Commit Graph

6063 Commits

Author SHA1 Message Date
Andrea Di Biagio eb33134ce7 Simplify code; NFC.
Also, moved test cases from CodeGen/X86/fold-buildvector-bug.ll into
CodeGen/X86/buildvec-insertvec.ll and regenerated CHECK lines using
update_llc_test_checks.py.

llvm-svn: 239142
2015-06-05 10:29:55 +00:00
Simon Pilgrim b4c562de87 [X86][SSE] Added tests for i8/i16 vector shifts
Currently still scalarized, but D9474 should remedy that.

llvm-svn: 239136
2015-06-05 08:24:23 +00:00
Swaroop Sridhar 70d18df18f Statepoint: Fix handling of Far Immediate calls
gc.statepoint intrinsics with a far immediate call target 
were lowered incorrectly as pc-rel32 calls.

This change fixes the problem, and generates an indirect call 
via a scratch register.

For example: 

Intrinsic:
  %safepoint_token = call i32 (i64, i32, void ()*, i32, i32, ...) @llvm.experimental.gc.statepoint.p0f_isVoidf(i64 0, i32 0, void ()* inttoptr (i64 140727162896504 to void ()*), i32 0, i32 0, i32 0, i32 0)

Old Incorrect Lowering:
  callq 140727162896504

New Correct Lowering:
  movabsq $140727162896504, %rax 
  callq *%rax

In lowerCallFromStatepoint(), the callee-target was modified and 
represented as a "TargetConstant" node, rather than a "Constant" node.
Undoing this modification enabled LowerCall() to generate the 
correct CALL instruction.

llvm-svn: 239114
2015-06-04 23:03:21 +00:00
Charles Davis da280728b6 [Target/X86] Don't use callee-saved registers in a Win64 tail call on non-Windows.
Summary:
A small bit that I missed when I updated the X86 backend to account for
the Win64 calling convention on non-Windows. Now we don't use dead
non-volatile registers when emitting a Win64 indirect tail call on
non-Windows.

Should fix PR23710.

Test Plan: Added test for the correct behavior based on the case I posted to PR23710.

Reviewers: rnk

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D10258

llvm-svn: 239111
2015-06-04 22:50:05 +00:00
Benjamin Kramer ff0fb6936b [SDAG switch lowering] Fix switch case -> or merging for 0 and INT_MIN
The big/small ordering here is based on signed values so SmallValue will
be INT_MIN and BigValue 0. This shouldn't be a problem but the code
assumed that BigValue always had more bits set than SmallValue.

We used to just miss the transformation, but a recent refactoring of
mine turned this into an assertion failure.

llvm-svn: 239105
2015-06-04 22:05:51 +00:00
Andrea Di Biagio 9ac8a6b13d [DAGCombiner] Fix wrong folding of a build_vector into a blend with zero.
Method 'visitBUILD_VECTOR' in the DAGCombiner knows how to combine a
build_vector of a bunch of extract_vector_elt nodes and constant zero nodes
into a shuffle blend with a zero vector.

However, method 'visitBUILD_VECTOR' forgot that a floating point
build_vector may contain negative zero as well as positive zero.

Example:

define <2 x double> @example(<2 x double> %A) {
entry:
  %0 = extractelement <2 x double> %A, i32 0
  %1 = insertelement <2 x double> undef, double %0, i32 0
  %2 = insertelement <2 x double> %1, double -0.0, i32 1
  ret <2 x double> %2
}

Before this patch, llc (with -mattr=+sse4.1) wrongly generated
  movq   %xmm0, %xmm0  # xmm0 = xmm0[0],zero

So, the sign bit of the negative zero was effectively lost.

This patch fixes the problem by adding explicit checks for positive zero.

With this patch, llc produces the following code for the example above:
  movhpd .LCPI0_0(%rip), %xmm0

where .LCPI0_0 referes to a 'double -0'.

llvm-svn: 239070
2015-06-04 19:15:01 +00:00
Hans Wennborg d922915685 Switch lowering: fix assert in buildBitTests (PR23738)
When checking (High - Low + 1).sle(BitWidth), BitWidth would be truncated
to the size of the left-hand side. In the case of this PR, the left-hand
side was i4, so BitWidth=64 got truncated to 0 and the assert failed.

llvm-svn: 239048
2015-06-04 15:55:00 +00:00
Elena Demikhovsky 2f1a0dabd0 AVX-512: I brought back vector-shuffle-512-v8.ll test.
I re-generated it after all AVX-512 shuffle optimizations.

llvm-svn: 239026
2015-06-04 07:49:56 +00:00
Sanjay Patel 667a7e2a0f make reciprocal estimate code generation more flexible by adding command-line options (3rd try)
The first try (r238051) to land this was reverted due to ExecutionEngine build failure;
that was hopefully addressed by r238788.

