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// Provides a [color.Color] type for dealing with non-premultiplied OkLab+Alpha colours.
package noklaba
import (
"image/color"
"math"
"smariot.com/color/internal/helper"
)
// Color is a non-premultiplied OkLab+Alpha [color.Color].
type Color struct {
Lightness, ChromaA, ChromaB, A float64
}
func sqr(a float64) float64 {
return a * a
}
// DistanceSqr returns the maximum possible euclidean distance squared between two colours,
// accounting for the possible backgrounds they might be composited over.
func DistanceSqr(a, b Color) float64 {
dLightness := a.Lightness*a.A - b.Lightness*b.A
dChromaA := a.ChromaA*a.A - b.ChromaA*b.A
dChromaB := a.ChromaB*a.A - b.ChromaB*b.A
dA := a.A - b.A
return max(sqr(dLightness), sqr(dLightness+dA)) + max(sqr(dChromaA), sqr(dChromaA+dA)) + max(sqr(dChromaB), sqr(dChromaB+dA))
}
// Distance returns the maximum possible euclidean distance between two colours,
// accounting for the possible backgrounds they might be composited over.
//
// If you just want to compare relative distances, use [DistanceSqr] instead.
func Distance(a, b Color) float64 {
return math.Sqrt(DistanceSqr(a, b))
}
// RGBA converts to premultiplied RGBA, implementing the [color.Color] interface.
func (c Color) RGBA() (r, g, b, a uint32) {
return helper.NLRGBAtoRGBA(c.NLRGBA())
}
// NRGBA converts to non-premultiplied RGBA.
func (c Color) NRGBA() (r, g, b, a uint32) {
return helper.NLRGBAtoNRGBA(c.NLRGBA())
}
// NLRGBA converts to non-premultiplied linear RGBA.
func (c Color) NLRGBA() (r, g, b, a float64) {
if c.A <= 0 {
return 0, 0, 0, 0
}
r, g, b = helper.LMStoLRGB(helper.OkLabToLMS(c.Lightness, c.ChromaA, c.ChromaB))
return r, g, b, c.A
}
// NXYZA converts to non-premultiplied XYZ+Alpha.
func (c Color) NXYZA() (x, y, z, a float64) {
if c.A <= 0 {
return 0, 0, 0, 0
}
x, y, z = helper.LMStoXYZ(helper.OkLabToLMS(c.Lightness, c.ChromaA, c.ChromaB))
return x, y, z, c.A
}
// NOkLabA converts to non-premultiplied OkLab+Alpha.
func (c Color) NOkLabA() (lightness, chromaA, chromaB, a float64) {
if c.A <= 0 {
return 0, 0, 0, 0
}
return c.Lightness, c.ChromaA, c.ChromaB, c.A
}
// Convert converts an arbitrary colour type to a non-premultiplied OkLab+Alpha [Color].
func Convert(c color.Color) Color {
if c, ok := c.(Color); ok {
return c
}
lightness, chromaA, chromaB, a := helper.ColorToNOkLabA(c)
return Color{lightness, chromaA, chromaB, a}
}
// A [color.Model] for converting arbitrary colours to a non-premultiplied OkLab+Alpha [Color].
//
// Wraps the [Convert] function, returning a [color.Color] interface rather than the [Color] type.
var Model = helper.Model(Convert)
// Type assertion.
var _ color.Color = Color{}

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package noklaba
import (
"math"
"testing"
"smariot.com/color/internal/helper"
)
func eq(c0, c1 Color) bool {
return helper.EqFloat64SliceFuzzy(
[]float64{c0.Lightness, c0.ChromaA, c0.ChromaB, c0.A},
[]float64{c1.Lightness, c1.ChromaA, c1.ChromaB, c1.A},
)
}
func midpoint(c0, c1 Color) Color {
return Color{(c0.Lightness + c1.Lightness) / 2, (c0.ChromaA + c1.ChromaA) / 2, (c0.ChromaB + c1.ChromaB) / 2, (c0.A + c1.A) / 2}
}
func TestModel(t *testing.T) {
helper.TestModel(t, true, Model, eq, []helper.ConvertTest[Color]{
{
Name: "passthrough",
// These is a very illegal colour. If it makes it through
// unchanged, we can be reasonably confident no colour space conversions were
// attempted.
In: Color{math.Inf(1), math.Inf(-1), math.NaN(), 0},
Out: Color{math.Inf(1), math.Inf(-1), math.NaN(), 0},
},
})
}
func TestDistance(t *testing.T) {
helper.TestDistance(t, true, midpoint, Distance, Model)
}