21 Commits

Author SHA1 Message Date
Simon Pilgrim
3f3e85cd23
[X86] ICMP EQ/NE MIN_SIGNED_INT - avoid immediate argument by using NEG + SETO/SETNO (#94948)
For i64 this avoids loading a 64-bit value into register, for smaller registers this just avoids an immediate operand.

For i8+i16, limit to one use case as we save fewer bytes and these can be wasted entirely on extra register moves.

Fixes #67709
2024-06-11 16:38:53 +01:00
Simon Pilgrim
995ba4afcd [CostModel][X86] Adjust ABS scalar SizeLatency cost to 3uops
This was previously set to 4uops which was including the cost of extra register moves in the original test code.
2024-06-11 10:29:18 +01:00
Simon Pilgrim
a8d38c140b [X86] Add abs tests that check for MIN_SIGNED_INT cases
Additional multi-use tests for #94948
2024-06-10 17:59:25 +01:00
Jay Foad
7b3bbd83c0 Revert "[CodeGen] Really renumber slot indexes before register allocation (#67038)"
This reverts commit 2501ae58e3bb9a70d279a56d7b3a0ed70a8a852c.

Reverted due to various buildbot failures.
2023-10-09 12:31:32 +01:00
Jay Foad
2501ae58e3
[CodeGen] Really renumber slot indexes before register allocation (#67038)
PR #66334 tried to renumber slot indexes before register allocation, but
the numbering was still affected by list entries for instructions which
had been erased. Fix this to make the register allocator's live range
length heuristics even less dependent on the history of how instructions
have been added to and removed from SlotIndexes's maps.
2023-10-09 11:44:41 +01:00
Jay Foad
e0919b189b [CodeGen] Renumber slot indexes before register allocation (#66334)
RegAllocGreedy uses SlotIndexes::getApproxInstrDistance to approximate
the length of a live range for its heuristics. Renumbering all slot
indexes with the default instruction distance ensures that this estimate
will be as accurate as possible, and will not depend on the history of
how instructions have been added to and removed from SlotIndexes's maps.

This also means that enabling -early-live-intervals, which runs the
SlotIndexes analysis earlier, will not cause large amounts of churn due
to different register allocator decisions.
2023-09-19 11:18:12 +01:00
Simon Pilgrim
fd5f3abb07 [DAG] Fold (abs (sign_extend_inreg x)) -> (zero_extend (abs (truncate x))) (PR43370)
If the upper half of an abs() is all sign bits, then we can perform the abs() using just the lower half and then zero extend.

I've limited the DAG combine to only sign_extend_inreg (and free truncate/zero_extend) to minimise any later promotion issues, but for legalization a similar fold can use ComputeNumSignBits to be more aggressive.

Alive2: https://alive2.llvm.org/ce/z/y32fS4

Fixes #43370

Differential Revision: https://reviews.llvm.org/D136559
2022-10-24 10:27:08 +01:00
Simon Pilgrim
fe7bc7153a [X86] Add abs(sext_inreg(x)) test coverage for Issue #43370 2022-10-23 18:17:19 +01:00
Sanjay Patel
f0dd12ec5c [x86] use zero-extending load of a byte outside of loops too (2nd try)
The first attempt missed changing test files for tools
(update_llc_test_checks.py).

Original commit message:

This implements the main suggested change from issue #56498.
Using the shorter (non-extending) instruction with only
-Oz ("minsize") rather than -Os ("optsize") is left as a
possible follow-up.

As noted in the bug report, the zero-extending load may have
shorter latency/better throughput across a wide range of x86
micro-arches, and it avoids a potential false dependency.
The cost is an extra instruction byte.

This could cause perf ups and downs from secondary effects,
but I don't think it is possible to account for those in
advance, and that will likely also depend on exact micro-arch.
This does bring LLVM x86 codegen more in line with existing
gcc codegen, so if problems are exposed they are more likely
to occur for both compilers.

