mirror of https://github.com/status-im/go-waku.git
181 lines
4.7 KiB
Go
181 lines
4.7 KiB
Go
package group_manager
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import (
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"bytes"
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"sync"
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"github.com/waku-org/go-waku/waku/v2/utils"
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"github.com/waku-org/go-zerokit-rln/rln"
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"go.uber.org/zap"
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)
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// RootsPerBlock stores the merkle root generated at N block number
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type RootsPerBlock struct {
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Root rln.MerkleNode
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BlockNumber uint64
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}
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// MerkleRootTracker keeps track of the latest N merkle roots considered
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// valid for RLN proofs.
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type MerkleRootTracker struct {
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sync.RWMutex
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rln *rln.RLN
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acceptableRootWindowSize int
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validMerkleRoots []RootsPerBlock
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merkleRootBuffer []RootsPerBlock
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}
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const maxBufferSize = 20
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// NewMerkleRootTracker creates an instance of MerkleRootTracker
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func NewMerkleRootTracker(acceptableRootWindowSize int, rlnInstance *rln.RLN) *MerkleRootTracker {
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result := &MerkleRootTracker{
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acceptableRootWindowSize: acceptableRootWindowSize,
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rln: rlnInstance,
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}
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result.UpdateLatestRoot(0)
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return result
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}
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// Backfill is used to pop merkle roots when there is a chain fork
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func (m *MerkleRootTracker) Backfill(fromBlockNumber uint64) {
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m.Lock()
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defer m.Unlock()
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numBlocks := 0
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for i := len(m.validMerkleRoots) - 1; i >= 0; i-- {
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if m.validMerkleRoots[i].BlockNumber >= fromBlockNumber {
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numBlocks++
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}
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}
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if numBlocks == 0 {
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return
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}
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// Remove last roots
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rootsToPop := numBlocks
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if len(m.validMerkleRoots) < rootsToPop {
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rootsToPop = len(m.validMerkleRoots)
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}
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m.validMerkleRoots = m.validMerkleRoots[0 : len(m.validMerkleRoots)-rootsToPop]
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if len(m.merkleRootBuffer) == 0 {
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return
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}
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// Backfill the tree's acceptable roots
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rootsToRestore := numBlocks
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bufferLen := len(m.merkleRootBuffer)
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if bufferLen < rootsToRestore {
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rootsToRestore = bufferLen
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}
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for i := 0; i < rootsToRestore; i++ {
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x, newRootBuffer := m.merkleRootBuffer[len(m.merkleRootBuffer)-1], m.merkleRootBuffer[:len(m.merkleRootBuffer)-1] // Pop
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m.validMerkleRoots = append([]RootsPerBlock{x}, m.validMerkleRoots...)
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m.merkleRootBuffer = newRootBuffer
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}
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}
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// ContainsRoot is used to check whether a merkle tree root is contained in the list of valid merkle roots or not
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func (m *MerkleRootTracker) ContainsRoot(root [32]byte) bool {
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return m.IndexOf(root) > -1
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}
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// IndexOf returns the index of a root if present in the list of valid merkle roots
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func (m *MerkleRootTracker) IndexOf(root [32]byte) int {
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m.RLock()
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defer m.RUnlock()
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for i := range m.validMerkleRoots {
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if bytes.Equal(m.validMerkleRoots[i].Root[:], root[:]) {
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return i
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}
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}
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return -1
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}
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// UpdateLatestRoot should be called when a block containing a new
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// IDCommitment is received so we can keep track of the merkle root change
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func (m *MerkleRootTracker) UpdateLatestRoot(blockNumber uint64) rln.MerkleNode {
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m.Lock()
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defer m.Unlock()
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root, err := m.rln.GetMerkleRoot()
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if err != nil {
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utils.Logger().Named("root-tracker").Panic("could not retrieve merkle root", zap.Error(err))
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}
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m.pushRoot(blockNumber, root)
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return root
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}
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func (m *MerkleRootTracker) pushRoot(blockNumber uint64, root [32]byte) {
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m.validMerkleRoots = append(m.validMerkleRoots, RootsPerBlock{
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Root: root,
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BlockNumber: blockNumber,
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})
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// Maintain valid merkle root window
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if len(m.validMerkleRoots) > m.acceptableRootWindowSize {
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m.merkleRootBuffer = append(m.merkleRootBuffer, m.validMerkleRoots[0])
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m.validMerkleRoots = m.validMerkleRoots[1:]
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}
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// Maintain merkle root buffer
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if len(m.merkleRootBuffer) > maxBufferSize {
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m.merkleRootBuffer = m.merkleRootBuffer[1:]
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}
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}
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// Roots return the list of valid merkle roots
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func (m *MerkleRootTracker) Roots() []rln.MerkleNode {
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m.RLock()
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defer m.RUnlock()
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result := make([]rln.MerkleNode, len(m.validMerkleRoots))
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for i := range m.validMerkleRoots {
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result[i] = m.validMerkleRoots[i].Root
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}
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return result
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}
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// Buffer is used as a repository of older merkle roots that although
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// they were valid once, they have left the acceptable window of
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// merkle roots. We keep track of them in case a chain fork occurs
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// and we need to restore the valid merkle roots to a previous point
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// of time
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func (m *MerkleRootTracker) Buffer() []rln.MerkleNode {
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m.RLock()
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defer m.RUnlock()
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result := make([]rln.MerkleNode, len(m.merkleRootBuffer))
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for i := range m.merkleRootBuffer {
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result[i] = m.merkleRootBuffer[i].Root
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}
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return result
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}
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// ValidRootsPerBlock returns the current valid merkle roots and block numbers
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func (m *MerkleRootTracker) ValidRootsPerBlock() []RootsPerBlock {
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m.RLock()
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defer m.RUnlock()
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return m.validMerkleRoots
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}
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// SetValidRootsPerBlock is used to overwrite the valid merkle roots
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func (m *MerkleRootTracker) SetValidRootsPerBlock(roots []RootsPerBlock) {
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m.Lock()
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defer m.Unlock()
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m.validMerkleRoots = roots
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}
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