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llvm-mirror/lib/DebugInfo/DWARF/DWARFDebugInfoEntry.cpp

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2012-08-23 02:52:51 +02:00
//===-- DWARFDebugInfoEntry.cpp -------------------------------------------===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
#include "SyntaxHighlighting.h"
#include "llvm/DebugInfo/DWARF/DWARFCompileUnit.h"
#include "llvm/DebugInfo/DWARF/DWARFContext.h"
#include "llvm/DebugInfo/DWARF/DWARFDebugAbbrev.h"
#include "llvm/DebugInfo/DWARF/DWARFDebugInfoEntry.h"
#include "llvm/DebugInfo/DWARF/DWARFFormValue.h"
#include "llvm/Support/DataTypes.h"
#include "llvm/Support/Debug.h"
#include "llvm/Support/Dwarf.h"
#include "llvm/Support/Format.h"
#include "llvm/Support/raw_ostream.h"
using namespace llvm;
using namespace dwarf;
using namespace syntax;
// Small helper to extract a DIE pointed by a reference
// attribute. It looks up the Unit containing the DIE and calls
// DIE.extractFast with the right unit. Returns new unit on success,
// nullptr otherwise.
static const DWARFUnit *findUnitAndExtractFast(DWARFDebugInfoEntryMinimal &DIE,
const DWARFUnit *Unit,
uint32_t *Offset) {
Unit = Unit->getUnitSection().getUnitForOffset(*Offset);
return (Unit && DIE.extractFast(Unit, Offset)) ? Unit : nullptr;
}
void DWARFDebugInfoEntryMinimal::dump(raw_ostream &OS, DWARFUnit *u,
unsigned recurseDepth,
unsigned indent) const {
DataExtractor debug_info_data = u->getDebugInfoExtractor();
uint32_t offset = Offset;
if (debug_info_data.isValidOffset(offset)) {
uint32_t abbrCode = debug_info_data.getULEB128(&offset);
WithColor(OS, syntax::Address).get() << format("\n0x%8.8x: ", Offset);
if (abbrCode) {
if (AbbrevDecl) {
auto tagString = TagString(getTag());
if (!tagString.empty())
WithColor(OS, syntax::Tag).get().indent(indent) << tagString;
else
WithColor(OS, syntax::Tag).get().indent(indent)
<< format("DW_TAG_Unknown_%x", getTag());
OS << format(" [%u] %c\n", abbrCode,
AbbrevDecl->hasChildren() ? '*' : ' ');
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// Dump all data in the DIE for the attributes.
for (const auto &AttrSpec : AbbrevDecl->attributes()) {
dumpAttribute(OS, u, &offset, AttrSpec.Attr, AttrSpec.Form, indent);
}
const DWARFDebugInfoEntryMinimal *child = getFirstChild();
if (recurseDepth > 0 && child) {
while (child) {
child->dump(OS, u, recurseDepth-1, indent+2);
child = child->getSibling();
}
}
} else {
OS << "Abbreviation code not found in 'debug_abbrev' class for code: "
<< abbrCode << '\n';
}
} else {
OS.indent(indent) << "NULL\n";
}
}
}
static void dumpApplePropertyAttribute(raw_ostream &OS, uint64_t Val) {
OS << " (";
do {
uint64_t Shift = countTrailingZeros(Val);
assert(Shift < 64 && "undefined behavior");
uint64_t Bit = 1ULL << Shift;
auto PropName = ApplePropertyString(Bit);
if (!PropName.empty())
OS << PropName;
else
OS << format("DW_APPLE_PROPERTY_0x%" PRIx64, Bit);
if (!(Val ^= Bit))
break;
OS << ", ";
} while (true);
OS << ")";
}
static void dumpRanges(raw_ostream &OS, const DWARFAddressRangesVector& Ranges,
unsigned AddressSize, unsigned Indent) {
