630 lines
18 KiB
C
630 lines
18 KiB
C
/*
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* Win32 heap functions
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*
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* Copyright 1995, 1996 Alexandre Julliard
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* Copyright 1996 Huw Davies
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* Copyright 1998 Ulrich Weigand
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301, USA
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*/
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#include <assert.h>
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#include <limits.h>
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#include <stdlib.h>
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#include <stdarg.h>
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#include <stdio.h>
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#include <string.h>
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#include <sys/types.h>
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#include "windef.h"
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#include "winbase.h"
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#include "winerror.h"
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#include "winnt.h"
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#include "winternl.h"
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#include "kernel_private.h"
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#include "wine/exception.h"
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#include "wine/debug.h"
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WINE_DEFAULT_DEBUG_CHANNEL(globalmem);
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/* address where we try to map the system heap */
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#define SYSTEM_HEAP_BASE ((void*)0x80000000)
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#define SYSTEM_HEAP_SIZE 0x1000000 /* Default heap size = 16Mb */
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static HANDLE systemHeap; /* globally shared heap */
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/***********************************************************************
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* HEAP_CreateSystemHeap
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*
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* Create the system heap.
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*/
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static inline HANDLE HEAP_CreateSystemHeap(void)
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{
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int created;
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void *base;
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HANDLE map, event;
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/* create the system heap event first */
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event = CreateEventA( NULL, TRUE, FALSE, "__wine_system_heap_event" );
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if (!(map = CreateFileMappingA( INVALID_HANDLE_VALUE, NULL, SEC_COMMIT | PAGE_READWRITE,
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0, SYSTEM_HEAP_SIZE, "__wine_system_heap" ))) return 0;
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created = (GetLastError() != ERROR_ALREADY_EXISTS);
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if (!(base = MapViewOfFileEx( map, FILE_MAP_ALL_ACCESS, 0, 0, 0, SYSTEM_HEAP_BASE )))
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{
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/* pre-defined address not available */
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ERR( "system heap base address %p not available\n", SYSTEM_HEAP_BASE );
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return 0;
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}
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if (created) /* newly created heap */
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{
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systemHeap = RtlCreateHeap( HEAP_SHARED, base, SYSTEM_HEAP_SIZE,
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SYSTEM_HEAP_SIZE, NULL, NULL );
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SetEvent( event );
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}
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else
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{
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/* wait for the heap to be initialized */
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WaitForSingleObject( event, INFINITE );
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systemHeap = base;
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}
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CloseHandle( map );
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return systemHeap;
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}
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/***********************************************************************
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* HeapCreate (KERNEL32.@)
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*
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* Create a heap object.
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*
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* RETURNS
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* Handle of heap: Success
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* NULL: Failure
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*/
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HANDLE WINAPI HeapCreate(
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DWORD flags, /* [in] Heap allocation flag */
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SIZE_T initialSize, /* [in] Initial heap size */
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SIZE_T maxSize /* [in] Maximum heap size */
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) {
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HANDLE ret;
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if ( flags & HEAP_SHARED )
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{
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if (!systemHeap) HEAP_CreateSystemHeap();
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else WARN( "Shared Heap requested, returning system heap.\n" );
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ret = systemHeap;
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}
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else
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{
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ret = RtlCreateHeap( flags, NULL, maxSize, initialSize, NULL, NULL );
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if (!ret) SetLastError( ERROR_NOT_ENOUGH_MEMORY );
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}
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return ret;
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}
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/***********************************************************************
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* HeapDestroy (KERNEL32.@)
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*
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* Destroy a heap object.
