4c35eba72d
Co-authored-by: Ryan Di <ryan.weihao.di@gmail.com> Co-authored-by: dwelle <luzar.david@gmail.com>
1362 lines
33 KiB
TypeScript
1362 lines
33 KiB
TypeScript
import {
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Bounds,
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getCommonBounds,
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getDraggedElementsBounds,
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getElementAbsoluteCoords,
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} from "./element/bounds";
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import { MaybeTransformHandleType } from "./element/transformHandles";
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import { isBoundToContainer, isFrameElement } from "./element/typeChecks";
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import {
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ExcalidrawElement,
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NonDeletedExcalidrawElement,
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} from "./element/types";
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import { getMaximumGroups } from "./groups";
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import { KEYS } from "./keys";
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import { rangeIntersection, rangesOverlap, rotatePoint } from "./math";
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import { getVisibleAndNonSelectedElements } from "./scene/selection";
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import { AppState, KeyboardModifiersObject, Point } from "./types";
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const SNAP_DISTANCE = 8;
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// do not comput more gaps per axis than this limit
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// TODO increase or remove once we optimize
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const VISIBLE_GAPS_LIMIT_PER_AXIS = 99999;
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// snap distance with zoom value taken into consideration
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export const getSnapDistance = (zoomValue: number) => {
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return SNAP_DISTANCE / zoomValue;
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};
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type Vector2D = {
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x: number;
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y: number;
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};
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type PointPair = [Point, Point];
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export type PointSnap = {
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type: "point";
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points: PointPair;
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offset: number;
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};
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export type Gap = {
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// start side ↓ length
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// ┌───────────┐◄───────────────►
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// │ │-----------------┌───────────┐
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// │ start │ ↑ │ │
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// │ element │ overlap │ end │
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// │ │ ↓ │ element │
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// └───────────┘-----------------│ │
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// └───────────┘
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// ↑ end side
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startBounds: Bounds;
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endBounds: Bounds;
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startSide: [Point, Point];
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endSide: [Point, Point];
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overlap: [number, number];
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length: number;
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};
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export type GapSnap = {
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type: "gap";
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direction:
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| "center_horizontal"
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| "center_vertical"
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| "side_left"
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| "side_right"
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| "side_top"
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| "side_bottom";
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gap: Gap;
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offset: number;
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};
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export type GapSnaps = GapSnap[];
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export type Snap = GapSnap | PointSnap;
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export type Snaps = Snap[];
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export type PointSnapLine = {
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type: "points";
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points: Point[];
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};
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export type PointerSnapLine = {
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type: "pointer";
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points: PointPair;
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direction: "horizontal" | "vertical";
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};
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export type GapSnapLine = {
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type: "gap";
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direction: "horizontal" | "vertical";
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points: PointPair;
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};
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export type SnapLine = PointSnapLine | GapSnapLine | PointerSnapLine;
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// -----------------------------------------------------------------------------
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export class SnapCache {
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private static referenceSnapPoints: Point[] | null = null;
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private static visibleGaps: {
