0fa2f91c3c
R=floitsch@google.com Review URL: https://codereview.chromium.org//23480032 git-svn-id: https://dart.googlecode.com/svn/branches/bleeding_edge/dart@27122 260f80e4-7a28-3924-810f-c04153c831b5
271 lines
8.0 KiB
Dart
271 lines
8.0 KiB
Dart
library tokenizer_test;
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// Note: mirrors used to match the getattr usage in the original test
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import 'dart:async';
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import 'dart:convert';
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import 'dart:io';
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import 'dart:mirrors';
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import 'package:path/path.dart' as pathos;
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import 'package:unittest/unittest.dart';
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import 'package:html5lib/src/char_encodings.dart';
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import 'package:html5lib/src/constants.dart' as constants;
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import 'package:html5lib/src/token.dart';
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import 'package:html5lib/src/tokenizer.dart';
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import 'package:html5lib/src/utils.dart';
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import 'package:utf/utf.dart';
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import 'support.dart';
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class TokenizerTestParser {
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String _state;
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var _lastStartTag;
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List outputTokens;
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TokenizerTestParser(String initialState, [lastStartTag])
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: _state = initialState,
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_lastStartTag = lastStartTag;
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List parse(String str) {
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// Note: we need to pass bytes to the tokenizer if we want it to handle BOM.
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var bytes = codepointsToUtf8(toCodepoints(str));
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var tokenizer = new HtmlTokenizer(bytes, encoding: 'utf-8');
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outputTokens = [];
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// Note: we can't get a closure of the state method. However, we can
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// create a new closure to invoke it via mirrors.
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var mtok = reflect(tokenizer);
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tokenizer.state = () =>
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mtok.invoke(new Symbol(_state), const []).reflectee;
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if (_lastStartTag != null) {
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tokenizer.currentToken = new StartTagToken(_lastStartTag);
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}
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while (tokenizer.moveNext()) {
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var token = tokenizer.current;
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switch (token.kind) {
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case TokenKind.characters:
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processCharacters(token);
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break;
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case TokenKind.spaceCharacters:
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processSpaceCharacters(token);
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break;
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case TokenKind.startTag:
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processStartTag(token);
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break;
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case TokenKind.endTag:
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processEndTag(token);
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break;
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case TokenKind.comment:
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processComment(token);
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break;
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case TokenKind.doctype:
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processDoctype(token);
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break;
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case TokenKind.parseError:
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processParseError(token);
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break;
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}
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}
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return outputTokens;
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}
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void processDoctype(DoctypeToken token) {
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outputTokens.add(["DOCTYPE", token.name, token.publicId,
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token.systemId, token.correct]);
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}
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void processStartTag(StartTagToken token) {
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outputTokens.add(["StartTag", token.name, token.data, token.selfClosing]);
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}
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void processEndTag(EndTagToken token) {
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outputTokens.add(["EndTag", token.name, token.selfClosing]);
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}
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void processComment(StringToken token) {
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outputTokens.add(["Comment", token.data]);
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}
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void processSpaceCharacters(StringToken token) {
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processCharacters(token);
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}
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void processCharacters(StringToken token) {
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outputTokens.add(["Character", token.data]);
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}
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void processEOF(token) {
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}
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void processParseError(StringToken token) {
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// TODO(jmesserly): when debugging test failures it can be useful to add
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// logging here like `print('ParseError $token');`. It would be nice to
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// use the actual logging library.
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outputTokens.add(["ParseError", token.data]);
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}
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}
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List concatenateCharacterTokens(List tokens) {
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var outputTokens = [];
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for (var token in tokens) {
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if (token.indexOf("ParseError") == -1 && token[0] == "Character") {
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if (outputTokens.length > 0 &&
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outputTokens.last.indexOf("ParseError") == -1 &&
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outputTokens.last[0] == "Character") {
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outputTokens.last[1] = '${outputTokens.last[1]}${token[1]}';
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} else {
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outputTokens.add(token);
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}
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} else {
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outputTokens.add(token);
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}
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}
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return outputTokens;
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}
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List normalizeTokens(List tokens) {
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// TODO: convert tests to reflect arrays
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for (int i = 0; i < tokens.length; i++) {
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var token = tokens[i];
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if (token[0] == 'ParseError') {
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tokens[i] = token[0];
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}
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}
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return tokens;
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}
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/**
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* Test whether the test has passed or failed
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*
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* If the ignoreErrorOrder flag is set to true we don't test the relative
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* positions of parse errors and non parse errors.
