mirror of
https://github.com/QuilibriumNetwork/ceremonyclient.git
synced 2026-02-21 18:37:26 +08:00
887 lines
24 KiB
Go
887 lines
24 KiB
Go
package hypergraph
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import (
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"bytes"
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"context"
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"encoding/hex"
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"fmt"
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"io"
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"slices"
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"strings"
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"time"
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"github.com/pkg/errors"
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"go.uber.org/zap"
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"source.quilibrium.com/quilibrium/monorepo/protobufs"
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"source.quilibrium.com/quilibrium/monorepo/types/hypergraph"
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"source.quilibrium.com/quilibrium/monorepo/types/tries"
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)
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// syncSession holds the state for a PerformSync session.
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type syncSession struct {
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shardKey tries.ShardKey
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phaseSet protobufs.HypergraphPhaseSet
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snapshot *snapshotHandle
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idSet hypergraph.IdSet
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store tries.TreeBackingStore
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}
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// PerformSync implements the server side of the client-driven sync protocol.
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// The client sends GetBranch and GetLeaves requests, and the server responds
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// with the requested data. This is simpler than HyperStream because there's
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// no need for both sides to walk in lockstep.
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//
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// The server uses a snapshot to ensure consistent reads throughout the session.
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func (hg *HypergraphCRDT) PerformSync(
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stream protobufs.HypergraphComparisonService_PerformSyncServer,
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) error {
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ctx := stream.Context()
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logger := hg.logger.With(zap.String("method", "PerformSync"))
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sessionStart := time.Now()
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// Session state - initialized on first request
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var session *syncSession
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defer func() {
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if session != nil && session.snapshot != nil {
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hg.snapshotMgr.release(session.snapshot)
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}
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logger.Info(
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"PerformSync session finished",
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zap.Duration("duration", time.Since(sessionStart)),
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)
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}()
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// Process requests until stream closes
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for {
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select {
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case <-ctx.Done():
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return ctx.Err()
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default:
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}
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req, err := stream.Recv()
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if err == io.EOF {
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return nil
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}
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if err != nil {
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return errors.Wrap(err, "receive request")
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}
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var resp *protobufs.HypergraphSyncResponse
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switch r := req.Request.(type) {
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case *protobufs.HypergraphSyncQuery_GetBranch:
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// Initialize session on first request
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if session == nil {
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session, err = hg.initSyncSession(
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r.GetBranch.ShardKey,
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r.GetBranch.PhaseSet,
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r.GetBranch.ExpectedRoot,
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logger,
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)
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if err != nil {
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return errors.Wrap(err, "init sync session")
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}
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}
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resp, err = hg.handleGetBranch(ctx, r.GetBranch, session, logger)
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case *protobufs.HypergraphSyncQuery_GetLeaves:
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// Initialize session on first request
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if session == nil {
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session, err = hg.initSyncSession(
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r.GetLeaves.ShardKey,
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r.GetLeaves.PhaseSet,
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r.GetLeaves.ExpectedRoot,
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logger,
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)
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if err != nil {
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return errors.Wrap(err, "init sync session")
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}
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}
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resp, err = hg.handleGetLeaves(ctx, r.GetLeaves, session, logger)
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default:
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resp = &protobufs.HypergraphSyncResponse{
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Response: &protobufs.HypergraphSyncResponse_Error{
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Error: &protobufs.HypergraphSyncError{
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Code: protobufs.HypergraphSyncErrorCode_HYPERGRAPH_SYNC_ERROR_UNKNOWN,
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Message: "unknown request type",
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},
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},
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}
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}
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if err != nil {
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logger.Error("error handling request", zap.Error(err))
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resp = &protobufs.HypergraphSyncResponse{
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Response: &protobufs.HypergraphSyncResponse_Error{
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Error: &protobufs.HypergraphSyncError{
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Code: protobufs.HypergraphSyncErrorCode_HYPERGRAPH_SYNC_ERROR_INTERNAL,
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Message: err.Error(),
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},
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},
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}
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}
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if err := stream.Send(resp); err != nil {
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return errors.Wrap(err, "send response")
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}
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}
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}
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// initSyncSession initializes a sync session with a snapshot for consistent reads.
