iterator package
* stripped down Nodeiterator interface * prefix-bound iterator for traversing a specific range of keys * visitor over subtries divided at a specific depth
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go.mod
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go.mod
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module github.com/vulcanize/go-eth-state-node-iterator
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go 1.13
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require github.com/ethereum/go-ethereum v1.9.11
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replace github.com/ethereum/go-ethereum v1.9.11 => github.com/vulcanize/go-ethereum v1.9.11-statediff-0.0.2
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115
pkg/iterator/iterator.go
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pkg/iterator/iterator.go
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//
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// Copyright © 2020 Vulcanize, Inc
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Affero 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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// This program 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 Affero General Public License for more details.
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//
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// You should have received a copy of the GNU Affero General Public License
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// along with this program. If not, see <http://www.gnu.org/licenses/>.
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package iterator
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import (
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// "fmt"
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"bytes"
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// "github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/trie"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/state"
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)
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type NodeIterator interface {
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Next(bool) bool
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Error() error
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Hash() common.Hash
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Path() []byte
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Leaf() bool
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}
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type prefixBoundIterator struct {
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current trie.NodeIterator
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endKey []byte
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// endHash common.Hash
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}
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func (it *prefixBoundIterator) Next(descend bool) bool {
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if it.endKey == nil { // todo: want?
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return it.current.Next(descend)
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}
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cmp := bytes.Compare(it.current.Path(), it.endKey) // stop before endKey
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if cmp >= 0 {
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return false
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}
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return it.current.Next(descend)
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}
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func (it *prefixBoundIterator) Error() error {
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return it.current.Error()
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}
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func (it *prefixBoundIterator) Hash() common.Hash {
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return it.current.Hash()
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}
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func (it *prefixBoundIterator) Path() []byte {
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return it.current.Path()
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}
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func (it *prefixBoundIterator) Leaf() bool {
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return it.current.Leaf()
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}
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// Iterator with an upper bound value (hex path prefix)
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func NewPrefixBoundIterator(it trie.NodeIterator, to []byte) NodeIterator {
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return &prefixBoundIterator{current: it, endKey: to}
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}
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// array of 0..f with prefix
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func prefixedNibbles(prefix []byte) [][]byte {
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var ret [][]byte
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for i := byte(0); i < 16; i++ {
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elem := make([]byte, len(prefix))
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copy(elem, prefix)
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elem = append(elem, i)
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ret = append(ret, elem)
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}
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return ret
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}
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// Generates ordered cartesian product of all nibbles of given length, w/ optional prefix
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// eg. MakePaths([4], 2) => [[4 0 0] [4 0 1] ... [4 f f]]
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func MakePaths(prefix []byte, length int) [][]byte {
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paths := [][]byte{prefix}
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for depth := 0; depth < length; depth++ {
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var newPaths [][]byte
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for _, path := range paths {
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for _, newPath := range prefixedNibbles(path) {
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newPaths = append(newPaths, newPath)
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}
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}
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paths = newPaths
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}
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return paths
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}
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// Apply a function to 16^cutdepth subtries divided by path prefix
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func VisitSubtries(tree state.Trie, cutDepth int, callback func(NodeIterator)) {
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prefixes := MakePaths(nil, cutDepth)
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// pre- and postpend nil to include root & tail
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prefixes = append(prefixes, nil)
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prefixes = append([][]byte{nil}, prefixes...)
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for i := 0; i < len(prefixes)-1; i++ {
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key := prefixes[i]
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if len(key) % 2 != 0 {
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key = append(key, 0)
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}
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it := tree.NodeIterator(HexToKeyBytes(key))
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callback(NewPrefixBoundIterator(it, prefixes[i+1]))
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}
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}
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49
pkg/iterator/util.go
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49
pkg/iterator/util.go
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package iterator
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import (
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"bytes"
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"github.com/ethereum/go-ethereum/trie"
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)
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func CompareNodes(a, b trie.NodeIterator) int {
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if cmp := bytes.Compare(a.Path(), b.Path()); cmp != 0 {
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return cmp
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}
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if a.Leaf() && !b.Leaf() {
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return -1
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} else if b.Leaf() && !a.Leaf() {
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return 1
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}
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if cmp := bytes.Compare(a.Hash().Bytes(), b.Hash().Bytes()); cmp != 0 {
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return cmp
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}
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if a.Leaf() && b.Leaf() {
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return bytes.Compare(a.LeafBlob(), b.LeafBlob())
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}
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return 0
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}
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// hexToKeyBytes turns hex nibbles into key bytes.
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// This can only be used for keys of even length.
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func HexToKeyBytes(hex []byte) []byte {
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if hasTerm(hex) {
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hex = hex[:len(hex)-1]
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}
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if len(hex)&1 != 0 {
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panic("can't convert hex key of odd length")
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}
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key := make([]byte, len(hex)/2)
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decodeNibbles(hex, key)
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return key
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}
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func decodeNibbles(nibbles []byte, bytes []byte) {
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for bi, ni := 0, 0; ni < len(nibbles); bi, ni = bi+1, ni+2 {
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bytes[bi] = nibbles[ni]<<4 | nibbles[ni+1]
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}
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}
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// hasTerm returns whether a hex key has the terminator flag.
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func hasTerm(s []byte) bool {
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return len(s) > 0 && s[len(s)-1] == 16
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}
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