316 lines
9.1 KiB
TypeScript
316 lines
9.1 KiB
TypeScript
import {
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ElementId,
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Node,
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Edge,
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Elements,
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Transform,
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XYPosition,
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Rect,
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Box,
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Connection,
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FlowExportObject,
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NodeExtent,
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Dimensions,
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FlowStore,
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} from '~/types'
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export const isInputDOMNode = (e: KeyboardEvent | MouseEvent): boolean => {
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const target = e.target as HTMLElement
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return ['INPUT', 'SELECT', 'TEXTAREA', 'BUTTON'].includes(target.nodeName) || target.hasAttribute('contentEditable')
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}
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export const getDimensions = (node: HTMLElement): Dimensions => ({
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width: node.offsetWidth,
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height: node.offsetHeight,
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})
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export const clamp = (val: number, min = 0, max = 1): number => Math.min(Math.max(val, min), max)
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export const clampPosition = (position: XYPosition, extent: NodeExtent): XYPosition => ({
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x: clamp(position.x, extent[0][0], extent[1][0]),
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y: clamp(position.y, extent[0][1], extent[1][1]),
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})
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export const getHostForElement = (element: HTMLElement): Document => {
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const doc = element.getRootNode() as Document
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if ('getElementFromPoint' in doc) return doc
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else return window.document
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}
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export const isEdge = (element: Node | Connection | Edge): element is Edge =>
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'id' in element && 'source' in element && 'target' in element
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export const isNode = (element: Node | Connection | Edge): element is Node =>
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'id' in element && !('source' in element) && !('target' in element)
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export const getOutgoers = (node: Node, elements: Elements): Node[] => {
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if (!isNode(node)) {
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return []
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}
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const outgoerIds = elements.filter((e) => isEdge(e) && e.source === node.id).map((e) => (e as Edge).target)
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return elements.filter((e) => outgoerIds.includes(e.id)) as Node[]
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}
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export const getIncomers = (node: Node, elements: Elements): Node[] => {
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if (!isNode(node)) {
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return []
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}
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const incomersIds = elements.filter((e) => isEdge(e) && e.target === node.id).map((e) => (e as Edge).source)
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return elements.filter((e) => incomersIds.includes(e.id)) as Node[]
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}
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export const removeElements = (elementsToRemove: Elements, elements: Elements): Elements => {
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const nodeIdsToRemove = elementsToRemove.map((n) => n.id)
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return elements.filter((element) => {
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const edgeElement = element as Edge
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return !(
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nodeIdsToRemove.includes(element.id) ||
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nodeIdsToRemove.includes(edgeElement.target) ||
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nodeIdsToRemove.includes(edgeElement.source)
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)
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})
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}
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const getEdgeId = ({ source, sourceHandle, target, targetHandle }: Connection): ElementId =>
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`vueflow__edge-${source}${sourceHandle}-${target}${targetHandle}`
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const connectionExists = (edge: Edge, elements: Elements) => {
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return elements.some(
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(el) =>
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isEdge(el) &&
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el.source === edge.source &&
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el.target === edge.target &&
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(el.sourceHandle === edge.sourceHandle || (!el.sourceHandle && !edge.sourceHandle)) &&
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(el.targetHandle === edge.targetHandle || (!el.targetHandle && !edge.targetHandle)),
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)
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}
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export const addEdge = (edgeParams: Edge | Connection, elements: Elements): Elements => {
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if (!edgeParams.source || !edgeParams.target) {
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console.log("Can't create edge. An edge needs a source and a target.")
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return elements
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}
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let edge: Edge
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if (isEdge(edgeParams)) {
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edge = { ...edgeParams }
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} else {
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edge = {
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...edgeParams,
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id: getEdgeId(edgeParams),
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} as Edge
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}
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if (connectionExists(edge, elements)) {
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return elements
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}
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return elements.concat(edge)
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}
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export const updateEdge = (oldEdge: Edge, newConnection: Connection, elements: Elements): Elements => {
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if (!newConnection.source || !newConnection.target) {
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console.warn("Can't create new edge. An edge needs a source and a target.")
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return elements
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}
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const foundEdge = elements.find((e) => isEdge(e) && e.id === oldEdge.id) as Edge
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if (!foundEdge) {
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console.warn(`The old edge with id=${oldEdge.id} does not exist.`)
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return elements
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}
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// Remove old edge and create the new edge with parameters of old edge.
