Commit Graph

156 Commits

Author SHA1 Message Date
Simon Pilgrim 89e375a95e [CostModel][X86] Removed shift tests
There are more thorough tests found in vshift-*-cost.ll 

llvm-svn: 279406
2016-08-21 19:56:02 +00:00
Simon Pilgrim 6ad12ec629 [CostModel][X86] Added costs for vXi16 and vXi8 vectors for add/sub/mul/and/or/xor tests
llvm-svn: 279405
2016-08-21 19:44:44 +00:00
Simon Pilgrim b0a0576ffc [CostModel][X86] Replaced SSSE3 with SSE2 costs to create a better baseline
llvm-svn: 279404
2016-08-21 19:14:48 +00:00
Simon Pilgrim 07d7a21ea1 [CostModel][X86] Added fsqrt and fma costs
llvm-svn: 279403
2016-08-21 19:06:25 +00:00
Simon Pilgrim 3cd61a084f [CostModel][X86] Split off float arithmetic cost tests
llvm-svn: 279402
2016-08-21 18:34:47 +00:00
Simon Pilgrim 054e7d2ec1 [CostModel][X86] Added sub, or, and, fadd and fsub costs and missing 512-bit mul costs
llvm-svn: 279301
2016-08-19 19:07:10 +00:00
Simon Pilgrim fbfa3ee4f6 [CostModel][X86] Added some AVX512 and 512-bit vector cost tests
llvm-svn: 279291
2016-08-19 18:24:10 +00:00
Simon Pilgrim e309d2d0c3 [CostModel][X86] Add fdiv + frem cost tests
llvm-svn: 279283
2016-08-19 17:39:00 +00:00
Michael Kuperstein 3ceac2bbd5 [LV, X86] Be more optimistic about vectorizing shifts.
Shifts with a uniform but non-constant count were considered very expensive to
vectorize, because the splat of the uniform count and the shift would tend to
appear in different blocks. That made the splat invisible to ISel, and we'd
scalarize the shift at codegen time.

Since r201655, CodeGenPrepare sinks those splats to be next to their use, and we
are able to select the appropriate vector shifts. This updates the cost model to
to take this into account by making shifts by a uniform cheap again.

Differential Revision: https://reviews.llvm.org/D23049

llvm-svn: 277782
2016-08-04 22:48:03 +00:00
Simon Pilgrim c8fe132756 [X86] Dropped XOP ctbits checks - they match the AVX checks
llvm-svn: 277718
2016-08-04 11:04:13 +00:00
Simon Pilgrim 5d5ca9c0cb [X86][SSE] Add initial costs for vector CTTZ/CTLZ
llvm-svn: 277716
2016-08-04 10:51:41 +00:00
Simon Pilgrim 1b4f511aaa [X86][SSE] Add cost model values for CTPOP of vectors
This patch adds costs for the vectorized implementations of CTPOP, the default values were seriously underestimating the cost of these and was encouraging vectorization on targets where serialized use of POPCNT would be much better.

Differential Revision: https://reviews.llvm.org/D22456

llvm-svn: 276104
2016-07-20 10:41:28 +00:00
Simon Pilgrim 47638635cc [X86] Add CTPOP/CTLZ/CTTZ scalar cost tests
llvm-svn: 275725
2016-07-17 18:29:19 +00:00
Michael Kuperstein f0c59330e9 [X86] Make some cast costs more precise
Make some AVX and AVX512 cast costs more precise.
Based on part of a patch by Elena Demikhovsky (D15604).

Differential Revision: http://reviews.llvm.org/D22064

llvm-svn: 275106
2016-07-11 21:39:44 +00:00
Sanjay Patel 04b3496d9b [x86] fix cost of SINT_TO_FP for i32 --> float (PR21356, PR28434)
This is "cvtdq2ps" which does not appear to be particularly slow on any CPU
according to Agner's tables. Choosing "5" as a cost here as suggested in:
https://llvm.org/bugs/show_bug.cgi?id=21356
...but it seems very conservative given that the instruction is fully pipelined,
and I think these costs are supposed to model throughput.

Note that related costs are also most likely too high, but this fixes PR21356
and partly fixes PR28434.

llvm-svn: 274658
2016-07-06 19:15:54 +00:00
Michael Kuperstein aa71bdd3af [TTI] The cost model should not assume vector casts get completely scalarized
The cost model should not assume vector casts get completely scalarized, since
on targets that have vector support, the common case is a partial split up to
the legal vector size. So, when a vector cast  gets split, the resulting casts
end up legal and cheap.

