mirror of
https://github.com/seaweedfs/seaweedfs.git
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* volume: resolve the disk IO slow-latency threshold per disk volume.toml keys [volume.disk.io.slow.latency] by disk type, but the threshold was chosen once per server by switching on the raw -disk flag. -disk is comma-separated, one entry per -dir, so a multi-disk server matched no case and silently took the hdd threshold. Carry the table on DiskIOProbeConfig and resolve it in CheckDiskSpace from the location's own DiskType. A type with no entry keeps falling back to the hdd threshold. * volume: run the disk IO probe on multi-directory volume servers The probe was disabled whenever more than one -dir was configured, because a single server-wide slow-latency threshold could not describe disks of different types. The threshold is per disk now, and the rest of the probe already is: diskRegistry is keyed by directory, each DiskLocation runs its own CheckDiskSpace, and Store consults isDiskUnavailable per location. * volume: reject duplicate -dir entries Nothing deduplicated -dir, so the same directory listed twice produced two DiskLocations that each loaded every volume in it, appending to the same .dat under two independent locks. Compare directory identity with os.SameFile rather than the path, so a symlink or bind mount aliasing an earlier entry is rejected as well. * volume: cover the per-disk slow-latency handoff SlowLatencyFor has a test, but nothing asserted that CheckDiskSpace feeds it the location's own disk type. Probe through a seam so the resolved threshold is observable, and check hdd, ssd, nvme, the empty type, and an unlisted tag.
667 lines
25 KiB
Go
667 lines
25 KiB
Go
package command
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import (
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"context"
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"crypto/tls"
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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/spf13/viper"
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"google.golang.org/grpc"
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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"
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"github.com/seaweedfs/seaweedfs/weed/pb/volume_server_pb"
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"github.com/seaweedfs/seaweedfs/weed/security"
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weed_server "github.com/seaweedfs/seaweedfs/weed/server"
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"github.com/seaweedfs/seaweedfs/weed/server/constants"
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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/storage/types"
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"github.com/seaweedfs/seaweedfs/weed/util"
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"github.com/seaweedfs/seaweedfs/weed/util/grace"
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"github.com/seaweedfs/seaweedfs/weed/util/httpdown"
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"github.com/seaweedfs/seaweedfs/weed/util/version"
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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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id *string
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publicUrl *string
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bindIp *string
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mastersString *string
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mserverString *string // deprecated, for backward compatibility
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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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tags *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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maintenanceMBPerSecond *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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metricsHttpIp *string
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// pulseSeconds *int
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inflightUploadDataTimeout *time.Duration
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inflightDownloadDataTimeout *time.Duration
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hasSlowRead *bool
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readBufferSizeMB *int
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ldbTimeout *int64
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allowUntrustedRemoteEndpoints *bool
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debug *bool
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debugPort *int
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diskIOProbe *bool
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diskIOTimeout *time.Duration
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diskIOInterval *time.Duration
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diskHDDIOSlowLatency *time.Duration
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diskSSDIOSlowLatency *time.Duration
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diskNVMEIOSlowLatency *time.Duration
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diskIOWindow *time.Duration
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diskIOMinSamples *int
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diskIOSlowPercent *float64
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diskIOErrorPercent *float64
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diskIOMaxStatFailures *int
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diskRecoveryCoef *float64
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// shutdownCtx, when non-nil, tells startVolumeServer to shut down once the
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// ctx is cancelled. Used by integration tests and by weed mini; nil for
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// standalone weed volume.