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const edge = {
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...oldEdge,
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id: getEdgeId(newConnection),
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source: newConnection.source,
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target: newConnection.target,
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sourceHandle: newConnection.sourceHandle,
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targetHandle: newConnection.targetHandle,
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} as Edge
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return elements.filter((e) => e.id !== oldEdge.id).concat(edge)
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}
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export const pointToRendererPoint = (
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{ x, y }: XYPosition,
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[tx, ty, tScale]: Transform,
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snapToGrid: boolean,
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[snapX, snapY]: [number, number],
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): XYPosition => {
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const position: XYPosition = {
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x: (x - tx) / tScale,
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y: (y - ty) / tScale,
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}
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if (snapToGrid) {
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return {
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x: snapX * Math.round(position.x / snapX),
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y: snapY * Math.round(position.y / snapY),
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}
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}
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return position
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}
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export const onLoadProject =
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(currentStore: FlowStore) =>
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(position: XYPosition): XYPosition =>
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pointToRendererPoint(position, currentStore.transform, currentStore.snapToGrid, currentStore.snapGrid)
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export const parseNode = (node: Node, nodeExtent: NodeExtent): Node => ({
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...node,
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id: node.id.toString(),
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type: node.type || 'default',
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__rf: {
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position: clampPosition(node.position, nodeExtent),
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width: undefined,
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height: undefined,
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handleBounds: {},
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isDragging: false,
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},
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})
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export const parseEdge = (edge: Edge): Edge => ({
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...edge,
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source: edge.source.toString(),
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target: edge.target.toString(),
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sourceHandle: edge.sourceHandle ? edge.sourceHandle.toString() : null,
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targetHandle: edge.targetHandle ? edge.targetHandle.toString() : null,
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id: edge.id.toString(),
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type: edge.type || 'default',
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})
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const getBoundsOfBoxes = (box1: Box, box2: Box): Box => ({
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x: Math.min(box1.x, box2.x),
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y: Math.min(box1.y, box2.y),
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x2: Math.max(box1.x2, box2.x2),
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y2: Math.max(box1.y2, box2.y2),
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})
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export const rectToBox = ({ x, y, width, height }: Rect): Box => ({
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x,
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y,
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x2: x + width,
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y2: y + height,
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})
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export const boxToRect = ({ x, y, x2, y2 }: Box): Rect => ({
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x,
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y,
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width: x2 - x,
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height: y2 - y,
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})
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export const getBoundsofRects = (rect1: Rect, rect2: Rect): Rect =>
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boxToRect(getBoundsOfBoxes(rectToBox(rect1), rectToBox(rect2)))
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export const getRectOfNodes = (nodes: Node[]): Rect => {
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const box = nodes.reduce(
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(currBox, { __rf: { position, width, height } = {} }) =>
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getBoundsOfBoxes(
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currBox,
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rectToBox({
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...position,
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width,
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height,
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} as any),
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),
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{ x: Infinity, y: Infinity, x2: -Infinity, y2: -Infinity },
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)
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return boxToRect(box)
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}
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export const graphPosToZoomedPos = ({ x, y }: XYPosition, [tx, ty, tScale]: Transform): XYPosition => ({
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x: x * tScale + tx,
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y: y * tScale + ty,
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})
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export const getNodesInside = (nodes: Node[], rect: Rect, [tx, ty, tScale]: Transform = [0, 0, 1], partially = false): Node[] => {
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const rBox = rectToBox({
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x: (rect.x - tx) / tScale,
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y: (rect.y - ty) / tScale,
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width: rect.width / tScale,
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height: rect.height / tScale,
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})
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return nodes.filter((node) => {
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if (!node.__rf) return false
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const { position = { x: 0, y: 0 }, width = 0, height = 0, isDragging = false } = node.__rf
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const nBox = rectToBox({ ...position, width, height } as any)
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const xOverlap = Math.max(0, Math.min(rBox.x2, nBox.x2) - Math.max(rBox.x, nBox.x))
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const yOverlap = Math.max(0, Math.min(rBox.y2, nBox.y2) - Math.max(rBox.y, nBox.y))
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const overlappingArea = Math.ceil(xOverlap * yOverlap)
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if (width === null || height === null || isDragging) {
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// nodes are initialized with width and height = null
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return true
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}
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if (partially) {
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return overlappingArea > 0
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}
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const area = width * height
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return overlappingArea >= area
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})
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}
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export const getConnectedEdges = (nodes: Node[], edges: Edge[]): Edge[] => {
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const nodeIds = nodes.map((node) => node.id)
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return edges.filter((edge) => nodeIds.includes(edge.source) || nodeIds.includes(edge.target))
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}
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const parseElements = (nodes: Node[], edges: Edge[]): Elements => [
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...nodes.map((node) => {
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const n = { ...node }
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if (n.__rf?.position) n.position = n.__rf?.position
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return n
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}),
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...edges.map((e) => ({ ...e })),
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]
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export const onLoadGetElements = (currentStore: FlowStore) => (): Elements =>
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parseElements(currentStore.nodes || [], currentStore.edges || [])
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export const onLoadToObject = (currentStore: FlowStore) => (): FlowExportObject => {
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// we have to stringify/parse so objects containing refs (like nodes and edges) can potentially be saved in a storage
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return JSON.parse(
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JSON.stringify({
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elements: parseElements(currentStore.nodes || [], currentStore.edges || []),
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position: [currentStore.transform[0], currentStore.transform[1]],
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zoom: currentStore.transform[2],
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}),
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)
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}
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export const getTransformForBounds = (
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bounds: Rect,
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width: number,
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height: number,
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minZoom: number,
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maxZoom: number,
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padding = 0.1,
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): Transform => {
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const xZoom = width / (bounds.width * (1 + padding))
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const yZoom = height / (bounds.height * (1 + padding))
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const zoom = Math.min(xZoom, yZoom)
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const clampedZoom = clamp(zoom, minZoom, maxZoom)
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const boundsCenterX = bounds.x + bounds.width / 2
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const boundsCenterY = bounds.y + bounds.height / 2
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const x = width / 2 - boundsCenterX * clampedZoom
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const y = height / 2 - boundsCenterY * clampedZoom
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return [x, y, clampedZoom]
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}
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