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ERC-20
Overview
Max Total Supply
0 INSP
Holders
632,262
Market
Onchain Market Cap
$0.00
Circulating Supply Market Cap
-
Other Info
Token Contract (WITH 0 Decimals)
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# | Exchange | Pair | Price | 24H Volume | % Volume |
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Contract Name:
INSPromoToken
Compiler Version
v0.4.16+commit.d7661dd9
Optimization Enabled:
Yes with 200 runs
Other Settings:
default evmVersion
Contract Source Code (Solidity)
/** *Submitted for verification at Etherscan.io on 2017-11-06 */ /* * Safe Math Smart Contract. Copyright © 2016–2017 by ABDK Consulting. * Author: Mikhail Vladimirov <[email protected]> */ pragma solidity ^0.4.16; /** * Provides methods to safely add, subtract and multiply uint256 numbers. */ contract SafeMath { uint256 constant private MAX_UINT256 = 0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF; /** * Add two uint256 values, throw in case of overflow. * * @param x first value to add * @param y second value to add * @return x + y */ function safeAdd (uint256 x, uint256 y) constant internal returns (uint256 z) { assert (x <= MAX_UINT256 - y); return x + y; } /** * Subtract one uint256 value from another, throw in case of underflow. * * @param x value to subtract from * @param y value to subtract * @return x - y */ function safeSub (uint256 x, uint256 y) constant internal returns (uint256 z) { assert (x >= y); return x - y; } /** * Multiply two uint256 values, throw in case of overflow. * * @param x first value to multiply * @param y second value to multiply * @return x * y */ function safeMul (uint256 x, uint256 y) constant internal returns (uint256 z) { if (y == 0) return 0; // Prevent division by zero at the next line assert (x <= MAX_UINT256 / y); return x * y; } } /* * ERC-20 Standard Token Smart Contract Interface. * Copyright © 2016–2017 by ABDK Consulting. * Author: Mikhail Vladimirov <[email protected]> */ /** * ERC-20 standard token interface, as defined * <a href="http://github.com/ethereum/EIPs/issues/20">here</a>. */ contract Token { /** * Get total number of tokens in circulation. * * @return total number of tokens in circulation */ function totalSupply () constant returns (uint256 supply); /** * Get number of tokens currently belonging to given owner. * * @param _owner address to get number of tokens currently belonging to the * owner of * @return number of tokens currently belonging to the owner of given address */ function balanceOf (address _owner) constant returns (uint256 balance); /** * Transfer given number of tokens from message sender to given recipient. * * @param _to address to transfer tokens to the owner of * @param _value number of tokens to transfer to the owner of given address * @return true if tokens were transferred successfully, false otherwise */ function transfer (address _to, uint256 _value) returns (bool success); /** * Transfer given number of tokens from given owner to given recipient. * * @param _from address to transfer tokens from the owner of * @param _to address to transfer tokens to the owner of * @param _value number of tokens to transfer from given owner to given * recipient * @return true if tokens were transferred successfully, false otherwise */ function transferFrom (address _from, address _to, uint256 _value) returns (bool success); /** * Allow given spender to transfer given number of tokens from message sender. * * @param _spender address to allow the owner of to transfer tokens from * message sender * @param _value number of tokens to allow to transfer * @return true if token transfer was successfully approved, false otherwise */ function approve (address _spender, uint256 _value) returns (bool success); /** * Tell how many tokens given spender is currently allowed to transfer from * given owner. * * @param _owner address to get number of tokens allowed to be transferred * from the owner of * @param _spender address to get number of tokens allowed to be transferred * by the owner of * @return number of tokens given spender is currently allowed to transfer * from given owner */ function allowance (address _owner, address _spender) constant returns (uint256 remaining); /** * Logged when tokens were transferred from one owner to another. * * @param _from address of the owner, tokens were transferred from * @param _to address of the owner, tokens were transferred to * @param _value number of tokens transferred */ event Transfer (address indexed _from, address indexed _to, uint256 _value); /** * Logged when owner approved his tokens to be transferred by some spender. * * @param _owner owner who approved his tokens to be transferred * @param _spender spender who were allowed to transfer the tokens belonging * to the owner * @param _value number of tokens belonging to the owner, approved to be * transferred by the spender */ event Approval ( address indexed _owner, address indexed _spender, uint256 _value); } /* * Abstract Token Smart Contract. Copyright © 2017 by ABDK Consulting. * Author: Mikhail Vladimirov <[email protected]> */ /** * Abstract Token Smart Contract that could be used as a base contract for * ERC-20 token contracts. */ contract AbstractToken is Token, SafeMath { /** * Create new Abstract Token contract. */ function AbstractToken () { // Do nothing } /** * Get number of tokens currently belonging to given owner. * * @param _owner address to get number of tokens currently belonging to the * owner of * @return number of tokens currently belonging to the owner of given address */ function balanceOf (address _owner) constant returns (uint256 balance) { return accounts [_owner]; } /** * Transfer given number of tokens from message sender to given recipient. * * @param _to address to transfer tokens to the owner of * @param _value number of tokens to transfer to the owner of given address * @return true if tokens were transferred successfully, false otherwise */ function transfer (address _to, uint256 _value) returns (bool success) { uint256 fromBalance = accounts [msg.sender]; if (fromBalance < _value) return false; if (_value > 0 && msg.sender != _to) { accounts [msg.sender] = safeSub (fromBalance, _value); accounts [_to] = safeAdd (accounts [_to], _value); Transfer (msg.sender, _to, _value); } return true; } /** * Transfer given number of tokens from given owner to given recipient. * * @param _from address to transfer tokens from the owner of * @param _to address to transfer tokens to the owner of * @param _value number of tokens to transfer from given owner to given * recipient * @return true if tokens were transferred successfully, false otherwise */ function transferFrom (address _from, address _to, uint256 _value) returns (bool success) { uint256 spenderAllowance = allowances [_from][msg.sender]; if (spenderAllowance < _value) return false; uint256 fromBalance = accounts [_from]; if (fromBalance < _value) return false; allowances [_from][msg.sender] = safeSub (spenderAllowance, _value); if (_value > 0 && _from != _to) { accounts [_from] = safeSub (fromBalance, _value); accounts [_to] = safeAdd (accounts [_to], _value); Transfer (_from, _to, _value); } return true; } /** * Allow given spender to transfer given number of tokens from message sender. * * @param _spender address to allow the owner of to transfer tokens from * message sender * @param _value number of tokens to allow to transfer * @return true if token transfer was successfully approved, false otherwise */ function approve (address _spender, uint256 _value) returns (bool success) { allowances [msg.sender][_spender] = _value; Approval (msg.sender, _spender, _value); return true; } /** * Tell how many tokens given spender is currently allowed to transfer from * given owner. * * @param _owner address to get number of tokens allowed to be transferred * from the owner of * @param _spender address to get number of tokens allowed to be transferred * by the owner of * @return number of tokens given spender is currently allowed to transfer * from given owner */ function allowance (address _owner, address _spender) constant returns (uint256 remaining) { return allowances [_owner][_spender]; } /** * Mapping from addresses of token holders to the numbers of tokens belonging * to these token holders. */ mapping (address => uint256) accounts; /** * Mapping from addresses of token holders to the mapping of addresses of * spenders to the allowances set by these token holders to these spenders. */ mapping (address => mapping (address => uint256)) private allowances; } /* * Abstract Virtual Token Smart Contract. Copyright © 2017 by ABDK Consulting. * Author: Mikhail Vladimirov <[email protected]> */ /** * Abstract Token Smart Contract that could be used as a base contract for * ERC-20 token contracts supporting virtual balance. */ contract AbstractVirtualToken is AbstractToken { /** * Maximum number of real (i.e. non-virtual) tokens in circulation (2^255-1). */ uint256 constant MAXIMUM_TOKENS_COUNT = 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF; /** * Mask used to extract real balance of an account (2^255-1). */ uint256 constant BALANCE_MASK = 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF; /** * Mask used to extract "materialized" flag of an account (2^255). */ uint256 constant MATERIALIZED_FLAG_MASK = 0x8000000000000000000000000000000000000000000000000000000000000000; /** * Create new Abstract Virtual Token contract. */ function AbstractVirtualToken () AbstractToken () { // Do nothing } /** * Get total number of tokens in circulation. * * @return total number of tokens in circulation */ function totalSupply () constant returns (uint256 supply) { return tokensCount; } /** * Get number of tokens currently belonging to given owner. * * @param _owner address to get number of tokens currently belonging to the * owner of * @return number of tokens currently belonging to the owner of given address */ function balanceOf (address _owner) constant returns (uint256 balance) { return safeAdd ( accounts [_owner] & BALANCE_MASK, getVirtualBalance (_owner)); } /** * Transfer given number of tokens from message sender to given recipient. * * @param _to address to transfer tokens to the owner of * @param _value