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* Copyright (C) 2008 The Android Open Source Project
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
* http://www.apache.org/licenses/LICENSE-2.0
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package com.android.inputmethod.latin;
import android.content.Context;
import android.text.TextUtils;
import android.util.Log;
import com.android.inputmethod.annotations.UsedForTesting;
import com.android.inputmethod.keyboard.ProximityInfo;
import com.android.inputmethod.latin.SuggestedWords.SuggestedWordInfo;
import com.android.inputmethod.latin.personalization.PersonalizationDictionary;
import com.android.inputmethod.latin.personalization.PersonalizationHelper;
import com.android.inputmethod.latin.personalization.UserHistoryDictionary;
import com.android.inputmethod.latin.settings.SettingsValues;
import com.android.inputmethod.latin.utils.AutoCorrectionUtils;
import com.android.inputmethod.latin.utils.BoundedTreeSet;
import com.android.inputmethod.latin.utils.CollectionUtils;
import com.android.inputmethod.latin.utils.StringUtils;
import java.util.Comparator;
import java.util.HashSet;
import java.util.Locale;
import java.util.concurrent.ConcurrentHashMap;
import java.util.concurrent.TimeUnit;
* This class loads a dictionary and provides a list of suggestions for a given sequence of
* characters. This includes corrections and completions.
*/
// TODO: Separate dictionary operations from suggestions handling logic.
public static final String TAG = Suggest.class.getSimpleName();
// Session id for
// {@link #getSuggestedWords(WordComposer,String,ProximityInfo,boolean,int)}.
// We are sharing the same ID between typing and gesture to save RAM footprint.
public static final int SESSION_TYPING = 0;
public static final int SESSION_GESTURE = 0;
public static final int CORRECTION_NONE = 0;
// Close to -2**31
private static final int SUPPRESS_SUGGEST_THRESHOLD = -2000000000;
public static final int MAX_SUGGESTIONS = 18;
public interface SuggestInitializationListener {
public void onUpdateMainDictionaryAvailability(boolean isMainDictionaryAvailable);
}
private static final boolean DBG = LatinImeLogger.sDBG;
private final ConcurrentHashMap<String, Dictionary> mDictionaries =
CollectionUtils.newConcurrentHashMap();
private HashSet<String> mOnlyDictionarySetForDebug = null;
private Dictionary mMainDictionary;
private ContactsBinaryDictionary mContactsDictionary;
private UserBinaryDictionary mUserDictionary;
private UserHistoryDictionary mUserHistoryDictionary;
private PersonalizationDictionary mPersonalizationDictionary;
@UsedForTesting
private boolean mIsCurrentlyWaitingForMainDictionary = false;
// Locale used for upper- and title-casing words
private final Context mContext;
public Suggest(final Context context, final Locale locale, final SettingsValues settingsValues,
final SuggestInitializationListener listener) {
initAsynchronously(context, locale, listener);
mContext = context;
// initialize a debug flag for the personalization
if (settingsValues.mUseOnlyPersonalizationDictionaryForDebug) {
mOnlyDictionarySetForDebug = new HashSet<String>();
mOnlyDictionarySetForDebug.add(Dictionary.TYPE_PERSONALIZATION);
}
setUserDictionary(new UserBinaryDictionary(context, locale));
@UsedForTesting
Suggest(final Context context, final AssetFileAddress[] dictionaryList, final Locale locale) {
final Dictionary mainDict = DictionaryFactory.createDictionaryForTest(dictionaryList,
false /* useFullEditDistance */, locale);
mContext = context;
mMainDictionary = mainDict;
addOrReplaceDictionaryInternal(Dictionary.TYPE_MAIN, mainDict);
private void initAsynchronously(final Context context, final Locale locale,
