Commit Graph

1913 Commits

Author SHA1 Message Date
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 103ab7d571 [InstCombine] simplify masked scatter/gather intrinsics with zero masks
A masked scatter with a zero mask means there's no store.
A masked gather with a zero mask means the passthru arg is returned.

This is a continuation of:
http://reviews.llvm.org/rL259369
http://reviews.llvm.org/rL259392

llvm-svn: 259421
2016-02-01 22:10:26 +00:00
Sanjay Patel 04f792bdc9 [InstCombine] simplify masked store intrinsics with all ones or zeros masks
A masked store with a zero mask means there's no store.
A masked store with an allOnes mask means it's a normal vector store.

This is a continuation of:
http://reviews.llvm.org/rL259369

llvm-svn: 259392
2016-02-01 19:39:52 +00:00
Sanjay Patel cf57c5a4ee fix broken check lines
Without the colon, it doesn't mean anything!

llvm-svn: 259377
2016-02-01 17:46:18 +00:00
David Majnemer f8853ae7b3 [InstCombine] Don't transform (X+INT_MAX)>=(Y+INT_MAX) -> (X<=Y)
This miscompile came about because we tried to use a transform which was
only appropriate for xor operators when addition was present.

This fixes PR26407.

llvm-svn: 259375
2016-02-01 17:37:56 +00:00
Jun Bum Lim ca832660ae [ValueTracking] Improve isKnownNonZero for PHI of non-zero constants
It is clear that a PHI is a non-zero if all incoming values are non-zero constants.

llvm-svn: 259370
2016-02-01 17:03:07 +00:00
Sanjay Patel b695c5557c [InstCombine] simplify masked load intrinsics with all ones or zeros masks
A masked load with a zero mask means there's no load.
A masked load with an allOnes mask means it's a normal vector load.

Differential Revision: http://reviews.llvm.org/D16691

llvm-svn: 259369
2016-02-01 17:00:10 +00:00
Matt Arsenault 56c079f393 InstCombine: fabs(x) * fabs(x) -> x * x
llvm-svn: 259295
2016-01-30 05:02:00 +00:00
Sanjay Patel 66fff73c76 [InstCombine] avoid an insertelement transformation that induces the opposite extractelement fold (PR26354)
We would infinite loop because we created a shufflevector that was wider than
needed and then failed to combine that with the insertelement. When subsequently
visiting the extractelement from that shuffle, we see that it's unnecessary,
delete it, and trigger another visit to the insertelement.

llvm-svn: 259236
2016-01-29 20:21:02 +00:00
Sanjay Patel 8123f9195c add masked intrinsic tests to show missed opportunities
llvm-svn: 259083
2016-01-28 19:54:20 +00:00
Sanjay Patel 980b280f50 [LibCallSimplifier] fold memset(malloc(x), 0, x) --> calloc(1, x)
This is a step towards solving PR25892:
https://llvm.org/bugs/show_bug.cgi?id=25892

It won't handle the reported case. As noted by the 'TODO' comments in the patch, 
we need to relax the hasOneUse() constraint and also match patterns that include
memset_chk() and the llvm.memset() intrinsic in addition to memset().

Differential Revision: http://reviews.llvm.org/D16337

llvm-svn: 258816
2016-01-26 16:17:24 +00:00
Matt Arsenault bef34e21c7 AMDGPU: Rename intrinsics to use amdgcn prefix
The intrinsic target prefix should match the target name
as it appears in the triple.

This is not yet complete, but gets most of the important ones.
llvm.AMDGPU.* intrinsics used by mesa and libclc are still handled
for compatability for now.

llvm-svn: 258557
2016-01-22 21:30:34 +00:00
Sanjay Patel fcc7c1a0ba [LibCallSimplifier] don't get fooled by a fake fmin()
This is similar to the bug/fix:
https://llvm.org/bugs/show_bug.cgi?id=26211
http://reviews.llvm.org/rL258325

The fmin() test case reveals another bug caused by sloppy
code duplication. It will crash without this patch because
fp128 is a valid floating-point type, but we would think
that we had matched a function that used doubles.

