conn.go 17 KB

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  1. // Copyright (c) 2012 The gocql Authors. All rights reserved.
  2. // Use of this source code is governed by a BSD-style
  3. // license that can be found in the LICENSE file.
  4. package gocql
  5. import (
  6. "bufio"
  7. "crypto/tls"
  8. "errors"
  9. "fmt"
  10. "io"
  11. "log"
  12. "net"
  13. "strconv"
  14. "strings"
  15. "sync"
  16. "sync/atomic"
  17. "time"
  18. )
  19. //JoinHostPort is a utility to return a address string that can be used
  20. //gocql.Conn to form a connection with a host.
  21. func JoinHostPort(addr string, port int) string {
  22. addr = strings.TrimSpace(addr)
  23. if _, _, err := net.SplitHostPort(addr); err != nil {
  24. addr = net.JoinHostPort(addr, strconv.Itoa(port))
  25. }
  26. return addr
  27. }
  28. type Authenticator interface {
  29. Challenge(req []byte) (resp []byte, auth Authenticator, err error)
  30. Success(data []byte) error
  31. }
  32. type PasswordAuthenticator struct {
  33. Username string
  34. Password string
  35. }
  36. func (p PasswordAuthenticator) Challenge(req []byte) ([]byte, Authenticator, error) {
  37. if string(req) != "org.apache.cassandra.auth.PasswordAuthenticator" {
  38. return nil, nil, fmt.Errorf("unexpected authenticator %q", req)
  39. }
  40. resp := make([]byte, 2+len(p.Username)+len(p.Password))
  41. resp[0] = 0
  42. copy(resp[1:], p.Username)
  43. resp[len(p.Username)+1] = 0
  44. copy(resp[2+len(p.Username):], p.Password)
  45. return resp, nil, nil
  46. }
  47. func (p PasswordAuthenticator) Success(data []byte) error {
  48. return nil
  49. }
  50. type SslOptions struct {
  51. tls.Config
  52. // CertPath and KeyPath are optional depending on server
  53. // config, but both fields must be omitted to avoid using a
  54. // client certificate
  55. CertPath string
  56. KeyPath string
  57. CaPath string //optional depending on server config
  58. // If you want to verify the hostname and server cert (like a wildcard for cass cluster) then you should turn this on
  59. // This option is basically the inverse of InSecureSkipVerify
  60. // See InSecureSkipVerify in http://golang.org/pkg/crypto/tls/ for more info
  61. EnableHostVerification bool
  62. }
  63. type ConnConfig struct {
  64. ProtoVersion int
  65. CQLVersion string
  66. Timeout time.Duration
  67. NumStreams int
  68. Compressor Compressor
  69. Authenticator Authenticator
  70. Keepalive time.Duration
  71. tlsConfig *tls.Config
  72. }
  73. type ConnErrorHandler interface {
  74. HandleError(conn *Conn, err error, closed bool)
  75. }
  76. // How many timeouts we will allow to occur before the connection is closed
  77. // and restarted. This is to prevent a single query timeout from killing a connection
  78. // which may be serving more queries just fine.
  79. // Default is 10, should not be changed concurrently with queries.
  80. var TimeoutLimit int64 = 10
  81. // Conn is a single connection to a Cassandra node. It can be used to execute
  82. // queries, but users are usually advised to use a more reliable, higher
  83. // level API.
  84. type Conn struct {
  85. conn net.Conn
  86. r *bufio.Reader
  87. timeout time.Duration
  88. headerBuf []byte
  89. uniq chan int
  90. calls []callReq
  91. errorHandler ConnErrorHandler
  92. compressor Compressor
  93. auth Authenticator
  94. addr string
  95. version uint8
  96. currentKeyspace string
  97. started bool
  98. closed int32
  99. quit chan struct{}
  100. timeouts int64
  101. }
  102. // Connect establishes a connection to a Cassandra node.
  103. // You must also call the Serve method before you can execute any queries.
