Commit Graph

854 Commits

Author SHA1 Message Date
Tim Northover f520eff782 AArch64: use ldxp/stxp pair to implement 128-bit atomic loads.
The ARM ARM is clear that 128-bit loads are only guaranteed to have been atomic
if there has been a corresponding successful stxp. It's less clear for AArch32, so
I'm leaving that alone for now.

llvm-svn: 254524
2015-12-02 18:12:57 +00:00
Christof Douma 8b5dc2c94e [AArch64]: Add support for Cortex-A35
Adds support for the new Cortex-A35 ARMv8-A core.

llvm-svn: 254503
2015-12-02 11:53:44 +00:00
Tim Northover f3be9d5c0b AArch64: fix 128-bit shifts
We mustn't introduce a shift of exactly 64-bits for any inputs, since that's an
UNDEF value (and worse, it's not what you want with the natural Arch64
implementation).

The generated code is pretty horrific, but I couldn't come up with an obviously
better alternative (if the amount is constant EXTR could help). Turns out
128-bit shifts are just nasty.

rdar://22491037

llvm-svn: 254475
2015-12-02 00:33:54 +00:00
Weiming Zhao 56ab51870c [AArch64] Fix a corner case in BitFeild select
Summary:
When not useful bits, BitWidth becomes 0 and APInt will not be happy.

See https://llvm.org/bugs/show_bug.cgi?id=25571

We can just mark the operand as IMPLICIT_DEF is none bits of it is used.

Reviewers: t.p.northover, jmolloy

Subscribers: gberry, jmolloy, mgrang, aemerson, llvm-commits, rengolin

Differential Revision: http://reviews.llvm.org/D14803

llvm-svn: 254440
2015-12-01 19:17:49 +00:00
Geoff Berry 5256fcada0 [CodeGenPrepare] Create more extloads and fewer ands
Summary:
Add and instructions immediately after loads that only have their low
bits used, assuming that the (and (load x) c) will be matched as a
extload and the ands/truncs fed by the extload will be removed by isel.

Reviewers: mcrosier, qcolombet, ab

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D14584

llvm-svn: 253722
2015-11-20 22:34:39 +00:00
Arnaud A. de Grandmaison 4e89e9f846 [ShrinkWrap] Teach ShrinkWrap to handle targets requiring a register scavenger.
The included test only checks for a compiler crash for now. Several people are
facing this issue, so we first resolve the crash, and will increase shrinkwrap's
coverage later in a follow-up patch.

llvm-svn: 253718
2015-11-20 21:54:27 +00:00
Jun Bum Lim 80ec0d3f5a [AArch64]Merge narrow zero stores to a wider store
This change merges adjacent zero stores into a wider single store.
For example :
  strh wzr, [x0]
  strh wzr, [x0, #2]
becomes
  str wzr, [x0]

This will fix PR25410.

llvm-svn: 253711
2015-11-20 21:14:07 +00:00
Jun Bum Lim 4c35ccac91 [AArch64]Extend merging narrow loads into a wider load
This change extends r251438 to handle more narrow load promotions
including byte type, unscaled, and signed. For example, this change will
convert :
  ldursh w1, [x0, #-2]
  ldurh  w2, [x0, #-4]
into
  ldur  w2, [x0, #-4]
  asr   w1, w2, #16
  and   w2, w2, #0xffff

llvm-svn: 253577
2015-11-19 17:21:41 +00:00
Pete Cooper 67cf9a723b Revert "Change memcpy/memset/memmove to have dest and source alignments."
This reverts commit r253511.

