Commit Graph

22 Commits

Author SHA1 Message Date
Craig Topper a80949feb5 [X86] Add VPERMPD/VPERMQ and VPERMPS/VPERMD to the execution domain fixing table.
llvm-svn: 313610
2017-09-19 04:39:55 +00:00
Craig Topper 77d7f331dd [X86] Fix two more places to prefer VPERMQ/PD over VPERM2X128 when AVX2 is enabled
The shuffle combining and lowerVectorShuffleAsLanePermuteAndBlend were both still trying to use VPERM2XF128 for unary shuffles when AVX2 is enabled. VPERM2X128 takes two inputs meaning when we use it for a unary shuffle one of those inputs is left undefined creating a false dependency on whatever register gets allocated there.

If we have VPERMQ/PD we should prefer those since they only have a single input.

Differential Revision: https://reviews.llvm.org/D37947

llvm-svn: 313542
2017-09-18 16:39:49 +00:00
Craig Topper f264fcc704 [X86] Remove VPERM2F128/VPERM2I128 intrinsics and autoupgrade to native shuffles.
I've moved the test cases from the InstCombine optimizations to the backend to keep the coverage we had there. It covered every possible immediate so I've preserved the resulting shuffle mask for each of those immediates.

llvm-svn: 313450
2017-09-16 07:36:14 +00:00
Craig Topper aa499c1cb2 [X86] Fix some FileCheck lines that use the wrong prefix.
Assume they were moved during autoupgrading and not changed.

llvm-svn: 313448
2017-09-16 07:13:39 +00:00
Uriel Korach 5d5da5f531 [X86] [PATCH] [intrinsics] Lowering X86 ABS intrinsics to IR. (llvm)
This patch, together with a matching clang patch (https://reviews.llvm.org/D37694), implements the lowering of X86 ABS intrinsics to IR.

differential revision: https://reviews.llvm.org/D37693.

llvm-svn: 313134
2017-09-13 09:02:36 +00:00
Yael Tsafrir 47668b5e03 [X86] Lower _mm[256|512]_[mask[z]]_avg_epu[8|16] intrinsics to native llvm IR
Differential Revision: https://reviews.llvm.org/D37560

llvm-svn: 313013
2017-09-12 07:50:35 +00:00
Craig Topper fa82efb50a [X86] Add VBLENDPS/VPBLENDD to the execution domain fixing tables.
llvm-svn: 312449
2017-09-03 17:52:23 +00:00
Yael Tsafrir 185c81725e [X86] Added run line to intrinsics upgrade test. NFC.
llvm-svn: 312241
2017-08-31 13:56:22 +00:00
Sanjay Patel 15748d239e [x86] transform vector inc/dec to use -1 constant (PR33483)
Convert vector increment or decrement to sub/add with an all-ones constant:

add X, <1, 1...> --> sub X, <-1, -1...>
sub X, <1, 1...> --> add X, <-1, -1...>

The all-ones vector constant can be materialized using a pcmpeq instruction that is 
commonly recognized as an idiom (has no register dependency), so that's better than 
loading a splat 1 constant.

AVX512 uses 'vpternlogd' for 512-bit vectors because there is apparently no better
way to produce 512 one-bits.

The general advantages of this lowering are:
1. pcmpeq has lower latency than a memop on every uarch I looked at in Agner's tables, 
   so in theory, this could be better for perf, but...

2. That seems unlikely to affect any OOO implementation, and I can't measure any real 
   perf difference from this transform on Haswell or Jaguar, but...

3. It doesn't look like it from the diffs, but this is an overall size win because we 
   eliminate 16 - 64 constant bytes in the case of a vector load. If we're broadcasting 
   a scalar load (which might itself be a bug), then we're replacing a scalar constant 
   load + broadcast with a single cheap op, so that should always be smaller/better too.

4. This makes the DAG/isel output more consistent - we use pcmpeq already for padd x, -1 
   and psub x, -1, so we should use that form for +1 too because we can. If there's some
   reason to favor a constant load on some CPU, let's make the reverse transform for all
   of these cases (either here in the DAG or in a later machine pass).

This should fix:
https://bugs.llvm.org/show_bug.cgi?id=33483

Differential Revision: https://reviews.llvm.org/D34336

llvm-svn: 306289
2017-06-26 14:19:26 +00:00
Simon Pilgrim 5a22eaa2bf [X86][SSE] Update MOVNTDQA non-temporal loads to generic implementation (LLVM)
MOVNTDQA non-temporal aligned vector loads can be correctly represented using generic builtin loads, allowing us to remove the existing x86 intrinsics.

Clang companion patch: D31766.

Differential Revision: https://reviews.llvm.org/D31767

llvm-svn: 300325
2017-04-14 15:05:35 +00:00
Simon Pilgrim fa6afd1bc6 [X86][AVX2] Cleaned up test triple and regenerated tests.
llvm-svn: 292946
2017-01-24 16:53:09 +00:00
Sanjay Patel 0e9afea3c8 [x86] autoupgrade and remove AVX2 integer min/max intrinsics
This will (hopefully very temporarily) break clang.
The clang side of this should be the next commit.

llvm-svn: 272932
2016-06-16 18:44:20 +00:00
Craig Topper 8287fd8abd [X86] Remove SSE/AVX unaligned store intrinsics as clang no longer uses them. Auto upgrade to native unaligned store instructions.
llvm-svn: 271236
2016-05-30 23:15:56 +00:00
Craig Topper 39716f8358 [X86] Use update_llc_test_checks.py to re-generate a test in preparation for an upcoming commit. NFC
llvm-svn: 271234
2016-05-30 22:54:14 +00:00
Simon Pilgrim 9602d678cb [X86][SSE] (Reapplied) Replace (V)PMOVSX and (V)PMOVZX integer extension intrinsics with generic IR (llvm)
This patch removes the llvm intrinsics VPMOVSX and (V)PMOVZX sign/zero extension intrinsics and auto-upgrades to SEXT/ZEXT calls instead. We already did this for SSE41 PMOVSX sometime ago so much of that implementation can be reused.

