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https://github.com/rust-lang/rust-clippy
synced 2024-11-26 14:40:32 +00:00
Update len_zero to handle comparisions with one
I have added test cases for comparisons with zero and one. While implementing handling of one, incorrect handlings of zero were also fixed. fixes rust-lang-nursery/rust-clippy/#2554
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parent
e6735dd327
commit
e7a6b3e613
3 changed files with 158 additions and 58 deletions
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@ -1,7 +1,7 @@
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use rustc::lint::*;
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use rustc::hir::def_id::DefId;
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use rustc::ty;
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use rustc::hir::*;
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use rustc::lint::*;
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use rustc::ty;
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use std::collections::HashSet;
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use syntax::ast::{Lit, LitKind, Name};
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use syntax::codemap::{Span, Spanned};
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@ -81,8 +81,24 @@ impl<'a, 'tcx> LateLintPass<'a, 'tcx> for LenZero {
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if let ExprBinary(Spanned { node: cmp, .. }, ref left, ref right) = expr.node {
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match cmp {
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BiEq => check_cmp(cx, expr.span, left, right, ""),
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BiGt | BiNe => check_cmp(cx, expr.span, left, right, "!"),
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BiEq => {
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check_cmp(cx, expr.span, left, right, "", 0); // len == 0
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check_cmp(cx, expr.span, right, left, "", 0); // 0 == len
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},
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BiNe => {
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check_cmp(cx, expr.span, left, right, "!", 0); // len != 0
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check_cmp(cx, expr.span, right, left, "!", 0); // 0 != len
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},
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BiGt => {
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check_cmp(cx, expr.span, left, right, "!", 0); // len > 0
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check_cmp(cx, expr.span, right, left, "", 1); // 1 > len
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},
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BiLt => {
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check_cmp(cx, expr.span, left, right, "", 1); // len < 1
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check_cmp(cx, expr.span, right, left, "!", 0); // 0 < len
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},
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BiGe => check_cmp(cx, expr.span, left, right, "!", 1), // len <= 1
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BiLe => check_cmp(cx, expr.span, right, left, "!", 1), // 1 >= len
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_ => (),
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}
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}
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@ -168,40 +184,45 @@ fn check_impl_items(cx: &LateContext, item: &Item, impl_items: &[ImplItemRef]) {
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cx,
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LEN_WITHOUT_IS_EMPTY,
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item.span,
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&format!("item `{}` has a public `len` method but {} `is_empty` method", ty, is_empty),
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&format!(
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"item `{}` has a public `len` method but {} `is_empty` method",
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ty, is_empty
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),
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);
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}
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}
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}
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fn check_cmp(cx: &LateContext, span: Span, left: &Expr, right: &Expr, op: &str) {
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// check if we are in an is_empty() method
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if let Some(name) = get_item_name(cx, left) {
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if name == "is_empty" {
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return;
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fn check_cmp(cx: &LateContext, span: Span, method: &Expr, lit: &Expr, op: &str, compare_to: u32) {
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if let (&ExprMethodCall(ref method_path, _, ref args), &ExprLit(ref lit)) = (&method.node, &lit.node) {
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// check if we are in an is_empty() method
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if let Some(name) = get_item_name(cx, method) {
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if name == "is_empty" {
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return;
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}
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}
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}
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match (&left.node, &right.node) {
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(&ExprLit(ref lit), &ExprMethodCall(ref method_path, _, ref args)) |
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(&ExprMethodCall(ref method_path, _, ref args), &ExprLit(ref lit)) => {
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check_len_zero(cx, span, method_path.name, args, lit, op)
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},
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_ => (),
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check_len(cx, span, method_path.name, args, lit, op, compare_to)
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}
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}
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fn check_len_zero(cx: &LateContext, span: Span, name: Name, args: &[Expr], lit: &Lit, op: &str) {
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fn check_len(cx: &LateContext, span: Span, method_name: Name, args: &[Expr], lit: &Lit, op: &str, compare_to: u32) {
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if let Spanned {
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node: LitKind::Int(0, _),
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node: LitKind::Int(lit, _),
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..
