BinaryDictionary.java revision dc2fb6bc6d0c071b8023d62291becf2e2d59535c
1/*
2 * Copyright (C) 2008 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License"); you may not
5 * use this file except in compliance with the License. You may obtain a copy of
6 * the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
12 * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
13 * License for the specific language governing permissions and limitations under
14 * the License.
15 */
16
17package com.android.inputmethod.latin;
18
19import android.content.Context;
20import android.text.TextUtils;
21
22import com.android.inputmethod.keyboard.ProximityInfo;
23import com.android.inputmethod.latin.SuggestedWords.SuggestedWordInfo;
24
25import java.util.ArrayList;
26import java.util.Arrays;
27import java.util.Locale;
28
29/**
30 * Implements a static, compacted, binary dictionary of standard words.
31 */
32public class BinaryDictionary extends Dictionary {
33
34    public static final String DICTIONARY_PACK_AUTHORITY =
35            "com.android.inputmethod.latin.dictionarypack";
36
37    /**
38     * There is a difference between what java and native code can handle.
39     * This value should only be used in BinaryDictionary.java
40     * It is necessary to keep it at this value because some languages e.g. German have
41     * really long words.
42     */
43    public static final int MAX_WORD_LENGTH = 48;
44    public static final int MAX_WORDS = 18;
45    public static final int MAX_SPACES = 16;
46
47    private static final String TAG = "BinaryDictionary";
48    private static final int MAX_PREDICTIONS = 60;
49    private static final int MAX_RESULTS = Math.max(MAX_PREDICTIONS, MAX_WORDS);
50
51    private static final int TYPED_LETTER_MULTIPLIER = 2;
52
53    private long mNativeDict;
54    private final int[] mInputCodes = new int[MAX_WORD_LENGTH];
55    private final char[] mOutputChars = new char[MAX_WORD_LENGTH * MAX_RESULTS];
56    private final int[] mSpaceIndices = new int[MAX_SPACES];
57    private final int[] mOutputScores = new int[MAX_RESULTS];
58    private final int[] mOutputTypes = new int[MAX_RESULTS];
59
60    private final boolean mUseFullEditDistance;
61    private final DicTraverseSession mDicTraverseSession;
62
63    /**
64     * Constructor for the binary dictionary. This is supposed to be called from the
65     * dictionary factory.
66     * All implementations should pass null into flagArray, except for testing purposes.
67     * @param context the context to access the environment from.
68     * @param filename the name of the file to read through native code.
69     * @param offset the offset of the dictionary data within the file.
70     * @param length the length of the binary data.
71     * @param useFullEditDistance whether to use the full edit distance in suggestions
72     * @param dictType the dictionary type, as a human-readable string
73     */
74    public BinaryDictionary(final Context context,
75            final String filename, final long offset, final long length,
76            final boolean useFullEditDistance, final Locale locale, final String dictType) {
77        super(dictType);
78        mUseFullEditDistance = useFullEditDistance;
79        loadDictionary(filename, offset, length);
80        mDicTraverseSession = new DicTraverseSession(locale);
81    }
82
83    static {
84        JniUtils.loadNativeLibrary();
85    }
86
87    private native long openNative(String sourceDir, long dictOffset, long dictSize,
88            int typedLetterMultiplier, int fullWordMultiplier, int maxWordLength, int maxWords,
89            int maxPredictions);
90    private native void closeNative(long dict);
91    private native int getFrequencyNative(long dict, int[] word);
92    private native boolean isValidBigramNative(long dict, int[] word1, int[] word2);
93    private native int getSuggestionsNative(long dict, long proximityInfo, long traverseSession,
94            int[] xCoordinates, int[] yCoordinates, int[] times, int[] pointerIds,
95            int[] inputCodes, int codesSize, int commitPoint, boolean isGesture,
96            int[] prevWordCodePointArray, boolean useFullEditDistance, char[] outputChars,
97            int[] outputScores, int[] outputIndices, int[] outputTypes);
98    private static native float calcNormalizedScoreNative(char[] before, char[] after, int score);
99    private static native int editDistanceNative(char[] before, char[] after);
100
101    // TODO: Move native dict into session
102    private final void loadDictionary(String path, long startOffset, long length) {
103        mNativeDict = openNative(path, startOffset, length, TYPED_LETTER_MULTIPLIER,
104                FULL_WORD_SCORE_MULTIPLIER, MAX_WORD_LENGTH, MAX_WORDS, MAX_PREDICTIONS);
105    }
106
107    @Override
108    public ArrayList<SuggestedWordInfo> getSuggestions(final WordComposer composer,
109            final CharSequence prevWord, final ProximityInfo proximityInfo) {
110        if (!isValidDictionary()) return null;
111        Arrays.fill(mInputCodes, WordComposer.NOT_A_CODE);
112        Arrays.fill(mOutputChars, (char) 0);
113        Arrays.fill(mOutputScores, 0);
114        // TODO: toLowerCase in the native code
115        final int[] prevWordCodePointArray = (null == prevWord)
116                ? null : StringUtils.toCodePointArray(prevWord.toString());
117        final int composerSize = composer.size();
118
119        final boolean isGesture = composer.isBatchMode();
120        if (composerSize <= 1 || !isGesture) {
121            if (composerSize > MAX_WORD_LENGTH - 1) return null;
122            for (int i = 0; i < composerSize; i++) {
123                mInputCodes[i] = composer.getCodeAt(i);
124            }
125        }
126
127        final InputPointers ips = composer.getInputPointers();
128        final int codesSize = isGesture ? ips.getPointerSize() : composerSize;
129        // proximityInfo and/or prevWordForBigrams may not be null.
