编译器
0.8.20+commit.a1b79de6
文件 1 的 5:ERC404_genesis.sol
pragma solidity ^0.8.0;
abstract contract Ownable {
event OwnershipTransferred(address indexed user, address indexed newOwner);
error Unauthorized();
error InvalidOwner();
address public _owner;
modifier onlyOwner() virtual {
if (msg.sender != _owner) revert Unauthorized();
_;
}
constructor(address __owner) {
if (__owner == address(0)) revert InvalidOwner();
_owner = __owner;
emit OwnershipTransferred(address(0), __owner);
}
function owner() public view returns (address) {
return _owner;
}
function transferOwnership(address __owner) public virtual onlyOwner {
if (_owner == address(0)) revert InvalidOwner();
_owner = __owner;
emit OwnershipTransferred(msg.sender, __owner);
}
function revokeOwnership() public virtual onlyOwner {
_owner = address(0);
emit OwnershipTransferred(msg.sender, address(0));
}
}
abstract contract ERC721Receiver {
function onERC721Received(
address,
address,
uint256,
bytes calldata
) external virtual returns (bytes4) {
return ERC721Receiver.onERC721Received.selector;
}
}
interface IUniswapV2Factory {
function createPair(
address tokenA,
address tokenB
) external returns (address pair);
}
interface IUniswapV2Router02 {
function factory() external pure returns (address);
function WETH() external pure returns (address);
function addLiquidityETH(
address token,
uint amountTokenDesired,
uint amountTokenMin,
uint amountETHMin,
address to,
uint deadline
)
external
payable
returns (uint amountToken, uint amountETH, uint liquidity);
}
interface IERC20 {
function totalSupply() external view returns (uint256);
function balanceOf(address account) external view returns (uint256);
function transfer(
address recipient,
uint256 amount
) external returns (bool);
function allowance(
address owner,
address spender
) external view returns (uint256);
function approve(address spender, uint256 amount) external returns (bool);
function transferFrom(
address sender,
address recipient,
uint256 amount
) external returns (bool);
event Transfer(address indexed from, address indexed to, uint256 value);
event Approval(
address indexed owner,
address indexed spender,
uint256 value
);
}
abstract contract ERC404 is Ownable {
event ERC20Transfer(
address indexed from,
address indexed to,
uint256 amount
);
event Approval(
address indexed owner,
address indexed spender,
uint256 amount
);
event Transfer(
address indexed from,
address indexed to,
uint256 indexed id
);
event ERC721Approval(
address indexed owner,
address indexed spender,
uint256 indexed id
);
event ApprovalForAll(
address indexed owner,
address indexed operator,
bool approved
);
error NotFound();
error AlreadyExists();
error InvalidRecipient();
error InvalidSender();
error UnsafeRecipient();
string public name;
string public symbol;
uint8 public immutable decimals;
uint256 public immutable totalSupply;
uint256 public minted;
mapping(address => uint256) public _balanceOf;
mapping(address => mapping(address => uint256)) public allowance;
mapping(uint256 => address) public getApproved;
mapping(address => mapping(address => bool)) public isApprovedForAll;
enum RARE {
Bronze,
Silver,
Gold,
Diamond
}
RARE public rareLevel;
struct OwnerAndRare {
address _owner;
RARE _rare;
}
struct RareLimitation {
uint16 _bronze;
uint16 _silver;
uint16 _gold;
uint16 _diamond;
}
RareLimitation internal _MaxRareLimitation;
RareLimitation internal _rareLimitation;
mapping(uint256 => OwnerAndRare) internal _ownerOf;
mapping(address => uint256[]) internal _owned;
