frame.go 28 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. "fmt"
  7. "io"
  8. "net"
  9. "sync"
  10. "time"
  11. )
  12. const (
  13. protoDirectionMask = 0x80
  14. protoVersionMask = 0x7F
  15. protoVersion1 = 0x01
  16. protoVersion2 = 0x02
  17. protoVersion3 = 0x03
  18. )
  19. type protoVersion byte
  20. func (p protoVersion) request() bool {
  21. return p&protoDirectionMask == 0x00
  22. }
  23. func (p protoVersion) response() bool {
  24. return p&protoDirectionMask == 0x80
  25. }
  26. func (p protoVersion) version() byte {
  27. return byte(p) & protoVersionMask
  28. }
  29. func (p protoVersion) String() string {
  30. dir := "REQ"
  31. if p.response() {
  32. dir = "RESP"
  33. }
  34. return fmt.Sprintf("[version=%d direction=%s]", p.version(), dir)
  35. }
  36. type frameOp byte
  37. const (
  38. // header ops
  39. opError frameOp = 0x00
  40. opStartup = 0x01
  41. opReady = 0x02
  42. opAuthenticate = 0x03
  43. opOptions = 0x05
  44. opSupported = 0x06
  45. opQuery = 0x07
  46. opResult = 0x08
  47. opPrepare = 0x09
  48. opExecute = 0x0A
  49. opRegister = 0x0B
  50. opEvent = 0x0C
  51. opBatch = 0x0D
  52. opAuthChallenge = 0x0E
  53. opAuthResponse = 0x0F
  54. opAuthSuccess = 0x10
  55. )
  56. func (f frameOp) String() string {
  57. switch f {
  58. case opError:
  59. return "ERROR"
  60. case opStartup:
  61. return "STARTUP"
  62. case opReady:
  63. return "READY"
  64. case opAuthenticate:
  65. return "AUTHENTICATE"
  66. case opOptions:
  67. return "OPTIONS"
  68. case opSupported:
  69. return "SUPPORTED"
  70. case opQuery:
  71. return "QUERY"
  72. case opResult:
  73. return "RESULT"
  74. case opPrepare:
  75. return "PREPARE"
  76. case opExecute:
  77. return "EXECUTE"
  78. case opRegister:
  79. return "REGISTER"
  80. case opEvent:
  81. return "EVENT"
  82. case opBatch:
  83. return "BATCH"
  84. case opAuthChallenge:
  85. return "AUTH_CHALLENGE"
  86. case opAuthResponse:
  87. return "AUTH_RESPONSE"
  88. case opAuthSuccess:
  89. return "AUTH_SUCCESS"
  90. default:
  91. return fmt.Sprintf("UNKNOWN_OP_%d", f)
  92. }
  93. }
  94. const (
  95. // result kind
  96. resultKindVoid = 1
  97. resultKindRows = 2
  98. resultKindKeyspace = 3
  99. resultKindPrepared = 4
  100. resultKindSchemaChanged = 5
  101. // rows flags
  102. flagGlobalTableSpec int = 0x01
  103. flagHasMorePages = 0x02
  104. flagNoMetaData = 0x04
  105. // query flags
  106. flagValues byte = 0x01
  107. flagSkipMetaData = 0x02
  108. flagPageSize = 0x04
  109. flagWithPagingState = 0x08
  110. flagWithSerialConsistency = 0x10
  111. flagDefaultTimestamp = 0x20
  112. flagWithNameValues = 0x40
  113. // header flags
  114. flagCompress byte = 0x01
  115. flagTracing = 0x02
  116. )
  117. type Consistency uint16
  118. const (
  119. Any Consistency = 0x00
  120. One Consistency = 0x01
  121. Two Consistency = 0x02
  122. Three Consistency = 0x03
  123. Quorum Consistency = 0x04
  124. All Consistency = 0x05
  125. LocalQuorum Consistency = 0x06
  126. EachQuorum Consistency = 0x07
  127. LocalOne Consistency = 0x0A
  128. )
  129. func (c Consistency) String() string {
  130. switch c {
  131. case Any:
  132. return "ANY"
  133. case One:
  134. return "ONE"
  135. case Two:
  136. return "TWO"
  137. case Three:
  138. return "THREE"
  139. case Quorum:
  140. return "QUORUM"
  141. case All:
  142. return "ALL"
  143. case LocalQuorum:
  144. return "LOCAL_QUORUM"
  145. case EachQuorum:
  146. return "EACH_QUORUM"
  147. case LocalOne:
  148. return "LOCAL_ONE"
  149. default:
  150. return fmt.Sprintf("UNKNOWN_CONS_0x%x", uint16(c))
  151. }
  152. }
  153. type SerialConsistency uint16
  154. const (
  155. Serial SerialConsistency = 0x08
  156. LocalSerial SerialConsistency = 0x09
  157. )
  158. func (s SerialConsistency) String() string {
  159. switch s {
  160. case Serial:
  161. return "SERIAL"
  162. case LocalSerial:
  163. return "LOCAL_SERIAL"
  164. default:
  165. return fmt.Sprintf("UNKNOWN_SERIAL_CONS_0x%x", uint16(s))
  166. }
  167. }
  168. const (
  169. apacheCassandraTypePrefix = "org.apache.cassandra.db.marshal."
