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llvm-mirror/test/Bitcode/arm32_neon_vcnt_upgrade.ll
Joel Jones 4ce75efda5 More replacing of target-dependent intrinsics with target-indepdent
intrinsics.  The second instruction(s) to be handled are the vector versions 
of count set bits (ctpop).

The changes here are to clang so that it generates a target independent 
vector ctpop when it sees an ARM dependent vector bits set count.  The changes 
in llvm are to match the target independent vector ctpop and in 
VMCore/AutoUpgrade.cpp to update any existing bc files containing ARM 
dependent vector pop counts with target-independent ctpops.  There are also 
changes to an existing test case in llvm for ARM vector count instructions and 
to a test for the bitcode upgrade.

<rdar://problem/11892519>

There is deliberately no test for the change to clang, as so far as I know, no
consensus has been reached regarding how to test neon instructions in clang;
q.v. <rdar://problem/8762292>

llvm-svn: 160410
2012-07-18 00:02:16 +00:00

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725 B
LLVM

; RUN: llvm-as < %s | llvm-dis | FileCheck %s
; Tests vclz and vcnt
define <4 x i16> @vclz16(<4 x i16>* %A) nounwind {
;CHECK: @vclz16
%tmp1 = load <4 x i16>* %A
%tmp2 = call <4 x i16> @llvm.arm.neon.vclz.v4i16(<4 x i16> %tmp1)
;CHECK: {{call.*@llvm.ctlz.v4i16\(<4 x i16>.*, i1 false}}
ret <4 x i16> %tmp2
}
define <8 x i8> @vcnt8(<8 x i8>* %A) nounwind {
;CHECK: @vcnt8
%tmp1 = load <8 x i8>* %A
%tmp2 = call <8 x i8> @llvm.arm.neon.vcnt.v8i8(<8 x i8> %tmp1)
;CHECK: call <8 x i8> @llvm.ctpop.v8i8(<8 x i8>
ret <8 x i8> %tmp2
}
declare <4 x i16> @llvm.arm.neon.vclz.v4i16(<4 x i16>) nounwind readnone
declare <8 x i8> @llvm.arm.neon.vcnt.v8i8(<8 x i8>) nounwind readnone