mapping(uint256 => uint256) internal _ownedIndex;
mapping(address => bool) public whitelist;
struct contractInfo {
address uniswapV2Pair;
bool tradeEnabled;
bool mintEnabled;
uint8 buyLimitPercent;
}
contractInfo public cInfo;
constructor(
string memory _name,
string memory _symbol,
uint8 _decimals,
uint256 _totalNativeSupply,
address _owner
) Ownable(_owner) {
name = _name;
symbol = _symbol;
decimals = _decimals;
totalSupply = _totalNativeSupply * (10 ** decimals);
_MaxRareLimitation = RareLimitation(6000, 3000, 900, 100);
setWhitelist(_owner, true);
setWhitelist(address(this), true);
cInfo.buyLimitPercent = 1;
}
function balanceOf(address account) public view returns (uint256) {
return _balanceOf[account];
}
function enableMintERC721() public onlyOwner {
require(!cInfo.mintEnabled, "minting is already open");
cInfo.mintEnabled = true;
}
function enableTrade(address _router) public onlyOwner {
require(!cInfo.tradeEnabled, "trading is already open");
IUniswapV2Router02 uniswapV2Router = IUniswapV2Router02(_router);
allowance[address(this)][address(uniswapV2Router)] = totalSupply;
cInfo.uniswapV2Pair = IUniswapV2Factory(uniswapV2Router.factory())
.createPair(address(this), uniswapV2Router.WETH());
setWhitelist(cInfo.uniswapV2Pair, true);
uniswapV2Router.addLiquidityETH{value: address(this).balance}(
address(this),
balanceOf(address(this)),
0,
0,
owner(),
block.timestamp
);
IERC20(cInfo.uniswapV2Pair).approve(
address(uniswapV2Router),
type(uint).max
);
cInfo.tradeEnabled = true;
}
function setWhitelist(address target, bool state) public onlyOwner {
whitelist[target] = state;
}
function ownerOf(uint256 id) public view virtual returns (address owner) {
owner = _ownerOf[id]._owner;
if (owner == address(0)) {
revert NotFound();
}
}
function getOwned(address owner) external view returns (uint256[] memory) {
return _owned[owner];
}
function getOwnedCount(address owner) public view returns (uint256) {
return _owned[owner].length;
}
function rareOf(uint256 id) external view returns (RARE rare) {
rare = _ownerOf[id]._rare;
}
function setBuyLimitPercent(uint8 _percent) public onlyOwner {
if (_percent > 100) {
_percent = 100;
}
if (_percent == 0) {
_percent = 1;
}
cInfo.buyLimitPercent = _percent;
}
function getBuyLimit() public view returns (uint256) {
if (msg.sender == owner() || tx.origin == owner()) {
return totalSupply;
}
return (totalSupply * cInfo.buyLimitPercent) / 100;
}
function tokenURI(uint256 id) public view virtual returns (string memory);
function approve(
address spender,
uint256 amountOrId
) public virtual returns (bool) {
if (amountOrId <= minted && amountOrId > 0) {
address owner = _ownerOf[amountOrId]._owner;
if (msg.sender != owner && !isApprovedForAll[owner][msg.sender]) {
revert Unauthorized();
}
getApproved[amountOrId] = spender;
emit Approval(owner, spender, amountOrId);
} else {
allowance[msg.sender][spender] = amountOrId;
emit Approval(msg.sender, spender, amountOrId);
}
return true;
}
function setApprovalForAll(address operator, bool approved) external {
isApprovedForAll[msg.sender][operator] = approved;
emit ApprovalForAll(msg.sender, operator, approved);
}
function transferFrom(
address from,
address to,
uint256 amountOrId
) public virtual {
if (amountOrId <= minted) {
if (from != _ownerOf[amountOrId]._owner) {
revert InvalidSender();
}
if (to == address(0)) {
revert InvalidRecipient();
}
if (
msg.sender != from &&
!isApprovedForAll[from][msg.sender] &&
msg.sender != getApproved[amountOrId]
) {
revert Unauthorized();
}
_balanceOf[from] -= _getUnit();
