mirror of
https://github.com/LongSoft/UEFITool.git
synced 2024-11-24 08:58:23 +08:00
NE Alpha 42
This commit is contained in:
parent
9b85fac61b
commit
fc579533e8
@ -17,7 +17,7 @@
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UEFITool::UEFITool(QWidget *parent) :
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QMainWindow(parent),
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ui(new Ui::UEFITool),
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version(tr("NE alpha 41"))
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version(tr("NE alpha 42"))
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{
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clipboard = QApplication::clipboard();
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@ -162,7 +162,7 @@ typedef struct EFI_TIME_ {
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UINT8 : 8;
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} EFI_TIME;
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// Aling to 4 or 8 bytes
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// Align to 4 or 8 bytes
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#define ALIGN4(Value) (((Value)+3) & ~3)
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#define ALIGN8(Value) (((Value)+7) & ~7)
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@ -2867,7 +2867,6 @@ USTATUS FfsParser::parseFit(const UModelIndex & index)
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return U_SUCCESS;
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// Explicitly set the item as fixed
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// TODO: update info
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model->setFixed(fitIndex, true);
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// Special case of FIT header
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@ -2923,30 +2922,32 @@ USTATUS FfsParser::parseFit(const UModelIndex & index)
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case FIT_TYPE_MICROCODE: {
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//TODO: refactor into function with error reporting
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if (currentEntry->Address > addressDiff && currentEntry->Address < 0xFFFFFFFFUL) {
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UINT32 offset = (UINT32)currentEntry->Address - addressDiff;
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UINT32 offset = (UINT32)(currentEntry->Address - addressDiff);
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UModelIndex mcIndex = model->findByOffset(offset);
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UByteArray mcFile = model->header(mcIndex) + model->body(mcIndex) + model->tail(mcIndex);
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UINT32 mcOffset = offset - model->offset(mcIndex);
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if (mcOffset + sizeof(INTEL_MICROCODE_HEADER) <= (UINT32)mcFile.size()) {
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const INTEL_MICROCODE_HEADER* header = (const INTEL_MICROCODE_HEADER*)(mcFile.constData() + mcOffset);
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if (header->Version == INTEL_MICROCODE_HEADER_VERSION) {
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bool reservedBytesValid = true;
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for (UINT8 i = 0; i < sizeof(header->Reserved); i++)
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if (header->Reserved[i] != INTEL_MICROCODE_HEADER_RESERVED_BYTE) {
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reservedBytesValid = false;
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break;
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}
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if (reservedBytesValid) {
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UINT32 mcSize = header->TotalSize;
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if (mcOffset + mcSize <= (UINT32)mcFile.size()) {
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info = usprintf("LocalOffset %08Xh, CPUID %08Xh, Revision %08Xh, Date %08Xh",
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mcOffset,
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header->CpuSignature,
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header->Revision,
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header->Date);
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currentEntrySize = header->TotalSize;
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itemIndex = mcIndex;
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if (mcIndex.isValid()) {
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UByteArray mcFile = model->header(mcIndex) + model->body(mcIndex) + model->tail(mcIndex);
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UINT32 mcOffset = offset - model->offset(mcIndex);
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if (mcOffset + sizeof(INTEL_MICROCODE_HEADER) <= (UINT32)mcFile.size()) {
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const INTEL_MICROCODE_HEADER* header = (const INTEL_MICROCODE_HEADER*)(mcFile.constData() + mcOffset);
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if (header->Version == INTEL_MICROCODE_HEADER_VERSION) {
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bool reservedBytesValid = true;
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for (UINT8 i = 0; i < sizeof(header->Reserved); i++)
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if (header->Reserved[i] != INTEL_MICROCODE_HEADER_RESERVED_BYTE) {
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reservedBytesValid = false;
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break;
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}
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if (reservedBytesValid) {
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UINT32 mcSize = header->TotalSize;
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if (mcOffset + mcSize <= (UINT32)mcFile.size()) {
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// Valid microcode found
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info = usprintf("LocalOffset %08Xh, CPUID %08Xh, Revision %08Xh, Date %08Xh",
