTES
) == table_id
)
1003 /* below is the query interface to a table */
1005 typedef struct tagMSITABLEVIEW
1010 MSICOLUMNINFO
*columns
;
1016 static UINT
TABLE_fetch_int( struct tagMSIVIEW
*view
, UINT row
, UINT col
, UINT
*val
)
1018 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1022 return ERROR_INVALID_PARAMETER
;
1024 if( (col
==0) || (col
>tv
->num_cols
) )
1025 return ERROR_INVALID_PARAMETER
;
1027 /* how many rows are there ? */
1028 if( row
>= tv
->table
->row_count
)
1029 return ERROR_NO_MORE_ITEMS
;
1031 if( tv
->columns
[col
-1].offset
>= tv
->row_size
)
1033 ERR("Stuffed up %d >= %d\n", tv
->columns
[col
-1].offset
, tv
->row_size
);
1034 ERR("%p %p\n", tv
, tv
->columns
);
1035 return ERROR_FUNCTION_FAILED
;
1038 n
= bytes_per_column( tv
->db
, &tv
->columns
[col
- 1], LONG_STR_BYTES
);
1039 if (n
!= 2 && n
!= 3 && n
!= 4)
1041 ERR("oops! what is %d bytes per column?\n", n
);
1042 return ERROR_FUNCTION_FAILED
;
1045 offset
= tv
->columns
[col
-1].offset
;
1046 *val
= read_table_int(tv
->table
->data
, row
, offset
, n
);
1048 /* TRACE("Data [%d][%d] = %d\n", row, col, *val ); */
1050 return ERROR_SUCCESS
;
1053 static UINT
get_stream_name( const MSITABLEVIEW
*tv
, UINT row
, WCHAR
**pstname
)
1055 LPWSTR p
, stname
= NULL
;
1056 UINT i
, r
, type
, ival
;
1059 MSIVIEW
*view
= (MSIVIEW
*) tv
;
1061 TRACE("%p %d\n", tv
, row
);
1063 len
= lstrlenW( tv
->name
) + 1;
1064 stname
= msi_alloc( len
*sizeof(WCHAR
) );
1067 r
= ERROR_OUTOFMEMORY
;
1071 lstrcpyW( stname
, tv
->name
);
1073 for ( i
= 0; i
< tv
->num_cols
; i
++ )
1075 type
= tv
->columns
[i
].type
;
1076 if ( type
& MSITYPE_KEY
)
1080 r
= TABLE_fetch_int( view
, row
, i
+1, &ival
);
1081 if ( r
!= ERROR_SUCCESS
)
1084 if ( tv
->columns
[i
].type
& MSITYPE_STRING
)
1086 sval
= msi_string_lookup( tv
->db
->strings
, ival
, NULL
);
1089 r
= ERROR_INVALID_PARAMETER
;
1095 static const WCHAR fmt
[] = { '%','d',0 };
1096 UINT n
= bytes_per_column( tv
->db
, &tv
->columns
[i
], LONG_STR_BYTES
);
1101 sprintfW( number
, fmt
, ival
-0x8000 );
1104 sprintfW( number
, fmt
, ival
^0x80000000 );
1107 ERR( "oops - unknown column width %d\n", n
);
1108 r
= ERROR_FUNCTION_FAILED
;
1114 len
+= lstrlenW( szDot
) + lstrlenW( sval
);
1115 p
= msi_realloc ( stname
, len
*sizeof(WCHAR
) );
1118 r
= ERROR_OUTOFMEMORY
;
1123 lstrcatW( stname
, szDot
);
1124 lstrcatW( stname
, sval
);
1131 return ERROR_SUCCESS
;
1140 * We need a special case for streams, as we need to reference column with
1141 * the name of the stream in the same table, and the table name
1142 * which may not be available at higher levels of the query
1144 static UINT
TABLE_fetch_stream( struct tagMSIVIEW
*view
, UINT row
, UINT col
, IStream
**stm
)
1146 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1150 if( !view
->ops
->fetch_int
)
1151 return ERROR_INVALID_PARAMETER
;
1153 r
= get_stream_name( tv
, row
, &name
);
1154 if (r
!= ERROR_SUCCESS
)
1156 ERR("fetching stream, error = %u\n", r
);
1160 r
= msi_get_stream( tv
->db
, name
, stm
);
1161 if (r
!= ERROR_SUCCESS
)
1162 ERR("fetching stream %s, error = %u\n", debugstr_w(name
), r
);
1168 static UINT
TABLE_set_int( MSITABLEVIEW
*tv
, UINT row
, UINT col
, UINT val
)
1173 return ERROR_INVALID_PARAMETER
;
1175 if( (col
==0) || (col
>tv
->num_cols
) )
1176 return ERROR_INVALID_PARAMETER
;
1178 if( row
>= tv
->table
->row_count
)
1179 return ERROR_INVALID_PARAMETER
;
1181 if( tv
->columns
[col
-1].offset
>= tv
->row_size
)
1183 ERR("Stuffed up %d >= %d\n", tv
->columns
[col
-1].offset
, tv
->row_size
);
1184 ERR("%p %p\n", tv
, tv
->columns
);
1185 return ERROR_FUNCTION_FAILED
;
1188 msi_free( tv
->columns
[col
-1].hash_table
);
1189 tv
->columns
[col
-1].hash_table
= NULL
;
1191 n
= bytes_per_column( tv
->db
, &tv
->columns
[col
- 1], LONG_STR_BYTES
);
1192 if ( n
!= 2 && n
!= 3 && n
!= 4 )
1194 ERR("oops! what is %d bytes per column?\n", n
);
1195 return ERROR_FUNCTION_FAILED
;
1198 offset
= tv
->columns
[col
-1].offset
;
1199 for ( i
= 0; i
< n
; i
++ )
1200 tv
->table
->data
[row
][offset
+ i
] = (val
>> i
* 8) & 0xff;
1202 return ERROR_SUCCESS
;
1205 static UINT
TABLE_get_row( struct tagMSIVIEW
*view
, UINT row
, MSIRECORD
**rec
)
1207 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1210 return ERROR_INVALID_PARAMETER
;
1212 return msi_view_get_row(tv
->db
, view
, row
, rec
);
1215 static UINT
add_stream( MSIDATABASE
*db
, const WCHAR
*name
, IStream
*data
)
1217 static const WCHAR insert
[] = {
1218 'I','N','S','E','R','T',' ','I','N','T','O',' ',
1219 '`','_','S','t','r','e','a','m','s','`',' ',
1220 '(','`','N','a','m','e','`',',','`','D','a','t','a','`',')',' ',
1221 'V','A','L','U','E','S',' ','(','?',',','?',')',0};
1222 static const WCHAR update
[] = {
