2006-04-22 00:54:32 +02:00
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/** @file
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API between 16-bit Legacy BIOS and EFI
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We need to figure out what the 16-bit code is going to use to
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represent these data structures. Is a pointer SEG:OFF or 32-bit...
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Copyright (c) 2006, Intel Corporation
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All rights reserved. This program and the accompanying materials
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are licensed and made available under the terms and conditions of the BSD License
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which accompanies this distribution. The full text of the license may be found at
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http://opensource.org/licenses/bsd-license.php
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THE PROGRAM IS DISTRIBUTED UNDER THE BSD LICENSE ON AN "AS IS" BASIS,
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WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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Module Name: Legacy16.h
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@par Revision Reference:
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These definitions are from Compatibility Support Module Spec Version 0.96.
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**/
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#ifndef LEGACY_16_H_
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#define LEGACY_16_H_
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#define EFI_TO_LEGACY_MAJOR_VERSION 0x02
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#define EFI_TO_LEGACY_MINOR_VERSION 0x00
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#pragma pack(1)
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//
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// EFI Legacy to Legacy16 data
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// EFI_COMPATIBILITY16_TABLE has been moved to LegacyBios protocol defn file.
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//
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typedef struct {
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//
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// Memory map used to start up Legacy16 code
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//
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UINT32 BiosLessThan1MB;
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UINT32 HiPmmMemory;
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2006-11-08 03:10:54 +01:00
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UINT32 HiPmmMemorySizeInBytes;
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2006-04-22 00:54:32 +02:00
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UINT16 ReverseThunkCallSegment;
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UINT16 ReverseThunkCallOffset;
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UINT32 NumberE820Entries;
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UINT32 OsMemoryAbove1Mb;
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UINT32 ThunkStart;
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UINT32 ThunkSizeInBytes;
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UINT32 LowPmmMemory;
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UINT32 LowPmmMemorySizeInBytes;
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} EFI_TO_COMPATIBILITY16_INIT_TABLE;
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#pragma pack()
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//
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// Legacy16 Call types
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//
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typedef enum {
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Legacy16InitializeYourself = 0x0000,
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Legacy16UpdateBbs = 0x0001,
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Legacy16PrepareToBoot = 0x0002,
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Legacy16Boot = 0x0003,
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Legacy16RetrieveLastBootDevice= 0x0004,
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Legacy16DispatchOprom = 0x0005,
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Legacy16GetTableAddress = 0x0006,
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Legacy16SetKeyboardLeds = 0x0007,
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Legacy16InstallPciHandler = 0x0008,
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} EFI_COMPATIBILITY_FUNCTIONS;
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#define F0000Region 0x01
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#define E0000Region 0x02
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//
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// Legacy16 call prototypes
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// Input: AX = EFI_COMPATIBILITY16_FUNCTIONS for all functions.
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// Output: AX = Return status for all functions. It follows EFI error
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// codes.
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//
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// Legacy16InitializeYourself
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// Description: This is the first call to 16-bit code. It allows the
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// 16-bit to perform any internal initialization.
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// Input: ES:BX pointer to EFI_TO_COMPATIBILITY16_INIT_TABLE
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// Output:
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// Legacy16UpdateBbs
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// Description: The 16-bit code updates the BBS table for non-compliant
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// devices.
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// Input: ES:BX pointer to EFI_TO_COMPATIBILITY16_BOOT_TABLE
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// Output:
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// Legacy16PrepareToBoot
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// Description: This is the last call to 16-bit code where 0xE0000 -0xFFFFF
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// is read/write. 16-bit code does any final clean up.
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// Input: ES:BX pointer to EFI_TO_COMPATIBILITY16_BOOT_TABLE
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// Output:
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// Legacy16Boot
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// Description: Do INT19.
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// Input:
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// Output:
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// Legacy16RetrieveLastBootDevice
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// Description: Return the priority number of the device that booted.
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// Input:
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// Output: BX = priority number of the last attempted boot device.
