mirror of
https://github.com/RPCS3/llvm-mirror.git
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0d4a698a65
Contains some manual fixes. No functionality change intended. llvm-svn: 273047
746 lines
23 KiB
C++
746 lines
23 KiB
C++
//===--- lib/CodeGen/DIE.h - DWARF Info Entries -----------------*- C++ -*-===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// Data structures for DWARF info entries.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_LIB_CODEGEN_ASMPRINTER_DIE_H
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#define LLVM_LIB_CODEGEN_ASMPRINTER_DIE_H
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#include "llvm/ADT/FoldingSet.h"
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#include "llvm/ADT/PointerIntPair.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/ADT/SmallVector.h"
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#include "llvm/CodeGen/DwarfStringPoolEntry.h"
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#include "llvm/Support/Dwarf.h"
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namespace llvm {
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class AsmPrinter;
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class MCExpr;
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class MCSymbol;
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class raw_ostream;
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class DwarfTypeUnit;
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//===--------------------------------------------------------------------===//
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/// DIEAbbrevData - Dwarf abbreviation data, describes one attribute of a
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/// Dwarf abbreviation.
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class DIEAbbrevData {
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/// Attribute - Dwarf attribute code.
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///
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dwarf::Attribute Attribute;
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/// Form - Dwarf form code.
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///
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dwarf::Form Form;
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public:
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DIEAbbrevData(dwarf::Attribute A, dwarf::Form F) : Attribute(A), Form(F) {}
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// Accessors.
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dwarf::Attribute getAttribute() const { return Attribute; }
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dwarf::Form getForm() const { return Form; }
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/// Profile - Used to gather unique data for the abbreviation folding set.
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///
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void Profile(FoldingSetNodeID &ID) const;
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};
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//===--------------------------------------------------------------------===//
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/// DIEAbbrev - Dwarf abbreviation, describes the organization of a debug
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/// information object.
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class DIEAbbrev : public FoldingSetNode {
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/// Unique number for node.
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///
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unsigned Number;
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/// Tag - Dwarf tag code.
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///
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dwarf::Tag Tag;
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/// Children - Whether or not this node has children.
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///
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// This cheats a bit in all of the uses since the values in the standard
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// are 0 and 1 for no children and children respectively.
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bool Children;
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/// Data - Raw data bytes for abbreviation.
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///
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SmallVector<DIEAbbrevData, 12> Data;
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public:
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DIEAbbrev(dwarf::Tag T, bool C) : Tag(T), Children(C), Data() {}
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// Accessors.
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dwarf::Tag getTag() const { return Tag; }
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unsigned getNumber() const { return Number; }
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bool hasChildren() const { return Children; }
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const SmallVectorImpl<DIEAbbrevData> &getData() const { return Data; }
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void setChildrenFlag(bool hasChild) { Children = hasChild; }
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void setNumber(unsigned N) { Number = N; }
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/// AddAttribute - Adds another set of attribute information to the
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/// abbreviation.
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void AddAttribute(dwarf::Attribute Attribute, dwarf::Form Form) {
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Data.push_back(DIEAbbrevData(Attribute, Form));
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}
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/// Profile - Used to gather unique data for the abbreviation folding set.
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///
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void Profile(FoldingSetNodeID &ID) const;
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/// Emit - Print the abbreviation using the specified asm printer.
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///
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void Emit(const AsmPrinter *AP) const;
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void print(raw_ostream &O);
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void dump();
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};
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//===--------------------------------------------------------------------===//
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/// DIEInteger - An integer value DIE.
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///
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class DIEInteger {
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uint64_t Integer;
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public:
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explicit DIEInteger(uint64_t I) : Integer(I) {}
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/// BestForm - Choose the best form for integer.
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///
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static dwarf::Form BestForm(bool IsSigned, uint64_t Int) {
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if (IsSigned) {
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const int64_t SignedInt = Int;
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if ((char)Int == SignedInt)
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return dwarf::DW_FORM_data1;
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if ((short)Int == SignedInt)
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return dwarf::DW_FORM_data2;
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if ((int)Int == SignedInt)
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return dwarf::DW_FORM_data4;
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} else {
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if ((unsigned char)Int == Int)
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return dwarf::DW_FORM_data1;
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if ((unsigned short)Int == Int)
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return dwarf::DW_FORM_data2;
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if ((unsigned int)Int == Int)
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return dwarf::DW_FORM_data4;
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}
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return dwarf::DW_FORM_data8;
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}
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uint64_t getValue() const { return Integer; }
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void setValue(uint64_t Val) { Integer = Val; }
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void EmitValue(const AsmPrinter *AP, dwarf::Form Form) const;
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unsigned SizeOf(const AsmPrinter *AP, dwarf::Form Form) const;
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void print(raw_ostream &O) const;
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};
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//===--------------------------------------------------------------------===//
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/// DIEExpr - An expression DIE.
