5875 Commits

Author SHA1 Message Date
Nikita Popov
84c15bc018 [SCEVExpander] Support opaque pointers
This adds support for opaque pointers to expandAddToGEP() by always
generating an i8 GEP for opaque pointers. After looking at some other
cases (constexpr GEP folding, SROA GEP generation), I've come around
to the idea that we should use i8 GEPs for opaque pointers, because
the alternative would be to guess a GEP type from surrounding code,
which will not be reliable. Ultimately, i8 GEPs is where we want to
end up anyway, and opaque pointers just make that the natural choice.

There are a couple of other places in SCEVExpander that check pointer
element types, I plan to update those when I run across usable test
coverage that doesn't assert elsewhere.

Differential Revision: https://reviews.llvm.org/D105398
2021-07-07 20:47:59 +02:00
Philip Reames
600624a103 [LoopVersion] Move an assert [nfc-ish] 2021-07-06 10:57:10 -07:00
Roman Lebedev
fc150cecd7
[SimplifyCFG] simplifyUnreachable(): erase instructions iff they are guaranteed to transfer execution to unreachable
This replaces the current ad-hoc implementation,
by syncing the code from InstCombine's implementation in `InstCombinerImpl::visitUnreachableInst()`,
with one exception that here in SimplifyCFG we are allowed to remove EH instructions.

Effectively, this now allows SimplifyCFG to remove calls (iff they won't throw and will return),
arithmetic/logic operations, etc.

Reviewed By: nikic

Differential Revision: https://reviews.llvm.org/D105374
2021-07-03 10:45:44 +03:00
Fangrui Song
252a1eecc0 [ThinLTO] Respect ClearDSOLocalOnDeclarations for unimported functions
D74751 added `ClearDSOLocalOnDeclarations` and dropped dso_local for
isDeclarationForLinker `GlobalValue`s. It missed a case for imported
declarations (`doImportAsDefinition` is false while `isPerformingImport` is
true). This can lead to a linker error for a default visibility symbol in
`ld.lld -shared`.

When `ClearDSOLocalOnDeclarations` is true, we check
`isPerformingImport() && !doImportAsDefinition(&GV)` along with
`GV.isDeclarationForLinker()`. The new condition checks an imported declaration.

This patch fixes a `LLVMPolly.so` link error using a trunk clang -DLLVM_ENABLE_LTO=Thin.

Reviewed By: tejohnson

Differential Revision: https://reviews.llvm.org/D104986
2021-07-02 17:08:25 -07:00
Roman Lebedev
53fef0b293
[NFCI][SimplifyCFG] simplifyUnreachable(): Use poison constant to represent the result of unreachable instrs
Mimics similar change for InstCombine:
  ce192ced2b901be67444c481ab5ca0d731e6d982 / D104602

All these uses are in blocks that aren't reachable from function's entry,
and said blocks are removed by SimplifyCFG itself,
so we can't really test this change.
2021-07-02 22:11:52 +03:00
Roman Lebedev
da81ec6158
[SimplifyCFG] Volatile memory operations do not trap
Somewhat related to D105338.
While it is up for discussion whether or not volatile store traps,
so far there has been no complaints that volatile load/cmpxchg/atomicrmw also may trap.
And even if simplifycfg currently concervatively believes that to be the case,
instcombine does not: https://godbolt.org/z/5vhv4K5b8

Reviewed By: nikic

Differential Revision: https://reviews.llvm.org/D105343
2021-07-02 21:47:44 +03:00
Roman Lebedev
24d271bb18
Revert "https://godbolt.org/z/5vhv4K5b8"
This reverts commit 597ccc92ce4b0f90883406d1f78d9d776f602804.
2021-07-02 17:17:55 +03:00
Roman Lebedev
597ccc92ce
https://godbolt.org/z/5vhv4K5b8 2021-07-02 17:16:19 +03:00
Nico Weber
540b4a5fb3 Revert "[DebugInfo] Enable variadic debug value salvaging"
This reverts commit adace79652174d126be290cab42b3122569fe15d.
Still breaks things, see comment on https://reviews.llvm.org/D91722
2021-06-28 11:25:09 -04:00
Eli Friedman
8d5bf0709d [NFC] Prefer ConstantRange::makeExactICmpRegion over makeAllowedICmpRegion
The implementation is identical, but it makes the semantics a bit more
obvious.
2021-06-25 14:43:13 -07:00
Juneyoung Lee
1605593440 [SimplifyLibCalls] Fix memchr opt to use CreateLogicalAnd
This fixes a bug at LibCallSimplifier::optimizeMemChr which does the following transformation:

```
// memchr("\r\n", C, 2) != nullptr -> (1 << C & ((1 << '\r') | (1 << '\n')))
// != 0
//   after bounds check.
```

