170 lines
6.9 KiB
Rust
170 lines
6.9 KiB
Rust
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use super::SAME_ITEM_PUSH;
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use crate::utils::{implements_trait, is_type_diagnostic_item, snippet_with_macro_callsite, span_lint_and_help};
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use if_chain::if_chain;
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use rustc_hir::def::{DefKind, Res};
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use rustc_hir::intravisit::{walk_expr, NestedVisitorMap, Visitor};
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use rustc_hir::{BindingAnnotation, Block, Expr, ExprKind, Node, Pat, PatKind, Stmt, StmtKind};
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use rustc_lint::LateContext;
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use rustc_middle::hir::map::Map;
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use rustc_span::symbol::sym;
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use std::iter::Iterator;
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/// Detects for loop pushing the same item into a Vec
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pub(super) fn check<'tcx>(
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cx: &LateContext<'tcx>,
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pat: &'tcx Pat<'_>,
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_: &'tcx Expr<'_>,
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body: &'tcx Expr<'_>,
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_: &'tcx Expr<'_>,
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) {
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fn emit_lint(cx: &LateContext<'_>, vec: &Expr<'_>, pushed_item: &Expr<'_>) {
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let vec_str = snippet_with_macro_callsite(cx, vec.span, "");
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let item_str = snippet_with_macro_callsite(cx, pushed_item.span, "");
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span_lint_and_help(
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cx,
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SAME_ITEM_PUSH,
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vec.span,
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"it looks like the same item is being pushed into this Vec",
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None,
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&format!(
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"try using vec![{};SIZE] or {}.resize(NEW_SIZE, {})",
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item_str, vec_str, item_str
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),
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)
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}
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if !matches!(pat.kind, PatKind::Wild) {
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return;
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}
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// Determine whether it is safe to lint the body
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let mut same_item_push_visitor = SameItemPushVisitor {
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should_lint: true,
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vec_push: None,
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cx,
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};
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walk_expr(&mut same_item_push_visitor, body);
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if same_item_push_visitor.should_lint {
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if let Some((vec, pushed_item)) = same_item_push_visitor.vec_push {
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let vec_ty = cx.typeck_results().expr_ty(vec);
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let ty = vec_ty.walk().nth(1).unwrap().expect_ty();
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if cx
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.tcx
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.lang_items()
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.clone_trait()
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.map_or(false, |id| implements_trait(cx, ty, id, &[]))
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{
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// Make sure that the push does not involve possibly mutating values
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match pushed_item.kind {
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ExprKind::Path(ref qpath) => {
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match cx.qpath_res(qpath, pushed_item.hir_id) {
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// immutable bindings that are initialized with literal or constant
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Res::Local(hir_id) => {
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if_chain! {
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let node = cx.tcx.hir().get(hir_id);
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if let Node::Binding(pat) = node;
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if let PatKind::Binding(bind_ann, ..) = pat.kind;
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if !matches!(bind_ann, BindingAnnotation::RefMut | BindingAnnotation::Mutable);
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let parent_node = cx.tcx.hir().get_parent_node(hir_id);
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if let Some(Node::Local(parent_let_expr)) = cx.tcx.hir().find(parent_node);
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if let Some(init) = parent_let_expr.init;
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then {
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match init.kind {
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// immutable bindings that are initialized with literal
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ExprKind::Lit(..) => emit_lint(cx, vec, pushed_item),
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// immutable bindings that are initialized with constant
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ExprKind::Path(ref path) => {
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if let Res::Def(DefKind::Const, ..) = cx.qpath_res(path, init.hir_id) {
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emit_lint(cx, vec, pushed_item);
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}
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}
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_ => {},
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}
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}
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}
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},
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// constant
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Res::Def(DefKind::Const, ..) => emit_lint(cx, vec, pushed_item),
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_ => {},
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}
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},
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ExprKind::Lit(..) => emit_lint(cx, vec, pushed_item),
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_ => {},
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}
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}
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}
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}
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}
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// Scans the body of the for loop and determines whether lint should be given
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struct SameItemPushVisitor<'a, 'tcx> {
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should_lint: bool,
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// this field holds the last vec push operation visited, which should be the only push seen
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vec_push: Option<(&'tcx Expr<'tcx>, &'tcx Expr<'tcx>)>,
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cx: &'a LateContext<'tcx>,
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}
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impl<'a, 'tcx> Visitor<'tcx> for SameItemPushVisitor<'a, 'tcx> {
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type Map = Map<'tcx>;
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fn visit_expr(&mut self, expr: &'tcx Expr<'_>) {
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match &expr.kind {
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// Non-determinism may occur ... don't give a lint
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ExprKind::Loop(..) | ExprKind::Match(..) => self.should_lint = false,
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ExprKind::Block(block, _) => self.visit_block(block),
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_ => {},
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}
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}
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fn visit_block(&mut self, b: &'tcx Block<'_>) {
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for stmt in b.stmts.iter() {
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self.visit_stmt(stmt);
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}
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}
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fn visit_stmt(&mut self, s: &'tcx Stmt<'_>) {
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let vec_push_option = get_vec_push(self.cx, s);
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if vec_push_option.is_none() {
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// Current statement is not a push so visit inside
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match &s.kind {
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StmtKind::Expr(expr) | StmtKind::Semi(expr) => self.visit_expr(&expr),
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_ => {},
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}
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} else {
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// Current statement is a push ...check whether another
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// push had been previously done
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if self.vec_push.is_none() {
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self.vec_push = vec_push_option;
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} else {
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// There are multiple pushes ... don't lint
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self.should_lint = false;
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}
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}
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}
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fn nested_visit_map(&mut self) -> NestedVisitorMap<Self::Map> {
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NestedVisitorMap::None
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}
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}
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// Given some statement, determine if that statement is a push on a Vec. If it is, return
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// the Vec being pushed into and the item being pushed
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fn get_vec_push<'tcx>(cx: &LateContext<'tcx>, stmt: &'tcx Stmt<'_>) -> Option<(&'tcx Expr<'tcx>, &'tcx Expr<'tcx>)> {
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if_chain! {
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// Extract method being called
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if let StmtKind::Semi(semi_stmt) = &stmt.kind;
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if let ExprKind::MethodCall(path, _, args, _) = &semi_stmt.kind;
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// Figure out the parameters for the method call
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if let Some(self_expr) = args.get(0);
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if let Some(pushed_item) = args.get(1);
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// Check that the method being called is push() on a Vec
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if is_type_diagnostic_item(cx, cx.typeck_results().expr_ty(self_expr), sym::vec_type);
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if path.ident.name.as_str() == "push";
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then {
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return Some((self_expr, pushed_item))
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}
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}
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None
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}
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