1
0
mirror of https://github.com/RPCS3/llvm-mirror.git synced 2024-10-27 22:12:47 +01:00
Commit Graph

86 Commits

Author SHA1 Message Date
Eric Christopher
7880d61aac Make early if conversion dependent upon the subtarget and add
a subtarget hook to enable. Unconditionally add to the pass pipeline
for targets that might want to use it. No functional change.

llvm-svn: 209340
2014-05-21 23:40:26 +00:00
Eric Christopher
1091ab4275 Save the optimization level the subtarget was created with in a
member variable and sink the initialization of crbits into the
subtarget feature reset code.

No functional change, but this refactor will be used in a future
commit.

llvm-svn: 208726
2014-05-13 20:49:08 +00:00
Craig Topper
dcce1d897e [C++11] Add 'override' keywords and remove 'virtual'. Additionally add 'final' and leave 'virtual' on some methods that are marked virtual without overriding anything and have no obvious overrides themselves. PowerPC edition
llvm-svn: 207504
2014-04-29 07:57:37 +00:00
Hal Finkel
8b6358ead9 [PowerPC] Initial support for the VSX instruction set
VSX is an ISA extension supported on the POWER7 and later cores that enhances
floating-point vector and scalar capabilities. Among other things, this adds
<2 x double> support and generally helps to reduce register pressure.

The interesting part of this ISA feature is the register configuration: there
are 64 new 128-bit vector registers, the 32 of which are super-registers of the
existing 32 scalar floating-point registers, and the second 32 of which overlap
with the 32 Altivec vector registers. This makes things like vector insertion
and extraction tricky: this can be free but only if we force a restriction to
the right register subclass when needed. A new "minipass" PPCVSXCopy takes care
of this (although it could do a more-optimal job of it; see the comment about
unnecessary copies below).

Please note that, currently, VSX is not enabled by default when targeting
anything because it is not yet ready for that.  The assembler and disassembler
are fully implemented and tested. However:

 - CodeGen support causes miscompiles; test-suite runtime failures:
      MultiSource/Benchmarks/FreeBench/distray/distray
      MultiSource/Benchmarks/McCat/08-main/main
      MultiSource/Benchmarks/Olden/voronoi/voronoi
      MultiSource/Benchmarks/mafft/pairlocalalign
      MultiSource/Benchmarks/tramp3d-v4/tramp3d-v4
      SingleSource/Benchmarks/CoyoteBench/almabench
      SingleSource/Benchmarks/Misc/matmul_f64_4x4

 - The lowering currently falls back to using Altivec instructions far more
   than it should. Worse, there are some things that are scalarized through the
   stack that shouldn't be.

 - A lot of unnecessary copies make it past the optimizers, and this needs to
   be fixed.

 - Many more regression tests are needed.

Normally, I'd fix these things prior to committing, but there are some
students and other contributors who would like to work this, and so it makes
sense to move this development process upstream where it can be subject to the
regular code-review procedures.

llvm-svn: 203768
2014-03-13 07:58:58 +00:00
Rafael Espindola
72416905a2 Don't avoid cfi instructions on the bg/p.
The integrated assembler now works for ppc. Since this was the last use of the
bg/p predicate and Hal says that it is now dead, drop the predicate too.

llvm-svn: 203269
2014-03-07 19:04:12 +00:00
Hal Finkel
883c64377d Add CR-bit tracking to the PowerPC backend for i1 values
This change enables tracking i1 values in the PowerPC backend using the
condition register bits. These bits can be treated on PowerPC as separate
registers; individual bit operations (and, or, xor, etc.) are supported.
Tracking booleans in CR bits has several advantages:

 - Reduction in register pressure (because we no longer need GPRs to store
   boolean values).

 - Logical operations on booleans can be handled more efficiently; we used to
   have to move all results from comparisons into GPRs, perform promoted
   logical operations in GPRs, and then move the result back into condition
   register bits to be used by conditional branches. This can be very
   inefficient, because the throughput of these CR <-> GPR moves have high
   latency and low throughput (especially when other associated instructions
   are accounted for).

