blob: 9eacf57a7138435f3150de93b8f3a2f5e56c14b5 [file] [log] [blame]
Steve Blocka7e24c12009-10-30 11:49:00 +00001// Copyright 2006-2008 the V8 project authors. All rights reserved.
2// Redistribution and use in source and binary forms, with or without
3// modification, are permitted provided that the following conditions are
4// met:
5//
6// * Redistributions of source code must retain the above copyright
7// notice, this list of conditions and the following disclaimer.
8// * Redistributions in binary form must reproduce the above
9// copyright notice, this list of conditions and the following
10// disclaimer in the documentation and/or other materials provided
11// with the distribution.
12// * Neither the name of Google Inc. nor the names of its
13// contributors may be used to endorse or promote products derived
14// from this software without specific prior written permission.
15//
16// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
17// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
18// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
19// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
20// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
21// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
22// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
23// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
24// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
25// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
26// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
27
28#include "v8.h"
29
30#include "accessors.h"
31#include "api.h"
32#include "bootstrapper.h"
33#include "compiler.h"
34#include "debug.h"
35#include "execution.h"
36#include "global-handles.h"
37#include "macro-assembler.h"
38#include "natives.h"
Steve Blockd0582a62009-12-15 09:54:21 +000039#include "snapshot.h"
Steve Blocka7e24c12009-10-30 11:49:00 +000040
41namespace v8 {
42namespace internal {
43
44// A SourceCodeCache uses a FixedArray to store pairs of
45// (AsciiString*, JSFunction*), mapping names of native code files
46// (runtime.js, etc.) to precompiled functions. Instead of mapping
47// names to functions it might make sense to let the JS2C tool
48// generate an index for each native JS file.
49class SourceCodeCache BASE_EMBEDDED {
50 public:
51 explicit SourceCodeCache(Script::Type type): type_(type), cache_(NULL) { }
52
53 void Initialize(bool create_heap_objects) {
54 cache_ = create_heap_objects ? Heap::empty_fixed_array() : NULL;
55 }
56
57 void Iterate(ObjectVisitor* v) {
58 v->VisitPointer(bit_cast<Object**, FixedArray**>(&cache_));
59 }
60
61
62 bool Lookup(Vector<const char> name, Handle<JSFunction>* handle) {
63 for (int i = 0; i < cache_->length(); i+=2) {
64 SeqAsciiString* str = SeqAsciiString::cast(cache_->get(i));
65 if (str->IsEqualTo(name)) {
66 *handle = Handle<JSFunction>(JSFunction::cast(cache_->get(i + 1)));
67 return true;
68 }
69 }
70 return false;
71 }
72
73
74 void Add(Vector<const char> name, Handle<JSFunction> fun) {
75 ASSERT(fun->IsBoilerplate());
76 HandleScope scope;
77 int length = cache_->length();
78 Handle<FixedArray> new_array =
79 Factory::NewFixedArray(length + 2, TENURED);
80 cache_->CopyTo(0, *new_array, 0, cache_->length());
81 cache_ = *new_array;
82 Handle<String> str = Factory::NewStringFromAscii(name, TENURED);
83 cache_->set(length, *str);
84 cache_->set(length + 1, *fun);
85 Script::cast(fun->shared()->script())->set_type(Smi::FromInt(type_));
86 }
87
88 private:
89 Script::Type type_;
90 FixedArray* cache_;
91 DISALLOW_COPY_AND_ASSIGN(SourceCodeCache);
92};
93
94static SourceCodeCache natives_cache(Script::TYPE_NATIVE);
95static SourceCodeCache extensions_cache(Script::TYPE_EXTENSION);
Steve Blockd0582a62009-12-15 09:54:21 +000096// This is for delete, not delete[].
97static List<char*>* delete_these_non_arrays_on_tear_down = NULL;
Leon Clarkee46be812010-01-19 14:06:41 +000098// This is for delete[]
99static List<char*>* delete_these_arrays_on_tear_down = NULL;
Steve Blockd0582a62009-12-15 09:54:21 +0000100
101
102NativesExternalStringResource::NativesExternalStringResource(const char* source)
103 : data_(source), length_(StrLength(source)) {
104 if (delete_these_non_arrays_on_tear_down == NULL) {
105 delete_these_non_arrays_on_tear_down = new List<char*>(2);
106 }
107 // The resources are small objects and we only make a fixed number of
108 // them, but let's clean them up on exit for neatness.
109 delete_these_non_arrays_on_tear_down->
110 Add(reinterpret_cast<char*>(this));
111}
Steve Blocka7e24c12009-10-30 11:49:00 +0000112
113
114Handle<String> Bootstrapper::NativesSourceLookup(int index) {
115 ASSERT(0 <= index && index < Natives::GetBuiltinsCount());
116 if (Heap::natives_source_cache()->get(index)->IsUndefined()) {
Steve Blockd0582a62009-12-15 09:54:21 +0000117 if (!Snapshot::IsEnabled() || FLAG_new_snapshot) {
118 // We can use external strings for the natives.
119 NativesExternalStringResource* resource =
120 new NativesExternalStringResource(
121 Natives::GetScriptSource(index).start());
122 Handle<String> source_code =
123 Factory::NewExternalStringFromAscii(resource);
124 Heap::natives_source_cache()->set(index, *source_code);
125 } else {
126 // Old snapshot code can't cope with external strings at all.
127 Handle<String> source_code =
128 Factory::NewStringFromAscii(Natives::GetScriptSource(index));
129 Heap::natives_source_cache()->set(index, *source_code);
130 }
Steve Blocka7e24c12009-10-30 11:49:00 +0000131 }
132 Handle<Object> cached_source(Heap::natives_source_cache()->get(index));
133 return Handle<String>::cast(cached_source);
134}
135
136
137bool Bootstrapper::NativesCacheLookup(Vector<const char> name,
138 Handle<JSFunction>* handle) {
139 return natives_cache.Lookup(name, handle);
140}
141
142
143void Bootstrapper::NativesCacheAdd(Vector<const char> name,
144 Handle<JSFunction> fun) {
145 natives_cache.Add(name, fun);
146}
147
148
149void Bootstrapper::Initialize(bool create_heap_objects) {
150 natives_cache.Initialize(create_heap_objects);
151 extensions_cache.Initialize(create_heap_objects);
152}
153
154
Leon Clarkee46be812010-01-19 14:06:41 +0000155char* Bootstrapper::AllocateAutoDeletedArray(int bytes) {
156 char* memory = new char[bytes];
157 if (memory != NULL) {
158 if (delete_these_arrays_on_tear_down == NULL) {
159 delete_these_arrays_on_tear_down = new List<char*>(2);
160 }
161 delete_these_arrays_on_tear_down->Add(memory);
162 }
163 return memory;
164}
165
166
Steve Blocka7e24c12009-10-30 11:49:00 +0000167void Bootstrapper::TearDown() {
Steve Blockd0582a62009-12-15 09:54:21 +0000168 if (delete_these_non_arrays_on_tear_down != NULL) {
169 int len = delete_these_non_arrays_on_tear_down->length();
170 ASSERT(len < 20); // Don't use this mechanism for unbounded allocations.
171 for (int i = 0; i < len; i++) {
172 delete delete_these_non_arrays_on_tear_down->at(i);
Leon Clarkee46be812010-01-19 14:06:41 +0000173 delete_these_non_arrays_on_tear_down->at(i) = NULL;
Steve Blockd0582a62009-12-15 09:54:21 +0000174 }
175 delete delete_these_non_arrays_on_tear_down;
176 delete_these_non_arrays_on_tear_down = NULL;
177 }
178
Leon Clarkee46be812010-01-19 14:06:41 +0000179 if (delete_these_arrays_on_tear_down != NULL) {
180 int len = delete_these_arrays_on_tear_down->length();
181 ASSERT(len < 1000); // Don't use this mechanism for unbounded allocations.
182 for (int i = 0; i < len; i++) {
183 delete[] delete_these_arrays_on_tear_down->at(i);
184 delete_these_arrays_on_tear_down->at(i) = NULL;
185 }
186 delete delete_these_arrays_on_tear_down;
187 delete_these_arrays_on_tear_down = NULL;
188 }
189
Steve Blocka7e24c12009-10-30 11:49:00 +0000190 natives_cache.Initialize(false); // Yes, symmetrical
191 extensions_cache.Initialize(false);
192}
193
194
195// Pending fixups are code positions that refer to builtin code
196// objects that were not available at the time the code was generated.
197// The pending list is processed whenever an environment has been
198// created.
199class PendingFixups : public AllStatic {
200 public:
201 static void Add(Code* code, MacroAssembler* masm);
202 static bool Process(Handle<JSBuiltinsObject> builtins);
203
204 static void Iterate(ObjectVisitor* v);
205
206 private:
207 static List<Object*> code_;
208 static List<const char*> name_;
209 static List<int> pc_;
210 static List<uint32_t> flags_;
211
212 static void Clear();
213};
214
215
216List<Object*> PendingFixups::code_(0);
217List<const char*> PendingFixups::name_(0);
218List<int> PendingFixups::pc_(0);
219List<uint32_t> PendingFixups::flags_(0);
220
221
222void PendingFixups::Add(Code* code, MacroAssembler* masm) {
223 // Note this code is not only called during bootstrapping.
