mirror of
https://github.com/LongSoft/UEFITool.git
synced 2024-11-21 15:38:22 +08:00
252 lines
14 KiB
C++
Executable File
252 lines
14 KiB
C++
Executable File
/* types.cpp
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Copyright (c) 2016, 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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#include "ustring.h"
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#include "types.h"
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#include "ffs.h"
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#include "intel_fit.h"
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UString regionTypeToUString(const UINT8 type)
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{
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switch (type) {
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case Subtypes::DescriptorRegion: return UString("Descriptor");
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case Subtypes::BiosRegion: return UString("BIOS");
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case Subtypes::MeRegion: return UString("ME");
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case Subtypes::GbeRegion: return UString("GbE");
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case Subtypes::PdrRegion: return UString("PDR");
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case Subtypes::DevExp1Region: return UString("DevExp1");
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case Subtypes::Bios2Region: return UString("BIOS2");
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case Subtypes::MicrocodeRegion: return UString("Microcode");
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case Subtypes::EcRegion: return UString("EC");
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case Subtypes::DevExp2Region: return UString("DevExp2");
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case Subtypes::IeRegion: return UString("IE");
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case Subtypes::Tgbe1Region: return UString("10GbE1");
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case Subtypes::Tgbe2Region: return UString("10GbE2");
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case Subtypes::Reserved1Region: return UString("Reserved1");
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case Subtypes::Reserved2Region: return UString("Reserved2");
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case Subtypes::PttRegion: return UString("PTT");
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};
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return usprintf("Unknown %02Xh", type);
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}
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UString itemTypeToUString(const UINT8 type)
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{
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switch (type) {
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case Types::Root: return UString("Root");
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case Types::Image: return UString("Image");
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case Types::Capsule: return UString("Capsule");
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case Types::Region: return UString("Region");
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case Types::Volume: return UString("Volume");
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case Types::Padding: return UString("Padding");
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case Types::File: return UString("File");
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case Types::Section: return UString("Section");
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case Types::FreeSpace: return UString("Free space");
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case Types::VssStore: return UString("VSS store");
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case Types::Vss2Store: return UString("VSS2 store");
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case Types::FtwStore: return UString("FTW store");
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case Types::FdcStore: return UString("FDC store");
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case Types::FsysStore: return UString("Fsys store");
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case Types::EvsaStore: return UString("EVSA store");
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case Types::CmdbStore: return UString("CMDB store");
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case Types::FlashMapStore: return UString("FlashMap store");
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case Types::NvarGuidStore: return UString("NVAR GUID store");
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case Types::NvarEntry: return UString("NVAR entry");
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case Types::VssEntry: return UString("VSS entry");
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case Types::FsysEntry: return UString("Fsys entry");
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case Types::EvsaEntry: return UString("EVSA entry");
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case Types::FlashMapEntry: return UString("FlashMap entry");
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case Types::Microcode: return UString("Microcode");
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case Types::SlicData: return UString("SLIC data");
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case Types::FptStore: return UString("FPT store");
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case Types::FptEntry: return UString("FPT entry");
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case Types::IfwiHeader: return UString("IFWI header");
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case Types::IfwiPartition: return UString("IFWI partition");
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case Types::FptPartition: return UString("FPT partition");
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case Types::BpdtStore: return UString("BPDT store");
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case Types::BpdtEntry: return UString("BPDT entry");
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case Types::BpdtPartition: return UString("BPDT partition");
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case Types::CpdStore: return UString("CPD store");
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case Types::CpdEntry: return UString("CPD entry");
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case Types::CpdPartition: return UString("CPD partition");
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case Types::CpdExtension: return UString("CPD extension");
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case Types::CpdSpiEntry: return UString("CPD SPI entry");
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case Types::StartupApDataEntry: return UString("Startup AP data");
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}
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return usprintf("Unknown %02Xh", type);
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}
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UString itemSubtypeToUString(const UINT8 type, const UINT8 subtype)
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{
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switch (type) {
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case Types::Image:
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if (subtype == Subtypes::IntelImage) return UString("Intel");
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else if (subtype == Subtypes::UefiImage) return UString("UEFI");
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break;
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case Types::Padding:
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if (subtype == Subtypes::ZeroPadding) return UString("Empty (0x00)");
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else if (subtype == Subtypes::OnePadding) return UString("Empty (0xFF)");
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else if (subtype == Subtypes::DataPadding) return UString("Non-empty");
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break;
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case Types::Volume:
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if (subtype == Subtypes::UnknownVolume) return UString("Unknown");
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else if (subtype == Subtypes::Ffs2Volume) return UString("FFSv2");
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else if (subtype == Subtypes::Ffs3Volume) return UString("FFSv3");
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else if (subtype == Subtypes::NvramVolume) return UString("NVRAM");
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else if (subtype == Subtypes::MicrocodeVolume) return UString("Microcode");
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break;
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case Types::Capsule:
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if (subtype == Subtypes::AptioSignedCapsule) return UString("Aptio signed");
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else if (subtype == Subtypes::AptioUnsignedCapsule) return UString("Aptio unsigned");
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else if (subtype == Subtypes::UefiCapsule) return UString("UEFI 2.0");
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else if (subtype == Subtypes::ToshibaCapsule) return UString("Toshiba");
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break;
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case Types::Region: return regionTypeToUString(subtype);
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case Types::File: return fileTypeToUString(subtype);
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case Types::Section: return sectionTypeToUString(subtype);
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case Types::NvarEntry:
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if (subtype == Subtypes::InvalidNvarEntry) return UString("Invalid");
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else if (subtype == Subtypes::InvalidLinkNvarEntry) return UString("Invalid link");
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else if (subtype == Subtypes::LinkNvarEntry) return UString("Link");
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else if (subtype == Subtypes::DataNvarEntry) return UString("Data");
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else if (subtype == Subtypes::FullNvarEntry) return UString("Full");
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break;
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case Types::VssEntry:
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if (subtype == Subtypes::InvalidVssEntry) return UString("Invalid");
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else if (subtype == Subtypes::StandardVssEntry) return UString("Standard");
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else if (subtype == Subtypes::AppleVssEntry) return UString("Apple");
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else if (subtype == Subtypes::AuthVssEntry) return UString("Auth");
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else if (subtype == Subtypes::IntelVssEntry) return UString("Intel");
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break;
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case Types::FsysEntry:
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if (subtype == Subtypes::InvalidFsysEntry) return UString("Invalid");
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else if (subtype == Subtypes::NormalFsysEntry) return UString("Normal");
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break;
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case Types::EvsaEntry:
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if (subtype == Subtypes::InvalidEvsaEntry) return UString("Invalid");
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else if (subtype == Subtypes::UnknownEvsaEntry) return UString("Unknown");
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else if (subtype == Subtypes::GuidEvsaEntry) return UString("GUID");
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else if (subtype == Subtypes::NameEvsaEntry) return UString("Name");
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else if (subtype == Subtypes::DataEvsaEntry) return UString("Data");
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break;
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case Types::FlashMapEntry:
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if (subtype == Subtypes::VolumeFlashMapEntry) return UString("Volume");
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else if (subtype == Subtypes::DataFlashMapEntry) return UString("Data");
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break;
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case Types::Microcode:
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if (subtype == Subtypes::IntelMicrocode) return UString("Intel");
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else if (subtype == Subtypes::AmdMicrocode) return UString("AMD");
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break;
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case Types::FptEntry:
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if (subtype == Subtypes::ValidFptEntry) return UString("Valid");
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else if (subtype == Subtypes::InvalidFptEntry) return UString("Invalid");
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break;
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case Types::FptPartition:
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if (subtype == Subtypes::CodeFptPartition) return UString("Code");
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else if (subtype == Subtypes::DataFptPartition) return UString("Data");
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else if (subtype == Subtypes::GlutFptPartition) return UString("GLUT");
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break;
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case Types::IfwiPartition:
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if (subtype == Subtypes::BootIfwiPartition) return UString("Boot");
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else if (subtype == Subtypes::DataIfwiPartition) return UString("Data");
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break;
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case Types::CpdPartition:
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if (subtype == Subtypes::ManifestCpdPartition) return UString("Manifest");
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else if (subtype == Subtypes::MetadataCpdPartition) return UString("Metadata");
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else if (subtype == Subtypes::KeyCpdPartition) return UString("Key");
