widl: Use NdrPointerFree instead of freeing by hand where possible.
[wine/multimedia.git] / dlls / kernel32 / module.c
blob8ee0fcd97ff4de5339ba8761055933be37b7c880
1 /*
2 * Modules
4 * Copyright 1995 Alexandre Julliard
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
21 #include "config.h"
22 #include "wine/port.h"
24 #include <fcntl.h>
25 #include <stdarg.h>
26 #include <stdio.h>
27 #include <stdlib.h>
28 #include <string.h>
29 #include <sys/types.h>
30 #ifdef HAVE_UNISTD_H
31 # include <unistd.h>
32 #endif
33 #include "ntstatus.h"
34 #define WIN32_NO_STATUS
35 #include "winerror.h"
36 #include "windef.h"
37 #include "winbase.h"
38 #include "winternl.h"
39 #include "kernel_private.h"
40 #include "psapi.h"
42 #include "wine/exception.h"
43 #include "wine/debug.h"
44 #include "wine/unicode.h"
46 WINE_DEFAULT_DEBUG_CHANNEL(module);
48 #define NE_FFLAGS_LIBMODULE 0x8000
50 static WCHAR *dll_directory; /* extra path for SetDllDirectoryW */
52 static CRITICAL_SECTION dlldir_section;
53 static CRITICAL_SECTION_DEBUG critsect_debug =
55 0, 0, &dlldir_section,
56 { &critsect_debug.ProcessLocksList, &critsect_debug.ProcessLocksList },
57 0, 0, { (DWORD_PTR)(__FILE__ ": dlldir_section") }
59 static CRITICAL_SECTION dlldir_section = { &critsect_debug, -1, 0, 0, 0, 0 };
62 /****************************************************************************
63 * GetDllDirectoryA (KERNEL32.@)
65 DWORD WINAPI GetDllDirectoryA( DWORD buf_len, LPSTR buffer )
67 DWORD len;
69 RtlEnterCriticalSection( &dlldir_section );
70 len = dll_directory ? FILE_name_WtoA( dll_directory, strlenW(dll_directory), NULL, 0 ) : 0;
71 if (buffer && buf_len > len)
73 if (dll_directory) FILE_name_WtoA( dll_directory, -1, buffer, buf_len );
74 else *buffer = 0;
76 else
78 len++; /* for terminating null */
79 if (buffer) *buffer = 0;
81 RtlLeaveCriticalSection( &dlldir_section );
82 return len;
86 /****************************************************************************
87 * GetDllDirectoryW (KERNEL32.@)
89 DWORD WINAPI GetDllDirectoryW( DWORD buf_len, LPWSTR buffer )
91 DWORD len;
93 RtlEnterCriticalSection( &dlldir_section );
94 len = dll_directory ? strlenW( dll_directory ) : 0;
95 if (buffer && buf_len > len)
97 if (dll_directory) memcpy( buffer, dll_directory, (len + 1) * sizeof(WCHAR) );
98 else *buffer = 0;
100 else
102 len++; /* for terminating null */
103 if (buffer) *buffer = 0;
105 RtlLeaveCriticalSection( &dlldir_section );
106 return len;
110 /****************************************************************************
111 * SetDllDirectoryA (KERNEL32.@)
113 BOOL WINAPI SetDllDirectoryA( LPCSTR dir )
115 WCHAR *dirW;
116 BOOL ret;
118 if (!(dirW = FILE_name_AtoW( dir, TRUE ))) return FALSE;
119 ret = SetDllDirectoryW( dirW );
120 HeapFree( GetProcessHeap(), 0, dirW );
121 return ret;
125 /****************************************************************************
126 * SetDllDirectoryW (KERNEL32.@)
128 BOOL WINAPI SetDllDirectoryW( LPCWSTR dir )
130 WCHAR *newdir = NULL;
132 if (dir)
134 DWORD len = (strlenW(dir) + 1) * sizeof(WCHAR);
135 if (!(newdir = HeapAlloc( GetProcessHeap(), 0, len )))
137 SetLastError( ERROR_NOT_ENOUGH_MEMORY );
138 return FALSE;
140 memcpy( newdir, dir, len );
143 RtlEnterCriticalSection( &dlldir_section );
144 HeapFree( GetProcessHeap(), 0, dll_directory );
145 dll_directory = newdir;
146 RtlLeaveCriticalSection( &dlldir_section );
147 return TRUE;
151 /****************************************************************************
152 * DisableThreadLibraryCalls (KERNEL32.@)
154 * Inform the module loader that thread notifications are not required for a dll.
156 * PARAMS
157 * hModule [I] Module handle to skip calls for
159 * RETURNS
160 * Success: TRUE. Thread attach and detach notifications will not be sent
161 * to hModule.
162 * Failure: FALSE. Use GetLastError() to determine the cause.
164 * NOTES
165 * This is typically called from the dll entry point of a dll during process
166 * attachment, for dlls that do not need to process thread notifications.
168 BOOL WINAPI DisableThreadLibraryCalls( HMODULE hModule )
170 NTSTATUS nts = LdrDisableThreadCalloutsForDll( hModule );
171 if (nts == STATUS_SUCCESS) return TRUE;
173 SetLastError( RtlNtStatusToDosError( nts ) );
174 return FALSE;
178 /* Check whether a file is an OS/2 or a very old Windows executable
179 * by testing on import of KERNEL.
181 * FIXME: is reading the module imports the only way of discerning
182 * old Windows binaries from OS/2 ones ? At least it seems so...
