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| 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 | |
| 3 // BSD-style license that can be found in the LICENSE file. | |
| 4 | |
| 5 /** | |
| 6 * This is for use in extracting messages from a Dart program | |
| 7 * using the Intl.message() mechanism and writing them to a file for | |
| 8 * translation. This provides only the stub of a mechanism, because it | |
| 9 * doesn't define how the file should be written. It provides an | |
| 10 * [IntlMessage] class that holds the extracted data and [parseString] | |
| 11 * and [parseFile] methods which | |
| 12 * can extract messages that conform to the expected pattern: | |
| 13 * (parameters) => Intl.message("Message $parameters", desc: ...); | |
| 14 * It uses the analyzer_experimental package to do the parsing, so may | |
| 15 * break if there are changes to the API that provides. | |
|
Emily Fortuna
2013/03/13 18:54:43
typo: "that it"
Alan Knight
2013/03/14 17:49:05
Done.
| |
| 16 * An example can be found in test/message_extraction/extract_to_json.dart | |
| 17 * | |
| 18 * Note that this does not understand how to follow part directives, so it | |
| 19 * has to explicitly be given all the files that it needs. A typical use case | |
| 20 * is to run it on all .dart files in a directory. | |
| 21 */ | |
| 22 library extract_messages; | |
| 23 | |
| 24 import 'package:analyzer-experimental/src/generated/ast.dart'; | |
| 25 import 'package:analyzer-experimental/src/generated/error.dart'; | |
| 26 import 'package:analyzer-experimental/src/generated/java_core.dart'; | |
| 27 import 'package:analyzer-experimental/src/generated/parser.dart'; | |
| 28 import 'package:analyzer-experimental/src/generated/scanner.dart'; | |
| 29 import 'package:analyzer-experimental/src/generated/source.dart'; | |
| 30 import 'package:analyzer-experimental/src/generated/utilities_dart.dart'; | |
| 31 import 'dart:io'; | |
| 32 import 'package:intl/src/intl_message.dart'; | |
| 33 | |
| 34 /** | |
| 35 * Parse the dart program represented in [sourceCode] and return a Map from | |
| 36 * message names to [IntlMessage] instances. The [origin] is a string | |
| 37 * describing where the source came from, and is used in error messages. | |
| 38 */ | |
| 39 Map<String, IntlMessage> parseString(String sourceCode, [String origin]) { | |
| 40 var errorListener = new _ErrorCollector(); | |
| 41 var scanner = new StringScanner(null, sourceCode, errorListener); | |
| 42 var token = scanner.tokenize(); | |
| 43 var parser = new Parser(null, errorListener); | |
| 44 var unit = parser.parseCompilationUnit(token); | |
| 45 unit.lineInfo = new LineInfo(scanner.lineStarts); | |
| 46 | |
| 47 var visitor = new MessageFindingVisitor(unit, origin); | |
| 48 unit.accept(visitor); | |
| 49 for (var error in errorListener.errors) { | |
| 50 print(error); | |
| 51 } | |
| 52 return visitor.messages; | |
| 53 } | |
| 54 | |
| 55 /** | |
| 56 * Parse the source of the Dart program file [file] and return a Map from | |
| 57 * message names to [IntlMessage] instances. | |
| 58 */ | |
| 59 Map<String, IntlMessage> parseFile(File file) { | |
| 60 var sourceCode = file.readAsStringSync(); | |
| 61 return parseString(sourceCode, file.path); | |
| 62 } | |
| 63 | |
| 64 /** | |
| 65 * An error handler for parsing. Error handling is currently very primitive. | |
| 66 */ | |
| 67 class _ErrorCollector extends AnalysisErrorListener { | |
| 68 List<AnalysisError> errors; | |
| 69 _ErrorCollector() : errors = new List<AnalysisError>(); | |
| 70 onError(error) => errors.add(error); | |
| 71 } | |
| 72 | |
| 73 /** | |
| 74 * This visits the program source nodes looking for Intl.message uses | |
| 75 * that conform to its pattern and then finding the | |
| 76 */ | |
| 77 class MessageFindingVisitor extends GeneralizingASTVisitor { | |
| 78 | |
| 79 /** | |
| 80 * The root of the compilation unit, and the first node we visit. We hold | |
| 81 * on to this for error reporting, as it can give us line numbers of other | |
| 82 * nodes. | |
| 83 */ | |
| 84 final CompilationUnit root; | |
| 85 | |
| 86 /** | |
| 87 * An arbitrary string describing where the source code came from. Most | |
| 88 * obviously, this could be a file path. We use this when reporting | |
| 89 * invalid messages. | |
| 90 */ | |
| 91 final String origin; | |
| 92 | |
| 93 MessageFindingVisitor(this.root, this.origin); | |
| 94 | |
| 95 /** | |
| 96 * Accumulates the messages we have found. | |
| 97 */ | |
| 98 final messages = new Map<String, IntlMessage>(); | |
| 99 | |
| 100 /** | |
| 101 * We keep track of the data from the last MethodDeclaration, | |