1223 'U','P','D','A','T','E',' ','`','_','S','t','r','e','a','m','s','`',' ',
1224 'S','E','T',' ','`','D','a','t','a','`',' ','=',' ','?',' ',
1225 'W','H','E','R','E',' ','`','N','a','m','e','`',' ','=',' ','?',0};
1230 TRACE("%p %s %p\n", db
, debugstr_w(name
), data
);
1232 if (!(rec
= MSI_CreateRecord( 2 )))
1233 return ERROR_OUTOFMEMORY
;
1235 r
= MSI_RecordSetStringW( rec
, 1, name
);
1236 if (r
!= ERROR_SUCCESS
)
1239 r
= MSI_RecordSetIStream( rec
, 2, data
);
1240 if (r
!= ERROR_SUCCESS
)
1243 r
= MSI_DatabaseOpenViewW( db
, insert
, &query
);
1244 if (r
!= ERROR_SUCCESS
)
1247 r
= MSI_ViewExecute( query
, rec
);
1248 msiobj_release( &query
->hdr
);
1249 if (r
== ERROR_SUCCESS
)
1252 msiobj_release( &rec
->hdr
);
1253 if (!(rec
= MSI_CreateRecord( 2 )))
1254 return ERROR_OUTOFMEMORY
;
1256 r
= MSI_RecordSetIStream( rec
, 1, data
);
1257 if (r
!= ERROR_SUCCESS
)
1260 r
= MSI_RecordSetStringW( rec
, 2, name
);
1261 if (r
!= ERROR_SUCCESS
)
1264 r
= MSI_DatabaseOpenViewW( db
, update
, &query
);
1265 if (r
!= ERROR_SUCCESS
)
1268 r
= MSI_ViewExecute( query
, rec
);
1269 msiobj_release( &query
->hdr
);
1272 msiobj_release( &rec
->hdr
);
1276 static UINT
get_table_value_from_record( MSITABLEVIEW
*tv
, MSIRECORD
*rec
, UINT iField
, UINT
*pvalue
)
1278 MSICOLUMNINFO columninfo
;
1282 if ( (iField
<= 0) ||
1283 (iField
> tv
->num_cols
) ||
1284 MSI_RecordIsNull( rec
, iField
) )
1285 return ERROR_FUNCTION_FAILED
;
1287 columninfo
= tv
->columns
[ iField
- 1 ];
1289 if ( MSITYPE_IS_BINARY(columninfo
.type
) )
1291 *pvalue
= 1; /* refers to the first key column */
1293 else if ( columninfo
.type
& MSITYPE_STRING
)
1296 const WCHAR
*sval
= msi_record_get_string( rec
, iField
, &len
);
1299 r
= msi_string2id( tv
->db
->strings
, sval
, len
, pvalue
);
1300 if (r
!= ERROR_SUCCESS
)
1301 return ERROR_NOT_FOUND
;
1305 else if ( bytes_per_column( tv
->db
, &columninfo
, LONG_STR_BYTES
) == 2 )
1307 ival
= MSI_RecordGetInteger( rec
, iField
);
1308 if (ival
== 0x80000000) *pvalue
= 0x8000;
1311 *pvalue
= 0x8000 + MSI_RecordGetInteger( rec
, iField
);
1312 if (*pvalue
& 0xffff0000)
1314 ERR("field %u value %d out of range\n", iField
, *pvalue
- 0x8000);
1315 return ERROR_FUNCTION_FAILED
;
1321 ival
= MSI_RecordGetInteger( rec
, iField
);
1322 *pvalue
= ival
^ 0x80000000;
1325 return ERROR_SUCCESS
;
1328 static UINT
TABLE_set_row( struct tagMSIVIEW
*view
, UINT row
, MSIRECORD
*rec
, UINT mask
)
1330 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1331 UINT i
, val
, r
= ERROR_SUCCESS
;
1334 return ERROR_INVALID_PARAMETER
;
1336 /* test if any of the mask bits are invalid */
1337 if ( mask
>= (1<<tv
->num_cols
) )
1338 return ERROR_INVALID_PARAMETER
;
1340 for ( i
= 0; i
< tv
->num_cols
; i
++ )
1344 /* only update the fields specified in the mask */
1345 if ( !(mask
&(1<<i
)) )
1348 persistent
= (tv
->table
->persistent
!= MSICONDITION_FALSE
) &&
1349 (tv
->table
->data_persistent
[row
]);
1350 /* FIXME: should we allow updating keys? */
1353 if ( !MSI_RecordIsNull( rec
, i
+ 1 ) )
1355 r
= get_table_value_from_record (tv
, rec
, i
+ 1, &val
);
1356 if ( MSITYPE_IS_BINARY(tv
->columns
[ i
].type
) )
1361 if ( r
!= ERROR_SUCCESS
)
1362 return ERROR_FUNCTION_FAILED
;
1364 r
= MSI_RecordGetIStream( rec
, i
+ 1, &stm
);
1365 if ( r
!= ERROR_SUCCESS
)
1368 r
= get_stream_name( tv
, row
, &stname
);
1369 if ( r
!= ERROR_SUCCESS
)
1371 IStream_Release( stm
);
1375 r
= add_stream( tv
->db
, stname
, stm
);
1376 IStream_Release( stm
);
1377 msi_free ( stname
);
1379 if ( r
!= ERROR_SUCCESS
)
1382 else if ( tv
->columns
[i
].type
& MSITYPE_STRING
)
1386 if ( r
!= ERROR_SUCCESS
)
1389 const WCHAR
*sval
= msi_record_get_string( rec
, i
+ 1, &len
);
1390 val
= msi_add_string( tv
->db
->strings
, sval
, len
,
1391 persistent
? StringPersistent
: StringNonPersistent
);
1395 TABLE_fetch_int(&tv
->view
, row
, i
+ 1, &x
);
1402 if ( r
!= ERROR_SUCCESS
)
1403 return ERROR_FUNCTION_FAILED
;
1407 r
= TABLE_set_int( tv
, row
, i
+1, val
);
1408 if ( r
!= ERROR_SUCCESS
)
1414 static UINT
table_create_new_row( struct tagMSIVIEW
*view
, UINT
*num
, BOOL temporary
)
1416 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1421 BOOL
**data_persist_ptr
;
1424 TRACE("%p %s\n", view
, temporary
? "TRUE" : "FALSE");
1427 return ERROR_INVALID_PARAMETER
;
1429 row
= msi_alloc_zero( tv
->row_size
);
1431 return ERROR_NOT_ENOUGH_MEMORY
;
1433 row_count
= &tv
->table
->row_count
;
1434 data_ptr
= &tv
->table
->data
;
1435 data_persist_ptr
= &tv
->table
->data_persistent
;
1437 *num
= tv
->table
->row_count
;
1439 sz
= (*row_count
+ 1) * sizeof (BYTE
*);
1441 p
= msi_realloc( *data_ptr
, sz
);
1443 p
= msi_alloc( sz
);
1447 return ERROR_NOT_ENOUGH_MEMORY
;
1450 sz
= (*row_count
+ 1) * sizeof (BOOL
);
1451 if( *data_persist_ptr
)
