607 lines
20 KiB
JavaScript
607 lines
20 KiB
JavaScript
import { p as parser, f as flowDb } from "./flowDb-fa1288b0.js";
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import * as graphlib from "dagre-d3-es/src/graphlib/index.js";
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import { select, curveLinear, selectAll } from "d3";
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import { k as getStylesFromArray, m as evaluate, c as getConfig, e as common, l as log, n as interpolateToCurve, o as setupGraphViewbox } from "./mermaid-0d192ec3.js";
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import { render } from "dagre-d3-es";
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import { applyStyle } from "dagre-d3-es/src/dagre-js/util.js";
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import { addHtmlLabel } from "dagre-d3-es/src/dagre-js/label/add-html-label.js";
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import { intersectPolygon } from "dagre-d3-es/src/dagre-js/intersect/intersect-polygon.js";
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import { intersectRect } from "dagre-d3-es/src/dagre-js/intersect/intersect-rect.js";
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import { f as flowRendererV2, a as flowStyles } from "./styles-0671a096.js";
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import "ts-dedent";
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import "dayjs";
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import "@braintree/sanitize-url";
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import "dompurify";
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import "khroma";
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import "lodash-es/memoize.js";
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import "lodash-es/merge.js";
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import "stylis";
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import "lodash-es/isEmpty.js";
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import "./index-f9462f3f.js";
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import "dagre-d3-es/src/dagre/index.js";
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import "dagre-d3-es/src/graphlib/json.js";
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import "./edges-f15a7e05.js";
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import "./createText-80c3befb.js";
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import "mdast-util-from-markdown";
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function question(parent, bbox, node) {
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const w = bbox.width;
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const h = bbox.height;
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const s = (w + h) * 0.9;
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const points = [
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{ x: s / 2, y: 0 },
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{ x: s, y: -s / 2 },
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{ x: s / 2, y: -s },
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{ x: 0, y: -s / 2 }
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];
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const shapeSvg = insertPolygonShape(parent, s, s, points);
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node.intersect = function(point) {
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return intersectPolygon(node, points, point);
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};
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return shapeSvg;
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}
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function hexagon(parent, bbox, node) {
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const f = 4;
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const h = bbox.height;
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const m = h / f;
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const w = bbox.width + 2 * m;
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const points = [
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{ x: m, y: 0 },
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{ x: w - m, y: 0 },
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{ x: w, y: -h / 2 },
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{ x: w - m, y: -h },
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{ x: m, y: -h },
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{ x: 0, y: -h / 2 }
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];
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const shapeSvg = insertPolygonShape(parent, w, h, points);
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node.intersect = function(point) {
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return intersectPolygon(node, points, point);
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};
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return shapeSvg;
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}
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function rect_left_inv_arrow(parent, bbox, node) {
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const w = bbox.width;
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const h = bbox.height;
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const points = [
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{ x: -h / 2, y: 0 },
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{ x: w, y: 0 },
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{ x: w, y: -h },
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{ x: -h / 2, y: -h },
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{ x: 0, y: -h / 2 }
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];
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const shapeSvg = insertPolygonShape(parent, w, h, points);
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node.intersect = function(point) {
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return intersectPolygon(node, points, point);
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};
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return shapeSvg;
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}
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function lean_right(parent, bbox, node) {
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const w = bbox.width;
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const h = bbox.height;
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const points = [
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{ x: -2 * h / 6, y: 0 },
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{ x: w - h / 6, y: 0 },
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{ x: w + 2 * h / 6, y: -h },
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{ x: h / 6, y: -h }
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];
