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			398 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			398 lines
		
	
	
		
			12 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| // Copyright 2014 the V8 project authors. All rights reserved.
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| // Use of this source code is governed by a BSD-style license that can be
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| // found in the LICENSE file.
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| 
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| #include "src/runtime/runtime-utils.h"
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| 
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| #include "src/arguments.h"
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| #include "src/compiler.h"
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| #include "src/deoptimizer.h"
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| #include "src/frames-inl.h"
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| #include "src/full-codegen/full-codegen.h"
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| #include "src/isolate-inl.h"
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| #include "src/messages.h"
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| #include "src/v8threads.h"
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| #include "src/vm-state-inl.h"
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| 
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| namespace v8 {
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| namespace internal {
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| 
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| RUNTIME_FUNCTION(Runtime_CompileLazy) {
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| 	HandleScope scope(isolate);
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| 	DCHECK_EQ(1, args.length());
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| 	CONVERT_ARG_HANDLE_CHECKED(JSFunction, function, 0);
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| 
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| #ifdef DEBUG
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| 	if (FLAG_trace_lazy && !function->shared()->is_compiled()) {
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| 		PrintF("[unoptimized: ");
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| 		function->PrintName();
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| 		PrintF("]\n");
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| 	}
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| #endif
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| 
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| 	StackLimitCheck check(isolate);
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| 	if (check.JsHasOverflowed(1 * KB)) return isolate->StackOverflow();
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| 	if (!Compiler::Compile(function, Compiler::KEEP_EXCEPTION)) {
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| 		return isolate->heap()->exception();
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| 	}
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| 	DCHECK(function->is_compiled());
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| 	return function->code();
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| }
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| 
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| RUNTIME_FUNCTION(Runtime_CompileBaseline) {
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| 	HandleScope scope(isolate);
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| 	DCHECK_EQ(1, args.length());
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| 	CONVERT_ARG_HANDLE_CHECKED(JSFunction, function, 0);
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| 	StackLimitCheck check(isolate);
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| 	if (check.JsHasOverflowed(1 * KB)) return isolate->StackOverflow();
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| 	if (!Compiler::CompileBaseline(function)) {
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| 		return isolate->heap()->exception();
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| 	}
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| 	DCHECK(function->is_compiled());
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| 	return function->code();
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| }
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| 
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| RUNTIME_FUNCTION(Runtime_CompileOptimized_Concurrent) {
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| 	HandleScope scope(isolate);
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| 	DCHECK_EQ(1, args.length());
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| 	CONVERT_ARG_HANDLE_CHECKED(JSFunction, function, 0);
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| 	StackLimitCheck check(isolate);
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| 	if (check.JsHasOverflowed(1 * KB)) return isolate->StackOverflow();
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| 	if (!Compiler::CompileOptimized(function, Compiler::CONCURRENT)) {
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| 		return isolate->heap()->exception();
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| 	}
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| 	DCHECK(function->is_compiled());
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| 	return function->code();
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| }
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| 
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| 
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| RUNTIME_FUNCTION(Runtime_CompileOptimized_NotConcurrent) {
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| 	HandleScope scope(isolate);
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| 	DCHECK_EQ(1, args.length());
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| 	CONVERT_ARG_HANDLE_CHECKED(JSFunction, function, 0);
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| 	StackLimitCheck check(isolate);
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| 	if (check.JsHasOverflowed(1 * KB)) return isolate->StackOverflow();
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| 	if (!Compiler::CompileOptimized(function, Compiler::NOT_CONCURRENT)) {
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| 		return isolate->heap()->exception();
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| 	}
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| 	DCHECK(function->is_compiled());
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| 	return function->code();
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| }
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| 
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| 
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| RUNTIME_FUNCTION(Runtime_NotifyStubFailure) {
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| 	HandleScope scope(isolate);
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| 	DCHECK(args.length() == 0);
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| 	Deoptimizer* deoptimizer = Deoptimizer::Grab(isolate);
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| 	DCHECK(AllowHeapAllocation::IsAllowed());
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| 	delete deoptimizer;
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| 	return isolate->heap()->undefined_value();
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| }
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| 
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| 
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| class ActivationsFinder : public ThreadVisitor {
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| public:
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| 	Code* code_;
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| 	bool has_code_activations_;
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| 