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verticalGaps: Gap[];
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horizontalGaps: Gap[];
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} | null = null;
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public static setReferenceSnapPoints = (snapPoints: Point[] | null) => {
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SnapCache.referenceSnapPoints = snapPoints;
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};
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public static getReferenceSnapPoints = () => {
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return SnapCache.referenceSnapPoints;
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};
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public static setVisibleGaps = (
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gaps: {
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verticalGaps: Gap[];
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horizontalGaps: Gap[];
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} | null,
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) => {
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SnapCache.visibleGaps = gaps;
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};
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public static getVisibleGaps = () => {
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return SnapCache.visibleGaps;
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};
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public static destroy = () => {
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SnapCache.referenceSnapPoints = null;
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SnapCache.visibleGaps = null;
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};
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}
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// -----------------------------------------------------------------------------
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export const isSnappingEnabled = ({
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event,
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appState,
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selectedElements,
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}: {
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appState: AppState;
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event: KeyboardModifiersObject;
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selectedElements: NonDeletedExcalidrawElement[];
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}) => {
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if (event) {
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return (
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(appState.objectsSnapModeEnabled && !event[KEYS.CTRL_OR_CMD]) ||
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(!appState.objectsSnapModeEnabled &&
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event[KEYS.CTRL_OR_CMD] &&
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appState.gridSize === null)
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);
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}
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// do not suggest snaps for an arrow to give way to binding
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if (selectedElements.length === 1 && selectedElements[0].type === "arrow") {
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return false;
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}
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return appState.objectsSnapModeEnabled;
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};
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export const areRoughlyEqual = (a: number, b: number, precision = 0.01) => {
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return Math.abs(a - b) <= precision;
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};
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export const getElementsCorners = (
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elements: ExcalidrawElement[],
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{
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omitCenter,
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boundingBoxCorners,
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dragOffset,
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}: {
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omitCenter?: boolean;
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boundingBoxCorners?: boolean;
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dragOffset?: Vector2D;
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} = {
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omitCenter: false,
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boundingBoxCorners: false,
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},
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): Point[] => {
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let result: Point[] = [];
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if (elements.length === 1) {
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const element = elements[0];
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let [x1, y1, x2, y2, cx, cy] = getElementAbsoluteCoords(element);
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if (dragOffset) {
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x1 += dragOffset.x;
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x2 += dragOffset.x;
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cx += dragOffset.x;
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y1 += dragOffset.y;
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y2 += dragOffset.y;
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cy += dragOffset.y;
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}
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const halfWidth = (x2 - x1) / 2;
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const halfHeight = (y2 - y1) / 2;
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if (
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(element.type === "diamond" || element.type === "ellipse") &&
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!boundingBoxCorners
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) {
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const leftMid = rotatePoint(
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[x1, y1 + halfHeight],
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[cx, cy],
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element.angle,
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);
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const topMid = rotatePoint([x1 + halfWidth, y1], [cx, cy], element.angle);
