30637108dd
BUG=v8:3929 LOG=y R=dcarney@chromium.org Review URL: https://codereview.chromium.org/967243002 Cr-Commit-Position: refs/heads/master@{#26936}
829 lines
25 KiB
C++
829 lines
25 KiB
C++
// Copyright 2013 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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#include "src/typing.h"
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#include "src/frames.h"
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#include "src/frames-inl.h"
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#include "src/ostreams.h"
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#include "src/parser.h" // for CompileTimeValue; TODO(rossberg): should move
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#include "src/scopes.h"
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namespace v8 {
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namespace internal {
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AstTyper::AstTyper(CompilationInfo* info)
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: info_(info),
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oracle_(info->isolate(), info->zone(),
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handle(info->closure()->shared()->code()),
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handle(info->closure()->shared()->feedback_vector()),
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handle(info->closure()->context()->native_context())),
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store_(info->zone()) {
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InitializeAstVisitor(info->isolate(), info->zone());
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}
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#define RECURSE(call) \
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do { \
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DCHECK(!visitor->HasStackOverflow()); \
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call; \
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if (visitor->HasStackOverflow()) return; \
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} while (false)
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void AstTyper::Run(CompilationInfo* info) {
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AstTyper* visitor = new(info->zone()) AstTyper(info);
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Scope* scope = info->scope();
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// Handle implicit declaration of the function name in named function
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// expressions before other declarations.
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if (scope->is_function_scope() && scope->function() != NULL) {
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RECURSE(visitor->VisitVariableDeclaration(scope->function()));
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}
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RECURSE(visitor->VisitDeclarations(scope->declarations()));
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RECURSE(visitor->VisitStatements(info->function()->body()));
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}
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#undef RECURSE
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#ifdef OBJECT_PRINT
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static void PrintObserved(Variable* var, Object* value, Type* type) {
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OFStream os(stdout);
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os << " observed " << (var->IsParameter() ? "param" : "local") << " ";
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var->name()->Print(os);
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os << " : " << Brief(value) << " -> ";
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type->PrintTo(os);
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os << std::endl;
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}
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#endif // OBJECT_PRINT
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Effect AstTyper::ObservedOnStack(Object* value) {
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Type* lower = Type::NowOf(value, zone());
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return Effect(Bounds(lower, Type::Any(zone())));
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}
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void AstTyper::ObserveTypesAtOsrEntry(IterationStatement* stmt) {
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if (stmt->OsrEntryId() != info_->osr_ast_id()) return;
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DisallowHeapAllocation no_gc;
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JavaScriptFrameIterator it(isolate());
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JavaScriptFrame* frame = it.frame();
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Scope* scope = info_->scope();
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// Assert that the frame on the stack belongs to the function we want to OSR.
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DCHECK_EQ(*info_->closure(), frame->function());
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int params = scope->num_parameters();
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int locals = scope->StackLocalCount();
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// Use sequential composition to achieve desired narrowing.
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// The receiver is a parameter with index -1.
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store_.Seq(parameter_index(-1), ObservedOnStack(frame->receiver()));
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for (int i = 0; i < params; i++) {
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store_.Seq(parameter_index(i), ObservedOnStack(frame->GetParameter(i)));
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}
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for (int i = 0; i < locals; i++) {
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store_.Seq(stack_local_index(i), ObservedOnStack(frame->GetExpression(i)));
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}
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#ifdef OBJECT_PRINT
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if (FLAG_trace_osr && FLAG_print_scopes) {
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PrintObserved(scope->receiver(),
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frame->receiver(),
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store_.LookupBounds(parameter_index(-1)).lower);
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for (int i = 0; i < params; i++) {
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PrintObserved(scope->parameter(i),
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frame->GetParameter(i),
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store_.LookupBounds(parameter_index(i)).lower);
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}
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ZoneList<Variable*> local_vars(locals, zone());
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ZoneList<Variable*> context_vars(scope->ContextLocalCount(), zone());
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scope->CollectStackAndContextLocals(&local_vars, &context_vars);
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for (int i = 0; i < locals; i++) {
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PrintObserved(local_vars.at(i),
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frame->GetExpression(i),
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store_.LookupBounds(stack_local_index(i)).lower);
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}
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}
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#endif // OBJECT_PRINT
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}
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#define RECURSE(call) \
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do { \
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DCHECK(!HasStackOverflow()); \
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call; \
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if (HasStackOverflow()) return; \
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} while (false)
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void AstTyper::VisitStatements(ZoneList<Statement*>* stmts) {
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for (int i = 0; i < stmts->length(); ++i) {
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Statement* stmt = stmts->at(i);
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RECURSE(Visit(stmt));
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if (stmt->IsJump()) break;
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}
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}
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void AstTyper::VisitBlock(Block* stmt) {
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RECURSE(VisitStatements(stmt->statements()));
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if (stmt->labels() != NULL) {
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store_.Forget(); // Control may transfer here via 'break l'.
