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I am porting SSE SIMD code to use the 256 bit AVX extensions and cannot seem to find any instruction that will blend/shuffle/move the high 128 bits and the low 128 bits.

The backing story:

What I really want is VHADDPS/_mm256_hadd_ps to act like HADDPS/_mm_hadd_ps, only with 256 bit words. Unfortunately, it acts like two calls to HADDPS acting independently on the low and high words.

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I don't know anything about this architecture, but wow, you'd think they could have put in a rotate instruction... – Tom Zych Aug 27 '11 at 21:56

The only way that I know of doing this is with _mm256_extractf128_si256 and _mm256_set_m128i. E.g. to swap the two halves of a 256 bit vector:

__m128i v0h = _mm256_extractf128_si256(v0, 0);
__m128i v0l = _mm256_extractf128_si256(v0, 1);
__m256i v1 = _mm256_set_m128i(v0h, v0l);
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Do you know the difference between _mm256_extractf128_si256 and _mm256_extracti128_si256? The only thing I can tell is that the first one works with AVX and the second requires AVX2. Why would anyone ever use the second version. I look at Agner Fog's instruction tables and latency, throughput, and ports are identical. Maybe I should ask this as a question. – Z boson Sep 5 '14 at 8:40
I thought I'd already seen this asked somewhere on SO but a quick search didn't turn it up - AFAIK they are effectively the same. – Paul R Sep 5 '14 at 9:32
@Zboson: oops - just found the question I mentioned above - I should have searched for the instructions rather than the intrinsics:… – Paul R Sep 5 '14 at 11:06
up vote 7 down vote accepted

Using VPERM2F128, one can swap the low 128 and high 128 bits ( as well as other permutations). The intrinsic is

x = _mm256_permute2f128_ps( x , x , 1)

The third argument is a control word which gives the user a lot of flexibility. The intel online documentation seem to totally lack explanation of what the control word structure is, but the downloadable Intel Instrinsic Guide app gives a better explanation.

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