External/WinRing0/OpenLibSys.c
author Stephane Lenclud
Sat, 30 Jan 2016 23:01:51 +0100
branchMiniDisplay
changeset 454 f84878f52cd9
permissions -rw-r--r--
Disabling Nuvoton NCT6791D because of fan full speed bug on Asus Z97 WS.
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//-----------------------------------------------------------------------------
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//     Author : hiyohiyo
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//       Mail : hiyohiyo@crystalmark.info
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//        Web : http://openlibsys.org/
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//    License : The modified BSD license
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//
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//                     Copyright 2007-2008 OpenLibSys.org. All rights reserved.
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//-----------------------------------------------------------------------------
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#include <ntddk.h>
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#include <stddef.h>
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#include "OpenLibSys.h"
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//-----------------------------------------------------------------------------
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//
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// Global
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//
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//-----------------------------------------------------------------------------
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static ULONG refCount;
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//-----------------------------------------------------------------------------
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//
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// Classic NT driver
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// DriverEntry / OlsDispatch / Unload
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//
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//-----------------------------------------------------------------------------
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NTSTATUS
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DriverEntry(
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	IN PDRIVER_OBJECT  DriverObject,
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	IN PUNICODE_STRING RegistryPath
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	)
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/*
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Return Value:
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	STATUS_SUCCESS if the driver initialized correctly, otherwise an erroror
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	indicating the reason for failure.
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*/
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{
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	NTSTATUS		status;
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	UNICODE_STRING  ntDeviceName;
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	UNICODE_STRING  win32DeviceName;
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	PDEVICE_OBJECT  deviceObject = NULL;
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	RtlInitUnicodeString(&ntDeviceName, NT_DEVICE_NAME);
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	status = IoCreateDevice(
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		DriverObject,					// Our Driver Object
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		0,								// We don't use a device extension
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		&ntDeviceName,					// Device name 
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		OLS_TYPE,						// Device type
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		FILE_DEVICE_SECURE_OPEN,		// Device characteristics
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		FALSE,							// Not an exclusive device
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		&deviceObject );				// Returned ptr to Device Object
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	if(!NT_SUCCESS(status))
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	{
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		refCount = (ULONG)-1;
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		return status;
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	}
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	else
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	{
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		refCount = 0;
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	}
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	// Initialize the driver object with this driver's entry points.
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	DriverObject->MajorFunction[IRP_MJ_CREATE] = OlsDispatch;
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	DriverObject->MajorFunction[IRP_MJ_CLOSE] = OlsDispatch;
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	DriverObject->MajorFunction[IRP_MJ_DEVICE_CONTROL] = OlsDispatch;
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	DriverObject->DriverUnload = Unload;
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	// Initialize a Unicode String containing the Win32 name for our device.
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	RtlInitUnicodeString(&win32DeviceName, DOS_DEVICE_NAME);
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	// Create a symbolic link between our device name  and the Win32 name
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	status = IoCreateSymbolicLink(&win32DeviceName, &ntDeviceName);
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	if (!NT_SUCCESS(status))
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	{
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		// Delete everything that this routine has allocated.
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		IoDeleteDevice( deviceObject );
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	}
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	return status;
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}
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NTSTATUS
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OlsDispatch(
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	IN	PDEVICE_OBJECT pDO,
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	IN	PIRP pIrp
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	)
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/*++
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Routine Description:
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	This routine is the dispatch handler for the driver.  It is responsible
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	for processing the IRPs.
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Arguments:
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	pDO - Pointer to device object.
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	pIrp - Pointer to the current IRP.
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Return Value:
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	STATUS_SUCCESS if the IRP was processed successfully, otherwise an erroror
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	indicating the reason for failure.
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--*/
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{
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	PIO_STACK_LOCATION pIrpStack;
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	NTSTATUS status;
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	int index;
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	//  Initialize the irp info field.
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	//	  This is used to return the number of bytes transfered.