  170. )
  171. func writeInt(p []byte, n int32) {
  172. p[0] = byte(n >> 24)
  173. p[1] = byte(n >> 16)
  174. p[2] = byte(n >> 8)
  175. p[3] = byte(n)
  176. }
  177. func readInt(p []byte) int32 {
  178. return int32(p[0])<<24 | int32(p[1])<<16 | int32(p[2])<<8 | int32(p[3])
  179. }
  180. func writeShort(p []byte, n uint16) {
  181. p[0] = byte(n >> 8)
  182. p[1] = byte(n)
  183. }
  184. func readShort(p []byte) uint16 {
  185. return uint16(p[0])<<8 | uint16(p[1])
  186. }
  187. type frameHeader struct {
  188. version protoVersion
  189. flags byte
  190. stream int
  191. op frameOp
  192. length int
  193. }
  194. func (f frameHeader) String() string {
  195. return fmt.Sprintf("[header version=%s flags=0x%x stream=%d op=%s length=%d]", f.version, f.flags, f.stream, f.op, f.length)
  196. }
  197. func (f frameHeader) Header() frameHeader {
  198. return f
  199. }
  200. const defaultBufSize = 128
  201. var framerPool = sync.Pool{
  202. New: func() interface{} {
  203. return &framer{
  204. wbuf: make([]byte, defaultBufSize),
  205. readBuffer: make([]byte, defaultBufSize),
  206. }
  207. },
  208. }
  209. // a framer is responsible for reading, writing and parsing frames on a single stream
  210. type framer struct {
  211. r io.Reader
  212. w io.Writer
  213. proto byte
  214. // flags are for outgoing flags, enabling compression and tracing etc
  215. flags byte
  216. compres Compressor
  217. headSize int
  218. // if this frame was read then the header will be here
  219. header *frameHeader
  220. // if tracing flag is set this is not nil
  221. traceID []byte
  222. // holds a ref to the whole byte slice for rbuf so that it can be reset to
  223. // 0 after a read.
  224. readBuffer []byte
  225. rbuf []byte
  226. wbuf []byte
  227. }
  228. func newFramer(r io.Reader, w io.Writer, compressor Compressor, version byte) *framer {
  229. f := framerPool.Get().(*framer)
  230. var flags byte
  231. if compressor != nil {
  232. flags |= flagCompress
  233. }
  234. version &= protoVersionMask
  235. headSize := 8
  236. if version > protoVersion2 {
  237. headSize = 9
  238. }
  239. f.compres = compressor
  240. f.proto = version
  241. f.flags = flags
  242. f.headSize = headSize
  243. f.r = r
  244. f.rbuf = f.readBuffer[:0]
  245. f.w = w
  246. f.wbuf = f.wbuf[:0]
  247. f.header = nil
  248. f.traceID = nil
  249. return f
  250. }
  251. type frame interface {
  252. Header() frameHeader
  253. }
  254. func readHeader(r io.Reader, p []byte) (head frameHeader, err error) {
  255. _, err = io.ReadFull(r, p)
  256. if err != nil {
  257. return
  258. }
  259. version := p[0] & protoVersionMask
  260. head.version = protoVersion(p[0])
  261. head.flags = p[1]
  262. if version > protoVersion2 {
  263. head.stream = int(int16(p[2])<<8 | int16(p[3]))
  264. head.op = frameOp(p[4])
  265. head.length = int(readInt(p[5:]))
  266. } else {
  267. head.stream = int(int8(p[2]))
  268. head.op = frameOp(p[3])
  269. head.length = int(readInt(p[4:]))
  270. }
  271. return
  272. }
  273. // explicitly enables tracing for the framers outgoing requests
  274. func (f *framer) trace() {
  275. f.flags |= flagTracing
  276. }
  277. // reads a frame form the wire into the framers buffer
  278. func (f *framer) readFrame(head *frameHeader) error {
  279. if head.length < 0 {
  280. return fmt.Errorf("frame body length can not be less than 0: %d", head.length)
  281. }
  282. if cap(f.readBuffer) >= head.length {
  283. f.rbuf = f.readBuffer[:head.length]
  284. } else {
  285. f.readBuffer = make([]byte, head.length)
  286. f.rbuf = f.readBuffer
  287. }
  288. // assume the underlying reader takes care of timeouts and retries
  289. _, err := io.ReadFull(f.r, f.rbuf)
  290. if err != nil {
  291. return err
  292. }
  293. if head.flags&flagCompress == flagCompress {
  294. if f.compres == nil {
  295. return NewErrProtocol("no compressor available with compressed frame body")
  296. }
  297. f.rbuf, err = f.compres.Decode(f.rbuf)
  298. if err != nil {
  299. return err
  300. }
  301. }
  302. f.header = head
  303. return nil
  304. }
  305. func (f *framer) parseFrame() (frame, error) {
  306. if f.header.version.request() {
  307. return nil, NewErrProtocol("got a request frame from server: %v", f.header.version)
  308. }
