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https://github.com/rust-lang/rust.git
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Add run-rustfix for len_zero lint
* Extracts len_without_is_empty into separate file * Adds `// run-rustfix` to `tests/ui/len_zero.rs`
This commit is contained in:
parent
d516925ec8
commit
bae7d29dbe
145
tests/ui/len_without_is_empty.rs
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145
tests/ui/len_without_is_empty.rs
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@ -0,0 +1,145 @@
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#![warn(clippy::len_without_is_empty)]
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#![allow(dead_code, unused)]
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pub struct PubOne;
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impl PubOne {
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pub fn len(self: &Self) -> isize {
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1
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}
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}
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impl PubOne {
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// A second impl for this struct -- the error span shouldn't mention this.
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pub fn irrelevant(self: &Self) -> bool {
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false
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}
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}
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// Identical to `PubOne`, but with an `allow` attribute on the impl complaining `len`.
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pub struct PubAllowed;
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#[allow(clippy::len_without_is_empty)]
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impl PubAllowed {
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pub fn len(self: &Self) -> isize {
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1
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}
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}
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// No `allow` attribute on this impl block, but that doesn't matter -- we only require one on the
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// impl containing `len`.
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impl PubAllowed {
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pub fn irrelevant(self: &Self) -> bool {
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false
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}
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}
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pub trait PubTraitsToo {
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fn len(self: &Self) -> isize;
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}
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impl PubTraitsToo for One {
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fn len(self: &Self) -> isize {
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0
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}
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}
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pub struct HasIsEmpty;
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impl HasIsEmpty {
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pub fn len(self: &Self) -> isize {
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1
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}
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fn is_empty(self: &Self) -> bool {
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false
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}
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}
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pub struct HasWrongIsEmpty;
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impl HasWrongIsEmpty {
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pub fn len(self: &Self) -> isize {
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1
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}
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pub fn is_empty(self: &Self, x: u32) -> bool {
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false
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}
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}
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struct NotPubOne;
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impl NotPubOne {
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pub fn len(self: &Self) -> isize {
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// No error; `len` is pub but `NotPubOne` is not exported anyway.
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1
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}
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}
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struct One;
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impl One {
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fn len(self: &Self) -> isize {
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// No error; `len` is private; see issue #1085.
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1
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}
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}
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trait TraitsToo {
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fn len(self: &Self) -> isize;
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// No error; `len` is private; see issue #1085.
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}
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impl TraitsToo for One {
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fn len(self: &Self) -> isize {
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0
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}
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}
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struct HasPrivateIsEmpty;
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impl HasPrivateIsEmpty {
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pub fn len(self: &Self) -> isize {
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1
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}
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fn is_empty(self: &Self) -> bool {
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false
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}
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}
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struct Wither;
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pub trait WithIsEmpty {
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fn len(self: &Self) -> isize;
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fn is_empty(self: &Self) -> bool;
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}
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impl WithIsEmpty for Wither {
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fn len(self: &Self) -> isize {
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1
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}
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fn is_empty(self: &Self) -> bool {
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false
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}
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}
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pub trait Empty {
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fn is_empty(&self) -> bool;
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}
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pub trait InheritingEmpty: Empty {
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// Must not trigger `LEN_WITHOUT_IS_EMPTY`.
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fn len(&self) -> isize;
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}
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// This used to ICE.
