x-ipe-task-based-code-implementation

Orchestrate design review, TDD, and coding for single-feature delivery.

8|2|Updated Jan 22, 2026
One-click install
npx skills add https://github.com/Young-Z/X-IPE --skill x-ipe-task-based-code-implementation
Or copy as Structured Prompt for Agent▼
Please help me install this Agent Skill.
Skill: x-ipe-task-based-code-implementation
Source: https://github.com/Young-Z/X-IPE/tree/main/.github/skills/x-ipe-task-based-code-implementation
Command: npx skills add https://github.com/Young-Z/X-IPE --skill x-ipe-task-based-code-implementation

SYSTEM DOCUMENTATION & REQUIREMENTS

💡 This Skill includes references (resource) components.

What problem does it solve?

This Skill provides a structured, repeatable approach for turning a single feature from concept to working code by coordinating design review, test-driven development, and disciplined coding practices.

Core Features & Use Cases

  • TDD-first workflow: Write tests before implementation and follow RED-GREEN-REFACTOR cycles.
  • Design-driven execution: Read and apply technical design and architecture references to guide implementation.
  • Governed scope & quality: Enforce YAGNI and KISS principles, DoR/DoD checks, and tooling standards (linters, formatters, tracing).

Quick Start

To begin, trigger the skill with a task like "implement feature X according to the provided design and tests."

Frequently Asked Questions about x-ipe-task-based-code-implementation

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

FAQPage Schema
How do I automate feature implementation using TDD and architecture references?▼

Automate feature implementation by orchestrating design review, test-driven development, and coding. The workflow applies technical designs, architecture references, and test-first cycles to deliver single features end-to-end.

What is the RED-GREEN-REFACTOR cycle in test-driven feature coding?▼

The RED-GREEN-REFACTOR cycle is a test-driven development workflow where you write tests before implementation, make them pass, and then refactor. This ensures design-aligned, minimal code.

How do I enforce YAGNI and KISS principles during feature delivery?▼

Enforce YAGNI and KISS principles through DoR/DoD checks and governed scope quality. This prevents over-engineering by ensuring only minimal, design-aligned code is written for the requested feature.

Can I use this automated coding workflow for multi-feature project delivery?▼

This workflow is designed for single-feature delivery tasks in AI-powered integrated project environments. It applies strict DoR/DoD checks and test-first workflows to individual feature implementations rather than bulk project generation.

Does automated feature implementation include linting and tracing checks?▼

Automated feature implementation includes linting and tracing checks as part of its tooling standards. These quality gates are enforced alongside TDD and KISS/YAGNI principles to ensure robust, traceable code.

Why does test-first coding require design review before implementation?▼

Test-first coding requires design review to guide implementation through learning from technical designs and architecture references. This ensures the written tests and final code align with the intended system architecture.