config.go 24 KB

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  1. package sarama
  2. import (
  3. "compress/gzip"
  4. "crypto/tls"
  5. "fmt"
  6. "io/ioutil"
  7. "net"
  8. "regexp"
  9. "time"
  10. "github.com/rcrowley/go-metrics"
  11. )
  12. const defaultClientID = "sarama"
  13. var validID = regexp.MustCompile(`\A[A-Za-z0-9._-]+\z`)
  14. // Config is used to pass multiple configuration options to Sarama's constructors.
  15. type Config struct {
  16. // Admin is the namespace for ClusterAdmin properties used by the administrative Kafka client.
  17. Admin struct {
  18. // The maximum duration the administrative Kafka client will wait for ClusterAdmin operations,
  19. // including topics, brokers, configurations and ACLs (defaults to 3 seconds).
  20. Timeout time.Duration
  21. }
  22. // Net is the namespace for network-level properties used by the Broker, and
  23. // shared by the Client/Producer/Consumer.
  24. Net struct {
  25. // How many outstanding requests a connection is allowed to have before
  26. // sending on it blocks (default 5).
  27. MaxOpenRequests int
  28. // All three of the below configurations are similar to the
  29. // `socket.timeout.ms` setting in JVM kafka. All of them default
  30. // to 30 seconds.
  31. DialTimeout time.Duration // How long to wait for the initial connection.
  32. ReadTimeout time.Duration // How long to wait for a response.
  33. WriteTimeout time.Duration // How long to wait for a transmit.
  34. TLS struct {
  35. // Whether or not to use TLS when connecting to the broker
  36. // (defaults to false).
  37. Enable bool
  38. // The TLS configuration to use for secure connections if
  39. // enabled (defaults to nil).
  40. Config *tls.Config
  41. }
  42. // SASL based authentication with broker. While there are multiple SASL authentication methods
  43. // the current implementation is limited to plaintext (SASL/PLAIN) authentication
  44. SASL struct {
  45. // Whether or not to use SASL authentication when connecting to the broker
  46. // (defaults to false).
  47. Enable bool
  48. // Whether or not to send the Kafka SASL handshake first if enabled
  49. // (defaults to true). You should only set this to false if you're using
  50. // a non-Kafka SASL proxy.
  51. Handshake bool
  52. //username and password for SASL/PLAIN authentication
  53. User string
  54. Password string
  55. }
  56. // KeepAlive specifies the keep-alive period for an active network connection.
  57. // If zero, keep-alives are disabled. (default is 0: disabled).
  58. KeepAlive time.Duration
  59. // LocalAddr is the local address to use when dialing an
  60. // address. The address must be of a compatible type for the
  61. // network being dialed.
  62. // If nil, a local address is automatically chosen.
  63. LocalAddr net.Addr
  64. }
  65. // Metadata is the namespace for metadata management properties used by the
  66. // Client, and shared by the Producer/Consumer.
  67. Metadata struct {
  68. Retry struct {
  69. // The total number of times to retry a metadata request when the
  70. // cluster is in the middle of a leader election (default 3).
  71. Max int
  72. // How long to wait for leader election to occur before retrying
  73. // (default 250ms). Similar to the JVM's `retry.backoff.ms`.
  74. Backoff time.Duration
  75. }
  76. // How frequently to refresh the cluster metadata in the background.
  77. // Defaults to 10 minutes. Set to 0 to disable. Similar to
  78. // `topic.metadata.refresh.interval.ms` in the JVM version.
  79. RefreshFrequency time.Duration
  80. // Whether to maintain a full set of metadata for all topics, or just
  81. // the minimal set that has been necessary so far. The full set is simpler
  82. // and usually more convenient, but can take up a substantial amount of
  83. // memory if you have many topics and partitions. Defaults to true.
  84. Full bool
  85. }
  86. // Producer is the namespace for configuration related to producing messages,
  87. // used by the Producer.
  88. Producer struct {
  89. // The maximum permitted size of a message (defaults to 1000000). Should be
  90. // set equal to or smaller than the broker's `message.max.bytes`.
