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ager@chromium.orga9aa5fa2011-04-13 08:46:07 +00001// Copyright 2011 the V8 project authors. All rights reserved.
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00002// 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 <stdlib.h>
29
30#include "v8.h"
31
32#include "ast.h"
33#include "bootstrapper.h"
34#include "codegen.h"
35#include "compilation-cache.h"
36#include "debug.h"
37#include "deoptimizer.h"
38#include "heap-profiler.h"
39#include "hydrogen.h"
40#include "isolate.h"
41#include "lithium-allocator.h"
42#include "log.h"
vegorov@chromium.org7304bca2011-05-16 12:14:13 +000043#include "messages.h"
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +000044#include "regexp-stack.h"
45#include "runtime-profiler.h"
46#include "scanner.h"
47#include "scopeinfo.h"
48#include "serialize.h"
49#include "simulator.h"
50#include "spaces.h"
51#include "stub-cache.h"
52#include "version.h"
vegorov@chromium.org7304bca2011-05-16 12:14:13 +000053#include "vm-state-inl.h"
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +000054
55
56namespace v8 {
57namespace internal {
58
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +000059Atomic32 ThreadId::highest_thread_id_ = 0;
60
61int ThreadId::AllocateThreadId() {
62 int new_id = NoBarrier_AtomicIncrement(&highest_thread_id_, 1);
63 return new_id;
64}
65
vegorov@chromium.org7304bca2011-05-16 12:14:13 +000066
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +000067int ThreadId::GetCurrentThreadId() {
68 int thread_id = Thread::GetThreadLocalInt(Isolate::thread_id_key_);
69 if (thread_id == 0) {
70 thread_id = AllocateThreadId();
71 Thread::SetThreadLocalInt(Isolate::thread_id_key_, thread_id);
72 }
73 return thread_id;
74}
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +000075
vegorov@chromium.org7304bca2011-05-16 12:14:13 +000076
77ThreadLocalTop::ThreadLocalTop() {
78 InitializeInternal();
79}
80
81
82void ThreadLocalTop::InitializeInternal() {
83 c_entry_fp_ = 0;
84 handler_ = 0;
85#ifdef USE_SIMULATOR
86 simulator_ = NULL;
87#endif
88#ifdef ENABLE_LOGGING_AND_PROFILING
89 js_entry_sp_ = NULL;
90 external_callback_ = NULL;
91#endif
92#ifdef ENABLE_VMSTATE_TRACKING
93 current_vm_state_ = EXTERNAL;
94#endif
95 try_catch_handler_address_ = NULL;
96 context_ = NULL;
97 thread_id_ = ThreadId::Invalid();
98 external_caught_exception_ = false;
99 failed_access_check_callback_ = NULL;
100 save_context_ = NULL;
101 catcher_ = NULL;
102}
103
104
105void ThreadLocalTop::Initialize() {
106 InitializeInternal();
107#ifdef USE_SIMULATOR
108#ifdef V8_TARGET_ARCH_ARM
109 simulator_ = Simulator::current(isolate_);
110#elif V8_TARGET_ARCH_MIPS
111 simulator_ = Simulator::current(isolate_);
112#endif
113#endif
114 thread_id_ = ThreadId::Current();
115}
116
117
118v8::TryCatch* ThreadLocalTop::TryCatchHandler() {
119 return TRY_CATCH_FROM_ADDRESS(try_catch_handler_address());
120}
121
122
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +0000123// Create a dummy thread that will wait forever on a semaphore. The only
124// purpose for this thread is to have some stack area to save essential data
125// into for use by a stacks only core dump (aka minidump).
126class PreallocatedMemoryThread: public Thread {
127 public:
128 char* data() {
129 if (data_ready_semaphore_ != NULL) {
130 // Initial access is guarded until the data has been published.
131 data_ready_semaphore_->Wait();
132 delete data_ready_semaphore_;
133 data_ready_semaphore_ = NULL;
134 }
135 return data_;
136 }
137
138 unsigned length() {
139 if (data_ready_semaphore_ != NULL) {
140 // Initial access is guarded until the data has been published.
141 data_ready_semaphore_->Wait();
142 delete data_ready_semaphore_;
143 data_ready_semaphore_ = NULL;
144 }
145 return length_;
146 }
147
148 // Stop the PreallocatedMemoryThread and release its resources.
149 void StopThread() {
150 keep_running_ = false;
151 wait_for_ever_semaphore_->Signal();
152
153 // Wait for the thread to terminate.
154 Join();
155
156 if (data_ready_semaphore_ != NULL) {
157 delete data_ready_semaphore_;
158 data_ready_semaphore_ = NULL;
159 }
160
161 delete wait_for_ever_semaphore_;
162 wait_for_ever_semaphore_ = NULL;
163 }
164
165 protected:
166 // When the thread starts running it will allocate a fixed number of bytes
167 // on the stack and publish the location of this memory for others to use.
168 void Run() {
169 EmbeddedVector<char, 15 * 1024> local_buffer;
170
171 // Initialize the buffer with a known good value.
172 OS::StrNCpy(local_buffer, "Trace data was not generated.\n",
173 local_buffer.length());
174
175 // Publish the local buffer and signal its availability.
176 data_ = local_buffer.start();
177 length_ = local_buffer.length();
178 data_ready_semaphore_->Signal();
179
180 while (keep_running_) {
181 // This thread will wait here until the end of time.
182 wait_for_ever_semaphore_->Wait();
183 }
184
185 // Make sure we access the buffer after the wait to remove all possibility
186 // of it being optimized away.
187 OS::StrNCpy(local_buffer, "PreallocatedMemoryThread shutting down.\n",
188 local_buffer.length());
189 }
190
191
192 private:
193 explicit PreallocatedMemoryThread(Isolate* isolate)
194 : Thread(isolate, "v8:PreallocMem"),
195 keep_running_(true),
196 wait_for_ever_semaphore_(OS::CreateSemaphore(0)),
197 data_ready_semaphore_(OS::CreateSemaphore(0)),
198 data_(NULL),
199 length_(0) {
200 }
201
202 // Used to make sure that the thread keeps looping even for spurious wakeups.
203 bool keep_running_;
204
205 // This semaphore is used by the PreallocatedMemoryThread to wait for ever.
206 Semaphore* wait_for_ever_semaphore_;
207 // Semaphore to signal that the data has been initialized.
208 Semaphore* data_ready_semaphore_;
209
210 // Location and size of the preallocated memory block.
211 char* data_;
212 unsigned length_;
213
214 friend class Isolate;
215
216 DISALLOW_COPY_AND_ASSIGN(PreallocatedMemoryThread);
217};
218
219
220void Isolate::PreallocatedMemoryThreadStart() {
221 if (preallocated_memory_thread_ != NULL) return;
222 preallocated_memory_thread_ = new PreallocatedMemoryThread(this);
223 preallocated_memory_thread_->Start();
224}
225
226
227void Isolate::PreallocatedMemoryThreadStop() {
228 if (preallocated_memory_thread_ == NULL) return;
229 preallocated_memory_thread_->StopThread();
230 // Done with the thread entirely.
231 delete preallocated_memory_thread_;
232 preallocated_memory_thread_ = NULL;
233}
234
235
lrn@chromium.org7516f052011-03-30 08:52:27 +0000236void Isolate::PreallocatedStorageInit(size_t size) {
237 ASSERT(free_list_.next_ == &free_list_);
238 ASSERT(free_list_.previous_ == &free_list_);
239 PreallocatedStorage* free_chunk =
240 reinterpret_cast<PreallocatedStorage*>(new char[size]);
241 free_list_.next_ = free_list_.previous_ = free_chunk;
242 free_chunk->next_ = free_chunk->previous_ = &free_list_;
243 free_chunk->size_ = size - sizeof(PreallocatedStorage);
244 preallocated_storage_preallocated_ = true;
245}
246
247
248void* Isolate::PreallocatedStorageNew(size_t size) {
249 if (!preallocated_storage_preallocated_) {
250 return FreeStoreAllocationPolicy::New(size);
251 }
252 ASSERT(free_list_.next_ != &free_list_);
253 ASSERT(free_list_.previous_ != &free_list_);
254
255 size = (size + kPointerSize - 1) & ~(kPointerSize - 1);
256 // Search for exact fit.
257 for (PreallocatedStorage* storage = free_list_.next_;
258 storage != &free_list_;
259 storage = storage->next_) {
260 if (storage->size_ == size) {
261 storage->Unlink();
262 storage->LinkTo(&in_use_list_);
263 return reinterpret_cast<void*>(storage + 1);
264 }
265 }
266 // Search for first fit.
