mssql.go 8.6 KB

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  1. package mssql
  2. import (
  3. "container/list"
  4. "context"
  5. "database/sql"
  6. "fmt"
  7. "strconv"
  8. "strings"
  9. "time"
  10. "math"
  11. _ "github.com/denisenkom/go-mssqldb"
  12. "github.com/go-xorm/core"
  13. "github.com/grafana/grafana/pkg/components/null"
  14. "github.com/grafana/grafana/pkg/log"
  15. "github.com/grafana/grafana/pkg/models"
  16. "github.com/grafana/grafana/pkg/tsdb"
  17. )
  18. type MssqlQueryEndpoint struct {
  19. sqlEngine tsdb.SqlEngine
  20. log log.Logger
  21. }
  22. func init() {
  23. tsdb.RegisterTsdbQueryEndpoint("mssql", NewMssqlQueryEndpoint)
  24. }
  25. func NewMssqlQueryEndpoint(datasource *models.DataSource) (tsdb.TsdbQueryEndpoint, error) {
  26. endpoint := &MssqlQueryEndpoint{
  27. log: log.New("tsdb.mssql"),
  28. }
  29. endpoint.sqlEngine = &tsdb.DefaultSqlEngine{
  30. MacroEngine: NewMssqlMacroEngine(),
  31. }
  32. hostParts := strings.Split(datasource.Url, ":")
  33. if len(hostParts) < 2 {
  34. hostParts = append(hostParts, "1433")
  35. }
  36. server, port := hostParts[0], hostParts[1]
  37. endpoint.log.Debug("cnnstr", "hostParts len", len(hostParts))
  38. cnnstr := fmt.Sprintf("server=%s;port=%s;database=%s;user id=%s;password=%s;",
  39. server,
  40. port,
  41. datasource.Database,
  42. datasource.User,
  43. datasource.Password,
  44. )
  45. endpoint.log.Debug("getEngine", "connection", cnnstr)
  46. if err := endpoint.sqlEngine.InitEngine("mssql", datasource, cnnstr); err != nil {
  47. return nil, err
  48. }
  49. return endpoint, nil
  50. }
  51. // Query is the main function for the MssqlQueryEndpoint
  52. func (e *MssqlQueryEndpoint) Query(ctx context.Context, dsInfo *models.DataSource, tsdbQuery *tsdb.TsdbQuery) (*tsdb.Response, error) {
  53. return e.sqlEngine.Query(ctx, dsInfo, tsdbQuery, e.transformToTimeSeries, e.transformToTable)
  54. }
  55. func (e MssqlQueryEndpoint) transformToTable(query *tsdb.Query, rows *core.Rows, result *tsdb.QueryResult, tsdbQuery *tsdb.TsdbQuery) error {
  56. columnNames, err := rows.Columns()
  57. columnCount := len(columnNames)
  58. if err != nil {
  59. return err
  60. }
  61. rowLimit := 1000000
  62. rowCount := 0
  63. timeIndex := -1
  64. table := &tsdb.Table{
  65. Columns: make([]tsdb.TableColumn, columnCount),
  66. Rows: make([]tsdb.RowValues, 0),
  67. }
  68. for i, name := range columnNames {
  69. table.Columns[i].Text = name
  70. // check if there is a column named time
  71. switch name {
  72. case "time":
  73. timeIndex = i
  74. }
  75. }
  76. columnTypes, err := rows.ColumnTypes()
  77. if err != nil {
  78. return err
  79. }
  80. for ; rows.Next(); rowCount++ {
  81. if rowCount > rowLimit {
  82. return fmt.Errorf("MsSQL query row limit exceeded, limit %d", rowLimit)
  83. }
  84. values, err := e.getTypedRowData(columnTypes, rows)
  85. if err != nil {
  86. return err
  87. }
  88. // convert column named time to unix timestamp to make
  89. // native datetime mssql types work in annotation queries
  90. if timeIndex != -1 {
  91. switch value := values[timeIndex].(type) {
  92. case time.Time:
  93. values[timeIndex] = float64(value.Unix())
  94. }
  95. }
  96. table.Rows = append(table.Rows, values)
  97. }
  98. result.Tables = append(result.Tables, table)
