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satok30088252010-12-01 21:22:15 +09001/*
2**
3** Copyright 2010, The Android Open Source Project
4**
5** Licensed under the Apache License, Version 2.0 (the "License");
6** you may not use this file except in compliance with the License.
7** You may obtain a copy of the License at
8**
9** http://www.apache.org/licenses/LICENSE-2.0
10**
11** Unless required by applicable law or agreed to in writing, software
12** distributed under the License is distributed on an "AS IS" BASIS,
13** WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14** See the License for the specific language governing permissions and
15** limitations under the License.
16*/
17
satok48e432c2010-12-06 17:38:58 +090018#include <assert.h>
satok30088252010-12-01 21:22:15 +090019#include <string.h>
20
satoke808e432010-12-02 14:53:24 +090021#define LOG_TAG "LatinIME: unigram_dictionary.cpp"
satok30088252010-12-01 21:22:15 +090022
satok30088252010-12-01 21:22:15 +090023#include "char_utils.h"
satoke808e432010-12-02 14:53:24 +090024#include "dictionary.h"
25#include "unigram_dictionary.h"
satok30088252010-12-01 21:22:15 +090026
Jean Chalard1059f272011-06-28 20:45:05 +090027#include "binary_format.h"
Jean Chalardcf9dbbd2011-12-26 15:16:59 +090028#include "terminal_attributes.h"
Jean Chalard1059f272011-06-28 20:45:05 +090029
satok30088252010-12-01 21:22:15 +090030namespace latinime {
31
Jean Chalardc2bbc6a2011-02-25 17:56:53 +090032const UnigramDictionary::digraph_t UnigramDictionary::GERMAN_UMLAUT_DIGRAPHS[] =
Jean Chalardd3043382012-03-21 18:38:25 +090033 { { 'a', 'e', 0x00E4 }, // U+00E4 : LATIN SMALL LETTER A WITH DIAERESIS
34 { 'o', 'e', 0x00F6 }, // U+00F6 : LATIN SMALL LETTER O WITH DIAERESIS
35 { 'u', 'e', 0x00FC } }; // U+00FC : LATIN SMALL LETTER U WITH DIAERESIS
Jean Chalardc2bbc6a2011-02-25 17:56:53 +090036
Jean Chalard293ece02011-06-16 20:55:16 +090037// TODO: check the header
38UnigramDictionary::UnigramDictionary(const uint8_t* const streamStart, int typedLetterMultiplier,
satok662fe692010-12-08 17:05:39 +090039 int fullWordMultiplier, int maxWordLength, int maxWords, int maxProximityChars,
satok18c28f42010-12-02 18:11:54 +090040 const bool isLatestDictVersion)
Jean Chalard46a1eec2012-02-27 19:48:47 +090041 : DICT_ROOT(streamStart), MAX_WORD_LENGTH(maxWordLength), MAX_WORDS(maxWords),
satok662fe692010-12-08 17:05:39 +090042 MAX_PROXIMITY_CHARS(maxProximityChars), IS_LATEST_DICT_VERSION(isLatestDictVersion),
43 TYPED_LETTER_MULTIPLIER(typedLetterMultiplier), FULL_WORD_MULTIPLIER(fullWordMultiplier),
Jean Chalard1059f272011-06-28 20:45:05 +090044 // TODO : remove this variable.
45 ROOT_POS(0),
satok1d7eaf82011-07-13 10:32:02 +090046 BYTES_IN_ONE_CHAR(MAX_PROXIMITY_CHARS * sizeof(int)),
Jean Chalard6c300612012-03-06 19:54:03 +090047 MAX_DIGRAPH_SEARCH_DEPTH(DEFAULT_MAX_DIGRAPH_SEARCH_DEPTH) {
Ken Wakasade3070a2011-03-19 09:16:42 +090048 if (DEBUG_DICT) {
satok9fb6f472012-01-13 18:01:22 +090049 AKLOGI("UnigramDictionary - constructor");
Ken Wakasade3070a2011-03-19 09:16:42 +090050 }
satok30088252010-12-01 21:22:15 +090051}
52
satok2df30602011-07-15 13:49:00 +090053UnigramDictionary::~UnigramDictionary() {
satok2df30602011-07-15 13:49:00 +090054}
satok30088252010-12-01 21:22:15 +090055
satok1147c7b2011-12-14 15:04:58 +090056static inline unsigned int getCodesBufferSize(const int *codes, const int codesSize,
Jean Chalardc2bbc6a2011-02-25 17:56:53 +090057 const int MAX_PROXIMITY_CHARS) {
58 return sizeof(*codes) * MAX_PROXIMITY_CHARS * codesSize;
59}
60
Ken Wakasa951ab9d2012-03-09 19:18:59 +090061// TODO: This needs to take a const unsigned short* and not tinker with its contents
satok1147c7b2011-12-14 15:04:58 +090062static inline void addWord(
63 unsigned short *word, int length, int frequency, WordsPriorityQueue *queue) {
64 queue->push(frequency, word, length);
65}
66
Jean Chalardd3043382012-03-21 18:38:25 +090067// Return the replacement code point for a digraph, or 0 if none.
68int UnigramDictionary::getDigraphReplacement(const int *codes, const int i, const int codesSize,
Jean Chalard6c300612012-03-06 19:54:03 +090069 const digraph_t* const digraphs, const unsigned int digraphsSize) const {
Jean Chalardc2bbc6a2011-02-25 17:56:53 +090070
71 // There can't be a digraph if we don't have at least 2 characters to examine
72 if (i + 2 > codesSize) return false;
73
74 // Search for the first char of some digraph
75 int lastDigraphIndex = -1;
76 const int thisChar = codes[i * MAX_PROXIMITY_CHARS];
Jean Chalard6c300612012-03-06 19:54:03 +090077 for (lastDigraphIndex = digraphsSize - 1; lastDigraphIndex >= 0; --lastDigraphIndex) {
78 if (thisChar == digraphs[lastDigraphIndex].first) break;
Jean Chalardc2bbc6a2011-02-25 17:56:53 +090079 }
80 // No match: return early
Jean Chalardd3043382012-03-21 18:38:25 +090081 if (lastDigraphIndex < 0) return 0;
Jean Chalardc2bbc6a2011-02-25 17:56:53 +090082
83 // It's an interesting digraph if the second char matches too.
Jean Chalardd3043382012-03-21 18:38:25 +090084 if (digraphs[lastDigraphIndex].second == codes[(i + 1) * MAX_PROXIMITY_CHARS]) {
85 return digraphs[lastDigraphIndex].replacement;
86 } else {
87 return 0;
88 }
Jean Chalardc2bbc6a2011-02-25 17:56:53 +090089}
90
91// Mostly the same arguments as the non-recursive version, except:
92// codes is the original value. It points to the start of the work buffer, and gets passed as is.
93// codesSize is the size of the user input (thus, it is the size of codesSrc).
94// codesDest is the current point in the work buffer.
95// codesSrc is the current point in the user-input, original, content-unmodified buffer.
96// codesRemain is the remaining size in codesSrc.
satok1d7eaf82011-07-13 10:32:02 +090097void UnigramDictionary::getWordWithDigraphSuggestionsRec(ProximityInfo *proximityInfo,
satok1147c7b2011-12-14 15:04:58 +090098 const int *xcoordinates, const int *ycoordinates, const int *codesBuffer,
satok219a5142012-03-08 11:53:18 +090099 int *xCoordinatesBuffer, int *yCoordinatesBuffer,
satok1147c7b2011-12-14 15:04:58 +0900100 const int codesBufferSize, const int flags, const int *codesSrc,
101 const int codesRemain, const int currentDepth, int *codesDest, Correction *correction,
Jean Chalard6c300612012-03-06 19:54:03 +0900102 WordsPriorityQueuePool *queuePool,
103 const digraph_t* const digraphs, const unsigned int digraphsSize) {
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900104
satok219a5142012-03-08 11:53:18 +0900105 const int startIndex = (codesDest - codesBuffer) / MAX_PROXIMITY_CHARS;
Jean Chalard6c300612012-03-06 19:54:03 +0900106 if (currentDepth < MAX_DIGRAPH_SEARCH_DEPTH) {
Jean Chalarda787dba2011-03-04 12:17:48 +0900107 for (int i = 0; i < codesRemain; ++i) {
satok219a5142012-03-08 11:53:18 +0900108 xCoordinatesBuffer[startIndex + i] = xcoordinates[codesBufferSize - codesRemain + i];
109 yCoordinatesBuffer[startIndex + i] = ycoordinates[codesBufferSize - codesRemain + i];
Jean Chalardd3043382012-03-21 18:38:25 +0900110 const int replacementCodePoint =
111 getDigraphReplacement(codesSrc, i, codesRemain, digraphs, digraphsSize);
112 if (0 != replacementCodePoint) {
Jean Chalarda787dba2011-03-04 12:17:48 +0900113 // Found a digraph. We will try both spellings. eg. the word is "pruefen"
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900114
Jean Chalardd3043382012-03-21 18:38:25 +0900115 // Copy the word up to the first char of the digraph, including proximity chars,
116 // and overwrite the primary code with the replacement code point. Then, continue
117 // processing on the remaining part of the word, skipping the second char of the
118 // digraph.
