forked from OSchip/llvm-project
514 lines
20 KiB
LLVM
514 lines
20 KiB
LLVM
; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py
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; RUN: llc < %s -march=amdgcn -mcpu=tahiti -verify-machineinstrs | FileCheck %s -check-prefixes=GCN,GFX89,SI
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; RUN: llc < %s -march=amdgcn -mcpu=tonga -verify-machineinstrs | FileCheck %s -check-prefixes=GCN,GFX89,VI
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; RUN: llc < %s -march=amdgcn -mcpu=gfx900 -verify-machineinstrs | FileCheck %s -check-prefixes=GCN,GFX89,GFX9
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; RUN: llc < %s -march=r600 -mcpu=redwood -verify-machineinstrs | FileCheck %s -check-prefixes=GCN,R600
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declare i32 @llvm.fshl.i32(i32, i32, i32) nounwind readnone
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declare <2 x i32> @llvm.fshl.v2i32(<2 x i32>, <2 x i32>, <2 x i32>) nounwind readnone
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declare <4 x i32> @llvm.fshl.v4i32(<4 x i32>, <4 x i32>, <4 x i32>) nounwind readnone
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define amdgpu_kernel void @fshl_i32(i32 addrspace(1)* %in, i32 %x, i32 %y, i32 %z) {
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; SI-LABEL: fshl_i32:
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; SI: ; %bb.0: ; %entry
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; SI-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x9
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; SI-NEXT: s_load_dwordx4 s[0:3], s[0:1], 0xb
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; SI-NEXT: s_mov_b32 s7, 0xf000
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; SI-NEXT: s_mov_b32 s6, -1
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; SI-NEXT: s_waitcnt lgkmcnt(0)
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; SI-NEXT: v_mov_b32_e32 v0, s1
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; SI-NEXT: s_lshr_b32 s1, s0, 1
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; SI-NEXT: v_alignbit_b32 v0, s0, v0, 1
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; SI-NEXT: s_not_b32 s0, s2
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; SI-NEXT: v_mov_b32_e32 v1, s0
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; SI-NEXT: v_alignbit_b32 v0, s1, v0, v1
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; SI-NEXT: buffer_store_dword v0, off, s[4:7], 0
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; SI-NEXT: s_endpgm
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;
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; VI-LABEL: fshl_i32:
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; VI: ; %bb.0: ; %entry
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; VI-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x24
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; VI-NEXT: s_load_dwordx4 s[0:3], s[0:1], 0x2c
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; VI-NEXT: s_waitcnt lgkmcnt(0)
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; VI-NEXT: v_mov_b32_e32 v0, s1
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; VI-NEXT: s_not_b32 s2, s2
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; VI-NEXT: s_lshr_b32 s1, s0, 1
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; VI-NEXT: v_alignbit_b32 v0, s0, v0, 1
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; VI-NEXT: v_mov_b32_e32 v1, s2
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; VI-NEXT: v_alignbit_b32 v2, s1, v0, v1
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; VI-NEXT: v_mov_b32_e32 v0, s4
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; VI-NEXT: v_mov_b32_e32 v1, s5
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; VI-NEXT: flat_store_dword v[0:1], v2
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; VI-NEXT: s_endpgm
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;
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; GFX9-LABEL: fshl_i32:
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; GFX9: ; %bb.0: ; %entry
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; GFX9-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x24
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; GFX9-NEXT: s_load_dwordx4 s[0:3], s[0:1], 0x2c
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; GFX9-NEXT: s_waitcnt lgkmcnt(0)
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; GFX9-NEXT: v_mov_b32_e32 v0, s1
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; GFX9-NEXT: s_not_b32 s2, s2
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; GFX9-NEXT: s_lshr_b32 s1, s0, 1
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; GFX9-NEXT: v_alignbit_b32 v0, s0, v0, 1
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; GFX9-NEXT: v_mov_b32_e32 v1, s2
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; GFX9-NEXT: v_alignbit_b32 v2, s1, v0, v1
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; GFX9-NEXT: v_mov_b32_e32 v0, s4
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; GFX9-NEXT: v_mov_b32_e32 v1, s5
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; GFX9-NEXT: global_store_dword v[0:1], v2, off
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; GFX9-NEXT: s_endpgm
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;
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; R600-LABEL: fshl_i32:
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; R600: ; %bb.0: ; %entry
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; R600-NEXT: ALU 5, @4, KC0[CB0:0-32], KC1[]
