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rust: upgrade to Rust 1.73.0 commit e08ff622c91af997cb89bc47e90a1a383e938bd0 upstream. This is the next upgrade to the Rust toolchain, from 1.72.1 to 1.73.0 (i.e. the latest) [1]. See the upgrade policy [2] and the comments on the first upgrade in commit 3ed03f4da06e ("rust: upgrade to Rust 1.68.2"). # Unstable features No unstable features (that we use) were stabilized. Therefore, the only unstable feature allowed to be used outside the kernel crate is still new_uninit, though other code to be upstreamed may increase the list. Please see [3] for details. # Required changes For the upgrade, the following changes are required: - Allow internal_features for feature(compiler_builtins) since now Rust warns about using internal compiler and standard library features (similar to how it also warns about incomplete ones) [4]. - A cleanup for a documentation link thanks to a new rustdoc lint. See previous commits for details. - A need to make an intra-doc link to a macro explicit, due to a change in behavior in rustdoc. See previous commits for details. # alloc upgrade and reviewing The vast majority of changes are due to our alloc fork being upgraded at once. There are two kinds of changes to be aware of: the ones coming from upstream, which we should follow as closely as possible, and the updates needed in our added fallible APIs to keep them matching the newer infallible APIs coming from upstream. Instead of taking a look at the diff of this patch, an alternative approach is reviewing a diff of the changes between upstream alloc and the kernel's. This allows to easily inspect the kernel additions only, especially to check if the fallible methods we already have still match the infallible ones in the new version coming from upstream. Another approach is reviewing the changes introduced in the additions in the kernel fork between the two versions. This is useful to spot potentially unintended changes to our additions. To apply these approaches, one may follow steps similar to the following to generate a pair of patches that show the differences between upstream Rust and the kernel (for the subset of alloc we use) before and after applying this patch: # Get the difference with respect to the old version. git -C rust checkout $(linux/scripts/min-tool-version.sh rustc) git -C linux ls-tree -r --name-only HEAD -- rust/alloc | cut -d/ -f3- | grep -Fv README.md | xargs -IPATH cp rust/library/alloc/src/PATH linux/rust/alloc/PATH git -C linux diff --patch-with-stat --summary -R > old.patch git -C linux restore rust/alloc # Apply this patch. git -C linux am rust-upgrade.patch # Get the difference with respect to the new version. git -C rust checkout $(linux/scripts/min-tool-version.sh rustc) git -C linux ls-tree -r --name-only HEAD -- rust/alloc | cut -d/ -f3- | grep -Fv README.md | xargs -IPATH cp rust/library/alloc/src/PATH linux/rust/alloc/PATH git -C linux diff --patch-with-stat --summary -R > new.patch git -C linux restore rust/alloc Now one may check the new.patch to take a look at the additions (first approach) or at the difference between those two patches (second approach). For the latter, a side-by-side tool is recommended. Link: https://github.com/rust-lang/rust/blob/stable/RELEASES.md#version-1730-2023-10-05 [1] Link: https://rust-for-linux.com/rust-version-policy [2] Link: https://github.com/Rust-for-Linux/linux/issues/2 [3] Link: https://github.com/rust-lang/compiler-team/issues/596 [4] Reviewed-by: Martin Rodriguez Reboredo <yakoyoku@gmail.com> Reviewed-by: Vincenzo Palazzo <vincenzopalazzodev@gmail.com> Reviewed-by: Alice Ryhl <aliceryhl@google.com> Link: https://lore.kernel.org/r/20231005210556.466856-4-ojeda@kernel.org Signed-off-by: Miguel Ojeda <ojeda@kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org> | 2 年前 | |