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func (hg *HypergraphCRDT) initSyncSession(
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shardKeyBytes []byte,
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phaseSet protobufs.HypergraphPhaseSet,
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expectedRoot []byte,
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logger *zap.Logger,
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) (*syncSession, error) {
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if len(shardKeyBytes) != 35 {
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return nil, errors.New("shard key must be 35 bytes")
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}
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shardKey := tries.ShardKey{
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L1: [3]byte(shardKeyBytes[:3]),
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L2: [32]byte(shardKeyBytes[3:]),
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}
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// Acquire a snapshot for consistent reads throughout the session.
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// If expectedRoot is provided, we try to find a snapshot matching that root.
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snapshot := hg.snapshotMgr.acquire(shardKey, expectedRoot)
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if snapshot == nil {
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return nil, errors.New("failed to acquire snapshot")
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}
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snapshotStore := snapshot.Store()
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idSet := hg.snapshotPhaseSet(shardKey, phaseSet, snapshotStore)
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if idSet == nil {
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hg.snapshotMgr.release(snapshot)
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return nil, errors.New("unsupported phase set")
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}
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tree := idSet.GetTree()
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logger.Debug(
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"sync session initialized",
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zap.String("shard", hex.EncodeToString(shardKeyBytes)),
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zap.Int("phaseSet", int(phaseSet)),
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zap.Bool("tree_nil", tree == nil),
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zap.Bool("root_nil", tree != nil && tree.Root == nil),
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zap.String("snapshot_root", hex.EncodeToString(snapshot.Root())),
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)
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return &syncSession{
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shardKey: shardKey,
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phaseSet: phaseSet,
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snapshot: snapshot,
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idSet: idSet,
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store: snapshotStore,
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}, nil
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}
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func (hg *HypergraphCRDT) handleGetBranch(
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ctx context.Context,
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req *protobufs.HypergraphSyncGetBranchRequest,
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session *syncSession,
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logger *zap.Logger,
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) (*protobufs.HypergraphSyncResponse, error) {
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tree := session.idSet.GetTree()
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if tree == nil || tree.Root == nil {
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// Empty tree - return empty response
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logger.Debug("handleGetBranch: empty tree",
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zap.Bool("tree_nil", tree == nil),
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zap.Bool("root_nil", tree != nil && tree.Root == nil),
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zap.String("path", hex.EncodeToString(packPath(req.Path))),
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)
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return &protobufs.HypergraphSyncResponse{
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Response: &protobufs.HypergraphSyncResponse_Branch{
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Branch: &protobufs.HypergraphSyncBranchResponse{
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FullPath: req.Path,
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Commitment: nil,
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Children: nil,
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IsLeaf: true,
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LeafCount: 0,
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},
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},
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}, nil
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}
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path := toIntSlice(req.Path)
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node := getNodeAtPath(
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logger,
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tree.SetType,
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tree.PhaseType,
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tree.ShardKey,
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tree.Root,
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toInt32Slice(path),
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0,
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)
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if node == nil {
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return &protobufs.HypergraphSyncResponse{
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Response: &protobufs.HypergraphSyncResponse_Error{
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Error: &protobufs.HypergraphSyncError{
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Code: protobufs.HypergraphSyncErrorCode_HYPERGRAPH_SYNC_ERROR_NODE_NOT_FOUND,
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Message: "node not found at path",
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Path: req.Path,
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},
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},
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}, nil
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}
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resp := &protobufs.HypergraphSyncBranchResponse{}
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// Ensure commitment is computed first
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node = ensureCommittedNode(logger, tree, path, node)
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switch n := node.(type) {
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case *tries.LazyVectorCommitmentBranchNode:
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resp.FullPath = toInt32Slice(n.FullPrefix)
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resp.Commitment = n.Commitment
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resp.IsLeaf = false
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resp.LeafCount = uint64(n.LeafCount)
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// Collect children
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for i := 0; i < 64; i++ {
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child := n.Children[i]
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if child == nil {
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var err error