if (Ranges.empty())
return;
for (const auto &Range: Ranges) {
OS << '\n';
OS.indent(Indent);
OS << format("[0x%0*" PRIx64 " - 0x%0*" PRIx64 ")",
AddressSize*2, Range.first,
AddressSize*2, Range.second);
}
}
void DWARFDebugInfoEntryMinimal::dumpAttribute(raw_ostream &OS,
DWARFUnit *u,
uint32_t *offset_ptr,
dwarf::Attribute attr,
dwarf::Form form,
unsigned indent) const {
const char BaseIndent[] = " ";
OS << BaseIndent;
OS.indent(indent+2);
auto attrString = AttributeString(attr);
if (!attrString.empty())
WithColor(OS, syntax::Attribute) << attrString;
else
WithColor(OS, syntax::Attribute).get() << format("DW_AT_Unknown_%x", attr);
auto formString = FormEncodingString(form);
if (!formString.empty())
OS << " [" << formString << ']';
else
OS << format(" [DW_FORM_Unknown_%x]", form);
DWARFFormValue formValue(form);
if (!formValue.extractValue(u->getDebugInfoExtractor(), offset_ptr, u))
return;
OS << "\t(";
StringRef Name;
std::string File;
auto Color = syntax::Enumerator;
if (attr == DW_AT_decl_file || attr == DW_AT_call_file) {
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Color = syntax::String;
if (const auto *LT = u->getContext().getLineTableForUnit(u))
if (LT->getFileNameByIndex(
formValue.getAsUnsignedConstant().getValue(),
u->getCompilationDir(),
DILineInfoSpecifier::FileLineInfoKind::AbsoluteFilePath, File)) {
File = '"' + File + '"';
Name = File;
}
} else if (Optional<uint64_t> Val = formValue.getAsUnsignedConstant())
Name = AttributeValueString(attr, *Val);
if (!Name.empty())
WithColor(OS, Color) << Name;
else if (attr == DW_AT_decl_line || attr == DW_AT_call_line)
OS << *formValue.getAsUnsignedConstant();
else
formValue.dump(OS);
// We have dumped the attribute raw value. For some attributes
// having both the raw value and the pretty-printed value is
// interesting. These attributes are handled below.
if (attr == DW_AT_specification || attr == DW_AT_abstract_origin) {
Optional<uint64_t> Ref = formValue.getAsReference();
if (Ref.hasValue()) {
uint32_t RefOffset = Ref.getValue();
DWARFDebugInfoEntryMinimal DIE;
if (const DWARFUnit *RefU = findUnitAndExtractFast(DIE, u, &RefOffset))
if (const char *Name = DIE.getName(RefU, DINameKind::LinkageName))
OS << " \"" << Name << '\"';
}
} else if (attr == DW_AT_APPLE_property_attribute) {
if (Optional<uint64_t> OptVal = formValue.getAsUnsignedConstant())
dumpApplePropertyAttribute(OS, *OptVal);
} else if (attr == DW_AT_ranges) {
dumpRanges(OS, getAddressRanges(u), u->getAddressByteSize(),
sizeof(BaseIndent)+indent+4);
}
OS << ")\n";
}
bool DWARFDebugInfoEntryMinimal::extractFast(const DWARFUnit *U,
uint32_t *OffsetPtr) {
Offset = *OffsetPtr;
DataExtractor DebugInfoData = U->getDebugInfoExtractor();
uint32_t UEndOffset = U->getNextUnitOffset();
if (Offset >= UEndOffset || !DebugInfoData.isValidOffset(Offset))
return false;
uint64_t AbbrCode = DebugInfoData.getULEB128(OffsetPtr);
if (0 == AbbrCode) {
// NULL debug tag entry.
AbbrevDecl = nullptr;
return true;
}
AbbrevDecl = U->getAbbreviations()->getAbbreviationDeclaration(AbbrCode);
if (nullptr == AbbrevDecl) {
// Restore the original offset.