Merge tag 'linux-kselftest-kunit-6.6-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/shuah/linux-kselftest Pull kunit updates from Shuah Khan: - add support for running Rust documentation tests as KUnit tests - make init, str, sync, types doctests compilable/testable - add support for attributes API which include speed, modules attributes, ability to filter and report attributes - add support for marking tests slow using attributes API - add attributes API documentation - fix a wild-memory-access bug in kunit_filter_suites() and a possible memory leak in kunit_filter_suites() - add support for counting number of test suites in a module, list action to kunit test modules, and test filtering on module tests * tag 'linux-kselftest-kunit-6.6-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/shuah/linux-kselftest: (25 commits) kunit: fix struct kunit_attr header kunit: replace KUNIT_TRIGGER_STATIC_STUB maro with KUNIT_STATIC_STUB_REDIRECT kunit: Allow kunit test modules to use test filtering kunit: Make 'list' action available to kunit test modules kunit: Report the count of test suites in a module kunit: fix uninitialized variables bug in attributes filtering kunit: fix possible memory leak in kunit_filter_suites() kunit: fix wild-memory-access bug in kunit_filter_suites() kunit: Add documentation of KUnit test attributes kunit: add tests for filtering attributes kunit: time: Mark test as slow using test attributes kunit: memcpy: Mark tests as slow using test attributes kunit: tool: Add command line interface to filter and report attributes kunit: Add ability to filter attributes kunit: Add module attribute kunit: Add speed attribute kunit: Add test attributes API structure MAINTAINERS: add Rust KUnit files to the KUnit entry rust: support running Rust documentation tests as KUnit ones rust: types: make doctests compilable/testable ... | 2 年前 | |
rust: lockdep: Remove support for dynamically allocated LockClassKeys stable inclusion from stable-6.6.84 commit 50b22a98c1844dc57412c101b4b3923a650026e9 category: bugfix issue: #IC1IVT CVE: NA Signed-off-by: zyf1116 <zhouyongfei3@huawei.com> --------------------------------------- commit 966944f3711665db13e214fef6d02982c49bb972 upstream. Currently, dynamically allocated LockCLassKeys can be used from the Rust side without having them registered. This is a soundness issue, so remove them. Fixes: 6ea5aa08857a ("rust: sync: introduce LockClassKey") Suggested-by: Alice Ryhl <aliceryhl@google.com> Signed-off-by: Mitchell Levy <levymitchell0@gmail.com> Signed-off-by: Boqun Feng <boqun.feng@gmail.com> Signed-off-by: Ingo Molnar <mingo@kernel.org> Reviewed-by: Benno Lossin <benno.lossin@proton.me> Cc: stable@vger.kernel.org Link: https://lore.kernel.org/r/20250307232717.1759087-11-boqun.feng@gmail.com Signed-off-by: Boqun Feng <boqun.feng@gmail.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org> Signed-off-by: zyf1116 <zhouyongfei3@huawei.com> | 1 年前 | |
rust: module: place cleanup_module() in .exit.text section stable inclusion from stable-6.6.96 commit c765f592adc719cd2b925b0f30d65207a7e8f8f5 category: bugfix issue: #ICCW0G CVE: NA Signed-off-by: Li Nan <linan122@huawei.com> --------------------------------------- [ Upstream commit 249c3a0e53acefc2b06d3b3e1fc28fb2081f878d ] Place cleanup_module() in .exit.text section. Currently, cleanup_module() is likely placed in the .text section. It's inconsistent with the layout of C modules, where cleanup_module() is placed in .exit.text. [ Boqun asked for an example of how the section changed to be put in the log. Tomonori provided the following examples: C module: $ objdump -t ~/build/x86/drivers/block/loop.o|grep clean 0000000000000000 l O .exit.data 0000000000000008 __UNIQUE_ID___addressable_cleanup_module412 0000000000000000 g F .exit.text 000000000000009c cleanup_module Rust module without this patch: $ objdump -t ~/build/x86/samples/rust/rust_minimal.o|grep clean 00000000000002b0 g F .text 00000000000000c6 cleanup_module 0000000000000000 g O .exit.data 0000000000000008 _R...___UNIQUE_ID___addressable_cleanup_module Rust module with this patch: $ objdump -t ~/build/x86/samples/rust/rust_minimal.o|grep clean 0000000000000000 g F .exit.text 00000000000000c6 cleanup_module 0000000000000000 g O .exit.data 0000000000000008 _R...___UNIQUE_ID___addressable_cleanup_module - Miguel ] Signed-off-by: FUJITA Tomonori <fujita.tomonori@gmail.com> Acked-by: Jarkko Sakkinen <jarkko@kernel.org> Link: https://lore.kernel.org/r/20250308044506.14458-1-fujita.tomonori@gmail.com Signed-off-by: Miguel Ojeda <ojeda@kernel.org> Signed-off-by: Sasha Levin <sashal@kernel.org> Signed-off-by: Li Nan <linan122@huawei.com> | 1 年前 | |
