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sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00001// Copyright 2009 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 "codegen-inl.h"
31#include "compiler.h"
32#include "full-codegen.h"
sgjesse@chromium.org833cdd72010-02-26 10:06:16 +000033#include "scopes.h"
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +000034#include "stub-cache.h"
35#include "debug.h"
ager@chromium.org5c838252010-02-19 08:53:10 +000036#include "liveedit.h"
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +000037
38namespace v8 {
39namespace internal {
40
41#define BAILOUT(reason) \
42 do { \
43 if (FLAG_trace_bailout) { \
44 PrintF("%s\n", reason); \
45 } \
46 has_supported_syntax_ = false; \
47 return; \
48 } while (false)
49
50
51#define CHECK_BAILOUT \
52 do { \
53 if (!has_supported_syntax_) return; \
54 } while (false)
55
56
57void FullCodeGenSyntaxChecker::Check(FunctionLiteral* fun) {
58 Scope* scope = fun->scope();
59 VisitDeclarations(scope->declarations());
60 CHECK_BAILOUT;
61
62 VisitStatements(fun->body());
63}
64
65
66void FullCodeGenSyntaxChecker::VisitDeclarations(
67 ZoneList<Declaration*>* decls) {
68 for (int i = 0; i < decls->length(); i++) {
69 Visit(decls->at(i));
70 CHECK_BAILOUT;
71 }
72}
73
74
75void FullCodeGenSyntaxChecker::VisitStatements(ZoneList<Statement*>* stmts) {
76 for (int i = 0, len = stmts->length(); i < len; i++) {
77 Visit(stmts->at(i));
78 CHECK_BAILOUT;
79 }
80}
81
82
83void FullCodeGenSyntaxChecker::VisitDeclaration(Declaration* decl) {
84 Property* prop = decl->proxy()->AsProperty();
85 if (prop != NULL) {
86 Visit(prop->obj());
87 Visit(prop->key());
88 }
89
90 if (decl->fun() != NULL) {
91 Visit(decl->fun());
92 }
93}
94
95
96void FullCodeGenSyntaxChecker::VisitBlock(Block* stmt) {
97 VisitStatements(stmt->statements());
98}
99
100
101void FullCodeGenSyntaxChecker::VisitExpressionStatement(
102 ExpressionStatement* stmt) {
103 Visit(stmt->expression());
104}
105
106
107void FullCodeGenSyntaxChecker::VisitEmptyStatement(EmptyStatement* stmt) {
108 // Supported.
109}
110
111
112void FullCodeGenSyntaxChecker::VisitIfStatement(IfStatement* stmt) {
113 Visit(stmt->condition());
114 CHECK_BAILOUT;
115 Visit(stmt->then_statement());
116 CHECK_BAILOUT;
117 Visit(stmt->else_statement());
118}
119
120
121void FullCodeGenSyntaxChecker::VisitContinueStatement(ContinueStatement* stmt) {
122 // Supported.
123}
124
125
126void FullCodeGenSyntaxChecker::VisitBreakStatement(BreakStatement* stmt) {
127 // Supported.
128}
129
130
131void FullCodeGenSyntaxChecker::VisitReturnStatement(ReturnStatement* stmt) {
132 Visit(stmt->expression());
133}
134
135
136void FullCodeGenSyntaxChecker::VisitWithEnterStatement(
137 WithEnterStatement* stmt) {
138 Visit(stmt->expression());
139}
140
141
142void FullCodeGenSyntaxChecker::VisitWithExitStatement(WithExitStatement* stmt) {
143 // Supported.
144}
145
146
147void FullCodeGenSyntaxChecker::VisitSwitchStatement(SwitchStatement* stmt) {
148 BAILOUT("SwitchStatement");
149}
150
151
152void FullCodeGenSyntaxChecker::VisitDoWhileStatement(DoWhileStatement* stmt) {
153 Visit(stmt->cond());
154 CHECK_BAILOUT;
155 Visit(stmt->body());
156}
157
158
159void FullCodeGenSyntaxChecker::VisitWhileStatement(WhileStatement* stmt) {
160 Visit(stmt->cond());
161 CHECK_BAILOUT;
162 Visit(stmt->body());
163}
164
165
166void FullCodeGenSyntaxChecker::VisitForStatement(ForStatement* stmt) {
167 if (!FLAG_always_full_compiler) BAILOUT("ForStatement");
168 if (stmt->init() != NULL) {
169 Visit(stmt->init());
170 CHECK_BAILOUT;
171 }
172 if (stmt->cond() != NULL) {
173 Visit(stmt->cond());
174 CHECK_BAILOUT;
175 }
176 Visit(stmt->body());
177 if (stmt->next() != NULL) {
178 CHECK_BAILOUT;
179 Visit(stmt->next());
180 }
181}
182
183
184void FullCodeGenSyntaxChecker::VisitForInStatement(ForInStatement* stmt) {
185 BAILOUT("ForInStatement");
186}
187
188
189void FullCodeGenSyntaxChecker::VisitTryCatchStatement(TryCatchStatement* stmt) {
190 Visit(stmt->try_block());
191 CHECK_BAILOUT;
192 Visit(stmt->catch_block());
193}
194
195
196void FullCodeGenSyntaxChecker::VisitTryFinallyStatement(
197 TryFinallyStatement* stmt) {
198 Visit(stmt->try_block());
199 CHECK_BAILOUT;
200 Visit(stmt->finally_block());
201}
202
203
204void FullCodeGenSyntaxChecker::VisitDebuggerStatement(
205 DebuggerStatement* stmt) {
206 // Supported.
