25 Commits

Author SHA1 Message Date
Paul Walker
56c091ea71
[LLVM][IR] Use splat syntax when printing ConstantExpr based splats. (#116856)
This brings the printing of scalable vector constant splats inline with
their fixed length counterparts.
2024-11-21 11:21:12 +00:00
Florian Hahn
b021464d35
[VPlan] Introduce scalar loop header in plan, remove VPLiveOut. (#109975)
Update VPlan to include the scalar loop header. This allows retiring
VPLiveOut, as the remaining live-outs can now be handled by adding
operands to the wrapped phis in the scalar loop header.

Note that the current version only includes the scalar loop header, no
other loop blocks and also does not wrap it in a region block.

PR: https://github.com/llvm/llvm-project/pull/109975
2024-10-31 21:36:44 +01:00
Florian Hahn
53266f73f0
[VPlan] Run DCE after unrolling.
This cleans up a number of dead recipes after unrolling if only their
first or last parts are used. This simplifies a number of tests.

Fixes https://github.com/llvm/llvm-project/issues/109581.
2024-09-22 22:08:46 +01:00
Florian Hahn
a794ee4559
[VPlan] Add VPValue for VF, use it for VPWidenIntOrFpInductionRecipe. (#95305)
Similar to VFxUF, also add a VF VPValue to VPlan and use it to get the
runtime VF in VPWidenIntOrFpInductionRecipe. Code for VF is only
generated if there are users of VF, to avoid unnecessary test changes.

PR: https://github.com/llvm/llvm-project/pull/95305
2024-09-10 10:41:35 +01:00
Florian Hahn
9a5a8731e7
[VPlan] Introduce ResumePhi VPInstruction, use to create phi for FOR. (#94760)
This patch introduces a new ResumePhi VPInstruction which creates a phi
in a leaf block of a VPlan. The first use is to create the phi node for
fixed-order recurrence resume values in the scalar preheader.

The VPInstruction takes 2 operands: 1) the incoming value from the
middle-block and a default value to be used for all other incoming
blocks.

In follow-up changes, it will also be used to create phis for reduction
and induction resume values.

Depends on https://github.com/llvm/llvm-project/pull/92651

PR: https://github.com/llvm/llvm-project/pull/94760
2024-07-11 16:08:04 +01:00
Florian Hahn
998c33e5fc
[VPlan] Mark FirstOrderRecurrenceSplice as not having side-effects.
Now that FOR exit and resume value creation is explicitly modeled in
VPlan (05e1b5340b0caf1, 07b330132c0b) it doesn't depend on the first
order recurrence splice being preserved and it can now be marked as not
having side-effects. This allows removal of first-order-recurrence-splce
if the FOR is only used in the exit or as scalar ph resume value.
2024-06-08 21:40:30 +01:00
Florian Hahn
a43d999d14
[VPlan] Check if only first part is used for all per-part VPInsts.
Apply the onlyFirstPartUsed logic generally to all per-part
VPInstructions. Note that the test changes remove the second part
of an unsued first-order recurrence splice.
2024-06-08 20:31:54 +01:00
Florian Hahn
07b330132c
[VPlan] Model FOR extract of exit value in VPlan. (#93395)
This patch introduces a new ExtractFromEnd VPInstruction opcode to
extract the value of a FOR for users outside the loop (i.e. in the
scalar loop's exits). This moves the first part of fixing first order
recurrences to VPlan, and removes some additional code to patch up
live-outs, which is now handled automatically.

The majority of test changes is due to changes in the order of which the
extracts are generated now. As we are now using VPTransformState to
generate the extracts, we may be able to re-use existing extracts in the
loop body in some cases. For scalable vectors, in some cases we now have
to compute the runtime VF twice, as each extract is now independent, but
those should be trivial to clean up for later passes (and in line with
other places in the code that also liberally re-compute runtime VFs).

PR: https://github.com/llvm/llvm-project/pull/93395
2024-06-03 20:20:30 +01:00
Maciej Gabka
bfc0317153
Move several vector intrinsics out of experimental namespace (#88748)
This patch is moving out following intrinsics:
* vector.interleave2/deinterleave2
* vector.reverse
* vector.splice

from the experimental namespace.