  309. if f.header.flags&flagTracing == flagTracing {
  310. f.readTrace()
  311. }
  312. var (
  313. frame frame
  314. err error
  315. )
  316. // asumes that the frame body has been read into rbuf
  317. switch f.header.op {
  318. case opError:
  319. frame = f.parseErrorFrame()
  320. case opReady:
  321. frame = f.parseReadyFrame()
  322. case opResult:
  323. frame, err = f.parseResultFrame()
  324. case opSupported:
  325. frame = f.parseSupportedFrame()
  326. case opAuthenticate:
  327. frame = f.parseAuthenticateFrame()
  328. case opAuthChallenge:
  329. frame = f.parseAuthChallengeFrame()
  330. case opAuthSuccess:
  331. frame = f.parseAuthSuccessFrame()
  332. default:
  333. return nil, NewErrProtocol("unknown op in frame header: %s", f.header.op)
  334. }
  335. return frame, err
  336. }
  337. func (f *framer) parseErrorFrame() frame {
  338. code := f.readInt()
  339. msg := f.readString()
  340. errD := errorFrame{
  341. frameHeader: *f.header,
  342. code: code,
  343. message: msg,
  344. }
  345. switch code {
  346. case errUnavailable:
  347. cl := f.readConsistency()
  348. required := f.readInt()
  349. alive := f.readInt()
  350. return &RequestErrUnavailable{
  351. errorFrame: errD,
  352. Consistency: cl,
  353. Required: required,
  354. Alive: alive,
  355. }
  356. case errWriteTimeout:
  357. cl := f.readConsistency()
  358. received := f.readInt()
  359. blockfor := f.readInt()
  360. writeType := f.readString()
  361. return &RequestErrWriteTimeout{
  362. errorFrame: errD,
  363. Consistency: cl,
  364. Received: received,
  365. BlockFor: blockfor,
  366. WriteType: writeType,
  367. }
  368. case errReadTimeout:
  369. cl := f.readConsistency()
  370. received := f.readInt()
  371. blockfor := f.readInt()
  372. dataPresent := f.readByte()
  373. return &RequestErrReadTimeout{
  374. errorFrame: errD,
  375. Consistency: cl,
  376. Received: received,
  377. BlockFor: blockfor,
  378. DataPresent: dataPresent,
  379. }
  380. case errAlreadyExists:
  381. ks := f.readString()
  382. table := f.readString()
  383. return &RequestErrAlreadyExists{
  384. errorFrame: errD,
  385. Keyspace: ks,
  386. Table: table,
  387. }
  388. case errUnprepared:
  389. stmtId := f.readShortBytes()
  390. return &RequestErrUnprepared{
  391. errorFrame: errD,
  392. StatementId: stmtId,
  393. }
  394. default:
  395. return &errD
  396. }
  397. }
  398. func (f *framer) writeHeader(flags byte, op frameOp, stream int) {
  399. f.wbuf = f.wbuf[:0]
  400. f.wbuf = append(f.wbuf,
  401. f.proto,
  402. flags,
  403. )
  404. if f.proto > protoVersion2 {
  405. f.wbuf = append(f.wbuf,
  406. byte(stream>>8),
  407. byte(stream),
  408. )
  409. } else {
  410. f.wbuf = append(f.wbuf,
  411. byte(stream),
  412. )
  413. }
  414. // pad out length
  415. f.wbuf = append(f.wbuf,
  416. byte(op),
  417. 0,
  418. 0,
  419. 0,
  420. 0,
  421. )
  422. }
  423. func (f *framer) setLength(length int) {
  424. p := 4
  425. if f.proto > protoVersion2 {
  426. p = 5
  427. }
  428. f.wbuf[p+0] = byte(length >> 24)
  429. f.wbuf[p+1] = byte(length >> 16)
  430. f.wbuf[p+2] = byte(length >> 8)
  431. f.wbuf[p+3] = byte(length)
  432. }
  433. func (f *framer) finishWrite() error {
  434. if f.wbuf[1]&flagCompress == flagCompress {
  435. if f.compres == nil {
  436. panic("compress flag set with no compressor")
  437. }
  438. // TODO: only compress frames which are big enough
  439. compressed, err := f.compres.Encode(f.wbuf[f.headSize:])
  440. if err != nil {
  441. return err
  442. }
  443. f.wbuf = append(f.wbuf[:f.headSize], compressed...)
  444. }
  445. length := len(f.wbuf) - f.headSize
  446. f.setLength(length)
  447. _, err := f.w.Write(f.wbuf)
  448. if err != nil {
  449. return err
  450. }
  451. return nil
  452. }
  453. func (f *framer) readTrace() {
  454. f.traceID = f.readUUID().Bytes()
  455. }
  456. type readyFrame struct {
  457. frameHeader
  458. }
  459. func (f *framer) parseReadyFrame() frame {
  460. return &readyFrame{
  461. frameHeader: *f.header,
  462. }
  463. }
  464. type supportedFrame struct {
  465. frameHeader
  466. supported map[string][]string
  467. }
  468. // TODO: if we move the body buffer onto the frameHeader then we only need a single
  469. // framer, and can move the methods onto the header.
