mirror of
https://github.com/featurebasedb/featurebase.git
synced 2026-08-28 10:54:59 +00:00
720 lines
24 KiB
Go
720 lines
24 KiB
Go
package planner
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import (
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"fmt"
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"strings"
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"time"
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featurebase "github.com/featurebasedb/featurebase/v3"
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"github.com/featurebasedb/featurebase/v3/sql3"
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"github.com/featurebasedb/featurebase/v3/sql3/parser"
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)
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const intervalYear = "YY"
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const intervalYearDay = "YD"
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const intervalMonth = "M"
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const intervalDay = "D"
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const intervalWeeKDay = "W"
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const intervalWeek = "WK"
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const intervalHour = "HH"
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const intervalMinute = "MI"
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const intervalSecond = "S"
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const intervalMillisecond = "MS"
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const intervalMicrosecond = "US"
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const intervalNanosecond = "NS"
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func (p *ExecutionPlanner) analyzeFunctionDateTimePart(call *parser.Call, scope parser.Statement) (parser.Expr, error) {
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if len(call.Args) != 2 {
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return nil, sql3.NewErrCallParameterCountMismatch(call.Rparen.Line, call.Rparen.Column, call.Name.Name, 2, len(call.Args))
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}
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// interval
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intervalType := parser.NewDataTypeString()
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if !typesAreAssignmentCompatible(intervalType, call.Args[0].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[0].Pos().Line, call.Args[0].Pos().Column, call.Args[0].DataType().TypeDescription(), intervalType.TypeDescription())
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}
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// date
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dateType := parser.NewDataTypeTimestamp()
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if !typesAreAssignmentCompatible(dateType, call.Args[1].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[1].Pos().Line, call.Args[1].Pos().Column, call.Args[1].DataType().TypeDescription(), dateType.TypeDescription())
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}
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// return int
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call.ResultDataType = parser.NewDataTypeInt()
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return call, nil
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}
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func (p *ExecutionPlanner) analyzeFunctionToTimestamp(call *parser.Call, scope parser.Statement) (parser.Expr, error) {
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// param1 is the number to be converted to timestamp. This param is required.
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// param2 is the time unit of the numeric value in param 1. This param is optional.
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// ToTimestamp can be invoked with just param1.
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if len(call.Args) != 1 && len(call.Args) != 2 {
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return nil, sql3.NewErrCallParameterCountMismatch(call.Rparen.Line, call.Rparen.Column, call.Name.Name, 2, len(call.Args))
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}
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// param1 is a integer of type int64
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param1Type := parser.NewDataTypeInt()
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if !typesAreAssignmentCompatible(param1Type, call.Args[0].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[0].Pos().Line, call.Args[0].Pos().Column, call.Args[0].DataType().TypeDescription(), param1Type.TypeDescription())
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}
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// param2 is a string and it should be one of 's', 'ms', 'us', 'ns'.
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// param2 is optional, will be defaulted to 's' if not supplied.
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if len(call.Args) == 2 {
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param2Type := parser.NewDataTypeString()
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if !typesAreAssignmentCompatible(param2Type, call.Args[1].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[1].Pos().Line, call.Args[1].Pos().Column, call.Args[1].DataType().TypeDescription(), param2Type.TypeDescription())
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}
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}
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// ToTimestamp returns a timestamp calculated from param1 using time unit passed in param 2
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call.ResultDataType = parser.NewDataTypeTimestamp()
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return call, nil
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}
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func (p *ExecutionPlanner) analyzeFunctionDatetimeAdd(call *parser.Call, scope parser.Statement) (parser.Expr, error) {
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// param1 is the time unit of duration to be added to the target timestamp.
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// param2 is the time duration to be added to the target timestamp.
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// param3 is the target timestamp to which the time duration to be added.
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if len(call.Args) != 3 {
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return nil, sql3.NewErrCallParameterCountMismatch(call.Rparen.Line, call.Rparen.Column, call.Name.Name, 3, len(call.Args))
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}
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// param1- time unit is a string and it should be one of 'yy','m','d','hh','mi','s', 'ms', 'us', 'ns'.