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; R600-NEXT: MEM_RAT_CACHELESS STORE_RAW T0.X, T1.X, 1
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; R600-NEXT: CF_END
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; R600-NEXT: PAD
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; R600-NEXT: ALU clause starting at 4:
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; R600-NEXT: LSHR T0.Z, KC0[2].Z, 1,
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; R600-NEXT: BIT_ALIGN_INT T0.W, KC0[2].Z, KC0[2].W, 1,
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; R600-NEXT: NOT_INT * T1.W, KC0[3].X,
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; R600-NEXT: BIT_ALIGN_INT T0.X, PV.Z, PV.W, PS,
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; R600-NEXT: LSHR * T1.X, KC0[2].Y, literal.x,
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; R600-NEXT: 2(2.802597e-45), 0(0.000000e+00)
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entry:
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%0 = call i32 @llvm.fshl.i32(i32 %x, i32 %y, i32 %z)
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store i32 %0, i32 addrspace(1)* %in
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ret void
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}
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define amdgpu_kernel void @fshl_i32_imm(i32 addrspace(1)* %in, i32 %x, i32 %y) {
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; SI-LABEL: fshl_i32_imm:
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; SI: ; %bb.0: ; %entry
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; SI-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x9
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; SI-NEXT: s_load_dwordx2 s[0:1], s[0:1], 0xb
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; SI-NEXT: s_mov_b32 s7, 0xf000
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; SI-NEXT: s_mov_b32 s6, -1
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; SI-NEXT: s_waitcnt lgkmcnt(0)
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; SI-NEXT: v_mov_b32_e32 v0, s1
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; SI-NEXT: v_alignbit_b32 v0, s0, v0, 25
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; SI-NEXT: buffer_store_dword v0, off, s[4:7], 0
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; SI-NEXT: s_endpgm
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;
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; VI-LABEL: fshl_i32_imm:
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; VI: ; %bb.0: ; %entry
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; VI-NEXT: s_load_dwordx2 s[2:3], s[0:1], 0x24
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; VI-NEXT: s_load_dwordx2 s[0:1], s[0:1], 0x2c
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; VI-NEXT: s_waitcnt lgkmcnt(0)
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; VI-NEXT: v_mov_b32_e32 v0, s1
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; VI-NEXT: v_alignbit_b32 v2, s0, v0, 25
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; VI-NEXT: v_mov_b32_e32 v0, s2
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; VI-NEXT: v_mov_b32_e32 v1, s3
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; VI-NEXT: flat_store_dword v[0:1], v2
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; VI-NEXT: s_endpgm
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;
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; GFX9-LABEL: fshl_i32_imm:
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; GFX9: ; %bb.0: ; %entry
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; GFX9-NEXT: s_load_dwordx2 s[2:3], s[0:1], 0x24
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; GFX9-NEXT: s_load_dwordx2 s[0:1], s[0:1], 0x2c
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; GFX9-NEXT: s_waitcnt lgkmcnt(0)
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; GFX9-NEXT: v_mov_b32_e32 v0, s1
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; GFX9-NEXT: v_alignbit_b32 v2, s0, v0, 25
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; GFX9-NEXT: v_mov_b32_e32 v0, s2
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; GFX9-NEXT: v_mov_b32_e32 v1, s3
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; GFX9-NEXT: global_store_dword v[0:1], v2, off
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; GFX9-NEXT: s_endpgm
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;
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; R600-LABEL: fshl_i32_imm:
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; R600: ; %bb.0: ; %entry
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; R600-NEXT: ALU 3, @4, KC0[CB0:0-32], KC1[]
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; R600-NEXT: MEM_RAT_CACHELESS STORE_RAW T1.X, T0.X, 1
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; R600-NEXT: CF_END
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; R600-NEXT: PAD
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; R600-NEXT: ALU clause starting at 4:
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; R600-NEXT: LSHR * T0.X, KC0[2].Y, literal.x,
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; R600-NEXT: 2(2.802597e-45), 0(0.000000e+00)
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; R600-NEXT: BIT_ALIGN_INT * T1.X, KC0[2].Z, KC0[2].W, literal.x,
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; R600-NEXT: 25(3.503246e-44), 0(0.000000e+00)
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entry:
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%0 = call i32 @llvm.fshl.i32(i32 %x, i32 %y, i32 7)
