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File: C:/Python311/Lib/site-packages/notebook/static/9442.e301e4179b7c69c125d7.js
"use strict";
(self["webpackChunk_JUPYTERLAB_CORE_OUTPUT"] = self["webpackChunk_JUPYTERLAB_CORE_OUTPUT"] || []).push([[9442],{

/***/ 69442:
/***/ ((__unused_webpack_module, __webpack_exports__, __webpack_require__) => {


// EXPORTS
__webpack_require__.d(__webpack_exports__, {
  diagram: () => (/* binding */ diagram)
});

// EXTERNAL MODULE: ../node_modules/mermaid/dist/chunks/mermaid.core/chunk-YTJNT7DU.mjs + 3 modules
var chunk_YTJNT7DU = __webpack_require__(86906);
// EXTERNAL MODULE: ../node_modules/d3/src/index.js + 97 modules
var src = __webpack_require__(83619);
;// CONCATENATED MODULE: ../node_modules/d3-sankey/node_modules/d3-array/src/min.js
function min(values, valueof) {
  let min;
  if (valueof === undefined) {
    for (const value of values) {
      if (value != null
          && (min > value || (min === undefined && value >= value))) {
        min = value;
      }
    }
  } else {
    let index = -1;
    for (let value of values) {
      if ((value = valueof(value, ++index, values)) != null
          && (min > value || (min === undefined && value >= value))) {
        min = value;
      }
    }
  }
  return min;
}

;// CONCATENATED MODULE: ../node_modules/d3-sankey/src/align.js


function targetDepth(d) {
  return d.target.depth;
}

function left(node) {
  return node.depth;
}

function right(node, n) {
  return n - 1 - node.height;
}

function justify(node, n) {
  return node.sourceLinks.length ? node.depth : n - 1;
}

function center(node) {
  return node.targetLinks.length ? node.depth
      : node.sourceLinks.length ? min(node.sourceLinks, targetDepth) - 1
      : 0;
}

;// CONCATENATED MODULE: ../node_modules/d3-sankey/node_modules/d3-array/src/sum.js
function sum(values, valueof) {
  let sum = 0;
  if (valueof === undefined) {
    for (let value of values) {
      if (value = +value) {
        sum += value;
      }
    }
  } else {
    let index = -1;
    for (let value of values) {
      if (value = +valueof(value, ++index, values)) {
        sum += value;
      }
    }
  }
  return sum;
}

;// CONCATENATED MODULE: ../node_modules/d3-sankey/node_modules/d3-array/src/max.js
function max(values, valueof) {
  let max;
  if (valueof === undefined) {
    for (const value of values) {
      if (value != null
          && (max < value || (max === undefined && value >= value))) {
        max = value;
      }
    }
  } else {
    let index = -1;
    for (let value of values) {
      if ((value = valueof(value, ++index, values)) != null
          && (max < value || (max === undefined && value >= value))) {
        max = value;
      }
    }
  }
  return max;
}

;// CONCATENATED MODULE: ../node_modules/d3-sankey/src/constant.js
function constant(x) {
  return function() {
    return x;
  };
}

;// CONCATENATED MODULE: ../node_modules/d3-sankey/src/sankey.js




function ascendingSourceBreadth(a, b) {
  return ascendingBreadth(a.source, b.source) || a.index - b.index;
}

function ascendingTargetBreadth(a, b) {
  return ascendingBreadth(a.target, b.target) || a.index - b.index;
}

function ascendingBreadth(a, b) {
  return a.y0 - b.y0;
}

function value(d) {
  return d.value;
}

function defaultId(d) {
  return d.index;
}

function defaultNodes(graph) {
  return graph.nodes;
}

function defaultLinks(graph) {
  return graph.links;
}

function find(nodeById, id) {
  const node = nodeById.get(id);
  if (!node) throw new Error("missing: " + id);
  return node;
}

function computeLinkBreadths({nodes}) {
  for (const node of nodes) {
    let y0 = node.y0;
    let y1 = y0;
    for (const link of node.sourceLinks) {
      link.y0 = y0 + link.width / 2;
      y0 += link.width;
    }
    for (const link of node.targetLinks) {
      link.y1 = y1 + link.width / 2;
      y1 += link.width;
    }
  }
}

