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Side by Side Diff: lib/compiler/implementation/ssa/builder.dart

Issue 10905234: Fix for issue 4921: ad the generic type info to a List when we create it. (Closed) Base URL: http://dart.googlecode.com/svn/branches/bleeding_edge/dart/
Patch Set: Created 8 years, 3 months ago
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1 // Copyright (c) 2012, the Dart project authors. Please see the AUTHORS file 1 // Copyright (c) 2012, 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 class Interceptors { 5 class Interceptors {
6 Compiler compiler; 6 Compiler compiler;
7 Interceptors(Compiler this.compiler); 7 Interceptors(Compiler this.compiler);
8 8
9 SourceString mapOperatorToMethodName(Operator op) { 9 SourceString mapOperatorToMethodName(Operator op) {
10 String name = op.source.stringValue; 10 String name = op.source.stringValue;
(...skipping 1221 matching lines...) Expand 10 before | Expand all | Expand 10 after
1232 1232
1233 // If the class has type variables, create the runtime type 1233 // If the class has type variables, create the runtime type
1234 // information with the type parameters provided. 1234 // information with the type parameters provided.
1235 if (!classElement.typeVariables.isEmpty()) { 1235 if (!classElement.typeVariables.isEmpty()) {
1236 List<String> typeVariables = <String>[]; 1236 List<String> typeVariables = <String>[];
1237 List<HInstruction> rtiInputs = <HInstruction>[]; 1237 List<HInstruction> rtiInputs = <HInstruction>[];
1238 classElement.typeVariables.forEach((TypeVariableType typeVariable) { 1238 classElement.typeVariables.forEach((TypeVariableType typeVariable) {
1239 typeVariables.add("'$typeVariable': #"); 1239 typeVariables.add("'$typeVariable': #");
1240 rtiInputs.add(localsHandler.directLocals[typeVariable.element]); 1240 rtiInputs.add(localsHandler.directLocals[typeVariable.element]);
1241 }); 1241 });
1242 String jsCode = '{ ${Strings.join(typeVariables, ', ')} }'; 1242 callSetRuntimeTypeInfo(typeVariables, rtiInputs, newObject);
1243 HInstruction typeInfo = new HForeign(new LiteralDartString(jsCode),
1244 new LiteralDartString('Object'),
1245 rtiInputs);
1246 add(typeInfo);
1247 Element typeInfoSetterElement = interceptors.getSetRuntimeTypeInfo();
1248 HInstruction typeInfoSetter = new HStatic(typeInfoSetterElement);
1249 add(typeInfoSetter);
1250 add(new HInvokeStatic(
1251 <HInstruction>[typeInfoSetter, newObject, typeInfo]));
1252 } 1243 }
1253 1244
1254 // Generate calls to the constructor bodies. 1245 // Generate calls to the constructor bodies.
1255 for (int index = constructors.length - 1; index >= 0; index--) { 1246 for (int index = constructors.length - 1; index >= 0; index--) {
1256 FunctionElement constructor = constructors[index]; 1247 FunctionElement constructor = constructors[index];
1257 ConstructorBodyElement body = getConstructorBody(constructor); 1248 ConstructorBodyElement body = getConstructorBody(constructor);
1258 if (body === null) continue; 1249 if (body === null) continue;
1259 List bodyCallInputs = <HInstruction>[]; 1250 List bodyCallInputs = <HInstruction>[];
1260 bodyCallInputs.add(newObject); 1251 bodyCallInputs.add(newObject);
1261 int arity = body.functionSignature.parameterCount; 1252 int arity = body.functionSignature.parameterCount;
(...skipping 1358 matching lines...) Expand 10 before | Expand all | Expand 10 after
2620 compiler.cancel('Unimplemented unresolved type variable', 2611 compiler.cancel('Unimplemented unresolved type variable',
2621 node: currentNode); 2612 node: currentNode);
2622 } 2613 }
2623 } else { 2614 } else {
2624 // The type variable is a type (e.g. int). 2615 // The type variable is a type (e.g. int).
2625 return graph.addConstantString( 2616 return graph.addConstantString(
2626 new LiteralDartString('$argument'), currentNode, constantSystem); 2617 new LiteralDartString('$argument'), currentNode, constantSystem);
2627 } 2618 }
2628 } 2619 }
2629 2620
2621 void handleListConstructor(InterfaceType type,
2622 Node currentNode,
2623 HInstruction newObject) {
2624 if (type.arguments.isEmpty()) return;
2625 List<HInstruction> inputs = <HInstruction>[];
2626 type.arguments.forEach((DartType argument) {
2627 inputs.add(analyzeTypeArgument(argument, currentNode));
2628 });
2629
2630 List<String> typeVariables = <String>[];
2631 type.element.typeVariables.forEach((TypeVariableType typeVariable) {
2632 typeVariables.add("'$typeVariable': #");
2633 });
2634
2635 callSetRuntimeTypeInfo(typeVariables, inputs, newObject);
2636 }
2637
2638 void callSetRuntimeTypeInfo(List<String> typeVariables,
2639 List<HInstruction> inputs,
2640 HInstruction newObject) {
2641 String jsCode = '{ ${Strings.join(typeVariables, ', ')} }';
kasperl 2012/09/12 12:19:04 Somehow the decoupling of the way you turn the typ
ngeoffray 2012/09/12 12:30:39 Done.
