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Latest 25 from a total of 74,523 transactions
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Exchange | 21794276 | 4 hrs ago | IN | 8.499 ETH | 0.00015666 | ||||
Exchange | 21793855 | 5 hrs ago | IN | 11.067 ETH | 0.00012737 | ||||
Exchange | 21793582 | 6 hrs ago | IN | 139.9 ETH | 0.00012292 | ||||
Exchange | 21793534 | 7 hrs ago | IN | 1 ETH | 0.00014886 | ||||
Exchange | 21793530 | 7 hrs ago | IN | 10.067 ETH | 0.00014963 | ||||
Exchange | 21793225 | 8 hrs ago | IN | 0 ETH | 0.00013287 | ||||
Add_liquidity | 21792341 | 11 hrs ago | IN | 1.95957049 ETH | 0.00019266 | ||||
Exchange | 21792176 | 11 hrs ago | IN | 69.9 ETH | 0.00013202 | ||||
Exchange | 21792163 | 11 hrs ago | IN | 10.061385 ETH | 0.00014628 | ||||
Exchange | 21791666 | 13 hrs ago | IN | 0 ETH | 0.00017598 | ||||
Remove_liquidity... | 21791218 | 14 hrs ago | IN | 0 ETH | 0.00012768 | ||||
Remove_liquidity | 21788408 | 24 hrs ago | IN | 0 ETH | 0.00068893 | ||||
Exchange | 21788360 | 24 hrs ago | IN | 11.059967 ETH | 0.00047933 | ||||
Exchange | 21788132 | 25 hrs ago | IN | 1 ETH | 0.00040251 | ||||
Exchange | 21787772 | 26 hrs ago | IN | 160 ETH | 0.00019942 | ||||
Exchange | 21787726 | 26 hrs ago | IN | 0 ETH | 0.00021263 | ||||
Exchange | 21787702 | 26 hrs ago | IN | 0 ETH | 0.00017579 | ||||
Exchange | 21787578 | 26 hrs ago | IN | 0 ETH | 0.00016886 | ||||
Remove_liquidity | 21787536 | 27 hrs ago | IN | 0 ETH | 0.00017404 | ||||
Remove_liquidity... | 21787415 | 27 hrs ago | IN | 0 ETH | 0.00016827 | ||||
Remove_liquidity | 21786530 | 30 hrs ago | IN | 0 ETH | 0.00016144 | ||||
Exchange | 21786464 | 30 hrs ago | IN | 10.056463 ETH | 0.00016331 | ||||
Exchange | 21786358 | 31 hrs ago | IN | 10.052076 ETH | 0.00012486 | ||||
Add_liquidity | 21785759 | 33 hrs ago | IN | 0 ETH | 0.00033701 | ||||
Exchange | 21784705 | 36 hrs ago | IN | 10 ETH | 0.00017423 |
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21795617 | 1 min ago | 0 ETH | |||||
21795602 | 4 mins ago | 0.02666907 ETH | |||||
21795602 | 4 mins ago | 0 ETH | |||||
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21795515 | 21 mins ago | 0.49704869 ETH | |||||
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21795514 | 21 mins ago | 0.53424173 ETH | |||||
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21795479 | 28 mins ago | 0.03496339 ETH | |||||
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Similar Match Source Code This contract matches the deployed Bytecode of the Source Code for Contract 0x32fb6b59...6FF3F4906 The constructor portion of the code might be different and could alter the actual behaviour of the contract
Contract Name:
Vyper_contract
Compiler Version
vyper:0.2.8
Contract Source Code (Vyper language format)
# @version 0.2.8 """ @title Curve ETH/stETH StableSwap @author Curve.Fi @license Copyright (c) Curve.Fi, 2020 - all rights reserved """ from vyper.interfaces import ERC20 interface CurveToken: def mint(_to: address, _value: uint256) -> bool: nonpayable def burnFrom(_to: address, _value: uint256) -> bool: nonpayable # Events event TokenExchange: buyer: indexed(address) sold_id: int128 tokens_sold: uint256 bought_id: int128 tokens_bought: uint256 event TokenExchangeUnderlying: buyer: indexed(address) sold_id: int128 tokens_sold: uint256 bought_id: int128 tokens_bought: uint256 event AddLiquidity: provider: indexed(address) token_amounts: uint256[N_COINS] fees: uint256[N_COINS] invariant: uint256 token_supply: uint256 event RemoveLiquidity: provider: indexed(address) token_amounts: uint256[N_COINS] fees: uint256[N_COINS] token_supply: uint256 event RemoveLiquidityOne: provider: