mirror of
https://github.com/project-zot/zot.git
synced 2024-12-16 21:56:37 -05:00
081ba0b2f2
Signed-off-by: Andreea-Lupu <andreealupu1470@yahoo.com>
503 lines
15 KiB
Go
503 lines
15 KiB
Go
package api
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import (
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"context"
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"crypto/tls"
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"crypto/x509"
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"fmt"
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"io/ioutil"
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"net"
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"net/http"
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"runtime"
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"strings"
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goSync "sync"
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"syscall"
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"time"
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"github.com/docker/distribution/registry/storage/driver/factory"
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"github.com/gorilla/handlers"
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"github.com/gorilla/mux"
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"zotregistry.io/zot/errors"
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"zotregistry.io/zot/pkg/api/config"
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ext "zotregistry.io/zot/pkg/extensions"
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extconf "zotregistry.io/zot/pkg/extensions/config"
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"zotregistry.io/zot/pkg/extensions/monitoring"
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"zotregistry.io/zot/pkg/log"
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"zotregistry.io/zot/pkg/storage"
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"zotregistry.io/zot/pkg/storage/s3"
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)
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const (
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idleTimeout = 120 * time.Second
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)
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type Controller struct {
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Config *config.Config
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Router *mux.Router
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StoreController storage.StoreController
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Log log.Logger
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Audit *log.Logger
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Server *http.Server
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Metrics monitoring.MetricServer
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wgShutDown *goSync.WaitGroup // use it to gracefully shutdown goroutines
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}
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func NewController(config *config.Config) *Controller {
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var controller Controller
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logger := log.NewLogger(config.Log.Level, config.Log.Output)
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controller.Config = config
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controller.Log = logger
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controller.wgShutDown = new(goSync.WaitGroup)
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if config.Log.Audit != "" {
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audit := log.NewAuditLogger(config.Log.Level, config.Log.Audit)
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controller.Audit = audit
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}
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return &controller
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}
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func (c *Controller) CORSHeaders() mux.MiddlewareFunc {
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return func(next http.Handler) http.Handler {
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return http.HandlerFunc(func(response http.ResponseWriter, request *http.Request) {
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// CORS
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c.CORSHandler(response, request)
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next.ServeHTTP(response, request)
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})
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}
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}
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func (c *Controller) CORSHandler(response http.ResponseWriter, request *http.Request) {
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// allow origin as specified in config if not accept request from anywhere.
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if c.Config.HTTP.AllowOrigin == "" {
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response.Header().Set("Access-Control-Allow-Origin", "*")
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} else {
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response.Header().Set("Access-Control-Allow-Origin", c.Config.HTTP.AllowOrigin)
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}
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response.Header().Set("Access-Control-Allow-Methods", "HEAD,GET,POST,OPTIONS")
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response.Header().Set("Access-Control-Allow-Headers", "Authorization")
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}
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func DumpRuntimeParams(log log.Logger) {
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var rLimit syscall.Rlimit
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evt := log.Info().Int("cpus", runtime.NumCPU())
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err := syscall.Getrlimit(syscall.RLIMIT_NOFILE, &rLimit)
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if err == nil {
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evt = evt.Uint64("max. open files", rLimit.Cur)
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}
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if content, err := ioutil.ReadFile("/proc/sys/net/core/somaxconn"); err == nil {
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evt = evt.Str("listen backlog", strings.TrimSuffix(string(content), "\n"))
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}
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if content, err := ioutil.ReadFile("/proc/sys/user/max_inotify_watches"); err == nil {
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evt = evt.Str("max. inotify watches", strings.TrimSuffix(string(content), "\n"))
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}
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evt.Msg("runtime params")
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}
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func (c *Controller) Run(reloadCtx context.Context) error {
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// print the current configuration, but strip secrets
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c.Log.Info().Interface("params", c.Config.Sanitize()).Msg("configuration settings")
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// print the current runtime environment
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DumpRuntimeParams(c.Log)
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// setup HTTP API router
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engine := mux.NewRouter()
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// rate-limit HTTP requests if enabled
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if c.Config.HTTP.Ratelimit != nil {
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if c.Config.HTTP.Ratelimit.Rate != nil {
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engine.Use(RateLimiter(c, *c.Config.HTTP.Ratelimit.Rate))
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}
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for _, mrlim := range c.Config.HTTP.Ratelimit.Methods {
