loop-engineering

Design bounded agent loops with explicit triggers, budgets, and stop conditions.

133|19|Updated May 4, 2026
One-click install
npx skills add https://github.com/Mark393295827/third-brain-v5-skills --skill loop-engineering
Or copy as Structured Prompt for Agent▼
Please help me install this Agent Skill.
Skill: loop-engineering
Source: https://github.com/Mark393295827/third-brain-v5-skills/tree/main/skills/loop-engineering
Command: npx skills add https://github.com/Mark393295827/third-brain-v5-skills --skill loop-engineering

SYSTEM DOCUMENTATION & REQUIREMENTS

💡 This Skill includes scripts (resource) and references (resource) components.

What problem does it solve?

This Skill turns repeated agent work into a controlled loop so tasks do not drift into endless retries, self-grading, or unverified claims. It helps you decide when a task should be a one-shot action, a goal-driven loop, an automation, or an auto-research workflow.

Core Features & Use Cases

  • Loop Design: Define the trigger, objective, scope, evidence, limits, and permission boundary before any repeated execution starts.
  • Topology Selection: Choose the simplest workable pattern, such as single-agent, maker-checker, or manager-workers, based on whether independent verification is needed.
  • Failure Prevention: Detect stalled loops, runaway iteration, vague stop conditions, and unsupported writes before they waste time or mutate shared state.
  • Use Case: A CI repair task can be converted into a bounded maker-checker loop with explicit evidence, a finite budget, and a clear recovery path.

Quick Start

Use loop-engineering to define the loop mode, trigger, scope, evidence, limits, and verifier for this task.

Frequently Asked Questions about loop-engineering

High-intent search queries and answers about installing and using this skill.

FAQPage Schema
How do I stop agent loops from endless retries and self-verified claims?▼

To stop agent loops from endless retries, you design bounded agent workflows with explicit triggers, finite iteration caps, time budgets, and independent verification before execution. This approach replaces self-grading with evidence-driven contract validation to prevent runaway automation.

How do I design a CI repair automation with explicit stop conditions?▼

Designing a CI repair automation with stop conditions involves converting the task into a bounded maker-checker loop. You define the trigger, objective, scope, evidence, and finite budget, then use script-based validation to ensure the repair halts when limits are reached or recovery succeeds.

What is a bounded agent loop and when do I need one for multi-step workflows?▼

A bounded agent loop is a controlled, repeatable workflow with finite iteration and time caps. You need one for multi-step tasks like scheduled automation or bounded research, where tasks require explicit state, permission boundaries, and independent verification to prevent drift or unsupported state mutations.

Can I use a single-agent topology for tasks that require independent verification?▼

For tasks requiring independent verification, a single-agent topology is generally insufficient. You should select a maker-checker or manager-workers pattern to separate execution from validation, ensuring the loop contract is independently verified and preventing self-verified claims.

What are the limitations of using bounded loops for scheduled automation?▼

Limitations of bounded loops include detecting and handling stalled loops, vague stop conditions, and unsupported writes. The workflow requires a durable contract and script-based validation to prevent these failures from wasting time or mutating shared state during scheduled execution.