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// Legacy16DispatchOprom
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// Description: Pass control to the specified OPROM. Allows the 16-bit
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// code to rehook INT 13,18 and/or 19 from non-BBS
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// compliant devices.
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// Input: ES:DI = Segment:Offset of PnPInstallationCheck
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// SI = OPROM segment. Offset assumed to be 3.
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// BH = PCI bus number.
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// BL = PCI device * 8 | PCI function.
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// Output: BX = Number of BBS non-compliant drives detected. Return
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// zero for BBS compliant devices.
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// Legacy16GetTableAddress
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// Description: Allocate an area in the 0xE0000-0xFFFFF region.
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// Input: BX = Allocation region.
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// 0x0 = Any region
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// Bit 0 = 0xF0000 region
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// Bit 1 = 0xE0000 region
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// Multiple bits can be set.
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// CX = Length in bytes requested
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// DX = Required address alignment
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// Bit mapped. First non-zero bit from right to left is
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// alignment.
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// Output: DS:BX is assigned region.
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// AX = EFI_OUT_OF_RESOURCES if request cannot be granted.
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// Legacy16SetKeyboardLeds
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// Description: Perform any special action when keyboard LEDS change.
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// Other code performs the LED change and updates standard
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// BDA locations. This is for non-standard operations.
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// Input: CL = LED status. 1 = set.
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// Bit 0 = Scroll lock
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// Bit 1 = Num lock
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// Bit 2 = Caps lock
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// Output:
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// Legacy16InstallPciHandler
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// Description: Provides 16-bit code a hook to establish an interrupt
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// handler for any PCI device requiring a PCI interrupt
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// but having no OPROM. This is called before interrupt
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// is assigned. 8259 will be disabled(even if sharded)
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// and PCI Interrupt Line unprogrammed. Other code will
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// program 8259 and PCI Interrupt Line.
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// Input: ES:BX Pointer to EFI_LEGACY_INSTALL_PCI_HANDLER strcture
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// Output:
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//
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typedef UINT8 SERIAL_MODE;
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typedef UINT8 PARALLEL_MODE;
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#pragma pack(1)
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#define DEVICE_SERIAL_MODE_NORMAL 0x00
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#define DEVICE_SERIAL_MODE_IRDA 0x01
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#define DEVICE_SERIAL_MODE_ASK_IR 0x02
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#define DEVICE_SERIAL_MODE_DUPLEX_HALF 0x00
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#define DEVICE_SERIAL_MODE_DUPLEX_FULL 0x10
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#define DEVICE_PARALLEL_MODE_MODE_OUTPUT_ONLY 0x00
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#define DEVICE_PARALLEL_MODE_MODE_BIDIRECTIONAL 0x01
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#define DEVICE_PARALLEL_MODE_MODE_EPP 0x02
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#define DEVICE_PARALLEL_MODE_MODE_ECP 0x03
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typedef struct {
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UINT16 Address;
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UINT8 Irq;
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SERIAL_MODE Mode;
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} DEVICE_PRODUCER_SERIAL;
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typedef struct {
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UINT16 Address;
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UINT8 Irq;
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UINT8 Dma;
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PARALLEL_MODE Mode;
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} DEVICE_PRODUCER_PARALLEL;
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typedef struct {
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UINT16 Address;
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UINT8 Irq;
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UINT8 Dma;
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UINT8 NumberOfFloppy;
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} DEVICE_PRODUCER_FLOPPY;
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typedef struct {
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UINT32 A20Kybd : 1;
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UINT32 A20Port90 : 1;
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UINT32 Reserved : 30;
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} LEGACY_DEVICE_FLAGS;
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typedef struct {
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DEVICE_PRODUCER_SERIAL Serial[4];
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DEVICE_PRODUCER_PARALLEL Parallel[3];
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DEVICE_PRODUCER_FLOPPY Floppy;
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UINT8 MousePresent;
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LEGACY_DEVICE_FLAGS Flags;
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} DEVICE_PRODUCER_DATA_HEADER;
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//
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// SMM Table definitions
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// SMM table has a header that provides the number of entries. Following
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// the header is a variable length amount of data.
