pragma solidity ^0.4.16;
interface tokenRecipient { function receiveApproval(address _from, uint256 _value, address _token, bytes _extraData) public; }
contract TokenERC20 {
string public name;
string public symbol;
uint8 public decimals = 18; // 18 是建议的默认值
uint256 public totalSupply;
mapping (address => uint256) public balanceOf; //
mapping (address => mapping (address => uint256)) public allowance;
event Transfer(address indexed from, address indexed to, uint256 value);
event Burn(address indexed from, uint256 value);
function TokenERC20(uint256 initialSupply, string tokenName, string tokenSymbol) public {
totalSupply = initialSupply * 10 ** uint256(decimals);
balanceOf[msg.sender] = totalSupply;
name = tokenName;
symbol = tokenSymbol;
}
function _transfer(address _from, address _to, uint _value) internal {
require(_to != 0x0);
require(balanceOf[_from] >= _value);
require(balanceOf[_to] + _value > balanceOf[_to]);
uint previousBalances = balanceOf[_from] + balanceOf[_to];
balanceOf[_from] -= _value;
balanceOf[_to] += _value;
Transfer(_from, _to, _value);
assert(balanceOf[_from] + balanceOf[_to] == previousBalances);
}
function transfer(address _to, uint256 _value) public {
_transfer(msg.sender, _to, _value);
}
function transferFrom(address _from, address _to, uint256 _value) public returns (bool success) {
require(_value <= allowance[_from][msg.sender]); // Check allowance
allowance[_from][msg.sender] -= _value;
_transfer(_from, _to, _value);
return true;
}
function approve(address _spender, uint256 _value) public
returns (bool success) {
allowance[msg.sender][_spender] = _value;
return true;
}
function approveAndCall(address _spender, uint256 _value, bytes _extraData) public returns (bool success) {
tokenRecipient spender = tokenRecipient(_spender);
if (approve(_spender, _value)) {
spender.receiveApproval(msg.sender, _value, this, _extraData);
return true;
}
}
function burn(uint256 _value) public returns (bool success) {
require(balanceOf[msg.sender] >= _value);
balanceOf[msg.sender] -= _value;
totalSupply -= _value;
Burn(msg.sender, _value);
return true;
}
function burnFrom(address _from, uint256 _value) public returns (bool success) {
require(balanceOf[_from] >= _value);
require(_value <= allowance[_from][msg.sender]);
balanceOf[_from] -= _value;
allowance[_from][msg.sender] -= _value;
totalSupply -= _value;
Burn(_from, _value);
return true;
}
}
将这个代码复制粘贴到Remix网页编辑器中,然后点击右上角的Run,写上你发行币的总量,名称,代号,然后点击Create,这时MetaMask会弹出一个交易确认框,点SUBMIT,待合约部署交易确认之后,复制合约地址。
(图6:智能合约代码)
3. 打开Metamask界面,切换到TOKENS,点添加合约,出现如下对话框,填入刚才复制的地址,点ADD,这时你就可以看到你创建的代币了。
(图7:添加代币)
(图8::完成添加代币)
你已经完成了代币的创建和部署(正式网络和测试网络部署方法一样),可以etherscan查询到我们刚才部署的代币。
4. 由于MetaMask插件没有提供代币交易功能,同时考虑到很多人并没有以太坊钱包或是被以太坊钱包网络同步问题折磨,今天我用网页钱包来讲解代币交易。
* 进入网页钱包地址, 第一次进入有一些安全提示需要用户确认。
* 进入之后,按照下图进行设置:
(图9:网页钱包设置)
* 连接上之后,如图,需要在右下角添加代币,填入代币合约地址。
(图10:添加代币)
* 进行代币转账交易
(图11:进行交易)