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https://github.com/gristlabs/grist-core.git
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a9ff6b9a84
Summary: The previous implementation for collapsing sections involved disposing of a view instance (Grid or Chart component). This caused numerous bugs with linking sections as the implementation is located in the BaseView.js. Now the view instance is kept and attached to a dom in a hidden div, so it can respond and function as a normal rendered section. It is also passed from between collapsed and main layout, when sections are dragged or moved using section's menu commands (`collapse` and `add to main page`) It also implies that the ViewLayout must still be rendered when a section is maximized (as it is responsible for the view instance), so the dom, and some logic for rendering it, had to be changed. Test Plan: New and updated Reviewers: georgegevoian Reviewed By: georgegevoian Differential Revision: https://phab.getgrist.com/D3826
195 lines
5.9 KiB
XML
195 lines
5.9 KiB
XML
import { DisposableWithEvents } from 'app/common/DisposableWithEvents';
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import { Disposable, IDisposable, IDisposableOwner, Observable } from 'grainjs';
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/**
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* A simple abstraction for events composition. It is an object that can emit a single value of type T,
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* and holds the last value emitted. It can be used to compose events from other events.
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*
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* Simple observables can't be used for this purpose because they are not reentrant. We can't update
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* an observable from within a listener, because it won't trigger a new event.
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*
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* This class is basically a wrapper around Observable, that emits events when the value changes after it is
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* set.
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*
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* Example:
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* const signal = Signal.create(null, 0);
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* signal.listen(value => console.log(value));
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* const onlyEven = signal.filter(value => value % 2 === 0);
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* onlyEven.listen(value => console.log('even', value));
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*
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* const flag1 = Signal.create(null, false);
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* const flag2 = Signal.create(null, false);
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* const flagAnd = Signal.compute(null, on => on(flag1) && on(flag2));
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* // This will still emit multiple times with the same value repeated.
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* flagAnd.listen(value => console.log('Both are true', value));
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*
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* // This will emit only when both are true, and will ignore further changes while both are true.
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* const toggle = flagAnd.distinct();
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*
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* // Current value can be accessed via signal.state.get()
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* const emitter = Signal.from(null, 0);
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* // Emit values only when the toggle is true.
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* const emitterWhileAnd = emitter.filter(() => toggle.state.get());
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* // Equivalent to:
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* const emitterWhileAnd = Signal.compute(null, on => on(toggle) ? on(emitter) : null).distinct();
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*/
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export class Signal<T = any> implements IDisposable, IDisposableOwner {
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/**
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* Creates a new event with a default value. A convenience method for creating an event that supports
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* generic attribute.
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*/
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public static create<T>(owner: IDisposableOwner | null, value: T) {
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return new Signal(owner, value);
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}
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/**
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* Creates an event from a set of events. Holds last value emitted by any of the events.
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*/
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public static fromEvents<T = any>(
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owner: Disposable | null,
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emitter: any,
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first: string,
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...rest: string[]
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) {
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const signal = Signal.create(owner, null);
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for(const event of [first, ...rest]) {
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signal._emitter.listenTo(emitter, event, (value: any) => signal.emit(value));
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}
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return signal as Signal<T | null>;
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}
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/**
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* Helper methods that creates a signal that emits the result of a function that takes a function
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*/
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public static compute<T>(owner: Disposable | null, compute: ComputeFunction<T>) {
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const signal = Signal.create(owner, null as any);
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const on: any = (s: Signal) => {
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if (!signal._listeners.has(s)) {
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signal._listeners.add(s);
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signal._emitter.listenTo(s._emitter, 'signal', () => signal.emit(compute(on)));
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}
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return s.state.get();
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};
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signal.state.set(compute(on));
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return signal as Signal<T>;
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}
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/**
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* Last value emitted if any.
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*/
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public state: Observable<T>;
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/**
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* List of signals that we are listening to. Stored in a WeakSet to avoid memory leaks.
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*/
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private _listeners: WeakSet<Signal> = new WeakSet();
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/**
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* Flag that can be changed by stateless() function. It won't hold last value (but can't be used in compute function).
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*/
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private _emitter: DisposableWithEvents;
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private _beforeHandler: CustomEmitter<T>;
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constructor(owner: IDisposableOwner|null, initialValue: T) {
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this._emitter = DisposableWithEvents.create(owner);
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this.state = Observable.create(this, initialValue);
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}
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public dispose() {
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this._emitter.dispose();
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}
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public autoDispose(disposable: IDisposable) {
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this._emitter.autoDispose(disposable);
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}
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/**
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* Push all events from this signal to another signal.
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*/
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public pipe(signal: Signal<T>) {
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this.autoDispose(this.listen(value => signal.emit(value)));
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return this;
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}
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/**
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* Modify all values emitted by this signal.
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*/
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public map<Z>(selector: (value: T) => Z): Signal<Z> {
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const signal = Signal.create(this, selector(this.state.get()));
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this.listen(value => {
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signal.emit(selector(value));
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});
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return signal;
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}
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/**
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* Creates a new signal with the same state, but it will only
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* emit those values that pass the test implemented by the provided function.
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*/
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public filter(selector: (value: T) => boolean): Signal<T> {
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const signal = Signal.create(this, this.state.get());
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this.listen(value => {
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if (selector(value)) {
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signal.emit(value);
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}
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});
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return signal;
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}
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/**
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* Emit only the value that is different from the previous one.
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*/
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public distinct(): Signal<T> {
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let last = this.state.get();
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const signal = this.filter((value: any) => {
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if (value !== last) {
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last = value;
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return true;
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}
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return false;
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});
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signal.state.set(last);
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return signal;
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}
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/**
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* Emits true or false only when the value is changed from truthy to falsy or vice versa.
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*/
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public flag() {
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return this.map(Boolean).distinct();
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}
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/**
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* Listen to changes of the signal.
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*/
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public listen(handler: (value: T) => any) {
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const stateHandler = () => {
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handler(this.state.get());
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};
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this._emitter.on('signal', stateHandler);
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return {
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dispose: () => this._emitter.off('signal', stateHandler),
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};
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}
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public emit(value: T) {
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if (this._beforeHandler) {
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this._beforeHandler(value, (emitted: T) => {
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this.state.set(emitted);
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this._emitter.trigger('signal', emitted);
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});
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} else {
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this.state.set(value);
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this._emitter.trigger('signal', value);
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}
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}
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public before(handler: CustomEmitter<T>) {
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this._beforeHandler = handler;
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}
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}
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type ComputeFunction<T> = (on: <TS>(s: Signal<TS>) => TS) => T;
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type CustomEmitter<T> = (value: T, emit: (value: T) => void) => any;
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