ETH Price: $1,972.33 (+0.19%)
 

Overview

ETH Balance

390.189663045758302019 ETH

Eth Value

$769,583.78 (@ $1,972.33/ETH)

Token Holdings

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Multichain Info

Transaction Hash
Method
Block
From
To
Withdraw245064472026-02-21 16:30:2316 hrs ago1771691423IN
0xSplits: Split Main
0 ETH0.000003240.06736536
Withdraw245057932026-02-21 14:19:2318 hrs ago1771683563IN
0xSplits: Split Main
0 ETH0.000076832.04370825
Withdraw245054152026-02-21 13:03:3519 hrs ago1771679015IN
0xSplits: Split Main
0 ETH0.000133722.04698612
Withdraw245053672026-02-21 12:53:5919 hrs ago1771678439IN
0xSplits: Split Main
0 ETH0.000098792.048586
Withdraw245051592026-02-21 12:12:2320 hrs ago1771675943IN
0xSplits: Split Main
0 ETH0.000004520.06926688
Withdraw245009972026-02-20 22:16:5934 hrs ago1771625819IN
0xSplits: Split Main
0 ETH0.000133492.04376919
Withdraw245009902026-02-20 22:15:3534 hrs ago1771625735IN
0xSplits: Split Main
0 ETH0.000133962.05068971
Withdraw244990982026-02-20 15:56:2340 hrs ago1771602983IN
0xSplits: Split Main
0 ETH0.000142882.18724972
Withdraw244974832026-02-20 10:31:4746 hrs ago1771583507IN
0xSplits: Split Main
0 ETH0.000004870.07457517
Withdraw244973432026-02-20 10:03:3546 hrs ago1771581815IN
0xSplits: Split Main
0 ETH0.000134272.05537514
Withdraw244962672026-02-20 6:27:232 days ago1771568843IN
0xSplits: Split Main
0 ETH0.000003390.05204244
Withdraw244924052026-02-19 17:31:592 days ago1771522319IN
0xSplits: Split Main
0 ETH0.00001430.20438097
Withdraw244883622026-02-19 4:00:233 days ago1771473623IN
0xSplits: Split Main
0 ETH0.000076432.03310514
Withdraw244863432026-02-18 21:14:353 days ago1771449275IN
0xSplits: Split Main
0 ETH0.000006180.09475011
Create Split244827672026-02-18 9:16:473 days ago1771406207IN
0xSplits: Split Main
0 ETH0.000003830.03113416
Withdraw244767212026-02-17 13:01:594 days ago1771333319IN
0xSplits: Split Main
0 ETH0.00006541.00117487
Withdraw244765092026-02-17 12:19:354 days ago1771330775IN
0xSplits: Split Main
0 ETH0.000139722.13880421
Withdraw244758632026-02-17 10:09:594 days ago1771322999IN
0xSplits: Split Main
0 ETH0.000133272.04052304
Withdraw244747772026-02-17 6:31:355 days ago1771309895IN
0xSplits: Split Main
0 ETH0.000034930.92932007
Withdraw244745942026-02-17 5:54:475 days ago1771307687IN
0xSplits: Split Main
0 ETH0.000132762.03234761
Withdraw244703742026-02-16 15:47:235 days ago1771256843IN
0xSplits: Split Main
0 ETH0.000006940.10631152
Withdraw244696882026-02-16 13:29:595 days ago1771248599IN
0xSplits: Split Main
0 ETH0.000069641.06604664
Withdraw244694492026-02-16 12:41:595 days ago1771245719IN
0xSplits: Split Main
0 ETH0.000099082.05452249
Withdraw244653242026-02-15 22:54:116 days ago1771196051IN
0xSplits: Split Main
0 ETH0.000133042.03661154
Withdraw244562782026-02-14 16:38:477 days ago1771087127IN
0xSplits: Split Main
0 ETH0.000006110.09364142
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Latest 25 internal transactions (View All)

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Parent Transaction Hash Method Block
From
To
Transfer245057932026-02-21 14:19:2318 hrs ago1771683563
0xSplits: Split Main
0.00259907 ETH
Transfer245021402026-02-21 2:06:2330 hrs ago1771639583
0xSplits: Split Main
3.85363155 ETH
Transfer245021402026-02-21 2:06:2330 hrs ago1771639583
0xSplits: Split Main
0.00000385 ETH
Transfer245021402026-02-21 2:06:2330 hrs ago1771639583
0xSplits: Split Main
3.85363541 ETH
Transfer244883622026-02-19 4:00:233 days ago1771473623
0xSplits: Split Main
0.00297 ETH
0x3d605d80244827672026-02-18 9:16:473 days ago1771406207
0xSplits: Split Main
 Contract Creation0 ETH
Transfer244747772026-02-17 6:31:355 days ago1771309895
0xSplits: Split Main
0.00918727 ETH
Transfer244733572026-02-17 1:46:235 days ago1771292783
0xSplits: Split Main
0.0133715 ETH
Transfer244733572026-02-17 1:46:235 days ago1771292783
0xSplits: Split Main
0.01528171 ETH
Transfer244733572026-02-17 1:46:235 days ago1771292783
0xSplits: Split Main
0.0084568 ETH
Transfer244733572026-02-17 1:46:235 days ago1771292783
0xSplits: Split Main
0.0133715 ETH
Transfer244733572026-02-17 1:46:235 days ago1771292783
0xSplits: Split Main
0.00764085 ETH
Transfer244733572026-02-17 1:46:235 days ago1771292783
0xSplits: Split Main
0.0133715 ETH
Transfer244733572026-02-17 1:46:235 days ago1771292783
0xSplits: Split Main
0.04832461 ETH
Transfer244543582026-02-14 10:13:357 days ago1771064015
0xSplits: Split Main
0.00448407 ETH
Transfer244452282026-02-13 3:38:479 days ago1770953927
0xSplits: Split Main
3.28297547 ETH
Transfer244452282026-02-13 3:38:479 days ago1770953927
0xSplits: Split Main
0.00000328 ETH
Transfer244452282026-02-13 3:38:479 days ago1770953927
0xSplits: Split Main
3.28297875 ETH
Transfer244255382026-02-10 9:40:2311 days ago1770716423
0xSplits: Split Main
0.005 ETH
Transfer244255382026-02-10 9:40:2311 days ago1770716423
0xSplits: Split Main
0.0045 ETH
Transfer244255382026-02-10 9:40:2311 days ago1770716423
0xSplits: Split Main
0.0405 ETH
Transfer244255382026-02-10 9:40:2311 days ago1770716423
0xSplits: Split Main
0.05 ETH
Transfer244208012026-02-09 17:48:1112 days ago1770659291
0xSplits: Split Main
0.00059745 ETH
Transfer244207722026-02-09 17:42:2312 days ago1770658943
0xSplits: Split Main
0.16108622 ETH
Transfer244207722026-02-09 17:42:2312 days ago1770658943
0xSplits: Split Main
0.04333702 ETH
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Contract Source Code Verified (Exact Match)

Contract Name:
SplitMain

Compiler Version
v0.8.4+commit.c7e474f2

Optimization Enabled:
Yes with 200 runs

Other Settings:
default evmVersion, Audited
// SPDX-License-Identifier: GPL-3.0-or-later
pragma solidity 0.8.4;

import {ISplitMain} from 'contracts/interfaces/ISplitMain.sol';
import {SplitWallet} from 'contracts/SplitWallet.sol';
import {Clones} from 'contracts/libraries/Clones.sol';
import {ERC20} from '@rari-capital/solmate/src/tokens/ERC20.sol';
import {SafeTransferLib} from '@rari-capital/solmate/src/utils/SafeTransferLib.sol';

/**

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 */

/**
 * ERRORS
 */

/// @notice Unauthorized sender `sender`
/// @param sender Transaction sender
error Unauthorized(address sender);
/// @notice Invalid number of accounts `accountsLength`, must have at least 2
/// @param accountsLength Length of accounts array
error InvalidSplit__TooFewAccounts(uint256 accountsLength);
/// @notice Array lengths of accounts & percentAllocations don't match (`accountsLength` != `allocationsLength`)
/// @param accountsLength Length of accounts array
/// @param allocationsLength Length of percentAllocations array
error InvalidSplit__AccountsAndAllocationsMismatch(
  uint256 accountsLength,
  uint256 allocationsLength
);
/// @notice Invalid percentAllocations sum `allocationsSum` must equal `PERCENTAGE_SCALE`
/// @param allocationsSum Sum of percentAllocations array
error InvalidSplit__InvalidAllocationsSum(uint32 allocationsSum);
/// @notice Invalid accounts ordering at `index`
/// @param index Index of out-of-order account
error InvalidSplit__AccountsOutOfOrder(uint256 index);
/// @notice Invalid percentAllocation of zero at `index`
/// @param index Index of zero percentAllocation
error InvalidSplit__AllocationMustBePositive(uint256 index);
/// @notice Invalid distributorFee `distributorFee` cannot be greater than 10% (1e5)
/// @param distributorFee Invalid distributorFee amount
error InvalidSplit__InvalidDistributorFee(uint32 distributorFee);
/// @notice Invalid hash `hash` from split data (accounts, percentAllocations, distributorFee)
/// @param hash Invalid hash
error InvalidSplit__InvalidHash(bytes32 hash);
/// @notice Invalid new controlling address `newController` for mutable split
/// @param newController Invalid new controller
error InvalidNewController(address newController);