  470. func (f *framer) parseSupportedFrame() frame {
  471. return &supportedFrame{
  472. frameHeader: *f.header,
  473. supported: f.readStringMultiMap(),
  474. }
  475. }
  476. type writeStartupFrame struct {
  477. opts map[string]string
  478. }
  479. func (w *writeStartupFrame) writeFrame(framer *framer, streamID int) error {
  480. return framer.writeStartupFrame(streamID, w.opts)
  481. }
  482. func (f *framer) writeStartupFrame(streamID int, options map[string]string) error {
  483. f.writeHeader(f.flags&^flagCompress, opStartup, streamID)
  484. f.writeStringMap(options)
  485. return f.finishWrite()
  486. }
  487. type writePrepareFrame struct {
  488. statement string
  489. }
  490. func (w *writePrepareFrame) writeFrame(framer *framer, streamID int) error {
  491. return framer.writePrepareFrame(streamID, w.statement)
  492. }
  493. func (f *framer) writePrepareFrame(stream int, statement string) error {
  494. f.writeHeader(f.flags, opPrepare, stream)
  495. f.writeLongString(statement)
  496. return f.finishWrite()
  497. }
  498. func (f *framer) readTypeInfo() TypeInfo {
  499. // TODO: factor this out so the same code paths can be used to parse custom
  500. // types and other types, as much of the logic will be duplicated.
  501. id := f.readShort()
  502. simple := NativeType{
  503. proto: f.proto,
  504. typ: Type(id),
  505. }
  506. if simple.typ == TypeCustom {
  507. simple.custom = f.readString()
  508. if cassType := getApacheCassandraType(simple.custom); cassType != TypeCustom {
  509. simple.typ = cassType
  510. }
  511. }
  512. switch simple.typ {
  513. case TypeTuple:
  514. n := f.readShort()
  515. tuple := TupleTypeInfo{
  516. NativeType: simple,
  517. Elems: make([]TypeInfo, n),
  518. }
  519. for i := 0; i < int(n); i++ {
  520. tuple.Elems[i] = f.readTypeInfo()
  521. }
  522. return tuple
  523. case TypeUDT:
  524. udt := UDTTypeInfo{
  525. NativeType: simple,
  526. }
  527. udt.KeySpace = f.readString()
  528. udt.Name = f.readString()
  529. n := f.readShort()
  530. udt.Elements = make([]UDTField, n)
  531. for i := 0; i < int(n); i++ {
  532. field := &udt.Elements[i]
  533. field.Name = f.readString()
  534. field.Type = f.readTypeInfo()
  535. }
  536. return udt
  537. case TypeMap, TypeList, TypeSet:
  538. collection := CollectionType{
  539. NativeType: simple,
  540. }
  541. if simple.typ == TypeMap {
  542. collection.Key = f.readTypeInfo()
  543. }
  544. collection.Elem = f.readTypeInfo()
  545. return collection
  546. }
  547. return simple
  548. }
  549. type resultMetadata struct {
  550. flags int
  551. // only if flagPageState
  552. pagingState []byte
  553. columns []ColumnInfo
  554. // this is a count of the total number of columns which can be scanned,
  555. // it is at minimum len(columns) but may be larger, for instance when a column
  556. // is a UDT or tuple.
  557. actualColCount int
  558. }
  559. func (r resultMetadata) String() string {
  560. return fmt.Sprintf("[metadata flags=0x%x paging_state=% X columns=%v]", r.flags, r.pagingState, r.columns)
  561. }
  562. func (f *framer) parseResultMetadata() resultMetadata {
  563. meta := resultMetadata{
  564. flags: f.readInt(),
  565. }
  566. colCount := f.readInt()
  567. meta.actualColCount = colCount
  568. if meta.flags&flagHasMorePages == flagHasMorePages {
  569. meta.pagingState = f.readBytes()
  570. }
  571. if meta.flags&flagNoMetaData == flagNoMetaData {
  572. return meta
  573. }
  574. var keyspace, table string
  575. globalSpec := meta.flags&flagGlobalTableSpec == flagGlobalTableSpec
  576. if globalSpec {
  577. keyspace = f.readString()
  578. table = f.readString()
  579. }
  580. cols := make([]ColumnInfo, colCount)
  581. for i := 0; i < colCount; i++ {
  582. col := &cols[i]
  583. if !globalSpec {
  584. col.Keyspace = f.readString()
  585. col.Table = f.readString()
  586. } else {
  587. col.Keyspace = keyspace
  588. col.Table = table
  589. }
  590. col.Name = f.readString()
  591. col.TypeInfo = f.readTypeInfo()
  592. switch v := col.TypeInfo.(type) {
  593. // maybe also UDT
  594. case TupleTypeInfo:
  595. // -1 because we already included the tuple column
  596. meta.actualColCount += len(v.Elems) - 1
  597. }
  598. }
  599. meta.columns = cols
  600. return meta
  601. }
