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ICO_wizard_state_example.json
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ICO_wizard_state_example.json
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{
"compilerVersion":"0.4.11",
"contractName": "MintedTokenCappedCrowdsaleExt",
"contractType": "white-list-with-cap",
"contractTypes": {
"standard": "standard",
"capped": "capped",
"whitelistwithcap": "white-list-with-cap"
},
"contracts": {
"token": {
"src": "pragma solidity ^0.4.11;\n/**\n * @title ERC20Basic\n * @dev Simpler version of ERC20 interface\n * @dev see https://github.com/ethereum/EIPs/issues/179\n */\ncontract ERC20Basic {\n uint256 public totalSupply;\n function balanceOf(address who) public constant returns (uint256);\n function transfer(address to, uint256 value) public returns (bool);\n event Transfer(address indexed from, address indexed to, uint256 value);\n}\n/**\n * @title Ownable\n * @dev The Ownable contract has an owner address, and provides basic authorization control\n * functions, this simplifies the implementation of \"user permissions\".\n */\ncontract Ownable {\n address public owner;\n event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);\n /**\n * @dev The Ownable constructor sets the original `owner` of the contract to the sender\n * account.\n */\n function Ownable() {\n owner = msg.sender;\n }\n /**\n * @dev Throws if called by any account other than the owner.\n */\n modifier onlyOwner() {\n require(msg.sender == owner);\n _;\n }\n /**\n * @dev Allows the current owner to transfer control of the contract to a newOwner.\n * @param newOwner The address to transfer ownership to.\n */\n function transferOwnership(address newOwner) onlyOwner public {\n require(newOwner != address(0));\n OwnershipTransferred(owner, newOwner);\n owner = newOwner;\n }\n}\n// Temporarily have SafeMath here until all contracts have been migrated to SafeMathLib version from OpenZeppelin\n/**\n * Math operations with safety checks\n */\ncontract SafeMath {\n function safeMul(uint a, uint b) internal returns (uint) {\n uint c = a * b;\n assert(a == 0 || c / a == b);\n return c;\n }\n function safeDiv(uint a, uint b) internal returns (uint) {\n assert(b > 0);\n uint c = a / b;\n assert(a == b * c + a % b);\n return c;\n }\n function safeSub(uint a, uint b) internal returns (uint) {\n assert(b <= a);\n return a - b;\n }\n function safeAdd(uint a, uint b) internal returns (uint) {\n uint c = a + b;\n assert(c>=a && c>=b);\n return c;\n }\n function max64(uint64 a, uint64 b) internal constant returns (uint64) {\n return a >= b ? a : b;\n }\n function min64(uint64 a, uint64 b) internal constant returns (uint64) {\n return a < b ? a : b;\n }\n function max256(uint256 a, uint256 b) internal constant returns (uint256) {\n return a >= b ? a : b;\n }\n function min256(uint256 a, uint256 b) internal constant returns (uint256) {\n return a < b ? a : b;\n }\n}\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * @title ERC20 interface\n * @dev see https://github.com/ethereum/EIPs/issues/20\n */\ncontract ERC20 is ERC20Basic {\n function allowance(address owner, address spender) public constant returns (uint256);\n function transferFrom(address from, address to, uint256 value) public returns (bool);\n function approve(address spender, uint256 value) public returns (bool);\n event Approval(address indexed owner, address indexed spender, uint256 value);\n}\n/**\n * Standard ERC20 token with Short Hand Attack and approve() race condition mitigation.\n *\n * Based on code by FirstBlood:\n * https://github.com/Firstbloodio/token/blob/master/smart_contract/FirstBloodToken.sol\n */\ncontract StandardToken is ERC20, SafeMath {\n /* Token supply got increased and a new owner received these tokens */\n event Minted(address receiver, uint amount);\n /* Actual balances of token holders */\n mapping(address => uint) balances;\n /* approve() allowances */\n mapping (address => mapping (address => uint)) allowed;\n /* Interface declaration */\n function isToken() public constant returns (bool weAre) {\n return true;\n }\n function transfer(address _to, uint _value) returns (bool success) {\n balances[msg.sender] = safeSub(balances[msg.sender], _value);\n balances[_to] = safeAdd(balances[_to], _value);\n Transfer(msg.sender, _to, _value);\n return true;\n }\n function transferFrom(address _from, address _to, uint _value) returns (bool success) {\n uint _allowance = allowed[_from][msg.sender];\n balances[_to] = safeAdd(balances[_to], _value);\n balances[_from] = safeSub(balances[_from], _value);\n allowed[_from][msg.sender] = safeSub(_allowance, _value);\n Transfer(_from, _to, _value);\n return true;\n }\n function balanceOf(address _owner) constant returns (uint balance) {\n return balances[_owner];\n }\n function approve(address _spender, uint _value) returns (bool success) {\n // To change the approve amount you first have to reduce the addresses`\n // allowance to zero by calling `approve(_spender, 0)` if it is not\n // already 0 to mitigate the race condition described here:\n // https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729\n if ((_value != 0) && (allowed[msg.sender][_spender] != 0)) throw;\n allowed[msg.sender][_spender] = _value;\n Approval(msg.sender, _spender, _value);\n return true;\n }\n function allowance(address _owner, address _spender) constant returns (uint remaining) {\n return allowed[_owner][_spender];\n }\n}\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * Upgrade agent interface inspired by Lunyr.\n *\n * Upgrade agent transfers tokens to a new contract.\n * Upgrade agent itself can be the token contract, or just a middle man contract doing the heavy lifting.\n */\ncontract UpgradeAgent {\n uint public originalSupply;\n /** Interface marker */\n function isUpgradeAgent() public constant returns (bool) {\n return true;\n }\n function upgradeFrom(address _from, uint256 _value) public;\n}\n/**\n * A token upgrade mechanism where users can opt-in amount of tokens to the next smart contract revision.\n *\n * First envisioned by Golem and Lunyr projects.\n */\ncontract UpgradeableToken is StandardToken {\n /** Contract / person who can set the upgrade path. This can be the same as team multisig wallet, as what it is with its default value. */\n address public upgradeMaster;\n /** The next contract where the tokens will be migrated. */\n UpgradeAgent public upgradeAgent;\n /** How many tokens we have upgraded by now. */\n uint256 public totalUpgraded;\n /**\n * Upgrade states.\n *\n * - NotAllowed: The child contract has not reached a condition where the upgrade can bgun\n * - WaitingForAgent: Token allows upgrade, but we don't have a new agent yet\n * - ReadyToUpgrade: The agent is set, but not a single token has been upgraded yet\n * - Upgrading: Upgrade agent is set and the balance holders can upgrade their tokens\n *\n */\n enum UpgradeState {Unknown, NotAllowed, WaitingForAgent, ReadyToUpgrade, Upgrading}\n /**\n * Somebody has upgraded some of his tokens.\n */\n event Upgrade(address indexed _from, address indexed _to, uint256 _value);\n /**\n * New upgrade agent available.\n */\n event UpgradeAgentSet(address agent);\n /**\n * Do not allow construction without upgrade master set.\n */\n function UpgradeableToken(address _upgradeMaster) {\n upgradeMaster = _upgradeMaster;\n }\n /**\n * Allow the token holder to upgrade some of their tokens to a new contract.\n */\n function upgrade(uint256 value) public {\n UpgradeState state = getUpgradeState();\n if(!(state == UpgradeState.ReadyToUpgrade || state == UpgradeState.Upgrading)) {\n // Called in a bad state\n throw;\n }\n // Validate input value.