In open discussion[1] we decided that "identical" rewrites would mean
that for a given LHS value, all RHS have the same value (after
evaluation), rather than requiring the RHS to all have the same
syntactic value. This means the following is valid, since the value of
`.Y` is known to be `()` while resolving the rewrite constraints of `T`.
So both rewrites of `.X` are resolved to `.X = ()`:
```
fn Identical(T:! I where .X = () and .X = .Y and .Y = ()) {}
```
The implementation of this clarification, along with test cases encoding
it, is done in https://github.com/carbon-language/carbon-lang/pull/5686.
Clarify this in the language design documents, and improve some other
clarity while we're there:
- The prose talks about a facet `T`, but the examples were using `A` as
its name. Change the facet to be `T`. This means changing the `.T`
associated constant (and `.U` and `.V`) to be `.X` (and `.Y` and `.Z`).
While doing this, use `I` for the interface name instead of `C`, which
we use more commonly for a class type name.
- Correct the comments in the cycle example that claim we find `.Y then
.Y* then .Y**`. In this example `.Y = .Z* and .Z = .Y*` which adds _two_
levels of pointers when evaluating `.Y`: `.Y => .Z* => (.Y*)* => .Y**`
[1]
https://docs.google.com/document/d/1Yt-i5AmF76LSvD4TrWRIAE_92kii6j5yFiW-S7ahzlg/edit?tab=t.0#heading=h.qti4vn50zwy
---------
Co-authored-by: Richard Smith <richard@metafoo.co.uk>
Co-authored-by: Carbon Infra Bot <carbon-external-infra@google.com>
Docs
This directory contains current, accepted documentation underpinning Carbon. These documents cover all aspects of Carbon ranging from the project down to detailed designs for specific language features.
If you're trying to learn more about Carbon, we recommend starting at
/README.md.
Design
Carbon language's design and rationale are documented in the
design/ directory. This documentation is intended to
support the following audiences:
- People who wish to determine whether Carbon would be the right choice for a project compared to other existing languages.
- People working on the evolution of the Carbon language who wish to understand the rationale and motivation for existing design decisions.
- People working on a specification or implementation of the Carbon language who need a detailed understanding of the intended design.
- People writing Carbon code who wish to understand why the language rules are the way they are.
This is in contrast to proposals, which document the individual decisions that led to this design (along with other changes to the Carbon project), including the rationale and alternatives considered.
Project
The project/ directory contains project-related
documentation for Carbon, including:
- goals, and the principles and roadmap derived from those goals,
- how the project works, and
- how to contribute.
Guides
The guides/ directory contains to-be-written end-user
documentation for developers writing programs in Carbon.
Spec
The spec/ directory contains the to-be-written formal
specification of the Carbon language. This is for implementers of compilers or
other tooling. This is intended to complement the toolchain.