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//
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class DIEExpr {
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const MCExpr *Expr;
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public:
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explicit DIEExpr(const MCExpr *E) : Expr(E) {}
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/// getValue - Get MCExpr.
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///
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const MCExpr *getValue() const { return Expr; }
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void EmitValue(const AsmPrinter *AP, dwarf::Form Form) const;
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unsigned SizeOf(const AsmPrinter *AP, dwarf::Form Form) const;
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void print(raw_ostream &O) const;
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};
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//===--------------------------------------------------------------------===//
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/// DIELabel - A label DIE.
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//
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class DIELabel {
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const MCSymbol *Label;
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public:
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explicit DIELabel(const MCSymbol *L) : Label(L) {}
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/// getValue - Get MCSymbol.
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///
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const MCSymbol *getValue() const { return Label; }
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void EmitValue(const AsmPrinter *AP, dwarf::Form Form) const;
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unsigned SizeOf(const AsmPrinter *AP, dwarf::Form Form) const;
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void print(raw_ostream &O) const;
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};
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//===--------------------------------------------------------------------===//
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/// DIEDelta - A simple label difference DIE.
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///
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class DIEDelta {
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const MCSymbol *LabelHi;
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const MCSymbol *LabelLo;
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public:
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DIEDelta(const MCSymbol *Hi, const MCSymbol *Lo) : LabelHi(Hi), LabelLo(Lo) {}
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void EmitValue(const AsmPrinter *AP, dwarf::Form Form) const;
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unsigned SizeOf(const AsmPrinter *AP, dwarf::Form Form) const;
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void print(raw_ostream &O) const;
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};
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//===--------------------------------------------------------------------===//
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/// DIEString - A container for string values.
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///
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class DIEString {
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DwarfStringPoolEntryRef S;
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public:
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DIEString(DwarfStringPoolEntryRef S) : S(S) {}
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/// getString - Grab the string out of the object.
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StringRef getString() const { return S.getString(); }
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void EmitValue(const AsmPrinter *AP, dwarf::Form Form) const;
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unsigned SizeOf(const AsmPrinter *AP, dwarf::Form Form) const;
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void print(raw_ostream &O) const;
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};
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//===--------------------------------------------------------------------===//
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/// DIEEntry - A pointer to another debug information entry. An instance of
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/// this class can also be used as a proxy for a debug information entry not
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/// yet defined (ie. types.)
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class DIE;
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class DIEEntry {
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DIE *Entry;
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DIEEntry() = delete;
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public:
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explicit DIEEntry(DIE &E) : Entry(&E) {}
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DIE &getEntry() const { return *Entry; }
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/// Returns size of a ref_addr entry.
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static unsigned getRefAddrSize(const AsmPrinter *AP);
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void EmitValue(const AsmPrinter *AP, dwarf::Form Form) const;
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unsigned SizeOf(const AsmPrinter *AP, dwarf::Form Form) const {
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return Form == dwarf::DW_FORM_ref_addr ? getRefAddrSize(AP)
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: sizeof(int32_t);
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}
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void print(raw_ostream &O) const;
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};
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//===--------------------------------------------------------------------===//
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/// DIELocList - Represents a pointer to a location list in the debug_loc
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/// section.
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//
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class DIELocList {
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// Index into the .debug_loc vector.
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size_t Index;
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public:
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DIELocList(size_t I) : Index(I) {}
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/// getValue - Grab the current index out.
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size_t getValue() const { return Index; }
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void EmitValue(const AsmPrinter *AP, dwarf::Form Form) const;
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unsigned SizeOf(const AsmPrinter *AP, dwarf::Form Form) const;
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void print(raw_ostream &O) const;
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};
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//===--------------------------------------------------------------------===//
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/// DIEValue - A debug information entry value. Some of these roughly correlate
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/// to DWARF attribute classes.
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///
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class DIEBlock;
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class DIELoc;
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class DIEValue {
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public:
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enum Type {
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isNone,
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#define HANDLE_DIEVALUE(T) is##T,
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#include "llvm/CodeGen/DIEValue.def"
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};
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private:
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/// Ty - Type of data stored in the value.