The new helper function can be used to replace similar
checks that are used in several other places in this file.

llvm-svn: 258428
2016-01-21 20:19:54 +00:00
Sanjay Patel bd2dc67142 [LibCallSimplifier] don't get fooled by a fake sqrt()
The test case will crash without this patch because the subsequent call to
hasUnsafeAlgebra() assumes that the call instruction is an FPMathOperator
(ie, returns an FP type).

This part of the function signature check was omitted for the sqrt() case, 
but seems to be in place for all other transforms.

Before:
http://reviews.llvm.org/rL257400
...we would have needlessly continued execution in optimizeSqrt(), but the
bug was harmless because we'd eventually fail some other check and return
without damage.

This should fix:
https://llvm.org/bugs/show_bug.cgi?id=26211

Differential Revision: http://reviews.llvm.org/D16198

llvm-svn: 258325
2016-01-20 17:41:14 +00:00
Sanjay Patel 582857c95c add tests to show missing memset/malloc optimizations (PR25892)
llvm-svn: 258218
2016-01-19 23:07:10 +00:00
Sanjay Patel d1f4f03f5e [LibCallSimplifier] use instruction-level fast-math-flags to shrink calls
This is a continuation of adding FMF to call instructions:
http://reviews.llvm.org/rL255555

llvm-svn: 258158
2016-01-19 18:38:52 +00:00
Sanjay Patel 81a63cd11f [LibCallSimplifier] use instruction-level fast-math-flags to transform pow(x, [small integer]) calls
This is a continuation of adding FMF to call instructions:
http://reviews.llvm.org/rL255555

As with D15937, the intent of the patch is to preserve the current behavior of the transform
except that we use the pow call's 'fast' attribute as a trigger rather than a function-level
attribute.

The TODO comment notes a potential follow-on patch that would propagate FMF to the new
instructions.

Differential Revision: http://reviews.llvm.org/D16122

llvm-svn: 258153
2016-01-19 18:15:12 +00:00
Artur Pilipenko f84dc06e5b Push isDereferenceableAndAlignedPointer down into isSafeToLoadUnconditionally
Reviewed By: reames

Differential Revision: http://reviews.llvm.org/D16226

llvm-svn: 258010
2016-01-17 12:35:29 +00:00
Silviu Baranga f29dfd36bb Re-commit r257064, after it was reverted in r257340.
This contains a fix for the issue that caused the revert:
we no longer assume that we can insert instructions after the
instruction that produces the base pointer. We previously
assumed that this would be ok, because the instruction produces
a value and therefore is not a terminator. This is false for invoke
instructions. We will now insert these new instruction directly
at the location of the users.

Original commit message:

[InstCombine] Look through PHIs, GEPs, IntToPtrs and PtrToInts to expose more constants when comparing GEPs

Summary:
When comparing two GEP instructions which have the same base pointer
and one of them has a constant index, it is possible to only compare
indices, transforming it to a compare with a constant. This removes
one use for the GEP instruction with the constant index, can reduce
register pressure and can sometimes lead to removing the comparisson
entirely.

InstCombine was already doing this when comparing two GEPs if the base
pointers were the same. However, in the case where we have complex
pointer arithmetic (GEPs applied to GEPs, PHIs of GEPs, conversions to
or from integers, etc) the value of the original base pointer will be
hidden to the optimizer and this transformation will be disabled.

This change detects when the two sides of the comparison can be
expressed as GEPs with the same base pointer, even if they don't
appear as such in the IR. The transformation will convert all the
pointer arithmetic to arithmetic done on indices and all the relevant
uses of GEPs to GEPs with a common base pointer. The GEP comparison
will be converted to a comparison done on indices.

Reviewers: majnemer, jmolloy

Subscribers: hfinkel, jevinskie, jmolloy, aadg, llvm-commits

Differential Revision: http://reviews.llvm.org/D15146

llvm-svn: 257897
2016-01-15 15:52:05 +00:00
James Molloy f01488e2bc [InstCombine] Rewrite bswap/bitreverse handling completely.
There are several requirements that ended up with this design;
  1. Matching bitreversals is too heavyweight for InstCombine and doesn't really need to be done so early.
  2. Bitreversals and byteswaps are very related in their matching logic.
  3. We want to implement support for matching more advanced bswap/bitreverse patterns like partial bswaps/bitreverses.
  4. Bswaps are best matched early in InstCombine.

