3ef3e24a12
Change-Id: I3ab65059f6e356530484bfd0bba26a634a4cba65
239 lines
8 KiB
C++
239 lines
8 KiB
C++
/*
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* Copyright (C) 2011 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#ifndef LATINIME_CORRECTION_H
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#define LATINIME_CORRECTION_H
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#include <assert.h>
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#include <stdint.h>
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#include "correction_state.h"
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#include "defines.h"
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namespace latinime {
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class ProximityInfo;
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class Correction {
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public:
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typedef enum {
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TRAVERSE_ALL_ON_TERMINAL,
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TRAVERSE_ALL_NOT_ON_TERMINAL,
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UNRELATED,
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ON_TERMINAL,
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NOT_ON_TERMINAL
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} CorrectionType;
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/////////////////////////
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// static inline utils //
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/////////////////////////
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static const int TWO_31ST_DIV_255 = S_INT_MAX / 255;
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static inline int capped255MultForFullMatchAccentsOrCapitalizationDifference(const int num) {
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return (num < TWO_31ST_DIV_255 ? 255 * num : S_INT_MAX);
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}
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static const int TWO_31ST_DIV_2 = S_INT_MAX / 2;
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inline static void multiplyIntCapped(const int multiplier, int *base) {
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const int temp = *base;
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if (temp != S_INT_MAX) {
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// Branch if multiplier == 2 for the optimization
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if (multiplier < 0) {
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if (DEBUG_DICT) {
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assert(false);
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}
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AKLOGI("--- Invalid multiplier: %d", multiplier);
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} else if (multiplier == 0) {
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*base = 0;
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} else if (multiplier == 2) {
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*base = TWO_31ST_DIV_2 >= temp ? temp << 1 : S_INT_MAX;
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} else {
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// TODO: This overflow check gives a wrong answer when, for example,
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// temp = 2^16 + 1 and multiplier = 2^17 + 1.
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// Fix this behavior.
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const int tempRetval = temp * multiplier;
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*base = tempRetval >= temp ? tempRetval : S_INT_MAX;
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}
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}
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}
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inline static int powerIntCapped(const int base, const int n) {
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if (n <= 0) return 1;
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if (base == 2) {
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return n < 31 ? 1 << n : S_INT_MAX;
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} else {
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int ret = base;
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for (int i = 1; i < n; ++i) multiplyIntCapped(base, &ret);
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return ret;
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}
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}
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inline static void multiplyRate(const int rate, int *freq) {
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if (*freq != S_INT_MAX) {
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if (*freq > 1000000) {
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*freq /= 100;
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multiplyIntCapped(rate, freq);
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} else {
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multiplyIntCapped(rate, freq);
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*freq /= 100;
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}
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}
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}
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Correction(const int typedLetterMultiplier, const int fullWordMultiplier);
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void initCorrection(
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const ProximityInfo *pi, const int inputLength, const int maxWordLength);
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void initCorrectionState(const int rootPos, const int childCount, const bool traverseAll);
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// TODO: remove
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void setCorrectionParams(const int skipPos, const int excessivePos, const int transposedPos,
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const int spaceProximityPos, const int missingSpacePos, const bool useFullEditDistance,
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const bool doAutoCompletion, const int maxErrors);
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void checkState();
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bool initProcessState(const int index);
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int getInputIndex();
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virtual ~Correction();
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int getSpaceProximityPos() const {
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return mSpaceProximityPos;
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}
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int getMissingSpacePos() const {
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return mMissingSpacePos;
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}
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int getSkipPos() const {
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return mSkipPos;
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}
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int getExcessivePos() const {
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return mExcessivePos;
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}
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int getTransposedPos() const {
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return mTransposedPos;
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}
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bool needsToPrune() const;
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int getFreqForSplitMultipleWords(
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const int *freqArray, const int *wordLengthArray, const int wordCount,