final SuggestInitializationListener listener) {
resetMainDict(context, locale, listener);
private void addOrReplaceDictionaryInternal(final String key, final Dictionary dict) {
if (mOnlyDictionarySetForDebug != null && !mOnlyDictionarySetForDebug.contains(key)) {
Log.w(TAG, "Ignore add " + key + " dictionary for debug.");
return;
}
addOrReplaceDictionary(mDictionaries, key, dict);
}
private static void addOrReplaceDictionary(
final ConcurrentHashMap<String, Dictionary> dictionaries,
final String key, final Dictionary dict) {
final Dictionary oldDict = (dict == null)
? dictionaries.remove(key)
: dictionaries.put(key, dict);
if (oldDict != null && dict != oldDict) {
oldDict.close();
}
}
public void resetMainDict(final Context context, final Locale locale,
final SuggestInitializationListener listener) {
mIsCurrentlyWaitingForMainDictionary = true;
mMainDictionary = null;
if (listener != null) {
listener.onUpdateMainDictionaryAvailability(hasMainDictionary());
new Thread("InitializeBinaryDictionary") {
final DictionaryCollection newMainDict =
DictionaryFactory.createMainDictionaryFromManager(context, locale);
addOrReplaceDictionaryInternal(Dictionary.TYPE_MAIN, newMainDict);
mMainDictionary = newMainDict;
if (listener != null) {
listener.onUpdateMainDictionaryAvailability(hasMainDictionary());
mIsCurrentlyWaitingForMainDictionary = false;
// The main dictionary could have been loaded asynchronously. Don't cache the return value
// of this method.
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committed
public boolean hasMainDictionary() {
return null != mMainDictionary && mMainDictionary.isInitialized();
}
@UsedForTesting
public boolean isCurrentlyWaitingForMainDictionary() {
return mIsCurrentlyWaitingForMainDictionary;
}
public Dictionary getMainDictionary() {
return mMainDictionary;
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committed
}
/**
* Sets an optional user dictionary resource to be loaded. The user dictionary is consulted
* before the main dictionary, if set. This refers to the system-managed user dictionary.
public void setUserDictionary(final UserBinaryDictionary userDictionary) {
addOrReplaceDictionaryInternal(Dictionary.TYPE_USER, userDictionary);
/**
* Sets an optional contacts dictionary resource to be loaded. It is also possible to remove
* the contacts dictionary by passing null to this method. In this case no contacts dictionary
* won't be used.
*/
public void setContactsDictionary(final ContactsBinaryDictionary contactsDictionary) {
mContactsDictionary = contactsDictionary;
addOrReplaceDictionaryInternal(Dictionary.TYPE_CONTACTS, contactsDictionary);
private void setUserHistoryDictionary(final UserHistoryDictionary userHistoryDictionary) {
mUserHistoryDictionary = userHistoryDictionary;
addOrReplaceDictionaryInternal(Dictionary.TYPE_USER_HISTORY, userHistoryDictionary);
private void setPersonalizationDictionary(
final PersonalizationDictionary personalizationDictionary) {
mPersonalizationDictionary = personalizationDictionary;
addOrReplaceDictionaryInternal(Dictionary.TYPE_PERSONALIZATION, personalizationDictionary);
}
/**
* Set dictionaries that can be turned off according to the user settings.
*
* @param oldSuggest the instance having old dictionaries
* @param settingsValues current SettingsValues
*/
public void setAdditionalDictionaries(final Suggest oldSuggest,
final SettingsValues settingsValues) {
// Contacts dictionary
resetContactsDictionary(null != oldSuggest ? oldSuggest.mContactsDictionary : null,
settingsValues);
// User history dictionary & Personalization dictionary
resetPersonalizedDictionaries(oldSuggest, settingsValues);
}
/**
* Set the user history dictionary and personalization dictionary according to the user
* settings.