*OffsetPtr = Offset;
return false;
}
// Skip all data in the .debug_info for the attributes
for (const auto &AttrSpec : AbbrevDecl->attributes()) {
auto Form = AttrSpec.Form;
Clean up DWARFFormValue by reducing duplicated code and removing DWARFFormValue::getFixedFormSizes() In preparation for a follow on patch that improves DWARF parsing speed, clean up DWARFFormValue so that we have can get the fixed byte size of a form value given a DWARFUnit or given the version, address byte size and dwarf32/64. This patch cleans up code so that everyone is using one of the new DWARFFormValue functions: static Optional<uint8_t> DWARFFormValue::getFixedByteSize(dwarf::Form Form, const DWARFUnit *U = nullptr); static Optional<uint8_t> DWARFFormValue::getFixedByteSize(dwarf::Form Form, uint16_t Version, uint8_t AddrSize, bool Dwarf32); This patch changes DWARFFormValue::skipValue() to rely on the output of DWARFFormValue::getFixedByteSize(...) instead of duplicating the code in each function. This will reduce the number of changes we need to make to DWARF to fewer places in DWARFFormValue when we add support for new form. This patch also starts to support DWARF64 so that we can get correct byte sizes for forms that vary according the DWARF 32/64. To reduce the code duplication a new FormSizeHelper pure virtual class was created that can be created as a FormSizeHelperDWARFUnit when you have a DWARFUnit, or FormSizeHelperManual where you manually specify the DWARF version, address byte size and DWARF32/DWARF64. There is now a single implementation of a function that gets the fixed byte size (instead of two where one took a DWARFUnit and one took the DWARF version, address byte size and DWARFFormat enum) and one function to skip the form values. https://reviews.llvm.org/D26526 llvm-svn: 286597
2016-11-11 17:21:37 +01:00
if (Optional<uint8_t> FixedSize = DWARFFormValue::getFixedByteSize(Form, U))
*OffsetPtr += *FixedSize;
else if (!DWARFFormValue::skipValue(Form, DebugInfoData, OffsetPtr, U)) {
// Restore the original offset.
*OffsetPtr = Offset;
return false;
}
}
return true;
}
bool DWARFDebugInfoEntryMinimal::isSubprogramDIE() const {
return getTag() == DW_TAG_subprogram;
}
bool DWARFDebugInfoEntryMinimal::isSubroutineDIE() const {
uint32_t Tag = getTag();
return Tag == DW_TAG_subprogram ||
Tag == DW_TAG_inlined_subroutine;
}
bool DWARFDebugInfoEntryMinimal::getAttributeValue(const DWARFUnit *U,
dwarf::Attribute Attr, DWARFFormValue &FormValue) const {
if (!AbbrevDecl)
return false;
uint32_t AttrIdx = AbbrevDecl->findAttributeIndex(Attr);
if (AttrIdx == -1U)
return false;
DataExtractor DebugInfoData = U->getDebugInfoExtractor();
uint32_t DebugInfoOffset = getOffset();
// Skip the abbreviation code so we are at the data for the attributes
DebugInfoData.getULEB128(&DebugInfoOffset);
// Skip preceding attribute values.
