Chromium Code Reviews
chromiumcodereview-hr@appspot.gserviceaccount.com (chromiumcodereview-hr) | Please choose your nickname with Settings | Help | Chromium Project | Gerrit Changes | Sign out
(380)

Side by Side Diff: pkg/compiler/lib/src/resolution/access_semantics.dart

Issue 929113002: Add SemanticVisitor to dart2js. (Closed) Base URL: https://dart.googlecode.com/svn/branches/bleeding_edge/dart
Patch Set: Fix indents and long lines. Created 5 years, 9 months ago
Use n/p to move between diff chunks; N/P to move between comments. Draft comments are only viewable by you.
Jump to:
View unified diff | Download patch | Annotate | Revision Log
« no previous file with comments | « no previous file | pkg/compiler/lib/src/resolution/operators.dart » ('j') | no next file with comments »
Toggle Intra-line Diffs ('i') | Expand Comments ('e') | Collapse Comments ('c') | Show Comments Hide Comments ('s')
OLDNEW
(Empty)
1 // Copyright (c) 2015, the Dart project authors. Please see the AUTHORS file
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.
4
5 // TODO(johnniwinther): Temporarily copied from analyzer2dart. Merge when
6 // we shared code with the analyzer and this semantic visitor is complete.
7
8 /**
9 * Code for classifying the semantics of identifiers appearing in a Dart file.
10 */
11 library dart2js.access_semantics;
12
13 import '../constants/expressions.dart';
14 import '../elements/elements.dart';
15
16 /// Enum representing the different kinds of destinations which a property
17 /// access or method or function invocation might refer to.
18 enum AccessKind {
19 /// The destination of the access is an instance method, property, or field
20 /// of a class, and thus must be determined dynamically.
21 DYNAMIC_PROPERTY,
22
23 // TODO(johnniwinther): Split these cases into captured and non-captured
24 // local access.
25 /// The destination of the access is a function that is defined locally within
26 /// an enclosing function or method.
27 LOCAL_FUNCTION,
28
29 /// The destination of the access is a variable that is defined locally within
30 /// an enclosing function or method.
31 LOCAL_VARIABLE,
32
33 /// The destination of the access is a variable that is defined as a parameter
34 /// to an enclosing function or method.
35 PARAMETER,
36
37 /// The destination of the access is a field that is defined statically within
38 /// a class.
39 STATIC_FIELD,
40
41 /// The destination of the access is a method that is defined statically
42 /// within a class.
43 STATIC_METHOD,
44
45 /// The destination of the access is a property getter that is defined
46 /// statically within a class.
47 STATIC_GETTER,
48
49 /// The destination of the access is a property setter that is defined
50 /// statically within a class.
51 STATIC_SETTER,
52
53 /// The destination of the access is a top level variable defined within a
54 /// library.
55 TOPLEVEL_FIELD,
56
57 /// The destination of the access is a top level method defined within a
58 /// library.
59 TOPLEVEL_METHOD,
60
61 /// The destination of the access is a top level property getter defined
62 /// within a library.
63 TOPLEVEL_GETTER,
64
65 /// The destination of the access is a top level property setter defined
66 /// within a library.
67 TOPLEVEL_SETTER,
68
69 /// The destination of the access is a toplevel class, or named mixin
70 /// application.
71 CLASS_TYPE_LITERAL,
72
73 /// The destination of the access is a function typedef.
74 TYPEDEF_TYPE_LITERAL,
75
76 /// The destination of the access is the built-in type "dynamic".
77 DYNAMIC_TYPE_LITERAL,
78
79 /// The destination of the access is a type parameter of the enclosing class.
80 TYPE_PARAMETER_TYPE_LITERAL,
81
82 /// The destination of the access is a (complex) expression. For instance the
83 /// function expression `(){}` in the function expression invocation `(){}()`.
84 EXPRESSION,
85
86 /// The destination of the access is `this` of the enclosing class.
87 THIS,
88
89 /// The destination of the access is an instance method, property, or field
90 /// of the enclosing class.
