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0xAF5C23A6462B68573e0600aa3f7d64A7D0FB10c6
 

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0x60806040115441082020-12-28 18:43:141416 days ago1609180994IN
 Create: Staking
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Contract Source Code Verified (Exact Match)

Contract Name:
Staking

Compiler Version
v0.6.6+commit.6c089d02

Optimization Enabled:
Yes with 0 runs

Other Settings:
default evmVersion
File 1 of 14 : Staking.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.4.25 <0.7.0;

/** OpenZeppelin Dependencies */
// import "@openzeppelin/contracts-upgradeable/contracts/proxy/Initializable.sol";
import "@openzeppelin/contracts-upgradeable/math/SafeMathUpgradeable.sol";
import "@openzeppelin/contracts-upgradeable/math/MathUpgradeable.sol";
import "@openzeppelin/contracts-upgradeable/access/AccessControlUpgradeable.sol";
import "@openzeppelin/contracts-upgradeable/token/ERC20/IERC20Upgradeable.sol";
/** Local Interfaces */
import "./interfaces/IToken.sol";
import "./interfaces/IAuction.sol";
import "./interfaces/IStaking.sol";
import "./interfaces/ISubBalances.sol";
import "./interfaces/IStakingV1.sol";


contract Staking is IStaking, Initializable, AccessControlUpgradeable {
    using SafeMathUpgradeable for uint256;

    /** Events */
    event Stake(
        address indexed account,
        uint256 indexed sessionId,
        uint256 amount,
        uint256 start,
        uint256 end,
        uint256 shares
    );

    event Unstake(
        address indexed account,
        uint256 indexed sessionId,
        uint256 amount,
        uint256 start,
        uint256 end,
        uint256 shares
    );

    event MakePayout(
        uint256 indexed value,
        uint256 indexed sharesTotalSupply,
        uint256 indexed time
    );

    /** Structs */
    struct Payout {
        uint256 payout;
        uint256 sharesTotalSupply;
    }

    struct Session {
        uint256 amount;
        uint256 start;
        uint256 end;
        uint256 shares;
        uint256 firstPayout;
        uint256 lastPayout;
        bool withdrawn;
        uint256 payout;
    }

    struct Addresses {
        address mainToken;
        address auction;
        address subBalances;
    }

    Addresses public addresses;
    IStakingV1 public stakingV1;

    /** Roles */
    bytes32 public constant MIGRATOR_ROLE = keccak256("MIGRATOR_ROLE");
    bytes32 public constant EXTERNAL_STAKER_ROLE = keccak256("EXTERNAL_STAKER_ROLE");
    bytes32 public constant MANAGER_ROLE = keccak256("MANAGER_ROLE");

    /** Public Variables */
    uint256 public shareRate;
    uint256 public sharesTotalSupply;
    uint256 public nextPayoutCall;
    uint256 public stepTimestamp;
    uint256 public startContract;
    uint256 public globalPayout;
    uint256 public globalPayin;
    uint256 public lastSessionId;
    uint256 public lastSessionIdV1;

    /** Mappings / Arrays */
    mapping(address => mapping(uint256 => Session)) public sessionDataOf;
    mapping(address => uint256[]) public sessionsOf;
    Payout[] public payouts;
    
    /** Booleans */
    bool public init_;

    /** Variables after initial contract launch must go below here. https://github.com/OpenZeppelin/openzeppelin-sdk/issues/37 */
    /** End Variables after launch */

    /** Roles */
    modifier onlyManager() {
        require(hasRole(MANAGER_ROLE, _msgSender()), "Caller is not a manager");
        _;
    }
    modifier onlyMigrator() {
        require(hasRole(MIGRATOR_ROLE, _msgSender()), "Caller is not a migrator");
        _;
    }
    modifier onlyExternalStaker() {
        require(
            hasRole(EXTERNAL_STAKER_ROLE, _msgSender()),
            "Caller is not a external staker"
        );
        _;
    }

    /** Init functions */
    function initialize(
        address _manager,
        address _migrator
    ) public initializer {
        _setupRole(MANAGER_ROLE, _manager);
        _setupRole(MIGRATOR_ROLE, _migrator);
        init_ = false;
    }
    
    function init(
        address _mainTokenAddress,
        address _auctionAddress,
        address _subBalancesAddress,
        address _foreignSwapAddress,
        address _stakingV1Address,
        uint256 _stepTimestamp
    ) external onlyMigrator {
        require(!init_, "Staking: init is active");
        init_ = true;
        /** Setup */
        _setupRole(EXTERNAL_STAKER_ROLE, _foreignSwapAddress);
        _setupRole(EXTERNAL_STAKER_ROLE, _auctionAddress);

        addresses = Addresses({
            mainToken: _mainTokenAddress,
            auction: _auctionAddress,
            subBalances: _subBalancesAddress
        });
        
        stakingV1 = IStakingV1(_stakingV1Address);

        stepTimestamp = _stepTimestamp;

        if (startContract == 0) {
            startContract = now;
            nextPayoutCall = startContract.add(_stepTimestamp);
        }

        if (shareRate == 0) {
            shareRate = 1e18;
        }
    }
    /** End init functions */

    function sessionsOf_(address account)
        external
        view
        returns (uint256[] memory)
    {
        return sessionsOf[account];
    }

    function stake(uint256 amount, uint256 stakingDays) external {
        if (now >= nextPayoutCall) makePayout();

        // Staking days must be greater then 0 and less then or equal to 5555.
        require(stakingDays != 0, "stakingDays < 1");
        require(stakingDays <= 5555, "stakingDays > 5555");

        uint256 start = now;
        uint256 end = now.add(stakingDays.mul(stepTimestamp));

        IToken(addresses.mainToken).burn(msg.sender, amount);
        lastSessionId = lastSessionId.add(1);
        uint256 sessionId = lastSessionId;
        uint256 shares = _getStakersSharesAmount(amount, start, end);
        sharesTotalSupply = sharesTotalSupply.add(shares);

        sessionDataOf[msg.sender][sessionId] = Session({
            amount: amount,
            start: start,
            end: end,
            shares: shares,
            firstPayout: payouts.length,
            lastPayout: payouts.length + stakingDays,
            withdrawn: false,
            payout: 0
        });

        sessionsOf[msg.sender].push(sessionId);

        ISubBalances(addresses.subBalances).callIncomeStakerTrigger(
            msg.sender,
            sessionId,
            start,
            end,
            shares
        );

        emit Stake(msg.sender, sessionId, amount, start, end, shares);
    }

    function externalStake(
        uint256 amount,
        uint256 stakingDays,
        address staker
    ) external override onlyExternalStaker {
        if (now >= nextPayoutCall) makePayout();

        require(stakingDays != 0, "stakingDays < 1");
        require(stakingDays <= 5555, "stakingDays > 5555");

        uint256 start = now;
        uint256 end = now.add(stakingDays.mul(stepTimestamp));

        lastSessionId = lastSessionId.add(1);
        uint256 sessionId = lastSessionId;
        uint256 shares = _getStakersSharesAmount(amount, start, end);
        sharesTotalSupply = sharesTotalSupply.add(shares);

        sessionDataOf[staker][sessionId] = Session({
            amount: amount,
            start: start,
            end: end,
            shares: shares,
            firstPayout: payouts.length,
            lastPayout: payouts.length + stakingDays,
            withdrawn: false,
            payout: 0
        });

        sessionsOf[staker].push(sessionId);

