diff options
| author | Dimitry Andric <dim@FreeBSD.org> | 2017-12-18 20:10:56 +0000 |
|---|---|---|
| committer | Dimitry Andric <dim@FreeBSD.org> | 2017-12-18 20:10:56 +0000 |
| commit | 044eb2f6afba375a914ac9d8024f8f5142bb912e (patch) | |
| tree | 1475247dc9f9fe5be155ebd4c9069c75aadf8c20 /lib/Target/X86/X86InstrAVX512.td | |
| parent | eb70dddbd77e120e5d490bd8fbe7ff3f8fa81c6b (diff) | |
Notes
Diffstat (limited to 'lib/Target/X86/X86InstrAVX512.td')
| -rw-r--r-- | lib/Target/X86/X86InstrAVX512.td | 6596 |
1 files changed, 3519 insertions, 3077 deletions
diff --git a/lib/Target/X86/X86InstrAVX512.td b/lib/Target/X86/X86InstrAVX512.td index 0ae960e7d566d..2a2286e424057 100644 --- a/lib/Target/X86/X86InstrAVX512.td +++ b/lib/Target/X86/X86InstrAVX512.td @@ -192,6 +192,7 @@ class X86KVectorVTInfo<RegisterClass _krc, RegisterClass _krcwm, ValueType KVT = _vt; } +def v1i1_info : X86KVectorVTInfo<VK1, VK1WM, v1i1>; def v2i1_info : X86KVectorVTInfo<VK2, VK2WM, v2i1>; def v4i1_info : X86KVectorVTInfo<VK4, VK4WM, v4i1>; def v8i1_info : X86KVectorVTInfo<VK8, VK8WM, v8i1>; @@ -211,8 +212,8 @@ multiclass AVX512_maskable_custom<bits<8> O, Format F, list<dag> Pattern, list<dag> MaskingPattern, list<dag> ZeroMaskingPattern, + InstrItinClass itin, string MaskingConstraint = "", - InstrItinClass itin = NoItinerary, bit IsCommutable = 0, bit IsKCommutable = 0> { let isCommutable = IsCommutable in @@ -251,9 +252,9 @@ multiclass AVX512_maskable_common<bits<8> O, Format F, X86VectorVTInfo _, string OpcodeStr, string AttSrcAsm, string IntelSrcAsm, dag RHS, dag MaskingRHS, + InstrItinClass itin, SDNode Select = vselect, string MaskingConstraint = "", - InstrItinClass itin = NoItinerary, bit IsCommutable = 0, bit IsKCommutable = 0> : AVX512_maskable_custom<O, F, Outs, Ins, MaskingIns, ZeroMaskingIns, OpcodeStr, @@ -262,25 +263,30 @@ multiclass AVX512_maskable_common<bits<8> O, Format F, X86VectorVTInfo _, [(set _.RC:$dst, MaskingRHS)], [(set _.RC:$dst, (Select _.KRCWM:$mask, RHS, _.ImmAllZerosV))], - MaskingConstraint, NoItinerary, IsCommutable, + itin, MaskingConstraint, IsCommutable, IsKCommutable>; -// Similar to AVX512_maskable_common, but with scalar types. -multiclass AVX512_maskable_fp_common<bits<8> O, Format F, X86VectorVTInfo _, - dag Outs, - dag Ins, dag MaskingIns, dag ZeroMaskingIns, - string OpcodeStr, - string AttSrcAsm, string IntelSrcAsm, - SDNode Select = vselect, - string MaskingConstraint = "", - InstrItinClass itin = NoItinerary, - bit IsCommutable = 0, - bit IsKCommutable = 0> : - AVX512_maskable_custom<O, F, Outs, Ins, MaskingIns, ZeroMaskingIns, OpcodeStr, - AttSrcAsm, IntelSrcAsm, - [], [], [], - MaskingConstraint, NoItinerary, IsCommutable, - IsKCommutable>; +// This multiclass generates the unconditional/non-masking, the masking and +// the zero-masking variant of the vector instruction. In the masking case, the +// perserved vector elements come from a new dummy input operand tied to $dst. +// This version uses a separate dag for non-masking and masking. +multiclass AVX512_maskable_split<bits<8> O, Format F, X86VectorVTInfo _, + dag Outs, dag Ins, string OpcodeStr, + string AttSrcAsm, string IntelSrcAsm, + dag RHS, dag