ast.go 32 KB

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  1. package xsql
  2. import (
  3. "fmt"
  4. "github.com/emqx/kuiper/common"
  5. "github.com/emqx/kuiper/common/plugin_manager"
  6. "github.com/emqx/kuiper/xstream/api"
  7. "math"
  8. "sort"
  9. "strings"
  10. "time"
  11. )
  12. type Node interface {
  13. node()
  14. }
  15. type Expr interface {
  16. Node
  17. expr()
  18. }
  19. type Field struct {
  20. Name string
  21. AName string
  22. Expr
  23. }
  24. type Source interface {
  25. Node
  26. source()
  27. }
  28. type Sources []Source
  29. func (ss Sources) node() {}
  30. type Table struct {
  31. Name string
  32. Alias string
  33. }
  34. func (t *Table) source() {}
  35. func (ss *Table) node() {}
  36. type JoinType int
  37. const (
  38. LEFT_JOIN JoinType = iota
  39. INNER_JOIN
  40. RIGHT_JOIN
  41. FULL_JOIN
  42. CROSS_JOIN
  43. )
  44. type Join struct {
  45. Name string
  46. Alias string
  47. JoinType JoinType
  48. Expr Expr
  49. }
  50. func (j *Join) source() {}
  51. func (ss *Join) node() {}
  52. type Joins []Join
  53. func (ss Joins) node() {}
  54. type Statement interface {
  55. Stmt()
  56. Node
  57. }
  58. type SelectStatement struct {
  59. Fields Fields
  60. Sources Sources
  61. Joins Joins
  62. Condition Expr
  63. Dimensions Dimensions
  64. Having Expr
  65. SortFields SortFields
  66. }
  67. func (ss *SelectStatement) Stmt() {}
  68. func (ss *SelectStatement) node() {}
  69. type Literal interface {
  70. Expr
  71. literal()
  72. }
  73. type ParenExpr struct {
  74. Expr Expr
  75. }
  76. type ArrowExpr struct {
  77. Expr Expr
  78. }
  79. type BracketExpr struct {
  80. Expr Expr
  81. }
  82. type ColonExpr struct {
  83. Start int
  84. End int
  85. }
  86. type IndexExpr struct {
  87. Index int
  88. }
  89. type BooleanLiteral struct {
  90. Val bool
  91. }
  92. type TimeLiteral struct {
  93. Val Token
  94. }
  95. type IntegerLiteral struct {
  96. Val int
  97. }
  98. type StringLiteral struct {
  99. Val string
  100. }
  101. type NumberLiteral struct {
  102. Val float64
  103. }
  104. type Wildcard struct {
  105. Token Token
  106. }
  107. type Dimension struct {
  108. Expr Expr
  109. }
  110. type SortField struct {
  111. Name string
  112. Ascending bool
  113. }
  114. type SortFields []SortField
  115. type Dimensions []Dimension
  116. func (f *Field) expr() {}
  117. func (f *Field) node() {}
  118. func (pe *ParenExpr) expr() {}
  119. func (pe *ParenExpr) node() {}
  120. func (ae *ArrowExpr) expr() {}
  121. func (ae *ArrowExpr) node() {}
  122. func (be *BracketExpr) expr() {}
  123. func (be *BracketExpr) node() {}
  124. func (be *ColonExpr) expr() {}
  125. func (be *ColonExpr) node() {}
  126. func (be *IndexExpr) expr() {}
  127. func (be *IndexExpr) node() {}
  128. func (w *Wildcard) expr() {}
  129. func (w *Wildcard) node() {}
  130. func (bl *BooleanLiteral) expr() {}
  131. func (bl *BooleanLiteral) literal() {}
  132. func (bl *BooleanLiteral) node() {}
  133. func (tl *TimeLiteral) expr() {}
  134. func (tl *TimeLiteral) literal() {}
  135. func (tl *TimeLiteral) node() {}
  136. func (il *IntegerLiteral) expr() {}
  137. func (il *IntegerLiteral) literal() {}
  138. func (il *IntegerLiteral) node() {}
  139. func (nl *NumberLiteral) expr() {}
  140. func (nl *NumberLiteral) literal() {}
  141. func (nl *NumberLiteral) node() {}
  142. func (sl *StringLiteral) expr() {}
  143. func (sl *StringLiteral) literal() {}
  144. func (sl *StringLiteral) node() {}
  145. func (d *Dimension) expr() {}
  146. func (d *Dimension) node() {}
  147. func (d Dimensions) node() {}
  148. func (d *Dimensions) GetWindow() *Window {
  149. for _, child := range *d {
  150. if w, ok := child.Expr.(*Window); ok {
  151. return w
  152. }
  153. }
  154. return nil
  155. }
  156. func (d *Dimensions) GetGroups() Dimensions {
  157. var nd Dimensions
  158. for _, child := range *d {
  159. if _, ok := child.Expr.(*Window); !ok {
  160. nd = append(nd, child)
  161. }
  162. }
  163. return nd
  164. }
  165. func (sf *SortField) expr() {}
  166. func (sf *SortField) node() {}
  167. func (sf SortFields) node() {}
  168. type Call struct {
  169. Name string
  170. Args []Expr
  171. }
  172. func (c *Call) expr() {}
  173. func (c *Call) literal() {}
  174. func (c *Call) node() {}
  175. type WindowType int
  176. const (
  177. NOT_WINDOW WindowType = iota
  178. TUMBLING_WINDOW
  179. HOPPING_WINDOW
  180. SLIDING_WINDOW
  181. SESSION_WINDOW
  182. )
  183. type Window struct {
  184. WindowType WindowType
  185. Length *IntegerLiteral
  186. Interval *IntegerLiteral
  187. }
  188. func (w *Window) expr() {}
  189. func (w *Window) literal() {}
  190. func (w *Window) node() {}
  191. type SelectStatements []SelectStatement
  192. func (ss *SelectStatements) node() {}
  193. type Fields []Field
  194. func (fs Fields) node() {}
  195. type BinaryExpr struct {
  196. OP Token
  197. LHS Expr
  198. RHS Expr
  199. }
  200. func (fe *BinaryExpr) expr() {}
  201. func (be *BinaryExpr) node() {}
  202. type FieldRef struct {
  203. StreamName StreamName
  204. Name string
  205. }
  206. func (fr *FieldRef) expr() {}
  207. func (fr *FieldRef) node() {}