224 List<MacroAssembler::Unresolved>* unresolved = masm->unresolved();
225 int n = unresolved->length();
226 for (int i = 0; i < n; i++) {
227 const char* name = unresolved->at(i).name;
228 code_.Add(code);
229 name_.Add(name);
230 pc_.Add(unresolved->at(i).pc);
231 flags_.Add(unresolved->at(i).flags);
232 LOG(StringEvent("unresolved", name));
233 }
234}
235
236
237bool PendingFixups::Process(Handle<JSBuiltinsObject> builtins) {
238 HandleScope scope;
239 // NOTE: Extra fixups may be added to the list during the iteration
240 // due to lazy compilation of functions during the processing. Do not
241 // cache the result of getting the length of the code list.
242 for (int i = 0; i < code_.length(); i++) {
243 const char* name = name_[i];
244 uint32_t flags = flags_[i];
245 Handle<String> symbol = Factory::LookupAsciiSymbol(name);
246 Object* o = builtins->GetProperty(*symbol);
247#ifdef DEBUG
248 if (!o->IsJSFunction()) {
249 V8_Fatal(__FILE__, __LINE__, "Cannot resolve call to builtin %s", name);
250 }
251#endif
252 Handle<JSFunction> f = Handle<JSFunction>(JSFunction::cast(o));
253 // Make sure the number of parameters match the formal parameter count.
254 int argc = Bootstrapper::FixupFlagsArgumentsCount::decode(flags);
255 USE(argc);
256 ASSERT(f->shared()->formal_parameter_count() == argc);
257 if (!f->is_compiled()) {
258 // Do lazy compilation and check for stack overflows.
259 if (!CompileLazy(f, CLEAR_EXCEPTION)) {
260 Clear();
261 return false;
262 }
263 }
264 Code* code = Code::cast(code_[i]);
265 Address pc = code->instruction_start() + pc_[i];
Steve Block3ce2e202009-11-05 08:53:23 +0000266 RelocInfo target(pc, RelocInfo::CODE_TARGET, 0);
Steve Blocka7e24c12009-10-30 11:49:00 +0000267 bool use_code_object = Bootstrapper::FixupFlagsUseCodeObject::decode(flags);
Steve Blocka7e24c12009-10-30 11:49:00 +0000268 if (use_code_object) {
Steve Block3ce2e202009-11-05 08:53:23 +0000269 target.set_target_object(f->code());
Steve Blocka7e24c12009-10-30 11:49:00 +0000270 } else {
Steve Block3ce2e202009-11-05 08:53:23 +0000271 target.set_target_address(f->code()->instruction_start());
Steve Blocka7e24c12009-10-30 11:49:00 +0000272 }
Steve Blocka7e24c12009-10-30 11:49:00 +0000273 LOG(StringEvent("resolved", name));
274 }
275 Clear();
276
277 // TODO(1240818): We should probably try to avoid doing this for all
278 // the V8 builtin JS files. It should only happen after running
279 // runtime.js - just like there shouldn't be any fixups left after
280 // that.
281 for (int i = 0; i < Builtins::NumberOfJavaScriptBuiltins(); i++) {
282 Builtins::JavaScript id = static_cast<Builtins::JavaScript>(i);
283 Handle<String> name = Factory::LookupAsciiSymbol(Builtins::GetName(id));
284 JSFunction* function = JSFunction::cast(builtins->GetProperty(*name));
285 builtins->set_javascript_builtin(id, function);
286 }
287
288 return true;
289}
290
291
292void PendingFixups::Clear() {
293 code_.Clear();
294 name_.Clear();
295 pc_.Clear();
296 flags_.Clear();
297}
298
299
300void PendingFixups::Iterate(ObjectVisitor* v) {
301 if (!code_.is_empty()) {
302 v->VisitPointers(&code_[0], &code_[0] + code_.length());
303 }
304}
305
306
307class Genesis BASE_EMBEDDED {
308 public:
309 Genesis(Handle<Object> global_object,
310 v8::Handle<v8::ObjectTemplate> global_template,
311 v8::ExtensionConfiguration* extensions);
312 ~Genesis();
313
314 Handle<Context> result() { return result_; }
315
316 Genesis* previous() { return previous_; }
317 static Genesis* current() { return current_; }
318
319 // Support for thread preemption.
320 static int ArchiveSpacePerThread();
321 static char* ArchiveState(char* to);
322 static char* RestoreState(char* from);
323
324 private:
325 Handle<Context> global_context_;
326
327 // There may be more than one active genesis object: When GC is
328 // triggered during environment creation there may be weak handle
329 // processing callbacks which may create new environments.
330 Genesis* previous_;
331 static Genesis* current_;
332
333 Handle<Context> global_context() { return global_context_; }
334
335 void CreateRoots(v8::Handle<v8::ObjectTemplate> global_template,
336 Handle<Object> global_object);
337 void InstallNativeFunctions();
338 bool InstallNatives();
339 bool InstallExtensions(v8::ExtensionConfiguration* extensions);
340 bool InstallExtension(const char* name);
341 bool InstallExtension(v8::RegisteredExtension* current);
342 bool InstallSpecialObjects();
343 bool ConfigureApiObject(Handle<JSObject> object,
344 Handle<ObjectTemplateInfo> object_template);
345 bool ConfigureGlobalObjects(v8::Handle<v8::ObjectTemplate> global_template);
346
347 // Migrates all properties from the 'from' object to the 'to'
348 // object and overrides the prototype in 'to' with the one from
349 // 'from'.
350 void TransferObject(Handle<JSObject> from, Handle<JSObject> to);
351 void TransferNamedProperties(Handle<JSObject> from, Handle<JSObject> to);
352 void TransferIndexedProperties(Handle<JSObject> from, Handle<JSObject> to);
353
354 Handle<DescriptorArray> ComputeFunctionInstanceDescriptor(
355 bool make_prototype_read_only,
356 bool make_prototype_enumerable = false);
357 void MakeFunctionInstancePrototypeWritable();
358
359 void AddSpecialFunction(Handle<JSObject> prototype,
360 const char* name,
361 Handle<Code> code);
362
363 void BuildSpecialFunctionTable();
364
365 static bool CompileBuiltin(int index);
366 static bool CompileNative(Vector<const char> name, Handle<String> source);
367 static bool CompileScriptCached(Vector<const char> name,
368 Handle<String> source,
369 SourceCodeCache* cache,
370 v8::Extension* extension,
371 bool use_runtime_context);
372
373 Handle<Context> result_;
374};
375
376Genesis* Genesis::current_ = NULL;
377
378
379void Bootstrapper::Iterate(ObjectVisitor* v) {
380 natives_cache.Iterate(v);
Steve Blockd0582a62009-12-15 09:54:21 +0000381 v->Synchronize("NativesCache");
Steve Blocka7e24c12009-10-30 11:49:00 +0000382 extensions_cache.Iterate(v);
Steve Blockd0582a62009-12-15 09:54:21 +0000383 v->Synchronize("Extensions");
Steve Blocka7e24c12009-10-30 11:49:00 +0000384 PendingFixups::Iterate(v);
Steve Blockd0582a62009-12-15 09:54:21 +0000385 v->Synchronize("PendingFixups");
Steve Blocka7e24c12009-10-30 11:49:00 +0000386}
387
388
389// While setting up the environment, we collect code positions that
390// need to be patched before we can run any code in the environment.