rust: upgrade to Rust 1.68.2 This is the first upgrade to the Rust toolchain since the initial Rust merge, from 1.62.0 to 1.68.2 (i.e. the latest). # Context The kernel currently supports only a single Rust version [1] (rather than a minimum) given our usage of some "unstable" Rust features [2] which do not promise backwards compatibility. The goal is to reach a point where we can declare a minimum version for the toolchain. For instance, by waiting for some of the features to be stabilized. Therefore, the first minimum Rust version that the kernel will support is "in the future". # Upgrade policy Given we will eventually need to reach that minimum version, it would be ideal to upgrade the compiler from time to time to be as close as possible to that goal and find any issues sooner. In the extreme, we could upgrade as soon as a new Rust release is out. Of course, upgrading so often is in stark contrast to what one normally would need for GCC and LLVM, especially given the release schedule: 6 weeks for Rust vs. half a year for LLVM and a year for GCC. Having said that, there is no particular advantage to updating slowly either: kernel developers in "stable" distributions are unlikely to be able to use their distribution-provided Rust toolchain for the kernel anyway [3]. Instead, by routinely upgrading to the latest instead, kernel developers using Linux distributions that track the latest Rust release may be able to use those rather than Rust-provided ones, especially if their package manager allows to pin / hold back / downgrade the version for some days during windows where the version may not match. For instance, Arch, Fedora, Gentoo and openSUSE all provide and track the latest version of Rust as they get released every 6 weeks. Then, when the minimum version is reached, we will stop upgrading and decide how wide the window of support will be. For instance, a year of Rust versions. We will probably want to start small, and then widen it over time, just like the kernel did originally for LLVM, see commit 3519c4d6e08e ("Documentation: add minimum clang/llvm version"). # Unstable features stabilized This upgrade allows us to remove the following unstable features since they were stabilized: - feature(explicit_generic_args_with_impl_trait) (1.63). - feature(core_ffi_c) (1.64). - feature(generic_associated_types) (1.65). - feature(const_ptr_offset_from) (1.65, *). - feature(bench_black_box) (1.66, *). - feature(pin_macro) (1.68). The ones marked with * apply only to our old rust branch, not mainline yet, i.e. only for code that we may potentially upstream. With this patch applied, the only unstable feature allowed to be used outside the kernel crate is new_uninit, though other code to be upstreamed may increase the list. Please see [2] for details. # Other required changes Since 1.63, rustdoc triggers the broken_intra_doc_links lint for links pointing to exported (#[macro_export]) macro_rules. An issue was opened upstream [4], but it turns out it is intended behavior. For the moment, just add an explicit reference for each link. Later we can revisit this if rustdoc removes the compatibility measure. Nevertheless, this was helpful to discover a link that was pointing to the wrong place unintentionally. Since that one was actually wrong, it is fixed in a previous commit independently. Another change was the addition of cfg(no_rc) and cfg(no_sync) in upstream [5], thus remove our original changes for that. Similarly, upstream now tests that it compiles successfully with #[cfg(not(no_global_oom_handling))] [6], which allow us to get rid of some changes, such as an #[allow(dead_code)]. In addition, remove another #[allow(dead_code)] due to new uses within the standard library. Finally, add try_extend_trusted and move the code in spec_extend.rs since upstream moved it for the infallible version. # alloc upgrade and reviewing There are a large amount of changes, but the vast majority of them are due to our alloc fork being upgraded at once. There are two kinds of changes to be aware