119 // In our example, copy "pru", replace "u" with the version with the diaeresis and
120 // continue running on "fen".
Jean Chalarda787dba2011-03-04 12:17:48 +0900121 // Make i the index of the second char of the digraph for simplicity. Forgetting
122 // to do that results in an infinite recursion so take care!
123 ++i;
124 memcpy(codesDest, codesSrc, i * BYTES_IN_ONE_CHAR);
Jean Chalardd3043382012-03-21 18:38:25 +0900125 codesDest[(i - 1) * (BYTES_IN_ONE_CHAR / sizeof(codesDest[0]))] =
126 replacementCodePoint;
Jean Chalarda787dba2011-03-04 12:17:48 +0900127 getWordWithDigraphSuggestionsRec(proximityInfo, xcoordinates, ycoordinates,
satok219a5142012-03-08 11:53:18 +0900128 codesBuffer, xCoordinatesBuffer, yCoordinatesBuffer, codesBufferSize, flags,
Jean Chalarda787dba2011-03-04 12:17:48 +0900129 codesSrc + (i + 1) * MAX_PROXIMITY_CHARS, codesRemain - i - 1,
satoka7e5a5a2011-12-15 16:49:12 +0900130 currentDepth + 1, codesDest + i * MAX_PROXIMITY_CHARS, correction,
Jean Chalard6c300612012-03-06 19:54:03 +0900131 queuePool, digraphs, digraphsSize);
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900132
Jean Chalarda787dba2011-03-04 12:17:48 +0900133 // Copy the second char of the digraph in place, then continue processing on
134 // the remaining part of the word.
135 // In our example, after "pru" in the buffer copy the "e", and continue on "fen"
136 memcpy(codesDest + i * MAX_PROXIMITY_CHARS, codesSrc + i * MAX_PROXIMITY_CHARS,
137 BYTES_IN_ONE_CHAR);
138 getWordWithDigraphSuggestionsRec(proximityInfo, xcoordinates, ycoordinates,
satok219a5142012-03-08 11:53:18 +0900139 codesBuffer, xCoordinatesBuffer, yCoordinatesBuffer, codesBufferSize, flags,
satok1147c7b2011-12-14 15:04:58 +0900140 codesSrc + i * MAX_PROXIMITY_CHARS, codesRemain - i, currentDepth + 1,
Jean Chalard6c300612012-03-06 19:54:03 +0900141 codesDest + i * MAX_PROXIMITY_CHARS, correction, queuePool,
142 digraphs, digraphsSize);
Jean Chalarda787dba2011-03-04 12:17:48 +0900143 return;
144 }
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900145 }
146 }
147
148 // If we come here, we hit the end of the word: let's check it against the dictionary.
149 // In our example, we'll come here once for "prufen" and then once for "pruefen".
150 // If the word contains several digraphs, we'll come it for the product of them.
151 // eg. if the word is "ueberpruefen" we'll test, in order, against
152 // "uberprufen", "uberpruefen", "ueberprufen", "ueberpruefen".
153 const unsigned int remainingBytes = BYTES_IN_ONE_CHAR * codesRemain;
satok219a5142012-03-08 11:53:18 +0900154 if (0 != remainingBytes) {
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900155 memcpy(codesDest, codesSrc, remainingBytes);
satok219a5142012-03-08 11:53:18 +0900156 memcpy(&xCoordinatesBuffer[startIndex], &xcoordinates[codesBufferSize - codesRemain],
157 sizeof(int) * codesRemain);
158 memcpy(&yCoordinatesBuffer[startIndex], &ycoordinates[codesBufferSize - codesRemain],
159 sizeof(int) * codesRemain);
160 }
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900161
satok219a5142012-03-08 11:53:18 +0900162 getWordSuggestions(proximityInfo, xCoordinatesBuffer, yCoordinatesBuffer, codesBuffer,
163 startIndex + codesRemain, flags, correction,
satoka7e5a5a2011-12-15 16:49:12 +0900164 queuePool);
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900165}
166
satoka7e5a5a2011-12-15 16:49:12 +0900167int UnigramDictionary::getSuggestions(ProximityInfo *proximityInfo,
168 WordsPriorityQueuePool *queuePool, Correction *correction, const int *xcoordinates,
169 const int *ycoordinates, const int *codes, const int codesSize, const int flags,
170 unsigned short *outWords, int *frequencies) {
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900171
satok219a5142012-03-08 11:53:18 +0900172 queuePool->clearAll();
satok1147c7b2011-12-14 15:04:58 +0900173 Correction* masterCorrection = correction;
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900174 if (REQUIRES_GERMAN_UMLAUT_PROCESSING & flags)
175 { // Incrementally tune the word and try all possibilities
176 int codesBuffer[getCodesBufferSize(codes, codesSize, MAX_PROXIMITY_CHARS)];
satok219a5142012-03-08 11:53:18 +0900177 int xCoordinatesBuffer[codesSize];
178 int yCoordinatesBuffer[codesSize];
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900179 getWordWithDigraphSuggestionsRec(proximityInfo, xcoordinates, ycoordinates, codesBuffer,
satok219a5142012-03-08 11:53:18 +0900180 xCoordinatesBuffer, yCoordinatesBuffer,
Jean Chalard6c300612012-03-06 19:54:03 +0900181 codesSize, flags, codes, codesSize, 0, codesBuffer, masterCorrection, queuePool,
182 GERMAN_UMLAUT_DIGRAPHS,
183 sizeof(GERMAN_UMLAUT_DIGRAPHS) / sizeof(GERMAN_UMLAUT_DIGRAPHS[0]));
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900184 } else { // Normal processing
satok1147c7b2011-12-14 15:04:58 +0900185 getWordSuggestions(proximityInfo, xcoordinates, ycoordinates, codes, codesSize, flags,
satoka7e5a5a2011-12-15 16:49:12 +0900186 masterCorrection, queuePool);
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900187 }
188
satok817e5172011-03-04 06:06:45 -0800189 PROF_START(20);
satok8330b482012-01-23 16:52:37 +0900190 if (DEBUG_DICT) {
191 double ns = queuePool->getMasterQueue()->getHighestNormalizedScore(
192 proximityInfo->getPrimaryInputWord(), codesSize, 0, 0, 0);
193 ns += 0;
194 AKLOGI("Max normalized score = %f", ns);
195 }
satoka7e5a5a2011-12-15 16:49:12 +0900196 const int suggestedWordsCount =
197 queuePool->getMasterQueue()->outputSuggestions(frequencies, outWords);
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900198
199 if (DEBUG_DICT) {
satok8330b482012-01-23 16:52:37 +0900200 double ns = queuePool->getMasterQueue()->getHighestNormalizedScore(
