Add a SyncSegments to sync meta between DN and DC (#19298)

See also: #19072

Signed-off-by: yangxuan <xuan.yang@zilliz.com>

Signed-off-by: yangxuan <xuan.yang@zilliz.com>
This commit is contained in:
XuanYang-cn 2022-09-27 16:02:53 +08:00 committed by GitHub
parent 3c5ce74843
commit a0ce533727
No known key found for this signature in database
GPG Key ID: 4AEE18F83AFDEB23
11 changed files with 761 additions and 654 deletions

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@ -246,7 +246,39 @@ func (c *compactionPlanHandler) completeCompaction(result *datapb.CompactionResu
}
func (c *compactionPlanHandler) handleMergeCompactionResult(plan *datapb.CompactionPlan, result *datapb.CompactionResult) error {
return c.meta.CompleteMergeCompaction(plan.GetSegmentBinlogs(), result)
oldSegments, modSegments, newSegment := c.meta.GetCompleteCompactionMeta(plan.GetSegmentBinlogs(), result)
log := log.With(zap.Int64("planID", plan.GetPlanID()))
modInfos := make([]*datapb.SegmentInfo, len(modSegments))
for i := range modSegments {
modInfos[i] = modSegments[i].SegmentInfo
}
log.Debug("handleCompactionResult: altering metastore after compaction")
if err := c.meta.alterMetaStoreAfterCompaction(modInfos, newSegment.SegmentInfo); err != nil {
log.Warn("handleCompactionResult: fail to alter metastore after compaction", zap.Error(err))
return fmt.Errorf("fail to alter metastore after compaction, err=%w", err)
}
var nodeID = c.plans[plan.GetPlanID()].dataNodeID
req := &datapb.SyncSegmentsRequest{
PlanID: plan.PlanID,
CompactedTo: newSegment.GetID(),
CompactedFrom: newSegment.GetCompactionFrom(),
NumOfRows: newSegment.GetNumOfRows(),
StatsLogs: newSegment.GetStatslogs(),
}
log.Debug("handleCompactionResult: syncing segments with node", zap.Int64("nodeID", nodeID))
if err := c.sessions.SyncSegments(nodeID, req); err != nil {
log.Warn("handleCompactionResult: fail to sync segments with node, reverting metastore",
zap.Int64("nodeID", nodeID), zap.String("reason", err.Error()))
return c.meta.revertAlterMetaStoreAfterCompaction(oldSegments, newSegment.SegmentInfo)
}
c.meta.alterInMemoryMetaAfterCompaction(newSegment, modSegments)
log.Info("handleCompactionResult: success to handle merge compaction result")
return nil
}
// getCompaction return compaction task. If planId does not exist, return nil.

