session.go 15 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. "errors"
  7. "fmt"
  8. "io"
  9. "strings"
  10. "sync"
  11. "time"
  12. "unicode"
  13. )
  14. // Session is the interface used by users to interact with the database.
  15. //
  16. // It's safe for concurrent use by multiple goroutines and a typical usage
  17. // scenario is to have one global session object to interact with the
  18. // whole Cassandra cluster.
  19. //
  20. // This type extends the Node interface by adding a convinient query builder
  21. // and automatically sets a default consinstency level on all operations
  22. // that do not have a consistency level set.
  23. type Session struct {
  24. Pool ConnectionPool
  25. cons Consistency
  26. pageSize int
  27. prefetch float64
  28. trace Tracer
  29. mu sync.RWMutex
  30. cfg ClusterConfig
  31. closeMu sync.RWMutex
  32. isClosed bool
  33. }
  34. // NewSession wraps an existing Node.
  35. func NewSession(p ConnectionPool, c ClusterConfig) *Session {
  36. return &Session{Pool: p, cons: Quorum, prefetch: 0.25, cfg: c}
  37. }
  38. // SetConsistency sets the default consistency level for this session. This
  39. // setting can also be changed on a per-query basis and the default value
  40. // is Quorum.
  41. func (s *Session) SetConsistency(cons Consistency) {
  42. s.mu.Lock()
  43. s.cons = cons
  44. s.mu.Unlock()
  45. }
  46. // SetPageSize sets the default page size for this session. A value <= 0 will
  47. // disable paging. This setting can also be changed on a per-query basis.
  48. func (s *Session) SetPageSize(n int) {
  49. s.mu.Lock()
  50. s.pageSize = n
  51. s.mu.Unlock()
  52. }
  53. // SetPrefetch sets the default threshold for pre-fetching new pages. If
  54. // there are only p*pageSize rows remaining, the next page will be requested
  55. // automatically. This value can also be changed on a per-query basis and
  56. // the default value is 0.25.
  57. func (s *Session) SetPrefetch(p float64) {
  58. s.mu.Lock()
  59. s.prefetch = p
  60. s.mu.Unlock()
  61. }
  62. // SetTrace sets the default tracer for this session. This setting can also
  63. // be changed on a per-query basis.
  64. func (s *Session) SetTrace(trace Tracer) {
  65. s.mu.Lock()
  66. s.trace = trace
  67. s.mu.Unlock()
  68. }
  69. // Query generates a new query object for interacting with the database.
  70. // Further details of the query may be tweaked using the resulting query
  71. // value before the query is executed. Query is automatically prepared
  72. // if it has not previously been executed.
  73. func (s *Session) Query(stmt string, values ...interface{}) *Query {
  74. s.mu.RLock()
  75. qry := &Query{stmt: stmt, values: values, cons: s.cons,
  76. session: s, pageSize: s.pageSize, trace: s.trace,
  77. prefetch: s.prefetch, rt: s.cfg.RetryPolicy}
  78. s.mu.RUnlock()
  79. return qry
  80. }
  81. // Bind generates a new query object based on the query statement passed in.
  82. // The query is automatically prepared if it has not previously been executed.
  83. // The binding callback allows the application to define which query argument
  84. // values will be marshalled as part of the query execution.
  85. // During execution, the meta data of the prepared query will be routed to the
  86. // binding callback, which is responsible for producing the query argument values.
  87. func (s *Session) Bind(stmt string, b func(q *QueryInfo) ([]interface{}, error)) *Query {
  88. s.mu.RLock()
  89. qry := &Query{stmt: stmt, binding: b, cons: s.cons,
  90. session: s, pageSize: s.pageSize, trace: s.trace,
  91. prefetch: s.prefetch, rt: s.cfg.RetryPolicy}
  92. s.mu.RUnlock()
  93. return qry
  94. }
  95. // Close closes all connections. The session is unusable after this
  96. // operation.
  97. func (s *Session) Close() {
  98. s.closeMu.Lock()
  99. defer s.closeMu.Unlock()
  100. if s.isClosed {
  101. return
  102. }
  103. s.isClosed = true
  104. s.Pool.Close()
  105. }
  106. func (s *Session) Closed() bool {
  107. s.closeMu.RLock()
  108. closed := s.isClosed
  109. s.closeMu.RUnlock()
  110. return closed
  111. }
  112. func (s *Session) executeQuery(qry *Query) *Iter {
  113. // fail fast
  114. if s.Closed() {
  115. return &Iter{err: ErrSessionClosed}
  116. }
  117. var iter *Iter
  118. for count := 0; count <= qry.rt.NumRetries; count++ {
  119. conn := s.Pool.Pick(qry)
  120. //Assign the error unavailable to the iterator
  121. if conn == nil {
  122. iter = &Iter{err: ErrNoConnections}
  123. break
  124. }
  125. iter = conn.executeQuery(qry)
  126. //Exit for loop if the query was successful
  127. if iter.err == nil {
  128. break
  129. }
  130. }
  131. return iter
  132. }
  133. // ExecuteBatch executes a batch operation and returns nil if successful
  134. // otherwise an error is returned describing the failure.