201 proximityInfo->getPrimaryInputWord(), codesSize, 0, 0, 0);
202 ns += 0;
satok9fb6f472012-01-13 18:01:22 +0900203 AKLOGI("Returning %d words", suggestedWordsCount);
Jean Chalard980d6b62011-06-30 17:02:23 +0900204 /// Print the returned words
205 for (int j = 0; j < suggestedWordsCount; ++j) {
satok16379df2011-12-12 20:53:22 +0900206 short unsigned int* w = outWords + j * MAX_WORD_LENGTH;
Jean Chalard980d6b62011-06-30 17:02:23 +0900207 char s[MAX_WORD_LENGTH];
208 for (int i = 0; i <= MAX_WORD_LENGTH; i++) s[i] = w[i];
satok9fb6f472012-01-13 18:01:22 +0900209 AKLOGI("%s %i", s, frequencies[j]);
Jean Chalard980d6b62011-06-30 17:02:23 +0900210 }
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900211 }
satok817e5172011-03-04 06:06:45 -0800212 PROF_END(20);
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900213 PROF_CLOSE;
214 return suggestedWordsCount;
215}
216
satok1d7eaf82011-07-13 10:32:02 +0900217void UnigramDictionary::getWordSuggestions(ProximityInfo *proximityInfo,
satok1147c7b2011-12-14 15:04:58 +0900218 const int *xcoordinates, const int *ycoordinates, const int *codes,
satoka7e5a5a2011-12-15 16:49:12 +0900219 const int inputLength, const int flags, Correction *correction,
220 WordsPriorityQueuePool *queuePool) {
Jean Chalardc2bbc6a2011-02-25 17:56:53 +0900221
satok61e2f852011-01-05 14:13:07 +0900222 PROF_OPEN;
223 PROF_START(0);
satok61e2f852011-01-05 14:13:07 +0900224 PROF_END(0);
satok30088252010-12-01 21:22:15 +0900225
satok61e2f852011-01-05 14:13:07 +0900226 PROF_START(1);
satok744dab62011-12-15 22:29:05 +0900227 const bool useFullEditDistance = USE_FULL_EDIT_DISTANCE & flags;
228 getOneWordSuggestions(proximityInfo, xcoordinates, ycoordinates, codes, useFullEditDistance,
229 inputLength, correction, queuePool);
satok61e2f852011-01-05 14:13:07 +0900230 PROF_END(1);
231
232 PROF_START(2);
satok10266c02011-08-19 22:05:59 +0900233 // Note: This line is intentionally left blank
satok61e2f852011-01-05 14:13:07 +0900234 PROF_END(2);
satokcdbbea72010-12-08 16:04:16 +0900235
satok61e2f852011-01-05 14:13:07 +0900236 PROF_START(3);
satok10266c02011-08-19 22:05:59 +0900237 // Note: This line is intentionally left blank
satok61e2f852011-01-05 14:13:07 +0900238 PROF_END(3);
satok30088252010-12-01 21:22:15 +0900239
satok61e2f852011-01-05 14:13:07 +0900240 PROF_START(4);
satok8330b482012-01-23 16:52:37 +0900241 bool hasAutoCorrectionCandidate = false;
242 WordsPriorityQueue* masterQueue = queuePool->getMasterQueue();
243 if (masterQueue->size() > 0) {
244 double nsForMaster = masterQueue->getHighestNormalizedScore(
245 proximityInfo->getPrimaryInputWord(), inputLength, 0, 0, 0);
246 hasAutoCorrectionCandidate = (nsForMaster > START_TWO_WORDS_CORRECTION_THRESHOLD);
247 }
satok61e2f852011-01-05 14:13:07 +0900248 PROF_END(4);
satoka3d78f62010-12-09 22:08:33 +0900249
satok61e2f852011-01-05 14:13:07 +0900250 PROF_START(5);
satok99557162012-01-26 22:49:13 +0900251 // Multiple word suggestions
252 if (SUGGEST_MULTIPLE_WORDS
253 && inputLength >= MIN_USER_TYPED_LENGTH_FOR_MULTIPLE_WORD_SUGGESTION) {
satoka85f4922012-01-30 18:18:30 +0900254 getSplitMultipleWordsSuggestions(proximityInfo, xcoordinates, ycoordinates, codes,
satok1f6b52e2012-01-30 13:53:58 +0900255 useFullEditDistance, inputLength, correction, queuePool,
256 hasAutoCorrectionCandidate);
satok662fe692010-12-08 17:05:39 +0900257 }
satok61e2f852011-01-05 14:13:07 +0900258 PROF_END(5);
satok817e5172011-03-04 06:06:45 -0800259
260 PROF_START(6);
satok99557162012-01-26 22:49:13 +0900261 // Note: This line is intentionally left blank
satok817e5172011-03-04 06:06:45 -0800262 PROF_END(6);
satok99557162012-01-26 22:49:13 +0900263
satok29dc8062012-01-17 15:59:15 +0900264 if (DEBUG_DICT) {
satok6ad15fc2012-01-16 16:21:21 +0900265 queuePool->dumpSubQueue1TopSuggestions();
satok29dc8062012-01-17 15:59:15 +0900266 for (int i = 0; i < SUB_QUEUE_MAX_COUNT; ++i) {
satok7409d152012-01-26 16:13:25 +0900267 WordsPriorityQueue* queue = queuePool->getSubQueue(FIRST_WORD_INDEX, i);
satok29dc8062012-01-17 15:59:15 +0900268 if (queue->size() > 0) {
269 WordsPriorityQueue::SuggestedWord* sw = queue->top();
270 const int score = sw->mScore;
271 const unsigned short* word = sw->mWord;
272 const int wordLength = sw->mWordLength;
273 double ns = Correction::RankingAlgorithm::calcNormalizedScore(
274 proximityInfo->getPrimaryInputWord(), i, word, wordLength, score);
275 ns += 0;
276 AKLOGI("--- TOP SUB WORDS for %d --- %d %f [%d]", i, score, ns,
satok54af64a2012-01-17 15:58:23 +0900277 (ns > TWO_WORDS_CORRECTION_WITH_OTHER_ERROR_THRESHOLD));
satok29dc8062012-01-17 15:59:15 +0900278 DUMP_WORD(proximityInfo->getPrimaryInputWord(), i);
279 DUMP_WORD(word, wordLength);
280 }
281 }
satok6ad15fc2012-01-16 16:21:21 +0900282 }
satok30088252010-12-01 21:22:15 +0900283}
284
Yusuke Nojima258bfe62011-09-28 12:59:43 +0900285void UnigramDictionary::initSuggestions(ProximityInfo *proximityInfo, const int *xCoordinates,
satok6ad15fc2012-01-16 16:21:21 +0900286 const int *yCoordinates, const int *codes, const int inputLength, Correction *correction) {
Ken Wakasade3070a2011-03-19 09:16:42 +0900287 if (DEBUG_DICT) {
satok9fb6f472012-01-13 18:01:22 +0900288 AKLOGI("initSuggest");
Ken Wakasade3070a2011-03-19 09:16:42 +0900289 }
satok1a6da632011-12-16 23:15:06 +0900290 proximityInfo->setInputParams(codes, inputLength, xCoordinates, yCoordinates);
satok1a6da632011-12-16 23:15:06 +0900291 const int maxDepth = min(inputLength * MAX_DEPTH_MULTIPLIER, MAX_WORD_LENGTH);
292 correction->initCorrection(proximityInfo, inputLength, maxDepth);
satok30088252010-12-01 21:22:15 +0900293}
294
satok715514d2010-12-02 20:19:59 +0900295static const char QUOTE = '\'';
satok662fe692010-12-08 17:05:39 +0900296static const char SPACE = ' ';
satok30088252010-12-01 21:22:15 +0900297
