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Side by Side Diff: frog/leg/compile_time_constants.dart

Issue 9699033: Introduce FieldParameterElement. (Closed) Base URL: https://dart.googlecode.com/svn/branches/bleeding_edge/dart
Patch Set: Address comments and create a separate map for the fields. Created 8 years, 9 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 Constant implements Hashable { 5 class Constant implements Hashable {
6 const Constant(); 6 const Constant();
7 7
8 bool isNull() => false; 8 bool isNull() => false;
9 bool isBool() => false; 9 bool isBool() => false;
10 bool isTrue() => false; 10 bool isTrue() => false;
(...skipping 468 matching lines...) Expand 10 before | Expand all | Expand 10 after
479 479
480 /** 480 /**
481 * Compiles the initial value of the given field and stores it in an internal 481 * Compiles the initial value of the given field and stores it in an internal
482 * map. 482 * map.
483 * 483 *
484 * [WorkItem] must contain a [VariableElement] refering to a global or 484 * [WorkItem] must contain a [VariableElement] refering to a global or
485 * static field. 485 * static field.
486 */ 486 */
487 void compileWorkItem(WorkItem work) { 487 void compileWorkItem(WorkItem work) {
488 assert(work.element.kind == ElementKind.FIELD 488 assert(work.element.kind == ElementKind.FIELD
489 || work.element.kind == ElementKind.PARAMETER); 489 || work.element.kind == ElementKind.PARAMETER
490 || work.element.kind == ElementKind.FIELD_PARAMETER);
490 VariableElement element = work.element; 491 VariableElement element = work.element;
491 // Shortcut if it has already been compiled. 492 // Shortcut if it has already been compiled.
492 if (initialVariableValues.containsKey(element)) return; 493 if (initialVariableValues.containsKey(element)) return;
493 compileVariableWithDefinitions(element, work.resolutionTree); 494 compileVariableWithDefinitions(element, work.resolutionTree);
494 assert(pendingVariables.isEmpty()); 495 assert(pendingVariables.isEmpty());
495 } 496 }
496 497
497 compileVariable(VariableElement element) { 498 compileVariable(VariableElement element) {
498 if (initialVariableValues.containsKey(element)) { 499 if (initialVariableValues.containsKey(element)) {
499 Constant result = initialVariableValues[element]; 500 Constant result = initialVariableValues[element];
(...skipping 413 matching lines...) Expand 10 before | Expand all | Expand 10 after
913 link = link.tail) { 914 link = link.tail) {
914 arguments.add(evaluate(link.head)); 915 arguments.add(evaluate(link.head));
915 } 916 }
916 } 917 }
917 return arguments; 918 return arguments;
918 } 919 }
919 920
920 void assignArgumentsToParameters( 921 void assignArgumentsToParameters(
921 List<Constant> arguments, 922 List<Constant> arguments,
922 FunctionParameters parameters, 923 FunctionParameters parameters,
923 Map<Element, Constant> constructorDefinitions) { 924 Map<Element, Constant> constructorDefinitions,
ngeoffray 2012/03/15 15:16:25 constructorDefinitions -> parameterValues ?