391void Bootstrapper::AddFixup(Code* code, MacroAssembler* masm) {
392 PendingFixups::Add(code, masm);
393}
394
395
396bool Bootstrapper::IsActive() {
397 return Genesis::current() != NULL;
398}
399
400
401Handle<Context> Bootstrapper::CreateEnvironment(
402 Handle<Object> global_object,
403 v8::Handle<v8::ObjectTemplate> global_template,
404 v8::ExtensionConfiguration* extensions) {
405 Genesis genesis(global_object, global_template, extensions);
406 return genesis.result();
407}
408
409
410static void SetObjectPrototype(Handle<JSObject> object, Handle<Object> proto) {
411 // object.__proto__ = proto;
412 Handle<Map> old_to_map = Handle<Map>(object->map());
413 Handle<Map> new_to_map = Factory::CopyMapDropTransitions(old_to_map);
414 new_to_map->set_prototype(*proto);
415 object->set_map(*new_to_map);
416}
417
418
419void Bootstrapper::DetachGlobal(Handle<Context> env) {
420 JSGlobalProxy::cast(env->global_proxy())->set_context(*Factory::null_value());
421 SetObjectPrototype(Handle<JSObject>(env->global_proxy()),
422 Factory::null_value());
423 env->set_global_proxy(env->global());
424 env->global()->set_global_receiver(env->global());
425}
426
427
428Genesis::~Genesis() {
429 ASSERT(current_ == this);
430 current_ = previous_;
431}
432
433
434static Handle<JSFunction> InstallFunction(Handle<JSObject> target,
435 const char* name,
436 InstanceType type,
437 int instance_size,
438 Handle<JSObject> prototype,
439 Builtins::Name call,
440 bool is_ecma_native) {
441 Handle<String> symbol = Factory::LookupAsciiSymbol(name);
442 Handle<Code> call_code = Handle<Code>(Builtins::builtin(call));
443 Handle<JSFunction> function =
444 Factory::NewFunctionWithPrototype(symbol,
445 type,
446 instance_size,
447 prototype,
448 call_code,
449 is_ecma_native);
450 SetProperty(target, symbol, function, DONT_ENUM);
451 if (is_ecma_native) {
452 function->shared()->set_instance_class_name(*symbol);
453 }
454 return function;
455}
456
457
458Handle<DescriptorArray> Genesis::ComputeFunctionInstanceDescriptor(
459 bool make_prototype_read_only,
460 bool make_prototype_enumerable) {
461 Handle<DescriptorArray> result = Factory::empty_descriptor_array();
462
463 // Add prototype.
464 PropertyAttributes attributes = static_cast<PropertyAttributes>(
465 (make_prototype_enumerable ? 0 : DONT_ENUM)
466 | DONT_DELETE
467 | (make_prototype_read_only ? READ_ONLY : 0));
468 result =
469 Factory::CopyAppendProxyDescriptor(
470 result,
471 Factory::prototype_symbol(),
472 Factory::NewProxy(&Accessors::FunctionPrototype),
473 attributes);
474
475 attributes =
476 static_cast<PropertyAttributes>(DONT_ENUM | DONT_DELETE | READ_ONLY);
477 // Add length.
478 result =
479 Factory::CopyAppendProxyDescriptor(
480 result,
481 Factory::length_symbol(),
482 Factory::NewProxy(&Accessors::FunctionLength),
483 attributes);
484
485 // Add name.
486 result =
487 Factory::CopyAppendProxyDescriptor(
488 result,
489 Factory::name_symbol(),
490 Factory::NewProxy(&Accessors::FunctionName),
491 attributes);
492
493 // Add arguments.
494 result =
495 Factory::CopyAppendProxyDescriptor(
496 result,
497 Factory::arguments_symbol(),
498 Factory::NewProxy(&Accessors::FunctionArguments),
499 attributes);
500
501 // Add caller.
502 result =
503 Factory::CopyAppendProxyDescriptor(
504 result,
505 Factory::caller_symbol(),
506 Factory::NewProxy(&Accessors::FunctionCaller),
507 attributes);
508
509 return result;
510}
511
512
513void Genesis::CreateRoots(v8::Handle<v8::ObjectTemplate> global_template,
514 Handle<Object> global_object) {
515 HandleScope scope;
516 // Allocate the global context FixedArray first and then patch the
517 // closure and extension object later (we need the empty function
518 // and the global object, but in order to create those, we need the
519 // global context).
520 global_context_ =
521 Handle<Context>::cast(
522 GlobalHandles::Create(*Factory::NewGlobalContext()));
523 Top::set_context(*global_context());
524
525 // Allocate the message listeners object.
526 v8::NeanderArray listeners;
527 global_context()->set_message_listeners(*listeners.value());
528
529 // Allocate the map for function instances.
530 Handle<Map> fm = Factory::NewMap(JS_FUNCTION_TYPE, JSFunction::kSize);
531 global_context()->set_function_instance_map(*fm);
532 // Please note that the prototype property for function instances must be
533 // writable.
534 Handle<DescriptorArray> function_map_descriptors =
535 ComputeFunctionInstanceDescriptor(false, false);
536 fm->set_instance_descriptors(*function_map_descriptors);
537
538 // Allocate the function map first and then patch the prototype later
539 fm = Factory::NewMap(JS_FUNCTION_TYPE, JSFunction::kSize);
540 global_context()->set_function_map(*fm);
541 function_map_descriptors = ComputeFunctionInstanceDescriptor(true);
542 fm->set_instance_descriptors(*function_map_descriptors);
543
544 Handle<String> object_name = Handle<String>(Heap::Object_symbol());
545
546 { // --- O b j e c t ---
547 Handle<JSFunction> object_fun =
548 Factory::NewFunction(object_name, Factory::null_value());
549 Handle<Map> object_function_map =
550 Factory::NewMap(JS_OBJECT_TYPE, JSObject::kHeaderSize);
551 object_fun->set_initial_map(*object_function_map);
552 object_function_map->set_constructor(*object_fun);
553
554 global_context()->set_object_function(*object_fun);
555
556 // Allocate a new prototype for the object function.
557 Handle<JSObject> prototype = Factory::NewJSObject(Top::object_function(),
558 TENURED);
559
560 global_context()->set_initial_object_prototype(*prototype);
561 SetPrototype(object_fun, prototype);
562 object_function_map->
563 set_instance_descriptors(Heap::empty_descriptor_array());
564 }
565
566 // Allocate the empty function as the prototype for function ECMAScript
567 // 262 15.3.4.
568 Handle<String> symbol = Factory::LookupAsciiSymbol("Empty");
569 Handle<JSFunction> empty_function =
570 Factory::NewFunction(symbol, Factory::null_value());
571
572 { // --- E m p t y ---
573 Handle<Code> code =
574 Handle<Code>(Builtins::builtin(Builtins::EmptyFunction));
575 empty_function->set_code(*code);
576 Handle<String> source = Factory::NewStringFromAscii(CStrVector("() {}"));
577 Handle<Script> script = Factory::NewScript(source);
578 script->set_type(Smi::FromInt(Script::TYPE_NATIVE));
579 empty_function->shared()->set_script(*script);
580 empty_function->shared()->set_start_position(0);
581 empty_function->shared()->set_end_position(source->length());
582 empty_function->shared()->DontAdaptArguments();
583 global_context()->function_map()->set_prototype(*empty_function);
584 global_context()->function_instance_map()->set_prototype(*empty_function);
585
586 // Allocate the function map first and then patch the prototype later
587 Handle<Map> empty_fm = Factory::CopyMapDropDescriptors(fm);
588 empty_fm->set_instance_descriptors(*function_map_descriptors);
589 empty_fm->set_prototype(global_context()->object_function()->prototype());
590 empty_function->set_map(*empty_fm);
591 }
592
593 { // --- G l o b a l ---
594 // Step 1: create a fresh inner JSGlobalObject
595 Handle<GlobalObject> object;
596 {
597 Handle<JSFunction> js_global_function;
598 Handle<ObjectTemplateInfo> js_global_template;
599 if (!global_template.IsEmpty()) {
600 // Get prototype template of the global_template
601 Handle<ObjectTemplateInfo> data =
602 v8::Utils::OpenHandle(*global_template);
603 Handle<FunctionTemplateInfo> global_constructor =
604 Handle<FunctionTemplateInfo>(
605 FunctionTemplateInfo::cast(data->constructor()));
606 Handle<Object> proto_template(global_constructor->prototype_template());
607 if (!proto_template->IsUndefined()) {
608 js_global_template =
609 Handle<ObjectTemplateInfo>::cast(proto_template);
610 }
611 }
612
613 if (js_global_template.is_null()) {
614 Handle<String> name = Handle<String>(Heap::empty_symbol());
615 Handle<Code> code = Handle<Code>(Builtins::builtin(Builtins::Illegal));
616 js_global_function =
617 Factory::NewFunction(name, JS_GLOBAL_OBJECT_TYPE,
618 JSGlobalObject::kSize, code, true);
619 // Change the constructor property of the prototype of the
620 // hidden global function to refer to the Object function.
621 Handle<JSObject> prototype =
622 Handle<JSObject>(
623 JSObject::cast(js_global_function->instance_prototype()));
624 SetProperty(prototype, Factory::constructor_symbol(),
625 Top::object_function(), NONE);
626 } else {
627 Handle<FunctionTemplateInfo> js_global_constructor(
628 FunctionTemplateInfo::cast(js_global_template->constructor()));
629 js_global_function =
630 Factory::CreateApiFunction(js_global_constructor,
631 Factory::InnerGlobalObject);
632 }
633
634 js_global_function->initial_map()->set_is_hidden_prototype();
635 object = Factory::NewGlobalObject(js_global_function);
636 }
637
638 // Set the global context for the global object.
639 object->set_global_context(*global_context());
640
641 // Step 2: create or re-initialize the global proxy object.
