mirror of
https://github.com/LongSoft/UEFITool.git
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2e788a8a1a
- files split into common and app-specific ones - messages from parser and finder separated - ffsEngine split into multiple classes to reduce complexity - still no image rebuild
174 lines
6.7 KiB
C
174 lines
6.7 KiB
C
/* descriptor.h
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Copyright (c) 2015, Nikolaj Schlej. All rights reserved.
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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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WITHWARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
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*/
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#ifndef __DESCRIPTOR_H__
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#define __DESCRIPTOR_H__
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#include <QString>
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#include "basetypes.h"
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// Make sure we use right packing rules
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#pragma pack(push,1)
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// Flash descriptor header
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typedef struct _FLASH_DESCRIPTOR_HEADER {
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UINT8 FfVector[16]; // Must be 16 0xFFs
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UINT32 Signature; // 0x0FF0A55A
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} FLASH_DESCRIPTOR_HEADER;
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// Flash descriptor signature
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#define FLASH_DESCRIPTOR_SIGNATURE 0x0FF0A55A
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// Descriptor region size
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#define FLASH_DESCRIPTOR_SIZE 0x1000
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// Descriptor map
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// Base fields are storing bits [11:4] of actual base addresses, all other bits are 0
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typedef struct _FLASH_DESCRIPTOR_MAP {
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UINT8 ComponentBase; // 0x03 on most machines
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UINT8 NumberOfFlashChips; // Zero-based number of flash chips installed on board
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UINT8 RegionBase; // 0x04 on most machines
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UINT8 NumberOfRegions; // Zero-based number of flash regions (descriptor is always included)
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UINT8 MasterBase; // 0x06 on most machines
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UINT8 NumberOfMasters; // Zero-based number of flash masters
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UINT8 PchStrapsBase; // 0x10 on most machines
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UINT8 NumberOfPchStraps; // One-based number of UINT32s to read as PCH Straps, min=0, max=255 (1 Kb)
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UINT8 ProcStrapsBase; // 0x20 on most machines
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UINT8 NumberOfProcStraps; // Number of PROC straps to be read, can be 0 or 1
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UINT8 IccTableBase; // 0x21 on most machines
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UINT8 NumberOfIccTableEntries; // 0x00 on most machines
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UINT8 DmiTableBase; // 0x25 on most machines
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UINT8 NumberOfDmiTableEntries; // 0x00 on most machines
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UINT16 ReservedZero; // Still unknown, zeros in all descriptors I have seen
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} FLASH_DESCRIPTOR_MAP;
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// Component section
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// Flash parameters DWORD structure
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typedef struct _FLASH_PARAMETERS {
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UINT8 FirstChipDensity : 3;
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UINT8 SecondChipDensity : 3;
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UINT8 ReservedZero0 : 2; // Still unknown, zeros in all descriptors I have seen
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UINT8 ReservedZero1 : 8; // Still unknown, zeros in all descriptors I have seen
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UINT8 ReservedZero2 : 4; // Still unknown, zeros in all descriptors I have seen
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UINT8 FastReadEnabled : 1;
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UINT8 FastReadFreqency : 3;
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UINT8 FlashReadStatusFrequency : 3;
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UINT8 FlashWriteFrequency : 3;
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UINT8 DualOutputFastReadSupported : 1;
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UINT8 ReservedZero3 : 1; // Still unknown, zero in all descriptors I have seen
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} FLASH_PARAMETERS;
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// Flash densities
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#define FLASH_DENSITY_512KB 0x00
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#define FLASH_DENSITY_1MB 0x01
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#define FLASH_DENSITY_2MB 0x02
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#define FLASH_DENSITY_4MB 0x03
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#define FLASH_DENSITY_8MB 0x04
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#define FLASH_DENSITY_16MB 0x05
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// Flash frequencies
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#define FLASH_FREQUENCY_20MHZ 0x00
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#define FLASH_FREQUENCY_33MHZ 0x01
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#define FLASH_FREQUENCY_50MHZ 0x04
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// Component section structure
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typedef struct _FLASH_DESCRIPTOR_COMPONENT_SECTION {
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FLASH_PARAMETERS FlashParameters;
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UINT8 InvalidInstruction0; // Instructions for SPI chip, that must not be executed, like FLASH ERASE
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UINT8 InvalidInstruction1; //
