112 lines
6.2 KiB
LLVM
112 lines
6.2 KiB
LLVM
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; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py
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; RUN: llc < %s --mattr=+sve -o - | FileCheck %s
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target triple = "aarch64"
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; Expected to transform
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define <vscale x 4 x float> @complex_mul_v4f32(<vscale x 4 x float> %a, <vscale x 4 x float> %b) {
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; CHECK-LABEL: complex_mul_v4f32:
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; CHECK: // %bb.0: // %entry
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; CHECK-NEXT: ptrue p0.s
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; CHECK-NEXT: mov z2.s, #0 // =0x0
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; CHECK-NEXT: fcmla z2.s, p0/m, z1.s, z0.s, #0
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; CHECK-NEXT: fcmla z2.s, p0/m, z1.s, z0.s, #90
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; CHECK-NEXT: mov z0.d, z2.d
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; CHECK-NEXT: ret
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entry:
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%a.deinterleaved = tail call { <vscale x 2 x float>, <vscale x 2 x float> } @llvm.experimental.vector.deinterleave2.nxv4f32(<vscale x 4 x float> %a)
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%a.real = extractvalue { <vscale x 2 x float>, <vscale x 2 x float> } %a.deinterleaved, 0
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%a.imag = extractvalue { <vscale x 2 x float>, <vscale x 2 x float> } %a.deinterleaved, 1
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%b.deinterleaved = tail call { <vscale x 2 x float>, <vscale x 2 x float> } @llvm.experimental.vector.deinterleave2.nxv4f32(<vscale x 4 x float> %b)
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%b.real = extractvalue { <vscale x 2 x float>, <vscale x 2 x float> } %b.deinterleaved, 0
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%b.imag = extractvalue { <vscale x 2 x float>, <vscale x 2 x float> } %b.deinterleaved, 1
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%0 = fmul fast <vscale x 2 x float> %b.imag, %a.real
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%1 = fmul fast <vscale x 2 x float> %b.real, %a.imag
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%2 = fadd fast <vscale x 2 x float> %1, %0
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%3 = fmul fast <vscale x 2 x float> %b.real, %a.real
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%4 = fmul fast <vscale x 2 x float> %a.imag, %b.imag
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%5 = fsub fast <vscale x 2 x float> %3, %4
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%interleaved.vec = tail call <vscale x 4 x float> @llvm.experimental.vector.interleave2.nxv4f32(<vscale x 2 x float> %5, <vscale x 2 x float> %2)
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ret <vscale x 4 x float> %interleaved.vec
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}
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; Expected to transform
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define <vscale x 8 x float> @complex_mul_v8f32(<vscale x 8 x float> %a, <vscale x 8 x float> %b) {
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; CHECK-LABEL: complex_mul_v8f32:
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; CHECK: // %bb.0: // %entry
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; CHECK-NEXT: ptrue p0.s
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; CHECK-NEXT: mov z4.s, #0 // =0x0
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; CHECK-NEXT: mov z5.d, z4.d
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; CHECK-NEXT: fcmla z5.s, p0/m, z2.s, z0.s, #0
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; CHECK-NEXT: fcmla z4.s, p0/m, z3.s, z1.s, #0
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; CHECK-NEXT: fcmla z5.s, p0/m, z2.s, z0.s, #90
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; CHECK-NEXT: fcmla z4.s, p0/m, z3.s, z1.s, #90
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; CHECK-NEXT: mov z0.d, z5.d
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; CHECK-NEXT: mov z1.d, z4.d
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; CHECK-NEXT: ret
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entry:
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%a.deinterleaved = tail call { <vscale x 4 x float>, <vscale x 4 x float> } @llvm.experimental.vector.deinterleave2.nxv8f32(<vscale x 8 x float> %a)
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%a.real = extractvalue { <vscale x 4 x float>, <vscale x 4 x float> } %a.deinterleaved, 0
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%a.imag = extractvalue { <vscale x 4 x float>, <vscale x 4 x float> } %a.deinterleaved, 1
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%b.deinterleaved = tail call { <vscale x 4 x float>, <vscale x 4 x float> } @llvm.experimental.vector.deinterleave2.nxv8f32(<vscale x 8 x float> %b)
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%b.real = extractvalue { <vscale x 4 x float>, <vscale x 4 x float> } %b.deinterleaved, 0
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%b.imag = extractvalue { <vscale x 4 x float>, <vscale x 4 x float> } %b.deinterleaved, 1
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%0 = fmul fast <vscale x 4 x float> %b.imag, %a.real
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%1 = fmul fast <vscale x 4 x float> %b.real, %a.imag
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%2 = fadd fast <vscale x 4 x float> %1, %0
