303 lines
11 KiB
Rust
303 lines
11 KiB
Rust
use crate::mir::interpret::ConstValue;
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use crate::mir::interpret::{LitToConstInput, Scalar};
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use crate::ty::{
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self, InlineConstSubsts, InlineConstSubstsParts, InternalSubsts, ParamEnv, ParamEnvAnd, Ty,
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TyCtxt, TypeFoldable,
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};
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use rustc_data_structures::intern::Interned;
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use rustc_errors::ErrorGuaranteed;
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use rustc_hir as hir;
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use rustc_hir::def_id::{DefId, LocalDefId};
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use rustc_macros::HashStable;
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use std::fmt;
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mod int;
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mod kind;
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mod valtree;
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pub use int::*;
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pub use kind::*;
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pub use valtree::*;
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/// Use this rather than `ConstS`, whenever possible.
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#[derive(Copy, Clone, PartialEq, Eq, PartialOrd, Ord, Hash, HashStable)]
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#[rustc_pass_by_value]
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pub struct Const<'tcx>(pub Interned<'tcx, ConstS<'tcx>>);
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impl<'tcx> fmt::Debug for Const<'tcx> {
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fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
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// This reflects what `Const` looked liked before `Interned` was
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// introduced. We print it like this to avoid having to update expected
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// output in a lot of tests.
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write!(f, "Const {{ ty: {:?}, val: {:?} }}", self.ty(), self.val())
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}
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}
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/// Typed constant value.
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#[derive(PartialEq, Eq, PartialOrd, Ord, Hash, HashStable, TyEncodable, TyDecodable)]
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pub struct ConstS<'tcx> {
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pub ty: Ty<'tcx>,
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pub val: ConstKind<'tcx>,
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}
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#[cfg(all(target_arch = "x86_64", target_pointer_width = "64"))]
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static_assert_size!(ConstS<'_>, 48);
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impl<'tcx> Const<'tcx> {
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#[inline]
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pub fn ty(self) -> Ty<'tcx> {
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self.0.ty
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}
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#[inline]
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pub fn val(self) -> ConstKind<'tcx> {
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self.0.val
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}
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/// Literals and const generic parameters are eagerly converted to a constant, everything else
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/// becomes `Unevaluated`.
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pub fn from_anon_const(tcx: TyCtxt<'tcx>, def_id: LocalDefId) -> Self {
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Self::from_opt_const_arg_anon_const(tcx, ty::WithOptConstParam::unknown(def_id))
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}
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#[instrument(skip(tcx), level = "debug")]
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pub fn from_opt_const_arg_anon_const(
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tcx: TyCtxt<'tcx>,
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def: ty::WithOptConstParam<LocalDefId>,
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) -> Self {
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debug!("Const::from_anon_const(def={:?})", def);
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let body_id = match tcx.hir().get_by_def_id(def.did) {
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hir::Node::AnonConst(ac) => ac.body,
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_ => span_bug!(
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tcx.def_span(def.did.to_def_id()),
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"from_anon_const can only process anonymous constants"
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),
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};
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let expr = &tcx.hir().body(body_id).value;
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debug!(?expr);
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let ty = tcx.type_of(def.def_id_for_type_of());
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match Self::try_eval_lit_or_param(tcx, ty, expr) {
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Some(v) => v,
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None => tcx.mk_const(ty::ConstS {
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val: ty::ConstKind::Unevaluated(ty::Unevaluated {
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def: def.to_global(),
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substs: InternalSubsts::identity_for_item(tcx, def.did.to_def_id()),
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promoted: None,
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}),
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ty,
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}),
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}
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}
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#[instrument(skip(tcx), level = "debug")]
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fn try_eval_lit_or_param(
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tcx: TyCtxt<'tcx>,
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ty: Ty<'tcx>,
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expr: &'tcx hir::Expr<'tcx>,
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) -> Option<Self> {
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// Unwrap a block, so that e.g. `{ P }` is recognised as a parameter. Const arguments
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// currently have to be wrapped in curly brackets, so it's necessary to special-case.
