source: webkit/trunk/JavaScriptCore/parser/Nodes.cpp@ 43475

Last change on this file since 43475 was 43475, checked in by [email protected], 16 years ago

Touch Nodes.cpp to try to fix Windows build

  • parser/Nodes.cpp: Removed whitespace.
  • Property svn:eol-style set to native
File size: 89.9 KB
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1/*
2* Copyright (C) 1999-2002 Harri Porten ([email protected])
3* Copyright (C) 2001 Peter Kelly ([email protected])
4* Copyright (C) 2003, 2004, 2005, 2006, 2007, 2008, 2009 Apple Inc. All rights reserved.
5* Copyright (C) 2007 Cameron Zwarich ([email protected])
6* Copyright (C) 2007 Maks Orlovich
7* Copyright (C) 2007 Eric Seidel <[email protected]>
8*
9* This library is free software; you can redistribute it and/or
10* modify it under the terms of the GNU Library General Public
11* License as published by the Free Software Foundation; either
12* version 2 of the License, or (at your option) any later version.
13*
14* This library is distributed in the hope that it will be useful,
15* but WITHOUT ANY WARRANTY; without even the implied warranty of
16* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
17* Library General Public License for more details.
18*
19* You should have received a copy of the GNU Library General Public License
20* along with this library; see the file COPYING.LIB. If not, write to
21* the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
22* Boston, MA 02110-1301, USA.
23*
24*/
25
26#include "config.h"
27#include "Nodes.h"
28#include "NodeConstructors.h"
29
30#include "BytecodeGenerator.h"
31#include "CallFrame.h"
32#include "Debugger.h"
33#include "JIT.h"
34#include "JSFunction.h"
35#include "JSGlobalObject.h"
36#include "JSStaticScopeObject.h"
37#include "LabelScope.h"
38#include "Lexer.h"
39#include "Operations.h"
40#include "Parser.h"
41#include "PropertyNameArray.h"
42#include "RegExpObject.h"
43#include "SamplingTool.h"
44#include <wtf/Assertions.h>
45#include <wtf/RefCountedLeakCounter.h>
46#include <wtf/Threading.h>
47
48using namespace WTF;
49
50namespace JSC {
51
52static void substitute(UString& string, const UString& substring) JSC_FAST_CALL;
53
54// ------------------------------ ParserRefCounted -----------------------------------------
55
56#ifndef NDEBUG
57
58static RefCountedLeakCounter parserRefCountedCounter("JSC::Node");
59
60ALWAYS_INLINE ParserRefCounted::ParserRefCounted(JSGlobalData* globalData)
61{
62 globalData->parserArena.append(adoptRef(this));
63 parserRefCountedCounter.increment();
64}
65
66ALWAYS_INLINE ParserRefCounted::~ParserRefCounted()
67{
68 parserRefCountedCounter.decrement();
69}
70
71#endif
72
73// ------------------------------ ThrowableExpressionData --------------------------------
74
75static void substitute(UString& string, const UString& substring)
76{
77 int position = string.find("%s");
78 ASSERT(position != -1);
79 UString newString = string.substr(0, position);
80 newString.append(substring);
81 newString.append(string.substr(position + 2));
82 string = newString;
83}
84
85RegisterID* ThrowableExpressionData::emitThrowError(BytecodeGenerator& generator, ErrorType e, const char* msg)
86{
87 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
88 RegisterID* exception = generator.emitNewError(generator.newTemporary(), e, jsString(generator.globalData(), msg));
89 generator.emitThrow(exception);
90 return exception;
91}
92
93RegisterID* ThrowableExpressionData::emitThrowError(BytecodeGenerator& generator, ErrorType e, const char* msg, const Identifier& label)
94{
95 UString message = msg;
96 substitute(message, label.ustring());
97 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
98 RegisterID* exception = generator.emitNewError(generator.newTemporary(), e, jsString(generator.globalData(), message));
99 generator.emitThrow(exception);
100 return exception;
101}
102
103// ------------------------------ StatementNode --------------------------------
104
105void StatementNode::setLoc(int firstLine, int lastLine)
106{
107 m_line = firstLine;
108 m_lastLine = lastLine;
109}
110
111// ------------------------------ SourceElements --------------------------------
112
113void SourceElements::append(StatementNode* statement)
114{
115 if (statement->isEmptyStatement())
116 return;
117 m_statements.append(statement);
118}
119
120// ------------------------------ NullNode -------------------------------------
121
122RegisterID* NullNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
123{
124 if (dst == generator.ignoredResult())
125 return 0;
126 return generator.emitLoad(dst, jsNull());
127}
128
129// ------------------------------ BooleanNode ----------------------------------
130
131RegisterID* BooleanNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
132{
133 if (dst == generator.ignoredResult())
134 return 0;
135 return generator.emitLoad(dst, m_value);
136}
137
138// ------------------------------ NumberNode -----------------------------------
139
140RegisterID* NumberNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
141{
142 if (dst == generator.ignoredResult())
143 return 0;
144 return generator.emitLoad(dst, m_double);
145}
146
147// ------------------------------ StringNode -----------------------------------
148
149RegisterID* StringNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
150{
151 if (dst == generator.ignoredResult())
152 return 0;
153 return generator.emitLoad(dst, m_value);
154}
155
156// ------------------------------ RegExpNode -----------------------------------
157
158RegisterID* RegExpNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
159{
160 RefPtr<RegExp> regExp = RegExp::create(generator.globalData(), m_pattern, m_flags);
161 if (!regExp->isValid())
162 return emitThrowError(generator, SyntaxError, ("Invalid regular expression: " + UString(regExp->errorMessage())).UTF8String().c_str());
163 if (dst == generator.ignoredResult())
164 return 0;
165 return generator.emitNewRegExp(generator.finalDestination(dst), regExp.get());
166}
167
168// ------------------------------ ThisNode -------------------------------------
169
170RegisterID* ThisNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
171{
172 if (dst == generator.ignoredResult())
173 return 0;
174 return generator.moveToDestinationIfNeeded(dst, generator.thisRegister());
175}
176
177// ------------------------------ ResolveNode ----------------------------------
178
179bool ResolveNode::isPure(BytecodeGenerator& generator) const
180{
181 return generator.isLocal(m_ident);
182}
183
184RegisterID* ResolveNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
185{
186 if (RegisterID* local = generator.registerFor(m_ident)) {
187 if (dst == generator.ignoredResult())
188 return 0;
189 return generator.moveToDestinationIfNeeded(dst, local);
190 }
191
192 generator.emitExpressionInfo(m_startOffset + m_ident.size(), m_ident.size(), 0);
193 return generator.emitResolve(generator.finalDestination(dst), m_ident);
194}
195
196// ------------------------------ ArrayNode ------------------------------------
197
198RegisterID* ArrayNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
199{
200 // FIXME: Should we put all of this code into emitNewArray?
201
202 unsigned length = 0;
203 ElementNode* firstPutElement;
204 for (firstPutElement = m_element; firstPutElement; firstPutElement = firstPutElement->next()) {
205 if (firstPutElement->elision())
206 break;
207 ++length;
208 }
209
210 if (!firstPutElement && !m_elision)
211 return generator.emitNewArray(generator.finalDestination(dst), m_element);
212
213 RefPtr<RegisterID> array = generator.emitNewArray(generator.tempDestination(dst), m_element);
214
215 for (ElementNode* n = firstPutElement; n; n = n->next()) {
216 RegisterID* value = generator.emitNode(n->value());
217 length += n->elision();
218 generator.emitPutByIndex(array.get(), length++, value);
219 }
220
221 if (m_elision) {
222 RegisterID* value = generator.emitLoad(0, jsNumber(generator.globalData(), m_elision + length));
223 generator.emitPutById(array.get(), generator.propertyNames().length, value);
224 }
225
226 return generator.moveToDestinationIfNeeded(dst, array.get());
227}
228
229bool ArrayNode::isSimpleArray() const
230{
231 if (m_elision || m_optional)
232 return false;
233 for (ElementNode* ptr = m_element; ptr; ptr = ptr->next()) {
234 if (ptr->elision())
235 return false;
236 }
237 return true;
238}
239
240ArgumentListNode* ArrayNode::toArgumentList(JSGlobalData* globalData) const
241{
242 ASSERT(!m_elision && !m_optional);
243 ElementNode* ptr = m_element;
244 if (!ptr)
245 return 0;
246 ArgumentListNode* head = new (globalData) ArgumentListNode(globalData, ptr->value());
247 ArgumentListNode* tail = head;
248 ptr = ptr->next();
249 for (; ptr; ptr = ptr->next()) {
250 ASSERT(!ptr->elision());
251 tail = new (globalData) ArgumentListNode(globalData, tail, ptr->value());
252 }
253 return head;
254}
255
256// ------------------------------ ObjectLiteralNode ----------------------------
257
258RegisterID* ObjectLiteralNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
259{
260 if (!m_list) {
261 if (dst == generator.ignoredResult())
262 return 0;
263 return generator.emitNewObject(generator.finalDestination(dst));
264 }
265 return generator.emitNode(dst, m_list);
266}
267
268// ------------------------------ PropertyListNode -----------------------------
269
270RegisterID* PropertyListNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
271{
272 RefPtr<RegisterID> newObj = generator.tempDestination(dst);
273
274 generator.emitNewObject(newObj.get());
275
276 for (PropertyListNode* p = this; p; p = p->m_next) {
277 RegisterID* value = generator.emitNode(p->m_node->m_assign);
278
279 switch (p->m_node->m_type) {
280 case PropertyNode::Constant: {
281 generator.emitPutById(newObj.get(), p->m_node->name(), value);
282 break;
283 }
284 case PropertyNode::Getter: {
285 generator.emitPutGetter(newObj.get(), p->m_node->name(), value);
286 break;
287 }
288 case PropertyNode::Setter: {
289 generator.emitPutSetter(newObj.get(), p->m_node->name(), value);
290 break;
291 }
292 default:
293 ASSERT_NOT_REACHED();
294 }
295 }
296
297 return generator.moveToDestinationIfNeeded(dst, newObj.get());
298}
299
300// ------------------------------ BracketAccessorNode --------------------------------
301
302RegisterID* BracketAccessorNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
303{
304 RefPtr<RegisterID> base = generator.emitNodeForLeftHandSide(m_base, m_subscriptHasAssignments, m_subscript->isPure(generator));
305 RegisterID* property = generator.emitNode(m_subscript);
306 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
307 return generator.emitGetByVal(generator.finalDestination(dst), base.get(), property);
308}
309
310// ------------------------------ DotAccessorNode --------------------------------
311
312RegisterID* DotAccessorNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
313{
314 RegisterID* base = generator.emitNode(m_base);
315 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
316 return generator.emitGetById(generator.finalDestination(dst), base, m_ident);
317}
318
319// ------------------------------ ArgumentListNode -----------------------------
320
321RegisterID* ArgumentListNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
322{
323 ASSERT(m_expr);
324 return generator.emitNode(dst, m_expr);
325}
326
327// ------------------------------ NewExprNode ----------------------------------
328
329RegisterID* NewExprNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
330{
331 RefPtr<RegisterID> func = generator.emitNode(m_expr);
332 return generator.emitConstruct(generator.finalDestination(dst), func.get(), m_args, divot(), startOffset(), endOffset());
333}
334
335// ------------------------------ EvalFunctionCallNode ----------------------------------
336
337RegisterID* EvalFunctionCallNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
338{
339 RefPtr<RegisterID> func = generator.tempDestination(dst);
340 RefPtr<RegisterID> thisRegister = generator.newTemporary();
341 generator.emitExpressionInfo(divot() - startOffset() + 4, 4, 0);