267 for (PreallocatedStorage* storage = free_list_.next_;
268 storage != &free_list_;
269 storage = storage->next_) {
270 if (storage->size_ >= size + sizeof(PreallocatedStorage)) {
271 storage->Unlink();
272 storage->LinkTo(&in_use_list_);
273 PreallocatedStorage* left_over =
274 reinterpret_cast<PreallocatedStorage*>(
275 reinterpret_cast<char*>(storage + 1) + size);
276 left_over->size_ = storage->size_ - size - sizeof(PreallocatedStorage);
277 ASSERT(size + left_over->size_ + sizeof(PreallocatedStorage) ==
278 storage->size_);
279 storage->size_ = size;
280 left_over->LinkTo(&free_list_);
281 return reinterpret_cast<void*>(storage + 1);
282 }
283 }
284 // Allocation failure.
285 ASSERT(false);
286 return NULL;
287}
288
289
290// We don't attempt to coalesce.
291void Isolate::PreallocatedStorageDelete(void* p) {
292 if (p == NULL) {
293 return;
294 }
295 if (!preallocated_storage_preallocated_) {
296 FreeStoreAllocationPolicy::Delete(p);
297 return;
298 }
299 PreallocatedStorage* storage = reinterpret_cast<PreallocatedStorage*>(p) - 1;
300 ASSERT(storage->next_->previous_ == storage);
301 ASSERT(storage->previous_->next_ == storage);
302 storage->Unlink();
303 storage->LinkTo(&free_list_);
304}
305
306
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +0000307Isolate* Isolate::default_isolate_ = NULL;
308Thread::LocalStorageKey Isolate::isolate_key_;
309Thread::LocalStorageKey Isolate::thread_id_key_;
310Thread::LocalStorageKey Isolate::per_isolate_thread_data_key_;
311Mutex* Isolate::process_wide_mutex_ = OS::CreateMutex();
312Isolate::ThreadDataTable* Isolate::thread_data_table_ = NULL;
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +0000313
314
315class IsolateInitializer {
316 public:
317 IsolateInitializer() {
318 Isolate::EnsureDefaultIsolate();
319 }
320};
321
322static IsolateInitializer* EnsureDefaultIsolateAllocated() {
323 // TODO(isolates): Use the system threading API to do this once?
324 static IsolateInitializer static_initializer;
325 return &static_initializer;
326}
327
328// This variable only needed to trigger static intialization.
329static IsolateInitializer* static_initializer = EnsureDefaultIsolateAllocated();
330
331
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +0000332
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +0000333
334
335Isolate::PerIsolateThreadData* Isolate::AllocatePerIsolateThreadData(
336 ThreadId thread_id) {
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +0000337 ASSERT(!thread_id.Equals(ThreadId::Invalid()));
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +0000338 PerIsolateThreadData* per_thread = new PerIsolateThreadData(this, thread_id);
339 {
340 ScopedLock lock(process_wide_mutex_);
341 ASSERT(thread_data_table_->Lookup(this, thread_id) == NULL);
342 thread_data_table_->Insert(per_thread);
343 ASSERT(thread_data_table_->Lookup(this, thread_id) == per_thread);
344 }
345 return per_thread;
346}
347
348
349Isolate::PerIsolateThreadData*
350 Isolate::FindOrAllocatePerThreadDataForThisThread() {
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +0000351 ThreadId thread_id = ThreadId::Current();
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +0000352 PerIsolateThreadData* per_thread = NULL;
353 {
354 ScopedLock lock(process_wide_mutex_);
355 per_thread = thread_data_table_->Lookup(this, thread_id);
356 if (per_thread == NULL) {
357 per_thread = AllocatePerIsolateThreadData(thread_id);
358 }
359 }
360 return per_thread;
361}
362
363
lrn@chromium.org1c092762011-05-09 09:42:16 +0000364Isolate::PerIsolateThreadData* Isolate::FindPerThreadDataForThisThread() {
365 ThreadId thread_id = ThreadId::Current();
366 PerIsolateThreadData* per_thread = NULL;
367 {
368 ScopedLock lock(process_wide_mutex_);
369 per_thread = thread_data_table_->Lookup(this, thread_id);
370 }
371 return per_thread;
372}
373
374
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +0000375void Isolate::EnsureDefaultIsolate() {
376 ScopedLock lock(process_wide_mutex_);
377 if (default_isolate_ == NULL) {
378 isolate_key_ = Thread::CreateThreadLocalKey();
379 thread_id_key_ = Thread::CreateThreadLocalKey();
380 per_isolate_thread_data_key_ = Thread::CreateThreadLocalKey();
381 thread_data_table_ = new Isolate::ThreadDataTable();
382 default_isolate_ = new Isolate();
383 }
384 // Can't use SetIsolateThreadLocals(default_isolate_, NULL) here
385 // becase a non-null thread data may be already set.
lrn@chromium.org1c092762011-05-09 09:42:16 +0000386 if (Thread::GetThreadLocal(isolate_key_) == NULL) {
387 Thread::SetThreadLocal(isolate_key_, default_isolate_);
388 }
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +0000389 CHECK(default_isolate_->PreInit());
390}
391
392
erik.corry@gmail.com3847bd52011-04-27 10:38:56 +0000393#ifdef ENABLE_DEBUGGER_SUPPORT
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +0000394Debugger* Isolate::GetDefaultIsolateDebugger() {
395 EnsureDefaultIsolate();
396 return default_isolate_->debugger();
397}
erik.corry@gmail.com3847bd52011-04-27 10:38:56 +0000398#endif
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +0000399
400
401StackGuard* Isolate::GetDefaultIsolateStackGuard() {
402 EnsureDefaultIsolate();
403 return default_isolate_->stack_guard();
404}
405
406
407void Isolate::EnterDefaultIsolate() {
408 EnsureDefaultIsolate();
409 ASSERT(default_isolate_ != NULL);
410
411 PerIsolateThreadData* data = CurrentPerIsolateThreadData();
412 // If not yet in default isolate - enter it.
413 if (data == NULL || data->isolate() != default_isolate_) {
414 default_isolate_->Enter();
415 }
416}
417
418
419Isolate* Isolate::GetDefaultIsolateForLocking() {
420 EnsureDefaultIsolate();
421 return default_isolate_;
422}
423
424
vegorov@chromium.org7304bca2011-05-16 12:14:13 +0000425Address Isolate::get_address_from_id(Isolate::AddressId id) {
426 return isolate_addresses_[id];
427}
428
429
430char* Isolate::Iterate(ObjectVisitor* v, char* thread_storage) {
431 ThreadLocalTop* thread = reinterpret_cast<ThreadLocalTop*>(thread_storage);
432 Iterate(v, thread);
433 return thread_storage + sizeof(ThreadLocalTop);
434}
435
436
437void Isolate::IterateThread(ThreadVisitor* v) {
438 v->VisitThread(this, thread_local_top());
439}
440
441
442void Isolate::IterateThread(ThreadVisitor* v, char* t) {
443 ThreadLocalTop* thread = reinterpret_cast<ThreadLocalTop*>(t);
444 v->VisitThread(this, thread);
445}
446
447
448void Isolate::Iterate(ObjectVisitor* v, ThreadLocalTop* thread) {
449 // Visit the roots from the top for a given thread.
450 Object* pending;
451 // The pending exception can sometimes be a failure. We can't show
452 // that to the GC, which only understands objects.
453 if (thread->pending_exception_->ToObject(&pending)) {
454 v->VisitPointer(&pending);
455 thread->pending_exception_ = pending; // In case GC updated it.
456 }
457 v->VisitPointer(&(thread->pending_message_obj_));
458 v->VisitPointer(BitCast<Object**>(&(thread->pending_message_script_)));
459 v->VisitPointer(BitCast<Object**>(&(thread->context_)));
460 Object* scheduled;
461 if (thread->scheduled_exception_->ToObject(&scheduled)) {
462 v->VisitPointer(&scheduled);
463 thread->scheduled_exception_ = scheduled;
464 }
465
466 for (v8::TryCatch* block = thread->TryCatchHandler();
467 block != NULL;
468 block = TRY_CATCH_FROM_ADDRESS(block->next_)) {
469 v->VisitPointer(BitCast<Object**>(&(block->exception_)));
470 v->VisitPointer(BitCast<Object**>(&(block->message_)));
471 }
472
473 // Iterate over pointers on native execution stack.
474 for (StackFrameIterator it(this, thread); !it.done(); it.Advance()) {
475 it.frame()->Iterate(v);
476 }
477}
478
479
480void Isolate::Iterate(ObjectVisitor* v) {
481 ThreadLocalTop* current_t = thread_local_top();
482 Iterate(v, current_t);
483}
484
485
486void Isolate::RegisterTryCatchHandler(v8::TryCatch* that) {
487 // The ARM simulator has a separate JS stack. We therefore register
488 // the C++ try catch handler with the simulator and get back an
489 // address that can be used for comparisons with addresses into the
490 // JS stack. When running without the simulator, the address
491 // returned will be the address of the C++ try catch handler itself.