  208. // The stream AST tree
  209. type Options map[string]string
  210. func (o Options) node() {}
  211. type StreamName string
  212. func (sn *StreamName) node() {}
  213. type StreamStmt struct {
  214. Name StreamName
  215. StreamFields StreamFields
  216. Options Options
  217. }
  218. func (ss *StreamStmt) node() {}
  219. func (ss *StreamStmt) Stmt() {}
  220. func (ss *StreamStmt) isSchemaless() bool {
  221. return ss.StreamFields == nil
  222. }
  223. type FieldType interface {
  224. fieldType()
  225. Node
  226. }
  227. type StreamField struct {
  228. Name string
  229. FieldType
  230. }
  231. type StreamFields []StreamField
  232. func (sf StreamFields) node() {}
  233. type BasicType struct {
  234. Type DataType
  235. }
  236. func (bt *BasicType) fieldType() {}
  237. func (bt *BasicType) node() {}
  238. type ArrayType struct {
  239. Type DataType
  240. FieldType
  241. }
  242. func (at *ArrayType) fieldType() {}
  243. func (at *ArrayType) node() {}
  244. type RecType struct {
  245. StreamFields StreamFields
  246. }
  247. func (rt *RecType) fieldType() {}
  248. func (rt *RecType) node() {}
  249. type ShowStreamsStatement struct {
  250. }
  251. type DescribeStreamStatement struct {
  252. Name string
  253. }
  254. type ExplainStreamStatement struct {
  255. Name string
  256. }
  257. type DropStreamStatement struct {
  258. Name string
  259. }
  260. func (ss *ShowStreamsStatement) Stmt() {}
  261. func (ss *ShowStreamsStatement) node() {}
  262. func (dss *DescribeStreamStatement) Stmt() {}
  263. func (dss *DescribeStreamStatement) node() {}
  264. func (ess *ExplainStreamStatement) Stmt() {}
  265. func (ess *ExplainStreamStatement) node() {}
  266. func (dss *DropStreamStatement) Stmt() {}
  267. func (dss *DropStreamStatement) node() {}
  268. type Visitor interface {
  269. Visit(Node) Visitor
  270. }
  271. func Walk(v Visitor, node Node) {
  272. if node == nil {
  273. return
  274. }
  275. if v = v.Visit(node); v == nil {
  276. return
  277. }
  278. switch n := node.(type) {
  279. case *BinaryExpr:
  280. Walk(v, n.LHS)
  281. Walk(v, n.RHS)
  282. case *Call:
  283. for _, expr := range n.Args {
  284. Walk(v, expr)
  285. }
  286. case *Window:
  287. Walk(v, n.Length)
  288. Walk(v, n.Interval)
  289. case *Field:
  290. Walk(v, n.Expr)
  291. case Fields:
  292. for _, c := range n {
  293. Walk(v, &c)
  294. }
  295. case *ParenExpr:
  296. Walk(v, n.Expr)
  297. case *SelectStatement:
  298. Walk(v, n.Fields)
  299. Walk(v, n.Dimensions)
  300. Walk(v, n.Sources)
  301. Walk(v, n.Joins)
  302. Walk(v, n.Condition)
  303. Walk(v, n.SortFields)
  304. case SortFields:
  305. for _, sf := range n {
  306. Walk(v, &sf)
  307. }
  308. case Sources:
  309. for _, s := range n {
  310. Walk(v, s)
  311. }
  312. case Joins:
  313. for _, s := range n {
  314. Walk(v, &s)
  315. }
  316. case *Join:
  317. Walk(v, n.Expr)
  318. case *StreamStmt:
  319. Walk(v, &n.Name)
  320. Walk(v, n.StreamFields)
  321. Walk(v, n.Options)
  322. case *BasicType:
  323. Walk(v, n)
  324. case *ArrayType:
  325. Walk(v, n)
  326. case *RecType:
  327. Walk(v, n)
  328. case *ShowStreamsStatement:
  329. Walk(v, n)
  330. case *DescribeStreamStatement:
  331. Walk(v, n)
  332. case *ExplainStreamStatement:
  333. Walk(v, n)
  334. case *DropStreamStatement:
  335. Walk(v, n)
  336. }
  337. }
  338. // WalkFunc traverses a node hierarchy in depth-first order.
  339. func WalkFunc(node Node, fn func(Node)) {
  340. Walk(walkFuncVisitor(fn), node)
  341. }
  342. type walkFuncVisitor func(Node)
  343. func (fn walkFuncVisitor) Visit(n Node) Visitor { fn(n); return fn }
  344. // Valuer is the interface that wraps the Value() method.
  345. type Valuer interface {
  346. // Value returns the value and existence flag for a given key.
  347. Value(key string) (interface{}, bool)
  348. }
  349. // CallValuer implements the Call method for evaluating function calls.
  350. type CallValuer interface {
  351. Valuer
  352. // Call is invoked to evaluate a function call (if possible).
  353. Call(name string, args []interface{}) (interface{}, bool)
  354. }
  355. type AggregateCallValuer interface {
  356. CallValuer
  357. GetAllTuples() AggregateData
  358. }
  359. type Wildcarder interface {
  360. // Value returns the value and existence flag for a given key.
  361. All(stream string) (interface{}, bool)
  362. }
  363. type DataValuer interface {
  364. Valuer
  365. Wildcarder
  366. }
  367. type WildcardValuer struct {
  368. Data Wildcarder
  369. }
  370. //TODO deal with wildcard of a stream, e.g. SELECT Table.* from Table inner join Table1
  371. func (wv *WildcardValuer) Value(key string) (interface{}, bool) {
  372. if key == "" {
  373. return wv.Data.All(key)
  374. } else {
  375. a := strings.Index(key, ".*")
  376. if a <= 0 {
  377. return nil, false
  378. } else {
  379. return wv.Data.All(key[:a])
  380. }
  381. }
  382. }
  383. /**********************************
  384. ** Various Data Types for SQL transformation
  385. */
  386. type AggregateData interface {
  387. AggregateEval(expr Expr) []interface{}
  388. }
  389. // Message is a valuer that substitutes values for the mapped interface.
