mirror of
https://github.com/Instadapp/smart-contract.git
synced 2024-07-29 22:08:07 +00:00
263 lines
9.2 KiB
Solidity
263 lines
9.2 KiB
Solidity
pragma solidity ^0.5.8;
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pragma experimental ABIEncoderV2;
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interface ERC20Interface {
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function allowance(address, address) external view returns (uint);
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function balanceOf(address) external view returns (uint);
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function approve(address, uint) external;
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function transfer(address, uint) external returns (bool);
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function transferFrom(address, address, uint) external returns (bool);
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function deposit() external payable;
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function withdraw(uint) external;
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}
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contract SoloMarginContract {
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struct Info {
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address owner; // The address that owns the account
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uint256 number; // A nonce that allows a single address to control many accounts
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}
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enum ActionType {
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Deposit, // supply tokens
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Withdraw, // borrow tokens
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Transfer, // transfer balance between accounts
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Buy, // buy an amount of some token (externally)
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Sell, // sell an amount of some token (externally)
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Trade, // trade tokens against another account
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Liquidate, // liquidate an undercollateralized or expiring account
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Vaporize, // use excess tokens to zero-out a completely negative account
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Call // send arbitrary data to an address
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}
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enum AssetDenomination {
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Wei, // the amount is denominated in wei
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Par // the amount is denominated in par
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}
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enum AssetReference {
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Delta, // the amount is given as a delta from the current value
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Target // the amount is given as an exact number to end up at
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}
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struct AssetAmount {
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bool sign; // true if positive
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AssetDenomination denomination;
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AssetReference ref;
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uint256 value;
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}
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struct ActionArgs {
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ActionType actionType;
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uint256 accountId;
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AssetAmount amount;
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uint256 primaryMarketId;
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uint256 secondaryMarketId;
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address otherAddress;
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uint256 otherAccountId;
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bytes data;
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}
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struct Wei {
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bool sign; // true if positive
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uint256 value;
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}
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function operate(Info[] memory accounts, ActionArgs[] memory actions) public;
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function getAccountWei(Info memory account, uint256 marketId) public returns (Wei memory);
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}
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contract DSMath {
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function add(uint x, uint y) internal pure returns (uint z) {
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require((z = x + y) >= x, "math-not-safe");
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}
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function mul(uint x, uint y) internal pure returns (uint z) {
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require(y == 0 || (z = x * y) / y == x, "math-not-safe");
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}
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uint constant WAD = 10 ** 18;
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function wmul(uint x, uint y) internal pure returns (uint z) {
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z = add(mul(x, y), WAD / 2) / WAD;
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}
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function wdiv(uint x, uint y) internal pure returns (uint z) {
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z = add(mul(x, WAD), y / 2) / y;
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}
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}
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contract Helpers is DSMath {
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/**
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* @dev get ethereum address
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*/
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function getAddressETH() public pure returns (address eth) {
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eth = 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE;
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}
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/**
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* @dev get WETH address
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*/
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function getAddressWETH() public pure returns (address weth) {
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weth = 0xC02aaA39b223FE8D0A0e5C4F27eAD9083C756Cc2;
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}
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/**
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* @dev get Dydx Solo Address
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*/
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function getSoloAddress() public pure returns (address addr) {
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addr = 0x1E0447b19BB6EcFdAe1e4AE1694b0C3659614e4e;
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}
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/**
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* @dev setting allowance to dydx for the "user proxy" if required
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*/
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function setApproval(address erc20, uint srcAmt, address to) internal {
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ERC20Interface erc20Contract = ERC20Interface(erc20);
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uint tokenAllowance = erc20Contract.allowance(address(this), to);
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if (srcAmt > tokenAllowance) {
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erc20Contract.approve(to, uint(-1));
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}
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}
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/**
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* @dev getting actions arg
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*/
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function getActionsArgs(uint256 marketId, uint256 tokenAmt, bool sign) internal view returns (SoloMarginContract.ActionArgs[] memory) {
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SoloMarginContract.ActionArgs[] memory actions = new SoloMarginContract.ActionArgs[](1);
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SoloMarginContract.AssetAmount memory amount = SoloMarginContract.AssetAmount(
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sign,
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SoloMarginContract.AssetDenomination.Wei,
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SoloMarginContract.AssetReference.Delta,
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tokenAmt
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);
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bytes memory empty;
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// address otherAddr = (marketId == 0 && sign) ? getSoloPayableAddress() : address(this);