342 generator.emitResolveWithBase(thisRegister.get(), func.get(), generator.propertyNames().eval);
343 return generator.emitCallEval(generator.finalDestination(dst, func.get()), func.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
344}
345
346// ------------------------------ FunctionCallValueNode ----------------------------------
347
348RegisterID* FunctionCallValueNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
349{
350 RefPtr<RegisterID> func = generator.emitNode(m_expr);
351 RefPtr<RegisterID> thisRegister = generator.emitLoad(generator.newTemporary(), jsNull());
352 return generator.emitCall(generator.finalDestination(dst, func.get()), func.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
353}
354
355// ------------------------------ FunctionCallResolveNode ----------------------------------
356
357RegisterID* FunctionCallResolveNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
358{
359 if (RefPtr<RegisterID> local = generator.registerFor(m_ident)) {
360 RefPtr<RegisterID> thisRegister = generator.emitLoad(generator.newTemporary(), jsNull());
361 return generator.emitCall(generator.finalDestination(dst, thisRegister.get()), local.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
362 }
363
364 int index = 0;
365 size_t depth = 0;
366 JSObject* globalObject = 0;
367 if (generator.findScopedProperty(m_ident, index, depth, false, globalObject) && index != missingSymbolMarker()) {
368 RefPtr<RegisterID> func = generator.emitGetScopedVar(generator.newTemporary(), depth, index, globalObject);
369 RefPtr<RegisterID> thisRegister = generator.emitLoad(generator.newTemporary(), jsNull());
370 return generator.emitCall(generator.finalDestination(dst, func.get()), func.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
371 }
372
373 RefPtr<RegisterID> func = generator.newTemporary();
374 RefPtr<RegisterID> thisRegister = generator.newTemporary();
375 int identifierStart = divot() - startOffset();
376 generator.emitExpressionInfo(identifierStart + m_ident.size(), m_ident.size(), 0);
377 generator.emitResolveFunction(thisRegister.get(), func.get(), m_ident);
378 return generator.emitCall(generator.finalDestination(dst, func.get()), func.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
379}
380
381// ------------------------------ FunctionCallBracketNode ----------------------------------
382
383RegisterID* FunctionCallBracketNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
384{
385 RefPtr<RegisterID> base = generator.emitNode(m_base);
386 RegisterID* property = generator.emitNode(m_subscript);
387 generator.emitExpressionInfo(divot() - m_subexpressionDivotOffset, startOffset() - m_subexpressionDivotOffset, m_subexpressionEndOffset);
388 RefPtr<RegisterID> function = generator.emitGetByVal(generator.tempDestination(dst), base.get(), property);
389 RefPtr<RegisterID> thisRegister = generator.emitMove(generator.newTemporary(), base.get());
390 return generator.emitCall(generator.finalDestination(dst, function.get()), function.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
391}
392
393// ------------------------------ FunctionCallDotNode ----------------------------------
394
395RegisterID* FunctionCallDotNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
396{
397 RefPtr<RegisterID> base = generator.emitNode(m_base);
398 generator.emitExpressionInfo(divot() - m_subexpressionDivotOffset, startOffset() - m_subexpressionDivotOffset, m_subexpressionEndOffset);
399 RefPtr<RegisterID> function = generator.emitGetById(generator.tempDestination(dst), base.get(), m_ident);
400 RefPtr<RegisterID> thisRegister = generator.emitMove(generator.newTemporary(), base.get());
401 return generator.emitCall(generator.finalDestination(dst, function.get()), function.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
402}
403
404RegisterID* CallFunctionCallDotNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
405{
406 RefPtr<Label> realCall = generator.newLabel();
407 RefPtr<Label> end = generator.newLabel();
408 RefPtr<RegisterID> base = generator.emitNode(m_base);
409 generator.emitExpressionInfo(divot() - m_subexpressionDivotOffset, startOffset() - m_subexpressionDivotOffset, m_subexpressionEndOffset);
410 RefPtr<RegisterID> function = generator.emitGetById(generator.tempDestination(dst), base.get(), m_ident);
411 RefPtr<RegisterID> finalDestination = generator.finalDestination(dst, function.get());
412 generator.emitJumpIfNotFunctionCall(function.get(), realCall.get());
413 {
414 RefPtr<RegisterID> realFunction = generator.emitMove(generator.tempDestination(dst), base.get());
415 RefPtr<RegisterID> thisRegister = generator.newTemporary();
416 ArgumentListNode* oldList = m_args->m_listNode;
417 if (m_args->m_listNode && m_args->m_listNode->m_expr) {
418 generator.emitNode(thisRegister.get(), m_args->m_listNode->m_expr);
419 m_args->m_listNode = m_args->m_listNode->m_next;
420 } else
421 generator.emitLoad(thisRegister.get(), jsNull());
422
423 generator.emitCall(finalDestination.get(), realFunction.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
424 generator.emitJump(end.get());
425 m_args->m_listNode = oldList;
426 }
427 generator.emitLabel(realCall.get());
428 {
429 RefPtr<RegisterID> thisRegister = generator.emitMove(generator.newTemporary(), base.get());
430 generator.emitCall(finalDestination.get(), function.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
431 }
432 generator.emitLabel(end.get());
433 return finalDestination.get();
434}
435
436static bool areTrivialApplyArguments(ArgumentsNode* args)
437{
438 return !args->m_listNode || !args->m_listNode->m_expr || !args->m_listNode->m_next
439 || (!args->m_listNode->m_next->m_next && args->m_listNode->m_next->m_expr->isSimpleArray());
440}
441
442RegisterID* ApplyFunctionCallDotNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
443{
444 // A few simple cases can be trivially handled as ordinary function calls.
445 // function.apply(), function.apply(arg) -> identical to function.call
446 // function.apply(thisArg, [arg0, arg1, ...]) -> can be trivially coerced into function.call(thisArg, arg0, arg1, ...) and saves object allocation
447 bool mayBeCall = areTrivialApplyArguments(m_args);
448
449 RefPtr<Label> realCall = generator.newLabel();
450 RefPtr<Label> end = generator.newLabel();
451 RefPtr<RegisterID> base = generator.emitNode(m_base);
452 generator.emitExpressionInfo(divot() - m_subexpressionDivotOffset, startOffset() - m_subexpressionDivotOffset, m_subexpressionEndOffset);
453 RefPtr<RegisterID> function = generator.emitGetById(generator.tempDestination(dst), base.get(), m_ident);
454 RefPtr<RegisterID> finalDestination = generator.finalDestination(dst, function.get());
455 generator.emitJumpIfNotFunctionApply(function.get(), realCall.get());
456 {
457 if (mayBeCall) {
458 RefPtr<RegisterID> realFunction = generator.emitMove(generator.tempDestination(dst), base.get());
459 RefPtr<RegisterID> thisRegister = generator.newTemporary();
460 ArgumentListNode* oldList = m_args->m_listNode;
461 if (m_args->m_listNode && m_args->m_listNode->m_expr) {
462 generator.emitNode(thisRegister.get(), m_args->m_listNode->m_expr);
463 m_args->m_listNode = m_args->m_listNode->m_next;
464 if (m_args->m_listNode) {
465 ASSERT(m_args->m_listNode->m_expr->isSimpleArray());
466 ASSERT(!m_args->m_listNode->m_next);
467 m_args->m_listNode = static_cast<ArrayNode*>(m_args->m_listNode->m_expr)->toArgumentList(generator.globalData());
468 }
469 } else
470 generator.emitLoad(thisRegister.get(), jsNull());
471 generator.emitCall(finalDestination.get(), realFunction.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
472 m_args->m_listNode = oldList;
473 } else {
474 ASSERT(m_args->m_listNode && m_args->m_listNode->m_next);
475 RefPtr<RegisterID> realFunction = generator.emitMove(generator.newTemporary(), base.get());
476 RefPtr<RegisterID> argsCountRegister = generator.newTemporary();
477 RefPtr<RegisterID> thisRegister = generator.newTemporary();
478 RefPtr<RegisterID> argsRegister = generator.newTemporary();
479 generator.emitNode(thisRegister.get(), m_args->m_listNode->m_expr);
480 ArgumentListNode* args = m_args->m_listNode->m_next;
481 generator.emitNode(argsRegister.get(), args->m_expr);
482 while ((args = args->m_next))
483 generator.emitNode(args->m_expr);
484
485 generator.emitLoadVarargs(argsCountRegister.get(), argsRegister.get());
486 generator.emitCallVarargs(finalDestination.get(), realFunction.get(), thisRegister.get(), argsCountRegister.get(), divot(), startOffset(), endOffset());
487 }
488 generator.emitJump(end.get());
489 }
490 generator.emitLabel(realCall.get());
491 {
492 RefPtr<RegisterID> thisRegister = generator.emitMove(generator.newTemporary(), base.get());
493 generator.emitCall(finalDestination.get(), function.get(), thisRegister.get(), m_args, divot(), startOffset(), endOffset());
494 }
495 generator.emitLabel(end.get());
496 return finalDestination.get();
497}
498
499// ------------------------------ PostfixResolveNode ----------------------------------
500
501static RegisterID* emitPreIncOrDec(BytecodeGenerator& generator, RegisterID* srcDst, Operator oper)
502{
503 return (oper == OpPlusPlus) ? generator.emitPreInc(srcDst) : generator.emitPreDec(srcDst);
504}
505
506static RegisterID* emitPostIncOrDec(BytecodeGenerator& generator, RegisterID* dst, RegisterID* srcDst, Operator oper)
507{
508 return (oper == OpPlusPlus) ? generator.emitPostInc(dst, srcDst) : generator.emitPostDec(dst, srcDst);
509}
510
511RegisterID* PostfixResolveNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
512{
513 if (RegisterID* local = generator.registerFor(m_ident)) {
514 if (generator.isLocalConstant(m_ident)) {
515 if (dst == generator.ignoredResult())
516 return 0;
517 return generator.emitToJSNumber(generator.finalDestination(dst), local);
518 }
519
520 if (dst == generator.ignoredResult())
521 return emitPreIncOrDec(generator, local, m_operator);
522 return emitPostIncOrDec(generator, generator.finalDestination(dst), local, m_operator);
523 }
524
525 int index = 0;
526 size_t depth = 0;
527 JSObject* globalObject = 0;
528 if (generator.findScopedProperty(m_ident, index, depth, true, globalObject) && index != missingSymbolMarker()) {
529 RefPtr<RegisterID> value = generator.emitGetScopedVar(generator.newTemporary(), depth, index, globalObject);
530 RegisterID* oldValue;
531 if (dst == generator.ignoredResult()) {
532 oldValue = 0;
533 emitPreIncOrDec(generator, value.get(), m_operator);
534 } else {
535 oldValue = emitPostIncOrDec(generator, generator.finalDestination(dst), value.get(), m_operator);
536 }
537 generator.emitPutScopedVar(depth, index, value.get(), globalObject);
538 return oldValue;
539 }
540
541 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
542 RefPtr<RegisterID> value = generator.newTemporary();
543 RefPtr<RegisterID> base = generator.emitResolveWithBase(generator.newTemporary(), value.get(), m_ident);
544 RegisterID* oldValue;
545 if (dst == generator.ignoredResult()) {
546 oldValue = 0;
547 emitPreIncOrDec(generator, value.get(), m_operator);
548 } else {
549 oldValue = emitPostIncOrDec(generator, generator.finalDestination(dst), value.get(), m_operator);
550 }
551 generator.emitPutById(base.get(), m_ident, value.get());
552 return oldValue;
553}
554
555// ------------------------------ PostfixBracketNode ----------------------------------
556
557RegisterID* PostfixBracketNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
558{
559 RefPtr<RegisterID> base = generator.emitNode(m_base);
560 RefPtr<RegisterID> property = generator.emitNode(m_subscript);
561
562 generator.emitExpressionInfo(divot() - m_subexpressionDivotOffset, startOffset() - m_subexpressionDivotOffset, m_subexpressionEndOffset);
563 RefPtr<RegisterID> value = generator.emitGetByVal(generator.newTemporary(), base.get(), property.get());
564 RegisterID* oldValue;
565 if (dst == generator.ignoredResult()) {
566 oldValue = 0;
567 if (m_operator == OpPlusPlus)
568 generator.emitPreInc(value.get());
569 else
570 generator.emitPreDec(value.get());
571 } else {
