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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 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
4 // met: | 4 // met: |
5 // | 5 // |
6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
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335 CallRuntimePassFunction(masm, Runtime::kTryInstallOptimizedCode); | 335 CallRuntimePassFunction(masm, Runtime::kTryInstallOptimizedCode); |
336 GenerateTailCallToReturnedCode(masm); | 336 GenerateTailCallToReturnedCode(masm); |
337 | 337 |
338 __ bind(&ok); | 338 __ bind(&ok); |
339 GenerateTailCallToSharedCode(masm); | 339 GenerateTailCallToSharedCode(masm); |
340 } | 340 } |
341 | 341 |
342 | 342 |
343 static void Generate_JSConstructStubHelper(MacroAssembler* masm, | 343 static void Generate_JSConstructStubHelper(MacroAssembler* masm, |
344 bool is_api_function, | 344 bool is_api_function, |
345 bool count_constructions) { | 345 bool count_constructions, |
| 346 bool create_memento) { |
346 // ----------- S t a t e ------------- | 347 // ----------- S t a t e ------------- |
347 // -- a0 : number of arguments | 348 // -- a0 : number of arguments |
348 // -- a1 : constructor function | 349 // -- a1 : constructor function |
| 350 // -- a2 : allocation site or undefined |
349 // -- ra : return address | 351 // -- ra : return address |
350 // -- sp[...]: constructor arguments | 352 // -- sp[...]: constructor arguments |
351 // ----------------------------------- | 353 // ----------------------------------- |
352 | 354 |
353 // Should never count constructions for api objects. | 355 // Should never count constructions for api objects. |
354 ASSERT(!is_api_function || !count_constructions); | 356 ASSERT(!is_api_function || !count_constructions); |
355 | 357 |
| 358 // Should never create mementos for api functions. |
| 359 ASSERT(!is_api_function || !create_memento); |
| 360 |
| 361 // Should never create mementos before slack tracking is finished. |
| 362 ASSERT(!count_constructions || !create_memento); |
| 363 |
356 Isolate* isolate = masm->isolate(); | 364 Isolate* isolate = masm->isolate(); |
357 | 365 |
358 // ----------- S t a t e ------------- | 366 // ----------- S t a t e ------------- |
359 // -- a0 : number of arguments | 367 // -- a0 : number of arguments |
360 // -- a1 : constructor function | 368 // -- a1 : constructor function |
361 // -- ra : return address | 369 // -- ra : return address |
362 // -- sp[...]: constructor arguments | 370 // -- sp[...]: constructor arguments |
363 // ----------------------------------- | 371 // ----------------------------------- |
364 | 372 |
365 // Enter a construct frame. | 373 // Enter a construct frame. |
366 { | 374 { |
367 FrameScope scope(masm, StackFrame::CONSTRUCT); | 375 FrameScope scope(masm, StackFrame::CONSTRUCT); |
368 | 376 |
| 377 if (create_memento) { |
| 378 __ AssertUndefinedOrAllocationSite(a2, a3); |
| 379 __ push(a2); |
| 380 } |
| 381 |
369 // Preserve the two incoming parameters on the stack. | 382 // Preserve the two incoming parameters on the stack. |
370 __ sll(a0, a0, kSmiTagSize); // Tag arguments count. | 383 __ sll(a0, a0, kSmiTagSize); // Tag arguments count. |
371 __ MultiPushReversed(a0.bit() | a1.bit()); | 384 __ MultiPushReversed(a0.bit() | a1.bit()); |