  91. MaxMessageBytes int
  92. // The level of acknowledgement reliability needed from the broker (defaults
  93. // to WaitForLocal). Equivalent to the `request.required.acks` setting of the
  94. // JVM producer.
  95. RequiredAcks RequiredAcks
  96. // The maximum duration the broker will wait the receipt of the number of
  97. // RequiredAcks (defaults to 10 seconds). This is only relevant when
  98. // RequiredAcks is set to WaitForAll or a number > 1. Only supports
  99. // millisecond resolution, nanoseconds will be truncated. Equivalent to
  100. // the JVM producer's `request.timeout.ms` setting.
  101. Timeout time.Duration
  102. // The type of compression to use on messages (defaults to no compression).
  103. // Similar to `compression.codec` setting of the JVM producer.
  104. Compression CompressionCodec
  105. // The level of compression to use on messages. The meaning depends
  106. // on the actual compression type used and defaults to default compression
  107. // level for the codec.
  108. CompressionLevel int
  109. // Generates partitioners for choosing the partition to send messages to
  110. // (defaults to hashing the message key). Similar to the `partitioner.class`
  111. // setting for the JVM producer.
  112. Partitioner PartitionerConstructor
  113. // Return specifies what channels will be populated. If they are set to true,
  114. // you must read from the respective channels to prevent deadlock. If,
  115. // however, this config is used to create a `SyncProducer`, both must be set
  116. // to true and you shall not read from the channels since the producer does
  117. // this internally.
  118. Return struct {
  119. // If enabled, successfully delivered messages will be returned on the
  120. // Successes channel (default disabled).
  121. Successes bool
  122. // If enabled, messages that failed to deliver will be returned on the
  123. // Errors channel, including error (default enabled).
  124. Errors bool
  125. }
  126. // The following config options control how often messages are batched up and
  127. // sent to the broker. By default, messages are sent as fast as possible, and
  128. // all messages received while the current batch is in-flight are placed
  129. // into the subsequent batch.
  130. Flush struct {
  131. // The best-effort number of bytes needed to trigger a flush. Use the
  132. // global sarama.MaxRequestSize to set a hard upper limit.
  133. Bytes int
  134. // The best-effort number of messages needed to trigger a flush. Use
  135. // `MaxMessages` to set a hard upper limit.
  136. Messages int
  137. // The best-effort frequency of flushes. Equivalent to
  138. // `queue.buffering.max.ms` setting of JVM producer.
  139. Frequency time.Duration
  140. // The maximum number of messages the producer will send in a single
  141. // broker request. Defaults to 0 for unlimited. Similar to
  142. // `queue.buffering.max.messages` in the JVM producer.
  143. MaxMessages int
  144. }
  145. Retry struct {
  146. // The total number of times to retry sending a message (default 3).
  147. // Similar to the `message.send.max.retries` setting of the JVM producer.
  148. Max int
  149. // How long to wait for the cluster to settle between retries
  150. // (default 100ms). Similar to the `retry.backoff.ms` setting of the
  151. // JVM producer.
  152. Backoff time.Duration
  153. }
  154. }
  155. // Consumer is the namespace for configuration related to consuming messages,
  156. // used by the Consumer.
  157. Consumer struct {
  158. // Group is the namespace for configuring consumer group.
  159. Group struct {
  160. Session struct {
  161. // The timeout used to detect consumer failures when using Kafka's group management facility.
  162. // The consumer sends periodic heartbeats to indicate its liveness to the broker.
  163. // If no heartbeats are received by the broker before the expiration of this session timeout,
  164. // then the broker will remove this consumer from the group and initiate a rebalance.
  165. // Note that the value must be in the allowable range as configured in the broker configuration
  166. // by `group.min.session.timeout.ms` and `group.max.session.timeout.ms` (default 10s)
  167. Timeout time.Duration
  168. }
  169. Heartbeat struct {
  170. // The expected time between heartbeats to the consumer coordinator when using Kafka's group
  171. // management facilities. Heartbeats are used to ensure that the consumer's session stays active and
  172. // to facilitate rebalancing when new consumers join or leave the group.