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const rightMid = rotatePoint(
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[x2, y1 + halfHeight],
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[cx, cy],
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element.angle,
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);
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const bottomMid = rotatePoint(
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[x1 + halfWidth, y2],
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[cx, cy],
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element.angle,
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);
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const center: Point = [cx, cy];
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result = omitCenter
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? [leftMid, topMid, rightMid, bottomMid]
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: [leftMid, topMid, rightMid, bottomMid, center];
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} else {
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const topLeft = rotatePoint([x1, y1], [cx, cy], element.angle);
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const topRight = rotatePoint([x2, y1], [cx, cy], element.angle);
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const bottomLeft = rotatePoint([x1, y2], [cx, cy], element.angle);
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const bottomRight = rotatePoint([x2, y2], [cx, cy], element.angle);
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const center: Point = [cx, cy];
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result = omitCenter
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? [topLeft, topRight, bottomLeft, bottomRight]
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: [topLeft, topRight, bottomLeft, bottomRight, center];
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}
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} else if (elements.length > 1) {
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const [minX, minY, maxX, maxY] = getDraggedElementsBounds(
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elements,
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dragOffset ?? { x: 0, y: 0 },
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);
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const width = maxX - minX;
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const height = maxY - minY;
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const topLeft: Point = [minX, minY];
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const topRight: Point = [maxX, minY];
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const bottomLeft: Point = [minX, maxY];
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const bottomRight: Point = [maxX, maxY];
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const center: Point = [minX + width / 2, minY + height / 2];
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result = omitCenter
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? [topLeft, topRight, bottomLeft, bottomRight]
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: [topLeft, topRight, bottomLeft, bottomRight, center];
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}
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return result.map((point) => [round(point[0]), round(point[1])] as Point);
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};
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const getReferenceElements = (
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elements: readonly NonDeletedExcalidrawElement[],
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selectedElements: NonDeletedExcalidrawElement[],
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appState: AppState,
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) => {
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const selectedFrames = selectedElements
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.filter((element) => isFrameElement(element))
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.map((frame) => frame.id);
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return getVisibleAndNonSelectedElements(
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elements,
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selectedElements,
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appState,
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).filter(
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(element) => !(element.frameId && selectedFrames.includes(element.frameId)),
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);
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};
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export const getVisibleGaps = (
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elements: readonly NonDeletedExcalidrawElement[],
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selectedElements: ExcalidrawElement[],
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appState: AppState,
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) => {
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const referenceElements: ExcalidrawElement[] = getReferenceElements(
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elements,
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selectedElements,
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appState,
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);
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const referenceBounds = getMaximumGroups(referenceElements)
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.filter(
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(elementsGroup) =>
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!(elementsGroup.length === 1 && isBoundToContainer(elementsGroup[0])),
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)
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.map(
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(group) =>
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getCommonBounds(group).map((bound) =>
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round(bound),
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) as unknown as Bounds,
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);
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const horizontallySorted = referenceBounds.sort((a, b) => a[0] - b[0]);
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const horizontalGaps: Gap[] = [];
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let c = 0;
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horizontal: for (let i = 0; i < horizontallySorted.length; i++) {
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const startBounds = horizontallySorted[i];
