mirror of
https://github.com/LongSoft/UEFITool.git
synced 2024-11-22 07:58:22 +08:00
Add support for Apple-specific section headers
- and some new PE machine types
This commit is contained in:
parent
cd1cc09b39
commit
2d932da1f3
@ -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("0.30.0_alpha27"))
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version(tr("0.30.0_alpha28"))
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{
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clipboard = QApplication::clipboard();
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90
common/ffs.h
90
common/ffs.h
@ -368,14 +368,24 @@ typedef struct EFI_COMMON_SECTION_HEADER_ {
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// Large file common section header
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typedef struct EFI_COMMON_SECTION_HEADER2_ {
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UINT8 Size[3]; //Must be 0xFFFFFF for this header to be used
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UINT8 Size[3]; // Must be 0xFFFFFF for this header to be used
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UINT8 Type;
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UINT32 ExtendedSize;
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} EFI_COMMON_SECTION_HEADER2;
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// Apple common section header
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typedef struct EFI_COMMON_SECTION_HEADER_APPLE {
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UINT8 Size[3];
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UINT8 Type;
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UINT32 Reserved; // Must be 0x7FFF for this header to be used
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} EFI_COMMON_SECTION_HEADER_APPLE;
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// Section2 usage indicator
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#define EFI_SECTION2_IS_USED 0xFFFFFF
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// Apple section usage indicator
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#define EFI_SECTION_APPLE_USED 0x7FFF
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// File section types
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#define EFI_SECTION_ALL 0x00 // Impossible attribute for file in the FS
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@ -398,23 +408,18 @@ typedef struct EFI_COMMON_SECTION_HEADER2_ {
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#define EFI_SECTION_PEI_DEPEX 0x1B
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#define EFI_SECTION_SMM_DEPEX 0x1C
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#define PHOENIX_SECTION_POSTCODE 0xF0 // Specific to Phoenix SCT images
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#define INSYDE_SECTION_POSTCODE 0x20 // Specific to Insyde images
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#define INSYDE_SECTION_POSTCODE 0x20 // Specific to Insyde H2O images
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// Compression section
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typedef struct EFI_COMPRESSION_SECTION_ {
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UINT8 Size[3];
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UINT8 Type;
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UINT32 UncompressedLength;
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UINT8 CompressionType;
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} EFI_COMPRESSION_SECTION;
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typedef struct EFI_COMPRESSION_SECTION2_ {
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UINT8 Size[3];
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UINT8 Type;
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UINT32 ExtendedSize;
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typedef struct EFI_COMPRESSION_SECTION_APPLE_ {
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UINT32 UncompressedLength;
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UINT8 CompressionType;
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} EFI_COMPRESSION_SECTION2;
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UINT32 CompressionType;
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} EFI_COMPRESSION_SECTION_APPLE;
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// Compression types
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#define EFI_NOT_COMPRESSED 0x00
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@ -423,21 +428,17 @@ typedef struct EFI_COMPRESSION_SECTION2_ {
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//GUID defined section
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typedef struct EFI_GUID_DEFINED_SECTION_ {
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UINT8 Size[3];
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UINT8 Type;
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EFI_GUID SectionDefinitionGuid;
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UINT16 DataOffset;
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UINT16 Attributes;
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} EFI_GUID_DEFINED_SECTION;
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typedef struct EFI_GUID_DEFINED_SECTION2_ {
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UINT8 Size[3];
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UINT8 Type;
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UINT32 ExtendedSize;
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typedef struct EFI_GUID_DEFINED_SECTION_APPLE_ {
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EFI_GUID SectionDefinitionGuid;
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UINT16 DataOffset;
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UINT16 Attributes;
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} EFI_GUID_DEFINED_SECTION2;
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UINT32 Reserved;
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} EFI_GUID_DEFINED_SECTION_APPLE;
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// Attributes for GUID defined section
