Commit Graph

225 Commits

Author SHA1 Message Date
Arnold Schwaighofer c368563bd6 Don't combine stores to a swifterror pointer operand to a different type
llvm-svn: 293658
2017-01-31 17:53:49 +00:00
Sanjoy Das 679bc32c6a [InstCombine] Don't DSE across readnone functions that may throw
Summary: Depends on D28740

Reviewers: dberlin, chandlerc, hfinkel, majnemer

Subscribers: mcrosier, llvm-commits

Differential Revision: https://reviews.llvm.org/D28742

llvm-svn: 292197
2017-01-17 05:45:09 +00:00
Sanjay Patel b38ad88e9f [InstCombine] use combineMetadataForCSE instead of copying it; NFCI
llvm-svn: 290844
2017-01-02 23:25:28 +00:00
Daniel Jasper aec2fa352f Revert @llvm.assume with operator bundles (r289755-r289757)
This creates non-linear behavior in the inliner (see more details in
r289755's commit thread).

llvm-svn: 290086
2016-12-19 08:22:17 +00:00
Hal Finkel 3ca4a6bcf1 Remove the AssumptionCache
After r289755, the AssumptionCache is no longer needed. Variables affected by
assumptions are now found by using the new operand-bundle-based scheme. This
new scheme is more computationally efficient, and also we need much less
code...

llvm-svn: 289756
2016-12-15 03:02:15 +00:00
Philip Reames 89e92d21b4 [PR29121] Don't fold if it would produce atomic vector loads or stores
The instcombine code which folds loads and stores into their use types can trip up if the use is a bitcast to a type which we can't directly load or store in the IR. In principle, such types shouldn't exist, but in practice they do today. This is a workaround to avoid a bug while we work towards the long term goal.

Differential Revision: https://reviews.llvm.org/D24365

llvm-svn: 288415
2016-12-01 20:17:06 +00:00
Peter Collingbourne ecdd58f1d6 Analysis: Move llvm::getConstantRangeFromMetadata to IR library.
We're about to start using it there.

Differential Revision: https://reviews.llvm.org/D25877

llvm-svn: 284865
2016-10-21 19:59:26 +00:00
David Majnemer 80dca0c78f [InstCombine] Transform !range metadata to !nonnull when combining loads
When combining an integer load with !range metadata that does not include 0 to a pointer load, make sure emit !nonnull metadata on the newly-created pointer load. This prevents the !nonnull metadata from being dropped during a ptrtoint/inttoptr pair.

This fixes PR30597.

Patch by Ariel Ben-Yehuda!

Differential Revision: https://reviews.llvm.org/D25215

llvm-svn: 283836
2016-10-11 01:00:45 +00:00
Davide Italiano f6988d2980 [InstCombine] Don't unpack arrays that are too large (part 2).
This is similar to r283599, but for store instructions.
Thanks to David for pointing out!

llvm-svn: 283612
2016-10-07 21:53:09 +00:00
Davide Italiano da11412243 [InstCombine] Don't unpack arrays that are too large
Differential Revision:  https://reviews.llvm.org/D25376

llvm-svn: 283599
2016-10-07 20:57:42 +00:00
Arnold Schwaighofer 5d335559b9 InstCombine: Don't combine loads/stores from swifterror to a new type
This generates invalid IR: the only users of swifterror can be call
arguments, loads, and stores.

rdar://28242257

llvm-svn: 281144
2016-09-10 18:14:57 +00:00
David Majnemer 0a16c22846 Use range algorithms instead of unpacking begin/end
No functionality change is intended.

llvm-svn: 278417
2016-08-11 21:15:00 +00:00
Eli Friedman 02419a9849 [JumpThreading] Fix handling of aliasing metadata.
Summary:
The correctness fix here is that when we CSE a load with another load,
we need to combine the metadata on the two loads. This matches the
behavior of other passes, like instcombine and GVN.

There's also a minor optimization improvement here: for load PRE, the
aliasing metadata on the inserted load should be the same as the
metadata on the original load. Not sure why the old code was throwing
it away.

Issue found by inspection.

Differential Revision: http://reviews.llvm.org/D21460

llvm-svn: 277977
2016-08-08 04:10:22 +00:00
Sanjoy Das ba04d3a620 [InstCombine] Don't coerce non-integral pointers to integers
Reviewers: majnemer

Subscribers: mcrosier, llvm-commits

Differential Revision: https://reviews.llvm.org/D23231

llvm-svn: 277910
2016-08-06 02:58:48 +00:00
Justin Bogner c7e4fbe11c InstCombine: Clean up some trailing whitespace. NFC
llvm-svn: 277793
2016-08-05 01:09:48 +00:00
Justin Bogner 9979840f59 InstCombine: Replace some never-null pointers with references. NFC
llvm-svn: 277792
2016-08-05 01:06:44 +00:00
Eli Friedman bd254a6f45 [InstCombine] Don't widen metadata on store-to-load forwarding
The original check for load CSE or store-to-load forwarding is wrong
when the forwarded stored value happened to be a load.

Ref https://github.com/JuliaLang/julia/issues/16894

Differential Revision: http://reviews.llvm.org/D21271

Patch by Yichao Yu!

llvm-svn: 272868
2016-06-16 02:33:42 +00:00
Philip Reames 6f4d0088c6 Reapply 267210 with fix for PR27490
Original Commit Message
Extend load/store type canonicalization to handle unordered operations

Extend the type canonicalization logic to work for unordered atomic loads and stores.  Note that while this change itself is fairly simple and low risk, there's a reasonable chance this will expose problems in the backends by suddenly generating IR they wouldn't have seen before.  Anything of this nature will be an existing bug in the backend (you could write an atomic float load), but this will definitely change the frequency with which such cases are encountered.  If you see problems, feel free to revert this change, but please make sure you collect a test case. 

Note that the concern about lowering is now much less likely.  PR27490 proved that we already *were* mucking with the types of ordered atomics and volatiles.  As a result, this change doesn't introduce as much new behavior as originally thought.

llvm-svn: 268809
2016-05-06 22:17:01 +00:00
Artur Pilipenko 9bb6beabf4 isSafeToLoadUnconditionally support queries without a context
This is required to use this function from isSafeToSpeculativelyExecute

Reviewed By: hfinkel

Differential Revision: http://reviews.llvm.org/D16231

llvm-svn: 267692
2016-04-27 11:00:48 +00:00
Arch D. Robison be0490a6e8 Optimize store of "bitcast" from vector to aggregate.
This patch is what was the "instcombine" portion of D14185, with an additional 
test added (see julia_pseudovec in test/Transforms/InstCombine/insert-val-extract-elem.ll). 
The patch causes instcombine to replace sequences of extractelement-insertvalue-store 
that act essentially like a bitcast followed by a store.