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}
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}
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void AstTyper::VisitExpressionStatement(ExpressionStatement* stmt) {
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RECURSE(Visit(stmt->expression()));
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}
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void AstTyper::VisitEmptyStatement(EmptyStatement* stmt) {
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}
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void AstTyper::VisitIfStatement(IfStatement* stmt) {
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// Collect type feedback.
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if (!stmt->condition()->ToBooleanIsTrue() &&
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!stmt->condition()->ToBooleanIsFalse()) {
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stmt->condition()->RecordToBooleanTypeFeedback(oracle());
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}
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RECURSE(Visit(stmt->condition()));
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Effects then_effects = EnterEffects();
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RECURSE(Visit(stmt->then_statement()));
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ExitEffects();
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Effects else_effects = EnterEffects();
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RECURSE(Visit(stmt->else_statement()));
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ExitEffects();
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then_effects.Alt(else_effects);
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store_.Seq(then_effects);
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}
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void AstTyper::VisitContinueStatement(ContinueStatement* stmt) {
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// TODO(rossberg): is it worth having a non-termination effect?
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}
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void AstTyper::VisitBreakStatement(BreakStatement* stmt) {
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// TODO(rossberg): is it worth having a non-termination effect?
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}
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void AstTyper::VisitReturnStatement(ReturnStatement* stmt) {
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// Collect type feedback.
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// TODO(rossberg): we only need this for inlining into test contexts...
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stmt->expression()->RecordToBooleanTypeFeedback(oracle());
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RECURSE(Visit(stmt->expression()));
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// TODO(rossberg): is it worth having a non-termination effect?
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}
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void AstTyper::VisitWithStatement(WithStatement* stmt) {
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RECURSE(stmt->expression());
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RECURSE(stmt->statement());
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}
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void AstTyper::VisitSwitchStatement(SwitchStatement* stmt) {
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RECURSE(Visit(stmt->tag()));
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ZoneList<CaseClause*>* clauses = stmt->cases();
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Effects local_effects(zone());
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bool complex_effects = false; // True for label effects or fall-through.
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for (int i = 0; i < clauses->length(); ++i) {
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CaseClause* clause = clauses->at(i);
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Effects clause_effects = EnterEffects();
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if (!clause->is_default()) {
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Expression* label = clause->label();
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// Collect type feedback.
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Type* tag_type;
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Type* label_type;
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Type* combined_type;
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oracle()->CompareType(clause->CompareId(),
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&tag_type, &label_type, &combined_type);
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NarrowLowerType(stmt->tag(), tag_type);
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NarrowLowerType(label, label_type);
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clause->set_compare_type(combined_type);
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RECURSE(Visit(label));
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if (!clause_effects.IsEmpty()) complex_effects = true;
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}
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ZoneList<Statement*>* stmts = clause->statements();
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RECURSE(VisitStatements(stmts));
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ExitEffects();
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if (stmts->is_empty() || stmts->last()->IsJump()) {
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local_effects.Alt(clause_effects);
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} else {
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complex_effects = true;
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}
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}
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if (complex_effects) {
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store_.Forget(); // Reached this in unknown state.
