提交 4ab162fb 编写于 作者: C Corey Farwell 提交者: GitHub

Rollup merge of #40104 - nagisa:mir-the-shiny, r=eddyb

[MIR] Rvalue::ty infallible + remove TypedConstVal

Feel free to r+ whenever there aren't any big bit-rot sensitive PRs in the queue.

r? @EddyB
......@@ -983,7 +983,7 @@ pub enum Rvalue<'tcx> {
Use(Operand<'tcx>),
/// [x; 32]
Repeat(Operand<'tcx>, TypedConstVal<'tcx>),
Repeat(Operand<'tcx>, ConstUsize),
/// &x or &mut x
Ref(&'tcx Region, BorrowKind, Lvalue<'tcx>),
......@@ -1038,7 +1038,8 @@ pub enum CastKind {
#[derive(Clone, Debug, PartialEq, Eq, RustcEncodable, RustcDecodable)]
pub enum AggregateKind<'tcx> {
Array,
/// The type is of the element
Array(Ty<'tcx>),
Tuple,
/// The second field is variant number (discriminant), it's equal to 0
/// for struct and union expressions. The fourth field is active field
......@@ -1135,7 +1136,7 @@ fn fmt_tuple(fmt: &mut Formatter, lvs: &[Operand]) -> fmt::Result {
}
match *kind {
AggregateKind::Array => write!(fmt, "{:?}", lvs),
AggregateKind::Array(_) => write!(fmt, "{:?}", lvs),
AggregateKind::Tuple => {
match lvs.len() {
......@@ -1202,19 +1203,6 @@ pub struct Constant<'tcx> {
pub literal: Literal<'tcx>,
}
#[derive(Clone, RustcEncodable, RustcDecodable)]
pub struct TypedConstVal<'tcx> {
pub ty: Ty<'tcx>,
pub span: Span,
pub value: ConstUsize,
}
impl<'tcx> Debug for TypedConstVal<'tcx> {
fn fmt(&self, fmt: &mut Formatter) -> fmt::Result {
write!(fmt, "const {}", ConstInt::Usize(self.value))
}
}
newtype_index!(Promoted, "promoted");
#[derive(Clone, PartialEq, Eq, Hash, RustcEncodable, RustcDecodable)]
......
......@@ -134,46 +134,45 @@ pub fn ty<'a, 'gcx>(&self, mir: &Mir<'tcx>, tcx: TyCtxt<'a, 'gcx, 'tcx>) -> Lval
}
impl<'tcx> Rvalue<'tcx> {
pub fn ty<'a, 'gcx>(&self, mir: &Mir<'tcx>, tcx: TyCtxt<'a, 'gcx, 'tcx>) -> Option<Ty<'tcx>>
pub fn ty<'a, 'gcx>(&self, mir: &Mir<'tcx>, tcx: TyCtxt<'a, 'gcx, 'tcx>) -> Ty<'tcx>
{
match *self {
Rvalue::Use(ref operand) => Some(operand.ty(mir, tcx)),
Rvalue::Use(ref operand) => operand.ty(mir, tcx),
Rvalue::Repeat(ref operand, ref count) => {
let op_ty = operand.ty(mir, tcx);
let count = count.value.as_u64(tcx.sess.target.uint_type);
let count = count.as_u64(tcx.sess.target.uint_type);
assert_eq!(count as usize as u64, count);
Some(tcx.mk_array(op_ty, count as usize))
tcx.mk_array(op_ty, count as usize)
}
Rvalue::Ref(reg, bk, ref lv) => {
let lv_ty = lv.ty(mir, tcx).to_ty(tcx);
Some(tcx.mk_ref(reg,
tcx.mk_ref(reg,
ty::TypeAndMut {
ty: lv_ty,
mutbl: bk.to_mutbl_lossy()
}
))
)
}
Rvalue::Len(..) => Some(tcx.types.usize),
Rvalue::Cast(.., ty) => Some(ty),
Rvalue::Len(..) => tcx.types.usize,
Rvalue::Cast(.., ty) => ty,
Rvalue::BinaryOp(op, ref lhs, ref rhs) => {
let lhs_ty = lhs.ty(mir, tcx);
let rhs_ty = rhs.ty(mir, tcx);
Some(op.ty(tcx, lhs_ty, rhs_ty))
op.ty(tcx, lhs_ty, rhs_ty)
}
Rvalue::CheckedBinaryOp(op, ref lhs, ref rhs) => {
let lhs_ty = lhs.ty(mir, tcx);
