1
0
mirror of https://github.com/RPCS3/llvm-mirror.git synced 2024-10-21 20:12:56 +02:00
Commit Graph

5697 Commits

Author SHA1 Message Date
Philip Reames
a407871a49 Fix for pr24866
Turns out that not every basic block is guaranteed to have a node within the DominatorTree.  This is really hard to trigger, but the test case from the PR managed to do so.  There's active discussion continuing about what documentation and/or invariants needed cleaned up.

llvm-svn: 248216
2015-09-21 22:04:10 +00:00
Marcello Maggioni
d849f468b0 [DivergenceAnalysis] Separated definition of class into header.
The definition of the DivergenceAnalysis pass was in a CPP
file and wasn't accessible to users of the analysis to get it
through "getAnalysis<>()".
This patch extracts the definition into a separate header that
can be used by users of the analysis to fetch the results.

Patch by Volkan Keles (vkeles@apple.com)

llvm-svn: 248186
2015-09-21 17:58:14 +00:00
Larisse Voufo
d25582bd2b 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
Igor Laevsky
569f8cfea2 [LazyValueInfo] Report nonnull range for nonnull pointers
Currently LazyValueInfo will report only alloca's as having nonnull range. 
For loads with !nonnull metadata it will bailout with no additional information. 
Same is true for calls returning nonnull pointers.

This change extends LazyValueInfo to handle additional nonnull instructions.

Differential Revision: http://reviews.llvm.org/D12932

llvm-svn: 247985
2015-09-18 13:01:48 +00:00
Artur Pilipenko
a27007918a Support align attribute for return values
Reviewed By: reames

Differential Revision: http://reviews.llvm.org/D12844

llvm-svn: 247984
2015-09-18 12:33:31 +00:00
Sanjay Patel
198af4d259 fix typo; NFC
llvm-svn: 247938
2015-09-17 20:51:50 +00:00
Sanjoy Das
eb4f77b603 [SCEV] Use auto instead of full iterator type; NFCI.
llvm-svn: 247919
2015-09-17 19:04:09 +00:00
Naomi Musgrave
67180408a5 ScalarEvolution: added tmp to avoid use-after-dtor in for loop.
Summary:
For loop destroyed current instance before invoking next.
Temporary variable added to prevent use-after-dtor when invoke
destructor on current instance.

Reviewers: eugenis

Subscribers: llvm-commits, sanjoy

Differential Revision: http://reviews.llvm.org/D12912

Rename temp var.

llvm-svn: 247867
2015-09-16 23:46:40 +00:00
Eric Christopher
a096f8ec12 constify the Function parameter to the TTI creation callback and
propagate to all callers/users/etc.

llvm-svn: 247864
2015-09-16 23:38:13 +00:00
Larisse Voufo
33950c83d4 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
Sanjay Patel
25af721ffe 80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC80-cols; NFC
llvm-svn: 247700
2015-09-15 15:26:25 +00:00
Chen Li
7a880213bc [InstCombineCalls] Use isKnownNonNullAt() to check nullness of passing arguments at callsite
Summary: This patch replaces isKnownNonNull() with isKnownNonNullAt() when checking nullness of passing arguments at callsite. In this way it can handle cases where the argument does not have nonnull attribute but has a dominating null check from the CFG. It also adds assertions in isKnownNonNull() and isKnownNonNullFromDominatingCondition() to make sure the value checked is pointer type (as defined in LLVM document). These assertions might trip failures in things which are not  covered under llvm/test, but fixes should be pretty obvious. 

Reviewers: reames

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D12779

llvm-svn: 247587
2015-09-14 18:10:43 +00:00
NAKAMURA Takumi
3164656806 GlobalsAAResult: Try to fix crash.
DeletionCallbackHandle holds GAR in its creation. It assumes;

  - It is registered as CallbackVH. It should not be moved in its life.
  - Its parent, GAR, may be moved.