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engine.Use(MethodRateLimiter(c, mrlim.Method, mrlim.Rate))
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}
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}
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engine.Use(
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c.CORSHeaders(),
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SessionLogger(c),
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handlers.RecoveryHandler(handlers.RecoveryLogger(c.Log),
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handlers.PrintRecoveryStack(false)))
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if c.Audit != nil {
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engine.Use(SessionAuditLogger(c.Audit))
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}
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c.Router = engine
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c.Router.UseEncodedPath()
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var enabled bool
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if c.Config != nil &&
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c.Config.Extensions != nil &&
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c.Config.Extensions.Metrics != nil &&
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*c.Config.Extensions.Metrics.Enable {
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enabled = true
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}
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c.Metrics = monitoring.NewMetricsServer(enabled, c.Log)
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if err := c.InitImageStore(reloadCtx); err != nil {
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return err
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}
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monitoring.SetServerInfo(c.Metrics, c.Config.Commit, c.Config.BinaryType, c.Config.GoVersion,
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c.Config.DistSpecVersion)
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// nolint: contextcheck
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_ = NewRouteHandler(c)
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addr := fmt.Sprintf("%s:%s", c.Config.HTTP.Address, c.Config.HTTP.Port)
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server := &http.Server{
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Addr: addr,
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Handler: c.Router,
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IdleTimeout: idleTimeout,
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}
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c.Server = server
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// Create the listener
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listener, err := net.Listen("tcp", addr)
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if err != nil {
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return err
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}
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if c.Config.HTTP.TLS != nil && c.Config.HTTP.TLS.Key != "" && c.Config.HTTP.TLS.Cert != "" {
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server.TLSConfig = &tls.Config{
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CipherSuites: []uint16{
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tls.TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384,
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tls.TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384,
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tls.TLS_ECDHE_ECDSA_WITH_CHACHA20_POLY1305,
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tls.TLS_ECDHE_RSA_WITH_CHACHA20_POLY1305,
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tls.TLS_ECDHE_ECDSA_WITH_AES_128_GCM_SHA256,
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tls.TLS_ECDHE_RSA_WITH_AES_128_GCM_SHA256,
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},
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CurvePreferences: []tls.CurveID{
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tls.CurveP256,
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tls.X25519,
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},
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PreferServerCipherSuites: true,
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MinVersion: tls.VersionTLS12,
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}
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if c.Config.HTTP.TLS.CACert != "" {
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clientAuth := tls.VerifyClientCertIfGiven
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if (c.Config.HTTP.Auth == nil || c.Config.HTTP.Auth.HTPasswd.Path == "") && !c.Config.HTTP.AllowReadAccess {
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clientAuth = tls.RequireAndVerifyClientCert
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}
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caCert, err := ioutil.ReadFile(c.Config.HTTP.TLS.CACert)
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if err != nil {
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panic(err)
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}
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caCertPool := x509.NewCertPool()
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if !caCertPool.AppendCertsFromPEM(caCert) {
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panic(errors.ErrBadCACert)
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}
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server.TLSConfig.ClientAuth = clientAuth
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server.TLSConfig.ClientCAs = caCertPool
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}
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return server.ServeTLS(listener, c.Config.HTTP.TLS.Cert, c.Config.HTTP.TLS.Key)
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}
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return server.Serve(listener)
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}
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func (c *Controller) InitImageStore(reloadCtx context.Context) error {
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c.StoreController = storage.StoreController{}
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if c.Config.Storage.RootDirectory != "" {
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// no need to validate hard links work on s3
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if c.Config.Storage.Dedupe && c.Config.Storage.StorageDriver == nil {
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err := storage.ValidateHardLink(c.Config.Storage.RootDirectory)
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if err != nil {
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c.Log.Warn().Msg("input storage root directory filesystem does not supports hardlinking," +
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"disabling dedupe functionality")
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c.Config.Storage.Dedupe = false
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}
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}
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var defaultStore storage.ImageStore
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if c.Config.Storage.StorageDriver == nil {
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defaultStore = storage.NewImageStore(c.Config.Storage.RootDirectory,
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c.Config.Storage.GC, c.Config.Storage.GCDelay, c.Config.Storage.Dedupe, c.Config.Storage.Commit, c.Log, c.Metrics)
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} else {
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storeName := fmt.Sprintf("%v", c.Config.Storage.StorageDriver["name"])
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if storeName != storage.S3StorageDriverName {
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c.Log.Fatal().Err(errors.ErrBadConfig).Msgf("unsupported storage driver: %s",
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c.Config.Storage.StorageDriver["name"])
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}
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// Init a Storager from connection string.