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child, err = n.Store.GetNodeByPath(
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tree.SetType,
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tree.PhaseType,
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tree.ShardKey,
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slices.Concat(n.FullPrefix, []int{i}),
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)
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if err != nil && !strings.Contains(err.Error(), "item not found") {
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continue
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}
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}
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if child != nil {
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childPath := slices.Concat(n.FullPrefix, []int{i})
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child = ensureCommittedNode(logger, tree, childPath, child)
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var childCommit []byte
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switch c := child.(type) {
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case *tries.LazyVectorCommitmentBranchNode:
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childCommit = c.Commitment
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case *tries.LazyVectorCommitmentLeafNode:
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childCommit = c.Commitment
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}
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if len(childCommit) > 0 {
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resp.Children = append(resp.Children, &protobufs.HypergraphSyncChildInfo{
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Index: int32(i),
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Commitment: childCommit,
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})
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}
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}
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}
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case *tries.LazyVectorCommitmentLeafNode:
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resp.FullPath = req.Path // Leaves don't have FullPrefix, use requested path
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resp.Commitment = n.Commitment
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resp.IsLeaf = true
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resp.LeafCount = 1
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}
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return &protobufs.HypergraphSyncResponse{
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Response: &protobufs.HypergraphSyncResponse_Branch{
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Branch: resp,
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},
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}, nil
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}
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func (hg *HypergraphCRDT) handleGetLeaves(
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ctx context.Context,
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req *protobufs.HypergraphSyncGetLeavesRequest,
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session *syncSession,
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logger *zap.Logger,
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) (*protobufs.HypergraphSyncResponse, error) {
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tree := session.idSet.GetTree()
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if tree == nil || tree.Root == nil {
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return &protobufs.HypergraphSyncResponse{
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Response: &protobufs.HypergraphSyncResponse_Leaves{
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Leaves: &protobufs.HypergraphSyncLeavesResponse{
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Path: req.Path,
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Leaves: nil,
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TotalLeaves: 0,
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},
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},
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}, nil
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}
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path := toIntSlice(req.Path)
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node := getNodeAtPath(
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logger,
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tree.SetType,
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tree.PhaseType,
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tree.ShardKey,
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tree.Root,
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toInt32Slice(path),
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0,
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)
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if node == nil {
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return &protobufs.HypergraphSyncResponse{
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Response: &protobufs.HypergraphSyncResponse_Error{
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Error: &protobufs.HypergraphSyncError{
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Code: protobufs.HypergraphSyncErrorCode_HYPERGRAPH_SYNC_ERROR_NODE_NOT_FOUND,
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Message: "node not found at path",
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Path: req.Path,
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},
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},
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}, nil
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}
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// Debug: log node details to identify snapshot consistency issues
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var nodeCommitment []byte
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var nodeStore string
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switch n := node.(type) {
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case *tries.LazyVectorCommitmentBranchNode:
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nodeCommitment = n.Commitment
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nodeStore = fmt.Sprintf("%p", n.Store)
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case *tries.LazyVectorCommitmentLeafNode:
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nodeCommitment = n.Commitment
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nodeStore = fmt.Sprintf("%p", n.Store)
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}
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logger.Debug("handleGetLeaves node info",
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zap.String("path", hex.EncodeToString(packPath(req.Path))),
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zap.String("nodeCommitment", hex.EncodeToString(nodeCommitment)),
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zap.String("nodeStore", nodeStore),
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zap.String("sessionStore", fmt.Sprintf("%p", session.store)),
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zap.Int("contTokenLen", len(req.ContinuationToken)),
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)
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// Get all leaves under this node
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allLeaves := tries.GetAllLeaves(
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tree.SetType,
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tree.PhaseType,
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tree.ShardKey,
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node,
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)
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// Apply pagination
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maxLeaves := int(req.MaxLeaves)