130        final int tmpCount = getSuggestionsNative(mNativeDict,
131                proximityInfo.getNativeProximityInfo(),
132                mDicTraverseSession.getSession(), ips.getXCoordinates(),
133                ips.getYCoordinates(), ips.getTimes(), ips.getPointerIds(),
134                mInputCodes, codesSize, 0 /* commitPoint */, isGesture, prevWordCodePointArray,
135                mUseFullEditDistance, mOutputChars, mOutputScores, mSpaceIndices, mOutputTypes);
136        final int count = Math.min(tmpCount, MAX_PREDICTIONS);
137
138        final ArrayList<SuggestedWordInfo> suggestions = new ArrayList<SuggestedWordInfo>();
139        for (int j = 0; j < count; ++j) {
140            if (composerSize > 0 && mOutputScores[j] < 1) break;
141            final int start = j * MAX_WORD_LENGTH;
142            int len = 0;
143            while (len <  MAX_WORD_LENGTH && mOutputChars[start + len] != 0) {
144                ++len;
145            }
146            if (len > 0) {
147                final int score = SuggestedWordInfo.KIND_WHITELIST == mOutputTypes[j]
148                        ? SuggestedWordInfo.MAX_SCORE : mOutputScores[j];
149                suggestions.add(new SuggestedWordInfo(
150                        new String(mOutputChars, start, len), score, mOutputTypes[j], mDictType));
151            }
152        }
153        return suggestions;
154    }
155
156    /* package for test */ boolean isValidDictionary() {
157        return mNativeDict != 0;
158    }
159
160    public static float calcNormalizedScore(String before, String after, int score) {
161        return calcNormalizedScoreNative(before.toCharArray(), after.toCharArray(), score);
162    }
163
164    public static int editDistance(String before, String after) {
165        return editDistanceNative(before.toCharArray(), after.toCharArray());
166    }
167
168    @Override
169    public boolean isValidWord(CharSequence word) {
170        return getFrequency(word) >= 0;
171    }
172
173    @Override
174    public int getFrequency(CharSequence word) {
175        if (word == null) return -1;
176        int[] codePoints = StringUtils.toCodePointArray(word.toString());
177        return getFrequencyNative(mNativeDict, codePoints);
178    }
179
180    // TODO: Add a batch process version (isValidBigramMultiple?) to avoid excessive numbers of jni
181    // calls when checking for changes in an entire dictionary.
182    public boolean isValidBigram(CharSequence word1, CharSequence word2) {
183        if (TextUtils.isEmpty(word1) || TextUtils.isEmpty(word2)) return false;
184        int[] chars1 = StringUtils.toCodePointArray(word1.toString());
185        int[] chars2 = StringUtils.toCodePointArray(word2.toString());
186        return isValidBigramNative(mNativeDict, chars1, chars2);
187    }
188
189    @Override
190    public synchronized void close() {
191        mDicTraverseSession.close();
192        closeInternal();
193    }
194
195    private void closeInternal() {
196        if (mNativeDict != 0) {
197            closeNative(mNativeDict);
198            mNativeDict = 0;
199        }
200    }
201
202    @Override
203    protected void finalize() throws Throwable {
204        try {
205            closeInternal();
206        } finally {
207            super.finalize();
208        }
209    }
210}
211