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176 lines
7.2 KiB
176 lines
7.2 KiB
// SPDX-License-Identifier: MIT
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// OpenZeppelin Contracts (last updated v4.9.0) (token/ERC721/extensions/ERC721Consecutive.sol)
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pragma solidity ^0.8.20;
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import {ERC721} from "../ERC721.sol";
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import {IERC2309} from "../../../interfaces/IERC2309.sol";
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import {BitMaps} from "../../../utils/structs/BitMaps.sol";
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import {Checkpoints} from "../../../utils/structs/Checkpoints.sol";
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/**
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* @dev Implementation of the ERC2309 "Consecutive Transfer Extension" as defined in
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* https://eips.ethereum.org/EIPS/eip-2309[EIP-2309].
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*
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* This extension allows the minting of large batches of tokens, during contract construction only. For upgradeable
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* contracts this implies that batch minting is only available during proxy deployment, and not in subsequent upgrades.
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* These batches are limited to 5000 tokens at a time by default to accommodate off-chain indexers.
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*
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* Using this extension removes the ability to mint single tokens during contract construction. This ability is
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* regained after construction. During construction, only batch minting is allowed.
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*
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* IMPORTANT: This extension does not call the {_update} function for tokens minted in batch. Any logic added to this
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* function through overrides will not be triggered when token are minted in batch. You may want to also override
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* {_increaseBalance} or {_mintConsecutive} to account for these mints.
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*
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* IMPORTANT: When overriding {_mintConsecutive}, be careful about call ordering. {ownerOf} may return invalid
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* values during the {_mintConsecutive} execution if the super call is not called first. To be safe, execute the
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* super call before your custom logic.
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*/
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abstract contract ERC721Consecutive is IERC2309, ERC721 {
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using BitMaps for BitMaps.BitMap;
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using Checkpoints for Checkpoints.Trace160;
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Checkpoints.Trace160 private _sequentialOwnership;
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BitMaps.BitMap private _sequentialBurn;
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/**
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* @dev Batch mint is restricted to the constructor.
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* Any batch mint not emitting the {IERC721-Transfer} event outside of the constructor
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* is non-ERC721 compliant.
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*/
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error ERC721ForbiddenBatchMint();
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/**
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* @dev Exceeds the max amount of mints per batch.
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*/
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error ERC721ExceededMaxBatchMint(uint256 batchSize, uint256 maxBatch);
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/**
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* @dev Individual minting is not allowed.
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*/
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error ERC721ForbiddenMint();
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/**
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* @dev Batch burn is not supported.
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*/
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error ERC721ForbiddenBatchBurn();
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/**
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* @dev Maximum size of a batch of consecutive tokens. This is designed to limit stress on off-chain indexing
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* services that have to record one entry per token, and have protections against "unreasonably large" batches of
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* tokens.
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*
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* NOTE: Overriding the default value of 5000 will not cause on-chain issues, but may result in the asset not being
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* correctly supported by off-chain indexing services (including marketplaces).
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*/
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function _maxBatchSize() internal view virtual returns (uint96) {
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return 5000;
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}
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/**
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* @dev See {ERC721-_ownerOf}. Override that checks the sequential ownership structure for tokens that have
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* been minted as part of a batch, and not yet transferred.
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*/
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function _ownerOf(uint256 tokenId) internal view virtual override returns (address) {
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address owner = super._ownerOf(tokenId);
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// If token is owned by the core, or beyond consecutive range, return base value
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if (owner != address(0) || tokenId > type(uint96).max || tokenId < _firstConsecutiveId()) {
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return owner;
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}
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// Otherwise, check the token was not burned, and fetch ownership from the anchors
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// Note: no need for safe cast, we know that tokenId <= type(uint96).max
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return _sequentialBurn.get(tokenId) ? address(0) : address(_sequentialOwnership.lowerLookup(uint96(tokenId)));
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}
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/**
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* @dev Mint a batch of tokens of length `batchSize` for `to`. Returns the token id of the first token minted in the
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* batch; if `batchSize` is 0, returns the number of consecutive ids minted so far.
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*
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* Requirements:
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*
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* - `batchSize` must not be greater than {_maxBatchSize}.
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* - The function is called in the constructor of the contract (directly or indirectly).
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*
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* CAUTION: Does not emit a `Transfer` event. This is ERC721 compliant as long as it is done inside of the
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* constructor, which is enforced by this function.
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*
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* CAUTION: Does not invoke `onERC721Received` on the receiver.
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*
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* Emits a {IERC2309-ConsecutiveTransfer} event.
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*/
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function _mintConsecutive(address to, uint96 batchSize) internal virtual returns (uint96) {
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uint96 next = _nextConsecutiveId();
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// minting a batch of size 0 is a no-op
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if (batchSize > 0) {
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if (address(this).code.length > 0) {
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revert ERC721ForbiddenBatchMint();
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}
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if (to == address(0)) {
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revert ERC721InvalidReceiver(address(0));
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}
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uint256 maxBatchSize = _maxBatchSize();
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if (batchSize > maxBatchSize) {
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revert ERC721ExceededMaxBatchMint(batchSize, maxBatchSize);
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}
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// push an ownership checkpoint & emit event
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uint96 last = next + batchSize - 1;
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_sequentialOwnership.push(last, uint160(to));
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// The invariant required by this function is preserved because the new sequentialOwnership checkpoint
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// is attributing ownership of `batchSize` new tokens to account `to`.
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_increaseBalance(to, batchSize);
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emit ConsecutiveTransfer(next, last, address(0), to);
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}
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return next;
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}
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/**
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* @dev See {ERC721-_update}. Override version that restricts normal minting to after construction.
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*
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* WARNING: Using {ERC721Consecutive} prevents minting during construction in favor of {_mintConsecutive}.
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* After construction, {_mintConsecutive} is no longer available and minting through {_update} becomes available.
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*/
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function _update(address to, uint256 tokenId, address auth) internal virtual override returns (address) {
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address previousOwner = super._update(to, tokenId, auth);
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// only mint after construction
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if (previousOwner == address(0) && address(this).code.length == 0) {
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revert ERC721ForbiddenMint();
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}
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// record burn
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if (
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to == address(0) && // if we burn
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tokenId < _nextConsecutiveId() && // and the tokenId was minted in a batch
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!_sequentialBurn.get(tokenId) // and the token was never marked as burnt
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) {
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_sequentialBurn.set(tokenId);
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}
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return previousOwner;
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}
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/**
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* @dev Used to offset the first token id in {_nextConsecutiveId}
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*/
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function _firstConsecutiveId() internal view virtual returns (uint96) {
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return 0;
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}
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/**
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* @dev Returns the next tokenId to mint using {_mintConsecutive}. It will return {_firstConsecutiveId}
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* if no consecutive tokenId has been minted before.
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*/
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function _nextConsecutiveId() private view returns (uint96) {
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(bool exists, uint96 latestId, ) = _sequentialOwnership.latestCheckpoint();
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return exists ? latestId + 1 : _firstConsecutiveId();
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}
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}
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