Overview
ETH Balance
0 ETH
Eth Value
$0.00Latest 25 from a total of 591 transactions
| Transaction Hash |
Method
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Block
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|---|---|---|---|---|---|---|---|---|---|
| Withdraw FNFT | 14465197 | 1353 days ago | IN | 0 ETH | 0.01501898 | ||||
| Withdraw FNFT | 14463416 | 1353 days ago | IN | 0 ETH | 0.02242728 | ||||
| Withdraw FNFT | 14462455 | 1353 days ago | IN | 0 ETH | 0.0058522 | ||||
| Withdraw FNFT | 14462363 | 1353 days ago | IN | 0 ETH | 0.00436682 | ||||
| Withdraw FNFT | 14462179 | 1353 days ago | IN | 0 ETH | 0.00360266 | ||||
| Withdraw FNFT | 14462170 | 1353 days ago | IN | 0 ETH | 0.00305511 | ||||
| Withdraw FNFT | 14462141 | 1353 days ago | IN | 0 ETH | 0.00299545 | ||||
| Withdraw FNFT | 14462132 | 1353 days ago | IN | 0 ETH | 0.00349786 | ||||
| Withdraw FNFT | 14462127 | 1353 days ago | IN | 0 ETH | 0.00353528 | ||||
| Withdraw FNFT | 14462120 | 1353 days ago | IN | 0 ETH | 0.0037245 | ||||
| Withdraw FNFT | 14462110 | 1353 days ago | IN | 0 ETH | 0.00300127 | ||||
| Withdraw FNFT | 14462059 | 1353 days ago | IN | 0 ETH | 0.00779273 | ||||
| Withdraw FNFT | 14461563 | 1353 days ago | IN | 0 ETH | 0.00940177 | ||||
| Withdraw FNFT | 14461420 | 1353 days ago | IN | 0 ETH | 0.00323577 | ||||
| Withdraw FNFT | 14461116 | 1353 days ago | IN | 0 ETH | 0.00490672 | ||||
| Withdraw FNFT | 14460964 | 1353 days ago | IN | 0 ETH | 0.00893304 | ||||
| Withdraw FNFT | 14460810 | 1353 days ago | IN | 0 ETH | 0.01015762 | ||||
| Withdraw FNFT | 14460099 | 1353 days ago | IN | 0 ETH | 0.00887806 | ||||
| Withdraw FNFT | 14460028 | 1353 days ago | IN | 0 ETH | 0.00702383 | ||||
| Withdraw FNFT | 14458422 | 1354 days ago | IN | 0 ETH | 0.0145113 | ||||
| Withdraw FNFT | 14457446 | 1354 days ago | IN | 0 ETH | 0.0116449 | ||||
| Withdraw FNFT | 14457306 | 1354 days ago | IN | 0 ETH | 0.01192772 | ||||
| Withdraw FNFT | 14457162 | 1354 days ago | IN | 0 ETH | 0.01098881 | ||||
| Mint Time Lock | 14455720 | 1354 days ago | IN | 0 ETH | 0.00971118 | ||||
| Withdraw FNFT | 14455272 | 1354 days ago | IN | 0 ETH | 0.00548934 |
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Contract Name:
Revest
Compiler Version
v0.8.4+commit.c7e474f2
Optimization Enabled:
Yes with 10000 runs
Other Settings:
default evmVersion
Contract Source Code (Solidity Standard Json-Input format)
// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity ^0.8.0;
import "@openzeppelin/contracts/token/ERC20/utils/SafeERC20.sol";
import "@openzeppelin/contracts/access/AccessControlEnumerable.sol";
import '@openzeppelin/contracts/utils/introspection/ERC165Checker.sol';
import "./interfaces/IRevest.sol";
import "./interfaces/IAddressRegistry.sol";
import "./interfaces/ILockManager.sol";
import "./interfaces/IInterestHandler.sol";
import "./interfaces/ITokenVault.sol";
import "./interfaces/IRewardsHandler.sol";
import "./interfaces/IOracleDispatch.sol";
import "./interfaces/IOutputReceiver.sol";
import "./interfaces/IAddressLock.sol";
import "./utils/RevestAccessControl.sol";
import "./utils/RevestReentrancyGuard.sol";
import "./lib/IUnicryptV2Locker.sol";
import "./lib/IWETH.sol";
import "./FNFTHandler.sol";
/**
* This is the entrypoint for the frontend, as well as third-party Revest integrations.
* Solidity style guide ordering: receive, fallback, external, public, internal, private - within a grouping, view and pure go last - https://docs.soliditylang.org/en/latest/style-guide.html
*/
contract Revest is IRevest, AccessControlEnumerable, RevestAccessControl, RevestReentrancyGuard {
using SafeERC20 for IERC20;
using ERC165Checker for address;
bytes32 public constant PAUSER_ROLE = keccak256("PAUSER_ROLE");
bytes4 public constant ADDRESS_LOCK_INTERFACE_ID = type(IAddressLock).interfaceId;
address immutable WETH;
uint public erc20Fee = 0; // out of 1000
uint private constant erc20multiplierPrecision = 1000;
uint public flatWeiFee = 0;
uint private constant MAX_INT = 2**256 - 1;
mapping(address => bool) private approved;
/**
* @dev Primary constructor to create the Revest controller contract
* Grants ADMIN and MINTER_ROLE to whoever creates the contract
*
*/
constructor(address provider, address weth) RevestAccessControl(provider) {
_setupRole(DEFAULT_ADMIN_ROLE, _msgSender());
_setupRole(PAUSER_ROLE, _msgSender());
WETH = weth;
}
// PUBLIC FUNCTIONS
/**
* @dev creates a single time-locked NFT with <quantity> number of copies with <amount> of <asset> stored for each copy
* asset - the address of the underlying ERC20 token for this bond
* amount - the amount to store per NFT if multiple NFTs of this variety are being created
* unlockTime - the timestamp at which this will unlock
* quantity – the number of FNFTs to create with this operation */
function mintTimeLock(
uint endTime,
address[] memory recipients,
uint[] memory quantities,
IRevest.FNFTConfig memory fnftConfig
) external payable override returns (uint) {
// Get the next id
uint fnftId = getFNFTHandler().getNextId();
// Get or create lock based on time, assign lock to ID
{
IRevest.LockParam memory timeLock;
timeLock.lockType = IRevest.LockType.TimeLock;
timeLock.timeLockExpiry = endTime;
getLockManager().createLock(fnftId, timeLock);
}
doMint(recipients, quantities, fnftId, fnftConfig, msg.value);
emit FNFTTimeLockMinted(fnftConfig.asset, _msgSender(), fnftId, endTime, quantities, fnftConfig);
return fnftId;
}
function mintValueLock(
address primaryAsset,
address compareTo,
uint unlockValue,
bool unlockRisingEdge,
address oracleDispatch,
address[] memory recipients,
uint[] memory quantities,
IRevest.FNFTConfig memory fnftConfig
) external payable override returns (uint) {
// copy the fnftId
uint fnftId = getFNFTHandler().getNextId();
// Initialize the lock structure
{
IRevest.LockParam memory valueLock;
valueLock.lockType = IRevest.LockType.ValueLock;
valueLock.valueLock.unlockRisingEdge = unlockRisingEdge;
valueLock.valueLock.unlockValue = unlockValue;
valueLock.valueLock.asset = primaryAsset;
valueLock.valueLock.compareTo = compareTo;
valueLock.valueLock.oracle = oracleDispatch;
getLockManager().createLock(fnftId, valueLock);
}
doMint(recipients, quantities, fnftId, fnftConfig, msg.value);
emit FNFTValueLockMinted(primaryAsset, _msgSender(), fnftId, compareTo, oracleDispatch, quantities, fnftConfig);
return fnftId;
}
function mintAddressLock(
address trigger,
bytes memory arguments,
address[] memory recipients,
uint[] memory quantities,
IRevest.FNFTConfig memory fnftConfig
) external payable override returns (uint) {
uint fnftId = getFNFTHandler().getNextId();
{
IRevest.LockParam memory addressLock;
addressLock.addressLock = trigger;
addressLock.lockType = IRevest.LockType.AddressLock;
// Get or create lock based on address which can trigger unlock, assign lock to ID
uint lockId = getLockManager().createLock(fnftId, addressLock);
if(trigger.supportsInterface(ADDRESS_LOCK_INTERFACE_ID)) {
IAddressLock(trigger).createLock(fnftId, lockId, arguments);
}
}
// This is a public call to a third-party contract. Must be done after everything else.
// Safe for reentry
doMint(recipients, quantities, fnftId, fnftConfig, msg.value);
emit FNFTAddressLockMinted(fnftConfig.asset, _msgSender(), fnftId, trigger, quantities, fnftConfig);
return fnftId;
}
function withdrawFNFT(uint fnftId, uint quantity) external override revestNonReentrant(fnftId) {
address fnftHandler = addressesProvider.getRevestFNFT();
// Check if this many FNFTs exist in the first place for the given ID
require(quantity <= IFNFTHandler(fnftHandler).getSupply(fnftId), "E022");
// Check if the user making this call has this many FNFTs to cash in
require(quantity <= IFNFTHandler(fnftHandler).getBalance(_msgSender(), fnftId), "E006");
// Check if the user making this call has any FNFT's
require(IFNFTHandler(fnftHandler).getBalance(_msgSender(), fnftId) > 0, "E032");
IRevest.LockType lockType = getLockManager().lockTypes(fnftId);
require(lockType != IRevest.LockType.DoesNotExist, "E007");
require(getLockManager().unlockFNFT(fnftId, _msgSender()),
lockType == IRevest.LockType.TimeLock ? "E010" :
lockType == IRevest.LockType.ValueLock ? "E018" : "E019");
// Burn the FNFTs being exchanged
burn(_msgSender(), fnftId, quantity);
getTokenVault().withdrawToken(fnftId, quantity, _msgSender());
emit FNFTWithdrawn(_msgSender(), fnftId, quantity);
}
function unlockFNFT(uint fnftId) external override {
// Works for value locks or time locks
IRevest.LockType lock = getLockManager().lockTypes(fnftId);
require(lock == IRevest.LockType.AddressLock || lock == IRevest.LockType.ValueLock, "E008");
require(getLockManager().unlockFNFT(fnftId, _msgSender()), "E056");
emit FNFTUnlocked(_msgSender(), fnftId);
}
function splitFNFT(
uint fnftId,
uint[] memory proportions,
uint quantity
) external override returns (uint[] memory) {
// Check if the user making this call has ANY FNFT's
require(getFNFTHandler().getBalance(_msgSender(), fnftId) > 0, "E032");
// Checking if the FNFT is allowing splitting
require(getTokenVault().getSplitsRemaining(fnftId) > 0, "E023");
uint[] memory newFNFTIds = new uint[](proportions.length);
uint start = getFNFTHandler().getNextId();
uint lockId = getLockManager().fnftIdToLockId(fnftId);
getFNFTHandler().burn(_msgSender(), fnftId, quantity);
for(uint i = 0; i < proportions.length; i++) {
newFNFTIds[i] = start + i;
getFNFTHandler().mint(_msgSender(), newFNFTIds[i], quantity, "");
getLockManager().pointFNFTToLock(newFNFTIds[i], lockId);
}
getTokenVault().splitFNFT(fnftId, newFNFTIds, proportions, quantity);
emit FNFTSplit(_msgSender(), newFNFTIds, proportions, quantity);
return newFNFTIds;
}
/// @return the new (or reused) ID
function extendFNFTMaturity(
uint fnftId,
uint endTime
) external returns (uint) {
uint supply = getFNFTHandler().getSupply(fnftId);
uint balance = getFNFTHandler().getBalance(_msgSender(), fnftId);
require(fnftId < getFNFTHandler().getNextId(), "E007");
require(balance == supply, "E022");
// If it can't have its maturity extended, revert
// Will also return false on non-time lock locks
require(getTokenVault().getFNFT(fnftId).maturityExtension &&
getLockManager().lockTypes(fnftId) == IRevest.LockType.TimeLock, "E029");
// If desired maturity is below existing date, reject operation
require(getLockManager().fnftIdToLock(fnftId).timeLockExpiry < endTime, "E030");
// Update the lock
IRevest.LockParam memory lock;
lock.lockType = IRevest.LockType.TimeLock;
lock.timeLockExpiry = endTime;
getLockManager().createLock(fnftId, lock);
emit FNFTMaturityExtended(_msgSender(), fnftId, endTime);
// Need to handle fracture into multiple FNFTs with same value as original but different locks
return fnftId;
}
/**
* Amount will be per FNFT. So total ERC20s needed is amount * quantity.
