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oklch()

{{CSSRef}} 

The oklch() functional notation expresses a given color in the Oklab {{glossary("color space")}} . oklch() is the cylindrical form of {{CSSXref("color_value/oklab", "oklab()")}} , using the same L axis, but with polar Chroma (C) and Hue (h) coordinates.

Syntax

/* Absolute values */
oklch(40.1% 0.123 21.57)
oklch(59.69% 0.156 49.77)
oklch(59.69% 0.156 49.77 / .5)

/* Relative values */
oklch(from green l c h / 0.5)
oklch(from #0000FF calc(l + 0.1) c h)
oklch(from hsl(180 100% 50%) calc(l - 0.1) c h)
oklch(from var(--aColor) l c h / calc(alpha - 0.1))

Values

Below are descriptions of the allowed values for both absolute and relative colors.

[!NOTE] Usually when percentage values have a numeric equivalent in CSS, 100% is equal to the number 1. This is not the case for all of the oklch() component values. Here, 100% is equal to 0.4 for the C value.

Absolute value syntax

oklch(L C H[ / A])

The parameters are as follows:

[!NOTE] See Missing color components for more information on the effect of none.

Relative value syntax

oklch(from <color> L C H[ / A])

The parameters are as follows:

Defining relative color output channel components

When using relative color syntax inside an oklch() function, the browser converts the origin color into an equivalent Oklch color (if it is not already specified as such). The color is defined as three distinct color channel values — l (lightness), c (chroma), and h (hue) — plus an alpha channel value (alpha). These channel values are made available inside the function to be used when defining the output color channel values:

When defining a relative color, the different channels of the output color can be expressed in several different ways. Below, we’ll study some examples to illustrate these.

In the first two examples below, we are using relative color syntax. However, the first one outputs the same color as the origin color and the second one outputs a color not based on the origin color at all. They don’t really create relative colors! You’d be unlikely to ever use these in a real codebase, and would probably just use an absolute color value instead. We included these examples as a starting point for learning about relative oklch() syntax.

Let’s start with an origin color of hsl(0 100% 50%) (equivalent to red). The following function outputs the same color as the origin color — it uses the origin color’s l, c, and h channel values (0.627966, 0.257704, and 29.2346) as the output channel values:

oklch(from hsl(0 100% 50%) l c h)

This function’s output color is oklch(0.627966 0.257704 29.2346).

The next function uses absolute values for the output color’s channel values, outputting a completely different color not based on the origin color:

oklch(from hsl(0 100% 50%) 42.1% 0.25 328.363)

In the above case, the output color is oklch(0.421 0.25 328.363).

The following function creates a relative color based on the origin color:

oklch(from hsl(0 100% 50%) 0.8 0.4 h)

This example:

The final output color is oklch(0.8 0.4 29.2346).

[!NOTE] As mentioned above, if the output color is using a different color model to the origin color, the origin color is converted to the same model as the output color in the background so that it can be represented in a way that is compatible (i.e. using the same channels).

In the examples we’ve seen so far in this section, the alpha channels have not been explicitly specified for either the origin or output colors. When the output color alpha channel is not specified, it defaults to the same value as the origin color alpha channel. When the origin color alpha channel is not specified (and it is not a relative color), it defaults to 1. Therefore, the origin and output alpha channel values are 1 for the above examples.

Let’s look at some examples that specify origin and output alpha channel values. The first one specifies the output alpha channel value as being the same as the origin alpha channel value, whereas the second one specifies a different output alpha channel value, unrelated to the origin alpha channel value.

oklch(from hsl(0 100% 50% / 0.8) l c h / alpha)
/* Computed output color: oklch(0.627966 0.257704 29.2346 / 0.8) */

oklch(from hsl(0 100% 50% / 0.8) l c h / 0.5)
/* Computed output color: oklch(0.627966 0.257704 29.2346 / 0.5) */

In the following example, the hsl() origin color is again converted to the oklch() equivalent — oklch(0.627966 0.257704 29.2346). {{cssxref("calc")}}  calculations are applied to the L, C, H, and A values, resulting in an output color of oklch(0.827966 0.357704 9.23462 / 0.9):

oklch(from hsl(0 100% 50%) calc(l + 0.2) calc(c + 0.1) calc(h - 20) / calc(alpha - 0.1))

[!NOTE] Because the origin color channel values are resolved to <number> values, you have to add numbers to them when using them in calculations, even in cases where a channel would normally accept <percentage>, <angle>, or other value types. Adding a <percentage> to a <number>, for example, doesn’t work.