207}
208
209
210void FullCodeGenSyntaxChecker::VisitFunctionLiteral(FunctionLiteral* expr) {
211 // Supported.
212}
213
214
kmillikin@chromium.org5d8f0e62010-03-24 08:21:20 +0000215void FullCodeGenSyntaxChecker::VisitSharedFunctionInfoLiteral(
216 SharedFunctionInfoLiteral* expr) {
217 BAILOUT("SharedFunctionInfoLiteral");
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000218}
219
220
221void FullCodeGenSyntaxChecker::VisitConditional(Conditional* expr) {
222 Visit(expr->condition());
223 CHECK_BAILOUT;
224 Visit(expr->then_expression());
225 CHECK_BAILOUT;
226 Visit(expr->else_expression());
227}
228
229
230void FullCodeGenSyntaxChecker::VisitSlot(Slot* expr) {
231 UNREACHABLE();
232}
233
234
235void FullCodeGenSyntaxChecker::VisitVariableProxy(VariableProxy* expr) {
236 // Supported.
237}
238
239
240void FullCodeGenSyntaxChecker::VisitLiteral(Literal* expr) {
241 // Supported.
242}
243
244
245void FullCodeGenSyntaxChecker::VisitRegExpLiteral(RegExpLiteral* expr) {
246 // Supported.
247}
248
249
250void FullCodeGenSyntaxChecker::VisitObjectLiteral(ObjectLiteral* expr) {
251 ZoneList<ObjectLiteral::Property*>* properties = expr->properties();
252
253 for (int i = 0, len = properties->length(); i < len; i++) {
254 ObjectLiteral::Property* property = properties->at(i);
255 if (property->IsCompileTimeValue()) continue;
256 Visit(property->key());
257 CHECK_BAILOUT;
258 Visit(property->value());
259 CHECK_BAILOUT;
260 }
261}
262
263
264void FullCodeGenSyntaxChecker::VisitArrayLiteral(ArrayLiteral* expr) {
265 ZoneList<Expression*>* subexprs = expr->values();
266 for (int i = 0, len = subexprs->length(); i < len; i++) {
267 Expression* subexpr = subexprs->at(i);
268 if (subexpr->AsLiteral() != NULL) continue;
269 if (CompileTimeValue::IsCompileTimeValue(subexpr)) continue;
270 Visit(subexpr);
271 CHECK_BAILOUT;
272 }
273}
274
275
276void FullCodeGenSyntaxChecker::VisitCatchExtensionObject(
277 CatchExtensionObject* expr) {
278 Visit(expr->key());
279 CHECK_BAILOUT;
280 Visit(expr->value());
281}
282
283
284void FullCodeGenSyntaxChecker::VisitAssignment(Assignment* expr) {
285 Token::Value op = expr->op();
286 if (op == Token::INIT_CONST) BAILOUT("initialize constant");
287
288 Variable* var = expr->target()->AsVariableProxy()->AsVariable();
289 Property* prop = expr->target()->AsProperty();
290 ASSERT(var == NULL || prop == NULL);
291 if (var != NULL) {
292 if (var->mode() == Variable::CONST) BAILOUT("Assignment to const");
293 // All other variables are supported.
294 } else if (prop != NULL) {
295 Visit(prop->obj());
296 CHECK_BAILOUT;
297 Visit(prop->key());
298 CHECK_BAILOUT;
299 } else {
300 // This is a throw reference error.