  135. func (s *Session) ExecuteBatch(batch *Batch) error {
  136. // fail fast
  137. if s.Closed() {
  138. return ErrSessionClosed
  139. }
  140. // Prevent the execution of the batch if greater than the limit
  141. // Currently batches have a limit of 65536 queries.
  142. // https://datastax-oss.atlassian.net/browse/JAVA-229
  143. if batch.Size() > BatchSizeMaximum {
  144. return ErrTooManyStmts
  145. }
  146. var err error
  147. for count := 0; count <= batch.rt.NumRetries; count++ {
  148. conn := s.Pool.Pick(nil)
  149. //Assign the error unavailable and break loop
  150. if conn == nil {
  151. err = ErrNoConnections
  152. break
  153. }
  154. err = conn.executeBatch(batch)
  155. //Exit loop if operation executed correctly
  156. if err == nil {
  157. return nil
  158. }
  159. }
  160. return err
  161. }
  162. // Query represents a CQL statement that can be executed.
  163. type Query struct {
  164. stmt string
  165. values []interface{}
  166. cons Consistency
  167. pageSize int
  168. pageState []byte
  169. prefetch float64
  170. trace Tracer
  171. session *Session
  172. rt RetryPolicy
  173. binding func(q *QueryInfo) ([]interface{}, error)
  174. }
  175. // Consistency sets the consistency level for this query. If no consistency
  176. // level have been set, the default consistency level of the cluster
  177. // is used.
  178. func (q *Query) Consistency(c Consistency) *Query {
  179. q.cons = c
  180. return q
  181. }
  182. // Trace enables tracing of this query. Look at the documentation of the
  183. // Tracer interface to learn more about tracing.
  184. func (q *Query) Trace(trace Tracer) *Query {
  185. q.trace = trace
  186. return q
  187. }
  188. // PageSize will tell the iterator to fetch the result in pages of size n.
  189. // This is useful for iterating over large result sets, but setting the
  190. // page size to low might decrease the performance. This feature is only
  191. // available in Cassandra 2 and onwards.
  192. func (q *Query) PageSize(n int) *Query {
  193. q.pageSize = n
  194. return q
  195. }
  196. func (q *Query) shouldPrepare() bool {
  197. stmt := strings.TrimLeftFunc(strings.TrimRightFunc(q.stmt, func(r rune) bool {
  198. return unicode.IsSpace(r) || r == ';'
  199. }), unicode.IsSpace)
  200. var stmtType string
  201. if n := strings.IndexFunc(stmt, unicode.IsSpace); n >= 0 {
  202. stmtType = strings.ToLower(stmt[:n])
  203. }
  204. if stmtType == "begin" {
  205. if n := strings.LastIndexFunc(stmt, unicode.IsSpace); n >= 0 {
  206. stmtType = strings.ToLower(stmt[n+1:])
  207. }
  208. }
  209. switch stmtType {
  210. case "select", "insert", "update", "delete", "batch":
  211. return true
  212. }
  213. return false
  214. }
  215. // SetPrefetch sets the default threshold for pre-fetching new pages. If
  216. // there are only p*pageSize rows remaining, the next page will be requested
  217. // automatically.
  218. func (q *Query) Prefetch(p float64) *Query {
  219. q.prefetch = p
  220. return q
  221. }
  222. // RetryPolicy sets the policy to use when retrying the query.
  223. func (q *Query) RetryPolicy(r RetryPolicy) *Query {
  224. q.rt = r
  225. return q
  226. }
  227. // Rebind resets the query arguments of a previous bound query
  228. func (q *Query) Rebind(v ...interface{}) *Query {
  229. q.values = v
  230. return q
  231. }
  232. // Exec executes the query without returning any rows.
  233. func (q *Query) Exec() error {
  234. iter := q.Iter()
  235. return iter.err
  236. }
  237. // Iter executes the query and returns an iterator capable of iterating
  238. // over all results.
  239. func (q *Query) Iter() *Iter {
  240. if strings.Index(strings.ToLower(q.stmt), "use") == 0 {
  241. return &Iter{err: ErrUseStmt}
  242. }
  243. return q.session.executeQuery(q)
  244. }
  245. // Scan executes the query, copies the columns of the first selected
  246. // row into the values pointed at by dest and discards the rest. If no rows
  247. // were selected, ErrNotFound is returned.
