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package valgo
//go:generate go run generator/main.go
// Custom generic type covering all numeric types. This type is used as the
// value type in ValidatorNumber and ValidatorNumberP.
type TypeNumber interface {
~int |
~int8 |
~int16 |
~int32 |
~int64 |
~uint |
~uint8 |
~uint16 |
~uint32 |
~uint64 |
~float32 |
~float64
}
func isNumberEqualTo[T TypeNumber](v0 T, v1 T) bool {
return v0 == v1
}
func isNumberGreaterThan[T TypeNumber](v0 T, v1 T) bool {
return v0 > v1
}
func isNumberGreaterOrEqualTo[T TypeNumber](v0 T, v1 T) bool {
return v0 >= v1
}
func isNumberLessThan[T TypeNumber](v0 T, v1 T) bool {
return v0 < v1
}
func isNumberLessOrEqualTo[T TypeNumber](v0 T, v1 T) bool {
return v0 <= v1
}
func isNumberBetween[T TypeNumber](v T, min T, max T) bool {
return v >= min && v <= max
}
func isNumberZero[T TypeNumber](v T) bool {
return v == 0
}
func isNumberInSlice[T TypeNumber](v T, slice []T) bool {
for _, _v := range slice {
if v == _v {
return true
}
}
return false
}
// The [ValidatorNumber] provides functions for setting validation rules for a
// [TypeNumber] value type, or a custom type based on a [TypeNumber].
//
// [TypeNumber] is a generic interface defined by Valgo that generalizes any
// standard Golang type.
type ValidatorNumber[T TypeNumber] struct {
context *ValidatorContext
}
// Receives a numeric value to validate.
//
// The value can be any golang numeric type (int64, int32, float32, uint,
// etc.) or a custom numeric type such as `type Level int32;`
//
// Optionally, the function can receive a name and title, in that order,
// to be displayed in the error messages. A `value_%N`` pattern is used as a name in
// error messages if a name and title are not supplied; for example: value_0.
// When the name is provided but not the title, then the name is humanized to be
// used as the title as well; for example the name `phone_number` will be
// humanized as `Phone Number`
func Number[T TypeNumber](value T, nameAndTitle ...string) *ValidatorNumber[T] {
return &ValidatorNumber[T]{context: NewContext(value, nameAndTitle...)}
}
// Return the context of the validator. The context is useful to create a custom
// validator by extending this validator.
func (validator *ValidatorNumber[T]) Context() *ValidatorContext {
return validator.context
}
// Invert the logical value associated with the next validator function.
// For example:
//
// // It will return false because Not() inverts the boolean value associated with the Zero() function
// Is(v.Number(0).Not().Zero()).Valid()
func (validator *ValidatorNumber[T]) Not() *ValidatorNumber[T] {
validator.context.Not()
return validator
}
// Or introduces a logical OR boundary in the current validator chain.
//
// Or groups adjacent validation fragments into a single OR-group that is
// evaluated left-to-right until one fragment succeeds. The OR-group succeeds
// if any fragment succeeds; it fails only if all fragments fail.
//
// Precedence: the OR-group is evaluated as a unit before the implicit AND
// that continues the chain. For example:
//
// A.Or().B.C == (A OR B) AND C
//
// Error reporting: if the OR-group fails, the error message for that group is
// a single message composed by joining the failing fragments' messages using
// the localized OR list format.
//
// Example:
//
// // Passes because input is Zero (GreaterThan(5) OR Zero()).
// input := 0
// isValid := v.Is(v.Number(input).GreaterThan(5).Or().Zero()).Valid()
func (validator *ValidatorNumber[T]) Or() *ValidatorNumber[T] {
validator.context.Or()
return validator
}
// OrElse introduces a logical OR boundary with a cut (short-circuit) in the
// validator chain.
//
// OrElse behaves like Or for building an OR-group, but with an additional rule:
// if the left side (a single fragment, or the entire OR-group accumulated to
// the left of OrElse) succeeds, validation stops and no fragments to the right
// of OrElse are evaluated.
//
// This is primarily used to express "accept X, otherwise validate the rest"
// without repeating X across multiple OR fragments.
//
// Precedence: OrElse still participates in OR-grouping precedence. For example:
//
// A.OrElse().B.C == A OR (B AND C) (with a cut if A succeeds)
//
// Error reporting: if the OR-group fails, its message is composed the same way
// as Or (localized OR list join).
//
// Example:
//
// // If input is Zero, the chain succeeds and GreaterThan/LessThan are not evaluated.
// // Otherwise, input must be within (5, 10).
