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next-ai-draw-io/tests/unit/diagram-engine-roundtrip.test.ts

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feat(diagram-engine): layout + XML renderer, verified end to end in draw.io Completes the tree → coordinates → XML direction, so the model can declare nesting and never write a coordinate or an mxCell again. layout.ts — measure bottom-up, place top-down, the same shape as flexbox. A container sums its children along the flow axis and adds padding, so "child spills out of its frame" and "siblings overlap" cannot happen by construction rather than being caught afterwards. Slack from sibling equalisation is shared between children instead of left as dead margin, capped at one gap so a stretched frame reads as spaced rather than sparse. render.ts — writes the mxCells, stamping container=1 and the dai_* markers so parse.ts can read the structure back. Edges carry no waypoints: draw.io's own router recomputes the route on every edit, so a user who moves a node never has to re-link an arrow. Cells the parser could not interpret are re-emitted verbatim, so a re-layout never deletes a user's annotations. Phantoms are gone (task #5). The reference project's layout-only wrapper emits no cell, which makes the round-trip lossy by construction — measured on its own build_vpc.mjs, a phantom erased a container's "col" direction for good. An unlabelled frame here emits a real cell with fillColor/strokeColor=none instead: invisible, but present in the XML and therefore recoverable. Two bugs the round-trip test caught, both real: - An icon's cell was being emitted at its measured slot size, which includes room for the label underneath. Parsing read that width back as the glyph size, so the icon grew on every round-trip. The cell is now the glyph square and the label renders outside it via verticalLabelPosition, as the reference does. - An Azure or GCP icon is an embedded base64 image whose style contains no name anywhere, so the catalog name was unrecoverable. Added a dai_name marker. Verified in a real browser (3 Playwright tests, not mocks): engine output renders in draw.io; dragging a shape into a frame makes draw.io rewrite its parent and the engine reads the new structure back; re-laying out from that structure PRESERVES the user's move instead of undoing it, and leaves untouched nodes alone; and the re-laid-out XML still renders. That last point is the whole design: there is no second copy of the state, so a manual edit is an input to the next layout rather than a conflict to reconcile. 304 unit tests + 3 e2e.
2026-08-09 11:56:08 +09:00
/**
* Round-trip: tree XML tree.
*
* This is the test the whole design rests on. If structure does not survive a trip
* through draw.io XML, then the canvas cannot be the single source of truth and we are
* back to keeping a second copy of the state in sync.
*/
import { describe, expect, it } from "vitest"
import { parseDiagram } from "@/lib/diagram-engine/parse"
import { renderDiagram } from "@/lib/diagram-engine/render"
import {
type BoxNode,
type ContainerNode,
type DiagramNode,
type DiagramTree,
findNode,
findParent,
type GridNode,
type GroupNode,
type IconNode,
isContainer,
walkTree,
} from "@/lib/diagram-engine/types"
const icon = (id: string, name = "ec2", label = ""): IconNode => ({
kind: "icon",
id,
name,
label,
})
const box = (id: string, label = ""): BoxNode => ({ kind: "box", id, label })
const group = (
id: string,
dir: "row" | "col",
children: DiagramNode[],
label = "",
gname: string | null = null,
gap = 20,
): GroupNode => ({ kind: "group", id, gname, label, dir, gap, children })
const grid = (
id: string,
cols: number,
children: DiagramNode[],
label = "",
gap = 14,
): GridNode => ({ kind: "grid", id, gname: null, label, cols, gap, children })
const tree = (
roots: DiagramNode[],
extra: Partial<DiagramTree> = {},
): DiagramTree => ({
roots,
links: [],
foreign: [],
...extra,
})
/** Structural signature: nesting, kinds, directions and order — everything but coordinates. */
function signature(t: DiagramTree): string {
const line = (n: DiagramNode, depth: number): string[] => {
const pad = " ".repeat(depth)
if (!isContainer(n)) return [`${pad}${n.kind} ${n.id}`]