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store i32 %0, i32 addrspace(1)* %in
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ret void
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}
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define amdgpu_kernel void @fshl_v2i32(<2 x i32> addrspace(1)* %in, <2 x i32> %x, <2 x i32> %y, <2 x i32> %z) {
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; SI-LABEL: fshl_v2i32:
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; SI: ; %bb.0: ; %entry
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; SI-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x9
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; SI-NEXT: s_load_dwordx2 s[2:3], s[0:1], 0xb
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; SI-NEXT: s_load_dwordx2 s[8:9], s[0:1], 0xd
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; SI-NEXT: s_load_dwordx2 s[0:1], s[0:1], 0xf
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; SI-NEXT: s_mov_b32 s7, 0xf000
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; SI-NEXT: s_mov_b32 s6, -1
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; SI-NEXT: s_waitcnt lgkmcnt(0)
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; SI-NEXT: v_mov_b32_e32 v0, s9
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; SI-NEXT: s_not_b32 s1, s1
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; SI-NEXT: v_alignbit_b32 v0, s3, v0, 1
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; SI-NEXT: v_mov_b32_e32 v1, s1
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; SI-NEXT: s_lshr_b32 s3, s3, 1
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; SI-NEXT: v_alignbit_b32 v1, s3, v0, v1
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; SI-NEXT: v_mov_b32_e32 v0, s8
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; SI-NEXT: s_not_b32 s0, s0
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; SI-NEXT: v_alignbit_b32 v0, s2, v0, 1
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; SI-NEXT: s_lshr_b32 s1, s2, 1
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; SI-NEXT: v_mov_b32_e32 v2, s0
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; SI-NEXT: v_alignbit_b32 v0, s1, v0, v2
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; SI-NEXT: buffer_store_dwordx2 v[0:1], off, s[4:7], 0
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; SI-NEXT: s_endpgm
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;
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; VI-LABEL: fshl_v2i32:
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; VI: ; %bb.0: ; %entry
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; VI-NEXT: s_load_dwordx2 s[2:3], s[0:1], 0x24
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; VI-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x2c
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; VI-NEXT: s_load_dwordx2 s[6:7], s[0:1], 0x34
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; VI-NEXT: s_load_dwordx2 s[0:1], s[0:1], 0x3c
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; VI-NEXT: s_waitcnt lgkmcnt(0)
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; VI-NEXT: v_mov_b32_e32 v0, s7
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; VI-NEXT: s_not_b32 s1, s1
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; VI-NEXT: v_mov_b32_e32 v1, s1
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; VI-NEXT: s_lshr_b32 s7, s5, 1
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; VI-NEXT: v_alignbit_b32 v0, s5, v0, 1
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; VI-NEXT: v_alignbit_b32 v1, s7, v0, v1
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; VI-NEXT: v_mov_b32_e32 v0, s6
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; VI-NEXT: s_not_b32 s0, s0
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; VI-NEXT: v_alignbit_b32 v0, s4, v0, 1
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; VI-NEXT: s_lshr_b32 s1, s4, 1
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; VI-NEXT: v_mov_b32_e32 v2, s0
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; VI-NEXT: v_alignbit_b32 v0, s1, v0, v2
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; VI-NEXT: v_mov_b32_e32 v2, s2
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; VI-NEXT: v_mov_b32_e32 v3, s3
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; VI-NEXT: flat_store_dwordx2 v[2:3], v[0:1]
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; VI-NEXT: s_endpgm
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;
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; GFX9-LABEL: fshl_v2i32:
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; GFX9: ; %bb.0: ; %entry
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; GFX9-NEXT: s_load_dwordx2 s[2:3], s[0:1], 0x24
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; GFX9-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x2c
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; GFX9-NEXT: s_load_dwordx2 s[6:7], s[0:1], 0x34
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; GFX9-NEXT: s_load_dwordx2 s[0:1], s[0:1], 0x3c
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; GFX9-NEXT: s_waitcnt lgkmcnt(0)
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; GFX9-NEXT: v_mov_b32_e32 v0, s7
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; GFX9-NEXT: s_not_b32 s1, s1
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; GFX9-NEXT: v_mov_b32_e32 v1, s1
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; GFX9-NEXT: s_lshr_b32 s7, s5, 1
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; GFX9-NEXT: v_alignbit_b32 v0, s5, v0, 1
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; GFX9-NEXT: v_alignbit_b32 v1, s7, v0, v1