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const shapeSvg = insertPolygonShape(parent, w, h, points);
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node.intersect = function(point) {
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return intersectPolygon(node, points, point);
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};
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return shapeSvg;
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}
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function lean_left(parent, bbox, node) {
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const w = bbox.width;
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const h = bbox.height;
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const points = [
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{ x: 2 * h / 6, y: 0 },
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{ x: w + h / 6, y: 0 },
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{ x: w - 2 * h / 6, y: -h },
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{ x: -h / 6, y: -h }
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];
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const shapeSvg = insertPolygonShape(parent, w, h, points);
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node.intersect = function(point) {
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return intersectPolygon(node, points, point);
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};
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return shapeSvg;
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}
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function trapezoid(parent, bbox, node) {
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const w = bbox.width;
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const h = bbox.height;
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const points = [
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{ x: -2 * h / 6, y: 0 },
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{ x: w + 2 * h / 6, y: 0 },
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{ x: w - h / 6, y: -h },
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{ x: h / 6, y: -h }
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];
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const shapeSvg = insertPolygonShape(parent, w, h, points);
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node.intersect = function(point) {
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return intersectPolygon(node, points, point);
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};
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return shapeSvg;
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}
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function inv_trapezoid(parent, bbox, node) {
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const w = bbox.width;
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const h = bbox.height;
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const points = [
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{ x: h / 6, y: 0 },
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{ x: w - h / 6, y: 0 },
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{ x: w + 2 * h / 6, y: -h },
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{ x: -2 * h / 6, y: -h }
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];
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const shapeSvg = insertPolygonShape(parent, w, h, points);
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node.intersect = function(point) {
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return intersectPolygon(node, points, point);
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};
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return shapeSvg;
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}
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function rect_right_inv_arrow(parent, bbox, node) {
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const w = bbox.width;
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const h = bbox.height;
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const points = [
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{ x: 0, y: 0 },
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{ x: w + h / 2, y: 0 },
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{ x: w, y: -h / 2 },
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{ x: w + h / 2, y: -h },
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{ x: 0, y: -h }
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];
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const shapeSvg = insertPolygonShape(parent, w, h, points);
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node.intersect = function(point) {
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return intersectPolygon(node, points, point);
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};
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return shapeSvg;
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}
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function stadium(parent, bbox, node) {
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const h = bbox.height;
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const w = bbox.width + h / 4;
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const shapeSvg = parent.insert("rect", ":first-child").attr("rx", h / 2).attr("ry", h / 2).attr("x", -w / 2).attr("y", -h / 2).attr("width", w).attr("height", h);
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node.intersect = function(point) {
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return intersectRect(node, point);
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};
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return shapeSvg;
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}
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function subroutine(parent, bbox, node) {
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const w = bbox.width;
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const h = bbox.height;
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const points = [
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{ x: 0, y: 0 },
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{ x: w, y: 0 },
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{ x: w, y: -h },
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{ x: 0, y: -h },
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{ x: 0, y: 0 },
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{ x: -8, y: 0 },
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{ x: w + 8, y: 0 },
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{ x: w + 8, y: -h },
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{ x: -8, y: -h },
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{ x: -8, y: 0 }
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];