let rhs_ty = rhs.ty(mir, tcx);
let ty = op.ty(tcx, lhs_ty, rhs_ty);
let ty = tcx.intern_tup(&[ty, tcx.types.bool], false);
Some(ty)
tcx.intern_tup(&[ty, tcx.types.bool], false)
}
Rvalue::UnaryOp(_, ref operand) => {
Some(operand.ty(mir, tcx))
operand.ty(mir, tcx)
}
Rvalue::Discriminant(ref lval) => {
let ty = lval.ty(mir, tcx).to_ty(tcx);
if let ty::TyAdt(adt_def, _) = ty.sty {
Some(adt_def.repr.discr_type().to_ty(tcx))
adt_def.repr.discr_type().to_ty(tcx)
} else {
// Undefined behaviour, bug for now; may want to return something for
// the `discriminant` intrinsic later.
......@@ -181,29 +180,24 @@ pub fn ty<'a, 'gcx>(&self, mir: &Mir<'tcx>, tcx: TyCtxt<'a, 'gcx, 'tcx>) -> Opti
}
}
Rvalue::Box(t) => {
Some(tcx.mk_box(t))
tcx.mk_box(t)
}
Rvalue::Aggregate(ref ak, ref ops) => {
match *ak {
AggregateKind::Array => {
if let Some(operand) = ops.get(0) {
let ty = operand.ty(mir, tcx);
Some(tcx.mk_array(ty, ops.len()))
} else {
None
}
AggregateKind::Array(ty) => {
tcx.mk_array(ty, ops.len())
}
AggregateKind::Tuple => {
Some(tcx.mk_tup(
tcx.mk_tup(
ops.iter().map(|op| op.ty(mir, tcx)),
false
))
)
}
AggregateKind::Adt(def, _, substs, _) => {
Some(tcx.item_type(def.did).subst(tcx, substs))
tcx.item_type(def.did).subst(tcx, substs)
}
AggregateKind::Closure(did, substs) => {
Some(tcx.mk_closure_from_closure_substs(did, substs))
tcx.mk_closure_from_closure_substs(did, substs)
}
}
}
......
......@@ -235,12 +235,6 @@ fn visit_const_usize(&mut self,
self.super_const_usize(const_usize);
}
fn visit_typed_const_val(&mut self,
val: & $($mutability)* TypedConstVal<'tcx>,
location: Location) {
self.super_typed_const_val(val, location);
}
fn visit_local_decl(&mut self,
local_decl: & $($mutability)* LocalDecl<'tcx>) {
self.super_local_decl(local_decl);
......@@ -467,9 +461,9 @@ fn super_rvalue(&mut self,
}
Rvalue::Repeat(ref $($mutability)* value,
ref $($mutability)* typed_const_val) => {
ref $($mutability)* length) => {
self.visit_operand(value, location);
self.visit_typed_const_val(typed_const_val, location);
self.visit_const_usize(length, location);
}
Rvalue::Ref(r, bk, ref $($mutability)* path) => {
......@@ -515,7 +509,8 @@ fn super_rvalue(&mut self,
Rvalue::Aggregate(ref $($mutability)* kind,
ref $($mutability)* operands) => {
match *kind {
AggregateKind::Array => {
AggregateKind::Array(ref $($mutability)* ty) => {
self.visit_ty(ty);
}
AggregateKind::Tuple => {
}
......@@ -647,20 +642,6 @@ fn super_constant(&mut self,
self.visit_literal(literal, location);
}
fn super_typed_const_val(&mut self,
constant: & $($mutability)* TypedConstVal<'tcx>,
location: Location) {
let TypedConstVal {
ref $($mutability)* span,
ref $($mutability)* ty,
ref $($mutability)* value,
} = *constant;
self.visit_span(span);
self.visit_ty(ty);
self.visit_const_usize(value, location);
}
fn super_literal(&mut self,
literal: & $($mutability)* Literal<'tcx>,
location: Location) {
......
