Commit Graph

32 Commits

Author SHA1 Message Date
Zalathar
89d7efaf8f Make RustString an extern type to avoid improper_ctypes warnings 2024-11-09 11:07:44 +11:00
Boxy
0091b8ab2a update cfgs 2024-09-05 17:24:01 +01:00
Matthias Krüger
489eb230dd
Rollup merge of #129648 - nnethercote:unreachable_pub-2, r=Urgau
More `unreachable_pub`

Add `unreachable_pub` checking to some more compiler crates. A follow-up to #126013.

r? ``@Urgau``
2024-08-27 18:59:29 +02:00
Nicholas Nethercote
22cdd632f1 Add warn(unreachable_pub) to rustc_llvm. 2024-08-27 15:28:26 +10:00
Michael Goulet
38e62b9841 Use unsafe extern blocks throughout the compiler 2024-08-26 19:51:05 -04:00
Nicholas Nethercote
84ac80f192 Reformat use declarations.
The previous commit updated `rustfmt.toml` appropriately. This commit is
the outcome of running `x fmt --all` with the new formatting options.
2024-07-29 08:26:52 +10:00
Michael Goulet
28503d69ac Fix unsafe_op_in_unsafe_fn in compiler 2024-07-16 00:02:44 -04:00
bors
0285dab54f Auto merge of #125141 - SergioGasquez:feat/no_std-xtensa, r=davidtwco
Add no_std Xtensa targets support

Adds no_std Xtensa targets. This enables using Rust on ESP32, ESP32-S2 and ESP32-S3 chips.

Tier 3 policy:

> A tier 3 target must have a designated developer or developers (the "target maintainers") on record to be CCed when issues arise regarding the target. (The mechanism to track and CC such developers may evolve over time.)

`@MabezDev` and I (`@SergioGasquez)` will maintain the targets.

> Targets must use naming consistent with any existing targets; for instance, a target for the same CPU or OS as an existing Rust target should use the same name for that CPU or OS. Targets should normally use the same names and naming conventions as used elsewhere in the broader ecosystem beyond Rust (such as in other toolchains), unless they have a very good reason to diverge. Changing the name of a target can be highly disruptive, especially once the target reaches a higher tier, so getting the name right is important even for a tier 3 target.

The target triple is consistent with other targets.

> Target names should not introduce undue confusion or ambiguity unless absolutely necessary to maintain ecosystem compatibility. For example, if the name of the target makes people extremely likely to form incorrect beliefs about what it targets, the name should be changed or augmented to disambiguate it.
> If possible, use only letters, numbers, dashes and underscores for the name. Periods (.) are known to cause issues in Cargo.

We follow the same naming convention as other targets.

> Tier 3 targets may have unusual requirements to build or use, but must not create legal issues or impose onerous legal terms for the Rust project or for Rust developers or users.

The target does not introduce any legal issues.

> The target must not introduce license incompatibilities.

There are no license incompatibilities

> Anything added to the Rust repository must be under the standard Rust license (MIT OR Apache-2.0).

Everything added is under that licenses

> The target must not cause the Rust tools or libraries built for any other host (even when supporting cross-compilation to the target) to depend on any new dependency less permissive than the Rust licensing policy. This applies whether the dependency is a Rust crate that would require adding new license exceptions (as specified by the tidy tool in the rust-lang/rust repository), or whether the dependency is a native library or binary. In other words, the introduction of the target must not cause a user installing or running a version of Rust or the Rust tools to be subject to any new license requirements.

Requirements are not changed for any other target.

> Compiling, linking, and emitting functional binaries, libraries, or other code for the target (whether hosted on the target itself or cross-compiling from another target) must not depend on proprietary (non-FOSS) libraries. Host tools built for the target itself may depend on the ordinary runtime libraries supplied by the platform and commonly used by other applications built for the target, but those libraries must not be required for code generation for the target; cross-compilation to the target must not require such libraries at all. For instance, rustc built for the target may depend on a common proprietary C runtime library or console output library, but must not depend on a proprietary code generation library or code optimization library. Rust's license permits such combinations, but the Rust project has no interest in maintaining such combinations within the scope of Rust itself, even at tier 3.

The linker used by the targets is the GCC linker from the GCC toolchain cross-compiled for Xtensa. GNU GPL.

> "onerous" here is an intentionally subjective term. At a minimum, "onerous" legal/licensing terms include but are not limited to: non-disclosure requirements, non-compete requirements, contributor license agreements (CLAs) or equivalent, "non-commercial"/"research-only"/etc terms, requirements conditional on the employer or employment of any particular Rust developers, revocable terms, any requirements that create liability for the Rust project or its developers or users, or any requirements that adversely affect the livelihood or prospects of the Rust project or its developers or users.