572 oldValue = (m_operator == OpPlusPlus) ? generator.emitPostInc(generator.finalDestination(dst), value.get()) : generator.emitPostDec(generator.finalDestination(dst), value.get());
573 }
574 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
575 generator.emitPutByVal(base.get(), property.get(), value.get());
576 return oldValue;
577}
578
579// ------------------------------ PostfixDotNode ----------------------------------
580
581RegisterID* PostfixDotNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
582{
583 RefPtr<RegisterID> base = generator.emitNode(m_base);
584
585 generator.emitExpressionInfo(divot() - m_subexpressionDivotOffset, startOffset() - m_subexpressionDivotOffset, m_subexpressionEndOffset);
586 RefPtr<RegisterID> value = generator.emitGetById(generator.newTemporary(), base.get(), m_ident);
587 RegisterID* oldValue;
588 if (dst == generator.ignoredResult()) {
589 oldValue = 0;
590 if (m_operator == OpPlusPlus)
591 generator.emitPreInc(value.get());
592 else
593 generator.emitPreDec(value.get());
594 } else {
595 oldValue = (m_operator == OpPlusPlus) ? generator.emitPostInc(generator.finalDestination(dst), value.get()) : generator.emitPostDec(generator.finalDestination(dst), value.get());
596 }
597 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
598 generator.emitPutById(base.get(), m_ident, value.get());
599 return oldValue;
600}
601
602// ------------------------------ PostfixErrorNode -----------------------------------
603
604RegisterID* PostfixErrorNode::emitBytecode(BytecodeGenerator& generator, RegisterID*)
605{
606 return emitThrowError(generator, ReferenceError, m_operator == OpPlusPlus ? "Postfix ++ operator applied to value that is not a reference." : "Postfix -- operator applied to value that is not a reference.");
607}
608
609// ------------------------------ DeleteResolveNode -----------------------------------
610
611RegisterID* DeleteResolveNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
612{
613 if (generator.registerFor(m_ident))
614 return generator.emitUnexpectedLoad(generator.finalDestination(dst), false);
615
616 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
617 RegisterID* base = generator.emitResolveBase(generator.tempDestination(dst), m_ident);
618 return generator.emitDeleteById(generator.finalDestination(dst, base), base, m_ident);
619}
620
621// ------------------------------ DeleteBracketNode -----------------------------------
622
623RegisterID* DeleteBracketNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
624{
625 RefPtr<RegisterID> r0 = generator.emitNode(m_base);
626 RegisterID* r1 = generator.emitNode(m_subscript);
627
628 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
629 return generator.emitDeleteByVal(generator.finalDestination(dst), r0.get(), r1);
630}
631
632// ------------------------------ DeleteDotNode -----------------------------------
633
634RegisterID* DeleteDotNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
635{
636 RegisterID* r0 = generator.emitNode(m_base);
637
638 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
639 return generator.emitDeleteById(generator.finalDestination(dst), r0, m_ident);
640}
641
642// ------------------------------ DeleteValueNode -----------------------------------
643
644RegisterID* DeleteValueNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
645{
646 generator.emitNode(generator.ignoredResult(), m_expr);
647
648 // delete on a non-location expression ignores the value and returns true
649 return generator.emitUnexpectedLoad(generator.finalDestination(dst), true);
650}
651
652// ------------------------------ VoidNode -------------------------------------
653
654RegisterID* VoidNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
655{
656 if (dst == generator.ignoredResult()) {
657 generator.emitNode(generator.ignoredResult(), m_expr);
658 return 0;
659 }
660 RefPtr<RegisterID> r0 = generator.emitNode(m_expr);
661 return generator.emitLoad(dst, jsUndefined());
662}
663
664// ------------------------------ TypeOfValueNode -----------------------------------
665
666RegisterID* TypeOfResolveNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
667{
668 if (RegisterID* local = generator.registerFor(m_ident)) {
669 if (dst == generator.ignoredResult())
670 return 0;
671 return generator.emitTypeOf(generator.finalDestination(dst), local);
672 }
673
674 RefPtr<RegisterID> scratch = generator.emitResolveBase(generator.tempDestination(dst), m_ident);
675 generator.emitGetById(scratch.get(), scratch.get(), m_ident);
676 if (dst == generator.ignoredResult())
677 return 0;
678 return generator.emitTypeOf(generator.finalDestination(dst, scratch.get()), scratch.get());
679}
680
681// ------------------------------ TypeOfValueNode -----------------------------------
682
683RegisterID* TypeOfValueNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
684{
685 if (dst == generator.ignoredResult()) {
686 generator.emitNode(generator.ignoredResult(), m_expr);
687 return 0;
688 }
689 RefPtr<RegisterID> src = generator.emitNode(m_expr);
690 return generator.emitTypeOf(generator.finalDestination(dst), src.get());
691}
692
693// ------------------------------ PrefixResolveNode ----------------------------------
694
695RegisterID* PrefixResolveNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
696{
697 if (RegisterID* local = generator.registerFor(m_ident)) {
698 if (generator.isLocalConstant(m_ident)) {
699 if (dst == generator.ignoredResult())
700 return 0;
701 RefPtr<RegisterID> r0 = generator.emitUnexpectedLoad(generator.finalDestination(dst), (m_operator == OpPlusPlus) ? 1.0 : -1.0);
702 return generator.emitBinaryOp(op_add, r0.get(), local, r0.get(), OperandTypes());
703 }
704
705 emitPreIncOrDec(generator, local, m_operator);
706 return generator.moveToDestinationIfNeeded(dst, local);
707 }
708
709 int index = 0;
710 size_t depth = 0;
711 JSObject* globalObject = 0;
712 if (generator.findScopedProperty(m_ident, index, depth, false, globalObject) && index != missingSymbolMarker()) {
713 RefPtr<RegisterID> propDst = generator.emitGetScopedVar(generator.tempDestination(dst), depth, index, globalObject);
714 emitPreIncOrDec(generator, propDst.get(), m_operator);
715 generator.emitPutScopedVar(depth, index, propDst.get(), globalObject);
716 return generator.moveToDestinationIfNeeded(dst, propDst.get());
717 }
718
719 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
720 RefPtr<RegisterID> propDst = generator.tempDestination(dst);
721 RefPtr<RegisterID> base = generator.emitResolveWithBase(generator.newTemporary(), propDst.get(), m_ident);
722 emitPreIncOrDec(generator, propDst.get(), m_operator);
723 generator.emitPutById(base.get(), m_ident, propDst.get());
724 return generator.moveToDestinationIfNeeded(dst, propDst.get());
725}
726
727// ------------------------------ PrefixBracketNode ----------------------------------
728
729RegisterID* PrefixBracketNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
730{
731 RefPtr<RegisterID> base = generator.emitNode(m_base);
732 RefPtr<RegisterID> property = generator.emitNode(m_subscript);
733 RefPtr<RegisterID> propDst = generator.tempDestination(dst);
734
735 generator.emitExpressionInfo(divot() + m_subexpressionDivotOffset, m_subexpressionStartOffset, endOffset() - m_subexpressionDivotOffset);
736 RegisterID* value = generator.emitGetByVal(propDst.get(), base.get(), property.get());
737 if (m_operator == OpPlusPlus)
738 generator.emitPreInc(value);
739 else
740 generator.emitPreDec(value);
741 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
742 generator.emitPutByVal(base.get(), property.get(), value);
743 return generator.moveToDestinationIfNeeded(dst, propDst.get());
744}
745
746// ------------------------------ PrefixDotNode ----------------------------------
747
748RegisterID* PrefixDotNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
749{
750 RefPtr<RegisterID> base = generator.emitNode(m_base);
751 RefPtr<RegisterID> propDst = generator.tempDestination(dst);
752
753 generator.emitExpressionInfo(divot() + m_subexpressionDivotOffset, m_subexpressionStartOffset, endOffset() - m_subexpressionDivotOffset);
754 RegisterID* value = generator.emitGetById(propDst.get(), base.get(), m_ident);
755 if (m_operator == OpPlusPlus)
756 generator.emitPreInc(value);
757 else
758 generator.emitPreDec(value);
759 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
760 generator.emitPutById(base.get(), m_ident, value);
761 return generator.moveToDestinationIfNeeded(dst, propDst.get());
762}
763
764// ------------------------------ PrefixErrorNode -----------------------------------
765
766RegisterID* PrefixErrorNode::emitBytecode(BytecodeGenerator& generator, RegisterID*)
767{
768 return emitThrowError(generator, ReferenceError, m_operator == OpPlusPlus ? "Prefix ++ operator applied to value that is not a reference." : "Prefix -- operator applied to value that is not a reference.");
769}
770
771// ------------------------------ Unary Operation Nodes -----------------------------------
772
773RegisterID* UnaryOpNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
774{
775 RegisterID* src = generator.emitNode(m_expr);
776 return generator.emitUnaryOp(opcodeID(), generator.finalDestination(dst), src);
777}
778
779// ------------------------------ Binary Operation Nodes -----------------------------------
780
781// BinaryOpNode::emitStrcat:
782//
783// This node generates an op_strcat operation. This opcode can handle concatenation of three or
784// more values, where we can determine a set of separate op_add operations would be operating on
785// string values.
786//
787// This function expects to be operating on a graph of AST nodes looking something like this:
788//
789// (a)... (b)
790// \ /
791// (+) (c)
792// \ /
793// [d] ((+))
794// \ /
795// [+=]
796//
797// The assignment operation is optional, if it exists the register holding the value on the
798// lefthand side of the assignment should be passing as the optional 'lhs' argument.
799//
800// The method should be called on the node at the root of the tree of regular binary add
801// operations (marked in the diagram with a double set of parentheses). This node must
802// be performing a string concatenation (determined by statically detecting that at least
803// one child must be a string).
804//
805// Since the minimum number of values being concatenated together is expected to be 3, if
806// a lhs to a concatenating assignment is not provided then the root add should have at
807// least one left child that is also an add that can be determined to be operating on strings.
808//
809RegisterID* BinaryOpNode::emitStrcat(BytecodeGenerator& generator, RegisterID* dst, RegisterID* lhs, ReadModifyResolveNode* emitExpressionInfoForMe)
810{
811 ASSERT(isAdd());
812 ASSERT(resultDescriptor().definitelyIsString());
813
814 // Create a list of expressions for all the adds in the tree of nodes we can convert into
815 // a string concatenation. The rightmost node (c) is added first. The rightmost node is
816 // added first, and the leftmost child is never added, so the vector produced for the
817 // example above will be [ c, b ].
818 Vector<ExpressionNode*, 16> reverseExpressionList;
819 reverseExpressionList.append(m_expr2);
820
821 // Examine the left child of the add. So long as this is a string add, add its right-child
822 // to the list, and keep processing along the left fork.
823 ExpressionNode* leftMostAddChild = m_expr1;
824 while (leftMostAddChild->isAdd() && leftMostAddChild->resultDescriptor().definitelyIsString()) {
825 reverseExpressionList.append(static_cast<AddNode*>(leftMostAddChild)->m_expr2);
826 leftMostAddChild = static_cast<AddNode*>(leftMostAddChild)->m_expr1;
827 }
828
829 Vector<RefPtr<RegisterID>, 16> temporaryRegisters;
830
831 // If there is an assignment, allocate a temporary to hold the lhs after conversion.
832 // We could possibly avoid this (the lhs is converted last anyway, we could let the
833 // op_strcat node handle its conversion if required).
834 if (lhs)
835 temporaryRegisters.append(generator.newTemporary());
836
837 // Emit code for the leftmost node ((a) in the example).