The result of these is that a new utility function is created in Transforms/Utils/Local.h that can be configured to search for bswaps, bitreverses or both. InstCombine uses it to find only bswaps, CGP uses it to find only bitreversals.

We can then extend the matching logic in one place only.

llvm-svn: 257875
2016-01-15 09:20:19 +00:00
Sanjay Patel 53ba88dbb0 [LibCallSimplifier] use instruction-level fast-math-flags to transform pow(x, 0.5) calls
Also, propagate the FMF to the newly created sqrt() call.

llvm-svn: 257503
2016-01-12 19:06:35 +00:00
Sanjay Patel 6002e78a06 [LibCallSimplifier] use instruction-level fast-math-flags to transform pow(exp(x)) calls
See also:
http://reviews.llvm.org/rL255555
http://reviews.llvm.org/rL256871
http://reviews.llvm.org/rL256964
http://reviews.llvm.org/rL257400
http://reviews.llvm.org/rL257404
http://reviews.llvm.org/rL257414

llvm-svn: 257491
2016-01-12 17:30:37 +00:00
Sanjay Patel dc19b8de76 consolidate exp/exp2 tests
The transform is identical, so keep the tests together and save some overhead.

llvm-svn: 257484
2016-01-12 17:00:38 +00:00
Sanjay Patel 71e550fefb Add/edit tests to include instruction-level FMF on calls
Prepatory patch before changing LibCallSimplifier to use the FMF.
Also, tighten the CHECK lines and give the tests more meaningful names.
Similar changes to:
http://reviews.llvm.org/rL257414

llvm-svn: 257481
2016-01-12 16:50:17 +00:00
Sanjay Patel e896ede7f1 [LibCallSimplifier] use instruction-level fast-math-flags to transform log calls
Also, add tests to verify that we're checking 'fast' on both calls of each transform pair,
tighten the CHECK lines, and give the tests more meaningful names.

This is a continuation of:
http://reviews.llvm.org/rL255555
http://reviews.llvm.org/rL256871
http://reviews.llvm.org/rL256964
http://reviews.llvm.org/rL257400
http://reviews.llvm.org/rL257404

llvm-svn: 257414
2016-01-11 23:31:48 +00:00
Sanjay Patel 6c1ddbb7b6 [LibCallSimplifier] don't allow sqrt transform unless all ops are unsafe
Fix the FIXME added with:
http://reviews.llvm.org/rL257400

llvm-svn: 257404
2016-01-11 22:50:36 +00:00
Sanjay Patel 683f29735f [LibCallSimplifier] use instruction-level fast-math-flags to transform sqrt calls
This is a continuation of adding FMF to call instructions:
http://reviews.llvm.org/rL255555

The intent of the patch is to preserve the current behavior of the transform except
that we use the sqrt instruction's 'fast' attribute as a trigger rather than the
function-level attribute.

But this raises a bug noted by the new FIXME comment.

In order to do this transform:
sqrt((x * x) * y) ---> fabs(x) * sqrt(y)

...we need all of the sqrt, the first fmul, and the second fmul to be 'fast'. 
If any of those ops is strict, we should bail out.

Differential Revision: http://reviews.llvm.org/D15937

llvm-svn: 257400
2016-01-11 22:34:19 +00:00
Silviu Baranga 603954ef0e Revert r257164 - it has caused spec2k6 failures in LTO mode
llvm-svn: 257340
2016-01-11 16:19:38 +00:00
Silviu Baranga 9e007efad2 Re-commit r257064, this time with a fixed assert
In setInsertionPoint if the value is not a PHI, Instruction or
Argument it should be a Constant, not a ConstantExpr.