\n if (value == 0) throw;\n balances[msg.sender] = safeSub(balances[msg.sender], value);\n // Take tokens out from circulation\n totalSupply = safeSub(totalSupply, value);\n totalUpgraded = safeAdd(totalUpgraded, value);\n // Upgrade agent reissues the tokens\n upgradeAgent.upgradeFrom(msg.sender, value);\n Upgrade(msg.sender, upgradeAgent, value);\n }\n /**\n * Set an upgrade agent that handles\n */\n function setUpgradeAgent(address agent) external {\n if(!canUpgrade()) {\n // The token is not yet in a state that we could think upgrading\n throw;\n }\n if (agent == 0x0) throw;\n // Only a master can designate the next agent\n if (msg.sender != upgradeMaster) throw;\n // Upgrade has already begun for an agent\n if (getUpgradeState() == UpgradeState.Upgrading) throw;\n upgradeAgent = UpgradeAgent(agent);\n // Bad interface\n if(!upgradeAgent.isUpgradeAgent()) throw;\n // Make sure that token supplies match in source and target\n if (upgradeAgent.originalSupply() != totalSupply) throw;\n UpgradeAgentSet(upgradeAgent);\n }\n /**\n * Get the state of the token upgrade.\n */\n function getUpgradeState() public constant returns(UpgradeState) {\n if(!canUpgrade()) return UpgradeState.NotAllowed;\n else if(address(upgradeAgent) == 0x00) return UpgradeState.WaitingForAgent;\n else if(totalUpgraded == 0) return UpgradeState.ReadyToUpgrade;\n else return UpgradeState.Upgrading;\n }\n /**\n * Change the upgrade master.\n *\n * This allows us to set a new owner for the upgrade mechanism.\n */\n function setUpgradeMaster(address master) public {\n if (master == 0x0) throw;\n if (msg.sender != upgradeMaster) throw;\n upgradeMaster = master;\n }\n /**\n * Child contract can enable to provide the condition when the upgrade can begun.\n */\n function canUpgrade() public constant returns(bool) {\n return true;\n }\n}\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * Define interface for releasing the token transfer after a successful crowdsale.\n */\ncontract ReleasableToken is ERC20, Ownable {\n /* The finalizer contract that allows unlift the transfer limits on this token */\n address public releaseAgent;\n /** A crowdsale contract can release us to the wild if ICO success. If false we are are in transfer lock up period.*/\n bool public released = false;\n /** Map of agents that are allowed to transfer tokens regardless of the lock down period. These are crowdsale contracts and possible the team multisig itself. */\n mapping (address => bool) public transferAgents;\n /**\n * Limit token transfer until the crowdsale is over.\n *\n */\n modifier canTransfer(address _sender) {\n if(!released) {\n if(!transferAgents[_sender]) {\n throw;\n }\n }\n _;\n }\n /**\n * Set the contract that can call release and make the token transferable.\n *\n * Design choice. Allow reset the release agent to fix fat finger mistakes.\n */\n function setReleaseAgent(address addr) onlyOwner inReleaseState(false) public {\n // We don't do interface check here as we might want to a normal wallet address to act as a release agent\n releaseAgent = addr;\n }\n /**\n * Owner can allow a particular address (a crowdsale contract) to transfer tokens despite the lock up period.\n */\n function setTransferAgent(address addr, bool state) onlyOwner inReleaseState(false) public {\n transferAgents[addr] = state;\n }\n /**\n * One way function to release the tokens to the wild.\n *\n * Can be called only from the release agent that is the final ICO contract. It is only called if the crowdsale has been success (first milestone reached).\n */\n function releaseTokenTransfer() public onlyReleaseAgent {\n released = true;\n }\n /** The function can be called only before or after the tokens have been releasesd */\n modifier inReleaseState(bool releaseState) {\n if(releaseState != released) {\n throw;\n }\n _;\n }\n /** The function can be called only by a whitelisted release agent. */\n modifier onlyReleaseAgent() {\n if(msg.sender != releaseAgent) {\n throw;\n }\n _;\n }\n function transfer(address _to, uint _value) canTransfer(msg.sender) returns (bool success) {\n // Call StandardToken.transfer()\n return super.transfer(_to, _value);\n }\n function transferFrom(address _from, address _to, uint _value) canTransfer(_from) returns (bool success) {\n // Call StandardToken.transferForm()\n return super.transferFrom(_from, _to, _value);\n }\n}\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * Safe unsigned safe math.\n *\n * https://blog.aragon.one/library-driven-development-in-solidity-2bebcaf88736#.750gwtwli\n *\n * Originally from https://raw.githubusercontent.com/AragonOne/zeppelin-solidity/master/contracts/SafeMathLib.sol\n *\n * Maintained here until merged to mainline zeppelin-solidity.\n *\n */\nlibrary SafeMathLibExt {\n function times(uint a, uint b) returns (uint) {\n uint c = a * b;\n assert(a == 0 || c / a == b);\n return c;\n }\n function divides(uint a, uint b) returns (uint) {\n assert(b > 0);\n uint c = a / b;\n assert(a == b * c + a % b);\n return c;\n }\n function minus(uint a, uint b) returns (uint) {\n assert(b <= a);\n return a - b;\n }\n function plus(uint a, uint b) returns (uint) {\n uint c = a + b;\n assert(c>=a);\n return c;\n }\n}\n/**\n * A token that can increase its supply by another contract.\n *\n * This allows uncapped crowdsale by dynamically increasing the supply when money pours in.\n * Only mint agents, contracts whitelisted by owner, can mint new tokens.\n *\n */\ncontract MintableTokenExt is StandardToken, Ownable {\n using SafeMathLibExt for uint;\n bool public mintingFinished = false;\n /** List of agents that are allowed to create new tokens */\n mapping (address => bool) public mintAgents;\n event MintingAgentChanged(address addr, bool state );\n struct ReservedTokensData {\n uint inTokens;\n uint inPercentage;\n }\n mapping (address => ReservedTokensData) public reservedTokensList;\n address[] public reservedTokensDestinations;\n uint public reservedTokensDestinationsLen = 0;\n function setReservedTokensList(address addr, uint inTokens, uint inPercentage) onlyOwner {\n reservedTokensDestinations.push(addr);\n reservedTokensDestinationsLen++;\n reservedTokensList[addr] = ReservedTokensData({inTokens:inTokens, inPercentage:inPercentage});\n }\n function getReservedTokensListValInTokens(address addr) constant returns (uint inTokens) {\n return reservedTokensList[addr].inTokens;\n }\n function getReservedTokensListValInPercentage(address addr) constant returns (uint inPercentage) {\n return reservedTokensList[addr].inPercentage;\n }\n function setReservedTokensListMultiple(address[] addrs, uint[] inTokens, uint[] inPercentage) onlyOwner {\n for (uint iterator = 0; iterator < addrs.length; iterator++) {\n setReservedTokensList(addrs[iterator], inTokens[iterator], inPercentage[iterator]);\n }\n }\n /**\n * Create new tokens and allocate them to an address..\n *\n * Only callably by a crowdsale contract (mint agent).\n */\n function mint(address receiver, uint amount) onlyMintAgent canMint public {\n totalSupply = totalSupply.plus(amount);\n balances[receiver] = balances[receiver].plus(amount);\n // This will make the mint transaction apper in EtherScan.io\n // We can remove this after there is a standardized minting event\n Transfer(0, receiver, amount);\n }\n /**\n * Owner can allow a crowdsale contract to mint new tokens.\n */\n function setMintAgent(address addr, bool state) onlyOwner canMint public {\n mintAgents[addr] = state;\n MintingAgentChanged(addr, state);\n }\n modifier onlyMintAgent() {\n // Only crowdsale contracts are allowed to mint new tokens\n if(!mintAgents[msg.sender]) {\n throw;\n }\n _;\n }\n /** Make sure we are not done yet. */\n modifier canMint() {\n if(mintingFinished) throw;\n _;\n }\n}\n/**\n * A crowdsaled token.\n *\n * An ERC-20 token designed specifically for crowdsales with investor protection and further development path.