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param1Type := parser.NewDataTypeString()
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if !typesAreAssignmentCompatible(param1Type, call.Args[0].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[0].Pos().Line, call.Args[0].Pos().Column, call.Args[0].DataType().TypeDescription(), param1Type.TypeDescription())
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}
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// param2- time duration is a int
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param2Type := parser.NewDataTypeInt()
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if !typesAreAssignmentCompatible(param2Type, call.Args[1].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[1].Pos().Line, call.Args[1].Pos().Column, call.Args[1].DataType().TypeDescription(), param2Type.TypeDescription())
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}
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// param3- target datetime to which the duration to be added to
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param3Type := parser.NewDataTypeTimestamp()
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if !typesAreAssignmentCompatible(param3Type, call.Args[2].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[2].Pos().Line, call.Args[2].Pos().Column, call.Args[2].DataType().TypeDescription(), param3Type.TypeDescription())
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}
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// DatetimeAdd returns a timestamp calculated by adding param2 to param3 using time unit passed in param 1
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call.ResultDataType = parser.NewDataTypeTimestamp()
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return call, nil
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}
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func (p *ExecutionPlanner) analyzeFunctionDateTimeFromParts(call *parser.Call, scope parser.Statement) (parser.Expr, error) {
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if len(call.Args) != 7 {
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return nil, sql3.NewErrCallParameterCountMismatch(call.Rparen.Line, call.Rparen.Column, call.Name.Name, 7, len(call.Args))
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}
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intType := parser.NewDataTypeInt()
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for _, part := range call.Args {
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if !typesAreAssignmentCompatible(intType, part.DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(part.Pos().Line, part.Pos().Column, part.DataType().TypeDescription(), intType.TypeDescription())
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}
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}
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call.ResultDataType = parser.NewDataTypeTimestamp()
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return call, nil
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}
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func (p *ExecutionPlanner) analyzeFunctionDateTimeName(call *parser.Call, scope parser.Statement) (parser.Expr, error) {
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if len(call.Args) != 2 {
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return nil, sql3.NewErrCallParameterCountMismatch(call.Rparen.Line, call.Rparen.Column, call.Name.Name, 2, len(call.Args))
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}
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// interval
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intervalType := parser.NewDataTypeString()
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if !typesAreAssignmentCompatible(intervalType, call.Args[0].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[0].Pos().Line, call.Args[0].Pos().Column, call.Args[0].DataType().TypeDescription(), intervalType.TypeDescription())
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}
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// date
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dateType := parser.NewDataTypeTimestamp()
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if !typesAreAssignmentCompatible(dateType, call.Args[1].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[1].Pos().Line, call.Args[1].Pos().Column, call.Args[1].DataType().TypeDescription(), dateType.TypeDescription())
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}
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//return int
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call.ResultDataType = parser.NewDataTypeString()
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return call, nil
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}
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func (p *ExecutionPlanner) analyzeFunctionDateTrunc(call *parser.Call, scope parser.Statement) (parser.Expr, error) {
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if len(call.Args) != 2 {
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return nil, sql3.NewErrCallParameterCountMismatch(call.Rparen.Line, call.Rparen.Column, call.Name.Name, 2, len(call.Args))
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}
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// interval
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intervalType := parser.NewDataTypeString()
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if !typesAreAssignmentCompatible(intervalType, call.Args[0].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[0].Pos().Line, call.Args[0].Pos().Column, call.Args[0].DataType().TypeDescription(), intervalType.TypeDescription())
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}
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// date
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dateType := parser.NewDataTypeTimestamp()
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if !typesAreAssignmentCompatible(dateType, call.Args[1].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[1].Pos().Line, call.Args[1].Pos().Column, call.Args[1].DataType().TypeDescription(), dateType.TypeDescription())
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}
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//return int
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call.ResultDataType = parser.NewDataTypeString()
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return call, nil
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}
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// analyzeFunctionDateTimeDiff ensures a timeunit and start and end timestamps.