/**
 * @title SplitMain
 * @author 0xSplits <will@0xSplits.xyz>
 * @notice A composable and gas-efficient protocol for deploying splitter contracts.
 * @dev Split recipients, ownerships, and keeper fees are stored onchain as calldata & re-passed as args / validated
 * via hashing when needed. Each split gets its own address & proxy for maximum composability with other contracts onchain.
 * For these proxies, we extended EIP-1167 Minimal Proxy Contract to avoid `DELEGATECALL` inside `receive()` to accept
 * hard gas-capped `sends` & `transfers`.
 */
contract SplitMain is ISplitMain {
  using SafeTransferLib for address;
  using SafeTransferLib for ERC20;

  /**
   * STRUCTS
   */

  /// @notice holds Split metadata
  struct Split {
    bytes32 hash;
    address controller;
    address newPotentialController;
  }

  /**
   * STORAGE
   */

  /**
   * STORAGE - CONSTANTS & IMMUTABLES
   */

  /// @notice constant to scale uints into percentages (1e6 == 100%)
  uint256 public constant PERCENTAGE_SCALE = 1e6;
  /// @notice maximum distributor fee; 1e5 = 10% * PERCENTAGE_SCALE
  uint256 internal constant MAX_DISTRIBUTOR_FEE = 1e5;
  /// @notice address of wallet implementation for split proxies
  address public immutable override walletImplementation;

  /**
   * STORAGE - VARIABLES - PRIVATE & INTERNAL
   */

  /// @notice mapping to account ETH balances
  mapping(address => uint256) internal ethBalances;
  /// @notice mapping to account ERC20 balances
  mapping(ERC20 => mapping(address => uint256)) internal erc20Balances;
  /// @notice mapping to Split metadata
  mapping(address => Split) internal splits;

  /**
   * MODIFIERS
   */

  /** @notice Reverts if the sender doesn't own the split `split`
   *  @param split Address to check for control
   */
  modifier onlySplitController(address split) {
    if (msg.sender != splits[split].controller) revert Unauthorized(msg.sender);
    _;
  }

  /** @notice Reverts if the sender isn't the new potential controller of split `split`
   *  @param split Address to check for new potential control
   */
  modifier onlySplitNewPotentialController(address split) {
    if (msg.sender != splits[split].newPotentialController)
      revert Unauthorized(msg.sender);
    _;
  }

  /** @notice Reverts if the split with recipients represented by `accounts` and `percentAllocations` is malformed
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   */
  modifier validSplit(
    address[] memory accounts,
    uint32[] memory percentAllocations,
    uint32 distributorFee
  ) {
    if (accounts.length < 2)
      revert InvalidSplit__TooFewAccounts(accounts.length);
    if (accounts.length != percentAllocations.length)
      revert InvalidSplit__AccountsAndAllocationsMismatch(
        accounts.length,
        percentAllocations.length
      );
    // _getSum should overflow if any percentAllocation[i] < 0
    if (_getSum(percentAllocations) != PERCENTAGE_SCALE)
      revert InvalidSplit__InvalidAllocationsSum(_getSum(percentAllocations));
    unchecked {
      // overflow should be impossible in for-loop index
      // cache accounts length to save gas
      uint256 loopLength = accounts.length - 1;
      for (uint256 i = 0; i < loopLength; ++i) {
        // overflow should be impossible in array access math
        if (accounts[i] >= accounts[i + 1])
          revert InvalidSplit__AccountsOutOfOrder(i);
        if (percentAllocations[i] == uint32(0))
          revert InvalidSplit__AllocationMustBePositive(i);
      }
      // overflow should be impossible in array access math with validated equal array lengths
      if (percentAllocations[loopLength] == uint32(0))
        revert InvalidSplit__AllocationMustBePositive(loopLength);
    }
    if (distributorFee > MAX_DISTRIBUTOR_FEE)
      revert InvalidSplit__InvalidDistributorFee(distributorFee);
    _;
  }

  /** @notice Reverts if `newController` is the zero address
   *  @param newController Proposed new controlling address
   */
  modifier validNewController(address newController) {
    if (newController == address(0)) revert InvalidNewController(newController);
    _;
  }

  /**
   * CONSTRUCTOR
   */

  constructor() {
    walletImplementation = address(new SplitWallet());
  }

  /**
   * FUNCTIONS
   */

  /**
   * FUNCTIONS - PUBLIC & EXTERNAL
   */

  /** @notice Receive ETH
   *  @dev Used by split proxies in `distributeETH` to transfer ETH to `SplitMain`
   *  Funds sent outside of `distributeETH` will be unrecoverable
   */
  receive() external payable {}

  /** @notice Creates a new split with recipients `accounts` with ownerships `percentAllocations`, a keeper fee for splitting of `distributorFee` and the controlling address `controller`
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   *  @param controller Controlling address (0x0 if immutable)
   *  @return split Address of newly created split
   */
  function createSplit(
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee,
    address controller
  )
    external
    override
    validSplit(accounts, percentAllocations, distributorFee)
    returns (address split)
  {
    bytes32 splitHash = _hashSplit(
      accounts,
      percentAllocations,
      distributorFee
    );
    if (controller == address(0)) {
      // create immutable split
      split = Clones.cloneDeterministic(walletImplementation, splitHash);
    } else {
      // create mutable split
      split = Clones.clone(walletImplementation);
      splits[split].controller = controller;
    }
    // store split's hash in storage for future verification
    splits[split].hash = splitHash;
    emit CreateSplit(split);
  }

  /** @notice Predicts the address for an immutable split created with recipients `accounts` with ownerships `percentAllocations` and a keeper fee for splitting of `distributorFee`
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   *  @return split Predicted address of such an immutable split
   */
  function predictImmutableSplitAddress(
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee
  )
    external
    view
    override
    validSplit(accounts, percentAllocations, distributorFee)
    returns (address split)
  {
    bytes32 splitHash = _hashSplit(
      accounts,
      percentAllocations,
      distributorFee
    );
    split = Clones.predictDeterministicAddress(walletImplementation, splitHash);
  }

  /** @notice Updates an existing split with recipients `accounts` with ownerships `percentAllocations` and a keeper fee for splitting of `distributorFee`
   *  @param split Address of mutable split to update
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   */
  function updateSplit(
    address split,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee
  )
    external
    override
    onlySplitController(split)
    validSplit(accounts, percentAllocations, distributorFee)
  {
    _updateSplit(split, accounts, percentAllocations, distributorFee);
  }

  /** @notice Begins transfer of the controlling address of mutable split `split` to `newController`
   *  @dev Two-step control transfer inspired by [dharma](https://github.com/dharma-eng/dharma-smart-wallet/blob/master/contracts/helpers/TwoStepOwnable.sol)
   *  @param split Address of mutable split to transfer control for
   *  @param newController Address to begin transferring control to
   */
  function transferControl(address split, address newController)
    external
    override
    onlySplitController(split)
    validNewController(newController)
  {
    splits[split].newPotentialController = newController;
    emit InitiateControlTransfer(split, newController);
  }

  /** @notice Cancels transfer of the controlling address of mutable split `split`
   *  @param split Address of mutable split to cancel control transfer for
   */
  function cancelControlTransfer(address split)
    external
    override
    onlySplitController(split)
  {
    delete splits[split].newPotentialController;
    emit CancelControlTransfer(split);
  }

  /** @notice Accepts transfer of the controlling address of mutable split `split`
   *  @param split Address of mutable split to accept control transfer for
   */
  function acceptControl(address split)
    external
    override
    onlySplitNewPotentialController(split)
  {
    delete splits[split].newPotentialController;
    emit ControlTransfer(split, splits[split].controller, msg.sender);
    splits[split].controller = msg.sender;
  }

  /** @notice Turns mutable split `split` immutable
   *  @param split Address of mutable split to turn immutable
   */
  function makeSplitImmutable(address split)
    external
    override
    onlySplitController(split)
  {
    delete splits[split].newPotentialController;
    emit ControlTransfer(split, splits[split].controller, address(0));
    splits[split].controller = address(0);
  }

  /** @notice Distributes the ETH balance for split `split`
   *  @dev `accounts`, `percentAllocations`, and `distributorFee` are verified by hashing
   *  & comparing to the hash in storage associated with split `split`
   *  @param split Address of split to distribute balance for
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   *  @param distributorAddress Address to pay `distributorFee` to
   */
  function distributeETH(
    address split,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee,
    address distributorAddress
  ) external override validSplit(accounts, percentAllocations, distributorFee) {
    // use internal fn instead of modifier to avoid stack depth compiler errors
    _validSplitHash(split, accounts, percentAllocations, distributorFee);
    _distributeETH(
      split,
      accounts,
      percentAllocations,
      distributorFee,
      distributorAddress
    );
  }

  /** @notice Updates & distributes the ETH balance for split `split`
   *  @dev only callable by SplitController
   *  @param split Address of split to distribute balance for
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   *  @param distributorAddress Address to pay `distributorFee` to
   */
  function updateAndDistributeETH(
    address split,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee,
    address distributorAddress
  )
    external
    override
    onlySplitController(split)
    validSplit(accounts, percentAllocations, distributorFee)
  {
    _updateSplit(split, accounts, percentAllocations, distributorFee);
    // know splitHash is valid immediately after updating; only accessible via controller
    _distributeETH(
      split,
      accounts,
      percentAllocations,
      distributorFee,
      distributorAddress
    );
  }