feat(diagram-engine): flowcharts, swimlanes, sequence diagrams and mind maps Extends the declarative engine past cloud architecture. The tool routing was divided by icon library — AWS through the engine, everything else hand-written XML — which is the wrong axis. What matters is the LAYOUT SHAPE. Measured first: a six-step approval flow declared in its natural order comes out as one column, because the layout only arranges what nesting tells it to and never looked at the arrows. That forces the arrow from the decision to its second branch to jump over the first branch. graph.ts computes what the layout should have looked at: layer assignment by longest path, cycle breaking so a loop is drawn without setting the order, and barycentre sweeping to cut edge crossings. It emits ordinary container operations, so layout, routing and round-tripping are unchanged — reaching zero arrows-through-boxes on a 14-node pipeline and zero crossings on a bipartite graph whose declared order forces three. Three new container kinds, each because one layout rule cannot serve them all: pool — swimlanes. Lanes are real cells and each step is parented to its band, so dragging a step to another role records the change. sequence — participants across the top, one lifeline cell per participant so head and line stay together on a drag. Messages bypass the router: a message's height IS its order. radial — mind maps and org charts. Children are a flat list and the hierarchy comes from the links, because a branch is a box and a box cannot hold children. Flowchart box shapes (diamond, stadium, parallelogram, document) so a reader can tell a branch from a step. Two bugs the new tests caught: the duplicate-link guard blocked a sequence diagram from having two messages between the same pair, and the fallback message numbering was shared across containers, pushing a second diagram's messages off its own lifelines. 523 unit tests and 17 diagram e2e tests pass. Every kind verified round-trip stable to a fixed point, and rendered in a real browser — draw.io keeps the lifeline shape and the lane markers.
2026-08-09 13:47:23 +09:00
const meta =
n.kind === "grid"
? `cols=${n.cols}`
: n.kind === "group"
? `dir=${n.dir}`
: n.kind
feat(diagram-engine): layout + XML renderer, verified end to end in draw.io Completes the tree → coordinates → XML direction, so the model can declare nesting and never write a coordinate or an mxCell again. layout.ts — measure bottom-up, place top-down, the same shape as flexbox. A container sums its children along the flow axis and adds padding, so "child spills out of its frame" and "siblings overlap" cannot happen by construction rather than being caught afterwards. Slack from sibling equalisation is shared between children instead of left as dead margin, capped at one gap so a stretched frame reads as spaced rather than sparse. render.ts — writes the mxCells, stamping container=1 and the dai_* markers so parse.ts can read the structure back. Edges carry no waypoints: draw.io's own router recomputes the route on every edit, so a user who moves a node never has to re-link an arrow. Cells the parser could not interpret are re-emitted verbatim, so a re-layout never deletes a user's annotations. Phantoms are gone (task #5). The reference project's layout-only wrapper emits no cell, which makes the round-trip lossy by construction — measured on its own build_vpc.mjs, a phantom erased a container's "col" direction for good. An unlabelled frame here emits a real cell with fillColor/strokeColor=none instead: invisible, but present in the XML and therefore recoverable. Two bugs the round-trip test caught, both real: - An icon's cell was being emitted at its measured slot size, which includes room for the label underneath. Parsing read that width back as the glyph size, so the icon grew on every round-trip. The cell is now the glyph square and the label renders outside it via verticalLabelPosition, as the reference does. - An Azure or GCP icon is an embedded base64 image whose style contains no name anywhere, so the catalog name was unrecoverable. Added a dai_name marker. Verified in a real browser (3 Playwright tests, not mocks): engine output renders in draw.io; dragging a shape into a frame makes draw.io rewrite its parent and the engine reads the new structure back; re-laying out from that structure PRESERVES the user's move instead of undoing it, and leaves untouched nodes alone; and the re-laid-out XML still renders. That last point is the whole design: there is no second copy of the state, so a manual edit is an input to the next layout rather than a conflict to reconcile. 304 unit tests + 3 e2e.
