261 lines
6.8 KiB
C++
261 lines
6.8 KiB
C++
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#ifndef _DWARFPP_INTERNAL_HH_
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#define _DWARFPP_INTERNAL_HH_
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#include "dwarf++.hh"
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#include "../elf/to_hex.hh"
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#include <stdexcept>
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#include <type_traits>
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#include <unordered_map>
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#include <vector>
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DWARFPP_BEGIN_NAMESPACE
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enum class format
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{
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unknown,
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dwarf32,
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dwarf64
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};
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/**
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* A single DWARF section or a slice of a section. This also tracks
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* dynamic information necessary to decode values in this section.
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*/
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struct section
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{
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section_type type;
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const char *begin, *end;
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const format fmt;
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unsigned addr_size;
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section(section_type type, const void *begin,
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section_length length, format fmt = format::unknown,
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unsigned addr_size = 0)
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: type(type), begin((char*)begin), end((char*)begin + length),
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fmt(fmt), addr_size(addr_size) { }
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section(const section &o) = default;
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std::shared_ptr<section> slice(section_offset start, section_length len,
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format fmt = format::unknown,
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unsigned addr_size = 0)
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{
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if (fmt == format::unknown)
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fmt = this->fmt;
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if (addr_size == 0)
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addr_size = this->addr_size;
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return std::make_shared<section>(
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type, begin+start,
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std::min(len, (section_length)(end-begin)),
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fmt, addr_size);
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}
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size_t size() const
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{
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return end - begin;
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}
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};
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/**
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* A cursor pointing into a DWARF section. Provides deserialization
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* operations and bounds checking.
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*/
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struct cursor
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{
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// XXX There's probably a lot of overhead to maintaining the
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// shared pointer to the section from this. Perhaps the rule
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// should be that all objects keep the dwarf::impl alive
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// (directly or indirectly) and that keeps the loader alive,
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// so a cursor just needs a regular section*.
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std::shared_ptr<section> sec;
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const char *pos;
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cursor()
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: pos(nullptr) { }
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cursor(const std::shared_ptr<section> sec, section_offset offset = 0)
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: sec(sec), pos(sec->begin + offset) { }
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/**
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* Read a subsection. The cursor must be at an initial
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* length. After, the cursor will point just past the end of
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* the subsection. The returned section has the appropriate
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* DWARF format and begins at the current location of the
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* cursor (so this is usually followed by a
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* skip_initial_length).
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*/
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std::shared_ptr<section> subsection();
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std::int64_t sleb128();
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section_offset offset();
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void string(std::string &out);
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const char *cstr(size_t *size_out = nullptr);
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void
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ensure(section_offset bytes)
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{
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if ((section_offset)(sec->end - pos) < bytes || pos >= sec->end)
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underflow();
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}
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template<typename T>
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T fixed()
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{
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ensure(sizeof(T));
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T val = *(T*)pos;
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pos += sizeof(T);
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return val;
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}
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std::uint64_t uleb128()
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{
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// Appendix C
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// XXX Pre-compute all two byte ULEB's
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std::uint64_t result = 0;
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int shift = 0;
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while (pos < sec->end) {
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uint8_t byte = *(uint8_t*)(pos++);
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result |= (uint64_t)(byte & 0x7f) << shift;
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if ((byte & 0x80) == 0)
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return result;
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shift += 7;
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}
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underflow();
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return 0;
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}
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taddr address()
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{
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switch (sec->addr_size) {
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case 1:
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return fixed<uint8_t>();
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case 2:
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return fixed<uint16_t>();
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case 4:
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return fixed<uint32_t>();
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case 8:
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return fixed<uint64_t>();
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default:
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throw std::runtime_error("address size " + std::to_string(sec->addr_size) + " not supported");
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}
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}
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void skip_initial_length();
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void skip_form(DW_FORM form);
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cursor &operator+=(section_offset offset)
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{
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pos += offset;
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return *this;
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}
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cursor operator+(section_offset offset) const
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{
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return cursor(sec, pos + offset);
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}
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bool operator<(const cursor &o) const
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{
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return pos < o.pos;
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}
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bool end() const
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{
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return pos >= sec->end;
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}
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bool valid() const
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{
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return !!pos;
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}
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section_offset get_section_offset() const
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{
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return pos - sec->begin;
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}
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private:
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cursor(const std::shared_ptr<section> sec, const char *pos)
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: sec(sec), pos(pos) { }
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void underflow();
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};
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/**
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* An attribute specification in an abbrev.
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*/
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struct attribute_spec
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{
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DW_AT name;
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DW_FORM form;
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// Computed information
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value::type type;
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attribute_spec(DW_AT name, DW_FORM form);
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};
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typedef std::uint64_t abbrev_code;
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/**
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* An entry in .debug_abbrev.
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*/
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struct abbrev_entry
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{
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abbrev_code code;
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DW_TAG tag;
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bool children;
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std::vector<attribute_spec> attributes;
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abbrev_entry() : code(0) { }
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bool read(cursor *cur);
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};
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/**
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* A section header in .debug_pubnames or .debug_pubtypes.
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*/
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struct name_unit
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{
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uhalf version;
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section_offset debug_info_offset;
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section_length debug_info_length;
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// Cursor to the first name_entry in this unit. This cursor's
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// section is limited to this unit.
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cursor entries;
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void read(cursor *cur)
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{
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// Section 7.19
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std::shared_ptr<section> subsec = cur->subsection();
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cursor sub(subsec);
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sub.skip_initial_length();
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version = sub.fixed<uhalf>();
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if (version != 2)
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throw format_error("unknown name unit version " + std::to_string(version));
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debug_info_offset = sub.offset();
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debug_info_length = sub.offset();
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entries = sub;
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}
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};
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/**
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* An entry in a .debug_pubnames or .debug_pubtypes unit.
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*/
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struct name_entry
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{
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section_offset offset;
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std::string name;
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void read(cursor *cur)
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{
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offset = cur->offset();
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cur->string(name);
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}
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};
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DWARFPP_END_NAMESPACE
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#endif
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