  248. func (q *Query) Scan(dest ...interface{}) error {
  249. iter := q.Iter()
  250. if iter.err != nil {
  251. return iter.err
  252. }
  253. if len(iter.rows) == 0 {
  254. return ErrNotFound
  255. }
  256. iter.Scan(dest...)
  257. return iter.Close()
  258. }
  259. // ScanCAS executes a lightweight transaction (i.e. an UPDATE or INSERT
  260. // statement containing an IF clause). If the transaction fails because
  261. // the existing values did not match, the previos values will be stored
  262. // in dest.
  263. func (q *Query) ScanCAS(dest ...interface{}) (applied bool, err error) {
  264. iter := q.Iter()
  265. if iter.err != nil {
  266. return false, iter.err
  267. }
  268. if len(iter.rows) == 0 {
  269. return false, ErrNotFound
  270. }
  271. if len(iter.Columns()) > 1 {
  272. dest = append([]interface{}{&applied}, dest...)
  273. iter.Scan(dest...)
  274. } else {
  275. iter.Scan(&applied)
  276. }
  277. return applied, iter.Close()
  278. }
  279. // Iter represents an iterator that can be used to iterate over all rows that
  280. // were returned by a query. The iterator might send additional queries to the
  281. // database during the iteration if paging was enabled.
  282. type Iter struct {
  283. err error
  284. pos int
  285. rows [][][]byte
  286. columns []ColumnInfo
  287. next *nextIter
  288. }
  289. // Columns returns the name and type of the selected columns.
  290. func (iter *Iter) Columns() []ColumnInfo {
  291. return iter.columns
  292. }
  293. // Scan consumes the next row of the iterator and copies the columns of the
  294. // current row into the values pointed at by dest. Use nil as a dest value
  295. // to skip the corresponding column. Scan might send additional queries
  296. // to the database to retrieve the next set of rows if paging was enabled.
  297. //
  298. // Scan returns true if the row was successfully unmarshaled or false if the
  299. // end of the result set was reached or if an error occurred. Close should
  300. // be called afterwards to retrieve any potential errors.
  301. func (iter *Iter) Scan(dest ...interface{}) bool {
  302. if iter.err != nil {
  303. return false
  304. }
  305. if iter.pos >= len(iter.rows) {
  306. if iter.next != nil {
  307. *iter = *iter.next.fetch()
  308. return iter.Scan(dest...)
  309. }
  310. return false
  311. }
  312. if iter.next != nil && iter.pos == iter.next.pos {
  313. go iter.next.fetch()
  314. }
  315. if len(dest) != len(iter.columns) {
  316. iter.err = errors.New("count mismatch")
  317. return false
  318. }
  319. for i := 0; i < len(iter.columns); i++ {
  320. if dest[i] == nil {
  321. continue
  322. }
  323. err := Unmarshal(iter.columns[i].TypeInfo, iter.rows[iter.pos][i], dest[i])
  324. if err != nil {
  325. iter.err = err
  326. return false
  327. }
  328. }
  329. iter.pos++
  330. return true
  331. }
  332. // Close closes the iterator and returns any errors that happened during
  333. // the query or the iteration.
  334. func (iter *Iter) Close() error {
  335. return iter.err
  336. }
  337. type nextIter struct {
  338. qry Query
  339. pos int
  340. once sync.Once
  341. next *Iter
  342. }
  343. func (n *nextIter) fetch() *Iter {
  344. n.once.Do(func() {
  345. n.next = n.qry.session.executeQuery(&n.qry)
  346. })
  347. return n.next
  348. }
  349. type Batch struct {
  350. Type BatchType
  351. Entries []BatchEntry
  352. Cons Consistency
  353. rt RetryPolicy
  354. }
  355. // NewBatch creates a new batch operation without defaults from the cluster
  356. func NewBatch(typ BatchType) *Batch {
  357. return &Batch{Type: typ}
  358. }
  359. // NewBatch creates a new batch operation using defaults defined in the cluster
  360. func (s *Session) NewBatch(typ BatchType) *Batch {
  361. return &Batch{Type: typ, rt: s.cfg.RetryPolicy}
  362. }
  363. // Query adds the query to the batch operation
  364. func (b *Batch) Query(stmt string, args ...interface{}) {
  365. b.Entries = append(b.Entries, BatchEntry{Stmt: stmt, Args: args})
  366. }
  367. // Bind adds the query to the batch operation and correlates it with a binding callback
  368. // that will be invoked when the batch is executed. The binding callback allows the application
  369. // to define which query argument values will be marshalled as part of the batch execution.