number of tokens to transfer to the owner of given address * @return true if tokens were transferred successfully, false otherwise */ function transfer (address _to, uint256 _value) returns (bool success) { if (_value > balanceOf (msg.sender)) return false; else { materializeBalanceIfNeeded (msg.sender, _value); return AbstractToken.transfer (_to, _value); } } /** * Transfer given number of tokens from given owner to given recipient. * * @param _from address to transfer tokens from the owner of * @param _to address to transfer tokens to the owner of * @param _value number of tokens to transfer from given owner to given * recipient * @return true if tokens were transferred successfully, false otherwise */ function transferFrom (address _from, address _to, uint256 _value) returns (bool success) { if (_value > allowance (_from, msg.sender)) return false; if (_value > balanceOf (_from)) return false; else { materializeBalanceIfNeeded (_from, _value); return AbstractToken.transferFrom (_from, _to, _value); } } /** * Get virtual balance of the owner of given address. * * @param _owner address to get virtual balance for the owner of * @return virtual balance of the owner of given address */ function virtualBalanceOf (address _owner) internal constant returns (uint256 _virtualBalance); /** * Calculate virtual balance of the owner of given address taking into account * materialized flag and total number of real tokens already in circulation. */ function getVirtualBalance (address _owner) private constant returns (uint256 _virtualBalance) { if (accounts [_owner] & MATERIALIZED_FLAG_MASK != 0) return 0; else { _virtualBalance = virtualBalanceOf (_owner); uint256 maxVirtualBalance = safeSub (MAXIMUM_TOKENS_COUNT, tokensCount); if (_virtualBalance > maxVirtualBalance) _virtualBalance = maxVirtualBalance; } } /** * Materialize virtual balance of the owner of given address if this will help * to transfer given number of tokens from it. * * @param _owner address to materialize virtual balance of * @param _value number of tokens to be transferred */ function materializeBalanceIfNeeded (address _owner, uint256 _value) private { uint256 storedBalance = accounts [_owner]; if (storedBalance & MATERIALIZED_FLAG_MASK == 0) { // Virtual balance is not materialized yet if (_value > storedBalance) { // Real balance is not enough uint256 virtualBalance = getVirtualBalance (_owner); require (safeSub (_value, storedBalance) <= virtualBalance); accounts [_owner] = MATERIALIZED_FLAG_MASK | safeAdd (storedBalance, virtualBalance); tokensCount = safeAdd (tokensCount, virtualBalance); } } } /** * Number of real (i.e. non-virtual) tokens in circulation. */ uint256 tokensCount; } /* * INS Promo Token Smart Contract. Copyright © 2016-2017 by ABDK Consulting. * Author: Mikhail Vladimirov <[email protected]> */ /** * EIP-20 token smart contract that manages INS promo tokens. */ contract INSPromoToken is AbstractVirtualToken { /** * Balance threshold to assign virtual tokens to the owner of higher balances * then this threshold. */ uint256 private constant VIRTUAL_THRESHOLD = 0.1 ether; /** * Number of virtual tokens to assign to the owners of balances higher than * virtual threshold. */ uint256 private constant VIRTUAL_COUNT = 777; /** * Create new INS Promo Token smart contract and make message sender to be * the owner of smart contract. */ function INSPromoToken () AbstractVirtualToken () { owner = msg.sender; } /** * Get name of this token. * * @return name of this token */ function name () constant returns (string result) { return "INS Promo"; } /** * Get symbol of this token. * * @return symbol of this token */ function symbol () constant returns (string result) { return "INSP"; } /** * Get number of decimals for this token. * * @return number of decimals for this token */ function decimals () constant returns (uint8 result) { return 0; } /** * Notify owners about their virtual balances. * * @param _owners addresses of the owners to be notified */ function massNotify (address [] _owners) { require (msg.sender == owner); uint256 count = _owners.length; for (uint256 i = 0; i < count; i++) Transfer (address (0), _owners [i], VIRTUAL_COUNT); } /** * Kill this smart contract. */ function kill () { require (msg.sender == owner); selfdestruct (owner); } /** * Get virtual balance of the owner of given address. * * @param _owner address to get virtual balance for the owner of * @return virtual balance of the owner of given address */ function virtualBalanceOf (address _owner) internal constant returns (uint256 _virtualBalance) { return _owner.balance >= VIRTUAL_THRESHOLD ? VIRTUAL_COUNT : 0; } /** * Address of the owner of this smart contract. */ address private owner; }
Contract Security Audit
- No Contract Security Audit Submitted- Submit Audit Here
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Contract Creation Code
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Deployed Bytecode
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Swarm Source
bzzr://ce703ad1b9c1f8c632a5ab06ffef9181d97fc1163d3d7f517b0ba4d7c032fee0
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