mirror of
https://github.com/Instadapp/dsa-connectors.git
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b7d60ca8ae
* Adding staking * Adding tests * Formatting * Reformat events * Addressing PR comments
293 lines
8.8 KiB
Solidity
293 lines
8.8 KiB
Solidity
// SPDX-License-Identifier: MIT
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pragma solidity ^0.7.6;
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pragma abicoder v2;
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import { Token, NotionalInterface, StakingInterface, BalanceAction, BalanceActionWithTrades, DepositActionType } from "./interface.sol";
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import { Basic } from "../../common/basic.sol";
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import { DSMath } from "../../common/math.sol";
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import { TokenInterface } from "../../common/interfaces.sol";
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abstract contract Helpers is DSMath, Basic {
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uint8 internal constant LEND_TRADE = 0;
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uint8 internal constant BORROW_TRADE = 1;
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uint256 internal constant INTERNAL_TOKEN_PRECISION = 1e8;
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uint256 internal constant ETH_CURRENCY_ID = 1;
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uint256 internal constant MAX_DEPOSIT = type(uint256).max;
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/// @dev Contract address is different on Kovan: 0x0EAE7BAdEF8f95De91fDDb74a89A786cF891Eb0e
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NotionalInterface internal constant notional =
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NotionalInterface(0x1344A36A1B56144C3Bc62E7757377D288fDE0369);
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/// @dev sNOTE contract address
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StakingInterface internal constant staking =
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StakingInterface(0x38DE42F4BA8a35056b33A746A6b45bE9B1c3B9d2);
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/// @dev sNOTE balancer pool token address
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TokenInterface internal constant bpt =
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TokenInterface(0x5122E01D819E58BB2E22528c0D68D310f0AA6FD7);
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/// @dev NOTE token address
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TokenInterface internal constant note =
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TokenInterface(0xCFEAead4947f0705A14ec42aC3D44129E1Ef3eD5);
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/// @dev WETH token address
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TokenInterface internal constant weth =
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TokenInterface(0xC02aaA39b223FE8D0A0e5C4F27eAD9083C756Cc2);
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/// @notice Returns the address of the underlying token for a given currency id,
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function getAssetOrUnderlyingToken(uint16 currencyId, bool underlying)
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internal
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view
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returns (address)
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{
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// prettier-ignore
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(Token memory assetToken, Token memory underlyingToken) = notional.getCurrency(currencyId);
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return
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underlying ? underlyingToken.tokenAddress : assetToken.tokenAddress;
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}
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function getCashOrNTokenBalance(uint16 currencyId, bool nToken)
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internal
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view
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returns (uint256)
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{
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// prettier-ignore
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(
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int256 cashBalance,
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int256 nTokenBalance,
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/* int256 lastClaimTime */
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) = notional.getAccountBalance(currencyId, address(this));
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return toUint(nToken ? nTokenBalance : cashBalance);
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}
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function getNTokenRedeemAmount(
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uint16 currencyId,
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uint96 _tokensToRedeem,
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uint256 getId
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) internal returns (uint96 tokensToRedeem) {
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tokensToRedeem = toUint96(getUint(getId, _tokensToRedeem));
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if (tokensToRedeem == type(uint96).max) {
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tokensToRedeem = toUint96(getCashOrNTokenBalance(currencyId, true));
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}
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}
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function toUint96(uint256 value) internal pure returns (uint96) {
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require(value <= type(uint96).max, "uint96 value overflow");
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return uint96(value);
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}
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function toUint88(uint256 value) internal pure returns (uint88) {
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require(value <= type(uint88).max, "uint88 value overflow");
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return uint88(value);
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}
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function getMsgValue(
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uint16 currencyId,
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bool useUnderlying,
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uint256 depositAmount
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) internal pure returns (uint256 msgValue) {
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msgValue = (currencyId == ETH_CURRENCY_ID && useUnderlying)
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? depositAmount
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: 0;
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}
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function convertToInternal(uint16 currencyId, uint256 amount)
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internal
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view
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returns (uint256)
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{
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// If token decimals is greater than INTERNAL_TOKEN_PRECISION then this will truncate
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// down to the internal precision. Resulting dust will accumulate to the protocol.
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// If token decimals is less than INTERNAL_TOKEN_PRECISION then this will add zeros to the
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// end of amount and will not result in dust.
