Fold KindAnalysisVisitor into the Context. Removed unused current_item state.
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339027ec15
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ffc9209471
@ -54,43 +54,38 @@ use syntax::visit::Visitor;
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pub struct Context {
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tcx: ty::ctxt,
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method_map: typeck::method_map,
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current_item: NodeId
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}
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struct KindAnalysisVisitor;
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impl Visitor<()> for Context {
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impl Visitor<Context> for KindAnalysisVisitor {
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fn visit_expr(&mut self, ex:@Expr, e:Context) {
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check_expr(self, ex, e);
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fn visit_expr(&mut self, ex:@Expr, _:()) {
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check_expr(self, ex);
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}
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fn visit_fn(&mut self, fk:&visit::fn_kind, fd:&fn_decl, b:&Block, s:Span, n:NodeId, e:Context) {
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check_fn(self, fk, fd, b, s, n, e);
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fn visit_fn(&mut self, fk:&visit::fn_kind, fd:&fn_decl, b:&Block, s:Span, n:NodeId, _:()) {
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check_fn(self, fk, fd, b, s, n);
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}
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fn visit_ty(&mut self, t:&Ty, e:Context) {
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check_ty(self, t, e);
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fn visit_ty(&mut self, t:&Ty, _:()) {
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check_ty(self, t);
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}
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fn visit_item(&mut self, i:@item, e:Context) {
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check_item(self, i, e);
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fn visit_item(&mut self, i:@item, _:()) {
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check_item(self, i);
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}
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}
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pub fn check_crate(tcx: ty::ctxt,
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method_map: typeck::method_map,
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crate: &Crate) {
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let ctx = Context {
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let mut ctx = Context {
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tcx: tcx,
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method_map: method_map,
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current_item: -1
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};
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let mut visit = KindAnalysisVisitor;
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visit::walk_crate(&mut visit, crate, ctx);
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visit::walk_crate(&mut ctx, crate, ());
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tcx.sess.abort_if_errors();
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}
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fn check_struct_safe_for_destructor(cx: Context,
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fn check_struct_safe_for_destructor(cx: &mut Context,
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span: Span,
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struct_did: DefId) {
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let struct_tpt = ty::lookup_item_type(cx.tcx, struct_did);
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@ -120,7 +115,7 @@ fn check_struct_safe_for_destructor(cx: Context,
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}
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}
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fn check_impl_of_trait(cx: Context, it: @item, trait_ref: &trait_ref, self_type: &Ty) {
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fn check_impl_of_trait(cx: &mut Context, it: @item, trait_ref: &trait_ref, self_type: &Ty) {
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let ast_trait_def = cx.tcx.def_map.find(&trait_ref.ref_id)
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.expect("trait ref not in def map!");
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let trait_def_id = ast_util::def_id_of_def(*ast_trait_def);
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@ -156,7 +151,7 @@ fn check_impl_of_trait(cx: Context, it: @item, trait_ref: &trait_ref, self_type:
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}
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}
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fn check_item(visitor: &mut KindAnalysisVisitor, item: @item, cx: Context) {
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fn check_item(cx: &mut Context, item: @item) {
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if !attr::contains_name(item.attrs, "unsafe_destructor") {
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match item.node {
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item_impl(_, Some(ref trait_ref), ref self_type, _) => {
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@ -166,16 +161,15 @@ fn check_item(visitor: &mut KindAnalysisVisitor, item: @item, cx: Context) {
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}
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}
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let cx = Context { current_item: item.id, ..cx };
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visit::walk_item(visitor, item, cx);
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visit::walk_item(cx, item, ());
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}
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// Yields the appropriate function to check the kind of closed over
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// variables. `id` is the NodeId for some expression that creates the
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// closure.
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fn with_appropriate_checker(cx: Context, id: NodeId,
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b: &fn(checker: &fn(Context, @freevar_entry))) {
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fn check_for_uniq(cx: Context, fv: &freevar_entry, bounds: ty::BuiltinBounds) {
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fn with_appropriate_checker(cx: &Context, id: NodeId,
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b: &fn(checker: &fn(&Context, @freevar_entry))) {
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fn check_for_uniq(cx: &Context, fv: &freevar_entry, bounds: ty::BuiltinBounds) {
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// all captured data must be owned, regardless of whether it is
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// moved in or copied in.