        ISubBalances(addresses.subBalances).callIncomeStakerTrigger(
            staker,
            sessionId,
            start,
            end,
            shares
        );

        emit Stake(staker, sessionId, amount, start, end, shares);
    }

    function _initPayout(address to, uint256 amount) internal {
        IToken(addresses.mainToken).mint(to, amount);
        globalPayout = globalPayout.add(amount);
    }

    function calculateStakingInterest(
        uint256 firstPayout,
        uint256 lastPayout,
        uint256 shares
    ) public view returns (uint256) {
        uint256 stakingInterest;
        uint256 lastIndex = MathUpgradeable.min(
            payouts.length, 
            lastPayout
        );

        for (
            uint256 i = firstPayout;
            i < lastIndex;
            i++
        ) {
            uint256 payout = payouts[i].payout.mul(shares).div(
                payouts[i].sharesTotalSupply
            );

            stakingInterest = stakingInterest.add(payout);
        }

        return stakingInterest;
    }

    function unstake(uint256 sessionId) external {
        if (now >= nextPayoutCall) makePayout();

        Session storage session = sessionDataOf[msg.sender][sessionId];

        require(
            session.shares != 0 
                && session.withdrawn == false,
            "Staking: Stake withdrawn/invalid"
        );

        uint256 actualEnd = now;
        uint256 amountOut = unstakeInternal(
            sessionId,
            session.amount, 
            session.start, 
            session.end,
            actualEnd,
            session.shares, 
            session.firstPayout, 
            session.lastPayout
        );

        ISubBalances(addresses.subBalances).callOutcomeStakerTrigger(
            sessionId,
            session.start,
            session.end,
            actualEnd,
            session.shares
        );

        session.end = actualEnd;
        session.withdrawn = true;
        session.payout = amountOut;
    }

    function unstakeV1(uint256 sessionId) external {
        if (now >= nextPayoutCall) makePayout();

        require(sessionId <= lastSessionIdV1, "Staking: Invalid sessionId");

        Session storage session = sessionDataOf[msg.sender][sessionId];

        // Unstaked already
        require(
            session.shares == 0 && session.withdrawn == false,
            "Staking: Stake withdrawn"
        );

        (uint256 amount, uint256 start, uint256 end, uint256 shares, uint256 firstPayout) 
            = stakingV1.sessionDataOf(msg.sender, sessionId);

        // Unstaked in v1 / doesn't exist
        require(
            shares > 0,
            "Staking: Stake withdrawn"
        );

        uint256 lastPayout = (end - start) / stepTimestamp + firstPayout;

        uint256 actualEnd = now;
        uint256 amountOut = unstakeInternal(
            sessionId, 
            amount, 
            start,
            end,
            actualEnd,
            shares, 
            firstPayout, 
            lastPayout
        );

        ISubBalances(addresses.subBalances).callOutcomeStakerTriggerV1(
            msg.sender,
            sessionId,
            start,
            end,
            actualEnd,
            shares
        );

        sessionDataOf[msg.sender][sessionId] = Session({
            amount: amount,
            start: start,
            end: actualEnd,
            shares: shares,
            firstPayout: firstPayout,
            lastPayout: lastPayout,
            withdrawn: true,
            payout: amountOut
        });

        sessionsOf[msg.sender].push(sessionId);
    }

    function unstakeInternal(
        uint256 sessionId, 
        uint256 amount, 
        uint256 start, 
        uint256 end, 
        uint256 actualEnd,
        uint256 shares, 
        uint256 firstPayout,
        uint256 lastPayout
    ) internal returns (uint256) {
        uint256 stakingInterest = calculateStakingInterest(
            firstPayout,
            lastPayout,
            shares
        );

        sharesTotalSupply = sharesTotalSupply.sub(shares);

        (uint256 amountOut, uint256 penalty) = getAmountOutAndPenalty(
            amount,
            start,
            end,
            stakingInterest
        );

        // To auction
        if (penalty != 0) {
            _initPayout(addresses.auction, penalty);
            IAuction(addresses.auction).callIncomeDailyTokensTrigger(penalty);
        }
        
        // To account
        _initPayout(msg.sender, amountOut);

        emit Unstake(
            msg.sender,
            sessionId,
            amountOut,
            start,
            actualEnd,
            shares
        );

        return amountOut;
    }

    function getAmountOutAndPenalty(uint256 amount, uint256 start, uint256 end, uint256 stakingInterest)
        public
        view
        returns (uint256, uint256)
    {
        uint256 stakingSeconds = end.sub(start);
        uint256 stakingDays = stakingSeconds.div(stepTimestamp);
        uint256 secondsStaked = now.sub(start);
        uint256 daysStaked = secondsStaked.div(stepTimestamp);
        uint256 amountAndInterest = amount.add(stakingInterest);

        // Early
        if (stakingDays > daysStaked) {
            uint256 payOutAmount = amountAndInterest.mul(secondsStaked).div(
                stakingSeconds
            );

            uint256 earlyUnstakePenalty = amountAndInterest.sub(payOutAmount);

            return (payOutAmount, earlyUnstakePenalty);
            // In time
        } else if (
            daysStaked < stakingDays.add(14)
        ) {
            return (amountAndInterest, 0);
            // Late
        } else if (
            daysStaked < stakingDays.add(714)
        ) {
            uint256 daysAfterStaking = daysStaked - stakingDays;

            uint256 payOutAmount = amountAndInterest
                .mul(uint256(714).sub(daysAfterStaking))
                .div(700);

            uint256 lateUnstakePenalty = amountAndInterest.sub(payOutAmount);

            return (payOutAmount, lateUnstakePenalty);
            // Nothing
        } else {
            return (0, amountAndInterest);
        }
    }

    function makePayout() public {
        require(now >= nextPayoutCall, "Staking: Wrong payout time");

        uint256 payout = _getPayout();

        payouts.push(
            Payout({payout: payout, sharesTotalSupply: sharesTotalSupply})
        );

        nextPayoutCall = nextPayoutCall.add(stepTimestamp);

        emit MakePayout(payout, sharesTotalSupply, now);
    }

    function readPayout() external view returns (uint256) {
        uint256 amountTokenInDay = IERC20Upgradeable(addresses.mainToken).balanceOf(address(this));

        uint256 currentTokenTotalSupply = (IERC20Upgradeable(addresses.mainToken).totalSupply()).add(
            globalPayin
        );

        uint256 inflation = uint256(8)
            .mul(currentTokenTotalSupply.add(sharesTotalSupply))
            .div(36500);

        return amountTokenInDay.add(inflation);
    }

    function _getPayout() internal returns (uint256) {
        uint256 amountTokenInDay = IERC20Upgradeable(addresses.mainToken).balanceOf(address(this));

        globalPayin = globalPayin.add(amountTokenInDay);

        if (globalPayin > globalPayout) {
            globalPayin = globalPayin.sub(globalPayout);
            globalPayout = 0;
        } else {
            globalPayin = 0;
            globalPayout = 0;
        }

        uint256 currentTokenTotalSupply = (IERC20Upgradeable(addresses.mainToken).totalSupply()).add(
            globalPayin
        );