  104. func Connect(addr string, cfg ConnConfig, errorHandler ConnErrorHandler) (*Conn, error) {
  105. var (
  106. err error
  107. conn net.Conn
  108. )
  109. dialer := &net.Dialer{
  110. Timeout: cfg.Timeout,
  111. }
  112. if cfg.tlsConfig != nil {
  113. // the TLS config is safe to be reused by connections but it must not
  114. // be modified after being used.
  115. conn, err = tls.DialWithDialer(dialer, "tcp", addr, cfg.tlsConfig)
  116. } else {
  117. conn, err = dialer.Dial("tcp", addr)
  118. }
  119. if err != nil {
  120. return nil, err
  121. }
  122. // going to default to proto 2
  123. if cfg.ProtoVersion < protoVersion1 || cfg.ProtoVersion > protoVersion3 {
  124. log.Printf("unsupported protocol version: %d using 2\n", cfg.ProtoVersion)
  125. cfg.ProtoVersion = 2
  126. }
  127. headerSize := 8
  128. maxStreams := 128
  129. if cfg.ProtoVersion > protoVersion2 {
  130. maxStreams = 32768
  131. headerSize = 9
  132. }
  133. if cfg.NumStreams <= 0 || cfg.NumStreams > maxStreams {
  134. cfg.NumStreams = maxStreams
  135. }
  136. c := &Conn{
  137. conn: conn,
  138. r: bufio.NewReader(conn),
  139. uniq: make(chan int, cfg.NumStreams),
  140. calls: make([]callReq, cfg.NumStreams),
  141. timeout: cfg.Timeout,
  142. version: uint8(cfg.ProtoVersion),
  143. addr: conn.RemoteAddr().String(),
  144. errorHandler: errorHandler,
  145. compressor: cfg.Compressor,
  146. auth: cfg.Authenticator,
  147. headerBuf: make([]byte, headerSize),
  148. quit: make(chan struct{}),
  149. }
  150. if cfg.Keepalive > 0 {
  151. c.setKeepalive(cfg.Keepalive)
  152. }
  153. for i := 0; i < cfg.NumStreams; i++ {
  154. c.calls[i].resp = make(chan error)
  155. c.uniq <- i
  156. }
  157. go c.serve()
  158. if err := c.startup(&cfg); err != nil {
  159. conn.Close()
  160. return nil, err
  161. }
  162. c.started = true
  163. return c, nil
  164. }
  165. func (c *Conn) Write(p []byte) (int, error) {
  166. if c.timeout > 0 {
  167. c.conn.SetWriteDeadline(time.Now().Add(c.timeout))
  168. }
  169. return c.conn.Write(p)
  170. }
  171. func (c *Conn) Read(p []byte) (n int, err error) {
  172. const maxAttempts = 5
  173. for i := 0; i < maxAttempts; i++ {
  174. var nn int
  175. if c.timeout > 0 {
  176. c.conn.SetReadDeadline(time.Now().Add(c.timeout))
  177. }
  178. nn, err = io.ReadFull(c.r, p[n:])
  179. n += nn
  180. if err == nil {
  181. break
  182. }
  183. if verr, ok := err.(net.Error); !ok || !verr.Temporary() {
  184. break
  185. }
  186. }
  187. return
  188. }
  189. func (c *Conn) startup(cfg *ConnConfig) error {
  190. m := map[string]string{
  191. "CQL_VERSION": cfg.CQLVersion,
  192. }
  193. if c.compressor != nil {
  194. m["COMPRESSION"] = c.compressor.Name()
  195. }
  196. frame, err := c.exec(&writeStartupFrame{opts: m}, nil)
  197. if err != nil {
  198. return err
  199. }
  200. switch v := frame.(type) {
  201. case error:
  202. return v
  203. case *readyFrame:
  204. return nil
  205. case *authenticateFrame:
  206. return c.authenticateHandshake(v)
  207. default:
  208. return NewErrProtocol("Unknown type of response to startup frame: %s", v)
  209. }
  210. }
  211. func (c *Conn) authenticateHandshake(authFrame *authenticateFrame) error {
  212. if c.auth == nil {
  213. return fmt.Errorf("authentication required (using %q)", authFrame.class)
  214. }
  215. resp, challenger, err := c.auth.Challenge([]byte(authFrame.class))
  216. if err != nil {
  217. return err
  218. }
  219. req := &writeAuthResponseFrame{data: resp}
  220. for {
  221. frame, err := c.exec(req, nil)
  222. if err != nil {
  223. return err
  224. }