of: the ones coming from upstream, which we should follow as closely as possible, and the updates needed in our added fallible APIs to keep them matching the newer infallible APIs coming from upstream. Instead of taking a look at the diff of this patch, an alternative approach is reviewing a diff of the changes between upstream alloc and the kernel's. This allows to easily inspect the kernel additions only, especially to check if the fallible methods we already have still match the infallible ones in the new version coming from upstream. Another approach is reviewing the changes introduced in the additions in the kernel fork between the two versions. This is useful to spot potentially unintended changes to our additions. To apply these approaches, one may follow steps similar to the following to generate a pair of patches that show the differences between upstream Rust and the kernel (for the subset of alloc we use) before and after applying this patch: # Get the difference with respect to the old version. git -C rust checkout $(linux/scripts/min-tool-version.sh rustc) git -C linux ls-tree -r --name-only HEAD -- rust/alloc | cut -d/ -f3- | grep -Fv README.md | xargs -IPATH cp rust/library/alloc/src/PATH linux/rust/alloc/PATH git -C linux diff --patch-with-stat --summary -R > old.patch git -C linux restore rust/alloc # Apply this patch. git -C linux am rust-upgrade.patch # Get the difference with respect to the new version. git -C rust checkout $(linux/scripts/min-tool-version.sh rustc) git -C linux ls-tree -r --name-only HEAD -- rust/alloc | cut -d/ -f3- | grep -Fv README.md | xargs -IPATH cp rust/library/alloc/src/PATH linux/rust/alloc/PATH git -C linux diff --patch-with-stat --summary -R > new.patch git -C linux restore rust/alloc Now one may check the new.patch to take a look at the additions (first approach) or at the difference between those two patches (second approach). For the latter, a side-by-side tool is recommended. Link: https://rust-for-linux.com/rust-version-policy [1] Link: https://github.com/Rust-for-Linux/linux/issues/2 [2] Link: https://lore.kernel.org/rust-for-linux/CANiq72mT3bVDKdHgaea-6WiZazd8Mvurqmqegbe5JZxVyLR8Yg@mail.gmail.com/ [3] Link: https://github.com/rust-lang/rust/issues/106142 [4] Link: https://github.com/rust-lang/rust/pull/89891 [5] Link: https://github.com/rust-lang/rust/pull/98652 [6] Reviewed-by: Björn Roy Baron <bjorn3_gh@protonmail.com> Reviewed-by: Gary Guo <gary@garyguo.net> Reviewed-By: Martin Rodriguez Reboredo <yakoyoku@gmail.com> Tested-by: Ariel Miculas <amiculas@cisco.com> Tested-by: David Gow <davidgow@google.com> Tested-by: Boqun Feng <boqun.feng@gmail.com> Link: https://lore.kernel.org/r/20230418214347.324156-4-ojeda@kernel.org [ Removed feature(core_ffi_c) from uapi ] Signed-off-by: Miguel Ojeda <ojeda@kernel.org> | 3 年前 | |
rust: support running Rust documentation tests as KUnit ones Rust has documentation tests: these are typically examples of usage of any item (e.g. function, struct, module...). They are very convenient because they are just written alongside the documentation. For instance: /// Sums two numbers. /// /// /// assert_eq!(mymod::f(10, 20), 30); /// pub fn f(a: i32, b: i32) -> i32 { a + b } In userspace, the tests are collected and run via rustdoc. Using the tool as-is would be useful already, since it allows to compile-test most tests (thus enforcing they are kept in sync with the code they document) and run those that do not depend on in-kernel APIs. However, by transforming the tests into a KUnit test suite, they can also be run inside the kernel. Moreover, the tests get to be compiled as other Rust kernel objects instead of targeting userspace. On top of that, the integration with KUnit means the Rust support gets to reuse the existing testing facilities. For instance, the kernel log would look like: KTAP version 1 1..1 KTAP version 1 # Subtest: rust_doctests_kernel 1..59 # rust_doctest_kernel_build_assert_rs_0.location: rust/kernel/build_assert.rs:13 ok 1 rust_doctest_kernel_build_assert_rs_0 # rust_doctest_kernel_build_assert_rs_1.location: rust/kernel/build_assert.rs:56 ok 2 rust_doctest_kernel_build_assert_rs_1 # rust_doctest_kernel_init_rs_0.location: rust/kernel/init.rs:122 ok 3 rust_doctest_kernel_init_rs_0 ... # rust_doctest_kernel_types_rs_2.location: rust/kernel/types.rs:150 ok 59 rust_doctest_kernel_types_rs_2 # rust_doctests_kernel: pass:59 fail:0 skip:0 total:59 # Totals: pass:59 fail:0 skip:0 total:59 ok 1 rust_doctests_kernel Therefore, add support for running Rust documentation tests in KUnit. Some other notes about the current implementation and support follow. The transformation is performed by a couple scripts written as Rust hostprogs. Tests using the ? operator are also supported as usual, e.g.: /// /// # use kernel::{spawn_work_item, workqueue}; /// spawn_work_item!(workqueue::system(), || pr_info!("x"))?; /// # Ok::<(), Error>(()) /// The tests are also compiled with Clippy under CLIPPY=1, just like normal code, thus also benefitting from extra linting. The names of the tests are currently automatically generated. This allows to reduce the burden for documentation writers, while keeping them fairly stable for bisection. This is an improvement over the rustdoc-generated names, which include the line number; but ideally we would like to get rustdoc to provide the Rust item path and a number (for multiple examples in a single documented Rust item). In order for developers to easily see from which original line a failed doctests came from, a KTAP diagnostic line is printed to the log, containing the location (file and line) of the original test (i.e. instead of the location in the generated Rust file): # rust_doctest_kernel_types_rs_2.location: rust/kernel/types.rs:150 This line follows the syntax for declaring test metadata in the proposed KTAP v2 spec [1], which may be used for the proposed KUnit test attributes API [2]. Thus hopefully this will make migration easier later on (suggested by David [3]). The original line in that test attribute is figured out by providing an anchor (suggested by Boqun [4]). The original file is found by walking the filesystem, checking directory prefixes to reduce the amount of combinations to check, and it is only done once per file. Ambiguities are detected and reported. A notable difference from KUnit C tests is that the Rust tests appear to assert using the usual assert! and assert_eq! macros from the Rust standard library (core). We provide a custom version that forwards the call to KUnit instead. Importantly, these macros do not require passing context, unlike the KUnit C ones (i.e. struct kunit *). This makes them easier to use, and readers of the documentation do not need to care about which testing framework is used. In addition, it may allow us to test third-party code more easily in the future. However, a current limitation is that KUnit does not support assertions in other tasks. Thus we presently simply print an error to the kernel log if an assertion actually failed. This should be revisited to properly fail the test, perhaps saving the context somewhere else, or letting KUnit handle it. Link: https://lore.kernel.org/lkml/20230420205734.1288498-1-rmoar@google.com/ [1] Link: https://lore.kernel.org/linux-kselftest/20230707210947.1208717-1-rmoar@google.com/ [2] Link: https://lore.kernel.org/rust-for-linux/CABVgOSkOLO-8v6kdAGpmYnZUb+LKOX0CtYCo-Bge7r_2YTuXDQ@mail.gmail.com/ [3] Link: https://lore.kernel.org/rust-for-linux/ZIps86MbJF%2FiGIzd@boqun-archlinux/ [4] Signed-off-by: Miguel Ojeda <ojeda@kernel.org> Reviewed-by: David Gow <davidgow@google.com> Signed-off-by: Shuah Khan <skhan@linuxfoundation.org> | 3 年前 | |
rust: kbuild: fix export of bss symbols stable inclusion from stable-6.6.51 commit b4b2115d1f500986ff36720b7ffbfacb410bf7c3 category: bugfix issue: #IB7W7N CVE: NA Signed-off-by: zhangshuqi <zhangshuqi3@huawei.com> --------------------------------------- [ Upstream commit b8673d56935c32a4e0a1a0b40951fdd313dbf340 ] Symbols in the bss segment are not currently exported. This is a problem for Rust modules that link against statics, that are resident in the kernel image. Thus export symbols in the bss segment. Fixes: 2f7ab1267dc9 ("Kbuild: add Rust support") Signed-off-by: Andreas Hindborg <a.hindborg@samsung.com> Reviewed-by: Alice Ryhl <aliceryhl@google.com> Tested-by: Alice Ryhl <aliceryhl@google.com> Reviewed-by: Gary Guo <gary@garyguo.net> Link: https://lore.kernel.org/r/20240815074519.2684107-2-nmi@metaspace.dk [ Reworded slightly. - Miguel ] Signed-off-by: Miguel Ojeda <ojeda@kernel.org> Signed-off-by: Sasha Levin <sashal@kernel.org> Signed-off-by: zhangshuqi <zhangshuqi3@huawei.com> | 1 年前 | |