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} else {
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store_.Seq(local_effects);
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}
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}
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void AstTyper::VisitCaseClause(CaseClause* clause) {
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UNREACHABLE();
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}
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void AstTyper::VisitDoWhileStatement(DoWhileStatement* stmt) {
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// Collect type feedback.
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if (!stmt->cond()->ToBooleanIsTrue()) {
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stmt->cond()->RecordToBooleanTypeFeedback(oracle());
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}
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// TODO(rossberg): refine the unconditional Forget (here and elsewhere) by
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// computing the set of variables assigned in only some of the origins of the
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// control transfer (such as the loop body here).
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store_.Forget(); // Control may transfer here via looping or 'continue'.
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ObserveTypesAtOsrEntry(stmt);
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RECURSE(Visit(stmt->body()));
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RECURSE(Visit(stmt->cond()));
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store_.Forget(); // Control may transfer here via 'break'.
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}
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void AstTyper::VisitWhileStatement(WhileStatement* stmt) {
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// Collect type feedback.
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if (!stmt->cond()->ToBooleanIsTrue()) {
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stmt->cond()->RecordToBooleanTypeFeedback(oracle());
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}
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store_.Forget(); // Control may transfer here via looping or 'continue'.
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RECURSE(Visit(stmt->cond()));
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ObserveTypesAtOsrEntry(stmt);
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RECURSE(Visit(stmt->body()));
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store_.Forget(); // Control may transfer here via termination or 'break'.
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}
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void AstTyper::VisitForStatement(ForStatement* stmt) {
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if (stmt->init() != NULL) {
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RECURSE(Visit(stmt->init()));
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}
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store_.Forget(); // Control may transfer here via looping.
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if (stmt->cond() != NULL) {
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// Collect type feedback.
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stmt->cond()->RecordToBooleanTypeFeedback(oracle());
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RECURSE(Visit(stmt->cond()));
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}
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ObserveTypesAtOsrEntry(stmt);
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RECURSE(Visit(stmt->body()));
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if (stmt->next() != NULL) {
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store_.Forget(); // Control may transfer here via 'continue'.
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RECURSE(Visit(stmt->next()));
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}
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store_.Forget(); // Control may transfer here via termination or 'break'.
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}
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void AstTyper::VisitForInStatement(ForInStatement* stmt) {
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// Collect type feedback.
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stmt->set_for_in_type(static_cast<ForInStatement::ForInType>(
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oracle()->ForInType(stmt->ForInFeedbackSlot())));
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RECURSE(Visit(stmt->enumerable()));
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store_.Forget(); // Control may transfer here via looping or 'continue'.
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ObserveTypesAtOsrEntry(stmt);
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RECURSE(Visit(stmt->body()));
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store_.Forget(); // Control may transfer here via 'break'.
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}
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void AstTyper::VisitForOfStatement(ForOfStatement* stmt) {
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RECURSE(Visit(stmt->iterable()));
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store_.Forget(); // Control may transfer here via looping or 'continue'.
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RECURSE(Visit(stmt->body()));
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store_.Forget(); // Control may transfer here via 'break'.
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}
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void AstTyper::VisitTryCatchStatement(TryCatchStatement* stmt) {
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Effects try_effects = EnterEffects();
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RECURSE(Visit(stmt->try_block()));
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ExitEffects();
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Effects catch_effects = EnterEffects();
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store_.Forget(); // Control may transfer here via 'throw'.
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RECURSE(Visit(stmt->catch_block()));
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ExitEffects();
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try_effects.Alt(catch_effects);
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store_.Seq(try_effects);
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// At this point, only variables that were reassigned in the catch block are
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// still remembered.
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}
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void AstTyper::VisitTryFinallyStatement(TryFinallyStatement* stmt) {
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RECURSE(Visit(stmt->try_block()));
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store_.Forget(); // Control may transfer here via 'throw'.