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mcOffset,
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header->CpuSignature,
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header->Revision,
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header->Date);
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currentEntrySize = header->TotalSize;
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itemIndex = mcIndex;
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}
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}
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}
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}
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@ -2963,8 +2964,7 @@ USTATUS FfsParser::parseFit(const UModelIndex & index)
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case FIT_TYPE_AC_BOOT_POLICY:
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default:
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if (currentEntry->Address > addressDiff && currentEntry->Address < 0xFFFFFFFFUL) {
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UINT32 offset = (UINT32)currentEntry->Address - addressDiff;
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itemIndex = model->findByOffset(offset);
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itemIndex = model->findByOffset((UINT32)(currentEntry->Address - addressDiff));
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}
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msgModifiedImageMayNotWork = true;
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@ -3032,7 +3032,7 @@ USTATUS FfsParser::addMemoryAddressesRecursive(const UModelIndex & index)
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// Set address value for non-compressed data
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if (!model->compressed(index)) {
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// Check address sanity
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UINT64 address = (const UINT64)addressDiff + model->offset(index);
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UINT64 address = addressDiff + model->offset(index);
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if (address <= 0xFFFFFFFFUL) {
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// Update info
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UINT32 headerSize = model->header(index).size();
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@ -63,6 +63,7 @@ typedef struct NVAR_ENTRY_HEADER_ {
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#define NVRAM_NVAR_ENTRY_EXT_AUTH_WRITE 0x10
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#define NVRAM_NVAR_ENTRY_EXT_TIME_BASED 0x20
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#define NVRAM_NVAR_ENTRY_EXT_UNKNOWN_MASK 0xCE
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//
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// TianoCore VSS store and variables
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//
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@ -158,6 +159,31 @@ typedef struct VSS_AUTH_VARIABLE_HEADER_ {
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extern UString vssAttributesToUString(const UINT32 attributes);
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//
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// Lenovo VSS variables
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//
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//aaf32c78-947b-439a-a180-2e144ec37792
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#define LENOVO_AUTH_VAR_KEY_DATABASE_GUID_PART1 0xaaf32c78
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const UByteArray LENOVO_AUTH_VAR_KEY_DATABASE_GUID
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("\x78\x2C\xF3\xAA\x7B\x94\x9A\x43\xA1\x80\x2E\x14\x4E\xC3\x77\x92");
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#define LENOVO_VSS_STORE_GUID_PART1 0xddcf3617
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const UByteArray LENOVO_VSS_STORE_GUID
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("\x17\x36\xCF\xDD\x75\x32\x64\x41\x98\xB6\xFE\x85\x70\x7F\xFE\x7D");
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// Variable store header
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typedef struct LENOVO_VSS_VARIABLE_STORE_HEADER_ {
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EFI_GUID Signature;
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UINT32 Size; // Size of variable store, including store header
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UINT8 Format; // Store format state
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UINT8 State; // Store health state
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UINT16 Unknown;
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UINT32 : 32;
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} LENOVO_VSS_VARIABLE_STORE_HEADER;
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// VSS entries are 4-bytes aligned in Lenovo stores
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//
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// _FDC region
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//
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@ -182,6 +208,10 @@ typedef struct FDC_VOLUME_HEADER_ {
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const UByteArray EDKII_WORKING_BLOCK_SIGNATURE_GUID
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("\x2B\x29\x58\x9E\x68\x7C\x7D\x49\x0A\xCE\x65\x00\xFD\x9F\x1B\x95", 16);
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// 9E58292B-7C68-497D-A0CE6500FD9F1B95
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const UByteArray LENOVO_WORKING_BLOCK_SIGNATURE_GUID
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("\x2B\x29\x58\x9E\x68\x7C\x7D\x49\xA0\xCE\x65\x00\xFD\x9F\x1B\x95", 16);
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#define NVRAM_MAIN_STORE_VOLUME_GUID_DATA1 0xFFF12B8D
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#define EDKII_WORKING_BLOCK_SIGNATURE_GUID_DATA1 0x9E58292B
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@ -497,10 +497,11 @@ USTATUS NvramParser::parseNvramVolumeBody(const UModelIndex & index)