function Sankey() {
  let x0 = 0, y0 = 0, x1 = 1, y1 = 1; // extent
  let dx = 24; // nodeWidth
  let dy = 8, py; // nodePadding
  let id = defaultId;
  let align = justify;
  let sort;
  let linkSort;
  let nodes = defaultNodes;
  let links = defaultLinks;
  let iterations = 6;

  function sankey() {
    const graph = {nodes: nodes.apply(null, arguments), links: links.apply(null, arguments)};
    computeNodeLinks(graph);
    computeNodeValues(graph);
    computeNodeDepths(graph);
    computeNodeHeights(graph);
    computeNodeBreadths(graph);
    computeLinkBreadths(graph);
    return graph;
  }

  sankey.update = function(graph) {
    computeLinkBreadths(graph);
    return graph;
  };

  sankey.nodeId = function(_) {
    return arguments.length ? (id = typeof _ === "function" ? _ : constant(_), sankey) : id;
  };

  sankey.nodeAlign = function(_) {
    return arguments.length ? (align = typeof _ === "function" ? _ : constant(_), sankey) : align;
  };

  sankey.nodeSort = function(_) {
    return arguments.length ? (sort = _, sankey) : sort;
  };

  sankey.nodeWidth = function(_) {
    return arguments.length ? (dx = +_, sankey) : dx;
  };

  sankey.nodePadding = function(_) {
    return arguments.length ? (dy = py = +_, sankey) : dy;
  };

  sankey.nodes = function(_) {
    return arguments.length ? (nodes = typeof _ === "function" ? _ : constant(_), sankey) : nodes;
  };

  sankey.links = function(_) {
    return arguments.length ? (links = typeof _ === "function" ? _ : constant(_), sankey) : links;
  };

  sankey.linkSort = function(_) {
    return arguments.length ? (linkSort = _, sankey) : linkSort;
  };

  sankey.size = function(_) {
    return arguments.length ? (x0 = y0 = 0, x1 = +_[0], y1 = +_[1], sankey) : [x1 - x0, y1 - y0];
  };

  sankey.extent = function(_) {
    return arguments.length ? (x0 = +_[0][0], x1 = +_[1][0], y0 = +_[0][1], y1 = +_[1][1], sankey) : [[x0, y0], [x1, y1]];
  };

  sankey.iterations = function(_) {
    return arguments.length ? (iterations = +_, sankey) : iterations;
  };

  function computeNodeLinks({nodes, links}) {
    for (const [i, node] of nodes.entries()) {
      node.index = i;
      node.sourceLinks = [];
      node.targetLinks = [];
    }
    const nodeById = new Map(nodes.map((d, i) => [id(d, i, nodes), d]));
    for (const [i, link] of links.entries()) {
      link.index = i;
      let {source, target} = link;
      if (typeof source !== "object") source = link.source = find(nodeById, source);
      if (typeof target !== "object") target = link.target = find(nodeById, target);
      source.sourceLinks.push(link);
      target.targetLinks.push(link);
    }
    if (linkSort != null) {
      for (const {sourceLinks, targetLinks} of nodes) {
        sourceLinks.sort(linkSort);
        targetLinks.sort(linkSort);
      }
    }
  }

  function computeNodeValues({nodes}) {
    for (const node of nodes) {
      node.value = node.fixedValue === undefined
          ? Math.max(sum(node.sourceLinks, value), sum(node.targetLinks, value))
          : node.fixedValue;
    }
  }

  function computeNodeDepths({nodes}) {
    const n = nodes.length;
    let current = new Set(nodes);
    let next = new Set;
    let x = 0;
    while (current.size) {
      for (const node of current) {
        node.depth = x;
        for (const {target} of node.sourceLinks) {
          next.add(target);
        }
      }
      if (++x > n) throw new Error("circular link");
      current = next;
      next = new Set;
    }
  }

  function computeNodeHeights({nodes}) {
    const n = nodes.length;
    let current = new Set(nodes);
    let next = new Set;
    let x = 0;
    while (current.size) {
      for (const node of current) {
        node.height = x;
        for (const {source} of node.targetLinks) {
          next.add(source);
        }
      }
      if (++x > n) throw new Error("circular link");
      current = next;
      next = new Set;
    }
  }