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let id = ast_util::def_id_of_def(fv.def).node;
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@ -187,7 +181,7 @@ fn with_appropriate_checker(cx: Context, id: NodeId,
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check_freevar_bounds(cx, fv.span, var_t, bounds, None);
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}
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fn check_for_box(cx: Context, fv: &freevar_entry, bounds: ty::BuiltinBounds) {
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fn check_for_box(cx: &Context, fv: &freevar_entry, bounds: ty::BuiltinBounds) {
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// all captured data must be owned
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let id = ast_util::def_id_of_def(fv.def).node;
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let var_t = ty::node_id_to_type(cx.tcx, id);
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@ -198,7 +192,7 @@ fn with_appropriate_checker(cx: Context, id: NodeId,
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check_freevar_bounds(cx, fv.span, var_t, bounds, None);
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}
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fn check_for_block(cx: Context, fv: &freevar_entry,
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fn check_for_block(cx: &Context, fv: &freevar_entry,
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bounds: ty::BuiltinBounds, region: ty::Region) {
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let id = ast_util::def_id_of_def(fv.def).node;
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let var_t = ty::node_id_to_type(cx.tcx, id);
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@ -209,7 +203,7 @@ fn with_appropriate_checker(cx: Context, id: NodeId,
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bounds, Some(var_t));
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}
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fn check_for_bare(cx: Context, fv: @freevar_entry) {
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fn check_for_bare(cx: &Context, fv: @freevar_entry) {
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cx.tcx.sess.span_err(
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fv.span,
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"can't capture dynamic environment in a fn item; \
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@ -252,13 +246,12 @@ fn with_appropriate_checker(cx: Context, id: NodeId,
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// Check that the free variables used in a shared/sendable closure conform
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// to the copy/move kind bounds. Then recursively check the function body.
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fn check_fn(
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v: &mut KindAnalysisVisitor,
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cx: &mut Context,
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fk: &visit::fn_kind,
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decl: &fn_decl,
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body: &Block,
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sp: Span,
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fn_id: NodeId,
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cx: Context) {
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fn_id: NodeId) {
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// Check kinds on free variables:
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do with_appropriate_checker(cx, fn_id) |chk| {
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@ -268,10 +261,10 @@ fn check_fn(
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}
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}
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visit::walk_fn(v, fk, decl, body, sp, fn_id, cx);
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visit::walk_fn(cx, fk, decl, body, sp, fn_id, ());
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}
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pub fn check_expr(v: &mut KindAnalysisVisitor, e: @Expr, cx: Context) {
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pub fn check_expr(cx: &mut Context, e: @Expr) {
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debug!("kind::check_expr(%s)", expr_to_str(e, cx.tcx.sess.intr()));
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// Handle any kind bounds on type parameters
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@ -336,10 +329,10 @@ pub fn check_expr(v: &mut KindAnalysisVisitor, e: @Expr, cx: Context) {
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}
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_ => {}
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}
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visit::walk_expr(v, e, cx);
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visit::walk_expr(cx, e, ());
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}
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fn check_ty(v: &mut KindAnalysisVisitor, aty: &Ty, cx: Context) {
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fn check_ty(cx: &mut Context, aty: &Ty) {
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match aty.node {
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ty_path(_, _, id) => {
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let r = cx.tcx.node_type_substs.find(&id);
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@ -354,11 +347,11 @@ fn check_ty(v: &mut KindAnalysisVisitor, aty: &Ty, cx: Context) {
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}
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_ => {}
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}
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visit::walk_ty(v, aty, cx);
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visit::walk_ty(cx, aty, ());
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}
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// Calls "any_missing" if any bounds were missing.
