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| 1 // Copyright 2012 the V8 project authors. All rights reserved. | 1 // Copyright 2012 the V8 project authors. All rights reserved. |
| 2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
| 3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
| 4 | 4 |
| 5 #include "src/api.h" | 5 #include "src/api.h" |
| 6 | 6 |
| 7 #include <string.h> // For memcpy, strlen. | 7 #include <string.h> // For memcpy, strlen. |
| 8 #ifdef V8_USE_ADDRESS_SANITIZER | 8 #ifdef V8_USE_ADDRESS_SANITIZER |
| 9 #include <sanitizer/asan_interface.h> | 9 #include <sanitizer/asan_interface.h> |
| 10 #endif // V8_USE_ADDRESS_SANITIZER | 10 #endif // V8_USE_ADDRESS_SANITIZER |
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| 334 | 334 |
| 335 void V8::SetNativesDataBlob(StartupData* natives_blob) { | 335 void V8::SetNativesDataBlob(StartupData* natives_blob) { |
| 336 i::V8::SetNativesBlob(natives_blob); | 336 i::V8::SetNativesBlob(natives_blob); |
| 337 } | 337 } |
| 338 | 338 |
| 339 | 339 |
| 340 void V8::SetSnapshotDataBlob(StartupData* snapshot_blob) { | 340 void V8::SetSnapshotDataBlob(StartupData* snapshot_blob) { |
| 341 i::V8::SetSnapshotBlob(snapshot_blob); | 341 i::V8::SetSnapshotBlob(snapshot_blob); |
| 342 } | 342 } |
| 343 | 343 |
| 344 namespace { | |
| 345 | |
| 346 class ArrayBufferAllocator : public v8::ArrayBuffer::Allocator { | |
| 347 public: | |
| 348 virtual void* Allocate(size_t length) { | |
| 349 void* data = AllocateUninitialized(length); | |
| 350 return data == NULL ? data : memset(data, 0, length); | |
| 351 } | |
| 352 virtual void* AllocateUninitialized(size_t length) { return malloc(length); } | |
| 353 virtual void Free(void* data, size_t) { free(data); } | |
| 354 }; | |
| 344 | 355 |
| 345 bool RunExtraCode(Isolate* isolate, Local<Context> context, | 356 bool RunExtraCode(Isolate* isolate, Local<Context> context, |
| 346 const char* utf8_source) { | 357 const char* utf8_source, const char* name) { |
| 347 // Run custom script if provided. | |
| 348 base::ElapsedTimer timer; | 358 base::ElapsedTimer timer; |
| 349 timer.Start(); | 359 timer.Start(); |
| 360 Context::Scope context_scope(context); | |
| 350 TryCatch try_catch(isolate); | 361 TryCatch try_catch(isolate); |
| 351 Local<String> source_string; | 362 Local<String> source_string; |
| 352 if (!String::NewFromUtf8(isolate, utf8_source, NewStringType::kNormal) | 363 if (!String::NewFromUtf8(isolate, utf8_source, NewStringType::kNormal) |
| 353 .ToLocal(&source_string)) { | 364 .ToLocal(&source_string)) { |
| 354 return false; | 365 return false; |
| 355 } | 366 } |
| 356 Local<String> resource_name = | 367 Local<String> resource_name = |
| 357 String::NewFromUtf8(isolate, "<embedded script>", NewStringType::kNormal) | 368 String::NewFromUtf8(isolate, name, NewStringType::kNormal) |
| 358 .ToLocalChecked(); | 369 .ToLocalChecked(); |
| 359 ScriptOrigin origin(resource_name); | 370 ScriptOrigin origin(resource_name); |
| 360 ScriptCompiler::Source source(source_string, origin); | 371 ScriptCompiler::Source source(source_string, origin); |
| 361 Local<Script> script; | 372 Local<Script> script; |
| 362 if (!ScriptCompiler::Compile(context, &source).ToLocal(&script)) return false; | 373 if (!ScriptCompiler::Compile(context, &source).ToLocal(&script)) return false; |
| 363 if (script->Run(context).IsEmpty()) return false; | 374 if (script->Run(context).IsEmpty()) return false; |
| 364 if (i::FLAG_profile_deserialization) { | 375 if (i::FLAG_profile_deserialization) { |
| 365 i::PrintF("Executing custom snapshot script took %0.3f ms\n", | 376 i::PrintF("Executing custom snapshot script %s took %0.3f ms\n", name, |
| 366 timer.Elapsed().InMillisecondsF()); | 377 timer.Elapsed().InMillisecondsF()); |
| 367 } | 378 } |
| 368 timer.Stop(); | 379 timer.Stop(); |
| 369 CHECK(!try_catch.HasCaught()); | 380 CHECK(!try_catch.HasCaught()); |
| 370 return true; | 381 return true; |
| 371 } | 382 } |
| 372 | 383 |
