mirror of
https://github.com/RPCS3/llvm-mirror.git
synced 2024-11-26 12:43:36 +01:00
cc12b285b6
This will currently accept the old number of bytes syntax, and convert it to a scalar. This should be removed in the near future (I think I converted all of the tests already, but likely missed a few). Not sure what the exact syntax and policy should be. We can continue printing the number of bytes for non-generic instructions to avoid test churn and only allow non-scalar types for generic instructions. This will currently print the LLT in parentheses, but accept parsing the existing integers and implicitly converting to scalar. The parentheses are a bit ugly, but the parser logic seems unable to deal without either parentheses or some keyword to indicate the start of a type.
328 lines
28 KiB
LLVM
328 lines
28 KiB
LLVM
; NOTE: Assertions have been autogenerated by utils/update_mir_test_checks.py
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; RUN: llc -global-isel -mtriple=amdgcn-mesa-mesa3d -mcpu=fiji -stop-after=regbankselect -regbankselect-fast -o - %s | FileCheck -check-prefix=FAST %s
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; RUN: llc -global-isel -mtriple=amdgcn-mesa-mesa3d -mcpu=fiji -stop-after=regbankselect -regbankselect-greedy -o - %s | FileCheck -check-prefix=GREEDY %s
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; Natural mapping
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define amdgpu_ps void @load_1d_vgpr_vaddr__sgpr_srsrc(<8 x i32> inreg %rsrc, i32 %s) {
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; FAST-LABEL: name: load_1d_vgpr_vaddr__sgpr_srsrc
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; FAST: bb.1 (%ir-block.0):
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; FAST: liveins: $sgpr2, $sgpr3, $sgpr4, $sgpr5, $sgpr6, $sgpr7, $sgpr8, $sgpr9, $vgpr0
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; FAST: [[COPY:%[0-9]+]]:sgpr(s32) = COPY $sgpr2
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; FAST: [[COPY1:%[0-9]+]]:sgpr(s32) = COPY $sgpr3
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; FAST: [[COPY2:%[0-9]+]]:sgpr(s32) = COPY $sgpr4
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; FAST: [[COPY3:%[0-9]+]]:sgpr(s32) = COPY $sgpr5
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; FAST: [[COPY4:%[0-9]+]]:sgpr(s32) = COPY $sgpr6
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; FAST: [[COPY5:%[0-9]+]]:sgpr(s32) = COPY $sgpr7
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; FAST: [[COPY6:%[0-9]+]]:sgpr(s32) = COPY $sgpr8
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; FAST: [[COPY7:%[0-9]+]]:sgpr(s32) = COPY $sgpr9
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; FAST: [[BUILD_VECTOR:%[0-9]+]]:sgpr(<8 x s32>) = G_BUILD_VECTOR [[COPY]](s32), [[COPY1]](s32), [[COPY2]](s32), [[COPY3]](s32), [[COPY4]](s32), [[COPY5]](s32), [[COPY6]](s32), [[COPY7]](s32)
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; FAST: [[COPY8:%[0-9]+]]:vgpr(s32) = COPY $vgpr0
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; FAST: [[DEF:%[0-9]+]]:sgpr(p1) = G_IMPLICIT_DEF
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; FAST: [[AMDGPU_INTRIN_IMAGE_LOAD:%[0-9]+]]:vgpr(<4 x s32>) = G_AMDGPU_INTRIN_IMAGE_LOAD intrinsic(@llvm.amdgcn.image.load.1d), 15, [[COPY8]](s32), [[BUILD_VECTOR]](<8 x s32>), 0, 0, 0 :: (dereferenceable load (<4 x s32>) from custom "ImageResource")
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; FAST: [[COPY9:%[0-9]+]]:vgpr(p1) = COPY [[DEF]](p1)
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; FAST: G_STORE [[AMDGPU_INTRIN_IMAGE_LOAD]](<4 x s32>), [[COPY9]](p1) :: (store (<4 x s32>) into `<4 x float> addrspace(1)* undef`, addrspace 1)
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; FAST: S_ENDPGM 0
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; GREEDY-LABEL: name: load_1d_vgpr_vaddr__sgpr_srsrc
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; GREEDY: bb.1 (%ir-block.0):
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; GREEDY: liveins: $sgpr2, $sgpr3, $sgpr4, $sgpr5, $sgpr6, $sgpr7, $sgpr8, $sgpr9, $vgpr0
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; GREEDY: [[COPY:%[0-9]+]]:sgpr(s32) = COPY $sgpr2
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; GREEDY: [[COPY1:%[0-9]+]]:sgpr(s32) = COPY $sgpr3
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; GREEDY: [[COPY2:%[0-9]+]]:sgpr(s32) = COPY $sgpr4
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; GREEDY: [[COPY3:%[0-9]+]]:sgpr(s32) = COPY $sgpr5
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; GREEDY: [[COPY4:%[0-9]+]]:sgpr(s32) = COPY $sgpr6
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; GREEDY: [[COPY5:%[0-9]+]]:sgpr(s32) = COPY $sgpr7
