529 lines
18 KiB
Solidity
529 lines
18 KiB
Solidity
// SPDX-License-Identifier: MIT
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pragma solidity ^0.8.8;
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import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
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import "@openzeppelin/contracts/utils/math/Math.sol";
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import "@openzeppelin/contracts/utils/structs/EnumerableSet.sol";
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import "./Collateral.sol";
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import "./Proofs.sol";
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contract Marketplace is Collateral, Proofs {
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using EnumerableSet for EnumerableSet.Bytes32Set;
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type RequestId is bytes32;
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type SlotId is bytes32;
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uint256 public immutable collateral;
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MarketplaceFunds private funds;
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mapping(RequestId => Request) private requests;
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mapping(RequestId => RequestContext) private requestContexts;
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mapping(SlotId => Slot) private slots;
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mapping(address => EnumerableSet.Bytes32Set) private requestsPerClient; // purchasing
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mapping(address => EnumerableSet.Bytes32Set) private slotsPerHost; // sales
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constructor(
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IERC20 _token,
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uint256 _collateral,
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uint256 _proofPeriod,
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uint256 _proofTimeout,
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uint8 _proofDowntime
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)
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Collateral(_token)
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Proofs(_proofPeriod, _proofTimeout, _proofDowntime)
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marketplaceInvariant
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{
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collateral = _collateral;
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}
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function myRequests() public view returns (RequestId[] memory) {
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return _toRequestIds(requestsPerClient[msg.sender].values());
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}
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function mySlots() public view returns (SlotId[] memory) {
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return _toSlotIds(slotsPerHost[msg.sender].values());
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}
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function isWithdrawAllowed() internal view override returns (bool) {
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return slotsPerHost[msg.sender].length() == 0;
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}
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function _equals(RequestId a, RequestId b) internal pure returns (bool) {
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return RequestId.unwrap(a) == RequestId.unwrap(b);
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}
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function requestStorage(Request calldata request)
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public
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marketplaceInvariant
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{
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require(request.client == msg.sender, "Invalid client address");
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RequestId id = _toRequestId(request);
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require(requests[id].client == address(0), "Request already exists");
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requests[id] = request;
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RequestContext storage context = _context(id);
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// set contract end time to `duration` from now (time request was created)
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context.endsAt = block.timestamp + request.ask.duration;
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_setProofEnd(_toEndId(id), context.endsAt);
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requestsPerClient[request.client].add(RequestId.unwrap(id));
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_createLock(_toLockId(id), request.expiry);
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uint256 amount = price(request);
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funds.received += amount;
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funds.balance += amount;
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transferFrom(msg.sender, amount);
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emit StorageRequested(id, request.ask);
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}
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function fillSlot(
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RequestId requestId,
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uint256 slotIndex,
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bytes calldata proof
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) public requestMustAcceptProofs(requestId) marketplaceInvariant {
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Request storage request = _request(requestId);
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require(slotIndex < request.ask.slots, "Invalid slot");
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SlotId slotId = _toSlotId(requestId, slotIndex);
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Slot storage slot = slots[slotId];
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require(slot.host == address(0), "Slot already filled");
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require(balanceOf(msg.sender) >= collateral, "Insufficient collateral");
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LockId lockId = _toLockId(requestId);
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_lock(msg.sender, lockId);
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ProofId proofId = _toProofId(slotId);
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_expectProofs(proofId, _toEndId(requestId), request.ask.proofProbability);
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_submitProof(proofId, proof);
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slot.host = msg.sender;
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slot.requestId = requestId;
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RequestContext storage context = _context(requestId);
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context.slotsFilled += 1;
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slotsPerHost[slot.host].add(SlotId.unwrap(slotId));
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emit SlotFilled(requestId, slotIndex, slotId);
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if (context.slotsFilled == request.ask.slots) {
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context.state = RequestState.Started;
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context.startedAt = block.timestamp;
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_extendLockExpiryTo(lockId, context.endsAt);
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emit RequestFulfilled(requestId);
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}
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}
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function freeSlot(SlotId slotId) public {
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Slot storage slot = _slot(slotId);
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require(slot.host == msg.sender, "Slot filled by other host");
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RequestState s = state(slot.requestId);
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if (s == RequestState.Finished || s == RequestState.Cancelled) {
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payoutSlot(slot.requestId, slotId);
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} else if (s == RequestState.Failed) {
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slotsPerHost[msg.sender].remove(SlotId.unwrap(slotId));
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} else {
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_forciblyFreeSlot(slotId);
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}
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}
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function _forciblyFreeSlot(SlotId slotId)
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internal
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slotMustAcceptProofs(slotId)
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marketplaceInvariant
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// TODO: restrict senders that can call this function
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{
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Slot storage slot = _slot(slotId);
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RequestId requestId = slot.requestId;
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RequestContext storage context = requestContexts[requestId];
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// TODO: burn host's slot collateral except for repair costs + mark proof
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// missing reward
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// Slot collateral is not yet implemented as the design decision was
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// not finalised.