Instead of pessimistically assuming scalarization, base TTI can use the costs
the concrete TTI provides for the split vector, plus a fudge factor to account
for the cost of the split itself. This fudge factor is currently 1 by default,
except on AMDGPU where inserts and extracts are considered free.

Differential Revision: http://reviews.llvm.org/D21251

llvm-svn: 274642
2016-07-06 17:30:56 +00:00
Nemanja Ivanovic 44513e545f [PowerPC] - Legalize vector types by widening instead of integer promotion
This patch corresponds to review:
http://reviews.llvm.org/D20443

It changes the legalization strategy for illegal vector types from integer
promotion to widening. This only applies for vectors with elements of width
that is a multiple of a byte since we have hardware support for vectors with
1, 2, 3, 8 and 16 byte elements.
Integer promotion for vectors is quite expensive on PPC due to the sequence
of breaking apart the vector, extending the elements and reconstituting the
vector. Two of these operations are expensive.
This patch causes between minor and major improvements in performance on most
benchmarks. There are very few benchmarks whose performance regresses. These
regressions can be handled in a subsequent patch with a DAG combine (similar
to how this patch handles int -> fp conversions of illegal vector types).

llvm-svn: 274535
2016-07-05 09:22:29 +00:00
Artur Pilipenko 7ad95ec22d Support arbitrary addrspace pointers in masked load/store intrinsics
This is a resubmittion of 263158 change after fixing the existing problem with intrinsics mangling (see LTO and intrinsics mangling llvm-dev thread for details).

This patch fixes the problem which occurs when loop-vectorize tries to use @llvm.masked.load/store intrinsic for a non-default addrspace pointer. It fails with "Calling a function with a bad signature!" assertion in CallInst constructor because it tries to pass a non-default addrspace pointer to the pointer argument which has default addrspace.

The fix is to add pointer type as another overloaded type to @llvm.masked.load/store intrinsics.

Reviewed By: reames

Differential Revision: http://reviews.llvm.org/D17270

llvm-svn: 274043
2016-06-28 18:27:25 +00:00
Artur Pilipenko 72f76b8805 Revert -r273892 "Support arbitrary addrspace pointers in masked load/store intrinsics" since some of the clang tests don't expect to see the updated signatures.
llvm-svn: 273895
2016-06-27 16:54:33 +00:00
Artur Pilipenko a36aa41519 Support arbitrary addrspace pointers in masked load/store intrinsics
This is a resubmittion of 263158 change after fixing the existing problem with intrinsics mangling (see LTO and intrinsics mangling llvm-dev thread for details).

This patch fixes the problem which occurs when loop-vectorize tries to use @llvm.masked.load/store intrinsic for a non-default addrspace pointer. It fails with "Calling a function with a bad signature!" assertion in CallInst constructor because it tries to pass a non-default addrspace pointer to the pointer argument which has default addrspace.

The fix is to add pointer type as another overloaded type to @llvm.masked.load/store intrinsics.

Reviewed By: reames

Differential Revision: http://reviews.llvm.org/D17270

llvm-svn: 273892
2016-06-27 16:29:26 +00:00
Michael Kuperstein 78028b84d2 [X86] Make arithmetic operations cost model test saner. NFC.
llvm-svn: 273316
2016-06-21 20:41:40 +00:00
Simon Pilgrim 356e823b51 [X86][SSE] Add cost model for BSWAP of vectors
The BSWAP of vector types is quite efficiently implemented using vector shuffles on SSE/AVX targets, we should reflect the typical cost of this to encourage vectorization.

Differential Revision: http://reviews.llvm.org/D21521

llvm-svn: 273217
2016-06-20 23:08:21 +00:00
Simon Pilgrim 3fc09f7be6 [CostModel][X86][SSE] Updated costs for vector BITREVERSE ops on SSSE3+ targets
To account for the fast PSHUFB implementation now available

llvm-svn: 272484
2016-06-11 19:23:02 +00:00
Michael Kuperstein 9a0542a792 [X86] Add costs for SSE zext/sext to v4i64 to TTI
The costs are somewhat hand-wavy, but should be much closer to the truth
than what we get from BasicTTI.

Differential Revision: http://reviews.llvm.org/D21156

llvm-svn: 272406
2016-06-10 17:01:05 +00:00
Simon Pilgrim 14000b3cea [CostModel][X86][XOP] Added XOP costmodel for BITREVERSE
Now that we have a nice fast VPPERM solution. Added framework for future intrinsic costs as well.

llvm-svn: 270537
2016-05-24 08:17:50 +00:00
Simon Pilgrim 2ea513847c [CostModel][X86] Tidied up checks
llvm-svn: 269770
2016-05-17 14:43:41 +00:00
Simon Pilgrim 6e9898f362 [CostModel][X86] Added scalar bitreverse tests
llvm-svn: 269594
2016-05-15 17:40:48 +00:00
Simon Pilgrim eec3a95f95 [X86][SSE] Improve cost model for i64 vector comparisons on pre-SSE42 targets
As discussed on PR24888, until SSE42 we don't have access to PCMPGTQ for v2i64 comparisons, but the cost models don't reflect this, resulting in over-optimistic vectorizaton.