for (uint32_t i = 0; i < AttrIdx; ++i) {
DWARFFormValue::skipValue(AbbrevDecl->getFormByIndex(i),
DebugInfoData, &DebugInfoOffset, U);
}
FormValue = DWARFFormValue(AbbrevDecl->getFormByIndex(AttrIdx));
return FormValue.extractValue(DebugInfoData, &DebugInfoOffset, U);
}
const char *DWARFDebugInfoEntryMinimal::getAttributeValueAsString(
const DWARFUnit *U, dwarf::Attribute Attr,
const char *FailValue) const {
DWARFFormValue FormValue;
if (!getAttributeValue(U, Attr, FormValue))
return FailValue;
Optional<const char *> Result = FormValue.getAsCString();
return Result.hasValue() ? Result.getValue() : FailValue;
}
uint64_t DWARFDebugInfoEntryMinimal::getAttributeValueAsAddress(
const DWARFUnit *U, dwarf::Attribute Attr,
uint64_t FailValue) const {
DWARFFormValue FormValue;
if (!getAttributeValue(U, Attr, FormValue))
return FailValue;
Optional<uint64_t> Result = FormValue.getAsAddress();
return Result.hasValue() ? Result.getValue() : FailValue;
}
uint64_t DWARFDebugInfoEntryMinimal::getAttributeValueAsUnsignedConstant(
const DWARFUnit *U, dwarf::Attribute Attr,
uint64_t FailValue) const {
DWARFFormValue FormValue;
if (!getAttributeValue(U, Attr, FormValue))
return FailValue;
Optional<uint64_t> Result = FormValue.getAsUnsignedConstant();
return Result.hasValue() ? Result.getValue() : FailValue;
}
uint64_t DWARFDebugInfoEntryMinimal::getAttributeValueAsReference(
const DWARFUnit *U, dwarf::Attribute Attr,
uint64_t FailValue) const {
DWARFFormValue FormValue;
if (!getAttributeValue(U, Attr, FormValue))
return FailValue;
Optional<uint64_t> Result = FormValue.getAsReference();
return Result.hasValue() ? Result.getValue() : FailValue;
}
uint64_t DWARFDebugInfoEntryMinimal::getAttributeValueAsSectionOffset(
const DWARFUnit *U, dwarf::Attribute Attr,
uint64_t FailValue) const {
DWARFFormValue FormValue;
if (!getAttributeValue(U, Attr, FormValue))
return FailValue;
Optional<uint64_t> Result = FormValue.getAsSectionOffset();
return Result.hasValue() ? Result.getValue() : FailValue;
}
uint64_t
DWARFDebugInfoEntryMinimal::getRangesBaseAttribute(const DWARFUnit *U,
uint64_t FailValue) const {
uint64_t Result =
getAttributeValueAsSectionOffset(U, DW_AT_rnglists_base, -1ULL);
if (Result != -1ULL)
return Result;
return getAttributeValueAsSectionOffset(U, DW_AT_GNU_ranges_base, FailValue);
}
bool DWARFDebugInfoEntryMinimal::getLowAndHighPC(const DWARFUnit *U,
uint64_t &LowPC,
uint64_t &HighPC) const {
LowPC = getAttributeValueAsAddress(U, DW_AT_low_pc, -1ULL);
if (LowPC == -1ULL)
return false;
HighPC = getAttributeValueAsAddress(U, DW_AT_high_pc, -1ULL);
if (HighPC == -1ULL) {
// Since DWARF4, DW_AT_high_pc may also be of class constant, in which case
// it represents function size.
HighPC = getAttributeValueAsUnsignedConstant(U, DW_AT_high_pc, -1ULL);
if (HighPC != -1ULL)
HighPC += LowPC;
}
return (HighPC != -1ULL);
}
DWARFAddressRangesVector
DWARFDebugInfoEntryMinimal::getAddressRanges(const DWARFUnit *U) const {
if (isNULL())
return DWARFAddressRangesVector();
// Single range specified by low/high PC.
uint64_t LowPC, HighPC;
if (getLowAndHighPC(U, LowPC, HighPC)) {
return DWARFAddressRangesVector(1, std::make_pair(LowPC, HighPC));
}
// Multiple ranges from .debug_ranges section.