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func (p *ExecutionPlanner) analyzeFunctionDateTimeDiff(call *parser.Call, scope parser.Statement) (parser.Expr, error) {
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if len(call.Args) != 3 {
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return nil, sql3.NewErrCallParameterCountMismatch(call.Rparen.Line, call.Rparen.Column, call.Name.Name, 3, len(call.Args))
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}
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// interval
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intervalType := parser.NewDataTypeString()
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if !typesAreAssignmentCompatible(intervalType, call.Args[0].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[0].Pos().Line, call.Args[0].Pos().Column, call.Args[0].DataType().TypeDescription(), intervalType.TypeDescription())
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}
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dateType := parser.NewDataTypeTimestamp()
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if !typesAreAssignmentCompatible(dateType, call.Args[1].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[1].Pos().Line, call.Args[1].Pos().Column, call.Args[1].DataType().TypeDescription(), dateType.TypeDescription())
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}
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if !typesAreAssignmentCompatible(dateType, call.Args[2].DataType()) {
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return nil, sql3.NewErrParameterTypeMistmatch(call.Args[2].Pos().Line, call.Args[2].Pos().Column, call.Args[2].DataType().TypeDescription(), dateType.TypeDescription())
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}
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call.ResultDataType = parser.NewDataTypeInt()
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return call, nil
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}
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func (n *callPlanExpression) EvaluateDateTimePart(currentRow []interface{}) (interface{}, error) {
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intervalEval, err := n.args[0].Evaluate(currentRow)
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if err != nil {
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return nil, err
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}
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dateEval, err := n.args[1].Evaluate(currentRow)
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if err != nil {
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return nil, err
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}
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// nil if anything is nil
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if intervalEval == nil || dateEval == nil {
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return nil, nil
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}
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// get the date value
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coercedDate, err := coerceValue(n.args[1].Type(), parser.NewDataTypeTimestamp(), dateEval, parser.Pos{Line: 0, Column: 0})
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if err != nil {
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return nil, err
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}
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date, dateOk := coercedDate.(time.Time)
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if !dateOk {
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return nil, sql3.NewErrInternalf("unable to convert value")
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}
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// get the interval value
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coercedInterval, err := coerceValue(n.args[0].Type(), parser.NewDataTypeString(), intervalEval, parser.Pos{Line: 0, Column: 0})
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if err != nil {
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return nil, err
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}
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interval, intervalOk := coercedInterval.(string)
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if !intervalOk {
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return nil, sql3.NewErrInternalf("unable to convert value")
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}
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switch strings.ToUpper(interval) {
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case intervalYear:
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return int64(date.Year()), nil
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case intervalYearDay:
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return int64(date.YearDay()), nil
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case intervalMonth:
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return int64(date.Month()), nil
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case intervalDay:
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return int64(date.Day()), nil
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case intervalWeeKDay:
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return int64(date.Weekday()), nil
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case intervalWeek:
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_, isoWeek := date.ISOWeek()
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return int64(isoWeek), nil
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case intervalHour:
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return int64(date.Hour()), nil
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case intervalMinute:
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return int64(date.Minute()), nil
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case intervalSecond:
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return int64(date.Second()), nil
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case intervalMillisecond:
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return int64(date.Nanosecond() / 1000000), nil
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case intervalMicrosecond:
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return int64(date.Nanosecond() / 1000), nil
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case intervalNanosecond:
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return int64(date.Nanosecond()), nil
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default:
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return nil, sql3.NewErrCallParameterValueInvalid(0, 0, interval, "interval")
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}
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}
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// EvaluateDateTimeFromParts evaluates the call to date_time_from_parts. This uses the base time.Date() function.
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func (n *callPlanExpression) EvaluateDateTimeFromParts(currentRow []interface{}) (interface{}, error) {
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timestamps := make([]int, len(n.args))
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for i, arg := range n.args {
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param, err := arg.Evaluate(currentRow)
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if err != nil {
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return nil, err
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} else if param == nil {
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return nil, nil
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}
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coercedValue, err := coerceValue(arg.Type(), parser.NewDataTypeInt(), param, parser.Pos{Line: 0, Column: 0})
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if err != nil {
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return nil, err
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}
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val, ok := coercedValue.(int64)
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if !ok {
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return nil, sql3.NewErrInternalf("unable to convert value")
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}
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timestamps[i] = int(val)
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}
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if val, ok := isValidDateTimeParts(timestamps); !ok {
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return nil, sql3.NewErrInvalidDatetimePart(0, 0, val)
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}
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dt := time.Date(timestamps[0], time.Month(timestamps[1]), timestamps[2], timestamps[3], timestamps[4], timestamps[5], timestamps[6]*1000*1000, time.UTC)
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if dt.Year() < 0 || dt.Year() > 9999 {
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return nil, sql3.NewErrInvalidDatetimePart(0, 0, dt.Year())
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}
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return dt, nil
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}
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// isValidDateTimeParts returns true if the year is between 0 and 9999 and the date and time exists(think of leap year).