        IToken(addresses.mainToken).burn(address(this), amountTokenInDay);

        uint256 inflation = uint256(8)
            .mul(currentTokenTotalSupply.add(sharesTotalSupply))
            .div(36500);


        globalPayin = globalPayin.add(inflation);

        return amountTokenInDay.add(inflation);
    }

    function _getStakersSharesAmount(
        uint256 amount,
        uint256 start,
        uint256 end
    ) internal view returns (uint256) {
        uint256 stakingDays = (end.sub(start)).div(stepTimestamp);
        uint256 numerator = amount.mul(uint256(1819).add(stakingDays));
        uint256 denominator = uint256(1820).mul(shareRate);

        return (numerator).mul(1e18).div(denominator);
    }

    function _getShareRate(
        uint256 amount,
        uint256 shares,
        uint256 start,
        uint256 end,
        uint256 stakingInterest
    ) internal view returns (uint256) {
        uint256 stakingDays = (end.sub(start)).div(stepTimestamp);

        uint256 numerator = (amount.add(stakingInterest)).mul(
            uint256(1819).add(stakingDays)
        );

        uint256 denominator = uint256(1820).mul(shares);

        return (numerator).mul(1e18).div(denominator);
    }

    /** Roles management - only for multi sig address */
    function setupRole(bytes32 role, address account) external onlyManager {
        _setupRole(role, account);
    }
}

File 2 of 14 : IAuction.sol
// SPDX-License-Identifier: MIT

pragma solidity ^0.6.0;

interface IAuction {
    function callIncomeDailyTokensTrigger(uint256 amount) external;

    function callIncomeWeeklyTokensTrigger(uint256 amount) external;

    function addReservesToAuction(uint256 daysInFuture, uint256 amount) external returns(uint256);
}

File 3 of 14 : IStaking.sol
// SPDX-License-Identifier: MIT

pragma solidity ^0.6.0;

interface IStaking {
    function externalStake(
        uint256 amount,
        uint256 stakingDays,
        address staker
    ) external;
}

File 4 of 14 : IStakingV1.sol
// SPDX-License-Identifier: MIT

pragma solidity ^0.6.0;

interface IStakingV1 {
    function sessionDataOf(address, uint256)
        external view returns (uint256, uint256, uint256, uint256, uint256);
}

File 5 of 14 : ISubBalances.sol
// SPDX-License-Identifier: MIT

pragma solidity ^0.6.0;

interface ISubBalances {
    function callIncomeStakerTrigger(
        address staker,
        uint256 sessionId,
        uint256 start,
        uint256 end,
        uint256 shares
    ) external;

    function callOutcomeStakerTrigger(
        uint256 sessionId,
        uint256 start,
        uint256 end,
        uint256 actualEnd,
        uint256 shares
    ) external;

    function callOutcomeStakerTriggerV1(
        address staker,
        uint256 sessionId,
        uint256 start,
        uint256 end,
        uint256 actualEnd,
        uint256 shares
    ) external;
}

File 6 of 14 : IToken.sol
// SPDX-License-Identifier: MIT

pragma solidity ^0.6.0;

interface IToken {
    function mint(address to, uint256 amount) external;

    function burn(address from, uint256 amount) external;
}

File 7 of 14 : ContextUpgradeable.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;
import "../proxy/Initializable.sol";

/*
 * @dev Provides information about the current execution context, including the
 * sender of the transaction and its data. While these are generally available
 * via msg.sender and msg.data, they should not be accessed in such a direct
 * manner, since when dealing with GSN meta-transactions the account sending and
 * paying for execution may not be the actual sender (as far as an application
 * is concerned).
 *
 * This contract is only required for intermediate, library-like contracts.
 */
abstract contract ContextUpgradeable is Initializable {
    function __Context_init() internal initializer {
        __Context_init_unchained();
    }

    function __Context_init_unchained() internal initializer {
    }
    function _msgSender() internal view virtual returns (address payable) {
        return msg.sender;
    }

    function _msgData() internal view virtual returns (bytes memory) {
        this; // silence state mutability warning without generating bytecode - see https://github.com/ethereum/solidity/issues/2691
        return msg.data;
    }
    uint256[50] private __gap;
}

File 8 of 14 : AccessControlUpgradeable.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;

import "../utils/EnumerableSetUpgradeable.sol";
import "../utils/AddressUpgradeable.sol";
import "../GSN/ContextUpgradeable.sol";
import "../proxy/Initializable.sol";

/**
 * @dev Contract module that allows children to implement role-based access
 * control mechanisms.
 *
 * Roles are referred to by their `bytes32` identifier. These should be exposed
 * in the external API and be unique. The best way to achieve this is by
 * using `public constant` hash digests:
 *
 * ```
 * bytes32 public constant MY_ROLE = keccak256("MY_ROLE");
 * ```
 *
 * Roles can be used to represent a set of permissions. To restrict access to a
 * function call, use {hasRole}:
 *
 * ```
 * function foo() public {
 *     require(hasRole(MY_ROLE, msg.sender));
 *     ...
 * }
 * ```
 *
 * Roles can be granted and revoked dynamically via the {grantRole} and
 * {revokeRole} functions. Each role has an associated admin role, and only
 * accounts that have a role's admin role can call {grantRole} and {revokeRole}.
 *
 * By default, the admin role for all roles is `DEFAULT_ADMIN_ROLE`, which means
 * that only accounts with this role will be able to grant or revoke other
 * roles. More complex role relationships can be created by using
 * {_setRoleAdmin}.
 *
 * WARNING: The `DEFAULT_ADMIN_ROLE` is also its own admin: it has permission to
 * grant and revoke this role. Extra precautions should be taken to secure
 * accounts that have been granted it.
 */
abstract contract AccessControlUpgradeable is Initializable, ContextUpgradeable {
    function __AccessControl_init() internal initializer {
        __Context_init_unchained();
        __AccessControl_init_unchained();
    }

    function __AccessControl_init_unchained() internal initializer {
    }
    using EnumerableSetUpgradeable for EnumerableSetUpgradeable.AddressSet;
    using AddressUpgradeable for address;

    struct RoleData {
        EnumerableSetUpgradeable.AddressSet members;
        bytes32 adminRole;
    }

    mapping (bytes32 => RoleData) private _roles;

    bytes32 public constant DEFAULT_ADMIN_ROLE = 0x00;

    /**
     * @dev Emitted when `newAdminRole` is set as ``role``'s admin role, replacing `previousAdminRole`
     *
     * `DEFAULT_ADMIN_ROLE` is the starting admin for all roles, despite
     * {RoleAdminChanged} not being emitted signaling this.
     *
     * _Available since v3.1._
     */
    event RoleAdminChanged(bytes32 indexed role, bytes32 indexed previousAdminRole, bytes32 indexed newAdminRole);