* We don't charge an ETH fee on depositAdditional, but do take the erc20 percentage.
* Users can deposit additional into their own
* Otherwise, if not an owner, they must distribute to all FNFTs equally
*/
function depositAdditionalToFNFT(
uint fnftId,
uint amount,
uint quantity
) external override returns (uint) {
IRevest.FNFTConfig memory fnft = getTokenVault().getFNFT(fnftId);
require(fnftId < getFNFTHandler().getNextId(), "E007");
require(fnft.isMulti, "E034");
require(fnft.depositStopTime < block.timestamp || fnft.depositStopTime == 0, "E035");
require(quantity > 0, "E070");
address vault = addressesProvider.getTokenVault();
address handler = addressesProvider.getRevestFNFT();
address lockHandler = addressesProvider.getLockManager();
bool createNewSeries = false;
{
uint supply = IFNFTHandler(handler).getSupply(fnftId);
uint balance = IFNFTHandler(handler).getBalance(_msgSender(), fnftId);
if (quantity > balance) {
require(quantity == supply, "E069");
}
else if (quantity < balance || balance < supply) {
createNewSeries = true;
}
}
// Transfer the ERC20 fee to the admin address, leave it at that
uint totalERC20Fee = erc20Fee * quantity * amount / erc20multiplierPrecision;
if(totalERC20Fee > 0) {
IERC20(fnft.asset).safeTransferFrom(_msgSender(), addressesProvider.getAdmin(), totalERC20Fee);
}
uint lockId = ILockManager(lockHandler).fnftIdToLockId(fnftId);
// Whether to split the new deposits into their own series, or to simply add to an existing series
uint newFNFTId;
if(createNewSeries) {
// Split into a new series
newFNFTId = IFNFTHandler(handler).getNextId();
ILockManager(lockHandler).pointFNFTToLock(newFNFTId, lockId);
burn(_msgSender(), fnftId, quantity);
IFNFTHandler(handler).mint(_msgSender(), newFNFTId, quantity, "");
} else {
// Stay the same
newFNFTId = 0; // Signals to handleMultipleDeposits()
}
// Will call updateBalance
ITokenVault(vault).depositToken(fnftId, amount, quantity);
// Now, we transfer to the token vault
if(fnft.asset != address(0)){
IERC20(fnft.asset).safeTransferFrom(_msgSender(), vault, quantity * amount);
}
ITokenVault(vault).handleMultipleDeposits(fnftId, newFNFTId, fnft.depositAmount + amount);
emit FNFTAddionalDeposited(_msgSender(), newFNFTId, quantity, amount);
return newFNFTId;
}
/**
* @dev Returns the cached IAddressRegistry connected to this contract
**/
function getAddressesProvider() external view returns (IAddressRegistry) {
return addressesProvider;
}
//
// INTERNAL FUNCTIONS
//
function doMint(
address[] memory recipients,
uint[] memory quantities,
uint fnftId,
IRevest.FNFTConfig memory fnftConfig,
uint weiValue
) internal {
bool isSingular;
uint totalQuantity = quantities[0];
{
uint rec = recipients.length;
uint quant = quantities.length;
require(rec == quant, "recipients and quantities arrays must match");
// Calculate total quantity
isSingular = rec == 1;
if(!isSingular) {
for(uint i = 1; i < quant; i++) {
totalQuantity += quantities[i];
}
}
require(totalQuantity > 0, "E003");
}
// Gas optimization
address vault = addressesProvider.getTokenVault();
// Take fees
if(weiValue > 0) {
// Immediately convert all ETH to WETH
IWETH(WETH).deposit{value: weiValue}();
}
if(flatWeiFee > 0) {
require(weiValue >= flatWeiFee, "E005");
address reward = addressesProvider.getRewardsHandler();
if(!approved[reward]) {
IERC20(WETH).approve(reward, MAX_INT);
approved[reward] = true;
}
IRewardsHandler(reward).receiveFee(WETH, flatWeiFee);
}
{
uint totalERC20Fee = erc20Fee * totalQuantity * fnftConfig.depositAmount / erc20multiplierPrecision;
if(totalERC20Fee > 0) {
IERC20(fnftConfig.asset).safeTransferFrom(_msgSender(), addressesProvider.getAdmin(), totalERC20Fee);
}
}
// If there's any leftover ETH after the flat fee, convert it to WETH
weiValue -= flatWeiFee;
// Convert ETH to WETH if necessary
if(weiValue > 0) {
// If the asset is WETH, we also enable sending ETH to pay for the tx fee. Not required though
require(fnftConfig.asset == WETH, "E053");
require(weiValue >= fnftConfig.depositAmount, "E015");
}
// Create the FNFT and update accounting within TokenVault
ITokenVault(vault).createFNFT(fnftId, fnftConfig, totalQuantity, _msgSender());
// Now, we move the funds to token vault from the message sender
if(fnftConfig.asset != address(0)){
IERC20(fnftConfig.asset).safeTransferFrom(_msgSender(), vault, totalQuantity * fnftConfig.depositAmount);
}
// Mint NFT
// Gas optimization
if(!isSingular) {
getFNFTHandler().mintBatchRec(recipients, quantities, fnftId, totalQuantity, '');
} else {
getFNFTHandler().mint(recipients[0], fnftId, quantities[0], '');
}
}
function burn(
address account,
uint id,
uint amount
) internal {
address fnftHandler = addressesProvider.getRevestFNFT();
require(IFNFTHandler(fnftHandler).getSupply(id) - amount >= 0, "E025");
IFNFTHandler(fnftHandler).burn(account, id, amount);
}
function setFlatWeiFee(uint wethFee) external override onlyOwner {
flatWeiFee = wethFee;
}
function setERC20Fee(uint erc20) external override onlyOwner {
erc20Fee = erc20;
}
function getFlatWeiFee() external view override returns (uint) {
return flatWeiFee;
}
function getERC20Fee() external view override returns (uint) {
return erc20Fee;
}
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
import "../IERC20.sol";
import "../../../utils/Address.sol";
/**
* @title SafeERC20
* @dev Wrappers around ERC20 operations that throw on failure (when the token
* contract returns false). Tokens that return no value (and instead revert or
* throw on failure) are also supported, non-reverting calls are assumed to be
* successful.
* To use this library you can add a `using SafeERC20 for IERC20;` statement to your contract,
* which allows you to call the safe operations as `token.safeTransfer(...)`, etc.
*/
library SafeERC20 {
using Address for address;
function safeTransfer(
IERC20 token,
address to,
uint256 value
) internal {
_callOptionalReturn(token, abi.encodeWithSelector(token.transfer.selector, to, value));
}
function safeTransferFrom(
IERC20 token,
address from,
address to,
uint256 value
) internal {
_callOptionalReturn(token, abi.encodeWithSelector(token.transferFrom.selector, from, to, value));
}
/**
* @dev Deprecated. This function has issues similar to the ones found in
* {IERC20-approve}, and its usage is discouraged.
*
* Whenever possible, use {safeIncreaseAllowance} and
* {safeDecreaseAllowance} instead.
*/
function safeApprove(
IERC20 token,
address spender,
uint256 value
) internal {
// safeApprove should only be called when setting an initial allowance,
// or when resetting it to zero. To increase and decrease it, use
// 'safeIncreaseAllowance' and 'safeDecreaseAllowance'
require(
(value == 0) || (token.allowance(address(this), spender) == 0),
"SafeERC20: approve from non-zero to non-zero allowance"
);
_callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, value));
}
function safeIncreaseAllowance(
IERC20 token,
address spender,
uint256 value
) internal {
uint256 newAllowance = token.allowance(address(this), spender) + value;
_callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, newAllowance));
}
function safeDecreaseAllowance(
IERC20 token,
address spender,
uint256 value
) internal {
unchecked {
uint256 oldAllowance = token.allowance(address(this), spender);
require(oldAllowance >= value, "SafeERC20: decreased allowance below zero");
uint256 newAllowance = oldAllowance - value;
_callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, newAllowance));
}
}
/**
* @dev Imitates a Solidity high-level call (i.e. a regular function call to a contract), relaxing the requirement
* on the return value: the return value is optional (but if data is returned, it must not be false).
* @param token The token targeted by the call.
* @param data The call data (encoded using abi.encode or one of its variants).
*/
function _callOptionalReturn(IERC20 token, bytes memory data) private {
// We need to perform a low level call here, to bypass Solidity's return data size checking mechanism, since
// we're implementing it ourselves. We use {Address.functionCall} to perform this call, which verifies that
// the target address contains contract code and also asserts for success in the low-level call.
bytes memory returndata = address(token).functionCall(data, "SafeERC20: low-level call failed");
if (returndata.length > 0) {
// Return data is optional
require(abi.decode(returndata, (bool)), "SafeERC20: ERC20 operation did not succeed");
}
}
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
import "./AccessControl.sol";
import "../utils/structs/EnumerableSet.sol";
/**
* @dev External interface of AccessControlEnumerable declared to support ERC165 detection.
*/
interface IAccessControlEnumerable {
function getRoleMember(bytes32 role, uint256 index) external view returns (address);
function getRoleMemberCount(bytes32 role) external view returns (uint256);
}
/**
* @dev Extension of {AccessControl} that allows enumerating the members of each role.
*/
abstract contract AccessControlEnumerable is IAccessControlEnumerable, AccessControl {
using EnumerableSet for EnumerableSet.AddressSet;
mapping(bytes32 => EnumerableSet.AddressSet) private _roleMembers;
/**
* @dev See {IERC165-supportsInterface}.
*/
function supportsInterface(bytes4 interfaceId) public view virtual override returns (bool) {
return interfaceId == type(IAccessControlEnumerable).interfaceId || super.supportsInterface(interfaceId);
}
/**
* @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 override returns (address) {
return _roleMembers[role].at(index);
}
/**
* @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 override returns (uint256) {
return _roleMembers[role].length();
}
/**
* @dev Overload {grantRole} to track enumerable memberships
*/
function grantRole(bytes32 role, address account) public virtual override {
super.grantRole(role, account);
_roleMembers[role].add(account);
}
/**
* @dev Overload {revokeRole} to track enumerable memberships
*/
function revokeRole(bytes32 role, address account) public virtual override {
super.revokeRole(role, account);
_roleMembers[role].remove(account);
}
/**
* @dev Overload {renounceRole} to track enumerable memberships
*/
function renounceRole(bytes32 role, address account) public virtual override {
super.renounceRole(role, account);
_roleMembers[role].remove(account);
}
/**
* @dev Overload {_setupRole} to track enumerable memberships
*/
function _setupRole(bytes32 role, address account) internal virtual override {
super._setupRole(role, account);
_roleMembers[role].add(account);
}
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
import "./IERC165.sol";
/**
* @dev Library used to query support of an interface declared via {IERC165}.
*
* Note that these functions return the actual result of the query: they do not
* `revert` if an interface is not supported. It is up to the caller to decide
* what to do in these cases.