Differential review: http://reviews.llvm.org/D14260

llvm-svn: 267482
2016-04-25 22:22:39 +00:00
Nico Weber 0aa9845d15 Revert r267210, it makes clang assert (PR27490).
llvm-svn: 267232
2016-04-22 22:08:42 +00:00
Philip Reames 5f0e36947b [unordered] sink unordered stores at end of blocks
The existing code turned out to be completely correct when auditted.  Thus, only minor code changes and adding a couple of tests.

llvm-svn: 267215
2016-04-22 20:53:32 +00:00
Philip Reames eedef73b63 [unordered] Extend load/store type canonicalization to handle unordered operations
Extend the type canonicalization logic to work for unordered atomic loads and stores.  Note that while this change itself is fairly simple and low risk, there's a reasonable chance this will expose problems in the backends by suddenly generating IR they wouldn't have seen before.  Anything of this nature will be an existing bug in the backend (you could write an atomic float load), but this will definitely change the frequency with which such cases are encountered.  If you see problems, feel free to revert this change, but please make sure you collect a test case.  

llvm-svn: 267210
2016-04-22 20:33:48 +00:00
JF Bastien c22d29982b NFC: fix copy / paste comment
llvm-svn: 267039
2016-04-21 19:53:39 +00:00
JF Bastien 3e2e69f607 NFC: fix nonsensical comment
llvm-svn: 267036
2016-04-21 19:41:48 +00:00
Philip Reames a98c7ead30 [instcombine][unordered] Extend load(select) transform to handle unordered loads
llvm-svn: 267023
2016-04-21 17:59:40 +00:00
Philip Reames 3ac0718423 [unordered] unordered loads from null are still unreachable
llvm-svn: 267019
2016-04-21 17:45:05 +00:00
Philip Reames ac55090e96 [instcombine][unordered] Implement *-load forwarding for unordered atomics
This builds on 266999 which made FindAvailableValue do the right thing.  Tests included show the newly enabled transforms and those which disabled either due to conservatism or correctness requirements.

llvm-svn: 267006
2016-04-21 17:03:33 +00:00
Sanjoy Das 99042473d0 Fix a typo in rL265762
I accidentally replaced `mayBeOverridden` with `!isInterposable`.
Remove the negation and add a test case that would've caught this.

Many thanks to Håkan Hjort for spotting this!

llvm-svn: 266551
2016-04-17 04:30:43 +00:00
Sanjoy Das 5ce3272833 Don't IPO over functions that can be de-refined
Summary:
Fixes PR26774.

If you're aware of the issue, feel free to skip the "Motivation"
section and jump directly to "This patch".

Motivation:

I define "refinement" as discarding behaviors from a program that the
optimizer has license to discard.  So transforming:

```
void f(unsigned x) {
  unsigned t = 5 / x;
  (void)t;
}
```

to

```
void f(unsigned x) { }
```

is refinement, since the behavior went from "if x == 0 then undefined
else nothing" to "nothing" (the optimizer has license to discard
undefined behavior).

Refinement is a fundamental aspect of many mid-level optimizations done
by LLVM.  For instance, transforming `x == (x + 1)` to `false` also
involves refinement since the expression's value went from "if x is
`undef` then { `true` or `false` } else { `false` }" to "`false`" (by
definition, the optimizer has license to fold `undef` to any non-`undef`
value).

Unfortunately, refinement implies that the optimizer cannot assume
that the implementation of a function it can see has all of the
behavior an unoptimized or a differently optimized version of the same
function can have.  This is a problem for functions with comdat
linkage, where a function can be replaced by an unoptimized or a
differently optimized version of the same source level function.

For instance, FunctionAttrs cannot assume a comdat function is
actually `readnone` even if it does not have any loads or stores in
it; since there may have been loads and stores in the "original
function" that were refined out in the currently visible variant, and
at the link step the linker may in fact choose an implementation with
a load or a store.  As an example, consider a function that does two
atomic loads from the same memory location, and writes to memory only
if the two values are not equal.  The optimizer is allowed to refine
this function by first CSE'ing the two loads, and the folding the
comparision to always report that the two values are equal.  Such a
refined variant will look like it is `readonly`.  However, the
unoptimized version of the function can still write to memory (since
the two loads //can// result in different values), and selecting the
unoptimized version at link time will retroactively invalidate
transforms we may have done under the assumption that the function
does not write to memory.

Note: this is not just a problem with atomics or with linking
differently optimized object files.  See PR26774 for more realistic
examples that involved neither.

This patch:

This change introduces a new set of linkage types, predicated as
`GlobalValue::mayBeDerefined` that returns true if the linkage type
allows a function to be replaced by a differently optimized variant at
link time.  It then changes a set of IPO passes to bail out if they see
such a function.

Reviewers: chandlerc, hfinkel, dexonsmith, joker.eph, rnk

Subscribers: mcrosier, llvm-commits

Differential Revision: http://reviews.llvm.org/D18634

llvm-svn: 265762
2016-04-08 00:48:30 +00:00
Benjamin Kramer c126353473 [InstCombine] Use Twines to generate names.
Since the names are used in a loop this does more work in debug builds. In
release builds value names are generally discarded so we don't have to do
the concatenation at all. It's also simpler code, no functional change
intended.

llvm-svn: 263215
2016-03-11 10:20:56 +00:00
Amaury Sechet 3b8b2ea2e1 Explode store of arrays in instcombine
Summary: This is the last step toward supporting aggregate memory access in instcombine. This explodes stores of arrays into a serie of stores for each element, allowing them to be optimized.

Reviewers: joker.eph, reames, hfinkel, majnemer, mgrang

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D17828

llvm-svn: 262530
2016-03-02 22:36:45 +00:00
Amaury Sechet 7cd3fe7db6 Unpack array of all sizes in InstCombine
Summary: This is another step toward improving fca support. This unpack load of array in a series of load to array's elements.

Reviewers: chandlerc, joker.eph, majnemer, reames, hfinkel

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D15890

llvm-svn: 262521
2016-03-02 21:28:30 +00:00
Amaury Sechet da71cb7b92 NFC: Fix formating
llvm-svn: 261156
2016-02-17 21:21:29 +00:00
Amaury Sechet 61a7d629ec Fix load alignement when unpacking aggregates structs
Summary: Store and loads unpacked by instcombine do not always have the right alignement. This explicitely compute the alignement and set it.

Reviewers: dblaikie, majnemer, reames, hfinkel, joker.eph

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D17326

llvm-svn: 261139
2016-02-17 19:21:28 +00:00
Quentin Colombet 490cfbe2a2 Re-apply r238452, the bug was in clang and was fixed in r260567.
Original commit message:
[InstCombine] Fold IntToPtr and PtrToInt into preceding loads.

