forked from OSchip/llvm-project
169 lines
5.9 KiB
LLVM
169 lines
5.9 KiB
LLVM
; NOTE: Assertions have been autogenerated by utils/update_llc_test_checks.py
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; RUN: llc -march=amdgcn -verify-machineinstrs -simplifycfg-require-and-preserve-domtree=1 < %s | FileCheck -enable-var-scope %s
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; Although it's modeled without any control flow in order to get better code
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; out of the structurizer, @llvm.amdgcn.kill actually ends the thread that calls
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; it with "true". In case it's called in a provably infinite loop, we still
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; need to successfully exit and export something, even if we can't know where
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; to jump to in the LLVM IR. Therefore we insert a null export ourselves in
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; this case right before the s_endpgm to avoid GPU hangs, which is what this
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; tests.
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define amdgpu_ps void @return_void(float %0) #0 {
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; CHECK-LABEL: return_void:
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; CHECK: ; %bb.0: ; %main_body
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; CHECK-NEXT: s_mov_b64 s[0:1], exec
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; CHECK-NEXT: s_mov_b32 s2, 0x41200000
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; CHECK-NEXT: v_cmp_ngt_f32_e32 vcc, s2, v0
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; CHECK-NEXT: s_and_saveexec_b64 s[2:3], vcc
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; CHECK-NEXT: s_xor_b64 s[2:3], exec, s[2:3]
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; CHECK-NEXT: s_cbranch_execz .LBB0_3
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; CHECK-NEXT: .LBB0_1: ; %loop
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; CHECK-NEXT: ; =>This Inner Loop Header: Depth=1
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; CHECK-NEXT: s_andn2_b64 s[0:1], s[0:1], exec
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; CHECK-NEXT: s_cbranch_scc0 .LBB0_6
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; CHECK-NEXT: ; %bb.2: ; %loop
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; CHECK-NEXT: ; in Loop: Header=BB0_1 Depth=1
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; CHECK-NEXT: s_mov_b64 exec, 0
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; CHECK-NEXT: s_mov_b64 vcc, 0
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; CHECK-NEXT: s_branch .LBB0_1
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; CHECK-NEXT: .LBB0_3: ; %Flow1
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; CHECK-NEXT: s_andn2_saveexec_b64 s[0:1], s[2:3]
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; CHECK-NEXT: s_cbranch_execz .LBB0_5
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; CHECK-NEXT: ; %bb.4: ; %end
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; CHECK-NEXT: v_mov_b32_e32 v0, 1.0
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; CHECK-NEXT: v_mov_b32_e32 v1, 0
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; CHECK-NEXT: exp mrt0 v1, v1, v1, v0 done vm
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; CHECK-NEXT: .LBB0_5: ; %UnifiedReturnBlock
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; CHECK-NEXT: s_endpgm
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; CHECK-NEXT: .LBB0_6:
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; CHECK-NEXT: s_mov_b64 exec, 0
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; CHECK-NEXT: exp null off, off, off, off done vm
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; CHECK-NEXT: s_endpgm
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main_body:
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%cmp = fcmp olt float %0, 1.000000e+01
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br i1 %cmp, label %end, label %loop
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loop:
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call void @llvm.amdgcn.kill(i1 false) #3
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br label %loop
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end:
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call void @llvm.amdgcn.exp.f32(i32 0, i32 15, float 0., float 0., float 0., float 1., i1 true, i1 true) #3
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ret void
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}
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define amdgpu_ps void @return_void_compr(float %0) #0 {
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; CHECK-LABEL: return_void_compr:
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; CHECK: ; %bb.0: ; %main_body
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; CHECK-NEXT: s_mov_b64 s[0:1], exec
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; CHECK-NEXT: s_mov_b32 s2, 0x41200000
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; CHECK-NEXT: v_cmp_ngt_f32_e32 vcc, s2, v0
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; CHECK-NEXT: s_and_saveexec_b64 s[2:3], vcc
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; CHECK-NEXT: s_xor_b64 s[2:3], exec, s[2:3]
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; CHECK-NEXT: s_cbranch_execz .LBB1_3
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; CHECK-NEXT: .LBB1_1: ; %loop
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; CHECK-NEXT: ; =>This Inner Loop Header: Depth=1
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; CHECK-NEXT: s_andn2_b64 s[0:1], s[0:1], exec
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; CHECK-NEXT: s_cbranch_scc0 .LBB1_6
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; CHECK-NEXT: ; %bb.2: ; %loop
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; CHECK-NEXT: ; in Loop: Header=BB1_1 Depth=1
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; CHECK-NEXT: s_mov_b64 exec, 0
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; CHECK-NEXT: s_mov_b64 vcc, 0
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; CHECK-NEXT: s_branch .LBB1_1
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; CHECK-NEXT: .LBB1_3: ; %Flow1
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; CHECK-NEXT: s_andn2_saveexec_b64 s[0:1], s[2:3]
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; CHECK-NEXT: s_cbranch_execz .LBB1_5
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; CHECK-NEXT: ; %bb.4: ; %end
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; CHECK-NEXT: v_mov_b32_e32 v0, 0
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; CHECK-NEXT: exp mrt0 v0, off, v0, off done compr vm