91 THIS_PROPERTY,
92
93 /// The destination of the access is a field of the super class of the
94 /// enclosing class.
95 SUPER_FIELD,
96
97 /// The destination of the access is a method of the super class of the
98 /// enclosing class.
99 SUPER_METHOD,
100
101 /// The destination of the access is a getter of the super class of the
102 /// enclosing class.
103 SUPER_GETTER,
104
105 /// The destination of the access is a setter of the super class of the
106 /// enclosing class.
107 SUPER_SETTER,
108
109 /// Compound access where read and write access different elements.
110 /// See [CompoundAccessKind].
111 COMPOUND,
112
113 /// The destination of the access is a compile-time constant.
114 CONSTANT,
115
116 /// The destination of the access is unresolved in a static context.
117 UNRESOLVED,
118 }
119
120 enum CompoundAccessKind {
121 /// Read from a static getter and write to static setter.
122 STATIC_GETTER_SETTER,
123 /// Read from a static method (closurize) and write to static setter.
124 STATIC_METHOD_SETTER,
125
126 /// Read from a top level getter and write to a top level setter.
127 TOPLEVEL_GETTER_SETTER,
128 /// Read from a top level method (closurize) and write to top level setter.
129 TOPLEVEL_METHOD_SETTER,
130
131 /// Read from one superclass field and write to another.
132 SUPER_FIELD_FIELD,
133 /// Read from a superclass field and write to a superclass setter.
134 SUPER_FIELD_SETTER,
135 /// Read from a superclass getter and write to a superclass setter.
136 SUPER_GETTER_SETTER,
137 /// Read from a superclass method (closurize) and write to a superclass
138 /// setter.
139 SUPER_METHOD_SETTER,
140 /// Read from a superclass getter and write to a superclass field.
141 SUPER_GETTER_FIELD,
142 }
143
144 /**
145 * Data structure used to classify the semantics of a property access or method
146 * or function invocation.
147 */
148 class AccessSemantics {
149 /**
150 * The kind of access.
151 */
152 final AccessKind kind;
153
154 /**
155 * The element being accessed, if statically known. This will be null if
156 * [kind] is DYNAMIC or if the element is undefined (e.g. an attempt to
157 * access a non-existent static method in a class).
158 */
159 Element get element => null;
160
161 /**
162 * The class containing the element being accessed, if this is a static
163 * reference to an element in a class. This will be null if [kind] is
164 * DYNAMIC, LOCAL_FUNCTION, LOCAL_VARIABLE, PARAMETER, TOPLEVEL_CLASS, or
165 * TYPE_PARAMETER, or if the element being accessed is defined at toplevel
166 * within a library.
167 *
168 * Note: it is possible for [classElement] to be non-null and for [element]
169 * to be null; for example this occurs if the element being accessed is a
170 * non-existent static method or field inside an existing class.
171 */
172 ClassElement get classElement => null;
173
174 // TODO(paulberry): would it also be useful to store the libraryElement?
175
176 // TODO(johnniwinther): Do we need this?
177 /**
178 * When [kind] is DYNAMIC_PROPERTY, the expression whose runtime type
179 * determines the class in which [identifier] should be looked up.
180 *
181 * When [kind] is not DYNAMIC_PROPERTY, this field is always null.