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// the argument is a slice of ints representing the year, month, day, hour, minutes, seconds, and milliseconds.
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// If any value in the slice falls outside its range, the value and false are returned.
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func isValidDateTimeParts(timestamps []int) (value int, ok bool) {
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if timestamps[0] < 0 || timestamps[0] > 9999 {
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return timestamps[0], false
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}
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if timestamps[1] < 1 || timestamps[1] > 12 {
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return timestamps[1], false
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}
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switch timestamps[1] {
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case 1, 3, 5, 7, 8, 10, 12:
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if timestamps[2] < 1 || timestamps[2] > 31 {
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return timestamps[2], false
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}
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case 4, 6, 9, 11:
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if timestamps[2] < 1 || timestamps[2] > 30 {
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return timestamps[2], false
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}
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case 2:
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if timestamps[2] < 1 || timestamps[2] > 29 {
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return timestamps[2], false
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}
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if !(timestamps[0]%4 == 0 && timestamps[0]%100 != 0 || timestamps[0]%400 == 0) {
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if timestamps[2] == 29 {
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return timestamps[2], false
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}
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}
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}
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if timestamps[3] < 0 || timestamps[3] > 23 {
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return timestamps[3], false
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}
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if timestamps[4] < 0 || timestamps[4] > 59 {
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return timestamps[4], false
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}
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if timestamps[5] < 0 || timestamps[5] > 59 {
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return timestamps[5], false
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}
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if timestamps[6] < 0 || timestamps[6] > 999 {
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return timestamps[6], false
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}
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return 0, true
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}
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func (n *callPlanExpression) EvaluateToTimestamp(currentRow []interface{}) (interface{}, error) {
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// retrieve param1, the number to be converted to timestamp
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param1, err := n.args[0].Evaluate(currentRow)
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if err != nil {
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return nil, err
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} else if param1 == nil {
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// if the param1 is null silently return null timestamp value
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return nil, nil
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}
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coercedParam1, err := coerceValue(n.args[0].Type(), parser.NewDataTypeInt(), param1, parser.Pos{Line: 0, Column: 0})
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if err != nil {
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// raise error if param 1 is not an integer. Should we return nil instead of raising error here? see note at return.
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return nil, err
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}
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num, ok := coercedParam1.(int64)
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if !ok {
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// raise error if param 1 is not an integer. Should we return nil instead of raising error here? see note at return.
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return nil, sql3.NewErrInternalf("unable to convert value")
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}
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// retrieve param2, time unit for param1, if not supplied default to seconds 's'.
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var unit string = featurebase.TimeUnitSeconds
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if len(n.args) == 2 {
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param2, err := n.args[1].Evaluate(currentRow)
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if err != nil {
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// raise error if unable to retieve the argument for param2
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return nil, err
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}
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coercedParam2, err := coerceValue(n.args[1].Type(), parser.NewDataTypeString(), param2, parser.Pos{Line: 0, Column: 0})
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if err != nil {
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// raise error if param2 is not a string
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return nil, err
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}
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unit, ok = coercedParam2.(string)
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if !ok {
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// raise error if param2 is not a string
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return nil, sql3.NewErrInternalf("unable to convert value")
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}
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if !featurebase.IsValidTimeUnit(unit) {
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// raise error is param2 is not a valid time unit
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return nil, sql3.NewErrCallParameterValueInvalid(0, 0, unit, "timeunit")
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}
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}
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// should we throw error or return nil if the conversion fails? what is the desired behaviour when ToTimestamp errors for one bad record in a batch of thousands?