1452 b
= msi_realloc( *data_persist_ptr
, sz
);
1454 b
= msi_alloc( sz
);
1459 return ERROR_NOT_ENOUGH_MEMORY
;
1463 (*data_ptr
)[*row_count
] = row
;
1465 *data_persist_ptr
= b
;
1466 (*data_persist_ptr
)[*row_count
] = !temporary
;
1470 return ERROR_SUCCESS
;
1473 static UINT
TABLE_execute( struct tagMSIVIEW
*view
, MSIRECORD
*record
)
1475 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1477 TRACE("%p %p\n", tv
, record
);
1479 TRACE("There are %d columns\n", tv
->num_cols
);
1481 return ERROR_SUCCESS
;
1484 static UINT
TABLE_close( struct tagMSIVIEW
*view
)
1486 TRACE("%p\n", view
);
1488 return ERROR_SUCCESS
;
1491 static UINT
TABLE_get_dimensions( struct tagMSIVIEW
*view
, UINT
*rows
, UINT
*cols
)
1493 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1495 TRACE("%p %p %p\n", view
, rows
, cols
);
1498 *cols
= tv
->num_cols
;
1502 return ERROR_INVALID_PARAMETER
;
1503 *rows
= tv
->table
->row_count
;
1506 return ERROR_SUCCESS
;
1509 static UINT
TABLE_get_column_info( struct tagMSIVIEW
*view
,
1510 UINT n
, LPCWSTR
*name
, UINT
*type
, BOOL
*temporary
,
1511 LPCWSTR
*table_name
)
1513 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1515 TRACE("%p %d %p %p\n", tv
, n
, name
, type
);
1517 if( ( n
== 0 ) || ( n
> tv
->num_cols
) )
1518 return ERROR_INVALID_PARAMETER
;
1522 *name
= tv
->columns
[n
-1].colname
;
1524 return ERROR_FUNCTION_FAILED
;
1529 *table_name
= tv
->columns
[n
-1].tablename
;
1531 return ERROR_FUNCTION_FAILED
;
1535 *type
= tv
->columns
[n
-1].type
;
1538 *temporary
= tv
->columns
[n
-1].temporary
;
1540 return ERROR_SUCCESS
;
1543 static UINT
msi_table_find_row( MSITABLEVIEW
*tv
, MSIRECORD
*rec
, UINT
*row
, UINT
*column
);
1545 static UINT
table_validate_new( MSITABLEVIEW
*tv
, MSIRECORD
*rec
, UINT
*column
)
1549 /* check there are no null values where they're not allowed */
1550 for( i
= 0; i
< tv
->num_cols
; i
++ )
1552 if ( tv
->columns
[i
].type
& MSITYPE_NULLABLE
)
1555 if ( MSITYPE_IS_BINARY(tv
->columns
[i
].type
) )
1556 TRACE("skipping binary column\n");
1557 else if ( tv
->columns
[i
].type
& MSITYPE_STRING
)
1560 const WCHAR
*str
= msi_record_get_string( rec
, i
+1, &len
);
1562 if (!str
|| (!str
[0] && !len
))
1564 if (column
) *column
= i
;
1565 return ERROR_INVALID_DATA
;
1572 n
= MSI_RecordGetInteger( rec
, i
+1 );
1573 if (n
== MSI_NULL_INTEGER
)
1575 if (column
) *column
= i
;
1576 return ERROR_INVALID_DATA
;
1581 /* check there are no duplicate keys */
1582 r
= msi_table_find_row( tv
, rec
, &row
, column
);
1583 if (r
== ERROR_SUCCESS
)
1584 return ERROR_FUNCTION_FAILED
;
1586 return ERROR_SUCCESS
;
1589 static int compare_record( MSITABLEVIEW
*tv
, UINT row
, MSIRECORD
*rec
)
1591 UINT r
, i
, ivalue
, x
;
1593 for (i
= 0; i
< tv
->num_cols
; i
++ )
1595 if (!(tv
->columns
[i
].type
& MSITYPE_KEY
)) continue;
1597 r
= get_table_value_from_record( tv
, rec
, i
+ 1, &ivalue
);
1598 if (r
!= ERROR_SUCCESS
)
1601 r
= TABLE_fetch_int( &tv
->view
, row
, i
+ 1, &x
);
1602 if (r
!= ERROR_SUCCESS
)
1604 WARN("TABLE_fetch_int should not fail here %u\n", r
);
1611 else if (ivalue
== x
)
1613 if (i
< tv
->num_cols
- 1) continue;
1622 static int find_insert_index( MSITABLEVIEW
*tv
, MSIRECORD
*rec
)
1624 int idx
, c
, low
= 0, high
= tv
->table
->row_count
- 1;
1626 TRACE("%p %p\n", tv
, rec
);
1630 idx
= (low
+ high
) / 2;
1631 c
= compare_record( tv
, idx
, rec
);
1639 TRACE("found %u\n", idx
);
1643 TRACE("found %u\n", high
+ 1);
1647 static UINT
TABLE_insert_row( struct tagMSIVIEW
*view
, MSIRECORD
*rec
, UINT row
, BOOL temporary
)
1649 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1652 TRACE("%p %p %s\n", tv
, rec
, temporary
? "TRUE" : "FALSE" );
1654 /* check that the key is unique - can we find a matching row? */
1655 r
= table_validate_new( tv
, rec
, NULL
);
1656 if( r
!= ERROR_SUCCESS
)
1657 return ERROR_FUNCTION_FAILED
;
1660 row
= find_insert_index( tv
, rec
);
1662 r
= table_create_new_row( view
, &row
, temporary
);
1663 TRACE("insert_row returned %08x\n", r
);
1664 if( r
!= ERROR_SUCCESS
)
1667 /* shift the rows to make room for the new row */
1668 for (i
= tv
->table
->row_count
- 1; i
> row
; i
--)
1670 memmove(&(tv
->table
->data
[i
][0]),
1671 &(tv
->table
->data
[i
- 1][0]), tv
->row_size
);
1672 tv
->table
->data_persistent
[i
] = tv
->table
->data_persistent
[i
- 1];
1675 /* Re-set the persistence flag */
1676 tv
->table
->data_persistent
[row
] = !temporary
;
1677 return TABLE_set_row( view
, row
, rec
, (1<<tv
->num_cols
) - 1 );
1680 static UINT
TABLE_delete_row( struct tagMSIVIEW
*view
, UINT row
)
1682 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1683 UINT r
, num_rows
, num_cols
, i
;
1685 TRACE("%p %d\n", tv
, row
);
1688 return ERROR_INVALID_PARAMETER
;
1690 r
= TABLE_get_dimensions( view