  225. switch v := frame.(type) {
  226. case error:
  227. return v
  228. case *authSuccessFrame:
  229. if challenger != nil {
  230. return challenger.Success(v.data)
  231. }
  232. return nil
  233. case *authChallengeFrame:
  234. resp, challenger, err = challenger.Challenge(v.data)
  235. if err != nil {
  236. return err
  237. }
  238. req = &writeAuthResponseFrame{
  239. data: resp,
  240. }
  241. default:
  242. return fmt.Errorf("unknown frame response during authentication: %v", v)
  243. }
  244. }
  245. }
  246. // Serve starts the stream multiplexer for this connection, which is required
  247. // to execute any queries. This method runs as long as the connection is
  248. // open and is therefore usually called in a separate goroutine.
  249. func (c *Conn) serve() {
  250. var (
  251. err error
  252. )
  253. for {
  254. err = c.recv()
  255. if err != nil {
  256. break
  257. }
  258. }
  259. c.closeWithError(err)
  260. }
  261. func (c *Conn) recv() error {
  262. // not safe for concurrent reads
  263. // read a full header, ignore timeouts, as this is being ran in a loop
  264. // TODO: TCP level deadlines? or just query level deadlines?
  265. if c.timeout > 0 {
  266. c.conn.SetReadDeadline(time.Time{})
  267. }
  268. // were just reading headers over and over and copy bodies
  269. head, err := readHeader(c.r, c.headerBuf)
  270. if err != nil {
  271. return err
  272. }
  273. call := &c.calls[head.stream]
  274. err = call.framer.readFrame(&head)
  275. if err != nil {
  276. // only net errors should cause the connection to be closed. Though
  277. // cassandra returning corrupt frames will be returned here as well.
  278. if _, ok := err.(net.Error); ok {
  279. return err
  280. }
  281. }
  282. if !atomic.CompareAndSwapInt32(&call.waiting, 1, 0) {
  283. // the waiting thread timed out and is no longer waiting, the stream has
  284. // not yet been readded to the chan so it cant be used again,
  285. c.releaseStream(head.stream)
  286. return nil
  287. }
  288. select {
  289. case call.resp <- err:
  290. case <-c.quit:
  291. return nil
  292. }
  293. return nil
  294. }
  295. type callReq struct {
  296. // could use a waitgroup but this allows us to do timeouts on the read/send
  297. resp chan error
  298. framer *framer
  299. waiting int32
  300. }
  301. func (c *Conn) releaseStream(stream int) {
  302. call := &c.calls[stream]
  303. framerPool.Put(call.framer)
  304. call.framer = nil
  305. select {
  306. case c.uniq <- stream:
  307. default:
  308. }
  309. }
  310. func (c *Conn) handleTimeout() {
  311. if atomic.AddInt64(&c.timeouts, 1) > TimeoutLimit {
  312. c.closeWithError(ErrTooManyTimeouts)
  313. }
  314. }
  315. func (c *Conn) exec(req frameWriter, tracer Tracer) (frame, error) {
  316. // TODO: move tracer onto conn
  317. stream := <-c.uniq
  318. call := &c.calls[stream]
  319. // resp is basically a waiting semaphore protecting the framer
  320. framer := newFramer(c, c, c.compressor, c.version)
  321. call.framer = framer
  322. if tracer != nil {
  323. framer.trace()
  324. }
  325. if !atomic.CompareAndSwapInt32(&call.waiting, 0, 1) {
  326. return nil, errors.New("gocql: stream is busy or closed")
  327. }
  328. defer atomic.StoreInt32(&call.waiting, 0)
  329. err := req.writeFrame(framer, stream)
  330. if err != nil {
  331. return nil, err
  332. }
  333. select {
  334. case err := <-call.resp:
  335. // dont release the stream if detect a timeout as another request can reuse
  336. // that stream and get a response for the old request, which we have no
  337. // easy way of detecting.