184 static DWORD MODULE_Decide_OS2_OldWin(HANDLE hfile, const IMAGE_DOS_HEADER *mz, const IMAGE_OS2_HEADER *ne)
186 DWORD currpos = SetFilePointer( hfile, 0, NULL, SEEK_CUR);
187 DWORD ret = BINARY_OS216;
188 LPWORD modtab = NULL;
189 LPSTR nametab = NULL;
190 DWORD len;
191 int i;
193 /* read modref table */
194 if ( (SetFilePointer( hfile, mz->e_lfanew + ne->ne_modtab, NULL, SEEK_SET ) == -1)
195 || (!(modtab = HeapAlloc( GetProcessHeap(), 0, ne->ne_cmod*sizeof(WORD))))
196 || (!(ReadFile(hfile, modtab, ne->ne_cmod*sizeof(WORD), &len, NULL)))
197 || (len != ne->ne_cmod*sizeof(WORD)) )
198 goto broken;
200 /* read imported names table */
201 if ( (SetFilePointer( hfile, mz->e_lfanew + ne->ne_imptab, NULL, SEEK_SET ) == -1)
202 || (!(nametab = HeapAlloc( GetProcessHeap(), 0, ne->ne_enttab - ne->ne_imptab)))
203 || (!(ReadFile(hfile, nametab, ne->ne_enttab - ne->ne_imptab, &len, NULL)))
204 || (len != ne->ne_enttab - ne->ne_imptab) )
205 goto broken;
207 for (i=0; i < ne->ne_cmod; i++)
209 LPSTR module = &nametab[modtab[i]];
210 TRACE("modref: %.*s\n", module[0], &module[1]);
211 if (!(strncmp(&module[1], "KERNEL", module[0])))
212 { /* very old Windows file */
213 MESSAGE("This seems to be a very old (pre-3.0) Windows executable. Expect crashes, especially if this is a real-mode binary !\n");
214 ret = BINARY_WIN16;
215 goto good;
219 broken:
220 ERR("Hmm, an error occurred. Is this binary file broken?\n");
222 good:
223 HeapFree( GetProcessHeap(), 0, modtab);
224 HeapFree( GetProcessHeap(), 0, nametab);
225 SetFilePointer( hfile, currpos, NULL, SEEK_SET); /* restore filepos */
226 return ret;
229 /***********************************************************************
230 * MODULE_GetBinaryType
232 void MODULE_get_binary_info( HANDLE hfile, struct binary_info *info )
234 union
236 struct
238 unsigned char magic[4];
239 unsigned char class;
240 unsigned char data;
241 unsigned char version;
242 unsigned char ignored[9];
243 unsigned short type;
244 unsigned short machine;
245 } elf;
246 struct
248 unsigned int magic;
249 unsigned int cputype;
250 unsigned int cpusubtype;
251 unsigned int filetype;
252 } macho;
253 IMAGE_DOS_HEADER mz;
254 } header;
256 DWORD len;
258 memset( info, 0, sizeof(*info) );
260 /* Seek to the start of the file and read the header information. */
261 if (SetFilePointer( hfile, 0, NULL, SEEK_SET ) == -1) return;
262 if (!ReadFile( hfile, &header, sizeof(header), &len, NULL ) || len != sizeof(header)) return;
264 if (!memcmp( header.elf.magic, "\177ELF", 4 ))
266 if (header.elf.class == 2) info->flags |= BINARY_FLAG_64BIT;
267 /* FIXME: we don't bother to check byte order, architecture, etc. */
268 switch(header.elf.type)
270 case 2: info->type = BINARY_UNIX_EXE; break;
271 case 3: info->type = BINARY_UNIX_LIB; break;
274 /* Mach-o File with Endian set to Big Endian or Little Endian */
275 else if (header.macho.magic == 0xfeedface || header.macho.magic == 0xcefaedfe)
277 if ((header.macho.cputype >> 24) == 1) info->flags |= BINARY_FLAG_64BIT;
278 switch(header.macho.filetype)
280 case 2: info->type = BINARY_UNIX_EXE; break;
281 case 8: info->type = BINARY_UNIX_LIB; break;
284 /* Not ELF, try DOS */
285 else if (header.mz.e_magic == IMAGE_DOS_SIGNATURE)
287 union
289 IMAGE_OS2_HEADER os2;
290 IMAGE_NT_HEADERS32 nt;
291 } ext_header;
293 /* We do have a DOS image so we will now try to seek into
294 * the file by the amount indicated by the field
295 * "Offset to extended header" and read in the
296 * "magic" field information at that location.
297 * This will tell us if there is more header information
298 * to read or not.
300 info->type = BINARY_DOS;
301 if (SetFilePointer( hfile, header.mz.e_lfanew, NULL, SEEK_SET ) == -1) return;
302 if (!ReadFile( hfile, &ext_header, sizeof(ext_header), &len, NULL ) || len < 4) return;
304 /* Reading the magic field succeeded so
305 * we will try to determine what type it is.
307 if (!memcmp( &ext_header.nt.Signature, "PE\0\0", 4 ))
309 if (len >= sizeof(ext_header.nt.FileHeader))
311 info->type = BINARY_PE;
312 if (ext_header.nt.FileHeader.Characteristics & IMAGE_FILE_DLL)
313 info->flags |= BINARY_FLAG_DLL;
314 if (len < sizeof(ext_header.nt)) /* clear remaining part of header if missing */
315 memset( (char *)&ext_header.nt + len, 0, sizeof(ext_header.nt) - len );
316 switch (ext_header.nt.OptionalHeader.Magic)
318 case IMAGE_NT_OPTIONAL_HDR32_MAGIC:
319 info->res_start = (void *)(ULONG_PTR)ext_header.nt.OptionalHeader.ImageBase;
320 info->res_end = (void *)((ULONG_PTR)ext_header.nt.OptionalHeader.ImageBase +
321 ext_header.nt.OptionalHeader.SizeOfImage);
322 break;
323 case IMAGE_NT_OPTIONAL_HDR64_MAGIC:
324 info->flags |= BINARY_FLAG_64BIT;
325 break;
329 else if (!memcmp( &ext_header.os2.ne_magic, "NE", 2 ))
331 /* This is a Windows executable (NE) header. This can
332 * mean either a 16-bit OS/2 or a 16-bit Windows or even a
333 * DOS program (running under a DOS extender). To decide
334 * which, we'll have to read the NE header.
