mirror of
https://github.com/QuilibriumNetwork/ceremonyclient.git
synced 2026-02-21 18:37:26 +08:00
510 lines
12 KiB
Go
510 lines
12 KiB
Go
package crypto
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import (
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"bytes"
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"crypto/sha512"
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"encoding/binary"
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"encoding/gob"
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"errors"
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"fmt"
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rbls48581 "source.quilibrium.com/quilibrium/monorepo/bls48581"
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)
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func init() {
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gob.Register(&VectorCommitmentLeafNode{})
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gob.Register(&VectorCommitmentBranchNode{})
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}
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const (
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BranchNodes = 1024
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BranchBits = 10 // log2(1024)
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BranchMask = BranchNodes - 1
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)
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type VectorCommitmentNode interface {
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Commit() []byte
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}
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type VectorCommitmentLeafNode struct {
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Key []byte
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Value []byte
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Commitment []byte
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}
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type VectorCommitmentBranchNode struct {
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Prefix []int
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Children [BranchNodes]VectorCommitmentNode
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Commitment []byte
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}
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func (n *VectorCommitmentLeafNode) Commit() []byte {
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if n.Commitment == nil {
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h := sha512.New()
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h.Write([]byte{0})
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h.Write(n.Key)
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h.Write(n.Value)
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n.Commitment = h.Sum(nil)
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}
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return n.Commitment
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}
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func (n *VectorCommitmentBranchNode) Commit() []byte {
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if n.Commitment == nil {
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data := []byte{}
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for _, child := range n.Children {
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if child != nil {
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out := child.Commit()
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switch c := child.(type) {
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case *VectorCommitmentBranchNode:
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h := sha512.New()
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h.Write([]byte{1})
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for _, p := range c.Prefix {
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h.Write(binary.BigEndian.AppendUint32([]byte{}, uint32(p)))
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}
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h.Write(out)
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out = h.Sum(nil)
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case *VectorCommitmentLeafNode:
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// do nothing
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}
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data = append(data, out...)
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} else {
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data = append(data, make([]byte, 64)...)
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}
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}
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n.Commitment = rbls48581.CommitRaw(data, 1024)
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}
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return n.Commitment
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}
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func (n *VectorCommitmentBranchNode) Verify(index int, proof []byte) bool {
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data := []byte{}
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if n.Commitment == nil {
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for _, child := range n.Children {
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if child != nil {
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out := child.Commit()
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switch c := child.(type) {
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case *VectorCommitmentBranchNode:
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h := sha512.New()
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h.Write([]byte{1})
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for _, p := range c.Prefix {
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h.Write(binary.BigEndian.AppendUint32([]byte{}, uint32(p)))
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}
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h.Write(out)
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out = h.Sum(nil)
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case *VectorCommitmentLeafNode:
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// do nothing
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}
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data = append(data, out...)
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} else {
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data = append(data, make([]byte, 64)...)
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}
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}
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n.Commitment = rbls48581.CommitRaw(data, 1024)
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data = data[64*index : 64*(index+1)]
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} else {
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child := n.Children[index]
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if child != nil {
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out := child.Commit()
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switch c := child.(type) {
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case *VectorCommitmentBranchNode:
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h := sha512.New()
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h.Write([]byte{1})
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for _, p := range c.Prefix {
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h.Write(binary.BigEndian.AppendUint32([]byte{}, uint32(p)))
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}
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h.Write(out)
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out = h.Sum(nil)
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case *VectorCommitmentLeafNode:
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// do nothing
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}
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data = append(data, out...)
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} else {
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data = append(data, make([]byte, 64)...)
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}
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}
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return rbls48581.VerifyRaw(data, n.Commitment, uint64(index), proof, 1024)
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}
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func (n *VectorCommitmentBranchNode) Prove(index int) []byte {
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data := []byte{}
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for _, child := range n.Children {
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if child != nil {
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out := child.Commit()
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switch c := child.(type) {
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case *VectorCommitmentBranchNode:
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h := sha512.New()
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h.Write([]byte{1})
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for _, p := range c.Prefix {
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h.Write(binary.BigEndian.AppendUint32([]byte{}, uint32(p)))
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}
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h.Write(out)
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out = h.Sum(nil)
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case *VectorCommitmentLeafNode:
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// do nothing
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}
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data = append(data, out...)
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} else {
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data = append(data, make([]byte, 64)...)