This likely broke the bots in
http://lab.llvm.org:8011/builders/clang-ppc64-elf-linux2/builds/20202
http://bb.pgr.jp/builders/clang-3stage-i686-linux/builds/3787

llvm-svn: 253543
2015-11-19 05:56:52 +00:00
Quentin Colombet f6645cce91 [AArch64] Enable shrink-wrapping by default.
Differential Revision: http://reviews.llvm.org/D14360

rdar://problem/20820748

llvm-svn: 253520
2015-11-18 23:12:20 +00:00
Pete Cooper 72bc23ef02 Change memcpy/memset/memmove to have dest and source alignments.
Note, this was reviewed (and more details are in) http://lists.llvm.org/pipermail/llvm-commits/Week-of-Mon-20151109/312083.html

These intrinsics currently have an explicit alignment argument which is
required to be a constant integer.  It represents the alignment of the
source and dest, and so must be the minimum of those.

This change allows source and dest to each have their own alignments
by using the alignment attribute on their arguments.  The alignment
argument itself is removed.

There are a few places in the code for which the code needs to be
checked by an expert as to whether using only src/dest alignment is
safe.  For those places, they currently take the minimum of src/dest
alignments which matches the current behaviour.

For example, code which used to read:
  call void @llvm.memcpy.p0i8.p0i8.i32(i8* %dest, i8* %src, i32 500, i32 8, i1 false)
will now read:
  call void @llvm.memcpy.p0i8.p0i8.i32(i8* align 8 %dest, i8* align 8 %src, i32 500, i1 false)

For out of tree owners, I was able to strip alignment from calls using sed by replacing:
  (call.*llvm\.memset.*)i32\ [0-9]*\,\ i1 false\)
with:
  $1i1 false)

and similarly for memmove and memcpy.

I then added back in alignment to test cases which needed it.

A similar commit will be made to clang which actually has many differences in alignment as now
IRBuilder can generate different source/dest alignments on calls.

In IRBuilder itself, a new argument was added.  Instead of calling:
  CreateMemCpy(Dst, Src, getInt64(Size), DstAlign, /* isVolatile */ false)
you now call
  CreateMemCpy(Dst, Src, getInt64(Size), DstAlign, SrcAlign, /* isVolatile */ false)

There is a temporary class (IntegerAlignment) which takes the source alignment and rejects
implicit conversion from bool.  This is to prevent isVolatile here from passing its default
parameter to the source alignment.

Note, changes in future can now be made to codegen.  I didn't change anything here, but this
change should enable better memcpy code sequences.

Reviewed by Hal Finkel.

llvm-svn: 253511
2015-11-18 22:17:24 +00:00
Rafael Espindola 449711cb36 Stop producing .data.rel sections.
If a section is rw, it is irrelevant if the dynamic linker will write to
it or not.

It looks like llvm implemented this because gcc was doing it. It looks
like gcc implemented this in the hope that it would put all the
relocated items close together and speed up the dynamic linker.

There are two problem with this:
* It doesn't work. Both bfd and gold will map .data.rel to .data and
  concatenate the input sections in the order they are seen.
* If we want a feature like that, it can be implemented directly in the
  linker since it knowns where the dynamic relocations are.

llvm-svn: 253436
2015-11-18 06:02:15 +00:00
Ahmed Bougacha 88ddeae8bd [AArch64] Promote f16 SELECT_CC CC operands when op is legal.
SELECT_CC has the nasty property of having operands with unrelated
types. So if you do something like:

  f32 = select_cc f16, f16, f32, f32, cc

You'd only look for the action for <select_cc, f32>, but never f16.
If the types are all legal, but the op isn't (as for f16 on AArch64,
or for f128 on x86_64/AArch64?), then you get into trouble.
For f128, we have softenSetCCOperands to handle this case.

Similarly, for f16, we can directly promote the CC operands.

llvm-svn: 253344
2015-11-17 16:45:40 +00:00
Rafael Espindola 65e4902156 Drop prelink support.
The way prelink used to work was

* The compiler decides if a given section only has relocations that
are know to point to the same DSO. If so, it names it
.data.rel.ro.local<something>.
* The static linker puts all of these together.
* The prelinker program assigns addresses to each library and resolves
the local relocations.