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for (let j = i + 1; j < horizontallySorted.length; j++) {
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if (++c > VISIBLE_GAPS_LIMIT_PER_AXIS) {
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break horizontal;
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}
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const endBounds = horizontallySorted[j];
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const [, startMinY, startMaxX, startMaxY] = startBounds;
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const [endMinX, endMinY, , endMaxY] = endBounds;
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if (
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startMaxX < endMinX &&
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rangesOverlap([startMinY, startMaxY], [endMinY, endMaxY])
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) {
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horizontalGaps.push({
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startBounds,
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endBounds,
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startSide: [
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[startMaxX, startMinY],
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[startMaxX, startMaxY],
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],
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endSide: [
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[endMinX, endMinY],
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[endMinX, endMaxY],
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],
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length: endMinX - startMaxX,
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overlap: rangeIntersection(
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[startMinY, startMaxY],
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[endMinY, endMaxY],
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)!,
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});
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}
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}
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}
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const verticallySorted = referenceBounds.sort((a, b) => a[1] - b[1]);
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const verticalGaps: Gap[] = [];
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c = 0;
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vertical: for (let i = 0; i < verticallySorted.length; i++) {
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const startBounds = verticallySorted[i];
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for (let j = i + 1; j < verticallySorted.length; j++) {
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if (++c > VISIBLE_GAPS_LIMIT_PER_AXIS) {
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break vertical;
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}
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const endBounds = verticallySorted[j];
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const [startMinX, , startMaxX, startMaxY] = startBounds;
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const [endMinX, endMinY, endMaxX] = endBounds;
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if (
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startMaxY < endMinY &&
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rangesOverlap([startMinX, startMaxX], [endMinX, endMaxX])
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) {
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verticalGaps.push({
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startBounds,
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endBounds,
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startSide: [
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[startMinX, startMaxY],
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[startMaxX, startMaxY],
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],
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endSide: [
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[endMinX, endMinY],
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[endMaxX, endMinY],
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],
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length: endMinY - startMaxY,
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overlap: rangeIntersection(
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[startMinX, startMaxX],
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[endMinX, endMaxX],
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)!,
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});
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}
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}
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}
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return {
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horizontalGaps,
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verticalGaps,
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};
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};
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const getGapSnaps = (
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selectedElements: ExcalidrawElement[],
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dragOffset: Vector2D,
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appState: AppState,
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event: KeyboardModifiersObject,
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nearestSnapsX: Snaps,
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nearestSnapsY: Snaps,
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minOffset: Vector2D,
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) => {
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if (!isSnappingEnabled({ appState, event, selectedElements })) {
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return [];
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}
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if (selectedElements.length === 0) {
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return [];
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}
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const visibleGaps = SnapCache.getVisibleGaps();
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if (visibleGaps) {
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const { horizontalGaps, verticalGaps } = visibleGaps;
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const [minX, minY, maxX, maxY] = getDraggedElementsBounds(
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selectedElements,
