experiment: test decision-relevance ambiguity handling
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/**
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* Experiment 52F — Will the Normaliser Admit When the Category Boundary Is Genuinely Unclear?
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*
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* Passive contract-boundary experiment. Tests whether the existing decision-relevance normalisation
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* contract can preserve ambiguity instead of forcing an unclear relationship into a stronger category.
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*
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* Four fixed relationship statements. Four live inference calls. One per case.
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* Uses exactly the same category definitions and normalisation instruction as Experiment 52E.
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* Does not change any production code, category definitions, classifier, or active engine.
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*/
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import dotenv from "dotenv";
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dotenv.config({ path: ".env.local" });
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import { describe, it, expect, beforeAll } from "vitest";
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/* ═══════════════════════════════════════════════════════════
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* Enum categories (unchanged from production contract)
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* ═══════════════════════════════════════════════════════════ */
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const ENUM_CATEGORIES = [
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"could_change_decision",
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"supports_decision",
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"unlikely_to_change_decision",
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"cannot_determine",
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];
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/* ═══════════════════════════════════════════════════════════
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* Category definitions — identical to Experiment 52E and production
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* ═══════════════════════════════════════════════════════════ */
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const CATEGORY_DEFINITIONS = {
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could_change_decision:
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"Answering could reasonably reverse the proposed action — it is a go/no-go condition or materially affects viability.",
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supports_decision:
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"Answering improves confidence or evidence for the decision but is less likely to reverse it alone.",
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unlikely_to_change_decision:
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"Answering may be interesting but is unlikely to materially affect the decision.",
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cannot_determine:
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"The relationship is too unclear or information is insufficient to judge relevance to a specific decision.",
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};
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/* ═══════════════════════════════════════════════════════════
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* Normalisation instruction — identical to Experiment 52E
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* ═══════════════════════════════════════════════════════════ */
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const NORMALISATION_INSTRUCTION = `You are given a short statement describing how an unanswered question relates to a decision. That relationship has already been understood correctly — your job is only to map it into one of these four categories:
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- "could_change_decision" — answering could reasonably reverse the proposed action; it is a go/no-go condition or materially affects viability.
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- "supports_decision" — answering improves confidence or evidence for the decision but is less likely to reverse it alone.
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- "unlikely_to_change_decision" — answering may be interesting but is unlikely to materially affect the decision.
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- "cannot_determine" — the relationship is too unclear or information is insufficient to judge relevance to a specific decision.
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Do not reinterpret the original situation — you have not been given it. You have only the relationship statement above and these category definitions. Choose the category that best matches the relationship statement.
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Return only valid JSON using this schema: {"relevance": "<one of the four values>", "reason": "<short factual explanation based only on the supplied relationship>"}
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Do not include any other keys.`;
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/* ═══════════════════════════════════════════════════════════
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* Inline Ollama helper — one call per case, relationship-only input
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* ═══════════════════════════════════════════════════════════ */
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function makeOllamaBody(instruction, relationship) {
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return JSON.stringify({
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model: process.env.OLLAMA_MODEL || "qwen-claude:latest",
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messages: [
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{ role: "system", content: instruction },
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{
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role: "user",
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content: `Relationship: "${relationship}"`,
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},
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],
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format: "json",
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stream: false,
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});
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}
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async function callAmbiguityTest(relationship) {
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const baseUrl = process.env.OLLAMA_BASE_URL;
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if (!baseUrl) throw new Error("OLLAMA_BASE_URL is not set");
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const model = process.env.OLLAMA_MODEL || "qwen-claude:latest";
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const body = makeOllamaBody(NORMALISATION_INSTRUCTION, relationship);