This patch adds SSE2 'base level' costs that match what a typical target is capable of and only reduces the v2i64 costs at SSE42.

Technically SSE41 provides a PCMPEQQ v2i64 equality test, but as getCmpSelInstrCost doesn't give us a way to discriminate between comparison test types we can't easily make use of this, otherwise we could split the cost of integer equality and greater-than tests to give better costings of each.

Differential Revision: http://reviews.llvm.org/D20057

llvm-svn: 268972
2016-05-09 21:14:38 +00:00
Simon Pilgrim 4a9d32c5ba [CostModel][X86] Extended comparison instruction cost model tests to include SSE2/SSE3/SSSE3/SSE41/SSE42 targets
llvm-svn: 268877
2016-05-08 15:24:53 +00:00
Simon Pilgrim 420852e8d4 [CostModel][X86] Split BSWAP/BITREVERSE cost tests from CTPOP/CTLZ/CTTZ 'bit count' cost tests
llvm-svn: 268859
2016-05-07 16:34:16 +00:00
Simon Pilgrim b3f5cb7a65 [CostModel][X86] Tweak 'SSE2-only' test CPU as it was only disabling SSE41 not SSE3/SSSE3 etc.
llvm-svn: 268763
2016-05-06 17:50:07 +00:00
Simon Pilgrim 93d9b96bdb [CostModel][X86] Added ctlz/cttz undef-zero costmodel tests
llvm-svn: 268761
2016-05-06 17:48:35 +00:00
Simon Pilgrim 5122c64fd8 [CostModel][X86] Added costmodel tests for vector ctpop/ctlz/cttz/bitreverse/bswap
llvm-svn: 268738
2016-05-06 14:38:14 +00:00
Ashutosh Nema 468558a061 [X86]: Changing cost for “TRUNCATE v16i32 to v16i8” in SSE4.1 mode.
Summary:
rL256194 transforms truncations between vectors of integers into PACKUS/PACKSS
operations during DAG combine. This generates better code for truncate, so cost
of truncate needs to be changed but looks like it got changed only in SSE2 table
Whereas this change is also applicable for SSE4.1, so the cost of truncate needs
to be changed for that as well. Cost of “TRUNCATE v16i32 to v16i8” & “TRUNCATE 
v16i16 to v16i8” should be same in SSE4.1 & SSE2 table. Removing their cost from
SSE4.1, so it will fall back to SSE2.

Reviewers: Simon Pilgrim
llvm-svn: 267123
2016-04-22 08:34:05 +00:00
Adam Nemet 7aab648831 Revert "Support arbitrary addrspace pointers in masked load/store intrinsics"
This reverts commit r266086.

It breaks the LTO build of gcc in SPEC2000.

llvm-svn: 266282
2016-04-14 08:47:17 +00:00
Artur Pilipenko dbe0bc8df4 Support arbitrary addrspace pointers in masked load/store intrinsics
This is a resubmittion of 263158 change.

This patch fixes the problem which occurs when loop-vectorize tries to use @llvm.masked.load/store intrinsic for a non-default addrspace pointer. It fails with "Calling a function with a bad signature!" assertion in CallInst constructor because it tries to pass a non-default addrspace pointer to the pointer argument which has default addrspace.

The fix is to add pointer type as another overloaded type to @llvm.masked.load/store intrinsics.

Reviewed By: reames

Differential Revision: http://reviews.llvm.org/D17270

llvm-svn: 266086
2016-04-12 15:58:04 +00:00
Benjamin Kramer cad9a8a6bb [TTI] Let the cost model estimate ctpop costs based on legality
PPC has a vector popcount, this lets the vectorizer use the correct cost
for it. Tweak X86 test to use an intrinsic that's actually scalarized (we
have a somewhat efficient lowering for vector popcount using SSE, the
cost model finds that now).

llvm-svn: 265005
2016-03-31 10:42:40 +00:00
Matt Arsenault 8c8fcb2585 AMDGPU: Cost model for basic integer operations
This resolves bug 21148 by preventing promotion to
i64 induction variables.

