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v0.0.399 added sq.NewAutoDBTypeConverter
Build Docker and Deploy / Run goext test-suite (push) Successful in 1m25s Details

This commit is contained in:
Mike Schwörer 2024-03-09 14:16:35 +01:00
parent 9abe28c490
commit 9e5b8c5277
Signed by: Mikescher
GPG Key ID: D3C7172E0A70F8CF
5 changed files with 236 additions and 172 deletions

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@ -30,7 +30,7 @@ Potentially needs `export GOPRIVATE="gogs.mikescher.com"`
| confext | Mike | Parses environment configuration into structs |
| cmdext | Mike | Runner for external commands/processes |
| | | |
| sq | Mike | Utility functions for sql based databases |
| sq | Mike | Utility functions for sql based databases (primarily sqlite) |
| tst | Mike | Utility functions for unit tests |
| | | |
| rfctime | Mike | Classes for time seriallization, with different marshallign method for mongo and json |

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@ -1,5 +1,5 @@
package goext
const GoextVersion = "0.0.398"
const GoextVersion = "0.0.399"
const GoextVersionTimestamp = "2024-03-09T13:36:06+0100"
const GoextVersionTimestamp = "2024-03-09T14:16:35+0100"

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@ -1,17 +1,10 @@
package sq
import (
"encoding/json"
"errors"
"fmt"
"gogs.mikescher.com/BlackForestBytes/goext/exerr"
"gogs.mikescher.com/BlackForestBytes/goext/langext"
"gogs.mikescher.com/BlackForestBytes/goext/rfctime"
"gogs.mikescher.com/BlackForestBytes/goext/timeext"
"reflect"
"strconv"
"strings"
"time"
)
type DBTypeConverter interface {
@ -21,169 +14,16 @@ type DBTypeConverter interface {
DBToModel(v any) (any, error)
}
var ConverterBoolToBit = NewDBTypeConverter[bool, int64](func(v bool) (int64, error) {
return langext.Conditional(v, int64(1), int64(0)), nil
}, func(v int64) (bool, error) {
if v == 0 {
return false, nil
}
if v == 1 {
return true, nil
}
return false, errors.New(fmt.Sprintf("invalid valud for boolean: '%d'", v))
})
type DBDataConstraint interface {
string | langext.NumberConstraint | []byte
}
var ConverterTimeToUnixMillis = NewDBTypeConverter[time.Time, int64](func(v time.Time) (int64, error) {
return v.UnixMilli(), nil
}, func(v int64) (time.Time, error) {
return time.UnixMilli(v), nil
})
type DatabaseConvertible[TModelData any, TDBData DBDataConstraint] interface {
MarshalToDB(v TModelData) (TDBData, error)
UnmarshalToModel(v TDBData) (TModelData, error)
}
var ConverterRFCUnixMilliTimeToUnixMillis = NewDBTypeConverter[rfctime.UnixMilliTime, int64](func(v rfctime.UnixMilliTime) (int64, error) {
return v.UnixMilli(), nil
}, func(v int64) (rfctime.UnixMilliTime, error) {
return rfctime.NewUnixMilli(time.UnixMilli(v)), nil
})
var ConverterRFCUnixNanoTimeToUnixNanos = NewDBTypeConverter[rfctime.UnixNanoTime, int64](func(v rfctime.UnixNanoTime) (int64, error) {
return v.UnixNano(), nil
}, func(v int64) (rfctime.UnixNanoTime, error) {
return rfctime.NewUnixNano(time.Unix(0, v)), nil
})
var ConverterRFCUnixTimeToUnixSeconds = NewDBTypeConverter[rfctime.UnixTime, int64](func(v rfctime.UnixTime) (int64, error) {
return v.Unix(), nil
}, func(v int64) (rfctime.UnixTime, error) {