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; GFX9-NEXT: v_mov_b32_e32 v0, s6
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; GFX9-NEXT: s_not_b32 s0, s0
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; GFX9-NEXT: v_alignbit_b32 v0, s4, v0, 1
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; GFX9-NEXT: s_lshr_b32 s1, s4, 1
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; GFX9-NEXT: v_mov_b32_e32 v2, s0
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; GFX9-NEXT: v_alignbit_b32 v0, s1, v0, v2
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; GFX9-NEXT: v_mov_b32_e32 v2, s2
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; GFX9-NEXT: v_mov_b32_e32 v3, s3
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; GFX9-NEXT: global_store_dwordx2 v[2:3], v[0:1], off
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; GFX9-NEXT: s_endpgm
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;
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; R600-LABEL: fshl_v2i32:
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; R600: ; %bb.0: ; %entry
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; R600-NEXT: ALU 9, @4, KC0[CB0:0-32], KC1[]
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; R600-NEXT: MEM_RAT_CACHELESS STORE_RAW T0.XY, T1.X, 1
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; R600-NEXT: CF_END
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; R600-NEXT: PAD
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; R600-NEXT: ALU clause starting at 4:
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; R600-NEXT: LSHR T0.Z, KC0[3].X, 1,
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; R600-NEXT: BIT_ALIGN_INT * T0.W, KC0[3].X, KC0[3].Z, 1,
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; R600-NEXT: NOT_INT * T1.W, KC0[4].X,
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; R600-NEXT: BIT_ALIGN_INT T0.Y, T0.Z, T0.W, PV.W,
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; R600-NEXT: LSHR T0.Z, KC0[2].W, 1,
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; R600-NEXT: BIT_ALIGN_INT * T0.W, KC0[2].W, KC0[3].Y, 1,
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; R600-NEXT: NOT_INT * T1.W, KC0[3].W,
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; R600-NEXT: BIT_ALIGN_INT T0.X, T0.Z, T0.W, PV.W,
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; R600-NEXT: LSHR * T1.X, KC0[2].Y, literal.x,
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; R600-NEXT: 2(2.802597e-45), 0(0.000000e+00)
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entry:
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%0 = call <2 x i32> @llvm.fshl.v2i32(<2 x i32> %x, <2 x i32> %y, <2 x i32> %z)
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store <2 x i32> %0, <2 x i32> addrspace(1)* %in
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ret void
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}
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define amdgpu_kernel void @fshl_v2i32_imm(<2 x i32> addrspace(1)* %in, <2 x i32> %x, <2 x i32> %y) {
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; SI-LABEL: fshl_v2i32_imm:
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; SI: ; %bb.0: ; %entry
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; SI-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x9
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; SI-NEXT: s_load_dwordx2 s[2:3], s[0:1], 0xb
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; SI-NEXT: s_load_dwordx2 s[0:1], s[0:1], 0xd
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; SI-NEXT: s_mov_b32 s7, 0xf000
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; SI-NEXT: s_mov_b32 s6, -1
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; SI-NEXT: s_waitcnt lgkmcnt(0)
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; SI-NEXT: v_mov_b32_e32 v0, s1
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; SI-NEXT: v_alignbit_b32 v1, s3, v0, 23
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; SI-NEXT: v_mov_b32_e32 v0, s0
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; SI-NEXT: v_alignbit_b32 v0, s2, v0, 25
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; SI-NEXT: buffer_store_dwordx2 v[0:1], off, s[4:7], 0
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; SI-NEXT: s_endpgm
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;
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; VI-LABEL: fshl_v2i32_imm:
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; VI: ; %bb.0: ; %entry
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; VI-NEXT: s_load_dwordx2 s[2:3], s[0:1], 0x24
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; VI-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x2c
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; VI-NEXT: s_load_dwordx2 s[0:1], s[0:1], 0x34
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; VI-NEXT: s_waitcnt lgkmcnt(0)
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; VI-NEXT: v_mov_b32_e32 v0, s1
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; VI-NEXT: v_mov_b32_e32 v2, s0
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; VI-NEXT: v_alignbit_b32 v1, s5, v0, 23
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; VI-NEXT: v_alignbit_b32 v0, s4, v2, 25
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; VI-NEXT: v_mov_b32_e32 v2, s2
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; VI-NEXT: v_mov_b32_e32 v3, s3
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; VI-NEXT: flat_store_dwordx2 v[2:3], v[0:1]
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; VI-NEXT: s_endpgm