301 BAILOUT("non-variable/non-property assignment");
302 }
303
304 Visit(expr->value());
305}
306
307
308void FullCodeGenSyntaxChecker::VisitThrow(Throw* expr) {
309 Visit(expr->exception());
310}
311
312
313void FullCodeGenSyntaxChecker::VisitProperty(Property* expr) {
314 Visit(expr->obj());
315 CHECK_BAILOUT;
316 Visit(expr->key());
317}
318
319
320void FullCodeGenSyntaxChecker::VisitCall(Call* expr) {
321 Expression* fun = expr->expression();
322 ZoneList<Expression*>* args = expr->arguments();
323 Variable* var = fun->AsVariableProxy()->AsVariable();
324
325 // Check for supported calls
326 if (var != NULL && var->is_possibly_eval()) {
327 BAILOUT("call to the identifier 'eval'");
328 } else if (var != NULL && !var->is_this() && var->is_global()) {
329 // Calls to global variables are supported.
330 } else if (var != NULL && var->slot() != NULL &&
331 var->slot()->type() == Slot::LOOKUP) {
332 BAILOUT("call to a lookup slot");
333 } else if (fun->AsProperty() != NULL) {
334 Property* prop = fun->AsProperty();
335 Visit(prop->obj());
336 CHECK_BAILOUT;
337 Visit(prop->key());
338 CHECK_BAILOUT;
339 } else {
340 // Otherwise the call is supported if the function expression is.
341 Visit(fun);
342 }
343 // Check all arguments to the call.
344 for (int i = 0; i < args->length(); i++) {
345 Visit(args->at(i));
346 CHECK_BAILOUT;
347 }
348}
349
350
351void FullCodeGenSyntaxChecker::VisitCallNew(CallNew* expr) {
352 Visit(expr->expression());
353 CHECK_BAILOUT;
354 ZoneList<Expression*>* args = expr->arguments();
355 // Check all arguments to the call
356 for (int i = 0; i < args->length(); i++) {
357 Visit(args->at(i));
358 CHECK_BAILOUT;
359 }
360}
361
362
363void FullCodeGenSyntaxChecker::VisitCallRuntime(CallRuntime* expr) {
364 // Check for inline runtime call
365 if (expr->name()->Get(0) == '_' &&
366 CodeGenerator::FindInlineRuntimeLUT(expr->name()) != NULL) {
367 BAILOUT("inlined runtime call");
368 }
369 // Check all arguments to the call. (Relies on TEMP meaning STACK.)
370 for (int i = 0; i < expr->arguments()->length(); i++) {
371 Visit(expr->arguments()->at(i));
372 CHECK_BAILOUT;
373 }
374}
375
376
377void FullCodeGenSyntaxChecker::VisitUnaryOperation(UnaryOperation* expr) {
378 switch (expr->op()) {
379 case Token::ADD:
380 case Token::BIT_NOT:
381 case Token::NOT:
382 case Token::SUB:
383 case Token::TYPEOF:
384 case Token::VOID:
385 Visit(expr->expression());
386 break;
387 case Token::DELETE:
388 BAILOUT("UnaryOperation: DELETE");
389 default:
390 UNREACHABLE();
391 }
392}
393
394
395void FullCodeGenSyntaxChecker::VisitCountOperation(CountOperation* expr) {
396 Variable* var = expr->expression()->AsVariableProxy()->AsVariable();
397 Property* prop = expr->expression()->AsProperty();
398 ASSERT(var == NULL || prop == NULL);
399 if (var != NULL) {
400 // All global variables are supported.
401 if (!var->is_global()) {
402 ASSERT(var->slot() != NULL);
403 Slot::Type type = var->slot()->type();
404 if (type == Slot::LOOKUP) {
405 BAILOUT("CountOperation with lookup slot");
406 }
407 }
408 } else if (prop != NULL) {
409 Visit(prop->obj());
410 CHECK_BAILOUT;
411 Visit(prop->key());
412 CHECK_BAILOUT;
413 } else {
414 // This is a throw reference error.
415 BAILOUT("CountOperation non-variable/non-property expression");
416 }
417}
418
419
420void FullCodeGenSyntaxChecker::VisitBinaryOperation(BinaryOperation* expr) {
421 Visit(expr->left());
422 CHECK_BAILOUT;
423 Visit(expr->right());
424}
425
426
427void FullCodeGenSyntaxChecker::VisitCompareOperation(CompareOperation* expr) {
428 Visit(expr->left());
429 CHECK_BAILOUT;
430 Visit(expr->right());
431}
432
433
434void FullCodeGenSyntaxChecker::VisitThisFunction(ThisFunction* expr) {
435 // Supported.
