400 lines
13 KiB
JavaScript
400 lines
13 KiB
JavaScript
/*
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* Copyright (C) 2016-2020 Alex Yatskov <alex@foosoft.net>
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* Author: Alex Yatskov <alex@foosoft.net>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <https://www.gnu.org/licenses/>.
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*/
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function dictEnabledSet(options) {
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const dictionaries = {};
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for (const title in options.dictionaries) {
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const dictionary = options.dictionaries[title];
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if (dictionary.enabled) {
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dictionaries[title] = dictionary;
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}
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}
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return dictionaries;
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}
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function dictConfigured(options) {
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for (const title in options.dictionaries) {
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if (options.dictionaries[title].enabled) {
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return true;
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}
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}
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return false;
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}
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function dictRowsSort(rows, options) {
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return rows.sort((ra, rb) => {
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const pa = (options.dictionaries[ra.title] || {}).priority || 0;
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const pb = (options.dictionaries[rb.title] || {}).priority || 0;
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if (pa > pb) {
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return -1;
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} else if (pa < pb) {
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return 1;
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} else {
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return 0;
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}
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});
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}
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function dictTermsSort(definitions, dictionaries=null) {
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return definitions.sort((v1, v2) => {
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let i;
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if (dictionaries !== null) {
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i = (
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((dictionaries[v2.dictionary] || {}).priority || 0) -
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((dictionaries[v1.dictionary] || {}).priority || 0)
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);
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if (i !== 0) { return i; }
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}
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i = v2.source.length - v1.source.length;
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if (i !== 0) { return i; }
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i = v1.reasons.length - v2.reasons.length;
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if (i !== 0) { return i; }
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i = v2.score - v1.score;
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if (i !== 0) { return i; }
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return v2.expression.toString().localeCompare(v1.expression.toString());
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});
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}
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function dictTermsUndupe(definitions) {
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const definitionGroups = {};
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for (const definition of definitions) {
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const definitionExisting = definitionGroups[definition.id];
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if (!hasOwn(definitionGroups, definition.id) || definition.expression.length > definitionExisting.expression.length) {
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definitionGroups[definition.id] = definition;
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}
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}
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const definitionsUnique = [];
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for (const key in definitionGroups) {
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definitionsUnique.push(definitionGroups[key]);
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}
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return definitionsUnique;
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}
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function dictTermsCompressTags(definitions) {
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let lastDictionary = '';
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let lastPartOfSpeech = '';
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for (const definition of definitions) {
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const dictionary = JSON.stringify(definition.definitionTags.filter((tag) => tag.category === 'dictionary').map((tag) => tag.name).sort());
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const partOfSpeech = JSON.stringify(definition.definitionTags.filter((tag) => tag.category === 'partOfSpeech').map((tag) => tag.name).sort());
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const filterOutCategories = [];
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if (lastDictionary === dictionary) {
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filterOutCategories.push('dictionary');
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} else {
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lastDictionary = dictionary;
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lastPartOfSpeech = '';
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}
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if (lastPartOfSpeech === partOfSpeech) {
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filterOutCategories.push('partOfSpeech');
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} else {
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lastPartOfSpeech = partOfSpeech;
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}
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definition.definitionTags = definition.definitionTags.filter((tag) => !filterOutCategories.includes(tag.category));
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}
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}
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function dictTermsGroup(definitions, dictionaries) {
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const groups = {};
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for (const definition of definitions) {
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const key = [definition.source, definition.expression];
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key.push(...definition.reasons);
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if (definition.reading) {
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key.push(definition.reading);
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}
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const keyString = key.toString();
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if (hasOwn(groups, keyString)) {
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groups[keyString].push(definition);
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} else {
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groups[keyString] = [definition];
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}
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}
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const results = [];
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for (const key in groups) {
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const groupDefs = groups[key];
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const firstDef = groupDefs[0];
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dictTermsSort(groupDefs, dictionaries);
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results.push({
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definitions: groupDefs,
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expression: firstDef.expression,
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reading: firstDef.reading,
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furiganaSegments: firstDef.furiganaSegments,
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reasons: firstDef.reasons,
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termTags: firstDef.termTags,
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score: groupDefs.reduce((p, v) => v.score > p ? v.score : p, Number.MIN_SAFE_INTEGER),
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source: firstDef.source
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});
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}
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return dictTermsSort(results);
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}
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function dictTermsMergeBySequence(definitions, mainDictionary) {
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const definitionsBySequence = {'-1': []};
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for (const definition of definitions) {
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if (mainDictionary === definition.dictionary && definition.sequence >= 0) {
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if (!definitionsBySequence[definition.sequence]) {
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definitionsBySequence[definition.sequence] = {
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reasons: definition.reasons,
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score: Number.MIN_SAFE_INTEGER,
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expression: new Set(),
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reading: new Set(),
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expressions: new Map(),
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source: definition.source,
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dictionary: definition.dictionary,
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definitions: []
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};
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}
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const score = Math.max(definitionsBySequence[definition.sequence].score, definition.score);
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definitionsBySequence[definition.sequence].score = score;
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} else {
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definitionsBySequence['-1'].push(definition);
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}
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}
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return definitionsBySequence;
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}
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function dictTermsMergeByGloss(result, definitions, appendTo, mergedIndices) {
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const definitionsByGloss = appendTo || {};
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for (const [index, definition] of definitions.entries()) {
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if (appendTo) {
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let match = false;
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for (const expression of result.expressions.keys()) {
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if (definition.expression === expression) {
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for (const reading of result.expressions.get(expression).keys()) {
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if (definition.reading === reading) {
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match = true;
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break;
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}
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}
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}
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if (match) {
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break;
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}
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}
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if (!match) {
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continue;