indexed(address) token_amount: uint256 coin_amount: uint256 event RemoveLiquidityImbalance: provider: indexed(address) token_amounts: uint256[N_COINS] fees: uint256[N_COINS] invariant: uint256 token_supply: uint256 event CommitNewAdmin: deadline: indexed(uint256) admin: indexed(address) event NewAdmin: admin: indexed(address) event CommitNewFee: deadline: indexed(uint256) fee: uint256 admin_fee: uint256 event NewFee: fee: uint256 admin_fee: uint256 event RampA: old_A: uint256 new_A: uint256 initial_time: uint256 future_time: uint256 event StopRampA: A: uint256 t: uint256 # These constants must be set prior to compiling N_COINS: constant(int128) = 2 # fixed constants FEE_DENOMINATOR: constant(uint256) = 10 ** 10 PRECISION: constant(uint256) = 10 ** 18 # The precision to convert to MAX_ADMIN_FEE: constant(uint256) = 10 * 10 ** 9 MAX_FEE: constant(uint256) = 5 * 10 ** 9 MAX_A: constant(uint256) = 10 ** 6 MAX_A_CHANGE: constant(uint256) = 10 A_PRECISION: constant(uint256) = 100 ADMIN_ACTIONS_DELAY: constant(uint256) = 3 * 86400 MIN_RAMP_TIME: constant(uint256) = 86400 coins: public(address[N_COINS]) admin_balances: public(uint256[N_COINS]) fee: public(uint256) # fee * 1e10 admin_fee: public(uint256) # admin_fee * 1e10 owner: public(address) lp_token: public(address) initial_A: public(uint256) future_A: public(uint256) initial_A_time: public(uint256) future_A_time: public(uint256) admin_actions_deadline: public(uint256) transfer_ownership_deadline: public(uint256) future_fee: public(uint256) future_admin_fee: public(uint256) future_owner: public(address) is_killed: bool kill_deadline: uint256 KILL_DEADLINE_DT: constant(uint256) = 2 * 30 * 86400 @external def __init__( _owner: address, _coins: address[N_COINS], _pool_token: address, _A: uint256, _fee: uint256, _admin_fee: uint256 ): """ @notice Contract constructor @param _owner Contract owner address @param _coins Addresses of ERC20 conracts of coins @param _pool_token Address of the token representing LP share @param _A Amplification coefficient multiplied by n * (n - 1) @param _fee Fee to charge for exchanges @param _admin_fee Admin fee """ assert _coins[0] == 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE assert _coins[1] != ZERO_ADDRESS self.coins = _coins self.initial_A = _A * A_PRECISION self.future_A = _A * A_PRECISION self.fee = _fee self.admin_fee = _admin_fee self.owner = _owner self.kill_deadline = block.timestamp + KILL_DEADLINE_DT self.lp_token = _pool_token @view @internal def _A() -> uint256: t1: uint256 = self.future_A_time A1: uint256 = self.future_A if block.timestamp < t1: # handle ramping up and down of A A0: uint256 = self.initial_A t0: uint256 = self.initial_A_time # Expressions in uint256 cannot have negative numbers, thus "if" if A1 > A0: return A0 + (A1 - A0) * (block.timestamp - t0) / (t1 - t0) else: return A0 - (A0 - A1) * (block.timestamp - t0) / (t1 - t0) else: # when t1 == 0 or block.timestamp >= t1 return A1 @view @external def A() -> uint256: return self._A() / A_PRECISION @view @external def A_precise() -> uint256: return self._A() @view @internal def _balances(_value: uint256 = 0) -> uint256[N_COINS]: return [ self.balance - self.admin_balances[0] - _value, ERC20(self.coins[1]).balanceOf(self) - self.admin_balances[1] ] @view @external def balances(i: uint256) -> uint256: """ @notice Get the current balance of a coin within the pool, less the accrued admin fees @param i Index value for the coin to query balance of @return Token balance """ return self._balances()[i] @pure @internal def get_D(xp: uint256[N_COINS], amp: uint256) -> uint256: """ D invariant calculation in non-overflowing integer operations iteratively