436}
437
438#undef BAILOUT
439#undef CHECK_BAILOUT
440
441
442#define __ ACCESS_MASM(masm())
443
ager@chromium.org5c838252010-02-19 08:53:10 +0000444Handle<Code> FullCodeGenerator::MakeCode(CompilationInfo* info) {
445 Handle<Script> script = info->script();
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000446 if (!script->IsUndefined() && !script->source()->IsUndefined()) {
447 int len = String::cast(script->source())->length();
448 Counters::total_full_codegen_source_size.Increment(len);
449 }
ager@chromium.org5c838252010-02-19 08:53:10 +0000450 CodeGenerator::MakeCodePrologue(info);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000451 const int kInitialBufferSize = 4 * KB;
452 MacroAssembler masm(NULL, kInitialBufferSize);
ager@chromium.org5c838252010-02-19 08:53:10 +0000453
454 FullCodeGenerator cgen(&masm);
455 cgen.Generate(info, PRIMARY);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000456 if (cgen.HasStackOverflow()) {
457 ASSERT(!Top::has_pending_exception());
458 return Handle<Code>::null();
459 }
460 Code::Flags flags = Code::ComputeFlags(Code::FUNCTION, NOT_IN_LOOP);
kmillikin@chromium.org4111b802010-05-03 10:34:42 +0000461 return CodeGenerator::MakeCodeEpilogue(&masm, flags, info);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000462}
463
464
465int FullCodeGenerator::SlotOffset(Slot* slot) {
466 ASSERT(slot != NULL);
467 // Offset is negative because higher indexes are at lower addresses.
468 int offset = -slot->index() * kPointerSize;
469 // Adjust by a (parameter or local) base offset.
470 switch (slot->type()) {
471 case Slot::PARAMETER:
ager@chromium.org5c838252010-02-19 08:53:10 +0000472 offset += (scope()->num_parameters() + 1) * kPointerSize;
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000473 break;
474 case Slot::LOCAL:
475 offset += JavaScriptFrameConstants::kLocal0Offset;
476 break;
477 case Slot::CONTEXT:
478 case Slot::LOOKUP:
479 UNREACHABLE();
480 }
481 return offset;
482}
483
484
485void FullCodeGenerator::VisitDeclarations(
486 ZoneList<Declaration*>* declarations) {
487 int length = declarations->length();
488 int globals = 0;
489 for (int i = 0; i < length; i++) {
490 Declaration* decl = declarations->at(i);
491 Variable* var = decl->proxy()->var();
492 Slot* slot = var->slot();
493
494 // If it was not possible to allocate the variable at compile
495 // time, we need to "declare" it at runtime to make sure it
496 // actually exists in the local context.
497 if ((slot != NULL && slot->type() == Slot::LOOKUP) || !var->is_global()) {
498 VisitDeclaration(decl);
499 } else {
500 // Count global variables and functions for later processing
501 globals++;
502 }
503 }
504
505 // Compute array of global variable and function declarations.
506 // Do nothing in case of no declared global functions or variables.
507 if (globals > 0) {
508 Handle<FixedArray> array = Factory::NewFixedArray(2 * globals, TENURED);
509 for (int j = 0, i = 0; i < length; i++) {
510 Declaration* decl = declarations->at(i);
511 Variable* var = decl->proxy()->var();
512 Slot* slot = var->slot();
513
514 if ((slot == NULL || slot->type() != Slot::LOOKUP) && var->is_global()) {
515 array->set(j++, *(var->name()));
516 if (decl->fun() == NULL) {
517 if (var->mode() == Variable::CONST) {
518 // In case this is const property use the hole.
519 array->set_the_hole(j++);
520 } else {
521 array->set_undefined(j++);
522 }
523 } else {
kmillikin@chromium.org5d8f0e62010-03-24 08:21:20 +0000524 Handle<SharedFunctionInfo> function =
525 Compiler::BuildFunctionInfo(decl->fun(), script(), this);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000526 // Check for stack-overflow exception.
527 if (HasStackOverflow()) return;
528 array->set(j++, *function);
529 }
530 }
531 }
532 // Invoke the platform-dependent code generator to do the actual
533 // declaration the global variables and functions.
