2012-01-20 12:48:44 +04:00
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/* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this file,
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* You can obtain one at http://mozilla.org/MPL/2.0/. */
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#ifndef CustomElf_h
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#define CustomElf_h
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/**
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* Android system headers have two different elf.h file. The one under linux/
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* is the most complete.
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*/
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#ifdef ANDROID
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#include <linux/elf.h>
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#else
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#include <elf.h>
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#endif
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#include <endian.h>
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#include "ElfLoader.h"
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#include "Logging.h"
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/**
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* Generic ELF macros for the target system
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*/
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#ifdef HAVE_64BIT_OS
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#define Elf_(type) Elf64_ ## type
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#define ELFCLASS ELFCLASS64
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#define ELF_R_TYPE ELF64_R_TYPE
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#define ELF_R_SYM ELF64_R_SYM
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#define PRIxAddr "lx"
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#else
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#define Elf_(type) Elf32_ ## type
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#define ELFCLASS ELFCLASS32
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#define ELF_R_TYPE ELF32_R_TYPE
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#define ELF_R_SYM ELF32_R_SYM
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#define PRIxAddr "x"
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#endif
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#ifndef __BYTE_ORDER
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#error Cannot find endianness
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#endif
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#if __BYTE_ORDER == __LITTLE_ENDIAN
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#define ELFDATA ELFDATA2LSB
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#elif __BYTE_ORDER == __BIG_ENDIAN
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#define ELFDATA ELFDATA2MSB
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#endif
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#ifdef __linux__
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#define ELFOSABI ELFOSABI_LINUX
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#ifdef EI_ABIVERSION
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#define ELFABIVERSION 0
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#endif
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#else
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#error Unknown ELF OSABI
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#endif
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#if defined(__i386__)
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#define ELFMACHINE EM_386
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// Doing this way probably doesn't scale to other architectures
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#define R_ABS R_386_32
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#define R_GLOB_DAT R_386_GLOB_DAT
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#define R_JMP_SLOT R_386_JMP_SLOT
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#define R_RELATIVE R_386_RELATIVE
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#define RELOC(n) DT_REL ## n
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#define UNSUPPORTED_RELOC(n) DT_RELA ## n
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#define STR_RELOC(n) "DT_REL" # n
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#define Reloc Rel
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#elif defined(__x86_64__)
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#define ELFMACHINE EM_X86_64
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#define R_ABS R_X86_64_64
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#define R_GLOB_DAT R_X86_64_GLOB_DAT
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#define R_JMP_SLOT R_X86_64_JUMP_SLOT
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#define R_RELATIVE R_X86_64_RELATIVE
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#define RELOC(n) DT_RELA ## n
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#define UNSUPPORTED_RELOC(n) DT_REL ## n
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#define STR_RELOC(n) "DT_RELA" # n
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#define Reloc Rela
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#elif defined(__arm__)
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#define ELFMACHINE EM_ARM
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#ifndef R_ARM_ABS32
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#define R_ARM_ABS32 2
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#endif
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#ifndef R_ARM_GLOB_DAT
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#define R_ARM_GLOB_DAT 21
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#endif
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#ifndef R_ARM_JUMP_SLOT
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#define R_ARM_JUMP_SLOT 22
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#endif
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#ifndef R_ARM_RELATIVE
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#define R_ARM_RELATIVE 23
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#endif
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#define R_ABS R_ARM_ABS32
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#define R_GLOB_DAT R_ARM_GLOB_DAT
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#define R_JMP_SLOT R_ARM_JUMP_SLOT
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#define R_RELATIVE R_ARM_RELATIVE
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#define RELOC(n) DT_REL ## n
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#define UNSUPPORTED_RELOC(n) DT_RELA ## n
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#define STR_RELOC(n) "DT_REL" # n
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#define Reloc Rel
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#else
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#error Unknown ELF machine type
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#endif
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/**
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* Android system headers don't have all definitions
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*/
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#ifndef STN_UNDEF
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#define STN_UNDEF 0
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#endif
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#ifndef DT_INIT_ARRAY
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#define DT_INIT_ARRAY 25
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#endif
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#ifndef DT_FINI_ARRAY
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#define DT_FINI_ARRAY 26
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#endif
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#ifndef DT_INIT_ARRAYSZ
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#define DT_INIT_ARRAYSZ 27
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#endif
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#ifndef DT_FINI_ARRAYSZ
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#define DT_FINI_ARRAYSZ 28
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#endif
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namespace Elf {
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/**
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* Define a few basic Elf Types
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*/
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typedef Elf_(Phdr) Phdr;
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typedef Elf_(Dyn) Dyn;
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typedef Elf_(Sym) Sym;
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typedef Elf_(Addr) Addr;
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typedef Elf_(Word) Word;
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/**
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* Helper class around the standard Elf header struct
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*/
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struct Ehdr: public Elf_(Ehdr)
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{
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/**
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* Equivalent to reinterpret_cast<const Ehdr *>(buf), but additionally
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* checking that this is indeed an Elf header and that the Elf type
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* corresponds to that of the system
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*/
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static const Ehdr *validate(const void *buf);
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};
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/**
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* Elf String table
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*/
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class Strtab: public UnsizedArray<const char>
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{
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public:
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/**
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* Returns the string at the given index in the table
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*/
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const char *GetStringAt(off_t index) const
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{
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return &UnsizedArray<const char>::operator[](index);
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}
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};
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/**
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* Helper class around Elf relocation.
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*/
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struct Rel: public Elf_(Rel)
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{
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/**
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* Returns the addend for the relocation, which is the value stored
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* at r_offset.
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*/
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Addr GetAddend(void *base) const
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{
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return *(reinterpret_cast<const Addr *>(
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reinterpret_cast<const char *>(base) + r_offset));
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}
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};
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/**
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* Helper class around Elf relocation with addend.