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RECURSE(Visit(stmt->finally_block()));
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}
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void AstTyper::VisitDebuggerStatement(DebuggerStatement* stmt) {
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store_.Forget(); // May do whatever.
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}
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void AstTyper::VisitFunctionLiteral(FunctionLiteral* expr) {
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expr->InitializeSharedInfo(Handle<Code>(info_->closure()->shared()->code()));
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}
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void AstTyper::VisitClassLiteral(ClassLiteral* expr) {}
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void AstTyper::VisitNativeFunctionLiteral(NativeFunctionLiteral* expr) {
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}
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void AstTyper::VisitConditional(Conditional* expr) {
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// Collect type feedback.
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expr->condition()->RecordToBooleanTypeFeedback(oracle());
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RECURSE(Visit(expr->condition()));
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Effects then_effects = EnterEffects();
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RECURSE(Visit(expr->then_expression()));
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ExitEffects();
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Effects else_effects = EnterEffects();
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RECURSE(Visit(expr->else_expression()));
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ExitEffects();
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then_effects.Alt(else_effects);
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store_.Seq(then_effects);
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NarrowType(expr, Bounds::Either(
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expr->then_expression()->bounds(),
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expr->else_expression()->bounds(), zone()));
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}
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void AstTyper::VisitVariableProxy(VariableProxy* expr) {
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Variable* var = expr->var();
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if (var->IsStackAllocated()) {
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NarrowType(expr, store_.LookupBounds(variable_index(var)));
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}
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}
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void AstTyper::VisitLiteral(Literal* expr) {
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Type* type = Type::Constant(expr->value(), zone());
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NarrowType(expr, Bounds(type));
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}
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void AstTyper::VisitRegExpLiteral(RegExpLiteral* expr) {
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// TODO(rossberg): Reintroduce RegExp type.
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NarrowType(expr, Bounds(Type::Object(zone())));
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}
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void AstTyper::VisitObjectLiteral(ObjectLiteral* expr) {
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ZoneList<ObjectLiteral::Property*>* properties = expr->properties();
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for (int i = 0; i < properties->length(); ++i) {
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ObjectLiteral::Property* prop = properties->at(i);
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// Collect type feedback.
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if ((prop->kind() == ObjectLiteral::Property::MATERIALIZED_LITERAL &&
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!CompileTimeValue::IsCompileTimeValue(prop->value())) ||
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prop->kind() == ObjectLiteral::Property::COMPUTED) {
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if (!prop->is_computed_name() &&
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prop->key()->AsLiteral()->value()->IsInternalizedString() &&
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prop->emit_store()) {
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// Record type feed back for the property.
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TypeFeedbackId id = prop->key()->AsLiteral()->LiteralFeedbackId();
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SmallMapList maps;
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oracle()->CollectReceiverTypes(id, &maps);
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prop->set_receiver_type(maps.length() == 1 ? maps.at(0)
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: Handle<Map>::null());
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}
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}
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RECURSE(Visit(prop->value()));
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}
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NarrowType(expr, Bounds(Type::Object(zone())));
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}
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void AstTyper::VisitArrayLiteral(ArrayLiteral* expr) {
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ZoneList<Expression*>* values = expr->values();
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for (int i = 0; i < values->length(); ++i) {
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Expression* value = values->at(i);
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RECURSE(Visit(value));
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}
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NarrowType(expr, Bounds(Type::Array(zone())));
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}
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void AstTyper::VisitAssignment(Assignment* expr) {
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// Collect type feedback.
