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Arbitrum community · Planned EVM adapter

Connect Arbitrum applications to verifiable AI.

A planned EVM adapter could let Arbitrum applications request AI through BitcoinAI, receive verified result commitments and retain their users, assets, consensus and canonical state on Arbitrum.

07

Scalable EVM execution

Keep Arbitrum. Add an AI coordination layer.

Arbitrum applications can coordinate AI work while retaining their rollup environment and Ethereum settlement assumptions.

PlannedPlanned EVM adapter

What Arbitrum already does well

Scalable EVM execution, DeFi and application-specific chain tooling.

  • Scalable EVM execution, DeFi and application-specific chain tooling.
  • Solidity-compatible developer workflows
  • Programmable application state
  • Established wallet and contract patterns

What BitcoinAI can add

Planned AI-request contracts, BatteryAGI execution, Proof-of-AI receipts and asynchronous callbacks.

  • Planned EVM transport adapter
  • BatteryAGI execution
  • Proof-of-AI receipts
  • AI-agent infrastructure
  • Asynchronous callbacks and settlement

Asynchronous cross-chain architecture

How a Arbitrum AI request could work.

Messaging is transport. BitcoinAI defines the AI transaction semantics, BatteryAGI coordinates heavy execution, and the source environment remains authoritative for its own state.

  1. 01

    Arbitrum application creates an AI request

  2. 02

    Planned EVM adapter transports the request

  3. 03

    BitcoinAI finalizes job and payment state

  4. 04

    BatteryAGI executes the workload

  5. 05

    Proof-of-AI receipt is verified

  6. 06

    Result callback returns to Arbitrum

The route is an asynchronous state machine. Acknowledgement is not finality, and every transport keeps its own validator, bridge, custody and reorganization assumptions.

Application opportunities

What Arbitrum builders could create.

These are design opportunities, not claims of live integrations or guaranteed adoption.

01

DeFi analysis

Use defi analysis with explicit job, verification, timeout and callback states.

02

Agent execution

Use agent execution with explicit job, verification, timeout and callback states.

03

Gaming intelligence

Use gaming intelligence with explicit job, verification, timeout and callback states.

04

Orbit-chain services

Use orbit-chain services with explicit job, verification, timeout and callback states.

05

Risk automation

Use risk automation with explicit job, verification, timeout and callback states.

06

AI marketplaces

Use ai marketplaces with explicit job, verification, timeout and callback states.

Builder surface

Build the adapter, the application or the proof layer.

The integration surface spans contracts, message encoding, provider selection, receipts, callbacks, observability and failure handling.

Request contracts

Typed Arbitrum contracts for job creation, budgets, timeouts and callbacks.

Agent applications

Bounded automation with owner permissions, spend limits and auditable results.

Verification tools

Receipt explorers, provider reputation and portable proof interfaces.

Settlement UX

Clear pending, verified, failed, timed-out and refunded application states.

Security and trust boundaries

Connection does not erase sovereignty.

Arbitrum keeps its users, assets, application state, consensus and governance. BitcoinAI verifies its own AI job and settlement state.

  • Arbitrum integration is planned and is not live.
  • Arbitrum retains its own consensus, application state and governance.
  • The route is asynchronous; applications must handle timeouts, replay protection and failed verification.
  • Every bridge, relayer and liquidity route retains its own security and custody assumptions.

Planned EVM adapter

Build the Arbitrum AI route.

Developers can help specify the Arbitrum route, test failure states and build applications that use AI without asking the community to abandon its own chain.