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shutdownCtx context.Context
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}
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func (v *VolumeServerOptions) setDiskIOProbeDefaults() {
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if v.diskIOProbe == nil {
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defaultValue := false
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v.diskIOProbe = &defaultValue
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}
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if v.diskIOTimeout == nil {
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defaultValue := 2 * time.Second
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v.diskIOTimeout = &defaultValue
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}
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if v.diskIOInterval == nil {
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defaultValue := 60 * time.Second
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v.diskIOInterval = &defaultValue
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}
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if v.diskHDDIOSlowLatency == nil {
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defaultValue := 500 * time.Millisecond
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v.diskHDDIOSlowLatency = &defaultValue
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}
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if v.diskSSDIOSlowLatency == nil {
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defaultValue := 100 * time.Millisecond
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v.diskSSDIOSlowLatency = &defaultValue
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}
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if v.diskNVMEIOSlowLatency == nil {
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defaultValue := 50 * time.Millisecond
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v.diskNVMEIOSlowLatency = &defaultValue
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}
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if v.diskIOWindow == nil {
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defaultValue := time.Minute
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v.diskIOWindow = &defaultValue
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}
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if v.diskIOMinSamples == nil {
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defaultValue := 10
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v.diskIOMinSamples = &defaultValue
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}
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if v.diskIOSlowPercent == nil {
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defaultValue := 20.0
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v.diskIOSlowPercent = &defaultValue
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}
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if v.diskIOErrorPercent == nil {
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defaultValue := 10.0
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v.diskIOErrorPercent = &defaultValue
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}
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if v.diskIOMaxStatFailures == nil {
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defaultValue := 5
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v.diskIOMaxStatFailures = &defaultValue
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}
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if v.diskRecoveryCoef == nil {
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defaultValue := 0.5
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v.diskRecoveryCoef = &defaultValue
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}
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}
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func (v *VolumeServerOptions) applyDiskIOProbeConfig() {
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v.setDiskIOProbeDefaults()
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config := util.GetViper()
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if config.IsSet("volume.disk.io.probe") {
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*v.diskIOProbe = config.GetBool("volume.disk.io.probe")
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}
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if config.IsSet("volume.disk.io.timeout") {
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*v.diskIOTimeout = config.GetDuration("volume.disk.io.timeout")
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}
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if config.IsSet("volume.disk.io.slow.latency.hdd") {
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*v.diskHDDIOSlowLatency = config.GetDuration("volume.disk.io.slow.latency.hdd")
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}
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if config.IsSet("volume.disk.io.slow.latency.ssd") {
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*v.diskSSDIOSlowLatency = config.GetDuration("volume.disk.io.slow.latency.ssd")
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}
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if config.IsSet("volume.disk.io.slow.latency.nvme") {
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*v.diskNVMEIOSlowLatency = config.GetDuration("volume.disk.io.slow.latency.nvme")
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}
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if config.IsSet("volume.disk.io.interval") {
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*v.diskIOInterval = config.GetDuration("volume.disk.io.interval")
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}
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if config.IsSet("volume.disk.io.window") {
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*v.diskIOWindow = config.GetDuration("volume.disk.io.window")
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}
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if config.IsSet("volume.disk.io.min.samples") {
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*v.diskIOMinSamples = config.GetInt("volume.disk.io.min.samples")
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}
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if config.IsSet("volume.disk.io.slow.percent") {
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*v.diskIOSlowPercent = config.GetFloat64("volume.disk.io.slow.percent")
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}
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if config.IsSet("volume.disk.io.error.percent") {
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*v.diskIOErrorPercent = config.GetFloat64("volume.disk.io.error.percent")
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}
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if config.IsSet("volume.disk.io.max.stat.failures") {
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*v.diskIOMaxStatFailures = config.GetInt("volume.disk.io.max.stat.failures")
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}
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if config.IsSet("volume.disk.io.recovery.coef") {
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*v.diskRecoveryCoef = config.GetFloat64("volume.disk.io.recovery.coef")
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}
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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.id = cmdVolume.Flag.String("id", "", "volume server id. If empty, default to ip:port")
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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("master", "localhost:9333", "comma-separated master servers")
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v.mserverString = cmdVolume.Flag.String("mserver", "", "comma-separated master servers (deprecated, use -master instead)")
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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.tags = cmdVolume.Flag.String("tags", "", "comma-separated tag groups per data dir; each group uses ':' (e.g. fast:ssd,archive)")
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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.maintenanceMBPerSecond = cmdVolume.Flag.Int("maintenanceMBps", 0, "limit maintenance (replication / balance) IO rate in MB/s. Unset is 0, no limitation.")
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v.fileSizeLimitMB = cmdVolume.Flag.Int("fileSizeLimitMB", 256, "limit file size to avoid out of memory")
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v.ldbTimeout = cmdVolume.Flag.Int64("index.leveldbTimeout", 0, "alive time for leveldb (default to 0). If leveldb of volume is not accessed in ldbTimeout hours, it will be off loaded to reduce opened files and memory consumption.")