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; CHECK-NEXT: .LBB1_5: ; %UnifiedReturnBlock
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; CHECK-NEXT: s_endpgm
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; CHECK-NEXT: .LBB1_6:
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; CHECK-NEXT: s_mov_b64 exec, 0
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; CHECK-NEXT: exp null off, off, off, off done vm
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; CHECK-NEXT: s_endpgm
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main_body:
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%cmp = fcmp olt float %0, 1.000000e+01
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br i1 %cmp, label %end, label %loop
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loop:
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call void @llvm.amdgcn.kill(i1 false) #3
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br label %loop
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end:
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call void @llvm.amdgcn.exp.compr.v2i16(i32 0, i32 5, <2 x i16> < i16 0, i16 0 >, <2 x i16> < i16 0, i16 0 >, i1 true, i1 true) #3
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ret void
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}
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; test the case where there's only a kill in an infinite loop
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define amdgpu_ps void @only_kill() #0 {
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; CHECK-LABEL: only_kill:
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; CHECK: ; %bb.0: ; %main_body
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; CHECK-NEXT: s_mov_b64 s[0:1], exec
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; CHECK-NEXT: .LBB2_1: ; %loop
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; CHECK-NEXT: ; =>This Inner Loop Header: Depth=1
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; CHECK-NEXT: s_andn2_b64 s[0:1], s[0:1], exec
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; CHECK-NEXT: s_cbranch_scc0 .LBB2_3
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; CHECK-NEXT: ; %bb.2: ; %loop
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; CHECK-NEXT: ; in Loop: Header=BB2_1 Depth=1
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; CHECK-NEXT: s_mov_b64 exec, 0
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; CHECK-NEXT: s_branch .LBB2_1
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; CHECK-NEXT: .LBB2_3:
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; CHECK-NEXT: s_mov_b64 exec, 0
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; CHECK-NEXT: exp null off, off, off, off done vm
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; CHECK-NEXT: s_endpgm
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main_body:
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br label %loop
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loop:
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call void @llvm.amdgcn.kill(i1 false) #3
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br label %loop
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}
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; Check that the epilog is the final block
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define amdgpu_ps float @return_nonvoid(float %0) #0 {
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; CHECK-LABEL: return_nonvoid:
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; CHECK: ; %bb.0: ; %main_body
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; CHECK-NEXT: s_mov_b64 s[0:1], exec
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; CHECK-NEXT: s_mov_b32 s2, 0x41200000
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; CHECK-NEXT: v_cmp_ngt_f32_e32 vcc, s2, v0
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; CHECK-NEXT: s_and_saveexec_b64 s[2:3], vcc
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; CHECK-NEXT: s_xor_b64 s[2:3], exec, s[2:3]
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; CHECK-NEXT: s_cbranch_execz .LBB3_3
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; CHECK-NEXT: .LBB3_1: ; %loop
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; CHECK-NEXT: ; =>This Inner Loop Header: Depth=1
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; CHECK-NEXT: s_andn2_b64 s[0:1], s[0:1], exec
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; CHECK-NEXT: s_cbranch_scc0 .LBB3_4
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; CHECK-NEXT: ; %bb.2: ; %loop
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; CHECK-NEXT: ; in Loop: Header=BB3_1 Depth=1
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; CHECK-NEXT: s_mov_b64 exec, 0
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; CHECK-NEXT: s_mov_b64 vcc, exec
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; CHECK-NEXT: s_cbranch_execnz .LBB3_1
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; CHECK-NEXT: .LBB3_3: ; %Flow1
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; CHECK-NEXT: s_or_b64 exec, exec, s[2:3]
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; CHECK-NEXT: v_mov_b32_e32 v0, 0
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; CHECK-NEXT: s_branch .LBB3_5
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; CHECK-NEXT: .LBB3_4:
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; CHECK-NEXT: s_mov_b64 exec, 0
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; CHECK-NEXT: exp null off, off, off, off done vm
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; CHECK-NEXT: s_endpgm
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; CHECK-NEXT: .LBB3_5:
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main_body:
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%cmp = fcmp olt float %0, 1.000000e+01
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br i1 %cmp, label %end, label %loop
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loop:
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call void @llvm.amdgcn.kill(i1 false) #3
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br label %loop
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end:
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ret float 0.
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}
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declare void @llvm.amdgcn.kill(i1) #0
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declare void @llvm.amdgcn.exp.f32(i32 immarg, i32 immarg, float, float, float, float, i1 immarg, i1 immarg) #0
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declare void @llvm.amdgcn.exp.compr.v2i16(i32 immarg, i32 immarg, <2 x i16>, <2 x i16>, i1 immarg, i1 immarg) #0
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attributes #0 = { nounwind }
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