642 Handle<JSGlobalProxy> global_proxy;
643 {
644 Handle<JSFunction> global_proxy_function;
645 if (global_template.IsEmpty()) {
646 Handle<String> name = Handle<String>(Heap::empty_symbol());
647 Handle<Code> code = Handle<Code>(Builtins::builtin(Builtins::Illegal));
648 global_proxy_function =
649 Factory::NewFunction(name, JS_GLOBAL_PROXY_TYPE,
650 JSGlobalProxy::kSize, code, true);
651 } else {
652 Handle<ObjectTemplateInfo> data =
653 v8::Utils::OpenHandle(*global_template);
654 Handle<FunctionTemplateInfo> global_constructor(
655 FunctionTemplateInfo::cast(data->constructor()));
656 global_proxy_function =
657 Factory::CreateApiFunction(global_constructor,
658 Factory::OuterGlobalObject);
659 }
660
661 Handle<String> global_name = Factory::LookupAsciiSymbol("global");
662 global_proxy_function->shared()->set_instance_class_name(*global_name);
663 global_proxy_function->initial_map()->set_is_access_check_needed(true);
664
665 // Set global_proxy.__proto__ to js_global after ConfigureGlobalObjects
666
667 if (global_object.location() != NULL) {
668 ASSERT(global_object->IsJSGlobalProxy());
669 global_proxy =
670 ReinitializeJSGlobalProxy(
671 global_proxy_function,
672 Handle<JSGlobalProxy>::cast(global_object));
673 } else {
674 global_proxy = Handle<JSGlobalProxy>::cast(
675 Factory::NewJSObject(global_proxy_function, TENURED));
676 }
677
678 // Security setup: Set the security token of the global object to
679 // its the inner global. This makes the security check between two
680 // different contexts fail by default even in case of global
681 // object reinitialization.
682 object->set_global_receiver(*global_proxy);
683 global_proxy->set_context(*global_context());
684 }
685
686 { // --- G l o b a l C o n t e x t ---
687 // use the empty function as closure (no scope info)
688 global_context()->set_closure(*empty_function);
689 global_context()->set_fcontext(*global_context());
690 global_context()->set_previous(NULL);
691
692 // set extension and global object
693 global_context()->set_extension(*object);
694 global_context()->set_global(*object);
695 global_context()->set_global_proxy(*global_proxy);
696 // use inner global object as security token by default
697 global_context()->set_security_token(*object);
698 }
699
700 Handle<JSObject> global = Handle<JSObject>(global_context()->global());
701 SetProperty(global, object_name, Top::object_function(), DONT_ENUM);
702 }
703
704 Handle<JSObject> global = Handle<JSObject>(global_context()->global());
705
706 // Install global Function object
707 InstallFunction(global, "Function", JS_FUNCTION_TYPE, JSFunction::kSize,
708 empty_function, Builtins::Illegal, true); // ECMA native.
709
710 { // --- A r r a y ---
711 Handle<JSFunction> array_function =
712 InstallFunction(global, "Array", JS_ARRAY_TYPE, JSArray::kSize,
713 Top::initial_object_prototype(), Builtins::ArrayCode,
714 true);
715 array_function->shared()->set_construct_stub(
716 Builtins::builtin(Builtins::ArrayConstructCode));
717 array_function->shared()->DontAdaptArguments();
718
719 // This seems a bit hackish, but we need to make sure Array.length
720 // is 1.
721 array_function->shared()->set_length(1);
722 Handle<DescriptorArray> array_descriptors =
723 Factory::CopyAppendProxyDescriptor(
724 Factory::empty_descriptor_array(),
725 Factory::length_symbol(),
726 Factory::NewProxy(&Accessors::ArrayLength),
727 static_cast<PropertyAttributes>(DONT_ENUM | DONT_DELETE));
728
729 // Cache the fast JavaScript array map
730 global_context()->set_js_array_map(array_function->initial_map());
731 global_context()->js_array_map()->set_instance_descriptors(
732 *array_descriptors);
733 // array_function is used internally. JS code creating array object should
734 // search for the 'Array' property on the global object and use that one
735 // as the constructor. 'Array' property on a global object can be
736 // overwritten by JS code.
737 global_context()->set_array_function(*array_function);
738 }
739
740 { // --- N u m b e r ---
741 Handle<JSFunction> number_fun =
742 InstallFunction(global, "Number", JS_VALUE_TYPE, JSValue::kSize,
743 Top::initial_object_prototype(), Builtins::Illegal,
744 true);
745 global_context()->set_number_function(*number_fun);
746 }
747
748 { // --- B o o l e a n ---
749 Handle<JSFunction> boolean_fun =
750 InstallFunction(global, "Boolean", JS_VALUE_TYPE, JSValue::kSize,
751 Top::initial_object_prototype(), Builtins::Illegal,
752 true);
753 global_context()->set_boolean_function(*boolean_fun);
754 }
755
756 { // --- S t r i n g ---
757 Handle<JSFunction> string_fun =
758 InstallFunction(global, "String", JS_VALUE_TYPE, JSValue::kSize,
759 Top::initial_object_prototype(), Builtins::Illegal,
760 true);
761 global_context()->set_string_function(*string_fun);
762 // Add 'length' property to strings.
763 Handle<DescriptorArray> string_descriptors =
764 Factory::CopyAppendProxyDescriptor(
765 Factory::empty_descriptor_array(),
766 Factory::length_symbol(),
767 Factory::NewProxy(&Accessors::StringLength),
768 static_cast<PropertyAttributes>(DONT_ENUM |
769 DONT_DELETE |
770 READ_ONLY));
771
772 Handle<Map> string_map =
773 Handle<Map>(global_context()->string_function()->initial_map());
774 string_map->set_instance_descriptors(*string_descriptors);
775 }
776
777 { // --- D a t e ---
778 // Builtin functions for Date.prototype.
779 Handle<JSFunction> date_fun =
780 InstallFunction(global, "Date", JS_VALUE_TYPE, JSValue::kSize,
781 Top::initial_object_prototype(), Builtins::Illegal,
782 true);
783
784 global_context()->set_date_function(*date_fun);
785 }
786
787
788 { // -- R e g E x p
789 // Builtin functions for RegExp.prototype.
790 Handle<JSFunction> regexp_fun =
791 InstallFunction(global, "RegExp", JS_REGEXP_TYPE, JSRegExp::kSize,
792 Top::initial_object_prototype(), Builtins::Illegal,
793 true);
794
795 global_context()->set_regexp_function(*regexp_fun);
796 }
797
798 { // -- J S O N
799 Handle<String> name = Factory::NewStringFromAscii(CStrVector("JSON"));
800 Handle<JSFunction> cons = Factory::NewFunction(
801 name,
802 Factory::the_hole_value());
803 cons->SetInstancePrototype(global_context()->initial_object_prototype());
804 cons->SetInstanceClassName(*name);
805 Handle<JSObject> json_object = Factory::NewJSObject(cons, TENURED);
806 ASSERT(json_object->IsJSObject());
807 SetProperty(global, name, json_object, DONT_ENUM);
808 global_context()->set_json_object(*json_object);
809 }
810
811 { // --- arguments_boilerplate_
812 // Make sure we can recognize argument objects at runtime.
813 // This is done by introducing an anonymous function with
814 // class_name equals 'Arguments'.
815 Handle<String> symbol = Factory::LookupAsciiSymbol("Arguments");
816 Handle<Code> code = Handle<Code>(Builtins::builtin(Builtins::Illegal));
817 Handle<JSObject> prototype =
818 Handle<JSObject>(
819 JSObject::cast(global_context()->object_function()->prototype()));
820
821 Handle<JSFunction> function =
822 Factory::NewFunctionWithPrototype(symbol,
823 JS_OBJECT_TYPE,
824 JSObject::kHeaderSize,
825 prototype,
826 code,
827 false);
828 ASSERT(!function->has_initial_map());
829 function->shared()->set_instance_class_name(*symbol);
830 function->shared()->set_expected_nof_properties(2);
831 Handle<JSObject> result = Factory::NewJSObject(function);
832
833 global_context()->set_arguments_boilerplate(*result);
834 // Note: callee must be added as the first property and
835 // length must be added as the second property.
836 SetProperty(result, Factory::callee_symbol(),
837 Factory::undefined_value(),
838 DONT_ENUM);
839 SetProperty(result, Factory::length_symbol(),
840 Factory::undefined_value(),
841 DONT_ENUM);
842
843#ifdef DEBUG
844 LookupResult lookup;
845 result->LocalLookup(Heap::callee_symbol(), &lookup);
846 ASSERT(lookup.IsValid() && (lookup.type() == FIELD));
847 ASSERT(lookup.GetFieldIndex() == Heap::arguments_callee_index);
848
849 result->LocalLookup(Heap::length_symbol(), &lookup);
850 ASSERT(lookup.IsValid() && (lookup.type() == FIELD));
851 ASSERT(lookup.GetFieldIndex() == Heap::arguments_length_index);
852
853 ASSERT(result->map()->inobject_properties() > Heap::arguments_callee_index);
854 ASSERT(result->map()->inobject_properties() > Heap::arguments_length_index);
855
856 // Check the state of the object.
