AutomaticMove

A.C.A.S component

Este script no debería instalarse directamente. Es una biblioteca que utilizan otros scripts mediante la meta-directiva de inclusión // @require https://update.greasyfork.org/scripts/591079/1900970/AutomaticMove.js

Tendrás que instalar una extensión para tu navegador como Tampermonkey, Greasemonkey o Violentmonkey si quieres utilizar este script.

You will need to install an extension such as Tampermonkey or Violentmonkey to install this script.

Tendrás que instalar una extensión como Tampermonkey o Violentmonkey para instalar este script.

Necesitarás instalar una extensión como Tampermonkey o Userscripts para instalar este script.

Tendrás que instalar una extensión como Tampermonkey antes de poder instalar este script.

Necesitarás instalar una extensión para administrar scripts de usuario si quieres instalar este script.

(Ya tengo un administrador de scripts de usuario, déjame instalarlo)

Tendrás que instalar una extensión como Stylus antes de poder instalar este script.

Tendrás que instalar una extensión como Stylus antes de poder instalar este script.

Tendrás que instalar una extensión como Stylus antes de poder instalar este script.

Para poder instalar esto tendrás que instalar primero una extensión de estilos de usuario.

Para poder instalar esto tendrás que instalar primero una extensión de estilos de usuario.

Para poder instalar esto tendrás que instalar primero una extensión de estilos de usuario.

(Ya tengo un administrador de estilos de usuario, déjame instalarlo)

/* AutomaticMove.js
 - Version: 1.0
 - Author: Haka
 - Description: A.C.A.S component
 - GitHub: https://github.com/Psyyke/A.C.A.S/
*/

class AutomaticMove {
    static actives = [];

    static getUniqueID() {
        return ([1e7]+-1e3+4e3+-8e3+-1e11).replace(/[018]/g, c =>
            (c ^ crypto.getRandomValues(new Uint8Array(1))[0] & 15 >> c / 4).toString(16)
        )
    }

    constructor(config, callback) {
        if(!config) return;

        this.id = AutomaticMove.getUniqueID();

        AutomaticMove.actives.push({
            id: this.id,
            move: this
        });

        this.profile = config.profile;
        this.fenMoveArr = config.fenMoveArr;
        this.isLegit = config.isLegit;
        this.pieceAmount = config.pieceAmount;
        this.moveDomCoords = config.moveDomCoords;
        this.isPromotion = config.isPromotion;
        this.legitModeType = config.legitModeType || 'casual';
        this.debugModeActivated = config.debugModeActivated || false;
        this.getRandomOwnPieceDomCoord = config.getRandomOwnPieceDomCoord;
        this.lastPieceSize = config.lastPieceSize;
        this.lastMoveRequestTime = config.lastMoveRequestTime;
        this.domain = config.domain;
        this.boardMatrix = config.boardMatrix;
        this.callback = callback;

        this.active = true;
        this.isPromotingPawn = false;

        this.onFinished = function(...args) {
            AutomaticMove.actives = AutomaticMove.actives.filter(x => x.id !== this.id); // remove the move from the active automove list

            this.active = false;

            this.callback(...args);
        };

        if(this.isLegit) {
            const pieceRanges = [
                { minPieces: 30, maxPieces: Infinity }, // Opening (60+ pieces)
                { minPieces: 23, maxPieces: 29 },       // Early Middlegame (48 to 64 pieces)
                { minPieces: 16, maxPieces: 22 },       // Mid Middlegame (32 to 48 pieces)
                { minPieces: 10, maxPieces: 15 },       // Late Middlegame (16 to 32 pieces)
                { minPieces: 6, maxPieces: 9 },         // Endgame (8 to 16 pieces)
                { minPieces: 3, maxPieces: 5 },         // Very Endgame (2 to 8 pieces)
                { minPieces: 1, maxPieces: 2 },         // Extremely Few Pieces (1 piece)
            ];