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;
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; GFX9-LABEL: fshl_v2i32_imm:
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; GFX9: ; %bb.0: ; %entry
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; GFX9-NEXT: s_load_dwordx2 s[2:3], s[0:1], 0x24
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; GFX9-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x2c
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; GFX9-NEXT: s_load_dwordx2 s[0:1], s[0:1], 0x34
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; GFX9-NEXT: s_waitcnt lgkmcnt(0)
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; GFX9-NEXT: v_mov_b32_e32 v0, s1
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; GFX9-NEXT: v_mov_b32_e32 v2, s0
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; GFX9-NEXT: v_alignbit_b32 v1, s5, v0, 23
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; GFX9-NEXT: v_alignbit_b32 v0, s4, v2, 25
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; GFX9-NEXT: v_mov_b32_e32 v2, s2
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; GFX9-NEXT: v_mov_b32_e32 v3, s3
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; GFX9-NEXT: global_store_dwordx2 v[2:3], v[0:1], off
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; GFX9-NEXT: s_endpgm
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;
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; R600-LABEL: fshl_v2i32_imm:
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; R600: ; %bb.0: ; %entry
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; R600-NEXT: ALU 5, @4, KC0[CB0:0-32], KC1[]
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; R600-NEXT: MEM_RAT_CACHELESS STORE_RAW T0.XY, T1.X, 1
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; R600-NEXT: CF_END
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; R600-NEXT: PAD
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; R600-NEXT: ALU clause starting at 4:
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; R600-NEXT: BIT_ALIGN_INT * T0.Y, KC0[3].X, KC0[3].Z, literal.x,
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; R600-NEXT: 23(3.222986e-44), 0(0.000000e+00)
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; R600-NEXT: BIT_ALIGN_INT * T0.X, KC0[2].W, KC0[3].Y, literal.x,
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; R600-NEXT: 25(3.503246e-44), 0(0.000000e+00)
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; R600-NEXT: LSHR * T1.X, KC0[2].Y, literal.x,
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; R600-NEXT: 2(2.802597e-45), 0(0.000000e+00)
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entry:
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%0 = call <2 x i32> @llvm.fshl.v2i32(<2 x i32> %x, <2 x i32> %y, <2 x i32> <i32 7, i32 9>)
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store <2 x i32> %0, <2 x i32> addrspace(1)* %in
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ret void
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}
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define amdgpu_kernel void @fshl_v4i32(<4 x i32> addrspace(1)* %in, <4 x i32> %x, <4 x i32> %y, <4 x i32> %z) {
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; SI-LABEL: fshl_v4i32:
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; SI: ; %bb.0: ; %entry
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; SI-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x9
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; SI-NEXT: s_load_dwordx4 s[8:11], s[0:1], 0xd
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; SI-NEXT: s_load_dwordx4 s[12:15], s[0:1], 0x11
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; SI-NEXT: s_load_dwordx4 s[0:3], s[0:1], 0x15
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; SI-NEXT: s_mov_b32 s7, 0xf000
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; SI-NEXT: s_mov_b32 s6, -1
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; SI-NEXT: s_waitcnt lgkmcnt(0)
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; SI-NEXT: v_mov_b32_e32 v0, s15
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; SI-NEXT: s_not_b32 s3, s3
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; SI-NEXT: v_alignbit_b32 v0, s11, v0, 1
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; SI-NEXT: v_mov_b32_e32 v1, s3
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; SI-NEXT: s_lshr_b32 s11, s11, 1
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; SI-NEXT: v_alignbit_b32 v3, s11, v0, v1
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; SI-NEXT: v_mov_b32_e32 v0, s14
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; SI-NEXT: s_not_b32 s2, s2
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; SI-NEXT: v_mov_b32_e32 v1, s2
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; SI-NEXT: v_alignbit_b32 v0, s10, v0, 1
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; SI-NEXT: s_lshr_b32 s3, s10, 1
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; SI-NEXT: v_alignbit_b32 v2, s3, v0, v1
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; SI-NEXT: v_mov_b32_e32 v0, s13
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; SI-NEXT: s_not_b32 s1, s1
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; SI-NEXT: v_mov_b32_e32 v1, s1
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; SI-NEXT: v_alignbit_b32 v0, s9, v0, 1
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; SI-NEXT: s_lshr_b32 s2, s9, 1
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; SI-NEXT: v_alignbit_b32 v1, s2, v0, v1
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; SI-NEXT: v_mov_b32_e32 v0, s12