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%3 = fmul fast <vscale x 4 x float> %b.real, %a.real
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%4 = fmul fast <vscale x 4 x float> %a.imag, %b.imag
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%5 = fsub fast <vscale x 4 x float> %3, %4
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%interleaved.vec = tail call <vscale x 8 x float> @llvm.experimental.vector.interleave2.nxv8f32(<vscale x 4 x float> %5, <vscale x 4 x float> %2)
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ret <vscale x 8 x float> %interleaved.vec
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}
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; Expected to transform
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define <vscale x 16 x float> @complex_mul_v16f32(<vscale x 16 x float> %a, <vscale x 16 x float> %b) {
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; CHECK-LABEL: complex_mul_v16f32:
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; CHECK: // %bb.0: // %entry
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; CHECK-NEXT: ptrue p0.s
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; CHECK-NEXT: mov z24.s, #0 // =0x0
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; CHECK-NEXT: mov z25.d, z24.d
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; CHECK-NEXT: mov z26.d, z24.d
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; CHECK-NEXT: mov z27.d, z24.d
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; CHECK-NEXT: fcmla z25.s, p0/m, z4.s, z0.s, #0
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; CHECK-NEXT: fcmla z26.s, p0/m, z5.s, z1.s, #0
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; CHECK-NEXT: fcmla z27.s, p0/m, z6.s, z2.s, #0
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; CHECK-NEXT: fcmla z24.s, p0/m, z7.s, z3.s, #0
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; CHECK-NEXT: fcmla z25.s, p0/m, z4.s, z0.s, #90
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; CHECK-NEXT: fcmla z26.s, p0/m, z5.s, z1.s, #90
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; CHECK-NEXT: fcmla z27.s, p0/m, z6.s, z2.s, #90
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; CHECK-NEXT: fcmla z24.s, p0/m, z7.s, z3.s, #90
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; CHECK-NEXT: mov z0.d, z25.d
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; CHECK-NEXT: mov z1.d, z26.d
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; CHECK-NEXT: mov z2.d, z27.d
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; CHECK-NEXT: mov z3.d, z24.d
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; CHECK-NEXT: ret
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entry:
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%a.deinterleaved = tail call { <vscale x 8 x float>, <vscale x 8 x float> } @llvm.experimental.vector.deinterleave2.nxv16f32(<vscale x 16 x float> %a)
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%a.real = extractvalue { <vscale x 8 x float>, <vscale x 8 x float> } %a.deinterleaved, 0
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%a.imag = extractvalue { <vscale x 8 x float>, <vscale x 8 x float> } %a.deinterleaved, 1
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%b.deinterleaved = tail call { <vscale x 8 x float>, <vscale x 8 x float> } @llvm.experimental.vector.deinterleave2.nxv16f32(<vscale x 16 x float> %b)
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%b.real = extractvalue { <vscale x 8 x float>, <vscale x 8 x float> } %b.deinterleaved, 0
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%b.imag = extractvalue { <vscale x 8 x float>, <vscale x 8 x float> } %b.deinterleaved, 1
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%0 = fmul fast <vscale x 8 x float> %b.imag, %a.real
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%1 = fmul fast <vscale x 8 x float> %b.real, %a.imag
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%2 = fadd fast <vscale x 8 x float> %1, %0
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%3 = fmul fast <vscale x 8 x float> %b.real, %a.real
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%4 = fmul fast <vscale x 8 x float> %a.imag, %b.imag
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%5 = fsub fast <vscale x 8 x float> %3, %4
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%interleaved.vec = tail call <vscale x 16 x float> @llvm.experimental.vector.interleave2.nxv16f32(<vscale x 8 x float> %5, <vscale x 8 x float> %2)
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ret <vscale x 16 x float> %interleaved.vec
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}
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declare { <vscale x 2 x float>, <vscale x 2 x float> } @llvm.experimental.vector.deinterleave2.nxv4f32(<vscale x 4 x float>)
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declare <vscale x 4 x float> @llvm.experimental.vector.interleave2.nxv4f32(<vscale x 2 x float>, <vscale x 2 x float>)
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declare { <vscale x 4 x float>, <vscale x 4 x float> } @llvm.experimental.vector.deinterleave2.nxv8f32(<vscale x 8 x float>)
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declare <vscale x 8 x float> @llvm.experimental.vector.interleave2.nxv8f32(<vscale x 4 x float>, <vscale x 4 x float>)
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declare { <vscale x 8 x float>, <vscale x 8 x float> } @llvm.experimental.vector.deinterleave2.nxv16f32(<vscale x 16 x float>)
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declare <vscale x 16 x float> @llvm.experimental.vector.interleave2.nxv16f32(<vscale x 8 x float>, <vscale x 8 x float>)
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