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174 lines
5.6 KiB
174 lines
5.6 KiB
pragma solidity ^0.6.0;
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/**
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* @title CheckpointOracle
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* @author Gary Rong<garyrong@ethereum.org>, Martin Swende <martin.swende@ethereum.org>
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* @dev Implementation of the blockchain checkpoint registrar.
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*/
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contract CheckpointOracle {
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/*
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Events
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*/
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// NewCheckpointVote is emitted when a new checkpoint proposal receives a vote.
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event NewCheckpointVote(uint64 indexed index, bytes32 checkpointHash, uint8 v, bytes32 r, bytes32 s);
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/*
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Public Functions
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*/
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constructor(address[] memory _adminlist, uint _sectionSize, uint _processConfirms, uint _threshold) public {
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for (uint i = 0; i < _adminlist.length; i++) {
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admins[_adminlist[i]] = true;
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adminList.push(_adminlist[i]);
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}
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sectionSize = _sectionSize;
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processConfirms = _processConfirms;
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threshold = _threshold;
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}
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/**
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* @dev Get latest stable checkpoint information.
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* @return section index
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* @return checkpoint hash
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* @return block height associated with checkpoint
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*/
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function GetLatestCheckpoint()
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view
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public
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returns(uint64, bytes32, uint) {
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return (sectionIndex, hash, height);
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}
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// SetCheckpoint sets a new checkpoint. It accepts a list of signatures
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// @_recentNumber: a recent blocknumber, for replay protection
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// @_recentHash : the hash of `_recentNumber`
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// @_hash : the hash to set at _sectionIndex
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// @_sectionIndex : the section index to set
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// @v : the list of v-values
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// @r : the list or r-values
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// @s : the list of s-values
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function SetCheckpoint(
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uint _recentNumber,
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bytes32 _recentHash,
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bytes32 _hash,
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uint64 _sectionIndex,
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uint8[] memory v,
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bytes32[] memory r,
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bytes32[] memory s)
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public
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returns (bool)
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{
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// Ensure the sender is authorized.
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require(admins[msg.sender]);
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// These checks replay protection, so it cannot be replayed on forks,
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// accidentally or intentionally
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require(blockhash(_recentNumber) == _recentHash);
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// Ensure the batch of signatures are valid.
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require(v.length == r.length);
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require(v.length == s.length);
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// Filter out "future" checkpoint.
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if (block.number < (_sectionIndex+1)*sectionSize+processConfirms) {
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return false;
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}
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// Filter out "old" announcement
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if (_sectionIndex < sectionIndex) {
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return false;
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}
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// Filter out "stale" announcement
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if (_sectionIndex == sectionIndex && (_sectionIndex != 0 || height != 0)) {
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return false;
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}
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// Filter out "invalid" announcement
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if (_hash == ""){
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return false;
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}
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// EIP 191 style signatures
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//
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// Arguments when calculating hash to validate
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// 1: byte(0x19) - the initial 0x19 byte
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// 2: byte(0) - the version byte (data with intended validator)
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// 3: this - the validator address
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// -- Application specific data
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// 4 : checkpoint section_index(uint64)
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// 5 : checkpoint hash (bytes32)
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// hash = keccak256(checkpoint_index, section_head, cht_root, bloom_root)
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bytes32 signedHash = keccak256(abi.encodePacked(byte(0x19), byte(0), this, _sectionIndex, _hash));
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address lastVoter = address(0);
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// In order for us not to have to maintain a mapping of who has already
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// voted, and we don't want to count a vote twice, the signatures must
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// be submitted in strict ordering.
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for (uint idx = 0; idx < v.length; idx++){
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address signer = ecrecover(signedHash, v[idx], r[idx], s[idx]);
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require(admins[signer]);
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require(uint256(signer) > uint256(lastVoter));
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lastVoter = signer;
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emit NewCheckpointVote(_sectionIndex, _hash, v[idx], r[idx], s[idx]);
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// Sufficient signatures present, update latest checkpoint.
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if (idx+1 >= threshold){
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hash = _hash;
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height = block.number;
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sectionIndex = _sectionIndex;
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return true;
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}
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}
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// We shouldn't wind up here, reverting un-emits the events
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revert();
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}
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/**
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* @dev Get all admin addresses
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* @return address list
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*/
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function GetAllAdmin()
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public
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view
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returns(address[] memory)
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{
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address[] memory ret = new address[](adminList.length);
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for (uint i = 0; i < adminList.length; i++) {
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ret[i] = adminList[i];
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}
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return ret;
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}
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/*
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Fields
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*/
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// A map of admin users who have the permission to update CHT and bloom Trie root
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mapping(address => bool) admins;
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// A list of admin users so that we can obtain all admin users.
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address[] adminList;
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// Latest stored section id
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uint64 sectionIndex;
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// The block height associated with latest registered checkpoint.
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uint height;
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// The hash of latest registered checkpoint.
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bytes32 hash;
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// The frequency for creating a checkpoint
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//
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// The default value should be the same as the checkpoint size(32768) in the ethereum.
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uint sectionSize;
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// The number of confirmations needed before a checkpoint can be registered.
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// We have to make sure the checkpoint registered will not be invalid due to
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// chain reorg.
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//
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// The default value should be the same as the checkpoint process confirmations(256)
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// in the ethereum.
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uint processConfirms;
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// The required signatures to finalize a stable checkpoint.
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uint threshold;
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}
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