#[non_exhaustive]pub enum RealTimeContactAnalysisOutputType {
Raw,
Redacted,
Unknown(UnknownVariantValue),
}Expand description
When writing a match expression against RealTimeContactAnalysisOutputType, it is important to ensure
your code is forward-compatible. That is, if a match arm handles a case for a
feature that is supported by the service but has not been represented as an enum
variant in a current version of SDK, your code should continue to work when you
upgrade SDK to a future version in which the enum does include a variant for that
feature.
Here is an example of how you can make a match expression forward-compatible:
# let realtimecontactanalysisoutputtype = unimplemented!();
match realtimecontactanalysisoutputtype {
RealTimeContactAnalysisOutputType::Raw => { /* ... */ },
RealTimeContactAnalysisOutputType::Redacted => { /* ... */ },
other @ _ if other.as_str() == "NewFeature" => { /* handles a case for `NewFeature` */ },
_ => { /* ... */ },
}The above code demonstrates that when realtimecontactanalysisoutputtype represents
NewFeature, the execution path will lead to the second last match arm,
even though the enum does not contain a variant RealTimeContactAnalysisOutputType::NewFeature
in the current version of SDK. The reason is that the variable other,
created by the @ operator, is bound to
RealTimeContactAnalysisOutputType::Unknown(UnknownVariantValue("NewFeature".to_owned()))
and calling as_str on it yields "NewFeature".
This match expression is forward-compatible when executed with a newer
version of SDK where the variant RealTimeContactAnalysisOutputType::NewFeature is defined.
Specifically, when realtimecontactanalysisoutputtype represents NewFeature,
the execution path will hit the second last match arm as before by virtue of
calling as_str on RealTimeContactAnalysisOutputType::NewFeature also yielding "NewFeature".
Explicitly matching on the Unknown variant should
be avoided for two reasons:
- The inner data
UnknownVariantValueis opaque, and no further information can be extracted. - It might inadvertently shadow other intended match arms.
Variants (Non-exhaustive)§
This enum is marked as non-exhaustive
Raw
Redacted
Unknown(UnknownVariantValue)
Unknown. See the docs on this enum for the correct way to handle unknown variants.Unknown contains new variants that have been added since this code was generated.
Implementations§
Source§impl RealTimeContactAnalysisOutputType
impl RealTimeContactAnalysisOutputType
Sourcepub fn try_parse(value: &str) -> Result<Self, UnknownVariantError>
pub fn try_parse(value: &str) -> Result<Self, UnknownVariantError>
Parses the enum value while disallowing unknown variants.
Unknown variants will result in an error.
Trait Implementations§
Source§impl AsRef<str> for RealTimeContactAnalysisOutputType
impl AsRef<str> for RealTimeContactAnalysisOutputType
Source§impl Clone for RealTimeContactAnalysisOutputType
impl Clone for RealTimeContactAnalysisOutputType
Source§fn clone(&self) -> RealTimeContactAnalysisOutputType
fn clone(&self) -> RealTimeContactAnalysisOutputType
1.0.0 · Source§fn clone_from(&mut self, source: &Self)
fn clone_from(&mut self, source: &Self)
source. Read moreSource§impl From<&str> for RealTimeContactAnalysisOutputType
impl From<&str> for RealTimeContactAnalysisOutputType
Source§impl Ord for RealTimeContactAnalysisOutputType
impl Ord for RealTimeContactAnalysisOutputType
Source§fn cmp(&self, other: &RealTimeContactAnalysisOutputType) -> Ordering
fn cmp(&self, other: &RealTimeContactAnalysisOutputType) -> Ordering
1.21.0 · Source§fn max(self, other: Self) -> Selfwhere
Self: Sized,
fn max(self, other: Self) -> Selfwhere
Self: Sized,
Source§impl PartialEq for RealTimeContactAnalysisOutputType
impl PartialEq for RealTimeContactAnalysisOutputType
Source§fn eq(&self, other: &RealTimeContactAnalysisOutputType) -> bool
fn eq(&self, other: &RealTimeContactAnalysisOutputType) -> bool
self and other values to be equal, and is used by ==.Source§impl PartialOrd for RealTimeContactAnalysisOutputType