Currently we only fold a BitCast into a Load when the BitCast is its
only user.

Do the same for any no-op cast.

Patch by Philip Pfaffe!

Differential Revision: http://reviews.llvm.org/D9152

llvm-svn: 260612
2016-02-11 22:30:41 +00:00
Pete Cooper 5562c333b8 Set load alignment on aggregate loads.
When optimizing a extractvalue(load), we generate a load from the
aggregate type.  This load didn't have alignment set and so would
get the alignment of the type.  This breaks when the type is packed
and so the alignment should be lower.

For example, loading { int, int } would give us alignment of 4, but
the original load from this type may have an alignment of 1 if packed.

Reviewed by David Majnemer

Differential revision: http://reviews.llvm.org/D17158

llvm-svn: 260587
2016-02-11 21:10:40 +00:00
Quentin Colombet 7ec03dc7f8 [InstCombine] Revert r238452: Fold IntToPtr and PtrToInt into preceding loads.
According to git bisect, this is the root cause of a miscompile for Regex in
libLLVMSupport. I am still working on reducing a test case.
The actual bug may be elsewhere and this commit just exposed it.

Anyway, at the moment, to reproduce, follow these steps:
1. Build clang and libLTO in release mode.
2. Create a new build directory <stage2> and cd into it.
3. Use clang and libLTO from #1 to build llvm-extract in Release mode + asserts
   using -O2 -flto
4. Run llvm-extract  -ralias '.*bar' -S test/Other/extract-alias.ll

Result:
program doesn't contain global named '.*bar'!

Expected result:
@a0a0bar = alias void ()* @bar
@a0bar = alias void ()* @bar

declare void @bar()

Note: In step #3, if you don't use lto or asserts, the miscompile disappears.
llvm-svn: 259674
2016-02-03 18:04:13 +00:00
Sanjay Patel 4b198802b3 function names start with a lowercase letter; NFC
llvm-svn: 259425
2016-02-01 22:23:39 +00:00
Eduard Burtescu e2a6917849 [opaque pointer types] [NFC] FindAvailableLoadedValue: take LoadInst instead of just the pointer.
Reviewers: mjacob, dblaikie

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D16422

llvm-svn: 258477
2016-01-22 01:51:51 +00:00
Eduard Burtescu 19eb03106d [opaque pointer types] [NFC] GEP: replace get(Pointer)ElementType uses with get{Source,Result}ElementType.
Summary:
GEPOperator: provide getResultElementType alongside getSourceElementType.
This is made possible by adding a result element type field to GetElementPtrConstantExpr, which GetElementPtrInst already has.

GEP: replace get(Pointer)ElementType uses with get{Source,Result}ElementType.

Reviewers: mjacob, dblaikie

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D16275

llvm-svn: 258145
2016-01-19 17:28:00 +00:00
Manuel Jacob 5f6eaac611 GlobalValue: use getValueType() instead of getType()->getPointerElementType().
Reviewers: mjacob

Subscribers: jholewinski, arsenm, dsanders, dblaikie

Patch by Eduard Burtescu.

Differential Revision: http://reviews.llvm.org/D16260

llvm-svn: 257999
2016-01-16 20:30:46 +00:00
Artur Pilipenko 6dd6969cee Change isSafeToLoadUnconditionally arguments order. Separated from http://reviews.llvm.org/D10920.
llvm-svn: 257894
2016-01-15 15:27:46 +00:00
David Majnemer 02f4787e45 [OperandBundles] Have InstCombine play nice with operand bundles
Don't assume a call's use corresponds to an argument operand, it might
correspond to a bundle operand.

llvm-svn: 256327
2015-12-23 09:58:41 +00:00
Philip Reames d7a6cc859a [InstCombine] Extend peephole DSE to handle unordered atomics
This extends the same line of reasoning used in EarlyCSE w/http://reviews.llvm.org/D15352 to the DSE implementation in InstCombine.

Key points:
 * We only remove unordered or simple stores.
 * The loads producing values consumed by dead stores don't influence whether the store is dead.

Differential Revision: http://reviews.llvm.org/D15354

llvm-svn: 255932
2015-12-17 22:19:27 +00:00
NAKAMURA Takumi ec6b1fcf63 InstCombineLoadStoreAlloca.cpp: Avoid instantiating Twine.
llvm-svn: 255637
2015-12-15 09:37:31 +00:00
Mehdi Amini 1c131b37ed Instcombine: destructor loads of structs that do not contains padding
For non padded structs, we can just proceed and deaggregate them.
We don't want ot do this when there is padding in the struct as to not
lose information about this padding (the subsequents passes would then
try hard to preserve the padding, which is undesirable).

Also update extractvalue.ll and cast.ll so that they use structs with padding.

Remove the FIXME in the extractvalue of laod case as the non padded case is
handled when processing the load, and we don't want to do it on the padded
case.

Patch by: Amaury SECHET <deadalnix@gmail.com>

Differential Revision: http://reviews.llvm.org/D14483

From: Mehdi Amini <mehdi.amini@apple.com>
llvm-svn: 255600
2015-12-15 01:44:07 +00:00
Artur Pilipenko 5c5011d503 Preserve load alignment and dereferenceable metadata during some transformations
Reviewed By: hfinkel

Differential Revision: http://reviews.llvm.org/D13953

llvm-svn: 251809
2015-11-02 17:53:51 +00:00
Duncan P. N. Exon Smith 9f8aaf21ba InstCombine: Remove ilist iterator implicit conversions, NFC
Stop relying on implicit conversions of ilist iterators in
LLVMInstCombine.  No functionality change intended.

llvm-svn: 250183
2015-10-13 16:59:33 +00:00
Piotr Padlewski dc9b2cfc50 inariant.group handling in GVN
The most important part required to make clang
devirtualization works ( ͡°͜ʖ ͡°).
The code is able to find non local dependencies, but unfortunatelly
because the caller can only handle local dependencies, I had to add
some restrictions to look for dependencies only in the same BB.

http://reviews.llvm.org/D12992

llvm-svn: 249196
2015-10-02 22:12:22 +00:00
Larisse Voufo 532bf7153c Clean up: Refactoring the hardcoded value of 6 for FindAvailableLoadedValue()'s parameter MaxInstsToScan. (Complete version of r247497. See D12886)
llvm-svn: 248022
2015-09-18 19:14:35 +00:00
Larisse Voufo 6b867c7254 Revert "Clean up: Refactoring the hardcoded value of 6 for FindAvailableLoadedValue()'s parameter MaxInstsToScan." for preliminary community discussion (See. D12886)
llvm-svn: 247716
2015-09-15 19:14:05 +00:00
Larisse Voufo f57162b6e7 Clean up: Refactoring the hardcoded value of 6 for FindAvailableLoadedValue()'s parameter MaxInstsToScan.
llvm-svn: 247497
2015-09-12 01:41:55 +00:00
Bruce Mitchener e9ffb45b60 Fix typos.
Summary: This fixes a variety of typos in docs, code and headers.

