fix cyclomatic complexity lint triggering because of short circuit operations
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08b7931b6b
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@ -51,19 +51,21 @@ impl CyclomaticComplexity {
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let mut helper = CCHelper {
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match_arms: 0,
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divergence: 0,
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short_circuits: 0,
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tcx: &cx.tcx,
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};
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helper.visit_block(block);
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let CCHelper {
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match_arms,
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divergence,
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short_circuits,
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..
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} = helper;
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if cc + divergence < match_arms {
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report_cc_bug(cx, cc, match_arms, divergence, span);
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if cc + divergence < match_arms + short_circuits {
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report_cc_bug(cx, cc, match_arms, divergence, short_circuits, span);
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} else {
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let rust_cc = cc + divergence - match_arms;
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let rust_cc = cc + divergence - match_arms - short_circuits;
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if rust_cc > self.limit.limit() {
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span_help_and_lint(cx,
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CYCLOMATIC_COMPLEXITY,
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@ -105,6 +107,7 @@ impl LateLintPass for CyclomaticComplexity {
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struct CCHelper<'a, 'tcx: 'a> {
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match_arms: u64,
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divergence: u64,
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short_circuits: u64, // && and ||
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tcx: &'a ty::TyCtxt<'tcx>,
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}
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@ -128,29 +131,38 @@ impl<'a, 'b, 'tcx> Visitor<'a> for CCHelper<'b, 'tcx> {
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}
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}
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ExprClosure(..) => {}
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ExprBinary(op, _, _) => {
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walk_expr(self, e);
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match op.node {
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BiAnd | BiOr => self.short_circuits += 1,
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_ => {},
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}
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}
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_ => walk_expr(self, e),
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}
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}
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}
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#[cfg(feature="debugging")]
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fn report_cc_bug(cx: &LateContext, cc: u64, narms: u64, div: u64, span: Span) {
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fn report_cc_bug(cx: &LateContext, cc: u64, narms: u64, div: u64, shorts: u64, span: Span) {
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cx.sess().span_bug(span,
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&format!("Clippy encountered a bug calculating cyclomatic complexity: cc = {}, arms = {}, \
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div = {}. Please file a bug report.",
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div = {}, shorts = {}. Please file a bug report.",
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cc,
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narms,
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div));;
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div,
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shorts));;
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}
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#[cfg(not(feature="debugging"))]
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fn report_cc_bug(cx: &LateContext, cc: u64, narms: u64, div: u64, span: Span) {
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fn report_cc_bug(cx: &LateContext, cc: u64, narms: u64, div: u64, shorts: u64, span: Span) {
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if cx.current_level(CYCLOMATIC_COMPLEXITY) != Level::Allow {
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cx.sess().span_note_without_error(span,
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&format!("Clippy encountered a bug calculating cyclomatic complexity \
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(hide this message with `#[allow(cyclomatic_complexity)]`): cc \
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= {}, arms = {}, div = {}. Please file a bug report.",
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= {}, arms = {}, div = {}, shorts = {}. Please file a bug report.",
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cc,
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narms,
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div));
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div,
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shorts));
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}
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}
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@ -1,4 +1,3 @@
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#![allow(cyclomatic_complexity)]
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use rustc::lint::*;
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use rustc_front::hir::*;
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use utils::{span_lint};
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@ -38,12 +37,12 @@ impl LateLintPass for OverflowCheckConditional {
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], {
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if let BinOp_::BiLt = op.node {
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if let BinOp_::BiAdd = op2.node {
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span_lint(cx, OVERFLOW_CHECK_CONDITIONAL, expr.span, "You are trying to use classic C overflow conditons that will fail in Rust.");
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span_lint(cx, OVERFLOW_CHECK_CONDITIONAL, expr.span, "You are trying to use classic C overflow conditions that will fail in Rust.");
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}
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}
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if let BinOp_::BiGt = op.node {
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if let BinOp_::BiSub = op2.node {
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span_lint(cx, OVERFLOW_CHECK_CONDITIONAL, expr.span, "You are trying to use classic C underflow conditons that will fail in Rust.");
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span_lint(cx, OVERFLOW_CHECK_CONDITIONAL, expr.span, "You are trying to use classic C underflow conditions that will fail in Rust.");
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}
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}
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}}
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@ -60,12 +59,12 @@ impl LateLintPass for OverflowCheckConditional {