impl PartialOrd for RealTimeContactAnalysisOutputType
impl Eq for RealTimeContactAnalysisOutputType
impl StructuralPartialEq for RealTimeContactAnalysisOutputType
Auto Trait Implementations§
impl Freeze for RealTimeContactAnalysisOutputType
impl RefUnwindSafe for RealTimeContactAnalysisOutputType
impl Send for RealTimeContactAnalysisOutputType
impl Sync for RealTimeContactAnalysisOutputType
impl Unpin for RealTimeContactAnalysisOutputType
impl UnwindSafe for RealTimeContactAnalysisOutputType
Blanket Implementations§
Source§impl<T> BorrowMut<T> for Twhere
T: ?Sized,
impl<T> BorrowMut<T> for Twhere
T: ?Sized,
Source§fn borrow_mut(&mut self) -> &mut T
fn borrow_mut(&mut self) -> &mut T
Source§impl<T> CloneToUninit for Twhere
T: Clone,
impl<T> CloneToUninit for Twhere
T: Clone,
Source§unsafe fn clone_to_uninit(&self, dst: *mut T)
unsafe fn clone_to_uninit(&self, dst: *mut T)
clone_to_uninit)Source§impl<Q, K> Comparable<K> for Q
impl<Q, K> Comparable<K> for Q
Source§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
Source§impl<Q, K> Equivalent<K> for Q
impl<Q, K> Equivalent<K> for Q
Source§fn equivalent(&self, key: &K) -> bool
fn equivalent(&self, key: &K) -> bool
key and return true if they are equal.Source§impl<T> Instrument for T
impl<T> Instrument for T
Source§fn instrument(self, span: Span) -> Instrumented<Self>
fn instrument(self, span: Span) -> Instrumented<Self>
Source§fn in_current_span(self) -> Instrumented<Self>
fn in_current_span(self) -> Instrumented<Self>
Source§impl<T> IntoEither for T
impl<T> IntoEither for T
Source§fn into_either(self, into_left: bool) -> Either<Self, Self>
fn into_either(self, into_left: bool) -> Either<Self, Self>
self into a Left variant of Either<Self, Self>
if into_left is true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read moreSource§fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
fn into_either_with<F>(self, into_left: F) -> Either<Self, Self>
self into a Left variant of Either<Self, Self>
if into_left(&self) returns true.
Converts self into a Right variant of Either<Self, Self>
otherwise. Read moreSource§impl<T> Paint for Twhere
T: ?Sized,
impl<T> Paint for Twhere
T: ?Sized,
Source§fn fg(&self, value: Color) -> Painted<&T>
fn fg(&self, value: Color) -> Painted<&T>
Returns a styled value derived from self with the foreground set to
value.
This method should be used rarely. Instead, prefer to use color-specific
builder methods like red() and
green(), which have the same functionality but are
pithier.
§Example
Set foreground color to white using fg():
use yansi::{Paint, Color};
painted.fg(Color::White);Set foreground color to white using white().
use yansi::Paint;
painted.white();Source§fn bright_black(&self) -> Painted<&T>
fn bright_black(&self) -> Painted<&T>
Returns self with the
fg()
set to
Color::BrightBlack.
§Example
println!("{}", value.bright_black());Source§fn bright_red(&self) -> Painted<&T>
fn bright_red(&self) -> Painted<&T>
Source§fn bright_green(&self) -> Painted<&T>
fn bright_green(&self) -> Painted<&T>
Returns self with the
fg()
set to
Color::BrightGreen.
§Example
println!("{}", value.bright_green());Source§fn bright_yellow(&self) -> Painted<&T>
fn bright_yellow(&self) -> Painted<&T>
Returns self with the
fg()
set to
Color::BrightYellow.
§Example
println!("{}", value.bright_yellow());Source§fn bright_blue(&self) -> Painted<&T>
fn bright_blue(&self) -> Painted<&T>
Source§fn bright_magenta(&self) -> Painted<&T>
fn bright_magenta(&self) -> Painted<&T>
Returns self with the
fg()
set to
Color::BrightMagenta.
§Example
println!("{}", value.bright_magenta());Source§fn bright_cyan(&self) -> Painted<&T>
fn bright_cyan(&self) -> Painted<&T>
Source§fn bright_white(&self) -> Painted<&T>
fn bright_white(&self) -> Painted<&T>
Returns self with the
fg()
set to
Color::BrightWhite.
§Example
println!("{}", value.bright_white());Source§fn bg(&self, value: Color) -> Painted<&T>
fn bg(&self, value: Color) -> Painted<&T>
Returns a styled value derived from self with the background set to
value.