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UModelIndex current = index.child(i, 0);
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switch (model->type(current)) {
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case Types::VssStore:
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case Types::FdcStore: parseVssStoreBody(current); break;
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case Types::FsysStore: parseFsysStoreBody(current); break;
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case Types::EvsaStore: parseEvsaStoreBody(current); break;
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case Types::FlashMapStore: parseFlashMapBody(current); break;
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case Types::FdcStore: parseVssStoreBody(current, 0); break;
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case Types::LenovoVssStore: parseVssStoreBody(current, 4); break;
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case Types::FsysStore: parseFsysStoreBody(current); break;
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case Types::EvsaStore: parseEvsaStoreBody(current); break;
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case Types::FlashMapStore: parseFlashMapBody(current); break;
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}
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}
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@ -530,6 +531,23 @@ USTATUS NvramParser::findNextStore(const UModelIndex & index, const UByteArray &
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// All checks passed, store found
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break;
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}
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else if (*currentPos == LENOVO_AUTH_VAR_KEY_DATABASE_GUID_PART1 || *currentPos == LENOVO_VSS_STORE_GUID_PART1) { //Lenovo VSS store signatures found, perform checks
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UByteArray guid = UByteArray(volume.constData() + offset, sizeof(EFI_GUID));
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if (guid != LENOVO_AUTH_VAR_KEY_DATABASE_GUID && guid != LENOVO_VSS_STORE_GUID) // Check the whole signature
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continue;
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const LENOVO_VSS_VARIABLE_STORE_HEADER* vssHeader = (const LENOVO_VSS_VARIABLE_STORE_HEADER*)currentPos;
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if (vssHeader->Format != NVRAM_VSS_VARIABLE_STORE_FORMATTED) {
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msg(usprintf("findNextStore: Lenovo VSS store candidate at offset %Xh skipped, has invalid format %02Xh", localOffset + offset, vssHeader->Format), index);
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continue;
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}
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if (vssHeader->Size == 0 || vssHeader->Size == 0xFFFFFFFF) {
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msg(usprintf("findNextStore: Lenovo VSS store candidate at offset %Xh skipped, has invalid size %Xh", localOffset + offset, vssHeader->Size), index);
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continue;
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}
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// All checks passed, store found
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break;
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}
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else if (*currentPos == NVRAM_FDC_VOLUME_SIGNATURE) { //FDC signature found
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const FDC_VOLUME_HEADER* fdcHeader = (const FDC_VOLUME_HEADER*)currentPos;
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if (fdcHeader->Size == 0 || fdcHeader->Size == 0xFFFFFFFF) {
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@ -567,7 +585,7 @@ USTATUS NvramParser::findNextStore(const UModelIndex & index, const UByteArray &
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}
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else if (*currentPos == NVRAM_MAIN_STORE_VOLUME_GUID_DATA1 || *currentPos == EDKII_WORKING_BLOCK_SIGNATURE_GUID_DATA1) { //Possible FTW block signature found
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UByteArray guid = UByteArray(volume.constData() + offset, sizeof(EFI_GUID));
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if (guid != NVRAM_MAIN_STORE_VOLUME_GUID && guid != EDKII_WORKING_BLOCK_SIGNATURE_GUID) // Check the whole signature
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if (guid != NVRAM_MAIN_STORE_VOLUME_GUID && guid != EDKII_WORKING_BLOCK_SIGNATURE_GUID && guid != LENOVO_WORKING_BLOCK_SIGNATURE_GUID) // Check the whole signature
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continue;
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// Detect header variant based on WriteQueueSize
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@ -678,6 +696,10 @@ USTATUS NvramParser::getStoreSize(const UByteArray & data, const UINT32 storeOff
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const VSS_VARIABLE_STORE_HEADER* vssHeader = (const VSS_VARIABLE_STORE_HEADER*)signature;
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storeSize = vssHeader->Size;
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}
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else if (*signature == LENOVO_AUTH_VAR_KEY_DATABASE_GUID_PART1 || *signature == LENOVO_VSS_STORE_GUID_PART1) {
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const LENOVO_VSS_VARIABLE_STORE_HEADER* vssHeader = (const LENOVO_VSS_VARIABLE_STORE_HEADER*)signature;
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storeSize = vssHeader->Size;
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}
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else if (*signature == NVRAM_FDC_VOLUME_SIGNATURE) {
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const FDC_VOLUME_HEADER* fdcHeader = (const FDC_VOLUME_HEADER*)signature;
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storeSize = fdcHeader->Size;
