This change deliberately breaks away from the line/column ordering, and
instead focuses on a last byte offset corresponding to the final token
processed as part of producing the message. Where that's equal, this
maintains stable ordering in order to reflect the order that diagnostics
were produced.
The intent of this approach is that lex, parse, and check diagnostics
are interleaved based on where they are produced, but that
subexpressions still have diagnostics emitted prior to containing
expressions. In particular, the prior line/column sort essentially
sorted on the _start_ of where a diagnostic was associated, and this is
closer to sorting based on the _end_. As a consequence, something like
`F(1 2)` will have the error for `1 2` emitted _before_ a diagnostic for
`F(1 2)` not matching parameters, instead of _after_.
In check, we track the last handled node. This provides a
last_byte_offset _separate_ from where a diagnostic is associated. The
intent is that this creates an ordering of diagnostics which may be
associated with earlier code, to cause the diagnostics to be emitted
later. An example consequence of this is the change in ordering of
modifier diagnostics: we are diagnosing those from the same place, but
they have the same last_byte_offset, so we print them out in the order
produced.
I've added similar tracking to parse, but cannot identify any test which
is affected by it (note the separate commit, I thought about this late).
I'm not sure whether we have good out-of-order errors we could produce
for this.
A significant number of tests have reordered diagnostics as a
consequence of this change, so this change does not add further testing.
As discussed around #3792, identify the import a diagnostic message came
from prior to the diagnostic message itself. This occurs during location
translation so that the logic can be central.
I'd considered associating the parse node with ImportRef instructions,
but I realized about halfway through that because I need to store the
ImportDirectiveId on the ImportIR for cross-package imports, it's there
for use in location translation without extra work. That saves a fair
amount of stringing it through declarations, as well as an oddity where
ImportRef instructions would have a node that didn't really represent
them.
Since the addition of TranslateArg, I don't think this type is going to
go away (cutting a TODO). Refactoring names slightly to fit the current
role, and adding const to ConvertLocation.
Protobufs code hits a warning with the latest system headers on macOS.
I figured this may have been fixed so I updated protobufs and Bazel to
the latest releases. This generally cleaned things up.
However, it actually added *more* warnings. This clearly isn't a really
well tested path. In fact, we already have a disabled warning that we'd
like for Carbon code because LLVM isn't clean for that warning.
So I've switched our warning strategy to a more durable approach of
suppressing all warnings for external repository headers and source
files. This lets us re-enable the missing warning and should fix the
protobuf warning that started me down this twisty path.
Sadly, we *have* to update to Bazel 6 in order to have the necessary
flag to use this approach to suppressing warnings, so I couldn't do this
as two PRs cleanly. =/ That's why I've bundled both the Bazel (and
protobuf) updates with the warning strategy change.
Last but not least, I've fixed several unused parameters in Carbon's
code that our warnings now catch.
This is currently used once for PreviousDefinition in semantics.
This PR doesn't just add a builder, it also adds support to the emitter itself to collect notes attached to a diagnostic, and to the consumers and emitters to print all of them.
Co-authored-by: Chandler Carruth <chandlerc@gmail.com>
This should clean up our top level directory and the build patterns.
No non-mechanical edits here. Just injecting `toolchain/` and
`TOOLCHAIN_` and then running formatting tools.