Original commit message:

[InstCombine] Look through PHIs, GEPs, IntToPtrs and PtrToInts to expose more constants when comparing GEPs

Summary:
When comparing two GEP instructions which have the same base pointer
and one of them has a constant index, it is possible to only compare
indices, transforming it to a compare with a constant. This removes
one use for the GEP instruction with the constant index, can reduce
register pressure and can sometimes lead to removing the comparisson
entirely.

InstCombine was already doing this when comparing two GEPs if the base
pointers were the same. However, in the case where we have complex
pointer arithmetic (GEPs applied to GEPs, PHIs of GEPs, conversions to
or from integers, etc) the value of the original base pointer will be
hidden to the optimizer and this transformation will be disabled.

This change detects when the two sides of the comparison can be
expressed as GEPs with the same base pointer, even if they don't
appear as such in the IR. The transformation will convert all the
pointer arithmetic to arithmetic done on indices and all the relevant
uses of GEPs to GEPs with a common base pointer. The GEP comparison
will be converted to a comparison done on indices.

Reviewers: majnemer, jmolloy

Subscribers: hfinkel, jevinskie, jmolloy, aadg, llvm-commits

Differential Revision: http://reviews.llvm.org/D15146

llvm-svn: 257164
2016-01-08 11:11:04 +00:00
Sanjay Patel d72a458d28 [InstCombine] insert a new shuffle in a safe place (PR25999)
Limit this transform to a basic block and guard against PHIs.
Hopefully, this fixes the remaining failures in PR25999:
https://llvm.org/bugs/show_bug.cgi?id=25999

llvm-svn: 257133
2016-01-08 01:39:16 +00:00
David Majnemer 867bbc775f Add test for r256912
I forgot to add this with the rest of r256912.

llvm-svn: 257088
2016-01-07 19:27:16 +00:00
Silviu Baranga dd68d46ec1 Revert r257064. It caused failures in some sanitizer tests.
llvm-svn: 257069
2016-01-07 15:46:43 +00:00
Silviu Baranga 57b1b90996 [InstCombine] Look through PHIs, GEPs, IntToPtrs and PtrToInts to expose more constants when comparing GEPs
Summary:
When comparing two GEP instructions which have the same base pointer
and one of them has a constant index, it is possible to only compare
indices, transforming it to a compare with a constant. This removes
one use for the GEP instruction with the constant index, can reduce
register pressure and can sometimes lead to removing the comparisson
entirely.

InstCombine was already doing this when comparing two GEPs if the
base pointers were the same. However, in the case where we have
complex pointer arithmetic (GEPs applied to GEPs, PHIs of GEPs,
conversions to or from integers, etc) the value of the original
base pointer will be hidden to the optimizer and this transformation
will be disabled.

This change detects when the two sides of the comparison can be
expressed as GEPs with the same base pointer, even if they don't
appear as such in the IR. The transformation will convert all the
pointer arithmetic to arithmetic done on indices and all the
relevant uses of GEPs to GEPs with a common base pointer. The
GEP comparison will be converted to a comparison done on indices.

Reviewers: majnemer, jmolloy

Subscribers: hfinkel, jevinskie, jmolloy, aadg, llvm-commits

Differential Revision: http://reviews.llvm.org/D15146

llvm-svn: 257064
2016-01-07 14:56:08 +00:00
Sanjay Patel cddcd7256c [LibCallSimplifier] use instruction-level fast-math-flags for tan/atan transform
llvm-svn: 256964
2016-01-06 19:23:35 +00:00
Sanjay Patel 29095ea1b0 [LibCallSimplfier] use instruction-level fast-math-flags for fmin/fmax transforms
llvm-svn: 256871
2016-01-05 20:46:19 +00:00
Sanjay Patel a1c5347982 [InstCombine] insert a new shuffle before its uses (PR26015)
Although this solves the test case in PR26015:
https://llvm.org/bugs/show_bug.cgi?id=26015

And may solve PR25999:
https://llvm.org/bugs/show_bug.cgi?id=25999

...I suspect this is not the best solution. I think we want to insert the new shuffle
just ahead of the earliest ExtractElementInst that we're replacing, but I don't know 
how that should be implemented.