336 if (len >= sizeof(ext_header.os2))
338 if (ext_header.os2.ne_flags & NE_FFLAGS_LIBMODULE) info->flags |= BINARY_FLAG_DLL;
339 switch ( ext_header.os2.ne_exetyp )
341 case 1: info->type = BINARY_OS216; break; /* OS/2 */
342 case 2: info->type = BINARY_WIN16; break; /* Windows */
343 case 3: info->type = BINARY_DOS; break; /* European MS-DOS 4.x */
344 case 4: info->type = BINARY_WIN16; break; /* Windows 386; FIXME: is this 32bit??? */
345 case 5: info->type = BINARY_DOS; break; /* BOSS, Borland Operating System Services */
346 /* other types, e.g. 0 is: "unknown" */
347 default: info->type = MODULE_Decide_OS2_OldWin(hfile, &header.mz, &ext_header.os2); break;
354 /***********************************************************************
355 * GetBinaryTypeW [KERNEL32.@]
357 * Determine whether a file is executable, and if so, what kind.
359 * PARAMS
360 * lpApplicationName [I] Path of the file to check
361 * lpBinaryType [O] Destination for the binary type
363 * RETURNS
364 * TRUE, if the file is an executable, in which case lpBinaryType is set.
365 * FALSE, if the file is not an executable or if the function fails.
367 * NOTES
368 * The type of executable is a property that determines which subsystem an
369 * executable file runs under. lpBinaryType can be set to one of the following
370 * values:
371 * SCS_32BIT_BINARY: A Win32 based application
372 * SCS_64BIT_BINARY: A Win64 based application
373 * SCS_DOS_BINARY: An MS-Dos based application
374 * SCS_WOW_BINARY: A Win16 based application
375 * SCS_PIF_BINARY: A PIF file that executes an MS-Dos based app
376 * SCS_POSIX_BINARY: A POSIX based application ( Not implemented )
377 * SCS_OS216_BINARY: A 16bit OS/2 based application
379 * To find the binary type, this function reads in the files header information.
380 * If extended header information is not present it will assume that the file
381 * is a DOS executable. If extended header information is present it will
382 * determine if the file is a 16, 32 or 64 bit Windows executable by checking the
383 * flags in the header.
385 * ".com" and ".pif" files are only recognized by their file name extension,
386 * as per native Windows.
388 BOOL WINAPI GetBinaryTypeW( LPCWSTR lpApplicationName, LPDWORD lpBinaryType )
390 BOOL ret = FALSE;
391 HANDLE hfile;
392 struct binary_info binary_info;
394 TRACE("%s\n", debugstr_w(lpApplicationName) );
396 /* Sanity check.
398 if ( lpApplicationName == NULL || lpBinaryType == NULL )
399 return FALSE;
401 /* Open the file indicated by lpApplicationName for reading.
403 hfile = CreateFileW( lpApplicationName, GENERIC_READ, FILE_SHARE_READ,
404 NULL, OPEN_EXISTING, 0, 0 );
405 if ( hfile == INVALID_HANDLE_VALUE )
406 return FALSE;
408 /* Check binary type
410 MODULE_get_binary_info( hfile, &binary_info );
411 switch (binary_info.type)
413 case BINARY_UNKNOWN:
415 static const WCHAR comW[] = { '.','C','O','M',0 };
416 static const WCHAR pifW[] = { '.','P','I','F',0 };
417 const WCHAR *ptr;
419 /* try to determine from file name */
420 ptr = strrchrW( lpApplicationName, '.' );
421 if (!ptr) break;
422 if (!strcmpiW( ptr, comW ))
424 *lpBinaryType = SCS_DOS_BINARY;
425 ret = TRUE;
427 else if (!strcmpiW( ptr, pifW ))
429 *lpBinaryType = SCS_PIF_BINARY;
430 ret = TRUE;
432 break;
434 case BINARY_PE:
435 *lpBinaryType = (binary_info.flags & BINARY_FLAG_64BIT) ? SCS_64BIT_BINARY : SCS_32BIT_BINARY;
436 ret = TRUE;
437 break;
438 case BINARY_WIN16:
439 *lpBinaryType = SCS_WOW_BINARY;
440 ret = TRUE;
441 break;
442 case BINARY_OS216:
443 *lpBinaryType = SCS_OS216_BINARY;
444 ret = TRUE;
445 break;
446 case BINARY_DOS:
447 *lpBinaryType = SCS_DOS_BINARY;
448 ret = TRUE;
449 break;
450 case BINARY_UNIX_EXE:
451 case BINARY_UNIX_LIB:
452 ret = FALSE;
453 break;
456 CloseHandle( hfile );
457 return ret;
460 /***********************************************************************
461 * GetBinaryTypeA [KERNEL32.@]
462 * GetBinaryType [KERNEL32.@]
464 * See GetBinaryTypeW.
466 BOOL WINAPI GetBinaryTypeA( LPCSTR lpApplicationName, LPDWORD lpBinaryType )
468 ANSI_STRING app_nameA;
469 NTSTATUS status;
471 TRACE("%s\n", debugstr_a(lpApplicationName));
473 /* Sanity check.