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if maxLeaves == 0 {
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maxLeaves = 1000 // Default batch size
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}
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startIdx := 0
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if len(req.ContinuationToken) > 0 {
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// Simple continuation: token is the start index as hex
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idx, err := parseContToken(req.ContinuationToken)
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if err == nil {
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startIdx = idx
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}
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}
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var leaves []*protobufs.LeafData
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var totalNonNil uint64
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for i, leaf := range allLeaves {
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if leaf == nil {
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continue
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}
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totalNonNil++
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if int(totalNonNil) <= startIdx {
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continue
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}
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if len(leaves) >= maxLeaves {
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break
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}
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leafData := &protobufs.LeafData{
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Key: leaf.Key,
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Value: leaf.Value,
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HashTarget: leaf.HashTarget,
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Size: leaf.Size.FillBytes(make([]byte, 32)),
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}
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// Load underlying vertex tree if available (use snapshot store for consistency)
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vtree, err := session.store.LoadVertexTree(leaf.Key)
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if err == nil && vtree != nil {
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data, err := tries.SerializeNonLazyTree(vtree)
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if err == nil {
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leafData.UnderlyingData = data
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}
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}
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leaves = append(leaves, leafData)
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_ = i // suppress unused warning
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}
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// Debug: log leaf count details
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logger.Debug("handleGetLeaves returning",
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zap.String("path", hex.EncodeToString(packPath(req.Path))),
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zap.Int("allLeavesLen", len(allLeaves)),
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zap.Uint64("totalNonNil", totalNonNil),
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zap.Int("startIdx", startIdx),
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zap.Int("leavesReturned", len(leaves)),
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zap.String("treePtr", fmt.Sprintf("%p", tree)),
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zap.String("treeRootPtr", fmt.Sprintf("%p", tree.Root)),
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)
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resp := &protobufs.HypergraphSyncLeavesResponse{
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Path: req.Path,
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Leaves: leaves,
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TotalLeaves: totalNonNil,
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}
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// Set continuation token if more leaves remain
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if startIdx+len(leaves) < int(totalNonNil) {
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resp.ContinuationToken = makeContToken(startIdx + len(leaves))
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}
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return &protobufs.HypergraphSyncResponse{
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Response: &protobufs.HypergraphSyncResponse_Leaves{
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Leaves: resp,
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},
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}, nil
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}
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func (hg *HypergraphCRDT) getPhaseSet(
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shardKey tries.ShardKey,
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phaseSet protobufs.HypergraphPhaseSet,
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) hypergraph.IdSet {
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switch phaseSet {
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case protobufs.HypergraphPhaseSet_HYPERGRAPH_PHASE_SET_VERTEX_ADDS:
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return hg.getVertexAddsSet(shardKey)
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case protobufs.HypergraphPhaseSet_HYPERGRAPH_PHASE_SET_VERTEX_REMOVES:
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return hg.getVertexRemovesSet(shardKey)
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case protobufs.HypergraphPhaseSet_HYPERGRAPH_PHASE_SET_HYPEREDGE_ADDS:
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return hg.getHyperedgeAddsSet(shardKey)
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case protobufs.HypergraphPhaseSet_HYPERGRAPH_PHASE_SET_HYPEREDGE_REMOVES:
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return hg.getHyperedgeRemovesSet(shardKey)
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default:
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return nil
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}
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}
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func parseContToken(token []byte) (int, error) {
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if len(token) == 0 {
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return 0, nil
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}
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// Token is hex-encoded 4 bytes (big-endian int32)
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decoded, err := hex.DecodeString(string(token))
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if err != nil {
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return 0, err
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}
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if len(decoded) != 4 {
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return 0, errors.New("invalid continuation token length")
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}
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idx := int(decoded[0])<<24 | int(decoded[1])<<16 | int(decoded[2])<<8 | int(decoded[3])
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return idx, nil
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}
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func makeContToken(idx int) []byte {
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return []byte(hex.EncodeToString([]byte{byte(idx >> 24), byte(idx >> 16), byte(idx >> 8), byte(idx)}))
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}
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// SyncFrom performs a client-driven sync from the given server stream.