Differential Revision: https://reviews.llvm.org/D129775
2022-07-19 21:27:08 -04:00
Sanjay Patel
95401b0153 Revert "[x86] use zero-extending load of a byte outside of loops too"
This reverts commit 9d1ea1774c51c44ddf0b5065bf600919988d7015.
There are tests of update_llc_tests_checks.py that missed being updated.
2022-07-19 17:37:22 -04:00
Sanjay Patel
9d1ea1774c [x86] use zero-extending load of a byte outside of loops too
This implements the main suggested change from issue #56498.
Using the shorter (non-extending) instruction with only
-Oz ("minsize") rather than -Os ("optsize") is left as a
possible follow-up.

As noted in the bug report, the zero-extending load may have
shorter latency/better throughput across a wide range of x86
micro-arches, and it avoids a potential false dependency.
The cost is an extra instruction byte.

This could cause perf ups and downs from secondary effects,
but I don't think it is possible to account for those in
advance, and that will likely also depend on exact micro-arch.
This does bring LLVM x86 codegen more in line with existing
gcc codegen, so if problems are exposed they are more likely
to occur for both compilers.

Differential Revision: https://reviews.llvm.org/D129775
2022-07-19 16:43:47 -04:00
Craig Topper
8e132c5c1d [LegalizeTypes][ARM][X86] Change ExpandIntRes_ABS to use sra+xor+sub.
Previously we used sra+add+xor if ADDCARRY is supported. This changes
to sra+xor+sub is SUBCARRY is available.

This is consistent with the recent change to the default expansion
in LegalizeDAG.

Differential Revision: https://reviews.llvm.org/D121039
2022-03-07 11:28:32 -08:00
Craig Topper
440c4b705a [SelectionDAG][RISCV][ARM][PowerPC][X86][WebAssembly] Change default abs expansion to use sra (X, size(X)-1); sub (xor (X, Y), Y).
Previous we used sra (X, size(X)-1); xor (add (X, Y), Y).

By placing sub at the end, we allow RISCV to combine sign_extend_inreg
with it to form subw.

Some X86 tests for Z - abs(X) seem to have improved as well.

Other targets look to be a wash.

I had to modify ARM's abs matching code to match from sub instead of
xor. Maybe instead ISD::ABS should be made legal. I'll try that in
parallel to this patch.

This is an alternative to D119099 which was focused on RISCV only.

Reviewed By: RKSimon

Differential Revision: https://reviews.llvm.org/D119171
2022-02-20 21:11:23 -08:00
Craig Topper
3ff9cc01f2 [X86] Use CMOVNS for abs instead of CMOVGE.
CMOVGE reads SF and OF. CMOVNS only reads SF. This matches with
other recent changes to use a single flag where possible. It also
matches gcc codegen.

I believe this technically changes whether the conditioanl move happens
on INT_MIN, but for INT_MIN both registers are the same so it doesn't
matter.

Differential Revision: https://reviews.llvm.org/D111826
2021-10-14 12:28:28 -07:00
Guozhi Wei
6599961c17 [TwoAddressInstructionPass] Improve the SrcRegMap and DstRegMap computation
This patch contains following enhancements to SrcRegMap and DstRegMap:

  1 In findOnlyInterestingUse not only check if the Reg is two address usage,
    but also check after commutation can it be two address usage.

  2 If a physical register is clobbered, remove SrcRegMap entries that are
    mapped to it.

  3 In processTiedPairs, when create a new COPY instruction, add a SrcRegMap
    entry only when the COPY instruction is coalescable. (The COPY src is
    killed)

With these enhancements isProfitableToCommute can do better commute decision,
and finally more register copies are removed.

