blob: 6e696e71be29e055620758ae799a0ab12aa61077 [file] [log] [blame]
ager@chromium.org71daaf62009-04-01 07:22:49 +00001// Copyright 2009 the V8 project authors. All rights reserved.
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +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 "v8.h"
29
30#include "accessors.h"
31#include "api.h"
32#include "bootstrapper.h"
33#include "codegen-inl.h"
kasperl@chromium.orgb9123622008-09-17 14:05:56 +000034#include "compilation-cache.h"
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000035#include "debug.h"
christian.plesner.hansen@gmail.com2bc58ef2009-09-22 10:00:30 +000036#include "heap-profiler.h"
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000037#include "global-handles.h"
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000038#include "mark-compact.h"
39#include "natives.h"
ager@chromium.orgea4f62e2010-08-16 16:28:43 +000040#include "objects-visiting.h"
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000041#include "scanner.h"
42#include "scopeinfo.h"
ager@chromium.org3811b432009-10-28 14:53:37 +000043#include "snapshot.h"
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000044#include "v8threads.h"
ricow@chromium.orgc9c80822010-04-21 08:22:37 +000045#if V8_TARGET_ARCH_ARM && !V8_INTERPRETED_REGEXP
ager@chromium.org18ad94b2009-09-02 08:22:29 +000046#include "regexp-macro-assembler.h"
ager@chromium.org3811b432009-10-28 14:53:37 +000047#include "arm/regexp-macro-assembler-arm.h"
ager@chromium.org18ad94b2009-09-02 08:22:29 +000048#endif
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000049
ager@chromium.orgce5e87b2010-03-10 10:24:18 +000050
kasperl@chromium.org71affb52009-05-26 05:44:31 +000051namespace v8 {
52namespace internal {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000053
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000054
ager@chromium.org3b45ab52009-03-19 22:21:34 +000055String* Heap::hidden_symbol_;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +000056Object* Heap::roots_[Heap::kRootListLength];
57
ager@chromium.org3b45ab52009-03-19 22:21:34 +000058
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +000059NewSpace Heap::new_space_;
ager@chromium.org9258b6b2008-09-11 09:11:10 +000060OldSpace* Heap::old_pointer_space_ = NULL;
61OldSpace* Heap::old_data_space_ = NULL;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000062OldSpace* Heap::code_space_ = NULL;
63MapSpace* Heap::map_space_ = NULL;
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +000064CellSpace* Heap::cell_space_ = NULL;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000065LargeObjectSpace* Heap::lo_space_ = NULL;
66
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +000067static const int kMinimumPromotionLimit = 2*MB;
68static const int kMinimumAllocationLimit = 8*MB;
69
70int Heap::old_gen_promotion_limit_ = kMinimumPromotionLimit;
71int Heap::old_gen_allocation_limit_ = kMinimumAllocationLimit;
72
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000073int Heap::old_gen_exhausted_ = false;
74
kasper.lund7276f142008-07-30 08:49:36 +000075int Heap::amount_of_external_allocated_memory_ = 0;
76int Heap::amount_of_external_allocated_memory_at_last_global_gc_ = 0;
77
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000078// semispace_size_ should be a power of 2 and old_generation_size_ should be
79// a multiple of Page::kPageSize.
kasperl@chromium.orge959c182009-07-27 08:59:04 +000080#if defined(ANDROID)
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +000081int Heap::max_semispace_size_ = 2*MB;
82int Heap::max_old_generation_size_ = 192*MB;
ager@chromium.orgeadaf222009-06-16 09:43:10 +000083int Heap::initial_semispace_size_ = 128*KB;
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +000084size_t Heap::code_range_size_ = 0;
sgjesse@chromium.orgc81c8942009-08-21 10:54:26 +000085#elif defined(V8_TARGET_ARCH_X64)
ager@chromium.org3811b432009-10-28 14:53:37 +000086int Heap::max_semispace_size_ = 16*MB;
87int Heap::max_old_generation_size_ = 1*GB;
sgjesse@chromium.org911335c2009-08-19 12:59:44 +000088int Heap::initial_semispace_size_ = 1*MB;
sgjesse@chromium.org152a0b02009-10-07 13:50:16 +000089size_t Heap::code_range_size_ = 512*MB;
ager@chromium.orgeadaf222009-06-16 09:43:10 +000090#else
ager@chromium.org3811b432009-10-28 14:53:37 +000091int Heap::max_semispace_size_ = 8*MB;
92int Heap::max_old_generation_size_ = 512*MB;
ager@chromium.orgeadaf222009-06-16 09:43:10 +000093int Heap::initial_semispace_size_ = 512*KB;
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +000094size_t Heap::code_range_size_ = 0;
ager@chromium.orgeadaf222009-06-16 09:43:10 +000095#endif
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +000096
ager@chromium.org3811b432009-10-28 14:53:37 +000097// The snapshot semispace size will be the default semispace size if
98// snapshotting is used and will be the requested semispace size as
99// set up by ConfigureHeap otherwise.
100int Heap::reserved_semispace_size_ = Heap::max_semispace_size_;
101
kmillikin@chromium.org5d8f0e62010-03-24 08:21:20 +0000102List<Heap::GCPrologueCallbackPair> Heap::gc_prologue_callbacks_;
103List<Heap::GCEpilogueCallbackPair> Heap::gc_epilogue_callbacks_;
104
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000105GCCallback Heap::global_gc_prologue_callback_ = NULL;
106GCCallback Heap::global_gc_epilogue_callback_ = NULL;
107
108// Variables set based on semispace_size_ and old_generation_size_ in
109// ConfigureHeap.
ager@chromium.org3811b432009-10-28 14:53:37 +0000110
111// Will be 4 * reserved_semispace_size_ to ensure that young
112// generation can be aligned to its size.
ager@chromium.orgeadaf222009-06-16 09:43:10 +0000113int Heap::survived_since_last_expansion_ = 0;
kasperl@chromium.orge959c182009-07-27 08:59:04 +0000114int Heap::external_allocation_limit_ = 0;
ager@chromium.orgeadaf222009-06-16 09:43:10 +0000115
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000116Heap::HeapState Heap::gc_state_ = NOT_IN_GC;
117
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000118int Heap::mc_count_ = 0;
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +0000119int Heap::ms_count_ = 0;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000120int Heap::gc_count_ = 0;
121
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +0000122GCTracer* Heap::tracer_ = NULL;
123
kmillikin@chromium.org5d8f0e62010-03-24 08:21:20 +0000124int Heap::unflattened_strings_length_ = 0;
fschneider@chromium.org086aac62010-03-17 13:18:24 +0000125
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +0000126int Heap::always_allocate_scope_depth_ = 0;
ager@chromium.org3811b432009-10-28 14:53:37 +0000127int Heap::linear_allocation_scope_depth_ = 0;
kasperl@chromium.org8b2bb262010-03-01 09:46:28 +0000128int Heap::contexts_disposed_ = 0;
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +0000129
fschneider@chromium.org40b9da32010-06-28 11:29:21 +0000130int Heap::young_survivors_after_last_gc_ = 0;
131int Heap::high_survival_rate_period_length_ = 0;
132double Heap::survival_rate_ = 0;
133Heap::SurvivalRateTrend Heap::previous_survival_rate_trend_ = Heap::STABLE;
134Heap::SurvivalRateTrend Heap::survival_rate_trend_ = Heap::STABLE;
135
kasper.lund7276f142008-07-30 08:49:36 +0000136#ifdef DEBUG
137bool Heap::allocation_allowed_ = true;
138
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000139int Heap::allocation_timeout_ = 0;
140bool Heap::disallow_allocation_failure_ = false;
141#endif // DEBUG
142
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +0000143int GCTracer::alive_after_last_gc_ = 0;
144double GCTracer::last_gc_end_timestamp_ = 0.0;
145int GCTracer::max_gc_pause_ = 0;
146int GCTracer::max_alive_after_gc_ = 0;
147int GCTracer::min_in_mutator_ = kMaxInt;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000148
149int Heap::Capacity() {
150 if (!HasBeenSetup()) return 0;
151
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000152 return new_space_.Capacity() +
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000153 old_pointer_space_->Capacity() +
154 old_data_space_->Capacity() +
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000155 code_space_->Capacity() +
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +0000156 map_space_->Capacity() +
157 cell_space_->Capacity();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000158}
159
160
ager@chromium.org3811b432009-10-28 14:53:37 +0000161int Heap::CommittedMemory() {
162 if (!HasBeenSetup()) return 0;
163
164 return new_space_.CommittedMemory() +
165 old_pointer_space_->CommittedMemory() +
166 old_data_space_->CommittedMemory() +
167 code_space_->CommittedMemory() +
168 map_space_->CommittedMemory() +
169 cell_space_->CommittedMemory() +
170 lo_space_->Size();
171}
172
173
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000174int Heap::Available() {
175 if (!HasBeenSetup()) return 0;
176
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000177 return new_space_.Available() +
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000178 old_pointer_space_->Available() +
179 old_data_space_->Available() +
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000180 code_space_->Available() +
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +0000181 map_space_->Available() +
182 cell_space_->Available();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000183}
184
185
186bool Heap::HasBeenSetup() {
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000187 return old_pointer_space_ != NULL &&
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000188 old_data_space_ != NULL &&
189 code_space_ != NULL &&
190 map_space_ != NULL &&
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +0000191 cell_space_ != NULL &&
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000192 lo_space_ != NULL;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000193}
194
195
196GarbageCollector Heap::SelectGarbageCollector(AllocationSpace space) {
197 // Is global GC requested?
198 if (space != NEW_SPACE || FLAG_gc_global) {
199 Counters::gc_compactor_caused_by_request.Increment();
200 return MARK_COMPACTOR;
201 }
202
203 // Is enough data promoted to justify a global GC?
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +0000204 if (OldGenerationPromotionLimitReached()) {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000205 Counters::gc_compactor_caused_by_promoted_data.Increment();
206 return MARK_COMPACTOR;
207 }
208
209 // Have allocation in OLD and LO failed?
210 if (old_gen_exhausted_) {
211 Counters::gc_compactor_caused_by_oldspace_exhaustion.Increment();
212 return MARK_COMPACTOR;
213 }
214
215 // Is there enough space left in OLD to guarantee that a scavenge can
216 // succeed?
217 //
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000218 // Note that MemoryAllocator->MaxAvailable() undercounts the memory available
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000219 // for object promotion. It counts only the bytes that the memory
220 // allocator has not yet allocated from the OS and assigned to any space,
221 // and does not count available bytes already in the old space or code
222 // space. Undercounting is safe---we may get an unrequested full GC when
223 // a scavenge would have succeeded.
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000224 if (MemoryAllocator::MaxAvailable() <= new_space_.Size()) {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000225 Counters::gc_compactor_caused_by_oldspace_exhaustion.Increment();
226 return MARK_COMPACTOR;
227 }
228
229 // Default
230 return SCAVENGER;
231}
232
233
234// TODO(1238405): Combine the infrastructure for --heap-stats and
235// --log-gc to avoid the complicated preprocessor and flag testing.
236#if defined(DEBUG) || defined(ENABLE_LOGGING_AND_PROFILING)
237void Heap::ReportStatisticsBeforeGC() {
238 // Heap::ReportHeapStatistics will also log NewSpace statistics when
239 // compiled with ENABLE_LOGGING_AND_PROFILING and --log-gc is set. The
240 // following logic is used to avoid double logging.
241#if defined(DEBUG) && defined(ENABLE_LOGGING_AND_PROFILING)
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000242 if (FLAG_heap_stats || FLAG_log_gc) new_space_.CollectStatistics();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000243 if (FLAG_heap_stats) {
244 ReportHeapStatistics("Before GC");
245 } else if (FLAG_log_gc) {
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000246 new_space_.ReportStatistics();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000247 }
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000248 if (FLAG_heap_stats || FLAG_log_gc) new_space_.ClearHistograms();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000249#elif defined(DEBUG)
250 if (FLAG_heap_stats) {
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000251 new_space_.CollectStatistics();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000252 ReportHeapStatistics("Before GC");
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000253 new_space_.ClearHistograms();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000254 }
255#elif defined(ENABLE_LOGGING_AND_PROFILING)
256 if (FLAG_log_gc) {
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000257 new_space_.CollectStatistics();
258 new_space_.ReportStatistics();
259 new_space_.ClearHistograms();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000260 }
261#endif
262}
263
264
kasperl@chromium.orge959c182009-07-27 08:59:04 +0000265#if defined(ENABLE_LOGGING_AND_PROFILING)
266void Heap::PrintShortHeapStatistics() {
267 if (!FLAG_trace_gc_verbose) return;
268 PrintF("Memory allocator, used: %8d, available: %8d\n",
ager@chromium.org3811b432009-10-28 14:53:37 +0000269 MemoryAllocator::Size(),
270 MemoryAllocator::Available());
kasperl@chromium.orge959c182009-07-27 08:59:04 +0000271 PrintF("New space, used: %8d, available: %8d\n",
ager@chromium.org3811b432009-10-28 14:53:37 +0000272 Heap::new_space_.Size(),
273 new_space_.Available());
274 PrintF("Old pointers, used: %8d, available: %8d, waste: %8d\n",
275 old_pointer_space_->Size(),
276 old_pointer_space_->Available(),
277 old_pointer_space_->Waste());
278 PrintF("Old data space, used: %8d, available: %8d, waste: %8d\n",
279 old_data_space_->Size(),
280 old_data_space_->Available(),
281 old_data_space_->Waste());
282 PrintF("Code space, used: %8d, available: %8d, waste: %8d\n",
283 code_space_->Size(),
284 code_space_->Available(),
285 code_space_->Waste());
286 PrintF("Map space, used: %8d, available: %8d, waste: %8d\n",
287 map_space_->Size(),
288 map_space_->Available(),
289 map_space_->Waste());
290 PrintF("Cell space, used: %8d, available: %8d, waste: %8d\n",
291 cell_space_->Size(),
292 cell_space_->Available(),
293 cell_space_->Waste());
kasperl@chromium.orge959c182009-07-27 08:59:04 +0000294 PrintF("Large object space, used: %8d, avaialble: %8d\n",
ager@chromium.org3811b432009-10-28 14:53:37 +0000295 lo_space_->Size(),
296 lo_space_->Available());
kasperl@chromium.orge959c182009-07-27 08:59:04 +0000297}
298#endif
299
300
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000301// TODO(1238405): Combine the infrastructure for --heap-stats and
302// --log-gc to avoid the complicated preprocessor and flag testing.
303void Heap::ReportStatisticsAfterGC() {
304 // Similar to the before GC, we use some complicated logic to ensure that
305 // NewSpace statistics are logged exactly once when --log-gc is turned on.
306#if defined(DEBUG) && defined(ENABLE_LOGGING_AND_PROFILING)
307 if (FLAG_heap_stats) {
kasperl@chromium.org2abc4502009-07-02 07:00:29 +0000308 new_space_.CollectStatistics();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000309 ReportHeapStatistics("After GC");
310 } else if (FLAG_log_gc) {
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000311 new_space_.ReportStatistics();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000312 }
313#elif defined(DEBUG)
314 if (FLAG_heap_stats) ReportHeapStatistics("After GC");
315#elif defined(ENABLE_LOGGING_AND_PROFILING)
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000316 if (FLAG_log_gc) new_space_.ReportStatistics();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000317#endif
318}
319#endif // defined(DEBUG) || defined(ENABLE_LOGGING_AND_PROFILING)
320
321
322void Heap::GarbageCollectionPrologue() {
ager@chromium.org18ad94b2009-09-02 08:22:29 +0000323 TranscendentalCache::Clear();
ager@chromium.orgac091b72010-05-05 07:34:42 +0000324 ClearJSFunctionResultCaches();
kasper.lund7276f142008-07-30 08:49:36 +0000325 gc_count_++;
kmillikin@chromium.org5d8f0e62010-03-24 08:21:20 +0000326 unflattened_strings_length_ = 0;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000327#ifdef DEBUG
328 ASSERT(allocation_allowed_ && gc_state_ == NOT_IN_GC);
329 allow_allocation(false);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000330
331 if (FLAG_verify_heap) {
332 Verify();
333 }
334
335 if (FLAG_gc_verbose) Print();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000336#endif
337
338#if defined(DEBUG) || defined(ENABLE_LOGGING_AND_PROFILING)
339 ReportStatisticsBeforeGC();
340#endif
341}
342
343int Heap::SizeOfObjects() {
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000344 int total = 0;
345 AllSpaces spaces;
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000346 for (Space* space = spaces.next(); space != NULL; space = spaces.next()) {
sgjesse@chromium.org911335c2009-08-19 12:59:44 +0000347 total += space->Size();
348 }
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000349 return total;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000350}
351
352void Heap::GarbageCollectionEpilogue() {
353#ifdef DEBUG
354 allow_allocation(true);
355 ZapFromSpace();
356
357 if (FLAG_verify_heap) {
358 Verify();
359 }
360
361 if (FLAG_print_global_handles) GlobalHandles::Print();
362 if (FLAG_print_handles) PrintHandles();
363 if (FLAG_gc_verbose) Print();
364 if (FLAG_code_stats) ReportCodeStatistics("After GC");
365#endif
366
367 Counters::alive_after_last_gc.Set(SizeOfObjects());
368
kasperl@chromium.org68ac0092009-07-09 06:00:35 +0000369 Counters::symbol_table_capacity.Set(symbol_table()->Capacity());
370 Counters::number_of_symbols.Set(symbol_table()->NumberOfElements());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000371#if defined(DEBUG) || defined(ENABLE_LOGGING_AND_PROFILING)
372 ReportStatisticsAfterGC();
373#endif
kasperl@chromium.org71affb52009-05-26 05:44:31 +0000374#ifdef ENABLE_DEBUGGER_SUPPORT
375 Debug::AfterGarbageCollection();
376#endif
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000377}
378
379
sgjesse@chromium.orgc81c8942009-08-21 10:54:26 +0000380void Heap::CollectAllGarbage(bool force_compaction) {
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000381 // Since we are ignoring the return value, the exact choice of space does
382 // not matter, so long as we do not specify NEW_SPACE, which would not
383 // cause a full GC.
sgjesse@chromium.orgc81c8942009-08-21 10:54:26 +0000384 MarkCompactCollector::SetForceCompaction(force_compaction);
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000385 CollectGarbage(0, OLD_POINTER_SPACE);
sgjesse@chromium.orgc81c8942009-08-21 10:54:26 +0000386 MarkCompactCollector::SetForceCompaction(false);
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000387}
388
389
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000390bool Heap::CollectGarbage(int requested_size, AllocationSpace space) {
391 // The VM is in the GC state until exiting this function.
392 VMState state(GC);
393
394#ifdef DEBUG
395 // Reset the allocation timeout to the GC interval, but make sure to
396 // allow at least a few allocations after a collection. The reason
397 // for this is that we have a lot of allocation sequences and we
398 // assume that a garbage collection will allow the subsequent
399 // allocation attempts to go through.
400 allocation_timeout_ = Max(6, FLAG_gc_interval);
401#endif
402
403 { GCTracer tracer;
404 GarbageCollectionPrologue();
kasper.lund7276f142008-07-30 08:49:36 +0000405 // The GC count was incremented in the prologue. Tell the tracer about
406 // it.
407 tracer.set_gc_count(gc_count_);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000408
409 GarbageCollector collector = SelectGarbageCollector(space);
kasper.lund7276f142008-07-30 08:49:36 +0000410 // Tell the tracer which collector we've selected.
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000411 tracer.set_collector(collector);
412
ager@chromium.orgbb29dc92009-03-24 13:25:23 +0000413 HistogramTimer* rate = (collector == SCAVENGER)
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000414 ? &Counters::gc_scavenger
415 : &Counters::gc_compactor;
416 rate->Start();
kasper.lund7276f142008-07-30 08:49:36 +0000417 PerformGarbageCollection(space, collector, &tracer);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000418 rate->Stop();
419
420 GarbageCollectionEpilogue();
421 }
422
423
424#ifdef ENABLE_LOGGING_AND_PROFILING
425 if (FLAG_log_gc) HeapProfiler::WriteSample();
426#endif
427
428 switch (space) {
429 case NEW_SPACE:
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000430 return new_space_.Available() >= requested_size;
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000431 case OLD_POINTER_SPACE:
432 return old_pointer_space_->Available() >= requested_size;
433 case OLD_DATA_SPACE:
434 return old_data_space_->Available() >= requested_size;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000435 case CODE_SPACE:
436 return code_space_->Available() >= requested_size;
437 case MAP_SPACE:
438 return map_space_->Available() >= requested_size;
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +0000439 case CELL_SPACE:
440 return cell_space_->Available() >= requested_size;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000441 case LO_SPACE:
442 return lo_space_->Available() >= requested_size;
443 }
444 return false;
445}
446
447
kasper.lund7276f142008-07-30 08:49:36 +0000448void Heap::PerformScavenge() {
449 GCTracer tracer;
450 PerformGarbageCollection(NEW_SPACE, SCAVENGER, &tracer);
451}
452
453
kasperl@chromium.orgd1e3e722009-04-14 13:38:25 +0000454#ifdef DEBUG
kasperl@chromium.org416c5b02009-04-14 14:03:52 +0000455// Helper class for verifying the symbol table.
456class SymbolTableVerifier : public ObjectVisitor {
457 public:
458 SymbolTableVerifier() { }
459 void VisitPointers(Object** start, Object** end) {
460 // Visit all HeapObject pointers in [start, end).
461 for (Object** p = start; p < end; p++) {
462 if ((*p)->IsHeapObject()) {
463 // Check that the symbol is actually a symbol.
464 ASSERT((*p)->IsNull() || (*p)->IsUndefined() || (*p)->IsSymbol());
kasperl@chromium.orgd1e3e722009-04-14 13:38:25 +0000465 }
466 }
kasperl@chromium.org416c5b02009-04-14 14:03:52 +0000467 }
468};
469#endif // DEBUG
kasperl@chromium.orgd1e3e722009-04-14 13:38:25 +0000470
kasperl@chromium.org416c5b02009-04-14 14:03:52 +0000471
472static void VerifySymbolTable() {
473#ifdef DEBUG
kasperl@chromium.orgd1e3e722009-04-14 13:38:25 +0000474 SymbolTableVerifier verifier;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +0000475 Heap::symbol_table()->IterateElements(&verifier);
kasperl@chromium.orgd1e3e722009-04-14 13:38:25 +0000476#endif // DEBUG
477}
478
479
fschneider@chromium.org0c20e672010-01-14 15:28:53 +0000480void Heap::ReserveSpace(
481 int new_space_size,
482 int pointer_space_size,
483 int data_space_size,
484 int code_space_size,
485 int map_space_size,
486 int cell_space_size,
487 int large_object_size) {
488 NewSpace* new_space = Heap::new_space();
489 PagedSpace* old_pointer_space = Heap::old_pointer_space();
490 PagedSpace* old_data_space = Heap::old_data_space();
491 PagedSpace* code_space = Heap::code_space();
492 PagedSpace* map_space = Heap::map_space();
493 PagedSpace* cell_space = Heap::cell_space();
494 LargeObjectSpace* lo_space = Heap::lo_space();
495 bool gc_performed = true;
496 while (gc_performed) {
497 gc_performed = false;
498 if (!new_space->ReserveSpace(new_space_size)) {
499 Heap::CollectGarbage(new_space_size, NEW_SPACE);
500 gc_performed = true;
501 }
502 if (!old_pointer_space->ReserveSpace(pointer_space_size)) {
503 Heap::CollectGarbage(pointer_space_size, OLD_POINTER_SPACE);
504 gc_performed = true;
505 }
506 if (!(old_data_space->ReserveSpace(data_space_size))) {
507 Heap::CollectGarbage(data_space_size, OLD_DATA_SPACE);
508 gc_performed = true;
509 }
510 if (!(code_space->ReserveSpace(code_space_size))) {
511 Heap::CollectGarbage(code_space_size, CODE_SPACE);
512 gc_performed = true;
513 }
514 if (!(map_space->ReserveSpace(map_space_size))) {
515 Heap::CollectGarbage(map_space_size, MAP_SPACE);
516 gc_performed = true;
517 }
518 if (!(cell_space->ReserveSpace(cell_space_size))) {
519 Heap::CollectGarbage(cell_space_size, CELL_SPACE);
520 gc_performed = true;
521 }
ricow@chromium.org30ce4112010-05-31 10:38:25 +0000522 // We add a slack-factor of 2 in order to have space for a series of
523 // large-object allocations that are only just larger than the page size.
fschneider@chromium.org0c20e672010-01-14 15:28:53 +0000524 large_object_size *= 2;
525 // The ReserveSpace method on the large object space checks how much
526 // we can expand the old generation. This includes expansion caused by
527 // allocation in the other spaces.
528 large_object_size += cell_space_size + map_space_size + code_space_size +
529 data_space_size + pointer_space_size;
530 if (!(lo_space->ReserveSpace(large_object_size))) {
531 Heap::CollectGarbage(large_object_size, LO_SPACE);
532 gc_performed = true;
533 }
534 }
535}
536
537
ager@chromium.orgadd848f2009-08-13 12:44:13 +0000538void Heap::EnsureFromSpaceIsCommitted() {
539 if (new_space_.CommitFromSpaceIfNeeded()) return;
540
541 // Committing memory to from space failed.
542 // Try shrinking and try again.
543 Shrink();
544 if (new_space_.CommitFromSpaceIfNeeded()) return;
545
546 // Committing memory to from space failed again.
547 // Memory is exhausted and we will die.
