forked from cerc-io/plugeth
4b06e4f25e
This change makes the StateDB track the state key value diff of a block transition. We already tracked current account and storage values for the purpose of updating the state snapshot. With this PR, we now also track the original (pre-transition) values of accounts and storage slots.
220 lines
6.3 KiB
Go
220 lines
6.3 KiB
Go
// Copyright 2023 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>
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package trienode
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import (
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"fmt"
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"strings"
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"github.com/ethereum/go-ethereum/common"
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"golang.org/x/exp/slices"
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)
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// Node is a wrapper which contains the encoded blob of the trie node and its
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// unique hash identifier. It is general enough that can be used to represent
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// trie nodes corresponding to different trie implementations.
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type Node struct {
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Hash common.Hash // Node hash, empty for deleted node
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Blob []byte // Encoded node blob, nil for the deleted node
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}
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// Size returns the total memory size used by this node.
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func (n *Node) Size() int {
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return len(n.Blob) + common.HashLength
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}
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// IsDeleted returns the indicator if the node is marked as deleted.
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func (n *Node) IsDeleted() bool {
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return n.Hash == (common.Hash{})
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}
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// WithPrev wraps the Node with the previous node value attached.
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type WithPrev struct {
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*Node
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Prev []byte // Encoded original value, nil means it's non-existent
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}
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// Unwrap returns the internal Node object.
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func (n *WithPrev) Unwrap() *Node {
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return n.Node
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}
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// Size returns the total memory size used by this node. It overloads
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// the function in Node by counting the size of previous value as well.
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func (n *WithPrev) Size() int {
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return n.Node.Size() + len(n.Prev)
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}
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// New constructs a node with provided node information.
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func New(hash common.Hash, blob []byte) *Node {
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return &Node{Hash: hash, Blob: blob}
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}
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// NewWithPrev constructs a node with provided node information.
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func NewWithPrev(hash common.Hash, blob []byte, prev []byte) *WithPrev {
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return &WithPrev{
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Node: New(hash, blob),
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Prev: prev,
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}
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}
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// leaf represents a trie leaf node
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type leaf struct {
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Blob []byte // raw blob of leaf
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Parent common.Hash // the hash of parent node
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}
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// NodeSet contains a set of nodes collected during the commit operation.
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// Each node is keyed by path. It's not thread-safe to use.
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type NodeSet struct {
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Owner common.Hash
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Leaves []*leaf
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Nodes map[string]*WithPrev
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updates int // the count of updated and inserted nodes
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deletes int // the count of deleted nodes
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}
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// NewNodeSet initializes a node set. The owner is zero for the account trie and
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// the owning account address hash for storage tries.
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func NewNodeSet(owner common.Hash) *NodeSet {
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return &NodeSet{
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Owner: owner,
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Nodes: make(map[string]*WithPrev),
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}
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}
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// ForEachWithOrder iterates the nodes with the order from bottom to top,
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// right to left, nodes with the longest path will be iterated first.
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func (set *NodeSet) ForEachWithOrder(callback func(path string, n *Node)) {
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var paths []string
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for path := range set.Nodes {
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paths = append(paths, path)
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}
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// Bottom-up, longest path first
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slices.SortFunc(paths, func(a, b string) bool {
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return a > b // Sort in reverse order
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})
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for _, path := range paths {
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callback(path, set.Nodes[path].Unwrap())
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}
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}
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// AddNode adds the provided node into set.
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func (set *NodeSet) AddNode(path []byte, n *WithPrev) {
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if n.IsDeleted() {
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set.deletes += 1
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} else {
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set.updates += 1
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}
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set.Nodes[string(path)] = n
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}
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// Merge adds a set of nodes into the set.
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func (set *NodeSet) Merge(owner common.Hash, nodes map[string]*WithPrev) error {
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if set.Owner != owner {
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return fmt.Errorf("nodesets belong to different owner are not mergeable %x-%x", set.Owner, owner)
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}
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for path, node := range nodes {
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prev, ok := set.Nodes[path]
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if ok {
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// overwrite happens, revoke the counter
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if prev.IsDeleted() {
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set.deletes -= 1
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} else {
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set.updates -= 1
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}
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}
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set.AddNode([]byte(path), node)
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}
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return nil
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}
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// AddLeaf adds the provided leaf node into set. TODO(rjl493456442) how can
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// we get rid of it?
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func (set *NodeSet) AddLeaf(parent common.Hash, blob []byte) {
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set.Leaves = append(set.Leaves, &leaf{Blob: blob, Parent: parent})
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}
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// Size returns the number of dirty nodes in set.
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func (set *NodeSet) Size() (int, int) {
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return set.updates, set.deletes
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}
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// Hashes returns the hashes of all updated nodes. TODO(rjl493456442) how can
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// we get rid of it?
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func (set *NodeSet) Hashes() []common.Hash {
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var ret []common.Hash
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for _, node := range set.Nodes {
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ret = append(ret, node.Hash)
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}
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return ret
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}
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// Summary returns a string-representation of the NodeSet.
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func (set *NodeSet) Summary() string {
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var out = new(strings.Builder)
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fmt.Fprintf(out, "nodeset owner: %v\n", set.Owner)
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if set.Nodes != nil {
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for path, n := range set.Nodes {
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// Deletion
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if n.IsDeleted() {
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fmt.Fprintf(out, " [-]: %x prev: %x\n", path, n.Prev)
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continue
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}
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// Insertion
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if len(n.Prev) == 0 {
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fmt.Fprintf(out, " [+]: %x -> %v\n", path, n.Hash)
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continue
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}
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// Update
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fmt.Fprintf(out, " [*]: %x -> %v prev: %x\n", path, n.Hash, n.Prev)
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}
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}
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for _, n := range set.Leaves {
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fmt.Fprintf(out, "[leaf]: %v\n", n)
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}
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return out.String()
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}
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// MergedNodeSet represents a merged node set for a group of tries.
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type MergedNodeSet struct {
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Sets map[common.Hash]*NodeSet
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}
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// NewMergedNodeSet initializes an empty merged set.
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func NewMergedNodeSet() *MergedNodeSet {
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return &MergedNodeSet{Sets: make(map[common.Hash]*NodeSet)}
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}
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// NewWithNodeSet constructs a merged nodeset with the provided single set.
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func NewWithNodeSet(set *NodeSet) *MergedNodeSet {
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merged := NewMergedNodeSet()
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merged.Merge(set)
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return merged
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}
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// Merge merges the provided dirty nodes of a trie into the set. The assumption
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// is held that no duplicated set belonging to the same trie will be merged twice.
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func (set *MergedNodeSet) Merge(other *NodeSet) error {
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subset, present := set.Sets[other.Owner]
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if present {
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return subset.Merge(other.Owner, other.Nodes)
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}
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set.Sets[other.Owner] = other
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return nil
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}
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