// SPDX-License-Identifier: MIT pragma solidity ^0.8.23; import "@openzeppelin/contracts/access/Ownable.sol"; import "@openzeppelin/contracts/security/ReentrancyGuard.sol"; import "@openzeppelin/contracts/token/ERC721/ERC721.sol"; /** * @title AereFeeMonetization * @notice Pay developers (and Foundation treasury) automatically when their contracts * get used. Modelled on Mode Network's Sequencer Fee Sharing pattern: * * - Developer calls register(contractAddr, payoutAddr) and receives an * ERC-721 NFT representing the right to collect fees from contractAddr. * - An off-chain distributor (running on aere-infra) parses recent blocks, * attributes gas per top-level contract, and calls distribute() with * per-tokenId amounts. * - NFT owner calls claim(tokenId) to withdraw accumulated AERE. * * The NFT is transferable, so fee streams become sellable / collateralisable. * * Plus: a fixed `treasuryBps` slice that always flows to AERE Foundation * (separate from per-contract dev-share). Default 500 = 5%. * * Fee distribution per gas fee paid (set by Foundation governance): * burnBps (Tier 1.8): 3750 = 37.5% (permanent burn) * treasuryBps (this tier): 500 = 5% (always to Foundation) * devShareBps (this tier): 2000 = 20% (to registered NFT owner, else to validator) * validatorBps (residual): 3750 = 37.5% (to block validator) * * Foundation registers its own foundational contracts (AereSwapRouter, * AereSettlement, AereMessenger, AereNFTMarketplace, etc.) so their dev-share * flows back to Foundation. External devs register their own; their NFT owner * collects that fee stream. */ contract AereFeeMonetization is ERC721, Ownable, ReentrancyGuard { /// Treasury address. All `treasuryBps` revenue flows here. address payable public treasury; /// Dev-share rate in basis points (10000 = 100%). Hard cap at 3000 (30%). uint256 public devShareBps = 2000; /// Treasury slice in basis points. Hard cap at 1500 (15%). uint256 public treasuryBps = 500; uint256 public constant BPS = 10_000; /// Authorised distributors (Foundation runs these — same trust model as Tier 1.8). mapping(address => bool) public isDistributor; /// Auto-incrementing tokenId. uint256 public nextTokenId = 1; /// tokenId → contract that earns this share. mapping(uint256 => address) public earningContract; /// contractAddr → tokenId (0 if not registered). mapping(address => uint256) public tokenIdOf; /// tokenId → unclaimed AERE balance. mapping(uint256 => uint256) public pendingRewards; /// Lifetime cumulative paid to each NFT and to treasury. mapping(uint256 => uint256) public totalPaidToToken; uint256 public totalPaidToTreasury; event Registered(address indexed contractAddr, uint256 indexed tokenId, address indexed payout); event Distributed(uint256 indexed tokenId, uint256 amount, uint256 newPending); event TreasuryFunded(uint256 amount, uint256 newTotal); event Claimed(uint256 indexed tokenId, address indexed to, uint256 amount); event RateChanged(string what, uint256 oldValue, uint256 newValue); event DistributorChanged(address indexed distributor, bool authorised); event TreasuryChanged(address indexed previous, address indexed next); modifier onlyDistributor() { require(isDistributor[msg.sender], "FeeMon: not a distributor"); _; } constructor(address payable _treasury) ERC721("AERE Fee Monetization", "AERE-FM") { require(_treasury != address(0), "FeeMon: zero treasury"); treasury = _treasury; } // ───────────────────── Admin ───────────────────── function setTreasury(address payable _treasury) external onlyOwner { require(_treasury != address(0), "FeeMon: zero treasury"); emit TreasuryChanged(treasury, _treasury); treasury = _treasury; } function setDevShareBps(uint256 _bps) external onlyOwner { require(_bps <= 3000, "FeeMon: devShare too high"); emit RateChanged("devShareBps", devShareBps, _bps); devShareBps = _bps; } function setTreasuryBps(uint256 _bps) external onlyOwner { require(_bps <= 1500, "FeeMon: treasuryBps too high"); emit RateChanged("treasuryBps", treasuryBps, _bps); treasuryBps = _bps; } function setDistributor(address dist, bool ok) external onlyOwner { isDistributor[dist] = ok; emit DistributorChanged(dist, ok); } // ───────────────────── Registration ───────────────────── /** * @notice Register a contract for fee-share. The caller becomes the initial * NFT owner. payoutAddr is informational — the NFT owner at claim time * is who receives the AERE. */ function register(address contractAddr, address payoutAddr) external returns (uint256 tokenId) { require(contractAddr != address(0), "FeeMon: zero contract"); require(tokenIdOf[contractAddr] == 0, "FeeMon: already registered"); require(payoutAddr != address(0), "FeeMon: zero payout"); tokenId = nextTokenId++; earningContract[tokenId] = contractAddr; tokenIdOf[contractAddr] = tokenId; _mint(payoutAddr, tokenId); emit Registered(contractAddr, tokenId, payoutAddr); } /// Convenience: Foundation registers in bulk. function registerBatch(address[] calldata contractAddrs, address payoutAddr) external onlyOwner returns (uint256[] memory tokenIds) { tokenIds = new uint256[](contractAddrs.length); for (uint256 i = 0; i < contractAddrs.length; i++) { require(tokenIdOf[contractAddrs[i]] == 0, "FeeMon: already registered"); uint256 tid = nextTokenId++; earningContract[tid] = contractAddrs[i]; tokenIdOf[contractAddrs[i]] = tid; _mint(payoutAddr, tid); emit Registered(contractAddrs[i], tid, payoutAddr); tokenIds[i] = tid; } } // ───────────────────── Distribution (called by Foundation distributor) ───────────────────── /** * @notice Credit per-tokenId fee shares. The distributor sends `totalAmount` * as msg.value. Sum of `amounts` plus the treasury slice = totalAmount. */ function distribute( uint256[] calldata tokenIds, uint256[] calldata amounts, uint256 treasuryAmount ) external payable onlyDistributor nonReentrant { require(tokenIds.length == amounts.length, "FeeMon: length mismatch"); uint256 sum = treasuryAmount; for (uint256 i = 0; i < amounts.length; i++) { sum += amounts[i]; } require(sum == msg.value, "FeeMon: amount mismatch"); // Treasury slice if (treasuryAmount > 0) { (bool ok, ) = treasury.call{ value: treasuryAmount }(""); require(ok, "FeeMon: treasury transfer failed"); totalPaidToTreasury += treasuryAmount; emit TreasuryFunded(treasuryAmount, totalPaidToTreasury); } // Per-token shares (held in contract until claim) for (uint256 i = 0; i < tokenIds.length; i++) { require(earningContract[tokenIds[i]] != address(0), "FeeMon: bad tokenId"); pendingRewards[tokenIds[i]] += amounts[i]; totalPaidToToken[tokenIds[i]] += amounts[i]; emit Distributed(tokenIds[i], amounts[i], pendingRewards[tokenIds[i]]); } } // ───────────────────── Claim ───────────────────── function claim(uint256 tokenId) external nonReentrant returns (uint256 amount) { require(ownerOf(tokenId) == msg.sender, "FeeMon: not NFT owner"); amount = pendingRewards[tokenId]; require(amount > 0, "FeeMon: nothing to claim"); pendingRewards[tokenId] = 0; (bool ok, ) = payable(msg.sender).call{ value: amount }(""); require(ok, "FeeMon: claim transfer failed"); emit Claimed(tokenId, msg.sender, amount); } /// View: how much would the current NFT owner withdraw if they called claim() now? function claimableFor(address holder) external view returns (uint256 total) { // Walk via balanceOf — gas-heavy, intended for off-chain UI only. uint256 bal = balanceOf(holder); if (bal == 0) return 0; // ERC-721 doesn't index tokens by owner natively in OZ basic. Caller should // pass tokenIds explicitly via pendingRewards mapping for production reads. // This helper is a UI-friendly shortcut for small wallets. for (uint256 t = 1; t < nextTokenId; t++) { if (_ownerOf(t) == holder) { total += pendingRewards[t]; } } } // ───────────────────── Stats ───────────────────── function policy() external view returns (uint256 burnBps_, uint256 devShareBps_, uint256 treasuryBps_, uint256 validatorBps_) { burnBps_ = 3750; // Tier 1.8 - documented here for clarity only; actual burn lives in AereCoinbaseSplitter devShareBps_ = devShareBps; treasuryBps_ = treasuryBps; // Validator residual = BPS - burn - devShare(if registered) - treasury validatorBps_ = BPS - 3750 - devShareBps - treasuryBps; } receive() external payable {} }