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const shapeSvg = insertPolygonShape(parent, w, h, points);
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node.intersect = function(point) {
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return intersectPolygon(node, points, point);
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};
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return shapeSvg;
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}
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function cylinder(parent, bbox, node) {
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const w = bbox.width;
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const rx = w / 2;
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const ry = rx / (2.5 + w / 50);
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const h = bbox.height + ry;
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const shape = "M 0," + ry + " a " + rx + "," + ry + " 0,0,0 " + w + " 0 a " + rx + "," + ry + " 0,0,0 " + -w + " 0 l 0," + h + " a " + rx + "," + ry + " 0,0,0 " + w + " 0 l 0," + -h;
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const shapeSvg = parent.attr("label-offset-y", ry).insert("path", ":first-child").attr("d", shape).attr("transform", "translate(" + -w / 2 + "," + -(h / 2 + ry) + ")");
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node.intersect = function(point) {
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const pos = intersectRect(node, point);
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const x = pos.x - node.x;
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if (rx != 0 && (Math.abs(x) < node.width / 2 || Math.abs(x) == node.width / 2 && Math.abs(pos.y - node.y) > node.height / 2 - ry)) {
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let y = ry * ry * (1 - x * x / (rx * rx));
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if (y != 0) {
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y = Math.sqrt(y);
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}
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y = ry - y;
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if (point.y - node.y > 0) {
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y = -y;
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}
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pos.y += y;
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}
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return pos;
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};
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return shapeSvg;
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}
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function addToRender(render2) {
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render2.shapes().question = question;
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render2.shapes().hexagon = hexagon;
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render2.shapes().stadium = stadium;
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render2.shapes().subroutine = subroutine;
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render2.shapes().cylinder = cylinder;
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render2.shapes().rect_left_inv_arrow = rect_left_inv_arrow;
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render2.shapes().lean_right = lean_right;
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render2.shapes().lean_left = lean_left;
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render2.shapes().trapezoid = trapezoid;
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render2.shapes().inv_trapezoid = inv_trapezoid;
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render2.shapes().rect_right_inv_arrow = rect_right_inv_arrow;
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}
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function addToRenderV2(addShape) {
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addShape({ question });
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addShape({ hexagon });
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addShape({ stadium });
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addShape({ subroutine });
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addShape({ cylinder });
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addShape({ rect_left_inv_arrow });
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addShape({ lean_right });
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addShape({ lean_left });
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addShape({ trapezoid });
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addShape({ inv_trapezoid });
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addShape({ rect_right_inv_arrow });
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}
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function insertPolygonShape(parent, w, h, points) {
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return parent.insert("polygon", ":first-child").attr(
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"points",
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points.map(function(d) {
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return d.x + "," + d.y;
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}).join(" ")
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).attr("transform", "translate(" + -w / 2 + "," + h / 2 + ")");
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}
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const flowChartShapes = {
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addToRender,
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addToRenderV2
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};
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const conf = {};
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const setConf = function(cnf) {
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const keys = Object.keys(cnf);
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for (const key of keys) {
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conf[key] = cnf[key];
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}
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};
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const addVertices = function(vert, g, svgId, root, _doc, diagObj) {
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const svg = !root ? select(`[id="${svgId}"]`) : root.select(`[id="${svgId}"]`);
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const doc = !_doc ? document : _doc;
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const keys = Object.keys(vert);
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keys.forEach(function(id) {
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const vertex = vert[id];
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let classStr = "default";
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if (vertex.classes.length > 0) {
