* new dictionary format that supports syllabaries * optimized the dictionary build cache significantly to truly build only the changed language files * code style fixes
311 lines
12 KiB
Groovy
311 lines
12 KiB
Groovy
apply from: 'dictionary-tools.gradle'
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ext.validateLanguageFiles = { definitionsDir, dictionariesDir, validationDir ->
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int errorCount = 0
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def errorStream = fileTree(dir: definitionsDir).getFiles().parallelStream().map { definition ->
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if (errorCount >= MAX_ERRORS) {
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return "Too many errors! Skipping: ${definition}\n"
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}
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def (alphabet, sounds, isAlphabeticLanguage, locale, dictionaryFile, langFileErrorCount, langFileErrorMsg) = parseLanguageDefintion(definition, dictionariesDir)
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def languageHash = DictionaryTools.getLanguageHash(definition, dictionaryFile)
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def validationFile = new File("${validationDir}/${definition.name.replace(".yml", "")}.txt")
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errorCount += langFileErrorCount
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if (!langFileErrorMsg.isEmpty()) {
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validationFile.text = "${languageHash} INVALID"
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return langFileErrorMsg
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}
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if (validationFile.exists() && validationFile.text == "${languageHash} OK") {
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return ""
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}
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def (dictionaryErrorCount, dictionaryErrorMesages) = validateDictionary(dictionaryFile, alphabet, sounds, isAlphabeticLanguage, locale, MAX_ERRORS, CSV_DELIMITER, MAX_WORD_FREQUENCY)
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errorCount += dictionaryErrorCount
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if (!dictionaryErrorMesages.isEmpty()) {
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validationFile.text = "${languageHash} INVALID"
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return dictionaryErrorMesages
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}
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validationFile.text = "${languageHash} OK"
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return ""
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}
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String errorsMsg = errorStream.reduce("", String::concat)
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if (errorsMsg) {
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throw new GradleException(errorsMsg)
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}
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}
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ext.parseLanguageDefintion = { File languageFile, String dictionariesDir ->
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String alphabet = ""
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int layoutKey = 0
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HashMap<String, String> sounds = new HashMap<>()
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HashMap<String, String> layoutSounds = new HashMap<>()
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File dictionaryFile
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int errorCount = 0
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String errorMsg = ""
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boolean hasLayout = false
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boolean hasSounds = false
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boolean isLocaleValid = false
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String localeString = ""
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String dictionaryFileName = ""
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alphabet = languageFile.name.contains("Catalan") ? '·' : alphabet
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alphabet = languageFile.name.contains("Hebrew") || languageFile.name.contains("Yiddish") ? '"' : alphabet
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for (String line : languageFile.readLines()) {
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if (
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line.matches("^[a-zA-Z].*")
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&& !line.startsWith("abcString")
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&& !line.startsWith("dictionaryFile")
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&& !line.startsWith("hasSpaceBetweenWords")
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&& !line.startsWith("hasUpperCase")
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&& !line.startsWith("layout")
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&& !line.startsWith("locale")
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&& !line.startsWith("name")
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&& !line.startsWith("sounds")
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) {
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def parts = line.split(":")
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def property = parts.length > 0 ? parts[0] : line
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errorCount++
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errorMsg += "Language '${languageFile.name}' is invalid. Found unknown property: '${property}'.\n"
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}
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if (
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(line.startsWith("hasUpperCase") || line.startsWith("hasSpaceBetweenWords"))
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&& !line.endsWith("yes") && !line.endsWith("no")
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) {
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def property = line.replaceAll(":.*\$", "")
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def invalidVal = line.replace("hasUpperCase:", "").trim()
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errorCount++
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errorMsg += "Language '${languageFile.name}' is invalid. Unrecognized '${property}' value: '${invalidVal}'. Only 'yes' and 'no' are allowed.\n"
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}
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if (line.startsWith("layout")) {
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hasLayout = true
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}
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if (line.startsWith("sounds")) {
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hasSounds = true
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}
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if (line.startsWith("locale")) {
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localeString = line.replace("locale:", "").trim()
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isLocaleValid = line.matches("^locale:\\s*[a-z]{2}(?:-[A-Z]{2})?")