857 ASSERT(result->HasFastProperties());
858 ASSERT(result->HasFastElements());
859#endif
860 }
861
862 { // --- context extension
863 // Create a function for the context extension objects.
864 Handle<Code> code = Handle<Code>(Builtins::builtin(Builtins::Illegal));
865 Handle<JSFunction> context_extension_fun =
866 Factory::NewFunction(Factory::empty_symbol(),
867 JS_CONTEXT_EXTENSION_OBJECT_TYPE,
868 JSObject::kHeaderSize,
869 code,
870 true);
871
872 Handle<String> name = Factory::LookupAsciiSymbol("context_extension");
873 context_extension_fun->shared()->set_instance_class_name(*name);
874 global_context()->set_context_extension_function(*context_extension_fun);
875 }
876
877
878 {
879 // Setup the call-as-function delegate.
880 Handle<Code> code =
881 Handle<Code>(Builtins::builtin(Builtins::HandleApiCallAsFunction));
882 Handle<JSFunction> delegate =
883 Factory::NewFunction(Factory::empty_symbol(), JS_OBJECT_TYPE,
884 JSObject::kHeaderSize, code, true);
885 global_context()->set_call_as_function_delegate(*delegate);
886 delegate->shared()->DontAdaptArguments();
887 }
888
889 {
890 // Setup the call-as-constructor delegate.
891 Handle<Code> code =
892 Handle<Code>(Builtins::builtin(Builtins::HandleApiCallAsConstructor));
893 Handle<JSFunction> delegate =
894 Factory::NewFunction(Factory::empty_symbol(), JS_OBJECT_TYPE,
895 JSObject::kHeaderSize, code, true);
896 global_context()->set_call_as_constructor_delegate(*delegate);
897 delegate->shared()->DontAdaptArguments();
898 }
899
900 global_context()->set_special_function_table(Heap::empty_fixed_array());
901
902 // Initialize the out of memory slot.
903 global_context()->set_out_of_memory(Heap::false_value());
904
905 // Initialize the data slot.
906 global_context()->set_data(Heap::undefined_value());
907}
908
909
910bool Genesis::CompileBuiltin(int index) {
911 Vector<const char> name = Natives::GetScriptName(index);
912 Handle<String> source_code = Bootstrapper::NativesSourceLookup(index);
913 return CompileNative(name, source_code);
914}
915
916
917bool Genesis::CompileNative(Vector<const char> name, Handle<String> source) {
918 HandleScope scope;
919#ifdef ENABLE_DEBUGGER_SUPPORT
920 Debugger::set_compiling_natives(true);
921#endif
922 bool result =
923 CompileScriptCached(name, source, &natives_cache, NULL, true);
924 ASSERT(Top::has_pending_exception() != result);
925 if (!result) Top::clear_pending_exception();
926#ifdef ENABLE_DEBUGGER_SUPPORT
927 Debugger::set_compiling_natives(false);
928#endif
929 return result;
930}
931
932
933bool Genesis::CompileScriptCached(Vector<const char> name,
934 Handle<String> source,
935 SourceCodeCache* cache,
936 v8::Extension* extension,
937 bool use_runtime_context) {
938 HandleScope scope;
939 Handle<JSFunction> boilerplate;
940
941 // If we can't find the function in the cache, we compile a new
942 // function and insert it into the cache.
943 if (!cache->Lookup(name, &boilerplate)) {
944 ASSERT(source->IsAsciiRepresentation());
945 Handle<String> script_name = Factory::NewStringFromUtf8(name);
946 boilerplate =
947 Compiler::Compile(source, script_name, 0, 0, extension, NULL);
948 if (boilerplate.is_null()) return false;
949 cache->Add(name, boilerplate);
950 }
951
952 // Setup the function context. Conceptually, we should clone the
953 // function before overwriting the context but since we're in a
954 // single-threaded environment it is not strictly necessary.
955 ASSERT(Top::context()->IsGlobalContext());
956 Handle<Context> context =
957 Handle<Context>(use_runtime_context
958 ? Top::context()->runtime_context()
959 : Top::context());
960 Handle<JSFunction> fun =
961 Factory::NewFunctionFromBoilerplate(boilerplate, context);
962
963 // Call function using the either the runtime object or the global
964 // object as the receiver. Provide no parameters.
965 Handle<Object> receiver =
966 Handle<Object>(use_runtime_context
967 ? Top::context()->builtins()
968 : Top::context()->global());
969 bool has_pending_exception;
970 Handle<Object> result =
971 Execution::Call(fun, receiver, 0, NULL, &has_pending_exception);
972 if (has_pending_exception) return false;
973 return PendingFixups::Process(
974 Handle<JSBuiltinsObject>(Top::context()->builtins()));
975}
976
977
978#define INSTALL_NATIVE(Type, name, var) \
979 Handle<String> var##_name = Factory::LookupAsciiSymbol(name); \
980 global_context()->set_##var(Type::cast(global_context()-> \
981 builtins()-> \
982 GetProperty(*var##_name)));
983
984void Genesis::InstallNativeFunctions() {
985 HandleScope scope;
986 INSTALL_NATIVE(JSFunction, "CreateDate", create_date_fun);
987 INSTALL_NATIVE(JSFunction, "ToNumber", to_number_fun);
988 INSTALL_NATIVE(JSFunction, "ToString", to_string_fun);
989 INSTALL_NATIVE(JSFunction, "ToDetailString", to_detail_string_fun);
990 INSTALL_NATIVE(JSFunction, "ToObject", to_object_fun);
991 INSTALL_NATIVE(JSFunction, "ToInteger", to_integer_fun);
992 INSTALL_NATIVE(JSFunction, "ToUint32", to_uint32_fun);
993 INSTALL_NATIVE(JSFunction, "ToInt32", to_int32_fun);
994 INSTALL_NATIVE(JSFunction, "ToBoolean", to_boolean_fun);
Leon Clarkee46be812010-01-19 14:06:41 +0000995 INSTALL_NATIVE(JSFunction, "GlobalEval", global_eval_fun);
Steve Blocka7e24c12009-10-30 11:49:00 +0000996 INSTALL_NATIVE(JSFunction, "Instantiate", instantiate_fun);
997 INSTALL_NATIVE(JSFunction, "ConfigureTemplateInstance",
998 configure_instance_fun);
999 INSTALL_NATIVE(JSFunction, "MakeMessage", make_message_fun);
1000 INSTALL_NATIVE(JSFunction, "GetStackTraceLine", get_stack_trace_line_fun);
1001 INSTALL_NATIVE(JSObject, "functionCache", function_cache);
1002}
1003
1004#undef INSTALL_NATIVE
1005
1006
1007bool Genesis::InstallNatives() {
1008 HandleScope scope;
1009
1010 // Create a function for the builtins object. Allocate space for the
1011 // JavaScript builtins, a reference to the builtins object
1012 // (itself) and a reference to the global_context directly in the object.
1013 Handle<Code> code = Handle<Code>(Builtins::builtin(Builtins::Illegal));
1014 Handle<JSFunction> builtins_fun =
1015 Factory::NewFunction(Factory::empty_symbol(), JS_BUILTINS_OBJECT_TYPE,
1016 JSBuiltinsObject::kSize, code, true);
1017
1018 Handle<String> name = Factory::LookupAsciiSymbol("builtins");
1019 builtins_fun->shared()->set_instance_class_name(*name);
1020
1021 // Allocate the builtins object.
1022 Handle<JSBuiltinsObject> builtins =
1023 Handle<JSBuiltinsObject>::cast(Factory::NewGlobalObject(builtins_fun));
1024 builtins->set_builtins(*builtins);
1025 builtins->set_global_context(*global_context());
1026 builtins->set_global_receiver(*builtins);
1027
1028 // Setup the 'global' properties of the builtins object. The
1029 // 'global' property that refers to the global object is the only
1030 // way to get from code running in the builtins context to the
1031 // global object.
1032 static const PropertyAttributes attributes =
1033 static_cast<PropertyAttributes>(READ_ONLY | DONT_DELETE);
1034 SetProperty(builtins, Factory::LookupAsciiSymbol("global"),
1035 Handle<Object>(global_context()->global()), attributes);
1036
1037 // Setup the reference from the global object to the builtins object.
1038 JSGlobalObject::cast(global_context()->global())->set_builtins(*builtins);
1039
1040 // Create a bridge function that has context in the global context.
1041 Handle<JSFunction> bridge =
1042 Factory::NewFunction(Factory::empty_symbol(), Factory::undefined_value());
1043 ASSERT(bridge->context() == *Top::global_context());
1044
1045 // Allocate the builtins context.
1046 Handle<Context> context =
1047 Factory::NewFunctionContext(Context::MIN_CONTEXT_SLOTS, bridge);
1048 context->set_global(*builtins); // override builtins global object
1049
1050 global_context()->set_runtime_context(*context);
1051
1052 { // -- S c r i p t
1053 // Builtin functions for Script.