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const res = await fetch(`${baseUrl}/api/chat`, {
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method: "POST",
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headers: { "Content-Type": "application/json" },
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body,
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signal: AbortSignal.timeout(120000),
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});
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if (!res.ok) throw new Error(`Ollama returned ${res.status}`);
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const data = await res.json();
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const rawText =
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typeof data.message?.content === "string"
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? data.message.content
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: JSON.stringify(data.message?.content || {});
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return { result: JSON.parse(rawText), model };
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}
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/* ═══════════════════════════════════════════════════════════
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* Four fixed relationship statements (fixed before any model call)
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* ═══════════════════════════════════════════════════════════ */
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const CASES = [
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{
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id: "case1-clear-blocker",
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description: "Clear blocker control",
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relationship:
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"If the product cannot satisfy the required regulations, entering the market cannot legally proceed.",
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expectedEnum: "could_change_decision",
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},
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{
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id: "case2-clear-support",
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description: "Clear support control",
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relationship:
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"Evidence that the product already meets commonly expected regulatory standards would increase confidence in entering the market, but would not determine the decision by itself.",
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expectedEnum: "supports_decision",
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},
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{
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id: "case3-ambiguous",
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description: "Genuinely ambiguous",
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relationship:
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"Understanding the regulatory position would be important to the market-entry decision.",
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expectedEnum: "cannot_determine",
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},
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{
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id: "case4-ambiguous-condition",
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description: "Ambiguous condition",
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relationship:
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"Regulatory compliance is an important condition to consider when deciding whether to enter the market.",
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expectedEnum: "cannot_determine",
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},
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];
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/* ═══════════════════════════════════════════════════════════
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* External-assumption diagnostic helper
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* ═══════════════════════════════════════════════════════════ */
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function checkGrounding(expectedEnum, reason, relationship) {
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if (expectedEnum !== "cannot_determine") return "grounded_only_in_statement";
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const reasonLower = reason.toLowerCase();
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// Check if the model introduces external assumptions about regulation being a blocker
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// rather than reasoning from the supplied statement alone
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const externalAssumptionSignals = [
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/regulatory.*always|compliance.*always|regulation.*must.*block|regulation.*mandatory.*requirement/i,
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/legal.*prerequisite|cannot proceed without|strictly required|legally mandatory/i,
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/by definition.*regul|inherently.*blocking|necessarily.*prevent/i,
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];
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const hasExternalSignal = externalAssumptionSignals.some((p) => p.test(reasonLower));
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// Check if the model grounds its reasoning only in what the statement actually says
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// vs importing outside knowledge that regulation is always a blocker
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return hasExternalSignal ? "introduced_external_assumption" : "grounded_only_in_statement";
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}
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/* ═══════════════════════════════════════════════════════════
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* Results holder — populated by beforeAll (4 calls total)
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* ═══════════════════════════════════════════════════════════ */
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let experimentResults = {};
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let inferenceCount = 0;
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let timingStats = { min: Infinity, max: 0, total: 0 };
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let modelFailureReason = null;
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beforeAll(async () => {
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experimentResults = {};
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for (const c of CASES) {
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let result = null;
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let latency = 0;
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const t0 = Date.now();
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try {
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result = await callAmbiguityTest(c.relationship);
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latency = Date.now() - t0;
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} catch (e) {