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return featurebase.ValToTimestamp(unit, num)
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}
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func (n *callPlanExpression) EvaluateDateTimeName(currentRow []interface{}) (interface{}, error) {
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intervalEval, err := n.args[0].Evaluate(currentRow)
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if err != nil {
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return nil, err
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}
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dateEval, err := n.args[1].Evaluate(currentRow)
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if err != nil {
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return nil, err
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}
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// nil if anything is nil
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if intervalEval == nil || dateEval == nil {
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return nil, nil
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}
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//get the date value
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coercedDate, err := coerceValue(n.args[1].Type(), parser.NewDataTypeTimestamp(), dateEval, parser.Pos{Line: 0, Column: 0})
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if err != nil {
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return nil, err
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}
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date, dateOk := coercedDate.(time.Time)
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if !dateOk {
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return nil, sql3.NewErrInternalf("unable to convert value")
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}
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//get the interval value
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coercedInterval, err := coerceValue(n.args[0].Type(), parser.NewDataTypeString(), intervalEval, parser.Pos{Line: 0, Column: 0})
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if err != nil {
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return nil, err
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}
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interval, intervalOk := coercedInterval.(string)
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if !intervalOk {
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return nil, sql3.NewErrInternalf("unable to convert value")
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}
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switch strings.ToUpper(interval) {
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case intervalYear:
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return fmt.Sprint(date.Year()), nil
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case intervalYearDay:
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return fmt.Sprint(date.YearDay()), nil
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case intervalMonth:
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return fmt.Sprint(date.Month()), nil
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case intervalDay:
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return fmt.Sprint(date.Day()), nil
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case intervalWeeKDay:
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return fmt.Sprint(date.Weekday()), nil
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|
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case intervalWeek:
|
|
_, isoWeek := date.ISOWeek()
|
|
return fmt.Sprint(isoWeek), nil
|
|
|
|
case intervalHour:
|
|
return fmt.Sprint(date.Hour()), nil
|
|
|
|
case intervalMinute:
|
|
return fmt.Sprint(date.Minute()), nil
|
|
|
|
case intervalSecond:
|
|
return fmt.Sprint(date.Second()), nil
|
|
|
|
case intervalMillisecond:
|
|
return fmt.Sprint(date.Nanosecond() / 1000000), nil
|
|
case intervalMicrosecond:
|
|
return fmt.Sprint(date.Nanosecond() / 1000), nil
|
|
case intervalNanosecond:
|
|
return fmt.Sprint(date.Nanosecond()), nil
|
|
|
|
default:
|
|
return nil, sql3.NewErrCallParameterValueInvalid(0, 0, interval, "interval")
|
|
}
|
|
}
|
|
|
|
func (n *callPlanExpression) EvaluateDatetimeAdd(currentRow []interface{}) (interface{}, error) {
|
|
// retrieve param1, timeunit of the value to be added to the target timestamp
|
|
param1, err := n.args[0].Evaluate(currentRow)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
coercedParam1, err := coerceValue(n.args[0].Type(), parser.NewDataTypeString(), param1, parser.Pos{Line: 0, Column: 0})
|
|
if err != nil {
|
|
// raise error if param 1 is not string.
|
|
return nil, err
|
|
}
|
|
timeunit, ok := coercedParam1.(string)
|
|
if !ok {
|
|
// raise error if param 1 is not string.
|
|
return nil, sql3.NewErrInternalf("unable to convert value")
|
|
}
|
|
|
|
// retrieve param2, timeduration to be added to the target timestamp.
|
|
param2, err := n.args[1].Evaluate(currentRow)
|
|
if err != nil {
|
|
// raise error if unable to retieve the argument for param2
|
|
return nil, err
|
|
}
|
|
// retrieve param3, target timestamp to which the timeduration to be added to.