As written above, a bounds check on C (whether it is less than integer bitwidth) is done before doing `1 << C` otherwise 1 << C will overflow.
If the bounds check is false, the result of (1 << C & ...) must not be used at all, otherwise the result of shift (which is poison) will contaminate the whole results.
A correct way to encode this is `select i1 (bounds check), (1 << C & ...), false`  because select does not allow the unused operand to contaminate the result.
However, this optimization was introducing `and (bounds check), (1 << C & ...)` which cannot do that.

The bug was found from compilation of this C++ code: https://reviews.llvm.org/rG2fd3037ac615#1007197

Reviewed By: nikic

Differential Revision: https://reviews.llvm.org/D104901
2021-06-26 05:59:35 +09:00
Arthur Eubanks
1aa02b37e7 Revert "[BuildLibCalls/SimplifyLibCalls] Fix attributes on created CallInst instructions."
This reverts commit 1eda5453f2dcc9a9a4b4578fe74163c529974503.

Causes https://crbug.com/1223647:
Incompatible argument and return types for 'returned' attribute
  tail call void @llvm.memset.p0i8.i64(i8* noalias noundef returned writeonly align 1 dereferenceable(255) %arraydecay, i8 0, i64 255, i1 false), !dbg !985
2021-06-24 19:24:34 -07:00
Jonas Paulsson
1eda5453f2 [BuildLibCalls/SimplifyLibCalls] Fix attributes on created CallInst instructions.
- When emitting libcalls, do not only pass the calling convention from the
  function prototype but also the attributes.

- Do not pass attributes from e.g. libc memcpy to llvm.memcpy.

Review: Reid Kleckner, Eli Friedman, Arthur Eubanks

Differential Revision: https://reviews.llvm.org/D103992
2021-06-24 14:47:24 -05:00
Stephen Tozer
adace79652 [DebugInfo] Enable variadic debug value salvaging
This patch enables the salvaging of debug values that may be calculated
from more than one SSA value, such as with binary operators that do not
use a constant argument. The actual functionality for this behaviour is
added in a previous commit (c7270567), but with the ability to actually
emit the resulting debug values switched off.

The reason for this is that the prior patch has been reverted several
times due to issues discovered downstream, some time after the actual
landing of the patch. The patch in question is rather large and touches
several widely used header files, and all issues discovered are more
related to the handling of variadic debug values as a whole rather than
the details of the patch itself. Therefore, to minimize the build time
impact and risk of conflicts involved in any potential future
revert/reapply of that patch, this significantly smaller patch (that
touches no header files) will instead be used as the capstone to enable
variadic debug value salvaging.

The review linked to this patch is mostly implemented by the previous
commit, c7270567, but also contains the changes in this patch.

Differential Revision: https://reviews.llvm.org/D91722
2021-06-24 13:16:29 +01:00
Stephen Tozer
c72705678c Partial Reapply "[DebugInfo] Use variadic debug values to salvage BinOps and GEP instrs with non-const operands"
This is a partial reapply of the original commit and the followup commit
that were previously reverted; this reapply also includes a small fix
for a potential source of non-determinism, but also has a small change
to turn off variadic debug value salvaging, to ensure that any future
revert/reapply steps to disable and renable this feature do not risk
causing conflicts.

