01 Abstract
Your machine. Your capital. Your rules. Your agent. Mirae is a local-first autonomous trading infrastructure that turns artificial intelligence from a passive assistant into a controlled on-chain execution layer, separating reasoning, authorization, signing, and settlement into independent boundaries.
- The AI can think, analyze, and discover.
- The AI can generate structured intent proposals.
- The user's policy engine and local vault decide what is actually allowed to happen.
- Settlement occurs directly on-chain across spot, perps, token launches, and real-world assets without intermediate custody.
The next generation of financial interfaces will not require users to manually monitor charts, calculate routes, manage gas budgets, and click every transaction. Operators will increasingly delegate these workflows to autonomous software agents. However, giving an AI unrestricted custody creates a catastrophic single point of failure. Mirae solves this through deterministic policy separation.
Core Principle
- AI determines what it wants to propose.
- The local runtime determines what is permitted to execute.
- This separation enables full autonomy within mathematical boundaries without requiring custodial surrender.
02 The Problem
Intelligence is no longer the bottleneck.
Modern AI models can digest enormous streams of financial data: price action, order flow, liquidity depths, wallet forensics, volatility, sentiment, and protocol states.
The bottleneck is no longer intelligence. The bottleneck is trusted, non-custodial execution.
Advisory AI
The AI provides text output, but the human remains the manual, slow operator clicking every wallet approval.
Unrestricted Autonomous Custody
Cloud bots take full possession of private keys, creating severe security vulnerabilities and regulatory centralization.
Controlled Local Autonomy
The intelligence layer and the signing authority layer remain strictly isolated.
03 The Mirae Runtime
A local-first execution environment.
The Mirae Runtime is a high-performance, native desktop application (available for Linux and Windows, with macOS in development) and progressive web environment. It operates directly on the user's device, ensuring that private keys, policy configurations, session states, and SQLite databases remain encrypted under local AES-256-GCM encryption.
Unlike cloud-hosted bot services, Mirae eliminates external custody. The local runtime communicates directly with RPC endpoints and protocol program interfaces to simulate, inspect, and broadcast transactions.
04 Agent Engine
Objectives instead of individual clicks.
Mirae agents operate around high-level objectives rather than micro-commands. Users describe intent using natural language (English or Indonesian) or configure structured mission parameters.
Example Objective
- Supply 500 USDC to Kamino Obligate RWA to earn institutional yield.
- DCA 25 USDC into SOL every 4 hours with 10% take-profit and 5% stop-loss.
- Screen trending tokens on Pump.fun and execute a protected creator launch.
- Buy x402 premium market intelligence before opening an isolated perp position.
The Autonomous Agent Lifecycle
- 01Observe markets & protocol state
- 02Acquire verified data (including x402 paid feeds)
- 03Formulate trading hypothesis
- 04Simulate transaction via RPC preflight
- 05Validate against deterministic policy boundaries
- 06Execute on-chain via local vault
- 07Monitor position lifecycle & reconcile state
Session Autonomy Modes
Restricted Mode (Manual Gate)
Every individual proposal requires explicit user review and master password entry. Ideal for high-stakes positions and manual spot actions.
Full Access Mode (Autonomous Execution)
Enables seamless, 1-click or prompt-to-chain automated execution. Grants are bounded by a 24-hour lifetime, hard spending limits, slippage caps, and emergency kill switches.
05 Policy and Risk
The mathematical boundary between reasoning and capital.
The Policy Engine enforces deterministic rules that cannot be bypassed by language model hallucinations or adversarial prompt injections. If an action violates policy constraints, the runtime fails closed.
| Validation Check | Runtime Behavior | Security Guarantee |
|---|---|---|
| Within policy bounds | Execute | Simulated & signed locally |
| Exceeds max slippage / spend | Block | Transaction rejected instantly |
| Unlisted program ID / unknown contract | Block | Privilege escalation denied |
| Emergency stop active | Halt | All execution gates frozen |
Multi-Dimensional Risk Engine
Position Limits
Caps maximum notional size per order and per asset.
Drawdown Controls
Halts agent activity automatically upon reaching loss limits.
Price Impact & Slippage
Rejects trades where simulated slippage exceeds strict thresholds.
Program Allowlisting
Pins verifiable program addresses for Jupiter, Kamino, Drift, and Pump.fun.
Session Expiry
Restricts autonomous execution grants to short, time-bounded windows.
Emergency Kill Switch
Instant global termination of all active grants and pending transactions.
06 Execution & Venues
Multi-venue execution across spot, perps, RWA, and cross-chain.
Mirae provides a modular execution router connecting leading decentralized protocols into a single conversational workspace.
Supported Protocol Matrix
| Domain | Integrated Protocols | Capabilities |
|---|---|---|
| RWA Lending | Kamino Finance / Obligate ($oTFY) | Institutional corporate bonds, 1-click supply, yield tracking, instant withdrawal |
| Spot & DCA | Jupiter Exchange | Multi-route swaps, DCA scheduling, Limit Orders with TP/SL |
| Token Launch | Pump.fun Protocol | Token intelligence, simulation, creator buy protections, create_v2 launch |
| Perpetuals | Drift Protocol & Hyperliquid | Directional long/short orders, isolated margin, leverage controls |
| Paid Intelligence | x402 Protocol | On-chain USDC micro-payments for premium data before execution |
| Cross-Chain Bridge | Relay Bridge & EVM | Multi-chain routes between Solana, Robinhood Chain, Base, Arbitrum, Ethereum, etc. |
Institutional Real-World Asset (RWA) Lending
Mirae natively integrates Kamino RWA pools, enabling users to earn real yield from tokenized corporate debt and commercial paper (such as Obligate's oTFY). The workspace calculates real-time accrued yields, manages position lifecycles, and enables 1-click liquidity withdrawals.
x402 Agent Micro-Payments
Mirae pioneers the x402 standard on Solana mainnet: AI agents can independently discover premium off-chain data sources, pay per request via micro-amounts of USDC directly on-chain, digest the intelligence, and trigger immediate trades in a single continuous flow.
