mirror of
https://github.com/rust-lang/rust.git
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556 lines
20 KiB
Rust
556 lines
20 KiB
Rust
use crate::{EarlyContext, EarlyLintPass, LateContext, LateLintPass, LintContext};
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use rustc_ast as ast;
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use rustc_attr as attr;
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use rustc_errors::Applicability;
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use rustc_hir as hir;
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use rustc_hir::def::{DefKind, Res};
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use rustc_hir::intravisit::FnKind;
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use rustc_hir::{GenericParamKind, PatKind};
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use rustc_middle::ty;
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use rustc_span::symbol::sym;
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use rustc_span::{symbol::Ident, BytePos, Span};
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use rustc_target::spec::abi::Abi;
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#[derive(PartialEq)]
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pub enum MethodLateContext {
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TraitAutoImpl,
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TraitImpl,
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PlainImpl,
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}
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pub fn method_context(cx: &LateContext<'_>, id: hir::HirId) -> MethodLateContext {
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let def_id = cx.tcx.hir().local_def_id(id);
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let item = cx.tcx.associated_item(def_id);
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match item.container {
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ty::TraitContainer(..) => MethodLateContext::TraitAutoImpl,
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ty::ImplContainer(cid) => match cx.tcx.impl_trait_ref(cid) {
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Some(_) => MethodLateContext::TraitImpl,
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None => MethodLateContext::PlainImpl,
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},
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}
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}
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declare_lint! {
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/// The `non_camel_case_types` lint detects types, variants, traits and
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/// type parameters that don't have camel case names.
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///
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/// ### Example
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///
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/// ```rust
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/// struct my_struct;
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/// ```
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///
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/// {{produces}}
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///
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/// ### Explanation
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///
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/// The preferred style for these identifiers is to use "camel case", such
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/// as `MyStruct`, where the first letter should not be lowercase, and
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/// should not use underscores between letters. Underscores are allowed at
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/// the beginning and end of the identifier, as well as between
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/// non-letters (such as `X86_64`).
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pub NON_CAMEL_CASE_TYPES,
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Warn,
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"types, variants, traits and type parameters should have camel case names"
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}
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declare_lint_pass!(NonCamelCaseTypes => [NON_CAMEL_CASE_TYPES]);
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/// Some unicode characters *have* case, are considered upper case or lower case, but they *can't*
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/// be upper cased or lower cased. For the purposes of the lint suggestion, we care about being able
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/// to change the char's case.
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fn char_has_case(c: char) -> bool {
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let mut l = c.to_lowercase();
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let mut u = c.to_uppercase();
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while let Some(l) = l.next() {
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match u.next() {
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Some(u) if l != u => return true,
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_ => {}
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}
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}
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u.next().is_some()
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}
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fn is_camel_case(name: &str) -> bool {
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let name = name.trim_matches('_');
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if name.is_empty() {
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return true;
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}
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// start with a non-lowercase letter rather than non-uppercase
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// ones (some scripts don't have a concept of upper/lowercase)
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!name.chars().next().unwrap().is_lowercase()
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&& !name.contains("__")
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&& !name.chars().collect::<Vec<_>>().array_windows().any(|&[fst, snd]| {
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// contains a capitalisable character followed by, or preceded by, an underscore
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char_has_case(fst) && snd == '_' || char_has_case(snd) && fst == '_'
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})
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}
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fn to_camel_case(s: &str) -> String {
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s.trim_matches('_')
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.split('_')
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.filter(|component| !component.is_empty())
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.map(|component| {
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let mut camel_cased_component = String::new();
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let mut new_word = true;
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let mut prev_is_lower_case = true;
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for c in component.chars() {
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// Preserve the case if an uppercase letter follows a lowercase letter, so that
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// `camelCase` is converted to `CamelCase`.
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if prev_is_lower_case && c.is_uppercase() {
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new_word = true;
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}
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if new_word {
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camel_cased_component.extend(c.to_uppercase());
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} else {
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camel_cased_component.extend(c.to_lowercase());
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}
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prev_is_lower_case = c.is_lowercase();
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new_word = false;
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}
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camel_cased_component
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})
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.fold((String::new(), None), |(acc, prev): (String, Option<String>), next| {
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// separate two components with an underscore if their boundary cannot
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// be distinguished using a uppercase/lowercase case distinction
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let join = if let Some(prev) = prev {
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let l = prev.chars().last().unwrap();
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let f = next.chars().next().unwrap();
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!char_has_case(l) && !char_has_case(f)
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} else {
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false
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};
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(acc + if join { "_" } else { "" } + &next, Some(next))
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})
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.0
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}
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impl NonCamelCaseTypes {
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fn check_case(&self, cx: &EarlyContext<'_>, sort: &str, ident: &Ident) {
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let name = &ident.name.as_str();
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if !is_camel_case(name) {
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cx.struct_span_lint(NON_CAMEL_CASE_TYPES, ident.span, |lint| {
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let msg = format!("{} `{}` should have an upper camel case name", sort, name);
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let mut err = lint.build(&msg);
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let cc = to_camel_case(name);
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// We cannot provide meaningful suggestions
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// if the characters are in the category of "Lowercase Letter".