  370. func (b *Batch) Bind(stmt string, bind func(q *QueryInfo) ([]interface{}, error)) {
  371. b.Entries = append(b.Entries, BatchEntry{Stmt: stmt, binding: bind})
  372. }
  373. // RetryPolicy sets the retry policy to use when executing the batch operation
  374. func (b *Batch) RetryPolicy(r RetryPolicy) *Batch {
  375. b.rt = r
  376. return b
  377. }
  378. // Size returns the number of batch statements to be executed by the batch operation.
  379. func (b *Batch) Size() int {
  380. return len(b.Entries)
  381. }
  382. type BatchType int
  383. const (
  384. LoggedBatch BatchType = 0
  385. UnloggedBatch BatchType = 1
  386. CounterBatch BatchType = 2
  387. )
  388. type BatchEntry struct {
  389. Stmt string
  390. Args []interface{}
  391. binding func(q *QueryInfo) ([]interface{}, error)
  392. }
  393. type Consistency int
  394. const (
  395. Any Consistency = 1 + iota
  396. One
  397. Two
  398. Three
  399. Quorum
  400. All
  401. LocalQuorum
  402. EachQuorum
  403. Serial
  404. LocalSerial
  405. )
  406. var ConsistencyNames = []string{
  407. 0: "default",
  408. Any: "any",
  409. One: "one",
  410. Two: "two",
  411. Three: "three",
  412. Quorum: "quorum",
  413. All: "all",
  414. LocalQuorum: "localquorum",
  415. EachQuorum: "eachquorum",
  416. Serial: "serial",
  417. LocalSerial: "localserial",
  418. }
  419. func (c Consistency) String() string {
  420. return ConsistencyNames[c]
  421. }
  422. type ColumnInfo struct {
  423. Keyspace string
  424. Table string
  425. Name string
  426. TypeInfo *TypeInfo
  427. }
  428. // Tracer is the interface implemented by query tracers. Tracers have the
  429. // ability to obtain a detailed event log of all events that happened during
  430. // the execution of a query from Cassandra. Gathering this information might
  431. // be essential for debugging and optimizing queries, but this feature should
  432. // not be used on production systems with very high load.
  433. type Tracer interface {
  434. Trace(traceId []byte)
  435. }
  436. type traceWriter struct {
  437. session *Session
  438. w io.Writer
  439. mu sync.Mutex
  440. }
  441. // NewTraceWriter returns a simple Tracer implementation that outputs
  442. // the event log in a textual format.
  443. func NewTraceWriter(session *Session, w io.Writer) Tracer {
  444. return traceWriter{session: session, w: w}
  445. }
  446. func (t traceWriter) Trace(traceId []byte) {
  447. var (
  448. coordinator string
  449. duration int
  450. )
  451. t.session.Query(`SELECT coordinator, duration
  452. FROM system_traces.sessions
  453. WHERE session_id = ?`, traceId).
  454. Consistency(One).Scan(&coordinator, &duration)
  455. iter := t.session.Query(`SELECT event_id, activity, source, source_elapsed
  456. FROM system_traces.events
  457. WHERE session_id = ?`, traceId).
  458. Consistency(One).Iter()
  459. var (
  460. timestamp time.Time
  461. activity string
  462. source string
  463. elapsed int
  464. )
  465. t.mu.Lock()
  466. defer t.mu.Unlock()
  467. fmt.Fprintf(t.w, "Tracing session %016x (coordinator: %s, duration: %v):\n",
  468. traceId, coordinator, time.Duration(duration)*time.Microsecond)
  469. for iter.Scan(&timestamp, &activity, &source, &elapsed) {
  470. fmt.Fprintf(t.w, "%s: %s (source: %s, elapsed: %d)\n",
  471. timestamp.Format("2006/01/02 15:04:05.999999"), activity, source, elapsed)
  472. }
  473. if err := iter.Close(); err != nil {
  474. fmt.Fprintln(t.w, "Error:", err)
  475. }
  476. }
  477. type Error struct {
  478. Code int
  479. Message string
  480. }
  481. func (e Error) Error() string {
  482. return e.Message
  483. }
  484. var (
  485. ErrNotFound = errors.New("not found")
  486. ErrUnavailable = errors.New("unavailable")
  487. ErrUnsupported = errors.New("feature not supported")
  488. ErrTooManyStmts = errors.New("too many statements")
  489. ErrUseStmt = errors.New("use statements aren't supported. Please see https://github.com/gocql/gocql for explaination.")
  490. ErrSessionClosed = errors.New("session has been closed")
  491. ErrNoConnections = errors.New("no connections available")
  492. )
  493. type ErrProtocol struct{ error }
  494. func NewErrProtocol(format string, args ...interface{}) error {
  495. return ErrProtocol{fmt.Errorf(format, args...)}
  496. }
  497. // BatchSizeMaximum is the maximum number of statements a batch operation can have.
  498. // This limit is set by cassandra and could change in the future.
  499. const BatchSizeMaximum = 65535