Hide internal stuff in check_match.rs
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8eb28bb7dc
commit
fdb49aa917
1 changed files with 21 additions and 21 deletions
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@ -28,7 +28,7 @@ use syntax::codemap::{Span, dummy_sp, Spanned};
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use syntax::visit;
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use syntax::visit::{Visitor,fn_kind};
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pub struct MatchCheckCtxt {
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struct MatchCheckCtxt {
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tcx: ty::ctxt,
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method_map: method_map,
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moves_map: moves::MovesMap
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@ -64,7 +64,7 @@ pub fn check_crate(tcx: ty::ctxt,
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tcx.sess.abort_if_errors();
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}
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pub fn check_expr(v: &mut CheckMatchVisitor,
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fn check_expr(v: &mut CheckMatchVisitor,
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cx: @MatchCheckCtxt,
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ex: @Expr,
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s: ()) {
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@ -115,7 +115,7 @@ pub fn check_expr(v: &mut CheckMatchVisitor,
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}
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// Check for unreachable patterns
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pub fn check_arms(cx: &MatchCheckCtxt, arms: &[Arm]) {
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fn check_arms(cx: &MatchCheckCtxt, arms: &[Arm]) {
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let mut seen = ~[];
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for arm in arms.iter() {
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for pat in arm.pats.iter() {
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@ -154,14 +154,14 @@ pub fn check_arms(cx: &MatchCheckCtxt, arms: &[Arm]) {
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}
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}
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pub fn raw_pat(p: @Pat) -> @Pat {
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fn raw_pat(p: @Pat) -> @Pat {
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match p.node {
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PatIdent(_, _, Some(s)) => { raw_pat(s) }
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_ => { p }
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}
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}
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pub fn check_exhaustive(cx: &MatchCheckCtxt, sp: Span, pats: ~[@Pat]) {
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fn check_exhaustive(cx: &MatchCheckCtxt, sp: Span, pats: ~[@Pat]) {
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assert!((!pats.is_empty()));
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let ext = match is_useful(cx, &pats.map(|p| ~[*p]), [wild()]) {
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not_useful => {
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@ -209,12 +209,12 @@ pub fn check_exhaustive(cx: &MatchCheckCtxt, sp: Span, pats: ~[@Pat]) {
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cx.tcx.sess.span_err(sp, msg);
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}
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pub type matrix = ~[~[@Pat]];
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type matrix = ~[~[@Pat]];
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pub enum useful { useful(ty::t, ctor), useful_, not_useful }
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enum useful { useful(ty::t, ctor), useful_, not_useful }
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#[deriving(Eq)]
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pub enum ctor {
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enum ctor {
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single,
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variant(DefId),
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val(const_val),
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@ -235,7 +235,7 @@ pub enum ctor {
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// Note: is_useful doesn't work on empty types, as the paper notes.
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// So it assumes that v is non-empty.