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; SI-NEXT: s_not_b32 s0, s0
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; SI-NEXT: v_alignbit_b32 v0, s8, v0, 1
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; SI-NEXT: s_lshr_b32 s1, s8, 1
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; SI-NEXT: v_mov_b32_e32 v4, s0
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; SI-NEXT: v_alignbit_b32 v0, s1, v0, v4
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; SI-NEXT: buffer_store_dwordx4 v[0:3], off, s[4:7], 0
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; SI-NEXT: s_endpgm
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;
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; VI-LABEL: fshl_v4i32:
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; VI: ; %bb.0: ; %entry
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; VI-NEXT: s_load_dwordx2 s[12:13], s[0:1], 0x24
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; VI-NEXT: s_load_dwordx4 s[4:7], s[0:1], 0x34
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; VI-NEXT: s_load_dwordx4 s[8:11], s[0:1], 0x44
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; VI-NEXT: s_load_dwordx4 s[0:3], s[0:1], 0x54
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; VI-NEXT: s_waitcnt lgkmcnt(0)
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; VI-NEXT: v_mov_b32_e32 v0, s11
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; VI-NEXT: s_not_b32 s3, s3
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; VI-NEXT: v_mov_b32_e32 v1, s3
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; VI-NEXT: s_lshr_b32 s11, s7, 1
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; VI-NEXT: v_alignbit_b32 v0, s7, v0, 1
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; VI-NEXT: v_alignbit_b32 v3, s11, v0, v1
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; VI-NEXT: v_mov_b32_e32 v0, s10
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; VI-NEXT: s_not_b32 s2, s2
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; VI-NEXT: v_mov_b32_e32 v1, s2
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; VI-NEXT: v_alignbit_b32 v0, s6, v0, 1
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; VI-NEXT: s_lshr_b32 s3, s6, 1
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; VI-NEXT: v_alignbit_b32 v2, s3, v0, v1
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; VI-NEXT: v_mov_b32_e32 v0, s9
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; VI-NEXT: s_not_b32 s1, s1
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; VI-NEXT: v_mov_b32_e32 v1, s1
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; VI-NEXT: v_alignbit_b32 v0, s5, v0, 1
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; VI-NEXT: s_lshr_b32 s2, s5, 1
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; VI-NEXT: v_alignbit_b32 v1, s2, v0, v1
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; VI-NEXT: v_mov_b32_e32 v0, s8
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; VI-NEXT: s_not_b32 s0, s0
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; VI-NEXT: v_alignbit_b32 v0, s4, v0, 1
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; VI-NEXT: s_lshr_b32 s1, s4, 1
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; VI-NEXT: v_mov_b32_e32 v4, s0
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; VI-NEXT: v_alignbit_b32 v0, s1, v0, v4
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; VI-NEXT: v_mov_b32_e32 v4, s12
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; VI-NEXT: v_mov_b32_e32 v5, s13
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; VI-NEXT: flat_store_dwordx4 v[4:5], v[0:3]
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; VI-NEXT: s_endpgm
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;
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; GFX9-LABEL: fshl_v4i32:
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; GFX9: ; %bb.0: ; %entry
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; GFX9-NEXT: s_load_dwordx2 s[12:13], s[0:1], 0x24
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; GFX9-NEXT: s_load_dwordx4 s[4:7], s[0:1], 0x34
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; GFX9-NEXT: s_load_dwordx4 s[8:11], s[0:1], 0x44
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; GFX9-NEXT: s_load_dwordx4 s[0:3], s[0:1], 0x54
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; GFX9-NEXT: s_waitcnt lgkmcnt(0)
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; GFX9-NEXT: v_mov_b32_e32 v0, s11
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; GFX9-NEXT: s_not_b32 s3, s3
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; GFX9-NEXT: v_mov_b32_e32 v1, s3
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; GFX9-NEXT: s_lshr_b32 s11, s7, 1
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; GFX9-NEXT: v_alignbit_b32 v0, s7, v0, 1
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; GFX9-NEXT: v_alignbit_b32 v3, s11, v0, v1
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; GFX9-NEXT: v_mov_b32_e32 v0, s10
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; GFX9-NEXT: s_not_b32 s2, s2
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; GFX9-NEXT: v_mov_b32_e32 v1, s2
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; GFX9-NEXT: v_alignbit_b32 v0, s6, v0, 1
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; GFX9-NEXT: s_lshr_b32 s3, s6, 1
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; GFX9-NEXT: v_alignbit_b32 v2, s3, v0, v1
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; GFX9-NEXT: v_mov_b32_e32 v0, s9
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; GFX9-NEXT: s_not_b32 s1, s1
