提交 81e5c1ff 编写于 作者: J Jared Roesch

Remove the mostly unecessary ParamBounds struct

上级 e749f724
......@@ -195,15 +195,6 @@ pub fn parse_substs_data<'tcx, F>(data: &[u8], crate_num: ast::CrateNum, pos: us
parse_substs(&mut st, conv)
}
pub fn parse_bounds_data<'tcx, F>(data: &[u8], crate_num: ast::CrateNum,
pos: usize, tcx: &ty::ctxt<'tcx>, conv: F)
-> ty::ParamBounds<'tcx> where
F: FnMut(DefIdSource, ast::DefId) -> ast::DefId,
{
let mut st = parse_state_from_data(data, crate_num, pos, tcx);
parse_bounds(&mut st, conv)
}
pub fn parse_existential_bounds_data<'tcx, F>(data: &[u8], crate_num: ast::CrateNum,
pos: usize, tcx: &ty::ctxt<'tcx>, conv: F)
-> ty::ExistentialBounds<'tcx> where
......@@ -879,11 +870,23 @@ fn parse_existential_bounds_<'a,'tcx, F>(st: &mut PState<'a,'tcx>,
-> ty::ExistentialBounds<'tcx> where
F: FnMut(DefIdSource, ast::DefId) -> ast::DefId,
{
let ty::ParamBounds { trait_bounds, mut region_bounds, builtin_bounds, projection_bounds } =
parse_bounds_(st, conv);
assert_eq!(region_bounds.len(), 1);
assert_eq!(trait_bounds.len(), 0);
let region_bound = region_bounds.pop().unwrap();
let builtin_bounds = parse_builtin_bounds_(st, conv);
let region_bound = parse_region_(st, conv);
let mut projection_bounds = Vec::new();
loop {
match next(st) {
'P' => {
projection_bounds.push(
ty::Binder(parse_projection_predicate_(st, conv)));
}
'.' => { break; }
c => {
panic!("parse_bounds: bad bounds ('{}')", c)
}
}
}
return ty::ExistentialBounds { region_bound: region_bound,
builtin_bounds: builtin_bounds,
projection_bounds: projection_bounds };
......@@ -923,60 +926,3 @@ fn parse_builtin_bounds_<F>(st: &mut PState, _conv: &mut F) -> ty::BuiltinBounds
}
}
}
fn parse_bounds<'a, 'tcx, F>(st: &mut PState<'a, 'tcx>, mut conv: F)
-> ty::ParamBounds<'tcx> where
F: FnMut(DefIdSource, ast::DefId) -> ast::DefId,
{
parse_bounds_(st, &mut conv)
}
fn parse_bounds_<'a, 'tcx, F>(st: &mut PState<'a, 'tcx>, conv: &mut F)
-> ty::ParamBounds<'tcx> where
F: FnMut(DefIdSource, ast::DefId) -> ast::DefId,
{
let builtin_bounds = parse_builtin_bounds_(st, conv);
let region_bounds = parse_region_bounds_(st, conv);
let mut param_bounds = ty::ParamBounds {
region_bounds: region_bounds,
builtin_bounds: builtin_bounds,
trait_bounds: Vec::new(),
projection_bounds: Vec::new(),
};
loop {
match next(st) {
'I' => {
param_bounds.trait_bounds.push(
ty::Binder(parse_trait_ref_(st, conv)));
}
'P' => {
param_bounds.projection_bounds.push(
ty::Binder(parse_projection_predicate_(st, conv)));
}
'.' => {
return param_bounds;
}
c => {
panic!("parse_bounds: bad bounds ('{}')", c)
}
}
}
}
fn parse_region_bounds_<'a, 'tcx, F>(st: &mut PState<'a, 'tcx>, conv: &mut F)
-> Vec<ty::Region> where
F: FnMut(DefIdSource, ast::DefId) -> ast::DefId,
{
let mut region_bounds = Vec::new();