475 if ( lpApplicationName == NULL || lpBinaryType == NULL )
476 return FALSE;
478 RtlInitAnsiString(&app_nameA, lpApplicationName);
479 status = RtlAnsiStringToUnicodeString(&NtCurrentTeb()->StaticUnicodeString,
480 &app_nameA, FALSE);
481 if (!status)
482 return GetBinaryTypeW(NtCurrentTeb()->StaticUnicodeString.Buffer, lpBinaryType);
484 SetLastError(RtlNtStatusToDosError(status));
485 return FALSE;
488 /***********************************************************************
489 * GetModuleHandleExA (KERNEL32.@)
491 BOOL WINAPI GetModuleHandleExA( DWORD flags, LPCSTR name, HMODULE *module )
493 WCHAR *nameW;
495 if (!name || (flags & GET_MODULE_HANDLE_EX_FLAG_FROM_ADDRESS))
496 return GetModuleHandleExW( flags, (LPCWSTR)name, module );
498 if (!(nameW = FILE_name_AtoW( name, FALSE ))) return FALSE;
499 return GetModuleHandleExW( flags, nameW, module );
502 /***********************************************************************
503 * GetModuleHandleExW (KERNEL32.@)
505 BOOL WINAPI GetModuleHandleExW( DWORD flags, LPCWSTR name, HMODULE *module )
507 NTSTATUS status = STATUS_SUCCESS;
508 HMODULE ret;
509 ULONG magic;
511 /* if we are messing with the refcount, grab the loader lock */
512 if ((flags & GET_MODULE_HANDLE_EX_FLAG_PIN) ||
513 !(flags & GET_MODULE_HANDLE_EX_FLAG_UNCHANGED_REFCOUNT))
514 LdrLockLoaderLock( 0, NULL, &magic );
516 if (!name)
518 ret = NtCurrentTeb()->Peb->ImageBaseAddress;
520 else if (flags & GET_MODULE_HANDLE_EX_FLAG_FROM_ADDRESS)
522 void *dummy;
523 if (!(ret = RtlPcToFileHeader( (void *)name, &dummy ))) status = STATUS_DLL_NOT_FOUND;
525 else
527 UNICODE_STRING wstr;
528 RtlInitUnicodeString( &wstr, name );
529 status = LdrGetDllHandle( NULL, 0, &wstr, &ret );
532 if (status == STATUS_SUCCESS)
534 if (flags & GET_MODULE_HANDLE_EX_FLAG_PIN)
535 FIXME( "should pin refcount for %p\n", ret );
536 else if (!(flags & GET_MODULE_HANDLE_EX_FLAG_UNCHANGED_REFCOUNT))
537 LdrAddRefDll( 0, ret );
539 else SetLastError( RtlNtStatusToDosError( status ) );
541 if ((flags & GET_MODULE_HANDLE_EX_FLAG_PIN) ||
542 !(flags & GET_MODULE_HANDLE_EX_FLAG_UNCHANGED_REFCOUNT))
543 LdrUnlockLoaderLock( 0, magic );
545 if (module) *module = ret;
546 return (status == STATUS_SUCCESS);
549 /***********************************************************************
550 * GetModuleHandleA (KERNEL32.@)
552 * Get the handle of a dll loaded into the process address space.
554 * PARAMS
555 * module [I] Name of the dll
557 * RETURNS
558 * Success: A handle to the loaded dll.
559 * Failure: A NULL handle. Use GetLastError() to determine the cause.
561 HMODULE WINAPI GetModuleHandleA(LPCSTR module)
563 HMODULE ret;
565 if (!GetModuleHandleExA( GET_MODULE_HANDLE_EX_FLAG_UNCHANGED_REFCOUNT, module, &ret )) ret = 0;
566 return ret;
569 /***********************************************************************
570 * GetModuleHandleW (KERNEL32.@)
572 * Unicode version of GetModuleHandleA.
574 HMODULE WINAPI GetModuleHandleW(LPCWSTR module)
576 HMODULE ret;
578 if (!GetModuleHandleExW( GET_MODULE_HANDLE_EX_FLAG_UNCHANGED_REFCOUNT, module, &ret )) ret = 0;
579 return ret;
583 /***********************************************************************
584 * GetModuleFileNameA (KERNEL32.@)
586 * Get the file name of a loaded module from its handle.
588 * RETURNS
589 * Success: The length of the file name, excluding the terminating NUL.
590 * Failure: 0. Use GetLastError() to determine the cause.
592 * NOTES
593 * This function always returns the long path of hModule
594 * The function doesn't write a terminating '\0' if the buffer is too
595 * small.
597 DWORD WINAPI GetModuleFileNameA(
598 HMODULE hModule, /* [in] Module handle (32 bit) */
599 LPSTR lpFileName, /* [out] Destination for file name */
600 DWORD size ) /* [in] Size of lpFileName in characters */
602 LPWSTR filenameW = HeapAlloc( GetProcessHeap(), 0, size * sizeof(WCHAR) );
603 DWORD len;
605 if (!filenameW)
607 SetLastError( ERROR_NOT_ENOUGH_MEMORY );
608 return 0;
610 if ((len = GetModuleFileNameW( hModule, filenameW, size )))
612 len = FILE_name_WtoA( filenameW, len, lpFileName, size );
613 if (len < size)
614 lpFileName[len] = '\0';
615 else
616 SetLastError( ERROR_INSUFFICIENT_BUFFER );
618 HeapFree( GetProcessHeap(), 0, filenameW );
619 return len;
622 /***********************************************************************
623 * GetModuleFileNameW (KERNEL32.@)
625 * Unicode version of GetModuleFileNameA.