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; GREEDY: [[COPY6:%[0-9]+]]:sgpr(s32) = COPY $sgpr8
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; GREEDY: [[COPY7:%[0-9]+]]:sgpr(s32) = COPY $sgpr9
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; GREEDY: [[BUILD_VECTOR:%[0-9]+]]:sgpr(<8 x s32>) = G_BUILD_VECTOR [[COPY]](s32), [[COPY1]](s32), [[COPY2]](s32), [[COPY3]](s32), [[COPY4]](s32), [[COPY5]](s32), [[COPY6]](s32), [[COPY7]](s32)
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; GREEDY: [[COPY8:%[0-9]+]]:vgpr(s32) = COPY $vgpr0
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; GREEDY: [[DEF:%[0-9]+]]:sgpr(p1) = G_IMPLICIT_DEF
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; GREEDY: [[AMDGPU_INTRIN_IMAGE_LOAD:%[0-9]+]]:vgpr(<4 x s32>) = G_AMDGPU_INTRIN_IMAGE_LOAD intrinsic(@llvm.amdgcn.image.load.1d), 15, [[COPY8]](s32), [[BUILD_VECTOR]](<8 x s32>), 0, 0, 0 :: (dereferenceable load (<4 x s32>) from custom "ImageResource")
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; GREEDY: [[COPY9:%[0-9]+]]:vgpr(p1) = COPY [[DEF]](p1)
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; GREEDY: G_STORE [[AMDGPU_INTRIN_IMAGE_LOAD]](<4 x s32>), [[COPY9]](p1) :: (store (<4 x s32>) into `<4 x float> addrspace(1)* undef`, addrspace 1)
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; GREEDY: S_ENDPGM 0
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%v = call <4 x float> @llvm.amdgcn.image.load.1d.v4f32.i32(i32 15, i32 %s, <8 x i32> %rsrc, i32 0, i32 0)
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store <4 x float> %v, <4 x float> addrspace(1)* undef
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ret void
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}
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; Copy needed for VGPR argument
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define amdgpu_ps void @load_1d_sgpr_vaddr__sgpr_srsrc(<8 x i32> inreg %rsrc, i32 inreg %s) {
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; FAST-LABEL: name: load_1d_sgpr_vaddr__sgpr_srsrc
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; FAST: bb.1 (%ir-block.0):
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; FAST: liveins: $sgpr2, $sgpr3, $sgpr4, $sgpr5, $sgpr6, $sgpr7, $sgpr8, $sgpr9, $sgpr10
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; FAST: [[COPY:%[0-9]+]]:sgpr(s32) = COPY $sgpr2
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; FAST: [[COPY1:%[0-9]+]]:sgpr(s32) = COPY $sgpr3
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; FAST: [[COPY2:%[0-9]+]]:sgpr(s32) = COPY $sgpr4
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; FAST: [[COPY3:%[0-9]+]]:sgpr(s32) = COPY $sgpr5
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; FAST: [[COPY4:%[0-9]+]]:sgpr(s32) = COPY $sgpr6
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; FAST: [[COPY5:%[0-9]+]]:sgpr(s32) = COPY $sgpr7
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; FAST: [[COPY6:%[0-9]+]]:sgpr(s32) = COPY $sgpr8
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; FAST: [[COPY7:%[0-9]+]]:sgpr(s32) = COPY $sgpr9
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; FAST: [[BUILD_VECTOR:%[0-9]+]]:sgpr(<8 x s32>) = G_BUILD_VECTOR [[COPY]](s32), [[COPY1]](s32), [[COPY2]](s32), [[COPY3]](s32), [[COPY4]](s32), [[COPY5]](s32), [[COPY6]](s32), [[COPY7]](s32)
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; FAST: [[COPY8:%[0-9]+]]:sgpr(s32) = COPY $sgpr10
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; FAST: [[DEF:%[0-9]+]]:sgpr(p1) = G_IMPLICIT_DEF
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; FAST: [[COPY9:%[0-9]+]]:vgpr(s32) = COPY [[COPY8]](s32)
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; FAST: [[AMDGPU_INTRIN_IMAGE_LOAD:%[0-9]+]]:vgpr(<4 x s32>) = G_AMDGPU_INTRIN_IMAGE_LOAD intrinsic(@llvm.amdgcn.image.load.1d), 15, [[COPY9]](s32), [[BUILD_VECTOR]](<8 x s32>), 0, 0, 0 :: (dereferenceable load (<4 x s32>) from custom "ImageResource")
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; FAST: [[COPY10:%[0-9]+]]:vgpr(p1) = COPY [[DEF]](p1)
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; FAST: G_STORE [[AMDGPU_INTRIN_IMAGE_LOAD]](<4 x s32>), [[COPY10]](p1) :: (store (<4 x s32>) into `<4 x float> addrspace(1)* undef`, addrspace 1)
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; FAST: S_ENDPGM 0
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; GREEDY-LABEL: name: load_1d_sgpr_vaddr__sgpr_srsrc
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; GREEDY: bb.1 (%ir-block.0):
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; GREEDY: liveins: $sgpr2, $sgpr3, $sgpr4, $sgpr5, $sgpr6, $sgpr7, $sgpr8, $sgpr9, $sgpr10
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; GREEDY: [[COPY:%[0-9]+]]:sgpr(s32) = COPY $sgpr2
