mirror of
https://github.com/LongSoft/UEFITool.git
synced 2024-11-25 01:18:22 +08:00
397 lines
11 KiB
C++
397 lines
11 KiB
C++
#pragma once
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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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#include <memory>
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#include <vector>
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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 ami_nvar_t : public kaitai::kstruct {
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public:
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class nvar_attributes_t;
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class ucs2_string_t;
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class nvar_extended_attributes_t;
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class nvar_entry_t;
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class nvar_entry_body_t;
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ami_nvar_t(kaitai::kstream* p__io, kaitai::kstruct* p__parent = nullptr, ami_nvar_t* p__root = nullptr);
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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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~ami_nvar_t();
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class nvar_attributes_t : public kaitai::kstruct {
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public:
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nvar_attributes_t(kaitai::kstream* p__io, ami_nvar_t::nvar_entry_t* p__parent = nullptr, ami_nvar_t* p__root = nullptr);
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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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~nvar_attributes_t();
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private:
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bool m_valid;
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bool m_auth_write;
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bool m_hw_error_record;
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bool m_extended_header;
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bool m_data_only;
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bool m_local_guid;
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bool m_ascii_name;
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bool m_runtime;
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ami_nvar_t* m__root;
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ami_nvar_t::nvar_entry_t* m__parent;
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public:
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bool valid() const { return m_valid; }
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bool auth_write() const { return m_auth_write; }
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bool hw_error_record() const { return m_hw_error_record; }
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bool extended_header() const { return m_extended_header; }
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bool data_only() const { return m_data_only; }
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bool local_guid() const { return m_local_guid; }
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bool ascii_name() const { return m_ascii_name; }
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bool runtime() const { return m_runtime; }
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ami_nvar_t* _root() const { return m__root; }
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ami_nvar_t::nvar_entry_t* _parent() const { return m__parent; }
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};
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class ucs2_string_t : public kaitai::kstruct {
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public:
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ucs2_string_t(kaitai::kstream* p__io, ami_nvar_t::nvar_entry_body_t* p__parent = nullptr, ami_nvar_t* p__root = nullptr);
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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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~ucs2_string_t();
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private:
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std::unique_ptr<std::vector<uint16_t>> m_ucs2_chars;
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ami_nvar_t* m__root;
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ami_nvar_t::nvar_entry_body_t* m__parent;
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public:
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std::vector<uint16_t>* ucs2_chars() const { return m_ucs2_chars.get(); }
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ami_nvar_t* _root() const { return m__root; }
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ami_nvar_t::nvar_entry_body_t* _parent() const { return m__parent; }
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};
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class nvar_extended_attributes_t : public kaitai::kstruct {
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public:
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nvar_extended_attributes_t(kaitai::kstream* p__io, ami_nvar_t::nvar_entry_body_t* p__parent = nullptr, ami_nvar_t* p__root = nullptr);
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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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~nvar_extended_attributes_t();
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private:
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uint64_t m_reserved_high;
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bool m_time_based_auth;
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bool m_auth_write;
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uint64_t m_reserved_low;
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bool m_checksum;
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ami_nvar_t* m__root;
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ami_nvar_t::nvar_entry_body_t* m__parent;
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public:
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uint64_t reserved_high() const { return m_reserved_high; }
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bool time_based_auth() const { return m_time_based_auth; }
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bool auth_write() const { return m_auth_write; }
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uint64_t reserved_low() const { return m_reserved_low; }
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bool checksum() const { return m_checksum; }
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ami_nvar_t* _root() const { return m__root; }
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ami_nvar_t::nvar_entry_body_t* _parent() const { return m__parent; }
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};
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class nvar_entry_t : public kaitai::kstruct {
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public:
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nvar_entry_t(kaitai::kstream* p__io, ami_nvar_t* p__parent = nullptr, ami_nvar_t* p__root = nullptr);
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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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~nvar_entry_t();
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private:
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bool f_offset;
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int32_t m_offset;
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public:
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int32_t offset();
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private:
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bool f_end_offset;
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int32_t m_end_offset;
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public:
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int32_t end_offset();
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private:
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std::string m_invoke_offset;
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bool n_invoke_offset;
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public:
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bool _is_null_invoke_offset() { invoke_offset(); return n_invoke_offset; };
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private:
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uint8_t m_signature_first;
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std::string m_signature_rest;
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bool n_signature_rest;
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public:
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bool _is_null_signature_rest() { signature_rest(); return n_signature_rest; };
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private:
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uint16_t m_size;
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bool n_size;
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public:
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bool _is_null_size() { size(); return n_size; };
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private:
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uint64_t m_next;
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bool n_next;
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public:
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bool _is_null_next() { next(); return n_next; };
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private:
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std::unique_ptr<nvar_attributes_t> m_attributes;
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bool n_attributes;
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public:
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bool _is_null_attributes() { attributes(); return n_attributes; };
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private:
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std::unique_ptr<nvar_entry_body_t> m_body;
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bool n_body;
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public:
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bool _is_null_body() { body(); return n_body; };
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private:
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std::string m_invoke_end_offset;
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bool n_invoke_end_offset;
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public:
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bool _is_null_invoke_end_offset() { invoke_end_offset(); return n_invoke_end_offset; };
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private:
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ami_nvar_t* m__root;
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ami_nvar_t* m__parent;
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std::string m__raw_body;
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bool n__raw_body;
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public:
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bool _is_null__raw_body() { _raw_body(); return n__raw_body; };
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private:
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std::unique_ptr<kaitai::kstream> m__io__raw_body;
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public:
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std::string invoke_offset() const { return m_invoke_offset; }
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uint8_t signature_first() const { return m_signature_first; }
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std::string signature_rest() const { return m_signature_rest; }
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uint16_t size() const { return m_size; }
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uint64_t next() const { return m_next; }
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nvar_attributes_t* attributes() const { return m_attributes.get(); }
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nvar_entry_body_t* body() const { return m_body.get(); }
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std::string invoke_end_offset() const { return m_invoke_end_offset; }
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ami_nvar_t* _root() const { return m__root; }
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ami_nvar_t* _parent() const { return m__parent; }
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std::string _raw_body() const { return m__raw_body; }
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kaitai::kstream* _io__raw_body() const { return m__io__raw_body.get(); }
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};
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class nvar_entry_body_t : public kaitai::kstruct {
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public:
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nvar_entry_body_t(kaitai::kstream* p__io, ami_nvar_t::nvar_entry_t* p__parent = nullptr, ami_nvar_t* p__root = nullptr);
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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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~nvar_entry_body_t();
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private:
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bool f_extended_header_attributes;
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std::unique_ptr<nvar_extended_attributes_t> m_extended_header_attributes;
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bool n_extended_header_attributes;
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public:
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bool _is_null_extended_header_attributes() { extended_header_attributes(); return n_extended_header_attributes; };
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private:
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public:
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nvar_extended_attributes_t* extended_header_attributes();
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private:
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bool f_data_start_offset;
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int32_t m_data_start_offset;
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public:
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int32_t data_start_offset();
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private:
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bool f_extended_header_size_field;
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uint16_t m_extended_header_size_field;
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bool n_extended_header_size_field;
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public:
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bool _is_null_extended_header_size_field() { extended_header_size_field(); return n_extended_header_size_field; };
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private:
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public:
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uint16_t extended_header_size_field();
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private:
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bool f_extended_header_timestamp;
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uint64_t m_extended_header_timestamp;
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bool n_extended_header_timestamp;
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public:
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bool _is_null_extended_header_timestamp() { extended_header_timestamp(); return n_extended_header_timestamp; };
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private:
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public:
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uint64_t extended_header_timestamp();
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private:
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bool f_data_size;
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int32_t m_data_size;
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public:
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int32_t data_size();
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private:
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bool f_extended_header_checksum;
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uint8_t m_extended_header_checksum;
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bool n_extended_header_checksum;
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public:
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bool _is_null_extended_header_checksum() { extended_header_checksum(); return n_extended_header_checksum; };
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private:
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public:
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uint8_t extended_header_checksum();
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private:
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bool f_data_end_offset;
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int32_t m_data_end_offset;
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public:
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int32_t data_end_offset();
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private:
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bool f_extended_header_size;
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uint16_t m_extended_header_size;
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public:
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uint16_t extended_header_size();
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private:
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bool f_extended_header_hash;
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std::string m_extended_header_hash;
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bool n_extended_header_hash;
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public:
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bool _is_null_extended_header_hash() { extended_header_hash(); return n_extended_header_hash; };
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private:
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public:
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std::string extended_header_hash();
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private:
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uint8_t m_guid_index;
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bool n_guid_index;
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public:
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bool _is_null_guid_index() { guid_index(); return n_guid_index; };
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private:
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std::string m_guid;
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bool n_guid;
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public:
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bool _is_null_guid() { guid(); return n_guid; };
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private:
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std::string m_ascii_name;
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bool n_ascii_name;
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public:
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bool _is_null_ascii_name() { ascii_name(); return n_ascii_name; };
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private:
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std::unique_ptr<ucs2_string_t> m_ucs2_name;
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bool n_ucs2_name;
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public:
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bool _is_null_ucs2_name() { ucs2_name(); return n_ucs2_name; };
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private:
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std::string m_invoke_data_start;
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bool n_invoke_data_start;
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public:
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bool _is_null_invoke_data_start() { invoke_data_start(); return n_invoke_data_start; };
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private:
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std::string m_data;
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ami_nvar_t* m__root;
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ami_nvar_t::nvar_entry_t* m__parent;
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public:
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uint8_t guid_index() const { return m_guid_index; }
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std::string guid() const { return m_guid; }
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std::string ascii_name() const { return m_ascii_name; }
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ucs2_string_t* ucs2_name() const { return m_ucs2_name.get(); }
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std::string invoke_data_start() const { return m_invoke_data_start; }
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std::string data() const { return m_data; }
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ami_nvar_t* _root() const { return m__root; }
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ami_nvar_t::nvar_entry_t* _parent() const { return m__parent; }
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};
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private:
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std::unique_ptr<std::vector<std::unique_ptr<nvar_entry_t>>> m_entries;
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ami_nvar_t* m__root;
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kaitai::kstruct* m__parent;
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public:
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std::vector<std::unique_ptr<nvar_entry_t>>* entries() const { return m_entries.get(); }
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ami_nvar_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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