floitsch 2012/03/15 15:37:24 I want to rename some elements in this file anyway
925 Map<Element, Constant> fieldValues) {
924 if (arguments.length != parameters.parameterCount) { 926 if (arguments.length != parameters.parameterCount) {
925 if (arguments.length < parameters.parameterCount && 927 if (arguments.length < parameters.parameterCount &&
926 arguments.length >= parameters.requiredParameterCount) { 928 arguments.length >= parameters.requiredParameterCount) {
927 compiler.unimplemented("ConstantHandler with optional arguments", 929 compiler.unimplemented("ConstantHandler with optional arguments",
928 node: node); 930 node: node);
929 } else { 931 } else {
930 error(node); 932 error(node);
931 } 933 }
932 } 934 }
933 int index = 0; 935 int index = 0;
934 parameters.forEachParameter((Element parameter) { 936 parameters.forEachParameter((Element parameter) {
935 constructorDefinitions[parameter] = arguments[index++]; 937 Constant argument = arguments[index++];
938 constructorDefinitions[parameter] = argument;
939 if (parameter.kind == ElementKind.FIELD_PARAMETER) {
940 FieldParameterElement fieldParameterElement = parameter;
941 fieldValues[fieldParameterElement.fieldElement] = argument;
942 }
936 }); 943 });
937 } 944 }
938 945
939 void compileInitializers(Link<Node> initializers, 946 void compileInitializers(Link<Node> initializers,
940 CompileTimeConstantEvaluator evaluator, 947 CompileTimeConstantEvaluator evaluator,
941 TreeElements constructorElements, 948 TreeElements constructorElements,
942 Map<Element, Constant> constructorDefinitions) { 949 Map<Element, Constant> constructorDefinitions,
950 Map<Element, Constant> fieldValues) {
943 for (Link<Node> link = initializers; !link.isEmpty(); link = link.tail) { 951 for (Link<Node> link = initializers; !link.isEmpty(); link = link.tail) {
944 assert(link.head is Send); 952 assert(link.head is Send);
945 if (link.head is !SendSet) { 953 if (link.head is !SendSet) {
946 // A super initializer or constructor redirection. 954 // A super initializer or constructor redirection.
947 Send call = link.head; 955 Send call = link.head;
948 assert(Initializers.isSuperConstructorCall(call) || 956 assert(Initializers.isSuperConstructorCall(call) ||
949 Initializers.isConstructorRedirect(call)); 957 Initializers.isConstructorRedirect(call));
950 compiler.unimplemented("ConstantHandler with this or super", 958 compiler.unimplemented("ConstantHandler with this or super",
951 node: call); 959 node: call);
952 } else { 960 } else {
953 // A field initializer. 961 // A field initializer.
954 SendSet init = link.head; 962 SendSet init = link.head;
955 Link<Node> arguments = init.arguments; 963 Link<Node> arguments = init.arguments;
956 assert(!arguments.isEmpty() && arguments.tail.isEmpty()); 964 assert(!arguments.isEmpty() && arguments.tail.isEmpty());
957 Constant fieldValue = evaluator.evaluate(arguments.head); 965 Constant fieldValue = evaluator.evaluate(arguments.head);
958 constructorDefinitions[constructorElements[init]] = fieldValue; 966 fieldValues[constructorElements[init]] = fieldValue;
959 } 967 }
960 } 968 }
961 } 969 }
962 970
963 List<Constant> buildJsConstructorArguments( 971 List<Constant> buildJsNewArguments(ClassElement classElement,
964 ClassElement classElement, 972 Map<Element, Constant> fieldValues) {
965 Map<Element, Constant> constructorDefinitions) { 973 List<Constant> jsNewArguments = <Constant>[];
966 List<Constant> fieldValues = <Constant>[];
967 for (Element member in classElement.members) { 974 for (Element member in classElement.members) {
968 if (member.isInstanceMember() && member.kind == ElementKind.FIELD) { 975 if (member.isInstanceMember() && member.kind == ElementKind.FIELD) {
969 Constant fieldValue = constructorDefinitions[member]; 976 Constant fieldValue = fieldValues[member];
970 if (fieldValue === null) { 977 if (fieldValue === null) {
971 // Use the default value. 978 // Use the default value.
972 fieldValue = constantHandler.compileVariable(member); 979 fieldValue = constantHandler.compileVariable(member);
973 } 980 }
974 fieldValues.add(fieldValue); 981 jsNewArguments.add(fieldValue);
975 } 982 }
976 } 983 }
977 if (classElement.superclass != compiler.coreLibrary.find(Types.OBJECT)) { 984 if (classElement.superclass != compiler.coreLibrary.find(Types.OBJECT)) {
978 compiler.unimplemented("ConstantHandler with super", node: node); 985 compiler.unimplemented("ConstantHandler with super", node: node);
979 } 986 }
980 return fieldValues; 987 return jsNewArguments;
981 } 988 }
982 989
983 // TODO(floitsch): get the type from somewhere. 990 // TODO(floitsch): get the type from somewhere.