\n *\n * - The token transfer() is disabled until the crowdsale is over\n * - The token contract gives an opt-in upgrade path to a new contract\n * - The same token can be part of several crowdsales through approve() mechanism\n * - The token can be capped (supply set in the constructor) or uncapped (crowdsale contract can mint new tokens)\n *\n */\ncontract CrowdsaleTokenExt is ReleasableToken, MintableTokenExt, UpgradeableToken {\n /** Name and symbol were updated. */\n event UpdatedTokenInformation(string newName, string newSymbol);\n string public name;\n string public symbol;\n uint public decimals;\n /* Minimum ammount of tokens every buyer can buy. */\n uint public minCap;\n /**\n * Construct the token.\n *\n * This token must be created through a team multisig wallet, so that it is owned by that wallet.\n *\n * @param _name Token name\n * @param _symbol Token symbol - should be all caps\n * @param _initialSupply How many tokens we start with\n * @param _decimals Number of decimal places\n * @param _mintable Are new tokens created over the crowdsale or do we distribute only the initial supply? Note that when the token becomes transferable the minting always ends.\n */\n function CrowdsaleTokenExt(string _name, string _symbol, uint _initialSupply, uint _decimals, bool _mintable, uint _globalMinCap)\n UpgradeableToken(msg.sender) {\n // Create any address, can be transferred\n // to team multisig via changeOwner(),\n // also remember to call setUpgradeMaster()\n owner = msg.sender;\n name = _name;\n symbol = _symbol;\n totalSupply = _initialSupply;\n decimals = _decimals;\n minCap = _globalMinCap;\n // Create initially all balance on the team multisig\n balances[owner] = totalSupply;\n if(totalSupply > 0) {\n Minted(owner, totalSupply);\n }\n // No more new supply allowed after the token creation\n if(!_mintable) {\n mintingFinished = true;\n if(totalSupply == 0) {\n throw; // Cannot create a token without supply and no minting\n }\n }\n }\n /**\n * When token is released to be transferable, enforce no new tokens can be created.\n */\n function releaseTokenTransfer() public onlyReleaseAgent {\n mintingFinished = true;\n super.releaseTokenTransfer();\n }\n /**\n * Allow upgrade agent functionality kick in only if the crowdsale was success.\n */\n function canUpgrade() public constant returns(bool) {\n return released && super.canUpgrade();\n }\n /**\n * Owner can update token information here.\n *\n * It is often useful to conceal the actual token association, until\n * the token operations, like central issuance or reissuance have been completed.\n *\n * This function allows the token owner to rename the token after the operations\n * have been completed and then point the audience to use the token contract.\n */\n function setTokenInformation(string _name, string _symbol) onlyOwner {\n name = _name;\n symbol = _symbol;\n UpdatedTokenInformation(name, symbol);\n }\n}\n",
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{
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{
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{
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{
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{
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{
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"name": "getReservedTokensListValInTokens",
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{
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{
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{
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{
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"type": "uint256"
}
],
"name": "upgrade",
"outputs": [],
"payable": false,
"type": "function"
},
{
"constant": false,
"inputs": [
{
"name": "_name",
"type": "string"
},
{
"name": "_symbol",
"type": "string"
}
],
"name": "setTokenInformation",
"outputs": [],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [
{
"name": "",
"type": "address"
}
],
"name": "reservedTokensList",
"outputs": [
{
"name": "inTokens",
"type": "uint256"
},
{
"name": "inPercentage",
"type": "uint256"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "upgradeAgent",
"outputs": [
{
"name": "",
"type": "address"
}
],
"payable": false,
"type": "function"
},
{
"constant": false,
"inputs": [],
"name": "releaseTokenTransfer",
"outputs": [],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "upgradeMaster",
"outputs": [
{
"name": "",
"type": "address"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [
{
"name": "_owner",
"type": "address"
}
],
"name": "balanceOf",
"outputs": [
{
"name": "balance",
"type": "uint256"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [
{
"name": "",
"type": "uint256"
}
],
"name": "reservedTokensDestinations",
"outputs": [
{
"name": "",
"type": "address"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [
{
"name": "addr",
"type": "address"
}
],
"name": "getReservedTokensListValInPercentage",
"outputs": [
{
"name": "inPercentage",
"type": "uint256"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "getUpgradeState",
"outputs": [
{
"name": "",
"type": "uint8"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [
{
"name": "",
"type": "address"
}
],
"name": "transferAgents",
"outputs": [
{
"name": "",
"type": "bool"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "owner",
"outputs": [
{
"name": "",
"type": "address"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "symbol",
"outputs": [
{
"name": "",
"type": "string"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "released",
"outputs": [
{
"name": "",
"type": "bool"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "canUpgrade",
"outputs": [
{
"name": "",
"type": "bool"
}
],
"payable": false,
"type": "function"
},
{
"constant": false,
"inputs": [
{
"name": "_to",
"type": "address"
},
{
"name": "_value",
"type": "uint256"
}
],
"name": "transfer",
"outputs": [
{
"name": "success",
"type": "bool"
}
],
"payable": false,
"type": "function"
},
{
"constant": false,
"inputs": [
{
"name": "addrs",
"type": "address[]"
},
{
"name": "inTokens",
"type": "uint256[]"
},
{
"name": "inPercentage",
"type": "uint256[]"
}
],
"name": "setReservedTokensListMultiple",
"outputs": [],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "reservedTokensDestinationsLen",
"outputs": [
{
"name": "",
"type": "uint256"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "totalUpgraded",
"outputs": [
{
"name": "",
"type": "uint256"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "releaseAgent",
"outputs": [
{
"name": "",
"type": "address"
}
],
"payable": false,
"type": "function"
},
{
"constant": false,
"inputs": [
{
"name": "agent",
"type": "address"
}
],
"name": "setUpgradeAgent",
"outputs": [],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [
{
"name": "_owner",
"type": "address"
},
{
"name": "_spender",
"type": "address"
}
],
"name": "allowance",
"outputs": [
{
"name": "remaining",
"type": "uint256"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "isToken",
"outputs": [
{
"name": "weAre",
"type": "bool"
}
],
"payable": false,
"type": "function"
},
{
"constant": false,
"inputs": [
{
"name": "newOwner",
"type": "address"
}
],
"name": "transferOwnership",
"outputs": [],
"payable": false,
"type": "function"
},
{
"constant": false,
"inputs": [
{
"name": "addr",
"type": "address"
},
{
"name": "inTokens",
"type": "uint256"
},
{
"name": "inPercentage",
"type": "uint256"
}
],
"name": "setReservedTokensList",
"outputs": [],
"payable": false,
"type": "function"
},
{
"constant": false,
"inputs": [
{
"name": "master",
"type": "address"
}
],
"name": "setUpgradeMaster",
"outputs": [],
"payable": false,
"type": "function"
},
{
"inputs": [
{
"name": "_name",
"type": "string"
},
{
"name": "_symbol",
"type": "string"
},
{
"name": "_initialSupply",
"type": "uint256"
},
{
