Rollup merge of #143088 - firefighterduck:improve-doc-discr-tag, r=RalfJung
Improve documentation of `TagEncoding` This PR is follow-up from the [discussion here](https://rust-lang.zulipchat.com/#narrow/channel/182449-t-compiler.2Fhelp/topic/.E2.9C.94.20VariantId.3DDiscriminant.20when.20tag.20is.20niche.20encoded.3F/with/524384295). It aims at making the `TagEncoding` documentation less ambiguous and more detailed with references to relevant implementation sides. It especially clears up the ambiguous use of discriminant/variant index, which sparked the discussion referenced above. PS: While working with layout data, I somehow ended up looking at the docs for `FakeBorrowKind` and noticed that the one example was not in a doc comment. I hope that this is minor enough of a fix for it to be okay in this otherwise unrelated PR.
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@@ -1592,24 +1592,33 @@ pub enum TagEncoding<VariantIdx: Idx> {
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/// (so converting the tag to the discriminant can require sign extension).
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/// (so converting the tag to the discriminant can require sign extension).
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Direct,
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Direct,
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/// Niche (values invalid for a type) encoding the discriminant:
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/// Niche (values invalid for a type) encoding the discriminant.
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/// Discriminant and variant index coincide.
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/// Note that for this encoding, the discriminant and variant index of each variant coincide!
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/// The variant `untagged_variant` contains a niche at an arbitrary
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/// This invariant is codified as part of [`layout_sanity_check`](../rustc_ty_utils/layout/invariant/fn.layout_sanity_check.html).
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/// offset (field `tag_field` of the enum), which for a variant with
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/// discriminant `d` is set to
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/// `(d - niche_variants.start).wrapping_add(niche_start)`
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/// (this is wrapping arithmetic using the type of the niche field).
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///
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///
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/// For example, `Option<(usize, &T)>` is represented such that
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/// The variant `untagged_variant` contains a niche at an arbitrary
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/// `None` has a null pointer for the second tuple field, and
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/// offset (field [`Variants::Multiple::tag_field`] of the enum).
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/// `Some` is the identity function (with a non-null reference).
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/// For a variant with variant index `i`, such that `i != untagged_variant`,
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/// the tag is set to `(i - niche_variants.start).wrapping_add(niche_start)`
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/// (this is wrapping arithmetic using the type of the niche field, cf. the
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/// [`tag_for_variant`](../rustc_const_eval/interpret/struct.InterpCx.html#method.tag_for_variant)
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/// query implementation).
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/// To recover the variant index `i` from a `tag`, the above formula has to be reversed,
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/// i.e. `i = tag.wrapping_sub(niche_start) + niche_variants.start`. If `i` ends up outside
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/// `niche_variants`, the tag must have encoded the `untagged_variant`.
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///
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/// For example, `Option<(usize, &T)>` is represented such that the tag for
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/// `None` is the null pointer in the second tuple field, and
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/// `Some` is the identity function (with a non-null reference)
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/// and has no additional tag, i.e. the reference being non-null uniquely identifies this variant.
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///
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///
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/// Other variants that are not `untagged_variant` and that are outside the `niche_variants`
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/// Other variants that are not `untagged_variant` and that are outside the `niche_variants`
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/// range cannot be represented; they must be uninhabited.
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/// range cannot be represented; they must be uninhabited.
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/// Nonetheless, uninhabited variants can also fall into the range of `niche_variants`.
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Niche {
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Niche {
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untagged_variant: VariantIdx,
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untagged_variant: VariantIdx,
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/// This range *may* contain `untagged_variant`; that is then just a "dead value" and
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/// This range *may* contain `untagged_variant` or uninhabited variants;
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/// not used to encode anything.
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/// these are then just "dead values" and not used to encode anything.
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niche_variants: RangeInclusive<VariantIdx>,
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niche_variants: RangeInclusive<VariantIdx>,
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/// This is inbounds of the type of the niche field
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/// This is inbounds of the type of the niche field
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/// (not sign-extended, i.e., all bits beyond the niche field size are 0).
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/// (not sign-extended, i.e., all bits beyond the niche field size are 0).
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@@ -479,17 +479,8 @@ impl<'a, 'tcx, V: CodegenObject> OperandRef<'tcx, V> {
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_ => (tag_imm, bx.cx().immediate_backend_type(tag_op.layout)),
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_ => (tag_imm, bx.cx().immediate_backend_type(tag_op.layout)),
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};
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};
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// Layout ensures that we only get here for cases where the discriminant
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// `layout_sanity_check` ensures that we only get here for cases where the discriminant
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// value and the variant index match, since that's all `Niche` can encode.
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// value and the variant index match, since that's all `Niche` can encode.
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// But for emphasis and debugging, let's double-check one anyway.
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debug_assert_eq!(
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self.layout
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.ty
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.discriminant_for_variant(bx.tcx(), untagged_variant)
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.unwrap()
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.val,
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u128::from(untagged_variant.as_u32()),
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);
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let relative_max = niche_variants.end().as_u32() - niche_variants.start().as_u32();
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let relative_max = niche_variants.end().as_u32() - niche_variants.start().as_u32();
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@@ -284,15 +284,15 @@ pub enum FakeBorrowKind {
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///
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///
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/// This is used when lowering deref patterns, where shallow borrows wouldn't prevent something
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/// This is used when lowering deref patterns, where shallow borrows wouldn't prevent something
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/// like:
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/// like:
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// ```compile_fail
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/// ```compile_fail
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// let mut b = Box::new(false);
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/// let mut b = Box::new(false);
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// match b {
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/// match b {
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// deref!(true) => {} // not reached because `*b == false`
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/// deref!(true) => {} // not reached because `*b == false`
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// _ if { *b = true; false } => {} // not reached because the guard is `false`
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/// _ if { *b = true; false } => {} // not reached because the guard is `false`
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// deref!(false) => {} // not reached because the guard changed it
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/// deref!(false) => {} // not reached because the guard changed it
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// // UB because we reached the unreachable.
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/// // UB because we reached the unreachable.
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// }
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/// }
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// ```
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/// ```
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Deep,
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Deep,
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}
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}
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@@ -277,6 +277,12 @@ pub(super) fn layout_sanity_check<'tcx>(cx: &LayoutCx<'tcx>, layout: &TyAndLayou
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if !variant.is_uninhabited() {
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if !variant.is_uninhabited() {
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assert!(idx == *untagged_variant || niche_variants.contains(&idx));
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assert!(idx == *untagged_variant || niche_variants.contains(&idx));
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}
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}
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// Ensure that for niche encoded tags the discriminant coincides with the variant index.
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assert_eq!(
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layout.ty.discriminant_for_variant(tcx, idx).unwrap().val,
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u128::from(idx.as_u32()),
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);
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}
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}
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}
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}
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for variant in variants.iter() {
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for variant in variants.iter() {
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