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pub fn check_builtin_bounds(cx: Context, ty: ty::t, bounds: ty::BuiltinBounds,
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pub fn check_builtin_bounds(cx: &Context, ty: ty::t, bounds: ty::BuiltinBounds,
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any_missing: &fn(ty::BuiltinBounds))
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{
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let kind = ty::type_contents(cx.tcx, ty);
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@ -373,7 +366,7 @@ pub fn check_builtin_bounds(cx: Context, ty: ty::t, bounds: ty::BuiltinBounds,
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}
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}
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pub fn check_typaram_bounds(cx: Context,
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pub fn check_typaram_bounds(cx: &Context,
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_type_parameter_id: NodeId,
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sp: Span,
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ty: ty::t,
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@ -389,7 +382,7 @@ pub fn check_typaram_bounds(cx: Context,
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}
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}
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pub fn check_freevar_bounds(cx: Context, sp: Span, ty: ty::t,
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pub fn check_freevar_bounds(cx: &Context, sp: Span, ty: ty::t,
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bounds: ty::BuiltinBounds, referenced_ty: Option<ty::t>)
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{
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do check_builtin_bounds(cx, ty, bounds) |missing| {
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@ -412,7 +405,7 @@ pub fn check_freevar_bounds(cx: Context, sp: Span, ty: ty::t,
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}
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}
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pub fn check_trait_cast_bounds(cx: Context, sp: Span, ty: ty::t,
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pub fn check_trait_cast_bounds(cx: &Context, sp: Span, ty: ty::t,
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bounds: ty::BuiltinBounds) {
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do check_builtin_bounds(cx, ty, bounds) |missing| {
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cx.tcx.sess.span_err(sp,
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@ -423,7 +416,7 @@ pub fn check_trait_cast_bounds(cx: Context, sp: Span, ty: ty::t,
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}
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}
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fn is_nullary_variant(cx: Context, ex: @Expr) -> bool {
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fn is_nullary_variant(cx: &Context, ex: @Expr) -> bool {
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match ex.node {
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ExprPath(_) => {
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match cx.tcx.def_map.get_copy(&ex.id) {
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@ -437,7 +430,7 @@ fn is_nullary_variant(cx: Context, ex: @Expr) -> bool {
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}
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}
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fn check_imm_free_var(cx: Context, def: Def, sp: Span) {
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fn check_imm_free_var(cx: &Context, def: Def, sp: Span) {
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match def {
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DefLocal(_, is_mutbl) => {
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if is_mutbl {
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@ -457,7 +450,7 @@ fn check_imm_free_var(cx: Context, def: Def, sp: Span) {
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}
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}
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fn check_copy(cx: Context, ty: ty::t, sp: Span, reason: &str) {
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fn check_copy(cx: &Context, ty: ty::t, sp: Span, reason: &str) {
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debug!("type_contents(%s)=%s",
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ty_to_str(cx.tcx, ty),
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ty::type_contents(cx.tcx, ty).to_str());
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@ -469,7 +462,7 @@ fn check_copy(cx: Context, ty: ty::t, sp: Span, reason: &str) {
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}
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}
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pub fn check_send(cx: Context, ty: ty::t, sp: Span) -> bool {
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pub fn check_send(cx: &Context, ty: ty::t, sp: Span) -> bool {
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if !ty::type_is_sendable(cx.tcx, ty) {
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cx.tcx.sess.span_err(
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sp, fmt!("value has non-sendable type `%s`",
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@ -525,7 +518,7 @@ pub fn check_durable(tcx: ty::ctxt, ty: ty::t, sp: Span) -> bool {
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///
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/// FIXME(#5723)---This code should probably move into regionck.
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pub fn check_cast_for_escaping_regions(
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cx: Context,
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cx: &Context,
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source: &Expr,
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target: &Expr)
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{
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@ -601,7 +594,7 @@ pub fn check_cast_for_escaping_regions(
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}
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}
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fn is_subregion_of(cx: Context, r_sub: ty::Region, r_sup: ty::Region) -> bool {
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fn is_subregion_of(cx: &Context, r_sub: ty::Region, r_sup: ty::Region) -> bool {
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cx.tcx.region_maps.is_subregion_of(r_sub, r_sup)
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}
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}
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