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join.go
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join.go
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package kapacitor
import (
"fmt"
"log"
"strings"
"sync"
"time"
"github.com/influxdb/influxdb/influxql"
"github.com/influxdb/kapacitor/models"
"github.com/influxdb/kapacitor/pipeline"
)
type JoinNode struct {
node
j *pipeline.JoinNode
fill influxql.FillOption
fillValue interface{}
groups map[models.GroupID]*group
mu sync.Mutex
runningGroups sync.WaitGroup
}
// Create a new JoinNode, which takes pairs from parent streams combines them into a single point.
func newJoinNode(et *ExecutingTask, n *pipeline.JoinNode) (*JoinNode, error) {
for _, name := range n.Names {
if len(name) == 0 {
return nil, fmt.Errorf("must provide a prefix name for the join node, see .as() property method")
}
if strings.ContainsRune(name, '.') {
return nil, fmt.Errorf("cannot use name %s as field prefix, it contains a '.' character", name)
}
}
names := make(map[string]bool, len(n.Names))
for _, name := range n.Names {
if names[name] {
return nil, fmt.Errorf("cannot use the same prefix name see .as() property method")
}
names[name] = true
}
jn := &JoinNode{
j: n,
node: node{Node: n, et: et},
}
// Set fill
switch fill := n.Fill.(type) {
case string:
switch fill {
case "null":
jn.fill = influxql.NullFill
case "none":
jn.fill = influxql.NoFill
default:
return nil, fmt.Errorf("unexpected fill option %s", fill)
}
case int64, float64:
jn.fill = influxql.NumberFill
jn.fillValue = fill
default:
jn.fill = influxql.NoFill
}
jn.node.runF = jn.runJoin
return jn, nil
}
func (j *JoinNode) runJoin() error {
j.groups = make(map[models.GroupID]*group)
wg := sync.WaitGroup{}
for i := range j.ins {
// Start gorouting per parent so we do not deadlock.
// This way independent of the order that parents receive data
// we can handle it.
wg.Add(1)
go func(i int) {
defer wg.Done()
in := j.ins[i]
for p, ok := in.Next(); ok; p, ok = in.Next() {
// Get the group for this point or batch
g := j.getGroup(p)
g.points <- srcPoint{
src: i,
p: p,
}
}
}(i)
}
wg.Wait()
// No more points are comming signal all groups to finish up.
for _, group := range j.groups {
close(group.points)
}
j.runningGroups.Wait()
for _, group := range j.groups {
group.emitAll()
}
return nil
}
// safely get the group for the point or create one if it doesn't exist.
func (j *JoinNode) getGroup(p models.PointInterface) *group {
j.mu.Lock()
defer j.mu.Unlock()
group := j.groups[p.PointGroup()]
if group == nil {
group = newGroup(len(j.ins), j)
j.groups[p.PointGroup()] = group
j.runningGroups.Add(1)
j.logger.Println("D! group started ")
go group.run()
}
return group
}
// emit a single joined set
func (j *JoinNode) emitJoinedSet(set *joinset) error {
if set.name == "" {
set.name = set.First().PointName()
}
switch j.Wants() {
case pipeline.StreamEdge:
p, ok := set.JoinIntoPoint()
if ok {
for _, out := range j.outs {
err := out.CollectPoint(p)
if err != nil {
return err
}
}
}
case pipeline.BatchEdge:
b, ok := set.JoinIntoBatch()
if ok {
for _, out := range j.outs {
err := out.CollectBatch(b)
if err != nil {
return err
}
}
}
}
return nil
}
// represents an incoming data point and which parent it came from
type srcPoint struct {
src int
p models.PointInterface
}
// handles emitting joined sets once enough data has arrived from parents.
type group struct {
sets map[time.Time]*joinset
head []time.Time
oldestTime time.Time
j *JoinNode
points chan srcPoint
}
func newGroup(i int, j *JoinNode) *group {
return &group{
sets: make(map[time.Time]*joinset),
head: make([]time.Time, i),
j: j,
points: make(chan srcPoint),
}
}
// start consuming incoming points
func (g *group) run() {
defer g.j.runningGroups.Done()
for sp := range g.points {
g.collect(sp.src, sp.p)
}
g.j.logger.Println("D! group done ")
}
// collect a point from a given parent.
// emit the oldest set if we have collected enough data.
func (g *group) collect(i int, p models.PointInterface) {
t := p.PointTime().Round(g.j.j.Tolerance)
if t.Before(g.oldestTime) || g.oldestTime.IsZero() {
g.oldestTime = t
}
set := g.sets[t]
if set == nil {
set = newJoinset(g.j.j.StreamName, g.j.fill, g.j.fillValue, g.j.j.Names, g.j.j.Tolerance, t, g.j.logger)
g.sets[t] = set
}
set.Add(i, p)
// Update head
g.head[i] = t
// Check if all parents have been read past the oldestTime.