satok744dab62011-12-15 22:29:05 +0900298void UnigramDictionary::getOneWordSuggestions(ProximityInfo *proximityInfo,
299 const int *xcoordinates, const int *ycoordinates, const int *codes,
300 const bool useFullEditDistance, const int inputLength, Correction *correction,
301 WordsPriorityQueuePool *queuePool) {
satok6ad15fc2012-01-16 16:21:21 +0900302 initSuggestions(proximityInfo, xcoordinates, ycoordinates, codes, inputLength, correction);
303 getSuggestionCandidates(useFullEditDistance, inputLength, correction, queuePool,
satok8330b482012-01-23 16:52:37 +0900304 true /* doAutoCompletion */, DEFAULT_MAX_ERRORS, FIRST_WORD_INDEX);
satok744dab62011-12-15 22:29:05 +0900305}
306
satok1147c7b2011-12-14 15:04:58 +0900307void UnigramDictionary::getSuggestionCandidates(const bool useFullEditDistance,
satok6ad15fc2012-01-16 16:21:21 +0900308 const int inputLength, Correction *correction, WordsPriorityQueuePool *queuePool,
satok8330b482012-01-23 16:52:37 +0900309 const bool doAutoCompletion, const int maxErrors, const int currentWordIndex) {
satok10266c02011-08-19 22:05:59 +0900310 // TODO: Remove setCorrectionParams
satok1147c7b2011-12-14 15:04:58 +0900311 correction->setCorrectionParams(0, 0, 0,
satokd03317c2011-12-14 21:38:11 +0900312 -1 /* spaceProximityPos */, -1 /* missingSpacePos */, useFullEditDistance,
satok1a6da632011-12-16 23:15:06 +0900313 doAutoCompletion, maxErrors);
satok662fe692010-12-08 17:05:39 +0900314 int rootPosition = ROOT_POS;
Jean Chalard980d6b62011-06-30 17:02:23 +0900315 // Get the number of children of root, then increment the position
Jean Chalard6d419812012-01-16 15:19:47 +0900316 int childCount = BinaryFormat::getGroupCountAndForwardPointer(DICT_ROOT, &rootPosition);
satok208268d2011-08-10 15:44:08 +0900317 int outputIndex = 0;
satokd2997922010-12-07 13:08:39 +0900318
satok1147c7b2011-12-14 15:04:58 +0900319 correction->initCorrectionState(rootPosition, childCount, (inputLength <= 0));
satokd2997922010-12-07 13:08:39 +0900320
satok662fe692010-12-08 17:05:39 +0900321 // Depth first search
satok208268d2011-08-10 15:44:08 +0900322 while (outputIndex >= 0) {
satok1147c7b2011-12-14 15:04:58 +0900323 if (correction->initProcessState(outputIndex)) {
324 int siblingPos = correction->getTreeSiblingPos(outputIndex);
satokd2997922010-12-07 13:08:39 +0900325 int firstChildPos;
satok0f6c8e82011-08-03 02:19:44 +0900326
satok4e4e74e2011-08-03 23:27:32 +0900327 const bool needsToTraverseChildrenNodes = processCurrentNode(siblingPos,
satok8330b482012-01-23 16:52:37 +0900328 correction, &childCount, &firstChildPos, &siblingPos, queuePool,
329 currentWordIndex);
satok662fe692010-12-08 17:05:39 +0900330 // Update next sibling pos
satok1147c7b2011-12-14 15:04:58 +0900331 correction->setTreeSiblingPos(outputIndex, siblingPos);
satok208268d2011-08-10 15:44:08 +0900332
satokd2997922010-12-07 13:08:39 +0900333 if (needsToTraverseChildrenNodes) {
334 // Goes to child node
satok1147c7b2011-12-14 15:04:58 +0900335 outputIndex = correction->goDownTree(outputIndex, childCount, firstChildPos);
satokd2997922010-12-07 13:08:39 +0900336 }
337 } else {
satokcdbbea72010-12-08 16:04:16 +0900338 // Goes to parent sibling node
satok1147c7b2011-12-14 15:04:58 +0900339 outputIndex = correction->getTreeParentIndex(outputIndex);
satokd2997922010-12-07 13:08:39 +0900340 }
341 }
342}
343
Jean Chalardcf9dbbd2011-12-26 15:16:59 +0900344inline void UnigramDictionary::onTerminal(const int freq,
345 const TerminalAttributes& terminalAttributes, Correction *correction,
satok8330b482012-01-23 16:52:37 +0900346 WordsPriorityQueuePool *queuePool, const bool addToMasterQueue,
347 const int currentWordIndex) {
satok6ad15fc2012-01-16 16:21:21 +0900348 const int inputIndex = correction->getInputIndex();
349 const bool addToSubQueue = inputIndex < SUB_QUEUE_MAX_COUNT;
satok54af64a2012-01-17 15:58:23 +0900350
satok8876b752011-08-04 18:31:57 +0900351 int wordLength;
352 unsigned short* wordPointer;
satok54af64a2012-01-17 15:58:23 +0900353
satok1f6b52e2012-01-30 13:53:58 +0900354 if ((currentWordIndex == FIRST_WORD_INDEX) && addToMasterQueue) {
satok54af64a2012-01-17 15:58:23 +0900355 WordsPriorityQueue *masterQueue = queuePool->getMasterQueue();
356 const int finalFreq = correction->getFinalFreq(freq, &wordPointer, &wordLength);
357 if (finalFreq != NOT_A_FREQUENCY) {
358 if (!terminalAttributes.isShortcutOnly()) {
satok6ad15fc2012-01-16 16:21:21 +0900359 addWord(wordPointer, wordLength, finalFreq, masterQueue);
360 }
satok54af64a2012-01-17 15:58:23 +0900361
362 // Please note that the shortcut candidates will be added to the master queue only.
363 TerminalAttributes::ShortcutIterator iterator =
364 terminalAttributes.getShortcutIterator();
365 while (iterator.hasNextShortcutTarget()) {
366 // TODO: addWord only supports weak ordering, meaning we have no means
367 // to control the order of the shortcuts relative to one another or to the word.
368 // We need to either modulate the frequency of each shortcut according
369 // to its own shortcut frequency or to make the queue
370 // so that the insert order is protected inside the queue for words
371 // with the same score.
372 uint16_t shortcutTarget[MAX_WORD_LENGTH_INTERNAL];
373 const int shortcutTargetStringLength = iterator.getNextShortcutTarget(
374 MAX_WORD_LENGTH_INTERNAL, shortcutTarget);
375 addWord(shortcutTarget, shortcutTargetStringLength, finalFreq, masterQueue);
satok6ad15fc2012-01-16 16:21:21 +0900376 }
Jean Chalardcf9dbbd2011-12-26 15:16:59 +0900377 }
satok54af64a2012-01-17 15:58:23 +0900378 }
satok6ad15fc2012-01-16 16:21:21 +0900379
satok54af64a2012-01-17 15:58:23 +0900380 // We only allow two words + other error correction for words with SUB_QUEUE_MIN_WORD_LENGTH
381 // or more length.