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], {
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if let BinOp_::BiGt = op.node {
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if let BinOp_::BiAdd = op2.node {
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span_lint(cx, OVERFLOW_CHECK_CONDITIONAL, expr.span, "You are trying to use classic C overflow conditons that will fail in Rust.");
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span_lint(cx, OVERFLOW_CHECK_CONDITIONAL, expr.span, "You are trying to use classic C overflow conditions that will fail in Rust.");
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}
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}
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if let BinOp_::BiLt = op.node {
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if let BinOp_::BiSub = op2.node {
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span_lint(cx, OVERFLOW_CHECK_CONDITIONAL, expr.span, "You are trying to use classic C underflow conditons that will fail in Rust.");
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span_lint(cx, OVERFLOW_CHECK_CONDITIONAL, expr.span, "You are trying to use classic C underflow conditions that will fail in Rust.");
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}
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}
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}}
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@ -55,8 +55,6 @@ impl<'a, 'tcx: 'a> SpanlessEq<'a, 'tcx> {
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both(&left.expr, &right.expr, |l, r| self.eq_expr(l, r))
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}
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// ok, it’s a big function, but mostly one big match with simples cases
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#[allow(cyclomatic_complexity)]
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pub fn eq_expr(&self, left: &Expr, right: &Expr) -> bool {
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if self.ignore_fn && differing_macro_contexts(left.span, right.span) {
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return false;
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@ -1,6 +1,6 @@
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#![feature(plugin, custom_attribute)]
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#![plugin(clippy)]
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#![deny(clippy)]
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#![allow(clippy)]
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#![deny(cyclomatic_complexity)]
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#![allow(unused)]
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@ -90,7 +90,7 @@ fn main() { //~ERROR the function has a cyclomatic complexity of 28
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}
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#[cyclomatic_complexity = "0"]
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fn kaboom() { //~ ERROR: the function has a cyclomatic complexity of 8
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fn kaboom() { //~ ERROR: the function has a cyclomatic complexity of 7
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let n = 0;
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'a: for i in 0..20 {
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'b: for j in i..20 {
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@ -135,6 +135,16 @@ fn bloo() {
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}
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}
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#[cyclomatic_complexity = "0"]
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fn lots_of_short_circuits() -> bool { //~ ERROR: the function has a cyclomatic complexity of 1
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true && false && true && false && true && false && true
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}
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#[cyclomatic_complexity = "0"]
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fn lots_of_short_circuits2() -> bool { //~ ERROR: the function has a cyclomatic complexity of 1
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true || false || true || false || true || false || true
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}
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#[cyclomatic_complexity = "0"]
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fn baa() { //~ ERROR: the function has a cyclomatic complexity of 2
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let x = || match 99 {
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@ -7,28 +7,28 @@ fn main() {
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let a: u32 = 1;
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let b: u32 = 2;
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let c: u32 = 3;
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if a + b < a { //~ERROR You are trying to use classic C overflow conditons that will fail in Rust.
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if a + b < a { //~ERROR You are trying to use classic C overflow conditions that will fail in Rust.
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}
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if a > a + b { //~ERROR You are trying to use classic C overflow conditons that will fail in Rust.
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if a > a + b { //~ERROR You are trying to use classic C overflow conditions that will fail in Rust.
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}
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if a + b < b { //~ERROR You are trying to use classic C overflow conditons that will fail in Rust.
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if a + b < b { //~ERROR You are trying to use classic C overflow conditions that will fail in Rust.
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}
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if b > a + b { //~ERROR You are trying to use classic C overflow conditons that will fail in Rust.
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if b > a + b { //~ERROR You are trying to use classic C overflow conditions that will fail in Rust.
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}
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if a - b > b { //~ERROR You are trying to use classic C underflow conditons that will fail in Rust.
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if a - b > b { //~ERROR You are trying to use classic C underflow conditions that will fail in Rust.
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}
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if b < a - b { //~ERROR You are trying to use classic C underflow conditons that will fail in Rust.
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if b < a - b { //~ERROR You are trying to use classic C underflow conditions that will fail in Rust.
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}
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if a - b > a { //~ERROR You are trying to use classic C underflow conditons that will fail in Rust.
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if a - b > a { //~ERROR You are trying to use classic C underflow conditions that will fail in Rust.
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}
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if a < a - b { //~ERROR You are trying to use classic C underflow conditons that will fail in Rust.
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if a < a - b { //~ERROR You are trying to use classic C underflow conditions that will fail in Rust.
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}
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if a + b < c {
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@ -58,4 +58,3 @@ fn main() {
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}
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}
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