rust: Ignore preserve-most functions commit bad098d76835c1379e1cf6afc935f8a7e050f83c upstream. Neither bindgen nor Rust know about the preserve-most calling convention, and Clang describes it as unstable. Since we aren't using functions with this calling convention from Rust, blocklist them. These functions are only added to the build when list hardening is enabled, which is likely why others didn't notice this yet. Signed-off-by: Matthew Maurer <mmaurer@google.com> Reviewed-by: Martin Rodriguez Reboredo <yakoyoku@gmail.com> Reviewed-by: Alice Ryhl <aliceryhl@google.com> Link: https://lore.kernel.org/r/20231031201945.1412345-1-mmaurer@google.com [ Used Markdown for consistency with the other comments in the file. ] Signed-off-by: Miguel Ojeda <ojeda@kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org> | 2 年前 | |
rust: add build_error crate The build_error crate provides a function build_error which will panic at compile-time if executed in const context and, by default, will cause a build error if not executed at compile time and the optimizer does not optimise away the call. The CONFIG_RUST_BUILD_ASSERT_ALLOW kernel option allows to relax the default build failure and convert it to a runtime check. If the runtime check fails, panic! will be called. Its functionality will be exposed to users as a couple macros in the kernel crate in the following patch, thus some documentation here refers to them for simplicity. Signed-off-by: Gary Guo <gary@garyguo.net> Reviewed-by: Wei Liu <wei.liu@kernel.org> [Reworded, adapted for upstream and applied latest changes] Signed-off-by: Miguel Ojeda <ojeda@kernel.org> | 3 年前 | |
rust: upgrade to Rust 1.73.0 commit e08ff622c91af997cb89bc47e90a1a383e938bd0 upstream. This is the next upgrade to the Rust toolchain, from 1.72.1 to 1.73.0 (i.e. the latest) [1]. See the upgrade policy [2] and the comments on the first upgrade in commit 3ed03f4da06e ("rust: upgrade to Rust 1.68.2"). # Unstable features No unstable features (that we use) were stabilized. Therefore, the only unstable feature allowed to be used outside the kernel crate is still new_uninit, though other code to be upstreamed may increase the list. Please see [3] for details. # Required changes For the upgrade, the following changes are required: - Allow internal_features for feature(compiler_builtins) since now Rust warns about using internal compiler and standard library features (similar to how it also warns about incomplete ones) [4]. - A cleanup for a documentation link thanks to a new rustdoc lint. See previous commits for details. - A need to make an intra-doc link to a macro explicit, due to a change in behavior in rustdoc. See previous commits for details. # alloc upgrade and reviewing The vast majority of changes are due to our alloc fork being upgraded at once. There are two kinds of changes to be aware of: the ones coming from upstream, which we should follow as closely as possible, and the updates needed in our added fallible APIs to keep them matching the newer infallible APIs coming from upstream. Instead of taking a look at the diff of this patch, an alternative approach is reviewing a diff of the changes between upstream alloc and the kernel's. This allows to easily inspect the kernel additions only, especially to check if the fallible methods we already have still match the infallible ones in the new version coming from upstream. Another approach is reviewing the changes introduced in the additions in the kernel fork between the two versions. This is useful to spot potentially unintended changes to our additions. To apply these approaches, one may follow steps similar to the following to generate a pair of patches that show the differences between upstream Rust and the kernel (for the subset of alloc we use) before and after applying this patch: # Get the difference with respect to the old