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dragOffset,
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).map((bound) => round(bound));
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const centerX = (minX + maxX) / 2;
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const centerY = (minY + maxY) / 2;
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for (const gap of horizontalGaps) {
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if (!rangesOverlap([minY, maxY], gap.overlap)) {
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continue;
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}
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// center gap
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const gapMidX = gap.startSide[0][0] + gap.length / 2;
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const centerOffset = round(gapMidX - centerX);
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const gapIsLargerThanSelection = gap.length > maxX - minX;
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if (gapIsLargerThanSelection && Math.abs(centerOffset) <= minOffset.x) {
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if (Math.abs(centerOffset) < minOffset.x) {
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nearestSnapsX.length = 0;
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}
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minOffset.x = Math.abs(centerOffset);
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const snap: GapSnap = {
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type: "gap",
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direction: "center_horizontal",
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gap,
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offset: centerOffset,
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};
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nearestSnapsX.push(snap);
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continue;
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}
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// side gap, from the right
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const [, , endMaxX] = gap.endBounds;
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const distanceToEndElementX = minX - endMaxX;
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const sideOffsetRight = round(gap.length - distanceToEndElementX);
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if (Math.abs(sideOffsetRight) <= minOffset.x) {
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if (Math.abs(sideOffsetRight) < minOffset.x) {
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nearestSnapsX.length = 0;
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}
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minOffset.x = Math.abs(sideOffsetRight);
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const snap: GapSnap = {
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type: "gap",
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direction: "side_right",
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gap,
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offset: sideOffsetRight,
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};
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nearestSnapsX.push(snap);
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continue;
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}
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// side gap, from the left
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const [startMinX, , ,] = gap.startBounds;
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const distanceToStartElementX = startMinX - maxX;
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const sideOffsetLeft = round(distanceToStartElementX - gap.length);
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if (Math.abs(sideOffsetLeft) <= minOffset.x) {
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if (Math.abs(sideOffsetLeft) < minOffset.x) {
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nearestSnapsX.length = 0;
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}
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minOffset.x = Math.abs(sideOffsetLeft);
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const snap: GapSnap = {
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type: "gap",
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direction: "side_left",
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gap,
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offset: sideOffsetLeft,
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};
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nearestSnapsX.push(snap);
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continue;
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}
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}
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for (const gap of verticalGaps) {
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if (!rangesOverlap([minX, maxX], gap.overlap)) {
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continue;
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}
|
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// center gap
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const gapMidY = gap.startSide[0][1] + gap.length / 2;
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const centerOffset = round(gapMidY - centerY);
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const gapIsLargerThanSelection = gap.length > maxY - minY;
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if (gapIsLargerThanSelection && Math.abs(centerOffset) <= minOffset.y) {
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if (Math.abs(centerOffset) < minOffset.y) {
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nearestSnapsY.length = 0;
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}
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minOffset.y = Math.abs(centerOffset);
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const snap: GapSnap = {
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type: "gap",
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direction: "center_vertical",
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gap,
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offset: centerOffset,
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};
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nearestSnapsY.push(snap);
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continue;
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}
|
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|
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// side gap, from the top
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const [, startMinY, ,] = gap.startBounds;
