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175 lines
6.3 KiB
175 lines
6.3 KiB
//==========================================================================;
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//
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// THIS CODE AND INFORMATION IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY
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// KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE
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// IMPLIED WARRANTIES OF MERCHANTABILITY AND/OR FITNESS FOR A PARTICULAR
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// PURPOSE.
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//
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// Copyright (c) 1996 - 1997 Microsoft Corporation. All Rights Reserved.
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//
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//@@BEGIN_DDKSPLIT
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//
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// WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING
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//
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// The files
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// \wdm10\ddk\inc\i2cgpio.h
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// \dev\ddk\inc\i2cgpio.h
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// Are the same.
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//
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// When changing either file, be sure to update the other file in the other
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// directory. This has been done to ensure that the DirectX DDK can pull
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// I2CGPIO.H into its DDK from \dev\ddk\inc, and not have to enlist in the
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// \wdm10 ddk.
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//
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//@@END_DDKSPLIT
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//==========================================================================;
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#if 0
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To access the IO functionality in a WDM driver or the VDD, WDM driver sends
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the following IRP to its parent.
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MajorFunction = IRP_MJ_PNP;
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MinorFunction = IRP_MN_QUERY_INTERFACE;
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Guid = DEFINE_GUID( GUID_GPIO_INTERFACE,
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0x02295e87L, 0xbb3f, 0x11d0, 0x80, 0xce, 0x0, 0x20, 0xaf, 0xf7, 0x49, 0x1e);
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The QUERY_INTERFACE Irp will return an interface (set of function pointers)
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of the type xxxxINTERFACE, defined below. This is essentially a table of
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function pointers.
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#endif
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#ifndef __I2CGPIO_H__
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#define __I2CGPIO_H__
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#ifdef __cplusplus
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extern "C" {
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#endif // __cplusplus
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// Guids
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//
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// DEFINE_GUID requires that you include wdm.h before this file.
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// #define INITGUID to actually initialize the guid in memory.
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//
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DEFINE_GUID( GUID_I2C_INTERFACE, 0x02295e86L, 0xbb3f, 0x11d0, 0x80, 0xce, 0x0, 0x20, 0xaf, 0xf7, 0x49, 0x1e);
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DEFINE_GUID( GUID_GPIO_INTERFACE,0x02295e87L, 0xbb3f, 0x11d0, 0x80, 0xce, 0x0, 0x20, 0xaf, 0xf7, 0x49, 0x1e);
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DEFINE_GUID( GUID_COPYPROTECTION_INTERFACE, 0x02295e88L, 0xbb3f, 0x11d0, 0x80, 0xce, 0x0, 0x20, 0xaf, 0xf7, 0x49, 0x1e);
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//==========================================================================;
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// used below if neccessary
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#ifndef BYTE
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#define BYTE UCHAR
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#endif
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#ifndef DWORD
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#define DWORD ULONG
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#endif
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//==========================================================================;
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//
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// I2C section
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//
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// I2C Commands
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#define I2C_COMMAND_NULL 0X0000
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#define I2C_COMMAND_READ 0X0001
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#define I2C_COMMAND_WRITE 0X0002
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#define I2C_COMMAND_STATUS 0X0004
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#define I2C_COMMAND_RESET 0X0008
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// The following flags are provided on a READ or WRITE command
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#define I2C_FLAGS_START 0X0001 // START + addx
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#define I2C_FLAGS_STOP 0X0002 // STOP
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#define I2C_FLAGS_DATACHAINING 0X0004 // STOP, START + addx
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#define I2C_FLAGS_ACK 0X0010 // ACKNOWLEDGE (normally set)
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// The following status flags are returned on completion of the operation
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#define I2C_STATUS_NOERROR 0X0000
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#define I2C_STATUS_BUSY 0X0001
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#define I2C_STATUS_ERROR 0X0002
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typedef struct _I2CControl {
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ULONG Command; // I2C_COMMAND_*
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DWORD dwCookie; // Context identifier returned on Open
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BYTE Data; // Data to write, or returned byte
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BYTE Reserved[3]; // Filler
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ULONG Flags; // I2C_FLAGS_*
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ULONG Status; // I2C_STATUS_*
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ULONG ClockRate; // Bus clockrate in Hz.