There are many problems with this:
* It is incompatible with address space randomization.
* The information passed by the compiler is redundant. The linker
knows if a given relocation is in the same DSO or not. If could sort
by that if so desired.
* There are newer ways of speeding up DSO (gnu hash for example).
* Even if we want to implement this again in the compiler, the previous
  implementation is pretty broken. It talks about relocations that are
  "resolved by the static linker". If they are resolved, there are none
  left for the prelinker. What one needs to track is if an expression
  will require only dynamic relocations that point to the same DSO.

At this point it looks like the prelinker is an historical curiosity.
For example, fedora has retired it because it failed to build for two
releases
(http://pkgs.fedoraproject.org/cgit/prelink.git/commit/?id=eb43100a8331d91c801ee3dcdb0a0bb9babfdc1f)

This patch removes support for it. That is, it stops printing the
".local" sections.

llvm-svn: 253280
2015-11-17 00:51:23 +00:00
James Molloy 67ca6edbb1 [AArch64] Check the expansion of BITREVERSE in regression test
Something I missed from Hal's review, rightly pointed out by Ben Kramer - we should make sure the expansion is properly checked as it can be easy for bugs to creep in.

I've checked the scalar i8 expansion here and the vector i8 expansion in a previous commit.

llvm-svn: 253024
2015-11-13 10:05:31 +00:00
James Molloy bb1dbf530a [SDAG] Fix expansion of BITREVERSE
Richard Trieu noted that UBSan detected an overflowing shift, and the obvious fix caused a crash.

What was happening was that the shiftee (1U) was indeed too small for the possible range of shifts it had to handle, but also we were using "VT.getSizeInBits()" to get the maximum type bitwidth, but we wanted "VT.getScalarSizeInBits()" to get the vector lane size instead of the entire vector size.

Use an APInt for the shift and VT.getScalarSizeInBits().

llvm-svn: 253023
2015-11-13 10:02:36 +00:00
James Molloy 90111f79f9 [SDAG] Introduce a new BITREVERSE node along with a corresponding LLVM intrinsic
Several backends have instructions to reverse the order of bits in an integer. Conceptually matching such patterns is similar to @llvm.bswap, and it was mentioned in http://reviews.llvm.org/D14234 that it would be best if these patterns were matched in InstCombine instead of reimplemented in every different target.

This patch introduces an intrinsic @llvm.bitreverse.i* that operates similarly to @llvm.bswap. For plumbing purposes there is also a new ISD node ISD::BITREVERSE, with simple expansion and promotion support.

The intention is that InstCombine's BSWAP detection logic will be extended to support BITREVERSE too, and @llvm.bitreverse intrinsics emitted (if the backend supports lowering it efficiently).

llvm-svn: 252878
2015-11-12 12:29:09 +00:00
Geoff Berry 2ddfc5e60f [DAGCombiner] Improve zextload optimization.
Summary:
Don't fold
  (zext (and (load x), cst)) -> (and (zextload x), (zext cst))
if
  (and (load x) cst)
will match as a zextload already and has additional users.

For example, the following IR:

  %load = load i32, i32* %ptr, align 8
  %load16 = and i32 %load, 65535
  %load64 = zext i32 %load16 to i64
  store i32 %load16, i32* %dst1, align 4
  store i64 %load64, i64* %dst2, align 8

used to produce the following aarch64 code:

	ldr		w8, [x0]
	and	w9, w8, #0xffff
	and	x8, x8, #0xffff
	str		w9, [x1]
	str		x8, [x2]

but with this change produces the following aarch64 code:

	ldrh		w8, [x0]
	str		w8, [x1]
	str		x8, [x2]

Reviewers: resistor, mcrosier

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D14340

llvm-svn: 252789
2015-11-11 19:42:52 +00:00
Oliver Stannard 21aa762226 Update test to use explicit triple
This is needed for targets which do not support big-endian with the default
triple.

llvm-svn: 252603
2015-11-10 14:09:08 +00:00
Oliver Stannard d414c99b9c [AArch64] Fix halfword load merging for big-endian targets
For big-endian targets, when we merge two halfword loads into a word load, the
order of the halfwords in the loaded value is reversed compared to
little-endian, so the load-store optimiser needs to swap the destination
registers.