| 384 StartupData SerializeIsolateAndContext( | |
| 385 Isolate* isolate, Persistent<Context>* context, | |
| 386 i::Snapshot::Metadata metadata, | |
| 387 i::StartupSerializer::FunctionCodeHandling function_code_handling) { | |
| 388 if (context->IsEmpty()) return {NULL, 0}; | |
| 373 | 389 |
| 374 namespace { | 390 i::Isolate* internal_isolate = reinterpret_cast<i::Isolate*>(isolate); |
| 375 | 391 |
| 376 class ArrayBufferAllocator : public v8::ArrayBuffer::Allocator { | 392 // If we don't do this then we end up with a stray root pointing at the |
| 377 public: | 393 // context even after we have disposed of the context. |
| 378 virtual void* Allocate(size_t length) { | 394 internal_isolate->heap()->CollectAllAvailableGarbage("mksnapshot"); |
| 379 void* data = AllocateUninitialized(length); | 395 |
| 380 return data == NULL ? data : memset(data, 0, length); | 396 // GC may have cleared weak cells, so compact any WeakFixedArrays |
| 397 // found on the heap. | |
| 398 i::HeapIterator iterator(internal_isolate->heap(), | |
| 399 i::HeapIterator::kFilterUnreachable); | |
| 400 for (i::HeapObject* o = iterator.next(); o != NULL; o = iterator.next()) { | |
| 401 if (o->IsPrototypeInfo()) { | |
| 402 i::Object* prototype_users = i::PrototypeInfo::cast(o)->prototype_users(); | |
| 403 if (prototype_users->IsWeakFixedArray()) { | |
| 404 i::WeakFixedArray* array = i::WeakFixedArray::cast(prototype_users); | |
| 405 array->Compact<i::JSObject::PrototypeRegistryCompactionCallback>(); | |
| 406 } | |
| 407 } else if (o->IsScript()) { | |
| 408 i::Object* shared_list = i::Script::cast(o)->shared_function_infos(); | |
| 409 if (shared_list->IsWeakFixedArray()) { | |
| 410 i::WeakFixedArray* array = i::WeakFixedArray::cast(shared_list); | |
| 411 array->Compact<i::WeakFixedArray::NullCallback>(); | |
| 412 } | |
| 413 } | |
| 381 } | 414 } |
| 382 virtual void* AllocateUninitialized(size_t length) { return malloc(length); } | 415 |
| 383 virtual void Free(void* data, size_t) { free(data); } | 416 i::Object* raw_context = *v8::Utils::OpenPersistent(*context); |
| 384 }; | 417 context->Reset(); |
| 418 | |
| 419 i::SnapshotByteSink snapshot_sink; | |
| 420 i::StartupSerializer ser(internal_isolate, &snapshot_sink, | |
| 421 function_code_handling); | |
| 422 ser.SerializeStrongReferences(); | |
| 423 | |
| 424 i::SnapshotByteSink context_sink; | |
| 425 i::PartialSerializer context_ser(internal_isolate, &ser, &context_sink); | |
| 426 context_ser.Serialize(&raw_context); | |
| 427 ser.SerializeWeakReferencesAndDeferred(); | |
| 428 | |
| 429 return i::Snapshot::CreateSnapshotBlob(ser, context_ser, metadata); | |
| 430 } | |
| 385 | 431 |
| 386 } // namespace | 432 } // namespace |
| 387 | 433 |
| 434 StartupData V8::CreateSnapshotDataBlob(const char* embedded_source) { | |
| 435 // Create a new isolate and a new context from scratch, optionally run | |
| 436 // a script to embed, and serialize to create a snapshot blob. | |
| 437 StartupData result = {NULL, 0}; | |
| 388 | 438 |
| 389 StartupData V8::CreateSnapshotDataBlob(const char* custom_source) { | 439 base::ElapsedTimer timer; |
| 440 timer.Start(); | |
| 441 | |
| 442 ArrayBufferAllocator allocator; | |
| 390 i::Isolate* internal_isolate = new i::Isolate(true); | 443 i::Isolate* internal_isolate = new i::Isolate(true); |
| 391 ArrayBufferAllocator allocator; | |
| 392 internal_isolate->set_array_buffer_allocator(&allocator); | 444 internal_isolate->set_array_buffer_allocator(&allocator); |
| 393 Isolate* isolate = reinterpret_cast<Isolate*>(internal_isolate); | 445 Isolate* isolate = reinterpret_cast<Isolate*>(internal_isolate); |
| 394 StartupData result = {NULL, 0}; | 446 |
| 395 { | 447 { |
| 396 base::ElapsedTimer timer; | |
| 397 timer.Start(); | |
| 398 Isolate::Scope isolate_scope(isolate); | 448 Isolate::Scope isolate_scope(isolate); |
| 399 internal_isolate->Init(NULL); | 449 internal_isolate->Init(NULL); |
| 400 Persistent<Context> context; | 450 Persistent<Context> context; |
| 401 i::Snapshot::Metadata metadata; | |
