编译器
0.8.12+commit.f00d7308
文件 1 的 13:Address.sol
pragma solidity ^0.8.0;
library Address {
function isContract(address account) internal view returns (bool) {
uint256 size;
assembly {
size := extcodesize(account)
}
return size > 0;
}
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");
}
function functionCall(address target, bytes memory data) internal returns (bytes memory) {
return functionCall(target, data, "Address: low-level call failed");
}
function functionCall(
address target,
bytes memory data,
string memory errorMessage
) internal returns (bytes memory) {
return functionCallWithValue(target, data, 0, errorMessage);
}
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");
}
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);
}
function functionStaticCall(address target, bytes memory data) internal view returns (bytes memory) {
return functionStaticCall(target, data, "Address: low-level static call failed");
}
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);
}
function functionDelegateCall(address target, bytes memory data) internal returns (bytes memory) {
return functionDelegateCall(target, data, "Address: low-level delegate call failed");
}
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
) internal pure returns (bytes memory) {
if (success) {
return returndata;
} else {
if (returndata.length > 0) {
assembly {
let returndata_size := mload(returndata)
revert(add(32, returndata), returndata_size)
}
} else {
revert(errorMessage);
}
}
}
}
文件 2 的 13:Context.sol
pragma solidity ^0.8.0;
abstract contract Context {
function _msgSender() internal view virtual returns (address) {
return msg.sender;
}
function _msgData() internal view virtual returns (bytes calldata) {
return msg.data;
}
}
文件 3 的 13:ERC165.sol
pragma solidity ^0.8.0;
import "./IERC165.sol";
abstract contract ERC165 is IERC165 {
function supportsInterface(bytes4 interfaceId) public view virtual override returns (bool) {
return interfaceId == type(IERC165).interfaceId;
}
}
文件 4 的 13:ERC721.sol
pragma solidity ^0.8.0;
import "./IERC721.sol";
import "./IERC721Receiver.sol";
import "./extensions/IERC721Metadata.sol";
import "../../utils/Address.sol";
import "../../utils/Context.sol";
import "../../utils/Strings.sol";
import "../../utils/introspection/ERC165.sol";
contract ERC721 is Context, ERC165, IERC721, IERC721Metadata {
using Address for address;
using Strings for uint256;
string private _name;
string private _symbol;
mapping(uint256 => address) private _owners;
mapping(address => uint256) private _balances;
mapping(uint256 => address) private _tokenApprovals;
mapping(address => mapping(address => bool)) private _operatorApprovals;
constructor(string memory name_, string memory symbol_) {
_name = name_;
_symbol = symbol_;
}
function supportsInterface(bytes4 interfaceId) public view virtual override(ERC165, IERC165) returns (bool) {
return
interfaceId == type(IERC721).interfaceId ||
interfaceId == type(IERC721Metadata).interfaceId ||
super.supportsInterface(interfaceId);
}
function balanceOf(address owner) public view virtual override returns (uint256) {
require(owner != address(0), "ERC721: balance query for the zero address");
return _balances[owner];
}
function ownerOf(uint256 tokenId) public view virtual override returns (address) {
address owner = _owners[tokenId];
require(owner != address(0), "ERC721: owner query for nonexistent token");
return owner;
}
function name() public view virtual override returns (string memory) {
return _name;
}
function symbol() public view virtual override returns (string memory) {
return _symbol;
}
