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Further improve micorcode header detection
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@ -1243,13 +1243,15 @@ BOOLEAN FfsParser::microcodeHeaderValid(const INTEL_MICROCODE_HEADER* ucodeHeade
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return FALSE;
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}
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// Check data size to be multiple of 4
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if (ucodeHeader->DataSize % 4 != 0) {
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// Check data size to be multiple of 4 and less than 0x1000000
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if (ucodeHeader->DataSize % 4 != 0 ||
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ucodeHeader->DataSize > 0xFFFFFF) {
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return FALSE;
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}
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// Check TotalSize to be greater then DataSize and multiple of 1024
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if (ucodeHeader->TotalSize <= ucodeHeader->DataSize || ucodeHeader->TotalSize % 1024 != 0) {
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// Check TotalSize to be greater then DataSize snd less than 0x1000000
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if (ucodeHeader->TotalSize <= ucodeHeader->DataSize ||
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ucodeHeader->TotalSize > 0xFFFFFF) {
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return FALSE;
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}
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@ -1279,8 +1281,13 @@ BOOLEAN FfsParser::microcodeHeaderValid(const INTEL_MICROCODE_HEADER* ucodeHeade
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return FALSE;
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}
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// Check loader revision to be sane
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if (ucodeHeader->LoaderRevision > INTEL_MICROCODE_MAX_LOADER_REVISION) {
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// Check Revision to be less than 0x100
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if (ucodeHeader->Revision > 0xFF) {
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return FALSE;
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}
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// Check LoaderRevision to be less than 0x100
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if (ucodeHeader->LoaderRevision > 0xFF) {
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return FALSE;
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}
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@ -4288,8 +4295,9 @@ USTATUS FfsParser::parseIntelMicrocodeHeader(const UByteArray & microcode, const
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// Valid microcode found
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UINT32 dataSize = ucodeHeader->DataSize;
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if (dataSize == 0)
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if (dataSize == 0) {
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dataSize = INTEL_MICROCODE_REAL_DATA_SIZE_ON_ZERO;
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}
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// Recalculate the whole microcode checksum
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UByteArray tempMicrocode = microcode;
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26
common/fit.h
26
common/fit.h
@ -60,27 +60,26 @@ typedef struct {
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// This scructure is described in Section 9.11.1 of the Intel Software Developer manual Volume 3A Part 1
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typedef struct INTEL_MICROCODE_HEADER_ {
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UINT32 Version;
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UINT32 Revision;
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UINT16 DateYear;
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UINT8 DateDay;
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UINT8 DateMonth;
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UINT32 Version; // 0x00000001
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UINT32 Revision; // Sane values are less than 0x100
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UINT16 DateYear; // BCD
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UINT8 DateDay; // BCD
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UINT8 DateMonth; // BCD
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UINT32 CpuSignature;
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UINT32 Checksum; // Checksum of Update Data and Header. Used to verify the integrity of the update header and data.
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// Checksum is correct when the summation of all the DWORDs (including the extended Processor Signature Table)
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// that comprise the microcode update result in 00000000H.
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UINT32 LoaderRevision;
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UINT32 LoaderRevision; // Sane values are less than 0x100
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UINT8 CpuFlags;
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UINT8 CpuFlagsReserved[3];
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UINT8 CpuFlagsReserved[3]; // Zeroes
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UINT32 DataSize; // Specifies the size of the encrypted data in bytes, and must be a multiple of DWORDs.
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// If this value is 00000000H, then the microcode update encrypted data is 2000 bytes (or 500 DWORDs).
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UINT32 TotalSize;// Specifies the total size of the microcode update in bytes.
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// Sane values are less than 0x1000000
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UINT32 TotalSize; // Specifies the total size of the microcode update in bytes.
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// It is the summation of the header size, the encrypted data size and the size of the optional extended signature table.
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// This value is always a multiple of 1024.
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UINT8 Reserved[12];
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// This value is always a multiple of 1024 according to the spec, but Intel already breached it several times.
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// Sane values are less than 0x1000000
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UINT8 Reserved[12]; // Zeroes
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} INTEL_MICROCODE_HEADER;
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#define INTEL_MICROCODE_REAL_DATA_SIZE_ON_ZERO 2000
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@ -104,7 +103,6 @@ typedef struct INTEL_MICROCODE_EXTENDED_HEADER_ENTRY_ {
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} INTEL_MICROCODE_EXTENDED_HEADER_ENTRY;
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#define INTEL_MICROCODE_HEADER_VERSION_1 0x00000001
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#define INTEL_MICROCODE_MAX_LOADER_REVISION 0x00000010
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#pragma pack(pop)
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