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@ -31,6 +31,7 @@ import (
"github.com/milvus-io/milvus/internal/util/tsoutil"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/mock"
"github.com/stretchr/testify/require"
"go.uber.org/zap"
)
@ -218,193 +219,224 @@ func Test_compactionPlanHandler_execWithParallels(t *testing.T) {
assert.Less(t, uint64(2), max-min)
}
func Test_compactionPlanHandler_completeCompaction(t *testing.T) {
type fields struct {
plans map[int64]*compactionTask
sessions *SessionManager
meta *meta
flushCh chan UniqueID
}
type args struct {
result *datapb.CompactionResult
}
tests := []struct {
name string
fields fields
args args
wantErr bool
want *compactionTask
}{
{
"test complete non existed compaction task",
fields{
plans: map[int64]*compactionTask{1: {}},
},
args{
result: &datapb.CompactionResult{PlanID: 2},
},
true,
nil,
},
{
"test complete completed task",
fields{
plans: map[int64]*compactionTask{1: {state: completed}},
},
args{
result: &datapb.CompactionResult{PlanID: 1},
},
true,
nil,
},
{
"test complete merge compaction",
fields{
map[int64]*compactionTask{
1: {
triggerInfo: &compactionSignal{id: 1},
state: executing,
plan: &datapb.CompactionPlan{
PlanID: 1,
SegmentBinlogs: []*datapb.CompactionSegmentBinlogs{
func TestCompactionPlanHandler_handleMergeCompactionResult(t *testing.T) {
mockDataNode := &mocks.DataNode{}
mockDataNode.EXPECT().SyncSegments(mock.Anything, mock.Anything).Run(func(ctx context.Context, req *datapb.SyncSegmentsRequest) {}).Return(&commonpb.Status{ErrorCode: commonpb.ErrorCode_Success}, nil)
{SegmentID: 1, FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1")}},
{SegmentID: 2, FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log2")}},
},
Type: datapb.CompactionType_MergeCompaction,
},
},
},
nil,
&meta{
catalog: &datacoord.Catalog{Txn: memkv.NewMemoryKV()},
segments: &SegmentsInfo{
map[int64]*SegmentInfo{
dataNodeID := UniqueID(111)
1: {SegmentInfo: &datapb.SegmentInfo{ID: 1, Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1")}}},
2: {SegmentInfo: &datapb.SegmentInfo{ID: 2, Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log2")}}},
},
},
},
make(chan UniqueID, 1),
seg1 := &datapb.SegmentInfo{
ID: 1,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log1")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log2")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log3")},
}
seg2 := &datapb.SegmentInfo{
ID: 2,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log4")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log5")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log6")},
}
plan := &datapb.CompactionPlan{
PlanID: 1,
SegmentBinlogs: []*datapb.CompactionSegmentBinlogs{
{
SegmentID: seg1.ID,
FieldBinlogs: seg1.GetBinlogs(),
Field2StatslogPaths: seg1.GetStatslogs(),
Deltalogs: seg1.GetDeltalogs(),
},
args{
result: &datapb.CompactionResult{
PlanID: 1,
SegmentID: 3,
InsertLogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log3")},
},
{
SegmentID: seg2.ID,
FieldBinlogs: seg2.GetBinlogs(),
Field2StatslogPaths: seg2.GetStatslogs(),
Deltalogs: seg2.GetDeltalogs(),
},
false,
&compactionTask{
triggerInfo: &compactionSignal{id: 1},
state: completed,
plan: &datapb.CompactionPlan{
PlanID: 1,
SegmentBinlogs: []*datapb.CompactionSegmentBinlogs{
{SegmentID: 1, FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1")}},
{SegmentID: 2, FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log2")}},
},
Type: datapb.CompactionType_MergeCompaction,
},
},
Type: datapb.CompactionType_MergeCompaction,
}
sessions := &SessionManager{
sessions: struct {
sync.RWMutex
data map[int64]*Session
}{
data: map[int64]*Session{
dataNodeID: {client: mockDataNode}},
},
}
task := &compactionTask{
triggerInfo: &compactionSignal{id: 1},
state: executing,
plan: plan,
dataNodeID: dataNodeID,
}
plans := map[int64]*compactionTask{1: task}
meta := &meta{
catalog: &datacoord.Catalog{Txn: memkv.NewMemoryKV()},
segments: &SegmentsInfo{
map[int64]*SegmentInfo{
seg1.ID: {SegmentInfo: seg1},
seg2.ID: {SegmentInfo: seg2},
},
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
c := &compactionPlanHandler{
plans: tt.fields.plans,
sessions: tt.fields.sessions,
meta: tt.fields.meta,
flushCh: tt.fields.flushCh,
segRefer: &SegmentReferenceManager{
segmentsLock: map[UniqueID]map[UniqueID]*datapb.SegmentReferenceLock{},
},
}
err := c.completeCompaction(tt.args.result)
assert.Equal(t, tt.wantErr, err != nil)
})
c := &compactionPlanHandler{
plans: plans,
sessions: sessions,
meta: meta,
segRefer: &SegmentReferenceManager{
segmentsLock: map[UniqueID]map[UniqueID]*datapb.SegmentReferenceLock{},
},
}
compactionResult := &datapb.CompactionResult{
PlanID: 1,
SegmentID: 3,
NumOfRows: 15,
InsertLogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log301")},
Field2StatslogPaths: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log302")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log303")},
}
has, err := c.meta.HasSegments([]UniqueID{1, 2})
require.NoError(t, err)
require.True(t, has)
has, err = c.meta.HasSegments([]UniqueID{3})
require.Error(t, err)
require.False(t, has)