838 temporaryRegisters.append(generator.newTemporary());
839 RegisterID* leftMostAddChildTempRegister = temporaryRegisters.last().get();
840 generator.emitNode(leftMostAddChildTempRegister, leftMostAddChild);
841
842 // Note on ordering of conversions:
843 //
844 // We maintain the same ordering of conversions as we would see if the concatenations
845 // was performed as a sequence of adds (otherwise this optimization could change
846 // behaviour should an object have been provided a valueOf or toString method).
847 //
848 // Considering the above example, the sequnce of execution is:
849 // * evaluate operand (a)
850 // * evaluate operand (b)
851 // * convert (a) to primitive <- (this would be triggered by the first add)
852 // * convert (b) to primitive <- (ditto)
853 // * evaluate operand (c)
854 // * convert (c) to primitive <- (this would be triggered by the second add)
855 // And optionally, if there is an assignment:
856 // * convert (d) to primitive <- (this would be triggered by the assigning addition)
857 //
858 // As such we do not plant an op to convert the leftmost child now. Instead, use
859 // 'leftMostAddChildTempRegister' as a flag to trigger generation of the conversion
860 // once the second node has been generated. However, if the leftmost child is an
861 // immediate we can trivially determine that no conversion will be required.
862 // If this is the case
863 if (leftMostAddChild->isString())
864 leftMostAddChildTempRegister = 0;
865
866 while (reverseExpressionList.size()) {
867 ExpressionNode* node = reverseExpressionList.last();
868 reverseExpressionList.removeLast();
869
870 // Emit the code for the current node.
871 temporaryRegisters.append(generator.newTemporary());
872 generator.emitNode(temporaryRegisters.last().get(), node);
873
874 // On the first iteration of this loop, when we first reach this point we have just
875 // generated the second node, which means it is time to convert the leftmost operand.
876 if (leftMostAddChildTempRegister) {
877 generator.emitToPrimitive(leftMostAddChildTempRegister, leftMostAddChildTempRegister);
878 leftMostAddChildTempRegister = 0; // Only do this once.
879 }
880 // Plant a conversion for this node, if necessary.
881 if (!node->isString())
882 generator.emitToPrimitive(temporaryRegisters.last().get(), temporaryRegisters.last().get());
883 }
884 ASSERT(temporaryRegisters.size() >= 3);
885
886 // Certain read-modify nodes require expression info to be emitted *after* m_right has been generated.
887 // If this is required the node is passed as 'emitExpressionInfoForMe'; do so now.
888 if (emitExpressionInfoForMe)
889 generator.emitExpressionInfo(emitExpressionInfoForMe->divot(), emitExpressionInfoForMe->startOffset(), emitExpressionInfoForMe->endOffset());
890
891 // If there is an assignment convert the lhs now. This will also copy lhs to
892 // the temporary register we allocated for it.
893 if (lhs)
894 generator.emitToPrimitive(temporaryRegisters[0].get(), lhs);
895
896 return generator.emitStrcat(generator.finalDestination(dst, temporaryRegisters[0].get()), temporaryRegisters[0].get(), temporaryRegisters.size());
897}
898
899RegisterID* BinaryOpNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
900{
901 OpcodeID opcodeID = this->opcodeID();
902
903 if (opcodeID == op_add && m_expr1->isAdd() && m_expr1->resultDescriptor().definitelyIsString())
904 return emitStrcat(generator, dst);
905
906 if (opcodeID == op_neq) {
907 if (m_expr1->isNull() || m_expr2->isNull()) {
908 RefPtr<RegisterID> src = generator.tempDestination(dst);
909 generator.emitNode(src.get(), m_expr1->isNull() ? m_expr2 : m_expr1);
910 return generator.emitUnaryOp(op_neq_null, generator.finalDestination(dst, src.get()), src.get());
911 }
912 }
913
914 RefPtr<RegisterID> src1 = generator.emitNodeForLeftHandSide(m_expr1, m_rightHasAssignments, m_expr2->isPure(generator));
915 RegisterID* src2 = generator.emitNode(m_expr2);
916 return generator.emitBinaryOp(opcodeID, generator.finalDestination(dst, src1.get()), src1.get(), src2, OperandTypes(m_expr1->resultDescriptor(), m_expr2->resultDescriptor()));
917}
918
919RegisterID* EqualNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
920{
921 if (m_expr1->isNull() || m_expr2->isNull()) {
922 RefPtr<RegisterID> src = generator.tempDestination(dst);
923 generator.emitNode(src.get(), m_expr1->isNull() ? m_expr2 : m_expr1);
924 return generator.emitUnaryOp(op_eq_null, generator.finalDestination(dst, src.get()), src.get());
925 }
926
927 RefPtr<RegisterID> src1 = generator.emitNodeForLeftHandSide(m_expr1, m_rightHasAssignments, m_expr2->isPure(generator));
928 RegisterID* src2 = generator.emitNode(m_expr2);
929 return generator.emitEqualityOp(op_eq, generator.finalDestination(dst, src1.get()), src1.get(), src2);
930}
931
932RegisterID* StrictEqualNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
933{
934 RefPtr<RegisterID> src1 = generator.emitNodeForLeftHandSide(m_expr1, m_rightHasAssignments, m_expr2->isPure(generator));
935 RegisterID* src2 = generator.emitNode(m_expr2);
936 return generator.emitEqualityOp(op_stricteq, generator.finalDestination(dst, src1.get()), src1.get(), src2);
937}
938
939RegisterID* ReverseBinaryOpNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
940{
941 RefPtr<RegisterID> src1 = generator.emitNodeForLeftHandSide(m_expr1, m_rightHasAssignments, m_expr2->isPure(generator));
942 RegisterID* src2 = generator.emitNode(m_expr2);
943 return generator.emitBinaryOp(opcodeID(), generator.finalDestination(dst, src1.get()), src2, src1.get(), OperandTypes(m_expr2->resultDescriptor(), m_expr1->resultDescriptor()));
944}
945
946RegisterID* ThrowableBinaryOpNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
947{
948 RefPtr<RegisterID> src1 = generator.emitNodeForLeftHandSide(m_expr1, m_rightHasAssignments, m_expr2->isPure(generator));
949 RegisterID* src2 = generator.emitNode(m_expr2);
950 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
951 return generator.emitBinaryOp(opcodeID(), generator.finalDestination(dst, src1.get()), src1.get(), src2, OperandTypes(m_expr1->resultDescriptor(), m_expr2->resultDescriptor()));
952}
953
954RegisterID* InstanceOfNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
955{
956 RefPtr<RegisterID> src1 = generator.emitNodeForLeftHandSide(m_expr1, m_rightHasAssignments, m_expr2->isPure(generator));
957 RefPtr<RegisterID> src2 = generator.emitNode(m_expr2);
958
959 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
960 generator.emitGetByIdExceptionInfo(op_instanceof);
961 RegisterID* src2Prototype = generator.emitGetById(generator.newTemporary(), src2.get(), generator.globalData()->propertyNames->prototype);
962
963 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
964 return generator.emitInstanceOf(generator.finalDestination(dst, src1.get()), src1.get(), src2.get(), src2Prototype);
965}
966
967// ------------------------------ LogicalOpNode ----------------------------
968
969RegisterID* LogicalOpNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
970{
971 RefPtr<RegisterID> temp = generator.tempDestination(dst);
972 RefPtr<Label> target = generator.newLabel();
973
974 generator.emitNode(temp.get(), m_expr1);
975 if (m_operator == OpLogicalAnd)
976 generator.emitJumpIfFalse(temp.get(), target.get());
977 else
978 generator.emitJumpIfTrue(temp.get(), target.get());
979 generator.emitNode(temp.get(), m_expr2);
980 generator.emitLabel(target.get());
981
982 return generator.moveToDestinationIfNeeded(dst, temp.get());
983}
984
985// ------------------------------ ConditionalNode ------------------------------
986
987RegisterID* ConditionalNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
988{
989 RefPtr<RegisterID> newDst = generator.finalDestination(dst);
990 RefPtr<Label> beforeElse = generator.newLabel();
991 RefPtr<Label> afterElse = generator.newLabel();
992
993 RegisterID* cond = generator.emitNode(m_logical);
994 generator.emitJumpIfFalse(cond, beforeElse.get());
995
996 generator.emitNode(newDst.get(), m_expr1);
997 generator.emitJump(afterElse.get());
998
999 generator.emitLabel(beforeElse.get());
1000 generator.emitNode(newDst.get(), m_expr2);
1001
1002 generator.emitLabel(afterElse.get());
1003
1004 return newDst.get();
1005}
1006
1007// ------------------------------ ReadModifyResolveNode -----------------------------------
1008
1009// FIXME: should this be moved to be a method on BytecodeGenerator?
1010static ALWAYS_INLINE RegisterID* emitReadModifyAssignment(BytecodeGenerator& generator, RegisterID* dst, RegisterID* src1, ExpressionNode* m_right, Operator oper, OperandTypes types, ReadModifyResolveNode* emitExpressionInfoForMe = 0)
1011{
1012 OpcodeID opcodeID;
1013 switch (oper) {
1014 case OpMultEq:
1015 opcodeID = op_mul;
1016 break;
1017 case OpDivEq:
1018 opcodeID = op_div;
1019 break;
1020 case OpPlusEq:
1021 if (m_right->isAdd() && m_right->resultDescriptor().definitelyIsString())
1022 return static_cast<AddNode*>(m_right)->emitStrcat(generator, dst, src1, emitExpressionInfoForMe);
1023 opcodeID = op_add;
1024 break;
1025 case OpMinusEq:
1026 opcodeID = op_sub;
1027 break;
1028 case OpLShift:
1029 opcodeID = op_lshift;
1030 break;
1031 case OpRShift:
1032 opcodeID = op_rshift;
1033 break;
1034 case OpURShift:
1035 opcodeID = op_urshift;
1036 break;
1037 case OpAndEq:
1038 opcodeID = op_bitand;
1039 break;
1040 case OpXOrEq:
1041 opcodeID = op_bitxor;
1042 break;
1043 case OpOrEq:
1044 opcodeID = op_bitor;
1045 break;
1046 case OpModEq:
1047 opcodeID = op_mod;
1048 break;
1049 default:
1050 ASSERT_NOT_REACHED();
1051 return dst;
1052 }
1053
1054 RegisterID* src2 = generator.emitNode(m_right);
1055
1056 // Certain read-modify nodes require expression info to be emitted *after* m_right has been generated.
1057 // If this is required the node is passed as 'emitExpressionInfoForMe'; do so now.
