2019-01-14 08:36:47 +00:00
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.. index:: auction;blind, auction;open, blind auction, open auction
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*************
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Blind Auction
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*************
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2019-12-13 15:19:49 +00:00
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In this section, we will show how easy it is to create a completely blind
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auction contract on Ethereum. We will start with an open auction where
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everyone can see the bids that are made and then extend this contract into a
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blind auction where it is not possible to see the actual bid until the bidding
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2019-01-14 08:36:47 +00:00
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period ends.
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.. _simple_auction:
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Simple Open Auction
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===================
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2019-12-13 15:19:49 +00:00
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The general idea of the following simple auction contract is that everyone can
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send their bids during a bidding period. The bids already include sending money
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/ Ether in order to bind the bidders to their bid. If the highest bid is
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raised, the previous highest bidder gets their money back. After the end of
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2019-12-13 15:19:49 +00:00
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the bidding period, the contract has to be called manually for the beneficiary
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to receive their money - contracts cannot activate themselves.
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2019-01-14 08:36:47 +00:00
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2021-06-25 10:25:29 +00:00
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.. code-block:: solidity
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2019-01-14 08:36:47 +00:00
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2020-05-13 15:45:58 +00:00
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// SPDX-License-Identifier: GPL-3.0
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2021-02-08 17:13:28 +00:00
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pragma solidity ^0.8.4;
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2019-01-14 08:36:47 +00:00
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contract SimpleAuction {
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// Parameters of the auction. Times are either
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// absolute unix timestamps (seconds since 1970-01-01)
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// or time periods in seconds.
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address payable public beneficiary;
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uint public auctionEndTime;
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// Current state of the auction.
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address public highestBidder;
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uint public highestBid;
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// Allowed withdrawals of previous bids
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mapping(address => uint) pendingReturns;
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// Set to true at the end, disallows any change.
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// By default initialized to `false`.
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bool ended;
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// Events that will be emitted on changes.
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event HighestBidIncreased(address bidder, uint amount);
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event AuctionEnded(address winner, uint amount);
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// Errors that describe failures.
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// The triple-slash comments are so-called natspec
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// comments. They will be shown when the user
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// is asked to confirm a transaction or
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// when an error is displayed.
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/// The auction has already ended.
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error AuctionAlreadyEnded();
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/// There is already a higher or equal bid.
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error BidNotHighEnough(uint highestBid);
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/// The auction has not ended yet.
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error AuctionNotYetEnded();
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/// The function auctionEnd has already been called.
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error AuctionEndAlreadyCalled();
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/// Create a simple auction with `biddingTime`
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/// seconds bidding time on behalf of the
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/// beneficiary address `beneficiaryAddress`.
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constructor(
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uint biddingTime,
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address payable beneficiaryAddress
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) {
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beneficiary = beneficiaryAddress;
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auctionEndTime = block.timestamp + biddingTime;
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}
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/// Bid on the auction with the value sent
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/// together with this transaction.
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/// The value will only be refunded if the
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/// auction is not won.
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function bid() external payable {
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// No arguments are necessary, all
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// information is already part of
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// the transaction. The keyword payable
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// is required for the function to
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// be able to receive Ether.
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// Revert the call if the bidding
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// period is over.
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if (block.timestamp > auctionEndTime)
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revert AuctionAlreadyEnded();
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// If the bid is not higher, send the
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// money back (the revert statement
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// will revert all changes in this
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// function execution including
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// it having received the money).
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if (msg.value <= highestBid)
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revert BidNotHighEnough(highestBid);
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if (highestBid != 0) {
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// Sending back the money by simply using
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// highestBidder.send(highestBid) is a security risk
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// because it could execute an untrusted contract.
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// It is always safer to let the recipients
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// withdraw their money themselves.
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pendingReturns[highestBidder] += highestBid;
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}
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highestBidder = msg.sender;
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highestBid = msg.value;
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emit HighestBidIncreased(msg.sender, msg.value);
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}
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/// Withdraw a bid that was overbid.
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function withdraw() external returns (bool) {
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uint amount = pendingReturns[msg.sender];
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if (amount > 0) {
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// It is important to set this to zero because the recipient
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// can call this function again as part of the receiving call
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// before `send` returns.
