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264 lines
5.2 KiB
264 lines
5.2 KiB
/*++
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Copyright (c) 1990, 1991 Microsoft Corporation
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Module Name:
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wake.c
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Abstract:
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Author:
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Ken Reneris
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Environment:
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Kernel Mode
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Revision History:
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--*/
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#include "arccodes.h"
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#include "bootx86.h"
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extern PHARDWARE_PTE PDE;
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extern PHARDWARE_PTE HalPT;
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extern ULONG HiberNoMappings;
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extern BOOLEAN HiberIoError;
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extern ULONG HiberLastRemap;
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extern BOOLEAN HiberOutOfRemap;
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PVOID HiberTransVa;
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ULONG HiberCurrentMapIndex;
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#define PDE_SHIFT 22
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#define PTE_SHIFT 12
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#define PTE_INDEX_MASK 0x3ff
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PVOID
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HbMapPte (
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IN ULONG PteToMap,
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IN ULONG Page
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)
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{
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PVOID Va;
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Va = (PVOID) (HiberVa + (PteToMap << PAGE_SHIFT));
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HbSetPte (Va, HiberPtes, PteToMap, Page);
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return Va;
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}
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PVOID
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HbNextSharedPage (
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IN ULONG PteToMap,
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IN ULONG RealPage
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)
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/*++
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Routine Description:
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Allocates the next available page in the free and
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maps the Hiber pte to the page. The allocated page
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is put onto the remap list
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Arguments:
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PteToMap - Which Hiber PTE to map
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RealPage - The page to enter into the remap table for
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this allocation
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Return Value:
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Virtual address of the mapping
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--*/
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{
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PULONG MapPage;
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PULONG RemapPage;
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ULONG DestPage;
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ULONG i;
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MapPage = (PULONG) (HiberVa + (PTE_MAP_PAGE << PAGE_SHIFT));
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RemapPage = (PULONG) (HiberVa + (PTE_REMAP_PAGE << PAGE_SHIFT));
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//
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// Loop until we find a free page which is not in
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// use by the loader image, then map it
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//
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while (HiberCurrentMapIndex < HiberNoMappings) {
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DestPage = MapPage[HiberCurrentMapIndex];
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HiberCurrentMapIndex += 1;
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i = HbPageDisposition (DestPage);
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if (i == HbPageInvalid) {
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HiberIoError = TRUE;
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return HiberBuffer;
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}
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if (i == HbPageNotInUse) {
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MapPage[HiberLastRemap] = DestPage;
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RemapPage[HiberLastRemap] = RealPage;
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HiberLastRemap += 1;
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HiberPageFrames[PteToMap] = DestPage;
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return HbMapPte(PteToMap, DestPage);
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}
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}
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HiberOutOfRemap = TRUE;
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return HiberBuffer;
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}
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VOID
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HbAllocatePtes (
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IN ULONG NumberPages,
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OUT PVOID *PteAddress,
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OUT PVOID *MappedAddress
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)
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/*++
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Routine Description:
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Allocated a consecutive chuck of Ptes.
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Arguments:
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NumberPage - Number of ptes to allocate
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PteAddress - Pointer to the first PTE
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MappedAddress - Base VA of the address mapped
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--*/
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{
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ULONG i;
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ULONG j;
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//
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// We use the HAL's PDE for mapping. Find enough free PTEs
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//
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for (i=0; i<=1024-NumberPages; i++) {
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for (j=0; j < NumberPages; j++) {
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if ((((PULONG)HalPT))[i+j]) {
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break;
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}
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}
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if (j == NumberPages) {
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*PteAddress = (PVOID) &HalPT[i];
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*MappedAddress = (PVOID) (0xffc00000 | (i<<12));
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return ;
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}
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}
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BlPrint("NoMem");
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while (1);
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}
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VOID
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HbSetPte (
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IN PVOID Va,
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IN PHARDWARE_PTE Pte,
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IN ULONG Index,
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IN ULONG PageNumber
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)
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/*++
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Routine Description:
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Sets the Pte to the corresponding page address
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--*/
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{
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Pte[Index].PageFrameNumber = PageNumber;
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Pte[Index].Valid = 1;
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Pte[Index].Write = 1;
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Pte[Index].WriteThrough = 0;
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Pte[Index].CacheDisable = 0;
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_asm {
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mov eax, Va
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invlpg [eax]
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}
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}
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VOID
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HiberSetupForWakeDispatch (
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VOID
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)
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{
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PHARDWARE_PTE HbPde;
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PHARDWARE_PTE HbPte;
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PHARDWARE_PTE WakePte;
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PHARDWARE_PTE TransVa;
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ULONG TransPde;
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ULONG WakePde;
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ULONG PteEntry;
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//
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// Allocate a transistion CR3. A page directory and table which
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// contains the hibernation PTEs
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//
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HbPde = HbNextSharedPage(PTE_TRANSFER_PDE, 0);
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HbPte = HbNextSharedPage(PTE_WAKE_PTE, 0); // TRANSFER_PTE, 0);
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RtlZeroMemory (HbPde, PAGE_SIZE);
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RtlZeroMemory (HbPte, PAGE_SIZE);
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//
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// Set PDE to point to PTE
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//
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TransPde = ((ULONG) HiberVa) >> PDE_SHIFT;
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HbPde[TransPde].PageFrameNumber = HiberPageFrames[PTE_WAKE_PTE];
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HbPde[TransPde].Write = 1;
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HbPde[TransPde].Valid = 1;
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//
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// Fill in the hiber PTEs
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//
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PteEntry = (((ULONG) HiberVa) >> PTE_SHIFT) & PTE_INDEX_MASK;
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TransVa = &HbPte[PteEntry];
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RtlCopyMemory (TransVa, HiberPtes, HIBER_PTES * sizeof(HARDWARE_PTE));
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//
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// Make another copy at the Va of the wake image hiber ptes
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//
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WakePte = HbPte;
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WakePde = ((ULONG) HiberIdentityVa) >> PDE_SHIFT;
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if (WakePde != TransPde) {
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WakePte = HbNextSharedPage(PTE_WAKE_PTE, 0);
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HbPde[WakePde].PageFrameNumber = HiberPageFrames[PTE_WAKE_PTE];
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HbPde[WakePde].Write = 1;
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HbPde[WakePde].Valid = 1;
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}
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PteEntry = (((ULONG) HiberIdentityVa) >> PTE_SHIFT) & PTE_INDEX_MASK;
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TransVa = &WakePte[PteEntry];
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RtlCopyMemory (TransVa, HiberPtes, HIBER_PTES * sizeof(HARDWARE_PTE));
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//
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// Set TransVa to be relative to the va of the transfer Cr3
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//
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HiberTransVa = (PVOID) (((PUCHAR) TransVa) - HiberVa + (PUCHAR) HiberIdentityVa);
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}
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