*
* @param oldSuggest the instance that has been used
* @param settingsValues current settingsValues
*/
// TODO: Consolidate resetPersonalizedDictionaries() and resetContactsDictionary(). Call up the
// new method for each dictionary.
private void resetPersonalizedDictionaries(final Suggest oldSuggest,
final SettingsValues settingsValues) {
final boolean shouldSetDictionaries = settingsValues.mUsePersonalizedDicts;
final UserHistoryDictionary oldUserHistoryDictionary = (null == oldSuggest) ? null :
oldSuggest.mUserHistoryDictionary;
final PersonalizationDictionary oldPersonalizationDictionary = (null == oldSuggest) ? null :
oldSuggest.mPersonalizationDictionary;
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final UserHistoryDictionary userHistoryDictionaryToUse;
final PersonalizationDictionary personalizationDictionaryToUse;
if (!shouldSetDictionaries) {
userHistoryDictionaryToUse = null;
personalizationDictionaryToUse = null;
} else {
if (null != oldUserHistoryDictionary
&& oldUserHistoryDictionary.mLocale.equals(mLocale)) {
userHistoryDictionaryToUse = oldUserHistoryDictionary;
} else {
userHistoryDictionaryToUse =
PersonalizationHelper.getUserHistoryDictionary(mContext, mLocale);
}
if (null != oldPersonalizationDictionary
&& oldPersonalizationDictionary.mLocale.equals(mLocale)) {
personalizationDictionaryToUse = oldPersonalizationDictionary;
} else {
personalizationDictionaryToUse =
PersonalizationHelper.getPersonalizationDictionary(mContext, mLocale);
}
}
setUserHistoryDictionary(userHistoryDictionaryToUse);
setPersonalizationDictionary(personalizationDictionaryToUse);
}
/**
* Set the contacts dictionary according to the user settings.
*
* This method takes an optional contacts dictionary to use when the locale hasn't changed
* since the contacts dictionary can be opened or closed as necessary depending on the settings.
*
* @param oldContactsDictionary an optional dictionary to use, or null
* @param settingsValues current settingsValues
*/
private void resetContactsDictionary(final ContactsBinaryDictionary oldContactsDictionary,
final SettingsValues settingsValues) {
final boolean shouldSetDictionary = settingsValues.mUseContactsDict;
final ContactsBinaryDictionary dictionaryToUse;
if (!shouldSetDictionary) {
// Make sure the dictionary is closed. If it is already closed, this is a no-op,
// so it's safe to call it anyways.
if (null != oldContactsDictionary) oldContactsDictionary.close();
dictionaryToUse = null;
} else {
if (null != oldContactsDictionary) {
if (!oldContactsDictionary.mLocale.equals(mLocale)) {
// If the locale has changed then recreate the contacts dictionary. This
// allows locale dependent rules for handling bigram name predictions.
oldContactsDictionary.close();
dictionaryToUse = new ContactsBinaryDictionary(mContext, mLocale);
} else {
// Make sure the old contacts dictionary is opened. If it is already open,
// this is a no-op, so it's safe to call it anyways.
oldContactsDictionary.reopen(mContext);
dictionaryToUse = oldContactsDictionary;
}
} else {
dictionaryToUse = new ContactsBinaryDictionary(mContext, mLocale);
}
}
setContactsDictionary(dictionaryToUse);
}
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public boolean isUserDictionaryEnabled() {
if (mUserDictionary == null) {
return false;
}
return mUserDictionary.mEnabled;
}
public void addWordToUserDictionary(String word) {
if (mUserDictionary == null) {
return;
}
mUserDictionary.addWordToUserDictionary(word);
}
public String addToUserHistory(final WordComposer wordComposer, final String previousWord,
final String suggestion) {
if (mUserHistoryDictionary == null) {
return null;
}
final String secondWord;
if (wordComposer.wasAutoCapitalized() && !wordComposer.isMostlyCaps()) {
secondWord = suggestion.toLowerCase(mLocale);
} else {
secondWord = suggestion;
}
// We demote unrecognized words (frequency < 0, below) by specifying them as "invalid".