function tokenURI(uint256 tokenId) public view virtual override returns (string memory) {
require(_exists(tokenId), "ERC721Metadata: URI query for nonexistent token");
string memory baseURI = _baseURI();
return bytes(baseURI).length > 0 ? string(abi.encodePacked(baseURI, tokenId.toString())) : "";
}
function _baseURI() internal view virtual returns (string memory) {
return "";
}
function approve(address to, uint256 tokenId) public virtual override {
address owner = ERC721.ownerOf(tokenId);
require(to != owner, "ERC721: approval to current owner");
require(
_msgSender() == owner || isApprovedForAll(owner, _msgSender()),
"ERC721: approve caller is not owner nor approved for all"
);
_approve(to, tokenId);
}
function getApproved(uint256 tokenId) public view virtual override returns (address) {
require(_exists(tokenId), "ERC721: approved query for nonexistent token");
return _tokenApprovals[tokenId];
}
function setApprovalForAll(address operator, bool approved) public virtual override {
_setApprovalForAll(_msgSender(), operator, approved);
}
function isApprovedForAll(address owner, address operator) public view virtual override returns (bool) {
return _operatorApprovals[owner][operator];
}
function transferFrom(
address from,
address to,
uint256 tokenId
) public virtual override {
require(_isApprovedOrOwner(_msgSender(), tokenId), "ERC721: transfer caller is not owner nor approved");
_transfer(from, to, tokenId);
}
function safeTransferFrom(
address from,
address to,
uint256 tokenId
) public virtual override {
safeTransferFrom(from, to, tokenId, "");
}
function safeTransferFrom(
address from,
address to,
uint256 tokenId,
bytes memory _data
) public virtual override {
require(_isApprovedOrOwner(_msgSender(), tokenId), "ERC721: transfer caller is not owner nor approved");
_safeTransfer(from, to, tokenId, _data);
}
function _safeTransfer(
address from,
address to,
uint256 tokenId,
bytes memory _data
) internal virtual {
_transfer(from, to, tokenId);
require(_checkOnERC721Received(from, to, tokenId, _data), "ERC721: transfer to non ERC721Receiver implementer");
}
function _exists(uint256 tokenId) internal view virtual returns (bool) {
return _owners[tokenId] != address(0);
}
function _isApprovedOrOwner(address spender, uint256 tokenId) internal view virtual returns (bool) {
require(_exists(tokenId), "ERC721: operator query for nonexistent token");
address owner = ERC721.ownerOf(tokenId);
return (spender == owner || getApproved(tokenId) == spender || isApprovedForAll(owner, spender));
}
function _safeMint(address to, uint256 tokenId) internal virtual {
_safeMint(to, tokenId, "");
}
function _safeMint(
address to,
uint256 tokenId,
bytes memory _data
) internal virtual {
_mint(to, tokenId);
require(
_checkOnERC721Received(address(0), to, tokenId, _data),
"ERC721: transfer to non ERC721Receiver implementer"
);
}
function _mint(address to, uint256 tokenId) internal virtual {
require(to != address(0), "ERC721: mint to the zero address");
require(!_exists(tokenId), "ERC721: token already minted");
_beforeTokenTransfer(address(0), to, tokenId);
_balances[to] += 1;
_owners[tokenId] = to;
emit Transfer(address(0), to, tokenId);
}
function _burn(uint256 tokenId) internal virtual {
address owner = ERC721.ownerOf(tokenId);
_beforeTokenTransfer(owner, address(0), tokenId);
_approve(address(0), tokenId);
_balances[owner] -= 1;
delete _owners[tokenId];
emit Transfer(owner, address(0), tokenId);
}
function _transfer(
address from,
address to,
uint256 tokenId
) internal virtual {
require(ERC721.ownerOf(tokenId) == from, "ERC721: transfer of token that is not own");