Differential Revision: https://reviews.llvm.org/D91722

This reverts commit 386b66b2fc297cda121a3cc8a36887a6ecbcfc68.
2021-06-24 09:46:38 +01:00
Jon Roelofs
493d6928fe [Remarks] Make memsize remarks report as an analysis, not a missed opportunity.
Differential revision: https://reviews.llvm.org/D104078
2021-06-22 18:22:47 -07:00
Nikita Popov
80e0424b2c [Mem2Reg] Use poison for unreachable cases
Use poison instead of undef for cases dealing with unreachable
code. This still leaves the more interesting case of "load from
uninitialized memory" as undef.
2021-06-21 10:54:13 +02:00
Roman Lebedev
c5b7335dc8
[SimplifyCFG] FoldTwoEntryPHINode(): don't fold if either block has it's address taken
Same as with HoistThenElseCodeToIf() (ad87761925c2790aab272138b5bbbde4a93e0383).
2021-06-20 12:37:14 +03:00
Roman Lebedev
ad87761925
[SimplifyCFG] HoistThenElseCodeToIf(): don't hoist if either block has it's address taken
This problem is exposed by D104598, after it tail-merges `ret` in
`@test_inline_constraint_S_label`, the verifier would start complaining
`invalid operand for inline asm constraint 'S'`.

Essentially, taking address of a block is mismodelled in IR.
It should probably be an explicit instruction, a first one in block,
that isn't identical to any other instruction of the same type,
so that it can't be hoisted.
2021-06-20 12:18:15 +03:00
Nikita Popov
1bd4085e0b [LoopUnroll] Push runtime unrolling decision up into tryToUnrollLoop()
Currently, UnrollLoop() is passed an AllowRuntime flag and decides
itself whether runtime unrolling should be used or not. This patch
pushes the decision into the caller and allows us to eliminate the
ULO.TripCount and ULO.TripMultiple parameters.

Differential Revision: https://reviews.llvm.org/D104487
2021-06-19 09:25:57 +02:00
Hongtao Yu
bd52495518 [CSSPGO] Undoing the concept of dangling pseudo probe
As a follow-up to https://reviews.llvm.org/D104129, I'm cleaning up the danling probe related code in both the compiler and llvm-profgen.

I'm seeing a 5% size win for the pseudo_probe section for SPEC2017 and 10% for Ciner. Certain benchmark such as 602.gcc has a 20% size win. No obvious difference seen on build time for SPEC2017 and Cinder.

Reviewed By: wenlei

Differential Revision: https://reviews.llvm.org/D104477
2021-06-18 15:14:11 -07:00
Nikita Popov
3308205ae9 [LoopUnroll] Simplify optimization remarks
Remove dependence on ULO.TripCount/ULO.TripMultiple from ORE and
debug code. For debug code, print information about all exits.
For optimization remarks, only include the unroll count and the
type of unroll (complete, partial or runtime), but omit detailed
information about exit folding, now that more than one exit may
be folded.

Differential Revision: https://reviews.llvm.org/D104482
2021-06-18 23:47:03 +02:00
Nikita Popov
f7c54c4603 [LoopUnroll] Fold all exits based on known trip count/multiple
Fold all exits based on known trip count/multiple information from
SCEV. Previously only the latch exit or the single exit were folded.

This doesn't yet eliminate ULO.TripCount and ULO.TripMultiple
entirely: They're still used to a) decide whether runtime unrolling
should be performed and b) for ORE remarks. However, the core
unrolling logic is independent of them now.

Differential Revision: https://reviews.llvm.org/D104203
2021-06-17 20:58:34 +02:00
Bjorn Pettersson
4c7f820b2b Update @llvm.powi to handle different int sizes for the exponent
This can be seen as a follow up to commit 0ee439b705e82a4fe20e2,
that changed the second argument of __powidf2, __powisf2 and
__powitf2 in compiler-rt from si_int to int. That was to align with
how those runtimes are defined in libgcc.
One thing that seem to have been missing in that patch was to make
sure that the rest of LLVM also handle that the argument now depends
on the size of int (not using the si_int machine mode for 32-bit).
When using __builtin_powi for a target with 16-bit int clang crashed.
And when emitting libcalls to those rtlib functions, typically when
lowering @llvm.powi), the backend would always prepare the exponent
argument as an i32 which caused miscompiles when the rtlib was
compiled with 16-bit int.

