Your hardware earns. Cheating burns.
Work Provisioning turns real computation into on-chain value. Anyone can post paid work; anyone with hardware can fill it; verification, not trust, decides who gets paid.
The lifecycle
Order
A user or sponsor posts a paid work order with an escrowed bounty: ZK proof, AI inference, data availability, audit, or sponsored compute.
Commit
A worker locks stake and commits, AI orders pin the exact environment via an env-hash commitment, so results are reproducible.
Verify
The result is content-addressed on-chain. Verification depends on the job class: on-chain proof checks for ZK, 2-of-3 redundancy with Auditor spot-checks for AI, sampling challenges for DA, double verification for audits.
Settle
Valid results release the bounty minus a 5% protocol fee to burn. Invalid results slash the worker's stake. Expired orders refund the poster permissionlessly.
The economics
Disputes: a bounded challenge window lets any eligible arbiter dispute a result before settlement; the Auditor gate decides.
Job classes & verification
ZK proofs
SP1 / RISC Zero proofs verify on-chain. Forged proofs fail; valid ones settle.
AI inference
Three workers execute redundantly; 2-of-3 must match. The Auditor spot-checks disagreements.
Data availability
Random sampling challenges after delivery. A failed challenge slashes.
Audits
Stake-weighted assignment with Auditor rotation, never the same operator twice consecutively.
The Workbench
A desktop app that turns idle hardware into a worker node.
The Workbench scans your hardware into a worker profile, lets you cap resources and set hours, executes jobs in sandboxed per-job processes, and shows earnings, Genesis Score progress, and your burn contribution. Signed installers and auto-updates ship with the public testnet.