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modelFailureReason = `case ${c.id}: ${e.message}`;
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result = { result: null };
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}
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timingStats.min = Math.min(timingStats.min, latency);
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timingStats.max = Math.max(timingStats.max, latency);
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timingStats.total += latency;
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experimentResults[c.id] = {
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description: c.description,
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relationship: c.relationship,
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expectedEnum: c.expectedEnum,
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returnedEnum: result.result?.relevance || "error",
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reason: result.result?.reason || "none",
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model: result.model,
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latencyMs: latency,
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};
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inferenceCount += 1;
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}
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}, 600000);
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/* ═══════════════════════════════════════════════════════════
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* Infrastructure assertions — exactly 4 calls, same config, production unchanged
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* ═══════════════════════════════════════════════════════════ */
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describe("Experiment 52F — Infrastructure", () => {
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it("uses Ollama config from .env.local", () => {
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expect(process.env.OLLAMA_BASE_URL).toBeTruthy();
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expect(process.env.OLLAMA_MODEL).toBe("qwen-claude:latest");
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});
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it("all returned enums belong to the existing four-category contract", () => {
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for (const c of CASES) {
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const r = experimentResults[c.id]?.returnedEnum;
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expect(ENUM_CATEGORIES).toContain(r);
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}
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});
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it("all cases include a reason string", () => {
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for (const c of CASES) {
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const r = experimentResults[c.id]?.reason;
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expect(typeof r).toBe("string");
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expect(r.length).toBeGreaterThan(0);
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}
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});
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it("same Ollama host used throughout", () => {
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expect(process.env.OLLAMA_BASE_URL).toBe("http://192.168.1.111:11434");
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});
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it("same model (qwen-claude:latest) used throughout", () => {
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for (const c of CASES) {
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expect(experimentResults[c.id]?.model).toBe("qwen-claude:latest");
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}
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});
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it("exactly 4 live inference calls were made", () => {
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expect(inferenceCount).toBe(4);
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});
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it("normalisation instruction is identical for all four calls", () => {
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expect(typeof NORMALISATION_INSTRUCTION).toBe("string");
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expect(NORMALISATION_INSTRUCTION.length).toBeGreaterThan(0);
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});
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it("fixed expected enums before any live call — structure check", () => {
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let blockerCount = 0;
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let supportingCount = 0;
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let ambiguousCount = 0;
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for (const c of CASES) {
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if (c.expectedEnum === "could_change_decision") blockerCount++;
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if (c.expectedEnum === "supports_decision") supportingCount++;
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if (c.expectedEnum === "cannot_determine") ambiguousCount++;
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}
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expect(blockerCount).toBe(1);
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expect(supportingCount).toBe(1);
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expect(ambiguousCount).toBe(2);
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});
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it("only the relationship statement is supplied to each case", () => {
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for (const c of CASES) {
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expect(c.relationship).toBeTruthy();
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expect(typeof c.relationship).toBe("string");
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expect(c).not.toHaveProperty("decisionTarget");
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expect(c).not.toHaveProperty("question");
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}
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});
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it("category definitions unchanged from production", () => {
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const expectedKeys = Object.keys(CATEGORY_DEFINITIONS);
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expect(expectedKeys).toContain("could_change_decision");
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expect(expectedKeys).toContain("supports_decision");
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expect(expectedKeys).toContain("unlikely_to_change_decision");
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expect(expectedKeys).toContain("cannot_determine");
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expect(CATEGORY_DEFINITIONS.could_change_decision).toMatch(/go\/no-go|materially affects viability/i);
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expect(CATEGORY_DEFINITIONS.supports_decision).toMatch(/improves confidence|less likely to reverse/i);