*/
library ERC165Checker {
// As per the EIP-165 spec, no interface should ever match 0xffffffff
bytes4 private constant _INTERFACE_ID_INVALID = 0xffffffff;
/**
* @dev Returns true if `account` supports the {IERC165} interface,
*/
function supportsERC165(address account) internal view returns (bool) {
// Any contract that implements ERC165 must explicitly indicate support of
// InterfaceId_ERC165 and explicitly indicate non-support of InterfaceId_Invalid
return
_supportsERC165Interface(account, type(IERC165).interfaceId) &&
!_supportsERC165Interface(account, _INTERFACE_ID_INVALID);
}
/**
* @dev Returns true if `account` supports the interface defined by
* `interfaceId`. Support for {IERC165} itself is queried automatically.
*
* See {IERC165-supportsInterface}.
*/
function supportsInterface(address account, bytes4 interfaceId) internal view returns (bool) {
// query support of both ERC165 as per the spec and support of _interfaceId
return supportsERC165(account) && _supportsERC165Interface(account, interfaceId);
}
/**
* @dev Returns a boolean array where each value corresponds to the
* interfaces passed in and whether they're supported or not. This allows
* you to batch check interfaces for a contract where your expectation
* is that some interfaces may not be supported.
*
* See {IERC165-supportsInterface}.
*
* _Available since v3.4._
*/
function getSupportedInterfaces(address account, bytes4[] memory interfaceIds)
internal
view
returns (bool[] memory)
{
// an array of booleans corresponding to interfaceIds and whether they're supported or not
bool[] memory interfaceIdsSupported = new bool[](interfaceIds.length);
// query support of ERC165 itself
if (supportsERC165(account)) {
// query support of each interface in interfaceIds
for (uint256 i = 0; i < interfaceIds.length; i++) {
interfaceIdsSupported[i] = _supportsERC165Interface(account, interfaceIds[i]);
}
}
return interfaceIdsSupported;
}
/**
* @dev Returns true if `account` supports all the interfaces defined in
* `interfaceIds`. Support for {IERC165} itself is queried automatically.
*
* Batch-querying can lead to gas savings by skipping repeated checks for
* {IERC165} support.
*
* See {IERC165-supportsInterface}.
*/
function supportsAllInterfaces(address account, bytes4[] memory interfaceIds) internal view returns (bool) {
// query support of ERC165 itself
if (!supportsERC165(account)) {
return false;
}
// query support of each interface in _interfaceIds
for (uint256 i = 0; i < interfaceIds.length; i++) {
if (!_supportsERC165Interface(account, interfaceIds[i])) {
return false;
}
}
// all interfaces supported
return true;
}
/**
* @notice Query if a contract implements an interface, does not check ERC165 support
* @param account The address of the contract to query for support of an interface
* @param interfaceId The interface identifier, as specified in ERC-165
* @return true if the contract at account indicates support of the interface with
* identifier interfaceId, false otherwise
* @dev Assumes that account contains a contract that supports ERC165, otherwise
* the behavior of this method is undefined. This precondition can be checked
* with {supportsERC165}.
* Interface identification is specified in ERC-165.
*/
function _supportsERC165Interface(address account, bytes4 interfaceId) private view returns (bool) {
bytes memory encodedParams = abi.encodeWithSelector(IERC165(account).supportsInterface.selector, interfaceId);
(bool success, bytes memory result) = account.staticcall{gas: 30000}(encodedParams);
if (result.length < 32) return false;
return success && abi.decode(result, (bool));
}
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity >=0.8.0;
interface IRevest {
event FNFTTimeLockMinted(
address indexed asset,
address indexed from,
uint indexed fnftId,
uint endTime,
uint[] quantities,
FNFTConfig fnftConfig
);
event FNFTValueLockMinted(
address indexed primaryAsset,
address indexed from,
uint indexed fnftId,
address compareTo,
address oracleDispatch,
uint[] quantities,
FNFTConfig fnftConfig
);
event FNFTAddressLockMinted(
address indexed asset,
address indexed from,
uint indexed fnftId,
address trigger,
uint[] quantities,
FNFTConfig fnftConfig
);
event FNFTWithdrawn(
address indexed from,
uint indexed fnftId,
uint indexed quantity
);
event FNFTSplit(
address indexed from,
uint[] indexed newFNFTId,
uint[] indexed proportions,
uint quantity
);
event FNFTUnlocked(
address indexed from,
uint indexed fnftId
);
event FNFTMaturityExtended(
address indexed from,
uint indexed fnftId,
uint indexed newExtendedTime
);
event FNFTAddionalDeposited(
address indexed from,
uint indexed newFNFTId,
uint indexed quantity,
uint amount
);
struct FNFTConfig {
address asset; // The token being stored
address pipeToContract; // Indicates if FNFT will pipe to another contract
uint depositAmount; // How many tokens
uint depositMul; // Deposit multiplier
uint split; // Number of splits remaining
uint depositStopTime; //
bool maturityExtension; // Maturity extensions remaining
bool isMulti; //
bool nontransferrable; // False by default (transferrable) //
}
// Refers to the global balance for an ERC20, encompassing possibly many FNFTs
struct TokenTracker {
uint lastBalance;
uint lastMul;
}
enum LockType {
DoesNotExist,
TimeLock,
ValueLock,
AddressLock
}
struct LockParam {
address addressLock;
uint timeLockExpiry;
LockType lockType;
ValueLock valueLock;
}
struct Lock {
address addressLock;
LockType lockType;
ValueLock valueLock;
uint timeLockExpiry;
uint creationTime;
bool unlocked;
}
struct ValueLock {
address asset;
address compareTo;
address oracle;
uint unlockValue;
bool unlockRisingEdge;
}
function mintTimeLock(
uint endTime,
address[] memory recipients,
uint[] memory quantities,
IRevest.FNFTConfig memory fnftConfig
) external payable returns (uint);
function mintValueLock(
address primaryAsset,
address compareTo,
uint unlockValue,
bool unlockRisingEdge,
address oracleDispatch,
address[] memory recipients,
uint[] memory quantities,
IRevest.FNFTConfig memory fnftConfig
) external payable returns (uint);
function mintAddressLock(
address trigger,
bytes memory arguments,
address[] memory recipients,
uint[] memory quantities,
IRevest.FNFTConfig memory fnftConfig
) external payable returns (uint);
function withdrawFNFT(uint tokenUID, uint quantity) external;
function unlockFNFT(uint tokenUID) external;
function splitFNFT(
uint fnftId,
uint[] memory proportions,
uint quantity
) external returns (uint[] memory newFNFTIds);
function depositAdditionalToFNFT(
uint fnftId,
uint amount,
uint quantity
) external returns (uint);
function setFlatWeiFee(uint wethFee) external;
function setERC20Fee(uint erc20) external;
function getFlatWeiFee() external returns (uint);
function getERC20Fee() external returns (uint);
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity >=0.8.0;
/**
* @title Provider interface for Revest FNFTs
* @dev
*
*/
interface IAddressRegistry {
function initialize(
address lock_manager_,
address liquidity_,
address revest_token_,
address token_vault_,
address revest_,
address fnft_,
address metadata_,
address admin_,
address rewards_
) external;
function getAdmin() external view returns (address);
function setAdmin(address admin) external;
function getLockManager() external view returns (address);
function setLockManager(address manager) external;
function getTokenVault() external view returns (address);
function setTokenVault(address vault) external;
function getRevestFNFT() external view returns (address);
function setRevestFNFT(address fnft) external;
function getMetadataHandler() external view returns (address);
function setMetadataHandler(address metadata) external;
function getRevest() external view returns (address);
function setRevest(address revest) external;
function getDEX(uint index) external view returns (address);
function setDex(address dex) external;
function getRevestToken() external view returns (address);
function setRevestToken(address token) external;
function getRewardsHandler() external view returns(address);
function setRewardsHandler(address esc) external;
function getAddress(bytes32 id) external view returns (address);
function getLPs() external view returns (address);
function setLPs(address liquidToken) external;
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity >=0.8.0;
import "./IRevest.sol";
interface ILockManager {
function createLock(uint fnftId, IRevest.LockParam memory lock) external returns (uint);
function getLock(uint lockId) external view returns (IRevest.Lock memory);
function fnftIdToLockId(uint fnftId) external view returns (uint);
function fnftIdToLock(uint fnftId) external view returns (IRevest.Lock memory);
function pointFNFTToLock(uint fnftId, uint lockId) external;
function lockTypes(uint tokenId) external view returns (IRevest.LockType);
function unlockFNFT(uint fnftId, address sender) external returns (bool);
function getLockMaturity(uint fnftId) external view returns (bool);
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity ^0.8.0;
interface IInterestHandler {
function registerDeposit(uint fnftId) external;
function getPrincipal(uint fnftId) external view returns (uint);
function getInterest(uint fnftId) external view returns (uint);
function getAmountToWithdraw(uint fnftId) external view returns (uint);
function getUnderlyingToken(uint fnftId) external view returns (address);
function getUnderlyingValue(uint fnftId) external view returns (uint);
//These methods exist for external operations
function getPrincipalDetail(uint historic, uint amount, address asset) external view returns (uint);
function getInterestDetail(uint historic, uint amount, address asset) external view returns (uint);
function getUnderlyingTokenDetail(address asset) external view returns (address);
function getInterestRate(address asset) external view returns (uint);
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity >=0.8.0;
import "./IRevest.sol";
interface ITokenVault {
function createFNFT(
uint fnftId,
IRevest.FNFTConfig memory fnftConfig,
uint quantity,
address from
) external;
function withdrawToken(
uint fnftId,
uint quantity,
address user
) external;
function depositToken(
uint fnftId,
uint amount,
uint quantity
) external;
function cloneFNFTConfig(IRevest.FNFTConfig memory old) external returns (IRevest.FNFTConfig memory);
function mapFNFTToToken(
uint fnftId,
IRevest.FNFTConfig memory fnftConfig
) external;
function handleMultipleDeposits(
uint fnftId,
uint newFNFTId,
uint amount
) external;
function splitFNFT(
uint fnftId,
uint[] memory newFNFTIds,
uint[] memory proportions,
uint quantity
) external;
function getFNFT(uint fnftId) external view returns (IRevest.FNFTConfig memory);
function getFNFTCurrentValue(uint fnftId) external view returns (uint);
function getNontransferable(uint fnftId) external view returns (bool);
function getSplitsRemaining(uint fnftId) external view returns (uint);
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity >=0.8.0;
interface IRewardsHandler {
struct UserBalance {
uint allocPoint; // Allocation points
uint lastMul;
}
function receiveFee(address token, uint amount) external;
function updateLPShares(uint fnftId, uint newShares) external;
function updateBasicShares(uint fnftId, uint newShares) external;
function getAllocPoint(uint fnftId, address token, bool isBasic) external view returns (uint);
function claimRewards(uint fnftId, address caller) external returns (uint);
function setStakingContract(address stake) external;
function getRewards(uint fnftId, address token) external view returns (uint);
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity >=0.8.0;
interface IOracleDispatch {
// Attempts to update oracle and returns true if successful. Returns true if update unnecessary
function updateOracle(address asset, address compareTo) external returns (bool);
// Will return true if oracle does not need to be poked or if poke was successful
function pokeOracle(address asset, address compareTo) external returns (bool);
// Will return true if oracle already initialized, if oracle has successfully been initialized by this call,
// or if oracle does not need to be initialized
function initializeOracle(address asset, address compareTo) external returns (bool);
// Gets the value of the asset
// Oracle = the oracle address in specific. Optional parameter
// Inverted pair = whether or not this call represents an inversion of typical type (ERC20 underlying, USDC compareTo) to (USDC underlying, ERC20 compareTo)
// Must take inverse of value in this case to get REAL value
function getValueOfAsset(
address asset,
address compareTo,
bool risingEdge
) external view returns (uint);
// Does this oracle need to be updated prior to our reading the price?