492 Address address = reinterpret_cast<Address>(
493 SimulatorStack::RegisterCTryCatch(reinterpret_cast<uintptr_t>(that)));
494 thread_local_top()->set_try_catch_handler_address(address);
495}
496
497
498void Isolate::UnregisterTryCatchHandler(v8::TryCatch* that) {
499 ASSERT(thread_local_top()->TryCatchHandler() == that);
500 thread_local_top()->set_try_catch_handler_address(
501 reinterpret_cast<Address>(that->next_));
502 thread_local_top()->catcher_ = NULL;
503 SimulatorStack::UnregisterCTryCatch();
504}
505
506
507Handle<String> Isolate::StackTraceString() {
508 if (stack_trace_nesting_level_ == 0) {
509 stack_trace_nesting_level_++;
510 HeapStringAllocator allocator;
511 StringStream::ClearMentionedObjectCache();
512 StringStream accumulator(&allocator);
513 incomplete_message_ = &accumulator;
514 PrintStack(&accumulator);
515 Handle<String> stack_trace = accumulator.ToString();
516 incomplete_message_ = NULL;
517 stack_trace_nesting_level_ = 0;
518 return stack_trace;
519 } else if (stack_trace_nesting_level_ == 1) {
520 stack_trace_nesting_level_++;
521 OS::PrintError(
522 "\n\nAttempt to print stack while printing stack (double fault)\n");
523 OS::PrintError(
524 "If you are lucky you may find a partial stack dump on stdout.\n\n");
525 incomplete_message_->OutputToStdOut();
526 return factory()->empty_symbol();
527 } else {
528 OS::Abort();
529 // Unreachable
530 return factory()->empty_symbol();
531 }
532}
533
534
535Handle<JSArray> Isolate::CaptureCurrentStackTrace(
536 int frame_limit, StackTrace::StackTraceOptions options) {
537 // Ensure no negative values.
538 int limit = Max(frame_limit, 0);
539 Handle<JSArray> stack_trace = factory()->NewJSArray(frame_limit);
540
541 Handle<String> column_key = factory()->LookupAsciiSymbol("column");
542 Handle<String> line_key = factory()->LookupAsciiSymbol("lineNumber");
543 Handle<String> script_key = factory()->LookupAsciiSymbol("scriptName");
544 Handle<String> name_or_source_url_key =
545 factory()->LookupAsciiSymbol("nameOrSourceURL");
546 Handle<String> script_name_or_source_url_key =
547 factory()->LookupAsciiSymbol("scriptNameOrSourceURL");
548 Handle<String> function_key = factory()->LookupAsciiSymbol("functionName");
549 Handle<String> eval_key = factory()->LookupAsciiSymbol("isEval");
550 Handle<String> constructor_key =
551 factory()->LookupAsciiSymbol("isConstructor");
552
553 StackTraceFrameIterator it(this);
554 int frames_seen = 0;
555 while (!it.done() && (frames_seen < limit)) {
556 JavaScriptFrame* frame = it.frame();
557 // Set initial size to the maximum inlining level + 1 for the outermost
558 // function.
559 List<FrameSummary> frames(Compiler::kMaxInliningLevels + 1);
560 frame->Summarize(&frames);
561 for (int i = frames.length() - 1; i >= 0 && frames_seen < limit; i--) {
562 // Create a JSObject to hold the information for the StackFrame.
563 Handle<JSObject> stackFrame = factory()->NewJSObject(object_function());
564
565 Handle<JSFunction> fun = frames[i].function();
566 Handle<Script> script(Script::cast(fun->shared()->script()));
567
568 if (options & StackTrace::kLineNumber) {
569 int script_line_offset = script->line_offset()->value();
570 int position = frames[i].code()->SourcePosition(frames[i].pc());
571 int line_number = GetScriptLineNumber(script, position);
572 // line_number is already shifted by the script_line_offset.
573 int relative_line_number = line_number - script_line_offset;
574 if (options & StackTrace::kColumnOffset && relative_line_number >= 0) {
575 Handle<FixedArray> line_ends(FixedArray::cast(script->line_ends()));
576 int start = (relative_line_number == 0) ? 0 :
577 Smi::cast(line_ends->get(relative_line_number - 1))->value() + 1;
578 int column_offset = position - start;
579 if (relative_line_number == 0) {
580 // For the case where the code is on the same line as the script
581 // tag.
582 column_offset += script->column_offset()->value();
583 }
584 SetLocalPropertyNoThrow(stackFrame, column_key,
585 Handle<Smi>(Smi::FromInt(column_offset + 1)));
586 }
587 SetLocalPropertyNoThrow(stackFrame, line_key,
588 Handle<Smi>(Smi::FromInt(line_number + 1)));
589 }
590
591 if (options & StackTrace::kScriptName) {
592 Handle<Object> script_name(script->name(), this);
593 SetLocalPropertyNoThrow(stackFrame, script_key, script_name);
594 }
595
596 if (options & StackTrace::kScriptNameOrSourceURL) {
597 Handle<Object> script_name(script->name(), this);
598 Handle<JSValue> script_wrapper = GetScriptWrapper(script);
599 Handle<Object> property = GetProperty(script_wrapper,
600 name_or_source_url_key);
601 ASSERT(property->IsJSFunction());
602 Handle<JSFunction> method = Handle<JSFunction>::cast(property);
603 bool caught_exception;
604 Handle<Object> result = Execution::TryCall(method, script_wrapper, 0,
605 NULL, &caught_exception);
606 if (caught_exception) {
607 result = factory()->undefined_value();
608 }
609 SetLocalPropertyNoThrow(stackFrame, script_name_or_source_url_key,
610 result);
611 }
612
613 if (options & StackTrace::kFunctionName) {
614 Handle<Object> fun_name(fun->shared()->name(), this);
615 if (fun_name->ToBoolean()->IsFalse()) {
616 fun_name = Handle<Object>(fun->shared()->inferred_name(), this);
617 }
618 SetLocalPropertyNoThrow(stackFrame, function_key, fun_name);
619 }
620
621 if (options & StackTrace::kIsEval) {
622 int type = Smi::cast(script->compilation_type())->value();
623 Handle<Object> is_eval = (type == Script::COMPILATION_TYPE_EVAL) ?
624 factory()->true_value() : factory()->false_value();
625 SetLocalPropertyNoThrow(stackFrame, eval_key, is_eval);
626 }
627
628 if (options & StackTrace::kIsConstructor) {
629 Handle<Object> is_constructor = (frames[i].is_constructor()) ?
630 factory()->true_value() : factory()->false_value();
631 SetLocalPropertyNoThrow(stackFrame, constructor_key, is_constructor);
632 }
633
634 FixedArray::cast(stack_trace->elements())->set(frames_seen, *stackFrame);
635 frames_seen++;
636 }
637 it.Advance();
638 }
639
640 stack_trace->set_length(Smi::FromInt(frames_seen));
641 return stack_trace;
642}
643
644
645void Isolate::PrintStack() {
646 if (stack_trace_nesting_level_ == 0) {
647 stack_trace_nesting_level_++;
648
649 StringAllocator* allocator;
650 if (preallocated_message_space_ == NULL) {
651 allocator = new HeapStringAllocator();
652 } else {
653 allocator = preallocated_message_space_;
654 }
655
656 StringStream::ClearMentionedObjectCache();
657 StringStream accumulator(allocator);
658 incomplete_message_ = &accumulator;
659 PrintStack(&accumulator);
660 accumulator.OutputToStdOut();
661 accumulator.Log();
662 incomplete_message_ = NULL;
663 stack_trace_nesting_level_ = 0;
664 if (preallocated_message_space_ == NULL) {
665 // Remove the HeapStringAllocator created above.
666 delete allocator;
667 }
668 } else if (stack_trace_nesting_level_ == 1) {
669 stack_trace_nesting_level_++;
670 OS::PrintError(
671 "\n\nAttempt to print stack while printing stack (double fault)\n");
672 OS::PrintError(
673 "If you are lucky you may find a partial stack dump on stdout.\n\n");
674 incomplete_message_->OutputToStdOut();
675 }
676}
677
678
679static void PrintFrames(StringStream* accumulator,
680 StackFrame::PrintMode mode) {
681 StackFrameIterator it;
682 for (int i = 0; !it.done(); it.Advance()) {
683 it.frame()->Print(accumulator, mode, i++);
684 }
685}
686
687
688void Isolate::PrintStack(StringStream* accumulator) {
689 if (!IsInitialized()) {
690 accumulator->Add(
691 "\n==== Stack trace is not available ==========================\n\n");
692 accumulator->Add(
693 "\n==== Isolate for the thread is not initialized =============\n\n");
694 return;
695 }
696 // The MentionedObjectCache is not GC-proof at the moment.
697 AssertNoAllocation nogc;
698 ASSERT(StringStream::IsMentionedObjectCacheClear());
699
700 // Avoid printing anything if there are no frames.