The solution used here is to use an overloaded type for the second
argument in @llvm.powi. This way clang can use the "correct" type
when lowering __builtin_powi, and then later when emitting the libcall
it is assumed that the type used in @llvm.powi matches the rtlib
function.

One thing that needed some extra attention was that when vectorizing
calls several passes did not support that several arguments could
be overloaded in the intrinsics. This patch allows overload of a
scalar operand by adding hasVectorInstrinsicOverloadedScalarOpd, with
an entry for powi.

Differential Revision: https://reviews.llvm.org/D99439
2021-06-17 09:38:28 +02:00
Rong Xu
82a0bb1afc [SampleFDO] Place the discriminator flag variable into the used list.
We create flag variable "__llvm_fs_discriminator__" in the binary
to indicate that FSAFDO hierarchical discriminators are used.

This variable might be GC'ed by the linker since it is not explicitly
reference. I initially added the var to the use list in pass
MIRFSDiscriminator but it did not work. It turned out the used global
list is collected in lowering (before MIR pass) and then emitted in
the end of pass pipeline.

Here I add the variable to the use list in IR level's AddDiscriminators
pass. The machine level code is still keep in the case IR's
AddDiscriminators is not invoked. If this is the case, this just use
-Wl,--export-dynamic-symbol=__llvm_fs_discriminator__
to force the emit.

Differential Revision: https://reviews.llvm.org/D103988
2021-06-15 21:51:04 -07:00
Neil Henning
1540da3b78 ABI breaking changes fixes.
This commit mostly just replaces bad uses of `NDEBUG` with uses of
`LLVM_ENABLE_ABI_BREAKING_CHANGES` - the safe way to include ABI
breaking changes (normally extra struct elements in headers).

Differential Revision: https://reviews.llvm.org/D104216
2021-06-15 11:08:13 +01:00
Sanjay Patel
602ab24833 [SimplifyCFG] avoid crash on degenerate loop
The problematic code pattern in the test is based on:
https://llvm.org/PR50638

If the IfCond is itself the phi that we are trying to remove,
then the loop around line 2835 can end up with something like:
%cmp = select i1 %cmp, i1 false, i1 true

That can then lead to a use-after-free and assert (although
I'm still not seeing that locally in my release + asserts build).

I think this can only happen with unreachable code.

Differential Revision: https://reviews.llvm.org/D104063
2021-06-11 09:37:06 -04:00
Simon Pilgrim
5e6bfb661e [Analysis] Pass RecurrenceDescriptor as const reference. NFCI.
We were passing the RecurrenceDescriptor by value to most of the reduction analysis methods, despite it being rather bulky with TrackingVH members (that can be costly to copy). In all these cases we're only using the RecurrenceDescriptor for rather basic purposes (access to types/kinds etc.).

Differential Revision: https://reviews.llvm.org/D104029
2021-06-11 10:24:14 +01:00
Sjoerd Meijer
c4a0969b9c Function Specialization Pass
This adds a function specialization pass to LLVM. Constant parameters
like function pointers and constant globals are propagated to the callee by
specializing the function.

This is a first version with a number of limitations:
- The pass is off by default, so needs to be enabled on the command line,
- It does not handle specialization of recursive functions,
- It does not yet handle constants and constant ranges,
- Only 1 argument per function is specialised,
- The cost-model could be further looked into, and perhaps related,
- We are not yet caching analysis results.

This is based on earlier work by Matthew Simpson (D36432) and Vinay Madhusudan.
More recently this was also discussed on the list, see:

https://lists.llvm.org/pipermail/llvm-dev/2021-March/149380.html.

The motivation for this work is that function specialisation often comes up as
a reason for performance differences of generated code between LLVM and GCC,
which has this enabled by default from optimisation level -O3 and up. And while
this certainly helps a few cpu benchmark cases, this also triggers in real
world codes and is thus a generally useful transformation to have in LLVM.

Function specialisation has great potential to increase compile-times and
code-size.  The summary from some investigations with this patch is:
- Compile-time increases for short compile jobs is high relatively, but the
  increase in absolute numbers still low.
- For longer compile-jobs, the extra compile time is around 1%, and very much
  in line with GCC.
- It is difficult to blame one thing for compile-time increases: it looks like
  everywhere a little bit more time is spent processing more functions and
  instructions.
- But the function specialisation pass itself is not very expensive; it doesn't
  show up very high in the profile of the optimisation passes.

