mirror of
https://github.com/seaweedfs/seaweedfs.git
synced 2024-01-19 02:48:24 +00:00
384 lines
14 KiB
Go
384 lines
14 KiB
Go
package command
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import (
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"fmt"
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"net/http"
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httppprof "net/http/pprof"
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"os"
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"runtime/pprof"
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"strconv"
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"strings"
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"time"
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"github.com/seaweedfs/seaweedfs/weed/storage/types"
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"github.com/spf13/viper"
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"google.golang.org/grpc"
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"github.com/seaweedfs/seaweedfs/weed/util/grace"
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"github.com/seaweedfs/seaweedfs/weed/pb"
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"github.com/seaweedfs/seaweedfs/weed/security"
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"github.com/seaweedfs/seaweedfs/weed/util/httpdown"
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"google.golang.org/grpc/reflection"
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"github.com/seaweedfs/seaweedfs/weed/glog"
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"github.com/seaweedfs/seaweedfs/weed/pb/volume_server_pb"
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weed_server "github.com/seaweedfs/seaweedfs/weed/server"
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stats_collect "github.com/seaweedfs/seaweedfs/weed/stats"
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"github.com/seaweedfs/seaweedfs/weed/storage"
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"github.com/seaweedfs/seaweedfs/weed/util"
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)
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var (
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v VolumeServerOptions
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)
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type VolumeServerOptions struct {
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port *int
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portGrpc *int
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publicPort *int
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folders []string
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folderMaxLimits []int32
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idxFolder *string
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ip *string
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publicUrl *string
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bindIp *string
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mastersString *string
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masters []pb.ServerAddress
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idleConnectionTimeout *int
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dataCenter *string
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rack *string
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whiteList []string
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indexType *string
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diskType *string
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fixJpgOrientation *bool
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readMode *string
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cpuProfile *string
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memProfile *string
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compactionMBPerSecond *int
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fileSizeLimitMB *int
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concurrentUploadLimitMB *int
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concurrentDownloadLimitMB *int
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pprof *bool
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preStopSeconds *int
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metricsHttpPort *int
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// pulseSeconds *int
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inflightUploadDataTimeout *time.Duration
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}
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func init() {
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cmdVolume.Run = runVolume // break init cycle
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v.port = cmdVolume.Flag.Int("port", 8080, "http listen port")
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v.portGrpc = cmdVolume.Flag.Int("port.grpc", 0, "grpc listen port")
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v.publicPort = cmdVolume.Flag.Int("port.public", 0, "port opened to public")
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v.ip = cmdVolume.Flag.String("ip", util.DetectedHostAddress(), "ip or server name, also used as identifier")
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v.publicUrl = cmdVolume.Flag.String("publicUrl", "", "Publicly accessible address")
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v.bindIp = cmdVolume.Flag.String("ip.bind", "", "ip address to bind to. If empty, default to same as -ip option.")
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v.mastersString = cmdVolume.Flag.String("mserver", "localhost:9333", "comma-separated master servers")
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v.preStopSeconds = cmdVolume.Flag.Int("preStopSeconds", 10, "number of seconds between stop send heartbeats and stop volume server")
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// v.pulseSeconds = cmdVolume.Flag.Int("pulseSeconds", 5, "number of seconds between heartbeats, must be smaller than or equal to the master's setting")
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v.idleConnectionTimeout = cmdVolume.Flag.Int("idleTimeout", 30, "connection idle seconds")
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v.dataCenter = cmdVolume.Flag.String("dataCenter", "", "current volume server's data center name")
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v.rack = cmdVolume.Flag.String("rack", "", "current volume server's rack name")
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v.indexType = cmdVolume.Flag.String("index", "memory", "Choose [memory|leveldb|leveldbMedium|leveldbLarge] mode for memory~performance balance.")
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v.diskType = cmdVolume.Flag.String("disk", "", "[hdd|ssd|<tag>] hard drive or solid state drive or any tag")
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v.fixJpgOrientation = cmdVolume.Flag.Bool("images.fix.orientation", false, "Adjust jpg orientation when uploading.")
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v.readMode = cmdVolume.Flag.String("readMode", "proxy", "[local|proxy|redirect] how to deal with non-local volume: 'not found|proxy to remote node|redirect volume location'.")
