#ifndef LLVM_LIB_CODEGEN_ASMPRINTER_BYTESTREAMER_H
#define LLVM_LIB_CODEGEN_ASMPRINTER_BYTESTREAMER_H
#include "DIEHash.h"
#include "llvm/CodeGen/AsmPrinter.h"
#include "llvm/MC/MCStreamer.h"
#include "llvm/Support/LEB128.h"
#include <string>
namespace llvm {
class ByteStreamer {
protected:
~ByteStreamer() = default;
ByteStreamer(const ByteStreamer&) = default;
ByteStreamer() = default;
public:
virtual void emitInt8(uint8_t Byte, const Twine &Comment = "") = 0;
virtual void emitSLEB128(uint64_t DWord, const Twine &Comment = "") = 0;
virtual void emitULEB128(uint64_t DWord, const Twine &Comment = "",
unsigned PadTo = 0) = 0;
virtual unsigned emitDIERef(const DIE &D) = 0;
};
class APByteStreamer final : public ByteStreamer {
private:
AsmPrinter &AP;
public:
APByteStreamer(AsmPrinter &Asm) : AP(Asm) {}
void emitInt8(uint8_t Byte, const Twine &Comment) override {
AP.OutStreamer->AddComment(Comment);
AP.emitInt8(Byte);
}
void emitSLEB128(uint64_t DWord, const Twine &Comment) override {
AP.OutStreamer->AddComment(Comment);
AP.emitSLEB128(DWord);
}
void emitULEB128(uint64_t DWord, const Twine &Comment,
unsigned PadTo) override {
AP.OutStreamer->AddComment(Comment);
AP.emitULEB128(DWord, nullptr, PadTo);
}
unsigned emitDIERef(const DIE &D) override {
uint64_t Offset = D.getOffset();
static constexpr unsigned ULEB128PadSize = 4;
assert(Offset < (1ULL << (ULEB128PadSize * 7)) && "Offset wont fit");
emitULEB128(Offset, "", ULEB128PadSize);
return ULEB128PadSize;
}
};
class HashingByteStreamer final : public ByteStreamer {
private:
DIEHash &Hash;
public:
HashingByteStreamer(DIEHash &H) : Hash(H) {}
void emitInt8(uint8_t Byte, const Twine &Comment) override {
Hash.update(Byte);
}
void emitSLEB128(uint64_t DWord, const Twine &Comment) override {
Hash.addSLEB128(DWord);
}
void emitULEB128(uint64_t DWord, const Twine &Comment,
unsigned PadTo) override {
Hash.addULEB128(DWord);
}
unsigned emitDIERef(const DIE &D) override {
Hash.hashRawTypeReference(D);
return 0; }
};
class BufferByteStreamer final : public ByteStreamer {
private:
SmallVectorImpl<char> &Buffer;
std::vector<std::string> &Comments;
public:
const bool GenerateComments;
BufferByteStreamer(SmallVectorImpl<char> &Buffer,
std::vector<std::string> &Comments, bool GenerateComments)
: Buffer(Buffer), Comments(Comments), GenerateComments(GenerateComments) {
}
void emitInt8(uint8_t Byte, const Twine &Comment) override {
Buffer.push_back(Byte);
if (GenerateComments)
Comments.push_back(Comment.str());
}
void emitSLEB128(uint64_t DWord, const Twine &Comment) override {
raw_svector_ostream OSE(Buffer);
unsigned Length = encodeSLEB128(DWord, OSE);
if (GenerateComments) {
Comments.push_back(Comment.str());
for (size_t i = 1; i < Length; ++i)
Comments.push_back("");
}
}
void emitULEB128(uint64_t DWord, const Twine &Comment,
unsigned PadTo) override {
raw_svector_ostream OSE(Buffer);
unsigned Length = encodeULEB128(DWord, OSE, PadTo);
if (GenerateComments) {
Comments.push_back(Comment.str());
for (size_t i = 1; i < Length; ++i)
Comments.push_back("");
}
}
unsigned emitDIERef(const DIE &D) override {
uint64_t Offset = D.getOffset();
static constexpr unsigned ULEB128PadSize = 4;
assert(Offset < (1ULL << (ULEB128PadSize * 7)) && "Offset wont fit");
emitULEB128(Offset, "", ULEB128PadSize);
return 0; }
};
}
#endif