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v.concurrentUploadLimitMB = cmdVolume.Flag.Int("concurrentUploadLimitMB", 0, "limit total concurrent upload size, 0 means unlimited")
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v.concurrentDownloadLimitMB = cmdVolume.Flag.Int("concurrentDownloadLimitMB", 0, "limit total concurrent download size, 0 means unlimited")
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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.metricsHttpIp = cmdVolume.Flag.String("metricsIp", "", "metrics listen ip. If empty, default to same as -ip.bind option.")
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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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v.inflightDownloadDataTimeout = cmdVolume.Flag.Duration("inflightDownloadDataTimeout", 60*time.Second, "inflight download data wait timeout of volume servers")
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v.hasSlowRead = cmdVolume.Flag.Bool("hasSlowRead", true, "<experimental> if true, this prevents slow reads from blocking other requests, but large file read P99 latency will increase.")
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v.readBufferSizeMB = cmdVolume.Flag.Int("readBufferSizeMB", 4, "<experimental> larger values can optimize query performance but will increase some memory usage,Use with hasSlowRead normally.")
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v.allowUntrustedRemoteEndpoints = cmdVolume.Flag.Bool("volume.allowUntrustedRemoteEndpoints", false, "if true, FetchAndWriteNeedle accepts arbitrary remote S3 endpoints including loopback / link-local hosts. Default rejects internal / metadata endpoints.")
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v.debug = cmdVolume.Flag.Bool("debug", false, "serves runtime profiling data via pprof on the port specified by -debug.port")
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v.debugPort = cmdVolume.Flag.Int("debug.port", 6060, "http port for debugging")
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v.setDiskIOProbeDefaults()
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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 -master=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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if *v.debug {
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grace.StartDebugServer(*v.debugPort)
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}
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util.LoadSecurityConfiguration()
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util.LoadConfiguration("volume", false)
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v.applyDiskIOProbeConfig()
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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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*v.cpuProfile = util.ResolvePath(*v.cpuProfile)
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*v.memProfile = util.ResolvePath(*v.memProfile)
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grace.SetupProfiling(*v.cpuProfile, *v.memProfile)
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}
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switch {
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case *v.metricsHttpIp != "":
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// noting to do, use v.metricsHttpIp
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case *v.bindIp != "":
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*v.metricsHttpIp = *v.bindIp
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case *v.ip != "":
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*v.metricsHttpIp = *v.ip
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}
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go stats_collect.StartMetricsServer(*v.metricsHttpIp, *v.metricsHttpPort)
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// Backward compatibility: if -mserver is provided, use it
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if *v.mserverString != "" {
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*v.mastersString = *v.mserverString
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}