This does not affect merging of two word loads, as we use ldp, which treats the
memory as two separate 32-bit words.

llvm-svn: 252597
2015-11-10 11:04:18 +00:00
Tim Northover 339c83e27f AArch64: add experimental support for address tagging.
AArch64 has the ability to use the top 8-bits of an "address" for extra
information, with the memory subsystem automatically masking them off for loads
and stores. When that's happening, we can sometimes skip masks on memory
operations in the compiler.

However, this requires the host OS and support stack to preserve those bits so
it can't be enabled everywhere. In principle iOS 8.0 and above do take the
required precautions and but we'll put it under a flag for now.

llvm-svn: 252573
2015-11-10 00:44:23 +00:00
Charlie Turner 90dafb1b6d [AArch64] Add UABDL patterns for log2 shuffle.
Summary:
This matches the sum-of-absdiff patterns emitted by the vectoriser using log2 shuffles.

Relies on D14207 to be able to match the `extract_subvector(..., 0)`

Reviewers: t.p.northover, jmolloy

Subscribers: aemerson, llvm-commits, rengolin

Differential Revision: http://reviews.llvm.org/D14208

llvm-svn: 252465
2015-11-09 13:10:52 +00:00
Ahmed Bougacha cf49b523a0 [AArch64][FastISel] Don't even try to select vector icmps.
We used to try to constant-fold them to i32 immediates.
Given that fast-isel doesn't otherwise support vNi1, when selecting
the result users, we'd fallback to SDAG anyway.
However, if the users were in another block, we'd insert broken
cross-class copies (GPR32 to FPR64).

Give up, let SDAG agree with itself on a vNi1 legalization strategy.

llvm-svn: 252364
2015-11-06 23:16:53 +00:00
Jun Bum Lim 22fe15ee86 [AArch64]Enable the narrow ld promotion only on profitable microarchitectures
The benefit from converting narrow loads into a wider load (r251438) could be
micro-architecturally dependent, as it assumes that a single load with two bitfield
extracts is cheaper than two narrow loads. Currently, this conversion is
enabled only in cortex-a57 on which performance benefits were verified.

llvm-svn: 252316
2015-11-06 16:27:47 +00:00
Peter Collingbourne d4bff30370 DI: Reverse direction of subprogram -> function edge.
Previously, subprograms contained a metadata reference to the function they
described. Because most clients need to get or set a subprogram for a given
function rather than the other way around, this created unneeded inefficiency.

For example, many passes needed to call the function llvm::makeSubprogramMap()
to build a mapping from functions to subprograms, and the IR linker needed to
fix up function references in a way that caused quadratic complexity in the IR
linking phase of LTO.

This change reverses the direction of the edge by storing the subprogram as
function-level metadata and removing DISubprogram's function field.

Since this is an IR change, a bitcode upgrade has been provided.

Fixes PR23367. An upgrade script for textual IR for out-of-tree clients is
attached to the PR.

Differential Revision: http://reviews.llvm.org/D14265

llvm-svn: 252219
2015-11-05 22:03:56 +00:00
Jun Bum Lim c9879ecfbc [AArch64]Merge halfword loads into a 32-bit load
This recommits r250719, which caused a failure in SPEC2000.gcc
because of the incorrect insert point for the new wider load.

Convert two halfword loads into a single 32-bit word load with bitfield extract
instructions. For example :
  ldrh w0, [x2]
  ldrh w1, [x2, #2]
becomes
  ldr w0, [x2]
  ubfx w1, w0, #16, #16
  and  w0, w0, #ffff

llvm-svn: 251438
2015-10-27 19:16:03 +00:00
Charlie Turner 458e79b814 [ARM] Expand ROTL and ROTR of vector value types
Summary: After D13851 landed, we saw backend crashes when compiling the reduced test case included in this patch. The right fix seems to be to allow these vector types for expansion in instruction selection.