// Return false if we are within desired time period
// Or if this type of oracle does not require updates
function oracleNeedsUpdates(address asset, address compareTo) external view returns (bool);
// Does this oracle need to be poked prior to update and withdrawal?
function oracleNeedsPoking(address asset, address compareTo) external view returns (bool);
function oracleNeedsInitialization(address asset, address compareTo) external view returns (bool);
//Only ever called if oracle needs initialization
function canOracleBeCreatedForRoute(address asset, address compareTo) external view returns (bool);
// How long to wait after poking the oracle before you can update it again and withdraw
function getTimePeriodAfterPoke(address asset, address compareTo) external view returns (uint);
// Returns a direct reference to the address that the specific contract for this pair is registered at
function getOracleForPair(address asset, address compareTo) external view returns (address);
// Returns a boolean if this oracle can provide data for the requested pair, used during FNFT creation
function getPairHasOracle(address asset, address compareTo) external view returns (bool);
//Returns the instantaneous price of asset and the decimals for that price
function getInstantPrice(address asset, address compareTo) external view returns (uint);
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity >=0.8.0;
import "./IRegistryProvider.sol";
import '@openzeppelin/contracts/utils/introspection/IERC165.sol';
/**
* @title Provider interface for Revest FNFTs
*/
interface IOutputReceiver is IRegistryProvider, IERC165 {
function receiveRevestOutput(
uint fnftId,
address asset,
address payable owner,
uint quantity
) external;
function getCustomMetadata(uint fnftId) external view returns (string memory);
function getValue(uint fnftId) external view returns (uint);
function getAsset(uint fnftId) external view returns (address);
function getOutputDisplayValues(uint fnftId) external view returns (bytes memory);
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity >=0.8.0;
import "./IRegistryProvider.sol";
import '@openzeppelin/contracts/utils/introspection/IERC165.sol';
/**
* @title Provider interface for Revest FNFTs
* @dev Address locks MUST be non-upgradeable to be considered for trusted status
* @author Revest
*/
interface IAddressLock is IRegistryProvider, IERC165{
/// Creates a lock to the specified lockID
/// @param fnftId the fnftId to map this lock to. Not recommended for typical locks, as it will break on splitting
/// @param lockId the lockId to map this lock to. Recommended uint for storing references to lock configurations
/// @param arguments an abi.encode() bytes array. Allows frontend to encode and pass in an arbitrary set of parameters
/// @dev creates a lock for the specified lockId. Will be called during the creation process for address locks when the address
/// of a contract implementing this interface is passed in as the "trigger" address for minting an address lock. The bytes
/// representing any parameters this lock requires are passed through to this method, where abi.decode must be call on them
function createLock(uint fnftId, uint lockId, bytes memory arguments) external;
/// Updates a lock at the specified lockId
/// @param fnftId the fnftId that can map to a lock config stored in implementing contracts. Not recommended, as it will break on splitting
/// @param lockId the lockId that maps to the lock config which should be updated. Recommended for retrieving references to lock configurations
/// @param arguments an abi.encode() bytes array. Allows frontend to encode and pass in an arbitrary set of parameters
/// @dev updates a lock for the specified lockId. Will be called by the frontend from the information section if an update is requested
/// can further accept and decode parameters to use in modifying the lock's config or triggering other actions
/// such as triggering an on-chain oracle to update
function updateLock(uint fnftId, uint lockId, bytes memory arguments) external;
/// Whether or not the lock can be unlocked
/// @param fnftId the fnftId that can map to a lock config stored in implementing contracts. Not recommended, as it will break on splitting
/// @param lockId the lockId that maps to the lock config which should be updated. Recommended for retrieving references to lock configurations
/// @dev this method is called during the unlocking and withdrawal processes by the Revest contract - it is also used by the frontend
/// if this method is returning true and someone attempts to unlock or withdraw from an FNFT attached to the requested lock, the request will succeed
/// @return whether or not this lock may be unlocked
function isUnlockable(uint fnftId, uint lockId) external view returns (bool);
/// Provides an encoded bytes arary that represents values this lock wants to display on the info screen
/// Info to decode these values is provided in the metadata file
/// @param fnftId the fnftId that can map to a lock config stored in implementing contracts. Not recommended, as it will break on splitting
/// @param lockId the lockId that maps to the lock config which should be updated. Recommended for retrieving references to lock configurations
/// @dev used by the frontend to fetch on-chain data on the state of any given lock
/// @return a bytes array that represents the result of calling abi.encode on values which the developer wants to appear on the frontend
function getDisplayValues(uint fnftId, uint lockId) external view returns (bytes memory);
/// Maps to a URL, typically IPFS-based, that contains information on how to encode and decode paramters sent to and from this lock
/// Please see additional documentation for JSON config info
/// @dev this method will be called by the frontend only but is crucial to properly implement for proper minting and information workflows
/// @return a URL to the JSON file containing this lock's metadata schema
function getMetadata() external view returns (string memory);
/// Whether or not this lock will need updates and should display the option for them
/// @dev this will be called by the frontend to determine if update inputs and buttons should be displayed
/// @return whether or not the locks created by this contract will need updates
function needsUpdate() external view returns (bool);
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity ^0.8.0;
import "@openzeppelin/contracts/access/Ownable.sol";
import "../interfaces/IAddressRegistry.sol";
import "../interfaces/ILockManager.sol";
import "../interfaces/IRewardsHandler.sol";
import "../interfaces/ITokenVault.sol";
import "../interfaces/IRevestToken.sol";
import "../interfaces/IFNFTHandler.sol";
import "../lib/uniswap/IUniswapV2Factory.sol";
import "../interfaces/IInterestHandler.sol";
contract RevestAccessControl is Ownable {
IAddressRegistry internal addressesProvider;
address addressProvider;
constructor(address provider) Ownable() {
addressesProvider = IAddressRegistry(provider);
addressProvider = provider;
}
modifier onlyRevest() {
require(_msgSender() != address(0), "E004");
require(
_msgSender() == addressesProvider.getLockManager() ||
_msgSender() == addressesProvider.getRewardsHandler() ||
_msgSender() == addressesProvider.getTokenVault() ||
_msgSender() == addressesProvider.getRevest() ||
_msgSender() == addressesProvider.getRevestToken(),
"E016"
);
_;
}
modifier onlyRevestController() {
require(_msgSender() != address(0), "E004");
require(_msgSender() == addressesProvider.getRevest(), "E017");
_;
}
modifier onlyTokenVault() {
require(_msgSender() != address(0), "E004");
require(_msgSender() == addressesProvider.getTokenVault(), "E017");
_;
}
function setAddressRegistry(address registry) external onlyOwner {
addressesProvider = IAddressRegistry(registry);
}
function getAdmin() internal view returns (address) {
return addressesProvider.getAdmin();
}
function getRevest() internal view returns (IRevest) {
return IRevest(addressesProvider.getRevest());
}
function getRevestToken() internal view returns (IRevestToken) {
return IRevestToken(addressesProvider.getRevestToken());
}
function getLockManager() internal view returns (ILockManager) {
return ILockManager(addressesProvider.getLockManager());
}
function getTokenVault() internal view returns (ITokenVault) {
return ITokenVault(addressesProvider.getTokenVault());
}
function getUniswapV2() internal view returns (IUniswapV2Factory) {
return IUniswapV2Factory(addressesProvider.getDEX(0));
}
function getFNFTHandler() internal view returns (IFNFTHandler) {
return IFNFTHandler(addressesProvider.getRevestFNFT());
}
function getRewardsHandler() internal view returns (IRewardsHandler) {
return IRewardsHandler(addressesProvider.getRewardsHandler());
}
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity ^0.8.0;
import "@openzeppelin/contracts/security/ReentrancyGuard.sol";
contract RevestReentrancyGuard is ReentrancyGuard {
// Used to avoid reentrancy
uint private constant MAX_INT = 0xFFFFFFFFFFFFFFFF;
uint private currentId = MAX_INT;
modifier revestNonReentrant(uint fnftId) {
// On the first call to nonReentrant, _notEntered will be true
require(fnftId != currentId, "E052");
// Any calls to nonReentrant after this point will fail
currentId = fnftId;
_;
currentId = MAX_INT;
}
}// SPDX-License-Identifier: UNLICENSED
// This contract locks uniswap v2 liquidity tokens. Used to give investors peace of mind a token team has locked liquidity
// and that the univ2 tokens cannot be removed from uniswap until the specified unlock date has been reached.
pragma solidity ^0.8.0;
interface IUnicryptV2Locker {
event onDeposit(address lpToken, address user, uint amount, uint lockDate, uint unlockDate);
event onWithdraw(address lpToken, uint amount);
/**
* @notice Creates a new lock
* @param _lpToken the univ2 token address
* @param _amount amount of LP tokens to lock
* @param _unlock_date the unix timestamp (in seconds) until unlock
* @param _referral the referrer address if any or address(0) for none
* @param _fee_in_eth fees can be paid in eth or in a secondary token such as UNCX with a discount on univ2 tokens
* @param _withdrawer the user who can withdraw liquidity once the lock expires.
*/
function lockLPToken(
address _lpToken,
uint _amount,
uint _unlock_date,
address payable _referral,
bool _fee_in_eth,
address payable _withdrawer
) external payable;
/**
* @notice extend a lock with a new unlock date, _index and _lockID ensure the correct lock is changed
* this prevents errors when a user performs multiple tx per block possibly with varying gas prices
*/
function relock(
address _lpToken,
uint _index,
uint _lockID,
uint _unlock_date
) external;
/**
* @notice withdraw a specified amount from a lock. _index and _lockID ensure the correct lock is changed
* this prevents errors when a user performs multiple tx per block possibly with varying gas prices
*/
function withdraw(
address _lpToken,
uint _index,
uint _lockID,
uint _amount
) external;
/**
* @notice increase the amount of tokens per a specific lock, this is preferable to creating a new lock, less fees, and faster loading on our live block explorer
*/
function incrementLock(
address _lpToken,
uint _index,
uint _lockID,
uint _amount
) external;
/**
* @notice split a lock into two seperate locks, useful when a lock is about to expire and youd like to relock a portion
* and withdraw a smaller portion
*/
function splitLock(
address _lpToken,
uint _index,
uint _lockID,
uint _amount
) external payable;
/**
* @notice transfer a lock to a new owner, e.g. presale project -> project owner
* CAN USE TO MIGRATE UNICRYPT LOCKS TO OUR PLATFORM
* Must be called by the owner of the token
*/
function transferLockOwnership(
address _lpToken,
uint _index,
uint _lockID,
address payable _newOwner
) external;
/**
* @notice migrates liquidity to uniswap v3
*/
function migrate(
address _lpToken,
uint _index,
uint _lockID,
uint _amount
) external;
function getNumLocksForToken(address _lpToken) external view returns (uint);
function getNumLockedTokens() external view returns (uint);
function getLockedTokenAtIndex(uint _index) external view returns (address);
// user functions
function getUserNumLockedTokens(address _user) external view returns (uint);
function getUserLockedTokenAtIndex(address _user, uint _index) external view returns (address);
function getUserNumLocksForToken(address _user, address _lpToken) external view returns (uint);
function getUserLockForTokenAtIndex(
address _user,
address _lpToken,
uint _index
)
external
view
returns (
uint,
uint,
uint,
uint,
uint,
address
);
function tokenLocks(address asset, uint _lockID)
external
returns (
uint lockDate,
uint amount,
uint initialAmount,
uint unlockDate,
uint lockID,
address owner
);
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity ^0.8.0;
interface IWETH {
function deposit() external payable;
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity ^0.8.0;
import "@openzeppelin/contracts/access/AccessControl.sol";
import "@openzeppelin/contracts/security/ReentrancyGuard.sol";
import "@openzeppelin/contracts/token/ERC1155/ERC1155.sol";
import "./interfaces/IRevest.sol";
import "./interfaces/IAddressRegistry.sol";
import "./interfaces/ILockManager.sol";
import "./interfaces/ITokenVault.sol";
import "./interfaces/IAddressLock.sol";
import "./utils/RevestAccessControl.sol";
import "./interfaces/IFNFTHandler.sol";
import "./interfaces/IMetadataHandler.sol";
contract FNFTHandler is ERC1155, AccessControl, RevestAccessControl, IFNFTHandler {
bytes32 public constant PAUSER_ROLE = keccak256("PAUSER_ROLE");
mapping(uint => uint) public supply;
uint public fnftsCreated = 0;
/**
* @dev Primary constructor to create an instance of NegativeEntropy
* Grants ADMIN and MINTER_ROLE to whoever creates the contract
*/
constructor(address provider) ERC1155("") RevestAccessControl(provider) {
_setupRole(DEFAULT_ADMIN_ROLE, _msgSender());
_setupRole(PAUSER_ROLE, _msgSender());
}
/**
* @dev See {IERC165-supportsInterface}.