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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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v.setDiskIOProbeDefaults()
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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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// Two locations on one directory would load every volume twice, appending to
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// the same .dat under two independent locks. Compare identity rather than the
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// path, so a symlink or bind mount aliasing an earlier -dir is caught too.
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type seenFolder struct {
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path string
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info os.FileInfo
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}
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var seenFolders []seenFolder
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for i, folder := range v.folders {
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v.folders[i] = util.ResolvePath(folder)
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if err := util.TestFolderWritable(v.folders[i]); err != nil {
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glog.Fatalf("Check Data Folder(-dir) Writable %s : %s", v.folders[i], err)
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}
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folderInfo, err := os.Stat(v.folders[i])
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if err != nil {
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glog.Fatalf("Check Data Folder(-dir) %s : %s", v.folders[i], err)
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}
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for _, seen := range seenFolders {
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if os.SameFile(seen.info, folderInfo) {
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glog.Fatalf("Data Folder(-dir) %s and %s are the same directory", seen.path, v.folders[i])
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}
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}
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seenFolders = append(seenFolders, seenFolder{v.folders[i], folderInfo})
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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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var tagsArg string
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if v.tags != nil {
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tagsArg = *v.tags
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}
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folderTags := parseVolumeTags(tagsArg, len(v.folders))
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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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util.SetOutboundLocalIP(*v.bindIp)
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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
|
|
if v.isSeparatedPublicPort() {
|
|
publicVolumeMux = http.NewServeMux()
|
|
}
|
|
|
|
if *v.pprof {
|
|
volumeMux.HandleFunc("/debug/pprof/", httppprof.Index)
|
|
volumeMux.HandleFunc("/debug/pprof/cmdline", httppprof.Cmdline)
|
|
volumeMux.HandleFunc("/debug/pprof/profile", httppprof.Profile)
|
|
volumeMux.HandleFunc("/debug/pprof/symbol", httppprof.Symbol)
|
|
volumeMux.HandleFunc("/debug/pprof/trace", httppprof.Trace)
|
|
}
|
|
|
|
volumeNeedleMapKind := storage.NeedleMapInMemory
|
|
switch *v.indexType {
|
|
case "leveldb":
|
|
volumeNeedleMapKind = storage.NeedleMapLevelDb
|
|
case "leveldbMedium":
|
|
volumeNeedleMapKind = storage.NeedleMapLevelDbMedium
|
|
case "leveldbLarge":
|
|
volumeNeedleMapKind = storage.NeedleMapLevelDbLarge
|
|
}
|
|
|
|
// Determine volume server ID: if not specified, use ip:port
|
|
volumeServerId := util.GetVolumeServerId(*v.id, *v.ip, *v.port)
|
|
|
|
diskProbeConfig := stats_collect.DiskIOProbeConfig{
|
|
Enabled: *v.diskIOProbe,
|
|
Timeout: *v.diskIOTimeout,
|
|
Interval: *v.diskIOInterval,
|
|
|
|