Reapplied now that the the companion patch (D20684) removes/auto-upgrade the clang intrinsics has been committed.

Differential Revision: http://reviews.llvm.org/D20686

llvm-svn: 271131
2016-05-28 18:03:41 +00:00
Simon Pilgrim 4642a57fbf Revert: r270973 - [X86][SSE] Replace (V)PMOVSX and (V)PMOVZX integer extension intrinsics with generic IR (llvm)
llvm-svn: 270976
2016-05-27 09:02:25 +00:00
Simon Pilgrim c013e5737b [X86][SSE] Replace (V)PMOVSX and (V)PMOVZX integer extension intrinsics with generic IR (llvm)
This patch removes the llvm intrinsics VPMOVSX and (V)PMOVZX sign/zero extension intrinsics and auto-upgrades to SEXT/ZEXT calls instead. We already did this for SSE41 PMOVSX sometime ago so much of that implementation can be reused.

A companion patch (D20684) removes/auto-upgrade the clang intrinsics.

Differential Revision: http://reviews.llvm.org/D20686

llvm-svn: 270973
2016-05-27 08:49:15 +00:00
Ahmed Bougacha 1a498705e4 [X86] Replace avx2 broadcast intrinsics with native IR.
Since r245605, the clang headers don't use these anymore.
r245165 updated some of the tests already; update the others, add
an autoupgrade, remove the intrinsics, and cleanup the definitions.

Differential Revision: http://reviews.llvm.org/D10555

llvm-svn: 245606
2015-08-20 20:36:19 +00:00
Sanjay Patel 4339abe66f [X86, AVX2] Replace inserti128 and extracti128 intrinsics with generic shuffles
This should complete the job started in r231794 and continued in r232045:
We want to replace as much custom x86 shuffling via intrinsics
as possible because pushing the code down the generic shuffle
optimization path allows for better codegen and less complexity
in LLVM.

AVX2 introduced proper integer variants of the hacked integer insert/extract
C intrinsics that were created for this same functionality with AVX1.

This should complete the removal of insert/extract128 intrinsics.

The Clang precursor patch for this change was checked in at r232109.

llvm-svn: 232120
2015-03-12 23:16:18 +00:00
Craig Topper b324e43aed [X86] Remove AVX2 and SSE2 pslldq and psrldq intrinsics. We can represent them in IR with vector shuffles now. All their uses have been removed from clang in favor of shuffles.
llvm-svn: 229640
2015-02-18 06:24:44 +00:00
Craig Topper 49df44e2e2 [X86] Remove the multiply by 8 that goes into the shift constant for X86ISD::VSHLDQ and X86ISD::VSRLDQ. This simplifies the pattern matching in isel and allows these nodes to become the patterns embedded in the instruction.
llvm-svn: 229431
2015-02-16 20:52:07 +00:00
Chandler Carruth 373b2b1728 [x86] Fix a pretty horrible bug and inconsistency in the x86 asm
parsing (and latent bug in the instruction definitions).

This is effectively a revert of r136287 which tried to address
a specific and narrow case of immediate operands failing to be accepted
by x86 instructions with a pretty heavy hammer: it introduced a new kind
of operand that behaved differently. All of that is removed with this
commit, but the test cases are both preserved and enhanced.

The core problem that r136287 and this commit are trying to handle is
that gas accepts both of the following instructions:

  insertps $192, %xmm0, %xmm1
  insertps $-64, %xmm0, %xmm1

These will encode to the same byte sequence, with the immediate
occupying an 8-bit entry. The first form was fixed by r136287 but that
broke the prior handling of the second form! =[ Ironically, we would
still emit the second form in some cases and then be unable to
re-assemble the output.

The reason why the first instruction failed to be handled is because
prior to r136287 the operands ere marked 'i32i8imm' which forces them to
be sign-extenable. Clearly, that won't work for 192 in a single byte.
However, making thim zero-extended or "unsigned" doesn't really address
the core issue either because it breaks negative immediates. The correct
fix is to make these operands 'i8imm' reflecting that they can be either
signed or unsigned but must be 8-bit immediates. This patch backs out
r136287 and then changes those places as well as some others to use
'i8imm' rather than one of the extended variants.

Naturally, this broke something else. The custom DAG nodes had to be
updated to have a much more accurate type constraint of an i8 node, and
a bunch of Pat immediates needed to be specified as i8 values.

The fallout didn't end there though. We also then ceased to be able to
match the instruction-specific intrinsics to the instructions so
modified. Digging, this is because they too used i32 rather than i8 in
their signature. So I've also switched those intrinsics to i8 arguments
in line with the instructions.

In order to make the intrinsic adjustments of course, I also had to add
auto upgrading for the intrinsics.

I suspect that the intrinsic argument types may have led everything down
this rabbit hole. Pretty happy with the result.

llvm-svn: 217310
2014-09-06 10:00:01 +00:00