  function computeNodeLayers({nodes}) {
    const x = max(nodes, d => d.depth) + 1;
    const kx = (x1 - x0 - dx) / (x - 1);
    const columns = new Array(x);
    for (const node of nodes) {
      const i = Math.max(0, Math.min(x - 1, Math.floor(align.call(null, node, x))));
      node.layer = i;
      node.x0 = x0 + i * kx;
      node.x1 = node.x0 + dx;
      if (columns[i]) columns[i].push(node);
      else columns[i] = [node];
    }
    if (sort) for (const column of columns) {
      column.sort(sort);
    }
    return columns;
  }

  function initializeNodeBreadths(columns) {
    const ky = min(columns, c => (y1 - y0 - (c.length - 1) * py) / sum(c, value));
    for (const nodes of columns) {
      let y = y0;
      for (const node of nodes) {
        node.y0 = y;
        node.y1 = y + node.value * ky;
        y = node.y1 + py;
        for (const link of node.sourceLinks) {
          link.width = link.value * ky;
        }
      }
      y = (y1 - y + py) / (nodes.length + 1);
      for (let i = 0; i < nodes.length; ++i) {
        const node = nodes[i];
        node.y0 += y * (i + 1);
        node.y1 += y * (i + 1);
      }
      reorderLinks(nodes);
    }
  }

  function computeNodeBreadths(graph) {
    const columns = computeNodeLayers(graph);
    py = Math.min(dy, (y1 - y0) / (max(columns, c => c.length) - 1));
    initializeNodeBreadths(columns);
    for (let i = 0; i < iterations; ++i) {
      const alpha = Math.pow(0.99, i);
      const beta = Math.max(1 - alpha, (i + 1) / iterations);
      relaxRightToLeft(columns, alpha, beta);
      relaxLeftToRight(columns, alpha, beta);
    }
  }

  // Reposition each node based on its incoming (target) links.
  function relaxLeftToRight(columns, alpha, beta) {
    for (let i = 1, n = columns.length; i < n; ++i) {
      const column = columns[i];
      for (const target of column) {
        let y = 0;
        let w = 0;
        for (const {source, value} of target.targetLinks) {
          let v = value * (target.layer - source.layer);
          y += targetTop(source, target) * v;
          w += v;
        }
        if (!(w > 0)) continue;
        let dy = (y / w - target.y0) * alpha;
        target.y0 += dy;
        target.y1 += dy;
        reorderNodeLinks(target);
      }
      if (sort === undefined) column.sort(ascendingBreadth);
      resolveCollisions(column, beta);
    }
  }

  // Reposition each node based on its outgoing (source) links.
  function relaxRightToLeft(columns, alpha, beta) {
    for (let n = columns.length, i = n - 2; i >= 0; --i) {
      const column = columns[i];
      for (const source of column) {
        let y = 0;
        let w = 0;
        for (const {target, value} of source.sourceLinks) {
          let v = value * (target.layer - source.layer);
          y += sourceTop(source, target) * v;
          w += v;
        }
        if (!(w > 0)) continue;
        let dy = (y / w - source.y0) * alpha;
        source.y0 += dy;
        source.y1 += dy;
        reorderNodeLinks(source);
      }
      if (sort === undefined) column.sort(ascendingBreadth);
      resolveCollisions(column, beta);
    }
  }

  function resolveCollisions(nodes, alpha) {
    const i = nodes.length >> 1;
    const subject = nodes[i];
    resolveCollisionsBottomToTop(nodes, subject.y0 - py, i - 1, alpha);
    resolveCollisionsTopToBottom(nodes, subject.y1 + py, i + 1, alpha);
    resolveCollisionsBottomToTop(nodes, y1, nodes.length - 1, alpha);
    resolveCollisionsTopToBottom(nodes, y0, 0, alpha);
  }

  // Push any overlapping nodes down.
  function resolveCollisionsTopToBottom(nodes, y, i, alpha) {
    for (; i < nodes.length; ++i) {
      const node = nodes[i];
      const dy = (y - node.y0) * alpha;
      if (dy > 1e-6) node.y0 += dy, node.y1 += dy;
      y = node.y1 + py;
    }
  }