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*
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* RETURNS
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* TRUE: Success
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* FALSE: Failure
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*/
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BOOL WINAPI HeapDestroy( HANDLE heap /* [in] Handle of heap */ )
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{
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if (heap == systemHeap)
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{
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WARN( "attempt to destroy system heap, returning TRUE!\n" );
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return TRUE;
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}
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if (!RtlDestroyHeap( heap )) return TRUE;
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SetLastError( ERROR_INVALID_HANDLE );
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return FALSE;
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}
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/***********************************************************************
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* Global/local heap functions, keep in sync with kernelbase/memory.c
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***********************************************************************/
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struct mem_entry
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{
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union
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{
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struct
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{
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WORD magic;
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BYTE flags;
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BYTE lock;
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};
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void *next_free;
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};
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void *ptr;
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};
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C_ASSERT(sizeof(struct mem_entry) == 2 * sizeof(void *));
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struct kernelbase_global_data *kernelbase_global_data;
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#define MAGIC_LOCAL_USED 0x5342
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#define POINTER_TO_HANDLE( p ) (*(((const HGLOBAL *)( p )) - 2))
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/* align the storage needed for the HLOCAL on an 8-byte boundary thus
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* LocalAlloc/LocalReAlloc'ing with LMEM_MOVEABLE of memory with
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* size = 8*k, where k=1,2,3,... allocs exactly the given size.
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* The Minolta DiMAGE Image Viewer heavily relies on this, corrupting
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* the output jpeg's > 1 MB if not */
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#define HLOCAL_STORAGE (sizeof(HLOCAL) * 2)
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static inline struct mem_entry *unsafe_mem_from_HLOCAL( HLOCAL handle )
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{
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struct mem_entry *mem = CONTAINING_RECORD( handle, struct mem_entry, ptr );
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struct kernelbase_global_data *data = kernelbase_global_data;
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if (((UINT_PTR)handle & ((sizeof(void *) << 1) - 1)) != sizeof(void *)) return NULL;
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if (mem < data->mem_entries || mem >= data->mem_entries_end) return NULL;
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if (mem->magic != MAGIC_LOCAL_USED) return NULL;
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return mem;
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}
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static inline void *unsafe_ptr_from_HLOCAL( HLOCAL handle )
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{
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if (((UINT_PTR)handle & ((sizeof(void *) << 1) - 1))) return NULL;
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return handle;
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}
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/***********************************************************************
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* GlobalLock (KERNEL32.@)
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*
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* Lock a global memory object and return a pointer to first byte of the memory
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*
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* PARAMS
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* handle [I] Handle of the global memory object
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*
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* RETURNS
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* Success: Pointer to first byte of the memory block
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* Failure: NULL
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*
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* NOTES
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* When the handle is invalid, last error is set to ERROR_INVALID_HANDLE
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*
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*/
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void *WINAPI GlobalLock( HGLOBAL handle )
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{
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return LocalLock( handle );
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}
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/***********************************************************************
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* GlobalUnlock (KERNEL32.@)
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*
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* Unlock a global memory object.
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*
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* PARAMS
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* handle [I] Handle of the global memory object
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*
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* RETURNS
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* Success: Object is still locked
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* Failure: FALSE (The Object is unlocked)
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*
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* NOTES
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* When the handle is invalid, last error is set to ERROR_INVALID_HANDLE
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*
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*/
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BOOL WINAPI GlobalUnlock( HGLOBAL handle )
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{
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if (unsafe_ptr_from_HLOCAL( handle )) return TRUE;
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return LocalUnlock( handle );
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}
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/***********************************************************************
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* GlobalHandle (KERNEL32.@)
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*
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* Get the handle associated with the pointer to a global memory block.
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*
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* RETURNS
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* Handle: Success
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* NULL: Failure
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*/
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HGLOBAL WINAPI GlobalHandle( const void *ptr )
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{
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struct mem_entry *mem;
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HGLOBAL handle;
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LPCVOID test;
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TRACE_(globalmem)( "ptr %p\n", ptr );
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if (!ptr)
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{
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SetLastError( ERROR_INVALID_PARAMETER );
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return 0;
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}
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RtlLockHeap( GetProcessHeap() );
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__TRY
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{
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handle = 0;
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/* note that if ptr is a pointer to a block allocated by */
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/* GlobalAlloc with GMEM_MOVEABLE then magic test in HeapValidate */
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/* will fail. */
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if ((ptr = unsafe_ptr_from_HLOCAL( (HLOCAL)ptr )))
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{
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if (HeapValidate( GetProcessHeap(), HEAP_NO_SERIALIZE, ptr ))
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{
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handle = (HGLOBAL)ptr; /* valid fixed block */
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break;
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}
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handle = POINTER_TO_HANDLE( ptr );
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}
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else handle = (HGLOBAL)ptr;
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/* Now test handle either passed in or retrieved from pointer */
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if ((mem = unsafe_mem_from_HLOCAL( handle )))
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{
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test = mem->ptr;
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if (HeapValidate( GetProcessHeap(), HEAP_NO_SERIALIZE, (const char *)test - HLOCAL_STORAGE )) /* obj(-handle) valid arena? */
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break; /* valid moveable block */
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}
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handle = 0;
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SetLastError( ERROR_INVALID_HANDLE );
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}
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__EXCEPT_PAGE_FAULT
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{
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SetLastError( ERROR_INVALID_HANDLE );
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handle = 0;
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}
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__ENDTRY
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RtlUnlockHeap( GetProcessHeap() );
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return handle;
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}
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/***********************************************************************
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* GlobalReAlloc (KERNEL32.@)
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*
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* Change the size or attributes of a global memory object.