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; GREEDY: [[COPY1:%[0-9]+]]:sgpr(s32) = COPY $sgpr3
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; GREEDY: [[COPY2:%[0-9]+]]:sgpr(s32) = COPY $sgpr4
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; GREEDY: [[COPY3:%[0-9]+]]:sgpr(s32) = COPY $sgpr5
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; GREEDY: [[COPY4:%[0-9]+]]:sgpr(s32) = COPY $sgpr6
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; GREEDY: [[COPY5:%[0-9]+]]:sgpr(s32) = COPY $sgpr7
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; GREEDY: [[COPY6:%[0-9]+]]:sgpr(s32) = COPY $sgpr8
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; GREEDY: [[COPY7:%[0-9]+]]:sgpr(s32) = COPY $sgpr9
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; GREEDY: [[BUILD_VECTOR:%[0-9]+]]:sgpr(<8 x s32>) = G_BUILD_VECTOR [[COPY]](s32), [[COPY1]](s32), [[COPY2]](s32), [[COPY3]](s32), [[COPY4]](s32), [[COPY5]](s32), [[COPY6]](s32), [[COPY7]](s32)
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; GREEDY: [[COPY8:%[0-9]+]]:sgpr(s32) = COPY $sgpr10
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; GREEDY: [[DEF:%[0-9]+]]:sgpr(p1) = G_IMPLICIT_DEF
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; GREEDY: [[COPY9:%[0-9]+]]:vgpr(s32) = COPY [[COPY8]](s32)
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; GREEDY: [[AMDGPU_INTRIN_IMAGE_LOAD:%[0-9]+]]:vgpr(<4 x s32>) = G_AMDGPU_INTRIN_IMAGE_LOAD intrinsic(@llvm.amdgcn.image.load.1d), 15, [[COPY9]](s32), [[BUILD_VECTOR]](<8 x s32>), 0, 0, 0 :: (dereferenceable load (<4 x s32>) from custom "ImageResource")
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; GREEDY: [[COPY10:%[0-9]+]]:vgpr(p1) = COPY [[DEF]](p1)
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; GREEDY: G_STORE [[AMDGPU_INTRIN_IMAGE_LOAD]](<4 x s32>), [[COPY10]](p1) :: (store (<4 x s32>) into `<4 x float> addrspace(1)* undef`, addrspace 1)
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; GREEDY: S_ENDPGM 0
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%v = call <4 x float> @llvm.amdgcn.image.load.1d.v4f32.i32(i32 15, i32 %s, <8 x i32> %rsrc, i32 0, i32 0)
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store <4 x float> %v, <4 x float> addrspace(1)* undef
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ret void
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}
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; Waterfall loop needed for rsrc
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define amdgpu_ps void @load_1d_vgpr_vaddr__vgpr_srsrc(<8 x i32> %rsrc, i32 %s) {
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; FAST-LABEL: name: load_1d_vgpr_vaddr__vgpr_srsrc
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; FAST: bb.1 (%ir-block.0):
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; FAST: successors: %bb.2(0x80000000)
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; FAST: liveins: $vgpr0, $vgpr1, $vgpr2, $vgpr3, $vgpr4, $vgpr5, $vgpr6, $vgpr7, $vgpr8
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; FAST: [[COPY:%[0-9]+]]:vgpr(s32) = COPY $vgpr0
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; FAST: [[COPY1:%[0-9]+]]:vgpr(s32) = COPY $vgpr1
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; FAST: [[COPY2:%[0-9]+]]:vgpr(s32) = COPY $vgpr2
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; FAST: [[COPY3:%[0-9]+]]:vgpr(s32) = COPY $vgpr3
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; FAST: [[COPY4:%[0-9]+]]:vgpr(s32) = COPY $vgpr4
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; FAST: [[COPY5:%[0-9]+]]:vgpr(s32) = COPY $vgpr5
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; FAST: [[COPY6:%[0-9]+]]:vgpr(s32) = COPY $vgpr6
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; FAST: [[COPY7:%[0-9]+]]:vgpr(s32) = COPY $vgpr7
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; FAST: [[BUILD_VECTOR:%[0-9]+]]:vgpr(<8 x s32>) = G_BUILD_VECTOR [[COPY]](s32), [[COPY1]](s32), [[COPY2]](s32), [[COPY3]](s32), [[COPY4]](s32), [[COPY5]](s32), [[COPY6]](s32), [[COPY7]](s32)
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; FAST: [[COPY8:%[0-9]+]]:vgpr(s32) = COPY $vgpr8
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; FAST: [[DEF:%[0-9]+]]:sgpr(p1) = G_IMPLICIT_DEF
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; FAST: [[DEF1:%[0-9]+]]:vgpr(<4 x s32>) = G_IMPLICIT_DEF
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; FAST: [[DEF2:%[0-9]+]]:sreg_64_xexec = IMPLICIT_DEF
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; FAST: [[UV:%[0-9]+]]:vreg_64(s64), [[UV1:%[0-9]+]]:vreg_64(s64), [[UV2:%[0-9]+]]:vreg_64(s64), [[UV3:%[0-9]+]]:vreg_64(s64) = G_UNMERGE_VALUES [[BUILD_VECTOR]](<8 x s32>)