| 102 * FunctionDeclaration or FunctionExpression that we saw on the way down, | |
| 103 * as that will be the nearest parent of the Intl.message invocation. | |
| 104 */ | |
| 105 FormalParameterList parameters; | |
| 106 String name; | |
| 107 | |
| 108 /** Return true if [node] matches the pattern we expect for Intl.message() */ | |
| 109 bool looksLikeIntlMessage(MethodInvocation node) { | |
| 110 if (node.methodName.name != "message") return false; | |
| 111 if (!(node.target is SimpleIdentifier)) return false; | |
| 112 SimpleIdentifier target = node.target; | |
| 113 if (target.token.toString() != "Intl") return false; | |
| 114 return true; | |
| 115 } | |
| 116 | |
| 117 /** | |
| 118 * Returns a String describing why the node is invalid, or null if no | |
| 119 * reason is found, so it's presumed valid. | |
| 120 */ | |
| 121 String checkValidity(MethodInvocation node) { | |
| 122 // The containing function cannot have named parameters. | |
| 123 if (parameters.parameters.any((each) => each.kind == ParameterKind.NAMED)) { | |
| 124 return "Named parameters on message functions are not supported."; | |
| 125 } | |
| 126 var arguments = node.argumentList.arguments; | |
| 127 if (!(arguments.first is StringLiteral)) { | |
| 128 return "Intl.message messages must be string literals"; | |
| 129 } | |
| 130 var namedArguments = arguments.skip(1); | |
| 131 // This seems unlikely to happen, but make sure all are NamedExpression | |
| 132 // before doing the tests below. | |
| 133 if (!namedArguments.every((each) => each is NamedExpression)) { | |
| 134 return "Message arguments except the message must be named"; | |
| 135 } | |
| 136 var notArgs = namedArguments.where( | |
| 137 (each) => each.name.label.name != 'args'); | |
| 138 var values = notArgs.map((each) => each.expression).toList(); | |
| 139 if (!values.every((each) => each is SimpleStringLiteral)) { | |
| 140 "Intl.message arguments must be simple string literals"; | |
| 141 } | |
| 142 if (!notArgs.any((each) => each.name.label.name == 'name')) { | |
| 143 return "The 'name' argument for Intl.message must be specified"; | |
| 144 } | |
| 145 var hasArgs = namedArguments.any((each) => each.name.label.name == 'args'); | |
| 146 var hasParameters = !parameters.parameters.isEmpty; | |
| 147 if (!hasArgs && hasParameters) { | |
| 148 return "The 'args' argument for Intl.message must be specified"; | |
| 149 } | |
| 150 return null; | |
| 151 } | |
| 152 | |
| 153 /** | |
| 154 * Record the parameters of the function or method declaration we last | |
| 155 * encountered before seeing the Intl.message call. | |
| 156 */ | |
| 157 visitMethodDeclaration(MethodDeclaration node) { | |
| 158 parameters = node.parameters; | |
| 159 String name = node.name.name; | |
| 160 super.visitMethodDeclaration(node); | |
| 161 } | |
| 162 | |
| 163 /** | |
| 164 * Record the parameters of the function or method declaration we last | |
| 165 * encountered before seeing the Intl.message call. | |
| 166 */ | |
| 167 visitFunctionExpression(FunctionExpression node) { | |
| 168 parameters = node.parameters; | |
| 169 name = null; | |
| 170 super.visitFunctionExpression(node); | |
| 171 } | |
| 172 | |
| 173 /** | |
| 174 * Record the parameters of the function or method declaration we last | |
| 175 * encountered before seeing the Intl.message call. | |
| 176 */ | |
| 177 visitFunctionDeclaration(FunctionDeclaration node) { | |
| 178 parameters = node.functionExpression.parameters; | |
| 179 name = node.name.name; | |
| 180 super.visitFunctionDeclaration(node); | |
| 181 } | |
| 182 | |
| 183 /** | |
| 184 * Examine method invocations to see if they look like calls to Intl.message. | |
| 185 */ | |
| 186 visitMethodInvocation(MethodInvocation node) { | |
| 187 addIntlMessage(node); | |
| 188 return super.visitNode(node); | |
| 189 } | |
| 190 | |
| 191 /** | |
| 192 * Check that the node looks like an Intl.message invocation, and create | |
| 193 * the [IntlMessage] object from it and store it in [messages]. | |
| 194 */ | |
| 195 addIntlMessage(MethodInvocation node) { | |
| 196 if (!looksLikeIntlMessage(node)) return; | |
| 197 var reason = checkValidity(node); | |
| 198 if (!(reason == null)) { | |
| 199 print("Skipping invalid Intl.message invocation\n <$node>"); | |
| 200 print(" reason: $reason"); | |
| 201 reportErrorLocation(node); | |
| 202 return; | |
| 203 } | |
| 204 var message = messageFromMethodInvocation(node); | |
| 205 if (message != null) messages[message.name] = message; | |
| 206 } | |
| 207 | |
| 208 /** | |
| 209 * Create an IntlMessage from [node] using the name and | |
| 210 * parameters of the last function/method declaration we encountered | |