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const distanceToStartElementY = startMinY - maxY;
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const sideOffsetTop = round(distanceToStartElementY - gap.length);
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if (Math.abs(sideOffsetTop) <= minOffset.y) {
|
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if (Math.abs(sideOffsetTop) < minOffset.y) {
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nearestSnapsY.length = 0;
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}
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minOffset.y = Math.abs(sideOffsetTop);
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|
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const snap: GapSnap = {
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type: "gap",
|
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direction: "side_top",
|
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gap,
|
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offset: sideOffsetTop,
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};
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nearestSnapsY.push(snap);
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continue;
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}
|
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|
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// side gap, from the bottom
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const [, , , endMaxY] = gap.endBounds;
|
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const distanceToEndElementY = round(minY - endMaxY);
|
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const sideOffsetBottom = gap.length - distanceToEndElementY;
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|
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if (Math.abs(sideOffsetBottom) <= minOffset.y) {
|
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if (Math.abs(sideOffsetBottom) < minOffset.y) {
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nearestSnapsY.length = 0;
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}
|
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minOffset.y = Math.abs(sideOffsetBottom);
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|
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const snap: GapSnap = {
|
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type: "gap",
|
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direction: "side_bottom",
|
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gap,
|
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offset: sideOffsetBottom,
|
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};
|
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nearestSnapsY.push(snap);
|
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continue;
|
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}
|
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}
|
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}
|
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};
|
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|
|
export const getReferenceSnapPoints = (
|
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elements: readonly NonDeletedExcalidrawElement[],
|
|
selectedElements: ExcalidrawElement[],
|
|
appState: AppState,
|
|
) => {
|
|
const referenceElements = getReferenceElements(
|
|
elements,
|
|
selectedElements,
|
|
appState,
|
|
);
|
|
|
|
return getMaximumGroups(referenceElements)
|
|
.filter(
|
|
(elementsGroup) =>
|
|
!(elementsGroup.length === 1 && isBoundToContainer(elementsGroup[0])),
|
|
)
|
|
.flatMap((elementGroup) => getElementsCorners(elementGroup));
|
|
};
|
|
|
|
const getPointSnaps = (
|
|
selectedElements: ExcalidrawElement[],
|
|
selectionSnapPoints: Point[],
|
|
appState: AppState,
|
|
event: KeyboardModifiersObject,
|
|
nearestSnapsX: Snaps,
|
|
nearestSnapsY: Snaps,
|
|
minOffset: Vector2D,
|
|
) => {
|
|
if (
|
|
!isSnappingEnabled({ appState, event, selectedElements }) ||
|
|
(selectedElements.length === 0 && selectionSnapPoints.length === 0)
|
|
) {
|
|
return [];
|
|
}
|
|
|
|
const referenceSnapPoints = SnapCache.getReferenceSnapPoints();
|
|
|
|
if (referenceSnapPoints) {
|
|
for (const thisSnapPoint of selectionSnapPoints) {
|
|
for (const otherSnapPoint of referenceSnapPoints) {
|
|
const offsetX = otherSnapPoint[0] - thisSnapPoint[0];
|
|
const offsetY = otherSnapPoint[1] - thisSnapPoint[1];
|
|
|
|
if (Math.abs(offsetX) <= minOffset.x) {
|
|
if (Math.abs(offsetX) < minOffset.x) {
|
|
nearestSnapsX.length = 0;
|
|
}
|
|
|
|
nearestSnapsX.push({
|
|
type: "point",
|
|
points: [thisSnapPoint, otherSnapPoint],
|
|
offset: offsetX,
|
|
});
|
|
|
|
minOffset.x = Math.abs(offsetX);
|
|
}
|
|
|
|
if (Math.abs(offsetY) <= minOffset.y) {
|
|
if (Math.abs(offsetY) < minOffset.y) {
|
|
nearestSnapsY.length = 0;
|
|
}
|
|
|
|
nearestSnapsY.push({
|
|
type: "point",
|
|
points: [thisSnapPoint, otherSnapPoint],
|
|
offset: offsetY,
|
|
});
|
|
|
|
minOffset.y = Math.abs(offsetY);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
};
|
|
|
|
export const snapDraggedElements = (
|
|
selectedElements: ExcalidrawElement[],
|
|
dragOffset: Vector2D,
|
|
appState: AppState,
|
|
event: KeyboardModifiersObject,
|
|
) => {
|
|
if (
|
|
!isSnappingEnabled({ appState, event, selectedElements }) ||
|
|
selectedElements.length === 0
|
|
) {
|
|
return {
|
|
snapOffset: {
|
|
x: 0,
|
|
y: 0,
|
|
},
|
|
snapLines: [],
|
|
};
|
|
}
|
|
|
|
dragOffset.x = round(dragOffset.x);
|
|
dragOffset.y = round(dragOffset.y);
|
|
const nearestSnapsX: Snaps = [];
|
|
const nearestSnapsY: Snaps = [];
|
|
const snapDistance = getSnapDistance(appState.zoom.value);
|
|
const minOffset = {
|
|
x: snapDistance,
|
|
y: snapDistance,
|
|
};
|
|
|
|
const selectionPoints = getElementsCorners(selectedElements, {
|
|
dragOffset,
|
|
});
|
|
|
|
// get the nearest horizontal and vertical point and gap snaps
|
|
getPointSnaps(
|
|
selectedElements,
|
|
selectionPoints,
|
|
appState,
|
|
event,
|
|
nearestSnapsX,
|
|
nearestSnapsY,
|
|
minOffset,
|
|
);
|
|
|
|
getGapSnaps(
|
|
selectedElements,
|
|
dragOffset,
|
|
appState,
|
|
event,
|
|
nearestSnapsX,
|
|
nearestSnapsY,
|
|
minOffset,
|
|
);
|
|
|
|
// using the nearest snaps to figure out how
|
|
// much the elements need to be offset to be snapped
|
|
// to some reference elements
|
|
const snapOffset = {
|
|
x: nearestSnapsX[0]?.offset ?? 0,
|
|
y: nearestSnapsY[0]?.offset ?? 0,
|
|
};
|
|
|
|
// once the elements are snapped
|
|
// and moved to the snapped position
|
|
// we want to use the element's snapped position
|
|
// to update nearest snaps so that we can create
|
|
// point and gap snap lines correctly without any shifting
|
|
|
|
minOffset.x = 0;
|
|
minOffset.y = 0;
|
|
nearestSnapsX.length = 0;
|
|
nearestSnapsY.length = 0;
|
|
const newDragOffset = {
|
|
x: round(dragOffset.x + snapOffset.x),
|
|