1054 Handle<JSFunction> script_fun =
1055 InstallFunction(builtins, "Script", JS_VALUE_TYPE, JSValue::kSize,
1056 Top::initial_object_prototype(), Builtins::Illegal,
1057 false);
1058 Handle<JSObject> prototype =
1059 Factory::NewJSObject(Top::object_function(), TENURED);
1060 SetPrototype(script_fun, prototype);
1061 global_context()->set_script_function(*script_fun);
1062
1063 // Add 'source' and 'data' property to scripts.
1064 PropertyAttributes common_attributes =
1065 static_cast<PropertyAttributes>(DONT_ENUM | DONT_DELETE | READ_ONLY);
1066 Handle<Proxy> proxy_source = Factory::NewProxy(&Accessors::ScriptSource);
1067 Handle<DescriptorArray> script_descriptors =
1068 Factory::CopyAppendProxyDescriptor(
1069 Factory::empty_descriptor_array(),
1070 Factory::LookupAsciiSymbol("source"),
1071 proxy_source,
1072 common_attributes);
1073 Handle<Proxy> proxy_name = Factory::NewProxy(&Accessors::ScriptName);
1074 script_descriptors =
1075 Factory::CopyAppendProxyDescriptor(
1076 script_descriptors,
1077 Factory::LookupAsciiSymbol("name"),
1078 proxy_name,
1079 common_attributes);
1080 Handle<Proxy> proxy_id = Factory::NewProxy(&Accessors::ScriptId);
1081 script_descriptors =
1082 Factory::CopyAppendProxyDescriptor(
1083 script_descriptors,
1084 Factory::LookupAsciiSymbol("id"),
1085 proxy_id,
1086 common_attributes);
1087 Handle<Proxy> proxy_line_offset =
1088 Factory::NewProxy(&Accessors::ScriptLineOffset);
1089 script_descriptors =
1090 Factory::CopyAppendProxyDescriptor(
1091 script_descriptors,
1092 Factory::LookupAsciiSymbol("line_offset"),
1093 proxy_line_offset,
1094 common_attributes);
1095 Handle<Proxy> proxy_column_offset =
1096 Factory::NewProxy(&Accessors::ScriptColumnOffset);
1097 script_descriptors =
1098 Factory::CopyAppendProxyDescriptor(
1099 script_descriptors,
1100 Factory::LookupAsciiSymbol("column_offset"),
1101 proxy_column_offset,
1102 common_attributes);
1103 Handle<Proxy> proxy_data = Factory::NewProxy(&Accessors::ScriptData);
1104 script_descriptors =
1105 Factory::CopyAppendProxyDescriptor(
1106 script_descriptors,
1107 Factory::LookupAsciiSymbol("data"),
1108 proxy_data,
1109 common_attributes);
1110 Handle<Proxy> proxy_type = Factory::NewProxy(&Accessors::ScriptType);
1111 script_descriptors =
1112 Factory::CopyAppendProxyDescriptor(
1113 script_descriptors,
1114 Factory::LookupAsciiSymbol("type"),
1115 proxy_type,
1116 common_attributes);
1117 Handle<Proxy> proxy_compilation_type =
1118 Factory::NewProxy(&Accessors::ScriptCompilationType);
1119 script_descriptors =
1120 Factory::CopyAppendProxyDescriptor(
1121 script_descriptors,
1122 Factory::LookupAsciiSymbol("compilation_type"),
1123 proxy_compilation_type,
1124 common_attributes);
1125 Handle<Proxy> proxy_line_ends =
1126 Factory::NewProxy(&Accessors::ScriptLineEnds);
1127 script_descriptors =
1128 Factory::CopyAppendProxyDescriptor(
1129 script_descriptors,
1130 Factory::LookupAsciiSymbol("line_ends"),
1131 proxy_line_ends,
1132 common_attributes);
1133 Handle<Proxy> proxy_context_data =
1134 Factory::NewProxy(&Accessors::ScriptContextData);
1135 script_descriptors =
1136 Factory::CopyAppendProxyDescriptor(
1137 script_descriptors,
1138 Factory::LookupAsciiSymbol("context_data"),
1139 proxy_context_data,
1140 common_attributes);
Steve Blockd0582a62009-12-15 09:54:21 +00001141 Handle<Proxy> proxy_eval_from_script =
1142 Factory::NewProxy(&Accessors::ScriptEvalFromScript);
Steve Blocka7e24c12009-10-30 11:49:00 +00001143 script_descriptors =
1144 Factory::CopyAppendProxyDescriptor(
1145 script_descriptors,
Steve Blockd0582a62009-12-15 09:54:21 +00001146 Factory::LookupAsciiSymbol("eval_from_script"),
1147 proxy_eval_from_script,
Steve Blocka7e24c12009-10-30 11:49:00 +00001148 common_attributes);
Steve Blockd0582a62009-12-15 09:54:21 +00001149 Handle<Proxy> proxy_eval_from_script_position =
1150 Factory::NewProxy(&Accessors::ScriptEvalFromScriptPosition);
Steve Blocka7e24c12009-10-30 11:49:00 +00001151 script_descriptors =
1152 Factory::CopyAppendProxyDescriptor(
1153 script_descriptors,
Steve Blockd0582a62009-12-15 09:54:21 +00001154 Factory::LookupAsciiSymbol("eval_from_script_position"),
1155 proxy_eval_from_script_position,
1156 common_attributes);
1157 Handle<Proxy> proxy_eval_from_function_name =
1158 Factory::NewProxy(&Accessors::ScriptEvalFromFunctionName);
1159 script_descriptors =
1160 Factory::CopyAppendProxyDescriptor(
1161 script_descriptors,
1162 Factory::LookupAsciiSymbol("eval_from_function_name"),
1163 proxy_eval_from_function_name,
Steve Blocka7e24c12009-10-30 11:49:00 +00001164 common_attributes);
1165
1166 Handle<Map> script_map = Handle<Map>(script_fun->initial_map());
1167 script_map->set_instance_descriptors(*script_descriptors);
1168
1169 // Allocate the empty script.
1170 Handle<Script> script = Factory::NewScript(Factory::empty_string());
1171 script->set_type(Smi::FromInt(Script::TYPE_NATIVE));
1172 global_context()->set_empty_script(*script);
1173 }
1174
1175 if (FLAG_natives_file == NULL) {
1176 // Without natives file, install default natives.
1177 for (int i = Natives::GetDelayCount();
1178 i < Natives::GetBuiltinsCount();
1179 i++) {
1180 if (!CompileBuiltin(i)) return false;
1181 }
1182
1183 // Setup natives with lazy loading.
1184 SetupLazy(Handle<JSFunction>(global_context()->date_function()),
1185 Natives::GetIndex("date"),
1186 Top::global_context(),
1187 Handle<Context>(Top::context()->runtime_context()));
1188 SetupLazy(Handle<JSFunction>(global_context()->regexp_function()),
1189 Natives::GetIndex("regexp"),
1190 Top::global_context(),
1191 Handle<Context>(Top::context()->runtime_context()));
1192 SetupLazy(Handle<JSObject>(global_context()->json_object()),
1193 Natives::GetIndex("json"),
1194 Top::global_context(),
1195 Handle<Context>(Top::context()->runtime_context()));
1196
1197 } else if (strlen(FLAG_natives_file) != 0) {
1198 // Otherwise install natives from natives file if file exists and
1199 // compiles.
1200 bool exists;
1201 Vector<const char> source = ReadFile(FLAG_natives_file, &exists);
1202 Handle<String> source_string = Factory::NewStringFromAscii(source);
1203 if (source.is_empty()) return false;
1204 bool result = CompileNative(CStrVector(FLAG_natives_file), source_string);
1205 if (!result) return false;
1206
1207 } else {
1208 // Empty natives file name - do not install any natives.
1209 PrintF("Warning: Running without installed natives!\n");
1210 return true;
1211 }
1212
1213 InstallNativeFunctions();
1214
1215 // Install Function.prototype.call and apply.
1216 { Handle<String> key = Factory::function_class_symbol();
1217 Handle<JSFunction> function =
1218 Handle<JSFunction>::cast(GetProperty(Top::global(), key));
1219 Handle<JSObject> proto =
1220 Handle<JSObject>(JSObject::cast(function->instance_prototype()));
1221
1222 // Install the call and the apply functions.
1223 Handle<JSFunction> call =
1224 InstallFunction(proto, "call", JS_OBJECT_TYPE, JSObject::kHeaderSize,
1225 Factory::NewJSObject(Top::object_function(), TENURED),
1226 Builtins::FunctionCall,
1227 false);
1228 Handle<JSFunction> apply =
1229 InstallFunction(proto, "apply", JS_OBJECT_TYPE, JSObject::kHeaderSize,
1230 Factory::NewJSObject(Top::object_function(), TENURED),
1231 Builtins::FunctionApply,
1232 false);
1233
1234 // Make sure that Function.prototype.call appears to be compiled.