require(to != address(0), "ERC721: transfer to the zero address");
_beforeTokenTransfer(from, to, tokenId);
_approve(address(0), tokenId);
_balances[from] -= 1;
_balances[to] += 1;
_owners[tokenId] = to;
emit Transfer(from, to, tokenId);
}
function _approve(address to, uint256 tokenId) internal virtual {
_tokenApprovals[tokenId] = to;
emit Approval(ERC721.ownerOf(tokenId), to, tokenId);
}
function _setApprovalForAll(
address owner,
address operator,
bool approved
) internal virtual {
require(owner != operator, "ERC721: approve to caller");
_operatorApprovals[owner][operator] = approved;
emit ApprovalForAll(owner, operator, approved);
}
function _checkOnERC721Received(
address from,
address to,
uint256 tokenId,
bytes memory _data
) private returns (bool) {
if (to.isContract()) {
try IERC721Receiver(to).onERC721Received(_msgSender(), from, tokenId, _data) returns (bytes4 retval) {
return retval == IERC721Receiver.onERC721Received.selector;
} catch (bytes memory reason) {
if (reason.length == 0) {
revert("ERC721: transfer to non ERC721Receiver implementer");
} else {
assembly {
revert(add(32, reason), mload(reason))
}
}
}
} else {
return true;
}
}
function _beforeTokenTransfer(
address from,
address to,
uint256 tokenId
) internal virtual {}
}
文件 5 的 13:IERC165.sol
pragma solidity ^0.8.0;
interface IERC165 {
function supportsInterface(bytes4 interfaceId) external view returns (bool);
}
文件 6 的 13:IERC721.sol
pragma solidity ^0.8.0;
import "../../utils/introspection/IERC165.sol";
interface IERC721 is IERC165 {
event Transfer(address indexed from, address indexed to, uint256 indexed tokenId);
event Approval(address indexed owner, address indexed approved, uint256 indexed tokenId);
event ApprovalForAll(address indexed owner, address indexed operator, bool approved);
function balanceOf(address owner) external view returns (uint256 balance);
function ownerOf(uint256 tokenId) external view returns (address owner);
function safeTransferFrom(
address from,
address to,
uint256 tokenId
) external;
function transferFrom(
address from,
address to,
uint256 tokenId
) external;
function approve(address to, uint256 tokenId) external;
function getApproved(uint256 tokenId) external view returns (address operator);
function setApprovalForAll(address operator, bool _approved) external;
function isApprovedForAll(address owner, address operator) external view returns (bool);
function safeTransferFrom(
address from,
address to,
uint256 tokenId,
bytes calldata data
) external;
}
文件 7 的 13:IERC721Metadata.sol
pragma solidity ^0.8.0;
import "../IERC721.sol";
interface IERC721Metadata is IERC721 {
function name() external view returns (string memory);
function symbol() external view returns (string memory);
function tokenURI(uint256 tokenId) external view returns (string memory);
}
文件 8 的 13:IERC721Receiver.sol
pragma solidity ^0.8.0;
interface IERC721Receiver {
function onERC721Received(
address operator,
address from,
uint256 tokenId,
bytes calldata data
) external returns (bytes4);
}
文件 9 的 13:InternetMade.sol
pragma solidity >=0.8.9 <0.9.0;
import "@openzeppelin/contracts/token/ERC721/ERC721.sol";
import "@openzeppelin/contracts/access/Ownable.sol";
import "@openzeppelin/contracts/utils/cryptography/MerkleProof.sol";
import "@openzeppelin/contracts/security/ReentrancyGuard.sol";
contract InternetMade is ERC721, Ownable, ReentrancyGuard {
using Strings for uint256;
string public baseURI_0;
string public baseURI_1;
string public baseURI_2;
string public notRevealedURI;
string public PROVENANCE_0;
string public PROVENANCE_1;
string public PROVENANCE_2;
string public baseExtension = ".json";
