Files
confidence-engine/tests/graph/reopen-resolved-unknown.test.js

204 lines
6.6 KiB
JavaScript

import { describe, expect, it } from "vitest";
import { reopenResolvedUnknown } from "@/lib/graph/reopen-resolved-unknown.js";
function makeTestGraph() {
return {
centralStatement: "Should we enter the European market?",
currentSummary: "We have some initial understanding.",
nodes: [
{
id: "u-1",
label: "Whether there is genuine demand for our category in Europe",
description: "Need to validate European demand.",
kind: "unknown",
status: "resolved",
confidence: "high",
evidenceIds: ["e-1"],
dependsOn: [],
affects: [],
},
{
id: "u-2",
label: "Whether our product is suitable for European compliance requirements",
description: "Compliance question.",
kind: "unknown",
status: "resolved",
confidence: "medium",
evidenceIds: ["e-2"],
dependsOn: [],
affects: [],
},
{
id: "u-3",
label: "Whether the cost is justified by market size",
description: "Cost-benefit question.",
kind: "unknown",
status: "unknown",
confidence: "medium",
evidenceIds: [],
dependsOn: ["u-2"],
affects: [],
},
{
id: "obs-1",
label: "Current revenue is $2M ARR.",
description: "Financial observation.",
kind: "observation",
status: "known",
confidence: "high",
evidenceIds: [],
dependsOn: [],
affects: [],
},
{
id: "state-1",
label: "Evaluating European market entry",
kind: "state",
status: "provisional",
confidence: "medium",
evidenceIds: [],
dependsOn: [],
affects: [],
},
],
edges: [
{ fromNodeId: "u-2", toNodeId: "u-3" },
],
resolvedNodeIds: ["u-1", "u-2"],
};
}
describe("reopenResolvedUnknown — pure deterministic transformation", () => {
describe("resolved unknown target", () => {
it("sets canonical unresolved status on target node", () => {
const graph = makeTestGraph();
const result = reopenResolvedUnknown(graph, "u-1");
const targetNode = result.nodes.find((n) => n.id === "u-1");
expect(targetNode.status).toBe("unknown");
});
it("preserves same node identity (id unchanged)", () => {
const graph = makeTestGraph();
const result = reopenResolvedUnknown(graph, "u-1");
const targetNode = result.nodes.find((n) => n.id === "u-1");
expect(targetNode.id).toBe("u-1");
});
it("removes node ID from resolvedNodeIds", () => {
const graph = makeTestGraph();
const result = reopenResolvedUnknown(graph, "u-1");
expect(result.resolvedNodeIds).not.toContain("u-1");
});
it("preserves other resolvedNodeIds (unrelated state)", () => {
const graph = makeTestGraph();
const result = reopenResolvedUnknown(graph, "u-1");
expect(result.resolvedNodeIds).toContain("u-2");
});
it("preserves all unrelated node properties", () => {
const graph = makeTestGraph();
const result = reopenResolvedUnknown(graph, "u-1");
const u2 = result.nodes.find((n) => n.id === "u-2");
expect(u2.status).toBe("resolved");
expect(u2.confidence).toBe("medium");
expect(u2.label).toBe("Whether our product is suitable for European compliance requirements");
const obs1 = result.nodes.find((n) => n.id === "obs-1");
expect(obs1.status).toBe("known");
expect(obs1.kind).toBe("observation");
});
it("preserves all edges", () => {
const graph = makeTestGraph();
const result = reopenResolvedUnknown(graph, "u-1");
expect(result.edges).toHaveLength(1);
expect(result.edges[0].fromNodeId).toBe("u-2");
expect(result.edges[0].toNodeId).toBe("u-3");
});
it("preserves centralStatement and currentSummary", () => {
const graph = makeTestGraph();
const result = reopenResolvedUnknown(graph, "u-1");
expect(result.centralStatement).toBe("Should we enter the European market?");
expect(result.currentSummary).toBe("We have some initial understanding.");
});
it("does not mutate input graph", () => {
const graph = makeTestGraph();
reopenResolvedUnknown(graph, "u-1");
const targetNode = graph.nodes.find((n) => n.id === "u-1");
expect(targetNode.status).toBe("resolved");
const u2 = graph.nodes.find((n) => n.id === "u-2");
expect(u2.status).toBe("resolved");
expect(graph.resolvedNodeIds).toContain("u-1");
});
});
describe("canonical resolved-node-ID target", () => {
it("reopens an unknown-status node marked resolved by graph state without mutating input", () => {
const graph = makeTestGraph();
graph.nodes[0] = { ...graph.nodes[0], status: "unknown" };
const result = reopenResolvedUnknown(graph, "u-1");
const targetNode = result.nodes.find((n) => n.id === "u-1");
expect(targetNode.kind).toBe("unknown");
expect(targetNode.status).toBe("unknown");
expect(result.resolvedNodeIds).not.toContain("u-1");
expect(result.resolvedNodeIds).toContain("u-2");
expect(graph.nodes.find((n) => n.id === "u-1").status).toBe("unknown");
expect(graph.resolvedNodeIds).toContain("u-1");
});
});
describe("invalid/no-op cases", () => {
it("returns original graph when node does not exist", () => {
const graph = makeTestGraph();
const result = reopenResolvedUnknown(graph, "nonexistent");
expect(result).toBe(graph);
expect(result.nodes.find((n) => n.id === "u-1").status).toBe("resolved");
expect(result.resolvedNodeIds).toContain("u-1");
});
it("returns original graph when node is already unresolved", () => {
const graph = makeTestGraph();
const result = reopenResolvedUnknown(graph, "u-3");
expect(result).toBe(graph);
expect(result.resolvedNodeIds).toContain("u-1");
expect(result.resolvedNodeIds).toContain("u-2");
});
it("returns original graph when node is not an unknown kind", () => {
const graph = makeTestGraph();
const result = reopenResolvedUnknown(graph, "obs-1");
expect(result).toBe(graph);
});
it("returns original graph when input graph is null", () => {
expect(reopenResolvedUnknown(null, "u-1")).toBeNull();
});
it("returns original graph when input graph has no nodes", () => {
const graph = makeTestGraph();
const noNodes = { ...graph, nodes: [] };
const result = reopenResolvedUnknown(noNodes, "u-1");
expect(result).toBe(noNodes);
});
});
});