, &num_rows
, &num_cols
);
1691 if ( r
!= ERROR_SUCCESS
)
1694 if ( row
>= num_rows
)
1695 return ERROR_FUNCTION_FAILED
;
1697 num_rows
= tv
->table
->row_count
;
1698 tv
->table
->row_count
--;
1700 /* reset the hash tables */
1701 for (i
= 0; i
< tv
->num_cols
; i
++)
1703 msi_free( tv
->columns
[i
].hash_table
);
1704 tv
->columns
[i
].hash_table
= NULL
;
1707 for (i
= row
+ 1; i
< num_rows
; i
++)
1709 memcpy(tv
->table
->data
[i
- 1], tv
->table
->data
[i
], tv
->row_size
);
1710 tv
->table
->data_persistent
[i
- 1] = tv
->table
->data_persistent
[i
];
1713 msi_free(tv
->table
->data
[num_rows
- 1]);
1715 return ERROR_SUCCESS
;
1718 static UINT
msi_table_update(struct tagMSIVIEW
*view
, MSIRECORD
*rec
, UINT row
)
1720 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1723 /* FIXME: MsiViewFetch should set rec index 0 to some ID that
1724 * sets the fetched record apart from other records
1728 return ERROR_INVALID_PARAMETER
;
1730 r
= msi_table_find_row(tv
, rec
, &new_row
, NULL
);
1731 if (r
!= ERROR_SUCCESS
)
1733 ERR("can't find row to modify\n");
1734 return ERROR_FUNCTION_FAILED
;
1737 /* the row cannot be changed */
1738 if (row
!= new_row
+ 1)
1739 return ERROR_FUNCTION_FAILED
;
1741 return TABLE_set_row(view
, new_row
, rec
, (1 << tv
->num_cols
) - 1);
1744 static UINT
msi_table_assign(struct tagMSIVIEW
*view
, MSIRECORD
*rec
)
1746 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1750 return ERROR_INVALID_PARAMETER
;
1752 r
= msi_table_find_row(tv
, rec
, &row
, NULL
);
1753 if (r
== ERROR_SUCCESS
)
1754 return TABLE_set_row(view
, row
, rec
, (1 << tv
->num_cols
) - 1);
1756 return TABLE_insert_row( view
, rec
, -1, FALSE
);
1759 static UINT
modify_delete_row( struct tagMSIVIEW
*view
, MSIRECORD
*rec
)
1761 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1764 r
= msi_table_find_row(tv
, rec
, &row
, NULL
);
1765 if (r
!= ERROR_SUCCESS
)
1768 return TABLE_delete_row(view
, row
);
1771 static UINT
msi_refresh_record( struct tagMSIVIEW
*view
, MSIRECORD
*rec
, UINT row
)
1776 r
= TABLE_get_row(view
, row
- 1, &curr
);
1777 if (r
!= ERROR_SUCCESS
)
1780 /* Close the original record */
1781 MSI_CloseRecord(&rec
->hdr
);
1783 count
= MSI_RecordGetFieldCount(rec
);
1784 for (i
= 0; i
< count
; i
++)
1785 MSI_RecordCopyField(curr
, i
+ 1, rec
, i
+ 1);
1787 msiobj_release(&curr
->hdr
);
1788 return ERROR_SUCCESS
;
1791 static UINT
TABLE_modify( struct tagMSIVIEW
*view
, MSIMODIFY eModifyMode
,
1792 MSIRECORD
*rec
, UINT row
)
1794 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1795 UINT r
, frow
, column
;
1797 TRACE("%p %d %p\n", view
, eModifyMode
, rec
);
1799 switch (eModifyMode
)
1801 case MSIMODIFY_DELETE
:
1802 r
= modify_delete_row( view
, rec
);
1804 case MSIMODIFY_VALIDATE_NEW
:
1805 r
= table_validate_new( tv
, rec
, &column
);
1806 if (r
!= ERROR_SUCCESS
)
1808 tv
->view
.error
= MSIDBERROR_DUPLICATEKEY
;
1809 tv
->view
.error_column
= tv
->columns
[column
].colname
;
1810 r
= ERROR_INVALID_DATA
;
1814 case MSIMODIFY_INSERT
:
1815 r
= table_validate_new( tv
, rec
, NULL
);
1816 if (r
!= ERROR_SUCCESS
)
1818 r
= TABLE_insert_row( view
, rec
, -1, FALSE
);
1821 case MSIMODIFY_INSERT_TEMPORARY
:
1822 r
= table_validate_new( tv
, rec
, NULL
);
1823 if (r
!= ERROR_SUCCESS
)
1825 r
= TABLE_insert_row( view
, rec
, -1, TRUE
);
1828 case MSIMODIFY_REFRESH
:
1829 r
= msi_refresh_record( view
, rec
, row
);
1832 case MSIMODIFY_UPDATE
:
1833 r
= msi_table_update( view
, rec
, row
);
1836 case MSIMODIFY_ASSIGN
:
1837 r
= msi_table_assign( view
, rec
);
1840 case MSIMODIFY_MERGE
:
1841 /* check row that matches this record */
1842 r
= msi_table_find_row( tv
, rec
, &frow
, &column
);
1843 if (r
!= ERROR_SUCCESS
)
1845 r
= table_validate_new( tv
, rec
, NULL
);
1846 if (r
== ERROR_SUCCESS
)
1847 r
= TABLE_insert_row( view
, rec
, -1, FALSE
);
1851 case MSIMODIFY_REPLACE
:
1852 case MSIMODIFY_VALIDATE
:
1853 case MSIMODIFY_VALIDATE_FIELD
:
1854 case MSIMODIFY_VALIDATE_DELETE
:
1855 FIXME("%p %d %p - mode not implemented\n", view
, eModifyMode
, rec
);
1856 r
= ERROR_CALL_NOT_IMPLEMENTED
;
1860 r
= ERROR_INVALID_DATA
;
1866 static UINT
TABLE_delete( struct tagMSIVIEW
*view
)
1868 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1870 TRACE("%p\n", view
);
1877 return ERROR_SUCCESS
;
1880 static UINT
TABLE_find_matching_rows( struct tagMSIVIEW
*view
, UINT col
,
1881 UINT val
, UINT
*row
, MSIITERHANDLE
*handle
)
1883 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1884 const MSICOLUMNHASHENTRY
*entry
;
1886 TRACE("%p, %d, %u, %p\n", view
, col
, val
, *handle
);
1889 return ERROR_INVALID_PARAMETER
;
1891 if( (col
==0) || (col
> tv
->num_cols
) )
1892 return ERROR_INVALID_PARAMETER
;
1894 if( !tv
->columns
[col
-1].hash_table
)