uint32_t RangesOffset =
getAttributeValueAsSectionOffset(U, DW_AT_ranges, -1U);
if (RangesOffset != -1U) {
DWARFDebugRangeList RangeList;
if (U->extractRangeList(RangesOffset, RangeList))
return RangeList.getAbsoluteRanges(U->getBaseAddress());
}
return DWARFAddressRangesVector();
}
void DWARFDebugInfoEntryMinimal::collectChildrenAddressRanges(
const DWARFUnit *U, DWARFAddressRangesVector& Ranges) const {
if (isNULL())
return;
if (isSubprogramDIE()) {
const auto &DIERanges = getAddressRanges(U);
Ranges.insert(Ranges.end(), DIERanges.begin(), DIERanges.end());
}
const DWARFDebugInfoEntryMinimal *Child = getFirstChild();
while (Child) {
Child->collectChildrenAddressRanges(U, Ranges);
Child = Child->getSibling();
}
}
bool DWARFDebugInfoEntryMinimal::addressRangeContainsAddress(
const DWARFUnit *U, const uint64_t Address) const {
for (const auto& R : getAddressRanges(U)) {
if (R.first <= Address && Address < R.second)
return true;
}
return false;
}
const char *
DWARFDebugInfoEntryMinimal::getSubroutineName(const DWARFUnit *U,
DINameKind Kind) const {
if (!isSubroutineDIE())
return nullptr;
return getName(U, Kind);
}
const char *
DWARFDebugInfoEntryMinimal::getName(const DWARFUnit *U,
DINameKind Kind) const {
if (Kind == DINameKind::None)
return nullptr;
// Try to get mangled name only if it was asked for.
if (Kind == DINameKind::LinkageName) {
if (const char *name =
getAttributeValueAsString(U, DW_AT_MIPS_linkage_name, nullptr))
return name;
if (const char *name =
getAttributeValueAsString(U, DW_AT_linkage_name, nullptr))
return name;
}
if (const char *name = getAttributeValueAsString(U, DW_AT_name, nullptr))
return name;
// Try to get name from specification DIE.
uint32_t spec_ref =
getAttributeValueAsReference(U, DW_AT_specification, -1U);
if (spec_ref != -1U) {
DWARFDebugInfoEntryMinimal spec_die;
if (const DWARFUnit *RefU = findUnitAndExtractFast(spec_die, U, &spec_ref)) {
if (const char *name = spec_die.getName(RefU, Kind))
return name;
}
}
// Try to get name from abstract origin DIE.
uint32_t abs_origin_ref =
getAttributeValueAsReference(U, DW_AT_abstract_origin, -1U);
if (abs_origin_ref != -1U) {
DWARFDebugInfoEntryMinimal abs_origin_die;
if (const DWARFUnit *RefU = findUnitAndExtractFast(abs_origin_die, U,
&abs_origin_ref)) {
if (const char *name = abs_origin_die.getName(RefU, Kind))
return name;
}
}
return nullptr;
}
void DWARFDebugInfoEntryMinimal::getCallerFrame(const DWARFUnit *U,
uint32_t &CallFile,
uint32_t &CallLine,
uint32_t &CallColumn) const {
CallFile = getAttributeValueAsUnsignedConstant(U, DW_AT_call_file, 0);
CallLine = getAttributeValueAsUnsignedConstant(U, DW_AT_call_line, 0);
CallColumn = getAttributeValueAsUnsignedConstant(U, DW_AT_call_column, 0);
}
DWARFDebugInfoEntryInlinedChain
DWARFDebugInfoEntryMinimal::getInlinedChainForAddress(
const DWARFUnit *U, const uint64_t Address) const {
DWARFDebugInfoEntryInlinedChain InlinedChain;
InlinedChain.U = U;
if (isNULL())
return InlinedChain;
for (const DWARFDebugInfoEntryMinimal *DIE = this; DIE; ) {
// Append current DIE to inlined chain only if it has correct tag
// (e.g. it is not a lexical block).
if (DIE->isSubroutineDIE()) {
InlinedChain.DIEs.push_back(*DIE);
}
// Try to get child which also contains provided address.
const DWARFDebugInfoEntryMinimal *Child = DIE->getFirstChild();
while (Child) {
if (Child->addressRangeContainsAddress(U, Address)) {
// Assume there is only one such child.
break;
}
Child = Child->getSibling();
}
DIE = Child;
}
// Reverse the obtained chain to make the root of inlined chain last.
std::reverse(InlinedChain.DIEs.begin(), InlinedChain.DIEs.end());
return InlinedChain;
}