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*
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* RETURNS
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* Handle: Success
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* NULL: Failure
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*/
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HGLOBAL WINAPI GlobalReAlloc( HGLOBAL handle, SIZE_T size, UINT flags )
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{
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return LocalReAlloc( handle, size, flags );
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}
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/***********************************************************************
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* GlobalSize (KERNEL32.@)
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*
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* Get the size of a global memory object.
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*
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* PARAMS
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* handle [I] Handle of the global memory object
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*
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* RETURNS
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* Failure: 0
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* Success: Size in Bytes of the global memory object
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*
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* NOTES
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* When the handle is invalid, last error is set to ERROR_INVALID_HANDLE
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*
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*/
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SIZE_T WINAPI GlobalSize( HGLOBAL handle )
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{
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struct mem_entry *mem;
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SIZE_T retval;
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void *ptr;
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TRACE_(globalmem)( "handle %p\n", handle );
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if (!((ULONG_PTR)handle >> 16))
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{
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SetLastError( ERROR_INVALID_HANDLE );
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return 0;
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}
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if ((ptr = unsafe_ptr_from_HLOCAL( handle )))
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{
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retval = HeapSize( GetProcessHeap(), 0, ptr );
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if (retval == ~(SIZE_T)0) /* It might be a GMEM_MOVEABLE data pointer */
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{
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retval = HeapSize( GetProcessHeap(), 0, (char *)ptr - HLOCAL_STORAGE );
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if (retval != ~(SIZE_T)0) retval -= HLOCAL_STORAGE;
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}
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}
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else
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{
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RtlLockHeap( GetProcessHeap() );
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if ((mem = unsafe_mem_from_HLOCAL( handle )))
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{
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if (!mem->ptr) /* handle case of GlobalAlloc( ??,0) */
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retval = 0;
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else
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{
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retval = HeapSize( GetProcessHeap(), 0, (char *)mem->ptr - HLOCAL_STORAGE );
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if (retval != ~(SIZE_T)0) retval -= HLOCAL_STORAGE;
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}
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}
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else
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{
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WARN_(globalmem)( "invalid handle %p\n", handle );
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SetLastError( ERROR_INVALID_HANDLE );
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retval = 0;
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}
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RtlUnlockHeap( GetProcessHeap() );
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}
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if (retval == ~(SIZE_T)0) retval = 0;
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return retval;
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}
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/***********************************************************************
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* GlobalWire (KERNEL32.@)
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*/
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void *WINAPI GlobalWire( HGLOBAL handle )
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{
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return GlobalLock( handle );
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}
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/***********************************************************************
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* GlobalUnWire (KERNEL32.@)
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*/
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BOOL WINAPI GlobalUnWire( HGLOBAL handle )
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{
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return GlobalUnlock( handle );
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}
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/***********************************************************************
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* GlobalFix (KERNEL32.@)
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*/
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VOID WINAPI GlobalFix( HGLOBAL handle )
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{
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GlobalLock( handle );
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}
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/***********************************************************************
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* GlobalUnfix (KERNEL32.@)
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*/
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VOID WINAPI GlobalUnfix( HGLOBAL handle )
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{
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GlobalUnlock( handle );
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}
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/***********************************************************************
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* GlobalFlags (KERNEL32.@)
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*
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* Get information about a global memory object.
