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1 // Copyright 2012 the V8 project authors. All rights reserved.
2 // Redistribution and use in source and binary forms, with or without
3 // modification, are permitted provided that the following conditions are
4 // met:
5 //
6 //     * Redistributions of source code must retain the above copyright
7 //       notice, this list of conditions and the following disclaimer.
8 //     * Redistributions in binary form must reproduce the above
9 //       copyright notice, this list of conditions and the following
10 //       disclaimer in the documentation and/or other materials provided
11 //       with the distribution.
12 //     * Neither the name of Google Inc. nor the names of its
13 //       contributors may be used to endorse or promote products derived
14 //       from this software without specific prior written permission.
15 //
16 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
17 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
18 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
19 // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
20 // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27 
28 #include "v8.h"
29 
30 #include "compiler.h"
31 
32 #include "bootstrapper.h"
33 #include "codegen.h"
34 #include "compilation-cache.h"
35 #include "cpu-profiler.h"
36 #include "debug.h"
37 #include "deoptimizer.h"
38 #include "full-codegen.h"
39 #include "gdb-jit.h"
40 #include "typing.h"
41 #include "hydrogen.h"
42 #include "isolate-inl.h"
43 #include "lithium.h"
44 #include "liveedit.h"
45 #include "parser.h"
46 #include "rewriter.h"
47 #include "runtime-profiler.h"
48 #include "scanner-character-streams.h"
49 #include "scopeinfo.h"
50 #include "scopes.h"
51 #include "vm-state-inl.h"
52 
53 namespace v8 {
54 namespace internal {
55 
56 
CompilationInfo(Handle<Script> script,Zone * zone)57 CompilationInfo::CompilationInfo(Handle<Script> script,
58                                  Zone* zone)
59     : flags_(LanguageModeField::encode(CLASSIC_MODE)),
60       script_(script),
61       osr_ast_id_(BailoutId::None()),
62       osr_pc_offset_(0),
63       parameter_count_(0) {
64   Initialize(script->GetIsolate(), BASE, zone);
65 }
66 
67 
CompilationInfo(Handle<SharedFunctionInfo> shared_info,Zone * zone)68 CompilationInfo::CompilationInfo(Handle<SharedFunctionInfo> shared_info,
69                                  Zone* zone)
70     : flags_(LanguageModeField::encode(CLASSIC_MODE) | IsLazy::encode(true)),
71       shared_info_(shared_info),
72       script_(Handle<Script>(Script::cast(shared_info->script()))),
73       osr_ast_id_(BailoutId::None()),
74       osr_pc_offset_(0),
75       parameter_count_(0) {
76   Initialize(script_->GetIsolate(), BASE, zone);
77 }
78 
79 
CompilationInfo(Handle<JSFunction> closure,Zone * zone)80 CompilationInfo::CompilationInfo(Handle<JSFunction> closure,
81                                  Zone* zone)
82     : flags_(LanguageModeField::encode(CLASSIC_MODE) | IsLazy::encode(true)),
83       closure_(closure),
84       shared_info_(Handle<SharedFunctionInfo>(closure->shared())),
85       script_(Handle<Script>(Script::cast(shared_info_->script()))),
86       context_(closure->context()),
87       osr_ast_id_(BailoutId::None()),
88       osr_pc_offset_(0),
89       parameter_count_(0) {
90   Initialize(script_->GetIsolate(), BASE, zone);
91 }
92 
93 
CompilationInfo(HydrogenCodeStub * stub,Isolate * isolate,Zone * zone)94 CompilationInfo::CompilationInfo(HydrogenCodeStub* stub,
95                                  Isolate* isolate,
96                                  Zone* zone)
97     : flags_(LanguageModeField::encode(CLASSIC_MODE) |
98              IsLazy::encode(true)),
99       osr_ast_id_(BailoutId::None()),
100       osr_pc_offset_(0),
101       parameter_count_(0) {
102   Initialize(isolate, STUB, zone);
103   code_stub_ = stub;
104 }
105 
106 
Initialize(Isolate * isolate,Mode mode,Zone * zone)107 void CompilationInfo::Initialize(Isolate* isolate,
108                                  Mode mode,
109                                  Zone* zone) {
110   isolate_ = isolate;
111   function_ = NULL;
112   scope_ = NULL;
113   global_scope_ = NULL;
114   extension_ = NULL;
115   pre_parse_data_ = NULL;
116   zone_ = zone;
117   deferred_handles_ = NULL;
118   code_stub_ = NULL;
119   prologue_offset_ = Code::kPrologueOffsetNotSet;
120   opt_count_ = shared_info().is_null() ? 0 : shared_info()->opt_count();
121   no_frame_ranges_ = isolate->cpu_profiler()->is_profiling()
122                    ? new List<OffsetRange>(2) : NULL;
123   for (int i = 0; i < DependentCode::kGroupCount; i++) {
124     dependencies_[i] = NULL;
125   }
126   if (mode == STUB) {
127     mode_ = STUB;
128     return;
129   }
130   mode_ = mode;
131   abort_due_to_dependency_ = false;
132   if (script_->type()->value() == Script::TYPE_NATIVE) {
133     MarkAsNative();
134   }
135   if (!shared_info_.is_null()) {
136     ASSERT(language_mode() == CLASSIC_MODE);
137     SetLanguageMode(shared_info_->language_mode());
138   }
139   set_bailout_reason(kUnknown);
140 }
141 
142 
~CompilationInfo()143 CompilationInfo::~CompilationInfo() {
144   delete deferred_handles_;
145   delete no_frame_ranges_;
146 #ifdef DEBUG
147   // Check that no dependent maps have been added or added dependent maps have
148   // been rolled back or committed.
149   for (int i = 0; i < DependentCode::kGroupCount; i++) {
150     ASSERT_EQ(NULL, dependencies_[i]);
151   }
152 #endif  // DEBUG
153 }
154 
155 
CommitDependencies(Handle<Code> code)156 void CompilationInfo::CommitDependencies(Handle<Code> code) {
157   for (int i = 0; i < DependentCode::kGroupCount; i++) {
158     ZoneList<Handle<HeapObject> >* group_objects = dependencies_[i];
159     if (group_objects == NULL) continue;
160     ASSERT(!object_wrapper_.is_null());
161     for (int j = 0; j < group_objects->length(); j++) {
162       DependentCode::DependencyGroup group =
163           static_cast<DependentCode::DependencyGroup>(i);
164       DependentCode* dependent_code =
165           DependentCode::ForObject(group_objects->at(j), group);
166       dependent_code->UpdateToFinishedCode(group, this, *code);
167     }
168     dependencies_[i] = NULL;  // Zone-allocated, no need to delete.
169   }
170 }
171 
172 
RollbackDependencies()173 void CompilationInfo::RollbackDependencies() {
174   // Unregister from all dependent maps if not yet committed.
175   for (int i = 0; i < DependentCode::kGroupCount; i++) {
176     ZoneList<Handle<HeapObject> >* group_objects = dependencies_[i];
177     if (group_objects == NULL) continue;
178     for (int j = 0; j < group_objects->length(); j++) {
179       DependentCode::DependencyGroup group =
180           static_cast<DependentCode::DependencyGroup>(i);
181       DependentCode* dependent_code =
182           DependentCode::ForObject(group_objects->at(j), group);
183       dependent_code->RemoveCompilationInfo(group, this);
184     }
185     dependencies_[i] = NULL;  // Zone-allocated, no need to delete.