548 V8::FatalProcessOutOfMemory("Committing semi space failed.");
549}
550
551
ager@chromium.orgac091b72010-05-05 07:34:42 +0000552class ClearThreadJSFunctionResultCachesVisitor: public ThreadVisitor {
553 virtual void VisitThread(ThreadLocalTop* top) {
554 Context* context = top->context_;
555 if (context == NULL) return;
556
557 FixedArray* caches =
558 context->global()->global_context()->jsfunction_result_caches();
559 int length = caches->length();
560 for (int i = 0; i < length; i++) {
561 JSFunctionResultCache::cast(caches->get(i))->Clear();
562 }
563 }
564};
565
566
567void Heap::ClearJSFunctionResultCaches() {
568 if (Bootstrapper::IsActive()) return;
569 ClearThreadJSFunctionResultCachesVisitor visitor;
lrn@chromium.org1af7e1b2010-06-07 11:12:01 +0000570 ThreadManager::IterateArchivedThreads(&visitor);
ager@chromium.orgac091b72010-05-05 07:34:42 +0000571}
572
573
ricow@chromium.org65fae842010-08-25 15:26:24 +0000574class ClearThreadNormalizedMapCachesVisitor: public ThreadVisitor {
575 virtual void VisitThread(ThreadLocalTop* top) {
576 Context* context = top->context_;
577 if (context == NULL) return;
578 context->global()->global_context()->normalized_map_cache()->Clear();
579 }
580};
581
582
583void Heap::ClearNormalizedMapCaches() {
584 if (Bootstrapper::IsActive()) return;
585 ClearThreadNormalizedMapCachesVisitor visitor;
586 ThreadManager::IterateArchivedThreads(&visitor);
587}
588
589
ricow@chromium.org30ce4112010-05-31 10:38:25 +0000590#ifdef DEBUG
591
592enum PageWatermarkValidity {
593 ALL_VALID,
594 ALL_INVALID
595};
596
597static void VerifyPageWatermarkValidity(PagedSpace* space,
598 PageWatermarkValidity validity) {
599 PageIterator it(space, PageIterator::PAGES_IN_USE);
600 bool expected_value = (validity == ALL_VALID);
601 while (it.has_next()) {
602 Page* page = it.next();
603 ASSERT(page->IsWatermarkValid() == expected_value);
604 }
605}
606#endif
607
fschneider@chromium.org40b9da32010-06-28 11:29:21 +0000608void Heap::UpdateSurvivalRateTrend(int start_new_space_size) {
609 double survival_rate =
610 (static_cast<double>(young_survivors_after_last_gc_) * 100) /
611 start_new_space_size;
612
613 if (survival_rate > kYoungSurvivalRateThreshold) {
614 high_survival_rate_period_length_++;
615 } else {
616 high_survival_rate_period_length_ = 0;
617 }
618
619 double survival_rate_diff = survival_rate_ - survival_rate;
620
621 if (survival_rate_diff > kYoungSurvivalRateAllowedDeviation) {
622 set_survival_rate_trend(DECREASING);
623 } else if (survival_rate_diff < -kYoungSurvivalRateAllowedDeviation) {
624 set_survival_rate_trend(INCREASING);
625 } else {
626 set_survival_rate_trend(STABLE);
627 }
628
629 survival_rate_ = survival_rate;
630}
ricow@chromium.org30ce4112010-05-31 10:38:25 +0000631
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000632void Heap::PerformGarbageCollection(AllocationSpace space,
kasper.lund7276f142008-07-30 08:49:36 +0000633 GarbageCollector collector,
634 GCTracer* tracer) {
kasperl@chromium.orgd1e3e722009-04-14 13:38:25 +0000635 VerifySymbolTable();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000636 if (collector == MARK_COMPACTOR && global_gc_prologue_callback_) {
637 ASSERT(!allocation_allowed_);
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +0000638 GCTracer::Scope scope(tracer, GCTracer::Scope::EXTERNAL);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000639 global_gc_prologue_callback_();
640 }
kmillikin@chromium.org5d8f0e62010-03-24 08:21:20 +0000641
642 GCType gc_type =
643 collector == MARK_COMPACTOR ? kGCTypeMarkSweepCompact : kGCTypeScavenge;
644
645 for (int i = 0; i < gc_prologue_callbacks_.length(); ++i) {
646 if (gc_type & gc_prologue_callbacks_[i].gc_type) {
647 gc_prologue_callbacks_[i].callback(gc_type, kNoGCCallbackFlags);
648 }
649 }
650
ager@chromium.orgadd848f2009-08-13 12:44:13 +0000651 EnsureFromSpaceIsCommitted();
ager@chromium.orgce5e87b2010-03-10 10:24:18 +0000652
fschneider@chromium.org40b9da32010-06-28 11:29:21 +0000653 int start_new_space_size = Heap::new_space()->Size();
654
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000655 if (collector == MARK_COMPACTOR) {
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +0000656 // Perform mark-sweep with optional compaction.
kasper.lund7276f142008-07-30 08:49:36 +0000657 MarkCompact(tracer);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000658
fschneider@chromium.org40b9da32010-06-28 11:29:21 +0000659 bool high_survival_rate_during_scavenges = IsHighSurvivalRate() &&
660 IsStableOrIncreasingSurvivalTrend();
661
662 UpdateSurvivalRateTrend(start_new_space_size);
663
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +0000664 int old_gen_size = PromotedSpaceSize();
665 old_gen_promotion_limit_ =
666 old_gen_size + Max(kMinimumPromotionLimit, old_gen_size / 3);
667 old_gen_allocation_limit_ =
ager@chromium.orgeadaf222009-06-16 09:43:10 +0000668 old_gen_size + Max(kMinimumAllocationLimit, old_gen_size / 2);
fschneider@chromium.org40b9da32010-06-28 11:29:21 +0000669
670 if (high_survival_rate_during_scavenges &&
671 IsStableOrIncreasingSurvivalTrend()) {
672 // Stable high survival rates of young objects both during partial and
673 // full collection indicate that mutator is either building or modifying
674 // a structure with a long lifetime.
675 // In this case we aggressively raise old generation memory limits to
676 // postpone subsequent mark-sweep collection and thus trade memory
677 // space for the mutation speed.
678 old_gen_promotion_limit_ *= 2;
679 old_gen_allocation_limit_ *= 2;
680 }
681
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000682 old_gen_exhausted_ = false;
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +0000683 } else {
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +0000684 tracer_ = tracer;
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +0000685 Scavenge();
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +0000686 tracer_ = NULL;
fschneider@chromium.org40b9da32010-06-28 11:29:21 +0000687
688 UpdateSurvivalRateTrend(start_new_space_size);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000689 }
ager@chromium.org439e85a2009-08-26 13:15:29 +0000690
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000691 Counters::objs_since_last_young.Set(0);
692
ager@chromium.org3811b432009-10-28 14:53:37 +0000693 if (collector == MARK_COMPACTOR) {
694 DisableAssertNoAllocation allow_allocation;
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +0000695 GCTracer::Scope scope(tracer, GCTracer::Scope::EXTERNAL);
ager@chromium.org3811b432009-10-28 14:53:37 +0000696 GlobalHandles::PostGarbageCollectionProcessing();
697 }
698
699 // Update relocatables.
700 Relocatable::PostGarbageCollectionProcessing();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000701
kasper.lund7276f142008-07-30 08:49:36 +0000702 if (collector == MARK_COMPACTOR) {
703 // Register the amount of external allocated memory.
704 amount_of_external_allocated_memory_at_last_global_gc_ =
705 amount_of_external_allocated_memory_;
706 }
707
kmillikin@chromium.org5d8f0e62010-03-24 08:21:20 +0000708 GCCallbackFlags callback_flags = tracer->is_compacting()
709 ? kGCCallbackFlagCompacted
710 : kNoGCCallbackFlags;
711 for (int i = 0; i < gc_epilogue_callbacks_.length(); ++i) {
712 if (gc_type & gc_epilogue_callbacks_[i].gc_type) {
713 gc_epilogue_callbacks_[i].callback(gc_type, callback_flags);
714 }
715 }
716
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000717 if (collector == MARK_COMPACTOR && global_gc_epilogue_callback_) {
718 ASSERT(!allocation_allowed_);
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +0000719 GCTracer::Scope scope(tracer, GCTracer::Scope::EXTERNAL);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000720 global_gc_epilogue_callback_();
721 }
kasperl@chromium.orgd1e3e722009-04-14 13:38:25 +0000722 VerifySymbolTable();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000723}
724
725
kasper.lund7276f142008-07-30 08:49:36 +0000726void Heap::MarkCompact(GCTracer* tracer) {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000727 gc_state_ = MARK_COMPACT;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000728 LOG(ResourceEvent("markcompact", "begin"));
729
kasperl@chromium.org061ef742009-02-27 12:16:20 +0000730 MarkCompactCollector::Prepare(tracer);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000731
kasperl@chromium.org061ef742009-02-27 12:16:20 +0000732 bool is_compacting = MarkCompactCollector::IsCompacting();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000733
vegorov@chromium.org2356e6f2010-06-09 09:38:56 +0000734 if (is_compacting) {
735 mc_count_++;
736 } else {
737 ms_count_++;
738 }
739 tracer->set_full_gc_count(mc_count_ + ms_count_);
740
kasperl@chromium.org061ef742009-02-27 12:16:20 +0000741 MarkCompactPrologue(is_compacting);
742
743 MarkCompactCollector::CollectGarbage();
744
745 MarkCompactEpilogue(is_compacting);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000746
747 LOG(ResourceEvent("markcompact", "end"));
748
749 gc_state_ = NOT_IN_GC;
750
751 Shrink();
752
753 Counters::objs_since_last_full.Set(0);
kasperl@chromium.org8b2bb262010-03-01 09:46:28 +0000754
755 contexts_disposed_ = 0;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000756}
757
758
kasperl@chromium.org061ef742009-02-27 12:16:20 +0000759void Heap::MarkCompactPrologue(bool is_compacting) {
760 // At any old GC clear the keyed lookup cache to enable collection of unused
761 // maps.
ager@chromium.org5aa501c2009-06-23 07:57:28 +0000762 KeyedLookupCache::Clear();
763 ContextSlotCache::Clear();
764 DescriptorLookupCache::Clear();
kasperl@chromium.org061ef742009-02-27 12:16:20 +0000765
kasperl@chromium.orgb9123622008-09-17 14:05:56 +0000766 CompilationCache::MarkCompactPrologue();
kasperl@chromium.org061ef742009-02-27 12:16:20 +0000767
768 Top::MarkCompactPrologue(is_compacting);
769 ThreadManager::MarkCompactPrologue(is_compacting);
fschneider@chromium.org0c20e672010-01-14 15:28:53 +0000770
sgjesse@chromium.org720dc0b2010-05-10 09:25:39 +0000771 CompletelyClearInstanceofCache();
772
fschneider@chromium.org0c20e672010-01-14 15:28:53 +0000773 if (is_compacting) FlushNumberStringCache();
ricow@chromium.org65fae842010-08-25 15:26:24 +0000774
775 ClearNormalizedMapCaches();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000776}
777
778
kasperl@chromium.org061ef742009-02-27 12:16:20 +0000779void Heap::MarkCompactEpilogue(bool is_compacting) {
780 Top::MarkCompactEpilogue(is_compacting);
781 ThreadManager::MarkCompactEpilogue(is_compacting);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000782}
783
784
785Object* Heap::FindCodeObject(Address a) {
786 Object* obj = code_space_->FindObject(a);
787 if (obj->IsFailure()) {
788 obj = lo_space_->FindObject(a);
789 }
kasper.lund7276f142008-07-30 08:49:36 +0000790 ASSERT(!obj->IsFailure());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000791 return obj;
792}
793
794
795// Helper class for copying HeapObjects
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000796class ScavengeVisitor: public ObjectVisitor {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000797 public:
798
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000799 void VisitPointer(Object** p) { ScavengePointer(p); }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000800
801 void VisitPointers(Object** start, Object** end) {
802 // Copy all HeapObject pointers in [start, end)
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000803 for (Object** p = start; p < end; p++) ScavengePointer(p);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000804 }
805
806 private:
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000807 void ScavengePointer(Object** p) {
808 Object* object = *p;
809 if (!Heap::InNewSpace(object)) return;
810 Heap::ScavengeObject(reinterpret_cast<HeapObject**>(p),
811 reinterpret_cast<HeapObject*>(object));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000812 }
813};
814
815
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +0000816// A queue of objects promoted during scavenge. Each object is accompanied
817// by it's size to avoid dereferencing a map pointer for scanning.
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000818class PromotionQueue {
819 public:
820 void Initialize(Address start_address) {
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +0000821 front_ = rear_ = reinterpret_cast<intptr_t*>(start_address);
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000822 }
823
824 bool is_empty() { return front_ <= rear_; }
825
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +0000826 void insert(HeapObject* target, int size) {
827 *(--rear_) = reinterpret_cast<intptr_t>(target);
828 *(--rear_) = size;
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000829 // Assert no overflow into live objects.
830 ASSERT(reinterpret_cast<Address>(rear_) >= Heap::new_space()->top());
831 }
832
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +0000833 void remove(HeapObject** target, int* size) {
834 *target = reinterpret_cast<HeapObject*>(*(--front_));
835 *size = static_cast<int>(*(--front_));
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000836 // Assert no underflow.
837 ASSERT(front_ >= rear_);
838 }
839
840 private:
841 // The front of the queue is higher in memory than the rear.
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +0000842 intptr_t* front_;
843 intptr_t* rear_;
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000844};
845
846
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000847// Shared state read by the scavenge collector and set by ScavengeObject.
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000848static PromotionQueue promotion_queue;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000849
850
851#ifdef DEBUG
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000852// Visitor class to verify pointers in code or data space do not point into
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000853// new space.
ager@chromium.org9258b6b2008-09-11 09:11:10 +0000854class VerifyNonPointerSpacePointersVisitor: public ObjectVisitor {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000855 public:
856 void VisitPointers(Object** start, Object**end) {
857 for (Object** current = start; current < end; current++) {
858 if ((*current)->IsHeapObject()) {
859 ASSERT(!Heap::InNewSpace(HeapObject::cast(*current)));
860 }
861 }
862 }
863};
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000864
865
866static void VerifyNonPointerSpacePointers() {
867 // Verify that there are no pointers to new space in spaces where we
868 // do not expect them.
869 VerifyNonPointerSpacePointersVisitor v;
870 HeapObjectIterator code_it(Heap::code_space());
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000871 for (HeapObject* object = code_it.next();
872 object != NULL; object = code_it.next())
christian.plesner.hansen@gmail.com2bc58ef2009-09-22 10:00:30 +0000873 object->Iterate(&v);
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000874
875 HeapObjectIterator data_it(Heap::old_data_space());
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000876 for (HeapObject* object = data_it.next();
877 object != NULL; object = data_it.next())
878 object->Iterate(&v);
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000879}
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000880#endif
881
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +0000882
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +0000883void Heap::CheckNewSpaceExpansionCriteria() {
884 if (new_space_.Capacity() < new_space_.MaximumCapacity() &&
885 survived_since_last_expansion_ > new_space_.Capacity()) {
886 // Grow the size of new space if there is room to grow and enough
887 // data has survived scavenge since the last expansion.
888 new_space_.Grow();
889 survived_since_last_expansion_ = 0;
890 }
891}
892
893
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000894void Heap::Scavenge() {
895#ifdef DEBUG
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000896 if (FLAG_enable_slow_asserts) VerifyNonPointerSpacePointers();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000897#endif
898
899 gc_state_ = SCAVENGE;
900
ricow@chromium.org30ce4112010-05-31 10:38:25 +0000901 Page::FlipMeaningOfInvalidatedWatermarkFlag();
902#ifdef DEBUG
903 VerifyPageWatermarkValidity(old_pointer_space_, ALL_VALID);
904 VerifyPageWatermarkValidity(map_space_, ALL_VALID);
905#endif
906
907 // We do not update an allocation watermark of the top page during linear
908 // allocation to avoid overhead. So to maintain the watermark invariant
909 // we have to manually cache the watermark and mark the top page as having an
910 // invalid watermark. This guarantees that dirty regions iteration will use a
911 // correct watermark even if a linear allocation happens.
912 old_pointer_space_->FlushTopPageWatermark();
913 map_space_->FlushTopPageWatermark();
914
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000915 // Implements Cheney's copying algorithm
916 LOG(ResourceEvent("scavenge", "begin"));
917
ager@chromium.org5aa501c2009-06-23 07:57:28 +0000918 // Clear descriptor cache.
919 DescriptorLookupCache::Clear();
920
ager@chromium.orgeadaf222009-06-16 09:43:10 +0000921 // Used for updating survived_since_last_expansion_ at function end.
922 int survived_watermark = PromotedSpaceSize();
923
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +0000924 CheckNewSpaceExpansionCriteria();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000925
926 // Flip the semispaces. After flipping, to space is empty, from space has
927 // live objects.
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000928 new_space_.Flip();
929 new_space_.ResetAllocationInfo();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000930
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000931 // We need to sweep newly copied objects which can be either in the
932 // to space or promoted to the old generation. For to-space
933 // objects, we treat the bottom of the to space as a queue. Newly
934 // copied and unswept objects lie between a 'front' mark and the
935 // allocation pointer.
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000936 //
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000937 // Promoted objects can go into various old-generation spaces, and
938 // can be allocated internally in the spaces (from the free list).
939 // We treat the top of the to space as a queue of addresses of
940 // promoted objects. The addresses of newly promoted and unswept
941 // objects lie between a 'front' mark and a 'rear' mark that is
942 // updated as a side effect of promoting an object.
943 //
944 // There is guaranteed to be enough room at the top of the to space
945 // for the addresses of promoted objects: every object promoted
946 // frees up its size in bytes from the top of the new space, and
947 // objects are at least one pointer in size.
948 Address new_space_front = new_space_.ToSpaceLow();
949 promotion_queue.Initialize(new_space_.ToSpaceHigh());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000950
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +0000951 ScavengeVisitor scavenge_visitor;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000952 // Copy roots.
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +0000953 IterateRoots(&scavenge_visitor, VISIT_ALL_IN_SCAVENGE);
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +0000954
955 // Copy objects reachable from the old generation. By definition,
956 // there are no intergenerational pointers in code or data spaces.
ricow@chromium.org30ce4112010-05-31 10:38:25 +0000957 IterateDirtyRegions(old_pointer_space_,
958 &IteratePointersInDirtyRegion,
959 &ScavengePointer,
960 WATERMARK_CAN_BE_INVALID);
961
962 IterateDirtyRegions(map_space_,
963 &IteratePointersInDirtyMapsRegion,
964 &ScavengePointer,
965 WATERMARK_CAN_BE_INVALID);
966
967 lo_space_->IterateDirtyRegions(&ScavengePointer);
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +0000968
969 // Copy objects reachable from cells by scavenging cell values directly.
970 HeapObjectIterator cell_iterator(cell_space_);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +0000971 for (HeapObject* cell = cell_iterator.next();
972 cell != NULL; cell = cell_iterator.next()) {
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +0000973 if (cell->IsJSGlobalPropertyCell()) {
974 Address value_address =
975 reinterpret_cast<Address>(cell) +
976 (JSGlobalPropertyCell::kValueOffset - kHeapObjectTag);
977 scavenge_visitor.VisitPointer(reinterpret_cast<Object**>(value_address));
978 }
979 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +0000980
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +0000981 new_space_front = DoScavenge(&scavenge_visitor, new_space_front);
982
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +0000983 UpdateNewSpaceReferencesInExternalStringTable(
984 &UpdateNewSpaceReferenceInExternalStringTableEntry);
985
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +0000986 ASSERT(new_space_front == new_space_.top());
987
988 // Set age mark.
989 new_space_.set_age_mark(new_space_.top());
990
991 // Update how much has survived scavenge.
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +0000992 IncrementYoungSurvivorsCounter(
993 (PromotedSpaceSize() - survived_watermark) + new_space_.Size());
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +0000994
995 LOG(ResourceEvent("scavenge", "end"));
996
997 gc_state_ = NOT_IN_GC;
998}
999
1000
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00001001String* Heap::UpdateNewSpaceReferenceInExternalStringTableEntry(Object** p) {
1002 MapWord first_word = HeapObject::cast(*p)->map_word();
1003
1004 if (!first_word.IsForwardingAddress()) {
1005 // Unreachable external string can be finalized.
1006 FinalizeExternalString(String::cast(*p));
1007 return NULL;
1008 }
1009
1010 // String is still reachable.
1011 return String::cast(first_word.ToForwardingAddress());
1012}
1013
1014
1015void Heap::UpdateNewSpaceReferencesInExternalStringTable(
1016 ExternalStringTableUpdaterCallback updater_func) {
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00001017 ExternalStringTable::Verify();
1018
1019 if (ExternalStringTable::new_space_strings_.is_empty()) return;
1020
1021 Object** start = &ExternalStringTable::new_space_strings_[0];
1022 Object** end = start + ExternalStringTable::new_space_strings_.length();
1023 Object** last = start;
1024
1025 for (Object** p = start; p < end; ++p) {
1026 ASSERT(Heap::InFromSpace(*p));
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00001027 String* target = updater_func(p);
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00001028
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00001029 if (target == NULL) continue;
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00001030
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00001031 ASSERT(target->IsExternalString());
1032
1033 if (Heap::InNewSpace(target)) {
1034 // String is still in new space. Update the table entry.
1035 *last = target;
1036 ++last;
1037 } else {
1038 // String got promoted. Move it to the old string list.
1039 ExternalStringTable::AddOldString(target);
1040 }
1041 }
1042
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001043 ASSERT(last <= end);
1044 ExternalStringTable::ShrinkNewStrings(static_cast<int>(last - start));
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00001045}
1046
1047
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001048class NewSpaceScavenger : public StaticNewSpaceVisitor<NewSpaceScavenger> {
1049 public:
1050 static inline void VisitPointer(Object** p) {
1051 Object* object = *p;
1052 if (!Heap::InNewSpace(object)) return;
1053 Heap::ScavengeObject(reinterpret_cast<HeapObject**>(p),
1054 reinterpret_cast<HeapObject*>(object));
1055 }
1056};
1057
1058
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00001059Address Heap::DoScavenge(ObjectVisitor* scavenge_visitor,
1060 Address new_space_front) {
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +00001061 do {
1062 ASSERT(new_space_front <= new_space_.top());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001063
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +00001064 // The addresses new_space_front and new_space_.top() define a
1065 // queue of unprocessed copied objects. Process them until the
1066 // queue is empty.
1067 while (new_space_front < new_space_.top()) {
1068 HeapObject* object = HeapObject::FromAddress(new_space_front);
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001069 new_space_front += NewSpaceScavenger::IterateBody(object->map(), object);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001070 }
1071
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +00001072 // Promote and process all the to-be-promoted objects.
1073 while (!promotion_queue.is_empty()) {
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001074 HeapObject* target;
1075 int size;
1076 promotion_queue.remove(&target, &size);
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +00001077
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001078 // Promoted object might be already partially visited
1079 // during dirty regions iteration. Thus we search specificly
1080 // for pointers to from semispace instead of looking for pointers
1081 // to new space.
ricow@chromium.org30ce4112010-05-31 10:38:25 +00001082 ASSERT(!target->IsMap());
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001083 IterateAndMarkPointersToFromSpace(target->address(),
1084 target->address() + size,
1085 &ScavengePointer);
kasperl@chromium.orgb3284ad2009-05-18 06:12:45 +00001086 }
1087
1088 // Take another spin if there are now unswept objects in new space
1089 // (there are currently no more unswept promoted objects).
1090 } while (new_space_front < new_space_.top());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001091
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00001092 return new_space_front;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001093}
1094
1095
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001096class ScavengingVisitor : public StaticVisitorBase {
1097 public:
1098 static void Initialize() {
1099 table_.Register(kVisitSeqAsciiString, &EvacuateSeqAsciiString);
1100 table_.Register(kVisitSeqTwoByteString, &EvacuateSeqTwoByteString);
1101 table_.Register(kVisitShortcutCandidate, &EvacuateShortcutCandidate);
1102 table_.Register(kVisitByteArray, &EvacuateByteArray);
1103 table_.Register(kVisitFixedArray, &EvacuateFixedArray);
1104
1105 typedef ObjectEvacuationStrategy<POINTER_OBJECT> PointerObject;
1106
1107 table_.Register(kVisitConsString,
1108 &ObjectEvacuationStrategy<POINTER_OBJECT>::
1109 VisitSpecialized<ConsString::kSize>);
1110
1111 table_.Register(kVisitSharedFunctionInfo,
1112 &ObjectEvacuationStrategy<POINTER_OBJECT>::
1113 VisitSpecialized<SharedFunctionInfo::kSize>);
1114
ricow@chromium.org0b9f8502010-08-18 07:45:01 +00001115 table_.Register(kVisitJSFunction,
1116 &ObjectEvacuationStrategy<POINTER_OBJECT>::
1117 VisitSpecialized<JSFunction::kSize>);
1118
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001119 table_.RegisterSpecializations<ObjectEvacuationStrategy<DATA_OBJECT>,
1120 kVisitDataObject,
1121 kVisitDataObjectGeneric>();
1122
1123 table_.RegisterSpecializations<ObjectEvacuationStrategy<POINTER_OBJECT>,
1124 kVisitJSObject,
1125 kVisitJSObjectGeneric>();
1126
1127 table_.RegisterSpecializations<ObjectEvacuationStrategy<POINTER_OBJECT>,
1128 kVisitStruct,
1129 kVisitStructGeneric>();
1130 }
1131
1132
1133 static inline void Scavenge(Map* map, HeapObject** slot, HeapObject* obj) {
1134 table_.GetVisitor(map)(map, slot, obj);
1135 }
1136
1137
1138 private:
1139 enum ObjectContents { DATA_OBJECT, POINTER_OBJECT };
1140 enum SizeRestriction { SMALL, UNKNOWN_SIZE };
1141
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001142#if defined(DEBUG) || defined(ENABLE_LOGGING_AND_PROFILING)
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001143 static void RecordCopiedObject(HeapObject* obj) {
1144 bool should_record = false;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001145#ifdef DEBUG
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001146 should_record = FLAG_heap_stats;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001147#endif
1148#ifdef ENABLE_LOGGING_AND_PROFILING
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001149 should_record = should_record || FLAG_log_gc;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001150#endif
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001151 if (should_record) {
1152 if (Heap::new_space()->Contains(obj)) {
1153 Heap::new_space()->RecordAllocation(obj);
1154 } else {
1155 Heap::new_space()->RecordPromotion(obj);
1156 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001157 }
1158 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001159#endif // defined(DEBUG) || defined(ENABLE_LOGGING_AND_PROFILING)
1160
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001161 // Helper function used by CopyObject to copy a source object to an
1162 // allocated target object and update the forwarding pointer in the source
1163 // object. Returns the target object.
1164 INLINE(static HeapObject* MigrateObject(HeapObject* source,
1165 HeapObject* target,
1166 int size)) {
1167 // Copy the content of source to target.
1168 Heap::CopyBlock(target->address(), source->address(), size);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001169
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001170 // Set the forwarding address.
1171 source->set_map_word(MapWord::FromForwardingAddress(target));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001172
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001173#if defined(DEBUG) || defined(ENABLE_LOGGING_AND_PROFILING)
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001174 // Update NewSpace stats if necessary.