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classStr = vertex.classes.join(" ");
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}
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const styles = getStylesFromArray(vertex.styles);
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let vertexText = vertex.text !== void 0 ? vertex.text : vertex.id;
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let vertexNode;
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if (evaluate(getConfig().flowchart.htmlLabels)) {
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const node = {
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label: vertexText.replace(
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/fa[blrs]?:fa-[\w-]+/g,
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(s) => `<i class='${s.replace(":", " ")}'></i>`
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)
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};
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vertexNode = addHtmlLabel(svg, node).node();
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vertexNode.parentNode.removeChild(vertexNode);
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} else {
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const svgLabel = doc.createElementNS("http://www.w3.org/2000/svg", "text");
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svgLabel.setAttribute("style", styles.labelStyle.replace("color:", "fill:"));
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const rows = vertexText.split(common.lineBreakRegex);
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for (const row of rows) {
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const tspan = doc.createElementNS("http://www.w3.org/2000/svg", "tspan");
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tspan.setAttributeNS("http://www.w3.org/XML/1998/namespace", "xml:space", "preserve");
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tspan.setAttribute("dy", "1em");
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tspan.setAttribute("x", "1");
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tspan.textContent = row;
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svgLabel.appendChild(tspan);
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}
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vertexNode = svgLabel;
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}
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let radious = 0;
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let _shape = "";
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switch (vertex.type) {
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case "round":
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radious = 5;
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_shape = "rect";
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break;
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case "square":
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_shape = "rect";
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break;
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case "diamond":
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_shape = "question";
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break;
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case "hexagon":
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_shape = "hexagon";
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break;
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case "odd":
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_shape = "rect_left_inv_arrow";
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break;
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case "lean_right":
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_shape = "lean_right";
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break;
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case "lean_left":
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_shape = "lean_left";
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break;
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case "trapezoid":
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_shape = "trapezoid";
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break;
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case "inv_trapezoid":
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_shape = "inv_trapezoid";
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break;
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case "odd_right":
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_shape = "rect_left_inv_arrow";
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break;
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case "circle":
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_shape = "circle";
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break;
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case "ellipse":
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_shape = "ellipse";
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break;
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case "stadium":
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_shape = "stadium";
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break;
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case "subroutine":
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_shape = "subroutine";
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break;
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case "cylinder":
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_shape = "cylinder";
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break;
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case "group":
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_shape = "rect";
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break;
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default:
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_shape = "rect";
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}
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log.warn("Adding node", vertex.id, vertex.domId);
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g.setNode(diagObj.db.lookUpDomId(vertex.id), {
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labelType: "svg",
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labelStyle: styles.labelStyle,
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shape: _shape,
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label: vertexNode,
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rx: radious,
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ry: radious,
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class: classStr,
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style: styles.style,
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id: diagObj.db.lookUpDomId(vertex.id)
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});