 - On the POWER7 and similar cores, we can increase total throughput by using
   the CR bits. CR bit operations have a dedicated functional unit.

Most of this is more-or-less mechanical: Adjustments were needed in the
calling-convention code, support was added for spilling/restoring individual
condition-register bits, and conditional branch instruction definitions taking
specific CR bits were added (plus patterns and code for generating bit-level
operations).

This is enabled by default when running at -O2 and higher. For -O0 and -O1,
where the ability to debug is more important, this feature is disabled by
default. Individual CR bits do not have assigned DWARF register numbers,
and storing values in CR bits makes them invisible to the debugger.

It is critical, however, that we don't move i1 values that have been promoted
to larger values (such as those passed as function arguments) into bit
registers only to quickly turn around and move the values back into GPRs (such
as happens when values are returned by functions). A pair of target-specific
DAG combines are added to remove the trunc/extends in:
  trunc(binary-ops(binary-ops(zext(x), zext(y)), ...)
and:
  zext(binary-ops(binary-ops(trunc(x), trunc(y)), ...)
In short, we only want to use CR bits where some of the i1 values come from
comparisons or are used by conditional branches or selects. To put it another
way, if we can do the entire i1 computation in GPRs, then we probably should
(on the POWER7, the GPR-operation throughput is higher, and for all cores, the
CR <-> GPR moves are expensive).

POWER7 test-suite performance results (from 10 runs in each configuration):

SingleSource/Benchmarks/Misc/mandel-2: 35% speedup
MultiSource/Benchmarks/Prolangs-C++/city/city: 21% speedup
MultiSource/Benchmarks/MiBench/automotive-susan: 23% speedup
SingleSource/Benchmarks/CoyoteBench/huffbench: 13% speedup
SingleSource/Benchmarks/Misc-C++/Large/sphereflake: 13% speedup
SingleSource/Benchmarks/Misc-C++/mandel-text: 10% speedup

SingleSource/Benchmarks/Misc-C++-EH/spirit: 10% slowdown
MultiSource/Applications/lemon/lemon: 8% slowdown

llvm-svn: 202451
2014-02-28 00:27:01 +00:00
Rafael Espindola
db206ff5b6 Move PPC's getDataLayoutString out of line and document it better.
llvm-svn: 196987
2013-12-11 00:09:06 +00:00
Eric Christopher
25d167bd58 Add support for the VSX target attribute. No functional change
as we don't actually use it to emit any code yet.

llvm-svn: 192837
2013-10-16 20:38:58 +00:00
Hal Finkel
5ddc53b3ef Mark PPC MFTB and DST (and friends) as deprecated
Use the new instruction deprecation feature to mark mftb (now replaced with
mfspr) and dst (along with the other Altivec cache control instructions) as
deprecated when targeting cores supporting at least ISA v2.03.

llvm-svn: 190605
2013-09-12 14:40:06 +00:00
Hal Finkel
bad4087f4a Enable MI scheduling (and CodeGen AA) by default for embedded PPC cores
For embedded PPC cores (especially the A2 core), using the MI scheduler with AA
is far superior to the other scheduling options.

llvm-svn: 190558
2013-09-11 23:05:25 +00:00
Hal Finkel
9591220c33 Add the PPC fcpsgn instruction
Modern PPC cores support a floating-point copysign instruction, and we can use
this to lower the FCOPYSIGN node (which is created from calls to the libm
copysign function). A couple of extra patterns are necessary because the
operand types of FCOPYSIGN need not agree.

llvm-svn: 188653
2013-08-19 05:01:02 +00:00
Bill Schmidt
88e45cc177 [PowerPC] Support powerpc64le as a syntax-checking target.
This patch provides basic support for powerpc64le as an LLVM target.
However, use of this target will not actually generate little-endian
code.  Instead, use of the target will cause the correct little-endian
built-in defines to be generated, so that code that tests for
__LITTLE_ENDIAN__, for example, will be correctly parsed for
syntax-only testing.  Code generation will otherwise be the same as
powerpc64 (big-endian), for now.