1175 RecordCopiedObject(target);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001176#endif
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001177 HEAP_PROFILE(ObjectMoveEvent(source->address(), target->address()));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001178
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001179 return target;
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001180 }
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001181
1182
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001183 template<ObjectContents object_contents, SizeRestriction size_restriction>
1184 static inline void EvacuateObject(Map* map,
1185 HeapObject** slot,
1186 HeapObject* object,
1187 int object_size) {
1188 ASSERT((size_restriction != SMALL) ||
1189 (object_size <= Page::kMaxHeapObjectSize));
1190 ASSERT(object->Size() == object_size);
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001191
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001192 if (Heap::ShouldBePromoted(object->address(), object_size)) {
1193 Object* result;
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001194
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001195 if ((size_restriction != SMALL) &&
1196 (object_size > Page::kMaxHeapObjectSize)) {
1197 result = Heap::lo_space()->AllocateRawFixedArray(object_size);
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001198 } else {
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001199 if (object_contents == DATA_OBJECT) {
1200 result = Heap::old_data_space()->AllocateRaw(object_size);
1201 } else {
1202 result = Heap::old_pointer_space()->AllocateRaw(object_size);
1203 }
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001204 }
1205
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001206 if (!result->IsFailure()) {
1207 HeapObject* target = HeapObject::cast(result);
1208 *slot = MigrateObject(object, target, object_size);
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001209
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001210 if (object_contents == POINTER_OBJECT) {
1211 promotion_queue.insert(target, object_size);
1212 }
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001213
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001214 Heap::tracer()->increment_promoted_objects_size(object_size);
1215 return;
1216 }
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001217 }
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001218 Object* result = Heap::new_space()->AllocateRaw(object_size);
1219 ASSERT(!result->IsFailure());
1220 *slot = MigrateObject(object, HeapObject::cast(result), object_size);
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001221 return;
1222 }
1223
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001224
1225 static inline void EvacuateFixedArray(Map* map,
1226 HeapObject** slot,
1227 HeapObject* object) {
1228 int object_size = FixedArray::BodyDescriptor::SizeOf(map, object);
1229 EvacuateObject<POINTER_OBJECT, UNKNOWN_SIZE>(map,
1230 slot,
1231 object,
1232 object_size);
1233 }
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001234
1235
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001236 static inline void EvacuateByteArray(Map* map,
1237 HeapObject** slot,
1238 HeapObject* object) {
1239 int object_size = reinterpret_cast<ByteArray*>(object)->ByteArraySize();
1240 EvacuateObject<DATA_OBJECT, UNKNOWN_SIZE>(map, slot, object, object_size);
1241 }
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001242
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001243
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001244 static inline void EvacuateSeqAsciiString(Map* map,
1245 HeapObject** slot,
1246 HeapObject* object) {
1247 int object_size = SeqAsciiString::cast(object)->
1248 SeqAsciiStringSize(map->instance_type());
1249 EvacuateObject<DATA_OBJECT, UNKNOWN_SIZE>(map, slot, object, object_size);
1250 }
1251
1252
1253 static inline void EvacuateSeqTwoByteString(Map* map,
1254 HeapObject** slot,
1255 HeapObject* object) {
1256 int object_size = SeqTwoByteString::cast(object)->
1257 SeqTwoByteStringSize(map->instance_type());
1258 EvacuateObject<DATA_OBJECT, UNKNOWN_SIZE>(map, slot, object, object_size);
1259 }
1260
1261
1262 static inline bool IsShortcutCandidate(int type) {
1263 return ((type & kShortcutTypeMask) == kShortcutTypeTag);
1264 }
1265
1266 static inline void EvacuateShortcutCandidate(Map* map,
1267 HeapObject** slot,
1268 HeapObject* object) {
1269 ASSERT(IsShortcutCandidate(map->instance_type()));
1270
1271 if (ConsString::cast(object)->unchecked_second() == Heap::empty_string()) {
1272 HeapObject* first =
1273 HeapObject::cast(ConsString::cast(object)->unchecked_first());
1274
1275 *slot = first;
1276
1277 if (!Heap::InNewSpace(first)) {
1278 object->set_map_word(MapWord::FromForwardingAddress(first));
1279 return;
1280 }
1281
1282 MapWord first_word = first->map_word();
1283 if (first_word.IsForwardingAddress()) {
1284 HeapObject* target = first_word.ToForwardingAddress();
1285
1286 *slot = target;
1287 object->set_map_word(MapWord::FromForwardingAddress(target));
1288 return;
1289 }
1290
1291 Scavenge(first->map(), slot, first);
1292 object->set_map_word(MapWord::FromForwardingAddress(*slot));
1293 return;
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001294 }
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001295
1296 int object_size = ConsString::kSize;
1297 EvacuateObject<POINTER_OBJECT, SMALL>(map, slot, object, object_size);
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001298 }
1299
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001300 template<ObjectContents object_contents>
1301 class ObjectEvacuationStrategy {
1302 public:
1303 template<int object_size>
1304 static inline void VisitSpecialized(Map* map,
1305 HeapObject** slot,
1306 HeapObject* object) {
1307 EvacuateObject<object_contents, SMALL>(map, slot, object, object_size);
1308 }
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001309
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001310 static inline void Visit(Map* map,
1311 HeapObject** slot,
1312 HeapObject* object) {
1313 int object_size = map->instance_size();
1314 EvacuateObject<object_contents, SMALL>(map, slot, object, object_size);
1315 }
1316 };
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001317
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001318 typedef void (*Callback)(Map* map, HeapObject** slot, HeapObject* object);
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001319
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001320 static VisitorDispatchTable<Callback> table_;
1321};
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001322
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001323
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001324VisitorDispatchTable<ScavengingVisitor::Callback> ScavengingVisitor::table_;
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00001325
1326
1327void Heap::ScavengeObjectSlow(HeapObject** p, HeapObject* object) {
1328 ASSERT(InFromSpace(object));
1329 MapWord first_word = object->map_word();
1330 ASSERT(!first_word.IsForwardingAddress());
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001331 Map* map = first_word.ToMap();
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001332 ScavengingVisitor::Scavenge(map, p, object);
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00001333}
1334
1335
1336void Heap::ScavengePointer(HeapObject** p) {
1337 ScavengeObject(p, *p);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001338}
1339
1340
1341Object* Heap::AllocatePartialMap(InstanceType instance_type,
1342 int instance_size) {
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00001343 Object* result = AllocateRawMap();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001344 if (result->IsFailure()) return result;
1345
1346 // Map::cast cannot be used due to uninitialized map field.
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001347 reinterpret_cast<Map*>(result)->set_map(raw_unchecked_meta_map());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001348 reinterpret_cast<Map*>(result)->set_instance_type(instance_type);
1349 reinterpret_cast<Map*>(result)->set_instance_size(instance_size);
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00001350 reinterpret_cast<Map*>(result)->
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001351 set_visitor_id(
1352 StaticVisitorBase::GetVisitorId(instance_type, instance_size));
ager@chromium.org7c537e22008-10-16 08:43:32 +00001353 reinterpret_cast<Map*>(result)->set_inobject_properties(0);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00001354 reinterpret_cast<Map*>(result)->set_pre_allocated_property_fields(0);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001355 reinterpret_cast<Map*>(result)->set_unused_property_fields(0);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00001356 reinterpret_cast<Map*>(result)->set_bit_field(0);
1357 reinterpret_cast<Map*>(result)->set_bit_field2(0);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001358 return result;
1359}
1360
1361
1362Object* Heap::AllocateMap(InstanceType instance_type, int instance_size) {
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00001363 Object* result = AllocateRawMap();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001364 if (result->IsFailure()) return result;
1365
1366 Map* map = reinterpret_cast<Map*>(result);
1367 map->set_map(meta_map());
1368 map->set_instance_type(instance_type);
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00001369 map->set_visitor_id(
1370 StaticVisitorBase::GetVisitorId(instance_type, instance_size));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001371 map->set_prototype(null_value());
1372 map->set_constructor(null_value());
1373 map->set_instance_size(instance_size);
ager@chromium.org7c537e22008-10-16 08:43:32 +00001374 map->set_inobject_properties(0);
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00001375 map->set_pre_allocated_property_fields(0);
mads.s.ager@gmail.com9a4089a2008-09-01 08:55:01 +00001376 map->set_instance_descriptors(empty_descriptor_array());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001377 map->set_code_cache(empty_fixed_array());
1378 map->set_unused_property_fields(0);
1379 map->set_bit_field(0);
fschneider@chromium.org40b9da32010-06-28 11:29:21 +00001380 map->set_bit_field2((1 << Map::kIsExtensible) | (1 << Map::kHasFastElements));
sgjesse@chromium.org846fb742009-12-18 08:56:33 +00001381
1382 // If the map object is aligned fill the padding area with Smi 0 objects.
1383 if (Map::kPadStart < Map::kSize) {
1384 memset(reinterpret_cast<byte*>(map) + Map::kPadStart - kHeapObjectTag,
1385 0,
1386 Map::kSize - Map::kPadStart);
1387 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001388 return map;
1389}
1390
1391
ager@chromium.orgce5e87b2010-03-10 10:24:18 +00001392Object* Heap::AllocateCodeCache() {
1393 Object* result = AllocateStruct(CODE_CACHE_TYPE);
1394 if (result->IsFailure()) return result;
1395 CodeCache* code_cache = CodeCache::cast(result);
1396 code_cache->set_default_cache(empty_fixed_array());
1397 code_cache->set_normal_type_cache(undefined_value());
1398 return code_cache;
1399}
1400
1401
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001402const Heap::StringTypeTable Heap::string_type_table[] = {
1403#define STRING_TYPE_ELEMENT(type, size, name, camel_name) \
1404 {type, size, k##camel_name##MapRootIndex},
1405 STRING_TYPE_LIST(STRING_TYPE_ELEMENT)
1406#undef STRING_TYPE_ELEMENT
1407};
1408
1409
1410const Heap::ConstantSymbolTable Heap::constant_symbol_table[] = {
1411#define CONSTANT_SYMBOL_ELEMENT(name, contents) \
1412 {contents, k##name##RootIndex},
1413 SYMBOL_LIST(CONSTANT_SYMBOL_ELEMENT)
1414#undef CONSTANT_SYMBOL_ELEMENT
1415};
1416
1417
1418const Heap::StructTable Heap::struct_table[] = {
1419#define STRUCT_TABLE_ELEMENT(NAME, Name, name) \
1420 { NAME##_TYPE, Name::kSize, k##Name##MapRootIndex },
1421 STRUCT_LIST(STRUCT_TABLE_ELEMENT)
1422#undef STRUCT_TABLE_ELEMENT
1423};
1424
1425
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001426bool Heap::CreateInitialMaps() {
1427 Object* obj = AllocatePartialMap(MAP_TYPE, Map::kSize);
1428 if (obj->IsFailure()) return false;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001429 // Map::cast cannot be used due to uninitialized map field.
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001430 Map* new_meta_map = reinterpret_cast<Map*>(obj);
1431 set_meta_map(new_meta_map);
1432 new_meta_map->set_map(new_meta_map);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001433
erik.corry@gmail.com145eff52010-08-23 11:36:18 +00001434 obj = AllocatePartialMap(FIXED_ARRAY_TYPE, kVariableSizeSentinel);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001435 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001436 set_fixed_array_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001437
1438 obj = AllocatePartialMap(ODDBALL_TYPE, Oddball::kSize);
1439 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001440 set_oddball_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001441
kmillikin@chromium.org5d8f0e62010-03-24 08:21:20 +00001442 // Allocate the empty array.
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001443 obj = AllocateEmptyFixedArray();
1444 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001445 set_empty_fixed_array(FixedArray::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001446
ager@chromium.org9258b6b2008-09-11 09:11:10 +00001447 obj = Allocate(oddball_map(), OLD_DATA_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001448 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001449 set_null_value(obj);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001450
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00001451 // Allocate the empty descriptor array.
mads.s.ager@gmail.com9a4089a2008-09-01 08:55:01 +00001452 obj = AllocateEmptyFixedArray();
1453 if (obj->IsFailure()) return false;
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00001454 set_empty_descriptor_array(DescriptorArray::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001455
mads.s.ager@gmail.com9a4089a2008-09-01 08:55:01 +00001456 // Fix the instance_descriptors for the existing maps.
1457 meta_map()->set_instance_descriptors(empty_descriptor_array());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001458 meta_map()->set_code_cache(empty_fixed_array());
1459
mads.s.ager@gmail.com9a4089a2008-09-01 08:55:01 +00001460 fixed_array_map()->set_instance_descriptors(empty_descriptor_array());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001461 fixed_array_map()->set_code_cache(empty_fixed_array());
1462
mads.s.ager@gmail.com9a4089a2008-09-01 08:55:01 +00001463 oddball_map()->set_instance_descriptors(empty_descriptor_array());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001464 oddball_map()->set_code_cache(empty_fixed_array());
1465
1466 // Fix prototype object for existing maps.
1467 meta_map()->set_prototype(null_value());
1468 meta_map()->set_constructor(null_value());
1469
1470 fixed_array_map()->set_prototype(null_value());
1471 fixed_array_map()->set_constructor(null_value());
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00001472
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001473 oddball_map()->set_prototype(null_value());
1474 oddball_map()->set_constructor(null_value());
1475
erik.corry@gmail.com145eff52010-08-23 11:36:18 +00001476 obj = AllocateMap(FIXED_ARRAY_TYPE, kVariableSizeSentinel);
ricow@chromium.org0b9f8502010-08-18 07:45:01 +00001477 if (obj->IsFailure()) return false;
1478 set_fixed_cow_array_map(Map::cast(obj));
1479 ASSERT(fixed_array_map() != fixed_cow_array_map());
1480
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001481 obj = AllocateMap(HEAP_NUMBER_TYPE, HeapNumber::kSize);
1482 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001483 set_heap_number_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001484
1485 obj = AllocateMap(PROXY_TYPE, Proxy::kSize);
1486 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001487 set_proxy_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001488
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001489 for (unsigned i = 0; i < ARRAY_SIZE(string_type_table); i++) {
1490 const StringTypeTable& entry = string_type_table[i];
1491 obj = AllocateMap(entry.type, entry.size);
1492 if (obj->IsFailure()) return false;
1493 roots_[entry.index] = Map::cast(obj);
1494 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001495
erik.corry@gmail.com145eff52010-08-23 11:36:18 +00001496 obj = AllocateMap(STRING_TYPE, kVariableSizeSentinel);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001497 if (obj->IsFailure()) return false;
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00001498 set_undetectable_string_map(Map::cast(obj));
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001499 Map::cast(obj)->set_is_undetectable();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001500
erik.corry@gmail.com145eff52010-08-23 11:36:18 +00001501 obj = AllocateMap(ASCII_STRING_TYPE, kVariableSizeSentinel);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001502 if (obj->IsFailure()) return false;
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00001503 set_undetectable_ascii_string_map(Map::cast(obj));
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001504 Map::cast(obj)->set_is_undetectable();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001505
erik.corry@gmail.com145eff52010-08-23 11:36:18 +00001506 obj = AllocateMap(BYTE_ARRAY_TYPE, kVariableSizeSentinel);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001507 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001508 set_byte_array_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001509
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00001510 obj = AllocateMap(PIXEL_ARRAY_TYPE, PixelArray::kAlignedSize);
1511 if (obj->IsFailure()) return false;
1512 set_pixel_array_map(Map::cast(obj));
1513
ager@chromium.org3811b432009-10-28 14:53:37 +00001514 obj = AllocateMap(EXTERNAL_BYTE_ARRAY_TYPE,
1515 ExternalArray::kAlignedSize);
1516 if (obj->IsFailure()) return false;
1517 set_external_byte_array_map(Map::cast(obj));
1518
1519 obj = AllocateMap(EXTERNAL_UNSIGNED_BYTE_ARRAY_TYPE,
1520 ExternalArray::kAlignedSize);
1521 if (obj->IsFailure()) return false;
1522 set_external_unsigned_byte_array_map(Map::cast(obj));
1523
1524 obj = AllocateMap(EXTERNAL_SHORT_ARRAY_TYPE,
1525 ExternalArray::kAlignedSize);
1526 if (obj->IsFailure()) return false;
1527 set_external_short_array_map(Map::cast(obj));
1528
1529 obj = AllocateMap(EXTERNAL_UNSIGNED_SHORT_ARRAY_TYPE,
1530 ExternalArray::kAlignedSize);
1531 if (obj->IsFailure()) return false;
1532 set_external_unsigned_short_array_map(Map::cast(obj));
1533
1534 obj = AllocateMap(EXTERNAL_INT_ARRAY_TYPE,
1535 ExternalArray::kAlignedSize);
1536 if (obj->IsFailure()) return false;
1537 set_external_int_array_map(Map::cast(obj));
1538
1539 obj = AllocateMap(EXTERNAL_UNSIGNED_INT_ARRAY_TYPE,
1540 ExternalArray::kAlignedSize);
1541 if (obj->IsFailure()) return false;
1542 set_external_unsigned_int_array_map(Map::cast(obj));
1543
1544 obj = AllocateMap(EXTERNAL_FLOAT_ARRAY_TYPE,
1545 ExternalArray::kAlignedSize);
1546 if (obj->IsFailure()) return false;
1547 set_external_float_array_map(Map::cast(obj));
1548
erik.corry@gmail.com145eff52010-08-23 11:36:18 +00001549 obj = AllocateMap(CODE_TYPE, kVariableSizeSentinel);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001550 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001551 set_code_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001552
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00001553 obj = AllocateMap(JS_GLOBAL_PROPERTY_CELL_TYPE,
1554 JSGlobalPropertyCell::kSize);
1555 if (obj->IsFailure()) return false;
1556 set_global_property_cell_map(Map::cast(obj));
1557
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001558 obj = AllocateMap(FILLER_TYPE, kPointerSize);
1559 if (obj->IsFailure()) return false;
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00001560 set_one_pointer_filler_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001561
1562 obj = AllocateMap(FILLER_TYPE, 2 * kPointerSize);
1563 if (obj->IsFailure()) return false;
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00001564 set_two_pointer_filler_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001565
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001566 for (unsigned i = 0; i < ARRAY_SIZE(struct_table); i++) {
1567 const StructTable& entry = struct_table[i];
1568 obj = AllocateMap(entry.type, entry.size);
1569 if (obj->IsFailure()) return false;
1570 roots_[entry.index] = Map::cast(obj);
1571 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001572
erik.corry@gmail.com145eff52010-08-23 11:36:18 +00001573 obj = AllocateMap(FIXED_ARRAY_TYPE, kVariableSizeSentinel);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001574 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001575 set_hash_table_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001576
erik.corry@gmail.com145eff52010-08-23 11:36:18 +00001577 obj = AllocateMap(FIXED_ARRAY_TYPE, kVariableSizeSentinel);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001578 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001579 set_context_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001580
erik.corry@gmail.com145eff52010-08-23 11:36:18 +00001581 obj = AllocateMap(FIXED_ARRAY_TYPE, kVariableSizeSentinel);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001582 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001583 set_catch_context_map(Map::cast(obj));
christian.plesner.hansen@gmail.com37abdec2009-01-06 14:43:28 +00001584
erik.corry@gmail.com145eff52010-08-23 11:36:18 +00001585 obj = AllocateMap(FIXED_ARRAY_TYPE, kVariableSizeSentinel);
christian.plesner.hansen@gmail.com37abdec2009-01-06 14:43:28 +00001586 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001587 set_global_context_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001588
kmillikin@chromium.org5d8f0e62010-03-24 08:21:20 +00001589 obj = AllocateMap(SHARED_FUNCTION_INFO_TYPE,
1590 SharedFunctionInfo::kAlignedSize);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001591 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001592 set_shared_function_info_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001593
mads.s.ager@gmail.com9a4089a2008-09-01 08:55:01 +00001594 ASSERT(!Heap::InNewSpace(Heap::empty_fixed_array()));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001595 return true;
1596}
1597
1598
1599Object* Heap::AllocateHeapNumber(double value, PretenureFlag pretenure) {
1600 // Statically ensure that it is safe to allocate heap numbers in paged
1601 // spaces.
1602 STATIC_ASSERT(HeapNumber::kSize <= Page::kMaxHeapObjectSize);
ager@chromium.org9258b6b2008-09-11 09:11:10 +00001603 AllocationSpace space = (pretenure == TENURED) ? OLD_DATA_SPACE : NEW_SPACE;
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +00001604
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00001605 Object* result = AllocateRaw(HeapNumber::kSize, space, OLD_DATA_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001606 if (result->IsFailure()) return result;
1607
1608 HeapObject::cast(result)->set_map(heap_number_map());
1609 HeapNumber::cast(result)->set_value(value);
1610 return result;
1611}
1612
1613
1614Object* Heap::AllocateHeapNumber(double value) {
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00001615 // Use general version, if we're forced to always allocate.
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +00001616 if (always_allocate()) return AllocateHeapNumber(value, TENURED);
1617
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001618 // This version of AllocateHeapNumber is optimized for
1619 // allocation in new space.
1620 STATIC_ASSERT(HeapNumber::kSize <= Page::kMaxHeapObjectSize);
1621 ASSERT(allocation_allowed_ && gc_state_ == NOT_IN_GC);
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00001622 Object* result = new_space_.AllocateRaw(HeapNumber::kSize);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001623 if (result->IsFailure()) return result;
1624 HeapObject::cast(result)->set_map(heap_number_map());
1625 HeapNumber::cast(result)->set_value(value);
1626 return result;
1627}
1628
1629
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00001630Object* Heap::AllocateJSGlobalPropertyCell(Object* value) {
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00001631 Object* result = AllocateRawCell();
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00001632 if (result->IsFailure()) return result;
1633 HeapObject::cast(result)->set_map(global_property_cell_map());
1634 JSGlobalPropertyCell::cast(result)->set_value(value);
1635 return result;
1636}
1637
1638
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00001639Object* Heap::CreateOddball(const char* to_string,
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001640 Object* to_number) {
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00001641 Object* result = Allocate(oddball_map(), OLD_DATA_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001642 if (result->IsFailure()) return result;
1643 return Oddball::cast(result)->Initialize(to_string, to_number);
1644}
1645
1646
1647bool Heap::CreateApiObjects() {
1648 Object* obj;
1649
1650 obj = AllocateMap(JS_OBJECT_TYPE, JSObject::kHeaderSize);
1651 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001652 set_neander_map(Map::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001653
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001654 obj = Heap::AllocateJSObjectFromMap(neander_map());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001655 if (obj->IsFailure()) return false;
1656 Object* elements = AllocateFixedArray(2);
1657 if (elements->IsFailure()) return false;
1658 FixedArray::cast(elements)->set(0, Smi::FromInt(0));
1659 JSObject::cast(obj)->set_elements(FixedArray::cast(elements));
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001660 set_message_listeners(JSObject::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001661
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001662 return true;
1663}
1664
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00001665
1666void Heap::CreateCEntryStub() {
ager@chromium.orga1645e22009-09-09 19:27:10 +00001667 CEntryStub stub(1);
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001668 set_c_entry_code(*stub.GetCode());
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00001669}
1670
1671
ricow@chromium.orgc9c80822010-04-21 08:22:37 +00001672#if V8_TARGET_ARCH_ARM && !V8_INTERPRETED_REGEXP
ager@chromium.org18ad94b2009-09-02 08:22:29 +00001673void Heap::CreateRegExpCEntryStub() {
1674 RegExpCEntryStub stub;
1675 set_re_c_entry_code(*stub.GetCode());
1676}
1677#endif
1678
1679
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00001680void Heap::CreateJSEntryStub() {
1681 JSEntryStub stub;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001682 set_js_entry_code(*stub.GetCode());
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00001683}
1684
1685
1686void Heap::CreateJSConstructEntryStub() {
1687 JSConstructEntryStub stub;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001688 set_js_construct_entry_code(*stub.GetCode());
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00001689}
1690
1691
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001692void Heap::CreateFixedStubs() {
1693 // Here we create roots for fixed stubs. They are needed at GC
1694 // for cooking and uncooking (check out frames.cc).
1695 // The eliminates the need for doing dictionary lookup in the
1696 // stub cache for these stubs.
1697 HandleScope scope;
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00001698 // gcc-4.4 has problem generating correct code of following snippet:
1699 // { CEntryStub stub;
1700 // c_entry_code_ = *stub.GetCode();
1701 // }
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00001702 // { DebuggerStatementStub stub;
1703 // debugger_statement_code_ = *stub.GetCode();
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00001704 // }
1705 // To workaround the problem, make separate functions without inlining.
1706 Heap::CreateCEntryStub();
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00001707 Heap::CreateJSEntryStub();
1708 Heap::CreateJSConstructEntryStub();
ricow@chromium.orgc9c80822010-04-21 08:22:37 +00001709#if V8_TARGET_ARCH_ARM && !V8_INTERPRETED_REGEXP
ager@chromium.org18ad94b2009-09-02 08:22:29 +00001710 Heap::CreateRegExpCEntryStub();
1711#endif
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001712}
1713
1714
1715bool Heap::CreateInitialObjects() {
1716 Object* obj;
1717
1718 // The -0 value must be set before NumberFromDouble works.
1719 obj = AllocateHeapNumber(-0.0, TENURED);
1720 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001721 set_minus_zero_value(obj);
1722 ASSERT(signbit(minus_zero_value()->Number()) != 0);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001723
1724 obj = AllocateHeapNumber(OS::nan_value(), TENURED);
1725 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001726 set_nan_value(obj);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001727
ager@chromium.org9258b6b2008-09-11 09:11:10 +00001728 obj = Allocate(oddball_map(), OLD_DATA_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001729 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001730 set_undefined_value(obj);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001731 ASSERT(!InNewSpace(undefined_value()));
1732
1733 // Allocate initial symbol table.
1734 obj = SymbolTable::Allocate(kInitialSymbolTableSize);
1735 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001736 // Don't use set_symbol_table() due to asserts.
1737 roots_[kSymbolTableRootIndex] = obj;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001738
1739 // Assign the print strings for oddballs after creating symboltable.
1740 Object* symbol = LookupAsciiSymbol("undefined");
1741 if (symbol->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001742 Oddball::cast(undefined_value())->set_to_string(String::cast(symbol));
1743 Oddball::cast(undefined_value())->set_to_number(nan_value());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001744
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001745 // Allocate the null_value
1746 obj = Oddball::cast(null_value())->Initialize("null", Smi::FromInt(0));
1747 if (obj->IsFailure()) return false;
1748
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00001749 obj = CreateOddball("true", Smi::FromInt(1));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001750 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001751 set_true_value(obj);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001752
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00001753 obj = CreateOddball("false", Smi::FromInt(0));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001754 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001755 set_false_value(obj);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001756
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00001757 obj = CreateOddball("hole", Smi::FromInt(-1));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001758 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001759 set_the_hole_value(obj);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001760
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00001761 obj = CreateOddball("no_interceptor_result_sentinel", Smi::FromInt(-2));
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00001762 if (obj->IsFailure()) return false;
1763 set_no_interceptor_result_sentinel(obj);
1764
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00001765 obj = CreateOddball("termination_exception", Smi::FromInt(-3));
sgjesse@chromium.orgc81c8942009-08-21 10:54:26 +00001766 if (obj->IsFailure()) return false;
1767 set_termination_exception(obj);
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00001768
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001769 // Allocate the empty string.
1770 obj = AllocateRawAsciiString(0, TENURED);
1771 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001772 set_empty_string(String::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001773
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001774 for (unsigned i = 0; i < ARRAY_SIZE(constant_symbol_table); i++) {
1775 obj = LookupAsciiSymbol(constant_symbol_table[i].contents);
1776 if (obj->IsFailure()) return false;
1777 roots_[constant_symbol_table[i].index] = String::cast(obj);
1778 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001779
ager@chromium.org3b45ab52009-03-19 22:21:34 +00001780 // Allocate the hidden symbol which is used to identify the hidden properties
1781 // in JSObjects. The hash code has a special value so that it will not match
1782 // the empty string when searching for the property. It cannot be part of the
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001783 // loop above because it needs to be allocated manually with the special
ager@chromium.org3b45ab52009-03-19 22:21:34 +00001784 // hash code in place. The hash code for the hidden_symbol is zero to ensure
1785 // that it will always be at the first entry in property descriptors.
ricow@chromium.org30ce4112010-05-31 10:38:25 +00001786 obj = AllocateSymbol(CStrVector(""), 0, String::kZeroHash);
ager@chromium.org3b45ab52009-03-19 22:21:34 +00001787 if (obj->IsFailure()) return false;
1788 hidden_symbol_ = String::cast(obj);
1789
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001790 // Allocate the proxy for __proto__.
1791 obj = AllocateProxy((Address) &Accessors::ObjectPrototype);
1792 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001793 set_prototype_accessors(Proxy::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001794
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00001795 // Allocate the code_stubs dictionary. The initial size is set to avoid
1796 // expanding the dictionary during bootstrapping.
1797 obj = NumberDictionary::Allocate(128);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001798 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001799 set_code_stubs(NumberDictionary::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001800
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00001801 // Allocate the non_monomorphic_cache used in stub-cache.cc. The initial size
1802 // is set to avoid expanding the dictionary during bootstrapping.
1803 obj = NumberDictionary::Allocate(64);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001804 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001805 set_non_monomorphic_cache(NumberDictionary::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001806
sgjesse@chromium.org720dc0b2010-05-10 09:25:39 +00001807 set_instanceof_cache_function(Smi::FromInt(0));
1808 set_instanceof_cache_map(Smi::FromInt(0));
1809 set_instanceof_cache_answer(Smi::FromInt(0));
1810
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001811 CreateFixedStubs();
1812
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001813 if (InitializeNumberStringCache()->IsFailure()) return false;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001814
ricow@chromium.orgc9c80822010-04-21 08:22:37 +00001815 // Allocate cache for single character ASCII strings.
1816 obj = AllocateFixedArray(String::kMaxAsciiCharCode + 1, TENURED);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001817 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001818 set_single_character_string_cache(FixedArray::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001819
1820 // Allocate cache for external strings pointing to native source code.
1821 obj = AllocateFixedArray(Natives::GetBuiltinsCount());
1822 if (obj->IsFailure()) return false;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001823 set_natives_source_cache(FixedArray::cast(obj));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001824
kasperl@chromium.org7be3c992009-03-12 07:19:55 +00001825 // Handling of script id generation is in Factory::NewScript.