|
|
param3, err := n.args[2].Evaluate(currentRow)
|
|
if err != nil {
|
|
// raise error if unable to retieve the argument for param3
|
|
return nil, err
|
|
}
|
|
if param2 == nil || param3 == nil {
|
|
// if either of timeduration or target datetime is null then return null
|
|
return nil, nil
|
|
}
|
|
coercedParam2, err := coerceValue(n.args[1].Type(), parser.NewDataTypeInt(), param2, parser.Pos{Line: 0, Column: 0})
|
|
if err != nil {
|
|
// raise error if param2 is not a string
|
|
return nil, err
|
|
}
|
|
timeduration, ok := coercedParam2.(int64)
|
|
if !ok {
|
|
// raise error if param2 is not a integer
|
|
return nil, sql3.NewErrInternalf("unable to convert value")
|
|
}
|
|
coercedParam3, err := coerceValue(n.args[2].Type(), parser.NewDataTypeTimestamp(), param3, parser.Pos{Line: 0, Column: 0})
|
|
if err != nil {
|
|
// raise error if param3 is not a timestamp
|
|
return nil, err
|
|
}
|
|
target, ok := coercedParam3.(time.Time)
|
|
if !ok {
|
|
// raise error if param3 is not a datetime
|
|
return nil, sql3.NewErrInternalf("unable to convert value")
|
|
}
|
|
if !isValidTimeInterval(strings.ToUpper(timeunit)) {
|
|
// raise error if timeunit value is invalid
|
|
return nil, sql3.NewErrCallParameterValueInvalid(0, 0, timeunit, "timeunit")
|
|
} else if target.IsZero() {
|
|
// return nil if target is nil
|
|
return nil, nil
|
|
} else if timeduration == 0 {
|
|
// return target if duration to add is 0
|
|
return target, nil
|
|
}
|
|
switch strings.ToUpper(timeunit) {
|
|
case intervalYear:
|
|
return target.AddDate(int(timeduration), 0, 0), nil
|
|
case intervalMonth:
|
|
return target.AddDate(0, int(timeduration), 0), nil
|
|
case intervalDay:
|
|
return target.AddDate(0, 0, int(timeduration)), nil
|
|
case intervalHour:
|
|
return target.Add(time.Hour * time.Duration(timeduration)), nil
|
|
case intervalMinute:
|
|
return target.Add(time.Minute * time.Duration(timeduration)), nil
|
|
case intervalSecond:
|
|
return target.Add(time.Second * time.Duration(timeduration)), nil
|
|
case intervalMillisecond:
|
|
return target.Add(time.Millisecond * time.Duration(timeduration)), nil
|
|
case intervalMicrosecond:
|
|
return target.Add(time.Microsecond * time.Duration(timeduration)), nil
|
|
case intervalNanosecond:
|
|
return target.Add(time.Nanosecond * time.Duration(timeduration)), nil
|
|
default:
|
|
return nil, sql3.NewErrCallParameterValueInvalid(0, 0, timeunit, "timeunit")
|
|
}
|
|
}
|
|
func (n *callPlanExpression) EvaluateDateTrunc(currentRow []interface{}) (interface{}, error) {
|
|
intervalEval, err := n.args[0].Evaluate(currentRow)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
dateEval, err := n.args[1].Evaluate(currentRow)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
// nil if anything is nil
|
|
if intervalEval == nil || dateEval == nil {
|
|
return nil, nil
|
|
}
|
|
|
|
//get the date value
|
|
coercedDate, err := coerceValue(n.args[1].Type(), parser.NewDataTypeTimestamp(), dateEval, parser.Pos{Line: 0, Column: 0})
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
date, dateOk := coercedDate.(time.Time)
|
|
if !dateOk {
|
|
return nil, sql3.NewErrInternalf("unable to convert value")
|
|
}
|
|
|
|
//get the interval value
|
|
coercedInterval, err := coerceValue(n.args[0].Type(), parser.NewDataTypeString(), intervalEval, parser.Pos{Line: 0, Column: 0})
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
|
|
interval, intervalOk := coercedInterval.(string)
|
|
if !intervalOk {
|
|
return nil, sql3.NewErrInternalf("unable to convert value")
|
|
}
|
|
|
|
switch strings.ToUpper(interval) {
|
|
case intervalYear:
|
|
return date.Format("2006"), nil
|
|
case intervalMonth:
|
|
return date.Format("2006-01"), nil
|
|
case intervalDay:
|
|
return date.Format("2006-01-02"), nil
|
|
case intervalHour:
|
|
return date.Format("2006-01-02T15"), nil
|
|
case intervalMinute:
|
|
return date.Format("2006-01-02T15:04"), nil
|
|
case intervalSecond:
|
|
return date.Format("2006-01-02T15:04:05"), nil
|
|
case intervalMillisecond:
|
|
return date.Format("2006-01-02T15:04:05.000"), nil
|
|
case intervalMicrosecond:
|
|
return date.Format("2006-01-02T15:04:05.000000"), nil
|
|
case intervalNanosecond:
|
|
return date.Format("2006-01-02T15:04:05.000000000"), nil
|
|
default:
|
|
return nil, sql3.NewErrCallParameterValueInvalid(0, 0, interval, "interval")
|
|
}
|
|
}
|
|
|
|
// isValidTimeInterval returns true if part is valid.
