xugu_parse.go 13 KB

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  1. package xugu
  2. import (
  3. "database/sql/driver"
  4. "encoding/binary"
  5. "errors"
  6. "fmt"
  7. "strconv"
  8. "strings"
  9. "time"
  10. )
  11. type xuguValue struct {
  12. // 布尔值,如果值为 true,表示当前字段的数据类型是大对象数据类型
  13. islob bool
  14. //字段名
  15. paramName []byte
  16. //paramNameLength [2]byte
  17. // 字段的实际值
  18. value []byte
  19. // 值的长度
  20. valueLength int
  21. // 字段的类型
  22. types fieldType
  23. }
  24. // 判断参数个数
  25. func assertParamCount(query string) int {
  26. fmt.Println("----assertParamCount func 判断参数个数")
  27. paramCount := strings.Count(query, "?")
  28. fmt.Println("Parse.param_count = ", paramCount)
  29. return paramCount
  30. }
  31. func assertParamType(dV driver.Value, values *[]xuguValue) error {
  32. var dest xuguValue
  33. switch srcv := dV.(type) {
  34. case int64:
  35. buf := make([]byte, 8)
  36. binary.BigEndian.PutUint64(buf, uint64(srcv))
  37. dest.value = buf
  38. dest.valueLength = 8
  39. dest.islob = false
  40. dest.types = fieldType_I8
  41. case float64:
  42. S := strconv.FormatFloat(srcv, 'f', 15, 64)
  43. dest.value = []byte(S)
  44. dest.valueLength = len(S)
  45. dest.islob = false
  46. dest.types = fieldType_CHAR
  47. case bool:
  48. //S := strconv.FormatBool(srcv)
  49. var tmp []byte
  50. if srcv {
  51. tmp = []byte{1}
  52. } else {
  53. tmp = []byte{0}
  54. }
  55. dest.value = []byte(tmp)
  56. dest.valueLength = 1
  57. dest.islob = false
  58. dest.types = fieldType_BOOL
  59. case string:
  60. dest.value = []byte(srcv)
  61. dest.valueLength = len(srcv)
  62. dest.islob = false
  63. dest.types = fieldType_CHAR
  64. if dest.valueLength == 0 {
  65. dest.valueLength = 1
  66. dest.value = []byte{0}
  67. }
  68. case time.Time:
  69. tm := fmt.Sprintf("%04d-%02d-%02d %02d:%02d:%02d",
  70. srcv.Year(), int(srcv.Month()), srcv.Day(),
  71. srcv.Hour(), srcv.Minute(), srcv.Second())
  72. dest.value = []byte(tm)
  73. // dest.valueLength = strings.Count(tm, "") - 1
  74. dest.valueLength = len(tm)
  75. dest.islob = false
  76. //dest.types = fieldType_TIME
  77. dest.types = fieldType_CHAR
  78. case []byte:
  79. dest.value = srcv
  80. dest.valueLength = len(srcv)
  81. dest.islob = true
  82. dest.types = fieldType_BLOB
  83. if dest.valueLength == 0 {
  84. dest.valueLength = 1
  85. dest.value = []byte{0}
  86. }
  87. case nil:
  88. dest.value = []byte{0}
  89. dest.valueLength = 0
  90. dest.islob = false
  91. dest.types = fieldType_NULL
  92. default:
  93. return errors.New("unknown data type")
  94. }
  95. *values = append(*values, dest)
  96. return nil
  97. }
  98. func parseMsg(readBuf *buffer, pConn *xuguConn) (*allResult, error) {
  99. var err error
  100. aR := allResult{}
  101. for {
  102. char := readBuf.peekChar()
  103. fmt.Println("parseMsg 内的 peekChar: ", char, "-", string(char))
  104. switch char {
  105. case 'K':
  106. fmt.Println("消息类型为K")
  107. readBuf.reset()
  108. return &aR, nil
  109. case '$':
  110. readBuf.idx++
  111. fmt.Println("消息类型为$")
  112. if aR.f, err = parseFormArgDescri(readBuf); err != nil {
  113. return nil, err
  114. }
  115. aR.rt = formArgDescri
  116. return &aR, err
  117. case 'A':
  118. readBuf.idx++
  119. fmt.Println("消息类型为A")
  120. if aR.s, err = parseSelectResult(readBuf); err != nil {
  121. return nil, err
  122. }
  123. aR.rt = selectResult
  124. return &aR, err
  125. case 'I':
  126. readBuf.idx++
  127. fmt.Println("消息类型为I")
  128. if aR.i, err = parseInsertResult(readBuf); err != nil {
  129. return nil, err
  130. }
  131. aR.rt = insertResult
  132. return &aR, err
