2013-08-28 14:04:29 +02:00
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; Test the MSA intrinsics that are encoded with the 3R instruction format and
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; are loads or stores.
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2013-09-27 12:08:31 +02:00
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; RUN: llc -march=mips -mattr=+msa,+fp64 < %s | FileCheck %s
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2013-08-28 14:04:29 +02:00
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@llvm_mips_ldx_b_ARG = global <16 x i8> <i8 0, i8 1, i8 2, i8 3, i8 4, i8 5, i8 6, i8 7, i8 8, i8 9, i8 10, i8 11, i8 12, i8 13, i8 14, i8 15>, align 16
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@llvm_mips_ldx_b_RES = global <16 x i8> <i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0>, align 16
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define void @llvm_mips_ldx_b_test(i32 %a1) nounwind {
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entry:
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%0 = bitcast <16 x i8>* @llvm_mips_ldx_b_ARG to i8*
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%1 = tail call <16 x i8> @llvm.mips.ldx.b(i8* %0, i32 %a1)
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store <16 x i8> %1, <16 x i8>* @llvm_mips_ldx_b_RES
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ret void
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}
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declare <16 x i8> @llvm.mips.ldx.b(i8*, i32) nounwind
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; CHECK: llvm_mips_ldx_b_test:
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; CHECK: ldx.b [[R1:\$w[0-9]+]], $4(
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; CHECK: st.b
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; CHECK: .size llvm_mips_ldx_b_test
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;
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@llvm_mips_ldx_h_ARG = global <8 x i16> <i16 0, i16 1, i16 2, i16 3, i16 4, i16 5, i16 6, i16 7>, align 16
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@llvm_mips_ldx_h_RES = global <8 x i16> <i16 0, i16 0, i16 0, i16 0, i16 0, i16 0, i16 0, i16 0>, align 16
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define void @llvm_mips_ldx_h_test(i32 %a1) nounwind {
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entry:
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%0 = bitcast <8 x i16>* @llvm_mips_ldx_h_ARG to i8*
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%1 = tail call <8 x i16> @llvm.mips.ldx.h(i8* %0, i32 %a1)
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store <8 x i16> %1, <8 x i16>* @llvm_mips_ldx_h_RES
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ret void
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}
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declare <8 x i16> @llvm.mips.ldx.h(i8*, i32) nounwind
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; CHECK: llvm_mips_ldx_h_test:
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; CHECK: ldx.h [[R1:\$w[0-9]+]], $4(
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; CHECK: st.h
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; CHECK: .size llvm_mips_ldx_h_test
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;
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@llvm_mips_ldx_w_ARG = global <4 x i32> <i32 0, i32 1, i32 2, i32 3>, align 16
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@llvm_mips_ldx_w_RES = global <4 x i32> <i32 0, i32 0, i32 0, i32 0>, align 16
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define void @llvm_mips_ldx_w_test(i32 %a1) nounwind {
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entry:
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%0 = bitcast <4 x i32>* @llvm_mips_ldx_w_ARG to i8*
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%1 = tail call <4 x i32> @llvm.mips.ldx.w(i8* %0, i32 %a1)
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store <4 x i32> %1, <4 x i32>* @llvm_mips_ldx_w_RES
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ret void
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}
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declare <4 x i32> @llvm.mips.ldx.w(i8*, i32) nounwind
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; CHECK: llvm_mips_ldx_w_test:
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; CHECK: ldx.w [[R1:\$w[0-9]+]], $4(
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; CHECK: st.w
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; CHECK: .size llvm_mips_ldx_w_test
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;
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@llvm_mips_ldx_d_ARG = global <2 x i64> <i64 0, i64 1>, align 16
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@llvm_mips_ldx_d_RES = global <2 x i64> <i64 0, i64 0>, align 16
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define void @llvm_mips_ldx_d_test(i32 %a1) nounwind {
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entry:
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%0 = bitcast <2 x i64>* @llvm_mips_ldx_d_ARG to i8*
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%1 = tail call <2 x i64> @llvm.mips.ldx.d(i8* %0, i32 %a1)
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store <2 x i64> %1, <2 x i64>* @llvm_mips_ldx_d_RES
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ret void
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}
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declare <2 x i64> @llvm.mips.ldx.d(i8*, i32) nounwind
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; CHECK: llvm_mips_ldx_d_test:
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; CHECK: ldx.d [[R1:\$w[0-9]+]], $4(