701 if (c_entry_fp(thread_local_top()) == 0) return;
702
703 accumulator->Add(
704 "\n==== Stack trace ============================================\n\n");
705 PrintFrames(accumulator, StackFrame::OVERVIEW);
706
707 accumulator->Add(
708 "\n==== Details ================================================\n\n");
709 PrintFrames(accumulator, StackFrame::DETAILS);
710
711 accumulator->PrintMentionedObjectCache();
712 accumulator->Add("=====================\n\n");
713}
714
715
716void Isolate::SetFailedAccessCheckCallback(
717 v8::FailedAccessCheckCallback callback) {
718 thread_local_top()->failed_access_check_callback_ = callback;
719}
720
721
722void Isolate::ReportFailedAccessCheck(JSObject* receiver, v8::AccessType type) {
723 if (!thread_local_top()->failed_access_check_callback_) return;
724
725 ASSERT(receiver->IsAccessCheckNeeded());
726 ASSERT(context());
727
728 // Get the data object from access check info.
729 JSFunction* constructor = JSFunction::cast(receiver->map()->constructor());
730 if (!constructor->shared()->IsApiFunction()) return;
731 Object* data_obj =
732 constructor->shared()->get_api_func_data()->access_check_info();
733 if (data_obj == heap_.undefined_value()) return;
734
735 HandleScope scope;
736 Handle<JSObject> receiver_handle(receiver);
737 Handle<Object> data(AccessCheckInfo::cast(data_obj)->data());
738 thread_local_top()->failed_access_check_callback_(
739 v8::Utils::ToLocal(receiver_handle),
740 type,
741 v8::Utils::ToLocal(data));
742}
743
744
745enum MayAccessDecision {
746 YES, NO, UNKNOWN
747};
748
749
750static MayAccessDecision MayAccessPreCheck(Isolate* isolate,
751 JSObject* receiver,
752 v8::AccessType type) {
753 // During bootstrapping, callback functions are not enabled yet.
754 if (isolate->bootstrapper()->IsActive()) return YES;
755
756 if (receiver->IsJSGlobalProxy()) {
757 Object* receiver_context = JSGlobalProxy::cast(receiver)->context();
758 if (!receiver_context->IsContext()) return NO;
759
760 // Get the global context of current top context.
761 // avoid using Isolate::global_context() because it uses Handle.
762 Context* global_context = isolate->context()->global()->global_context();
763 if (receiver_context == global_context) return YES;
764
765 if (Context::cast(receiver_context)->security_token() ==
766 global_context->security_token())
767 return YES;
768 }
769
770 return UNKNOWN;
771}
772
773
774bool Isolate::MayNamedAccess(JSObject* receiver, Object* key,
775 v8::AccessType type) {
776 ASSERT(receiver->IsAccessCheckNeeded());
777
778 // The callers of this method are not expecting a GC.
779 AssertNoAllocation no_gc;
780
781 // Skip checks for hidden properties access. Note, we do not
782 // require existence of a context in this case.
783 if (key == heap_.hidden_symbol()) return true;
784
785 // Check for compatibility between the security tokens in the
786 // current lexical context and the accessed object.
787 ASSERT(context());
788
789 MayAccessDecision decision = MayAccessPreCheck(this, receiver, type);
790 if (decision != UNKNOWN) return decision == YES;
791
792 // Get named access check callback
793 JSFunction* constructor = JSFunction::cast(receiver->map()->constructor());
794 if (!constructor->shared()->IsApiFunction()) return false;
795
796 Object* data_obj =
797 constructor->shared()->get_api_func_data()->access_check_info();
798 if (data_obj == heap_.undefined_value()) return false;
799
800 Object* fun_obj = AccessCheckInfo::cast(data_obj)->named_callback();
801 v8::NamedSecurityCallback callback =
802 v8::ToCData<v8::NamedSecurityCallback>(fun_obj);
803
804 if (!callback) return false;
805
806 HandleScope scope(this);
807 Handle<JSObject> receiver_handle(receiver, this);
808 Handle<Object> key_handle(key, this);
809 Handle<Object> data(AccessCheckInfo::cast(data_obj)->data(), this);
810 LOG(this, ApiNamedSecurityCheck(key));
811 bool result = false;
812 {
813 // Leaving JavaScript.
814 VMState state(this, EXTERNAL);
815 result = callback(v8::Utils::ToLocal(receiver_handle),
816 v8::Utils::ToLocal(key_handle),
817 type,
818 v8::Utils::ToLocal(data));
819 }
820 return result;
821}
822
823
824bool Isolate::MayIndexedAccess(JSObject* receiver,
825 uint32_t index,
826 v8::AccessType type) {
827 ASSERT(receiver->IsAccessCheckNeeded());
828 // Check for compatibility between the security tokens in the
829 // current lexical context and the accessed object.
830 ASSERT(context());
831
832 MayAccessDecision decision = MayAccessPreCheck(this, receiver, type);
833 if (decision != UNKNOWN) return decision == YES;
834
835 // Get indexed access check callback
836 JSFunction* constructor = JSFunction::cast(receiver->map()->constructor());
837 if (!constructor->shared()->IsApiFunction()) return false;
838
839 Object* data_obj =
840 constructor->shared()->get_api_func_data()->access_check_info();
841 if (data_obj == heap_.undefined_value()) return false;
842
843 Object* fun_obj = AccessCheckInfo::cast(data_obj)->indexed_callback();
844 v8::IndexedSecurityCallback callback =
845 v8::ToCData<v8::IndexedSecurityCallback>(fun_obj);
846
847 if (!callback) return false;
848
849 HandleScope scope(this);
850 Handle<JSObject> receiver_handle(receiver, this);
851 Handle<Object> data(AccessCheckInfo::cast(data_obj)->data(), this);
852 LOG(this, ApiIndexedSecurityCheck(index));
853 bool result = false;
854 {
855 // Leaving JavaScript.
856 VMState state(this, EXTERNAL);
857 result = callback(v8::Utils::ToLocal(receiver_handle),
858 index,
859 type,
860 v8::Utils::ToLocal(data));
861 }
862 return result;
863}
864
865
866const char* const Isolate::kStackOverflowMessage =
867 "Uncaught RangeError: Maximum call stack size exceeded";
868
869
870Failure* Isolate::StackOverflow() {
871 HandleScope scope;
872 Handle<String> key = factory()->stack_overflow_symbol();
873 Handle<JSObject> boilerplate =
874 Handle<JSObject>::cast(GetProperty(js_builtins_object(), key));
875 Handle<Object> exception = Copy(boilerplate);
876 // TODO(1240995): To avoid having to call JavaScript code to compute
877 // the message for stack overflow exceptions which is very likely to
878 // double fault with another stack overflow exception, we use a
879 // precomputed message.
880 DoThrow(*exception, NULL);
881 return Failure::Exception();
882}
883
884
885Failure* Isolate::TerminateExecution() {
886 DoThrow(heap_.termination_exception(), NULL);
887 return Failure::Exception();
888}
889
890
891Failure* Isolate::Throw(Object* exception, MessageLocation* location) {
892 DoThrow(exception, location);
893 return Failure::Exception();
894}
895
896
897Failure* Isolate::ReThrow(MaybeObject* exception, MessageLocation* location) {
898 bool can_be_caught_externally = false;
899 ShouldReportException(&can_be_caught_externally,
900 is_catchable_by_javascript(exception));
901 thread_local_top()->catcher_ = can_be_caught_externally ?
902 try_catch_handler() : NULL;
903
904 // Set the exception being re-thrown.
905 set_pending_exception(exception);
906 return Failure::Exception();
907}
908
909
910Failure* Isolate::ThrowIllegalOperation() {
911 return Throw(heap_.illegal_access_symbol());
912}
913
914
915void Isolate::ScheduleThrow(Object* exception) {
916 // When scheduling a throw we first throw the exception to get the
917 // error reporting if it is uncaught before rescheduling it.
918 Throw(exception);
919 thread_local_top()->scheduled_exception_ = pending_exception();
920 thread_local_top()->external_caught_exception_ = false;
921 clear_pending_exception();
922}
923
924
925Failure* Isolate::PromoteScheduledException() {
926 MaybeObject* thrown = scheduled_exception();
927 clear_scheduled_exception();
928 // Re-throw the exception to avoid getting repeated error reporting.
929 return ReThrow(thrown);
930}
931
932
933void Isolate::PrintCurrentStackTrace(FILE* out) {
934 StackTraceFrameIterator it(this);
935 while (!it.done()) {
936 HandleScope scope;
937 // Find code position if recorded in relocation info.
938 JavaScriptFrame* frame = it.frame();
939 int pos = frame->LookupCode()->SourcePosition(frame->pc());
940 Handle<Object> pos_obj(Smi::FromInt(pos));
941 // Fetch function and receiver.
942 Handle<JSFunction> fun(JSFunction::cast(frame->function()));
943 Handle<Object> recv(frame->receiver());
944 // Advance to the next JavaScript frame and determine if the
945 // current frame is the top-level frame.
946 it.Advance();
947 Handle<Object> is_top_level = it.done()
948 ? factory()->true_value()
949 : factory()->false_value();
950 // Generate and print stack trace line.