......@@ -148,12 +148,13 @@ fn expr_as_rvalue(&mut self,
// to the same MIR as `let x = ();`.
// first process the set of fields
let el_ty = expr.ty.sequence_element_type(this.hir.tcx());
let fields: Vec<_> =
fields.into_iter()
.map(|f| unpack!(block = this.as_operand(block, f)))
.collect();
block.and(Rvalue::Aggregate(AggregateKind::Array, fields))
block.and(Rvalue::Aggregate(AggregateKind::Array(el_ty), fields))
}
ExprKind::Tuple { fields } => { // see (*) above
// first process the set of fields
......
......@@ -602,11 +602,7 @@ fn make_mirror_unadjusted<'a, 'gcx, 'tcx>(cx: &mut Cx<'a, 'gcx, 'tcx>,
ExprKind::Repeat {
value: v.to_ref(),
count: TypedConstVal {
ty: cx.tcx.types.usize,
span: c.span,
value: count
}
count: count,
}
}
hir::ExprRet(ref v) => ExprKind::Return { value: v.to_ref() },
......
......@@ -14,7 +14,8 @@
//! unit-tested and separated from the Rust source and compiler data
//! structures.
use rustc::mir::{BinOp, BorrowKind, Field, Literal, UnOp, TypedConstVal};
use rustc_const_math::ConstUsize;
use rustc::mir::{BinOp, BorrowKind, Field, Literal, UnOp};
use rustc::hir::def_id::DefId;
use rustc::middle::region::CodeExtent;
use rustc::ty::subst::Substs;
......@@ -219,7 +220,7 @@ pub enum ExprKind<'tcx> {
},
Repeat {
value: ExprRef<'tcx>,
count: TypedConstVal<'tcx>,
count: ConstUsize,
},
Array {
fields: Vec<ExprRef<'tcx>>,
......
......@@ -752,7 +752,7 @@ fn visit_rvalue(&mut self, rvalue: &Rvalue<'tcx>, location: Location) {
}
if Some(def.did) == self.tcx.lang_items.unsafe_cell_type() {
let ty = rvalue.ty(self.mir, self.tcx).unwrap();
let ty = rvalue.ty(self.mir, self.tcx);
self.add_type(ty);
assert!(self.qualif.intersects(Qualif::MUTABLE_INTERIOR));
// Even if the value inside may not need dropping,
......
......@@ -83,9 +83,8 @@ fn visit_constant(&mut self, constant: &Constant<'tcx>, location: Location) {
fn visit_rvalue(&mut self, rvalue: &Rvalue<'tcx>, location: Location) {
self.super_rvalue(rvalue, location);
if let Some(ty) = rvalue.ty(self.mir, self.tcx()) {
self.sanitize_type(rvalue, ty);
}
let rval_ty = rvalue.ty(self.mir, self.tcx());
self.sanitize_type(rvalue, rval_ty);
}
fn visit_mir(&mut self, mir: &Mir<'tcx>) {
......@@ -356,14 +355,10 @@ fn check_stmt(&mut self, mir: &Mir<'tcx>, stmt: &Statement<'tcx>) {
StatementKind::Assign(ref lv, ref rv) => {
let lv_ty = lv.ty(mir, tcx).to_ty(tcx);
let rv_ty = rv.ty(mir, tcx);
if let Some(rv_ty) = rv_ty {
if let Err(terr) = self.sub_types(rv_ty, lv_ty) {
span_mirbug!(self, stmt, "bad assignment ({:?} = {:?}): {:?}",
lv_ty, rv_ty, terr);
}
if let Err(terr) = self.sub_types(rv_ty, lv_ty) {
span_mirbug!(self, stmt, "bad assignment ({:?} = {:?}): {:?}",
lv_ty, rv_ty, terr);
}
// FIXME: rvalue with undeterminable type - e.g. AggregateKind::Array branch that
// returns `None`.