  338. defer c.releaseStream(stream)
  339. if err != nil {
  340. return nil, err
  341. }
  342. case <-time.After(c.timeout):
  343. c.handleTimeout()
  344. return nil, ErrTimeoutNoResponse
  345. case <-c.quit:
  346. return nil, ErrConnectionClosed
  347. }
  348. if v := framer.header.version.version(); v != c.version {
  349. return nil, NewErrProtocol("unexpected protocol version in response: got %d expected %d", v, c.version)
  350. }
  351. frame, err := framer.parseFrame()
  352. if err != nil {
  353. return nil, err
  354. }
  355. if len(framer.traceID) > 0 {
  356. tracer.Trace(framer.traceID)
  357. }
  358. return frame, nil
  359. }
  360. func (c *Conn) prepareStatement(stmt string, trace Tracer) (*resultPreparedFrame, error) {
  361. stmtsLRU.Lock()
  362. if stmtsLRU.lru == nil {
  363. initStmtsLRU(defaultMaxPreparedStmts)
  364. }
  365. stmtCacheKey := c.addr + c.currentKeyspace + stmt
  366. if val, ok := stmtsLRU.lru.Get(stmtCacheKey); ok {
  367. stmtsLRU.Unlock()
  368. flight := val.(*inflightPrepare)
  369. flight.wg.Wait()
  370. return flight.info, flight.err
  371. }
  372. flight := new(inflightPrepare)
  373. flight.wg.Add(1)
  374. stmtsLRU.lru.Add(stmtCacheKey, flight)
  375. stmtsLRU.Unlock()
  376. prep := &writePrepareFrame{
  377. statement: stmt,
  378. }
  379. resp, err := c.exec(prep, trace)
  380. if err != nil {
  381. flight.err = err
  382. flight.wg.Done()
  383. return nil, err
  384. }
  385. switch x := resp.(type) {
  386. case *resultPreparedFrame:
  387. flight.info = x
  388. case error:
  389. flight.err = x
  390. default:
  391. flight.err = NewErrProtocol("Unknown type in response to prepare frame: %s", x)
  392. }
  393. flight.wg.Done()
  394. if flight.err != nil {
  395. stmtsLRU.Lock()
  396. stmtsLRU.lru.Remove(stmtCacheKey)
  397. stmtsLRU.Unlock()
  398. }
  399. return flight.info, flight.err
  400. }
  401. func (c *Conn) executeQuery(qry *Query) *Iter {
  402. params := queryParams{
  403. consistency: qry.cons,
  404. }
  405. // frame checks that it is not 0
  406. params.serialConsistency = qry.serialCons
  407. params.defaultTimestamp = qry.defaultTimestamp
  408. if len(qry.pageState) > 0 {
  409. params.pagingState = qry.pageState
  410. }
  411. if qry.pageSize > 0 {
  412. params.pageSize = qry.pageSize
  413. }
  414. var frame frameWriter
  415. if qry.shouldPrepare() {
  416. // Prepare all DML queries. Other queries can not be prepared.