bytes32 public merkleRoot;
mapping(address => bool) mintedFF;
mapping(address => uint8) amountMintedWhitelistPhase0;
mapping(address => uint8) amountMintedWhitelistPhase1;
mapping(address => uint8) amountMintedWhitelistPhase2;
uint256 public costWhitelistedFF = 0.00 ether;
uint256 public costWhitelisted = 0.10 ether;
uint256 public costPublicSale = 0.15 ether;
uint16 public totalSupply = 0;
uint16 public maxSupply = 9999;
uint16 public phaseMaxSupply0 = 3333;
uint16 public phaseMaxSupply1 = 3333;
uint16 public maxMintAmountWhitelistFF = 1;
uint16 public maxMintAmountWhitelist = 2;
uint16 public maxMintAmount = 2;
uint8 public revealedPhasesCount = 0;
uint8 public phase = 0;
bool public paused = false;
bool public frozenMetadata = false;
bool public onlyWhitelistedFF = true;
bool public onlyWhitelisted = false;
bool public onlyPublicSale = false;
constructor(
string memory _name,
string memory _symbol,
string memory _initNotRevealedURI
) ERC721(_name, _symbol) {
setNotRevealedURI(_initNotRevealedURI);
}
function mintWhitelistedFF(uint8 _mintAmount, bytes32[] calldata _merkleProof) external payable {
require(onlyWhitelistedFF, "onlyWhitelistedFF is not active");
require(isWhitelisted(msg.sender, _merkleProof), "You are not FF whitelisted");
require(mintedFF[msg.sender] == false, "You already minted");
require(balanceOf(msg.sender) + _mintAmount <= maxMintAmountWhitelistFF, "Max allowed mint amount exceeded for FF whitelist");
require(msg.value >= costWhitelistedFF * _mintAmount, "Insufficient ETH amount");
mintedFF[msg.sender] = true;
_mint(_mintAmount);
}
function mintWhitelisted(uint8 _mintAmount, bytes32[] calldata _merkleProof) external payable {
require(onlyWhitelisted, "onlyWhitelisted is not active");
require(isWhitelisted(msg.sender, _merkleProof), "You are not whitelisted");
uint8 amountMinted = 0;
uint8 _phase = phase;
if (_phase == 0) {
amountMinted = amountMintedWhitelistPhase0[msg.sender];
} else if (_phase == 1) {
amountMinted = amountMintedWhitelistPhase1[msg.sender];
} else {
amountMinted = amountMintedWhitelistPhase2[msg.sender];
}
require(amountMinted + _mintAmount <= maxMintAmountWhitelist, "Max allowed mint amount exceeded for whitelist");
require(msg.value >= costWhitelisted * _mintAmount, "Insufficient ETH amount");
if (_phase == 0) {
amountMintedWhitelistPhase0[msg.sender] += _mintAmount;
} else if (_phase == 1) {
amountMintedWhitelistPhase1[msg.sender] += _mintAmount;
} else {
amountMintedWhitelistPhase2[msg.sender] += _mintAmount;
}
_mint(_mintAmount);
}
function mintPublicSale(uint8 _mintAmount) external payable {
require(onlyPublicSale, "onlyPublicSale is not active");
require(_mintAmount <= maxMintAmount, "Max allowed mint amount exceeded for PublicSale");
require(msg.value >= costPublicSale * _mintAmount, "Insufficient ETH amount");
_mint(_mintAmount);
}
function mintOnlyOwner(uint8 _mintAmount) external payable onlyOwner {
_mint(_mintAmount);
}
function isWhitelisted(address _user, bytes32[] calldata _merkleProof) public view returns (bool) {
bytes32 leaf = keccak256(abi.encodePacked(_user));
return MerkleProof.verify(_merkleProof, merkleRoot, leaf);
}
function tokenURI(uint256 tokenId) public view virtual override returns (string memory) {
require(_exists(tokenId), "tokenId does not exist");
if (!isPhaseRevealed(getPhaseForTokenId(tokenId))) {
return notRevealedURI;
}
string memory baseURI = _baseURI(getPhaseForTokenId(tokenId));
return bytes(baseURI).length > 0 ? string(abi.encodePacked(baseURI, tokenId.toString(), baseExtension)) : "";
}
function _mint(uint8 _mintAmount) internal {
require(!paused, "Please wait until unpaused");