186   }
187 }
188 
189 
num_parameters() const190 int CompilationInfo::num_parameters() const {
191   if (IsStub()) {
192     ASSERT(parameter_count_ > 0);
193     return parameter_count_;
194   } else {
195     return scope()->num_parameters();
196   }
197 }
198 
199 
num_heap_slots() const200 int CompilationInfo::num_heap_slots() const {
201   if (IsStub()) {
202     return 0;
203   } else {
204     return scope()->num_heap_slots();
205   }
206 }
207 
208 
flags() const209 Code::Flags CompilationInfo::flags() const {
210   if (IsStub()) {
211     return Code::ComputeFlags(code_stub()->GetCodeKind(),
212                               code_stub()->GetICState(),
213                               code_stub()->GetExtraICState(),
214                               code_stub()->GetStubType(),
215                               code_stub()->GetStubFlags());
216   } else {
217     return Code::ComputeFlags(Code::OPTIMIZED_FUNCTION);
218   }
219 }
220 
221 
222 // Disable optimization for the rest of the compilation pipeline.
DisableOptimization()223 void CompilationInfo::DisableOptimization() {
224   bool is_optimizable_closure =
225     FLAG_optimize_closures &&
226     closure_.is_null() &&
227     !scope_->HasTrivialOuterContext() &&
228     !scope_->outer_scope_calls_non_strict_eval() &&
229     !scope_->inside_with();
230   SetMode(is_optimizable_closure ? BASE : NONOPT);
231 }
232 
233 
234 // Primitive functions are unlikely to be picked up by the stack-walking
235 // profiler, so they trigger their own optimization when they're called
236 // for the SharedFunctionInfo::kCallsUntilPrimitiveOptimization-th time.
ShouldSelfOptimize()237 bool CompilationInfo::ShouldSelfOptimize() {
238   return FLAG_self_optimization &&
239       FLAG_crankshaft &&
240       !function()->flags()->Contains(kDontSelfOptimize) &&
241       !function()->dont_optimize() &&
242       function()->scope()->AllowsLazyCompilation() &&
243       (shared_info().is_null() || !shared_info()->optimization_disabled());
244 }
245 
246 
247 // Determine whether to use the full compiler for all code. If the flag
248 // --always-full-compiler is specified this is the case. For the virtual frame
249 // based compiler the full compiler is also used if a debugger is connected, as
250 // the code from the full compiler supports mode precise break points. For the
251 // crankshaft adaptive compiler debugging the optimized code is not possible at
252 // all. However crankshaft support recompilation of functions, so in this case
253 // the full compiler need not be be used if a debugger is attached, but only if
254 // break points has actually been set.
IsDebuggerActive(Isolate * isolate)255 static bool IsDebuggerActive(Isolate* isolate) {
256 #ifdef ENABLE_DEBUGGER_SUPPORT
257   return isolate->use_crankshaft() ?
258     isolate->debug()->has_break_points() :
259     isolate->debugger()->IsDebuggerActive();
260 #else
261   return false;
262 #endif
263 }
264 
265 
AlwaysFullCompiler(Isolate * isolate)266 static bool AlwaysFullCompiler(Isolate* isolate) {
267   return FLAG_always_full_compiler || IsDebuggerActive(isolate);
268 }
269 
270 
RecordOptimizationStats()271 void RecompileJob::RecordOptimizationStats() {
272   Handle<JSFunction> function = info()->closure();
273   if (!function->IsOptimized()) {
274     // Concurrent recompilation and OSR may race.  Increment only once.
275     int opt_count = function->shared()->opt_count();
276     function->shared()->set_opt_count(opt_count + 1);
277   }
278   double ms_creategraph = time_taken_to_create_graph_.InMillisecondsF();
279   double ms_optimize = time_taken_to_optimize_.InMillisecondsF();
280   double ms_codegen = time_taken_to_codegen_.InMillisecondsF();
281   if (FLAG_trace_opt) {
282     PrintF("[optimizing ");
283     function->ShortPrint();
284     PrintF(" - took %0.3f, %0.3f, %0.3f ms]\n", ms_creategraph, ms_optimize,
285            ms_codegen);
286   }
287   if (FLAG_trace_opt_stats) {
288     static double compilation_time = 0.0;
289     static int compiled_functions = 0;
290     static int code_size = 0;
291 
292     compilation_time += (ms_creategraph + ms_optimize + ms_codegen);
293     compiled_functions++;
294     code_size += function->shared()->SourceSize();
295     PrintF("Compiled: %d functions with %d byte source size in %fms.\n",
296            compiled_functions,
297            code_size,
298            compilation_time);
299   }
300   if (FLAG_hydrogen_stats) {
301     isolate()->GetHStatistics()->IncrementSubtotals(time_taken_to_create_graph_,
302                                                     time_taken_to_optimize_,
303                                                     time_taken_to_codegen_);
304   }
305 }
306 
307 
308 // A return value of true indicates the compilation pipeline is still
309 // going, not necessarily that we optimized the code.
MakeCrankshaftCode(CompilationInfo * info)310 static bool MakeCrankshaftCode(CompilationInfo* info) {
311   RecompileJob job(info);
312   RecompileJob::Status status = job.CreateGraph();
313 
314   if (status != RecompileJob::SUCCEEDED) {
315     return status != RecompileJob::FAILED;
316   }
317   status = job.OptimizeGraph();
318   if (status != RecompileJob::SUCCEEDED) {
319     status = job.AbortOptimization();
320     return status != RecompileJob::FAILED;
321   }
322   status = job.GenerateAndInstallCode();
323   return status != RecompileJob::FAILED;
324 }
325 
326 
327 class HOptimizedGraphBuilderWithPositions: public HOptimizedGraphBuilder {
328  public:
HOptimizedGraphBuilderWithPositions(CompilationInfo * info)329   explicit HOptimizedGraphBuilderWithPositions(CompilationInfo* info)
330       : HOptimizedGraphBuilder(info) {
331   }
332 
333 #define DEF_VISIT(type)                                 \
334   virtual void Visit##type(type* node) V8_OVERRIDE {    \
335     if (node->position() != RelocInfo::kNoPosition) {   \
336       SetSourcePosition(node->position());              \
337     }                                                   \
338     HOptimizedGraphBuilder::Visit##type(node);          \
339   }
340   EXPRESSION_NODE_LIST(DEF_VISIT)
341 #undef DEF_VISIT
342 
343 #define DEF_VISIT(type)                                          \
344   virtual void Visit##type(type* node) V8_OVERRIDE {             \
345     if (node->position() != RelocInfo::kNoPosition) {            \
346       SetSourcePosition(node->position());                       \
347     }                                                            \
348     HOptimizedGraphBuilder::Visit##type(node);                   \
349   }
350   STATEMENT_NODE_LIST(DEF_VISIT)
351 #undef DEF_VISIT
352 
353 #define DEF_VISIT(type)                                            \
354   virtual void Visit##type(type* node) V8_OVERRIDE {               \
355     HOptimizedGraphBuilder::Visit##type(node);                     \
356   }
357   MODULE_NODE_LIST(DEF_VISIT)
358   DECLARATION_NODE_LIST(DEF_VISIT)
359   AUXILIARY_NODE_LIST(DEF_VISIT)
360 #undef DEF_VISIT
361 };
362 
363 
CreateGraph()364 RecompileJob::Status RecompileJob::CreateGraph() {
365   ASSERT(isolate()->use_crankshaft());
366   ASSERT(info()->IsOptimizing());
367   ASSERT(!info()->IsCompilingForDebugging());
368 
369   // We should never arrive here if there is no code object on the
370   // shared function object.