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; GFX9-NEXT: v_mov_b32_e32 v1, s1
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; GFX9-NEXT: v_alignbit_b32 v0, s5, v0, 1
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; GFX9-NEXT: s_lshr_b32 s2, s5, 1
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; GFX9-NEXT: v_alignbit_b32 v1, s2, v0, v1
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; GFX9-NEXT: v_mov_b32_e32 v0, s8
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; GFX9-NEXT: s_not_b32 s0, s0
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; GFX9-NEXT: v_alignbit_b32 v0, s4, v0, 1
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; GFX9-NEXT: s_lshr_b32 s1, s4, 1
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; GFX9-NEXT: v_mov_b32_e32 v4, s0
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; GFX9-NEXT: v_alignbit_b32 v0, s1, v0, v4
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; GFX9-NEXT: v_mov_b32_e32 v4, s12
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; GFX9-NEXT: v_mov_b32_e32 v5, s13
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; GFX9-NEXT: global_store_dwordx4 v[4:5], v[0:3], off
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; GFX9-NEXT: s_endpgm
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;
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; R600-LABEL: fshl_v4i32:
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; R600: ; %bb.0: ; %entry
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; R600-NEXT: ALU 17, @4, KC0[CB0:0-32], KC1[]
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; R600-NEXT: MEM_RAT_CACHELESS STORE_RAW T0.XYZW, T1.X, 1
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; R600-NEXT: CF_END
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; R600-NEXT: PAD
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; R600-NEXT: ALU clause starting at 4:
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; R600-NEXT: LSHR T0.Z, KC0[4].X, 1,
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; R600-NEXT: BIT_ALIGN_INT * T0.W, KC0[4].X, KC0[5].X, 1,
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; R600-NEXT: NOT_INT * T1.W, KC0[6].X,
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; R600-NEXT: LSHR T0.Y, KC0[3].W, 1,
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; R600-NEXT: BIT_ALIGN_INT T1.Z, KC0[3].W, KC0[4].W, 1,
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; R600-NEXT: BIT_ALIGN_INT * T0.W, T0.Z, T0.W, PV.W,
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; R600-NEXT: NOT_INT * T1.W, KC0[5].W,
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; R600-NEXT: LSHR T1.Y, KC0[3].Z, 1,
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; R600-NEXT: BIT_ALIGN_INT T0.Z, T0.Y, T1.Z, PV.W,
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; R600-NEXT: BIT_ALIGN_INT * T1.W, KC0[3].Z, KC0[4].Z, 1,
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; R600-NEXT: NOT_INT * T2.W, KC0[5].Z,
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; R600-NEXT: BIT_ALIGN_INT T0.Y, T1.Y, T1.W, PV.W,
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; R600-NEXT: LSHR T1.Z, KC0[3].Y, 1,
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; R600-NEXT: BIT_ALIGN_INT * T1.W, KC0[3].Y, KC0[4].Y, 1,
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; R600-NEXT: NOT_INT * T2.W, KC0[5].Y,
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; R600-NEXT: BIT_ALIGN_INT T0.X, T1.Z, T1.W, PV.W,
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; R600-NEXT: LSHR * T1.X, KC0[2].Y, literal.x,
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; R600-NEXT: 2(2.802597e-45), 0(0.000000e+00)
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entry:
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%0 = call <4 x i32> @llvm.fshl.v4i32(<4 x i32> %x, <4 x i32> %y, <4 x i32> %z)
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store <4 x i32> %0, <4 x i32> addrspace(1)* %in
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ret void
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}
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define amdgpu_kernel void @fshl_v4i32_imm(<4 x i32> addrspace(1)* %in, <4 x i32> %x, <4 x i32> %y) {
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; SI-LABEL: fshl_v4i32_imm:
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; SI: ; %bb.0: ; %entry
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; SI-NEXT: s_load_dwordx2 s[4:5], s[0:1], 0x9
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; SI-NEXT: s_load_dwordx4 s[8:11], s[0:1], 0xd
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; SI-NEXT: s_load_dwordx4 s[0:3], s[0:1], 0x11
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; SI-NEXT: s_mov_b32 s7, 0xf000
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; SI-NEXT: s_mov_b32 s6, -1
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; SI-NEXT: s_waitcnt lgkmcnt(0)
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; SI-NEXT: v_mov_b32_e32 v0, s3
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; SI-NEXT: v_alignbit_b32 v3, s11, v0, 31
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; SI-NEXT: v_mov_b32_e32 v0, s2
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; SI-NEXT: v_alignbit_b32 v2, s10, v0, 23
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; SI-NEXT: v_mov_b32_e32 v0, s1
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; SI-NEXT: v_alignbit_b32 v1, s9, v0, 25
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; SI-NEXT: v_mov_b32_e32 v0, s0
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; SI-NEXT: v_alignbit_b32 v0, s8, v0, 31