llvm-svn: 264376
2016-03-25 01:16:40 +00:00
Matt Arsenault 9651813ee0 AMDGPU: Partially implement getArithmeticInstrCost for FP ops
llvm-svn: 264374
2016-03-25 01:00:32 +00:00
Matt Arsenault 51d702812d TTI: Report 0 cost for free addrspacecasts
llvm-svn: 264369
2016-03-25 00:26:29 +00:00
Matt Arsenault 8e9aa0acc8 TTI: Use 0 for cost of fabs if free
Ideally this would also happen for fneg, but that
isn't a distinct operation in the IR.

llvm-svn: 264368
2016-03-25 00:26:22 +00:00
Matt Arsenault 59767cea79 AMDGPU: TTI: Make insertelement free.
We don't want to have a cost to scalarizing operations.

llvm-svn: 264364
2016-03-25 00:14:11 +00:00
Matthias Braun 68bb2931cc Revert "Support arbitrary addrspace pointers in masked load/store intrinsics"
This commit broke LTO builds. Reverting it to unbreak the bots while the
issue is investigated. See also:

http://lists.llvm.org/pipermail/llvm-commits/Week-of-Mon-20160321/341002.html

This reverts r263158

llvm-svn: 264088
2016-03-22 20:24:34 +00:00
Artur Pilipenko 3c8fc57e16 Support arbitrary addrspace pointers in masked load/store intrinsics
This patch fixes the problem which occurs when loop-vectorize tries to use @llvm.masked.load/store intrinsic for a non-default addrspace pointer. It fails with "Calling a function with a bad signature!" assertion in CallInst constructor because it tries to pass a non-default addrspace pointer to the pointer argument which has default addrspace.

The fix is to add pointer type as another overloaded type to @llvm.masked.load/store intrinsics.

Reviewed By: reames

Differential Revision: http://reviews.llvm.org/D17270

llvm-svn: 263158
2016-03-10 20:39:22 +00:00
Matthew Simpson 921ad01a1d [AArch64] Reduce vector insert/extract cost for Kryo
Differential Revision: http://reviews.llvm.org/D17379

llvm-svn: 261237
2016-02-18 18:35:45 +00:00
Elena Demikhovsky 5494698828 Implemented cost model for masked gather and scatter operations
The cost is calculated for all X86 targets. When gather/scatter instruction
is not supported we calculate the cost of scalar sequence.

Differential revision: http://reviews.llvm.org/D15677

llvm-svn: 256519
2015-12-28 20:10:59 +00:00
Cong Hou 8df93ce455 [X86][SSE] Transform truncations between vectors of integers into X86ISD::PACKUS/PACKSS operations during DAG combine.
This patch transforms truncation between vectors of integers into
X86ISD::PACKUS/PACKSS operations during DAG combine. We don't do it in
lowering phase because after type legalization, the original truncation
will be turned into a BUILD_VECTOR with each element that is extracted
from a vector and then truncated, and from them it is difficult to do
this optimization. This greatly improves the performance of truncations
on some specific types.

Cost table is updated accordingly.


Differential revision: http://reviews.llvm.org/D14588

llvm-svn: 256194
2015-12-21 20:42:43 +00:00
Matt Arsenault e05ff15186 AMDGPU: Override getCFInstrCost
The default cost was 0 with the assumption that it is predictable.

llvm-svn: 255796
2015-12-16 18:37:19 +00:00
Cong Hou 59898d8c68 [X86][SSE] Update the cost table for integer-integer conversions on SSE2/SSE4.1.
Previously in the conversion cost table there are no entries for integer-integer
conversions on SSE2. This will result in imprecise costs for certain vectorized
operations. This patch adds those entries for SSE2 and SSE4.1. The cost numbers
are counted from the result of running llc on the new test case in this patch.


Differential revision: http://reviews.llvm.org/D15132

llvm-svn: 255315
2015-12-11 00:31:39 +00:00
Cong Hou 94620278a4 Don't punish vectorized arithmetic instruction whose type will be split to multiple registers
Currently in LLVM's cost model, a vectorized arithmetic instruction will have
high cost if its type is split into multiple registers. However, this
punishment is too heavy and unnecessary. The overhead of the split should not
be on arithmetic instructions but instructions that implement the split. Note
that during vectorization we have calculated the register pressure, and we
only choose proper interleaving factor (and also vectorization factor) so
that we don't use more registers than the maximum number.

Here is a very simple example: if a vadd has the cost 1, and if we double VF
so that we need two registers to perform it, then its cost will become 4 with
the current implementation, which will prevent us to use larger VF.


Differential revision: http://reviews.llvm.org/D15159

llvm-svn: 254671
2015-12-04 00:36:58 +00:00