  417. info, err := c.prepareStatement(qry.stmt, qry.trace)
  418. if err != nil {
  419. return &Iter{err: err}
  420. }
  421. var values []interface{}
  422. if qry.binding == nil {
  423. values = qry.values
  424. } else {
  425. binding := &QueryInfo{
  426. Id: info.preparedID,
  427. Args: info.reqMeta.columns,
  428. Rval: info.respMeta.columns,
  429. }
  430. values, err = qry.binding(binding)
  431. if err != nil {
  432. return &Iter{err: err}
  433. }
  434. }
  435. if len(values) != len(info.reqMeta.columns) {
  436. return &Iter{err: ErrQueryArgLength}
  437. }
  438. params.values = make([]queryValues, len(values))
  439. for i := 0; i < len(values); i++ {
  440. val, err := Marshal(info.reqMeta.columns[i].TypeInfo, values[i])
  441. if err != nil {
  442. return &Iter{err: err}
  443. }
  444. v := &params.values[i]
  445. v.value = val
  446. // TODO: handle query binding names
  447. }
  448. frame = &writeExecuteFrame{
  449. preparedID: info.preparedID,
  450. params: params,
  451. }
  452. } else {
  453. frame = &writeQueryFrame{
  454. statement: qry.stmt,
  455. params: params,
  456. }
  457. }
  458. resp, err := c.exec(frame, qry.trace)
  459. if err != nil {
  460. return &Iter{err: err}
  461. }
  462. switch x := resp.(type) {
  463. case *resultVoidFrame:
  464. return &Iter{}
  465. case *resultRowsFrame:
  466. iter := &Iter{
  467. meta: x.meta,
  468. rows: x.rows,
  469. }
  470. if len(x.meta.pagingState) > 0 {
  471. iter.next = &nextIter{
  472. qry: *qry,
  473. pos: int((1 - qry.prefetch) * float64(len(iter.rows))),
  474. }
  475. iter.next.qry.pageState = x.meta.pagingState
  476. if iter.next.pos < 1 {
  477. iter.next.pos = 1
  478. }
  479. }
  480. return iter
  481. case *resultKeyspaceFrame, *resultSchemaChangeFrame:
  482. return &Iter{}
  483. case *RequestErrUnprepared:
  484. stmtsLRU.Lock()
  485. stmtCacheKey := c.addr + c.currentKeyspace + qry.stmt
  486. if _, ok := stmtsLRU.lru.Get(stmtCacheKey); ok {
  487. stmtsLRU.lru.Remove(stmtCacheKey)
  488. stmtsLRU.Unlock()
  489. return c.executeQuery(qry)
  490. }
  491. stmtsLRU.Unlock()
  492. return &Iter{err: x}
  493. case error:
  494. return &Iter{err: x}
  495. default:
  496. return &Iter{err: NewErrProtocol("Unknown type in response to execute query: %s", x)}
  497. }
  498. }
  499. func (c *Conn) Pick(qry *Query) *Conn {
  500. if c.Closed() {
  501. return nil
  502. }
  503. return c
  504. }
  505. func (c *Conn) Closed() bool {
  506. return atomic.LoadInt32(&c.closed) == 1
  507. }
  508. func (c *Conn) closeWithError(err error) {
  509. if !atomic.CompareAndSwapInt32(&c.closed, 0, 1) {
  510. return
  511. }
  512. close(c.quit)
  513. for id := 0; id < len(c.calls); id++ {
  514. req := &c.calls[id]
  515. // we need to send the error to all waiting queries, put the state
  516. // of this conn into not active so that it can not execute any queries.
