10 Commits

Author SHA1 Message Date
Jay Foad
e2926501d8 [AMDGPU] Aggressively fold immediates in SIShrinkInstructions
Fold immediates regardless of how many uses they have. This is expected
to increase overall code size, but decrease register usage.

Differential Revision: https://reviews.llvm.org/D114644
2022-05-18 11:04:33 +01:00
Joe Nash
3ce1b9631a [AMDGPU] Switch PostRA sched to MachineSched
Use GCNHazardRecognizer in postra sched.
Updated tests for the new schedules.

Reviewed By: arsenm

Differential Revision: https://reviews.llvm.org/D109536

Change-Id: Ia86ba2ae168f12fb34b4d8efdab491f84d936cde
2021-09-14 15:11:27 -04:00
Nicolai Hähnle
52bc2e7577 [AMDGPU][SelectionDAG] Don't combine uniform multiplies to MUL_[UI]24
Prefer to keep uniform (non-divergent) multiplies on the scalar ALU when
possible. This significantly improves some game cases by eliminating
v_readfirstlane instructions when the result feeds into a scalar
operation, like the address calculation for a scalar load or store.

Since isDivergent is only an approximation of whether a value is in
SGPRs, it can potentially regress some situations where a uniform value
ends up in a VGPR. These should be rare in real code, although the test
changes do contain a number of examples.

Most of the test changes are just using s_mul instead of v_mul/mad which
is generally better for both register pressure and latency (at least on
GFX10 where sgpr pressure doesn't affect occupancy and vector ALU
instructions have significantly longer latency than scalar ALU). Some
R600 tests now use MULLO_INT instead of MUL_UINT24.

GlobalISel appears to handle more scenarios in the desirable way,
although it can also be thrown off and fails to select the 24-bit
multiplies in some cases.

Alternative solution considered and rejected was to allow selecting
MUL_[UI]24 to S_MUL_I32. I've rejected this because the definition of
those SD operations works is don't-care on the most significant 8 bits,
and this fact is used in some combines via SimplifyDemandedBits.

Based on a patch by Nicolai Hähnle.

Differential Revision: https://reviews.llvm.org/D97063
2021-02-23 15:39:19 +00:00
Mircea Trofin
90347ab96f [NFC] Removed unused prefixes in CodeGen/AMDGPU
This covers tests starting with m-r.

Differential Revision: https://reviews.llvm.org/D94181
2021-01-06 10:32:44 -08:00
Matt Arsenault
49169a963e AMDGPU: Add 24-bit mul intrinsics
Insert these during codegenprepare.

This works around a DAG issue where generic combines eliminate the and
asserting the high bits are zero, which then exposes an unknown read
source to the mul combine. It doesn't worth the hassle of trying to
insert an AssertZext or something to try to deal with it.

llvm-svn: 366094
2019-07-15 17:50:31 +00:00
Stanislav Mekhanoshin
971cb8b633 [AMDGPU] gfx1010: prefer V_MUL_LO_U32 over V_MUL_LO_I32
GFX10 deprecates v_mul_lo_i32 instruction, so choose u32 form for
all targets.

Differential Revision: https://reviews.llvm.org/D61525

llvm-svn: 360094
2019-05-06 22:27:05 +00:00
Matt Arsenault
0395da7842 AMDGPU: Split wide vectors of i16/f16 into 32-bit regs on calls
This improves code for the same reasons as scalarizing 32-bit
element vectors.

llvm-svn: 338418
2018-07-31 19:17:47 +00:00
Matt Arsenault
8c4a35237a AMDGPU: Add pass to lower kernel arguments to loads
This replaces most argument uses with loads, but for
now not all.

The code in SelectionDAG for calling convention lowering
is actively harmful for amdgpu_kernel. It attempts to
split the argument types into register legal types, which
results in low quality code for arbitary types. Since
all kernel arguments are passed in memory, we just want the
raw types.

I've tried a couple of methods of mitigating this in SelectionDAG,
but it's easier to just bypass this problem alltogether. It's
possible to hack around the problem in the initial lowering,
but the real problem is the DAG then expects to be able to use
CopyToReg/CopyFromReg for uses of the arguments outside the block.

Exposing the argument loads in the IR also has the advantage
that the LoadStoreVectorizer can merge them.

I'm not sure the best approach to dealing with the IR
argument list is. The patch as-is just leaves the IR arguments
in place, so all the existing code will still compute the same
kernarg size and pointlessly lowers the arguments.

Arguably the frontend should emit kernels with an empty argument
list in the first place. Alternatively a dummy array could be
inserted as a single argument just to reserve space.

This does have some disadvantages. Local pointer kernel arguments can
no longer have AssertZext placed  on them as the equivalent !range
metadata is not valid on pointer  typed loads. This is mostly bad
for SI which needs to know about the known bits in order to use the
DS instruction offset, so in this case this is not done.

More importantly, this skips noalias arguments since this pass
does not yet convert this to the equivalent !alias.scope and !noalias
metadata. Producing this metadata correctly seems to be tricky,
although this logically is the same as inlining into a function which
doesn't exist. Additionally, exposing these loads to the vectorizer
may result in degraded aliasing information if a pointer load is
merged with another argument load.

I'm also not entirely sure this is preserving the current clover
ABI, although I would greatly prefer if it would stop widening
arguments and match the HSA ABI. As-is I think it is extending
< 4-byte arguments to 4-bytes but doesn't align them to 4-bytes.

llvm-svn: 335650
2018-06-26 19:10:00 +00:00
Matt Arsenault
02dc7e19e2 AMDGPU: Make v4i16/v4f16 legal
Some image loads return these, and it's awkward working
around them not being legal.

llvm-svn: 334835
2018-06-15 15:15:46 +00:00
Matt Arsenault
f0c5c6b3f3 AMDGPU: Fix missing test coverage for some 16-bit and packed ops
llvm-svn: 333024
2018-05-22 20:42:00 +00:00