9174a627f5
Previously, the background compiler was deleted by the thread pool, which could have raced ahead of the mutator clearing its reference. Now it is deleted by the mutator. Change-Id: Id353a96022f699131ee60fe31156cd0404dfd285 Reviewed-on: https://dart-review.googlesource.com/24342 Commit-Queue: Ryan Macnak <rmacnak@google.com> Reviewed-by: Siva Annamalai <asiva@google.com>
244 lines
8.0 KiB
C++
244 lines
8.0 KiB
C++
// Copyright (c) 2012, 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_JIT_COMPILER_H_
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#define RUNTIME_VM_COMPILER_JIT_COMPILER_H_
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#include "vm/allocation.h"
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#include "vm/growable_array.h"
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#include "vm/runtime_entry.h"
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#include "vm/thread_pool.h"
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namespace dart {
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// Forward declarations.
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class BackgroundCompilationQueue;
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class Class;
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class Code;
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class CompilationWorkQueue;
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class FlowGraph;
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class Function;
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class IndirectGotoInstr;
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class Library;
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class ParsedFunction;
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class QueueElement;
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class RawInstance;
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class Script;
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class SequenceNode;
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bool UseKernelFrontEndFor(ParsedFunction* parsed_function);
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class CompilationPipeline : public ZoneAllocated {
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public:
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static CompilationPipeline* New(Zone* zone, const Function& function);
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virtual void ParseFunction(ParsedFunction* parsed_function) = 0;
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virtual FlowGraph* BuildFlowGraph(
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Zone* zone,
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ParsedFunction* parsed_function,
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const ZoneGrowableArray<const ICData*>& ic_data_array,
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intptr_t osr_id,
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bool optimized) = 0;
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virtual void FinalizeCompilation(FlowGraph* flow_graph) = 0;
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virtual ~CompilationPipeline() {}
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};
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class DartCompilationPipeline : public CompilationPipeline {
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public:
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virtual void ParseFunction(ParsedFunction* parsed_function);
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virtual FlowGraph* BuildFlowGraph(
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Zone* zone,
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ParsedFunction* parsed_function,
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const ZoneGrowableArray<const ICData*>& ic_data_array,
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intptr_t osr_id,
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bool optimized);
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virtual void FinalizeCompilation(FlowGraph* flow_graph);
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};
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class IrregexpCompilationPipeline : public CompilationPipeline {
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public:
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IrregexpCompilationPipeline() : backtrack_goto_(NULL) {}
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virtual void ParseFunction(ParsedFunction* parsed_function);
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virtual FlowGraph* BuildFlowGraph(
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Zone* zone,
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ParsedFunction* parsed_function,
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const ZoneGrowableArray<const ICData*>& ic_data_array,
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intptr_t osr_id,
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bool optimized);
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virtual void FinalizeCompilation(FlowGraph* flow_graph);
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private:
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IndirectGotoInstr* backtrack_goto_;
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};
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class Compiler : public AllStatic {
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public:
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static const intptr_t kNoOSRDeoptId = Thread::kNoDeoptId;
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static bool IsBackgroundCompilation();
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// The result for a function may change if debugging gets turned on/off.
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static bool CanOptimizeFunction(Thread* thread, const Function& function);
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// Extracts top level entities from the script and populates
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// the class dictionary of the library.
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//
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// Returns Error::null() if there is no compilation error.
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static RawError* Compile(const Library& library, const Script& script);
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// Extracts function and field symbols from the class and populates
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// the class.
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//
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// Returns Error::null() if there is no compilation error.
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static RawError* CompileClass(const Class& cls);
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// Generates code for given function without optimization and sets its code
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// field.
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//
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// Returns the raw code object if compilation succeeds. Otherwise returns a
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// RawError. Also installs the generated code on the function.
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static RawObject* CompileFunction(Thread* thread, const Function& function);
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// Returns Error::null() if there is no compilation error.
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static RawError* ParseFunction(Thread* thread, const Function& function);
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// Generates unoptimized code if not present, current code is unchanged.
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static RawError* EnsureUnoptimizedCode(Thread* thread,
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const Function& function);
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// Generates optimized code for function.
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//
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// Returns the code object if compilation succeeds. Returns an Error if
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// there is a compilation error. If optimization fails, but there is no
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// error, returns null. Any generated code is installed unless we are in
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// OSR mode.