627 DWORD WINAPI GetModuleFileNameW( HMODULE hModule, LPWSTR lpFileName, DWORD size )
629 ULONG magic, len = 0;
630 LDR_MODULE *pldr;
631 NTSTATUS nts;
632 WIN16_SUBSYSTEM_TIB *win16_tib;
634 if (!hModule && ((win16_tib = NtCurrentTeb()->Tib.SubSystemTib)) && win16_tib->exe_name)
636 len = min(size, win16_tib->exe_name->Length / sizeof(WCHAR));
637 memcpy( lpFileName, win16_tib->exe_name->Buffer, len * sizeof(WCHAR) );
638 if (len < size) lpFileName[len] = '\0';
639 goto done;
642 LdrLockLoaderLock( 0, NULL, &magic );
644 if (!hModule) hModule = NtCurrentTeb()->Peb->ImageBaseAddress;
645 nts = LdrFindEntryForAddress( hModule, &pldr );
646 if (nts == STATUS_SUCCESS)
648 len = min(size, pldr->FullDllName.Length / sizeof(WCHAR));
649 memcpy(lpFileName, pldr->FullDllName.Buffer, len * sizeof(WCHAR));
650 if (len < size)
651 lpFileName[len] = '\0';
652 else
653 SetLastError( ERROR_INSUFFICIENT_BUFFER );
655 else SetLastError( RtlNtStatusToDosError( nts ) );
657 LdrUnlockLoaderLock( 0, magic );
658 done:
659 TRACE( "%s\n", debugstr_wn(lpFileName, len) );
660 return len;
664 /***********************************************************************
665 * get_dll_system_path
667 static const WCHAR *get_dll_system_path(void)
669 static WCHAR *cached_path;
671 if (!cached_path)
673 WCHAR *p, *path;
674 int len = 3;
676 len += 2 * GetSystemDirectoryW( NULL, 0 );
677 len += GetWindowsDirectoryW( NULL, 0 );
678 p = path = HeapAlloc( GetProcessHeap(), 0, len * sizeof(WCHAR) );
679 *p++ = '.';
680 *p++ = ';';
681 GetSystemDirectoryW( p, path + len - p);
682 p += strlenW(p);
683 /* if system directory ends in "32" add 16-bit version too */
684 if (p[-2] == '3' && p[-1] == '2')
686 *p++ = ';';
687 GetSystemDirectoryW( p, path + len - p);
688 p += strlenW(p) - 2;
690 *p++ = ';';
691 GetWindowsDirectoryW( p, path + len - p);
692 cached_path = path;
694 return cached_path;
697 /******************************************************************
698 * get_module_path_end
700 * Returns the end of the directory component of the module path.
702 static inline const WCHAR *get_module_path_end(const WCHAR *module)
704 const WCHAR *p;
705 const WCHAR *mod_end = module;
706 if (!module) return mod_end;
708 if ((p = strrchrW( mod_end, '\\' ))) mod_end = p;
709 if ((p = strrchrW( mod_end, '/' ))) mod_end = p;
710 if (mod_end == module + 2 && module[1] == ':') mod_end++;
711 if (mod_end == module && module[0] && module[1] == ':') mod_end += 2;
713 return mod_end;
716 /******************************************************************
717 * MODULE_get_dll_load_path
719 * Compute the load path to use for a given dll.
720 * Returned pointer must be freed by caller.
722 WCHAR *MODULE_get_dll_load_path( LPCWSTR module )
724 static const WCHAR pathW[] = {'P','A','T','H',0};
726 const WCHAR *system_path = get_dll_system_path();
727 const WCHAR *mod_end = NULL;
728 UNICODE_STRING name, value;
729 WCHAR *p, *ret;
730 int len = 0, path_len = 0;
732 /* adjust length for module name */
734 if (module)
735 mod_end = get_module_path_end( module );
736 /* if module is NULL or doesn't contain a path, fall back to directory
737 * process was loaded from */
738 if (module == mod_end)
740 module = NtCurrentTeb()->Peb->ProcessParameters->ImagePathName.Buffer;
741 mod_end = get_module_path_end( module );
743 len += (mod_end - module) + 1;
745 len += strlenW( system_path ) + 2;
747 /* get the PATH variable */
749 RtlInitUnicodeString( &name, pathW );
750 value.Length = 0;
751 value.MaximumLength = 0;
752 value.Buffer = NULL;
753 if (RtlQueryEnvironmentVariable_U( NULL, &name, &value ) == STATUS_BUFFER_TOO_SMALL)
754 path_len = value.Length;
756 RtlEnterCriticalSection( &dlldir_section );
757 if (dll_directory) len += strlenW(dll_directory) + 1;
758 if ((p = ret = HeapAlloc( GetProcessHeap(), 0, path_len + len * sizeof(WCHAR) )))
760 if (module)
762 memcpy( ret, module, (mod_end - module) * sizeof(WCHAR) );
763 p += (mod_end - module);
764 *p++ = ';';
766 if (dll_directory)
768 strcpyW( p, dll_directory );
769 p += strlenW(p);
770 *p++ = ';';
773 RtlLeaveCriticalSection( &dlldir_section );
774 if (!ret) return NULL;
776 strcpyW( p, system_path );
777 p += strlenW(p);
778 *p++ = ';';
779 value.Buffer = p;
780 value.MaximumLength = path_len;
782 while (RtlQueryEnvironmentVariable_U( NULL, &name, &value ) == STATUS_BUFFER_TOO_SMALL)
784 WCHAR *new_ptr;
786 /* grow the buffer and retry */
787 path_len = value.Length;
788 if (!(new_ptr = HeapReAlloc( GetProcessHeap(), 0, ret, path_len + len * sizeof(WCHAR) )))
790 HeapFree( GetProcessHeap(), 0, ret );
791 return NULL;
793 value.Buffer = new_ptr + (value.Buffer - ret);
794 value.MaximumLength = path_len;
795 ret = new_ptr;
797 value.Buffer[value.Length / sizeof(WCHAR)] = 0;
798 return ret;
802 /******************************************************************
803 * load_library_as_datafile
805 static BOOL load_library_as_datafile( LPCWSTR name, HMODULE* hmod)
807 static const WCHAR dotDLL[] = {'.','d','l','l',0};
809 WCHAR filenameW[MAX_PATH];
810 HANDLE hFile = INVALID_HANDLE_VALUE;
811 HANDLE mapping;
812 HMODULE module;
814 *hmod = 0;
816 if (SearchPathW( NULL, name, dotDLL, sizeof(filenameW) / sizeof(filenameW[0]),
817 filenameW, NULL ))
819 hFile = CreateFileW( filenameW, GENERIC_READ, FILE_SHARE_READ,
820 NULL, OPEN_EXISTING, 0, 0 );
822 if (hFile == INVALID_HANDLE_VALUE) return FALSE;
824 mapping = CreateFileMappingW( hFile, NULL, PAGE_READONLY, 0, 0, NULL );
825 CloseHandle( hFile );
826 if (!mapping) return FALSE;
828 module = MapViewOfFile( mapping, FILE_MAP_READ, 0, 0, 0 );
829 CloseHandle( mapping );
830 if (!module) return FALSE;
832 /* make sure it's a valid PE file */
833 if (!RtlImageNtHeader(module))
835 UnmapViewOfFile( module );
836 return FALSE;
838 *hmod = (HMODULE)((char *)module + 1); /* set low bit of handle to indicate datafile module */
839 return TRUE;
843 /******************************************************************
844 * load_library
846 * Helper for LoadLibraryExA/W.