  173. // The value must be set lower than Consumer.Group.Session.Timeout, but typically should be set no
  174. // higher than 1/3 of that value.
  175. // It can be adjusted even lower to control the expected time for normal rebalances (default 3s)
  176. Interval time.Duration
  177. }
  178. Rebalance struct {
  179. // Strategy for allocating topic partitions to members (default BalanceStrategyRange)
  180. Strategy BalanceStrategy
  181. // The maximum allowed time for each worker to join the group once a rebalance has begun.
  182. // This is basically a limit on the amount of time needed for all tasks to flush any pending
  183. // data and commit offsets. If the timeout is exceeded, then the worker will be removed from
  184. // the group, which will cause offset commit failures (default 60s).
  185. Timeout time.Duration
  186. Retry struct {
  187. // When a new consumer joins a consumer group the set of consumers attempt to "rebalance"
  188. // the load to assign partitions to each consumer. If the set of consumers changes while
  189. // this assignment is taking place the rebalance will fail and retry. This setting controls
  190. // the maximum number of attempts before giving up (default 4).
  191. Max int
  192. // Backoff time between retries during rebalance (default 2s)
  193. Backoff time.Duration
  194. }
  195. }
  196. Member struct {
  197. // Custom metadata to include when joining the group. The user data for all joined members
  198. // can be retrieved by sending a DescribeGroupRequest to the broker that is the
  199. // coordinator for the group.
  200. UserData []byte
  201. }
  202. }
  203. Retry struct {
  204. // How long to wait after a failing to read from a partition before
  205. // trying again (default 2s).
  206. Backoff time.Duration
  207. }
  208. // Fetch is the namespace for controlling how many bytes are retrieved by any
  209. // given request.
  210. Fetch struct {
  211. // The minimum number of message bytes to fetch in a request - the broker
  212. // will wait until at least this many are available. The default is 1,
  213. // as 0 causes the consumer to spin when no messages are available.
  214. // Equivalent to the JVM's `fetch.min.bytes`.
  215. Min int32
  216. // The default number of message bytes to fetch from the broker in each
  217. // request (default 1MB). This should be larger than the majority of
  218. // your messages, or else the consumer will spend a lot of time
  219. // negotiating sizes and not actually consuming. Similar to the JVM's
  220. // `fetch.message.max.bytes`.
  221. Default int32
  222. // The maximum number of message bytes to fetch from the broker in a
  223. // single request. Messages larger than this will return
  224. // ErrMessageTooLarge and will not be consumable, so you must be sure
  225. // this is at least as large as your largest message. Defaults to 0
  226. // (no limit). Similar to the JVM's `fetch.message.max.bytes`. The
  227. // global `sarama.MaxResponseSize` still applies.
  228. Max int32
  229. }
  230. // The maximum amount of time the broker will wait for Consumer.Fetch.Min
  231. // bytes to become available before it returns fewer than that anyways. The
  232. // default is 250ms, since 0 causes the consumer to spin when no events are
  233. // available. 100-500ms is a reasonable range for most cases. Kafka only
  234. // supports precision up to milliseconds; nanoseconds will be truncated.
  235. // Equivalent to the JVM's `fetch.wait.max.ms`.
  236. MaxWaitTime time.Duration
  237. // The maximum amount of time the consumer expects a message takes to
  238. // process for the user. If writing to the Messages channel takes longer
  239. // than this, that partition will stop fetching more messages until it
  240. // can proceed again.
  241. // Note that, since the Messages channel is buffered, the actual grace time is
  242. // (MaxProcessingTime * ChanneBufferSize). Defaults to 100ms.
  243. // If a message is not written to the Messages channel between two ticks
  244. // of the expiryTicker then a timeout is detected.
  245. // Using a ticker instead of a timer to detect timeouts should typically
  246. // result in many fewer calls to Timer functions which may result in a
  247. // significant performance improvement if many messages are being sent
  248. // and timeouts are infrequent.