  133. case 'U':
  134. fmt.Println("消息类型为U")
  135. readBuf.idx++
  136. if aR.u, err = parseUpdateResult(readBuf); err != nil {
  137. return nil, err
  138. }
  139. aR.rt = updateResult
  140. return &aR, err
  141. case 'D':
  142. fmt.Println("消息类型为D")
  143. readBuf.idx++
  144. readBuf.idx++
  145. if aR.d, err = parseDeleteResult(readBuf); err != nil {
  146. return nil, err
  147. }
  148. aR.rt = deleteResult
  149. return &aR, err
  150. case 'E':
  151. fmt.Println("消息类型为E")
  152. readBuf.idx++
  153. if aR.e, err = parseErrInfo(readBuf); err != nil {
  154. return nil, err
  155. }
  156. pConn.errStr = aR.e.ErrStr
  157. aR.rt = errInfo
  158. return &aR, err
  159. case 'W':
  160. fmt.Println("消息类型为W")
  161. readBuf.idx++
  162. if aR.w, err = parseWarnInfo(readBuf); err != nil {
  163. return nil, err
  164. }
  165. aR.rt = warnInfo
  166. return &aR, err
  167. case 'M':
  168. fmt.Println("消息类型为M")
  169. readBuf.idx++
  170. if aR.m, err = parseMessage(readBuf); err != nil {
  171. return nil, err
  172. }
  173. aR.rt = message
  174. return &aR, err
  175. default:
  176. fmt.Println("消息类型为其他")
  177. return nil, errors.New("parseMsg: unknown message type")
  178. }
  179. }
  180. }
  181. func parseSelectResult(readBuf *buffer) (*SelectResult, error) {
  182. fmt.Println("调用 parseSelectResult")
  183. data := &SelectResult{}
  184. char := readBuf.peekChar()
  185. fmt.Println("--=char: ", string(char), char)
  186. //Field_Num
  187. fn, err := readBuf.readNext(4, true)
  188. if err != nil {
  189. return nil, err
  190. }
  191. Field_Num := binary.LittleEndian.Uint32(fn)
  192. data.Field_Num = Field_Num
  193. data.rowIdx = 0
  194. fmt.Println("Field_Num: ", data.Field_Num)
  195. //获取字段信息
  196. for i := 0; i < int(Field_Num); i++ {
  197. field := FieldDescri{}
  198. //Field_Name_Len
  199. Field_Name_Len, err := readBuf.readNext(4, true)
  200. if err != nil {
  201. return nil, err
  202. }
  203. field.FieldNameLen = int(binary.LittleEndian.Uint32(Field_Name_Len))
  204. fmt.Println("field.FieldNameLen: ", field.FieldNameLen)
  205. //Field_Name:
  206. Field_Name, err := readBuf.readNext(field.FieldNameLen, false)
  207. if err != nil {
  208. return nil, err
  209. }
  210. field.FieldName = string(Field_Name)
  211. fmt.Println("field.Field_Name: ", field.FieldName)
  212. //Field_DType:
  213. Field_DType, err := readBuf.readNext(4, true)
  214. if err != nil {
  215. return nil, err
  216. }
  217. field.FieldType = fieldType(binary.LittleEndian.Uint32(Field_DType))
  218. fmt.Println("field.FieldType: ", field.FieldType)
  219. //Field_Preci_Scale:
  220. Field_Preci_Scale, err := readBuf.readNext(4, true)
  221. if err != nil {
  222. return nil, err
  223. }
  224. fieldPreciScale := binary.LittleEndian.Uint32(Field_Preci_Scale)
  225. if int32(fieldPreciScale) <= 0 {
  226. field.FieldPreciScale = fieldPreciScaleInfo{
  227. scale: 0,
  228. accuracy: 0,
  229. }
  230. } else {
  231. field.FieldPreciScale = fieldPreciScaleInfo{
  232. scale: uint16(fieldPreciScale >> 16),
  233. accuracy: uint16(fieldPreciScale & 0xFFFF),
  234. }
  235. }
  236. fmt.Println("field.FieldPreciScale: ", field.FieldPreciScale)
  237. //Field_Flag:
  238. Field_Flag, err := readBuf.readNext(4, true)
  239. if err != nil {
  240. return nil, err
  241. }
  242. field.FieldFlag = binary.LittleEndian.Uint32(Field_Flag)
  243. fmt.Println("field.FieldFlag: ", field.FieldFlag)
  244. data.Fields = append(data.Fields, field)
  245. }
  246. data.Values = make([][]FieldValue, data.Field_Num)
  247. //获取字段的行值,并判断类型
  248. // 使用 Peek 方法检查下一个字节是否为'R'或'K'