*/
function supportsInterface(bytes4 interfaceId) public view virtual override (AccessControl, ERC1155) returns (bool) {
return super.supportsInterface(interfaceId);
}
function mint(address account, uint id, uint amount, bytes memory data) external override onlyRevestController {
supply[id] += amount;
_mint(account, id, amount, data);
fnftsCreated += 1;
}
function mintBatchRec(address[] calldata recipients, uint[] calldata quantities, uint id, uint newSupply, bytes memory data) external override onlyRevestController {
supply[id] += newSupply;
for(uint i = 0; i < quantities.length; i++) {
_mint(recipients[i], id, quantities[i], data);
}
fnftsCreated += 1;
}
function mintBatch(address to, uint[] memory ids, uint[] memory amounts, bytes memory data) external override onlyRevestController {
_mintBatch(to, ids, amounts, data);
}
function setURI(string memory newuri) external override onlyRevestController {
_setURI(newuri);
}
function burn(address account, uint id, uint amount) external override onlyRevestController {
supply[id] -= amount;
_burn(account, id, amount);
}
function burnBatch(address account, uint[] memory ids, uint[] memory amounts) external override onlyRevestController {
_burnBatch(account, ids, amounts);
}
function getBalance(address account, uint id) external view override returns (uint) {
return balanceOf(account, id);
}
function getSupply(uint fnftId) public view override returns (uint) {
return supply[fnftId];
}
function getNextId() public view override returns (uint) {
return fnftsCreated;
}
// OVERIDDEN ERC-1155 METHODS
function _beforeTokenTransfer(
address operator,
address from,
address to,
uint[] memory ids,
uint[] memory amounts,
bytes memory data
) internal override {
super._beforeTokenTransfer(operator, from, to, ids, amounts, data);
// Loop because all batch transfers must be checked
// Will only execute once on singular transfer
if (from != address(0) && to != address(0)) {
address vault = addressesProvider.getTokenVault();
bool canTransfer = !ITokenVault(vault).getNontransferable(ids[0]);
// Only check if not from minter
// And not being burned
if(ids.length > 1) {
uint iterator = 0;
while (canTransfer && iterator < ids.length) {
canTransfer = !ITokenVault(vault).getNontransferable(ids[iterator]);
iterator += 1;
}
}
require(canTransfer, "E046");
}
}
function uri(uint fnftId) public view override returns (string memory) {
return IMetadataHandler(addressesProvider.getMetadataHandler()).getTokenURI(fnftId);
}
function renderTokenURI(
uint tokenId,
address owner
) public view returns (
string memory baseRenderURI,
string[] memory parameters
) {
return IMetadataHandler(addressesProvider.getMetadataHandler()).getRenderTokenURI(tokenId, owner);
}
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
/**
* @dev Interface of the ERC20 standard as defined in the EIP.
*/
interface IERC20 {
/**
* @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);
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
/**
* @dev Collection of functions related to the address type
*/
library Address {
/**
* @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;
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");
(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");
(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");
(bool success, bytes memory returndata) = target.staticcall(data);
return _verifyCallResult(success, returndata, errorMessage);
}
/**
* @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
* but performing a delegate call.
*
* _Available since v3.4._
*/
function functionDelegateCall(address target, bytes memory data) internal returns (bytes memory) {
return functionDelegateCall(target, data, "Address: low-level delegate call failed");
}
/**
* @dev Same as {xref-Address-functionCall-address-bytes-string-}[`functionCall`],
* but performing a delegate call.
*
* _Available since v3.4._
*/
function functionDelegateCall(
address target,
bytes memory data,
string memory errorMessage
) internal returns (bytes memory) {
require(isContract(target), "Address: delegate call to non-contract");
(bool success, bytes memory returndata) = target.delegatecall(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
assembly {
let returndata_size := mload(returndata)
revert(add(32, returndata), returndata_size)
}
} else {
revert(errorMessage);
}
}
}
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
import "../utils/Context.sol";
import "../utils/Strings.sol";
import "../utils/introspection/ERC165.sol";
/**
* @dev External interface of AccessControl declared to support ERC165 detection.
*/
interface IAccessControl {
function hasRole(bytes32 role, address account) external view returns (bool);
function getRoleAdmin(bytes32 role) external view returns (bytes32);
function grantRole(bytes32 role, address account) external;
function revokeRole(bytes32 role, address account) external;
function renounceRole(bytes32 role, address account) external;
}
/**
* @dev Contract module that allows children to implement role-based access
* control mechanisms. This is a lightweight version that doesn't allow enumerating role
* members except through off-chain means by accessing the contract event logs. Some
* applications may benefit from on-chain enumerability, for those cases see
* {AccessControlEnumerable}.
*
* 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 AccessControl is Context, IAccessControl, ERC165 {
struct RoleData {
mapping(address => bool) 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 Modifier that checks that an account has a specific role. Reverts
* with a standardized message including the required role.
*
* The format of the revert reason is given by the following regular expression:
*
* /^AccessControl: account (0x[0-9a-f]{20}) is missing role (0x[0-9a-f]{32})$/
*
* _Available since v4.1._
*/
modifier onlyRole(bytes32 role) {
_checkRole(role, _msgSender());
_;
}
/**
* @dev See {IERC165-supportsInterface}.
*/
function supportsInterface(bytes4 interfaceId) public view virtual override returns (bool) {
return interfaceId == type(IAccessControl).interfaceId || super.supportsInterface(interfaceId);
}
/**
* @dev Returns `true` if `account` has been granted `role`.
*/
function hasRole(bytes32 role, address account) public view override returns (bool) {
return _roles[role].members[account];
}
/**
* @dev Revert with a standard message if `account` is missing `role`.
*
* The format of the revert reason is given by the following regular expression:
*
* /^AccessControl: account (0x[0-9a-f]{20}) is missing role (0x[0-9a-f]{32})$/
*/
function _checkRole(bytes32 role, address account) internal view {
if (!hasRole(role, account)) {
revert(
string(
abi.encodePacked(
"AccessControl: account ",
Strings.toHexString(uint160(account), 20),
" is missing role ",
Strings.toHexString(uint256(role), 32)
)
)
);
}
}
/**
* @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 override 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 override onlyRole(getRoleAdmin(role)) {
_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 override onlyRole(getRoleAdmin(role)) {
_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 override {
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, getRoleAdmin(role), adminRole);
_roles[role].adminRole = adminRole;
}
function _grantRole(bytes32 role, address account) private {
if (!hasRole(role, account)) {
_roles[role].members[account] = true;
emit RoleGranted(role, account, _msgSender());
}
}
function _revokeRole(bytes32 role, address account) private {
if (hasRole(role, account)) {
_roles[role].members[account] = false;
emit RoleRevoked(role, account, _msgSender());
}
}
}// SPDX-License-Identifier: MIT
pragma solidity ^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 EnumerableSet {
// 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;
if (lastIndex != toDeleteIndex) {
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] = valueIndex; // Replace lastvalue's index to valueIndex
}
// 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) {
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(uint160(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(uint160(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(uint160(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(uint160(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));
}
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
/*
* @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 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 Context {
function _msgSender() internal view virtual returns (address) {
return msg.sender;
}
function _msgData() internal view virtual returns (bytes calldata) {
return msg.data;
}
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
/**
* @dev String operations.
*/
library Strings {
bytes16 private constant _HEX_SYMBOLS = "0123456789abcdef";
/**
* @dev Converts a `uint256` to its ASCII `string` decimal representation.
*/
function toString(uint256 value) internal pure returns (string memory) {
// Inspired by OraclizeAPI's implementation - MIT licence
// https://github.com/oraclize/ethereum-api/blob/b42146b063c7d6ee1358846c198246239e9360e8/oraclizeAPI_0.4.25.sol
if (value == 0) {
return "0";
}
uint256 temp = value;
uint256 digits;
while (temp != 0) {
digits++;
temp /= 10;
}
bytes memory buffer = new bytes(digits);
while (value != 0) {
digits -= 1;
buffer[digits] = bytes1(uint8(48 + uint256(value % 10)));
value /= 10;
}
return string(buffer);
}
/**
* @dev Converts a `uint256` to its ASCII `string` hexadecimal representation.
*/
function toHexString(uint256 value) internal pure returns (string memory) {
if (value == 0) {
return "0x00";
}
uint256 temp = value;
uint256 length = 0;
while (temp != 0) {
length++;
temp >>= 8;
}
return toHexString(value, length);
}
/**
* @dev Converts a `uint256` to its ASCII `string` hexadecimal representation with fixed length.
*/
function toHexString(uint256 value, uint256 length) internal pure returns (string memory) {
bytes memory buffer = new bytes(2 * length + 2);
buffer[0] = "0";
buffer[1] = "x";
for (uint256 i = 2 * length + 1; i > 1; --i) {
buffer[i] = _HEX_SYMBOLS[value & 0xf];
value >>= 4;
}
require(value == 0, "Strings: hex length insufficient");
return string(buffer);
}
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
import "./IERC165.sol";
/**
* @dev Implementation of the {IERC165} interface.
*
* Contracts that want to implement ERC165 should inherit from this contract and override {supportsInterface} to check
* for the additional interface id that will be supported. For example:
*
* ```solidity
* function supportsInterface(bytes4 interfaceId) public view virtual override returns (bool) {
* return interfaceId == type(MyInterface).interfaceId || super.supportsInterface(interfaceId);
* }
* ```
*
* Alternatively, {ERC165Storage} provides an easier to use but more expensive implementation.
*/
abstract contract ERC165 is IERC165 {
/**
* @dev See {IERC165-supportsInterface}.
*/
function supportsInterface(bytes4 interfaceId) public view virtual override returns (bool) {
return interfaceId == type(IERC165).interfaceId;
}
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
/**
* @dev Interface of the ERC165 standard, as defined in the
* https://eips.ethereum.org/EIPS/eip-165[EIP].
*
* Implementers can declare support of contract interfaces, which can then be
* queried by others ({ERC165Checker}).
*
* For an implementation, see {ERC165}.
*/
interface IERC165 {
/**
* @dev Returns true if this contract implements the interface defined by
* `interfaceId`. See the corresponding
* https://eips.ethereum.org/EIPS/eip-165#how-interfaces-are-identified[EIP section]
* to learn more about how these ids are created.
*
* This function call must use less than 30 000 gas.
*/
function supportsInterface(bytes4 interfaceId) external view returns (bool);
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity ^0.8.0;
import "../interfaces/IAddressRegistry.sol";
import "@openzeppelin/contracts/access/Ownable.sol";
import "../interfaces/ILockManager.sol";
import "../interfaces/ITokenVault.sol";
import "../lib/uniswap/IUniswapV2Factory.sol";
interface IRegistryProvider {
function setAddressRegistry(address revest) external;
function getAddressRegistry() external view returns (address);
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
import "../utils/Context.sol";
/**
* @dev Contract module which provides a basic access control mechanism, where
* there is an account (an owner) that can be granted exclusive access to
* specific functions.
*
* By default, the owner account will be the one that deploys the contract. This
* can later be changed with {transferOwnership}.