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*/
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struct Rela: public Elf_(Rela)
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{
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/**
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* Returns the addend for the relocation.
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*/
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Addr GetAddend(void *base) const
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{
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return r_addend;
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}
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};
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} /* namespace Elf */
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2012-01-20 12:48:44 +04:00
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class Mappable;
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2012-01-20 12:48:44 +04:00
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/**
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* Library Handle class for ELF libraries we don't let the system linker
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* handle.
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*/
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2012-01-20 12:49:03 +04:00
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class CustomElf: public LibHandle, private ElfLoader::link_map
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{
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2012-01-20 12:49:03 +04:00
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friend class ElfLoader;
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2012-02-22 11:12:15 +04:00
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friend class SEGVHandler;
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2012-01-20 12:48:44 +04:00
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public:
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/**
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* Returns a new CustomElf using the given file descriptor to map ELF
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* content. The file descriptor ownership is stolen, and it will be closed
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* in CustomElf's destructor if an instance is created, or by the Load
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* method otherwise. The path corresponds to the file descriptor, and flags
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* are the same kind of flags that would be given to dlopen(), though
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* currently, none are supported and the behaviour is more or less that of
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* RTLD_GLOBAL | RTLD_BIND_NOW.
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*/
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2012-01-20 12:48:44 +04:00
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static mozilla::TemporaryRef<LibHandle> Load(Mappable *mappable,
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2012-01-20 12:48:44 +04:00
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const char *path, int flags);
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/**
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* Inherited from LibHandle
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*/
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virtual ~CustomElf();
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virtual void *GetSymbolPtr(const char *symbol) const;
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virtual bool Contains(void *addr) const;
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private:
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/**
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* Returns a pointer to the Elf Symbol in the Dynamic Symbol table
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* corresponding to the given symbol name (with a pre-computed hash).
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*/
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const Elf::Sym *GetSymbol(const char *symbol, unsigned long hash) const;
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/**
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* Returns the address corresponding to the given symbol name (with a
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* pre-computed hash).
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*/
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void *GetSymbolPtr(const char *symbol, unsigned long hash) const;
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/**
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* Scan dependent libraries to find the address corresponding to the
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* given symbol name. This is used to find symbols that are undefined
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* in the Elf object.
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*/
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void *GetSymbolPtrInDeps(const char *symbol) const;
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/**
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* Private constructor
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*/
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2012-01-20 12:48:44 +04:00
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CustomElf(Mappable *mappable, const char *path)
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: LibHandle(path), mappable(mappable), init(0), fini(0), initialized(false)
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{ }
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/**
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* Returns a pointer relative to the base address where the library is
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* loaded.
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*/
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void *GetPtr(const Elf::Addr offset) const
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{
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return base + offset;
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}
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/**
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* Like the above, but returns a typed (const) pointer
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*/
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template <typename T>
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const T *GetPtr(const Elf::Addr offset) const
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{
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return reinterpret_cast<const T *>(base + offset);
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}
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/**
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* Loads an Elf segment defined by the given PT_LOAD header.
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* Returns whether this succeeded or failed.
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*/
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bool LoadSegment(const Elf::Phdr *pt_load) const;
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/**
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* Initializes the library according to information found in the given
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* PT_DYNAMIC header.
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* Returns whether this succeeded or failed.
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*/
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bool InitDyn(const Elf::Phdr *pt_dyn);
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/**
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* Apply .rel.dyn/.rela.dyn relocations.
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* Returns whether this succeeded or failed.
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*/
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bool Relocate();
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/**
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* Apply .rel.plt/.rela.plt relocations.
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* Returns whether this succeeded or failed.
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*/
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bool RelocateJumps();
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/**
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* Call initialization functions (.init/.init_array)
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* Returns true;
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*/
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bool CallInit();
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/**
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* Call destructor functions (.fini_array/.fini)
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* Returns whether this succeeded or failed.
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*/
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void CallFini();
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/**
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* Call a function given a pointer to its location.
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*/
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void CallFunction(void *ptr) const
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{
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/* C++ doesn't allow direct conversion between pointer-to-object
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* and pointer-to-function. */
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union {
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void *ptr;
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void (*func)(void);
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} f;
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f.ptr = ptr;
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2012-02-22 11:12:15 +04:00
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debug("%s: Calling function @%p", GetPath(), ptr);
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2012-01-20 12:48:44 +04:00
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f.func();
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}
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/**
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* Call a function given a an address relative to the library base
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*/
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void CallFunction(Elf::Addr addr) const
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{
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return CallFunction(GetPtr(addr));
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}
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2012-01-20 12:48:44 +04:00
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/* Appropriated Mappable */
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Mappable *mappable;
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2012-01-20 12:48:44 +04:00
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/* Base address where the library is loaded */
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MappedPtr base;
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/* String table */
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Elf::Strtab strtab;
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/* Symbol table */
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UnsizedArray<Elf::Sym> symtab;
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/* Buckets and chains for the System V symbol hash table */
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Array<Elf::Word> buckets;
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UnsizedArray<Elf::Word> chains;
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/* List of dependent libraries */
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std::vector<mozilla::RefPtr<LibHandle> > dependencies;
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/* List of .rel.dyn/.rela.dyn relocations */
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Array<Elf::Reloc> relocations;
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/* List of .rel.plt/.rela.plt relocation */
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Array<Elf::Reloc> jumprels;
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/* Relative address of the initialization and destruction functions
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* (.init/.fini) */
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Elf::Addr init, fini;
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/* List of initialization and destruction functions
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* (.init_array/.fini_array) */
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Array<void *> init_array, fini_array;
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bool initialized;
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};
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#endif /* CustomElf_h */
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