1 /*
2 * Win32 virtual memory functions
3 *
4 * Copyright 1997 Alexandre Julliard
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 "config.h"
22 #include "wine/port.h"
23
24 #include <fcntl.h>
25 #include <stdarg.h>
26 #include <stdlib.h>
27 #include <string.h>
28 #include <sys/types.h>
29 #ifdef HAVE_UNISTD_H
30 # include <unistd.h>
31 #endif
32
33 #define NONAMELESSUNION
34 #define NONAMELESSSTRUCT
35 #include "ntstatus.h"
36 #define WIN32_NO_STATUS
37 #include "windef.h"
38 #include "winbase.h"
39 #include "winnls.h"
40 #include "winternl.h"
41 #include "winerror.h"
42 #include "wine/exception.h"
43 #include "wine/debug.h"
44
45 #include "kernel_private.h"
46
47 WINE_DECLARE_DEBUG_CHANNEL(seh);
48
49 static unsigned int page_size;
50
51
52 /***********************************************************************
53 * VirtualAlloc (KERNEL32.@)
54 *
55 * Reserves or commits a region of pages in virtual address space.
56 *
57 * PARAMS
58 * addr [I] Address of region to reserve or commit.
59 * size [I] Size of region.
60 * type [I] Type of allocation.
61 * protect [I] Type of access protection.
62 *
63 * RETURNS
64 * Success: Base address of allocated region of pages.
65 * Failure: NULL.
66 */
67 LPVOID WINAPI VirtualAlloc( LPVOID addr, SIZE_T size, DWORD type, DWORD protect )
68 {
69 return VirtualAllocEx( GetCurrentProcess(), addr, size, type, protect );
70 }
71
72
73 /***********************************************************************
74 * VirtualAllocEx (KERNEL32.@)
75 *
76 * Seems to be just as VirtualAlloc, but with process handle.
77 *
78 * PARAMS
79 * hProcess [I] Handle to process to do mem operation.
80 * addr [I] Address of region to reserve or commit.
81 * size [I] Size of region.
82 * type [I] Type of allocation.
83 * protect [I] Type of access protection.
84 *
85 *
86 * RETURNS
87 * Success: Base address of allocated region of pages.
88 * Failure: NULL.
89 */
90 LPVOID WINAPI VirtualAllocEx( HANDLE hProcess, LPVOID addr, SIZE_T size,
91 DWORD type, DWORD protect )
92 {
93 LPVOID ret = addr;
94 NTSTATUS status;
95
96 if ((status = NtAllocateVirtualMemory( hProcess, &ret, 0, &size, type, protect )))
97 {
98 SetLastError( RtlNtStatusToDosError(status) );
99 ret = NULL;
100 }
101 return ret;
102 }
103
104
105 /***********************************************************************
106 * VirtualFree (KERNEL32.@)
107 *
108 * Releases or decommits a region of pages in virtual address space.
109 *
110 * PARAMS
111 * addr [I] Address of region of committed pages.
112 * size [I] Size of region.
113 * type [I] Type of operation.
114 *
115 * RETURNS
116 * Success: TRUE.
117 * Failure: FALSE.
118 */
119 BOOL WINAPI VirtualFree( LPVOID addr, SIZE_T size, DWORD type )
120 {
121 return VirtualFreeEx( GetCurrentProcess(), addr, size, type );
122 }
123
124
125 /***********************************************************************
126 * VirtualFreeEx (KERNEL32.@)
127 *
128 * Releases or decommits a region of pages in virtual address space.
129 *
130 * PARAMS
131 * process [I] Handle to process.
132 * addr [I] Address of region to free.
133 * size [I] Size of region.
134 * type [I] Type of operation.
135 *
136 * RETURNS
137 * Success: TRUE.
138 * Failure: FALSE.
