[−][src]Struct google_vision1::Color
Represents a color in the RGBA color space. This representation is designed for simplicity of conversion to/from color representations in various languages over compactness; for example, the fields of this representation can be trivially provided to the constructor of "java.awt.Color" in Java; it can also be trivially provided to UIColor's "+colorWithRed:green:blue:alpha" method in iOS; and, with just a little work, it can be easily formatted into a CSS "rgba()" string in JavaScript, as well.
Note: this proto does not carry information about the absolute color space that should be used to interpret the RGB value (e.g. sRGB, Adobe RGB, DCI-P3, BT.2020, etc.). By default, applications SHOULD assume the sRGB color space.
Example (Java):
import com.google.type.Color;
// ...
public static java.awt.Color fromProto(Color protocolor) {
float alpha = protocolor.hasAlpha()
? protocolor.getAlpha().getValue()
: 1.0;
return new java.awt.Color(
protocolor.getRed(),
protocolor.getGreen(),
protocolor.getBlue(),
alpha);
}
public static Color toProto(java.awt.Color color) {
float red = (float) color.getRed();
float green = (float) color.getGreen();
float blue = (float) color.getBlue();
float denominator = 255.0;
Color.Builder resultBuilder =
Color
.newBuilder()
.setRed(red / denominator)
.setGreen(green / denominator)
.setBlue(blue / denominator);
int alpha = color.getAlpha();
if (alpha != 255) {
result.setAlpha(
FloatValue
.newBuilder()
.setValue(((float) alpha) / denominator)
.build());
}
return resultBuilder.build();
}
// ...
Example (iOS / Obj-C):
// ...
static UIColor* fromProto(Color* protocolor) {
float red = [protocolor red];
float green = [protocolor green];
float blue = [protocolor blue];
FloatValue* alpha_wrapper = [protocolor alpha];
float alpha = 1.0;
if (alpha_wrapper != nil) {
alpha = [alpha_wrapper value];
}
return [UIColor colorWithRed:red green:green blue:blue alpha:alpha];
}
static Color* toProto(UIColor* color) {
CGFloat red, green, blue, alpha;
if (![color getRed:&red green:&green blue:&blue alpha:&alpha]) {
return nil;
}
Color* result = [[Color alloc] init];
[result setRed:red];
[result setGreen:green];
[result setBlue:blue];
if (alpha <= 0.9999) {
[result setAlpha:floatWrapperWithValue(alpha)];
}
[result autorelease];
return result;
}
// ...
Example (JavaScript):
// ...
var protoToCssColor = function(rgb_color) {
var redFrac = rgb_color.red || 0.0;
var greenFrac = rgb_color.green || 0.0;
var blueFrac = rgb_color.blue || 0.0;
var red = Math.floor(redFrac * 255);
var green = Math.floor(greenFrac * 255);
var blue = Math.floor(blueFrac * 255);
if (!('alpha' in rgb_color)) {
return rgbToCssColor_(red, green, blue);
}
var alphaFrac = rgb_color.alpha.value || 0.0;
var rgbParams = [red, green, blue].join(',');
return ['rgba(', rgbParams, ',', alphaFrac, ')'].join('');
};
var rgbToCssColor_ = function(red, green, blue) {
var rgbNumber = new Number((red << 16) | (green << 8) | blue);
var hexString = rgbNumber.toString(16);
var missingZeros = 6 - hexString.length;
var resultBuilder = ['#'];
for (var i = 0; i < missingZeros; i++) {
resultBuilder.push('0');
}
resultBuilder.push(hexString);
return resultBuilder.join('');
};
// ...
This type is not used in any activity, and only used as part of another schema.
Fields
blue: Option<f32>
The amount of blue in the color as a value in the interval [0, 1].
alpha: Option<f32>
The fraction of this color that should be applied to the pixel. That is, the final pixel color is defined by the equation:
pixel color = alpha * (this color) + (1.0 - alpha) * (background color)
This means that a value of 1.0 corresponds to a solid color, whereas a value of 0.0 corresponds to a completely transparent color. This uses a wrapper message rather than a simple float scalar so that it is possible to distinguish between a default value and the value being unset. If omitted, this color object is to be rendered as a solid color (as if the alpha value had been explicitly given with a value of 1.0).
green: Option<f32>
The amount of green in the color as a value in the interval [0, 1].
red: Option<f32>
The amount of red in the color as a value in the interval [0, 1].
Trait Implementations
impl Part for Color
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impl Default for Color
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impl Clone for Color
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fn clone(&self) -> Color
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fn clone_from(&mut self, source: &Self)
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Performs copy-assignment from source
. Read more
impl Debug for Color
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impl Serialize for Color
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fn serialize<__S>(&self, __serializer: __S) -> Result<__S::Ok, __S::Error> where
__S: Serializer,
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__S: Serializer,
impl<'de> Deserialize<'de> for Color
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fn deserialize<__D>(__deserializer: __D) -> Result<Self, __D::Error> where
__D: Deserializer<'de>,
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__D: Deserializer<'de>,
Auto Trait Implementations
impl Send for Color
impl Unpin for Color
impl Sync for Color
impl UnwindSafe for Color
impl RefUnwindSafe for Color
Blanket Implementations
impl<T> ToOwned for T where
T: Clone,
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T: Clone,
type Owned = T
The resulting type after obtaining ownership.
fn to_owned(&self) -> T
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fn clone_into(&self, target: &mut T)
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impl<T> From<T> for T
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impl<T, U> Into<U> for T where
U: From<T>,
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U: From<T>,
impl<T, U> TryFrom<U> for T where
U: Into<T>,
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U: Into<T>,
type Error = Infallible
The type returned in the event of a conversion error.
fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>
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impl<T, U> TryInto<U> for T where
U: TryFrom<T>,
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U: TryFrom<T>,
type Error = <U as TryFrom<T>>::Error
The type returned in the event of a conversion error.
fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>
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impl<T> BorrowMut<T> for T where
T: ?Sized,
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T: ?Sized,
fn borrow_mut(&mut self) -> &mut T
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impl<T> Borrow<T> for T where
T: ?Sized,
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T: ?Sized,
impl<T> Any for T where
T: 'static + ?Sized,
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T: 'static + ?Sized,
impl<T> Typeable for T where
T: Any,
T: Any,
impl<T> DeserializeOwned for T where
T: Deserialize<'de>,
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T: Deserialize<'de>,