Commit Graph

163 Commits

Author SHA1 Message Date
Sébastien Marie
dacb6ee7b0 add powerpc64-unknown-openbsd support 2022-08-28 05:16:02 +00:00
Sébastien Marie
908ac84662 openbsd: rustc_target: reorder spec by name 2022-08-26 06:15:54 +00:00
Corwin
ed27a4c516 add the armv4t-none-eabi target 2022-08-16 20:10:31 +01:00
Vadim Petrochenkov
8fa707ab41 rustc_target: Update some old naming around self contained linking
The "fallback" naming pre-dates introduction of `-Clink-self-contained`
2022-08-12 18:47:13 +03:00
Ivan Lozano
adf61e3b2b Add ShadowCallStack Support
Adds support for the LLVM ShadowCallStack sanitizer.
2022-07-20 13:43:34 +00:00
leo60228
62aafb01b1
Rename aarch64-nintendo-switch to aarch64-nintendo-switch-freestanding 2022-07-14 15:58:26 -04:00
jam1garner
e6aedf6056
Add Nintendo Switch tier 3 target 2022-07-14 15:55:58 -04:00
Vadim Petrochenkov
8d9fdb778e rustc_target: Flip the default for TargetOptions::executables to true
Also change `executables` to true for linux-kernel and windows-uwp-gnu targets
2022-07-11 23:23:51 +03:00
Patrick Walton
1e0ad0c1d4 Implement support for DWARF version 5.
DWARF version 5 brings a number of improvements over version 4. Quoting from
the announcement [1]:

> Version 5 incorporates improvements in many areas: better data compression,
> separation of debugging data from executable files, improved description of
> macros and source files, faster searching for symbols, improved debugging
> optimized code, as well as numerous improvements in functionality and
> performance.

On platforms where DWARF version 5 is supported (Linux, primarily), this commit
adds support for it behind a new `-Z dwarf-version=5` flag.

[1]: https://dwarfstd.org/Public_Review.php
2022-07-08 11:31:08 -07:00
Vadim Petrochenkov
46aba8850b rustc_target: Add convenience functions for adding linker arguments
They ensure that lld and non-lld linker flavors get the same set of arguments
2022-06-25 21:55:56 +03:00
Yuki Okushi
33eb3c05c5
Rollup merge of #98214 - petrochenkov:islike, r=compiler-errors
rustc_target: Remove some redundant target properties

`is_like_emscripten` is equivalent to `os == "emscripten"`, so it's removed.
`is_like_fuchsia` is equivalent to `os == "fuchsia"`, so it's removed.
`is_like_osx` also falls into the same category and is equivalent to `vendor == "apple"`, but it's commonly used so I kept it as is for now.

`is_like_(solaris,windows,wasm)` are combinations of different operating systems or architectures (see compiler/rustc_target/src/spec/tests/tests_impl.rs) so they are also kept as is.

I think `is_like_wasm` (and maybe `is_like_osx`) are sufficiently closed sets, so we can remove these fields as well and replace them with methods like `fn is_like_wasm() { arch == "wasm32" || arch == "wasm64" }`.
On other hand, `is_like_solaris` and `is_like_windows` are sufficiently open and I can imagine custom targets introducing other values for `os`.
This is kind of a gray area.
2022-06-24 16:43:45 +09:00
bjorn3
b4b536d34d Preserve the path of the target spec json file for usage by rustdoc 2022-06-19 15:33:09 +00:00
bjorn3
072b7db561 Make debug_triple depend on target json file content rather than file path
This ensures that changes to target json files will force a
recompilation. And more importantly that moving the files doesn't force
a recompilation.
2022-06-18 10:19:24 +00:00
Vadim Petrochenkov
37fd2941a1 rustc_target: Remove some redundant target properties 2022-06-18 01:09:20 +03:00
Vladimir Michael Eatwell
dc5c61028a Add Apple WatchOS compile targets 2022-06-13 16:08:53 +01:00
bors
91cacb3faf Auto merge of #97512 - scottmcm:add-coldcc, r=nagisa,lcnr
Add support for emitting functions with `coldcc` to LLVM

The eventual goal is to try using this for things like the internal panicking stuff, to see whether it helps.
2022-06-07 08:12:45 +00:00
bors
a2da4af33c Auto merge of #97577 - betrusted-io:add-xous-target, r=nagisa
riscv32imac-unknown-xous-elf: add target

This PR starts the process of upstreaming support for our operating system, thanks to a suggestion from `@yaahc` [on Twitter](https://twitter.com/yaahc_/status/1530558574706839567?s=20&t=Mgkn1LEYvGU6FEi5SpZRsA). We have maintained a fork of Rust and have made changes to improve support for our platform since Rust 1.51. Now we would like to upstream these changes.