  390. type Message map[string]interface{}
  391. // Value returns the value for a key in the Message.
  392. func (m Message) Value(key string) (interface{}, bool) {
  393. key = strings.ToLower(key)
  394. if keys := strings.Split(key, "."); len(keys) == 1 {
  395. v, ok := m[key]
  396. return v, ok
  397. } else if len(keys) == 2 {
  398. v, ok := m[keys[1]]
  399. return v, ok
  400. }
  401. common.Log.Println("Invalid key: " + key + ", expect source.field or field.")
  402. return nil, false
  403. }
  404. type Event interface {
  405. GetTimestamp() int64
  406. IsWatermark() bool
  407. }
  408. type Metadata map[string]interface{}
  409. type Tuple struct {
  410. Emitter string
  411. Message Message
  412. Timestamp int64
  413. Metadata Metadata
  414. }
  415. // Value returns the value for a key in the Message.
  416. func (m Metadata) Value(key string) (interface{}, bool) {
  417. key = strings.ToLower(key)
  418. if keys := strings.Split(key, "."); len(keys) == 1 {
  419. v, ok := m[key]
  420. return v, ok
  421. } else if len(keys) == 2 {
  422. v, ok := m[keys[1]]
  423. return v, ok
  424. }
  425. common.Log.Println("Invalid key: " + key + ", expect source.field or field.")
  426. return nil, false
  427. }
  428. func (t *Tuple) Value(key string) (interface{}, bool) {
  429. if v, ok := t.Message.Value(key); ok {
  430. return v, ok
  431. } else {
  432. return t.Metadata.Value(key)
  433. }
  434. }
  435. func (t *Tuple) All(stream string) (interface{}, bool) {
  436. return t.Message, true
  437. }
  438. func (t *Tuple) AggregateEval(expr Expr) []interface{} {
  439. return []interface{}{Eval(expr, t)}
  440. }
  441. func (t *Tuple) GetTimestamp() int64 {
  442. return t.Timestamp
  443. }
  444. func (t *Tuple) GetMetadata() Metadata {
  445. return t.Metadata
  446. }
  447. func (t *Tuple) IsWatermark() bool {
  448. return false
  449. }
  450. type WindowTuples struct {
  451. Emitter string
  452. Tuples []Tuple
  453. }
  454. type WindowTuplesSet []WindowTuples
  455. func (w WindowTuplesSet) GetBySrc(src string) []Tuple {
  456. for _, me := range w {
  457. if me.Emitter == src {
  458. return me.Tuples
  459. }
  460. }
  461. return nil
  462. }
  463. func (w WindowTuplesSet) Len() int {
  464. if len(w) > 0 {
  465. return len(w[0].Tuples)
  466. }
  467. return 0
  468. }
  469. func (w WindowTuplesSet) Swap(i, j int) {
  470. if len(w) > 0 {
  471. s := w[0].Tuples
  472. s[i], s[j] = s[j], s[i]
  473. }
  474. }
  475. func (w WindowTuplesSet) Index(i int) Valuer {
  476. if len(w) > 0 {
  477. s := w[0].Tuples
  478. return &(s[i])
  479. }
  480. return nil
  481. }
  482. func (w WindowTuplesSet) AddTuple(tuple *Tuple) WindowTuplesSet {
  483. found := false
  484. for i, t := range w {
  485. if t.Emitter == tuple.Emitter {
  486. t.Tuples = append(t.Tuples, *tuple)
  487. found = true
  488. w[i] = t
  489. break
  490. }
  491. }
  492. if !found {
  493. ets := &WindowTuples{Emitter: tuple.Emitter}
  494. ets.Tuples = append(ets.Tuples, *tuple)
  495. w = append(w, *ets)
  496. }
  497. return w
  498. }
  499. //Sort by tuple timestamp
  500. func (w WindowTuplesSet) Sort() {
  501. for _, t := range w {
  502. tuples := t.Tuples
  503. sort.SliceStable(tuples, func(i, j int) bool {
  504. return tuples[i].Timestamp < tuples[j].Timestamp
  505. })
  506. t.Tuples = tuples
  507. }
  508. }
  509. func (w WindowTuplesSet) AggregateEval(expr Expr) []interface{} {
  510. var result []interface{}
  511. if len(w) != 1 { //should never happen
  512. return nil
  513. }
  514. for _, t := range w[0].Tuples {
  515. result = append(result, Eval(expr, &t))
  516. }
  517. return result
  518. }
  519. type JoinTuple struct {
  520. Tuples []Tuple
  521. }
  522. func (jt *JoinTuple) AddTuple(tuple Tuple) {
  523. jt.Tuples = append(jt.Tuples, tuple)
  524. }
  525. func (jt *JoinTuple) AddTuples(tuples []Tuple) {
  526. for _, t := range tuples {
  527. jt.Tuples = append(jt.Tuples, t)
  528. }
  529. }
  530. func (jt *JoinTuple) Value(key string) (interface{}, bool) {
  531. keys := strings.Split(key, ".")
  532. tuples := jt.Tuples
  533. switch len(keys) {
  534. case 1:
  535. if len(tuples) > 1 {
  536. for _, tuple := range tuples { //TODO support key without modifier?
  537. v, ok := tuple.Message[key]
  538. if ok {
  539. return v, ok
  540. }
  541. }
  542. common.Log.Infoln("Wrong key: ", key, ", not found")
  543. return nil, false
  544. } else {
  545. v, ok := tuples[0].Message[key]
  546. return v, ok
  547. }
  548. case 2:
  549. emitter, key := keys[0], keys[1]
  550. //TODO should use hash here
  551. for _, tuple := range tuples {
  552. if tuple.Emitter == emitter {
  553. v, ok := tuple.Message[key]
  554. return v, ok
  555. }
  556. }
  557. return nil, false
  558. default:
  559. common.Log.Infoln("Wrong key: ", key, ", expect dot in the expression.")