2026-08-09 11:56:08 +09:00
return [
`${pad}${n.kind} ${n.id} ${meta} gap=${n.gap}`,
...n.children.flatMap((c) => line(c, depth + 1)),
]
}
return t.roots.flatMap((r) => line(r, 0)).join("\n")
}
/** Render then parse, returning the recovered tree. */
function roundTrip(t: DiagramTree) {
const { xml } = renderDiagram(t)
return { xml, ...parseDiagram(xml) }
}
describe("structure survives a round-trip", () => {
it("recovers a flat row", () => {
const t = tree([group("f", "row", [icon("a"), icon("b")], "Frame")])
expect(signature(roundTrip(t).tree)).toBe(signature(t))
})
it("recovers a column", () => {
const t = tree([group("f", "col", [icon("a"), icon("b")], "Frame")])
expect(signature(roundTrip(t).tree)).toBe(signature(t))
})
it("recovers a grid with its column count", () => {
const t = tree([
grid("g", 3, [icon("a"), icon("b"), icon("c"), icon("d")], "G"),
])
expect(signature(roundTrip(t).tree)).toBe(signature(t))
})
it("recovers a deep cloud-architecture nesting", () => {
const t = tree([
group(
"region",
"row",
[
group(
"vpc",
"col",
[
icon("igw", "internet_gateway", "IGW"),
group(
"az_a",
"col",
[
group(
"pub_a",
"col",
[icon("nat_a", "nat_gateway", "NAT")],
"Public Subnet",
"group_subnet",
),
group(
"app_a",
"col",
[icon("ec2_a", "ec2", "EC2")],
"Private Subnet",
"group_subnet",
),
],
"AZ-a",
"group_availability_zone",
),
],
"VPC",
"group_vpc",
),
],
"Region",
"group_region",
),
])
expect(signature(roundTrip(t).tree)).toBe(signature(t))
})
it("recovers several roots in order", () => {
const t = tree([
box("users", "Users"),
group("cloud", "row", [icon("a")], "Cloud"),
box("consumers", "Consumers"),
])
const back = roundTrip(t).tree
expect(back.roots.map((r) => r.id)).toEqual([
"users",
"cloud",
"consumers",
])
})
it("recovers the direction of an UNLABELLED wrapper — the phantom problem, fixed", () => {
// The reference project would use a phantom here, which emits no cell: its two
// children would be reparented onto vpc, and the wrapper's "row" direction would
// be gone from the XML for good. We emit a real but invisible cell instead.
const t = tree([
group(
"vpc",
"col",
[
icon("igw", "internet_gateway", "IGW"),
group(
"azs",
"row",
[
group("az_a", "col", [icon("ec2_a")], "AZ-a"),
group("az_b", "col", [icon("ec2_b")], "AZ-b"),
],
"", // no label — a layout-only wrapper
),
],
"VPC",
"group_vpc",
),
])
const back = roundTrip(t).tree
// the wrapper is still there, still a row, still holding both AZs
const azs = findNode(back, "azs")
expect(azs).not.toBeNull()
expect((azs as GroupNode).dir).toBe("row")
expect(findParent(back, "az_a")?.id).toBe("azs")
expect(findParent(back, "azs")?.id).toBe("vpc")
// and vpc kept its own direction instead of collapsing into a grid
expect((findNode(back, "vpc") as GroupNode).dir).toBe("col")
expect(signature(back)).toBe(signature(t))
})
it("keeps the wrapper invisible", () => {
const t = tree([
group("w", "row", [icon("a"), icon("b")], ""), // unlabelled → invisible
])
const { xml } = renderDiagram(t)
const cell = xml.match(/<mxCell id="w"[^>]*style="([^"]*)"/)?.[1] ?? ""
expect(cell).toContain("fillColor=none")
expect(cell).toContain("strokeColor=none")
// ...but it is still a real container, so draw.io reparents into it
expect(cell).toContain("container=1")
})
it("keeps a labelled frame visible", () => {
const t = tree([group("f", "row", [icon("a")], "Visible")])
const { xml } = renderDiagram(t)
const style = xml.match(/<mxCell id="f"[^>]*style="([^"]*)"/)?.[1] ?? ""
expect(style).not.toContain("strokeColor=none")
})
it("survives repeated round-trips without drift", () => {
const t = tree([
group(
"outer",
"row",
[
group("a", "col", [icon("x"), icon("y")], "A"),
grid("g", 2, [icon("p"), icon("q"), icon("r")], "G"),
],
"Outer",
),
])
const once = roundTrip(t).tree
const twice = roundTrip(once).tree
const thrice = roundTrip(twice).tree
expect(signature(twice)).toBe(signature(once))
expect(signature(thrice)).toBe(signature(once))
})
it("keeps geometry stable across repeated round-trips", () => {
const t = tree([group("f", "row", [icon("a"), icon("b")], "F")])