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pendingReturns[msg.sender] = 0;
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2020-12-03 22:05:05 +00:00
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if (!payable(msg.sender).send(amount)) {
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2019-01-14 08:36:47 +00:00
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// No need to call throw here, just reset the amount owing
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pendingReturns[msg.sender] = amount;
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return false;
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}
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}
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return true;
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}
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/// End the auction and send the highest bid
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/// to the beneficiary.
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function auctionEnd() external {
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// It is a good guideline to structure functions that interact
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// with other contracts (i.e. they call functions or send Ether)
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// into three phases:
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// 1. checking conditions
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// 2. performing actions (potentially changing conditions)
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// 3. interacting with other contracts
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// If these phases are mixed up, the other contract could call
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// back into the current contract and modify the state or cause
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// effects (ether payout) to be performed multiple times.
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// If functions called internally include interaction with external
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// contracts, they also have to be considered interaction with
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// external contracts.
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// 1. Conditions
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if (block.timestamp < auctionEndTime)
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revert AuctionNotYetEnded();
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if (ended)
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revert AuctionEndAlreadyCalled();
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// 2. Effects
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ended = true;
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emit AuctionEnded(highestBidder, highestBid);
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// 3. Interaction
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beneficiary.transfer(highestBid);
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}
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}
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Blind Auction
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=============
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2019-12-13 15:19:49 +00:00
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The previous open auction is extended to a blind auction in the following. The
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advantage of a blind auction is that there is no time pressure towards the end
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of the bidding period. Creating a blind auction on a transparent computing
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platform might sound like a contradiction, but cryptography comes to the
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rescue.
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During the **bidding period**, a bidder does not actually send their bid, but
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only a hashed version of it. Since it is currently considered practically
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impossible to find two (sufficiently long) values whose hash values are equal,
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the bidder commits to the bid by that. After the end of the bidding period,
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the bidders have to reveal their bids: They send their values unencrypted and
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the contract checks that the hash value is the same as the one provided during
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the bidding period.
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Another challenge is how to make the auction **binding and blind** at the same
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time: The only way to prevent the bidder from just not sending the money after
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they won the auction is to make them send it together with the bid. Since value
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transfers cannot be blinded in Ethereum, anyone can see the value.
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The following contract solves this problem by accepting any value that is
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larger than the highest bid. Since this can of course only be checked during
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the reveal phase, some bids might be **invalid**, and this is on purpose (it
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even provides an explicit flag to place invalid bids with high value
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transfers): Bidders can confuse competition by placing several high or low
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invalid bids.
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2019-01-14 08:36:47 +00:00
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2021-06-25 10:25:29 +00:00
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.. code-block:: solidity
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2021-07-14 17:32:42 +00:00
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:force:
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2019-01-14 08:36:47 +00:00
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2020-05-13 15:45:58 +00:00
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// SPDX-License-Identifier: GPL-3.0
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pragma solidity ^0.8.4;
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contract BlindAuction {
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struct Bid {
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bytes32 blindedBid;
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uint deposit;
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}
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address payable public beneficiary;
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uint public biddingEnd;
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uint public revealEnd;
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bool public ended;
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mapping(address => Bid[]) public bids;
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address public highestBidder;
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uint public highestBid;
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// Allowed withdrawals of previous bids
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mapping(address => uint) pendingReturns;
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event AuctionEnded(address winner, uint highestBid);
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// Errors that describe failures.
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/// The function has been called too early.
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/// Try again at `time`.
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error TooEarly(uint time);
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/// The function has been called too late.
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/// It cannot be called after `time`.
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error TooLate(uint time);
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/// The function auctionEnd has already been called.
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error AuctionEndAlreadyCalled();
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// Modifiers are a convenient way to validate inputs to
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// functions. `onlyBefore` is applied to `bid` below:
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// The new function body is the modifier's body where
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// `_` is replaced by the old function body.