371   ASSERT(info()->shared_info()->code()->kind() == Code::FUNCTION);
372 
373   // We should never arrive here if optimization has been disabled on the
374   // shared function info.
375   ASSERT(!info()->shared_info()->optimization_disabled());
376 
377   // Fall back to using the full code generator if it's not possible
378   // to use the Hydrogen-based optimizing compiler. We already have
379   // generated code for this from the shared function object.
380   if (AlwaysFullCompiler(isolate())) {
381     info()->AbortOptimization();
382     return SetLastStatus(BAILED_OUT);
383   }
384 
385   // Limit the number of times we re-compile a functions with
386   // the optimizing compiler.
387   const int kMaxOptCount =
388       FLAG_deopt_every_n_times == 0 ? FLAG_max_opt_count : 1000;
389   if (info()->opt_count() > kMaxOptCount) {
390     info()->set_bailout_reason(kOptimizedTooManyTimes);
391     return AbortOptimization();
392   }
393 
394   // Due to an encoding limit on LUnallocated operands in the Lithium
395   // language, we cannot optimize functions with too many formal parameters
396   // or perform on-stack replacement for function with too many
397   // stack-allocated local variables.
398   //
399   // The encoding is as a signed value, with parameters and receiver using
400   // the negative indices and locals the non-negative ones.
401   const int parameter_limit = -LUnallocated::kMinFixedSlotIndex;
402   Scope* scope = info()->scope();
403   if ((scope->num_parameters() + 1) > parameter_limit) {
404     info()->set_bailout_reason(kTooManyParameters);
405     return AbortOptimization();
406   }
407 
408   const int locals_limit = LUnallocated::kMaxFixedSlotIndex;
409   if (info()->is_osr() &&
410       scope->num_parameters() + 1 + scope->num_stack_slots() > locals_limit) {
411     info()->set_bailout_reason(kTooManyParametersLocals);
412     return AbortOptimization();
413   }
414 
415   // Take --hydrogen-filter into account.
416   if (!info()->closure()->PassesFilter(FLAG_hydrogen_filter)) {
417     info()->AbortOptimization();
418     return SetLastStatus(BAILED_OUT);
419   }
420 
421   // Recompile the unoptimized version of the code if the current version
422   // doesn't have deoptimization support. Alternatively, we may decide to
423   // run the full code generator to get a baseline for the compile-time
424   // performance of the hydrogen-based compiler.
425   bool should_recompile = !info()->shared_info()->has_deoptimization_support();
426   if (should_recompile || FLAG_hydrogen_stats) {
427     ElapsedTimer timer;
428     if (FLAG_hydrogen_stats) {
429       timer.Start();
430     }
431     CompilationInfoWithZone unoptimized(info()->shared_info());
432     // Note that we use the same AST that we will use for generating the
433     // optimized code.
434     unoptimized.SetFunction(info()->function());
435     unoptimized.SetScope(info()->scope());
436     unoptimized.SetContext(info()->context());
437     if (should_recompile) unoptimized.EnableDeoptimizationSupport();
438     bool succeeded = FullCodeGenerator::MakeCode(&unoptimized);
439     if (should_recompile) {
440       if (!succeeded) return SetLastStatus(FAILED);
441       Handle<SharedFunctionInfo> shared = info()->shared_info();
442       shared->EnableDeoptimizationSupport(*unoptimized.code());
443       // The existing unoptimized code was replaced with the new one.
444       Compiler::RecordFunctionCompilation(
445           Logger::LAZY_COMPILE_TAG, &unoptimized, shared);
446     }
447     if (FLAG_hydrogen_stats) {
448       isolate()->GetHStatistics()->IncrementFullCodeGen(timer.Elapsed());
449     }
450   }
451 
452   // Check that the unoptimized, shared code is ready for
453   // optimizations.  When using the always_opt flag we disregard the
454   // optimizable marker in the code object and optimize anyway. This
455   // is safe as long as the unoptimized code has deoptimization
456   // support.
457   ASSERT(FLAG_always_opt || info()->shared_info()->code()->optimizable());
458   ASSERT(info()->shared_info()->has_deoptimization_support());
459 
460   if (FLAG_trace_hydrogen) {
461     Handle<String> name = info()->function()->debug_name();
462     PrintF("-----------------------------------------------------------\n");
463     PrintF("Compiling method %s using hydrogen\n", *name->ToCString());
464     isolate()->GetHTracer()->TraceCompilation(info());
465   }
466 
467   // Type-check the function.
468   AstTyper::Run(info());
469 
470   graph_builder_ = FLAG_emit_opt_code_positions
471       ? new(info()->zone()) HOptimizedGraphBuilderWithPositions(info())
472       : new(info()->zone()) HOptimizedGraphBuilder(info());
473 
474   Timer t(this, &time_taken_to_create_graph_);
475   graph_ = graph_builder_->CreateGraph();
476 
477   if (isolate()->has_pending_exception()) {
478     info()->SetCode(Handle<Code>::null());
479     return SetLastStatus(FAILED);
480   }
481 
482   // The function being compiled may have bailed out due to an inline
483   // candidate bailing out.  In such a case, we don't disable
484   // optimization on the shared_info.
485   ASSERT(!graph_builder_->inline_bailout() || graph_ == NULL);
486   if (graph_ == NULL) {
487     if (graph_builder_->inline_bailout()) {
488       info_->AbortOptimization();
489       return SetLastStatus(BAILED_OUT);
490     } else {
491       return AbortOptimization();
492     }
493   }
494 
495   if (info()->HasAbortedDueToDependencyChange()) {
496     info_->set_bailout_reason(kBailedOutDueToDependencyChange);
497     info_->AbortOptimization();
498     return SetLastStatus(BAILED_OUT);
499   }
500 
501   return SetLastStatus(SUCCEEDED);
502 }
503 
504 
OptimizeGraph()505 RecompileJob::Status RecompileJob::OptimizeGraph() {
506   DisallowHeapAllocation no_allocation;
507   DisallowHandleAllocation no_handles;
508   DisallowHandleDereference no_deref;
509   DisallowCodeDependencyChange no_dependency_change;
510 
511   ASSERT(last_status() == SUCCEEDED);
512   Timer t(this, &time_taken_to_optimize_);
513   ASSERT(graph_ != NULL);
514   BailoutReason bailout_reason = kNoReason;
515   if (!graph_->Optimize(&bailout_reason)) {
516     if (bailout_reason != kNoReason) graph_builder_->Bailout(bailout_reason);
517     return SetLastStatus(BAILED_OUT);
518   } else {
519     chunk_ = LChunk::NewChunk(graph_);
520     if (chunk_ == NULL) {
521       return SetLastStatus(BAILED_OUT);
522     }
523   }
524   return SetLastStatus(SUCCEEDED);
525 }
526 
527 
GenerateAndInstallCode()528 RecompileJob::Status RecompileJob::GenerateAndInstallCode() {
529   ASSERT(last_status() == SUCCEEDED);
530   ASSERT(!info()->HasAbortedDueToDependencyChange());
531   DisallowCodeDependencyChange no_dependency_change;
532   {  // Scope for timer.