version. git -C rust checkout $(linux/scripts/min-tool-version.sh rustc) git -C linux ls-tree -r --name-only HEAD -- rust/alloc | cut -d/ -f3- | grep -Fv README.md | xargs -IPATH cp rust/library/alloc/src/PATH linux/rust/alloc/PATH git -C linux diff --patch-with-stat --summary -R > old.patch git -C linux restore rust/alloc # Apply this patch. git -C linux am rust-upgrade.patch # Get the difference with respect to the new version. git -C rust checkout $(linux/scripts/min-tool-version.sh rustc) git -C linux ls-tree -r --name-only HEAD -- rust/alloc | cut -d/ -f3- | grep -Fv README.md | xargs -IPATH cp rust/library/alloc/src/PATH linux/rust/alloc/PATH git -C linux diff --patch-with-stat --summary -R > new.patch git -C linux restore rust/alloc Now one may check the new.patch to take a look at the additions (first approach) or at the difference between those two patches (second approach). For the latter, a side-by-side tool is recommended. Link: https://github.com/rust-lang/rust/blob/stable/RELEASES.md#version-1730-2023-10-05 [1] Link: https://rust-for-linux.com/rust-version-policy [2] Link: https://github.com/Rust-for-Linux/linux/issues/2 [3] Link: https://github.com/rust-lang/compiler-team/issues/596 [4] Reviewed-by: Martin Rodriguez Reboredo <yakoyoku@gmail.com> Reviewed-by: Vincenzo Palazzo <vincenzopalazzodev@gmail.com> Reviewed-by: Alice Ryhl <aliceryhl@google.com> Link: https://lore.kernel.org/r/20231005210556.466856-4-ojeda@kernel.org Signed-off-by: Miguel Ojeda <ojeda@kernel.org> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org> | 2 年前 | |
rust: add build_error crate The build_error crate provides a function build_error which will panic at compile-time if executed in const context and, by default, will cause a build error if not executed at compile time and the optimizer does not optimise away the call. The CONFIG_RUST_BUILD_ASSERT_ALLOW kernel option allows to relax the default build failure and convert it to a runtime check. If the runtime check fails, panic! will be called. Its functionality will be exposed to users as a couple macros in the kernel crate in the following patch, thus some documentation here refers to them for simplicity. Signed-off-by: Gary Guo <gary@garyguo.net> Reviewed-by: Wei Liu <wei.liu@kernel.org> [Reworded, adapted for upstream and applied latest changes] Signed-off-by: Miguel Ojeda <ojeda@kernel.org> | 3 年前 | |
Merge tag 'rust-6.6' of https://github.com/Rust-for-Linux/linux Pull rust updates from Miguel Ojeda: "In terms of lines, most changes this time are on the pinned-init API and infrastructure. While we have a Rust version upgrade, and thus a bunch of changes from the vendored 'alloc' crate as usual, this time those do not account for many lines. Toolchain and infrastructure: - Upgrade to Rust 1.71.1. This is the second such upgrade, which is a smaller jump compared to the last time. This version allows us to remove the '__rust_*' allocator functions -- the compiler now generates them as expected, thus now our 'KernelAllocator' is used. It also introduces the 'offset_of!' macro in the standard library (as an unstable feature) which we will need soon. So far, we were using a declarative macro as a prerequisite in some not-yet-landed patch series, which did not support sub-fields (i.e. nested structs): #[repr(C)] struct S { a: u16, b: (u8, u8), } assert_eq!(offset_of!(S, b.1), 3); - Upgrade to bindgen 0.65.1. This is the first time we upgrade its version. Given it is a fairly big jump, it comes with a fair number of improvements/changes that affect us, such as a fix needed to support LLVM 16 as well as proper support for '__noreturn' C functions, which are now mapped to return the '!' type in Rust: void __noreturn f(void); // C pub fn f() -> !; // Rust - 'scripts/rust_is_available.sh' improvements and fixes. This series takes care of all the issues known so far and adds a few new checks to cover for even more cases, plus adds some more help texts. All this together will hopefully make problematic setups easier to identify and to be solved by users building the kernel. In addition, it adds a test suite which covers all branches of the shell script, as well as tests for the issues found so far. - Support rust-analyzer for out-of-tree modules too. - Give 'cfg's to rust-analyzer for the 'core' and 'alloc' crates. - Drop 'scripts/is_rust_module.sh' since it is not needed anymore. Macros crate: - New 'paste!' proc macro. This macro is a more flexible version of 'concat_idents!': it allows the resulting identifier to be used to declare new items and it allows to transform the identifiers before concatenating them, e.g. let x_1 = 42; paste!