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| 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file | 1 // Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file |
| 2 // for details. All rights reserved. Use of this source code is governed by a | 2 // for details. All rights reserved. Use of this source code is governed by a |
| 3 // BSD-style license that can be found in the LICENSE file. | 3 // BSD-style license that can be found in the LICENSE file. |
| 4 | 4 |
| 5 #include "vm/flow_graph_optimizer.h" | 5 #include "vm/flow_graph_optimizer.h" |
| 6 | 6 |
| 7 #include "vm/bit_vector.h" | 7 #include "vm/bit_vector.h" |
| 8 #include "vm/cha.h" | 8 #include "vm/cha.h" |
| 9 #include "vm/flow_graph_builder.h" | 9 #include "vm/flow_graph_builder.h" |
| 10 #include "vm/flow_graph_compiler.h" | 10 #include "vm/flow_graph_compiler.h" |
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| 383 } else if ((from == kUnboxedUint32x4) && (to == kTagged)) { | 383 } else if ((from == kUnboxedUint32x4) && (to == kTagged)) { |
| 384 converted = new BoxUint32x4Instr(use->CopyWithType()); | 384 converted = new BoxUint32x4Instr(use->CopyWithType()); |
| 385 } | 385 } |
| 386 ASSERT(converted != NULL); | 386 ASSERT(converted != NULL); |
| 387 use->BindTo(converted); | 387 use->BindTo(converted); |
| 388 InsertBefore(insert_before, converted, use->instruction()->env(), | 388 InsertBefore(insert_before, converted, use->instruction()->env(), |
| 389 Definition::kValue); | 389 Definition::kValue); |
| 390 } | 390 } |
| 391 | 391 |
| 392 | 392 |
| 393 void FlowGraphOptimizer::ConvertUse(Value* use, Representation from_rep) { |
| 394 const Representation to_rep = |
| 395 use->instruction()->RequiredInputRepresentation(use->use_index()); |
| 396 if (from_rep == to_rep || to_rep == kNoRepresentation) { |
| 397 return; |
| 398 } |
| 399 |
| 400 Instruction* insert_before; |
| 401 Instruction* deopt_target; |
| 402 PhiInstr* phi = use->instruction()->AsPhi(); |
| 403 if (phi != NULL) { |
| 404 ASSERT(phi->is_alive()); |
| 405 // For phis conversions have to be inserted in the predecessor. |
| 406 insert_before = |
| 407 phi->block()->PredecessorAt(use->use_index())->last_instruction(); |
| 408 deopt_target = NULL; |
| 409 } else { |
| 410 deopt_target = insert_before = use->instruction(); |
| 411 } |
| 412 |
| 413 InsertConversion(from_rep, to_rep, use, insert_before, deopt_target); |
| 414 } |
| 415 |
| 393 void FlowGraphOptimizer::InsertConversionsFor(Definition* def) { | 416 void FlowGraphOptimizer::InsertConversionsFor(Definition* def) { |
| 394 const Representation from_rep = def->representation(); | 417 const Representation from_rep = def->representation(); |
| 395 | 418 |
| 396 for (Value::Iterator it(def->input_use_list()); | 419 for (Value::Iterator it(def->input_use_list()); |
| 397 !it.Done(); | 420 !it.Done(); |
| 398 it.Advance()) { | 421 it.Advance()) { |
| 399 Value* use = it.Current(); | 422 ConvertUse(it.Current(), from_rep); |
| 400 const Representation to_rep = | 423 } |
| 401 use->instruction()->RequiredInputRepresentation(use->use_index()); | 424 } |
| 402 if (from_rep == to_rep || to_rep == kNoRepresentation) { | 425 |
| 403 continue; | 426 |
| 427 // Returns true if phi's representation was changed. |
| 428 static bool UnboxPhi(PhiInstr* phi) { |
| 429 Representation current = phi->representation(); |
| 430 Representation unboxed = current; |
| 431 |
| 432 switch (phi->Type()->ToCid()) { |
| 433 case kDoubleCid: |
| 434 unboxed = kUnboxedDouble; |
| 435 break; |
| 436 case kFloat32x4Cid: |
| 437 unboxed = kUnboxedFloat32x4; |
| 438 break; |
| 439 case kUint32x4Cid: |
| 440 unboxed = kUnboxedUint32x4; |
| 441 break; |
| 442 } |
| 443 |
| 444 if (unboxed != current) { |
| 445 phi->set_representation(unboxed); |
| 446 return true; |
| 447 } |
| 448 |
| 449 return false; |
| 450 } |
| 451 |
| 452 |
| 453 void FlowGraphOptimizer::UnboxPhis() { |
| 454 GrowableArray<PhiInstr*> worklist(5); |
| 455 |
| 456 // Convervatively unbox all phis that were proven to be of Double, |
| 457 // Float32x4, or Uint32x4 type. |