139 */
140 BOOL WINAPI VirtualFreeEx( HANDLE process, LPVOID addr, SIZE_T size, DWORD type )
141 {
142 NTSTATUS status = NtFreeVirtualMemory( process, &addr, &size, type );
143 if (status) SetLastError( RtlNtStatusToDosError(status) );
144 return !status;
145 }
146
147
148 /***********************************************************************
149 * VirtualLock (KERNEL32.@)
150 *
151 * Locks the specified region of virtual address space.
152 *
153 * PARAMS
154 * addr [I] Address of first byte of range to lock.
155 * size [I] Number of bytes in range to lock.
156 *
157 * RETURNS
158 * Success: TRUE.
159 * Failure: FALSE.
160 *
161 * NOTES
162 * Always returns TRUE.
163 *
164 */
165 BOOL WINAPI VirtualLock( LPVOID addr, SIZE_T size )
166 {
167 NTSTATUS status = NtLockVirtualMemory( GetCurrentProcess(), &addr, &size, 1 );
168 if (status) SetLastError( RtlNtStatusToDosError(status) );
169 return !status;
170 }
171
172
173 /***********************************************************************
174 * VirtualUnlock (KERNEL32.@)
175 *
176 * Unlocks a range of pages in the virtual address space.
177 *
178 * PARAMS
179 * addr [I] Address of first byte of range.
180 * size [I] Number of bytes in range.
181 *
182 * RETURNS
183 * Success: TRUE.
184 * Failure: FALSE.
185 *
186 * NOTES
187 * Always returns TRUE.
188 *
189 */
190 BOOL WINAPI VirtualUnlock( LPVOID addr, SIZE_T size )
191 {
192 NTSTATUS status = NtUnlockVirtualMemory( GetCurrentProcess(), &addr, &size, 1 );
193 if (status) SetLastError( RtlNtStatusToDosError(status) );
194 return !status;
195 }
196
197
198 /***********************************************************************
199 * VirtualProtect (KERNEL32.@)
200 *
201 * Changes the access protection on a region of committed pages.
202 *
203 * PARAMS
204 * addr [I] Address of region of committed pages.
205 * size [I] Size of region.
206 * new_prot [I] Desired access protection.
207 * old_prot [O] Address of variable to get old protection.
208 *
209 * RETURNS
210 * Success: TRUE.
211 * Failure: FALSE.
212 */
213 BOOL WINAPI VirtualProtect( LPVOID addr, SIZE_T size, DWORD new_prot, LPDWORD old_prot)
214 {
215 return VirtualProtectEx( GetCurrentProcess(), addr, size, new_prot, old_prot );
216 }
217
218
219 /***********************************************************************
220 * VirtualProtectEx (KERNEL32.@)
221 *
222 * Changes the access protection on a region of committed pages in the
223 * virtual address space of a specified process.
224 *
225 * PARAMS
226 * process [I] Handle of process.
227 * addr [I] Address of region of committed pages.
228 * size [I] Size of region.
229 * new_prot [I] Desired access protection.
230 * old_prot [O] Address of variable to get old protection.
231 *
232 * RETURNS
233 * Success: TRUE.
234 * Failure: FALSE.
235 */
236 BOOL WINAPI VirtualProtectEx( HANDLE process, LPVOID addr, SIZE_T size,
237 DWORD new_prot, LPDWORD old_prot )
238 {
239 NTSTATUS status = NtProtectVirtualMemory( process, &addr, &size, new_prot, old_prot );
240 if (status) SetLastError( RtlNtStatusToDosError(status) );
241 return !status;
242 }
243
244
245 /***********************************************************************
246 * VirtualQuery (KERNEL32.@)
247 *
248 * Provides info about a range of pages in virtual address space.
249 *
250 * PARAMS
251 * addr [I] Address of region.
252 * info [O] Address of info buffer.
253 * len [I] Size of buffer.
254 *
255 * RETURNS
256 * Number of bytes returned in information buffer or 0 if
257 * addr >= 0xc0000000 (kernel space).