(let [<x _2>] = [<x _1>];); assert!(x_1 == x_2); The macro is then used for several of the pinned-init API changes in this pull. Pinned-init API: - Make '#[pin_data]' compatible with conditional compilation of fields, allowing to write code like: #[pin_data] pub struct Foo { #[cfg(CONFIG_BAR)] a: Bar, #[cfg(not(CONFIG_BAR))] a: Baz, } - New '#[derive(Zeroable)]' proc macro for the 'Zeroable' trait, which allows 'unsafe' implementations for structs where every field implements the 'Zeroable' trait, e.g.: #[derive(Zeroable)] pub struct DriverData { id: i64, buf_ptr: *mut u8, len: usize, } - Add '..Zeroable::zeroed()' syntax to the 'pin_init!' macro for zeroing all other fields, e.g.: pin_init!(Buf { buf: [1; 64], ..Zeroable::zeroed() }); - New '{,pin_}init_array_from_fn()' functions to create array initializers given a generator function, e.g.: let b: Box<[usize; 1_000]> = Box::init::<Error>( init_array_from_fn(|i| i) ).unwrap(); assert_eq!(b.len(), 1_000); assert_eq!(b[123], 123); - New '{,pin_}chain' methods for '{,Pin}Init<T, E>' that allow to execute a closure on the value directly after initialization, e.g.: let foo = init!(Foo { buf <- init::zeroed() }).chain(|foo| { foo.setup(); Ok(()) }); - Support arbitrary paths in init macros, instead of just identifiers and generic types. - Implement the 'Zeroable' trait for the 'UnsafeCell<T>' and 'Opaque<T>' types. - Make initializer values inaccessible after initialization. - Make guards in the init macros hygienic. 'allocator' module: - Use 'krealloc_aligned()' in 'KernelAllocator::alloc' preventing misaligned allocations when the Rust 1.71.1 upgrade is applied later in this pull. The equivalent fix for the previous compiler version (where 'KernelAllocator' is not yet used) was merged into 6.5 already, which added the 'krealloc_aligned()' function used here. - Implement 'KernelAllocator::{realloc, alloc_zeroed}' for performance, using 'krealloc_aligned()' too, which forwards the call to the C API. 'types' module: - Make 'Opaque' be '!Unpin', removing the need to add a 'PhantomPinned' field to Rust structs that contain C structs which must not be moved. - Make 'Opaque' use 'UnsafeCell' as the outer type, rather than inner. Documentation: - Suggest obtaining the source code of the Rust's 'core' library using the tarball instead of the repository. MAINTAINERS: - Andreas and Alice, from Samsung and Google respectively, are joining as reviewers of the "RUST" entry. As well as a few other minor changes and cleanups" * tag 'rust-6.6' of https://github.com/Rust-for-Linux/linux: (42 commits) rust: init: update expanded macro explanation rust: init: add {pin_}chain functions to {Pin}Init<T, E> rust: init: make PinInit<T, E> a supertrait of Init<T, E> rust: init: implement Zeroable for UnsafeCell<T> and Opaque<T> rust: init: add support for arbitrary paths in init macros rust: init: add functions to create array initializers rust: init: add ..Zeroable::zeroed() syntax for zeroing all missing fields rust: init: make initializer values inaccessible after initializing rust: init: wrap type checking struct initializers in a closure rust: init: make guards in the init macros hygienic rust: add derive macro for Zeroable rust: init: make #[pin_data] compatible with conditional compilation of fields rust: init: consolidate init macros docs: rust: clarify what 'rustup override' does docs: rust: update instructions for obtaining 'core' source docs: rust: add command line to rust-analyzer section scripts: generate_rust_analyzer: provide cfgs for core and alloc rust: bindgen: upgrade to 0.65.1 rust: enable no_mangle_with_rust_abi Clippy lint rust: upgrade to Rust 1.71.1 ... | 2 年前 |
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