// If so we can emit the set.
emit := true
for _, t := range g.head {
if !t.After(g.oldestTime) {
// Still posible to get more data
// need to wait for more points
emit = false
break
}
}
if emit {
g.emit()
}
}
// emit a set and update the oldestTime.
func (g *group) emit() {
set := g.sets[g.oldestTime]
g.j.emitJoinedSet(set)
delete(g.sets, g.oldestTime)
g.oldestTime = time.Time{}
for t := range g.sets {
if g.oldestTime.IsZero() || t.Before(g.oldestTime) {
g.oldestTime = t
}
}
}
// emit sets until we have none left.
func (g *group) emitAll() {
for len(g.sets) > 0 {
g.emit()
}
}
// represents a set of points or batches from the same joined time
type joinset struct {
name string
fill influxql.FillOption
fillValue interface{}
prefixes []string
time time.Time
tolerance time.Duration
values []models.PointInterface
expected int
size int
finished int
first int
logger *log.Logger
}
func newJoinset(
name string,
fill influxql.FillOption,
fillValue interface{},
prefixes []string,
tolerance time.Duration,
time time.Time,
l *log.Logger,
) *joinset {
expected := len(prefixes)
return &joinset{
name: name,
fill: fill,
fillValue: fillValue,
prefixes: prefixes,
expected: expected,
values: make([]models.PointInterface, expected),
first: expected,
time: time,
logger: l,
}
}
// add a point to the set from a given parent index.
func (js *joinset) Add(i int, v models.PointInterface) {
if i < js.first {
js.first = i
}
js.values[i] = v
js.size++
}
// a valid point in the set
func (js *joinset) First() models.PointInterface {
return js.values[js.first]
}
// join all points into a single point
func (js *joinset) JoinIntoPoint() (models.Point, bool) {
fields := make(models.Fields, js.size*len(js.First().PointFields()))
for i, p := range js.values {
if p == nil {
switch js.fill {
case influxql.NullFill:
for k := range js.First().PointFields() {
fields[js.prefixes[i]+"."+k] = nil
}
case influxql.NumberFill:
for k := range js.First().PointFields() {
fields[js.prefixes[i]+"."+k] = js.fillValue
}
default:
// inner join no valid point possible
return models.Point{}, false
}
} else {
for k, v := range p.PointFields() {
fields[js.prefixes[i]+"."+k] = v
}
}
}
p := models.Point{
Name: js.name,
Group: js.First().PointGroup(),
Tags: js.First().PointTags(),
Dimensions: js.First().PointDimensions(),
Time: js.time,
Fields: fields,
}
return p, true
}
// join all batches the set into a single batch
func (js *joinset) JoinIntoBatch() (models.Batch, bool) {
newBatch := models.Batch{
Name: js.name,
Group: js.First().PointGroup(),
Tags: js.First().PointTags(),
TMax: js.time,
}
empty := make([]bool, js.expected)
emptyCount := 0
indexes := make([]int, js.expected)
var fieldNames []string
for emptyCount < js.expected {
set := make([]*models.BatchPoint, js.expected)
setTime := time.Time{}
count := 0
for i, batch := range js.values {
if empty[i] {
continue
}
if batch == nil {
emptyCount++
empty[i] = true
continue
}
b := batch.(models.Batch)
if indexes[i] == len(b.Points) {
emptyCount++
empty[i] = true
continue
}
bp := b.Points[indexes[i]]
t := bp.Time.Round(js.tolerance)
if setTime.IsZero() {
setTime = t
}
if t.Equal(setTime) {
if fieldNames == nil {
for k := range bp.Fields {
fieldNames = append(fieldNames, k)
}
}
set[i] = &bp
indexes[i]++
count++
}
}
// we didn't get any points from any group we must be empty
// skip this set
if count == 0 {
continue
}
// Join all batch points in set
fields := make(models.Fields, js.expected*len(fieldNames))
for i, bp := range set {
if bp == nil {
switch js.fill {
case influxql.NullFill:
for _, k := range fieldNames {
fields[js.prefixes[i]+"."+k] = nil
}
case influxql.NumberFill:
for _, k := range fieldNames {
fields[js.prefixes[i]+"."+k] = js.fillValue
}
default:
// inner join no valid point possible
return models.Batch{}, false
}
} else {
for k, v := range bp.Fields {
fields[js.prefixes[i]+"."+k] = v
}
}
}
bp := models.BatchPoint{
Tags: newBatch.Tags,
Time: setTime,
Fields: fields,
}
newBatch.Points = append(newBatch.Points, bp)
}
return newBatch, true
}