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2023-12-21Add support for hexagon-unknown-none-elf as targetBrian Cain-0/+268
Signed-off-by: Brian Cain <bcain@quicinc.com>
2023-12-20Rollup merge of #119102 - chrisnc:arm-none-eabi-docs, r=wesleywiserMatthias Krüger-106/+176
Add arm-none-eabi and armv7r-none-eabi platform-support documentation. Mostly collecting existing information that's common to all arm-none-eabi targets and putting it in one file and adding a new file with specific details about armv7r.
2023-12-18Add arm-none-eabi and armv7r-none-eabi platform-support documentation.Chris Copeland-106/+176
2023-12-19Auto merge of #119074 - leohowell:new-aarch64-apple-watchos-target, ↵bors-0/+4
r=wesleywiser Add new tier 3 aarch64-apple-watchos target Apple Xcode 14/15 releases add a new apple watchos target architecture arm64 out of arm64_32 and armv7k, now add a new tier 3 target support for this target. ### Tier 3 Target Requirements Adds support for Apple WatchOS aarch64-apple-watchos target. Below are details on how this target meets the requirements for tier 3: > 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.) `@leohowell` has volunteered to be the target maintainer. I am also happy to help if a second maintainer is required. > 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. Uses the same naming as the LLVM target, and the same convention as other Apple 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. I don't believe there is any ambiguity here. > 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. I don't see any legal issues here. > The target must not introduce license incompatibilities. > Anything added to the Rust repository must be under the standard Rust license (MIT OR Apache-2.0). > 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. > 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. > Targets should not require proprietary (non-FOSS) components to link a functional binary or library. > "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. I see no issues with any of the above. > 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. Only relevant to those making approval decisions. > 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. core and alloc can be used. std support will be added in a subsequent PR. > 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. Use --target= option to cross compile, just like any target. Tests can be run using the WatchOS simulator (see https://developer.apple.com/documentation/xcode/running-your-app-in-the-simulator-or-on-a-device). > 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. I don't foresee this being a problem. > 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 by the pull request. r? compiler-team
2023-12-18fix typo in stable doc codegen-options chapterRémy Rakic-1/+1
2023-12-18Add new tier 3 aarch64-apple-watchos targetleohowell-0/+4
2023-12-16remove unstable linker flavors from stable documentationRémy Rakic-3/+0
2023-12-11Rollup merge of #118827 - Nilstrieb:linker-plugin-lto, r=ehussMatthias Krüger-2/+6
Update table for linker-plugin-lto docs
2023-12-11Update table for linker-plugin-lto docsNilstrieb-2/+6
2023-12-11Edit target doc template to remove emailNilstrieb-1/+1
We don't really want to communicate with target maintainers via email. GitHub is where everything happens, people should have a GitHub account that can be pinged on issues. This doesn't necessarily have to be a strict rule, but edit the template to suggest this. The previous template made it look like we care about having an email address, which we do not.