534 DeclareGlobals(array);
535 }
536}
537
538
539void FullCodeGenerator::SetFunctionPosition(FunctionLiteral* fun) {
540 if (FLAG_debug_info) {
541 CodeGenerator::RecordPositions(masm_, fun->start_position());
542 }
543}
544
545
546void FullCodeGenerator::SetReturnPosition(FunctionLiteral* fun) {
547 if (FLAG_debug_info) {
548 CodeGenerator::RecordPositions(masm_, fun->end_position());
549 }
550}
551
552
553void FullCodeGenerator::SetStatementPosition(Statement* stmt) {
554 if (FLAG_debug_info) {
555 CodeGenerator::RecordPositions(masm_, stmt->statement_pos());
556 }
557}
558
559
560void FullCodeGenerator::SetStatementPosition(int pos) {
561 if (FLAG_debug_info) {
562 CodeGenerator::RecordPositions(masm_, pos);
563 }
564}
565
566
567void FullCodeGenerator::SetSourcePosition(int pos) {
568 if (FLAG_debug_info && pos != RelocInfo::kNoPosition) {
569 masm_->RecordPosition(pos);
570 }
571}
572
573
574void FullCodeGenerator::EmitLogicalOperation(BinaryOperation* expr) {
575 Label eval_right, done;
576
577 // Set up the appropriate context for the left subexpression based
578 // on the operation and our own context. Initially assume we can
579 // inherit both true and false labels from our context.
580 if (expr->op() == Token::OR) {
581 switch (context_) {
582 case Expression::kUninitialized:
583 UNREACHABLE();
584 case Expression::kEffect:
585 VisitForControl(expr->left(), &done, &eval_right);
586 break;
587 case Expression::kValue:
588 VisitForValueControl(expr->left(),
589 location_,
590 &done,
591 &eval_right);
592 break;
593 case Expression::kTest:
594 VisitForControl(expr->left(), true_label_, &eval_right);
595 break;
596 case Expression::kValueTest:
597 VisitForValueControl(expr->left(),
598 location_,
599 true_label_,
600 &eval_right);
601 break;
602 case Expression::kTestValue:
603 VisitForControl(expr->left(), true_label_, &eval_right);
604 break;
605 }
606 } else {
607 ASSERT_EQ(Token::AND, expr->op());
608 switch (context_) {
609 case Expression::kUninitialized:
610 UNREACHABLE();
611 case Expression::kEffect:
612 VisitForControl(expr->left(), &eval_right, &done);
613 break;
614 case Expression::kValue:
615 VisitForControlValue(expr->left(),
616 location_,
617 &eval_right,
618 &done);
619 break;
620 case Expression::kTest:
621 VisitForControl(expr->left(), &eval_right, false_label_);
622 break;
623 case Expression::kValueTest:
624 VisitForControl(expr->left(), &eval_right, false_label_);
625 break;
626 case Expression::kTestValue:
627 VisitForControlValue(expr->left(),
628 location_,
629 &eval_right,
630 false_label_);
631 break;
632 }
633 }
634
635 __ bind(&eval_right);
636 Visit(expr->right());
637
638 __ bind(&done);
639}
640
641
642void FullCodeGenerator::VisitBlock(Block* stmt) {
643 Comment cmnt(masm_, "[ Block");
644 Breakable nested_statement(this, stmt);
645 SetStatementPosition(stmt);
646 VisitStatements(stmt->statements());
647 __ bind(nested_statement.break_target());
648}
649
650
651void FullCodeGenerator::VisitExpressionStatement(ExpressionStatement* stmt) {
652 Comment cmnt(masm_, "[ ExpressionStatement");
653 SetStatementPosition(stmt);
654 VisitForEffect(stmt->expression());
655}
656
657
658void FullCodeGenerator::VisitEmptyStatement(EmptyStatement* stmt) {
659 Comment cmnt(masm_, "[ EmptyStatement");
660 SetStatementPosition(stmt);
661}
662
663
664void FullCodeGenerator::VisitIfStatement(IfStatement* stmt) {
665 Comment cmnt(masm_, "[ IfStatement");
666 SetStatementPosition(stmt);
667 Label then_part, else_part, done;
668
669 // Do not worry about optimizing for empty then or else bodies.
670 VisitForControl(stmt->condition(), &then_part, &else_part);
671
672 __ bind(&then_part);
673 Visit(stmt->then_statement());
674 __ jmp(&done);
675
676 __ bind(&else_part);
677 Visit(stmt->else_statement());
678
679 __ bind(&done);
680}
681
682
683void FullCodeGenerator::VisitContinueStatement(ContinueStatement* stmt) {
684 Comment cmnt(masm_, "[ ContinueStatement");
685 SetStatementPosition(stmt);
686 NestedStatement* current = nesting_stack_;
687 int stack_depth = 0;
688 while (!current->IsContinueTarget(stmt->target())) {
689 stack_depth = current->Exit(stack_depth);
690 current = current->outer();
691 }
692 __ Drop(stack_depth);
693
694 Iteration* loop = current->AsIteration();
695 __ jmp(loop->continue_target());
696}
697
698
699void FullCodeGenerator::VisitBreakStatement(BreakStatement* stmt) {
700 Comment cmnt(masm_, "[ BreakStatement");
701 SetStatementPosition(stmt);
702 NestedStatement* current = nesting_stack_;
703 int stack_depth = 0;
704 while (!current->IsBreakTarget(stmt->target())) {
705 stack_depth = current->Exit(stack_depth);
706 current = current->outer();
707 }
708 __ Drop(stack_depth);
709
710 Breakable* target = current->AsBreakable();
711 __ jmp(target->break_target());
712}
713
714
715void FullCodeGenerator::VisitReturnStatement(ReturnStatement* stmt) {
716 Comment cmnt(masm_, "[ ReturnStatement");
717 SetStatementPosition(stmt);
718 Expression* expr = stmt->expression();
719 VisitForValue(expr, kAccumulator);
720
721 // Exit all nested statements.