| 402 { | 451 { |
| 403 HandleScope handle_scope(isolate); | 452 HandleScope handle_scope(isolate); |
| 404 Local<Context> new_context = Context::New(isolate); | 453 Local<Context> new_context = Context::New(isolate); |
| 405 context.Reset(isolate, new_context); | 454 context.Reset(isolate, new_context); |
| 406 if (custom_source != NULL) { | 455 if (embedded_source != NULL && |
| 407 metadata.set_embeds_script(true); | 456 !RunExtraCode(isolate, new_context, embedded_source, "<embedded>")) { |
| 408 Context::Scope context_scope(new_context); | 457 context.Reset(); |
| 409 if (!RunExtraCode(isolate, new_context, custom_source)) context.Reset(); | |
| 410 } | 458 } |
| 411 } | 459 } |
| 412 if (!context.IsEmpty()) { | |
| 413 // If we don't do this then we end up with a stray root pointing at the | |
| 414 // context even after we have disposed of the context. | |
| 415 internal_isolate->heap()->CollectAllAvailableGarbage("mksnapshot"); | |
| 416 | 460 |
| 417 // GC may have cleared weak cells, so compact any WeakFixedArrays | 461 i::Snapshot::Metadata metadata; |
| 418 // found on the heap. | 462 metadata.set_embeds_script(embedded_source != NULL); |
| 419 i::HeapIterator iterator(internal_isolate->heap(), | |
| 420 i::HeapIterator::kFilterUnreachable); | |
| 421 for (i::HeapObject* o = iterator.next(); o != NULL; o = iterator.next()) { | |
| 422 if (o->IsPrototypeInfo()) { | |
| 423 i::Object* prototype_users = | |
| 424 i::PrototypeInfo::cast(o)->prototype_users(); | |
| 425 if (prototype_users->IsWeakFixedArray()) { | |
| 426 i::WeakFixedArray* array = i::WeakFixedArray::cast(prototype_users); | |
| 427 array->Compact<i::JSObject::PrototypeRegistryCompactionCallback>(); | |
| 428 } | |
| 429 } else if (o->IsScript()) { | |
| 430 i::Object* shared_list = i::Script::cast(o)->shared_function_infos(); | |
| 431 if (shared_list->IsWeakFixedArray()) { | |
| 432 i::WeakFixedArray* array = i::WeakFixedArray::cast(shared_list); | |
| 433 array->Compact<i::WeakFixedArray::NullCallback>(); | |
| 434 } | |
| 435 } | |
| 436 } | |
| 437 | 463 |
| 438 i::Object* raw_context = *v8::Utils::OpenPersistent(context); | 464 result = SerializeIsolateAndContext( |
| 439 context.Reset(); | 465 isolate, &context, metadata, i::StartupSerializer::CLEAR_FUNCTION_CODE); |
| 440 | 466 DCHECK(context.IsEmpty()); |
| 441 i::SnapshotByteSink snapshot_sink; | |
| 442 i::StartupSerializer ser(internal_isolate, &snapshot_sink); | |
| 443 ser.SerializeStrongReferences(); | |
| 444 | |
| 445 i::SnapshotByteSink context_sink; | |
| 446 i::PartialSerializer context_ser(internal_isolate, &ser, &context_sink); | |
| 447 context_ser.Serialize(&raw_context); | |
| 448 ser.SerializeWeakReferencesAndDeferred(); | |
| 449 | |
| 450 result = i::Snapshot::CreateSnapshotBlob(ser, context_ser, metadata); | |
| 451 } | |
| 452 if (i::FLAG_profile_deserialization) { | |
| 453 i::PrintF("Creating snapshot took %0.3f ms\n", | |
| 454 timer.Elapsed().InMillisecondsF()); | |
| 455 } | |
| 456 timer.Stop(); | |
| 457 } | 467 } |
| 458 isolate->Dispose(); | 468 isolate->Dispose(); |
| 469 | |
| 470 if (i::FLAG_profile_deserialization) { | |
| 471 i::PrintF("Creating snapshot took %0.3f ms\n", | |
| 472 timer.Elapsed().InMillisecondsF()); | |
| 473 } | |
| 474 timer.Stop(); | |
| 459 return result; | 475 return result; |
| 460 } | 476 } |
| 461 | 477 |
| 478 StartupData V8::WarmUpSnapshotDataBlob(StartupData cold_snapshot_blob, | |
| 479 const char* warmup_source) { | |
| 480 CHECK(cold_snapshot_blob.raw_size > 0 && cold_snapshot_blob.data != NULL); | |
| 481 CHECK(warmup_source != NULL); | |
| 482 // Use following steps to create a warmed up snapshot blob from a cold one: | |
| 483 // - Create a new isolate from the cold snapshot. | |
| 484 // - Create a new context to run the warmup script. This will trigger | |
| 485 // compilation of executed functions. | |
| 486 // - Create a new context. This context will not be unpolluted. | |
|
vogelheim
2016/03/16 14:52:36
s/not// ?
