469e1e2e64
Change-Id: I7a157080e4d7fd80d64489a13de4e996b5870930 Reviewed-on: https://dart-review.googlesource.com/c/79474 Reviewed-by: Konstantin Shcheglov <scheglov@google.com> Commit-Queue: Brian Wilkerson <brianwilkerson@google.com>
330 lines
11 KiB
Dart
330 lines
11 KiB
Dart
// Copyright (c) 2013, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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import 'package:analyzer/dart/ast/ast.dart';
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import 'package:analyzer/dart/ast/standard_resolution_map.dart';
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import 'package:analyzer/dart/element/element.dart';
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import 'package:analyzer/dart/element/type.dart';
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import 'package:analyzer/src/generated/resolver.dart' show TypeProvider;
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import 'package:analyzer/src/generated/testing/element_search.dart';
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import 'package:analyzer/src/generated/source.dart';
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import 'package:test/test.dart';
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/**
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* Search the [unit] for the [LocalVariableElement] with the given [name].
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* Fail if there is not exactly one such variable.
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*/
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FunctionElement findLocalFunction(CompilationUnit unit, String name) {
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List<Element> elements = findElementsByName(unit, name);
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List<Element> functions =
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elements.where((e) => e is FunctionElement).toList();
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expect(functions, hasLength(1));
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return functions[0];
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}
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/**
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* Search the [unit] for the [LocalVariableElement] with the given [name].
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* Fail if there is not exactly one such variable.
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*/
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LocalVariableElement findLocalVariable(CompilationUnit unit, String name) {
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List<Element> elements = findElementsByName(unit, name);
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List<Element> localVariables =
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elements.where((e) => e is LocalVariableElement).toList();
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expect(localVariables, hasLength(1));
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return localVariables[0];
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}
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/**
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* The type of an assertion which asserts properties of [T]s.
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*/
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typedef void Asserter<T>(T type);
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/**
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* The type of a function which given an [S], builds an assertion over [T]s.
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*/
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typedef Asserter<T> AsserterBuilder<S, T>(S arg);
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/**
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* The type of a function which given an [S0] and an S1, builds an assertion
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* over [T]s.
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*/
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typedef Asserter<T> AsserterBuilder2<S0, S1, T>(S0 arg0, S1 arg1);
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/**
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* The type of a function which given an [R] returns an [AsserterBuilder] over
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* [S]s and [T]s. That is, it returns a function which given an [S], returns
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* a function over [T]s.
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*/
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typedef AsserterBuilder<S, T> AsserterBuilderBuilder<R, S, T>(R arg);
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class AstFinder {
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/**
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* Return the declaration of the class with the given [className] in the given
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* compilation [unit].
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*/
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static ClassDeclaration getClass(CompilationUnit unit, String className) {
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NodeList<CompilationUnitMember> unitMembers = unit.declarations;
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for (CompilationUnitMember unitMember in unitMembers) {
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if (unitMember is ClassDeclaration && unitMember.name.name == className) {
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return unitMember;
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}
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}
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Source source = resolutionMap.elementDeclaredByCompilationUnit(unit).source;
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fail('No class named $className in $source');
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}
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/**
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* Return the declaration of the constructor with the given [constructorName] in
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* the class with the given [className] in the given compilation [unit]. If
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* constructorName is null, return the default constructor;
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*/
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static ConstructorDeclaration getConstructorInClass(
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CompilationUnit unit, String className, String constructorName) {
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ClassDeclaration unitMember = getClass(unit, className);
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NodeList<ClassMember> classMembers = unitMember.members;
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for (ClassMember classMember in classMembers) {
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if (classMember is ConstructorDeclaration) {
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if (classMember.name?.name == constructorName) {
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return classMember;
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}
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}
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}
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fail('No constructor named $constructorName in $className');
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}
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/**
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* Return the declaration of the field with the given [fieldName] in the class
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* with the given [className] in the given compilation [unit].
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*/
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static VariableDeclaration getFieldInClass(
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CompilationUnit unit, String className, String fieldName) {
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ClassDeclaration unitMember = getClass(unit, className);
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NodeList<ClassMember> classMembers = unitMember.members;
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for (ClassMember classMember in classMembers) {
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if (classMember is FieldDeclaration) {
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NodeList<VariableDeclaration> fields = classMember.fields.variables;
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for (VariableDeclaration field in fields) {
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if (field.name.name == fieldName) {
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return field;
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}
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}
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}
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}
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fail('No field named $fieldName in $className');
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}
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/**
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* Return the element of the field with the given [fieldName] in the class
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* with the given [className] in the given compilation [unit].
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*/
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static FieldElement getFieldInClassElement(
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CompilationUnit unit, String className, String fieldName) {
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return getFieldInClass(unit, className, fieldName)?.name?.staticElement;
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}
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/**
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* Return the declaration of the method with the given [methodName] in the
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* class with the given [className] in the given compilation [unit].
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*/
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static MethodDeclaration getMethodInClass(
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CompilationUnit unit, String className, String methodName) {
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ClassDeclaration unitMember = getClass(unit, className);
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NodeList<ClassMember> classMembers = unitMember.members;
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for (ClassMember classMember in classMembers) {
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if (classMember is MethodDeclaration) {
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if (classMember.name.name == methodName) {
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return classMember;
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}
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}
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}
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fail('No method named $methodName in $className');
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}
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/**
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* Return the statements in the body of a the method with the given
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* [methodName] in the class with the given [className] in the given
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* compilation [unit].