| 458 for (intptr_t i = 0; i < block_order_.length(); ++i) { |
| 459 JoinEntryInstr* join_entry = block_order_[i]->AsJoinEntry(); |
| 460 if (join_entry != NULL) { |
| 461 for (PhiIterator it(join_entry); !it.Done(); it.Advance()) { |
| 462 PhiInstr* phi = it.Current(); |
| 463 if (UnboxPhi(phi)) { |
| 464 worklist.Add(phi); |
| 465 } |
| 466 } |
| 404 } | 467 } |
| 468 } |
| 405 | 469 |
| 406 Instruction* insert_before; | 470 while (!worklist.is_empty()) { |
| 407 Instruction* deopt_target; | 471 PhiInstr* phi = worklist.RemoveLast(); |
| 408 PhiInstr* phi = use->instruction()->AsPhi(); | 472 InsertConversionsFor(phi); |
| 409 if (phi != NULL) { | 473 |
| 410 ASSERT(phi->is_alive()); | 474 for (intptr_t i = 0; i < phi->InputCount(); i++) { |
| 411 // For phis conversions have to be inserted in the predecessor. | 475 ConvertUse(phi->InputAt(i), |
| 412 insert_before = | 476 phi->InputAt(i)->definition()->representation()); |
| 413 phi->block()->PredecessorAt(use->use_index())->last_instruction(); | |
| 414 deopt_target = NULL; | |
| 415 } else { | |
| 416 deopt_target = insert_before = use->instruction(); | |
| 417 } | 477 } |
| 418 | |
| 419 InsertConversion(from_rep, to_rep, use, insert_before, deopt_target); | |
| 420 } | 478 } |
| 421 } | 479 } |
| 422 | 480 |
| 423 | 481 |
| 424 void FlowGraphOptimizer::SelectRepresentations() { | 482 void FlowGraphOptimizer::SelectRepresentations() { |
| 425 // Convervatively unbox all phis that were proven to be of Double, | 483 // Convervatively unbox all phis that were proven to be of Double, |
| 426 // Float32x4, or Uint32x4. | 484 // Float32x4, or Uint32x4 type. |
| 427 for (intptr_t i = 0; i < block_order_.length(); ++i) { | 485 for (intptr_t i = 0; i < block_order_.length(); ++i) { |
| 428 JoinEntryInstr* join_entry = block_order_[i]->AsJoinEntry(); | 486 JoinEntryInstr* join_entry = block_order_[i]->AsJoinEntry(); |
| 429 if (join_entry != NULL) { | 487 if (join_entry != NULL) { |
| 430 for (PhiIterator it(join_entry); !it.Done(); it.Advance()) { | 488 for (PhiIterator it(join_entry); !it.Done(); it.Advance()) { |
| 431 PhiInstr* phi = it.Current(); | 489 PhiInstr* phi = it.Current(); |
| 432 ASSERT(phi != NULL); | 490 UnboxPhi(phi); |
| 433 if (phi->Type()->ToCid() == kDoubleCid) { | |
| 434 phi->set_representation(kUnboxedDouble); | |
| 435 } else if (phi->Type()->ToCid() == kFloat32x4Cid) { | |
| 436 phi->set_representation(kUnboxedFloat32x4); | |
| 437 } else if (phi->Type()->ToCid() == kUint32x4Cid) { | |
| 438 phi->set_representation(kUnboxedUint32x4); | |
| 439 } | |
| 440 } | 491 } |
| 441 } | 492 } |
| 442 } | 493 } |
| 443 | 494 |
| 444 // Process all instructions and insert conversions where needed. | 495 // Process all instructions and insert conversions where needed. |
| 445 GraphEntryInstr* graph_entry = block_order_[0]->AsGraphEntry(); | 496 GraphEntryInstr* graph_entry = block_order_[0]->AsGraphEntry(); |
| 446 | 497 |
| 447 // Visit incoming parameters and constants. | 498 // Visit incoming parameters and constants. |
| 448 for (intptr_t i = 0; i < graph_entry->initial_definitions()->length(); i++) { | 499 for (intptr_t i = 0; i < graph_entry->initial_definitions()->length(); i++) { |
| 449 InsertConversionsFor((*graph_entry->initial_definitions())[i]); | 500 InsertConversionsFor((*graph_entry->initial_definitions())[i]); |
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| 6547 | 6598 |
| 6548 // Insert materializations at environment uses. | 6599 // Insert materializations at environment uses. |
| 6549 const Class& cls = Class::Handle(alloc->constructor().Owner()); | 6600 const Class& cls = Class::Handle(alloc->constructor().Owner()); |
| 6550 for (intptr_t i = 0; i < exits.length(); i++) { | 6601 for (intptr_t i = 0; i < exits.length(); i++) { |
| 6551 CreateMaterializationAt(exits[i], alloc, cls, *fields); | 6602 CreateMaterializationAt(exits[i], alloc, cls, *fields); |
| 6552 } | 6603 } |
| 6553 } | 6604 } |
| 6554 | 6605 |
| 6555 | 6606 |
| 6556 } // namespace dart | 6607 } // namespace dart |
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