951 Handle<String> line =
952 Execution::GetStackTraceLine(recv, fun, pos_obj, is_top_level);
953 if (line->length() > 0) {
954 line->PrintOn(out);
955 fprintf(out, "\n");
956 }
957 }
958}
959
960
961void Isolate::ComputeLocation(MessageLocation* target) {
962 *target = MessageLocation(Handle<Script>(heap_.empty_script()), -1, -1);
963 StackTraceFrameIterator it(this);
964 if (!it.done()) {
965 JavaScriptFrame* frame = it.frame();
966 JSFunction* fun = JSFunction::cast(frame->function());
967 Object* script = fun->shared()->script();
968 if (script->IsScript() &&
969 !(Script::cast(script)->source()->IsUndefined())) {
970 int pos = frame->LookupCode()->SourcePosition(frame->pc());
971 // Compute the location from the function and the reloc info.
972 Handle<Script> casted_script(Script::cast(script));
973 *target = MessageLocation(casted_script, pos, pos + 1);
974 }
975 }
976}
977
978
979bool Isolate::ShouldReportException(bool* can_be_caught_externally,
980 bool catchable_by_javascript) {
981 // Find the top-most try-catch handler.
982 StackHandler* handler =
983 StackHandler::FromAddress(Isolate::handler(thread_local_top()));
984 while (handler != NULL && !handler->is_try_catch()) {
985 handler = handler->next();
986 }
987
988 // Get the address of the external handler so we can compare the address to
989 // determine which one is closer to the top of the stack.
990 Address external_handler_address =
991 thread_local_top()->try_catch_handler_address();
992
993 // The exception has been externally caught if and only if there is
994 // an external handler which is on top of the top-most try-catch
995 // handler.
996 *can_be_caught_externally = external_handler_address != NULL &&
997 (handler == NULL || handler->address() > external_handler_address ||
998 !catchable_by_javascript);
999
1000 if (*can_be_caught_externally) {
1001 // Only report the exception if the external handler is verbose.
1002 return try_catch_handler()->is_verbose_;
1003 } else {
1004 // Report the exception if it isn't caught by JavaScript code.
1005 return handler == NULL;
1006 }
1007}
1008
1009
1010void Isolate::DoThrow(MaybeObject* exception, MessageLocation* location) {
1011 ASSERT(!has_pending_exception());
1012
1013 HandleScope scope;
1014 Object* exception_object = Smi::FromInt(0);
1015 bool is_object = exception->ToObject(&exception_object);
1016 Handle<Object> exception_handle(exception_object);
1017
1018 // Determine reporting and whether the exception is caught externally.
1019 bool catchable_by_javascript = is_catchable_by_javascript(exception);
1020 // Only real objects can be caught by JS.
1021 ASSERT(!catchable_by_javascript || is_object);
1022 bool can_be_caught_externally = false;
1023 bool should_report_exception =
1024 ShouldReportException(&can_be_caught_externally, catchable_by_javascript);
1025 bool report_exception = catchable_by_javascript && should_report_exception;
1026
1027#ifdef ENABLE_DEBUGGER_SUPPORT
1028 // Notify debugger of exception.
1029 if (catchable_by_javascript) {
1030 debugger_->OnException(exception_handle, report_exception);
1031 }
1032#endif
1033
1034 // Generate the message.
1035 Handle<Object> message_obj;
1036 MessageLocation potential_computed_location;
1037 bool try_catch_needs_message =
1038 can_be_caught_externally &&
1039 try_catch_handler()->capture_message_;
1040 if (report_exception || try_catch_needs_message) {
1041 if (location == NULL) {
1042 // If no location was specified we use a computed one instead
1043 ComputeLocation(&potential_computed_location);
1044 location = &potential_computed_location;
1045 }
1046 if (!bootstrapper()->IsActive()) {
1047 // It's not safe to try to make message objects or collect stack
1048 // traces while the bootstrapper is active since the infrastructure
1049 // may not have been properly initialized.
1050 Handle<String> stack_trace;
1051 if (FLAG_trace_exception) stack_trace = StackTraceString();
1052 Handle<JSArray> stack_trace_object;
1053 if (report_exception && capture_stack_trace_for_uncaught_exceptions_) {
1054 stack_trace_object = CaptureCurrentStackTrace(
1055 stack_trace_for_uncaught_exceptions_frame_limit_,
1056 stack_trace_for_uncaught_exceptions_options_);
1057 }
1058 ASSERT(is_object); // Can't use the handle unless there's a real object.
1059 message_obj = MessageHandler::MakeMessageObject("uncaught_exception",
1060 location, HandleVector<Object>(&exception_handle, 1), stack_trace,
1061 stack_trace_object);
1062 }
1063 }
1064
1065 // Save the message for reporting if the the exception remains uncaught.
1066 thread_local_top()->has_pending_message_ = report_exception;
1067 if (!message_obj.is_null()) {
1068 thread_local_top()->pending_message_obj_ = *message_obj;
1069 if (location != NULL) {
1070 thread_local_top()->pending_message_script_ = *location->script();
1071 thread_local_top()->pending_message_start_pos_ = location->start_pos();
1072 thread_local_top()->pending_message_end_pos_ = location->end_pos();
1073 }
1074 }
1075
1076 // Do not forget to clean catcher_ if currently thrown exception cannot
1077 // be caught. If necessary, ReThrow will update the catcher.
1078 thread_local_top()->catcher_ = can_be_caught_externally ?
1079 try_catch_handler() : NULL;
1080
1081 // NOTE: Notifying the debugger or generating the message
1082 // may have caused new exceptions. For now, we just ignore
1083 // that and set the pending exception to the original one.
1084 if (is_object) {
1085 set_pending_exception(*exception_handle);
1086 } else {
1087 // Failures are not on the heap so they neither need nor work with handles.
1088 ASSERT(exception_handle->IsFailure());
1089 set_pending_exception(exception);
1090 }
1091}
1092
1093
1094bool Isolate::IsExternallyCaught() {
1095 ASSERT(has_pending_exception());
1096
1097 if ((thread_local_top()->catcher_ == NULL) ||
1098 (try_catch_handler() != thread_local_top()->catcher_)) {
1099 // When throwing the exception, we found no v8::TryCatch
1100 // which should care about this exception.
1101 return false;
1102 }
1103
1104 if (!is_catchable_by_javascript(pending_exception())) {
1105 return true;
1106 }
1107
1108 // Get the address of the external handler so we can compare the address to
1109 // determine which one is closer to the top of the stack.
1110 Address external_handler_address =
1111 thread_local_top()->try_catch_handler_address();
1112 ASSERT(external_handler_address != NULL);
1113
1114 // The exception has been externally caught if and only if there is
1115 // an external handler which is on top of the top-most try-finally
1116 // handler.
1117 // There should be no try-catch blocks as they would prohibit us from
1118 // finding external catcher in the first place (see catcher_ check above).
1119 //
1120 // Note, that finally clause would rethrow an exception unless it's
1121 // aborted by jumps in control flow like return, break, etc. and we'll
1122 // have another chances to set proper v8::TryCatch.
1123 StackHandler* handler =
1124 StackHandler::FromAddress(Isolate::handler(thread_local_top()));
1125 while (handler != NULL && handler->address() < external_handler_address) {
1126 ASSERT(!handler->is_try_catch());
1127 if (handler->is_try_finally()) return false;
1128
1129 handler = handler->next();
1130 }
1131
1132 return true;
1133}
1134
1135
1136void Isolate::ReportPendingMessages() {
1137 ASSERT(has_pending_exception());
1138 PropagatePendingExceptionToExternalTryCatch();
1139
1140 // If the pending exception is OutOfMemoryException set out_of_memory in
1141 // the global context. Note: We have to mark the global context here
1142 // since the GenerateThrowOutOfMemory stub cannot make a RuntimeCall to
1143 // set it.
1144 HandleScope scope;
1145 if (thread_local_top_.pending_exception_ == Failure::OutOfMemoryException()) {
1146 context()->mark_out_of_memory();
1147 } else if (thread_local_top_.pending_exception_ ==
1148 heap()->termination_exception()) {
1149 // Do nothing: if needed, the exception has been already propagated to
1150 // v8::TryCatch.
1151 } else {
1152 if (thread_local_top_.has_pending_message_) {
1153 thread_local_top_.has_pending_message_ = false;
1154 if (!thread_local_top_.pending_message_obj_->IsTheHole()) {
1155 HandleScope scope;
1156 Handle<Object> message_obj(thread_local_top_.pending_message_obj_);
1157 if (thread_local_top_.pending_message_script_ != NULL) {
1158 Handle<Script> script(thread_local_top_.pending_message_script_);
1159 int start_pos = thread_local_top_.pending_message_start_pos_;
1160 int end_pos = thread_local_top_.pending_message_end_pos_;
1161 MessageLocation location(script, start_pos, end_pos);
1162 MessageHandler::ReportMessage(this, &location, message_obj);
1163 } else {
1164 MessageHandler::ReportMessage(this, NULL, message_obj);
1165 }
1166 }
1167 }
1168 }
1169 clear_pending_message();
1170}
1171
1172
1173void Isolate::TraceException(bool flag) {
1174 FLAG_trace_exception = flag; // TODO(isolates): This is an unfortunate use.
1175}
1176
1177
1178bool Isolate::OptionalRescheduleException(bool is_bottom_call) {
1179 ASSERT(has_pending_exception());
1180 PropagatePendingExceptionToExternalTryCatch();
1181
1182 // Allways reschedule out of memory exceptions.