return rfctime.NewUnix(time.Unix(v, 0)), nil
})
// ConverterRFC339TimeToString
// Does not really use RFC339 - but sqlite does not understand timezones and the `T` delimiter
var ConverterRFC339TimeToString = NewDBTypeConverter[rfctime.RFC3339Time, string](func(v rfctime.RFC3339Time) (string, error) {
return v.Time().In(time.UTC).Format("2006-01-02 15:04:05"), nil
}, func(v string) (rfctime.RFC3339Time, error) {
t, err := time.Parse("2006-01-02 15:04:05", v)
if err != nil {
return rfctime.RFC3339Time{}, err
}
return rfctime.NewRFC3339(t), nil
})
// ConverterRFC339NanoTimeToString
// Does not really use RFC339 - but sqlite does not understand timezones and the `T` delimiter
var ConverterRFC339NanoTimeToString = NewDBTypeConverter[rfctime.RFC3339NanoTime, string](func(v rfctime.RFC3339NanoTime) (string, error) {
return v.Time().In(time.UTC).Format("2006-01-02 15:04:05.999999999"), nil
}, func(v string) (rfctime.RFC3339NanoTime, error) {
t, err := time.ParseInLocation("2006-01-02 15:04:05.999999999", v, time.UTC)
if err != nil {
return rfctime.RFC3339NanoTime{}, err
}
return rfctime.NewRFC3339Nano(t), nil
})
var ConverterRFCDateToString = NewDBTypeConverter[rfctime.Date, string](func(v rfctime.Date) (string, error) {
return fmt.Sprintf("%04d-%02d-%02d", v.Year, v.Month, v.Day), nil
}, func(v string) (rfctime.Date, error) {
split := strings.Split(v, "-")
if len(split) != 3 {
return rfctime.Date{}, errors.New("invalid date format: " + v)
}
year, err := strconv.ParseInt(split[0], 10, 32)
if err != nil {
return rfctime.Date{}, errors.New("invalid date format: " + v + ": " + err.Error())
}
month, err := strconv.ParseInt(split[0], 10, 32)
if err != nil {
return rfctime.Date{}, errors.New("invalid date format: " + v + ": " + err.Error())
}
day, err := strconv.ParseInt(split[0], 10, 32)
if err != nil {
return rfctime.Date{}, errors.New("invalid date format: " + v + ": " + err.Error())
}
return rfctime.Date{Year: int(year), Month: int(month), Day: int(day)}, nil
})
var ConverterRFCTimeToString = NewDBTypeConverter[rfctime.Time, string](func(v rfctime.Time) (string, error) {
return v.SerializeShort(), nil
}, func(v string) (rfctime.Time, error) {
res := rfctime.Time{}
err := res.Deserialize(v)
if err != nil {
return rfctime.Time{}, err
}
return res, nil
})
var ConverterRFCSecondsF64ToString = NewDBTypeConverter[rfctime.SecondsF64, float64](func(v rfctime.SecondsF64) (float64, error) {
return v.Seconds(), nil
}, func(v float64) (rfctime.SecondsF64, error) {
return rfctime.NewSecondsF64(timeext.FromSeconds(v)), nil
})
var ConverterJsonObjToString = NewDBTypeConverter[JsonObj, string](func(v JsonObj) (string, error) {
mrsh, err := json.Marshal(v)
if err != nil {
return "", err
}
return string(mrsh), nil
}, func(v string) (JsonObj, error) {
var mrsh JsonObj
if err := json.Unmarshal([]byte(v), &mrsh); err != nil {
return JsonObj{}, err
}
return mrsh, nil
})
var ConverterJsonArrToString = NewDBTypeConverter[JsonArr, string](func(v JsonArr) (string, error) {
mrsh, err := json.Marshal(v)
if err != nil {
return "", err
}
return string(mrsh), nil
}, func(v string) (JsonArr, error) {
var mrsh JsonArr
if err := json.Unmarshal([]byte(v), &mrsh); err != nil {