  249. // The disadvantage of using a ticker instead of a timer is that
  250. // timeouts will be less accurate. That is, the effective timeout could
  251. // be between `MaxProcessingTime` and `2 * MaxProcessingTime`. For
  252. // example, if `MaxProcessingTime` is 100ms then a delay of 180ms
  253. // between two messages being sent may not be recognized as a timeout.
  254. MaxProcessingTime time.Duration
  255. // Return specifies what channels will be populated. If they are set to true,
  256. // you must read from them to prevent deadlock.
  257. Return struct {
  258. // If enabled, any errors that occurred while consuming are returned on
  259. // the Errors channel (default disabled).
  260. Errors bool
  261. }
  262. // Offsets specifies configuration for how and when to commit consumed
  263. // offsets. This currently requires the manual use of an OffsetManager
  264. // but will eventually be automated.
  265. Offsets struct {
  266. // How frequently to commit updated offsets. Defaults to 1s.
  267. CommitInterval time.Duration
  268. // The initial offset to use if no offset was previously committed.
  269. // Should be OffsetNewest or OffsetOldest. Defaults to OffsetNewest.
  270. Initial int64
  271. // The retention duration for committed offsets. If zero, disabled
  272. // (in which case the `offsets.retention.minutes` option on the
  273. // broker will be used). Kafka only supports precision up to
  274. // milliseconds; nanoseconds will be truncated. Requires Kafka
  275. // broker version 0.9.0 or later.
  276. // (default is 0: disabled).
  277. Retention time.Duration
  278. Retry struct {
  279. // The total number of times to retry failing commit
  280. // requests during OffsetManager shutdown (default 3).
  281. Max int
  282. }
  283. }
  284. }
  285. // A user-provided string sent with every request to the brokers for logging,
  286. // debugging, and auditing purposes. Defaults to "sarama", but you should
  287. // probably set it to something specific to your application.
  288. ClientID string
  289. // The number of events to buffer in internal and external channels. This
  290. // permits the producer and consumer to continue processing some messages
  291. // in the background while user code is working, greatly improving throughput.
  292. // Defaults to 256.
  293. ChannelBufferSize int
  294. // The version of Kafka that Sarama will assume it is running against.
  295. // Defaults to the oldest supported stable version. Since Kafka provides
  296. // backwards-compatibility, setting it to a version older than you have
  297. // will not break anything, although it may prevent you from using the
  298. // latest features. Setting it to a version greater than you are actually
  299. // running may lead to random breakage.
  300. Version KafkaVersion
  301. // The registry to define metrics into.
  302. // Defaults to a local registry.
  303. // If you want to disable metrics gathering, set "metrics.UseNilMetrics" to "true"
  304. // prior to starting Sarama.
  305. // See Examples on how to use the metrics registry
  306. MetricRegistry metrics.Registry
  307. }
  308. // NewConfig returns a new configuration instance with sane defaults.
