456 lines
11 KiB
TypeScript
456 lines
11 KiB
TypeScript
/*
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This file is part of TALER
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(C) 2016 GNUnet e.V.
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TALER is free software; you can redistribute it and/or modify it under the
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terms of the GNU General Public License as published by the Free Software
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Foundation; either version 3, or (at your option) any later version.
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TALER is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
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A PARTICULAR PURPOSE. See the GNU General Public License for more details.
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You should have received a copy of the GNU General Public License along with
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TALER; see the file COPYING. If not, see <http://www.gnu.org/licenses/>
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*/
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/**
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* Database query abstractions.
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* @module Query
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* @author Florian Dold
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*/
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"use strict";
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export class Store<T> {
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name: string;
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validator?: (v: T) => T;
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constructor(name: string, validator?: (v: T) => T) {
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this.name = name;
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this.validator = validator;
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}
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}
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export class Index<S extends IDBValidKey,T> {
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indexName: string;
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storeName: string;
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constructor(s: Store<T>, indexName: string) {
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this.storeName = s.name;
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this.indexName = indexName;
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}
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}
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/**
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* Stream that can be filtered, reduced or joined
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* with indices.
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*/
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export interface QueryStream<T> {
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indexJoin<S,I extends IDBValidKey>(index: Index<I,S>,
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keyFn: (obj: T) => I): QueryStream<[T, S]>;
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filter(f: (x: any) => boolean): QueryStream<T>;
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reduce<S>(f: (v: T, acc: S) => S, start?: S): Promise<S>;
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flatMap(f: (x: T) => T[]): QueryStream<T>;
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toArray(): Promise<T[]>;
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}
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/**
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* Get an unresolved promise together with its extracted resolve / reject
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* function.
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*/
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function openPromise<T>() {
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let resolve: ((value?: T | PromiseLike<T>) => void) | null = null;
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let reject: ((reason?: any) => void) | null = null;
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const promise = new Promise<T>((res, rej) => {
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resolve = res;
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reject = rej;
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});
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if (!(resolve && reject)) {
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// Never happens, unless JS implementation is broken
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throw Error();
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}
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return {resolve, reject, promise};
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}
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abstract class QueryStreamBase<T> implements QueryStream<T> {
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abstract subscribe(f: (isDone: boolean,
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value: any,
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tx: IDBTransaction) => void): void;
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root: QueryRoot;
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constructor(root: QueryRoot) {
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this.root = root;
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}
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flatMap(f: (x: T) => T[]): QueryStream<T> {
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return new QueryStreamFlatMap(this, f);
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}
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indexJoin<S,I extends IDBValidKey>(index: Index<I,S>,
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keyFn: (obj: T) => I): QueryStream<[T, S]> {
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this.root.addStoreAccess(index.storeName, false);
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return new QueryStreamIndexJoin(this, index.storeName, index.indexName, keyFn);
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}
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filter(f: (x: any) => boolean): QueryStream<T> {
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return new QueryStreamFilter(this, f);
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}
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toArray(): Promise<T[]> {
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let {resolve, promise} = openPromise();
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let values: T[] = [];
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this.subscribe((isDone, value) => {
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if (isDone) {
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resolve(values);
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return;
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}
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values.push(value);
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});
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return Promise.resolve()
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.then(() => this.root.finish())
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.then(() => promise);
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}
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reduce<A>(f: (x: any, acc?: A) => A, init?: A): Promise<any> {
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let {resolve, promise} = openPromise();
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let acc = init;
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this.subscribe((isDone, value) => {
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if (isDone) {
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resolve(acc);
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return;
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}
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acc = f(value, acc);
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});
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return Promise.resolve()
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.then(() => this.root.finish())
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.then(() => promise);
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}
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}
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type FilterFn = (e: any) => boolean;
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type SubscribeFn = (done: boolean, value: any, tx: IDBTransaction) => void;
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interface FlatMapFn<T> {
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(v: T): T[];
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}
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class QueryStreamFilter<T> extends QueryStreamBase<T> {
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s: QueryStreamBase<T>;
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filterFn: FilterFn;
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constructor(s: QueryStreamBase<T>, filterFn: FilterFn) {
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super(s.root);
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this.s = s;
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this.filterFn = filterFn;
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}
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subscribe(f: SubscribeFn) {
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this.s.subscribe((isDone, value, tx) => {