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}
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if (line.startsWith("dictionaryFile")) {
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dictionaryFileName = line.replace("dictionaryFile:", "").trim()
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}
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// alphabet string
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def lineCharacters = extractAlphabetCharsFromLine(line)
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alphabet += lineCharacters
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// sounds, single letters
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if (lineCharacters) {
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lineCharacters.each { letter ->
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layoutSounds.put(letter, layoutKey.toString())
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}
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} else if (line.contains("PUNCTUATION")) {
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layoutSounds.put("-", layoutKey.toString())
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layoutSounds.put(".", layoutKey.toString())
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layoutSounds.put("'", layoutKey.toString())
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layoutSounds.put('"', layoutKey.toString())
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layoutSounds.put('·', layoutKey.toString())
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}
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if (isLayoutLine(line)) {
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layoutKey++
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}
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// sounds, syllables
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def (sound, sequence) = extractSoundFromLine(line)
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if (!sound.isEmpty() && !sequence.isEmpty()) {
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sounds.put(sound, sequence)
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}
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}
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if (!hasLayout) {
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errorCount++
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errorMsg += "Language '${languageFile.name}' is invalid. Missing 'layout' property.\n"
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}
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if (alphabet.isEmpty()) {
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errorCount++
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errorMsg += "Language '${languageFile.name}' is invalid. No language characters found. Make sure 'layout' contains series of characters per each key in the format: ' - [a, b, c]' and so on\n"
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}
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if (hasSounds && sounds.isEmpty()) {
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errorCount++
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errorMsg += "Language '${languageFile.name}' is invalid. 'sounds' property must contain series of phonetic transcriptions per digit sequence in the format: ' - [Yae,1221]' and so on.\n"
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}
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if (!isLocaleValid) {
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errorCount++
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def msg = localeString.isEmpty() ? "Missing 'locale' property." : "Unrecognized locale format: '${localeString}'"
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errorMsg += "Language '${languageFile.name}' is invalid. ${msg}\n"
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}
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dictionaryFile = new File("$dictionariesDir/${dictionaryFileName}")
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if (dictionaryFileName.isEmpty() || !dictionaryFile.exists()) {
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errorCount++
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errorMsg += "Could not find dictionary file: '${dictionaryFileName}' in: '${dictionariesDir}'. Make sure 'dictionaryFile' is set correctly in: '${languageFile.name}'.\n"
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}
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String[] localeParts = localeString.split(("[-_]"))
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Locale locale = new Locale(localeParts[0], localeParts.length > 1 ? localeParts[1] : "")
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if (!hasSounds && locale != null) {
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layoutSounds.forEach { sound, sequence ->
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sounds.put(sound.toUpperCase(locale), sequence)
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}
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}
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return [alphabet, sounds, !hasSounds, locale, dictionaryFile, errorCount, errorMsg]
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}
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// this cannot be static, because DictionaryTools will not be visible
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def validateDictionary(File dictionaryFile, String alphabet, HashMap<String, String> sounds, boolean isAlphabeticLanguage, Locale locale, int maxErrors, String csvDelimiter, int maxWordFrequency) {
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final VALID_CHARS = alphabet.toUpperCase(locale) == alphabet ? "^[${alphabet}\\-\\.']+\$" : "^[${alphabet}${alphabet.toUpperCase(locale)}\\-\\.']+\$"
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int errorCount = 0
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String errorMsg = ''
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Set<String> uniqueWords = new HashSet<>()
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List<String> fileContents = dictionaryFile.readLines()
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for (int lineNumber = 1; lineNumber <= fileContents.size() && errorCount < maxErrors; lineNumber++) {
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String line = fileContents.get(lineNumber - 1)
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boolean lineHasErrors = false
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String whiteSpaceError = validateNoWhitespace(line, lineNumber)
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if (whiteSpaceError) {
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lineHasErrors = true
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errorCount++
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errorMsg += whiteSpaceError
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}
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def (word, transcription, frequency) = DictionaryTools.getDictionaryLineData(line, csvDelimiter)
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String frequencyError = validateFrequency(frequency, maxWordFrequency, dictionaryFile.name, lineNumber)
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if (frequencyError) {
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lineHasErrors = true
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errorCount++
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errorMsg += frequencyError