To move list<DeletionCallbackHandle> GlobalsAAResult::Handles,
GAR must be updated with the destination in GlobalsAAResult(&&).

llvm-svn: 247534
2015-09-14 06:16:44 +00:00
Larisse Voufo
758e77398a Clean up: Refactoring the hardcoded value of 6 for FindAvailableLoadedValue()'s parameter MaxInstsToScan.
llvm-svn: 247497
2015-09-12 01:41:55 +00:00
Matthew Simpson
20d778fe99 [SCEV] Consistently Handle Expressions That Cannot Be Divided
This patch addresses the issue of SCEV division asserting on some
input expressions (e.g., non-affine expressions) and quietly giving
up on others.  When giving up, we set the quotient to be equal to
zero and the remainder to be equal to the numerator. With this
patch, we always quietly give up when we cannot perform the
division.

This patch also adds a test case for DependenceAnalysis that
previously caused an assertion.

Differential Revision: http://reviews.llvm.org/D11725

llvm-svn: 247314
2015-09-10 18:12:47 +00:00
NAKAMURA Takumi
c05f204b7a GlobalsAAResult(&&): Move every members.
Or, one of MSVC builders failed with unexpected behavior.

llvm-svn: 247247
2015-09-10 07:16:42 +00:00
Sanjoy Das
33ef65354e [ScalarEvolution] Fix PR24757.
Summary:
PR24757 was caused by some incorect math in
`ScalarEvolution::HowFarToZero` -- the smallest unsigned solution for X
in

  2^N * A = 2^N * X

is not necessarily A.

Reviewers: atrick, majnemer, meheff

Subscribers: llvm-commits, sanjoy

Differential Revision: http://reviews.llvm.org/D12721

llvm-svn: 247242
2015-09-10 05:27:38 +00:00
Piotr Padlewski
56f48d9943 ScalarEvolution assume hanging bugfix
http://reviews.llvm.org/D12719

llvm-svn: 247184
2015-09-09 20:47:30 +00:00
Chandler Carruth
d7003090ac [PM/AA] Rebuild LLVM's alias analysis infrastructure in a way compatible
with the new pass manager, and no longer relying on analysis groups.

This builds essentially a ground-up new AA infrastructure stack for
LLVM. The core ideas are the same that are used throughout the new pass
manager: type erased polymorphism and direct composition. The design is
as follows:

- FunctionAAResults is a type-erasing alias analysis results aggregation
  interface to walk a single query across a range of results from
  different alias analyses. Currently this is function-specific as we
  always assume that aliasing queries are *within* a function.

- AAResultBase is a CRTP utility providing stub implementations of
  various parts of the alias analysis result concept, notably in several
  cases in terms of other more general parts of the interface. This can
  be used to implement only a narrow part of the interface rather than
  the entire interface. This isn't really ideal, this logic should be
  hoisted into FunctionAAResults as currently it will cause
  a significant amount of redundant work, but it faithfully models the
  behavior of the prior infrastructure.

- All the alias analysis passes are ported to be wrapper passes for the
  legacy PM and new-style analysis passes for the new PM with a shared
  result object. In some cases (most notably CFL), this is an extremely
  naive approach that we should revisit when we can specialize for the
  new pass manager.

- BasicAA has been restructured to reflect that it is much more
  fundamentally a function analysis because it uses dominator trees and
  loop info that need to be constructed for each function.

All of the references to getting alias analysis results have been
updated to use the new aggregation interface. All the preservation and
other pass management code has been updated accordingly.

The way the FunctionAAResultsWrapperPass works is to detect the
available alias analyses when run, and add them to the results object.
This means that we should be able to continue to respect when various
passes are added to the pipeline, for example adding CFL or adding TBAA
passes should just cause their results to be available and to get folded
into this. The exception to this rule is BasicAA which really needs to
be a function pass due to using dominator trees and loop info. As
a consequence, the FunctionAAResultsWrapperPass directly depends on
BasicAA and always includes it in the aggregation.