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// It navigates to the covered prefix (if any), then recursively syncs
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// differing subtrees. If expectedRoot is provided, the server will attempt
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// to sync from a snapshot matching that root commitment.
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// Returns the new root commitment after sync completes.
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func (hg *HypergraphCRDT) SyncFrom(
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stream protobufs.HypergraphComparisonService_PerformSyncClient,
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shardKey tries.ShardKey,
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phaseSet protobufs.HypergraphPhaseSet,
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expectedRoot []byte,
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) ([]byte, error) {
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hg.mu.Lock()
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defer hg.mu.Unlock()
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logger := hg.logger.With(
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zap.String("method", "SyncFrom"),
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zap.String("shard", hex.EncodeToString(slices.Concat(shardKey.L1[:], shardKey.L2[:]))),
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)
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if len(expectedRoot) > 0 {
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logger = logger.With(zap.String("expectedRoot", hex.EncodeToString(expectedRoot)))
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}
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syncStart := time.Now()
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defer func() {
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logger.Info("SyncFrom completed", zap.Duration("duration", time.Since(syncStart)))
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}()
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set := hg.getPhaseSet(shardKey, phaseSet)
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if set == nil {
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return nil, errors.New("unsupported phase set")
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}
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shardKeyBytes := slices.Concat(shardKey.L1[:], shardKey.L2[:])
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coveredPrefix := hg.getCoveredPrefix()
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// Step 1: Navigate to sync point
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syncPoint, err := hg.navigateToSyncPoint(stream, shardKeyBytes, phaseSet, coveredPrefix, expectedRoot, logger)
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if err != nil {
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return nil, errors.Wrap(err, "navigate to sync point")
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}
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if syncPoint == nil || len(syncPoint.Commitment) == 0 {
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logger.Info("server has no data at sync point")
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// Return current root even if no data was synced
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root := set.GetTree().Commit(false)
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return root, nil
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}
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// Step 2: Sync the subtree
|
|
err = hg.syncSubtree(stream, shardKeyBytes, phaseSet, expectedRoot, syncPoint, set, logger)
|
|
if err != nil {
|
|
return nil, errors.Wrap(err, "sync subtree")
|
|
}
|
|
|
|
// Step 3: Recompute commitment so future syncs see updated state
|
|
root := set.GetTree().Commit(false)
|
|
logger.Info(
|
|
"hypergraph root commit after sync",
|
|
zap.String("root", hex.EncodeToString(root)),
|
|
)
|
|
|
|
return root, nil
|
|
}
|
|
|
|
func (hg *HypergraphCRDT) navigateToSyncPoint(
|
|
stream protobufs.HypergraphComparisonService_PerformSyncClient,