"name": "_decimals",
"type": "uint256"
},
{
"name": "_mintable",
"type": "bool"
},
{
"name": "_globalMinCap",
"type": "uint256"
}
],
"payable": false,
"type": "constructor"
},
{
"anonymous": false,
"inputs": [
{
"indexed": false,
"name": "newName",
"type": "string"
},
{
"indexed": false,
"name": "newSymbol",
"type": "string"
}
],
"name": "UpdatedTokenInformation",
"type": "event"
},
{
"anonymous": false,
"inputs": [
{
"indexed": true,
"name": "_from",
"type": "address"
},
{
"indexed": true,
"name": "_to",
"type": "address"
},
{
"indexed": false,
"name": "_value",
"type": "uint256"
}
],
"name": "Upgrade",
"type": "event"
},
{
"anonymous": false,
"inputs": [
{
"indexed": false,
"name": "agent",
"type": "address"
}
],
"name": "UpgradeAgentSet",
"type": "event"
},
{
"anonymous": false,
"inputs": [
{
"indexed": false,
"name": "addr",
"type": "address"
},
{
"indexed": false,
"name": "state",
"type": "bool"
}
],
"name": "MintingAgentChanged",
"type": "event"
},
{
"anonymous": false,
"inputs": [
{
"indexed": true,
"name": "previousOwner",
"type": "address"
},
{
"indexed": true,
"name": "newOwner",
"type": "address"
}
],
"name": "OwnershipTransferred",
"type": "event"
},
{
"anonymous": false,
"inputs": [
{
"indexed": false,
"name": "receiver",
"type": "address"
},
{
"indexed": false,
"name": "amount",
"type": "uint256"
}
],
"name": "Minted",
"type": "event"
},
{
"anonymous": false,
"inputs": [
{
"indexed": true,
"name": "owner",
"type": "address"
},
{
"indexed": true,
"name": "spender",
"type": "address"
},
{
"indexed": false,
"name": "value",
"type": "uint256"
}
],
"name": "Approval",
"type": "event"
},
{
"anonymous": false,
"inputs": [
{
"indexed": true,
"name": "from",
"type": "address"
},
{
"indexed": true,
"name": "to",
"type": "address"
},
{
"indexed": false,
"name": "value",
"type": "uint256"
}
],
"name": "Transfer",
"type": "event"
}
],
"addr": "",
"abiConstructor": ""
},
"crowdsale": {
"src": "// Temporarily have SafeMath here until all contracts have been migrated to SafeMathLib version from OpenZeppelin\npragma solidity ^0.4.8;\n/**\n * Math operations with safety checks\n */\ncontract SafeMath {\n function safeMul(uint a, uint b) internal returns (uint) {\n uint c = a * b;\n assert(a == 0 || c / a == b);\n return c;\n }\n function safeDiv(uint a, uint b) internal returns (uint) {\n assert(b > 0);\n uint c = a / b;\n assert(a == b * c + a % b);\n return c;\n }\n function safeSub(uint a, uint b) internal returns (uint) {\n assert(b <= a);\n return a - b;\n }\n function safeAdd(uint a, uint b) internal returns (uint) {\n uint c = a + b;\n assert(c>=a && c>=b);\n return c;\n }\n function max64(uint64 a, uint64 b) internal constant returns (uint64) {\n return a >= b ? a : b;\n }\n function min64(uint64 a, uint64 b) internal constant returns (uint64) {\n return a < b ? a : b;\n }\n function max256(uint256 a, uint256 b) internal constant returns (uint256) {\n return a >= b ? a : b;\n }\n function min256(uint256 a, uint256 b) internal constant returns (uint256) {\n return a < b ? a : b;\n }\n}\n/**\n * @title ERC20Basic\n * @dev Simpler version of ERC20 interface\n * @dev see https://github.com/ethereum/EIPs/issues/179\n */\ncontract ERC20Basic {\n uint256 public totalSupply;\n function balanceOf(address who) public constant returns (uint256);\n function transfer(address to, uint256 value) public returns (bool);\n event Transfer(address indexed from, address indexed to, uint256 value);\n}\n/**\n * @title Ownable\n * @dev The Ownable contract has an owner address, and provides basic authorization control\n * functions, this simplifies the implementation of \"user permissions\".\n */\ncontract Ownable {\n address public owner;\n event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);\n /**\n * @dev The Ownable constructor sets the original `owner` of the contract to the sender\n * account.\n */\n function Ownable() {\n owner = msg.sender;\n }\n /**\n * @dev Throws if called by any account other than the owner.\n */\n modifier onlyOwner() {\n require(msg.sender == owner);\n _;\n }\n /**\n * @dev Allows the current owner to transfer control of the contract to a newOwner.\n * @param newOwner The address to transfer ownership to.\n */\n function transferOwnership(address newOwner) onlyOwner public {\n require(newOwner != address(0));\n OwnershipTransferred(owner, newOwner);\n owner = newOwner;\n }\n}\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * Safe unsigned safe math.\n *\n * https://blog.aragon.one/library-driven-development-in-solidity-2bebcaf88736#.750gwtwli\n *\n * Originally from https://raw.githubusercontent.com/AragonOne/zeppelin-solidity/master/contracts/SafeMathLib.sol\n *\n * Maintained here until merged to mainline zeppelin-solidity.\n *\n */\nlibrary SafeMathLibExt {\n function times(uint a, uint b) returns (uint) {\n uint c = a * b;\n assert(a == 0 || c / a == b);\n return c;\n }\n function divides(uint a, uint b) returns (uint) {\n assert(b > 0);\n uint c = a / b;\n assert(a == b * c + a % b);\n return c;\n }\n function minus(uint a, uint b) returns (uint) {\n assert(b <= a);\n return a - b;\n }\n function plus(uint a, uint b) returns (uint) {\n uint c = a + b;\n assert(c>=a);\n return c;\n }\n}\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/*\n * Haltable\n *\n * Abstract contract that allows children to implement an\n * emergency stop mechanism. Differs from Pausable by causing a throw when in halt mode.\n *\n *\n * Originally envisioned in FirstBlood ICO contract.\n */\ncontract Haltable is Ownable {\n bool public halted;\n modifier stopInEmergency {\n if (halted) throw;\n _;\n }\n modifier stopNonOwnersInEmergency {\n if (halted && msg.sender != owner) throw;\n _;\n }\n modifier onlyInEmergency {\n if (!halted) throw;\n _;\n }\n // called by the owner on emergency, triggers stopped state\n function halt() external onlyOwner {\n halted = true;\n }\n // called by the owner on end of emergency, returns to normal state\n function unhalt() external onlyOwner onlyInEmergency {\n halted = false;\n }\n}\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * Interface for defining crowdsale pricing.\n */\ncontract PricingStrategy {\n /** Interface declaration. */\n function isPricingStrategy() public constant returns (bool) {\n return true;\n }\n /** Self check if all references are correctly set.\n *\n * Checks that pricing strategy matches crowdsale parameters.\n */\n function isSane(address crowdsale) public constant returns (bool) {\n return true;\n }\n /**\n * @dev Pricing tells if this is a presale purchase or not.\n @param purchaser Address of the purchaser\n @return False by default, true if a presale purchaser\n */\n function isPresalePurchase(address purchaser) public constant returns (bool) {\n return false;\n }\n /**\n * When somebody tries to buy tokens for X eth, calculate how many tokens they get.\n *\n *\n * @param value - What is the value of the transaction send in as wei\n * @param tokensSold - how much tokens have been sold this far\n * @param weiRaised - how much money has been raised this far in the main token sale - this number excludes presale\n * @param msgSender - who is the investor of this transaction\n * @param decimals - how many decimal units the token has\n * @return Amount of tokens the investor receives\n */\n function calculatePrice(uint value, uint weiRaised, uint tokensSold, address msgSender, uint decimals) public constant returns (uint tokenAmount);\n}\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * Finalize agent defines what happens at the end of succeseful crowdsale.\n *\n * - Allocate tokens for founders, bounties and community\n * - Make tokens transferable\n * - etc.\n */\ncontract FinalizeAgent {\n function isFinalizeAgent() public constant returns(bool) {\n return true;\n }\n /** Return true if we can run finalizeCrowdsale() properly.