unchecked {
_balanceOf[to] += _getUnit();
}
_ownerOf[amountOrId]._owner = to;
delete getApproved[amountOrId];
uint256 updatedId = _owned[from][_owned[from].length - 1];
_owned[from][_ownedIndex[amountOrId]] = updatedId;
_owned[from].pop();
_ownedIndex[updatedId] = _ownedIndex[amountOrId];
_owned[to].push(amountOrId);
_ownedIndex[amountOrId] = _owned[to].length - 1;
emit Transfer(from, to, amountOrId);
emit ERC20Transfer(from, to, _getUnit());
} else {
uint256 allowed = allowance[from][msg.sender];
if (allowed != type(uint256).max)
allowance[from][msg.sender] = allowed - amountOrId;
_transfer(from, to, amountOrId);
}
}
function transfer(
address to,
uint256 amount
) public virtual returns (bool) {
return _transfer(msg.sender, to, amount);
}
function safeTransferFrom(
address from,
address to,
uint256 id
) external virtual {
transferFrom(from, to, id);
if (
to.code.length != 0 &&
ERC721Receiver(to).onERC721Received(msg.sender, from, id, "") !=
ERC721Receiver.onERC721Received.selector
) {
revert UnsafeRecipient();
}
}
function safeTransferFrom(
address from,
address to,
uint256 id,
bytes calldata data
) external virtual {
transferFrom(from, to, id);
if (
to.code.length != 0 &&
ERC721Receiver(to).onERC721Received(msg.sender, from, id, data) !=
ERC721Receiver.onERC721Received.selector
) {
revert UnsafeRecipient();
}
}
function _transfer(
address from,
address to,
uint256 amount
) internal returns (bool) {
uint256 unit = _getUnit();
require(amount <= getBuyLimit(), "ERC20: buy limit exceeded");
_balanceOf[from] -= amount;
unchecked {
_balanceOf[to] += amount;
}
if (cInfo.mintEnabled && !whitelist[from]) {
if (getOwnedCount(from) >= (_balanceOf[from] / unit)) {
uint256 tokens_to_burn = getOwnedCount(from) -
(_balanceOf[from] / unit);
for (uint256 i = 0; i < tokens_to_burn; i++) {
_burn(from);
}
}
}
if (cInfo.mintEnabled && !whitelist[to]) {
uint256 tokens_to_mint = (_balanceOf[to] / unit) -
getOwnedCount(to);
for (uint256 i = 0; i < tokens_to_mint; i++) {
_mint(to);
}
}
emit ERC20Transfer(from, to, amount);
return true;
}
function _getUnit() internal view returns (uint256) {
return 22 * 10 ** decimals;
}
function _mint(address to) internal virtual {
if (to == address(0)) {
revert InvalidRecipient();
}
unchecked {
minted++;
}
uint256 id = minted;
if (_ownerOf[id]._owner != address(0)) {
revert AlreadyExists();
}
_ownerOf[id]._owner = to;
_ownerOf[id]._rare = _getRare(id);
_owned[to].push(id);
_ownedIndex[id] = _owned[to].length - 1;
emit Transfer(address(0), to, id);
}
function _getRare(uint256 id) internal returns (RARE getRare) {
uint16 rare = uint16(
bytes2(
keccak256(
abi.encodePacked(id, block.timestamp, block.prevrandao)
)
)
);
rare = rare % 10000;
if (rare <= 100) {
if (_rareLimitation._diamond + 1 < _MaxRareLimitation._diamond) {
_rareLimitation._diamond++;
return RARE.Diamond;
} else {
rare += 100;
}
} else if (rare <= 1000) {
if (_rareLimitation._gold + 1 < _MaxRareLimitation._gold) {
_rareLimitation._gold++;
return RARE.Gold;
} else {
rare += 1000;
}
} else if (rare <= 4000) {
if (_rareLimitation._silver + 1 < _MaxRareLimitation._silver) {
_rareLimitation._silver++;
return RARE.Silver;
} else {
rare += 4000;
}
} else if (rare <= 10000) {
if (_rareLimitation._bronze + 1 < _MaxRareLimitation._bronze) {
_rareLimitation._bronze++;
return RARE.Bronze;
} else {
revert("No rare left, which should not happen");
}
}
}
function _burn(address from) internal virtual {
if (from == address(0)) {
revert InvalidSender();
}
uint256 id = _owned[from][_owned[from].length - 1];