loop {
match next(st) {
'R' => { region_bounds.push(parse_region_(st, conv)); }
'.' => { return region_bounds; }
c => { panic!("parse_bounds: bad bounds ('{}')", c); }
}
}
}
......@@ -380,23 +380,9 @@ pub fn enc_builtin_bounds(w: &mut Encoder, _cx: &ctxt, bs: &ty::BuiltinBounds) {
pub fn enc_existential_bounds<'a,'tcx>(w: &mut Encoder,
cx: &ctxt<'a,'tcx>,
bs: &ty::ExistentialBounds<'tcx>) {
let param_bounds = ty::ParamBounds { trait_bounds: vec!(),
region_bounds: vec!(bs.region_bound),
builtin_bounds: bs.builtin_bounds,
projection_bounds: bs.projection_bounds.clone() };
enc_bounds(w, cx, &param_bounds);
}
pub fn enc_bounds<'a, 'tcx>(w: &mut Encoder, cx: &ctxt<'a, 'tcx>,
bs: &ty::ParamBounds<'tcx>) {
enc_builtin_bounds(w, cx, &bs.builtin_bounds);
enc_region_bounds(w, cx, &bs.region_bounds);
for tp in &bs.trait_bounds {
mywrite!(w, "I");
enc_trait_ref(w, cx, tp.0);
}
enc_region(w, cx, bs.region_bound);
for tp in &bs.projection_bounds {
mywrite!(w, "P");
......
......@@ -13,7 +13,7 @@
use middle::infer::{InferCtxt, GenericKind};
use middle::subst::Substs;
use middle::traits;
use middle::ty::{self, RegionEscape, ToPolyTraitRef, Ty};
use middle::ty::{self, RegionEscape, ToPolyTraitRef, AsPredicate, Ty};
use middle::ty_fold::{TypeFoldable, TypeFolder};
use syntax::ast;
......@@ -444,13 +444,8 @@ pub fn object_region_bounds<'tcx>(
let substs = tcx.mk_substs(principal.0.substs.with_self_ty(open_ty));
let trait_refs = vec!(ty::Binder(ty::TraitRef::new(principal.0.def_id, substs)));
let param_bounds = ty::ParamBounds {
region_bounds: Vec::new(),
builtin_bounds: others,
trait_bounds: trait_refs,
projection_bounds: Vec::new(), // not relevant to computing region bounds
};
let mut predicates = others.to_predicates(tcx, open_ty);
predicates.extend(trait_refs.iter().map(|t| t.as_predicate()));
let predicates = ty::predicates(tcx, open_ty, &param_bounds);
ty::required_region_bounds(tcx, open_ty, predicates)
}
......@@ -1847,21 +1847,8 @@ pub enum type_err<'tcx> {
terr_projection_bounds_length(expected_found<usize>),
}
/// Bounds suitable for a named type parameter like `A` in `fn foo<A>`
/// as well as the existential type parameter in an object type.
#[derive(PartialEq, Eq, Hash, Clone)]
pub struct ParamBounds<'tcx> {
pub region_bounds: Vec<ty::Region>,
pub builtin_bounds: BuiltinBounds,
pub trait_bounds: Vec<PolyTraitRef<'tcx>>,
pub projection_bounds: Vec<PolyProjectionPredicate<'tcx>>,
}
/// Bounds suitable for an existentially quantified type parameter
/// such as those that appear in object types or closure types. The
/// major difference between this case and `ParamBounds` is that
/// general purpose trait bounds are omitted and there must be
/// *exactly one* region.
/// such as those that appear in object types or closure types.