  99. result.Meta.Set("rowCount", rowCount)
  100. return nil
  101. }
  102. func (e MssqlQueryEndpoint) getTypedRowData(types []*sql.ColumnType, rows *core.Rows) (tsdb.RowValues, error) {
  103. values := make([]interface{}, len(types))
  104. valuePtrs := make([]interface{}, len(types))
  105. for i, stype := range types {
  106. e.log.Debug("type", "type", stype)
  107. valuePtrs[i] = &values[i]
  108. }
  109. if err := rows.Scan(valuePtrs...); err != nil {
  110. return nil, err
  111. }
  112. // convert types not handled by denisenkom/go-mssqldb
  113. // unhandled types are returned as []byte
  114. for i := 0; i < len(types); i++ {
  115. if value, ok := values[i].([]byte); ok == true {
  116. switch types[i].DatabaseTypeName() {
  117. case "MONEY", "SMALLMONEY", "DECIMAL":
  118. if v, err := strconv.ParseFloat(string(value), 64); err == nil {
  119. values[i] = v
  120. } else {
  121. e.log.Debug("Rows", "Error converting numeric to float", value)
  122. }
  123. default:
  124. e.log.Debug("Rows", "Unknown database type", types[i].DatabaseTypeName(), "value", value)
  125. values[i] = string(value)
  126. }
  127. }
  128. }
  129. return values, nil
  130. }
  131. func (e MssqlQueryEndpoint) transformToTimeSeries(query *tsdb.Query, rows *core.Rows, result *tsdb.QueryResult, tsdbQuery *tsdb.TsdbQuery) error {
  132. pointsBySeries := make(map[string]*tsdb.TimeSeries)
  133. seriesByQueryOrder := list.New()
  134. columnNames, err := rows.Columns()
  135. if err != nil {
  136. return err
  137. }
  138. columnTypes, err := rows.ColumnTypes()
  139. if err != nil {
  140. return err
  141. }
  142. rowLimit := 1000000
  143. rowCount := 0
  144. timeIndex := -1
  145. metricIndex := -1
  146. // check columns of resultset: a column named time is mandatory
  147. // the first text column is treated as metric name unless a column named metric is present
  148. for i, col := range columnNames {
  149. switch col {
  150. case "time":
  151. timeIndex = i
  152. case "metric":
  153. metricIndex = i
  154. default:
  155. if metricIndex == -1 {
  156. switch columnTypes[i].DatabaseTypeName() {
  157. case "VARCHAR", "CHAR", "NVARCHAR", "NCHAR":
  158. metricIndex = i
  159. }
  160. }
  161. }
  162. }
  163. if timeIndex == -1 {
  164. return fmt.Errorf("Found no column named time")
  165. }
  166. fillMissing := query.Model.Get("fill").MustBool(false)
  167. var fillInterval float64
  168. fillValue := null.Float{}
  169. if fillMissing {
  170. fillInterval = query.Model.Get("fillInterval").MustFloat64() * 1000
  171. if query.Model.Get("fillNull").MustBool(false) == false {
  172. fillValue.Float64 = query.Model.Get("fillValue").MustFloat64()
  173. fillValue.Valid = true
  174. }
  175. }
  176. for rows.Next() {
  177. var timestamp float64
  178. var value null.Float
  179. var metricColVal string
  180. var metric string
  181. if rowCount > rowLimit {
  182. return fmt.Errorf("MSSQL query row limit exceeded, limit %d", rowLimit)
  183. }
  184. values, err := e.getTypedRowData(columnTypes, rows)
  185. if err != nil {
  186. return err
  187. }
  188. switch columnValue := values[timeIndex].(type) {
  189. case int64:
  190. timestamp = float64(columnValue * 1000)
  191. case float64:
  192. timestamp = columnValue * 1000
  193. case time.Time:
  194. timestamp = (float64(columnValue.Unix()) * 1000) + float64(columnValue.Nanosecond()/1e6) // in case someone is trying to map times beyond 2262 :D
  195. default:
  196. return fmt.Errorf("Invalid type for column time, must be of type timestamp or unix timestamp")
  197. }
  198. if metricIndex >= 0 {
  199. if columnValue, ok := values[metricIndex].(string); ok == true {
  200. metricColVal = columnValue
  201. } else {
  202. return fmt.Errorf("Column metric must be of type CHAR, VARCHAR, NCHAR or NVARCHAR. metric column name: %s type: %s but datatype is %T", columnNames[metricIndex], columnTypes[metricIndex].DatabaseTypeName(), values[metricIndex])
  203. }
  204. }
  205. for i, col := range columnNames {
  206. if i == timeIndex || i == metricIndex {
  207. continue
  208. }
  209. switch columnValue := values[i].(type) {
  210. case int64:
  211. value = null.FloatFrom(float64(columnValue))
  212. case float64:
  213. value = null.FloatFrom(columnValue)
  214. case nil:
  215. value.Valid = false
  216. default:
  217. return fmt.Errorf("Value column must have numeric datatype, column: %s type: %T value: %v", col, columnValue, columnValue)
  218. }
  219. // construct the metric name
  220. // if there is more than 3 columns (more than one value) and there is
  221. // a metric column, join them to make the metric name
  222. if metricIndex == -1 {
  223. metric = col
  224. } else if len(columnNames) > 3 {
  225. metric = metricColVal + " - " + col
  226. } else {
  227. metric = metricColVal
  228. }
  229. series, exist := pointsBySeries[metric]
  230. if exist == false {
  231. series = &tsdb.TimeSeries{Name: metric}
  232. pointsBySeries[metric] = series
  233. seriesByQueryOrder.PushBack(metric)
  234. }
  235. if fillMissing {
  236. var intervalStart float64
  237. if exist == false {
  238. intervalStart = float64(tsdbQuery.TimeRange.MustGetFrom().UnixNano() / 1e6)
  239. } else {
  240. intervalStart = series.Points[len(series.Points)-1][1].Float64 + fillInterval
  241. }
  242. // align interval start
  243. intervalStart = math.Floor(intervalStart/fillInterval) * fillInterval
  244. for i := intervalStart; i < timestamp; i += fillInterval {
  245. series.Points = append(series.Points, tsdb.TimePoint{fillValue, null.FloatFrom(i)})
  246. rowCount++
  247. }
  248. }
  249. series.Points = append(series.Points, tsdb.TimePoint{value, null.FloatFrom(timestamp)})
  250. e.log.Debug("Rows", "metric", metric, "time", timestamp, "value", value)
  251. }
  252. }
  253. for elem := seriesByQueryOrder.Front(); elem != nil; elem = elem.Next() {
  254. key := elem.Value.(string)
  255. result.Series = append(result.Series, pointsBySeries[key])
  256. if fillMissing {
  257. series := pointsBySeries[key]
  258. // fill in values from last fetched value till interval end
  259. intervalStart := series.Points[len(series.Points)-1][1].Float64
  260. intervalEnd := float64(tsdbQuery.TimeRange.MustGetTo().UnixNano() / 1e6)
  261. // align interval start
  262. intervalStart = math.Floor(intervalStart/fillInterval) * fillInterval
  263. for i := intervalStart + fillInterval; i < intervalEnd; i += fillInterval {
  264. series.Points = append(series.Points, tsdb.TimePoint{fillValue, null.FloatFrom(i)})
  265. rowCount++
  266. }
  267. }
  268. }
  269. result.Meta.Set("rowCount", rowCount)
  270. return nil
  271. }