am 4fd413b7: Merge "Tracking minor errors to categorize exact match."
* commit '4fd413b7e4826571e77ef01c08edec67e9d52d08': Tracking minor errors to categorize exact match.main
commit
765ee2bc53
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@ -57,6 +57,7 @@ LATIN_IME_CORE_SRC_FILES := \
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bloom_filter.cpp \
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dictionary.cpp \
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digraph_utils.cpp \
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error_type_utils.cpp \
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multi_bigram_map.cpp) \
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$(addprefix suggest/core/layout/, \
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additional_proximity_chars.cpp \
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@ -392,24 +392,4 @@ typedef enum {
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// Create new word with space substitution
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CT_NEW_WORD_SPACE_SUBSTITUTION,
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} CorrectionType;
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// ErrorType is mainly decided by CorrectionType but it is also depending on if
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// the correction has really been performed or not.
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typedef enum {
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// Substitution, omission and transposition
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ET_EDIT_CORRECTION,
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// Proximity error
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ET_PROXIMITY_CORRECTION,
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// Completion
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ET_COMPLETION,
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// New word
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// TODO: Remove.
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// A new word error should be an edit correction error or a proximity correction error.
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ET_NEW_WORD,
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// Treat error as an intentional omission when the CorrectionType is omission and the node can
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// be intentional omission.
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ET_INTENTIONAL_OMISSION,
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// Not treated as an error. Tracked for checking exact match
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ET_NOT_AN_ERROR
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} ErrorType;
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#endif // LATINIME_DEFINES_H
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@ -576,7 +576,8 @@ class DicNode {
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// Caveat: Must not be called outside Weighting
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// This restriction is guaranteed by "friend"
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AK_FORCE_INLINE void addCost(const float spatialCost, const float languageCost,
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const bool doNormalization, const int inputSize, const ErrorType errorType) {
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const bool doNormalization, const int inputSize,
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const ErrorTypeUtils::ErrorType errorType) {
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if (DEBUG_GEO_FULL) {
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LOGI_SHOW_ADD_COST_PROP;
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}
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@ -21,6 +21,7 @@
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#include "defines.h"
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#include "suggest/core/dictionary/digraph_utils.h"
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#include "suggest/core/dictionary/error_type_utils.h"
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namespace latinime {
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@ -31,7 +32,7 @@ class DicNodeStateScoring {
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mDigraphIndex(DigraphUtils::NOT_A_DIGRAPH_INDEX),
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mEditCorrectionCount(0), mProximityCorrectionCount(0),
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mNormalizedCompoundDistance(0.0f), mSpatialDistance(0.0f), mLanguageDistance(0.0f),
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mRawLength(0.0f), mExactMatch(true),
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mRawLength(0.0f), mContainingErrorTypes(ErrorTypeUtils::NOT_AN_ERROR),
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mNormalizedCompoundDistanceAfterFirstWord(MAX_VALUE_FOR_WEIGHTING) {
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}
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@ -47,7 +48,7 @@ class DicNodeStateScoring {
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mDoubleLetterLevel = NOT_A_DOUBLE_LETTER;
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mDigraphIndex = DigraphUtils::NOT_A_DIGRAPH_INDEX;
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mNormalizedCompoundDistanceAfterFirstWord = MAX_VALUE_FOR_WEIGHTING;
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mExactMatch = true;
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mContainingErrorTypes = ErrorTypeUtils::NOT_AN_ERROR;
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}
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AK_FORCE_INLINE void init(const DicNodeStateScoring *const scoring) {
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@ -59,34 +60,21 @@ class DicNodeStateScoring {
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mRawLength = scoring->mRawLength;
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mDoubleLetterLevel = scoring->mDoubleLetterLevel;
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mDigraphIndex = scoring->mDigraphIndex;
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mExactMatch = scoring->mExactMatch;
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mContainingErrorTypes = scoring->mContainingErrorTypes;
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mNormalizedCompoundDistanceAfterFirstWord =
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scoring->mNormalizedCompoundDistanceAfterFirstWord;
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}
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void addCost(const float spatialCost, const float languageCost, const bool doNormalization,
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const int inputSize, const int totalInputIndex, const ErrorType errorType) {
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const int inputSize, const int totalInputIndex,
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const ErrorTypeUtils::ErrorType errorType) {
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addDistance(spatialCost, languageCost, doNormalization, inputSize, totalInputIndex);
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switch (errorType) {
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case ET_EDIT_CORRECTION:
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mContainingErrorTypes = mContainingErrorTypes | errorType;