The second try (r238842) to land this was reverted due to BUILD_SHARED_LIBS failure;
that was hopefully addressed by r238953.

This patch adds a TargetRecip class for processing many recip codegen possibilities.
The class is intended to handle both command-line options to llc as well
as options passed in from a front-end such as clang with the -mrecip option.

The x86 backend is updated to use the new functionality.
Only -mcpu=btver2 with -ffast-math should see a functional change from this patch.
All other x86 CPUs continue to *not* use reciprocal estimates by default with -ffast-math.

Differential Revision: http://reviews.llvm.org/D8982

llvm-svn: 239001
2015-06-04 01:32:35 +00:00
Asaf Badouh 402ebb34af re-apply 238809
AVX-512: Implemented GETEXP instruction for KNL and SKX
Added rounding mode modifier for SQRTPS/PD
Added tests for encoding and intrinsics.
CR:
http://reviews.llvm.org/D9991

llvm-svn: 238923
2015-06-03 13:41:48 +00:00
Elena Demikhovsky 21de893377 AVX-512: VSHUFPD instruction selection - code improvements
llvm-svn: 238918
2015-06-03 11:21:01 +00:00
Rafael Espindola cf8beece97 Revert "make reciprocal estimate code generation more flexible by adding command-line options (2nd try)"
This reverts commit r238842.

It broke -DBUILD_SHARED_LIBS=ON build.

llvm-svn: 238900
2015-06-03 05:32:44 +00:00
Sanjoy Das 513aadecac [SelectionDAG] Fix PR23603.
Summary:
LLVM's MI level notion of invariant_load is different from LLVM's IR
level notion of invariant_load with respect to dereferenceability.  The
IR notion of invariant_load only guarantees that all *non-faulting*
invariant loads result in the same value.  The MI notion of invariant
load guarantees that the load can be legally moved to any location
within its containing function.  The MI notion of invariant_load is
stronger than the IR notion of invariant_load -- an MI invariant_load is
an IR invariant_load + a guarantee that the location being loaded from
is dereferenceable throughout the function's lifetime.

Reviewers: hfinkel, reames

Subscribers: llvm-commits

Differential Revision: http://reviews.llvm.org/D10075

llvm-svn: 238881
2015-06-02 22:33:30 +00:00
Sanjay Patel 6f031d848e make reciprocal estimate code generation more flexible by adding command-line options (2nd try)
The first try (r238051) to land this was reverted due to bot failures
that were hopefully addressed by r238788.

This patch adds a TargetRecip class for processing many recip codegen possibilities.
The class is intended to handle both command-line options to llc as well
as options passed in from a front-end such as clang with the -mrecip option.

The x86 backend is updated to use the new functionality.
Only -mcpu=btver2 with -ffast-math should see a functional change from this patch.
All other x86 CPUs continue to *not* use reciprocal estimates by default with -ffast-math.

Differential Revision: http://reviews.llvm.org/D8982

llvm-svn: 238842
2015-06-02 15:28:15 +00:00
Elena Demikhovsky 44a129c533 AVX-512: Shorten implementation of lowerV16X32VectorShuffle()
using lowerVectorShuffleWithSHUFPS() and other shuffle-helpers routines.
Added matching of VALIGN instruction.

llvm-svn: 238830
2015-06-02 13:43:18 +00:00
Asaf Badouh 8d897dd05f revert 238809
llvm-svn: 238810
2015-06-02 07:45:19 +00:00
Asaf Badouh 17de10f37e AVX-512: Implemented GETEXP instruction for KNL and SKX
Added rounding mode modifier for SQRTPS/PD
Added tests for encoding and intrinsics.

llvm-svn: 238809
2015-06-02 07:18:14 +00:00
Elena Demikhovsky 67afb630e1 AVX-512: Optimized vector shuffle for v16f32 and v16i32 types.
llvm-svn: 238743
2015-06-01 13:26:18 +00:00
Elena Demikhovsky 0c41088ebf AVX-512: Implemented vector shuffle lowering for v8i64 and v8f64 types.
I removed the vector-shuffle-512-v8.ll, it is auto-generated test, not valid any more.

llvm-svn: 238735
2015-06-01 09:49:53 +00:00
Elena Demikhovsky dd68d0cb0f AVX-512: Fixed a bug in compress and expand intrinsics.
By Igor Breger (igor.breger@intel.com)

llvm-svn: 238724
2015-06-01 06:30:13 +00:00
Chandler Carruth cb58910ce8 [x86] Unify the horizontal adding used for popcount lowering taking the
best approach of each.