  /** @notice Distributes the ERC20 `token` balance for split `split`
   *  @dev `accounts`, `percentAllocations`, and `distributorFee` are verified by hashing
   *  & comparing to the hash in storage associated with split `split`
   *  @dev pernicious ERC20s may cause overflow in this function inside
   *  _scaleAmountByPercentage, but results do not affect ETH & other ERC20 balances
   *  @param split Address of split to distribute balance for
   *  @param token Address of ERC20 to distribute balance for
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   *  @param distributorAddress Address to pay `distributorFee` to
   */
  function distributeERC20(
    address split,
    ERC20 token,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee,
    address distributorAddress
  ) external override validSplit(accounts, percentAllocations, distributorFee) {
    // use internal fn instead of modifier to avoid stack depth compiler errors
    _validSplitHash(split, accounts, percentAllocations, distributorFee);
    _distributeERC20(
      split,
      token,
      accounts,
      percentAllocations,
      distributorFee,
      distributorAddress
    );
  }

  /** @notice Updates & distributes the ERC20 `token` balance for split `split`
   *  @dev only callable by SplitController
   *  @dev pernicious ERC20s may cause overflow in this function inside
   *  _scaleAmountByPercentage, but results do not affect ETH & other ERC20 balances
   *  @param split Address of split to distribute balance for
   *  @param token Address of ERC20 to distribute balance for
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   *  @param distributorAddress Address to pay `distributorFee` to
   */
  function updateAndDistributeERC20(
    address split,
    ERC20 token,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee,
    address distributorAddress
  )
    external
    override
    onlySplitController(split)
    validSplit(accounts, percentAllocations, distributorFee)
  {
    _updateSplit(split, accounts, percentAllocations, distributorFee);
    // know splitHash is valid immediately after updating; only accessible via controller
    _distributeERC20(
      split,
      token,
      accounts,
      percentAllocations,
      distributorFee,
      distributorAddress
    );
  }

  /** @notice Withdraw ETH &/ ERC20 balances for account `account`
   *  @param account Address to withdraw on behalf of
   *  @param withdrawETH Withdraw all ETH if nonzero
   *  @param tokens Addresses of ERC20s to withdraw
   */
  function withdraw(
    address account,
    uint256 withdrawETH,
    ERC20[] calldata tokens
  ) external override {
    uint256[] memory tokenAmounts = new uint256[](tokens.length);
    uint256 ethAmount;
    if (withdrawETH != 0) {
      ethAmount = _withdraw(account);
    }
    unchecked {
      // overflow should be impossible in for-loop index
      for (uint256 i = 0; i < tokens.length; ++i) {
        // overflow should be impossible in array length math
        tokenAmounts[i] = _withdrawERC20(account, tokens[i]);
      }
      emit Withdrawal(account, ethAmount, tokens, tokenAmounts);
    }
  }

  /**
   * FUNCTIONS - VIEWS
   */

  /** @notice Returns the current hash of split `split`
   *  @param split Split to return hash for
   *  @return Split's hash
   */
  function getHash(address split) external view returns (bytes32) {
    return splits[split].hash;
  }

  /** @notice Returns the current controller of split `split`
   *  @param split Split to return controller for
   *  @return Split's controller
   */
  function getController(address split) external view returns (address) {
    return splits[split].controller;
  }

  /** @notice Returns the current newPotentialController of split `split`
   *  @param split Split to return newPotentialController for
   *  @return Split's newPotentialController
   */
  function getNewPotentialController(address split)
    external
    view
    returns (address)
  {
    return splits[split].newPotentialController;
  }

  /** @notice Returns the current ETH balance of account `account`
   *  @param account Account to return ETH balance for
   *  @return Account's balance of ETH
   */
  function getETHBalance(address account) external view returns (uint256) {
    return
      ethBalances[account] + (splits[account].hash != 0 ? account.balance : 0);
  }

  /** @notice Returns the ERC20 balance of token `token` for account `account`
   *  @param account Account to return ERC20 `token` balance for
   *  @param token Token to return balance for
   *  @return Account's balance of `token`
   */
  function getERC20Balance(address account, ERC20 token)
    external
    view
    returns (uint256)
  {
    return
      erc20Balances[token][account] +
      (splits[account].hash != 0 ? token.balanceOf(account) : 0);
  }

  /**
   * FUNCTIONS - PRIVATE & INTERNAL
   */

  /** @notice Sums array of uint32s
   *  @param numbers Array of uint32s to sum
   *  @return sum Sum of `numbers`.
   */
  function _getSum(uint32[] memory numbers) internal pure returns (uint32 sum) {
    // overflow should be impossible in for-loop index
    uint256 numbersLength = numbers.length;
    for (uint256 i = 0; i < numbersLength; ) {
      sum += numbers[i];
      unchecked {
        // overflow should be impossible in for-loop index
        ++i;
      }
    }
  }

  /** @notice Hashes a split
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   *  @return computedHash Hash of the split.
   */
  function _hashSplit(
    address[] memory accounts,
    uint32[] memory percentAllocations,
    uint32 distributorFee
  ) internal pure returns (bytes32) {
    return
      keccak256(abi.encodePacked(accounts, percentAllocations, distributorFee));
  }

  /** @notice Updates an existing split with recipients `accounts` with ownerships `percentAllocations` and a keeper fee for splitting of `distributorFee`
   *  @param split Address of mutable split to update
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   */
  function _updateSplit(
    address split,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee
  ) internal {
    bytes32 splitHash = _hashSplit(
      accounts,
      percentAllocations,
      distributorFee
    );
    // store new hash in storage for future verification
    splits[split].hash = splitHash;
    emit UpdateSplit(split);
  }

  /** @notice Checks hash from `accounts`, `percentAllocations`, and `distributorFee` against the hash stored for `split`
   *  @param split Address of hash to check
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   */
  function _validSplitHash(
    address split,
    address[] memory accounts,
    uint32[] memory percentAllocations,
    uint32 distributorFee
  ) internal view {
    bytes32 hash = _hashSplit(accounts, percentAllocations, distributorFee);
    if (splits[split].hash != hash) revert InvalidSplit__InvalidHash(hash);
  }

  /** @notice Distributes the ETH balance for split `split`
   *  @dev `accounts`, `percentAllocations`, and `distributorFee` must be verified before calling
   *  @param split Address of split to distribute balance for
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   *  @param distributorAddress Address to pay `distributorFee` to
   */
  function _distributeETH(
    address split,
    address[] memory accounts,
    uint32[] memory percentAllocations,
    uint32 distributorFee,
    address distributorAddress
  ) internal {
    uint256 mainBalance = ethBalances[split];
    uint256 proxyBalance = split.balance;
    // if mainBalance is positive, leave 1 in SplitMain for gas efficiency
    uint256 amountToSplit;
    unchecked {
      // underflow should be impossible
      if (mainBalance > 0) mainBalance -= 1;
      // overflow should be impossible
      amountToSplit = mainBalance + proxyBalance;
    }
    if (mainBalance > 0) ethBalances[split] = 1;
    // emit event with gross amountToSplit (before deducting distributorFee)
    emit DistributeETH(split, amountToSplit, distributorAddress);
    if (distributorFee != 0) {
      // given `amountToSplit`, calculate keeper fee
      uint256 distributorFeeAmount = _scaleAmountByPercentage(
        amountToSplit,
        distributorFee
      );
      unchecked {
        // credit keeper with fee
        // overflow should be impossible with validated distributorFee
        ethBalances[
          distributorAddress != address(0) ? distributorAddress : msg.sender
        ] += distributorFeeAmount;
        // given keeper fee, calculate how much to distribute to split recipients
        // underflow should be impossible with validated distributorFee
        amountToSplit -= distributorFeeAmount;
      }
    }
    unchecked {
      // distribute remaining balance
      // overflow should be impossible in for-loop index
      // cache accounts length to save gas
      uint256 accountsLength = accounts.length;
      for (uint256 i = 0; i < accountsLength; ++i) {
        // overflow should be impossible with validated allocations
        ethBalances[accounts[i]] += _scaleAmountByPercentage(
          amountToSplit,
          percentAllocations[i]
        );
      }
    }
    // flush proxy ETH balance to SplitMain
    // split proxy should be guaranteed to exist at this address after validating splitHash
    // (attacker can't deploy own contract to address with high balance & empty sendETHToMain
    // to drain ETH from SplitMain)
    // could technically check if (change in proxy balance == change in SplitMain balance)
    // before/after external call, but seems like extra gas for no practical benefit
    if (proxyBalance > 0) SplitWallet(split).sendETHToMain(proxyBalance);
  }

  /** @notice Distributes the ERC20 `token` balance for split `split`
   *  @dev `accounts`, `percentAllocations`, and `distributorFee` must be verified before calling
   *  @dev pernicious ERC20s may cause overflow in this function inside
   *  _scaleAmountByPercentage, but results do not affect ETH & other ERC20 balances
   *  @param split Address of split to distribute balance for
   *  @param token Address of ERC20 to distribute balance for
   *  @param accounts Ordered, unique list of addresses with ownership in the split
   *  @param percentAllocations Percent allocations associated with each address
   *  @param distributorFee Keeper fee paid by split to cover gas costs of distribution
   *  @param distributorAddress Address to pay `distributorFee` to
   */
  function _distributeERC20(
    address split,
    ERC20 token,
    address[] memory accounts,
    uint32[] memory percentAllocations,
    uint32 distributorFee,
    address distributorAddress
  ) internal {
    uint256 amountToSplit;
    uint256 mainBalance = erc20Balances[token][split];
    uint256 proxyBalance = token.balanceOf(split);
    unchecked {
      // if mainBalance &/ proxyBalance are positive, leave 1 for gas efficiency
      // underflow should be impossible
      if (proxyBalance > 0) proxyBalance -= 1;
      // underflow should be impossible
      if (mainBalance > 0) {
        mainBalance -= 1;
      }
      // overflow should be impossible
      amountToSplit = mainBalance + proxyBalance;
    }
    if (mainBalance > 0) erc20Balances[token][split] = 1;
    // emit event with gross amountToSplit (before deducting distributorFee)
    emit DistributeERC20(split, token, amountToSplit, distributorAddress);
    if (distributorFee != 0) {
      // given `amountToSplit`, calculate keeper fee
      uint256 distributorFeeAmount = _scaleAmountByPercentage(
        amountToSplit,
        distributorFee
      );
      // overflow should be impossible with validated distributorFee
      unchecked {
        // credit keeper with fee
        erc20Balances[token][
          distributorAddress != address(0) ? distributorAddress : msg.sender
        ] += distributorFeeAmount;
        // given keeper fee, calculate how much to distribute to split recipients
        amountToSplit -= distributorFeeAmount;
      }
    }
    // distribute remaining balance
    // overflows should be impossible in for-loop with validated allocations
    unchecked {
      // cache accounts length to save gas
      uint256 accountsLength = accounts.length;
      for (uint256 i = 0; i < accountsLength; ++i) {
        erc20Balances[token][accounts[i]] += _scaleAmountByPercentage(
          amountToSplit,
          percentAllocations[i]
        );
      }
    }
    // split proxy should be guaranteed to exist at this address after validating splitHash
    // (attacker can't deploy own contract to address with high ERC20 balance & empty
    // sendERC20ToMain to drain ERC20 from SplitMain)
    // doesn't support rebasing or fee-on-transfer tokens
    // flush extra proxy ERC20 balance to SplitMain
    if (proxyBalance > 0)
      SplitWallet(split).sendERC20ToMain(token, proxyBalance);
  }