y: round(dragOffset.y + snapOffset.y),
|
|
};
|
|
|
|
getPointSnaps(
|
|
selectedElements,
|
|
getElementsCorners(selectedElements, {
|
|
dragOffset: newDragOffset,
|
|
}),
|
|
appState,
|
|
event,
|
|
nearestSnapsX,
|
|
nearestSnapsY,
|
|
minOffset,
|
|
);
|
|
|
|
getGapSnaps(
|
|
selectedElements,
|
|
newDragOffset,
|
|
appState,
|
|
event,
|
|
nearestSnapsX,
|
|
nearestSnapsY,
|
|
minOffset,
|
|
);
|
|
|
|
const pointSnapLines = createPointSnapLines(nearestSnapsX, nearestSnapsY);
|
|
|
|
const gapSnapLines = createGapSnapLines(
|
|
selectedElements,
|
|
newDragOffset,
|
|
[...nearestSnapsX, ...nearestSnapsY].filter(
|
|
(snap) => snap.type === "gap",
|
|
) as GapSnap[],
|
|
);
|
|
|
|
return {
|
|
snapOffset,
|
|
snapLines: [...pointSnapLines, ...gapSnapLines],
|
|
};
|
|
};
|
|
|
|
const round = (x: number) => {
|
|
const decimalPlaces = 6;
|
|
return Math.round(x * 10 ** decimalPlaces) / 10 ** decimalPlaces;
|
|
};
|
|
|
|
const dedupePoints = (points: Point[]): Point[] => {
|
|
const map = new Map<string, Point>();
|
|
|
|
for (const point of points) {
|
|
const key = point.join(",");
|
|
|
|
if (!map.has(key)) {
|
|
map.set(key, point);
|
|
}
|
|
}
|
|
|
|
return Array.from(map.values());
|
|
};
|
|
|
|
const createPointSnapLines = (
|
|
nearestSnapsX: Snaps,
|
|
nearestSnapsY: Snaps,
|
|
): PointSnapLine[] => {
|
|
const snapsX = {} as { [key: string]: Point[] };
|
|
const snapsY = {} as { [key: string]: Point[] };
|
|
|
|
if (nearestSnapsX.length > 0) {
|
|
for (const snap of nearestSnapsX) {
|
|
if (snap.type === "point") {
|
|
// key = thisPoint.x
|
|
const key = round(snap.points[0][0]);
|
|
if (!snapsX[key]) {
|
|
snapsX[key] = [];
|
|
}
|
|
snapsX[key].push(
|
|
...snap.points.map(
|
|
(point) => [round(point[0]), round(point[1])] as Point,
|
|
),
|
|
);
|
|
}
|
|
}
|
|
}
|
|
|
|
if (nearestSnapsY.length > 0) {
|
|
for (const snap of nearestSnapsY) {
|
|
if (snap.type === "point") {
|
|
// key = thisPoint.y
|
|
const key = round(snap.points[0][1]);
|
|
if (!snapsY[key]) {
|
|
snapsY[key] = [];
|
|
}
|
|
snapsY[key].push(
|
|
...snap.points.map(
|
|
(point) => [round(point[0]), round(point[1])] as Point,
|
|
),
|
|
);
|
|
}
|
|
}
|
|
}
|
|
|
|
return Object.entries(snapsX)
|
|
.map(([key, points]) => {
|
|
return {
|
|
type: "points",
|
|
points: dedupePoints(
|
|
points
|
|
.map((point) => {
|
|
return [Number(key), point[1]] as Point;
|
|
})
|
|
.sort((a, b) => a[1] - b[1]),
|
|
),
|
|
} as PointSnapLine;
|
|
})
|
|
.concat(
|
|
Object.entries(snapsY).map(([key, points]) => {
|
|
return {
|
|
type: "points",
|
|
points: dedupePoints(
|
|
points
|
|
.map((point) => {
|
|
return [point[0], Number(key)] as Point;
|
|
})
|
|
.sort((a, b) => a[0] - b[0]),
|
|
),
|
|
} as PointSnapLine;
|
|
}),
|
|
);
|
|
};
|
|
|
|
const dedupeGapSnapLines = (gapSnapLines: GapSnapLine[]) => {
|
|
const map = new Map<string, GapSnapLine>();
|
|
|
|
for (const gapSnapLine of gapSnapLines) {
|
|
const key = gapSnapLine.points
|
|
.flat()
|
|
.map((point) => [round(point)])
|
|
.join(",");
|
|
|
|
if (!map.has(key)) {
|
|
map.set(key, gapSnapLine);
|
|
}
|
|
}
|
|
|
|
return Array.from(map.values());
|
|
};
|
|
|
|
const createGapSnapLines = (
|
|
selectedElements: ExcalidrawElement[],
|
|
dragOffset: Vector2D,
|
|
gapSnaps: GapSnap[],
|
|
): GapSnapLine[] => {
|
|
const [minX, minY, maxX, maxY] = getDraggedElementsBounds(
|
|
selectedElements,
|
|
dragOffset,
|
|
);
|
|
|
|
const gapSnapLines: GapSnapLine[] = [];
|
|
|
|
for (const gapSnap of gapSnaps) {
|
|
const [startMinX, startMinY, startMaxX, startMaxY] =
|
|
gapSnap.gap.startBounds;
|
|
const [endMinX, endMinY, endMaxX, endMaxY] = gapSnap.gap.endBounds;
|
|
|
|
const verticalIntersection = rangeIntersection(
|
|
[minY, maxY],
|
|
gapSnap.gap.overlap,
|
|
);
|
|
|
|
const horizontalGapIntersection = rangeIntersection(
|
|
[minX, maxX],
|
|
gapSnap.gap.overlap,
|
|
);
|
|
|
|
switch (gapSnap.direction) {
|
|
case "center_horizontal": {
|
|
if (verticalIntersection) {
|
|
const gapLineY =
|
|
(verticalIntersection[0] + verticalIntersection[1]) / 2;
|
|
|
|
gapSnapLines.push(
|
|
{
|
|
type: "gap",
|
|
direction: "horizontal",
|
|
points: [
|
|
[gapSnap.gap.startSide[0][0], gapLineY],
|
|
[minX, gapLineY],
|
|
],
|
|
},
|
|
{
|
|
type: "gap",
|
|
direction: "horizontal",
|
|
points: [
|
|
[maxX, gapLineY],
|
|
[gapSnap.gap.endSide[0][0], gapLineY],
|
|
],
|
|
},
|
|
);
|
|
}
|
|
break;
|
|
}
|
|
case "center_vertical": {
|
|
if (horizontalGapIntersection) {
|
|
const gapLineX =
|
|
(horizontalGapIntersection[0] + horizontalGapIntersection[1]) / 2;
|
|
|
|
gapSnapLines.push(
|
|
{
|
|
type: "gap",
|
|
direction: "vertical",
|
|
points: [
|
|
[gapLineX, gapSnap.gap.startSide[0][1]],
|
|
[gapLineX, minY],
|
|
],
|
|
},
|
|
{
|
|
type: "gap",
|
|
direction: "vertical",
|
|
points: [
|
|
[gapLineX, maxY],
|
|
[gapLineX, gapSnap.gap.endSide[0][1]],
|
|
],
|
|
},
|
|
);
|
|
}
|
|
break;
|
|
}
|
|
case "side_right": {
|
|
if (verticalIntersection) {
|
|
const gapLineY =
|
|
(verticalIntersection[0] + verticalIntersection[1]) / 2;
|
|
|
|
gapSnapLines.push(
|
|
{
|
|
type: "gap",
|
|
direction: "horizontal",
|
|
points: [
|
|
[startMaxX, gapLineY],
|
|
[endMinX, gapLineY],
|
|
],
|
|
},
|
|
{
|
|
type: "gap",
|
|
direction: "horizontal",
|
|
points: [
|
|
[endMaxX, gapLineY],
|
|
[minX, gapLineY],
|
|
],
|
|
},
|
|
);
|
|
}
|
|
break;
|
|
}
|
|
case "side_left": {
|
|
if (verticalIntersection) {
|
|
const gapLineY =
|
|
(verticalIntersection[0] + verticalIntersection[1]) / 2;
|
|
|
|
gapSnapLines.push(
|
|
{
|
|
type: "gap",
|
|
direction: "horizontal",
|
|
points: [
|
|
[maxX, gapLineY],
|
|
[startMinX, gapLineY],
|
|
],
|
|
},
|
|
{
|
|
type: "gap",
|
|
direction: "horizontal",
|
|
points: [
|
|
[startMaxX, gapLineY],
|
|
[endMinX, gapLineY],
|
|
],
|
|
},
|
|
);
|
|
}
|
|
break;
|
|
}
|
|
case "side_top": {
|
|
if (horizontalGapIntersection) {
|
|
const gapLineX =
|
|
(horizontalGapIntersection[0] + horizontalGapIntersection[1]) / 2;
|
|
|
|
gapSnapLines.push(
|
|
{
|
|
type: "gap",
|
|
direction: "vertical",
|
|
points: [
|
|
[gapLineX, maxY],
|
|
[gapLineX, startMinY],
|
|
],
|
|
},
|
|
{
|
|
type: "gap",
|
|
direction: "vertical",
|
|
points: [
|
|
[gapLineX, startMaxY],
|
|
[gapLineX, endMinY],
|
|
],
|
|
},
|
|
);
|
|
}
|
|
break;
|
|
}
|
|
case "side_bottom": {
|
|
if (horizontalGapIntersection) {
|
|
const gapLineX =
|
|
(horizontalGapIntersection[0] + horizontalGapIntersection[1]) / 2;
|
|
|
|
gapSnapLines.push(
|
|
{
|
|
type: "gap",
|
|
direction: "vertical",
|
|
points: [
|
|
[gapLineX, startMaxY],
|
|
[gapLineX, endMinY],
|
|
],
|
|
},
|
|
{
|
|
type: "gap",
|
|
direction: "vertical",
|
|
points: [
|
|
[gapLineX, endMaxY],
|
|
[gapLineX, minY],
|
|
],
|
|
},
|
|
);
|
|
}
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
return dedupeGapSnapLines(
|
|
gapSnapLines.map((gapSnapLine) => {
|
|
return {
|
|
...gapSnapLine,
|
|
points: gapSnapLine.points.map(
|
|
(point) => [round(point[0]), round(point[1])] as Point,