require(_mintAmount > 0, "Need to mint more than 0");
require(totalSupply + _mintAmount <= phaseMaxSupply(), "Max allowed supply exceeded");
require(totalSupply + _mintAmount <= maxSupply, "Not enough NFTs left to mint that many!");
for (uint8 i = 1; i <= _mintAmount; i++) {
incrementTotalSupply();
_safeMint(msg.sender, totalSupply);
}
}
function getPhaseForTokenId(uint256 tokenId) public view returns (uint8) {
if (tokenId <= phaseMaxSupply0) return 0;
if (tokenId <= phaseMaxSupply0 + phaseMaxSupply1) return 1;
return 2;
}
function isPhaseRevealed(uint8 _phase) internal view returns (bool) {
return _phase < revealedPhasesCount;
}
function _baseURI(uint8 _phase) internal view returns (string memory) {
if (_phase == 0) {
return baseURI_0;
}
if (_phase == 1) {
return baseURI_1;
}
return baseURI_2;
}
function incrementTotalSupply() internal {
totalSupply += 1;
}
function setBaseURI(string memory _newBaseURI, uint8 _phase) public onlyOwner validPhase(_phase) {
require(!frozenMetadata, "Metadata is frozen");
if (_phase == 0) {
baseURI_0 = _newBaseURI;
} else if (_phase == 1) {
baseURI_1 = _newBaseURI;
} else if (_phase == 2) {
baseURI_2 = _newBaseURI;
}
}
function setNotRevealedURI(string memory _notRevealedURI) public onlyOwner {
notRevealedURI = _notRevealedURI;
}
function setProvenanceHash(string memory _provenanceHash, uint8 _phase) public onlyOwner {
if (_phase == 0) {
PROVENANCE_0 = _provenanceHash;
} else if (_phase == 1) {
PROVENANCE_1 = _provenanceHash;
} else if (_phase == 2) {
PROVENANCE_2 = _provenanceHash;
}
}
function setBaseExtension(string memory _newBaseExtension) public onlyOwner {
baseExtension = _newBaseExtension;
}
function setPaused(bool _state) public onlyOwner {
paused = _state;
}
function unreveal() public onlyOwner {
revealedPhasesCount = 0;
}
function revealPhase0(string memory _baseURI_0) public onlyOwner {
revealedPhasesCount = 1;
if (!frozenMetadata) {
baseURI_0 = _baseURI_0;
}
}
function revealPhase1(string memory _baseURI_1) public onlyOwner {
revealedPhasesCount = 2;
if (!frozenMetadata) {
baseURI_1 = _baseURI_1;
}
}
function revealPhase2(string memory _baseURI_2) public onlyOwner {
revealedPhasesCount = 3;
if (!frozenMetadata) {
baseURI_2 = _baseURI_2;
}
}
function freezeMetadata() public onlyOwner {
require(bytes(baseURI_0).length > 0, "Base URI 0 is not set");
require(bytes(baseURI_1).length > 0, "Base URI 1 is not set");
require(bytes(baseURI_2).length > 0, "Base URI 2 is not set");
frozenMetadata = true;
}
function setPhase(uint8 _phase) public onlyOwner validPhase(_phase) {
phase = _phase;
}
modifier validPhase(uint8 _phase) {
require(_phase <= 2, "Phase must be 0, 1 or 2");
_;
}
function setOnlyWhitelistedFF() public onlyOwner {
onlyWhitelistedFF = true;
onlyWhitelisted = false;
onlyPublicSale = false;
}
function setOnlyWhitelisted() public onlyOwner {
onlyWhitelistedFF = false;
onlyWhitelisted = true;
onlyPublicSale = false;
}
function setOnlyPublicSale() public onlyOwner {
onlyWhitelistedFF = false;
onlyWhitelisted = false;
onlyPublicSale = true;
}
function setCostWhitelistedFF(uint256 _newCostWhitelistedFF) public onlyOwner {
costWhitelistedFF = _newCostWhitelistedFF;
}
function setCostWhitelisted(uint256 _newCostWhitelisted) public onlyOwner {
costWhitelisted = _newCostWhitelisted;
}
function setCostPublicSale(uint256 _newCostPublicSale) public onlyOwner {
costPublicSale = _newCostPublicSale;
}
function setMaxMintAmountWhitelistFF(uint16 _newMaxMintAmountWhitelistFF) public onlyOwner {
maxMintAmountWhitelistFF = _newMaxMintAmountWhitelistFF;
}
function setMaxMintAmountWhitelist(uint16 _newMaxMintAmountWhitelist) public onlyOwner {