258 */
259 SIZE_T WINAPI VirtualQuery( LPCVOID addr, PMEMORY_BASIC_INFORMATION info,
260 SIZE_T len )
261 {
262 return VirtualQueryEx( GetCurrentProcess(), addr, info, len );
263 }
264
265
266 /***********************************************************************
267 * VirtualQueryEx (KERNEL32.@)
268 *
269 * Provides info about a range of pages in virtual address space of a
270 * specified process.
271 *
272 * PARAMS
273 * process [I] Handle to process.
274 * addr [I] Address of region.
275 * info [O] Address of info buffer.
276 * len [I] Size of buffer.
277 *
278 * RETURNS
279 * Number of bytes returned in information buffer.
280 */
281 SIZE_T WINAPI VirtualQueryEx( HANDLE process, LPCVOID addr,
282 PMEMORY_BASIC_INFORMATION info, SIZE_T len )
283 {
284 SIZE_T ret;
285 NTSTATUS status;
286
287 if ((status = NtQueryVirtualMemory( process, addr, MemoryBasicInformation, info, len, &ret )))
288 {
289 SetLastError( RtlNtStatusToDosError(status) );
290 ret = 0;
291 }
292 return ret;
293 }
294
295
296 /***********************************************************************
297 * CreateFileMappingA (KERNEL32.@)
298 *
299 * Creates a named or unnamed file-mapping object for the specified file.
300 *
301 * PARAMS
302 * hFile [I] Handle to the file to map.
303 * sa [I] Optional security attributes.
304 * protect [I] Protection for mapping object.
305 * size_high [I] High-order 32 bits of object size.
306 * size_low [I] Low-order 32 bits of object size.
307 * name [I] Name of file-mapping object.
308 *
309 * RETURNS
310 * Success: Handle.
311 * Failure: NULL. Mapping object does not exist.
312 */
313 HANDLE WINAPI CreateFileMappingA( HANDLE hFile, SECURITY_ATTRIBUTES *sa,
314 DWORD protect, DWORD size_high, DWORD size_low, LPCSTR name )
315 {
316 WCHAR buffer[MAX_PATH];
317
318 if (!name) return CreateFileMappingW( hFile, sa, protect, size_high, size_low, NULL );
319
320 if (!MultiByteToWideChar( CP_ACP, 0, name, -1, buffer, MAX_PATH ))
321 {
322 SetLastError( ERROR_FILENAME_EXCED_RANGE );
323 return 0;
324 }
325 return CreateFileMappingW( hFile, sa, protect, size_high, size_low, buffer );
326 }
327
328
329 /***********************************************************************
330 * CreateFileMappingW (KERNEL32.@)
331 *
332 * See CreateFileMappingA.
333 */
334 HANDLE WINAPI CreateFileMappingW( HANDLE hFile, LPSECURITY_ATTRIBUTES sa,
335 DWORD protect, DWORD size_high,
336 DWORD size_low, LPCWSTR name )
337 {
338 static const int sec_flags = SEC_FILE | SEC_IMAGE | SEC_RESERVE | SEC_COMMIT | SEC_NOCACHE;
339
340 HANDLE ret;
341 NTSTATUS status;
342 DWORD access, sec_type;
343 LARGE_INTEGER size;
344
345 sec_type = protect & sec_flags;
346 protect &= ~sec_flags;
347 if (!sec_type) sec_type = SEC_COMMIT;
348
349 switch(protect)
350 {
351 case 0:
352 protect = PAGE_READONLY; /* Win9x compatibility */
353 /* fall through */
354 case PAGE_READONLY:
355 case PAGE_WRITECOPY:
356 access = STANDARD_RIGHTS_REQUIRED | SECTION_QUERY | SECTION_MAP_READ | SECTION_MAP_EXECUTE;
357 break;
358 case PAGE_READWRITE:
359 access = STANDARD_RIGHTS_REQUIRED | SECTION_QUERY | SECTION_MAP_READ | SECTION_MAP_WRITE | SECTION_MAP_EXECUTE;
360 break;
361 case PAGE_EXECUTE:
362 access = STANDARD_RIGHTS_REQUIRED | SECTION_QUERY | SECTION_MAP_EXECUTE | SECTION_MAP_EXECUTE_EXPLICIT;
363 break;
364 case PAGE_EXECUTE_READ:
365 case PAGE_EXECUTE_WRITECOPY:
366 access = STANDARD_RIGHTS_REQUIRED | SECTION_QUERY | SECTION_MAP_READ | SECTION_MAP_EXECUTE | SECTION_MAP_EXECUTE_EXPLICIT;
367 break;
368 case PAGE_EXECUTE_READWRITE:
369 access = STANDARD_RIGHTS_REQUIRED | SECTION_QUERY | SECTION_MAP_READ | SECTION_MAP_WRITE | SECTION_MAP_EXECUTE | SECTION_MAP_EXECUTE_EXPLICIT;
370 break;
371 default:
372 SetLastError( ERROR_INVALID_PARAMETER );
373 return 0;
374 }
375
376 if (hFile == INVALID_HANDLE_VALUE)
377 {
378 hFile = 0;
379 if (!size_low && !size_high)
380 {
381 SetLastError( ERROR_INVALID_PARAMETER );
382 return 0;
383 }
384 }
385
386 size.u.LowPart = size_low;
387 size.u.HighPart = size_high;
388
389 if (sa || name)
390 {
391 OBJECT_ATTRIBUTES attr;
392 UNICODE_STRING nameW;
393
394 attr.Length = sizeof(attr);
395 attr.RootDirectory = 0;
396 attr.ObjectName = NULL;
397 attr.Attributes = OBJ_OPENIF | ((sa && sa->bInheritHandle) ? OBJ_INHERIT : 0);
398 attr.SecurityDescriptor = sa ? sa->lpSecurityDescriptor : NULL;
399 attr.SecurityQualityOfService = NULL;
400 if (name)
401 {
402 RtlInitUnicodeString( &nameW, name );
403 attr.ObjectName = &nameW;
404 attr.RootDirectory = get_BaseNamedObjects_handle();
405 }
406 status = NtCreateSection( &ret, access, &attr, &size, protect, sec_type, hFile );
407 }
408 else status = NtCreateSection( &ret, access, NULL, &size, protect, sec_type, hFile );
409
410 if (status == STATUS_OBJECT_NAME_EXISTS)
411 SetLastError( ERROR_ALREADY_EXISTS );
412 else
413 SetLastError( RtlNtStatusToDosError(status) );
414 return ret;
415 }
416
417
418 /***********************************************************************
419 * OpenFileMappingA (KERNEL32.@)
420 *
421 * Opens a named file-mapping object.
422 *
423 * PARAMS
424 * access [I] Access mode.
425 * inherit [I] Inherit flag.
426 * name [I] Name of file-mapping object.
427 *
428 * RETURNS
429 * Success: Handle.
430 * Failure: NULL.
431 */
432 HANDLE WINAPI OpenFileMappingA( DWORD access, BOOL inherit, LPCSTR name )
433 {
434 WCHAR buffer[MAX_PATH];
435
436 if (!name) return OpenFileMappingW( access, inherit, NULL );
437
438 if (!MultiByteToWideChar( CP_ACP, 0, name, -1, buffer, MAX_PATH ))
439 {
440 SetLastError( ERROR_FILENAME_EXCED_RANGE );
441 return 0;
442 }
443 return OpenFileMappingW( access, inherit, buffer );
444 }
445
446
447 /***********************************************************************
448 * OpenFileMappingW (KERNEL32.@)
449 *
450 * See OpenFileMappingA.
