deep-analysis

Analyze user ideas through a 5-phase logic chain to produce verifiable architecture designs.

1|Updated Nov 21, 2025
One-click install
npx skills add https://github.com/bamecho/my-claude-skills --skill deep-analysis-bamecho
Or copy as Structured Prompt for Agent
Please help me install this Agent Skill.
Skill: deep-analysis
Source: https://github.com/bamecho/my-claude-skills/tree/main/deep-analysis
Command: npx skills add https://github.com/bamecho/my-claude-skills --skill deep-analysis-bamecho

SYSTEM DOCUMENTATION & REQUIREMENTS

What problem does it solve?

Execute high-density architectural analysis to turn vague ideas into verified architectures via a strict 5-phase chain, enabling rigorous validation of system designs.

Core Features & Use Cases

  • 5-phase analysis framework: Calibration, Decomposition, Excavation, Re-Architecting, Inversion to move from concept to validated architecture.
  • Pre-mortem risk assessment: Identify failure modes and mitigations before implementation.
  • Visualization & traceability: Produce Mermaid diagrams and structured outputs to guide architecture decisions.

Quick Start

Provide a high-level architecture prompt and let the skill generate a phased analysis outline.

Frequently Asked Questions about deep-analysis

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

FAQPage Schema
How do I validate a system architecture before implementation?

To validate a system architecture, you can use a 5-phase analysis chain to critique technical ideas, identify failure modes via pre-mortem risk assessment, and produce verified, architecture-ready designs with explicit mitigations.

What is pre-mortem risk assessment in system design?

Pre-mortem risk assessment in system design identifies potential failure modes and their mitigations before implementation begins. It operates during the excavation and inversion phases to ensure complex solutions are rigorously validated.

How do I turn vague technical ideas into architecture-ready designs?

Turn vague ideas into architecture-ready designs by applying a structured 5-phase logic chain: calibration, decomposition, excavation, re-architecting, and inversion. This process enforces explicit constraints to yield verifiable system designs.

Can I generate Mermaid diagrams for architecture traceability?

Yes, you can generate Mermaid diagrams to establish architecture traceability. The analysis produces these visualizations alongside structured outputs to guide and document complex system architecture decisions effectively.

Does architecture analysis require explicit constraints to proceed?

Architecture analysis accepts explicit constraints when provided but does not strictly require them. If omitted, the process assumes MVP or prototype constraints and proceeds directly through the five-phase system design validation.

What is the best way to critique complex technical solutions?

The best way to critique complex technical solutions is executing a high-density architectural analysis. This framework moves from concept decomposition to re-architecting, yielding verifiable designs and structured traceability outputs.