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}
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}
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return rbls48581.ProveRaw(data, uint64(index), 1024)
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}
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type VectorCommitmentTree struct {
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Root VectorCommitmentNode
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}
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// getNextNibble returns the next BranchBits bits from the key starting at pos
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func getNextNibble(key []byte, pos int) int {
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startByte := pos / 8
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if startByte >= len(key) {
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return 0
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}
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// Calculate how many bits we need from the current byte
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startBit := pos % 8
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bitsFromCurrentByte := 8 - startBit
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result := int(key[startByte] & ((1 << bitsFromCurrentByte) - 1))
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if bitsFromCurrentByte >= BranchBits {
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// We have enough bits in the current byte
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return (result >> (bitsFromCurrentByte - BranchBits)) & BranchMask
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}
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// We need bits from the next byte
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result = result << (BranchBits - bitsFromCurrentByte)
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if startByte+1 < len(key) {
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remainingBits := BranchBits - bitsFromCurrentByte
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nextByte := int(key[startByte+1])
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result |= (nextByte >> (8 - remainingBits))
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}
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return result & BranchMask
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}
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func getNibblesUntilDiverge(key1, key2 []byte, startDepth int) ([]int, int) {
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var nibbles []int
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depth := startDepth
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for {
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n1 := getNextNibble(key1, depth)
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n2 := getNextNibble(key2, depth)
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if n1 != n2 {
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return nibbles, depth
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}
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nibbles = append(nibbles, n1)
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depth += BranchBits
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}
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}
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// getLastNibble returns the final nibble after applying a prefix
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func getLastNibble(key []byte, prefixLen int) int {
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return getNextNibble(key, prefixLen*BranchBits)
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}
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// Insert adds or updates a key-value pair in the tree
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func (t *VectorCommitmentTree) Insert(key, value []byte) error {
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if len(key) == 0 {
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return errors.New("empty key not allowed")
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}
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var insert func(node VectorCommitmentNode, depth int) VectorCommitmentNode
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insert = func(node VectorCommitmentNode, depth int) VectorCommitmentNode {
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if node == nil {
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return &VectorCommitmentLeafNode{Key: key, Value: value}
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}
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switch n := node.(type) {
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case *VectorCommitmentLeafNode:
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if bytes.Equal(n.Key, key) {
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n.Value = value
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n.Commitment = nil
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return n
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}
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// Get common prefix nibbles and divergence point
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sharedNibbles, divergeDepth := getNibblesUntilDiverge(n.Key, key, depth)
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// Create single branch node with shared prefix
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branch := &VectorCommitmentBranchNode{
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Prefix: sharedNibbles,
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}
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// Add both leaves at their final positions
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finalOldNibble := getNextNibble(n.Key, divergeDepth)
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finalNewNibble := getNextNibble(key, divergeDepth)
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branch.Children[finalOldNibble] = n
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branch.Children[finalNewNibble] = &VectorCommitmentLeafNode{Key: key, Value: value}
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return branch
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case *VectorCommitmentBranchNode:
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if len(n.Prefix) > 0 {
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// Check if the new key matches the prefix
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for i, expectedNibble := range n.Prefix {
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actualNibble := getNextNibble(key, depth+i*BranchBits)
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if actualNibble != expectedNibble {
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// Create new branch with shared prefix subset
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newBranch := &VectorCommitmentBranchNode{
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Prefix: n.Prefix[:i],
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}
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// Position old branch and new leaf
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newBranch.Children[expectedNibble] = n
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n.Prefix = n.Prefix[i+1:] // remove shared prefix from old branch
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newBranch.Children[actualNibble] = &VectorCommitmentLeafNode{Key: key, Value: value}
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return newBranch
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}
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}
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// Key matches prefix, continue with final nibble
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finalNibble := getNextNibble(key, depth+len(n.Prefix)*BranchBits)
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n.Children[finalNibble] = insert(n.Children[finalNibble], depth+len(n.Prefix)*BranchBits+BranchBits)
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n.Commitment = nil
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return n
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} else {
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// Simple branch without prefix
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nibble := getNextNibble(key, depth)
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n.Children[nibble] = insert(n.Children[nibble], depth+BranchBits)
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n.Commitment = nil
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return n
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}
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}
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return nil
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}
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t.Root = insert(t.Root, 0)
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return nil
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}
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func (t *VectorCommitmentTree) Verify(key []byte, proofs [][]byte) bool {
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if len(key) == 0 {
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return false
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}
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var verify func(node VectorCommitmentNode, proofs [][]byte, depth int) bool
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verify = func(node VectorCommitmentNode, proofs [][]byte, depth int) bool {
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if node == nil {
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return false
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}
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if len(proofs) == 0 {
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return false
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}
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switch n := node.(type) {
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case *VectorCommitmentLeafNode:
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if bytes.Equal(n.Key, key) {
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return bytes.Equal(n.Value, proofs[0])
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}
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return false
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case *VectorCommitmentBranchNode:
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// Check prefix match
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for i, expectedNibble := range n.Prefix {
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if getNextNibble(key, depth+i*BranchBits) != expectedNibble {
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return false
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}
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}
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// Get final nibble after prefix
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finalNibble := getNextNibble(key, depth+len(n.Prefix)*BranchBits)
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if !n.Verify(finalNibble, proofs[0]) {
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return false
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}
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return verify(n.Children[finalNibble], proofs[1:], depth+len(n.Prefix)*BranchBits+BranchBits)
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}
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return false
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}
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return verify(t.Root, proofs, 0)
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}
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func (t *VectorCommitmentTree) Prove(key []byte) [][]byte {
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if len(key) == 0 {
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return nil
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}
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var prove func(node VectorCommitmentNode, depth int) [][]byte
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prove = func(node VectorCommitmentNode, depth int) [][]byte {
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if node == nil {
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return nil
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}
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switch n := node.(type) {
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case *VectorCommitmentLeafNode:
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if bytes.Equal(n.Key, key) {
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return [][]byte{n.Value}
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}
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return nil
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case *VectorCommitmentBranchNode:
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// Check prefix match
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for i, expectedNibble := range n.Prefix {
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if getNextNibble(key, depth+i*BranchBits) != expectedNibble {
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return nil
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}
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}
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// Get final nibble after prefix
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finalNibble := getNextNibble(key, depth+len(n.Prefix)*BranchBits)
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proofs := [][]byte{n.Prove(finalNibble)}
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return append(proofs, prove(n.Children[finalNibble], depth+len(n.Prefix)*BranchBits+BranchBits)...)