722 NestedStatement* current = nesting_stack_;
723 int stack_depth = 0;
724 while (current != NULL) {
725 stack_depth = current->Exit(stack_depth);
726 current = current->outer();
727 }
728 __ Drop(stack_depth);
729
730 EmitReturnSequence(stmt->statement_pos());
731}
732
733
734void FullCodeGenerator::VisitWithEnterStatement(WithEnterStatement* stmt) {
735 Comment cmnt(masm_, "[ WithEnterStatement");
736 SetStatementPosition(stmt);
737
738 VisitForValue(stmt->expression(), kStack);
739 if (stmt->is_catch_block()) {
740 __ CallRuntime(Runtime::kPushCatchContext, 1);
741 } else {
742 __ CallRuntime(Runtime::kPushContext, 1);
743 }
744 // Both runtime calls return the new context in both the context and the
745 // result registers.
746
747 // Update local stack frame context field.
748 StoreToFrameField(StandardFrameConstants::kContextOffset, context_register());
749}
750
751
752void FullCodeGenerator::VisitWithExitStatement(WithExitStatement* stmt) {
753 Comment cmnt(masm_, "[ WithExitStatement");
754 SetStatementPosition(stmt);
755
756 // Pop context.
757 LoadContextField(context_register(), Context::PREVIOUS_INDEX);
758 // Update local stack frame context field.
759 StoreToFrameField(StandardFrameConstants::kContextOffset, context_register());
760}
761
762
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000763void FullCodeGenerator::VisitDoWhileStatement(DoWhileStatement* stmt) {
764 Comment cmnt(masm_, "[ DoWhileStatement");
765 SetStatementPosition(stmt);
766 Label body, stack_limit_hit, stack_check_success;
767
768 Iteration loop_statement(this, stmt);
769 increment_loop_depth();
770
771 __ bind(&body);
772 Visit(stmt->body());
773
774 // Check stack before looping.
775 __ StackLimitCheck(&stack_limit_hit);
776 __ bind(&stack_check_success);
777
778 __ bind(loop_statement.continue_target());
779 SetStatementPosition(stmt->condition_position());
780 VisitForControl(stmt->cond(), &body, loop_statement.break_target());
781
782 __ bind(&stack_limit_hit);
783 StackCheckStub stack_stub;
784 __ CallStub(&stack_stub);
785 __ jmp(&stack_check_success);
786
787 __ bind(loop_statement.break_target());
788
789 decrement_loop_depth();
790}
791
792
793void FullCodeGenerator::VisitWhileStatement(WhileStatement* stmt) {
794 Comment cmnt(masm_, "[ WhileStatement");
795 SetStatementPosition(stmt);
796 Label body, stack_limit_hit, stack_check_success;
797
798 Iteration loop_statement(this, stmt);
799 increment_loop_depth();
800
801 // Emit the test at the bottom of the loop.
802 __ jmp(loop_statement.continue_target());
803
804 __ bind(&body);
805 Visit(stmt->body());
806
807 __ bind(loop_statement.continue_target());
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +0000808
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000809 // Check stack before looping.
810 __ StackLimitCheck(&stack_limit_hit);
811 __ bind(&stack_check_success);
812
813 VisitForControl(stmt->cond(), &body, loop_statement.break_target());
814
815 __ bind(&stack_limit_hit);
816 StackCheckStub stack_stub;
817 __ CallStub(&stack_stub);
818 __ jmp(&stack_check_success);
819
820 __ bind(loop_statement.break_target());
821 decrement_loop_depth();
822}
823
824
825void FullCodeGenerator::VisitForStatement(ForStatement* stmt) {
826 Comment cmnt(masm_, "[ ForStatement");
827 SetStatementPosition(stmt);
828 Label test, body, stack_limit_hit, stack_check_success;
829
830 Iteration loop_statement(this, stmt);
831 if (stmt->init() != NULL) {
832 Visit(stmt->init());
833 }
834
835 increment_loop_depth();
836 // Emit the test at the bottom of the loop (even if empty).
