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5 Commits

Author SHA1 Message Date
Kit Barton
7bff890217 This change implements the following three logical vector operations:
veqv (vector equivalence)
vnand
vorc
I increased the AddedComplexity for these instructions to 500 to ensure they are generated instead of issuing other VSX instructions.


Phabricator review: http://reviews.llvm.org/D7469

llvm-svn: 228580
2015-02-09 17:03:18 +00:00
Bill Schmidt
ea5a30da84 [PowerPC] Implement the vclz instructions for PWR8
Patch by Kit Barton.

Add the vector count leading zeros instruction for byte, halfword,
word, and doubleword sizes.  This is a fairly straightforward addition
after the changes made for vpopcnt:

 1. Add the correct definitions for the various instructions in
    PPCInstrAltivec.td
 2. Make the CTLZ operation legal on vector types when using P8Altivec
    in PPCISelLowering.cpp 

Test Plan

Created new test case in test/CodeGen/PowerPC/vec_clz.ll to check the
instructions are being generated when the CTLZ operation is used in
LLVM.

Check the encoding and decoding in test/MC/PowerPC/ppc_encoding_vmx.s
and test/Disassembler/PowerPC/ppc_encoding_vmx.txt respectively.

llvm-svn: 228301
2015-02-05 15:24:47 +00:00
Bill Schmidt
d20879d5e6 [PowerPC] Implement the vpopcnt instructions for POWER8
Patch by Kit Barton.

Add the vector population count instructions for byte, halfword, word,
and doubleword sizes.  There are two major changes here:

    PPCISelLowering.cpp: Make CTPOP legal for vector types.
    PPCRegisterInfo.td: Added v2i64 to the VRRC register
      definition. This is needed for the doubleword variations of the
      integer ops that were added in P8. 

Test Plan

Test the instruction vpcnt* encoding/decoding in ppc64-encoding-vmx.s

Test the generation of the vpopcnt instructions for various vector
data types.  When adding the v2i64 type to the Vector Register set, I
also needed to add the appropriate bit conversion patterns between
v2i64 and the existing vector types.  Testing for these conversions
were also added in the test case by passing a different vector type as
a parameter into the test functions.  There is also a run step that
will ensure the vpopcnt instructions are generated when the vsx
feature is disabled.

llvm-svn: 228046
2015-02-03 21:58:23 +00:00
Ulrich Weigand
f2e33e8135 [PowerPC] Generate little-endian object files
As a first step towards real little-endian code generation, this patch
changes the PowerPC MC layer to actually generate little-endian object
files.  This involves passing the little-endian flag through the various
layers, including down to createELFObjectWriter so we actually get basic
little-endian ELF objects, emitting instructions in little-endian order,
and handling fixups and relocations as appropriate for little-endian.

The bulk of the patch is to update most test cases in test/MC/PowerPC
to verify both big- and little-endian encodings.  (The only test cases
*not* updated are those that create actual big-endian ABI code, like
the TLS tests.)

Note that while the object files are now little-endian, the generated
code itself is not yet updated, in particular, it still does not adhere
to the ELFv2 ABI.

llvm-svn: 204634
2014-03-24 18:16:09 +00:00
Ulrich Weigand
d9b4cff835 [PowerPC] Add assembler parser
This adds assembler parser support to the PowerPC back end.

The parser will run for any powerpc-*-* and powerpc64-*-* triples,
but was tested only on 64-bit Linux.  The supported syntax is
intended to be compatible with the GNU assembler.

The parser does not yet support all PowerPC instructions, but
it does support anything that is generated by LLVM itself.
There is no support for testing restricted instruction sets yet,
i.e. the parser will always accept any instructions it knows,
no matter what feature flags are given.

Instruction operands will be checked for validity and errors
generated.  (Error handling in general could still be improved.)

The patch adds a number of test cases to verify instruction
and operand encodings.  The tests currently cover all instructions
from the following PowerPC ISA v2.06 Book I facilities:
Branch, Fixed-point, Floating-Point, and Vector. 
Note that a number of these instructions are not yet supported
by the back end; they are marked with FIXME.

A number of follow-on check-ins will add extra features.  When
they are all included, LLVM passes all tests (including bootstrap)
when using clang -cc1as as the system assembler.

llvm-svn: 181050
2013-05-03 19:49:39 +00:00