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343 lines
9.4 KiB
C
343 lines
9.4 KiB
C
/* vmw3.c: VIRTUAL MEMORY MAPPING FOR WIN32
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*
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* $Id$
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* Copyright (c) 2001 Ravenbrook Limited. See end of file for license.
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*
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* .design: See <design/vm/>.
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*
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* .purpose: This is the implementation of the virtual memory mapping
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* interface (vm.h) for Win32s.
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*
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* The documentation for Win32 used is the "Win32 Programmer's Reference"
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* provided with Microsoft Visual C++ 2.0.
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*
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* VirtualAlloc is used to reserve address space and to "commit" (map)
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* address ranges onto storage. VirtualFree is used to release and
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* "decommit" (unmap) pages. These functions are documented in the
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* Win32 SDK help, under System Services/Memory Management.
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*
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* .assume.free.success: We assume that VirtualFree will never return
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* an error; this is because we always pass in legal parameters
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* (hopefully).
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*
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* .assume.not-last: We assume that VirtualAlloc will never return
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* a block of memory that occupies the last page in memory, so
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* that limit is representable and bigger than base.
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*
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* .assume.lpvoid-addr: We assume that the windows type LPVOID and
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* the MM type Addr are assignment-compatible.
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*
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* .assume.sysalign: We assume that the page size on the system
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* is a power of two.
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*
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* Notes
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* 1. GetSystemInfo returns a thing called szAllocationGranularity
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* the purpose of which is unclear but which might affect the
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* reservation of address space. Experimentally, it does not.
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* Microsoft's documentation is extremely unclear on this point.
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* richard 1995-02-15
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*/
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#include "mpm.h"
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#ifndef MPS_OS_W3
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#error "vmw3.c is Win32 specific, but MPS_OS_W3 is not set"
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#endif
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#ifdef VM_RM
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#error "vmw3.c compiled with VM_RM set"
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#endif
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#include "mpswin.h"
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SRCID(vmw3, "$Id$");
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/* VMStruct -- virtual memory structure */
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#define VMSig ((Sig)0x519B3999) /* SIGnature VM */
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typedef struct VMStruct {
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Sig sig; /* <design/sig/> */
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Align align; /* page size */
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Addr base, limit; /* boundaries of reserved space */
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Size reserved; /* total reserved address space */
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Size mapped; /* total mapped memory */
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} VMStruct;
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/* VMAlign -- return the page size */
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Align VMAlign(VM vm)
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{
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AVERT(VM, vm);
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return vm->align;
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}
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/* VMCheck -- check a VM structure */
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Bool VMCheck(VM vm)
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{
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CHECKS(VM, vm);
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CHECKL(vm->base != 0);
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CHECKL(vm->limit != 0);
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CHECKL(vm->base < vm->limit);
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CHECKL(vm->mapped <= vm->reserved);
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CHECKL(AddrIsAligned(vm->base, vm->align));
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CHECKL(AddrIsAligned(vm->limit, vm->align));
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return TRUE;
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}
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typedef struct VMParamsStruct {
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Bool topDown;
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} VMParamsStruct, *VMParams;
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static const VMParamsStruct vmParamsDefaults = {
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/* .topDown = */ FALSE,
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};
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Res VMParamFromArgs(void *params, size_t paramSize, ArgList args)
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{
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VMParams vmParams;
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ArgStruct arg;
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AVER(params != NULL);
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AVERT(ArgList, args);
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AVER(paramSize >= sizeof(VMParamsStruct));
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UNUSED(paramSize);
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vmParams = (VMParams)params;
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memcpy(vmParams, &vmParamsDefaults, sizeof(VMParamsStruct));
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if (ArgPick(&arg, args, MPS_KEY_VMW3_TOP_DOWN))
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vmParams->topDown = arg.val.b;
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return ResOK;
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}
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/* VMCreate -- reserve some virtual address space, and create a VM structure */
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Res VMCreate(VM *vmReturn, Size size, void *params)
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{
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LPVOID vbase;
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SYSTEM_INFO si;
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Align align;
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VM vm;
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Res res;
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BOOL b;
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VMParams vmParams = params;
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AVER(vmReturn != NULL);
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AVER(params != NULL); /* FIXME: Should have full AVERT? */
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AVER(COMPATTYPE(LPVOID, Addr)); /* .assume.lpvoid-addr */
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AVER(COMPATTYPE(SIZE_T, Size));
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GetSystemInfo(&si);
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align = (Align)si.dwPageSize;
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AVER((DWORD)align == si.dwPageSize); /* check it didn't truncate */
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AVER(SizeIsP2(align)); /* see .assume.sysalign */
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size = SizeAlignUp(size, align);
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if ((size == 0) || (size > (Size)(SIZE_T)-1))
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return ResRESOURCE;
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/* Allocate the vm descriptor. This is likely to be wasteful. */
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vbase = VirtualAlloc(NULL, SizeAlignUp(sizeof(VMStruct), align),
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MEM_COMMIT, PAGE_READWRITE);
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if (vbase == NULL)
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return ResMEMORY;
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vm = (VM)vbase;
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/* Allocate the address space. */
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vbase = VirtualAlloc(NULL,
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size,
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vmParams->topDown ?