372 | 385 |
373 // Use t7 to hold undefined, which is used in several places below. | 386 // Use t7 to hold undefined, which is used in several places below. |
374 __ LoadRoot(t7, Heap::kUndefinedValueRootIndex); | 387 __ LoadRoot(t7, Heap::kUndefinedValueRootIndex); |
375 | 388 |
376 Label rt_call, allocated; | 389 Label rt_call, allocated; |
377 // Try to allocate the object without transitioning into C code. If any of | 390 // Try to allocate the object without transitioning into C code. If any of |
378 // the preconditions is not met, the code bails out to the runtime call. | 391 // the preconditions is not met, the code bails out to the runtime call. |
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418 | 431 |
419 __ Pop(a1, a2); | 432 __ Pop(a1, a2); |
420 | 433 |
421 __ bind(&allocate); | 434 __ bind(&allocate); |
422 } | 435 } |
423 | 436 |
424 // Now allocate the JSObject on the heap. | 437 // Now allocate the JSObject on the heap. |
425 // a1: constructor function | 438 // a1: constructor function |
426 // a2: initial map | 439 // a2: initial map |
427 __ lbu(a3, FieldMemOperand(a2, Map::kInstanceSizeOffset)); | 440 __ lbu(a3, FieldMemOperand(a2, Map::kInstanceSizeOffset)); |
| 441 if (create_memento) { |
| 442 __ Addu(a3, a3, Operand(AllocationMemento::kSize / kPointerSize)); |
| 443 } |
| 444 |
428 __ Allocate(a3, t4, t5, t6, &rt_call, SIZE_IN_WORDS); | 445 __ Allocate(a3, t4, t5, t6, &rt_call, SIZE_IN_WORDS); |
429 | 446 |
430 // Allocated the JSObject, now initialize the fields. Map is set to | 447 // Allocated the JSObject, now initialize the fields. Map is set to |
431 // initial map and properties and elements are set to empty fixed array. | 448 // initial map and properties and elements are set to empty fixed array. |
432 // a1: constructor function | 449 // a1: constructor function |
433 // a2: initial map | 450 // a2: initial map |
434 // a3: object size | 451 // a3: object size (not including memento if create_memento) |
435 // t4: JSObject (not tagged) | 452 // t4: JSObject (not tagged) |
436 __ LoadRoot(t6, Heap::kEmptyFixedArrayRootIndex); | 453 __ LoadRoot(t6, Heap::kEmptyFixedArrayRootIndex); |
437 __ mov(t5, t4); | 454 __ mov(t5, t4); |
438 __ sw(a2, MemOperand(t5, JSObject::kMapOffset)); | 455 __ sw(a2, MemOperand(t5, JSObject::kMapOffset)); |
439 __ sw(t6, MemOperand(t5, JSObject::kPropertiesOffset)); | 456 __ sw(t6, MemOperand(t5, JSObject::kPropertiesOffset)); |
440 __ sw(t6, MemOperand(t5, JSObject::kElementsOffset)); | 457 __ sw(t6, MemOperand(t5, JSObject::kElementsOffset)); |
441 __ Addu(t5, t5, Operand(3*kPointerSize)); | 458 __ Addu(t5, t5, Operand(3*kPointerSize)); |
442 ASSERT_EQ(0 * kPointerSize, JSObject::kMapOffset); | 459 ASSERT_EQ(0 * kPointerSize, JSObject::kMapOffset); |
443 ASSERT_EQ(1 * kPointerSize, JSObject::kPropertiesOffset); | 460 ASSERT_EQ(1 * kPointerSize, JSObject::kPropertiesOffset); |
444 ASSERT_EQ(2 * kPointerSize, JSObject::kElementsOffset); | 461 ASSERT_EQ(2 * kPointerSize, JSObject::kElementsOffset); |
445 | 462 |
446 // Fill all the in-object properties with appropriate filler. | 463 // Fill all the in-object properties with appropriate filler. |
447 // a1: constructor function | 464 // a1: constructor function |
448 // a2: initial map | 465 // a2: initial map |