The goal of this work is to reach parity with GCC which means that eventually
we would like to get this enabled by default. But first we would like to address
some of the limitations before that.

Differential Revision: https://reviews.llvm.org/D93838
2021-06-11 09:11:29 +01:00
Philip Reames
7629b2a09c [LI] Add a cover function for checking if a loop is mustprogress [nfc]
Essentially, the cover function simply combines the loop level check and the function level scope into one call.  This simplifies several callers and is (subjectively) less error prone.
2021-06-10 13:37:32 -07:00
Philip Reames
b6ee5f2b1d Move code for checking loop metadata into Analysis [nfc]
I need the mustprogress loop metadata in ScalarEvolution and it makes sense to keep all the accessors for quering loop metadate together.
2021-06-10 13:01:22 -07:00
Simon Pilgrim
b01d393fc0 Fix MSVC int64_t -> uint64_t "narrowing conversion" warning. 2021-06-10 10:55:24 +01:00
Jon Roelofs
f8f1c9c389 Annotate memcpy's of globals with info about the src/dst
Differential revision: https://reviews.llvm.org/D103994
2021-06-09 18:11:08 -07:00
Hans Wennborg
386b66b2fc Revert "3rd Reapply "[DebugInfo] Use variadic debug values to salvage BinOps and GEP instrs with non-const operands""
> This reapplies c0f3dfb9, which was reverted following the discovery of
> crashes on linux kernel and chromium builds - these issues have since
> been fixed, allowing this patch to re-land.

This reverts commit 36ec97f76ac0d8be76fb16ac521f55126766267d.

The change caused non-determinism in the compiler, see comments on the code
review at https://reviews.llvm.org/D91722.

Reverting to unbreak people's builds until that can be addressed.

This also reverts the follow-up "[DebugInfo] Limit the number of values
that may be referenced by a dbg.value" in
a0bd6105d80698c53ceaa64bbe6e3b7e7bbf99ee.
2021-06-08 14:54:08 +02:00
Arthur Eubanks
47211fa889 Revert "[TargetLowering] Only inspect attributes in the arguments for ArgListEntry"
Needs to be discussed more.

This reverts commit 255a5c1baa6020c009934b4fa342f9f6dbbcc46
This reverts commit df2056ff3730316f376f29d9986c9913b95ceb1
This reverts commit faff79b7ca144e505da6bc74aa2b2f7cffbbf23
This reverts commit d2a9020785c6e02afebc876aa2778fa64c5cafd
2021-06-07 16:07:44 -07:00
Nikita Popov
8fdd7c2ff1 [LoopUnroll] Clamp unroll count to MaxTripCount
Unrolling with more iterations than MaxTripCount is pointless, as
those iterations can never be executed. As such, we clamp ULO.Count
to MaxTripCount if it is known. This means we no longer need to
consider iterations after MaxTripCount for exit folding, and the
CompletelyUnroll flag becomes independent of ULO.TripCount.

Differential Revision: https://reviews.llvm.org/D103748
2021-06-07 21:08:42 +02:00
Simon Pilgrim
9ced408fe9 SimplifyCFG.cpp - remove dead early-return code added at rGcc63203908da. NFCI.
We've already checked that ScanIdx == 0 a few lines above.
2021-06-06 14:15:11 +01:00
Roman Lebedev
e350494fb0
[NFC] Promote willNotOverflow() / getStrengthenedNoWrapFlagsFromBinOp() from IndVars into SCEV proper
We might want to use it when creating SCEV proper in createSCEV(),
now that we don't `forgetValue()` in `SimplifyIndvar::strengthenOverflowingOperation()`,
which might have caused us to loose some optimization potential.
2021-06-05 12:17:51 +03:00
Nikita Popov
db45746821 [LoopUnroll] Separate peeling from unrolling
Loop peeling is currently performed as part of UnrollLoop().
Outside test scenarios, it is always performed with an unroll
count of 1. This means that unrolling doesn't actually do anything
apart from performing post-unroll simplification.