1897 UINT num_rows
= tv
->table
->row_count
;
1898 MSICOLUMNHASHENTRY
**hash_table
;
1899 MSICOLUMNHASHENTRY
*new_entry
;
1901 if( tv
->columns
[col
-1].offset
>= tv
->row_size
)
1903 ERR("Stuffed up %d >= %d\n", tv
->columns
[col
-1].offset
, tv
->row_size
);
1904 ERR("%p %p\n", tv
, tv
->columns
);
1905 return ERROR_FUNCTION_FAILED
;
1908 /* allocate contiguous memory for the table and its entries so we
1909 * don't have to do an expensive cleanup */
1910 hash_table
= msi_alloc(MSITABLE_HASH_TABLE_SIZE
* sizeof(MSICOLUMNHASHENTRY
*) +
1911 num_rows
* sizeof(MSICOLUMNHASHENTRY
));
1913 return ERROR_OUTOFMEMORY
;
1915 memset(hash_table
, 0, MSITABLE_HASH_TABLE_SIZE
* sizeof(MSICOLUMNHASHENTRY
*));
1916 tv
->columns
[col
-1].hash_table
= hash_table
;
1918 new_entry
= (MSICOLUMNHASHENTRY
*)(hash_table
+ MSITABLE_HASH_TABLE_SIZE
);
1920 for (i
= 0; i
< num_rows
; i
++, new_entry
++)
1924 if (view
->ops
->fetch_int( view
, i
, col
, &row_value
) != ERROR_SUCCESS
)
1927 new_entry
->next
= NULL
;
1928 new_entry
->value
= row_value
;
1930 if (hash_table
[row_value
% MSITABLE_HASH_TABLE_SIZE
])
1932 MSICOLUMNHASHENTRY
*prev_entry
= hash_table
[row_value
% MSITABLE_HASH_TABLE_SIZE
];
1933 while (prev_entry
->next
)
1934 prev_entry
= prev_entry
->next
;
1935 prev_entry
->next
= new_entry
;
1938 hash_table
[row_value
% MSITABLE_HASH_TABLE_SIZE
] = new_entry
;
1943 entry
= tv
->columns
[col
-1].hash_table
[val
% MSITABLE_HASH_TABLE_SIZE
];
1945 entry
= (*handle
)->next
;
1947 while (entry
&& entry
->value
!= val
)
1948 entry
= entry
->next
;
1952 return ERROR_NO_MORE_ITEMS
;
1956 return ERROR_SUCCESS
;
1959 static UINT
TABLE_add_ref(struct tagMSIVIEW
*view
)
1961 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1964 TRACE("%p %d\n", view
, tv
->table
->ref_count
);
1966 for (i
= 0; i
< tv
->table
->col_count
; i
++)
1968 if (tv
->table
->colinfo
[i
].type
& MSITYPE_TEMPORARY
)
1969 InterlockedIncrement(&tv
->table
->colinfo
[i
].ref_count
);
1972 return InterlockedIncrement(&tv
->table
->ref_count
);
1975 static UINT
TABLE_remove_column(struct tagMSIVIEW
*view
, LPCWSTR table
, UINT number
)
1977 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
1978 MSIRECORD
*rec
= NULL
;
1979 MSIVIEW
*columns
= NULL
;
1982 rec
= MSI_CreateRecord(2);
1984 return ERROR_OUTOFMEMORY
;
1986 MSI_RecordSetStringW(rec
, 1, table
);
1987 MSI_RecordSetInteger(rec
, 2, number
);
1989 r
= TABLE_CreateView(tv
->db
, szColumns
, &columns
);
1990 if (r
!= ERROR_SUCCESS
)
1992 msiobj_release(&rec
->hdr
);
1996 r
= msi_table_find_row((MSITABLEVIEW
*)columns
, rec
, &row
, NULL
);
1997 if (r
!= ERROR_SUCCESS
)
2000 r
= TABLE_delete_row(columns
, row
);
2001 if (r
!= ERROR_SUCCESS
)
2004 msi_update_table_columns(tv
->db
, table
);
2007 msiobj_release(&rec
->hdr
);
2008 columns
->ops
->delete(columns
);
2012 static UINT
TABLE_release(struct tagMSIVIEW
*view
)
2014 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
2015 INT ref
= tv
->table
->ref_count
;
2018 TRACE("%p %d\n", view
, ref
);
2020 for (i
= 0; i
< tv
->table
->col_count
; i
++)
2022 if (tv
->table
->colinfo
[i
].type
& MSITYPE_TEMPORARY
)
2024 ref
= InterlockedDecrement(&tv
->table
->colinfo
[i
].ref_count
);
2027 r
= TABLE_remove_column(view
, tv
->table
->colinfo
[i
].tablename
,
2028 tv
->table
->colinfo
[i
].number
);
2029 if (r
!= ERROR_SUCCESS
)
2035 ref
= InterlockedDecrement(&tv
->table
->ref_count
);
2038 if (!tv
->table
->row_count
)
2040 list_remove(&tv
->table
->entry
);
2041 free_table(tv
->table
);
2049 static UINT
TABLE_add_column(struct tagMSIVIEW
*view
, LPCWSTR table
, UINT number
,
2050 LPCWSTR column
, UINT type
, BOOL hold
)
2052 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
2057 rec
= MSI_CreateRecord(4);
2059 return ERROR_OUTOFMEMORY
;
2061 MSI_RecordSetStringW(rec
, 1, table
);
2062 MSI_RecordSetInteger(rec
, 2, number
);
2063 MSI_RecordSetStringW(rec
, 3, column
);
2064 MSI_RecordSetInteger(rec
, 4, type
);
2066 r
= TABLE_insert_row(&tv
->view
, rec
, -1, FALSE
);
2067 if (r
!= ERROR_SUCCESS
)
2070 msi_update_table_columns(tv
->db
, table
);
2075 msitable
= find_cached_table(tv
->db
, table
);
2076 for (i
= 0; i
< msitable
->col_count
; i
++)
2078 if (!strcmpW( msitable
->colinfo
[i
].colname
, column
))
2080 InterlockedIncrement(&msitable
->colinfo
[i
].ref_count
);
2086 msiobj_release(&rec
->hdr
);
2090 static UINT
TABLE_drop(struct tagMSIVIEW
*view
)
2092 MSITABLEVIEW
*tv
= (MSITABLEVIEW
*)view
;
2093 MSIVIEW
*tables
= NULL
;
2094 MSIRECORD
*rec
= NULL
;
2098 TRACE("dropping table %s\n", debugstr_w(tv
->name
));
2100 for (i
= tv
->table
->col_count
- 1; i
>= 0; i
--)
2102 r
= TABLE_remove_column(view
, tv
->table
->colinfo
[i
].tablename
,
2103 tv
->table
->colinfo
[i
].number
);
2104 if (r
!= ERROR_SUCCESS
)