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@ -765,6 +787,48 @@ USTATUS NvramParser::parseVssStoreHeader(const UByteArray & store, const UINT32
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return U_SUCCESS;
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}
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USTATUS NvramParser::parseLenovoVssStoreHeader(const UByteArray & store, const UINT32 localOffset, const UModelIndex & parent, UModelIndex & index)
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{
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const UINT32 dataSize = (const UINT32)store.size();
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// Check store size
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if (dataSize < sizeof(LENOVO_VSS_VARIABLE_STORE_HEADER)) {
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msg(UString("parseLenovoVssStoreHeader: volume body is too small even for VSS store header"), parent);
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return U_SUCCESS;
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}
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// Get VSS store header
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const LENOVO_VSS_VARIABLE_STORE_HEADER* vssStoreHeader = (const LENOVO_VSS_VARIABLE_STORE_HEADER*)store.constData();
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// Check store size
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if (dataSize < vssStoreHeader->Size) {
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msg(usprintf("parseLenovoVssStoreHeader: VSS store size %Xh (%u) is greater than volume body size %Xh (%u)",
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vssStoreHeader->Size, vssStoreHeader->Size,
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dataSize, dataSize), parent);
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return U_SUCCESS;
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}
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// Construct header and body
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UByteArray header = store.left(sizeof(LENOVO_VSS_VARIABLE_STORE_HEADER));
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UByteArray body = store.mid(sizeof(LENOVO_VSS_VARIABLE_STORE_HEADER), vssStoreHeader->Size - sizeof(LENOVO_VSS_VARIABLE_STORE_HEADER));
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// Add info
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UString name = UString("Lenovo VSS store");
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UString info = UString("Signature: ") + guidToUString(vssStoreHeader->Signature, false) +
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usprintf("\nFull size: %Xh (%u)\nHeader size: %Xh (%u)\nBody size: %Xh (%u)\nFormat: %02Xh\nState: %02Xh\nUnknown: %04Xh",
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vssStoreHeader->Size, vssStoreHeader->Size,
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header.size(), header.size(),
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body.size(), body.size(),
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vssStoreHeader->Format,
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vssStoreHeader->State,
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vssStoreHeader->Unknown);
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// Add tree item
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index = model->addItem(localOffset, Types::LenovoVssStore, 0, name, UString(), info, header, body, UByteArray(), Fixed, parent);
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return U_SUCCESS;
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}
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USTATUS NvramParser::parseFtwStoreHeader(const UByteArray & store, const UINT32 localOffset, const UModelIndex & parent, UModelIndex & index)
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{
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const UINT32 dataSize = (const UINT32)store.size();
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@ -1217,6 +1281,9 @@ USTATUS NvramParser::parseStoreHeader(const UByteArray & store, const UINT32 loc
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// VSS/SVS store
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if (*signature == NVRAM_VSS_STORE_SIGNATURE || *signature == NVRAM_APPLE_SVS_STORE_SIGNATURE)
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return parseVssStoreHeader(store, localOffset, parent, index);
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// Lenovo VSS store
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if (*signature == LENOVO_AUTH_VAR_KEY_DATABASE_GUID_PART1 || *signature == LENOVO_VSS_STORE_GUID_PART1)
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return parseLenovoVssStoreHeader(store, localOffset, parent, index);
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// FTW store
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else if (*signature == NVRAM_MAIN_STORE_VOLUME_GUID_DATA1 || *signature == EDKII_WORKING_BLOCK_SIGNATURE_GUID_DATA1)
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return parseFtwStoreHeader(store, localOffset, parent, index);
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@ -1250,7 +1317,7 @@ USTATUS NvramParser::parseStoreHeader(const UByteArray & store, const UINT32 loc
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return U_SUCCESS;
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}
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USTATUS NvramParser::parseVssStoreBody(const UModelIndex & index)
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USTATUS NvramParser::parseVssStoreBody(const UModelIndex & index, UINT8 alignment)
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{
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// Sanity check
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if (!index.isValid())
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@ -1365,8 +1432,6 @@ USTATUS NvramParser::parseVssStoreBody(const UModelIndex & index)
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body = data.mid(offset + header.size(), variableHeader->DataSize);
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}