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let expr = match &expr.kind {
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hir::ExprKind::Block(block, _) if block.stmts.is_empty() && block.expr.is_some() => {
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block.expr.as_ref().unwrap()
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}
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_ => expr,
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};
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let lit_input = match expr.kind {
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hir::ExprKind::Lit(ref lit) => Some(LitToConstInput { lit: &lit.node, ty, neg: false }),
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hir::ExprKind::Unary(hir::UnOp::Neg, ref expr) => match expr.kind {
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hir::ExprKind::Lit(ref lit) => {
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Some(LitToConstInput { lit: &lit.node, ty, neg: true })
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}
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_ => None,
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},
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_ => None,
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};
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if let Some(lit_input) = lit_input {
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// If an error occurred, ignore that it's a literal and leave reporting the error up to
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// mir.
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match tcx.at(expr.span).lit_to_const(lit_input) {
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Ok(c) => return Some(c),
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Err(e) => {
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tcx.sess.delay_span_bug(
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expr.span,
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&format!("Const::from_anon_const: couldn't lit_to_const {:?}", e),
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);
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}
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}
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}
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use hir::{def::DefKind::ConstParam, def::Res, ExprKind, Path, QPath};
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match expr.kind {
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ExprKind::Path(QPath::Resolved(_, &Path { res: Res::Def(ConstParam, def_id), .. })) => {
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// Find the name and index of the const parameter by indexing the generics of
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// the parent item and construct a `ParamConst`.
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let hir_id = tcx.hir().local_def_id_to_hir_id(def_id.expect_local());
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let item_id = tcx.hir().get_parent_node(hir_id);
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let item_def_id = tcx.hir().local_def_id(item_id);
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let generics = tcx.generics_of(item_def_id.to_def_id());
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let index = generics.param_def_id_to_index[&def_id];
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let name = tcx.hir().name(hir_id);
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Some(tcx.mk_const(ty::ConstS {
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val: ty::ConstKind::Param(ty::ParamConst::new(index, name)),
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ty,
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}))
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}
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_ => None,
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}
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}
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pub fn from_inline_const(tcx: TyCtxt<'tcx>, def_id: LocalDefId) -> Self {
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debug!("Const::from_inline_const(def_id={:?})", def_id);
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let hir_id = tcx.hir().local_def_id_to_hir_id(def_id);
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let body_id = match tcx.hir().get(hir_id) {
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hir::Node::AnonConst(ac) => ac.body,
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_ => span_bug!(
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tcx.def_span(def_id.to_def_id()),
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"from_inline_const can only process anonymous constants"
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),
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};
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let expr = &tcx.hir().body(body_id).value;
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let ty = tcx.typeck(def_id).node_type(hir_id);
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let ret = match Self::try_eval_lit_or_param(tcx, ty, expr) {
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Some(v) => v,
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None => {
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let typeck_root_def_id = tcx.typeck_root_def_id(def_id.to_def_id());
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let parent_substs =
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tcx.erase_regions(InternalSubsts::identity_for_item(tcx, typeck_root_def_id));
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let substs =
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InlineConstSubsts::new(tcx, InlineConstSubstsParts { parent_substs, ty })
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.substs;
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tcx.mk_const(ty::ConstS {
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val: ty::ConstKind::Unevaluated(ty::Unevaluated {
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def: ty::WithOptConstParam::unknown(def_id).to_global(),
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substs,
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promoted: None,
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}),
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ty,
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})
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}
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};
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debug_assert!(!ret.has_free_regions());
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ret
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}
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/// Interns the given value as a constant.
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#[inline]
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pub fn from_value(tcx: TyCtxt<'tcx>, val: ConstValue<'tcx>, ty: Ty<'tcx>) -> Self {
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tcx.mk_const(ConstS { val: ConstKind::Value(val), ty })
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}
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#[inline]
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/// Interns the given scalar as a constant.
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pub fn from_scalar(tcx: TyCtxt<'tcx>, val: Scalar, ty: Ty<'tcx>) -> Self {
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Self::from_value(tcx, ConstValue::Scalar(val), ty)
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}
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#[inline]
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/// Creates a constant with the given integer value and interns it.
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pub fn from_bits(tcx: TyCtxt<'tcx>, bits: u128, ty: ParamEnvAnd<'tcx, Ty<'tcx>>) -> Self {
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let size = tcx
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.layout_of(ty)
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.unwrap_or_else(|e| panic!("could not compute layout for {:?}: {:?}", ty, e))
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.size;
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Self::from_scalar(tcx, Scalar::from_uint(bits, size), ty.value)
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}
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#[inline]
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/// Creates an interned zst constant.