MaskRHS, + InstrItinClass itin, + bit IsCommutable = 0, bit IsKCommutable = 0, + SDNode Select = vselect> : + AVX512_maskable_custom<O, F, Outs, Ins, + !con((ins _.RC:$src0, _.KRCWM:$mask), Ins), + !con((ins _.KRCWM:$mask), Ins), + OpcodeStr, AttSrcAsm, IntelSrcAsm, + [(set _.RC:$dst, RHS)], + [(set _.RC:$dst, + (Select _.KRCWM:$mask, MaskRHS, _.RC:$src0))], + [(set _.RC:$dst, + (Select _.KRCWM:$mask, MaskRHS, _.ImmAllZerosV))], + itin, "$src0 = $dst", IsCommutable, IsKCommutable>; // This multiclass generates the unconditional/non-masking, the masking and // the zero-masking variant of the vector instruction. In the masking case, the @@ -289,15 +295,15 @@ multiclass AVX512_maskable<bits<8> O, Format F, X86VectorVTInfo _, dag Outs, dag Ins, string OpcodeStr, string AttSrcAsm, string IntelSrcAsm, dag RHS, - InstrItinClass itin = NoItinerary, + InstrItinClass itin, bit IsCommutable = 0, bit IsKCommutable = 0, SDNode Select = vselect> : AVX512_maskable_common<O, F, _, Outs, Ins, !con((ins _.RC:$src0, _.KRCWM:$mask), Ins), !con((ins _.KRCWM:$mask), Ins), OpcodeStr, AttSrcAsm, IntelSrcAsm, RHS, - (Select _.KRCWM:$mask, RHS, _.RC:$src0), Select, - "$src0 = $dst", itin, IsCommutable, IsKCommutable>; + (Select _.KRCWM:$mask, RHS, _.RC:$src0), itin, + Select, "$src0 = $dst", IsCommutable, IsKCommutable>; // This multiclass generates the unconditional/non-masking, the masking and // the zero-masking variant of the scalar instruction. @@ -305,14 +311,10 @@ multiclass AVX512_maskable_scalar<bits<8> O, Format F, X86VectorVTInfo _, dag Outs, dag Ins, string OpcodeStr, string AttSrcAsm, string IntelSrcAsm, dag RHS, - InstrItinClass itin = NoItinerary, + InstrItinClass itin, bit IsCommutable = 0> : - AVX512_maskable_common<O, F, _, Outs, Ins, - !con((ins _.RC:$src0, _.KRCWM:$mask), Ins), - !con((ins _.KRCWM:$mask), Ins), - OpcodeStr, AttSrcAsm, IntelSrcAsm, RHS, - (X86selects _.KRCWM:$mask, RHS, _.RC:$src0), - X86selects, "$src0 = $dst", itin, IsCommutable>; + AVX512_maskable<O, F, _, Outs, Ins, OpcodeStr, AttSrcAsm, IntelSrcAsm, + RHS, itin, IsCommutable, 0, X86selects>; // Similar to AVX512_maskable but in this case one of the source operands // ($src1) is already tied to $dst so we just use that for the preserved @@ -321,40 +323,42 @@ multiclass AVX512_maskable_scalar<bits<8> O, Format F, X86VectorVTInfo _, multiclass AVX512_maskable_3src<bits<8> O, Format F, X86VectorVTInfo _, dag Outs, dag NonTiedIns, string OpcodeStr, string AttSrcAsm, string IntelSrcAsm, - dag RHS, bit IsCommutable = 0, - bit IsKCommutable = 0> : + dag RHS, InstrItinClass itin, + bit IsCommutable = 0, + bit IsKCommutable = 0, + SDNode Select = vselect, + bit MaskOnly = 0> : AVX512_maskable_common<O, F, _, Outs, !con((ins _.RC:$src1), NonTiedIns), !con((ins _.RC:$src1, _.KRCWM:$mask), NonTiedIns), !con((ins _.RC:$src1, _.KRCWM:$mask), NonTiedIns), - OpcodeStr, AttSrcAsm, IntelSrcAsm, RHS, - (vselect _.KRCWM:$mask, RHS, _.RC:$src1), - vselect, "", NoItinerary, IsCommutable, IsKCommutable>; + OpcodeStr, AttSrcAsm, IntelSrcAsm, + !if(MaskOnly, (null_frag), RHS), + (Select _.KRCWM:$mask, RHS, _.RC:$src1), itin, + Select, "", IsCommutable, IsKCommutable>; multiclass