_owned[from].pop();
delete _ownedIndex[id];
delete _ownerOf[id];
delete getApproved[id];
_releaseRare(_ownerOf[id]._rare);
emit Transfer(from, address(0), id);
}
function _releaseRare(RARE _rare) internal {
if (_rare == RARE.Bronze) {
_rareLimitation._bronze--;
} else if (_rare == RARE.Silver) {
_rareLimitation._silver--;
} else if (_rare == RARE.Gold) {
_rareLimitation._gold--;
} else if (_rare == RARE.Diamond) {
_rareLimitation._diamond--;
}
}
function _setNameSymbol(
string memory _name,
string memory _symbol
) internal {
name = _name;
symbol = _symbol;
}
function rescureERC20(
address _token,
address _to,
uint256 _amount
) public onlyOwner {
IERC20(_token).transfer(_to, _amount);
}
function rescureETH(address _to, uint256 _amount) public onlyOwner {
(bool ok, ) = _to.call{value: _amount}("");
require(ok, "Transfer failed");
}
receive() external payable {}
fallback() external payable {}
}
文件 2 的 5:Genesis404.sol
pragma solidity ^0.8.0;
import "./ERC404_genesis.sol";
import "@openzeppelin/contracts/utils/Strings.sol";
contract Genesis404 is ERC404 {
string public dataURI;
string public baseTokenURI;
constructor() ERC404("Genesis404", "GN404", 18, 8893, msg.sender) {
_balanceOf[msg.sender] = 8893 * 10 ** 18;
dataURI = "https://bafybeiadg4eg7h6gtv2cxpliy7j6unkngdtghtvhugsru4pelspr2z6gaq.ipfs.w3s.link/";
}
function setDataURI(string memory _dataURI) public onlyOwner {
dataURI = _dataURI;
}
function setTokenURI(string memory _tokenURI) public onlyOwner {
baseTokenURI = _tokenURI;
}
function setNameSymbol(
string memory _name,
string memory _symbol
) public onlyOwner {
_setNameSymbol(_name, _symbol);
}
function tokenURI(uint256 id) public view override returns (string memory) {
if (bytes(baseTokenURI).length > 0) {
return string.concat(baseTokenURI, Strings.toString(id));
} else {
uint16 seed = uint8(this.rareOf(id));
string memory image;
string memory rare;
if (seed == 0) {
rare = "Bronze";
image = string.concat(dataURI, "bronze.gif");
} else if (seed == 1) {
rare = "Silver";
image = string.concat(dataURI, "silver.gif");
} else if (seed == 2){
rare = "Gold";
image = string.concat(dataURI, "gold.gif");
} else if (seed == 3){
rare = "Diamond";
image = string.concat(dataURI, "diamond.gif");
}
string memory jsonPreImage = string.concat(
string.concat(
string.concat('{"name": "Genesis404 #', Strings.toString(id)),
'","description":"A collection of 10,000 Replicants enabled by ERC404, an experimental token standard.","external_url":"https://genesis404.pro","image":"'
),
image
);
string memory jsonPostImage = string.concat(
'","attributes":[{"trait_type":"Rare","value":"',
rare
);
string memory jsonPostTraits = '"}]}';
return
string.concat(
"data:application/json;utf8,",
string.concat(
string.concat(jsonPreImage, jsonPostImage),
jsonPostTraits
)
);
}
}
}
文件 3 的 5:Math.sol
pragma solidity ^0.8.20;
library Math {
error MathOverflowedMulDiv();
enum Rounding {
Floor,
Ceil,
Trunc,
Expand
}
function tryAdd(uint256 a, uint256 b) internal pure returns (bool, uint256) {
unchecked {
uint256 c = a + b;
if (c < a) return (false, 0);
return (true, c);
}
}
function trySub(uint256 a, uint256 b) internal pure returns (bool, uint256) {
unchecked {
if (b > a) return (false, 0);
return (true, a - b);
}
}
function tryMul(uint256 a, uint256 b) internal pure returns (bool, uint256) {
unchecked {
if (a == 0) return (true, 0);
uint256 c = a * b;
if (c / a != b) return (false, 0);
return (true, c);
}
}
function tryDiv(uint256 a, uint256 b) internal pure returns (bool, uint256) {
unchecked {