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pub fn zero_sized(tcx: TyCtxt<'tcx>, ty: Ty<'tcx>) -> Self {
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Self::from_scalar(tcx, Scalar::ZST, ty)
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}
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#[inline]
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/// Creates an interned bool constant.
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pub fn from_bool(tcx: TyCtxt<'tcx>, v: bool) -> Self {
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Self::from_bits(tcx, v as u128, ParamEnv::empty().and(tcx.types.bool))
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}
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#[inline]
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/// Creates an interned usize constant.
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pub fn from_usize(tcx: TyCtxt<'tcx>, n: u64) -> Self {
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Self::from_bits(tcx, n as u128, ParamEnv::empty().and(tcx.types.usize))
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}
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#[inline]
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/// Attempts to evaluate the given constant to bits. Can fail to evaluate in the presence of
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/// generics (or erroneous code) or if the value can't be represented as bits (e.g. because it
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/// contains const generic parameters or pointers).
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pub fn try_eval_bits(
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self,
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tcx: TyCtxt<'tcx>,
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param_env: ParamEnv<'tcx>,
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ty: Ty<'tcx>,
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) -> Option<u128> {
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assert_eq!(self.ty(), ty);
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let size = tcx.layout_of(param_env.with_reveal_all_normalized(tcx).and(ty)).ok()?.size;
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// if `ty` does not depend on generic parameters, use an empty param_env
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self.val().eval(tcx, param_env).try_to_bits(size)
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}
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#[inline]
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pub fn try_eval_bool(self, tcx: TyCtxt<'tcx>, param_env: ParamEnv<'tcx>) -> Option<bool> {
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self.val().eval(tcx, param_env).try_to_bool()
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}
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#[inline]
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pub fn try_eval_usize(self, tcx: TyCtxt<'tcx>, param_env: ParamEnv<'tcx>) -> Option<u64> {
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self.val().eval(tcx, param_env).try_to_machine_usize(tcx)
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}
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#[inline]
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/// Tries to evaluate the constant if it is `Unevaluated`. If that doesn't succeed, return the
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/// unevaluated constant.
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pub fn eval(self, tcx: TyCtxt<'tcx>, param_env: ParamEnv<'tcx>) -> Const<'tcx> {
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if let Some(val) = self.val().try_eval(tcx, param_env) {
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match val {
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Ok(val) => Const::from_value(tcx, val, self.ty()),
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Err(ErrorGuaranteed { .. }) => tcx.const_error(self.ty()),
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}
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} else {
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self
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}
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}
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#[inline]
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/// Panics if the value cannot be evaluated or doesn't contain a valid integer of the given type.
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pub fn eval_bits(self, tcx: TyCtxt<'tcx>, param_env: ParamEnv<'tcx>, ty: Ty<'tcx>) -> u128 {
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self.try_eval_bits(tcx, param_env, ty)
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.unwrap_or_else(|| bug!("expected bits of {:#?}, got {:#?}", ty, self))
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}
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#[inline]
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/// Panics if the value cannot be evaluated or doesn't contain a valid `usize`.
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pub fn eval_usize(self, tcx: TyCtxt<'tcx>, param_env: ParamEnv<'tcx>) -> u64 {
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self.try_eval_usize(tcx, param_env)
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.unwrap_or_else(|| bug!("expected usize, got {:#?}", self))
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}
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}
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pub fn const_param_default<'tcx>(tcx: TyCtxt<'tcx>, def_id: DefId) -> Const<'tcx> {
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let default_def_id = match tcx.hir().get_by_def_id(def_id.expect_local()) {
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hir::Node::GenericParam(hir::GenericParam {
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kind: hir::GenericParamKind::Const { ty: _, default: Some(ac) },
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..
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}) => tcx.hir().local_def_id(ac.hir_id),
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_ => span_bug!(
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tcx.def_span(def_id),
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"`const_param_default` expected a generic parameter with a constant"
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),
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};
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Const::from_anon_const(tcx, default_def_id)
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}
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