#[derive(PartialEq, Eq, Hash, Clone)]
pub struct ExistentialBounds<'tcx> {
pub region_bound: ty::Region,
......@@ -1873,13 +1860,24 @@ pub struct ExistentialBounds<'tcx> {
pub struct BuiltinBounds(EnumSet<BuiltinBound>);
impl BuiltinBounds {
pub fn empty() -> BuiltinBounds {
pub fn empty() -> BuiltinBounds {
BuiltinBounds(EnumSet::new())
}
pub fn iter(&self) -> enum_set::Iter<BuiltinBound> {
self.into_iter()
}
pub fn to_predicates<'tcx>(&self,
tcx: &ty::ctxt<'tcx>,
self_ty: Ty<'tcx>) -> Vec<Predicate<'tcx>> {
self.iter().filter_map(|builtin_bound|
match traits::trait_ref_for_builtin_bound(tcx, builtin_bound, self_ty) {
Ok(trait_ref) => Some(trait_ref.as_predicate()),
Err(ErrorReported) => { None }
}
).collect()
}
}
impl ops::Deref for BuiltinBounds {
......@@ -3703,17 +3701,6 @@ pub fn is_noop(&self) -> bool {
}
}
impl<'tcx> ParamBounds<'tcx> {
pub fn empty() -> ParamBounds<'tcx> {
ParamBounds {
builtin_bounds: BuiltinBounds::empty(),
trait_bounds: Vec::new(),
region_bounds: Vec::new(),
projection_bounds: Vec::new(),
}
}
}
// Type utilities
pub fn type_is_nil(ty: Ty) -> bool {
......@@ -6142,39 +6129,6 @@ pub fn lookup_super_predicates<'tcx>(cx: &ctxt<'tcx>, did: ast::DefId)
|| csearch::get_super_predicates(cx, did))
}
pub fn predicates<'tcx>(
tcx: &ctxt<'tcx>,
param_ty: Ty<'tcx>,
bounds: &ParamBounds<'tcx>)
-> Vec<Predicate<'tcx>>
{
let mut vec = Vec::new();
for builtin_bound in &bounds.builtin_bounds {
match traits::trait_ref_for_builtin_bound(tcx, builtin_bound, param_ty) {
Ok(trait_ref) => { vec.push(trait_ref.as_predicate()); }
Err(ErrorReported) => { }
}
}
for &region_bound in &bounds.region_bounds {
// account for the binder being introduced below; no need to shift `param_ty`
// because, at present at least, it can only refer to early-bound regions
let region_bound = ty_fold::shift_region(region_bound, 1);
vec.push(ty::Binder(ty::OutlivesPredicate(param_ty, region_bound)).as_predicate());
}
for bound_trait_ref in &bounds.trait_bounds {
vec.push(bound_trait_ref.as_predicate());
}
for projection in &bounds.projection_bounds {
vec.push(projection.as_predicate());
}
vec
}
/// Get the attributes of a definition.
pub fn get_attrs<'tcx>(tcx: &'tcx ctxt, did: DefId)
-> Cow<'tcx, [ast::Attribute]> {
......
......@@ -350,17 +350,6 @@ fn fold_with<F: TypeFolder<'tcx>>(&self, folder: &mut F) -> ty::ExistentialBound
}
}
impl<'tcx> TypeFoldable<'tcx> for ty::ParamBounds<'tcx> {
fn fold_with<F: TypeFolder<'tcx>>(&self, folder: &mut F) -> ty::ParamBounds<'tcx> {
ty::ParamBounds {
region_bounds: self.region_bounds.fold_with(folder),
builtin_bounds: self.builtin_bounds.fold_with(folder),
trait_bounds: self.trait_bounds.fold_with(folder),
projection_bounds: self.projection_bounds.fold_with(folder),
}
}
}
impl<'tcx> TypeFoldable<'tcx> for ty::TypeParameterDef<'tcx> {
fn fold_with<F: TypeFolder<'tcx>>(&self, folder: &mut F) -> ty::TypeParameterDef<'tcx> {
ty::TypeParameterDef {
......