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});
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});
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/* ═══════════════════════════════════════════════════════════
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* Case 1 — Clear blocker control
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* ═══════════════════════════════════════════════════════════ */
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describe("Experiment 52F — Case 1: Clear blocker", () => {
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it("maps to could_change_decision with match", () => {
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const r = experimentResults["case1-clear-blocker"];
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expect(r.returnedEnum).toBe(r.expectedEnum);
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expect(typeof r.reason).toBe("string");
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expect(r.reason.length).toBeGreaterThan(0);
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});
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it("grounds reasoning in the supplied statement only", () => {
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const r = experimentResults["case1-clear-blocker"];
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const reasonLower = r.reason.toLowerCase();
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// The relationship says "cannot legally proceed" — the model should reference that, not invent external regulation facts
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expect(reasonLower).toMatch(/legally.*proceed|cannot.*proceed|blocker|go\/no-go|must.*satisfy/);
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});
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});
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/* ═══════════════════════════════════════════════════════════
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* Case 2 — Clear support control
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* ═══════════════════════════════════════════════════════════ */
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describe("Experiment 52F — Case 2: Clear supporting evidence", () => {
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it("maps to supports_decision with match", () => {
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const r = experimentResults["case2-clear-support"];
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expect(r.returnedEnum).toBe(r.expectedEnum);
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expect(typeof r.reason).toBe("string");
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expect(r.reason.length).toBeGreaterThan(0);
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});
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it("grounds reasoning in the supplied statement only", () => {
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const r = experimentResults["case2-clear-support"];
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const reasonLower = r.reason.toLowerCase();
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// The relationship explicitly says "increase confidence" and "would not determine"
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expect(reasonLower).toMatch(/confidence|evidence|improves.*support|not.*determine/);
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});
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});
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/* ═══════════════════════════════════════════════════════════
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* Case 3 — Genuinely ambiguous
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* ═══════════════════════════════════════════════════════════ */
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describe("Experiment 52F — Case 3: Ambiguous relationship", () => {
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it("returns its enum result", () => {
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const r = experimentResults["case3-ambiguous"];
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expect(ENUM_CATEGORIES).toContain(r.returnedEnum);
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expect(typeof r.reason).toBe("string");
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expect(r.reason.length).toBeGreaterThan(0);
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});
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it("expected enum is cannot_determine", () => {
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const r = experimentResults["case3-ambiguous"];
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expect(r.expectedEnum).toBe("cannot_determine");
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});
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it("grounding check for case 3", () => {
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const r = experimentResults["case3-ambiguous"];
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const grounding = checkGrounding(r.expectedEnum, r.reason, r.relationship);
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expect(grounding).toBeTruthy();
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// Log the result
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console.log(`Case 3 grounding: ${grounding}`);
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});
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});
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/* ═══════════════════════════════════════════════════════════
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* Case 4 — Ambiguous condition
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* ═══════════════════════════════════════════════════════════ */
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describe("Experiment 52F — Case 4: Ambiguous condition", () => {
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it("returns its enum result", () => {
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const r = experimentResults["case4-ambiguous-condition"];
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expect(ENUM_CATEGORIES).toContain(r.returnedEnum);
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expect(typeof r.reason).toBe("string");
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expect(r.reason.length).toBeGreaterThan(0);
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});
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it("expected enum is cannot_determine", () => {
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const r = experimentResults["case4-ambiguous-condition"];
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expect(r.expectedEnum).toBe("cannot_determine");
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});
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it("grounding check for case 4", () => {
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const r = experimentResults["case4-ambiguous-condition"];
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const grounding = checkGrounding(r.expectedEnum, r.reason, r.relationship);
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expect(grounding).toBeTruthy();
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// Log the result
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console.log(`Case 4 grounding: ${grounding}`);
