mirror of
https://github.com/reactos/reactos.git
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4f0b8d3db0
svn path=/branches/ntvdm/; revision=59241
293 lines
6.9 KiB
C
293 lines
6.9 KiB
C
/*
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* PROJECT: ReactOS HAL
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* LICENSE: GPL, See COPYING in the top level directory
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* FILE: hal/halx86/generic/amd64/x86bios.c
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* PURPOSE:
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* PROGRAMMERS: Timo Kreuzer (timo.kreuzer@reactos.org)
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*/
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/* INCLUDES ******************************************************************/
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#include <hal.h>
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//#define NDEBUG
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#include <debug.h>
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//#include "x86emu.h"
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/* This page serves as fallback for pages used by Mm */
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#define DEFAULT_PAGE 0x21
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/* GLOBALS *******************************************************************/
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BOOLEAN x86BiosIsInitialized;
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LONG x86BiosBufferIsAllocated = 0;
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PUCHAR x86BiosMemoryMapping;
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VOID
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NTAPI
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DbgDumpPage(PUCHAR MemBuffer, USHORT Segment)
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{
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ULONG x, y, Offset;
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for (y = 0; y < 0x100; y++)
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{
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for (x = 0; x < 0x10; x++)
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{
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Offset = Segment * 16 + y * 16 + x;
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DbgPrint("%02x ", MemBuffer[Offset]);
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}
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DbgPrint("\n");
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}
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}
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VOID
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NTAPI
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HalInitializeBios(ULONG Unknown, PLOADER_PARAMETER_BLOCK LoaderBlock)
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{
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PPFN_NUMBER PfnArray;
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PFN_NUMBER Pfn, Last;
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PMEMORY_ALLOCATION_DESCRIPTOR Descriptor;
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PLIST_ENTRY ListEntry;
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PMDL Mdl;
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/* Allocate an MDL for 1MB */
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Mdl = IoAllocateMdl(NULL, 0x100000, FALSE, FALSE, NULL);
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if (!Mdl)
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{
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ASSERT(FALSE);
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}
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/* Get pointer to the pfn array */
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PfnArray = MmGetMdlPfnArray(Mdl);
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/* Fill the array with low memory PFNs */
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for (Pfn = 0; Pfn < 0x100; Pfn++)
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{
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PfnArray[Pfn] = Pfn;
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}
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/* Loop the memory descriptors */
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for (ListEntry = LoaderBlock->MemoryDescriptorListHead.Flink;
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ListEntry != &LoaderBlock->MemoryDescriptorListHead;
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ListEntry = ListEntry->Flink)
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{
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/* Get the memory descriptor */
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Descriptor = CONTAINING_RECORD(ListEntry,
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MEMORY_ALLOCATION_DESCRIPTOR,
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ListEntry);
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/* Check if the memory is in the low range */
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if (Descriptor->BasePage < 0x100)
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{
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/* Check if the memory type is firmware */
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if (Descriptor->MemoryType != LoaderFirmwarePermanent &&
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Descriptor->MemoryType != LoaderSpecialMemory)
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{
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/* It's something else, so don't use it! */
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Last = min(Descriptor->BasePage + Descriptor->PageCount, 0x100);
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for (Pfn = Descriptor->BasePage; Pfn < Last; Pfn++)
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{
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/* Set each page to the default page */
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PfnArray[Pfn] = DEFAULT_PAGE;
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}
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}
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}
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}
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Mdl->MdlFlags = MDL_PAGES_LOCKED;
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/* Map the MDL to system space */
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x86BiosMemoryMapping = MmGetSystemAddressForMdlSafe(Mdl, HighPagePriority);
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ASSERT(x86BiosMemoryMapping);
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DPRINT1("memory: %p, %p\n", *(PVOID*)x86BiosMemoryMapping, *(PVOID*)(x86BiosMemoryMapping + 8));
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//DbgDumpPage(x86BiosMemoryMapping, 0xc351);
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x86BiosIsInitialized = TRUE;
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HalpBiosDisplayReset();
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}
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NTSTATUS
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NTAPI
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x86BiosAllocateBuffer(
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ULONG *Size,
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USHORT *Segment,
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USHORT *Offset)
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{
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/* Check if the system is initialized and the buffer is large enough */
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if (!x86BiosIsInitialized || *Size > PAGE_SIZE)
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{
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/* Something was wrong, fail! */
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return STATUS_INSUFFICIENT_RESOURCES;
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}
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/* Check if the buffer is already allocated */
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if (InterlockedBitTestAndSet(&x86BiosBufferIsAllocated, 0))
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{
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/* Buffer was already allocated, fail */
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return STATUS_INSUFFICIENT_RESOURCES;
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}
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/* The buffer is sufficient, return hardcoded address and size */
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*Size = PAGE_SIZE;
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*Segment = 0x2000;
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*Offset = 0;
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return STATUS_SUCCESS;;
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}
