Count all errors for track_errors
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30b6c59f24
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95a32157af
8 changed files with 77 additions and 29 deletions
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@ -171,6 +171,7 @@ pub struct InferCtxt<'a, 'tcx> {
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/// Track how many errors were reported when this infcx is created.
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/// If the number of errors increases, that's also a sign (line
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/// `tained_by_errors`) to avoid reporting certain kinds of errors.
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// FIXME(matthewjasper) Merge into `tainted_by_errors_flag`
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err_count_on_creation: usize,
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/// This flag is true while there is an active snapshot.
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@ -307,7 +307,12 @@ pub use diagnostic_builder::DiagnosticBuilder;
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pub struct Handler {
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pub flags: HandlerFlags,
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/// The number of errors that have been emitted, including duplicates.
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///
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/// This is not necessarily the count that's reported to the user once
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/// compilation ends.
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err_count: AtomicUsize,
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deduplicated_err_count: AtomicUsize,
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emitter: Lock<Box<dyn Emitter + sync::Send>>,
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continue_after_error: AtomicBool,
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delayed_span_bugs: Lock<Vec<Diagnostic>>,
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@ -407,6 +412,7 @@ impl Handler {
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Handler {
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flags,
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err_count: AtomicUsize::new(0),
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deduplicated_err_count: AtomicUsize::new(0),
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emitter: Lock::new(e),
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continue_after_error: AtomicBool::new(true),
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delayed_span_bugs: Lock::new(Vec::new()),
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@ -428,6 +434,7 @@ impl Handler {
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pub fn reset_err_count(&self) {
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// actually frees the underlying memory (which `clear` would not do)
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*self.emitted_diagnostics.borrow_mut() = Default::default();
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self.deduplicated_err_count.store(0, SeqCst);
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self.err_count.store(0, SeqCst);
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}
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@ -660,10 +667,10 @@ impl Handler {
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}
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pub fn print_error_count(&self, registry: &Registry) {
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let s = match self.err_count() {
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let s = match self.deduplicated_err_count.load(SeqCst) {
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0 => return,
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1 => "aborting due to previous error".to_string(),
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_ => format!("aborting due to {} previous errors", self.err_count())
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count => format!("aborting due to {} previous errors", count)
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};
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if self.treat_err_as_bug() {
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return;
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@ -769,9 +776,12 @@ impl Handler {
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if self.emitted_diagnostics.borrow_mut().insert(diagnostic_hash) {
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self.emitter.borrow_mut().emit_diagnostic(db);
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if db.is_error() {
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self.bump_err_count();
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self.deduplicated_err_count.fetch_add(1, SeqCst);
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}
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}
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if db.is_error() {
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self.bump_err_count();
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}
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}
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pub fn emit_artifact_notification(&self, path: &Path, artifact_type: &str) {
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@ -15,7 +15,6 @@ use rustc::ty::{self, TyCtxt, query::TyCtxtAt};
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use rustc::ty::layout::{self, LayoutOf, VariantIdx};
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use rustc::ty::subst::Subst;
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use rustc::traits::Reveal;
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use rustc::util::common::ErrorReported;
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use rustc_data_structures::fx::FxHashMap;
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use syntax::source_map::{Span, DUMMY_SP};
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@ -655,19 +654,12 @@ pub fn const_eval_raw_provider<'tcx>(
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if tcx.is_static(def_id) {
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// Ensure that if the above error was either `TooGeneric` or `Reported`
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// an error must be reported.
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let reported_err = tcx.sess.track_errors(|| {
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err.report_as_error(ecx.tcx,
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"could not evaluate static initializer")
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});
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match reported_err {
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Ok(v) => {
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tcx.sess.delay_span_bug(err.span,
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&format!("static eval failure did not emit an error: {:#?}",
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v));
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v
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},
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Err(ErrorReported) => ErrorHandled::Reported,
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}
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let v = err.report_as_error(ecx.tcx, "could not evaluate static initializer");
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tcx.sess.delay_span_bug(
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err.span,
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&format!("static eval failure did not emit an error: {:#?}", v)
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);
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v
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} else if def_id.is_local() {
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// constant defined in this crate, we can figure out a lint level!