  602. type resultVoidFrame struct {
  603. frameHeader
  604. }
  605. func (f *resultVoidFrame) String() string {
  606. return "[result_void]"
  607. }
  608. func (f *framer) parseResultFrame() (frame, error) {
  609. kind := f.readInt()
  610. switch kind {
  611. case resultKindVoid:
  612. return &resultVoidFrame{frameHeader: *f.header}, nil
  613. case resultKindRows:
  614. return f.parseResultRows(), nil
  615. case resultKindKeyspace:
  616. return f.parseResultSetKeyspace(), nil
  617. case resultKindPrepared:
  618. return f.parseResultPrepared(), nil
  619. case resultKindSchemaChanged:
  620. return f.parseResultSchemaChange(), nil
  621. }
  622. return nil, NewErrProtocol("unknown result kind: %x", kind)
  623. }
  624. type resultRowsFrame struct {
  625. frameHeader
  626. meta resultMetadata
  627. rows [][][]byte
  628. }
  629. func (f *resultRowsFrame) String() string {
  630. return fmt.Sprintf("[result_rows meta=%v]", f.meta)
  631. }
  632. func (f *framer) parseResultRows() frame {
  633. meta := f.parseResultMetadata()
  634. numRows := f.readInt()
  635. colCount := len(meta.columns)
  636. rows := make([][][]byte, numRows)
  637. for i := 0; i < numRows; i++ {
  638. rows[i] = make([][]byte, colCount)
  639. for j := 0; j < colCount; j++ {
  640. rows[i][j] = f.readBytes()
  641. }
  642. }
  643. return &resultRowsFrame{
  644. frameHeader: *f.header,
  645. meta: meta,
  646. rows: rows,
  647. }
  648. }
  649. type resultKeyspaceFrame struct {
  650. frameHeader
  651. keyspace string
  652. }
  653. func (r *resultKeyspaceFrame) String() string {
  654. return fmt.Sprintf("[result_keyspace keyspace=%s]", r.keyspace)
  655. }
  656. func (f *framer) parseResultSetKeyspace() frame {
  657. return &resultKeyspaceFrame{
  658. frameHeader: *f.header,
  659. keyspace: f.readString(),
  660. }
  661. }
  662. type resultPreparedFrame struct {
  663. frameHeader
  664. preparedID []byte
  665. reqMeta resultMetadata
  666. respMeta resultMetadata
  667. }
  668. func (f *framer) parseResultPrepared() frame {
  669. frame := &resultPreparedFrame{
  670. frameHeader: *f.header,
  671. preparedID: f.readShortBytes(),
  672. reqMeta: f.parseResultMetadata(),
  673. }
  674. if f.proto < protoVersion2 {
  675. return frame
  676. }
  677. frame.respMeta = f.parseResultMetadata()
  678. return frame
  679. }
  680. type resultSchemaChangeFrame struct {
  681. frameHeader
  682. change string
  683. keyspace string
  684. table string
  685. }
  686. func (s *resultSchemaChangeFrame) String() string {
  687. return fmt.Sprintf("[result_schema_change change=%s keyspace=%s table=%s]", s.change, s.keyspace, s.table)
  688. }
  689. func (f *framer) parseResultSchemaChange() frame {
  690. frame := &resultSchemaChangeFrame{
  691. frameHeader: *f.header,
  692. }
  693. if f.proto < protoVersion3 {
  694. frame.change = f.readString()
  695. frame.keyspace = f.readString()
  696. frame.table = f.readString()
  697. } else {
  698. // TODO: improve type representation of this
  699. frame.change = f.readString()
  700. target := f.readString()
  701. switch target {
  702. case "KEYSPACE":
  703. frame.keyspace = f.readString()
  704. case "TABLE", "TYPE":
  705. frame.keyspace = f.readString()
  706. frame.table = f.readString()
  707. }
  708. }
  709. return frame
  710. }
  711. type authenticateFrame struct {
  712. frameHeader
  713. class string
  714. }
  715. func (a *authenticateFrame) String() string {
  716. return fmt.Sprintf("[authenticate class=%q]", a.class)
  717. }
  718. func (f *framer) parseAuthenticateFrame() frame {
  719. return &authenticateFrame{
  720. frameHeader: *f.header,
  721. class: f.readString(),
  722. }
  723. }
  724. type authSuccessFrame struct {
  725. frameHeader
  726. data []byte
  727. }
  728. func (a *authSuccessFrame) String() string {
  729. return fmt.Sprintf("[auth_success data=%q]", a.data)
  730. }
  731. func (f *framer) parseAuthSuccessFrame() frame {
  732. return &authSuccessFrame{
  733. frameHeader: *f.header,
  734. data: f.readBytes(),
  735. }
  736. }
  737. type authChallengeFrame struct {
  738. frameHeader
  739. data []byte
  740. }
  741. func (a *authChallengeFrame) String() string {
  742. return fmt.Sprintf("[auth_challenge data=%q]", a.data)
  743. }
  744. func (f *framer) parseAuthChallengeFrame() frame {