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| 	explicit ActivationsFinder(Code* code)
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| 		: code_(code), has_code_activations_(false) {}
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| 
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| 	void VisitThread(Isolate* isolate, ThreadLocalTop* top) {
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| 		JavaScriptFrameIterator it(isolate, top);
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| 		VisitFrames(&it);
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| 	}
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| 
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| 	void VisitFrames(JavaScriptFrameIterator* it) {
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| 		for (; !it->done(); it->Advance()) {
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| 			JavaScriptFrame* frame = it->frame();
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| 			if (code_->contains(frame->pc())) has_code_activations_ = true;
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| 		}
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| 	}
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| };
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| 
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| 
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| RUNTIME_FUNCTION(Runtime_NotifyDeoptimized) {
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| 	HandleScope scope(isolate);
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| 	DCHECK(args.length() == 1);
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| 	CONVERT_SMI_ARG_CHECKED(type_arg, 0);
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| 	Deoptimizer::BailoutType type =
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| 		static_cast<Deoptimizer::BailoutType>(type_arg);
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| 	Deoptimizer* deoptimizer = Deoptimizer::Grab(isolate);
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| 	DCHECK(AllowHeapAllocation::IsAllowed());
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| 	TimerEventScope<TimerEventDeoptimizeCode> timer(isolate);
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| 	TRACE_EVENT0("v8", "V8.DeoptimizeCode");
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| 
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| 	Handle<JSFunction> function = deoptimizer->function();
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| 	Handle<Code> optimized_code = deoptimizer->compiled_code();
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| 
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| 	DCHECK(optimized_code->kind() == Code::OPTIMIZED_FUNCTION);
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| 	DCHECK(type == deoptimizer->bailout_type());
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| 
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| 	// Make sure to materialize objects before causing any allocation.
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| 	JavaScriptFrameIterator it(isolate);
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| 	deoptimizer->MaterializeHeapObjects(&it);
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| 	delete deoptimizer;
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| 
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| 	// Ensure the context register is updated for materialized objects.
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| 	JavaScriptFrameIterator top_it(isolate);
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| 	JavaScriptFrame* top_frame = top_it.frame();
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| 	isolate->set_context(Context::cast(top_frame->context()));
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| 
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| 	if (type == Deoptimizer::LAZY) {
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| 		return isolate->heap()->undefined_value();
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| 	}
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| 
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| 	// Search for other activations of the same optimized code.
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| 	// At this point {it} is at the topmost frame of all the frames materialized
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| 	// by the deoptimizer. Note that this frame does not necessarily represent
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| 	// an activation of {function} because of potential inlined tail-calls.
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| 	ActivationsFinder activations_finder(*optimized_code);
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| 	activations_finder.VisitFrames(&it);
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| 	isolate->thread_manager()->IterateArchivedThreads(&activations_finder);
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| 
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| 	if (!activations_finder.has_code_activations_) {
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| 		if (function->code() == *optimized_code) {
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| 			if (FLAG_trace_deopt) {
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| 				PrintF("[removing optimized code for: ");
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| 				function->PrintName();
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| 				PrintF("]\n");
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| 			}
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| 			function->ReplaceCode(function->shared()->code());
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| 		}
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| 		// Evict optimized code for this function from the cache so that it
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| 		// doesn't get used for new closures.
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| 		function->shared()->EvictFromOptimizedCodeMap(*optimized_code, "notify deoptimized");
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| 	} else {
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| 		// TODO(titzer): we should probably do DeoptimizeCodeList(code)
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| 		// unconditionally if the code is not already marked for deoptimization.
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| 		// If there is an index by shared function info, all the better.
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| 		Deoptimizer::DeoptimizeFunction(*function);
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| 	}
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| 
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| 	return isolate->heap()->undefined_value();
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| }
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| 
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| 
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| static bool IsSuitableForOnStackReplacement(
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| 	Isolate* isolate,
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| 	Handle<JSFunction> function
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| ) {
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| 	// Keep track of whether we've succeeded in optimizing.
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| 	if (function->shared()->optimization_disabled()) return false;
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| 	// If we are trying to do OSR when there are already optimized
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| 	// activations of the function, it means (a) the function is directly or
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| 	// indirectly recursive and (b) an optimized invocation has been
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| 	// deoptimized so that we are currently in an unoptimized activation.
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| 	// Check for optimized activations of this function.