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; FAST: [[S_MOV_B64_term:%[0-9]+]]:sreg_64_xexec = S_MOV_B64_term $exec
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; FAST: bb.2:
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; FAST: successors: %bb.3(0x40000000), %bb.2(0x40000000)
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; FAST: [[PHI:%[0-9]+]]:sreg_64_xexec = PHI [[DEF2]], %bb.1, %19, %bb.2
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; FAST: [[PHI1:%[0-9]+]]:vgpr(<4 x s32>) = G_PHI [[DEF1]](<4 x s32>), %bb.1, %12(<4 x s32>), %bb.2
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; FAST: [[V_READFIRSTLANE_B32_:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV]].sub0(s64), implicit $exec
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; FAST: [[V_READFIRSTLANE_B32_1:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV]].sub1(s64), implicit $exec
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; FAST: [[MV:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_]](s32), [[V_READFIRSTLANE_B32_1]](s32)
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; FAST: [[V_CMP_EQ_U64_e64_:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV]](s64), [[UV]](s64), implicit $exec
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; FAST: [[V_READFIRSTLANE_B32_2:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV1]].sub0(s64), implicit $exec
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; FAST: [[V_READFIRSTLANE_B32_3:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV1]].sub1(s64), implicit $exec
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; FAST: [[MV1:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_2]](s32), [[V_READFIRSTLANE_B32_3]](s32)
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; FAST: [[V_CMP_EQ_U64_e64_1:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV1]](s64), [[UV1]](s64), implicit $exec
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; FAST: [[S_AND_B64_:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_1]], [[V_CMP_EQ_U64_e64_]], implicit-def $scc
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; FAST: [[V_READFIRSTLANE_B32_4:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV2]].sub0(s64), implicit $exec
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; FAST: [[V_READFIRSTLANE_B32_5:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV2]].sub1(s64), implicit $exec
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; FAST: [[MV2:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_4]](s32), [[V_READFIRSTLANE_B32_5]](s32)
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; FAST: [[V_CMP_EQ_U64_e64_2:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV2]](s64), [[UV2]](s64), implicit $exec
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; FAST: [[S_AND_B64_1:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_2]], [[S_AND_B64_]], implicit-def $scc
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; FAST: [[V_READFIRSTLANE_B32_6:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV3]].sub0(s64), implicit $exec
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; FAST: [[V_READFIRSTLANE_B32_7:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV3]].sub1(s64), implicit $exec
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; FAST: [[MV3:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_6]](s32), [[V_READFIRSTLANE_B32_7]](s32)
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; FAST: [[V_CMP_EQ_U64_e64_3:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV3]](s64), [[UV3]](s64), implicit $exec
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; FAST: [[S_AND_B64_2:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_3]], [[S_AND_B64_1]], implicit-def $scc
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; FAST: [[BUILD_VECTOR1:%[0-9]+]]:sgpr(<8 x s32>) = G_BUILD_VECTOR [[V_READFIRSTLANE_B32_]](s32), [[V_READFIRSTLANE_B32_1]](s32), [[V_READFIRSTLANE_B32_2]](s32), [[V_READFIRSTLANE_B32_3]](s32), [[V_READFIRSTLANE_B32_4]](s32), [[V_READFIRSTLANE_B32_5]](s32), [[V_READFIRSTLANE_B32_6]](s32), [[V_READFIRSTLANE_B32_7]](s32)
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; FAST: [[AMDGPU_INTRIN_IMAGE_LOAD:%[0-9]+]]:vgpr(<4 x s32>) = G_AMDGPU_INTRIN_IMAGE_LOAD intrinsic(@llvm.amdgcn.image.load.1d), 15, [[COPY8]](s32), [[BUILD_VECTOR1]](<8 x s32>), 0, 0, 0 :: (dereferenceable load (<4 x s32>) from custom "ImageResource")
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; FAST: [[S_AND_SAVEEXEC_B64_:%[0-9]+]]:sreg_64_xexec = S_AND_SAVEEXEC_B64 killed [[S_AND_B64_2]], implicit-def $exec, implicit-def $scc, implicit $exec
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; FAST: $exec = S_XOR_B64_term $exec, [[S_AND_SAVEEXEC_B64_]], implicit-def $scc
