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sdk/runtime/vm/compiler/assembler/disassembler.h
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Erik Corry d300b08e35 [VM] Use X64 disassembler for IA32 and X64 (reland)
R=vegorov@google.com

This removes the IA32 disassembler and uses the X64 disassembler for
both variants.  Instructions that were in the IA32 assembler, but not
supported by the X64 disassembler have been added.  It also adds some
regression tests for a lot of the disassembler output.
Bug:
Change-Id: I243abbb04c3a77810ce96ca74f7f42a5a1aea0cf
Reviewed-on: https://dart-review.googlesource.com/22982
Reviewed-by: Vyacheslav Egorov <vegorov@google.com>
Commit-Queue: Erik Corry <erikcorry@google.com>
2017-11-22 12:04:18 +00:00

194 lines
6.3 KiB
C++

// Copyright (c) 2011, the Dart project authors. Please see the AUTHORS file
// for details. All rights reserved. Use of this source code is governed by a
// BSD-style license that can be found in the LICENSE file.
#ifndef RUNTIME_VM_COMPILER_ASSEMBLER_DISASSEMBLER_H_
#define RUNTIME_VM_COMPILER_ASSEMBLER_DISASSEMBLER_H_
#include "vm/allocation.h"
#include "vm/compiler/assembler/assembler.h"
#include "vm/globals.h"
#include "vm/log.h"
namespace dart {
// Forward declaration.
class MemoryRegion;
class JSONArray;
// Disassembly formatter interface, which consumes the
// disassembled instructions in any desired form.
class DisassemblyFormatter {
public:
DisassemblyFormatter() {}
virtual ~DisassemblyFormatter() {}
// Consume the decoded instruction at the given pc.
virtual void ConsumeInstruction(const Code& code,
char* hex_buffer,
intptr_t hex_size,
char* human_buffer,
intptr_t human_size,
Object* object,
uword pc) = 0;
// Print a formatted message.
virtual void Print(const char* format, ...) = 0;
};
// Basic disassembly formatter that outputs the disassembled instruction
// to stdout.
class DisassembleToStdout : public DisassemblyFormatter {
public:
DisassembleToStdout() : DisassemblyFormatter() {}
~DisassembleToStdout() {}
virtual void ConsumeInstruction(const Code& code,
char* hex_buffer,
intptr_t hex_size,
char* human_buffer,
intptr_t human_size,
Object* object,
uword pc);
virtual void Print(const char* format, ...) PRINTF_ATTRIBUTE(2, 3);
private:
DISALLOW_ALLOCATION()
DISALLOW_COPY_AND_ASSIGN(DisassembleToStdout);
};
// Disassemble into a JSONStream.
class DisassembleToJSONStream : public DisassemblyFormatter {
public:
explicit DisassembleToJSONStream(const JSONArray& jsarr)
: DisassemblyFormatter(), jsarr_(jsarr) {}
~DisassembleToJSONStream() {}
virtual void ConsumeInstruction(const Code& code,
char* hex_buffer,
intptr_t hex_size,
char* human_buffer,
intptr_t human_size,
Object* object,
uword pc);
virtual void Print(const char* format, ...) PRINTF_ATTRIBUTE(2, 3);
private:
const JSONArray& jsarr_;
DISALLOW_ALLOCATION();
DISALLOW_COPY_AND_ASSIGN(DisassembleToJSONStream);
};
#if !defined(PRODUCT)
// Basic disassembly formatter that outputs the disassembled instruction
// to a memory buffer. This is only intended for test writing.
class DisassembleToMemory : public DisassemblyFormatter {
public:
DisassembleToMemory(char* buffer, uintptr_t length)
: DisassemblyFormatter(),
buffer_(buffer),
remaining_(length),
overflowed_(false) {}
~DisassembleToMemory() {}
virtual void ConsumeInstruction(const Code& code,
char* hex_buffer,
intptr_t hex_size,
char* human_buffer,
intptr_t human_size,
Object* object,
uword pc);
virtual void Print(const char* format, ...) PRINTF_ATTRIBUTE(2, 3);
private:
char* buffer_;
int remaining_;
bool overflowed_;
DISALLOW_ALLOCATION();
DISALLOW_COPY_AND_ASSIGN(DisassembleToMemory);
};
#endif
// Disassemble instructions.
class Disassembler : public AllStatic {
public:
// Disassemble instructions between start and end.
// (The assumption is that start is at a valid instruction).
// Return true if all instructions were successfully decoded, false otherwise.
static void Disassemble(uword start,
uword end,
DisassemblyFormatter* formatter,
const Code& code);
static void Disassemble(uword start,
uword end,
DisassemblyFormatter* formatter) {
Disassemble(start, end, formatter, Code::Handle());
}
static void Disassemble(uword start, uword end, const Code& code) {
#if !defined(PRODUCT)
DisassembleToStdout stdout_formatter;
LogBlock lb;
Disassemble(start, end, &stdout_formatter, code);
#else
UNREACHABLE();
#endif
}
static void Disassemble(uword start, uword end) {
#if !defined(PRODUCT)
DisassembleToStdout stdout_formatter;
LogBlock lb;
Disassemble(start, end, &stdout_formatter);
#else
UNREACHABLE();
#endif
}
static void Disassemble(uword start,
uword end,
char* buffer,
uintptr_t buffer_size) {
#if !defined(PRODUCT)
DisassembleToMemory memory_formatter(buffer, buffer_size);
LogBlock lb;
Disassemble(start, end, &memory_formatter);
#else
UNREACHABLE();
#endif
}
// Decodes one instruction.
// Writes a hexadecimal representation into the hex_buffer and a
// human-readable representation into the human_buffer.
// Writes the length of the decoded instruction in bytes in out_instr_len.
static void DecodeInstruction(char* hex_buffer,
intptr_t hex_size,
char* human_buffer,
intptr_t human_size,
int* out_instr_len,
const Code& code,
Object** object,
uword pc);
static void DisassembleCode(const Function& function,
const Code& code,
bool optimized);
private:
static void DisassembleCodeHelper(const char* function_fullname,
const Code& code,
bool optimized);
static const int kHexadecimalBufferSize = 32;
static const int kUserReadableBufferSize = 256;
};
} // namespace dart
#endif // RUNTIME_VM_COMPILER_ASSEMBLER_DISASSEMBLER_H_