382 if (inputIndex >= SUB_QUEUE_MIN_WORD_LENGTH && addToSubQueue) {
satok8330b482012-01-23 16:52:37 +0900383 WordsPriorityQueue *subQueue;
satok7409d152012-01-26 16:13:25 +0900384 subQueue = queuePool->getSubQueue(currentWordIndex, inputIndex);
385 if (!subQueue) {
satok8330b482012-01-23 16:52:37 +0900386 return;
387 }
satok54af64a2012-01-17 15:58:23 +0900388 const int finalFreq = correction->getFinalFreqForSubQueue(freq, &wordPointer, &wordLength,
389 inputIndex);
390 addWord(wordPointer, wordLength, finalFreq, subQueue);
Jean Chalardca5ef282011-06-17 15:36:26 +0900391 }
392}
393
satok99557162012-01-26 22:49:13 +0900394bool UnigramDictionary::getSubStringSuggestion(
satok7409d152012-01-26 16:13:25 +0900395 ProximityInfo *proximityInfo, const int *xcoordinates, const int *ycoordinates,
satok3c09bb12012-01-26 18:36:19 +0900396 const int *codes, const bool useFullEditDistance, Correction *correction,
397 WordsPriorityQueuePool* queuePool, const int inputLength,
398 const bool hasAutoCorrectionCandidate, const int currentWordIndex,
399 const int inputWordStartPos, const int inputWordLength,
satok99557162012-01-26 22:49:13 +0900400 const int outputWordStartPos, const bool isSpaceProximity, int *freqArray,
401 int*wordLengthArray, unsigned short* outputWord, int *outputWordLength) {
satok3c09bb12012-01-26 18:36:19 +0900402 unsigned short* tempOutputWord = 0;
satok1f6b52e2012-01-30 13:53:58 +0900403 int nextWordLength = 0;
satok99557162012-01-26 22:49:13 +0900404 // TODO: Optimize init suggestion
405 initSuggestions(proximityInfo, xcoordinates, ycoordinates, codes,
406 inputLength, correction);
407
satok3c09bb12012-01-26 18:36:19 +0900408 int freq = getMostFrequentWordLike(
409 inputWordStartPos, inputWordLength, proximityInfo, mWord);
410 if (freq > 0) {
satok1f6b52e2012-01-30 13:53:58 +0900411 nextWordLength = inputWordLength;
satok3c09bb12012-01-26 18:36:19 +0900412 tempOutputWord = mWord;
413 } else if (!hasAutoCorrectionCandidate) {
414 if (inputWordStartPos > 0) {
415 const int offset = inputWordStartPos;
416 initSuggestions(proximityInfo, &xcoordinates[offset], &ycoordinates[offset],
417 codes + offset * MAX_PROXIMITY_CHARS, inputWordLength, correction);
418 queuePool->clearSubQueue(currentWordIndex);
419 getSuggestionCandidates(useFullEditDistance, inputWordLength, correction,
420 queuePool, false, MAX_ERRORS_FOR_TWO_WORDS, currentWordIndex);
421 if (DEBUG_DICT) {
satok1f6b52e2012-01-30 13:53:58 +0900422 if (currentWordIndex < MULTIPLE_WORDS_SUGGESTION_MAX_WORDS) {
satok3c09bb12012-01-26 18:36:19 +0900423 AKLOGI("Dump word candidates(%d) %d", currentWordIndex, inputWordLength);
424 for (int i = 0; i < SUB_QUEUE_MAX_COUNT; ++i) {
425 queuePool->getSubQueue(currentWordIndex, i)->dumpTopWord();
426 }
427 }
428 }
429 }
430 WordsPriorityQueue* queue = queuePool->getSubQueue(currentWordIndex, inputWordLength);
431 if (!queue || queue->size() < 1) {
satok99557162012-01-26 22:49:13 +0900432 return false;
satok3c09bb12012-01-26 18:36:19 +0900433 }
434 int score = 0;
435 const double ns = queue->getHighestNormalizedScore(
436 proximityInfo->getPrimaryInputWord(), inputWordLength,
satok1f6b52e2012-01-30 13:53:58 +0900437 &tempOutputWord, &score, &nextWordLength);
satok3c09bb12012-01-26 18:36:19 +0900438 if (DEBUG_DICT) {
439 AKLOGI("NS(%d) = %f, Score = %d", currentWordIndex, ns, score);
440 }
441 // Two words correction won't be done if the score of the first word doesn't exceed the
442 // threshold.
443 if (ns < TWO_WORDS_CORRECTION_WITH_OTHER_ERROR_THRESHOLD
satok1f6b52e2012-01-30 13:53:58 +0900444 || nextWordLength < SUB_QUEUE_MIN_WORD_LENGTH) {
satok99557162012-01-26 22:49:13 +0900445 return false;
satok3c09bb12012-01-26 18:36:19 +0900446 }
satok1f6b52e2012-01-30 13:53:58 +0900447 freq = score >> (nextWordLength + TWO_WORDS_PLUS_OTHER_ERROR_CORRECTION_DEMOTION_DIVIDER);
satok3c09bb12012-01-26 18:36:19 +0900448 }
449 if (DEBUG_DICT) {
satok1f6b52e2012-01-30 13:53:58 +0900450 AKLOGI("Freq(%d): %d, length: %d, input length: %d, input start: %d (%d)"
451 , currentWordIndex, freq, nextWordLength, inputWordLength, inputWordStartPos,
452 wordLengthArray[0]);
satok3c09bb12012-01-26 18:36:19 +0900453 }
satok1f6b52e2012-01-30 13:53:58 +0900454 if (freq <= 0 || nextWordLength <= 0
455 || MAX_WORD_LENGTH <= (outputWordStartPos + nextWordLength)) {
satok99557162012-01-26 22:49:13 +0900456 return false;
satok3c09bb12012-01-26 18:36:19 +0900457 }
satok1f6b52e2012-01-30 13:53:58 +0900458 for (int i = 0; i < nextWordLength; ++i) {
satok3c09bb12012-01-26 18:36:19 +0900459 outputWord[outputWordStartPos + i] = tempOutputWord[i];
460 }
satok99557162012-01-26 22:49:13 +0900461
462 // Put output values
satok1f6b52e2012-01-30 13:53:58 +0900463 freqArray[currentWordIndex] = freq;
satok99557162012-01-26 22:49:13 +0900464 // TODO: put output length instead of input length
satok1f6b52e2012-01-30 13:53:58 +0900465 wordLengthArray[currentWordIndex] = inputWordLength;
466 const int tempOutputWordLength = outputWordStartPos + nextWordLength;
467 if (outputWordLength) {
468 *outputWordLength = tempOutputWordLength;
469 }
satok99557162012-01-26 22:49:13 +0900470
satok3c09bb12012-01-26 18:36:19 +0900471 if ((inputWordStartPos + inputWordLength) < inputLength) {
satok1f6b52e2012-01-30 13:53:58 +0900472 if (outputWordStartPos + nextWordLength >= MAX_WORD_LENGTH) {
satok99557162012-01-26 22:49:13 +0900473 return false;
satok3c09bb12012-01-26 18:36:19 +0900474 }
satoka85f4922012-01-30 18:18:30 +0900475 outputWord[tempOutputWordLength] = SPACE;
satok1f6b52e2012-01-30 13:53:58 +0900476 if (outputWordLength) {
477 ++*outputWordLength;
478 }
479 } else if (currentWordIndex >= 1) {
satok99557162012-01-26 22:49:13 +0900480 // TODO: Handle 3 or more words
satoka85f4922012-01-30 18:18:30 +0900481 const int pairFreq = correction->getFreqForSplitMultipleWords(
482 freqArray, wordLengthArray, currentWordIndex + 1, isSpaceProximity, outputWord);
satok99557162012-01-26 22:49:13 +0900483 if (DEBUG_DICT) {
satoka85f4922012-01-30 18:18:30 +0900484 DUMP_WORD(outputWord, tempOutputWordLength);
485 AKLOGI("Split two words: %d, %d, %d, %d, (%d) %d", freqArray[0], freqArray[1], pairFreq,
486 inputLength, wordLengthArray[0], tempOutputWordLength);
satok99557162012-01-26 22:49:13 +0900487 }
satok1f6b52e2012-01-30 13:53:58 +0900488 addWord(outputWord, tempOutputWordLength, pairFreq, queuePool->getMasterQueue());
satok3c09bb12012-01-26 18:36:19 +0900489 }
satok99557162012-01-26 22:49:13 +0900490 return true;
satok7409d152012-01-26 16:13:25 +0900491}
492
satok1f6b52e2012-01-30 13:53:58 +0900493void UnigramDictionary::getMultiWordsSuggestionRec(ProximityInfo *proximityInfo,
494 const int *xcoordinates, const int *ycoordinates, const int *codes,
495 const bool useFullEditDistance, const int inputLength,
496 Correction *correction, WordsPriorityQueuePool* queuePool,
497 const bool hasAutoCorrectionCandidate, const int startInputPos, const int startWordIndex,
498 const int outputWordLength, int *freqArray, int* wordLengthArray,
499 unsigned short* outputWord) {
500 if (startWordIndex >= (MULTIPLE_WORDS_SUGGESTION_MAX_WORDS - 1)) {
501 // Return if the last word index
502 return;
503 }
satoka85f4922012-01-30 18:18:30 +0900504 if (startWordIndex >= 1
505 && (hasAutoCorrectionCandidate
506 || inputLength < MIN_INPUT_LENGTH_FOR_THREE_OR_MORE_WORDS_CORRECTION)) {
507 // Do not suggest 3+ words if already has auto correction candidate
508 return;
509 }
510 for (int i = startInputPos + 1; i < inputLength; ++i) {
satok1f6b52e2012-01-30 13:53:58 +0900511 if (DEBUG_CORRECTION_FREQ) {
satoka85f4922012-01-30 18:18:30 +0900512 AKLOGI("Multi words(%d), start in %d sep %d start out %d",
513 startWordIndex, startInputPos, i, outputWordLength);