SlowLatency: *v.diskHDDIOSlowLatency,
|
|
SlowLatencyByDiskType: map[string]time.Duration{
|
|
types.HddType: *v.diskHDDIOSlowLatency,
|
|
types.SsdType: *v.diskSSDIOSlowLatency,
|
|
types.NvmeType: *v.diskNVMEIOSlowLatency,
|
|
},
|
|
|
|
Window: *v.diskIOWindow,
|
|
MinSamples: *v.diskIOMinSamples,
|
|
|
|
SlowPercent: *v.diskIOSlowPercent,
|
|
ErrorPercent: *v.diskIOErrorPercent,
|
|
|
|
MaxStatFailures: *v.diskIOMaxStatFailures,
|
|
|
|
RecoveryCoef: *v.diskRecoveryCoef,
|
|
}
|
|
volumeServer := weed_server.NewVolumeServer(volumeMux, publicVolumeMux,
|
|
*v.ip, *v.port, *v.portGrpc, *v.publicUrl, volumeServerId,
|
|
v.folders, v.folderMaxLimits, minFreeSpaces, diskTypes, folderTags,
|
|
util.ResolvePath(*v.idxFolder),
|
|
volumeNeedleMapKind,
|
|
v.masters, constants.VolumePulsePeriod, *v.dataCenter, *v.rack,
|
|
v.whiteList,
|
|
*v.fixJpgOrientation, *v.readMode,
|
|
*v.compactionMBPerSecond,
|
|
*v.maintenanceMBPerSecond,
|
|
*v.fileSizeLimitMB,
|
|
int64(*v.concurrentUploadLimitMB)*1024*1024,
|
|
int64(*v.concurrentDownloadLimitMB)*1024*1024,
|
|
*v.inflightUploadDataTimeout,
|
|
*v.inflightDownloadDataTimeout,
|
|
*v.hasSlowRead,
|
|
*v.readBufferSizeMB,
|
|
*v.ldbTimeout,
|
|
*v.allowUntrustedRemoteEndpoints,
|
|
diskProbeConfig,
|
|
)
|
|
// starting grpc server
|
|
grpcS := v.startGrpcService(volumeServer)
|
|
|
|
// starting public http server
|
|
var publicHttpDown httpdown.Server
|
|
if v.isSeparatedPublicPort() {
|
|
publicHttpDown = v.startPublicHttpService(publicVolumeMux)
|
|
if nil == publicHttpDown {
|
|
glog.Fatalf("start public http service failed")
|
|
}
|
|
}
|
|
|
|
// starting the cluster http server
|
|
clusterHttpServer, closeCert := v.startClusterHttpService(volumeMux)
|
|
|
|
grace.OnReload(volumeServer.LoadNewVolumes)
|
|
grace.OnReload(volumeServer.Reload)
|
|
|
|
stopChan := make(chan bool)
|
|
grace.OnInterrupt(func() {
|
|
glog.Infof("volume server has been killed")
|
|
|
|
// Stop heartbeats
|
|
if !volumeServer.StopHeartbeat() {
|
|
volumeServer.SetStopping()
|
|
glog.V(0).Infof("stop send heartbeat and wait %d seconds until shutdown ...", *v.preStopSeconds)
|
|
time.Sleep(time.Duration(*v.preStopSeconds) * time.Second)
|
|
}
|
|
|
|
shutdown(publicHttpDown, clusterHttpServer, grpcS, volumeServer)
|
|
if closeCert != nil {
|
|
closeCert()
|
|
}
|
|
stopChan <- true
|
|
})
|
|
|
|
if v.shutdownCtx != nil {
|
|
select {
|
|
case <-stopChan:
|
|
case <-v.shutdownCtx.Done():
|
|
shutdown(publicHttpDown, clusterHttpServer, grpcS, volumeServer)
|
|
if closeCert != nil {
|
|
closeCert()
|
|
}
|
|
}
|
|
} else {
|
|
select {
|
|
case <-stopChan:
|
|
}
|
|
}
|
|
|
|
}
|
|
|
|
func parseVolumeTags(tagsArg string, folderCount int) [][]string {
|
|
if folderCount <= 0 {
|
|
return nil
|
|
}
|
|
tagEntries := []string{}
|
|
if strings.TrimSpace(tagsArg) != "" {
|
|
tagEntries = strings.Split(tagsArg, ",")
|
|
}
|
|
folderTags := make([][]string, folderCount)
|
|
|
|
// If exactly one tag entry provided, replicate it to all folders
|
|
if len(tagEntries) == 1 {
|
|
normalized := util.NormalizeTagList(strings.Split(tagEntries[0], ":"))
|
|
for i := 0; i < folderCount; i++ {
|
|
folderTags[i] = append([]string(nil), normalized...)
|
|
}
|
|
} else {
|
|
// Otherwise, assign tags to folders that have explicit entries
|
|
for i := 0; i < folderCount; i++ {
|
|
if i < len(tagEntries) {
|
|
folderTags[i] = util.NormalizeTagList(strings.Split(tagEntries[i], ":"))
|
|
} else {
|
|
// Initialize remaining folders with empty tag slice
|
|
folderTags[i] = []string{}
|
|
}
|
|
}
|
|
}
|
|
return folderTags
|
|
}
|
|
|
|
func shutdown(publicHttpDown httpdown.Server, clusterHttpServer httpdown.Server, grpcS *grpc.Server, volumeServer *weed_server.VolumeServer) {
|
|
|
|
// firstly, stop the public http service to prevent from receiving new user request
|
|
if nil != publicHttpDown {
|
|
glog.V(0).Infof("stop public http server ... ")
|
|
if err := publicHttpDown.Stop(); err != nil {
|
|
glog.Warningf("stop the public http server failed, %v", err)
|
|
}
|
|
}
|
|
|
|
glog.V(0).Infof("graceful stop cluster http server ... ")
|
|
if err := clusterHttpServer.Stop(); err != nil {
|
|
glog.Warningf("stop the cluster http server failed, %v", err)
|
|
}
|
|
|
|
glog.V(0).Infof("graceful stop gRPC ...")