| |
| 487 // - Serialize the isolate and the second context into a new snapshot blob. | |
| 488 StartupData result = {NULL, 0}; | |
| 489 | |
| 490 base::ElapsedTimer timer; | |
| 491 timer.Start(); | |
| 492 | |
| 493 ArrayBufferAllocator allocator; | |
| 494 i::Isolate* internal_isolate = new i::Isolate(true); | |
| 495 internal_isolate->set_array_buffer_allocator(&allocator); | |
| 496 internal_isolate->set_snapshot_blob(&cold_snapshot_blob); | |
| 497 Isolate* isolate = reinterpret_cast<Isolate*>(internal_isolate); | |
| 498 | |
| 499 { | |
| 500 Isolate::Scope isolate_scope(isolate); | |
| 501 i::Snapshot::Initialize(internal_isolate); | |
| 502 Persistent<Context> context; | |
| 503 { | |
| 504 HandleScope handle_scope(isolate); | |
| 505 Local<Context> warmup_context = Context::New(isolate); | |
| 506 if (RunExtraCode(isolate, warmup_context, warmup_source, "<warm-up>")) { | |
| 507 Local<Context> fresh_context = Context::New(isolate); | |
| 508 context.Reset(isolate, fresh_context); | |
| 509 } | |
| 510 } | |
| 511 | |
| 512 i::Snapshot::Metadata metadata; | |
| 513 metadata.set_embeds_script(i::Snapshot::EmbedsScript(internal_isolate)); | |
| 514 | |
| 515 result = SerializeIsolateAndContext( | |
| 516 isolate, &context, metadata, i::StartupSerializer::KEEP_FUNCTION_CODE); | |
| 517 DCHECK(context.IsEmpty()); | |
| 518 } | |
| 519 isolate->Dispose(); | |
| 520 | |
| 521 if (i::FLAG_profile_deserialization) { | |
| 522 i::PrintF("Warming up snapshot took %0.3f ms\n", | |
| 523 timer.Elapsed().InMillisecondsF()); | |
| 524 } | |
| 525 timer.Stop(); | |
| 526 return result; | |
| 527 } | |
| 528 | |
| 462 | 529 |
| 463 void V8::SetFlagsFromString(const char* str, int length) { | 530 void V8::SetFlagsFromString(const char* str, int length) { |
| 464 i::FlagList::SetFlagsFromString(str, length); | 531 i::FlagList::SetFlagsFromString(str, length); |
| 465 } | 532 } |
| 466 | 533 |
| 467 | 534 |
| 468 void V8::SetFlagsFromCommandLine(int* argc, char** argv, bool remove_flags) { | 535 void V8::SetFlagsFromCommandLine(int* argc, char** argv, bool remove_flags) { |
| 469 i::FlagList::SetFlagsFromCommandLine(argc, argv, remove_flags); | 536 i::FlagList::SetFlagsFromCommandLine(argc, argv, remove_flags); |
| 470 } | 537 } |
| 471 | 538 |
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| 8685 Address callback_address = | 8752 Address callback_address = |
| 8686 reinterpret_cast<Address>(reinterpret_cast<intptr_t>(callback)); | 8753 reinterpret_cast<Address>(reinterpret_cast<intptr_t>(callback)); |
| 8687 VMState<EXTERNAL> state(isolate); | 8754 VMState<EXTERNAL> state(isolate); |
| 8688 ExternalCallbackScope call_scope(isolate, callback_address); | 8755 ExternalCallbackScope call_scope(isolate, callback_address); |
| 8689 callback(info); | 8756 callback(info); |
| 8690 } | 8757 } |
| 8691 | 8758 |
| 8692 | 8759 |
| 8693 } // namespace internal | 8760 } // namespace internal |
| 8694 } // namespace v8 | 8761 } // namespace v8 |
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