Subscribers: jholewinski, sanjoy, arsenm, llvm-commits

Differential Revision: http://reviews.llvm.org/D12626

llvm-svn: 247495
2015-09-12 01:17:08 +00:00
Adrian Prantl cbdfdb74d3 Rename Instruction::dropUnknownMetadata() to dropUnknownNonDebugMetadata()
and make it always preserve debug locations, since all callers wanted this
behavior anyway.

This is addressing a post-commit review feedback for r245589.

NFC (inside the LLVM tree).

llvm-svn: 245622
2015-08-20 22:00:30 +00:00
Adrian Prantl baf90fc265 Fix a bug that caused SimplifyCFG to drop DebugLocs.
Instruction::dropUnknownMetadata(KnownSet) is supposed to preserve all
metadata in KnownSet, but the condition for DebugLocs was inverted.

Most users of dropUnknownMetadata() actually worked around this by not
adding LLVMContext::MD_dbg to their list of KnowIDs.
This is now made explicit.

llvm-svn: 245589
2015-08-20 18:24:02 +00:00
Bjorn Steinbrink a6b929dfe2 [InstCombine] Actually combine AA metadata when replacing one load with another
Fixes PR24083

llvm-svn: 241955
2015-07-10 22:30:17 +00:00
Bjorn Steinbrink 8350534772 [InstCombine] Employ AliasAnalysis in FindAvailableLoadedValue
llvm-svn: 241887
2015-07-10 06:55:49 +00:00
Bjorn Steinbrink a91fd0998f [InstCombine] Properly combine metadata when replacing a load with another
Not doing this can lead to misoptimizations down the line, e.g. because
of range metadata on the replacing load excluding values that are valid
for the load that is being replaced.

llvm-svn: 241886
2015-07-10 06:55:44 +00:00
David Majnemer dd04352558 [InstCombine] Fold IntToPtr and PtrToInt into preceding loads.
Currently we only fold a BitCast into a Load when the BitCast is its
only user.

Do the same for any no-op cast.

Differential Revision: http://reviews.llvm.org/D9152

llvm-svn: 238452
2015-05-28 18:39:17 +00:00
Pete Cooper 833f34d837 Convert PHI getIncomingValue() to foreach over incoming_values(). NFC.
We already had a method to iterate over all the incoming values of a PHI.  This just changes all eligible code to use it.

Ineligible code included anything which cared about the index, or was also trying to get the i'th incoming BB.

llvm-svn: 237169
2015-05-12 20:05:31 +00:00
David Majnemer 7536460c0f [InstCombine] Canonicalize single element array store
Use the element type instead of the aggregate type.

Differential Revision: http://reviews.llvm.org/D9591

llvm-svn: 236969
2015-05-11 05:04:27 +00:00
David Majnemer 58fb038b1b [InstCombine] Canonicalize single element array load
Use the element type instead of the aggregate type.

Differential Revision: http://reviews.llvm.org/D9596

llvm-svn: 236968
2015-05-11 05:04:22 +00:00
Mehdi Amini 2668a487a7 Update InstCombine to transform aggregate loads into scalar loads.
Summary:
One step further getting aggregate loads and store being optimized
properly. This will only handle struct with one element at this point.

Test Plan: Added unit tests for the new supported cases.

Reviewers: chandlerc, joker-eph, joker.eph, majnemer

Reviewed By: majnemer

Subscribers: pete, llvm-commits

Differential Revision: http://reviews.llvm.org/D8339

Patch by Amaury Sechet.

From: Amaury Sechet <amaury@fb.com>
llvm-svn: 236695
2015-05-07 05:52:40 +00:00
Benjamin Kramer 3a09ef64ee [CallSite] Make construction from Value* (or Instruction*) explicit.
CallSite roughly behaves as a common base CallInst and InvokeInst. Bring
the behavior closer to that model by making upcasts explicit. Downcasts
remain implicit and work as before.

Following dyn_cast as a mental model checking whether a Value *V isa
CallSite now looks like this: 
  if (auto CS = CallSite(V)) // think dyn_cast
instead of:
  if (CallSite CS = V)

This is an extra token but I think it is slightly clearer. Making the
ctor explicit has the advantage of not accidentally creating nullptr
CallSites, e.g. when you pass a Value * to a function taking a CallSite
argument.

llvm-svn: 234601
2015-04-10 14:50:08 +00:00
David Blaikie d288fb8681 [opaque pointer type] Change GetElementPtrInst::getIndexedType to take the pointee type
This pushes the use of PointerType::getElementType up into several
callers - I'll essentially just have to keep pushing that up the stack
until I can eliminate every call to it...

llvm-svn: 233604
2015-03-30 21:41:43 +00:00
Mehdi Amini b344ac9afe Update InstCombine to transform aggregate stores into scalar stores.
Summary: This is a first step toward getting proper support for aggregate loads and stores.

Test Plan: Added unittests

Reviewers: reames, chandlerc

Reviewed By: chandlerc

Subscribers: majnemer, joker.eph, chandlerc, llvm-commits

Differential Revision: http://reviews.llvm.org/D7780

Patch by Amaury Sechet

From: Mehdi Amini <mehdi.amini@apple.com>
llvm-svn: 232284
2015-03-14 22:19:33 +00:00
Duncan P. N. Exon Smith be95b4afc6 instcombine: alloca: Canonicalize scalar allocation array size
As a follow-up to r232200, add an `-instcombine` to canonicalize scalar
allocations to `i32 1`.  Since r232200, `iX 1` (for X != 32) are only
created by RAUWs, so this shouldn't fire too often.  Nevertheless, it's
a cheap check and a nice cleanup.

llvm-svn: 232202
2015-03-13 19:42:09 +00:00
Duncan P. N. Exon Smith 07ff9b03f6 instcombine: alloca: Limit array size type promotion
Move type promotion of the size of the array allocation to the end of
`simplifyAllocaArraySize()`.  This avoids promoting the type of the
array size if it's a `ConstantInt`, since the next -instcombine
iteration will drop it to a scalar allocation anyway.  Similarly, this
avoids promoting the type if it's an `UndefValue`, in which case the
alloca gets RAUW'ed.

This is NFC when considered over the lifetime of -instcombine, since
it's just reducing the number of iterations needed to reach fixed point.

llvm-svn: 232201
2015-03-13 19:34:55 +00:00
Duncan P. N. Exon Smith 720762e2c0 AsmWriter: Write alloca array size explicitly (and -instcombine fixup)
Write the `alloca` array size explicitly when it's non-canonical.
Previously, if the array size was `iX 1` (where X is not 32), the type
would mutate to `i32` when round-tripping through assembly.