This has significant implications for preserving analyses. Generally,
most passes shouldn't bother preserving FunctionAAResultsWrapperPass
because rebuilding the results just updates the set of known AA passes.
The exception to this rule are LoopPass instances which need to preserve
all the function analyses that the loop pass manager will end up
needing. This means preserving both BasicAAWrapperPass and the
aggregating FunctionAAResultsWrapperPass.

Now, when preserving an alias analysis, you do so by directly preserving
that analysis. This is only necessary for non-immutable-pass-provided
alias analyses though, and there are only three of interest: BasicAA,
GlobalsAA (formerly GlobalsModRef), and SCEVAA. Usually BasicAA is
preserved when needed because it (like DominatorTree and LoopInfo) is
marked as a CFG-only pass. I've expanded GlobalsAA into the preserved
set everywhere we previously were preserving all of AliasAnalysis, and
I've added SCEVAA in the intersection of that with where we preserve
SCEV itself.

One significant challenge to all of this is that the CGSCC passes were
actually using the alias analysis implementations by taking advantage of
a pretty amazing set of loop holes in the old pass manager's analysis
management code which allowed analysis groups to slide through in many
cases. Moving away from analysis groups makes this problem much more
obvious. To fix it, I've leveraged the flexibility the design of the new
PM components provides to just directly construct the relevant alias
analyses for the relevant functions in the IPO passes that need them.
This is a bit hacky, but should go away with the new pass manager, and
is already in many ways cleaner than the prior state.

Another significant challenge is that various facilities of the old
alias analysis infrastructure just don't fit any more. The most
significant of these is the alias analysis 'counter' pass. That pass
relied on the ability to snoop on AA queries at different points in the
analysis group chain. Instead, I'm planning to build printing
functionality directly into the aggregation layer. I've not included
that in this patch merely to keep it smaller.

Note that all of this needs a nearly complete rewrite of the AA
documentation. I'm planning to do that, but I'd like to make sure the
new design settles, and to flesh out a bit more of what it looks like in
the new pass manager first.

Differential Revision: http://reviews.llvm.org/D12080

llvm-svn: 247167
2015-09-09 17:55:00 +00:00
Diego Novillo
01bf73c130 Fix PR 24723 - Handle 0-mass backedges in irreducible loops
This corner case happens when we have an irreducible SCC that is
deeply nested.  As we work down the tree, the backedge masses start
getting smaller and smaller until we reach one that is down to 0.

Since we distribute the incoming mass using the backedge masses as
weight, the distributor does not allow zero weights.  So, we simply
ignore them (which will just use the weights of the non-zero nodes).

llvm-svn: 247050
2015-09-08 19:22:17 +00:00
Joseph Tremoulet
bce9d857cc [WinEH] Add cleanupendpad instruction
Summary:
Add a `cleanupendpad` instruction, used to mark exceptional exits out of
cleanups (for languages/targets that can abort a cleanup with another
exception).  The `cleanupendpad` instruction is similar to the `catchendpad`
instruction in that it is an EH pad which is the target of unwind edges in
the handler and which itself has an unwind edge to the next EH action.
The `cleanupendpad` instruction, similar to `cleanupret` has a `cleanuppad`
argument indicating which cleanup it exits.  The unwind successors of a
`cleanuppad`'s `cleanupendpad`s must agree with each other and with its
`cleanupret`s.

Update WinEHPrepare (and docs/tests) to accomodate `cleanupendpad`.

Reviewers: rnk, andrew.w.kaylor, majnemer

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D12433

llvm-svn: 246751
2015-09-03 09:09:43 +00:00
James Molloy
eacb992ece [ValueTracking] Look through casts when both operands are casts.
We only looked through casts when one operand was a constant. We can also look through casts when both operands are non-constant, but both are in fact the same cast type. For example:

%1 = icmp ult i8 %a, %b
%2 = zext i8 %a to i32
%3 = zext i8 %b to i32
%4 = select i1 %1, i32 %2, i32 %3

llvm-svn: 246678
2015-09-02 17:25:25 +00:00
Quentin Colombet
8d32327e14 [BasicAA] Fix the handling of sext and zext in the analysis of GEPs.
Hopefully this will end the GEPs saga!

