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	Change all license headers to comply with REUSE specification. Fix #16132 Co-authored-by: flynnnnnnnnnn <flynnnnnnnnnn@github> Co-authored-by: John Olheiser <john.olheiser@gmail.com>
		
			
				
	
	
		
			263 lines
		
	
	
		
			7.0 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
			
		
		
	
	
			263 lines
		
	
	
		
			7.0 KiB
		
	
	
	
		
			Go
		
	
	
	
	
	
// Copyright 2020 The Gitea Authors. All rights reserved.
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// SPDX-License-Identifier: MIT
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package nosql
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import (
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	"crypto/tls"
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	"net/url"
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	"path"
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	"runtime/pprof"
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	"strconv"
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	"strings"
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	"code.gitea.io/gitea/modules/log"
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	"github.com/go-redis/redis/v8"
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)
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var replacer = strings.NewReplacer("_", "", "-", "")
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// CloseRedisClient closes a redis client
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func (m *Manager) CloseRedisClient(connection string) error {
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	m.mutex.Lock()
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	defer m.mutex.Unlock()
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	client, ok := m.RedisConnections[connection]
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	if !ok {
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		connection = ToRedisURI(connection).String()
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		client, ok = m.RedisConnections[connection]
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	}
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	if !ok {
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		return nil
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	}
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	client.count--
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	if client.count > 0 {
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		return nil
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	}
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	for _, name := range client.name {
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		delete(m.RedisConnections, name)
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	}
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	return client.UniversalClient.Close()
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}
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// GetRedisClient gets a redis client for a particular connection
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func (m *Manager) GetRedisClient(connection string) (client redis.UniversalClient) {
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	// Because we want associate any goroutines created by this call to the main nosqldb context we need to
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	// wrap this in a goroutine labelled with the nosqldb context
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	done := make(chan struct{})
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	var recovered interface{}
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	go func() {
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		defer func() {
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			recovered = recover()
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			if recovered != nil {
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				log.Critical("PANIC during GetRedisClient: %v\nStacktrace: %s", recovered, log.Stack(2))
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			}
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			close(done)
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		}()
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		pprof.SetGoroutineLabels(m.ctx)
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		client = m.getRedisClient(connection)
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	}()
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	<-done
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	if recovered != nil {
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		panic(recovered)
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	}
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	return client
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}
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func (m *Manager) getRedisClient(connection string) redis.UniversalClient {
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	m.mutex.Lock()
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	defer m.mutex.Unlock()
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	client, ok := m.RedisConnections[connection]
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	if ok {
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		client.count++
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		return client
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	}
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	uri := ToRedisURI(connection)
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	client, ok = m.RedisConnections[uri.String()]
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	if ok {
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		client.count++
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		return client
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	}
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	client = &redisClientHolder{
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		name: []string{connection, uri.String()},
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	}
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	opts := getRedisOptions(uri)
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	tlsConfig := getRedisTLSOptions(uri)
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	clientName := uri.Query().Get("clientname")
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	if len(clientName) > 0 {
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		client.name = append(client.name, clientName)
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	}
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	switch uri.Scheme {
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	case "redis+sentinels":
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		fallthrough
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	case "rediss+sentinel":
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		opts.TLSConfig = tlsConfig
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		fallthrough
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	case "redis+sentinel":
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		client.UniversalClient = redis.NewFailoverClient(opts.Failover())
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	case "redis+clusters":
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		fallthrough
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	case "rediss+cluster":
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		opts.TLSConfig = tlsConfig
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		fallthrough
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	case "redis+cluster":
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		client.UniversalClient = redis.NewClusterClient(opts.Cluster())
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	case "redis+socket":
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		simpleOpts := opts.Simple()
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		simpleOpts.Network = "unix"
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		simpleOpts.Addr = path.Join(uri.Host, uri.Path)
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		client.UniversalClient = redis.NewClient(simpleOpts)
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	case "rediss":
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		opts.TLSConfig = tlsConfig
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		fallthrough
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	case "redis":
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		client.UniversalClient = redis.NewClient(opts.Simple())
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	default:
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		return nil
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	}
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	for _, name := range client.name {
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		m.RedisConnections[name] = client
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	}
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	client.count++
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	return client
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}
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// getRedisOptions pulls various configuration options based on the RedisUri format and converts them to go-redis's
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// UniversalOptions fields. This function explicitly excludes fields related to TLS configuration, which is
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// conditionally attached to this options struct before being converted to the specific type for the redis scheme being