const first = renderDiagram(t)
const second = renderDiagram(parseDiagram(first.xml).tree)
expect(second.page).toEqual(first.page)
})
})
describe("labels and content survive", () => {
it("recovers labels on containers and leaves", () => {
const t = tree([
group(
"f",
"row",
[icon("a", "s3", "My Bucket"), box("b", "A Box")],
"My Frame",
),
])
const back = roundTrip(t).tree
expect((findNode(back, "f") as ContainerNode).label).toBe("My Frame")
expect((findNode(back, "a") as IconNode).label).toBe("My Bucket")
expect((findNode(back, "b") as BoxNode).label).toBe("A Box")
})
it("recovers a label containing XML metacharacters", () => {
const nasty = "A & B <tag> \"quoted\" 'apostrophe'"
const t = tree([group("f", "row", [box("b", nasty)], nasty)])
const back = roundTrip(t).tree
expect((findNode(back, "b") as BoxNode).label).toBe(nasty)
expect((findNode(back, "f") as ContainerNode).label).toBe(nasty)
})
it("recovers the page title", () => {
const t = tree([group("f", "row", [icon("a")], "F")], {
title: "My Architecture",
})
expect(roundTrip(t).tree.title).toBe("My Architecture")
})
it("recovers a gap that is not the default", () => {
const t = tree([
group("f", "row", [icon("a"), icon("b")], "F", null, 47),
])
expect((findNode(roundTrip(t).tree, "f") as GroupNode).gap).toBe(47)
})
it("recovers an icon's catalog name", () => {
const t = tree([
group(
"f",
"row",
[icon("a", "nat_gateway"), icon("b", "rds")],
"F",
),
])
const back = roundTrip(t).tree
expect((findNode(back, "a") as IconNode).name).toBe("nat_gateway")
expect((findNode(back, "b") as IconNode).name).toBe("rds")
})
it("recovers a group stencil name", () => {
const t = tree([group("v", "col", [icon("a")], "VPC", "group_vpc")])
const { xml } = renderDiagram(t, {
resolveStyle: (name, kind) =>
kind === "group"
? `shape=mxgraph.aws4.group;grIcon=mxgraph.aws4.${name};fillColor=none;strokeColor=#8C4FFF;verticalAlign=top;align=left;`
: null,
})
feat(diagram-engine): flowcharts, swimlanes, sequence diagrams and mind maps Extends the declarative engine past cloud architecture. The tool routing was divided by icon library — AWS through the engine, everything else hand-written XML — which is the wrong axis. What matters is the LAYOUT SHAPE. Measured first: a six-step approval flow declared in its natural order comes out as one column, because the layout only arranges what nesting tells it to and never looked at the arrows. That forces the arrow from the decision to its second branch to jump over the first branch. graph.ts computes what the layout should have looked at: layer assignment by longest path, cycle breaking so a loop is drawn without setting the order, and barycentre sweeping to cut edge crossings. It emits ordinary container operations, so layout, routing and round-tripping are unchanged — reaching zero arrows-through-boxes on a 14-node pipeline and zero crossings on a bipartite graph whose declared order forces three. Three new container kinds, each because one layout rule cannot serve them all: pool — swimlanes. Lanes are real cells and each step is parented to its band, so dragging a step to another role records the change. sequence — participants across the top, one lifeline cell per participant so head and line stay together on a drag. Messages bypass the router: a message's height IS its order. radial — mind maps and org charts. Children are a flat list and the hierarchy comes from the links, because a branch is a box and a box cannot hold children. Flowchart box shapes (diamond, stadium, parallelogram, document) so a reader can tell a branch from a step. Two bugs the new tests caught: the duplicate-link guard blocked a sequence diagram from having two messages between the same pair, and the fallback message numbering was shared across containers, pushing a second diagram's messages off its own lifelines. 523 unit tests and 17 diagram e2e tests pass. Every kind verified round-trip stable to a fixed point, and rendered in a real browser — draw.io keeps the lifeline shape and the lane markers.