This commit reverts r245394, i.e., it reapplies r221876 while incorporating the
fixes from D11847.
r221876 was not reapplied alone because it was not safe and D11847 was not
applied alone because it needs r221876 to produce correct results.

This should fix PR24596.

Original commit message for r221876:
Let's try this again...

This reverts r219432, plus a bug fix.

Description of the bug in r219432 (by Nick):

The bug was using AllPositive to break out of the loop; if the loop break
condition i != e is changed to i != e && AllPositive then the
test_modulo_analysis_with_global test I've added will fail as the Modulo will
be calculated incorrectly (as the last loop iteration is skipped, so Modulo
isn't updated with its Scale).

Nick also adds this comment:

ComputeSignBit is safe to use in loops as it takes into account phi nodes, and
the  == EK_ZeroEx check is safe in loops as, no matter how the variable changes
between iterations, zero-extensions will always guarantee a zero sign bit. The
isValueEqualInPotentialCycles check is therefore definitely not needed as all
the variable analysis holds no matter how the variables change between loop
iterations.

And this patch also adds another enhancement to GetLinearExpression - basically
to convert ConstantInts to Offsets (see test_const_eval and
test_const_eval_scaled for the situations this improves).

Original commit message:

This reverts r218944, which reverted r218714, plus a bug fix.

Description of the bug in r218714 (by Nick):

The original patch forgot to check if the Scale in VariableGEPIndex flipped the
sign of the variable. The BasicAA pass iterates over the instructions in the
order they appear in the function, and so BasicAliasAnalysis::aliasGEP is
called with the variable it first comes across as parameter GEP1. Adding a
%reorder label puts the definition of %a after %b so aliasGEP is called with %b
as the first parameter and %a as the second. aliasGEP later calculates that %a
== %b + 1 - %idxprom where %idxprom >= 0 (if %a was passed as the first
parameter it would calculate %b == %a - 1 + %idxprom where %idxprom >= 0) -
ignoring that %idxprom is scaled by -1 here lead the patch to incorrectly
conclude that %a > %b.

Revised patch by Nick White, thanks! Thanks to Lang to isolating the bug.
Slightly modified by me to add an early exit from the loop and avoid
unnecessary, but expensive, function calls.

Original commit message:

Two related things:

1. Fixes a bug when calculating the offset in GetLinearExpression. The code
   previously used zext to extend the offset, so negative offsets were converted
   to large positive ones.

2. Enhance aliasGEP to deduce that, if the difference between two GEP
   allocations is positive and all the variables that govern the offset are also
   positive (i.e. the offset is strictly after the higher base pointer), then
   locations that fit in the gap between the two base pointers are NoAlias.

Patch by Nick White!

Message from D11847:
Un-revert of r241981 and fix for PR23626. The 'Or' case of GetLinearExpression
delegates to 'Add' if possible, and if not it returns an Opaque value.
Unfortunately the Scale and Offsets weren't being set (and so defaulted to 0) -
and a scale of zero effectively removes the variable from the GEP instruction.
This meant that BasicAA would return MustAliases when it should have been
returning PartialAliases (and PR23626 was an example of the GVN pass using an
incorrect MustAlias to merge loads from what should have been different
pointers).

Differential Revision: http://reviews.llvm.org/D11847
Patch by Nick White <n.j.white@gmail.com>!

llvm-svn: 246502
2015-08-31 22:32:47 +00:00
Reid Kleckner
0edf7445db [EH] Handle non-Function personalities like unknown personalities
Also delete and simplify a lot of MachineModuleInfo code that used to be
needed to handle personalities on landingpads.  Now that the personality
is on the LLVM Function, we no longer need to track it this way on MMI.
Certainly it should not live on LandingPadInfo.

llvm-svn: 246478
2015-08-31 20:02:16 +00:00
Philip Reames
8c47d7364a [LazyValueInfo] Look through Phi nodes when trying to prove a predicate
If asked to prove a predicate about a value produced by a PHI node, LazyValueInfo was unable to do so even if the predicate was known to be true for each input to the PHI. This prevented JumpThreading from eliminating a provably redundant branch.