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*
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* PARAMS
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* handle [I] Handle of the global memory object
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*
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* RETURNS
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* Failure: GMEM_INVALID_HANDLE, when the provided handle is invalid
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* Success: Value specifying allocation flags and lock count
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*
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*/
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UINT WINAPI GlobalFlags( HGLOBAL handle )
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{
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struct mem_entry *mem;
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DWORD retval;
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TRACE_(globalmem)( "handle %p\n", handle );
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if (unsafe_ptr_from_HLOCAL( handle ))
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{
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retval = 0;
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}
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else
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{
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RtlLockHeap( GetProcessHeap() );
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if ((mem = unsafe_mem_from_HLOCAL( handle )))
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{
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retval = mem->lock + (mem->flags << 8);
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if (mem->ptr == 0) retval |= GMEM_DISCARDED;
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}
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else
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{
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WARN_(globalmem)( "invalid handle %p\n", handle );
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SetLastError( ERROR_INVALID_HANDLE );
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retval = GMEM_INVALID_HANDLE;
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}
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RtlUnlockHeap( GetProcessHeap() );
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}
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return retval;
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}
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/***********************************************************************
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* GlobalCompact (KERNEL32.@)
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*/
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SIZE_T WINAPI GlobalCompact( DWORD minfree )
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{
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return 0; /* GlobalCompact does nothing in Win32 */
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}
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/***********************************************************************
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* LocalCompact (KERNEL32.@)
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*/
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SIZE_T WINAPI LocalCompact( UINT minfree )
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{
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return 0; /* LocalCompact does nothing in Win32 */
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}
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/***********************************************************************
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* LocalFlags (KERNEL32.@)
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*
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* Get information about a local memory object.
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*
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* RETURNS
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* Value specifying allocation flags and lock count.
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* LMEM_INVALID_HANDLE: Failure
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*
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* NOTES
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* Windows memory management does not provide a separate local heap
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* and global heap.
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*/
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UINT WINAPI LocalFlags(
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HLOCAL handle /* [in] Handle of memory object */
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) {
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return GlobalFlags( handle );
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}
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/***********************************************************************
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* LocalHandle (KERNEL32.@)
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*
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* Get the handle associated with the pointer to a local memory block.
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*
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* RETURNS
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* Handle: Success
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* NULL: Failure
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*
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* NOTES
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* Windows memory management does not provide a separate local heap
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* and global heap.
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*/
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HLOCAL WINAPI LocalHandle(
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LPCVOID ptr /* [in] Address of local memory block */
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) {
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return GlobalHandle( ptr );
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}
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/***********************************************************************
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* LocalShrink (KERNEL32.@)
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*/
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SIZE_T WINAPI LocalShrink( HGLOBAL handle, UINT newsize )
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{
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return 0; /* LocalShrink does nothing in Win32 */
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}
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/***********************************************************************
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* LocalSize (KERNEL32.@)
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*
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* Get the size of a local memory object.
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*
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* RETURNS
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* Size: Success
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* 0: Failure
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*
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* NOTES
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* Windows memory management does not provide a separate local heap
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* and global heap.
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*/
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SIZE_T WINAPI LocalSize(
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HLOCAL handle /* [in] Handle of memory object */
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) {
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return GlobalSize( handle );
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}
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/***********************************************************************
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* GlobalMemoryStatus (KERNEL32.@)
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* Provides information about the status of the memory, so apps can tell
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* roughly how much they are able to allocate
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*
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* RETURNS
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* None
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*/
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VOID WINAPI GlobalMemoryStatus( LPMEMORYSTATUS lpBuffer )
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{
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MEMORYSTATUSEX memstatus;
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OSVERSIONINFOW osver;
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#ifndef _WIN64
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IMAGE_NT_HEADERS *nt = RtlImageNtHeader( GetModuleHandleW(0) );
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#endif
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/* Because GlobalMemoryStatus is identical to GlobalMemoryStatusEX save
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for one extra field in the struct, and the lack of a bug, we simply
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call GlobalMemoryStatusEx and copy the values across. */
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memstatus.dwLength = sizeof(memstatus);
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GlobalMemoryStatusEx(&memstatus);
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lpBuffer->dwLength = sizeof(*lpBuffer);
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lpBuffer->dwMemoryLoad = memstatus.dwMemoryLoad;
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/* Windows 2000 and later report -1 when values are greater than 4 Gb.