err = c.handleMergeCompactionResult(plan, compactionResult)
assert.NoError(t, err)
has, err = c.meta.HasSegments([]UniqueID{1, 2, 3})
require.NoError(t, err)
require.True(t, has)
}
func Test_compactionPlanHandler_segment_is_referenced(t *testing.T) {
type fields struct {
plans map[int64]*compactionTask
sessions *SessionManager
meta *meta
flushCh chan UniqueID
}
type args struct {
result *datapb.CompactionResult
}
tests := []struct {
name string
fields fields
args args
wantErr bool
want *compactionTask
}{
{
"test compaction segment is referenced",
fields{
map[int64]*compactionTask{
1: {
triggerInfo: &compactionSignal{id: 1},
state: executing,
plan: &datapb.CompactionPlan{
PlanID: 1,
SegmentBinlogs: []*datapb.CompactionSegmentBinlogs{
{SegmentID: 1, FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1")}},
{SegmentID: 2, FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log2")}},
},
Type: datapb.CompactionType_MergeCompaction,
},
},
},
nil,
&meta{
catalog: &datacoord.Catalog{Txn: memkv.NewMemoryKV()},
segments: &SegmentsInfo{
map[int64]*SegmentInfo{
1: {SegmentInfo: &datapb.SegmentInfo{ID: 1, Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1")}}},
2: {SegmentInfo: &datapb.SegmentInfo{ID: 2, Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log2")}}},
},
},
},
make(chan UniqueID, 1),
func TestCompactionPlanHandler_completeCompaction(t *testing.T) {
t.Run("test not exists compaction task", func(t *testing.T) {
c := &compactionPlanHandler{
plans: map[int64]*compactionTask{1: {}},
segRefer: &SegmentReferenceManager{
segmentsLock: map[UniqueID]map[UniqueID]*datapb.SegmentReferenceLock{},
},
args{
result: &datapb.CompactionResult{
PlanID: 1,
SegmentID: 3,
InsertLogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log3")},
}
err := c.completeCompaction(&datapb.CompactionResult{PlanID: 2})
assert.Error(t, err)
})
t.Run("test completed compaction task", func(t *testing.T) {
c := &compactionPlanHandler{
plans: map[int64]*compactionTask{1: {state: completed}},
segRefer: &SegmentReferenceManager{
segmentsLock: map[UniqueID]map[UniqueID]*datapb.SegmentReferenceLock{},
},
}
err := c.completeCompaction(&datapb.CompactionResult{PlanID: 1})
assert.Error(t, err)
})
t.Run("test complete merge compaction task", func(t *testing.T) {
mockDataNode := &mocks.DataNode{}
mockDataNode.EXPECT().SyncSegments(mock.Anything, mock.Anything).Run(func(ctx context.Context, req *datapb.SyncSegmentsRequest) {}).Return(&commonpb.Status{ErrorCode: commonpb.ErrorCode_Success}, nil)
dataNodeID := UniqueID(111)
seg1 := &datapb.SegmentInfo{
ID: 1,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log1")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log2")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log3")},
}
seg2 := &datapb.SegmentInfo{
ID: 2,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log4")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log5")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log6")},
}
plan := &datapb.CompactionPlan{
PlanID: 1,
SegmentBinlogs: []*datapb.CompactionSegmentBinlogs{
{
SegmentID: seg1.ID,
FieldBinlogs: seg1.GetBinlogs(),
Field2StatslogPaths: seg1.GetStatslogs(),
Deltalogs: seg1.GetDeltalogs(),
},
{
SegmentID: seg2.ID,
FieldBinlogs: seg2.GetBinlogs(),
Field2StatslogPaths: seg2.GetStatslogs(),
Deltalogs: seg2.GetDeltalogs(),
},
},
true,
nil,
},
}
Type: datapb.CompactionType_MergeCompaction,
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
c := &compactionPlanHandler{
plans: tt.fields.plans,
sessions: tt.fields.sessions,
meta: tt.fields.meta,
flushCh: tt.fields.flushCh,
segRefer: &SegmentReferenceManager{
segmentsLock: map[UniqueID]map[UniqueID]*datapb.SegmentReferenceLock{},
segmentReferCnt: map[UniqueID]int{
1: 1,
},
sessions := &SessionManager{
sessions: struct {
sync.RWMutex
data map[int64]*Session
}{
data: map[int64]*Session{
dataNodeID: {client: mockDataNode}},
},
}
task := &compactionTask{
triggerInfo: &compactionSignal{id: 1},
state: executing,
plan: plan,
dataNodeID: dataNodeID,
}
plans := map[int64]*compactionTask{1: task}
meta := &meta{
catalog: &datacoord.Catalog{Txn: memkv.NewMemoryKV()},
segments: &SegmentsInfo{
map[int64]*SegmentInfo{
seg1.ID: {SegmentInfo: seg1},
seg2.ID: {SegmentInfo: seg2},
},
}
err := c.completeCompaction(tt.args.result)
assert.Equal(t, tt.wantErr, err == nil)
})
}
},
}
compactionResult := datapb.CompactionResult{
PlanID: 1,
SegmentID: 3,
NumOfRows: 15,
InsertLogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log301")},
Field2StatslogPaths: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log302")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(101, "log303")},
}
flushCh := make(chan UniqueID, 1)
c := &compactionPlanHandler{
plans: plans,
sessions: sessions,
meta: meta,
flushCh: flushCh,
segRefer: &SegmentReferenceManager{
segmentsLock: map[UniqueID]map[UniqueID]*datapb.SegmentReferenceLock{},
},
}
err := c.completeCompaction(&compactionResult)
segID, ok := <-flushCh
assert.True(t, ok)
assert.Equal(t, compactionResult.GetSegmentID(), segID)
assert.NoError(t, err)
})
}
func Test_compactionPlanHandler_getCompaction(t *testing.T) {