1183 if (!is_out_of_memory()) {
1184 bool is_termination_exception =
1185 pending_exception() == heap_.termination_exception();
1186
1187 // Do not reschedule the exception if this is the bottom call.
1188 bool clear_exception = is_bottom_call;
1189
1190 if (is_termination_exception) {
1191 if (is_bottom_call) {
1192 thread_local_top()->external_caught_exception_ = false;
1193 clear_pending_exception();
1194 return false;
1195 }
1196 } else if (thread_local_top()->external_caught_exception_) {
1197 // If the exception is externally caught, clear it if there are no
1198 // JavaScript frames on the way to the C++ frame that has the
1199 // external handler.
1200 ASSERT(thread_local_top()->try_catch_handler_address() != NULL);
1201 Address external_handler_address =
1202 thread_local_top()->try_catch_handler_address();
1203 JavaScriptFrameIterator it;
1204 if (it.done() || (it.frame()->sp() > external_handler_address)) {
1205 clear_exception = true;
1206 }
1207 }
1208
1209 // Clear the exception if needed.
1210 if (clear_exception) {
1211 thread_local_top()->external_caught_exception_ = false;
1212 clear_pending_exception();
1213 return false;
1214 }
1215 }
1216
1217 // Reschedule the exception.
1218 thread_local_top()->scheduled_exception_ = pending_exception();
1219 clear_pending_exception();
1220 return true;
1221}
1222
1223
1224void Isolate::SetCaptureStackTraceForUncaughtExceptions(
1225 bool capture,
1226 int frame_limit,
1227 StackTrace::StackTraceOptions options) {
1228 capture_stack_trace_for_uncaught_exceptions_ = capture;
1229 stack_trace_for_uncaught_exceptions_frame_limit_ = frame_limit;
1230 stack_trace_for_uncaught_exceptions_options_ = options;
1231}
1232
1233
1234bool Isolate::is_out_of_memory() {
1235 if (has_pending_exception()) {
1236 MaybeObject* e = pending_exception();
1237 if (e->IsFailure() && Failure::cast(e)->IsOutOfMemoryException()) {
1238 return true;
1239 }
1240 }
1241 if (has_scheduled_exception()) {
1242 MaybeObject* e = scheduled_exception();
1243 if (e->IsFailure() && Failure::cast(e)->IsOutOfMemoryException()) {
1244 return true;
1245 }
1246 }
1247 return false;
1248}
1249
1250
1251Handle<Context> Isolate::global_context() {
1252 GlobalObject* global = thread_local_top()->context_->global();
1253 return Handle<Context>(global->global_context());
1254}
1255
1256
1257Handle<Context> Isolate::GetCallingGlobalContext() {
1258 JavaScriptFrameIterator it;
1259#ifdef ENABLE_DEBUGGER_SUPPORT
1260 if (debug_->InDebugger()) {
1261 while (!it.done()) {
1262 JavaScriptFrame* frame = it.frame();
1263 Context* context = Context::cast(frame->context());
1264 if (context->global_context() == *debug_->debug_context()) {
1265 it.Advance();
1266 } else {
1267 break;
1268 }
1269 }
1270 }
1271#endif // ENABLE_DEBUGGER_SUPPORT
1272 if (it.done()) return Handle<Context>::null();
1273 JavaScriptFrame* frame = it.frame();
1274 Context* context = Context::cast(frame->context());
1275 return Handle<Context>(context->global_context());
1276}
1277
1278
1279char* Isolate::ArchiveThread(char* to) {
1280 if (RuntimeProfiler::IsEnabled() && current_vm_state() == JS) {
1281 RuntimeProfiler::IsolateExitedJS(this);
1282 }
1283 memcpy(to, reinterpret_cast<char*>(thread_local_top()),
1284 sizeof(ThreadLocalTop));
1285 InitializeThreadLocal();
1286 return to + sizeof(ThreadLocalTop);
1287}
1288
1289
1290char* Isolate::RestoreThread(char* from) {
1291 memcpy(reinterpret_cast<char*>(thread_local_top()), from,
1292 sizeof(ThreadLocalTop));
1293 // This might be just paranoia, but it seems to be needed in case a
1294 // thread_local_top_ is restored on a separate OS thread.
1295#ifdef USE_SIMULATOR
1296#ifdef V8_TARGET_ARCH_ARM
1297 thread_local_top()->simulator_ = Simulator::current(this);
1298#elif V8_TARGET_ARCH_MIPS
1299 thread_local_top()->simulator_ = Simulator::current(this);
1300#endif
1301#endif
1302 if (RuntimeProfiler::IsEnabled() && current_vm_state() == JS) {
1303 RuntimeProfiler::IsolateEnteredJS(this);
1304 }
1305 return from + sizeof(ThreadLocalTop);
1306}
1307
1308
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001309Isolate::ThreadDataTable::ThreadDataTable()
1310 : list_(NULL) {
1311}
1312
1313
1314Isolate::PerIsolateThreadData*
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +00001315 Isolate::ThreadDataTable::Lookup(Isolate* isolate,
1316 ThreadId thread_id) {
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001317 for (PerIsolateThreadData* data = list_; data != NULL; data = data->next_) {
1318 if (data->Matches(isolate, thread_id)) return data;
1319 }
1320 return NULL;
1321}
1322
1323
1324void Isolate::ThreadDataTable::Insert(Isolate::PerIsolateThreadData* data) {
1325 if (list_ != NULL) list_->prev_ = data;
1326 data->next_ = list_;
1327 list_ = data;
1328}
1329
1330
1331void Isolate::ThreadDataTable::Remove(PerIsolateThreadData* data) {
1332 if (list_ == data) list_ = data->next_;
1333 if (data->next_ != NULL) data->next_->prev_ = data->prev_;
1334 if (data->prev_ != NULL) data->prev_->next_ = data->next_;
1335}
1336
1337
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +00001338void Isolate::ThreadDataTable::Remove(Isolate* isolate,
1339 ThreadId thread_id) {
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001340 PerIsolateThreadData* data = Lookup(isolate, thread_id);
1341 if (data != NULL) {
1342 Remove(data);
1343 }
1344}
1345
1346
1347#ifdef DEBUG
1348#define TRACE_ISOLATE(tag) \
1349 do { \
1350 if (FLAG_trace_isolates) { \
1351 PrintF("Isolate %p " #tag "\n", reinterpret_cast<void*>(this)); \
1352 } \
1353 } while (false)
1354#else
1355#define TRACE_ISOLATE(tag)
1356#endif
1357
1358
1359Isolate::Isolate()
1360 : state_(UNINITIALIZED),
1361 entry_stack_(NULL),
1362 stack_trace_nesting_level_(0),
1363 incomplete_message_(NULL),
1364 preallocated_memory_thread_(NULL),
1365 preallocated_message_space_(NULL),
1366 bootstrapper_(NULL),
1367 runtime_profiler_(NULL),
1368 compilation_cache_(NULL),
1369 counters_(new Counters()),
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001370 code_range_(NULL),
1371 break_access_(OS::CreateMutex()),
1372 logger_(new Logger()),
1373 stats_table_(new StatsTable()),
1374 stub_cache_(NULL),
1375 deoptimizer_data_(NULL),
1376 capture_stack_trace_for_uncaught_exceptions_(false),
1377 stack_trace_for_uncaught_exceptions_frame_limit_(0),
1378 stack_trace_for_uncaught_exceptions_options_(StackTrace::kOverview),
1379 transcendental_cache_(NULL),
1380 memory_allocator_(NULL),
1381 keyed_lookup_cache_(NULL),
1382 context_slot_cache_(NULL),
1383 descriptor_lookup_cache_(NULL),
1384 handle_scope_implementer_(NULL),
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +00001385 unicode_cache_(NULL),
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001386 in_use_list_(0),
1387 free_list_(0),
1388 preallocated_storage_preallocated_(false),
1389 pc_to_code_cache_(NULL),
1390 write_input_buffer_(NULL),
1391 global_handles_(NULL),
1392 context_switcher_(NULL),
1393 thread_manager_(NULL),
1394 ast_sentinels_(NULL),
1395 string_tracker_(NULL),
1396 regexp_stack_(NULL),
1397 frame_element_constant_list_(0),
1398 result_constant_list_(0) {
1399 TRACE_ISOLATE(constructor);
1400
1401 memset(isolate_addresses_, 0,
1402 sizeof(isolate_addresses_[0]) * (k_isolate_address_count + 1));
1403
1404 heap_.isolate_ = this;
1405 zone_.isolate_ = this;
1406 stack_guard_.isolate_ = this;
1407
lrn@chromium.org1c092762011-05-09 09:42:16 +00001408 // ThreadManager is initialized early to support locking an isolate
1409 // before it is entered.