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#define EFI_GUIDED_SECTION_PROCESSING_REQUIRED 0x01
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@ -453,7 +454,7 @@ const QByteArray EFI_GUIDED_SECTION_TIANO // A31280AD-481E-41B6-95E8-127F4C98477
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const QByteArray EFI_GUIDED_SECTION_LZMA // EE4E5898-3914-4259-9D6E-DC7BD79403CF
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("\x98\x58\x4E\xEE\x14\x39\x59\x42\x9D\x6E\xDC\x7B\xD7\x94\x03\xCF", 16);
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const QByteArray EFI_FIRMWARE_CONTENTS_SIGNED_GUID //0F9D89E8-9259-4F76-A5AF-0C89E34023DF
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const QByteArray EFI_FIRMWARE_CONTENTS_SIGNED_GUID // 0F9D89E8-9259-4F76-A5AF-0C89E34023DF
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("\xE8\x89\x9D\x0F\x59\x92\x76\x4F\xA5\xAF\x0C\x89\xE3\x40\x23\xDF", 16);
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//#define WIN_CERT_TYPE_PKCS_SIGNED_DATA 0x0002
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@ -475,8 +476,6 @@ typedef struct WIN_CERTIFICATE_UEFI_GUID_ {
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// WIN_CERTIFICATE_UEFI_GUID.CertType
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const QByteArray EFI_CERT_TYPE_RSA2048_SHA256_GUID
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("\x14\x74\x71\xA7\x16\xC6\x77\x49\x94\x20\x84\x47\x12\xA7\x35\xBF");
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//const QByteArray EFI_CERT_TYPE_PKCS7_GUID
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//("\x9D\xD2\xAF\x4A\xDF\x68\xEE\x49\x8A\xA9\x34\x7D\x37\x56\x65\xA7");
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// WIN_CERTIFICATE_UEFI_GUID.CertData
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typedef struct EFI_CERT_BLOCK_RSA_2048_SHA256_ {
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@ -487,70 +486,19 @@ typedef struct EFI_CERT_BLOCK_RSA_2048_SHA256_ {
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// Version section
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typedef struct EFI_VERSION_SECTION_ {
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UINT8 Size[3];
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UINT8 Type;
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UINT16 BuildNumber;
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} EFI_VERSION_SECTION;
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typedef struct EFI_VERSION_SECTION2_ {
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UINT8 Size[3];
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UINT8 Type;
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UINT32 ExtendedSize;
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UINT16 BuildNumber;
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} EFI_VERSION_SECTION2;
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// Freeform subtype GUID section
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typedef struct EFI_FREEFORM_SUBTYPE_GUID_SECTION_ {
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UINT8 Size[3];
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UINT8 Type;
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EFI_GUID SubTypeGuid;
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} EFI_FREEFORM_SUBTYPE_GUID_SECTION;
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typedef struct EFI_FREEFORM_SUBTYPE_GUID_SECTION2_ {
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UINT8 Size[3];
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UINT8 Type;
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UINT32 ExtendedSize;
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EFI_GUID SubTypeGuid;
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} EFI_FREEFORM_SUBTYPE_GUID_SECTION2;
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// Phoenix SCT and Insyde postcode section
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typedef struct POSTCODE_SECTION_ {
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UINT8 Size[3];
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UINT8 Type;
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UINT32 Postcode;
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} POSTCODE_SECTION;
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typedef struct POSTCODE_SECTION2_ {
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UINT8 Size[3];
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UINT8 Type;
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UINT32 ExtendedSize;
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UINT32 Postcode;
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} POSTCODE_SECTION2;
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// Other sections
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typedef EFI_COMMON_SECTION_HEADER EFI_DISPOSABLE_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_DISPOSABLE_SECTION2;
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typedef EFI_COMMON_SECTION_HEADER EFI_RAW_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_RAW_SECTION2;
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typedef EFI_COMMON_SECTION_HEADER EFI_DXE_DEPEX_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_DXE_DEPEX_SECTION2;
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typedef EFI_COMMON_SECTION_HEADER EFI_PEI_DEPEX_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_PEI_DEPEX_SECTION2;
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typedef EFI_COMMON_SECTION_HEADER EFI_SMM_DEPEX_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_SMM_DEPEX_SECTION2;
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typedef EFI_COMMON_SECTION_HEADER EFI_PE32_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_PE32_SECTION2;
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typedef EFI_COMMON_SECTION_HEADER EFI_PIC_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_PIC_SECTION2;
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typedef EFI_COMMON_SECTION_HEADER EFI_TE_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_TE_SECTION2;
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typedef EFI_COMMON_SECTION_HEADER EFI_COMPATIBILITY16_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_COMPATIBILITY16_SECTION2;