2026-08-09 13:47:23 +09:00
expect((findNode(parseDiagram(xml).tree, "v") as GroupNode).gname).toBe(
"group_vpc",
)
feat(diagram-engine): layout + XML renderer, verified end to end in draw.io Completes the tree → coordinates → XML direction, so the model can declare nesting and never write a coordinate or an mxCell again. layout.ts — measure bottom-up, place top-down, the same shape as flexbox. A container sums its children along the flow axis and adds padding, so "child spills out of its frame" and "siblings overlap" cannot happen by construction rather than being caught afterwards. Slack from sibling equalisation is shared between children instead of left as dead margin, capped at one gap so a stretched frame reads as spaced rather than sparse. render.ts — writes the mxCells, stamping container=1 and the dai_* markers so parse.ts can read the structure back. Edges carry no waypoints: draw.io's own router recomputes the route on every edit, so a user who moves a node never has to re-link an arrow. Cells the parser could not interpret are re-emitted verbatim, so a re-layout never deletes a user's annotations. Phantoms are gone (task #5). The reference project's layout-only wrapper emits no cell, which makes the round-trip lossy by construction — measured on its own build_vpc.mjs, a phantom erased a container's "col" direction for good. An unlabelled frame here emits a real cell with fillColor/strokeColor=none instead: invisible, but present in the XML and therefore recoverable. Two bugs the round-trip test caught, both real: - An icon's cell was being emitted at its measured slot size, which includes room for the label underneath. Parsing read that width back as the glyph size, so the icon grew on every round-trip. The cell is now the glyph square and the label renders outside it via verticalLabelPosition, as the reference does. - An Azure or GCP icon is an embedded base64 image whose style contains no name anywhere, so the catalog name was unrecoverable. Added a dai_name marker. Verified in a real browser (3 Playwright tests, not mocks): engine output renders in draw.io; dragging a shape into a frame makes draw.io rewrite its parent and the engine reads the new structure back; re-laying out from that structure PRESERVES the user's move instead of undoing it, and leaves untouched nodes alone; and the re-laid-out XML still renders. That last point is the whole design: there is no second copy of the state, so a manual edit is an input to the next layout rather than a conflict to reconcile. 304 unit tests + 3 e2e.