|
|
grpcS.GracefulStop()
|
|
|
|
volumeServer.Shutdown()
|
|
|
|
pprof.StopCPUProfile()
|
|
|
|
}
|
|
|
|
// check whether configure the public port
|
|
func (v VolumeServerOptions) isSeparatedPublicPort() bool {
|
|
return *v.publicPort != *v.port
|
|
}
|
|
|
|
func (v VolumeServerOptions) startGrpcService(vs volume_server_pb.VolumeServerServer) *grpc.Server {
|
|
grpcPort := *v.portGrpc
|
|
grpcL, err := util.NewListener(util.JoinHostPort(*v.bindIp, grpcPort), 0)
|
|
if err != nil {
|
|
glog.Fatalf("failed to listen on grpc port %d: %v", grpcPort, err)
|
|
}
|
|
grpcS := pb.NewGrpcServer(security.LoadServerTLS(util.GetViper(), "grpc.volume"))
|
|
volume_server_pb.RegisterVolumeServerServer(grpcS, vs)
|
|
reflection.Register(grpcS)
|
|
go func() {
|
|
if err := grpcS.Serve(grpcL); err != nil {
|
|
glog.Fatalf("start gRPC service failed, %s", err)
|
|
}
|
|
}()
|
|
pb.ServeGrpcOnLocalSocket(grpcS, grpcPort)
|
|
return grpcS
|
|
}
|
|
|
|
func (v VolumeServerOptions) startPublicHttpService(handler http.Handler) httpdown.Server {
|
|
publicListeningAddress := util.JoinHostPort(*v.bindIp, *v.publicPort)
|
|
glog.V(0).Infoln("Start Seaweed volume server", version.Version(), "public at", publicListeningAddress)
|
|
publicListener, e := util.NewListener(publicListeningAddress, time.Duration(*v.idleConnectionTimeout)*time.Second)
|
|
if e != nil {
|
|
glog.Fatalf("Volume server listener error:%v", e)
|
|
}
|
|
|
|
pubHttp := httpdown.HTTP{StopTimeout: 5 * time.Minute, KillTimeout: 5 * time.Minute}
|
|
publicHttpDown := pubHttp.Serve(&http.Server{Handler: handler}, publicListener)
|
|
go func() {
|
|
if err := publicHttpDown.Wait(); err != nil {
|
|
glog.Errorf("public http down wait failed, %v", err)
|
|
}
|
|
}()
|
|
|
|
return publicHttpDown
|
|
}
|
|
|
|
// startClusterHttpService starts the volume cluster HTTP server and
|
|
// returns it along with a close func for the cert reloader's refresh
|
|
// goroutine (nil when HTTPS is disabled). The caller is responsible
|
|
// for invoking the close func on every shutdown path — both the
|
|
// SIGTERM/grace.OnInterrupt path and the shutdownCtx path used by
|
|
// mini/integration tests.
|
|
func (v VolumeServerOptions) startClusterHttpService(handler http.Handler) (httpdown.Server, func()) {
|
|
var (
|
|
certFile, keyFile string
|
|
)
|
|
if viper.GetString("https.volume.key") != "" {
|
|
certFile = viper.GetString("https.volume.cert")
|
|
keyFile = viper.GetString("https.volume.key")
|
|
}
|
|
|
|
listeningAddress := util.JoinHostPort(*v.bindIp, *v.port)
|
|
glog.V(0).Infof("Start Seaweed volume server %s at %s", version.Version(), listeningAddress)
|
|
listener, e := util.NewListener(listeningAddress, time.Duration(*v.idleConnectionTimeout)*time.Second)
|
|
if e != nil {
|
|
glog.Fatalf("Volume server listener error:%v", e)
|
|
}
|
|
|
|
httpDown := httpdown.HTTP{
|
|
KillTimeout: time.Minute,
|
|
StopTimeout: 30 * time.Second,
|
|
}
|
|
httpS := &http.Server{Handler: handler}
|
|
|
|
if viper.GetString("https.volume.ca") != "" {
|
|
clientCertFile := viper.GetString("https.volume.ca")
|
|
httpS.TLSConfig = security.LoadClientTLSHTTP(clientCertFile)
|
|
if err := security.FixTlsConfig(util.GetViper(), httpS.TLSConfig); err != nil {
|
|
glog.Fatalf("Could not fix TLS config: %v", err)
|
|
}
|
|
}
|
|
|
|
var closeCert func()
|
|
if certFile != "" && keyFile != "" {
|
|
getCert, certProvider, err := security.NewReloadingServerCertificate(certFile, keyFile)
|
|
if err != nil {
|
|
glog.Fatalf("Volume server failed to load TLS certificate: %v", err)
|
|
}
|
|
closeCert = certProvider.Close
|
|
if httpS.TLSConfig == nil {
|
|
httpS.TLSConfig = &tls.Config{}
|
|
}
|
|
httpS.TLSConfig.GetCertificate = getCert
|
|
}
|
|
|
|
clusterHttpServer := httpDown.Serve(httpS, listener)
|
|
go func() {
|
|
if e := clusterHttpServer.Wait(); e != nil {
|
|
glog.Fatalf("Volume server fail to serve: %v", e)
|
|
}
|
|
}()
|
|
return clusterHttpServer, closeCert
|
|
}
|