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a359e36e35
We can reduce this further in the future, but this is a good value to keep around. With the advent of continuous healing, we can be assured that namespace will eventually be consistent so we are okay to avoid the necessity to a list across all drives on all sets. Bonus Pop()'s in parallel seem to have the potential to wait too on large drive setups and cause more slowness instead of gaining any performance remove it for now. Also, implement load balanced reply for local disks, ensuring that local disks have an affinity for - cleanupStaleMultipartUploads()
263 lines
7.4 KiB
Go
263 lines
7.4 KiB
Go
/*
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* MinIO Cloud Storage, (C) 2019 MinIO, Inc.
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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package storageclass
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import (
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"encoding/json"
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"fmt"
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"strconv"
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"strings"
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"github.com/minio/minio/cmd/config"
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"github.com/minio/minio/pkg/env"
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)
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// Standard constants for all storage class
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const (
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// Reduced redundancy storage class
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RRS = "REDUCED_REDUNDANCY"
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// Standard storage class
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STANDARD = "STANDARD"
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)
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// Standard constats for config info storage class
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const (
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ClassStandard = "standard"
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ClassRRS = "rrs"
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// Reduced redundancy storage class environment variable
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RRSEnv = "MINIO_STORAGE_CLASS_RRS"
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// Standard storage class environment variable
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StandardEnv = "MINIO_STORAGE_CLASS_STANDARD"
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// Supported storage class scheme is EC
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schemePrefix = "EC"
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// Min parity disks
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minParityDisks = 2
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// Default RRS parity is always minimum parity.
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defaultRRSParity = minParityDisks
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)
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// DefaultKVS - default storage class config
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var (
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DefaultKVS = config.KVS{
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config.KV{
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Key: ClassStandard,
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Value: "",
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},
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config.KV{
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Key: ClassRRS,
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Value: "EC:2",
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},
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}
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)
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// StorageClass - holds storage class information
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type StorageClass struct {
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Parity int
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}
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// Config storage class configuration
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type Config struct {
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Standard StorageClass `json:"standard"`
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RRS StorageClass `json:"rrs"`
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}
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// UnmarshalJSON - Validate SS and RRS parity when unmarshalling JSON.
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func (sCfg *Config) UnmarshalJSON(data []byte) error {
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type Alias Config
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aux := &struct {
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*Alias
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}{
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Alias: (*Alias)(sCfg),
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}
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return json.Unmarshal(data, &aux)
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}
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// IsValid - returns true if input string is a valid
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// storage class kind supported.
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func IsValid(sc string) bool {
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return sc == RRS || sc == STANDARD
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}
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// UnmarshalText unmarshals storage class from its textual form into
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// storageClass structure.
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func (sc *StorageClass) UnmarshalText(b []byte) error {
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scStr := string(b)
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if scStr == "" {
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return nil
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}
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s, err := parseStorageClass(scStr)
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if err != nil {
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return err
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}
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sc.Parity = s.Parity
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return nil
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}
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// MarshalText - marshals storage class string.
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func (sc *StorageClass) MarshalText() ([]byte, error) {
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if sc.Parity != 0 {
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return []byte(fmt.Sprintf("%s:%d", schemePrefix, sc.Parity)), nil
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}
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return []byte(""), nil
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}
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func (sc *StorageClass) String() string {
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if sc.Parity != 0 {
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return fmt.Sprintf("%s:%d", schemePrefix, sc.Parity)
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}
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return ""
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}
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// Parses given storageClassEnv and returns a storageClass structure.
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// Supported Storage Class format is "Scheme:Number of parity disks".
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// Currently only supported scheme is "EC".
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func parseStorageClass(storageClassEnv string) (sc StorageClass, err error) {
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s := strings.Split(storageClassEnv, ":")
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// only two elements allowed in the string - "scheme" and "number of parity disks"
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if len(s) > 2 {
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return StorageClass{}, config.ErrStorageClassValue(nil).Msg("Too many sections in " + storageClassEnv)
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} else if len(s) < 2 {
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return StorageClass{}, config.ErrStorageClassValue(nil).Msg("Too few sections in " + storageClassEnv)
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}
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// only allowed scheme is "EC"
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if s[0] != schemePrefix {
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return StorageClass{}, config.ErrStorageClassValue(nil).Msg("Unsupported scheme " + s[0] + ". Supported scheme is EC")
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}
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// Number of parity disks should be integer
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parityDisks, err := strconv.Atoi(s[1])
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if err != nil {
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return StorageClass{}, config.ErrStorageClassValue(err)
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}
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return StorageClass{
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Parity: parityDisks,
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}, nil
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}
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// Validates the parity disks.
