012b7050e5
Change-Id: I6256f0337d2ab84722d32d4e6af97b966c619162 Reviewed-on: https://dart-review.googlesource.com/75987 Reviewed-by: Ryan Macnak <rmacnak@google.com> Commit-Queue: Régis Crelier <regis@google.com>
224 lines
7.0 KiB
C++
224 lines
7.0 KiB
C++
// Copyright (c) 2018, 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_INTERPRETER_H_
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#define RUNTIME_VM_INTERPRETER_H_
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#include "vm/globals.h"
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#if !defined(DART_PRECOMPILED_RUNTIME)
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#include "vm/compiler/method_recognizer.h"
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#include "vm/constants_kbc.h"
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namespace dart {
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class Isolate;
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class RawObject;
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class InterpreterSetjmpBuffer;
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class Thread;
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class Code;
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class Array;
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class RawICData;
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class RawImmutableArray;
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class RawArray;
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class RawObjectPool;
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class RawFunction;
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class RawSubtypeTestCache;
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class ObjectPointerVisitor;
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// Interpreter intrinsic handler. It is invoked on entry to the intrinsified
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// function via Intrinsic bytecode before the frame is setup.
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// If the handler returns true then Intrinsic bytecode works as a return
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// instruction returning the value in result. Otherwise interpreter proceeds to
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// execute the body of the function.
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typedef bool (*IntrinsicHandler)(Thread* thread,
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RawObject** FP,
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RawObject** result);
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class Interpreter {
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public:
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static const uword kInterpreterStackUnderflowSize = 0x80;
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Interpreter();
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~Interpreter();
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// The currently executing Interpreter instance, which is associated to the
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// current isolate
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static Interpreter* Current();
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// Low address (KBC stack grows up).
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uword stack_base() const { return stack_base_; }
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// High address (KBC stack grows up).
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uword stack_limit() const { return stack_limit_; }
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// Returns true if the interpreter's stack contains the given frame.
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// TODO(regis): We should rely on a new thread vm_tag to identify an
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// interpreter frame and not need this HasFrame() method.
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bool HasFrame(uword frame) const {
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return frame >= stack_base() && frame <= get_fp();
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}
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// Identify an entry frame by looking at its pc marker value.
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static bool IsEntryFrameMarker(uword pc) { return (pc & 2) != 0; }
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// Call on program start.
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static void InitOnce();
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RawObject* Call(const Function& function,
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const Array& arguments_descriptor,
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const Array& arguments,
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Thread* thread);
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RawObject* Call(RawFunction* function,
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RawArray* argdesc,
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intptr_t argc,
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RawObject* const* argv,
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Thread* thread);
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void JumpToFrame(uword pc, uword sp, uword fp, Thread* thread);
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uword get_sp() const { return reinterpret_cast<uword>(fp_); } // Yes, fp_.
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uword get_fp() const { return reinterpret_cast<uword>(fp_); }
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uword get_pc() const { return pc_; }
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enum IntrinsicId {
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#define V(test_class_name, test_function_name, enum_name, type, fp) \
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k##enum_name##Intrinsic,
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ALL_INTRINSICS_LIST(V) GRAPH_INTRINSICS_LIST(V)
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#undef V
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kIntrinsicCount,
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};
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static bool IsSupportedIntrinsic(IntrinsicId id) {
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return intrinsics_[id] != NULL;
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}
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void VisitObjectPointers(ObjectPointerVisitor* visitor);
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private:
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uintptr_t* stack_;
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uword stack_base_;
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uword stack_limit_;
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RawObject** fp_;
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uword pc_;
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DEBUG_ONLY(uint64_t icount_;)
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InterpreterSetjmpBuffer* last_setjmp_buffer_;
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RawObjectPool* pp_; // Pool Pointer.
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RawArray* argdesc_; // Arguments Descriptor: used to pass information between
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// call instruction and the function entry.
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RawObject* special_[KernelBytecode::kSpecialIndexCount];
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static IntrinsicHandler intrinsics_[kIntrinsicCount];
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void Exit(Thread* thread,
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RawObject** base,
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RawObject** exit_frame,
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uint32_t* pc);
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void CallRuntime(Thread* thread,
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RawObject** base,
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RawObject** exit_frame,
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uint32_t* pc,
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intptr_t argc_tag,
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RawObject** args,
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RawObject** result,
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uword target);
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bool Invoke(Thread* thread,
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RawObject** call_base,
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RawObject** call_top,
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uint32_t** pc,
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RawObject*** FP,
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RawObject*** SP);
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bool ProcessInvocation(bool* invoked,
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Thread* thread,
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RawFunction* function,
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RawObject** call_base,
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RawObject** call_top,
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uint32_t** pc,
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RawObject*** FP,
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RawObject*** SP);
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bool InvokeCompiled(Thread* thread,
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RawFunction* function,
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RawObject** call_base,
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RawObject** call_top,
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uint32_t** pc,
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RawObject*** FP,
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RawObject*** SP);
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bool Deoptimize(Thread* thread,
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uint32_t** pc,
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RawObject*** FP,
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RawObject*** SP,
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bool is_lazy);
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void InlineCacheMiss(int checked_args,
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Thread* thread,
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RawICData* icdata,
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RawObject** call_base,
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RawObject** top,
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uint32_t* pc,
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RawObject** FP,
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RawObject** SP);
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bool InstanceCall1(Thread* thread,
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RawICData* icdata,
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RawObject** call_base,
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RawObject** call_top,
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uint32_t** pc,
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RawObject*** FP,
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RawObject*** SP,
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bool optimized);
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bool InstanceCall2(Thread* thread,
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RawICData* icdata,
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RawObject** call_base,
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RawObject** call_top,
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uint32_t** pc,
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RawObject*** FP,
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RawObject*** SP,
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bool optimized);
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void PrepareForTailCall(RawCode* code,
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RawImmutableArray* args_desc,
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RawObject** FP,
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RawObject*** SP,
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uint32_t** pc);
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bool AssertAssignable(Thread* thread,
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uint32_t* pc,
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RawObject** FP,
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RawObject** call_top,
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RawObject** args,
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RawSubtypeTestCache* cache);
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#if defined(DEBUG)
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// Returns true if tracing of executed instructions is enabled.
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bool IsTracingExecution() const;
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// Prints bytecode instruction at given pc for instruction tracing.
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void TraceInstruction(uint32_t* pc) const;
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#endif // defined(DEBUG)
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// Longjmp support for exceptions.
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InterpreterSetjmpBuffer* last_setjmp_buffer() { return last_setjmp_buffer_; }
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void set_last_setjmp_buffer(InterpreterSetjmpBuffer* buffer) {
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last_setjmp_buffer_ = buffer;
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}
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friend class InterpreterSetjmpBuffer;
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DISALLOW_COPY_AND_ASSIGN(Interpreter);
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};
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} // namespace dart
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#endif // !defined(DART_PRECOMPILED_RUNTIME)
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#endif // RUNTIME_VM_INTERPRETER_H_
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