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v.cpuProfile = cmdVolume.Flag.String("cpuprofile", "", "cpu profile output file")
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v.memProfile = cmdVolume.Flag.String("memprofile", "", "memory profile output file")
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v.compactionMBPerSecond = cmdVolume.Flag.Int("compactionMBps", 0, "limit background compaction or copying speed in mega bytes per second")
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v.fileSizeLimitMB = cmdVolume.Flag.Int("fileSizeLimitMB", 256, "limit file size to avoid out of memory")
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v.concurrentUploadLimitMB = cmdVolume.Flag.Int("concurrentUploadLimitMB", 256, "limit total concurrent upload size")
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v.concurrentDownloadLimitMB = cmdVolume.Flag.Int("concurrentDownloadLimitMB", 256, "limit total concurrent download size")
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v.pprof = cmdVolume.Flag.Bool("pprof", false, "enable pprof http handlers. precludes --memprofile and --cpuprofile")
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v.metricsHttpPort = cmdVolume.Flag.Int("metricsPort", 0, "Prometheus metrics listen port")
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v.idxFolder = cmdVolume.Flag.String("dir.idx", "", "directory to store .idx files")
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v.inflightUploadDataTimeout = cmdVolume.Flag.Duration("inflightUploadDataTimeout", 60*time.Second, "inflight upload data wait timeout of volume servers")
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}
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var cmdVolume = &Command{
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UsageLine: "volume -port=8080 -dir=/tmp -max=5 -ip=server_name -mserver=localhost:9333",
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Short: "start a volume server",
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Long: `start a volume server to provide storage spaces
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`,
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}
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var (
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volumeFolders = cmdVolume.Flag.String("dir", os.TempDir(), "directories to store data files. dir[,dir]...")
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maxVolumeCounts = cmdVolume.Flag.String("max", "8", "maximum numbers of volumes, count[,count]... If set to zero, the limit will be auto configured as free disk space divided by volume size.")
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volumeWhiteListOption = cmdVolume.Flag.String("whiteList", "", "comma separated Ip addresses having write permission. No limit if empty.")
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minFreeSpacePercent = cmdVolume.Flag.String("minFreeSpacePercent", "1", "minimum free disk space (default to 1%). Low disk space will mark all volumes as ReadOnly (deprecated, use minFreeSpace instead).")
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minFreeSpace = cmdVolume.Flag.String("minFreeSpace", "", "min free disk space (value<=100 as percentage like 1, other as human readable bytes, like 10GiB). Low disk space will mark all volumes as ReadOnly.")
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)
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func runVolume(cmd *Command, args []string) bool {
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util.LoadConfiguration("security", false)
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// If --pprof is set we assume the caller wants to be able to collect
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// cpu and memory profiles via go tool pprof
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if !*v.pprof {
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grace.SetupProfiling(*v.cpuProfile, *v.memProfile)
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}
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go stats_collect.StartMetricsServer(*v.metricsHttpPort)
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minFreeSpaces := util.MustParseMinFreeSpace(*minFreeSpace, *minFreeSpacePercent)
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v.masters = pb.ServerAddresses(*v.mastersString).ToAddresses()
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v.startVolumeServer(*volumeFolders, *maxVolumeCounts, *volumeWhiteListOption, minFreeSpaces)
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return true
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}
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func (v VolumeServerOptions) startVolumeServer(volumeFolders, maxVolumeCounts, volumeWhiteListOption string, minFreeSpaces []util.MinFreeSpace) {
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// Set multiple folders and each folder's max volume count limit'
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v.folders = strings.Split(volumeFolders, ",")
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for _, folder := range v.folders {
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if err := util.TestFolderWritable(util.ResolvePath(folder)); err != nil {
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glog.Fatalf("Check Data Folder(-dir) Writable %s : %s", folder, err)
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}
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}
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// set max
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maxCountStrings := strings.Split(maxVolumeCounts, ",")
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for _, maxString := range maxCountStrings {
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if max, e := strconv.ParseInt(maxString, 10, 64); e == nil {
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v.folderMaxLimits = append(v.folderMaxLimits, int32(max))
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} else {
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glog.Fatalf("The max specified in -max not a valid number %s", maxString)
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}
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}
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if len(v.folderMaxLimits) == 1 && len(v.folders) > 1 {
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for i := 0; i < len(v.folders)-1; i++ {
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v.folderMaxLimits = append(v.folderMaxLimits, v.folderMaxLimits[0])
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}
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}
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if len(v.folders) != len(v.folderMaxLimits) {
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glog.Fatalf("%d directories by -dir, but only %d max is set by -max", len(v.folders), len(v.folderMaxLimits))
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}
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if len(minFreeSpaces) == 1 && len(v.folders) > 1 {
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for i := 0; i < len(v.folders)-1; i++ {
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minFreeSpaces = append(minFreeSpaces, minFreeSpaces[0])
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}
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}
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if len(v.folders) != len(minFreeSpaces) {
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glog.Fatalf("%d directories by -dir, but only %d minFreeSpacePercent is set by -minFreeSpacePercent", len(v.folders), len(minFreeSpaces))
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}
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// set disk types
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var diskTypes []types.DiskType
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diskTypeStrings := strings.Split(*v.diskType, ",")
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for _, diskTypeString := range diskTypeStrings {
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diskTypes = append(diskTypes, types.ToDiskType(diskTypeString))
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}
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if len(diskTypes) == 1 && len(v.folders) > 1 {
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for i := 0; i < len(v.folders)-1; i++ {