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001826 set_last_script_id(undefined_value());
kasperl@chromium.org7be3c992009-03-12 07:19:55 +00001827
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00001828 // Initialize keyed lookup cache.
ager@chromium.org5aa501c2009-06-23 07:57:28 +00001829 KeyedLookupCache::Clear();
1830
1831 // Initialize context slot cache.
1832 ContextSlotCache::Clear();
1833
1834 // Initialize descriptor cache.
1835 DescriptorLookupCache::Clear();
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00001836
kasperl@chromium.orgb9123622008-09-17 14:05:56 +00001837 // Initialize compilation cache.
1838 CompilationCache::Clear();
ager@chromium.org9258b6b2008-09-11 09:11:10 +00001839
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001840 return true;
1841}
1842
1843
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001844Object* Heap::InitializeNumberStringCache() {
1845 // Compute the size of the number string cache based on the max heap size.
1846 // max_semispace_size_ == 512 KB => number_string_cache_size = 32.
1847 // max_semispace_size_ == 8 MB => number_string_cache_size = 16KB.
1848 int number_string_cache_size = max_semispace_size_ / 512;
1849 number_string_cache_size = Max(32, Min(16*KB, number_string_cache_size));
ager@chromium.orgce5e87b2010-03-10 10:24:18 +00001850 Object* obj = AllocateFixedArray(number_string_cache_size * 2, TENURED);
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001851 if (!obj->IsFailure()) set_number_string_cache(FixedArray::cast(obj));
1852 return obj;
1853}
1854
1855
1856void Heap::FlushNumberStringCache() {
1857 // Flush the number to string cache.
1858 int len = number_string_cache()->length();
1859 for (int i = 0; i < len; i++) {
1860 number_string_cache()->set_undefined(i);
1861 }
1862}
1863
1864
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001865static inline int double_get_hash(double d) {
1866 DoubleRepresentation rep(d);
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001867 return static_cast<int>(rep.bits) ^ static_cast<int>(rep.bits >> 32);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001868}
1869
1870
1871static inline int smi_get_hash(Smi* smi) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001872 return smi->value();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001873}
1874
1875
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001876Object* Heap::GetNumberStringCache(Object* number) {
1877 int hash;
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001878 int mask = (number_string_cache()->length() >> 1) - 1;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001879 if (number->IsSmi()) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001880 hash = smi_get_hash(Smi::cast(number)) & mask;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001881 } else {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001882 hash = double_get_hash(number->Number()) & mask;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001883 }
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001884 Object* key = number_string_cache()->get(hash * 2);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001885 if (key == number) {
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001886 return String::cast(number_string_cache()->get(hash * 2 + 1));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001887 } else if (key->IsHeapNumber() &&
1888 number->IsHeapNumber() &&
1889 key->Number() == number->Number()) {
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001890 return String::cast(number_string_cache()->get(hash * 2 + 1));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001891 }
1892 return undefined_value();
1893}
1894
1895
1896void Heap::SetNumberStringCache(Object* number, String* string) {
1897 int hash;
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001898 int mask = (number_string_cache()->length() >> 1) - 1;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001899 if (number->IsSmi()) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001900 hash = smi_get_hash(Smi::cast(number)) & mask;
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00001901 number_string_cache()->set(hash * 2, Smi::cast(number));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001902 } else {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00001903 hash = double_get_hash(number->Number()) & mask;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001904 number_string_cache()->set(hash * 2, number);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001905 }
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00001906 number_string_cache()->set(hash * 2 + 1, string);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001907}
1908
1909
ager@chromium.org357bf652010-04-12 11:30:10 +00001910Object* Heap::NumberToString(Object* number, bool check_number_string_cache) {
ager@chromium.org5c838252010-02-19 08:53:10 +00001911 Counters::number_to_string_runtime.Increment();
ager@chromium.org357bf652010-04-12 11:30:10 +00001912 if (check_number_string_cache) {
1913 Object* cached = GetNumberStringCache(number);
1914 if (cached != undefined_value()) {
1915 return cached;
1916 }
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +00001917 }
1918
1919 char arr[100];
1920 Vector<char> buffer(arr, ARRAY_SIZE(arr));
1921 const char* str;
1922 if (number->IsSmi()) {
1923 int num = Smi::cast(number)->value();
1924 str = IntToCString(num, buffer);
1925 } else {
1926 double num = HeapNumber::cast(number)->value();
1927 str = DoubleToCString(num, buffer);
1928 }
1929 Object* result = AllocateStringFromAscii(CStrVector(str));
1930
1931 if (!result->IsFailure()) {
1932 SetNumberStringCache(number, String::cast(result));
1933 }
1934 return result;
1935}
1936
1937
ager@chromium.org3811b432009-10-28 14:53:37 +00001938Map* Heap::MapForExternalArrayType(ExternalArrayType array_type) {
1939 return Map::cast(roots_[RootIndexForExternalArrayType(array_type)]);
1940}
1941
1942
1943Heap::RootListIndex Heap::RootIndexForExternalArrayType(
1944 ExternalArrayType array_type) {
1945 switch (array_type) {
1946 case kExternalByteArray:
1947 return kExternalByteArrayMapRootIndex;
1948 case kExternalUnsignedByteArray:
1949 return kExternalUnsignedByteArrayMapRootIndex;
1950 case kExternalShortArray:
1951 return kExternalShortArrayMapRootIndex;
1952 case kExternalUnsignedShortArray:
1953 return kExternalUnsignedShortArrayMapRootIndex;
1954 case kExternalIntArray:
1955 return kExternalIntArrayMapRootIndex;
1956 case kExternalUnsignedIntArray:
1957 return kExternalUnsignedIntArrayMapRootIndex;
1958 case kExternalFloatArray:
1959 return kExternalFloatArrayMapRootIndex;
1960 default:
1961 UNREACHABLE();
1962 return kUndefinedValueRootIndex;
1963 }
1964}
1965
1966
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001967Object* Heap::NumberFromDouble(double value, PretenureFlag pretenure) {
kmillikin@chromium.org4111b802010-05-03 10:34:42 +00001968 // We need to distinguish the minus zero value and this cannot be
1969 // done after conversion to int. Doing this by comparing bit
1970 // patterns is faster than using fpclassify() et al.
1971 static const DoubleRepresentation minus_zero(-0.0);
1972
1973 DoubleRepresentation rep(value);
1974 if (rep.bits == minus_zero.bits) {
1975 return AllocateHeapNumber(-0.0, pretenure);
1976 }
1977
1978 int int_value = FastD2I(value);
1979 if (value == int_value && Smi::IsValid(int_value)) {
1980 return Smi::FromInt(int_value);
1981 }
1982
1983 // Materialize the value in the heap.
1984 return AllocateHeapNumber(value, pretenure);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001985}
1986
1987
1988Object* Heap::AllocateProxy(Address proxy, PretenureFlag pretenure) {
1989 // Statically ensure that it is safe to allocate proxies in paged spaces.
1990 STATIC_ASSERT(Proxy::kSize <= Page::kMaxHeapObjectSize);
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00001991 AllocationSpace space = (pretenure == TENURED) ? OLD_DATA_SPACE : NEW_SPACE;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00001992 Object* result = Allocate(proxy_map(), space);
1993 if (result->IsFailure()) return result;
1994
1995 Proxy::cast(result)->set_proxy(proxy);
1996 return result;
1997}
1998
1999
2000Object* Heap::AllocateSharedFunctionInfo(Object* name) {
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00002001 Object* result = Allocate(shared_function_info_map(), OLD_POINTER_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002002 if (result->IsFailure()) return result;
2003
2004 SharedFunctionInfo* share = SharedFunctionInfo::cast(result);
2005 share->set_name(name);
2006 Code* illegal = Builtins::builtin(Builtins::Illegal);
2007 share->set_code(illegal);
ager@chromium.orgb5737492010-07-15 09:29:43 +00002008 share->set_scope_info(SerializedScopeInfo::Empty());
ager@chromium.org5aa501c2009-06-23 07:57:28 +00002009 Code* construct_stub = Builtins::builtin(Builtins::JSConstructStubGeneric);
2010 share->set_construct_stub(construct_stub);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002011 share->set_expected_nof_properties(0);
2012 share->set_length(0);
2013 share->set_formal_parameter_count(0);
2014 share->set_instance_class_name(Object_symbol());
2015 share->set_function_data(undefined_value());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002016 share->set_script(undefined_value());
2017 share->set_start_position_and_type(0);
2018 share->set_debug_info(undefined_value());
kasperl@chromium.orgd1e3e722009-04-14 13:38:25 +00002019 share->set_inferred_name(empty_string());
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00002020 share->set_compiler_hints(0);
2021 share->set_this_property_assignments_count(0);
2022 share->set_this_property_assignments(undefined_value());
ricow@chromium.org30ce4112010-05-31 10:38:25 +00002023 share->set_num_literals(0);
2024 share->set_end_position(0);
2025 share->set_function_token_position(0);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002026 return result;
2027}
2028
2029
ager@chromium.org6141cbe2009-11-20 12:14:52 +00002030// Returns true for a character in a range. Both limits are inclusive.
2031static inline bool Between(uint32_t character, uint32_t from, uint32_t to) {
2032 // This makes uses of the the unsigned wraparound.
2033 return character - from <= to - from;
2034}
2035
2036
2037static inline Object* MakeOrFindTwoCharacterString(uint32_t c1, uint32_t c2) {
2038 String* symbol;
2039 // Numeric strings have a different hash algorithm not known by
2040 // LookupTwoCharsSymbolIfExists, so we skip this step for such strings.
2041 if ((!Between(c1, '0', '9') || !Between(c2, '0', '9')) &&
2042 Heap::symbol_table()->LookupTwoCharsSymbolIfExists(c1, c2, &symbol)) {
2043 return symbol;
2044 // Now we know the length is 2, we might as well make use of that fact
2045 // when building the new string.
2046 } else if ((c1 | c2) <= String::kMaxAsciiCharCodeU) { // We can do this
2047 ASSERT(IsPowerOf2(String::kMaxAsciiCharCodeU + 1)); // because of this.
2048 Object* result = Heap::AllocateRawAsciiString(2);
2049 if (result->IsFailure()) return result;
2050 char* dest = SeqAsciiString::cast(result)->GetChars();
2051 dest[0] = c1;
2052 dest[1] = c2;
2053 return result;
2054 } else {
2055 Object* result = Heap::AllocateRawTwoByteString(2);
2056 if (result->IsFailure()) return result;
2057 uc16* dest = SeqTwoByteString::cast(result)->GetChars();
2058 dest[0] = c1;
2059 dest[1] = c2;
2060 return result;
2061 }
2062}
2063
2064
ager@chromium.org3e875802009-06-29 08:26:34 +00002065Object* Heap::AllocateConsString(String* first, String* second) {
ager@chromium.orgbb29dc92009-03-24 13:25:23 +00002066 int first_length = first->length();
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002067 if (first_length == 0) {
2068 return second;
2069 }
ager@chromium.org3e875802009-06-29 08:26:34 +00002070
ager@chromium.orgbb29dc92009-03-24 13:25:23 +00002071 int second_length = second->length();
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002072 if (second_length == 0) {
2073 return first;
2074 }
ager@chromium.org3e875802009-06-29 08:26:34 +00002075
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002076 int length = first_length + second_length;
ager@chromium.org6141cbe2009-11-20 12:14:52 +00002077
2078 // Optimization for 2-byte strings often used as keys in a decompression
2079 // dictionary. Check whether we already have the string in the symbol
2080 // table to prevent creation of many unneccesary strings.
2081 if (length == 2) {
2082 unsigned c1 = first->Get(0);
2083 unsigned c2 = second->Get(0);
2084 return MakeOrFindTwoCharacterString(c1, c2);
2085 }
2086
ricow@chromium.orgaa1b6162010-03-29 07:44:58 +00002087 bool first_is_ascii = first->IsAsciiRepresentation();
2088 bool second_is_ascii = second->IsAsciiRepresentation();
2089 bool is_ascii = first_is_ascii && second_is_ascii;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002090
ager@chromium.org3e875802009-06-29 08:26:34 +00002091 // Make sure that an out of memory exception is thrown if the length
christian.plesner.hansen@gmail.com9d58c2b2009-10-16 11:48:38 +00002092 // of the new cons string is too large.
2093 if (length > String::kMaxLength || length < 0) {
ager@chromium.org3e875802009-06-29 08:26:34 +00002094 Top::context()->mark_out_of_memory();
2095 return Failure::OutOfMemoryException();
2096 }
2097
ricow@chromium.org5ad5ace2010-06-23 09:06:43 +00002098 bool is_ascii_data_in_two_byte_string = false;
2099 if (!is_ascii) {
2100 // At least one of the strings uses two-byte representation so we
2101 // can't use the fast case code for short ascii strings below, but
2102 // we can try to save memory if all chars actually fit in ascii.
2103 is_ascii_data_in_two_byte_string =
2104 first->HasOnlyAsciiChars() && second->HasOnlyAsciiChars();
2105 if (is_ascii_data_in_two_byte_string) {
2106 Counters::string_add_runtime_ext_to_ascii.Increment();
2107 }
2108 }
2109
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002110 // If the resulting string is small make a flat string.
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002111 if (length < String::kMinNonFlatLength) {
ager@chromium.orgbb29dc92009-03-24 13:25:23 +00002112 ASSERT(first->IsFlat());
2113 ASSERT(second->IsFlat());
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002114 if (is_ascii) {
2115 Object* result = AllocateRawAsciiString(length);
2116 if (result->IsFailure()) return result;
2117 // Copy the characters into the new object.
2118 char* dest = SeqAsciiString::cast(result)->GetChars();
ager@chromium.org3e875802009-06-29 08:26:34 +00002119 // Copy first part.
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002120 const char* src;
2121 if (first->IsExternalString()) {
2122 src = ExternalAsciiString::cast(first)->resource()->data();
2123 } else {
2124 src = SeqAsciiString::cast(first)->GetChars();
2125 }
ager@chromium.org3e875802009-06-29 08:26:34 +00002126 for (int i = 0; i < first_length; i++) *dest++ = src[i];
2127 // Copy second part.
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002128 if (second->IsExternalString()) {
2129 src = ExternalAsciiString::cast(second)->resource()->data();
2130 } else {
2131 src = SeqAsciiString::cast(second)->GetChars();
2132 }
ager@chromium.org3e875802009-06-29 08:26:34 +00002133 for (int i = 0; i < second_length; i++) *dest++ = src[i];
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002134 return result;
2135 } else {
ricow@chromium.org5ad5ace2010-06-23 09:06:43 +00002136 if (is_ascii_data_in_two_byte_string) {
ricow@chromium.orgaa1b6162010-03-29 07:44:58 +00002137 Object* result = AllocateRawAsciiString(length);
2138 if (result->IsFailure()) return result;
2139 // Copy the characters into the new object.
2140 char* dest = SeqAsciiString::cast(result)->GetChars();
2141 String::WriteToFlat(first, dest, 0, first_length);
2142 String::WriteToFlat(second, dest + first_length, 0, second_length);
ricow@chromium.orgaa1b6162010-03-29 07:44:58 +00002143 return result;
2144 }
2145
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002146 Object* result = AllocateRawTwoByteString(length);
2147 if (result->IsFailure()) return result;
2148 // Copy the characters into the new object.
2149 uc16* dest = SeqTwoByteString::cast(result)->GetChars();
ager@chromium.orgbb29dc92009-03-24 13:25:23 +00002150 String::WriteToFlat(first, dest, 0, first_length);
2151 String::WriteToFlat(second, dest + first_length, 0, second_length);
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002152 return result;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002153 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002154 }
2155
ricow@chromium.org5ad5ace2010-06-23 09:06:43 +00002156 Map* map = (is_ascii || is_ascii_data_in_two_byte_string) ?
2157 cons_ascii_string_map() : cons_string_map();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002158
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002159 Object* result = Allocate(map, NEW_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002160 if (result->IsFailure()) return result;
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00002161
2162 AssertNoAllocation no_gc;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002163 ConsString* cons_string = ConsString::cast(result);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00002164 WriteBarrierMode mode = cons_string->GetWriteBarrierMode(no_gc);
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002165 cons_string->set_length(length);
2166 cons_string->set_hash_field(String::kEmptyHashField);
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002167 cons_string->set_first(first, mode);
2168 cons_string->set_second(second, mode);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002169 return result;
2170}
2171
2172
ager@chromium.org870a0b62008-11-04 11:43:05 +00002173Object* Heap::AllocateSubString(String* buffer,
ager@chromium.org870a0b62008-11-04 11:43:05 +00002174 int start,
ager@chromium.orgce5e87b2010-03-10 10:24:18 +00002175 int end,
2176 PretenureFlag pretenure) {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002177 int length = end - start;
2178
ager@chromium.org7c537e22008-10-16 08:43:32 +00002179 if (length == 1) {
ager@chromium.org870a0b62008-11-04 11:43:05 +00002180 return Heap::LookupSingleCharacterStringFromCode(
ager@chromium.orgbb29dc92009-03-24 13:25:23 +00002181 buffer->Get(start));
ager@chromium.org6141cbe2009-11-20 12:14:52 +00002182 } else if (length == 2) {
2183 // Optimization for 2-byte strings often used as keys in a decompression
2184 // dictionary. Check whether we already have the string in the symbol
2185 // table to prevent creation of many unneccesary strings.
2186 unsigned c1 = buffer->Get(start);
2187 unsigned c2 = buffer->Get(start + 1);
2188 return MakeOrFindTwoCharacterString(c1, c2);
ager@chromium.org7c537e22008-10-16 08:43:32 +00002189 }
2190
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002191 // Make an attempt to flatten the buffer to reduce access time.
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +00002192 buffer = buffer->TryFlattenGetString();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002193
ager@chromium.org5ec48922009-05-05 07:25:34 +00002194 Object* result = buffer->IsAsciiRepresentation()
ager@chromium.orgce5e87b2010-03-10 10:24:18 +00002195 ? AllocateRawAsciiString(length, pretenure )
2196 : AllocateRawTwoByteString(length, pretenure);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002197 if (result->IsFailure()) return result;
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002198 String* string_result = String::cast(result);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002199 // Copy the characters into the new object.
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002200 if (buffer->IsAsciiRepresentation()) {
2201 ASSERT(string_result->IsAsciiRepresentation());
2202 char* dest = SeqAsciiString::cast(string_result)->GetChars();
2203 String::WriteToFlat(buffer, dest, start, end);
2204 } else {
2205 ASSERT(string_result->IsTwoByteRepresentation());
2206 uc16* dest = SeqTwoByteString::cast(string_result)->GetChars();
2207 String::WriteToFlat(buffer, dest, start, end);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002208 }
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002209
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002210 return result;
2211}
2212
2213
2214Object* Heap::AllocateExternalStringFromAscii(
2215 ExternalAsciiString::Resource* resource) {
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002216 size_t length = resource->length();
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002217 if (length > static_cast<size_t>(String::kMaxLength)) {
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002218 Top::context()->mark_out_of_memory();
2219 return Failure::OutOfMemoryException();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002220 }
2221
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002222 Map* map = external_ascii_string_map();
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002223 Object* result = Allocate(map, NEW_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002224 if (result->IsFailure()) return result;
2225
2226 ExternalAsciiString* external_string = ExternalAsciiString::cast(result);
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002227 external_string->set_length(static_cast<int>(length));
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002228 external_string->set_hash_field(String::kEmptyHashField);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002229 external_string->set_resource(resource);
2230
2231 return result;
2232}
2233
2234
2235Object* Heap::AllocateExternalStringFromTwoByte(
2236 ExternalTwoByteString::Resource* resource) {
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002237 size_t length = resource->length();
2238 if (length > static_cast<size_t>(String::kMaxLength)) {
2239 Top::context()->mark_out_of_memory();
2240 return Failure::OutOfMemoryException();
2241 }
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002242
ricow@chromium.org5ad5ace2010-06-23 09:06:43 +00002243 // For small strings we check whether the resource contains only
2244 // ascii characters. If yes, we use a different string map.
2245 bool is_ascii = true;
2246 if (length >= static_cast<size_t>(String::kMinNonFlatLength)) {
2247 is_ascii = false;
2248 } else {
2249 const uc16* data = resource->data();
2250 for (size_t i = 0; i < length; i++) {
2251 if (data[i] > String::kMaxAsciiCharCode) {
2252 is_ascii = false;
2253 break;
2254 }
2255 }
2256 }
2257
2258 Map* map = is_ascii ?
2259 Heap::external_string_with_ascii_data_map() : Heap::external_string_map();
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002260 Object* result = Allocate(map, NEW_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002261 if (result->IsFailure()) return result;
2262
2263 ExternalTwoByteString* external_string = ExternalTwoByteString::cast(result);
ager@chromium.orgc4c92722009-11-18 14:12:51 +00002264 external_string->set_length(static_cast<int>(length));
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002265 external_string->set_hash_field(String::kEmptyHashField);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002266 external_string->set_resource(resource);
2267
2268 return result;
2269}
2270
2271
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002272Object* Heap::LookupSingleCharacterStringFromCode(uint16_t code) {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002273 if (code <= String::kMaxAsciiCharCode) {
2274 Object* value = Heap::single_character_string_cache()->get(code);
2275 if (value != Heap::undefined_value()) return value;
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002276
2277 char buffer[1];
2278 buffer[0] = static_cast<char>(code);
2279 Object* result = LookupSymbol(Vector<const char>(buffer, 1));
2280
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002281 if (result->IsFailure()) return result;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002282 Heap::single_character_string_cache()->set(code, result);
2283 return result;
2284 }
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002285
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002286 Object* result = Heap::AllocateRawTwoByteString(1);
2287 if (result->IsFailure()) return result;
ager@chromium.org870a0b62008-11-04 11:43:05 +00002288 String* answer = String::cast(result);
ager@chromium.orgbb29dc92009-03-24 13:25:23 +00002289 answer->Set(0, code);
ager@chromium.org870a0b62008-11-04 11:43:05 +00002290 return answer;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002291}
2292
2293
ager@chromium.orga74f0da2008-12-03 16:05:52 +00002294Object* Heap::AllocateByteArray(int length, PretenureFlag pretenure) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002295 if (length < 0 || length > ByteArray::kMaxLength) {
2296 return Failure::OutOfMemoryException();
2297 }
ager@chromium.orga74f0da2008-12-03 16:05:52 +00002298 if (pretenure == NOT_TENURED) {
2299 return AllocateByteArray(length);
2300 }
2301 int size = ByteArray::SizeFor(length);
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002302 Object* result = (size <= MaxObjectSizeInPagedSpace())
2303 ? old_data_space_->AllocateRaw(size)
2304 : lo_space_->AllocateRaw(size);
ager@chromium.orga74f0da2008-12-03 16:05:52 +00002305 if (result->IsFailure()) return result;
2306
ricow@chromium.org30ce4112010-05-31 10:38:25 +00002307 reinterpret_cast<ByteArray*>(result)->set_map(byte_array_map());
2308 reinterpret_cast<ByteArray*>(result)->set_length(length);
ager@chromium.orga74f0da2008-12-03 16:05:52 +00002309 return result;
2310}
2311
2312
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002313Object* Heap::AllocateByteArray(int length) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002314 if (length < 0 || length > ByteArray::kMaxLength) {
2315 return Failure::OutOfMemoryException();
2316 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002317 int size = ByteArray::SizeFor(length);
ager@chromium.org9258b6b2008-09-11 09:11:10 +00002318 AllocationSpace space =
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002319 (size > MaxObjectSizeInPagedSpace()) ? LO_SPACE : NEW_SPACE;
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00002320 Object* result = AllocateRaw(size, space, OLD_DATA_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002321 if (result->IsFailure()) return result;
2322
ricow@chromium.org30ce4112010-05-31 10:38:25 +00002323 reinterpret_cast<ByteArray*>(result)->set_map(byte_array_map());
2324 reinterpret_cast<ByteArray*>(result)->set_length(length);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002325 return result;
2326}
2327
2328
ager@chromium.org6f10e412009-02-13 10:11:16 +00002329void Heap::CreateFillerObjectAt(Address addr, int size) {
2330 if (size == 0) return;
2331 HeapObject* filler = HeapObject::FromAddress(addr);
2332 if (size == kPointerSize) {
fschneider@chromium.org013f3e12010-04-26 13:27:52 +00002333 filler->set_map(one_pointer_filler_map());
2334 } else if (size == 2 * kPointerSize) {
2335 filler->set_map(two_pointer_filler_map());
ager@chromium.org6f10e412009-02-13 10:11:16 +00002336 } else {
fschneider@chromium.org013f3e12010-04-26 13:27:52 +00002337 filler->set_map(byte_array_map());
ager@chromium.org6f10e412009-02-13 10:11:16 +00002338 ByteArray::cast(filler)->set_length(ByteArray::LengthFor(size));
2339 }
2340}
2341
2342
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00002343Object* Heap::AllocatePixelArray(int length,
2344 uint8_t* external_pointer,
2345 PretenureFlag pretenure) {
2346 AllocationSpace space = (pretenure == TENURED) ? OLD_DATA_SPACE : NEW_SPACE;
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00002347 Object* result = AllocateRaw(PixelArray::kAlignedSize, space, OLD_DATA_SPACE);
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00002348 if (result->IsFailure()) return result;
2349
2350 reinterpret_cast<PixelArray*>(result)->set_map(pixel_array_map());
2351 reinterpret_cast<PixelArray*>(result)->set_length(length);
2352 reinterpret_cast<PixelArray*>(result)->set_external_pointer(external_pointer);
2353
2354 return result;
2355}
2356
2357
ager@chromium.org3811b432009-10-28 14:53:37 +00002358Object* Heap::AllocateExternalArray(int length,
2359 ExternalArrayType array_type,
2360 void* external_pointer,
2361 PretenureFlag pretenure) {
2362 AllocationSpace space = (pretenure == TENURED) ? OLD_DATA_SPACE : NEW_SPACE;
ager@chromium.org3811b432009-10-28 14:53:37 +00002363 Object* result = AllocateRaw(ExternalArray::kAlignedSize,
2364 space,
2365 OLD_DATA_SPACE);
ager@chromium.org3811b432009-10-28 14:53:37 +00002366 if (result->IsFailure()) return result;
2367
2368 reinterpret_cast<ExternalArray*>(result)->set_map(
2369 MapForExternalArrayType(array_type));
2370 reinterpret_cast<ExternalArray*>(result)->set_length(length);
2371 reinterpret_cast<ExternalArray*>(result)->set_external_pointer(
2372 external_pointer);
2373
2374 return result;
2375}
2376
2377
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002378Object* Heap::CreateCode(const CodeDesc& desc,
ager@chromium.orga74f0da2008-12-03 16:05:52 +00002379 Code::Flags flags,
kasperl@chromium.org061ef742009-02-27 12:16:20 +00002380 Handle<Object> self_reference) {
erik.corry@gmail.com4a2e25e2010-07-07 12:22:46 +00002381 // Allocate ByteArray before the Code object, so that we do not risk
2382 // leaving uninitialized Code object (and breaking the heap).