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///
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Type Ty = isNone;
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dwarf::Attribute Attribute = (dwarf::Attribute)0;
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dwarf::Form Form = (dwarf::Form)0;
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/// Storage for the value.
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///
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/// All values that aren't standard layout (or are larger than 8 bytes)
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/// should be stored by reference instead of by value.
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typedef AlignedCharArrayUnion<DIEInteger, DIEString, DIEExpr, DIELabel,
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DIEDelta *, DIEEntry, DIEBlock *, DIELoc *,
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DIELocList>
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ValTy;
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static_assert(sizeof(ValTy) <= sizeof(uint64_t) ||
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sizeof(ValTy) <= sizeof(void *),
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"Expected all large types to be stored via pointer");
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/// Underlying stored value.
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ValTy Val;
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template <class T> void construct(T V) {
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static_assert(std::is_standard_layout<T>::value ||
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std::is_pointer<T>::value,
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"Expected standard layout or pointer");
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new (reinterpret_cast<void *>(Val.buffer)) T(V);
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}
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template <class T> T *get() { return reinterpret_cast<T *>(Val.buffer); }
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template <class T> const T *get() const {
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return reinterpret_cast<const T *>(Val.buffer);
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}
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template <class T> void destruct() { get<T>()->~T(); }
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/// Destroy the underlying value.
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///
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/// This should get optimized down to a no-op. We could skip it if we could
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/// add a static assert on \a std::is_trivially_copyable(), but we currently
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/// support versions of GCC that don't understand that.
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void destroyVal() {
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switch (Ty) {
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case isNone:
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return;
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#define HANDLE_DIEVALUE_SMALL(T) \
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case is##T: \
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destruct<DIE##T>();
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return;
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#define HANDLE_DIEVALUE_LARGE(T) \
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case is##T: \
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destruct<const DIE##T *>();
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return;
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#include "llvm/CodeGen/DIEValue.def"
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}
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}
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/// Copy the underlying value.
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///
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/// This should get optimized down to a simple copy. We need to actually
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/// construct the value, rather than calling memcpy, to satisfy strict
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/// aliasing rules.
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void copyVal(const DIEValue &X) {
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switch (Ty) {
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case isNone:
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return;
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#define HANDLE_DIEVALUE_SMALL(T) \
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case is##T: \
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construct<DIE##T>(*X.get<DIE##T>()); \
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return;
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#define HANDLE_DIEVALUE_LARGE(T) \
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case is##T: \
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construct<const DIE##T *>(*X.get<const DIE##T *>()); \
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return;
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#include "llvm/CodeGen/DIEValue.def"
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}
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}
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public:
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DIEValue() = default;
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DIEValue(const DIEValue &X) : Ty(X.Ty), Attribute(X.Attribute), Form(X.Form) {
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copyVal(X);
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}
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DIEValue &operator=(const DIEValue &X) {
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destroyVal();
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Ty = X.Ty;
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Attribute = X.Attribute;
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Form = X.Form;
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copyVal(X);
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return *this;
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}
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~DIEValue() { destroyVal(); }
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#define HANDLE_DIEVALUE_SMALL(T) \
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DIEValue(dwarf::Attribute Attribute, dwarf::Form Form, const DIE##T &V) \
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: Ty(is##T), Attribute(Attribute), Form(Form) { \
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construct<DIE##T>(V); \
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}
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#define HANDLE_DIEVALUE_LARGE(T) \
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DIEValue(dwarf::Attribute Attribute, dwarf::Form Form, const DIE##T *V) \
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: Ty(is##T), Attribute(Attribute), Form(Form) { \
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assert(V && "Expected valid value"); \
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construct<const DIE##T *>(V); \
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}
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#include "llvm/CodeGen/DIEValue.def"
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// Accessors
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Type getType() const { return Ty; }
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dwarf::Attribute getAttribute() const { return Attribute; }
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dwarf::Form getForm() const { return Form; }
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explicit operator bool() const { return Ty; }
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#define HANDLE_DIEVALUE_SMALL(T) \
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const DIE##T &getDIE##T() const { \
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assert(getType() == is##T && "Expected " #T); \
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return *get<DIE##T>(); \
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}
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#define HANDLE_DIEVALUE_LARGE(T) \
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const DIE##T &getDIE##T() const { \
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assert(getType() == is##T && "Expected " #T); \
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return **get<const DIE##T *>(); \
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}
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#include "llvm/CodeGen/DIEValue.def"
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/// EmitValue - Emit value via the Dwarf writer.