  // Push any overlapping nodes up.
  function resolveCollisionsBottomToTop(nodes, y, i, alpha) {
    for (; i >= 0; --i) {
      const node = nodes[i];
      const dy = (node.y1 - y) * alpha;
      if (dy > 1e-6) node.y0 -= dy, node.y1 -= dy;
      y = node.y0 - py;
    }
  }

  function reorderNodeLinks({sourceLinks, targetLinks}) {
    if (linkSort === undefined) {
      for (const {source: {sourceLinks}} of targetLinks) {
        sourceLinks.sort(ascendingTargetBreadth);
      }
      for (const {target: {targetLinks}} of sourceLinks) {
        targetLinks.sort(ascendingSourceBreadth);
      }
    }
  }

  function reorderLinks(nodes) {
    if (linkSort === undefined) {
      for (const {sourceLinks, targetLinks} of nodes) {
        sourceLinks.sort(ascendingTargetBreadth);
        targetLinks.sort(ascendingSourceBreadth);
      }
    }
  }

  // Returns the target.y0 that would produce an ideal link from source to target.
  function targetTop(source, target) {
    let y = source.y0 - (source.sourceLinks.length - 1) * py / 2;
    for (const {target: node, width} of source.sourceLinks) {
      if (node === target) break;
      y += width + py;
    }
    for (const {source: node, width} of target.targetLinks) {
      if (node === source) break;
      y -= width;
    }
    return y;
  }

  // Returns the source.y0 that would produce an ideal link from source to target.
  function sourceTop(source, target) {
    let y = target.y0 - (target.targetLinks.length - 1) * py / 2;
    for (const {source: node, width} of target.targetLinks) {
      if (node === source) break;
      y += width + py;
    }
    for (const {target: node, width} of source.sourceLinks) {
      if (node === target) break;
      y -= width;
    }
    return y;
  }

  return sankey;
}

;// CONCATENATED MODULE: ../node_modules/d3-sankey/node_modules/d3-path/src/path.js
var pi = Math.PI,
    tau = 2 * pi,
    epsilon = 1e-6,
    tauEpsilon = tau - epsilon;

function Path() {
  this._x0 = this._y0 = // start of current subpath
  this._x1 = this._y1 = null; // end of current subpath
  this._ = "";
}

function path() {
  return new Path;
}

Path.prototype = path.prototype = {
  constructor: Path,
  moveTo: function(x, y) {
    this._ += "M" + (this._x0 = this._x1 = +x) + "," + (this._y0 = this._y1 = +y);
  },
  closePath: function() {
    if (this._x1 !== null) {
      this._x1 = this._x0, this._y1 = this._y0;
      this._ += "Z";
    }
  },
  lineTo: function(x, y) {
    this._ += "L" + (this._x1 = +x) + "," + (this._y1 = +y);
  },
  quadraticCurveTo: function(x1, y1, x, y) {
    this._ += "Q" + (+x1) + "," + (+y1) + "," + (this._x1 = +x) + "," + (this._y1 = +y);
  },
  bezierCurveTo: function(x1, y1, x2, y2, x, y) {
    this._ += "C" + (+x1) + "," + (+y1) + "," + (+x2) + "," + (+y2) + "," + (this._x1 = +x) + "," + (this._y1 = +y);
  },
  arcTo: function(x1, y1, x2, y2, r) {
    x1 = +x1, y1 = +y1, x2 = +x2, y2 = +y2, r = +r;
    var x0 = this._x1,
        y0 = this._y1,
        x21 = x2 - x1,
        y21 = y2 - y1,
        x01 = x0 - x1,
        y01 = y0 - y1,
        l01_2 = x01 * x01 + y01 * y01;

    // Is the radius negative? Error.
    if (r < 0) throw new Error("negative radius: " + r);

    // Is this path empty? Move to (x1,y1).
    if (this._x1 === null) {
      this._ += "M" + (this._x1 = x1) + "," + (this._y1 = y1);
    }

    // Or, is (x1,y1) coincident with (x0,y0)? Do nothing.
    else if (!(l01_2 > epsilon));