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store, err := factory.Create(storeName, c.Config.Storage.StorageDriver)
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if err != nil {
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c.Log.Error().Err(err).Str("rootDir", c.Config.Storage.RootDirectory).Msg("unable to create s3 service")
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return err
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}
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/* in the case of s3 c.Config.Storage.RootDirectory is used for caching blobs locally and
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c.Config.Storage.StorageDriver["rootdirectory"] is the actual rootDir in s3 */
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rootDir := "/"
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if c.Config.Storage.StorageDriver["rootdirectory"] != nil {
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rootDir = fmt.Sprintf("%v", c.Config.Storage.StorageDriver["rootdirectory"])
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}
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defaultStore = s3.NewImageStore(rootDir, c.Config.Storage.RootDirectory,
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c.Config.Storage.GC, c.Config.Storage.GCDelay, c.Config.Storage.Dedupe,
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c.Config.Storage.Commit, c.Log, c.Metrics, store)
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}
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c.StoreController.DefaultStore = defaultStore
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} else {
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// we can't proceed without global storage
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c.Log.Error().Err(errors.ErrImgStoreNotFound).Msg("controller: no storage config provided")
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return errors.ErrImgStoreNotFound
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}
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if c.Config.Storage.SubPaths != nil {
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if len(c.Config.Storage.SubPaths) > 0 {
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subPaths := c.Config.Storage.SubPaths
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subImageStore := make(map[string]storage.ImageStore)
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// creating image store per subpaths
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for route, storageConfig := range subPaths {
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// no need to validate hard links work on s3
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if storageConfig.Dedupe && storageConfig.StorageDriver == nil {
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err := storage.ValidateHardLink(storageConfig.RootDirectory)
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if err != nil {
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c.Log.Warn().Msg("input storage root directory filesystem does not supports hardlinking, " +
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"disabling dedupe functionality")
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storageConfig.Dedupe = false
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}
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}
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if storageConfig.StorageDriver == nil {
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subImageStore[route] = storage.NewImageStore(storageConfig.RootDirectory,
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storageConfig.GC, storageConfig.GCDelay, storageConfig.Dedupe, storageConfig.Commit, c.Log, c.Metrics)
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} else {
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storeName := fmt.Sprintf("%v", storageConfig.StorageDriver["name"])
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if storeName != storage.S3StorageDriverName {
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c.Log.Fatal().Err(errors.ErrBadConfig).Msgf("unsupported storage driver: %s", storageConfig.StorageDriver["name"])
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}
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// Init a Storager from connection string.
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store, err := factory.Create(storeName, storageConfig.StorageDriver)
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if err != nil {
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c.Log.Error().Err(err).Str("rootDir", storageConfig.RootDirectory).Msg("Unable to create s3 service")
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return err
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}
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/* in the case of s3 c.Config.Storage.RootDirectory is used for caching blobs locally and
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c.Config.Storage.StorageDriver["rootdirectory"] is the actual rootDir in s3 */
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rootDir := "/"
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if c.Config.Storage.StorageDriver["rootdirectory"] != nil {
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rootDir = fmt.Sprintf("%v", c.Config.Storage.StorageDriver["rootdirectory"])
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}
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subImageStore[route] = s3.NewImageStore(rootDir, storageConfig.RootDirectory,
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storageConfig.GC, storageConfig.GCDelay, storageConfig.Dedupe, storageConfig.Commit, c.Log, c.Metrics, store)
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}
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}
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c.StoreController.SubStore = subImageStore
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}
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}
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c.StartBackgroundTasks(reloadCtx)
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return nil
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}
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func (c *Controller) LoadNewConfig(reloadCtx context.Context, config *config.Config) {
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// reload access control config
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c.Config.AccessControl = config.AccessControl
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c.Config.HTTP.RawAccessControl = config.HTTP.RawAccessControl
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// Enable extensions if extension config is provided
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if config.Extensions != nil && config.Extensions.Sync != nil {
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// reload sync config
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c.Config.Extensions.Sync = config.Extensions.Sync
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ext.EnableSyncExtension(reloadCtx, c.Config, c.wgShutDown, c.StoreController, c.Log)
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} else if c.Config.Extensions != nil {
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c.Config.Extensions.Sync = nil
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}
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c.Log.Info().Interface("reloaded params", c.Config.Sanitize()).Msg("new configuration settings")
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}
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func (c *Controller) Shutdown() {
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// wait gracefully
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c.wgShutDown.Wait()
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ctx := context.Background()
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_ = c.Server.Shutdown(ctx)
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}
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func (c *Controller) StartBackgroundTasks(reloadCtx context.Context) {
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// Enable extensions if extension config is provided for DefaultStore
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if c.Config != nil && c.Config.Extensions != nil {
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ext.EnableExtensions(c.Config, c.Log, c.Config.Storage.RootDirectory)
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}
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if c.Config.Storage.SubPaths != nil {
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for _, storageConfig := range c.Config.Storage.SubPaths {
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// Enable extensions if extension config is provided for subImageStore
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if c.Config != nil && c.Config.Extensions != nil {
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ext.EnableExtensions(c.Config, c.Log, storageConfig.RootDirectory)