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MEM_RESERVE | MEM_TOP_DOWN :
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MEM_RESERVE,
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PAGE_NOACCESS);
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if (vbase == NULL) {
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res = ResRESOURCE;
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goto failReserve;
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}
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AVER(AddrIsAligned(vbase, align));
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vm->align = align;
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vm->base = (Addr)vbase;
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vm->limit = AddrAdd(vbase, size);
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vm->reserved = size;
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vm->mapped = 0;
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AVER(vm->base < vm->limit); /* .assume.not-last */
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vm->sig = VMSig;
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AVERT(VM, vm);
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EVENT3(VMCreate, vm, vm->base, vm->limit);
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*vmReturn = vm;
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return ResOK;
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failReserve:
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b = VirtualFree((LPVOID)vm, (SIZE_T)0, MEM_RELEASE);
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AVER(b != 0);
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return res;
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}
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/* VMDestroy -- destroy the VM structure */
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void VMDestroy(VM vm)
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{
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BOOL b;
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AVERT(VM, vm);
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AVER(vm->mapped == 0);
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/* This appears to be pretty pointless, since the vm descriptor page
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* is about to vanish completely. However, the VirtualFree might
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* fail and it would be nice to have a dead sig there. */
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vm->sig = SigInvalid;
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b = VirtualFree((LPVOID)vm->base, (SIZE_T)0, MEM_RELEASE);
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AVER(b != 0);
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b = VirtualFree((LPVOID)vm, (SIZE_T)0, MEM_RELEASE);
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AVER(b != 0);
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EVENT1(VMDestroy, vm);
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}
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/* VMBase -- return the base address of the memory reserved */
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Addr VMBase(VM vm)
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{
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AVERT(VM, vm);
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return vm->base;
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}
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/* VMLimit -- return the limit address of the memory reserved */
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Addr VMLimit(VM vm)
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{
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AVERT(VM, vm);
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return vm->limit;
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}
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/* VMReserved -- return the amount of address space reserved */
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Size VMReserved(VM vm)
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{
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AVERT(VM, vm);
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return vm->reserved;
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}
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/* VMMapped -- return the amount of memory actually mapped */
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Size VMMapped(VM vm)
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{
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AVERT(VM, vm);
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return vm->mapped;
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}
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/* VMMap -- map the given range of memory */
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Res VMMap(VM vm, Addr base, Addr limit)
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{
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LPVOID b;
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Align align;
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AVERT(VM, vm);
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align = vm->align;
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AVER(AddrIsAligned(base, align));
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AVER(AddrIsAligned(limit, align));
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AVER(vm->base <= base);
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AVER(base < limit);
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AVER(limit <= vm->limit);
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/* .improve.query-map: We could check that the pages we are about to
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* map are unmapped using VirtualQuery. */
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b = VirtualAlloc((LPVOID)base, (SIZE_T)AddrOffset(base, limit),
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MEM_COMMIT, PAGE_EXECUTE_READWRITE);
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if (b == NULL)
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return ResMEMORY;
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AVER((Addr)b == base); /* base should've been aligned */
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vm->mapped += AddrOffset(base, limit);
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EVENT3(VMMap, vm, base, limit);
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return ResOK;
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}
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/* VMUnmap -- unmap the given range of memory */
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void VMUnmap(VM vm, Addr base, Addr limit)
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{
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Align align;
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BOOL b;
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AVERT(VM, vm);
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align = vm->align;
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AVER(AddrIsAligned(base, align));
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AVER(AddrIsAligned(limit, align));
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AVER(vm->base <= base);
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AVER(base < limit);
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AVER(limit <= vm->limit);
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/* .improve.query-unmap: Could check that the pages we are about */
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/* to unmap are mapped, using VirtualQuery. */
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b = VirtualFree((LPVOID)base, (SIZE_T)AddrOffset(base, limit), MEM_DECOMMIT);
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AVER(b != 0); /* .assume.free.success */
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vm->mapped -= AddrOffset(base, limit);
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EVENT3(VMUnmap, vm, base, limit);
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}
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/* C. COPYRIGHT AND LICENSE
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*
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* Copyright (C) 2001-2002 Ravenbrook Limited <http://www.ravenbrook.com/>.
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* All rights reserved. This is an open source license. Contact
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* Ravenbrook for commercial licensing options.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* 3. Redistributions in any form must be accompanied by information on how
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* to obtain complete source code for this software and any accompanying
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* software that uses this software. The source code must either be
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* included in the distribution or be available for no more than the cost
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* of distribution plus a nominal fee, and must be freely redistributable
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* under reasonable conditions. For an executable file, complete source
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* code means the source code for all modules it contains. It does not
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* include source code for modules or files that typically accompany the
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* major components of the operating system on which the executable file
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* runs.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS
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* IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
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* TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR
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* PURPOSE, OR NON-INFRINGEMENT, ARE DISCLAIMED. IN NO EVENT SHALL THE
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* COPYRIGHT HOLDERS AND CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
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* USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
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* ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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