2383 Object* reloc_info = AllocateByteArray(desc.reloc_size, TENURED);
2384 if (reloc_info->IsFailure()) return reloc_info;
2385
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002386 // Compute size
erik.corry@gmail.com4a2e25e2010-07-07 12:22:46 +00002387 int body_size = RoundUp(desc.instr_size, kObjectAlignment);
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00002388 int obj_size = Code::SizeFor(body_size);
kasperl@chromium.org061ef742009-02-27 12:16:20 +00002389 ASSERT(IsAligned(obj_size, Code::kCodeAlignment));
ager@chromium.org9258b6b2008-09-11 09:11:10 +00002390 Object* result;
ager@chromium.org5aa501c2009-06-23 07:57:28 +00002391 if (obj_size > MaxObjectSizeInPagedSpace()) {
ager@chromium.org9258b6b2008-09-11 09:11:10 +00002392 result = lo_space_->AllocateRawCode(obj_size);
2393 } else {
2394 result = code_space_->AllocateRaw(obj_size);
2395 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002396
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002397 if (result->IsFailure()) return result;
2398
2399 // Initialize the object
2400 HeapObject::cast(result)->set_map(code_map());
2401 Code* code = Code::cast(result);
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +00002402 ASSERT(!CodeRange::exists() || CodeRange::contains(code->address()));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002403 code->set_instruction_size(desc.instr_size);
erik.corry@gmail.com4a2e25e2010-07-07 12:22:46 +00002404 code->set_relocation_info(ByteArray::cast(reloc_info));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002405 code->set_flags(flags);
kasperl@chromium.org061ef742009-02-27 12:16:20 +00002406 // Allow self references to created code object by patching the handle to
2407 // point to the newly allocated Code object.
2408 if (!self_reference.is_null()) {
2409 *(self_reference.location()) = code;
ager@chromium.orga74f0da2008-12-03 16:05:52 +00002410 }
2411 // Migrate generated code.
2412 // The generated code can contain Object** values (typically from handles)
2413 // that are dereferenced during the copy to point directly to the actual heap
2414 // objects. These pointers can include references to the code object itself,
2415 // through the self_reference parameter.
2416 code->CopyFrom(desc);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002417
2418#ifdef DEBUG
2419 code->Verify();
2420#endif
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002421 return code;
2422}
2423
2424
2425Object* Heap::CopyCode(Code* code) {
2426 // Allocate an object the same size as the code object.
2427 int obj_size = code->Size();
ager@chromium.org9258b6b2008-09-11 09:11:10 +00002428 Object* result;
ager@chromium.org5aa501c2009-06-23 07:57:28 +00002429 if (obj_size > MaxObjectSizeInPagedSpace()) {
ager@chromium.org9258b6b2008-09-11 09:11:10 +00002430 result = lo_space_->AllocateRawCode(obj_size);
2431 } else {
2432 result = code_space_->AllocateRaw(obj_size);
2433 }
2434
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002435 if (result->IsFailure()) return result;
2436
2437 // Copy code object.
2438 Address old_addr = code->address();
2439 Address new_addr = reinterpret_cast<HeapObject*>(result)->address();
ricow@chromium.org30ce4112010-05-31 10:38:25 +00002440 CopyBlock(new_addr, old_addr, obj_size);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002441 // Relocate the copy.
2442 Code* new_code = Code::cast(result);
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +00002443 ASSERT(!CodeRange::exists() || CodeRange::contains(code->address()));
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002444 new_code->Relocate(new_addr - old_addr);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002445 return new_code;
2446}
2447
2448
fschneider@chromium.org086aac62010-03-17 13:18:24 +00002449Object* Heap::CopyCode(Code* code, Vector<byte> reloc_info) {
erik.corry@gmail.com4a2e25e2010-07-07 12:22:46 +00002450 // Allocate ByteArray before the Code object, so that we do not risk
2451 // leaving uninitialized Code object (and breaking the heap).
2452 Object* reloc_info_array = AllocateByteArray(reloc_info.length(), TENURED);
2453 if (reloc_info_array->IsFailure()) return reloc_info_array;
2454
2455 int new_body_size = RoundUp(code->instruction_size(), kObjectAlignment);
fschneider@chromium.org086aac62010-03-17 13:18:24 +00002456
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00002457 int new_obj_size = Code::SizeFor(new_body_size);
fschneider@chromium.org086aac62010-03-17 13:18:24 +00002458
2459 Address old_addr = code->address();
2460
whesse@chromium.orgb6e43bb2010-04-14 09:36:28 +00002461 size_t relocation_offset =
erik.corry@gmail.com4a2e25e2010-07-07 12:22:46 +00002462 static_cast<size_t>(code->instruction_end() - old_addr);
fschneider@chromium.org086aac62010-03-17 13:18:24 +00002463
2464 Object* result;
2465 if (new_obj_size > MaxObjectSizeInPagedSpace()) {
2466 result = lo_space_->AllocateRawCode(new_obj_size);
2467 } else {
2468 result = code_space_->AllocateRaw(new_obj_size);
2469 }
2470
2471 if (result->IsFailure()) return result;
2472
2473 // Copy code object.
2474 Address new_addr = reinterpret_cast<HeapObject*>(result)->address();
2475
2476 // Copy header and instructions.
2477 memcpy(new_addr, old_addr, relocation_offset);
2478
fschneider@chromium.org086aac62010-03-17 13:18:24 +00002479 Code* new_code = Code::cast(result);
erik.corry@gmail.com4a2e25e2010-07-07 12:22:46 +00002480 new_code->set_relocation_info(ByteArray::cast(reloc_info_array));
fschneider@chromium.org086aac62010-03-17 13:18:24 +00002481
erik.corry@gmail.com4a2e25e2010-07-07 12:22:46 +00002482 // Copy patched rinfo.
2483 memcpy(new_code->relocation_start(), reloc_info.start(), reloc_info.length());
fschneider@chromium.org086aac62010-03-17 13:18:24 +00002484
2485 // Relocate the copy.
2486 ASSERT(!CodeRange::exists() || CodeRange::contains(code->address()));
2487 new_code->Relocate(new_addr - old_addr);
2488
2489#ifdef DEBUG
2490 code->Verify();
2491#endif
2492 return new_code;
2493}
2494
2495
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002496Object* Heap::Allocate(Map* map, AllocationSpace space) {
2497 ASSERT(gc_state_ == NOT_IN_GC);
2498 ASSERT(map->instance_type() != MAP_TYPE);
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002499 // If allocation failures are disallowed, we may allocate in a different
2500 // space when new space is full and the object is not a large object.
2501 AllocationSpace retry_space =
2502 (space != NEW_SPACE) ? space : TargetSpaceId(map->instance_type());
2503 Object* result =
2504 AllocateRaw(map->instance_size(), space, retry_space);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002505 if (result->IsFailure()) return result;
2506 HeapObject::cast(result)->set_map(map);
ager@chromium.org3811b432009-10-28 14:53:37 +00002507#ifdef ENABLE_LOGGING_AND_PROFILING
christian.plesner.hansen@gmail.com9d58c2b2009-10-16 11:48:38 +00002508 ProducerHeapProfile::RecordJSObjectAllocation(result);
ager@chromium.org3811b432009-10-28 14:53:37 +00002509#endif
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002510 return result;
2511}
2512
2513
2514Object* Heap::InitializeFunction(JSFunction* function,
2515 SharedFunctionInfo* shared,
2516 Object* prototype) {
2517 ASSERT(!prototype->IsMap());
2518 function->initialize_properties();
2519 function->initialize_elements();
2520 function->set_shared(shared);
vegorov@chromium.org26c16f82010-08-11 13:41:03 +00002521 function->set_code(shared->code());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002522 function->set_prototype_or_initial_map(prototype);
2523 function->set_context(undefined_value());
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00002524 function->set_literals(empty_fixed_array());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002525 return function;
2526}
2527
2528
2529Object* Heap::AllocateFunctionPrototype(JSFunction* function) {
ager@chromium.orgddb913d2009-01-27 10:01:48 +00002530 // Allocate the prototype. Make sure to use the object function
2531 // from the function's context, since the function can be from a
2532 // different context.
2533 JSFunction* object_function =
2534 function->context()->global_context()->object_function();
2535 Object* prototype = AllocateJSObject(object_function);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002536 if (prototype->IsFailure()) return prototype;
2537 // When creating the prototype for the function we must set its
2538 // constructor to the function.
2539 Object* result =
2540 JSObject::cast(prototype)->SetProperty(constructor_symbol(),
2541 function,
2542 DONT_ENUM);
2543 if (result->IsFailure()) return result;
2544 return prototype;
2545}
2546
2547
2548Object* Heap::AllocateFunction(Map* function_map,
2549 SharedFunctionInfo* shared,
sgjesse@chromium.org846fb742009-12-18 08:56:33 +00002550 Object* prototype,
2551 PretenureFlag pretenure) {
2552 AllocationSpace space =
2553 (pretenure == TENURED) ? OLD_POINTER_SPACE : NEW_SPACE;
2554 Object* result = Allocate(function_map, space);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002555 if (result->IsFailure()) return result;
2556 return InitializeFunction(JSFunction::cast(result), shared, prototype);
2557}
2558
2559
2560Object* Heap::AllocateArgumentsObject(Object* callee, int length) {
mads.s.ager@gmail.com9a4089a2008-09-01 08:55:01 +00002561 // To get fast allocation and map sharing for arguments objects we
2562 // allocate them based on an arguments boilerplate.
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002563
2564 // This calls Copy directly rather than using Heap::AllocateRaw so we
2565 // duplicate the check here.
2566 ASSERT(allocation_allowed_ && gc_state_ == NOT_IN_GC);
2567
2568 JSObject* boilerplate =
2569 Top::context()->global_context()->arguments_boilerplate();
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002570
sgjesse@chromium.org846fb742009-12-18 08:56:33 +00002571 // Check that the size of the boilerplate matches our
2572 // expectations. The ArgumentsAccessStub::GenerateNewObject relies
2573 // on the size being a known constant.
2574 ASSERT(kArgumentsObjectSize == boilerplate->map()->instance_size());
2575
2576 // Do the allocation.
2577 Object* result =
2578 AllocateRaw(kArgumentsObjectSize, NEW_SPACE, OLD_POINTER_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002579 if (result->IsFailure()) return result;
2580
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00002581 // Copy the content. The arguments boilerplate doesn't have any
2582 // fields that point to new space so it's safe to skip the write
2583 // barrier here.
ricow@chromium.org30ce4112010-05-31 10:38:25 +00002584 CopyBlock(HeapObject::cast(result)->address(),
2585 boilerplate->address(),
sgjesse@chromium.org846fb742009-12-18 08:56:33 +00002586 kArgumentsObjectSize);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002587
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002588 // Set the two properties.
2589 JSObject::cast(result)->InObjectPropertyAtPut(arguments_callee_index,
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00002590 callee);
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002591 JSObject::cast(result)->InObjectPropertyAtPut(arguments_length_index,
2592 Smi::FromInt(length),
2593 SKIP_WRITE_BARRIER);
2594
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002595 // Check the state of the object
2596 ASSERT(JSObject::cast(result)->HasFastProperties());
2597 ASSERT(JSObject::cast(result)->HasFastElements());
2598
2599 return result;
2600}
2601
2602
2603Object* Heap::AllocateInitialMap(JSFunction* fun) {
2604 ASSERT(!fun->has_initial_map());
2605
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00002606 // First create a new map with the size and number of in-object properties
2607 // suggested by the function.
2608 int instance_size = fun->shared()->CalculateInstanceSize();
2609 int in_object_properties = fun->shared()->CalculateInObjectProperties();
ager@chromium.org7c537e22008-10-16 08:43:32 +00002610 Object* map_obj = Heap::AllocateMap(JS_OBJECT_TYPE, instance_size);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002611 if (map_obj->IsFailure()) return map_obj;
2612
2613 // Fetch or allocate prototype.
2614 Object* prototype;
2615 if (fun->has_instance_prototype()) {
2616 prototype = fun->instance_prototype();
2617 } else {
2618 prototype = AllocateFunctionPrototype(fun);
2619 if (prototype->IsFailure()) return prototype;
2620 }
2621 Map* map = Map::cast(map_obj);
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00002622 map->set_inobject_properties(in_object_properties);
2623 map->set_unused_property_fields(in_object_properties);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002624 map->set_prototype(prototype);
fschneider@chromium.org40b9da32010-06-28 11:29:21 +00002625 ASSERT(map->has_fast_elements());
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00002626
ager@chromium.org5c838252010-02-19 08:53:10 +00002627 // If the function has only simple this property assignments add
2628 // field descriptors for these to the initial map as the object
2629 // cannot be constructed without having these properties. Guard by
2630 // the inline_new flag so we only change the map if we generate a
2631 // specialized construct stub.
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00002632 ASSERT(in_object_properties <= Map::kMaxPreAllocatedPropertyFields);
ager@chromium.org5c838252010-02-19 08:53:10 +00002633 if (fun->shared()->CanGenerateInlineConstructor(prototype)) {
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00002634 int count = fun->shared()->this_property_assignments_count();
2635 if (count > in_object_properties) {
2636 count = in_object_properties;
2637 }
sgjesse@chromium.orgc81c8942009-08-21 10:54:26 +00002638 Object* descriptors_obj = DescriptorArray::Allocate(count);
2639 if (descriptors_obj->IsFailure()) return descriptors_obj;
2640 DescriptorArray* descriptors = DescriptorArray::cast(descriptors_obj);
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00002641 for (int i = 0; i < count; i++) {
2642 String* name = fun->shared()->GetThisPropertyAssignmentName(i);
2643 ASSERT(name->IsSymbol());
2644 FieldDescriptor field(name, i, NONE);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00002645 field.SetEnumerationIndex(i);
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00002646 descriptors->Set(i, &field);
2647 }
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00002648 descriptors->SetNextEnumerationIndex(count);
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00002649 descriptors->Sort();
2650 map->set_instance_descriptors(descriptors);
2651 map->set_pre_allocated_property_fields(count);
2652 map->set_unused_property_fields(in_object_properties - count);
2653 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002654 return map;
2655}
2656
2657
2658void Heap::InitializeJSObjectFromMap(JSObject* obj,
2659 FixedArray* properties,
2660 Map* map) {
2661 obj->set_properties(properties);
2662 obj->initialize_elements();
2663 // TODO(1240798): Initialize the object's body using valid initial values
2664 // according to the object's initial map. For example, if the map's
2665 // instance type is JS_ARRAY_TYPE, the length field should be initialized
2666 // to a number (eg, Smi::FromInt(0)) and the elements initialized to a
2667 // fixed array (eg, Heap::empty_fixed_array()). Currently, the object
2668 // verification code has to cope with (temporarily) invalid objects. See
2669 // for example, JSArray::JSArrayVerify).
2670 obj->InitializeBody(map->instance_size());
2671}
2672
2673
2674Object* Heap::AllocateJSObjectFromMap(Map* map, PretenureFlag pretenure) {
2675 // JSFunctions should be allocated using AllocateFunction to be
2676 // properly initialized.
2677 ASSERT(map->instance_type() != JS_FUNCTION_TYPE);
2678
fschneider@chromium.org40b9da32010-06-28 11:29:21 +00002679 // Both types of global objects should be allocated using
2680 // AllocateGlobalObject to be properly initialized.
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00002681 ASSERT(map->instance_type() != JS_GLOBAL_OBJECT_TYPE);
2682 ASSERT(map->instance_type() != JS_BUILTINS_OBJECT_TYPE);
2683
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002684 // Allocate the backing storage for the properties.
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00002685 int prop_size =
2686 map->pre_allocated_property_fields() +
2687 map->unused_property_fields() -
2688 map->inobject_properties();
2689 ASSERT(prop_size >= 0);
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00002690 Object* properties = AllocateFixedArray(prop_size, pretenure);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002691 if (properties->IsFailure()) return properties;
2692
2693 // Allocate the JSObject.
ager@chromium.org9258b6b2008-09-11 09:11:10 +00002694 AllocationSpace space =
2695 (pretenure == TENURED) ? OLD_POINTER_SPACE : NEW_SPACE;
ager@chromium.org5aa501c2009-06-23 07:57:28 +00002696 if (map->instance_size() > MaxObjectSizeInPagedSpace()) space = LO_SPACE;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002697 Object* obj = Allocate(map, space);
2698 if (obj->IsFailure()) return obj;
2699
2700 // Initialize the JSObject.
2701 InitializeJSObjectFromMap(JSObject::cast(obj),
2702 FixedArray::cast(properties),
2703 map);
fschneider@chromium.org40b9da32010-06-28 11:29:21 +00002704 ASSERT(JSObject::cast(obj)->HasFastElements());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002705 return obj;
2706}
2707
2708
2709Object* Heap::AllocateJSObject(JSFunction* constructor,
2710 PretenureFlag pretenure) {
2711 // Allocate the initial map if absent.
2712 if (!constructor->has_initial_map()) {
2713 Object* initial_map = AllocateInitialMap(constructor);
2714 if (initial_map->IsFailure()) return initial_map;
2715 constructor->set_initial_map(Map::cast(initial_map));
2716 Map::cast(initial_map)->set_constructor(constructor);
2717 }
2718 // Allocate the object based on the constructors initial map.
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00002719 Object* result =
2720 AllocateJSObjectFromMap(constructor->initial_map(), pretenure);
2721 // Make sure result is NOT a global object if valid.
2722 ASSERT(result->IsFailure() || !result->IsGlobalObject());
2723 return result;
2724}
2725
2726
2727Object* Heap::AllocateGlobalObject(JSFunction* constructor) {
2728 ASSERT(constructor->has_initial_map());
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00002729 Map* map = constructor->initial_map();
2730
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00002731 // Make sure no field properties are described in the initial map.
2732 // This guarantees us that normalizing the properties does not
2733 // require us to change property values to JSGlobalPropertyCells.
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00002734 ASSERT(map->NextFreePropertyIndex() == 0);
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00002735
2736 // Make sure we don't have a ton of pre-allocated slots in the
2737 // global objects. They will be unused once we normalize the object.
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00002738 ASSERT(map->unused_property_fields() == 0);
2739 ASSERT(map->inobject_properties() == 0);
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00002740
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00002741 // Initial size of the backing store to avoid resize of the storage during
2742 // bootstrapping. The size differs between the JS global object ad the
2743 // builtins object.
2744 int initial_size = map->instance_type() == JS_GLOBAL_OBJECT_TYPE ? 64 : 512;
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00002745
sgjesse@chromium.org0b6db592009-07-30 14:48:31 +00002746 // Allocate a dictionary object for backing storage.
2747 Object* obj =
2748 StringDictionary::Allocate(
2749 map->NumberOfDescribedProperties() * 2 + initial_size);
2750 if (obj->IsFailure()) return obj;
2751 StringDictionary* dictionary = StringDictionary::cast(obj);
2752
2753 // The global object might be created from an object template with accessors.
2754 // Fill these accessors into the dictionary.
2755 DescriptorArray* descs = map->instance_descriptors();
2756 for (int i = 0; i < descs->number_of_descriptors(); i++) {
2757 PropertyDetails details = descs->GetDetails(i);
2758 ASSERT(details.type() == CALLBACKS); // Only accessors are expected.
2759 PropertyDetails d =
2760 PropertyDetails(details.attributes(), CALLBACKS, details.index());
2761 Object* value = descs->GetCallbacksObject(i);
2762 value = Heap::AllocateJSGlobalPropertyCell(value);
2763 if (value->IsFailure()) return value;
2764
2765 Object* result = dictionary->Add(descs->GetKey(i), value, d);
2766 if (result->IsFailure()) return result;
2767 dictionary = StringDictionary::cast(result);
2768 }
2769
2770 // Allocate the global object and initialize it with the backing store.
2771 obj = Allocate(map, OLD_POINTER_SPACE);
2772 if (obj->IsFailure()) return obj;
2773 JSObject* global = JSObject::cast(obj);
2774 InitializeJSObjectFromMap(global, dictionary, map);
2775
2776 // Create a new map for the global object.
2777 obj = map->CopyDropDescriptors();
2778 if (obj->IsFailure()) return obj;
2779 Map* new_map = Map::cast(obj);
2780
2781 // Setup the global object as a normalized object.
2782 global->set_map(new_map);
2783 global->map()->set_instance_descriptors(Heap::empty_descriptor_array());
2784 global->set_properties(dictionary);
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00002785
2786 // Make sure result is a global object with properties in dictionary.
2787 ASSERT(global->IsGlobalObject());
2788 ASSERT(!global->HasFastProperties());
2789 return global;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002790}
2791
2792
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002793Object* Heap::CopyJSObject(JSObject* source) {
2794 // Never used to copy functions. If functions need to be copied we
2795 // have to be careful to clear the literals array.
2796 ASSERT(!source->IsJSFunction());
2797
2798 // Make the clone.
2799 Map* map = source->map();
2800 int object_size = map->instance_size();
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00002801 Object* clone;
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002802
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00002803 // If we're forced to always allocate, we use the general allocation
2804 // functions which may leave us with an object in old space.
2805 if (always_allocate()) {
2806 clone = AllocateRaw(object_size, NEW_SPACE, OLD_POINTER_SPACE);
2807 if (clone->IsFailure()) return clone;
2808 Address clone_address = HeapObject::cast(clone)->address();
ricow@chromium.org30ce4112010-05-31 10:38:25 +00002809 CopyBlock(clone_address,
2810 source->address(),
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00002811 object_size);
2812 // Update write barrier for all fields that lie beyond the header.
vegorov@chromium.orgf8372902010-03-15 10:26:20 +00002813 RecordWrites(clone_address,
2814 JSObject::kHeaderSize,
antonm@chromium.org8e5e3382010-03-24 09:56:30 +00002815 (object_size - JSObject::kHeaderSize) / kPointerSize);
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00002816 } else {
2817 clone = new_space_.AllocateRaw(object_size);
2818 if (clone->IsFailure()) return clone;
2819 ASSERT(Heap::InNewSpace(clone));
2820 // Since we know the clone is allocated in new space, we can copy
ager@chromium.org32912102009-01-16 10:38:43 +00002821 // the contents without worrying about updating the write barrier.
ricow@chromium.org30ce4112010-05-31 10:38:25 +00002822 CopyBlock(HeapObject::cast(clone)->address(),
2823 source->address(),
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00002824 object_size);
2825 }
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002826
2827 FixedArray* elements = FixedArray::cast(source->elements());
2828 FixedArray* properties = FixedArray::cast(source->properties());
2829 // Update elements if necessary.
ager@chromium.orgb26c50a2010-03-26 09:27:16 +00002830 if (elements->length() > 0) {
ricow@chromium.org0b9f8502010-08-18 07:45:01 +00002831 Object* elem =
2832 (elements->map() == fixed_cow_array_map()) ?
2833 elements : CopyFixedArray(elements);
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002834 if (elem->IsFailure()) return elem;
2835 JSObject::cast(clone)->set_elements(FixedArray::cast(elem));
2836 }
2837 // Update properties if necessary.
2838 if (properties->length() > 0) {
2839 Object* prop = CopyFixedArray(properties);
2840 if (prop->IsFailure()) return prop;
2841 JSObject::cast(clone)->set_properties(FixedArray::cast(prop));
2842 }
2843 // Return the new clone.
ager@chromium.org3811b432009-10-28 14:53:37 +00002844#ifdef ENABLE_LOGGING_AND_PROFILING
christian.plesner.hansen@gmail.com9d58c2b2009-10-16 11:48:38 +00002845 ProducerHeapProfile::RecordJSObjectAllocation(clone);
ager@chromium.org3811b432009-10-28 14:53:37 +00002846#endif
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00002847 return clone;
2848}
2849
2850
2851Object* Heap::ReinitializeJSGlobalProxy(JSFunction* constructor,
2852 JSGlobalProxy* object) {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002853 // Allocate initial map if absent.
2854 if (!constructor->has_initial_map()) {
2855 Object* initial_map = AllocateInitialMap(constructor);
2856 if (initial_map->IsFailure()) return initial_map;
2857 constructor->set_initial_map(Map::cast(initial_map));
2858 Map::cast(initial_map)->set_constructor(constructor);
2859 }
2860
2861 Map* map = constructor->initial_map();
2862
2863 // Check that the already allocated object has the same size as
2864 // objects allocated using the constructor.
2865 ASSERT(map->instance_size() == object->map()->instance_size());
2866
2867 // Allocate the backing storage for the properties.
ager@chromium.org7c537e22008-10-16 08:43:32 +00002868 int prop_size = map->unused_property_fields() - map->inobject_properties();
kasperl@chromium.org2abc4502009-07-02 07:00:29 +00002869 Object* properties = AllocateFixedArray(prop_size, TENURED);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002870 if (properties->IsFailure()) return properties;
2871
2872 // Reset the map for the object.
2873 object->set_map(constructor->initial_map());
2874
2875 // Reinitialize the object from the constructor map.
2876 InitializeJSObjectFromMap(object, FixedArray::cast(properties), map);
2877 return object;
2878}
2879
2880
2881Object* Heap::AllocateStringFromAscii(Vector<const char> string,
2882 PretenureFlag pretenure) {
2883 Object* result = AllocateRawAsciiString(string.length(), pretenure);
2884 if (result->IsFailure()) return result;
2885
2886 // Copy the characters into the new object.
ager@chromium.org7c537e22008-10-16 08:43:32 +00002887 SeqAsciiString* string_result = SeqAsciiString::cast(result);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002888 for (int i = 0; i < string.length(); i++) {
ager@chromium.org7c537e22008-10-16 08:43:32 +00002889 string_result->SeqAsciiStringSet(i, string[i]);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002890 }
2891 return result;
2892}
2893
2894
2895Object* Heap::AllocateStringFromUtf8(Vector<const char> string,
2896 PretenureFlag pretenure) {
erik.corry@gmail.com4a2e25e2010-07-07 12:22:46 +00002897 // V8 only supports characters in the Basic Multilingual Plane.
2898 const uc32 kMaxSupportedChar = 0xFFFF;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002899 // Count the number of characters in the UTF-8 string and check if
2900 // it is an ASCII string.
2901 Access<Scanner::Utf8Decoder> decoder(Scanner::utf8_decoder());
2902 decoder->Reset(string.start(), string.length());
2903 int chars = 0;
2904 bool is_ascii = true;
2905 while (decoder->has_more()) {
2906 uc32 r = decoder->GetNext();
2907 if (r > String::kMaxAsciiCharCode) is_ascii = false;
2908 chars++;
2909 }
2910
2911 // If the string is ascii, we do not need to convert the characters
2912 // since UTF8 is backwards compatible with ascii.
2913 if (is_ascii) return AllocateStringFromAscii(string, pretenure);
2914
2915 Object* result = AllocateRawTwoByteString(chars, pretenure);
2916 if (result->IsFailure()) return result;
2917
2918 // Convert and copy the characters into the new object.
2919 String* string_result = String::cast(result);
2920 decoder->Reset(string.start(), string.length());
2921 for (int i = 0; i < chars; i++) {
2922 uc32 r = decoder->GetNext();
erik.corry@gmail.com4a2e25e2010-07-07 12:22:46 +00002923 if (r > kMaxSupportedChar) { r = unibrow::Utf8::kBadChar; }
ager@chromium.orgbb29dc92009-03-24 13:25:23 +00002924 string_result->Set(i, r);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002925 }
2926 return result;
2927}
2928
2929
2930Object* Heap::AllocateStringFromTwoByte(Vector<const uc16> string,
2931 PretenureFlag pretenure) {
2932 // Check if the string is an ASCII string.
2933 int i = 0;
2934 while (i < string.length() && string[i] <= String::kMaxAsciiCharCode) i++;
2935
2936 Object* result;
2937 if (i == string.length()) { // It's an ASCII string.
2938 result = AllocateRawAsciiString(string.length(), pretenure);
2939 } else { // It's not an ASCII string.
2940 result = AllocateRawTwoByteString(string.length(), pretenure);
2941 }
2942 if (result->IsFailure()) return result;
2943
2944 // Copy the characters into the new object, which may be either ASCII or
2945 // UTF-16.
2946 String* string_result = String::cast(result);
2947 for (int i = 0; i < string.length(); i++) {
ager@chromium.orgbb29dc92009-03-24 13:25:23 +00002948 string_result->Set(i, string[i]);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002949 }
2950 return result;
2951}
2952
2953
2954Map* Heap::SymbolMapForString(String* string) {
2955 // If the string is in new space it cannot be used as a symbol.
