2016-01-30 11:03:53 -06:00
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use rustc::lint::*;
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use rustc_front::hir::*;
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2016-02-09 08:18:27 -06:00
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use std::collections::HashMap;
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use std::collections::hash_map::Entry;
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use utils::{SpanlessEq, SpanlessHash};
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2016-02-06 13:13:25 -06:00
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use utils::{get_parent_expr, in_macro, span_lint, span_note_and_lint};
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2016-01-30 11:03:53 -06:00
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/// **What it does:** This lint checks for consecutive `ifs` with the same condition. This lint is
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/// `Warn` by default.
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///
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/// **Why is this bad?** This is probably a copy & paste error.
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///
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/// **Known problems:** Hopefully none.
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///
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/// **Example:** `if a == b { .. } else if a == b { .. }`
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declare_lint! {
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pub IFS_SAME_COND,
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Warn,
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"consecutive `ifs` with the same condition"
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}
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2016-01-30 12:16:49 -06:00
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/// **What it does:** This lint checks for `if/else` with the same body as the *then* part and the
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/// *else* part. This lint is `Warn` by default.
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///
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/// **Why is this bad?** This is probably a copy & paste error.
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///
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/// **Known problems:** Hopefully none.
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///
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/// **Example:** `if .. { 42 } else { 42 }`
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declare_lint! {
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pub IF_SAME_THEN_ELSE,
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Warn,
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"if with the same *then* and *else* blocks"
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}
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2016-01-30 11:03:53 -06:00
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#[derive(Copy, Clone, Debug)]
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pub struct CopyAndPaste;
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impl LintPass for CopyAndPaste {
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fn get_lints(&self) -> LintArray {
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lint_array![
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2016-01-30 12:16:49 -06:00
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IFS_SAME_COND,
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IF_SAME_THEN_ELSE
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2016-01-30 11:03:53 -06:00
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]
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}
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}
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impl LateLintPass for CopyAndPaste {
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fn check_expr(&mut self, cx: &LateContext, expr: &Expr) {
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2016-01-30 12:16:49 -06:00
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if !in_macro(cx, expr.span) {
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2016-02-09 08:18:27 -06:00
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// skip ifs directly in else, it will be checked in the parent if
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if let Some(&Expr{node: ExprIf(_, _, Some(ref else_expr)), ..}) = get_parent_expr(cx, expr) {
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if else_expr.id == expr.id {
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return;
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}
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}
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let (conds, blocks) = if_sequence(expr);
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2016-01-30 12:16:49 -06:00
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lint_same_then_else(cx, expr);
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2016-02-09 08:18:27 -06:00
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lint_same_cond(cx, &conds);
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2016-01-30 11:03:53 -06:00
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}
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2016-01-30 12:16:49 -06:00
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}
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}
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2016-01-30 11:03:53 -06:00
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2016-01-30 12:16:49 -06:00
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/// Implementation of `IF_SAME_THEN_ELSE`.
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fn lint_same_then_else(cx: &LateContext, expr: &Expr) {
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if let ExprIf(_, ref then_block, Some(ref else_expr)) = expr.node {
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2016-02-07 07:40:45 -06:00
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if let ExprBlock(ref else_block) = else_expr.node {
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2016-02-06 13:13:25 -06:00
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if SpanlessEq::new(cx).eq_block(&then_block, &else_block) {
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2016-02-07 07:40:45 -06:00
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span_lint(cx, IF_SAME_THEN_ELSE, expr.span, "this if has the same then and else blocks");
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}
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2016-01-30 12:16:49 -06:00
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}
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}
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}
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/// Implementation of `IFS_SAME_COND`.
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2016-02-09 08:18:27 -06:00
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fn lint_same_cond(cx: &LateContext, conds: &[&Expr]) {
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if let Some((i, j)) = search_same(cx, conds) {
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span_note_and_lint(cx, IFS_SAME_COND, j.span, "this if has the same condition as a previous if", i.span, "same as this");
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2016-01-30 11:03:53 -06:00
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}
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}
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2016-02-09 08:18:27 -06:00
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/// Return the list of condition expressions and the list of blocks in a sequence of `if/else`.
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/// Eg. would return `([a, b], [c, d, e])` for the expression
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/// `if a { c } else if b { d } else { e }`.
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fn if_sequence(mut expr: &Expr) -> (Vec<&Expr>, Vec<&Block>) {
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let mut conds = vec![];
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let mut blocks = vec![];
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2016-01-30 11:03:53 -06:00
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2016-02-09 08:18:27 -06:00
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while let ExprIf(ref cond, ref then_block, ref else_expr) = expr.node {
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conds.push(&**cond);
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blocks.push(&**then_block);
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2016-01-30 11:03:53 -06:00
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if let Some(ref else_expr) = *else_expr {
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expr = else_expr;
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}
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else {
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break;
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}
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}
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2016-02-09 08:18:27 -06:00
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// final `else {..}`
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if !blocks.is_empty() {
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if let ExprBlock(ref block) = expr.node {
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blocks.push(&**block);
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}
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}
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(conds, blocks)
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}
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fn search_same<'a>(cx: &LateContext, exprs: &[&'a Expr]) -> Option<(&'a Expr, &'a Expr)> {
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// common cases
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if exprs.len() < 2 {
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return None;
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}
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else if exprs.len() == 2 {
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return if SpanlessEq::new(cx).ignore_fn().eq_expr(&exprs[0], &exprs[1]) {
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Some((&exprs[0], &exprs[1]))
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}
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else {
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None
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}
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}
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let mut map : HashMap<_, Vec<&'a _>> = HashMap::with_capacity(exprs.len());
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for &expr in exprs {
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let mut h = SpanlessHash::new(cx);
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h.hash_expr(expr);
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let h = h.finish();
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match map.entry(h) {
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Entry::Occupied(o) => {
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for o in o.get() {
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if SpanlessEq::new(cx).ignore_fn().eq_expr(o, expr) {
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return Some((o, expr))
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}
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}
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}
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Entry::Vacant(v) => { v.insert(vec![expr]); }
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}
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}
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None
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2016-01-30 11:03:53 -06:00
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}
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