struct BorrowInfo {
uint256 id; // borrow id
address account; //borrow account
uint256 amount; //borrow amount
uint64 minerId; //miner
uint256 interestRate; // interest rate
uint256 borrowTime; // borrow time
uint256 paybackTime; // payback time
bool isPayback; // flag for status
}
struct MinerBorrowInfo {
uint64 minerId;
BorrowInfo[] borrows;
}
struct MinerStakingInfo {
uint64 minerId;
uint256 quota;
uint256 borrowCount;
uint256 paybackCount;
uint64 expiration;
}
struct FILLInfo {
uint256 availableFIL; // a. Available FIL Liquidity a=b+d-c
uint256 totalDeposited; // b. Total Deposited Liquidity
uint256 utilizedLiquidity; // c. Current Utilized Liquidity c=b+d-a
uint256 accumulatedInterest; // d. Accumulated Interest Payment Received
uint256 accumulatedPayback; // e. Accumulated Repayments
uint256 accumulatedRedeem; // f. Accumulated FIL Redemptions
uint256 accumulatedBurnFLE; // g. Accumulated FLE Burnt
uint256 utilizationRate; // h. Current Utilization Rate h=c/(b+d-e)
uint256 exchangeRate; // i. Current FLE/FIL Exchange Rate
uint256 interestRate; // j. Current Interest Rate
uint256 collateralizationRate; // k. Current Collateralization Rate
uint256 totalFee; // l. Total Transaction Fee Received
uint256 leastDepositingAmount; // m. Least Depositing Amount
}
/// @dev deposit FIL to the contract, mint FLE
/// @param amountFIL the amount of FIL user would like to deposit
/// @param exchangeRate approximated exchange rate at the point of request
/// @param slippageTolr slippage tolerance
/// @return amount actual FLE minted
function deposit(
uint256 amountFIL,
uint256 exchangeRate,
uint256 slippageTolr
) external payable returns (uint256 amount);
/// @dev redeem FLE to the contract, withdraw FIL
/// @param amountFLE the amount of FLE user would like to redeem
/// @param exchangeRate approximated exchange rate at the point of request
/// @param slippageTolr slippage tolerance
/// @return amount actual FIL withdrawal
function redeem(
uint256 amountFLE,
uint256 exchangeRate,
uint256 slippageTolr
) external returns (uint256 amount);
/// @dev borrow FIL from the contract
/// @param minerId miner id
/// @param amountFIL the amount of FIL user would like to borrow
/// @param interestRate approximated interest rate at the point of request
/// @param slippageTolr slippage tolerance
/// @return amount actual FIL borrowed
function borrow(
uint64 minerId,
uint256 amountFIL,
uint256 interestRate,
uint256 slippageTolr
) external returns (uint256 amount);
/// @dev payback principal and interest
/// @param minerId miner id
/// @param borrowId borrow id
/// @return amount actual FIL repaid
function payback(uint64 minerId, uint256 borrowId)
external
returns (uint256 amount);
/// @dev staking miner : change beneficiary to contract , need owner for miner propose change beneficiary first
/// @param minerId miner id
/// @return flag result flag for change beneficiary
function stakingMiner(uint64 minerId) external returns (bool);
/// @dev unstaking miner : change beneficiary back to miner owner, need payback all first
/// @param minerId miner id
/// @return flag result flag for change beneficiary
function unstakingMiner(uint64 minerId) external returns (bool);
/// @dev FLE balance of a user
/// @param account user account
/// @return balance user’s FLE account balance
function fleBalanceOf(address account)
external
view
returns (uint256 balance);
/// @dev user’s borrowing information
/// @param account user’s account address
/// @return infos user’s borrowing informations
function userBorrows(address account)
external
view
returns (MinerBorrowInfo[] memory infos);
/// @dev get staking miner info : minerId,quota,borrowCount,paybackCount,expiration
/// @param minerId miner id
/// @return info return staking miner info
function getStakingMinerInfo(uint64 minerId)
external
view
returns (MinerStakingInfo memory);
/// @dev FLE token address
function fleAddress() external view returns (address);
/// @dev Validation contract address
function validationAddress() external view returns (address);
/// @dev return FIL/FLE exchange rate: total amount of FIL liquidity divided by total amount of FLE outstanding
function exchangeRate() external view returns (uint256);
/// @dev return transaction fee rate
function feeRate() external view returns (uint256);
/// @dev return borrowing interest rate : a mathematical function of utilizatonRate
function interestRate() external view returns (uint256);
/// @dev return liquidity pool utilization : the amount of FIL being utilized divided by the total liquidity provided (the amount of FIL deposited and the interest repaid)
function utilizationRate() external view returns (uint256);
/// @dev return fill contract infos
function fillInfo() external view returns (FILLInfo memory);
/// @dev Emitted when `account` deposits `amountFIL` and mints `amountFLE`
event Deposit(
address indexed account,
uint256 amountFIL,
uint256 amountFLE
);
/// @dev Emitted when `account` redeems `amountFLE` and withdraws `amountFIL`
event Redeem(address indexed account, uint256 amountFLE, uint256 amountFIL);
/// @dev Emitted when user `account` borrows `amountFIL` with `minerId`
event Borrow(
uint256 indexed borrowId,
address indexed account,
uint64 indexed minerId,
uint256 amountFIL
);
/// @dev Emitted when user `account` repays `amount` FIL with `minerId`
event Payback(
uint256 indexed borrowId,
address indexed account,
uint64 indexed minerId,
uint256 amountFIL
);
// / @dev Emitted when staking `minerId` : change beneficiary to `beneficiary` with info `quota`,`expiration`
event StakingMiner(
uint64 minerId,
bytes beneficiary,
uint256 quota,
uint64 expiration
);
// / @dev Emitted when unstaking `minerId` : change beneficiary to `beneficiary` with info `quota`,`expiration`
event UnstakingMiner(
uint64 minerId,
bytes beneficiary,
uint256 quota,
uint64 expiration
);
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