  /** @notice Multiplies an amount by a scaled percentage
   *  @param amount Amount to get `scaledPercentage` of
   *  @param scaledPercent Percent scaled by PERCENTAGE_SCALE
   *  @return scaledAmount Percent of `amount`.
   */
  function _scaleAmountByPercentage(uint256 amount, uint256 scaledPercent)
    internal
    pure
    returns (uint256 scaledAmount)
  {
    // use assembly to bypass checking for overflow & division by 0
    // scaledPercent has been validated to be < PERCENTAGE_SCALE)
    // & PERCENTAGE_SCALE will never be 0
    // pernicious ERC20s may cause overflow, but results do not affect ETH & other ERC20 balances
    assembly {
      /* eg (100 * 2*1e4) / (1e6) */
      scaledAmount := div(mul(amount, scaledPercent), PERCENTAGE_SCALE)
    }
  }

  /** @notice Withdraw ETH for account `account`
   *  @param account Account to withdrawn ETH for
   *  @return withdrawn Amount of ETH withdrawn
   */
  function _withdraw(address account) internal returns (uint256 withdrawn) {
    // leave balance of 1 for gas efficiency
    // underflow if ethBalance is 0
    withdrawn = ethBalances[account] - 1;
    ethBalances[account] = 1;
    account.safeTransferETH(withdrawn);
  }

  /** @notice Withdraw ERC20 `token` for account `account`
   *  @param account Account to withdrawn ERC20 `token` for
   *  @return withdrawn Amount of ERC20 `token` withdrawn
   */
  function _withdrawERC20(address account, ERC20 token)
    internal
    returns (uint256 withdrawn)
  {
    // leave balance of 1 for gas efficiency
    // underflow if erc20Balance is 0
    withdrawn = erc20Balances[token][account] - 1;
    erc20Balances[token][account] = 1;
    token.safeTransfer(account, withdrawn);
  }
}

// SPDX-License-Identifier: GPL-3.0-or-later
pragma solidity 0.8.4;

import {ERC20} from '@rari-capital/solmate/src/tokens/ERC20.sol';

/**
 * @title ISplitMain
 * @author 0xSplits <will@0xSplits.xyz>
 */
interface ISplitMain {
  /**
   * FUNCTIONS
   */

  function walletImplementation() external returns (address);

  function createSplit(
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee,
    address controller
  ) external returns (address);

  function predictImmutableSplitAddress(
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee
  ) external view returns (address);

  function updateSplit(
    address split,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee
  ) external;

  function transferControl(address split, address newController) external;

  function cancelControlTransfer(address split) external;

  function acceptControl(address split) external;

  function makeSplitImmutable(address split) external;

  function distributeETH(
    address split,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee,
    address distributorAddress
  ) external;

  function updateAndDistributeETH(
    address split,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee,
    address distributorAddress
  ) external;

  function distributeERC20(
    address split,
    ERC20 token,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee,
    address distributorAddress
  ) external;

  function updateAndDistributeERC20(
    address split,
    ERC20 token,
    address[] calldata accounts,
    uint32[] calldata percentAllocations,
    uint32 distributorFee,
    address distributorAddress
  ) external;

  function withdraw(
    address account,
    uint256 withdrawETH,
    ERC20[] calldata tokens
  ) external;

  /**
   * EVENTS
   */

  /** @notice emitted after each successful split creation
   *  @param split Address of the created split
   */
  event CreateSplit(address indexed split);

  /** @notice emitted after each successful split update
   *  @param split Address of the updated split
   */
  event UpdateSplit(address indexed split);

  /** @notice emitted after each initiated split control transfer
   *  @param split Address of the split control transfer was initiated for
   *  @param newPotentialController Address of the split's new potential controller
   */
  event InitiateControlTransfer(
    address indexed split,
    address indexed newPotentialController
  );

  /** @notice emitted after each canceled split control transfer
   *  @param split Address of the split control transfer was canceled for
   */
  event CancelControlTransfer(address indexed split);

  /** @notice emitted after each successful split control transfer
   *  @param split Address of the split control was transferred for
   *  @param previousController Address of the split's previous controller
   *  @param newController Address of the split's new controller
   */
  event ControlTransfer(
    address indexed split,
    address indexed previousController,
    address indexed newController
  );

  /** @notice emitted after each successful ETH balance split
   *  @param split Address of the split that distributed its balance
   *  @param amount Amount of ETH distributed
   *  @param distributorAddress Address to credit distributor fee to
   */
  event DistributeETH(
    address indexed split,
    uint256 amount,
    address indexed distributorAddress
  );

  /** @notice emitted after each successful ERC20 balance split
   *  @param split Address of the split that distributed its balance
   *  @param token Address of ERC20 distributed
   *  @param amount Amount of ERC20 distributed
   *  @param distributorAddress Address to credit distributor fee to
   */
  event DistributeERC20(
    address indexed split,
    ERC20 indexed token,
    uint256 amount,
    address indexed distributorAddress
  );

  /** @notice emitted after each successful withdrawal
   *  @param account Address that funds were withdrawn to
   *  @param ethAmount Amount of ETH withdrawn
   *  @param tokens Addresses of ERC20s withdrawn
   *  @param tokenAmounts Amounts of corresponding ERC20s withdrawn
   */
  event Withdrawal(
    address indexed account,
    uint256 ethAmount,
    ERC20[] tokens,
    uint256[] tokenAmounts
  );
}

// SPDX-License-Identifier: GPL-3.0-or-later
pragma solidity 0.8.4;

import {ISplitMain} from './interfaces/ISplitMain.sol';
import {ERC20} from '@rari-capital/solmate/src/tokens/ERC20.sol';
import {SafeTransferLib} from '@rari-capital/solmate/src/utils/SafeTransferLib.sol';

/**
 * ERRORS
 */

/// @notice Unauthorized sender
error Unauthorized();

/**
 * @title SplitWallet
 * @author 0xSplits <will@0xSplits.xyz>
 * @notice The implementation logic for `SplitProxy`.
 * @dev `SplitProxy` handles `receive()` itself to avoid the gas cost with `DELEGATECALL`.
 */
contract SplitWallet {
  using SafeTransferLib for address;
  using SafeTransferLib for ERC20;

  /**
   * EVENTS
   */

  /** @notice emitted after each successful ETH transfer to proxy
   *  @param split Address of the split that received ETH
   *  @param amount Amount of ETH received
   */
  event ReceiveETH(address indexed split, uint256 amount);

  /**
   * STORAGE
   */

  /**
   * STORAGE - CONSTANTS & IMMUTABLES
   */

  /// @notice address of SplitMain for split distributions & EOA/SC withdrawals
  ISplitMain public immutable splitMain;

  /**
   * MODIFIERS
   */

  /// @notice Reverts if the sender isn't SplitMain
  modifier onlySplitMain() {
    if (msg.sender != address(splitMain)) revert Unauthorized();
    _;
  }

  /**
   * CONSTRUCTOR
   */

  constructor() {
    splitMain = ISplitMain(msg.sender);
  }

  /**
   * FUNCTIONS - PUBLIC & EXTERNAL
   */

  /** @notice Sends amount `amount` of ETH in proxy to SplitMain
   *  @dev payable reduces gas cost; no vulnerability to accidentally lock
   *  ETH introduced since fn call is restricted to SplitMain
   *  @param amount Amount to send
   */
  function sendETHToMain(uint256 amount) external payable onlySplitMain() {
    address(splitMain).safeTransferETH(amount);
  }

  /** @notice Sends amount `amount` of ERC20 `token` in proxy to SplitMain
   *  @dev payable reduces gas cost; no vulnerability to accidentally lock
   *  ETH introduced since fn call is restricted to SplitMain
   *  @param token Token to send
   *  @param amount Amount to send
   */
  function sendERC20ToMain(ERC20 token, uint256 amount)
    external
    payable
    onlySplitMain()
  {
    token.safeTransfer(address(splitMain), amount);
  }
}

// SPDX-License-Identifier: GPL-3.0-or-later
pragma solidity 0.8.4;

