mirror of
git://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
synced 2025-09-04 20:19:47 +08:00
![]() -----BEGIN PGP SIGNATURE----- iQIzBAABCAAdFiEE+soXsSLHKoYyzcli6rmadz2vbToFAmeOu1YACgkQ6rmadz2v bTrrHxAAn6eqEsluWnDlzhI0OGsPjvgS00sf+MOeqiXYeS2eJ8yJuKifp38+nIQZ lIplsWU2ReUY20eizPqLPnQ7TXZGvLgp08E8yHUoZ0siWanqr9iDRfbZCCNrDMNm lMqeR1SLapMws2R/UX9JbvPn2ajIJ6Lb4wxenTfdlW6q+0hAGM6Dt0k/jBod+quq /oo+xwG3L0q4APBovJfiAFN2z6IYN03b+zLiOrpIJtMACGewEXnl3m4mkL8ZM/FV nZGPIxIUPXCpKTGEkNqxfkrnHN2wZQ4ZSKEJ6lhEEp4jrgCVITaGZ/E7jlx6fZoj bbd4YMonIPo9Nhim8p1dt8yYBhKKiE5IXIq0GqlMv5+MvAN8ylrlydpsouW1fu66 hZ1W1BxbxmrgyF0Bwo9JPOMhBHwMrmD6iH9LgiMpZf0ASeF+q9cJpoSOU5j5E9XB LpLIRf5jYTd4wZjhDmrQREReLo+Bng9DlCBu+jjh2+YTz6l6Qed+ETpENcd7lL5i IHZVbgD2RVPNJoUfdrd763HfYfDTk+50MF5FIMEyfKHz11if0E/LhBMzto22hm6b 2f8ruj/8yvg8s2dxEP3ySQgcnynlwEnGxLenUVv7uEOYKeWri1rq+fvTK5ne1OLK oHnTlkViwQb74c0r8cFW+nkyfUYTfhhBAql14rl/fMjGDO2KZ10= =f2CA -----END PGP SIGNATURE----- Merge tag 'bpf-next-6.14' of git://git.kernel.org/pub/scm/linux/kernel/git/bpf/bpf-next Pull bpf updates from Alexei Starovoitov: "A smaller than usual release cycle. The main changes are: - Prepare selftest to run with GCC-BPF backend (Ihor Solodrai) In addition to LLVM-BPF runs the BPF CI now runs GCC-BPF in compile only mode. Half of the tests are failing, since support for btf_decl_tag is still WIP, but this is a great milestone. - Convert various samples/bpf to selftests/bpf/test_progs format (Alexis Lothoré and Bastien Curutchet) - Teach verifier to recognize that array lookup with constant in-range index will always succeed (Daniel Xu) - Cleanup migrate disable scope in BPF maps (Hou Tao) - Fix bpf_timer destroy path in PREEMPT_RT (Hou Tao) - Always use bpf_mem_alloc in bpf_local_storage in PREEMPT_RT (Martin KaFai Lau) - Refactor verifier lock support (Kumar Kartikeya Dwivedi) This is a prerequisite for upcoming resilient spin lock. - Remove excessive 'may_goto +0' instructions in the verifier that LLVM leaves when unrolls the loops (Yonghong Song) - Remove unhelpful bpf_probe_write_user() warning message (Marco Elver) - Add fd_array_cnt attribute for prog_load command (Anton Protopopov) This is a prerequisite for upcoming support for static_branch" * tag 'bpf-next-6.14' of git://git.kernel.org/pub/scm/linux/kernel/git/bpf/bpf-next: (125 commits) selftests/bpf: Add some tests related to 'may_goto 0' insns bpf: Remove 'may_goto 0' instruction in opt_remove_nops() bpf: Allow 'may_goto 0' instruction in verifier selftests/bpf: Add test case for the freeing of bpf_timer bpf: Cancel the running bpf_timer through kworker for PREEMPT_RT bpf: Free element after unlock in __htab_map_lookup_and_delete_elem() bpf: Bail out early in __htab_map_lookup_and_delete_elem() bpf: Free special fields after unlock in htab_lru_map_delete_node() tools: Sync if_xdp.h uapi tooling header libbpf: Work around kernel inconsistently stripping '.llvm.' suffix bpf: selftests: verifier: Add nullness elision tests bpf: verifier: Support eliding map lookup nullness bpf: verifier: Refactor helper access type tracking bpf: tcp: Mark bpf_load_hdr_opt() arg2 as read-write bpf: verifier: Add missing newline on verbose() call selftests/bpf: Add distilled BTF test about marking BTF_IS_EMBEDDED libbpf: Fix incorrect traversal end type ID when marking BTF_IS_EMBEDDED libbpf: Fix return zero when elf_begin failed selftests/bpf: Fix btf leak on new btf alloc failure in btf_distill test veristat: Load struct_ops programs only once ... |
||
---|---|---|
.. | ||
asm | ||
asm-generic | ||
drm | ||
linux | ||
README |
Why we want a copy of kernel headers in tools? ============================================== There used to be no copies, with tools/ code using kernel headers directly. From time to time tools/perf/ broke due to legitimate kernel hacking. At some point Linus complained about such direct usage. Then we adopted the current model. The way these headers are used in perf are not restricted to just including them to compile something. There are sometimes used in scripts that convert defines into string tables, etc, so some change may break one of these scripts, or new MSRs may use some different #define pattern, etc. E.g.: $ ls -1 tools/perf/trace/beauty/*.sh | head -5 tools/perf/trace/beauty/arch_errno_names.sh tools/perf/trace/beauty/drm_ioctl.sh tools/perf/trace/beauty/fadvise.sh tools/perf/trace/beauty/fsconfig.sh tools/perf/trace/beauty/fsmount.sh $ $ tools/perf/trace/beauty/fadvise.sh static const char *fadvise_advices[] = { [0] = "NORMAL", [1] = "RANDOM", [2] = "SEQUENTIAL", [3] = "WILLNEED", [4] = "DONTNEED", [5] = "NOREUSE", }; $ The tools/perf/check-headers.sh script, part of the tools/ build process, points out changes in the original files. So its important not to touch the copies in tools/ when doing changes in the original kernel headers, that will be done later, when check-headers.sh inform about the change to the perf tools hackers. Another explanation from Ingo Molnar: It's better than all the alternatives we tried so far: - Symbolic links and direct #includes: this was the original approach but was pushed back on from the kernel side, when tooling modified the headers and broke them accidentally for kernel builds. - Duplicate self-defined ABI headers like glibc: double the maintenance burden, double the chance for mistakes, plus there's no tech-driven notification mechanism to look at new kernel side changes. What we are doing now is a third option: - A software-enforced copy-on-write mechanism of kernel headers to tooling, driven by non-fatal warnings on the tooling side build when kernel headers get modified: Warning: Kernel ABI header differences: diff -u tools/include/uapi/drm/i915_drm.h include/uapi/drm/i915_drm.h diff -u tools/include/uapi/linux/fs.h include/uapi/linux/fs.h diff -u tools/include/uapi/linux/kvm.h include/uapi/linux/kvm.h ... The tooling policy is to always pick up the kernel side headers as-is, and integate them into the tooling build. The warnings above serve as a notification to tooling maintainers that there's changes on the kernel side. We've been using this for many years now, and it might seem hacky, but works surprisingly well.