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if *name != cc {
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err.span_suggestion(
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ident.span,
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"convert the identifier to upper camel case",
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to_camel_case(name),
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Applicability::MaybeIncorrect,
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);
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} else {
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err.span_label(ident.span, "should have an UpperCamelCase name");
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}
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err.emit();
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})
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}
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}
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}
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impl EarlyLintPass for NonCamelCaseTypes {
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fn check_item(&mut self, cx: &EarlyContext<'_>, it: &ast::Item) {
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let has_repr_c = it
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.attrs
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.iter()
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.any(|attr| attr::find_repr_attrs(&cx.sess, attr).contains(&attr::ReprC));
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if has_repr_c {
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return;
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}
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match it.kind {
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ast::ItemKind::TyAlias(..)
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| ast::ItemKind::Enum(..)
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| ast::ItemKind::Struct(..)
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| ast::ItemKind::Union(..) => self.check_case(cx, "type", &it.ident),
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ast::ItemKind::Trait(..) => self.check_case(cx, "trait", &it.ident),
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_ => (),
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}
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}
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fn check_trait_item(&mut self, cx: &EarlyContext<'_>, it: &ast::AssocItem) {
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if let ast::AssocItemKind::TyAlias(..) = it.kind {
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self.check_case(cx, "associated type", &it.ident);
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}
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}
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fn check_variant(&mut self, cx: &EarlyContext<'_>, v: &ast::Variant) {
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self.check_case(cx, "variant", &v.ident);
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}
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fn check_generic_param(&mut self, cx: &EarlyContext<'_>, param: &ast::GenericParam) {
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if let ast::GenericParamKind::Type { .. } = param.kind {
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self.check_case(cx, "type parameter", ¶m.ident);
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}
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}
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}
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declare_lint! {
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/// The `non_snake_case` lint detects variables, methods, functions,
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/// lifetime parameters and modules that don't have snake case names.
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///
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/// ### Example
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///
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/// ```rust
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/// let MY_VALUE = 5;
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/// ```
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///
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/// {{produces}}
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///
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/// ### Explanation
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///
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/// The preferred style for these identifiers is to use "snake case",
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/// where all the characters are in lowercase, with words separated with a
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/// single underscore, such as `my_value`.
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pub NON_SNAKE_CASE,
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Warn,
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"variables, methods, functions, lifetime parameters and modules should have snake case names"
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}
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declare_lint_pass!(NonSnakeCase => [NON_SNAKE_CASE]);
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impl NonSnakeCase {
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fn to_snake_case(mut str: &str) -> String {
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let mut words = vec![];
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// Preserve leading underscores
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str = str.trim_start_matches(|c: char| {
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if c == '_' {
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words.push(String::new());
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true
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} else {
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false
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}
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});
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for s in str.split('_') {
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let mut last_upper = false;
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let mut buf = String::new();
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if s.is_empty() {
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continue;
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}
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for ch in s.chars() {
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if !buf.is_empty() && buf != "'" && ch.is_uppercase() && !last_upper {
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words.push(buf);
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buf = String::new();
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}
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last_upper = ch.is_uppercase();
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buf.extend(ch.to_lowercase());
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}
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words.push(buf);
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}
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words.join("_")
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}
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/// Checks if a given identifier is snake case, and reports a diagnostic if not.
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fn check_snake_case(&self, cx: &LateContext<'_>, sort: &str, ident: &Ident) {
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fn is_snake_case(ident: &str) -> bool {
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if ident.is_empty() {
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return true;
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}
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let ident = ident.trim_start_matches('\'');
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let ident = ident.trim_matches('_');
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let mut allow_underscore = true;
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ident.chars().all(|c| {
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allow_underscore = match c {
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'_' if !allow_underscore => return false,
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'_' => false,
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// It would be more obvious to use `c.is_lowercase()`,
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// but some characters do not have a lowercase form
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c if !c.is_uppercase() => true,
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_ => return false,
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};
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true
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})
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}
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let name = &ident.name.as_str();
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if !is_snake_case(name) {
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cx.struct_span_lint(NON_SNAKE_CASE, ident.span, |lint| {
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let sc = NonSnakeCase::to_snake_case(name);
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let msg = format!("{} `{}` should have a snake case name", sort, name);
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let mut err = lint.build(&msg);
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// We cannot provide meaningful suggestions
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// if the characters are in the category of "Uppercase Letter".