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});
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};
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const addEdges = function(edges, g, diagObj) {
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let cnt = 0;
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let defaultStyle;
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let defaultLabelStyle;
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if (edges.defaultStyle !== void 0) {
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const defaultStyles = getStylesFromArray(edges.defaultStyle);
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defaultStyle = defaultStyles.style;
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defaultLabelStyle = defaultStyles.labelStyle;
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}
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edges.forEach(function(edge) {
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cnt++;
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const linkId = "L-" + edge.start + "-" + edge.end;
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const linkNameStart = "LS-" + edge.start;
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const linkNameEnd = "LE-" + edge.end;
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const edgeData = {};
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if (edge.type === "arrow_open") {
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edgeData.arrowhead = "none";
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} else {
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edgeData.arrowhead = "normal";
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}
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let style = "";
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let labelStyle = "";
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if (edge.style !== void 0) {
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const styles = getStylesFromArray(edge.style);
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style = styles.style;
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labelStyle = styles.labelStyle;
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} else {
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switch (edge.stroke) {
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case "normal":
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style = "fill:none";
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if (defaultStyle !== void 0) {
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style = defaultStyle;
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}
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if (defaultLabelStyle !== void 0) {
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labelStyle = defaultLabelStyle;
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}
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break;
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case "dotted":
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style = "fill:none;stroke-width:2px;stroke-dasharray:3;";
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break;
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case "thick":
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style = " stroke-width: 3.5px;fill:none";
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break;
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}
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}
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edgeData.style = style;
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edgeData.labelStyle = labelStyle;
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if (edge.interpolate !== void 0) {
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edgeData.curve = interpolateToCurve(edge.interpolate, curveLinear);
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} else if (edges.defaultInterpolate !== void 0) {
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edgeData.curve = interpolateToCurve(edges.defaultInterpolate, curveLinear);
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} else {
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edgeData.curve = interpolateToCurve(conf.curve, curveLinear);
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}
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if (edge.text === void 0) {
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if (edge.style !== void 0) {
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edgeData.arrowheadStyle = "fill: #333";
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}
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} else {
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edgeData.arrowheadStyle = "fill: #333";
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edgeData.labelpos = "c";
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if (evaluate(getConfig().flowchart.htmlLabels)) {
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edgeData.labelType = "html";
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edgeData.label = `<span id="L-${linkId}" class="edgeLabel L-${linkNameStart}' L-${linkNameEnd}" style="${edgeData.labelStyle}">${edge.text.replace(
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/fa[blrs]?:fa-[\w-]+/g,
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(s) => `<i class='${s.replace(":", " ")}'></i>`
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)}</span>`;
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} else {
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edgeData.labelType = "text";
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edgeData.label = edge.text.replace(common.lineBreakRegex, "\n");
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if (edge.style === void 0) {
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edgeData.style = edgeData.style || "stroke: #333; stroke-width: 1.5px;fill:none";
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}
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edgeData.labelStyle = edgeData.labelStyle.replace("color:", "fill:");
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}
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}
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edgeData.id = linkId;
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edgeData.class = linkNameStart + " " + linkNameEnd;
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edgeData.minlen = edge.length || 1;
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g.setEdge(diagObj.db.lookUpDomId(edge.start), diagObj.db.lookUpDomId(edge.end), edgeData, cnt);
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});
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};
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const getClasses = function(text, diagObj) {
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log.info("Extracting classes");
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return diagObj.db.getClasses();