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if (ErrorTypeUtils::isEditCorrectionError(errorType)) {
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++mEditCorrectionCount;
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mExactMatch = false;
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break;
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case ET_PROXIMITY_CORRECTION:
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}
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if (ErrorTypeUtils::isProximityCorrectionError(errorType)) {
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++mProximityCorrectionCount;
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mExactMatch = false;
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break;
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case ET_COMPLETION:
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mExactMatch = false;
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break;
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case ET_NEW_WORD:
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mExactMatch = false;
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break;
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case ET_INTENTIONAL_OMISSION:
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mExactMatch = false;
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break;
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case ET_NOT_AN_ERROR:
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break;
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}
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}
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@ -182,7 +170,7 @@ class DicNodeStateScoring {
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}
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bool isExactMatch() const {
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return mExactMatch;
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return ErrorTypeUtils::isExactMatch(mContainingErrorTypes);
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}
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private:
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@ -199,7 +187,8 @@ class DicNodeStateScoring {
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float mSpatialDistance;
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float mLanguageDistance;
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float mRawLength;
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bool mExactMatch;
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// All accumulated error types so far
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ErrorTypeUtils::ErrorType mContainingErrorTypes;
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float mNormalizedCompoundDistanceAfterFirstWord;
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AK_FORCE_INLINE void addDistance(float spatialDistance, float languageDistance,
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@ -0,0 +1,34 @@
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/*
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* Copyright (C) 2013, 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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#include "suggest/core/dictionary/error_type_utils.h"
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namespace latinime {
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const ErrorTypeUtils::ErrorType ErrorTypeUtils::NOT_AN_ERROR = 0x0;
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const ErrorTypeUtils::ErrorType ErrorTypeUtils::MATCH_WITH_CASE_ERROR = 0x1;
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const ErrorTypeUtils::ErrorType ErrorTypeUtils::MATCH_WITH_ACCENT_ERROR = 0x2;
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const ErrorTypeUtils::ErrorType ErrorTypeUtils::MATCH_WITH_DIGRAPH = 0x4;
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const ErrorTypeUtils::ErrorType ErrorTypeUtils::INTENTIONAL_OMISSION = 0x8;
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const ErrorTypeUtils::ErrorType ErrorTypeUtils::EDIT_CORRECTION = 0x10;
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const ErrorTypeUtils::ErrorType ErrorTypeUtils::PROXIMITY_CORRECTION = 0x20;
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const ErrorTypeUtils::ErrorType ErrorTypeUtils::COMPLETION = 0x40;
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const ErrorTypeUtils::ErrorType ErrorTypeUtils::NEW_WORD = 0x80;
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const ErrorTypeUtils::ErrorType ErrorTypeUtils::ERRORS_TREATED_AS_AN_EXACT_MATCH =
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NOT_AN_ERROR | MATCH_WITH_CASE_ERROR | MATCH_WITH_ACCENT_ERROR | MATCH_WITH_DIGRAPH;
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} // namespace latinime
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@ -0,0 +1,69 @@
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/*
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* Copyright (C) 2013 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_ERROR_TYPE_UTILS_H
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#define LATINIME_ERROR_TYPE_UTILS_H
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#include <stdint.h>
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#include "defines.h"
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namespace latinime {
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class ErrorTypeUtils {
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public:
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// ErrorType is mainly decided by CorrectionType but it is also depending on if
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// the correction has really been performed or not.
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typedef uint32_t ErrorType;
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static const ErrorType NOT_AN_ERROR;
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static const ErrorType MATCH_WITH_CASE_ERROR;
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static const ErrorType MATCH_WITH_ACCENT_ERROR;
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static const ErrorType MATCH_WITH_DIGRAPH;
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// Treat error as an intentional omission when the CorrectionType is omission and the node can
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// be intentional omission.
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static const ErrorType INTENTIONAL_OMISSION;
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// Substitution, omission and transposition
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static const ErrorType EDIT_CORRECTION;
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// Proximity error
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static const ErrorType PROXIMITY_CORRECTION;
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// Completion
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static const ErrorType COMPLETION;
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// New word
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// TODO: Remove.
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// A new word error should be an edit correction error or a proximity correction error.
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static const ErrorType NEW_WORD;
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// TODO: Differentiate errors.