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if *name != sc {
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// We have a valid span in almost all cases, but we don't have one when linting a crate
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// name provided via the command line.
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if !ident.span.is_dummy() {
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let sc_ident = Ident::from_str_and_span(&sc, ident.span);
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let (message, suggestion) = if sc_ident.is_reserved() {
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// We shouldn't suggest a reserved identifier to fix non-snake-case identifiers.
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// Instead, recommend renaming the identifier entirely or, if permitted,
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// escaping it to create a raw identifier.
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if sc_ident.name.can_be_raw() {
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("rename the identifier or convert it to a snake case raw identifier", sc_ident.to_string())
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} else {
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err.note(&format!("`{}` cannot be used as a raw identifier", sc));
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("rename the identifier", String::new())
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}
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} else {
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("convert the identifier to snake case", sc)
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};
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err.span_suggestion(
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ident.span,
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message,
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suggestion,
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Applicability::MaybeIncorrect,
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);
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} else {
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err.help(&format!("convert the identifier to snake case: `{}`", sc));
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}
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} else {
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err.span_label(ident.span, "should have a snake_case name");
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}
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err.emit();
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});
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}
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}
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}
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impl<'tcx> LateLintPass<'tcx> for NonSnakeCase {
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fn check_mod(
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&mut self,
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cx: &LateContext<'_>,
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_: &'tcx hir::Mod<'tcx>,
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_: Span,
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id: hir::HirId,
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) {
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if id != hir::CRATE_HIR_ID {
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return;
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}
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let crate_ident = if let Some(name) = &cx.tcx.sess.opts.crate_name {
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Some(Ident::from_str(name))
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} else {
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cx.sess()
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.find_by_name(&cx.tcx.hir().attrs(hir::CRATE_HIR_ID), sym::crate_name)
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.and_then(|attr| attr.meta())
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.and_then(|meta| {
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meta.name_value_literal().and_then(|lit| {
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if let ast::LitKind::Str(name, ..) = lit.kind {
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// Discard the double quotes surrounding the literal.
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let sp = cx
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.sess()
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.source_map()
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.span_to_snippet(lit.span)
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.ok()
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.and_then(|snippet| {
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let left = snippet.find('"')?;
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let right =
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snippet.rfind('"').map(|pos| snippet.len() - pos)?;
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Some(
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lit.span
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.with_lo(lit.span.lo() + BytePos(left as u32 + 1))
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.with_hi(lit.span.hi() - BytePos(right as u32)),
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)
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})
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.unwrap_or(lit.span);
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Some(Ident::new(name, sp))
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} else {
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None
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}
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})
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})
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};
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if let Some(ident) = &crate_ident {
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self.check_snake_case(cx, "crate", ident);
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}
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}
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fn check_generic_param(&mut self, cx: &LateContext<'_>, param: &hir::GenericParam<'_>) {
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if let GenericParamKind::Lifetime { .. } = param.kind {
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self.check_snake_case(cx, "lifetime", ¶m.name.ident());
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}
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}
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fn check_fn(
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&mut self,
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cx: &LateContext<'_>,
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fk: FnKind<'_>,
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_: &hir::FnDecl<'_>,
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_: &hir::Body<'_>,
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_: Span,
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id: hir::HirId,
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) {
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match &fk {
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FnKind::Method(ident, ..) => match method_context(cx, id) {
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MethodLateContext::PlainImpl => {
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self.check_snake_case(cx, "method", ident);
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}
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MethodLateContext::TraitAutoImpl => {
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self.check_snake_case(cx, "trait method", ident);
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}
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_ => (),
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},
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FnKind::ItemFn(ident, _, header, _) => {
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let attrs = cx.tcx.hir().attrs(id);
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// Skip foreign-ABI #[no_mangle] functions (Issue #31924)
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if header.abi != Abi::Rust && cx.sess().contains_name(attrs, sym::no_mangle) {
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return;
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}
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self.check_snake_case(cx, "function", ident);
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}
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FnKind::Closure => (),
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}
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}
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fn check_item(&mut self, cx: &LateContext<'_>, it: &hir::Item<'_>) {
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if let hir::ItemKind::Mod(_) = it.kind {
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self.check_snake_case(cx, "module", &it.ident);
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}
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}
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fn check_trait_item(&mut self, cx: &LateContext<'_>, item: &hir::TraitItem<'_>) {
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if let hir::TraitItemKind::Fn(_, hir::TraitFn::Required(pnames)) = item.kind {
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self.check_snake_case(cx, "trait method", &item.ident);
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for param_name in pnames {
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self.check_snake_case(cx, "variable", param_name);
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}
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}
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}
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fn check_pat(&mut self, cx: &LateContext<'_>, p: &hir::Pat<'_>) {
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if let PatKind::Binding(_, hid, ident, _) = p.kind {
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if let hir::Node::Pat(parent_pat) = cx.tcx.hir().get(cx.tcx.hir().get_parent_node(hid))
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{
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if let PatKind::Struct(_, field_pats, _) = &parent_pat.kind {
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for field in field_pats.iter() {
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if field.ident != ident {
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// Only check if a new name has been introduced, to avoid warning
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// on both the struct definition and this pattern.