\n *\n * This is a safety check function that doesn't allow crowdsale to begin\n * unless the finalizer has been set up properly.\n */\n function isSane() public constant returns (bool);\n /** Called once by crowdsale finalize() if the sale was success. */\n function finalizeCrowdsale();\n}\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * @title ERC20 interface\n * @dev see https://github.com/ethereum/EIPs/issues/20\n */\ncontract ERC20 is ERC20Basic {\n function allowance(address owner, address spender) public constant returns (uint256);\n function transferFrom(address from, address to, uint256 value) public returns (bool);\n function approve(address spender, uint256 value) public returns (bool);\n event Approval(address indexed owner, address indexed spender, uint256 value);\n}\n/**\n * A token that defines fractional units as decimals.\n */\ncontract FractionalERC20Ext is ERC20 {\n uint public decimals;\n uint public minCap;\n}\n/**\n * Abstract base contract for token sales.\n *\n * Handle\n * - start and end dates\n * - accepting investments\n * - minimum funding goal and refund\n * - various statistics during the crowdfund\n * - different pricing strategies\n * - different investment policies (require server side customer id, allow only whitelisted addresses)\n *\n */\ncontract CrowdsaleExt is Haltable {\n /* Max investment count when we are still allowed to change the multisig address */\n uint public MAX_INVESTMENTS_BEFORE_MULTISIG_CHANGE = 5;\n using SafeMathLibExt for uint;\n /* The token we are selling */\n FractionalERC20Ext public token;\n /* How we are going to price our offering */\n PricingStrategy public pricingStrategy;\n /* Post-success callback */\n FinalizeAgent public finalizeAgent;\n /* tokens will be transfered from this address */\n address public multisigWallet;\n /* if the funding goal is not reached, investors may withdraw their funds */\n uint public minimumFundingGoal;\n /* the UNIX timestamp start date of the crowdsale */\n uint public startsAt;\n /* the UNIX timestamp end date of the crowdsale */\n uint public endsAt;\n /* the number of tokens already sold through this contract*/\n uint public tokensSold = 0;\n /* How many wei of funding we have raised */\n uint public weiRaised = 0;\n /* Calculate incoming funds from presale contracts and addresses */\n uint public presaleWeiRaised = 0;\n /* How many distinct addresses have invested */\n uint public investorCount = 0;\n /* How much wei we have returned back to the contract after a failed crowdfund. */\n uint public loadedRefund = 0;\n /* How much wei we have given back to investors.*/\n uint public weiRefunded = 0;\n /* Has this crowdsale been finalized */\n bool public finalized;\n /* Do we need to have unique contributor id for each customer */\n bool public requireCustomerId;\n bool public isWhiteListed;\n address[] public joinedCrowdsales;\n uint public joinedCrowdsalesLen = 0;\n address public lastCrowdsale;\n /**\n * Do we verify that contributor has been cleared on the server side (accredited investors only).\n * This method was first used in FirstBlood crowdsale to ensure all contributors have accepted terms on sale (on the web).\n */\n bool public requiredSignedAddress;\n /* Server side address that signed allowed contributors (Ethereum addresses) that can participate the crowdsale */\n address public signerAddress;\n /** How much ETH each address has invested to this crowdsale */\n mapping (address => uint256) public investedAmountOf;\n /** How much tokens this crowdsale has credited for each investor address */\n mapping (address => uint256) public tokenAmountOf;\n struct WhiteListData {\n bool status;\n uint minCap;\n uint maxCap;\n }\n //is crowdsale updatable\n bool public isUpdatable;\n /** Addresses that are allowed to invest even before ICO offical opens. For testing, for ICO partners, etc. */\n mapping (address => WhiteListData) public earlyParticipantWhitelist;\n /** This is for manul testing for the interaction from owner wallet. You can set it to any value and inspect this in blockchain explorer to see that crowdsale interaction works. */\n uint public ownerTestValue;\n /** State machine\n *\n * - Preparing: All contract initialization calls and variables have not been set yet\n * - Prefunding: We have not passed start time yet\n * - Funding: Active crowdsale\n * - Success: Minimum funding goal reached\n * - Failure: Minimum funding goal not reached before ending time\n * - Finalized: The finalized has been called and succesfully executed\n * - Refunding: Refunds are loaded on the contract for reclaim.\n */\n enum State{Unknown, Preparing, PreFunding, Funding, Success, Failure, Finalized, Refunding}\n // A new investment was made\n event Invested(address investor, uint weiAmount, uint tokenAmount, uint128 customerId);\n // Refund was processed for a contributor\n event Refund(address investor, uint weiAmount);\n // The rules were changed what kind of investments we accept\n event InvestmentPolicyChanged(bool newRequireCustomerId, bool newRequiredSignedAddress, address newSignerAddress);\n // Address early participation whitelist status changed\n event Whitelisted(address addr, bool status);\n // Crowdsale start time has been changed\n event StartsAtChanged(uint newStartsAt);\n // Crowdsale end time has been changed\n event EndsAtChanged(uint newEndsAt);\n function CrowdsaleExt(address _token, PricingStrategy _pricingStrategy, address _multisigWallet, uint _start, uint _end, uint _minimumFundingGoal, bool _isUpdatable, bool _isWhiteListed) {\n owner = msg.sender;\n token = FractionalERC20Ext(_token);\n setPricingStrategy(_pricingStrategy);\n multisigWallet = _multisigWallet;\n if(multisigWallet == 0) {\n throw;\n }\n if(_start == 0) {\n throw;\n }\n startsAt = _start;\n if(_end == 0) {\n throw;\n }\n endsAt = _end;\n // Don't mess the dates\n if(startsAt >= endsAt) {\n throw;\n }\n // Minimum funding goal can be zero\n minimumFundingGoal = _minimumFundingGoal;\n isUpdatable = _isUpdatable;\n isWhiteListed = _isWhiteListed;\n }\n /**\n * Don't expect to just send in money and get tokens.\n */\n function() payable {\n throw;\n }\n /**\n * Make an investment.\n *\n * Crowdsale must be running for one to invest.\n * We must have not pressed the emergency brake.\n *\n * @param receiver The Ethereum address who receives the tokens\n * @param customerId (optional) UUID v4 to track the successful payments on the server side\n *\n */\n function investInternal(address receiver, uint128 customerId) stopInEmergency private {\n // Determine if it's a good time to accept investment from this participant\n if(getState() == State.PreFunding) {\n // Are we whitelisted for early deposit\n throw;\n } else if(getState() == State.Funding) {\n // Retail participants can only come in when the crowdsale is running\n // pass\n if(isWhiteListed) {\n if(!earlyParticipantWhitelist[receiver].status) {\n throw;\n }\n }\n } else {\n // Unwanted state\n throw;\n }\n uint weiAmount = msg.value;\n // Account presale sales separately, so that they do not count against pricing tranches\n uint tokenAmount = pricingStrategy.calculatePrice(weiAmount, weiRaised - presaleWeiRaised, tokensSold, msg.sender, token.decimals());\n if(tokenAmount == 0) {\n // Dust transaction\n throw;\n }\n if(isWhiteListed) {\n if(tokenAmount < earlyParticipantWhitelist[receiver].minCap && tokenAmountOf[receiver] == 0) {\n // tokenAmount < minCap for investor\n throw;\n }\n if(tokenAmount > earlyParticipantWhitelist[receiver].maxCap) {\n // tokenAmount > maxCap for investor\n throw;\n }\n // Check that we did not bust the investor's cap\n if (isBreakingInvestorCap(receiver, tokenAmount)) {\n throw;\n }\n } else {\n if(tokenAmount < token.minCap() && tokenAmountOf[receiver] == 0) {\n throw;\n }\n }\n // Check that we did not bust the cap\n if(isBreakingCap(weiAmount, tokenAmount, weiRaised, tokensSold)) {\n throw;\n }\n // Update investor\n investedAmountOf[receiver] = investedAmountOf[receiver].plus(weiAmount);\n tokenAmountOf[receiver] = tokenAmountOf[receiver].plus(tokenAmount);\n // Update totals\n weiRaised = weiRaised.plus(weiAmount);\n tokensSold = tokensSold.plus(tokenAmount);\n if(pricingStrategy.isPresalePurchase(receiver)) {\n presaleWeiRaised = presaleWeiRaised.plus(weiAmount);\n }\n if(investedAmountOf[receiver] == 0) {\n // A new investor\n investorCount++;\n }\n assignTokens(receiver, tokenAmount);\n // Pocket the money\n if(!multisigWallet.send(weiAmount)) throw;\n if (isWhiteListed) {\n uint num = 0;\n for (var i = 0; i < joinedCrowdsalesLen; i++) {\n if (this == joinedCrowdsales[i]) \n num = i;\n }\n if (num + 1 < joinedCrowdsalesLen) {\n for (var j = num + 1; j < joinedCrowdsalesLen; j++) {\n CrowdsaleExt crowdsale = CrowdsaleExt(joinedCrowdsales[j]);\n crowdsale.updateEarlyParicipantWhitelist(msg.sender, this, tokenAmount);\n }\n }\n }\n // Tell us invest was success\n Invested(receiver, weiAmount, tokenAmount, customerId);\n }\n /**\n * Preallocate tokens for the early investors.\n *\n * Preallocated tokens have been sold before the actual crowdsale opens.\n * This function mints the tokens and moves the crowdsale needle.\n *\n * Investor count is not handled; it is assumed this goes for multiple investors\n * and the token distribution happens outside the smart contract flow.\n *\n * No money is exchanged, as the crowdsale team already have received the payment.\n *\n * @param fullTokens tokens as full tokens - decimal places added internally\n * @param weiPrice Price of a single full token in wei\n *\n */\n function preallocate(address receiver, uint fullTokens, uint weiPrice) public onlyOwner {\n uint tokenAmount = fullTokens * 10**token.decimals();\n uint weiAmount = weiPrice * fullTokens; // This can be also 0, we give out tokens for free\n weiRaised = weiRaised.plus(weiAmount);\n tokensSold = tokensSold.plus(tokenAmount);\n investedAmountOf[receiver] = investedAmountOf[receiver].plus(weiAmount);\n tokenAmountOf[receiver] = tokenAmountOf[receiver].plus(tokenAmount);\n assignTokens(receiver, tokenAmount);\n // Tell us invest was success\n Invested(receiver, weiAmount, tokenAmount, 0);\n }\n /**\n * Allow anonymous contributions to this crowdsale.\n */\n function investWithSignedAddress(address addr, uint128 customerId, uint8 v, bytes32 r, bytes32 s) public payable {\n bytes32 hash = sha256(addr);\n if (ecrecover(hash, v, r, s) != signerAddress) throw;\n if(customerId == 0) throw; // UUIDv4 sanity check\n investInternal(addr, customerId);\n }\n /**\n * Track who is the customer making the payment so we can send thank you email.\n */\n function investWithCustomerId(address addr, uint128 customerId) public payable {\n if(requiredSignedAddress) throw; // Crowdsale allows only server-side signed participants\n if(customerId == 0) throw; // UUIDv4 sanity check\n investInternal(addr, customerId);\n }\n /**\n * Allow anonymous contributions to this crowdsale.\n */\n function invest(address addr) public payable {\n if(requireCustomerId) throw; // Crowdsale needs to track participants for thank you email\n if(requiredSignedAddress) throw; // Crowdsale allows only server-side signed participants\n investInternal(addr, 0);\n }\n /**\n * Invest to tokens, recognize the payer and clear his address.\n *\n */\n function buyWithSignedAddress(uint128 customerId, uint8 v, bytes32 r, bytes32 s) public payable {\n investWithSignedAddress(msg.sender, customerId, v, r, s);\n }\n /**\n * Invest to tokens, recognize the payer.\n *\n */\n function buyWithCustomerId(uint128 customerId) public payable {\n investWithCustomerId(msg.sender, customerId);\n }\n /**\n * The basic entry point to participate the crowdsale process.\n *\n * Pay for funding, get invested tokens back in the sender address.\n */\n function buy() public payable {\n invest(msg.sender);\n }\n /**\n * Finalize a succcesful crowdsale.\n *\n * The owner can triggre a call the contract that provides post-crowdsale actions, like releasing the tokens.\n */\n function finalize() public inState(State.Success) onlyOwner stopInEmergency {\n // Already finalized\n if(finalized) {\n throw;\n }\n // Finalizing is optional. We only call it if we are given a finalizing agent.\n if(address(finalizeAgent) != 0) {\n finalizeAgent.finalizeCrowdsale();\n }\n finalized = true;\n }\n /**\n * Allow to (re)set finalize agent.\n *\n * Design choice: no state restrictions on setting this, so that we can fix fat finger mistakes.\n */\n function setFinalizeAgent(FinalizeAgent addr) onlyOwner {\n finalizeAgent = addr;\n // Don't allow setting bad agent\n if(!finalizeAgent.isFinalizeAgent()) {\n throw;\n }\n }\n /**\n * Set policy do we need to have server-side customer ids for the investments.\n *\n */\n function setRequireCustomerId(bool value) onlyOwner {\n requireCustomerId = value;\n InvestmentPolicyChanged(requireCustomerId, requiredSignedAddress, signerAddress);\n }\n /**\n * Set policy if all investors must be cleared on the server side first.\n *\n * This is e.g. for the accredited investor clearing.\n *\n */\n function setRequireSignedAddress(bool value, address _signerAddress) onlyOwner {\n requiredSignedAddress = value;\n signerAddress = _signerAddress;\n InvestmentPolicyChanged(requireCustomerId, requiredSignedAddress, signerAddress);\n }\n /**\n * Allow addresses to do early participation.\n *\n * TODO: Fix spelling error in the name\n */\n function setEarlyParicipantWhitelist(address addr, bool status, uint minCap, uint maxCap) onlyOwner {\n if (!isWhiteListed) throw;\n earlyParticipantWhitelist[addr] = WhiteListData({status:status, minCap:minCap, maxCap:maxCap});\n Whitelisted(addr, status);\n }\n function setEarlyParicipantsWhitelist(address[] addrs, bool[] statuses, uint[] minCaps, uint[] maxCaps) onlyOwner {\n if (!isWhiteListed) throw;\n for (uint iterator = 0; iterator < addrs.length; iterator++) {\n setEarlyParicipantWhitelist(addrs[iterator], statuses[iterator], minCaps[iterator], maxCaps[iterator]);\n }\n }\n function updateEarlyParicipantWhitelist(address addr, address contractAddr, uint tokensBought) {\n if (tokensBought < earlyParticipantWhitelist[addr].minCap) throw;\n if (!isWhiteListed) throw;\n if (addr != msg.sender && contractAddr != msg.sender) throw;\n uint newMaxCap = earlyParticipantWhitelist[addr].maxCap;\n newMaxCap = newMaxCap.minus(tokensBought);\n earlyParticipantWhitelist[addr] = WhiteListData({status:earlyParticipantWhitelist[addr].status, minCap:0, maxCap:newMaxCap});\n }\n function updateJoinedCrowdsales(address addr) onlyOwner {\n joinedCrowdsales[joinedCrowdsalesLen++] = addr;\n }\n function setLastCrowdsale(address addr) onlyOwner {\n lastCrowdsale = addr;\n }\n function clearJoinedCrowdsales() onlyOwner {\n joinedCrowdsalesLen = 0;\n }\n function updateJoinedCrowdsalesMultiple(address[] addrs) onlyOwner {\n clearJoinedCrowdsales();\n for (uint iter = 0; iter < addrs.length; iter++) {\n if(joinedCrowdsalesLen == joinedCrowdsales.length) {\n joinedCrowdsales.length += 1;\n }\n joinedCrowdsales[joinedCrowdsalesLen++] = addrs[iter];\n if (iter == addrs.length - 1)\n setLastCrowdsale(addrs[iter]);\n }\n }\n function setStartsAt(uint time) onlyOwner {\n if (finalized) throw;\n if (!isUpdatable) throw;\n if(now > time) {\n throw; // Don't change past\n }\n if(time > endsAt) {\n throw;\n }\n CrowdsaleExt lastCrowdsaleCntrct = CrowdsaleExt(lastCrowdsale);\n if (lastCrowdsaleCntrct.finalized()) throw;\n startsAt = time;\n StartsAtChanged(startsAt);\n }\n /**\n * Allow crowdsale owner to close early or extend the crowdsale.