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; FAST: S_CBRANCH_EXECNZ %bb.2, implicit $exec
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; FAST: bb.3:
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; FAST: successors: %bb.4(0x80000000)
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; FAST: $exec = S_MOV_B64_term [[S_MOV_B64_term]]
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; FAST: bb.4:
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; FAST: [[COPY9:%[0-9]+]]:vgpr(p1) = COPY [[DEF]](p1)
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; FAST: G_STORE [[AMDGPU_INTRIN_IMAGE_LOAD]](<4 x s32>), [[COPY9]](p1) :: (store (<4 x s32>) into `<4 x float> addrspace(1)* undef`, addrspace 1)
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; FAST: S_ENDPGM 0
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; GREEDY-LABEL: name: load_1d_vgpr_vaddr__vgpr_srsrc
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; GREEDY: bb.1 (%ir-block.0):
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; GREEDY: successors: %bb.2(0x80000000)
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; GREEDY: liveins: $vgpr0, $vgpr1, $vgpr2, $vgpr3, $vgpr4, $vgpr5, $vgpr6, $vgpr7, $vgpr8
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; GREEDY: [[COPY:%[0-9]+]]:vgpr(s32) = COPY $vgpr0
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; GREEDY: [[COPY1:%[0-9]+]]:vgpr(s32) = COPY $vgpr1
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; GREEDY: [[COPY2:%[0-9]+]]:vgpr(s32) = COPY $vgpr2
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; GREEDY: [[COPY3:%[0-9]+]]:vgpr(s32) = COPY $vgpr3
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; GREEDY: [[COPY4:%[0-9]+]]:vgpr(s32) = COPY $vgpr4
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; GREEDY: [[COPY5:%[0-9]+]]:vgpr(s32) = COPY $vgpr5
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; GREEDY: [[COPY6:%[0-9]+]]:vgpr(s32) = COPY $vgpr6
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; GREEDY: [[COPY7:%[0-9]+]]:vgpr(s32) = COPY $vgpr7
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; GREEDY: [[BUILD_VECTOR:%[0-9]+]]:vgpr(<8 x s32>) = G_BUILD_VECTOR [[COPY]](s32), [[COPY1]](s32), [[COPY2]](s32), [[COPY3]](s32), [[COPY4]](s32), [[COPY5]](s32), [[COPY6]](s32), [[COPY7]](s32)
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; GREEDY: [[COPY8:%[0-9]+]]:vgpr(s32) = COPY $vgpr8
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; GREEDY: [[DEF:%[0-9]+]]:sgpr(p1) = G_IMPLICIT_DEF
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; GREEDY: [[DEF1:%[0-9]+]]:vgpr(<4 x s32>) = G_IMPLICIT_DEF
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; GREEDY: [[DEF2:%[0-9]+]]:sreg_64_xexec = IMPLICIT_DEF
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; GREEDY: [[UV:%[0-9]+]]:vreg_64(s64), [[UV1:%[0-9]+]]:vreg_64(s64), [[UV2:%[0-9]+]]:vreg_64(s64), [[UV3:%[0-9]+]]:vreg_64(s64) = G_UNMERGE_VALUES [[BUILD_VECTOR]](<8 x s32>)
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; GREEDY: [[S_MOV_B64_term:%[0-9]+]]:sreg_64_xexec = S_MOV_B64_term $exec
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; GREEDY: bb.2:
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; GREEDY: successors: %bb.3(0x40000000), %bb.2(0x40000000)
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; GREEDY: [[PHI:%[0-9]+]]:sreg_64_xexec = PHI [[DEF2]], %bb.1, %19, %bb.2
|
|
; GREEDY: [[PHI1:%[0-9]+]]:vgpr(<4 x s32>) = G_PHI [[DEF1]](<4 x s32>), %bb.1, %12(<4 x s32>), %bb.2
|
|
; GREEDY: [[V_READFIRSTLANE_B32_:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV]].sub0(s64), implicit $exec
|
|
; GREEDY: [[V_READFIRSTLANE_B32_1:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV]].sub1(s64), implicit $exec
|
|
; GREEDY: [[MV:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_]](s32), [[V_READFIRSTLANE_B32_1]](s32)
|
|
; GREEDY: [[V_CMP_EQ_U64_e64_:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV]](s64), [[UV]](s64), implicit $exec
|
|
; GREEDY: [[V_READFIRSTLANE_B32_2:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV1]].sub0(s64), implicit $exec
|
|
; GREEDY: [[V_READFIRSTLANE_B32_3:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV1]].sub1(s64), implicit $exec
|
|
; GREEDY: [[MV1:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_2]](s32), [[V_READFIRSTLANE_B32_3]](s32)
|
|
; GREEDY: [[V_CMP_EQ_U64_e64_1:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV1]](s64), [[UV1]](s64), implicit $exec
|
|
; GREEDY: [[S_AND_B64_:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_1]], [[V_CMP_EQ_U64_e64_]], implicit-def $scc
|
|
; GREEDY: [[V_READFIRSTLANE_B32_4:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV2]].sub0(s64), implicit $exec
|
|