  560. return nil, false
  561. }
  562. }
  563. func (jt *JoinTuple) All(stream string) (interface{}, bool) {
  564. if stream != "" {
  565. for _, t := range jt.Tuples {
  566. if t.Emitter == stream {
  567. return t.Message, true
  568. }
  569. }
  570. } else {
  571. var r Message = make(map[string]interface{})
  572. for _, t := range jt.Tuples {
  573. for k, v := range t.Message {
  574. if _, ok := r[k]; !ok {
  575. r[k] = v
  576. }
  577. }
  578. }
  579. return r, true
  580. }
  581. return nil, false
  582. }
  583. type JoinTupleSets []JoinTuple
  584. func (s JoinTupleSets) Len() int { return len(s) }
  585. func (s JoinTupleSets) Swap(i, j int) { s[i], s[j] = s[j], s[i] }
  586. func (s JoinTupleSets) Index(i int) Valuer { return &(s[i]) }
  587. func (s JoinTupleSets) AggregateEval(expr Expr) []interface{} {
  588. var result []interface{}
  589. for _, t := range s {
  590. result = append(result, Eval(expr, &t))
  591. }
  592. return result
  593. }
  594. type GroupedTuples []DataValuer
  595. func (s GroupedTuples) AggregateEval(expr Expr) []interface{} {
  596. var result []interface{}
  597. for _, t := range s {
  598. result = append(result, Eval(expr, t))
  599. }
  600. return result
  601. }
  602. type GroupedTuplesSet []GroupedTuples
  603. func (s GroupedTuplesSet) Len() int { return len(s) }
  604. func (s GroupedTuplesSet) Swap(i, j int) { s[i], s[j] = s[j], s[i] }
  605. func (s GroupedTuplesSet) Index(i int) Valuer { return s[i][0] }
  606. type SortingData interface {
  607. Len() int
  608. Swap(i, j int)
  609. Index(i int) Valuer
  610. }
  611. // multiSorter implements the Sort interface, sorting the changes within.Hi
  612. type MultiSorter struct {
  613. SortingData
  614. fields SortFields
  615. values []map[string]interface{}
  616. }
  617. // OrderedBy returns a Sorter that sorts using the less functions, in order.
  618. // Call its Sort method to sort the data.
  619. func OrderedBy(fields SortFields) *MultiSorter {
  620. return &MultiSorter{
  621. fields: fields,
  622. }
  623. }
  624. // Less is part of sort.Interface. It is implemented by looping along the
  625. // less functions until it finds a comparison that discriminates between
  626. // the two items (one is less than the other). Note that it can call the
  627. // less functions twice per call. We could change the functions to return
  628. // -1, 0, 1 and reduce the number of calls for greater efficiency: an
  629. // exercise for the reader.
  630. func (ms *MultiSorter) Less(i, j int) bool {
  631. p, q := ms.values[i], ms.values[j]
  632. v := &ValuerEval{Valuer: MultiValuer(&FunctionValuer{})}
  633. for _, field := range ms.fields {
  634. n := field.Name
  635. vp, _ := p[n]
  636. vq, _ := q[n]
  637. if vp == nil && vq != nil {
  638. return false
  639. } else if vp != nil && vq == nil {
  640. ms.valueSwap(true, i, j)
  641. return true
  642. } else if vp == nil && vq == nil {
  643. return false
  644. }
  645. switch {
  646. case v.simpleDataEval(vp, vq, LT):
  647. ms.valueSwap(field.Ascending, i, j)
  648. return field.Ascending
  649. case v.simpleDataEval(vq, vp, LT):
  650. ms.valueSwap(!field.Ascending, i, j)
  651. return !field.Ascending
  652. }
  653. }
  654. return false
  655. }
  656. func (ms *MultiSorter) valueSwap(s bool, i, j int) {
  657. if s {
  658. ms.values[i], ms.values[j] = ms.values[j], ms.values[i]
  659. }
  660. }
  661. // Sort sorts the argument slice according to the less functions passed to OrderedBy.
  662. func (ms *MultiSorter) Sort(data SortingData) error {
  663. ms.SortingData = data
  664. types := make([]string, len(ms.fields))
  665. ms.values = make([]map[string]interface{}, data.Len())
  666. //load and validate data
  667. for i := 0; i < data.Len(); i++ {
  668. ms.values[i] = make(map[string]interface{})
  669. p := data.Index(i)
  670. vep := &ValuerEval{Valuer: MultiValuer(p, &FunctionValuer{})}
  671. for j, field := range ms.fields {
  672. n := field.Name
  673. vp, _ := vep.Valuer.Value(n)
  674. if err, ok := vp.(error); ok {
  675. return err
  676. } else {
  677. if types[j] == "" && vp != nil {
  678. types[j] = fmt.Sprintf("%T", vp)
  679. }
  680. if err := validate(types[j], vp); err != nil {
  681. return err
  682. } else {
  683. ms.values[i][n] = vp
  684. }
  685. }
  686. }
  687. }
  688. sort.Sort(ms)
  689. return nil
  690. }
  691. func validate(t string, v interface{}) error {
  692. if v == nil || t == "" {
  693. return nil
  694. }
  695. vt := fmt.Sprintf("%T", v)
  696. switch t {
  697. case "int", "int64", "float64", "uint64":
  698. if vt == "int" || vt == "int64" || vt == "float64" || vt == "uint64" {
  699. return nil
  700. } else {
  701. return fmt.Errorf("incompatible types for comparison: %s and %s", t, vt)
  702. }
  703. case "bool":
  704. if vt == "bool" {
  705. return nil
  706. } else {
  707. return fmt.Errorf("incompatible types for comparison: %s and %s", t, vt)
  708. }
  709. case "string":
  710. if vt == "string" {
  711. return nil
  712. } else {
  713. return fmt.Errorf("incompatible types for comparison: %s and %s", t, vt)
  714. }
  715. case "time.Time":
  716. _, err := common.InterfaceToTime(v, "")
  717. if err != nil {
  718. return fmt.Errorf("incompatible types for comparison: %s and %s", t, vt)
  719. } else {
  720. return nil
  721. }
  722. default:
  723. return fmt.Errorf("incompatible types for comparison: %s and %s", t, vt)
  724. }
  725. return nil
  726. }
  727. type EvalResultMessage struct {
  728. Emitter string
  729. Result interface{}
  730. Message Message
  731. }
  732. type ResultsAndMessages []EvalResultMessage
  733. // Eval evaluates expr against a map.