984 FunctionElement constructor = elements[node.send]; 991 FunctionElement constructor = elements[node.send];
985 ClassElement classElement = constructor.enclosingElement; 992 ClassElement classElement = constructor.enclosingElement;
986 TreeElements constructorElements = 993 TreeElements constructorElements =
987 compiler.resolver.resolveMethodElement(constructor); 994 compiler.resolver.resolveMethodElement(constructor);
988 FunctionExpression functionNode = constructor.parseNode(compiler); 995 FunctionExpression functionNode = constructor.parseNode(compiler);
989 NodeList initializerList = functionNode.initializers; 996 NodeList initializerList = functionNode.initializers;
990 FunctionParameters parameters = constructor.computeParameters(compiler); 997 FunctionParameters parameters = constructor.computeParameters(compiler);
991 998
999 Map<Element, Constant> fieldValues = new Map<Element, Constant>();
992 Map<Element, Constant> constructorDefinitions = 1000 Map<Element, Constant> constructorDefinitions =
993 new Map<Element, Constant>(); 1001 new Map<Element, Constant>();
994 1002
995 List<Constant> arguments = compileArguments(); 1003 List<Constant> arguments = compileArguments();
996 assignArgumentsToParameters(arguments, parameters, constructorDefinitions); 1004 assignArgumentsToParameters(arguments, parameters,
1005 constructorDefinitions, fieldValues);
ngeoffray 2012/03/15 15:16:25 This is all happening in the same function, so you
floitsch 2012/03/15 15:37:24 I think I will need separate arguments when implem
997 CompileTimeConstantEvaluator initializerEvaluator = 1006 CompileTimeConstantEvaluator initializerEvaluator =
998 new CompileTimeConstantEvaluator.insideConstructor( 1007 new CompileTimeConstantEvaluator.insideConstructor(
999 constantHandler, constructorElements, compiler, 1008 constantHandler, constructorElements, compiler,
1000 constructorDefinitions); 1009 constructorDefinitions);
1001 if (initializerList !== null) { 1010 if (initializerList !== null) {
1002 Link<Node> initializers = functionNode.initializers.nodes; 1011 Link<Node> initializers = functionNode.initializers.nodes;
1003 compileInitializers(initializers, 1012 compileInitializers(initializers,
1004 initializerEvaluator, 1013 initializerEvaluator,
1005 constructorElements, 1014 constructorElements,
1006 constructorDefinitions); 1015 constructorDefinitions,
1016 fieldValues);
1007 } 1017 }
1008 List<Constant> fieldValues = 1018 List<Constant> jsNewArguments =
1009 buildJsConstructorArguments(classElement, constructorDefinitions); 1019 buildJsNewArguments(classElement, fieldValues);
1010 1020
1011 compiler.registerInstantiatedClass(classElement); 1021 compiler.registerInstantiatedClass(classElement);
1012 Type type = new SimpleType(classElement.name, classElement); 1022 Type type = new SimpleType(classElement.name, classElement);
1013 Constant constant = new ConstructedConstant(type, fieldValues); 1023 Constant constant = new ConstructedConstant(type, jsNewArguments);
1014 constantHandler.registerCompileTimeConstant(constant); 1024 constantHandler.registerCompileTimeConstant(constant);
1015 return constant; 1025 return constant;
1016 } 1026 }
1017 1027
1018 error(Node node) { 1028 error(Node node) {
1019 // TODO(floitsch): get the list of constants that are currently compiled 1029 // TODO(floitsch): get the list of constants that are currently compiled
1020 // and present some kind of stack-trace. 1030 // and present some kind of stack-trace.
1021 MessageKind kind = MessageKind.NOT_A_COMPILE_TIME_CONSTANT; 1031 MessageKind kind = MessageKind.NOT_A_COMPILE_TIME_CONSTANT;
1022 compiler.reportError(node, new CompileTimeConstantError(kind, const [])); 1032 compiler.reportError(node, new CompileTimeConstantError(kind, const []));
1023 } 1033 }
1024 } 1034 }
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