  745. return &authChallengeFrame{
  746. frameHeader: *f.header,
  747. data: f.readBytes(),
  748. }
  749. }
  750. type writeAuthResponseFrame struct {
  751. data []byte
  752. }
  753. func (a *writeAuthResponseFrame) String() string {
  754. return fmt.Sprintf("[auth_response data=%q]", a.data)
  755. }
  756. func (a *writeAuthResponseFrame) writeFrame(framer *framer, streamID int) error {
  757. return framer.writeAuthResponseFrame(streamID, a.data)
  758. }
  759. func (f *framer) writeAuthResponseFrame(streamID int, data []byte) error {
  760. f.writeHeader(f.flags, opAuthResponse, streamID)
  761. f.writeBytes(data)
  762. return f.finishWrite()
  763. }
  764. type queryValues struct {
  765. value []byte
  766. // optional name, will set With names for values flag
  767. name string
  768. }
  769. type queryParams struct {
  770. consistency Consistency
  771. // v2+
  772. skipMeta bool
  773. values []queryValues
  774. pageSize int
  775. pagingState []byte
  776. serialConsistency SerialConsistency
  777. // v3+
  778. defaultTimestamp bool
  779. }
  780. func (q queryParams) String() string {
  781. return fmt.Sprintf("[query_params consistency=%v skip_meta=%v page_size=%d paging_state=%q serial_consistency=%v default_timestamp=%v values=%v]",
  782. q.consistency, q.skipMeta, q.pageSize, q.pagingState, q.serialConsistency, q.defaultTimestamp, q.values)
  783. }
  784. func (f *framer) writeQueryParams(opts *queryParams) {
  785. f.writeConsistency(opts.consistency)
  786. if f.proto == protoVersion1 {
  787. return
  788. }
  789. var flags byte
  790. if len(opts.values) > 0 {
  791. flags |= flagValues
  792. }
  793. if opts.skipMeta {
  794. flags |= flagSkipMetaData
  795. }
  796. if opts.pageSize > 0 {
  797. flags |= flagPageSize
  798. }
  799. if len(opts.pagingState) > 0 {
  800. flags |= flagWithPagingState
  801. }
  802. if opts.serialConsistency > 0 {
  803. flags |= flagWithSerialConsistency
  804. }
  805. names := false
  806. // protoV3 specific things
  807. if f.proto > protoVersion2 {
  808. if opts.defaultTimestamp {
  809. flags |= flagDefaultTimestamp
  810. }
  811. if len(opts.values) > 0 && opts.values[0].name != "" {
  812. flags |= flagWithNameValues
  813. names = true
  814. }
  815. }
  816. f.writeByte(flags)
  817. if n := len(opts.values); n > 0 {
  818. f.writeShort(uint16(n))
  819. for i := 0; i < n; i++ {
  820. if names {
  821. f.writeString(opts.values[i].name)
  822. }
  823. f.writeBytes(opts.values[i].value)
  824. }
  825. }
  826. if opts.pageSize > 0 {
  827. f.writeInt(int32(opts.pageSize))
  828. }
  829. if len(opts.pagingState) > 0 {
  830. f.writeBytes(opts.pagingState)
  831. }
  832. if opts.serialConsistency > 0 {
  833. f.writeConsistency(Consistency(opts.serialConsistency))
  834. }
  835. if f.proto > protoVersion2 && opts.defaultTimestamp {
  836. // timestamp in microseconds
  837. ts := time.Now().UnixNano() / 1000
  838. f.writeLong(ts)
  839. }
  840. }
  841. type writeQueryFrame struct {
  842. statement string
  843. params queryParams
  844. }
  845. func (w *writeQueryFrame) String() string {
  846. return fmt.Sprintf("[query statement=%q params=%v]", w.statement, w.params)
  847. }
  848. func (w *writeQueryFrame) writeFrame(framer *framer, streamID int) error {
  849. return framer.writeQueryFrame(streamID, w.statement, &w.params)
  850. }
  851. func (f *framer) writeQueryFrame(streamID int, statement string, params *queryParams) error {
  852. f.writeHeader(f.flags, opQuery, streamID)
  853. f.writeLongString(statement)
  854. f.writeQueryParams(params)
  855. return f.finishWrite()
  856. }
  857. type frameWriter interface {
  858. writeFrame(framer *framer, streamID int) error
  859. }
  860. type writeExecuteFrame struct {
  861. preparedID []byte
  862. params queryParams
  863. }
  864. func (e *writeExecuteFrame) String() string {
  865. return fmt.Sprintf("[execute id=% X params=%v]", e.preparedID, &e.params)
  866. }
  867. func (e *writeExecuteFrame) writeFrame(fr *framer, streamID int) error {
  868. return fr.writeExecuteFrame(streamID, e.preparedID, &e.params)
  869. }
  870. func (f *framer) writeExecuteFrame(streamID int, preparedID []byte, params *queryParams) error {
  871. f.writeHeader(f.flags, opExecute, streamID)