if (b == 0) return (false, 0);
return (true, a / b);
}
}
function tryMod(uint256 a, uint256 b) internal pure returns (bool, uint256) {
unchecked {
if (b == 0) return (false, 0);
return (true, a % b);
}
}
function max(uint256 a, uint256 b) internal pure returns (uint256) {
return a > b ? a : b;
}
function min(uint256 a, uint256 b) internal pure returns (uint256) {
return a < b ? a : b;
}
function average(uint256 a, uint256 b) internal pure returns (uint256) {
return (a & b) + (a ^ b) / 2;
}
function ceilDiv(uint256 a, uint256 b) internal pure returns (uint256) {
if (b == 0) {
return a / b;
}
return a == 0 ? 0 : (a - 1) / b + 1;
}
function mulDiv(uint256 x, uint256 y, uint256 denominator) internal pure returns (uint256 result) {
unchecked {
uint256 prod0 = x * y;
uint256 prod1;
assembly {
let mm := mulmod(x, y, not(0))
prod1 := sub(sub(mm, prod0), lt(mm, prod0))
}
if (prod1 == 0) {
return prod0 / denominator;
}
if (denominator <= prod1) {
revert MathOverflowedMulDiv();
}
uint256 remainder;
assembly {
remainder := mulmod(x, y, denominator)
prod1 := sub(prod1, gt(remainder, prod0))
prod0 := sub(prod0, remainder)
}
uint256 twos = denominator & (0 - denominator);
assembly {
denominator := div(denominator, twos)
prod0 := div(prod0, twos)
twos := add(div(sub(0, twos), twos), 1)
}
prod0 |= prod1 * twos;
uint256 inverse = (3 * denominator) ^ 2;
inverse *= 2 - denominator * inverse;
inverse *= 2 - denominator * inverse;
inverse *= 2 - denominator * inverse;
inverse *= 2 - denominator * inverse;
inverse *= 2 - denominator * inverse;
inverse *= 2 - denominator * inverse;
result = prod0 * inverse;
return result;
}
}
function mulDiv(uint256 x, uint256 y, uint256 denominator, Rounding rounding) internal pure returns (uint256) {
uint256 result = mulDiv(x, y, denominator);
if (unsignedRoundsUp(rounding) && mulmod(x, y, denominator) > 0) {
result += 1;
}
return result;
}
function sqrt(uint256 a) internal pure returns (uint256) {
if (a == 0) {
return 0;
}
uint256 result = 1 << (log2(a) >> 1);
unchecked {
result = (result + a / result) >> 1;
result = (result + a / result) >> 1;
result = (result + a / result) >> 1;
result = (result + a / result) >> 1;
result = (result + a / result) >> 1;
result = (result + a / result) >> 1;
result = (result + a / result) >> 1;
return min(result, a / result);
}
}
function sqrt(uint256 a, Rounding rounding) internal pure returns (uint256) {
unchecked {
uint256 result = sqrt(a);
return result + (unsignedRoundsUp(rounding) && result * result < a ? 1 : 0);
}
}
function log2(uint256 value) internal pure returns (uint256) {
uint256 result = 0;
unchecked {
if (value >> 128 > 0) {
value >>= 128;
result += 128;
}
if (value >> 64 > 0) {
value >>= 64;
result += 64;
}
if (value >> 32 > 0) {
value >>= 32;
result += 32;
}
if (value >> 16 > 0) {
value >>= 16;
result += 16;
}
if (value >> 8 > 0) {
value >>= 8;
result += 8;
}
if (value >> 4 > 0) {
value >>= 4;
result += 4;
}
if (value >> 2 > 0) {
value >>= 2;
result += 2;
}
if (value >> 1 > 0) {
result += 1;
}
}
return result;
}
function log2(uint256 value, Rounding rounding) internal pure returns (uint256) {
unchecked {
uint256 result = log2(value);
return result + (unsignedRoundsUp(rounding) && 1 << result < value ? 1 : 0);
}
}
function log10(uint256 value) internal pure returns (uint256) {
uint256 result = 0;
unchecked {
if (value >= 10 ** 64) {
value /= 10 ** 64;
result += 64;
}
if (value >= 10 ** 32) {
value /= 10 ** 32;
result += 32;
}
if (value >= 10 ** 16) {
value /= 10 ** 16;
result += 16;
}