Reviewers: rengolin, t.p.northover

Subscribers: RKSimon, t.p.northover, aemerson, llvm-commits, rengolin

Differential Revision: http://reviews.llvm.org/D14082

llvm-svn: 251401
2015-10-27 10:25:20 +00:00
James Molloy 5b18b4ce96 Revert "[AArch64]Merge halfword loads into a 32-bit load"
This reverts commit r250719. This introduced a codegen fault in SPEC2000.gcc, when compiled for Cortex-A53.

llvm-svn: 251108
2015-10-23 10:41:38 +00:00
Jun Bum Lim d3548303ec [AArch64]Merge halfword loads into a 32-bit load
Convert two halfword loads into a single 32-bit word load with bitfield extract
instructions. For example :
  ldrh w0, [x2]
  ldrh w1, [x2, #2]
becomes
  ldr w0, [x2]
  ubfx w1, w0, #16, #16
  and  w0, w0, #ffff

llvm-svn: 250719
2015-10-19 18:34:53 +00:00
Charlie Turner 434d4599d4 [AArch64] Implement vector splitting on UADDV.
Summary: Fixes PR25056.

Reviewers: mcrosier, junbuml, jmolloy

Subscribers: aemerson, rengolin, llvm-commits

Differential Revision: http://reviews.llvm.org/D13466

llvm-svn: 250520
2015-10-16 15:38:25 +00:00
Matt Arsenault 61dc235f20 DAGCombiner: Combine extract_vector_elt from build_vector
This basic combine was surprisingly missing.
AMDGPU legalizes many operations in terms of 32-bit vector components,
so not doing this results in many extra copies and subregister extracts
that need to be cleaned up later.

InstCombine already does this for the hasOneUse case. The target hook
is to fix a handful of tests which break (e.g. ARM/vmov.ll) which turn
from a vector materialize repeated immediate instruction to a constant
vector load with more scalar copies from it.

llvm-svn: 250129
2015-10-12 23:59:50 +00:00
Jun Bum Lim 54f3ddfbe2 [AArch64]Fix bug in function names in test case
Functions in this test case need to be renamed as its names are the same
as the instructions we are comparing with.

llvm-svn: 250052
2015-10-12 15:34:52 +00:00
Jun Bum Lim 0aace13d18 Improve ISel across lane float min/max reduction
In vectorized float min/max reduction code, the final "reduce" step
is sub-optimal. In AArch64, this change wll combine :

  svn0 = vector_shuffle t0, undef<2,3,u,u>
  fmin = fminnum t0,svn0
  svn1 = vector_shuffle fmin, undef<1,u,u,u>
  cc = setcc fmin, svn1, ole
  n0 = extract_vector_elt cc, #0
  n1 = extract_vector_elt fmin, #0
  n2 = extract_vector_elt fmin, #1
  result = select n0, n1,n2
into :
  result = llvm.aarch64.neon.fminnmv t0

This change extends r247575.

llvm-svn: 249834
2015-10-09 14:11:25 +00:00
Chad Rosier 7c6ac2b8f9 [AArch64] Fold a floating-point divide by power of two into fp conversion.
Part of http://reviews.llvm.org/D13442

llvm-svn: 249579
2015-10-07 17:51:37 +00:00
Chad Rosier fa30c9b436 [AArch64] Fold a floating-point multiply by power of two into fp conversion.
Part of http://reviews.llvm.org/D13442

llvm-svn: 249576
2015-10-07 17:39:18 +00:00
Jeroen Ketema aebca09543 [ARM][AArch64] Only lower to interleaved load/store if the target has NEON
Without an additional check for NEON, the compiler crashes during
legalization of NEON ldN/stN.