1058 if (emitExpressionInfoForMe)
1059 generator.emitExpressionInfo(emitExpressionInfoForMe->divot(), emitExpressionInfoForMe->startOffset(), emitExpressionInfoForMe->endOffset());
1060
1061 return generator.emitBinaryOp(opcodeID, dst, src1, src2, types);
1062}
1063
1064RegisterID* ReadModifyResolveNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1065{
1066 if (RegisterID* local = generator.registerFor(m_ident)) {
1067 if (generator.isLocalConstant(m_ident)) {
1068 return emitReadModifyAssignment(generator, generator.finalDestination(dst), local, m_right, m_operator, OperandTypes(ResultType::unknownType(), m_right->resultDescriptor()));
1069 }
1070
1071 if (generator.leftHandSideNeedsCopy(m_rightHasAssignments, m_right->isPure(generator))) {
1072 RefPtr<RegisterID> result = generator.newTemporary();
1073 generator.emitMove(result.get(), local);
1074 emitReadModifyAssignment(generator, result.get(), result.get(), m_right, m_operator, OperandTypes(ResultType::unknownType(), m_right->resultDescriptor()));
1075 generator.emitMove(local, result.get());
1076 return generator.moveToDestinationIfNeeded(dst, result.get());
1077 }
1078
1079 RegisterID* result = emitReadModifyAssignment(generator, local, local, m_right, m_operator, OperandTypes(ResultType::unknownType(), m_right->resultDescriptor()));
1080 return generator.moveToDestinationIfNeeded(dst, result);
1081 }
1082
1083 int index = 0;
1084 size_t depth = 0;
1085 JSObject* globalObject = 0;
1086 if (generator.findScopedProperty(m_ident, index, depth, true, globalObject) && index != missingSymbolMarker()) {
1087 RefPtr<RegisterID> src1 = generator.emitGetScopedVar(generator.tempDestination(dst), depth, index, globalObject);
1088 RegisterID* result = emitReadModifyAssignment(generator, generator.finalDestination(dst, src1.get()), src1.get(), m_right, m_operator, OperandTypes(ResultType::unknownType(), m_right->resultDescriptor()));
1089 generator.emitPutScopedVar(depth, index, result, globalObject);
1090 return result;
1091 }
1092
1093 RefPtr<RegisterID> src1 = generator.tempDestination(dst);
1094 generator.emitExpressionInfo(divot() - startOffset() + m_ident.size(), m_ident.size(), 0);
1095 RefPtr<RegisterID> base = generator.emitResolveWithBase(generator.newTemporary(), src1.get(), m_ident);
1096 RegisterID* result = emitReadModifyAssignment(generator, generator.finalDestination(dst, src1.get()), src1.get(), m_right, m_operator, OperandTypes(ResultType::unknownType(), m_right->resultDescriptor()), this);
1097 return generator.emitPutById(base.get(), m_ident, result);
1098}
1099
1100// ------------------------------ AssignResolveNode -----------------------------------
1101
1102RegisterID* AssignResolveNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1103{
1104 if (RegisterID* local = generator.registerFor(m_ident)) {
1105 if (generator.isLocalConstant(m_ident))
1106 return generator.emitNode(dst, m_right);
1107
1108 RegisterID* result = generator.emitNode(local, m_right);
1109 return generator.moveToDestinationIfNeeded(dst, result);
1110 }
1111
1112 int index = 0;
1113 size_t depth = 0;
1114 JSObject* globalObject = 0;
1115 if (generator.findScopedProperty(m_ident, index, depth, true, globalObject) && index != missingSymbolMarker()) {
1116 if (dst == generator.ignoredResult())
1117 dst = 0;
1118 RegisterID* value = generator.emitNode(dst, m_right);
1119 generator.emitPutScopedVar(depth, index, value, globalObject);
1120 return value;
1121 }
1122
1123 RefPtr<RegisterID> base = generator.emitResolveBase(generator.newTemporary(), m_ident);
1124 if (dst == generator.ignoredResult())
1125 dst = 0;
1126 RegisterID* value = generator.emitNode(dst, m_right);
1127 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
1128 return generator.emitPutById(base.get(), m_ident, value);
1129}
1130
1131// ------------------------------ AssignDotNode -----------------------------------
1132
1133RegisterID* AssignDotNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1134{
1135 RefPtr<RegisterID> base = generator.emitNodeForLeftHandSide(m_base, m_rightHasAssignments, m_right->isPure(generator));
1136 RefPtr<RegisterID> value = generator.destinationForAssignResult(dst);
1137 RegisterID* result = generator.emitNode(value.get(), m_right);
1138 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
1139 generator.emitPutById(base.get(), m_ident, result);
1140 return generator.moveToDestinationIfNeeded(dst, result);
1141}
1142
1143// ------------------------------ ReadModifyDotNode -----------------------------------
1144
1145RegisterID* ReadModifyDotNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1146{
1147 RefPtr<RegisterID> base = generator.emitNodeForLeftHandSide(m_base, m_rightHasAssignments, m_right->isPure(generator));
1148
1149 generator.emitExpressionInfo(divot() - m_subexpressionDivotOffset, startOffset() - m_subexpressionDivotOffset, m_subexpressionEndOffset);
1150 RefPtr<RegisterID> value = generator.emitGetById(generator.tempDestination(dst), base.get(), m_ident);
1151 RegisterID* updatedValue = emitReadModifyAssignment(generator, generator.finalDestination(dst, value.get()), value.get(), m_right, m_operator, OperandTypes(ResultType::unknownType(), m_right->resultDescriptor()));
1152
1153 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
1154 return generator.emitPutById(base.get(), m_ident, updatedValue);
1155}
1156
1157// ------------------------------ AssignErrorNode -----------------------------------
1158
1159RegisterID* AssignErrorNode::emitBytecode(BytecodeGenerator& generator, RegisterID*)
1160{
1161 return emitThrowError(generator, ReferenceError, "Left side of assignment is not a reference.");
1162}
1163
1164// ------------------------------ AssignBracketNode -----------------------------------
1165
1166RegisterID* AssignBracketNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1167{
1168 RefPtr<RegisterID> base = generator.emitNodeForLeftHandSide(m_base, m_subscriptHasAssignments || m_rightHasAssignments, m_subscript->isPure(generator) && m_right->isPure(generator));
1169 RefPtr<RegisterID> property = generator.emitNodeForLeftHandSide(m_subscript, m_rightHasAssignments, m_right->isPure(generator));
1170 RefPtr<RegisterID> value = generator.destinationForAssignResult(dst);
1171 RegisterID* result = generator.emitNode(value.get(), m_right);
1172
1173 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
1174 generator.emitPutByVal(base.get(), property.get(), result);
1175 return generator.moveToDestinationIfNeeded(dst, result);
1176}
1177
1178// ------------------------------ ReadModifyBracketNode -----------------------------------
1179
1180RegisterID* ReadModifyBracketNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1181{
1182 RefPtr<RegisterID> base = generator.emitNodeForLeftHandSide(m_base, m_subscriptHasAssignments || m_rightHasAssignments, m_subscript->isPure(generator) && m_right->isPure(generator));
1183 RefPtr<RegisterID> property = generator.emitNodeForLeftHandSide(m_subscript, m_rightHasAssignments, m_right->isPure(generator));
1184
1185 generator.emitExpressionInfo(divot() - m_subexpressionDivotOffset, startOffset() - m_subexpressionDivotOffset, m_subexpressionEndOffset);
1186 RefPtr<RegisterID> value = generator.emitGetByVal(generator.tempDestination(dst), base.get(), property.get());
1187 RegisterID* updatedValue = emitReadModifyAssignment(generator, generator.finalDestination(dst, value.get()), value.get(), m_right, m_operator, OperandTypes(ResultType::unknownType(), m_right->resultDescriptor()));
1188
1189 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
1190 generator.emitPutByVal(base.get(), property.get(), updatedValue);
1191
1192 return updatedValue;
1193}
1194
1195// ------------------------------ CommaNode ------------------------------------
1196
1197RegisterID* CommaNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1198{
1199 generator.emitNode(generator.ignoredResult(), m_expr1);
1200 return generator.emitNode(dst, m_expr2);
1201}
1202
1203// ------------------------------ ConstDeclNode ------------------------------------
1204
1205RegisterID* ConstDeclNode::emitCodeSingle(BytecodeGenerator& generator)
1206{
1207 if (RegisterID* local = generator.constRegisterFor(m_ident)) {
1208 if (!m_init)
1209 return local;
1210
1211 return generator.emitNode(local, m_init);
1212 }
1213
1214 // FIXME: While this code should only be hit in eval code, it will potentially
1215 // assign to the wrong base if m_ident exists in an intervening dynamic scope.
1216 RefPtr<RegisterID> base = generator.emitResolveBase(generator.newTemporary(), m_ident);
1217 RegisterID* value = m_init ? generator.emitNode(m_init) : generator.emitLoad(0, jsUndefined());
1218 return generator.emitPutById(base.get(), m_ident, value);
1219}
1220
1221RegisterID* ConstDeclNode::emitBytecode(BytecodeGenerator& generator, RegisterID*)
1222{
1223 RegisterID* result = 0;
1224 for (ConstDeclNode* n = this; n; n = n->m_next)
1225 result = n->emitCodeSingle(generator);
1226
1227 return result;
1228}
1229
1230// ------------------------------ ConstStatementNode -----------------------------
1231
1232RegisterID* ConstStatementNode::emitBytecode(BytecodeGenerator& generator, RegisterID*)
1233{
1234 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1235 return generator.emitNode(m_next);
1236}
1237
1238// ------------------------------ Helper functions for handling Vectors of StatementNode -------------------------------
1239
1240static inline void statementListEmitCode(const StatementVector& statements, BytecodeGenerator& generator, RegisterID* dst)
1241{
1242 size_t size = statements.size();
1243 for (size_t i = 0; i < size; ++i)
1244 generator.emitNode(dst, statements[i]);
1245}
1246
1247// ------------------------------ BlockNode ------------------------------------
1248
1249RegisterID* BlockNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1250{
1251 statementListEmitCode(m_children, generator, dst);
1252 return 0;
1253}
1254
1255// ------------------------------ EmptyStatementNode ---------------------------
1256
1257RegisterID* EmptyStatementNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1258{
1259 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1260 return dst;
1261}
1262
1263// ------------------------------ DebuggerStatementNode ---------------------------
1264
1265RegisterID* DebuggerStatementNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1266{
1267 generator.emitDebugHook(DidReachBreakpoint, firstLine(), lastLine());
1268 return dst;
1269}
1270
1271// ------------------------------ ExprStatementNode ----------------------------
1272
1273RegisterID* ExprStatementNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1274{
1275 ASSERT(m_expr);
1276 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1277 return generator.emitNode(dst, m_expr);
1278}
1279
1280// ------------------------------ VarStatementNode ----------------------------
1281
1282RegisterID* VarStatementNode::emitBytecode(BytecodeGenerator& generator, RegisterID*)
1283{
1284 ASSERT(m_expr);
1285 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1286 return generator.emitNode(m_expr);
1287}
1288
1289// ------------------------------ IfNode ---------------------------------------
1290
1291RegisterID* IfNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1292{
1293 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1294
1295 RefPtr<Label> afterThen = generator.newLabel();
1296
1297 RegisterID* cond = generator.emitNode(m_condition);
1298 generator.emitJumpIfFalse(cond, afterThen.get());
1299
1300 generator.emitNode(dst, m_ifBlock);
1301 generator.emitLabel(afterThen.get());
1302
1303 // FIXME: This should return the last statement executed so that it can be returned as a Completion.
1304 return 0;
1305}
1306
1307// ------------------------------ IfElseNode ---------------------------------------
1308
1309RegisterID* IfElseNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1310{
1311 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1312
1313 RefPtr<Label> beforeElse = generator.newLabel();
1314 RefPtr<Label> afterElse = generator.newLabel();
1315
1316 RegisterID* cond = generator.emitNode(m_condition);
1317 generator.emitJumpIfFalse(cond, beforeElse.get());
1318
1319 generator.emitNode(dst, m_ifBlock);
1320 generator.emitJump(afterElse.get());
1321
1322 generator.emitLabel(beforeElse.get());
1323
1324 generator.emitNode(dst, m_elseBlock);
1325
1326 generator.emitLabel(afterElse.get());
1327
1328 // FIXME: This should return the last statement executed so that it can be returned as a Completion.