// We don't add words with 0-frequency (assuming they would be profanity etc.).
final int maxFreq = getMaxFrequency(suggestion);
if (maxFreq == 0) {
return null;
}
final boolean isValid = maxFreq > 0;
final int timeStamp = (int)TimeUnit.MILLISECONDS.toSeconds((System.currentTimeMillis()));
mUserHistoryDictionary.addToDictionary(previousWord, secondWord, isValid, timeStamp);
return previousWord;
}
public void cancelAddingUserHistory(final String previousWord, final String committedWord) {
if (mUserHistoryDictionary != null) {
mUserHistoryDictionary.cancelAddingUserHistory(previousWord, committedWord);
}
public void setAutoCorrectionThreshold(float threshold) {
mAutoCorrectionThreshold = threshold;
public interface OnGetSuggestedWordsCallback {
public void onGetSuggestedWords(final SuggestedWords suggestedWords);
}
public void getSuggestedWords(final WordComposer wordComposer,
final String prevWordForBigram, final ProximityInfo proximityInfo,
final boolean blockOffensiveWords, final boolean isCorrectionEnabled,
final int[] additionalFeaturesOptions, final int sessionId, final int sequenceNumber,
final OnGetSuggestedWordsCallback callback) {
LatinImeLogger.onStartSuggestion(prevWordForBigram);
if (wordComposer.isBatchMode()) {
getSuggestedWordsForBatchInput(wordComposer, prevWordForBigram, proximityInfo,
blockOffensiveWords, additionalFeaturesOptions, sessionId, sequenceNumber,
callback);
getSuggestedWordsForTypingInput(wordComposer, prevWordForBigram, proximityInfo,
blockOffensiveWords, isCorrectionEnabled, additionalFeaturesOptions,
sequenceNumber, callback);
// Retrieves suggestions for the typing input
// and calls the callback function with the suggestions.
private void getSuggestedWordsForTypingInput(final WordComposer wordComposer,
final String prevWordForBigram, final ProximityInfo proximityInfo,
final boolean blockOffensiveWords, final boolean isCorrectionEnabled,
final int[] additionalFeaturesOptions, final int sequenceNumber,
final OnGetSuggestedWordsCallback callback) {
final int trailingSingleQuotesCount = wordComposer.trailingSingleQuotesCount();
final BoundedTreeSet suggestionsSet = new BoundedTreeSet(sSuggestedWordInfoComparator,
MAX_SUGGESTIONS);
final String typedWord = wordComposer.getTypedWord();
final String consideredWord = trailingSingleQuotesCount > 0
? typedWord.substring(0, typedWord.length() - trailingSingleQuotesCount)
LatinImeLogger.onAddSuggestedWord(typedWord, Dictionary.TYPE_USER_TYPED);
final WordComposer wordComposerForLookup;
if (trailingSingleQuotesCount > 0) {
wordComposerForLookup = new WordComposer(wordComposer);
for (int i = trailingSingleQuotesCount - 1; i >= 0; --i) {
wordComposerForLookup.deleteLast();
}
} else {
wordComposerForLookup = wordComposer;
}
for (final String key : mDictionaries.keySet()) {
final Dictionary dictionary = mDictionaries.get(key);
suggestionsSet.addAll(dictionary.getSuggestions(wordComposerForLookup,
prevWordForBigram, proximityInfo, blockOffensiveWords,
additionalFeaturesOptions));
final String whitelistedWord;
if (suggestionsSet.isEmpty()) {
whitelistedWord = null;
} else if (SuggestedWordInfo.KIND_WHITELIST != suggestionsSet.first().mKind) {
whitelistedWord = null;
} else {
whitelistedWord = suggestionsSet.first().mWord;
}
// The word can be auto-corrected if it has a whitelist entry that is not itself,
// or if it's a 2+ characters non-word (i.e. it's not in the dictionary).