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});
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});
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/* ═══════════════════════════════════════════════════════════
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* Overall results — match assessment
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* ═══════════════════════════════════════════════════════════ */
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describe("Experiment 52F — Overall results", () => {
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it("reports all matches and mismatches", () => {
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for (const c of CASES) {
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const r = experimentResults[c.id];
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const match = r.returnedEnum === r.expectedEnum ? "match" : "mismatch";
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console.log(
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`[${c.description}] ${c.id}: expected=${r.expectedEnum} | returned=${r.returnedEnum} | ${match} | ` +
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`reason="${r.reason}" | latency=${r.latencyMs}ms`
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);
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}
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});
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it("clear controls (cases 1 & 2) both match", () => {
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const r1 = experimentResults["case1-clear-blocker"];
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const r2 = experimentResults["case2-clear-support"];
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expect(r1.returnedEnum).toBe(r1.expectedEnum);
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expect(r2.returnedEnum).toBe(r2.expectedEnum);
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});
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it("ambiguous cases (3 & 4) evaluate to cannot_determine", () => {
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const r3 = experimentResults["case3-ambiguous"];
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const r4 = experimentResults["case4-ambiguous-condition"];
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// These assertions will fail if the model forces them into stronger categories
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// — that failure is itself a finding we want to surface
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expect(r3.returnedEnum).toBe("cannot_determine");
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expect(r4.returnedEnum).toBe("cannot_determine");
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});
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it("clear-control match count", () => {
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const r1 = experimentResults["case1-clear-blocker"];
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const r2 = experimentResults["case2-clear-support"];
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let clearMatchCount = 0;
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if (r1.returnedEnum === r1.expectedEnum) clearMatchCount++;
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if (r2.returnedEnum === r2.expectedEnum) clearMatchCount++;
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expect(clearMatchCount).toBe(2);
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});
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it("cannot_determine count for ambiguous cases", () => {
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const r3 = experimentResults["case3-ambiguous"];
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const r4 = experimentResults["case4-ambiguous-condition"];
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let canNotDetermineCount = 0;
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if (r3.returnedEnum === "cannot_determine") canNotDetermineCount++;
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if (r4.returnedEnum === "cannot_determine") canNotDetermineCount++;
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expect(canNotDetermineCount).toBe(2);
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});
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it("external-assumption diagnostic for ambiguous cases", () => {
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const r3 = experimentResults["case3-ambiguous"];
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const r4 = experimentResults["case4-ambiguous-condition"];
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const g3 = checkGrounding(r3.expectedEnum, r3.reason, r3.relationship);
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const g4 = checkGrounding(r4.expectedEnum, r4.reason, r4.relationship);
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console.log(`External assumption Case 3: ${g3}`);
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console.log(`External assumption Case 4: ${g4}`);
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// Document whether either case introduced external assumptions
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const introducedAssumptions = [g3, g4].filter((g) => g === "introduced_external_assumption").length;
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// We document but don't assert — the finding is informational
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expect(typeof introducedAssumptions).toBe("number");
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});
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it("full output log", () => {
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console.log("\n=== Experiment 52F Summary ===");
|
||||
for (const c of CASES) {
|
||||
const r = experimentResults[c.id];
|
||||
const match = r.returnedEnum === r.expectedEnum ? "match" : "mismatch";
|
||||
const grounding = checkGrounding(r.expectedEnum, r.reason, r.relationship);
|
||||
console.log(
|
||||
`[${c.description}] ${r.expectedEnum} → ${r.returnedEnum} (${match}) | ` +
|
||||
`reason="${r.reason}" | grounding=${grounding} | latency=${r.latencyMs}ms`
|
||||
);
|
||||
}
|
||||
});
|
||||
});
|
||||
|
||||
/* ═══════════════════════════════════════════════════════════
|
||||
* Inference timing (observational only)
|
||||
* ═══════════════════════════════════════════════════════════ */
|
||||
|
||||
describe("Experiment 52F — Inference timing", () => {
|
||||
it("records min, max, total timing for all 4 calls", () => {
|
||||
expect(timingStats.min).toBeGreaterThan(0);
|
||||
expect(timingStats.max).toBeGreaterThanOrEqual(timingStats.min);
|
||||
expect(timingStats.total).toBeGreaterThan(0);
|
||||
});
|
||||
|
||||
it("records average latency within reasonable range", () => {
|
||||
const avg = timingStats.total / 4;
|
||||
expect(avg).toBeGreaterThan(5000);
|
||||
expect(avg).toBeLessThan(120000);
|
||||
});
|
||||
|
||||
it("logs timing summary", () => {
|
||||
const avg = Math.round(timingStats.total / 4);
|
||||
console.log(`\n=== Experiment 52F Timing ===`);
|
||||
console.log(`Calls: 4`);
|
||||
console.log(`Total: ${timingStats.total}ms`);
|
||||
console.log(`Average: ${avg}ms`);
|
||||
console.log(`Fastest: ${timingStats.min}ms`);
|
||||
console.log(`Slowest: ${timingStats.max}ms`);
|
||||
});
|
||||
});
|
||||
Reference in New Issue
Block a user