  734. func Eval(expr Expr, m Valuer) interface{} {
  735. eval := ValuerEval{Valuer: MultiValuer(m, &FunctionValuer{})}
  736. return eval.Eval(expr)
  737. }
  738. // ValuerEval will evaluate an expression using the Valuer.
  739. type ValuerEval struct {
  740. Valuer Valuer
  741. // IntegerFloatDivision will set the eval system to treat
  742. // a division between two integers as a floating point division.
  743. IntegerFloatDivision bool
  744. }
  745. // MultiValuer returns a Valuer that iterates over multiple Valuer instances
  746. // to find a match.
  747. func MultiValuer(valuers ...Valuer) Valuer {
  748. return multiValuer(valuers)
  749. }
  750. type multiValuer []Valuer
  751. func (a multiValuer) Value(key string) (interface{}, bool) {
  752. for _, valuer := range a {
  753. if v, ok := valuer.Value(key); ok {
  754. return v, true
  755. }
  756. }
  757. return nil, false
  758. }
  759. func (a multiValuer) Call(name string, args []interface{}) (interface{}, bool) {
  760. for _, valuer := range a {
  761. if valuer, ok := valuer.(CallValuer); ok {
  762. if v, ok := valuer.Call(name, args); ok {
  763. return v, true
  764. } else {
  765. return fmt.Errorf("found error \"%s\" when call func %s", v, name), false
  766. }
  767. }
  768. }
  769. return nil, false
  770. }
  771. type multiAggregateValuer struct {
  772. data AggregateData
  773. valuers []Valuer
  774. }
  775. func MultiAggregateValuer(data AggregateData, valuers ...Valuer) Valuer {
  776. return &multiAggregateValuer{
  777. data: data,
  778. valuers: valuers,
  779. }
  780. }
  781. func (a *multiAggregateValuer) Value(key string) (interface{}, bool) {
  782. for _, valuer := range a.valuers {
  783. if v, ok := valuer.Value(key); ok {
  784. return v, true
  785. }
  786. }
  787. return nil, false
  788. }
  789. //The args is [][] for aggregation
  790. func (a *multiAggregateValuer) Call(name string, args []interface{}) (interface{}, bool) {
  791. var singleArgs []interface{} = nil
  792. for _, valuer := range a.valuers {
  793. if a, ok := valuer.(AggregateCallValuer); ok {
  794. if v, ok := a.Call(name, args); ok {
  795. return v, true
  796. }
  797. } else if c, ok := valuer.(CallValuer); ok {
  798. if singleArgs == nil {
  799. for _, arg := range args {
  800. if arg, ok := arg.([]interface{}); ok {
  801. singleArgs = append(singleArgs, arg[0])
  802. } else {
  803. common.Log.Infof("multiAggregateValuer does not get [][] args but get %v", args)
  804. return nil, false
  805. }
  806. }
  807. }
  808. if v, ok := c.Call(name, singleArgs); ok {
  809. return v, true
  810. }
  811. }
  812. }
  813. return nil, false
  814. }
  815. func (a *multiAggregateValuer) GetAllTuples() AggregateData {
  816. return a.data
  817. }
  818. type BracketEvalResult struct {
  819. Start, End int
  820. }
  821. func (ber *BracketEvalResult) isIndex() bool {
  822. return ber.Start == ber.End
  823. }
  824. // Eval evaluates an expression and returns a value.
  825. func (v *ValuerEval) Eval(expr Expr) interface{} {
  826. if expr == nil {
  827. return nil
  828. }
  829. switch expr := expr.(type) {
  830. case *BinaryExpr:
  831. return v.evalBinaryExpr(expr)
  832. //case *BooleanLiteral:
  833. // return expr.Val
  834. case *IntegerLiteral:
  835. return expr.Val
  836. case *NumberLiteral:
  837. return expr.Val
  838. case *ParenExpr:
  839. return v.Eval(expr.Expr)
  840. case *StringLiteral:
  841. return expr.Val
  842. case *BooleanLiteral:
  843. return expr.Val
  844. case *ColonExpr:
  845. return &BracketEvalResult{Start: expr.Start, End: expr.End}
  846. case *IndexExpr:
  847. return &BracketEvalResult{Start: expr.Index, End: expr.Index}
  848. case *Call:
  849. if valuer, ok := v.Valuer.(CallValuer); ok {
  850. var args []interface{}
  851. if len(expr.Args) > 0 {
  852. args = make([]interface{}, len(expr.Args))
  853. if aggreValuer, ok := valuer.(AggregateCallValuer); ok {
  854. for i := range expr.Args {
  855. args[i] = aggreValuer.GetAllTuples().AggregateEval(expr.Args[i])
  856. }
  857. } else {
  858. for i := range expr.Args {
  859. args[i] = v.Eval(expr.Args[i])
  860. if _, ok := args[i].(error); ok {
  861. return args[i]
  862. }
  863. }
  864. }
  865. }
  866. val, _ := valuer.Call(expr.Name, args)
  867. return val
  868. }
  869. return nil
  870. case *FieldRef:
  871. if expr.StreamName == "" {
  872. val, _ := v.Valuer.Value(expr.Name)
  873. return val
  874. } else {
  875. //The field specified with stream source