AVX512_maskable_3src_scalar<bits<8> O, Format F, X86VectorVTInfo _, dag Outs, dag NonTiedIns, string OpcodeStr, string AttSrcAsm, string IntelSrcAsm, - dag RHS, bit IsCommutable = 0, - bit IsKCommutable = 0> : - AVX512_maskable_common<O, F, _, Outs, - !con((ins _.RC:$src1), NonTiedIns), - !con((ins _.RC:$src1, _.KRCWM:$mask), NonTiedIns), - !con((ins _.RC:$src1, _.KRCWM:$mask), NonTiedIns), - OpcodeStr, AttSrcAsm, IntelSrcAsm, RHS, - (X86selects _.KRCWM:$mask, RHS, _.RC:$src1), - X86selects, "", NoItinerary, IsCommutable, - IsKCommutable>; + dag RHS, InstrItinClass itin, + bit IsCommutable = 0, + bit IsKCommutable = 0, + bit MaskOnly = 0> : + AVX512_maskable_3src<O, F, _, Outs, NonTiedIns, OpcodeStr, AttSrcAsm, + IntelSrcAsm, RHS, itin, IsCommutable, IsKCommutable, + X86selects, MaskOnly>; multiclass AVX512_maskable_in_asm<bits<8> O, Format F, X86VectorVTInfo _, dag Outs, dag Ins, string OpcodeStr, string AttSrcAsm, string IntelSrcAsm, - list<dag> Pattern> : + list<dag> Pattern, + InstrItinClass itin> : AVX512_maskable_custom<O, F, Outs, Ins, !con((ins _.RC:$src0, _.KRCWM:$mask), Ins), !con((ins _.KRCWM:$mask), Ins), OpcodeStr, AttSrcAsm, IntelSrcAsm, Pattern, [], [], - "$src0 = $dst">; + itin, "$src0 = $dst">; // Instruction with mask that puts result in mask register, @@ -366,17 +370,18 @@ multiclass AVX512_maskable_custom_cmp<bits<8> O, Format F, string AttSrcAsm, string IntelSrcAsm, list<dag> Pattern, list<dag> MaskingPattern, + InstrItinClass itin, bit IsCommutable = 0> { let isCommutable = IsCommutable in def NAME: AVX512<O, F, Outs, Ins, OpcodeStr#"\t{"#AttSrcAsm#", $dst|"# "$dst, "#IntelSrcAsm#"}", - Pattern, NoItinerary>; + Pattern, itin>; def NAME#k: AVX512<O, F, Outs, MaskingIns, OpcodeStr#"\t{"#AttSrcAsm#", $dst {${mask}}|"# "$dst {${mask}}, "#IntelSrcAsm#"}", - MaskingPattern, NoItinerary>, EVEX_K; + MaskingPattern, itin>, EVEX_K; } multiclass AVX512_maskable_common_cmp<bits<8> O, Format F, X86VectorVTInfo _, @@ -385,27 +390,30 @@ multiclass AVX512_maskable_common_cmp<bits<8> O, Format F, X86VectorVTInfo _, string OpcodeStr, string AttSrcAsm, string IntelSrcAsm, dag RHS, dag MaskingRHS, + InstrItinClass itin, bit IsCommutable = 0> : AVX512_maskable_custom_cmp<O, F, Outs, Ins, MaskingIns, OpcodeStr, AttSrcAsm, IntelSrcAsm, [(set _.KRC:$dst, RHS)], - [(set _.KRC:$dst, MaskingRHS)], IsCommutable>; + [(set _.KRC:$dst, MaskingRHS)], itin, IsCommutable>; multiclass AVX512_maskable_cmp<bits<8> O, Format F, X86VectorVTInfo _, dag Outs, dag Ins, string OpcodeStr, string AttSrcAsm, string IntelSrcAsm, - dag RHS, bit IsCommutable = 0> : + dag RHS, InstrItinClass itin, + bit IsCommutable = 0> : AVX512_maskable_common_cmp<O, F, _, Outs, Ins, !con((ins _.KRCWM:$mask), Ins), OpcodeStr, AttSrcAsm, IntelSrcAsm, RHS, - (and _.KRCWM:$mask, RHS), IsCommutable>; + (and _.KRCWM:$mask, RHS), itin, IsCommutable>; multiclass AVX512_maskable_cmp_alt<bits<8> O, Format F, X86VectorVTInfo _, dag Outs, dag Ins, string OpcodeStr, - string AttSrcAsm, string IntelSrcAsm> : + string AttSrcAsm, string IntelSrcAsm, + InstrItinClass itin> : AVX512_maskable_custom_cmp<O, F, Outs, Ins, !con((ins _.KRCWM:$mask),Ins), OpcodeStr, - AttSrcAsm, IntelSrcAsm, [],[]>; + AttSrcAsm, IntelSrcAsm, [],[], itin>; // This