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self.check_snake_case(cx, "variable", &ident);
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}
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}
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return;
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}
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}
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self.check_snake_case(cx, "variable", &ident);
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}
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}
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fn check_struct_def(&mut self, cx: &LateContext<'_>, s: &hir::VariantData<'_>) {
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for sf in s.fields() {
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self.check_snake_case(cx, "structure field", &sf.ident);
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}
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}
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}
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declare_lint! {
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/// The `non_upper_case_globals` lint detects static items that don't have
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/// uppercase identifiers.
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///
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/// ### Example
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///
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/// ```rust
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/// static max_points: i32 = 5;
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/// ```
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///
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/// {{produces}}
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///
|
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/// ### Explanation
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///
|
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/// The preferred style is for static item names to use all uppercase
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/// letters such as `MAX_POINTS`.
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pub NON_UPPER_CASE_GLOBALS,
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Warn,
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"static constants should have uppercase identifiers"
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}
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|
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declare_lint_pass!(NonUpperCaseGlobals => [NON_UPPER_CASE_GLOBALS]);
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impl NonUpperCaseGlobals {
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fn check_upper_case(cx: &LateContext<'_>, sort: &str, ident: &Ident) {
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let name = &ident.name.as_str();
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if name.chars().any(|c| c.is_lowercase()) {
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cx.struct_span_lint(NON_UPPER_CASE_GLOBALS, ident.span, |lint| {
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let uc = NonSnakeCase::to_snake_case(&name).to_uppercase();
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let mut err =
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lint.build(&format!("{} `{}` should have an upper case name", sort, name));
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// We cannot provide meaningful suggestions
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// if the characters are in the category of "Lowercase Letter".
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if *name != uc {
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err.span_suggestion(
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ident.span,
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"convert the identifier to upper case",
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uc,
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Applicability::MaybeIncorrect,
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);
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} else {
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err.span_label(ident.span, "should have an UPPER_CASE name");
|
|
}
|
|
|
|
err.emit();
|
|
})
|
|
}
|
|
}
|
|
}
|
|
|
|
impl<'tcx> LateLintPass<'tcx> for NonUpperCaseGlobals {
|
|
fn check_item(&mut self, cx: &LateContext<'_>, it: &hir::Item<'_>) {
|
|
let attrs = cx.tcx.hir().attrs(it.hir_id());
|
|
match it.kind {
|
|
hir::ItemKind::Static(..) if !cx.sess().contains_name(attrs, sym::no_mangle) => {
|
|
NonUpperCaseGlobals::check_upper_case(cx, "static variable", &it.ident);
|
|
}
|
|
hir::ItemKind::Const(..) => {
|
|
NonUpperCaseGlobals::check_upper_case(cx, "constant", &it.ident);
|
|
}
|
|
_ => {}
|
|
}
|
|
}
|
|
|
|
fn check_trait_item(&mut self, cx: &LateContext<'_>, ti: &hir::TraitItem<'_>) {
|
|
if let hir::TraitItemKind::Const(..) = ti.kind {
|
|
NonUpperCaseGlobals::check_upper_case(cx, "associated constant", &ti.ident);
|
|
}
|
|
}
|
|
|
|
fn check_impl_item(&mut self, cx: &LateContext<'_>, ii: &hir::ImplItem<'_>) {
|
|
if let hir::ImplItemKind::Const(..) = ii.kind {
|
|
NonUpperCaseGlobals::check_upper_case(cx, "associated constant", &ii.ident);
|
|
}
|
|
}
|
|
|
|
fn check_pat(&mut self, cx: &LateContext<'_>, p: &hir::Pat<'_>) {
|
|
// Lint for constants that look like binding identifiers (#7526)
|
|
if let PatKind::Path(hir::QPath::Resolved(None, ref path)) = p.kind {
|
|
if let Res::Def(DefKind::Const, _) = path.res {
|
|
if path.segments.len() == 1 {
|
|
NonUpperCaseGlobals::check_upper_case(
|
|
cx,
|
|
"constant in pattern",
|
|
&path.segments[0].ident,
|
|
);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
fn check_generic_param(&mut self, cx: &LateContext<'_>, param: &hir::GenericParam<'_>) {
|
|
if let GenericParamKind::Const { .. } = param.kind {
|
|
NonUpperCaseGlobals::check_upper_case(cx, "const parameter", ¶m.name.ident());
|
|
}
|
|
}
|
|
}
|
|
|
|
#[cfg(test)]
|
|
mod tests;
|