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static bool isExactMatch(const ErrorType containingErrors) {
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return (containingErrors & ~ERRORS_TREATED_AS_AN_EXACT_MATCH) == 0;
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}
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static bool isEditCorrectionError(const ErrorType errorType) {
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return (errorType & EDIT_CORRECTION) != 0;
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}
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static bool isProximityCorrectionError(const ErrorType errorType) {
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return (errorType & PROXIMITY_CORRECTION) != 0;
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}
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private:
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DISALLOW_IMPLICIT_CONSTRUCTORS(ErrorTypeUtils);
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static const ErrorType ERRORS_TREATED_AS_AN_EXACT_MATCH;
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};
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} // namespace latinime
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#endif // LATINIME_ERROR_TYPE_UTILS_H
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@ -71,7 +71,7 @@ ProximityInfo::ProximityInfo(JNIEnv *env, const jstring localeJStr,
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&& sweetSpotCenterYs && sweetSpotRadii),
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mProximityCharsArray(new int[GRID_WIDTH * GRID_HEIGHT * MAX_PROXIMITY_CHARS_SIZE
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/* proximityCharsLength */]),
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mCodeToKeyMap() {
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mLowerCodePointToKeyMap() {
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/* Let's check the input array length here to make sure */
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const jsize proximityCharsLength = env->GetArrayLength(proximityChars);
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if (proximityCharsLength != GRID_WIDTH * GRID_HEIGHT * MAX_PROXIMITY_CHARS_SIZE) {
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@ -147,7 +147,14 @@ int ProximityInfo::getCodePointOf(const int keyIndex) const {
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if (keyIndex < 0 || keyIndex >= KEY_COUNT) {
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return NOT_A_CODE_POINT;
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}
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return mKeyIndexToCodePointG[keyIndex];
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return mKeyIndexToLowerCodePointG[keyIndex];
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}
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int ProximityInfo::getOriginalCodePointOf(const int keyIndex) const {
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if (keyIndex < 0 || keyIndex >= KEY_COUNT) {
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return NOT_A_CODE_POINT;
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}
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return mKeyIndexToOriginalCodePoint[keyIndex];
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}
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void ProximityInfo::initializeG() {
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@ -164,8 +171,9 @@ void ProximityInfo::initializeG() {
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const float gapY = sweetSpotCenterY - mCenterYsG[i];
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mSweetSpotCenterYsG[i] = static_cast<int>(mCenterYsG[i] + gapY * verticalScale);
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}
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mCodeToKeyMap[lowerCode] = i;
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mKeyIndexToCodePointG[i] = lowerCode;
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mLowerCodePointToKeyMap[lowerCode] = i;
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mKeyIndexToOriginalCodePoint[i] = code;
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mKeyIndexToLowerCodePointG[i] = lowerCode;
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}
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for (int i = 0; i < KEY_COUNT; i++) {
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mKeyKeyDistancesG[i][i] = 0;
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@ -39,6 +39,7 @@ class ProximityInfo {
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float getNormalizedSquaredDistanceFromCenterFloatG(
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const int keyId, const int x, const int y, const bool isGeometric) const;
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int getCodePointOf(const int keyIndex) const;
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int getOriginalCodePointOf(const int keyIndex) const;
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bool hasSweetSpotData(const int keyIndex) const {
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// When there are no calibration data for a key,
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// the radius of the key is assigned to zero.
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@ -76,11 +77,11 @@ class ProximityInfo {
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ProximityInfoUtils::initializeProximities(inputCodes, inputXCoordinates, inputYCoordinates,
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inputSize, mKeyXCoordinates, mKeyYCoordinates, mKeyWidths, mKeyHeights,
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mProximityCharsArray, CELL_HEIGHT, CELL_WIDTH, GRID_WIDTH, MOST_COMMON_KEY_WIDTH,
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KEY_COUNT, mLocaleStr, &mCodeToKeyMap, allInputCodes);
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KEY_COUNT, mLocaleStr, &mLowerCodePointToKeyMap, allInputCodes);
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}
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AK_FORCE_INLINE int getKeyIndexOf(const int c) const {
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return ProximityInfoUtils::getKeyIndexOf(KEY_COUNT, c, &mCodeToKeyMap);
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return ProximityInfoUtils::getKeyIndexOf(KEY_COUNT, c, &mLowerCodePointToKeyMap);
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}
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AK_FORCE_INLINE bool isCodePointOnKeyboard(const int codePoint) const {
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@ -117,9 +118,9 @@ class ProximityInfo {
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// Sweet spots for geometric input. Note that we have extra sweet spots only for Y coordinates.