The problematic test case looks something like this:
ListNode *p = ...;
while (p != null) {
  if (!p) return;
  x = g->x; // unrelated
  p = p->next
}

The null check at the top of the loop is redundant since the value of 'p' is null checked on entry to the loop and before executing the backedge. This resulted in us a) executing an extra null check per iteration and b) not being able to LICM unrelated loads after the check since we couldn't prove they would execute or that their dereferenceability wasn't effected by the null check on the first iteration.

Differential Revision: http://reviews.llvm.org/D12383

llvm-svn: 246465
2015-08-31 18:31:48 +00:00
Elena Demikhovsky
f65854f91d NFC: Code style in VectorUtils.cpp
Differential Revision:	http://reviews.llvm.org/D12478

llvm-svn: 246381
2015-08-30 13:48:02 +00:00
Renato Golin
7c5a462030 Revert "Revert "New interface function is added to VectorUtils Value *getSplatValue(Value *Val);""
This reverts commit r246379. It seems that the commit was not the culprit,
and the bot will be investigated for instability.

llvm-svn: 246380
2015-08-30 10:49:04 +00:00
Renato Golin
7feeb21049 Revert "New interface function is added to VectorUtils Value *getSplatValue(Value *Val);"
This reverts commit r246371, as it cause a rather obscure bug in AArch64
test-suite paq8p (time outs, seg-faults). I'll investigate it before
reapplying.

llvm-svn: 246379
2015-08-30 10:05:30 +00:00
Elena Demikhovsky
4f3c01d272 New interface function is added to VectorUtils
Value *getSplatValue(Value *Val);

It complements the CreateVectorSplat(), which creates 2 instructions - insertelement and shuffle with all-zero mask.

The new function recognizes the pattern - insertelement+shuffle and returns the splat value (or nullptr).
It also returns a splat value form ConstantDataVector, for completeness.

Differential Revision:	http://reviews.llvm.org/D11124

llvm-svn: 246371
2015-08-30 07:28:18 +00:00
David Majnemer
6fb7d57097 Revert r246232 and r246304.
This reverts isSafeToSpeculativelyExecute's use of ReadNone until we
split ReadNone into two pieces: one attribute which reasons about how
the function reasons about memory and another attribute which determines
how it may be speculated, CSE'd, trap, etc.

llvm-svn: 246331
2015-08-28 21:13:39 +00:00
David Majnemer
46c3738c62 [CodeGen] isInTailCallPosition didn't consider readnone tailcalls
A readnone tailcall may still have a chain of computation which follows
it that would invalidate a tailcall lowering.  Don't skip the analysis
in such cases.

This fixes PR24613.

llvm-svn: 246304
2015-08-28 16:44:09 +00:00
George Burgess IV
41641d85f8 Fix: CFLAA -- Mark no-args returns as unknown
Prior to this patch, we hadn't been marking StratifiedSets with the
appropriate StratifiedAttrs when handling the result of no-args call
instructions. This caused us to report NoAlias when handed, for
example, an escaped alloca and a result from an opaque function. Now we
properly mark the return value of said functions.

Thanks again to Chandler, Richard, and Nick for pinging me about this.

Differential review: http://reviews.llvm.org/D12408

llvm-svn: 246240
2015-08-28 00:16:18 +00:00
David Majnemer
d9149d4cf3 [ValueTracking] readnone CallInsts are fair game for speculation
Any call which is side effect free is trivially OK to speculate.  We
already had similar logic in EarlyCSE and GVN but we were missing it
from isSafeToSpeculativelyExecute.