2108 rec
= MSI_CreateRecord(1);
2110 return ERROR_OUTOFMEMORY
;
2112 MSI_RecordSetStringW(rec
, 1, tv
->name
);
2114 r
= TABLE_CreateView(tv
->db
, szTables
, &tables
);
2115 if (r
!= ERROR_SUCCESS
)
2117 msiobj_release(&rec
->hdr
);
2121 r
= msi_table_find_row((MSITABLEVIEW
*)tables
, rec
, &row
, NULL
);
2122 if (r
!= ERROR_SUCCESS
)
2125 r
= TABLE_delete_row(tables
, row
);
2126 if (r
!= ERROR_SUCCESS
)
2129 list_remove(&tv
->table
->entry
);
2130 free_table(tv
->table
);
2133 msiobj_release(&rec
->hdr
);
2134 tables
->ops
->delete(tables
);
2139 static const MSIVIEWOPS table_ops
=
2149 TABLE_get_dimensions
,
2150 TABLE_get_column_info
,
2153 TABLE_find_matching_rows
,
2157 TABLE_remove_column
,
2162 UINT
TABLE_CreateView( MSIDATABASE
*db
, LPCWSTR name
, MSIVIEW
**view
)
2167 TRACE("%p %s %p\n", db
, debugstr_w(name
), view
);
2169 if ( !strcmpW( name
, szStreams
) )
2170 return STREAMS_CreateView( db
, view
);
2171 else if ( !strcmpW( name
, szStorages
) )
2172 return STORAGES_CreateView( db
, view
);
2174 sz
= FIELD_OFFSET( MSITABLEVIEW
, name
[lstrlenW( name
) + 1] );
2175 tv
= msi_alloc_zero( sz
);
2177 return ERROR_FUNCTION_FAILED
;
2179 r
= get_table( db
, name
, &tv
->table
);
2180 if( r
!= ERROR_SUCCESS
)
2183 WARN("table not found\n");
2187 TRACE("table %p found with %d columns\n", tv
->table
, tv
->table
->col_count
);
2189 /* fill the structure */
2190 tv
->view
.ops
= &table_ops
;
2192 tv
->columns
= tv
->table
->colinfo
;
2193 tv
->num_cols
= tv
->table
->col_count
;
2194 tv
->row_size
= msi_table_get_row_size( db
, tv
->table
->colinfo
, tv
->table
->col_count
, LONG_STR_BYTES
);
2196 TRACE("%s one row is %d bytes\n", debugstr_w(name
), tv
->row_size
);
2198 *view
= (MSIVIEW
*) tv
;
2199 lstrcpyW( tv
->name
, name
);
2201 return ERROR_SUCCESS
;
2204 UINT
MSI_CommitTables( MSIDATABASE
*db
)
2206 UINT r
, bytes_per_strref
;
2208 MSITABLE
*table
= NULL
;
2212 r
= msi_save_string_table( db
->strings
, db
->storage
, &bytes_per_strref
);
2213 if( r
!= ERROR_SUCCESS
)
2215 WARN("failed to save string table r=%08x\n",r
);
2219 LIST_FOR_EACH_ENTRY( table
, &db
->tables
, MSITABLE
, entry
)
2221 r
= save_table( db
, table
, bytes_per_strref
);
2222 if( r
!= ERROR_SUCCESS
)
2224 WARN("failed to save table %s (r=%08x)\n",
2225 debugstr_w(table
->name
), r
);
2230 hr
= IStorage_Commit( db
->storage
, 0 );
2233 WARN("failed to commit changes 0x%08x\n", hr
);
2234 r
= ERROR_FUNCTION_FAILED
;
2239 MSICONDITION
MSI_DatabaseIsTablePersistent( MSIDATABASE
*db
, LPCWSTR table
)
2244 TRACE("%p %s\n", db
, debugstr_w(table
));
2247 return MSICONDITION_ERROR
;
2249 r
= get_table( db
, table
, &t
);
2250 if (r
!= ERROR_SUCCESS
)
2251 return MSICONDITION_NONE
;
2253 return t
->persistent
;
2256 static UINT
read_raw_int(const BYTE
*data
, UINT col
, UINT bytes
)
2260 for (i
= 0; i
< bytes
; i
++)
2261 ret
+= (data
[col
+ i
] << i
* 8);
2266 static UINT
msi_record_encoded_stream_name( const MSITABLEVIEW
*tv
, MSIRECORD
*rec
, LPWSTR
*pstname
)
2268 LPWSTR stname
= NULL
, sval
, p
;
2272 TRACE("%p %p\n", tv
, rec
);
2274 len
= lstrlenW( tv
->name
) + 1;
2275 stname
= msi_alloc( len
*sizeof(WCHAR
) );
2278 r
= ERROR_OUTOFMEMORY
;
2282 lstrcpyW( stname
, tv
->name
);
2284 for ( i
= 0; i
< tv
->num_cols
; i
++ )
2286 if ( tv
->columns
[i
].type
& MSITYPE_KEY
)
2288 sval
= msi_dup_record_field( rec
, i
+ 1 );
2291 r
= ERROR_OUTOFMEMORY
;
2295 len
+= lstrlenW( szDot
) + lstrlenW ( sval
);
2296 p
= msi_realloc ( stname
, len
*sizeof(WCHAR
) );
2299 r
= ERROR_OUTOFMEMORY
;
2305 lstrcatW( stname
, szDot
);
2306 lstrcatW( stname
, sval
);
2314 *pstname
= encode_streamname( FALSE
, stname
);
2317 return ERROR_SUCCESS
;
2320 msi_free ( stname
);
2325 static MSIRECORD
*msi_get_transform_record( const MSITABLEVIEW
*tv
, const string_table
*st
,
2326 IStorage
*stg
, const BYTE
*rawdata
, UINT bytes_per_strref
)
2328 UINT i
, val
, ofs
= 0;
2330 MSICOLUMNINFO
*columns
= tv
->columns
;
2333 mask
= rawdata
[0] | (rawdata
[1] << 8);
2336 rec
= MSI_CreateRecord( tv
->num_cols
);
2341 for( i
=0; i
<tv
->num_cols
; i
++ )
2343 if ( (mask
&1) && (i
>=(mask
>>8)) )
2345 /* all keys must be present */
2346 if ( (~mask
&1) && (~columns
[i
].type
& MSITYPE_KEY
) && ((1<<i
) & ~mask
) )
2349 if( MSITYPE_IS_BINARY(tv
->columns
[i
].type
) )
2352 IStream
*stm
= NULL
;
2355 ofs
+= bytes_per_column( tv
->db
, &columns
[i
], bytes_per_strref
);
2357 r
= msi_record_encoded_stream_name( tv
, rec
, &encname
);
2358 if ( r
!= ERROR_SUCCESS
)
2360 msiobj_release( &rec
->hdr
);
2363 r
= IStorage_OpenStream( stg
, encname
, NULL
, STGM_READ
| STGM_SHARE_EXCLUSIVE
, 0, &stm
);
2364 if ( r
!= ERROR_SUCCESS
)
2366 msiobj_release( &rec
->hdr
);
2367 msi_free( encname
);
2371 MSI_RecordSetStream( rec
, i
+1, stm
);