07 Local-First Custody
Automation without custody.
Mirae's desktop application is built with zero cloud custody. Private keys, mnemonics, execution logs, and session grants are encrypted locally using AES-256-GCM with a user-derived master password.
Zero Custodial Footprint
- Mirae servers never hold or transmit user private keys.
- Transactions are constructed, simulated, and signed on your own hardware.
- Keystore resets, backups, and key imports remain completely in the user's control.
08 Memory and Intelligence
Context that survives the session.
Mirae provides structured memory across operational contexts to enhance agent reasoning over time.
Session Memory
Live conversational context, draft states, and pending proposals.
Position Memory
Persistent records of open spot, perp, and RWA positions with entry APY and yield calculations.
Audit Log Memory
Append-only structured records of all executed, blocked, and failed transactions.
09 Auditable Action History
Autonomy with complete accountability.
Every autonomous intent produces a verifiable receipt containing transaction hashes, simulation preflight digests, block heights, and network fee metrics.
Blocked actions and policy violations are logged with explicit rationale, ensuring the operator can inspect why an agent was prevented from taking a specific action.
10 Economics
Fifty for building, fifty for burning.
Protocol Revenue: Mirae Agent Fee
The Mirae desktop runtime introduces a transparent agent fee on eligible on-chain execution actions. This fee serves as the sole protocol revenue source.
Revenue Allocation Flywheel
50%
Development & Research
50%
Market Buyback & Burn
This architecture links real economic utility directly to token supply reduction, replacing inflationary emissions with genuine product cashflow.
11 $MIRAE Token
Ninety seven percent to the community.
$MIRAE is the native utility and governance token powering the Mirae ecosystem.
Tokenomics & Fair Distribution
100%
Total Supply
97%
Community Fair Launch
3%
Public Development Wallet
| Allocation | Percentage | Vesting / Terms |
|---|---|---|
| Community Fair Launch | 97% | 100% unlocked via Pump.fun bonding curve |
| Development Wallet | 3% | Publicly identifiable, reserved for ongoing development |
| VC / Private Sale | 0% | No private rounds or insider allocations |
| Presale / Advisors | 0% | No early discounts or team dumping |
12 Security
Minimize authority, not intelligence.
Mirae's core security tenet is minimizing attack surfaces. Compromising the AI intelligence layer must never compromise vault custody.
Deterministic Emergency Controls
| Emergency Stop State | Runtime Impact |
|---|---|
| Active Full Access Grants | Immediately Revoked |
| Pending Proposals | Blocked |
| Local Signing Engine | Disabled |
| Active Missions | Paused |
13 Roadmap
Seven phases toward the autonomous agent economy.
Phase 01 — Foundation [COMPLETED]
- Mirae core identity and chat interface
- Solana RPC integration & basic swap engine
- Deterministic intent formatting
- Web prototype validation
Phase 02 — Agent Runtime & Policy Engine [COMPLETED]
- Structured intent parser & multi-lingual dispatchers (EN / ID)
- Restricted mode (master-password gated)
- Full Access mode (24h bounded session grants, capability ceilings)
- Multi-dimensional risk engine & emergency stop system
- Mission mode for recurring trading objectives
Phase 03 — Local-First Desktop Architecture [COMPLETED]
- Native desktop application runtime
- Local encrypted vault (AES-256-GCM) for private keys and session records
- Zero-custody signing layer
- Encrypted local SQLite audit database
Phase 04 — Desktop Distribution [LIVE & ACTIVE]
- Linux x64 and ARM64 AppImage and Debian packages released
- Windows portable desktop QA release live
- Auto-update version verification portal
- Performance tuning and UI refinement
Phase 05 — Multi-Market & Protocol Expansion [SHIPPED & EXPANDING]
- Institutional RWA Lending (Kamino Finance & Obligate oTFY) — Live
- Perpetual Futures Engine (Drift Protocol & Hyperliquid) — Live
- x402 Decentralized Pay-per-request Intelligence — Live
- Multi-Chain & EVM Bridge (Robinhood Chain, Relay Bridge across 8 chains) — Live
- Jupiter Limit Orders & DCA Scheduling with TP/SL — Live
- Pump.fun zero-lookup token launch & creator buy protection — Live
Phase 06 — Agent Network & Strategy Ecosystem [IN DEVELOPMENT]
- Verifiable on-chain agent performance records
- Strategy discovery and community agent templates
- Public agent reputation registries
- Multi-agent collaborative execution
Phase 07 — The Mirae Economy [UPCOMING]
- Automated protocol revenue accounting
- Public, verifiable Buyback & Burn dashboard
- Periodic market purchases of $MIRAE funded by agent fees
- Permanent token burn verification on-chain
14 Principles
What Mirae optimizes for.
Local over Custodial
Keep signing keys and authority on the operator's machine.
Policy over Prompt
Prompts express desire; mathematical policies enforce permissions.
Verification over Trust
Every action must produce auditable on-chain proof.
Autonomy with Limits
Automation must never mean boundless custody or uncontrolled risk.
Real Yield over Inflation
Sustainable economics through actual protocol usage and institutional assets.
Zero AI Slop
Clean, high-performance interfaces built for serious operators.