mirror of https://github.com/acidanthera/audk.git
UefiCpuPkg/Microcode: Fix incorrect checksum issue for extended table
REF: https://bugzilla.tianocore.org/show_bug.cgi?id=1020 The following Microcode payload format is define in SDM spec. Payload: |MicrocodeHeader|MicrocodeBinary|ExtendedHeader|ExtendedTable|. When we verify the CheckSum32 with ExtendedTable, we should use the fields of ExtendedTable to replace corresponding fields in MicrocodeHeader, and then calculate the CheckSum32 with MicrocodeHeader+MicrocodeBinary. This patch already verified on ICL platform. Contributed-under: TianoCore Contribution Agreement 1.1 Signed-off-by: Chen A Chen <chen.a.chen@intel.com> Cc: Ray Ni <ray.ni@intel.com> Cc: Eric Dong <eric.dong@intel.com> Cc: Zhang Chao B <chao.b.zhang@intel.com> Reviewed-by: Ray Ni <ray.ni@intel.com> Reviewed-by: Eric Dong <eric.dong@intel.com>
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@ -35,6 +35,42 @@ GetCurrentMicrocodeSignature (
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/**
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Detect whether specified processor can find matching microcode patch and load it.
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Microcode Payload as the following format:
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+----------------------------------------+------------------+
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| CPU_MICROCODE_HEADER | |
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+----------------------------------------+ CheckSum Part1 |
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| Microcode Binary | |
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+----------------------------------------+------------------+
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| CPU_MICROCODE_EXTENDED_TABLE_HEADER | |
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+----------------------------------------+ CheckSum Part2 |
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| CPU_MICROCODE_EXTENDED_TABLE | |
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| ... | |
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+----------------------------------------+------------------+
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There may by multiple CPU_MICROCODE_EXTENDED_TABLE in this format.
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The count of CPU_MICROCODE_EXTENDED_TABLE is indicated by ExtendedSignatureCount
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of CPU_MICROCODE_EXTENDED_TABLE_HEADER structure.
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When we are trying to verify the CheckSum32 with extended table.
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We should use the fields of exnteded table to replace the corresponding
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fields in CPU_MICROCODE_HEADER structure, and recalculate the
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CheckSum32 with CPU_MICROCODE_HEADER + Microcode Binary. We named
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it as CheckSum Part3.
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The CheckSum Part2 is used to verify the CPU_MICROCODE_EXTENDED_TABLE_HEADER
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and CPU_MICROCODE_EXTENDED_TABLE parts. We should make sure CheckSum Part2
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is correct before we are going to verify each CPU_MICROCODE_EXTENDED_TABLE.
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Only ProcessorSignature, ProcessorFlag and CheckSum are different between
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CheckSum Part1 and CheckSum Part3. To avoid multiple computing CheckSum Part3.
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Save an in-complete CheckSum32 from CheckSum Part1 for common parts.
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When we are going to calculate CheckSum32, just should use the corresponding part
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of the ProcessorSignature, ProcessorFlag and CheckSum with in-complete CheckSum32.
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Notes: CheckSum32 is not a strong verification.
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It does not guarantee that the data has not been modified.
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CPU has its own mechanism to verify Microcode Binary part.
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@param[in] CpuMpData The pointer to CPU MP Data structure.
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@param[in] IsBspCallIn Indicate whether the caller is BSP or not.
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**/
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@ -57,6 +93,7 @@ MicrocodeDetect (
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UINT32 LatestRevision;
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UINTN TotalSize;
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UINT32 CheckSum32;
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UINT32 InCompleteCheckSum32;
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BOOLEAN CorrectMicrocode;
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VOID *MicrocodeData;
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MSR_IA32_PLATFORM_ID_REGISTER PlatformIdMsr;
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@ -121,6 +158,25 @@ MicrocodeDetect (
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MicrocodeData = NULL;
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MicrocodeEnd = (UINTN) (CpuMpData->MicrocodePatchAddress + CpuMpData->MicrocodePatchRegionSize);
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MicrocodeEntryPoint = (CPU_MICROCODE_HEADER *) (UINTN) CpuMpData->MicrocodePatchAddress;
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//
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// Save an in-complete CheckSum32 from CheckSum Part1 for common parts.
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//
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if (MicrocodeEntryPoint->DataSize == 0) {
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InCompleteCheckSum32 = CalculateSum32 (
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(UINT32 *) MicrocodeEntryPoint,
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sizeof (CPU_MICROCODE_HEADER) + 2000
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);
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} else {
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InCompleteCheckSum32 = CalculateSum32 (
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(UINT32 *) MicrocodeEntryPoint,
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sizeof (CPU_MICROCODE_HEADER) + MicrocodeEntryPoint->DataSize
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);
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}
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InCompleteCheckSum32 -= MicrocodeEntryPoint->ProcessorSignature.Uint32;
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InCompleteCheckSum32 -= MicrocodeEntryPoint->ProcessorFlags;
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InCompleteCheckSum32 -= MicrocodeEntryPoint->Checksum;
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do {
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//
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// Check if the microcode is for the Cpu and the version is newer
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@ -137,14 +193,13 @@ MicrocodeDetect (
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MicrocodeEntryPoint->UpdateRevision > LatestRevision &&
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(MicrocodeEntryPoint->ProcessorFlags & (1 << PlatformId))
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) {
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if (MicrocodeEntryPoint->DataSize == 0) {
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CheckSum32 = CalculateSum32 ((UINT32 *) MicrocodeEntryPoint, 2048);
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} else {
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CheckSum32 = CalculateSum32 (
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(UINT32 *) MicrocodeEntryPoint,
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MicrocodeEntryPoint->DataSize + sizeof (CPU_MICROCODE_HEADER)
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);
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}
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//
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// Calculate CheckSum Part1.
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//
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CheckSum32 = InCompleteCheckSum32;
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CheckSum32 += MicrocodeEntryPoint->ProcessorSignature.Uint32;
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CheckSum32 += MicrocodeEntryPoint->ProcessorFlags;
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CheckSum32 += MicrocodeEntryPoint->Checksum;
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if (CheckSum32 == 0) {
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CorrectMicrocode = TRUE;
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ProcessorFlags = MicrocodeEntryPoint->ProcessorFlags;
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@ -163,6 +218,9 @@ MicrocodeDetect (
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// Calculate Extended Checksum
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//
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if ((ExtendedTableLength % 4) == 0) {
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//
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// Calculate CheckSum Part2.
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//
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CheckSum32 = CalculateSum32 ((UINT32 *) ExtendedTableHeader, ExtendedTableLength);
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if (CheckSum32 == 0) {
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//
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@ -171,7 +229,13 @@ MicrocodeDetect (
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ExtendedTableCount = ExtendedTableHeader->ExtendedSignatureCount;
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ExtendedTable = (CPU_MICROCODE_EXTENDED_TABLE *) (ExtendedTableHeader + 1);
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for (Index = 0; Index < ExtendedTableCount; Index ++) {
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CheckSum32 = CalculateSum32 ((UINT32 *) ExtendedTable, sizeof(CPU_MICROCODE_EXTENDED_TABLE));
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//
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// Calculate CheckSum Part3.
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//
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CheckSum32 = InCompleteCheckSum32;
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CheckSum32 += ExtendedTable->ProcessorSignature.Uint32;
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CheckSum32 += ExtendedTable->ProcessorFlag;
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CheckSum32 += ExtendedTable->Checksum;
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if (CheckSum32 == 0) {
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//
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// Verify Header
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