    /**
     * @dev Emitted when `account` is granted `role`.
     *
     * `sender` is the account that originated the contract call, an admin role
     * bearer except when using {_setupRole}.
     */
    event RoleGranted(bytes32 indexed role, address indexed account, address indexed sender);

    /**
     * @dev Emitted when `account` is revoked `role`.
     *
     * `sender` is the account that originated the contract call:
     *   - if using `revokeRole`, it is the admin role bearer
     *   - if using `renounceRole`, it is the role bearer (i.e. `account`)
     */
    event RoleRevoked(bytes32 indexed role, address indexed account, address indexed sender);

    /**
     * @dev Returns `true` if `account` has been granted `role`.
     */
    function hasRole(bytes32 role, address account) public view returns (bool) {
        return _roles[role].members.contains(account);
    }

    /**
     * @dev Returns the number of accounts that have `role`. Can be used
     * together with {getRoleMember} to enumerate all bearers of a role.
     */
    function getRoleMemberCount(bytes32 role) public view returns (uint256) {
        return _roles[role].members.length();
    }

    /**
     * @dev Returns one of the accounts that have `role`. `index` must be a
     * value between 0 and {getRoleMemberCount}, non-inclusive.
     *
     * Role bearers are not sorted in any particular way, and their ordering may
     * change at any point.
     *
     * WARNING: When using {getRoleMember} and {getRoleMemberCount}, make sure
     * you perform all queries on the same block. See the following
     * https://forum.openzeppelin.com/t/iterating-over-elements-on-enumerableset-in-openzeppelin-contracts/2296[forum post]
     * for more information.
     */
    function getRoleMember(bytes32 role, uint256 index) public view returns (address) {
        return _roles[role].members.at(index);
    }

    /**
     * @dev Returns the admin role that controls `role`. See {grantRole} and
     * {revokeRole}.
     *
     * To change a role's admin, use {_setRoleAdmin}.
     */
    function getRoleAdmin(bytes32 role) public view returns (bytes32) {
        return _roles[role].adminRole;
    }

    /**
     * @dev Grants `role` to `account`.
     *
     * If `account` had not been already granted `role`, emits a {RoleGranted}
     * event.
     *
     * Requirements:
     *
     * - the caller must have ``role``'s admin role.
     */
    function grantRole(bytes32 role, address account) public virtual {
        require(hasRole(_roles[role].adminRole, _msgSender()), "AccessControl: sender must be an admin to grant");

        _grantRole(role, account);
    }

    /**
     * @dev Revokes `role` from `account`.
     *
     * If `account` had been granted `role`, emits a {RoleRevoked} event.
     *
     * Requirements:
     *
     * - the caller must have ``role``'s admin role.
     */
    function revokeRole(bytes32 role, address account) public virtual {
        require(hasRole(_roles[role].adminRole, _msgSender()), "AccessControl: sender must be an admin to revoke");

        _revokeRole(role, account);
    }

    /**
     * @dev Revokes `role` from the calling account.
     *
     * Roles are often managed via {grantRole} and {revokeRole}: this function's
     * purpose is to provide a mechanism for accounts to lose their privileges
     * if they are compromised (such as when a trusted device is misplaced).
     *
     * If the calling account had been granted `role`, emits a {RoleRevoked}
     * event.
     *
     * Requirements:
     *
     * - the caller must be `account`.
     */
    function renounceRole(bytes32 role, address account) public virtual {
        require(account == _msgSender(), "AccessControl: can only renounce roles for self");

        _revokeRole(role, account);
    }

    /**
     * @dev Grants `role` to `account`.
     *
     * If `account` had not been already granted `role`, emits a {RoleGranted}
     * event. Note that unlike {grantRole}, this function doesn't perform any
     * checks on the calling account.
     *
     * [WARNING]
     * ====
     * This function should only be called from the constructor when setting
     * up the initial roles for the system.
     *
     * Using this function in any other way is effectively circumventing the admin
     * system imposed by {AccessControl}.
     * ====
     */
    function _setupRole(bytes32 role, address account) internal virtual {
        _grantRole(role, account);
    }

    /**
     * @dev Sets `adminRole` as ``role``'s admin role.
     *
     * Emits a {RoleAdminChanged} event.
     */
    function _setRoleAdmin(bytes32 role, bytes32 adminRole) internal virtual {
        emit RoleAdminChanged(role, _roles[role].adminRole, adminRole);
        _roles[role].adminRole = adminRole;
    }

    function _grantRole(bytes32 role, address account) private {
        if (_roles[role].members.add(account)) {
            emit RoleGranted(role, account, _msgSender());
        }
    }

    function _revokeRole(bytes32 role, address account) private {
        if (_roles[role].members.remove(account)) {
            emit RoleRevoked(role, account, _msgSender());
        }
    }
    uint256[49] private __gap;
}

File 9 of 14 : MathUpgradeable.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;

/**
 * @dev Standard math utilities missing in the Solidity language.
 */
library MathUpgradeable {
    /**
     * @dev Returns the largest of two numbers.
     */
    function max(uint256 a, uint256 b) internal pure returns (uint256) {
        return a >= b ? a : b;
    }

    /**
     * @dev Returns the smallest of two numbers.
     */
    function min(uint256 a, uint256 b) internal pure returns (uint256) {
        return a < b ? a : b;
    }

    /**
     * @dev Returns the average of two numbers. The result is rounded towards
     * zero.
     */
    function average(uint256 a, uint256 b) internal pure returns (uint256) {
        // (a + b) / 2 can overflow, so we distribute
        return (a / 2) + (b / 2) + ((a % 2 + b % 2) / 2);
    }
}

File 10 of 14 : SafeMathUpgradeable.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;

/**
 * @dev Wrappers over Solidity's arithmetic operations with added overflow
 * checks.
 *
 * Arithmetic operations in Solidity wrap on overflow. This can easily result
 * in bugs, because programmers usually assume that an overflow raises an
 * error, which is the standard behavior in high level programming languages.
 * `SafeMath` restores this intuition by reverting the transaction when an
 * operation overflows.
 *
 * Using this library instead of the unchecked operations eliminates an entire
 * class of bugs, so it's recommended to use it always.
 */
library SafeMathUpgradeable {
    /**
     * @dev Returns the addition of two unsigned integers, reverting on
     * overflow.
     *
     * Counterpart to Solidity's `+` operator.
     *
     * Requirements:
     *
     * - Addition cannot overflow.
     */
    function add(uint256 a, uint256 b) internal pure returns (uint256) {
        uint256 c = a + b;
        require(c >= a, "SafeMath: addition overflow");

        return c;
    }

    /**
     * @dev Returns the subtraction of two unsigned integers, reverting on
     * overflow (when the result is negative).
     *
     * Counterpart to Solidity's `-` operator.
     *
     * Requirements:
     *
     * - Subtraction cannot overflow.
     */
    function sub(uint256 a, uint256 b) internal pure returns (uint256) {
        return sub(a, b, "SafeMath: subtraction overflow");
    }