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@ -801,22 +801,33 @@ func (m *meta) SetSegmentIsImporting(segmentID UniqueID, importing bool) {
m.segments.SetIsImporting(segmentID, importing)
}
func (m *meta) CompleteMergeCompaction(compactionLogs []*datapb.CompactionSegmentBinlogs, result *datapb.CompactionResult) error {
// GetCompleteComapctionMeta returns
// - the segment info of compactedFrom segments before compaction to revert
// - the segment info of compactedFrom segments after compaction to alter
// - the segment info of compactedTo segment after compaction to add
// The compactedTo segment could contain 0 numRows
func (m *meta) GetCompleteCompactionMeta(compactionLogs []*datapb.CompactionSegmentBinlogs, result *datapb.CompactionResult) ([]*datapb.SegmentInfo, []*SegmentInfo, *SegmentInfo) {
m.Lock()
defer m.Unlock()
segments := make([]*SegmentInfo, 0, len(compactionLogs))
var (
oldSegments = make([]*datapb.SegmentInfo, 0, len(compactionLogs))
modSegments = make([]*SegmentInfo, 0, len(compactionLogs))
)
for _, cl := range compactionLogs {
if segment := m.segments.GetSegment(cl.GetSegmentID()); segment != nil {
oldSegments = append(oldSegments, segment.Clone().SegmentInfo)
cloned := segment.Clone()
cloned.State = commonpb.SegmentState_Dropped
cloned.DroppedAt = uint64(time.Now().UnixNano())
segments = append(segments, cloned)
modSegments = append(modSegments, cloned)
}
}
var startPosition, dmlPosition *internalpb.MsgPosition
for _, s := range segments {
for _, s := range modSegments {
if dmlPosition == nil ||
s.GetDmlPosition() != nil && s.GetDmlPosition().GetTimestamp() < dmlPosition.GetTimestamp() {
dmlPosition = s.GetDmlPosition()
@ -830,7 +841,7 @@ func (m *meta) CompleteMergeCompaction(compactionLogs []*datapb.CompactionSegmen
// find new added delta logs when executing compaction
var originDeltalogs []*datapb.FieldBinlog
for _, s := range segments {
for _, s := range modSegments {
originDeltalogs = append(originDeltalogs, s.GetDeltalogs()...)
}
@ -842,19 +853,19 @@ func (m *meta) CompleteMergeCompaction(compactionLogs []*datapb.CompactionSegmen
newAddedDeltalogs := m.updateDeltalogs(originDeltalogs, deletedDeltalogs, nil)
deltalogs := append(result.GetDeltalogs(), newAddedDeltalogs...)
compactionFrom := make([]UniqueID, 0, len(segments))
for _, s := range segments {
compactionFrom := make([]UniqueID, 0, len(modSegments))
for _, s := range modSegments {
compactionFrom = append(compactionFrom, s.GetID())
}
segmentInfo := &datapb.SegmentInfo{
ID: result.GetSegmentID(),
CollectionID: segments[0].CollectionID,
PartitionID: segments[0].PartitionID,
InsertChannel: segments[0].InsertChannel,
CollectionID: modSegments[0].CollectionID,
PartitionID: modSegments[0].PartitionID,
InsertChannel: modSegments[0].InsertChannel,
NumOfRows: result.NumOfRows,
State: commonpb.SegmentState_Flushing,
MaxRowNum: segments[0].MaxRowNum,
MaxRowNum: modSegments[0].MaxRowNum,
Binlogs: result.GetInsertLogs(),
Statslogs: result.GetField2StatslogPaths(),
Deltalogs: deltalogs,
@ -865,35 +876,41 @@ func (m *meta) CompleteMergeCompaction(compactionLogs []*datapb.CompactionSegmen
}
segment := NewSegmentInfo(segmentInfo)
log.Info("CompleteMergeCompaction", zap.Int64("segmentID", segmentInfo.ID),
log.Info("GetCompleteCompactionMeta", zap.Int64("segmentID", segmentInfo.ID),
zap.Int64("collectionID", segmentInfo.CollectionID),
zap.Int64("partitionID", segmentInfo.PartitionID),
zap.Int64("NumOfRows", segmentInfo.NumOfRows),
zap.Any("compactionFrom", segmentInfo.CompactionFrom))
modSegments := make([]*datapb.SegmentInfo, 0)
for _, s := range segments {
modSegments = append(modSegments, s.SegmentInfo)
}
return oldSegments, modSegments, segment
}
var newSegment *datapb.SegmentInfo
if segment.SegmentInfo.NumOfRows > 0 {
newSegment = segment.SegmentInfo
}
func (m *meta) alterMetaStoreAfterCompaction(modSegments []*datapb.SegmentInfo, newSegment *datapb.SegmentInfo) error {
return m.catalog.AlterSegmentsAndAddNewSegment(m.ctx, modSegments, newSegment)
}
if err := m.catalog.AlterSegmentsAndAddNewSegment(m.ctx, modSegments, newSegment); err != nil {
return err
}
func (m *meta) revertAlterMetaStoreAfterCompaction(oldSegments []*datapb.SegmentInfo, removalSegment *datapb.SegmentInfo) error {
log.Info("revert metastore after compaction failure",
zap.Int64("collectionID", removalSegment.CollectionID),
zap.Int64("partitionID", removalSegment.PartitionID),
zap.Int64("compactedTo", removalSegment.ID),
zap.Int64s("compactedFrom", removalSegment.GetCompactionFrom()),
)
return m.catalog.RevertAlterSegmentsAndAddNewSegment(m.ctx, oldSegments, removalSegment)
}
for _, s := range segments {
func (m *meta) alterInMemoryMetaAfterCompaction(segmentCompactTo *SegmentInfo, segmentsCompactFrom []*SegmentInfo) {
m.Lock()
defer m.Unlock()
for _, s := range segmentsCompactFrom {
m.segments.SetSegment(s.GetID(), s)
}
// Handle empty segment generated by merge-compaction
if segment.NumOfRows > 0 {
m.segments.SetSegment(segment.GetID(), segment)
if segmentCompactTo.GetNumOfRows() > 0 {
m.segments.SetSegment(segmentCompactTo.GetID(), segmentCompactTo)
}
return nil
}
func (m *meta) updateBinlogs(origin []*datapb.FieldBinlog, removes []*datapb.FieldBinlog, adds []*datapb.FieldBinlog) []*datapb.FieldBinlog {