/// @notice create opcode failed
error CreateError();
/// @notice create2 opcode failed
error Create2Error();

library Clones {
  /**
   * @dev Deploys and returns the address of a clone that mimics the behaviour of `implementation`
   * except when someone calls `receive()` and then it emits an event matching
   * `SplitWallet.ReceiveETH(indexed address, amount)`
   * Inspired by OZ & 0age's minimal clone implementations based on eip 1167 found at
   * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/v4.3.0/contracts/proxy/Clones.sol
   * and https://medium.com/coinmonks/the-more-minimal-proxy-5756ae08ee48
   *
   * This function uses the create2 opcode and a `salt` to deterministically deploy
   * the clone. Using the same `implementation` and `salt` multiple time will revert, since
   * the clones cannot be deployed twice at the same address.
   *
   * init: 0x3d605d80600a3d3981f3
   * 3d   returndatasize  0
   * 605d push1 0x5d      0x5d 0
   * 80   dup1            0x5d 0x5d 0
   * 600a push1 0x0a      0x0a 0x5d 0x5d 0
   * 3d   returndatasize  0 0x0a 0x5d 0x5d 0
   * 39   codecopy        0x5d 0                      destOffset offset length     memory[destOffset:destOffset+length] = address(this).code[offset:offset+length]       copy executing contracts bytecode
   * 81   dup2            0 0x5d 0
   * f3   return          0                           offset length                return memory[offset:offset+length]                                                   returns from this contract call
   *
   * contract: 0x36603057343d52307f830d2d700a97af574b186c80d40429385d24241565b08a7c559ba283a964d9b160203da23d3df35b3d3d3d3d363d3d37363d73bebebebebebebebebebebebebebebebebebebebe5af43d3d93803e605b57fd5bf3
   *     0x000     36       calldatasize      cds
   *     0x001     6030     push1 0x30        0x30 cds
   * ,=< 0x003     57       jumpi
   * |   0x004     34       callvalue         cv
   * |   0x005     3d       returndatasize    0 cv
   * |   0x006     52       mstore
   * |   0x007     30       address           addr
   * |   0x008     7f830d.. push32 0x830d..   id addr
   * |   0x029     6020     push1 0x20        0x20 id addr
   * |   0x02b     3d       returndatasize    0 0x20 id addr
   * |   0x02c     a2       log2
   * |   0x02d     3d       returndatasize    0
   * |   0x02e     3d       returndatasize    0 0
   * |   0x02f     f3       return
   * `-> 0x030     5b       jumpdest
   *     0x031     3d       returndatasize    0
   *     0x032     3d       returndatasize    0 0
   *     0x033     3d       returndatasize    0 0 0
   *     0x034     3d       returndatasize    0 0 0 0
   *     0x035     36       calldatasize      cds 0 0 0 0
   *     0x036     3d       returndatasize    0 cds 0 0 0 0
   *     0x037     3d       returndatasize    0 0 cds 0 0 0 0
   *     0x038     37       calldatacopy      0 0 0 0
   *     0x039     36       calldatasize      cds 0 0 0 0
   *     0x03a     3d       returndatasize    0 cds 0 0 0 0
   *     0x03b     73bebe.. push20 0xbebe..   0xbebe 0 cds 0 0 0 0
   *     0x050     5a       gas               gas 0xbebe 0 cds 0 0 0 0
   *     0x051     f4       delegatecall      suc 0 0
   *     0x052     3d       returndatasize    rds suc 0 0
   *     0x053     3d       returndatasize    rds rds suc 0 0
   *     0x054     93       swap4             0 rds suc 0 rds
   *     0x055     80       dup1              0 0 rds suc 0 rds
   *     0x056     3e       returndatacopy    suc 0 rds
   *     0x057     605b     push1 0x5b        0x5b suc 0 rds
   * ,=< 0x059     57       jumpi             0 rds
   * |   0x05a     fd       revert
   * `-> 0x05b     5b       jumpdest          0 rds
   *     0x05c     f3       return
   *
   */
  function clone(address implementation) internal returns (address instance) {
    assembly {
      let ptr := mload(0x40)
      mstore(
        ptr,
        0x3d605d80600a3d3981f336603057343d52307f00000000000000000000000000
      )
      mstore(
        add(ptr, 0x13),
        0x830d2d700a97af574b186c80d40429385d24241565b08a7c559ba283a964d9b1
      )
      mstore(
        add(ptr, 0x33),
        0x60203da23d3df35b3d3d3d3d363d3d37363d7300000000000000000000000000
      )
      mstore(add(ptr, 0x46), shl(0x60, implementation))
      mstore(
        add(ptr, 0x5a),
        0x5af43d3d93803e605b57fd5bf300000000000000000000000000000000000000
      )
      instance := create(0, ptr, 0x67)
    }
    if (instance == address(0)) revert CreateError();
  }

  function cloneDeterministic(address implementation, bytes32 salt)
    internal
    returns (address instance)
  {
    assembly {
      let ptr := mload(0x40)
      mstore(
        ptr,
        0x3d605d80600a3d3981f336603057343d52307f00000000000000000000000000
      )
      mstore(
        add(ptr, 0x13),
        0x830d2d700a97af574b186c80d40429385d24241565b08a7c559ba283a964d9b1
      )
      mstore(
        add(ptr, 0x33),
        0x60203da23d3df35b3d3d3d3d363d3d37363d7300000000000000000000000000
      )
      mstore(add(ptr, 0x46), shl(0x60, implementation))
      mstore(
        add(ptr, 0x5a),
        0x5af43d3d93803e605b57fd5bf300000000000000000000000000000000000000
      )
      instance := create2(0, ptr, 0x67, salt)
    }
    if (instance == address(0)) revert Create2Error();
  }

  /**
   * @dev Computes the address of a clone deployed using {Clones-cloneDeterministic}.
   */
  function predictDeterministicAddress(
    address implementation,
    bytes32 salt,
    address deployer
  ) internal pure returns (address predicted) {
    assembly {
      let ptr := mload(0x40)
      mstore(
        ptr,
        0x3d605d80600a3d3981f336603057343d52307f00000000000000000000000000
      )
      mstore(
        add(ptr, 0x13),
        0x830d2d700a97af574b186c80d40429385d24241565b08a7c559ba283a964d9b1
      )
      mstore(
        add(ptr, 0x33),
        0x60203da23d3df35b3d3d3d3d363d3d37363d7300000000000000000000000000
      )
      mstore(add(ptr, 0x46), shl(0x60, implementation))
      mstore(
        add(ptr, 0x5a),
        0x5af43d3d93803e605b57fd5bf3ff000000000000000000000000000000000000
      )
      mstore(add(ptr, 0x68), shl(0x60, deployer))
      mstore(add(ptr, 0x7c), salt)
      mstore(add(ptr, 0x9c), keccak256(ptr, 0x67))
      predicted := keccak256(add(ptr, 0x67), 0x55)
    }
  }

  /**
   * @dev Computes the address of a clone deployed using {Clones-cloneDeterministic}.
   */
  function predictDeterministicAddress(address implementation, bytes32 salt)
    internal
    view
    returns (address predicted)
  {
    return predictDeterministicAddress(implementation, salt, address(this));
  }
}

// SPDX-License-Identifier: AGPL-3.0-only
pragma solidity >=0.8.0;

/// @notice Modern and gas efficient ERC20 + EIP-2612 implementation.
/// @author Solmate (https://github.com/Rari-Capital/solmate/blob/main/src/tokens/ERC20.sol)
/// @author Modified from Uniswap (https://github.com/Uniswap/uniswap-v2-core/blob/master/contracts/UniswapV2ERC20.sol)
/// @dev Do not manually set balances without updating totalSupply, as the sum of all user balances must not exceed it.
abstract contract ERC20 {
    /*///////////////////////////////////////////////////////////////
                                  EVENTS
    //////////////////////////////////////////////////////////////*/

    event Transfer(address indexed from, address indexed to, uint256 amount);

    event Approval(address indexed owner, address indexed spender, uint256 amount);

    /*///////////////////////////////////////////////////////////////
                             METADATA STORAGE
    //////////////////////////////////////////////////////////////*/

    string public name;

    string public symbol;

    uint8 public immutable decimals;

    /*///////////////////////////////////////////////////////////////
                              ERC20 STORAGE
    //////////////////////////////////////////////////////////////*/

    uint256 public totalSupply;

    mapping(address => uint256) public balanceOf;

    mapping(address => mapping(address => uint256)) public allowance;

    /*///////////////////////////////////////////////////////////////
                             EIP-2612 STORAGE
    //////////////////////////////////////////////////////////////*/

    bytes32 public constant PERMIT_TYPEHASH =
        keccak256("Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)");

    uint256 internal immutable INITIAL_CHAIN_ID;

    bytes32 internal immutable INITIAL_DOMAIN_SEPARATOR;

    mapping(address => uint256) public nonces;

    /*///////////////////////////////////////////////////////////////
                               CONSTRUCTOR
    //////////////////////////////////////////////////////////////*/

    constructor(
        string memory _name,
        string memory _symbol,
        uint8 _decimals
    ) {
        name = _name;
        symbol = _symbol;
        decimals = _decimals;

        INITIAL_CHAIN_ID = block.chainid;
        INITIAL_DOMAIN_SEPARATOR = computeDomainSeparator();
    }

    /*///////////////////////////////////////////////////////////////
                              ERC20 LOGIC
    //////////////////////////////////////////////////////////////*/

    function approve(address spender, uint256 amount) public virtual returns (bool) {
        allowance[msg.sender][spender] = amount;

        emit Approval(msg.sender, spender, amount);

        return true;
    }

    function transfer(address to, uint256 amount) public virtual returns (bool) {
        balanceOf[msg.sender] -= amount;