For vNi16, we use SHL + ADD + SRL pattern that seem easily the best.

For vNi32, we use the PUNPCK + PSADBW + PACKUSWB pattern. In some cases
there is a huge improvement with this in IACA's estimated throughput --
over 2x higher throughput!!!! -- but the measurements are too good to be
true. In one narrow case, the SHL + ADD + SHL + ADD + SRL pattern looks
slightly faster, but I'm not sure I believe any of the measurements at
this point. Both are the exact same uops though. Hard to be confident of
anything past that.

If anyone wants to collect very detailed (Agner-level) timings with the
result of this patch, or with the i32 case replaced with SHL + ADD + SHl
+ ADD + SRL, I'd be very interested. Note that you'll need to test it on
both Ivybridge and Haswell, with both SSE3, SSSE3, and AVX selected as
I saw unique behavior in each of these buckets with IACA all of which
should be checked against measured performance.

But this patch is still a useful improvement by dropping duplicate work
and getting the much nicer PSADBW lowering for v2i64.

I'd still like to rephrase this in terms of generic horizontal sum. It's
a bit lame to have a special case of that just for popcount.

llvm-svn: 238652
2015-05-30 10:35:03 +00:00
Chandler Carruth 3bedf4407b [x86] Update the order of instructions after I switched to a bitcast
helper that skips creating a cast when it isn't necessary.

It's really somewhat concerning that this was caused by the the presence
of a no-op bitcast, but...

llvm-svn: 238642
2015-05-30 06:02:37 +00:00
Chandler Carruth 2599da3cfd [x86] Restore the bitcasts I removed when refactoring this to avoid
shifting vectors of bytes as x86 doesn't have direct support for that.

This removes a bunch of redundant masking in the generated code for SSE2
and SSE3.

In order to avoid the really significant code size growth this would
have triggered, I also factored the completely repeatative logic for
shifting and masking into two lambdas which in turn makes all of this
much easier to read IMO.

llvm-svn: 238637
2015-05-30 04:05:11 +00:00
Chandler Carruth 6ba9730a4e [x86] Implement a faster vector population count based on the PSHUFB
in-register LUT technique.

Summary:
A description of this technique can be found here:
http://wm.ite.pl/articles/sse-popcount.html

The core of the idea is to use an in-register lookup table and the
PSHUFB instruction to compute the population count for the low and high
nibbles of each byte, and then to use horizontal sums to aggregate these
into vector population counts with wider element types.

On x86 there is an instruction that will directly compute the horizontal
sum for the low 8 and high 8 bytes, giving vNi64 popcount very easily.
Various tricks are used to get vNi32 and vNi16 from the vNi8 that the
LUT computes.

The base implemantion of this, and most of the work, was done by Bruno
in a follow up to D6531. See Bruno's detailed post there for lots of
timing information about these changes.

I have extended Bruno's patch in the following ways:

0) I committed the new tests with baseline sequences so this shows
   a diff, and regenerated the tests using the update scripts.

1) Bruno had noticed and mentioned in IRC a redundant mask that
   I removed.

2) I introduced a particular optimization for the i32 vector cases where
   we use PSHL + PSADBW to compute the the low i32 popcounts, and PSHUFD
   + PSADBW to compute doubled high i32 popcounts. This takes advantage
   of the fact that to line up the high i32 popcounts we have to shift
   them anyways, and we can shift them by one fewer bit to effectively
   divide the count by two. While the PSHUFD based horizontal add is no
   faster, it doesn't require registers or load traffic the way a mask
   would, and provides more ILP as it happens on different ports with
   high throughput.

3) I did some code cleanups throughout to simplify the implementation
   logic.

4) I refactored it to continue to use the parallel bitmath lowering when
   SSSE3 is not available to preserve the performance of that version on
   SSE2 targets where it is still much better than scalarizing as we'll
   still do a bitmath implementation of popcount even in scalar code
   there.