The testcase I added fails in `verify-uselistorder` (as well as
`FileCheck`), since the use-lists for `i32 1` and `i64 1` change.
(Manman Ren came across this when running `verify-uselistorder` on some
non-trivial, optimized code as part of PR5680.)

The type mutation started with r104911, which allowed array sizes to be
something other than an `i32`.  Starting with r204945, we
"canonicalized" to `i64` on 64-bit platforms -- and then on every
round-trip through assembly, mutated back to `i32`.

I bundled a fixup for `-instcombine` to avoid r204945 on scalar
allocations.  (There wasn't a clean way to sequence this into two
commits, since the assembly change on its own caused testcase churn, and
the `-instcombine` change can't be tested without the assembly changes.)

An obvious alternative fix -- change `AllocaInst::AllocaInst()`,
`AsmWriter` and `LLParser` to treat `intptr_t` as the canonical type for
scalar allocations -- was rejected out of hand, since this required
teaching them each about the data layout.

A follow-up commit will add an `-instcombine` to canonicalize the scalar
allocation array size to `i32 1` rather than leaving `iX 1` alone.

rdar://problem/20075773

llvm-svn: 232200
2015-03-13 19:30:44 +00:00
Duncan P. N. Exon Smith bb730135c9 instcombine: alloca: Remove nesting in simplifyAllocaArraySize(), NFC
llvm-svn: 232199
2015-03-13 19:26:33 +00:00
Duncan P. N. Exon Smith c6820ec1c2 instcombine: alloca: Split out simplifyAllocaArraySize(), NFC
Follow-up commits will change some of the logic here.  Splitting into a
separate function simplifies the logic by allowing early returns instead
of deeper nesting.

llvm-svn: 232197
2015-03-13 19:22:03 +00:00
Mehdi Amini a28d91d81b DataLayout is mandatory, update the API to reflect it with references.
Summary:
Now that the DataLayout is a mandatory part of the module, let's start
cleaning the codebase. This patch is a first attempt at doing that.

This patch is not exactly NFC as for instance some places were passing
a nullptr instead of the DataLayout, possibly just because there was a
default value on the DataLayout argument to many functions in the API.
Even though it is not purely NFC, there is no change in the
validation.

I turned as many pointer to DataLayout to references, this helped
figuring out all the places where a nullptr could come up.

I had initially a local version of this patch broken into over 30
independant, commits but some later commit were cleaning the API and
touching part of the code modified in the previous commits, so it
seemed cleaner without the intermediate state.

Test Plan:

Reviewers: echristo

Subscribers: llvm-commits

From: Mehdi Amini <mehdi.amini@apple.com>
llvm-svn: 231740
2015-03-10 02:37:25 +00:00
Charles Davis 33d1dc0008 [IC] Turn non-null MD on pointer loads to range MD on integer loads.
Summary:
This change fixes the FIXME that you recently added when you committed
(a modified version of) my patch.  When `InstCombine` combines a load and
store of an pointer to those of an equivalently-sized integer, it currently
drops any `!nonnull` metadata that might be present.  This change replaces
`!nonnull` metadata with `!range !{ 1, -1 }` metadata instead.

Reviewers: chandlerc

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D7621

llvm-svn: 230462
2015-02-25 05:10:25 +00:00
Hal Finkel 847e05f569 [InstCombine] Remove unnecessary variable indexing into single-element arrays
This change addresses a deficiency pointed out in PR22629. To copy from the bug
report:

[from the bug report]

Consider this code:

int f(int x) {
  int a[] = {12};
  return a[x];
}

GCC knows to optimize this to

movl     $12, %eax
ret

The code generated by recent Clang at -O3 is:

movslq   %edi, %rax
movl     .L_ZZ1fiE1a(,%rax,4), %eax
retq

.L_ZZ1fiE1a:
  .long    12                      # 0xc

[end from the bug report]

This definitely seems worth fixing. I've also seen this kind of code before (as
the base case of generic vector wrapper templates with one element).

The general idea is to look at the GEP feeding a load or a store, which has
some variable as its first non-zero index, and determine if that index must be
zero (or else an out-of-bounds access would occur). We can do this for allocas
and globals with constant initializers where we know the maximum size of the
underlying object. When we find such a GEP, we create a new one for the memory
access with that first variable index replaced with a constant zero.

Even if we can't eliminate the memory access (and sometimes we can't), it is
still useful because it removes unnecessary indexing calculations.

llvm-svn: 229959
2015-02-20 03:05:53 +00:00
Chandler Carruth 87fdafc7b2 [IC] Fix a bug with the instcombine canonicalizing of loads and
propagating of metadata.

We were propagating !nonnull metadata even when the newly formed load is
no longer of a pointer type. This is clearly broken and results in LLVM
failing the verifier and aborting. This patch just restricts the
propagation of !nonnull metadata to when we actually have a pointer
type.

This bug report and the initial version of this patch was provided by
Charles Davis! Many thanks for finding this!

We still need to add logic to round-trip the metadata correctly if we
combine from pointer types to integer types and then back by using range
metadata for the integer type loads. But this is the minimal and safe
version of the patch, which is important so we can backport it into 3.6.

llvm-svn: 229029
2015-02-13 02:30:01 +00:00
Chandler Carruth a917458203 [PM] Rename InstCombine.h to InstCombineInternal.h in preparation for
creating a non-internal header file for the InstCombine pass.

I thought about calling this InstCombiner.h or in some way more clearly
associating it with the InstCombiner clas that it is primarily defining,
but there are several other utility interfaces defined within this for
InstCombine. If, in the course of refactoring, those end up moving
elsewhere or going away, it might make more sense to make this the
combiner's header alone.

Naturally, this is a bikeshed to a certain degree, so feel free to lobby
for a different shade of paint if this name just doesn't suit you.

llvm-svn: 226783
2015-01-22 05:25:13 +00:00
Chandler Carruth cd8522ef44 [canonicalize] Teach InstCombine to canonicalize loads which are only
ever stored to always use a legal integer type if one is available.

Regardless of whether this particular type is good or bad, it ensures we
don't get weird differences in generated code (and resulting
performance) from "equivalent" patterns that happen to end up using
a slightly different type.

After some discussion on llvmdev it seems everyone generally likes this
canonicalization. However, there may be some parts of LLVM that handle
it poorly and need to be fixed. I have at least verified that this
doesn't impede GVN and instcombine's store-to-load forwarding powers in
any obvious cases. Subtle cases are exactly what we need te flush out if
they remain.