......@@ -347,23 +347,6 @@ fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
}
}
impl<'tcx> fmt::Debug for ty::ParamBounds<'tcx> {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
try!(write!(f, "{:?}", self.builtin_bounds));
let mut bounds = self.trait_bounds.iter();
if self.builtin_bounds.is_empty() {
if let Some(bound) = bounds.next() {
try!(write!(f, "{:?}", bound));
}
}
for bound in bounds {
try!(write!(f, " + {:?}", bound));
}
Ok(())
}
}
impl<'tcx> fmt::Debug for ty::TraitRef<'tcx> {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
// when printing out the debug representation, we don't need
......@@ -539,22 +522,6 @@ fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
}
}
impl<'tcx> fmt::Display for ty::ParamBounds<'tcx> {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
try!(write!(f, "{}", self.builtin_bounds));
let mut bounds = self.trait_bounds.iter();
if self.builtin_bounds.is_empty() {
if let Some(bound) = bounds.next() {
try!(write!(f, "{}", bound));
}
}
for bound in bounds {
try!(write!(f, " + {}", bound));
}
Ok(())
}
}
impl<'tcx> fmt::Debug for ty::ExistentialBounds<'tcx> {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
let mut empty = true;
......
......@@ -56,7 +56,8 @@
use middle::privacy::{AllPublic, LastMod};
use middle::subst::{FnSpace, TypeSpace, SelfSpace, Subst, Substs};
use middle::traits;
use middle::ty::{self, RegionEscape, Ty};
use middle::ty::{self, RegionEscape, Ty, AsPredicate};
use middle::ty_fold;
use rscope::{self, UnelidableRscope, RegionScope, ElidableRscope, ExplicitRscope,
ObjectLifetimeDefaultRscope, ShiftedRscope, BindingRscope};
use util::common::{ErrorReported, FN_OUTPUT_NAME};
......@@ -2191,3 +2192,47 @@ fn report_lifetime_number_error(tcx: &ty::ctxt, span: Span, number: usize, expec
"wrong number of lifetime parameters: expected {}, found {}",
expected, number);
}
// A helper struct for conveniently grouping a set of bounds which we pass to
// and return from functions in multiple places.
#[derive(PartialEq, Eq, Clone, Debug)]
pub struct Bounds<'tcx> {
pub region_bounds: Vec<ty::Region>,
pub builtin_bounds: ty::BuiltinBounds,
pub trait_bounds: Vec<ty::PolyTraitRef<'tcx>>,
pub projection_bounds: Vec<ty::PolyProjectionPredicate<'tcx>>,
}
impl<'tcx> Bounds<'tcx> {
pub fn predicates(&self,
tcx: &ty::ctxt<'tcx>,
param_ty: Ty<'tcx>)
-> Vec<ty::Predicate<'tcx>>
{
let mut vec = Vec::new();
for builtin_bound in &self.builtin_bounds {
match traits::trait_ref_for_builtin_bound(tcx, builtin_bound, param_ty) {
Ok(trait_ref) => { vec.push(trait_ref.as_predicate()); }
Err(ErrorReported) => { }
}
}
for &region_bound in &self.region_bounds {
// account for the binder being introduced below; no need to shift `param_ty`
// because, at present at least, it can only refer to early-bound regions
let region_bound = ty_fold::shift_region(region_bound, 1);
vec.push(ty::Binder(ty::OutlivesPredicate(param_ty, region_bound)).as_predicate());
}
for bound_trait_ref in &self.trait_bounds {
vec.push(bound_trait_ref.as_predicate());
}
for projection in &self.projection_bounds {
vec.push(projection.as_predicate());
}
vec
}
}
......@@ -1178,9 +1178,13 @@ fn ensure_super_predicates_step(ccx: &CrateCtxt,
// Convert the bounds that follow the colon, e.g. `Bar+Zed` in `trait Foo : Bar+Zed`.
