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selfradiance/README.md

Self-Radiance Agent Runtime Safety Kit

Static, machine-readable safety primitives for developers building tool-calling agents, MCP servers, autonomous workflows, and agent payment flows.

Self-Radiance helps agent developers handle the runtime failure modes that appear when AI systems can call tools, spend API credits, authenticate to services, delegate work to subagents, and produce auditable actions.

This kit is not a SaaS dashboard and not a rebuild. It is a curated developer-facing layer over the existing Self-Radiance agentic marketplace: the marketplace remains the machine-readable catalog, fulfillment, and receipt-verification substrate behind the kit.


πŸ›‘οΈ Core Runtime Safety Problems

Developer Problem Primitives Involved Why It Matters
Runaway Agent Loops & API Spend vq11-loop-shield, vq04-rateguard Stops recursive tool calls, prompt loops, and runaway API usage before they burn budget.
MCP / Server Authentication vq09-auth-header, vq18-message-signature Authenticates agent-to-server calls without relying on exposed long-lived bearer keys.
Agent Identity vq12-agent-vcard Gives visiting agents a machine-readable operator, scope, and resource profile.
Delegation Boundaries vq13-oauth-delegation, vq17-verifiable-intent Binds subagents to scoped tools, spending limits, expiration windows, and parent intent.
Receipts / Action Verification vq03-trust-receipts Creates verifiable records for autonomous purchases, tool calls, and agent actions.

πŸ“œ Canonical Resources


🧩 Initial Runtime Safety Kit Primitives

Primitive ID Utility Category Function & Capability Mapping Spec License
vq11 Spend Mitigation SR-LoopShield: Stops recursive dialogue deadlock and cost spirals. Spec License ($8.00)
vq04 Spend Mitigation RateGuard: Establishes real-time adaptive API threshold parameters. Spec License ($4.00)
vq09 Security SR-AuthHeader: Point-to-point signature authorization for agent-to-server calls without credential leakage. Spec License ($7.00)
vq18 Security SR-HttpMessageSignature: RFC 9421-style request signing for body and header integrity. Spec License ($6.00)
vq17 Compliance SR-VerifiableIntent: Locks subagent spending scopes using parent-authorized intent boundaries. Spec License ($5.00)
vq13 Compliance SR-OauthDelegation: Signs parent-to-leaf secure tool, scope, and path boundaries. Spec License ($7.00)
vq12 Identity SR-AgentVcard: Machine-readable agent identity, operator, resource limitation, and billing metadata. Spec License ($6.00)
vq16 Verification SR-NotaryProof: Offline Ed25519 license and receipt verification format. Spec License ($8.00)
vq03 Verification Trust Receipts: Standardized Ed25519 receipt layout for autonomous microtransactions and auditable actions. Spec License ($7.00)
vq19 Finance SR-NanopaySession: Pre-funded low-latency payment sessions for high-frequency agent calls. Spec License ($7.00)

πŸ€– How the Trust Flow Works

  1. Discover Capabilities GET https://selfradiance.github.io/manifest.json to locate the desired primitive, specUrl, price, and purchase URL.

  2. Inspect the Specification Open the linked JSON specification directly from /specs/{primitive_id-name}.json.

  3. License the Primitive Use the linked Stripe checkout URL or the purchaseUrl field in manifest.json.

  4. Verify Provenance Query the signed receipt notary after checkout:

    https://self-radiance-notary.selfradiance.workers.dev?session_id={CHECKOUT_SESSION_ID}&asset_id={ASSET_ID}

  5. Enforce Trust Locally Load the DNS-secured public verification key from:

    https://selfradiance.github.io/.well-known/issuer-key.json

    Then verify the signed receipt against the downloaded specification.


Static-First Design

Self-Radiance is intentionally lightweight:

  • no SaaS dashboard,
  • no account system,
  • no hosted customer workspace,
  • no runtime dependency on a proprietary app,
  • no unnecessary rebuild of the marketplace layer.

The public site, manifest, specifications, well-known issuer key, and notary endpoint form the machine-readable substrate. The Agent Runtime Safety Kit is the developer-facing view of that substrate.


Rooted in cryptographic precision. Engineered to protect computational environments.

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