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} else if (mergedIndices) {
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mergedIndices.add(index);
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}
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}
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const gloss = JSON.stringify(definition.glossary.concat(definition.dictionary));
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if (!definitionsByGloss[gloss]) {
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definitionsByGloss[gloss] = {
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expression: new Set(),
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reading: new Set(),
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definitionTags: [],
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glossary: definition.glossary,
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source: result.source,
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reasons: [],
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score: definition.score,
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id: definition.id,
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dictionary: definition.dictionary
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};
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}
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definitionsByGloss[gloss].expression.add(definition.expression);
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definitionsByGloss[gloss].reading.add(definition.reading);
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result.expression.add(definition.expression);
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result.reading.add(definition.reading);
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for (const tag of definition.definitionTags) {
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if (!definitionsByGloss[gloss].definitionTags.find((existingTag) => existingTag.name === tag.name)) {
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definitionsByGloss[gloss].definitionTags.push(tag);
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}
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}
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if (!appendTo) {
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// result->expressions[ Expression1[ Reading1[ Tag1, Tag2 ] ], Expression2, ... ]
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if (!result.expressions.has(definition.expression)) {
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result.expressions.set(definition.expression, new Map());
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}
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if (!result.expressions.get(definition.expression).has(definition.reading)) {
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result.expressions.get(definition.expression).set(definition.reading, []);
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}
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for (const tag of definition.termTags) {
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if (!result.expressions.get(definition.expression).get(definition.reading).find((existingTag) => existingTag.name === tag.name)) {
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result.expressions.get(definition.expression).get(definition.reading).push(tag);
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}
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}
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}
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}
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for (const gloss in definitionsByGloss) {
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const definition = definitionsByGloss[gloss];
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definition.only = [];
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if (!utilSetEqual(definition.expression, result.expression)) {
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for (const expression of utilSetIntersection(definition.expression, result.expression)) {
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definition.only.push(expression);
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}
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}
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if (!utilSetEqual(definition.reading, result.reading)) {
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for (const reading of utilSetIntersection(definition.reading, result.reading)) {
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definition.only.push(reading);
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}
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}
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}
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return definitionsByGloss;
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}
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function dictTagBuildSource(name) {
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return dictTagSanitize({name, category: 'dictionary', order: 100});
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}
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function dictTagSanitize(tag) {
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tag.name = tag.name || 'untitled';
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tag.category = tag.category || 'default';
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tag.notes = tag.notes || '';
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tag.order = tag.order || 0;
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tag.score = tag.score || 0;
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return tag;
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}
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function dictTagsSort(tags) {
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return tags.sort((v1, v2) => {
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const order1 = v1.order;
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const order2 = v2.order;
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if (order1 < order2) {
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return -1;
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} else if (order1 > order2) {
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return 1;
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}
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const name1 = v1.name;
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const name2 = v2.name;
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if (name1 < name2) {
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return -1;
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} else if (name1 > name2) {
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return 1;
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}
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return 0;
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});
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}
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function dictFieldSplit(field) {
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return field.length === 0 ? [] : field.split(' ');
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}
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async function dictFieldFormat(field, definition, mode, options, templates, exceptions) {
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const data = {
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marker: null,
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definition,
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group: options.general.resultOutputMode === 'group',
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merge: options.general.resultOutputMode === 'merge',
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modeTermKanji: mode === 'term-kanji',
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modeTermKana: mode === 'term-kana',
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modeKanji: mode === 'kanji',
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compactGlossaries: options.general.compactGlossaries
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};
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const markers = dictFieldFormat.markers;
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const pattern = /\{([\w-]+)\}/g;
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return await stringReplaceAsync(field, pattern, async (g0, marker) => {
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if (!markers.has(marker)) {
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return g0;
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}
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data.marker = marker;
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try {
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return await apiTemplateRender(templates, data, true);
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} catch (e) {
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if (exceptions) { exceptions.push(e); }
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return `{${marker}-render-error}`;
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}
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});
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}
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dictFieldFormat.markers = new Set([
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'audio',
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'character',
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'cloze-body',
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'cloze-prefix',
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'cloze-suffix',
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'dictionary',
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'expression',
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'furigana',
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'furigana-plain',
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'glossary',
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'glossary-brief',
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'kunyomi',
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'onyomi',
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'reading',
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'screenshot',
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'sentence',
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'tags',
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'url'
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]);
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async function dictNoteFormat(definition, mode, options, templates) {
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const note = {fields: {}, tags: options.anki.tags};
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let fields = [];
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if (mode === 'kanji') {
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fields = options.anki.kanji.fields;
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note.deckName = options.anki.kanji.deck;
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note.modelName = options.anki.kanji.model;
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} else {
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fields = options.anki.terms.fields;
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note.deckName = options.anki.terms.deck;
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note.modelName = options.anki.terms.model;
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if (definition.audio) {
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const audio = {
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url: definition.audio.url,
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filename: definition.audio.filename,
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skipHash: '7e2c2f954ef6051373ba916f000168dc',
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fields: []
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};
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for (const name in fields) {
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if (fields[name].includes('{audio}')) {
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audio.fields.push(name);
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}
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}
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if (audio.fields.length > 0) {
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note.audio = audio;
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}
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}
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}
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for (const name in fields) {
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note.fields[name] = await dictFieldFormat(fields[name], definition, mode, options, templates);
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}
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return note;
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}
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