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Property* prop = expr->target()->AsProperty();
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if (prop != NULL) {
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TypeFeedbackId id = expr->AssignmentFeedbackId();
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expr->set_is_uninitialized(oracle()->StoreIsUninitialized(id));
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if (!expr->IsUninitialized()) {
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if (prop->key()->IsPropertyName()) {
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Literal* lit_key = prop->key()->AsLiteral();
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DCHECK(lit_key != NULL && lit_key->value()->IsString());
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Handle<String> name = Handle<String>::cast(lit_key->value());
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oracle()->AssignmentReceiverTypes(id, name, expr->GetReceiverTypes());
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} else {
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KeyedAccessStoreMode store_mode;
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IcCheckType key_type;
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oracle()->KeyedAssignmentReceiverTypes(id, expr->GetReceiverTypes(),
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&store_mode, &key_type);
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expr->set_store_mode(store_mode);
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expr->set_key_type(key_type);
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}
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}
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}
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Expression* rhs =
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expr->is_compound() ? expr->binary_operation() : expr->value();
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RECURSE(Visit(expr->target()));
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RECURSE(Visit(rhs));
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NarrowType(expr, rhs->bounds());
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VariableProxy* proxy = expr->target()->AsVariableProxy();
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if (proxy != NULL && proxy->var()->IsStackAllocated()) {
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store_.Seq(variable_index(proxy->var()), Effect(expr->bounds()));
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}
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}
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void AstTyper::VisitYield(Yield* expr) {
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RECURSE(Visit(expr->generator_object()));
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RECURSE(Visit(expr->expression()));
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// We don't know anything about the result type.
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}
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void AstTyper::VisitThrow(Throw* expr) {
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RECURSE(Visit(expr->exception()));
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// TODO(rossberg): is it worth having a non-termination effect?
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NarrowType(expr, Bounds(Type::None(zone())));
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}
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void AstTyper::VisitProperty(Property* expr) {
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// Collect type feedback.
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FeedbackVectorICSlot slot(FeedbackVectorICSlot::Invalid());
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TypeFeedbackId id(TypeFeedbackId::None());
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if (FLAG_vector_ics) {
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slot = expr->PropertyFeedbackSlot();
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expr->set_is_uninitialized(oracle()->LoadIsUninitialized(slot));
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} else {
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id = expr->PropertyFeedbackId();
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expr->set_is_uninitialized(oracle()->LoadIsUninitialized(id));
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}
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if (!expr->IsUninitialized()) {
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if (expr->key()->IsPropertyName()) {
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Literal* lit_key = expr->key()->AsLiteral();
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DCHECK(lit_key != NULL && lit_key->value()->IsString());
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Handle<String> name = Handle<String>::cast(lit_key->value());
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if (FLAG_vector_ics) {
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oracle()->PropertyReceiverTypes(slot, name, expr->GetReceiverTypes());
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} else {
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oracle()->PropertyReceiverTypes(id, name, expr->GetReceiverTypes());
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}
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} else {
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bool is_string;
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IcCheckType key_type;
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if (FLAG_vector_ics) {
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oracle()->KeyedPropertyReceiverTypes(slot, expr->GetReceiverTypes(),
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&is_string, &key_type);
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} else {
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oracle()->KeyedPropertyReceiverTypes(id, expr->GetReceiverTypes(),
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&is_string, &key_type);
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}
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expr->set_is_string_access(is_string);
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expr->set_key_type(key_type);
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}
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}
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|
RECURSE(Visit(expr->obj()));
|
|
RECURSE(Visit(expr->key()));
|
|
|
|
// We don't know anything about the result type.
|
|
}
|
|
|
|
|
|
void AstTyper::VisitCall(Call* expr) {
|
|
// Collect type feedback.
|
|
RECURSE(Visit(expr->expression()));
|
|
bool is_uninitialized = true;
|
|
if (expr->IsUsingCallFeedbackICSlot(isolate())) {
|
|
FeedbackVectorICSlot slot = expr->CallFeedbackICSlot();
|
|
is_uninitialized = oracle()->CallIsUninitialized(slot);
|
|
if (!expr->expression()->IsProperty() &&
|
|
oracle()->CallIsMonomorphic(slot)) {
|
|
expr->set_target(oracle()->GetCallTarget(slot));
|
|
Handle<AllocationSite> site = oracle()->GetCallAllocationSite(slot);
|
|
expr->set_allocation_site(site);
|
|
}
|
|
}
|
|
|
|
expr->set_is_uninitialized(is_uninitialized);
|
|
|
|
ZoneList<Expression*>* args = expr->arguments();
|
|
for (int i = 0; i < args->length(); ++i) {
|
|
Expression* arg = args->at(i);
|
|
RECURSE(Visit(arg));
|
|
}
|
|
|
|
VariableProxy* proxy = expr->expression()->AsVariableProxy();
|
|
if (proxy != NULL && proxy->var()->is_possibly_eval(isolate())) {
|
|
store_.Forget(); // Eval could do whatever to local variables.