2023-12-09Auto merge of #118150 - roblabla:new-win7-targets, r=davidtwcobors-0/+83
Add new targets {x86_64,i686}-win7-windows-msvc This PR adds two new Tier 3 targets, x86_64-win7-windows-msvc and i686-win7-windows-msvc, that aim to support targeting Windows 7 after the `*-pc-windows-msvc` target drops support for it (slated to happen in 1.76.0). # Tier 3 target policy > At this tier, the Rust project provides no official support for a target, so we place minimal requirements on the introduction of targets. > > A proposed new tier 3 target must be reviewed and approved by a member of the compiler team based on these requirements. The reviewer may choose to gauge broader compiler team consensus via a [Major Change Proposal (MCP)](https://forge.rust-lang.org/compiler/mcp.html). > > A proposed target or target-specific patch that substantially changes code shared with other targets (not just target-specific code) must be reviewed and approved by the appropriate team for that shared code before acceptance. > > - 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.) This is me, `@roblabla` on github. > - 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. I went with naming the target `x86_64-win7-windows-msvc`, inserting the `win7` in the vendor field (usually set to to `pc`). This is done to avoid ecosystem churn, as quite a few crates have `cfg(target_os = "windows")` or `cfg(target_env = "msvc")`, but nearly no `cfg(target_vendor = "pc")`. Since my goal is to be able to seamlessly swap to the `win7` target, I figured it'd be easier this way. > - 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 believe the naming is pretty explicit. > - If possible, use only letters, numbers, dashes and underscores for the name. Periods (`.`) are known to cause issues in Cargo. The name comforms to this requirement. > - 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 must not introduce license incompatibilities. > - Anything added to the Rust repository must be under the standard Rust license (`MIT OR Apache-2.0`). > - 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. > - 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. > - "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. As far as I understand it, this target has exactly the same legal situation as the existing Tier 1 x86_64-pc-windows-msvc. > - 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. This target supports the whole libstd surface, since it's essentially reusing all of the x86_64-pc-windows-msvc target. Understood. > - 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. Wrote some documentation on how to build, test and cross-compile the target in the `platform-support` part. Hopefully it's enough to get started. > - 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. Understood. > If a tier 3 target stops meeting these requirements, or the target maintainers no longer have interest or time, or the target shows no signs of activity and has not built for some time, or removing the target would improve the quality of the Rust codebase, we may post a PR to remove it; any such PR will be CCed to the target maintainers (and potentially other people who have previously worked on the target), to check potential interest in improving the situation. Understood.
2023-12-07Auto merge of #116565 - Sword-Destiny:master, r=Amanieubors-3/+10
add teeos std impl add teeos std library implement. this MR is draft untill the libc update to 0.2.150 this MR is the final step for suppot rust in teeos. first step(add target): https://github.com/rust-lang/rust/pull/113480 second step(add teeos libc): https://github.com/rust-lang/libc/pull/3333
2023-12-07add teeos std impl袁浩-3/+10
Signed-off-by: 袁浩 <yuanhao34@huawei.com>
2023-12-05Add riscv32 imafc bare metal targetScott Mabin-4/+44
- riscv32imac-unknown-none-elf - Add platform support docs for rv32
2023-11-29Update nto-qnx.mdAkhilTThomas-4/+2
x.py does not support specify multiple --target keywords. The targets must be specified comma separated.
2023-11-22Improve -win7-windows-msvc documentationroblabla-9/+45
2023-11-22Add i686-win7-windows-msvc targetroblabla-0/+1
2023-11-22Add new x86_64-win7-windows-msvc targetroblabla-0/+46
2023-11-21Rollup merge of #118091 - psumbera:solaris-target, r=compiler-errorsNilstrieb-3/+2
Remove now deprecated target x86_64-sun-solaris.
2023-11-21Auto merge of #115691 - jsgf:typed-json-diags, r=est31,dtolnaybors-3/+11
Add `$message_type` field to distinguish json diagnostic outputs Currently the json-formatted outputs have no way to unambiguously determine which kind of message is being output. A consumer can look for specific fields in the json object (eg "message"), but there's no guarantee that in future some other kind of output will have a field of the same name. This PR adds a `"type"` field to add json outputs which can be used to unambiguously determine which kind of output it is. The mapping is: `diagnostic`: regular compiler diagnostics `artifact`: artifact notifications `future_incompat`: Future incompatibility report `unused_extern`: Unused crate warnings/errors This matches the "internally tagged" representation for serde enums.