1235 // The code will never be called, but inline caching for call will
1236 // only work if it appears to be compiled.
1237 call->shared()->DontAdaptArguments();
1238 ASSERT(call->is_compiled());
1239
1240 // Set the expected parameters for apply to 2; required by builtin.
1241 apply->shared()->set_formal_parameter_count(2);
1242
1243 // Set the lengths for the functions to satisfy ECMA-262.
1244 call->shared()->set_length(1);
1245 apply->shared()->set_length(2);
1246 }
1247
1248#ifdef DEBUG
1249 builtins->Verify();
1250#endif
1251 return true;
1252}
1253
1254
1255bool Genesis::InstallSpecialObjects() {
1256 HandleScope scope;
1257 Handle<JSGlobalObject> js_global(
1258 JSGlobalObject::cast(global_context()->global()));
1259 // Expose the natives in global if a name for it is specified.
1260 if (FLAG_expose_natives_as != NULL && strlen(FLAG_expose_natives_as) != 0) {
1261 Handle<String> natives_string =
1262 Factory::LookupAsciiSymbol(FLAG_expose_natives_as);
1263 SetProperty(js_global, natives_string,
1264 Handle<JSObject>(js_global->builtins()), DONT_ENUM);
1265 }
1266
1267 Handle<Object> Error = GetProperty(js_global, "Error");
1268 if (Error->IsJSObject()) {
1269 Handle<String> name = Factory::LookupAsciiSymbol("stackTraceLimit");
1270 SetProperty(Handle<JSObject>::cast(Error),
1271 name,
1272 Handle<Smi>(Smi::FromInt(FLAG_stack_trace_limit)),
1273 NONE);
1274 }
1275
1276#ifdef ENABLE_DEBUGGER_SUPPORT
1277 // Expose the debug global object in global if a name for it is specified.
1278 if (FLAG_expose_debug_as != NULL && strlen(FLAG_expose_debug_as) != 0) {
1279 // If loading fails we just bail out without installing the
1280 // debugger but without tanking the whole context.
1281 if (!Debug::Load())
1282 return true;
1283 // Set the security token for the debugger context to the same as
1284 // the shell global context to allow calling between these (otherwise
1285 // exposing debug global object doesn't make much sense).
1286 Debug::debug_context()->set_security_token(
1287 global_context()->security_token());
1288
1289 Handle<String> debug_string =
1290 Factory::LookupAsciiSymbol(FLAG_expose_debug_as);
1291 SetProperty(js_global, debug_string,
1292 Handle<Object>(Debug::debug_context()->global_proxy()), DONT_ENUM);
1293 }
1294#endif
1295
1296 return true;
1297}
1298
1299
1300bool Genesis::InstallExtensions(v8::ExtensionConfiguration* extensions) {
1301 // Clear coloring of extension list
1302 v8::RegisteredExtension* current = v8::RegisteredExtension::first_extension();
1303 while (current != NULL) {
1304 current->set_state(v8::UNVISITED);
1305 current = current->next();
1306 }
1307 // Install auto extensions
1308 current = v8::RegisteredExtension::first_extension();
1309 while (current != NULL) {
1310 if (current->extension()->auto_enable())
1311 InstallExtension(current);
1312 current = current->next();
1313 }
1314
1315 if (FLAG_expose_gc) InstallExtension("v8/gc");
1316
1317 if (extensions == NULL) return true;
1318 // Install required extensions
1319 int count = v8::ImplementationUtilities::GetNameCount(extensions);
1320 const char** names = v8::ImplementationUtilities::GetNames(extensions);
1321 for (int i = 0; i < count; i++) {
1322 if (!InstallExtension(names[i]))
1323 return false;
1324 }
1325
1326 return true;
1327}
1328
1329
1330// Installs a named extension. This methods is unoptimized and does
1331// not scale well if we want to support a large number of extensions.
1332bool Genesis::InstallExtension(const char* name) {
1333 v8::RegisteredExtension* current = v8::RegisteredExtension::first_extension();
1334 // Loop until we find the relevant extension
1335 while (current != NULL) {
1336 if (strcmp(name, current->extension()->name()) == 0) break;
1337 current = current->next();
1338 }
1339 // Didn't find the extension; fail.
1340 if (current == NULL) {
1341 v8::Utils::ReportApiFailure(
1342 "v8::Context::New()", "Cannot find required extension");
1343 return false;
1344 }
1345 return InstallExtension(current);
1346}
1347
1348
1349bool Genesis::InstallExtension(v8::RegisteredExtension* current) {
1350 HandleScope scope;
1351
1352 if (current->state() == v8::INSTALLED) return true;
1353 // The current node has already been visited so there must be a
1354 // cycle in the dependency graph; fail.
1355 if (current->state() == v8::VISITED) {
1356 v8::Utils::ReportApiFailure(
1357 "v8::Context::New()", "Circular extension dependency");
1358 return false;
1359 }
1360 ASSERT(current->state() == v8::UNVISITED);
1361 current->set_state(v8::VISITED);
1362 v8::Extension* extension = current->extension();
1363 // Install the extension's dependencies
1364 for (int i = 0; i < extension->dependency_count(); i++) {
1365 if (!InstallExtension(extension->dependencies()[i])) return false;
1366 }
1367 Vector<const char> source = CStrVector(extension->source());
1368 Handle<String> source_code = Factory::NewStringFromAscii(source);
1369 bool result = CompileScriptCached(CStrVector(extension->name()),
1370 source_code,
1371 &extensions_cache, extension,
1372 false);
1373 ASSERT(Top::has_pending_exception() != result);
1374 if (!result) {
1375 Top::clear_pending_exception();
Steve Blocka7e24c12009-10-30 11:49:00 +00001376 }
1377 current->set_state(v8::INSTALLED);
1378 return result;
1379}
1380
1381
1382bool Genesis::ConfigureGlobalObjects(
1383 v8::Handle<v8::ObjectTemplate> global_proxy_template) {
1384 Handle<JSObject> global_proxy(
1385 JSObject::cast(global_context()->global_proxy()));
1386 Handle<JSObject> js_global(JSObject::cast(global_context()->global()));
1387
1388 if (!global_proxy_template.IsEmpty()) {
1389 // Configure the global proxy object.
1390 Handle<ObjectTemplateInfo> proxy_data =
1391 v8::Utils::OpenHandle(*global_proxy_template);
1392 if (!ConfigureApiObject(global_proxy, proxy_data)) return false;
1393
1394 // Configure the inner global object.
1395 Handle<FunctionTemplateInfo> proxy_constructor(
1396 FunctionTemplateInfo::cast(proxy_data->constructor()));
1397 if (!proxy_constructor->prototype_template()->IsUndefined()) {
1398 Handle<ObjectTemplateInfo> inner_data(
1399 ObjectTemplateInfo::cast(proxy_constructor->prototype_template()));
1400 if (!ConfigureApiObject(js_global, inner_data)) return false;
1401 }
1402 }
1403
1404 SetObjectPrototype(global_proxy, js_global);
1405 return true;
1406}
1407
1408
1409bool Genesis::ConfigureApiObject(Handle<JSObject> object,
1410 Handle<ObjectTemplateInfo> object_template) {
1411 ASSERT(!object_template.is_null());
1412 ASSERT(object->IsInstanceOf(
1413 FunctionTemplateInfo::cast(object_template->constructor())));
1414
1415 bool pending_exception = false;
1416 Handle<JSObject> obj =
1417 Execution::InstantiateObject(object_template, &pending_exception);
1418 if (pending_exception) {
1419 ASSERT(Top::has_pending_exception());
1420 Top::clear_pending_exception();
1421 return false;
1422 }
1423 TransferObject(obj, object);
1424 return true;
1425}
1426
1427
1428void Genesis::TransferNamedProperties(Handle<JSObject> from,
1429 Handle<JSObject> to) {
1430 if (from->HasFastProperties()) {
1431 Handle<DescriptorArray> descs =
1432 Handle<DescriptorArray>(from->map()->instance_descriptors());
1433 for (int i = 0; i < descs->number_of_descriptors(); i++) {
1434 PropertyDetails details = PropertyDetails(descs->GetDetails(i));
1435 switch (details.type()) {
1436 case FIELD: {
1437 HandleScope inner;
1438 Handle<String> key = Handle<String>(descs->GetKey(i));
1439 int index = descs->GetFieldIndex(i);
1440 Handle<Object> value = Handle<Object>(from->FastPropertyAt(index));
1441 SetProperty(to, key, value, details.attributes());
1442 break;
1443 }
1444 case CONSTANT_FUNCTION: {
1445 HandleScope inner;
1446 Handle<String> key = Handle<String>(descs->GetKey(i));
1447 Handle<JSFunction> fun =
1448 Handle<JSFunction>(descs->GetConstantFunction(i));
1449 SetProperty(to, key, fun, details.attributes());
1450 break;
1451 }
1452 case CALLBACKS: {
1453 LookupResult result;
1454 to->LocalLookup(descs->GetKey(i), &result);
1455 // If the property is already there we skip it
1456 if (result.IsValid()) continue;
1457 HandleScope inner;
1458 Handle<DescriptorArray> inst_descs =
1459 Handle<DescriptorArray>(to->map()->instance_descriptors());
1460 Handle<String> key = Handle<String>(descs->GetKey(i));
1461 Handle<Object> entry = Handle<Object>(descs->GetCallbacksObject(i));
1462 inst_descs = Factory::CopyAppendProxyDescriptor(inst_descs,
1463 key,
1464 entry,
1465 details.attributes());
1466 to->map()->set_instance_descriptors(*inst_descs);
1467 break;
1468 }
1469 case MAP_TRANSITION:
1470 case CONSTANT_TRANSITION:
1471 case NULL_DESCRIPTOR:
1472 // Ignore non-properties.