  517. atomic.StoreInt32(&req.waiting, -1)
  518. }
  519. c.conn.Close()
  520. if c.started && err != nil {
  521. c.errorHandler.HandleError(c, err, true)
  522. }
  523. }
  524. func (c *Conn) Close() {
  525. c.closeWithError(nil)
  526. }
  527. func (c *Conn) Address() string {
  528. return c.addr
  529. }
  530. func (c *Conn) AvailableStreams() int {
  531. return len(c.uniq)
  532. }
  533. func (c *Conn) UseKeyspace(keyspace string) error {
  534. q := &writeQueryFrame{statement: `USE "` + keyspace + `"`}
  535. q.params.consistency = Any
  536. resp, err := c.exec(q, nil)
  537. if err != nil {
  538. return err
  539. }
  540. switch x := resp.(type) {
  541. case *resultKeyspaceFrame:
  542. case error:
  543. return x
  544. default:
  545. return NewErrProtocol("unknown frame in response to USE: %v", x)
  546. }
  547. c.currentKeyspace = keyspace
  548. return nil
  549. }
  550. func (c *Conn) executeBatch(batch *Batch) error {
  551. if c.version == protoVersion1 {
  552. return ErrUnsupported
  553. }
  554. n := len(batch.Entries)
  555. req := &writeBatchFrame{
  556. typ: batch.Type,
  557. statements: make([]batchStatment, n),
  558. consistency: batch.Cons,
  559. serialConsistency: batch.serialCons,
  560. defaultTimestamp: batch.defaultTimestamp,
  561. }
  562. stmts := make(map[string]string)
  563. for i := 0; i < n; i++ {
  564. entry := &batch.Entries[i]
  565. b := &req.statements[i]
  566. if len(entry.Args) > 0 || entry.binding != nil {
  567. info, err := c.prepareStatement(entry.Stmt, nil)
  568. if err != nil {
  569. return err
  570. }
  571. var args []interface{}
  572. if entry.binding == nil {
  573. args = entry.Args
  574. } else {
  575. binding := &QueryInfo{
  576. Id: info.preparedID,
  577. Args: info.reqMeta.columns,
  578. Rval: info.respMeta.columns,
  579. }
  580. args, err = entry.binding(binding)
  581. if err != nil {
  582. return err
  583. }
  584. }
  585. if len(args) != len(info.reqMeta.columns) {
  586. return ErrQueryArgLength
  587. }
  588. b.preparedID = info.preparedID
  589. stmts[string(info.preparedID)] = entry.Stmt
  590. b.values = make([]queryValues, len(info.reqMeta.columns))
  591. for j := 0; j < len(info.reqMeta.columns); j++ {
  592. val, err := Marshal(info.reqMeta.columns[j].TypeInfo, args[j])
  593. if err != nil {
  594. return err
  595. }
  596. b.values[j].value = val
  597. // TODO: add names
  598. }
  599. } else {
  600. b.statement = entry.Stmt
  601. }
  602. }
  603. // TODO: should batch support tracing?
  604. resp, err := c.exec(req, nil)
  605. if err != nil {
  606. return err
  607. }
  608. switch x := resp.(type) {
  609. case *resultVoidFrame:
  610. return nil
  611. case *RequestErrUnprepared:
  612. stmt, found := stmts[string(x.StatementId)]
  613. if found {
  614. stmtsLRU.Lock()
  615. stmtsLRU.lru.Remove(c.addr + c.currentKeyspace + stmt)
  616. stmtsLRU.Unlock()
  617. }
  618. if found {
  619. return c.executeBatch(batch)
  620. } else {
  621. return x
  622. }
  623. case error:
  624. return x
  625. default:
  626. return NewErrProtocol("Unknown type in response to batch statement: %s", x)
  627. }
  628. }
  629. func (c *Conn) setKeepalive(d time.Duration) error {
  630. if tc, ok := c.conn.(*net.TCPConn); ok {
  631. err := tc.SetKeepAlivePeriod(d)
  632. if err != nil {
  633. return err
  634. }
  635. return tc.SetKeepAlive(true)
  636. }
  637. return nil
  638. }
  639. type inflightPrepare struct {
  640. info *resultPreparedFrame
  641. err error
  642. wg sync.WaitGroup
  643. }
  644. var (
  645. ErrQueryArgLength = errors.New("gocql: query argument length mismatch")
  646. ErrTimeoutNoResponse = errors.New("gocql: no response recieved from cassandra within timeout period")
  647. ErrTooManyTimeouts = errors.New("gocql: too many query timeouts on the connection")
  648. ErrConnectionClosed = errors.New("gocql: connection closed waiting for response")
  649. )