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	pIrp->IoStatus.Information = 0;
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	pIrpStack = IoGetCurrentIrpStackLocation(pIrp);
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	//  Set default return status
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	status = STATUS_NOT_IMPLEMENTED;
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	// Dispatch based on major fcn code.
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	switch(pIrpStack->MajorFunction)
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	{
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		case IRP_MJ_CREATE:
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			if(refCount != (ULONG)-1){refCount++;}
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			status = STATUS_SUCCESS;
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			break;
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		case IRP_MJ_CLOSE:
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			if(refCount != (ULONG)-1){refCount--;}
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			status = STATUS_SUCCESS;
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			break;
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		case IRP_MJ_DEVICE_CONTROL:
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			//  Dispatch on IOCTL
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			switch(pIrpStack->Parameters.DeviceIoControl.IoControlCode)
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			{
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			case IOCTL_OLS_GET_DRIVER_VERSION:
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				*(PULONG)pIrp->AssociatedIrp.SystemBuffer = OLS_DRIVER_VERSION;
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				pIrp->IoStatus.Information = 4;
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				status = STATUS_SUCCESS;
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				break;
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			case IOCTL_OLS_GET_REFCOUNT:
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				*(PULONG)pIrp->AssociatedIrp.SystemBuffer = refCount;
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				pIrp->IoStatus.Information = sizeof(refCount);
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				status = STATUS_SUCCESS;
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				break;
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			case IOCTL_OLS_READ_MSR:
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				status = ReadMsr(
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.InputBufferLength,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.OutputBufferLength,
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					(ULONG*)&pIrp->IoStatus.Information
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					);
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				break;
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			case IOCTL_OLS_WRITE_MSR:
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				status = WriteMsr(
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.InputBufferLength,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.OutputBufferLength,
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					(ULONG*)&pIrp->IoStatus.Information
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					);
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				break;
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			case IOCTL_OLS_READ_PMC:
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				status = ReadPmc(
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.InputBufferLength,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.OutputBufferLength,
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					(ULONG*)&pIrp->IoStatus.Information
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					);
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				break;
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			case IOCTL_OLS_HALT:
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				__halt();
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				status = STATUS_SUCCESS;
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				break;
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			case IOCTL_OLS_READ_IO_PORT:
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			case IOCTL_OLS_READ_IO_PORT_BYTE:
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			case IOCTL_OLS_READ_IO_PORT_WORD:
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			case IOCTL_OLS_READ_IO_PORT_DWORD:
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				status = ReadIoPort(
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					pIrpStack->Parameters.DeviceIoControl.IoControlCode,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.InputBufferLength,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.OutputBufferLength,
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					(ULONG*)&pIrp->IoStatus.Information
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					);
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				break;
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			case IOCTL_OLS_WRITE_IO_PORT:
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			case IOCTL_OLS_WRITE_IO_PORT_BYTE:
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			case IOCTL_OLS_WRITE_IO_PORT_WORD:
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			case IOCTL_OLS_WRITE_IO_PORT_DWORD:
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				status = WriteIoPort(
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					pIrpStack->Parameters.DeviceIoControl.IoControlCode,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.InputBufferLength,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.OutputBufferLength,
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					(ULONG*)&pIrp->IoStatus.Information
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					);
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				break;
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			case IOCTL_OLS_READ_PCI_CONFIG:
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				status = ReadPciConfig(
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.InputBufferLength,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.OutputBufferLength,
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					(ULONG*)&pIrp->IoStatus.Information
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					);
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				break;
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			case IOCTL_OLS_WRITE_PCI_CONFIG:
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				status = WritePciConfig(
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.InputBufferLength,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.OutputBufferLength,
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					(ULONG*)&pIrp->IoStatus.Information
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					);
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				break;
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			case IOCTL_OLS_READ_MEMORY:
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				status = ReadMemory(
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.InputBufferLength,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.OutputBufferLength,
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					(ULONG*)&pIrp->IoStatus.Information
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					);
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				break;
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			case IOCTL_OLS_WRITE_MEMORY:
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				status = WriteMemory(
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.InputBufferLength,
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					pIrp->AssociatedIrp.SystemBuffer,
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					pIrpStack->Parameters.DeviceIoControl.OutputBufferLength,
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					(ULONG*)&pIrp->IoStatus.Information
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					);
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				break;
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			}
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			break;
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	}
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	// We're done with I/O request.  Record the status of the I/O action.