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// prettier-ignore
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(Token memory assetToken, /* underlyingToken */) = notional.getCurrency(currencyId);
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uint256 decimals = toUint(assetToken.decimals);
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if (decimals == INTERNAL_TOKEN_PRECISION) return amount;
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return div(mul(amount, INTERNAL_TOKEN_PRECISION), decimals);
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}
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function encodeLendTrade(
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uint8 marketIndex,
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uint88 fCashAmount,
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uint32 minLendRate
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) internal pure returns (bytes32) {
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return
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(bytes32(uint256(LEND_TRADE)) << 248) |
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(bytes32(uint256(marketIndex)) << 240) |
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(bytes32(uint256(fCashAmount)) << 152) |
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(bytes32(uint256(minLendRate)) << 120);
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}
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function encodeBorrowTrade(
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uint8 marketIndex,
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uint88 fCashAmount,
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uint32 maxBorrowRate
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) internal pure returns (bytes32) {
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return
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(bytes32(uint256(BORROW_TRADE)) << 248) |
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(bytes32(uint256(marketIndex)) << 240) |
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(bytes32(uint256(fCashAmount)) << 152) |
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(bytes32(uint256(maxBorrowRate)) << 120);
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}
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/// @dev Uses getId to set approval for the given token up to the specified deposit
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/// amount only
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function getDepositAmountAndSetApproval(
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uint256 getId,
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uint16 currencyId,
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bool useUnderlying,
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uint256 depositAmount
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) internal returns (uint256) {
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depositAmount = getUint(getId, depositAmount);
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if (currencyId == ETH_CURRENCY_ID && useUnderlying) {
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// No approval required for ETH so we can return the deposit amount
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return
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depositAmount == MAX_DEPOSIT
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? address(this).balance
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: depositAmount;
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}
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address tokenAddress = getAssetOrUnderlyingToken(
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currencyId,
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useUnderlying
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);
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if (depositAmount == MAX_DEPOSIT) {
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depositAmount = TokenInterface(tokenAddress).balanceOf(
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address(this)
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);
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}
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approve(TokenInterface(tokenAddress), address(notional), depositAmount);
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return depositAmount;
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}
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function getBalance(address addr) internal view returns (uint256) {
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if (addr == ethAddr) {
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return address(this).balance;
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}
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return TokenInterface(addr).balanceOf(address(this));
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}
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function getAddress(uint16 currencyId, bool useUnderlying)
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internal
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view
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returns (address)
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{
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if (currencyId == ETH_CURRENCY_ID && useUnderlying) {
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return ethAddr;
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}
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return getAssetOrUnderlyingToken(currencyId, useUnderlying);
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}
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/// @dev Executes a trade action and sets the balance change to setId
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function executeTradeActionWithBalanceChange(
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BalanceActionWithTrades[] memory action,
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uint256 msgValue,
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uint16 currencyId,
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bool useUnderlying,
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uint256 setId
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) internal {
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address tokenAddress;
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uint256 balanceBefore;
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if (setId != 0) {
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tokenAddress = getAddress(currencyId, useUnderlying);
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balanceBefore = getBalance(tokenAddress);
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}
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notional.batchBalanceAndTradeAction{ value: msgValue }(
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address(this),
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action
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);
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if (setId != 0) {
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uint256 balanceAfter = getBalance(tokenAddress);
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setUint(setId, sub(balanceAfter, balanceBefore));
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}
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}
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/// @dev Executes a balance action and sets the balance change to setId
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function executeActionWithBalanceChange(
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BalanceAction[] memory action,
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uint256 msgValue,
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uint16 currencyId,
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bool useUnderlying,
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uint256 setId
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) internal {
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address tokenAddress;
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uint256 balanceBefore;
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if (setId != 0) {
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tokenAddress = getAddress(currencyId, useUnderlying);
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balanceBefore = getBalance(tokenAddress);
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}
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notional.batchBalanceAction{ value: msgValue }(address(this), action);
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if (setId != 0) {
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uint256 balanceAfter = getBalance(tokenAddress);
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setUint(setId, sub(balanceAfter, balanceBefore));
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}
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}
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function getDepositCollateralBorrowAndWithdrawActions(
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uint16 depositCurrencyId,
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DepositActionType depositAction,
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uint256 depositAmount,
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uint16 borrowCurrencyId,
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uint8 marketIndex,
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uint88 fCashAmount,
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uint32 maxBorrowRate,
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bool redeemToUnderlying
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) internal returns (BalanceActionWithTrades[] memory action) {
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BalanceActionWithTrades[] memory actions;
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bytes32[] memory trades = new bytes32[](1);
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trades[0] = encodeBorrowTrade(marketIndex, fCashAmount, maxBorrowRate);
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if (depositCurrencyId == borrowCurrencyId) {
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// In this case the account is likely borrowing against newly minted nTokens
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// in the same currency. Technically the other deposit actions may work but
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// there's no good reason to borrow against cToken collateral
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actions = new BalanceActionWithTrades[](1);
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actions[0].actionType = depositAction;
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actions[0].currencyId = depositCurrencyId;
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actions[0].depositActionAmount = depositAmount;
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// Withdraw borrowed amount to wallet
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actions[0].withdrawEntireCashBalance = true;
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actions[0].redeemToUnderlying = redeemToUnderlying;
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actions[0].trades = trades;
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return actions;
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}
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// This is the more common case that the account is borrowing against
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// collateral in a different currency
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actions = new BalanceActionWithTrades[](2);
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uint256 depositIndex;
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uint256 borrowIndex;
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// Notional requires the batch actions to be ordered by currency id
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if (depositCurrencyId < borrowCurrencyId) {
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depositIndex = 0;
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borrowIndex = 1;
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} else {
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depositIndex = 1;
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borrowIndex = 0;
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}
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actions[depositIndex].actionType = depositAction;
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actions[depositIndex].currencyId = depositCurrencyId;
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actions[depositIndex].depositActionAmount = depositAmount;
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actions[borrowIndex].actionType = DepositActionType.None;
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actions[borrowIndex].currencyId = borrowCurrencyId;
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// Withdraw borrowed amount to wallet
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actions[borrowIndex].withdrawEntireCashBalance = true;
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actions[borrowIndex].redeemToUnderlying = redeemToUnderlying;
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actions[borrowIndex].trades = trades;
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return actions;
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}
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}
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