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typedef EFI_COMMON_SECTION_HEADER EFI_FIRMWARE_VOLUME_IMAGE_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_FIRMWARE_VOLUME_IMAGE_SECTION2;
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typedef EFI_COMMON_SECTION_HEADER EFI_USER_INTERFACE_SECTION;
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typedef EFI_COMMON_SECTION_HEADER2 EFI_USER_INTERFACE_SECTION2;
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//*****************************************************************************
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// EFI Dependency Expression
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//*****************************************************************************
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@ -1875,18 +1875,32 @@ STATUS FfsParser::parseCommonSectionHeader(const QByteArray & section, const UIN
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PARSING_DATA pdata = parsingDataFromQModelIndex(parent);
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// Obtain header fields
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const EFI_COMMON_SECTION_HEADER* sectionHeader = (const EFI_COMMON_SECTION_HEADER*)(section.constData());
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UINT32 headerSize = sizeof(EFI_COMMON_SECTION_HEADER);
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if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED)
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headerSize = sizeof(EFI_COMMON_SECTION_HEADER2);
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UINT32 headerSize;
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UINT8 type;
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const EFI_COMMON_SECTION_HEADER_APPLE* appleHeader = (const EFI_COMMON_SECTION_HEADER_APPLE*)(section.constData());
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if ((UINT32)section.size() >= sizeof(EFI_COMMON_SECTION_HEADER_APPLE) && appleHeader->Reserved == EFI_SECTION_APPLE_USED) {
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headerSize = sizeof(EFI_COMMON_SECTION_HEADER_APPLE);
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type = appleHeader->Type;
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}
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else {
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const EFI_COMMON_SECTION_HEADER* sectionHeader = (const EFI_COMMON_SECTION_HEADER*)(section.constData());
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headerSize = sizeof(EFI_COMMON_SECTION_HEADER);
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if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED)
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headerSize = sizeof(EFI_COMMON_SECTION_HEADER2);
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type = sectionHeader->Type;
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}
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// Check sanity again
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if ((UINT32)section.size() < headerSize)
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return ERR_INVALID_SECTION;
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QByteArray header = section.left(headerSize);
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QByteArray body = section.mid(headerSize);
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// Get info
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QString name = sectionTypeToQString(sectionHeader->Type) + QObject::tr(" section");
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QString name = sectionTypeToQString(type) + QObject::tr(" section");
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QString info = QObject::tr("Type: %1h\nFull size: %2h (%3)\nHeader size: %4h (%5)\nBody size: %6h (%7)")
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.hexarg2(sectionHeader->Type, 2)
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.hexarg2(type, 2)
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.hexarg(section.size()).arg(section.size())
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.hexarg(headerSize).arg(headerSize)
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.hexarg(body.size()).arg(body.size());
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@ -1896,7 +1910,7 @@ STATUS FfsParser::parseCommonSectionHeader(const QByteArray & section, const UIN
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// Add tree item
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if (!preparse) {
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index = model->addItem(Types::Section, sectionHeader->Type, name, QString(), info, header, body, QByteArray(), true, parsingDataToQByteArray(pdata), parent);
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index = model->addItem(Types::Section, type, name, QString(), info, header, body, QByteArray(), true, parsingDataToQByteArray(pdata), parent);
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}
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return ERR_SUCCESS;
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}
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@ -1904,26 +1918,44 @@ STATUS FfsParser::parseCommonSectionHeader(const QByteArray & section, const UIN
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STATUS FfsParser::parseCompressedSectionHeader(const QByteArray & section, const UINT32 parentOffset, const QModelIndex & parent, QModelIndex & index, const bool preparse)
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{
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// Check sanity
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if ((UINT32)section.size() < sizeof(EFI_COMPRESSION_SECTION))
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if ((UINT32)section.size() < sizeof(EFI_COMMON_SECTION_HEADER))
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return ERR_INVALID_SECTION;
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// Get data from parent's parsing data
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PARSING_DATA pdata = parsingDataFromQModelIndex(parent);