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pub trait Foo: Sized {}
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pub trait DependsOnFoo: Foo {
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fn len(&mut self) -> usize;
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}
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fn main() {}
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54
tests/ui/len_without_is_empty.stderr
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54
tests/ui/len_without_is_empty.stderr
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@ -0,0 +1,54 @@
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error: item `PubOne` has a public `len` method but no corresponding `is_empty` method
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--> $DIR/len_without_is_empty.rs:6:1
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LL | / impl PubOne {
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LL | | pub fn len(self: &Self) -> isize {
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LL | | 1
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LL | | }
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LL | | }
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| |_^
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= note: `-D clippy::len-without-is-empty` implied by `-D warnings`
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error: trait `PubTraitsToo` has a `len` method but no (possibly inherited) `is_empty` method
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--> $DIR/len_without_is_empty.rs:37:1
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LL | / pub trait PubTraitsToo {
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LL | | fn len(self: &Self) -> isize;
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LL | | }
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| |_^
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error: item `HasIsEmpty` has a public `len` method but a private `is_empty` method
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--> $DIR/len_without_is_empty.rs:49:1
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LL | / impl HasIsEmpty {
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LL | | pub fn len(self: &Self) -> isize {
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LL | | 1
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LL | | }
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... |
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LL | | }
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LL | | }
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| |_^
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error: item `HasWrongIsEmpty` has a public `len` method but no corresponding `is_empty` method
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--> $DIR/len_without_is_empty.rs:61:1
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LL | / impl HasWrongIsEmpty {
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LL | | pub fn len(self: &Self) -> isize {
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LL | | 1
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LL | | }
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... |
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LL | | }
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LL | | }
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| |_^
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error: trait `DependsOnFoo` has a `len` method but no (possibly inherited) `is_empty` method
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--> $DIR/len_without_is_empty.rs:141:1
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LL | / pub trait DependsOnFoo: Foo {
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LL | | fn len(&mut self) -> usize;
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LL | | }
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| |_^
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error: aborting due to 5 previous errors
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143
tests/ui/len_zero.fixed
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143
tests/ui/len_zero.fixed
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@ -0,0 +1,143 @@
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// run-rustfix
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#![warn(clippy::len_zero)]
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#![allow(dead_code, unused, clippy::len_without_is_empty)]
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pub struct One;
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struct Wither;
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trait TraitsToo {
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fn len(self: &Self) -> isize;
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// No error; `len` is private; see issue #1085.
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}
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impl TraitsToo for One {
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fn len(self: &Self) -> isize {
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0
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}
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}
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pub struct HasIsEmpty;
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impl HasIsEmpty {
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pub fn len(self: &Self) -> isize {
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1
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}
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fn is_empty(self: &Self) -> bool {
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false
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}
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}
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pub struct HasWrongIsEmpty;
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impl HasWrongIsEmpty {
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pub fn len(self: &Self) -> isize {
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1
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}
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pub fn is_empty(self: &Self, x: u32) -> bool {
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false
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}
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}
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pub trait WithIsEmpty {
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fn len(self: &Self) -> isize;
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fn is_empty(self: &Self) -> bool;
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}
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impl WithIsEmpty for Wither {
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fn len(self: &Self) -> isize {
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1
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}
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fn is_empty(self: &Self) -> bool {
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false
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}
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}
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fn main() {
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let x = [1, 2];
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if x.is_empty() {
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println!("This should not happen!");
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}
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if "".is_empty() {}
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let y = One;
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if y.len() == 0 {
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// No error; `One` does not have `.is_empty()`.
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println!("This should not happen either!");
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}
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let z: &TraitsToo = &y;
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if z.len() > 0 {
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// No error; `TraitsToo` has no `.is_empty()` method.
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println!("Nor should this!");
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}
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let has_is_empty = HasIsEmpty;
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if has_is_empty.is_empty() {
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println!("Or this!");
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}
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if !has_is_empty.is_empty() {
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println!("Or this!");
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}
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if !has_is_empty.is_empty() {
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println!("Or this!");
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}
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if has_is_empty.is_empty() {
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println!("Or this!");
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}
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if !has_is_empty.is_empty() {
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println!("Or this!");
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}
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if has_is_empty.len() > 1 {
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// No error.
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println!("This can happen.");
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}
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if has_is_empty.len() <= 1 {
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// No error.
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println!("This can happen.");
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}
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if has_is_empty.is_empty() {
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println!("Or this!");
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}
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if !has_is_empty.is_empty() {
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println!("Or this!");
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}
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if !has_is_empty.is_empty() {
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println!("Or this!");
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}
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if !has_is_empty.is_empty() {
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println!("Or this!");
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}
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if has_is_empty.is_empty() {
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println!("Or this!");
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}
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if 1 < has_is_empty.len() {
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// No error.
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println!("This can happen.");
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}
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if 1 >= has_is_empty.len() {
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// No error.
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println!("This can happen.");
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}
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assert!(!has_is_empty.is_empty());
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let with_is_empty: &WithIsEmpty = &Wither;
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if with_is_empty.is_empty() {
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println!("Or this!");
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}
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assert!(!with_is_empty.is_empty());
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let has_wrong_is_empty = HasWrongIsEmpty;
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if has_wrong_is_empty.len() == 0 {
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// No error; `HasWrongIsEmpty` does not have `.is_empty()`.
