auth-yes/forum/poc-g2/telemetry_poc.ts
Tyler Gillispie e5855248e6
feat: Port all agent-forum-v4 Gen 1 PoCs to Gen 2 using real tooling (#68)
This commit ports the remaining Gen 1 proof-of-concept experiments from `forum/poc-g1` into `forum/poc-g2` while substituting naive mocks with real, production-ready mechanisms.

Key advancements include:
- `code_intelligence_poc.ts` and `cfg_poc.ts`: Swapped regex matching for actual Javascript AST traversal using `acorn`.
- `static_analysis_poc.ts`: Replaced mock payloads with real `deno lint --json` output executed via `Deno.Command`.
- `vector_db_poc.ts` and `multi_vec_poc.ts`: Replaced basic JS arrays with actual `jsr:@db/sqlite` instances utilizing User-Defined Functions (UDFs) to perform native vector cosine similarity queries in memory or on disk.
- `protobuf_poc.ts`: Implemented robust protobuf serialization/deserialization via `protobufjs`.
- Semantic/Governance PoCs (`constitution_poc.ts`, `ontology_poc.ts`, `state_machine_poc.ts`, `orphan_branch_poc.ts`, etc): Replaced string-mock I/O with absolute filesystem reads, real YAML parsing using `jsr:@std/yaml`, and isolated `Deno.Command` Git sandboxes.
- Updated `forum/poc-g2/lab.ts` to orchestrate and execute all 19 experiments, proving 100% test pass rate with Gen 2 tooling.

Co-authored-by: google-labs-jules[bot] <161369871+google-labs-jules[bot]@users.noreply.github.com>
Co-authored-by: mrteye <1945243+mrteye@users.noreply.github.com>
2026-08-28 22:11:53 -07:00

75 lines
2.4 KiB
TypeScript

import { assertEquals } from "https://deno.land/std@0.224.0/testing/asserts.ts";
/**
* Proof of Concept: Telemetry parsing (Gen 2)
*
* Demonstrates the Analyst agent's ability to ingest structured JSON telemetry
* by simulating reading actual files from disk rather than hardcoded mock variables.
*/
async function readTelemetry(filePath: string) {
const data = await Deno.readTextFile(filePath);
return JSON.parse(data);
}
function analyzeFriction(telemetry: any): string[] {
const flags = [];
if (telemetry.metrics.idleHandoffDuration > 4) {
flags.push("High idle handoff duration detected. Workflow optimization required.");
}
if (telemetry.metrics.prCommentToCodeRatio > 0.5) {
flags.push("High comment-to-code ratio. Potential ambiguity in requirements.");
}
return flags;
}
function findPerformanceBottlenecks(trace: any): string[] {
return trace.spans
.filter((span: any) => span.duration_ms > 100)
.map((span: any) => `Bottleneck in ${span.name}: ${span.duration_ms}ms`);
}
if (import.meta.main) {
console.log("Running Telemetry Parsing PoC (Gen 2) tests...");
try {
const tempFriction = await Deno.makeTempFile({ suffix: ".json" });
const tempTrace = await Deno.makeTempFile({ suffix: ".json" });
await Deno.writeTextFile(tempFriction, JSON.stringify({
sprint: "Sprint 42",
metrics: {
meanTimeToResolution: 14.5,
prCommentToCodeRatio: 0.8,
idleHandoffDuration: 5.2,
},
}));
await Deno.writeTextFile(tempTrace, JSON.stringify({
traceId: "5b8aa5a2d2c8646c14e4d97e6cdbc134",
spans: [
{ name: "db_query", duration_ms: 250 },
{ name: "serialize_json", duration_ms: 12 },
{ name: "http_request", duration_ms: 300 },
],
}));
const frictionData = await readTelemetry(tempFriction);
const traceData = await readTelemetry(tempTrace);
const frictionFlags = analyzeFriction(frictionData);
assertEquals(frictionFlags.length, 2);
const bottlenecks = findPerformanceBottlenecks(traceData);
assertEquals(bottlenecks.length, 2);
await Deno.remove(tempFriction);
await Deno.remove(tempTrace);
console.log("✅ Telemetry Parsing PoC (Gen 2) successful: Parsed telemetry from files.");
} catch (err) {
console.error("❌ Telemetry Parsing PoC (Gen 2) failed:", err);
Deno.exit(1);
}
}