featurebase/server.go
Travis Turner 2bd0677df9
Remove MaxSlice polling.
Add Schema to proto.
Update MaxSlices in proto to include both standard and inverse.
Update LocalStatus (shared in gossip) to include MaxSlices and Schema.
Encode InputDefinitions with Index.

TODO:
- make sure InputDefinitions are considered in LocalStatus merge.
- decide what to do about `/slices/max` endpoint. client.backup is using
  it.
2017-10-26 23:48:40 -05:00

534 lines
13 KiB
Go

// Copyright 2017 Pilosa Corp.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package pilosa
import (
"crypto/tls"
"errors"
"fmt"
"io"
"log"
"net"
"net/http"
"os"
"os/exec"
"runtime"
"strconv"
"strings"
"sync"
"time"
"github.com/CAFxX/gcnotifier"
"github.com/gogo/protobuf/proto"
"github.com/pilosa/pilosa/internal"
)
// Default server settings.
const (
DefaultAntiEntropyInterval = 10 * time.Minute
)
// Server represents a holder wrapped by a running HTTP server.
type Server struct {
ln net.Listener
// Close management.
wg sync.WaitGroup
closing chan struct{}
// Data storage and HTTP interface.
Holder *Holder
Handler *Handler
Broadcaster Broadcaster
BroadcastReceiver BroadcastReceiver
// Cluster configuration.
// Host is replaced with actual host after opening if port is ":0".
Network string
URI URI
Cluster *Cluster
// Background monitoring intervals.
AntiEntropyInterval time.Duration
MetricInterval time.Duration
// TLS configuration
TLS *tls.Config
// Misc options.
MaxWritesPerRequest int
LogOutput io.Writer
defaultClient *http.Client
}
// NewServer returns a new instance of Server.
func NewServer() *Server {
s := &Server{
closing: make(chan struct{}),
Holder: NewHolder(),
Handler: NewHandler(),
Broadcaster: NopBroadcaster,
BroadcastReceiver: NopBroadcastReceiver,
Network: "tcp",
AntiEntropyInterval: DefaultAntiEntropyInterval,
MetricInterval: 0,
LogOutput: os.Stderr,
}
s.Handler.Holder = s.Holder
return s
}
// Open opens and initializes the server.
func (s *Server) Open() error {
var ln net.Listener
var err error
// If bind URI has the https scheme, enable TLS
if s.URI.Scheme() == "https" && s.TLS != nil {
ln, err = tls.Listen("tcp", s.URI.HostPort(), s.TLS)
if err != nil {
return err
}
} else if s.URI.Scheme() == "http" {
// Open HTTP listener to determine port (if specified as :0).
ln, err = net.Listen(s.Network, s.URI.HostPort())
if err != nil {
return fmt.Errorf("net.Listen: %v", err)
}
} else {
return fmt.Errorf("unsupported scheme: %s", s.URI.Scheme())
}
s.ln = ln
if s.URI.Port() == 0 {
// If the port is 0, it is set automatically.
// Find out automatically set port and update the host.
s.URI.SetPort(uint16(s.ln.Addr().(*net.TCPAddr).Port))
}
// Set Cluster URI.
s.Cluster.URI = s.URI
/*
// Create local node if no cluster is specified.
if len(s.Cluster.Nodes) == 0 {
s.Cluster.Nodes = []*Node{
{Scheme: s.URI.Scheme(), Host: s.URI.HostPort()},
}
}
// TODO: nodes aren't here yet. May need to merge new stats code anyway.
for i, n := range s.Cluster.Nodes {
if s.Cluster.NodeByHost(n.Host) != nil {
s.Holder.Stats = s.Holder.Stats.WithTags(fmt.Sprintf("NodeID:%d", i))
}
}
*/
// Open holder.
s.Holder.LogOutput = s.LogOutput
if err := s.Holder.Open(); err != nil {
return fmt.Errorf("opening Holder: %v", err)
}
// Start the BroadcastReceiver.