With #1 and #2 above, I analyzed the result in IACA for sandybridge,
ivybridge, and haswell. In every case I measured, the throughput is the
same or better using the LUT lowering, even v2i64 and v4i64, and even
compared with using the native popcnt instruction! The latency of the
LUT lowering is often higher than the latency of the scalarized popcnt
instruction sequence, but I think those latency measurements are deeply
misleading. Keeping the operation fully in the vector unit and having
many chances for increased throughput seems much more likely to win.

With this, we can lower every integer vector popcount implementation
using the LUT strategy if we have SSSE3 or better (and thus have
PSHUFB). I've updated the operation lowering to reflect this. This also
fixes an issue where we were scalarizing horribly some AVX lowerings.

Finally, there are some remaining cleanups. There is duplication between
the two techniques in how they perform the horizontal sum once the byte
population count is computed. I'm going to factor and merge those two in
a separate follow-up commit.

Differential Revision: http://reviews.llvm.org/D10084

llvm-svn: 238636
2015-05-30 03:20:59 +00:00
Chandler Carruth c2e400de83 [x86] Restructure the parallel bitmath lowering of popcount into
a separate routine, generalize it to work for all the integer vector
sizes, and do general code cleanups.

This dramatically improves lowerings of byte and short element vector
popcount, but more importantly it will make the introduction of the
LUT-approach much cleaner.

The biggest cleanup I've done is to just force the legalizer to do the
bitcasting we need. We run these iteratively now and it makes the code
much simpler IMO. Other changes were minor, and mostly naming and
splitting things up in a way that makes it more clear what is going on.

The other significant change is to use a different final horizontal sum
approach. This is the same number of instructions as the old method, but
shifts left instead of right so that we can clear everything but the
final sum with a single shift right. This seems likely better than
a mask which will usually have to read the mask from memory. It is
certaily fewer u-ops. Also, this will be temporary. This and the LUT
approach share the need of horizontal adds to finish the computation,
and we have more clever approaches than this one that I'll switch over
to.

llvm-svn: 238635
2015-05-30 03:20:55 +00:00
Reid Kleckner e6531a5588 [WinEH] Adjust the 32-bit SEH prologue to better match reality
It turns out that _except_handler3 and _except_handler4 really use the
same stack allocation layout, at least today. They just make different
choices about encoding the LSDA.

This is in preparation for lowering the llvm.eh.exceptioninfo().

llvm-svn: 238627
2015-05-29 22:57:46 +00:00
Reid Kleckner 173a72524f Disable FP elimination in funcs using 32-bit MSVC EH personalities
The value in 'ebp' acts as an implicit argument to the outlined
handlers, and is recovered with frameaddress(1).

llvm-svn: 238619
2015-05-29 21:58:11 +00:00
Matthias Braun 165d467125 MachineCopyPropagation: Remove the copies instead of using KILL instructions.
For some history here see the commit messages of r199797 and r169060.

The original intent was to fix cases like:

%EAX<def> = COPY %ECX<kill>, %RAX<imp-def>
%RCX<def> = COPY %RAX<kill>

where simply removing the copies would have RCX undefined as in terms of
machine operands only the ECX part of it is defined. The machine
verifier would complain about this so 169060 changed such COPY
instructions into KILL instructions so some super-register imp-defs
would be preserved. In r199797 it was finally decided to always do this
regardless of super-register defs.

But this is wrong, consider:
R1 = COPY R0
...
R0 = COPY R1
getting changed to:
R1 = KILL R0
...
R0 = KILL R1

It now looks like R0 dies at the first KILL and won't be alive until the
second KILL, while in reality R0 is alive and must not change in this
part of the program.

As this only happens after register allocation there is not much code
still performing liveness queries so the issue was not noticed.  In fact
I didn't manage to create a testcase for this, without unrelated changes
I am working on at the moment.

The fix is simple: As of r223896 the MachineVerifier allows reads from
partially defined registers, so the whole transforming COPY->KILL thing
is not necessary anymore. This patch also changes a similar (but more
benign case as the def and src are the same register) case in the
VirtRegRewriter.

Differential Revision: http://reviews.llvm.org/D10117

llvm-svn: 238588
2015-05-29 18:19:25 +00:00
Reid Kleckner 1d3d4adbb9 [WinEH] Emit EH tables for __CxxFrameHandler3 on 32-bit x86
Small (really small!) C++ exception handling examples work on 32-bit x86
now.

This change disables the use of .seh_* directives in WinException when
CFI is not in use. It also uses absolute symbol references in the tables
instead of imagerel32 relocations.