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}
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}
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}
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// Enable extensions if extension config is provided for storeController
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if c.Config.Extensions != nil {
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if c.Config.Extensions.Sync != nil && *c.Config.Extensions.Sync.Enable {
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ext.EnableSyncExtension(reloadCtx, c.Config, c.wgShutDown, c.StoreController, c.Log)
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}
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}
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if c.Config.Extensions != nil {
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ext.EnableScrubExtension(c.Config, c.Log, false, nil, "")
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}
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go StartPeriodicTasks(c.StoreController.DefaultStore, c.StoreController.SubStore, c.Config.Storage.SubPaths,
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c.Config.Storage.GC, c.Config.Storage.GCInterval, c.Config.Extensions, c.Log)
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}
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func StartPeriodicTasks(defaultStore storage.ImageStore, subStore map[string]storage.ImageStore,
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subPaths map[string]config.StorageConfig, gcEnabled bool, gcInterval time.Duration,
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extensions *extconf.ExtensionConfig, log log.Logger,
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) {
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// start periodic gc and/or scrub for DefaultStore
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StartPeriodicTasksForImageStore(defaultStore, gcEnabled, gcInterval, extensions, log)
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for route, storageConfig := range subPaths {
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// Enable running garbage-collect or/and scrub periodically for subImageStore
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StartPeriodicTasksForImageStore(subStore[route], storageConfig.GC, storageConfig.GCInterval, extensions, log)
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}
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}
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func StartPeriodicTasksForImageStore(imageStore storage.ImageStore, configGC bool, configGCInterval time.Duration,
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extensions *extconf.ExtensionConfig, log log.Logger,
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) {
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scrubInterval := time.Duration(0)
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gcInterval := time.Duration(0)
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gc := false
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scrub := false
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if configGC && configGCInterval != 0 {
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gcInterval = configGCInterval
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gc = true
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}
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if extensions != nil && extensions.Scrub != nil && extensions.Scrub.Interval != 0 {
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scrubInterval = extensions.Scrub.Interval
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scrub = true
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}
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interval := minPeriodicInterval(scrub, gc, scrubInterval, gcInterval)
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if interval == time.Duration(0) {
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return
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}
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log.Info().Msg(fmt.Sprintf("Periodic interval for %s set to %s", imageStore.RootDir(), interval))
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var lastGC, lastScrub time.Time
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for {
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log.Info().Msg(fmt.Sprintf("Starting periodic background tasks for %s", imageStore.RootDir()))
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// Enable running garbage-collect or/and scrub periodically for imageStore
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RunBackgroundTasks(imageStore, gc, scrub, log)
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log.Info().Msg(fmt.Sprintf("Finishing periodic background tasks for %s", imageStore.RootDir()))
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if gc {
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lastGC = time.Now()
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}
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if scrub {
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lastScrub = time.Now()
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}
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time.Sleep(interval)
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if !lastGC.IsZero() && time.Since(lastGC) >= gcInterval {
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gc = true
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}
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if !lastScrub.IsZero() && time.Since(lastScrub) >= scrubInterval {
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scrub = true
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}
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}
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}
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func RunBackgroundTasks(imgStore storage.ImageStore, gc, scrub bool, log log.Logger) {
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repos, err := imgStore.GetRepositories()
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if err != nil {
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log.Error().Err(err).Msg(fmt.Sprintf("error while running background task for %s", imgStore.RootDir()))
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return
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}
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for _, repo := range repos {
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if gc {
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start := time.Now()
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// run gc for this repo
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imgStore.RunGCRepo(repo)
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elapsed := time.Since(start)
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log.Info().Msg(fmt.Sprintf("gc for %s executed in %s", repo, elapsed))
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time.Sleep(1 * time.Minute)
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}
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if scrub {
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start := time.Now()
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// run scrub for this repo
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ext.EnableScrubExtension(nil, log, true, imgStore, repo)
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elapsed := time.Since(start)
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log.Info().Msg(fmt.Sprintf("scrub for %s executed in %s", repo, elapsed))
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time.Sleep(1 * time.Minute)
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}
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}
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}
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func minPeriodicInterval(scrub, gc bool, scrubInterval, gcInterval time.Duration) time.Duration {
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if scrub && gc {
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if scrubInterval <= gcInterval {
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return scrubInterval
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}
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return gcInterval
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}
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if scrub {
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return scrubInterval
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}
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if gc {
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return gcInterval
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}
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return time.Duration(0)
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}
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