if err := s.BroadcastReceiver.Start(s); err != nil {
return fmt.Errorf("starting BroadcastReceiver: %v", err)
}
// Open Cluster management.
if err := s.Cluster.Open(); err != nil {
return fmt.Errorf("opening Cluster: %v", err)
}
// Create default HTTP client
s.createDefaultClient()
// Create executor for executing queries.
e := NewExecutor(&ClientOptions{TLS: s.TLS})
e.Holder = s.Holder
e.URI = s.URI
e.Cluster = s.Cluster
e.MaxWritesPerRequest = s.MaxWritesPerRequest
// Initialize HTTP handler.
s.Handler.Broadcaster = s.Broadcaster
s.Handler.StatusHandler = s
s.Handler.URI = s.URI
s.Handler.Cluster = s.Cluster
s.Handler.Executor = e
s.Handler.LogOutput = s.LogOutput
// Initialize Holder.
s.Holder.Broadcaster = s.Broadcaster
// Serve HTTP.
go func() {
err := http.Serve(ln, s.Handler)
if err != nil {
s.Logger().Printf("HTTP handler terminated with error: %s\n", err)
}
}()
/*
// Start background monitoring.
s.wg.Add(2)
go func() { defer s.wg.Done(); s.monitorAntiEntropy() }()
go func() { defer s.wg.Done(); s.monitorRuntime() }()
*/
return nil
}
// Close closes the server and waits for it to shutdown.
func (s *Server) Close() error {
// Notify goroutines to stop.
close(s.closing)
s.wg.Wait()
if s.ln != nil {
s.ln.Close()
}
if s.Cluster != nil {
s.Cluster.Close()
}
if s.Holder != nil {
s.Holder.Close()
}
return nil
}
// Addr returns the address of the listener.
func (s *Server) Addr() net.Addr {
if s.ln == nil {
return nil
}
return s.ln.Addr()
}
func (s *Server) Logger() *log.Logger { return log.New(s.LogOutput, "", log.LstdFlags) }
func (s *Server) monitorAntiEntropy() {
t := time.Now()
ticker := time.NewTicker(s.AntiEntropyInterval)
defer ticker.Stop()
s.Logger().Printf("holder sync monitor initializing (%s interval)", s.AntiEntropyInterval)
for {
// Wait for tick or a close.
select {
case <-s.closing:
return
case <-ticker.C:
s.Holder.Stats.Count("AntiEntropy", 1, 1.0)
}
s.Logger().Printf("holder sync beginning")
// Initialize syncer with local holder and remote client.
var syncer HolderSyncer
syncer.Holder = s.Holder
syncer.URI = s.URI
syncer.Cluster = s.Cluster
syncer.Closing = s.closing
syncer.ClientOptions = &ClientOptions{TLS: s.TLS}
// Sync holders.
if err := syncer.SyncHolder(); err != nil {
s.Logger().Printf("holder sync error: err=%s", err)
continue
}
// Record successful sync in log.
s.Logger().Printf("holder sync complete")
}
dif := time.Since(t)
s.Holder.Stats.Histogram("AntiEntropyDuration", float64(dif), 1.0)
}
// ReceiveMessage represents an implementation of BroadcastHandler.