|
|
shardKey []byte,
|
|
phaseSet protobufs.HypergraphPhaseSet,
|
|
coveredPrefix []int,
|
|
expectedRoot []byte,
|
|
logger *zap.Logger,
|
|
) (*protobufs.HypergraphSyncBranchResponse, error) {
|
|
path := []int32{}
|
|
|
|
for {
|
|
// Query server for branch at current path
|
|
err := stream.Send(&protobufs.HypergraphSyncQuery{
|
|
Request: &protobufs.HypergraphSyncQuery_GetBranch{
|
|
GetBranch: &protobufs.HypergraphSyncGetBranchRequest{
|
|
ShardKey: shardKey,
|
|
PhaseSet: phaseSet,
|
|
Path: path,
|
|
ExpectedRoot: expectedRoot,
|
|
},
|
|
},
|
|
})
|
|
if err != nil {
|
|
return nil, errors.Wrap(err, "send GetBranch request")
|
|
}
|
|
|
|
resp, err := stream.Recv()
|
|
if err != nil {
|
|
return nil, errors.Wrap(err, "receive GetBranch response")
|
|
}
|
|
|
|
if errResp := resp.GetError(); errResp != nil {
|
|
if errResp.Code == protobufs.HypergraphSyncErrorCode_HYPERGRAPH_SYNC_ERROR_NODE_NOT_FOUND {
|
|
// Server doesn't have this path - nothing to sync
|
|
return nil, nil
|
|
}
|
|
return nil, errors.Errorf("server error: %s", errResp.Message)
|
|
}
|
|
|
|
branch := resp.GetBranch()
|
|
if branch == nil {
|
|
return nil, errors.New("unexpected response type")
|
|
}
|
|
|
|
logger.Debug("navigating",
|
|
zap.String("path", hex.EncodeToString(packPath(path))),
|
|
zap.String("fullPath", hex.EncodeToString(packPath(branch.FullPath))),
|
|
zap.Int("coveredPrefixLen", len(coveredPrefix)),
|
|
)
|
|
|
|
// If no covered prefix, root is the sync point
|
|
if len(coveredPrefix) == 0 {
|
|
return branch, nil
|
|
}
|
|
|
|
// Check if server's full path reaches or passes our covered prefix
|
|
serverPath := toIntSlice(branch.FullPath)
|
|
if isPrefixOrEqual(coveredPrefix, serverPath) {
|
|
return branch, nil
|
|
}
|
|
|
|
// Need to navigate deeper - find next child to descend into
|
|
if len(serverPath) >= len(coveredPrefix) {
|
|
// Server path is longer but doesn't match our prefix
|
|
// This means server has data outside our coverage
|
|
return branch, nil
|
|
}
|
|
|
|
// Server path is shorter - we need to go deeper
|
|
nextNibble := coveredPrefix[len(serverPath)]
|
|
|
|
// Check if server has a child at this index
|
|
found := false
|
|
for _, child := range branch.Children {
|
|
if int(child.Index) == nextNibble {
|
|
found = true
|
|
break
|
|
}
|
|
}
|
|
|
|
if !found {
|
|
// Server doesn't have the path we need
|
|
logger.Debug("server missing path to covered prefix",
|
|
zap.Int("nextNibble", nextNibble),
|
|
)
|
|
return nil, nil
|
|
}
|
|
|
|
// Descend to next level
|
|
path = append(branch.FullPath, int32(nextNibble))
|
|
}
|
|
}
|
|
|
|
func (hg *HypergraphCRDT) syncSubtree(
|
|
stream protobufs.HypergraphComparisonService_PerformSyncClient,
|
|
shardKey []byte,
|
|
phaseSet protobufs.HypergraphPhaseSet,
|
|
expectedRoot []byte,
|
|
serverBranch *protobufs.HypergraphSyncBranchResponse,
|
|
localSet hypergraph.IdSet,
|
|
logger *zap.Logger,
|
|
) error {
|
|
tree := localSet.GetTree()
|
|
|
|
// Get local node at same path
|
|
var localCommitment []byte
|
|
var localNode tries.LazyVectorCommitmentNode
|
|
if tree != nil && tree.Root != nil {
|
|
path := toIntSlice(serverBranch.FullPath)
|
|
localNode = getNodeAtPath(
|
|
logger,
|
|
tree.SetType,
|
|
tree.PhaseType,
|
|
tree.ShardKey,
|
|
tree.Root,
|
|
serverBranch.FullPath,
|
|
0,
|
|
)
|
|
if localNode != nil {
|
|
localNode = ensureCommittedNode(logger, tree, path, localNode)
|
|
switch n := localNode.(type) {
|
|
case *tries.LazyVectorCommitmentBranchNode:
|
|
localCommitment = n.Commitment
|
|
case *tries.LazyVectorCommitmentLeafNode:
|
|
localCommitment = n.Commitment
|
|
}
|
|
}
|
|
}
|
|
|
|
// If commitments match, subtrees are identical
|
|
if bytes.Equal(localCommitment, serverBranch.Commitment) {
|
|
logger.Debug("subtree matches",
|
|
zap.String("path", hex.EncodeToString(packPath(serverBranch.FullPath))),
|
|
)
|
|
return nil
|
|
}
|
|
|
|
// If server node is a leaf or has no children, fetch all leaves
|
|
if serverBranch.IsLeaf || len(serverBranch.Children) == 0 {
|
|
return hg.fetchAndIntegrateLeaves(stream, shardKey, phaseSet, expectedRoot, serverBranch.FullPath, localSet, logger)
|
|
}
|
|
|
|
// If we have NO local data at this path, fetch all leaves directly.