This fixes PR24601.

llvm-svn: 246232
2015-08-27 23:03:01 +00:00
Erik Schnetter
a3e8c48df2 Enable constant propagation for more math functions
Constant propagation for single precision math functions (such as
tanf) is already working, but was not enabled. This patch enables
these for many single-precision functions, and adds respective test
cases.

Newly handled functions: acosf asinf atanf atan2f ceilf coshf expf
exp2f fabsf floorf fmodf logf log10f powf sinhf tanf tanhf

llvm-svn: 246194
2015-08-27 19:56:57 +00:00
Erik Schnetter
3def1ebc0a Revert 246186; still breaks on some systems
llvm-svn: 246191
2015-08-27 19:34:14 +00:00
Erik Schnetter
4fbf515263 Enable constant propagation for more math functions
Constant propagation for single precision math functions (such as
tanf) is already working, but was not enabled. This patch enables
these for many single-precision functions, and adds respective test
cases.

Newly handled functions: acosf asinf atanf atan2f ceilf coshf expf
exp2f fabsf floorf fmodf logf log10f powf sinhf tanf tanhf

llvm-svn: 246186
2015-08-27 18:56:23 +00:00
Erik Schnetter
d46c97a451 Revert r246158 since it breaks LLVM.Transforms/ConstProp.calls.ll
llvm-svn: 246166
2015-08-27 17:24:01 +00:00
Erik Schnetter
01b21a7411 Enable constant propagation for more math functions
Constant propagation for single precision math functions (such as
tanf) is already working, but was not enabled. This patch enables
these for many single-precision functions, and adds respective test
cases.

Newly handled functions: acosf asinf atanf atan2f ceilf coshf expf
exp2f fabsf floorf fmodf logf log10f powf sinhf tanf tanhf

llvm-svn: 246158
2015-08-27 16:36:37 +00:00
Pete Cooper
7ecbe8117c isKnownNonNull needs to consider globals in non-zero address spaces.
Globals in address spaces other than one may have 0 as a valid address,
so we should not assume that they can be null.

Reviewed by Philip Reames.

llvm-svn: 246137
2015-08-27 03:16:29 +00:00
Joseph Tremoulet
56089ea65e [WinEH] Require token linkage in EH pad/ret signatures
Summary:
WinEHPrepare is going to require that cleanuppad and catchpad produce values
of token type which are consumed by any cleanupret or catchret exiting the
pad.  This change updates the signatures of those operators to require/enforce
that the type produced by the pads is token type and that the rets have an
appropriate argument.

The catchpad argument of a `CatchReturnInst` must be a `CatchPadInst` (and
similarly for `CleanupReturnInst`/`CleanupPadInst`).  To accommodate that
restriction, this change adds a notion of an operator constraint to both
LLParser and BitcodeReader, allowing appropriate sentinels to be constructed
for forward references and appropriate error messages to be emitted for
illegal inputs.

Also add a verifier rule (noted in LangRef) that a catchpad with a catchpad
predecessor must have no other predecessors; this ensures that WinEHPrepare
will see the expected linear relationship between sibling catches on the
same try.

Lastly, remove some superfluous/vestigial casts from instruction operand
setters operating on BasicBlocks.

Reviewers: rnk, majnemer

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D12108

llvm-svn: 245797
2015-08-23 00:26:33 +00:00
Adam Nemet
40fc6ceb9d [LAA] Hold bounds via ValueHandles during SCEV expansion
SCEV expansion can invalidate previously expanded values.  For example
in SCEVExpander::ReuseOrCreateCast, if we already have the requested
cast value but it's not at the desired location, a new cast is inserted
and the old cast will be invalidated.

Therefore, when expanding the bounds for the pointers, a later entry can
invalidate the IR value for an earlier one.  The fix is to store a value
handle rather than the value itself.

The newly added test has a more detailed description of how the bug
triggers.

This bug can have a negative but potentially highly variable performance
impact in Loop Distribution.  Because one of the bound values was
invalidated and is an undef expression now, InstCombine is free to
transform the array overlap check:

   Start0 <= End1 && Start1 <= End0

into:

   Start0 <= End1

So depending on the runtime location of the arrays, we would detect a
conflict and fall back on the original loop of the versioned loop.