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*/
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void expectTokensMatch(List expectedTokens, List receivedTokens,
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bool ignoreErrorOrder, [bool ignoreErrors = false, String message]) {
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var checkSelfClosing = false;
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for (var token in expectedTokens) {
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if (token[0] == "StartTag" && token.length == 4
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|| token[0] == "EndTag" && token.length == 3) {
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checkSelfClosing = true;
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break;
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}
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}
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if (!checkSelfClosing) {
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for (var token in receivedTokens) {
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if (token[0] == "StartTag" || token[0] == "EndTag") {
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token.removeLast();
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}
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}
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}
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if (!ignoreErrorOrder && !ignoreErrors) {
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expect(receivedTokens, equals(expectedTokens), reason: message);
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} else {
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// Sort the tokens into two groups; non-parse errors and parse errors
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var expectedNonErrors = expectedTokens.where((t) => t != "ParseError");
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var receivedNonErrors = receivedTokens.where((t) => t != "ParseError");
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expect(receivedNonErrors, equals(expectedNonErrors), reason: message);
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if (!ignoreErrors) {
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var expectedParseErrors = expectedTokens.where((t) => t == "ParseError");
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var receivedParseErrors = receivedTokens.where((t) => t == "ParseError");
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expect(receivedParseErrors, equals(expectedParseErrors), reason: message);
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}
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}
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}
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void runTokenizerTest(Map testInfo) {
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// XXX - move this out into the setup function
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// concatenate all consecutive character tokens into a single token
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if (testInfo.containsKey('doubleEscaped')) {
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testInfo = unescape(testInfo);
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}
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var expected = concatenateCharacterTokens(testInfo['output']);
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if (!testInfo.containsKey('lastStartTag')) {
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testInfo['lastStartTag'] = null;
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}
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var parser = new TokenizerTestParser(testInfo['initialState'],
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testInfo['lastStartTag']);
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var tokens = parser.parse(testInfo['input']);
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tokens = concatenateCharacterTokens(tokens);
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var received = normalizeTokens(tokens);
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var errorMsg = ["\n\nInitial state:",
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testInfo['initialState'],
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"\nInput:", testInfo['input'],
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"\nExpected:", expected,
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"\nreceived:", tokens].map((s) => '$s').join('\n');
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var ignoreErrorOrder = testInfo['ignoreErrorOrder'];
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if (ignoreErrorOrder == null) ignoreErrorOrder = false;
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expectTokensMatch(expected, received, ignoreErrorOrder, true, errorMsg);
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}
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Map unescape(Map testInfo) {
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// TODO(sigmundch,jmesserly): we currently use JSON.decode to unescape the
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// unicode characters in the string, we should use a decoding that works with
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// any control characters.
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decode(inp) => inp == '\u0000' ? inp : JSON.decode('"$inp"');
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testInfo["input"] = decode(testInfo["input"]);
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for (var token in testInfo["output"]) {
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if (token == "ParseError") {
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continue;
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} else {
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token[1] = decode(token[1]);
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if (token.length > 2) {
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for (var pair in token[2]) {
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var key = pair[0];
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var value = pair[1];
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token[2].remove(key);
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token[2][decode(key)] = decode(value);
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}
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}
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}
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}
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return testInfo;
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}
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String camelCase(String s) {
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s = s.toLowerCase();
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var result = new StringBuffer();
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for (var match in new RegExp(r"\W+(\w)(\w+)").allMatches(s)) {
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if (result.length == 0) result.write(s.substring(0, match.start));
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result.write(match.group(1).toUpperCase());
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result.write(match.group(2));
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}
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return result.toString();
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}
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void main() {
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for (var path in getDataFiles('tokenizer')) {
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if (!path.endsWith('.test')) continue;
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var text = new File(path).readAsStringSync();
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var tests = JSON.decode(text);
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var testName = pathos.basenameWithoutExtension(path);
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var testList = tests['tests'];
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if (testList == null) continue;
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group(testName, () {
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for (int index = 0; index < testList.length; index++) {
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final testInfo = testList[index];
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testInfo.putIfAbsent("initialStates", () => ["Data state"]);
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for (var initialState in testInfo["initialStates"]) {
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test(testInfo["description"], () {
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testInfo["initialState"] = camelCase(initialState);
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runTokenizerTest(testInfo);
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});
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}
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}
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});
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}
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}
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