return JsonArr{}, err
}
return mrsh, nil
})
var ConverterExErrCategoryToString = NewDBTypeConverter[exerr.ErrorCategory, string](func(v exerr.ErrorCategory) (string, error) {
return v.Category, nil
}, func(v string) (exerr.ErrorCategory, error) {
for _, cat := range exerr.AllCategories {
if cat.Category == v {
return cat, nil
}
}
return exerr.CatUser, errors.New("failed to convert '" + v + "' to exerr.ErrorCategory")
})
var ConverterExErrSeverityToString = NewDBTypeConverter[exerr.ErrorSeverity, string](func(v exerr.ErrorSeverity) (string, error) {
return v.Severity, nil
}, func(v string) (exerr.ErrorSeverity, error) {
for _, sev := range exerr.AllSeverities {
if sev.Severity == v {
return sev, nil
}
}
return exerr.SevErr, errors.New("failed to convert '" + v + "' to exerr.ErrorSeverity")
})
var ConverterExErrTypeToString = NewDBTypeConverter[exerr.ErrorType, string](func(v exerr.ErrorType) (string, error) {
return v.Key, nil
}, func(v string) (exerr.ErrorType, error) {
for _, etp := range exerr.ListRegisteredTypes() {
if etp.Key == v {
return etp, nil
}
}
return exerr.NewType(v, nil), nil
})
type dbTypeConverterImpl[TModelData any, TDBData any] struct {
type dbTypeConverterImpl[TModelData any, TDBData DBDataConstraint] struct {
dbTypeString string
modelTypeString string
todb func(v TModelData) (TDBData, error)
@ -212,7 +52,7 @@ func (t *dbTypeConverterImpl[TModelData, TDBData]) DBToModel(v any) (any, error)
return nil, errors.New(fmt.Sprintf("Unexpected value in DBTypeConverter, expected '%s', found '%T'", t.dbTypeString, v))
}
func NewDBTypeConverter[TModelData any, TDBData any](todb func(v TModelData) (TDBData, error), tomodel func(v TDBData) (TModelData, error)) DBTypeConverter {
func NewDBTypeConverter[TModelData any, TDBData DBDataConstraint](todb func(v TModelData) (TDBData, error), tomodel func(v TDBData) (TModelData, error)) DBTypeConverter {
return &dbTypeConverterImpl[TModelData, TDBData]{
dbTypeString: fmt.Sprintf("%T", *new(TDBData)),
modelTypeString: fmt.Sprintf("%T", *new(TModelData)),
@ -221,6 +61,15 @@ func NewDBTypeConverter[TModelData any, TDBData any](todb func(v TModelData) (TD
}
}
func NewAutoDBTypeConverter[TDBData DBDataConstraint, TModelData DatabaseConvertible[TModelData, TDBData]](obj TModelData) DBTypeConverter {
return &dbTypeConverterImpl[TModelData, TDBData]{
dbTypeString: fmt.Sprintf("%T", *new(TDBData)),
modelTypeString: fmt.Sprintf("%T", *new(TModelData)),
todb: obj.MarshalToDB,
tomodel: obj.UnmarshalToModel,
}
}
func convertValueToDB(q Queryable, value any) (any, error) {
modelTypeStr := fmt.Sprintf("%T", value)

161
sq/converterDefault.go Normal file
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@ -0,0 +1,161 @@
package sq
import (
"errors"
"fmt"
"gogs.mikescher.com/BlackForestBytes/goext/exerr"
"gogs.mikescher.com/BlackForestBytes/goext/langext"
"gogs.mikescher.com/BlackForestBytes/goext/rfctime"
"gogs.mikescher.com/BlackForestBytes/goext/timeext"
"strconv"
"strings"
"time"
)
// ========================== COMMON DATATYPES ==========================
var ConverterBoolToBit = NewDBTypeConverter[bool, int64](func(v bool) (int64, error) {