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if (isDone) {
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f(true, undefined, tx);
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return;
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}
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if (this.filterFn(value)) {
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f(false, value, tx);
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}
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});
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}
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}
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class QueryStreamFlatMap<T> extends QueryStreamBase<T> {
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s: QueryStreamBase<T>;
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flatMapFn: (v: T) => T[];
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constructor(s: QueryStreamBase<T>, flatMapFn: (v: T) => T[]) {
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super(s.root);
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this.s = s;
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this.flatMapFn = flatMapFn;
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}
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subscribe(f: SubscribeFn) {
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this.s.subscribe((isDone, value, tx) => {
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if (isDone) {
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f(true, undefined, tx);
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return;
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}
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let values = this.flatMapFn(value);
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for (let v in values) {
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f(false, value, tx)
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}
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});
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}
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}
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class QueryStreamIndexJoin<T, S> extends QueryStreamBase<[T, S]> {
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s: QueryStreamBase<T>;
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storeName: string;
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key: any;
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indexName: string;
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constructor(s: QueryStreamBase<T>, storeName: string, indexName: string,
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key: any) {
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super(s.root);
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this.s = s;
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this.storeName = storeName;
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this.key = key;
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this.indexName = indexName;
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}
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subscribe(f: SubscribeFn) {
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this.s.subscribe((isDone, value, tx) => {
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if (isDone) {
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f(true, undefined, tx);
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return;
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}
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console.log("joining on", this.key(value));
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let s = tx.objectStore(this.storeName).index(this.indexName);
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let req = s.openCursor(IDBKeyRange.only(this.key(value)));
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req.onsuccess = () => {
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let cursor = req.result;
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if (cursor) {
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f(false, [value, cursor.value], tx);
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cursor.continue();
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} else {
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f(true, undefined, tx);
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}
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}
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});
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}
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}
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class IterQueryStream<T> extends QueryStreamBase<T> {
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private storeName: string;
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private options: any;
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private subscribers: SubscribeFn[];
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constructor(qr: QueryRoot, storeName: string, options: any) {
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super(qr);
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this.options = options;
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this.storeName = storeName;
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this.subscribers = [];
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let doIt = (tx: IDBTransaction) => {
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const {indexName = void 0, only = void 0} = this.options;
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let s: any;
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if (indexName !== void 0) {
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s = tx.objectStore(this.storeName)
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.index(this.options.indexName);
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} else {
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s = tx.objectStore(this.storeName);
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}
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let kr: IDBKeyRange | undefined = undefined;
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if (only !== undefined) {
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kr = IDBKeyRange.only(this.options.only);
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}
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let req = s.openCursor(kr);
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req.onsuccess = () => {
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let cursor: IDBCursorWithValue = req.result;
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if (cursor) {
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for (let f of this.subscribers) {
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f(false, cursor.value, tx);
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}
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cursor.continue();
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} else {
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for (let f of this.subscribers) {
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f(true, undefined, tx);
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}
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}
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}
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};
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this.root.addWork(doIt);
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}
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subscribe(f: SubscribeFn) {
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this.subscribers.push(f);
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}
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}
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export class QueryRoot {
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private work: ((t: IDBTransaction) => void)[] = [];
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private db: IDBDatabase;
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private stores = new Set();
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private kickoffPromise: Promise<void>;
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/**
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* Some operations is a write operation,
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* and we need to do a "readwrite" transaction/
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*/
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private hasWrite: boolean;
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constructor(db: IDBDatabase) {
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this.db = db;
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}
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iter<T>(store: Store<T>): QueryStream<T> {
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this.stores.add(store.name);
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return new IterQueryStream(this, store.name, {});
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}
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iterIndex<S extends IDBValidKey,T>(index: Index<S,T>, only?: S): QueryStream<T> {
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this.stores.add(index.storeName);
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return new IterQueryStream(this, index.storeName, {
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only,
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indexName: index.indexName
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});
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}
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/**
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* Put an object into the given object store.