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// Obtain header fields
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UINT32 headerSize;
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UINT8 compressionType;
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UINT32 uncompressedLength;
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const EFI_COMMON_SECTION_HEADER* sectionHeader = (const EFI_COMMON_SECTION_HEADER*)(section.constData());
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const EFI_COMPRESSION_SECTION* compressedSectionHeader = (const EFI_COMPRESSION_SECTION*)sectionHeader;
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UINT32 headerSize = sizeof(EFI_COMPRESSION_SECTION);
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UINT8 compressionType = compressedSectionHeader->CompressionType;
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UINT32 uncompressedLength = compressedSectionHeader->UncompressedLength;
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if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED) {
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if ((UINT32)section.size() < sizeof(EFI_COMPRESSION_SECTION2))
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const EFI_COMMON_SECTION_HEADER2* section2Header = (const EFI_COMMON_SECTION_HEADER2*)(section.constData());
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const EFI_COMMON_SECTION_HEADER_APPLE* appleHeader = (const EFI_COMMON_SECTION_HEADER_APPLE*)(section.constData());
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if ((UINT32)section.size() >= sizeof(EFI_COMMON_SECTION_HEADER_APPLE) && appleHeader->Reserved == EFI_SECTION_APPLE_USED) { // Check for apple section
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const EFI_COMPRESSION_SECTION_APPLE* appleSectionHeader = (const EFI_COMPRESSION_SECTION_APPLE*)(appleHeader + 1);
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headerSize = sizeof(EFI_COMMON_SECTION_HEADER_APPLE) + sizeof(EFI_COMPRESSION_SECTION_APPLE);
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compressionType = (UINT8)appleSectionHeader->CompressionType;
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uncompressedLength = appleSectionHeader->UncompressedLength;
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}
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else if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED) { // Check for extended header section
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const EFI_COMPRESSION_SECTION* compressedSectionHeader = (const EFI_COMPRESSION_SECTION*)(section2Header + 1);
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if ((UINT32)section.size() < sizeof(EFI_COMMON_SECTION_HEADER2) + sizeof(EFI_COMPRESSION_SECTION))
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return ERR_INVALID_SECTION;
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const EFI_COMPRESSION_SECTION2* compressedSectionHeader2 = (const EFI_COMPRESSION_SECTION2*)sectionHeader;
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headerSize = sizeof(EFI_COMPRESSION_SECTION2);
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compressionType = compressedSectionHeader2->CompressionType;
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headerSize = sizeof(EFI_COMMON_SECTION_HEADER2) + sizeof(EFI_COMPRESSION_SECTION);
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compressionType = compressedSectionHeader->CompressionType;
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uncompressedLength = compressedSectionHeader->UncompressedLength;
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}
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else { // Normal section
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const EFI_COMPRESSION_SECTION* compressedSectionHeader = (const EFI_COMPRESSION_SECTION*)(sectionHeader + 1);
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headerSize = sizeof(EFI_COMMON_SECTION_HEADER) + sizeof(EFI_COMPRESSION_SECTION);
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compressionType = compressedSectionHeader->CompressionType;
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uncompressedLength = compressedSectionHeader->UncompressedLength;
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}
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// Check sanity again
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if ((UINT32)section.size() < headerSize)
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return ERR_INVALID_SECTION;
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QByteArray header = section.left(headerSize);
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QByteArray body = section.mid(headerSize);
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@ -1953,28 +1985,49 @@ STATUS FfsParser::parseCompressedSectionHeader(const QByteArray & section, const
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STATUS FfsParser::parseGuidedSectionHeader(const QByteArray & section, const UINT32 parentOffset, const QModelIndex & parent, QModelIndex & index, const bool preparse)
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{
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// Check sanity
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if ((UINT32)section.size() < sizeof(EFI_GUID_DEFINED_SECTION))
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if ((UINT32)section.size() < sizeof(EFI_COMMON_SECTION_HEADER))
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return ERR_INVALID_SECTION;
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// Get data from parent's parsing data
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PARSING_DATA pdata = parsingDataFromQModelIndex(parent);
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// Obtain header fields
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UINT32 headerSize;
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EFI_GUID guid;
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UINT16 dataOffset;
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UINT16 attributes;
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const EFI_COMMON_SECTION_HEADER* sectionHeader = (const EFI_COMMON_SECTION_HEADER*)(section.constData());