Also note that this IR pattern should already be hitting LLVM from Clang
at least because it is exactly the IR which would be produced if you
used memcpy to copy a pointer or floating point between memory instead
of a variable.

llvm-svn: 226781
2015-01-22 05:08:12 +00:00
Chandler Carruth fa11d837a0 [canonicalize] Move a helper function further up the file so it can be
used earlier. NFC.

llvm-svn: 226777
2015-01-22 03:34:54 +00:00
Chandler Carruth 2135b97d8f [canonicalization] Refactor how we create new stores into a helper
function. This is a bit tidier anyways and will make a subsquent patch
simpler as I want to add another case to this combine.

llvm-svn: 226746
2015-01-21 23:45:01 +00:00
Chandler Carruth 66b3130cda [PM] Split the AssumptionTracker immutable pass into two separate APIs:
a cache of assumptions for a single function, and an immutable pass that
manages those caches.

The motivation for this change is two fold. Immutable analyses are
really hacks around the current pass manager design and don't exist in
the new design. This is usually OK, but it requires that the core logic
of an immutable pass be reasonably partitioned off from the pass logic.
This change does precisely that. As a consequence it also paves the way
for the *many* utility functions that deal in the assumptions to live in
both pass manager worlds by creating an separate non-pass object with
its own independent API that they all rely on. Now, the only bits of the
system that deal with the actual pass mechanics are those that actually
need to deal with the pass mechanics.

Once this separation is made, several simplifications become pretty
obvious in the assumption cache itself. Rather than using a set and
callback value handles, it can just be a vector of weak value handles.
The callers can easily skip the handles that are null, and eventually we
can wrap all of this up behind a filter iterator.

For now, this adds boiler plate to the various passes, but this kind of
boiler plate will end up making it possible to port these passes to the
new pass manager, and so it will end up factored away pretty reasonably.

llvm-svn: 225131
2015-01-04 12:03:27 +00:00
Philip Reames 5ad26c353c Loading from null is valid outside of addrspace 0
This patches fixes a miscompile where we were assuming that loading from null is undefined and thus we could assume it doesn't happen.  This transform is perfectly legal in address space 0, but is not neccessarily legal in other address spaces.

We really should introduce a hook to control this property on a per target per address space basis.  We may be loosing valuable optimizations in some address spaces by being too conservative.

Original patch by Thomas P Raoux (submitted to llvm-commits), tests and formatting fixes by me.

llvm-svn: 224961
2014-12-29 22:46:21 +00:00
Chandler Carruth a7f247ea56 Revert r223764 which taught instcombine about integer-based elment extraction
patterns.

This is causing Clang to miscompile itself for 32-bit x86 somehow, and likely
also on ARM and PPC. I really don't know how, but reverting now that I've
confirmed this is actually the culprit. I have a reproduction as well and so
should be able to restore this shortly.

This reverts commit r223764.

Original commit log follows:
Teach instcombine to canonicalize "element extraction" from a load of an
integer and "element insertion" into a store of an integer into actual
element extraction, element insertion, and vector loads and stores.

Previously various parts of LLVM (including instcombine itself) would
introduce integer loads and stores into the code as a way of opaquely
loading and storing "bits". In some cases (such as a memcpy of
std::complex<float> object) we will eventually end up using those bits
in non-integer types. In order for SROA to effectively promote the
allocas involved, it splits these "store a bag of bits" integer loads
and stores up into the constituent parts. However, for non-alloca loads
and tsores which remain, it uses integer math to recombine the values
into a large integer to load or store.

All of this would be "fine", except that it forces LLVM to go through
integer math to combine and split up values. While this makes perfect
sense for integers (and in fact is critical for bitfields to end up
lowering efficiently) it is *terrible* for non-integer types, especially
floating point types. We have a much more canonical way of representing
the act of concatenating the bits of two SSA values in LLVM: a vector
and insertelement. This patch teaching InstCombine to use this
representation.

With this patch applied, LLVM will no longer introduce integer math into
the critical path of every loop over std::complex<float> operations such
as those that make up the hot path of ... oh, most HPC code, Eigen, and
any other heavy linear algebra library.

For the record, I looked *extensively* at fixing this in other parts of
the compiler, but it just doesn't work:
- We really do want to canonicalize memcpy and other bit-motion to
  integer loads and stores. SSA values are tremendously more powerful
  than "copy" intrinsics. Not doing this regresses massive amounts of
  LLVM's scalar optimizer.
- We really do need to split up integer loads and stores of this form in
  SROA or every memcpy of a trivially copyable struct will prevent SSA
  formation of the members of that struct. It essentially turns off
  SROA.
- The closest alternative is to actually split the loads and stores when
  partitioning with SROA, but this has all of the downsides historically
  discussed of splitting up loads and stores -- the wide-store
  information is fundamentally lost. We would also see performance
  regressions for bitfield-heavy code and other places where the
  integers aren't really intended to be split without seemingly
  arbitrary logic to treat integers totally differently.
- We *can* effectively fix this in instcombine, so it isn't that hard of
  a choice to make IMO.

llvm-svn: 223813
2014-12-09 19:21:16 +00:00
Chandler Carruth 7415205113 Teach instcombine to canonicalize "element extraction" from a load of an
integer and "element insertion" into a store of an integer into actual
element extraction, element insertion, and vector loads and stores.

Previously various parts of LLVM (including instcombine itself) would
introduce integer loads and stores into the code as a way of opaquely
loading and storing "bits". In some cases (such as a memcpy of
std::complex<float> object) we will eventually end up using those bits
in non-integer types. In order for SROA to effectively promote the
allocas involved, it splits these "store a bag of bits" integer loads
and stores up into the constituent parts. However, for non-alloca loads
and tsores which remain, it uses integer math to recombine the values
into a large integer to load or store.

All of this would be "fine", except that it forces LLVM to go through
integer math to combine and split up values. While this makes perfect
sense for integers (and in fact is critical for bitfields to end up
lowering efficiently) it is *terrible* for non-integer types, especially
floating point types. We have a much more canonical way of representing
the act of concatenating the bits of two SSA values in LLVM: a vector
and insertelement. This patch teaching InstCombine to use this
representation.

With this patch applied, LLVM will no longer introduce integer math into
the critical path of every loop over std::complex<float> operations such
as those that make up the hot path of ... oh, most HPC code, Eigen, and
any other heavy linear algebra library.

For the record, I looked *extensively* at fixing this in other parts of
the compiler, but it just doesn't work:
- We really do want to canonicalize memcpy and other bit-motion to
  integer loads and stores. SSA values are tremendously more powerful
  than "copy" intrinsics. Not doing this regresses massive amounts of
  LLVM's scalar optimizer.
- We really do need to split up integer loads and stores of this form in
  SROA or every memcpy of a trivially copyable struct will prevent SSA
  formation of the members of that struct. It essentially turns off
  SROA.
- The closest alternative is to actually split the loads and stores when
  partitioning with SROA, but this has all of the downsides historically
  discussed of splitting up loads and stores -- the wide-store
  information is fundamentally lost. We would also see performance
  regressions for bitfield-heavy code and other places where the
  integers aren't really intended to be split without seemingly
  arbitrary logic to treat integers totally differently.
- We *can* effectively fix this in instcombine, so it isn't that hard of
  a choice to make IMO.