Differential Revision: http://reviews.llvm.org/D13508

llvm-svn: 249550
2015-10-07 14:53:29 +00:00
Chad Rosier 4c5a4646bf [AArch64] Remove an unnecessary run line and other cleanup. NFC.
Unscaled load/store combining has been enabled since the initial ARM64 port.  No
need for a redundance run.  Also, add CHECK-LABEL directives.

llvm-svn: 248945
2015-09-30 21:10:02 +00:00
Chad Rosier 11c825f7db [AArch64] Remove an unnecessary restriction on pre-index instructions.
Previously, the index was constrained to the size of the memory operation for
no apparent reason.  This change removes that constraint so that we can form
pre-index instructions with any valid offset.

llvm-svn: 248931
2015-09-30 19:44:40 +00:00
Chad Rosier 1769d8505f Fix test from r248825.
llvm-svn: 248827
2015-09-29 20:50:15 +00:00
Chad Rosier 4315012769 [AArch64] Add support for pre- and post-index LDPSWs.
llvm-svn: 248825
2015-09-29 20:39:55 +00:00
Chad Rosier dabe2534ed [AArch64] Add integer pre- and post-index halfword/byte loads and stores.
llvm-svn: 248817
2015-09-29 18:26:15 +00:00
Cong Hou 15ea016346 Use fixed-point representation for BranchProbability.
BranchProbability now is represented by its numerator and denominator in uint32_t type. This patch changes this representation into a fixed point that is represented by the numerator in uint32_t type and a constant denominator 1<<31. This is quite similar to the representation of BlockMass in BlockFrequencyInfoImpl.h. There are several pros and cons of this change:

Pros:

1. It uses only a half space of the current one.
2. Some operations are much faster like plus, subtraction, comparison, and scaling by an integer.

Cons:

1. Constructing a probability using arbitrary numerator and denominator needs additional calculations.
2. It is a little less precise than before as we use a fixed denominator. For example, 1 - 1/3 may not be exactly identical to 1 / 3 (this will lead to many BranchProbability unit test failures). This should not matter when we only use it for branch probability. If we use it like a rational value for some precise calculations we may need another construct like ValueRatio.

One important reason for this change is that we propose to store branch probabilities instead of edge weights in MachineBasicBlock. We also want clients to use probability instead of weight when adding successors to a MBB. The current BranchProbability has more space which may be a concern.

Differential revision: http://reviews.llvm.org/D12603

llvm-svn: 248633
2015-09-25 23:09:59 +00:00
Sanjay Patel bbbf9a1a34 merge vector stores into wider vector stores and fix AArch64 misaligned access TLI hook (PR21711)
This is a redo of D7208 ( r227242 - http://llvm.org/viewvc/llvm-project?view=revision&revision=227242 ).

The patch was reverted because an AArch64 target could infinite loop after the change in DAGCombiner 
to merge vector stores. That happened because AArch64's allowsMisalignedMemoryAccesses() wasn't telling
the truth. It reported all unaligned memory accesses as fast, but then split some 128-bit unaligned
accesses up in performSTORECombine() because they are slow.

This patch attempts to fix the problem in AArch's allowsMisalignedMemoryAccesses() while preserving
existing (perhaps questionable) lowering behavior.

The x86 test shows that store merging is working as intended for a target with fast 32-byte unaligned
stores.

Differential Revision: http://reviews.llvm.org/D12635
 

llvm-svn: 248622
2015-09-25 21:49:48 +00:00
Chad Rosier 1bbd7fb38e [AArch64] Add support for generating pre- and post-index load/store pairs.
llvm-svn: 248593
2015-09-25 17:48:17 +00:00
Lawrence Hu cac0b89289 Swap loop invariant GEP with loop variant GEP to allow more LICM.
This patch changes the order of GEPs generated by Splitting GEPs
    pass, specially when one of the GEPs has constant and the base is
    loop invariant, then we will generate the GEP with constant first
    when beneficial, to expose more cases for LICM.

