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authorbors <bors@rust-lang.org>2020-08-25 05:24:30 +0000
committerbors <bors@rust-lang.org>2020-08-25 05:24:30 +0000
commitc30341ddec0b99bb3bd8bb5fd8c8451778c78330 (patch)
treea7482a95b884e75d2a2bd66e4d2c40223a552e05 /library/core/src/ops/range.rs
parentee541284bf5008bb0425fae02412352025099707 (diff)
parentd6185f931435a161525f41d270207e33faa26ea2 (diff)
Auto merge of #75132 - scottmcm:stabilize-range-is-empty, r=dtolnay
Stabilize Range[Inclusive]::is_empty

I would like to propose these two simple methods for stabilization:
- Knowing that a range is exhausted isn't otherwise trivial
- Clippy would like to suggest them, but had to do extra work to disable that path <https://github.com/rust-lang/rust-clippy/issues/3807> because they're unstable
- These work on `PartialOrd`, consistently with the stable `contains` method, and are thus more general than iterator-based approaches that need `Step`
- They've been unchanged for some time, and have picked up uses in the compiler
- Stabilizing them doesn't block any future iterator-based `is_empty` plans, as these inherent ones are preferred in name resolution

https://doc.rust-lang.org/nightly/std/ops/struct.Range.html#method.is_empty
https://doc.rust-lang.org/nightly/std/ops/struct.RangeInclusive.html#method.is_empty

Closes #48111
Diffstat (limited to 'library/core/src/ops/range.rs')
-rw-r--r--library/core/src/ops/range.rs14
1 files changed, 2 insertions, 12 deletions
diff --git a/library/core/src/ops/range.rs b/library/core/src/ops/range.rs
index ccabd66aaf6..d10829832dd 100644
--- a/library/core/src/ops/range.rs
+++ b/library/core/src/ops/range.rs
@@ -125,8 +125,6 @@ impl<Idx: PartialOrd<Idx>> Range<Idx> {
     /// # Examples
     ///
     /// ```
-    /// #![feature(range_is_empty)]
-    ///
     /// assert!(!(3..5).is_empty());
     /// assert!( (3..3).is_empty());
     /// assert!( (3..2).is_empty());
@@ -135,13 +133,11 @@ impl<Idx: PartialOrd<Idx>> Range<Idx> {
     /// The range is empty if either side is incomparable:
     ///
     /// ```
-    /// #![feature(range_is_empty)]
-    ///
     /// assert!(!(3.0..5.0).is_empty());
     /// assert!( (3.0..f32::NAN).is_empty());
     /// assert!( (f32::NAN..5.0).is_empty());
     /// ```
-    #[unstable(feature = "range_is_empty", reason = "recently added", issue = "48111")]
+    #[stable(feature = "range_is_empty", since = "1.47.0")]
     pub fn is_empty(&self) -> bool {
         !(self.start < self.end)
     }
@@ -481,8 +477,6 @@ impl<Idx: PartialOrd<Idx>> RangeInclusive<Idx> {
     /// # Examples
     ///
     /// ```
-    /// #![feature(range_is_empty)]
-    ///
     /// assert!(!(3..=5).is_empty());
     /// assert!(!(3..=3).is_empty());
     /// assert!( (3..=2).is_empty());
@@ -491,8 +485,6 @@ impl<Idx: PartialOrd<Idx>> RangeInclusive<Idx> {
     /// The range is empty if either side is incomparable:
     ///
     /// ```
-    /// #![feature(range_is_empty)]
-    ///
     /// assert!(!(3.0..=5.0).is_empty());
     /// assert!( (3.0..=f32::NAN).is_empty());
     /// assert!( (f32::NAN..=5.0).is_empty());
@@ -501,14 +493,12 @@ impl<Idx: PartialOrd<Idx>> RangeInclusive<Idx> {
     /// This method returns `true` after iteration has finished:
     ///
     /// ```
-    /// #![feature(range_is_empty)]
-    ///
     /// let mut r = 3..=5;
     /// for _ in r.by_ref() {}
     /// // Precise field values are unspecified here
     /// assert!(r.is_empty());
     /// ```
-    #[unstable(feature = "range_is_empty", reason = "recently added", issue = "48111")]
+    #[stable(feature = "range_is_empty", since = "1.47.0")]
     #[inline]
     pub fn is_empty(&self) -> bool {
         self.exhausted || !(self.start <= self.end)