The public counter that sells permissioned storage deployments for a fee
Historical Significance
Part of a 2016 attempt to sell working organisations as deployable parts: a governance contract, a token or a payment splitter bought from a counter for a fee, with the created contract's shape published on chain beside it.
Context
Deployed in the Homestead era, when deploying a contract meant compiling one yourself.
Key Facts
Description
BuilderACLStorage is the public facing half of Airalab's DAO toolkit. A caller pays the building fee and gets back a freshly deployed storage contract that keeps typed values under named keys and gates every write behind an access control list, recorded against their address and announced in a Builded event. Deployed on 1 December 2016 by 0x4af013afbadb22d8a88c92d68fc96b033b9ebb8a and recovered from airalab/core. Etherscan cannot verify it: solc writes its link placeholder as the library name in lowercase at this vintage and Etherscan will not resolve that, so this record is the published form.
Source Verified
Heuristic Analysis
The following characteristics were detected through bytecode analysis and may not be accurate.
Spurious Dragon Era
Continued DoS protection. State trie clearing.
Bytecode Overview
Verified Source Available
Source verified through compiler archaeology and exact bytecode matching.
View Verification ProofShow source code (Solidity)
// Submitted by EthereumHistory (ethereumhistory.com)
pragma solidity ^0.4.4;
/**
* @title Contract for object that have an owner
*/
contract Owned {
/**
* Contract owner address
*/
address public owner;
/**
* @dev Store owner on creation
*/
function Owned() { owner = msg.sender; }
/**
* @dev Delegate contract to another person
* @param _owner is another person address
*/
function delegate(address _owner) onlyOwner
{ owner = _owner; }
/**
* @dev Owner check modifier
*/
modifier onlyOwner { if (msg.sender != owner) throw; _; }
}
pragma solidity ^0.4.4;
/**
* @dev Double linked list with address items
*/
library AddressList {
struct Data {
address head;
address tail;
uint length;
mapping(address => bool) isContain;
mapping(address => address) nextOf;
mapping(address => address) prevOf;
}
function first(Data storage _data) constant returns (address)
{ return _data.head; }
function last(Data storage _data) constant returns (address)
{ return _data.tail; }
/**
* @dev Chec list for element
* @param _data is list storage ref
* @param _item is an element
* @return `true` when element in list
*/
function contains(Data storage _data, address _item) constant returns (bool)
{ return _data.isContain[_item]; }
/**
* @dev Next element of list
* @param _data is list storage ref
* @param _item is current element of list
* @return next elemen of list
*/
function next(Data storage _data, address _item) constant returns (address)
{ return _data.nextOf[_item]; }
/**
* @dev Previous element of list
* @param _data is list storage ref
* @param _item is current element of list
* @return previous element of list
*/
function prev(Data storage _data, address _item) constant returns (address)
{ return _data.prevOf[_item]; }
/**
* @dev Append element to end of list
* @param _data is list storage ref
* @param _item is a new list element
*/
function append(Data storage _data, address _item)
{ append(_data, _item, _data.tail); }
/**
* @dev Append element to end of element
* @param _data is list storage ref
* @param _item is a new list element
* @param _to is a item element before new
* @notice gas usage < 100000
*/
function append(Data storage _data, address _item, address _to) {
// Unable to contain double element
if (_data.isContain[_item]) throw;
// Empty list
if (_data.head == 0) {
_data.head = _data.tail = _item;
} else {
if (!_data.isContain[_to]) throw;
var nextTo = _data.nextOf[_to];
if (nextTo != 0) {
_data.prevOf[nextTo] = _item;
} else {
_data.tail = _item;
}
_data.nextOf[_to] = _item;
_data.prevOf[_item] = _to;
_data.nextOf[_item] = nextTo;
}
_data.isContain[_item] = true;
++_data.length;
}
/**
* @dev Prepend element to begin of list
* @param _data is list storage ref
* @param _item is a new list element
*/
function prepend(Data storage _data, address _item)