533     Timer timer(this, &time_taken_to_codegen_);
534     ASSERT(chunk_ != NULL);
535     ASSERT(graph_ != NULL);
536     // Deferred handles reference objects that were accessible during
537     // graph creation.  To make sure that we don't encounter inconsistencies
538     // between graph creation and code generation, we disallow accessing
539     // objects through deferred handles during the latter, with exceptions.
540     DisallowDeferredHandleDereference no_deferred_handle_deref;
541     Handle<Code> optimized_code = chunk_->Codegen();
542     if (optimized_code.is_null()) {
543       if (info()->bailout_reason() == kNoReason) {
544         info()->set_bailout_reason(kCodeGenerationFailed);
545       }
546       return AbortOptimization();
547     }
548     info()->SetCode(optimized_code);
549   }
550   RecordOptimizationStats();
551   // Add to the weak list of optimized code objects.
552   info()->context()->native_context()->AddOptimizedCode(*info()->code());
553   return SetLastStatus(SUCCEEDED);
554 }
555 
556 
GenerateCode(CompilationInfo * info)557 static bool GenerateCode(CompilationInfo* info) {
558   bool is_optimizing = info->isolate()->use_crankshaft() &&
559                        !info->IsCompilingForDebugging() &&
560                        info->IsOptimizing();
561   if (is_optimizing) {
562     Logger::TimerEventScope timer(
563         info->isolate(), Logger::TimerEventScope::v8_recompile_synchronous);
564     return MakeCrankshaftCode(info);
565   } else {
566     if (info->IsOptimizing()) {
567       // Have the CompilationInfo decide if the compilation should be
568       // BASE or NONOPT.
569       info->DisableOptimization();
570     }
571     Logger::TimerEventScope timer(
572         info->isolate(), Logger::TimerEventScope::v8_compile_full_code);
573     return FullCodeGenerator::MakeCode(info);
574   }
575 }
576 
577 
MakeCode(CompilationInfo * info)578 static bool MakeCode(CompilationInfo* info) {
579   // Precondition: code has been parsed.  Postcondition: the code field in
580   // the compilation info is set if compilation succeeded.
581   ASSERT(info->function() != NULL);
582   return Rewriter::Rewrite(info) && Scope::Analyze(info) && GenerateCode(info);
583 }
584 
585 
586 #ifdef ENABLE_DEBUGGER_SUPPORT
MakeCodeForLiveEdit(CompilationInfo * info)587 bool Compiler::MakeCodeForLiveEdit(CompilationInfo* info) {
588   // Precondition: code has been parsed.  Postcondition: the code field in
589   // the compilation info is set if compilation succeeded.
590   bool succeeded = MakeCode(info);
591   if (!info->shared_info().is_null()) {
592     Handle<ScopeInfo> scope_info = ScopeInfo::Create(info->scope(),
593                                                      info->zone());
594     info->shared_info()->set_scope_info(*scope_info);
595   }
596   return succeeded;
597 }
598 #endif
599 
600 
DebuggerWantsEagerCompilation(CompilationInfo * info,bool allow_lazy_without_ctx=false)601 static bool DebuggerWantsEagerCompilation(CompilationInfo* info,
602                                           bool allow_lazy_without_ctx = false) {
603   return LiveEditFunctionTracker::IsActive(info->isolate()) ||
604          (info->isolate()->DebuggerHasBreakPoints() && !allow_lazy_without_ctx);
605 }
606 
607 
608 // Sets the expected number of properties based on estimate from compiler.
SetExpectedNofPropertiesFromEstimate(Handle<SharedFunctionInfo> shared,int estimate)609 void SetExpectedNofPropertiesFromEstimate(Handle<SharedFunctionInfo> shared,
610                                           int estimate) {
611   // See the comment in SetExpectedNofProperties.
612   if (shared->live_objects_may_exist()) return;
613 
614   // If no properties are added in the constructor, they are more likely
615   // to be added later.
616   if (estimate == 0) estimate = 2;
617 
618   // TODO(yangguo): check whether those heuristics are still up-to-date.
619   // We do not shrink objects that go into a snapshot (yet), so we adjust
620   // the estimate conservatively.
621   if (Serializer::enabled()) {
622     estimate += 2;
623   } else if (FLAG_clever_optimizations) {
624     // Inobject slack tracking will reclaim redundant inobject space later,
625     // so we can afford to adjust the estimate generously.
626     estimate += 8;
627   } else {
628     estimate += 3;
629   }
630 
631   shared->set_expected_nof_properties(estimate);
632 }
633 
634 
MakeFunctionInfo(CompilationInfo * info)635 static Handle<SharedFunctionInfo> MakeFunctionInfo(CompilationInfo* info) {
636   Isolate* isolate = info->isolate();
637   PostponeInterruptsScope postpone(isolate);
638 
639   ASSERT(!isolate->native_context().is_null());
640   Handle<Script> script = info->script();
641   // TODO(svenpanne) Obscure place for this, perhaps move to OnBeforeCompile?
642   FixedArray* array = isolate->native_context()->embedder_data();
643   script->set_context_data(array->get(0));
644 
645 #ifdef ENABLE_DEBUGGER_SUPPORT
646   if (info->is_eval()) {
647     script->set_compilation_type(Script::COMPILATION_TYPE_EVAL);
648     // For eval scripts add information on the function from which eval was
649     // called.
650     if (info->is_eval()) {
651       StackTraceFrameIterator it(isolate);
652       if (!it.done()) {
653         script->set_eval_from_shared(it.frame()->function()->shared());
654         Code* code = it.frame()->LookupCode();
655         int offset = static_cast<int>(
656             it.frame()->pc() - code->instruction_start());
657         script->set_eval_from_instructions_offset(Smi::FromInt(offset));
658       }
659     }
660   }
661 
662   // Notify debugger
663   isolate->debugger()->OnBeforeCompile(script);
664 #endif
665 
666   // Only allow non-global compiles for eval.
667   ASSERT(info->is_eval() || info->is_global());
668   {
669     Parser parser(info);
670     if ((info->pre_parse_data() != NULL ||
671          String::cast(script->source())->length() > FLAG_min_preparse_length) &&
672         !DebuggerWantsEagerCompilation(info))
673       parser.set_allow_lazy(true);
674     if (!parser.Parse()) {
675       return Handle<SharedFunctionInfo>::null();
676     }
677   }
678 
679   FunctionLiteral* lit = info->function();
680   LiveEditFunctionTracker live_edit_tracker(isolate, lit);
681   Handle<SharedFunctionInfo> result;
682   {
683     // Measure how long it takes to do the compilation; only take the
684     // rest of the function into account to avoid overlap with the
685     // parsing statistics.
686     HistogramTimer* rate = info->is_eval()
687           ? info->isolate()->counters()->compile_eval()
688           : info->isolate()->counters()->compile();
689     HistogramTimerScope timer(rate);
690 
691     // Compile the code.
692     if (!MakeCode(info)) {
693       if (!isolate->has_pending_exception()) isolate->StackOverflow();
694       return Handle<SharedFunctionInfo>::null();
695     }
696 
697     // Allocate function.
