mirror of
https://github.com/klzgrad/naiveproxy.git
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133 lines
4.1 KiB
C++
133 lines
4.1 KiB
C++
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// Copyright 2018 The Chromium Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#include "base/debug/elf_reader_linux.h"
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#include <arpa/inet.h>
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#include <elf.h>
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#include <vector>
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#include "base/bits.h"
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#include "base/containers/span.h"
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#include "base/sha1.h"
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#include "base/strings/stringprintf.h"
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namespace base {
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namespace debug {
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namespace {
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#if __SIZEOF_POINTER__ == 4
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using Ehdr = Elf32_Ehdr;
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using Dyn = Elf32_Dyn;
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using Half = Elf32_Half;
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using Nhdr = Elf32_Nhdr;
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using Phdr = Elf32_Phdr;
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using Word = Elf32_Word;
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#else
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using Ehdr = Elf64_Ehdr;
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using Dyn = Elf64_Dyn;
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using Half = Elf64_Half;
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using Nhdr = Elf64_Nhdr;
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using Phdr = Elf64_Phdr;
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using Word = Elf64_Word;
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#endif
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using ElfSegment = span<const char>;
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Optional<std::string> ElfSegmentBuildIDNoteAsString(const ElfSegment& segment) {
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const void* section_end = segment.data() + segment.size_bytes();
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const Nhdr* note_header = reinterpret_cast<const Nhdr*>(segment.data());
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while (note_header < section_end) {
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if (note_header->n_type == NT_GNU_BUILD_ID)
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break;
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note_header = reinterpret_cast<const Nhdr*>(
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reinterpret_cast<const char*>(note_header) + sizeof(Nhdr) +
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bits::Align(note_header->n_namesz, 4) +
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bits::Align(note_header->n_descsz, 4));
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}
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if (note_header >= section_end || note_header->n_descsz != kSHA1Length)
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return nullopt;
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const uint8_t* guid = reinterpret_cast<const uint8_t*>(note_header) +
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sizeof(Nhdr) + bits::Align(note_header->n_namesz, 4);
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uint32_t dword = htonl(*reinterpret_cast<const int32_t*>(guid));
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uint16_t word1 = htons(*reinterpret_cast<const int16_t*>(guid + 4));
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uint16_t word2 = htons(*reinterpret_cast<const int16_t*>(guid + 6));
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std::string identifier;
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identifier.reserve(kSHA1Length * 2); // as hex string
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SStringPrintf(&identifier, "%08X%04X%04X", dword, word1, word2);
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for (size_t i = 8; i < note_header->n_descsz; ++i)
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StringAppendF(&identifier, "%02X", guid[i]);
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return identifier;
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}
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std::vector<ElfSegment> FindElfSegments(const void* elf_mapped_base,
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uint32_t segment_type) {
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const char* elf_base = reinterpret_cast<const char*>(elf_mapped_base);
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if (strncmp(elf_base, ELFMAG, SELFMAG) != 0)
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return std::vector<ElfSegment>();
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const Ehdr* elf_header = reinterpret_cast<const Ehdr*>(elf_base);
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const Phdr* phdrs =
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reinterpret_cast<const Phdr*>(elf_base + elf_header->e_phoff);
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std::vector<ElfSegment> segments;
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for (Half i = 0; i < elf_header->e_phnum; ++i) {
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if (phdrs[i].p_type == segment_type)
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segments.push_back({elf_base + phdrs[i].p_offset, phdrs[i].p_filesz});
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}
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return segments;
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}
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} // namespace
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Optional<std::string> ReadElfBuildId(const void* elf_base) {
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// Elf program headers can have multiple PT_NOTE arrays.
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std::vector<ElfSegment> segs = FindElfSegments(elf_base, PT_NOTE);
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if (segs.empty())
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return nullopt;
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Optional<std::string> id;
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for (const ElfSegment& seg : segs) {
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id = ElfSegmentBuildIDNoteAsString(seg);
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if (id)
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return id;
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}
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return nullopt;
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}
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Optional<std::string> ReadElfLibraryName(const void* elf_base) {
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std::vector<ElfSegment> segs = FindElfSegments(elf_base, PT_DYNAMIC);
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if (segs.empty())
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return nullopt;
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DCHECK_EQ(1u, segs.size());
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const ElfSegment& dynamic_seg = segs.front();
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const Dyn* dynamic_start = reinterpret_cast<const Dyn*>(dynamic_seg.data());
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const Dyn* dynamic_end = reinterpret_cast<const Dyn*>(
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dynamic_seg.data() + dynamic_seg.size_bytes());
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Optional<std::string> soname;
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Word soname_strtab_offset = 0;
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const char* strtab_addr = 0;
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for (const Dyn* dynamic_iter = dynamic_start; dynamic_iter < dynamic_end;
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++dynamic_iter) {
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if (dynamic_iter->d_tag == DT_STRTAB) {
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strtab_addr =
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dynamic_iter->d_un.d_ptr + reinterpret_cast<const char*>(elf_base);
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} else if (dynamic_iter->d_tag == DT_SONAME) {
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soname_strtab_offset = dynamic_iter->d_un.d_val;
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}
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}
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if (soname_strtab_offset && strtab_addr)
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return std::string(strtab_addr + soname_strtab_offset);
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return nullopt;
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}
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} // namespace debug
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} // namespace base
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