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* Overrides if an existing object with the same key exists
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* in the store.
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*/
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put<T>(store: Store<T>, val: T): QueryRoot {
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let doPut = (tx: IDBTransaction) => {
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tx.objectStore(store.name).put(val);
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};
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this.addWork(doPut, store.name, true);
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return this;
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}
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/**
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* Add all object from an iterable to the given object store.
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* Fails if the object's key is already present
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* in the object store.
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*/
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putAll<T>(store: Store<T>, iterable: T[]): QueryRoot {
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const doPutAll = (tx: IDBTransaction) => {
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for (let obj of iterable) {
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tx.objectStore(store.name).put(obj);
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}
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};
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this.addWork(doPutAll, store.name, true);
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return this;
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}
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/**
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* Add an object to the given object store.
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* Fails if the object's key is already present
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* in the object store.
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*/
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add<T>(store: Store<T>, val: T): QueryRoot {
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const doAdd = (tx: IDBTransaction) => {
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tx.objectStore(store.name).add(val);
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};
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this.addWork(doAdd, store.name, true);
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return this;
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}
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/**
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* Get one object from a store by its key.
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*/
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get<T>(store: Store<T>, key: any): Promise<T|undefined> {
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if (key === void 0) {
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throw Error("key must not be undefined");
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}
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const {resolve, promise} = openPromise();
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const doGet = (tx: IDBTransaction) => {
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const req = tx.objectStore(store.name).get(key);
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req.onsuccess = () => {
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resolve(req.result);
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};
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};
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this.addWork(doGet, store.name, false);
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return Promise.resolve()
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.then(() => this.finish())
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.then(() => promise);
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}
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/**
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* Get one object from a store by its key.
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*/
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getIndexed<I extends IDBValidKey,T>(index: Index<I,T>, key: I): Promise<T|undefined> {
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if (key === void 0) {
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throw Error("key must not be undefined");
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}
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const {resolve, promise} = openPromise();
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const doGetIndexed = (tx: IDBTransaction) => {
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const req = tx.objectStore(index.storeName).index(index.indexName).get(key);
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req.onsuccess = () => {
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resolve(req.result);
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};
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};
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this.addWork(doGetIndexed, index.storeName, false);
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return Promise.resolve()
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.then(() => this.finish())
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.then(() => promise);
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}
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/**
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* Finish the query, and start the query in the first place if necessary.
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*/
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finish(): Promise<void> {
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if (this.kickoffPromise) {
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return this.kickoffPromise;
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}
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this.kickoffPromise = new Promise<void>((resolve, reject) => {
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if (this.work.length == 0) {
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resolve();
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return;
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}
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const mode = this.hasWrite ? "readwrite" : "readonly";
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const tx = this.db.transaction(Array.from(this.stores), mode);
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tx.oncomplete = () => {
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resolve();
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};
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for (let w of this.work) {
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w(tx);
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}
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});
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return this.kickoffPromise;
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}
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/**
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* Delete an object by from the given object store.
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*/
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delete(storeName: string, key: any): QueryRoot {
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const doDelete = (tx: IDBTransaction) => {
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tx.objectStore(storeName).delete(key);
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};
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this.addWork(doDelete, storeName, true);
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return this;
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}
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/**
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* Low-level function to add a task to the internal work queue.
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*/
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addWork(workFn: (t: IDBTransaction) => void,
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storeName?: string,
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isWrite?: boolean) {
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this.work.push(workFn);
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if (storeName) {
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this.addStoreAccess(storeName, isWrite);
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}
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}
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addStoreAccess(storeName: string, isWrite?: boolean) {
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if (storeName) {
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this.stores.add(storeName);
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}
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if (isWrite) {
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this.hasWrite = true;
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}
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}
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}
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