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const EFI_GUID_DEFINED_SECTION* guidDefinedSectionHeader = (const EFI_GUID_DEFINED_SECTION*)sectionHeader;
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EFI_GUID guid = guidDefinedSectionHeader->SectionDefinitionGuid;
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UINT16 dataOffset = guidDefinedSectionHeader->DataOffset;
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UINT16 attributes = guidDefinedSectionHeader->Attributes;
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UINT32 nextHeaderOffset = sizeof(EFI_GUID_DEFINED_SECTION);
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if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED) {
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if ((UINT32)section.size() < sizeof(EFI_GUID_DEFINED_SECTION2))
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const EFI_COMMON_SECTION_HEADER2* section2Header = (const EFI_COMMON_SECTION_HEADER2*)(section.constData());
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const EFI_COMMON_SECTION_HEADER_APPLE* appleHeader = (const EFI_COMMON_SECTION_HEADER_APPLE*)(section.constData());
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if ((UINT32)section.size() >= sizeof(EFI_COMMON_SECTION_HEADER_APPLE) && appleHeader->Reserved == EFI_SECTION_APPLE_USED) { // Check for apple section
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const EFI_GUID_DEFINED_SECTION_APPLE* appleSectionHeader = (const EFI_GUID_DEFINED_SECTION_APPLE*)(appleHeader + 1);
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headerSize = sizeof(EFI_COMMON_SECTION_HEADER_APPLE) + sizeof(EFI_GUID_DEFINED_SECTION_APPLE);
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if ((UINT32)section.size() < headerSize)
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return ERR_INVALID_SECTION;
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const EFI_GUID_DEFINED_SECTION2* guidDefinedSectionHeader2 = (const EFI_GUID_DEFINED_SECTION2*)sectionHeader;
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guid = guidDefinedSectionHeader2->SectionDefinitionGuid;
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dataOffset = guidDefinedSectionHeader2->DataOffset;
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attributes = guidDefinedSectionHeader2->Attributes;
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nextHeaderOffset = sizeof(EFI_GUID_DEFINED_SECTION2);
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guid = appleSectionHeader->SectionDefinitionGuid;
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dataOffset = appleSectionHeader->DataOffset;
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attributes = appleSectionHeader->Attributes;
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}
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else if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED) { // Check for extended header section
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const EFI_GUID_DEFINED_SECTION* guidDefinedSectionHeader = (const EFI_GUID_DEFINED_SECTION*)(section2Header + 1);
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if ((UINT32)section.size() < sizeof(EFI_COMMON_SECTION_HEADER2) + sizeof(EFI_GUID_DEFINED_SECTION))
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return ERR_INVALID_SECTION;
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headerSize = sizeof(EFI_COMMON_SECTION_HEADER2) + sizeof(EFI_GUID_DEFINED_SECTION);
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guid = guidDefinedSectionHeader->SectionDefinitionGuid;
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dataOffset = guidDefinedSectionHeader->DataOffset;
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attributes = guidDefinedSectionHeader->Attributes;
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}
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else { // Normal section
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const EFI_GUID_DEFINED_SECTION* guidDefinedSectionHeader = (const EFI_GUID_DEFINED_SECTION*)(sectionHeader + 1);
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headerSize = sizeof(EFI_COMMON_SECTION_HEADER) + sizeof(EFI_GUID_DEFINED_SECTION);
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guid = guidDefinedSectionHeader->SectionDefinitionGuid;
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dataOffset = guidDefinedSectionHeader->DataOffset;
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attributes = guidDefinedSectionHeader->Attributes;
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}
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// Check sanity again
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if ((UINT32)section.size() < headerSize)
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return ERR_INVALID_SECTION;
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// Check for special GUIDed sections
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QByteArray additionalInfo;
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@ -1991,10 +2044,10 @@ STATUS FfsParser::parseGuidedSectionHeader(const QByteArray & section, const UIN
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msgNoAuthStatusAttribute = true;
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}
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if ((UINT32)section.size() < nextHeaderOffset + sizeof(UINT32))
|
||||
if ((UINT32)section.size() < headerSize + sizeof(UINT32))
|
||||
return ERR_INVALID_SECTION;
|
||||
|
||||
UINT32 crc = *(UINT32*)(section.constData() + nextHeaderOffset);
|
||||
UINT32 crc = *(UINT32*)(section.constData() + headerSize);
|
||||
additionalInfo += QObject::tr("\nChecksum type: CRC32");
|
||||
// Calculate CRC32 of section data
|
||||
UINT32 calculated = crc32(0, (const UINT8*)section.constData() + dataOffset, section.size() - dataOffset);
|
||||
@ -2019,10 +2072,10 @@ STATUS FfsParser::parseGuidedSectionHeader(const QByteArray & section, const UIN
|
||||
}
|
||||
|
||||
// Get certificate type and length
|
||||
if ((UINT32)section.size() < nextHeaderOffset + sizeof(WIN_CERTIFICATE))
|
||||
if ((UINT32)section.size() < headerSize + sizeof(WIN_CERTIFICATE))
|
||||