The patch leaves open the possibility of creating a little-endian
PowerPC64 back end, but there is no immediate intent to create such a
thing.

The LLVM portions of this patch simply add ppc64le coverage everywhere
that ppc64 coverage currently exists.  There is nothing of any import
worth testing until such time as little-endian code generation is
implemented.  In the corresponding Clang patch, there is a new test
case variant to ensure that correct built-in defines for little-endian
code are generated.

llvm-svn: 187179
2013-07-26 01:35:43 +00:00
Hal Finkel
4fda98b03b PPC: Refactoring to support subtarget feature changing
This change mirrors the changes that were made to the X86 and ARM targets to
support subtarget feature changing. As indicated in r182899, the mechanism is
still undergoing revision, and so as with the X86 and ARM targets, there is no
test case yet (there is no effective functionality change).

llvm-svn: 186357
2013-07-15 22:29:40 +00:00
Bill Schmidt
4a8c7e0dd6 [PowerPC] FreeBSD does not require f128 in its data layout string.
Long double is 64 bits on FreeBSD PPC, so the f128 entry is superfluous.

llvm-svn: 185583
2013-07-03 21:03:35 +00:00
Hal Finkel
0208f7c744 Use PPC reciprocal estimates with Newton iteration in fast-math mode
When unsafe FP math operations are enabled, we can use the fre[s] and
frsqrte[s] instructions, which generate reciprocal (sqrt) estimates, together
with some Newton iteration, in order to quickly generate floating-point
division and sqrt results. All of these instructions are separately optional,
and so each has its own feature flag (except for the Altivec instructions,
which are covered under the existing Altivec flag). Doing this is not only
faster than using the IEEE-compliant fdiv/fsqrt instructions, but allows these
computations to be pipelined with other computations in order to hide their
overall latency.

I've also added a couple of missing fnmsub patterns which turned out to be
missing (but are necessary for good code generation of the Newton iterations).
Altivec needs a similar fix, but that will probably be more complicated because
fneg is expanded for Altivec's v4f32.

llvm-svn: 178617
2013-04-03 04:01:11 +00:00
Hal Finkel
f184647a53 Add more PPC floating-point conversion instructions
The P7 and A2 have additional floating-point conversion instructions which
allow a direct two-instruction sequence (plus load/store) to convert from all
combinations (signed/unsigned i32/i64) <--> (float/double) (on previous cores,
only some combinations were directly available).

llvm-svn: 178480
2013-04-01 17:52:07 +00:00
Hal Finkel
085f61160f Add the PPC lfiwax instruction
This instruction is available on modern PPC64 CPUs, and is now used
to improve the SINT_TO_FP lowering (by eliminating the need for the
separate sign extension instruction and decreasing the amount of
needed stack space).

llvm-svn: 178446
2013-03-31 10:12:51 +00:00
Hal Finkel
3493fd8e51 Add PPC FP rounding instructions fri[mnpz]
These instructions are available on the P5x (and later) and on the A2. They
implement the standard floating-point rounding operations (floor, trunc, etc.).
One caveat: frin (round to nearest) does not implement "ties to even", and so
is only enabled in fast-math mode.

llvm-svn: 178337
2013-03-29 08:57:48 +00:00
Hal Finkel
f359927db6 Add the PPC64 ldbrx/stdbrx instructions
These are 64-bit load/store with byte-swap, and available on the P7 and the A2.
Like the similar instructions for 16- and 32-bit words, these are matched in the
target DAG-combine phase against load/store-bswap pairs.

llvm-svn: 178276
2013-03-28 19:25:55 +00:00
Hal Finkel
c21c3cf09e Add the PPC64 popcntd instruction
PPC ISA 2.06 (P7, A2, etc.) has a popcntd instruction. Add this instruction and
tell TTI about it so that popcount-loop recognition will know about it.