This method should be used rarely. Instead, prefer to use color-specific
builder methods like on_red() and
on_green(), which have the same functionality but
are pithier.
§Example
Set background color to red using fg():
use yansi::{Paint, Color};
painted.bg(Color::Red);Set background color to red using on_red().
use yansi::Paint;
painted.on_red();Source§fn on_primary(&self) -> Painted<&T>
fn on_primary(&self) -> Painted<&T>
Source§fn on_magenta(&self) -> Painted<&T>
fn on_magenta(&self) -> Painted<&T>
Source§fn on_bright_black(&self) -> Painted<&T>
fn on_bright_black(&self) -> Painted<&T>
Returns self with the
bg()
set to
Color::BrightBlack.
§Example
println!("{}", value.on_bright_black());Source§fn on_bright_red(&self) -> Painted<&T>
fn on_bright_red(&self) -> Painted<&T>
Source§fn on_bright_green(&self) -> Painted<&T>
fn on_bright_green(&self) -> Painted<&T>
Returns self with the
bg()
set to
Color::BrightGreen.
§Example
println!("{}", value.on_bright_green());Source§fn on_bright_yellow(&self) -> Painted<&T>
fn on_bright_yellow(&self) -> Painted<&T>
Returns self with the
bg()
set to
Color::BrightYellow.
§Example
println!("{}", value.on_bright_yellow());Source§fn on_bright_blue(&self) -> Painted<&T>
fn on_bright_blue(&self) -> Painted<&T>
Returns self with the
bg()
set to
Color::BrightBlue.
§Example
println!("{}", value.on_bright_blue());Source§fn on_bright_magenta(&self) -> Painted<&T>
fn on_bright_magenta(&self) -> Painted<&T>
Returns self with the
bg()
set to
Color::BrightMagenta.
§Example
println!("{}", value.on_bright_magenta());Source§fn on_bright_cyan(&self) -> Painted<&T>
fn on_bright_cyan(&self) -> Painted<&T>
Returns self with the
bg()
set to
Color::BrightCyan.
§Example
println!("{}", value.on_bright_cyan());Source§fn on_bright_white(&self) -> Painted<&T>
fn on_bright_white(&self) -> Painted<&T>
Returns self with the
bg()
set to
Color::BrightWhite.
§Example
println!("{}", value.on_bright_white());Source§fn attr(&self, value: Attribute) -> Painted<&T>
fn attr(&self, value: Attribute) -> Painted<&T>
Enables the styling Attribute value.
This method should be used rarely. Instead, prefer to use
attribute-specific builder methods like bold() and
underline(), which have the same functionality
but are pithier.
§Example
Make text bold using attr():
use yansi::{Paint, Attribute};
painted.attr(Attribute::Bold);Make text bold using using bold().
use yansi::Paint;
painted.bold();Source§fn underline(&self) -> Painted<&T>
fn underline(&self) -> Painted<&T>
Returns self with the
attr()
set to
Attribute::Underline.
§Example
println!("{}", value.underline());Source§fn rapid_blink(&self) -> Painted<&T>
fn rapid_blink(&self) -> Painted<&T>
Returns self with the
attr()
set to
Attribute::RapidBlink.
§Example
println!("{}", value.rapid_blink());Source§fn quirk(&self, value: Quirk) -> Painted<&T>
fn quirk(&self, value: Quirk) -> Painted<&T>
Enables the yansi Quirk value.
This method should be used rarely. Instead, prefer to use quirk-specific
builder methods like mask() and
wrap(), which have the same functionality but are
pithier.
§Example
Enable wrapping using .quirk():
use yansi::{Paint, Quirk};
painted.quirk(Quirk::Wrap);Enable wrapping using wrap().
use yansi::Paint;
painted.wrap();Source§fn clear(&self) -> Painted<&T>
👎Deprecated since 1.0.1: renamed to resetting() due to conflicts with Vec::clear().
The clear() method will be removed in a future release.
fn clear(&self) -> Painted<&T>
resetting() due to conflicts with Vec::clear().
The clear() method will be removed in a future release.Source§fn whenever(&self, value: Condition) -> Painted<&T>
fn whenever(&self, value: Condition) -> Painted<&T>
Conditionally enable styling based on whether the Condition value
applies. Replaces any previous condition.
See the crate level docs for more details.
§Example
Enable styling painted only when both stdout and stderr are TTYs:
use yansi::{Paint, Condition};
painted.red().on_yellow().whenever(Condition::STDOUTERR_ARE_TTY);