\n *\n * This is useful e.g. for a manual soft cap implementation:\n * - after X amount is reached determine manual closing\n *\n * This may put the crowdsale to an invalid state,\n * but we trust owners know what they are doing.\n *\n */\n function setEndsAt(uint time) onlyOwner {\n if (finalized) throw;\n if (!isUpdatable) throw;\n if(now > time) {\n throw; // Don't change past\n }\n if(startsAt > time) {\n throw;\n }\n CrowdsaleExt lastCrowdsaleCntrct = CrowdsaleExt(lastCrowdsale);\n if (lastCrowdsaleCntrct.finalized()) throw;\n uint num = 0;\n for (var i = 0; i < joinedCrowdsalesLen; i++) {\n if (this == joinedCrowdsales[i]) \n num = i;\n }\n if (num + 1 < joinedCrowdsalesLen) {\n for (var j = num + 1; j < joinedCrowdsalesLen; j++) {\n CrowdsaleExt crowdsale = CrowdsaleExt(joinedCrowdsales[j]);\n if (time > crowdsale.startsAt()) throw;\n }\n }\n endsAt = time;\n EndsAtChanged(endsAt);\n }\n /**\n * Allow to (re)set pricing strategy.\n *\n * Design choice: no state restrictions on the set, so that we can fix fat finger mistakes.\n */\n function setPricingStrategy(PricingStrategy _pricingStrategy) onlyOwner {\n pricingStrategy = _pricingStrategy;\n // Don't allow setting bad agent\n if(!pricingStrategy.isPricingStrategy()) {\n throw;\n }\n }\n /**\n * Allow to change the team multisig address in the case of emergency.\n *\n * This allows to save a deployed crowdsale wallet in the case the crowdsale has not yet begun\n * (we have done only few test transactions). After the crowdsale is going\n * then multisig address stays locked for the safety reasons.\n */\n function setMultisig(address addr) public onlyOwner {\n // Change\n if(investorCount > MAX_INVESTMENTS_BEFORE_MULTISIG_CHANGE) {\n throw;\n }\n multisigWallet = addr;\n }\n /**\n * Allow load refunds back on the contract for the refunding.\n *\n * The team can transfer the funds back on the smart contract in the case the minimum goal was not reached..\n */\n function loadRefund() public payable inState(State.Failure) {\n if(msg.value == 0) throw;\n loadedRefund = loadedRefund.plus(msg.value);\n }\n /**\n * Investors can claim refund.\n *\n * Note that any refunds from proxy buyers should be handled separately,\n * and not through this contract.\n */\n function refund() public inState(State.Refunding) {\n uint256 weiValue = investedAmountOf[msg.sender];\n if (weiValue == 0) throw;\n investedAmountOf[msg.sender] = 0;\n weiRefunded = weiRefunded.plus(weiValue);\n Refund(msg.sender, weiValue);\n if (!msg.sender.send(weiValue)) throw;\n }\n /**\n * @return true if the crowdsale has raised enough money to be a successful.\n */\n function isMinimumGoalReached() public constant returns (bool reached) {\n return weiRaised >= minimumFundingGoal;\n }\n /**\n * Check if the contract relationship looks good.\n */\n function isFinalizerSane() public constant returns (bool sane) {\n return finalizeAgent.isSane();\n }\n /**\n * Check if the contract relationship looks good.\n */\n function isPricingSane() public constant returns (bool sane) {\n return pricingStrategy.isSane(address(this));\n }\n /**\n * Crowdfund state machine management.\n *\n * We make it a function and do not assign the result to a variable, so there is no chance of the variable being stale.\n */\n function getState() public constant returns (State) {\n if(finalized) return State.Finalized;\n else if (address(finalizeAgent) == 0) return State.Preparing;\n else if (!finalizeAgent.isSane()) return State.Preparing;\n else if (!pricingStrategy.isSane(address(this))) return State.Preparing;\n else if (block.timestamp < startsAt) return State.PreFunding;\n else if (block.timestamp <= endsAt && !isCrowdsaleFull()) return State.Funding;\n else if (isMinimumGoalReached()) return State.Success;\n else if (!isMinimumGoalReached() && weiRaised > 0 && loadedRefund >= weiRaised) return State.Refunding;\n else return State.Failure;\n }\n /** This is for manual testing of multisig wallet interaction */\n function setOwnerTestValue(uint val) onlyOwner {\n ownerTestValue = val;\n }\n /** Interface marker. */\n function isCrowdsale() public constant returns (bool) {\n return true;\n }\n //\n // Modifiers\n //\n /** Modified allowing execution only if the crowdsale is currently running. */\n modifier inState(State state) {\n if(getState() != state) throw;\n _;\n }\n //\n // Abstract functions\n //\n /**\n * Check if the current invested breaks our cap rules.\n *\n *\n * The child contract must define their own cap setting rules.\n * We allow a lot of flexibility through different capping strategies (ETH, token count)\n * Called from invest().\n *\n * @param weiAmount The amount of wei the investor tries to invest in the current transaction\n * @param tokenAmount The amount of tokens we try to give to the investor in the current transaction\n * @param weiRaisedTotal What would be our total raised balance after this transaction\n * @param tokensSoldTotal What would be our total sold tokens count after this transaction\n *\n * @return true if taking this investment would break our cap rules\n */\n function isBreakingCap(uint weiAmount, uint tokenAmount, uint weiRaisedTotal, uint tokensSoldTotal) constant returns (bool limitBroken);\n function isBreakingInvestorCap(address receiver, uint tokenAmount) constant returns (bool limitBroken);\n /**\n * Check if the current crowdsale is full and we can no longer sell any tokens.\n */\n function isCrowdsaleFull() public constant returns (bool);\n /**\n * Create new tokens or transfer issued tokens to the investor depending on the cap model.\n */\n function assignTokens(address receiver, uint tokenAmount) private;\n}\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * This smart contract code is Copyright 2017 TokenMarket Ltd. For more information see https://tokenmarket.net\n *\n * Licensed under the Apache License, version 2.0: https://github.com/TokenMarketNet/ico/blob/master/LICENSE.txt\n */\n/**\n * Standard ERC20 token with Short Hand Attack and approve() race condition mitigation.\n *\n * Based on code by FirstBlood:\n * https://github.com/Firstbloodio/token/blob/master/smart_contract/FirstBloodToken.sol\n */\ncontract StandardToken is ERC20, SafeMath {\n /* Token supply got increased and a new owner received these tokens */\n event Minted(address receiver, uint amount);\n /* Actual balances of token holders */\n mapping(address => uint) balances;\n /* approve() allowances */\n mapping (address => mapping (address => uint)) allowed;\n /* Interface declaration */\n function isToken() public constant returns (bool weAre) {\n return true;\n }\n function transfer(address _to, uint _value) returns (bool success) {\n balances[msg.sender] = safeSub(balances[msg.sender], _value);\n balances[_to] = safeAdd(balances[_to], _value);\n Transfer(msg.sender, _to, _value);\n return true;\n }\n function transferFrom(address _from, address _to, uint _value) returns (bool success) {\n uint _allowance = allowed[_from][msg.sender];\n balances[_to] = safeAdd(balances[_to], _value);\n balances[_from] = safeSub(balances[_from], _value);\n allowed[_from][msg.sender] = safeSub(_allowance, _value);\n Transfer(_from, _to, _value);\n return true;\n }\n function balanceOf(address _owner) constant returns (uint balance) {\n return balances[_owner];\n }\n function approve(address _spender, uint _value) returns (bool success) {\n // To change the approve amount you first have to reduce the addresses`\n // allowance to zero by calling `approve(_spender, 0)` if it is not\n // already 0 to mitigate the race condition described here:\n // https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729\n if ((_value != 0) && (allowed[msg.sender][_spender] != 0)) throw;\n allowed[msg.sender][_spender] = _value;\n Approval(msg.sender, _spender, _value);\n return true;\n }\n function allowance(address _owner, address _spender) constant returns (uint remaining) {\n return allowed[_owner][_spender];\n }\n}\n/**\n * A token that can increase its supply by another contract.