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; CHECK: st.d
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; CHECK: .size llvm_mips_ldx_d_test
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;
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@llvm_mips_stx_b_ARG = global <16 x i8> <i8 0, i8 1, i8 2, i8 3, i8 4, i8 5, i8 6, i8 7, i8 8, i8 9, i8 10, i8 11, i8 12, i8 13, i8 14, i8 15>, align 16
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@llvm_mips_stx_b_RES = global <16 x i8> <i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0, i8 0>, align 16
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define void @llvm_mips_stx_b_test(i32 %a1) nounwind {
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entry:
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%0 = load <16 x i8>* @llvm_mips_stx_b_ARG
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%1 = bitcast <16 x i8>* @llvm_mips_stx_b_RES to i8*
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tail call void @llvm.mips.stx.b(<16 x i8> %0, i8* %1, i32 %a1)
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ret void
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}
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declare void @llvm.mips.stx.b(<16 x i8>, i8*, i32) nounwind
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; CHECK: llvm_mips_stx_b_test:
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; CHECK: ld.b
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; CHECK: stx.b [[R1:\$w[0-9]+]], $4(
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; CHECK: .size llvm_mips_stx_b_test
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;
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@llvm_mips_stx_h_ARG = global <8 x i16> <i16 0, i16 1, i16 2, i16 3, i16 4, i16 5, i16 6, i16 7>, align 16
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@llvm_mips_stx_h_RES = global <8 x i16> <i16 0, i16 0, i16 0, i16 0, i16 0, i16 0, i16 0, i16 0>, align 16
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define void @llvm_mips_stx_h_test(i32 %a1) nounwind {
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entry:
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%0 = load <8 x i16>* @llvm_mips_stx_h_ARG
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%1 = bitcast <8 x i16>* @llvm_mips_stx_h_RES to i8*
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tail call void @llvm.mips.stx.h(<8 x i16> %0, i8* %1, i32 %a1)
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ret void
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}
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declare void @llvm.mips.stx.h(<8 x i16>, i8*, i32) nounwind
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; CHECK: llvm_mips_stx_h_test:
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; CHECK: ld.h
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; CHECK: stx.h [[R1:\$w[0-9]+]], $4(
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; CHECK: .size llvm_mips_stx_h_test
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;
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@llvm_mips_stx_w_ARG = global <4 x i32> <i32 0, i32 1, i32 2, i32 3>, align 16
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@llvm_mips_stx_w_RES = global <4 x i32> <i32 0, i32 0, i32 0, i32 0>, align 16
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define void @llvm_mips_stx_w_test(i32 %a1) nounwind {
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entry:
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%0 = load <4 x i32>* @llvm_mips_stx_w_ARG
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%1 = bitcast <4 x i32>* @llvm_mips_stx_w_RES to i8*
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tail call void @llvm.mips.stx.w(<4 x i32> %0, i8* %1, i32 %a1)
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ret void
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}
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declare void @llvm.mips.stx.w(<4 x i32>, i8*, i32) nounwind
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; CHECK: llvm_mips_stx_w_test:
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; CHECK: ld.w
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; CHECK: stx.w [[R1:\$w[0-9]+]], $4(
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; CHECK: .size llvm_mips_stx_w_test
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;
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@llvm_mips_stx_d_ARG = global <2 x i64> <i64 0, i64 1>, align 16
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@llvm_mips_stx_d_RES = global <2 x i64> <i64 0, i64 0>, align 16
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define void @llvm_mips_stx_d_test(i32 %a1) nounwind {
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entry:
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%0 = load <2 x i64>* @llvm_mips_stx_d_ARG
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%1 = bitcast <2 x i64>* @llvm_mips_stx_d_RES to i8*
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tail call void @llvm.mips.stx.d(<2 x i64> %0, i8* %1, i32 %a1)
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ret void
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}
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declare void @llvm.mips.stx.d(<2 x i64>, i8*, i32) nounwind
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; CHECK: llvm_mips_stx_d_test:
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; CHECK: ld.d
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; CHECK: stx.d [[R1:\$w[0-9]+]], $4(
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; CHECK: .size llvm_mips_stx_d_test
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;
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