Xous is a microkernel operating system designed to run on small systems. The kernel contains a wide range of userspace processes that provide common services such as console output, networking, and time access.

The kernel and its services are completely written in Rust using a custom build of libstd. This adds support for this target to upstream Rust so that we can drop support for our out-of-tree `target.json` file.

This first patch adds a Tier 3 target for Xous running on RISC-V. Future patches will add libstd support, but those patches require changes to `dlmalloc` and `compiler_builtins`.

> 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.)

I will be the target maintainer for this target on matters that pertain to the `xous` part of the triple. For matters pertaining to the `riscv32imac` part of the triple, there should be no difference from all other `riscv` targets. If there are issues, I will address issues regarding the target.

> 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.

This is a new OS, so I have taken the `riscv32imac-unknown-none-elf` target and changed the `os` section of the triple. This follows convention on targets such as `riscv32gc-unknown-linux-gnu` and `mipsel-unknown-linux-uclibc`. An argument could be made for omitting the `-elf` section of the triple, such as `riscv32imc-esp-espidf`, however I'm not certain what benefit that has.

> 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.

I feel that the target name does not introduce any ambiguity.

> 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 only unusual requirement for building the `compiler-builtins` crate is a standard RISC-V C compiler supported by `cc-rs`, and using this target does not require any additional software beyond what is shipped by `rustup`.

> The target must not introduce license incompatibilities.

All of the additional code will use Apache-2.0.

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

Agreed, and there is no problem here.

> 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.

The only new dependency will be the `xous` crate, which is licensed `MIT OR Apache-2.0`

> 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.

Linking is performed by `rust-lld`

> "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.

There are no terms. Xous is completely open. It runs on open hardware. We even provide the source to the CPU.

> 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 paragraph makes sense, but I don't think it's directed at me.

> 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.

This paragraph also does not appear to be directed at me.

> 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.

So far we have:

 * Thread
 * Mutexex
 * Condvar
 * TcpStream
 * TcpListener
 * UdpSocket
 * DateTime
 * alloc

These will be merged as part of libstd in a future patch once I submit support for Xous in `dlmalloc` and `compiler-builtins`.

> 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.

Testing is currently done on real hardware or in a Renode emulator. I can add documentation on how to do this in a future patch, and I would need instructions on where to add said documentation.

> 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.

Alright.

> 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.

Sounds good.

> 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.

This shouldn't affect any other targets, so this is understood.

> 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.

This shouldn't come up right away. `xous` is a new operating system, and most features are keyed off of `target(os = "xous")` rather than a given architecture.
2022-06-05 07:03:50 +00:00
Sean Cross
9f6e6872c2 riscv32imac-unknown-xous-elf: add target
Xous is a microkernel operating system designed to run on small systems.
The kernel contains a wide range of userspace processes that provide
common services such as console output, networking, and time access.

The kernel and its services are completely written in Rust using a
custom build of libstd. This adds support for this target to upstream
Rust so that we can drop support for our out-of-tree `target.json` file.

Add a Tier 3 target for Xous running on RISC-V.

Signed-off-by: Sean Cross <sean@xobs.io>
2022-06-04 18:47:27 +08:00
bjorn3
fc1df4ff17 Use serde_json for target spec json 2022-06-03 16:46:19 +00:00
bjorn3
fc2abe6952 Remove a couple of unused Encodable and Decodable derives 2022-06-03 16:46:19 +00:00
Scott McMurray
e90be842fb Add support for emitting functions with coldcc in LLVM
The eventual goal is to try using this for things like the internal panicking stuff, to see whether it helps.
2022-05-30 00:19:23 -07:00
Vadim Petrochenkov
2984bf674f Simplify implementation of -Z gcc-ld
- The logic is now unified for all targets (wasm targets should also be supported now)
- Additional "symlink" files like `ld64` are eliminated
- lld-wrapper is used for propagating the correct lld flavor
- Cleanup "unwrap or exit" logic in lld-wrapper
2022-05-25 23:55:22 +03:00
Mateusz Mikuła
60361f2ca3 Add LLVM based mingw-w64 targets 2022-05-13 20:14:15 +02:00
est31
3c1e1661e7 Remove unused macro rules 2022-04-18 23:28:06 +02:00
Loïc BRANSTETT
1a1f5b89a4 Cleanup after some refactoring in rustc_target 2022-04-03 21:29:57 +02:00
Loïc BRANSTETT
c16a558f24 Replace LinkArgs with Cow<'static, str> 2022-04-03 21:29:57 +02:00
Loïc BRANSTETT
ce61d4044d Replace every Vec in Target(Options) with it's Cow equivalent 2022-04-03 21:29:57 +02:00
Loïc BRANSTETT
ccff48f97b Replace every String in Target(Options) with Cow<'static, str> 2022-04-03 21:29:57 +02:00
Yuri Astrakhan
8d7b124c1f a few mode feedback fixes per @bjorn3 2022-03-30 17:28:19 -04:00
Yuri Astrakhan
5160f8f843 Spellchecking compiler comments
This PR cleans up the rest of the spelling mistakes in the compiler comments. This PR does not change any literal or code spelling issues.
2022-03-30 15:14:15 -04:00
Martin Kröning
335d196498 Remove hermitkernel targets
RustyHermit now maintains custom json targets, which are distributed with the kernel. [1]