|
|
// This avoids N round trips for N children when we need all of them anyway.
|
|
if localNode == nil {
|
|
logger.Debug("no local data at path, fetching all leaves directly",
|
|
zap.String("path", hex.EncodeToString(packPath(serverBranch.FullPath))),
|
|
zap.Int("serverChildren", len(serverBranch.Children)),
|
|
)
|
|
return hg.fetchAndIntegrateLeaves(stream, shardKey, phaseSet, expectedRoot, serverBranch.FullPath, localSet, logger)
|
|
}
|
|
|
|
// Compare children and recurse
|
|
localChildren := make(map[int32][]byte)
|
|
if tree != nil && tree.Root != nil {
|
|
path := toIntSlice(serverBranch.FullPath)
|
|
if branch, ok := localNode.(*tries.LazyVectorCommitmentBranchNode); ok {
|
|
for i := 0; i < 64; i++ {
|
|
child := branch.Children[i]
|
|
if child == nil {
|
|
child, _ = branch.Store.GetNodeByPath(
|
|
tree.SetType,
|
|
tree.PhaseType,
|
|
tree.ShardKey,
|
|
slices.Concat(path, []int{i}),
|
|
)
|
|
}
|
|
if child != nil {
|
|
childPath := slices.Concat(path, []int{i})
|
|
child = ensureCommittedNode(logger, tree, childPath, child)
|
|
switch c := child.(type) {
|
|
case *tries.LazyVectorCommitmentBranchNode:
|
|
localChildren[int32(i)] = c.Commitment
|
|
case *tries.LazyVectorCommitmentLeafNode:
|
|
localChildren[int32(i)] = c.Commitment
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
for _, serverChild := range serverBranch.Children {
|
|
localChildCommit := localChildren[serverChild.Index]
|
|
|
|
if bytes.Equal(localChildCommit, serverChild.Commitment) {
|
|
// Child matches, skip
|
|
continue
|
|
}
|
|
|
|
// Need to sync this child
|
|
childPath := append(slices.Clone(serverBranch.FullPath), serverChild.Index)
|
|
|
|
// Query for child branch
|
|
err := stream.Send(&protobufs.HypergraphSyncQuery{
|
|
Request: &protobufs.HypergraphSyncQuery_GetBranch{
|
|
GetBranch: &protobufs.HypergraphSyncGetBranchRequest{
|
|
ShardKey: shardKey,
|
|
PhaseSet: phaseSet,
|
|
Path: childPath,
|
|
ExpectedRoot: expectedRoot,
|
|
},
|
|
},
|
|
})
|
|
if err != nil {
|
|
return errors.Wrap(err, "send GetBranch for child")
|
|
}
|
|
|
|
resp, err := stream.Recv()
|
|
if err != nil {
|
|
return errors.Wrap(err, "receive GetBranch response for child")
|
|
}
|
|
|
|
if errResp := resp.GetError(); errResp != nil {
|
|
logger.Warn("error getting child branch",
|
|
zap.String("error", errResp.Message),
|
|
zap.String("path", hex.EncodeToString(packPath(childPath))),
|
|
)
|
|
continue
|
|
}
|
|
|
|
childBranch := resp.GetBranch()
|
|
if childBranch == nil {
|
|
continue
|
|
}
|
|
|
|
// Recurse
|
|
if err := hg.syncSubtree(stream, shardKey, phaseSet, expectedRoot, childBranch, localSet, logger); err != nil {
|
|
return err
|
|
}
|
|
}
|
|
|
|
return nil
|
|
}
|
|
|
|
func (hg *HypergraphCRDT) fetchAndIntegrateLeaves(