All these intrinsics exist in LLVM for more than a year now, and are
widely used, so should not be considered as experimental.
2024-04-29 10:16:45 +01:00
Florian Hahn
a5891fa4d2
[VPlan] Initial modeling of VF * UF as VPValue. (#74761)
This patch starts initial modeling of VF * UF in VPlan.
Initially, introduce a dedicated VFxUF VPValue, which is then
populated during VPlan::prepareToExecute. Initially, the VF * UF
applies only to the main vector loop region. Once we extend the
scope of VPlan in the future, we may want to associate different VFxUFs
with different vector loop regions (e.g. the epilogue vector loop)

This allows explicitly parameterizing recipes that rely on the
VF * UF, like the canonical induction increment. At the moment, this
mainly helps to avoid generating some duplicated calls to vscale with
scalable vectors. It should also allow using EVL as induction increments
explicitly in D99750. Referring to VF * UF is also needed in other
places that we plan to migrate to VPlan, like the minimum trip count
check during skeleton creation.

The first version creates the value for VF * UF directly in
prepareToExecute to limit the scope of the patch. A follow-on patch will
model VF * UF computation explicitly in VPlan using recipes.

Moved from Phabricator (https://reviews.llvm.org/D157322)
2023-12-08 18:30:30 +00:00
Florian Hahn
707359ecf5
Recommit "[LV] Re-use existing broadcast value for live-ins."
This reverts commit 245ec675a4e41f7ec24dfc998720bffdc46a6c53.

Recommits eea9258648ce with a fix to only erase the instruction from the
first part if it is defined outside the loop. This fixes a
use-after-free error reported.
2023-08-01 15:54:02 +01:00
Martin Storsjö
245ec675a4 Revert "[LV] Re-use existing broadcast value for live-ins."
This reverts commit eea9258648ce73507f6f85c395de978af659d498.

That commit triggered crashes in the following testcase:

$ cat reduced.c
typedef struct {
  int a[8]
} b;
typedef struct {
  b *c;
  short d
} e;
void f() {
  int g;
  char *h;
  e *i = f;
  short j = i->d;
  int a = i->c->a[0];
  for (;;)
    for (; g < a; g++) {
      *h = j * i->d >> 8;
      h++;
    }
}
$ clang -target aarch64-linux-gnu -w -c -O2 reduced.c
2023-07-25 10:35:41 +03:00
Florian Hahn
eea9258648
[LV] Re-use existing broadcast value for live-ins.
When requesting a vector value for a live-in, we can re-use the
broadcast of the live-in of part 0 for parts > 0.
2023-07-24 11:50:47 +01:00
Florian Hahn
a0d667b89b
[LV] Add users to recurrence tests to make sure they are not removable.
This ensures VPlan-based DCE won't be able to remove the unused
recurrences.

It also adds a dedicated new test (@unused_recurrence) where an unused
recurrence can be removed.
2023-04-17 11:56:56 +01:00
Florian Hahn
f9d0b35d22
[LV] Re-use already computed runtime VF in fixFixedOrderRecurrence.
This was suggested as independent cleanup in D147472.

This removes a redundant runtime VF computation when using scalable
vectors.
2023-04-10 21:25:12 +01:00
Florian Hahn
b5925a22c9
[LV] Add uses of recurrences in exit blocks in some tests.
This preserves the spirit of the tests even if a follow-up changes only
generates exit values for recurrences if they are actually used.
2023-04-04 21:19:29 +01:00
Paul Walker
eae26b6640 [IRBuilder] Use canonical i64 type for insertelement index used by vector splats.
Instcombine prefers this canonical form (see getPreferredVectorIndex),
as does IRBuilder when passing the index as an integer so we may as
well use the prefered form from creation.

NOTE: All test changes are mechanical with nothing else expected
beyond a change of index type from i32 to i64.