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	pIrp->IoStatus.Status = status;
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	// Don't boost priority when returning since this took little time.
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	IoCompleteRequest(pIrp, IO_NO_INCREMENT);
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	return status;
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}
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VOID
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Unload(
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	PDRIVER_OBJECT DriverObject
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	)
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/*++
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Routine Description:
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	This routine is called by the I/O system to unload the driver.
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	Any resources previously allocated must be freed.
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Arguments:
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	DriverObject - a pointer to the object that represents our driver.
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Return Value:
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	None
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--*/
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{
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	PDEVICE_OBJECT deviceObject = DriverObject->DeviceObject;
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	UNICODE_STRING win32NameString;
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	PAGED_CODE();
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	// Create counted string version of our Win32 device name.
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	RtlInitUnicodeString(&win32NameString, DOS_DEVICE_NAME);
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	// Delete the link from our device name to a name in the Win32 namespace.
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	IoDeleteSymbolicLink(&win32NameString);
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	if(deviceObject != NULL)
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	{
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		IoDeleteDevice(deviceObject);
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	}
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}
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//-----------------------------------------------------------------------------
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//
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// CPU
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//
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//-----------------------------------------------------------------------------
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NTSTATUS
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ReadMsr(	void	*lpInBuffer, 
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			ULONG	nInBufferSize, 
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			void	*lpOutBuffer, 
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			ULONG	nOutBufferSize, 
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			ULONG	*lpBytesReturned)
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{
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	__try
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	{
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		ULONGLONG data = __readmsr(*(ULONG*)lpInBuffer);
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		memcpy((PULONG)lpOutBuffer, &data, 8);
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		*lpBytesReturned = 8;
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		return STATUS_SUCCESS;
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	}
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	__except(EXCEPTION_EXECUTE_HANDLER)
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	{
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		*lpBytesReturned = 0;