// input := 0
// isValid := v.Is(v.Number(input).Zero().OrElse().GreaterThan(5).LessThan(10)).Valid()
func (validator *ValidatorNumber[T]) OrElse() *ValidatorNumber[T] {
validator.context.OrElse()
return validator
}
// Validate if a numeric value is equal to another. This function internally uses
// the golang `==` operator.
// For example:
//
// quantity := 2
// Is(v.Number(quantity).Equal(2))
func (validator *ValidatorNumber[T]) EqualTo(value T, template ...string) *ValidatorNumber[T] {
validator.context.AddWithValue(
func() bool {
return isNumberEqualTo(validator.context.Value().(T), value)
},
ErrorKeyEqualTo, value, template...)
return validator
}
// Validate if a numeric value is greater than another. This function internally
// uses the golang `>` operator.
// For example:
//
// quantity := 3
// Is(v.Number(quantity).GreaterThan(2))
func (validator *ValidatorNumber[T]) GreaterThan(value T, template ...string) *ValidatorNumber[T] {
validator.context.AddWithValue(
func() bool {
return isNumberGreaterThan(validator.context.Value().(T), value)
},
ErrorKeyGreaterThan, value, template...)
return validator
}
// Validate if a numeric value is greater than or equal to another. This function
// internally uses the golang `>=` operator.
// For example:
//
// quantity := 3
// Is(v.Number(quantity).GreaterOrEqualTo(3))
func (validator *ValidatorNumber[T]) GreaterOrEqualTo(value T, template ...string) *ValidatorNumber[T] {
validator.context.AddWithValue(
func() bool {
return isNumberGreaterOrEqualTo(validator.context.Value().(T), value)
},
ErrorKeyGreaterOrEqualTo, value, template...)
return validator
}
// Validate if a numeric value is less than another. This function internally
// uses the golang `<` operator.
// For example:
//
// quantity := 2
// Is(v.Number(quantity).LessThan(3))
func (validator *ValidatorNumber[T]) LessThan(value T, template ...string) *ValidatorNumber[T] {
validator.context.AddWithValue(
func() bool {
return isNumberLessThan(validator.context.Value().(T), value)
},
ErrorKeyLessThan, value, template...)
return validator
}
// Validate if a numeric value is less than or equal to another. This function
// internally uses the golang `<=` operator.
// For example:
//
// quantity := 2
// Is(v.Number(quantity).LessOrEqualTo(2))
func (validator *ValidatorNumber[T]) LessOrEqualTo(value T, template ...string) *ValidatorNumber[T] {
validator.context.AddWithValue(
func() bool {
return isNumberLessOrEqualTo(validator.context.Value().(T), value)
},
ErrorKeyLessOrEqualTo, value, template...)
return validator
}
// Validate if a number is within a range (inclusive).
// For example:
//
// Is(v.Number(3).Between(2,6))
func (validator *ValidatorNumber[T]) Between(min T, max T, template ...string) *ValidatorNumber[T] {
validator.context.AddWithParams(
func() bool {
return isNumberBetween(validator.context.Value().(T), min, max)
},
ErrorKeyBetween,
map[string]any{"title": validator.context.title, "min": min, "max": max, "value": validator.context.Value()},
template...)
return validator
}
// Validate if a numeric value is zero.
//
// For example:
//
// Is(v.Number(0).Zero())
func (validator *ValidatorNumber[T]) Zero(template ...string) *ValidatorNumber[T] {
validator.context.AddWithValue(
func() bool {
return isNumberZero(validator.context.Value().(T))
},
ErrorKeyZero, validator.context.Value(), template...)
return validator
}
// Validate if a numeric value passes a custom function.
// For example:
//
// quantity := 2
// Is(v.Number(quantity).Passing((v int) bool {
// return v == getAllowedQuantity()
// })
func (validator *ValidatorNumber[T]) Passing(function func(v T) bool, template ...string) *ValidatorNumber[T] {
validator.context.AddWithValue(
func() bool {
return function(validator.context.Value().(T))
},
ErrorKeyPassing, validator.context.Value(), template...)
return validator
}
// Validate if a number is present in a numeric slice.
// For example:
//
// quantity := 3
// validQuantities := []int{1,3,5}
// Is(v.Number(quantity).InSlice(validQuantities))
func (validator *ValidatorNumber[T]) InSlice(slice []T, template ...string) *ValidatorNumber[T] {
validator.context.AddWithValue(
func() bool {
return isNumberInSlice(validator.context.Value().(T), slice)
},
ErrorKeyInSlice, validator.context.Value(), template...)
return validator
}