Differential Revision: https://reviews.llvm.org/D140983
2023-01-11 14:08:06 +00:00
Nikita Popov
7d7577256b [LoopVectorize] Convert some tests to opaque pointers (NFC) 2022-12-14 15:16:59 +01:00
Roman Lebedev
be51fa4580
[NFC] Port all runlines for LoopVectorize pass tests to -passes syntax 2022-12-05 22:17:30 +03:00
David Sherwood
8439415333 [IR] Let ConstantVector::getSplat use poison instead of undef
This patch updates ConstantVector::getSplat to use poison instead
of undef when using insertelement/shufflevector to splat.

This follows on from D93793.

Differential Revision: https://reviews.llvm.org/D107751
2021-08-10 08:27:43 +01:00
Florian Hahn
7a1e73f0b9
Recommit "[VPlan] Add recipe for first-order rec phis, make splicing explicit."
This reverts the revert commit b1777b04dc4b1a9fee0e7effa7e177892ab32ef0.

The patch originally got reverted due to a crash:
https://bugs.chromium.org/p/chromium/issues/detail?id=1232798#c2

The underlying issue was that we were not using the stored values from
the modified memory recipes, but the out-of-date values directly from
the IR (accessed via the VPlan). This should be fixed in d995d6376. A
reduced version of the reproducer has been added in 93664503be6b.
2021-07-26 15:50:30 +01:00
Nico Weber
b1777b04dc Revert "[VPlan] Add recipe for first-order rec phis, make splicing explicit."
Makes clang crash: https://reviews.llvm.org/D105008#2903350
This reverts commit d2a73fb44ea0b8c981e4b923f811f18793fc4770.

Also revert a minor formatting follow-up:
This reverts commit 82834a673246f27a541ffcc57e0eb65b008102ef.
2021-07-25 17:39:28 -04:00
Florian Hahn
d2a73fb44e
[VPlan] Add recipe for first-order rec phis, make splicing explicit.
This patch adds a VPFirstOrderRecurrencePHIRecipe, to further untangle
VPWidenPHIRecipe into distinct recipes for distinct use cases/lowering.
See D104989 for a new recipe for reduction phis.

This patch also introduces a new `FirstOrderRecurrenceSplice`
VPInstruction opcode, which is used to make the forming of the vector
recurrence value explicit in VPlan. This more accurately models def-uses
in VPlan and also simplifies code-generation. Now, the vector recurrence
values are created at the right place during VPlan-codegeneration,
rather than during post-VPlan fixups.

Reviewed By: Ayal

Differential Revision: https://reviews.llvm.org/D105008
2021-07-20 16:14:17 +02:00
Sander de Smalen
4f86aa650c [LV] Add -scalable-vectorization=<option> flag.
This patch adds a new option to the LoopVectorizer to control how
scalable vectors can be used.

Initially, this suggests three levels to control scalable
vectorization, although other more aggressive options can be added in
the future.

The possible options are:
- Disabled:   Disables vectorization with scalable vectors.
- Enabled:    Vectorize loops using scalable vectors or fixed-width
              vectors, but favors fixed-width vectors when the cost
              is a tie.
- Preferred:  Like 'Enabled', but favoring scalable vectors when the
              cost-model is inconclusive.

Reviewed By: paulwalker-arm, vkmr

Differential Revision: https://reviews.llvm.org/D101945
2021-05-19 10:40:56 +01:00
Kerry McLaughlin
8c9742bd23 [SVE][LoopVectorize] Add support for scalable vectorization of first-order recurrences
Adds support for scalable vectorization of loops containing first-order recurrences, e.g:
```
for(int i = 0; i < n; i++)
  b[i] =  a[i] + a[i - 1]
```
This patch changes fixFirstOrderRecurrence for scalable vectors to take vscale into
account when inserting into and extracting from the last lane of a vector.
CreateVectorSplice has been added to construct a vector for the recurrence, which
returns a splice intrinsic for scalable types. For fixed-width the behaviour
remains unchanged as CreateVectorSplice will return a shufflevector instead.

The tests included here are the same as test/Transform/LoopVectorize/first-order-recurrence.ll

Reviewed By: david-arm, fhahn

Differential Revision: https://reviews.llvm.org/D101076
2021-05-06 11:35:39 +01:00