2956 if (InNewSpace(string)) return NULL;
2957
2958 // Find the corresponding symbol map for strings.
2959 Map* map = string->map();
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002960 if (map == ascii_string_map()) return ascii_symbol_map();
2961 if (map == string_map()) return symbol_map();
2962 if (map == cons_string_map()) return cons_symbol_map();
2963 if (map == cons_ascii_string_map()) return cons_ascii_symbol_map();
2964 if (map == external_string_map()) return external_symbol_map();
2965 if (map == external_ascii_string_map()) return external_ascii_symbol_map();
ricow@chromium.org5ad5ace2010-06-23 09:06:43 +00002966 if (map == external_string_with_ascii_data_map()) {
2967 return external_symbol_with_ascii_data_map();
2968 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002969
2970 // No match found.
2971 return NULL;
2972}
2973
2974
ager@chromium.orga74f0da2008-12-03 16:05:52 +00002975Object* Heap::AllocateInternalSymbol(unibrow::CharacterStream* buffer,
2976 int chars,
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002977 uint32_t hash_field) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002978 ASSERT(chars >= 0);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002979 // Ensure the chars matches the number of characters in the buffer.
2980 ASSERT(static_cast<unsigned>(chars) == buffer->Length());
2981 // Determine whether the string is ascii.
2982 bool is_ascii = true;
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002983 while (buffer->has_more()) {
2984 if (buffer->GetNext() > unibrow::Utf8::kMaxOneByteChar) {
2985 is_ascii = false;
2986 break;
2987 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00002988 }
2989 buffer->Rewind();
2990
2991 // Compute map and object size.
2992 int size;
2993 Map* map;
2994
2995 if (is_ascii) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00002996 if (chars > SeqAsciiString::kMaxLength) {
2997 return Failure::OutOfMemoryException();
2998 }
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00002999 map = ascii_symbol_map();
ager@chromium.org7c537e22008-10-16 08:43:32 +00003000 size = SeqAsciiString::SizeFor(chars);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003001 } else {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003002 if (chars > SeqTwoByteString::kMaxLength) {
3003 return Failure::OutOfMemoryException();
3004 }
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00003005 map = symbol_map();
ager@chromium.org7c537e22008-10-16 08:43:32 +00003006 size = SeqTwoByteString::SizeFor(chars);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003007 }
3008
3009 // Allocate string.
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003010 Object* result = (size > MaxObjectSizeInPagedSpace())
3011 ? lo_space_->AllocateRaw(size)
3012 : old_data_space_->AllocateRaw(size);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003013 if (result->IsFailure()) return result;
3014
3015 reinterpret_cast<HeapObject*>(result)->set_map(map);
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00003016 // Set length and hash fields of the allocated string.
ager@chromium.org870a0b62008-11-04 11:43:05 +00003017 String* answer = String::cast(result);
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00003018 answer->set_length(chars);
3019 answer->set_hash_field(hash_field);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003020
ager@chromium.org870a0b62008-11-04 11:43:05 +00003021 ASSERT_EQ(size, answer->Size());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003022
3023 // Fill in the characters.
3024 for (int i = 0; i < chars; i++) {
ager@chromium.orgbb29dc92009-03-24 13:25:23 +00003025 answer->Set(i, buffer->GetNext());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003026 }
ager@chromium.org870a0b62008-11-04 11:43:05 +00003027 return answer;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003028}
3029
3030
3031Object* Heap::AllocateRawAsciiString(int length, PretenureFlag pretenure) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003032 if (length < 0 || length > SeqAsciiString::kMaxLength) {
3033 return Failure::OutOfMemoryException();
3034 }
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +00003035
ager@chromium.org7c537e22008-10-16 08:43:32 +00003036 int size = SeqAsciiString::SizeFor(length);
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003037 ASSERT(size <= SeqAsciiString::kMaxSize);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003038
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003039 AllocationSpace space = (pretenure == TENURED) ? OLD_DATA_SPACE : NEW_SPACE;
3040 AllocationSpace retry_space = OLD_DATA_SPACE;
3041
ager@chromium.org5aa501c2009-06-23 07:57:28 +00003042 if (space == NEW_SPACE) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003043 if (size > kMaxObjectSizeInNewSpace) {
3044 // Allocate in large object space, retry space will be ignored.
3045 space = LO_SPACE;
3046 } else if (size > MaxObjectSizeInPagedSpace()) {
3047 // Allocate in new space, retry in large object space.
3048 retry_space = LO_SPACE;
3049 }
3050 } else if (space == OLD_DATA_SPACE && size > MaxObjectSizeInPagedSpace()) {
3051 space = LO_SPACE;
ager@chromium.org5aa501c2009-06-23 07:57:28 +00003052 }
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003053 Object* result = AllocateRaw(size, space, retry_space);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003054 if (result->IsFailure()) return result;
3055
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003056 // Partially initialize the object.
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00003057 HeapObject::cast(result)->set_map(ascii_string_map());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003058 String::cast(result)->set_length(length);
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00003059 String::cast(result)->set_hash_field(String::kEmptyHashField);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003060 ASSERT_EQ(size, HeapObject::cast(result)->Size());
3061 return result;
3062}
3063
3064
3065Object* Heap::AllocateRawTwoByteString(int length, PretenureFlag pretenure) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003066 if (length < 0 || length > SeqTwoByteString::kMaxLength) {
3067 return Failure::OutOfMemoryException();
ager@chromium.org5aa501c2009-06-23 07:57:28 +00003068 }
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003069 int size = SeqTwoByteString::SizeFor(length);
3070 ASSERT(size <= SeqTwoByteString::kMaxSize);
3071 AllocationSpace space = (pretenure == TENURED) ? OLD_DATA_SPACE : NEW_SPACE;
3072 AllocationSpace retry_space = OLD_DATA_SPACE;
3073
3074 if (space == NEW_SPACE) {
3075 if (size > kMaxObjectSizeInNewSpace) {
3076 // Allocate in large object space, retry space will be ignored.
3077 space = LO_SPACE;
3078 } else if (size > MaxObjectSizeInPagedSpace()) {
3079 // Allocate in new space, retry in large object space.
3080 retry_space = LO_SPACE;
3081 }
3082 } else if (space == OLD_DATA_SPACE && size > MaxObjectSizeInPagedSpace()) {
3083 space = LO_SPACE;
3084 }
3085 Object* result = AllocateRaw(size, space, retry_space);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003086 if (result->IsFailure()) return result;
3087
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003088 // Partially initialize the object.
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00003089 HeapObject::cast(result)->set_map(string_map());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003090 String::cast(result)->set_length(length);
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00003091 String::cast(result)->set_hash_field(String::kEmptyHashField);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003092 ASSERT_EQ(size, HeapObject::cast(result)->Size());
3093 return result;
3094}
3095
3096
3097Object* Heap::AllocateEmptyFixedArray() {
3098 int size = FixedArray::SizeFor(0);
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00003099 Object* result = AllocateRaw(size, OLD_DATA_SPACE, OLD_DATA_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003100 if (result->IsFailure()) return result;
3101 // Initialize the object.
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003102 reinterpret_cast<FixedArray*>(result)->set_map(fixed_array_map());
3103 reinterpret_cast<FixedArray*>(result)->set_length(0);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003104 return result;
3105}
3106
3107
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003108Object* Heap::AllocateRawFixedArray(int length) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003109 if (length < 0 || length > FixedArray::kMaxLength) {
3110 return Failure::OutOfMemoryException();
3111 }
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00003112 // Use the general function if we're forced to always allocate.
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +00003113 if (always_allocate()) return AllocateFixedArray(length, TENURED);
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003114 // Allocate the raw data for a fixed array.
3115 int size = FixedArray::SizeFor(length);
ager@chromium.org5aa501c2009-06-23 07:57:28 +00003116 return size <= kMaxObjectSizeInNewSpace
3117 ? new_space_.AllocateRaw(size)
3118 : lo_space_->AllocateRawFixedArray(size);
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003119}
3120
3121
3122Object* Heap::CopyFixedArray(FixedArray* src) {
3123 int len = src->length();
3124 Object* obj = AllocateRawFixedArray(len);
3125 if (obj->IsFailure()) return obj;
3126 if (Heap::InNewSpace(obj)) {
3127 HeapObject* dst = HeapObject::cast(obj);
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003128 CopyBlock(dst->address(), src->address(), FixedArray::SizeFor(len));
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003129 return obj;
3130 }
3131 HeapObject::cast(obj)->set_map(src->map());
3132 FixedArray* result = FixedArray::cast(obj);
3133 result->set_length(len);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00003134
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003135 // Copy the content
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00003136 AssertNoAllocation no_gc;
3137 WriteBarrierMode mode = result->GetWriteBarrierMode(no_gc);
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003138 for (int i = 0; i < len; i++) result->set(i, src->get(i), mode);
3139 return result;
3140}
3141
3142
3143Object* Heap::AllocateFixedArray(int length) {
sgjesse@chromium.org911335c2009-08-19 12:59:44 +00003144 ASSERT(length >= 0);
ager@chromium.org32912102009-01-16 10:38:43 +00003145 if (length == 0) return empty_fixed_array();
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003146 Object* result = AllocateRawFixedArray(length);
3147 if (!result->IsFailure()) {
3148 // Initialize header.
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003149 FixedArray* array = reinterpret_cast<FixedArray*>(result);
3150 array->set_map(fixed_array_map());
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003151 array->set_length(length);
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003152 // Initialize body.
vegorov@chromium.orgf8372902010-03-15 10:26:20 +00003153 ASSERT(!Heap::InNewSpace(undefined_value()));
3154 MemsetPointer(array->data_start(), undefined_value(), length);
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003155 }
3156 return result;
3157}
3158
3159
ricow@chromium.orgc9c80822010-04-21 08:22:37 +00003160Object* Heap::AllocateRawFixedArray(int length, PretenureFlag pretenure) {
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003161 if (length < 0 || length > FixedArray::kMaxLength) {
3162 return Failure::OutOfMemoryException();
3163 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003164
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003165 AllocationSpace space =
3166 (pretenure == TENURED) ? OLD_POINTER_SPACE : NEW_SPACE;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003167 int size = FixedArray::SizeFor(length);
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003168 if (space == NEW_SPACE && size > kMaxObjectSizeInNewSpace) {
3169 // Too big for new space.
3170 space = LO_SPACE;
3171 } else if (space == OLD_POINTER_SPACE &&
3172 size > MaxObjectSizeInPagedSpace()) {
3173 // Too big for old pointer space.
3174 space = LO_SPACE;
3175 }
3176
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003177 AllocationSpace retry_space =
3178 (size <= MaxObjectSizeInPagedSpace()) ? OLD_POINTER_SPACE : LO_SPACE;
3179
3180 return AllocateRaw(size, space, retry_space);
ricow@chromium.orgc9c80822010-04-21 08:22:37 +00003181}
3182
3183
3184static Object* AllocateFixedArrayWithFiller(int length,
3185 PretenureFlag pretenure,
3186 Object* filler) {
3187 ASSERT(length >= 0);
3188 ASSERT(Heap::empty_fixed_array()->IsFixedArray());
3189 if (length == 0) return Heap::empty_fixed_array();
3190
3191 ASSERT(!Heap::InNewSpace(filler));
3192 Object* result = Heap::AllocateRawFixedArray(length, pretenure);
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00003193 if (result->IsFailure()) return result;
3194
ricow@chromium.orgc9c80822010-04-21 08:22:37 +00003195 HeapObject::cast(result)->set_map(Heap::fixed_array_map());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003196 FixedArray* array = FixedArray::cast(result);
3197 array->set_length(length);
ricow@chromium.orgc9c80822010-04-21 08:22:37 +00003198 MemsetPointer(array->data_start(), filler, length);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003199 return array;
3200}
3201
3202
ricow@chromium.orgc9c80822010-04-21 08:22:37 +00003203Object* Heap::AllocateFixedArray(int length, PretenureFlag pretenure) {
3204 return AllocateFixedArrayWithFiller(length, pretenure, undefined_value());
3205}
3206
3207
3208Object* Heap::AllocateFixedArrayWithHoles(int length, PretenureFlag pretenure) {
3209 return AllocateFixedArrayWithFiller(length, pretenure, the_hole_value());
3210}
3211
3212
ager@chromium.orgce5e87b2010-03-10 10:24:18 +00003213Object* Heap::AllocateUninitializedFixedArray(int length) {
3214 if (length == 0) return empty_fixed_array();
3215
3216 Object* obj = AllocateRawFixedArray(length);
3217 if (obj->IsFailure()) return obj;
3218
3219 reinterpret_cast<FixedArray*>(obj)->set_map(fixed_array_map());
3220 FixedArray::cast(obj)->set_length(length);
3221 return obj;
3222}
3223
3224
ager@chromium.orgce5e87b2010-03-10 10:24:18 +00003225Object* Heap::AllocateHashTable(int length, PretenureFlag pretenure) {
3226 Object* result = Heap::AllocateFixedArray(length, pretenure);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003227 if (result->IsFailure()) return result;
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003228 reinterpret_cast<HeapObject*>(result)->set_map(hash_table_map());
kasperl@chromium.org86f77b72009-07-06 08:21:57 +00003229 ASSERT(result->IsHashTable());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003230 return result;
3231}
3232
3233
3234Object* Heap::AllocateGlobalContext() {
3235 Object* result = Heap::AllocateFixedArray(Context::GLOBAL_CONTEXT_SLOTS);
3236 if (result->IsFailure()) return result;
3237 Context* context = reinterpret_cast<Context*>(result);
3238 context->set_map(global_context_map());
3239 ASSERT(context->IsGlobalContext());
3240 ASSERT(result->IsContext());
3241 return result;
3242}
3243
3244
3245Object* Heap::AllocateFunctionContext(int length, JSFunction* function) {
3246 ASSERT(length >= Context::MIN_CONTEXT_SLOTS);
3247 Object* result = Heap::AllocateFixedArray(length);
3248 if (result->IsFailure()) return result;
3249 Context* context = reinterpret_cast<Context*>(result);
3250 context->set_map(context_map());
3251 context->set_closure(function);
3252 context->set_fcontext(context);
3253 context->set_previous(NULL);
3254 context->set_extension(NULL);
3255 context->set_global(function->context()->global());
3256 ASSERT(!context->IsGlobalContext());
3257 ASSERT(context->is_function_context());
3258 ASSERT(result->IsContext());
3259 return result;
3260}
3261
3262
christian.plesner.hansen@gmail.com37abdec2009-01-06 14:43:28 +00003263Object* Heap::AllocateWithContext(Context* previous,
3264 JSObject* extension,
3265 bool is_catch_context) {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003266 Object* result = Heap::AllocateFixedArray(Context::MIN_CONTEXT_SLOTS);
3267 if (result->IsFailure()) return result;
3268 Context* context = reinterpret_cast<Context*>(result);
christian.plesner.hansen@gmail.com37abdec2009-01-06 14:43:28 +00003269 context->set_map(is_catch_context ? catch_context_map() : context_map());
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003270 context->set_closure(previous->closure());
3271 context->set_fcontext(previous->fcontext());
3272 context->set_previous(previous);
3273 context->set_extension(extension);
3274 context->set_global(previous->global());
3275 ASSERT(!context->IsGlobalContext());
3276 ASSERT(!context->is_function_context());
3277 ASSERT(result->IsContext());
3278 return result;
3279}
3280
3281
3282Object* Heap::AllocateStruct(InstanceType type) {
3283 Map* map;
3284 switch (type) {
3285#define MAKE_CASE(NAME, Name, name) case NAME##_TYPE: map = name##_map(); break;
3286STRUCT_LIST(MAKE_CASE)
3287#undef MAKE_CASE
3288 default:
3289 UNREACHABLE();
3290 return Failure::InternalError();
3291 }
3292 int size = map->instance_size();
3293 AllocationSpace space =
ager@chromium.org5aa501c2009-06-23 07:57:28 +00003294 (size > MaxObjectSizeInPagedSpace()) ? LO_SPACE : OLD_POINTER_SPACE;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003295 Object* result = Heap::Allocate(map, space);
3296 if (result->IsFailure()) return result;
3297 Struct::cast(result)->InitializeBody(size);
3298 return result;
3299}
3300
3301
ager@chromium.org96c75b52009-08-26 09:13:16 +00003302bool Heap::IdleNotification() {
ager@chromium.orga1645e22009-09-09 19:27:10 +00003303 static const int kIdlesBeforeScavenge = 4;
3304 static const int kIdlesBeforeMarkSweep = 7;
3305 static const int kIdlesBeforeMarkCompact = 8;
ager@chromium.org96c75b52009-08-26 09:13:16 +00003306 static int number_idle_notifications = 0;
3307 static int last_gc_count = gc_count_;
3308
ager@chromium.orgce5e87b2010-03-10 10:24:18 +00003309 bool uncommit = true;
ager@chromium.org96c75b52009-08-26 09:13:16 +00003310 bool finished = false;
3311
3312 if (last_gc_count == gc_count_) {
3313 number_idle_notifications++;
3314 } else {
3315 number_idle_notifications = 0;
3316 last_gc_count = gc_count_;
3317 }
3318
ager@chromium.orga1645e22009-09-09 19:27:10 +00003319 if (number_idle_notifications == kIdlesBeforeScavenge) {
ager@chromium.orgce5e87b2010-03-10 10:24:18 +00003320 if (contexts_disposed_ > 0) {
3321 HistogramTimerScope scope(&Counters::gc_context);
3322 CollectAllGarbage(false);
3323 } else {
3324 CollectGarbage(0, NEW_SPACE);
3325 }
ager@chromium.orga1645e22009-09-09 19:27:10 +00003326 new_space_.Shrink();
ager@chromium.org96c75b52009-08-26 09:13:16 +00003327 last_gc_count = gc_count_;
ager@chromium.orga1645e22009-09-09 19:27:10 +00003328
3329 } else if (number_idle_notifications == kIdlesBeforeMarkSweep) {
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00003330 // Before doing the mark-sweep collections we clear the
3331 // compilation cache to avoid hanging on to source code and
3332 // generated code for cached functions.
3333 CompilationCache::Clear();
3334
ager@chromium.orga1645e22009-09-09 19:27:10 +00003335 CollectAllGarbage(false);
3336 new_space_.Shrink();
3337 last_gc_count = gc_count_;
3338
3339 } else if (number_idle_notifications == kIdlesBeforeMarkCompact) {
3340 CollectAllGarbage(true);
3341 new_space_.Shrink();
3342 last_gc_count = gc_count_;
3343 number_idle_notifications = 0;
3344 finished = true;
ager@chromium.orgce5e87b2010-03-10 10:24:18 +00003345
3346 } else if (contexts_disposed_ > 0) {
3347 if (FLAG_expose_gc) {
3348 contexts_disposed_ = 0;
3349 } else {
3350 HistogramTimerScope scope(&Counters::gc_context);
3351 CollectAllGarbage(false);
3352 last_gc_count = gc_count_;
3353 }
3354 // If this is the first idle notification, we reset the
3355 // notification count to avoid letting idle notifications for
3356 // context disposal garbage collections start a potentially too
3357 // aggressive idle GC cycle.
3358 if (number_idle_notifications <= 1) {
3359 number_idle_notifications = 0;
3360 uncommit = false;
3361 }
ager@chromium.org96c75b52009-08-26 09:13:16 +00003362 }
3363
ager@chromium.orgce5e87b2010-03-10 10:24:18 +00003364 // Make sure that we have no pending context disposals and
3365 // conditionally uncommit from space.
3366 ASSERT(contexts_disposed_ == 0);
3367 if (uncommit) Heap::UncommitFromSpace();
ager@chromium.org96c75b52009-08-26 09:13:16 +00003368 return finished;
3369}
3370
3371
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003372#ifdef DEBUG
3373
3374void Heap::Print() {
3375 if (!HasBeenSetup()) return;
3376 Top::PrintStack();
ager@chromium.org9258b6b2008-09-11 09:11:10 +00003377 AllSpaces spaces;
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00003378 for (Space* space = spaces.next(); space != NULL; space = spaces.next())
3379 space->Print();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003380}
3381
3382
3383void Heap::ReportCodeStatistics(const char* title) {
3384 PrintF(">>>>>> Code Stats (%s) >>>>>>\n", title);
3385 PagedSpace::ResetCodeStatistics();
3386 // We do not look for code in new space, map space, or old space. If code
3387 // somehow ends up in those spaces, we would miss it here.
3388 code_space_->CollectCodeStatistics();
3389 lo_space_->CollectCodeStatistics();
3390 PagedSpace::ReportCodeStatistics();
3391}
3392
3393
3394// This function expects that NewSpace's allocated objects histogram is
3395// populated (via a call to CollectStatistics or else as a side effect of a
3396// just-completed scavenge collection).
3397void Heap::ReportHeapStatistics(const char* title) {
3398 USE(title);
3399 PrintF(">>>>>> =============== %s (%d) =============== >>>>>>\n",
3400 title, gc_count_);
3401 PrintF("mark-compact GC : %d\n", mc_count_);
kasperl@chromium.org9bbf9682008-10-30 11:53:07 +00003402 PrintF("old_gen_promotion_limit_ %d\n", old_gen_promotion_limit_);
3403 PrintF("old_gen_allocation_limit_ %d\n", old_gen_allocation_limit_);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003404
3405 PrintF("\n");
3406 PrintF("Number of handles : %d\n", HandleScope::NumberOfHandles());
3407 GlobalHandles::PrintStats();
3408 PrintF("\n");
3409
3410 PrintF("Heap statistics : ");
3411 MemoryAllocator::ReportStatistics();
3412 PrintF("To space : ");
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003413 new_space_.ReportStatistics();
ager@chromium.org9258b6b2008-09-11 09:11:10 +00003414 PrintF("Old pointer space : ");
3415 old_pointer_space_->ReportStatistics();
3416 PrintF("Old data space : ");
3417 old_data_space_->ReportStatistics();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003418 PrintF("Code space : ");
3419 code_space_->ReportStatistics();
3420 PrintF("Map space : ");
3421 map_space_->ReportStatistics();
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00003422 PrintF("Cell space : ");
3423 cell_space_->ReportStatistics();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003424 PrintF("Large object space : ");
3425 lo_space_->ReportStatistics();
3426 PrintF(">>>>>> ========================================= >>>>>>\n");
3427}
3428
3429#endif // DEBUG
3430
3431bool Heap::Contains(HeapObject* value) {
3432 return Contains(value->address());
3433}
3434
3435
3436bool Heap::Contains(Address addr) {
3437 if (OS::IsOutsideAllocatedSpace(addr)) return false;
3438 return HasBeenSetup() &&
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003439 (new_space_.ToSpaceContains(addr) ||
ager@chromium.org9258b6b2008-09-11 09:11:10 +00003440 old_pointer_space_->Contains(addr) ||
3441 old_data_space_->Contains(addr) ||
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003442 code_space_->Contains(addr) ||
3443 map_space_->Contains(addr) ||
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00003444 cell_space_->Contains(addr) ||
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003445 lo_space_->SlowContains(addr));
3446}
3447
3448
3449bool Heap::InSpace(HeapObject* value, AllocationSpace space) {
3450 return InSpace(value->address(), space);
3451}
3452
3453
3454bool Heap::InSpace(Address addr, AllocationSpace space) {
3455 if (OS::IsOutsideAllocatedSpace(addr)) return false;
3456 if (!HasBeenSetup()) return false;
3457
3458 switch (space) {
3459 case NEW_SPACE:
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003460 return new_space_.ToSpaceContains(addr);
ager@chromium.org9258b6b2008-09-11 09:11:10 +00003461 case OLD_POINTER_SPACE:
3462 return old_pointer_space_->Contains(addr);
3463 case OLD_DATA_SPACE:
3464 return old_data_space_->Contains(addr);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003465 case CODE_SPACE:
3466 return code_space_->Contains(addr);
3467 case MAP_SPACE:
3468 return map_space_->Contains(addr);
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00003469 case CELL_SPACE:
3470 return cell_space_->Contains(addr);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003471 case LO_SPACE:
3472 return lo_space_->SlowContains(addr);
3473 }
3474
3475 return false;
3476}
3477
3478
3479#ifdef DEBUG
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003480static void DummyScavengePointer(HeapObject** p) {
3481}
3482
3483
3484static void VerifyPointersUnderWatermark(
3485 PagedSpace* space,
3486 DirtyRegionCallback visit_dirty_region) {
3487 PageIterator it(space, PageIterator::PAGES_IN_USE);
3488
3489 while (it.has_next()) {
3490 Page* page = it.next();
3491 Address start = page->ObjectAreaStart();
3492 Address end = page->AllocationWatermark();
3493
3494 Heap::IterateDirtyRegions(Page::kAllRegionsDirtyMarks,
3495 start,
3496 end,
3497 visit_dirty_region,
3498 &DummyScavengePointer);
3499 }
3500}
3501
3502
3503static void VerifyPointersUnderWatermark(LargeObjectSpace* space) {
3504 LargeObjectIterator it(space);
3505 for (HeapObject* object = it.next(); object != NULL; object = it.next()) {
3506 if (object->IsFixedArray()) {
3507 Address slot_address = object->address();
3508 Address end = object->address() + object->Size();
3509
3510 while (slot_address < end) {
3511 HeapObject** slot = reinterpret_cast<HeapObject**>(slot_address);
3512 // When we are not in GC the Heap::InNewSpace() predicate
3513 // checks that pointers which satisfy predicate point into
3514 // the active semispace.
3515 Heap::InNewSpace(*slot);
3516 slot_address += kPointerSize;
3517 }
3518 }
3519 }
3520}
3521
3522
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003523void Heap::Verify() {
3524 ASSERT(HasBeenSetup());
3525
3526 VerifyPointersVisitor visitor;
ager@chromium.orgc4c92722009-11-18 14:12:51 +00003527 IterateRoots(&visitor, VISIT_ONLY_STRONG);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003528
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00003529 new_space_.Verify();
3530
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003531 VerifyPointersAndDirtyRegionsVisitor dirty_regions_visitor;
3532 old_pointer_space_->Verify(&dirty_regions_visitor);
3533 map_space_->Verify(&dirty_regions_visitor);
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00003534
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003535 VerifyPointersUnderWatermark(old_pointer_space_,
3536 &IteratePointersInDirtyRegion);
3537 VerifyPointersUnderWatermark(map_space_,
3538 &IteratePointersInDirtyMapsRegion);
3539 VerifyPointersUnderWatermark(lo_space_);
3540
3541 VerifyPageWatermarkValidity(old_pointer_space_, ALL_INVALID);
3542 VerifyPageWatermarkValidity(map_space_, ALL_INVALID);
3543
3544 VerifyPointersVisitor no_dirty_regions_visitor;
3545 old_data_space_->Verify(&no_dirty_regions_visitor);
3546 code_space_->Verify(&no_dirty_regions_visitor);
3547 cell_space_->Verify(&no_dirty_regions_visitor);
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00003548
3549 lo_space_->Verify();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003550}
3551#endif // DEBUG
3552
3553
3554Object* Heap::LookupSymbol(Vector<const char> string) {
3555 Object* symbol = NULL;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00003556 Object* new_table = symbol_table()->LookupSymbol(string, &symbol);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003557 if (new_table->IsFailure()) return new_table;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00003558 // Can't use set_symbol_table because SymbolTable::cast knows that
3559 // SymbolTable is a singleton and checks for identity.