return ERR_INVALID_SECTION;
|
||||
|
||||
const WIN_CERTIFICATE* winCertificate = (const WIN_CERTIFICATE*)(section.constData() + nextHeaderOffset);
|
||||
const WIN_CERTIFICATE* winCertificate = (const WIN_CERTIFICATE*)(section.constData() + headerSize);
|
||||
UINT32 certLength = winCertificate->Length;
|
||||
UINT16 certType = winCertificate->CertificateType;
|
||||
|
||||
@ -2038,7 +2091,7 @@ STATUS FfsParser::parseGuidedSectionHeader(const QByteArray & section, const UIN
|
||||
additionalInfo += QObject::tr("\nCertificate type: UEFI");
|
||||
|
||||
// Get certificate GUID
|
||||
const WIN_CERTIFICATE_UEFI_GUID* winCertificateUefiGuid = (const WIN_CERTIFICATE_UEFI_GUID*)(section.constData() + nextHeaderOffset);
|
||||
const WIN_CERTIFICATE_UEFI_GUID* winCertificateUefiGuid = (const WIN_CERTIFICATE_UEFI_GUID*)(section.constData() + headerSize);
|
||||
QByteArray certTypeGuid((const char*)&winCertificateUefiGuid->CertType, sizeof(EFI_GUID));
|
||||
|
||||
if (certTypeGuid == EFI_CERT_TYPE_RSA2048_SHA256_GUID) {
|
||||
@ -2104,32 +2157,52 @@ STATUS FfsParser::parseGuidedSectionHeader(const QByteArray & section, const UIN
|
||||
STATUS FfsParser::parseFreeformGuidedSectionHeader(const QByteArray & section, const UINT32 parentOffset, const QModelIndex & parent, QModelIndex & index, const bool preparse)
|
||||
{
|
||||
// Check sanity
|
||||
if ((UINT32)section.size() < sizeof(EFI_FREEFORM_SUBTYPE_GUID_SECTION))
|
||||
if ((UINT32)section.size() < sizeof(EFI_COMMON_SECTION_HEADER))
|
||||
return ERR_INVALID_SECTION;
|
||||
|
||||
// Get data from parent's parsing data
|
||||
PARSING_DATA pdata = parsingDataFromQModelIndex(parent);
|
||||
|
||||
// Obtain header fields
|
||||
UINT32 headerSize;
|
||||
EFI_GUID guid;
|
||||
UINT8 type;
|
||||
const EFI_COMMON_SECTION_HEADER* sectionHeader = (const EFI_COMMON_SECTION_HEADER*)(section.constData());
|
||||
const EFI_FREEFORM_SUBTYPE_GUID_SECTION* fsgHeader = (const EFI_FREEFORM_SUBTYPE_GUID_SECTION*)sectionHeader;
|
||||
UINT32 headerSize = sizeof(EFI_FREEFORM_SUBTYPE_GUID_SECTION);
|
||||
EFI_GUID guid = fsgHeader->SubTypeGuid;
|
||||
if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED) {
|
||||
if ((UINT32)section.size() < sizeof(EFI_FREEFORM_SUBTYPE_GUID_SECTION2))
|
||||
return ERR_INVALID_SECTION;
|
||||
const EFI_FREEFORM_SUBTYPE_GUID_SECTION2* fsgHeader2 = (const EFI_FREEFORM_SUBTYPE_GUID_SECTION2*)sectionHeader;
|
||||
headerSize = sizeof(EFI_FREEFORM_SUBTYPE_GUID_SECTION2);
|
||||
guid = fsgHeader2->SubTypeGuid;
|
||||
const EFI_COMMON_SECTION_HEADER2* section2Header = (const EFI_COMMON_SECTION_HEADER2*)(section.constData());
|
||||
const EFI_COMMON_SECTION_HEADER_APPLE* appleHeader = (const EFI_COMMON_SECTION_HEADER_APPLE*)(section.constData());
|
||||
|
||||
if ((UINT32)section.size() >= sizeof(EFI_COMMON_SECTION_HEADER_APPLE) && appleHeader->Reserved == EFI_SECTION_APPLE_USED) { // Check for apple section
|
||||
const EFI_FREEFORM_SUBTYPE_GUID_SECTION* appleSectionHeader = (const EFI_FREEFORM_SUBTYPE_GUID_SECTION*)(appleHeader + 1);
|
||||
headerSize = sizeof(EFI_COMMON_SECTION_HEADER_APPLE) + sizeof(EFI_FREEFORM_SUBTYPE_GUID_SECTION);
|
||||
guid = appleSectionHeader->SubTypeGuid;
|
||||
type = appleHeader->Type;
|
||||
}
|
||||
else if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED) { // Check for extended header section
|
||||
const EFI_FREEFORM_SUBTYPE_GUID_SECTION* fsgSectionHeader = (const EFI_FREEFORM_SUBTYPE_GUID_SECTION*)(section2Header + 1);
|
||||
if ((UINT32)section.size() < sizeof(EFI_COMMON_SECTION_HEADER2) + sizeof(EFI_FREEFORM_SUBTYPE_GUID_SECTION))
|
||||
return ERR_INVALID_SECTION;
|
||||
headerSize = sizeof(EFI_COMMON_SECTION_HEADER2) + sizeof(EFI_FREEFORM_SUBTYPE_GUID_SECTION);
|
||||
guid = fsgSectionHeader->SubTypeGuid;
|
||||
type = section2Header->Type;
|
||||
}
|
||||
else { // Normal section
|
||||
const EFI_FREEFORM_SUBTYPE_GUID_SECTION* fsgSectionHeader = (const EFI_FREEFORM_SUBTYPE_GUID_SECTION*)(sectionHeader + 1);
|
||||
headerSize = sizeof(EFI_COMMON_SECTION_HEADER) + sizeof(EFI_FREEFORM_SUBTYPE_GUID_SECTION);
|
||||
guid = fsgSectionHeader->SubTypeGuid;
|
||||
type = sectionHeader->Type;
|
||||
}
|
||||
|
||||
// Check sanity again
|
||||
if ((UINT32)section.size() < headerSize)
|
||||
return ERR_INVALID_SECTION;
|
||||
|
||||
QByteArray header = section.left(headerSize);
|
||||
QByteArray body = section.mid(headerSize);
|
||||
|
||||
// Get info
|
||||
QString name = sectionTypeToQString(sectionHeader->Type) + QObject::tr(" section");
|
||||
QString name = sectionTypeToQString(type) + QObject::tr(" section");
|
||||
QString info = QObject::tr("Type: %1h\nFull size: %2h (%3)\nHeader size: %4h (%5)\nBody size: %6h (%7)\nSubtype GUID: %8")
|
||||
.hexarg2(fsgHeader->Type, 2)
|
||||
.hexarg2(type, 2)
|
||||
.hexarg(section.size()).arg(section.size())
|
||||
.hexarg(header.size()).arg(header.size())
|
||||
.hexarg(body.size()).arg(body.size())
|
||||
@ -2141,7 +2214,7 @@ STATUS FfsParser::parseFreeformGuidedSectionHeader(const QByteArray & section, c
|
||||
|
||||
// Add tree item
|
||||
if (!preparse) {
|
||||
index = model->addItem(Types::Section, sectionHeader->Type, name, QString(), info, header, body, QByteArray(), false, parsingDataToQByteArray(pdata), parent);
|
||||
index = model->addItem(Types::Section, type, name, QString(), info, header, body, QByteArray(), false, parsingDataToQByteArray(pdata), parent);
|
||||
|
||||
// Rename section
|
||||
model->setName(index, guidToQString(guid));
|
||||
@ -2152,32 +2225,50 @@ STATUS FfsParser::parseFreeformGuidedSectionHeader(const QByteArray & section, c
|
||||
STATUS FfsParser::parseVersionSectionHeader(const QByteArray & section, const UINT32 parentOffset, const QModelIndex & parent, QModelIndex & index, const bool preparse)
|
||||
{
|
||||
// Check sanity
|
||||
if ((UINT32)section.size() < sizeof(EFI_VERSION_SECTION))
|
||||
if ((UINT32)section.size() < sizeof(EFI_COMMON_SECTION_HEADER))
|
||||
return ERR_INVALID_SECTION;
|
||||
|
||||
// Get data from parent's parsing data
|
||||
PARSING_DATA pdata = parsingDataFromQModelIndex(parent);
|
||||
|
||||
// Obtain header fields
|
||||
UINT32 headerSize;
|
||||
UINT16 buildNumber;
|
||||
UINT8 type;
|
||||
const EFI_COMMON_SECTION_HEADER* sectionHeader = (const EFI_COMMON_SECTION_HEADER*)(section.constData());