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};
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const draw = function(text, id, _version, diagObj) {
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log.info("Drawing flowchart");
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const { securityLevel, flowchart: conf2 } = getConfig();
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let sandboxElement;
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if (securityLevel === "sandbox") {
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sandboxElement = select("#i" + id);
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}
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const root = securityLevel === "sandbox" ? select(sandboxElement.nodes()[0].contentDocument.body) : select("body");
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const doc = securityLevel === "sandbox" ? sandboxElement.nodes()[0].contentDocument : document;
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let dir = diagObj.db.getDirection();
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if (dir === void 0) {
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dir = "TD";
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}
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const nodeSpacing = conf2.nodeSpacing || 50;
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const rankSpacing = conf2.rankSpacing || 50;
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const g = new graphlib.Graph({
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multigraph: true,
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compound: true
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}).setGraph({
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rankdir: dir,
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nodesep: nodeSpacing,
|
|
ranksep: rankSpacing,
|
|
marginx: 8,
|
|
marginy: 8
|
|
}).setDefaultEdgeLabel(function() {
|
|
return {};
|
|
});
|
|
let subG;
|
|
const subGraphs = diagObj.db.getSubGraphs();
|
|
for (let i2 = subGraphs.length - 1; i2 >= 0; i2--) {
|
|
subG = subGraphs[i2];
|
|
diagObj.db.addVertex(subG.id, subG.title, "group", void 0, subG.classes);
|
|
}
|
|
const vert = diagObj.db.getVertices();
|
|
log.warn("Get vertices", vert);
|
|
const edges = diagObj.db.getEdges();
|
|
let i = 0;
|
|
for (i = subGraphs.length - 1; i >= 0; i--) {
|
|
subG = subGraphs[i];
|
|
selectAll("cluster").append("text");
|
|
for (let j = 0; j < subG.nodes.length; j++) {
|
|
log.warn(
|
|
"Setting subgraph",
|
|
subG.nodes[j],
|
|
diagObj.db.lookUpDomId(subG.nodes[j]),
|
|
diagObj.db.lookUpDomId(subG.id)
|
|
);
|
|
g.setParent(diagObj.db.lookUpDomId(subG.nodes[j]), diagObj.db.lookUpDomId(subG.id));
|
|
}
|
|
}
|
|
addVertices(vert, g, id, root, doc, diagObj);
|
|
addEdges(edges, g, diagObj);
|
|
const render$1 = new render();
|
|
flowChartShapes.addToRender(render$1);
|
|
render$1.arrows().none = function normal(parent, id2, edge, type) {
|
|
const marker = parent.append("marker").attr("id", id2).attr("viewBox", "0 0 10 10").attr("refX", 9).attr("refY", 5).attr("markerUnits", "strokeWidth").attr("markerWidth", 8).attr("markerHeight", 6).attr("orient", "auto");
|
|
const path = marker.append("path").attr("d", "M 0 0 L 0 0 L 0 0 z");
|
|
applyStyle(path, edge[type + "Style"]);
|
|
};
|
|
render$1.arrows().normal = function normal(parent, id2) {
|
|
const marker = parent.append("marker").attr("id", id2).attr("viewBox", "0 0 10 10").attr("refX", 9).attr("refY", 5).attr("markerUnits", "strokeWidth").attr("markerWidth", 8).attr("markerHeight", 6).attr("orient", "auto");
|
|
marker.append("path").attr("d", "M 0 0 L 10 5 L 0 10 z").attr("class", "arrowheadPath").style("stroke-width", 1).style("stroke-dasharray", "1,0");
|
|
};
|
|
const svg = root.select(`[id="${id}"]`);
|
|
const element = root.select("#" + id + " g");
|
|
render$1(element, g);
|
|
element.selectAll("g.node").attr("title", function() {
|
|
return diagObj.db.getTooltip(this.id);
|
|
});
|
|
diagObj.db.indexNodes("subGraph" + i);
|
|
for (i = 0; i < subGraphs.length; i++) {
|
|
subG = subGraphs[i];
|
|
if (subG.title !== "undefined") {
|
|
const clusterRects = doc.querySelectorAll(
|
|
"#" + id + ' [id="' + diagObj.db.lookUpDomId(subG.id) + '"] rect'
|
|
);
|
|
const clusterEl = doc.querySelectorAll(
|
|
"#" + id + ' [id="' + diagObj.db.lookUpDomId(subG.id) + '"]'
|
|
);
|
|
const xPos = clusterRects[0].x.baseVal.value;
|
|
const yPos = clusterRects[0].y.baseVal.value;
|
|
const _width = clusterRects[0].width.baseVal.value;
|
|
const cluster = select(clusterEl[0]);
|
|
const te = cluster.select(".label");
|
|
te.attr("transform", `translate(${xPos + _width / 2}, ${yPos + 14})`);
|
|
te.attr("id", id + "Text");
|
|
for (let j = 0; j < subG.classes.length; j++) {
|
|
clusterEl[0].classList.add(subG.classes[j]);
|
|
}
|
|
}
|
|
}
|
|
if (!conf2.htmlLabels) {
|
|
const labels = doc.querySelectorAll('[id="' + id + '"] .edgeLabel .label');
|
|
for (const label of labels) {
|
|
const dim = label.getBBox();
|
|
const rect = doc.createElementNS("http://www.w3.org/2000/svg", "rect");
|
|
rect.setAttribute("rx", 0);
|
|
rect.setAttribute("ry", 0);
|
|
rect.setAttribute("width", dim.width);
|
|
rect.setAttribute("height", dim.height);
|
|
label.insertBefore(rect, label.firstChild);
|
|
}
|
|
}
|
|
setupGraphViewbox(g, svg, conf2.diagramPadding, conf2.useMaxWidth);
|
|
const keys = Object.keys(vert);
|
|
keys.forEach(function(key) {
|
|
const vertex = vert[key];
|
|
if (vertex.link) {
|
|
const node = root.select("#" + id + ' [id="' + diagObj.db.lookUpDomId(key) + '"]');
|
|
if (node) {
|
|
const link = doc.createElementNS("http://www.w3.org/2000/svg", "a");
|
|
link.setAttributeNS("http://www.w3.org/2000/svg", "class", vertex.classes.join(" "));
|
|
link.setAttributeNS("http://www.w3.org/2000/svg", "href", vertex.link);
|
|
link.setAttributeNS("http://www.w3.org/2000/svg", "rel", "noopener");
|
|
if (securityLevel === "sandbox") {
|
|
link.setAttributeNS("http://www.w3.org/2000/svg", "target", "_top");
|
|
} else if (vertex.linkTarget) {
|
|
link.setAttributeNS("http://www.w3.org/2000/svg", "target", vertex.linkTarget);
|
|
}
|
|
const linkNode = node.insert(function() {
|
|
return link;
|
|
}, ":first-child");
|
|
const shape = node.select(".label-container");
|
|
if (shape) {
|
|
linkNode.append(function() {
|
|
return shape.node();
|
|
});
|
|
}
|
|
const label = node.select(".label");
|
|
if (label) {
|
|
linkNode.append(function() {
|
|
return label.node();
|
|
});
|
|
}
|
|
}
|
|
}
|
|
});
|
|
};
|
|
const flowRenderer = {
|
|
setConf,
|
|
addVertices,
|
|
addEdges,
|
|
getClasses,
|
|
draw
|
|
};
|
|
const diagram = {
|
|
parser,
|
|
db: flowDb,
|
|
renderer: flowRendererV2,
|
|
styles: flowStyles,
|
|
init: (cnf) => {
|
|
if (!cnf.flowchart) {
|
|
cnf.flowchart = {};
|
|
}
|
|
cnf.flowchart.arrowMarkerAbsolute = cnf.arrowMarkerAbsolute;
|
|
flowRenderer.setConf(cnf.flowchart);
|
|
flowDb.clear();
|
|
flowDb.setGen("gen-1");
|
|
}
|
|
};
|
|
export {
|
|
diagram
|
|
};
|