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float mSweetSpotCenterYsG[MAX_KEY_COUNT_IN_A_KEYBOARD];
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float mSweetSpotRadii[MAX_KEY_COUNT_IN_A_KEYBOARD];
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hash_map_compat<int, int> mCodeToKeyMap;
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int mKeyIndexToCodePointG[MAX_KEY_COUNT_IN_A_KEYBOARD];
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hash_map_compat<int, int> mLowerCodePointToKeyMap;
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int mKeyIndexToOriginalCodePoint[MAX_KEY_COUNT_IN_A_KEYBOARD];
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int mKeyIndexToLowerCodePointG[MAX_KEY_COUNT_IN_A_KEYBOARD];
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int mCenterXsG[MAX_KEY_COUNT_IN_A_KEYBOARD];
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int mCenterYsG[MAX_KEY_COUNT_IN_A_KEYBOARD];
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int mKeyKeyDistancesG[MAX_KEY_COUNT_IN_A_KEYBOARD][MAX_KEY_COUNT_IN_A_KEYBOARD];
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|
|
|
@ -30,6 +30,12 @@
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namespace latinime {
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int ProximityInfoState::getPrimaryOriginalCodePointAt(const int index) const {
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const int primaryCodePoint = getPrimaryCodePointAt(index);
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const int keyIndex = mProximityInfo->getKeyIndexOf(primaryCodePoint);
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return mProximityInfo->getOriginalCodePointOf(keyIndex);
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}
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// TODO: Remove the dependency of "isGeometric"
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void ProximityInfoState::initInputParams(const int pointerId, const float maxPointToKeyLength,
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const ProximityInfo *proximityInfo, const int *const inputCodes, const int inputSize,
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|
|
|
@ -65,6 +65,8 @@ class ProximityInfoState {
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return getProximityCodePointsAt(index)[0];
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}
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int getPrimaryOriginalCodePointAt(const int index) const;
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inline bool sameAsTyped(const int *word, int length) const {
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if (length != mSampledInputSize) {
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return false;
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|
|
|
@ -20,6 +20,7 @@
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#include "suggest/core/dicnode/dic_node.h"
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#include "suggest/core/dicnode/dic_node_profiler.h"
|
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#include "suggest/core/dicnode/dic_node_utils.h"
|
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#include "suggest/core/dictionary/error_type_utils.h"
|
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#include "suggest/core/session/dic_traverse_session.h"
|
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namespace latinime {
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|
@ -82,8 +83,8 @@ static inline void profile(const CorrectionType correctionType, DicNode *const n
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traverseSession, parentDicNode, dicNode, &inputStateG);
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const float languageCost = Weighting::getLanguageCost(weighting, correctionType,
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traverseSession, parentDicNode, dicNode, multiBigramMap);
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const ErrorType errorType = weighting->getErrorType(correctionType, traverseSession,
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parentDicNode, dicNode);
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const ErrorTypeUtils::ErrorType errorType = weighting->getErrorType(correctionType,
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traverseSession, parentDicNode, dicNode);
|
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profile(correctionType, dicNode);
|
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if (inputStateG.mNeedsToUpdateInputStateG) {
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dicNode->updateInputIndexG(&inputStateG);
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|
|
|
@ -18,6 +18,7 @@
|
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#define LATINIME_WEIGHTING_H
|
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|
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#include "defines.h"
|
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#include "suggest/core/dictionary/error_type_utils.h"
|
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|
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namespace latinime {
|
||||
|
||||
|
@ -84,7 +85,7 @@ class Weighting {
|
|||
virtual float getSpaceSubstitutionCost(const DicTraverseSession *const traverseSession,
|
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const DicNode *const dicNode) const = 0;
|
||||
|
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virtual ErrorType getErrorType(const CorrectionType correctionType,
|
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virtual ErrorTypeUtils::ErrorType getErrorType(const CorrectionType correctionType,
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const DicTraverseSession *const traverseSession,
|
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const DicNode *const parentDicNode, const DicNode *const dicNode) const = 0;
|
||||
|
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|
|
|
@ -23,39 +23,64 @@ namespace latinime {
|
|||
|
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const TypingWeighting TypingWeighting::sInstance;
|
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|
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ErrorType TypingWeighting::getErrorType(const CorrectionType correctionType,
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ErrorTypeUtils::ErrorType TypingWeighting::getErrorType(const CorrectionType correctionType,
|
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const DicTraverseSession *const traverseSession, const DicNode *const parentDicNode,
|
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const DicNode *const dicNode) const {
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switch (correctionType) {
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case CT_MATCH:
|
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if (isProximityDicNode(traverseSession, dicNode)) {
|
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return ET_PROXIMITY_CORRECTION;
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return ErrorTypeUtils::PROXIMITY_CORRECTION;
|
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} else if (dicNode->isInDigraph()) {
|
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return ErrorTypeUtils::MATCH_WITH_DIGRAPH;
|
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} else {
|
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return ET_NOT_AN_ERROR;
|
||||
// Compare the node code point with original primary code point on the keyboard.