1410 thread_manager_ = new ThreadManager();
1411 thread_manager_->isolate_ = this;
1412
lrn@chromium.org7516f052011-03-30 08:52:27 +00001413#if defined(V8_TARGET_ARCH_ARM) && !defined(__arm__) || \
1414 defined(V8_TARGET_ARCH_MIPS) && !defined(__mips__)
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001415 simulator_initialized_ = false;
1416 simulator_i_cache_ = NULL;
1417 simulator_redirection_ = NULL;
1418#endif
1419
1420#ifdef DEBUG
1421 // heap_histograms_ initializes itself.
1422 memset(&js_spill_information_, 0, sizeof(js_spill_information_));
1423 memset(code_kind_statistics_, 0,
1424 sizeof(code_kind_statistics_[0]) * Code::NUMBER_OF_KINDS);
1425#endif
1426
1427#ifdef ENABLE_DEBUGGER_SUPPORT
1428 debug_ = NULL;
1429 debugger_ = NULL;
1430#endif
1431
1432#ifdef ENABLE_LOGGING_AND_PROFILING
1433 producer_heap_profile_ = NULL;
1434#endif
1435
1436 handle_scope_data_.Initialize();
1437
1438#define ISOLATE_INIT_EXECUTE(type, name, initial_value) \
1439 name##_ = (initial_value);
1440 ISOLATE_INIT_LIST(ISOLATE_INIT_EXECUTE)
1441#undef ISOLATE_INIT_EXECUTE
1442
1443#define ISOLATE_INIT_ARRAY_EXECUTE(type, name, length) \
1444 memset(name##_, 0, sizeof(type) * length);
1445 ISOLATE_INIT_ARRAY_LIST(ISOLATE_INIT_ARRAY_EXECUTE)
1446#undef ISOLATE_INIT_ARRAY_EXECUTE
1447}
1448
1449void Isolate::TearDown() {
1450 TRACE_ISOLATE(tear_down);
1451
1452 // Temporarily set this isolate as current so that various parts of
1453 // the isolate can access it in their destructors without having a
1454 // direct pointer. We don't use Enter/Exit here to avoid
1455 // initializing the thread data.
1456 PerIsolateThreadData* saved_data = CurrentPerIsolateThreadData();
1457 Isolate* saved_isolate = UncheckedCurrent();
1458 SetIsolateThreadLocals(this, NULL);
1459
1460 Deinit();
1461
1462 if (!IsDefaultIsolate()) {
1463 delete this;
1464 }
1465
1466 // Restore the previous current isolate.
1467 SetIsolateThreadLocals(saved_isolate, saved_data);
1468}
1469
1470
1471void Isolate::Deinit() {
1472 if (state_ == INITIALIZED) {
1473 TRACE_ISOLATE(deinit);
1474
1475 if (FLAG_hydrogen_stats) HStatistics::Instance()->Print();
1476
1477 // We must stop the logger before we tear down other components.
1478 logger_->EnsureTickerStopped();
1479
1480 delete deoptimizer_data_;
1481 deoptimizer_data_ = NULL;
1482 if (FLAG_preemption) {
1483 v8::Locker locker;
1484 v8::Locker::StopPreemption();
1485 }
1486 builtins_.TearDown();
1487 bootstrapper_->TearDown();
1488
1489 // Remove the external reference to the preallocated stack memory.
1490 delete preallocated_message_space_;
1491 preallocated_message_space_ = NULL;
1492 PreallocatedMemoryThreadStop();
1493
1494 HeapProfiler::TearDown();
1495 CpuProfiler::TearDown();
1496 if (runtime_profiler_ != NULL) {
1497 runtime_profiler_->TearDown();
1498 delete runtime_profiler_;
1499 runtime_profiler_ = NULL;
1500 }
1501 heap_.TearDown();
1502 logger_->TearDown();
1503
1504 // The default isolate is re-initializable due to legacy API.
1505 state_ = PREINITIALIZED;
1506 }
1507}
1508
1509
1510void Isolate::SetIsolateThreadLocals(Isolate* isolate,
1511 PerIsolateThreadData* data) {
1512 Thread::SetThreadLocal(isolate_key_, isolate);
1513 Thread::SetThreadLocal(per_isolate_thread_data_key_, data);
1514}
1515
1516
1517Isolate::~Isolate() {
1518 TRACE_ISOLATE(destructor);
1519
1520#ifdef ENABLE_LOGGING_AND_PROFILING
1521 delete producer_heap_profile_;
1522 producer_heap_profile_ = NULL;
1523#endif
1524
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +00001525 delete unicode_cache_;
1526 unicode_cache_ = NULL;
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001527
1528 delete regexp_stack_;
1529 regexp_stack_ = NULL;
1530
1531 delete ast_sentinels_;
1532 ast_sentinels_ = NULL;
1533
1534 delete descriptor_lookup_cache_;
1535 descriptor_lookup_cache_ = NULL;
1536 delete context_slot_cache_;
1537 context_slot_cache_ = NULL;
1538 delete keyed_lookup_cache_;
1539 keyed_lookup_cache_ = NULL;
1540
1541 delete transcendental_cache_;
1542 transcendental_cache_ = NULL;
1543 delete stub_cache_;
1544 stub_cache_ = NULL;
1545 delete stats_table_;
1546 stats_table_ = NULL;
1547
1548 delete logger_;
1549 logger_ = NULL;
1550
1551 delete counters_;
1552 counters_ = NULL;
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001553
1554 delete handle_scope_implementer_;
1555 handle_scope_implementer_ = NULL;
1556 delete break_access_;
1557 break_access_ = NULL;
1558
1559 delete compilation_cache_;
1560 compilation_cache_ = NULL;
1561 delete bootstrapper_;
1562 bootstrapper_ = NULL;
1563 delete pc_to_code_cache_;
1564 pc_to_code_cache_ = NULL;
1565 delete write_input_buffer_;
1566 write_input_buffer_ = NULL;
1567
1568 delete context_switcher_;
1569 context_switcher_ = NULL;
1570 delete thread_manager_;
1571 thread_manager_ = NULL;
1572
1573 delete string_tracker_;
1574 string_tracker_ = NULL;
1575
1576 delete memory_allocator_;
1577 memory_allocator_ = NULL;
1578 delete code_range_;
1579 code_range_ = NULL;
1580 delete global_handles_;
1581 global_handles_ = NULL;
1582
1583#ifdef ENABLE_DEBUGGER_SUPPORT
1584 delete debugger_;
1585 debugger_ = NULL;
1586 delete debug_;
1587 debug_ = NULL;
1588#endif
1589}
1590
1591
1592bool Isolate::PreInit() {
1593 if (state_ != UNINITIALIZED) return true;
1594
1595 TRACE_ISOLATE(preinit);
1596
1597 ASSERT(Isolate::Current() == this);
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001598#ifdef ENABLE_DEBUGGER_SUPPORT
1599 debug_ = new Debug(this);
1600 debugger_ = new Debugger();
1601 debugger_->isolate_ = this;
1602#endif
1603
1604 memory_allocator_ = new MemoryAllocator();
1605 memory_allocator_->isolate_ = this;
1606 code_range_ = new CodeRange();
1607 code_range_->isolate_ = this;
1608
1609 // Safe after setting Heap::isolate_, initializing StackGuard and
1610 // ensuring that Isolate::Current() == this.
1611 heap_.SetStackLimits();
1612
1613#ifdef DEBUG
1614 DisallowAllocationFailure disallow_allocation_failure;
1615#endif
1616
1617#define C(name) isolate_addresses_[Isolate::k_##name] = \
1618 reinterpret_cast<Address>(name());
1619 ISOLATE_ADDRESS_LIST(C)
1620 ISOLATE_ADDRESS_LIST_PROF(C)
1621#undef C
1622
1623 string_tracker_ = new StringTracker();
1624 string_tracker_->isolate_ = this;
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001625 compilation_cache_ = new CompilationCache(this);
1626 transcendental_cache_ = new TranscendentalCache();
1627 keyed_lookup_cache_ = new KeyedLookupCache();
1628 context_slot_cache_ = new ContextSlotCache();
1629 descriptor_lookup_cache_ = new DescriptorLookupCache();
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +00001630 unicode_cache_ = new UnicodeCache();
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001631 pc_to_code_cache_ = new PcToCodeCache(this);
1632 write_input_buffer_ = new StringInputBuffer();
1633 global_handles_ = new GlobalHandles(this);
1634 bootstrapper_ = new Bootstrapper();
lrn@chromium.org1c092762011-05-09 09:42:16 +00001635 handle_scope_implementer_ = new HandleScopeImplementer(this);
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001636 stub_cache_ = new StubCache(this);
1637 ast_sentinels_ = new AstSentinels();
1638 regexp_stack_ = new RegExpStack();
1639 regexp_stack_->isolate_ = this;
1640
1641#ifdef ENABLE_LOGGING_AND_PROFILING
1642 producer_heap_profile_ = new ProducerHeapProfile();
1643 producer_heap_profile_->isolate_ = this;
1644#endif
1645
1646 state_ = PREINITIALIZED;
1647 return true;
1648}
1649
1650
1651void Isolate::InitializeThreadLocal() {
lrn@chromium.org1c092762011-05-09 09:42:16 +00001652 thread_local_top_.isolate_ = this;
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001653 thread_local_top_.Initialize();
1654 clear_pending_exception();
1655 clear_pending_message();
1656 clear_scheduled_exception();
1657}
1658
1659
karlklose@chromium.org44bc7082011-04-11 12:33:05 +00001660void Isolate::PropagatePendingExceptionToExternalTryCatch() {
1661 ASSERT(has_pending_exception());
1662
1663 bool external_caught = IsExternallyCaught();
1664 thread_local_top_.external_caught_exception_ = external_caught;
1665
1666 if (!external_caught) return;
1667
1668 if (thread_local_top_.pending_exception_ == Failure::OutOfMemoryException()) {
1669 // Do not propagate OOM exception: we should kill VM asap.