449 // a3: object size (in words) | 466 // a3: object size (in words, including memento if create_memento) |
450 // t4: JSObject (not tagged) | 467 // t4: JSObject (not tagged) |
451 // t5: First in-object property of JSObject (not tagged) | 468 // t5: First in-object property of JSObject (not tagged) |
452 __ sll(t0, a3, kPointerSizeLog2); | |
453 __ addu(t6, t4, t0); // End of object. | |
454 ASSERT_EQ(3 * kPointerSize, JSObject::kHeaderSize); | 469 ASSERT_EQ(3 * kPointerSize, JSObject::kHeaderSize); |
455 __ LoadRoot(t7, Heap::kUndefinedValueRootIndex); | 470 |
456 if (count_constructions) { | 471 if (count_constructions) { |
| 472 __ LoadRoot(t7, Heap::kUndefinedValueRootIndex); |
457 __ lw(a0, FieldMemOperand(a2, Map::kInstanceSizesOffset)); | 473 __ lw(a0, FieldMemOperand(a2, Map::kInstanceSizesOffset)); |
458 __ Ext(a0, a0, Map::kPreAllocatedPropertyFieldsByte * kBitsPerByte, | 474 __ Ext(a0, a0, Map::kPreAllocatedPropertyFieldsByte * kBitsPerByte, |
459 kBitsPerByte); | 475 kBitsPerByte); |
460 __ sll(t0, a0, kPointerSizeLog2); | 476 __ sll(t0, a0, kPointerSizeLog2); |
461 __ addu(a0, t5, t0); | 477 __ addu(a0, t5, t0); |
462 // a0: offset of first field after pre-allocated fields | 478 // a0: offset of first field after pre-allocated fields |
463 if (FLAG_debug_code) { | 479 if (FLAG_debug_code) { |
464 __ Assert(le, kUnexpectedNumberOfPreAllocatedPropertyFields, | 480 __ Assert(le, kUnexpectedNumberOfPreAllocatedPropertyFields, |
465 a0, Operand(t6)); | 481 a0, Operand(t6)); |
466 } | 482 } |
467 __ InitializeFieldsWithFiller(t5, a0, t7); | 483 __ InitializeFieldsWithFiller(t5, a0, t7); |
468 // To allow for truncation. | 484 // To allow for truncation. |
469 __ LoadRoot(t7, Heap::kOnePointerFillerMapRootIndex); | 485 __ LoadRoot(t7, Heap::kOnePointerFillerMapRootIndex); |
| 486 __ sll(at, a3, kPointerSizeLog2); |
| 487 __ Addu(a0, t4, Operand(at)); // End of object. |
| 488 __ InitializeFieldsWithFiller(t5, a0, t7); |
| 489 } else if (create_memento) { |
| 490 __ Subu(t7, a3, Operand(AllocationMemento::kSize / kPointerSize)); |
| 491 __ sll(at, t7, kPointerSizeLog2); |
| 492 __ Addu(a0, t4, Operand(at)); // End of object. |
| 493 __ LoadRoot(t7, Heap::kUndefinedValueRootIndex); |
| 494 __ InitializeFieldsWithFiller(t5, a0, t7); |
| 495 |
| 496 // Fill in memento fields. |
| 497 // t5: points to the allocated but uninitialized memento. |
| 498 __ LoadRoot(t7, Heap::kAllocationMementoMapRootIndex); |
| 499 ASSERT_EQ(0 * kPointerSize, AllocationMemento::kMapOffset); |
| 500 __ sw(t7, MemOperand(t5)); |
| 501 __ Addu(t5, t5, kPointerSize); |
| 502 // Load the AllocationSite. |
| 503 __ lw(t7, MemOperand(sp, 2 * kPointerSize)); |
| 504 ASSERT_EQ(1 * kPointerSize, AllocationMemento::kAllocationSiteOffset); |
| 505 __ sw(t7, MemOperand(t5)); |
| 506 __ Addu(t5, t5, kPointerSize); |
| 507 } else { |
| 508 __ LoadRoot(t7, Heap::kUndefinedValueRootIndex); |
| 509 __ sll(at, a3, kPointerSizeLog2); |
| 510 __ Addu(a0, t4, Operand(at)); // End of object. |
| 511 __ InitializeFieldsWithFiller(t5, a0, t7); |
470 } | 512 } |
471 __ InitializeFieldsWithFiller(t5, t6, t7); | |
472 | 513 |
473 // Add the object tag to make the JSObject real, so that we can continue | 514 // Add the object tag to make the JSObject real, so that we can continue |