3560 roots_[kSymbolTableRootIndex] = new_table;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003561 ASSERT(symbol != NULL);
3562 return symbol;
3563}
3564
3565
3566Object* Heap::LookupSymbol(String* string) {
3567 if (string->IsSymbol()) return string;
3568 Object* symbol = NULL;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00003569 Object* new_table = symbol_table()->LookupString(string, &symbol);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003570 if (new_table->IsFailure()) return new_table;
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00003571 // Can't use set_symbol_table because SymbolTable::cast knows that
3572 // SymbolTable is a singleton and checks for identity.
3573 roots_[kSymbolTableRootIndex] = new_table;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003574 ASSERT(symbol != NULL);
3575 return symbol;
3576}
3577
3578
ager@chromium.org7c537e22008-10-16 08:43:32 +00003579bool Heap::LookupSymbolIfExists(String* string, String** symbol) {
3580 if (string->IsSymbol()) {
3581 *symbol = string;
3582 return true;
3583 }
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00003584 return symbol_table()->LookupSymbolIfExists(string, symbol);
ager@chromium.org7c537e22008-10-16 08:43:32 +00003585}
3586
3587
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003588#ifdef DEBUG
3589void Heap::ZapFromSpace() {
ager@chromium.org18ad94b2009-09-02 08:22:29 +00003590 ASSERT(reinterpret_cast<Object*>(kFromSpaceZapValue)->IsHeapObject());
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00003591 for (Address a = new_space_.FromSpaceLow();
3592 a < new_space_.FromSpaceHigh();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003593 a += kPointerSize) {
3594 Memory::Address_at(a) = kFromSpaceZapValue;
3595 }
3596}
3597#endif // DEBUG
3598
3599
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003600bool Heap::IteratePointersInDirtyRegion(Address start,
3601 Address end,
3602 ObjectSlotCallback copy_object_func) {
3603 Address slot_address = start;
3604 bool pointers_to_new_space_found = false;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003605
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003606 while (slot_address < end) {
3607 Object** slot = reinterpret_cast<Object**>(slot_address);
3608 if (Heap::InNewSpace(*slot)) {
3609 ASSERT((*slot)->IsHeapObject());
3610 copy_object_func(reinterpret_cast<HeapObject**>(slot));
3611 if (Heap::InNewSpace(*slot)) {
3612 ASSERT((*slot)->IsHeapObject());
3613 pointers_to_new_space_found = true;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003614 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003615 }
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003616 slot_address += kPointerSize;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003617 }
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003618 return pointers_to_new_space_found;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003619}
3620
3621
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003622// Compute start address of the first map following given addr.
3623static inline Address MapStartAlign(Address addr) {
3624 Address page = Page::FromAddress(addr)->ObjectAreaStart();
3625 return page + (((addr - page) + (Map::kSize - 1)) / Map::kSize * Map::kSize);
3626}
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003627
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003628
3629// Compute end address of the first map preceding given addr.
3630static inline Address MapEndAlign(Address addr) {
3631 Address page = Page::FromAllocationTop(addr)->ObjectAreaStart();
3632 return page + ((addr - page) / Map::kSize * Map::kSize);
3633}
3634
3635
3636static bool IteratePointersInDirtyMaps(Address start,
3637 Address end,
3638 ObjectSlotCallback copy_object_func) {
3639 ASSERT(MapStartAlign(start) == start);
3640 ASSERT(MapEndAlign(end) == end);
3641
3642 Address map_address = start;
3643 bool pointers_to_new_space_found = false;
3644
3645 while (map_address < end) {
3646 ASSERT(!Heap::InNewSpace(Memory::Object_at(map_address)));
3647 ASSERT(Memory::Object_at(map_address)->IsMap());
3648
3649 Address pointer_fields_start = map_address + Map::kPointerFieldsBeginOffset;
3650 Address pointer_fields_end = map_address + Map::kPointerFieldsEndOffset;
3651
3652 if (Heap::IteratePointersInDirtyRegion(pointer_fields_start,
3653 pointer_fields_end,
3654 copy_object_func)) {
3655 pointers_to_new_space_found = true;
3656 }
3657
3658 map_address += Map::kSize;
3659 }
3660
3661 return pointers_to_new_space_found;
3662}
3663
3664
3665bool Heap::IteratePointersInDirtyMapsRegion(
3666 Address start,
3667 Address end,
3668 ObjectSlotCallback copy_object_func) {
3669 Address map_aligned_start = MapStartAlign(start);
3670 Address map_aligned_end = MapEndAlign(end);
3671
3672 bool contains_pointers_to_new_space = false;
3673
3674 if (map_aligned_start != start) {
3675 Address prev_map = map_aligned_start - Map::kSize;
3676 ASSERT(Memory::Object_at(prev_map)->IsMap());
3677
3678 Address pointer_fields_start =
3679 Max(start, prev_map + Map::kPointerFieldsBeginOffset);
3680
3681 Address pointer_fields_end =
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00003682 Min(prev_map + Map::kPointerFieldsEndOffset, end);
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003683
3684 contains_pointers_to_new_space =
3685 IteratePointersInDirtyRegion(pointer_fields_start,
3686 pointer_fields_end,
3687 copy_object_func)
3688 || contains_pointers_to_new_space;
3689 }
3690
3691 contains_pointers_to_new_space =
3692 IteratePointersInDirtyMaps(map_aligned_start,
3693 map_aligned_end,
3694 copy_object_func)
3695 || contains_pointers_to_new_space;
3696
3697 if (map_aligned_end != end) {
3698 ASSERT(Memory::Object_at(map_aligned_end)->IsMap());
3699
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00003700 Address pointer_fields_start =
3701 map_aligned_end + Map::kPointerFieldsBeginOffset;
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003702
3703 Address pointer_fields_end =
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00003704 Min(end, map_aligned_end + Map::kPointerFieldsEndOffset);
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003705
3706 contains_pointers_to_new_space =
3707 IteratePointersInDirtyRegion(pointer_fields_start,
3708 pointer_fields_end,
3709 copy_object_func)
3710 || contains_pointers_to_new_space;
3711 }
3712
3713 return contains_pointers_to_new_space;
3714}
3715
3716
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00003717void Heap::IterateAndMarkPointersToFromSpace(Address start,
3718 Address end,
3719 ObjectSlotCallback callback) {
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003720 Address slot_address = start;
3721 Page* page = Page::FromAddress(start);
3722
3723 uint32_t marks = page->GetRegionMarks();
3724
3725 while (slot_address < end) {
3726 Object** slot = reinterpret_cast<Object**>(slot_address);
ager@chromium.org6a2b0aa2010-07-13 20:58:03 +00003727 if (Heap::InFromSpace(*slot)) {
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003728 ASSERT((*slot)->IsHeapObject());
3729 callback(reinterpret_cast<HeapObject**>(slot));
3730 if (Heap::InNewSpace(*slot)) {
3731 ASSERT((*slot)->IsHeapObject());
3732 marks |= page->GetRegionMaskForAddress(slot_address);
3733 }
3734 }
3735 slot_address += kPointerSize;
3736 }
3737
3738 page->SetRegionMarks(marks);
3739}
3740
3741
3742uint32_t Heap::IterateDirtyRegions(
3743 uint32_t marks,
3744 Address area_start,
3745 Address area_end,
3746 DirtyRegionCallback visit_dirty_region,
3747 ObjectSlotCallback copy_object_func) {
3748 uint32_t newmarks = 0;
3749 uint32_t mask = 1;
3750
3751 if (area_start >= area_end) {
3752 return newmarks;
3753 }
3754
3755 Address region_start = area_start;
3756
3757 // area_start does not necessarily coincide with start of the first region.
3758 // Thus to calculate the beginning of the next region we have to align
3759 // area_start by Page::kRegionSize.
3760 Address second_region =
3761 reinterpret_cast<Address>(
3762 reinterpret_cast<intptr_t>(area_start + Page::kRegionSize) &
3763 ~Page::kRegionAlignmentMask);
3764
3765 // Next region might be beyond area_end.
3766 Address region_end = Min(second_region, area_end);
3767
3768 if (marks & mask) {
3769 if (visit_dirty_region(region_start, region_end, copy_object_func)) {
3770 newmarks |= mask;
3771 }
3772 }
3773 mask <<= 1;
3774
3775 // Iterate subsequent regions which fully lay inside [area_start, area_end[.
3776 region_start = region_end;
3777 region_end = region_start + Page::kRegionSize;
3778
3779 while (region_end <= area_end) {
3780 if (marks & mask) {
3781 if (visit_dirty_region(region_start, region_end, copy_object_func)) {
3782 newmarks |= mask;
3783 }
3784 }
3785
3786 region_start = region_end;
3787 region_end = region_start + Page::kRegionSize;
3788
3789 mask <<= 1;
3790 }
3791
3792 if (region_start != area_end) {
3793 // A small piece of area left uniterated because area_end does not coincide
3794 // with region end. Check whether region covering last part of area is
3795 // dirty.
3796 if (marks & mask) {
3797 if (visit_dirty_region(region_start, area_end, copy_object_func)) {
3798 newmarks |= mask;
3799 }
3800 }
3801 }
3802
3803 return newmarks;
3804}
3805
3806
3807
3808void Heap::IterateDirtyRegions(
3809 PagedSpace* space,
3810 DirtyRegionCallback visit_dirty_region,
3811 ObjectSlotCallback copy_object_func,
3812 ExpectedPageWatermarkState expected_page_watermark_state) {
kasperl@chromium.org71affb52009-05-26 05:44:31 +00003813
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003814 PageIterator it(space, PageIterator::PAGES_IN_USE);
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003815
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003816 while (it.has_next()) {
3817 Page* page = it.next();
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003818 uint32_t marks = page->GetRegionMarks();
3819
3820 if (marks != Page::kAllRegionsCleanMarks) {
3821 Address start = page->ObjectAreaStart();
3822
3823 // Do not try to visit pointers beyond page allocation watermark.
3824 // Page can contain garbage pointers there.
3825 Address end;
3826
3827 if ((expected_page_watermark_state == WATERMARK_SHOULD_BE_VALID) ||
3828 page->IsWatermarkValid()) {
3829 end = page->AllocationWatermark();
3830 } else {
3831 end = page->CachedAllocationWatermark();
3832 }
3833
3834 ASSERT(space == old_pointer_space_ ||
3835 (space == map_space_ &&
3836 ((page->ObjectAreaStart() - end) % Map::kSize == 0)));
3837
3838 page->SetRegionMarks(IterateDirtyRegions(marks,
3839 start,
3840 end,
3841 visit_dirty_region,
3842 copy_object_func));
kasperl@chromium.org71affb52009-05-26 05:44:31 +00003843 }
ricow@chromium.org30ce4112010-05-31 10:38:25 +00003844
3845 // Mark page watermark as invalid to maintain watermark validity invariant.
3846 // See Page::FlipMeaningOfInvalidatedWatermarkFlag() for details.
3847 page->InvalidateWatermark(true);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003848 }
3849}
3850
3851
ager@chromium.orgc4c92722009-11-18 14:12:51 +00003852void Heap::IterateRoots(ObjectVisitor* v, VisitMode mode) {
3853 IterateStrongRoots(v, mode);
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00003854 IterateWeakRoots(v, mode);
3855}
3856
3857
3858void Heap::IterateWeakRoots(ObjectVisitor* v, VisitMode mode) {
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00003859 v->VisitPointer(reinterpret_cast<Object**>(&roots_[kSymbolTableRootIndex]));
ager@chromium.org3811b432009-10-28 14:53:37 +00003860 v->Synchronize("symbol_table");
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00003861 if (mode != VISIT_ALL_IN_SCAVENGE) {
3862 // Scavenge collections have special processing for this.
3863 ExternalStringTable::Iterate(v);
3864 }
3865 v->Synchronize("external_string_table");
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003866}
3867
3868
ager@chromium.orgc4c92722009-11-18 14:12:51 +00003869void Heap::IterateStrongRoots(ObjectVisitor* v, VisitMode mode) {
kasperl@chromium.org68ac0092009-07-09 06:00:35 +00003870 v->VisitPointers(&roots_[0], &roots_[kStrongRootListLength]);
ager@chromium.org3811b432009-10-28 14:53:37 +00003871 v->Synchronize("strong_root_list");
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003872
vegorov@chromium.org26c16f82010-08-11 13:41:03 +00003873 v->VisitPointer(BitCast<Object**>(&hidden_symbol_));
ager@chromium.org3811b432009-10-28 14:53:37 +00003874 v->Synchronize("symbol");
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003875
3876 Bootstrapper::Iterate(v);
ager@chromium.org3811b432009-10-28 14:53:37 +00003877 v->Synchronize("bootstrapper");
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003878 Top::Iterate(v);
ager@chromium.org3811b432009-10-28 14:53:37 +00003879 v->Synchronize("top");
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +00003880 Relocatable::Iterate(v);
ager@chromium.org3811b432009-10-28 14:53:37 +00003881 v->Synchronize("relocatable");
ager@chromium.org65dad4b2009-04-23 08:48:43 +00003882
3883#ifdef ENABLE_DEBUGGER_SUPPORT
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003884 Debug::Iterate(v);
ager@chromium.org65dad4b2009-04-23 08:48:43 +00003885#endif
ager@chromium.org3811b432009-10-28 14:53:37 +00003886 v->Synchronize("debug");
kasperl@chromium.orgb9123622008-09-17 14:05:56 +00003887 CompilationCache::Iterate(v);
ager@chromium.org3811b432009-10-28 14:53:37 +00003888 v->Synchronize("compilationcache");
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003889
3890 // Iterate over local handles in handle scopes.
3891 HandleScopeImplementer::Iterate(v);
ager@chromium.org3811b432009-10-28 14:53:37 +00003892 v->Synchronize("handlescope");
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003893
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00003894 // Iterate over the builtin code objects and code stubs in the
3895 // heap. Note that it is not necessary to iterate over code objects
3896 // on scavenge collections.
3897 if (mode != VISIT_ALL_IN_SCAVENGE) {
3898 Builtins::IterateBuiltins(v);
3899 }
ager@chromium.org3811b432009-10-28 14:53:37 +00003900 v->Synchronize("builtins");
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003901
3902 // Iterate over global handles.
ager@chromium.orgc4c92722009-11-18 14:12:51 +00003903 if (mode == VISIT_ONLY_STRONG) {
3904 GlobalHandles::IterateStrongRoots(v);
3905 } else {
3906 GlobalHandles::IterateAllRoots(v);
3907 }
ager@chromium.org3811b432009-10-28 14:53:37 +00003908 v->Synchronize("globalhandles");
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003909
3910 // Iterate over pointers being held by inactive threads.
3911 ThreadManager::Iterate(v);
ager@chromium.org3811b432009-10-28 14:53:37 +00003912 v->Synchronize("threadmanager");
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00003913
3914 // Iterate over the pointers the Serialization/Deserialization code is
3915 // holding.
3916 // During garbage collection this keeps the partial snapshot cache alive.
3917 // During deserialization of the startup snapshot this creates the partial
3918 // snapshot cache and deserializes the objects it refers to. During
3919 // serialization this does nothing, since the partial snapshot cache is
3920 // empty. However the next thing we do is create the partial snapshot,
3921 // filling up the partial snapshot cache with objects it needs as we go.
3922 SerializerDeserializer::Iterate(v);
3923 // We don't do a v->Synchronize call here, because in debug mode that will
3924 // output a flag to the snapshot. However at this point the serializer and
3925 // deserializer are deliberately a little unsynchronized (see above) so the
3926 // checking of the sync flag in the snapshot would fail.
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003927}
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003928
3929
3930// Flag is set when the heap has been configured. The heap can be repeatedly
3931// configured through the API until it is setup.
3932static bool heap_configured = false;
3933
3934// TODO(1236194): Since the heap size is configurable on the command line
3935// and through the API, we should gracefully handle the case that the heap
3936// size is not big enough to fit all the initial objects.
ager@chromium.org3811b432009-10-28 14:53:37 +00003937bool Heap::ConfigureHeap(int max_semispace_size, int max_old_gen_size) {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003938 if (HasBeenSetup()) return false;
3939
ager@chromium.org3811b432009-10-28 14:53:37 +00003940 if (max_semispace_size > 0) max_semispace_size_ = max_semispace_size;
3941
3942 if (Snapshot::IsEnabled()) {
3943 // If we are using a snapshot we always reserve the default amount
3944 // of memory for each semispace because code in the snapshot has
3945 // write-barrier code that relies on the size and alignment of new
3946 // space. We therefore cannot use a larger max semispace size
3947 // than the default reserved semispace size.
3948 if (max_semispace_size_ > reserved_semispace_size_) {
3949 max_semispace_size_ = reserved_semispace_size_;
3950 }
3951 } else {
3952 // If we are not using snapshots we reserve space for the actual
3953 // max semispace size.
3954 reserved_semispace_size_ = max_semispace_size_;
3955 }
3956
3957 if (max_old_gen_size > 0) max_old_generation_size_ = max_old_gen_size;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003958
3959 // The new space size must be a power of two to support single-bit testing
3960 // for containment.
ager@chromium.org3811b432009-10-28 14:53:37 +00003961 max_semispace_size_ = RoundUpToPowerOf2(max_semispace_size_);
3962 reserved_semispace_size_ = RoundUpToPowerOf2(reserved_semispace_size_);
3963 initial_semispace_size_ = Min(initial_semispace_size_, max_semispace_size_);
3964 external_allocation_limit_ = 10 * max_semispace_size_;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003965
3966 // The old generation is paged.
ager@chromium.org3811b432009-10-28 14:53:37 +00003967 max_old_generation_size_ = RoundUp(max_old_generation_size_, Page::kPageSize);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00003968
3969 heap_configured = true;
3970 return true;
3971}
3972
3973
kasper.lund7276f142008-07-30 08:49:36 +00003974bool Heap::ConfigureHeapDefault() {
ager@chromium.org3811b432009-10-28 14:53:37 +00003975 return ConfigureHeap(FLAG_max_new_space_size / 2, FLAG_max_old_space_size);
kasper.lund7276f142008-07-30 08:49:36 +00003976}
3977
3978
lrn@chromium.orgc4e51ac2010-08-09 09:47:21 +00003979void Heap::RecordStats(HeapStats* stats, bool take_snapshot) {
ricow@chromium.org0b9f8502010-08-18 07:45:01 +00003980 *stats->start_marker = HeapStats::kStartMarker;
3981 *stats->end_marker = HeapStats::kEndMarker;
sgjesse@chromium.orgac6aa172009-12-04 12:29:05 +00003982 *stats->new_space_size = new_space_.Size();
3983 *stats->new_space_capacity = new_space_.Capacity();
3984 *stats->old_pointer_space_size = old_pointer_space_->Size();
3985 *stats->old_pointer_space_capacity = old_pointer_space_->Capacity();
3986 *stats->old_data_space_size = old_data_space_->Size();
3987 *stats->old_data_space_capacity = old_data_space_->Capacity();
3988 *stats->code_space_size = code_space_->Size();
3989 *stats->code_space_capacity = code_space_->Capacity();
3990 *stats->map_space_size = map_space_->Size();
3991 *stats->map_space_capacity = map_space_->Capacity();
3992 *stats->cell_space_size = cell_space_->Size();
3993 *stats->cell_space_capacity = cell_space_->Capacity();
3994 *stats->lo_space_size = lo_space_->Size();
ager@chromium.org60121232009-12-03 11:25:37 +00003995 GlobalHandles::RecordStats(stats);
lrn@chromium.orgc4e51ac2010-08-09 09:47:21 +00003996 *stats->memory_allocator_size = MemoryAllocator::Size();
3997 *stats->memory_allocator_capacity =
3998 MemoryAllocator::Size() + MemoryAllocator::Available();
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00003999 *stats->os_error = OS::GetLastError();
lrn@chromium.orgc4e51ac2010-08-09 09:47:21 +00004000 if (take_snapshot) {
4001 HeapIterator iterator;
4002 for (HeapObject* obj = iterator.next();
4003 obj != NULL;
4004 obj = iterator.next()) {
4005 // Note: snapshot won't be precise because IsFreeListNode returns true
4006 // for any bytearray.
4007 if (FreeListNode::IsFreeListNode(obj)) continue;
4008 InstanceType type = obj->map()->instance_type();
4009 ASSERT(0 <= type && type <= LAST_TYPE);
4010 stats->objects_per_type[type]++;
4011 stats->size_per_type[type] += obj->Size();
4012 }
4013 }
ager@chromium.org60121232009-12-03 11:25:37 +00004014}
4015
4016
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004017int Heap::PromotedSpaceSize() {
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004018 return old_pointer_space_->Size()
4019 + old_data_space_->Size()
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004020 + code_space_->Size()
4021 + map_space_->Size()
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004022 + cell_space_->Size()
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004023 + lo_space_->Size();
4024}
4025
4026
kasper.lund7276f142008-07-30 08:49:36 +00004027int Heap::PromotedExternalMemorySize() {
4028 if (amount_of_external_allocated_memory_
4029 <= amount_of_external_allocated_memory_at_last_global_gc_) return 0;
4030 return amount_of_external_allocated_memory_
4031 - amount_of_external_allocated_memory_at_last_global_gc_;
4032}
4033
4034
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004035bool Heap::Setup(bool create_heap_objects) {
4036 // Initialize heap spaces and initial maps and objects. Whenever something
4037 // goes wrong, just return false. The caller should check the results and
4038 // call Heap::TearDown() to release allocated memory.
4039 //
4040 // If the heap is not yet configured (eg, through the API), configure it.
4041 // Configuration is based on the flags new-space-size (really the semispace
4042 // size) and old-space-size if set or the initial values of semispace_size_
4043 // and old_generation_size_ otherwise.
4044 if (!heap_configured) {
kasper.lund7276f142008-07-30 08:49:36 +00004045 if (!ConfigureHeapDefault()) return false;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004046 }
4047
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00004048 ScavengingVisitor::Initialize();
4049 NewSpaceScavenger::Initialize();
4050 MarkCompactCollector::Initialize();
4051
ager@chromium.orga1645e22009-09-09 19:27:10 +00004052 // Setup memory allocator and reserve a chunk of memory for new
ager@chromium.org3811b432009-10-28 14:53:37 +00004053 // space. The chunk is double the size of the requested reserved
4054 // new space size to ensure that we can find a pair of semispaces that
4055 // are contiguous and aligned to their size.
4056 if (!MemoryAllocator::Setup(MaxReserved())) return false;
ager@chromium.orga1645e22009-09-09 19:27:10 +00004057 void* chunk =
ager@chromium.org3811b432009-10-28 14:53:37 +00004058 MemoryAllocator::ReserveInitialChunk(4 * reserved_semispace_size_);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004059 if (chunk == NULL) return false;
4060
ager@chromium.orga1645e22009-09-09 19:27:10 +00004061 // Align the pair of semispaces to their size, which must be a power
4062 // of 2.
ager@chromium.orga1645e22009-09-09 19:27:10 +00004063 Address new_space_start =
ager@chromium.org3811b432009-10-28 14:53:37 +00004064 RoundUp(reinterpret_cast<byte*>(chunk), 2 * reserved_semispace_size_);
4065 if (!new_space_.Setup(new_space_start, 2 * reserved_semispace_size_)) {
4066 return false;
4067 }
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004068
ager@chromium.orga1645e22009-09-09 19:27:10 +00004069 // Initialize old pointer space.
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004070 old_pointer_space_ =
ager@chromium.org3811b432009-10-28 14:53:37 +00004071 new OldSpace(max_old_generation_size_, OLD_POINTER_SPACE, NOT_EXECUTABLE);
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004072 if (old_pointer_space_ == NULL) return false;
ager@chromium.orga1645e22009-09-09 19:27:10 +00004073 if (!old_pointer_space_->Setup(NULL, 0)) return false;
4074
4075 // Initialize old data space.
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004076 old_data_space_ =
ager@chromium.org3811b432009-10-28 14:53:37 +00004077 new OldSpace(max_old_generation_size_, OLD_DATA_SPACE, NOT_EXECUTABLE);
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004078 if (old_data_space_ == NULL) return false;
ager@chromium.orga1645e22009-09-09 19:27:10 +00004079 if (!old_data_space_->Setup(NULL, 0)) return false;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004080
4081 // Initialize the code space, set its maximum capacity to the old
kasper.lund7276f142008-07-30 08:49:36 +00004082 // generation size. It needs executable memory.
sgjesse@chromium.orgc5145742009-10-07 09:00:33 +00004083 // On 64-bit platform(s), we put all code objects in a 2 GB range of
4084 // virtual address space, so that they can call each other with near calls.
4085 if (code_range_size_ > 0) {
4086 if (!CodeRange::Setup(code_range_size_)) {
4087 return false;
4088 }
4089 }
4090
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004091 code_space_ =
ager@chromium.org3811b432009-10-28 14:53:37 +00004092 new OldSpace(max_old_generation_size_, CODE_SPACE, EXECUTABLE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004093 if (code_space_ == NULL) return false;
ager@chromium.orga1645e22009-09-09 19:27:10 +00004094 if (!code_space_->Setup(NULL, 0)) return false;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004095
4096 // Initialize map space.
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00004097 map_space_ = new MapSpace(FLAG_use_big_map_space
4098 ? max_old_generation_size_
kasperl@chromium.orgeac059f2010-01-25 11:02:06 +00004099 : MapSpace::kMaxMapPageIndex * Page::kPageSize,
4100 FLAG_max_map_space_pages,
fschneider@chromium.org0c20e672010-01-14 15:28:53 +00004101 MAP_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004102 if (map_space_ == NULL) return false;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004103 if (!map_space_->Setup(NULL, 0)) return false;
4104
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004105 // Initialize global property cell space.
ager@chromium.org3811b432009-10-28 14:53:37 +00004106 cell_space_ = new CellSpace(max_old_generation_size_, CELL_SPACE);
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004107 if (cell_space_ == NULL) return false;
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004108 if (!cell_space_->Setup(NULL, 0)) return false;
4109
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004110 // The large object code space may contain code or data. We set the memory
4111 // to be non-executable here for safety, but this means we need to enable it
4112 // explicitly when allocating large code objects.
4113 lo_space_ = new LargeObjectSpace(LO_SPACE);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004114 if (lo_space_ == NULL) return false;
4115 if (!lo_space_->Setup()) return false;
4116
4117 if (create_heap_objects) {
4118 // Create initial maps.
4119 if (!CreateInitialMaps()) return false;
4120 if (!CreateApiObjects()) return false;
4121
4122 // Create initial objects
4123 if (!CreateInitialObjects()) return false;
4124 }
4125
4126 LOG(IntEvent("heap-capacity", Capacity()));
4127 LOG(IntEvent("heap-available", Available()));
4128
ager@chromium.org3811b432009-10-28 14:53:37 +00004129#ifdef ENABLE_LOGGING_AND_PROFILING
christian.plesner.hansen@gmail.com9d58c2b2009-10-16 11:48:38 +00004130 // This should be called only after initial objects have been created.
4131 ProducerHeapProfile::Setup();
ager@chromium.org3811b432009-10-28 14:53:37 +00004132#endif
christian.plesner.hansen@gmail.com9d58c2b2009-10-16 11:48:38 +00004133
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004134 return true;
4135}
4136
4137
ager@chromium.orgc4c92722009-11-18 14:12:51 +00004138void Heap::SetStackLimits() {
ager@chromium.org18ad94b2009-09-02 08:22:29 +00004139 // On 64 bit machines, pointers are generally out of range of Smis. We write
4140 // something that looks like an out of range Smi to the GC.
4141
ager@chromium.orgc4c92722009-11-18 14:12:51 +00004142 // Set up the special root array entries containing the stack limits.