            const timeRanges = {
                beginner: [
                    [2000, 4000],
                    [3000, 15000],
                    [5000, 25000],
                    [4000, 30000],
                    [3000, 15000],
                    [2000, 10000],
                    [1000, 4000],
                ],
                casual: [
                    [900, 3000],    // Opening
                    [1000, 15000],  // Early Middlegame
                    [3000, 20000],  // Mid Middlegame
                    [2000, 13000],  // Late Middlegame
                    [1500, 10000],  // Endgame
                    [1000, 9000],   // Very Endgame
                    [500, 3000],    // Extremely Few Pieces
                ],
                intermediate: [
                    [750, 2000],
                    [1000, 10000],
                    [2000, 15000],
                    [1500, 12000],
                    [1000, 8000],
                    [750, 7000],
                    [500, 2000],
                ],
                advanced: [
                    [500, 1500],
                    [1000, 8000],
                    [750, 8000],
                    [750, 12000],
                    [750, 5000],
                    [750, 3000],
                    [500, 1200],
                ],
                master: [
                    [333, 999],
                    [400, 2000],
                    [400, 3000],
                    [400, 2500],
                    [400, 2000],
                    [400, 1500],
                    [333, 750],
                ],
                professional: [
                    [333, 666],
                    [333, 666],
                    [333, 1000],
                    [333, 1500],
                    [333, 1000],
                    [333, 666],
                    [333, 666],
                ],
                god: [
                    [50, 333],
                    [50, 233],
                    [50, 300],
                    [50, 250],
                    [50, 200],
                    [50, 150],
                    [50, 100],
                ]
            };

            this.timeRanges = pieceRanges.map((range, index) => ({
                ...range,
                timeRange: timeRanges[this.legitModeType][index],
            }));

            this.shouldHesitate = this.isLegit && Math.random() < 0.15;
            this.shouldHesitateTwice = this.isLegit && Math.random() < 0.25;
            this.hesitationTypeOne = this.isLegit && Math.random() < 0.35;

            const legitTotalMoveTime = this.calculateMoveTime(this.pieceAmount);
            const elapsedMoveTime = (Date.now() - this.lastMoveRequestTime); // How long did it take for the engine to calculate the move
            const remainingTime = Math.max(legitTotalMoveTime - elapsedMoveTime, 500);

            const delays = this.generateDelaysForDesiredTime(remainingTime);

            for(const key of Object.keys(delays)) {
                this[key] = delays[key];
            }
        }

        this.start();
    }

    static stopAll() {
        for(const x of AutomaticMove.actives) {
            if(x.move.active) {
                x.move.stop();
            }
        }

        AutomaticMove.actives.length = 0;
    }

    generateDelaysForDesiredTime(desiredTotalTime) {
        // Fixed minimum values
        const PROMOTION_DELAY = this.getRandomIntegerBetween(1000, 1111); // just can't be done very fast for some reason at least on Chess.com

        if(desiredTotalTime > 6000) {
            const timelines = [
                { move: .4, to: .2, hesitation: .15, hesitationResolve: .15, secondHesitationResolve: .15 },
                { move: .1, to: .3, hesitation: .25, hesitationResolve: .15, secondHesitationResolve: .2 },
                { move: .2, to: .25, hesitation: .2, hesitationResolve: .2, secondHesitationResolve: .15 }
            ];

            const timeline = timelines[Math.floor(Math.random() * timelines.length)];

            return {
                promotionDelay: PROMOTION_DELAY,
                moveDelay: desiredTotalTime * timeline.move,
                toSquareSelectDelay: desiredTotalTime * timeline.to,
                hesitationDelay: desiredTotalTime * timeline.hesitation,
                hesitationResolveDelay: desiredTotalTime * timeline.hesitationResolve,
                secondHesitationResolveDelay: desiredTotalTime * timeline.secondHesitationResolve
            };
        }
        // There is time for one hesitation
        if(desiredTotalTime > 3000) {
            const timelines = [
                { move: .3, to: .2, hesitation: .25, hesitationResolve: .25 },
                { move: .1, to: .3, hesitation: .45, hesitationResolve: .15 },
                { move: .2, to: .25, hesitation: .2, hesitationResolve: .35 }
            ];