1329 return 0;
1330}
1331
1332// ------------------------------ DoWhileNode ----------------------------------
1333
1334RegisterID* DoWhileNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1335{
1336 RefPtr<LabelScope> scope = generator.newLabelScope(LabelScope::Loop);
1337
1338 RefPtr<Label> topOfLoop = generator.newLabel();
1339 generator.emitLabel(topOfLoop.get());
1340
1341 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1342
1343 RefPtr<RegisterID> result = generator.emitNode(dst, m_statement);
1344
1345 generator.emitLabel(scope->continueTarget());
1346 generator.emitDebugHook(WillExecuteStatement, m_expr->lineNo(), m_expr->lineNo());
1347 RegisterID* cond = generator.emitNode(m_expr);
1348 generator.emitJumpIfTrue(cond, topOfLoop.get());
1349
1350 generator.emitLabel(scope->breakTarget());
1351 return result.get();
1352}
1353
1354// ------------------------------ WhileNode ------------------------------------
1355
1356RegisterID* WhileNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1357{
1358 RefPtr<LabelScope> scope = generator.newLabelScope(LabelScope::Loop);
1359
1360 generator.emitJump(scope->continueTarget());
1361
1362 RefPtr<Label> topOfLoop = generator.newLabel();
1363 generator.emitLabel(topOfLoop.get());
1364
1365 generator.emitNode(dst, m_statement);
1366
1367 generator.emitLabel(scope->continueTarget());
1368 generator.emitDebugHook(WillExecuteStatement, m_expr->lineNo(), m_expr->lineNo());
1369 RegisterID* cond = generator.emitNode(m_expr);
1370 generator.emitJumpIfTrue(cond, topOfLoop.get());
1371
1372 generator.emitLabel(scope->breakTarget());
1373
1374 // FIXME: This should return the last statement executed so that it can be returned as a Completion
1375 return 0;
1376}
1377
1378// ------------------------------ ForNode --------------------------------------
1379
1380RegisterID* ForNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1381{
1382 if (dst == generator.ignoredResult())
1383 dst = 0;
1384
1385 RefPtr<LabelScope> scope = generator.newLabelScope(LabelScope::Loop);
1386
1387 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1388
1389 if (m_expr1)
1390 generator.emitNode(generator.ignoredResult(), m_expr1);
1391
1392 RefPtr<Label> condition = generator.newLabel();
1393 generator.emitJump(condition.get());
1394
1395 RefPtr<Label> topOfLoop = generator.newLabel();
1396 generator.emitLabel(topOfLoop.get());
1397
1398 RefPtr<RegisterID> result = generator.emitNode(dst, m_statement);
1399
1400 generator.emitLabel(scope->continueTarget());
1401 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1402 if (m_expr3)
1403 generator.emitNode(generator.ignoredResult(), m_expr3);
1404
1405 generator.emitLabel(condition.get());
1406 if (m_expr2) {
1407 RegisterID* cond = generator.emitNode(m_expr2);
1408 generator.emitJumpIfTrue(cond, topOfLoop.get());
1409 } else
1410 generator.emitJump(topOfLoop.get());
1411
1412 generator.emitLabel(scope->breakTarget());
1413 return result.get();
1414}
1415
1416// ------------------------------ ForInNode ------------------------------------
1417
1418RegisterID* ForInNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1419{
1420 RefPtr<LabelScope> scope = generator.newLabelScope(LabelScope::Loop);
1421
1422 if (!m_lexpr->isLocation())
1423 return emitThrowError(generator, ReferenceError, "Left side of for-in statement is not a reference.");
1424
1425 RefPtr<Label> continueTarget = generator.newLabel();
1426
1427 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1428
1429 if (m_init)
1430 generator.emitNode(generator.ignoredResult(), m_init);
1431 RegisterID* forInBase = generator.emitNode(m_expr);
1432 RefPtr<RegisterID> iter = generator.emitGetPropertyNames(generator.newTemporary(), forInBase);
1433 generator.emitJump(scope->continueTarget());
1434
1435 RefPtr<Label> loopStart = generator.newLabel();
1436 generator.emitLabel(loopStart.get());
1437
1438 RegisterID* propertyName;
1439 if (m_lexpr->isResolveNode()) {
1440 const Identifier& ident = static_cast<ResolveNode*>(m_lexpr)->identifier();
1441 propertyName = generator.registerFor(ident);
1442 if (!propertyName) {
1443 propertyName = generator.newTemporary();
1444 RefPtr<RegisterID> protect = propertyName;
1445 RegisterID* base = generator.emitResolveBase(generator.newTemporary(), ident);
1446
1447 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
1448 generator.emitPutById(base, ident, propertyName);
1449 }
1450 } else if (m_lexpr->isDotAccessorNode()) {
1451 DotAccessorNode* assignNode = static_cast<DotAccessorNode*>(m_lexpr);
1452 const Identifier& ident = assignNode->identifier();
1453 propertyName = generator.newTemporary();
1454 RefPtr<RegisterID> protect = propertyName;
1455 RegisterID* base = generator.emitNode(assignNode->base());
1456
1457 generator.emitExpressionInfo(assignNode->divot(), assignNode->startOffset(), assignNode->endOffset());
1458 generator.emitPutById(base, ident, propertyName);
1459 } else {
1460 ASSERT(m_lexpr->isBracketAccessorNode());
1461 BracketAccessorNode* assignNode = static_cast<BracketAccessorNode*>(m_lexpr);
1462 propertyName = generator.newTemporary();
1463 RefPtr<RegisterID> protect = propertyName;
1464 RefPtr<RegisterID> base = generator.emitNode(assignNode->base());
1465 RegisterID* subscript = generator.emitNode(assignNode->subscript());
1466
1467 generator.emitExpressionInfo(assignNode->divot(), assignNode->startOffset(), assignNode->endOffset());
1468 generator.emitPutByVal(base.get(), subscript, propertyName);
1469 }
1470
1471 generator.emitNode(dst, m_statement);
1472
1473 generator.emitLabel(scope->continueTarget());
1474 generator.emitNextPropertyName(propertyName, iter.get(), loopStart.get());
1475 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1476 generator.emitLabel(scope->breakTarget());
1477 return dst;
1478}
1479
1480// ------------------------------ ContinueNode ---------------------------------
1481
1482// ECMA 12.7
1483RegisterID* ContinueNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1484{
1485 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1486
1487 LabelScope* scope = generator.continueTarget(m_ident);
1488
1489 if (!scope)
1490 return m_ident.isEmpty()
1491 ? emitThrowError(generator, SyntaxError, "Invalid continue statement.")
1492 : emitThrowError(generator, SyntaxError, "Undefined label: '%s'.", m_ident);
1493
1494 generator.emitJumpScopes(scope->continueTarget(), scope->scopeDepth());
1495 return dst;
1496}
1497
1498// ------------------------------ BreakNode ------------------------------------
1499
1500// ECMA 12.8
1501RegisterID* BreakNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1502{
1503 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1504
1505 LabelScope* scope = generator.breakTarget(m_ident);
1506
1507 if (!scope)
1508 return m_ident.isEmpty()
1509 ? emitThrowError(generator, SyntaxError, "Invalid break statement.")
1510 : emitThrowError(generator, SyntaxError, "Undefined label: '%s'.", m_ident);
1511
1512 generator.emitJumpScopes(scope->breakTarget(), scope->scopeDepth());
1513 return dst;
1514}
1515
1516// ------------------------------ ReturnNode -----------------------------------
1517
1518RegisterID* ReturnNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1519{
1520 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1521 if (generator.codeType() != FunctionCode)
1522 return emitThrowError(generator, SyntaxError, "Invalid return statement.");
1523
1524 if (dst == generator.ignoredResult())
1525 dst = 0;
1526 RegisterID* r0 = m_value ? generator.emitNode(dst, m_value) : generator.emitLoad(dst, jsUndefined());
1527 RefPtr<RegisterID> returnRegister;
1528 if (generator.scopeDepth()) {
1529 RefPtr<Label> l0 = generator.newLabel();
1530 if (generator.hasFinaliser() && !r0->isTemporary()) {
1531 returnRegister = generator.emitMove(generator.newTemporary(), r0);
1532 r0 = returnRegister.get();
1533 }
1534 generator.emitJumpScopes(l0.get(), 0);
1535 generator.emitLabel(l0.get());
1536 }
1537 generator.emitDebugHook(WillLeaveCallFrame, firstLine(), lastLine());
1538 return generator.emitReturn(r0);
1539}
1540
1541// ------------------------------ WithNode -------------------------------------
1542
1543RegisterID* WithNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1544{
1545 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1546
1547 RefPtr<RegisterID> scope = generator.newTemporary();
1548 generator.emitNode(scope.get(), m_expr); // scope must be protected until popped
1549 generator.emitExpressionInfo(m_divot, m_expressionLength, 0);
1550 generator.emitPushScope(scope.get());
1551 RegisterID* result = generator.emitNode(dst, m_statement);
1552 generator.emitPopScope();
1553 return result;
1554}
1555
1556// ------------------------------ CaseBlockNode --------------------------------
1557
1558enum SwitchKind {
1559 SwitchUnset = 0,
1560 SwitchNumber = 1,
1561 SwitchString = 2,
1562 SwitchNeither = 3
1563};
1564
1565static void processClauseList(ClauseListNode* list, Vector<ExpressionNode*, 8>& literalVector, SwitchKind& typeForTable, bool& singleCharacterSwitch, int32_t& min_num, int32_t& max_num)
1566{
1567 for (; list; list = list->getNext()) {
1568 ExpressionNode* clauseExpression = list->getClause()->expr();
1569 literalVector.append(clauseExpression);
1570 if (clauseExpression->isNumber()) {
1571 double value = static_cast<NumberNode*>(clauseExpression)->value();
1572 JSValue jsValue = JSValue::makeInt32Fast(static_cast<int32_t>(value));
1573 if ((typeForTable & ~SwitchNumber) || !jsValue || (jsValue.getInt32Fast() != value)) {
1574 typeForTable = SwitchNeither;
1575 break;
1576 }
1577 int32_t intVal = static_cast<int32_t>(value);
1578 ASSERT(intVal == value);
1579 if (intVal < min_num)
1580 min_num = intVal;
1581 if (intVal > max_num)
1582 max_num = intVal;
1583 typeForTable = SwitchNumber;
1584 continue;
1585 }
1586 if (clauseExpression->isString()) {
1587 if (typeForTable & ~SwitchString) {
1588 typeForTable = SwitchNeither;
1589 break;
1590 }
1591 const UString& value = static_cast<StringNode*>(clauseExpression)->value().ustring();
1592 if (singleCharacterSwitch &= value.size() == 1) {
1593 int32_t intVal = value.rep()->data()[0];
1594 if (intVal < min_num)
1595 min_num = intVal;
1596 if (intVal > max_num)
1597 max_num = intVal;
1598 }
1599 typeForTable = SwitchString;
1600 continue;
1601 }
1602 typeForTable = SwitchNeither;
1603 break;
1604 }
1605}
1606
1607SwitchInfo::SwitchType CaseBlockNode::tryOptimizedSwitch(Vector<ExpressionNode*, 8>& literalVector, int32_t& min_num, int32_t& max_num)
1608{
1609 SwitchKind typeForTable = SwitchUnset;
1610 bool singleCharacterSwitch = true;
1611
1612 processClauseList(m_list1, literalVector, typeForTable, singleCharacterSwitch, min_num, max_num);
1613 processClauseList(m_list2, literalVector, typeForTable, singleCharacterSwitch, min_num, max_num);
1614
1615 if (typeForTable == SwitchUnset || typeForTable == SwitchNeither)
1616 return SwitchInfo::SwitchNone;
1617
1618 if (typeForTable == SwitchNumber) {
1619 int32_t range = max_num - min_num;
1620 if (min_num <= max_num && range <= 1000 && (range / literalVector.size()) < 10)
1621 return SwitchInfo::SwitchImmediate;
1622 return SwitchInfo::SwitchNone;
1623 }
1624
1625 ASSERT(typeForTable == SwitchString);
1626
1627 if (singleCharacterSwitch) {
1628 int32_t range = max_num - min_num;
1629 if (min_num <= max_num && range <= 1000 && (range / literalVector.size()) < 10)
1630 return SwitchInfo::SwitchCharacter;
1631 }
1632
1633 return SwitchInfo::SwitchString;
1634}
1635
1636RegisterID* CaseBlockNode::emitBytecodeForBlock(BytecodeGenerator& generator, RegisterID* switchExpression, RegisterID* dst)
1637{
1638 RefPtr<Label> defaultLabel;
1639 Vector<RefPtr<Label>, 8> labelVector;
1640 Vector<ExpressionNode*, 8> literalVector;
1641 int32_t min_num = std::numeric_limits<int32_t>::max();
1642 int32_t max_num = std::numeric_limits<int32_t>::min();
1643 SwitchInfo::SwitchType switchType = tryOptimizedSwitch(literalVector, min_num, max_num);
1644
1645 if (switchType != SwitchInfo::SwitchNone) {
1646 // Prepare the various labels
1647 for (uint32_t i = 0; i < literalVector.size(); i++)
1648 labelVector.append(generator.newLabel());
1649 defaultLabel = generator.newLabel();
1650 generator.beginSwitch(switchExpression, switchType);
1651 } else {
1652 // Setup jumps
1653 for (ClauseListNode* list = m_list1; list; list = list->getNext()) {
1654 RefPtr<RegisterID> clauseVal = generator.newTemporary();