|
|
}
|
|
|
|
// We don't know anything about the result type.
|
|
}
|
|
|
|
|
|
void AstTyper::VisitCallNew(CallNew* expr) {
|
|
// Collect type feedback.
|
|
FeedbackVectorSlot allocation_site_feedback_slot =
|
|
FLAG_pretenuring_call_new ? expr->AllocationSiteFeedbackSlot()
|
|
: expr->CallNewFeedbackSlot();
|
|
expr->set_allocation_site(
|
|
oracle()->GetCallNewAllocationSite(allocation_site_feedback_slot));
|
|
bool monomorphic =
|
|
oracle()->CallNewIsMonomorphic(expr->CallNewFeedbackSlot());
|
|
expr->set_is_monomorphic(monomorphic);
|
|
if (monomorphic) {
|
|
expr->set_target(oracle()->GetCallNewTarget(expr->CallNewFeedbackSlot()));
|
|
}
|
|
|
|
RECURSE(Visit(expr->expression()));
|
|
ZoneList<Expression*>* args = expr->arguments();
|
|
for (int i = 0; i < args->length(); ++i) {
|
|
Expression* arg = args->at(i);
|
|
RECURSE(Visit(arg));
|
|
}
|
|
|
|
NarrowType(expr, Bounds(Type::None(zone()), Type::Receiver(zone())));
|
|
}
|
|
|
|
|
|
void AstTyper::VisitCallRuntime(CallRuntime* expr) {
|
|
ZoneList<Expression*>* args = expr->arguments();
|
|
for (int i = 0; i < args->length(); ++i) {
|
|
Expression* arg = args->at(i);
|
|
RECURSE(Visit(arg));
|
|
}
|
|
|
|
// We don't know anything about the result type.
|
|
}
|
|
|
|
|
|
void AstTyper::VisitUnaryOperation(UnaryOperation* expr) {
|
|
// Collect type feedback.
|
|
if (expr->op() == Token::NOT) {
|
|
// TODO(rossberg): only do in test or value context.
|
|
expr->expression()->RecordToBooleanTypeFeedback(oracle());
|
|
}
|
|
|
|
RECURSE(Visit(expr->expression()));
|
|
|
|
switch (expr->op()) {
|
|
case Token::NOT:
|
|
case Token::DELETE:
|
|
NarrowType(expr, Bounds(Type::Boolean(zone())));
|
|
break;
|
|
case Token::VOID:
|
|
NarrowType(expr, Bounds(Type::Undefined(zone())));
|
|
break;
|
|
case Token::TYPEOF:
|
|
NarrowType(expr, Bounds(Type::InternalizedString(zone())));
|
|
break;
|
|
default:
|
|
UNREACHABLE();
|
|
}
|
|
}
|
|
|
|
|
|
void AstTyper::VisitCountOperation(CountOperation* expr) {
|
|
// Collect type feedback.
|
|
TypeFeedbackId store_id = expr->CountStoreFeedbackId();
|
|
KeyedAccessStoreMode store_mode;
|
|
IcCheckType key_type;
|
|
oracle()->GetStoreModeAndKeyType(store_id, &store_mode, &key_type);
|
|
expr->set_store_mode(store_mode);
|
|
expr->set_key_type(key_type);
|
|
oracle()->CountReceiverTypes(store_id, expr->GetReceiverTypes());
|
|
expr->set_type(oracle()->CountType(expr->CountBinOpFeedbackId()));
|
|
// TODO(rossberg): merge the count type with the generic expression type.