451 */
452 HANDLE WINAPI OpenFileMappingW( DWORD access, BOOL inherit, LPCWSTR name)
453 {
454 OBJECT_ATTRIBUTES attr;
455 UNICODE_STRING nameW;
456 HANDLE ret;
457 NTSTATUS status;
458
459 if (!name)
460 {
461 SetLastError( ERROR_INVALID_PARAMETER );
462 return 0;
463 }
464 attr.Length = sizeof(attr);
465 attr.RootDirectory = get_BaseNamedObjects_handle();
466 attr.ObjectName = &nameW;
467 attr.Attributes = inherit ? OBJ_INHERIT : 0;
468 attr.SecurityDescriptor = NULL;
469 attr.SecurityQualityOfService = NULL;
470 RtlInitUnicodeString( &nameW, name );
471
472 if (access == FILE_MAP_COPY) access = SECTION_MAP_READ;
473 access |= SECTION_QUERY;
474
475 if (GetVersion() & 0x80000000)
476 {
477 /* win9x doesn't do access checks, so try with full access first */
478 if (!NtOpenSection( &ret, access | SECTION_MAP_READ | SECTION_MAP_WRITE, &attr )) return ret;
479 }
480
481 if ((status = NtOpenSection( &ret, access, &attr )))
482 {
483 SetLastError( RtlNtStatusToDosError(status) );
484 ret = 0;
485 }
486 return ret;
487 }
488
489
490 /***********************************************************************
491 * MapViewOfFile (KERNEL32.@)
492 *
493 * Maps a view of a file into the address space.
494 *
495 * PARAMS
496 * mapping [I] File-mapping object to map.
497 * access [I] Access mode.
498 * offset_high [I] High-order 32 bits of file offset.
499 * offset_low [I] Low-order 32 bits of file offset.
500 * count [I] Number of bytes to map.
501 *
502 * RETURNS
503 * Success: Starting address of mapped view.
504 * Failure: NULL.
505 */
506 LPVOID WINAPI MapViewOfFile( HANDLE mapping, DWORD access,
507 DWORD offset_high, DWORD offset_low, SIZE_T count )
508 {
509 return MapViewOfFileEx( mapping, access, offset_high,
510 offset_low, count, NULL );
511 }
512
513
514 /***********************************************************************
515 * MapViewOfFileEx (KERNEL32.@)
516 *
517 * Maps a view of a file into the address space.
518 *
519 * PARAMS
520 * handle [I] File-mapping object to map.
521 * access [I] Access mode.
522 * offset_high [I] High-order 32 bits of file offset.
523 * offset_low [I] Low-order 32 bits of file offset.
524 * count [I] Number of bytes to map.
525 * addr [I] Suggested starting address for mapped view.
526 *
527 * RETURNS
528 * Success: Starting address of mapped view.
529 * Failure: NULL.
530 */
531 LPVOID WINAPI MapViewOfFileEx( HANDLE handle, DWORD access,
532 DWORD offset_high, DWORD offset_low, SIZE_T count, LPVOID addr )
533 {
534 NTSTATUS status;
535 LARGE_INTEGER offset;
536 ULONG protect;
537
538 offset.u.LowPart = offset_low;
539 offset.u.HighPart = offset_high;
540
541 if (access & FILE_MAP_WRITE) protect = PAGE_READWRITE;
542 else if (access & FILE_MAP_COPY) protect = PAGE_WRITECOPY;
543 else protect = PAGE_READONLY;
544
545 if (access & FILE_MAP_EXECUTE) protect <<= 4;
546
547 if ((status = NtMapViewOfSection( handle, GetCurrentProcess(), &addr, 0, 0, &offset,
548 &count, ViewShare, 0, protect )))
549 {
550 SetLastError( RtlNtStatusToDosError(status) );
551 addr = NULL;
552 }
553 return addr;
554 }
555
556
557 /***********************************************************************
558 * UnmapViewOfFile (KERNEL32.@)
559 *
560 * Unmaps a mapped view of a file.
561 *
562 * PARAMS
563 * addr [I] Address where mapped view begins.