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println!("Or this!");
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}
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}
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fn test_slice(b: &[u8]) {
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if !b.is_empty() {}
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}
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@ -1,66 +1,10 @@
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#![warn(clippy::len_without_is_empty, clippy::len_zero)]
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#![allow(dead_code, unused)]
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// run-rustfix
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pub struct PubOne;
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#![warn(clippy::len_zero)]
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#![allow(dead_code, unused, clippy::len_without_is_empty)]
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impl PubOne {
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pub fn len(self: &Self) -> isize {
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1
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}
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}
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impl PubOne {
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// A second impl for this struct -- the error span shouldn't mention this.
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pub fn irrelevant(self: &Self) -> bool {
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false
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}
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}
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// Identical to `PubOne`, but with an `allow` attribute on the impl complaining `len`.
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pub struct PubAllowed;
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#[allow(clippy::len_without_is_empty)]
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impl PubAllowed {
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pub fn len(self: &Self) -> isize {
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1
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}
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}
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// No `allow` attribute on this impl block, but that doesn't matter -- we only require one on the
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// impl containing `len`.
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impl PubAllowed {
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pub fn irrelevant(self: &Self) -> bool {
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false
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}
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}
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struct NotPubOne;
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impl NotPubOne {
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pub fn len(self: &Self) -> isize {
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// No error; `len` is pub but `NotPubOne` is not exported anyway.
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1
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}
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}
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struct One;
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impl One {
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fn len(self: &Self) -> isize {
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// No error; `len` is private; see issue #1085.
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1
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}
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}
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pub trait PubTraitsToo {
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fn len(self: &Self) -> isize;
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}
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impl PubTraitsToo for One {
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fn len(self: &Self) -> isize {
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0
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}
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}
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pub struct One;
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struct Wither;
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trait TraitsToo {
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fn len(self: &Self) -> isize;
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@ -73,18 +17,6 @@ impl TraitsToo for One {
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}
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}
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struct HasPrivateIsEmpty;
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impl HasPrivateIsEmpty {
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pub fn len(self: &Self) -> isize {
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1
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}
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fn is_empty(self: &Self) -> bool {
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false
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}
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}
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pub struct HasIsEmpty;
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impl HasIsEmpty {
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@ -97,23 +29,6 @@ impl HasIsEmpty {
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}
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}
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struct Wither;
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pub trait WithIsEmpty {
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fn len(self: &Self) -> isize;
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fn is_empty(self: &Self) -> bool;
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}
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impl WithIsEmpty for Wither {
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fn len(self: &Self) -> isize {
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1
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}
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fn is_empty(self: &Self) -> bool {
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false
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}
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}
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pub struct HasWrongIsEmpty;
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impl HasWrongIsEmpty {
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@ -126,13 +41,19 @@ impl HasWrongIsEmpty {
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}
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}
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pub trait Empty {
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fn is_empty(&self) -> bool;
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pub trait WithIsEmpty {
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fn len(self: &Self) -> isize;
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fn is_empty(self: &Self) -> bool;
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}
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pub trait InheritingEmpty: Empty {
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// Must not trigger `LEN_WITHOUT_IS_EMPTY`.
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fn len(&self) -> isize;
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impl WithIsEmpty for Wither {
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fn len(self: &Self) -> isize {
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1
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}
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fn is_empty(self: &Self) -> bool {
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false
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}
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}
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fn main() {
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@ -220,10 +141,3 @@ fn main() {
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fn test_slice(b: &[u8]) {
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if b.len() != 0 {}
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}
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// This used to ICE.