When testing, it's currently possible to specify both an explicit
peel count and an explicit unroll count. This doesn't perform any
sensible operation and may result in miscompiles, see
https://bugs.llvm.org/show_bug.cgi?id=45939.

This patch moves peeling from UnrollLoop() into tryToUnrollLoop(),
so that peeling does not also perform a susequent unroll. We only
run the post-unroll simplifications. Specifying both an explicit
peel count and unroll count is forbidden.

In the future, we may want to support both (non-PGO) peeling a
loop and unrolling it, but this needs to be done by first performing
the peel and then recalculating unrolling heuristics on a now
possibly analyzable loop.

Differential Revision: https://reviews.llvm.org/D103362
2021-06-05 10:32:00 +02:00
Fangrui Song
06e7de795b Fix some -Wunused-but-set-variable in -DLLVM_ENABLE_ASSERTIONS=off build 2021-06-04 23:34:43 -07:00
Nikita Popov
14f350daf2 [IndVars] Don't forget value when inferring nowrap flags
When SimplifyIndVars infers IR nowrap flags from SCEV, this may
happen in two ways: Either nowrap flags were already present in
SCEV and just get transferred to IR. Or zero/sign extension of
addrecs infers additional nowrap flags, and those get transferred
to IR. In the latter case, calling forgetValue() ensures that the
newly inferred nowrap flags get propagated to any other SCEV
expressions based on the addrec. However, the invalidation can
also have a major compile-time effect in some cases. For
https://bugs.llvm.org/show_bug.cgi?id=50384 with n=512 compile-
time drops from 7.1s to 0.8s without this invalidation. At the
same time, removing the invalidation doesn't affect any codegen
in test-suite.

Differential Revision: https://reviews.llvm.org/D103424
2021-06-04 20:57:22 +02:00
Arthur Eubanks
edf2056ff3 [BuildLibCalls] Properly set ABI attributes on arguments
Some floating point lib calls have ABI attributes that need to be set on
the caller. Found via D103412.

Reviewed By: rnk

Differential Revision: https://reviews.llvm.org/D103415
2021-06-03 15:45:07 -07:00
Philip Reames
a4b924a017 Kill a variable which is unused after cddcc4cf [nfc] 2021-06-03 14:38:57 -07:00
Philip Reames
cddcc4cff5 A couple style tweaks on top of 5c0d1b2f9 [nfc] 2021-06-03 14:14:59 -07:00
Philip Reames
5c0d1b2f90 [LoopUnroll] Eliminate PreserveCondBr parameter and fix a bug in the process
This builds on D103584. The change eliminates the coupling between unroll heuristic and implementation w.r.t. knowing when the passed in trip count is an exact trip count or a max trip count. In theory the new code is slightly less powerful (since it relies on exact computable trip counts), but in practice, it appears to cover all the same cases. It can also be extended if needed.

The test change shows what appears to be a bug in the existing code around the interaction of peeling and unrolling. The original loop only ran 8 iterations. The previous output had the loop peeled by 2, and then an exact unroll of 8. This meant the loop ran a total of 10 iterations which appears to have been a miscompile.

Differential Revision: https://reviews.llvm.org/D103620
2021-06-03 14:09:16 -07:00
Philip Reames
44d70d298a [LoopUnroll] Eliminate PreserveOnlyFirst parameter [nfc]
This is a first step towards simplifying the transform interface to be less error prone. The basic idea is that querying SCEV is cheap (since it's cached) and we can just check for properties related to branch folding in the transform method instead of relying on the heuristic part to pass everything in correctly.

Differential Revision: https://reviews.llvm.org/D103584
2021-06-03 10:33:14 -07:00
Philip Reames
bb5e1c6dcb [LoopUnroll] Reorder code to max dom tree update more obvious [nfc]
This cleans up the unroll action into two phases. Phase 1 does the mechanical act of unrolling, and leaves all conditional branches in place. Phase 2 optimizes away some of the conditional branches and then simplifies the loop. The primary benefit of the reordering is that we can delete some special cases dom tree update logic.