564 *
565 * RETURNS
566 * Success: TRUE.
567 * Failure: FALSE.
568 *
569 */
570 BOOL WINAPI UnmapViewOfFile( LPCVOID addr )
571 {
572 NTSTATUS status = NtUnmapViewOfSection( GetCurrentProcess(), (void *)addr );
573 if (status) SetLastError( RtlNtStatusToDosError(status) );
574 return !status;
575 }
576
577
578 /***********************************************************************
579 * FlushViewOfFile (KERNEL32.@)
580 *
581 * Writes to the disk a byte range within a mapped view of a file.
582 *
583 * PARAMS
584 * base [I] Start address of byte range to flush.
585 * size [I] Number of bytes in range.
586 *
587 * RETURNS
588 * Success: TRUE.
589 * Failure: FALSE.
590 */
591 BOOL WINAPI FlushViewOfFile( LPCVOID base, SIZE_T size )
592 {
593 NTSTATUS status = NtFlushVirtualMemory( GetCurrentProcess(), &base, &size, 0 );
594 if (status)
595 {
596 if (status == STATUS_NOT_MAPPED_DATA) status = STATUS_SUCCESS;
597 else SetLastError( RtlNtStatusToDosError(status) );
598 }
599 return !status;
600 }
601
602
603 /***********************************************************************
604 * GetWriteWatch (KERNEL32.@)
605 */
606 UINT WINAPI GetWriteWatch( DWORD flags, LPVOID base, SIZE_T size, LPVOID *addresses,
607 ULONG_PTR *count, ULONG *granularity )
608 {
609 NTSTATUS status;
610
611 status = NtGetWriteWatch( GetCurrentProcess(), flags, base, size, addresses, count, granularity );
612 if (status) SetLastError( RtlNtStatusToDosError(status) );
613 return status ? ~0u : 0;
614 }
615
616
617 /***********************************************************************
618 * ResetWriteWatch (KERNEL32.@)
619 */
620 UINT WINAPI ResetWriteWatch( LPVOID base, SIZE_T size )
621 {
622 NTSTATUS status;
623
624 status = NtResetWriteWatch( GetCurrentProcess(), base, size );
625 if (status) SetLastError( RtlNtStatusToDosError(status) );
626 return status ? ~0u : 0;
627 }
628
629
630 /***********************************************************************
631 * IsBadReadPtr (KERNEL32.@)
632 *
633 * Check for read access on a memory block.
634 *
635 * ptr [I] Address of memory block.
636 * size [I] Size of block.
637 *
638 * RETURNS
639 * Success: TRUE.
640 * Failure: FALSE. Process has read access to entire block.
641 */
642 BOOL WINAPI IsBadReadPtr( LPCVOID ptr, UINT size )
643 {
644 if (!size) return FALSE; /* handle 0 size case w/o reference */
645 if (!ptr) return TRUE;
646
647 if (!page_size) page_size = getpagesize();
648 __TRY
649 {
650 volatile const char *p = ptr;
651 char dummy;
652 UINT count = size;
653
654 while (count > page_size)
655 {
656 dummy = *p;
657 p += page_size;
658 count -= page_size;
659 }
660 dummy = p[0];
661 dummy = p[count - 1];
662 }
663 __EXCEPT_PAGE_FAULT
664 {
665 TRACE_(seh)("%p caused page fault during read\n", ptr);
666 return TRUE;
667 }
668 __ENDTRY
669 return FALSE;
670 }
671
672
673 /***********************************************************************
674 * IsBadWritePtr (KERNEL32.@)
675 *
676 * Check for write access on a memory block.
677 *
678 * PARAMS
679 * ptr [I] Address of memory block.
680 * size [I] Size of block in bytes.
681 *
682 * RETURNS
683 * Success: TRUE.
684 * Failure: FALSE. Process has write access to entire block.