1655 generator.emitNode(clauseVal.get(), list->getClause()->expr());
1656 generator.emitBinaryOp(op_stricteq, clauseVal.get(), clauseVal.get(), switchExpression, OperandTypes());
1657 labelVector.append(generator.newLabel());
1658 generator.emitJumpIfTrue(clauseVal.get(), labelVector[labelVector.size() - 1].get());
1659 }
1660
1661 for (ClauseListNode* list = m_list2; list; list = list->getNext()) {
1662 RefPtr<RegisterID> clauseVal = generator.newTemporary();
1663 generator.emitNode(clauseVal.get(), list->getClause()->expr());
1664 generator.emitBinaryOp(op_stricteq, clauseVal.get(), clauseVal.get(), switchExpression, OperandTypes());
1665 labelVector.append(generator.newLabel());
1666 generator.emitJumpIfTrue(clauseVal.get(), labelVector[labelVector.size() - 1].get());
1667 }
1668 defaultLabel = generator.newLabel();
1669 generator.emitJump(defaultLabel.get());
1670 }
1671
1672 RegisterID* result = 0;
1673
1674 size_t i = 0;
1675 for (ClauseListNode* list = m_list1; list; list = list->getNext()) {
1676 generator.emitLabel(labelVector[i++].get());
1677 statementListEmitCode(list->getClause()->children(), generator, dst);
1678 }
1679
1680 if (m_defaultClause) {
1681 generator.emitLabel(defaultLabel.get());
1682 statementListEmitCode(m_defaultClause->children(), generator, dst);
1683 }
1684
1685 for (ClauseListNode* list = m_list2; list; list = list->getNext()) {
1686 generator.emitLabel(labelVector[i++].get());
1687 statementListEmitCode(list->getClause()->children(), generator, dst);
1688 }
1689 if (!m_defaultClause)
1690 generator.emitLabel(defaultLabel.get());
1691
1692 ASSERT(i == labelVector.size());
1693 if (switchType != SwitchInfo::SwitchNone) {
1694 ASSERT(labelVector.size() == literalVector.size());
1695 generator.endSwitch(labelVector.size(), labelVector.data(), literalVector.data(), defaultLabel.get(), min_num, max_num);
1696 }
1697 return result;
1698}
1699
1700// ------------------------------ SwitchNode -----------------------------------
1701
1702RegisterID* SwitchNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1703{
1704 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1705
1706 RefPtr<LabelScope> scope = generator.newLabelScope(LabelScope::Switch);
1707
1708 RefPtr<RegisterID> r0 = generator.emitNode(m_expr);
1709 RegisterID* r1 = m_block->emitBytecodeForBlock(generator, r0.get(), dst);
1710
1711 generator.emitLabel(scope->breakTarget());
1712 return r1;
1713}
1714
1715// ------------------------------ LabelNode ------------------------------------
1716
1717RegisterID* LabelNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1718{
1719 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1720
1721 if (generator.breakTarget(m_name))
1722 return emitThrowError(generator, SyntaxError, "Duplicate label: %s.", m_name);
1723
1724 RefPtr<LabelScope> scope = generator.newLabelScope(LabelScope::NamedLabel, &m_name);
1725 RegisterID* r0 = generator.emitNode(dst, m_statement);
1726
1727 generator.emitLabel(scope->breakTarget());
1728 return r0;
1729}
1730
1731// ------------------------------ ThrowNode ------------------------------------
1732
1733RegisterID* ThrowNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1734{
1735 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1736
1737 if (dst == generator.ignoredResult())
1738 dst = 0;
1739 RefPtr<RegisterID> expr = generator.emitNode(m_expr);
1740 generator.emitExpressionInfo(divot(), startOffset(), endOffset());
1741 generator.emitThrow(expr.get());
1742 return 0;
1743}
1744
1745// ------------------------------ TryNode --------------------------------------
1746
1747RegisterID* TryNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
1748{
1749 generator.emitDebugHook(WillExecuteStatement, firstLine(), lastLine());
1750
1751 RefPtr<Label> tryStartLabel = generator.newLabel();
1752 RefPtr<Label> tryEndLabel = generator.newLabel();
1753 RefPtr<Label> finallyStart;
1754 RefPtr<RegisterID> finallyReturnAddr;
1755 if (m_finallyBlock) {
1756 finallyStart = generator.newLabel();
1757 finallyReturnAddr = generator.newTemporary();
1758 generator.pushFinallyContext(finallyStart.get(), finallyReturnAddr.get());
1759 }
1760 generator.emitLabel(tryStartLabel.get());
1761 generator.emitNode(dst, m_tryBlock);
1762 generator.emitLabel(tryEndLabel.get());
1763
1764 if (m_catchBlock) {
1765 RefPtr<Label> handlerEndLabel = generator.newLabel();
1766 generator.emitJump(handlerEndLabel.get());
1767 RefPtr<RegisterID> exceptionRegister = generator.emitCatch(generator.newTemporary(), tryStartLabel.get(), tryEndLabel.get());
1768 if (m_catchHasEval) {
1769 RefPtr<RegisterID> dynamicScopeObject = generator.emitNewObject(generator.newTemporary());
1770 generator.emitPutById(dynamicScopeObject.get(), m_exceptionIdent, exceptionRegister.get());
1771 generator.emitMove(exceptionRegister.get(), dynamicScopeObject.get());
1772 generator.emitPushScope(exceptionRegister.get());
1773 } else
1774 generator.emitPushNewScope(exceptionRegister.get(), m_exceptionIdent, exceptionRegister.get());
1775 generator.emitNode(dst, m_catchBlock);
1776 generator.emitPopScope();
1777 generator.emitLabel(handlerEndLabel.get());
1778 }
1779
1780 if (m_finallyBlock) {
1781 generator.popFinallyContext();
1782 // there may be important registers live at the time we jump
1783 // to a finally block (such as for a return or throw) so we
1784 // ref the highest register ever used as a conservative
1785 // approach to not clobbering anything important
1786 RefPtr<RegisterID> highestUsedRegister = generator.highestUsedRegister();
1787 RefPtr<Label> finallyEndLabel = generator.newLabel();
1788 generator.emitJumpSubroutine(finallyReturnAddr.get(), finallyStart.get());
1789 // Use a label to record the subtle fact that sret will return to the
1790 // next instruction. sret is the only way to jump without an explicit label.
1791 generator.emitLabel(generator.newLabel().get());
1792 generator.emitJump(finallyEndLabel.get());
1793
1794 // Finally block for exception path
1795 RefPtr<RegisterID> tempExceptionRegister = generator.emitCatch(generator.newTemporary(), tryStartLabel.get(), generator.emitLabel(generator.newLabel().get()).get());
1796 generator.emitJumpSubroutine(finallyReturnAddr.get(), finallyStart.get());
1797 // Use a label to record the subtle fact that sret will return to the
1798 // next instruction. sret is the only way to jump without an explicit label.
1799 generator.emitLabel(generator.newLabel().get());
1800 generator.emitThrow(tempExceptionRegister.get());
1801
1802 // emit the finally block itself
1803 generator.emitLabel(finallyStart.get());
1804 generator.emitNode(dst, m_finallyBlock);
1805 generator.emitSubroutineReturn(finallyReturnAddr.get());
1806
1807 generator.emitLabel(finallyEndLabel.get());
1808 }
1809
1810 return dst;
1811}
1812
1813// -----------------------------ScopeNodeData ---------------------------
1814
1815ScopeNodeData::ScopeNodeData(ParserArena& arena, SourceElements* children, VarStack* varStack, FunctionStack* funcStack, int numConstants)
1816 : m_numConstants(numConstants)
1817{
1818 m_arena.swap(arena);
1819 if (varStack)
1820 m_varStack.swap(*varStack);
1821 if (funcStack)
1822 m_functionStack.swap(*funcStack);
1823 if (children)
1824 children->releaseContentsIntoVector(m_children);
1825}
1826
1827void ScopeNodeData::mark()
1828{
1829 FunctionStack::iterator end = m_functionStack.end();
1830 for (FunctionStack::iterator ptr = m_functionStack.begin(); ptr != end; ++ptr) {
1831 FunctionBodyNode* body = (*ptr)->body();
1832 if (!body->isGenerated())
1833 continue;
1834 body->generatedBytecode().mark();
1835 }
1836}
1837
1838// ------------------------------ ScopeNode -----------------------------
1839
1840ScopeNode::ScopeNode(JSGlobalData* globalData)
1841 : StatementNode(globalData)
1842 , m_features(NoFeatures)
1843{
1844#if ENABLE(CODEBLOCK_SAMPLING)
1845 globalData->interpreter->sampler()->notifyOfScope(this);
1846#endif
1847}
1848
1849ScopeNode::ScopeNode(JSGlobalData* globalData, const SourceCode& source, SourceElements* children, VarStack* varStack, FunctionStack* funcStack, CodeFeatures features, int numConstants)
1850 : StatementNode(globalData)
1851 , m_data(new ScopeNodeData(globalData->parserArena, children, varStack, funcStack, numConstants))
1852 , m_features(features)
1853 , m_source(source)
1854{
1855#if ENABLE(CODEBLOCK_SAMPLING)
1856 globalData->interpreter->sampler()->notifyOfScope(this);
1857#endif
1858}
1859
1860// ------------------------------ ProgramNode -----------------------------
1861
1862inline ProgramNode::ProgramNode(JSGlobalData* globalData, SourceElements* children, VarStack* varStack, FunctionStack* funcStack, const SourceCode& source, CodeFeatures features, int numConstants)
1863 : ScopeNode(globalData, source, children, varStack, funcStack, features, numConstants)
1864{
1865}
1866
1867PassRefPtr<ProgramNode> ProgramNode::create(JSGlobalData* globalData, SourceElements* children, VarStack* varStack, FunctionStack* funcStack, const SourceCode& source, CodeFeatures features, int numConstants)
1868{
1869 RefPtr<ProgramNode> node = new (globalData) ProgramNode(globalData, children, varStack, funcStack, source, features, numConstants);
1870
1871 ASSERT(node->data()->m_arena.last() == node);
1872 node->data()->m_arena.removeLast();
1873 ASSERT(node->data()->m_arena.find(node.get()) == notFound);
1874
1875 return node.release();
1876}
1877
1878RegisterID* ProgramNode::emitBytecode(BytecodeGenerator& generator, RegisterID*)
1879{
1880 generator.emitDebugHook(WillExecuteProgram, firstLine(), lastLine());
1881
1882 RefPtr<RegisterID> dstRegister = generator.newTemporary();
1883 generator.emitLoad(dstRegister.get(), jsUndefined());
1884 statementListEmitCode(children(), generator, dstRegister.get());
1885
1886 generator.emitDebugHook(DidExecuteProgram, firstLine(), lastLine());
1887 generator.emitEnd(dstRegister.get());
1888 return 0;
1889}
1890
1891void ProgramNode::generateBytecode(ScopeChainNode* scopeChainNode)
1892{
1893 ScopeChain scopeChain(scopeChainNode);
1894 JSGlobalObject* globalObject = scopeChain.globalObject();
1895
1896 m_code.set(new ProgramCodeBlock(this, GlobalCode, globalObject, source().provider()));
1897
1898 BytecodeGenerator generator(this, globalObject->debugger(), scopeChain, &globalObject->symbolTable(), m_code.get());
1899 generator.generate();
1900
1901 destroyData();
1902}
1903
1904// ------------------------------ EvalNode -----------------------------
1905
1906inline EvalNode::EvalNode(JSGlobalData* globalData, SourceElements* children, VarStack* varStack, FunctionStack* funcStack, const SourceCode& source, CodeFeatures features, int numConstants)
1907 : ScopeNode(globalData, source, children, varStack, funcStack, features, numConstants)
1908{
1909}
1910
1911PassRefPtr<EvalNode> EvalNode::create(JSGlobalData* globalData, SourceElements* children, VarStack* varStack, FunctionStack* funcStack, const SourceCode& source, CodeFeatures features, int numConstants)
1912{
1913 RefPtr<EvalNode> node = new (globalData) EvalNode(globalData, children, varStack, funcStack, source, features, numConstants);
1914
1915 ASSERT(node->data()->m_arena.last() == node);
1916 node->data()->m_arena.removeLast();
1917 ASSERT(node->data()->m_arena.find(node.get()) == notFound);
1918
1919 return node.release();
1920}
1921
1922RegisterID* EvalNode::emitBytecode(BytecodeGenerator& generator, RegisterID*)
1923{
1924 generator.emitDebugHook(WillExecuteProgram, firstLine(), lastLine());
1925
1926 RefPtr<RegisterID> dstRegister = generator.newTemporary();
1927 generator.emitLoad(dstRegister.get(), jsUndefined());
1928 statementListEmitCode(children(), generator, dstRegister.get());
1929
1930 generator.emitDebugHook(DidExecuteProgram, firstLine(), lastLine());
1931 generator.emitEnd(dstRegister.get());
1932 return 0;
1933}
1934
1935void EvalNode::generateBytecode(ScopeChainNode* scopeChainNode)
1936{
1937 ScopeChain scopeChain(scopeChainNode);
1938 JSGlobalObject* globalObject = scopeChain.globalObject();
1939
1940 m_code.set(new EvalCodeBlock(this, globalObject, source().provider(), scopeChain.localDepth()));
1941
1942 BytecodeGenerator generator(this, globalObject->debugger(), scopeChain, &m_code->symbolTable(), m_code.get());
1943 generator.generate();
1944
1945 // Eval code needs to hang on to its declaration stacks to keep declaration info alive until Interpreter::execute time,
1946 // so the entire ScopeNodeData cannot be destoyed.