A * sum(x_i) * n**n + D = A * D * n**n + D**(n+1) / (n**n * prod(x_i)) Converging solution: D[j+1] = (A * n**n * sum(x_i) - D[j]**(n+1) / (n**n prod(x_i))) / (A * n**n - 1) """ S: uint256 = 0 Dprev: uint256 = 0 for _x in xp: S += _x if S == 0: return 0 D: uint256 = S Ann: uint256 = amp * N_COINS for _i in range(255): D_P: uint256 = D for _x in xp: D_P = D_P * D / (_x * N_COINS + 1) # +1 is to prevent /0 Dprev = D D = (Ann * S / A_PRECISION + D_P * N_COINS) * D / ((Ann - A_PRECISION) * D / A_PRECISION + (N_COINS + 1) * D_P) # Equality with the precision of 1 if D > Dprev: if D - Dprev <= 1: return D else: if Dprev - D <= 1: return D # convergence typically occurs in 4 rounds or less, this should be unreachable! # if it does happen the pool is borked and LPs can withdraw via `remove_liquidity` raise @view @external def get_virtual_price() -> uint256: """ @notice The current virtual price of the pool LP token @dev Useful for calculating profits @return LP token virtual price normalized to 1e18 """ D: uint256 = self.get_D(self._balances(), self._A()) # D is in the units similar to DAI (e.g. converted to precision 1e18) # When balanced, D = n * x_u - total virtual value of the portfolio token_supply: uint256 = ERC20(self.lp_token).totalSupply() return D * PRECISION / token_supply @view @external def calc_token_amount(amounts: uint256[N_COINS], is_deposit: bool) -> uint256: """ @notice Calculate addition or reduction in token supply from a deposit or withdrawal @dev This calculation accounts for slippage, but not fees. Needed to prevent front-running, not for precise calculations! @param amounts Amount of each coin being deposited @param is_deposit set True for deposits, False for withdrawals @return Expected amount of LP tokens received """ amp: uint256 = self._A() balances: uint256[N_COINS] = self._balances() D0: uint256 = self.get_D(balances, amp) for i in range(N_COINS): if is_deposit: balances[i] += amounts[i] else: balances[i] -= amounts[i] D1: uint256 = self.get_D(balances, amp) token_amount: uint256 = ERC20(self.lp_token).totalSupply() diff: uint256 = 0 if is_deposit: diff = D1 - D0 else: diff = D0 - D1 return diff * token_amount / D0 @payable @external @nonreentrant('lock') def add_liquidity(amounts: uint256[N_COINS], min_mint_amount: uint256) -> uint256: """ @notice Deposit coins into the pool @param amounts List of amounts of coins to deposit @param min_mint_amount Minimum amount of LP tokens to mint from the deposit @return Amount of LP tokens received by depositing """ assert not self.is_killed # dev: is killed # Initial invariant amp: uint256 = self._A() old_balances: uint256[N_COINS] = self._balances(msg.value) D0: uint256 = self.get_D(old_balances, amp) lp_token: address = self.lp_token token_supply: uint256 = ERC20(lp_token).totalSupply() new_balances: uint256[N_COINS] = old_balances for i in range(N_COINS): if token_supply == 0: assert amounts[i] > 0 # dev: initial deposit requires all coins new_balances[i] += amounts[i] # Invariant after change D1: uint256 = self.get_D(new_balances, amp) assert D1 > D0 # We need to recalculate the invariant accounting for fees # to calculate fair user's share fees: uint256[N_COINS] = empty(uint256[N_COINS]) mint_amount: uint256 = 0 D2: uint256 = 0 if token_supply > 0: # Only account for fees if we are not the first to deposit fee: uint256 = self.fee * N_COINS / (4 * (N_COINS - 1)) admin_fee: uint256 = self.admin_fee for i in range(N_COINS): ideal_balance: uint256 = D1 * old_balances[i] / D0 difference: uint256 = 0 if ideal_balance > new_balances[i]: difference = ideal_balance - new_balances[i] else: difference = new_balances[i] - ideal_balance