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_unexpectProofs(_toProofId(slotId));
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slotsPerHost[slot.host].remove(SlotId.unwrap(slotId));
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slot.host = address(0);
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slot.requestId = RequestId.wrap(0);
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context.slotsFilled -= 1;
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emit SlotFreed(requestId, slotId);
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Request storage request = _request(requestId);
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uint256 slotsLost = request.ask.slots - context.slotsFilled;
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if (
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slotsLost > request.ask.maxSlotLoss &&
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context.state == RequestState.Started
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) {
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context.state = RequestState.Failed;
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_setProofEnd(_toEndId(requestId), block.timestamp - 1);
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context.endsAt = block.timestamp - 1;
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emit RequestFailed(requestId);
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// TODO: burn all remaining slot collateral (note: slot collateral not
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// yet implemented)
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// TODO: send client remaining funds
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}
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}
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function payoutSlot(RequestId requestId, SlotId slotId)
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private
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marketplaceInvariant
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{
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require(
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_isFinished(requestId) || _isCancelled(requestId),
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"Contract not ended"
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);
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RequestContext storage context = _context(requestId);
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Request storage request = _request(requestId);
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context.state = RequestState.Finished;
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requestsPerClient[request.client].remove(RequestId.unwrap(requestId));
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Slot storage slot = _slot(slotId);
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require(!slot.hostPaid, "Already paid");
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slotsPerHost[slot.host].remove(SlotId.unwrap(slotId));
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uint256 amount = pricePerSlot(requests[requestId]);
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funds.sent += amount;
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funds.balance -= amount;
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slot.hostPaid = true;
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require(token.transfer(slot.host, amount), "Payment failed");
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}
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/// @notice Withdraws storage request funds back to the client that deposited them.
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/// @dev Request must be expired, must be in RequestState.New, and the transaction must originate from the depositer address.
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/// @param requestId the id of the request
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function withdrawFunds(RequestId requestId) public marketplaceInvariant {
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Request storage request = requests[requestId];
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require(block.timestamp > request.expiry, "Request not yet timed out");
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require(request.client == msg.sender, "Invalid client address");
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RequestContext storage context = _context(requestId);
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require(context.state == RequestState.New, "Invalid state");
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// Update request state to Cancelled. Handle in the withdraw transaction
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// as there needs to be someone to pay for the gas to update the state
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context.state = RequestState.Cancelled;
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requestsPerClient[request.client].remove(RequestId.unwrap(requestId));
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emit RequestCancelled(requestId);
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// TODO: To be changed once we start paying out hosts for the time they
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// fill a slot. The amount that we paid to hosts will then have to be
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// deducted from the price.
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uint256 amount = _price(request);
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funds.sent += amount;
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funds.balance -= amount;
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require(token.transfer(msg.sender, amount), "Withdraw failed");
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}
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/// @notice Return true if the request state is RequestState.Cancelled or if the request expiry time has elapsed and the request was never started.
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/// @dev Handles the case when a request may have been cancelled, but the client has not withdrawn its funds yet, and therefore the state has not yet been updated.
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/// @param requestId the id of the request
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/// @return true if request is cancelled
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function _isCancelled(RequestId requestId) internal view returns (bool) {
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RequestContext storage context = _context(requestId);
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return
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context.state == RequestState.Cancelled ||
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(context.state == RequestState.New &&
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block.timestamp > _request(requestId).expiry);
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}
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/// @notice Return true if the request state is RequestState.Finished or if the request duration has elapsed and the request was started.
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/// @dev Handles the case when a request may have been finished, but the state has not yet been updated by a transaction.