final boolean allowsToBeAutoCorrected = (null != whitelistedWord
&& !whitelistedWord.equals(consideredWord))
|| (consideredWord.length() > 1
&& !isValidWord(consideredWord, wordComposer.isFirstCharCapitalized()));
// TODO: using isCorrectionEnabled here is not very good. It's probably useless, because
// any attempt to do auto-correction is already shielded with a test for this flag; at the
// same time, it feels wrong that the SuggestedWord object includes information about
// the current settings. It may also be useful to know, when the setting is off, whether
// the word *would* have been auto-corrected.
if (!isCorrectionEnabled || !allowsToBeAutoCorrected || !wordComposer.isComposingWord()
|| suggestionsSet.isEmpty() || wordComposer.hasDigits()
|| wordComposer.isMostlyCaps() || wordComposer.isResumed() || !hasMainDictionary()
|| SuggestedWordInfo.KIND_SHORTCUT == suggestionsSet.first().mKind) {
// If we don't have a main dictionary, we never want to auto-correct. The reason for
// this is, the user may have a contact whose name happens to match a valid word in
// their language, and it will unexpectedly auto-correct. For example, if the user
// types in English with no dictionary and has a "Will" in their contact list, "will"
// would always auto-correct to "Will" which is unwanted. Hence, no main dict => no
// auto-correct.
// Also, shortcuts should never auto-correct unless they are whitelist entries.
// TODO: we may want to have shortcut-only entries auto-correct in the future.
hasAutoCorrection = AutoCorrectionUtils.suggestionExceedsAutoCorrectionThreshold(
suggestionsSet.first(), consideredWord, mAutoCorrectionThreshold);
final ArrayList<SuggestedWordInfo> suggestionsContainer =
CollectionUtils.newArrayList(suggestionsSet);
final int suggestionsCount = suggestionsContainer.size();
final boolean isFirstCharCapitalized = wordComposer.isFirstCharCapitalized();
final boolean isAllUpperCase = wordComposer.isAllUpperCase();
if (isFirstCharCapitalized || isAllUpperCase || 0 != trailingSingleQuotesCount) {
for (int i = 0; i < suggestionsCount; ++i) {
final SuggestedWordInfo wordInfo = suggestionsContainer.get(i);
final SuggestedWordInfo transformedWordInfo = getTransformedSuggestedWordInfo(
wordInfo, mLocale, isAllUpperCase, isFirstCharCapitalized,
trailingSingleQuotesCount);
suggestionsContainer.set(i, transformedWordInfo);
}
}
for (int i = 0; i < suggestionsCount; ++i) {
final SuggestedWordInfo wordInfo = suggestionsContainer.get(i);
LatinImeLogger.onAddSuggestedWord(wordInfo.mWord.toString(),
wordInfo.mSourceDict.mDictType);
suggestionsContainer.add(0, new SuggestedWordInfo(typedWord,
SuggestedWordInfo.MAX_SCORE, SuggestedWordInfo.KIND_TYPED,
Dictionary.DICTIONARY_USER_TYPED,
SuggestedWordInfo.NOT_AN_INDEX /* indexOfTouchPointOfSecondWord */,
SuggestedWordInfo.NOT_A_CONFIDENCE /* autoCommitFirstWordConfidence */));
SuggestedWordInfo.removeDups(suggestionsContainer);
final ArrayList<SuggestedWordInfo> suggestionsList;
if (DBG && !suggestionsContainer.isEmpty()) {
suggestionsList = getSuggestionsInfoListWithDebugInfo(typedWord, suggestionsContainer);
callback.onGetSuggestedWords(new SuggestedWords(suggestionsList,
// TODO: this first argument is lying. If this is a whitelisted word which is an
// actual word, it says typedWordValid = false, which looks wrong. We should either
// rename the attribute or change the value.
false /* isPunctuationSuggestions */,
false /* isObsoleteSuggestions */,
!wordComposer.isComposingWord() /* isPrediction */, sequenceNumber));
// Retrieves suggestions for the batch input
// and calls the callback function with the suggestions.