[1]: https://github.com/hermitcore/libhermit-rs/pull/395
2022-03-25 11:52:11 +01:00
ridwanabdillahi
eae68350c8 Add support for targeting riscv32im-unknown-none-elf
Update riscv32im-unknown-none-elf to Tier2 support.

Downgrade to Tier 3 platform support.
2022-03-09 13:51:29 -08:00
Loïc BRANSTETT
4aa92aff05 Add well known values to --check-cfg implementation 2022-03-04 11:15:38 +01:00
Matthias Krüger
0bb72a2c66
Rollup merge of #91675 - ivanloz:memtagsan, r=nagisa
Add MemTagSanitizer Support

Add support for the LLVM [MemTagSanitizer](https://llvm.org/docs/MemTagSanitizer.html).

On hardware which supports it (see caveats below), the MemTagSanitizer can catch bugs similar to AddressSanitizer and HardwareAddressSanitizer, but with lower overhead.

On a tag mismatch, a SIGSEGV is signaled with code SEGV_MTESERR / SEGV_MTEAERR.

# Usage

`-Zsanitizer=memtag -C target-feature="+mte"`

# Comments/Caveats

* MemTagSanitizer is only supported on AArch64 targets with hardware support
* Requires `-C target-feature="+mte"`
* LLVM MemTagSanitizer currently only performs stack tagging.

# TODO

* Tests
* Example
2022-02-18 23:23:03 +01:00
Ivan Lozano
568aeda9e9 MemTagSanitizer Support
Adds support for the LLVM MemTagSanitizer.
2022-02-16 09:39:03 -05:00
Tomasz Miąsko
81f12eb7ef Inline Target::deref 2022-02-15 19:08:12 +01:00
Stefan Lankes
beb042ae8f add missing targert for library operating system RustyHermit 2022-02-08 09:34:36 +01:00
bors
2a8dbdb1e2 Auto merge of #93561 - Amanieu:more-unwind-abi, r=nagisa
Add more *-unwind ABI variants

The following *-unwind ABIs are now supported:
- "C-unwind"
- "cdecl-unwind"
- "stdcall-unwind"
- "fastcall-unwind"
- "vectorcall-unwind"
- "thiscall-unwind"
- "aapcs-unwind"
- "win64-unwind"
- "sysv64-unwind"
- "system-unwind"

cc `@rust-lang/wg-ffi-unwind`
2022-02-08 03:20:05 +00:00
Mara Bos
bd245facd4
Rollup merge of #93680 - Mark-Simulacrum:drop-json-reader, r=bjorn3
Drop json::from_reader

Just a small cleanup -- this was essentially unused; the one use site is better suited to reading from &str regardless.
2022-02-07 14:08:36 +00:00
Matthias Krüger
4a3be6e6e2
Rollup merge of #92383 - lancethepants:armv7-unknown-linux-uclibceabi, r=nagisa
Add new target armv7-unknown-linux-uclibceabi (softfloat)

This adds the new target `armv7-unknown-linux-uclibceabi (softfloat)`. It is of course similar to `armv7-unknown-linux-uclibceabihf (hardfloat)` which was just recently added to rust except that it is `softfloat`.

My interest lies in the Broadcom BCM4707/4708/BCM4709 family, notably found in some Netgear and Asus consumer routers. The armv7 Cortex-A9 cpus found in these devices do not have an fpu or NEON support.

With this patch I've been able to bootstrap rustc, std and host tools `(extended = true)` to run on the target device for native compilation, allowing the target to be used as a development platform.

With the recent addition of `armv7-unknown-linux-uclibceabihf (hardfloat)` it looks like many of the edge cases of using the uclibc c-library are getting worked out nicely. I've been able to compile some complex projects. Some patching still needed in some crates, but getting there for sure.  I think `armv7-unknown-linux-uclibceabi` is ready to be a tier 3 target.