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}
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return nil
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}
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return prove(t.Root, 0)
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}
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// Get retrieves a value from the tree by key
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func (t *VectorCommitmentTree) Get(key []byte) ([]byte, error) {
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if len(key) == 0 {
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return nil, errors.New("empty key not allowed")
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}
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var get func(node VectorCommitmentNode, depth int) []byte
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get = func(node VectorCommitmentNode, depth int) []byte {
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if node == nil {
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return nil
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}
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switch n := node.(type) {
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case *VectorCommitmentLeafNode:
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if bytes.Equal(n.Key, key) {
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return n.Value
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}
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return nil
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case *VectorCommitmentBranchNode:
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// Check prefix match
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for i, expectedNibble := range n.Prefix {
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if getNextNibble(key, depth+i*BranchBits) != expectedNibble {
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return nil
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}
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}
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// Get final nibble after prefix
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finalNibble := getNextNibble(key, depth+len(n.Prefix)*BranchBits)
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return get(n.Children[finalNibble], depth+len(n.Prefix)*BranchBits+BranchBits)
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}
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return nil
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}
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value := get(t.Root, 0)
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if value == nil {
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return nil, errors.New("key not found")
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}
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return value, nil
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}
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// Delete removes a key-value pair from the tree
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func (t *VectorCommitmentTree) Delete(key []byte) error {
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if len(key) == 0 {
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return errors.New("empty key not allowed")
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}
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var delete func(node VectorCommitmentNode, depth int) VectorCommitmentNode
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delete = func(node VectorCommitmentNode, depth int) VectorCommitmentNode {
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if node == nil {
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return nil
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}
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switch n := node.(type) {
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case *VectorCommitmentLeafNode:
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if bytes.Equal(n.Key, key) {
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return nil
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}
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return n
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case *VectorCommitmentBranchNode:
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// Check prefix match
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for i, expectedNibble := range n.Prefix {
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currentNibble := getNextNibble(key, depth+i*BranchBits)
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if currentNibble != expectedNibble {
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return n // Key doesn't match prefix, nothing to delete
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}
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}
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// Delete at final position after prefix
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finalNibble := getNextNibble(key, depth+len(n.Prefix)*BranchBits)
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n.Children[finalNibble] = delete(n.Children[finalNibble], depth+len(n.Prefix)*BranchBits+BranchBits)
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n.Commitment = nil
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// Count remaining children
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childCount := 0
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var lastChild VectorCommitmentNode
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var lastIndex int
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for i, child := range n.Children {
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if child != nil {
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childCount++
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lastChild = child
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lastIndex = i
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}
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}
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if childCount == 0 {
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return nil
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} else if childCount == 1 {
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// If the only child is a leaf, keep structure if its path matches
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if leaf, ok := lastChild.(*VectorCommitmentLeafNode); ok {
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if lastIndex == getLastNibble(leaf.Key, len(n.Prefix)) {
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return n
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}
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return leaf
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}
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// If it's a branch, merge the prefixes
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if branch, ok := lastChild.(*VectorCommitmentBranchNode); ok {
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branch.Prefix = append(n.Prefix, branch.Prefix...)
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return branch
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}
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}
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return n
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}
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return nil
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}
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t.Root = delete(t.Root, 0)
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return nil
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}
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// Commit returns the root of the tree
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func (t *VectorCommitmentTree) Commit() []byte {
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if t.Root == nil {
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return make([]byte, 64)
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}
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return t.Root.Commit()
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}
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func debugNode(node VectorCommitmentNode, depth int, prefix string) {
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if node == nil {
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return
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}
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switch n := node.(type) {
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case *VectorCommitmentLeafNode:
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fmt.Printf("%sLeaf: key=%x value=%x\n", prefix, n.Key, n.Value)
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case *VectorCommitmentBranchNode:
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fmt.Printf("%sBranch %v:\n", prefix, n.Prefix)
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for i, child := range n.Children {
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if child != nil {
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fmt.Printf("%s [%d]:\n", prefix, i)
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debugNode(child, depth+1, prefix+" ")
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}
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}
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}
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}
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