maxMintAmountWhitelist = _newMaxMintAmountWhitelist;
}
function setMaxMintAmount(uint16 _newMaxMintAmount) public onlyOwner {
maxMintAmount = _newMaxMintAmount;
}
function setPhaseMaxSupply(uint8 _phase, uint16 _newPhaseMaxSupply) public onlyOwner {
if (_phase == 0) {
phaseMaxSupply0 = _newPhaseMaxSupply;
} else if (_phase == 1) {
phaseMaxSupply1 = _newPhaseMaxSupply;
}
}
function phaseMaxSupply() public view returns (uint16) {
return phase == 0 ? phaseMaxSupply0 : (phase == 1 ? phaseMaxSupply0 + phaseMaxSupply1 : maxSupply);
}
function setWhitelist(bytes32 _merkleRoot) external onlyOwner {
merkleRoot = _merkleRoot;
}
function withdraw() public payable onlyOwner nonReentrant {
(bool phunsuccess, ) = payable(0xdeF952AF6722e6b8af66Ceac00e0Bc1E1B32a447).call{value: (address(this).balance * 6) / 100}("");
require(phunsuccess);
(bool coldsuccess, ) = payable(0xa68e3E7861596646A8Dac4406D39677dEE099387).call{value: address(this).balance}("");
require(coldsuccess);
(bool os, ) = payable(owner()).call{value: address(this).balance}("");
require(os);
}
}
文件 10 的 13:MerkleProof.sol
pragma solidity ^0.8.0;
library MerkleProof {
function verify(
bytes32[] memory proof,
bytes32 root,
bytes32 leaf
) internal pure returns (bool) {
return processProof(proof, leaf) == root;
}
function processProof(bytes32[] memory proof, bytes32 leaf) internal pure returns (bytes32) {
bytes32 computedHash = leaf;
for (uint256 i = 0; i < proof.length; i++) {
bytes32 proofElement = proof[i];
if (computedHash <= proofElement) {
computedHash = keccak256(abi.encodePacked(computedHash, proofElement));
} else {
computedHash = keccak256(abi.encodePacked(proofElement, computedHash));
}
}
return computedHash;
}
}
文件 11 的 13:Ownable.sol
pragma solidity ^0.8.0;
import "../utils/Context.sol";
abstract contract Ownable is Context {
address private _owner;
event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);
constructor() {
_transferOwnership(_msgSender());
}
function owner() public view virtual returns (address) {
return _owner;
}
modifier onlyOwner() {
require(owner() == _msgSender(), "Ownable: caller is not the owner");
_;
}
function renounceOwnership() public virtual onlyOwner {
_transferOwnership(address(0));
}
function transferOwnership(address newOwner) public virtual onlyOwner {
require(newOwner != address(0), "Ownable: new owner is the zero address");
_transferOwnership(newOwner);
}
function _transferOwnership(address newOwner) internal virtual {
address oldOwner = _owner;
_owner = newOwner;
emit OwnershipTransferred(oldOwner, newOwner);
}
}
文件 12 的 13:ReentrancyGuard.sol
pragma solidity ^0.8.0;
abstract contract ReentrancyGuard {
uint256 private constant _NOT_ENTERED = 1;
uint256 private constant _ENTERED = 2;
uint256 private _status;
constructor() {
_status = _NOT_ENTERED;
}
modifier nonReentrant() {
require(_status != _ENTERED, "ReentrancyGuard: reentrant call");
_status = _ENTERED;
_;
_status = _NOT_ENTERED;
}
}
文件 13 的 13:Strings.sol
pragma solidity ^0.8.0;
library Strings {
bytes16 private constant _HEX_SYMBOLS = "0123456789abcdef";
function toString(uint256 value) internal pure returns (string memory) {
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);
}
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);
}
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);
}
}
{
"compilationTarget": {
"contracts/InternetMade.sol": "InternetMade"
},
"evmVersion": "london",
"libraries": {},
"metadata": {
"bytecodeHash": "ipfs"
},
"optimizer": {
"enabled": true,
"runs": 1337
},
"remappings": []
}
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