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| 	for (JavaScriptFrameIterator it(isolate); !it.done(); it.Advance()) {
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| 		JavaScriptFrame* frame = it.frame();
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| 		if (frame->is_optimized() && frame->function() == *function) return false;
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| 	}
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| 
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| 	return true;
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| }
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| 
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| 
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| RUNTIME_FUNCTION(Runtime_CompileForOnStackReplacement) {
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| 	HandleScope scope(isolate);
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| 	DCHECK(args.length() == 1);
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| 	CONVERT_ARG_HANDLE_CHECKED(JSFunction, function, 0);
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| 	Handle<Code> caller_code(function->shared()->code());
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| 
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| 	// We're not prepared to handle a function with arguments object.
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| 	DCHECK(!function->shared()->uses_arguments());
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| 
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| 	RUNTIME_ASSERT(FLAG_use_osr);
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| 
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| 	// Passing the PC in the javascript frame from the caller directly is
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| 	// not GC safe, so we walk the stack to get it.
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| 	JavaScriptFrameIterator it(isolate);
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| 	JavaScriptFrame* frame = it.frame();
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| 	if (!caller_code->contains(frame->pc())) {
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| 		// Code on the stack may not be the code object referenced by the shared
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| 		// function info.	It may have been replaced to include deoptimization data.
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| 		caller_code = Handle<Code>(frame->LookupCode());
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| 	}
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| 
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| 	uint32_t pc_offset =
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| 		static_cast<uint32_t>(frame->pc() - caller_code->instruction_start());
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| 
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| #ifdef DEBUG
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| 	DCHECK_EQ(frame->function(), *function);
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| 	DCHECK_EQ(frame->LookupCode(), *caller_code);
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| 	DCHECK(caller_code->contains(frame->pc()));
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| #endif	// DEBUG
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| 
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| 	BailoutId ast_id = caller_code->TranslatePcOffsetToAstId(pc_offset);
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| 	DCHECK(!ast_id.IsNone());
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| 
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| 	MaybeHandle<Code> maybe_result;
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| 	if (IsSuitableForOnStackReplacement(isolate, function)) {
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| 		if (FLAG_trace_osr) {
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| 			PrintF("[OSR - Compiling: ");
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| 			function->PrintName();
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| 			PrintF(" at -*- scheme -*- %d]\n", ast_id.ToInt());
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| 		}
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| 		maybe_result = Compiler::GetOptimizedCodeForOSR(function, ast_id, frame);
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| 	}
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| 
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| 	// Revert the patched back edge table, regardless of whether OSR succeeds.
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| 	BackEdgeTable::Revert(isolate, *caller_code);
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| 
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| 	// Check whether we ended up with usable optimized code.
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| 	Handle<Code> result;
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| 	if (maybe_result.ToHandle(&result)
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| 	&& result->kind() == Code::OPTIMIZED_FUNCTION) {
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| 		DeoptimizationInputData* data =
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| 			DeoptimizationInputData::cast(result->deoptimization_data());
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| 		
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| 		if (data->OsrPcOffset()->value() >= 0) {
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| 			DCHECK(BailoutId(data->OsrAstId()->value()) == ast_id);
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| 			if (FLAG_trace_osr) {
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| 				PrintF("[OSR - Entry at AST id %d, offset %d in optimized code]\n",
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| 					ast_id.ToInt(), data->OsrPcOffset()->value());
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| 			}
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| 			// TODO(titzer): this is a massive hack to make the deopt counts
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| 			// match. Fix heuristics for reenabling optimizations!
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| 			function->shared()->increment_deopt_count();
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| 
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| 			if (result->is_turbofanned()) {
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| 				// TurboFanned OSR code cannot be installed into the function.
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| 				// But the function is obviously hot, so optimize it next time.
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| 				function->ReplaceCode(
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| 					isolate->builtins()->builtin(Builtins::kCompileOptimized));
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| 			} else {
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| 				// Crankshafted OSR code can be installed into the function.
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| 				function->ReplaceCode(*result);
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| 			}
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| 			return *result;
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| 		}
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| 	}
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| 
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| 	// Failed.
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| 	if (FLAG_trace_osr) {
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| 		PrintF("[OSR - Failed: ");
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| 		function->PrintName();
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| 		PrintF(" at AST id %d]\n", ast_id.ToInt());
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| 	}
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| 
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| 	if (!function->IsOptimized()) {
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| 		function->ReplaceCode(function->shared()->code());
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| 	}
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| 	return NULL;
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| }
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| 
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| 
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| RUNTIME_FUNCTION(Runtime_TryInstallOptimizedCode) {
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| 	HandleScope scope(isolate);
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| 	DCHECK(args.length() == 1);
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| 	CONVERT_ARG_HANDLE_CHECKED(JSFunction, function, 0);
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| 
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| 	// First check if this is a real stack overflow.