I use a cross-toolchain from my project to bootstrap rust.
https://github.com/lancethepants/tomatoware
The goal of this project is to create a native development environment with support for various languages.
2022-02-06 04:13:30 +01:00
Mark Rousskov
0fb2b7a2da Drop json::from_reader
Performing UTF-8 decode outside the JSON module makes more sense in almost all cases.
2022-02-05 15:07:10 -05:00
lancethepants
8c6f7fd5e1 Add new target armv7-unknown-linux-uclibceabi (softfloat) 2022-02-04 11:45:00 -07:00
Amanieu d'Antras
547b4e601e Add more *-unwind ABI variants
The following *-unwind ABIs are now supported:
- "C-unwind"
- "cdecl-unwind"
- "stdcall-unwind"
- "fastcall-unwind"
- "vectorcall-unwind"
- "thiscall-unwind"
- "aapcs-unwind"
- "win64-unwind"
- "sysv64-unwind"
- "system-unwind"
2022-02-02 22:21:24 +01:00
Donald Hoskins
91fcbfa237 [mips64-openwrt-musl] Tier 3 tuple for Mips64 OpenWrt
This incorporates rust-lang into the OpenWrt build system for
Mips64 targets.

Signed-off-by: Donald Hoskins <grommish@gmail.com>
2022-01-31 03:03:06 -05:00
Sebastian Humenda
d98428711e Add L4Bender as linker variant 2022-01-21 16:28:33 +01:00
Lucas Kent
08829853d3 eplace usages of vec![].into_iter with [].into_iter 2022-01-09 14:09:25 +11:00
David Wood
08ed338f56 sess/cg: re-introduce split dwarf kind
In #79570, `-Z split-dwarf-kind={none,single,split}` was replaced by `-C
split-debuginfo={off,packed,unpacked}`. `-C split-debuginfo`'s packed
and unpacked aren't exact parallels to single and split, respectively.

On Unix, `-C split-debuginfo=packed` will put debuginfo into object
files and package debuginfo into a DWARF package file (`.dwp`) and
`-C split-debuginfo=unpacked` will put debuginfo into dwarf object files
and won't package it.

In the initial implementation of Split DWARF, split mode wrote sections
which did not require relocation into a DWARF object (`.dwo`) file which
was ignored by the linker and then packaged those DWARF objects into
DWARF packages (`.dwp`). In single mode, sections which did not require
relocation were written into object files but ignored by the linker and
were not packaged. However, both split and single modes could be
packaged or not, the primary difference in behaviour was where the
debuginfo sections that did not require link-time relocation were
written (in a DWARF object or the object file).

This commit re-introduces a `-Z split-dwarf-kind` flag, which can be
used to pick between split and single modes when `-C split-debuginfo` is
used to enable Split DWARF (either packed or unpacked).

Signed-off-by: David Wood <david.wood@huawei.com>
2022-01-06 09:32:42 +00:00
Chris Denton
391332c5d9
Rename has_elf_tls to has_thread_local 2021-12-17 20:56:38 +00:00
bors
87dce6e8df Auto merge of #91284 - t6:freebsd-riscv64, r=Amanieu
Add support for riscv64gc-unknown-freebsd

For https://doc.rust-lang.org/nightly/rustc/target-tier-policy.html#tier-3-target-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.)

For all Rust targets on FreeBSD, it's [rust@FreeBSD.org](mailto:rust@FreeBSD.org).

* 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.

Done.

* 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.

Done

* 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.

Done.

* The target must not introduce license incompatibilities.

Done.

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

Fine with me.

* 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.

Done.

* If the target supports building host tools (such as rustc or cargo), those host tools must not depend on proprietary (non-FOSS) libraries, other than ordinary runtime libraries supplied by the platform and commonly used by other binaries built for the target. 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.

Done.

* Targets should not require proprietary (non-FOSS) components to link a functional binary or library.

Done.

* "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.

Fine with me.

* 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.

Ok.

* 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.

Ok.

* 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.

std is implemented.

* 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 tests (even if they do not pass), the documentation must explain how to run tests for the target, using emulation if possible or dedicated hardware if necessary.

Building is possible the same way as other Rust on FreeBSD targets.

* 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.

Ok.

* 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.

Ok.

* 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.

Ok.

* 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.

Ok.
2021-12-06 03:51:05 +00:00
Mara Bos
1acb44f03c Use IntoIterator for array impl everywhere. 2021-12-04 19:40:33 +01:00