|
|
func isValidTimeInterval(unit string) bool {
|
|
switch unit {
|
|
case intervalYear, intervalYearDay, intervalMonth, intervalDay, intervalWeeKDay,
|
|
intervalWeek, intervalHour, intervalMinute, intervalSecond, intervalMillisecond,
|
|
intervalMicrosecond, intervalNanosecond:
|
|
return true
|
|
default:
|
|
return false
|
|
}
|
|
}
|
|
|
|
// EvaluateDatetimeDiff takes three arguments:
|
|
// 1. param1, timeunit of the value to be subtracted from the target timestamp
|
|
// 2. param2, starttime to be subtracted from the endtime timestamp
|
|
// 3. param3, endtime timestamp to which the starttime to be subtracted from.
|
|
// It returns the difference between the two timestamps.
|
|
func (n *callPlanExpression) EvaluateDatetimeDiff(currentRow []interface{}) (interface{}, error) {
|
|
param1, err := n.args[0].Evaluate(currentRow)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
if param1 == nil {
|
|
return nil, nil
|
|
}
|
|
cp, err := coerceValue(n.args[0].Type(), parser.NewDataTypeString(), param1, parser.Pos{Line: 0, Column: 0})
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
timeunit, ok := cp.(string)
|
|
if !ok {
|
|
return nil, sql3.NewErrInternalf("unable to convert value")
|
|
}
|
|
|
|
param2, err := n.args[1].Evaluate(currentRow)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
coercedParam, err := coerceValue(n.args[1].Type(), parser.NewDataTypeTimestamp(), param2, parser.Pos{Line: 0, Column: 0})
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
if coercedParam == nil {
|
|
return nil, nil
|
|
}
|
|
startDate, ok := coercedParam.(time.Time)
|
|
if !ok {
|
|
return nil, sql3.NewErrInternalf("unable to convert value")
|
|
}
|
|
if coercedParam == nil {
|
|
return nil, nil
|
|
}
|
|
param3, err := n.args[2].Evaluate(currentRow)
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
if param3 == nil {
|
|
return nil, nil
|
|
}
|
|
coercedParam, err = coerceValue(n.args[2].Type(), parser.NewDataTypeTimestamp(), param3, parser.Pos{Line: 0, Column: 0})
|
|
if err != nil {
|
|
return nil, err
|
|
}
|
|
endDate, ok := coercedParam.(time.Time)
|
|
if !ok {
|
|
return nil, sql3.NewErrInternalf("unable to convert value")
|
|
}
|
|
var diff int64
|
|
switch strings.ToUpper(timeunit) {
|
|
case intervalYear:
|
|
diff = int64(endDate.Year() - startDate.Year())
|
|
case intervalMonth:
|
|
diff = int64((endDate.Year()-startDate.Year())*12 + int(endDate.Month()-startDate.Month()))
|
|
case intervalDay:
|
|
diff = int64(endDate.Sub(startDate).Hours() / 24)
|
|
case intervalHour:
|
|
diff = int64(endDate.Sub(startDate).Hours())
|
|
case intervalMinute:
|
|
diff = int64(endDate.Sub(startDate).Minutes())
|
|
case intervalSecond:
|
|
diff = int64(endDate.Sub(startDate).Seconds())
|
|
case intervalMillisecond:
|
|
diff = endDate.Sub(startDate).Milliseconds()
|
|
case intervalMicrosecond:
|
|
diff = endDate.Sub(startDate).Microseconds()
|
|
case intervalNanosecond:
|
|
diff = endDate.Sub(startDate).Nanoseconds()
|
|
default:
|
|
return nil, sql3.NewErrCallParameterValueInvalid(0, 0, timeunit, "timeunit")
|
|
}
|
|
if diff == (-1<<63) || diff == ((1<<63)-1) {
|
|
return nil, sql3.NewErrOutputValueOutOfRange(0, 0)
|
|
}
|
|
return diff, nil
|
|
}
|