|
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const ProximityInfoState *const pInfoState =
|
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traverseSession->getProximityInfoState(0);
|
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const int primaryOriginalCodePoint = pInfoState->getPrimaryOriginalCodePointAt(
|
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dicNode->getInputIndex(0));
|
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const int nodeCodePoint = dicNode->getNodeCodePoint();
|
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if (primaryOriginalCodePoint == nodeCodePoint) {
|
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// Node code point is same as original code point on the keyboard.
|
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return ErrorTypeUtils::NOT_AN_ERROR;
|
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} else if (CharUtils::toLowerCase(primaryOriginalCodePoint) ==
|
||||
CharUtils::toLowerCase(nodeCodePoint)) {
|
||||
// Only cases of the code points are different.
|
||||
return ErrorTypeUtils::MATCH_WITH_CASE_ERROR;
|
||||
} else if (CharUtils::toBaseCodePoint(primaryOriginalCodePoint) ==
|
||||
CharUtils::toBaseCodePoint(nodeCodePoint)) {
|
||||
// Node code point is a variant of original code point.
|
||||
return ErrorTypeUtils::MATCH_WITH_ACCENT_ERROR;
|
||||
} else {
|
||||
// Node code point is a variant of original code point and the cases are also
|
||||
// different.
|
||||
return ErrorTypeUtils::MATCH_WITH_ACCENT_ERROR
|
||||
| ErrorTypeUtils::MATCH_WITH_CASE_ERROR;
|
||||
}
|
||||
}
|
||||
break;
|
||||
case CT_ADDITIONAL_PROXIMITY:
|
||||
return ET_PROXIMITY_CORRECTION;
|
||||
return ErrorTypeUtils::PROXIMITY_CORRECTION;
|
||||
case CT_OMISSION:
|
||||
if (parentDicNode->canBeIntentionalOmission()) {
|
||||
return ET_INTENTIONAL_OMISSION;
|
||||
return ErrorTypeUtils::INTENTIONAL_OMISSION;
|
||||
} else {
|
||||
return ET_EDIT_CORRECTION;
|
||||
return ErrorTypeUtils::EDIT_CORRECTION;
|
||||
}
|
||||
break;
|
||||
case CT_SUBSTITUTION:
|
||||
case CT_INSERTION:
|
||||
case CT_TERMINAL_INSERTION:
|
||||
case CT_TRANSPOSITION:
|
||||
return ET_EDIT_CORRECTION;
|
||||
return ErrorTypeUtils::EDIT_CORRECTION;
|
||||
case CT_NEW_WORD_SPACE_OMISSION:
|
||||
case CT_NEW_WORD_SPACE_SUBSTITUTION:
|
||||
return ET_NEW_WORD;
|
||||
return ErrorTypeUtils::NEW_WORD;
|
||||
case CT_TERMINAL:
|
||||
return ET_NOT_AN_ERROR;
|
||||
return ErrorTypeUtils::NOT_AN_ERROR;
|
||||
case CT_COMPLETION:
|
||||
return ET_COMPLETION;
|
||||
return ErrorTypeUtils::COMPLETION;
|
||||
default:
|
||||
return ET_NOT_AN_ERROR;
|
||||
return ErrorTypeUtils::NOT_AN_ERROR;
|
||||
}
|
||||
}
|
||||
} // namespace latinime
|
||||
|
|
|
@ -19,6 +19,7 @@
|
|||
|
||||
#include "defines.h"
|
||||
#include "suggest/core/dicnode/dic_node_utils.h"
|
||||
#include "suggest/core/dictionary/error_type_utils.h"
|
||||
#include "suggest/core/layout/touch_position_correction_utils.h"
|
||||
#include "suggest/core/policy/weighting.h"
|
||||
#include "suggest/core/session/dic_traverse_session.h"
|
||||
|
@ -204,7 +205,7 @@ class TypingWeighting : public Weighting {
|
|||
return cost * traverseSession->getMultiWordCostMultiplier();
|
||||
}
|
||||
|
||||
ErrorType getErrorType(const CorrectionType correctionType,
|
||||
ErrorTypeUtils::ErrorType getErrorType(const CorrectionType correctionType,
|
||||
const DicTraverseSession *const traverseSession,
|
||||
const DicNode *const parentDicNode, const DicNode *const dicNode) const;
|
||||
|
||||
|
|
Loading…
Reference in New Issue