848 static HMODULE load_library( const UNICODE_STRING *libname, DWORD flags )
850 NTSTATUS nts;
851 HMODULE hModule;
852 WCHAR *load_path;
853 static const DWORD unsupported_flags =
854 LOAD_IGNORE_CODE_AUTHZ_LEVEL |
855 LOAD_LIBRARY_AS_IMAGE_RESOURCE |
856 LOAD_LIBRARY_AS_DATAFILE_EXCLUSIVE |
857 LOAD_LIBRARY_REQUIRE_SIGNED_TARGET;
859 if( flags & unsupported_flags)
860 FIXME("unsupported flag(s) used (flags: 0x%08x)\n", flags);
862 load_path = MODULE_get_dll_load_path( flags & LOAD_WITH_ALTERED_SEARCH_PATH ? libname->Buffer : NULL );
864 if (flags & LOAD_LIBRARY_AS_DATAFILE)
866 ULONG magic;
868 LdrLockLoaderLock( 0, NULL, &magic );
869 if (!LdrGetDllHandle( load_path, flags, libname, &hModule ))
871 LdrAddRefDll( 0, hModule );
872 LdrUnlockLoaderLock( 0, magic );
873 goto done;
875 LdrUnlockLoaderLock( 0, magic );
877 /* The method in load_library_as_datafile allows searching for the
878 * 'native' libraries only
880 if (load_library_as_datafile( libname->Buffer, &hModule )) goto done;
881 flags |= DONT_RESOLVE_DLL_REFERENCES; /* Just in case */
882 /* Fallback to normal behaviour */
885 nts = LdrLoadDll( load_path, flags, libname, &hModule );
886 if (nts != STATUS_SUCCESS)
888 hModule = 0;
889 SetLastError( RtlNtStatusToDosError( nts ) );
891 done:
892 HeapFree( GetProcessHeap(), 0, load_path );
893 return hModule;
897 /******************************************************************
898 * LoadLibraryExA (KERNEL32.@)
900 * Load a dll file into the process address space.
902 * PARAMS
903 * libname [I] Name of the file to load
904 * hfile [I] Reserved, must be 0.
905 * flags [I] Flags for loading the dll
907 * RETURNS
908 * Success: A handle to the loaded dll.
909 * Failure: A NULL handle. Use GetLastError() to determine the cause.
911 * NOTES
912 * The HFILE parameter is not used and marked reserved in the SDK. I can
913 * only guess that it should force a file to be mapped, but I rather
914 * ignore the parameter because it would be extremely difficult to
915 * integrate this with different types of module representations.
917 HMODULE WINAPI DECLSPEC_HOTPATCH LoadLibraryExA(LPCSTR libname, HANDLE hfile, DWORD flags)
919 WCHAR *libnameW;
921 if (!(libnameW = FILE_name_AtoW( libname, FALSE ))) return 0;
922 return LoadLibraryExW( libnameW, hfile, flags );
925 /***********************************************************************
926 * LoadLibraryExW (KERNEL32.@)
928 * Unicode version of LoadLibraryExA.
930 HMODULE WINAPI DECLSPEC_HOTPATCH LoadLibraryExW(LPCWSTR libnameW, HANDLE hfile, DWORD flags)
932 UNICODE_STRING wstr;
933 HMODULE res;
935 if (!libnameW)
937 SetLastError(ERROR_INVALID_PARAMETER);
938 return 0;
940 RtlInitUnicodeString( &wstr, libnameW );
941 if (wstr.Buffer[wstr.Length/sizeof(WCHAR) - 1] != ' ')
942 return load_library( &wstr, flags );
944 /* Library name has trailing spaces */
945 RtlCreateUnicodeString( &wstr, libnameW );
946 while (wstr.Length > sizeof(WCHAR) &&
947 wstr.Buffer[wstr.Length/sizeof(WCHAR) - 1] == ' ')
949 wstr.Length -= sizeof(WCHAR);
951 wstr.Buffer[wstr.Length/sizeof(WCHAR)] = '\0';
952 res = load_library( &wstr, flags );
953 RtlFreeUnicodeString( &wstr );
954 return res;
957 /***********************************************************************
958 * LoadLibraryA (KERNEL32.@)
960 * Load a dll file into the process address space.
962 * PARAMS
963 * libname [I] Name of the file to load
965 * RETURNS
966 * Success: A handle to the loaded dll.
967 * Failure: A NULL handle. Use GetLastError() to determine the cause.
969 * NOTES
970 * See LoadLibraryExA().
972 HMODULE WINAPI DECLSPEC_HOTPATCH LoadLibraryA(LPCSTR libname)
974 return LoadLibraryExA(libname, 0, 0);
977 /***********************************************************************
978 * LoadLibraryW (KERNEL32.@)
980 * Unicode version of LoadLibraryA.