; GREEDY: [[V_READFIRSTLANE_B32_5:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV2]].sub1(s64), implicit $exec
|
|
; GREEDY: [[MV2:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_4]](s32), [[V_READFIRSTLANE_B32_5]](s32)
|
|
; GREEDY: [[V_CMP_EQ_U64_e64_2:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV2]](s64), [[UV2]](s64), implicit $exec
|
|
; GREEDY: [[S_AND_B64_1:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_2]], [[S_AND_B64_]], implicit-def $scc
|
|
; GREEDY: [[V_READFIRSTLANE_B32_6:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV3]].sub0(s64), implicit $exec
|
|
; GREEDY: [[V_READFIRSTLANE_B32_7:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV3]].sub1(s64), implicit $exec
|
|
; GREEDY: [[MV3:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_6]](s32), [[V_READFIRSTLANE_B32_7]](s32)
|
|
; GREEDY: [[V_CMP_EQ_U64_e64_3:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV3]](s64), [[UV3]](s64), implicit $exec
|
|
; GREEDY: [[S_AND_B64_2:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_3]], [[S_AND_B64_1]], implicit-def $scc
|
|
; GREEDY: [[BUILD_VECTOR1:%[0-9]+]]:sgpr(<8 x s32>) = G_BUILD_VECTOR [[V_READFIRSTLANE_B32_]](s32), [[V_READFIRSTLANE_B32_1]](s32), [[V_READFIRSTLANE_B32_2]](s32), [[V_READFIRSTLANE_B32_3]](s32), [[V_READFIRSTLANE_B32_4]](s32), [[V_READFIRSTLANE_B32_5]](s32), [[V_READFIRSTLANE_B32_6]](s32), [[V_READFIRSTLANE_B32_7]](s32)
|
|
; GREEDY: [[AMDGPU_INTRIN_IMAGE_LOAD:%[0-9]+]]:vgpr(<4 x s32>) = G_AMDGPU_INTRIN_IMAGE_LOAD intrinsic(@llvm.amdgcn.image.load.1d), 15, [[COPY8]](s32), [[BUILD_VECTOR1]](<8 x s32>), 0, 0, 0 :: (dereferenceable load (<4 x s32>) from custom "ImageResource")
|
|
; GREEDY: [[S_AND_SAVEEXEC_B64_:%[0-9]+]]:sreg_64_xexec = S_AND_SAVEEXEC_B64 killed [[S_AND_B64_2]], implicit-def $exec, implicit-def $scc, implicit $exec
|
|
; GREEDY: $exec = S_XOR_B64_term $exec, [[S_AND_SAVEEXEC_B64_]], implicit-def $scc
|
|
; GREEDY: S_CBRANCH_EXECNZ %bb.2, implicit $exec
|
|
; GREEDY: bb.3:
|
|
; GREEDY: successors: %bb.4(0x80000000)
|
|
; GREEDY: $exec = S_MOV_B64_term [[S_MOV_B64_term]]
|
|
; GREEDY: bb.4:
|
|
; GREEDY: [[COPY9:%[0-9]+]]:vgpr(p1) = COPY [[DEF]](p1)
|
|
; GREEDY: G_STORE [[AMDGPU_INTRIN_IMAGE_LOAD]](<4 x s32>), [[COPY9]](p1) :: (store (<4 x s32>) into `<4 x float> addrspace(1)* undef`, addrspace 1)
|
|
; GREEDY: S_ENDPGM 0
|
|
%v = call <4 x float> @llvm.amdgcn.image.load.1d.v4f32.i32(i32 15, i32 %s, <8 x i32> %rsrc, i32 0, i32 0)
|
|
store <4 x float> %v, <4 x float> addrspace(1)* undef
|
|
ret void
|
|
}
|
|
|
|
; Waterfall loop needed for rsrc, copy needed for vaddr
|
|
define amdgpu_ps void @load_1d_sgpr_vaddr__vgpr_srsrc(<8 x i32> %rsrc, i32 inreg %s) {
|
|
; FAST-LABEL: name: load_1d_sgpr_vaddr__vgpr_srsrc
|
|
; FAST: bb.1 (%ir-block.0):
|
|
; FAST: successors: %bb.2(0x80000000)
|
|
; FAST: liveins: $sgpr2, $vgpr0, $vgpr1, $vgpr2, $vgpr3, $vgpr4, $vgpr5, $vgpr6, $vgpr7
|
|
; FAST: [[COPY:%[0-9]+]]:vgpr(s32) = COPY $vgpr0
|
|
; FAST: [[COPY1:%[0-9]+]]:vgpr(s32) = COPY $vgpr1
|
|
; FAST: [[COPY2:%[0-9]+]]:vgpr(s32) = COPY $vgpr2
|
|
; FAST: [[COPY3:%[0-9]+]]:vgpr(s32) = COPY $vgpr3
|
|
; FAST: [[COPY4:%[0-9]+]]:vgpr(s32) = COPY $vgpr4
|
|
; FAST: [[COPY5:%[0-9]+]]:vgpr(s32) = COPY $vgpr5
|
|
; FAST: [[COPY6:%[0-9]+]]:vgpr(s32) = COPY $vgpr6
|
|
; FAST: [[COPY7:%[0-9]+]]:vgpr(s32) = COPY $vgpr7
|
|
; FAST: [[BUILD_VECTOR:%[0-9]+]]:vgpr(<8 x s32>) = G_BUILD_VECTOR [[COPY]](s32), [[COPY1]](s32), [[COPY2]](s32), [[COPY3]](s32), [[COPY4]](s32), [[COPY5]](s32), [[COPY6]](s32), [[COPY7]](s32)
|
|
; FAST: [[COPY8:%[0-9]+]]:sgpr(s32) = COPY $sgpr2
|
|
; FAST: [[DEF:%[0-9]+]]:sgpr(p1) = G_IMPLICIT_DEF
|
|
; FAST: [[COPY9:%[0-9]+]]:vgpr(s32) = COPY [[COPY8]](s32)
|
|
; FAST: [[DEF1:%[0-9]+]]:vgpr(<4 x s32>) = G_IMPLICIT_DEF
|
|
; FAST: [[DEF2:%[0-9]+]]:sreg_64_xexec = IMPLICIT_DEF
|
|
; FAST: [[UV:%[0-9]+]]:vreg_64(s64), [[UV1:%[0-9]+]]:vreg_64(s64), [[UV2:%[0-9]+]]:vreg_64(s64), [[UV3:%[0-9]+]]:vreg_64(s64) = G_UNMERGE_VALUES [[BUILD_VECTOR]](<8 x s32>)
|
|
; FAST: [[S_MOV_B64_term:%[0-9]+]]:sreg_64_xexec = S_MOV_B64_term $exec
|
|
; FAST: bb.2:
|
|
; FAST: successors: %bb.3(0x40000000), %bb.2(0x40000000)
|
|
; FAST: [[PHI:%[0-9]+]]:sreg_64_xexec = PHI [[DEF2]], %bb.1, %20, %bb.2
|
|
; FAST: [[PHI1:%[0-9]+]]:vgpr(<4 x s32>) = G_PHI [[DEF1]](<4 x s32>), %bb.1, %12(<4 x s32>), %bb.2
|
|
; FAST: [[V_READFIRSTLANE_B32_:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV]].sub0(s64), implicit $exec
|
|
; FAST: [[V_READFIRSTLANE_B32_1:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV]].sub1(s64), implicit $exec
|
|
; FAST: [[MV:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_]](s32), [[V_READFIRSTLANE_B32_1]](s32)
|
|
; FAST: [[V_CMP_EQ_U64_e64_:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV]](s64), [[UV]](s64), implicit $exec