    // Or, are (x0,y0), (x1,y1) and (x2,y2) collinear?
    // Equivalently, is (x1,y1) coincident with (x2,y2)?
    // Or, is the radius zero? Line to (x1,y1).
    else if (!(Math.abs(y01 * x21 - y21 * x01) > epsilon) || !r) {
      this._ += "L" + (this._x1 = x1) + "," + (this._y1 = y1);
    }

    // Otherwise, draw an arc!
    else {
      var x20 = x2 - x0,
          y20 = y2 - y0,
          l21_2 = x21 * x21 + y21 * y21,
          l20_2 = x20 * x20 + y20 * y20,
          l21 = Math.sqrt(l21_2),
          l01 = Math.sqrt(l01_2),
          l = r * Math.tan((pi - Math.acos((l21_2 + l01_2 - l20_2) / (2 * l21 * l01))) / 2),
          t01 = l / l01,
          t21 = l / l21;

      // If the start tangent is not coincident with (x0,y0), line to.
      if (Math.abs(t01 - 1) > epsilon) {
        this._ += "L" + (x1 + t01 * x01) + "," + (y1 + t01 * y01);
      }

      this._ += "A" + r + "," + r + ",0,0," + (+(y01 * x20 > x01 * y20)) + "," + (this._x1 = x1 + t21 * x21) + "," + (this._y1 = y1 + t21 * y21);
    }
  },
  arc: function(x, y, r, a0, a1, ccw) {
    x = +x, y = +y, r = +r, ccw = !!ccw;
    var dx = r * Math.cos(a0),
        dy = r * Math.sin(a0),
        x0 = x + dx,
        y0 = y + dy,
        cw = 1 ^ ccw,
        da = ccw ? a0 - a1 : a1 - a0;

    // Is the radius negative? Error.
    if (r < 0) throw new Error("negative radius: " + r);

    // Is this path empty? Move to (x0,y0).
    if (this._x1 === null) {
      this._ += "M" + x0 + "," + y0;
    }

    // Or, is (x0,y0) not coincident with the previous point? Line to (x0,y0).
    else if (Math.abs(this._x1 - x0) > epsilon || Math.abs(this._y1 - y0) > epsilon) {
      this._ += "L" + x0 + "," + y0;
    }

    // Is this arc empty? We’re done.
    if (!r) return;

    // Does the angle go the wrong way? Flip the direction.
    if (da < 0) da = da % tau + tau;

    // Is this a complete circle? Draw two arcs to complete the circle.
    if (da > tauEpsilon) {
      this._ += "A" + r + "," + r + ",0,1," + cw + "," + (x - dx) + "," + (y - dy) + "A" + r + "," + r + ",0,1," + cw + "," + (this._x1 = x0) + "," + (this._y1 = y0);
    }

    // Is this arc non-empty? Draw an arc!
    else if (da > epsilon) {
      this._ += "A" + r + "," + r + ",0," + (+(da >= pi)) + "," + cw + "," + (this._x1 = x + r * Math.cos(a1)) + "," + (this._y1 = y + r * Math.sin(a1));
    }
  },
  rect: function(x, y, w, h) {
    this._ += "M" + (this._x0 = this._x1 = +x) + "," + (this._y0 = this._y1 = +y) + "h" + (+w) + "v" + (+h) + "h" + (-w) + "Z";
  },
  toString: function() {
    return this._;
  }
};

/* harmony default export */ const src_path = (path);

;// CONCATENATED MODULE: ../node_modules/d3-sankey/node_modules/d3-shape/src/array.js
var slice = Array.prototype.slice;

;// CONCATENATED MODULE: ../node_modules/d3-sankey/node_modules/d3-shape/src/constant.js
/* harmony default export */ function src_constant(x) {
  return function constant() {
    return x;
  };
}