2023-11-20Update some more cases of "type" -> "$message_type"David Tolnay-2/+2
2023-11-20Remove now deprecated target x86_64-sun-solaris.Petr Sumbera-3/+2
2023-11-20Auto merge of #115526 - arttet:master, r=jackh726bors-0/+77
Add arm64e-apple-ios & arm64e-apple-darwin targets This introduces * `arm64e-apple-ios` * `arm64e-apple-darwin` Rust targets for support `arm64e` architecture on `iOS` and `Darwin`. So, this is a first approach for integrating to the Rust compiler. ## 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.) I will be the target maintainer. > * 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. 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. The target names `arm64e-apple-ios`, `arm64e-apple-darwin` were derived from `aarch64-apple-ios`, `aarch64-apple-darwin`. In this [ticket,](#73628) people discussed the best suitable names for these targets. > In some cases, the arm64e arch might be "different". For example: > * `thread_set_state` might fail with (os/kern) protection failure if we try to call it from arm64 process to arm64e process. > * The returning value of dlsym is PAC signed on arm64e, while left untouched on arm64 > * Some function like pthread_create_from_mach_thread requires a PAC signed function pointer on arm64e, which is not required on arm64. So, I have chosen them because there are similar triplets in LLVM. I think there are no more suitable names for these 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 must not introduce license incompatibilities. Anything added to the Rust repository must be under the standard Rust license (MIT OR Apache-2.0). 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. 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. "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 dependencies were added to Rust. > * 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. I am not a member of a Rust team. > * 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. Understood. `std` is supported. > * 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. Building is described in the derived target doc. > * 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. These targets are not fully ABI compatible with arm64e code. #73628
2023-11-17Rollup merge of #117338 - workingjubilee:asmjs-meets-thanatos, r=b-naberMatthias Krüger-1/+0
Remove asmjs Fulfills [MCP 668](https://github.com/rust-lang/compiler-team/issues/668). `asmjs-unknown-emscripten` does not work as-specified, and lacks essential upstream support for generating asm.js, so it should not exist at all.
2023-11-15Add arm64e-apple-darwin targetArtyom Tetyukhin-0/+38
2023-11-15Add arm64e-apple-ios targetArtyom Tetyukhin-0/+39
2023-11-11Auto merge of #117799 - erickt:fuchsia, r=tmandrybors-1/+3
Switch `fuchsia-test-runner.py` to `ffx product` The subcommand `ffx product-bundle` has been removed, and replaced with the subcommand `ffx product`. This changes `fuchsia-test-runner.py` to use it to download the SDK and product bundle for the latest release of Fuchsia.
2023-11-10Switch `fuchsia-test-runner.py` to `ffx product`Erick Tryzelaar-1/+3
The subcommand `ffx product-bundle` has been removed, and replaced with the subcommand `ffx product`. This changes `fuchsia-test-runner.py` to use it to download the SDK and product bundle for the latest release of Fuchsia.
2023-11-10Rollup merge of #114191 - rcvalle:rust-exploit-mitigations, r=cuviperMatthias Krüger-209/+195
Update exploit mitigations documentation Updates the rustc book with most up to date information about exploit mitigations supported by the Rust compiler.
2023-11-08Update exploit mitigations documentationRamon de C Valle-60/+62
Updates the rustc book with most up to date information about exploit mitigations supported by the Rust compiler.
2023-11-08Add AIX platform-support docQiu Chaofan-1/+28
2023-10-29Add support for mipsel-unknown-netbsd, 32-bit LE mips.Havard Eidnes-0/+1
2023-10-28Officially remove asmjs platform supportJubilee Young-1/+0
2023-10-29Auto merge of #117336 - workingjubilee:rollup-6negquv, r=workingjubileebors-0/+1
Rollup of 4 pull requests Successful merges: - #117170 (Add support for i586-unknown-netbsd as target.) - #117259 (Declare rustc_target's dependency on object/macho) - #117322 (change default output mode of `BootstrapCommand`) - #117325 (Small ty::print cleanups) r? `@ghost` `@rustbot` modify labels: rollup
2023-10-28Rollup merge of #117170 - he32:netbsd-i586, r=bjorn3Jubilee-0/+1
Add support for i586-unknown-netbsd as target. This restricts instructions to those offered by Pentium, to support e.g. AMD Geode. There is already an entry for this target in the NetBSD platform support page at src/doc/rustc/src/platform-support/netbsd.md ...so this should forestall its removal. Additional fixes are needed for some vendored modules, this is the changes in the rust compiler core itself.
