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* Update copyright dates with scripts/update-copyrightsPaul Eggert2021-01-021-1/+1
| | | | | | | | | | | | | | | | I used these shell commands: ../glibc/scripts/update-copyrights $PWD/../gnulib/build-aux/update-copyright (cd ../glibc && git commit -am"[this commit message]") and then ignored the output, which consisted lines saying "FOO: warning: copyright statement not found" for each of 6694 files FOO. I then removed trailing white space from benchtests/bench-pthread-locks.c and iconvdata/tst-iconv-big5-hkscs-to-2ucs4.c, to work around this diagnostic from Savannah: remote: *** pre-commit check failed ... remote: *** error: lines with trailing whitespace found remote: error: hook declined to update refs/heads/master
* x86: Restore processing of cache size tunables in init_cacheinfoFlorian Weimer2020-10-281-8/+4
| | | | | Fixes and partially reverts commit 59803e81f96b479c17f583b31eac44b5 ("x86: Optimizing memcpy for AMD Zen architecture.").
* x86: Optimizing memcpy for AMD Zen architecture.Sajan Karumanchi2020-10-281-6/+26
| | | | | | | | | | | | | | Modifying the shareable cache '__x86_shared_cache_size', which is a factor in computing the non-temporal threshold parameter '__x86_shared_non_temporal_threshold' to optimize memcpy for AMD Zen architectures. In the existing implementation, the shareable cache is computed as 'L3 per thread, L2 per core'. Recomputing this shareable cache as 'L3 per CCX(Core-Complex)' has brought in performance gains. As per the large bench variant results, this patch also addresses the regression problem on AMD Zen architectures. Reviewed-by: Premachandra Mallappa <premachandra.mallappa@amd.com>
* x86: Initialize CPU info via IFUNC relocation [BZ 26203]H.J. Lu2020-10-161-0/+413
X86 CPU features in ld.so are initialized by init_cpu_features, which is invoked by DL_PLATFORM_INIT from _dl_sysdep_start. But when ld.so is loaded by static executable, DL_PLATFORM_INIT is never called. Also x86 cache info in libc.o and libc.a is initialized by a constructor which may be called too late. Since some fields in _rtld_global_ro in ld.so are initialized by dynamic relocation, we can also initialize x86 CPU features in _rtld_global_ro in ld.so and cache info in libc.so by initializing dummy function pointers in ld.so and libc.so via IFUNC relocation. Key points: 1. IFUNC is always supported, independent of --enable-multi-arch or --disable-multi-arch. Linker generates IFUNC relocations from input IFUNC objects and ld.so performs IFUNC relocations. 2. There are no IFUNC dependencies in ld.so before dynamic relocation have been performed, 3. The x86 CPU features in ld.so is initialized by DL_PLATFORM_INIT in dynamic executable and by IFUNC relocation in dlopen in static executable. 4. The x86 cache info in libc.o is initialized by IFUNC relocation. 5. In libc.a, both x86 CPU features and cache info are initialized from ARCH_INIT_CPU_FEATURES, not by IFUNC relocation, before __libc_early_init is called. Note: _dl_x86_init_cpu_features can be called more than once from DL_PLATFORM_INIT and during relocation in ld.so.