;// CONCATENATED MODULE: ../node_modules/d3-sankey/node_modules/d3-shape/src/point.js
function point_x(p) {
  return p[0];
}

function point_y(p) {
  return p[1];
}

;// CONCATENATED MODULE: ../node_modules/d3-sankey/node_modules/d3-shape/src/link/index.js






function linkSource(d) {
  return d.source;
}

function linkTarget(d) {
  return d.target;
}

function link_link(curve) {
  var source = linkSource,
      target = linkTarget,
      x = point_x,
      y = point_y,
      context = null;

  function link() {
    var buffer, argv = slice.call(arguments), s = source.apply(this, argv), t = target.apply(this, argv);
    if (!context) context = buffer = src_path();
    curve(context, +x.apply(this, (argv[0] = s, argv)), +y.apply(this, argv), +x.apply(this, (argv[0] = t, argv)), +y.apply(this, argv));
    if (buffer) return context = null, buffer + "" || null;
  }

  link.source = function(_) {
    return arguments.length ? (source = _, link) : source;
  };

  link.target = function(_) {
    return arguments.length ? (target = _, link) : target;
  };

  link.x = function(_) {
    return arguments.length ? (x = typeof _ === "function" ? _ : src_constant(+_), link) : x;
  };

  link.y = function(_) {
    return arguments.length ? (y = typeof _ === "function" ? _ : src_constant(+_), link) : y;
  };

  link.context = function(_) {
    return arguments.length ? ((context = _ == null ? null : _), link) : context;
  };

  return link;
}

function curveHorizontal(context, x0, y0, x1, y1) {
  context.moveTo(x0, y0);
  context.bezierCurveTo(x0 = (x0 + x1) / 2, y0, x0, y1, x1, y1);
}

function curveVertical(context, x0, y0, x1, y1) {
  context.moveTo(x0, y0);
  context.bezierCurveTo(x0, y0 = (y0 + y1) / 2, x1, y0, x1, y1);
}

function curveRadial(context, x0, y0, x1, y1) {
  var p0 = pointRadial(x0, y0),
      p1 = pointRadial(x0, y0 = (y0 + y1) / 2),
      p2 = pointRadial(x1, y0),
      p3 = pointRadial(x1, y1);
  context.moveTo(p0[0], p0[1]);
  context.bezierCurveTo(p1[0], p1[1], p2[0], p2[1], p3[0], p3[1]);
}

function linkHorizontal() {
  return link_link(curveHorizontal);
}

function linkVertical() {
  return link_link(curveVertical);
}

function linkRadial() {
  var l = link_link(curveRadial);
  l.angle = l.x, delete l.x;
  l.radius = l.y, delete l.y;
  return l;
}

;// CONCATENATED MODULE: ../node_modules/d3-sankey/src/sankeyLinkHorizontal.js


function horizontalSource(d) {
  return [d.source.x1, d.y0];
}

function horizontalTarget(d) {
  return [d.target.x0, d.y1];
}

/* harmony default export */ function sankeyLinkHorizontal() {
  return linkHorizontal()
      .source(horizontalSource)
      .target(horizontalTarget);
}

;// CONCATENATED MODULE: ../node_modules/mermaid/dist/chunks/mermaid.core/sankeyDiagram-QLVOVGJD.mjs


// src/diagrams/sankey/parser/sankey.jison
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        } else {
          return this.conditions["INITIAL"].rules;
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      }, "_currentRules"),
      // return the currently active lexer condition state; when an index argument is provided it produces the N-th previous condition state, if available
      topState: /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)(function topState(n) {
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      options: { "case-insensitive": true },
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            this.pushState("csv");
            return 4;
            break;
          case 1:
            return 10;
            break;
          case 2:
            return 5;
            break;
          case 3:
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          case 4:
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          case 5:
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          case 6:
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          case 7:
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    };
    return lexer2;
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  function Parser() {
    this.yy = {};
  }
  (0,chunk_YTJNT7DU/* __name */.eW)(Parser, "Parser");
  Parser.prototype = parser2;
  parser2.Parser = Parser;
  return new Parser();
}();
parser.parser = parser;
var sankey_default = parser;