|
|
stream protobufs.HypergraphComparisonService_PerformSyncClient,
|
|
shardKey []byte,
|
|
phaseSet protobufs.HypergraphPhaseSet,
|
|
expectedRoot []byte,
|
|
path []int32,
|
|
localSet hypergraph.IdSet,
|
|
logger *zap.Logger,
|
|
) error {
|
|
logger.Debug("fetching leaves",
|
|
zap.String("path", hex.EncodeToString(packPath(path))),
|
|
)
|
|
|
|
var continuationToken []byte
|
|
totalFetched := 0
|
|
|
|
for {
|
|
err := stream.Send(&protobufs.HypergraphSyncQuery{
|
|
Request: &protobufs.HypergraphSyncQuery_GetLeaves{
|
|
GetLeaves: &protobufs.HypergraphSyncGetLeavesRequest{
|
|
ShardKey: shardKey,
|
|
PhaseSet: phaseSet,
|
|
Path: path,
|
|
MaxLeaves: 1000,
|
|
ContinuationToken: continuationToken,
|
|
ExpectedRoot: expectedRoot,
|
|
},
|
|
},
|
|
})
|
|
if err != nil {
|
|
return errors.Wrap(err, "send GetLeaves request")
|
|
}
|
|
|
|
resp, err := stream.Recv()
|
|
if err != nil {
|
|
return errors.Wrap(err, "receive GetLeaves response")
|
|
}
|
|
|
|
if errResp := resp.GetError(); errResp != nil {
|
|
return errors.Errorf("server error: %s", errResp.Message)
|
|
}
|
|
|
|
leavesResp := resp.GetLeaves()
|
|
if leavesResp == nil {
|
|
return errors.New("unexpected response type")
|
|
}
|
|
|
|
// Integrate leaves into local tree
|
|
txn, err := hg.store.NewTransaction(false)
|
|
if err != nil {
|
|
return errors.Wrap(err, "create transaction")
|
|
}
|
|
|
|
for _, leaf := range leavesResp.Leaves {
|
|
atom := AtomFromBytes(leaf.Value)
|
|
|
|
// Persist underlying tree if present
|
|
if len(leaf.UnderlyingData) > 0 {
|
|
vtree, err := tries.DeserializeNonLazyTree(leaf.UnderlyingData)
|
|
if err == nil {
|
|
if err := hg.store.SaveVertexTree(txn, leaf.Key, vtree); err != nil {
|
|
logger.Warn("failed to save vertex tree", zap.Error(err))
|
|
}
|
|
}
|
|
}
|
|
|
|
if err := localSet.Add(txn, atom); err != nil {
|
|
txn.Abort()
|
|
return errors.Wrap(err, "add leaf to local set")
|
|
}
|
|
}
|
|
|
|
if err := txn.Commit(); err != nil {
|
|
return errors.Wrap(err, "commit transaction")
|
|
}
|
|
|
|
totalFetched += len(leavesResp.Leaves)
|
|
|
|
logger.Debug("fetched leaves batch",
|
|
zap.String("path", hex.EncodeToString(packPath(path))),
|
|
zap.Int("count", len(leavesResp.Leaves)),
|
|
zap.Int("totalFetched", totalFetched),
|
|
zap.Uint64("totalAvailable", leavesResp.TotalLeaves),
|
|
)
|
|
|
|
// Check if more leaves remain
|
|
if len(leavesResp.ContinuationToken) == 0 {
|
|
break
|
|
}
|
|
continuationToken = leavesResp.ContinuationToken
|
|
}
|
|
|
|
return nil
|
|
}
|
|
|
|
func isPrefixOrEqual(prefix, path []int) bool {
|
|
if len(prefix) > len(path) {
|
|
return false
|
|
}
|
|
for i, v := range prefix {
|
|
if path[i] != v {
|
|
return false
|
|
}
|
|
}
|
|
return true
|
|
}
|