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*/
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static List<Statement> getStatementsInMethod(
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CompilationUnit unit, String className, String methodName) {
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MethodDeclaration method = getMethodInClass(unit, className, methodName);
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BlockFunctionBody body = method.body;
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return body.block.statements;
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}
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/**
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* Return the statements in the body of the top-level function with the given
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* [functionName] in the given compilation [unit].
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*/
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static List<Statement> getStatementsInTopLevelFunction(
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CompilationUnit unit, String functionName) {
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FunctionDeclaration function = getTopLevelFunction(unit, functionName);
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BlockFunctionBody body = function.functionExpression.body;
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return body.block.statements;
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}
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/**
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* Return the declaration of the top-level function with the given
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* [functionName] in the given compilation [unit].
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*/
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static FunctionDeclaration getTopLevelFunction(
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CompilationUnit unit, String functionName) {
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NodeList<CompilationUnitMember> unitMembers = unit.declarations;
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for (CompilationUnitMember unitMember in unitMembers) {
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if (unitMember is FunctionDeclaration) {
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if (unitMember.name.name == functionName) {
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return unitMember;
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}
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}
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}
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fail('No toplevel function named $functionName found');
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}
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/**
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* Return the declaration of the top-level variable with the given
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* [variableName] in the given compilation [unit].
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*/
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static VariableDeclaration getTopLevelVariable(
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CompilationUnit unit, String variableName) {
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NodeList<CompilationUnitMember> unitMembers = unit.declarations;
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for (CompilationUnitMember unitMember in unitMembers) {
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if (unitMember is TopLevelVariableDeclaration) {
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NodeList<VariableDeclaration> variables =
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unitMember.variables.variables;
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for (VariableDeclaration variable in variables) {
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if (variable.name.name == variableName) {
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return variable;
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}
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}
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}
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}
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fail('No toplevel variable named $variableName found');
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}
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/**
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* Return the top-level variable element with the given [name].
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*/
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static TopLevelVariableElement getTopLevelVariableElement(
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CompilationUnit unit, String name) {
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return getTopLevelVariable(unit, name)?.name?.staticElement;
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}
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}
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/**
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* Class for compositionally building up assertions on types
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*/
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class TypeAssertions {
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// TODO(leafp): Make these matchers.
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// https://www.dartdocs.org/documentation/matcher/0.12.0%2B1/matcher/Matcher-class.html
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/**
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* Provides primitive types for basic type assertions.
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*/
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final TypeProvider _typeProvider;
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TypeAssertions(this._typeProvider);
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/**
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* Primitive assertion for the dynamic type
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*/
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Asserter<DartType> get isDynamic => isType(_typeProvider.dynamicType);
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/**
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* Primitive assertion for the int type
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*/
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Asserter<DartType> get isInt => isType(_typeProvider.intType);
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/**
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* Primitive assertion for the list type
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*/
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Asserter<DartType> get isList => hasElementOf(_typeProvider.listType);
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/**
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* Primitive assertion for the map type
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*/
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Asserter<DartType> get isMap => hasElementOf(_typeProvider.mapType);
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/**
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* Primitive assertion for the Null type
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*/
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Asserter<DartType> get isNull => isType(_typeProvider.nullType);
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/**
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* Primitive assertion for the num type
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*/
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Asserter<DartType> get isNum => isType(_typeProvider.numType);
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/**
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* Primitive assertion for the Object type
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*/
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Asserter<DartType> get isObject => isType(_typeProvider.objectType);
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/**
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* Primitive assertion for the string type
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*/
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Asserter<DartType> get isString => isType(_typeProvider.stringType);
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/**
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* Assert that a type has the element that is equal to the [expected].
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*/
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Asserter<DartType> hasElement(Element expected) =>
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(DartType type) => expect(expected, type.element);
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/**
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* Assert that a type has the element that is equal to the element of the
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* given [type].
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*/
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Asserter<DartType> hasElementOf(DartType type) => hasElement(type.element);
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/**
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* Given assertions for the argument and return types, produce an
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* assertion over unary function types.
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*/
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Asserter<DartType> isFunction2Of(
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Asserter<DartType> argType, Asserter<DartType> returnType) =>
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(DartType type) {
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FunctionType fType = (type as FunctionType);
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argType(fType.normalParameterTypes[0]);
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returnType(fType.returnType);
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};
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/**
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* Given an assertion for the base type and assertions over the type
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* parameters, produce an assertion over instantiations.
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*/
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AsserterBuilder<List<Asserter<DartType>>, DartType> isInstantiationOf(
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Asserter<DartType> baseAssert) =>
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(List<Asserter<DartType>> argAsserts) => (DartType type) {
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InterfaceType t = (type as InterfaceType);
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baseAssert(t);
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List<DartType> typeArguments = t.typeArguments;
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expect(typeArguments, hasLength(argAsserts.length));
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for (int i = 0; i < typeArguments.length; i++) {
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argAsserts[i](typeArguments[i]);
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}
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};
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/**
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* Assert that a type is the List type, and that the given assertion holds
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* over the type parameter.
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*/
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Asserter<InterfaceType> isListOf(Asserter<DartType> argAssert) =>
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isInstantiationOf(isList)([argAssert]);
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/**
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* Assert that a type is the Map type, and that the given assertions hold
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* over the type parameters.
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*/
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Asserter<InterfaceType> isMapOf(
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Asserter<DartType> argAssert0, Asserter<DartType> argAssert1) =>
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isInstantiationOf(isMap)([argAssert0, argAssert1]);
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/**
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* Assert that a type is equal to the [expected].
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*/
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Asserter<DartType> isType(DartType expected) => (DartType t) {
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expect(t, expected);
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};
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}
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