  249. fmt.Println("\n\n=========开始获取行数据=================================")
  250. defer func() {
  251. fmt.Println("\n\n=========获取行数据结束=================================")
  252. }()
  253. char = readBuf.peekChar()
  254. fmt.Println(" --char: ", string(char))
  255. readBuf.idx++
  256. if char == 'K' {
  257. return data, nil
  258. } else if char == 'R' {
  259. colIdx := 0
  260. //typeIdx := 0
  261. fmt.Println("开始循环 ")
  262. for {
  263. col := FieldValue{}
  264. //获取数据的大小
  265. Col_len, err := readBuf.readNext(4, true)
  266. if err != nil {
  267. return nil, err
  268. }
  269. col.Col_len = binary.LittleEndian.Uint32(Col_len)
  270. //获取数据的值
  271. col.Col_Data, err = readBuf.readNext(int(col.Col_len), false)
  272. if err != nil {
  273. return nil, err
  274. }
  275. fmt.Println("col.Col_Data: ", col.Col_Data)
  276. data.Values[colIdx] = append(data.Values[colIdx], col)
  277. colIdx++
  278. // if col.Col_len > 8000 {
  279. // fmt.Println("数据为: ", col.Col_Data)
  280. // }
  281. char := readBuf.peekChar()
  282. //fmt.Println("buf is ", readBuf.buf[readBuf.idx:])
  283. //既不是R 也不是K 代表该行还有其他字段内容没有读取完成
  284. if char == 'R' {
  285. readBuf.idx++
  286. colIdx = 0
  287. continue
  288. } else if char == 'K' {
  289. return data, nil
  290. //break
  291. }
  292. } //for end
  293. } else if char == '$' {
  294. fmt.Println(" 查询返回 $ ")
  295. fad, err := parseFormArgDescri(readBuf)
  296. if err != nil {
  297. return nil, err
  298. }
  299. char := readBuf.peekChar()
  300. //既不是R 也不是K 代表该行还有其他字段内容没有读取完成
  301. if char == 'K' {
  302. data.fad = fad
  303. return data, nil
  304. //break
  305. }
  306. return nil, errors.New("select to $ 解析失败")
  307. } else {
  308. return nil, errors.New("解析失败")
  309. }
  310. }
  311. func parseInsertResult(readBuf *buffer) (*InsertResult, error) {
  312. //Rowid_Len
  313. Rowid_L, err := readBuf.readNext(4, true)
  314. if err != nil {
  315. return nil, err
  316. }
  317. Rowid_Len := binary.LittleEndian.Uint32(Rowid_L)
  318. //Rowid_Data
  319. encoded, err := readBuf.readNext(int(Rowid_Len), false)
  320. if err != nil {
  321. return nil, err
  322. }
  323. //检测是否结束
  324. char := readBuf.peekChar()
  325. if char == 'K' {
  326. return &InsertResult{
  327. RowidLen: Rowid_Len,
  328. RowidData: encoded,
  329. }, nil
  330. }
  331. return nil, errors.New("parseInsertResult error")
  332. }
  333. func parseUpdateResult(readBuf *buffer) (*UpdateResult, error) {
  334. updatas, err := readBuf.readNext(4, true)
  335. if err != nil {
  336. return nil, err
  337. }
  338. updateNum := binary.LittleEndian.Uint32(updatas)
  339. return &UpdateResult{UpdateNum: updateNum}, nil
  340. }
  341. func parseDeleteResult(readBuf *buffer) (*DeleteResult, error) {
  342. deletes, err := readBuf.readNext(4, true)
  343. if err != nil {
  344. return nil, err
  345. }
  346. deleteNum := binary.LittleEndian.Uint32(deletes)
  347. return &DeleteResult{DeleteNum: deleteNum}, nil
  348. }
  349. func parseProcRet(readBuf *buffer) (*ProcRet, error) {
  350. retDypes, err := readBuf.readNext(4, true)
  351. if err != nil {
  352. return nil, err
  353. }
  354. retDType := binary.LittleEndian.Uint32(retDypes)
  355. retDataLens, err := readBuf.readNext(4, true)
  356. if err != nil {
  357. return nil, err
  358. }
  359. retDataLen := binary.LittleEndian.Uint32(retDataLens)
  360. retData, err := readBuf.readNext(int(retDataLen), false)
  361. if err != nil {
  362. return nil, err
  363. }
  364. return &ProcRet{RetDType: retDType, RetDataLen: retDataLen, RetData: retData}, nil
  365. }
  366. func parseOutParamRet(readBuf *buffer) (*OutParamRet, error) {