182 */
183 /*Expression*/ get target => null;
184
185 ConstantExpression get constant => null;
186
187 AccessSemantics.expression()
188 : kind = AccessKind.EXPRESSION;
189
190 AccessSemantics.thisAccess()
191 : kind = AccessKind.THIS;
192
193 AccessSemantics.thisProperty()
194 : kind = AccessKind.THIS_PROPERTY;
195
196 AccessSemantics._(this.kind);
197
198 String toString() {
199 StringBuffer sb = new StringBuffer();
200 sb.write('AccessSemantics[');
201 sb.write('kind=$kind,');
202 if (element != null) {
203 sb.write('element=');
204 if (classElement != null) {
205 sb.write('${classElement.name}.');
206 }
207 sb.write('${element}');
208 }
209 sb.write(']');
210 return sb.toString();
211 }
212 }
213
214
215 class DynamicAccess extends AccessSemantics {
216 final target;
217
218 DynamicAccess.dynamicProperty(this.target)
219 : super._(AccessKind.DYNAMIC_PROPERTY);
220 }
221
222 class ConstantAccess extends AccessSemantics {
223 final ConstantExpression constant;
224
225 ConstantAccess(AccessKind kind, this.constant)
226 : super._(kind);
227
228 ConstantAccess.classTypeLiteral(this.constant)
229 : super._(AccessKind.CLASS_TYPE_LITERAL);
230
231 ConstantAccess.typedefTypeLiteral(this.constant)
232 : super._(AccessKind.TYPEDEF_TYPE_LITERAL);
233
234 ConstantAccess.dynamicTypeLiteral(this.constant)
235 : super._(AccessKind.DYNAMIC_TYPE_LITERAL);
236 }
237
238 class StaticAccess extends AccessSemantics {
239 final Element element;
240
241 ClassElement get classElement => element.enclosingClass;
242
243 StaticAccess._(AccessKind kind, this.element)
244 : super._(kind);
245
246 StaticAccess.superSetter(MethodElement this.element)
247 : super._(AccessKind.SUPER_SETTER);
248
249 StaticAccess.superField(FieldElement this.element)
250 : super._(AccessKind.SUPER_FIELD);
251
252 StaticAccess.superMethod(MethodElement this.element)
253 : super._(AccessKind.SUPER_METHOD);
254
255 StaticAccess.superGetter(MethodElement this.element)
256 : super._(AccessKind.SUPER_GETTER);
257
258 StaticAccess.typeParameterTypeLiteral(TypeVariableElement this.element)
259 : super._(AccessKind.TYPE_PARAMETER_TYPE_LITERAL);
260
261 StaticAccess.localFunction(LocalFunctionElement this.element)
262 : super._(AccessKind.LOCAL_FUNCTION);
263
264 StaticAccess.localVariable(LocalVariableElement this.element)
265 : super._(AccessKind.LOCAL_VARIABLE);
266
267 StaticAccess.parameter(ParameterElement this.element)
268 : super._(AccessKind.PARAMETER);
269
270 StaticAccess.staticField(FieldElement this.element)
271 : super._(AccessKind.STATIC_FIELD);
272
273 StaticAccess.staticMethod(MethodElement this.element)
274 : super._(AccessKind.STATIC_METHOD);
275
276 StaticAccess.staticGetter(MethodElement this.element)
277 : super._(AccessKind.STATIC_GETTER);
278
279 StaticAccess.staticSetter(MethodElement this.element)
280 : super._(AccessKind.STATIC_SETTER);
281
282 StaticAccess.topLevelField(FieldElement this.element)
283 : super._(AccessKind.TOPLEVEL_FIELD);
284
285 StaticAccess.topLevelMethod(MethodElement this.element)
286 : super._(AccessKind.TOPLEVEL_METHOD);
287
288 StaticAccess.topLevelGetter(MethodElement this.element)
289 : super._(AccessKind.TOPLEVEL_GETTER);
290
291 StaticAccess.topLevelSetter(MethodElement this.element)
292 : super._(AccessKind.TOPLEVEL_SETTER);
293
294 StaticAccess.unresolved(this.element)
295 : super._(AccessKind.UNRESOLVED);
296 }
297
298 class CompoundAccessSemantics extends AccessSemantics {
299 final CompoundAccessKind compoundAccessKind;
300 final Element getter;
301 final Element setter;
302
303 CompoundAccessSemantics(this.compoundAccessKind,
304 this.getter,
305 this.setter)
306 : super._(AccessKind.COMPOUND);
307
308 Element get element => setter;
309 }
OLDNEW
« no previous file with comments | « no previous file | pkg/compiler/lib/src/resolution/operators.dart » ('j') | no next file with comments »

Powered by Google App Engine
This is Rietveld 408576698