698     ASSERT(!info->code().is_null());
699     result =
700         isolate->factory()->NewSharedFunctionInfo(
701             lit->name(),
702             lit->materialized_literal_count(),
703             lit->is_generator(),
704             info->code(),
705             ScopeInfo::Create(info->scope(), info->zone()));
706 
707     ASSERT_EQ(RelocInfo::kNoPosition, lit->function_token_position());
708     Compiler::SetFunctionInfo(result, lit, true, script);
709 
710     if (script->name()->IsString()) {
711       PROFILE(isolate, CodeCreateEvent(
712           info->is_eval()
713           ? Logger::EVAL_TAG
714               : Logger::ToNativeByScript(Logger::SCRIPT_TAG, *script),
715                 *info->code(),
716                 *result,
717                 info,
718                 String::cast(script->name())));
719       GDBJIT(AddCode(Handle<String>(String::cast(script->name())),
720                      script,
721                      info->code(),
722                      info));
723     } else {
724       PROFILE(isolate, CodeCreateEvent(
725           info->is_eval()
726           ? Logger::EVAL_TAG
727               : Logger::ToNativeByScript(Logger::SCRIPT_TAG, *script),
728                 *info->code(),
729                 *result,
730                 info,
731                 isolate->heap()->empty_string()));
732       GDBJIT(AddCode(Handle<String>(), script, info->code(), info));
733     }
734 
735     // Hint to the runtime system used when allocating space for initial
736     // property space by setting the expected number of properties for
737     // the instances of the function.
738     SetExpectedNofPropertiesFromEstimate(result,
739                                          lit->expected_property_count());
740 
741     script->set_compilation_state(Script::COMPILATION_STATE_COMPILED);
742   }
743 
744 #ifdef ENABLE_DEBUGGER_SUPPORT
745   // Notify debugger
746   isolate->debugger()->OnAfterCompile(
747       script, Debugger::NO_AFTER_COMPILE_FLAGS);
748 #endif
749 
750   live_edit_tracker.RecordFunctionInfo(result, lit, info->zone());
751 
752   return result;
753 }
754 
755 
Compile(Handle<String> source,Handle<Object> script_name,int line_offset,int column_offset,bool is_shared_cross_origin,Handle<Context> context,v8::Extension * extension,ScriptDataImpl * pre_data,Handle<Object> script_data,NativesFlag natives)756 Handle<SharedFunctionInfo> Compiler::Compile(Handle<String> source,
757                                              Handle<Object> script_name,
758                                              int line_offset,
759                                              int column_offset,
760                                              bool is_shared_cross_origin,
761                                              Handle<Context> context,
762                                              v8::Extension* extension,
763                                              ScriptDataImpl* pre_data,
764                                              Handle<Object> script_data,
765                                              NativesFlag natives) {
766   Isolate* isolate = source->GetIsolate();
767   int source_length = source->length();
768   isolate->counters()->total_load_size()->Increment(source_length);
769   isolate->counters()->total_compile_size()->Increment(source_length);
770 
771   // The VM is in the COMPILER state until exiting this function.
772   VMState<COMPILER> state(isolate);
773 
774   CompilationCache* compilation_cache = isolate->compilation_cache();
775 
776   // Do a lookup in the compilation cache but not for extensions.
777   Handle<SharedFunctionInfo> result;
778   if (extension == NULL) {
779     result = compilation_cache->LookupScript(source,
780                                              script_name,
781                                              line_offset,
782                                              column_offset,
783                                              is_shared_cross_origin,
784                                              context);
785   }
786 
787   if (result.is_null()) {
788     // No cache entry found. Do pre-parsing, if it makes sense, and compile
789     // the script.
790     // Building preparse data that is only used immediately after is only a
791     // saving if we might skip building the AST for lazily compiled functions.
792     // I.e., preparse data isn't relevant when the lazy flag is off, and
793     // for small sources, odds are that there aren't many functions
794     // that would be compiled lazily anyway, so we skip the preparse step
795     // in that case too.
796 
797     // Create a script object describing the script to be compiled.
798     Handle<Script> script = isolate->factory()->NewScript(source);
799     if (natives == NATIVES_CODE) {
800       script->set_type(Smi::FromInt(Script::TYPE_NATIVE));
801     }
802     if (!script_name.is_null()) {
803       script->set_name(*script_name);
804       script->set_line_offset(Smi::FromInt(line_offset));
805       script->set_column_offset(Smi::FromInt(column_offset));
806     }
807     script->set_is_shared_cross_origin(is_shared_cross_origin);
808 
809     script->set_data(script_data.is_null() ? isolate->heap()->undefined_value()
810                                            : *script_data);
811 
812     // Compile the function and add it to the cache.
813     CompilationInfoWithZone info(script);
814     info.MarkAsGlobal();
815     info.SetExtension(extension);
816     info.SetPreParseData(pre_data);
817     info.SetContext(context);
818     if (FLAG_use_strict) {
819       info.SetLanguageMode(FLAG_harmony_scoping ? EXTENDED_MODE : STRICT_MODE);
820     }
821     result = MakeFunctionInfo(&info);
822     if (extension == NULL && !result.is_null() && !result->dont_cache()) {
823       compilation_cache->PutScript(source, context, result);
824     }
825   } else {
826     if (result->ic_age() != isolate->heap()->global_ic_age()) {
827       result->ResetForNewContext(isolate->heap()->global_ic_age());
828     }
829   }
830 
831   if (result.is_null()) isolate->ReportPendingMessages();
832   return result;
833 }
834 
835 
CompileEval(Handle<String> source,Handle<Context> context,bool is_global,LanguageMode language_mode,ParseRestriction restriction,int scope_position)836 Handle<SharedFunctionInfo> Compiler::CompileEval(Handle<String> source,
837                                                  Handle<Context> context,
838                                                  bool is_global,
839                                                  LanguageMode language_mode,
840                                                  ParseRestriction restriction,
841                                                  int scope_position) {
842   Isolate* isolate = source->GetIsolate();
843   int source_length = source->length();
844   isolate->counters()->total_eval_size()->Increment(source_length);
845   isolate->counters()->total_compile_size()->Increment(source_length);
846 
847   // The VM is in the COMPILER state until exiting this function.
848   VMState<COMPILER> state(isolate);
849 
850   // Do a lookup in the compilation cache; if the entry is not there, invoke
851   // the compiler and add the result to the cache.
852   Handle<SharedFunctionInfo> result;
853   CompilationCache* compilation_cache = isolate->compilation_cache();
854   result = compilation_cache->LookupEval(source,
855                                          context,
856                                          is_global,
857                                          language_mode,
858                                          scope_position);
859 
860   if (result.is_null()) {
861     // Create a script object describing the script to be compiled.
862     Handle<Script> script = isolate->factory()->NewScript(source);
863     CompilationInfoWithZone info(script);
864     info.MarkAsEval();
865     if (is_global) info.MarkAsGlobal();
866     info.SetLanguageMode(language_mode);
867     info.SetParseRestriction(restriction);
868     info.SetContext(context);
869     result = MakeFunctionInfo(&info);
870     if (!result.is_null()) {
871       // Explicitly disable optimization for eval code. We're not yet prepared
872       // to handle eval-code in the optimizing compiler.
873       result->DisableOptimization(kEval);
874 
875       // If caller is strict mode, the result must be in strict mode or
876       // extended mode as well, but not the other way around. Consider:
877       // eval("'use strict'; ...");
878       ASSERT(language_mode != STRICT_MODE || !result->is_classic_mode());
879       // If caller is in extended mode, the result must also be in
880       // extended mode.