// src/diagrams/sankey/sankeyDB.ts
var links = [];
var nodes = [];
var nodesMap = /* @__PURE__ */ new Map();
var clear2 = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)(() => {
  links = [];
  nodes = [];
  nodesMap = /* @__PURE__ */ new Map();
  (0,chunk_YTJNT7DU/* clear */.ZH)();
}, "clear");
var SankeyLink = class {
  constructor(source, target, value = 0) {
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    this.target = target;
    this.value = value;
  }
  static {
    (0,chunk_YTJNT7DU/* __name */.eW)(this, "SankeyLink");
  }
};
var addLink = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)((source, target, value) => {
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}, "addLink");
var SankeyNode = class {
  constructor(ID) {
    this.ID = ID;
  }
  static {
    (0,chunk_YTJNT7DU/* __name */.eW)(this, "SankeyNode");
  }
};
var findOrCreateNode = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)((ID) => {
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  let node = nodesMap.get(ID);
  if (node === void 0) {
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    nodesMap.set(ID, node);
    nodes.push(node);
  }
  return node;
}, "findOrCreateNode");
var getNodes = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)(() => nodes, "getNodes");
var getLinks = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)(() => links, "getLinks");
var getGraph = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)(() => ({
  nodes: nodes.map((node) => ({ id: node.ID })),
  links: links.map((link) => ({
    source: link.source.ID,
    target: link.target.ID,
    value: link.value
  }))
}), "getGraph");
var sankeyDB_default = {
  nodesMap,
  getConfig: /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)(() => (0,chunk_YTJNT7DU/* getConfig2 */.nV)().sankey, "getConfig"),
  getNodes,
  getLinks,
  getGraph,
  addLink,
  findOrCreateNode,
  getAccTitle: chunk_YTJNT7DU/* getAccTitle */.eu,
  setAccTitle: chunk_YTJNT7DU/* setAccTitle */.GN,
  getAccDescription: chunk_YTJNT7DU/* getAccDescription */.Mx,
  setAccDescription: chunk_YTJNT7DU/* setAccDescription */.U$,
  getDiagramTitle: chunk_YTJNT7DU/* getDiagramTitle */.Kr,
  setDiagramTitle: chunk_YTJNT7DU/* setDiagramTitle */.g2,
  clear: clear2
};

// src/diagrams/sankey/sankeyRenderer.ts



// src/rendering-util/uid.ts
var Uid = class _Uid {
  static {
    (0,chunk_YTJNT7DU/* __name */.eW)(this, "Uid");
  }
  static {
    this.count = 0;
  }
  static next(name) {
    return new _Uid(name + ++_Uid.count);
  }
  constructor(id) {
    this.id = id;
    this.href = `#${id}`;
  }
  toString() {
    return "url(" + this.href + ")";
  }
};