        // Cannot overflow because the sum of all user
        // balances can't exceed the max uint256 value.
        unchecked {
            balanceOf[to] += amount;
        }

        emit Transfer(msg.sender, to, amount);

        return true;
    }

    function transferFrom(
        address from,
        address to,
        uint256 amount
    ) public virtual returns (bool) {
        uint256 allowed = allowance[from][msg.sender]; // Saves gas for limited approvals.

        if (allowed != type(uint256).max) allowance[from][msg.sender] = allowed - amount;

        balanceOf[from] -= amount;

        // Cannot overflow because the sum of all user
        // balances can't exceed the max uint256 value.
        unchecked {
            balanceOf[to] += amount;
        }

        emit Transfer(from, to, amount);

        return true;
    }

    /*///////////////////////////////////////////////////////////////
                              EIP-2612 LOGIC
    //////////////////////////////////////////////////////////////*/

    function permit(
        address owner,
        address spender,
        uint256 value,
        uint256 deadline,
        uint8 v,
        bytes32 r,
        bytes32 s
    ) public virtual {
        require(deadline >= block.timestamp, "PERMIT_DEADLINE_EXPIRED");

        // Unchecked because the only math done is incrementing
        // the owner's nonce which cannot realistically overflow.
        unchecked {
            bytes32 digest = keccak256(
                abi.encodePacked(
                    "\x19\x01",
                    DOMAIN_SEPARATOR(),
                    keccak256(abi.encode(PERMIT_TYPEHASH, owner, spender, value, nonces[owner]++, deadline))
                )
            );

            address recoveredAddress = ecrecover(digest, v, r, s);

            require(recoveredAddress != address(0) && recoveredAddress == owner, "INVALID_SIGNER");

            allowance[recoveredAddress][spender] = value;
        }

        emit Approval(owner, spender, value);
    }

    function DOMAIN_SEPARATOR() public view virtual returns (bytes32) {
        return block.chainid == INITIAL_CHAIN_ID ? INITIAL_DOMAIN_SEPARATOR : computeDomainSeparator();
    }

    function computeDomainSeparator() internal view virtual returns (bytes32) {
        return
            keccak256(
                abi.encode(
                    keccak256("EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)"),
                    keccak256(bytes(name)),
                    keccak256("1"),
                    block.chainid,
                    address(this)
                )
            );
    }

    /*///////////////////////////////////////////////////////////////
                       INTERNAL MINT/BURN LOGIC
    //////////////////////////////////////////////////////////////*/

    function _mint(address to, uint256 amount) internal virtual {
        totalSupply += amount;

        // Cannot overflow because the sum of all user
        // balances can't exceed the max uint256 value.
        unchecked {
            balanceOf[to] += amount;
        }

        emit Transfer(address(0), to, amount);
    }

    function _burn(address from, uint256 amount) internal virtual {
        balanceOf[from] -= amount;

        // Cannot underflow because a user's balance
        // will never be larger than the total supply.
        unchecked {
            totalSupply -= amount;
        }

        emit Transfer(from, address(0), amount);
    }
}

// SPDX-License-Identifier: AGPL-3.0-only
pragma solidity >=0.8.0;

import {ERC20} from "../tokens/ERC20.sol";

/// @notice Safe ETH and ERC20 transfer library that gracefully handles missing return values.
/// @author Solmate (https://github.com/Rari-Capital/solmate/blob/main/src/utils/SafeTransferLib.sol)
/// @author Modified from Gnosis (https://github.com/gnosis/gp-v2-contracts/blob/main/src/contracts/libraries/GPv2SafeERC20.sol)
/// @dev Use with caution! Some functions in this library knowingly create dirty bits at the destination of the free memory pointer.
library SafeTransferLib {
    /*///////////////////////////////////////////////////////////////
                            ETH OPERATIONS
    //////////////////////////////////////////////////////////////*/

    function safeTransferETH(address to, uint256 amount) internal {
        bool callStatus;

        assembly {
            // Transfer the ETH and store if it succeeded or not.
            callStatus := call(gas(), to, amount, 0, 0, 0, 0)
        }

        require(callStatus, "ETH_TRANSFER_FAILED");
    }

    /*///////////////////////////////////////////////////////////////
                           ERC20 OPERATIONS
    //////////////////////////////////////////////////////////////*/

    function safeTransferFrom(
        ERC20 token,
        address from,
        address to,
        uint256 amount
    ) internal {
        bool callStatus;

        assembly {
            // Get a pointer to some free memory.
            let freeMemoryPointer := mload(0x40)

            // Write the abi-encoded calldata to memory piece by piece:
            mstore(freeMemoryPointer, 0x23b872dd00000000000000000000000000000000000000000000000000000000) // Begin with the function selector.
            mstore(add(freeMemoryPointer, 4), and(from, 0xffffffffffffffffffffffffffffffffffffffff)) // Mask and append the "from" argument.
            mstore(add(freeMemoryPointer, 36), and(to, 0xffffffffffffffffffffffffffffffffffffffff)) // Mask and append the "to" argument.
            mstore(add(freeMemoryPointer, 68), amount) // Finally append the "amount" argument. No mask as it's a full 32 byte value.

            // Call the token and store if it succeeded or not.
            // We use 100 because the calldata length is 4 + 32 * 3.
            callStatus := call(gas(), token, 0, freeMemoryPointer, 100, 0, 0)
        }

        require(didLastOptionalReturnCallSucceed(callStatus), "TRANSFER_FROM_FAILED");
    }

    function safeTransfer(
        ERC20 token,
        address to,
        uint256 amount
    ) internal {
        bool callStatus;

        assembly {
            // Get a pointer to some free memory.
            let freeMemoryPointer := mload(0x40)

            // Write the abi-encoded calldata to memory piece by piece:
            mstore(freeMemoryPointer, 0xa9059cbb00000000000000000000000000000000000000000000000000000000) // Begin with the function selector.
            mstore(add(freeMemoryPointer, 4), and(to, 0xffffffffffffffffffffffffffffffffffffffff)) // Mask and append the "to" argument.
            mstore(add(freeMemoryPointer, 36), amount) // Finally append the "amount" argument. No mask as it's a full 32 byte value.

            // Call the token and store if it succeeded or not.
            // We use 68 because the calldata length is 4 + 32 * 2.
            callStatus := call(gas(), token, 0, freeMemoryPointer, 68, 0, 0)
        }

        require(didLastOptionalReturnCallSucceed(callStatus), "TRANSFER_FAILED");
    }

    function safeApprove(
        ERC20 token,
        address to,
        uint256 amount
    ) internal {
        bool callStatus;

        assembly {
            // Get a pointer to some free memory.
            let freeMemoryPointer := mload(0x40)

            // Write the abi-encoded calldata to memory piece by piece:
            mstore(freeMemoryPointer, 0x095ea7b300000000000000000000000000000000000000000000000000000000) // Begin with the function selector.
            mstore(add(freeMemoryPointer, 4), and(to, 0xffffffffffffffffffffffffffffffffffffffff)) // Mask and append the "to" argument.
            mstore(add(freeMemoryPointer, 36), amount) // Finally append the "amount" argument. No mask as it's a full 32 byte value.

            // Call the token and store if it succeeded or not.
            // We use 68 because the calldata length is 4 + 32 * 2.
            callStatus := call(gas(), token, 0, freeMemoryPointer, 68, 0, 0)
        }

        require(didLastOptionalReturnCallSucceed(callStatus), "APPROVE_FAILED");
    }

    /*///////////////////////////////////////////////////////////////
                         INTERNAL HELPER LOGIC
    //////////////////////////////////////////////////////////////*/

    function didLastOptionalReturnCallSucceed(bool callStatus) private pure returns (bool success) {
        assembly {
            // Get how many bytes the call returned.
            let returnDataSize := returndatasize()

            // If the call reverted:
            if iszero(callStatus) {
                // Copy the revert message into memory.
                returndatacopy(0, 0, returnDataSize)

                // Revert with the same message.
                revert(0, returnDataSize)
            }

            switch returnDataSize
            case 32 {
                // Copy the return data into memory.
                returndatacopy(0, 0, returnDataSize)

                // Set success to whether it returned true.
                success := iszero(iszero(mload(0)))
            }
            case 0 {
                // There was no return data.
                success := 1
            }
            default {
                // It returned some malformed input.
                success := 0
            }
        }
    }
}

Settings
{
  "optimizer": {
    "enabled": true,
    "runs": 200
  },
  "outputSelection": {
    "*": {
      "*": [
        "evm.bytecode",
        "evm.deployedBytecode",
        "devdoc",
        "userdoc",
        "metadata",
        "abi"
      ]
    }
  },
  "metadata": {
    "useLiteralContent": true
  },
  "libraries": {}
}