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SoloMarginContract.ActionType action = sign ? SoloMarginContract.ActionType.Deposit : SoloMarginContract.ActionType.Withdraw;
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actions[0] = SoloMarginContract.ActionArgs(
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action,
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0,
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amount,
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marketId,
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0,
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address(this),
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0,
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empty
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);
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return actions;
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}
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/**
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* @dev getting acccount arg
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*/
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function getAccountArgs() internal view returns (SoloMarginContract.Info[] memory) {
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SoloMarginContract.Info[] memory accounts = new SoloMarginContract.Info[](1);
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accounts[0] = (SoloMarginContract.Info(address(this), 0));
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return accounts;
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}
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/**
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* @dev getting dydx balance
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*/
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function getDydxBal(uint256 marketId) internal returns (uint tokenBal, bool tokenSign) {
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SoloMarginContract solo = SoloMarginContract(getSoloAddress());
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SoloMarginContract.Wei memory tokenWeiBal = solo.getAccountWei(getAccountArgs()[0], marketId);
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tokenBal = tokenWeiBal.value;
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tokenSign = tokenWeiBal.sign;
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}
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}
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contract DydxResolver is Helpers {
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event LogDeposit(address erc20Addr, uint tokenAmt, address owner);
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event LogWithdraw(address erc20Addr, uint tokenAmt, address owner);
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event LogBorrow(address erc20Addr, uint tokenAmt, address owner);
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event LogPayback(address erc20Addr, uint tokenAmt, address owner);
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/**
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* @dev Deposit ETH/ERC20
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*/
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function deposit(uint256 marketId, address erc20Addr, uint256 tokenAmt) public payable {
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if (erc20Addr == getAddressETH()) {
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ERC20Interface(getAddressWETH()).deposit.value(msg.value)();
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setApproval(getAddressWETH(), tokenAmt, getSoloAddress());
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} else {
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require(ERC20Interface(erc20Addr).transferFrom(msg.sender, address(this), tokenAmt), "Allowance or not enough bal");
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setApproval(erc20Addr, tokenAmt, getSoloAddress());
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}
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SoloMarginContract(getSoloAddress()).operate(getAccountArgs(), getActionsArgs(marketId, tokenAmt, true));
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emit LogDeposit(erc20Addr, tokenAmt, address(this));
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}
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/**
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* @dev Payback ETH/ERC20
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*/
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function payback(uint256 marketId, address erc20Addr, uint256 tokenAmt) public payable {
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(uint toPayback, bool tokenSign) = getDydxBal(marketId);
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require(!tokenSign, "No debt to payback");
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toPayback = toPayback > tokenAmt ? tokenAmt : toPayback;
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if (erc20Addr == getAddressETH()) {
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ERC20Interface(getAddressWETH()).deposit.value(toPayback)();
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setApproval(getAddressWETH(), toPayback, getSoloAddress());
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msg.sender.transfer(address(this).balance);
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} else {
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require(ERC20Interface(erc20Addr).transferFrom(msg.sender, address(this), toPayback), "Allowance or not enough bal");
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setApproval(erc20Addr, toPayback, getSoloAddress());
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}
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SoloMarginContract(getSoloAddress()).operate(getAccountArgs(), getActionsArgs(marketId, toPayback, true));
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emit LogPayback(erc20Addr, toPayback, address(this));
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}
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/**
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* @dev Withdraw ETH/ERC20
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*/
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function withdraw(uint256 marketId, address erc20Addr, uint256 tokenAmt) public {
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(uint toWithdraw, bool tokenSign) = getDydxBal(marketId);
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require(tokenSign, "token not deposited");
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toWithdraw = toWithdraw > tokenAmt ? tokenAmt : toWithdraw;
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SoloMarginContract solo = SoloMarginContract(getSoloAddress());
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solo.operate(getAccountArgs(), getActionsArgs(marketId, toWithdraw, false));
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if (erc20Addr == getAddressETH()) {
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ERC20Interface wethContract = ERC20Interface(getAddressWETH());
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uint wethBal = wethContract.balanceOf(address(this));
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toWithdraw = toWithdraw < wethBal ? wethBal : toWithdraw;
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setApproval(getAddressWETH(), toWithdraw, getAddressWETH());
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ERC20Interface(getAddressWETH()).withdraw(toWithdraw);
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msg.sender.transfer(toWithdraw);
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} else {
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require(ERC20Interface(erc20Addr).transfer(msg.sender, toWithdraw), "Allowance or not enough bal");
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}
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emit LogWithdraw(erc20Addr, toWithdraw, address(this));
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}
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/**
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* @dev Borrow ETH/ERC20
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*/
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function borrow(uint256 marketId, address erc20Addr, uint256 tokenAmt) public {
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SoloMarginContract(getSoloAddress()).operate(getAccountArgs(), getActionsArgs(marketId, tokenAmt, false));
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if (erc20Addr == getAddressETH()) {
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setApproval(getAddressWETH(), tokenAmt, getAddressWETH());
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ERC20Interface(getAddressWETH()).withdraw(tokenAmt);
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msg.sender.transfer(tokenAmt);
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} else {
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require(ERC20Interface(erc20Addr).transfer(msg.sender, tokenAmt), "Allowance or not enough bal");
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}
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emit LogBorrow(erc20Addr, tokenAmt, address(this));
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}
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}
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contract InstaDydx is DydxResolver {
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function() external payable {}
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}
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