mirror of
https://github.com/LongSoft/UEFITool.git
synced 2024-11-23 00:18:23 +08:00
934ce1f3f8
As the first step towards automated parsing, this change set replaces outdated BootGuard-related parsers with shiny new KaitaiStruct-based ones. It also does the following: - improves Intel FIT definitions by using the relevant specification - adds sha1, sha384, sha512 and sm3 digest implementations - updates LZMA SDK to v22.01 - moves GUIDs out of include files to prevent multiple instantiations - enforces C++11 - adds Kaitai-based parsers for Intel FIT, BootGuard v1 and BootGuard v2 structures - makes many small refactorings here, there and everywhere
160 lines
4.6 KiB
C++
160 lines
4.6 KiB
C++
#ifndef INTEL_ACM_H_
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#define INTEL_ACM_H_
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// This is a generated file! Please edit source .ksy file and use kaitai-struct-compiler to rebuild
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#include "../kaitai/kaitaistruct.h"
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#include <stdint.h>
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#if KAITAI_STRUCT_VERSION < 9000L
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#error "Incompatible Kaitai Struct C++/STL API: version 0.9 or later is required"
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#endif
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class intel_acm_t : public kaitai::kstruct {
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public:
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class header_t;
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enum module_subtype_t {
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MODULE_SUBTYPE_TXT = 0,
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MODULE_SUBTYPE_STARTUP = 1,
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MODULE_SUBTYPE_BOOT_GUARD = 3
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};
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enum known_header_version_t {
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KNOWN_HEADER_VERSION_V0_0 = 0,
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KNOWN_HEADER_VERSION_V3_0 = 196608
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};
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intel_acm_t(kaitai::kstream* p__io, kaitai::kstruct* p__parent = 0, intel_acm_t* p__root = 0);
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private:
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void _read();
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void _clean_up();
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public:
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~intel_acm_t();
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class header_t : public kaitai::kstruct {
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public:
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header_t(kaitai::kstream* p__io, intel_acm_t* p__parent = 0, intel_acm_t* p__root = 0);
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private:
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void _read();
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void _clean_up();
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public:
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~header_t();
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private:
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uint16_t m_module_type;
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module_subtype_t m_module_subtype;
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uint32_t m_header_size;
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uint32_t m_header_version;
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uint16_t m_chipset_id;
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uint16_t m_flags;
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uint32_t m_module_vendor;
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uint8_t m_date_day;
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uint8_t m_date_month;
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uint16_t m_date_year;
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uint32_t m_module_size;
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uint16_t m_acm_svn;
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uint16_t m_se_svn;
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uint32_t m_code_control_flags;
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uint32_t m_error_entry_point;
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uint32_t m_gdt_max;
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uint32_t m_gdt_base;
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uint32_t m_segment_sel;
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uint32_t m_entry_point;
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std::string m_reserved;
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uint32_t m_key_size;
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uint32_t m_scratch_space_size;
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std::string m_rsa_public_key;
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uint32_t m_rsa_exponent;
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bool n_rsa_exponent;
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public:
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bool _is_null_rsa_exponent() { rsa_exponent(); return n_rsa_exponent; };
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private:
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std::string m_rsa_signature;
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std::string m_scratch_space;
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intel_acm_t* m__root;
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intel_acm_t* m__parent;
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public:
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uint16_t module_type() const { return m_module_type; }
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module_subtype_t module_subtype() const { return m_module_subtype; }
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/**
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* counted in 4 byte increments
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*/
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uint32_t header_size() const { return m_header_size; }
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uint32_t header_version() const { return m_header_version; }
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uint16_t chipset_id() const { return m_chipset_id; }
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uint16_t flags() const { return m_flags; }
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uint32_t module_vendor() const { return m_module_vendor; }
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/**
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* BCD
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*/
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uint8_t date_day() const { return m_date_day; }
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/**
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* BCD
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*/
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uint8_t date_month() const { return m_date_month; }
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/**
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* BCD
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*/
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uint16_t date_year() const { return m_date_year; }
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/**
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* counted in 4 byte increments
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*/
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uint32_t module_size() const { return m_module_size; }
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uint16_t acm_svn() const { return m_acm_svn; }
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uint16_t se_svn() const { return m_se_svn; }
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uint32_t code_control_flags() const { return m_code_control_flags; }
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uint32_t error_entry_point() const { return m_error_entry_point; }
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uint32_t gdt_max() const { return m_gdt_max; }
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uint32_t gdt_base() const { return m_gdt_base; }
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uint32_t segment_sel() const { return m_segment_sel; }
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uint32_t entry_point() const { return m_entry_point; }
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std::string reserved() const { return m_reserved; }
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/**
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* counted in 4 byte increments
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*/
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uint32_t key_size() const { return m_key_size; }
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/**
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* counted in 4 byte increments
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*/
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uint32_t scratch_space_size() const { return m_scratch_space_size; }
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std::string rsa_public_key() const { return m_rsa_public_key; }
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uint32_t rsa_exponent() const { return m_rsa_exponent; }
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std::string rsa_signature() const { return m_rsa_signature; }
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std::string scratch_space() const { return m_scratch_space; }
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intel_acm_t* _root() const { return m__root; }
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intel_acm_t* _parent() const { return m__parent; }
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};
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private:
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header_t* m_header;
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std::string m_body;
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intel_acm_t* m__root;
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kaitai::kstruct* m__parent;
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public:
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header_t* header() const { return m_header; }
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std::string body() const { return m_body; }
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intel_acm_t* _root() const { return m__root; }
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kaitai::kstruct* _parent() const { return m__parent; }
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};
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#endif // INTEL_ACM_H_
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