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@ -33,6 +33,7 @@ import (
"github.com/milvus-io/milvus/internal/proto/internalpb"
"github.com/milvus-io/milvus/internal/util"
"github.com/stretchr/testify/assert"
"github.com/stretchr/testify/require"
)
type mockEtcdKv struct {
@ -557,137 +558,169 @@ func TestSaveHandoffMeta(t *testing.T) {
assert.Equal(t, 100, int(segmentID))
}
func Test_meta_CompleteMergeCompaction(t *testing.T) {
type fields struct {
client kv.TxnKV
collections map[UniqueID]*datapb.CollectionInfo
segments *SegmentsInfo
func TestMeta_alterMetaStore(t *testing.T) {
toAlter := []*datapb.SegmentInfo{
{
CollectionID: 100,
PartitionID: 10,
ID: 1,
NumOfRows: 10,
},
}
type args struct {
compactionLogs []*datapb.CompactionSegmentBinlogs
result *datapb.CompactionResult
newSeg := &datapb.SegmentInfo{
Binlogs: []*datapb.FieldBinlog{
{
FieldID: 101,
Binlogs: []*datapb.Binlog{},
},
},
Deltalogs: []*datapb.FieldBinlog{
{
FieldID: 101,
Binlogs: []*datapb.Binlog{},
},
},
CollectionID: 100,
PartitionID: 10,
ID: 2,
NumOfRows: 15,
}
m := &meta{
catalog: &datacoord.Catalog{Txn: memkv.NewMemoryKV()},
segments: &SegmentsInfo{map[int64]*SegmentInfo{
1: {SegmentInfo: &datapb.SegmentInfo{
ID: 1,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1", "log2")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog1", "statlog2")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog1", "deltalog2")},
}},
}},
}
err := m.alterMetaStoreAfterCompaction(toAlter, newSeg)
assert.NoError(t, err)
err = m.revertAlterMetaStoreAfterCompaction(toAlter, newSeg)
assert.NoError(t, err)
}
func TestMeta_alterInMemoryMetaAfterCompaction(t *testing.T) {
m := &meta{
catalog: &datacoord.Catalog{Txn: memkv.NewMemoryKV()},
segments: &SegmentsInfo{make(map[UniqueID]*SegmentInfo)},
}
tests := []struct {
name string
fields fields
args args
wantErr bool
description string
compactToSeg *SegmentInfo
}{
{
"test normal merge compaction",
fields{
memkv.NewMemoryKV(),
nil,
&SegmentsInfo{map[int64]*SegmentInfo{
1: {SegmentInfo: &datapb.SegmentInfo{
ID: 1,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1", "log2")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog1", "statlog2")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog1", "deltalog2")},
}},
2: {SegmentInfo: &datapb.SegmentInfo{
ID: 2,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log3", "log4")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog3", "statlog4")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog3", "deltalog4")},
}},
}},
},
args{
[]*datapb.CompactionSegmentBinlogs{
{
SegmentID: 1,
FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1", "log2")},
Field2StatslogPaths: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog1", "statlog2")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog1", "deltalog2")},
},
{
SegmentID: 2,
FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log3", "log4")},
Field2StatslogPaths: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog3", "statlog4")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog3", "deltalog4")},
},
},
&datapb.CompactionResult{
SegmentID: 3,
InsertLogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log5")},
Field2StatslogPaths: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog5")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog5")},
NumOfRows: 1,
"numRows>0", &SegmentInfo{
SegmentInfo: &datapb.SegmentInfo{
ID: 1,
NumOfRows: 10,
},
},
false,
},
{
"test removing all data merge compaction",
fields{
memkv.NewMemoryKV(),
nil,
&SegmentsInfo{map[int64]*SegmentInfo{
1: {SegmentInfo: &datapb.SegmentInfo{
ID: 1,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1", "log2")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog1", "statlog2")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog1", "deltalog2")},
}},
2: {SegmentInfo: &datapb.SegmentInfo{
ID: 2,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log3", "log4")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog3", "statlog4")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog3", "deltalog4")},
}},
}},
},
args{
[]*datapb.CompactionSegmentBinlogs{
{
SegmentID: 1,
FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1", "log2")},
Field2StatslogPaths: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog1", "statlog2")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog1", "deltalog2")},
},
{
SegmentID: 2,
FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log3", "log4")},
Field2StatslogPaths: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog3", "statlog4")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog3", "deltalog4")},
},
},
&datapb.CompactionResult{
SegmentID: 3,
InsertLogs: nil,
Field2StatslogPaths: nil,
Deltalogs: nil,
NumOfRows: 0,
"numRows=0", &SegmentInfo{
SegmentInfo: &datapb.SegmentInfo{
ID: 1,
},
},
false,
},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
m := &meta{
catalog: &datacoord.Catalog{Txn: tt.fields.client},
collections: tt.fields.collections,
segments: tt.fields.segments,
}
err := m.CompleteMergeCompaction(tt.args.compactionLogs, tt.args.result)
assert.Equal(t, tt.wantErr, err != nil)
if err == nil {
for _, l := range tt.args.compactionLogs {
assert.Nil(t, m.GetSegment(l.GetSegmentID()))
}
segment := m.GetSegment(tt.args.result.SegmentID)
assert.Equal(t, segment != nil, tt.args.result.NumOfRows > 0)
if segment != nil {
assert.EqualValues(t, tt.args.result.GetInsertLogs(), segment.GetBinlogs())
assert.EqualValues(t, tt.args.result.GetField2StatslogPaths(), segment.GetStatslogs())
assert.EqualValues(t, tt.args.result.GetDeltalogs(), segment.GetDeltalogs())
assert.NotZero(t, segment.lastFlushTime)
}
}
compactFrom := []*SegmentInfo{{}, {}}
for _, test := range tests {
t.Run(test.description, func(t *testing.T) {
m.alterInMemoryMetaAfterCompaction(test.compactToSeg, compactFrom)
})
}
}
func TestMeta_GetCompleteCompactionMeta(t *testing.T) {
prepareSegments := &SegmentsInfo{
map[UniqueID]*SegmentInfo{
1: {SegmentInfo: &datapb.SegmentInfo{
ID: 1,
CollectionID: 100,
PartitionID: 10,
State: commonpb.SegmentState_Flushed,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1", "log2")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog1", "statlog2")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog1", "deltalog2")},
}},
2: {SegmentInfo: &datapb.SegmentInfo{
ID: 2,
CollectionID: 100,
PartitionID: 10,
State: commonpb.SegmentState_Flushed,
Binlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log3", "log4")},
Statslogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog3", "statlog4")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog3", "deltalog4")},
}},
},
}
m := &meta{
catalog: &datacoord.Catalog{Txn: memkv.NewMemoryKV()},
segments: prepareSegments,
}
inCompactionLogs := []*datapb.CompactionSegmentBinlogs{
{
SegmentID: 1,
FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log1", "log2")},
Field2StatslogPaths: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog1", "statlog2")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog1", "deltalog2")},
},
{
SegmentID: 2,
FieldBinlogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log3", "log4")},
Field2StatslogPaths: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog3", "statlog4")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog3", "deltalog4")},
},
}
inCompactionResult := &datapb.CompactionResult{
SegmentID: 3,
InsertLogs: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "log5")},
Field2StatslogPaths: []*datapb.FieldBinlog{getFieldBinlogPaths(1, "statlog5")},
Deltalogs: []*datapb.FieldBinlog{getFieldBinlogPaths(0, "deltalog5")},
NumOfRows: 1,
}
beforeCompact, afterCompact, newSegment := m.GetCompleteCompactionMeta(inCompactionLogs, inCompactionResult)
assert.NotNil(t, beforeCompact)
assert.NotNil(t, afterCompact)
assert.NotNil(t, newSegment)
require.Equal(t, 2, len(beforeCompact))
assert.Equal(t, commonpb.SegmentState_Flushed, beforeCompact[0].GetState())
assert.Equal(t, commonpb.SegmentState_Flushed, beforeCompact[1].GetState())
assert.Zero(t, beforeCompact[0].GetDroppedAt())
assert.Zero(t, beforeCompact[1].GetDroppedAt())
require.Equal(t, 2, len(afterCompact))
assert.Equal(t, commonpb.SegmentState_Dropped, afterCompact[0].GetState())
assert.Equal(t, commonpb.SegmentState_Dropped, afterCompact[1].GetState())
assert.NotZero(t, afterCompact[0].GetDroppedAt())
assert.NotZero(t, afterCompact[1].GetDroppedAt())
assert.Equal(t, inCompactionResult.SegmentID, newSegment.GetID())
assert.Equal(t, UniqueID(100), newSegment.GetCollectionID())
assert.Equal(t, UniqueID(10), newSegment.GetPartitionID())
assert.Equal(t, inCompactionResult.NumOfRows, newSegment.GetNumOfRows())
assert.Equal(t, commonpb.SegmentState_Flushing, newSegment.GetState())
assert.EqualValues(t, inCompactionResult.GetInsertLogs(), newSegment.GetBinlogs())
assert.EqualValues(t, inCompactionResult.GetField2StatslogPaths(), newSegment.GetStatslogs())
assert.EqualValues(t, inCompactionResult.GetDeltalogs(), newSegment.GetDeltalogs())
assert.NotZero(t, newSegment.lastFlushTime)
}
func Test_meta_SetSegmentCompacting(t *testing.T) {