Formal syntax

{{csssyntax}} 

Examples

Adjusting the brightness of a color

This example shows the effect of varying the L (lightness) value of the oklch() functional notation.

HTML

<div data-color="blue-dark"></div>
<div data-color="blue"></div>
<div data-color="blue-light"></div>

<div data-color="red-dark"></div>
<div data-color="red"></div>
<div data-color="red-light"></div>

<div data-color="green-dark"></div>
<div data-color="green"></div>
<div data-color="green-light"></div>

CSS

body {
  display: grid;
  grid-template-columns: 1fr 1fr 1fr;
  gap: 20px;
}
div {
  height: 50px;
  border: 1px solid black;
}
[data-color="blue-dark"] {
  background-color: oklch(10% 0.4 240);
}
[data-color="blue"] {
  background-color: oklch(50% 0.4 240);
}
[data-color="blue-light"] {
  background-color: oklch(90% 0.4 240);
}

[data-color="red-dark"] {
  background-color: oklch(10% 0.4 20);
}
[data-color="red"] {
  background-color: oklch(50% 0.4 20);
}
[data-color="red-light"] {
  background-color: oklch(90% 0.4 20);
}

[data-color="green-dark"] {
  background-color: oklch(10% 0.4 130);
}
[data-color="green"] {
  background-color: oklch(50% 0.4 130);
}
[data-color="green-light"] {
  background-color: oklch(90% 0.4 130);
}

Result

{{EmbedLiveSample("Adjusting the brightness of a color", "", "200")}} 

Adjusting color intensity via chroma

The following example shows the effect of varying the C (chroma) value of the oklch() functional notation, with colors decreasing in intensity as the C value decreases from fully saturated to almost grey.

HTML

<div data-color="blue"></div>
<div data-color="blue-chroma1"></div>
<div data-color="blue-chroma2"></div>
<div data-color="blue-chroma3"></div>

<div data-color="red"></div>
<div data-color="red-chroma1"></div>
<div data-color="red-chroma2"></div>
<div data-color="red-chroma3"></div>

<div data-color="green"></div>
<div data-color="green-chroma1"></div>
<div data-color="green-chroma2"></div>
<div data-color="green-chroma3"></div>

CSS

With the initial starting colors blue, red, and green, we declare progressively smaller values for chroma on them: starting from full color saturation at the high value of 0.4 (equivalent to 100%) down to 0.01 (equivalent to 2%), which is almost grey for all the colors.

body {
  display: grid;
  grid-template-columns: 1fr 1fr 1fr 1fr;
  gap: 20px;
}
div {
  height: 50px;
  border: 1px solid black;
}
[data-color="blue"] {
  background-color: oklch(50% 0.4 240);
}
[data-color="blue-chroma1"] {
  background-color: oklch(50% 0.2 240);
}
[data-color="blue-chroma2"] {
  background-color: oklch(50% 0.1 240);
}
[data-color="blue-chroma3"] {
  background-color: oklch(50% 0.01 240);
}

[data-color="red"] {
  background-color: oklch(50% 100% 20deg);
}
[data-color="red-chroma1"] {
  background-color: oklch(50% 50% 20deg);
}
[data-color="red-chroma2"] {
  background-color: oklch(50% 25% 20deg);
}
[data-color="red-chroma3"] {
  background-color: oklch(50% 2% 20deg);
}

[data-color="green"] {
  background-color: oklch(50% 0.4 130);
}
[data-color="green-chroma1"] {
  background-color: oklch(50% 0.2 130);
}
[data-color="green-chroma2"] {
  background-color: oklch(50% 0.1 130);
}
[data-color="green-chroma3"] {
  background-color: oklch(50% 0.01 130);
}

Result

{{EmbedLiveSample("Adjusting color intensity via chroma", '', '200')}} 

If we had used 0 instead of 0.01 and 2%, with the same lightness values, the colors would have all been the same shade of grey. In this example, they are almost grey.

Hues in oklch

The following example shows swatches with different H (hue) values of the oklch() functional notation.

HTML

<div data-color="0">0deg</div>
<div data-color="20">20deg</div>
<div data-color="40">40deg</div>
<div data-color="60">60deg</div>

and so on.