|
|
; FAST: [[V_READFIRSTLANE_B32_2:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV1]].sub0(s64), implicit $exec
|
|
; FAST: [[V_READFIRSTLANE_B32_3:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV1]].sub1(s64), implicit $exec
|
|
; FAST: [[MV1:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_2]](s32), [[V_READFIRSTLANE_B32_3]](s32)
|
|
; FAST: [[V_CMP_EQ_U64_e64_1:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV1]](s64), [[UV1]](s64), implicit $exec
|
|
; FAST: [[S_AND_B64_:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_1]], [[V_CMP_EQ_U64_e64_]], implicit-def $scc
|
|
; FAST: [[V_READFIRSTLANE_B32_4:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV2]].sub0(s64), implicit $exec
|
|
; FAST: [[V_READFIRSTLANE_B32_5:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV2]].sub1(s64), implicit $exec
|
|
; FAST: [[MV2:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_4]](s32), [[V_READFIRSTLANE_B32_5]](s32)
|
|
; FAST: [[V_CMP_EQ_U64_e64_2:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV2]](s64), [[UV2]](s64), implicit $exec
|
|
; FAST: [[S_AND_B64_1:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_2]], [[S_AND_B64_]], implicit-def $scc
|
|
; FAST: [[V_READFIRSTLANE_B32_6:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV3]].sub0(s64), implicit $exec
|
|
; FAST: [[V_READFIRSTLANE_B32_7:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV3]].sub1(s64), implicit $exec
|
|
; FAST: [[MV3:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_6]](s32), [[V_READFIRSTLANE_B32_7]](s32)
|
|
; FAST: [[V_CMP_EQ_U64_e64_3:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV3]](s64), [[UV3]](s64), implicit $exec
|
|
; FAST: [[S_AND_B64_2:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_3]], [[S_AND_B64_1]], implicit-def $scc
|
|
; FAST: [[BUILD_VECTOR1:%[0-9]+]]:sgpr(<8 x s32>) = G_BUILD_VECTOR [[V_READFIRSTLANE_B32_]](s32), [[V_READFIRSTLANE_B32_1]](s32), [[V_READFIRSTLANE_B32_2]](s32), [[V_READFIRSTLANE_B32_3]](s32), [[V_READFIRSTLANE_B32_4]](s32), [[V_READFIRSTLANE_B32_5]](s32), [[V_READFIRSTLANE_B32_6]](s32), [[V_READFIRSTLANE_B32_7]](s32)
|
|
; FAST: [[AMDGPU_INTRIN_IMAGE_LOAD:%[0-9]+]]:vgpr(<4 x s32>) = G_AMDGPU_INTRIN_IMAGE_LOAD intrinsic(@llvm.amdgcn.image.load.1d), 15, [[COPY9]](s32), [[BUILD_VECTOR1]](<8 x s32>), 0, 0, 0 :: (dereferenceable load (<4 x s32>) from custom "ImageResource")
|
|
; FAST: [[S_AND_SAVEEXEC_B64_:%[0-9]+]]:sreg_64_xexec = S_AND_SAVEEXEC_B64 killed [[S_AND_B64_2]], implicit-def $exec, implicit-def $scc, implicit $exec
|
|
; FAST: $exec = S_XOR_B64_term $exec, [[S_AND_SAVEEXEC_B64_]], implicit-def $scc
|
|
; FAST: S_CBRANCH_EXECNZ %bb.2, implicit $exec
|
|
; FAST: bb.3:
|
|
; FAST: successors: %bb.4(0x80000000)
|
|
; FAST: $exec = S_MOV_B64_term [[S_MOV_B64_term]]
|
|
; FAST: bb.4:
|
|
; FAST: [[COPY10:%[0-9]+]]:vgpr(p1) = COPY [[DEF]](p1)
|
|
; FAST: G_STORE [[AMDGPU_INTRIN_IMAGE_LOAD]](<4 x s32>), [[COPY10]](p1) :: (store (<4 x s32>) into `<4 x float> addrspace(1)* undef`, addrspace 1)
|
|
; FAST: S_ENDPGM 0
|
|
; GREEDY-LABEL: name: load_1d_sgpr_vaddr__vgpr_srsrc
|
|
; GREEDY: bb.1 (%ir-block.0):
|
|
; GREEDY: successors: %bb.2(0x80000000)
|
|
; GREEDY: liveins: $sgpr2, $vgpr0, $vgpr1, $vgpr2, $vgpr3, $vgpr4, $vgpr5, $vgpr6, $vgpr7
|
|
; GREEDY: [[COPY:%[0-9]+]]:vgpr(s32) = COPY $vgpr0
|
|
; GREEDY: [[COPY1:%[0-9]+]]:vgpr(s32) = COPY $vgpr1
|
|
; GREEDY: [[COPY2:%[0-9]+]]:vgpr(s32) = COPY $vgpr2
|
|
; GREEDY: [[COPY3:%[0-9]+]]:vgpr(s32) = COPY $vgpr3
|
|
; GREEDY: [[COPY4:%[0-9]+]]:vgpr(s32) = COPY $vgpr4
|
|
; GREEDY: [[COPY5:%[0-9]+]]:vgpr(s32) = COPY $vgpr5
|
|
; GREEDY: [[COPY6:%[0-9]+]]:vgpr(s32) = COPY $vgpr6
|
|
; GREEDY: [[COPY7:%[0-9]+]]:vgpr(s32) = COPY $vgpr7
|
|
; GREEDY: [[BUILD_VECTOR:%[0-9]+]]:vgpr(<8 x s32>) = G_BUILD_VECTOR [[COPY]](s32), [[COPY1]](s32), [[COPY2]](s32), [[COPY3]](s32), [[COPY4]](s32), [[COPY5]](s32), [[COPY6]](s32), [[COPY7]](s32)
|
|
; GREEDY: [[COPY8:%[0-9]+]]:sgpr(s32) = COPY $sgpr2
|
|
; GREEDY: [[DEF:%[0-9]+]]:sgpr(p1) = G_IMPLICIT_DEF
|
|
; GREEDY: [[COPY9:%[0-9]+]]:vgpr(s32) = COPY [[COPY8]](s32)
|
|
; GREEDY: [[DEF1:%[0-9]+]]:vgpr(<4 x s32>) = G_IMPLICIT_DEF
|
|
; GREEDY: [[DEF2:%[0-9]+]]:sreg_64_xexec = IMPLICIT_DEF
|
|
; GREEDY: [[UV:%[0-9]+]]:vreg_64(s64), [[UV1:%[0-9]+]]:vreg_64(s64), [[UV2:%[0-9]+]]:vreg_64(s64), [[UV3:%[0-9]+]]:vreg_64(s64) = G_UNMERGE_VALUES [[BUILD_VECTOR]](<8 x s32>)
|
|
; GREEDY: [[S_MOV_B64_term:%[0-9]+]]:sreg_64_xexec = S_MOV_B64_term $exec
|
|
; GREEDY: bb.2:
|
|
; GREEDY: successors: %bb.3(0x40000000), %bb.2(0x40000000)
|
|
; GREEDY: [[PHI:%[0-9]+]]:sreg_64_xexec = PHI [[DEF2]], %bb.1, %20, %bb.2
|
|
; GREEDY: [[PHI1:%[0-9]+]]:vgpr(<4 x s32>) = G_PHI [[DEF1]](<4 x s32>), %bb.1, %12(<4 x s32>), %bb.2