// src/diagrams/sankey/sankeyRenderer.ts
var alignmentsMap = {
  left: left,
  right: right,
  center: center,
  justify: justify
};
var draw = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)(function(text, id, _version, diagObj) {
  const { securityLevel, sankey: conf } = (0,chunk_YTJNT7DU/* getConfig2 */.nV)();
  const defaultSankeyConfig = chunk_YTJNT7DU/* defaultConfig2 */.Fy.sankey;
  let sandboxElement;
  if (securityLevel === "sandbox") {
    sandboxElement = (0,src/* select */.Ys)("#i" + id);
  }
  const root = securityLevel === "sandbox" ? (0,src/* select */.Ys)(sandboxElement.nodes()[0].contentDocument.body) : (0,src/* select */.Ys)("body");
  const svg = securityLevel === "sandbox" ? root.select(`[id="${id}"]`) : (0,src/* select */.Ys)(`[id="${id}"]`);
  const width = conf?.width ?? defaultSankeyConfig.width;
  const height = conf?.height ?? defaultSankeyConfig.width;
  const useMaxWidth = conf?.useMaxWidth ?? defaultSankeyConfig.useMaxWidth;
  const nodeAlignment = conf?.nodeAlignment ?? defaultSankeyConfig.nodeAlignment;
  const prefix = conf?.prefix ?? defaultSankeyConfig.prefix;
  const suffix = conf?.suffix ?? defaultSankeyConfig.suffix;
  const showValues = conf?.showValues ?? defaultSankeyConfig.showValues;
  const graph = diagObj.db.getGraph();
  const nodeAlign = alignmentsMap[nodeAlignment];
  const nodeWidth = 10;
  const sankey = Sankey().nodeId((d) => d.id).nodeWidth(nodeWidth).nodePadding(10 + (showValues ? 15 : 0)).nodeAlign(nodeAlign).extent([
    [0, 0],
    [width, height]
  ]);
  sankey(graph);
  const colorScheme = (0,src/* scaleOrdinal */.PKp)(src/* schemeTableau10 */.K2I);
  svg.append("g").attr("class", "nodes").selectAll(".node").data(graph.nodes).join("g").attr("class", "node").attr("id", (d) => (d.uid = Uid.next("node-")).id).attr("transform", function(d) {
    return "translate(" + d.x0 + "," + d.y0 + ")";
  }).attr("x", (d) => d.x0).attr("y", (d) => d.y0).append("rect").attr("height", (d) => {
    return d.y1 - d.y0;
  }).attr("width", (d) => d.x1 - d.x0).attr("fill", (d) => colorScheme(d.id));
  const getText = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)(({ id: id2, value }) => {
    if (!showValues) {
      return id2;
    }
    return `${id2}
${prefix}${Math.round(value * 100) / 100}${suffix}`;
  }, "getText");
  svg.append("g").attr("class", "node-labels").attr("font-size", 14).selectAll("text").data(graph.nodes).join("text").attr("x", (d) => d.x0 < width / 2 ? d.x1 + 6 : d.x0 - 6).attr("y", (d) => (d.y1 + d.y0) / 2).attr("dy", `${showValues ? "0" : "0.35"}em`).attr("text-anchor", (d) => d.x0 < width / 2 ? "start" : "end").text(getText);
  const link = svg.append("g").attr("class", "links").attr("fill", "none").attr("stroke-opacity", 0.5).selectAll(".link").data(graph.links).join("g").attr("class", "link").style("mix-blend-mode", "multiply");
  const linkColor = conf?.linkColor ?? "gradient";
  if (linkColor === "gradient") {
    const gradient = link.append("linearGradient").attr("id", (d) => (d.uid = Uid.next("linearGradient-")).id).attr("gradientUnits", "userSpaceOnUse").attr("x1", (d) => d.source.x1).attr("x2", (d) => d.target.x0);
    gradient.append("stop").attr("offset", "0%").attr("stop-color", (d) => colorScheme(d.source.id));
    gradient.append("stop").attr("offset", "100%").attr("stop-color", (d) => colorScheme(d.target.id));
  }
  let coloring;
  switch (linkColor) {
    case "gradient":
      coloring = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)((d) => d.uid, "coloring");
      break;
    case "source":
      coloring = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)((d) => colorScheme(d.source.id), "coloring");
      break;
    case "target":
      coloring = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)((d) => colorScheme(d.target.id), "coloring");
      break;
    default:
      coloring = linkColor;
  }
  link.append("path").attr("d", sankeyLinkHorizontal()).attr("stroke", coloring).attr("stroke-width", (d) => Math.max(1, d.width));
  (0,chunk_YTJNT7DU/* setupGraphViewbox */.j7)(void 0, svg, 0, useMaxWidth);
}, "draw");
var sankeyRenderer_default = {
  draw
};

// src/diagrams/sankey/sankeyUtils.ts
var prepareTextForParsing = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)((text) => {
  const textToParse = text.replaceAll(/^[^\S\n\r]+|[^\S\n\r]+$/g, "").replaceAll(/([\n\r])+/g, "\n").trim();
  return textToParse;
}, "prepareTextForParsing");

// src/diagrams/sankey/styles.js
var getStyles = /* @__PURE__ */ (0,chunk_YTJNT7DU/* __name */.eW)((options) => `.label {
      font-family: ${options.fontFamily};
    }`, "getStyles");
var styles_default = getStyles;

// src/diagrams/sankey/sankeyDiagram.ts
var originalParse = sankey_default.parse.bind(sankey_default);
sankey_default.parse = (text) => originalParse(prepareTextForParsing(text));
var diagram = {
  styles: styles_default,
  parser: sankey_default,
  db: sankeyDB_default,
  renderer: sankeyRenderer_default
};



/***/ })

}]);
//# sourceMappingURL=9442.e301e4179b7c69c125d7.js.map?v=e301e4179b7c69c125d7