*
* This module is used through inheritance. It will make available the modifier
* `onlyOwner`, which can be applied to your functions to restrict their use to
* the owner.
*/
abstract contract Ownable is Context {
address private _owner;
event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);
/**
* @dev Initializes the contract setting the deployer as the initial owner.
*/
constructor() {
_setOwner(_msgSender());
}
/**
* @dev Returns the address of the current owner.
*/
function owner() public view virtual returns (address) {
return _owner;
}
/**
* @dev Throws if called by any account other than the owner.
*/
modifier onlyOwner() {
require(owner() == _msgSender(), "Ownable: caller is not the owner");
_;
}
/**
* @dev Leaves the contract without owner. It will not be possible to call
* `onlyOwner` functions anymore. Can only be called by the current owner.
*
* NOTE: Renouncing ownership will leave the contract without an owner,
* thereby removing any functionality that is only available to the owner.
*/
function renounceOwnership() public virtual onlyOwner {
_setOwner(address(0));
}
/**
* @dev Transfers ownership of the contract to a new account (`newOwner`).
* Can only be called by the current owner.
*/
function transferOwnership(address newOwner) public virtual onlyOwner {
require(newOwner != address(0), "Ownable: new owner is the zero address");
_setOwner(newOwner);
}
function _setOwner(address newOwner) private {
address oldOwner = _owner;
_owner = newOwner;
emit OwnershipTransferred(oldOwner, newOwner);
}
}// SPDX-License-Identifier: UNLICENSED
pragma solidity ^0.8.0;
interface IUniswapV2Factory {
event PairCreated(address indexed token0, address indexed token1, address pair, uint);
function feeTo() external view returns (address);
function feeToSetter() external view returns (address);
function getPair(address tokenA, address tokenB) external view returns (address pair);
function allPairs(uint) external view returns (address pair);
function allPairsLength() external view returns (uint);
function createPair(address tokenA, address tokenB) external returns (address pair);
function setFeeTo(address) external;
function setFeeToSetter(address) external;
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity >=0.8.0;
import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
interface IRevestToken is IERC20 {
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity >=0.8.0;
interface IFNFTHandler {
function mint(address account, uint id, uint amount, bytes memory data) external;
function mintBatchRec(address[] memory recipients, uint[] memory quantities, uint id, uint newSupply, bytes memory data) external;
function mintBatch(address to, uint[] memory ids, uint[] memory amounts, bytes memory data) external;
function setURI(string memory newuri) external;
function burn(address account, uint id, uint amount) external;
function burnBatch(address account, uint[] memory ids, uint[] memory amounts) external;
function getBalance(address tokenHolder, uint id) external view returns (uint);
function getSupply(uint fnftId) external view returns (uint);
function getNextId() external view returns (uint);
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
/**
* @dev Contract module that helps prevent reentrant calls to a function.
*
* Inheriting from `ReentrancyGuard` will make the {nonReentrant} modifier
* available, which can be applied to functions to make sure there are no nested
* (reentrant) calls to them.
*
* Note that because there is a single `nonReentrant` guard, functions marked as
* `nonReentrant` may not call one another. This can be worked around by making
* those functions `private`, and then adding `external` `nonReentrant` entry
* points to them.
*
* TIP: If you would like to learn more about reentrancy and alternative ways
* to protect against it, check out our blog post
* https://blog.openzeppelin.com/reentrancy-after-istanbul/[Reentrancy After Istanbul].
*/
abstract contract ReentrancyGuard {
// Booleans are more expensive than uint256 or any type that takes up a full
// word because each write operation emits an extra SLOAD to first read the
// slot's contents, replace the bits taken up by the boolean, and then write
// back. This is the compiler's defense against contract upgrades and
// pointer aliasing, and it cannot be disabled.
// The values being non-zero value makes deployment a bit more expensive,
// but in exchange the refund on every call to nonReentrant will be lower in
// amount. Since refunds are capped to a percentage of the total
// transaction's gas, it is best to keep them low in cases like this one, to
// increase the likelihood of the full refund coming into effect.
uint256 private constant _NOT_ENTERED = 1;
uint256 private constant _ENTERED = 2;
uint256 private _status;
constructor() {
_status = _NOT_ENTERED;
}
/**
* @dev Prevents a contract from calling itself, directly or indirectly.
* Calling a `nonReentrant` function from another `nonReentrant`
* function is not supported. It is possible to prevent this from happening
* by making the `nonReentrant` function external, and make it call a
* `private` function that does the actual work.
*/
modifier nonReentrant() {
// On the first call to nonReentrant, _notEntered will be true
require(_status != _ENTERED, "ReentrancyGuard: reentrant call");
// Any calls to nonReentrant after this point will fail
_status = _ENTERED;
_;
// By storing the original value once again, a refund is triggered (see
// https://eips.ethereum.org/EIPS/eip-2200)
_status = _NOT_ENTERED;
}
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
import "./IERC1155.sol";
import "./IERC1155Receiver.sol";
import "./extensions/IERC1155MetadataURI.sol";
import "../../utils/Address.sol";
import "../../utils/Context.sol";
import "../../utils/introspection/ERC165.sol";
/**
* @dev Implementation of the basic standard multi-token.
* See https://eips.ethereum.org/EIPS/eip-1155
* Originally based on code by Enjin: https://github.com/enjin/erc-1155
*
* _Available since v3.1._
*/
contract ERC1155 is Context, ERC165, IERC1155, IERC1155MetadataURI {
using Address for address;
// Mapping from token ID to account balances
mapping(uint256 => mapping(address => uint256)) private _balances;
// Mapping from account to operator approvals
mapping(address => mapping(address => bool)) private _operatorApprovals;
// Used as the URI for all token types by relying on ID substitution, e.g. https://token-cdn-domain/{id}.json
string private _uri;
/**
* @dev See {_setURI}.
*/
constructor(string memory uri_) {
_setURI(uri_);
}
/**
* @dev See {IERC165-supportsInterface}.
*/
function supportsInterface(bytes4 interfaceId) public view virtual override(ERC165, IERC165) returns (bool) {
return
interfaceId == type(IERC1155).interfaceId ||
interfaceId == type(IERC1155MetadataURI).interfaceId ||
super.supportsInterface(interfaceId);
}
/**
* @dev See {IERC1155MetadataURI-uri}.
*
* This implementation returns the same URI for *all* token types. It relies
* on the token type ID substitution mechanism
* https://eips.ethereum.org/EIPS/eip-1155#metadata[defined in the EIP].
*
* Clients calling this function must replace the `\{id\}` substring with the
* actual token type ID.
*/
function uri(uint256) public view virtual override returns (string memory) {
return _uri;
}
/**
* @dev See {IERC1155-balanceOf}.
*
* Requirements:
*
* - `account` cannot be the zero address.
*/
function balanceOf(address account, uint256 id) public view virtual override returns (uint256) {
require(account != address(0), "ERC1155: balance query for the zero address");
return _balances[id][account];
}
/**
* @dev See {IERC1155-balanceOfBatch}.
*
* Requirements:
*
* - `accounts` and `ids` must have the same length.
*/
function balanceOfBatch(address[] memory accounts, uint256[] memory ids)
public
view
virtual
override
returns (uint256[] memory)
{
require(accounts.length == ids.length, "ERC1155: accounts and ids length mismatch");
uint256[] memory batchBalances = new uint256[](accounts.length);
for (uint256 i = 0; i < accounts.length; ++i) {
batchBalances[i] = balanceOf(accounts[i], ids[i]);
}
return batchBalances;
}
/**
* @dev See {IERC1155-setApprovalForAll}.
*/
function setApprovalForAll(address operator, bool approved) public virtual override {
require(_msgSender() != operator, "ERC1155: setting approval status for self");
_operatorApprovals[_msgSender()][operator] = approved;
emit ApprovalForAll(_msgSender(), operator, approved);
}
/**
* @dev See {IERC1155-isApprovedForAll}.
*/
function isApprovedForAll(address account, address operator) public view virtual override returns (bool) {
return _operatorApprovals[account][operator];
}
/**
* @dev See {IERC1155-safeTransferFrom}.
*/
function safeTransferFrom(
address from,
address to,
uint256 id,
uint256 amount,
bytes memory data
) public virtual override {
require(
from == _msgSender() || isApprovedForAll(from, _msgSender()),
"ERC1155: caller is not owner nor approved"
);
_safeTransferFrom(from, to, id, amount, data);
}
/**
* @dev See {IERC1155-safeBatchTransferFrom}.
*/
function safeBatchTransferFrom(
address from,
address to,
uint256[] memory ids,
uint256[] memory amounts,
bytes memory data
) public virtual override {
require(
from == _msgSender() || isApprovedForAll(from, _msgSender()),
"ERC1155: transfer caller is not owner nor approved"
);
_safeBatchTransferFrom(from, to, ids, amounts, data);
}
/**
* @dev Transfers `amount` tokens of token type `id` from `from` to `to`.
*
* Emits a {TransferSingle} event.
*
* Requirements:
*
* - `to` cannot be the zero address.
* - `from` must have a balance of tokens of type `id` of at least `amount`.
* - If `to` refers to a smart contract, it must implement {IERC1155Receiver-onERC1155Received} and return the
* acceptance magic value.
*/
function _safeTransferFrom(
address from,
address to,
uint256 id,
uint256 amount,
bytes memory data
) internal virtual {
require(to != address(0), "ERC1155: transfer to the zero address");
address operator = _msgSender();
_beforeTokenTransfer(operator, from, to, _asSingletonArray(id), _asSingletonArray(amount), data);
uint256 fromBalance = _balances[id][from];
require(fromBalance >= amount, "ERC1155: insufficient balance for transfer");
unchecked {
_balances[id][from] = fromBalance - amount;
}
_balances[id][to] += amount;
emit TransferSingle(operator, from, to, id, amount);
_doSafeTransferAcceptanceCheck(operator, from, to, id, amount, data);
}
/**
* @dev xref:ROOT:erc1155.adoc#batch-operations[Batched] version of {_safeTransferFrom}.
*
* Emits a {TransferBatch} event.
*
* Requirements:
*
* - If `to` refers to a smart contract, it must implement {IERC1155Receiver-onERC1155BatchReceived} and return the
* acceptance magic value.
*/
function _safeBatchTransferFrom(
address from,
address to,
uint256[] memory ids,
uint256[] memory amounts,
bytes memory data
) internal virtual {
require(ids.length == amounts.length, "ERC1155: ids and amounts length mismatch");
require(to != address(0), "ERC1155: transfer to the zero address");
address operator = _msgSender();
_beforeTokenTransfer(operator, from, to, ids, amounts, data);
for (uint256 i = 0; i < ids.length; ++i) {
uint256 id = ids[i];
uint256 amount = amounts[i];
uint256 fromBalance = _balances[id][from];
require(fromBalance >= amount, "ERC1155: insufficient balance for transfer");
unchecked {
_balances[id][from] = fromBalance - amount;
}
_balances[id][to] += amount;
}
emit TransferBatch(operator, from, to, ids, amounts);
_doSafeBatchTransferAcceptanceCheck(operator, from, to, ids, amounts, data);
}
/**
* @dev Sets a new URI for all token types, by relying on the token type ID
* substitution mechanism
* https://eips.ethereum.org/EIPS/eip-1155#metadata[defined in the EIP].
*
* By this mechanism, any occurrence of the `\{id\}` substring in either the
* URI or any of the amounts in the JSON file at said URI will be replaced by
* clients with the token type ID.
*
* For example, the `https://token-cdn-domain/\{id\}.json` URI would be
* interpreted by clients as
* `https://token-cdn-domain/000000000000000000000000000000000000000000000000000000000004cce0.json`
* for token type ID 0x4cce0.
*
* See {uri}.
*
* Because these URIs cannot be meaningfully represented by the {URI} event,
* this function emits no events.