|
|
; GREEDY: [[V_READFIRSTLANE_B32_:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV]].sub0(s64), implicit $exec
|
|
; GREEDY: [[V_READFIRSTLANE_B32_1:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV]].sub1(s64), implicit $exec
|
|
; GREEDY: [[MV:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_]](s32), [[V_READFIRSTLANE_B32_1]](s32)
|
|
; GREEDY: [[V_CMP_EQ_U64_e64_:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV]](s64), [[UV]](s64), implicit $exec
|
|
; GREEDY: [[V_READFIRSTLANE_B32_2:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV1]].sub0(s64), implicit $exec
|
|
; GREEDY: [[V_READFIRSTLANE_B32_3:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV1]].sub1(s64), implicit $exec
|
|
; GREEDY: [[MV1:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_2]](s32), [[V_READFIRSTLANE_B32_3]](s32)
|
|
; GREEDY: [[V_CMP_EQ_U64_e64_1:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV1]](s64), [[UV1]](s64), implicit $exec
|
|
; GREEDY: [[S_AND_B64_:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_1]], [[V_CMP_EQ_U64_e64_]], implicit-def $scc
|
|
; GREEDY: [[V_READFIRSTLANE_B32_4:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV2]].sub0(s64), implicit $exec
|
|
; GREEDY: [[V_READFIRSTLANE_B32_5:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV2]].sub1(s64), implicit $exec
|
|
; GREEDY: [[MV2:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_4]](s32), [[V_READFIRSTLANE_B32_5]](s32)
|
|
; GREEDY: [[V_CMP_EQ_U64_e64_2:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV2]](s64), [[UV2]](s64), implicit $exec
|
|
; GREEDY: [[S_AND_B64_1:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_2]], [[S_AND_B64_]], implicit-def $scc
|
|
; GREEDY: [[V_READFIRSTLANE_B32_6:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV3]].sub0(s64), implicit $exec
|
|
; GREEDY: [[V_READFIRSTLANE_B32_7:%[0-9]+]]:sreg_32_xm0(s32) = V_READFIRSTLANE_B32 [[UV3]].sub1(s64), implicit $exec
|
|
; GREEDY: [[MV3:%[0-9]+]]:sreg_64_xexec(s64) = G_MERGE_VALUES [[V_READFIRSTLANE_B32_6]](s32), [[V_READFIRSTLANE_B32_7]](s32)
|
|
; GREEDY: [[V_CMP_EQ_U64_e64_3:%[0-9]+]]:sreg_64_xexec = V_CMP_EQ_U64_e64 [[MV3]](s64), [[UV3]](s64), implicit $exec
|
|
; GREEDY: [[S_AND_B64_2:%[0-9]+]]:sreg_64_xexec = S_AND_B64 [[V_CMP_EQ_U64_e64_3]], [[S_AND_B64_1]], implicit-def $scc
|
|
; GREEDY: [[BUILD_VECTOR1:%[0-9]+]]:sgpr(<8 x s32>) = G_BUILD_VECTOR [[V_READFIRSTLANE_B32_]](s32), [[V_READFIRSTLANE_B32_1]](s32), [[V_READFIRSTLANE_B32_2]](s32), [[V_READFIRSTLANE_B32_3]](s32), [[V_READFIRSTLANE_B32_4]](s32), [[V_READFIRSTLANE_B32_5]](s32), [[V_READFIRSTLANE_B32_6]](s32), [[V_READFIRSTLANE_B32_7]](s32)
|
|
; GREEDY: [[AMDGPU_INTRIN_IMAGE_LOAD:%[0-9]+]]:vgpr(<4 x s32>) = G_AMDGPU_INTRIN_IMAGE_LOAD intrinsic(@llvm.amdgcn.image.load.1d), 15, [[COPY9]](s32), [[BUILD_VECTOR1]](<8 x s32>), 0, 0, 0 :: (dereferenceable load (<4 x s32>) from custom "ImageResource")
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; GREEDY: [[S_AND_SAVEEXEC_B64_:%[0-9]+]]:sreg_64_xexec = S_AND_SAVEEXEC_B64 killed [[S_AND_B64_2]], implicit-def $exec, implicit-def $scc, implicit $exec
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; GREEDY: $exec = S_XOR_B64_term $exec, [[S_AND_SAVEEXEC_B64_]], implicit-def $scc
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; GREEDY: S_CBRANCH_EXECNZ %bb.2, implicit $exec
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; GREEDY: bb.3:
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; GREEDY: successors: %bb.4(0x80000000)
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; GREEDY: $exec = S_MOV_B64_term [[S_MOV_B64_term]]
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; GREEDY: bb.4:
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; GREEDY: [[COPY10:%[0-9]+]]:vgpr(p1) = COPY [[DEF]](p1)
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; GREEDY: G_STORE [[AMDGPU_INTRIN_IMAGE_LOAD]](<4 x s32>), [[COPY10]](p1) :: (store (<4 x s32>) into `<4 x float> addrspace(1)* undef`, addrspace 1)
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; GREEDY: S_ENDPGM 0
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%v = call <4 x float> @llvm.amdgcn.image.load.1d.v4f32.i32(i32 15, i32 %s, <8 x i32> %rsrc, i32 0, i32 0)
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store <4 x float> %v, <4 x float> addrspace(1)* undef
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ret void
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}
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declare <4 x float> @llvm.amdgcn.image.load.1d.v4f32.i32(i32 immarg, i32, <8 x i32>, i32 immarg, i32 immarg) #0
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attributes #0 = { nounwind readonly }
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