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; SI-NEXT: buffer_store_dwordx4 v[0:3], off, s[4:7], 0
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; SI-NEXT: s_endpgm
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;
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; VI-LABEL: fshl_v4i32_imm:
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; VI: ; %bb.0: ; %entry
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; VI-NEXT: s_load_dwordx2 s[8:9], s[0:1], 0x24
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; VI-NEXT: s_load_dwordx4 s[4:7], s[0:1], 0x34
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; VI-NEXT: s_load_dwordx4 s[0:3], s[0:1], 0x44
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; VI-NEXT: s_waitcnt lgkmcnt(0)
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; VI-NEXT: v_mov_b32_e32 v4, s8
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; VI-NEXT: v_mov_b32_e32 v5, s9
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; VI-NEXT: v_mov_b32_e32 v0, s3
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; VI-NEXT: v_mov_b32_e32 v1, s2
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; VI-NEXT: v_alignbit_b32 v3, s7, v0, 31
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; VI-NEXT: v_mov_b32_e32 v0, s1
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; VI-NEXT: v_alignbit_b32 v2, s6, v1, 23
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; VI-NEXT: v_alignbit_b32 v1, s5, v0, 25
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; VI-NEXT: v_mov_b32_e32 v0, s0
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; VI-NEXT: v_alignbit_b32 v0, s4, v0, 31
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; VI-NEXT: flat_store_dwordx4 v[4:5], v[0:3]
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; VI-NEXT: s_endpgm
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;
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; GFX9-LABEL: fshl_v4i32_imm:
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; GFX9: ; %bb.0: ; %entry
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; GFX9-NEXT: s_load_dwordx2 s[8:9], s[0:1], 0x24
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; GFX9-NEXT: s_load_dwordx4 s[4:7], s[0:1], 0x34
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; GFX9-NEXT: s_load_dwordx4 s[0:3], s[0:1], 0x44
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; GFX9-NEXT: s_waitcnt lgkmcnt(0)
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; GFX9-NEXT: v_mov_b32_e32 v4, s8
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; GFX9-NEXT: v_mov_b32_e32 v5, s9
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; GFX9-NEXT: v_mov_b32_e32 v0, s3
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; GFX9-NEXT: v_mov_b32_e32 v1, s2
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; GFX9-NEXT: v_alignbit_b32 v3, s7, v0, 31
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; GFX9-NEXT: v_mov_b32_e32 v0, s1
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; GFX9-NEXT: v_alignbit_b32 v2, s6, v1, 23
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; GFX9-NEXT: v_alignbit_b32 v1, s5, v0, 25
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; GFX9-NEXT: v_mov_b32_e32 v0, s0
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; GFX9-NEXT: v_alignbit_b32 v0, s4, v0, 31
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; GFX9-NEXT: global_store_dwordx4 v[4:5], v[0:3], off
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; GFX9-NEXT: s_endpgm
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;
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; R600-LABEL: fshl_v4i32_imm:
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; R600: ; %bb.0: ; %entry
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; R600-NEXT: ALU 9, @4, KC0[CB0:0-32], KC1[]
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; R600-NEXT: MEM_RAT_CACHELESS STORE_RAW T0.XYZW, T1.X, 1
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; R600-NEXT: CF_END
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; R600-NEXT: PAD
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; R600-NEXT: ALU clause starting at 4:
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; R600-NEXT: BIT_ALIGN_INT * T0.W, KC0[4].X, KC0[5].X, literal.x,
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; R600-NEXT: 31(4.344025e-44), 0(0.000000e+00)
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; R600-NEXT: BIT_ALIGN_INT * T0.Z, KC0[3].W, KC0[4].W, literal.x,
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; R600-NEXT: 23(3.222986e-44), 0(0.000000e+00)
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; R600-NEXT: BIT_ALIGN_INT * T0.Y, KC0[3].Z, KC0[4].Z, literal.x,
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; R600-NEXT: 25(3.503246e-44), 0(0.000000e+00)
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; R600-NEXT: BIT_ALIGN_INT * T0.X, KC0[3].Y, KC0[4].Y, literal.x,
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; R600-NEXT: 31(4.344025e-44), 0(0.000000e+00)
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; R600-NEXT: LSHR * T1.X, KC0[2].Y, literal.x,
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; R600-NEXT: 2(2.802597e-45), 0(0.000000e+00)
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entry:
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%0 = call <4 x i32> @llvm.fshl.v4i32(<4 x i32> %x, <4 x i32> %y, <4 x i32> <i32 1, i32 7, i32 9, i32 33>)
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store <4 x i32> %0, <4 x i32> addrspace(1)* %in
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ret void
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}
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