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} I2CControl, *PI2CControl;
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// this is the Interface definition for I2C
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//
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typedef NTSTATUS (STDMETHODCALLTYPE *I2COPEN)(PDEVICE_OBJECT, ULONG, PI2CControl);
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typedef NTSTATUS (STDMETHODCALLTYPE *I2CACCESS)(PDEVICE_OBJECT, PI2CControl);
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typedef struct {
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INTERFACE _vddInterface;
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I2COPEN i2cOpen;
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I2CACCESS i2cAccess;
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} I2CINTERFACE;
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//==========================================================================;
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//
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// GPIO section
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//
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// GPIO Commands
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#define GPIO_COMMAND_QUERY 0X0001 // get #pins and nBufferSize
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#define GPIO_COMMAND_OPEN 0X0001 // old open
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#define GPIO_COMMAND_OPEN_PINS 0X0002 // get dwCookie
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#define GPIO_COMMAND_CLOSE_PINS 0X0004 // invalidate cookie
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#define GPIO_COMMAND_READ_BUFFER 0X0008
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#define GPIO_COMMAND_WRITE_BUFFER 0X0010
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// The following flags are provided on a READ_BUFFER or WRITE_BUFFER command
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// lpPins bits set MUST have contiguous bits set for a read/write command.
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//
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// On a READ, if the number of pins set in the bitmask does not fill a
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// byte/word/dword, then zeros are returned for those positions.
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// on a WRITE, if the number of pins set in the bitmask does not fill a
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// byte/word/dword, a read/modify/write is done on the port/mmio position
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// that represents those bits.
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#define GPIO_FLAGS_BYTE 0x0001 // do byte read/write
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#define GPIO_FLAGS_WORD 0x0002 // do word read/write
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#define GPIO_FLAGS_DWORD 0x0004 // do dword read/write
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// The following status flags are returned on completion of the operation
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#define GPIO_STATUS_NOERROR 0X0000
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#define GPIO_STATUS_BUSY 0X0001
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#define GPIO_STATUS_ERROR 0X0002
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#define GPIO_STATUS_NO_ASYNCH 0X0004 // gpio provider does not do asynch xfer
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typedef struct _GPIOControl {
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ULONG Command; // GPIO_COMMAND_*
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ULONG Flags; // GPIO_FLAGS_*
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DWORD dwCookie; // Context identifier returned on Open
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ULONG Status; // GPIO_STATUS_*
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ULONG nBytes; // # of bytes to send or recieved
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ULONG nBufferSize; // max size of buffer
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ULONG nPins; // number of GPIO pins returned by Open
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UCHAR *Pins; // pointer to bitmask of pins to read/write
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UCHAR *Buffer; // pointer to GPIO data to send/recieve
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void (*AsynchCompleteCallback)(UCHAR *Buffer);
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// NULL if synchronous xfer, valid ptr if asynch.
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GUID PrivateInterfaceType;
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void (*PrivateInterface)();
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} GPIOControl, *PGPIOControl;
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// This is the GPIO interface
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//
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typedef NTSTATUS (STDMETHODCALLTYPE *GPIOOPEN)(PDEVICE_OBJECT, ULONG, PGPIOControl);
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typedef NTSTATUS (STDMETHODCALLTYPE *GPIOACCESS)(PDEVICE_OBJECT, PGPIOControl);
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typedef struct {
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INTERFACE _vddInterface;
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GPIOOPEN gpioOpen;
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GPIOACCESS gpioAccess;
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} GPIOINTERFACE;
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//==========================================================================;
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#ifdef __cplusplus
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}
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#endif // __cplusplus
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#endif //__I2CGPIO_H__
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