multiclass generates the unconditional/non-masking, the masking and // the zero-masking variant of the vector instruction. In the masking case, the @@ -414,7 +422,7 @@ multiclass AVX512_maskable_logic<bits<8> O, Format F, X86VectorVTInfo _, dag Outs, dag Ins, string OpcodeStr, string AttSrcAsm, string IntelSrcAsm, dag RHS, dag MaskedRHS, - InstrItinClass itin = NoItinerary, + InstrItinClass itin, bit IsCommutable = 0, SDNode Select = vselect> : AVX512_maskable_custom<O, F, Outs, Ins, !con((ins _.RC:$src0, _.KRCWM:$mask), Ins), @@ -426,41 +434,8 @@ multiclass AVX512_maskable_logic<bits<8> O, Format F, X86VectorVTInfo _, [(set _.RC:$dst, (Select _.KRCWM:$mask, MaskedRHS, _.ImmAllZerosV))], - "$src0 = $dst", itin, IsCommutable>; + itin, "$src0 = $dst", IsCommutable>; -// Bitcasts between 512-bit vector types. Return the original type since -// no instruction is needed for the conversion. -def : Pat<(v8f64 (bitconvert (v8i64 VR512:$src))), (v8f64 VR512:$src)>; -def : Pat<(v8f64 (bitconvert (v16i32 VR512:$src))), (v8f64 VR512:$src)>; -def : Pat<(v8f64 (bitconvert (v32i16 VR512:$src))), (v8f64 VR512:$src)>; -def : Pat<(v8f64 (bitconvert (v64i8 VR512:$src))), (v8f64 VR512:$src)>; -def : Pat<(v8f64 (bitconvert (v16f32 VR512:$src))), (v8f64 VR512:$src)>; -def : Pat<(v16f32 (bitconvert (v8i64 VR512:$src))), (v16f32 VR512:$src)>; -def : Pat<(v16f32 (bitconvert (v16i32 VR512:$src))), (v16f32 VR512:$src)>; -def : Pat<(v16f32 (bitconvert (v32i16 VR512:$src))), (v16f32 VR512:$src)>; -def : Pat<(v16f32 (bitconvert (v64i8 VR512:$src))), (v16f32 VR512:$src)>; -def : Pat<(v16f32 (bitconvert (v8f64 VR512:$src))), (v16f32 VR512:$src)>; -def : Pat<(v8i64 (bitconvert (v16i32 VR512:$src))), (v8i64 VR512:$src)>; -def : Pat<(v8i64 (bitconvert (v32i16 VR512:$src))), (v8i64 VR512:$src)>; -def : Pat<(v8i64 (bitconvert (v64i8 VR512:$src))), (v8i64 VR512:$src)>; -def : Pat<(v8i64 (bitconvert (v8f64 VR512:$src))), (v8i64 VR512:$src)>; -def : Pat<(v8i64 (bitconvert (v16f32 VR512:$src))), (v8i64 VR512:$src)>; -def : Pat<(v16i32 (bitconvert (v8i64 VR512:$src))), (v16i32 VR512:$src)>; -def : Pat<(v16i32 (bitconvert (v16f32 VR512:$src))), (v16i32 VR512:$src)>; -def : Pat<(v16i32 (bitconvert (v32i16 VR512:$src))), (v16i32 VR512:$src)>; -def : Pat<(v16i32 (bitconvert (v64i8 VR512:$src))), (v16i32 VR512:$src)>; -def : Pat<(v16i32 (bitconvert (v8f64 VR512:$src))), (v16i32 VR512:$src)>; -def : Pat<(v32i16 (bitconvert (v8i64 VR512:$src))), (v32i16 VR512:$src)>; -def : Pat<(v32i16 (bitconvert (v16i32 VR512:$src))), (v32i16 VR512:$src)>; -def : Pat<(v32i16 (bitconvert (v64i8 VR512:$src))), (v32i16 VR512:$src)>; -def : Pat<(v32i16 (bitconvert (v8f64 VR512:$src))), (v32i16 VR512:$src)>; -def : Pat<(v32i16 (bitconvert (v16f32 VR512:$src))), (v32i16 VR512:$src)>; -def : Pat<(v32i16 (bitconvert (v16f32 VR512:$src))), (v32i16 VR512:$src)>; -def : Pat<(v64i8 (bitconvert (v8i64 VR512:$src))), (v64i8 VR512:$src)>; -def : Pat<(v64i8 (bitconvert (v16i32 VR512:$src))), (v64i8 VR512:$src)>; -def : Pat<(v64i8 (bitconvert (v32i16 VR512:$src))), (v64i8 VR512:$src)>; -def : Pat<(v64i8 (bitconvert (v8f64 VR512:$src))), (v64i8 VR512:$src)>; -def : Pat<(v64i8 (bitconvert (v16f32 VR512:$src))), (v64i8 VR512:$src)>; // Alias instruction that maps zero vector to pxor / xorp* for AVX-512. // This is expanded by ExpandPostRAPseudos to an xorps / vxorps, and then @@ -478,7 +453,7 @@ def AVX512_512_SETALLONES : I<0, Pseudo, (outs VR512:$dst), (ins), "", // Alias instructions that allow VPTERNLOG to be used with a mask to create // a mix of all ones and all zeros elements. This is done this way to force // the same register to be used as input for all three sources. -let isPseudo = 1, Predicates = [HasAVX512] in { +let isPseudo = 1, Predicates = [HasAVX512], SchedRW = [WriteVecALU] in { def AVX512_512_SEXT_MASK_32 : I<0, Pseudo, (outs VR512:$dst), (ins VK16WM:$mask), "", [(set VR512:$dst, (vselect (v16i1 VK16WM:$mask), @@ -512,28 +487,49 @@ let isReMaterializable = 1, isAsCheapAsAMove = 1, canFoldAsLoad = 1, //===----------------------------------------------------------------------===// // AVX-512 - VECTOR INSERT // -multiclass vinsert_for_size<int Opcode, X86VectorVTInfo From, X86VectorVTInfo To, - PatFrag vinsert_insert> { - let ExeDomain = To.ExeDomain in { - defm rr : AVX512_maskable<Opcode, MRMSrcReg, To, (outs To.RC:$dst), + +// Supports two different pattern operators for mask and unmasked ops. Allows +// null_frag to be passed for one. +multiclass vinsert_for_size_split<int Opcode, X86VectorVTInfo From, + X86VectorVTInfo To, + SDPatternOperator vinsert_insert, + SDPatternOperator vinsert_for_mask, + OpndItins itins> { + let hasSideEffects = 0, ExeDomain = To.ExeDomain in { + defm rr : AVX512_maskable_split<Opcode, MRMSrcReg, To, (outs To.RC:$dst), (ins To.RC:$src1, From.RC:$src2, u8imm:$src3), "vinsert" # From.EltTypeName # "x" # From.NumElts, "$src3, $src2, $src1", "$src1, $src2, $src3", (vinsert_insert:$src3 (To.VT To.RC:$src1), (From.VT From.RC:$src2), - (iPTR imm))>, AVX512AIi8Base, EVEX_4V; - - defm rm : AVX512_maskable<Opcode, MRMSrcMem, To, (outs To.RC:$dst), + (iPTR imm)), + (vinsert_for_mask:$src3 (To.VT To.RC:$src1), + (From.VT From.RC:$src2), + (iPTR imm)), itins.rr>, + AVX512AIi8Base, EVEX_4V, Sched<[itins.Sched]>; + let mayLoad = 1 in + defm rm : AVX512_maskable_split<Opcode, MRMSrcMem, To, (outs To.RC:$dst), (ins To.RC:$src1, From.MemOp:$src2, u8imm:$src3), "vinsert" # From.EltTypeName # "x" # From.NumElts, "$src3, $src2, $src1", "$src1, $src2, $src3", (vinsert_insert:$src3 (To.VT To.RC:$src1), (From.VT (bitconvert (From.LdFrag addr:$src2))), - (iPTR imm))>, AVX512AIi8Base, EVEX_4V, - EVEX_CD8<From.EltSize, From.CD8TupleForm>; + (iPTR imm)), + (vinsert_for_mask:$src3 (To.VT To.RC:$src1), + (From.VT (bitconvert (From.LdFrag addr:$src2))), + (iPTR imm)), itins.rm>, AVX512AIi8Base, EVEX_4V, + EVEX_CD8<From.EltSize, From.CD8TupleForm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } +// Passes the same pattern operator for masked and unmasked ops. +multiclass vinsert_for_size<int Opcode, X86VectorVTInfo From, + X86VectorVTInfo To, + SDPatternOperator vinsert_insert, + OpndItins itins> : + vinsert_for_size_split<Opcode, From, To, vinsert_insert, vinsert_insert, itins>; + multiclass vinsert_for_size_lowering<string InstrStr, X86VectorVTInfo From, X86VectorVTInfo To, PatFrag