llvm-svn: 178233
2013-03-28 13:29:47 +00:00
Bill Schmidt
d3beefd1a4 LLVM enablement for some older PowerPC CPUs
llvm-svn: 174230
2013-02-01 22:59:51 +00:00
Hal Finkel
7969f87a01 Add definitions for the PPC a2q core marked as having QPX available
This is the first commit of a large series which will add support for the
QPX vector instruction set to the PowerPC backend. This instruction set is
used on the IBM Blue Gene/Q supercomputers.

llvm-svn: 173973
2013-01-30 21:17:42 +00:00
Hal Finkel
16067bcbfd Add isBGQ method to PPCSubtarget
This function will be used in future commits.

llvm-svn: 173729
2013-01-29 00:22:47 +00:00
Chandler Carruth
a98c778194 Sort includes for all of the .h files under the 'lib' tree. These were
missed in the first pass because the script didn't yet handle include
guards.

Note that the script is now able to handle all of these headers without
manual edits. =]

llvm-svn: 169224
2012-12-04 07:12:27 +00:00
NAKAMURA Takumi
7d3154afaa PPCSubtarget.h: Add explicit braces.
llvm-svn: 166932
2012-10-29 15:51:42 +00:00
NAKAMURA Takumi
faa1c78982 PPCSubtarget.h: Whitespace.
llvm-svn: 166931
2012-10-29 15:51:35 +00:00
Bill Schmidt
2682b73f6d This patch adds alignment information for long double to the 64-bit PowerPC
ELF subtarget.

The existing logic is used as a fallback to avoid any changes to the Darwin
ABI.  PPC64 ELF now has two possible data layout strings: one for FreeBSD,
which requires 8-byte alignment, and a default string that requires
16-byte alignment.

I've added a test for PPC64 Linux to verify the 16-byte alignment.  If
somebody wants to add a separate test for FreeBSD, that would be great.

Note that there is a companion patch to update the alignment information
in Clang, which I am committing now as well.

llvm-svn: 166928
2012-10-29 14:59:36 +00:00
Micah Villmow
bb1a25cd67 Move TargetData to DataLayout.
llvm-svn: 165402
2012-10-08 16:38:25 +00:00
Hal Finkel
0673920af6 Add PPC Freescale e500mc and e5500 subtargets.
Add subtargets for Freescale e500mc (32-bit) and e5500 (64-bit) to
the PowerPC backend.

Patch by Tobias von Koch.

llvm-svn: 162764
2012-08-28 16:12:39 +00:00
Hal Finkel
ebe9ea8bd7 Add support for the PPC isel instruction.
The isel (integer select) instruction is supported on the 440 and A2
embedded cores and on the POWER7.

llvm-svn: 159045
2012-06-22 23:10:08 +00:00
Hal Finkel
fa52a34d78 Rename the PPC target feature gpul to mfocrf.
The PPC target feature gpul (IsGigaProcessor) was only used for one thing:
To enable the generation of the MFOCRF instruction. Furthermore, this
instruction is available on other PPC cores outside of the G5 line. This
feature now corresponds to the HasMFOCRF flag.

No functionality change.

llvm-svn: 158323
2012-06-11 19:57:01 +00:00
Hal Finkel
ab5027a1a2 Add POWER6 and POWER7 CPU types to the PPC backend.
No functional change; these will be used by upcoming scheduler enhancements.

llvm-svn: 158313
2012-06-11 15:43:08 +00:00
Hal Finkel
63edfabaaf The binutils for the IBM BG/P are too old to support CFI.
llvm-svn: 153886
2012-04-02 19:09:04 +00:00
Hal Finkel
fd26145bc6 Add instruction itinerary for the PPC64 A2 core.
This adds a full itinerary for IBM's PPC64 A2 embedded core. These
cores form the basis for the CPUs in the new IBM BG/Q supercomputer.