474 // and jump into the continuation code at any time from now on. Any | 515 // and jump into the continuation code at any time from now on. Any |
475 // failures need to undo the allocation, so that the heap is in a | 516 // failures need to undo the allocation, so that the heap is in a |
476 // consistent state and verifiable. | 517 // consistent state and verifiable. |
477 __ Addu(t4, t4, Operand(kHeapObjectTag)); | 518 __ Addu(t4, t4, Operand(kHeapObjectTag)); |
478 | 519 |
479 // Check if a non-empty properties array is needed. Continue with | 520 // Check if a non-empty properties array is needed. Continue with |
480 // allocated object if not fall through to runtime call if it is. | 521 // allocated object if not fall through to runtime call if it is. |
481 // a1: constructor function | 522 // a1: constructor function |
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565 __ jmp(&allocated); | 606 __ jmp(&allocated); |
566 | 607 |
567 // Undo the setting of the new top so that the heap is verifiable. For | 608 // Undo the setting of the new top so that the heap is verifiable. For |
568 // example, the map's unused properties potentially do not match the | 609 // example, the map's unused properties potentially do not match the |
569 // allocated objects unused properties. | 610 // allocated objects unused properties. |
570 // t4: JSObject (previous new top) | 611 // t4: JSObject (previous new top) |
571 __ bind(&undo_allocation); | 612 __ bind(&undo_allocation); |
572 __ UndoAllocationInNewSpace(t4, t5); | 613 __ UndoAllocationInNewSpace(t4, t5); |
573 } | 614 } |
574 | 615 |
575 __ bind(&rt_call); | |
576 // Allocate the new receiver object using the runtime call. | 616 // Allocate the new receiver object using the runtime call. |
577 // a1: constructor function | 617 // a1: constructor function |
| 618 __ bind(&rt_call); |
| 619 if (create_memento) { |
| 620 // Get the cell or allocation site. |
| 621 __ lw(a2, MemOperand(sp, 2 * kPointerSize)); |
| 622 __ push(a2); |
| 623 } |
| 624 |
578 __ push(a1); // Argument for Runtime_NewObject. | 625 __ push(a1); // Argument for Runtime_NewObject. |
579 __ CallRuntime(Runtime::kNewObject, 1); | 626 if (create_memento) { |
| 627 __ CallRuntime(Runtime::kNewObjectWithAllocationSite, 2); |
| 628 } else { |
| 629 __ CallRuntime(Runtime::kNewObject, 1); |
| 630 } |
580 __ mov(t4, v0); | 631 __ mov(t4, v0); |
581 | 632 |
| 633 // If we ended up using the runtime, and we want a memento, then the |
| 634 // runtime call made it for us, and we shouldn't do create count |
| 635 // increment. |
| 636 Label count_incremented; |
| 637 if (create_memento) { |
| 638 __ jmp(&count_incremented); |
| 639 } |
| 640 |
582 // Receiver for constructor call allocated. | 641 // Receiver for constructor call allocated. |
583 // t4: JSObject | 642 // t4: JSObject |
| 643 |
| 644 if (create_memento) { |
| 645 __ lw(a2, MemOperand(sp, kPointerSize * 2)); |
| 646 __ LoadRoot(t5, Heap::kUndefinedValueRootIndex); |
| 647 __ Branch(&count_incremented, eq, a2, Operand(t5)); |
| 648 // a2 is an AllocationSite. We are creating a memento from it, so we |
| 649 // need to increment the memento create count. |
| 650 __ lw(a3, FieldMemOperand(a2, |
| 651 AllocationSite::kPretenureCreateCountOffset)); |
| 652 __ Addu(a3, a3, Operand(Smi::FromInt(1))); |