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UINT8 InvalidInstruction2; //
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UINT8 InvalidInstruction3; //
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UINT16 PartitionBoundary; // Upper 16 bit of partition boundary address. Default is 0x0000, which makes the boundary to be 0x00001000
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UINT16 ReservedZero; // Still unknown, zero in all descriptors I have seen
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} FLASH_DESCRIPTOR_COMPONENT_SECTION;
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// Region section
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// All base and limit register are storing upper part of actual UINT32 base and limit
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// If limit is zero - region is not present
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typedef struct _FLASH_DESCRIPTOR_REGION_SECTION {
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UINT16 ReservedZero; // Still unknown, zero in all descriptors I have seen
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UINT16 FlashBlockEraseSize; // Size of block erased by single BLOCK ERASE command
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UINT16 BiosBase;
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UINT16 BiosLimit;
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UINT16 MeBase;
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UINT16 MeLimit;
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UINT16 GbeBase;
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UINT16 GbeLimit;
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UINT16 PdrBase;
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UINT16 PdrLimit;
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} FLASH_DESCRIPTOR_REGION_SECTION;
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// Flash block erase sizes
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#define FLASH_BLOCK_ERASE_SIZE_4KB 0x0000
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#define FLASH_BLOCK_ERASE_SIZE_8KB 0x0001
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#define FLASH_BLOCK_ERASE_SIZE_64KB 0x000F
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// Master section
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typedef struct _FLASH_DESCRIPTOR_MASTER_SECTION {
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UINT16 BiosId;
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UINT8 BiosRead;
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UINT8 BiosWrite;
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UINT16 MeId;
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UINT8 MeRead;
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UINT8 MeWrite;
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UINT16 GbeId;
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UINT8 GbeRead;
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UINT8 GbeWrite;
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} FLASH_DESCRIPTOR_MASTER_SECTION;
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// Region access bits in master section
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#define FLASH_DESCRIPTOR_REGION_ACCESS_DESC 0x01
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#define FLASH_DESCRIPTOR_REGION_ACCESS_BIOS 0x02
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#define FLASH_DESCRIPTOR_REGION_ACCESS_ME 0x04
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#define FLASH_DESCRIPTOR_REGION_ACCESS_GBE 0x08
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#define FLASH_DESCRIPTOR_REGION_ACCESS_PDR 0x10
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//!TODO: Describe PCH and PROC straps sections, as well as ICC and DMI tables
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// Base address of descriptor upper map
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#define FLASH_DESCRIPTOR_UPPER_MAP_BASE 0x0EFC
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// Descriptor upper map structure
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typedef struct _FLASH_DESCRIPTOR_UPPER_MAP {
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UINT8 VsccTableBase; // Base address of VSCC Table for ME, bits [11:4]
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UINT8 VsccTableSize; // Counted in UINT32s
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UINT16 ReservedZero; // Still unknown, zero in all descriptors I have seen
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} FLASH_DESCRIPTOR_UPPER_MAP;
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// VSCC table entry structure
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typedef struct _VSCC_TABLE_ENTRY {
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UINT8 VendorId; // JEDEC VendorID byte
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UINT8 DeviceId0; // JEDEC DeviceID first byte
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UINT8 DeviceId1; // JEDEC DeviceID second byte
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UINT8 ReservedZero; // Reserved, must be zero
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UINT32 VsccRegisterValue; // VSCC register value
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} VSCC_TABLE_ENTRY;
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// Base address and size of OEM section
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#define FLASH_DESCRIPTOR_OEM_SECTION_BASE 0x0F00
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#define FLASH_DESCRIPTOR_OEM_SECTION_SIZE 0xFF
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// Restore previous packing rules
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#pragma pack(pop)
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// Calculate address of data structure addressed by descriptor address format
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// 8 bit base or limit
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extern const UINT8* calculateAddress8(const UINT8* baseAddress, const UINT8 baseOrLimit);
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// 16 bit base or limit
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extern const UINT8* calculateAddress16(const UINT8* baseAddress, const UINT16 baseOrLimit);
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// Calculate offset of region using it's base
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extern UINT32 calculateRegionOffset(const UINT16 base);
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// Calculate size of region using it's base and limit
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extern UINT32 calculateRegionSize(const UINT16 base, const UINT16 limit);
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#endif
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