881       ASSERT(language_mode != EXTENDED_MODE ||
882              result->is_extended_mode());
883       if (!result->dont_cache()) {
884         compilation_cache->PutEval(
885             source, context, is_global, result, scope_position);
886       }
887     }
888   } else {
889     if (result->ic_age() != isolate->heap()->global_ic_age()) {
890       result->ResetForNewContext(isolate->heap()->global_ic_age());
891     }
892   }
893 
894   return result;
895 }
896 
897 
InstallFullCode(CompilationInfo * info)898 static bool InstallFullCode(CompilationInfo* info) {
899   // Update the shared function info with the compiled code and the
900   // scope info.  Please note, that the order of the shared function
901   // info initialization is important since set_scope_info might
902   // trigger a GC, causing the ASSERT below to be invalid if the code
903   // was flushed. By setting the code object last we avoid this.
904   Handle<SharedFunctionInfo> shared = info->shared_info();
905   Handle<Code> code = info->code();
906   CHECK(code->kind() == Code::FUNCTION);
907   Handle<JSFunction> function = info->closure();
908   Handle<ScopeInfo> scope_info =
909       ScopeInfo::Create(info->scope(), info->zone());
910   shared->set_scope_info(*scope_info);
911   shared->ReplaceCode(*code);
912   if (!function.is_null()) {
913     function->ReplaceCode(*code);
914     ASSERT(!function->IsOptimized());
915   }
916 
917   // Set the expected number of properties for instances.
918   FunctionLiteral* lit = info->function();
919   int expected = lit->expected_property_count();
920   SetExpectedNofPropertiesFromEstimate(shared, expected);
921 
922   // Check the function has compiled code.
923   ASSERT(shared->is_compiled());
924   shared->set_dont_optimize_reason(lit->dont_optimize_reason());
925   shared->set_dont_inline(lit->flags()->Contains(kDontInline));
926   shared->set_ast_node_count(lit->ast_node_count());
927 
928   if (info->isolate()->use_crankshaft() &&
929       !function.is_null() &&
930       !shared->optimization_disabled()) {
931     // If we're asked to always optimize, we compile the optimized
932     // version of the function right away - unless the debugger is
933     // active as it makes no sense to compile optimized code then.
934     if (FLAG_always_opt &&
935         !info->isolate()->DebuggerHasBreakPoints()) {
936       CompilationInfoWithZone optimized(function);
937       optimized.SetOptimizing(BailoutId::None());
938       return Compiler::CompileLazy(&optimized);
939     }
940   }
941   return true;
942 }
943 
944 
InstallCodeCommon(CompilationInfo * info)945 static void InstallCodeCommon(CompilationInfo* info) {
946   Handle<SharedFunctionInfo> shared = info->shared_info();
947   Handle<Code> code = info->code();
948   ASSERT(!code.is_null());
949 
950   // Set optimizable to false if this is disallowed by the shared
951   // function info, e.g., we might have flushed the code and must
952   // reset this bit when lazy compiling the code again.
953   if (shared->optimization_disabled()) code->set_optimizable(false);
954 
955   if (shared->code() == *code) {
956     // Do not send compilation event for the same code twice.
957     return;
958   }
959   Compiler::RecordFunctionCompilation(Logger::LAZY_COMPILE_TAG, info, shared);
960 }
961 
962 
InsertCodeIntoOptimizedCodeMap(CompilationInfo * info)963 static void InsertCodeIntoOptimizedCodeMap(CompilationInfo* info) {
964   Handle<Code> code = info->code();
965   if (code->kind() != Code::OPTIMIZED_FUNCTION) return;  // Nothing to do.
966 
967   // Cache non-OSR optimized code.
968   if (FLAG_cache_optimized_code && !info->is_osr()) {
969     Handle<JSFunction> function = info->closure();
970     Handle<SharedFunctionInfo> shared(function->shared());
971     Handle<FixedArray> literals(function->literals());
972     Handle<Context> native_context(function->context()->native_context());
973     SharedFunctionInfo::AddToOptimizedCodeMap(
974         shared, native_context, code, literals);
975   }
976 }
977 
978 
InstallCodeFromOptimizedCodeMap(CompilationInfo * info)979 static bool InstallCodeFromOptimizedCodeMap(CompilationInfo* info) {
980   if (!info->IsOptimizing()) return false;  // Nothing to look up.
981 
982   // Lookup non-OSR optimized code.
983   if (FLAG_cache_optimized_code && !info->is_osr()) {
984     Handle<SharedFunctionInfo> shared = info->shared_info();
985     Handle<JSFunction> function = info->closure();
986     ASSERT(!function.is_null());
987     Handle<Context> native_context(function->context()->native_context());
988     int index = shared->SearchOptimizedCodeMap(*native_context);
989     if (index > 0) {
990       if (FLAG_trace_opt) {
991         PrintF("[found optimized code for ");
992         function->ShortPrint();
993         PrintF("]\n");
994       }
995       // Caching of optimized code enabled and optimized code found.
996       shared->InstallFromOptimizedCodeMap(*function, index);
997       return true;
998     }
999   }
1000   return false;
1001 }
1002 
1003 
CompileLazy(CompilationInfo * info)1004 bool Compiler::CompileLazy(CompilationInfo* info) {
1005   Isolate* isolate = info->isolate();
1006 
1007   // The VM is in the COMPILER state until exiting this function.
1008   VMState<COMPILER> state(isolate);
1009 
1010   PostponeInterruptsScope postpone(isolate);
1011 
1012   Handle<SharedFunctionInfo> shared = info->shared_info();
1013   int compiled_size = shared->end_position() - shared->start_position();
1014   isolate->counters()->total_compile_size()->Increment(compiled_size);
1015 
1016   if (InstallCodeFromOptimizedCodeMap(info)) return true;
1017 
1018   // Generate the AST for the lazily compiled function.
1019   if (Parser::Parse(info)) {
1020     // Measure how long it takes to do the lazy compilation; only take the
1021     // rest of the function into account to avoid overlap with the lazy
1022     // parsing statistics.
1023     HistogramTimerScope timer(isolate->counters()->compile_lazy());
1024 
1025     // After parsing we know the function's language mode. Remember it.
1026     LanguageMode language_mode = info->function()->language_mode();
1027     info->SetLanguageMode(language_mode);
1028     shared->set_language_mode(language_mode);
1029 
1030     // Compile the code.
1031     if (!MakeCode(info)) {
1032       if (!isolate->has_pending_exception()) {
1033         isolate->StackOverflow();
1034       }
1035     } else {
1036       InstallCodeCommon(info);
1037 
1038       if (info->IsOptimizing()) {
1039         // Optimized code successfully created.
1040         Handle<Code> code = info->code();
1041         ASSERT(shared->scope_info() != ScopeInfo::Empty(isolate));
1042         // TODO(titzer): Only replace the code if it was not an OSR compile.
1043         info->closure()->ReplaceCode(*code);
1044         InsertCodeIntoOptimizedCodeMap(info);
1045         return true;
1046       } else if (!info->is_osr()) {
1047         // Compilation failed. Replace with full code if not OSR compile.
1048         return InstallFullCode(info);
1049       }
1050     }
1051   }
1052 
1053   ASSERT(info->code().is_null());
1054   return false;
1055 }
1056 
1057 
RecompileConcurrent(Handle<JSFunction> closure,uint32_t osr_pc_offset)1058 bool Compiler::RecompileConcurrent(Handle<JSFunction> closure,
1059                                    uint32_t osr_pc_offset) {
1060   bool compiling_for_osr = (osr_pc_offset != 0);
1061 
1062   Isolate* isolate = closure->GetIsolate();
1063   // Here we prepare compile data for the concurrent recompilation thread, but
1064   // this still happens synchronously and interrupts execution.