fees[i] = fee * difference / FEE_DENOMINATOR if admin_fee != 0: self.admin_balances[i] += fees[i] * admin_fee / FEE_DENOMINATOR new_balances[i] -= fees[i] D2 = self.get_D(new_balances, amp) mint_amount = token_supply * (D2 - D0) / D0 else: mint_amount = D1 # Take the dust if there was any assert mint_amount >= min_mint_amount, "Slippage screwed you" # Take coins from the sender assert msg.value == amounts[0] if amounts[1] > 0: assert ERC20(self.coins[1]).transferFrom(msg.sender, self, amounts[1]) # Mint pool tokens CurveToken(lp_token).mint(msg.sender, mint_amount) log AddLiquidity(msg.sender, amounts, fees, D1, token_supply + mint_amount) return mint_amount @view @internal def get_y(i: int128, j: int128, x: uint256, xp: uint256[N_COINS]) -> uint256: """ Calculate x[j] if one makes x[i] = x Done by solving quadratic equation iteratively. x_1**2 + x1 * (sum' - (A*n**n - 1) * D / (A * n**n)) = D ** (n + 1) / (n ** (2 * n) * prod' * A) x_1**2 + b*x_1 = c x_1 = (x_1**2 + c) / (2*x_1 + b) """ # x in the input is converted to the same price/precision assert i != j # dev: same coin assert j >= 0 # dev: j below zero assert j < N_COINS # dev: j above N_COINS # should be unreachable, but good for safety assert i >= 0 assert i < N_COINS amp: uint256 = self._A() D: uint256 = self.get_D(xp, amp) Ann: uint256 = amp * N_COINS c: uint256 = D S_: uint256 = 0 _x: uint256 = 0 y_prev: uint256 = 0 for _i in range(N_COINS): if _i == i: _x = x elif _i != j: _x = xp[_i] else: continue S_ += _x c = c * D / (_x * N_COINS) c = c * D * A_PRECISION / (Ann * N_COINS) b: uint256 = S_ + D * A_PRECISION / Ann # - D y: uint256 = D for _i in range(255): y_prev = y y = (y*y + c) / (2 * y + b - D) # Equality with the precision of 1 if y > y_prev: if y - y_prev <= 1: return y else: if y_prev - y <= 1: return y raise @view @external def get_dy(i: int128, j: int128, dx: uint256) -> uint256: xp: uint256[N_COINS] = self._balances() x: uint256 = xp[i] + dx y: uint256 = self.get_y(i, j, x, xp) dy: uint256 = xp[j] - y - 1 fee: uint256 = self.fee * dy / FEE_DENOMINATOR return dy - fee @payable @external @nonreentrant('lock') def exchange(i: int128, j: int128, dx: uint256, min_dy: uint256) -> uint256: """ @notice Perform an exchange between two coins @dev Index values can be found via the `coins` public getter method @param i Index value for the coin to send @param j Index valie of the coin to recieve @param dx Amount of `i` being exchanged @param min_dy Minimum amount of `j` to receive @return Actual amount of `j` received """ assert not self.is_killed # dev: is killed # dx and dy are in aTokens xp: uint256[N_COINS] = self._balances(msg.value) x: uint256 = xp[i] + dx y: uint256 = self.get_y(i, j, x, xp) dy: uint256 = xp[j] - y - 1 dy_fee: uint256 = dy * self.fee / FEE_DENOMINATOR # Convert all to real units dy = dy - dy_fee assert dy >= min_dy, "Exchange resulted in fewer coins than expected" admin_fee: uint256 = self.admin_fee if admin_fee != 0: dy_admin_fee: uint256 = dy_fee * admin_fee / FEE_DENOMINATOR if dy_admin_fee != 0: self.admin_balances[j] += dy_admin_fee coin: address = self.coins[1] if i == 0: assert msg.value == dx assert ERC20(coin).transfer(msg.sender, dy) else: assert msg.value == 0 assert ERC20(coin).transferFrom(msg.sender, self, dx) raw_call(msg.sender, b"", value=dy) log TokenExchange(msg.sender, i, dx, j, dy) return dy @external @nonreentrant('lock') def remove_liquidity( _amount: uint256, _min_amounts: uint256[N_COINS], ) -> uint256[N_COINS]: """ @notice Withdraw coins from the pool @dev Withdrawal amounts are based on current deposit ratios @param _amount Quantity of LP tokens to burn in the withdrawal @param _min_amounts Minimum