  876. val, _ := v.Valuer.Value(string(expr.StreamName) + "." + expr.Name)
  877. return val
  878. }
  879. case *Wildcard:
  880. val, _ := v.Valuer.Value("")
  881. return val
  882. default:
  883. return nil
  884. }
  885. }
  886. func (v *ValuerEval) evalBinaryExpr(expr *BinaryExpr) interface{} {
  887. lhs := v.Eval(expr.LHS)
  888. switch val := lhs.(type) {
  889. case map[string]interface{}:
  890. return v.evalJsonExpr(val, expr.OP, expr.RHS)
  891. case []interface{}:
  892. return v.evalJsonExpr(val, expr.OP, expr.RHS)
  893. case error:
  894. return val
  895. }
  896. rhs := v.Eval(expr.RHS)
  897. if _, ok := rhs.(error); ok {
  898. return rhs
  899. }
  900. return v.simpleDataEval(lhs, rhs, expr.OP)
  901. }
  902. func (v *ValuerEval) evalJsonExpr(result interface{}, op Token, expr Expr) interface{} {
  903. if val, ok := result.(map[string]interface{}); ok {
  904. switch op {
  905. case ARROW:
  906. if exp, ok := expr.(*FieldRef); ok {
  907. ve := &ValuerEval{Valuer: Message(val)}
  908. return ve.Eval(exp)
  909. } else {
  910. return fmt.Errorf("the right expression is not a field reference node")
  911. }
  912. default:
  913. return fmt.Errorf("%v is an invalid operation for %T", op, val)
  914. }
  915. }
  916. if val, ok := result.([]interface{}); ok {
  917. switch op {
  918. case SUBSET:
  919. ber := v.Eval(expr)
  920. if berVal, ok1 := ber.(*BracketEvalResult); ok1 {
  921. if berVal.isIndex() {
  922. if berVal.Start >= len(val) {
  923. return fmt.Errorf("out of index: %d of %d", berVal.Start, len(val))
  924. }
  925. return val[berVal.Start]
  926. } else {
  927. if berVal.Start >= len(val) {
  928. return fmt.Errorf("start value is out of index: %d of %d", berVal.Start, len(val))
  929. }
  930. if berVal.End >= len(val) {
  931. return fmt.Errorf("end value is out of index: %d of %d", berVal.End, len(val))
  932. }
  933. return val[berVal.Start:berVal.End]
  934. }
  935. } else {
  936. return fmt.Errorf("invalid evaluation result - %v", berVal)
  937. }
  938. default:
  939. return fmt.Errorf("%v is an invalid operation for %T", op, val)
  940. }
  941. }
  942. return nil
  943. }
  944. //lhs and rhs are non-nil
  945. func (v *ValuerEval) simpleDataEval(lhs, rhs interface{}, op Token) interface{} {
  946. if lhs == nil || rhs == nil {
  947. switch op {
  948. case EQ, LTE, GTE:
  949. if lhs == nil && rhs == nil {
  950. return true
  951. } else {
  952. return false
  953. }
  954. case NEQ:
  955. if lhs == nil && rhs == nil {
  956. return false
  957. } else {
  958. return true
  959. }
  960. case LT, GT:
  961. return false
  962. default:
  963. return nil
  964. }
  965. }
  966. lhs = convertNum(lhs)
  967. rhs = convertNum(rhs)
  968. // Evaluate if both sides are simple types.
  969. switch lhs := lhs.(type) {
  970. case bool:
  971. rhs, ok := rhs.(bool)
  972. if !ok {
  973. return invalidOpError(lhs, op, rhs)
  974. }
  975. switch op {
  976. case AND:
  977. return lhs && rhs
  978. case OR:
  979. return lhs || rhs
  980. case BITWISE_AND:
  981. return lhs && rhs
  982. case BITWISE_OR:
  983. return lhs || rhs
  984. case BITWISE_XOR:
  985. return lhs != rhs
  986. case EQ:
  987. return lhs == rhs
  988. case NEQ:
  989. return lhs != rhs
  990. default:
  991. return invalidOpError(lhs, op, rhs)
  992. }
  993. case float64:
  994. // Try the rhs as a float64, int64, or uint64
  995. rhsf, ok := rhs.(float64)
  996. if !ok {
  997. switch val := rhs.(type) {
  998. case int64:
  999. rhsf, ok = float64(val), true
  1000. case uint64:
  1001. rhsf, ok = float64(val), true
  1002. }
  1003. }
  1004. if !ok {
  1005. return invalidOpError(lhs, op, rhs)
  1006. }
  1007. rhs := rhsf
  1008. switch op {
  1009. case EQ:
  1010. return lhs == rhs
  1011. case NEQ:
  1012. return lhs != rhs
  1013. case LT:
  1014. return lhs < rhs
  1015. case LTE:
  1016. return lhs <= rhs
  1017. case GT:
  1018. return lhs > rhs
  1019. case GTE:
  1020. return lhs >= rhs
  1021. case ADD:
  1022. return lhs + rhs
  1023. case SUB:
  1024. return lhs - rhs
  1025. case MUL:
  1026. return lhs * rhs
  1027. case DIV:
  1028. if rhs == 0 {
  1029. return fmt.Errorf("divided by zero")
  1030. }
  1031. return lhs / rhs
  1032. case MOD:
  1033. if rhs == 0 {
  1034. return fmt.Errorf("divided by zero")
  1035. }
  1036. return math.Mod(lhs, rhs)
  1037. default:
  1038. return invalidOpError(lhs, op, rhs)
  1039. }
  1040. case int64:
  1041. // Try as a float64 to see if a float cast is required.