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		return STATUS_UNSUCCESSFUL;
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	}
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}
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NTSTATUS
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WriteMsr(	void	*lpInBuffer, 
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			ULONG	nInBufferSize, 
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			void	*lpOutBuffer, 
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			ULONG	nOutBufferSize, 
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			ULONG	*lpBytesReturned)
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{
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	__try
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	{
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		OLS_WRITE_MSR_INPUT* param;
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		param = (OLS_WRITE_MSR_INPUT*)lpInBuffer;
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		__writemsr(param->Register, param->Value.QuadPart);
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		*lpBytesReturned = 0;
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		return STATUS_SUCCESS;
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	}
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	__except(EXCEPTION_EXECUTE_HANDLER)
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	{
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		*lpBytesReturned = 0;
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		return STATUS_UNSUCCESSFUL;
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	}
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}
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NTSTATUS
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ReadPmc(	void	*lpInBuffer, 
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			ULONG	nInBufferSize, 
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			void	*lpOutBuffer, 
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			ULONG	nOutBufferSize, 
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			ULONG	*lpBytesReturned)
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{
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	__try
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	{
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		ULONGLONG data = __readpmc(*(ULONG*)lpInBuffer);
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		memcpy((PULONG)lpOutBuffer, &data, 8);
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		*lpBytesReturned = 8;
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		return STATUS_SUCCESS;
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	}
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	__except(EXCEPTION_EXECUTE_HANDLER)
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	{
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		*lpBytesReturned = 0;
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		return STATUS_UNSUCCESSFUL;
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	}
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}
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//-----------------------------------------------------------------------------
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//
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// IO Port
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//
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//-----------------------------------------------------------------------------
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NTSTATUS
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ReadIoPort( ULONG	ioControlCode,
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			void	*lpInBuffer, 
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			ULONG	nInBufferSize, 
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			void	*lpOutBuffer, 
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			ULONG	nOutBufferSize, 
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			ULONG	*lpBytesReturned)