View File

@ -161,6 +161,26 @@ func (c *SessionManager) Compaction(nodeID int64, plan *datapb.CompactionPlan) e
return nil
}
// SyncSegments is a grpc interface. It will send request to DataNode with provided `nodeID` synchronously.
func (c *SessionManager) SyncSegments(nodeID int64, req *datapb.SyncSegmentsRequest) error {
ctx, cancel := context.WithTimeout(context.Background(), rpcCompactionTimeout)
defer cancel()
cli, err := c.getClient(ctx, nodeID)
if err != nil {
log.Warn("failed to get client", zap.Int64("nodeID", nodeID), zap.Error(err))
return err
}
resp, err := cli.SyncSegments(ctx, req)
if err := VerifyResponse(resp, err); err != nil {
log.Warn("failed to sync segments", zap.Int64("node", nodeID), zap.Error(err), zap.Int64("planID", req.GetPlanID()))
return err
}
log.Info("success to sync segments", zap.Int64("node", nodeID), zap.Any("planID", req.GetPlanID()))
return nil
}
// Import is a grpc interface. It will send request to DataNode with provided `nodeID` asynchronously.
func (c *SessionManager) Import(ctx context.Context, nodeID int64, itr *datapb.ImportTaskRequest) {
go c.execImport(ctx, nodeID, itr)