514 DUMP_WORD(outputWord, outputWordLength);
satok1f6b52e2012-01-30 13:53:58 +0900515 }
satoka85f4922012-01-30 18:18:30 +0900516 int tempOutputWordLength = 0;
517 // Current word
518 int inputWordStartPos = startInputPos;
519 int inputWordLength = i - startInputPos;
satok1f6b52e2012-01-30 13:53:58 +0900520 if (!getSubStringSuggestion(proximityInfo, xcoordinates, ycoordinates, codes,
521 useFullEditDistance, correction, queuePool, inputLength, hasAutoCorrectionCandidate,
satoka85f4922012-01-30 18:18:30 +0900522 startWordIndex, inputWordStartPos, inputWordLength, outputWordLength,
523 true /* not used */, freqArray, wordLengthArray, outputWord,
524 &tempOutputWordLength)) {
satok1f6b52e2012-01-30 13:53:58 +0900525 continue;
526 }
527
satoka85f4922012-01-30 18:18:30 +0900528 if (DEBUG_CORRECTION_FREQ) {
529 AKLOGI("Do missing space correction");
530 }
531 // Next word
satok1f6b52e2012-01-30 13:53:58 +0900532 // Missing space
533 inputWordStartPos = i;
534 inputWordLength = inputLength - i;
satoka85f4922012-01-30 18:18:30 +0900535 if(!getSubStringSuggestion(proximityInfo, xcoordinates, ycoordinates, codes,
satok1f6b52e2012-01-30 13:53:58 +0900536 useFullEditDistance, correction, queuePool, inputLength, hasAutoCorrectionCandidate,
satoka85f4922012-01-30 18:18:30 +0900537 startWordIndex + 1, inputWordStartPos, inputWordLength, tempOutputWordLength,
538 false /* missing space */, freqArray, wordLengthArray, outputWord, 0)) {
539 getMultiWordsSuggestionRec(proximityInfo, xcoordinates, ycoordinates, codes,
540 useFullEditDistance, inputLength, correction, queuePool,
541 hasAutoCorrectionCandidate, inputWordStartPos, startWordIndex + 1,
542 tempOutputWordLength, freqArray, wordLengthArray, outputWord);
543 }
satok1f6b52e2012-01-30 13:53:58 +0900544
545 // Mistyped space
546 ++inputWordStartPos;
547 --inputWordLength;
548
549 if (inputWordLength <= 0) {
550 continue;
551 }
552
553 const int x = xcoordinates[inputWordStartPos - 1];
554 const int y = ycoordinates[inputWordStartPos - 1];
555 if (!proximityInfo->hasSpaceProximity(x, y)) {
556 continue;
557 }
558
satoka85f4922012-01-30 18:18:30 +0900559 if (DEBUG_CORRECTION_FREQ) {
560 AKLOGI("Do mistyped space correction");
561 }
satok1f6b52e2012-01-30 13:53:58 +0900562 getSubStringSuggestion(proximityInfo, xcoordinates, ycoordinates, codes,
563 useFullEditDistance, correction, queuePool, inputLength, hasAutoCorrectionCandidate,
satoka85f4922012-01-30 18:18:30 +0900564 startWordIndex + 1, inputWordStartPos, inputWordLength, tempOutputWordLength,
565 true /* mistyped space */, freqArray, wordLengthArray, outputWord, 0);
satok1f6b52e2012-01-30 13:53:58 +0900566 }
567}
568
satoka85f4922012-01-30 18:18:30 +0900569void UnigramDictionary::getSplitMultipleWordsSuggestions(ProximityInfo *proximityInfo,
satok744dab62011-12-15 22:29:05 +0900570 const int *xcoordinates, const int *ycoordinates, const int *codes,
satok1f6b52e2012-01-30 13:53:58 +0900571 const bool useFullEditDistance, const int inputLength,
satok99557162012-01-26 22:49:13 +0900572 Correction *correction, WordsPriorityQueuePool* queuePool,
satok8330b482012-01-23 16:52:37 +0900573 const bool hasAutoCorrectionCandidate) {
satokbd6ccdd2012-01-23 12:30:20 +0900574 if (inputLength >= MAX_WORD_LENGTH) return;
satok612c6e42011-08-01 19:35:27 +0900575 if (DEBUG_DICT) {
satok8330b482012-01-23 16:52:37 +0900576 // MAX_PROXIMITY_CHARS_SIZE in ProximityInfo.java should be 16
577 assert(MAX_PROXIMITY_CHARS == 16);
satok612c6e42011-08-01 19:35:27 +0900578 }
satok1f6b52e2012-01-30 13:53:58 +0900579 if (DEBUG_DICT) {
580 AKLOGI("--- Suggest multiple words");
581 }
satok54af64a2012-01-17 15:58:23 +0900582
satokbd6ccdd2012-01-23 12:30:20 +0900583 // Allocating fixed length array on stack
584 unsigned short outputWord[MAX_WORD_LENGTH];
satok1f6b52e2012-01-30 13:53:58 +0900585 int freqArray[MULTIPLE_WORDS_SUGGESTION_MAX_WORDS];
586 int wordLengthArray[MULTIPLE_WORDS_SUGGESTION_MAX_WORDS];
587 const int outputWordLength = 0;
588 const int startInputPos = 0;
589 const int startWordIndex = 0;
590 getMultiWordsSuggestionRec(proximityInfo, xcoordinates, ycoordinates, codes,
591 useFullEditDistance, inputLength, correction, queuePool, hasAutoCorrectionCandidate,
592 startInputPos, startWordIndex, outputWordLength, freqArray, wordLengthArray,
593 outputWord);
Jean Chalarde6715e32011-06-30 19:47:25 +0900594}
595
Jean Chalard1059f272011-06-28 20:45:05 +0900596// Wrapper for getMostFrequentWordLikeInner, which matches it to the previous
597// interface.
598inline int UnigramDictionary::getMostFrequentWordLike(const int startInputIndex,
satok1147c7b2011-12-14 15:04:58 +0900599 const int inputLength, ProximityInfo *proximityInfo, unsigned short *word) {
Jean Chalard1059f272011-06-28 20:45:05 +0900600 uint16_t inWord[inputLength];
601
602 for (int i = 0; i < inputLength; ++i) {
satok1147c7b2011-12-14 15:04:58 +0900603 inWord[i] = (uint16_t)proximityInfo->getPrimaryCharAt(startInputIndex + i);
Jean Chalard1059f272011-06-28 20:45:05 +0900604 }
605 return getMostFrequentWordLikeInner(inWord, inputLength, word);
606}
607
608// This function will take the position of a character array within a CharGroup,
609// and check it actually like-matches the word in inWord starting at startInputIndex,
610// that is, it matches it with case and accents squashed.
611// The function returns true if there was a full match, false otherwise.
612// The function will copy on-the-fly the characters in the CharGroup to outNewWord.
613// It will also place the end position of the array in outPos; in outInputIndex,
614// it will place the index of the first char AFTER the match if there was a match,
615// and the initial position if there was not. It makes sense because if there was
616// a match we want to continue searching, but if there was not, we want to go to
617// the next CharGroup.
618// In and out parameters may point to the same location. This function takes care
619// not to use any input parameters after it wrote into its outputs.
620static inline bool testCharGroupForContinuedLikeness(const uint8_t flags,
621 const uint8_t* const root, const int startPos,
622 const uint16_t* const inWord, const int startInputIndex,
623 int32_t* outNewWord, int* outInputIndex, int* outPos) {
624 const bool hasMultipleChars = (0 != (UnigramDictionary::FLAG_HAS_MULTIPLE_CHARS & flags));
625 int pos = startPos;
626 int32_t character = BinaryFormat::getCharCodeAndForwardPointer(root, &pos);
Tadashi G. Takaoka6e3cb272011-11-11 14:26:13 +0900627 int32_t baseChar = toBaseLowerCase(character);
628 const uint16_t wChar = toBaseLowerCase(inWord[startInputIndex]);
Jean Chalard1059f272011-06-28 20:45:05 +0900629
630 if (baseChar != wChar) {
631 *outPos = hasMultipleChars ? BinaryFormat::skipOtherCharacters(root, pos) : pos;
632 *outInputIndex = startInputIndex;
633 return false;
634 }
635 int inputIndex = startInputIndex;
636 outNewWord[inputIndex] = character;
637 if (hasMultipleChars) {
638 character = BinaryFormat::getCharCodeAndForwardPointer(root, &pos);
639 while (NOT_A_CHARACTER != character) {
Tadashi G. Takaoka6e3cb272011-11-11 14:26:13 +0900640 baseChar = toBaseLowerCase(character);
641 if (toBaseLowerCase(inWord[++inputIndex]) != baseChar) {
Jean Chalard1059f272011-06-28 20:45:05 +0900642 *outPos = BinaryFormat::skipOtherCharacters(root, pos);
643 *outInputIndex = startInputIndex;
644 return false;
645 }
646 outNewWord[inputIndex] = character;
647 character = BinaryFormat::getCharCodeAndForwardPointer(root, &pos);
648 }
649 }
650 *outInputIndex = inputIndex + 1;
651 *outPos = pos;
652 return true;
653}
654
655// This function is invoked when a word like the word searched for is found.