Contract Security Audit

Contract ABI

API
[{"inputs":[],"stateMutability":"nonpayable","type":"constructor"},{"inputs":[],"name":"Create2Error","type":"error"},{"inputs":[],"name":"CreateError","type":"error"},{"inputs":[{"internalType":"address","name":"newController","type":"address"}],"name":"InvalidNewController","type":"error"},{"inputs":[{"internalType":"uint256","name":"accountsLength","type":"uint256"},{"internalType":"uint256","name":"allocationsLength","type":"uint256"}],"name":"InvalidSplit__AccountsAndAllocationsMismatch","type":"error"},{"inputs":[{"internalType":"uint256","name":"index","type":"uint256"}],"name":"InvalidSplit__AccountsOutOfOrder","type":"error"},{"inputs":[{"internalType":"uint256","name":"index","type":"uint256"}],"name":"InvalidSplit__AllocationMustBePositive","type":"error"},{"inputs":[{"internalType":"uint32","name":"allocationsSum","type":"uint32"}],"name":"InvalidSplit__InvalidAllocationsSum","type":"error"},{"inputs":[{"internalType":"uint32","name":"distributorFee","type":"uint32"}],"name":"InvalidSplit__InvalidDistributorFee","type":"error"},{"inputs":[{"internalType":"bytes32","name":"hash","type":"bytes32"}],"name":"InvalidSplit__InvalidHash","type":"error"},{"inputs":[{"internalType":"uint256","name":"accountsLength","type":"uint256"}],"name":"InvalidSplit__TooFewAccounts","type":"error"},{"inputs":[{"internalType":"address","name":"sender","type":"address"}],"name":"Unauthorized","type":"error"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"split","type":"address"}],"name":"CancelControlTransfer","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"split","type":"address"},{"indexed":true,"internalType":"address","name":"previousController","type":"address"},{"indexed":true,"internalType":"address","name":"newController","type":"address"}],"name":"ControlTransfer","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"split","type":"address"}],"name":"CreateSplit","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"split","type":"address"},{"indexed":true,"internalType":"contract ERC20","name":"token","type":"address"},{"indexed":false,"internalType":"uint256","name":"amount","type":"uint256"},{"indexed":true,"internalType":"address","name":"distributorAddress","type":"address"}],"name":"DistributeERC20","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"split","type":"address"},{"indexed":false,"internalType":"uint256","name":"amount","type":"uint256"},{"indexed":true,"internalType":"address","name":"distributorAddress","type":"address"}],"name":"DistributeETH","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"split","type":"address"},{"indexed":true,"internalType":"address","name":"newPotentialController","type":"address"}],"name":"InitiateControlTransfer","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"split","type":"address"}],"name":"UpdateSplit","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"account","type":"address"},{"indexed":false,"internalType":"uint256","name":"ethAmount","type":"uint256"},{"indexed":false,"internalType":"contract ERC20[]","name":"tokens","type":"address[]"},{"indexed":false,"internalType":"uint256[]","name":"tokenAmounts","type":"uint256[]"}],"name":"Withdrawal","type":"event"},{"inputs":[],"name":"PERCENTAGE_SCALE","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"}],"name":"acceptControl","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"}],"name":"cancelControlTransfer","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address[]","name":"accounts","type":"address[]"},{"internalType":"uint32[]","name":"percentAllocations","type":"uint32[]"},{"internalType":"uint32","name":"distributorFee","type":"uint32"},{"internalType":"address","name":"controller","type":"address"}],"name":"createSplit","outputs":[{"internalType":"address","name":"split","type":"address"}],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"},{"internalType":"contract ERC20","name":"token","type":"address"},{"internalType":"address[]","name":"accounts","type":"address[]"},{"internalType":"uint32[]","name":"percentAllocations","type":"uint32[]"},{"internalType":"uint32","name":"distributorFee","type":"uint32"},{"internalType":"address","name":"distributorAddress","type":"address"}],"name":"distributeERC20","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"},{"internalType":"address[]","name":"accounts","type":"address[]"},{"internalType":"uint32[]","name":"percentAllocations","type":"uint32[]"},{"internalType":"uint32","name":"distributorFee","type":"uint32"},{"internalType":"address","name":"distributorAddress","type":"address"}],"name":"distributeETH","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"}],"name":"getController","outputs":[{"internalType":"address","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"account","type":"address"},{"internalType":"contract ERC20","name":"token","type":"address"}],"name":"getERC20Balance","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"account","type":"address"}],"name":"getETHBalance","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"}],"name":"getHash","outputs":[{"internalType":"bytes32","name":"","type":"bytes32"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"}],"name":"getNewPotentialController","outputs":[{"internalType":"address","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"}],"name":"makeSplitImmutable","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address[]","name":"accounts","type":"address[]"},{"internalType":"uint32[]","name":"percentAllocations","type":"uint32[]"},{"internalType":"uint32","name":"distributorFee","type":"uint32"}],"name":"predictImmutableSplitAddress","outputs":[{"internalType":"address","name":"split","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"},{"internalType":"address","name":"newController","type":"address"}],"name":"transferControl","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"},{"internalType":"contract ERC20","name":"token","type":"address"},{"internalType":"address[]","name":"accounts","type":"address[]"},{"internalType":"uint32[]","name":"percentAllocations","type":"uint32[]"},{"internalType":"uint32","name":"distributorFee","type":"uint32"},{"internalType":"address","name":"distributorAddress","type":"address"}],"name":"updateAndDistributeERC20","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"},{"internalType":"address[]","name":"accounts","type":"address[]"},{"internalType":"uint32[]","name":"percentAllocations","type":"uint32[]"},{"internalType":"uint32","name":"distributorFee","type":"uint32"},{"internalType":"address","name":"distributorAddress","type":"address"}],"name":"updateAndDistributeETH","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"split","type":"address"},{"internalType":"address[]","name":"accounts","type":"address[]"},{"internalType":"uint32[]","name":"percentAllocations","type":"uint32[]"},{"internalType":"uint32","name":"distributorFee","type":"uint32"}],"name":"updateSplit","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[],"name":"walletImplementation","outputs":[{"internalType":"address","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"account","type":"address"},{"internalType":"uint256","name":"withdrawETH","type":"uint256"},{"internalType":"contract ERC20[]","name":"tokens","type":"address[]"}],"name":"withdraw","outputs":[],"stateMutability":"nonpayable","type":"function"},{"stateMutability":"payable","type":"receive"}]

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Block Uncle Number Difficulty Gas Used Reward
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0x2ed6c4B5dA6378c7897AC67Ba9e43102Feb694EE
Net Worth in USD
$2,766,314.70