982 HMODULE WINAPI DECLSPEC_HOTPATCH LoadLibraryW(LPCWSTR libnameW)
984 return LoadLibraryExW(libnameW, 0, 0);
987 /***********************************************************************
988 * FreeLibrary (KERNEL32.@)
990 * Free a dll loaded into the process address space.
992 * PARAMS
993 * hLibModule [I] Handle to the dll returned by LoadLibraryA().
995 * RETURNS
996 * Success: TRUE. The dll is removed if it is not still in use.
997 * Failure: FALSE. Use GetLastError() to determine the cause.
999 BOOL WINAPI DECLSPEC_HOTPATCH FreeLibrary(HINSTANCE hLibModule)
1001 BOOL retv = FALSE;
1002 NTSTATUS nts;
1004 if (!hLibModule)
1006 SetLastError( ERROR_INVALID_HANDLE );
1007 return FALSE;
1010 if ((ULONG_PTR)hLibModule & 1)
1012 /* this is a LOAD_LIBRARY_AS_DATAFILE module */
1013 char *ptr = (char *)hLibModule - 1;
1014 return UnmapViewOfFile( ptr );
1017 if ((nts = LdrUnloadDll( hLibModule )) == STATUS_SUCCESS) retv = TRUE;
1018 else SetLastError( RtlNtStatusToDosError( nts ) );
1020 return retv;
1023 /***********************************************************************
1024 * GetProcAddress (KERNEL32.@)
1026 * Find the address of an exported symbol in a loaded dll.
1028 * PARAMS
1029 * hModule [I] Handle to the dll returned by LoadLibraryA().
1030 * function [I] Name of the symbol, or an integer ordinal number < 16384
1032 * RETURNS
1033 * Success: A pointer to the symbol in the process address space.
1034 * Failure: NULL. Use GetLastError() to determine the cause.
1036 FARPROC WINAPI GetProcAddress( HMODULE hModule, LPCSTR function )
1038 NTSTATUS nts;
1039 FARPROC fp;
1041 if (!hModule) hModule = NtCurrentTeb()->Peb->ImageBaseAddress;
1043 if ((ULONG_PTR)function >> 16)
1045 ANSI_STRING str;
1047 RtlInitAnsiString( &str, function );
1048 nts = LdrGetProcedureAddress( hModule, &str, 0, (void**)&fp );
1050 else
1051 nts = LdrGetProcedureAddress( hModule, NULL, LOWORD(function), (void**)&fp );
1052 if (nts != STATUS_SUCCESS)
1054 SetLastError( RtlNtStatusToDosError( nts ) );
1055 fp = NULL;
1057 return fp;
1060 /***********************************************************************
1061 * DelayLoadFailureHook (KERNEL32.@)
1063 FARPROC WINAPI DelayLoadFailureHook( LPCSTR name, LPCSTR function )
1065 ULONG_PTR args[2];
1067 if ((ULONG_PTR)function >> 16)
1068 ERR( "failed to delay load %s.%s\n", name, function );
1069 else
1070 ERR( "failed to delay load %s.%u\n", name, LOWORD(function) );
1071 args[0] = (ULONG_PTR)name;
1072 args[1] = (ULONG_PTR)function;
1073 RaiseException( EXCEPTION_WINE_STUB, EH_NONCONTINUABLE, 2, args );
1074 return NULL;
1077 typedef struct {
1078 HANDLE process;
1079 PLIST_ENTRY head, current;
1080 LDR_MODULE ldr_module;
1081 } MODULE_ITERATOR;
1083 static BOOL init_module_iterator(MODULE_ITERATOR *iter, HANDLE process)
1085 PROCESS_BASIC_INFORMATION pbi;
1086 PPEB_LDR_DATA ldr_data;
1087 NTSTATUS status;
1089 /* Get address of PEB */
1090 status = NtQueryInformationProcess(process, ProcessBasicInformation,
1091 &pbi, sizeof(pbi), NULL);
1092 if (status != STATUS_SUCCESS)
1094 SetLastError(RtlNtStatusToDosError(status));
1095 return FALSE;
1098 /* Read address of LdrData from PEB */
1099 if (!ReadProcessMemory(process, &pbi.PebBaseAddress->LdrData,
1100 &ldr_data, sizeof(ldr_data), NULL))
1101 return FALSE;
1103 /* Read address of first module from LdrData */
1104 if (!ReadProcessMemory(process,
1105 &ldr_data->InLoadOrderModuleList.Flink,
1106 &iter->current, sizeof(iter->current), NULL))
1107 return FALSE;
1109 iter->head = &ldr_data->InLoadOrderModuleList;
1110 iter->process = process;
1112 return TRUE;
1115 static int module_iterator_next(MODULE_ITERATOR *iter)
1117 if (iter->current == iter->head)
1118 return 0;
1120 if (!ReadProcessMemory(iter->process,
1121 CONTAINING_RECORD(iter->current, LDR_MODULE, InLoadOrderModuleList),
1122 &iter->ldr_module, sizeof(iter->ldr_module), NULL))
1123 return -1;
1125 iter->current = iter->ldr_module.InLoadOrderModuleList.Flink;
1126 return 1;
1129 static BOOL get_ldr_module(HANDLE process, HMODULE module, LDR_MODULE *ldr_module)
1131 MODULE_ITERATOR iter;
1132 INT ret;
1134 if (!init_module_iterator(&iter, process))
1135 return FALSE;
1137 while ((ret = module_iterator_next(&iter)) > 0)
1138 /* When hModule is NULL we return the process image - which will be
1139 * the first module since our iterator uses InLoadOrderModuleList */
1140 if (!module || module == iter.ldr_module.BaseAddress)
1142 *ldr_module = iter.ldr_module;
1143 return TRUE;
1146 if (ret == 0)
1147 SetLastError(ERROR_INVALID_HANDLE);
1149 return FALSE;
1152 /***********************************************************************
1153 * K32EnumProcessModules (KERNEL32.@)
1155 * NOTES
1156 * Returned list is in load order.