|
|
|
|
RECURSE(Visit(expr->expression()));
|
|
|
|
NarrowType(expr, Bounds(Type::SignedSmall(zone()), Type::Number(zone())));
|
|
|
|
VariableProxy* proxy = expr->expression()->AsVariableProxy();
|
|
if (proxy != NULL && proxy->var()->IsStackAllocated()) {
|
|
store_.Seq(variable_index(proxy->var()), Effect(expr->bounds()));
|
|
}
|
|
}
|
|
|
|
|
|
void AstTyper::VisitBinaryOperation(BinaryOperation* expr) {
|
|
// Collect type feedback.
|
|
Type* type;
|
|
Type* left_type;
|
|
Type* right_type;
|
|
Maybe<int> fixed_right_arg = Nothing<int>();
|
|
Handle<AllocationSite> allocation_site;
|
|
oracle()->BinaryType(expr->BinaryOperationFeedbackId(),
|
|
&left_type, &right_type, &type, &fixed_right_arg,
|
|
&allocation_site, expr->op());
|
|
NarrowLowerType(expr, type);
|
|
NarrowLowerType(expr->left(), left_type);
|
|
NarrowLowerType(expr->right(), right_type);
|
|
expr->set_allocation_site(allocation_site);
|
|
expr->set_fixed_right_arg(fixed_right_arg);
|
|
if (expr->op() == Token::OR || expr->op() == Token::AND) {
|
|
expr->left()->RecordToBooleanTypeFeedback(oracle());
|
|
}
|
|
|
|
switch (expr->op()) {
|
|
case Token::COMMA:
|
|
RECURSE(Visit(expr->left()));
|
|
RECURSE(Visit(expr->right()));
|
|
NarrowType(expr, expr->right()->bounds());
|
|
break;
|
|
case Token::OR:
|
|
case Token::AND: {
|
|
Effects left_effects = EnterEffects();
|
|
RECURSE(Visit(expr->left()));
|
|
ExitEffects();
|
|
Effects right_effects = EnterEffects();
|
|
RECURSE(Visit(expr->right()));
|
|
ExitEffects();
|
|
left_effects.Alt(right_effects);
|
|
store_.Seq(left_effects);
|
|
|
|
NarrowType(expr, Bounds::Either(
|
|
expr->left()->bounds(), expr->right()->bounds(), zone()));
|
|
break;
|
|
}
|
|
case Token::BIT_OR:
|
|
case Token::BIT_AND: {
|
|
RECURSE(Visit(expr->left()));
|
|
RECURSE(Visit(expr->right()));
|
|
Type* upper = Type::Union(
|
|
expr->left()->bounds().upper, expr->right()->bounds().upper, zone());
|
|
if (!upper->Is(Type::Signed32())) upper = Type::Signed32(zone());
|
|
Type* lower = Type::Intersect(Type::SignedSmall(zone()), upper, zone());
|
|
NarrowType(expr, Bounds(lower, upper));
|
|
break;
|
|
}
|
|
case Token::BIT_XOR:
|
|
case Token::SHL:
|
|
case Token::SAR:
|
|
RECURSE(Visit(expr->left()));
|
|
RECURSE(Visit(expr->right()));
|
|
NarrowType(expr,
|
|
Bounds(Type::SignedSmall(zone()), Type::Signed32(zone())));
|
|
break;
|
|
case Token::SHR:
|
|
RECURSE(Visit(expr->left()));
|
|
RECURSE(Visit(expr->right()));
|
|
// TODO(rossberg): The upper bound would be Unsigned32, but since there
|
|
// is no 'positive Smi' type for the lower bound, we use the smallest
|
|
// union of Smi and Unsigned32 as upper bound instead.
|
|
NarrowType(expr, Bounds(Type::SignedSmall(zone()), Type::Number(zone())));
|
|
break;
|
|
case Token::ADD: {
|
|
RECURSE(Visit(expr->left()));
|
|
RECURSE(Visit(expr->right()));
|
|
Bounds l = expr->left()->bounds();
|
|
Bounds r = expr->right()->bounds();
|
|
Type* lower =
|
|
!l.lower->IsInhabited() || !r.lower->IsInhabited() ?