  309. func NewConfig() *Config {
  310. c := &Config{}
  311. c.Admin.Timeout = 3 * time.Second
  312. c.Net.MaxOpenRequests = 5
  313. c.Net.DialTimeout = 30 * time.Second
  314. c.Net.ReadTimeout = 30 * time.Second
  315. c.Net.WriteTimeout = 30 * time.Second
  316. c.Net.SASL.Handshake = true
  317. c.Metadata.Retry.Max = 3
  318. c.Metadata.Retry.Backoff = 250 * time.Millisecond
  319. c.Metadata.RefreshFrequency = 10 * time.Minute
  320. c.Metadata.Full = true
  321. c.Producer.MaxMessageBytes = 1000000
  322. c.Producer.RequiredAcks = WaitForLocal
  323. c.Producer.Timeout = 10 * time.Second
  324. c.Producer.Partitioner = NewHashPartitioner
  325. c.Producer.Retry.Max = 3
  326. c.Producer.Retry.Backoff = 100 * time.Millisecond
  327. c.Producer.Return.Errors = true
  328. c.Producer.CompressionLevel = CompressionLevelDefault
  329. c.Consumer.Fetch.Min = 1
  330. c.Consumer.Fetch.Default = 1024 * 1024
  331. c.Consumer.Retry.Backoff = 2 * time.Second
  332. c.Consumer.MaxWaitTime = 250 * time.Millisecond
  333. c.Consumer.MaxProcessingTime = 100 * time.Millisecond
  334. c.Consumer.Return.Errors = false
  335. c.Consumer.Offsets.CommitInterval = 1 * time.Second
  336. c.Consumer.Offsets.Initial = OffsetNewest
  337. c.Consumer.Offsets.Retry.Max = 3
  338. c.Consumer.Group.Session.Timeout = 10 * time.Second
  339. c.Consumer.Group.Heartbeat.Interval = 3 * time.Second
  340. c.Consumer.Group.Rebalance.Strategy = BalanceStrategyRange
  341. c.Consumer.Group.Rebalance.Timeout = 60 * time.Second
  342. c.Consumer.Group.Rebalance.Retry.Max = 4
  343. c.Consumer.Group.Rebalance.Retry.Backoff = 2 * time.Second
  344. c.ClientID = defaultClientID
  345. c.ChannelBufferSize = 256
  346. c.Version = MinVersion
  347. c.MetricRegistry = metrics.NewRegistry()
  348. return c
  349. }
  350. // Validate checks a Config instance. It will return a
  351. // ConfigurationError if the specified values don't make sense.
  352. func (c *Config) Validate() error {
  353. // some configuration values should be warned on but not fail completely, do those first
  354. if c.Net.TLS.Enable == false && c.Net.TLS.Config != nil {
  355. Logger.Println("Net.TLS is disabled but a non-nil configuration was provided.")
  356. }
  357. if c.Net.SASL.Enable == false {
  358. if c.Net.SASL.User != "" {
  359. Logger.Println("Net.SASL is disabled but a non-empty username was provided.")
  360. }
  361. if c.Net.SASL.Password != "" {
  362. Logger.Println("Net.SASL is disabled but a non-empty password was provided.")
  363. }
  364. }
  365. if c.Producer.RequiredAcks > 1 {
  366. Logger.Println("Producer.RequiredAcks > 1 is deprecated and will raise an exception with kafka >= 0.8.2.0.")
  367. }
  368. if c.Producer.MaxMessageBytes >= int(MaxRequestSize) {
  369. Logger.Println("Producer.MaxMessageBytes must be smaller than MaxRequestSize; it will be ignored.")
  370. }
  371. if c.Producer.Flush.Bytes >= int(MaxRequestSize) {
  372. Logger.Println("Producer.Flush.Bytes must be smaller than MaxRequestSize; it will be ignored.")
  373. }
  374. if (c.Producer.Flush.Bytes > 0 || c.Producer.Flush.Messages > 0) && c.Producer.Flush.Frequency == 0 {
  375. Logger.Println("Producer.Flush: Bytes or Messages are set, but Frequency is not; messages may not get flushed.")
  376. }
  377. if c.Producer.Timeout%time.Millisecond != 0 {
  378. Logger.Println("Producer.Timeout only supports millisecond resolution; nanoseconds will be truncated.")
  379. }
  380. if c.Consumer.MaxWaitTime < 100*time.Millisecond {
  381. Logger.Println("Consumer.MaxWaitTime is very low, which can cause high CPU and network usage. See documentation for details.")
  382. }
  383. if c.Consumer.MaxWaitTime%time.Millisecond != 0 {
  384. Logger.Println("Consumer.MaxWaitTime only supports millisecond precision; nanoseconds will be truncated.")
  385. }
  386. if c.Consumer.Offsets.Retention%time.Millisecond != 0 {
  387. Logger.Println("Consumer.Offsets.Retention only supports millisecond precision; nanoseconds will be truncated.")
  388. }
  389. if c.Consumer.Group.Session.Timeout%time.Millisecond != 0 {
  390. Logger.Println("Consumer.Group.Session.Timeout only supports millisecond precision; nanoseconds will be truncated.")
