SNAP Protocol

Private agent payments on Solana via ZK proofs: deposit, withdraw, list pools, estimate fees.

OtherTypeScriptv0.1.2

SNAP — Shield Network Agent Payments

Private agent-to-agent payments on Solana using zero-knowledge proofs.

GitHub stars snap-solana-sdk snap-langchain-tools License: MIT Solana

SNAP is live on Solana mainnet. See the security docs for the protocol's threat model and trust assumptions.

What SNAP Does

SNAP lets AI agents pay each other without on-chain observers learning who paid whom. Deposits enter a shielded pool under a cryptographic commitment. Withdrawals leave the pool with a Groth16 proof that shows the recipient is entitled to the funds without revealing which deposit is being claimed.

How It Works

  1. Agent A deposits SOL plus a commitment into the pool.
  2. Agent A sends a secret note to Agent B through a private channel.
  3. Agent B reconstructs the Merkle path and generates a Groth16 proof.
  4. Agent B withdraws SOL with withdraw_zk or withdraw_zk_relayed.
  5. Observers can see the pool activity, but they cannot link the withdrawal to a specific deposit.

Quick Start

Install the SDK and its peer dependencies:

npm install snap-solana-sdk @solana/web3.js @coral-xyz/anchor

Minimal private payment:

import { Connection, Keypair, PublicKey, clusterApiUrl } from "@solana/web3.js";
import { SNAPClient } from "snap-solana-sdk";

async function main() {
  const connection = new Connection("https://your-rpc-url.com", "confirmed");
  const sender = Keypair.generate();
  const recipient = Keypair.generate();
  const pool = new PublicKey("B8SyffZKt8LABKogWjH9rZcjY5PV2hyYRCbTxxbcrpFf");

  const snapA = new SNAPClient(connection, sender);
  const snapB = new SNAPClient(connection, recipient);

  const note = await snapA.deposit(pool, 0.1);
  const serialized = SNAPClient.serializeNote(note);
  await snapB.withdraw(pool, SNAPClient.deserializeNote(serialized), recipient);
}

void main();

If you want a runnable walkthrough from this repo, use:

npx tsx examples/basic-payment.ts
npx tsx examples/agent-to-agent.ts
npx tsx examples/relayed-withdrawal.ts

Architecture

ComponentDescription
Solana ProgramAnchor program with deposit, withdraw_zk, and withdraw_zk_relayed
ZK Circuitcircom Groth16 circuit using Poseidon and a depth-10 Merkle tree
SDKsnap-solana-sdk for note handling, proof generation, and client API
Agent Kit PluginSolana Agent Kit v2 plugin with snap_create_pool, snap_deposit, snap_withdraw, and snap_withdraw_private
LangChain Toolssnap-langchain-tools — StructuredTool wrappers for LangChain/LangGraph agents
RelayerExpress service for gas-abstracted private withdrawals

Mainnet

Pool denominations are 0.1 SOL, 1 USDC, and 10 USDC. See THREAT_MODEL.md for trust assumptions.

FieldValue
Program ID9uePoqdgaXpqFLQM2ED1GGQrwSEiqe3r6tW1AfsnrrbS
Pool — 0.1 SOLB8SyffZKt8LABKogWjH9rZcjY5PV2hyYRCbTxxbcrpFf
Pool — 1 USDC5LeuHrPBgHNhgbCy996MEjcsBk5gNHhVj6AiuuCHZ8od
Pool — 10 USDCECuHf8kgiWfmL3Q6id4WGBQWvuukhzqvF5vsxuPAKZBv
NetworkSolana mainnet-beta
Protocol fee0.25%

Project Structure

├── programs/           # Solana program (Rust/Anchor)
├── circuits/           # circom ZK circuit
├── sdk-package/        # snap-solana-sdk npm package
├── agent-kit-tool/     # Solana Agent Kit plugin
├── relayer/            # Express relay service
├── agents/             # Demo agent scripts
├── examples/           # Minimal end-to-end examples
├── scripts/            # Deployment and quickstart scripts
├── docs/               # Troubleshooting, circuit, and compliance docs
└── tests/              # Integration tests

Development

# Build the Solana program
anchor build

# Run validator-backed tests
PATH="$HOME/.local/share/solana/install/active_release/bin:$PATH" anchor test --skip-build

# Build and test the SDK package
cd sdk-package && npm install && npm run build && npm test

Security

Known risks, protocol limits, and security documentation are in FINDINGS.md, docs/CIRCUIT_SPEC.md, docs/THREAT_MODEL.md, docs/COMPLIANCE.md, and docs/GOVERNANCE.md.

License

MIT

Installation

Source-derived launch command. Check the maintainer’s required arguments and credentials before running:

bash
npx -y snap-mcp-server

Set up in your AI client

Merge this template into ~/Library/Application Support/Claude/claude_desktop_config.json. Keep existing servers. Add any arguments, credentials, and permissions required by the maintainer; this template has not been install-tested.

json
{
  "mcpServers": {
    "io-github-agentzeny-snap-private-payments": {
      "command": "npx",
      "args": [
        "-y",
        "snap-mcp-server"
      ]
    }
  }
}

Restart Claude Desktop completely for changes to take effect. Confirm the server appears connected in the client’s tool list, then try a read-only example from its documentation.

Claude Desktop setup reference

Package

snap-mcp-servernpm

Compatible MCP Clients

SNAP Protocol works with any MCP-compatible client. Copy the config snippet from the Configuration section above and add it to the file shown for your client, then restart the application.

  • Claude Desktop~/Library/Application Support/Claude/claude_desktop_config.jsonRestart Claude Desktop completely for changes to take effect.
  • Cursor~/.cursor/mcp.jsonRestart Cursor for changes to take effect.
  • VS Code.vscode/mcp.jsonReload VS Code window for changes to take effect.
  • Windsurf~/.codeium/windsurf/mcp_config.jsonRestart Windsurf for changes to take effect.
  • Claude Code.mcp.jsonSave at the project root, then start Claude Code in that project and review the MCP server approval prompt. Keep real credentials out of shared files.

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