//===-- ObjDumper.cpp - Base dumper class -----------------------*- C++ -*-===// // // The LLVM Compiler Infrastructure // // This file is distributed under the University of Illinois Open Source // License. See LICENSE.TXT for details. // //===----------------------------------------------------------------------===// /// /// \file /// This file implements ObjDumper. /// //===----------------------------------------------------------------------===// #include "ObjDumper.h" #include "Error.h" #include "llvm-readobj.h" #include "llvm/Object/ObjectFile.h" #include "llvm/Support/Error.h" #include "llvm/Support/ScopedPrinter.h" #include "llvm/Support/raw_ostream.h" namespace llvm { ObjDumper::ObjDumper(ScopedPrinter &Writer) : W(Writer) {} ObjDumper::~ObjDumper() { } static void printAsPrintable(raw_ostream &W, const uint8_t *Start, size_t Len) { for (size_t i = 0; i < Len; i++) W << (isPrint(Start[i]) ? static_cast(Start[i]) : '.'); } static Expected getSecNameOrIndexAsSecRef(const object::ObjectFile *Obj, StringRef SecName) { char *StrPtr; long SectionIndex = strtol(SecName.data(), &StrPtr, 10); object::SectionRef Section; long SecIndex; if (Obj->isELF()) SecIndex = 0; else SecIndex = 1; for (object::SectionRef SecRef : Obj->sections()) { if (*StrPtr) { StringRef SectionName; if (std::error_code E = SecRef.getName(SectionName)) return errorCodeToError(E); if (SectionName == SecName) return SecRef; } else if (SecIndex == SectionIndex) return SecRef; SecIndex++; } return make_error("invalid section reference", object::object_error::parse_failed); } void ObjDumper::printSectionAsString(const object::ObjectFile *Obj, StringRef SecName) { Expected SectionRefOrError = getSecNameOrIndexAsSecRef(Obj, SecName); if (!SectionRefOrError) error(std::move(SectionRefOrError)); object::SectionRef Section = *SectionRefOrError; StringRef SectionName; if (std::error_code E = Section.getName(SectionName)) error(E); W.startLine() << "String dump of section '" << SectionName << "':\n"; StringRef SectionContent; Section.getContents(SectionContent); const uint8_t *SecContent = SectionContent.bytes_begin(); const uint8_t *CurrentWord = SecContent; const uint8_t *SecEnd = SectionContent.bytes_end(); while (CurrentWord <= SecEnd) { size_t WordSize = strnlen(reinterpret_cast(CurrentWord), SecEnd - CurrentWord); if (!WordSize) { CurrentWord++; continue; } W.startLine() << format("[%6tx] ", CurrentWord - SecContent); printAsPrintable(W.startLine(), CurrentWord, WordSize); W.startLine() << '\n'; CurrentWord += WordSize + 1; } } void ObjDumper::printSectionAsHex(const object::ObjectFile *Obj, StringRef SecName) { Expected SectionRefOrError = getSecNameOrIndexAsSecRef(Obj, SecName); if (!SectionRefOrError) error(std::move(SectionRefOrError)); object::SectionRef Section = *SectionRefOrError; StringRef SectionName; if (std::error_code E = Section.getName(SectionName)) error(E); W.startLine() << "Hex dump of section '" << SectionName << "':\n"; StringRef SectionContent; Section.getContents(SectionContent); const uint8_t *SecContent = SectionContent.bytes_begin(); const uint8_t *SecEnd = SecContent + SectionContent.size(); for (const uint8_t *SecPtr = SecContent; SecPtr < SecEnd; SecPtr += 16) { const uint8_t *TmpSecPtr = SecPtr; uint8_t i; uint8_t k; W.startLine() << format_hex(SecPtr - SecContent, 10); W.startLine() << ' '; for (i = 0; TmpSecPtr < SecEnd && i < 4; ++i) { for (k = 0; TmpSecPtr < SecEnd && k < 4; k++, TmpSecPtr++) { uint8_t Val = *(reinterpret_cast(TmpSecPtr)); W.startLine() << format_hex_no_prefix(Val, 2); } W.startLine() << ' '; } // We need to print the correct amount of spaces to match the format. // We are adding the (4 - i) last rows that are 8 characters each. // Then, the (4 - i) spaces that are in between the rows. // Least, if we cut in a middle of a row, we add the remaining characters, // which is (8 - (k * 2)) if (i < 4) W.startLine() << format("%*c", (4 - i) * 8 + (4 - i) + (8 - (k * 2)), ' '); TmpSecPtr = SecPtr; for (i = 0; TmpSecPtr + i < SecEnd && i < 16; ++i) W.startLine() << (isPrint(TmpSecPtr[i]) ? static_cast(TmpSecPtr[i]) : '.'); W.startLine() << '\n'; } } } // namespace llvm