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///
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void EmitValue(const AsmPrinter *AP) const;
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/// SizeOf - Return the size of a value in bytes.
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///
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unsigned SizeOf(const AsmPrinter *AP) const;
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void print(raw_ostream &O) const;
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void dump() const;
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};
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struct IntrusiveBackListNode {
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PointerIntPair<IntrusiveBackListNode *, 1> Next;
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IntrusiveBackListNode() : Next(this, true) {}
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IntrusiveBackListNode *getNext() const {
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return Next.getInt() ? nullptr : Next.getPointer();
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}
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};
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struct IntrusiveBackListBase {
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typedef IntrusiveBackListNode Node;
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Node *Last = nullptr;
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bool empty() const { return !Last; }
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void push_back(Node &N) {
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assert(N.Next.getPointer() == &N && "Expected unlinked node");
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assert(N.Next.getInt() == true && "Expected unlinked node");
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if (Last) {
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N.Next = Last->Next;
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Last->Next.setPointerAndInt(&N, false);
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}
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Last = &N;
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}
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};
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template <class T> class IntrusiveBackList : IntrusiveBackListBase {
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public:
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using IntrusiveBackListBase::empty;
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void push_back(T &N) { IntrusiveBackListBase::push_back(N); }
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T &back() { return *static_cast<T *>(Last); }
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const T &back() const { return *static_cast<T *>(Last); }
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class const_iterator;
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class iterator
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: public iterator_facade_base<iterator, std::forward_iterator_tag, T> {
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friend class const_iterator;
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Node *N = nullptr;
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public:
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iterator() = default;
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explicit iterator(T *N) : N(N) {}
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iterator &operator++() {
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N = N->getNext();
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return *this;
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}
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explicit operator bool() const { return N; }
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T &operator*() const { return *static_cast<T *>(N); }
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bool operator==(const iterator &X) const { return N == X.N; }
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bool operator!=(const iterator &X) const { return N != X.N; }
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};
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class const_iterator
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: public iterator_facade_base<const_iterator, std::forward_iterator_tag,
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const T> {
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const Node *N = nullptr;
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public:
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const_iterator() = default;
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// Placate MSVC by explicitly scoping 'iterator'.
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const_iterator(typename IntrusiveBackList<T>::iterator X) : N(X.N) {}
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explicit const_iterator(const T *N) : N(N) {}
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const_iterator &operator++() {
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N = N->getNext();
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return *this;
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}
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explicit operator bool() const { return N; }
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const T &operator*() const { return *static_cast<const T *>(N); }
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bool operator==(const const_iterator &X) const { return N == X.N; }
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bool operator!=(const const_iterator &X) const { return N != X.N; }
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};
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iterator begin() {
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return Last ? iterator(static_cast<T *>(Last->Next.getPointer())) : end();
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}
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const_iterator begin() const {
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return const_cast<IntrusiveBackList *>(this)->begin();
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}
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iterator end() { return iterator(); }
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const_iterator end() const { return const_iterator(); }
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static iterator toIterator(T &N) { return iterator(&N); }
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static const_iterator toIterator(const T &N) { return const_iterator(&N); }
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};
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/// A list of DIE values.
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///
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/// This is a singly-linked list, but instead of reversing the order of
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/// insertion, we keep a pointer to the back of the list so we can push in
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/// order.
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///
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/// There are two main reasons to choose a linked list over a customized
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/// vector-like data structure.
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///
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/// 1. For teardown efficiency, we want DIEs to be BumpPtrAllocated. Using a
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/// linked list here makes this way easier to accomplish.
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/// 2. Carrying an extra pointer per \a DIEValue isn't expensive. 45% of DIEs
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/// have 2 or fewer values, and 90% have 5 or fewer. A vector would be
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/// over-allocated by 50% on average anyway, the same cost as the
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/// linked-list node.