{ prepend(_data, _item, _data.head); }
/**
* @dev Prepend element to element of list
* @param _data is list storage ref
* @param _item is a new list element
* @param _to is a item element before new
*/
function prepend(Data storage _data, address _item, address _to) {
// Unable to contain double element
if (_data.isContain[_item]) throw;
// Empty list
if (_data.head == 0) {
_data.head = _data.tail = _item;
} else {
if (!_data.isContain[_to]) throw;
var prevTo = _data.prevOf[_to];
if (prevTo != 0) {
_data.nextOf[prevTo] = _item;
} else {
_data.head = _item;
}
_data.prevOf[_item] = prevTo;
_data.nextOf[_item] = _to;
_data.prevOf[_to] = _item;
}
_data.isContain[_item] = true;
++_data.length;
}
/**
* @dev Remove element from list
* @param _data is list storage ref
* @param _item is a removed list element
*/
function remove(Data storage _data, address _item) {
if (!_data.isContain[_item]) throw;
var elemPrev = _data.prevOf[_item];
var elemNext = _data.nextOf[_item];
if (elemPrev != 0) {
_data.nextOf[elemPrev] = elemNext;
} else {
_data.head = elemNext;
}
if (elemNext != 0) {
_data.prevOf[elemNext] = elemPrev;
} else {
_data.tail = elemPrev;
}
_data.isContain[_item] = false;
--_data.length;
}
/**
* @dev Replace element on list
* @param _data is list storage ref
* @param _from is old element
* @param _to is a new element
*/
function replace(Data storage _data, address _from, address _to) {
if (!_data.isContain[_from]) throw;
var elemPrev = _data.prevOf[_from];
var elemNext = _data.nextOf[_from];
if (elemPrev != 0) {
_data.nextOf[elemPrev] = _to;
} else {
_data.head = _to;
}
if (elemNext != 0) {
_data.prevOf[elemNext] = _to;
} else {
_data.tail = _to;
}
_data.prevOf[_to] = elemPrev;
_data.nextOf[_to] = elemNext;
_data.isContain[_from] = false;
}
/**
* @dev Swap two elements of list
* @param _data is list storage ref
* @param _a is a first element
* @param _b is a second element
*/
function swap(Data storage _data, address _a, address _b) {
if (!_data.isContain[_a] || !_data.isContain[_b]) throw;
var prevA = _data.prevOf[_a];
remove(_data, _a);
replace(_data, _b, _a);
if (prevA == 0) {
prepend(_data, _b);
} else {
append(_data, _b, prevA);
}
}
}
pragma solidity ^0.4.4;
/**
* @title ACL storage contract
* @dev this contract used for store and manage access groups and its members
*/
contract ACLStorage is Owned {
// Group list
string[] public group;
/**
* @dev Size of group array
*/
function groupLength() constant returns (uint)
{ return group.length; }
// Group members list by SHA3 of group name
mapping(bytes32 => AddressList.Data) members;
using AddressList for AddressList.Data;
/**
* @dev Group members iteration start
* @param _group is a group name
* @return first member address
*/
function memberFirst(string _group) constant returns (address)
{ return members[sha3(_group)].first(); }
/**
* @dev Group members iteration
* @param _group is a group name
* @param _current is a current iteration address
* @return next iteration address
*/
function memberNext(string _group, address _current) constant returns (address)
{ return members[sha3(_group)].next(_current); }
/**
* @dev Check for `_member` address is member of `_groupName`
* @param _group is a group name for check
* @param _member is a address for member checking
* @return `true` when address is member of group
*/
function isMemberOf(string _group, address _member) constant returns (bool)
{ return members[sha3(_group)].contains(_member); }
/**
* @dev Create access group
* @param _name is a group name
* @param _firstMember is a first member address, group should not be empty
*/
function createGroup(string _name, address _firstMember) onlyOwner {
var mems = members[sha3(_name)];
if (mems.first() == 0) {
group[group.length++] = _name;
mems.append(_firstMember);
}
}
/**
* @dev Add new member into group
* @param _group is a group name
* @param _member is a new member address
*/
function addMember(string _group, address _member) onlyOwner
{ members[sha3(_group)].append(_member); }
/**
* @dev Remove member from group
* @param _group is a group name
* @param _member is a address for remove
*/
function removeMember(string _group, address _member) onlyOwner