<div data-color="80">80deg</div>
<div data-color="100">100deg</div>
<div data-color="120">120deg</div>
<div data-color="140">140deg</div>
<div data-color="160">160deg</div>
<div data-color="180">180deg</div>
<div data-color="200">200deg</div>
<div data-color="220">220deg</div>
<div data-color="240">240deg</div>
<div data-color="260">260deg</div>
<div data-color="280">280deg</div>
<div data-color="300">300deg</div>
<div data-color="320">320deg</div>
<div data-color="340">340deg</div>
<div data-color="360">360deg</div>

CSS

body {
  display: flex;
  flex-wrap: wrap;
  gap: 3px;
}
div {
  flex: 0 0 4em;
  text-align: center;
  line-height: 4em;
  display: inline-block;
  border: 1px solid black;
  color: white;
  font-family: monospace;
}
[data-color="0"] {
  background-color: oklch(50% 0.4 0deg);
}
[data-color="20"] {
  background-color: oklch(50% 0.4 20deg);
}
[data-color="40"] {
  background-color: oklch(50% 0.4 40deg);
}
[data-color="60"] {
  background-color: oklch(50% 0.4 60deg);
}

and so on.

[data-color="80"] {
  background-color: oklch(50% 0.4 80deg);
}
[data-color="100"] {
  background-color: oklch(50% 0.4 100deg);
}
[data-color="120"] {
  background-color: oklch(50% 0.4 120deg);
}
[data-color="140"] {
  background-color: oklch(50% 0.4 140deg);
}
[data-color="160"] {
  background-color: oklch(50% 0.4 160deg);
}
[data-color="180"] {
  background-color: oklch(50% 0.4 180deg);
}
[data-color="200"] {
  background-color: oklch(50% 0.4 200deg);
}
[data-color="220"] {
  background-color: oklch(50% 0.4 220deg);
}
[data-color="240"] {
  background-color: oklch(50% 0.4 240deg);
}
[data-color="260"] {
  background-color: oklch(50% 0.4 260deg);
}
[data-color="280"] {
  background-color: oklch(50% 0.4 280deg);
}
[data-color="300"] {
  background-color: oklch(50% 0.4 300deg);
}
[data-color="320"] {
  background-color: oklch(50% 0.4 320deg);
}
[data-color="340"] {
  background-color: oklch(50% 0.4 340deg);
}
[data-color="360"] {
  background-color: oklch(50% 0.4 360deg);
}

Result

{{EmbedLiveSample("hues in oklch")}} 

The hue angles in oklch() are different from those in {{CSSXref("color_value/hsl", "hsl()")}} . See {{cssxref("hue")}}  for more information. In hsl(), the sRGB color 0deg represents red. However, in the CIELab color space, 0deg corresponds to magenta, while red is approximately 41deg.

Adjusting the alpha value of a color

The following example shows the effect of varying the A (alpha) value of the oklch() color function. The red and red-alpha elements overlap the #background-div element to demonstrate the effect of opacity. Giving A a value of 0.4 makes the color 40% opaque.

HTML

<div id="background-div">
  <div data-color="red"></div>
  <div data-color="red-alpha"></div>
</div>

CSS

div {
  width: 50px;
  height: 50px;
  padding: 5px;
  margin: 5px;
  display: inline-block;
  border: 1px solid black;
}
#background-div {
  background-color: oklch(100% 0.57 217);
  width: 150px;
  height: 40px;
}
[data-color="red"] {
  background-color: oklch(50% 0.5 20);
}
[data-color="red-alpha"] {
  background-color: oklch(50% 0.5 20 / 0.4);
}

Result

{{EmbedLiveSample("adjusting_the_alpha_value_of_a_color")}} 

Using relative colors with oklch()

This example styles three {{htmlelement("div")}}  elements with different background colors. The middle one is given the unmodified --base-color, while the left and right ones are given lightened and darkened variants of that --base-color.

These variants are defined using relative colors — the --base-color custom property is passed into an oklch() function, and the output colors have their lightness channel modified to achieve the desired effect via a calc() function. The lightened color has 0.15 (15%) added to the lightness channel, and the darkened color has 0.15 (15%) subtracted from the lightness channel.

<div id="container">
  <div class="item" id="one"></div>
  <div class="item" id="two"></div>
  <div class="item" id="three"></div>
</div>

CSS

#container {
  display: flex;
  width: 100vw;
  height: 100vh;
  box-sizing: border-box;
}

.item {
  flex: 1;
  margin: 20px;
}
:root {
  --base-color: orange;
}

#one {
  background-color: oklch(from var(--base-color) calc(l + 0.15) c h);
}

#two {
  background-color: var(--base-color);
}

#three {
  background-color: oklch(from var(--base-color) calc(l - 0.15) c h);
}

Result

The output is as follows:

{{ EmbedLiveSample("Using relative colors with oklch()", "100%", "200") }} 

Specifications

{{Specifications}} 

Browser compatibility

{{Compat}} 

See also

In this article

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