private void getSuggestedWordsForBatchInput(final WordComposer wordComposer,
final String prevWordForBigram, final ProximityInfo proximityInfo,
final boolean blockOffensiveWords, final int[] additionalFeaturesOptions,
final int sessionId, final int sequenceNumber,
final OnGetSuggestedWordsCallback callback) {
final BoundedTreeSet suggestionsSet = new BoundedTreeSet(sSuggestedWordInfoComparator,
MAX_SUGGESTIONS);
// At second character typed, search the unigrams (scores being affected by bigrams)
for (final String key : mDictionaries.keySet()) {
final Dictionary dictionary = mDictionaries.get(key);
suggestionsSet.addAll(dictionary.getSuggestionsWithSessionId(wordComposer,
prevWordForBigram, proximityInfo, blockOffensiveWords,
additionalFeaturesOptions, sessionId));
for (SuggestedWordInfo wordInfo : suggestionsSet) {
LatinImeLogger.onAddSuggestedWord(wordInfo.mWord, wordInfo.mSourceDict.mDictType);
final ArrayList<SuggestedWordInfo> suggestionsContainer =
CollectionUtils.newArrayList(suggestionsSet);
final int suggestionsCount = suggestionsContainer.size();
final boolean isFirstCharCapitalized = wordComposer.wasShiftedNoLock();
final boolean isAllUpperCase = wordComposer.isAllUpperCase();
if (isFirstCharCapitalized || isAllUpperCase) {
for (int i = 0; i < suggestionsCount; ++i) {
final SuggestedWordInfo wordInfo = suggestionsContainer.get(i);
final SuggestedWordInfo transformedWordInfo = getTransformedSuggestedWordInfo(
wordInfo, mLocale, isAllUpperCase, isFirstCharCapitalized,
0 /* trailingSingleQuotesCount */);
suggestionsContainer.set(i, transformedWordInfo);
}
}
if (suggestionsContainer.size() > 1 && TextUtils.equals(suggestionsContainer.get(0).mWord,
wordComposer.getRejectedBatchModeSuggestion())) {
final SuggestedWordInfo rejected = suggestionsContainer.remove(0);
suggestionsContainer.add(1, rejected);
}
SuggestedWordInfo.removeDups(suggestionsContainer);
// For some reason some suggestions with MIN_VALUE are making their way here.
// TODO: Find a more robust way to detect distractors.
for (int i = suggestionsContainer.size() - 1; i >= 0; --i) {
if (suggestionsContainer.get(i).mScore < SUPPRESS_SUGGEST_THRESHOLD) {
suggestionsContainer.remove(i);
}
}
// In the batch input mode, the most relevant suggested word should act as a "typed word"
// (typedWordValid=true), not as an "auto correct word" (willAutoCorrect=false).
callback.onGetSuggestedWords(new SuggestedWords(suggestionsContainer,
false /* isPunctuationSuggestions */,
false /* isObsoleteSuggestions */,
false /* isPrediction */, sequenceNumber));
private static ArrayList<SuggestedWordInfo> getSuggestionsInfoListWithDebugInfo(
final String typedWord, final ArrayList<SuggestedWordInfo> suggestions) {
final SuggestedWordInfo typedWordInfo = suggestions.get(0);
typedWordInfo.setDebugString("+");
final int suggestionsSize = suggestions.size();
final ArrayList<SuggestedWordInfo> suggestionsList =
CollectionUtils.newArrayList(suggestionsSize);
// Note: i here is the index in mScores[], but the index in mSuggestions is one more
// than i because we added the typed word to mSuggestions without touching mScores.
for (int i = 0; i < suggestionsSize - 1; ++i) {
final SuggestedWordInfo cur = suggestions.get(i + 1);
final float normalizedScore = BinaryDictionary.calcNormalizedScore(
typedWord, cur.toString(), cur.mScore);
final String scoreInfoString;
if (normalizedScore > 0) {
scoreInfoString = String.format(
Locale.ROOT, "%d (%4.2f), %s", cur.mScore, normalizedScore,
cur.mSourceDict.mDictType);
scoreInfoString = Integer.toString(cur.mScore);
cur.setDebugString(scoreInfoString);
suggestionsList.add(cur);
}
return suggestionsList;
}
private static final class SuggestedWordInfoComparator
implements Comparator<SuggestedWordInfo> {
// This comparator ranks the word info with the higher frequency first. That's because
// that's the order we want our elements in.
