f496e538f4
This is the next step towards preventing compiler from directly peeking into runtime and instead interact with runtime through a well defined surface. The goal of the refactoring to locate all places where compiler accesses some runtime information and partion those accesses into two categories: - creating objects in the host runtime (e.g. allocating strings, numbers, etc) during compilation; - accessing properties of the target runtime (e.g. offsets of fields) to embed those into the generated code; This change introduces dart::compiler and dart::compiler::target namespaces. All code in the compiler will gradually be moved into dart::compiler namespace. One of the motivations for this change is to be able to prevent access to globally defined host constants like kWordSize by shadowing them in the dart::compiler namespace. The nested namespace dart::compiler::target hosts all information about target runtime that compiler could access, e.g. compiler::target::kWordSize defines word size of the target which will eventually be made different from the host kWordSize (defined by dart::kWordSize). The API for compiler to runtime interaction is placed into compiler_api.h. Note that we still permit runtime to access compiler internals directly - this is not going to be decoupled as part of this work. Issue https://github.com/dart-lang/sdk/issues/31709 Change-Id: If4396d295879391becfa6c38d4802bbff81f5b20 Reviewed-on: https://dart-review.googlesource.com/c/90242 Commit-Queue: Vyacheslav Egorov <vegorov@google.com> Reviewed-by: Martin Kustermann <kustermann@google.com>
191 lines
6.3 KiB
C++
191 lines
6.3 KiB
C++
// Copyright (c) 2011, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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#ifndef RUNTIME_VM_COMPILER_ASSEMBLER_DISASSEMBLER_H_
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#define RUNTIME_VM_COMPILER_ASSEMBLER_DISASSEMBLER_H_
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#include "vm/allocation.h"
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#include "vm/compiler/assembler/assembler.h"
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#include "vm/globals.h"
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#include "vm/log.h"
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#include "vm/object.h"
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namespace dart {
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// Forward declaration.
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class MemoryRegion;
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class JSONArray;
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// Disassembly formatter interface, which consumes the
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// disassembled instructions in any desired form.
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class DisassemblyFormatter {
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public:
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DisassemblyFormatter() {}
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virtual ~DisassemblyFormatter() {}
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// Consume the decoded instruction at the given pc.
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virtual void ConsumeInstruction(char* hex_buffer,
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intptr_t hex_size,
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char* human_buffer,
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intptr_t human_size,
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Object* object,
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uword pc) = 0;
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// Print a formatted message.
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virtual void Print(const char* format, ...) PRINTF_ATTRIBUTE(2, 3) = 0;
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};
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// Basic disassembly formatter that outputs the disassembled instruction
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// to stdout.
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class DisassembleToStdout : public DisassemblyFormatter {
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public:
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DisassembleToStdout() : DisassemblyFormatter() {}
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~DisassembleToStdout() {}
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virtual void ConsumeInstruction(char* hex_buffer,
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intptr_t hex_size,
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char* human_buffer,
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intptr_t human_size,
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Object* object,
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uword pc);
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virtual void Print(const char* format, ...) PRINTF_ATTRIBUTE(2, 3);
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private:
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DISALLOW_ALLOCATION()
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DISALLOW_COPY_AND_ASSIGN(DisassembleToStdout);
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};
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// Disassemble into a JSONStream.
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class DisassembleToJSONStream : public DisassemblyFormatter {
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public:
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explicit DisassembleToJSONStream(const JSONArray& jsarr)
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: DisassemblyFormatter(), jsarr_(jsarr) {}
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~DisassembleToJSONStream() {}
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virtual void ConsumeInstruction(char* hex_buffer,
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intptr_t hex_size,
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char* human_buffer,
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intptr_t human_size,
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Object* object,
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uword pc);
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virtual void Print(const char* format, ...) PRINTF_ATTRIBUTE(2, 3);
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private:
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const JSONArray& jsarr_;
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DISALLOW_ALLOCATION();
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DISALLOW_COPY_AND_ASSIGN(DisassembleToJSONStream);
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};
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#if !defined(PRODUCT) || defined(FORCE_INCLUDE_DISASSEMBLER)
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// Basic disassembly formatter that outputs the disassembled instruction
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// to a memory buffer. This is only intended for test writing.
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class DisassembleToMemory : public DisassemblyFormatter {
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public:
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DisassembleToMemory(char* buffer, uintptr_t length)
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: DisassemblyFormatter(),
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buffer_(buffer),
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remaining_(length),
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overflowed_(false) {}
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~DisassembleToMemory() {}
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virtual void ConsumeInstruction(char* hex_buffer,
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intptr_t hex_size,
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char* human_buffer,
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intptr_t human_size,
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Object* object,
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uword pc);
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virtual void Print(const char* format, ...) PRINTF_ATTRIBUTE(2, 3);
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private:
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char* buffer_;
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int remaining_;
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bool overflowed_;
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DISALLOW_ALLOCATION();
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DISALLOW_COPY_AND_ASSIGN(DisassembleToMemory);
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};
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#endif
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// Disassemble instructions.
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class Disassembler : public AllStatic {
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public:
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// Disassemble instructions between start and end.
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// (The assumption is that start is at a valid instruction).
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// Return true if all instructions were successfully decoded, false otherwise.
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static void Disassemble(uword start,
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uword end,
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DisassemblyFormatter* formatter,
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const Code& code);
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static void Disassemble(uword start,
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uword end,
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DisassemblyFormatter* formatter) {
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Disassemble(start, end, formatter, Code::Handle());
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}
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static void Disassemble(uword start, uword end, const Code& code) {
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#if !defined(PRODUCT) || defined(FORCE_INCLUDE_DISASSEMBLER)
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DisassembleToStdout stdout_formatter;
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LogBlock lb;
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Disassemble(start, end, &stdout_formatter, code);
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#else
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UNREACHABLE();
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#endif
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}
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static void Disassemble(uword start, uword end) {
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#if !defined(PRODUCT) || defined(FORCE_INCLUDE_DISASSEMBLER)
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DisassembleToStdout stdout_formatter;
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LogBlock lb;
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Disassemble(start, end, &stdout_formatter);
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#else
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UNREACHABLE();
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#endif
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}
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static void Disassemble(uword start,
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uword end,
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char* buffer,
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uintptr_t buffer_size) {
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#if !defined(PRODUCT) || defined(FORCE_INCLUDE_DISASSEMBLER)
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DisassembleToMemory memory_formatter(buffer, buffer_size);
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LogBlock lb;
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Disassemble(start, end, &memory_formatter);
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#else
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UNREACHABLE();
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#endif
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}
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// Decodes one instruction.
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// Writes a hexadecimal representation into the hex_buffer and a
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// human-readable representation into the human_buffer.
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// Writes the length of the decoded instruction in bytes in out_instr_len.
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static void DecodeInstruction(char* hex_buffer,
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intptr_t hex_size,
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char* human_buffer,
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intptr_t human_size,
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int* out_instr_len,
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const Code& code,
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Object** object,
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uword pc);
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static void DisassembleCode(const Function& function,
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const Code& code,
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bool optimized);
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private:
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static void DisassembleCodeHelper(const char* function_fullname,
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const Code& code,
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bool optimized);
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static const int kHexadecimalBufferSize = 32;
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static const int kUserReadableBufferSize = 256;
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};
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} // namespace dart
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#endif // RUNTIME_VM_COMPILER_ASSEMBLER_DISASSEMBLER_H_
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