|
|
) as PointPair,
|
|
};
|
|
}),
|
|
);
|
|
};
|
|
|
|
export const snapResizingElements = (
|
|
// use the latest elements to create snap lines
|
|
selectedElements: ExcalidrawElement[],
|
|
// while using the original elements to appy dragOffset to calculate snaps
|
|
selectedOriginalElements: ExcalidrawElement[],
|
|
appState: AppState,
|
|
event: KeyboardModifiersObject,
|
|
dragOffset: Vector2D,
|
|
transformHandle: MaybeTransformHandleType,
|
|
) => {
|
|
if (
|
|
!isSnappingEnabled({ event, selectedElements, appState }) ||
|
|
selectedElements.length === 0 ||
|
|
(selectedElements.length === 1 &&
|
|
!areRoughlyEqual(selectedElements[0].angle, 0))
|
|
) {
|
|
return {
|
|
snapOffset: { x: 0, y: 0 },
|
|
snapLines: [],
|
|
};
|
|
}
|
|
|
|
let [minX, minY, maxX, maxY] = getCommonBounds(selectedOriginalElements);
|
|
|
|
if (transformHandle) {
|
|
if (transformHandle.includes("e")) {
|
|
maxX += dragOffset.x;
|
|
} else if (transformHandle.includes("w")) {
|
|
minX += dragOffset.x;
|
|
}
|
|
|
|
if (transformHandle.includes("n")) {
|
|
minY += dragOffset.y;
|
|
} else if (transformHandle.includes("s")) {
|
|
maxY += dragOffset.y;
|
|
}
|
|
}
|
|
|
|
const selectionSnapPoints: Point[] = [];
|
|
|
|
if (transformHandle) {
|
|
switch (transformHandle) {
|
|
case "e": {
|
|
selectionSnapPoints.push([maxX, minY], [maxX, maxY]);
|
|
break;
|
|
}
|
|
case "w": {
|
|
selectionSnapPoints.push([minX, minY], [minX, maxY]);
|
|
break;
|
|
}
|
|
case "n": {
|
|
selectionSnapPoints.push([minX, minY], [maxX, minY]);
|
|
break;
|
|
}
|
|
case "s": {
|
|
selectionSnapPoints.push([minX, maxY], [maxX, maxY]);
|
|
break;
|
|
}
|
|
case "ne": {
|
|
selectionSnapPoints.push([maxX, minY]);
|
|
break;
|
|
}
|
|
case "nw": {
|
|
selectionSnapPoints.push([minX, minY]);
|
|
break;
|
|
}
|
|
case "se": {
|
|
selectionSnapPoints.push([maxX, maxY]);
|
|
break;
|
|
}
|
|
case "sw": {
|
|
selectionSnapPoints.push([minX, maxY]);
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
|
|
const snapDistance = getSnapDistance(appState.zoom.value);
|
|
|
|
const minOffset = {
|
|
x: snapDistance,
|
|
y: snapDistance,
|
|
};
|
|
|
|
const nearestSnapsX: Snaps = [];
|
|
const nearestSnapsY: Snaps = [];
|
|
|
|
getPointSnaps(
|
|
selectedOriginalElements,
|
|
selectionSnapPoints,
|
|
appState,
|
|
event,
|
|
nearestSnapsX,
|
|
nearestSnapsY,
|
|
minOffset,
|
|
);
|
|
|
|
const snapOffset = {
|
|
x: nearestSnapsX[0]?.offset ?? 0,
|
|
y: nearestSnapsY[0]?.offset ?? 0,
|
|
};
|
|
|
|
// again, once snap offset is calculated
|
|
// reset to recompute for creating snap lines to be rendered
|
|
minOffset.x = 0;
|
|
minOffset.y = 0;
|
|
nearestSnapsX.length = 0;
|
|
nearestSnapsY.length = 0;
|
|
|
|
const [x1, y1, x2, y2] = getCommonBounds(selectedElements).map((bound) =>
|
|
round(bound),
|
|
);
|
|
|
|
const corners: Point[] = [
|
|
[x1, y1],
|
|
[x1, y2],
|
|
[x2, y1],
|
|
[x2, y2],
|
|
];
|
|
|
|
getPointSnaps(
|
|
selectedElements,
|
|
corners,
|
|
appState,
|
|
event,
|
|
nearestSnapsX,
|
|
nearestSnapsY,
|
|
minOffset,
|
|
);
|
|
|
|
const pointSnapLines = createPointSnapLines(nearestSnapsX, nearestSnapsY);
|
|
|
|
return {
|
|
snapOffset,
|
|
snapLines: pointSnapLines,
|
|
};
|
|
};
|
|
|
|
export const snapNewElement = (
|
|
draggingElement: ExcalidrawElement,
|
|
appState: AppState,
|
|
event: KeyboardModifiersObject,
|
|
origin: Vector2D,
|
|
dragOffset: Vector2D,
|
|
) => {
|
|
if (
|
|
!isSnappingEnabled({ event, selectedElements: [draggingElement], appState })
|
|
) {
|
|
return {
|
|
snapOffset: { x: 0, y: 0 },
|
|
snapLines: [],
|
|
};
|
|
}
|
|
|
|
const selectionSnapPoints: Point[] = [
|
|
[origin.x + dragOffset.x, origin.y + dragOffset.y],
|
|
];
|
|
|
|
const snapDistance = getSnapDistance(appState.zoom.value);
|
|
|
|
const minOffset = {
|
|
x: snapDistance,
|
|
y: snapDistance,
|
|
};
|
|
|
|
const nearestSnapsX: Snaps = [];
|
|
const nearestSnapsY: Snaps = [];
|
|
|
|
getPointSnaps(
|
|
[draggingElement],
|
|
selectionSnapPoints,
|
|
appState,
|
|
event,
|
|
nearestSnapsX,
|
|
nearestSnapsY,
|
|
minOffset,
|
|
);
|
|
|
|
const snapOffset = {
|
|
x: nearestSnapsX[0]?.offset ?? 0,
|
|
y: nearestSnapsY[0]?.offset ?? 0,
|
|
};
|
|
|
|
minOffset.x = 0;
|
|
minOffset.y = 0;
|
|
nearestSnapsX.length = 0;
|
|
nearestSnapsY.length = 0;
|
|
|
|
const corners = getElementsCorners([draggingElement], {
|
|
boundingBoxCorners: true,
|
|
omitCenter: true,
|
|
});
|
|
|
|
getPointSnaps(
|
|
[draggingElement],
|
|
corners,
|
|
appState,
|
|
event,
|
|
nearestSnapsX,
|
|
nearestSnapsY,
|
|
minOffset,
|
|
);
|
|
|
|
const pointSnapLines = createPointSnapLines(nearestSnapsX, nearestSnapsY);
|
|
|
|
return {
|
|
snapOffset,
|
|
snapLines: pointSnapLines,
|
|
};
|
|
};
|
|
|
|
export const getSnapLinesAtPointer = (
|
|
elements: readonly ExcalidrawElement[],
|
|
appState: AppState,
|
|
pointer: Vector2D,
|
|
event: KeyboardModifiersObject,
|
|
) => {
|
|
if (!isSnappingEnabled({ event, selectedElements: [], appState })) {
|
|
return {
|
|
originOffset: { x: 0, y: 0 },
|
|
snapLines: [],
|
|
};
|
|
}
|
|
|
|
const referenceElements = getVisibleAndNonSelectedElements(
|
|
elements,
|
|
[],
|
|
appState,
|
|
);
|
|
|
|
const snapDistance = getSnapDistance(appState.zoom.value);
|
|
|
|
const minOffset = {
|
|
x: snapDistance,
|
|
y: snapDistance,
|
|
};
|
|
|
|
const horizontalSnapLines: PointerSnapLine[] = [];
|
|
const verticalSnapLines: PointerSnapLine[] = [];
|
|
|
|
for (const referenceElement of referenceElements) {
|
|
const corners = getElementsCorners([referenceElement]);
|
|
|
|
for (const corner of corners) {
|
|
const offsetX = corner[0] - pointer.x;
|
|
|
|
if (Math.abs(offsetX) <= Math.abs(minOffset.x)) {
|
|
if (Math.abs(offsetX) < Math.abs(minOffset.x)) {
|
|
verticalSnapLines.length = 0;
|
|
}
|
|
|
|
verticalSnapLines.push({
|
|
type: "pointer",
|
|
points: [corner, [corner[0], pointer.y]],
|
|
direction: "vertical",
|
|
});
|
|
|
|
minOffset.x = offsetX;
|
|
}
|
|
|
|
const offsetY = corner[1] - pointer.y;
|
|
|
|
if (Math.abs(offsetY) <= Math.abs(minOffset.y)) {
|
|
if (Math.abs(offsetY) < Math.abs(minOffset.y)) {
|
|
horizontalSnapLines.length = 0;
|
|
}
|
|
|
|
horizontalSnapLines.push({
|
|
type: "pointer",
|
|
points: [corner, [pointer.x, corner[1]]],
|
|
direction: "horizontal",
|
|
});
|
|
|
|
minOffset.y = offsetY;
|
|
}
|
|
}
|
|
}
|
|
|
|
return {
|
|
originOffset: {
|
|
x:
|
|
verticalSnapLines.length > 0
|
|
? verticalSnapLines[0].points[0][0] - pointer.x
|
|
: 0,
|
|
y:
|
|
horizontalSnapLines.length > 0
|
|
? horizontalSnapLines[0].points[0][1] - pointer.y
|
|
: 0,
|
|
},
|
|
snapLines: [...verticalSnapLines, ...horizontalSnapLines],
|
|
};
|
|
};
|
|
|
|
export const isActiveToolNonLinearSnappable = (
|
|
activeToolType: AppState["activeTool"]["type"],
|
|
) => {
|
|
return (
|
|
activeToolType === "rectangle" ||
|
|
activeToolType === "ellipse" ||
|
|
activeToolType === "diamond" ||
|
|
activeToolType === "frame" ||
|
|
activeToolType === "image"
|
|
);
|
|
};
|