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/// @param requestId the id of the request
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/// @return true if request is finished
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function _isFinished(RequestId requestId) internal view returns (bool) {
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RequestContext memory context = _context(requestId);
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return
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context.state == RequestState.Finished ||
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(context.state == RequestState.Started &&
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block.timestamp > context.endsAt);
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}
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/// @notice Return id of request that slot belongs to
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/// @dev Returns requestId that is mapped to the slotId
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/// @param slotId id of the slot
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/// @return if of the request the slot belongs to
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function _getRequestIdForSlot(SlotId slotId)
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internal
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view
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returns (RequestId)
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{
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Slot memory slot = _slot(slotId);
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require(_notEqual(slot.requestId, 0), "Missing request id");
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return slot.requestId;
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}
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/// @notice Return true if the request state the slot belongs to is RequestState.Cancelled or if the request expiry time has elapsed and the request was never started.
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/// @dev Handles the case when a request may have been cancelled, but the client has not withdrawn its funds yet, and therefore the state has not yet been updated.
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/// @param slotId the id of the slot
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/// @return true if request is cancelled
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function _isSlotCancelled(SlotId slotId) internal view returns (bool) {
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RequestId requestId = _getRequestIdForSlot(slotId);
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return _isCancelled(requestId);
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}
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function _host(SlotId slotId) internal view returns (address) {
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return slots[slotId].host;
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}
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function _request(RequestId requestId)
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internal
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view
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returns (Request storage)
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{
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Request storage request = requests[requestId];
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require(request.client != address(0), "Unknown request");
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return request;
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}
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function _slot(SlotId slotId) internal view returns (Slot storage) {
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Slot storage slot = slots[slotId];
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require(slot.host != address(0), "Slot empty");
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return slot;
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}
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function _context(RequestId requestId)
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internal
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view
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returns (RequestContext storage)
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{
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return requestContexts[requestId];
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}
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function proofPeriod() public view returns (uint256) {
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return _period();
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}
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function proofTimeout() public view returns (uint256) {
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return _timeout();
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}
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function proofEnd(SlotId slotId) public view returns (uint256) {
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return requestEnd(_slot(slotId).requestId);
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}
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function requestEnd(RequestId requestId) public view returns (uint256) {
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uint256 end = _end(_toEndId(requestId));
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if (_requestAcceptsProofs(requestId)) {
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return end;
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} else {
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return Math.min(end, block.timestamp - 1);
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}
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}
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function _price(
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uint64 numSlots,
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uint256 duration,
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uint256 reward
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) internal pure returns (uint256) {
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return numSlots * duration * reward;
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}
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function _price(Request memory request) internal pure returns (uint256) {
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return _price(request.ask.slots, request.ask.duration, request.ask.reward);
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}
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function price(Request calldata request) private pure returns (uint256) {
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return _price(request.ask.slots, request.ask.duration, request.ask.reward);
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}
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function pricePerSlot(Request memory request) private pure returns (uint256) {
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return request.ask.duration * request.ask.reward;
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}
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function state(RequestId requestId) public view returns (RequestState) {
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if (_isCancelled(requestId)) {
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return RequestState.Cancelled;
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} else if (_isFinished(requestId)) {
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return RequestState.Finished;
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} else {
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RequestContext storage context = _context(requestId);
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return context.state;
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}
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}
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/// @notice returns true when the request is accepting proof submissions from hosts occupying slots.
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/// @dev Request state must be new or started, and must not be cancelled, finished, or failed.
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/// @param slotId id of the slot, that is mapped to a request, for which to obtain state info
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function _slotAcceptsProofs(SlotId slotId) internal view returns (bool) {
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RequestId requestId = _getRequestIdForSlot(slotId);
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return _requestAcceptsProofs(requestId);
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}
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/// @notice returns true when the request is accepting proof submissions from hosts occupying slots.
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/// @dev Request state must be new or started, and must not be cancelled, finished, or failed.