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pub trait Foo: Sized {}
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|
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pub trait DependsOnFoo: Foo {
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fn len(&mut self) -> usize;
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}
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|
@ -1,49 +1,5 @@
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error: item `PubOne` has a public `len` method but no corresponding `is_empty` method
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--> $DIR/len_zero.rs:6:1
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|
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LL | / impl PubOne {
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LL | | pub fn len(self: &Self) -> isize {
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LL | | 1
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LL | | }
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LL | | }
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| |_^
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|
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= note: `-D clippy::len-without-is-empty` implied by `-D warnings`
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error: trait `PubTraitsToo` has a `len` method but no (possibly inherited) `is_empty` method
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--> $DIR/len_zero.rs:55:1
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|
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LL | / pub trait PubTraitsToo {
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LL | | fn len(self: &Self) -> isize;
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LL | | }
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| |_^
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error: item `HasIsEmpty` has a public `len` method but a private `is_empty` method
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--> $DIR/len_zero.rs:90:1
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|
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LL | / impl HasIsEmpty {
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LL | | pub fn len(self: &Self) -> isize {
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LL | | 1
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LL | | }
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... |
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LL | | }
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LL | | }
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| |_^
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error: item `HasWrongIsEmpty` has a public `len` method but no corresponding `is_empty` method
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--> $DIR/len_zero.rs:119:1
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|
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LL | / impl HasWrongIsEmpty {
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LL | | pub fn len(self: &Self) -> isize {
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LL | | 1
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LL | | }
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... |
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LL | | }
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LL | | }
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| |_^
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error: length comparison to zero
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--> $DIR/len_zero.rs:140:8
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--> $DIR/len_zero.rs:61:8
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|
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LL | if x.len() == 0 {
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| ^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `x.is_empty()`
|
||||
@ -51,90 +7,82 @@ LL | if x.len() == 0 {
|
||||
= note: `-D clippy::len-zero` implied by `-D warnings`
|
||||
|
||||
error: length comparison to zero
|
||||
--> $DIR/len_zero.rs:144:8
|
||||
--> $DIR/len_zero.rs:65:8
|
||||
|
|
||||
LL | if "".len() == 0 {}
|
||||
| ^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `"".is_empty()`
|
||||
|
||||
error: length comparison to zero
|
||||
--> $DIR/len_zero.rs:159:8
|
||||
--> $DIR/len_zero.rs:80:8
|
||||
|
|
||||
LL | if has_is_empty.len() == 0 {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `has_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to zero
|
||||
--> $DIR/len_zero.rs:162:8
|
||||
--> $DIR/len_zero.rs:83:8
|
||||
|
|
||||
LL | if has_is_empty.len() != 0 {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `!has_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to zero
|
||||
--> $DIR/len_zero.rs:165:8
|
||||
--> $DIR/len_zero.rs:86:8
|
||||
|
|
||||
LL | if has_is_empty.len() > 0 {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `!has_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to one
|
||||
--> $DIR/len_zero.rs:168:8
|
||||
--> $DIR/len_zero.rs:89:8
|
||||
|
|
||||
LL | if has_is_empty.len() < 1 {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `has_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to one
|
||||
--> $DIR/len_zero.rs:171:8
|
||||
--> $DIR/len_zero.rs:92:8
|
||||
|
|
||||
LL | if has_is_empty.len() >= 1 {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `!has_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to zero
|
||||
--> $DIR/len_zero.rs:182:8
|
||||
--> $DIR/len_zero.rs:103:8
|
||||
|
|
||||
LL | if 0 == has_is_empty.len() {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `has_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to zero
|
||||
--> $DIR/len_zero.rs:185:8
|
||||
--> $DIR/len_zero.rs:106:8
|
||||
|
|
||||
LL | if 0 != has_is_empty.len() {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `!has_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to zero
|
||||
--> $DIR/len_zero.rs:188:8
|
||||
--> $DIR/len_zero.rs:109:8
|
||||
|
|
||||
LL | if 0 < has_is_empty.len() {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `!has_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to one
|
||||
--> $DIR/len_zero.rs:191:8
|
||||
--> $DIR/len_zero.rs:112:8
|
||||
|
|
||||
LL | if 1 <= has_is_empty.len() {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `!has_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to one
|
||||
--> $DIR/len_zero.rs:194:8
|
||||
--> $DIR/len_zero.rs:115:8
|
||||
|
|
||||
LL | if 1 > has_is_empty.len() {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `has_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to zero
|
||||
--> $DIR/len_zero.rs:208:8
|
||||
--> $DIR/len_zero.rs:129:8
|
||||
|
|
||||
LL | if with_is_empty.len() == 0 {
|
||||
| ^^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `with_is_empty.is_empty()`
|
||||
|
||||
error: length comparison to zero
|
||||
--> $DIR/len_zero.rs:221:8
|
||||
--> $DIR/len_zero.rs:142:8
|
||||
|
|
||||
LL | if b.len() != 0 {}
|
||||
| ^^^^^^^^^^^^ help: using `is_empty` is clearer and more explicit: `!b.is_empty()`
|
||||
|
||||
error: trait `DependsOnFoo` has a `len` method but no (possibly inherited) `is_empty` method
|
||||
--> $DIR/len_zero.rs:227:1
|
||||
|
|
||||
LL | / pub trait DependsOnFoo: Foo {
|
||||
LL | | fn len(&mut self) -> usize;
|
||||
LL | | }
|
||||
| |_^
|
||||
|
||||
error: aborting due to 19 previous errors
|
||||
error: aborting due to 14 previous errors
|
||||
|
||||
|
Loading…
Reference in New Issue
Block a user