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diskTypes = append(diskTypes, diskTypes[0])
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}
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}
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if len(v.folders) != len(diskTypes) {
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glog.Fatalf("%d directories by -dir, but only %d disk types is set by -disk", len(v.folders), len(diskTypes))
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}
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// security related white list configuration
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v.whiteList = util.StringSplit(volumeWhiteListOption, ",")
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if *v.ip == "" {
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*v.ip = util.DetectedHostAddress()
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glog.V(0).Infof("detected volume server ip address: %v", *v.ip)
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}
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if *v.bindIp == "" {
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*v.bindIp = *v.ip
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}
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if *v.publicPort == 0 {
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*v.publicPort = *v.port
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}
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if *v.portGrpc == 0 {
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*v.portGrpc = 10000 + *v.port
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}
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if *v.publicUrl == "" {
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*v.publicUrl = util.JoinHostPort(*v.ip, *v.publicPort)
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}
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volumeMux := http.NewServeMux()
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publicVolumeMux := volumeMux
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if v.isSeparatedPublicPort() {
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publicVolumeMux = http.NewServeMux()
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}
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if *v.pprof {
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volumeMux.HandleFunc("/debug/pprof/", httppprof.Index)
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volumeMux.HandleFunc("/debug/pprof/cmdline", httppprof.Cmdline)
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volumeMux.HandleFunc("/debug/pprof/profile", httppprof.Profile)
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volumeMux.HandleFunc("/debug/pprof/symbol", httppprof.Symbol)
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volumeMux.HandleFunc("/debug/pprof/trace", httppprof.Trace)
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}
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volumeNeedleMapKind := storage.NeedleMapInMemory
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switch *v.indexType {
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case "leveldb":
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volumeNeedleMapKind = storage.NeedleMapLevelDb
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case "leveldbMedium":
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volumeNeedleMapKind = storage.NeedleMapLevelDbMedium
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case "leveldbLarge":
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volumeNeedleMapKind = storage.NeedleMapLevelDbLarge
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}
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volumeServer := weed_server.NewVolumeServer(volumeMux, publicVolumeMux,
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*v.ip, *v.port, *v.portGrpc, *v.publicUrl,
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v.folders, v.folderMaxLimits, minFreeSpaces, diskTypes,
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*v.idxFolder,
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volumeNeedleMapKind,
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v.masters, 5, *v.dataCenter, *v.rack,
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v.whiteList,
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*v.fixJpgOrientation, *v.readMode,
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*v.compactionMBPerSecond,
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*v.fileSizeLimitMB,
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int64(*v.concurrentUploadLimitMB)*1024*1024,
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int64(*v.concurrentDownloadLimitMB)*1024*1024,
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*v.inflightUploadDataTimeout,
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)
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// starting grpc server
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grpcS := v.startGrpcService(volumeServer)
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// starting public http server
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var publicHttpDown httpdown.Server
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if v.isSeparatedPublicPort() {
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publicHttpDown = v.startPublicHttpService(publicVolumeMux)
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if nil == publicHttpDown {
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glog.Fatalf("start public http service failed")
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}
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}
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// starting the cluster http server
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clusterHttpServer := v.startClusterHttpService(volumeMux)
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stopChan := make(chan bool)
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grace.OnInterrupt(func() {
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fmt.Println("volume server has been killed")
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// Stop heartbeats
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if !volumeServer.StopHeartbeat() {
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volumeServer.SetStopping()
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glog.V(0).Infof("stop send heartbeat and wait %d seconds until shutdown ...", *v.preStopSeconds)
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time.Sleep(time.Duration(*v.preStopSeconds) * time.Second)
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}
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shutdown(publicHttpDown, clusterHttpServer, grpcS, volumeServer)
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stopChan <- true
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})
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select {
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case <-stopChan:
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}
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}
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func shutdown(publicHttpDown httpdown.Server, clusterHttpServer httpdown.Server, grpcS *grpc.Server, volumeServer *weed_server.VolumeServer) {
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// firstly, stop the public http service to prevent from receiving new user request
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if nil != publicHttpDown {
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glog.V(0).Infof("stop public http server ... ")
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if err := publicHttpDown.Stop(); err != nil {
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glog.Warningf("stop the public http server failed, %v", err)
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}
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}
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glog.V(0).Infof("graceful stop cluster http server ... ")
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if err := clusterHttpServer.Stop(); err != nil {
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glog.Warningf("stop the cluster http server failed, %v", err)
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}
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glog.V(0).Infof("graceful stop gRPC ...")