|
||||
const EFI_VERSION_SECTION* versionHeader = (const EFI_VERSION_SECTION*)sectionHeader;
|
||||
UINT32 headerSize = sizeof(EFI_VERSION_SECTION);
|
||||
UINT16 buildNumber = versionHeader->BuildNumber;
|
||||
if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED) {
|
||||
if ((UINT32)section.size() < sizeof(EFI_VERSION_SECTION2))
|
||||
return ERR_INVALID_SECTION;
|
||||
const EFI_VERSION_SECTION2* versionHeader2 = (const EFI_VERSION_SECTION2*)sectionHeader;
|
||||
headerSize = sizeof(EFI_VERSION_SECTION2);
|
||||
buildNumber = versionHeader2->BuildNumber;
|
||||
const EFI_COMMON_SECTION_HEADER2* section2Header = (const EFI_COMMON_SECTION_HEADER2*)(section.constData());
|
||||
const EFI_COMMON_SECTION_HEADER_APPLE* appleHeader = (const EFI_COMMON_SECTION_HEADER_APPLE*)(section.constData());
|
||||
|
||||
if ((UINT32)section.size() >= sizeof(EFI_COMMON_SECTION_HEADER_APPLE) && appleHeader->Reserved == EFI_SECTION_APPLE_USED) { // Check for apple section
|
||||
const EFI_VERSION_SECTION* versionHeader = (const EFI_VERSION_SECTION*)(appleHeader + 1);
|
||||
headerSize = sizeof(EFI_COMMON_SECTION_HEADER_APPLE) + sizeof(EFI_VERSION_SECTION);
|
||||
buildNumber = versionHeader->BuildNumber;
|
||||
type = appleHeader->Type;
|
||||
}
|
||||
else if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED) { // Check for extended header section
|
||||
const EFI_VERSION_SECTION* versionHeader = (const EFI_VERSION_SECTION*)(section2Header + 1);
|
||||
headerSize = sizeof(EFI_COMMON_SECTION_HEADER2) + sizeof(EFI_VERSION_SECTION);
|
||||
buildNumber = versionHeader->BuildNumber;
|
||||
type = section2Header->Type;
|
||||
}
|
||||
else { // Normal section
|
||||
const EFI_VERSION_SECTION* versionHeader = (const EFI_VERSION_SECTION*)(sectionHeader + 1);
|
||||
headerSize = sizeof(EFI_COMMON_SECTION_HEADER) + sizeof(EFI_VERSION_SECTION);
|
||||
buildNumber = versionHeader->BuildNumber;
|
||||
type = sectionHeader->Type;
|
||||
}
|
||||
|
||||
// Check sanity again
|
||||
if ((UINT32)section.size() < headerSize)
|
||||
return ERR_INVALID_SECTION;
|
||||
|
||||
QByteArray header = section.left(headerSize);
|
||||
QByteArray body = section.mid(headerSize);
|
||||
|
||||
// Get info
|
||||
QString name = sectionTypeToQString(sectionHeader->Type) + QObject::tr(" section");
|
||||
QString name = sectionTypeToQString(type) + QObject::tr(" section");
|
||||
QString info = QObject::tr("Type: %1h\nFull size: %2h (%3)\nHeader size: %4h (%5)\nBody size: %6h (%7)\nBuild number: %8")
|
||||
.hexarg2(versionHeader->Type, 2)
|
||||
.hexarg2(type, 2)
|
||||
.hexarg(section.size()).arg(section.size())
|
||||
.hexarg(header.size()).arg(header.size())
|
||||
.hexarg(body.size()).arg(body.size())
|
||||
@ -2188,7 +2279,7 @@ STATUS FfsParser::parseVersionSectionHeader(const QByteArray & section, const UI
|
||||
|
||||
// Add tree item
|
||||
if (!preparse) {
|
||||
index = model->addItem(Types::Section, sectionHeader->Type, name, QString(), info, header, body, QByteArray(), false, parsingDataToQByteArray(pdata), parent);
|
||||
index = model->addItem(Types::Section, type, name, QString(), info, header, body, QByteArray(), false, parsingDataToQByteArray(pdata), parent);
|
||||
}
|
||||
return ERR_SUCCESS;
|
||||
}
|
||||
@ -2196,32 +2287,50 @@ STATUS FfsParser::parseVersionSectionHeader(const QByteArray & section, const UI
|
||||
STATUS FfsParser::parsePostcodeSectionHeader(const QByteArray & section, const UINT32 parentOffset, const QModelIndex & parent, QModelIndex & index, const bool preparse)
|
||||
{
|
||||
// Check sanity
|
||||
if ((UINT32)section.size() < sizeof(POSTCODE_SECTION))
|
||||
if ((UINT32)section.size() < sizeof(EFI_COMMON_SECTION_HEADER))
|
||||
return ERR_INVALID_SECTION;
|
||||
|
||||
// Get data from parent's parsing data
|
||||
PARSING_DATA pdata = parsingDataFromQModelIndex(parent);
|
||||
|
||||
// Obtain header fields
|
||||
UINT32 headerSize;
|
||||
UINT32 postCode;
|
||||
UINT8 type;
|
||||
const EFI_COMMON_SECTION_HEADER* sectionHeader = (const EFI_COMMON_SECTION_HEADER*)(section.constData());
|
||||
const POSTCODE_SECTION* postcodeHeader = (const POSTCODE_SECTION*)sectionHeader;
|
||||
UINT32 headerSize = sizeof(POSTCODE_SECTION);
|
||||
UINT32 postCode = postcodeHeader->Postcode;
|
||||
if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED) {
|
||||
if ((UINT32)section.size() < sizeof(POSTCODE_SECTION2))
|
||||
return ERR_INVALID_SECTION;
|
||||
const POSTCODE_SECTION2* postcodeHeader2 = (const POSTCODE_SECTION2*)sectionHeader;
|
||||
headerSize = sizeof(POSTCODE_SECTION2);
|
||||
postCode = postcodeHeader2->Postcode;
|
||||
const EFI_COMMON_SECTION_HEADER2* section2Header = (const EFI_COMMON_SECTION_HEADER2*)(section.constData());
|
||||
const EFI_COMMON_SECTION_HEADER_APPLE* appleHeader = (const EFI_COMMON_SECTION_HEADER_APPLE*)(section.constData());
|
||||
|
||||
if ((UINT32)section.size() >= sizeof(EFI_COMMON_SECTION_HEADER_APPLE) && appleHeader->Reserved == EFI_SECTION_APPLE_USED) { // Check for apple section
|
||||
const POSTCODE_SECTION* postcodeHeader = (const POSTCODE_SECTION*)(appleHeader + 1);
|
||||
headerSize = sizeof(EFI_COMMON_SECTION_HEADER_APPLE) + sizeof(POSTCODE_SECTION);
|
||||
postCode = postcodeHeader->Postcode;
|
||||
type = appleHeader->Type;
|
||||
}
|
||||
else if (pdata.ffsVersion == 3 && uint24ToUint32(sectionHeader->Size) == EFI_SECTION2_IS_USED) { // Check for extended header section
|
||||
const POSTCODE_SECTION* postcodeHeader = (const POSTCODE_SECTION*)(section2Header + 1);
|
||||
headerSize = sizeof(EFI_COMMON_SECTION_HEADER2) + sizeof(POSTCODE_SECTION);
|
||||
postCode = postcodeHeader->Postcode;
|
||||
type = section2Header->Type;
|
||||
}
|
||||
else { // Normal section
|
||||
const POSTCODE_SECTION* postcodeHeader = (const POSTCODE_SECTION*)(sectionHeader + 1);
|
||||
headerSize = sizeof(EFI_COMMON_SECTION_HEADER) + sizeof(POSTCODE_SECTION);
|
||||
postCode = postcodeHeader->Postcode;
|
||||
type = sectionHeader->Type;
|
||||
}
|
||||
|
||||
// Check sanity again
|
||||
if ((UINT32)section.size() < headerSize)
|
||||
return ERR_INVALID_SECTION;
|
||||
|
||||
QByteArray header = section.left(headerSize);
|
||||
QByteArray body = section.mid(headerSize);
|
||||
|
||||
// Get info
|
||||
