Import OpenSSL 1.1.0h
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@@ -28,18 +28,21 @@
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# for standalone AESNI-CBC encrypt, standalone SHA256, and stitched
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# subroutine:
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#
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# AES-128/-192/-256+SHA256 this(**)gain
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# Sandy Bridge 5.05/6.05/7.05+11.6 13.0 +28%/36%/43%
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# Ivy Bridge 5.05/6.05/7.05+10.3 11.6 +32%/41%/50%
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# Haswell 4.43/5.29/6.19+7.80 8.79 +39%/49%/59%
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# Skylake 2.62/3.14/3.62+7.70 8.10 +27%/34%/40%
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# Bulldozer 5.77/6.89/8.00+13.7 13.7 +42%/50%/58%
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# AES-128/-192/-256+SHA256 this(**) gain
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# Sandy Bridge 5.05/6.05/7.05+11.6 13.0 +28%/36%/43%
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# Ivy Bridge 5.05/6.05/7.05+10.3 11.6 +32%/41%/50%
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# Haswell 4.43/5.29/6.19+7.80 8.79 +39%/49%/59%
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# Skylake 2.62/3.14/3.62+7.70 8.10 +27%/34%/40%
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# Bulldozer 5.77/6.89/8.00+13.7 13.7 +42%/50%/58%
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# Ryzen(***) 2.71/-/3.71+2.05 2.74/-/3.73 +74%/-/54%
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# Goldmont(***) 3.82/-/5.35+4.16 4.73/-/5.94 +69%/-/60%
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#
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# (*) there are XOP, AVX1 and AVX2 code paths, meaning that
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# Westmere is omitted from loop, this is because gain was not
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# estimated high enough to justify the effort;
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# (**) these are EVP-free results, results obtained with 'speed
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# -evp aes-256-cbc-hmac-sha256' will vary by percent or two;
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# (***) these are SHAEXT results;
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$flavour = shift;
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$output = shift;
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