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Revision tags: v6.15, v6.15-rc7, v6.15-rc6, v6.15-rc5, v6.15-rc4, v6.15-rc3, v6.15-rc2, v6.15-rc1, v6.14, v6.14-rc7, v6.14-rc6, v6.14-rc5, v6.14-rc4, v6.14-rc3, v6.14-rc2, v6.14-rc1, v6.13, v6.13-rc7, v6.13-rc6, v6.13-rc5, v6.13-rc4, v6.13-rc3, v6.13-rc2 |
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72f51a4f |
| 02-Dec-2024 |
Eric Biggers <[email protected]> |
loongarch/crc32: expose CRC32 functions through lib
Move the loongarch CRC32 assembly code into the lib directory and wire it up to the library interface. This allows it to be used without going th
loongarch/crc32: expose CRC32 functions through lib
Move the loongarch CRC32 assembly code into the lib directory and wire it up to the library interface. This allows it to be used without going through the crypto API. It remains usable via the crypto API too via the shash algorithms that use the library interface. Thus all the arch-specific "shash" code becomes unnecessary and is removed.
Note: to see the diff from arch/loongarch/crypto/crc32-loongarch.c to arch/loongarch/lib/crc32-loongarch.c, view this commit with 'git show -M10'.
Reviewed-by: Ard Biesheuvel <[email protected]> Reviewed-by: WangYuli <[email protected]> Link: https://lore.kernel.org/r/[email protected] Signed-off-by: Eric Biggers <[email protected]>
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Revision tags: v6.13-rc1, v6.12, v6.12-rc7, v6.12-rc6, v6.12-rc5, v6.12-rc4, v6.12-rc3, v6.12-rc2, v6.12-rc1, v6.11, v6.11-rc7, v6.11-rc6, v6.11-rc5, v6.11-rc4, v6.11-rc3, v6.11-rc2, v6.11-rc1, v6.10, v6.10-rc7, v6.10-rc6, v6.10-rc5, v6.10-rc4, v6.10-rc3, v6.10-rc2, v6.10-rc1, v6.9, v6.9-rc7, v6.9-rc6, v6.9-rc5, v6.9-rc4, v6.9-rc3, v6.9-rc2, v6.9-rc1, v6.8, v6.8-rc7, v6.8-rc6, v6.8-rc5, v6.8-rc4, v6.8-rc3, v6.8-rc2, v6.8-rc1, v6.7, v6.7-rc8, v6.7-rc7, v6.7-rc6, v6.7-rc5, v6.7-rc4, v6.7-rc3, v6.7-rc2, v6.7-rc1, v6.6, v6.6-rc7, v6.6-rc6, v6.6-rc5, v6.6-rc4, v6.6-rc3, v6.6-rc2, v6.6-rc1, v6.5, v6.5-rc7, v6.5-rc6, v6.5-rc5, v6.5-rc4, v6.5-rc3, v6.5-rc2, v6.5-rc1, v6.4, v6.4-rc7, v6.4-rc6, v6.4-rc5, v6.4-rc4, v6.4-rc3, v6.4-rc2, v6.4-rc1 |
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2f164822 |
| 01-May-2023 |
Min Zhou <[email protected]> |
LoongArch: crypto: Add crc32 and crc32c hw acceleration
With a blatant copy of some MIPS bits we introduce the crc32 and crc32c hw accelerated module to LoongArch.
LoongArch has provided these inst
LoongArch: crypto: Add crc32 and crc32c hw acceleration
With a blatant copy of some MIPS bits we introduce the crc32 and crc32c hw accelerated module to LoongArch.
LoongArch has provided these instructions to calculate crc32 and crc32c: * crc.w.b.w crcc.w.b.w * crc.w.h.w crcc.w.h.w * crc.w.w.w crcc.w.w.w * crc.w.d.w crcc.w.d.w
So we can make use of these instructions to improve the performance of calculation for crc32(c) checksums.
As can be seen from the following test results, crc32(c) instructions can improve the performance by 58%.
Software implemention Hardware acceleration Buffer size time cost (seconds) time cost (seconds) Accel. 100 KB 0.000845 0.000534 59.1% 1 MB 0.007758 0.004836 59.4% 10 MB 0.076593 0.047682 59.4% 100 MB 0.756734 0.479126 58.5% 1000 MB 7.563841 4.778266 58.5%
Signed-off-by: Min Zhou <[email protected]> Signed-off-by: Huacai Chen <[email protected]>
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