2372 TRACE(" field %d [%s]\n", i
+1, debugstr_w(encname
));
2373 msi_free( encname
);
2375 else if( columns
[i
].type
& MSITYPE_STRING
)
2380 val
= read_raw_int(rawdata
, ofs
, bytes_per_strref
);
2381 sval
= msi_string_lookup( st
, val
, &len
);
2382 msi_record_set_string( rec
, i
+1, sval
, len
);
2383 TRACE(" field %d [%s]\n", i
+1, debugstr_wn(sval
, len
));
2384 ofs
+= bytes_per_strref
;
2388 UINT n
= bytes_per_column( tv
->db
, &columns
[i
], bytes_per_strref
);
2392 val
= read_raw_int(rawdata
, ofs
, n
);
2394 MSI_RecordSetInteger( rec
, i
+1, val
-0x8000 );
2395 TRACE(" field %d [0x%04x]\n", i
+1, val
);
2398 val
= read_raw_int(rawdata
, ofs
, n
);
2400 MSI_RecordSetInteger( rec
, i
+1, val
^0x80000000 );
2401 TRACE(" field %d [0x%08x]\n", i
+1, val
);
2404 ERR("oops - unknown column width %d\n", n
);
2413 static void dump_table( const string_table
*st
, const USHORT
*rawdata
, UINT rawsize
)
2416 for (i
= 0; i
< rawsize
/ 2; i
++)
2419 const WCHAR
*sval
= msi_string_lookup( st
, rawdata
[i
], &len
);
2420 MESSAGE(" %04x %s\n", rawdata
[i
], debugstr_wn(sval
, len
) );
2424 static UINT
* msi_record_to_row( const MSITABLEVIEW
*tv
, MSIRECORD
*rec
)
2428 data
= msi_alloc( tv
->num_cols
*sizeof (UINT
) );
2429 for( i
=0; i
<tv
->num_cols
; i
++ )
2433 if ( ~tv
->columns
[i
].type
& MSITYPE_KEY
)
2436 /* turn the transform column value into a row value */
2437 if ( ( tv
->columns
[i
].type
& MSITYPE_STRING
) &&
2438 ! MSITYPE_IS_BINARY(tv
->columns
[i
].type
) )
2441 const WCHAR
*str
= msi_record_get_string( rec
, i
+1, &len
);
2444 r
= msi_string2id( tv
->db
->strings
, str
, len
, &data
[i
] );
2446 /* if there's no matching string in the string table,
2447 these keys can't match any record, so fail now. */
2448 if (r
!= ERROR_SUCCESS
)
2458 data
[i
] = MSI_RecordGetInteger( rec
, i
+1 );
2460 if (data
[i
] == MSI_NULL_INTEGER
)
2462 else if ((tv
->columns
[i
].type
&0xff) == 2)
2465 data
[i
] += 0x80000000;
2471 static UINT
msi_row_matches( MSITABLEVIEW
*tv
, UINT row
, const UINT
*data
, UINT
*column
)
2473 UINT i
, r
, x
, ret
= ERROR_FUNCTION_FAILED
;
2475 for( i
=0; i
<tv
->num_cols
; i
++ )
2477 if ( ~tv
->columns
[i
].type
& MSITYPE_KEY
)
2480 /* turn the transform column value into a row value */
2481 r
= TABLE_fetch_int( &tv
->view
, row
, i
+1, &x
);
2482 if ( r
!= ERROR_SUCCESS
)
2484 ERR("TABLE_fetch_int shouldn't fail here\n");
2488 /* if this key matches, move to the next column */
2491 ret
= ERROR_FUNCTION_FAILED
;
2494 if (column
) *column
= i
;
2495 ret
= ERROR_SUCCESS
;
2500 static UINT
msi_table_find_row( MSITABLEVIEW
*tv
, MSIRECORD
*rec
, UINT
*row
, UINT
*column
)
2502 UINT i
, r
= ERROR_FUNCTION_FAILED
, *data
;
2504 data
= msi_record_to_row( tv
, rec
);
2507 for( i
= 0; i
< tv
->table
->row_count
; i
++ )
2509 r
= msi_row_matches( tv
, i
, data
, column
);
2510 if( r
== ERROR_SUCCESS
)
2526 static UINT
msi_table_load_transform( MSIDATABASE
*db
, IStorage
*stg
,
2527 string_table
*st
, TRANSFORMDATA
*transform
,
2528 UINT bytes_per_strref
)
2530 BYTE
*rawdata
= NULL
;
2531 MSITABLEVIEW
*tv
= NULL
;
2532 UINT r
, n
, sz
, i
, mask
, num_cols
, colcol
= 0, rawsize
= 0;
2533 MSIRECORD
*rec
= NULL
;
2538 return ERROR_SUCCESS
;
2540 name
= transform
->name
;
2543 TRACE("%p %p %p %s\n", db
, stg
, st
, debugstr_w(name
) );
2545 /* read the transform data */
2546 read_stream_data( stg
, name
, TRUE
, &rawdata
, &rawsize
);
2549 TRACE("table %s empty\n", debugstr_w(name
) );
2550 return ERROR_INVALID_TABLE
;
2553 /* create a table view */
2554 r
= TABLE_CreateView( db
, name
, (MSIVIEW
**) &tv
);
2555 if( r
!= ERROR_SUCCESS
)
2558 r
= tv
->view
.ops
->execute( &tv
->view
, NULL
);
2559 if( r
!= ERROR_SUCCESS
)
2562 TRACE("name = %s columns = %u row_size = %u raw size = %u\n",
2563 debugstr_w(name
), tv
->num_cols
, tv
->row_size
, rawsize
);
2565 /* interpret the data */
2566 for (n
= 0; n
< rawsize
;)
2568 mask
= rawdata
[n
] | (rawdata
[n
+ 1] << 8);
2572 * if the low bit is set, columns are continuous and
2573 * the number of columns is specified in the high byte
2576 num_cols
= mask
>> 8;
2577 if (num_cols
> tv
->num_cols
)
2579 ERR("excess columns in transform: %u > %u\n", num_cols
, tv
->num_cols
);
2583 for (i
= 0; i
< num_cols
; i
++)
2585 if( (tv
->columns
[i
].type
& MSITYPE_STRING
) &&
2586 ! MSITYPE_IS_BINARY(tv
->columns
[i
].type
) )
2587 sz
+= bytes_per_strref
;
2589 sz
+= bytes_per_column( tv
->db
, &tv
->columns
[i
], bytes_per_strref
);
2595 * If the low bit is not set, mask is a bitmask.
2596 * Excepting for key fields, which are always present,
2597 * each bit indicates that a field is present in the transform record.
2599 * mask == 0 is a special case ... only the keys will be present
2600 * and it means that this row should be deleted.