Also fixes a cache invalidation bug in MMI personality classification.

llvm-svn: 238575
2015-05-29 17:00:57 +00:00
Quentin Colombet 5f834c2260 Add a test for the MachineCopyPropagation change landed in r238518.
llvm-svn: 238537
2015-05-29 01:40:00 +00:00
Chandler Carruth 39691c41bf [x86] Move the vector popcount tests into non-ISA files, and instead
organize them by the width of vector.

This makes it a lot easier to see that we're covering all of the vector
types but not doing so excessively. This also adds tests across the
spectrum of SSE versions in addition to the AVX versions.

If you're really tired of seeing the *massive* sprawl of scalarized code
for this, don't worry, I'm just about to land Bruno's patch that
dramatically improve the situation for SSSE3 and newer.

llvm-svn: 238520
2015-05-28 22:46:48 +00:00
David Majnemer 4e6438c534 Add testcase for r238503.
llvm-svn: 238515
2015-05-28 22:12:27 +00:00
Reid Kleckner fe4d491bd9 [WinEH] Start inserting state number stores for C++ EH
This moves all the state numbering code for C++ EH to WinEHPrepare so
that we can call it from the X86 state numbering IR pass that runs
before isel.

Now we just call the same state numbering machinery and insert a bunch
of stores. It also populates MachineModuleInfo with information about
the current function.

llvm-svn: 238514
2015-05-28 22:00:24 +00:00
Reid Kleckner 80956a0142 Disable x86 tail call optimizations that jump through GOT
For x86 targets, do not do sibling call optimization when materializing
the callee's address would require a GOT relocation. We can still do
tail calls to internal functions, hidden functions, and protected
functions, because they do not require this kind of relocation. It is
still possible to get GOT relocations when the user explicitly asks for
it with musttail or -tailcallopt, both of which are supposed to
guarantee TCO.

Based on a patch by Chih-hung Hsieh.

Reviewers: srhines, timmurray, danalbert, enh, void, nadav, rnk

Subscribers: joerg, davidxl, llvm-commits

Differential Revision: http://reviews.llvm.org/D9799

llvm-svn: 238487
2015-05-28 20:44:28 +00:00
Chandler Carruth 88862eaefa [x86] Refactor the tests for popcnt.
Extracted from the D6531 patch by Bruno Cardoso Lopes, and re-generated
to reflect the current state of the world. This should let Bruno's D6531
actually show the delta between the approaches by running the x86 test
case update script after re-building.

llvm-svn: 238391
2015-05-28 02:40:15 +00:00
Elena Demikhovsky 86c7b46680 AVX-512: Fixed a bug in extracting subvector from v64i1
By Igor Breger (igor.breger@intel.com)

llvm-svn: 238322
2015-05-27 14:09:33 +00:00
Elena Demikhovsky 3948c590e3 AVX-512: Implemented all forms of sign-extend and zero-extend instructions for KNL and SKX
Implemented DAG lowering for all these forms.
Added tests for DAG lowering and encoding.

By Igor Breger (igor.breger@intel.com)

llvm-svn: 238301
2015-05-27 08:15:19 +00:00
Quentin Colombet aa8020752e [X86] Implement the support for shrink-wrapping.
With this patch the x86 backend is now shrink-wrapping capable
and this functionality can be tested by using the
-enable-shrink-wrap switch.

The next step is to make more test and enable shrink-wrapping by
default for x86.

Related to <rdar://problem/20821487>

llvm-svn: 238293
2015-05-27 06:28:41 +00:00
Rafael Espindola 2fb8401b2a Print "lock \t foo" instead of "lock \n foo".
This gets gas and llc -filetype=obj to agree on the order of prefixes.

For llvm-mc we need to fix the asm parser to know that it makes a difference
on which line the "lock" is in.

Part of pr23594.

llvm-svn: 238232
2015-05-26 18:35:10 +00:00
Elena Demikhovsky b2b901c607 AVX-512: fixed a bug in lowering VSELECT for 512-bit vector
https://llvm.org/bugs/show_bug.cgi?id=23634

llvm-svn: 238195
2015-05-26 11:32:39 +00:00
Simon Pilgrim 0be4fa761f [X86][AVX2] Vectorized i16 shift operators
Part of D9474, this patch extends AVX2 v16i16 types to 2 x 8i32 vectors and uses i32 shift variable shifts before packing back to i16.