    /**
     * @dev Returns the subtraction of two unsigned integers, reverting with custom message on
     * overflow (when the result is negative).
     *
     * Counterpart to Solidity's `-` operator.
     *
     * Requirements:
     *
     * - Subtraction cannot overflow.
     */
    function sub(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
        require(b <= a, errorMessage);
        uint256 c = a - b;

        return c;
    }

    /**
     * @dev Returns the multiplication of two unsigned integers, reverting on
     * overflow.
     *
     * Counterpart to Solidity's `*` operator.
     *
     * Requirements:
     *
     * - Multiplication cannot overflow.
     */
    function mul(uint256 a, uint256 b) internal pure returns (uint256) {
        // Gas optimization: this is cheaper than requiring 'a' not being zero, but the
        // benefit is lost if 'b' is also tested.
        // See: https://github.com/OpenZeppelin/openzeppelin-contracts/pull/522
        if (a == 0) {
            return 0;
        }

        uint256 c = a * b;
        require(c / a == b, "SafeMath: multiplication overflow");

        return c;
    }

    /**
     * @dev Returns the integer division of two unsigned integers. Reverts on
     * division by zero. The result is rounded towards zero.
     *
     * Counterpart to Solidity's `/` operator. Note: this function uses a
     * `revert` opcode (which leaves remaining gas untouched) while Solidity
     * uses an invalid opcode to revert (consuming all remaining gas).
     *
     * Requirements:
     *
     * - The divisor cannot be zero.
     */
    function div(uint256 a, uint256 b) internal pure returns (uint256) {
        return div(a, b, "SafeMath: division by zero");
    }

    /**
     * @dev Returns the integer division of two unsigned integers. Reverts with custom message on
     * division by zero. The result is rounded towards zero.
     *
     * Counterpart to Solidity's `/` operator. Note: this function uses a
     * `revert` opcode (which leaves remaining gas untouched) while Solidity
     * uses an invalid opcode to revert (consuming all remaining gas).
     *
     * Requirements:
     *
     * - The divisor cannot be zero.
     */
    function div(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
        require(b > 0, errorMessage);
        uint256 c = a / b;
        // assert(a == b * c + a % b); // There is no case in which this doesn't hold

        return c;
    }

    /**
     * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),
     * Reverts when dividing by zero.
     *
     * Counterpart to Solidity's `%` operator. This function uses a `revert`
     * opcode (which leaves remaining gas untouched) while Solidity uses an
     * invalid opcode to revert (consuming all remaining gas).
     *
     * Requirements:
     *
     * - The divisor cannot be zero.
     */
    function mod(uint256 a, uint256 b) internal pure returns (uint256) {
        return mod(a, b, "SafeMath: modulo by zero");
    }

    /**
     * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),
     * Reverts with custom message when dividing by zero.
     *
     * Counterpart to Solidity's `%` operator. This function uses a `revert`
     * opcode (which leaves remaining gas untouched) while Solidity uses an
     * invalid opcode to revert (consuming all remaining gas).
     *
     * Requirements:
     *
     * - The divisor cannot be zero.
     */
    function mod(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
        require(b != 0, errorMessage);
        return a % b;
    }
}

File 11 of 14 : Initializable.sol
// SPDX-License-Identifier: MIT

// solhint-disable-next-line compiler-version
pragma solidity >=0.4.24 <0.8.0;


/**
 * @dev This is a base contract to aid in writing upgradeable contracts, or any kind of contract that will be deployed
 * behind a proxy. Since a proxied contract can't have a constructor, it's common to move constructor logic to an
 * external initializer function, usually called `initialize`. It then becomes necessary to protect this initializer
 * function so it can only be called once. The {initializer} modifier provided by this contract will have this effect.
 * 
 * TIP: To avoid leaving the proxy in an uninitialized state, the initializer function should be called as early as
 * possible by providing the encoded function call as the `_data` argument to {UpgradeableProxy-constructor}.
 * 
 * CAUTION: When used with inheritance, manual care must be taken to not invoke a parent initializer twice, or to ensure
 * that all initializers are idempotent. This is not verified automatically as constructors are by Solidity.
 */
abstract contract Initializable {

    /**
     * @dev Indicates that the contract has been initialized.
     */
    bool private _initialized;

    /**
     * @dev Indicates that the contract is in the process of being initialized.
     */
    bool private _initializing;

    /**
     * @dev Modifier to protect an initializer function from being invoked twice.
     */
    modifier initializer() {
        require(_initializing || _isConstructor() || !_initialized, "Initializable: contract is already initialized");

        bool isTopLevelCall = !_initializing;
        if (isTopLevelCall) {
            _initializing = true;
            _initialized = true;
        }

        _;

        if (isTopLevelCall) {
            _initializing = false;
        }
    }

    /// @dev Returns true if and only if the function is running in the constructor
    function _isConstructor() private view returns (bool) {
        // extcodesize checks the size of the code stored in an address, and
        // address returns the current address. Since the code is still not
        // deployed when running a constructor, any checks on its code size will
        // yield zero, making it an effective way to detect if a contract is
        // under construction or not.
        address self = address(this);
        uint256 cs;
        // solhint-disable-next-line no-inline-assembly
        assembly { cs := extcodesize(self) }
        return cs == 0;
    }
}

File 12 of 14 : IERC20Upgradeable.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;

/**
 * @dev Interface of the ERC20 standard as defined in the EIP.
 */
interface IERC20Upgradeable {
    /**
     * @dev Returns the amount of tokens in existence.
     */
    function totalSupply() external view returns (uint256);

    /**
     * @dev Returns the amount of tokens owned by `account`.
     */
    function balanceOf(address account) external view returns (uint256);

    /**
     * @dev Moves `amount` tokens from the caller's account to `recipient`.
     *
     * Returns a boolean value indicating whether the operation succeeded.
     *
     * Emits a {Transfer} event.
     */
    function transfer(address recipient, uint256 amount) external returns (bool);

    /**
     * @dev Returns the remaining number of tokens that `spender` will be
     * allowed to spend on behalf of `owner` through {transferFrom}. This is
     * zero by default.
     *
     * This value changes when {approve} or {transferFrom} are called.
     */
    function allowance(address owner, address spender) external view returns (uint256);

    /**
     * @dev Sets `amount` as the allowance of `spender` over the caller's tokens.
     *
     * Returns a boolean value indicating whether the operation succeeded.
     *
     * IMPORTANT: Beware that changing an allowance with this method brings the risk
     * that someone may use both the old and the new allowance by unfortunate
     * transaction ordering. One possible solution to mitigate this race
     * condition is to first reduce the spender's allowance to 0 and set the
     * desired value afterwards:
     * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729
     *
     * Emits an {Approval} event.
     */
    function approve(address spender, uint256 amount) external returns (bool);