return langext.Conditional(v, int64(1), int64(0)), nil
}, func(v int64) (bool, error) {
if v == 0 {
return false, nil
}
if v == 1 {
return true, nil
}
return false, errors.New(fmt.Sprintf("invalid valud for boolean: '%d'", v))
})
var ConverterTimeToUnixMillis = NewDBTypeConverter[time.Time, int64](func(v time.Time) (int64, error) {
return v.UnixMilli(), nil
}, func(v int64) (time.Time, error) {
return time.UnixMilli(v), nil
})
// ========================== RFCTIME ==========================
var ConverterRFCUnixMilliTimeToUnixMillis = NewDBTypeConverter[rfctime.UnixMilliTime, int64](func(v rfctime.UnixMilliTime) (int64, error) {
return v.UnixMilli(), nil
}, func(v int64) (rfctime.UnixMilliTime, error) {
return rfctime.NewUnixMilli(time.UnixMilli(v)), nil
})
var ConverterRFCUnixNanoTimeToUnixNanos = NewDBTypeConverter[rfctime.UnixNanoTime, int64](func(v rfctime.UnixNanoTime) (int64, error) {
return v.UnixNano(), nil
}, func(v int64) (rfctime.UnixNanoTime, error) {
return rfctime.NewUnixNano(time.Unix(0, v)), nil
})
var ConverterRFCUnixTimeToUnixSeconds = NewDBTypeConverter[rfctime.UnixTime, int64](func(v rfctime.UnixTime) (int64, error) {
return v.Unix(), nil
}, func(v int64) (rfctime.UnixTime, error) {
return rfctime.NewUnix(time.Unix(v, 0)), nil
})
// ConverterRFC339TimeToString
// Does not really use RFC339 - but sqlite does not understand timezones and the `T` delimiter
var ConverterRFC339TimeToString = NewDBTypeConverter[rfctime.RFC3339Time, string](func(v rfctime.RFC3339Time) (string, error) {
return v.Time().In(time.UTC).Format("2006-01-02 15:04:05"), nil
}, func(v string) (rfctime.RFC3339Time, error) {
t, err := time.Parse("2006-01-02 15:04:05", v)
if err != nil {
return rfctime.RFC3339Time{}, err
}
return rfctime.NewRFC3339(t), nil
})
// ConverterRFC339NanoTimeToString
// Does not really use RFC339 - but sqlite does not understand timezones and the `T` delimiter
var ConverterRFC339NanoTimeToString = NewDBTypeConverter[rfctime.RFC3339NanoTime, string](func(v rfctime.RFC3339NanoTime) (string, error) {
return v.Time().In(time.UTC).Format("2006-01-02 15:04:05.999999999"), nil
}, func(v string) (rfctime.RFC3339NanoTime, error) {
t, err := time.ParseInLocation("2006-01-02 15:04:05.999999999", v, time.UTC)
if err != nil {
return rfctime.RFC3339NanoTime{}, err
}
return rfctime.NewRFC3339Nano(t), nil
})
var ConverterRFCDateToString = NewDBTypeConverter[rfctime.Date, string](func(v rfctime.Date) (string, error) {
return fmt.Sprintf("%04d-%02d-%02d", v.Year, v.Month, v.Day), nil
}, func(v string) (rfctime.Date, error) {
split := strings.Split(v, "-")
if len(split) != 3 {
return rfctime.Date{}, errors.New("invalid date format: " + v)
}
year, err := strconv.ParseInt(split[0], 10, 32)
if err != nil {
return rfctime.Date{}, errors.New("invalid date format: " + v + ": " + err.Error())
}
month, err := strconv.ParseInt(split[0], 10, 32)
if err != nil {
return rfctime.Date{}, errors.New("invalid date format: " + v + ": " + err.Error())
}
day, err := strconv.ParseInt(split[0], 10, 32)
if err != nil {
return rfctime.Date{}, errors.New("invalid date format: " + v + ": " + err.Error())
}
return rfctime.Date{Year: int(year), Month: int(month), Day: int(day)}, nil
