forger-observe

Execute deterministic falsification probes to validate AI-generated claims in a sandboxed environment.

1|Updated May 19, 2026
One-click install
npx skills add https://github.com/RyanDev1st/FORGER --skill forger-observe
Or copy as Structured Prompt for Agent▼
Please help me install this Agent Skill.
Skill: forger-observe
Source: https://github.com/RyanDev1st/FORGER/tree/main/skills/forger/phases/observe
Command: npx skills add https://github.com/RyanDev1st/FORGER --skill forger-observe

SYSTEM DOCUMENTATION & REQUIREMENTS

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

What problem does it solve?

This Skill prevents AI hallucinations by forcing the agent to ground its work in reality, stress-test implicit assumptions, and verify claims against live data before proceeding to design or implementation.

Core Features & Use Cases

  • Risk Mapping: Automatically converts unverified claims into a structured risk register with severity levels.
  • Falsification Probes: Executes deterministic tests to verify high-risk assumptions using sandboxed scripts, web searches, or API tests.
  • Use Case: When an AI proposes a system architecture based on a library's documentation, this Skill runs a probe to verify the library actually behaves as documented, catching outdated APIs or retracted benchmarks before they reach production.

Quick Start

Invoke the forger-observe skill on the current workspace to generate a risk map and run falsification probes for all critical assumptions.

Frequently Asked Questions about forger-observe

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

FAQPage Schema
How do I verify AI-generated assumptions and prevent hallucinations in my pipeline?▼

To verify AI-generated assumptions, you can execute deterministic falsification probes within a sandboxed environment to stress-test claims and ground AI work in empirical evidence before production.

What is a falsification probe for risk management in AI pipelines?▼

A falsification probe is a deterministic test executed in a sandboxed environment to verify high-risk AI assumptions, converting unverified claims into a structured risk register with severity levels.

How do I validate that a library behaves as documented before AI implementation?▼

To validate library behavior before implementation, run falsification probes using sandboxed scripts, web searches, or API tests to catch outdated APIs or retracted benchmarks based on documentation.

Does falsification-based verification work without external dependencies?▼

Yes, falsification-based verification operates without external dependencies, using internal scripts and references to execute risk mapping, Feynman-style domain briefing, and automated probe execution.

What is the best way to resolve high-severity risks in an AI generation pipeline?▼

The best way to resolve high-severity risks is by executing automated probes that require empirical evidence or formal waivers, ensuring strict verification requirements are met before proceeding.

When should I not use sandboxed falsification probes for AI verification?▼

Sandboxed falsification probes should not be used when you need to permanently mutate production data, as they operate deterministically within an isolated environment to test assumptions safely.