Differential Revision: https://reviews.llvm.org/D103561
2021-06-03 10:19:56 -07:00
Bjorn Pettersson
9c54ee4378 [SimplifyLibCalls] Take size of int into consideration when emitting ldexp/ldexpf
When rewriting
  powf(2.0, itofp(x)) -> ldexpf(1.0, x)
  exp2(sitofp(x)) -> ldexp(1.0, sext(x))
  exp2(uitofp(x)) -> ldexp(1.0, zext(x))

the wrong type was used for the second argument in the ldexp/ldexpf
libc call, for target architectures with 16 bit "int" type.
The transform incorrectly used a bitcasted function pointer with
a 32-bit argument when emitting the ldexp/ldexpf call for such
targets.

The fault is solved by using the correct function prototype
in the call, by asking TargetLibraryInfo about the size of "int".
TargetLibraryInfo by default derives the size of the int type by
assuming that it is 16 bits for 16-bit architectures, and
32 bits otherwise. If this isn't true for a target it should be
possible to override that default in the TargetLibraryInfo
initializer.

Differential Revision: https://reviews.llvm.org/D99438
2021-06-02 11:40:34 +02:00
Arthur Eubanks
2983053d23 [NFC][OpaquePtr] Explicitly pass GEP source type to IRBuilder in more places 2021-06-01 13:13:37 -07:00
Roman Lebedev
f7c95c3322
[NFC] ScalarEvolution: apply SSO to the ExprValueMap value
ExprValueMap is a map from SCEV * to a set-vector of (Value *, ConstantInt *) pair,
and while the map itself will likely be big-ish (have many keys),
it is a reasonable assumption that each key will refer to a small-ish
number of pairs.

In particular looking at n=512 case from
https://bugs.llvm.org/show_bug.cgi?id=50384,
the small-size of 4 appears to be the sweet spot,
it results in the least allocations while minimizing memory footprint.
```
$ for i in $(ls heaptrack.opt.*.gz); do echo $i; heaptrack_print $i | tail -n 6; echo ""; done
heaptrack.opt.0-orig.gz
total runtime: 14.32s.
calls to allocation functions: 8222442 (574192/s)
temporary memory allocations: 2419000 (168924/s)
peak heap memory consumption: 190.98MB
peak RSS (including heaptrack overhead): 239.65MB
total memory leaked: 67.58KB

heaptrack.opt.1-n1.gz
total runtime: 13.72s.
calls to allocation functions: 7184188 (523705/s)
temporary memory allocations: 2419017 (176338/s)
peak heap memory consumption: 191.38MB
peak RSS (including heaptrack overhead): 239.64MB
total memory leaked: 67.58KB

heaptrack.opt.2-n2.gz
total runtime: 12.24s.
calls to allocation functions: 6146827 (502355/s)
temporary memory allocations: 2418997 (197695/s)
peak heap memory consumption: 163.31MB
peak RSS (including heaptrack overhead): 211.01MB
total memory leaked: 67.58KB

heaptrack.opt.3-n4.gz
total runtime: 12.28s.
calls to allocation functions: 6068532 (494260/s)
temporary memory allocations: 2418985 (197017/s)
peak heap memory consumption: 155.43MB
peak RSS (including heaptrack overhead): 201.77MB
total memory leaked: 67.58KB

heaptrack.opt.4-n8.gz
total runtime: 12.06s.
calls to allocation functions: 6068042 (503321/s)
temporary memory allocations: 2418992 (200646/s)
peak heap memory consumption: 166.03MB
peak RSS (including heaptrack overhead): 213.55MB
total memory leaked: 67.58KB

heaptrack.opt.5-n16.gz
total runtime: 12.14s.
calls to allocation functions: 6067993 (499958/s)
temporary memory allocations: 2418999 (199307/s)
peak heap memory consumption: 187.24MB
peak RSS (including heaptrack overhead): 233.69MB
total memory leaked: 67.58KB
```

While that test may be an edge worst-case scenario,
https://llvm-compile-time-tracker.com/compare.php?from=dee85d47d9f15fc268f7b18f279dac2774836615&to=98a57e31b1947d5bcdf4a5605ac2ab32b4bd5f63&stat=instructions
agrees that this also results in improvements in the usual situations.
2021-05-31 15:34:03 +03:00