1473 break;
1474 case NORMAL:
1475 // Do not occur since the from object has fast properties.
1476 case INTERCEPTOR:
1477 // No element in instance descriptors have interceptor type.
1478 UNREACHABLE();
1479 break;
1480 }
1481 }
1482 } else {
1483 Handle<StringDictionary> properties =
1484 Handle<StringDictionary>(from->property_dictionary());
1485 int capacity = properties->Capacity();
1486 for (int i = 0; i < capacity; i++) {
1487 Object* raw_key(properties->KeyAt(i));
1488 if (properties->IsKey(raw_key)) {
1489 ASSERT(raw_key->IsString());
1490 // If the property is already there we skip it.
1491 LookupResult result;
1492 to->LocalLookup(String::cast(raw_key), &result);
1493 if (result.IsValid()) continue;
1494 // Set the property.
1495 Handle<String> key = Handle<String>(String::cast(raw_key));
1496 Handle<Object> value = Handle<Object>(properties->ValueAt(i));
1497 if (value->IsJSGlobalPropertyCell()) {
1498 value = Handle<Object>(JSGlobalPropertyCell::cast(*value)->value());
1499 }
1500 PropertyDetails details = properties->DetailsAt(i);
1501 SetProperty(to, key, value, details.attributes());
1502 }
1503 }
1504 }
1505}
1506
1507
1508void Genesis::TransferIndexedProperties(Handle<JSObject> from,
1509 Handle<JSObject> to) {
1510 // Cloning the elements array is sufficient.
1511 Handle<FixedArray> from_elements =
1512 Handle<FixedArray>(FixedArray::cast(from->elements()));
1513 Handle<FixedArray> to_elements = Factory::CopyFixedArray(from_elements);
1514 to->set_elements(*to_elements);
1515}
1516
1517
1518void Genesis::TransferObject(Handle<JSObject> from, Handle<JSObject> to) {
1519 HandleScope outer;
1520
1521 ASSERT(!from->IsJSArray());
1522 ASSERT(!to->IsJSArray());
1523
1524 TransferNamedProperties(from, to);
1525 TransferIndexedProperties(from, to);
1526
1527 // Transfer the prototype (new map is needed).
1528 Handle<Map> old_to_map = Handle<Map>(to->map());
1529 Handle<Map> new_to_map = Factory::CopyMapDropTransitions(old_to_map);
1530 new_to_map->set_prototype(from->map()->prototype());
1531 to->set_map(*new_to_map);
1532}
1533
1534
1535void Genesis::MakeFunctionInstancePrototypeWritable() {
1536 // Make a new function map so all future functions
1537 // will have settable and enumerable prototype properties.
1538 HandleScope scope;
1539
1540 Handle<DescriptorArray> function_map_descriptors =
1541 ComputeFunctionInstanceDescriptor(false);
1542 Handle<Map> fm = Factory::CopyMapDropDescriptors(Top::function_map());
1543 fm->set_instance_descriptors(*function_map_descriptors);
1544 Top::context()->global_context()->set_function_map(*fm);
1545}
1546
1547
1548void Genesis::AddSpecialFunction(Handle<JSObject> prototype,
1549 const char* name,
1550 Handle<Code> code) {
1551 Handle<String> key = Factory::LookupAsciiSymbol(name);
1552 Handle<Object> value = Handle<Object>(prototype->GetProperty(*key));
1553 if (value->IsJSFunction()) {
1554 Handle<JSFunction> optimized = Factory::NewFunction(key,
1555 JS_OBJECT_TYPE,
1556 JSObject::kHeaderSize,
1557 code,
1558 false);
1559 optimized->shared()->DontAdaptArguments();
1560 int len = global_context()->special_function_table()->length();
1561 Handle<FixedArray> new_array = Factory::NewFixedArray(len + 3);
1562 for (int index = 0; index < len; index++) {
1563 new_array->set(index,
1564 global_context()->special_function_table()->get(index));
1565 }
1566 new_array->set(len+0, *prototype);
1567 new_array->set(len+1, *value);
1568 new_array->set(len+2, *optimized);
1569 global_context()->set_special_function_table(*new_array);
1570 }
1571}
1572
1573
1574void Genesis::BuildSpecialFunctionTable() {
1575 HandleScope scope;
1576 Handle<JSObject> global = Handle<JSObject>(global_context()->global());
1577 // Add special versions for Array.prototype.pop and push.
1578 Handle<JSFunction> function =
1579 Handle<JSFunction>(
1580 JSFunction::cast(global->GetProperty(Heap::Array_symbol())));
1581 Handle<JSObject> visible_prototype =
1582 Handle<JSObject>(JSObject::cast(function->prototype()));
1583 // Remember to put push and pop on the hidden prototype if it's there.
1584 Handle<JSObject> push_and_pop_prototype;
1585 Handle<Object> superproto(visible_prototype->GetPrototype());
1586 if (superproto->IsJSObject() &&
1587 JSObject::cast(*superproto)->map()->is_hidden_prototype()) {
1588 push_and_pop_prototype = Handle<JSObject>::cast(superproto);
1589 } else {
1590 push_and_pop_prototype = visible_prototype;
1591 }
1592 AddSpecialFunction(push_and_pop_prototype, "pop",
1593 Handle<Code>(Builtins::builtin(Builtins::ArrayPop)));
1594 AddSpecialFunction(push_and_pop_prototype, "push",
1595 Handle<Code>(Builtins::builtin(Builtins::ArrayPush)));
1596}
1597
1598
1599Genesis::Genesis(Handle<Object> global_object,
1600 v8::Handle<v8::ObjectTemplate> global_template,
1601 v8::ExtensionConfiguration* extensions) {
1602 // Link this genesis object into the stacked genesis chain. This
1603 // must be done before any early exits because the destructor
1604 // will always do unlinking.
1605 previous_ = current_;
1606 current_ = this;
1607 result_ = Handle<Context>::null();
1608
1609 // If V8 isn't running and cannot be initialized, just return.
1610 if (!V8::IsRunning() && !V8::Initialize(NULL)) return;
1611
1612 // Before creating the roots we must save the context and restore it
1613 // on all function exits.
1614 HandleScope scope;
1615 SaveContext context;
1616
1617 CreateRoots(global_template, global_object);
1618
1619 if (!InstallNatives()) return;
1620
1621 MakeFunctionInstancePrototypeWritable();
1622 BuildSpecialFunctionTable();
1623
1624 if (!ConfigureGlobalObjects(global_template)) return;
1625
1626 if (!InstallExtensions(extensions)) return;
1627
1628 if (!InstallSpecialObjects()) return;
1629
1630 result_ = global_context_;
1631}
1632
1633
1634// Support for thread preemption.
1635
1636// Reserve space for statics needing saving and restoring.
1637int Bootstrapper::ArchiveSpacePerThread() {
1638 return Genesis::ArchiveSpacePerThread();
1639}
1640
1641
1642// Archive statics that are thread local.
1643char* Bootstrapper::ArchiveState(char* to) {
1644 return Genesis::ArchiveState(to);
1645}
1646
1647
1648// Restore statics that are thread local.
1649char* Bootstrapper::RestoreState(char* from) {
1650 return Genesis::RestoreState(from);
1651}
1652
1653
1654// Called when the top-level V8 mutex is destroyed.
1655void Bootstrapper::FreeThreadResources() {
1656 ASSERT(Genesis::current() == NULL);
1657}
1658
1659
1660// Reserve space for statics needing saving and restoring.
1661int Genesis::ArchiveSpacePerThread() {
1662 return sizeof(current_);
1663}
1664
1665
1666// Archive statics that are thread local.
1667char* Genesis::ArchiveState(char* to) {
1668 *reinterpret_cast<Genesis**>(to) = current_;
1669 current_ = NULL;
1670 return to + sizeof(current_);
1671}
1672
1673
1674// Restore statics that are thread local.
1675char* Genesis::RestoreState(char* from) {
1676 current_ = *reinterpret_cast<Genesis**>(from);
1677 return from + sizeof(current_);
1678}
1679
1680} } // namespace v8::internal