I'm trying to convert RGB to HSL and I also want to convert from HSL to RGB, I have written a class for it but if I do RGB->HSL->RGB to try if it works I get a different value.

**Example case:** if you create a HSLColor object by doing `HSLColor MyTestConversion = HSLColor.FromRGB(Colors.Green);`

and then do `Color ExpectedGreenHere = MyTestConversion.ToRGB()`

you get a different color than `Colors.Green`

while it was the original input so something goes wrong..

This is the code i'm using:

```
public class HSLColor
{
public float Hue;
public float Saturation;
public float Luminosity;
public HSLColor(float H, float S, float L)
{
Hue = H;
Saturation = S;
Luminosity = L;
}
public static HSLColor FromRGB(Color Clr)
{
return FromRGB(Clr.R, Clr.G, Clr.B);
}
public static HSLColor FromRGB(Byte R, Byte G, Byte B)
{
float _R = (R / 255f);
float _G = (G / 255f);
float _B = (B / 255f);
float _Min = Math.Min(Math.Min(_R, _G), _B);
float _Max = Math.Max(Math.Max(_R, _G), _B);
float _Delta = _Max - _Min;
float H = 0;
float S = 0;
float L = (float)((_Max + _Min) / 2.0f);
if (_Delta != 0)
{
if (L < 0.5f)
{
S = (float)(_Delta / (_Max + _Min));
}
else
{
S = (float)(_Delta / (2.0f - _Max - _Min));
}
float _Delta_R = (float)(((_Max - _R) / 6.0f + (_Delta / 2.0f)) / _Delta);
float _Delta_G = (float)(((_Max - _G) / 6.0f + (_Delta / 2.0f)) / _Delta);
float _Delta_B = (float)(((_Max - _B) / 6.0f + (_Delta / 2.0f)) / _Delta);
if (_R == _Max)
{
H = _Delta_B - _Delta_G;
}
else if (_G == _Max)
{
H = (1.0f / 3.0f) + _Delta_R - _Delta_B;
}
else if (_B == _Max)
{
H = (2.0f / 3.0f) + _Delta_G - _Delta_R;
}
if (H < 0) H += 1.0f;
if (H > 1) H -= 1.0f;
}
return new HSLColor(H, S, L);
}
private float Hue_2_RGB(float v1, float v2, float vH)
{
if (vH < 0) vH += 1;
if (vH > 1) vH -= 1;
if ((6 * vH) < 1) return (v1 + (v2 - v1) * 6 * vH);
if ((2 * vH) < 1) return (v2);
if ((3 * vH) < 2) return (v1 + (v2 - v1) * ((2 / 3) - vH) * 6);
return (v1);
}
public Color ToRGB()
{
Color Clr = new Color();
float var_1, var_2;
if (Saturation == 0)
{
Clr.R = (Byte)(Luminosity * 255);
Clr.G = (Byte)(Luminosity * 255);
Clr.B = (Byte)(Luminosity * 255);
}
else
{
if (Luminosity < 0.5) var_2 = Luminosity * (1 + Saturation);
else var_2 = (Luminosity + Saturation) - (Saturation * Luminosity);
var_1 = 2 * Luminosity - var_2;
Clr.R = (Byte)(255 * Hue_2_RGB(var_1, var_2, Hue + (1 / 3)));
Clr.G = (Byte)(255 * Hue_2_RGB(var_1, var_2, Hue));
Clr.B = (Byte)(255 * Hue_2_RGB(var_1, var_2, Hue - (1 / 3)));
}
return Clr;
}
}
```

Used reference: EasyRGB Color Math