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class DIEValueList {
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struct Node : IntrusiveBackListNode {
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DIEValue V;
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explicit Node(DIEValue V) : V(V) {}
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};
|
|
|
|
typedef IntrusiveBackList<Node> ListTy;
|
|
ListTy List;
|
|
|
|
public:
|
|
class const_value_iterator;
|
|
class value_iterator
|
|
: public iterator_adaptor_base<value_iterator, ListTy::iterator,
|
|
std::forward_iterator_tag, DIEValue> {
|
|
friend class const_value_iterator;
|
|
typedef iterator_adaptor_base<value_iterator, ListTy::iterator,
|
|
std::forward_iterator_tag,
|
|
DIEValue> iterator_adaptor;
|
|
|
|
public:
|
|
value_iterator() = default;
|
|
explicit value_iterator(ListTy::iterator X) : iterator_adaptor(X) {}
|
|
|
|
explicit operator bool() const { return bool(wrapped()); }
|
|
DIEValue &operator*() const { return wrapped()->V; }
|
|
};
|
|
|
|
class const_value_iterator : public iterator_adaptor_base<
|
|
const_value_iterator, ListTy::const_iterator,
|
|
std::forward_iterator_tag, const DIEValue> {
|
|
typedef iterator_adaptor_base<const_value_iterator, ListTy::const_iterator,
|
|
std::forward_iterator_tag,
|
|
const DIEValue> iterator_adaptor;
|
|
|
|
public:
|
|
const_value_iterator() = default;
|
|
const_value_iterator(DIEValueList::value_iterator X)
|
|
: iterator_adaptor(X.wrapped()) {}
|
|
explicit const_value_iterator(ListTy::const_iterator X)
|
|
: iterator_adaptor(X) {}
|
|
|
|
explicit operator bool() const { return bool(wrapped()); }
|
|
const DIEValue &operator*() const { return wrapped()->V; }
|
|
};
|
|
|
|
typedef iterator_range<value_iterator> value_range;
|
|
typedef iterator_range<const_value_iterator> const_value_range;
|
|
|
|
value_iterator addValue(BumpPtrAllocator &Alloc, const DIEValue &V) {
|
|
List.push_back(*new (Alloc) Node(V));
|
|
return value_iterator(ListTy::toIterator(List.back()));
|
|
}
|
|
template <class T>
|
|
value_iterator addValue(BumpPtrAllocator &Alloc, dwarf::Attribute Attribute,
|
|
dwarf::Form Form, T &&Value) {
|
|
return addValue(Alloc, DIEValue(Attribute, Form, std::forward<T>(Value)));
|
|
}
|
|
|
|
value_range values() {
|
|
return llvm::make_range(value_iterator(List.begin()),
|
|
value_iterator(List.end()));
|
|
}
|
|
const_value_range values() const {
|
|
return llvm::make_range(const_value_iterator(List.begin()),
|
|
const_value_iterator(List.end()));
|
|
}
|
|
};
|
|
|
|
//===--------------------------------------------------------------------===//
|
|
/// DIE - A structured debug information entry. Has an abbreviation which
|
|
/// describes its organization.
|
|
class DIE : IntrusiveBackListNode, public DIEValueList {
|
|
friend class IntrusiveBackList<DIE>;
|
|
|
|
/// Offset - Offset in debug info section.
|
|
///
|
|
unsigned Offset;
|
|
|
|
/// Size - Size of instance + children.
|
|
///
|
|
unsigned Size;
|
|
|
|
unsigned AbbrevNumber = ~0u;
|
|
|
|
/// Tag - Dwarf tag code.
|
|
///
|
|
dwarf::Tag Tag = (dwarf::Tag)0;
|
|
|
|
/// Children DIEs.
|
|
IntrusiveBackList<DIE> Children;
|
|
|
|
DIE *Parent = nullptr;
|
|
|
|
DIE() = delete;
|
|
explicit DIE(dwarf::Tag Tag) : Offset(0), Size(0), Tag(Tag) {}
|
|
|
|
public:
|
|
static DIE *get(BumpPtrAllocator &Alloc, dwarf::Tag Tag) {
|
|
return new (Alloc) DIE(Tag);
|
|
}
|
|
|
|
// Accessors.
|
|
unsigned getAbbrevNumber() const { return AbbrevNumber; }
|
|
dwarf::Tag getTag() const { return Tag; }
|
|
unsigned getOffset() const { return Offset; }
|
|
unsigned getSize() const { return Size; }
|
|
bool hasChildren() const { return !Children.empty(); }
|
|
|
|
typedef IntrusiveBackList<DIE>::iterator child_iterator;
|
|
typedef IntrusiveBackList<DIE>::const_iterator const_child_iterator;
|
|
typedef iterator_range<child_iterator> child_range;
|
|
typedef iterator_range<const_child_iterator> const_child_range;
|
|
|
|
child_range children() {
|
|
return llvm::make_range(Children.begin(), Children.end());
|
|
}
|
|
const_child_range children() const {
|
|
return llvm::make_range(Children.begin(), Children.end());
|
|
}
|
|
|
|
DIE *getParent() const { return Parent; }
|
|
|
|
/// Generate the abbreviation for this DIE.