{ members[sha3(_group)].remove(_member); }
}
pragma solidity ^0.4.2;
library CreatorACLStorage {
function create() returns (ACLStorage)
{ return new ACLStorage(); }
function version() constant returns (string)
{ return "v0.5.0 (041be4cf)"; }
function abi() constant returns (string)
{ return '[{"constant":true,"inputs":[{"name":"","type":"uint256"}],"name":"group","outputs":[{"name":"","type":"string"}],"payable":false,"type":"function"},{"constant":true,"inputs":[{"name":"_group","type":"string"},{"name":"_member","type":"address"}],"name":"isMemberOf","outputs":[{"name":"","type":"bool"}],"payable":false,"type":"function"},{"constant":true,"inputs":[{"name":"_group","type":"string"}],"name":"memberFirst","outputs":[{"name":"","type":"address"}],"payable":false,"type":"function"},{"constant":false,"inputs":[{"name":"_group","type":"string"},{"name":"_member","type":"address"}],"name":"addMember","outputs":[],"payable":false,"type":"function"},{"constant":false,"inputs":[{"name":"_owner","type":"address"}],"name":"delegate","outputs":[],"payable":false,"type":"function"},{"constant":false,"inputs":[{"name":"_group","type":"string"},{"name":"_member","type":"address"}],"name":"removeMember","outputs":[],"payable":false,"type":"function"},{"constant":true,"inputs":[],"name":"owner","outputs":[{"name":"","type":"address"}],"payable":false,"type":"function"},{"constant":false,"inputs":[{"name":"_name","type":"string"},{"name":"_firstMember","type":"address"}],"name":"createGroup","outputs":[],"payable":false,"type":"function"},{"constant":true,"inputs":[{"name":"_group","type":"string"},{"name":"_current","type":"address"}],"name":"memberNext","outputs":[{"name":"","type":"address"}],"payable":false,"type":"function"}]'; }
}
pragma solidity ^0.4.4;
/**
* @title Contract for objects that can be morder
*/
contract Mortal is Owned {
/**
* @dev Destroy contract and scrub a data
* @notice Only owner can kill me
*/
function kill() onlyOwner
{ suicide(owner); }
}
pragma solidity ^0.4.4;
/**
* @title Builder based contract
*/
contract Builder is Mortal {
/**
* @dev this event emitted for every builded contract
*/
event Builded(address indexed client, address indexed instance);
/* Addresses builded contracts at sender */
mapping(address => address[]) public getContractsOf;
/**
* @dev Get last address
* @return last address contract
*/
function getLastContract() constant returns (address) {
var sender_contracts = getContractsOf[msg.sender];
return sender_contracts[sender_contracts.length - 1];
}
/* Building beneficiary */
address public beneficiary;
/**
* @dev Set beneficiary
* @param _beneficiary is address of beneficiary
*/
function setBeneficiary(address _beneficiary) onlyOwner
{ beneficiary = _beneficiary; }
/* Building cost */
uint public buildingCostWei;
/**
* @dev Set building cost
* @param _buildingCostWei is cost
*/
function setCost(uint _buildingCostWei) onlyOwner
{ buildingCostWei = _buildingCostWei; }
/* Security check report */
string public securityCheckURI;
/**
* @dev Set security check report URI
* @param _uri is an URI to report
*/
function setSecurityCheck(string _uri) onlyOwner
{ securityCheckURI = _uri; }
}
//
// AIRA Builder for ACLStorage contract
//
// Ethereum address:
// - Mainnet:
// - Testnet:
//
pragma solidity ^0.4.4;
/**
* @title BuilderACLStorage contract
*/
contract BuilderACLStorage is Builder {
/**
* @dev Run script creation contract
* @param _client is a contract destination address (zero for sender)
* @return address new contract
*/
function create(address _client) payable returns (address) {
if (buildingCostWei > 0 && beneficiary != 0) {
// Too low value
if (msg.value < buildingCostWei) throw;
// Beneficiary send
if (!beneficiary.send(buildingCostWei)) throw;
// Refund
if (msg.value > buildingCostWei) {
if (!msg.sender.send(msg.value - buildingCostWei)) throw;
}
} else {
// Refund all
if (msg.value > 0) {
if (!msg.sender.send(msg.value)) throw;
}
}
if (_client == 0)
_client = msg.sender;
var inst = CreatorACLStorage.create();
getContractsOf[_client].push(inst);
Builded(_client, inst);
inst.delegate(_client);
return inst;
}
}External Links
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