| 653 __ sw(a3, FieldMemOperand(a2, |
| 654 AllocationSite::kPretenureCreateCountOffset)); |
| 655 __ bind(&count_incremented); |
| 656 } |
| 657 |
584 __ bind(&allocated); | 658 __ bind(&allocated); |
585 __ Push(t4, t4); | 659 __ Push(t4, t4); |
586 | 660 |
587 // Reload the number of arguments from the stack. | 661 // Reload the number of arguments from the stack. |
588 // sp[0]: receiver | 662 // sp[0]: receiver |
589 // sp[1]: receiver | 663 // sp[1]: receiver |
590 // sp[2]: constructor function | 664 // sp[2]: constructor function |
591 // sp[3]: number of arguments (smi-tagged) | 665 // sp[3]: number of arguments (smi-tagged) |
592 __ lw(a1, MemOperand(sp, 2 * kPointerSize)); | 666 __ lw(a1, MemOperand(sp, 2 * kPointerSize)); |
593 __ lw(a3, MemOperand(sp, 3 * kPointerSize)); | 667 __ lw(a3, MemOperand(sp, 3 * kPointerSize)); |
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675 | 749 |
676 __ sll(t0, a1, kPointerSizeLog2 - 1); | 750 __ sll(t0, a1, kPointerSizeLog2 - 1); |
677 __ Addu(sp, sp, t0); | 751 __ Addu(sp, sp, t0); |
678 __ Addu(sp, sp, kPointerSize); | 752 __ Addu(sp, sp, kPointerSize); |
679 __ IncrementCounter(isolate->counters()->constructed_objects(), 1, a1, a2); | 753 __ IncrementCounter(isolate->counters()->constructed_objects(), 1, a1, a2); |
680 __ Ret(); | 754 __ Ret(); |
681 } | 755 } |
682 | 756 |
683 | 757 |
684 void Builtins::Generate_JSConstructStubCountdown(MacroAssembler* masm) { | 758 void Builtins::Generate_JSConstructStubCountdown(MacroAssembler* masm) { |
685 Generate_JSConstructStubHelper(masm, false, true); | 759 Generate_JSConstructStubHelper(masm, false, true, false); |
686 } | 760 } |
687 | 761 |
688 | 762 |
689 void Builtins::Generate_JSConstructStubGeneric(MacroAssembler* masm) { | 763 void Builtins::Generate_JSConstructStubGeneric(MacroAssembler* masm) { |
690 Generate_JSConstructStubHelper(masm, false, false); | 764 Generate_JSConstructStubHelper(masm, false, false, FLAG_pretenuring_call_new); |
691 } | 765 } |
692 | 766 |
693 | 767 |
694 void Builtins::Generate_JSConstructStubApi(MacroAssembler* masm) { | 768 void Builtins::Generate_JSConstructStubApi(MacroAssembler* masm) { |
695 Generate_JSConstructStubHelper(masm, true, false); | 769 Generate_JSConstructStubHelper(masm, true, false, false); |
696 } | 770 } |
697 | 771 |
698 | 772 |
699 static void Generate_JSEntryTrampolineHelper(MacroAssembler* masm, | 773 static void Generate_JSEntryTrampolineHelper(MacroAssembler* masm, |
700 bool is_construct) { | 774 bool is_construct) { |
701 // Called from JSEntryStub::GenerateBody | 775 // Called from JSEntryStub::GenerateBody |
702 | 776 |
703 // ----------- S t a t e ------------- | 777 // ----------- S t a t e ------------- |
704 // -- a0: code entry | 778 // -- a0: code entry |
705 // -- a1: function | 779 // -- a1: function |
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1495 __ bind(&dont_adapt_arguments); | 1569 __ bind(&dont_adapt_arguments); |
1496 __ Jump(a3); | 1570 __ Jump(a3); |
1497 } | 1571 } |
1498 | 1572 |
1499 | 1573 |
1500 #undef __ | 1574 #undef __ |
1501 | 1575 |
1502 } } // namespace v8::internal | 1576 } } // namespace v8::internal |
1503 | 1577 |
1504 #endif // V8_TARGET_ARCH_MIPS | 1578 #endif // V8_TARGET_ARCH_MIPS |
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