1670 } else if (thread_local_top_.pending_exception_ ==
1671 heap()->termination_exception()) {
1672 try_catch_handler()->can_continue_ = false;
1673 try_catch_handler()->exception_ = heap()->null_value();
1674 } else {
1675 // At this point all non-object (failure) exceptions have
1676 // been dealt with so this shouldn't fail.
1677 ASSERT(!pending_exception()->IsFailure());
1678 try_catch_handler()->can_continue_ = true;
1679 try_catch_handler()->exception_ = pending_exception();
1680 if (!thread_local_top_.pending_message_obj_->IsTheHole()) {
1681 try_catch_handler()->message_ = thread_local_top_.pending_message_obj_;
1682 }
1683 }
1684}
1685
1686
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001687bool Isolate::Init(Deserializer* des) {
1688 ASSERT(state_ != INITIALIZED);
1689
1690 TRACE_ISOLATE(init);
1691
1692 bool create_heap_objects = des == NULL;
1693
1694#ifdef DEBUG
1695 // The initialization process does not handle memory exhaustion.
1696 DisallowAllocationFailure disallow_allocation_failure;
1697#endif
1698
1699 if (state_ == UNINITIALIZED && !PreInit()) return false;
1700
1701 // Enable logging before setting up the heap
1702 logger_->Setup();
1703
1704 CpuProfiler::Setup();
1705 HeapProfiler::Setup();
1706
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001707 // Initialize other runtime facilities
1708#if defined(USE_SIMULATOR)
lrn@chromium.org7516f052011-03-30 08:52:27 +00001709#if defined(V8_TARGET_ARCH_ARM) || defined(V8_TARGET_ARCH_MIPS)
lrn@chromium.org1c092762011-05-09 09:42:16 +00001710 Simulator::Initialize(this);
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001711#endif
1712#endif
1713
1714 { // NOLINT
1715 // Ensure that the thread has a valid stack guard. The v8::Locker object
1716 // will ensure this too, but we don't have to use lockers if we are only
1717 // using one thread.
1718 ExecutionAccess lock(this);
1719 stack_guard_.InitThread(lock);
1720 }
1721
1722 // Setup the object heap
1723 ASSERT(!heap_.HasBeenSetup());
1724 if (!heap_.Setup(create_heap_objects)) {
1725 V8::SetFatalError();
1726 return false;
1727 }
1728
1729 bootstrapper_->Initialize(create_heap_objects);
1730 builtins_.Setup(create_heap_objects);
1731
1732 InitializeThreadLocal();
1733
1734 // Only preallocate on the first initialization.
1735 if (FLAG_preallocate_message_memory && preallocated_message_space_ == NULL) {
1736 // Start the thread which will set aside some memory.
1737 PreallocatedMemoryThreadStart();
1738 preallocated_message_space_ =
1739 new NoAllocationStringAllocator(
1740 preallocated_memory_thread_->data(),
1741 preallocated_memory_thread_->length());
1742 PreallocatedStorageInit(preallocated_memory_thread_->length() / 4);
1743 }
1744
1745 if (FLAG_preemption) {
1746 v8::Locker locker;
1747 v8::Locker::StartPreemption(100);
1748 }
1749
1750#ifdef ENABLE_DEBUGGER_SUPPORT
1751 debug_->Setup(create_heap_objects);
1752#endif
1753 stub_cache_->Initialize(create_heap_objects);
1754
1755 // If we are deserializing, read the state into the now-empty heap.
1756 if (des != NULL) {
1757 des->Deserialize();
1758 stub_cache_->Clear();
1759 }
1760
1761 // Deserializing may put strange things in the root array's copy of the
1762 // stack guard.
1763 heap_.SetStackLimits();
1764
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001765 deoptimizer_data_ = new DeoptimizerData;
1766 runtime_profiler_ = new RuntimeProfiler(this);
1767 runtime_profiler_->Setup();
1768
1769 // If we are deserializing, log non-function code objects and compiled
1770 // functions found in the snapshot.
sgjesse@chromium.org8e8294a2011-05-02 14:30:53 +00001771 if (des != NULL && (FLAG_log_code || FLAG_ll_prof)) {
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001772 HandleScope scope;
1773 LOG(this, LogCodeObjects());
1774 LOG(this, LogCompiledFunctions());
1775 }
1776
1777 state_ = INITIALIZED;
1778 return true;
1779}
1780
1781
1782void Isolate::Enter() {
1783 Isolate* current_isolate = NULL;
1784 PerIsolateThreadData* current_data = CurrentPerIsolateThreadData();
1785 if (current_data != NULL) {
1786 current_isolate = current_data->isolate_;
1787 ASSERT(current_isolate != NULL);
1788 if (current_isolate == this) {
1789 ASSERT(Current() == this);
1790 ASSERT(entry_stack_ != NULL);
1791 ASSERT(entry_stack_->previous_thread_data == NULL ||
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +00001792 entry_stack_->previous_thread_data->thread_id().Equals(
1793 ThreadId::Current()));
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001794 // Same thread re-enters the isolate, no need to re-init anything.
1795 entry_stack_->entry_count++;
1796 return;
1797 }
1798 }
1799
1800 // Threads can have default isolate set into TLS as Current but not yet have
1801 // PerIsolateThreadData for it, as it requires more advanced phase of the
1802 // initialization. For example, a thread might be the one that system used for
1803 // static initializers - in this case the default isolate is set in TLS but
1804 // the thread did not yet Enter the isolate. If PerisolateThreadData is not
1805 // there, use the isolate set in TLS.
1806 if (current_isolate == NULL) {
1807 current_isolate = Isolate::UncheckedCurrent();
1808 }
1809
1810 PerIsolateThreadData* data = FindOrAllocatePerThreadDataForThisThread();
1811 ASSERT(data != NULL);
1812 ASSERT(data->isolate_ == this);
1813
1814 EntryStackItem* item = new EntryStackItem(current_data,
1815 current_isolate,
1816 entry_stack_);
1817 entry_stack_ = item;
1818
1819 SetIsolateThreadLocals(this, data);
1820
1821 CHECK(PreInit());
1822
1823 // In case it's the first time some thread enters the isolate.
1824 set_thread_id(data->thread_id());
1825}
1826
1827
1828void Isolate::Exit() {
1829 ASSERT(entry_stack_ != NULL);
1830 ASSERT(entry_stack_->previous_thread_data == NULL ||
ager@chromium.orga9aa5fa2011-04-13 08:46:07 +00001831 entry_stack_->previous_thread_data->thread_id().Equals(
1832 ThreadId::Current()));
sgjesse@chromium.orgea88ce92011-03-23 11:19:56 +00001833
1834 if (--entry_stack_->entry_count > 0) return;
1835
1836 ASSERT(CurrentPerIsolateThreadData() != NULL);
1837 ASSERT(CurrentPerIsolateThreadData()->isolate_ == this);
1838
1839 // Pop the stack.
1840 EntryStackItem* item = entry_stack_;
1841 entry_stack_ = item->previous_item;
1842
1843 PerIsolateThreadData* previous_thread_data = item->previous_thread_data;
1844 Isolate* previous_isolate = item->previous_isolate;
1845
1846 delete item;
1847
1848 // Reinit the current thread for the isolate it was running before this one.
1849 SetIsolateThreadLocals(previous_isolate, previous_thread_data);
1850}
1851
1852
1853void Isolate::ResetEagerOptimizingData() {
1854 compilation_cache_->ResetEagerOptimizingData();
1855}
1856
1857
1858#ifdef DEBUG
1859#define ISOLATE_FIELD_OFFSET(type, name, ignored) \
1860const intptr_t Isolate::name##_debug_offset_ = OFFSET_OF(Isolate, name##_);
1861ISOLATE_INIT_LIST(ISOLATE_FIELD_OFFSET)
1862ISOLATE_INIT_ARRAY_LIST(ISOLATE_FIELD_OFFSET)
1863#undef ISOLATE_FIELD_OFFSET
1864#endif
1865
1866} } // namespace v8::internal