}
StatementKind::SetDiscriminant{ ref lvalue, variant_index } => {
let lvalue_type = lvalue.ty(mir, tcx).to_ty(tcx);
......
......@@ -19,7 +19,7 @@
use rustc::mir::{Lvalue, LvalueElem, LvalueProjection};
use rustc::mir::{Mir, Operand, ProjectionElem};
use rustc::mir::{Rvalue, SourceInfo, Statement, StatementKind};
use rustc::mir::{Terminator, TerminatorKind, TypedConstVal, VisibilityScope, VisibilityScopeData};
use rustc::mir::{Terminator, TerminatorKind, VisibilityScope, VisibilityScopeData};
use rustc::mir::visit as mir_visit;
use rustc::mir::visit::Visitor;
use rustc::ty::{ClosureSubsts, TyCtxt};
......@@ -191,7 +191,7 @@ fn visit_rvalue(&mut self,
// AggregateKind is not distinguished by visit API, so
// record it. (`super_rvalue` handles `_operands`.)
self.record(match *kind {
AggregateKind::Array => "AggregateKind::Array",
AggregateKind::Array(_) => "AggregateKind::Array",
AggregateKind::Tuple => "AggregateKind::Tuple",
AggregateKind::Adt(..) => "AggregateKind::Adt",
AggregateKind::Closure(..) => "AggregateKind::Closure",
......@@ -297,13 +297,6 @@ fn visit_const_usize(&mut self,
self.super_const_usize(const_usize);
}
fn visit_typed_const_val(&mut self,
val: &TypedConstVal<'tcx>,
location: Location) {
self.record("TypedConstVal", val);
self.super_typed_const_val(val, location);
}
fn visit_local_decl(&mut self,
local_decl: &LocalDecl<'tcx>) {
self.record("LocalDecl", local_decl);
......
......@@ -529,7 +529,7 @@ fn const_rvalue(&self, rvalue: &mir::Rvalue<'tcx>,
mir::Rvalue::Repeat(ref elem, ref count) => {
let elem = self.const_operand(elem, span)?;
let size = count.value.as_u64(tcx.sess.target.uint_type);
let size = count.as_u64(tcx.sess.target.uint_type);
let fields = vec![elem.llval; size as usize];
self.const_array(dest_ty, &fields)
}
......@@ -548,7 +548,7 @@ fn const_rvalue(&self, rvalue: &mir::Rvalue<'tcx>,
failure?;
match *kind {
mir::AggregateKind::Array => {
mir::AggregateKind::Array(_) => {
self.const_array(dest_ty, &fields)
}
mir::AggregateKind::Adt(..) |
......
......@@ -95,7 +95,7 @@ pub fn trans_rvalue(&mut self,
mir::Rvalue::Repeat(ref elem, ref count) => {
let tr_elem = self.trans_operand(&bcx, elem);
let size = count.value.as_u64(bcx.tcx().sess.target.uint_type);
let size = count.as_u64(bcx.tcx().sess.target.uint_type);
let size = C_uint(bcx.ccx, size);
let base = base::get_dataptr(&bcx, dest.llval);
tvec::slice_for_each(&bcx, base, tr_elem.ty, size, |bcx, llslot| {
......@@ -435,7 +435,7 @@ pub fn trans_rvalue_operand(&mut self,
mir::Rvalue::Discriminant(ref lvalue) => {
let discr_lvalue = self.trans_lvalue(&bcx, lvalue);
let enum_ty = discr_lvalue.ty.to_ty(bcx.tcx());
let discr_ty = rvalue.ty(&*self.mir, bcx.tcx()).unwrap();
let discr_ty = rvalue.ty(&*self.mir, bcx.tcx());
let discr_type = type_of::immediate_type_of(bcx.ccx, discr_ty);
let discr = adt::trans_get_discr(&bcx, enum_ty, discr_lvalue.llval,
discr_lvalue.alignment, Some(discr_type), true);
......
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