  872. f.writeShortBytes(preparedID)
  873. if f.proto > protoVersion1 {
  874. f.writeQueryParams(params)
  875. } else {
  876. n := len(params.values)
  877. f.writeShort(uint16(n))
  878. for i := 0; i < n; i++ {
  879. f.writeBytes(params.values[i].value)
  880. }
  881. f.writeConsistency(params.consistency)
  882. }
  883. return f.finishWrite()
  884. }
  885. // TODO: can we replace BatchStatemt with batchStatement? As they prety much
  886. // duplicate each other
  887. type batchStatment struct {
  888. preparedID []byte
  889. statement string
  890. values []queryValues
  891. }
  892. type writeBatchFrame struct {
  893. typ BatchType
  894. statements []batchStatment
  895. consistency Consistency
  896. // v3+
  897. serialConsistency SerialConsistency
  898. defaultTimestamp bool
  899. }
  900. func (w *writeBatchFrame) writeFrame(framer *framer, streamID int) error {
  901. return framer.writeBatchFrame(streamID, w)
  902. }
  903. func (f *framer) writeBatchFrame(streamID int, w *writeBatchFrame) error {
  904. f.writeHeader(f.flags, opBatch, streamID)
  905. f.writeByte(byte(w.typ))
  906. n := len(w.statements)
  907. f.writeShort(uint16(n))
  908. var flags byte
  909. for i := 0; i < n; i++ {
  910. b := &w.statements[i]
  911. if len(b.preparedID) == 0 {
  912. f.writeByte(0)
  913. f.writeLongString(b.statement)
  914. } else {
  915. f.writeByte(1)
  916. f.writeShortBytes(b.preparedID)
  917. }
  918. f.writeShort(uint16(len(b.values)))
  919. for j := range b.values {
  920. col := &b.values[j]
  921. if f.proto > protoVersion2 && col.name != "" {
  922. // TODO: move this check into the caller and set a flag on writeBatchFrame
  923. // to indicate using named values
  924. flags |= flagWithNameValues
  925. f.writeString(col.name)
  926. }
  927. f.writeBytes(col.value)
  928. }
  929. }
  930. f.writeConsistency(w.consistency)
  931. if f.proto > protoVersion2 {
  932. if w.serialConsistency > 0 {
  933. flags |= flagWithSerialConsistency
  934. }
  935. if w.defaultTimestamp {
  936. flags |= flagDefaultTimestamp
  937. }
  938. f.writeByte(flags)
  939. if w.serialConsistency > 0 {
  940. f.writeConsistency(Consistency(w.serialConsistency))
  941. }
  942. if w.defaultTimestamp {
  943. now := time.Now().UnixNano() / 1000
  944. f.writeLong(now)
  945. }
  946. }
  947. return f.finishWrite()
  948. }
  949. func (f *framer) readByte() byte {
  950. b := f.rbuf[0]
  951. f.rbuf = f.rbuf[1:]
  952. return b
  953. }
  954. func (f *framer) readInt() (n int) {
  955. n = int(int32(f.rbuf[0])<<24 | int32(f.rbuf[1])<<16 | int32(f.rbuf[2])<<8 | int32(f.rbuf[3]))
  956. f.rbuf = f.rbuf[4:]
  957. return
  958. }
  959. func (f *framer) readShort() (n uint16) {
  960. n = uint16(f.rbuf[0])<<8 | uint16(f.rbuf[1])
  961. f.rbuf = f.rbuf[2:]
  962. return
  963. }
  964. func (f *framer) readLong() (n int64) {
  965. n = int64(f.rbuf[0])<<56 | int64(f.rbuf[1])<<48 | int64(f.rbuf[2])<<40 | int64(f.rbuf[3])<<32 |
  966. int64(f.rbuf[4])<<24 | int64(f.rbuf[5])<<16 | int64(f.rbuf[6])<<8 | int64(f.rbuf[7])
  967. f.rbuf = f.rbuf[8:]
  968. return
  969. }
  970. func (f *framer) readString() (s string) {
  971. size := f.readShort()
  972. s = string(f.rbuf[:size])
  973. f.rbuf = f.rbuf[size:]
  974. return
  975. }
  976. func (f *framer) readLongString() (s string) {
  977. size := f.readInt()
  978. s = string(f.rbuf[:size])
  979. f.rbuf = f.rbuf[size:]
  980. return
  981. }
  982. func (f *framer) readUUID() *UUID {
  983. // TODO: how to handle this error, if it is a uuid, then sureley, problems?
  984. u, _ := UUIDFromBytes(f.rbuf[:16])
  985. f.rbuf = f.rbuf[16:]
  986. return &u
  987. }
  988. func (f *framer) readStringList() []string {
  989. size := f.readShort()
  990. l := make([]string, size)
  991. for i := 0; i < int(size); i++ {
  992. l[i] = f.readString()
  993. }
  994. return l
  995. }
  996. func (f *framer) readBytes() []byte {
  997. size := f.readInt()
  998. if size < 0 {
  999. return nil
  1000. }
  1001. // we cant make assumptions about the length of the life of the supplied byte
  1002. // slice so we defensivly copy it out of the underlying buffer. This has the
  1003. // downside of increasing allocs per read but will provide much greater memory
  1004. // safety. The allocs can hopefully be improved in the future.
  1005. // TODO: dont copy into a new slice
  1006. l := make([]byte, size)
  1007. copy(l, f.rbuf[:size])
  1008. f.rbuf = f.rbuf[size:]
  1009. return l
  1010. }
  1011. func (f *framer) readShortBytes() []byte {
  1012. size := f.readShort()
  1013. l := make([]byte, size)
  1014. copy(l, f.rbuf[:size])
  1015. f.rbuf = f.rbuf[size:]
  1016. return l
  1017. }
  1018. func (f *framer) readInet() (net.IP, int) {
  1019. size := f.rbuf[0]
  1020. f.rbuf = f.rbuf[1:]
  1021. if !(size == 4 || size == 16) {
  1022. panic(fmt.Sprintf("invalid IP size: %d", size))
  1023. }
  1024. ip := make([]byte, size)
  1025. copy(ip, f.rbuf[:size])
  1026. f.rbuf = f.rbuf[size:]
  1027. port := f.readInt()
  1028. return net.IP(ip), port
  1029. }
  1030. func (f *framer) readConsistency() Consistency {
  1031. return Consistency(f.readShort())
  1032. }
  1033. func (f *framer) readStringMap() map[string]string {
  1034. size := f.readShort()
  1035. m := make(map[string]string)
  1036. for i := 0; i < int(size); i++ {
  1037. k := f.readString()
  1038. v := f.readString()
  1039. m[k] = v
  1040. }
  1041. return m
  1042. }
  1043. func (f *framer) readStringMultiMap() map[string][]string {
  1044. size := f.readShort()
  1045. m := make(map[string][]string)
  1046. for i := 0; i < int(size); i++ {
  1047. k := f.readString()
  1048. v := f.readStringList()
  1049. m[k] = v
  1050. }
  1051. return m
  1052. }
  1053. func (f *framer) writeByte(b byte) {
  1054. f.wbuf = append(f.wbuf, b)
  1055. }
  1056. // these are protocol level binary types
  1057. func (f *framer) writeInt(n int32) {
  1058. f.wbuf = append(f.wbuf,
  1059. byte(n>>24),
  1060. byte(n>>16),
  1061. byte(n>>8),
  1062. byte(n),
  1063. )
  1064. }
  1065. func (f *framer) writeShort(n uint16) {
  1066. f.wbuf = append(f.wbuf,
  1067. byte(n>>8),
  1068. byte(n),
  1069. )
  1070. }
  1071. func (f *framer) writeLong(n int64) {
  1072. f.wbuf = append(f.wbuf,
  1073. byte(n>>56),
  1074. byte(n>>48),
  1075. byte(n>>40),
  1076. byte(n>>32),
  1077. byte(n>>24),
  1078. byte(n>>16),
  1079. byte(n>>8),
  1080. byte(n),
  1081. )
  1082. }
  1083. func (f *framer) writeString(s string) {
  1084. f.writeShort(uint16(len(s)))
  1085. f.wbuf = append(f.wbuf, s...)
  1086. }
  1087. func (f *framer) writeLongString(s string) {
  1088. f.writeInt(int32(len(s)))
  1089. f.wbuf = append(f.wbuf, s...)
  1090. }
  1091. func (f *framer) writeUUID(u *UUID) {
  1092. f.wbuf = append(f.wbuf, u[:]...)
  1093. }
  1094. func (f *framer) writeStringList(l []string) {
  1095. f.writeShort(uint16(len(l)))
  1096. for _, s := range l {
  1097. f.writeString(s)
  1098. }
  1099. }
  1100. func (f *framer) writeBytes(p []byte) {
  1101. // TODO: handle null case correctly,
  1102. // [bytes] A [int] n, followed by n bytes if n >= 0. If n < 0,
  1103. // no byte should follow and the value represented is `null`.
  1104. if p == nil {
  1105. f.writeInt(-1)
  1106. } else {
  1107. f.writeInt(int32(len(p)))
  1108. f.wbuf = append(f.wbuf, p...)
  1109. }
  1110. }
  1111. func (f *framer) writeShortBytes(p []byte) {
  1112. f.writeShort(uint16(len(p)))
  1113. f.wbuf = append(f.wbuf, p...)
  1114. }
  1115. func (f *framer) writeInet(ip net.IP, port int) {
  1116. f.wbuf = append(f.wbuf,
  1117. byte(len(ip)),
  1118. )
  1119. f.wbuf = append(f.wbuf,
  1120. []byte(ip)...,
  1121. )
  1122. f.writeInt(int32(port))
  1123. }
  1124. func (f *framer) writeConsistency(cons Consistency) {
  1125. f.writeShort(uint16(cons))
  1126. }
  1127. func (f *framer) writeStringMap(m map[string]string) {
  1128. f.writeShort(uint16(len(m)))
  1129. for k, v := range m {
  1130. f.writeString(k)
  1131. f.writeString(v)
  1132. }
  1133. }