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/// @param requestId id of the request for which to obtain state info
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function _requestAcceptsProofs(RequestId requestId)
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internal
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view
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returns (bool)
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{
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RequestState s = state(requestId);
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return s == RequestState.New || s == RequestState.Started;
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}
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function _toRequestId(Request memory request)
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internal
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pure
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returns (RequestId)
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{
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return RequestId.wrap(keccak256(abi.encode(request)));
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}
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function _toRequestIds(bytes32[] memory array)
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private
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pure
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returns (RequestId[] memory result)
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{
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// solhint-disable-next-line no-inline-assembly
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assembly {
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result := array
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}
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}
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function _toSlotIds(bytes32[] memory array)
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private
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pure
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returns (SlotId[] memory result)
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{
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// solhint-disable-next-line no-inline-assembly
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assembly {
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result := array
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}
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}
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function _toBytes32s(RequestId[] memory array)
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private
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pure
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returns (bytes32[] memory result)
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{
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// solhint-disable-next-line no-inline-assembly
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assembly {
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result := array
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}
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}
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function _toSlotId(RequestId requestId, uint256 slotIndex)
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internal
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pure
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returns (SlotId)
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{
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return SlotId.wrap(keccak256(abi.encode(requestId, slotIndex)));
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}
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function _toLockId(RequestId requestId) internal pure returns (LockId) {
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return LockId.wrap(RequestId.unwrap(requestId));
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}
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function _toProofId(SlotId slotId) internal pure returns (ProofId) {
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return ProofId.wrap(SlotId.unwrap(slotId));
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}
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function _toEndId(RequestId requestId) internal pure returns (EndId) {
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return EndId.wrap(RequestId.unwrap(requestId));
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}
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function _notEqual(RequestId a, uint256 b) internal pure returns (bool) {
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return RequestId.unwrap(a) != bytes32(b);
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}
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struct Request {
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address client;
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Ask ask;
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Content content;
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uint256 expiry; // time at which this request expires
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bytes32 nonce; // random nonce to differentiate between similar requests
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}
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struct Ask {
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uint64 slots; // the number of requested slots
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uint256 slotSize; // amount of storage per slot (in number of bytes)
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uint256 duration; // how long content should be stored (in seconds)
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uint256 proofProbability; // how often storage proofs are required
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uint256 reward; // amount of tokens paid per second per slot to hosts
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uint64 maxSlotLoss; // Max slots that can be lost without data considered to be lost
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}
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struct Content {
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string cid; // content id (if part of a larger set, the chunk cid)
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Erasure erasure; // Erasure coding attributes
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PoR por; // Proof of Retrievability parameters
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}
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struct Erasure {
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uint64 totalChunks; // the total number of chunks in the larger data set
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}
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struct PoR {
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bytes u; // parameters u_1..u_s
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bytes publicKey; // public key
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bytes name; // random name
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}
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enum RequestState {
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New, // [default] waiting to fill slots
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Started, // all slots filled, accepting regular proofs
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Cancelled, // not enough slots filled before expiry
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Finished, // successfully completed
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Failed // too many nodes have failed to provide proofs, data lost
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}
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struct RequestContext {
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uint256 slotsFilled;
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RequestState state;
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uint256 startedAt;
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uint256 endsAt;
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}
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struct Slot {
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address host;
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bool hostPaid;
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RequestId requestId;
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}
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event StorageRequested(RequestId requestId, Ask ask);
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event RequestFulfilled(RequestId indexed requestId);
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event RequestFailed(RequestId indexed requestId);
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event SlotFilled(
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RequestId indexed requestId,
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uint256 indexed slotIndex,
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SlotId slotId
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);
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event SlotFreed(RequestId indexed requestId, SlotId slotId);
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event RequestCancelled(RequestId indexed requestId);
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modifier marketplaceInvariant() {
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MarketplaceFunds memory oldFunds = funds;
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_;
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assert(funds.received >= oldFunds.received);
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assert(funds.sent >= oldFunds.sent);
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assert(funds.received == funds.balance + funds.sent);
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}
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/// @notice Modifier that requires the request state to be that which is accepting proof submissions from hosts occupying slots.
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/// @dev Request state must be new or started, and must not be cancelled, finished, or failed.
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/// @param slotId id of the slot, that is mapped to a request, for which to obtain state info
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modifier slotMustAcceptProofs(SlotId slotId) {
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RequestId requestId = _getRequestIdForSlot(slotId);
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require(_requestAcceptsProofs(requestId), "Slot not accepting proofs");
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_;
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}
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/// @notice Modifier that requires the request state to be that which is accepting proof submissions from hosts occupying slots.
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/// @dev Request state must be new or started, and must not be cancelled, finished, or failed.
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/// @param requestId id of the request, for which to obtain state info
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modifier requestMustAcceptProofs(RequestId requestId) {
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require(_requestAcceptsProofs(requestId), "Request not accepting proofs");
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_;
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}
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struct MarketplaceFunds {
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uint256 balance;
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uint256 received;
|
|
uint256 sent;
|
|
}
|
|
}
|