    /**
     * @dev Moves `amount` tokens from `sender` to `recipient` using the
     * allowance mechanism. `amount` is then deducted from the caller's
     * allowance.
     *
     * Returns a boolean value indicating whether the operation succeeded.
     *
     * Emits a {Transfer} event.
     */
    function transferFrom(address sender, address recipient, uint256 amount) external returns (bool);

    /**
     * @dev Emitted when `value` tokens are moved from one account (`from`) to
     * another (`to`).
     *
     * Note that `value` may be zero.
     */
    event Transfer(address indexed from, address indexed to, uint256 value);

    /**
     * @dev Emitted when the allowance of a `spender` for an `owner` is set by
     * a call to {approve}. `value` is the new allowance.
     */
    event Approval(address indexed owner, address indexed spender, uint256 value);
}

File 13 of 14 : AddressUpgradeable.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.2 <0.8.0;

/**
 * @dev Collection of functions related to the address type
 */
library AddressUpgradeable {
    /**
     * @dev Returns true if `account` is a contract.
     *
     * [IMPORTANT]
     * ====
     * It is unsafe to assume that an address for which this function returns
     * false is an externally-owned account (EOA) and not a contract.
     *
     * Among others, `isContract` will return false for the following
     * types of addresses:
     *
     *  - an externally-owned account
     *  - a contract in construction
     *  - an address where a contract will be created
     *  - an address where a contract lived, but was destroyed
     * ====
     */
    function isContract(address account) internal view returns (bool) {
        // This method relies on extcodesize, which returns 0 for contracts in
        // construction, since the code is only stored at the end of the
        // constructor execution.

        uint256 size;
        // solhint-disable-next-line no-inline-assembly
        assembly { size := extcodesize(account) }
        return size > 0;
    }

    /**
     * @dev Replacement for Solidity's `transfer`: sends `amount` wei to
     * `recipient`, forwarding all available gas and reverting on errors.
     *
     * https://eips.ethereum.org/EIPS/eip-1884[EIP1884] increases the gas cost
     * of certain opcodes, possibly making contracts go over the 2300 gas limit
     * imposed by `transfer`, making them unable to receive funds via
     * `transfer`. {sendValue} removes this limitation.
     *
     * https://diligence.consensys.net/posts/2019/09/stop-using-soliditys-transfer-now/[Learn more].
     *
     * IMPORTANT: because control is transferred to `recipient`, care must be
     * taken to not create reentrancy vulnerabilities. Consider using
     * {ReentrancyGuard} or the
     * https://solidity.readthedocs.io/en/v0.5.11/security-considerations.html#use-the-checks-effects-interactions-pattern[checks-effects-interactions pattern].
     */
    function sendValue(address payable recipient, uint256 amount) internal {
        require(address(this).balance >= amount, "Address: insufficient balance");

        // solhint-disable-next-line avoid-low-level-calls, avoid-call-value
        (bool success, ) = recipient.call{ value: amount }("");
        require(success, "Address: unable to send value, recipient may have reverted");
    }

    /**
     * @dev Performs a Solidity function call using a low level `call`. A
     * plain`call` is an unsafe replacement for a function call: use this
     * function instead.
     *
     * If `target` reverts with a revert reason, it is bubbled up by this
     * function (like regular Solidity function calls).
     *
     * Returns the raw returned data. To convert to the expected return value,
     * use https://solidity.readthedocs.io/en/latest/units-and-global-variables.html?highlight=abi.decode#abi-encoding-and-decoding-functions[`abi.decode`].
     *
     * Requirements:
     *
     * - `target` must be a contract.
     * - calling `target` with `data` must not revert.
     *
     * _Available since v3.1._
     */
    function functionCall(address target, bytes memory data) internal returns (bytes memory) {
      return functionCall(target, data, "Address: low-level call failed");
    }

    /**
     * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`], but with
     * `errorMessage` as a fallback revert reason when `target` reverts.
     *
     * _Available since v3.1._
     */
    function functionCall(address target, bytes memory data, string memory errorMessage) internal returns (bytes memory) {
        return functionCallWithValue(target, data, 0, errorMessage);
    }

    /**
     * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
     * but also transferring `value` wei to `target`.
     *
     * Requirements:
     *
     * - the calling contract must have an ETH balance of at least `value`.
     * - the called Solidity function must be `payable`.
     *
     * _Available since v3.1._
     */
    function functionCallWithValue(address target, bytes memory data, uint256 value) internal returns (bytes memory) {
        return functionCallWithValue(target, data, value, "Address: low-level call with value failed");
    }

    /**
     * @dev Same as {xref-Address-functionCallWithValue-address-bytes-uint256-}[`functionCallWithValue`], but
     * with `errorMessage` as a fallback revert reason when `target` reverts.
     *
     * _Available since v3.1._
     */
    function functionCallWithValue(address target, bytes memory data, uint256 value, string memory errorMessage) internal returns (bytes memory) {
        require(address(this).balance >= value, "Address: insufficient balance for call");
        require(isContract(target), "Address: call to non-contract");

        // solhint-disable-next-line avoid-low-level-calls
        (bool success, bytes memory returndata) = target.call{ value: value }(data);
        return _verifyCallResult(success, returndata, errorMessage);
    }

    /**
     * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
     * but performing a static call.
     *
     * _Available since v3.3._
     */
    function functionStaticCall(address target, bytes memory data) internal view returns (bytes memory) {
        return functionStaticCall(target, data, "Address: low-level static call failed");
    }

    /**
     * @dev Same as {xref-Address-functionCall-address-bytes-string-}[`functionCall`],
     * but performing a static call.
     *
     * _Available since v3.3._
     */
    function functionStaticCall(address target, bytes memory data, string memory errorMessage) internal view returns (bytes memory) {
        require(isContract(target), "Address: static call to non-contract");

        // solhint-disable-next-line avoid-low-level-calls
        (bool success, bytes memory returndata) = target.staticcall(data);
        return _verifyCallResult(success, returndata, errorMessage);
    }

    function _verifyCallResult(bool success, bytes memory returndata, string memory errorMessage) private pure returns(bytes memory) {
        if (success) {
            return returndata;
        } else {
            // Look for revert reason and bubble it up if present
            if (returndata.length > 0) {
                // The easiest way to bubble the revert reason is using memory via assembly

                // solhint-disable-next-line no-inline-assembly
                assembly {
                    let returndata_size := mload(returndata)
                    revert(add(32, returndata), returndata_size)
                }
            } else {
                revert(errorMessage);
            }
        }
    }
}

File 14 of 14 : EnumerableSetUpgradeable.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;

/**
 * @dev Library for managing
 * https://en.wikipedia.org/wiki/Set_(abstract_data_type)[sets] of primitive
 * types.
 *
 * Sets have the following properties:
 *
 * - Elements are added, removed, and checked for existence in constant time
 * (O(1)).
 * - Elements are enumerated in O(n). No guarantees are made on the ordering.
 *
 * ```
 * contract Example {
 *     // Add the library methods
 *     using EnumerableSet for EnumerableSet.AddressSet;
 *
 *     // Declare a set state variable
 *     EnumerableSet.AddressSet private mySet;
 * }
 * ```
 *
 * As of v3.3.0, sets of type `bytes32` (`Bytes32Set`), `address` (`AddressSet`)
 * and `uint256` (`UintSet`) are supported.
 */
library EnumerableSetUpgradeable {
    // To implement this library for multiple types with as little code
    // repetition as possible, we write it in terms of a generic Set type with
    // bytes32 values.
    // The Set implementation uses private functions, and user-facing
    // implementations (such as AddressSet) are just wrappers around the
    // underlying Set.
    // This means that we can only create new EnumerableSets for types that fit
    // in bytes32.