Also tested compile time with SPEC2006 LTO bc files.

llvm-svn: 245760
2015-08-21 23:19:57 +00:00
Bruno Cardoso Lopes
0dc7d0fbc7 [LVI] Use a SmallVector instead of SmallPtrSet. NFC
llvm-svn: 245739
2015-08-21 21:18:26 +00:00
David Majnemer
ba4c400b9e [InstSimplify] add nuw %x, C2 must be at least C2
Use the fact that add nuw always creates a larger bit pattern when
trying to simplify comparisons.

llvm-svn: 245638
2015-08-20 23:01:41 +00:00
Jingyue Wu
2a45313ac4 [ValueTracking] computeOverflowForSignedAdd and isKnownNonNegative
Summary:
Refactor, NFC

Extracts computeOverflowForSignedAdd and isKnownNonNegative from NaryReassociate to ValueTracking in case
others need it.

Reviewers: reames

Subscribers: majnemer, llvm-commits

Differential Revision: http://reviews.llvm.org/D11313

llvm-svn: 245591
2015-08-20 18:27:04 +00:00
Bruno Cardoso Lopes
95c0750732 [LVI] Avoid iterator invalidation in LazyValueInfoCache::threadEdge
Do that by copying out the elements to another SmallPtrSet.
Follow up from r245309.

llvm-svn: 245590
2015-08-20 18:24:54 +00:00
Chandler Carruth
e93d4cc138 [ARC] Pull the ObjC ARC components that really serve the role of
analyses into LLVM's Analysis library rather than having them in
a Transforms library.

This is motivated by the need to have the core AliasAnalysis
infrastructure be aware of the ObjCARCAliasAnalysis. However, it also
seems like a nice and clean separation. Everything was very easy to move
and this doesn't create much clutter in the analysis library IMO.

Differential Revision: http://reviews.llvm.org/D12133

llvm-svn: 245541
2015-08-20 08:06:03 +00:00
Hal Finkel
ef68c3a696 [SCEV] Fix GCC 4.8.0 ICE in lambda function
Rewrite some code to not use a lambda function. The non-lambda code is just
about as clean as the original, and not any longer. The lambda function causes
an internal compiler error in GCC 4.8.0, and it is not worth breaking support
for that compiler over this. NFC.

llvm-svn: 245466
2015-08-19 17:26:07 +00:00
Adam Nemet
2568349cb6 [LAA] Comment how memchecks are codegened
llvm-svn: 245465
2015-08-19 17:24:36 +00:00
Hal Finkel
64a72d9c3f Fix how DependenceAnalysis calls delinearization
Fix how DependenceAnalysis calls delinearization, mirroring what is done in
Delinearization.cpp (mostly by making sure to call getSCEVAtScope before
delinearizing, and by removing the unnecessary 'Pairs == 1' check).

Patch by Vaivaswatha Nagaraj!

llvm-svn: 245408
2015-08-19 02:56:36 +00:00
Hal Finkel
13c6dece14 Make ScalarEvolution::isKnownPredicate a little smarter
Here we make ScalarEvolution::isKnownPredicate, indirectly, a little smarter.
Given some relational comparison operator OP, and two AddRec SCEVs, {I,+,S} OP
{J,+,T}, we can reduce this to the comparison I OP J when S == T, both AddRecs
are for the same loop, and both are known not to wrap.

As it turns out, because of the way that backedge-guard expressions can be
leveraged when computing known predicates, this allows indvars to simplify the
if-statement comparison in this loop:

  void foo (int *a, int *b, int n) {
    for (int i = 0; i < n; ++i) {
      if (i > n)
        a[i] = b[i] + 1;
    }
  }

which, somewhat surprisingly, we were not previously optimizing away.

llvm-svn: 245400
2015-08-19 01:51:51 +00:00