func (s *Server) ReceiveMessage(pb proto.Message) error {
switch obj := pb.(type) {
case *internal.CreateSliceMessage:
idx := s.Holder.Index(obj.Index)
if idx == nil {
return fmt.Errorf("Local Index not found: %s", obj.Index)
}
if obj.IsInverse {
idx.SetRemoteMaxInverseSlice(obj.Slice)
} else {
idx.SetRemoteMaxSlice(obj.Slice)
}
case *internal.CreateIndexMessage:
opt := IndexOptions{
ColumnLabel: obj.Meta.ColumnLabel,
TimeQuantum: TimeQuantum(obj.Meta.TimeQuantum),
}
_, err := s.Holder.CreateIndex(obj.Index, opt)
if err != nil {
return err
}
case *internal.DeleteIndexMessage:
if err := s.Holder.DeleteIndex(obj.Index); err != nil {
return err
}
case *internal.CreateFrameMessage:
idx := s.Holder.Index(obj.Index)
if idx == nil {
return fmt.Errorf("Local Index not found: %s", obj.Index)
}
opt := decodeFrameOptions(obj.Meta)
_, err := idx.CreateFrame(obj.Frame, *opt)
if err != nil {
return err
}
case *internal.DeleteFrameMessage:
idx := s.Holder.Index(obj.Index)
if err := idx.DeleteFrame(obj.Frame); err != nil {
return err
}
case *internal.CreateInputDefinitionMessage:
idx := s.Holder.Index(obj.Index)
if idx == nil {
return fmt.Errorf("Local Index not found: %s", obj.Index)
}
idx.CreateInputDefinition(obj.Definition)
case *internal.DeleteInputDefinitionMessage:
idx := s.Holder.Index(obj.Index)
err := idx.DeleteInputDefinition(obj.Name)
if err != nil {
return err
}
case *internal.DeleteViewMessage:
f := s.Holder.Frame(obj.Index, obj.Frame)
if f == nil {
return fmt.Errorf("Local Frame not found: %s", obj.Frame)
}
err := f.DeleteView(obj.View)
if err != nil {
return err
}
case *internal.ClusterStatus:
err := s.Cluster.mergeClusterStatus(obj)
if err != nil {
return err
}
case *internal.ResizeInstruction:
s.Cluster.followResizeInstruction(obj)
case *internal.ResizeInstructionComplete:
err := s.Cluster.MarkResizeInstructionComplete(obj)
if err != nil {
return err
}
}
return nil
}
// State returns the cluster state according to this node.
func (s *Server) State() string {
return s.Cluster.State
}
// Server implements StatusHandler.
// LocalStatus is used to periodically sync information
// between nodes. Under normal conditions, nodes should
// remain in sync through Broadcast messages. For cases
// where a node fails to receive a Broadcast message, or
// when a new (empty) node needs to get in sync with the
// rest of the cluster, two things are shared via gossip:
// - MaxSlice/MaxInverseSlice by Index
// - Schema
// In a gossip implementation, memberlist.Delegate.LocalState() uses this.
func (s *Server) LocalStatus() (proto.Message, error) {
if s.Cluster == nil {
return nil, errors.New("Server.Cluster is nil")
}
if s.Holder == nil {
return nil, errors.New("Server.Holder is nil")
}
ns := internal.NodeStatus{
URI: encodeURI(s.URI),
MaxSlices: s.Holder.EncodeMaxSlices(),
Schema: s.Holder.EncodeSchema(),
}
return &ns, nil
}
// ClusterStatus returns the ClusterState and URISet for the cluster.
func (s *Server) ClusterStatus() (proto.Message, error) {
return s.Cluster.Status(), nil
}
// HandleRemoteStatus receives incoming NodeStatus from remote nodes.
func (s *Server) HandleRemoteStatus(pb proto.Message) error {
return s.mergeRemoteStatus(pb.(*internal.NodeStatus))
}
func (s *Server) mergeRemoteStatus(ns *internal.NodeStatus) error {
// Ignore status updates from self.
if s.URI == decodeURI(ns.URI) {
return nil
}
// Sync maxSlices (standard).
oldmaxslices := s.Holder.MaxSlices()
for index, newMax := range ns.MaxSlices.Standard {
localIndex := s.Holder.Index(index)
// if we don't know about an index locally, log an error because
// indexes should be created and synced prior to slice creation
if localIndex == nil {
s.Logger().Printf("Local Index not found: %s", index)
continue
}
if newMax > oldmaxslices[index] {
oldmaxslices[index] = newMax
localIndex.SetRemoteMaxSlice(newMax)
}
}
// Sync maxSlices (inverse).
