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https://github.com/ethereum/go-ethereum.git
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beacon/light: changed First, Next to Start, End
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parent
3d686626d7
commit
623d195b70
3 changed files with 44 additions and 44 deletions
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@ -59,13 +59,13 @@ func newCanonicalStore[T any](db ethdb.KeyValueStore, keyPrefix []byte,
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continue
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}
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period := binary.BigEndian.Uint64(iter.Key()[kl : kl+8])
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if cs.periods.First == 0 {
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cs.periods.First = period
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} else if cs.periods.Next != period {
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if cs.periods.Start == 0 {
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cs.periods.Start = period
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} else if cs.periods.End != period {
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log.Warn("Gap in the canonical chain database")
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break // continuity guaranteed
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}
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cs.periods.Next = period + 1
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cs.periods.End = period + 1
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}
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iter.Release()
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return cs
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@ -86,7 +86,7 @@ func (cs *canonicalStore[T]) databaseKey(period uint64) []byte {
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// continuous. Can be used either with a batch or database backend.
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func (cs *canonicalStore[T]) add(backend ethdb.KeyValueWriter, period uint64, value T) error {
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if !cs.periods.CanExpand(period) {
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return fmt.Errorf("period expansion is not allowed, first: %d, next: %d, period: %d", cs.periods.First, cs.periods.Next, period)
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return fmt.Errorf("period expansion is not allowed, first: %d, next: %d, period: %d", cs.periods.Start, cs.periods.End, period)
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}
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enc, err := cs.encode(value)
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if err != nil {
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@ -102,19 +102,19 @@ func (cs *canonicalStore[T]) add(backend ethdb.KeyValueWriter, period uint64, va
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// deleteFrom removes items starting from the given period.
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func (cs *canonicalStore[T]) deleteFrom(batch ethdb.Batch, fromPeriod uint64) (deleted Range) {
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if fromPeriod >= cs.periods.Next {
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if fromPeriod >= cs.periods.End {
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return
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}
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if fromPeriod < cs.periods.First {
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fromPeriod = cs.periods.First
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if fromPeriod < cs.periods.Start {
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fromPeriod = cs.periods.Start
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}
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deleted = Range{First: fromPeriod, Next: cs.periods.Next}
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for period := fromPeriod; period < cs.periods.Next; period++ {
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deleted = Range{Start: fromPeriod, End: cs.periods.End}
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for period := fromPeriod; period < cs.periods.End; period++ {
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batch.Delete(cs.databaseKey(period))
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cs.cache.Remove(period)
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}
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if fromPeriod > cs.periods.First {
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cs.periods.Next = fromPeriod
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if fromPeriod > cs.periods.Start {
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cs.periods.End = fromPeriod
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} else {
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cs.periods = Range{}
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}
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@ -146,23 +146,23 @@ func newCommitteeChain(db ethdb.KeyValueStore, config *types.ChainConfig, signer
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}
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// roll back invalid updates (might be necessary if forks have been changed since last time)
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for !s.updates.periods.IsEmpty() {
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update, ok := s.updates.get(s.updates.periods.Next - 1)
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update, ok := s.updates.get(s.updates.periods.End - 1)
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if !ok {
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log.Error("Sync committee update missing", "period", s.updates.periods.Next-1)
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log.Error("Sync committee update missing", "period", s.updates.periods.End-1)
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s.Reset()
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break
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}
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if valid, err := s.verifyUpdate(update); err != nil {
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log.Error("Error validating update", "period", s.updates.periods.Next-1, "error", err)
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log.Error("Error validating update", "period", s.updates.periods.End-1, "error", err)
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} else if valid {
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break
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}
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if err := s.rollback(s.updates.periods.Next); err != nil {
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if err := s.rollback(s.updates.periods.End); err != nil {
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log.Error("Error writing batch into chain database", "error", err)
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}
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}
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if !s.committees.periods.IsEmpty() {
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log.Trace("Sync committee chain loaded", "first period", s.committees.periods.First, "last period", s.committees.periods.Next-1)
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log.Trace("Sync committee chain loaded", "first period", s.committees.periods.Start, "last period", s.committees.periods.End-1)
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}
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return s
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}
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@ -171,27 +171,27 @@ func newCommitteeChain(db ethdb.KeyValueStore, config *types.ChainConfig, signer
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func (s *CommitteeChain) checkConstraints() bool {
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isNotInFixedRootRange := func(r Range) bool {
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return s.fixedRoots.periods.IsEmpty() ||
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r.First < s.fixedRoots.periods.First ||
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r.First >= s.fixedRoots.periods.Next
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r.Start < s.fixedRoots.periods.Start ||
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r.Start >= s.fixedRoots.periods.End
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}
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valid := true
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if !s.updates.periods.IsEmpty() {
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if isNotInFixedRootRange(s.updates.periods) {
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log.Error("First update is not in the fixed roots range")
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log.Error("Start update is not in the fixed roots range")
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valid = false
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}
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if s.committees.periods.First > s.updates.periods.First || s.committees.periods.Next <= s.updates.periods.Next {
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if s.committees.periods.Start > s.updates.periods.Start || s.committees.periods.End <= s.updates.periods.End {
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log.Error("Missing committees in update range")
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valid = false
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}
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}
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if !s.committees.periods.IsEmpty() {
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if isNotInFixedRootRange(s.committees.periods) {
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log.Error("First committee is not in the fixed roots range")
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log.Error("Start committee is not in the fixed roots range")
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valid = false
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}
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if s.committees.periods.Next > s.fixedRoots.periods.Next && s.committees.periods.Next > s.updates.periods.Next+1 {
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if s.committees.periods.End > s.fixedRoots.periods.End && s.committees.periods.End > s.updates.periods.End+1 {
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log.Error("Last committee is neither in the fixed roots range nor proven by updates")
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valid = false
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}
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@ -238,7 +238,7 @@ func (s *CommitteeChain) AddFixedRoot(period uint64, root common.Hash) error {
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// if the old root exists and matches the new one then it is guaranteed
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// that the given period is after the existing fixed range and the roots
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// in between can also be fixed.
