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220 lines
6 KiB
TypeScript
220 lines
6 KiB
TypeScript
import { assertNotNull, assertNotUndefined } from '../utils/assert';
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import { AstMatcher, ParseError, TokenList } from './types';
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type TokenName = string;
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type Token = [TokenName, RegExp];
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const tokenList: Token[] = [
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['fuzz', /^~(?:\d+(\.\d+)?|\.\d+)/],
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['boost', /^\^[-+]?\d+(\.\d+)?/],
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['quoted_lit', /^\s*"(?:[^"]|\\")+"/],
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['lparen', /^\s*\(\s*/],
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['rparen', /^\s*\)\s*/],
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['and_op', /^\s*(?:&&|AND)\s+/],
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['and_op', /^\s*,\s*/],
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['or_op', /^\s*(?:\|\||OR)\s+/],
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['not_op', /^\s*NOT(?:\s+|(?=\())/],
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['not_op', /^\s*[!-]\s*/],
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['space', /^\s+/],
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['word', /^(?:\\[\s,()^~]|[^\s,()^~])+/],
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['word', /^(?:\\[\s,()]|[^\s,()])+/],
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];
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export type ParseTerm = (term: string, fuzz: number, boost: number) => AstMatcher;
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export type Range = [number, number];
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export type TermContext = [Range, string];
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export interface LexResult {
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tokenList: TokenList;
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termContexts: TermContext[];
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error: ParseError | null;
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}
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export function generateLexResult(searchStr: string, parseTerm: ParseTerm): LexResult {
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const opQueue: string[] = [];
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const groupNegate: boolean[] = [];
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let searchTerm: string | null = null;
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let boostFuzzStr = '';
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let localSearchStr: string = searchStr;
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let negate = false;
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let boost = 1;
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let fuzz = 0;
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let lparenCtr = 0;
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let termIndex = 0;
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let index = 0;
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const ret: LexResult = {
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tokenList: [],
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termContexts: [],
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error: null,
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};
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const beginTerm = (token: string) => {
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searchTerm = token;
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termIndex = index;
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};
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const endTerm = () => {
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if (searchTerm !== null) {
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// Push to stack.
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ret.tokenList.push(parseTerm(searchTerm, fuzz, boost));
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ret.termContexts.push([[termIndex, termIndex + searchTerm.length], searchTerm]);
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// Reset term and options data.
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boost = 1;
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fuzz = 0;
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searchTerm = null;
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boostFuzzStr = '';
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lparenCtr = 0;
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}
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if (negate) {
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ret.tokenList.push('not_op');
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negate = false;
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}
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};
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while (localSearchStr.length > 0) {
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for (const [tokenName, tokenRe] of tokenList) {
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const match = tokenRe.exec(localSearchStr);
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if (!match) {
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continue;
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}
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const token = match[0];
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const tokenIsBinaryOp = ['and_op', 'or_op'].indexOf(tokenName) !== -1;
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const tokenIsGroupStart = tokenName === 'rparen' && lparenCtr === 0;
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if (searchTerm !== null && (tokenIsBinaryOp || tokenIsGroupStart)) {
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endTerm();
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}
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switch (tokenName) {
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case 'and_op':
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while (opQueue[0] === 'and_op') {
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ret.tokenList.push(assertNotUndefined(opQueue.shift()));
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}
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opQueue.unshift('and_op');
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break;
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case 'or_op':
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while (opQueue[0] === 'and_op' || opQueue[0] === 'or_op') {
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ret.tokenList.push(assertNotUndefined(opQueue.shift()));
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}
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opQueue.unshift('or_op');
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break;
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case 'not_op':
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if (searchTerm) {
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// We're already inside a search term, so it does not apply, obv.
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searchTerm += token;
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} else {
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negate = !negate;
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}
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break;
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case 'lparen':
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if (searchTerm) {
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// If we are inside the search term, do not error out just yet;
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// instead, consider it as part of the search term, as a user convenience.
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searchTerm += token;
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lparenCtr += 1;
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} else {
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opQueue.unshift('lparen');
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groupNegate.push(negate);
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negate = false;
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}
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break;
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case 'rparen':
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if (lparenCtr > 0) {
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searchTerm = assertNotNull(searchTerm) + token;
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lparenCtr -= 1;
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} else {
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while (opQueue.length > 0) {
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const op = assertNotUndefined(opQueue.shift());
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if (op === 'lparen') {
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break;
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}
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ret.tokenList.push(op);
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}
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if (groupNegate.length > 0 && groupNegate.pop()) {
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ret.tokenList.push('not_op');
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}
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}
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break;
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case 'fuzz':
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if (searchTerm) {
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// For this and boost operations, we store the current match so far
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// to a temporary string in case this is actually inside the term.
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fuzz = parseFloat(token.substring(1));
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boostFuzzStr += token;
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} else {
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beginTerm(token);
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}
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break;
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case 'boost':
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if (searchTerm) {
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boost = parseFloat(token.substring(1));
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boostFuzzStr += token;
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} else {
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beginTerm(token);
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}
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break;
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case 'quoted_lit':
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if (searchTerm) {
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searchTerm += token;
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} else {
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beginTerm(token);
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}
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break;
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case 'word':
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if (searchTerm) {
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if (fuzz !== 0 || boost !== 1) {
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boost = 1;
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fuzz = 0;
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searchTerm += boostFuzzStr;
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boostFuzzStr = '';
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}
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searchTerm += token;
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} else {
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beginTerm(token);
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}
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break;
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default:
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// Append extra spaces within search terms.
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if (searchTerm) {
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searchTerm += token;
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}
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}
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// Truncate string and restart the token tests.
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localSearchStr = localSearchStr.substring(token.length);
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index += token.length;
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// Break since we have found a match.
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break;
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}
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}
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// Append final tokens to the stack.
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endTerm();
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if (opQueue.indexOf('rparen') !== -1 || opQueue.indexOf('lparen') !== -1) {
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ret.error = new ParseError('Mismatched parentheses.');
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}
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// Concatenate remaining operators to the token stack.
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ret.tokenList.push(...opQueue);
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return ret;
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}
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export function generateLexArray(searchStr: string, parseTerm: ParseTerm): TokenList {
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const ret = generateLexResult(searchStr, parseTerm);
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if (ret.error) {
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throw ret.error;
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}
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return ret.tokenList;
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}
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