1158 BOOL WINAPI K32EnumProcessModules(HANDLE process, HMODULE *lphModule,
1159 DWORD cb, DWORD *needed)
1161 MODULE_ITERATOR iter;
1162 INT ret;
1164 if (!init_module_iterator(&iter, process))
1165 return FALSE;
1167 *needed = 0;
1169 while ((ret = module_iterator_next(&iter)) > 0)
1171 if (cb >= sizeof(HMODULE))
1173 *lphModule++ = iter.ldr_module.BaseAddress;
1174 cb -= sizeof(HMODULE);
1176 *needed += sizeof(HMODULE);
1179 return ret == 0;
1182 /***********************************************************************
1183 * K32GetModuleBaseNameW (KERNEL32.@)
1185 DWORD WINAPI K32GetModuleBaseNameW(HANDLE process, HMODULE module,
1186 LPWSTR base_name, DWORD size)
1188 LDR_MODULE ldr_module;
1190 if (!get_ldr_module(process, module, &ldr_module))
1191 return 0;
1193 size = min(ldr_module.BaseDllName.Length / sizeof(WCHAR), size);
1194 if (!ReadProcessMemory(process, ldr_module.BaseDllName.Buffer,
1195 base_name, size * sizeof(WCHAR), NULL))
1196 return 0;
1198 base_name[size] = 0;
1199 return size;
1202 /***********************************************************************
1203 * K32GetModuleBaseNameA (KERNEL32.@)
1205 DWORD WINAPI K32GetModuleBaseNameA(HANDLE process, HMODULE module,
1206 LPSTR base_name, DWORD size)
1208 WCHAR *base_name_w;
1209 DWORD len, ret = 0;
1211 if(!base_name || !size) {
1212 SetLastError(ERROR_INVALID_PARAMETER);
1213 return 0;
1216 base_name_w = HeapAlloc(GetProcessHeap(), 0, sizeof(WCHAR) * size);
1217 if(!base_name_w)
1218 return 0;
1220 len = K32GetModuleBaseNameW(process, module, base_name_w, size);
1221 TRACE("%d, %s\n", len, debugstr_w(base_name_w));
1222 if (len)
1224 ret = WideCharToMultiByte(CP_ACP, 0, base_name_w, len,
1225 base_name, size, NULL, NULL);
1226 if (ret < size) base_name[ret] = 0;
1228 HeapFree(GetProcessHeap(), 0, base_name_w);
1229 return ret;
1232 /***********************************************************************
1233 * K32GetModuleFileNameExW (KERNEL32.@)
1235 DWORD WINAPI K32GetModuleFileNameExW(HANDLE process, HMODULE module,
1236 LPWSTR file_name, DWORD size)
1238 LDR_MODULE ldr_module;
1240 if(!get_ldr_module(process, module, &ldr_module))
1241 return 0;
1243 size = min(ldr_module.FullDllName.Length / sizeof(WCHAR), size);
1244 if (!ReadProcessMemory(process, ldr_module.FullDllName.Buffer,
1245 file_name, size * sizeof(WCHAR), NULL))
1246 return 0;
1248 file_name[size] = 0;
1249 return size;
1252 /***********************************************************************
1253 * K32GetModuleFileNameExA (KERNEL32.@)
1255 DWORD WINAPI K32GetModuleFileNameExA(HANDLE process, HMODULE module,
1256 LPSTR file_name, DWORD size)
1258 WCHAR *ptr;
1260 TRACE("(hProcess=%p, hModule=%p, %p, %d)\n", process, module, file_name, size);
1262 if (!file_name || !size) return 0;
1264 if ( process == GetCurrentProcess() )
1266 DWORD len = GetModuleFileNameA( module, file_name, size );
1267 if (size) file_name[size - 1] = '\0';
1268 return len;
1271 if (!(ptr = HeapAlloc(GetProcessHeap(), 0, size * sizeof(WCHAR)))) return 0;
1273 if (!K32GetModuleFileNameExW(process, module, ptr, size))
1275 file_name[0] = '\0';
1277 else
1279 if (!WideCharToMultiByte( CP_ACP, 0, ptr, -1, file_name, size, NULL, NULL ))
1280 file_name[size - 1] = 0;
1283 HeapFree(GetProcessHeap(), 0, ptr);
1284 return strlen(file_name);
1287 /***********************************************************************
1288 * K32GetModuleInformation (KERNEL32.@)
1290 BOOL WINAPI K32GetModuleInformation(HANDLE process, HMODULE module,
1291 MODULEINFO *modinfo, DWORD cb)
1293 LDR_MODULE ldr_module;
1295 if (cb < sizeof(MODULEINFO))
1297 SetLastError(ERROR_INSUFFICIENT_BUFFER);
1298 return FALSE;
1301 if (!get_ldr_module(process, module, &ldr_module))
1302 return FALSE;
1304 modinfo->lpBaseOfDll = ldr_module.BaseAddress;
1305 modinfo->SizeOfImage = ldr_module.SizeOfImage;
1306 modinfo->EntryPoint = ldr_module.EntryPoint;
1307 return TRUE;
1310 #ifdef __i386__
1312 /***********************************************************************
1313 * __wine_dll_register_16 (KERNEL32.@)
1315 * No longer used.
1317 void __wine_dll_register_16( const IMAGE_DOS_HEADER *header, const char *file_name )
1319 ERR( "loading old style 16-bit dll %s no longer supported\n", file_name );
1323 /***********************************************************************
1324 * __wine_dll_unregister_16 (KERNEL32.@)
1326 * No longer used.
1328 void __wine_dll_unregister_16( const IMAGE_DOS_HEADER *header )
1332 #endif