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203 lines
5.9 KiB
203 lines
5.9 KiB
pragma solidity ^0.4.24;
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import "../token/ERC20/IERC20.sol";
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import "../math/SafeMath.sol";
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import "../token/ERC20/SafeERC20.sol";
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/**
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* @title Crowdsale
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* @dev Crowdsale is a base contract for managing a token crowdsale,
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* allowing investors to purchase tokens with ether. This contract implements
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* such functionality in its most fundamental form and can be extended to provide additional
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* functionality and/or custom behavior.
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* The external interface represents the basic interface for purchasing tokens, and conform
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* the base architecture for crowdsales. They are *not* intended to be modified / overridden.
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* The internal interface conforms the extensible and modifiable surface of crowdsales. Override
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* the methods to add functionality. Consider using 'super' where appropriate to concatenate
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* behavior.
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*/
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contract Crowdsale {
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using SafeMath for uint256;
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using SafeERC20 for IERC20;
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// The token being sold
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IERC20 public token;
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// Address where funds are collected
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address public wallet;
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// How many token units a buyer gets per wei.
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// The rate is the conversion between wei and the smallest and indivisible token unit.
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// So, if you are using a rate of 1 with a ERC20Detailed token with 3 decimals called TOK
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// 1 wei will give you 1 unit, or 0.001 TOK.
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uint256 public rate;
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// Amount of wei raised
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uint256 public weiRaised;
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/**
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* Event for token purchase logging
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* @param purchaser who paid for the tokens
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* @param beneficiary who got the tokens
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* @param value weis paid for purchase
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* @param amount amount of tokens purchased
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*/
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event TokensPurchased(
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address indexed purchaser,
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address indexed beneficiary,
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uint256 value,
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uint256 amount
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);
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/**
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* @param _rate Number of token units a buyer gets per wei
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* @param _wallet Address where collected funds will be forwarded to
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* @param _token Address of the token being sold
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*/
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constructor(uint256 _rate, address _wallet, IERC20 _token) public {
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require(_rate > 0);
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require(_wallet != address(0));
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require(_token != address(0));
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rate = _rate;
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wallet = _wallet;
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token = _token;
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}
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// -----------------------------------------
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// Crowdsale external interface
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// -----------------------------------------
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/**
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* @dev fallback function ***DO NOT OVERRIDE***
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*/
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function () external payable {
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buyTokens(msg.sender);
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}
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/**
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* @dev low level token purchase ***DO NOT OVERRIDE***
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* @param _beneficiary Address performing the token purchase
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*/
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function buyTokens(address _beneficiary) public payable {
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uint256 weiAmount = msg.value;
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_preValidatePurchase(_beneficiary, weiAmount);
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// calculate token amount to be created
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uint256 tokens = _getTokenAmount(weiAmount);
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// update state
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weiRaised = weiRaised.add(weiAmount);
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_processPurchase(_beneficiary, tokens);
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emit TokensPurchased(
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msg.sender,
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_beneficiary,
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weiAmount,
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tokens
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);
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_updatePurchasingState(_beneficiary, weiAmount);
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_forwardFunds();
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_postValidatePurchase(_beneficiary, weiAmount);
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}
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// -----------------------------------------
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// Internal interface (extensible)
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// -----------------------------------------
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/**
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* @dev Validation of an incoming purchase. Use require statements to revert state when conditions are not met. Use `super` in contracts that inherit from Crowdsale to extend their validations.
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* Example from CappedCrowdsale.sol's _preValidatePurchase method:
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* super._preValidatePurchase(_beneficiary, _weiAmount);
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* require(weiRaised.add(_weiAmount) <= cap);
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* @param _beneficiary Address performing the token purchase
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* @param _weiAmount Value in wei involved in the purchase
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*/
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function _preValidatePurchase(
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address _beneficiary,
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uint256 _weiAmount
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)
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internal
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{
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require(_beneficiary != address(0));
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require(_weiAmount != 0);
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}
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/**
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* @dev Validation of an executed purchase. Observe state and use revert statements to undo rollback when valid conditions are not met.
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* @param _beneficiary Address performing the token purchase
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* @param _weiAmount Value in wei involved in the purchase
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*/
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function _postValidatePurchase(
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address _beneficiary,
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uint256 _weiAmount
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)
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internal
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{
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// optional override
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}
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/**
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* @dev Source of tokens. Override this method to modify the way in which the crowdsale ultimately gets and sends its tokens.
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* @param _beneficiary Address performing the token purchase
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* @param _tokenAmount Number of tokens to be emitted
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*/
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function _deliverTokens(
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address _beneficiary,
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uint256 _tokenAmount
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)
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internal
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{
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token.safeTransfer(_beneficiary, _tokenAmount);
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}
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/**
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* @dev Executed when a purchase has been validated and is ready to be executed. Not necessarily emits/sends tokens.
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* @param _beneficiary Address receiving the tokens
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* @param _tokenAmount Number of tokens to be purchased
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*/
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function _processPurchase(
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address _beneficiary,
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uint256 _tokenAmount
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)
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internal
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{
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_deliverTokens(_beneficiary, _tokenAmount);
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}
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/**
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* @dev Override for extensions that require an internal state to check for validity (current user contributions, etc.)
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* @param _beneficiary Address receiving the tokens
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* @param _weiAmount Value in wei involved in the purchase
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*/
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function _updatePurchasingState(
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address _beneficiary,
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uint256 _weiAmount
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)
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internal
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{
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// optional override
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}
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/**
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* @dev Override to extend the way in which ether is converted to tokens.
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* @param _weiAmount Value in wei to be converted into tokens
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* @return Number of tokens that can be purchased with the specified _weiAmount
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*/
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function _getTokenAmount(uint256 _weiAmount)
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internal view returns (uint256)
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{
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return _weiAmount.mul(rate);
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}
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/**
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* @dev Determines how ETH is stored/forwarded on purchases.
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*/
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function _forwardFunds() internal {
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wallet.transfer(msg.value);
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}
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}
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