2642 HInstruction typeInfo = new HForeign(new LiteralDartString(jsCode),
2643 new LiteralDartString('Object'),
2644 inputs);
2645 add(typeInfo);
2646 Element typeInfoSetterElement = interceptors.getSetRuntimeTypeInfo();
2647 HInstruction typeInfoSetter = new HStatic(typeInfoSetterElement);
2648 add(typeInfoSetter);
2649 add(new HInvokeStatic(<HInstruction>[typeInfoSetter, newObject, typeInfo]));
2650 }
2651
2630 visitNewSend(Send node) { 2652 visitNewSend(Send node) {
2653 bool isListConstructor = false;
2631 computeType(element) { 2654 computeType(element) {
2632 Element originalElement = elements[node]; 2655 Element originalElement = elements[node];
2633 if (originalElement.getEnclosingClass() === compiler.listClass) { 2656 if (originalElement.getEnclosingClass() === compiler.listClass) {
2657 isListConstructor = true;
2634 if (node.arguments.isEmpty()) { 2658 if (node.arguments.isEmpty()) {
2635 return HType.EXTENDABLE_ARRAY; 2659 return HType.EXTENDABLE_ARRAY;
2636 } else { 2660 } else {
2637 return HType.MUTABLE_ARRAY; 2661 return HType.MUTABLE_ARRAY;
2638 } 2662 }
2639 } else if (element.isGenerativeConstructor()) { 2663 } else if (element.isGenerativeConstructor()) {
2640 ClassElement cls = element.getEnclosingClass(); 2664 ClassElement cls = element.getEnclosingClass();
2641 return new HBoundedType.exact(cls.type); 2665 return new HBoundedType.exact(cls.type);
2642 } else { 2666 } else {
2643 return HType.UNKNOWN; 2667 return HType.UNKNOWN;
(...skipping 24 matching lines...) Expand all
2668 compiler.internalError("malformed send in new expression"); 2692 compiler.internalError("malformed send in new expression");
2669 } 2693 }
2670 InterfaceType type = elements.getType(annotation); 2694 InterfaceType type = elements.getType(annotation);
2671 type.arguments.forEach((DartType argument) { 2695 type.arguments.forEach((DartType argument) {
2672 inputs.add(analyzeTypeArgument(argument, node)); 2696 inputs.add(analyzeTypeArgument(argument, node));
2673 }); 2697 });
2674 2698
2675 HType elementType = computeType(constructor); 2699 HType elementType = computeType(constructor);
2676 HInstruction newInstance = new HInvokeStatic(inputs, elementType); 2700 HInstruction newInstance = new HInvokeStatic(inputs, elementType);
2677 pushWithPosition(newInstance, node); 2701 pushWithPosition(newInstance, node);
2702
2703 // The List constructor forwards to a Dart static method that does
2704 // not know about the type argument. Therefore we special case
2705 // this constructor to have the setRuntimeTypeInfo called where
2706 // the 'new' is done.
2707 if (isListConstructor) {
2708 handleListConstructor(type, node, newInstance);
2709 }
2678 } 2710 }
2679 2711
2680 visitStaticSend(Send node) { 2712 visitStaticSend(Send node) {
2681 Selector selector = elements.getSelector(node); 2713 Selector selector = elements.getSelector(node);
2682 Element element = elements[node]; 2714 Element element = elements[node];
2683 if (element.isErroneous()) { 2715 if (element.isErroneous()) {
2684 generateThrowNoSuchMethod(node, getTargetName(element), node.arguments); 2716 generateThrowNoSuchMethod(node, getTargetName(element), node.arguments);
2685 return; 2717 return;
2686 } 2718 }
2687 if (element === compiler.assertMethod && !compiler.enableUserAssertions) { 2719 if (element === compiler.assertMethod && !compiler.enableUserAssertions) {
(...skipping 1452 matching lines...) Expand 10 before | Expand all | Expand 10 after
4140 new HSubGraphBlockInformation(elseBranch.graph)); 4172 new HSubGraphBlockInformation(elseBranch.graph));
4141 4173
4142 HBasicBlock conditionStartBlock = conditionBranch.block; 4174 HBasicBlock conditionStartBlock = conditionBranch.block;
4143 conditionStartBlock.setBlockFlow(info, joinBlock); 4175 conditionStartBlock.setBlockFlow(info, joinBlock);
4144 SubGraph conditionGraph = conditionBranch.graph; 4176 SubGraph conditionGraph = conditionBranch.graph;
4145 HIf branch = conditionGraph.end.last; 4177 HIf branch = conditionGraph.end.last;
4146 assert(branch is HIf); 4178 assert(branch is HIf);
4147 branch.blockInformation = conditionStartBlock.blockFlow; 4179 branch.blockInformation = conditionStartBlock.blockFlow;
4148 } 4180 }
4149 } 4181 }
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