Differential Revision: https://reviews.llvm.org/D108731
2021-10-11 15:28:31 -07:00
Matt Arsenault
4a36e96c3f RegAllocGreedy: Account for reserved registers in num regs heuristic
This simple heuristic uses the estimated live range length combined
with the number of registers in the class to switch which heuristic to
use. This was taking the raw number of registers in the class, even
though not all of them may be available. AMDGPU heavily relies on
dynamically reserved numbers of registers based on user attributes to
satisfy occupancy constraints, so the raw number is highly misleading.

There are still a few problems here. In the original testcase that
made me notice this, the live range size is incorrect after the
scheduler rearranges instructions, since the instructions don't have
the original InstrDist offsets. Additionally, I think it would be more
appropriate to use the number of disjointly allocatable registers in
the class. For the AMDGPU register tuples, there are a large number of
registers in each tuple class, but only a small fraction can actually
be allocated at the same time since they all overlap with each
other. It seems we do not have a query that corresponds to the number
of independently allocatable registers. Relatedly, I'm still debugging
some allocation failures where overlapping tuples seem to not be
handled correctly.

The test changes are mostly noise. There are a handful of x86 tests
that look like regressions with an additional spill, and a handful
that now avoid a spill. The worst looking regression is likely
test/Thumb2/mve-vld4.ll which introduces a few additional
spills. test/CodeGen/AMDGPU/soft-clause-exceeds-register-budget.ll
shows a massive improvement by completely eliminating a large number
of spills inside a loop.
2021-09-14 21:00:29 -04:00
Simon Pilgrim
9c86c5e8ad [DAG] Legalize abs(x) -> umin(x,sub(0,x)) iff umin/sub are legal
If umin() is legal, this is likely to result in smaller codegen expansion for abs(x) than the xor(add,ashr) method.

Followup to D92095

Alive2: https://alive2.llvm.org/ce/z/8nuX6s  https://alive2.llvm.org/ce/z/q2hB9w
2020-11-25 18:06:02 +00:00
Simon Pilgrim
0637dfe88b [DAG] Legalize abs(x) -> smax(x,sub(0,x)) iff smax/sub are legal
If smax() is legal, this is likely to result in smaller codegen expansion for abs(x) than the xor(add,ashr) method.

This is also what PowerPC has been doing for its abs implementation, so it lets us get rid of a load of custom lowering code there (and which was never updated when they added smax lowering).

Alive2: https://alive2.llvm.org/ce/z/xRk3cD

Differential Revision: https://reviews.llvm.org/D92095
2020-11-25 15:03:03 +00:00
Craig Topper
da79b1eecc [SelectionDAG][X86][ARM] Teach ExpandIntRes_ABS to use sra+add+xor expansion when ADDCARRY is supported.
Rather than using SELECT instructions, use SRA, UADDO/ADDCARRY and
XORs to expand ABS. This is the multi-part version of the sequence
we use in LegalizeDAG.

It's also the same as the Custom sequence uses for i64 on 32-bit
and i128 on 64-bit. So we can remove the X86 customization.

Reviewed By: RKSimon

Differential Revision: https://reviews.llvm.org/D87215
2020-09-07 13:15:26 -07:00
Craig Topper
01b3e16757 [X86] Use the same sequence for i128 ISD::ABS on 64-bit targets as we use for i64 on 32-bit targets.
Differential Revision: https://reviews.llvm.org/D87214
2020-09-07 11:14:05 -07:00
Nikita Popov
deb4bb2b3a [IR] Add min/max/abs intrinsics
This adds the llvm.abs(), llvm.umin(), llvm.umax(), llvm.smin(),
and llvm.smax() intrinsics specified in D81829. For SelectionDAG,
the ISD opcodes and all the legalization and lowering already exist,
so this just wires them up to the intrinsic in the SDAG builder and
adds rudimentary tests. For GlobalISel only the min/max intrinsics
are wired up, as llvm.abs() will require the addition of a G_ABS op,
and corresponding legalization support.

Differential Revision: https://reviews.llvm.org/D84125
2020-07-23 20:56:19 +02:00