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{
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	ULONG nPort = *(ULONG*)lpInBuffer;
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	switch(ioControlCode)
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	{
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		case IOCTL_OLS_READ_IO_PORT_BYTE:
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			*(PUCHAR)lpOutBuffer = READ_PORT_UCHAR((PUCHAR)(ULONG_PTR)nPort);
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			break;
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		case IOCTL_OLS_READ_IO_PORT_WORD:
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			*(PUSHORT)lpOutBuffer = READ_PORT_USHORT((PUSHORT)(ULONG_PTR)nPort);
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			break;
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		case IOCTL_OLS_READ_IO_PORT_DWORD:
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			*(PULONG)lpOutBuffer = READ_PORT_ULONG((PULONG)(ULONG_PTR)nPort);
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			break;
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		default:
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			*lpBytesReturned = 0;
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			return STATUS_INVALID_PARAMETER;
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			break;
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	}
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	*lpBytesReturned = nInBufferSize;
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	return STATUS_SUCCESS;
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}
moel@347
   414
moel@347
   415
NTSTATUS
moel@347
   416
WriteIoPort(ULONG	ioControlCode,
moel@347
   417
			void	*lpInBuffer, 
moel@347
   418
			ULONG	nInBufferSize, 
moel@347
   419
			void	*lpOutBuffer, 
moel@347
   420
			ULONG	nOutBufferSize, 
moel@347
   421
			ULONG	*lpBytesReturned)
moel@347
   422
{
moel@347
   423
	ULONG nPort;
moel@347
   424
	OLS_WRITE_IO_PORT_INPUT* param;
moel@347
   425
	
moel@347
   426
	param = (OLS_WRITE_IO_PORT_INPUT*)lpInBuffer;
moel@347
   427
	nPort = param->PortNumber;
moel@347
   428
moel@347
   429
	switch(ioControlCode)
moel@347
   430
	{
moel@347
   431
moel@347
   432
		case IOCTL_OLS_WRITE_IO_PORT_BYTE:
moel@347
   433
			WRITE_PORT_UCHAR((PUCHAR)(ULONG_PTR)nPort, param->CharData);
moel@347
   434
			break;
moel@347
   435
		case IOCTL_OLS_WRITE_IO_PORT_WORD:
moel@347
   436
			WRITE_PORT_USHORT((PUSHORT)(ULONG_PTR)nPort, param->ShortData);
moel@347
   437
			break;
moel@347
   438
		case IOCTL_OLS_WRITE_IO_PORT_DWORD:
moel@347
   439
			WRITE_PORT_ULONG((PULONG)(ULONG_PTR)nPort, param->LongData);
moel@347
   440
			break;
moel@347
   441
		default:
moel@347
   442
			return STATUS_INVALID_PARAMETER;
moel@347
   443
			break;
moel@347
   444
	}
moel@347
   445
moel@347
   446
	return STATUS_SUCCESS;
moel@347
   447
}
moel@347
   448
moel@347
   449
//-----------------------------------------------------------------------------
moel@347
   450
//
moel@347
   451
// PCI
moel@347
   452
//
moel@347
   453
//-----------------------------------------------------------------------------
moel@347
   454
moel@347
   455
NTSTATUS
moel@347
   456
ReadPciConfig(	void	*lpInBuffer, 
moel@347
   457
				ULONG	nInBufferSize, 
moel@347
   458
				void	*lpOutBuffer, 
moel@347
   459
				ULONG	nOutBufferSize, 
moel@347
   460
				ULONG	*lpBytesReturned)
moel@347
   461
{
moel@347
   462
	OLS_READ_PCI_CONFIG_INPUT *param;
moel@347
   463
	NTSTATUS status;
moel@347
   464
moel@347
   465
	if(nInBufferSize != sizeof(OLS_READ_PCI_CONFIG_INPUT))
moel@347
   466
	{
moel@347
   467
		return STATUS_INVALID_PARAMETER;
moel@347
   468
	}
moel@347
   469
	param = (OLS_READ_PCI_CONFIG_INPUT *)lpInBuffer;
moel@347
   470
moel@347
   471
	status = pciConfigRead(param->PciAddress, param->PciOffset,
moel@347
   472
						lpOutBuffer, nOutBufferSize);
moel@347
   473
moel@347
   474
	if(status == STATUS_SUCCESS)
moel@347
   475
	{
moel@347
   476
		*lpBytesReturned = nOutBufferSize;
moel@347
   477
	}
moel@347
   478
	else
moel@347
   479
	{
moel@347