amounts of underlying coins to receive @return List of amounts of coins that were withdrawn """ amounts: uint256[N_COINS] = self._balances() lp_token: address = self.lp_token total_supply: uint256 = ERC20(lp_token).totalSupply() CurveToken(lp_token).burnFrom(msg.sender, _amount) # dev: insufficient funds for i in range(N_COINS): value: uint256 = amounts[i] * _amount / total_supply assert value >= _min_amounts[i], "Withdrawal resulted in fewer coins than expected" amounts[i] = value if i == 0: raw_call(msg.sender, b"", value=value) else: assert ERC20(self.coins[1]).transfer(msg.sender, value) log RemoveLiquidity(msg.sender, amounts, empty(uint256[N_COINS]), total_supply - _amount) return amounts @external @nonreentrant('lock') def remove_liquidity_imbalance( _amounts: uint256[N_COINS], _max_burn_amount: uint256 ) -> uint256: """ @notice Withdraw coins from the pool in an imbalanced amount @param _amounts List of amounts of underlying coins to withdraw @param _max_burn_amount Maximum amount of LP token to burn in the withdrawal @return Actual amount of the LP token burned in the withdrawal """ assert not self.is_killed # dev: is killed amp: uint256 = self._A() old_balances: uint256[N_COINS] = self._balances() D0: uint256 = self.get_D(old_balances, amp) new_balances: uint256[N_COINS] = old_balances for i in range(N_COINS): new_balances[i] -= _amounts[i] D1: uint256 = self.get_D(new_balances, amp) fees: uint256[N_COINS] = empty(uint256[N_COINS]) fee: uint256 = self.fee * N_COINS / (4 * (N_COINS - 1)) admin_fee: uint256 = self.admin_fee for i in range(N_COINS): ideal_balance: uint256 = D1 * old_balances[i] / D0 new_balance: uint256 = new_balances[i] difference: uint256 = 0 if ideal_balance > new_balance: difference = ideal_balance - new_balance else: difference = new_balance - ideal_balance fees[i] = fee * difference / FEE_DENOMINATOR if admin_fee != 0: self.admin_balances[i] += fees[i] * admin_fee / FEE_DENOMINATOR new_balances[i] -= fees[i] D2: uint256 = self.get_D(new_balances, amp) lp_token: address = self.lp_token token_supply: uint256 = ERC20(lp_token).totalSupply() token_amount: uint256 = (D0 - D2) * token_supply / D0 assert token_amount != 0 # dev: zero tokens burned assert token_amount <= _max_burn_amount, "Slippage screwed you" CurveToken(lp_token).burnFrom(msg.sender, token_amount) # dev: insufficient funds if _amounts[0] != 0: raw_call(msg.sender, b"", value=_amounts[0]) if _amounts[1] != 0: assert ERC20(self.coins[1]).transfer(msg.sender, _amounts[1]) log RemoveLiquidityImbalance(msg.sender, _amounts, fees, D1, token_supply - token_amount) return token_amount @pure @internal def get_y_D(A_: uint256, i: int128, xp: uint256[N_COINS], D: uint256) -> uint256: """ Calculate x[i] if one reduces D from being calculated for xp to D Done by solving quadratic equation iteratively. x_1**2 + x1 * (sum' - (A*n**n - 1) * D / (A * n**n)) = D ** (n + 1) / (n ** (2 * n) * prod' * A) x_1**2 + b*x_1 = c x_1 = (x_1**2 + c) / (2*x_1 + b) """ # x in the input is converted to the same price/precision assert i >= 0 # dev: i below zero assert i < N_COINS # dev: i above N_COINS Ann: uint256 = A_ * N_COINS c: uint256 = D S_: uint256 = 0 _x: uint256 = 0 y_prev: uint256 = 0 for _i in range(N_COINS): if _i != i: _x = xp[_i] else: continue S_ += _x c = c * D / (_x * N_COINS) c = c * D * A_PRECISION / (Ann * N_COINS) b: uint256 = S_ + D * A_PRECISION / Ann y: uint256 = D for _i in range(255): y_prev = y y = (y*y + c) / (2 * y + b - D) # Equality with the precision of 1 if y > y_prev: if y - y_prev <= 1: return y else: if y_prev - y <= 1: return y raise @view @internal def _calc_withdraw_one_coin(_token_amount: uint256, i: int128) -> (uint256, uint256): # First, need to calculate # * Get current D # * Solve Eqn against y_i for D - _token_amount amp: uint256 = self._A() xp: uint256[N_COINS] = self._balances() D0: uint256 = self.get_D(xp, amp) total_supply: uint256 = ERC20(self.lp_token).totalSupply() D1: uint256 = D0 - _token_amount * D0 / total_supply new_y: uint256 = self.get_y_D(amp, i, xp, D1) fee: uint256 = self.fee * N_COINS / (4 * (N_COINS - 1)) xp_reduced: uint256[N_COINS] = xp for j in range(N_COINS): dx_expected: uint256 = 0 if j == i: dx_expected = xp[j] * D1 / D0 - new_y else: dx_expected = xp[j] - xp[j] * D1 / D0 xp_reduced[j] -= fee * dx_expected / FEE_DENOMINATOR dy: uint256 = xp_reduced[i] - self.get_y_D(amp, i, xp_reduced, D1) dy -= 1 # Withdraw less to account for rounding errors dy_0: uint256 = xp[i] - new_y # w/o fees return dy, dy_0 - dy @view @external def calc_withdraw_one_coin(_token_amount: uint256, i: int128) -> uint256: """ @notice Calculate the amount received when withdrawing a single coin @dev Result is the same for underlying or wrapped asset withdrawals @param _token_amount Amount of LP tokens to burn in the withdrawal @param i Index value of the coin to withdraw @return Amount of coin received """ return self._calc_withdraw_one_coin(_token_amount, i)[0] @external @nonreentrant('lock') def remove_liquidity_one_coin( _token_amount: uint256, i: int128, _min_amount: uint256 ) -> uint256: """ @notice Withdraw a single coin from the pool @param _token_amount Amount of LP tokens to burn in the withdrawal @param i Index value of the coin to withdraw @param _min_amount Minimum amount of coin to receive @return Amount of coin received """ assert not self.is_killed # dev: is killed dy: uint256 = 0 dy_fee: uint256 = 0 dy, dy_fee = self._calc_withdraw_one_coin(_token_amount, i) assert dy >= _min_amount, "Not enough coins removed" self.admin_balances[i] += dy_fee * self.admin_fee / FEE_DENOMINATOR CurveToken(self.lp_token).burnFrom(msg.sender, _token_amount) # dev: insufficient funds if i == 0: raw_call(msg.sender, b"", value=dy) else: assert ERC20(self.coins[1]).transfer(msg.sender, dy) log RemoveLiquidityOne(msg.sender, _token_amount, dy) return dy ### Admin functions ### @external def ramp_A(_future_A: uint256, _future_time: uint256): assert msg.sender == self.owner # dev: only owner assert block.timestamp >= self.initial_A_time + MIN_RAMP_TIME assert _future_time >= block.timestamp + MIN_RAMP_TIME # dev: insufficient time _initial_A: uint256 = self._A() _future_A_p: uint256 = _future_A * A_PRECISION assert _future_A > 0 and _future_A < MAX_A if _future_A_p < _initial_A: assert _future_A_p * MAX_A_CHANGE >= _initial_A else: assert _future_A_p <= _initial_A * MAX_A_CHANGE self.initial_A = _initial_A self.future_A = _future_A_p self.initial_A_time = block.timestamp self.future_A_time = _future_time log RampA(_initial_A, _future_A_p, block.timestamp, _future_time) @external def stop_ramp_A(): assert msg.sender == self.owner # dev: only owner current_A: uint256 = self._A() self.initial_A = current_A self.future_A = current_A self.initial_A_time = block.timestamp self.future_A_time = block.timestamp # now (block.timestamp < t1) is always False, so we return saved A log StopRampA(current_A, block.timestamp) @external def commit_new_fee(new_fee: uint256, new_admin_fee: uint256): assert msg.sender == self.owner # dev: only owner assert self.admin_actions_deadline == 0 # dev: active action assert new_fee <= MAX_FEE # dev: fee exceeds maximum assert new_admin_fee <= MAX_ADMIN_FEE # dev: admin fee exceeds maximum _deadline: uint256 = block.timestamp + ADMIN_ACTIONS_DELAY self.admin_actions_deadline = _deadline