if (value >= 10 ** 8) {
value /= 10 ** 8;
result += 8;
}
if (value >= 10 ** 4) {
value /= 10 ** 4;
result += 4;
}
if (value >= 10 ** 2) {
value /= 10 ** 2;
result += 2;
}
if (value >= 10 ** 1) {
result += 1;
}
}
return result;
}
function log10(uint256 value, Rounding rounding) internal pure returns (uint256) {
unchecked {
uint256 result = log10(value);
return result + (unsignedRoundsUp(rounding) && 10 ** result < value ? 1 : 0);
}
}
function log256(uint256 value) internal pure returns (uint256) {
uint256 result = 0;
unchecked {
if (value >> 128 > 0) {
value >>= 128;
result += 16;
}
if (value >> 64 > 0) {
value >>= 64;
result += 8;
}
if (value >> 32 > 0) {
value >>= 32;
result += 4;
}
if (value >> 16 > 0) {
value >>= 16;
result += 2;
}
if (value >> 8 > 0) {
result += 1;
}
}
return result;
}
function log256(uint256 value, Rounding rounding) internal pure returns (uint256) {
unchecked {
uint256 result = log256(value);
return result + (unsignedRoundsUp(rounding) && 1 << (result << 3) < value ? 1 : 0);
}
}
function unsignedRoundsUp(Rounding rounding) internal pure returns (bool) {
return uint8(rounding) % 2 == 1;
}
}
文件 4 的 5:SignedMath.sol
pragma solidity ^0.8.20;
library SignedMath {
function max(int256 a, int256 b) internal pure returns (int256) {
return a > b ? a : b;
}
function min(int256 a, int256 b) internal pure returns (int256) {
return a < b ? a : b;
}
function average(int256 a, int256 b) internal pure returns (int256) {
int256 x = (a & b) + ((a ^ b) >> 1);
return x + (int256(uint256(x) >> 255) & (a ^ b));
}
function abs(int256 n) internal pure returns (uint256) {
unchecked {
return uint256(n >= 0 ? n : -n);
}
}
}
文件 5 的 5:Strings.sol
pragma solidity ^0.8.20;
import {Math} from "./math/Math.sol";
import {SignedMath} from "./math/SignedMath.sol";
library Strings {
bytes16 private constant HEX_DIGITS = "0123456789abcdef";
uint8 private constant ADDRESS_LENGTH = 20;
error StringsInsufficientHexLength(uint256 value, uint256 length);
function toString(uint256 value) internal pure returns (string memory) {
unchecked {
uint256 length = Math.log10(value) + 1;
string memory buffer = new string(length);
uint256 ptr;
assembly {
ptr := add(buffer, add(32, length))
}
while (true) {
ptr--;
assembly {
mstore8(ptr, byte(mod(value, 10), HEX_DIGITS))
}
value /= 10;
if (value == 0) break;
}
return buffer;
}
}
function toStringSigned(int256 value) internal pure returns (string memory) {
return string.concat(value < 0 ? "-" : "", toString(SignedMath.abs(value)));
}
function toHexString(uint256 value) internal pure returns (string memory) {
unchecked {
return toHexString(value, Math.log256(value) + 1);
}
}
function toHexString(uint256 value, uint256 length) internal pure returns (string memory) {
uint256 localValue = value;
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_DIGITS[localValue & 0xf];
localValue >>= 4;
}
if (localValue != 0) {
revert StringsInsufficientHexLength(value, length);
}
return string(buffer);
}
function toHexString(address addr) internal pure returns (string memory) {
return toHexString(uint256(uint160(addr)), ADDRESS_LENGTH);
}
function equal(string memory a, string memory b) internal pure returns (bool) {
return bytes(a).length == bytes(b).length && keccak256(bytes(a)) == keccak256(bytes(b));
}
}
{
"compilationTarget": {
"Genesis404.sol": "Genesis404"
},
"evmVersion": "shanghai",
"libraries": {},
"metadata": {
"bytecodeHash": "ipfs"
},
"optimizer": {
"enabled": true,
"runs": 200
},
"remappings": []
}
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