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NTSTATUS
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NTAPI
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x86BiosFreeBuffer(
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USHORT Segment,
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USHORT Offset)
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{
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/* Check if the system is initialized and if the address matches */
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if (!x86BiosIsInitialized || Segment != 0x2000 || Offset != 0)
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{
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/* Something was wrong, fail */
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return STATUS_INVALID_PARAMETER;
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}
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/* Check if the buffer was allocated */
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if (!InterlockedBitTestAndReset(&x86BiosBufferIsAllocated, 0))
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{
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/* It was not, fail */
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return STATUS_INVALID_PARAMETER;
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}
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/* Buffer is freed, nothing more to do */
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return STATUS_SUCCESS;;
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}
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NTSTATUS
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NTAPI
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x86BiosReadMemory(
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USHORT Segment,
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USHORT Offset,
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PVOID Buffer,
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ULONG Size)
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{
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ULONG_PTR Address;
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/* Calculate the physical address */
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Address = (Segment << 4) + Offset;
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/* Check if it's valid */
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if (!x86BiosIsInitialized || Address + Size > 0x100000)
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{
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/* Invalid */
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return STATUS_INVALID_PARAMETER;
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}
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/* Copy the memory to the buffer */
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RtlCopyMemory(Buffer, x86BiosMemoryMapping + Address, Size);
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/* Return success */
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return STATUS_SUCCESS;
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}
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NTSTATUS
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NTAPI
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x86BiosWriteMemory(
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USHORT Segment,
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USHORT Offset,
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PVOID Buffer,
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ULONG Size)
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{
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ULONG_PTR Address;
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/* Calculate the physical address */
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Address = (Segment << 4) + Offset;
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/* Check if it's valid */
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if (!x86BiosIsInitialized || Address + Size > 0x100000)
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{
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/* Invalid */
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return STATUS_INVALID_PARAMETER;
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}
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/* Copy the memory from the buffer */
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RtlCopyMemory(x86BiosMemoryMapping + Address, Buffer, Size);
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/* Return success */
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return STATUS_SUCCESS;
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}
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#if 0
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BOOLEAN
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NTAPI
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x86BiosCall(
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ULONG InterruptNumber,
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X86_BIOS_REGISTERS *Registers)
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{
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X86_VM_STATE VmState;
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struct
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{
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USHORT Ip;
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USHORT SegCs;
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} *InterrupTable;
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/* Zero the VmState */
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RtlZeroMemory(&VmState, sizeof(VmState));
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/* Copy the registers */
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VmState.BiosRegisters = *Registers;
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/* Set the physical memory buffer */
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VmState.MemBuffer = x86BiosMemoryMapping;
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/* Set Eflags */
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VmState.Registers.Eflags.Long = 0; // FIXME
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/* Setup stack */
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VmState.Registers.SegSs = 0; // FIXME
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VmState.Registers.Sp = 0x2000 - 2; // FIXME
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/* Initialize IP from the interrupt vector table */
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InterrupTable = (PVOID)x86BiosMemoryMapping;
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VmState.Registers.SegCs = InterrupTable[InterruptNumber].SegCs;
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VmState.Registers.Eip = InterrupTable[InterruptNumber].Ip;
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/* Make the function return on IRET */
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VmState.Flags.ReturnOnIret = 1;
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/* Call the x86 emulator */
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x86Emulator(&VmState);
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/* Copy registers back to caller */
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*Registers = VmState.BiosRegisters;
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return TRUE;
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}
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#endif
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BOOLEAN
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NTAPI
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HalpBiosDisplayReset(VOID)
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{
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#if 0
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X86_BIOS_REGISTERS Registers;
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ULONG OldEflags;
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/* Save flags and disable interrupts */
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OldEflags = __readeflags();
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_disable();
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/* Set AH = 0 (Set video mode), AL = 0x12 (640x480x16 vga) */
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Registers.Eax = 0x12;
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/* Call INT 0x10 */
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x86BiosCall(0x10, &Registers);
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// FIXME: check result
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/* Restore previous flags */
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__writeeflags(OldEflags);
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#endif
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return TRUE;
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}
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