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pub fn is_useful(cx: &MatchCheckCtxt, m: &matrix, v: &[@Pat]) -> useful {
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fn is_useful(cx: &MatchCheckCtxt, m: &matrix, v: &[@Pat]) -> useful {
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if m.len() == 0u { return useful_; }
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if m[0].len() == 0u { return not_useful; }
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let real_pat = match m.iter().find(|r| r[0].id != 0) {
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@ -314,7 +314,7 @@ pub fn is_useful(cx: &MatchCheckCtxt, m: &matrix, v: &[@Pat]) -> useful {
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}
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}
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pub fn is_useful_specialized(cx: &MatchCheckCtxt,
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fn is_useful_specialized(cx: &MatchCheckCtxt,
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m: &matrix,
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v: &[@Pat],
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ctor: ctor,
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@ -330,7 +330,7 @@ pub fn is_useful_specialized(cx: &MatchCheckCtxt,
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}
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}
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pub fn pat_ctor_id(cx: &MatchCheckCtxt, p: @Pat) -> Option<ctor> {
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fn pat_ctor_id(cx: &MatchCheckCtxt, p: @Pat) -> Option<ctor> {
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let pat = raw_pat(p);
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match pat.node {
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PatWild => { None }
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@ -366,7 +366,7 @@ pub fn pat_ctor_id(cx: &MatchCheckCtxt, p: @Pat) -> Option<ctor> {
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}
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}
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pub fn is_wild(cx: &MatchCheckCtxt, p: @Pat) -> bool {
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fn is_wild(cx: &MatchCheckCtxt, p: @Pat) -> bool {
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let pat = raw_pat(p);
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match pat.node {
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PatWild => { true }
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@ -380,7 +380,7 @@ pub fn is_wild(cx: &MatchCheckCtxt, p: @Pat) -> bool {
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}
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}
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pub fn missing_ctor(cx: &MatchCheckCtxt,
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fn missing_ctor(cx: &MatchCheckCtxt,
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m: &matrix,
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left_ty: ty::t)
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-> Option<ctor> {
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@ -505,7 +505,7 @@ pub fn missing_ctor(cx: &MatchCheckCtxt,
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}
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}
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pub fn ctor_arity(cx: &MatchCheckCtxt, ctor: &ctor, ty: ty::t) -> uint {
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fn ctor_arity(cx: &MatchCheckCtxt, ctor: &ctor, ty: ty::t) -> uint {
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match ty::get(ty).sty {
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ty::ty_tup(ref fs) => fs.len(),
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ty::ty_box(_) | ty::ty_uniq(_) | ty::ty_rptr(*) => 1u,
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@ -528,11 +528,11 @@ pub fn ctor_arity(cx: &MatchCheckCtxt, ctor: &ctor, ty: ty::t) -> uint {
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}
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}
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pub fn wild() -> @Pat {
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fn wild() -> @Pat {
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@Pat {id: 0, node: PatWild, span: dummy_sp()}
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}
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pub fn specialize(cx: &MatchCheckCtxt,
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fn specialize(cx: &MatchCheckCtxt,
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r: &[@Pat],
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ctor_id: &ctor,
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arity: uint,
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@ -798,12 +798,12 @@ pub fn specialize(cx: &MatchCheckCtxt,
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}
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}
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pub fn default(cx: &MatchCheckCtxt, r: &[@Pat]) -> Option<~[@Pat]> {
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fn default(cx: &MatchCheckCtxt, r: &[@Pat]) -> Option<~[@Pat]> {
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if is_wild(cx, r[0]) { Some(r.tail().to_owned()) }
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else { None }
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}
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pub fn check_local(v: &mut CheckMatchVisitor,
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fn check_local(v: &mut CheckMatchVisitor,
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cx: &MatchCheckCtxt,
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loc: @Local,
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s: ()) {
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@ -817,7 +817,7 @@ pub fn check_local(v: &mut CheckMatchVisitor,
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check_legality_of_move_bindings(cx, false, [ loc.pat ]);
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}
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pub fn check_fn(v: &mut CheckMatchVisitor,
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fn check_fn(v: &mut CheckMatchVisitor,
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cx: &MatchCheckCtxt,
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kind: &visit::fn_kind,
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decl: &fn_decl,
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@ -834,7 +834,7 @@ pub fn check_fn(v: &mut CheckMatchVisitor,
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}
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}
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pub fn is_refutable(cx: &MatchCheckCtxt, pat: &Pat) -> bool {
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fn is_refutable(cx: &MatchCheckCtxt, pat: &Pat) -> bool {
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match cx.tcx.def_map.find(&pat.id) {
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Some(&DefVariant(enum_id, _, _)) => {
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if ty::enum_variants(cx.tcx, enum_id).len() != 1u {
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@ -872,7 +872,7 @@ pub fn is_refutable(cx: &MatchCheckCtxt, pat: &Pat) -> bool {
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// Legality of move bindings checking
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pub fn check_legality_of_move_bindings(cx: &MatchCheckCtxt,
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fn check_legality_of_move_bindings(cx: &MatchCheckCtxt,
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has_guard: bool,
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pats: &[@Pat]) {
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let tcx = cx.tcx;
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