837 __ jmp(&test);
838
839 __ bind(&body);
840 Visit(stmt->body());
841
842 __ bind(loop_statement.continue_target());
843
844 SetStatementPosition(stmt);
845 if (stmt->next() != NULL) {
846 Visit(stmt->next());
847 }
848
849 __ bind(&test);
850
851 // Check stack before looping.
852 __ StackLimitCheck(&stack_limit_hit);
853 __ bind(&stack_check_success);
854
855 if (stmt->cond() != NULL) {
856 VisitForControl(stmt->cond(), &body, loop_statement.break_target());
857 } else {
858 __ jmp(&body);
859 }
860
861 __ bind(&stack_limit_hit);
862 StackCheckStub stack_stub;
863 __ CallStub(&stack_stub);
864 __ jmp(&stack_check_success);
865
866 __ bind(loop_statement.break_target());
867 decrement_loop_depth();
868}
869
870
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000871void FullCodeGenerator::VisitTryCatchStatement(TryCatchStatement* stmt) {
872 Comment cmnt(masm_, "[ TryCatchStatement");
873 SetStatementPosition(stmt);
874 // The try block adds a handler to the exception handler chain
875 // before entering, and removes it again when exiting normally.
876 // If an exception is thrown during execution of the try block,
877 // control is passed to the handler, which also consumes the handler.
878 // At this point, the exception is in a register, and store it in
879 // the temporary local variable (prints as ".catch-var") before
880 // executing the catch block. The catch block has been rewritten
881 // to introduce a new scope to bind the catch variable and to remove
882 // that scope again afterwards.
883
884 Label try_handler_setup, catch_entry, done;
885 __ Call(&try_handler_setup);
886 // Try handler code, exception in result register.
887
888 // Store exception in local .catch variable before executing catch block.
889 {
890 // The catch variable is *always* a variable proxy for a local variable.
891 Variable* catch_var = stmt->catch_var()->AsVariableProxy()->AsVariable();
892 ASSERT_NOT_NULL(catch_var);
893 Slot* variable_slot = catch_var->slot();
894 ASSERT_NOT_NULL(variable_slot);
895 ASSERT_EQ(Slot::LOCAL, variable_slot->type());
896 StoreToFrameField(SlotOffset(variable_slot), result_register());
897 }
898
899 Visit(stmt->catch_block());
900 __ jmp(&done);
901
902 // Try block code. Sets up the exception handler chain.
903 __ bind(&try_handler_setup);
904 {
905 TryCatch try_block(this, &catch_entry);
906 __ PushTryHandler(IN_JAVASCRIPT, TRY_CATCH_HANDLER);
907 Visit(stmt->try_block());
908 __ PopTryHandler();
909 }
910 __ bind(&done);
911}
912
913
914void FullCodeGenerator::VisitTryFinallyStatement(TryFinallyStatement* stmt) {
915 Comment cmnt(masm_, "[ TryFinallyStatement");
916 SetStatementPosition(stmt);
917 // Try finally is compiled by setting up a try-handler on the stack while
918 // executing the try body, and removing it again afterwards.
919 //
920 // The try-finally construct can enter the finally block in three ways:
921 // 1. By exiting the try-block normally. This removes the try-handler and
922 // calls the finally block code before continuing.
923 // 2. By exiting the try-block with a function-local control flow transfer
924 // (break/continue/return). The site of the, e.g., break removes the
925 // try handler and calls the finally block code before continuing
926 // its outward control transfer.
927 // 3. by exiting the try-block with a thrown exception.
928 // This can happen in nested function calls. It traverses the try-handler
929 // chain and consumes the try-handler entry before jumping to the
930 // handler code. The handler code then calls the finally-block before
931 // rethrowing the exception.
932 //
933 // The finally block must assume a return address on top of the stack
934 // (or in the link register on ARM chips) and a value (return value or
935 // exception) in the result register (rax/eax/r0), both of which must
936 // be preserved. The return address isn't GC-safe, so it should be
937 // cooked before GC.
938 Label finally_entry;
939 Label try_handler_setup;
940
941 // Setup the try-handler chain. Use a call to
942 // Jump to try-handler setup and try-block code. Use call to put try-handler
943 // address on stack.
944 __ Call(&try_handler_setup);
945 // Try handler code. Return address of call is pushed on handler stack.
946 {
947 // This code is only executed during stack-handler traversal when an
948 // exception is thrown. The execption is in the result register, which
949 // is retained by the finally block.
950 // Call the finally block and then rethrow the exception.