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//
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#define STANDARD_IO 0x00
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#define STANDARD_MEMORY 0x01
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#define PORT_SIZE_8 0x00
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#define PORT_SIZE_16 0x01
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#define PORT_SIZE_32 0x02
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#define PORT_SIZE_64 0x03
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#define DATA_SIZE_8 0x00
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#define DATA_SIZE_16 0x01
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#define DATA_SIZE_32 0x02
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#define DATA_SIZE_64 0x03
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typedef struct {
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UINT16 Type : 3;
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UINT16 PortGranularity : 3;
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UINT16 DataGranularity : 3;
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UINT16 Reserved : 7;
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} SMM_ATTRIBUTES;
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#define INT15_D042 0x0000
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#define GET_USB_BOOT_INFO 0x0001
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#define DMI_PNP_50_57 0x0002
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#define STANDARD_OWNER 0x0
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#define OEM_OWNER 0x1
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typedef struct {
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UINT16 Function : 15;
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UINT16 Owner : 1;
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} SMM_FUNCTION;
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typedef struct {
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SMM_ATTRIBUTES SmmAttributes;
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SMM_FUNCTION SmmFunction;
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//
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// Data size depends upon SmmAttributes and ranges from 2 bytes to
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// 16 bytes
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//
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// bugbug how to do variable length Data
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//
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UINT8 SmmPort;
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UINT8 SmmData;
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} SMM_ENTRY;
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typedef struct {
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UINT16 NumSmmEntries;
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SMM_ENTRY SmmEntry;
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} SMM_TABLE;
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//
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// If MAX_IDE_CONTROLLER changes value 16-bit legacy code needs to change
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//
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#define MAX_IDE_CONTROLLER 8
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typedef struct {
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UINT16 MajorVersion;
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UINT16 MinorVersion;
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UINT32 AcpiTable; // 4 GB range
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UINT32 SmbiosTable; // 4 GB range
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UINT32 SmbiosTableLength;
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//
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// Legacy SIO state
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//
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DEVICE_PRODUCER_DATA_HEADER SioData;
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UINT16 DevicePathType;
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UINT16 PciIrqMask;
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UINT32 NumberE820Entries;
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//
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// Controller & Drive Identify[2] per controller information
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//
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HDD_INFO HddInfo[MAX_IDE_CONTROLLER];
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UINT32 NumberBbsEntries;
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UINT32 BbsTable;
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UINT32 SmmTable;
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UINT32 OsMemoryAbove1Mb;
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UINT32 UnconventionalDeviceTable;
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} EFI_TO_COMPATIBILITY16_BOOT_TABLE;
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typedef struct {
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UINT8 PciBus;
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UINT8 PciDeviceFun;
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UINT8 PciSegment;
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UINT8 PciClass;
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UINT8 PciSubclass;
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UINT8 PciInterface;
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UINT8 PrimaryIrq;
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UINT8 PrimaryReserved;
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UINT16 PrimaryControl;
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UINT16 PrimaryBase;
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UINT16 PrimaryBusMaster;
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UINT8 SecondaryIrq;
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UINT8 SecondaryReserved;
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UINT16 SecondaryControl;
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UINT16 SecondaryBase;
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UINT16 SecondaryBusMaster;
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} EFI_LEGACY_INSTALL_PCI_HANDLER;
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typedef struct {
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UINT16 PnPInstallationCheckSegment;
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UINT16 PnPInstallationCheckOffset;
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UINT16 OpromSegment;
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UINT8 PciBus;
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UINT8 PciDeviceFunction;
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UINT8 NumberBbsEntries;
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VOID *BbsTablePointer;
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} EFI_DISPATCH_OPROM_TABLE;
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#pragma pack()
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#endif
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