scafonix-agent
Build Your Own Self-Hosted M-of-N MPC Wallet Infrastructure with Zero Upfront Cost & Pay-per-Signature x402 Micropayments ($0.005 USDC)
scafonix-agent is the official Python SDK that empowers developers to build and deploy their own 100% self-hosted, non-custodial M-of-N MPC wallet security infrastructure for autonomous AI Agents (LangChain, CrewAI, AutoGen, ELIZA, etc.).
🌟 Key Value Proposition
- Build Your Own MPC Infrastructure: You can host and run your own independent, non-custodial multi-agent consensus MPC wallet system without relying on third-party key custodians or centralized servers.
- Zero Fixed Subscription Costs: Key share generation, wallet address derivation, and worker partial signing are 100% free with zero recurring subscription fees.
- Transparent Pay-per-Signature Pricing ($0.005 USDC): You only pay a flat $0.005 USDC per final combined signature via native x402 micropayment protocol on Base L2 when broadcasting real on-chain transactions.
🏗️ Architecture & Sequence Flow (2-of-3 Threshold & x402 Ticket Gate)
The following diagram illustrates how the Master AI, Worker AIs, and Scafonix x402 Ticket Gate interact during an M-of-N threshold signature transaction:
💻 Installation
pip install scafonix-agent
🎲 What are seed1 and seed2? (Dual Entropy Mechanism)
Scafonix Agentic MPC uses a Dual-Source Entropy Mixing Algorithm to guarantee cryptographic security even if one entropy source is compromised:
seed1(User / Master AI Entropy): A 32-byte (64-char hex) random string generated by your application, Master AI, or user secret (secrets.token_hex(32)).seed2(Client / System Hardware Entropy): A 32-byte (64-char hex) random string generated by the client environment, OS hardware RNG, or secondary worker.
🛡️ Why Two Seeds?
If one random number generator (RNG) is compromised or flawed, the second independent seed guarantees 100% cryptographic randomness and zero key leak risk.
🔑 Return Data Structure Example
Dictionary structure returned when calling agent.generate_key_shares(seed1, seed2):
{
"share1": "1-97c44a91cb12b926de7b01479e282a5b11f0eb6e5a5255443e7d172f552fecac",
"share2": "2-3333333333333333333333333333333333333333333333333333333333333333",
"share3": "3-8bce03f349a389019e3e580d1d855404c18f2b3df2cd77275a6c7cb80c70541e",
"_meta": {"m": 2, "n": 3}
}
🚀 Quick Start: Complete 5-Step Agent Integration Guide
Copy and paste this ready-to-run 5-step Python integration workflow:
from scafonix_agent import ScafonixAgent
def main():
# -------------------------------------------------------------
# STEP 1. Initialize Master AI & 3 Worker AIs (2-of-3 Threshold)
# -------------------------------------------------------------
master = ScafonixAgent(agent_id="Master-Orchestrator")
worker1 = ScafonixAgent(agent_id="Worker-1-TradingAI")
worker2 = ScafonixAgent(agent_id="Worker-2-ChartAI")
worker3 = ScafonixAgent(agent_id="Worker-3-AuditAI")
# -------------------------------------------------------------
# STEP 2. Generate 2-of-3 Key Shares & Derive EVM Address
# -------------------------------------------------------------
# [IMPORTANT] DO NOT hardcode seeds in production! Generate unique random 32-byte hex seeds:
import secrets
seed1 = secrets.token_hex(32)
seed2 = secrets.token_hex(32)
shares = master.generate_key_shares(seed1, seed2)
# [Isolated Worker Storage]
worker1_share = shares["share1"] # Worker 1 holds Share 1
worker2_share = shares["share2"] # Worker 2 holds Share 2
worker3_share = shares["share3"] # Worker 3 holds Share 3 (Master holds ZERO shares!)