    If originally Splitting GEP generate the following:
      do.body.i:
        %idxprom.i = sext i32 %shr.i to i64
        %2 = bitcast %typeD* %s to i8*
        %3 = shl i64 %idxprom.i, 2
        %uglygep = getelementptr i8, i8* %2, i64 %3
        %uglygep7 = getelementptr i8, i8* %uglygep, i64 1032
      ...
    Now it genereates:
      do.body.i:
        %idxprom.i = sext i32 %shr.i to i64
        %2 = bitcast %typeD* %s to i8*
        %3 = shl i64 %idxprom.i, 2
        %uglygep = getelementptr i8, i8* %2, i64 1032
        %uglygep7 = getelementptr i8, i8* %uglygep, i64 %3
      ...

    For no-loop cases, the original way of generating GEPs seems to
    expose more CSE cases, so we don't change the logic for no-loop
    cases, and only limit our change to the specific case we are
    interested in.

llvm-svn: 248420
2015-09-23 19:25:30 +00:00
Ahmed Bougacha 07a844d758 [AArch64] Emit clrex in the expanded cmpxchg fail block.
In the comparison failure block of a cmpxchg expansion, the initial
ldrex/ldxr will not be followed by a matching strex/stxr.
On ARM/AArch64, this unnecessarily ties up the execution monitor,
which might have a negative performance impact on some uarchs.

Instead, release the monitor in the failure block.
The clrex instruction was designed for this: use it.

Also see ARMARM v8-A B2.10.2:
"Exclusive access instructions and Shareable memory locations".

Differential Revision: http://reviews.llvm.org/D13033

llvm-svn: 248291
2015-09-22 17:21:44 +00:00
Stephen Canon 8216d88511 Don't raise inexact when lowering ceil, floor, round, trunc.
The C standard has historically not specified whether or not these functions should raise the inexact flag. Traditionally on Darwin, these functions *did* raise inexact, and the llvm lowerings followed that conventions. n1778 (C bindings for IEEE-754 (2008)) clarifies that these functions should not set inexact. This patch brings the lowerings for arm64 and x86 in line with the newly specified behavior.  This also lets us fold some logic into TD patterns, which is nice.

Differential Revision: http://reviews.llvm.org/D12969

llvm-svn: 248266
2015-09-22 11:43:17 +00:00
Geoff Berry 43ec15e57e [AArch64] Improved bitfield instruction selection.
Summary:
For bitfield insert OR matching, check both operands for larger pattern
first before checking for smaller pattern.

Add pattern for unsigned bitfield insert-in-zero done with SHL+AND.

Resolves PR21631.

Reviewers: jmolloy, t.p.northover

Subscribers: aemerson, rengolin, llvm-commits, mcrosier

Differential Revision: http://reviews.llvm.org/D12908

llvm-svn: 248006
2015-09-18 17:11:53 +00:00
Quentin Colombet b4c6886215 [ShrinkWrap] Refactor the handling of infinite loop in the analysis.
- Strenghten the logic to be sure we hoist the restore point out of the current
  loop. (The fixes a bug with infinite loop, added as part of the patch.)
- Walk over the exit blocks of the current loop to conver to the desired restore
  point in one iteration of the update loop.

llvm-svn: 247958
2015-09-17 23:21:34 +00:00
Jun Bum Lim 34b9bd0435 Improve ISel using across lane min/max reduction
In vectorized integer min/max reduction code, the final "reduce" step
is sub-optimal. In AArch64, this change wll combine :
  %svn0 = vector_shuffle %0, undef<2,3,u,u>
  %smax0 = smax %0, svn0
  %svn3 = vector_shuffle %smax0, undef<1,u,u,u>
  %sc = setcc %smax0, %svn3, gt
  %n0 = extract_vector_elt %sc, #0
  %n1 = extract_vector_elt %smax0, #0
  %n2 = extract_vector_elt $smax0, #1
  %result = select %n0, %n1, n2
becomes :
  %1 = smaxv %0
  %result = extract_vector_elt %1, 0

This change extends r246790.

llvm-svn: 247575
2015-09-14 16:19:52 +00:00