oldMaxInverseSlices := s.Holder.MaxInverseSlices()
for index, newMaxInverse := range ns.MaxSlices.Inverse {
localIndex := s.Holder.Index(index)
// if we don't know about an index locally, log an error because
// indexes should be created and synced prior to slice creation
if localIndex == nil {
s.Logger().Printf("Local Index not found: %s", index)
continue
}
if newMaxInverse > oldMaxInverseSlices[index] {
oldMaxInverseSlices[index] = newMaxInverse
localIndex.SetRemoteMaxSlice(newMaxInverse)
}
}
// Sync schema.
// Create indexes that don't exist.
for _, index := range ns.Schema.Indexes {
opt := IndexOptions{}
idx, err := s.Holder.CreateIndexIfNotExists(index.Name, opt)
if err != nil {
return err
}
// Create frames that don't exist.
for _, f := range index.Frames {
opt := decodeFrameOptions(f.Meta)
_, err := idx.CreateFrameIfNotExists(f.Name, *opt)
if err != nil {
return err
}
}
// TODO: Create inputDefinitions that don't exist.
}
return nil
}
// monitorRuntime periodically polls the Go runtime metrics.
func (s *Server) monitorRuntime() {
// Disable metrics when poll interval is zero
if s.MetricInterval <= 0 {
return
}
var m runtime.MemStats
ticker := time.NewTicker(s.MetricInterval)
defer ticker.Stop()
gcn := gcnotifier.New()
defer gcn.Close()
s.Logger().Printf("runtime stats initializing (%s interval)", s.MetricInterval)
for {
// Wait for tick or a close.
select {
case <-s.closing:
return
case <-gcn.AfterGC():
// GC just ran
s.Holder.Stats.Count("garbage_collection", 1, 1.0)
case <-ticker.C:
}
// Record the number of go routines
s.Holder.Stats.Gauge("goroutines", float64(runtime.NumGoroutine()), 1.0)
// Open File handles
s.Holder.Stats.Gauge("OpenFiles", float64(CountOpenFiles()), 1.0)
// Runtime memory metrics
runtime.ReadMemStats(&m)
s.Holder.Stats.Gauge("HeapAlloc", float64(m.HeapAlloc), 1.0)
s.Holder.Stats.Gauge("HeapInuse", float64(m.HeapInuse), 1.0)
s.Holder.Stats.Gauge("StackInuse", float64(m.StackInuse), 1.0)
s.Holder.Stats.Gauge("Mallocs", float64(m.Mallocs), 1.0)
s.Holder.Stats.Gauge("Frees", float64(m.Frees), 1.0)
}
}
func (s *Server) createDefaultClient() {
transport := &http.Transport{}
if s.TLS != nil {
transport.TLSClientConfig = s.TLS
}
s.defaultClient = &http.Client{Transport: transport}
}
// CountOpenFiles on opperating systems that support lsof
func CountOpenFiles() int {
count := 0
switch runtime.GOOS {
case "darwin", "linux", "unix", "freebsd":
// -b option avoid kernel blocks
pid := os.Getpid()
out, err := exec.Command("/bin/sh", "-c", fmt.Sprintf("lsof -b -p %v", pid)).Output()
if err != nil {
log.Fatal(err)
}
// only count lines with our pid, avoiding warning messages from -b
lines := strings.Split(string(out), strconv.Itoa(pid))
count = len(lines)
case "windows":
// TODO: count open file handles on windows
default:
}
return count
}
// StatusHandler specifies the methods which an object must implement to share
// state in the cluster. These are used by the GossipNodeSet to implement the
// LocalState and MergeRemoteState methods of memberlist.Delegate
type StatusHandler interface {
LocalStatus() (proto.Message, error)
ClusterStatus() (proto.Message, error)
HandleRemoteStatus(proto.Message) error
}