Differential Revision: http://reviews.llvm.org/D6548

llvm-svn: 223764
2014-12-09 08:55:32 +00:00
Chandler Carruth 816d26fe5e [InstCombine] Change LLVM To canonicalize toward the value type being
stored rather than the pointer type.

This change is analogous to r220138 which changed the canonicalization
for loads. The rationale is the same: memory does not have a type,
operations (and thus the values they produce) have a type. We should
match that type as closely as possible rather than reading some form of
semantics into the pointer type.

With this change, loads and stores should no longer be made with
nonsensical types for the values that tehy load and store. This is
particularly important when trying to match specific loaded and stored
types in the process of doing other instcombines, which is what led me
down this twisty maze of miscanonicalization.

I've put quite some effort into looking through IR to find places where
LLVM's optimizer was being unreasonably conservative in the face of
mismatched load and store types, however it is possible (let's say,
likely!) I have missed some. If you see regressions here, or from
r220138, the likely cause is some part of LLVM failing to cope with load
and store types differing. Test cases appreciated, it is important that
we root all of these out of LLVM.

llvm-svn: 222748
2014-11-25 10:09:51 +00:00
Chandler Carruth 1a3c2c414c Revert r220349 to re-instate r220277 with a fix for PR21330 -- quite
clearly only exactly equal width ptrtoint and inttoptr casts are no-op
casts, it says so right there in the langref. Make the code agree.

Original log from r220277:
Teach the load analysis to allow finding available values which require
inttoptr or ptrtoint cast provided there is datalayout available.
Eventually, the datalayout can just be required but in practice it will
always be there today.

To go with the ability to expose available values requiring a ptrtoint
or inttoptr cast, helpers are added to perform one of these three casts.

These smarts are necessary to finish canonicalizing loads and stores to
the operational type requirements without regressing fundamental
combines.

I've added some test cases. These should actually improve as the load
combining and store combining improves, but they may fundamentally be
highlighting some missing combines for select in addition to exercising
the specific added logic to load analysis.

llvm-svn: 222739
2014-11-25 08:20:27 +00:00
Duncan P. N. Exon Smith de36e8040f Revert "IR: MDNode => Value"
Instead, we're going to separate metadata from the Value hierarchy.  See
PR21532.

This reverts commit r221375.
This reverts commit r221373.
This reverts commit r221359.
This reverts commit r221167.
This reverts commit r221027.
This reverts commit r221024.
This reverts commit r221023.
This reverts commit r220995.
This reverts commit r220994.

llvm-svn: 221711
2014-11-11 21:30:22 +00:00
Duncan P. N. Exon Smith 4abd1a0808 IR: MDNode => Value: Instruction::getAllMetadata()
Change `Instruction::getAllMetadata()` to modify a vector of `Value`
instead of `MDNode` and update call sites.  This is part of PR21433.

llvm-svn: 221027
2014-11-01 00:26:42 +00:00
Hans Wennborg 0b39fc0d16 Revert "Teach the load analysis to allow finding available values which require" (r220277)
This seems to have caused PR21330.

llvm-svn: 220349
2014-10-21 23:49:52 +00:00
Philip Reames b2d3f035e2 Preserve 'nonnull' when changing type of the load.
When changing the type of a load in Chandler's recent InstCombine changes, we can preserve the new 'nonnull' metadata.  

I considered adding an assert since 'nonnull' is only valid on pointer types, but casting a pointer to a non-pointer would involve more than a bitcast anyways.  If someone extends this transform to handle more than bitcasts, the verifier will report the malformed IR, so a separate assertion isn't needed.  Also, the fpmath flags would have the same problem.

llvm-svn: 220324
2014-10-21 21:00:03 +00:00
Chandler Carruth aa72a6dd3b Teach the load analysis to allow finding available values which require
inttoptr or ptrtoint cast provided there is datalayout available.
Eventually, the datalayout can just be required but in practice it will
always be there today.

To go with the ability to expose available values requiring a ptrtoint
or inttoptr cast, helpers are added to perform one of these three casts.

These smarts are necessary to finish canonicalizing loads and stores to
the operational type requirements without regressing fundamental
combines.

I've added some test cases. These should actually improve as the load
combining and store combining improves, but they may fundamentally be
highlighting some missing combines for select in addition to exercising
the specific added logic to load analysis.

llvm-svn: 220277
2014-10-21 09:00:40 +00:00
Philip Reames 5a3f5f751b Introduce enum values for previously defined metadata types. (NFC)
Our metadata scheme lazily assigns IDs to string metadata, but we have a mechanism to preassign them as well.  Using a preassigned ID is helpful since we get compile time type checking, and avoid some (minimal) string construction and comparison.  This change adds enum value for three existing metadata types:
+    MD_nontemporal = 9, // "nontemporal"
+    MD_mem_parallel_loop_access = 10, // "llvm.mem.parallel_loop_access"
+    MD_nonnull = 11 // "nonnull"

I went through an updated various uses as well.  I made no attempt to get all uses; I focused on the ones which were easily grepable and easily to translate.  For example, there were several items in LoopInfo.cpp I chose not to update.

llvm-svn: 220248
2014-10-21 00:13:20 +00:00
Chandler Carruth eeec35ae1c Teach the load analysis driving core instcombine logic and other bits of
logic to look through pointer casts, making them trivially stronger in
the face of loads and stores with intervening pointer casts.

I've included a few test cases that demonstrate the kind of folding
instcombine can do without pointer casts and then variations which
obfuscate the logic through bitcasts. Without this patch, the variations
all fail to optimize fully.

This is more important now than it has been in the past as I've started
moving the load canonicialization to more closely follow the value type
requirements rather than the pointer type requirements and thus this
needs to be prepared for more pointer casts. When I made the same change
to stores several test cases regressed without logic along these lines
so I wanted to systematically improve matters first.

llvm-svn: 220178
2014-10-20 00:24:14 +00:00
Chandler Carruth bc6378defb Do a better and more complete job of preserving metadata when combining
loads.

This handles many more cases than just the AA metadata, some of them
suggested by Hal in his review of the AA metadata handling patch. I've
tried to test this behavior where tractable to do so.