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for p := s.fixedRoots.periods.Next; p < period; p++ {
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for p := s.fixedRoots.periods.End; p < period; p++ {
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if err := s.fixedRoots.add(batch, p, s.getCommitteeRoot(p)); err != nil {
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return err
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}
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@ -267,12 +267,12 @@ func (s *CommitteeChain) DeleteFixedRootsFrom(period uint64) error {
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s.chainmu.Lock()
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defer s.chainmu.Unlock()
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if period >= s.fixedRoots.periods.Next {
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if period >= s.fixedRoots.periods.End {
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return nil
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}
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batch := s.db.NewBatch()
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s.fixedRoots.deleteFrom(batch, period)
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if s.updates.periods.IsEmpty() || period <= s.updates.periods.First {
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if s.updates.periods.IsEmpty() || period <= s.updates.periods.Start {
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// Note: the first period of the update chain should always be fixed so if
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// the fixed root at the first update is removed then the entire update chain
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// and the proven committees have to be removed. Earlier committees in the
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@ -284,7 +284,7 @@ func (s *CommitteeChain) DeleteFixedRootsFrom(period uint64) error {
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// get unfixed but are still proven by the update chain. If there were
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// committees present after the range proven by updates, those should be
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// removed if the belonging fixed roots are also removed.
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fromPeriod := s.updates.periods.Next + 1 // not proven by updates
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fromPeriod := s.updates.periods.End + 1 // not proven by updates
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if period > fromPeriod {
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fromPeriod = period // also not justified by fixed roots
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}
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@ -300,7 +300,7 @@ func (s *CommitteeChain) DeleteFixedRootsFrom(period uint64) error {
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// deleteCommitteesFrom deletes committees starting from the given period.
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func (s *CommitteeChain) deleteCommitteesFrom(batch ethdb.Batch, period uint64) {
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deleted := s.committees.deleteFrom(batch, period)
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for period := deleted.First; period < deleted.Next; period++ {
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for period := deleted.Start; period < deleted.End; period++ {
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s.committeeCache.Remove(period)
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}
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}
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@ -414,20 +414,20 @@ func (s *CommitteeChain) NextSyncPeriod() (uint64, bool) {
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return 0, false
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}
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if !s.updates.periods.IsEmpty() {
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return s.updates.periods.Next, true
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return s.updates.periods.End, true
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}
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return s.committees.periods.Next - 1, true
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return s.committees.periods.End - 1, true
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}
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// rollback removes all committees and fixed roots from the given period and updates
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// starting from the previous period.
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func (s *CommitteeChain) rollback(period uint64) error {
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max := s.updates.periods.Next + 1
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if s.committees.periods.Next > max {
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max = s.committees.periods.Next
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max := s.updates.periods.End + 1
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if s.committees.periods.End > max {
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max = s.committees.periods.End
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}
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if s.fixedRoots.periods.Next > max {
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max = s.fixedRoots.periods.Next
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if s.fixedRoots.periods.End > max {
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max = s.fixedRoots.periods.End
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}
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for max > period {
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max--
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@ -18,41 +18,41 @@ package light
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// Range represents a (possibly zero-length) range of integers (sync periods).
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type Range struct {
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First, Next uint64
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Start, End uint64
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}
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// IsEmpty returns true if the length of the range is zero.
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func (a Range) IsEmpty() bool {
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return a.Next == a.First
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return a.End == a.Start
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}
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// Includes returns true if the range includes the given period.
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func (a Range) Includes(period uint64) bool {
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return period >= a.First && period < a.Next
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return period >= a.Start && period < a.End
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}
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// CanExpand returns true if the range includes or can be expanded with the given
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// period (either the range is empty or the given period is inside, right before or
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// right after the range).
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func (a Range) CanExpand(period uint64) bool {
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return a.IsEmpty() || (period+1 >= a.First && period <= a.Next)
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return a.IsEmpty() || (period+1 >= a.Start && period <= a.End)
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}
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// Expand expands the range with the given period (assumes that CanExpand returned true).
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func (a *Range) Expand(period uint64) {
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if a.IsEmpty() {
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a.First, a.Next = period, period+1
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a.Start, a.End = period, period+1
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return
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}
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if a.Includes(period) {
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return
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}
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if a.First == period+1 {
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a.First--
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if a.Start == period+1 {
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a.Start--
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return
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}
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if a.Next == period {
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a.Next++
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if a.End == period {
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a.End++
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return
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}
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}
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