QString name = sectionTypeToQString(sectionHeader->Type) + QObject::tr(" section");
|
||||
QString name = sectionTypeToQString(type) + QObject::tr(" section");
|
||||
QString info = QObject::tr("Type: %1h\nFull size: %2h (%3)\nHeader size: %4h (%5)\nBody size: %6h (%7)\nPostcode: %8h")
|
||||
.hexarg2(postcodeHeader->Type, 2)
|
||||
.hexarg2(type, 2)
|
||||
.hexarg(section.size()).arg(section.size())
|
||||
.hexarg(header.size()).arg(header.size())
|
||||
.hexarg(body.size()).arg(body.size())
|
||||
|
@ -18,16 +18,20 @@ WITHOUT WARRANTIES OR REPRESENTATIONS OF ANY KIND, EITHER EXPRESS OR IMPLIED.
|
||||
QString machineTypeToQString(UINT16 machineType)
|
||||
{
|
||||
switch (machineType) {
|
||||
case EFI_IMAGE_FILE_MACHINE_AMD64: return QObject::tr("x86-64");
|
||||
case EFI_IMAGE_FILE_MACHINE_ARM: return QObject::tr("ARM");
|
||||
case EFI_IMAGE_FILE_MACHINE_ARMNT: return QObject::tr("ARMv7");
|
||||
case EFI_IMAGE_FILE_MACHINE_ARM64: return QObject::tr("ARM64");
|
||||
case EFI_IMAGE_FILE_MACHINE_EBC: return QObject::tr("EBC");
|
||||
case EFI_IMAGE_FILE_MACHINE_I386: return QObject::tr("x86");
|
||||
case EFI_IMAGE_FILE_MACHINE_IA64: return QObject::tr("IA64");
|
||||
case EFI_IMAGE_FILE_MACHINE_POWERPC: return QObject::tr("PowerPC");
|
||||
case EFI_IMAGE_FILE_MACHINE_POWERPCFP: return QObject::tr("PowerPC FP");
|
||||
case EFI_IMAGE_FILE_MACHINE_THUMB: return QObject::tr("Thumb");
|
||||
default: return QObject::tr("Unknown %1h").hexarg2(machineType, 4);
|
||||
case EFI_IMAGE_FILE_MACHINE_AMD64: return QObject::tr("x86-64");
|
||||
case EFI_IMAGE_FILE_MACHINE_ARM: return QObject::tr("ARM");
|
||||
case EFI_IMAGE_FILE_MACHINE_ARMNT: return QObject::tr("ARMv7");
|
||||
case EFI_IMAGE_FILE_MACHINE_APPLE_ARM: return QObject::tr("Apple ARM");
|
||||
case EFI_IMAGE_FILE_MACHINE_AARCH64: return QObject::tr("AARCH64");
|
||||
case EFI_IMAGE_FILE_MACHINE_EBC: return QObject::tr("EBC");
|
||||
case EFI_IMAGE_FILE_MACHINE_I386: return QObject::tr("x86");
|
||||
case EFI_IMAGE_FILE_MACHINE_IA64: return QObject::tr("IA64");
|
||||
case EFI_IMAGE_FILE_MACHINE_POWERPC: return QObject::tr("PowerPC");
|
||||
case EFI_IMAGE_FILE_MACHINE_POWERPCFP: return QObject::tr("PowerPC FP");
|
||||
case EFI_IMAGE_FILE_MACHINE_THUMB: return QObject::tr("ARM Thumb");
|
||||
case EFI_IMAGE_FILE_MACHINE_RISCV32: return QObject::tr("RISC-V 32-bit");
|
||||
case EFI_IMAGE_FILE_MACHINE_RISCV64: return QObject::tr("RISC-V 64-bit");
|
||||
case EFI_IMAGE_FILE_MACHINE_RISCV128: return QObject::tr("RISC-V 128-bit");
|
||||
default: return QObject::tr("Unknown %1h").hexarg2(machineType, 4);
|
||||
}
|
||||
}
|
@ -39,13 +39,16 @@ extern QString machineTypeToQString(UINT16 machineType);
|
||||
#define EFI_IMAGE_FILE_MACHINE_ARM 0x01c0 // ARM little endian
|
||||
#define EFI_IMAGE_FILE_MACHINE_THUMB 0x01c2 // ARM or Thumb (interworking)
|
||||
#define EFI_IMAGE_FILE_MACHINE_ARMNT 0x01c4 // ARMv7 (or higher) Thumb mode only
|
||||
#define EFI_IMAGE_FILE_MACHINE_APPLE_ARM 0x01c6 // Apple ARM
|
||||
#define EFI_IMAGE_FILE_MACHINE_POWERPC 0x01f0 // Power PC little endian
|
||||
#define EFI_IMAGE_FILE_MACHINE_POWERPCFP 0x01f1 // Power PC with floating point support
|
||||
#define EFI_IMAGE_FILE_MACHINE_IA64 0x0200 // Itanium
|
||||
#define EFI_IMAGE_FILE_MACHINE_EBC 0x0ebc // EFI Byte Code
|
||||
#define EFI_IMAGE_FILE_MACHINE_AMD64 0x8664 // x86-64
|
||||
#define EFI_IMAGE_FILE_MACHINE_ARM64 0xaa64 // ARMv8 in 64-bit mode
|
||||
|
||||
#define EFI_IMAGE_FILE_MACHINE_AARCH64 0xaa64 // ARMv8 in 64-bit mode
|
||||
#define EFI_IMAGE_FILE_MACHINE_RISCV32 0x5032 // RISC-V 32-bit
|
||||
#define EFI_IMAGE_FILE_MACHINE_RISCV64 0x5064 // RISC-V 64-bit
|
||||
#define EFI_IMAGE_FILE_MACHINE_RISCV128 0x5128 // RISC-V 128-bit
|
||||
//
|
||||
// EXE file formats
|
||||
//
|
||||
@ -429,18 +432,19 @@ typedef struct {
|
||||
//
|
||||
// I386 relocation types
|
||||
//
|
||||
#define EFI_IMAGE_REL_I386_ABSOLUTE 0x0000 // Reference is absolute, no relocation is necessary
|
||||
#define EFI_IMAGE_REL_I386_DIR16 0x0001 // Direct 16-bit reference to the symbols virtual address
|
||||
#define EFI_IMAGE_REL_I386_REL16 0x0002 // PC-relative 16-bit reference to the symbols virtual address
|
||||
#define EFI_IMAGE_REL_I386_DIR32 0x0006 // Direct 32-bit reference to the symbols virtual address
|
||||
#define EFI_IMAGE_REL_I386_DIR32NB 0x0007 // Direct 32-bit reference to the symbols virtual address, base not included
|
||||
#define EFI_IMAGE_REL_I386_SEG12 0x0009 // Direct 16-bit reference to the segment-selector bits of a 32-bit virtual address
|
||||
#define EFI_IMAGE_REL_I386_SECTION 0x000A
|
||||
#define EFI_IMAGE_REL_I386_SECREL 0x000B
|
||||
#define EFI_IMAGE_REL_I386_REL32 0x0014 // PC-relative 32-bit reference to the symbols virtual address
|
||||
#define EFI_IMAGE_REL_I386_ABSOLUTE 0x0000 // Reference is absolute, no relocation is necessary
|
||||
#define EFI_IMAGE_REL_I386_DIR16 0x0001 // Direct 16-bit reference to the symbols virtual address
|
||||
#define EFI_IMAGE_REL_I386_REL16 0x0002 // PC-relative 16-bit reference to the symbols virtual address
|
||||
#define EFI_IMAGE_REL_I386_DIR32 0x0006 // Direct 32-bit reference to the symbols virtual address
|
||||
#define EFI_IMAGE_REL_I386_DIR32NB 0x0007 // Direct 32-bit reference to the symbols virtual address, base not included
|
||||
#define EFI_IMAGE_REL_I386_SEG12 0x0009 // Direct 16-bit reference to the segment-selector bits of a 32-bit virtual address
|
||||
#define EFI_IMAGE_REL_I386_SECTION 0x000A
|
||||
#define EFI_IMAGE_REL_I386_SECREL 0x000B
|
||||
#define EFI_IMAGE_REL_I386_REL32 0x0014 // PC-relative 32-bit reference to the symbols virtual address
|
||||
|
||||
|
||||
//
|
||||
// x64 processor relocation types
|
||||
// x64 relocation types
|
||||
//
|
||||
#define EFI_IMAGE_REL_AMD64_ABSOLUTE 0x0000
|
||||
#define EFI_IMAGE_REL_AMD64_ADDR64 0x0001
|
||||
@ -460,6 +464,13 @@ typedef struct {
|
||||
#define EFI_IMAGE_REL_AMD64_PAIR 0x000F
|
||||
#define EFI_IMAGE_REL_AMD64_SSPAN32 0x0010
|
||||
|
||||
//
|
||||
// RISC-V relocation types
|
||||
//
|
||||
#define EFI_IMAGE_REL_BASED_RISCV_HI20 0x0005
|
||||
#define EFI_IMAGE_REL_BASED_RISCV_LO12I 0x0007
|
||||
#define EFI_IMAGE_REL_BASED_RISCV_LO12S 0x0008
|
||||
|
||||
//
|
||||
// Based relocation format
|
||||
//
|
||||
|
Loading…
Reference in New Issue
Block a user