2026-08-09 11:56:08 +09:00
})
})
describe("edges survive", () => {
it("recovers source, target and label", () => {
const t = tree([group("f", "row", [icon("a"), icon("b")], "F")], {
links: [{ source: "a", target: "b", label: "flows to" }],
})
const back = roundTrip(t).tree
expect(back.links).toHaveLength(1)
expect(back.links[0].source).toBe("a")
expect(back.links[0].target).toBe("b")
expect(back.links[0].label).toBe("flows to")
})
it("recovers a step number and keeps it out of the label", () => {
const t = tree([group("f", "row", [icon("a"), icon("b")], "F")], {
links: [{ source: "a", target: "b", label: "HTTPS", step: 1 }],
})
const back = roundTrip(t).tree
expect(back.links[0].step).toBe(1)
expect(back.links[0].label).toBe("HTTPS")
})
it("recovers a dashed edge", () => {
const t = tree([group("f", "row", [icon("a"), icon("b")], "F")], {
links: [{ source: "a", target: "b", dashed: true }],
})
expect(roundTrip(t).tree.links[0].dashed).toBe(true)
})
it("drops an edge with a missing endpoint and reports it", () => {
const t = tree([group("f", "row", [icon("a")], "F")], {
links: [{ source: "a", target: "ghost" }],
})
const r = renderDiagram(t)
expect(r.danglingLinks).toEqual(["ghost"])
expect(r.xml).not.toContain('target="ghost"')
})
it("emits no waypoints, so draw.io re-routes when the user moves a node", () => {
const t = tree([group("f", "row", [icon("a"), icon("b")], "F")], {
links: [{ source: "a", target: "b", label: "x" }],
})
expect(renderDiagram(t).xml).not.toContain('as="points"')
})
})
describe("foreign cells survive", () => {
it("re-emits an unrecognised cell verbatim", () => {
const custom =
'<mxCell id="note" value="hand-written note" style="shape=note;whiteSpace=wrap;html=1;fillColor=#FFF2CC;" vertex="1" parent="1"><mxGeometry x="900" y="40" width="160" height="80" as="geometry"/></mxCell>'
const t = tree([group("f", "row", [icon("a")], "F")], {
foreign: [{ id: "note", xml: custom, parent: "1" }],
})
expect(renderDiagram(t).xml).toContain(custom)
})
it("re-creates the boundaries layer when a foreign cell needs it", () => {
const t = tree([group("f", "row", [icon("a")], "F")], {
foreign: [
{
id: "cluster",
xml: '<mxCell id="cluster" value="EKS" style="dashed=1;fillColor=none;" vertex="1" parent="boundaries"><mxGeometry x="0" y="0" width="100" height="50" as="geometry"/></mxCell>',
parent: "boundaries",
},
],
})
const { xml } = renderDiagram(t)
expect(xml).toContain('<mxCell id="boundaries"')
expect(xml.indexOf('id="boundaries"')).toBeLessThan(
xml.indexOf('parent="boundaries"'),
)
})
it("lets an edge anchor to a foreign cell", () => {
const t = tree([group("f", "row", [icon("a")], "F")], {
foreign: [
{
id: "legend",
xml: '<mxCell id="legend" value="L" style="rounded=0;" vertex="1" parent="1"><mxGeometry x="0" y="0" width="50" height="50" as="geometry"/></mxCell>',
parent: "1",
},
],
links: [{ source: "a", target: "legend" }],
})
const r = renderDiagram(t)
expect(r.danglingLinks).toEqual([])
expect(r.xml).toContain('target="legend"')
})
})
describe("the emitted XML is well formed for draw.io", () => {
const t = tree(
[
group(
"region",
"row",
[
group(
"vpc",
"col",
[icon("a"), icon("b")],
"VPC",
"group_vpc",
),
],
"Region",
"group_region",
),
],
{ title: "T", links: [{ source: "a", target: "b" }] },
)
const { xml } = renderDiagram(t)
it("wraps the model in mxfile/diagram", () => {
expect(xml.startsWith("<mxfile")).toBe(true)
expect(xml).toContain("<diagram")
expect(xml).toContain("<mxGraphModel")
})
it("includes the two root cells draw.io requires", () => {
expect(xml).toContain('<mxCell id="0"/>')
expect(xml).toContain('<mxCell id="1" parent="0"/>')
})
it("declares a parent before any cell that references it", () => {
expect(xml.indexOf('id="region"')).toBeLessThan(
xml.indexOf('parent="region"'),
)
expect(xml.indexOf('id="vpc"')).toBeLessThan(
xml.indexOf('parent="vpc"'),
)
})
it("gives every cell a unique id", () => {
const ids = [...xml.matchAll(/<mxCell id="([^"]+)"/g)].map((m) => m[1])
expect(new Set(ids).size).toBe(ids.length)
})
it("sets the page size from the content", () => {
const w = Number(xml.match(/pageWidth="(\d+)"/)?.[1])
const h = Number(xml.match(/pageHeight="(\d+)"/)?.[1])
expect(w).toBeGreaterThan(0)
expect(h).toBeGreaterThan(0)
})
it("writes nested geometry relative to the parent, as draw.io expects", () => {
// vpc sits inside region, so its x must be small — an absolute x would push it
// outside the frame when draw.io adds the parent offset.