    struct Set {
        // Storage of set values
        bytes32[] _values;

        // Position of the value in the `values` array, plus 1 because index 0
        // means a value is not in the set.
        mapping (bytes32 => uint256) _indexes;
    }

    /**
     * @dev Add a value to a set. O(1).
     *
     * Returns true if the value was added to the set, that is if it was not
     * already present.
     */
    function _add(Set storage set, bytes32 value) private returns (bool) {
        if (!_contains(set, value)) {
            set._values.push(value);
            // The value is stored at length-1, but we add 1 to all indexes
            // and use 0 as a sentinel value
            set._indexes[value] = set._values.length;
            return true;
        } else {
            return false;
        }
    }

    /**
     * @dev Removes a value from a set. O(1).
     *
     * Returns true if the value was removed from the set, that is if it was
     * present.
     */
    function _remove(Set storage set, bytes32 value) private returns (bool) {
        // We read and store the value's index to prevent multiple reads from the same storage slot
        uint256 valueIndex = set._indexes[value];

        if (valueIndex != 0) { // Equivalent to contains(set, value)
            // To delete an element from the _values array in O(1), we swap the element to delete with the last one in
            // the array, and then remove the last element (sometimes called as 'swap and pop').
            // This modifies the order of the array, as noted in {at}.

            uint256 toDeleteIndex = valueIndex - 1;
            uint256 lastIndex = set._values.length - 1;

            // When the value to delete is the last one, the swap operation is unnecessary. However, since this occurs
            // so rarely, we still do the swap anyway to avoid the gas cost of adding an 'if' statement.

            bytes32 lastvalue = set._values[lastIndex];

            // Move the last value to the index where the value to delete is
            set._values[toDeleteIndex] = lastvalue;
            // Update the index for the moved value
            set._indexes[lastvalue] = toDeleteIndex + 1; // All indexes are 1-based

            // Delete the slot where the moved value was stored
            set._values.pop();

            // Delete the index for the deleted slot
            delete set._indexes[value];

            return true;
        } else {
            return false;
        }
    }

    /**
     * @dev Returns true if the value is in the set. O(1).
     */
    function _contains(Set storage set, bytes32 value) private view returns (bool) {
        return set._indexes[value] != 0;
    }

    /**
     * @dev Returns the number of values on the set. O(1).
     */
    function _length(Set storage set) private view returns (uint256) {
        return set._values.length;
    }

   /**
    * @dev Returns the value stored at position `index` in the set. O(1).
    *
    * Note that there are no guarantees on the ordering of values inside the
    * array, and it may change when more values are added or removed.
    *
    * Requirements:
    *
    * - `index` must be strictly less than {length}.
    */
    function _at(Set storage set, uint256 index) private view returns (bytes32) {
        require(set._values.length > index, "EnumerableSet: index out of bounds");
        return set._values[index];
    }

    // Bytes32Set

    struct Bytes32Set {
        Set _inner;
    }

    /**
     * @dev Add a value to a set. O(1).
     *
     * Returns true if the value was added to the set, that is if it was not
     * already present.
     */
    function add(Bytes32Set storage set, bytes32 value) internal returns (bool) {
        return _add(set._inner, value);
    }

    /**
     * @dev Removes a value from a set. O(1).
     *
     * Returns true if the value was removed from the set, that is if it was
     * present.
     */
    function remove(Bytes32Set storage set, bytes32 value) internal returns (bool) {
        return _remove(set._inner, value);
    }

    /**
     * @dev Returns true if the value is in the set. O(1).
     */
    function contains(Bytes32Set storage set, bytes32 value) internal view returns (bool) {
        return _contains(set._inner, value);
    }

    /**
     * @dev Returns the number of values in the set. O(1).
     */
    function length(Bytes32Set storage set) internal view returns (uint256) {
        return _length(set._inner);
    }

   /**
    * @dev Returns the value stored at position `index` in the set. O(1).
    *
    * Note that there are no guarantees on the ordering of values inside the
    * array, and it may change when more values are added or removed.
    *
    * Requirements:
    *
    * - `index` must be strictly less than {length}.
    */
    function at(Bytes32Set storage set, uint256 index) internal view returns (bytes32) {
        return _at(set._inner, index);
    }

    // AddressSet

    struct AddressSet {
        Set _inner;
    }

    /**
     * @dev Add a value to a set. O(1).
     *
     * Returns true if the value was added to the set, that is if it was not
     * already present.
     */
    function add(AddressSet storage set, address value) internal returns (bool) {
        return _add(set._inner, bytes32(uint256(value)));
    }

    /**
     * @dev Removes a value from a set. O(1).
     *
     * Returns true if the value was removed from the set, that is if it was
     * present.
     */
    function remove(AddressSet storage set, address value) internal returns (bool) {
        return _remove(set._inner, bytes32(uint256(value)));
    }

    /**
     * @dev Returns true if the value is in the set. O(1).
     */
    function contains(AddressSet storage set, address value) internal view returns (bool) {
        return _contains(set._inner, bytes32(uint256(value)));
    }

    /**
     * @dev Returns the number of values in the set. O(1).
     */
    function length(AddressSet storage set) internal view returns (uint256) {
        return _length(set._inner);
    }

   /**
    * @dev Returns the value stored at position `index` in the set. O(1).
    *
    * Note that there are no guarantees on the ordering of values inside the
    * array, and it may change when more values are added or removed.
    *
    * Requirements:
    *
    * - `index` must be strictly less than {length}.
    */
    function at(AddressSet storage set, uint256 index) internal view returns (address) {
        return address(uint256(_at(set._inner, index)));
    }


    // UintSet

    struct UintSet {
        Set _inner;
    }

    /**
     * @dev Add a value to a set. O(1).
     *
     * Returns true if the value was added to the set, that is if it was not
     * already present.
     */
    function add(UintSet storage set, uint256 value) internal returns (bool) {
        return _add(set._inner, bytes32(value));
    }

    /**
     * @dev Removes a value from a set. O(1).
     *
     * Returns true if the value was removed from the set, that is if it was
     * present.
     */
    function remove(UintSet storage set, uint256 value) internal returns (bool) {
        return _remove(set._inner, bytes32(value));
    }

    /**
     * @dev Returns true if the value is in the set. O(1).
     */
    function contains(UintSet storage set, uint256 value) internal view returns (bool) {
        return _contains(set._inner, bytes32(value));
    }

    /**
     * @dev Returns the number of values on the set. O(1).
     */
    function length(UintSet storage set) internal view returns (uint256) {
        return _length(set._inner);
    }