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func validateParity(ssParity, rrsParity, setDriveCount int) (err error) {
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if ssParity == 0 && rrsParity == 0 {
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return nil
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}
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// SS parity disks should be greater than or equal to minParityDisks.
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// Parity below minParityDisks is not supported.
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if ssParity < minParityDisks {
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return fmt.Errorf("Standard storage class parity %d should be greater than or equal to %d",
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ssParity, minParityDisks)
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}
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// RRS parity disks should be greater than or equal to minParityDisks.
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// Parity below minParityDisks is not supported.
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if rrsParity < minParityDisks {
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return fmt.Errorf("Reduced redundancy storage class parity %d should be greater than or equal to %d", rrsParity, minParityDisks)
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}
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if ssParity > setDriveCount/2 {
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return fmt.Errorf("Standard storage class parity %d should be less than or equal to %d", ssParity, setDriveCount/2)
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}
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if rrsParity > setDriveCount/2 {
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return fmt.Errorf("Reduced redundancy storage class parity %d should be less than or equal to %d", rrsParity, setDriveCount/2)
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}
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if ssParity > 0 && rrsParity > 0 {
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if ssParity < rrsParity {
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return fmt.Errorf("Standard storage class parity disks %d should be greater than or equal to Reduced redundancy storage class parity disks %d", ssParity, rrsParity)
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}
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}
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return nil
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}
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// GetParityForSC - Returns the data and parity drive count based on storage class
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// If storage class is set using the env vars MINIO_STORAGE_CLASS_RRS and MINIO_STORAGE_CLASS_STANDARD
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// or config.json fields
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// -- corresponding values are returned
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// If storage class is not set during startup, default values are returned
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// -- Default for Reduced Redundancy Storage class is, parity = 2 and data = N-Parity
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// -- Default for Standard Storage class is, parity = N/2, data = N/2
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// If storage class is empty
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// -- standard storage class is assumed and corresponding data and parity is returned
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func (sCfg Config) GetParityForSC(sc string) (parity int) {
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switch strings.TrimSpace(sc) {
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case RRS:
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// set the rrs parity if available
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if sCfg.RRS.Parity == 0 {
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return defaultRRSParity
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}
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return sCfg.RRS.Parity
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default:
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return sCfg.Standard.Parity
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}
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}
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// Enabled returns if etcd is enabled.
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func Enabled(kvs config.KVS) bool {
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ssc := kvs.Get(ClassStandard)
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rrsc := kvs.Get(ClassRRS)
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return ssc != "" || rrsc != ""
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}
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// LookupConfig - lookup storage class config and override with valid environment settings if any.
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func LookupConfig(kvs config.KVS, setDriveCount int) (cfg Config, err error) {
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cfg = Config{}
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cfg.Standard.Parity = setDriveCount / 2
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cfg.RRS.Parity = defaultRRSParity
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if err = config.CheckValidKeys(config.StorageClassSubSys, kvs, DefaultKVS); err != nil {
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return Config{}, err
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}
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ssc := env.Get(StandardEnv, kvs.Get(ClassStandard))
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rrsc := env.Get(RRSEnv, kvs.Get(ClassRRS))
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// Check for environment variables and parse into storageClass struct
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if ssc != "" {
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cfg.Standard, err = parseStorageClass(ssc)
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if err != nil {
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return Config{}, err
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}
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}
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if cfg.Standard.Parity == 0 {
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cfg.Standard.Parity = setDriveCount / 2
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}
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if rrsc != "" {
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cfg.RRS, err = parseStorageClass(rrsc)
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if err != nil {
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return Config{}, err
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}
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}
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if cfg.RRS.Parity == 0 {
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cfg.RRS.Parity = defaultRRSParity
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}
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// Validation is done after parsing both the storage classes. This is needed because we need one
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// storage class value to deduce the correct value of the other storage class.
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if err = validateParity(cfg.Standard.Parity, cfg.RRS.Parity, setDriveCount); err != nil {
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return Config{}, err
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}
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return cfg, nil
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}
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