*/
function _setURI(string memory newuri) internal virtual {
_uri = newuri;
}
/**
* @dev Creates `amount` tokens of token type `id`, and assigns them to `account`.
*
* Emits a {TransferSingle} event.
*
* Requirements:
*
* - `account` cannot be the zero address.
* - If `account` refers to a smart contract, it must implement {IERC1155Receiver-onERC1155Received} and return the
* acceptance magic value.
*/
function _mint(
address account,
uint256 id,
uint256 amount,
bytes memory data
) internal virtual {
require(account != address(0), "ERC1155: mint to the zero address");
address operator = _msgSender();
_beforeTokenTransfer(operator, address(0), account, _asSingletonArray(id), _asSingletonArray(amount), data);
_balances[id][account] += amount;
emit TransferSingle(operator, address(0), account, id, amount);
_doSafeTransferAcceptanceCheck(operator, address(0), account, id, amount, data);
}
/**
* @dev xref:ROOT:erc1155.adoc#batch-operations[Batched] version of {_mint}.
*
* Requirements:
*
* - `ids` and `amounts` must have the same length.
* - If `to` refers to a smart contract, it must implement {IERC1155Receiver-onERC1155BatchReceived} and return the
* acceptance magic value.
*/
function _mintBatch(
address to,
uint256[] memory ids,
uint256[] memory amounts,
bytes memory data
) internal virtual {
require(to != address(0), "ERC1155: mint to the zero address");
require(ids.length == amounts.length, "ERC1155: ids and amounts length mismatch");
address operator = _msgSender();
_beforeTokenTransfer(operator, address(0), to, ids, amounts, data);
for (uint256 i = 0; i < ids.length; i++) {
_balances[ids[i]][to] += amounts[i];
}
emit TransferBatch(operator, address(0), to, ids, amounts);
_doSafeBatchTransferAcceptanceCheck(operator, address(0), to, ids, amounts, data);
}
/**
* @dev Destroys `amount` tokens of token type `id` from `account`
*
* Requirements:
*
* - `account` cannot be the zero address.
* - `account` must have at least `amount` tokens of token type `id`.
*/
function _burn(
address account,
uint256 id,
uint256 amount
) internal virtual {
require(account != address(0), "ERC1155: burn from the zero address");
address operator = _msgSender();
_beforeTokenTransfer(operator, account, address(0), _asSingletonArray(id), _asSingletonArray(amount), "");
uint256 accountBalance = _balances[id][account];
require(accountBalance >= amount, "ERC1155: burn amount exceeds balance");
unchecked {
_balances[id][account] = accountBalance - amount;
}
emit TransferSingle(operator, account, address(0), id, amount);
}
/**
* @dev xref:ROOT:erc1155.adoc#batch-operations[Batched] version of {_burn}.
*
* Requirements:
*
* - `ids` and `amounts` must have the same length.
*/
function _burnBatch(
address account,
uint256[] memory ids,
uint256[] memory amounts
) internal virtual {
require(account != address(0), "ERC1155: burn from the zero address");
require(ids.length == amounts.length, "ERC1155: ids and amounts length mismatch");
address operator = _msgSender();
_beforeTokenTransfer(operator, account, address(0), ids, amounts, "");
for (uint256 i = 0; i < ids.length; i++) {
uint256 id = ids[i];
uint256 amount = amounts[i];
uint256 accountBalance = _balances[id][account];
require(accountBalance >= amount, "ERC1155: burn amount exceeds balance");
unchecked {
_balances[id][account] = accountBalance - amount;
}
}
emit TransferBatch(operator, account, address(0), ids, amounts);
}
/**
* @dev Hook that is called before any token transfer. This includes minting
* and burning, as well as batched variants.
*
* The same hook is called on both single and batched variants. For single
* transfers, the length of the `id` and `amount` arrays will be 1.
*
* Calling conditions (for each `id` and `amount` pair):
*
* - When `from` and `to` are both non-zero, `amount` of ``from``'s tokens
* of token type `id` will be transferred to `to`.
* - When `from` is zero, `amount` tokens of token type `id` will be minted
* for `to`.
* - when `to` is zero, `amount` of ``from``'s tokens of token type `id`
* will be burned.
* - `from` and `to` are never both zero.
* - `ids` and `amounts` have the same, non-zero length.
*
* To learn more about hooks, head to xref:ROOT:extending-contracts.adoc#using-hooks[Using Hooks].
*/
function _beforeTokenTransfer(
address operator,
address from,
address to,
uint256[] memory ids,
uint256[] memory amounts,
bytes memory data
) internal virtual {}
function _doSafeTransferAcceptanceCheck(
address operator,
address from,
address to,
uint256 id,
uint256 amount,
bytes memory data
) private {
if (to.isContract()) {
try IERC1155Receiver(to).onERC1155Received(operator, from, id, amount, data) returns (bytes4 response) {
if (response != IERC1155Receiver(to).onERC1155Received.selector) {
revert("ERC1155: ERC1155Receiver rejected tokens");
}
} catch Error(string memory reason) {
revert(reason);
} catch {
revert("ERC1155: transfer to non ERC1155Receiver implementer");
}
}
}
function _doSafeBatchTransferAcceptanceCheck(
address operator,
address from,
address to,
uint256[] memory ids,
uint256[] memory amounts,
bytes memory data
) private {
if (to.isContract()) {
try IERC1155Receiver(to).onERC1155BatchReceived(operator, from, ids, amounts, data) returns (
bytes4 response
) {
if (response != IERC1155Receiver(to).onERC1155BatchReceived.selector) {
revert("ERC1155: ERC1155Receiver rejected tokens");
}
} catch Error(string memory reason) {
revert(reason);
} catch {
revert("ERC1155: transfer to non ERC1155Receiver implementer");
}
}
}
function _asSingletonArray(uint256 element) private pure returns (uint256[] memory) {
uint256[] memory array = new uint256[](1);
array[0] = element;
return array;
}
}// SPDX-License-Identifier: GNU-GPL v3.0 or later
pragma solidity ^0.8.0;
interface IMetadataHandler {
function getTokenURI(uint fnftId) external view returns (string memory );
function setTokenURI(uint fnftId, string memory _uri) external;
function getRenderTokenURI(
uint tokenId,
address owner
) external view returns (
string memory baseRenderURI,
string[] memory parameters
);
function setRenderTokenURI(
uint tokenID,
string memory baseRenderURI
) external;
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
import "../../utils/introspection/IERC165.sol";
/**
* @dev Required interface of an ERC1155 compliant contract, as defined in the
* https://eips.ethereum.org/EIPS/eip-1155[EIP].
*
* _Available since v3.1._
*/
interface IERC1155 is IERC165 {
/**
* @dev Emitted when `value` tokens of token type `id` are transferred from `from` to `to` by `operator`.
*/
event TransferSingle(address indexed operator, address indexed from, address indexed to, uint256 id, uint256 value);
/**
* @dev Equivalent to multiple {TransferSingle} events, where `operator`, `from` and `to` are the same for all
* transfers.
*/
event TransferBatch(
address indexed operator,
address indexed from,
address indexed to,
uint256[] ids,
uint256[] values
);
/**
* @dev Emitted when `account` grants or revokes permission to `operator` to transfer their tokens, according to
* `approved`.
*/
event ApprovalForAll(address indexed account, address indexed operator, bool approved);
/**
* @dev Emitted when the URI for token type `id` changes to `value`, if it is a non-programmatic URI.
*
* If an {URI} event was emitted for `id`, the standard
* https://eips.ethereum.org/EIPS/eip-1155#metadata-extensions[guarantees] that `value` will equal the value
* returned by {IERC1155MetadataURI-uri}.
*/
event URI(string value, uint256 indexed id);
/**
* @dev Returns the amount of tokens of token type `id` owned by `account`.
*
* Requirements:
*
* - `account` cannot be the zero address.
*/
function balanceOf(address account, uint256 id) external view returns (uint256);
/**
* @dev xref:ROOT:erc1155.adoc#batch-operations[Batched] version of {balanceOf}.
*
* Requirements:
*
* - `accounts` and `ids` must have the same length.
*/
function balanceOfBatch(address[] calldata accounts, uint256[] calldata ids)
external
view
returns (uint256[] memory);
/**
* @dev Grants or revokes permission to `operator` to transfer the caller's tokens, according to `approved`,
*
* Emits an {ApprovalForAll} event.
*
* Requirements:
*
* - `operator` cannot be the caller.
*/
function setApprovalForAll(address operator, bool approved) external;
/**
* @dev Returns true if `operator` is approved to transfer ``account``'s tokens.
*
* See {setApprovalForAll}.
*/
function isApprovedForAll(address account, address operator) external view returns (bool);
/**
* @dev Transfers `amount` tokens of token type `id` from `from` to `to`.
*
* Emits a {TransferSingle} event.
*
* Requirements:
*
* - `to` cannot be the zero address.
* - If the caller is not `from`, it must be have been approved to spend ``from``'s tokens via {setApprovalForAll}.
* - `from` must have a balance of tokens of type `id` of at least `amount`.
* - If `to` refers to a smart contract, it must implement {IERC1155Receiver-onERC1155Received} and return the
* acceptance magic value.
*/
function safeTransferFrom(
address from,
address to,
uint256 id,
uint256 amount,
bytes calldata data
) external;
/**
* @dev xref:ROOT:erc1155.adoc#batch-operations[Batched] version of {safeTransferFrom}.
*
* Emits a {TransferBatch} event.
*
* Requirements:
*
* - `ids` and `amounts` must have the same length.
* - If `to` refers to a smart contract, it must implement {IERC1155Receiver-onERC1155BatchReceived} and return the
* acceptance magic value.
*/
function safeBatchTransferFrom(
address from,
address to,
uint256[] calldata ids,
uint256[] calldata amounts,
bytes calldata data
) external;
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
import "../../utils/introspection/IERC165.sol";
/**
* @dev _Available since v3.1._
*/
interface IERC1155Receiver is IERC165 {
/**
@dev Handles the receipt of a single ERC1155 token type. This function is
called at the end of a `safeTransferFrom` after the balance has been updated.
To accept the transfer, this must return
`bytes4(keccak256("onERC1155Received(address,address,uint256,uint256,bytes)"))`
(i.e. 0xf23a6e61, or its own function selector).
@param operator The address which initiated the transfer (i.e. msg.sender)
@param from The address which previously owned the token
@param id The ID of the token being transferred
@param value The amount of tokens being transferred
@param data Additional data with no specified format
@return `bytes4(keccak256("onERC1155Received(address,address,uint256,uint256,bytes)"))` if transfer is allowed
*/
function onERC1155Received(
address operator,
address from,
uint256 id,
uint256 value,
bytes calldata data
) external returns (bytes4);
/**
@dev Handles the receipt of a multiple ERC1155 token types. This function
is called at the end of a `safeBatchTransferFrom` after the balances have
been updated. To accept the transfer(s), this must return
`bytes4(keccak256("onERC1155BatchReceived(address,address,uint256[],uint256[],bytes)"))`
(i.e. 0xbc197c81, or its own function selector).
@param operator The address which initiated the batch transfer (i.e. msg.sender)
@param from The address which previously owned the token
@param ids An array containing ids of each token being transferred (order and length must match values array)
@param values An array containing amounts of each token being transferred (order and length must match ids array)
@param data Additional data with no specified format
@return `bytes4(keccak256("onERC1155BatchReceived(address,address,uint256[],uint256[],bytes)"))` if transfer is allowed
*/
function onERC1155BatchReceived(
address operator,
address from,
uint256[] calldata ids,
uint256[] calldata values,
bytes calldata data
) external returns (bytes4);
}// SPDX-License-Identifier: MIT
pragma solidity ^0.8.0;
import "../IERC1155.sol";
/**
* @dev Interface of the optional ERC1155MetadataExtension interface, as defined
* in the https://eips.ethereum.org/EIPS/eip-1155#metadata-extensions[EIP].