2023-10-28Rollup merge of #115773 - simlay:arch64-apple-tvos-sim-for-rustc, r=thomccJubilee-1/+4
tvOS simulator support on Apple Silicon for rustc Closes or is a subtask of #115692. # Tier 3 Target Policy At this tier, the Rust project provides no official support for a target, so we place minimal requirements on the introduction of targets. > * 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.) See [`src/doc/rustc/src/platform-support/apple-tvos.md`](https://github.com/rust-lang/rust/blob/4ab4d48ee59968d8d519ccda5e12c9d200cc092f/src/doc/rustc/src/platform-support/apple-tvos.md) > * 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. > * 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. This naming scheme matches `$ARCH-$VENDOR-$OS-$ABI` (I think `sim` is the ABI here) which is matches the iOS apple silicon simulator (`aarch64-apple-ios-sim`). [There is some discussion about renaming some apple simulator targets](https://github.com/rust-lang/rust/issues/115692#issuecomment-1712931910) to match the `-sim` suffix but that is outside the scope of this PR. > * 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 must not introduce license incompatibilities. > * Anything added to the Rust repository must be under the standard Rust license (MIT OR Apache-2.0). > * 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. > * 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. > * "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. This contribution is fully available under the standard Rust license with no additional legal restrictions whatsoever. This PR does not introduce any new dependency less permissive than the Rust license policy. The new targets do not depend on proprietary libraries. > * 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. This new target implements as much of the standard library as the other tvOS targets do. > * 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. I have added the target to the other tvOS targets in [`src/doc/rustc/src/platform-support/apple-tvos.md`](https://github.com/rust-lang/rust/blob/4ab4d48ee59968d8d519ccda5e12c9d200cc092f/src/doc/rustc/src/platform-support/apple-tvos.md) > * 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. > * 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. > * 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. I acknowledge these requirements and intend to ensure that they are met. This target does not touch any existing tier 2 or tier 1 targets and should not break any other targets.
2023-10-28i586-unknown-netbsd platform-support.md: fix typo.Havard Eidnes-1/+1
2023-10-28i586-unknown-netbsd: add entry in platform-support.md.Havard Eidnes-0/+1
2023-10-27Rollup merge of #114998 - meysam81:meysam/feat/add-cargo-pgo-to-docs, r=ehussMatthias Krüger-0/+23
feat(docs): add cargo-pgo to PGO documentation 📝 fixes #114995
2023-10-25implement C ABI lowering for CSKYdirreke-2/+8
2023-10-25Update profile-guided-optimization.mdMeysam-2/+3
2023-10-25Update src/doc/rustc/src/profile-guided-optimization.mdMeysam-1/+1
Co-authored-by: Jakub Beránek <berykubik@gmail.com>
2023-10-25Update src/doc/rustc/src/profile-guided-optimization.mdMeysam-1/+1
Co-authored-by: Jakub Beránek <berykubik@gmail.com>
2023-10-22tidy docsdirreke-3/+3
2023-10-22add target csky-unknown-linux-gnuabiv2hfdirreke-3/+14
2023-10-17Auto merge of #116518 - vita-rust:vita, r=workingjubileebors-104/+35
Updated libc and doc for Vita target Doc changes: - Updated Vita target readme. The recommended approach to build artifacts for the platform now is [cargo-vita](https://crates.io/crates/cargo-vita) which wraps all the convoluted steps previously described in a yaml for `cargo-make` - Updated maintainer list for Vita target. (`@ZetaNumbers` `@pheki` please agree to be added to the list, `@amg98` please let us know if you're still planning on actively maintaining target support) Code changes: - ~Updated libc for rust-lang/libc#3284 and rust-lang/libc#3366~ (Already merged in #116527) - In dupfd changed the flag same as for esp target, there is no CLOEXEC on Vita - Enabled `new_pair` since we've implemented `socketpair` in Vita newlib
2023-10-17Updated libc and doc for Vita targetNikolay Arhipov-104/+35
2023-10-16Update docs tooJeremy Fitzhardinge-6/+6
2023-10-15Rollup merge of #116341 - Ayush1325:uefi-args, r=Mark-SimulacrumMatthias Krüger-0/+2
Implement sys::args for UEFI - Uses `EFI_LOADED_IMAGE_PROTOCOL`, which is implemented for all loaded images. Tested on qemu with OVMF cc ``@nicholasbishop`` cc ``@dvdhrm``
2023-10-15Implement args for UEFIAyush Singh-0/+2
- Uses `EFI_LOADED_IMAGE_PROTOCOL` - verify that cli args are valid UTF-16 - Update Docs Signed-off-by: Ayush Singh <ayushdevel1325@gmail.com>