let self_param_ty = ty::mk_self_type(tcx);
let superbounds1 = compute_bounds(&ccx.icx(scope), self_param_ty, bounds,
SizedByDefault::No, item.span);
let superbounds1 = ty::predicates(tcx, self_param_ty, &superbounds1);
let superbounds1 = compute_bounds(&ccx.icx(scope),
self_param_ty,
bounds,
SizedByDefault::No,
item.span);
let superbounds1 = superbounds1.predicates(tcx, self_param_ty);
// Convert any explicit superbounds in the where clause,
// e.g. `trait Foo where Self : Bar`:
......@@ -1395,7 +1399,7 @@ fn predicates_for_associated_types<'a, 'tcx>(ccx: &CrateCtxt<'a, 'tcx>,
SizedByDefault::Yes,
trait_item.span);
ty::predicates(ccx.tcx, assoc_ty, &bounds).into_iter()
bounds.predicates(ccx.tcx, assoc_ty).into_iter()
}).collect()
}
}
......@@ -1743,7 +1747,7 @@ fn ty_generic_predicates<'a,'tcx>(ccx: &CrateCtxt<'a,'tcx>,
&param.bounds,
SizedByDefault::Yes,
param.span);
let predicates = ty::predicates(ccx.tcx, param_ty, &bounds);
let predicates = bounds.predicates(ccx.tcx, param_ty);
result.predicates.extend(space, predicates.into_iter());
}
......@@ -1989,23 +1993,24 @@ fn compute_bounds<'tcx>(astconv: &AstConv<'tcx>,
ast_bounds: &[ast::TyParamBound],
sized_by_default: SizedByDefault,
span: Span)
-> ty::ParamBounds<'tcx>
-> astconv::Bounds<'tcx>
{
let mut param_bounds = conv_param_bounds(astconv,
span,
param_ty,
ast_bounds);
let mut bounds =
conv_param_bounds(astconv,
span,
param_ty,
ast_bounds);
if let SizedByDefault::Yes = sized_by_default {
add_unsized_bound(astconv,
&mut param_bounds.builtin_bounds,
&mut bounds.builtin_bounds,
ast_bounds,
span);
}
param_bounds.trait_bounds.sort_by(|a,b| a.def_id().cmp(&b.def_id()));
bounds.trait_bounds.sort_by(|a,b| a.def_id().cmp(&b.def_id()));
param_bounds
bounds
}
/// Converts a specific TyParamBound from the AST into a set of
......@@ -2055,7 +2060,7 @@ fn conv_param_bounds<'a,'tcx>(astconv: &AstConv<'tcx>,
span: Span,
param_ty: ty::Ty<'tcx>,
ast_bounds: &[ast::TyParamBound])
-> ty::ParamBounds<'tcx>
-> astconv::Bounds<'tcx>
{
let tcx = astconv.tcx();
let astconv::PartitionedBounds {
......@@ -2079,7 +2084,7 @@ fn conv_param_bounds<'a,'tcx>(astconv: &AstConv<'tcx>,
.map(|r| ast_region_to_region(tcx, r))
.collect();
ty::ParamBounds {
astconv::Bounds {
region_bounds: region_bounds,
builtin_bounds: builtin_bounds,
trait_bounds: trait_bounds,
......
......@@ -716,19 +716,6 @@ fn clean(&self, cx: &DocContext) -> TyParamBound {
}
}
impl<'tcx> Clean<Vec<TyParamBound>> for ty::ParamBounds<'tcx> {
fn clean(&self, cx: &DocContext) -> Vec<TyParamBound> {
let mut v = Vec::new();
for t in &self.trait_bounds {
v.push(t.clean(cx));
}
for r in self.region_bounds.iter().filter_map(|r| r.clean(cx)) {
v.push(RegionBound(r));
}
v
}
}
impl<'tcx> Clean<Option<Vec<TyParamBound>>> for subst::Substs<'tcx> {
fn clean(&self, cx: &DocContext) -> Option<Vec<TyParamBound>> {
let mut v = Vec::new();
......
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