Differential Revision: http://reviews.llvm.org/D15878

llvm-svn: 256857
2016-01-05 19:09:47 +00:00
Chen Li c6021038f6 [InstructionCombining] prepareICWorklistFromFunction halts in infinite loop with instructions of token type
Summary: This patch fixes a bug in prepareICWorklistFromFunction, where the loop becomes infinite with instructions of token type. The patch checks if the instruction is token type, and if so it updates EndInst with the current instruction.

Reviewers: reames, majnemer

Subscribers: llvm-commits, sanjoy

Differential Revision: http://reviews.llvm.org/D15859

llvm-svn: 256792
2016-01-04 23:28:57 +00:00
Sanjay Patel bee05caa6b [LibCallSimplifier] propagate FMF when shrinking binary calls
llvm-svn: 256682
2015-12-31 23:40:59 +00:00
Sanjay Patel aa23114cb4 [LibCallSimplifier] propagate FMF when shrinking unary calls
llvm-svn: 256679
2015-12-31 21:52:31 +00:00
Sanjay Patel f6f32bcaa4 change function names to avoid accidentally matching the substring
llvm-svn: 256678
2015-12-31 21:25:25 +00:00
Sanjay Patel 4e8b300400 add 'fast' attribute to calls to show that the flag isn't being propagated
llvm-svn: 256677
2015-12-31 21:12:19 +00:00
Chandler Carruth 3a040e6d47 [attrs] Extract the pure inference of function attributes into
a standalone pass.

There is no call graph or even interesting analysis for this part of
function attributes -- it is literally inferring attributes based on the
target library identification. As such, we can do it using a much
simpler module pass that just walks the declarations. This can also
happen much earlier in the pass pipeline which has benefits for any
number of other passes.

In the process, I've cleaned up one particular aspect of the logic which
was necessary in order to separate the two passes cleanly. It now counts
inferred attributes independently rather than just counting all the
inferred attributes as one, and the counts are more clearly explained.

The two test cases we had for this code path are both ... woefully
inadequate and copies of each other. I've kept the superset test and
updated it. We need more testing here, but I had to pick somewhere to
stop fixing everything broken I saw here.

Differential Revision: http://reviews.llvm.org/D15676

llvm-svn: 256466
2015-12-27 08:41:34 +00:00
Chen Li d71999ef1b [gc.statepoint] Change gc.statepoint intrinsic's return type to token type instead of i32 type
Summary: This patch changes gc.statepoint intrinsic's return type to token type instead of i32 type. Using token types could prevent LLVM to merge different gc.statepoint nodes into PHI nodes and cause further problems with gc relocations. The patch also changes the way on how gc.relocate and gc.result look for their corresponding gc.statepoint on unwind path. The current implementation uses the selector value extracted from a { i8*, i32 } landingpad as a hook to find the gc.statepoint, while the patch directly uses a token type landingpad (http://reviews.llvm.org/D15405) to find the gc.statepoint. 

Reviewers: sanjoy, JosephTremoulet, pgavlin, igor-laevsky, mjacob

Subscribers: reames, mjacob, sanjoy, llvm-commits

Differential Revision: http://reviews.llvm.org/D15662

llvm-svn: 256443
2015-12-26 07:54:32 +00:00
Sanjay Patel ae945e7927 [InstCombine] transform more extract/insert pairs into shuffles (PR2109)
This is an extension of the shuffle combining from r203229:
http://reviews.llvm.org/rL203229

The idea is to widen a short input vector with undef elements so the
existing shuffle transform for extract/insert can kick in.