Net Worth in ETH
1,402.559973

Token Allocations
ETH 30.08%
WSTETH 25.84%
ETHFI 8.27%
Others 35.81%
Chain Token Portfolio % Price Amount Value
ETH
Ether (ETH)
27.82%$1,972.12390.1897$769,500.41
ETH25.84%$2,767.01258.3532$714,865.84
ETH8.27%$0.451275506,842.8039$228,725.49
ETH6.61%$3.5751,257.3846$182,988.86
ETH4.89%$6.5320,697.1594$135,152.45
ETH4.38%$1121,101.9773$121,101.98
ETH2.49%$0.319992215,630.738$69,000.11
ETH2.36%$0.184499353,154.1331$65,156.58
ETH2.29%$0.124872507,529.5426$63,376.31
ETH1.99%$1,972.1227.9737$55,167.52
ETH1.72%$0.99969747,647.2315$47,632.79
ETH1.00%$0.095902287,651.9369$27,586.4
ETH0.86%$0.99996423,854.8116$23,853.95
ETH0.58%$0.3270749,380.2642$16,150.8
ETH0.25%$2.283,054.3792$6,963.98
ETH0.22%$1.713,577.5279$6,117.57
ETH0.21%$0.031286181,280.3669$5,671.54
ETH0.18%$0.044035114,993.5209$5,063.72
ETH0.11%$0.10695229,713.6984$3,177.94
ETH0.06%$0.14858811,017.5333$1,637.07
ETH0.05%$0.4619583,054.421$1,411.01
ETH0.03%$3.04228.9796$696.1
ETH0.02%$76,1490.00750918$571.82
ETH0.02%$0.01363132,922.9316$448.76
ETH0.02%$2,257.370.1842$415.75
ETH0.01%$0.244321,327.0828$324.23
ETH<0.01%$0.001443174,351.0149$251.6
ETH<0.01%$76,3310.00304354$232.32
ETH<0.01%$118.541.8949$224.62
ETH<0.01%$0.01218515,580.0216$189.84
ETH<0.01%$8.8120.1253$177.3
ETH<0.01%$1.16141.256$163.86
ETH<0.01%$0.00000436,752,567.0471$150.32
ETH<0.01%$0.99987129.6848$129.67
ETH<0.01%$1.4370.9517$101.46
ETH<0.01%$0.000294343,401.9178$100.99
ETH<0.01%$99.440.9955$99
ETH<0.01%$194.740.4645$90.45
ETH<0.01%$65.361.3056$85.33
ETH<0.01%$0.0037921,645.3646$82.04
ETH<0.01%$0.107133667.1763$71.48
ETH<0.01%$0.99961958.6992$58.68
ETH<0.01%<$0.000001263,598,405.1334$44.64
ETH<0.01%$1.3231.5113$41.59
ETH<0.01%$140.9711$40.97
ETH<0.01%$0.000031,201,947.8168$35.52
ETH<0.01%$2,802.580.0111$31.24
ETH<0.01%$0.233319133.571$31.16
ETH<0.01%$0.99994430.8434$30.84
ETH<0.01%$0.162388172.4673$28.01
ETH<0.01%$0.0271761,020.2413$27.73
ETH<0.01%$0.094853240.8686$22.85
ETH<0.01%$0.99906922.3319$22.31
ETH<0.01%$0.064937336.5206$21.85
ETH<0.01%<$0.000001110,749,707.4794$20.78
ETH<0.01%$0.2619778.3188$20.52
ETH<0.01%$1.216.6353$19.96
ETH<0.01%$0.0000063,152,341.6325$19.54
ETH<0.01%$0.00030662,805.0267$19.24
ETH<0.01%$0.10367170.1771$17.64
ETH<0.01%$0.102664158.0382$16.22
ETH<0.01%$0.22356772.5005$16.21
ETH<0.01%$0.2038476.521$15.6
ETH<0.01%$0.092224161.9503$14.94
ETH<0.01%$0.16242282.6036$13.42
ETH<0.01%$0.49288726.5139$13.07
ETH<0.01%$0.33930236.1645$12.27
ETH<0.01%$17.530.6771$11.87
ETH<0.01%$0.11968293.581$11.2
ETH<0.01%$1.049.9507$10.35
ETH<0.01%$0.14702968.1382$10.02
ETH<0.01%$0.075893115.7234$8.78
ETH<0.01%$0.12574669.6733$8.76
ETH<0.01%$0.0020543,712.3673$7.63
ETH<0.01%$0.000071105,624.8046$7.5
ETH<0.01%$0.043501171.9899$7.48
ETH<0.01%$0.14339550.3764$7.22
ETH<0.01%$0.1094463.6512$6.97
ETH<0.01%$0.9955186.8746$6.84
ETH<0.01%$1.264.8476$6.11
ETH<0.01%$0.07617379.6122$6.06
ETH<0.01%$0.00657900.1$5.91
ETH<0.01%$0.09716860.327$5.86
ETH<0.01%$0.21053227.6193$5.81
ETH<0.01%$0.08239766.266$5.46
ETH<0.01%$0.42468712.5337$5.32
ETH<0.01%$0.0513101.2178$5.19
ETH<0.01%$0.23824819.6525$4.68
ETH<0.01%$1.622.8648$4.64
ETH<0.01%$0.011672391.2836$4.57
ETH<0.01%$0.037699116.9604$4.41
ETH<0.01%$0.31267314.0674$4.4
ETH<0.01%$2.081.9261$4.01
ETH<0.01%$0.07193753.9949$3.88
ETH<0.01%$0.0007644,797.3524$3.66
ETH<0.01%$0.0012262,973.4016$3.65
ETH<0.01%$0.007359467.7638$3.44
ETH<0.01%$0.000032106,286.1364$3.4
ETH<0.01%$0.025196117.9565$2.97
ETH<0.01%$0.020285139.3295$2.83
ETH<0.01%$6.350.4158$2.64
ETH<0.01%$0.0015261,718.8403$2.62
ETH<0.01%$2,533.880.00100893$2.56
ETH<0.01%$0.019667127.1484$2.5
ETH<0.01%$0.010929222.4767$2.43
ETH<0.01%<$0.000001333,967,698.165$2.41
ETH<0.01%$5,096.620.000466$2.38
ETH<0.01%$0.22590410.0107$2.26
ETH<0.01%$0.05042238.3275$1.93
ETH<0.01%$0.04597141.7187$1.92
ETH<0.01%$0.9940471.7415$1.73
ETH<0.01%$0.3813624.4911$1.71
ETH<0.01%$0.005737288.7506$1.66
ETH<0.01%$0.10840613.8448$1.5
ETH<0.01%$0.5898422.4521$1.45
ETH<0.01%$0.0006832,080.3759$1.42
ETH<0.01%$0.01557986.7761$1.35
ETH<0.01%$0.02017665.9915$1.33
ETH<0.01%$0.9993811.2279$1.23
ETH<0.01%$0.1476247.7106$1.14
ETH<0.01%$0.440542.4698$1.09
ETH<0.01%$0.05519317.8944$0.9876
ETH<0.01%$0.001449675.0781$0.9782
ETH<0.01%$0.9977190.9702$0.9679
ETH<0.01%<$0.0000012,782,788.136$0.9009
ETH<0.01%$0.02193841.0228$0.8999
ETH<0.01%$0.8551710.9745$0.8334
ETH<0.01%$0.01409850.9426$0.7181
ETH<0.01%$0.01727440.8954$0.7064
ETH<0.01%$0.0000710,000$0.6954
ETH<0.01%$4.390.1509$0.6625
ETH<0.01%$0.005046122.8533$0.6199
ETH<0.01%$0.9992340.59$0.5895
ETH<0.01%$0.9860460.4275$0.4215
ETH<0.01%$0.01626225.0025$0.4065
ETH<0.01%$0.00695956.6134$0.3939
ETH<0.01%$0.0661235.7951$0.3831
ETH<0.01%$0.00788844.1272$0.348
ETH<0.01%$1.630.1982$0.323
ETH<0.01%$0.9993760.3023$0.3021
ETH<0.01%$0.0001861,606.1908$0.2991
ETH<0.01%$0.000667430.0409$0.2868
ETH<0.01%$0.0050$0.00
ETH<0.01%$0.0002641,000$0.2636
ETH<0.01%<$0.000001557,039,823.0333$0.2195
ETH<0.01%$0.0001971,092$0.2148
ETH<0.01%$0.0001861,026.7581$0.1912
ETH<0.01%$0.1093161.7197$0.1879
ETH<0.01%$0.000.0154$0.00
ETH<0.01%$0.000367465.3492$0.1709
ETH<0.01%$0.000652226.7598$0.1477
ETH<0.01%$0.00081156.7334$0.1269
ETH<0.01%$10.1103$0.1106
BLAST4.48%$2,263.3854.7693$123,963.7
BLAST<0.01%$1,972.330.000000000000000005<$0.000001
OP1.15%$1,972.1316.1663$31,882.05
OP0.38%$0.12500383,692.0977$10,461.74
OP0.06%$1.011,520.511$1,529.63
OP<0.01%$76,1140.00063802$48.56
OP<0.01%$0.99999912.9468$12.95
OP<0.01%$0.86518211.316$9.79
OP<0.01%$1,056.730.009$9.51
OP<0.01%$0.9992821.76$1.76
OP<0.01%$3.570.2086$0.7446
OP<0.01%$6.970.0978$0.6815
OP<0.01%$0.9999990.6059$0.6059
OP<0.01%$2,263.380.0002005$0.4538
OP<0.01%$0.9999350.23$0.2299
OP<0.01%$2,627.860.00007819$0.2054
OP<0.01%$0.3819730.3776$0.1442
BASE1.09%$1,972.1615.3437$30,260.29
BASE<0.01%$2,263.380.1214$274.76
BASE<0.01%$144.0295$44.03
BASE<0.01%$0.0006723,581.0029$15.8
BASE<0.01%$0.019895736.32$14.65
BASE<0.01%<$0.0000011,644,432,895.091$12.83
BASE<0.01%$0.00034534,356.9121$11.86
BASE<0.01%$0.00059411,183.4639$6.65
BASE<0.01%$0.0000016,111,666.42$3.47
BASE<0.01%$0.6327693.7644$2.38
BASE<0.01%$0.00021110,663.1407$2.25
BASE<0.01%$0.3284383.951$1.3
BASE<0.01%$0.00644$0.00
BASE<0.01%$31.90.0314$1
BASE<0.01%$0.007338128.0267$0.9394
BASE<0.01%$0.00001154,555.5122$0.6088
BASE<0.01%$0.00325,435.2513$0.00
BASE<0.01%$2,216.90.00017898$0.3967
BASE<0.01%<$0.000001245,447,638.7354$0.3927
BASE<0.01%$0.107052.6421$0.2828
BASE<0.01%$0.001173236.8818$0.2779
BASE<0.01%$0.00000931,148.8072$0.2747
BASE<0.01%<$0.0000011,488,044.6079$0.2519
BASE<0.01%$0.0001172,134.9391$0.2489
BASE<0.01%$0.00216.602$0.00
BASE<0.01%$0.02063611.3417$0.234
BASE<0.01%$0.000225825.938$0.1858
BASE<0.01%$0.00000919,206.2431$0.1745
BASE<0.01%$0.000569303.7591$0.1728
BASE<0.01%$0.000487301.7988$0.1469
BASE<0.01%$0.000815137.9814$0.1124
BASE<0.01%$0.0110369.8314$0.1084
BASE<0.01%$0.00270339.6245$0.107
POL0.16%$0.9982954,440.5346$4,432.96
POL0.03%$0.00850.2506$0.00
POL0.03%$0.999999745.2131$745.21
POL0.02%$1,970.880.2495$491.66
POL<0.01%$0.1071321,619.5784$173.51
POL<0.01%$0.111672216.9689$24.23
POL<0.01%$0.9993889.999$9.99
POL<0.01%$2,773.10.00318747$8.84
POL<0.01%$1.436.0958$8.72
POL<0.01%$0.09477126.3748$2.5
POL<0.01%$0.2825974.9005$1.38
POL<0.01%$0.2335234.9005$1.14
POL<0.01%$0.9999350.3692$0.3692
POL<0.01%$0.00002314,523.7914$0.3283
GNO0.12%$120.126.6047$3,195.23
GNO0.02%$0.99998508.4$508.39
GNO<0.01%$0.99998127.4928$127.49
ARB0.01%$1,972.330.1894$373.51
ARB0.01%$2,258.880.1527$345.03
ARB<0.01%$2,624.380.0982$257.6
ARB<0.01%$0.99991779.7668$79.76
ARB<0.01%$0.095896791.2863$75.88
ARB<0.01%$0.99992428.7125$28.71
ARB<0.01%$0.99992417.742$17.74
ARB<0.01%$0.027174564.3222$15.34
ARB<0.01%$78.380.0253$1.99
ARB<0.01%$2,317.130.0001105$0.256
ARB<0.01%$2.590.0924$0.2393
BSC<0.01%$1.02100$101.99
BSC<0.01%<$0.0000011,690,317.0097$0.3962
AVAX<0.01%$2,263.380.00502412$11.37
AVAX<0.01%$16.0777$6.08
AVAX<0.01%$0.9998394.0759$4.08
AVAX<0.01%$0.003.7447$0.00
AVAX<0.01%$8.990.4155$3.74
AVAX<0.01%$12.7494$2.75
AVAX<0.01%$0.9999260.4966$0.4965
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A contract address hosts a smart contract, which is a set of code stored on the blockchain that runs when predetermined conditions are met. Learn more about addresses in our Knowledge Base.