| 211 * and the parameters to the Intl.message call. | |
| 212 */ | |
| 213 messageFromMethodInvocation(MethodInvocation node) { | |
| 214 var message = new IntlMessage(); | |
| 215 message.name = name; | |
| 216 message.arguments = parameters.parameters.elements.map( | |
| 217 (x) => x.identifier.name).toList(); | |
| 218 try { | |
| 219 node.accept(new MessageVisitor(message)); | |
| 220 } on IntlMessageExtractionException catch (e) { | |
| 221 message = null; | |
| 222 print("Error $e"); | |
| 223 print("Processing <$node>"); | |
| 224 reportErrorLocation(node); | |
| 225 } | |
| 226 return message; | |
| 227 } | |
| 228 | |
| 229 reportErrorLocation(ASTNode node) { | |
| 230 if (origin != null) print("from $origin"); | |
| 231 LineInfo info = root.lineInfo; | |
| 232 if (info != null) { | |
| 233 LineInfo_Location line = info.getLocation(node.offset); | |
| 234 print("line: ${line.lineNumber}, column: ${line.columnNumber}"); | |
| 235 } | |
| 236 } | |
| 237 } | |
| 238 | |
| 239 /** | |
| 240 * Given a node that looks like an invocation of Intl.message, extract out | |
| 241 * the message and the parameters and store them in [target]. | |
| 242 */ | |
| 243 class MessageVisitor extends GeneralizingASTVisitor { | |
| 244 IntlMessage target; | |
| 245 | |
| 246 MessageVisitor(IntlMessage this.target); | |
| 247 | |
| 248 /** | |
| 249 * Extract out the message string. If it's an interpolation, turn it into | |
| 250 * a single string with interpolation characters. | |
| 251 */ | |
| 252 visitArgumentList(ArgumentList node) { | |
| 253 var interpolation = new InterpolationVisitor(target); | |
| 254 node.arguments.elements.first.accept(interpolation); | |
| 255 target.messagePieces = interpolation.pieces; | |
| 256 super.visitArgumentList(node); | |
| 257 } | |
| 258 | |
| 259 /** | |
| 260 * Find the values of all the named arguments, remove quotes, and save them | |
| 261 * into [target]. | |
| 262 */ | |
| 263 visitNamedExpression(NamedExpression node) { | |
| 264 var name = node.name.label.name; | |
| 265 var exp = node.expression; | |
| 266 var string = exp is SimpleStringLiteral ? exp.value : exp.toString(); | |
| 267 target[name] = string; | |
| 268 super.visitNamedExpression(node); | |
| 269 } | |
| 270 } | |
| 271 | |
| 272 /** | |
| 273 * Given an interpolation, find all of its chunks, validate that they are only | |
| 274 * simple interpolations, and keep track of the chunks so that other parts | |
| 275 * of the program can deal with the interpolations and the simple string | |
| 276 * sections separately. | |
| 277 */ | |
| 278 class InterpolationVisitor extends GeneralizingASTVisitor { | |
| 279 IntlMessage message; | |
| 280 | |
| 281 InterpolationVisitor(this.message); | |
| 282 | |
| 283 List pieces = []; | |
| 284 String get extractedMessage => pieces.join(); | |
| 285 | |
| 286 visitSimpleStringLiteral(SimpleStringLiteral node) { | |
| 287 pieces.add(node.value); | |
| 288 super.visitSimpleStringLiteral(node); | |
| 289 } | |
| 290 | |
| 291 visitInterpolationString(InterpolationString node) { | |
| 292 pieces.add(node.value); | |
| 293 super.visitInterpolationString(node); | |
| 294 } | |
| 295 | |
| 296 // TODO(alanknight): The limitation to simple identifiers is important | |
| 297 // to avoid letting translators write arbitrary code, but is a problem | |
| 298 // for plurals. | |
| 299 visitInterpolationExpression(InterpolationExpression node) { | |
| 300 if (node.expression is! SimpleIdentifier) { | |
| 301 throw new IntlMessageExtractionException( | |
| 302 "Only simple identifiers are allowed in message " | |
| 303 "interpolation expressions.\nError at $node"); | |
| 304 } | |
| 305 var index = arguments.indexOf(node.expression.toString()); | |
| 306 if (index == -1) { | |
| 307 throw new IntlMessageExtractionException( | |
| 308 "Cannot find argument ${node.expression}"); | |
| 309 } | |
| 310 pieces.add(index); | |
| 311 super.visitInterpolationExpression(node); | |
| 312 } | |
| 313 | |
| 314 List get arguments => message.arguments; | |
| 315 } | |
| 316 | |
| 317 /** | |
| 318 * Exception thrown when we cannot process a message properly. | |
| 319 */ | |
| 320 class IntlMessageExtractionException implements Exception { | |
| 321 /** | |
| 322 * A message describing the error. | |
| 323 */ | |
| 324 final String message; | |
| 325 | |
| 326 /** | |
| 327 * Creates a new exception with an optional error [message]. | |
| 328 */ | |
| 329 const IntlMessageExtractionException([this.message = ""]); | |
| 330 | |
| 331 String toString() => "IntlMessageExtractionException: $message"; | |
| 332 } | |
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