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// There is also a case of authenticated Apple variables, but I haven't seen one yet
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// Check variable state
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if (variableHeader->State != NVRAM_VSS_VARIABLE_ADDED && variableHeader->State != NVRAM_VSS_VARIABLE_HEADER_VALID) {
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isInvalid = true;
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@ -1442,6 +1507,11 @@ USTATUS NvramParser::parseVssStoreBody(const UModelIndex & index)
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// Add tree item
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model->addItem(localOffset + offset, Types::VssEntry, subtype, name, text, info, header, body, UByteArray(), Movable, index);
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// Apply alignment, if needed
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if (alignment) {
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variableSize = ((variableSize + alignment - 1) & (~(alignment - 1)));
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}
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// Move to next variable
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offset += variableSize;
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}
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@ -51,6 +51,7 @@ private:
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USTATUS parseStoreHeader(const UByteArray & store, const UINT32 localOffset, const UModelIndex & parent, UModelIndex & index);
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USTATUS parseVssStoreHeader(const UByteArray & store, const UINT32 localOffset, const UModelIndex & parent, UModelIndex & index);
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USTATUS parseLenovoVssStoreHeader(const UByteArray & store, const UINT32 localOffset, const UModelIndex & parent, UModelIndex & index);
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USTATUS parseFtwStoreHeader(const UByteArray & store, const UINT32 localOffset, const UModelIndex & parent, UModelIndex & index);
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USTATUS parseFdcStoreHeader(const UByteArray & store, const UINT32 localOffset, const UModelIndex & parent, UModelIndex & index);
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USTATUS parseFsysStoreHeader(const UByteArray & store, const UINT32 localOffset, const UModelIndex & parent, UModelIndex & index);
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@ -61,7 +62,7 @@ private:
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USTATUS parseSlicMarkerHeader(const UByteArray & store, const UINT32 localOffset, const UModelIndex & parent, UModelIndex & index);
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USTATUS parseIntelMicrocodeHeader(const UByteArray & store, const UINT32 localOffset, const UModelIndex & parent, UModelIndex & index);
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USTATUS parseVssStoreBody(const UModelIndex & index);
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USTATUS parseVssStoreBody(const UModelIndex & index, const UINT8 alignment);
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USTATUS parseFsysStoreBody(const UModelIndex & index);
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USTATUS parseEvsaStoreBody(const UModelIndex & index);
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USTATUS parseFlashMapBody(const UModelIndex & index);
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@ -36,29 +36,30 @@ UString regionTypeToUString(const UINT8 type)
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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::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::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::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");
|
||||
case Types::Padding: return UString("Padding");
|
||||
case Types::File: return UString("File");
|
||||
case Types::Section: return UString("Section");
|
||||
case Types::FreeSpace: return UString("Free space");
|
||||
case Types::VssStore: return UString("VSS store");
|
||||
case Types::LenovoVssStore: return UString("Lenovo VSS store");
|
||||
case Types::FtwStore: return UString("FTW store");
|
||||
case Types::FdcStore: return UString("FDC store");
|
||||
case Types::FsysStore: return UString("Fsys store");
|
||||
case Types::EvsaStore: return UString("EVSA store");
|
||||
case Types::CmdbStore: return UString("CMDB store");
|
||||
case Types::FlashMapStore: return UString("FlashMap store");
|
||||
case Types::NvarEntry: return UString("NVAR entry");
|
||||
case Types::VssEntry: return UString("VSS entry");
|
||||
case Types::FsysEntry: return UString("Fsys entry");
|
||||
case Types::EvsaEntry: return UString("EVSA entry");
|
||||
case Types::FlashMapEntry: return UString("FlashMap entry");
|
||||
case Types::Microcode: return UString("Microcode");
|
||||
case Types::SlicData: return UString("SLIC data");
|
||||
}
|
||||
|
||||
return UString("Unknown");
|
||||
@ -70,6 +71,7 @@ UString itemSubtypeToUString(const UINT8 type, const UINT8 subtype)
|
||||
case Types::Root:
|
||||
case Types::FreeSpace:
|
||||
case Types::VssStore:
|
||||
case Types::LenovoVssStore:
|
||||
case Types::FdcStore:
|
||||
case Types::FsysStore:
|
||||
case Types::EvsaStore:
|
||||
@ -115,8 +117,8 @@ UString itemSubtypeToUString(const UINT8 type, const UINT8 subtype)
|
||||
if (subtype == Subtypes::AuthVssEntry) return UString("Auth");
|
||||
break;
|
||||
case Types::FsysEntry:
|
||||
if (subtype == Subtypes::InvalidFsysEntry) return UString("Invalid");
|
||||
if (subtype == Subtypes::NormalFsysEntry) return UString("Normal");
|
||||
if (subtype == Subtypes::InvalidFsysEntry) return UString("Invalid");
|
||||
if (subtype == Subtypes::NormalFsysEntry) return UString("Normal");
|
||||
break;
|
||||
case Types::EvsaEntry:
|
||||
if (subtype == Subtypes::InvalidEvsaEntry) return UString("Invalid");
|
||||
|
@ -44,6 +44,7 @@ namespace Types {
|
||||
Section,
|
||||
FreeSpace,
|
||||
VssStore,
|
||||
LenovoVssStore,
|
||||
FtwStore,
|
||||
FdcStore,
|
||||
FsysStore,
|
||||
|
Loading…
Reference in New Issue
Block a user