656// It will compare the frequency to the max frequency, and if greater, will
657// copy the word into the output buffer. In output value maxFreq, it will
658// write the new maximum frequency if it changed.
659static inline void onTerminalWordLike(const int freq, int32_t* newWord, const int length,
660 short unsigned int* outWord, int* maxFreq) {
661 if (freq > *maxFreq) {
662 for (int q = 0; q < length; ++q)
663 outWord[q] = newWord[q];
664 outWord[length] = 0;
665 *maxFreq = freq;
666 }
667}
668
669// Will find the highest frequency of the words like the one passed as an argument,
670// that is, everything that only differs by case/accents.
671int UnigramDictionary::getMostFrequentWordLikeInner(const uint16_t * const inWord,
672 const int length, short unsigned int* outWord) {
673 int32_t newWord[MAX_WORD_LENGTH_INTERNAL];
674 int depth = 0;
675 int maxFreq = -1;
676 const uint8_t* const root = DICT_ROOT;
677
Jean Chalard4c0eca62012-01-16 15:15:53 +0900678 int startPos = 0;
679 mStackChildCount[0] = BinaryFormat::getGroupCountAndForwardPointer(root, &startPos);
Jean Chalard1059f272011-06-28 20:45:05 +0900680 mStackInputIndex[0] = 0;
Jean Chalard4c0eca62012-01-16 15:15:53 +0900681 mStackSiblingPos[0] = startPos;
Jean Chalard1059f272011-06-28 20:45:05 +0900682 while (depth >= 0) {
683 const int charGroupCount = mStackChildCount[depth];
684 int pos = mStackSiblingPos[depth];
685 for (int charGroupIndex = charGroupCount - 1; charGroupIndex >= 0; --charGroupIndex) {
686 int inputIndex = mStackInputIndex[depth];
687 const uint8_t flags = BinaryFormat::getFlagsAndForwardPointer(root, &pos);
688 // Test whether all chars in this group match with the word we are searching for. If so,
689 // we want to traverse its children (or if the length match, evaluate its frequency).
690 // Note that this function will output the position regardless, but will only write
691 // into inputIndex if there is a match.
692 const bool isAlike = testCharGroupForContinuedLikeness(flags, root, pos, inWord,
693 inputIndex, newWord, &inputIndex, &pos);
694 if (isAlike && (FLAG_IS_TERMINAL & flags) && (inputIndex == length)) {
695 const int frequency = BinaryFormat::readFrequencyWithoutMovingPointer(root, pos);
696 onTerminalWordLike(frequency, newWord, inputIndex, outWord, &maxFreq);
697 }
698 pos = BinaryFormat::skipFrequency(flags, pos);
699 const int siblingPos = BinaryFormat::skipChildrenPosAndAttributes(root, flags, pos);
700 const int childrenNodePos = BinaryFormat::readChildrenPosition(root, flags, pos);
701 // If we had a match and the word has children, we want to traverse them. We don't have
702 // to traverse words longer than the one we are searching for, since they will not match
703 // anyway, so don't traverse unless inputIndex < length.
704 if (isAlike && (-1 != childrenNodePos) && (inputIndex < length)) {
705 // Save position for this depth, to get back to this once children are done
706 mStackChildCount[depth] = charGroupIndex;
707 mStackSiblingPos[depth] = siblingPos;
708 // Prepare stack values for next depth
709 ++depth;
710 int childrenPos = childrenNodePos;
711 mStackChildCount[depth] =
712 BinaryFormat::getGroupCountAndForwardPointer(root, &childrenPos);
713 mStackSiblingPos[depth] = childrenPos;
714 mStackInputIndex[depth] = inputIndex;
715 pos = childrenPos;
716 // Go to the next depth level.
717 ++depth;
718 break;
719 } else {
720 // No match, or no children, or word too long to ever match: go the next sibling.
721 pos = siblingPos;
722 }
723 }
724 --depth;
725 }
726 return maxFreq;
727}
728
Jean Chalard1059f272011-06-28 20:45:05 +0900729bool UnigramDictionary::isValidWord(const uint16_t* const inWord, const int length) const {
Jean Chalard6a0e9642011-07-25 18:17:11 +0900730 return NOT_VALID_WORD != BinaryFormat::getTerminalPosition(DICT_ROOT, inWord, length);
Jean Chalard1059f272011-06-28 20:45:05 +0900731}
732
733// TODO: remove this function.
734int UnigramDictionary::getBigramPosition(int pos, unsigned short *word, int offset,
735 int length) const {
736 return -1;
737}
738
739// ProcessCurrentNode returns a boolean telling whether to traverse children nodes or not.
740// If the return value is false, then the caller should read in the output "nextSiblingPosition"
741// to find out the address of the next sibling node and pass it to a new call of processCurrentNode.
742// It is worthy to note that when false is returned, the output values other than
743// nextSiblingPosition are undefined.
744// If the return value is true, then the caller must proceed to traverse the children of this
745// node. processCurrentNode will output the information about the children: their count in
746// newCount, their position in newChildrenPosition, the traverseAllNodes flag in
747// newTraverseAllNodes, the match weight into newMatchRate, the input index into newInputIndex, the
748// diffs into newDiffs, the sibling position in nextSiblingPosition, and the output index into
749// newOutputIndex. Please also note the following caveat: processCurrentNode does not know when
750// there aren't any more nodes at this level, it merely returns the address of the first byte after
751// the current node in nextSiblingPosition. Thus, the caller must keep count of the nodes at any
752// given level, as output into newCount when traversing this level's parent.
satok8876b752011-08-04 18:31:57 +0900753inline bool UnigramDictionary::processCurrentNode(const int initialPos,
satokcfca3c62011-08-10 14:30:10 +0900754 Correction *correction, int *newCount,
satok8330b482012-01-23 16:52:37 +0900755 int *newChildrenPosition, int *nextSiblingPosition, WordsPriorityQueuePool *queuePool,
756 const int currentWordIndex) {
Jean Chalard85a1d1e2011-06-21 22:23:21 +0900757 if (DEBUG_DICT) {
satokcfca3c62011-08-10 14:30:10 +0900758 correction->checkState();
Jean Chalard85a1d1e2011-06-21 22:23:21 +0900759 }
Jean Chalard0584f022011-06-30 19:23:16 +0900760 int pos = initialPos;
Jean Chalard0584f022011-06-30 19:23:16 +0900761
Jean Chalard1059f272011-06-28 20:45:05 +0900762 // Flags contain the following information:
763 // - Address type (MASK_GROUP_ADDRESS_TYPE) on two bits:
764 // - FLAG_GROUP_ADDRESS_TYPE_{ONE,TWO,THREE}_BYTES means there are children and their address
765 // is on the specified number of bytes.
766 // - FLAG_GROUP_ADDRESS_TYPE_NOADDRESS means there are no children, and therefore no address.
767 // - FLAG_HAS_MULTIPLE_CHARS: whether this node has multiple char or not.