View File

@ -250,7 +250,7 @@ func (t *compactionTask) merge(
err error
// statslog generation
segment *Segment // empty segment used for bf generation
segment = &Segment{} // empty segment used for bf generation
pkID UniqueID
pkType schemapb.DataType
@ -261,6 +261,8 @@ func (t *compactionTask) merge(
insertPaths = make([]*datapb.FieldBinlog, 0)
)
t.Replica.initSegmentBloomFilter(segment)
isDeletedValue := func(v *storage.Value) bool {
ts, ok := delta[v.PK.GetValue()]
if ok && uint64(v.Timestamp) <= ts {
@ -269,9 +271,6 @@ func (t *compactionTask) merge(
return false
}
segment = &Segment{}
t.Replica.initSegmentBloomFilter(segment)
addInsertFieldPath := func(inPaths map[UniqueID]*datapb.FieldBinlog) {
for fID, path := range inPaths {
tmpBinlog, ok := insertField2Path[fID]
@ -456,7 +455,7 @@ func (t *compactionTask) compact() (*datapb.CompactionResult, error) {
segIDs = append(segIDs, s.GetSegmentID())
}
collID, partID, meta, err := t.getSegmentMeta(segIDs[0])
_, partID, meta, err := t.getSegmentMeta(segIDs[0])
if err != nil {
log.Error("compact wrong", zap.Int64("planID", t.plan.GetPlanID()), zap.Error(err))
return nil, err
@ -547,7 +546,7 @@ func (t *compactionTask) compact() (*datapb.CompactionResult, error) {
return nil, err
}
inPaths, statsPaths, segment, numRows, err := t.merge(ctxTimeout, allPs, targetSegID, partID, meta, deltaPk2Ts)
inPaths, statsPaths, _, numRows, err := t.merge(ctxTimeout, allPs, targetSegID, partID, meta, deltaPk2Ts)
if err != nil {
log.Error("compact wrong", zap.Int64("planID", t.plan.GetPlanID()), zap.Error(err))
return nil, err
@ -579,44 +578,6 @@ func (t *compactionTask) compact() (*datapb.CompactionResult, error) {
NumOfRows: numRows,
}
// rpcStart := time.Now()
// status, err := t.dc.CompleteCompaction(ctxTimeout, pack)
// if err != nil {
// log.Error("complete compaction rpc wrong", zap.Int64("planID", t.plan.GetPlanID()), zap.Error(err))
// return err
// }
// if status.ErrorCode != commonpb.ErrorCode_Success {
// log.Error("complete compaction wrong", zap.Int64("planID", t.plan.GetPlanID()), zap.String("reason", status.GetReason()))
// return fmt.Errorf("complete comapction wrong: %s", status.GetReason())
// }
// rpcEnd := time.Now()
// defer func() {
// log.Debug("rpc elapse in ms", zap.Int64("planID", t.plan.GetPlanID()), zap.Float64("elapse", nano2Milli(rpcEnd.Sub(rpcStart))))
// }()
//
// Compaction I: update pk range.
// Compaction II: remove the segments and add a new flushed segment with pk range.
if t.hasSegment(targetSegID, true) {
if numRows <= 0 {
t.removeSegments(targetSegID)
} else {
t.refreshFlushedSegStatistics(targetSegID, numRows)
}
// no need to shorten the PK range of a segment, deleting dup PKs is valid
} else {
segment.collectionID = collID
segment.partitionID = partID
segment.segmentID = targetSegID
segment.channelName = t.plan.GetChannel()
segment.numRows = numRows
err = t.mergeFlushedSegments(segment, t.plan.GetPlanID(), segIDs)
if err != nil {
log.Error("compact wrong", zap.Int64("planID", t.plan.GetPlanID()), zap.Error(err))
return nil, err
}
}
uninjectStart := time.Now()
ti.injectDone(true)
uninjectEnd := time.Now()

View File

@ -674,15 +674,15 @@ func TestCompactorInterfaceMethods(t *testing.T) {
alloc.random = false // generated ID = 19530
task := newCompactionTask(context.TODO(), mockbIO, mockbIO, replica, mockfm, alloc, plan)
_, err = task.compact()
result, err := task.compact()
assert.NoError(t, err)
assert.NotNil(t, result)
assert.False(t, replica.hasSegment(c.segID1, true))
assert.False(t, replica.hasSegment(c.segID2, true))
assert.True(t, replica.hasSegment(19530, true))
updates, err := replica.getSegmentStatisticsUpdates(19530)
assert.NoError(t, err)
assert.Equal(t, int64(2), updates.GetNumRows())
assert.Equal(t, plan.GetPlanID(), result.GetPlanID())
assert.Equal(t, UniqueID(19530), result.GetSegmentID())
assert.Equal(t, int64(2), result.GetNumOfRows())
assert.NotEmpty(t, result.InsertLogs)
assert.NotEmpty(t, result.Field2StatslogPaths)
// New test, remove all the binlogs in memkv
// Deltas in timetravel range
@ -698,15 +698,15 @@ func TestCompactorInterfaceMethods(t *testing.T) {
require.True(t, replica.hasSegment(c.segID2, true))
require.False(t, replica.hasSegment(19530, true))
_, err = task.compact()
result, err = task.compact()
assert.NoError(t, err)
assert.NotNil(t, result)
assert.False(t, replica.hasSegment(c.segID1, true))
assert.False(t, replica.hasSegment(c.segID2, true))
assert.True(t, replica.hasSegment(19530, true))
updates, err = replica.getSegmentStatisticsUpdates(19530)
assert.NoError(t, err)
assert.Equal(t, int64(3), updates.GetNumRows())
assert.Equal(t, plan.GetPlanID(), result.GetPlanID())
assert.Equal(t, UniqueID(19530), result.GetSegmentID())
assert.Equal(t, int64(3), result.GetNumOfRows())
assert.NotEmpty(t, result.InsertLogs)
assert.NotEmpty(t, result.Field2StatslogPaths)
// New test, remove all the binlogs in memkv
// Deltas in timetravel range
@ -722,15 +722,15 @@ func TestCompactorInterfaceMethods(t *testing.T) {
require.True(t, replica.hasSegment(c.segID2, true))
require.False(t, replica.hasSegment(19530, true))
_, err = task.compact()
result, err = task.compact()
assert.NoError(t, err)
assert.NotNil(t, result)
assert.False(t, replica.hasSegment(c.segID1, true))
assert.False(t, replica.hasSegment(c.segID2, true))
assert.True(t, replica.hasSegment(19530, true))
updates, err = replica.getSegmentStatisticsUpdates(19530)
assert.NoError(t, err)
assert.Equal(t, int64(4), updates.GetNumRows())
assert.Equal(t, plan.GetPlanID(), result.GetPlanID())
assert.Equal(t, UniqueID(19530), result.GetSegmentID())
assert.Equal(t, int64(4), result.GetNumOfRows())
assert.NotEmpty(t, result.InsertLogs)
assert.NotEmpty(t, result.Field2StatslogPaths)
}
})
@ -806,15 +806,15 @@ func TestCompactorInterfaceMethods(t *testing.T) {
alloc.random = false // generated ID = 19530
task := newCompactionTask(context.TODO(), mockbIO, mockbIO, replica, mockfm, alloc, plan)
_, err = task.compact()
result, err := task.compact()
assert.NoError(t, err)
assert.NotNil(t, result)
assert.False(t, replica.hasSegment(segID1, true))
assert.False(t, replica.hasSegment(segID2, true))
assert.True(t, replica.hasSegment(19530, true))
updates, err := replica.getSegmentStatisticsUpdates(19530)
assert.NoError(t, err)
assert.Equal(t, int64(2), updates.GetNumRows())
assert.Equal(t, plan.GetPlanID(), result.GetPlanID())
assert.Equal(t, UniqueID(19530), result.GetSegmentID())
assert.Equal(t, int64(2), result.GetNumOfRows())
assert.NotEmpty(t, result.InsertLogs)
assert.NotEmpty(t, result.Field2StatslogPaths)
})
}