1947 children().clear();
1948}
1949
1950EvalCodeBlock& EvalNode::bytecodeForExceptionInfoReparse(ScopeChainNode* scopeChainNode, CodeBlock* codeBlockBeingRegeneratedFrom)
1951{
1952 ASSERT(!m_code);
1953
1954 ScopeChain scopeChain(scopeChainNode);
1955 JSGlobalObject* globalObject = scopeChain.globalObject();
1956
1957 m_code.set(new EvalCodeBlock(this, globalObject, source().provider(), scopeChain.localDepth()));
1958
1959 BytecodeGenerator generator(this, globalObject->debugger(), scopeChain, &m_code->symbolTable(), m_code.get());
1960 generator.setRegeneratingForExceptionInfo(codeBlockBeingRegeneratedFrom);
1961 generator.generate();
1962
1963 return *m_code;
1964}
1965
1966void EvalNode::mark()
1967{
1968 // We don't need to mark our own CodeBlock as the JSGlobalObject takes care of that
1969 data()->mark();
1970}
1971
1972// ------------------------------ FunctionBodyNode -----------------------------
1973
1974inline FunctionBodyNode::FunctionBodyNode(JSGlobalData* globalData)
1975 : ScopeNode(globalData)
1976#if ENABLE(JIT)
1977 , m_jitCode(0)
1978#endif
1979 , m_parameters(0)
1980 , m_parameterCount(0)
1981{
1982}
1983
1984inline FunctionBodyNode::FunctionBodyNode(JSGlobalData* globalData, SourceElements* children, VarStack* varStack, FunctionStack* funcStack, const SourceCode& sourceCode, CodeFeatures features, int numConstants)
1985 : ScopeNode(globalData, sourceCode, children, varStack, funcStack, features, numConstants)
1986#if ENABLE(JIT)
1987 , m_jitCode(0)
1988#endif
1989 , m_parameters(0)
1990 , m_parameterCount(0)
1991{
1992}
1993
1994FunctionBodyNode::~FunctionBodyNode()
1995{
1996 for (size_t i = 0; i < m_parameterCount; ++i)
1997 m_parameters[i].~Identifier();
1998 fastFree(m_parameters);
1999}
2000
2001void FunctionBodyNode::finishParsing(const SourceCode& source, ParameterNode* firstParameter)
2002{
2003 Vector<Identifier> parameters;
2004 for (ParameterNode* parameter = firstParameter; parameter; parameter = parameter->nextParam())
2005 parameters.append(parameter->ident());
2006 size_t count = parameters.size();
2007
2008 setSource(source);
2009 finishParsing(parameters.releaseBuffer(), count);
2010}
2011
2012void FunctionBodyNode::finishParsing(Identifier* parameters, size_t parameterCount)
2013{
2014 ASSERT(!source().isNull());
2015 m_parameters = parameters;
2016 m_parameterCount = parameterCount;
2017}
2018
2019void FunctionBodyNode::mark()
2020{
2021 if (m_code)
2022 m_code->mark();
2023}
2024
2025#if ENABLE(JIT)
2026PassRefPtr<FunctionBodyNode> FunctionBodyNode::createNativeThunk(JSGlobalData* globalData)
2027{
2028 RefPtr<FunctionBodyNode> body = new (globalData) FunctionBodyNode(globalData);
2029 globalData->parserArena.shrink(0);
2030 body->m_jitCode = globalData->jitStubs.ctiNativeCallThunk();
2031 return body.release();
2032}
2033#endif
2034
2035FunctionBodyNode* FunctionBodyNode::create(JSGlobalData* globalData)
2036{
2037 return new (globalData) FunctionBodyNode(globalData);
2038}
2039
2040PassRefPtr<FunctionBodyNode> FunctionBodyNode::create(JSGlobalData* globalData, SourceElements* children, VarStack* varStack, FunctionStack* funcStack, const SourceCode& sourceCode, CodeFeatures features, int numConstants)
2041{
2042 RefPtr<FunctionBodyNode> node = new (globalData) FunctionBodyNode(globalData, children, varStack, funcStack, sourceCode, features, numConstants);
2043
2044 ASSERT(node->data()->m_arena.last() == node);
2045 node->data()->m_arena.removeLast();
2046 ASSERT(node->data()->m_arena.find(node.get()) == notFound);
2047
2048 return node.release();
2049}
2050
2051void FunctionBodyNode::generateBytecode(ScopeChainNode* scopeChainNode)
2052{
2053 // This branch is only necessary since you can still create a non-stub FunctionBodyNode by
2054 // calling Parser::parse<FunctionBodyNode>().
2055 if (!data())
2056 scopeChainNode->globalData->parser->reparseInPlace(scopeChainNode->globalData, this);
2057 ASSERT(data());
2058
2059 ScopeChain scopeChain(scopeChainNode);
2060 JSGlobalObject* globalObject = scopeChain.globalObject();
2061
2062 m_code.set(new CodeBlock(this, FunctionCode, source().provider(), source().startOffset()));
2063
2064 BytecodeGenerator generator(this, globalObject->debugger(), scopeChain, &m_code->symbolTable(), m_code.get());
2065 generator.generate();
2066
2067 destroyData();
2068}
2069
2070#if ENABLE(JIT)
2071void FunctionBodyNode::generateJITCode(ScopeChainNode* scopeChainNode)
2072{
2073 bytecode(scopeChainNode);
2074 ASSERT(m_code);
2075 ASSERT(!m_code->jitCode());
2076 JIT::compile(scopeChainNode->globalData, m_code.get());
2077 ASSERT(m_code->jitCode());
2078 m_jitCode = m_code->jitCode();
2079}
2080#endif
2081
2082CodeBlock& FunctionBodyNode::bytecodeForExceptionInfoReparse(ScopeChainNode* scopeChainNode, CodeBlock* codeBlockBeingRegeneratedFrom)
2083{
2084 ASSERT(!m_code);
2085
2086 ScopeChain scopeChain(scopeChainNode);
2087 JSGlobalObject* globalObject = scopeChain.globalObject();
2088
2089 m_code.set(new CodeBlock(this, FunctionCode, source().provider(), source().startOffset()));
2090
2091 BytecodeGenerator generator(this, globalObject->debugger(), scopeChain, &m_code->symbolTable(), m_code.get());
2092 generator.setRegeneratingForExceptionInfo(codeBlockBeingRegeneratedFrom);
2093 generator.generate();
2094
2095 return *m_code;
2096}
2097
2098RegisterID* FunctionBodyNode::emitBytecode(BytecodeGenerator& generator, RegisterID*)
2099{
2100 generator.emitDebugHook(DidEnterCallFrame, firstLine(), lastLine());
2101 statementListEmitCode(children(), generator, generator.ignoredResult());
2102 if (children().size() && children().last()->isBlock()) {
2103 BlockNode* blockNode = static_cast<BlockNode*>(children().last());
2104 if (blockNode->children().size() && blockNode->children().last()->isReturnNode())
2105 return 0;
2106 }
2107
2108 RegisterID* r0 = generator.emitLoad(0, jsUndefined());
2109 generator.emitDebugHook(WillLeaveCallFrame, firstLine(), lastLine());
2110 generator.emitReturn(r0);
2111 return 0;
2112}
2113
2114UString FunctionBodyNode::paramString() const
2115{
2116 UString s("");
2117 for (size_t pos = 0; pos < m_parameterCount; ++pos) {
2118 if (!s.isEmpty())
2119 s += ", ";
2120 s += parameters()[pos].ustring();
2121 }
2122
2123 return s;
2124}
2125
2126Identifier* FunctionBodyNode::copyParameters()
2127{
2128 Identifier* parameters = static_cast<Identifier*>(fastMalloc(m_parameterCount * sizeof(Identifier)));
2129 VectorCopier<false, Identifier>::uninitializedCopy(m_parameters, m_parameters + m_parameterCount, parameters);
2130 return parameters;
2131}
2132
2133// ------------------------------ FuncDeclNode ---------------------------------
2134
2135JSFunction* FuncDeclNode::makeFunction(ExecState* exec, ScopeChainNode* scopeChain)
2136{
2137 return new (exec) JSFunction(exec, m_ident, m_body.get(), scopeChain);
2138}
2139
2140RegisterID* FuncDeclNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
2141{
2142 if (dst == generator.ignoredResult())
2143 dst = 0;
2144 return dst;
2145}
2146
2147// ------------------------------ FuncExprNode ---------------------------------
2148
2149RegisterID* FuncExprNode::emitBytecode(BytecodeGenerator& generator, RegisterID* dst)
2150{
2151 return generator.emitNewFunctionExpression(generator.finalDestination(dst), this);
2152}
2153
2154JSFunction* FuncExprNode::makeFunction(ExecState* exec, ScopeChainNode* scopeChain)
2155{
2156 JSFunction* func = new (exec) JSFunction(exec, m_ident, m_body.get(), scopeChain);
2157
2158 /*
2159 The Identifier in a FunctionExpression can be referenced from inside
2160 the FunctionExpression's FunctionBody to allow the function to call
2161 itself recursively. However, unlike in a FunctionDeclaration, the
2162 Identifier in a FunctionExpression cannot be referenced from and
2163 does not affect the scope enclosing the FunctionExpression.
2164 */
2165
2166 if (!m_ident.isNull()) {
2167 JSStaticScopeObject* functionScopeObject = new (exec) JSStaticScopeObject(exec, m_ident, func, ReadOnly | DontDelete);
2168 func->scope().push(functionScopeObject);
2169 }
2170
2171 return func;
2172}
2173
2174} // namespace JSC
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