   /**
    * @dev Returns the value stored at position `index` in the set. O(1).
    *
    * Note that there are no guarantees on the ordering of values inside the
    * array, and it may change when more values are added or removed.
    *
    * Requirements:
    *
    * - `index` must be strictly less than {length}.
    */
    function at(UintSet storage set, uint256 index) internal view returns (uint256) {
        return uint256(_at(set._inner, index));
    }
}

Settings
{
  "remappings": [],
  "optimizer": {
    "enabled": true,
    "runs": 0
  },
  "evmVersion": "istanbul",
  "libraries": {},
  "outputSelection": {
    "*": {
      "*": [
        "evm.bytecode",
        "evm.deployedBytecode",
        "abi"
      ]
    }
  }
}

Contract Security Audit

Contract ABI

[{"anonymous":false,"inputs":[{"indexed":true,"internalType":"uint256","name":"value","type":"uint256"},{"indexed":true,"internalType":"uint256","name":"sharesTotalSupply","type":"uint256"},{"indexed":true,"internalType":"uint256","name":"time","type":"uint256"}],"name":"MakePayout","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"bytes32","name":"role","type":"bytes32"},{"indexed":true,"internalType":"bytes32","name":"previousAdminRole","type":"bytes32"},{"indexed":true,"internalType":"bytes32","name":"newAdminRole","type":"bytes32"}],"name":"RoleAdminChanged","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"bytes32","name":"role","type":"bytes32"},{"indexed":true,"internalType":"address","name":"account","type":"address"},{"indexed":true,"internalType":"address","name":"sender","type":"address"}],"name":"RoleGranted","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"bytes32","name":"role","type":"bytes32"},{"indexed":true,"internalType":"address","name":"account","type":"address"},{"indexed":true,"internalType":"address","name":"sender","type":"address"}],"name":"RoleRevoked","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"account","type":"address"},{"indexed":true,"internalType":"uint256","name":"sessionId","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"amount","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"start","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"end","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"shares","type":"uint256"}],"name":"Stake","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"account","type":"address"},{"indexed":true,"internalType":"uint256","name":"sessionId","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"amount","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"start","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"end","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"shares","type":"uint256"}],"name":"Unstake","type":"event"},{"inputs":[],"name":"DEFAULT_ADMIN_ROLE","outputs":[{"internalType":"bytes32","name":"","type":"bytes32"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"EXTERNAL_STAKER_ROLE","outputs":[{"internalType":"bytes32","name":"","type":"bytes32"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"MANAGER_ROLE","outputs":[{"internalType":"bytes32","name":"","type":"bytes32"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"MIGRATOR_ROLE","outputs":[{"internalType":"bytes32","name":"","type":"bytes32"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"addresses","outputs":[{"internalType":"address","name":"mainToken","type":"address"},{"internalType":"address","name":"auction","type":"address"},{"internalType":"address","name":"subBalances","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"firstPayout","type":"uint256"},{"internalType":"uint256","name":"lastPayout","type":"uint256"},{"internalType":"uint256","name":"shares","type":"uint256"}],"name":"calculateStakingInterest","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"amount","type":"uint256"},{"internalType":"uint256","name":"stakingDays","type":"uint256"},{"internalType":"address","name":"staker","type":"address"}],"name":"externalStake","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"amount","type":"uint256"},{"internalType":"uint256","name":"start","type":"uint256"},{"internalType":"uint256","name":"end","type":"uint256"},{"internalType":"uint256","name":"stakingInterest","type":"uint256"}],"name":"getAmountOutAndPenalty","outputs":[{"internalType":"uint256","name":"","type":"uint256"},{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"bytes32","name":"role","type":"bytes32"}],"name":"getRoleAdmin","outputs":[{"internalType":"bytes32","name":"","type":"bytes32"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"bytes32","name":"role","type":"bytes32"},{"internalType":"uint256","name":"index","type":"uint256"}],"name":"getRoleMember","outputs":[{"internalType":"address","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"bytes32","name":"role","type":"bytes32"}],"name":"getRoleMemberCount","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"globalPayin","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"globalPayout","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"bytes32","name":"role","type":"bytes32"},{"internalType":"address","name":"account","type":"address"}],"name":"grantRole","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"bytes32","name":"role","type":"bytes32"},{"internalType":"address","name":"account","type":"address"}],"name":"hasRole","outputs":[{"internalType":"bool","name":"","type":"bool"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"_mainTokenAddress","type":"address"},{"internalType":"address","name":"_auctionAddress","type":"address"},{"internalType":"address","name":"_subBalancesAddress","type":"address"},{"internalType":"address","name":"_foreignSwapAddress","type":"address"},{"internalType":"address","name":"_stakingV1Address","type":"address"},{"internalType":"uint256","name":"_stepTimestamp","type":"uint256"}],"name":"init","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[],"name":"init_","outputs":[{"internalType":"bool","name":"","type":"bool"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"_manager","type":"address"},{"internalType":"address","name":"_migrator","type":"address"}],"name":"initialize","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[],"name":"lastSessionId","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"lastSessionIdV1","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"makePayout","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[],"name":"nextPayoutCall","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"","type":"uint256"}],"name":"payouts","outputs":[{"internalType":"uint256","name":"payout","type":"uint256"},{"internalType":"uint256","name":"sharesTotalSupply","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"readPayout","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"bytes32","name":"role","type":"bytes32"},{"internalType":"address","name":"account","type":"address"}],"name":"renounceRole","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"bytes32","name":"role","type":"bytes32"},{"internalType":"address","name":"account","type":"address"}],"name":"revokeRole","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"","type":"address"},{"internalType":"uint256","name":"","type":"uint256"}],"name":"sessionDataOf","outputs":[{"internalType":"uint256","name":"amount","type":"uint256"},{"internalType":"uint256","name":"start","type":"uint256"},{"internalType":"uint256","name":"end","type":"uint256"},{"internalType":"uint256","name":"shares","type":"uint256"},{"internalType":"uint256","name":"firstPayout","type":"uint256"},{"internalType":"uint256","name":"lastPayout","type":"uint256"},{"internalType":"bool","name":"withdrawn","type":"bool"},{"internalType":"uint256","name":"payout","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"","type":"address"},{"internalType":"uint256","name":"","type":"uint256"}],"name":"sessionsOf","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"account","type":"address"}],"name":"sessionsOf_","outputs":[{"internalType":"uint256[]","name":"","type":"uint256[]"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"bytes32","name":"role","type":"bytes32"},{"internalType":"address","name":"account","type":"address"}],"name":"setupRole","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[],"name":"shareRate","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"sharesTotalSupply","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"amount","type":"uint256"},{"internalType":"uint256","name":"stakingDays","type":"uint256"}],"name":"stake","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[],"name":"stakingV1","outputs":[{"internalType":"contract IStakingV1","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"startContract","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"stepTimestamp","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"sessionId","type":"uint256"}],"name":"unstake","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"sessionId","type":"uint256"}],"name":"unstakeV1","outputs":[],"stateMutability":"nonpayable","type":"function"}]

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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.