View File

@ -59,6 +59,7 @@ import (
"github.com/milvus-io/milvus/internal/util/retry"
"github.com/milvus-io/milvus/internal/util/sessionutil"
"github.com/milvus-io/milvus/internal/util/timerecord"
"github.com/milvus-io/milvus/internal/util/tsoutil"
"github.com/milvus-io/milvus/internal/util/typeutil"
v3rpc "go.etcd.io/etcd/api/v3/v3rpc/rpctypes"
clientv3 "go.etcd.io/etcd/client/v3"
@ -927,6 +928,8 @@ func (node *DataNode) SyncSegments(ctx context.Context, req *datapb.SyncSegments
numRows: req.GetNumOfRows(),
}
replica.(*SegmentReplica).initPKBloomFilter(targetSeg, req.GetStatsLogs(), tsoutil.GetCurrentTime())
if err := replica.mergeFlushedSegments(targetSeg, req.GetPlanID(), req.GetCompactedFrom()); err != nil {
status.Reason = err.Error()
return status, nil

View File

@ -733,7 +733,6 @@ func TestDataNode(t *testing.T) {
assert.False(t, fg.replica.hasSegment(req.CompactedFrom[0], true))
assert.False(t, fg.replica.hasSegment(req.CompactedFrom[1], true))
})
})
}

View File

@ -420,6 +420,7 @@ message SyncSegmentsRequest {
int64 compacted_to = 2;
int64 num_of_rows = 3;
repeated int64 compacted_from = 4;
repeated FieldBinlog stats_logs = 5;
}
message CompactionSegmentBinlogs {

View File

@ -2892,13 +2892,14 @@ func (m *CompactionStateRequest) GetBase() *commonpb.MsgBase {
}
type SyncSegmentsRequest struct {
PlanID int64 `protobuf:"varint,1,opt,name=planID,proto3" json:"planID,omitempty"`
CompactedTo int64 `protobuf:"varint,2,opt,name=compacted_to,json=compactedTo,proto3" json:"compacted_to,omitempty"`
NumOfRows int64 `protobuf:"varint,3,opt,name=num_of_rows,json=numOfRows,proto3" json:"num_of_rows,omitempty"`
CompactedFrom []int64 `protobuf:"varint,4,rep,packed,name=compacted_from,json=compactedFrom,proto3" json:"compacted_from,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
XXX_sizecache int32 `json:"-"`
PlanID int64 `protobuf:"varint,1,opt,name=planID,proto3" json:"planID,omitempty"`
CompactedTo int64 `protobuf:"varint,2,opt,name=compacted_to,json=compactedTo,proto3" json:"compacted_to,omitempty"`
NumOfRows int64 `protobuf:"varint,3,opt,name=num_of_rows,json=numOfRows,proto3" json:"num_of_rows,omitempty"`
CompactedFrom []int64 `protobuf:"varint,4,rep,packed,name=compacted_from,json=compactedFrom,proto3" json:"compacted_from,omitempty"`
StatsLogs []*FieldBinlog `protobuf:"bytes,5,rep,name=stats_logs,json=statsLogs,proto3" json:"stats_logs,omitempty"`
XXX_NoUnkeyedLiteral struct{} `json:"-"`
XXX_unrecognized []byte `json:"-"`
XXX_sizecache int32 `json:"-"`
}
func (m *SyncSegmentsRequest) Reset() { *m = SyncSegmentsRequest{} }
@ -2954,6 +2955,13 @@ func (m *SyncSegmentsRequest) GetCompactedFrom() []int64 {
return nil
}
func (m *SyncSegmentsRequest) GetStatsLogs() []*FieldBinlog {
if m != nil {
return m.StatsLogs
}
return nil
}
type CompactionSegmentBinlogs struct {
SegmentID int64 `protobuf:"varint,1,opt,name=segmentID,proto3" json:"segmentID,omitempty"`
FieldBinlogs []*FieldBinlog `protobuf:"bytes,2,rep,name=fieldBinlogs,proto3" json:"fieldBinlogs,omitempty"`
@ -4715,267 +4723,268 @@ func init() {
func init() { proto.RegisterFile("data_coord.proto", fileDescriptor_82cd95f524594f49) }
var fileDescriptor_82cd95f524594f49 = []byte{
// 4154 bytes of a gzipped FileDescriptorProto
// 4168 bytes of a gzipped FileDescriptorProto
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0x7b, 0xbd, 0x65, 0x67, 0x22, 0xed, 0x22, 0xb5, 0x2a, 0x5d, 0xc7, 0xed, 0x5a, 0x77, 0x55, 0x75,
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}
// Reference imports to suppress errors if they are not otherwise used.