2603 num_cols
= tv
->num_cols
;
2604 for (i
= 0; i
< num_cols
; i
++)
2606 if ((tv
->columns
[i
].type
& MSITYPE_KEY
) || ((1 << i
) & mask
))
2608 if ((tv
->columns
[i
].type
& MSITYPE_STRING
) &&
2609 !MSITYPE_IS_BINARY(tv
->columns
[i
].type
))
2610 sz
+= bytes_per_strref
;
2612 sz
+= bytes_per_column( tv
->db
, &tv
->columns
[i
], bytes_per_strref
);
2617 /* check we didn't run of the end of the table */
2618 if (n
+ sz
> rawsize
)
2621 dump_table( st
, (USHORT
*)rawdata
, rawsize
);
2625 rec
= msi_get_transform_record( tv
, st
, stg
, &rawdata
[n
], bytes_per_strref
);
2630 UINT number
= MSI_NULL_INTEGER
;
2633 if (!strcmpW( name
, szColumns
))
2635 MSI_RecordGetStringW( rec
, 1, table
, &sz
);
2636 number
= MSI_RecordGetInteger( rec
, 2 );
2639 * Native msi seems writes nul into the Number (2nd) column of
2640 * the _Columns table when there are new columns
2642 if ( number
== MSI_NULL_INTEGER
)
2644 /* reset the column number on a new table */
2645 if (strcmpW( coltable
, table
))
2648 lstrcpyW( coltable
, table
);
2651 /* fix nul column numbers */
2652 MSI_RecordSetInteger( rec
, 2, ++colcol
);
2656 if (TRACE_ON(msidb
)) dump_record( rec
);
2658 r
= msi_table_find_row( tv
, rec
, &row
, NULL
);
2659 if (r
== ERROR_SUCCESS
)
2663 TRACE("deleting row [%d]:\n", row
);
2664 r
= TABLE_delete_row( &tv
->view
, row
);
2665 if (r
!= ERROR_SUCCESS
)
2666 WARN("failed to delete row %u\n", r
);
2670 TRACE("modifying full row [%d]:\n", row
);
2671 r
= TABLE_set_row( &tv
->view
, row
, rec
, (1 << tv
->num_cols
) - 1 );
2672 if (r
!= ERROR_SUCCESS
)
2673 WARN("failed to modify row %u\n", r
);
2677 TRACE("modifying masked row [%d]:\n", row
);
2678 r
= TABLE_set_row( &tv
->view
, row
, rec
, mask
);
2679 if (r
!= ERROR_SUCCESS
)
2680 WARN("failed to modify row %u\n", r
);
2685 TRACE("inserting row\n");
2686 r
= TABLE_insert_row( &tv
->view
, rec
, -1, FALSE
);
2687 if (r
!= ERROR_SUCCESS
)
2688 WARN("failed to insert row %u\n", r
);
2691 if (!strcmpW( name
, szColumns
))
2692 msi_update_table_columns( db
, table
);
2694 msiobj_release( &rec
->hdr
);
2701 /* no need to free the table, it's associated with the database */
2702 msi_free( rawdata
);
2704 tv
->view
.ops
->delete( &tv
->view
);
2706 return ERROR_SUCCESS
;
2710 * msi_table_apply_transform
2712 * Enumerate the table transforms in a transform storage and apply each one.
2714 UINT
msi_table_apply_transform( MSIDATABASE
*db
, IStorage
*stg
)
2716 struct list transforms
;
2717 IEnumSTATSTG
*stgenum
= NULL
;
2718 TRANSFORMDATA
*transform
;
2719 TRANSFORMDATA
*tables
= NULL
, *columns
= NULL
;
2722 string_table
*strings
;
2723 UINT ret
= ERROR_FUNCTION_FAILED
;
2724 UINT bytes_per_strref
;
2725 BOOL property_update
= FALSE
;
2727 TRACE("%p %p\n", db
, stg
);
2729 strings
= msi_load_string_table( stg
, &bytes_per_strref
);
2733 hr
= IStorage_EnumElements( stg
, 0, NULL
, 0, &stgenum
);
2737 list_init(&transforms
);
2741 MSITABLEVIEW
*tv
= NULL
;
2745 hr
= IEnumSTATSTG_Next( stgenum
, 1, &stat
, &count
);
2746 if (FAILED( hr
) || !count
)
2749 decode_streamname( stat
.pwcsName
, name
);
2750 CoTaskMemFree( stat
.pwcsName
);
2751 if ( name
[0] != 0x4840 )
2754 if ( !strcmpW( name
+1, szStringPool
) ||
2755 !strcmpW( name
+1, szStringData
) )
2758 transform
= msi_alloc_zero( sizeof(TRANSFORMDATA
) );
2762 list_add_tail( &transforms
, &transform
->entry
);
2764 transform
->name
= strdupW( name
+ 1 );
2766 if ( !strcmpW( transform
->name
, szTables
) )
2768 else if (!strcmpW( transform
->name
, szColumns
) )
2769 columns
= transform
;
2770 else if (!strcmpW( transform
->name
, szProperty
))
2771 property_update
= TRUE
;
2773 TRACE("transform contains stream %s\n", debugstr_w(name
));
2775 /* load the table */
2776 if (TABLE_CreateView( db
, transform
->name
, (MSIVIEW
**) &tv
) != ERROR_SUCCESS
)
2779 if (tv
->view
.ops
->execute( &tv
->view
, NULL
) != ERROR_SUCCESS
)
2781 tv
->view
.ops
->delete( &tv
->view
);
2785 tv
->view
.ops
->delete( &tv
->view
);
2789 * Apply _Tables and _Columns transforms first so that
2790 * the table metadata is correct, and empty tables exist.
2792 ret
= msi_table_load_transform( db
, stg
, strings
, tables
, bytes_per_strref
);
2793 if (ret
!= ERROR_SUCCESS
&& ret
!= ERROR_INVALID_TABLE
)
2796 ret
= msi_table_load_transform( db
, stg
, strings
, columns
, bytes_per_strref
);
2797 if (ret
!= ERROR_SUCCESS
&& ret
!= ERROR_INVALID_TABLE
)
2800 ret
= ERROR_SUCCESS
;
2802 while ( !list_empty( &transforms
) )
2804 transform
= LIST_ENTRY( list_head( &transforms
), TRANSFORMDATA
, entry
);
2806 if ( strcmpW( transform
->name
, szColumns
) &&
2807 strcmpW( transform
->name
, szTables
) &&
2808 ret
== ERROR_SUCCESS
)
2810 ret
= msi_table_load_transform( db
, stg
, strings
, transform
, bytes_per_strref
);
2813 list_remove( &transform
->entry
);
2814 msi_free( transform
->name
);
2815 msi_free( transform
);
2818 if ( ret
== ERROR_SUCCESS
)
2820 append_storage_to_db( db
, stg
);
2821 if (property_update
) msi_clone_properties( db
);
2826 IEnumSTATSTG_Release( stgenum
);
2828 msi_destroy_stringtable( strings
);