  391. }
  392. if c.Consumer.Group.Heartbeat.Interval%time.Millisecond != 0 {
  393. Logger.Println("Consumer.Group.Heartbeat.Interval only supports millisecond precision; nanoseconds will be truncated.")
  394. }
  395. if c.Consumer.Group.Rebalance.Timeout%time.Millisecond != 0 {
  396. Logger.Println("Consumer.Group.Rebalance.Timeout only supports millisecond precision; nanoseconds will be truncated.")
  397. }
  398. if c.ClientID == defaultClientID {
  399. Logger.Println("ClientID is the default of 'sarama', you should consider setting it to something application-specific.")
  400. }
  401. // validate Net values
  402. switch {
  403. case c.Net.MaxOpenRequests <= 0:
  404. return ConfigurationError("Net.MaxOpenRequests must be > 0")
  405. case c.Net.DialTimeout <= 0:
  406. return ConfigurationError("Net.DialTimeout must be > 0")
  407. case c.Net.ReadTimeout <= 0:
  408. return ConfigurationError("Net.ReadTimeout must be > 0")
  409. case c.Net.WriteTimeout <= 0:
  410. return ConfigurationError("Net.WriteTimeout must be > 0")
  411. case c.Net.KeepAlive < 0:
  412. return ConfigurationError("Net.KeepAlive must be >= 0")
  413. case c.Net.SASL.Enable == true && c.Net.SASL.User == "":
  414. return ConfigurationError("Net.SASL.User must not be empty when SASL is enabled")
  415. case c.Net.SASL.Enable == true && c.Net.SASL.Password == "":
  416. return ConfigurationError("Net.SASL.Password must not be empty when SASL is enabled")
  417. }
  418. // validate the Admin values
  419. switch {
  420. case c.Admin.Timeout <= 0:
  421. return ConfigurationError("Admin.Timeout must be > 0")
  422. }
  423. // validate the Metadata values
  424. switch {
  425. case c.Metadata.Retry.Max < 0:
  426. return ConfigurationError("Metadata.Retry.Max must be >= 0")
  427. case c.Metadata.Retry.Backoff < 0:
  428. return ConfigurationError("Metadata.Retry.Backoff must be >= 0")
  429. case c.Metadata.RefreshFrequency < 0:
  430. return ConfigurationError("Metadata.RefreshFrequency must be >= 0")
  431. }
  432. // validate the Producer values
  433. switch {
  434. case c.Producer.MaxMessageBytes <= 0:
  435. return ConfigurationError("Producer.MaxMessageBytes must be > 0")
  436. case c.Producer.RequiredAcks < -1:
  437. return ConfigurationError("Producer.RequiredAcks must be >= -1")
  438. case c.Producer.Timeout <= 0:
  439. return ConfigurationError("Producer.Timeout must be > 0")
  440. case c.Producer.Partitioner == nil:
  441. return ConfigurationError("Producer.Partitioner must not be nil")
  442. case c.Producer.Flush.Bytes < 0:
  443. return ConfigurationError("Producer.Flush.Bytes must be >= 0")
  444. case c.Producer.Flush.Messages < 0:
  445. return ConfigurationError("Producer.Flush.Messages must be >= 0")
  446. case c.Producer.Flush.Frequency < 0:
  447. return ConfigurationError("Producer.Flush.Frequency must be >= 0")
  448. case c.Producer.Flush.MaxMessages < 0:
  449. return ConfigurationError("Producer.Flush.MaxMessages must be >= 0")
  450. case c.Producer.Flush.MaxMessages > 0 && c.Producer.Flush.MaxMessages < c.Producer.Flush.Messages:
  451. return ConfigurationError("Producer.Flush.MaxMessages must be >= Producer.Flush.Messages when set")
  452. case c.Producer.Retry.Max < 0:
  453. return ConfigurationError("Producer.Retry.Max must be >= 0")