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grpcS.GracefulStop()
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volumeServer.Shutdown()
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pprof.StopCPUProfile()
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}
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// check whether configure the public port
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func (v VolumeServerOptions) isSeparatedPublicPort() bool {
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return *v.publicPort != *v.port
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}
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func (v VolumeServerOptions) startGrpcService(vs volume_server_pb.VolumeServerServer) *grpc.Server {
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grpcPort := *v.portGrpc
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grpcL, err := util.NewListener(util.JoinHostPort(*v.bindIp, grpcPort), 0)
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if err != nil {
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glog.Fatalf("failed to listen on grpc port %d: %v", grpcPort, err)
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}
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grpcS := pb.NewGrpcServer(security.LoadServerTLS(util.GetViper(), "grpc.volume"))
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volume_server_pb.RegisterVolumeServerServer(grpcS, vs)
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reflection.Register(grpcS)
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go func() {
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if err := grpcS.Serve(grpcL); err != nil {
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glog.Fatalf("start gRPC service failed, %s", err)
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}
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}()
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return grpcS
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}
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func (v VolumeServerOptions) startPublicHttpService(handler http.Handler) httpdown.Server {
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publicListeningAddress := util.JoinHostPort(*v.bindIp, *v.publicPort)
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glog.V(0).Infoln("Start Seaweed volume server", util.Version(), "public at", publicListeningAddress)
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publicListener, e := util.NewListener(publicListeningAddress, time.Duration(*v.idleConnectionTimeout)*time.Second)
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if e != nil {
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glog.Fatalf("Volume server listener error:%v", e)
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}
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pubHttp := httpdown.HTTP{StopTimeout: 5 * time.Minute, KillTimeout: 5 * time.Minute}
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publicHttpDown := pubHttp.Serve(&http.Server{Handler: handler}, publicListener)
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go func() {
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if err := publicHttpDown.Wait(); err != nil {
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glog.Errorf("public http down wait failed, %v", err)
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}
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}()
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return publicHttpDown
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}
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func (v VolumeServerOptions) startClusterHttpService(handler http.Handler) httpdown.Server {
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var (
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certFile, keyFile string
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)
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if viper.GetString("https.volume.key") != "" {
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certFile = viper.GetString("https.volume.cert")
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keyFile = viper.GetString("https.volume.key")
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}
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listeningAddress := util.JoinHostPort(*v.bindIp, *v.port)
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glog.V(0).Infof("Start Seaweed volume server %s at %s", util.Version(), listeningAddress)
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listener, e := util.NewListener(listeningAddress, time.Duration(*v.idleConnectionTimeout)*time.Second)
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if e != nil {
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glog.Fatalf("Volume server listener error:%v", e)
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}
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httpDown := httpdown.HTTP{
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KillTimeout: time.Minute,
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StopTimeout: 30 * time.Second,
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CertFile: certFile,
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KeyFile: keyFile}
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httpS := &http.Server{Handler: handler}
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if viper.GetString("https.volume.ca") != "" {
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clientCertFile := viper.GetString("https.volume.ca")
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httpS.TLSConfig = security.LoadClientTLSHTTP(clientCertFile)
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}
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clusterHttpServer := httpDown.Serve(httpS, listener)
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go func() {
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if e := clusterHttpServer.Wait(); e != nil {
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glog.Fatalf("Volume server fail to serve: %v", e)
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}
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}()
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return clusterHttpServer
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}
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