llvm-svn: 153842
2012-04-01 19:22:40 +00:00
Jia Liu
b077b6085d Emacs-tag and some comment fix for all ARM, CellSPU, Hexagon, MBlaze, MSP430, PPC, PTX, Sparc, X86, XCore.
llvm-svn: 150878
2012-02-18 12:03:15 +00:00
Hal Finkel
e0f1d3fc22 update PPC 940 hazard rec. to function in postRA mode
llvm-svn: 145676
2011-12-02 04:58:02 +00:00
Hal Finkel
74543873a4 Add PPC 440 scheduler and some associated tests
llvm-svn: 142170
2011-10-17 04:03:49 +00:00
Evan Cheng
18acf2200c Compute feature bits at time of MCSubtargetInfo initialization.
llvm-svn: 134606
2011-07-07 07:07:08 +00:00
Roman Divacky
eae7daa59b Make the i64 and f64 be 64bit ABI aligned in the target description.
This is what both the ABI and clang says.

llvm-svn: 134367
2011-07-03 16:24:07 +00:00
Evan Cheng
018b2055fc Rename XXXGenSubtarget.inc to XXXGenSubtargetInfo.inc for consistency.
llvm-svn: 134281
2011-07-01 22:36:09 +00:00
Evan Cheng
e7e74a3250 Rename TargetSubtarget to TargetSubtargetInfo for consistency.
llvm-svn: 134259
2011-07-01 21:01:15 +00:00
Evan Cheng
771cdf9b5d - Added MCSubtargetInfo to capture subtarget features and scheduling
itineraries.
- Refactor TargetSubtarget to be based on MCSubtargetInfo.
- Change tablegen generated subtarget info to initialize MCSubtargetInfo
  and hide more details from targets.

llvm-svn: 134257
2011-07-01 20:45:01 +00:00
Evan Cheng
034261674b Fix the ridiculous SubtargetFeatures API where it implicitly expects CPU name to
be the first encoded as the first feature. It then uses the CPU name to look up
features / scheduling itineray even though clients know full well the CPU name
being used to query these properties.

The fix is to just have the clients explictly pass the CPU name!

llvm-svn: 134127
2011-06-30 01:53:36 +00:00
Evan Cheng
b4dc8bdd22 Sink SubtargetFeature and TargetInstrItineraries (renamed MCInstrItineraries) into MC.
llvm-svn: 134049
2011-06-29 01:14:12 +00:00
Daniel Dunbar
82a4062a4e ADT/Triple: Renambe isOSX... methods to isMacOSX for consistency with the OS
triple component.

llvm-svn: 129838
2011-04-20 00:14:25 +00:00
Daniel Dunbar
c325e8720a Target/PPC: Kill off DarwinVers, which is now dead.
llvm-svn: 129811
2011-04-19 20:59:24 +00:00
Daniel Dunbar
df2c6f8ce7 Target/PPC: Add a TargetTriple field.
llvm-svn: 129809
2011-04-19 20:54:28 +00:00
Torok Edwin
319c3f56c8 Use indirect calls in PowerPC JIT.
See PR5201. There is no way to know if direct calls will be within the allowed
range for BL. Hence emit all calls as indirect when in JIT mode.
Without this long-running applications will fail to JIT on PowerPC with a
relocation failure.

llvm-svn: 110246
2010-08-04 20:47:44 +00:00
Chris Lattner
25421b6954 indicate what the native integer types for the target are.
Please verify.

llvm-svn: 86397
2009-11-07 19:07:32 +00:00
Tilmann Scheller
03f517b799 Add support for the PowerPC 64-bit SVR4 ABI.
The Link Register is volatile when using the 32-bit SVR4 ABI.
Make it possible to use the 64-bit SVR4 ABI.
Add non-volatile registers for the 64-bit SVR4 ABI.
Make sure r2 is a reserved register when using the 64-bit SVR4 ABI.
Update PPCFrameInfo for the 64-bit SVR4 ABI.
Add FIXME for 64-bit Darwin PPC.
Insert NOP instruction after direct function calls.
Emit official procedure descriptors.
Create TOC entries for GlobalAddress references.
Spill 64-bit non-volatile registers to the correct slots.
Only custom lower VAARG when using the 32-bit SVR4 ABI.
Use simple VASTART lowering for the 64-bit SVR4 ABI.

llvm-svn: 79091
2009-08-15 11:54:46 +00:00