   480
		*lpBytesReturned = 0;
moel@347
   481
	}
moel@347
   482
moel@347
   483
	return status;
moel@347
   484
}
moel@347
   485
moel@347
   486
NTSTATUS
moel@347
   487
WritePciConfig(	void *lpInBuffer, 
moel@347
   488
				ULONG nInBufferSize, 
moel@347
   489
				void *lpOutBuffer, 
moel@347
   490
				ULONG nOutBufferSize, 
moel@347
   491
				ULONG *lpBytesReturned)
moel@347
   492
moel@347
   493
{
moel@347
   494
	OLS_WRITE_PCI_CONFIG_INPUT *param;
moel@347
   495
	ULONG writeSize;
moel@347
   496
	NTSTATUS status;
moel@347
   497
moel@347
   498
	if(nInBufferSize < offsetof(OLS_WRITE_PCI_CONFIG_INPUT, Data))
moel@347
   499
	{
moel@347
   500
		return STATUS_INVALID_PARAMETER;
moel@347
   501
	}
moel@347
   502
moel@347
   503
	param = (OLS_WRITE_PCI_CONFIG_INPUT *)lpInBuffer;
moel@347
   504
	writeSize = nInBufferSize - offsetof(OLS_WRITE_PCI_CONFIG_INPUT, Data);
moel@347
   505
	
moel@347
   506
	*lpBytesReturned = 0;
moel@347
   507
moel@347
   508
	return pciConfigWrite(param->PciAddress, param->PciOffset,
moel@347
   509
							&param->Data, writeSize);
moel@347
   510
moel@347
   511
}
moel@347
   512
moel@347
   513
//-----------------------------------------------------------------------------
moel@347
   514
//
moel@347
   515
// Support Function
moel@347
   516
//
moel@347
   517
//-----------------------------------------------------------------------------
moel@347
   518
moel@347
   519
NTSTATUS pciConfigRead(ULONG pciAddress, ULONG offset, void *data, int length)
moel@347
   520
{
moel@347
   521
	PCI_SLOT_NUMBER slot;
moel@347
   522
	int error;
moel@347
   523
	ULONG busNumber;
moel@347
   524
moel@347
   525
	busNumber = PciGetBus(pciAddress);
moel@347
   526
	slot.u.AsULONG = 0;
moel@347
   527
	slot.u.bits.DeviceNumber = PciGetDev(pciAddress);
moel@347
   528
	slot.u.bits.FunctionNumber = PciGetFunc(pciAddress);
moel@347
   529
	error =	HalGetBusDataByOffset(PCIConfiguration, busNumber, slot.u.AsULONG,
moel@347
   530
									data, offset, length);
moel@347
   531
moel@347
   532
	if(error == 0)
moel@347
   533
	{
moel@347
   534
		return OLS_ERROR_PCI_BUS_NOT_EXIST;
moel@347
   535
	}
moel@347
   536
	else if(length != 2 && error == 2)
moel@347
   537
	{
moel@347
   538
		return OLS_ERROR_PCI_NO_DEVICE;
moel@347
   539
	}
moel@347
   540
	else if(length != error)
moel@347
   541
	{
moel@347
   542
		return OLS_ERROR_PCI_READ_CONFIG;
moel@347
   543
	}
moel@347
   544
moel@347
   545
	return STATUS_SUCCESS;
moel@347
   546
}
moel@347
   547
moel@347
   548
NTSTATUS pciConfigWrite(ULONG pciAddress, ULONG offset, void *data, int length)
moel@347
   549
{
moel@347
   550
	PCI_SLOT_NUMBER slot;
moel@347
   551
	int error;
moel@347
   552
	ULONG busNumber;
moel@347
   553
moel@347
   554
	busNumber = PciGetBus(pciAddress);
moel@347
   555
moel@347
   556
	slot.u.AsULONG = 0;
moel@347
   557
	slot.u.bits.DeviceNumber = PciGetDev(pciAddress);
moel@347
   558
	slot.u.bits.FunctionNumber = PciGetFunc(pciAddress);
moel@347
   559
	error = HalSetBusDataByOffset(PCIConfiguration, busNumber, slot.u.AsULONG,
moel@347
   560
									data, offset, length);
moel@347
   561
moel@347
   562
	if(error != length)
moel@347
   563
	{
moel@347
   564
		return OLS_ERROR_PCI_WRITE_CONFIG;
moel@347
   565
	}
moel@347
   566
moel@347
   567
	return STATUS_SUCCESS;
moel@347
   568
}
moel@347
   569
moel@347
   570
moel@347
   571
//-----------------------------------------------------------------------------
moel@347
   572
//
moel@347
   573
// Physical Memory
moel@347
   574
//
moel@347
   575
//-----------------------------------------------------------------------------
moel@347
   576
moel@347
   577
NTSTATUS
moel@347
   578
ReadMemory(	void	*lpInBuffer, 
moel@347
   579
			ULONG	nInBufferSize, 
moel@347
   580
			void	*lpOutBuffer, 
moel@347
   581
			ULONG	nOutBufferSize, 
moel@347
   582
			ULONG	*lpBytesReturned)
moel@347
   583
{
moel@347
   584
	OLS_READ_MEMORY_INPUT *param;
moel@347
   585
	ULONG	size;
moel@347
   586
	PHYSICAL_ADDRESS address;
moel@347
   587
	PVOID	maped;
moel@347
   588
	BOOLEAN	error;
moel@347
   589
moel@347
   590
	if(nInBufferSize != sizeof(OLS_READ_MEMORY_INPUT))