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} = *lit
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{
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if name == "len" && args.len() == 1 && has_is_empty(cx, &args[0]) {
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// check if length is compared to the specified number
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if lit != u128::from(compare_to) {
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return;
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}
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if method_name == "len" && args.len() == 1 && has_is_empty(cx, &args[0]) {
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span_lint_and_sugg(
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cx,
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LEN_ZERO,
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span,
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"length comparison to zero",
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&format!("length comparison to {}", if compare_to == 0 { "zero" } else { "one" }),
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"using `is_empty` is more concise",
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format!("{}{}.is_empty()", op, snippet(cx, args[0].span, "_")),
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);
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@ -1,6 +1,3 @@
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#![warn(len_without_is_empty, len_zero)]
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#![allow(dead_code, unused)]
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@ -12,7 +9,8 @@ impl PubOne {
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}
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}
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impl PubOne { // A second impl for this struct - the error span shouldn't mention this
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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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@ -39,7 +37,8 @@ impl PubAllowed {
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struct NotPubOne;
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impl NotPubOne {
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pub fn len(self: &Self) -> isize { // no error, len is pub but `NotPubOne` is not exported anyway
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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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@ -47,7 +46,8 @@ impl NotPubOne {
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struct One;
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impl One {
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fn len(self: &Self) -> isize { // no error, len is private, see #1085
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fn len(self: &Self) -> isize {
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// no error, len is private, see #1085
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1
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}
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}
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@ -120,7 +120,7 @@ impl HasWrongIsEmpty {
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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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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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@ -129,28 +129,28 @@ pub trait Empty {
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fn is_empty(&self) -> bool;
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}
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pub trait InheritingEmpty: Empty { //must not trigger LEN_WITHOUT_IS_EMPTY
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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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fn main() {
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let x = [1, 2];
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if x.len() == 0 {
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println!("This should not happen!");
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}
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if "".len() == 0 {
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}
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if "".len() == 0 {}
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let y = One;
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if y.len() == 0 { //no error because One does not have .is_empty()
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if y.len() == 0 {
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//no error because 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 { //no error, because TraitsToo has no .is_empty() method
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let z: &TraitsToo = &y;
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if z.len() > 0 {
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//no error, because TraitsToo has no .is_empty() method
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println!("Nor should this!");
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}
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@ -164,6 +164,43 @@ fn main() {
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if has_is_empty.len() > 0 {
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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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println!("Or this!");
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}
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if has_is_empty.len() >= 1 {
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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 0 == has_is_empty.len() {
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println!("Or this!");
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}
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if 0 != has_is_empty.len() {
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println!("Or this!");
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}
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if 0 < has_is_empty.len() {
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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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println!("Or this!");
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}
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if 1 > has_is_empty.len() {
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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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@ -173,14 +210,14 @@ fn main() {
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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 { //no error as HasWrongIsEmpty does not have .is_empty()
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if has_wrong_is_empty.len() == 0 {
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//no error as 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.len() != 0 {
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}
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if b.len() != 0 {}
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}
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// this used to ICE
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@ -1,11 +1,11 @@
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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:9:1
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--> $DIR/len_zero.rs:6:1
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9 | / impl PubOne {
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10 | | pub fn len(self: &Self) -> isize {
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11 | | 1
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12 | | }
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13 | | }
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6 | / impl PubOne {
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7 | | pub fn len(self: &Self) -> isize {
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8 | | 1
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9 | | }
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10 | | }
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| |_^
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= note: `-D len-without-is-empty` implied by `-D warnings`
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@ -43,17 +43,17 @@ error: item `HasWrongIsEmpty` has a public `len` method but no corresponding `is
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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:139:8
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140 | if x.len() == 0 {
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139 | if x.len() == 0 {
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| ^^^^^^^^^^^^ help: using `is_empty` is more concise: `x.is_empty()`
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= note: `-D len-zero` implied by `-D warnings`
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error: length comparison to zero
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--> $DIR/len_zero.rs:144:8
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--> $DIR/len_zero.rs:143:8
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144 | if "".len() == 0 {
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143 | if "".len() == 0 {}
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| ^^^^^^^^^^^^^ help: using `is_empty` is more concise: `"".is_empty()`
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error: length comparison to zero
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@ -74,25 +74,67 @@ error: length comparison to zero
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164 | if has_is_empty.len() > 0 {
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| ^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is more concise: `!has_is_empty.is_empty()`
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error: length comparison to zero
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error: length comparison to one
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--> $DIR/len_zero.rs:167:8
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167 | if has_is_empty.len() < 1 {
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| ^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is more concise: `has_is_empty.is_empty()`
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error: length comparison to one
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--> $DIR/len_zero.rs:170:8
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170 | if with_is_empty.len() == 0 {
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170 | if has_is_empty.len() >= 1 {
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| ^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is more concise: `!has_is_empty.is_empty()`
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error: length comparison to zero
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--> $DIR/len_zero.rs:181:8
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181 | if 0 == has_is_empty.len() {
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| ^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is more concise: `has_is_empty.is_empty()`
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error: length comparison to zero
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--> $DIR/len_zero.rs:184:8
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184 | if 0 != has_is_empty.len() {
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| ^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is more concise: `!has_is_empty.is_empty()`
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error: length comparison to zero
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--> $DIR/len_zero.rs:187:8
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187 | if 0 < has_is_empty.len() {
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| ^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is more concise: `!has_is_empty.is_empty()`
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error: length comparison to one
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--> $DIR/len_zero.rs:190:8
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190 | if 1 <= has_is_empty.len() {
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| ^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is more concise: `!has_is_empty.is_empty()`
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error: length comparison to one
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--> $DIR/len_zero.rs:193:8
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193 | if 1 > has_is_empty.len() {
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| ^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is more concise: `has_is_empty.is_empty()`
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error: length comparison to zero
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--> $DIR/len_zero.rs:207:8
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207 | if with_is_empty.len() == 0 {
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| ^^^^^^^^^^^^^^^^^^^^^^^^ help: using `is_empty` is more concise: `with_is_empty.is_empty()`
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error: length comparison to zero
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--> $DIR/len_zero.rs:182:8
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--> $DIR/len_zero.rs:220:8
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182 | if b.len() != 0 {
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220 | if b.len() != 0 {}
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| ^^^^^^^^^^^^ help: using `is_empty` is more concise: `!b.is_empty()`
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error: trait `DependsOnFoo` has a `len` method but no (possibly inherited) `is_empty` method
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--> $DIR/len_zero.rs:189:1
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--> $DIR/len_zero.rs:226:1
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189 | / pub trait DependsOnFoo: Foo {
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190 | | fn len(&mut self) -> usize;
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191 | | }
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226 | / pub trait DependsOnFoo: Foo {
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227 | | fn len(&mut self) -> usize;
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228 | | }
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| |_^
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error: aborting due to 12 previous errors
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error: aborting due to 19 previous errors
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