1065   Logger::TimerEventScope timer(
1066       isolate, Logger::TimerEventScope::v8_recompile_synchronous);
1067 
1068   if (!isolate->optimizing_compiler_thread()->IsQueueAvailable()) {
1069     if (FLAG_trace_concurrent_recompilation) {
1070       PrintF("  ** Compilation queue full, will retry optimizing ");
1071       closure->PrintName();
1072       PrintF(" on next run.\n");
1073     }
1074     return false;
1075   }
1076 
1077   SmartPointer<CompilationInfo> info(new CompilationInfoWithZone(closure));
1078   Handle<SharedFunctionInfo> shared = info->shared_info();
1079 
1080   if (compiling_for_osr) {
1081     BailoutId osr_ast_id =
1082         shared->code()->TranslatePcOffsetToAstId(osr_pc_offset);
1083     ASSERT(!osr_ast_id.IsNone());
1084     info->SetOptimizing(osr_ast_id);
1085     info->set_osr_pc_offset(osr_pc_offset);
1086 
1087     if (FLAG_trace_osr) {
1088       PrintF("[COSR - attempt to queue ");
1089       closure->PrintName();
1090       PrintF(" at AST id %d]\n", osr_ast_id.ToInt());
1091     }
1092   } else {
1093     info->SetOptimizing(BailoutId::None());
1094   }
1095 
1096   VMState<COMPILER> state(isolate);
1097   PostponeInterruptsScope postpone(isolate);
1098 
1099   int compiled_size = shared->end_position() - shared->start_position();
1100   isolate->counters()->total_compile_size()->Increment(compiled_size);
1101 
1102   {
1103     CompilationHandleScope handle_scope(*info);
1104 
1105     if (!compiling_for_osr && InstallCodeFromOptimizedCodeMap(*info)) {
1106       return true;
1107     }
1108 
1109     if (Parser::Parse(*info)) {
1110       LanguageMode language_mode = info->function()->language_mode();
1111       info->SetLanguageMode(language_mode);
1112       shared->set_language_mode(language_mode);
1113       info->SaveHandles();
1114 
1115       if (Rewriter::Rewrite(*info) && Scope::Analyze(*info)) {
1116         RecompileJob* job = new(info->zone()) RecompileJob(*info);
1117         RecompileJob::Status status = job->CreateGraph();
1118         if (status == RecompileJob::SUCCEEDED) {
1119           info.Detach();
1120           shared->code()->set_profiler_ticks(0);
1121           isolate->optimizing_compiler_thread()->QueueForOptimization(job);
1122           ASSERT(!isolate->has_pending_exception());
1123           return true;
1124         } else if (status == RecompileJob::BAILED_OUT) {
1125           isolate->clear_pending_exception();
1126           InstallFullCode(*info);
1127         }
1128       }
1129     }
1130   }
1131 
1132   if (isolate->has_pending_exception()) isolate->clear_pending_exception();
1133   return false;
1134 }
1135 
1136 
InstallOptimizedCode(RecompileJob * job)1137 Handle<Code> Compiler::InstallOptimizedCode(RecompileJob* job) {
1138   SmartPointer<CompilationInfo> info(job->info());
1139   // The function may have already been optimized by OSR.  Simply continue.
1140   // Except when OSR already disabled optimization for some reason.
1141   if (info->shared_info()->optimization_disabled()) {
1142     info->AbortOptimization();
1143     InstallFullCode(*info);
1144     if (FLAG_trace_concurrent_recompilation) {
1145       PrintF("  ** aborting optimization for ");
1146       info->closure()->PrintName();
1147       PrintF(" as it has been disabled.\n");
1148     }
1149     ASSERT(!info->closure()->IsInRecompileQueue());
1150     return Handle<Code>::null();
1151   }
1152 
1153   Isolate* isolate = info->isolate();
1154   VMState<COMPILER> state(isolate);
1155   Logger::TimerEventScope timer(
1156       isolate, Logger::TimerEventScope::v8_recompile_synchronous);
1157   // If crankshaft succeeded, install the optimized code else install
1158   // the unoptimized code.
1159   RecompileJob::Status status = job->last_status();
1160   if (info->HasAbortedDueToDependencyChange()) {
1161     info->set_bailout_reason(kBailedOutDueToDependencyChange);
1162     status = job->AbortOptimization();
1163   } else if (status != RecompileJob::SUCCEEDED) {
1164     info->set_bailout_reason(kFailedBailedOutLastTime);
1165     status = job->AbortOptimization();
1166   } else if (isolate->DebuggerHasBreakPoints()) {
1167     info->set_bailout_reason(kDebuggerIsActive);
1168     status = job->AbortOptimization();
1169   } else {
1170     status = job->GenerateAndInstallCode();
1171     ASSERT(status == RecompileJob::SUCCEEDED ||
1172            status == RecompileJob::BAILED_OUT);
1173   }
1174 
1175   InstallCodeCommon(*info);
1176   if (status == RecompileJob::SUCCEEDED) {
1177     Handle<Code> code = info->code();
1178     ASSERT(info->shared_info()->scope_info() != ScopeInfo::Empty(isolate));
1179     info->closure()->ReplaceCode(*code);
1180     if (info->shared_info()->SearchOptimizedCodeMap(
1181             info->closure()->context()->native_context()) == -1) {
1182       InsertCodeIntoOptimizedCodeMap(*info);
1183     }
1184     if (FLAG_trace_concurrent_recompilation) {
1185       PrintF("  ** Optimized code for ");
1186       info->closure()->PrintName();
1187       PrintF(" installed.\n");
1188     }
1189   } else {
1190     info->AbortOptimization();
1191     InstallFullCode(*info);
1192   }
1193   // Optimized code is finally replacing unoptimized code.  Reset the latter's
1194   // profiler ticks to prevent too soon re-opt after a deopt.
1195   info->shared_info()->code()->set_profiler_ticks(0);
1196   ASSERT(!info->closure()->IsInRecompileQueue());
1197   return (status == RecompileJob::SUCCEEDED) ? info->code()
1198                                              : Handle<Code>::null();
1199 }
1200 
1201 
BuildFunctionInfo(FunctionLiteral * literal,Handle<Script> script)1202 Handle<SharedFunctionInfo> Compiler::BuildFunctionInfo(FunctionLiteral* literal,
1203                                                        Handle<Script> script) {
1204   // Precondition: code has been parsed and scopes have been analyzed.
1205   CompilationInfoWithZone info(script);
1206   info.SetFunction(literal);
1207   info.SetScope(literal->scope());
1208   info.SetLanguageMode(literal->scope()->language_mode());
1209 
1210   Isolate* isolate = info.isolate();
1211   Factory* factory = isolate->factory();
1212   LiveEditFunctionTracker live_edit_tracker(isolate, literal);
1213   // Determine if the function can be lazily compiled. This is necessary to
1214   // allow some of our builtin JS files to be lazily compiled. These
1215   // builtins cannot be handled lazily by the parser, since we have to know
1216   // if a function uses the special natives syntax, which is something the
1217   // parser records.
1218   // If the debugger requests compilation for break points, we cannot be
1219   // aggressive about lazy compilation, because it might trigger compilation
1220   // of functions without an outer context when setting a breakpoint through
1221   // Debug::FindSharedFunctionInfoInScript.