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else if (subtype == Subtypes::CodeCpdPartition) return UString("Code");
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break;
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case Types::StartupApDataEntry:
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if (subtype == Subtypes::x86128kStartupApDataEntry) return UString("X86 128K");
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break;
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}
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return UString();
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}
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UString compressionTypeToUString(const UINT8 algorithm)
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{
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switch (algorithm) {
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case COMPRESSION_ALGORITHM_NONE: return UString("None");
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case COMPRESSION_ALGORITHM_EFI11: return UString("EFI 1.1");
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case COMPRESSION_ALGORITHM_TIANO: return UString("Tiano");
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case COMPRESSION_ALGORITHM_UNDECIDED: return UString("Undecided Tiano/EFI 1.1");
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case COMPRESSION_ALGORITHM_LZMA: return UString("LZMA");
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case COMPRESSION_ALGORITHM_LZMA_INTEL_LEGACY: return UString("Intel legacy LZMA");
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case COMPRESSION_ALGORITHM_LZMAF86: return UString("LZMAF86");
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case COMPRESSION_ALGORITHM_GZIP: return UString("GZip");
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case COMPRESSION_ALGORITHM_ZLIB: return UString("Zlib");
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}
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return usprintf("Unknown %02Xh", algorithm);
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}
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UString actionTypeToUString(const UINT8 action)
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{
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switch (action) {
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case Actions::NoAction: return UString();
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case Actions::Create: return UString("Create");
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case Actions::Insert: return UString("Insert");
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case Actions::Replace: return UString("Replace");
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case Actions::Remove: return UString("Remove");
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case Actions::Rebuild: return UString("Rebuild");
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case Actions::Rebase: return UString("Rebase");
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}
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return usprintf("Unknown %02Xh", action);
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}
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UString fitEntryTypeToUString(const UINT8 type)
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{
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switch (type & 0x7F) {
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case INTEL_FIT_TYPE_HEADER: return UString("FIT Header");
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case INTEL_FIT_TYPE_MICROCODE: return UString("Microcode");
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case INTEL_FIT_TYPE_STARTUP_AC_MODULE: return UString("Startup ACM");
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case INTEL_FIT_TYPE_DIAG_AC_MODULE: return UString("Diagnostic ACM");
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case INTEL_FIT_TYPE_PLATFORM_BOOT_POLICY: return UString("Platform Boot Policy");
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case INTEL_FIT_TYPE_FIT_RESET_STATE: return UString("FIT Reset State");
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case INTEL_FIT_TYPE_BIOS_STARTUP_MODULE: return UString("BIOS Startup Module");
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case INTEL_FIT_TYPE_TPM_POLICY: return UString("TPM Policy");
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case INTEL_FIT_TYPE_BIOS_POLICY: return UString("BIOS Policy");
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case INTEL_FIT_TYPE_TXT_POLICY: return UString("TXT Policy");
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case INTEL_FIT_TYPE_BOOT_GUARD_KEY_MANIFEST: return UString("BootGuard Key Manifest");
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case INTEL_FIT_TYPE_BOOT_GUARD_BOOT_POLICY: return UString("BootGuard Boot Policy");
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case INTEL_FIT_TYPE_CSE_SECURE_BOOT: return UString("CSE SecureBoot Settings");
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case INTEL_FIT_TYPE_VAB_PROVISIONING_TABLE: return UString("VAB Provisioning Table");
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case INTEL_FIT_TYPE_VAB_KEY_MANIFEST: return UString("VAB Key Manifest");
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case INTEL_FIT_TYPE_VAB_IMAGE_MANIFEST: return UString("VAB Image Manifest");
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case INTEL_FIT_TYPE_VAB_IMAGE_HASH_DESCRIPTORS: return UString("VAB Image Hash Descriptors");
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case INTEL_FIT_TYPE_SACM_DEBUG_RECORD: return UString("SACM Debug Record");
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case INTEL_FIT_TYPE_ACM_FEATURE_POLICY: return UString("ACM Feature Policy");
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case INTEL_FIT_TYPE_SCRTM_ERROR_RECORD: return UString("SCRTM Error Record");
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case INTEL_FIT_TYPE_JMP_DEBUG_POLICY: return UString("JMP Debug Policy");
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case INTEL_FIT_TYPE_EMPTY: return UString("Empty");
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}
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return usprintf("Unknown %02Xh", (type & 0x7F));
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}
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UString hashTypeToUString(const UINT16 algorithm_id)
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{
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switch (algorithm_id) {
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case TCG_HASH_ALGORITHM_ID_SHA1: return UString("SHA1");
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case TCG_HASH_ALGORITHM_ID_SHA256: return UString("SHA256");
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case TCG_HASH_ALGORITHM_ID_SHA384: return UString("SHA384");
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case TCG_HASH_ALGORITHM_ID_SHA512: return UString("SHA512");
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case TCG_HASH_ALGORITHM_ID_NULL: return UString("NULL");
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case TCG_HASH_ALGORITHM_ID_SM3: return UString("SM3");
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}
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return usprintf("Unknown %04Xh", algorithm_id);
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}
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