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}
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def (wordErrorCount, wordErrors) = validateWord(word, VALID_CHARS, isAlphabeticLanguage, lineNumber, "Dictionary '${dictionaryFile.name}' is invalid")
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if (wordErrorCount > 0) {
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errorCount += wordErrorCount
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errorMsg += wordErrors
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}
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if (uniqueWords.contains(word)) {
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lineHasErrors = true
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errorCount++
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errorMsg += "Dictionary '${dictionaryFile.name}' is invalid. Found duplicate word: '${word}' on line ${lineNumber}. Remove all duplicates.\n"
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} else {
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uniqueWords.add(word)
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}
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if (lineHasErrors) {
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// the validations below make no sense if the previous ones have failed
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continue
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}
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try {
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def transcribedWord = transcription.isEmpty() ? word : transcription
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DictionaryTools.wordToDigitSequence(locale, transcribedWord, sounds, !transcription.isEmpty())
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} catch (IllegalArgumentException e) {
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errorCount++
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errorMsg += "Dictionary '${dictionaryFile.name}' is invalid. Failed generating digit sequence for word '${word}' on line ${lineNumber}. ${e.message}\n"
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}
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}
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return [errorCount, errorMsg]
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}
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//////////////////// PARSING ////////////////////
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static def extractAlphabetCharsFromLine(String line) {
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if (line.contains('PUNCTUATION') || line.contains('SPECIAL') || !isLayoutLine(line)) {
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return ''
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}
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return line.replaceFirst('^\\s+- \\[', '').replaceFirst('\\].*', '').replace(',', '').replace(' ', '')
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}
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static def extractSoundFromLine(String line) {
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if (!line.matches('\\s+- \\[\\w+\\s*,\\s*\\d+\\].*')) {
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return ['', '']
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}
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def cleanLine = line.replaceFirst('^\\s+- \\[', '').replaceFirst('\\].*', '').replace(' ', '')
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def parts = cleanLine.split(',')
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return parts.length > 1 ? [parts[0], parts[1]] : ['', '']
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}
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static def isLayoutLine(String line) {
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return line.matches('\\s+- \\[.+?\\].*') && !line.find('\\d+]')
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}
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//////////////////// VALIDATION ////////////////////
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static def validateNoWhitespace(String line, int lineNumber) {
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if (line == "") {
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return "There is no word on line ${lineNumber}. Remove all empty lines.\n"
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} else if (line.contains(" ")) {
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return "Found space on line ${lineNumber}. Make sure each word is on a new line. Phrases are not allowed.\n"
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}
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return ''
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}
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static def validateFrequency(int frequency, int maxFrequency, String dictionaryFileName, int lineNumber) {
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if (frequency < 0 || frequency > maxFrequency) {
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return "Dictionary '${dictionaryFileName}' is invalid. Found out-of-range word frequency: '${frequency}' on line ${lineNumber}. Frequency must be an integer between 0 and ${maxFrequency}.\n"
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}
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return ''
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}
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static def validateWord(String word, String validCharacters, boolean isAlphabeticLanguage, int lineNumber, String errorMsgPrefix) {
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int errorCount = 0
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def errors = ''
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if (word.matches("(\\d.+?|.+?\\d|\\d)")) {
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errorCount++
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errors += "${errorMsgPrefix}. Found numbers on line ${lineNumber}. Remove all numbers.\n"
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}
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if (word.matches("^\\P{L}+\$")) {
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errorCount++
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errors += "${errorMsgPrefix}. Found a garbage word: '${word}' on line ${lineNumber}.\n"
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}
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if (isAlphabeticLanguage && word.matches("^(.|\\p{L}\\p{M}?)\$")) {
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errorCount++
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errors += "${errorMsgPrefix}. Found a single letter: '${word}' on line ${lineNumber}. Only uppercase single letters are allowed. The rest of the alphabet will be added automatically.\n"
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}
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if (errorCount == 0 && isAlphabeticLanguage && !word.matches(validCharacters)) {
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errorCount++
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errors += "${errorMsgPrefix}. Word '${word}' on line ${lineNumber} contains characters outside of the defined alphabet: $validCharacters.\n"
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}
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return [errorCount, errors]
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}
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