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* NT reports values modulo 4 Gb.
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*/
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osver.dwOSVersionInfoSize = sizeof(osver);
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GetVersionExW(&osver);
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lpBuffer->dwTotalPhys = memstatus.ullTotalPhys;
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lpBuffer->dwAvailPhys = memstatus.ullAvailPhys;
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lpBuffer->dwTotalPageFile = memstatus.ullTotalPageFile;
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lpBuffer->dwAvailPageFile = memstatus.ullAvailPageFile;
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|
lpBuffer->dwTotalVirtual = memstatus.ullTotalVirtual;
|
|
lpBuffer->dwAvailVirtual = memstatus.ullAvailVirtual;
|
|
|
|
#ifndef _WIN64
|
|
if ( osver.dwMajorVersion >= 5 || osver.dwPlatformId == VER_PLATFORM_WIN32_WINDOWS )
|
|
{
|
|
lpBuffer->dwTotalPhys = min( memstatus.ullTotalPhys, MAXDWORD );
|
|
lpBuffer->dwAvailPhys = min( memstatus.ullAvailPhys, MAXDWORD );
|
|
/* Limit value for apps that do not expect so much memory. Remove last 512 kb to make Sacrifice demo happy. */
|
|
lpBuffer->dwTotalPageFile = min( memstatus.ullTotalPageFile, 0xfff7ffff );
|
|
lpBuffer->dwAvailPageFile = min( memstatus.ullAvailPageFile, MAXDWORD );
|
|
lpBuffer->dwTotalVirtual = min( memstatus.ullTotalVirtual, MAXDWORD );
|
|
lpBuffer->dwAvailVirtual = min( memstatus.ullAvailVirtual, MAXDWORD );
|
|
}
|
|
|
|
/* values are limited to 2Gb unless the app has the IMAGE_FILE_LARGE_ADDRESS_AWARE flag */
|
|
/* page file sizes are not limited (Adobe Illustrator 8 depends on this) */
|
|
if (!(nt->FileHeader.Characteristics & IMAGE_FILE_LARGE_ADDRESS_AWARE))
|
|
{
|
|
if (lpBuffer->dwTotalPhys > MAXLONG) lpBuffer->dwTotalPhys = MAXLONG;
|
|
if (lpBuffer->dwAvailPhys > MAXLONG) lpBuffer->dwAvailPhys = MAXLONG;
|
|
if (lpBuffer->dwTotalVirtual > MAXLONG) lpBuffer->dwTotalVirtual = MAXLONG;
|
|
if (lpBuffer->dwAvailVirtual > MAXLONG) lpBuffer->dwAvailVirtual = MAXLONG;
|
|
}
|
|
|
|
/* work around for broken photoshop 4 installer */
|
|
if ( lpBuffer->dwAvailPhys + lpBuffer->dwAvailPageFile >= 2U*1024*1024*1024)
|
|
lpBuffer->dwAvailPageFile = 2U*1024*1024*1024 - lpBuffer->dwAvailPhys - 1;
|
|
|
|
/* limit page file size for really old binaries */
|
|
if (nt->OptionalHeader.MajorSubsystemVersion < 4 ||
|
|
nt->OptionalHeader.MajorOperatingSystemVersion < 4)
|
|
{
|
|
if (lpBuffer->dwTotalPageFile > MAXLONG) lpBuffer->dwTotalPageFile = MAXLONG;
|
|
if (lpBuffer->dwAvailPageFile > MAXLONG) lpBuffer->dwAvailPageFile = MAXLONG;
|
|
}
|
|
#endif
|
|
|
|
TRACE("Length %lu, MemoryLoad %lu, TotalPhys %Ix, AvailPhys %Ix,"
|
|
" TotalPageFile %Ix, AvailPageFile %Ix, TotalVirtual %Ix, AvailVirtual %Ix\n",
|
|
lpBuffer->dwLength, lpBuffer->dwMemoryLoad, lpBuffer->dwTotalPhys,
|
|
lpBuffer->dwAvailPhys, lpBuffer->dwTotalPageFile, lpBuffer->dwAvailPageFile,
|
|
lpBuffer->dwTotalVirtual, lpBuffer->dwAvailVirtual );
|
|
}
|