*
* _Available since v3.1._
*/
interface IERC1155MetadataURI is IERC1155 {
/**
* @dev Returns the URI for token type `id`.
*
* If the `\{id\}` substring is present in the URI, it must be replaced by
* clients with the actual token type ID.
*/
function uri(uint256 id) external view returns (string memory);
}{
"optimizer": {
"enabled": true,
"runs": 10000
},
"outputSelection": {
"*": {
"*": [
"evm.bytecode",
"evm.deployedBytecode",
"abi"
]
}
},
"metadata": {
"useLiteralContent": true
},
"libraries": {}
}Contract Security Audit
- No Contract Security Audit Submitted- Submit Audit Here
Contract ABI
API[{"inputs":[{"internalType":"address","name":"provider","type":"address"},{"internalType":"address","name":"weth","type":"address"}],"stateMutability":"nonpayable","type":"constructor"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"from","type":"address"},{"indexed":true,"internalType":"uint256","name":"newFNFTId","type":"uint256"},{"indexed":true,"internalType":"uint256","name":"quantity","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"amount","type":"uint256"}],"name":"FNFTAddionalDeposited","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"asset","type":"address"},{"indexed":true,"internalType":"address","name":"from","type":"address"},{"indexed":true,"internalType":"uint256","name":"fnftId","type":"uint256"},{"indexed":false,"internalType":"address","name":"trigger","type":"address"},{"indexed":false,"internalType":"uint256[]","name":"quantities","type":"uint256[]"},{"components":[{"internalType":"address","name":"asset","type":"address"},{"internalType":"address","name":"pipeToContract","type":"address"},{"internalType":"uint256","name":"depositAmount","type":"uint256"},{"internalType":"uint256","name":"depositMul","type":"uint256"},{"internalType":"uint256","name":"split","type":"uint256"},{"internalType":"uint256","name":"depositStopTime","type":"uint256"},{"internalType":"bool","name":"maturityExtension","type":"bool"},{"internalType":"bool","name":"isMulti","type":"bool"},{"internalType":"bool","name":"nontransferrable","type":"bool"}],"indexed":false,"internalType":"struct IRevest.FNFTConfig","name":"fnftConfig","type":"tuple"}],"name":"FNFTAddressLockMinted","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"from","type":"address"},{"indexed":true,"internalType":"uint256","name":"fnftId","type":"uint256"},{"indexed":true,"internalType":"uint256","name":"newExtendedTime","type":"uint256"}],"name":"FNFTMaturityExtended","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"from","type":"address"},{"indexed":true,"internalType":"uint256[]","name":"newFNFTId","type":"uint256[]"},{"indexed":true,"internalType":"uint256[]","name":"proportions","type":"uint256[]"},{"indexed":false,"internalType":"uint256","name":"quantity","type":"uint256"}],"name":"FNFTSplit","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"asset","type":"address"},{"indexed":true,"internalType":"address","name":"from","type":"address"},{"indexed":true,"internalType":"uint256","name":"fnftId","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"endTime","type":"uint256"},{"indexed":false,"internalType":"uint256[]","name":"quantities","type":"uint256[]"},{"components":[{"internalType":"address","name":"asset","type":"address"},{"internalType":"address","name":"pipeToContract","type":"address"},{"internalType":"uint256","name":"depositAmount","type":"uint256"},{"internalType":"uint256","name":"depositMul","type":"uint256"},{"internalType":"uint256","name":"split","type":"uint256"},{"internalType":"uint256","name":"depositStopTime","type":"uint256"},{"internalType":"bool","name":"maturityExtension","type":"bool"},{"internalType":"bool","name":"isMulti","type":"bool"},{"internalType":"bool","name":"nontransferrable","type":"bool"}],"indexed":false,"internalType":"struct IRevest.FNFTConfig","name":"fnftConfig","type":"tuple"}],"name":"FNFTTimeLockMinted","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"from","type":"address"},{"indexed":true,"internalType":"uint256","name":"fnftId","type":"uint256"}],"name":"FNFTUnlocked","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"primaryAsset","type":"address"},{"indexed":true,"internalType":"address","name":"from","type":"address"},{"indexed":true,"internalType":"uint256","name":"fnftId","type":"uint256"},{"indexed":false,"internalType":"address","name":"compareTo","type":"address"},{"indexed":false,"internalType":"address","name":"oracleDispatch","type":"address"},{"indexed":false,"internalType":"uint256[]","name":"quantities","type":"uint256[]"},{"components":[{"internalType":"address","name":"asset","type":"address"},{"internalType":"address","name":"pipeToContract","type":"address"},{"internalType":"uint256","name":"depositAmount","type":"uint256"},{"internalType":"uint256","name":"depositMul","type":"uint256"},{"internalType":"uint256","name":"split","type":"uint256"},{"internalType":"uint256","name":"depositStopTime","type":"uint256"},{"internalType":"bool","name":"maturityExtension","type":"bool"},{"internalType":"bool","name":"isMulti","type":"bool"},{"internalType":"bool","name":"nontransferrable","type":"bool"}],"indexed":false,"internalType":"struct IRevest.FNFTConfig","name":"fnftConfig","type":"tuple"}],"name":"FNFTValueLockMinted","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"from","type":"address"},{"indexed":true,"internalType":"uint256","name":"fnftId","type":"uint256"},{"indexed":true,"internalType":"uint256","name":"quantity","type":"uint256"}],"name":"FNFTWithdrawn","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"previousOwner","type":"address"},{"indexed":true,"internalType":"address","name":"newOwner","type":"address"}],"name":"OwnershipTransferred","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"},{"inputs":[],"name":"ADDRESS_LOCK_INTERFACE_ID","outputs":[{"internalType":"bytes4","name":"","type":"bytes4"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"DEFAULT_ADMIN_ROLE","outputs":[{"internalType":"bytes32","name":"","type":"bytes32"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"PAUSER_ROLE","outputs":[{"internalType":"bytes32","name":"","type":"bytes32"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"fnftId","type":"uint256"},{"internalType":"uint256","name":"amount","type":"uint256"},{"internalType":"uint256","name":"quantity","type":"uint256"}],"name":"depositAdditionalToFNFT","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"nonpayable","type":"function"},{"inputs":[],"name":"erc20Fee","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"fnftId","type":"uint256"},{"internalType":"uint256","name":"endTime","type":"uint256"}],"name":"extendFNFTMaturity","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"nonpayable","type":"function"},{"inputs":[],"name":"flatWeiFee","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"getAddressesProvider","outputs":[{"internalType":"contract IAddressRegistry","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"getERC20Fee","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"getFlatWeiFee","outputs":[{"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":[{"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":"trigger","type":"address"},{"internalType":"bytes","name":"arguments","type":"bytes"},{"internalType":"address[]","name":"recipients","type":"address[]"},{"internalType":"uint256[]","name":"quantities","type":"uint256[]"},{"components":[{"internalType":"address","name":"asset","type":"address"},{"internalType":"address","name":"pipeToContract","type":"address"},{"internalType":"uint256","name":"depositAmount","type":"uint256"},{"internalType":"uint256","name":"depositMul","type":"uint256"},{"internalType":"uint256","name":"split","type":"uint256"},{"internalType":"uint256","name":"depositStopTime","type":"uint256"},{"internalType":"bool","name":"maturityExtension","type":"bool"},{"internalType":"bool","name":"isMulti","type":"bool"},{"internalType":"bool","name":"nontransferrable","type":"bool"}],"internalType":"struct IRevest.FNFTConfig","name":"fnftConfig","type":"tuple"}],"name":"mintAddressLock","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"payable","type":"function"},{"inputs":[{"internalType":"uint256","name":"endTime","type":"uint256"},{"internalType":"address[]","name":"recipients","type":"address[]"},{"internalType":"uint256[]","name":"quantities","type":"uint256[]"},{"components":[{"internalType":"address","name":"asset","type":"address"},{"internalType":"address","name":"pipeToContract","type":"address"},{"internalType":"uint256","name":"depositAmount","type":"uint256"},{"internalType":"uint256","name":"depositMul","type":"uint256"},{"internalType":"uint256","name":"split","type":"uint256"},{"internalType":"uint256","name":"depositStopTime","type":"uint256"},{"internalType":"bool","name":"maturityExtension","type":"bool"},{"internalType":"bool","name":"isMulti","type":"bool"},{"internalType":"bool","name":"nontransferrable","type":"bool"}],"internalType":"struct IRevest.FNFTConfig","name":"fnftConfig","type":"tuple"}],"name":"mintTimeLock","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"payable","type":"function"},{"inputs":[{"internalType":"address","name":"primaryAsset","type":"address"},{"internalType":"address","name":"compareTo","type":"address"},{"internalType":"uint256","name":"unlockValue","type":"uint256"},{"internalType":"bool","name":"unlockRisingEdge","type":"bool"},{"internalType":"address","name":"oracleDispatch","type":"address"},{"internalType":"address[]","name":"recipients","type":"address[]"},{"internalType":"uint256[]","name":"quantities","type":"uint256[]"},{"components":[{"internalType":"address","name":"asset","type":"address"},{"internalType":"address","name":"pipeToContract","type":"address"},{"internalType":"uint256","name":"depositAmount","type":"uint256"},{"internalType":"uint256","name":"depositMul","type":"uint256"},{"internalType":"uint256","name":"split","type":"uint256"},{"internalType":"uint256","name":"depositStopTime","type":"uint256"},{"internalType":"bool","name":"maturityExtension","type":"bool"},{"internalType":"bool","name":"isMulti","type":"bool"},{"internalType":"bool","name":"nontransferrable","type":"bool"}],"internalType":"struct IRevest.FNFTConfig","name":"fnftConfig","type":"tuple"}],"name":"mintValueLock","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"payable","type":"function"},{"inputs":[],"name":"owner","outputs":[{"internalType":"address","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"renounceOwnership","outputs":[],"stateMutability":"nonpayable","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":"registry","type":"address"}],"name":"setAddressRegistry","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"erc20","type":"uint256"}],"name":"setERC20Fee","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"wethFee","type":"uint256"}],"name":"setFlatWeiFee","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"fnftId","type":"uint256"},{"internalType":"uint256[]","name":"proportions","type":"uint256[]"},{"internalType":"uint256","name":"quantity","type":"uint256"}],"name":"splitFNFT","outputs":[{"internalType":"uint256[]","name":"","type":"uint256[]"}],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"bytes4","name":"interfaceId","type":"bytes4"}],"name":"supportsInterface","outputs":[{"internalType":"bool","name":"","type":"bool"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"address","name":"newOwner","type":"address"}],"name":"transferOwnership","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"fnftId","type":"uint256"}],"name":"unlockFNFT","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"fnftId","type":"uint256"},{"internalType":"uint256","name":"quantity","type":"uint256"}],"name":"withdrawFNFT","outputs":[],"stateMutability":"nonpayable","type":"function"}]Contract Creation Code
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Constructor Arguments (ABI-Encoded and is the last bytes of the Contract Creation Code above)
000000000000000000000000d721a90dd7e010c8c5e022cc0100c55ac78e0fc4000000000000000000000000c02aaa39b223fe8d0a0e5c4f27ead9083c756cc2
-----Decoded View---------------
Arg [0] : provider (address): 0xD721A90dd7e010c8C5E022cc0100c55aC78E0FC4
Arg [1] : weth (address): 0xC02aaA39b223FE8D0A0e5C4F27eAD9083C756Cc2
-----Encoded View---------------
2 Constructor Arguments found :
Arg [0] : 000000000000000000000000d721a90dd7e010c8c5e022cc0100c55ac78e0fc4
Arg [1] : 000000000000000000000000c02aaa39b223fe8d0a0e5c4f27ead9083c756cc2
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Multichain Portfolio | 34 Chains
| Chain | Token | Portfolio % | Price | Amount | Value |
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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.