685 */
686 BOOL WINAPI IsBadWritePtr( LPVOID ptr, UINT size )
687 {
688 if (!size) return FALSE; /* handle 0 size case w/o reference */
689 if (!ptr) return TRUE;
690
691 if (!page_size) page_size = getpagesize();
692 __TRY
693 {
694 volatile char *p = ptr;
695 UINT count = size;
696
697 while (count > page_size)
698 {
699 *p |= 0;
700 p += page_size;
701 count -= page_size;
702 }
703 p[0] |= 0;
704 p[count - 1] |= 0;
705 }
706 __EXCEPT_PAGE_FAULT
707 {
708 TRACE_(seh)("%p caused page fault during write\n", ptr);
709 return TRUE;
710 }
711 __ENDTRY
712 return FALSE;
713 }
714
715
716 /***********************************************************************
717 * IsBadHugeReadPtr (KERNEL32.@)
718 *
719 * Check for read access on a memory block.
720 *
721 * PARAMS
722 * ptr [I] Address of memory block.
723 * size [I] Size of block.
724 *
725 * RETURNS
726 * Success: TRUE.
727 * Failure: FALSE. Process has read access to entire block.
728 */
729 BOOL WINAPI IsBadHugeReadPtr( LPCVOID ptr, UINT size )
730 {
731 return IsBadReadPtr( ptr, size );
732 }
733
734
735 /***********************************************************************
736 * IsBadHugeWritePtr (KERNEL32.@)
737 *
738 * Check for write access on a memory block.
739 *
740 * PARAMS
741 * ptr [I] Address of memory block.
742 * size [I] Size of block.
743 *
744 * RETURNS
745 * Success: TRUE.
746 * Failure: FALSE. Process has write access to entire block.
747 */
748 BOOL WINAPI IsBadHugeWritePtr( LPVOID ptr, UINT size )
749 {
750 return IsBadWritePtr( ptr, size );
751 }
752
753
754 /***********************************************************************
755 * IsBadCodePtr (KERNEL32.@)
756 *
757 * Check for read access on a memory address.
758 *
759 * PARAMS
760 * ptr [I] Address of function.
761 *
762 * RETURNS
763 * Success: TRUE.
764 * Failure: FALSE. Process has read access to specified memory.
765 */
766 BOOL WINAPI IsBadCodePtr( FARPROC ptr )
767 {
768 return IsBadReadPtr( ptr, 1 );
769 }
770
771
772 /***********************************************************************
773 * IsBadStringPtrA (KERNEL32.@)
774 *
775 * Check for read access on a range of memory pointed to by a string pointer.
776 *
777 * PARAMS
778 * str [I] Address of string.
779 * max [I] Maximum size of string.
780 *
781 * RETURNS
782 * Success: TRUE.
783 * Failure: FALSE. Read access to all bytes in string.
784 */
785 BOOL WINAPI IsBadStringPtrA( LPCSTR str, UINT max )
786 {
787 if (!str) return TRUE;
788
789 __TRY
790 {
791 volatile const char *p = str;
792 while (p != str + max) if (!*p++) break;
793 }
794 __EXCEPT_PAGE_FAULT
795 {
796 TRACE_(seh)("%p caused page fault during read\n", str);
797 return TRUE;
798 }
799 __ENDTRY
800 return FALSE;
801 }
802
803
804 /***********************************************************************
805 * IsBadStringPtrW (KERNEL32.@)
806 *
807 * See IsBadStringPtrA.
808 */
809 BOOL WINAPI IsBadStringPtrW( LPCWSTR str, UINT max )
810 {
811 if (!str) return TRUE;
812
813 __TRY
814 {
815 volatile const WCHAR *p = str;
816 while (p != str + max) if (!*p++) break;
817 }
818 __EXCEPT_PAGE_FAULT
819 {
820 TRACE_(seh)("%p caused page fault during read\n", str);
821 return TRUE;
822 }
823 __ENDTRY
824 return FALSE;
825 }
826
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