|
|
Type::None(zone()) :
|
|
l.lower->Is(Type::String()) || r.lower->Is(Type::String()) ?
|
|
Type::String(zone()) :
|
|
l.lower->Is(Type::Number()) && r.lower->Is(Type::Number()) ?
|
|
Type::SignedSmall(zone()) : Type::None(zone());
|
|
Type* upper =
|
|
l.upper->Is(Type::String()) || r.upper->Is(Type::String()) ?
|
|
Type::String(zone()) :
|
|
l.upper->Is(Type::Number()) && r.upper->Is(Type::Number()) ?
|
|
Type::Number(zone()) : Type::NumberOrString(zone());
|
|
NarrowType(expr, Bounds(lower, upper));
|
|
break;
|
|
}
|
|
case Token::SUB:
|
|
case Token::MUL:
|
|
case Token::DIV:
|
|
case Token::MOD:
|
|
RECURSE(Visit(expr->left()));
|
|
RECURSE(Visit(expr->right()));
|
|
NarrowType(expr, Bounds(Type::SignedSmall(zone()), Type::Number(zone())));
|
|
break;
|
|
default:
|
|
UNREACHABLE();
|
|
}
|
|
}
|
|
|
|
|
|
void AstTyper::VisitCompareOperation(CompareOperation* expr) {
|
|
// Collect type feedback.
|
|
Type* left_type;
|
|
Type* right_type;
|
|
Type* combined_type;
|
|
oracle()->CompareType(expr->CompareOperationFeedbackId(),
|
|
&left_type, &right_type, &combined_type);
|
|
NarrowLowerType(expr->left(), left_type);
|
|
NarrowLowerType(expr->right(), right_type);
|
|
expr->set_combined_type(combined_type);
|
|
|
|
RECURSE(Visit(expr->left()));
|
|
RECURSE(Visit(expr->right()));
|
|
|
|
NarrowType(expr, Bounds(Type::Boolean(zone())));
|
|
}
|
|
|
|
|
|
void AstTyper::VisitThisFunction(ThisFunction* expr) {
|
|
}
|
|
|
|
|
|
void AstTyper::VisitSuperReference(SuperReference* expr) {}
|
|
|
|
|
|
void AstTyper::VisitDeclarations(ZoneList<Declaration*>* decls) {
|
|
for (int i = 0; i < decls->length(); ++i) {
|
|
Declaration* decl = decls->at(i);
|
|
RECURSE(Visit(decl));
|
|
}
|
|
}
|
|
|
|
|
|
void AstTyper::VisitVariableDeclaration(VariableDeclaration* declaration) {
|
|
}
|
|
|
|
|
|
void AstTyper::VisitFunctionDeclaration(FunctionDeclaration* declaration) {
|
|
RECURSE(Visit(declaration->fun()));
|
|
}
|
|
|
|
|
|
void AstTyper::VisitModuleDeclaration(ModuleDeclaration* declaration) {
|
|
RECURSE(Visit(declaration->module()));
|
|
}
|
|
|
|
|
|
void AstTyper::VisitImportDeclaration(ImportDeclaration* declaration) {
|
|
}
|
|
|
|
|
|
void AstTyper::VisitExportDeclaration(ExportDeclaration* declaration) {
|
|
}
|
|
|
|
|
|
void AstTyper::VisitModuleLiteral(ModuleLiteral* module) {
|
|
RECURSE(Visit(module->body()));
|
|
}
|
|
|
|
|
|
void AstTyper::VisitModulePath(ModulePath* module) {
|
|
RECURSE(Visit(module->module()));
|
|
}
|
|
|
|
|
|
void AstTyper::VisitModuleUrl(ModuleUrl* module) {
|
|
}
|
|
|
|
|
|
void AstTyper::VisitModuleStatement(ModuleStatement* stmt) {
|
|
RECURSE(Visit(stmt->body()));
|
|
}
|
|
|
|
|
|
} } // namespace v8::internal
|