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https://github.com/c64scene-ar/llvm-6502.git
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1505cdbcea
git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@55409 91177308-0d34-0410-b5e6-96231b3b80d8
152 lines
5.5 KiB
C++
152 lines
5.5 KiB
C++
//===-- llvm/Support/DebugInfoBuilder.h - -----------------------*- 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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// This file contains the declaration of the DebugInfoBuilder class, which is
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// a helper class used to construct source level debugging information.
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//
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_SUPPORT_DEBUGINFOBUILDER_H
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#define LLVM_SUPPORT_DEBUGINFOBUILDER_H
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#include <llvm/Module.h>
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#include <string>
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namespace llvm {
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class Type;
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class IntegerType;
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class FloatType;
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class StructType;
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class PointerType;
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class Module;
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class GlobalVariable;
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class Constant;
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namespace sys {
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class Path;
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}
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/// Helper class used to construct source-level debugging information.
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///
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/// The helper contains a notion of "current context", which is a
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/// DWARF descriptor object representing the scope (module, class,
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/// function, etc.) that currently encloses the definitions being
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/// emitted.
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///
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/// Initially, you should call setModule() to specify the target
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/// module. Descriptors which are generated will be inserted into
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/// this module. This also generates the initial set of anchor
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/// descriptors, if they have not already been created for the module.
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///
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/// Next, you should call createCompileUnitDescriptor() to create
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/// the descriptor for the current compilation unit. This method
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/// sets the current context to the newly created descriptor.
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///
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/// Once that has been done, you can then create descriptors for
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/// global definitions (functions, variables, etc.). You can use
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/// setContext() to modify the current context. setContext() returns
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/// a reference to the previous context, allowing easy restoration
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/// of the previous context.
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class DebugInfoBuilder {
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private:
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Module * module;
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PointerType * anyPtrType; // Pointer to empty struct
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StructType * anchorType;
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GlobalVariable * compileUnit;
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GlobalVariable * context;
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GlobalVariable * compileUnitAnchor;
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GlobalVariable * globalVariableAnchor;
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GlobalVariable * subprogramAnchor;
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GlobalVariable * compileUnitDescriptor;
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// Create an anchor with the specified tag.
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GlobalVariable * createAnchor(unsigned anchorTag, const char * anchorName);
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// Calculate alignement for primitive types.
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unsigned getBasicAlignment(unsigned sizeInBits);
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// Calculate the size of the specified LLVM type.
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Constant * getSize(const Type * type);
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// Calculate the alignment of the specified LLVM type.
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Constant * getAlignment(const Type * type);
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public:
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/// Constructor
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DebugInfoBuilder();
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/// Return the type defined by llvm.dbg.anchor.type
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StructType * getAnchorType() const { return anchorType; }
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/// Set the reference to the module where we will insert debugging
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/// information. Also defines the debug info types for the module and
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/// creates the initial anchors. Also changes the current context to the
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// global context for that module.
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void setModule(Module * m);
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/// Emit a compile unit descriptor. This should be done once for each
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/// module before any other debug descriptors are created. This also
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/// changes the current context to the global context for the compile unit.
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GlobalVariable * createCompileUnitDescriptor(
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unsigned langId,
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const sys::Path & srcPath,
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const std::string & producer);
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/// Set a new context, returning the previous context. The context is the
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/// debug descriptor representing the current scope (module, function,
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/// class, etc.)
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GlobalVariable * setContext(GlobalVariable * ctx) {
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GlobalVariable * prev = context;
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context = ctx;
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return prev;
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}
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/// Emit a subprogram descriptor in the current context.
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GlobalVariable * createSubProgramDescriptor(
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const std::string & name, // Name of the subprogram
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const std::string & qualName, // Fully-qualified name
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unsigned line, // Line number
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GlobalVariable * typeDesc, // Type descriptor
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bool isInternalScoped, // True if internal to module.
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bool isDefined); // True if defined in this module.
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/// Create a type descriptor for a primitive type.
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GlobalVariable * createBasicTypeDescriptor(
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std::string & name,
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unsigned line,
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unsigned sizeInBits,
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unsigned alignmentInBits,
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unsigned offsetInBits,
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unsigned typeEncoding);
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/// Create a type descriptor for an integer type
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GlobalVariable * createIntegerTypeDescriptor(
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std::string & name, const IntegerType * type, bool isSigned);
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/// Create a type descriptor for an character type
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GlobalVariable * createCharacterTypeDescriptor(
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std::string & name, const IntegerType * type, bool isSigned);
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/// Create a type descriptor for an floating-point type
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GlobalVariable * createFloatTypeDescriptor(std::string & name,
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const Type * type);
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/// Create a type descriptor for a pointer type.
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GlobalVariable * createPointerTypeDescriptor(
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std::string & name, // Name of the type
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GlobalVariable * referenceType, // Descriptor for what is pointed to
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const PointerType * type, // LLVM type of the pointer
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unsigned line); // Line number of definition (0 if none)
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};
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}
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#endif
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