1222   bool allow_lazy_without_ctx = literal->AllowsLazyCompilationWithoutContext();
1223   bool allow_lazy = literal->AllowsLazyCompilation() &&
1224       !DebuggerWantsEagerCompilation(&info, allow_lazy_without_ctx);
1225 
1226   Handle<ScopeInfo> scope_info(ScopeInfo::Empty(isolate));
1227 
1228   // Generate code
1229   if (FLAG_lazy && allow_lazy && !literal->is_parenthesized()) {
1230     Handle<Code> code = isolate->builtins()->LazyCompile();
1231     info.SetCode(code);
1232   } else if (GenerateCode(&info)) {
1233     ASSERT(!info.code().is_null());
1234     scope_info = ScopeInfo::Create(info.scope(), info.zone());
1235   } else {
1236     return Handle<SharedFunctionInfo>::null();
1237   }
1238 
1239   // Create a shared function info object.
1240   Handle<SharedFunctionInfo> result =
1241       factory->NewSharedFunctionInfo(literal->name(),
1242                                      literal->materialized_literal_count(),
1243                                      literal->is_generator(),
1244                                      info.code(),
1245                                      scope_info);
1246   SetFunctionInfo(result, literal, false, script);
1247   RecordFunctionCompilation(Logger::FUNCTION_TAG, &info, result);
1248   result->set_allows_lazy_compilation(allow_lazy);
1249   result->set_allows_lazy_compilation_without_context(allow_lazy_without_ctx);
1250 
1251   // Set the expected number of properties for instances and return
1252   // the resulting function.
1253   SetExpectedNofPropertiesFromEstimate(result,
1254                                        literal->expected_property_count());
1255   live_edit_tracker.RecordFunctionInfo(result, literal, info.zone());
1256   return result;
1257 }
1258 
1259 
1260 // Sets the function info on a function.
1261 // The start_position points to the first '(' character after the function name
1262 // in the full script source. When counting characters in the script source the
1263 // the first character is number 0 (not 1).
SetFunctionInfo(Handle<SharedFunctionInfo> function_info,FunctionLiteral * lit,bool is_toplevel,Handle<Script> script)1264 void Compiler::SetFunctionInfo(Handle<SharedFunctionInfo> function_info,
1265                                FunctionLiteral* lit,
1266                                bool is_toplevel,
1267                                Handle<Script> script) {
1268   function_info->set_length(lit->parameter_count());
1269   function_info->set_formal_parameter_count(lit->parameter_count());
1270   function_info->set_script(*script);
1271   function_info->set_function_token_position(lit->function_token_position());
1272   function_info->set_start_position(lit->start_position());
1273   function_info->set_end_position(lit->end_position());
1274   function_info->set_is_expression(lit->is_expression());
1275   function_info->set_is_anonymous(lit->is_anonymous());
1276   function_info->set_is_toplevel(is_toplevel);
1277   function_info->set_inferred_name(*lit->inferred_name());
1278   function_info->set_allows_lazy_compilation(lit->AllowsLazyCompilation());
1279   function_info->set_allows_lazy_compilation_without_context(
1280       lit->AllowsLazyCompilationWithoutContext());
1281   function_info->set_language_mode(lit->language_mode());
1282   function_info->set_uses_arguments(lit->scope()->arguments() != NULL);
1283   function_info->set_has_duplicate_parameters(lit->has_duplicate_parameters());
1284   function_info->set_ast_node_count(lit->ast_node_count());
1285   function_info->set_is_function(lit->is_function());
1286   function_info->set_dont_optimize_reason(lit->dont_optimize_reason());
1287   function_info->set_dont_inline(lit->flags()->Contains(kDontInline));
1288   function_info->set_dont_cache(lit->flags()->Contains(kDontCache));
1289   function_info->set_is_generator(lit->is_generator());
1290 }
1291 
1292 
RecordFunctionCompilation(Logger::LogEventsAndTags tag,CompilationInfo * info,Handle<SharedFunctionInfo> shared)1293 void Compiler::RecordFunctionCompilation(Logger::LogEventsAndTags tag,
1294                                          CompilationInfo* info,
1295                                          Handle<SharedFunctionInfo> shared) {
1296   // SharedFunctionInfo is passed separately, because if CompilationInfo
1297   // was created using Script object, it will not have it.
1298 
1299   // Log the code generation. If source information is available include
1300   // script name and line number. Check explicitly whether logging is
1301   // enabled as finding the line number is not free.
1302   if (info->isolate()->logger()->is_logging_code_events() ||
1303       info->isolate()->cpu_profiler()->is_profiling()) {
1304     Handle<Script> script = info->script();
1305     Handle<Code> code = info->code();
1306     if (*code == info->isolate()->builtins()->builtin(Builtins::kLazyCompile))
1307       return;
1308     int line_num = GetScriptLineNumber(script, shared->start_position()) + 1;
1309     int column_num =
1310         GetScriptColumnNumber(script, shared->start_position()) + 1;
1311     USE(line_num);
1312     if (script->name()->IsString()) {
1313       PROFILE(info->isolate(),
1314               CodeCreateEvent(Logger::ToNativeByScript(tag, *script),
1315                               *code,
1316                               *shared,
1317                               info,
1318                               String::cast(script->name()),
1319                               line_num,
1320                               column_num));
1321     } else {
1322       PROFILE(info->isolate(),
1323               CodeCreateEvent(Logger::ToNativeByScript(tag, *script),
1324                               *code,
1325                               *shared,
1326                               info,
1327                               info->isolate()->heap()->empty_string(),
1328                               line_num,
1329                               column_num));
1330     }
1331   }
1332 
1333   GDBJIT(AddCode(Handle<String>(shared->DebugName()),
1334                  Handle<Script>(info->script()),
1335                  Handle<Code>(info->code()),
1336                  info));
1337 }
1338 
1339 
CompilationPhase(const char * name,CompilationInfo * info)1340 CompilationPhase::CompilationPhase(const char* name, CompilationInfo* info)
1341     : name_(name), info_(info), zone_(info->isolate()) {
1342   if (FLAG_hydrogen_stats) {
1343     info_zone_start_allocation_size_ = info->zone()->allocation_size();
1344     timer_.Start();
1345   }
1346 }
1347 
1348 
~CompilationPhase()1349 CompilationPhase::~CompilationPhase() {
1350   if (FLAG_hydrogen_stats) {
1351     unsigned size = zone()->allocation_size();
1352     size += info_->zone()->allocation_size() - info_zone_start_allocation_size_;
1353     isolate()->GetHStatistics()->SaveTiming(name_, timer_.Elapsed(), size);
1354   }
1355 }
1356 
1357 
ShouldProduceTraceOutput() const1358 bool CompilationPhase::ShouldProduceTraceOutput() const {
1359   // Trace if the appropriate trace flag is set and the phase name's first
1360   // character is in the FLAG_trace_phase command line parameter.
1361   AllowHandleDereference allow_deref;
1362   bool tracing_on = info()->IsStub()
1363       ? FLAG_trace_hydrogen_stubs
1364       : (FLAG_trace_hydrogen &&
1365          info()->closure()->PassesFilter(FLAG_trace_hydrogen_filter));
1366   return (tracing_on &&
1367       OS::StrChr(const_cast<char*>(FLAG_trace_phase), name_[0]) != NULL);
1368 }
1369 
1370 } }  // namespace v8::internal
1371