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const bool isSpaceProximity, const unsigned short *word);
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int getFinalFreq(const int freq, unsigned short **word, int* wordLength);
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int getFinalFreqForSubQueue(const int freq, unsigned short **word, int* wordLength,
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const int inputLength);
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CorrectionType processCharAndCalcState(const int32_t c, const bool isTerminal);
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/////////////////////////
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// Tree helper methods
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int goDownTree(const int parentIndex, const int childCount, const int firstChildPos);
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inline int getTreeSiblingPos(const int index) const {
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return mCorrectionStates[index].mSiblingPos;
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}
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inline void setTreeSiblingPos(const int index, const int pos) {
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mCorrectionStates[index].mSiblingPos = pos;
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}
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inline int getTreeParentIndex(const int index) const {
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return mCorrectionStates[index].mParentIndex;
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}
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class RankingAlgorithm {
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public:
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static int calculateFinalFreq(const int inputIndex, const int depth,
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const int freq, int *editDistanceTable, const Correction* correction,
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const int inputLength);
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static int calcFreqForSplitMultipleWords(const int *freqArray, const int *wordLengthArray,
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const int wordCount, const Correction* correction, const bool isSpaceProximity,
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const unsigned short *word);
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static double calcNormalizedScore(const unsigned short* before, const int beforeLength,
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const unsigned short* after, const int afterLength, const int score);
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static int editDistance(const unsigned short* before,
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const int beforeLength, const unsigned short* after, const int afterLength);
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private:
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static const int CODE_SPACE = ' ';
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static const int MAX_INITIAL_SCORE = 255;
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static const int TYPED_LETTER_MULTIPLIER = 2;
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static const int FULL_WORD_MULTIPLIER = 2;
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};
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private:
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inline void incrementInputIndex();
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inline void incrementOutputIndex();
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inline void startToTraverseAllNodes();
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inline bool isQuote(const unsigned short c);
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inline CorrectionType processSkipChar(
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const int32_t c, const bool isTerminal, const bool inputIndexIncremented);
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inline CorrectionType processUnrelatedCorrectionType();
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inline void addCharToCurrentWord(const int32_t c);
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inline int getFinalFreqInternal(const int freq, unsigned short **word, int* wordLength,
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const int inputLength);
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const int TYPED_LETTER_MULTIPLIER;
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const int FULL_WORD_MULTIPLIER;
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const ProximityInfo *mProximityInfo;
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bool mUseFullEditDistance;
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bool mDoAutoCompletion;
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int mMaxEditDistance;
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int mMaxDepth;
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int mInputLength;
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int mSpaceProximityPos;
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int mMissingSpacePos;
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int mTerminalInputIndex;
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int mTerminalOutputIndex;
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int mMaxErrors;
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// The following arrays are state buffer.
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unsigned short mWord[MAX_WORD_LENGTH_INTERNAL];
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int mDistances[MAX_WORD_LENGTH_INTERNAL];
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// Edit distance calculation requires a buffer with (N+1)^2 length for the input length N.
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// Caveat: Do not create multiple tables per thread as this table eats up RAM a lot.
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int mEditDistanceTable[(MAX_WORD_LENGTH_INTERNAL + 1) * (MAX_WORD_LENGTH_INTERNAL + 1)];
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CorrectionState mCorrectionStates[MAX_WORD_LENGTH_INTERNAL];
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// The following member variables are being used as cache values of the correction state.
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bool mNeedsToTraverseAllNodes;
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int mOutputIndex;
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int mInputIndex;
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int mEquivalentCharCount;
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int mProximityCount;
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int mExcessiveCount;
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int mTransposedCount;
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int mSkippedCount;
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int mTransposedPos;
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int mExcessivePos;
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int mSkipPos;
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bool mLastCharExceeded;
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bool mMatching;
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bool mProximityMatching;
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bool mAdditionalProximityMatching;
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bool mExceeding;
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bool mTransposing;
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bool mSkipping;
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};
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} // namespace latinime
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#endif // LATINIME_CORRECTION_H
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