951 __ Call(&finally_entry);
952 __ push(result_register());
953 __ CallRuntime(Runtime::kReThrow, 1);
954 }
955
956 __ bind(&finally_entry);
957 {
958 // Finally block implementation.
959 Finally finally_block(this);
960 EnterFinallyBlock();
961 Visit(stmt->finally_block());
962 ExitFinallyBlock(); // Return to the calling code.
963 }
964
965 __ bind(&try_handler_setup);
966 {
967 // Setup try handler (stack pointer registers).
968 TryFinally try_block(this, &finally_entry);
969 __ PushTryHandler(IN_JAVASCRIPT, TRY_FINALLY_HANDLER);
970 Visit(stmt->try_block());
971 __ PopTryHandler();
972 }
973 // Execute the finally block on the way out.
974 __ Call(&finally_entry);
975}
976
977
978void FullCodeGenerator::VisitDebuggerStatement(DebuggerStatement* stmt) {
979#ifdef ENABLE_DEBUGGER_SUPPORT
980 Comment cmnt(masm_, "[ DebuggerStatement");
981 SetStatementPosition(stmt);
982
ager@chromium.org5c838252010-02-19 08:53:10 +0000983 __ DebugBreak();
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000984 // Ignore the return value.
985#endif
986}
987
988
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000989void FullCodeGenerator::VisitConditional(Conditional* expr) {
990 Comment cmnt(masm_, "[ Conditional");
991 Label true_case, false_case, done;
992 VisitForControl(expr->condition(), &true_case, &false_case);
993
994 __ bind(&true_case);
995 Visit(expr->then_expression());
996 // If control flow falls through Visit, jump to done.
997 if (context_ == Expression::kEffect || context_ == Expression::kValue) {
998 __ jmp(&done);
999 }
1000
1001 __ bind(&false_case);
1002 Visit(expr->else_expression());
1003 // If control flow falls through Visit, merge it with true case here.
1004 if (context_ == Expression::kEffect || context_ == Expression::kValue) {
1005 __ bind(&done);
1006 }
1007}
1008
1009
1010void FullCodeGenerator::VisitSlot(Slot* expr) {
1011 // Slots do not appear directly in the AST.
1012 UNREACHABLE();
1013}
1014
1015
1016void FullCodeGenerator::VisitLiteral(Literal* expr) {
1017 Comment cmnt(masm_, "[ Literal");
1018 Apply(context_, expr);
1019}
1020
1021
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +00001022void FullCodeGenerator::VisitFunctionLiteral(FunctionLiteral* expr) {
1023 Comment cmnt(masm_, "[ FunctionLiteral");
1024
1025 // Build the function boilerplate and instantiate it.
1026 Handle<SharedFunctionInfo> function_info =
1027 Compiler::BuildFunctionInfo(expr, script(), this);
1028 if (HasStackOverflow()) return;
1029 EmitNewClosure(function_info);
1030}
1031
1032
1033void FullCodeGenerator::VisitSharedFunctionInfoLiteral(
1034 SharedFunctionInfoLiteral* expr) {
1035 Comment cmnt(masm_, "[ SharedFunctionInfoLiteral");
1036 EmitNewClosure(expr->shared_function_info());
1037}
1038
1039
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00001040void FullCodeGenerator::VisitCatchExtensionObject(CatchExtensionObject* expr) {
1041 // Call runtime routine to allocate the catch extension object and
1042 // assign the exception value to the catch variable.
1043 Comment cmnt(masm_, "[ CatchExtensionObject");
1044 VisitForValue(expr->key(), kStack);
1045 VisitForValue(expr->value(), kStack);
1046 // Create catch extension object.
1047 __ CallRuntime(Runtime::kCreateCatchExtensionObject, 2);
1048 Apply(context_, result_register());
1049}
1050
1051
1052void FullCodeGenerator::VisitThrow(Throw* expr) {
1053 Comment cmnt(masm_, "[ Throw");
1054 VisitForValue(expr->exception(), kStack);
1055 __ CallRuntime(Runtime::kThrow, 1);
1056 // Never returns here.
1057}
1058
1059
1060int FullCodeGenerator::TryFinally::Exit(int stack_depth) {
1061 // The macros used here must preserve the result register.
1062 __ Drop(stack_depth);
1063 __ PopTryHandler();
1064 __ Call(finally_entry_);
1065 return 0;
1066}
1067
1068
1069int FullCodeGenerator::TryCatch::Exit(int stack_depth) {
1070 // The macros used here must preserve the result register.
1071 __ Drop(stack_depth);
1072 __ PopTryHandler();
1073 return 0;
1074}
1075
1076#undef __
1077
1078
1079} } // namespace v8::internal