Adds AVX2 tests for v8i16 and v16i16 

llvm-svn: 238149
2015-05-25 17:49:13 +00:00
Michael Kuperstein f145228676 [X86] When pattern-matching scalar FMA3 intrinsics, don't re-arrange the first and second operands.
The semantics of the scalar FMA intrinsics are that the high vector elements are copied from the first source.
The existing pattern switches src1 and src2 around, to match the "213" order, which ends up tying the original src2 to the dest. Since the actual scalar fma3 instructions copy the high elements from the dest register, the wrong values are copied.

This modifies the pattern to leave src1 and src2 in their original order.

Differential Revision: http://reviews.llvm.org/D9908

llvm-svn: 238131
2015-05-25 12:35:25 +00:00
Elena Demikhovsky 1c1391ba24 Added promotion to EXTRACT_SUBVECTOR operand.
I encountered with this case in one of KNL tests for i1 vectors.
v16i1 = EXTRACT_SUBVECTOR v32i1, x

llvm-svn: 238130
2015-05-25 11:33:13 +00:00
Akira Hatanaka aa115fbb7b Remove unnecessary command line option "-disable-fp-elim".
This option currently has no effect as function attribute
"no-frame-pointer-elim=false" overrides it.

llvm-svn: 238077
2015-05-23 00:31:56 +00:00
Rafael Espindola 445712264d Revert "make reciprocal estimate code generation more flexible by adding command-line options"
This reverts commit r238051.

It broke some bots:

http://lab.llvm.org:8011/builders/llvm-ppc64-linux1/builds/18190

llvm-svn: 238075
2015-05-23 00:22:44 +00:00
Sanjay Patel ba2ba80302 make reciprocal estimate code generation more flexible by adding command-line options
This patch adds a class for processing many recip codegen possibilities.
The TargetRecip class is intended to handle both command-line options to llc as well
as options passed in from a front-end such as clang with the -mrecip option.

The x86 backend is updated to use the new functionality.
Only -mcpu=btver2 with -ffast-math should see a functional change from this patch.
All other CPUs continue to *not* use reciprocal estimates by default with -ffast-math.

Differential Revision: http://reviews.llvm.org/D8982

llvm-svn: 238051
2015-05-22 21:10:06 +00:00
Quentin Colombet 494eb606cd Reapply r238011 with a fix for the trap instruction.
The problem was that I slipped a change required for shrink-wrapping, namely I
used getFirstTerminator instead of the getLastNonDebugInstr that was here before
the refactoring, whereas the surrounding code is not yet patched for that.

Original message:
[X86] Refactor the prologue emission to prepare for shrink-wrapping.

- Add a late pass to expand pseudo instructions (tail call and EH returns).
 Instead of doing it in the prologue emission.
- Factor some static methods in X86FrameLowering to ease code sharing.

NFC.

Related to <rdar://problem/20821487>

llvm-svn: 238035
2015-05-22 18:10:47 +00:00
Elena Demikhovsky 4aed59fc89 AVX-512: Enabled SSE intrinsics on AVX-512.
Predicate UseAVX depricates pattern selection on AVX-512.
This predicate is necessary for DAG selection to select EVEX form.
But mapping SSE intrinsics to AVX-512 instructions is not ready yet.
So I replaced UseAVX with HasAVX for intrinsics patterns.

llvm-svn: 237903
2015-05-21 14:01:32 +00:00
Simon Pilgrim e054199354 [X86][SSE] Improve support for 128-bit vector sign extension
This patch improves support for sign extension of the lower lanes of vectors of integers by making use of the SSE41 pmovsx* sign extension instructions where possible, and optimizing the sign extension by shifts on pre-SSE41 targets (avoiding the use of i64 arithmetic shifts which require scalarization).

It converts SIGN_EXTEND nodes to SIGN_EXTEND_VECTOR_INREG where necessary, that more closely matches the pmovsx* instruction than the default approach of using SIGN_EXTEND_INREG which splits the operation (into an ANY_EXTEND lowered to a shuffle followed by shifts) making instruction matching difficult during lowering. Necessary support for SIGN_EXTEND_VECTOR_INREG has been added to the DAGCombiner.

Differential Revision: http://reviews.llvm.org/D9848

llvm-svn: 237885
2015-05-21 10:05:03 +00:00
Reid Kleckner 2632f0df48 [WinEH] Store pointers to the LSDA in the exception registration object
We aren't yet emitting the LSDA yet, so this will still fail to
assemble.

llvm-svn: 237852
2015-05-20 23:08:04 +00:00