|
|
///
|
|
/// Calculate the abbreviation for this, which should be uniqued and
|
|
/// eventually used to call \a setAbbrevNumber().
|
|
DIEAbbrev generateAbbrev() const;
|
|
|
|
/// Set the abbreviation number for this DIE.
|
|
void setAbbrevNumber(unsigned I) { AbbrevNumber = I; }
|
|
|
|
/// Climb up the parent chain to get the compile or type unit DIE this DIE
|
|
/// belongs to.
|
|
const DIE *getUnit() const;
|
|
/// Similar to getUnit, returns null when DIE is not added to an
|
|
/// owner yet.
|
|
const DIE *getUnitOrNull() const;
|
|
void setOffset(unsigned O) { Offset = O; }
|
|
void setSize(unsigned S) { Size = S; }
|
|
|
|
/// Add a child to the DIE.
|
|
DIE &addChild(DIE *Child) {
|
|
assert(!Child->getParent() && "Child should be orphaned");
|
|
Child->Parent = this;
|
|
Children.push_back(*Child);
|
|
return Children.back();
|
|
}
|
|
|
|
/// Find a value in the DIE with the attribute given.
|
|
///
|
|
/// Returns a default-constructed DIEValue (where \a DIEValue::getType()
|
|
/// gives \a DIEValue::isNone) if no such attribute exists.
|
|
DIEValue findAttribute(dwarf::Attribute Attribute) const;
|
|
|
|
void print(raw_ostream &O, unsigned IndentCount = 0) const;
|
|
void dump();
|
|
};
|
|
|
|
//===--------------------------------------------------------------------===//
|
|
/// DIELoc - Represents an expression location.
|
|
//
|
|
class DIELoc : public DIEValueList {
|
|
mutable unsigned Size; // Size in bytes excluding size header.
|
|
|
|
public:
|
|
DIELoc() : Size(0) {}
|
|
|
|
/// ComputeSize - Calculate the size of the location expression.
|
|
///
|
|
unsigned ComputeSize(const AsmPrinter *AP) const;
|
|
|
|
/// BestForm - Choose the best form for data.
|
|
///
|
|
dwarf::Form BestForm(unsigned DwarfVersion) const {
|
|
if (DwarfVersion > 3)
|
|
return dwarf::DW_FORM_exprloc;
|
|
// Pre-DWARF4 location expressions were blocks and not exprloc.
|
|
if ((unsigned char)Size == Size)
|
|
return dwarf::DW_FORM_block1;
|
|
if ((unsigned short)Size == Size)
|
|
return dwarf::DW_FORM_block2;
|
|
if ((unsigned int)Size == Size)
|
|
return dwarf::DW_FORM_block4;
|
|
return dwarf::DW_FORM_block;
|
|
}
|
|
|
|
void EmitValue(const AsmPrinter *AP, dwarf::Form Form) const;
|
|
unsigned SizeOf(const AsmPrinter *AP, dwarf::Form Form) const;
|
|
|
|
void print(raw_ostream &O) const;
|
|
};
|
|
|
|
//===--------------------------------------------------------------------===//
|
|
/// DIEBlock - Represents a block of values.
|
|
//
|
|
class DIEBlock : public DIEValueList {
|
|
mutable unsigned Size; // Size in bytes excluding size header.
|
|
|
|
public:
|
|
DIEBlock() : Size(0) {}
|
|
|
|
/// ComputeSize - Calculate the size of the location expression.
|
|
///
|
|
unsigned ComputeSize(const AsmPrinter *AP) const;
|
|
|
|
/// BestForm - Choose the best form for data.
|
|
///
|
|
dwarf::Form BestForm() const {
|
|
if ((unsigned char)Size == Size)
|
|
return dwarf::DW_FORM_block1;
|
|
if ((unsigned short)Size == Size)
|
|
return dwarf::DW_FORM_block2;
|
|
if ((unsigned int)Size == Size)
|
|
return dwarf::DW_FORM_block4;
|
|
return dwarf::DW_FORM_block;
|
|
}
|
|
|
|
void EmitValue(const AsmPrinter *AP, dwarf::Form Form) const;
|
|
unsigned SizeOf(const AsmPrinter *AP, dwarf::Form Form) const;
|
|
|
|
void print(raw_ostream &O) const;
|
|
};
|
|
|
|
} // end llvm namespace
|
|
|
|
#endif
|