            const timeline = timelines[Math.floor(Math.random() * timelines.length)];

            return {
                promotionDelay: PROMOTION_DELAY,
                moveDelay: desiredTotalTime * timeline.move,
                toSquareSelectDelay: desiredTotalTime * timeline.to,
                hesitationDelay: desiredTotalTime * timeline.hesitation,
                hesitationResolveDelay: desiredTotalTime * timeline.hesitationResolve,
                secondHesitationResolveDelay: -1
            };
        }
        // There is not enough time to hesitate
        else {
            const timelines = [
                { move: .9, to: .1 },
                { move: .45, to: .55 },
                { move: .6, to: .4 },
                { move: .4, to: .6 },
                { move: .1, to: .9 }
            ];

            const timeline = timelines[Math.floor(Math.random() * timelines.length)];

            return {
                promotionDelay: PROMOTION_DELAY,
                moveDelay: desiredTotalTime * timeline.move,
                toSquareSelectDelay: desiredTotalTime * timeline.to,
                hesitationDelay: -1, hesitationResolveDelay: -1, secondHesitationResolveDelay: -1
            };
        }
    }

    calculateMoveTime(pieceCount) {
        for(let range of this.timeRanges) {
            if(pieceCount >= range.minPieces && pieceCount <= range.maxPieces) {
                return this.getRandomIntegerBetween(range.timeRange[0], range.timeRange[1]);
            }
        }

        return 500;
    }

    getRandomIntegerBetween(min, max) {
        return Math.floor(Math.random() * (max - min + 1)) + min;
    }

    getRandomIntegerNearAverage(min, max) {
        const mid = (min + max) / 2;
        const range = (max - min) / 2;

        let value = Math.floor(mid + (Math.random() - 0.5) * range * 1.5);

        return Math.max(min, Math.min(max, value));
    }

    delay(ms) {
        return this.active ? new Promise(resolve => setTimeout(resolve, ms)) : true;
    }

    async triggerPieceClick(input) {
        const parentExists = AutomaticMove.actives.find(x => x.move === this) ? true : false;

        if(!parentExists) {
            return;
        }

        let clientX, clientY;

        if(input instanceof Element) {
            const rect = input.getBoundingClientRect();
            clientX = rect.left + rect.width / 2;
            clientY = rect.top + rect.height / 2;
        } else if (typeof input === 'object') {
            clientX = input[0];
            clientY = input[1];
        } else {
            return;
        }

        const xDivider = Math.random() < 0.85 ? 4 : Math.random() < 0.15 ? 3 : 2;
        const yDivider = Math.random() < 0.65 ? 3 : Math.random() < 0.35 ? 2 : 4;

        const randomVariationX = (this.lastPieceSize?.width - 4) / xDivider;
        const randomVariationY = (this.lastPieceSize?.height - 4) / yDivider;

        const randomOffsetX = (Math.random() - 0.5) * 2 * randomVariationX;
        const randomOffsetY = (Math.pow(Math.random(), 0.5) - 0.5) * 2 * randomVariationY;

        const randomizedX = clientX + randomOffsetX;
        const randomizedY = clientY + randomOffsetY;

        const pointerEventOptions = {
            bubbles: true,
            cancelable: true,
            clientX: randomizedX,
            clientY: randomizedY,
        };

        const elementToTrigger = (input instanceof Element) ? input : document.elementFromPoint(clientX, clientY);

        if(elementToTrigger) {
            switch(this.domain) {
                case 'chess.com':
                    elementToTrigger.dispatchEvent(new PointerEvent('pointerdown', pointerEventOptions));

                    if(this.isLegit) await this.delay(this.getRandomIntegerNearAverage(35, 125));