I'll point out that I have specifically *not* included a test for
debuginfo because it was going to require 2 or 3 times as much work to
craft some input which would survive the "helpful" stripping of debug
info metadata that doesn't match the desired schema. This is another
good example of why the current state of write-ability for our debug
info metadata is unacceptable. I spent over 30 minutes trying to conjure
some test case that would survive, even copying from other debug info
tests, but it always failed to survive with no explanation of why or how
I might fix it. =[

llvm-svn: 220165
2014-10-19 10:46:46 +00:00
Chandler Carruth be9dccd64d Preserve AA metadata when combining (cast (load (...))) -> (load (cast
(...))).

llvm-svn: 220141
2014-10-18 11:00:12 +00:00
Chandler Carruth 2f75fcfef3 [InstCombine] Do an about-face on how LLVM canonicalizes (cast (load
...)) and (load (cast ...)): canonicalize toward the former.

Historically, we've tried to load using the type of the *pointer*, and
tried to match that type as closely as possible removing as many pointer
casts as we could and trading them for bitcasts of the loaded value.
This is deeply and fundamentally wrong.

Repeat after me: memory does not have a type! This was a hard lesson for
me to learn working on SROA.

There is only one thing that should actually drive the type used for
a pointer, and that is the type which we need to use to load from that
pointer. Matching up pointer types to the loaded value types is very
useful because it minimizes the physical size of the IR required for
no-op casts. Similarly, the only thing that should drive the type used
for a loaded value is *how that value is used*! Again, this minimizes
casts. And in fact, the *only* thing motivating types in any part of
LLVM's IR are the types used by the operations in the IR. We should
match them as closely as possible.

I've ended up removing some tests here as they were testing bugs or
behavior that is no longer present. Mostly though, this is just cleanup
to let the tests continue to function as intended.

The only fallout I've found so far from this change was SROA and I have
fixed it to not be impeded by the different type of load. If you find
more places where this change causes optimizations not to fire, those
too are likely bugs where we are assuming that the type of pointers is
"significant" for optimization purposes.

llvm-svn: 220138
2014-10-18 06:36:22 +00:00
Hal Finkel 60db05896a Make use of @llvm.assume in ValueTracking (computeKnownBits, etc.)
This change, which allows @llvm.assume to be used from within computeKnownBits
(and other associated functions in ValueTracking), adds some (optional)
parameters to computeKnownBits and friends. These functions now (optionally)
take a "context" instruction pointer, an AssumptionTracker pointer, and also a
DomTree pointer, and most of the changes are just to pass this new information
when it is easily available from InstSimplify, InstCombine, etc.

As explained below, the significant conceptual change is that known properties
of a value might depend on the control-flow location of the use (because we
care that the @llvm.assume dominates the use because assumptions have
control-flow dependencies). This means that, when we ask if bits are known in a
value, we might get different answers for different uses.

The significant changes are all in ValueTracking. Two main changes: First, as
with the rest of the code, new parameters need to be passed around. To make
this easier, I grouped them into a structure, and I made internal static
versions of the relevant functions that take this structure as a parameter. The
new code does as you might expect, it looks for @llvm.assume calls that make
use of the value we're trying to learn something about (often indirectly),
attempts to pattern match that expression, and uses the result if successful.
By making use of the AssumptionTracker, the process of finding @llvm.assume
calls is not expensive.

Part of the structure being passed around inside ValueTracking is a set of
already-considered @llvm.assume calls. This is to prevent a query using, for
example, the assume(a == b), to recurse on itself. The context and DT params
are used to find applicable assumptions. An assumption needs to dominate the
context instruction, or come after it deterministically. In this latter case we
only handle the specific case where both the assumption and the context
instruction are in the same block, and we need to exclude assumptions from
being used to simplify their own ephemeral values (those which contribute only
to the assumption) because otherwise the assumption would prove its feeding
comparison trivial and would be removed.

This commit adds the plumbing and the logic for a simple masked-bit propagation
(just enough to write a regression test). Future commits add more patterns
(and, correspondingly, more regression tests).

llvm-svn: 217342
2014-09-07 18:57:58 +00:00
Hal Finkel cc39b67530 AA metadata refactoring (introduce AAMDNodes)
In order to enable the preservation of noalias function parameter information
after inlining, and the representation of block-level __restrict__ pointer
information (etc.), additional kinds of aliasing metadata will be introduced.
This metadata needs to be carried around in AliasAnalysis::Location objects
(and MMOs at the SDAG level), and so we need to generalize the current scheme
(which is hard-coded to just one TBAA MDNode*).

This commit introduces only the necessary refactoring to allow for the
introduction of other aliasing metadata types, but does not actually introduce
any (that will come in a follow-up commit). What it does introduce is a new
AAMDNodes structure to hold all of the aliasing metadata nodes associated with
a particular memory-accessing instruction, and uses that structure instead of
the raw MDNode* in AliasAnalysis::Location, etc.

No functionality change intended.

llvm-svn: 213859
2014-07-24 12:16:19 +00:00
Matt Arsenault d0d6c0b4c9 Use pointer type cast helpers.
llvm-svn: 212963
2014-07-14 17:24:38 +00:00
Reid Kleckner 813dab2fc6 Optimize InstCombine stack memory consumption
This patch reduces the stack memory consumption of the InstCombine
function "isOnlyCopiedFromConstantGlobal() ", that in certain conditions
could overflow the stack because of excessive recursiveness.

For example, in a case like this:

%0 = alloca [50025 x i32], align 4
%1 = getelementptr inbounds [50025 x i32]* %0, i64 0, i64 0
store i32 0,                         i32* %1
%2 = getelementptr inbounds          i32* %1, i64 1
store i32 1,                         i32* %2
%3 = getelementptr inbounds          i32* %2, i64 1
store i32 2,                         i32* %3
%4 = getelementptr inbounds          i32* %3, i64 1
store i32 3,                         i32* %4
%5 = getelementptr inbounds          i32* %4, i64 1
store i32 4,                         i32* %5
%6 = getelementptr inbounds          i32* %5, i64 1
store i32 5,                         i32* %6
...

This piece of code crashes llvm when trying to apply instcombine on
desktop. On embedded devices this could happen with a much lower limit
of recursiveness.  Some instructions (getelementptr and bitcasts) make
the function recursively call itself on their uses, which is what makes
the example above consume so much stack (it becomes a recursive
depth-first tree visit with a very big depth).

The patch changes the algorithm to be semantically equivalent, but
iterative instead of recursive and the visiting order to be from a
depth-first visit to a breadth-first visit (visit all the instructions
of the current level before the ones of the next one).

Now if a lot of memory is required a heap allocation is done instead of
the the stack allocation, avoiding the possible crash.

Reviewed By: rnk

Differential Revision: http://reviews.llvm.org/D4355

Patch by Marcello Maggioni!  We don't generally commit large stress test
that look for out of memory conditions, so I didn't request that one be
added to the patch.

llvm-svn: 212133
2014-07-01 21:36:20 +00:00