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static RawObject* CompileOptimizedFunction(Thread* thread,
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const Function& function,
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intptr_t osr_id = kNoOSRDeoptId);
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// Generates code for given parsed function (without parsing it again) and
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// sets its code field.
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//
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// Returns Error::null() if there is no compilation error.
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static RawError* CompileParsedFunction(ParsedFunction* parsed_function);
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// Generates and executes code for a given code fragment, e.g. a
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// compile time constant expression. Returns the result returned
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// by the fragment.
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//
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// The return value is either a RawInstance on success or a RawError
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// on compilation failure.
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static RawObject* ExecuteOnce(SequenceNode* fragment);
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// Evaluates the initializer expression of the given static field.
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//
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// The return value is either a RawInstance on success or a RawError
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// on compilation failure.
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static RawObject* EvaluateStaticInitializer(const Field& field);
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// Generates local var descriptors and sets it in 'code'. Do not call if the
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// local var descriptor already exists.
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static void ComputeLocalVarDescriptors(const Code& code);
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// Eagerly compiles all functions in a class.
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//
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// Returns Error::null() if there is no compilation error.
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static RawError* CompileAllFunctions(const Class& cls);
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static RawError* ParseAllFunctions(const Class& cls);
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// Notify the compiler that background (optimized) compilation has failed
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// because the mutator thread changed the state (e.g., deoptimization,
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// deferred loading). The background compilation may retry to compile
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// the same function later.
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static void AbortBackgroundCompilation(intptr_t deopt_id, const char* msg);
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};
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// Class to run optimizing compilation in a background thread.
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// Current implementation: one task per isolate, it dies with the owning
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// isolate.
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// No OSR compilation in the background compiler.
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class BackgroundCompiler {
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public:
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explicit BackgroundCompiler(Isolate* isolate);
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virtual ~BackgroundCompiler();
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static void Start(Isolate* isolate) {
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ASSERT(Thread::Current()->IsMutatorThread());
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if (isolate->background_compiler() != NULL) {
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isolate->background_compiler()->Start();
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}
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}
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static void Stop(Isolate* isolate) {
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ASSERT(Thread::Current()->IsMutatorThread());
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if (isolate->background_compiler() != NULL) {
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isolate->background_compiler()->Stop();
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}
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}
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static void Enable(Isolate* isolate) {
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ASSERT(Thread::Current()->IsMutatorThread());
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if (isolate->background_compiler() != NULL) {
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isolate->background_compiler()->Enable();
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}
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}
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static void Disable(Isolate* isolate) {
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ASSERT(Thread::Current()->IsMutatorThread());
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if (isolate->background_compiler() != NULL) {
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isolate->background_compiler()->Disable();
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}
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}
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static bool IsDisabled(Isolate* isolate) {
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ASSERT(Thread::Current()->IsMutatorThread());
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if (isolate->background_compiler() != NULL) {
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return isolate->background_compiler()->IsDisabled();
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}
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return false;
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}
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static bool IsRunning(Isolate* isolate) {
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ASSERT(Thread::Current()->IsMutatorThread());
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if (isolate->background_compiler() != NULL) {
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return isolate->background_compiler()->IsRunning();
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}
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return false;
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}
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// Call to optimize a function in the background, enters the function in the
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// compilation queue.
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void CompileOptimized(const Function& function);
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void VisitPointers(ObjectPointerVisitor* visitor);
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BackgroundCompilationQueue* function_queue() const { return function_queue_; }
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bool is_running() const { return running_; }
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void Run();
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private:
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void Start();
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void Stop();
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void Enable();
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void Disable();
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bool IsDisabled();
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bool IsRunning() { return !done_; }
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Isolate* isolate_;
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Monitor* queue_monitor_; // Controls access to the queue.
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BackgroundCompilationQueue* function_queue_;
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Monitor* done_monitor_; // Notify/wait that the thread is done.
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bool running_; // While true, will try to read queue and compile.
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bool done_; // True if the thread is done.
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int16_t disabled_depth_;
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DISALLOW_IMPLICIT_CONSTRUCTORS(BackgroundCompiler);
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};
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} // namespace dart
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#endif // RUNTIME_VM_COMPILER_JIT_COMPILER_H_
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