I tested my GenOS for LLM agents. It fixed prompt bloat and replaced multi-agent swarm latency.
I ran an empirical test on GenOS, an environment where LLM agents are driven by a versioned YAML "genome" rather than massive prompts. By mutating traits (e.g., risk_tolerance ) and breeding specialized agents together, I achieved emergent TDD, bypassed RAG context limits, and entirely avoided multi-agent "ping-pong" loops. I set up a real test environment (Windows/PowerShell, Node v24, ESLint, Rust CLI) with a severely flawed PaymentProcessor.ts file. It had 38 lint errors and a silent security hole (adding USD to EUR accounts without conversion). Here is what I found when testing different AI paradigms against it: 1. The Prompting Baseline (Failed) Simple Agent: Given a basic "refactor this" prompt (~15 tokens). It cleaned the style but left 3 lint errors and preserved the silent security hole . Expert Agent (Heavy Prompt/RAG): I injected ~600 tokens of strict ESLint rules and PCI-DSS standards. Result: It fixed the currency bug, but still failed the linting constraints on the first try. It took 3 iterations to reach 0 errors. Massive token overhead for a mediocre first-pass result. 2. Emergent TDD via "Genome" Mutation Instead of huge prompts, I used the GenOS Rust CLI to mutate an agent's YAML genome. I set risk_tolerance ≈ 0.10 and verification_threshold = 0.80 . Result: The agent refused to touch production code directly. It autonomously wrote 4 scope tests first (emergent TDD), which immediately caught the EUR/USD security hole. Next, instead of injecting ESLint rules, I mutated its syntax_strictness to 0.9 . Result: 0 lint errors and 5/5 passing tests. Zero extra tokens added to the prompt. The trait is persisted in the agent's versioned YAML ( v0.1.2 ) for future use. 3. "Breeding" Replaces Multi-Agent Swarms Usually, if you need secure AND highly performant code, you use a multi-agent framework (a coder, a security auditor, a perf engineer) that wastes time and tokens debating each other. I took two parent agent genomes ( SecurityAuditor and PerfEngineer )