No such terms exist for this target

> Neither this policy nor any decisions made regarding targets shall create any binding agreement or estoppel by any party. If any member of an approving Rust team serves as one of the maintainers of a target, or has any legal or employment requirement (explicit or implicit) that might affect their decisions regarding a target, they must recuse themselves from any approval decisions regarding the target's tier status, though they may otherwise participate in discussions.

> This requirement does not prevent part or all of this policy from being cited in an explicit contract or work agreement (e.g. to implement or maintain support for a target). This requirement exists to ensure that a developer or team responsible for reviewing and approving a target does not face any legal threats or obligations that would prevent them from freely exercising their judgment in such approval, even if such judgment involves subjective matters or goes beyond the letter of these requirements.

Understood

> Tier 3 targets should attempt to implement as much of the standard libraries as possible and appropriate (core for most targets, alloc for targets that can support dynamic memory allocation, std for targets with an operating system or equivalent layer of system-provided functionality), but may leave some code unimplemented (either unavailable or stubbed out as appropriate), whether because the target makes it impossible to implement or challenging to implement. The authors of pull requests are not obligated to avoid calling any portions of the standard library on the basis of a tier 3 target not implementing those portions.

The target already implements core.

> The target must provide documentation for the Rust community explaining how to build for the target, using cross-compilation if possible. If the target supports running binaries, or running tests (even if they do not pass), the documentation must explain how to run such binaries or tests for the target, using emulation if possible or dedicated hardware if necessary.

Here is how to build for the target https://docs.esp-rs.org/book/installation/riscv-and-xtensa.html and it also covers how to run binaries on the target.

> Tier 3 targets must not impose burden on the authors of pull requests, or other developers in the community, to maintain the target. In particular, do not post comments (automated or manual) on a PR that derail or suggest a block on the PR based on a tier 3 target. Do not send automated messages or notifications (via any medium, including via `@)` to a PR author or others involved with a PR regarding a tier 3 target, unless they have opted into such messages.

> Backlinks such as those generated by the issue/PR tracker when linking to an issue or PR are not considered a violation of this policy, within reason. However, such messages (even on a separate repository) must not generate notifications to anyone involved with a PR who has not requested such notifications.

Understood

> Patches adding or updating tier 3 targets must not break any existing tier 2 or tier 1 target, and must not knowingly break another tier 3 target without approval of either the compiler team or the maintainers of the other tier 3 target.

> In particular, this may come up when working on closely related targets, such as variations of the same architecture with different features. Avoid introducing unconditional uses of features that another variation of the target may not have; use conditional compilation or runtime detection, as appropriate, to let each target run code supported by that target.

No other targets should be affected

> Tier 3 targets must be able to produce assembly using at least one of rustc's supported backends from any host target.

It can produce assembly, but it requires a custom LLVM with Xtensa support (https://github.com/espressif/llvm-project/). The patches are trying to be upstreamed (https://github.com/espressif/llvm-project/issues/4)
2024-06-12 13:43:31 +00:00
Nicholas Nethercote
75b164d836 Use tidy to sort crate attributes for all compiler crates.
We already do this for a number of crates, e.g. `rustc_middle`,
`rustc_span`, `rustc_metadata`, `rustc_span`, `rustc_errors`.

For the ones we don't, in many cases the attributes are a mess.
- There is no consistency about order of attribute kinds (e.g.
  `allow`/`deny`/`feature`).
- Within attribute kind groups (e.g. the `feature` attributes),
  sometimes the order is alphabetical, and sometimes there is no
  particular order.
- Sometimes the attributes of a particular kind aren't even grouped
  all together, e.g. there might be a `feature`, then an `allow`, then
  another `feature`.

This commit extends the existing sorting to all compiler crates,
increasing consistency. If any new attribute line is added there is now
only one place it can go -- no need for arbitrary decisions.

Exceptions:
- `rustc_log`, `rustc_next_trait_solver` and `rustc_type_ir_macros`,
  because they have no crate attributes.
- `rustc_codegen_gcc`, because it's quasi-external to rustc (e.g. it's
  ignored in `rustfmt.toml`).
2024-06-12 15:49:10 +10:00
Scott Mabin
c72fcfbc40 Add Xtensa as an experimental target 2024-05-29 13:47:51 +01:00
Nicholas Nethercote
0ac1195ee0 Invert diagnostic lints.
That is, change `diagnostic_outside_of_impl` and
`untranslatable_diagnostic` from `allow` to `deny`, because more than
half of the compiler has be converted to use translated diagnostics.