768 // - FLAG_IS_TERMINAL: whether this node is a terminal or not (it may still have children)
769 // - FLAG_HAS_BIGRAMS: whether this node has bigrams or not
770 const uint8_t flags = BinaryFormat::getFlagsAndForwardPointer(DICT_ROOT, &pos);
771 const bool hasMultipleChars = (0 != (FLAG_HAS_MULTIPLE_CHARS & flags));
satok8876b752011-08-04 18:31:57 +0900772 const bool isTerminalNode = (0 != (FLAG_IS_TERMINAL & flags));
773
774 bool needsToInvokeOnTerminal = false;
Jean Chalard85a1d1e2011-06-21 22:23:21 +0900775
Jean Chalard1059f272011-06-28 20:45:05 +0900776 // This gets only ONE character from the stream. Next there will be:
777 // if FLAG_HAS_MULTIPLE CHARS: the other characters of the same node
778 // else if FLAG_IS_TERMINAL: the frequency
779 // else if MASK_GROUP_ADDRESS_TYPE is not NONE: the children address
780 // Note that you can't have a node that both is not a terminal and has no children.
781 int32_t c = BinaryFormat::getCharCodeAndForwardPointer(DICT_ROOT, &pos);
782 assert(NOT_A_CHARACTER != c);
Jean Chalard85a1d1e2011-06-21 22:23:21 +0900783
Jean Chalard1059f272011-06-28 20:45:05 +0900784 // We are going to loop through each character and make it look like it's a different
785 // node each time. To do that, we will process characters in this node in order until
786 // we find the character terminator. This is signalled by getCharCode* returning
787 // NOT_A_CHARACTER.
788 // As a special case, if there is only one character in this node, we must not read the
789 // next bytes so we will simulate the NOT_A_CHARACTER return by testing the flags.
790 // This way, each loop run will look like a "virtual node".
791 do {
792 // We prefetch the next char. If 'c' is the last char of this node, we will have
793 // NOT_A_CHARACTER in the next char. From this we can decide whether this virtual node
794 // should behave as a terminal or not and whether we have children.
795 const int32_t nextc = hasMultipleChars
796 ? BinaryFormat::getCharCodeAndForwardPointer(DICT_ROOT, &pos) : NOT_A_CHARACTER;
797 const bool isLastChar = (NOT_A_CHARACTER == nextc);
798 // If there are more chars in this nodes, then this virtual node is not a terminal.
799 // If we are on the last char, this virtual node is a terminal if this node is.
satok8876b752011-08-04 18:31:57 +0900800 const bool isTerminal = isLastChar && isTerminalNode;
Jean Chalard85a1d1e2011-06-21 22:23:21 +0900801
satokcfca3c62011-08-10 14:30:10 +0900802 Correction::CorrectionType stateType = correction->processCharAndCalcState(
satok8876b752011-08-04 18:31:57 +0900803 c, isTerminal);
satokcfca3c62011-08-10 14:30:10 +0900804 if (stateType == Correction::TRAVERSE_ALL_ON_TERMINAL
805 || stateType == Correction::ON_TERMINAL) {
satok8876b752011-08-04 18:31:57 +0900806 needsToInvokeOnTerminal = true;
satokd03317c2011-12-14 21:38:11 +0900807 } else if (stateType == Correction::UNRELATED || correction->needsToPrune()) {
satok8876b752011-08-04 18:31:57 +0900808 // We found that this is an unrelated character, so we should give up traversing
809 // this node and its children entirely.
810 // However we may not be on the last virtual node yet so we skip the remaining
811 // characters in this node, the frequency if it's there, read the next sibling
812 // position to output it, then return false.
813 // We don't have to output other values because we return false, as in
814 // "don't traverse children".
Jean Chalard1059f272011-06-28 20:45:05 +0900815 if (!isLastChar) {
816 pos = BinaryFormat::skipOtherCharacters(DICT_ROOT, pos);
817 }
818 pos = BinaryFormat::skipFrequency(flags, pos);
819 *nextSiblingPosition =
820 BinaryFormat::skipChildrenPosAndAttributes(DICT_ROOT, flags, pos);
821 return false;
Jean Chalard85a1d1e2011-06-21 22:23:21 +0900822 }
823
Jean Chalard1059f272011-06-28 20:45:05 +0900824 // Prepare for the next character. Promote the prefetched char to current char - the loop
825 // will take care of prefetching the next. If we finally found our last char, nextc will
826 // contain NOT_A_CHARACTER.
827 c = nextc;
Jean Chalard1059f272011-06-28 20:45:05 +0900828 } while (NOT_A_CHARACTER != c);
Jean Chalard85a1d1e2011-06-21 22:23:21 +0900829
satok8876b752011-08-04 18:31:57 +0900830 if (isTerminalNode) {
satok6ad15fc2012-01-16 16:21:21 +0900831 // The frequency should be here, because we come here only if this is actually
832 // a terminal node, and we are on its last char.
833 const int freq = BinaryFormat::readFrequencyWithoutMovingPointer(DICT_ROOT, pos);
834 const int childrenAddressPos = BinaryFormat::skipFrequency(flags, pos);
835 const int attributesPos = BinaryFormat::skipChildrenPosition(flags, childrenAddressPos);
836 TerminalAttributes terminalAttributes(DICT_ROOT, flags, attributesPos);
satok8330b482012-01-23 16:52:37 +0900837 onTerminal(freq, terminalAttributes, correction, queuePool, needsToInvokeOnTerminal,
838 currentWordIndex);
Jean Chalard1059f272011-06-28 20:45:05 +0900839
satok8876b752011-08-04 18:31:57 +0900840 // If there are more chars in this node, then this virtual node has children.
841 // If we are on the last char, this virtual node has children if this node has.
842 const bool hasChildren = BinaryFormat::hasChildrenInFlags(flags);
843
844 // This character matched the typed character (enough to traverse the node at least)
845 // so we just evaluated it. Now we should evaluate this virtual node's children - that
846 // is, if it has any. If it has no children, we're done here - so we skip the end of
847 // the node, output the siblings position, and return false "don't traverse children".
848 // Note that !hasChildren implies isLastChar, so we know we don't have to skip any
849 // remaining char in this group for there can't be any.
850 if (!hasChildren) {
851 pos = BinaryFormat::skipFrequency(flags, pos);
852 *nextSiblingPosition =
853 BinaryFormat::skipChildrenPosAndAttributes(DICT_ROOT, flags, pos);
854 return false;
855 }
856
857 // Optimization: Prune out words that are too long compared to how much was typed.
satokcfca3c62011-08-10 14:30:10 +0900858 if (correction->needsToPrune()) {
satok8876b752011-08-04 18:31:57 +0900859 pos = BinaryFormat::skipFrequency(flags, pos);
860 *nextSiblingPosition =
861 BinaryFormat::skipChildrenPosAndAttributes(DICT_ROOT, flags, pos);
satok10266c02011-08-19 22:05:59 +0900862 if (DEBUG_DICT_FULL) {
satok9fb6f472012-01-13 18:01:22 +0900863 AKLOGI("Traversing was pruned.");
satok10266c02011-08-19 22:05:59 +0900864 }
satok8876b752011-08-04 18:31:57 +0900865 return false;
866 }
867 }
Jean Chalard1059f272011-06-28 20:45:05 +0900868
869 // Now we finished processing this node, and we want to traverse children. If there are no
870 // children, we can't come here.
871 assert(BinaryFormat::hasChildrenInFlags(flags));
872
873 // If this node was a terminal it still has the frequency under the pointer (it may have been
874 // read, but not skipped - see readFrequencyWithoutMovingPointer).
875 // Next come the children position, then possibly attributes (attributes are bigrams only for
876 // now, maybe something related to shortcuts in the future).
877 // Once this is read, we still need to output the number of nodes in the immediate children of
878 // this node, so we read and output it before returning true, as in "please traverse children".
879 pos = BinaryFormat::skipFrequency(flags, pos);
880 int childrenPos = BinaryFormat::readChildrenPosition(DICT_ROOT, flags, pos);
881 *nextSiblingPosition = BinaryFormat::skipChildrenPosAndAttributes(DICT_ROOT, flags, pos);
882 *newCount = BinaryFormat::getGroupCountAndForwardPointer(DICT_ROOT, &childrenPos);
883 *newChildrenPosition = childrenPos;
884 return true;
Jean Chalard85a1d1e2011-06-21 22:23:21 +0900885}
886
satok30088252010-12-01 21:22:15 +0900887} // namespace latinime