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- Currently for the `nosql` module (which simply said provides a manager for redis clients) returns the [`redis.UniversalClient`](https://pkg.go.dev/github.com/redis/go-redis/v9#UniversalClient) interface. The interfaces exposes all available commands. - In generalm, dead code elimination should be able to take care of not generating the machine code for methods that aren't being used. However in this specific case, dead code elimination either is disabled or gives up on trying because of exhaustive call stack the client by `GetRedisClient` is used. - Help the Go compiler by explicitly specifying which methods we use. This reduces the binary size by ~400KB (397312 bytes). As Go no longer generate machine code for commands that aren't being used. - There's a **CAVEAT** with this, if a developer wants to use a new method that isn't specified, they will have to know about this hack (by following the definition of existing Redis methods) and add the method definition from the Redis library to the `RedisClient` interface.
258 lines
6.8 KiB
Go
258 lines
6.8 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/redis/go-redis/v9"
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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.RedisClient.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 RedisClient) {
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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 any
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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) RedisClient {
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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.RedisClient = 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.RedisClient = 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.RedisClient = 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.RedisClient = 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 "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. Forgejo 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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