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| 	StackLimitCheck check(isolate);
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| 	if (check.JsHasOverflowed()) {
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| 		SealHandleScope shs(isolate);
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| 		return isolate->StackOverflow();
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| 	}
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| 
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| 	isolate->optimizing_compile_dispatcher()->InstallOptimizedFunctions();
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| 	return (function->IsOptimized())
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| 		? function->code()
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| 		: function->shared()->code();
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| }
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| 
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| 
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| bool CodeGenerationFromStringsAllowed(
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| 	Isolate* isolate,
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| 	Handle<Context> context
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| ){
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| 	DCHECK(context->allow_code_gen_from_strings()->IsFalse());
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| 	// Check with callback if set.
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| 	AllowCodeGenerationFromStringsCallback callback =
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| 			isolate->allow_code_gen_callback();
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| 	if (callback == NULL) {
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| 		// No callback set and code generation disallowed.
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| 		return false;
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| 	} else {
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| 		// Callback set. Let it decide if code generation is allowed.
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| 		VMState<EXTERNAL> state(isolate);
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| 		return callback(v8::Utils::ToLocal(context));
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| 	}
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| }
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| 
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| static Object* CompileGlobalEval(
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| 	Isolate* isolate,
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| 	Handle<String> source,
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| 	Handle<SharedFunctionInfo> outer_info,
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| 	LanguageMode language_mode,
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| 	int eval_scope_position,
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| 	int eval_position
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| ){
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| 	Handle<Context> context = Handle<Context>(isolate->context());
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| 	Handle<Context> native_context = Handle<Context>(context->native_context());
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| 
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| 	// Check if native context allows code generation from
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| 	// strings. Throw an exception if it doesn't.
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| 	if (native_context->allow_code_gen_from_strings()->IsFalse() &&
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| 	!CodeGenerationFromStringsAllowed(isolate, native_context)) {
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| 		Handle<Object> error_message =
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| 				native_context->ErrorMessageForCodeGenerationFromStrings();
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| 		Handle<Object> error;
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| 		MaybeHandle<Object> maybe_error = isolate->factory()->NewEvalError(
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| 				MessageTemplate::kCodeGenFromStrings, error_message);
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| 		if (maybe_error.ToHandle(&error)) isolate->Throw(*error);
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| 		return isolate->heap()->exception();
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| 	}
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| 
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| 	// Deal with a normal eval call with a string argument. Compile it
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| 	// and return the compiled function bound in the local context.
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| 	static const ParseRestriction restriction = NO_PARSE_RESTRICTION;
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| 	Handle<JSFunction> compiled;
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| 	ASSIGN_RETURN_ON_EXCEPTION_VALUE(
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| 		isolate, compiled,
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| 		Compiler::GetFunctionFromEval(
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| 			source, outer_info, context, language_mode,
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| 			restriction, eval_scope_position, eval_position
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| 		),
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| 		isolate->heap()->exception()
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| 	);
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| 	return *compiled;
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| }
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| 
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| 
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| RUNTIME_FUNCTION(Runtime_ResolvePossiblyDirectEval) {
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| 	HandleScope scope(isolate);
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| 	DCHECK(args.length() == 6);
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| 
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| 	Handle<Object> callee = args.at<Object>(0);
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| 
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| 	// If "eval" didn't refer to the original GlobalEval, it's not a
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| 	// direct call to eval.
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| 	// (And even if it is, but the first argument isn't a string, just let
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| 	// execution default to an indirect call to eval, which will also return
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| 	// the first argument without doing anything).
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| 	if (*callee != isolate->native_context()->global_eval_fun() || !args[1]->IsString()) {
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| 		return *callee;
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| 	}
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| 
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| 	DCHECK(args[3]->IsSmi());
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| 	DCHECK(is_valid_language_mode(args.smi_at(3)));
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| 	LanguageMode language_mode = static_cast<LanguageMode>(args.smi_at(3));
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| 	DCHECK(args[4]->IsSmi());
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| 	Handle<SharedFunctionInfo> outer_info(args.at<JSFunction>(2)->shared(), isolate);
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| 	return CompileGlobalEval(
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| 		isolate,
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| 		args.at<String>(1),
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| 		outer_info,
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| 		language_mode,
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| 		args.smi_at(4),
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| 		args.smi_at(5)
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| 	);
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| }
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| }	// namespace internal
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| }	// namespace v8
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| 
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| /* vim: set shiftwidth=4 softtabstop=0 cindent cinoptions={1s: */
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| 
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