moel@347
   591
	{
moel@347
   592
		return STATUS_INVALID_PARAMETER;
moel@347
   593
	}
moel@347
   594
moel@347
   595
	param = (OLS_READ_MEMORY_INPUT *)lpInBuffer;
moel@347
   596
	size = param->UnitSize * param->Count;
moel@347
   597
moel@347
   598
	if(nOutBufferSize < size)
moel@347
   599
	{
moel@347
   600
		return STATUS_INVALID_PARAMETER;
moel@347
   601
	}
moel@347
   602
moel@347
   603
	address.QuadPart = param->Address.QuadPart;
moel@347
   604
moel@347
   605
#ifndef _PHYSICAL_MEMORY_SUPPORT
moel@347
   606
moel@347
   607
	if(0x000C0000 > address.QuadPart 
moel@347
   608
	|| (address.QuadPart + size - 1) > 0x000FFFFF)
moel@347
   609
	{
moel@347
   610
		return STATUS_INVALID_PARAMETER;
moel@347
   611
	}
moel@347
   612
moel@347
   613
#endif
moel@347
   614
moel@347
   615
	maped = MmMapIoSpace(address, size, FALSE);
moel@347
   616
moel@347
   617
	error = FALSE;
moel@347
   618
	switch(param->UnitSize){
moel@347
   619
		case 1:
moel@347
   620
			READ_REGISTER_BUFFER_UCHAR(maped, lpOutBuffer, param->Count);
moel@347
   621
			break;
moel@347
   622
		case 2:
moel@347
   623
			READ_REGISTER_BUFFER_USHORT(maped, lpOutBuffer, param->Count);
moel@347
   624
			break;
moel@347
   625
		case 4:
moel@347
   626
			READ_REGISTER_BUFFER_ULONG(maped, lpOutBuffer, param->Count);
moel@347
   627
			break;
moel@347
   628
		default:
moel@347
   629
			error = TRUE;
moel@347
   630
			break;
moel@347
   631
	}
moel@347
   632
moel@347
   633
	MmUnmapIoSpace(maped, size);
moel@347
   634
moel@347
   635
	if(error)
moel@347
   636
	{
moel@347
   637
		return STATUS_INVALID_PARAMETER;
moel@347
   638
	}
moel@347
   639
moel@347
   640
	*lpBytesReturned = nOutBufferSize;
moel@347
   641
moel@347
   642
	return STATUS_SUCCESS;
moel@347
   643
}
moel@347
   644
moel@347
   645
NTSTATUS
moel@347
   646
WriteMemory(void	*lpInBuffer, 
moel@347
   647
			ULONG	nInBufferSize, 
moel@347
   648
			void	*lpOutBuffer, 
moel@347
   649
			ULONG	nOutBufferSize, 
moel@347
   650
			ULONG	*lpBytesReturned)
moel@347
   651
{
moel@347
   652
#ifdef _PHYSICAL_MEMORY_SUPPORT
moel@347
   653
moel@347
   654
	OLS_WRITE_MEMORY_INPUT *param;
moel@347
   655
	ULONG size;
moel@347
   656
	PHYSICAL_ADDRESS address;
moel@347
   657
	PVOID	maped;
moel@347
   658
	BOOLEAN	error;
moel@347
   659
moel@347
   660
	if(nInBufferSize < offsetof(OLS_WRITE_MEMORY_INPUT, Data))
moel@347
   661
	{
moel@347
   662
		return STATUS_INVALID_PARAMETER;
moel@347
   663
	}
moel@347
   664
moel@347
   665
	param = (OLS_WRITE_MEMORY_INPUT *)lpInBuffer;
moel@347
   666
moel@347
   667
	size = param->UnitSize * param->Count;
moel@347
   668
	if (nInBufferSize < size + offsetof(OLS_WRITE_MEMORY_INPUT, Data))
moel@347
   669
	{
moel@347
   670
		return STATUS_INVALID_PARAMETER;
moel@347
   671
	}
moel@347
   672
moel@347
   673
	address.QuadPart = param->Address.QuadPart;
moel@347
   674
moel@347
   675
	maped = MmMapIoSpace(address, size, FALSE);
moel@347
   676
moel@347
   677
	error = FALSE;
moel@347
   678
	switch(param->UnitSize){
moel@347
   679
		case 1:
moel@347
   680
			WRITE_REGISTER_BUFFER_UCHAR(maped, 
moel@347
   681
										(UCHAR*)&param->Data, param->Count);
moel@347
   682
			break;
moel@347
   683
		case 2:
moel@347
   684
			WRITE_REGISTER_BUFFER_USHORT(maped,
moel@347
   685
										(USHORT*)&param->Data, param->Count);
moel@347
   686
			break;
moel@347
   687
		case 4:
moel@347
   688
			WRITE_REGISTER_BUFFER_ULONG(maped,
moel@347
   689
										(ULONG*)&param->Data, param->Count);
moel@347
   690
			break;
moel@347
   691
		default:
moel@347
   692
			error = TRUE;
moel@347
   693
			break;
moel@347
   694
	}
moel@347
   695
moel@347
   696
	MmUnmapIoSpace(maped, size);
moel@347
   697
moel@347
   698
	if(error)
moel@347
   699
	{
moel@347
   700
		return STATUS_INVALID_PARAMETER;
moel@347
   701
	}
moel@347
   702
moel@347
   703
	*lpBytesReturned = 0;
moel@347
   704
moel@347
   705
	return STATUS_SUCCESS;
moel@347
   706
moel@347
   707
#else
moel@347
   708
moel@347
   709
	*lpBytesReturned = 0;
moel@347
   710
	
moel@347
   711
	return STATUS_INVALID_PARAMETER;
moel@347
   712
moel@347
   713
#endif
moel@347
   714
}