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match tcx.def_kind(def_id) {
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@ -2,8 +2,6 @@ use rustc::session::Session;
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use crate::generated_code;
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use std::cell::Cell;
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use syntax::parse::lexer::{self, StringReader};
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use syntax::parse::token::{self, TokenKind};
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use syntax_pos::*;
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@ -11,16 +9,12 @@ use syntax_pos::*;
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#[derive(Clone)]
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pub struct SpanUtils<'a> {
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pub sess: &'a Session,
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// FIXME given that we clone SpanUtils all over the place, this err_count is
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// probably useless and any logic relying on it is bogus.
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pub err_count: Cell<isize>,
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}
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impl<'a> SpanUtils<'a> {
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pub fn new(sess: &'a Session) -> SpanUtils<'a> {
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SpanUtils {
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sess,
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err_count: Cell::new(0),
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}
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}
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@ -527,6 +527,8 @@ pub struct FnCtxt<'a, 'tcx> {
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/// checking this function. On exit, if we find that *more* errors
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/// have been reported, we will skip regionck and other work that
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/// expects the types within the function to be consistent.
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// FIXME(matthewjasper) This should not exist, and it's not correct
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// if type checking is run in parallel.
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err_count_on_creation: usize,
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ret_coercion: Option<RefCell<DynamicCoerceMany<'tcx>>>,
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@ -696,11 +698,9 @@ impl ItemLikeVisitor<'tcx> for CheckItemTypesVisitor<'tcx> {
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fn visit_impl_item(&mut self, _: &'tcx hir::ImplItem) { }
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}
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pub fn check_wf_new<'tcx>(tcx: TyCtxt<'tcx>) -> Result<(), ErrorReported> {
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tcx.sess.track_errors(|| {
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let mut visit = wfcheck::CheckTypeWellFormedVisitor::new(tcx);
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tcx.hir().krate().par_visit_all_item_likes(&mut visit);
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})
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pub fn check_wf_new<'tcx>(tcx: TyCtxt<'tcx>) {
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let mut visit = wfcheck::CheckTypeWellFormedVisitor::new(tcx);
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tcx.hir().krate().par_visit_all_item_likes(&mut visit);
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}
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fn check_mod_item_types<'tcx>(tcx: TyCtxt<'tcx>, module_def_id: DefId) {
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@ -321,6 +321,7 @@ pub fn check_crate<'tcx>(tcx: TyCtxt<'tcx>) -> Result<(), ErrorReported> {
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// this ensures that later parts of type checking can assume that items
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// have valid types and not error
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// FIXME(matthewjasper) We shouldn't need to do this.
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tcx.sess.track_errors(|| {
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time(tcx.sess, "type collecting", || {
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for &module in tcx.hir().krate().modules.keys() {
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@ -353,7 +354,9 @@ pub fn check_crate<'tcx>(tcx: TyCtxt<'tcx>) -> Result<(), ErrorReported> {
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})?;
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}
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time(tcx.sess, "wf checking", || check::check_wf_new(tcx))?;
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tcx.sess.track_errors(|| {
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time(tcx.sess, "wf checking", || check::check_wf_new(tcx));
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})?;
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time(tcx.sess, "item-types checking", || {
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for &module in tcx.hir().krate().modules.keys() {
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29
src/test/ui/consts/enum-discr-type-err.rs
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29
src/test/ui/consts/enum-discr-type-err.rs
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@ -0,0 +1,29 @@
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// Test that we mark enum discriminant values as having errors, even when the
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// diagnostic is deduplicated.
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struct F;
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struct T;
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impl F {
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const V: i32 = 0;
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}
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impl T {
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const V: i32 = 0;
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}
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macro_rules! mac {
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($( $v: ident = $s: ident,)*) => {
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enum E {
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$( $v = $s::V, )*
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//~^ ERROR mismatched types
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}
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}
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}
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mac! {
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A = F,
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B = T,
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}
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fn main() {}
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19
src/test/ui/consts/enum-discr-type-err.stderr
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19
src/test/ui/consts/enum-discr-type-err.stderr
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@ -0,0 +1,19 @@
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error[E0308]: mismatched types
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--> $DIR/enum-discr-type-err.rs:18:21
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LL | $( $v = $s::V, )*
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| ^^^^^ expected isize, found i32
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...
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LL | / mac! {
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LL | | A = F,
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LL | | B = T,
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LL | | }
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| |_- in this macro invocation
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help: you can convert an `i32` to `isize` and panic if the converted value wouldn't fit
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LL | $( $v = $s::V.try_into().unwrap(), )*
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| ^^^^^^^^^^^^^^^^^^^^^^^^^
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error: aborting due to previous error
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For more information about this error, try `rustc --explain E0308`.
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