This commit removes more `deny` attributes than it adds `allow`
attributes, which proves that this change is warranted.
2024-02-06 13:12:33 +11:00
Mark Rousskov
db3e2bacb6 Bump cfg(bootstrap)s 2023-11-15 19:41:28 -05:00
Michael Howell
c6e6ecb1af rustdoc: remove rust logo from non-Rust crates 2023-10-08 20:17:53 -07:00
Dirreke
d16409fe22 add a csky-unknown-linux-gnuabiv2 target 2023-08-14 23:02:36 +08:00
Michael Goulet
4a24aab220
Rollup merge of #96971 - zhaixiaojuan:master, r=wesleywiser
Initial support for loongarch64-unknown-linux-gnu

Hi, We hope to add a new port in rust for LoongArch.

LoongArch intro
LoongArch is a RISC style ISA which is independently designed by Loongson
Technology in China. It is divided into two versions, the 32-bit version (LA32)
and the 64-bit version (LA64). LA64 applications have application-level
backward binary compatibility with LA32 applications. LoongArch is composed of
a basic part (Loongson Base) and an expanded part. The expansion part includes
Loongson Binary Translation (LBT), Loongson VirtualiZation (LVZ), Loongson SIMD
EXtension (LSX) and Loongson Advanced SIMD EXtension(LASX).

Currently the LA464 processor core supports LoongArch ISA and the Loongson
3A5000 processor integrates 4 64-bit LA464 cores. LA464 is a four-issue 64-bit
high-performance processor core. It can be used as a single core for high-end
embedded and desktop applications, or as a basic processor core to form an
on-chip multi-core system for server and high-performance machine applications.

Documentations:
ISA:
https://loongson.github.io/LoongArch-Documentation/LoongArch-Vol1-EN.html
ABI:
https://loongson.github.io/LoongArch-Documentation/LoongArch-ELF-ABI-EN.html
More docs can be found at:
https://loongson.github.io/LoongArch-Documentation/README-EN.html

Since last year, we have locally adapted two versions of rust, rust1.41 and rust1.57, and completed the test locally.
I'm not sure if I'm submitting all the patches at once, so I split up the patches and here's one of the commits
2023-04-11 20:28:45 -07:00
Nilstrieb
4b4948c2e3 Remove identity casts 2023-04-09 23:22:14 +02:00
zhaixiaojuan
ccf5417799 Enable loongarch64 LLVM target 2023-04-04 17:05:08 +08:00
5225225
09ea9f0a87 Add diagnostic translation lints to crates that don't emit them 2022-08-18 19:29:02 +01:00
Jack Huey
410dcc9674 Fully stabilize NLL 2022-06-03 17:16:41 -04:00
Pietro Albini
181d28bb61
trivial cfg(bootstrap) changes 2022-04-05 23:18:40 +02:00
Vadim Petrochenkov
1004783ef9 Stabilize native library modifier syntax and the whole-archive modifier specifically 2022-03-30 23:53:21 +03:00
Mateusz Mikuła
a076f2b9b4 Repace use of static_nobundle with native_link_modifiers
This fixes warning when building Rust and running tests:
```
warning: library kind `static-nobundle` has been superseded by specifying `-bundle` on library kind `static`. Try `static:-bundle`
warning: `rustc_llvm` (lib) generated 2 warnings (1 duplicate)
```
2021-10-23 15:51:22 +02:00
Guillaume Gomez
759eba0a08 Fix clippy lints 2021-10-01 23:17:19 +02:00
John Paul Adrian Glaubitz
fa27d50caa compiler/rustc_llvm: Enable M68k LLVM target 2021-09-17 15:07:14 +00:00
Alessandro Decina
12e70929d6 Add BPF target
This change adds the bpfel-unknown-none and bpfeb-unknown-none targets
which can be used to generate little endian and big endian BPF
2021-05-23 18:03:27 +10:00
Josh Stone
b97a33b1cb All supported LLVM versions have MSP430AsmPrinter 2021-03-22 12:44:48 -07:00
Mark Rousskov
8a3edb1d66 Update tests for extern block linting 2021-01-13 07:49:16 -05:00
Gus Caplan
d9f237caa6
Add wasm32 support to inline asm 2020-12-01 12:18:21 -06:00
est31
12187b7f86 Remove unused #[allow(...)] statements from compiler/ 2020-09-26 01:25:55 +02:00
Erik Hofmayer
138a2e5eaa /nightly/nightly-rustc 2020-09-23 21:51:56 +02:00
Erik Hofmayer
dd66ea2d3d Updated html_root_url for compiler crates 2020-09-23 21:14:43 +02:00
Vadim Petrochenkov
10d3f8a484 Move rustllvm into rustc_llvm 2020-09-09 23:05:43 +03:00