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modifier onlyBefore(uint time) {
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if (block.timestamp >= time) revert TooLate(time);
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_;
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}
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modifier onlyAfter(uint time) {
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if (block.timestamp <= time) revert TooEarly(time);
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_;
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}
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constructor(
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uint biddingTime,
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uint revealTime,
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address payable beneficiaryAddress
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) {
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beneficiary = beneficiaryAddress;
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biddingEnd = block.timestamp + biddingTime;
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revealEnd = biddingEnd + revealTime;
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}
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/// Place a blinded bid with `blindedBid` =
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/// keccak256(abi.encodePacked(value, fake, secret)).
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/// The sent ether is only refunded if the bid is correctly
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/// revealed in the revealing phase. The bid is valid if the
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/// ether sent together with the bid is at least "value" and
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/// "fake" is not true. Setting "fake" to true and sending
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/// not the exact amount are ways to hide the real bid but
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/// still make the required deposit. The same address can
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/// place multiple bids.
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function bid(bytes32 blindedBid)
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external
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payable
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onlyBefore(biddingEnd)
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{
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bids[msg.sender].push(Bid({
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blindedBid: blindedBid,
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deposit: msg.value
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}));
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}
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/// Reveal your blinded bids. You will get a refund for all
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/// correctly blinded invalid bids and for all bids except for
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/// the totally highest.
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function reveal(
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uint[] calldata values,
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bool[] calldata fakes,
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bytes32[] calldata secrets
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)
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external
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onlyAfter(biddingEnd)
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onlyBefore(revealEnd)
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{
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uint length = bids[msg.sender].length;
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require(values.length == length);
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require(fakes.length == length);
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require(secrets.length == length);
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uint refund;
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for (uint i = 0; i < length; i++) {
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Bid storage bidToCheck = bids[msg.sender][i];
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(uint value, bool fake, bytes32 secret) =
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(values[i], fakes[i], secrets[i]);
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if (bidToCheck.blindedBid != keccak256(abi.encodePacked(value, fake, secret))) {
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// Bid was not actually revealed.
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// Do not refund deposit.
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continue;
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}
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refund += bidToCheck.deposit;
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if (!fake && bidToCheck.deposit >= value) {
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if (placeBid(msg.sender, value))
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refund -= value;
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}
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// Make it impossible for the sender to re-claim
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// the same deposit.
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bidToCheck.blindedBid = bytes32(0);
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}
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payable(msg.sender).transfer(refund);
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}
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/// Withdraw a bid that was overbid.
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function withdraw() external {
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uint amount = pendingReturns[msg.sender];
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if (amount > 0) {
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// It is important to set this to zero because the recipient
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// can call this function again as part of the receiving call
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// before `transfer` returns (see the remark above about
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// conditions -> effects -> interaction).
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pendingReturns[msg.sender] = 0;
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2020-12-03 22:05:05 +00:00
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payable(msg.sender).transfer(amount);
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}
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}
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/// End the auction and send the highest bid
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/// to the beneficiary.
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function auctionEnd()
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external
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2019-01-14 08:36:47 +00:00
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|
onlyAfter(revealEnd)
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|
{
|
2021-02-08 17:13:28 +00:00
|
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|
if (ended) revert AuctionEndAlreadyCalled();
|
2019-01-14 08:36:47 +00:00
|
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|
emit AuctionEnded(highestBidder, highestBid);
|
|
|
|
ended = true;
|
|
|
|
beneficiary.transfer(highestBid);
|
|
|
|
}
|
2019-12-13 15:19:49 +00:00
|
|
|
|
|
|
|
// This is an "internal" function which means that it
|
|
|
|
// can only be called from the contract itself (or from
|
|
|
|
// derived contracts).
|
|
|
|
function placeBid(address bidder, uint value) internal
|
|
|
|
returns (bool success)
|
|
|
|
{
|
|
|
|
if (value <= highestBid) {
|
|
|
|
return false;
|
|
|
|
}
|
|
|
|
if (highestBidder != address(0)) {
|
|
|
|
// Refund the previously highest bidder.
|
|
|
|
pendingReturns[highestBidder] += highestBid;
|
|
|
|
}
|
|
|
|
highestBid = value;
|
|
|
|
highestBidder = bidder;
|
|
|
|
return true;
|
|
|
|
}
|
2020-05-05 08:56:31 +00:00
|
|
|
}
|