  367. outParamNos, err := readBuf.readNext(4, true)
  368. if err != nil {
  369. return nil, err
  370. }
  371. outParamNo := binary.LittleEndian.Uint32(outParamNos)
  372. outParamDTypes, err := readBuf.readNext(4, true)
  373. if err != nil {
  374. return nil, err
  375. }
  376. outParamDType := binary.LittleEndian.Uint32(outParamDTypes)
  377. outParamLens, err := readBuf.readNext(4, true)
  378. if err != nil {
  379. return nil, err
  380. }
  381. outParamLen := binary.LittleEndian.Uint32(outParamLens)
  382. outParamData, err := readBuf.readNext(int(outParamLen), false)
  383. if err != nil {
  384. return nil, err
  385. }
  386. return &OutParamRet{
  387. OutParamNo: outParamNo,
  388. OutParamDType: outParamDType,
  389. OutParamLen: outParamLen,
  390. OutParamData: outParamData,
  391. }, nil
  392. }
  393. func parseErrInfo(readBuf *buffer) (*ErrInfo, error) {
  394. errStrLens, err := readBuf.readNext(4, true)
  395. if err != nil {
  396. return nil, err
  397. }
  398. errStrLen := binary.LittleEndian.Uint32(errStrLens)
  399. errStr, err := readBuf.readNext(int(errStrLen), false)
  400. if err != nil {
  401. return nil, err
  402. }
  403. return &ErrInfo{ErrStrLen: errStrLen, ErrStr: errStr}, nil
  404. }
  405. func parseWarnInfo(readBuf *buffer) (*WarnInfo, error) {
  406. warnStrLens, err := readBuf.readNext(4, true)
  407. if err != nil {
  408. return nil, err
  409. }
  410. warnStrLen := binary.LittleEndian.Uint32(warnStrLens)
  411. warnStr, err := readBuf.readNext(int(warnStrLen), false)
  412. if err != nil {
  413. return nil, err
  414. }
  415. return &WarnInfo{WarnStrLen: warnStrLen, WarnStr: warnStr}, nil
  416. }
  417. func parseMessage(readBuf *buffer) (*Message, error) {
  418. msgStrLens, err := readBuf.readNext(4, true)
  419. if err != nil {
  420. return nil, err
  421. }
  422. msgStrLen := binary.LittleEndian.Uint32(msgStrLens)
  423. msgStr, err := readBuf.readNext(int(msgStrLen), false)
  424. if err != nil {
  425. return nil, err
  426. }
  427. return &Message{MsgStrLen: msgStrLen, MsgStr: msgStr}, nil
  428. }
  429. func parseFormArgDescri(readBuf *buffer) (*FormArgDescri, error) {
  430. // FormArgDescri: '$' Arg_Num { Arg_Name_Len Arg_Name Arg_No Arg_DType Arg_Preci_Scale }+
  431. Arg_Nums, err := readBuf.readNext(4, true)
  432. if err != nil {
  433. return nil, err
  434. }
  435. Arg_Num := binary.LittleEndian.Uint32(Arg_Nums)
  436. formArgDescri := &FormArgDescri{ArgNum: Arg_Num}
  437. fmt.Println("-- parseFormArgDescri Arg_Num:", Arg_Num)
  438. for i := 0; i < int(Arg_Num); i++ {
  439. arg := ArgDescri{}
  440. //Arg_Name_Len
  441. ArgNameLen, err := readBuf.readNext(4, true)
  442. if err != nil {
  443. return nil, err
  444. }
  445. arg.ArgNameLen = binary.LittleEndian.Uint32(ArgNameLen)
  446. //Arg_Name
  447. arg.ArgName, err = readBuf.readNext(int(arg.ArgNameLen), false)
  448. if err != nil {
  449. return nil, err
  450. }
  451. //Arg_No
  452. ArgNo, err := readBuf.readNext(4, true)
  453. if err != nil {
  454. return nil, err
  455. }
  456. arg.ArgNo = binary.LittleEndian.Uint32(ArgNo)
  457. //Argg_DType
  458. ArgDType, err := readBuf.readNext(4, true)
  459. if err != nil {
  460. return nil, err
  461. }
  462. arg.ArgDType = binary.LittleEndian.Uint32(ArgDType)
  463. //Arg_Preci_Scale
  464. ArgPreciScale, err := readBuf.readNext(4, true)
  465. if err != nil {
  466. return nil, err
  467. }
  468. arg.ArgPreciScale = binary.LittleEndian.Uint32(ArgPreciScale)
  469. formArgDescri.Args = append(formArgDescri.Args, arg)
  470. }
  471. fmt.Printf("formArgDescri %#v \n", formArgDescri)
  472. return formArgDescri, nil
  473. }