self.future_fee = new_fee self.future_admin_fee = new_admin_fee log CommitNewFee(_deadline, new_fee, new_admin_fee) @external @nonreentrant('lock') def apply_new_fee(): assert msg.sender == self.owner # dev: only owner assert block.timestamp >= self.admin_actions_deadline # dev: insufficient time assert self.admin_actions_deadline != 0 # dev: no active action self.admin_actions_deadline = 0 _fee: uint256 = self.future_fee _admin_fee: uint256 = self.future_admin_fee self.fee = _fee self.admin_fee = _admin_fee log NewFee(_fee, _admin_fee) @external def revert_new_parameters(): assert msg.sender == self.owner # dev: only owner self.admin_actions_deadline = 0 @external def commit_transfer_ownership(_owner: address): assert msg.sender == self.owner # dev: only owner assert self.transfer_ownership_deadline == 0 # dev: active transfer _deadline: uint256 = block.timestamp + ADMIN_ACTIONS_DELAY self.transfer_ownership_deadline = _deadline self.future_owner = _owner log CommitNewAdmin(_deadline, _owner) @external @nonreentrant('lock') def apply_transfer_ownership(): assert msg.sender == self.owner # dev: only owner assert block.timestamp >= self.transfer_ownership_deadline # dev: insufficient time assert self.transfer_ownership_deadline != 0 # dev: no active transfer self.transfer_ownership_deadline = 0 _owner: address = self.future_owner self.owner = _owner log NewAdmin(_owner) @external def revert_transfer_ownership(): assert msg.sender == self.owner # dev: only owner self.transfer_ownership_deadline = 0 @external @nonreentrant('lock') def withdraw_admin_fees(): assert msg.sender == self.owner # dev: only owner amount: uint256 = self.admin_balances[0] if amount != 0: raw_call(msg.sender, b"", value=amount) amount = self.admin_balances[1] if amount != 0: assert ERC20(self.coins[1]).transfer(msg.sender, amount) self.admin_balances = empty(uint256[N_COINS]) @external def donate_admin_fees(): """ Just in case admin balances somehow become higher than total (rounding error?) this can be used to fix the state, too """ assert msg.sender == self.owner # dev: only owner self.admin_balances = empty(uint256[N_COINS]) @external def kill_me(): assert msg.sender == self.owner # dev: only owner assert self.kill_deadline > block.timestamp # dev: deadline has passed self.is_killed = True @external def unkill_me(): assert msg.sender == self.owner # dev: only owner self.is_killed = False
Contract Security Audit
- No Contract Security Audit Submitted- Submit Audit Here
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iquidity_imbalance","outputs":[{"type":"uint256","name":""}],"inputs":[{"type":"uint256[2]","name":"_amounts"},{"type":"uint256","name":"_max_burn_amount"}],"stateMutability":"nonpayable","type":"function","gas":3519382},{"name":"calc_withdraw_one_coin","outputs":[{"type":"uint256","name":""}],"inputs":[{"type":"uint256","name":"_token_amount"},{"type":"int128","name":"i"}],"stateMutability":"view","type":"function","gas":1435},{"name":"remove_liquidity_one_coin","outputs":[{"type":"uint256","name":""}],"inputs":[{"type":"uint256","name":"_token_amount"},{"type":"int128","name":"i"},{"type":"uint256","name":"_min_amount"}],"stateMutability":"nonpayable","type":"function","gas":4113806},{"name":"ramp_A","outputs":[],"inputs":[{"type":"uint256","name":"_future_A"},{"type":"uint256","name":"_future_time"}],"stateMutability":"nonpayable","type":"function","gas":151834},{"name":"stop_ramp_A","outputs":[],"inputs":[],"stateMutability":"nonpayable","type":"function","gas":148595},{"name":"commit_new_fee","outputs":[],"inputs":[{"type":"uint256","name":"new_fee"},{"type":"uint256","name":"new_admin_fee"}],"stateMutability":"nonpayable","type":"function","gas":110431},{"name":"apply_new_fee","outputs":[],"inputs":[],"stateMutability":"nonpayable","type":"function","gas":153115},{"name":"revert_new_parameters","outputs":[],"inputs":[],"stateMutability":"nonpayable","type":"function","gas":21865},{"name":"commit_transfer_ownership","outputs":[],"inputs":[{"type":"address","name":"_owner"}],"stateMutability":"nonpayable","type":"function","gas":74603},{"name":"apply_transfer_ownership","outputs":[],"inputs":[],"stateMutability":"nonpayable","type":"function","gas":116583},{"name":"revert_transfer_ownership","outputs":[],"inputs":[],"stateMutability":"nonpayable","type":"function","gas":21955},{"name":"withdraw_admin_fees","outputs":[],"inputs":[],"stateMutability":"nonpayable","type":"function","gas":137597},{"name":"donate_admin_fees","outputs":[],"inputs":[],"stateMutability":"nonpayable","type":"function","gas":42144},{"name":"kill_me","outputs":[],"inputs":[],"stateMutability":"nonpayable","type":"function","gas":37938},{"name":"unkill_me","outputs":[],"inputs":[],"stateMutability":"nonpayable","type":"function","gas":22075},{"name":"coins","outputs":[{"type":"address","name":""}],"inputs":[{"type":"uint256","name":"arg0"}],"stateMutability":"view","type":"function","gas":2160},{"name":"admin_balances","outputs":[{"type":"uint256","name":""}],"inputs":[{"type":"uint256","name":"arg0"}],"stateMutability":"view","type":"function","gas":2190},{"name":"fee","outputs":[{"type":"uint256","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2111},{"name":"admin_fee","outputs":[{"type":"uint256","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2141},{"name":"owner","outputs":[{"type":"address","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2171},{"name":"lp_token","outputs":[{"type":"address","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2201},{"name":"initial_A","outputs":[{"type":"uint256","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2231},{"name":"future_A","outputs":[{"type":"uint256","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2261},{"name":"initial_A_time","outputs":[{"type":"uint256","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2291},{"name":"future_A_time","outputs":[{"type":"uint256","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2321},{"name":"admin_actions_deadline","outputs":[{"type":"uint256","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2351},{"name":"transfer_ownership_deadline","outputs":[{"type":"uint256","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2381},{"name":"future_fee","outputs":[{"type":"uint256","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2411},{"name":"future_admin_fee","outputs":[{"type":"uint256","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2441},{"name":"future_owner","outputs":[{"type":"address","name":""}],"inputs":[],"stateMutability":"view","type":"function","gas":2471}]
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Multichain Portfolio | 30 Chains
Chain | Token | Portfolio % | Price | Amount | Value |
---|---|---|---|---|---|
ETH | 66.80% | $2,743.53 | 33,989.6323 | $93,251,575.94 | |
ETH | 33.19% | $2,741.93 | 16,898.8007 | $46,335,290.54 | |
ETH | <0.01% | $1 | 690 | $690 | |
ETH | <0.01% | <$0.000001 | 1,106,012,705.5991 | $1.12 | |
BSC | <0.01% | $1.86 | 6,040.9834 | $11,260.72 | |
POL | <0.01% | $0.312997 | 1 | $0.312997 | |
BASE | <0.01% | $2,740.99 | 0.00002411 | $0.066088 | |
FTM | <0.01% | $0.4402 | 0.0016 | $0.000704 | |
OP | <0.01% | $2,741.38 | 0.00000001 | $0.000027 |
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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.