  1042. switch rhs := rhs.(type) {
  1043. case float64:
  1044. lhs := float64(lhs)
  1045. switch op {
  1046. case EQ:
  1047. return lhs == rhs
  1048. case NEQ:
  1049. return lhs != rhs
  1050. case LT:
  1051. return lhs < rhs
  1052. case LTE:
  1053. return lhs <= rhs
  1054. case GT:
  1055. return lhs > rhs
  1056. case GTE:
  1057. return lhs >= rhs
  1058. case ADD:
  1059. return lhs + rhs
  1060. case SUB:
  1061. return lhs - rhs
  1062. case MUL:
  1063. return lhs * rhs
  1064. case DIV:
  1065. if rhs == 0 {
  1066. return fmt.Errorf("divided by zero")
  1067. }
  1068. return lhs / rhs
  1069. case MOD:
  1070. if rhs == 0 {
  1071. return fmt.Errorf("divided by zero")
  1072. }
  1073. return math.Mod(lhs, rhs)
  1074. default:
  1075. return invalidOpError(lhs, op, rhs)
  1076. }
  1077. case int64:
  1078. switch op {
  1079. case EQ:
  1080. return lhs == rhs
  1081. case NEQ:
  1082. return lhs != rhs
  1083. case LT:
  1084. return lhs < rhs
  1085. case LTE:
  1086. return lhs <= rhs
  1087. case GT:
  1088. return lhs > rhs
  1089. case GTE:
  1090. return lhs >= rhs
  1091. case ADD:
  1092. return lhs + rhs
  1093. case SUB:
  1094. return lhs - rhs
  1095. case MUL:
  1096. return lhs * rhs
  1097. case DIV:
  1098. if v.IntegerFloatDivision {
  1099. if rhs == 0 {
  1100. return fmt.Errorf("divided by zero")
  1101. }
  1102. return float64(lhs) / float64(rhs)
  1103. }
  1104. if rhs == 0 {
  1105. return fmt.Errorf("divided by zero")
  1106. }
  1107. return lhs / rhs
  1108. case MOD:
  1109. if rhs == 0 {
  1110. return fmt.Errorf("divided by zero")
  1111. }
  1112. return lhs % rhs
  1113. case BITWISE_AND:
  1114. return lhs & rhs
  1115. case BITWISE_OR:
  1116. return lhs | rhs
  1117. case BITWISE_XOR:
  1118. return lhs ^ rhs
  1119. default:
  1120. return invalidOpError(lhs, op, rhs)
  1121. }
  1122. case uint64:
  1123. switch op {
  1124. case EQ:
  1125. return uint64(lhs) == rhs
  1126. case NEQ:
  1127. return uint64(lhs) != rhs
  1128. case LT:
  1129. if lhs < 0 {
  1130. return true
  1131. }
  1132. return uint64(lhs) < rhs
  1133. case LTE:
  1134. if lhs < 0 {
  1135. return true
  1136. }
  1137. return uint64(lhs) <= rhs
  1138. case GT:
  1139. if lhs < 0 {
  1140. return false
  1141. }
  1142. return uint64(lhs) > rhs
  1143. case GTE:
  1144. if lhs < 0 {
  1145. return false
  1146. }
  1147. return uint64(lhs) >= rhs
  1148. case ADD:
  1149. return uint64(lhs) + rhs
  1150. case SUB:
  1151. return uint64(lhs) - rhs
  1152. case MUL:
  1153. return uint64(lhs) * rhs
  1154. case DIV:
  1155. if rhs == 0 {
  1156. return fmt.Errorf("divided by zero")
  1157. }
  1158. return uint64(lhs) / rhs
  1159. case MOD:
  1160. if rhs == 0 {
  1161. return fmt.Errorf("divided by zero")
  1162. }
  1163. return uint64(lhs) % rhs
  1164. case BITWISE_AND:
  1165. return uint64(lhs) & rhs
  1166. case BITWISE_OR:
  1167. return uint64(lhs) | rhs
  1168. case BITWISE_XOR:
  1169. return uint64(lhs) ^ rhs
  1170. default:
  1171. return invalidOpError(lhs, op, rhs)
  1172. }
  1173. default:
  1174. return invalidOpError(lhs, op, rhs)
  1175. }
  1176. case uint64:
  1177. // Try as a float64 to see if a float cast is required.
  1178. switch rhs := rhs.(type) {
  1179. case float64:
  1180. lhs := float64(lhs)
  1181. switch op {
  1182. case EQ:
  1183. return lhs == rhs
  1184. case NEQ:
  1185. return lhs != rhs
  1186. case LT:
  1187. return lhs < rhs
  1188. case LTE:
  1189. return lhs <= rhs
  1190. case GT:
  1191. return lhs > rhs
  1192. case GTE:
  1193. return lhs >= rhs
  1194. case ADD:
  1195. return lhs + rhs
  1196. case SUB:
  1197. return lhs - rhs
  1198. case MUL:
  1199. return lhs * rhs
  1200. case DIV:
  1201. if rhs == 0 {
  1202. return fmt.Errorf("divided by zero")
  1203. }
  1204. return lhs / rhs
  1205. case MOD:
  1206. if rhs == 0 {
  1207. return fmt.Errorf("divided by zero")
  1208. }
  1209. return math.Mod(lhs, rhs)
  1210. default:
  1211. return invalidOpError(lhs, op, rhs)
  1212. }
  1213. case int64:
  1214. switch op {
  1215. case EQ:
  1216. return lhs == uint64(rhs)
  1217. case NEQ:
  1218. return lhs != uint64(rhs)
  1219. case LT:
  1220. if rhs < 0 {
  1221. return false
  1222. }
  1223. return lhs < uint64(rhs)
  1224. case LTE:
  1225. if rhs < 0 {
  1226. return false
  1227. }
  1228. return lhs <= uint64(rhs)
  1229. case GT:
  1230. if rhs < 0 {
  1231. return true
  1232. }
  1233. return lhs > uint64(rhs)
  1234. case GTE:
  1235. if rhs < 0 {
  1236. return true
  1237. }
  1238. return lhs >= uint64(rhs)
  1239. case ADD:
  1240. return lhs + uint64(rhs)
  1241. case SUB:
  1242. return lhs - uint64(rhs)
  1243. case MUL:
  1244. return lhs * uint64(rhs)
  1245. case DIV:
  1246. if rhs == 0 {
  1247. return fmt.Errorf("divided by zero")
  1248. }
  1249. return lhs / uint64(rhs)
  1250. case MOD:
  1251. if rhs == 0 {
  1252. return fmt.Errorf("divided by zero")
  1253. }
  1254. return lhs % uint64(rhs)
  1255. case BITWISE_AND:
  1256. return lhs & uint64(rhs)
  1257. case BITWISE_OR:
  1258. return lhs | uint64(rhs)
  1259. case BITWISE_XOR:
  1260. return lhs ^ uint64(rhs)
  1261. default:
  1262. return invalidOpError(lhs, op, rhs)
  1263. }
  1264. case uint64:
  1265. switch op {
  1266. case EQ:
  1267. return lhs == rhs
  1268. case NEQ:
  1269. return lhs != rhs
  1270. case LT:
  1271. return lhs < rhs
  1272. case LTE:
  1273. return lhs <= rhs
  1274. case GT:
  1275. return lhs > rhs
  1276. case GTE:
  1277. return lhs >= rhs
  1278. case ADD:
  1279. return lhs + rhs
  1280. case SUB:
  1281. return lhs - rhs
  1282. case MUL:
  1283. return lhs * rhs
  1284. case DIV:
  1285. if rhs == 0 {
  1286. return fmt.Errorf("divided by zero")
  1287. }
  1288. return lhs / rhs
  1289. case MOD:
  1290. if rhs == 0 {
  1291. return fmt.Errorf("divided by zero")
  1292. }
  1293. return lhs % rhs
  1294. case BITWISE_AND:
  1295. return lhs & rhs
  1296. case BITWISE_OR:
  1297. return lhs | rhs
  1298. case BITWISE_XOR:
  1299. return lhs ^ rhs
  1300. default:
  1301. return invalidOpError(lhs, op, rhs)
  1302. }
  1303. default:
  1304. return invalidOpError(lhs, op, rhs)
  1305. }
  1306. case string:
  1307. rhss, ok := rhs.(string)
  1308. if !ok {
  1309. return invalidOpError(lhs, op, rhs)
  1310. }
  1311. switch op {
  1312. case EQ:
  1313. return lhs == rhss
  1314. case NEQ:
  1315. return lhs != rhss
  1316. case LT:
  1317. return lhs < rhss
  1318. case LTE:
  1319. return lhs <= rhss
  1320. case GT:
  1321. return lhs > rhss
  1322. case GTE:
  1323. return lhs >= rhss
  1324. default:
  1325. return invalidOpError(lhs, op, rhs)
  1326. }
  1327. case time.Time:
  1328. rt, err := common.InterfaceToTime(rhs, "")
  1329. if err != nil {
  1330. return invalidOpError(lhs, op, rhs)
  1331. }
  1332. switch op {
  1333. case EQ:
  1334. return lhs.Equal(rt)
  1335. case NEQ:
  1336. return !lhs.Equal(rt)
  1337. case LT:
  1338. return lhs.Before(rt)
  1339. case LTE:
  1340. return lhs.Before(rt) || lhs.Equal(rt)
  1341. case GT:
  1342. return lhs.After(rt)
  1343. case GTE:
  1344. return lhs.After(rt) || lhs.Equal(rt)
  1345. default:
  1346. return invalidOpError(lhs, op, rhs)
  1347. }
  1348. default:
  1349. return invalidOpError(lhs, op, rhs)
  1350. }
  1351. return invalidOpError(lhs, op, rhs)
  1352. }
  1353. func invalidOpError(lhs interface{}, op Token, rhs interface{}) error {
  1354. return fmt.Errorf("invalid operation %[1]T(%[1]v) %s %[3]T(%[3]v)", lhs, tokens[op], rhs)
  1355. }
  1356. func convertNum(para interface{}) interface{} {
  1357. if isInt(para) {
  1358. para = toInt64(para)
  1359. } else if isFloat(para) {
  1360. para = toFloat64(para)
  1361. }
  1362. return para
  1363. }
  1364. func isInt(para interface{}) bool {
  1365. switch para.(type) {
  1366. case int:
  1367. return true
  1368. case int8:
  1369. return true
  1370. case int16:
  1371. return true
  1372. case int32:
  1373. return true
  1374. case int64:
  1375. return true
  1376. }
  1377. return false
  1378. }
  1379. func toInt64(para interface{}) int64 {
  1380. if v, ok := para.(int); ok {
  1381. return int64(v)
  1382. } else if v, ok := para.(int8); ok {
  1383. return int64(v)
  1384. } else if v, ok := para.(int16); ok {
  1385. return int64(v)
  1386. } else if v, ok := para.(int32); ok {
  1387. return int64(v)
  1388. } else if v, ok := para.(int64); ok {
  1389. return v
  1390. }
  1391. return 0
  1392. }
  1393. func isFloat(para interface{}) bool {
  1394. switch para.(type) {
  1395. case float32:
  1396. return true
  1397. case float64:
  1398. return true
  1399. }
  1400. return false
  1401. }
  1402. func toFloat64(para interface{}) float64 {
  1403. if v, ok := para.(float32); ok {
  1404. return float64(v)
  1405. } else if v, ok := para.(float64); ok {
  1406. return v
  1407. }
  1408. return 0
  1409. }
  1410. func IsAggStatement(node Node) bool {
  1411. var r = false
  1412. WalkFunc(node, func(n Node) {
  1413. if f, ok := n.(*Call); ok {
  1414. if ok := isAggFunc(f); ok {
  1415. r = true
  1416. return
  1417. }
  1418. } else if d, ok := n.(Dimensions); ok {
  1419. ds := d.GetGroups()
  1420. if ds != nil && len(ds) > 0 {
  1421. r = true
  1422. return
  1423. }
  1424. }
  1425. })
  1426. return r
  1427. }
  1428. func isAggFunc(f *Call) bool {
  1429. fn := strings.ToLower(f.Name)
  1430. if _, ok := aggFuncMap[fn]; ok {
  1431. return true
  1432. } else if _, ok := strFuncMap[fn]; ok {
  1433. return false
  1434. } else if _, ok := convFuncMap[fn]; ok {
  1435. return false
  1436. } else if _, ok := hashFuncMap[fn]; ok {
  1437. return false
  1438. } else if _, ok := otherFuncMap[fn]; ok {
  1439. return false
  1440. } else if _, ok := mathFuncMap[fn]; ok {
  1441. return false
  1442. } else {
  1443. if nf, err := plugin_manager.GetPlugin(f.Name, "functions"); err == nil {
  1444. if ef, ok := nf.(api.Function); ok && ef.IsAggregate() {
  1445. return true
  1446. }
  1447. }
  1448. }
  1449. return false
  1450. }
  1451. func HasAggFuncs(node Node) bool {
  1452. if node == nil {
  1453. return false
  1454. }
  1455. var r = false
  1456. WalkFunc(node, func(n Node) {
  1457. if f, ok := n.(*Call); ok {
  1458. if ok := isAggFunc(f); ok {
  1459. r = true
  1460. return
  1461. }
  1462. }
  1463. })
  1464. return r
  1465. }
  1466. func HasNoAggFuncs(node Node) bool {
  1467. if node == nil {
  1468. return false
  1469. }
  1470. var r = false
  1471. WalkFunc(node, func(n Node) {
  1472. if f, ok := n.(*Call); ok {
  1473. if ok := isAggFunc(f); !ok {
  1474. r = true
  1475. return
  1476. }
  1477. }
  1478. })
  1479. return r
  1480. }