})
var ConverterRFCTimeToString = NewDBTypeConverter[rfctime.Time, string](func(v rfctime.Time) (string, error) {
return v.SerializeShort(), nil
}, func(v string) (rfctime.Time, error) {
res := rfctime.Time{}
err := res.Deserialize(v)
if err != nil {
return rfctime.Time{}, err
}
return res, nil
})
var ConverterRFCSecondsF64ToString = NewDBTypeConverter[rfctime.SecondsF64, float64](func(v rfctime.SecondsF64) (float64, error) {
return v.Seconds(), nil
}, func(v float64) (rfctime.SecondsF64, error) {
return rfctime.NewSecondsF64(timeext.FromSeconds(v)), nil
})
// ========================== JSON ==========================
var ConverterJsonObjToString = NewAutoDBTypeConverter(JsonObj{})
var ConverterJsonArrToString = NewAutoDBTypeConverter(JsonArr{})
// Json[T] must be registered manually for each gen-type
// ========================== EXERR ==========================
var ConverterExErrCategoryToString = NewDBTypeConverter[exerr.ErrorCategory, string](func(v exerr.ErrorCategory) (string, error) {
return v.Category, nil
}, func(v string) (exerr.ErrorCategory, error) {
for _, cat := range exerr.AllCategories {
if cat.Category == v {
return cat, nil
}
}
return exerr.CatUser, errors.New("failed to convert '" + v + "' to exerr.ErrorCategory")
})
var ConverterExErrSeverityToString = NewDBTypeConverter[exerr.ErrorSeverity, string](func(v exerr.ErrorSeverity) (string, error) {
return v.Severity, nil
}, func(v string) (exerr.ErrorSeverity, error) {
for _, sev := range exerr.AllSeverities {
if sev.Severity == v {
return sev, nil
}
}
return exerr.SevErr, errors.New("failed to convert '" + v + "' to exerr.ErrorSeverity")
})
var ConverterExErrTypeToString = NewDBTypeConverter[exerr.ErrorType, string](func(v exerr.ErrorType) (string, error) {
return v.Key, nil
}, func(v string) (exerr.ErrorType, error) {
for _, etp := range exerr.ListRegisteredTypes() {
if etp.Key == v {
return etp, nil
}
}
return exerr.NewType(v, nil), nil
})

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@ -1,5 +1,59 @@
package sq
import "encoding/json"
type JsonObj map[string]any
func (j JsonObj) MarshalToDB(v JsonObj) (string, error) {
mrsh, err := json.Marshal(v)
if err != nil {
return "", err
}
return string(mrsh), nil
}
func (j JsonObj) UnmarshalToModel(v string) (JsonObj, error) {
var mrsh JsonObj
if err := json.Unmarshal([]byte(v), &mrsh); err != nil {
return JsonObj{}, err
}
return mrsh, nil
}
type JsonArr []any
func (j JsonArr) MarshalToDB(v JsonArr) (string, error) {
mrsh, err := json.Marshal(v)
if err != nil {
return "", err
}
return string(mrsh), nil
}
func (j JsonArr) UnmarshalToModel(v string) (JsonArr, error) {
var mrsh JsonArr
if err := json.Unmarshal([]byte(v), &mrsh); err != nil {
return JsonArr{}, err
}
return mrsh, nil
}
type AutoJson[T any] struct {
Value T
}
func (j AutoJson[T]) MarshalToDB(v AutoJson[T]) (string, error) {
mrsh, err := json.Marshal(v.Value)
if err != nil {
return "", err
}
return string(mrsh), nil
}
func (j AutoJson[T]) UnmarshalToModel(v string) (AutoJson[T], error) {
mrsh := *new(T)
if err := json.Unmarshal([]byte(v), &mrsh); err != nil {
return AutoJson[T]{}, err
}
return AutoJson[T]{Value: mrsh}, nil
}