The motivation is to finally solve PR2109:
https://llvm.org/bugs/show_bug.cgi?id=2109

For that example, the IR becomes:

%1 = bitcast <2 x i32>* %P to <2 x float>*
%ld1 = load <2 x float>, <2 x float>* %1, align 8
%2 = shufflevector <2 x float> %ld1, <2 x float> undef, <4 x i32> <i32 0, i32 1, i32 undef, i32 undef>
%i2 = shufflevector <4 x float> %A, <4 x float> %2, <4 x i32> <i32 0, i32 1, i32 4, i32 5>
ret <4 x float> %i2

And x86 SSE output improves from:

movq	(%rdi), %xmm1           ## xmm1 = mem[0],zero
movdqa	%xmm1, %xmm2
shufps	$229, %xmm2, %xmm2      ## xmm2 = xmm2[1,1,2,3]
shufps	$48, %xmm0, %xmm1       ## xmm1 = xmm1[0,0],xmm0[3,0]
shufps	$132, %xmm1, %xmm0      ## xmm0 = xmm0[0,1],xmm1[0,2]
shufps	$32, %xmm0, %xmm2       ## xmm2 = xmm2[0,0],xmm0[2,0]
shufps	$36, %xmm2, %xmm0       ## xmm0 = xmm0[0,1],xmm2[2,0]
retq

To the almost optimal:

movhpd	(%rdi), %xmm0

Note: There's a tension in the existing transform related to generating
arbitrary shufflevector masks. We avoid that in other places in InstCombine
because we're scared that codegen can't handle strange masks, but it looks
like we're ok with producing those here. I purposely chose weird insert/extract
indexes for the regression tests to see the effect in these cases. 
For PowerPC+Altivec, AArch64, and X86+SSE/AVX, I think the codegen is equal or
better for these examples.

Differential Revision: http://reviews.llvm.org/D15096

llvm-svn: 256394
2015-12-24 21:17:56 +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
Nicolai Hahnle 78fd4f087b AMDGPU: mark ldexp LibCalls as unavailable
Summary:
The LibCallSimplifier will turn llvm.exp2.* intrinsics into ldexp* libcalls
which do not make sense with the AMDGPU backend.

In the long run, we'll want an llvm.ldexp.* intrinsic to properly make use of
this optimization, but this works around the problem for now.

See also: http://reviews.llvm.org/D14327 (suggested llvm.ldexp.* implementation)
Bugzilla: https://bugs.freedesktop.org/show_bug.cgi?id=92709

Reviewers: arsenm, tstellarAMD

Differential Revision: http://reviews.llvm.org/D14990

llvm-svn: 255658
2015-12-15 17:24:15 +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
Sanjay Patel fa54acedd1 add fast-math-flags to 'call' instructions (PR21290)
This patch adds optional fast-math-flags (the same that apply to fmul/fadd/fsub/fdiv/frem/fcmp)
to call instructions in IR. Follow-up patches would use these flags in LibCallSimplifier, add 
support to clang, and extend FMF to the DAG for calls.

Motivating example:

%y = fmul fast float %x, %x
%z = tail call float @sqrtf(float %y)

We'd like to be able to optimize sqrt(x*x) into fabs(x). We do this today using a function-wide
attribute for unsafe-math, but we really want to trigger on the instructions themselves:

%z = tail call fast float @sqrtf(float %y)

because in an LTO build it's possible that calls with fast semantics have been inlined into a
function with non-fast semantics.

The code changes and tests are based on the recent commits that added "notail":
http://reviews.llvm.org/rL252368

and added FMF to fcmp:
http://reviews.llvm.org/rL241901

Differential Revision: http://reviews.llvm.org/D14707

llvm-svn: 255555
2015-12-14 21:59:03 +00:00
Sanjay Patel f727e387be [InstCombine] fold trunc ([lshr] (bitcast vector) ) --> extractelement (PR25543)
This is a fix for PR25543:
https://llvm.org/bugs/show_bug.cgi?id=25543

The idea is to take the existing fold of:
bitcast ( trunc ( lshr ( bitcast X))) --> extractelement (bitcast X)
( http://reviews.llvm.org/rL112232 )

And break it into less specific transforms so we'll catch more cases such as
the example in the bug report:
bitcast ( trunc ( lshr ( bitcast X))) -->
bitcast ( extractelement (bitcast X)) -->
extractelement (bitcast X)

Enabling patches for this change:
http://reviews.llvm.org/rL255399 (combine bitcasts)
http://reviews.llvm.org/rL255433 (canonicalize extractelement(bitcast X))

Differential Revision: http://reviews.llvm.org/D15392

llvm-svn: 255504
2015-12-14 16:16:54 +00:00