4143 // These are actually addresses, but the tag makes the GC ignore it.
ager@chromium.org18ad94b2009-09-02 08:22:29 +00004144 roots_[kStackLimitRootIndex] =
ager@chromium.orgc4c92722009-11-18 14:12:51 +00004145 reinterpret_cast<Object*>(
4146 (StackGuard::jslimit() & ~kSmiTagMask) | kSmiTag);
4147 roots_[kRealStackLimitRootIndex] =
4148 reinterpret_cast<Object*>(
4149 (StackGuard::real_jslimit() & ~kSmiTagMask) | kSmiTag);
ager@chromium.org18ad94b2009-09-02 08:22:29 +00004150}
4151
4152
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004153void Heap::TearDown() {
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +00004154 if (FLAG_print_cumulative_gc_stat) {
4155 PrintF("\n\n");
4156 PrintF("gc_count=%d ", gc_count_);
4157 PrintF("mark_sweep_count=%d ", ms_count_);
4158 PrintF("mark_compact_count=%d ", mc_count_);
4159 PrintF("max_gc_pause=%d ", GCTracer::get_max_gc_pause());
4160 PrintF("min_in_mutator=%d ", GCTracer::get_min_in_mutator());
4161 PrintF("max_alive_after_gc=%d ", GCTracer::get_max_alive_after_gc());
4162 PrintF("\n\n");
4163 }
4164
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004165 GlobalHandles::TearDown();
4166
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00004167 ExternalStringTable::TearDown();
4168
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00004169 new_space_.TearDown();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004170
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004171 if (old_pointer_space_ != NULL) {
4172 old_pointer_space_->TearDown();
4173 delete old_pointer_space_;
4174 old_pointer_space_ = NULL;
4175 }
4176
4177 if (old_data_space_ != NULL) {
4178 old_data_space_->TearDown();
4179 delete old_data_space_;
4180 old_data_space_ = NULL;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004181 }
4182
4183 if (code_space_ != NULL) {
4184 code_space_->TearDown();
4185 delete code_space_;
4186 code_space_ = NULL;
4187 }
4188
4189 if (map_space_ != NULL) {
4190 map_space_->TearDown();
4191 delete map_space_;
4192 map_space_ = NULL;
4193 }
4194
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004195 if (cell_space_ != NULL) {
4196 cell_space_->TearDown();
4197 delete cell_space_;
4198 cell_space_ = NULL;
4199 }
4200
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004201 if (lo_space_ != NULL) {
4202 lo_space_->TearDown();
4203 delete lo_space_;
4204 lo_space_ = NULL;
4205 }
4206
4207 MemoryAllocator::TearDown();
4208}
4209
4210
4211void Heap::Shrink() {
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004212 // Try to shrink all paged spaces.
4213 PagedSpaces spaces;
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00004214 for (PagedSpace* space = spaces.next(); space != NULL; space = spaces.next())
4215 space->Shrink();
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004216}
4217
4218
kasperl@chromium.orgf5aa8372009-03-24 14:47:14 +00004219#ifdef ENABLE_HEAP_PROTECTION
4220
4221void Heap::Protect() {
ager@chromium.org71daaf62009-04-01 07:22:49 +00004222 if (HasBeenSetup()) {
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004223 AllSpaces spaces;
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00004224 for (Space* space = spaces.next(); space != NULL; space = spaces.next())
4225 space->Protect();
ager@chromium.org71daaf62009-04-01 07:22:49 +00004226 }
kasperl@chromium.orgf5aa8372009-03-24 14:47:14 +00004227}
4228
4229
4230void Heap::Unprotect() {
ager@chromium.org71daaf62009-04-01 07:22:49 +00004231 if (HasBeenSetup()) {
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004232 AllSpaces spaces;
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00004233 for (Space* space = spaces.next(); space != NULL; space = spaces.next())
4234 space->Unprotect();
ager@chromium.org71daaf62009-04-01 07:22:49 +00004235 }
kasperl@chromium.orgf5aa8372009-03-24 14:47:14 +00004236}
4237
4238#endif
4239
4240
kmillikin@chromium.org5d8f0e62010-03-24 08:21:20 +00004241void Heap::AddGCPrologueCallback(GCPrologueCallback callback, GCType gc_type) {
4242 ASSERT(callback != NULL);
4243 GCPrologueCallbackPair pair(callback, gc_type);
4244 ASSERT(!gc_prologue_callbacks_.Contains(pair));
4245 return gc_prologue_callbacks_.Add(pair);
4246}
4247
4248
4249void Heap::RemoveGCPrologueCallback(GCPrologueCallback callback) {
4250 ASSERT(callback != NULL);
4251 for (int i = 0; i < gc_prologue_callbacks_.length(); ++i) {
4252 if (gc_prologue_callbacks_[i].callback == callback) {
4253 gc_prologue_callbacks_.Remove(i);
4254 return;
4255 }
4256 }
4257 UNREACHABLE();
4258}
4259
4260
4261void Heap::AddGCEpilogueCallback(GCEpilogueCallback callback, GCType gc_type) {
4262 ASSERT(callback != NULL);
4263 GCEpilogueCallbackPair pair(callback, gc_type);
4264 ASSERT(!gc_epilogue_callbacks_.Contains(pair));
4265 return gc_epilogue_callbacks_.Add(pair);
4266}
4267
4268
4269void Heap::RemoveGCEpilogueCallback(GCEpilogueCallback callback) {
4270 ASSERT(callback != NULL);
4271 for (int i = 0; i < gc_epilogue_callbacks_.length(); ++i) {
4272 if (gc_epilogue_callbacks_[i].callback == callback) {
4273 gc_epilogue_callbacks_.Remove(i);
4274 return;
4275 }
4276 }
4277 UNREACHABLE();
4278}
4279
4280
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004281#ifdef DEBUG
4282
4283class PrintHandleVisitor: public ObjectVisitor {
4284 public:
4285 void VisitPointers(Object** start, Object** end) {
4286 for (Object** p = start; p < end; p++)
4287 PrintF(" handle %p to %p\n", p, *p);
4288 }
4289};
4290
4291void Heap::PrintHandles() {
4292 PrintF("Handles:\n");
4293 PrintHandleVisitor v;
4294 HandleScopeImplementer::Iterate(&v);
4295}
4296
4297#endif
4298
4299
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004300Space* AllSpaces::next() {
4301 switch (counter_++) {
4302 case NEW_SPACE:
4303 return Heap::new_space();
4304 case OLD_POINTER_SPACE:
4305 return Heap::old_pointer_space();
4306 case OLD_DATA_SPACE:
4307 return Heap::old_data_space();
4308 case CODE_SPACE:
4309 return Heap::code_space();
4310 case MAP_SPACE:
4311 return Heap::map_space();
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004312 case CELL_SPACE:
4313 return Heap::cell_space();
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004314 case LO_SPACE:
4315 return Heap::lo_space();
4316 default:
4317 return NULL;
4318 }
4319}
4320
4321
4322PagedSpace* PagedSpaces::next() {
4323 switch (counter_++) {
4324 case OLD_POINTER_SPACE:
4325 return Heap::old_pointer_space();
4326 case OLD_DATA_SPACE:
4327 return Heap::old_data_space();
4328 case CODE_SPACE:
4329 return Heap::code_space();
4330 case MAP_SPACE:
4331 return Heap::map_space();
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004332 case CELL_SPACE:
4333 return Heap::cell_space();
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004334 default:
4335 return NULL;
4336 }
4337}
4338
4339
4340
4341OldSpace* OldSpaces::next() {
4342 switch (counter_++) {
4343 case OLD_POINTER_SPACE:
4344 return Heap::old_pointer_space();
4345 case OLD_DATA_SPACE:
4346 return Heap::old_data_space();
4347 case CODE_SPACE:
4348 return Heap::code_space();
4349 default:
4350 return NULL;
4351 }
4352}
4353
4354
kasper.lund7276f142008-07-30 08:49:36 +00004355SpaceIterator::SpaceIterator() : current_space_(FIRST_SPACE), iterator_(NULL) {
4356}
4357
4358
4359SpaceIterator::~SpaceIterator() {
4360 // Delete active iterator if any.
4361 delete iterator_;
4362}
4363
4364
4365bool SpaceIterator::has_next() {
4366 // Iterate until no more spaces.
4367 return current_space_ != LAST_SPACE;
4368}
4369
4370
4371ObjectIterator* SpaceIterator::next() {
4372 if (iterator_ != NULL) {
4373 delete iterator_;
4374 iterator_ = NULL;
4375 // Move to the next space
4376 current_space_++;
4377 if (current_space_ > LAST_SPACE) {
4378 return NULL;
4379 }
4380 }
4381
4382 // Return iterator for the new current space.
4383 return CreateIterator();
4384}
4385
4386
4387// Create an iterator for the space to iterate.
4388ObjectIterator* SpaceIterator::CreateIterator() {
4389 ASSERT(iterator_ == NULL);
4390
4391 switch (current_space_) {
4392 case NEW_SPACE:
4393 iterator_ = new SemiSpaceIterator(Heap::new_space());
4394 break;
ager@chromium.org9258b6b2008-09-11 09:11:10 +00004395 case OLD_POINTER_SPACE:
4396 iterator_ = new HeapObjectIterator(Heap::old_pointer_space());
4397 break;
4398 case OLD_DATA_SPACE:
4399 iterator_ = new HeapObjectIterator(Heap::old_data_space());
kasper.lund7276f142008-07-30 08:49:36 +00004400 break;
4401 case CODE_SPACE:
4402 iterator_ = new HeapObjectIterator(Heap::code_space());
4403 break;
4404 case MAP_SPACE:
4405 iterator_ = new HeapObjectIterator(Heap::map_space());
4406 break;
kasperl@chromium.orgdefbd102009-07-13 14:04:26 +00004407 case CELL_SPACE:
4408 iterator_ = new HeapObjectIterator(Heap::cell_space());
4409 break;
kasper.lund7276f142008-07-30 08:49:36 +00004410 case LO_SPACE:
4411 iterator_ = new LargeObjectIterator(Heap::lo_space());
4412 break;
4413 }
4414
4415 // Return the newly allocated iterator;
4416 ASSERT(iterator_ != NULL);
4417 return iterator_;
4418}
4419
4420
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004421HeapIterator::HeapIterator() {
4422 Init();
4423}
4424
4425
4426HeapIterator::~HeapIterator() {
4427 Shutdown();
4428}
4429
4430
4431void HeapIterator::Init() {
4432 // Start the iteration.
4433 space_iterator_ = new SpaceIterator();
4434 object_iterator_ = space_iterator_->next();
4435}
4436
4437
4438void HeapIterator::Shutdown() {
4439 // Make sure the last iterator is deallocated.
4440 delete space_iterator_;
4441 space_iterator_ = NULL;
4442 object_iterator_ = NULL;
4443}
4444
4445
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00004446HeapObject* HeapIterator::next() {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004447 // No iterator means we are done.
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00004448 if (object_iterator_ == NULL) return NULL;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004449
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00004450 if (HeapObject* obj = object_iterator_->next_object()) {
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004451 // If the current iterator has more objects we are fine.
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00004452 return obj;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004453 } else {
4454 // Go though the spaces looking for one that has objects.
4455 while (space_iterator_->has_next()) {
4456 object_iterator_ = space_iterator_->next();
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00004457 if (HeapObject* obj = object_iterator_->next_object()) {
4458 return obj;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004459 }
4460 }
4461 }
4462 // Done with the last space.
4463 object_iterator_ = NULL;
sgjesse@chromium.orgb302e562010-02-03 11:26:59 +00004464 return NULL;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004465}
4466
4467
4468void HeapIterator::reset() {
4469 // Restart the iterator.
4470 Shutdown();
4471 Init();
4472}
4473
4474
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004475#ifdef DEBUG
4476
4477static bool search_for_any_global;
4478static Object* search_target;
4479static bool found_target;
4480static List<Object*> object_stack(20);
4481
4482
4483// Tags 0, 1, and 3 are used. Use 2 for marking visited HeapObject.
4484static const int kMarkTag = 2;
4485
4486static void MarkObjectRecursively(Object** p);
4487class MarkObjectVisitor : public ObjectVisitor {
4488 public:
4489 void VisitPointers(Object** start, Object** end) {
4490 // Copy all HeapObject pointers in [start, end)
4491 for (Object** p = start; p < end; p++) {
4492 if ((*p)->IsHeapObject())
4493 MarkObjectRecursively(p);
4494 }
4495 }
4496};
4497
4498static MarkObjectVisitor mark_visitor;
4499
4500static void MarkObjectRecursively(Object** p) {
4501 if (!(*p)->IsHeapObject()) return;
4502
4503 HeapObject* obj = HeapObject::cast(*p);
4504
4505 Object* map = obj->map();
4506
4507 if (!map->IsHeapObject()) return; // visited before
4508
4509 if (found_target) return; // stop if target found
4510 object_stack.Add(obj);
4511 if ((search_for_any_global && obj->IsJSGlobalObject()) ||
4512 (!search_for_any_global && (obj == search_target))) {
4513 found_target = true;
4514 return;
4515 }
4516
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004517 // not visited yet
4518 Map* map_p = reinterpret_cast<Map*>(HeapObject::cast(map));
4519
4520 Address map_addr = map_p->address();
4521
4522 obj->set_map(reinterpret_cast<Map*>(map_addr + kMarkTag));
4523
4524 MarkObjectRecursively(&map);
4525
4526 obj->IterateBody(map_p->instance_type(), obj->SizeFromMap(map_p),
4527 &mark_visitor);
4528
4529 if (!found_target) // don't pop if found the target
4530 object_stack.RemoveLast();
4531}
4532
4533
4534static void UnmarkObjectRecursively(Object** p);
4535class UnmarkObjectVisitor : public ObjectVisitor {
4536 public:
4537 void VisitPointers(Object** start, Object** end) {
4538 // Copy all HeapObject pointers in [start, end)
4539 for (Object** p = start; p < end; p++) {
4540 if ((*p)->IsHeapObject())
4541 UnmarkObjectRecursively(p);
4542 }
4543 }
4544};
4545
4546static UnmarkObjectVisitor unmark_visitor;
4547
4548static void UnmarkObjectRecursively(Object** p) {
4549 if (!(*p)->IsHeapObject()) return;
4550
4551 HeapObject* obj = HeapObject::cast(*p);
4552
4553 Object* map = obj->map();
4554
4555 if (map->IsHeapObject()) return; // unmarked already
4556
4557 Address map_addr = reinterpret_cast<Address>(map);
4558
4559 map_addr -= kMarkTag;
4560
4561 ASSERT_TAG_ALIGNED(map_addr);
4562
4563 HeapObject* map_p = HeapObject::FromAddress(map_addr);
4564
4565 obj->set_map(reinterpret_cast<Map*>(map_p));
4566
4567 UnmarkObjectRecursively(reinterpret_cast<Object**>(&map_p));
4568
4569 obj->IterateBody(Map::cast(map_p)->instance_type(),
4570 obj->SizeFromMap(Map::cast(map_p)),
4571 &unmark_visitor);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004572}
4573
4574
4575static void MarkRootObjectRecursively(Object** root) {
4576 if (search_for_any_global) {
4577 ASSERT(search_target == NULL);
4578 } else {
4579 ASSERT(search_target->IsHeapObject());
4580 }
4581 found_target = false;
4582 object_stack.Clear();
4583
4584 MarkObjectRecursively(root);
4585 UnmarkObjectRecursively(root);
4586
4587 if (found_target) {
4588 PrintF("=====================================\n");
4589 PrintF("==== Path to object ====\n");
4590 PrintF("=====================================\n\n");
4591
4592 ASSERT(!object_stack.is_empty());
4593 for (int i = 0; i < object_stack.length(); i++) {
4594 if (i > 0) PrintF("\n |\n |\n V\n\n");
4595 Object* obj = object_stack[i];
4596 obj->Print();
4597 }
4598 PrintF("=====================================\n");
4599 }
4600}
4601
4602
4603// Helper class for visiting HeapObjects recursively.
4604class MarkRootVisitor: public ObjectVisitor {
4605 public:
4606 void VisitPointers(Object** start, Object** end) {
4607 // Visit all HeapObject pointers in [start, end)
4608 for (Object** p = start; p < end; p++) {
4609 if ((*p)->IsHeapObject())
4610 MarkRootObjectRecursively(p);
4611 }
4612 }
4613};
4614
4615
4616// Triggers a depth-first traversal of reachable objects from roots
4617// and finds a path to a specific heap object and prints it.
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00004618void Heap::TracePathToObject(Object* target) {
4619 search_target = target;
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004620 search_for_any_global = false;
4621
4622 MarkRootVisitor root_visitor;
ager@chromium.orgc4c92722009-11-18 14:12:51 +00004623 IterateRoots(&root_visitor, VISIT_ONLY_STRONG);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004624}
4625
4626
4627// Triggers a depth-first traversal of reachable objects from roots
4628// and finds a path to any global object and prints it. Useful for
4629// determining the source for leaks of global objects.
4630void Heap::TracePathToGlobal() {
4631 search_target = NULL;
4632 search_for_any_global = true;
4633
4634 MarkRootVisitor root_visitor;
ager@chromium.orgc4c92722009-11-18 14:12:51 +00004635 IterateRoots(&root_visitor, VISIT_ONLY_STRONG);
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004636}
4637#endif
4638
4639
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +00004640static int CountTotalHolesSize() {
4641 int holes_size = 0;
4642 OldSpaces spaces;
4643 for (OldSpace* space = spaces.next();
4644 space != NULL;
4645 space = spaces.next()) {
4646 holes_size += space->Waste() + space->AvailableFree();
4647 }
4648 return holes_size;
4649}
4650
4651
kasper.lund7276f142008-07-30 08:49:36 +00004652GCTracer::GCTracer()
4653 : start_time_(0.0),
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +00004654 start_size_(0),
kasper.lund7276f142008-07-30 08:49:36 +00004655 gc_count_(0),
4656 full_gc_count_(0),
4657 is_compacting_(false),
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +00004658 marked_count_(0),
4659 allocated_since_last_gc_(0),
4660 spent_in_mutator_(0),
4661 promoted_objects_size_(0) {
kasper.lund7276f142008-07-30 08:49:36 +00004662 // These two fields reflect the state of the previous full collection.
4663 // Set them before they are changed by the collector.
4664 previous_has_compacted_ = MarkCompactCollector::HasCompacted();
4665 previous_marked_count_ = MarkCompactCollector::previous_marked_count();
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +00004666 if (!FLAG_trace_gc && !FLAG_print_cumulative_gc_stat) return;
kasper.lund7276f142008-07-30 08:49:36 +00004667 start_time_ = OS::TimeCurrentMillis();
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +00004668 start_size_ = Heap::SizeOfObjects();
4669
4670 for (int i = 0; i < Scope::kNumberOfScopes; i++) {
4671 scopes_[i] = 0;
4672 }
4673
4674 in_free_list_or_wasted_before_gc_ = CountTotalHolesSize();
4675
4676 allocated_since_last_gc_ = Heap::SizeOfObjects() - alive_after_last_gc_;
4677
4678 if (last_gc_end_timestamp_ > 0) {
4679 spent_in_mutator_ = Max(start_time_ - last_gc_end_timestamp_, 0.0);
4680 }
kasper.lund7276f142008-07-30 08:49:36 +00004681}
4682
4683
4684GCTracer::~GCTracer() {
kasper.lund7276f142008-07-30 08:49:36 +00004685 // Printf ONE line iff flag is set.
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +00004686 if (!FLAG_trace_gc && !FLAG_print_cumulative_gc_stat) return;
4687
4688 bool first_gc = (last_gc_end_timestamp_ == 0);
4689
4690 alive_after_last_gc_ = Heap::SizeOfObjects();
4691 last_gc_end_timestamp_ = OS::TimeCurrentMillis();
4692
4693 int time = static_cast<int>(last_gc_end_timestamp_ - start_time_);
4694
4695 // Update cumulative GC statistics if required.
4696 if (FLAG_print_cumulative_gc_stat) {
4697 max_gc_pause_ = Max(max_gc_pause_, time);
4698 max_alive_after_gc_ = Max(max_alive_after_gc_, alive_after_last_gc_);
4699 if (!first_gc) {
4700 min_in_mutator_ = Min(min_in_mutator_,
4701 static_cast<int>(spent_in_mutator_));
4702 }
4703 }
4704
4705 if (!FLAG_trace_gc_nvp) {
4706 int external_time = static_cast<int>(scopes_[Scope::EXTERNAL]);
4707
4708 PrintF("%s %.1f -> %.1f MB, ",
4709 CollectorString(),
4710 static_cast<double>(start_size_) / MB,
4711 SizeOfHeapObjects());
4712
4713 if (external_time > 0) PrintF("%d / ", external_time);
4714 PrintF("%d ms.\n", time);
4715 } else {
4716 PrintF("pause=%d ", time);
4717 PrintF("mutator=%d ",
4718 static_cast<int>(spent_in_mutator_));
4719
4720 PrintF("gc=");
4721 switch (collector_) {
4722 case SCAVENGER:
4723 PrintF("s");
4724 break;
4725 case MARK_COMPACTOR:
4726 PrintF(MarkCompactCollector::HasCompacted() ? "mc" : "ms");
4727 break;
4728 default:
4729 UNREACHABLE();
4730 }
4731 PrintF(" ");
4732
4733 PrintF("external=%d ", static_cast<int>(scopes_[Scope::EXTERNAL]));
4734 PrintF("mark=%d ", static_cast<int>(scopes_[Scope::MC_MARK]));
4735 PrintF("sweep=%d ", static_cast<int>(scopes_[Scope::MC_SWEEP]));
ager@chromium.orgea4f62e2010-08-16 16:28:43 +00004736 PrintF("sweepns=%d ", static_cast<int>(scopes_[Scope::MC_SWEEP_NEWSPACE]));
erik.corry@gmail.com9dfbea42010-05-21 12:58:28 +00004737 PrintF("compact=%d ", static_cast<int>(scopes_[Scope::MC_COMPACT]));
4738
4739 PrintF("total_size_before=%d ", start_size_);
4740 PrintF("total_size_after=%d ", Heap::SizeOfObjects());
4741 PrintF("holes_size_before=%d ", in_free_list_or_wasted_before_gc_);
4742 PrintF("holes_size_after=%d ", CountTotalHolesSize());
4743
4744 PrintF("allocated=%d ", allocated_since_last_gc_);
4745 PrintF("promoted=%d ", promoted_objects_size_);
4746
4747 PrintF("\n");
4748 }
kasperl@chromium.orge959c182009-07-27 08:59:04 +00004749
4750#if defined(ENABLE_LOGGING_AND_PROFILING)
4751 Heap::PrintShortHeapStatistics();
4752#endif
kasper.lund7276f142008-07-30 08:49:36 +00004753}
4754
4755
4756const char* GCTracer::CollectorString() {
4757 switch (collector_) {
4758 case SCAVENGER:
4759 return "Scavenge";
4760 case MARK_COMPACTOR:
4761 return MarkCompactCollector::HasCompacted() ? "Mark-compact"
4762 : "Mark-sweep";
4763 }
4764 return "Unknown GC";
4765}
4766
4767
ager@chromium.org5aa501c2009-06-23 07:57:28 +00004768int KeyedLookupCache::Hash(Map* map, String* name) {
4769 // Uses only lower 32 bits if pointers are larger.
4770 uintptr_t addr_hash =
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00004771 static_cast<uint32_t>(reinterpret_cast<uintptr_t>(map)) >> kMapHashShift;
fschneider@chromium.orgb95b98b2010-02-23 10:34:29 +00004772 return static_cast<uint32_t>((addr_hash ^ name->Hash()) & kCapacityMask);
ager@chromium.org5aa501c2009-06-23 07:57:28 +00004773}
4774
4775
4776int KeyedLookupCache::Lookup(Map* map, String* name) {
4777 int index = Hash(map, name);
4778 Key& key = keys_[index];
4779 if ((key.map == map) && key.name->Equals(name)) {
4780 return field_offsets_[index];
4781 }
4782 return -1;
4783}
4784
4785
4786void KeyedLookupCache::Update(Map* map, String* name, int field_offset) {
4787 String* symbol;
4788 if (Heap::LookupSymbolIfExists(name, &symbol)) {
4789 int index = Hash(map, symbol);
4790 Key& key = keys_[index];
4791 key.map = map;
4792 key.name = symbol;
4793 field_offsets_[index] = field_offset;
4794 }
4795}
4796
4797
4798void KeyedLookupCache::Clear() {
4799 for (int index = 0; index < kLength; index++) keys_[index].map = NULL;
4800}
4801
4802
4803KeyedLookupCache::Key KeyedLookupCache::keys_[KeyedLookupCache::kLength];
4804
4805
4806int KeyedLookupCache::field_offsets_[KeyedLookupCache::kLength];
4807
4808
4809void DescriptorLookupCache::Clear() {
4810 for (int index = 0; index < kLength; index++) keys_[index].array = NULL;
4811}
4812
4813
4814DescriptorLookupCache::Key
4815DescriptorLookupCache::keys_[DescriptorLookupCache::kLength];
4816
4817int DescriptorLookupCache::results_[DescriptorLookupCache::kLength];
4818
4819
kasperl@chromium.org5a8ca6c2008-10-23 13:57:19 +00004820#ifdef DEBUG
4821bool Heap::GarbageCollectionGreedyCheck() {
4822 ASSERT(FLAG_gc_greedy);
4823 if (Bootstrapper::IsActive()) return true;
4824 if (disallow_allocation_failure()) return true;
4825 return CollectGarbage(0, NEW_SPACE);
4826}
4827#endif
4828
ager@chromium.org18ad94b2009-09-02 08:22:29 +00004829
4830TranscendentalCache::TranscendentalCache(TranscendentalCache::Type t)
4831 : type_(t) {
4832 uint32_t in0 = 0xffffffffu; // Bit-pattern for a NaN that isn't
4833 uint32_t in1 = 0xffffffffu; // generated by the FPU.
4834 for (int i = 0; i < kCacheSize; i++) {
4835 elements_[i].in[0] = in0;
4836 elements_[i].in[1] = in1;
4837 elements_[i].output = NULL;
4838 }
4839}
4840
4841
4842TranscendentalCache* TranscendentalCache::caches_[kNumberOfCaches];
4843
4844
4845void TranscendentalCache::Clear() {
4846 for (int i = 0; i < kNumberOfCaches; i++) {
4847 if (caches_[i] != NULL) {
4848 delete caches_[i];
4849 caches_[i] = NULL;
4850 }
4851 }
4852}
4853
4854
kmillikin@chromium.org13bd2942009-12-16 15:36:05 +00004855void ExternalStringTable::CleanUp() {
4856 int last = 0;
4857 for (int i = 0; i < new_space_strings_.length(); ++i) {
4858 if (new_space_strings_[i] == Heap::raw_unchecked_null_value()) continue;
4859 if (Heap::InNewSpace(new_space_strings_[i])) {
4860 new_space_strings_[last++] = new_space_strings_[i];
4861 } else {
4862 old_space_strings_.Add(new_space_strings_[i]);
4863 }
4864 }
4865 new_space_strings_.Rewind(last);
4866 last = 0;
4867 for (int i = 0; i < old_space_strings_.length(); ++i) {
4868 if (old_space_strings_[i] == Heap::raw_unchecked_null_value()) continue;
4869 ASSERT(!Heap::InNewSpace(old_space_strings_[i]));
4870 old_space_strings_[last++] = old_space_strings_[i];
4871 }
4872 old_space_strings_.Rewind(last);
4873 Verify();
4874}
4875
4876
4877void ExternalStringTable::TearDown() {
4878 new_space_strings_.Free();
4879 old_space_strings_.Free();
4880}
4881
4882
4883List<Object*> ExternalStringTable::new_space_strings_;
4884List<Object*> ExternalStringTable::old_space_strings_;
4885
christian.plesner.hansen43d26ec2008-07-03 15:10:15 +00004886} } // namespace v8::internal