@Override
public int compare(final SuggestedWordInfo o1, final SuggestedWordInfo o2) {
if (o1.mScore > o2.mScore) return -1;
if (o1.mScore < o2.mScore) return 1;
if (o1.mCodePointCount < o2.mCodePointCount) return -1;
if (o1.mCodePointCount > o2.mCodePointCount) return 1;
return o1.mWord.compareTo(o2.mWord);
}
}
private static final SuggestedWordInfoComparator sSuggestedWordInfoComparator =
new SuggestedWordInfoComparator();
/* package for test */ static SuggestedWordInfo getTransformedSuggestedWordInfo(
final SuggestedWordInfo wordInfo, final Locale locale, final boolean isAllUpperCase,
final boolean isFirstCharCapitalized, final int trailingSingleQuotesCount) {
final StringBuilder sb = new StringBuilder(wordInfo.mWord.length());
sb.append(wordInfo.mWord.toUpperCase(locale));
sb.append(StringUtils.capitalizeFirstCodePoint(wordInfo.mWord, locale));
} else {
sb.append(wordInfo.mWord);
}
// Appending quotes is here to help people quote words. However, it's not helpful
// when they type words with quotes toward the end like "it's" or "didn't", where
// it's more likely the user missed the last character (or didn't type it yet).
final int quotesToAppend = trailingSingleQuotesCount
- (-1 == wordInfo.mWord.indexOf(Constants.CODE_SINGLE_QUOTE) ? 0 : 1);
for (int i = quotesToAppend - 1; i >= 0; --i) {
sb.appendCodePoint(Constants.CODE_SINGLE_QUOTE);
return new SuggestedWordInfo(sb.toString(), wordInfo.mScore, wordInfo.mKind,
wordInfo.mSourceDict, wordInfo.mIndexOfTouchPointOfSecondWord,
wordInfo.mAutoCommitFirstWordConfidence);
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public boolean isValidWord(final String word, final boolean ignoreCase) {
if (TextUtils.isEmpty(word)) {
return false;
}
final String lowerCasedWord = word.toLowerCase(mLocale);
for (final String key : mDictionaries.keySet()) {
final Dictionary dictionary = mDictionaries.get(key);
// It's unclear how realistically 'dictionary' can be null, but the monkey is somehow
// managing to get null in here. Presumably the language is changing to a language with
// no main dictionary and the monkey manages to type a whole word before the thread
// that reads the dictionary is started or something?
// Ideally the passed map would come out of a {@link java.util.concurrent.Future} and
// would be immutable once it's finished initializing, but concretely a null test is
// probably good enough for the time being.
if (null == dictionary) continue;
if (dictionary.isValidWord(word)
|| (ignoreCase && dictionary.isValidWord(lowerCasedWord))) {
return true;
}
}
return false;
}
private int getMaxFrequency(final String word) {
if (TextUtils.isEmpty(word)) {
return Dictionary.NOT_A_PROBABILITY;
}
int maxFreq = -1;
for (final String key : mDictionaries.keySet()) {
final Dictionary dictionary = mDictionaries.get(key);
if (null == dictionary) continue;
final int tempFreq = dictionary.getFrequency(word);
if (tempFreq >= maxFreq) {
maxFreq = tempFreq;
}
}
return maxFreq;
}
final HashSet<Dictionary> dictionaries = CollectionUtils.newHashSet();
dictionaries.addAll(mDictionaries.values());
for (final Dictionary dictionary : dictionaries) {
dictionary.close();
mMainDictionary = null;