# Derive Consensus Wallet Address (Share 1 + Share 2 pairing)
wallet_address = master.derive_address(worker1_share, worker2_share)
print("📍 Agent Consensus Wallet Address:", wallet_address)
# -------------------------------------------------------------
# STEP 3. Target Transaction Hash (32-byte Hex Hash)
# -------------------------------------------------------------
tx_hash = "0x0123456789abcdef0123456789abcdef0123456789abcdef0123456789abcdef"
# -------------------------------------------------------------
# STEP 4. Buy x402 Signed Ticket ($0.005 USDC on Base via mpc-api.scafonix.com)
# -------------------------------------------------------------
ticket = {
"ticketId": "s_tkt_8f92a10b4c739d2e",
"msgHash": tx_hash,
"status": "VALID",
"issuedAt": 1786000000,
"expiresAt": 1786000600,
"network": "base-mainnet",
"feePaid": "0.005 USDC",
"signedProof": "eyJhbGciOiJFUzI1NiIsInR5cCI6IkpXVCJ9.eyJ0aWNrZXRJZCI6InNfdGt0XzhmOTJhMTBiNGM3MzlkMmUiLCJtc2dIYXNoIjoiMHgwMTIzNDU2Nzg5YWJjZGVmIiwiZXhwaXJlcyI6MTc4NjAwMDYwMH0.SflKxwRJSMeKKF2QT4fwpMeJf36POk6yJV_adQssw5c"
}
# -------------------------------------------------------------
# STEP 5. 2-of-3 Voting: Workers Sign Partial & Master Combines
# -------------------------------------------------------------
# Worker 1 (Trading AI): APPROVE ✅ (Generates Partial Signature 1 with its single_share)
part1 = worker1.sign_partial(
single_share=worker1_share,
msg_hash=tx_hash
)
# Worker 2 (Chart AI): APPROVE ✅ (Generates Partial Signature 2 with its single_share)
part2 = worker2.sign_partial(
single_share=worker2_share,
msg_hash=tx_hash
)
# Worker 3 (Audit AI): REJECT ❌ (Suspicious risk detected - Does NOT sign)
# Master AI combines 2 valid worker partial signatures + x402 Ticket -> Final (R, S, V)
final_sig = master.combine_signatures(
partial_signatures=[part1, part2],
ticket=ticket
)
print("🎉 Final Valid Signature (R, S, V):", final_sig)
if __name__ == "__main__":
main()
🦜 LangChain & CrewAI Agent Integration (1-Line Tool Registration)
Equip your LangChain or CrewAI autonomous agents with ScafonixMPCTool for production-grade agentic consensus:
from langchain_openai import ChatOpenAI
from langchain.agents import AgentExecutor, create_react_agent
from langchain import hub
from scafonix_agent import ScafonixMPCTool
# 1. Instantiate Scafonix MPC Tool
mpc_tool = ScafonixMPCTool()
# 2. Equip LangChain Agent with Scafonix MPC Security
llm = ChatOpenAI(model="gpt-4o", temperature=0)
prompt = hub.pull("hwchase17/react")
agent = create_react_agent(llm=llm, tools=[mpc_tool], prompt=prompt)
agent_executor = AgentExecutor(agent=agent, tools=[mpc_tool], verbose=True)
# 3. Autonomous AI Trading Consensus: Evaluate & Sign Trade on Base L2
result = agent_executor.invoke({
"input": (
"Evaluate high-yield DEX arbitrage txHash '0x8f2c...9e10' on Base L2. "
"Collect consensus votes: Trading AI (Worker 1) and Chart AI (Worker 2) approve trade ✅, "
"Risk AI (Worker 3) flags volatility ❌. Reaching 2-of-3 threshold, purchase $0.005 USDC x402 Ticket "
"and combine signatures into a valid EVM transaction."
)
})
print("🚀 Autonomous Trade Executed:", result["output"])
🗝️ Human Owner Emergency Private Key Export (No x402 Ticket Required)
Human System Owners can independently export the raw 256-bit EOA Private Key (0x...) for emergency backup or cold storage.
[!CAUTION] AI AGENT RESTRICTION RULE: This method is strictly reserved for Human System Owners. Autonomous AI Agents are prohibited from possessing or invoking key export functions.
from scafonix_agent import ScafonixAgent
master = ScafonixAgent(agent_id="Human-Owner-Admin")
# Supply any 2 threshold key shares (e.g. share1 and share2)
raw_private_key = master.export_private_key(worker1_share, worker2_share)
print("🔑 Raw EOA Private Key:", raw_private_key) # 0x...64-char hex
📖 API Reference Summary
| Method | Parameters | Description / Return Value |
|---|---|---|
generate_key_shares(seed1, seed2) |
Two 32-byte hex entropy seeds | {"share1", "share2", "share3", "_meta"} dictionary |
derive_address(share_a, share_b) |
Two key share strings | On-chain EOA Wallet Address (0x...) |
sign_partial(single_share, msg_hash) |
Own share, txHash | 1-time Worker Partial Signature (partialS, r, v) |
combine_signatures(partial_signatures, ticket) |
List of partial signatures, x402 Ticket | On-chain Final Signature (r, s, v, ticketId) |
export_private_key(share_a, share_b) |
Two key share strings | [HUMAN ONLY] Raw 256-bit Hex Private Key (0x...) |
📄 License
MIT © Scafonix Team
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