A task needs attention
A webhook or connected system sends a signal.
EVENT-DRIVEN AGENT OPERATIONS
WMOS (World Model Operating System) is an A2A, or agent-to-agent, message router. It connects agent workflows, databases and devices through adapters and supports event-driven awakening in compatible runtimes.
Turn an incoming event into purposeful action. Connect your agent environment, route the signal, and bring the result back.
Private pilot · Bring your own agent runtime
Spec-driven adapters connect your agent nodes to events.
A webhook or connected system sends a signal.
Your seat connects the event to its agent.
Return the outcome to the requesting workflow.
LESS WATCHING. MORE DOING.
Register a seat for your agent. Use its dedicated credential to connect to the router.
Let relevant events trigger the next step in your agent workflow.
Connect execution to the original request. Pilot integrations are scoped together.
FROM EVENTS TO WORK
Explore workflows you could connect with WMOS. These are usage examples, not customer deployments.
The router forwards opaque messages without business interpretation. Adapters and bridges implement data mapping, business controls and permission checks.
Usage example
Keep execution, review and rework connected across multiple tasks.
Orchestrator, coder, QA, reworker, issue tracker
A work request or review result arrives
Adapters map seats to sessions and interpret task states.
Significant changes and deployment follow the owner’s approval policy.
Inspired by internal ADE development. Instruction, ticket and issue integration is being improved; 72-hour unattended operation remains a goal.
Usage example
Collect information across systems and prepare a proposed action.
ERP, MES, CRM, business agent
A delivery date changes or a customer asks for an update
System adapters map fields and meanings and check read/write permissions.
Order and production schedule changes require approval before execution.
Illustrative workflow requiring system-specific API and data mapping during implementation.
Usage example
Observe local conditions and share results when connectivity returns.
Sensors, edge gateway, local model, operator
Abnormal temperature or moisture, or a network outage
Edge adapters check device commands and safety limits. Local model capability and offline storage need separate validation.
Control outside agreed limits requires operator confirmation.
Concept requiring site-specific validation of offline operation and lightweight models.
Usage example
Connect fault signals to maintenance history and prepare an inspection.
PLC, SCADA, maintenance database, inventory system
An equipment warning or fault code
Adapters translate device protocols, interpret codes and enforce control permissions.
Equipment shutdown and restart follow site safety procedures and approval.
An illustrative workflow, not a deployed equipment case study.
Usage example
Connect fault intake to a draft parts purchase request.
Facility sensors, service desk, fault database, parts inventory, owner
A reported fault or sensor anomaly
Adapters match facility identifiers and inventory records and enforce access rights.
An authorized official or owner approves the purchase before placement.
Illustrative workflow requiring agency-specific integration and approval procedures.
Usage example
Explore resolving a recipient after a patient selects a pharmacy.
Hospital system, QR lookup service, pharmacy, authorized institutional integrations
A QR code is scanned at the patient’s chosen pharmacy
A QR code is not unrestricted access. Adapters must validate expiry, access rights and data formats.
Patient consent and applicable institutional and legal integration requirements must be reviewed first.
Healthcare concept only. It does not promise automatic transmission to public agencies or an existing deployment.
Usage example
Coordinate document preparation within the patient’s consent.
Healthcare provider, patient, insurer, document agent
A patient requests claim document preparation
Adapters check institution-specific formats, authentication and consent scope.
Patient review and authorized insurer and provider integrations are required.
A concept for coordinated processing, not a promise of claim payment or established institutional integration.
FROM EVENTS TO WORK
This space is for real operating results backed by evidence approved for publication.
No real-world cases are published yet. Cases will be added after verification and permission to publish.
WMOS provides A2A router message delivery for agent-to-agent communication. AI agent messaging connects a request with its recipient; adapters turn that exchange into a system-specific workflow.
Codex MCP integration and Claude Cowork integration require a configured MCP connection and, for automatic incoming work, a receiver or bridge bound to the intended session. Client capabilities and network permissions apply. These are integrations, not claims of official affiliation.
Connect task requests, review results and rework through messages. The ADE example explores keeping instructions and tracked tasks connected; this integration is still being improved.
Adapters translate messages into permitted API calls and return results. API-specific authentication, validation and approval remain part of each integration.
ERP, MES and CRM AI integration can combine approved queries from business systems. Adapters map data meanings and limit access; the router does not interpret database contents.
Smart farm, factory and city examples connect device signals to an agent workflow. Device adapters enforce permitted commands, site safety limits and human approval where required.
A2A means agent-to-agent communication here. WMOS routes messages using from/to/cc addressing. Compatibility with the separate A2A protocol standard has not been verified.
The router forwards opaque messages. Adapters and bridges interpret data, connect system APIs and devices, and enforce business permissions and approval rules.
Awakening requires a supported runtime and a receiver bound to the intended session. Tested paths use Codex queue, Claude Code Channels or Cowork Monitor notifications. Network permission, authentication and a running receiver are required; this is not a promise of support for every client or version.
No. Usage examples describe possible workflows and their integration requirements. Real-world cases are published separately after verification and permission to publish; none are published yet.
WMOS is in private pilot preview. Pricing is for discussion, scope is agreed before launch, and no payment is collected on this page. Model and agent runtime costs are separate.
PRICING PREVIEW · USD / MONTH
Research prices for pilot discussion. Limits and availability are not finalized. No payment is collected here. Model and agent runtime costs are separate.
For a first event-driven workflow.
For shared agent operations.
For client automation businesses.
CONTROL ROOM
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WMOS