                    elementToTrigger.dispatchEvent(new PointerEvent('pointerup', pointerEventOptions));

                    break;
                case 'lichess.org':
                    elementToTrigger.dispatchEvent(new MouseEvent('mousedown', pointerEventOptions));

                    if(this.isLegit) await this.delay(this.getRandomIntegerNearAverage(35, 125));

                    elementToTrigger.dispatchEvent(new MouseEvent('mouseup', pointerEventOptions));

                    break;
                case 'worldchess.com':
                    elementToTrigger.dispatchEvent(new MouseEvent('mousedown', pointerEventOptions));

                    if(this.isLegit) await this.delay(this.getRandomIntegerNearAverage(35, 125));

                    elementToTrigger.dispatchEvent(new MouseEvent('mouseup', pointerEventOptions));

                    break;
            }
        }

        if(this.debugModeActivated) {
            const dot = document.createElement('div');
                    dot.style.position = 'absolute';
                    dot.style.width = '7px';
                    dot.style.height = '7px';
                    dot.style.borderRadius = '50%';
                    dot.style.backgroundColor = 'lime';
                    dot.style.left = `${randomizedX - 2.5}px`;
                    dot.style.top = `${randomizedY - 2.5}px`;

            const container = document.createElement('div');
                    container.style.position = 'absolute';
                    container.style.width = `${Math.round(randomVariationX * 2)}px`;
                    container.style.height = `${Math.round(randomVariationY * 2)}px`;
                    container.style.border = '2px dashed green';
                    container.style.backgroundColor = 'rgba(0, 0, 0, 0.3)';
                    container.style.left = `${clientX - randomVariationX}px`;
                    container.style.top = `${clientY - randomVariationY}px`;

            document.body.appendChild(container);
            document.body.appendChild(dot);

            setTimeout(() => {
                dot.remove();
                container.remove();
            }, 1000);
        }
    }

    click(domCoord) {
        if(this.active)
            this.triggerPieceClick(domCoord);
    }

    async hesitate() {
        const hesitationPieceDomCoord = this.getRandomOwnPieceDomCoord(this.fenMoveArr[0], this.boardMatrix);

        if(hesitationPieceDomCoord) {
            if(this.hesitationTypeOne) {
                this.click(this.moveDomCoords[0]);
                await this.delay(this.hesitationDelay);
            }

            this.click(hesitationPieceDomCoord);

            await this.delay(this.hesitationResolveDelay);

            if(this.shouldHesitateTwice && this.secondHesitationResolveDelay !== -1) {
                const secondHesitationPieceDomCoord = this.getRandomOwnPieceDomCoord(this.fenMoveArr[0], this.boardMatrix);
                this.click(secondHesitationPieceDomCoord);
                await this.delay(this.secondHesitationResolveDelay);
            }
        }

        this.finishMove(this.toSquareSelectDelay, this.promotionDelay);
    }


    async finishMove(delay01, delay02) {
        this.click(this.moveDomCoords[0]);

        await this.delay(delay01);

        this.click(this.moveDomCoords[1]);

        // Handle promotion click if necessary
        if(this.isPromotion) {
            this.isPromotingPawn = true;

            await this.delay(delay02);

            this.click(this.moveDomCoords[1]);

            this.isPromotingPawn = false;
        }

        this.onFinished(true);
    }

    async playLegit() {
        await this.delay(this.moveDelay);

        if(this.shouldHesitate && this.hesitationDelay !== -1)
            this.hesitate();
        else
            this.finishMove(this.toSquareSelectDelay, this.promotionDelay);
    }

    async start() {
        if(this.isLegit) {
            this.playLegit();
        } else {
            this.finishMove(5, 1111);
        }
    }

    async stop() {
        if(this.isPromotingPawn) {
            // Attempt to promote the pawn before closing
            this.click(this.moveDomCoords[1]);
        }

        this.onFinished(false);
    }
}