const vpcGeo = xml.match(
/<mxCell id="vpc"[^>]*>\s*<mxGeometry x="(-?\d+)"/,
)?.[1]
expect(Number(vpcGeo)).toBeLessThan(100)
})
it("stamps container=1 on containers so drag-and-drop reparents correctly", () => {
// Verified in-browser: without this, a shape dragged into the frame keeps
// parent="1" and the nesting is lost.
const regionStyle =
xml.match(/<mxCell id="region"[^>]*style="([^"]*)"/)?.[1] ?? ""
expect(regionStyle).toContain("container=1")
})
it("does not stamp container=1 on a leaf", () => {
const iconStyle =
xml.match(/<mxCell id="a"[^>]*style="([^"]*)"/)?.[1] ?? ""
expect(iconStyle).not.toContain("container=1")
})
})
describe("user edits are inputs, not conflicts", () => {
it("keeps a hand-changed fill through a re-layout", () => {
// The user recoloured a box in draw.io. Re-deriving the tree picks up the style
// verbatim, so re-rendering preserves the colour rather than resetting it.
const t = tree([group("f", "row", [icon("a"), box("b", "Box")], "F")])
const first = renderDiagram(t).xml
const edited = first.replace(
/(<mxCell id="b"[^>]*style=")([^"]*)"/,
'$1$2fillColor=#FF0000;"',
)
const back = parseDiagram(edited).tree
expect(renderDiagram(back).xml).toContain("fillColor=#FF0000")
})
it("re-lays-out around a node the user dragged into a different frame", () => {
// Two frames; the user moves icon "b" from f1 into f2. draw.io rewrites the
// parent attribute (container=1 is in place), so the next layout puts it inside
// f2 — no reconciliation step, the canvas simply says where things are.
const t = tree([
group(
"root",
"row",
[
group("f1", "col", [icon("a"), icon("b")], "F1"),
group("f2", "col", [icon("c")], "F2"),
],
"Root",
),
])
const first = renderDiagram(t).xml
const moved = first.replace(
/(<mxCell id="b"[^>]*)parent="f1"/,
'$1parent="f2"',
)
const back = parseDiagram(moved).tree
expect(findParent(back, "b")?.id).toBe("f2")
// and the re-render keeps it there, sized to fit
const again = parseDiagram(renderDiagram(back).xml).tree
expect(findParent(again, "b")?.id).toBe("f2")
})
it("honours a pin the user added by hand in Edit Style", () => {
const t = tree([box("pin", "Pinned"), box("flow", "Flow")])
const first = renderDiagram(t).xml
const pinned = first.replace(
/(<mxCell id="pin"[^>]*style="[^"]*)"/,
'$1dai_pin=1;"',
)
const back = parseDiagram(pinned).tree
const node = findNode(back, "pin") as BoxNode
expect(node.pinned).toBe(true)
const pos = node.rect
// re-rendering leaves the pinned node exactly where it was
const again = parseDiagram(renderDiagram(back).xml).tree
expect((findNode(again, "pin") as BoxNode).rect).toEqual(pos)
})
it("does not lose a cell the user added by hand", () => {
const t = tree([group("f", "row", [icon("a")], "F")])
const first = renderDiagram(t).xml
// user drops a new shape on the canvas
const withNew = first.replace(
"</root>",
'<mxCell id="userbox" value="Mine" style="rounded=1;whiteSpace=wrap;html=1;" vertex="1" parent="1"><mxGeometry x="800" y="400" width="120" height="60" as="geometry"/></mxCell></root>',
)
const back = parseDiagram(withNew).tree
const ids = [...walkTree(back)].map((n) => n.id)
expect(ids).toContain("userbox")
expect(renderDiagram(back).xml).toContain('id="userbox"')
})
})