  454. case c.Producer.Retry.Backoff < 0:
  455. return ConfigurationError("Producer.Retry.Backoff must be >= 0")
  456. }
  457. if c.Producer.Compression == CompressionLZ4 && !c.Version.IsAtLeast(V0_10_0_0) {
  458. return ConfigurationError("lz4 compression requires Version >= V0_10_0_0")
  459. }
  460. if c.Producer.Compression == CompressionGZIP {
  461. if c.Producer.CompressionLevel != CompressionLevelDefault {
  462. if _, err := gzip.NewWriterLevel(ioutil.Discard, c.Producer.CompressionLevel); err != nil {
  463. return ConfigurationError(fmt.Sprintf("gzip compression does not work with level %d: %v", c.Producer.CompressionLevel, err))
  464. }
  465. }
  466. }
  467. // validate the Consumer values
  468. switch {
  469. case c.Consumer.Fetch.Min <= 0:
  470. return ConfigurationError("Consumer.Fetch.Min must be > 0")
  471. case c.Consumer.Fetch.Default <= 0:
  472. return ConfigurationError("Consumer.Fetch.Default must be > 0")
  473. case c.Consumer.Fetch.Max < 0:
  474. return ConfigurationError("Consumer.Fetch.Max must be >= 0")
  475. case c.Consumer.MaxWaitTime < 1*time.Millisecond:
  476. return ConfigurationError("Consumer.MaxWaitTime must be >= 1ms")
  477. case c.Consumer.MaxProcessingTime <= 0:
  478. return ConfigurationError("Consumer.MaxProcessingTime must be > 0")
  479. case c.Consumer.Retry.Backoff < 0:
  480. return ConfigurationError("Consumer.Retry.Backoff must be >= 0")
  481. case c.Consumer.Offsets.CommitInterval <= 0:
  482. return ConfigurationError("Consumer.Offsets.CommitInterval must be > 0")
  483. case c.Consumer.Offsets.Initial != OffsetOldest && c.Consumer.Offsets.Initial != OffsetNewest:
  484. return ConfigurationError("Consumer.Offsets.Initial must be OffsetOldest or OffsetNewest")
  485. case c.Consumer.Offsets.Retry.Max < 0:
  486. return ConfigurationError("Consumer.Offsets.Retry.Max must be >= 0")
  487. }
  488. // validate the Consumer Group values
  489. switch {
  490. case c.Consumer.Group.Session.Timeout <= 2*time.Millisecond:
  491. return ConfigurationError("Consumer.Group.Session.Timeout must be >= 2ms")
  492. case c.Consumer.Group.Heartbeat.Interval < 1*time.Millisecond:
  493. return ConfigurationError("Consumer.Group.Heartbeat.Interval must be >= 1ms")
  494. case c.Consumer.Group.Heartbeat.Interval >= c.Consumer.Group.Session.Timeout:
  495. return ConfigurationError("Consumer.Group.Heartbeat.Interval must be < Consumer.Group.Session.Timeout")
  496. case c.Consumer.Group.Rebalance.Strategy == nil:
  497. return ConfigurationError("Consumer.Group.Rebalance.Strategy must not be empty")
  498. case c.Consumer.Group.Rebalance.Timeout <= time.Millisecond:
  499. return ConfigurationError("Consumer.Group.Rebalance.Timeout must be >= 1ms")
  500. case c.Consumer.Group.Rebalance.Retry.Max < 0:
  501. return ConfigurationError("Consumer.Group.Rebalance.Retry.Max must be >= 0")
  502. case c.Consumer.Group.Rebalance.Retry.Backoff < 0:
  503. return ConfigurationError("Consumer.Group.Rebalance.Retry.Backoff must be >= 0")
  504. }
  505. // validate misc shared values
  506. switch {
  507. case c.ChannelBufferSize < 0:
  508. return ConfigurationError("ChannelBufferSize must be >= 0")
  509. case !validID.MatchString(c.ClientID):
  510. return ConfigurationError("ClientID is invalid")
  511. }
  512. return nil
  513. }