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https://github.com/rust-lang/rust-analyzer
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Properly infer tuple struct patterns when encountering ellipsis
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parent
35dd62e915
commit
a5efefd3d7
2 changed files with 70 additions and 9 deletions
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@ -23,6 +23,7 @@ impl<'a> InferenceContext<'a> {
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expected: &Ty,
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expected: &Ty,
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default_bm: BindingMode,
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default_bm: BindingMode,
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id: PatId,
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id: PatId,
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ellipsis: Option<usize>,
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) -> Ty {
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) -> Ty {
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let (ty, def) = self.resolve_variant(path);
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let (ty, def) = self.resolve_variant(path);
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let var_data = def.map(|it| variant_data(self.db.upcast(), it));
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let var_data = def.map(|it| variant_data(self.db.upcast(), it));
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@ -34,8 +35,15 @@ impl<'a> InferenceContext<'a> {
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let substs = ty.substs().unwrap_or_else(Substs::empty);
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let substs = ty.substs().unwrap_or_else(Substs::empty);
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let field_tys = def.map(|it| self.db.field_types(it)).unwrap_or_default();
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let field_tys = def.map(|it| self.db.field_types(it)).unwrap_or_default();
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let (pre, post) = match ellipsis {
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Some(idx) => subpats.split_at(idx),
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None => (&subpats[..], &[][..]),
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};
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let post_idx_offset = field_tys.iter().count() - post.len();
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for (i, &subpat) in subpats.iter().enumerate() {
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let pre_iter = pre.iter().enumerate();
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let post_iter = (post_idx_offset..).zip(post.iter());
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for (i, &subpat) in pre_iter.chain(post_iter) {
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let expected_ty = var_data
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let expected_ty = var_data
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.as_ref()
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.as_ref()
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.and_then(|d| d.field(&Name::new_tuple_field(i)))
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.and_then(|d| d.field(&Name::new_tuple_field(i)))
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@ -111,23 +119,23 @@ impl<'a> InferenceContext<'a> {
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let expected = expected;
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let expected = expected;
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let ty = match &body[pat] {
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let ty = match &body[pat] {
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Pat::Tuple { ref args, ellipsis } => {
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&Pat::Tuple { ref args, ellipsis } => {
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let expectations = match expected.as_tuple() {
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let expectations = match expected.as_tuple() {
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Some(parameters) => &*parameters.0,
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Some(parameters) => &*parameters.0,
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_ => &[],
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_ => &[],
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};
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};
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let (pre, post) = match ellipsis {
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let (pre, post) = match ellipsis {
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&Some(idx) => args.split_at(idx),
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Some(idx) => args.split_at(idx),
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None => (&args[..], &[][..]),
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None => (&args[..], &[][..]),
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};
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};
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let uncovered_range = pre.len()..expectations.len().saturating_sub(post.len());
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let n_uncovered_patterns = expectations.len().saturating_sub(args.len());
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let mut expectations_iter = expectations.iter().chain(repeat(&Ty::Unknown));
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let mut expectations_iter = expectations.iter().chain(repeat(&Ty::Unknown));
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let mut infer_pat = |(&pat, ty)| self.infer_pat(pat, ty, default_bm);
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let mut infer_pat = |(&pat, ty)| self.infer_pat(pat, ty, default_bm);
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let mut inner_tys = Vec::with_capacity(expectations.len());
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let mut inner_tys = Vec::with_capacity(n_uncovered_patterns + args.len());
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inner_tys.extend(pre.iter().zip(expectations_iter.by_ref()).map(&mut infer_pat));
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inner_tys.extend(pre.iter().zip(expectations_iter.by_ref()).map(&mut infer_pat));
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inner_tys.extend(expectations_iter.by_ref().take(uncovered_range.len()).cloned());
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inner_tys.extend(expectations_iter.by_ref().take(n_uncovered_patterns).cloned());
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inner_tys.extend(post.iter().zip(expectations_iter).map(infer_pat));
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inner_tys.extend(post.iter().zip(expectations_iter).map(infer_pat));
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Ty::apply(
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Ty::apply(
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@ -159,9 +167,14 @@ impl<'a> InferenceContext<'a> {
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let subty = self.infer_pat(*pat, expectation, default_bm);
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let subty = self.infer_pat(*pat, expectation, default_bm);
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Ty::apply_one(TypeCtor::Ref(*mutability), subty)
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Ty::apply_one(TypeCtor::Ref(*mutability), subty)
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}
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}
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Pat::TupleStruct { path: p, args: subpats, .. } => {
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Pat::TupleStruct { path: p, args: subpats, ellipsis } => self.infer_tuple_struct_pat(
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self.infer_tuple_struct_pat(p.as_ref(), subpats, expected, default_bm, pat)
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p.as_ref(),
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}
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subpats,
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expected,
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default_bm,
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pat,
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*ellipsis,
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),
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Pat::Record { path: p, args: fields, ellipsis: _ } => {
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Pat::Record { path: p, args: fields, ellipsis: _ } => {
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self.infer_record_pat(p.as_ref(), fields, expected, default_bm, pat)
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self.infer_record_pat(p.as_ref(), fields, expected, default_bm, pat)
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}
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}
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@ -726,3 +726,51 @@ fn foo(tuple: (u8, i16, f32)) {
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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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#[test]
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fn tuple_struct_ellipsis_pattern() {
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check_infer(
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r#"
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struct Tuple(u8, i16, f32);
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fn foo(tuple: Tuple) {
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match tuple {
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Tuple(.., b, c) => {},
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Tuple(a, .., c) => {},
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Tuple(a, b, ..) => {},
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Tuple(a, b) => {/*too short*/}
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Tuple(a, b, c, d) => {/*too long*/}
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_ => {}
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}
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}"#,
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expect![[r#"
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35..40 'tuple': Tuple
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49..268 '{ ... } }': ()
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55..266 'match ... }': ()
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61..66 'tuple': Tuple
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77..92 'Tuple(.., b, c)': Tuple
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87..88 'b': i16
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90..91 'c': f32
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96..98 '{}': ()
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108..123 'Tuple(a, .., c)': Tuple
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114..115 'a': u8
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121..122 'c': f32
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127..129 '{}': ()
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139..154 'Tuple(a, b, ..)': Tuple
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145..146 'a': u8
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148..149 'b': i16
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158..160 '{}': ()
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170..181 'Tuple(a, b)': Tuple
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176..177 'a': u8
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179..180 'b': i16
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185..200 '{/*too short*/}': ()
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209..226 'Tuple(... c, d)': Tuple
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215..216 'a': u8
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218..219 'b': i16
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221..222 'c': f32
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224..225 'd': {unknown}
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230..244 '{/*too long*/}': ()
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253..254 '_': Tuple
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258..260 '{}': ()
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"#]],
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);
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}
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