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// used, and only in scenarios where TLS is applicable (e.g. rediss://, redis+clusters://).
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func getRedisOptions(uri *url.URL) *redis.UniversalOptions {
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	opts := &redis.UniversalOptions{}
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	// Handle username/password
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	if password, ok := uri.User.Password(); ok {
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		opts.Password = password
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		// Username does not appear to be handled by redis.Options
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		opts.Username = uri.User.Username()
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	} else if uri.User.Username() != "" {
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		// assume this is the password
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		opts.Password = uri.User.Username()
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	}
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	// Now handle the uri query sets
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	for k, v := range uri.Query() {
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		switch replacer.Replace(strings.ToLower(k)) {
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		case "addr":
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			opts.Addrs = append(opts.Addrs, v...)
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		case "addrs":
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			opts.Addrs = append(opts.Addrs, strings.Split(v[0], ",")...)
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		case "username":
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			opts.Username = v[0]
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		case "password":
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			opts.Password = v[0]
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		case "database":
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			fallthrough
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		case "db":
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			opts.DB, _ = strconv.Atoi(v[0])
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		case "maxretries":
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			opts.MaxRetries, _ = strconv.Atoi(v[0])
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		case "minretrybackoff":
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			opts.MinRetryBackoff = valToTimeDuration(v)
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		case "maxretrybackoff":
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			opts.MaxRetryBackoff = valToTimeDuration(v)
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		case "timeout":
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			timeout := valToTimeDuration(v)
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			if timeout != 0 {
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				if opts.DialTimeout == 0 {
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					opts.DialTimeout = timeout
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				}
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				if opts.ReadTimeout == 0 {
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					opts.ReadTimeout = timeout
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				}
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			}
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		case "dialtimeout":
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			opts.DialTimeout = valToTimeDuration(v)
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		case "readtimeout":
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			opts.ReadTimeout = valToTimeDuration(v)
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		case "writetimeout":
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			opts.WriteTimeout = valToTimeDuration(v)
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		case "poolsize":
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			opts.PoolSize, _ = strconv.Atoi(v[0])
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		case "minidleconns":
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			opts.MinIdleConns, _ = strconv.Atoi(v[0])
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		case "pooltimeout":
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			opts.PoolTimeout = valToTimeDuration(v)
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		case "idletimeout":
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			opts.IdleTimeout = valToTimeDuration(v)
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		case "idlecheckfrequency":
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			opts.IdleCheckFrequency = valToTimeDuration(v)
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		case "maxredirects":
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			opts.MaxRedirects, _ = strconv.Atoi(v[0])
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		case "readonly":
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			opts.ReadOnly, _ = strconv.ParseBool(v[0])
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		case "routebylatency":
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			opts.RouteByLatency, _ = strconv.ParseBool(v[0])
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		case "routerandomly":
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			opts.RouteRandomly, _ = strconv.ParseBool(v[0])
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		case "sentinelmasterid":
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			fallthrough
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		case "mastername":
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			opts.MasterName = v[0]
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		case "sentinelusername":
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			opts.SentinelUsername = v[0]
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		case "sentinelpassword":
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			opts.SentinelPassword = v[0]
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		}
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	}
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	if uri.Host != "" {
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		opts.Addrs = append(opts.Addrs, strings.Split(uri.Host, ",")...)
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	}
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	// A redis connection string uses the path section of the URI in two different ways. In a TCP-based connection, the
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	// path will be a database index to automatically have the client SELECT. In a Unix socket connection, it will be the
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	// file path. We only want to try to coerce this to the database index when we're not expecting a file path so that
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	// the error log stays clean.
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	if uri.Path != "" && uri.Scheme != "redis+socket" {
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		if db, err := strconv.Atoi(uri.Path[1:]); err == nil {
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			opts.DB = db
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		} else {
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			log.Error("Provided database identifier '%s' is not a valid integer. Gitea will ignore this option.", uri.Path)
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		}
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	}
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	return opts
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}
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// getRedisTlsOptions parses RedisUri TLS configuration parameters and converts them to the go TLS configuration
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// equivalent fields.
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func getRedisTLSOptions(uri *url.URL) *tls.Config {
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	tlsConfig := &tls.Config{}
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	skipverify := uri.Query().Get("skipverify")
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	if len(skipverify) > 0 {
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		skipverify, err := strconv.ParseBool(skipverify)
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		if err == nil {
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			tlsConfig.InsecureSkipVerify = skipverify
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		}
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	}
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	insecureskipverify := uri.Query().Get("insecureskipverify")
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	if len(insecureskipverify) > 0 {
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		insecureskipverify, err := strconv.ParseBool(insecureskipverify)
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		if err == nil {
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			tlsConfig.InsecureSkipVerify = insecureskipverify
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		}
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	}
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	return tlsConfig
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}
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