\n *\n * This allows uncapped crowdsale by dynamically increasing the supply when money pours in.\n * Only mint agents, contracts whitelisted by owner, can mint new tokens.\n *\n */\ncontract MintableTokenExt is StandardToken, Ownable {\n using SafeMathLibExt for uint;\n bool public mintingFinished = false;\n /** List of agents that are allowed to create new tokens */\n mapping (address => bool) public mintAgents;\n event MintingAgentChanged(address addr, bool state );\n struct ReservedTokensData {\n uint inTokens;\n uint inPercentage;\n }\n mapping (address => ReservedTokensData) public reservedTokensList;\n address[] public reservedTokensDestinations;\n uint public reservedTokensDestinationsLen = 0;\n function setReservedTokensList(address addr, uint inTokens, uint inPercentage) onlyOwner {\n reservedTokensDestinations.push(addr);\n reservedTokensDestinationsLen++;\n reservedTokensList[addr] = ReservedTokensData({inTokens:inTokens, inPercentage:inPercentage});\n }\n function getReservedTokensListValInTokens(address addr) constant returns (uint inTokens) {\n return reservedTokensList[addr].inTokens;\n }\n function getReservedTokensListValInPercentage(address addr) constant returns (uint inPercentage) {\n return reservedTokensList[addr].inPercentage;\n }\n function setReservedTokensListMultiple(address[] addrs, uint[] inTokens, uint[] inPercentage) onlyOwner {\n for (uint iterator = 0; iterator < addrs.length; iterator++) {\n setReservedTokensList(addrs[iterator], inTokens[iterator], inPercentage[iterator]);\n }\n }\n /**\n * Create new tokens and allocate them to an address..\n *\n * Only callably by a crowdsale contract (mint agent).\n */\n function mint(address receiver, uint amount) onlyMintAgent canMint public {\n totalSupply = totalSupply.plus(amount);\n balances[receiver] = balances[receiver].plus(amount);\n // This will make the mint transaction apper in EtherScan.io\n // We can remove this after there is a standardized minting event\n Transfer(0, receiver, amount);\n }\n /**\n * Owner can allow a crowdsale contract to mint new tokens.\n */\n function setMintAgent(address addr, bool state) onlyOwner canMint public {\n mintAgents[addr] = state;\n MintingAgentChanged(addr, state);\n }\n modifier onlyMintAgent() {\n // Only crowdsale contracts are allowed to mint new tokens\n if(!mintAgents[msg.sender]) {\n throw;\n }\n _;\n }\n /** Make sure we are not done yet. */\n modifier canMint() {\n if(mintingFinished) throw;\n _;\n }\n}\n/**\n * ICO crowdsale contract that is capped by amout of tokens.\n *\n * - Tokens are dynamically created during the crowdsale\n *\n *\n */\ncontract MintedTokenCappedCrowdsaleExt is CrowdsaleExt {\n /* Maximum amount of tokens this crowdsale can sell. */\n uint public maximumSellableTokens;\n function MintedTokenCappedCrowdsaleExt(address _token, PricingStrategy _pricingStrategy, address _multisigWallet, uint _start, uint _end, uint _minimumFundingGoal, uint _maximumSellableTokens, bool _isUpdatable, bool _isWhiteListed) CrowdsaleExt(_token, _pricingStrategy, _multisigWallet, _start, _end, _minimumFundingGoal, _isUpdatable, _isWhiteListed) {\n maximumSellableTokens = _maximumSellableTokens;\n }\n // Crowdsale maximumSellableTokens has been changed\n event MaximumSellableTokensChanged(uint newMaximumSellableTokens);\n /**\n * Called from invest() to confirm if the curret investment does not break our cap rule.\n */\n function isBreakingCap(uint weiAmount, uint tokenAmount, uint weiRaisedTotal, uint tokensSoldTotal) constant returns (bool limitBroken) {\n return tokensSoldTotal > maximumSellableTokens;\n }\n function isBreakingInvestorCap(address addr, uint tokenAmount) constant returns (bool limitBroken) {\n if (!isWhiteListed) throw;\n uint maxCap = earlyParticipantWhitelist[addr].maxCap;\n return (tokenAmountOf[addr].plus(tokenAmount)) > maxCap;\n }\n function isCrowdsaleFull() public constant returns (bool) {\n return tokensSold >= maximumSellableTokens;\n }\n /**\n * Dynamically create tokens and assign them to the investor.\n */\n function assignTokens(address receiver, uint tokenAmount) private {\n MintableTokenExt mintableToken = MintableTokenExt(token);\n mintableToken.mint(receiver, tokenAmount);\n }\n function setMaximumSellableTokens(uint tokens) onlyOwner {\n if (finalized) throw;\n if (!isUpdatable) throw;\n CrowdsaleExt lastCrowdsaleCntrct = CrowdsaleExt(lastCrowdsale);\n if (lastCrowdsaleCntrct.finalized()) throw;\n maximumSellableTokens = tokens;\n MaximumSellableTokensChanged(maximumSellableTokens);\n }\n}\n",
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{
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"name": "ownerTestValue",
"outputs": [
{
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"type": "uint256"
}
],
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"type": "function"
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{
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"name": "requireCustomerId",
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{
"name": "",
"type": "bool"
}
],
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},
{
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{
"name": "addr",
"type": "address"
}
],
"name": "invest",
"outputs": [],
"payable": true,
"type": "function"
},
{
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"inputs": [
{
"name": "addr",
"type": "address"
},
{
"name": "tokenAmount",
"type": "uint256"
}
],
"name": "isBreakingInvestorCap",
"outputs": [
{
"name": "limitBroken",
"type": "bool"
}
],
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"type": "function"
},
{
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"inputs": [
{
"name": "addrs",
"type": "address[]"
}
],
"name": "updateJoinedCrowdsalesMultiple",
"outputs": [],
"payable": false,
"type": "function"
},
{
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"inputs": [],
"name": "isPricingSane",
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{
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"type": "bool"
}
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{
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"name": "endsAt",
"outputs": [
{
"name": "",
"type": "uint256"
}
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{
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"inputs": [
{
"name": "addr",
"type": "address"
},
{
"name": "status",
"type": "bool"
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{
"name": "minCap",
"type": "uint256"
},
{
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"type": "uint256"
}
],
"name": "setEarlyParicipantWhitelist",
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"type": "function"
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{
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"name": "isUpdatable",
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{
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"type": "bool"
}
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{
"constant": true,
"inputs": [],
"name": "minimumFundingGoal",
"outputs": [
{
"name": "",
"type": "uint256"
}
],
"payable": false,
"type": "function"
},
{
"constant": true,
"inputs": [],
"name": "getState",
"outputs": [
{
"name": "",
"type": "uint8"
}
],
"payable": false,
"type": "function"
},
{
"constant": false,
"inputs": [
{
"name": "addr",
"type": "address"
}
],
"name": "setFinalizeAgent",
"outputs": [],
"payable": false,
"type": "function"
},
{
"constant": false,
"inputs": [
{
"name": "addr",
"type": "address"
},
{
"name": "customerId",
"type": "uint128"
},
{