vinsert_insert, SDNodeXForm INSERT_get_vinsert_imm , list<Predicate> p> { @@ -555,62 +551,78 @@ multiclass vinsert_for_size_lowering<string InstrStr, X86VectorVTInfo From, } multiclass vinsert_for_type<ValueType EltVT32, int Opcode128, - ValueType EltVT64, int Opcode256> { + ValueType EltVT64, int Opcode256, + OpndItins itins> { let Predicates = [HasVLX] in defm NAME # "32x4Z256" : vinsert_for_size<Opcode128, X86VectorVTInfo< 4, EltVT32, VR128X>, X86VectorVTInfo< 8, EltVT32, VR256X>, - vinsert128_insert>, EVEX_V256; + vinsert128_insert, itins>, EVEX_V256; defm NAME # "32x4Z" : vinsert_for_size<Opcode128, X86VectorVTInfo< 4, EltVT32, VR128X>, X86VectorVTInfo<16, EltVT32, VR512>, - vinsert128_insert>, EVEX_V512; + vinsert128_insert, itins>, EVEX_V512; defm NAME # "64x4Z" : vinsert_for_size<Opcode256, X86VectorVTInfo< 4, EltVT64, VR256X>, X86VectorVTInfo< 8, EltVT64, VR512>, - vinsert256_insert>, VEX_W, EVEX_V512; + vinsert256_insert, itins>, VEX_W, EVEX_V512; + // Even with DQI we'd like to only use these instructions for masking. let Predicates = [HasVLX, HasDQI] in - defm NAME # "64x2Z256" : vinsert_for_size<Opcode128, + defm NAME # "64x2Z256" : vinsert_for_size_split<Opcode128, X86VectorVTInfo< 2, EltVT64, VR128X>, X86VectorVTInfo< 4, EltVT64, VR256X>, - vinsert128_insert>, VEX_W, EVEX_V256; + null_frag, vinsert128_insert, itins>, + VEX_W, EVEX_V256; + // Even with DQI we'd like to only use these instructions for masking. let Predicates = [HasDQI] in { - defm NAME # "64x2Z" : vinsert_for_size<Opcode128, + defm NAME # "64x2Z" : vinsert_for_size_split<Opcode128, X86VectorVTInfo< 2, EltVT64, VR128X>, X86VectorVTInfo< 8, EltVT64, VR512>, - vinsert128_insert>, VEX_W, EVEX_V512; + null_frag, vinsert128_insert, itins>, + VEX_W, EVEX_V512; - defm NAME # "32x8Z" : vinsert_for_size<Opcode256, + defm NAME # "32x8Z" : vinsert_for_size_split<Opcode256, X86VectorVTInfo< 8, EltVT32, VR256X>, X86VectorVTInfo<16, EltVT32, VR512>, - vinsert256_insert>, EVEX_V512; + null_frag, vinsert256_insert, itins>, + EVEX_V512; } } -defm VINSERTF : vinsert_for_type<f32, 0x18, f64, 0x1a>; -defm VINSERTI : vinsert_for_type<i32, 0x38, i64, 0x3a>; +// FIXME: Is there a better scheduler itinerary for VINSERTF/VINSERTI? +let Sched = WriteFShuffle256 in +def AVX512_VINSERTF : OpndItins< + IIC_SSE_SHUFP, IIC_SSE_SHUFP +>; +let Sched = WriteShuffle256 in +def AVX512_VINSERTI : OpndItins< + IIC_SSE_PSHUF_RI, IIC_SSE_PSHUF_MI +>; + +defm VINSERTF : vinsert_for_type<f32, 0x18, f64, 0x1a, AVX512_VINSERTF>; +defm VINSERTI : vinsert_for_type<i32, 0x38, i64, 0x3a, AVX512_VINSERTI>; // Codegen pattern with the alternative types, -// Only add this if 64x2 and its friends are not supported natively via AVX512DQ. +// Even with AVX512DQ we'll still use these for unmasked operations. defm : vinsert_for_size_lowering<"VINSERTF32x4Z256", v2f64x_info, v4f64x_info, - vinsert128_insert, INSERT_get_vinsert128_imm, [HasVLX, NoDQI]>; + vinsert128_insert, INSERT_get_vinsert128_imm, [HasVLX]>; defm : vinsert_for_size_lowering<"VINSERTI32x4Z256", v2i64x_info, v4i64x_info, - vinsert128_insert, INSERT_get_vinsert128_imm, [HasVLX, NoDQI]>; + vinsert128_insert, INSERT_get_vinsert128_imm, [HasVLX]>; defm : vinsert_for_size_lowering<"VINSERTF32x4Z", v2f64x_info, v8f64_info, - vinsert128_insert, INSERT_get_vinsert128_imm, [HasAVX512, NoDQI]>; + vinsert128_insert, INSERT_get_vinsert128_imm, [HasAVX512]>; defm : vinsert_for_size_lowering<"VINSERTI32x4Z", v2i64x_info, v8i64_info, - vinsert128_insert, INSERT_get_vinsert128_imm, [HasAVX512, NoDQI]>; + vinsert128_insert, INSERT_get_vinsert128_imm, [HasAVX512]>; defm : vinsert_for_size_lowering<"VINSERTF64x4Z", v8f32x_info, v16f32_info, - vinsert256_insert, INSERT_get_vinsert256_imm, [HasAVX512, NoDQI]>; + vinsert256_insert, INSERT_get_vinsert256_imm, [HasAVX512]>; defm : vinsert_for_size_lowering<"VINSERTI64x4Z", v8i32x_info, v16i32_info, - vinsert256_insert, INSERT_get_vinsert256_imm, [HasAVX512, NoDQI]>; + vinsert256_insert, INSERT_get_vinsert256_imm, [HasAVX512]>; // Codegen pattern with the alternative types insert VEC128 into VEC256 defm : vinsert_for_size_lowering<"VINSERTI32x4Z256", v8i16x_info, v16i16x_info, @@ -628,48 +640,184 @@ defm : vinsert_for_size_lowering<"VINSERTI64x4Z", v16i16x_info, v32i16_info, defm : vinsert_for_size_lowering<"VINSERTI64x4Z", v32i8x_info, v64i8_info, vinsert256_insert, INSERT_get_vinsert256_imm, [HasAVX512]>; + +multiclass vinsert_for_mask_cast<string InstrStr, X86VectorVTInfo From, + X86VectorVTInfo To, X86VectorVTInfo Cast, + PatFrag vinsert_insert, + SDNodeXForm INSERT_get_vinsert_imm, + list<Predicate> p> { +let Predicates = p in { + def : Pat<(Cast.VT + (vselect Cast.KRCWM:$mask, + (bitconvert + (vinsert_insert:$ins (To.VT To.RC:$src1), + (From.VT From.RC:$src2), + (iPTR imm))), + Cast.RC:$src0)), + (!cast<Instruction>(InstrStr#"rrk") + Cast.RC:$src0, Cast.KRCWM:$mask, To.RC:$src1, From.RC:$src2, + (INSERT_get_vinsert_imm To.RC:$ins))>; + def : Pat<(Cast.VT + (vselect Cast.KRCWM:$mask, + (bitconvert + (vinsert_insert:$ins (To.VT To.RC:$src1), + (From.VT + (bitconvert + (From.LdFrag addr:$src2))), + (iPTR imm))), + Cast.RC:$src0)), + (!cast<Instruction>(InstrStr#"rmk") + Cast.RC:$src0, Cast.KRCWM:$mask, To.RC:$src1, addr:$src2, + (INSERT_get_vinsert_imm To.RC:$ins))>; + + def : Pat<(Cast.VT + (vselect Cast.KRCWM:$mask, + (bitconvert + (vinsert_insert:$ins (To.VT To.RC:$src1), + (From.VT From.RC:$src2), + (iPTR imm))), + Cast.ImmAllZerosV)), + (!cast<Instruction>(InstrStr#"rrkz") + Cast.KRCWM:$mask, To.RC:$src1, From.RC:$src2, + (INSERT_get_vinsert_imm To.RC:$ins))>; + def : Pat<(Cast.VT + (vselect Cast.KRCWM:$mask, + (bitconvert + (vinsert_insert:$ins (To.VT To.RC:$src1), + (From.VT + (bitconvert + (From.LdFrag addr:$src2))), + (iPTR imm))), + Cast.ImmAllZerosV)), + (!cast<Instruction>(InstrStr#"rmkz") + Cast.KRCWM:$mask, To.RC:$src1, addr:$src2, + (INSERT_get_vinsert_imm To.RC:$ins))>; +} +} + +defm : vinsert_for_mask_cast<"VINSERTF32x4Z256", v2f64x_info, v4f64x_info, + v8f32x_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasVLX]>; +defm : vinsert_for_mask_cast<"VINSERTF64x2Z256", v4f32x_info, v8f32x_info, + v4f64x_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasDQI, HasVLX]>; + +defm : vinsert_for_mask_cast<"VINSERTI32x4Z256", v2i64x_info, v4i64x_info, + v8i32x_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasVLX]>; +defm : vinsert_for_mask_cast<"VINSERTI32x4Z256", v8i16x_info, v16i16x_info, + v8i32x_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasVLX]>; +defm : vinsert_for_mask_cast<"VINSERTI32x4Z256", v16i8x_info, v32i8x_info, + v8i32x_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasVLX]>; +defm : vinsert_for_mask_cast<"VINSERTF64x2Z256", v4i32x_info, v8i32x_info, + v4i64x_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasDQI, HasVLX]>; +defm : vinsert_for_mask_cast<"VINSERTF64x2Z256", v8i16x_info, v16i16x_info, + v4i64x_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasDQI, HasVLX]>; +defm : vinsert_for_mask_cast<"VINSERTF64x2Z256", v16i8x_info, v32i8x_info, + v4i64x_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasDQI, HasVLX]>; + +defm : vinsert_for_mask_cast<"VINSERTF32x4Z", v2f64x_info, v8f64_info, + v16f32_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasAVX512]>; +defm : vinsert_for_mask_cast<"VINSERTF64x2Z", v4f32x_info, v16f32_info, + v8f64_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasDQI]>; + +defm : vinsert_for_mask_cast<"VINSERTI32x4Z", v2i64x_info, v8i64_info, + v16i32_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasAVX512]>; +defm : vinsert_for_mask_cast<"VINSERTI32x4Z", v8i16x_info, v32i16_info, + v16i32_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasAVX512]>; +defm : vinsert_for_mask_cast<"VINSERTI32x4Z", v16i8x_info, v64i8_info, + v16i32_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasAVX512]>; +defm : vinsert_for_mask_cast<"VINSERTI64x2Z", v4i32x_info, v16i32_info, + v8i64_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasDQI]>; +defm : vinsert_for_mask_cast<"VINSERTI64x2Z", v8i16x_info, v32i16_info, + v8i64_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasDQI]>; +defm : vinsert_for_mask_cast<"VINSERTI64x2Z", v16i8x_info, v64i8_info, + v8i64_info, vinsert128_insert, + INSERT_get_vinsert128_imm, [HasDQI]>; + +defm : vinsert_for_mask_cast<"VINSERTF32x8Z", v4f64x_info, v8f64_info, + v16f32_info, vinsert256_insert, + INSERT_get_vinsert256_imm, [HasDQI]>; +defm : vinsert_for_mask_cast<"VINSERTF64x4Z", v8f32x_info, v16f32_info, + v8f64_info, vinsert256_insert, + INSERT_get_vinsert256_imm, [HasAVX512]>; + +defm : vinsert_for_mask_cast<"VINSERTI32x8Z", v4i64x_info, v8i64_info, + v16i32_info, vinsert256_insert, + INSERT_get_vinsert256_imm, [HasDQI]>; +defm : vinsert_for_mask_cast<"VINSERTI32x8Z", v16i16x_info, v32i16_info, + v16i32_info, vinsert256_insert, + INSERT_get_vinsert256_imm, [HasDQI]>; +defm : vinsert_for_mask_cast<"VINSERTI32x8Z", v32i8x_info, v64i8_info, + v16i32_info, vinsert256_insert, + INSERT_get_vinsert256_imm, [HasDQI]>; +defm : vinsert_for_mask_cast<"VINSERTI64x4Z", v8i32x_info, v16i32_info, + v8i64_info, vinsert256_insert, + INSERT_get_vinsert256_imm, [HasAVX512]>; +defm : vinsert_for_mask_cast<"VINSERTI64x4Z", v16i16x_info, v32i16_info, + v8i64_info, vinsert256_insert, + INSERT_get_vinsert256_imm, [HasAVX512]>; +defm : vinsert_for_mask_cast<"VINSERTI64x4Z", v32i8x_info, v64i8_info, + v8i64_info, vinsert256_insert, + INSERT_get_vinsert256_imm, [HasAVX512]>; + // vinsertps - insert f32 to XMM let ExeDomain = SSEPackedSingle in { def VINSERTPSZrr : AVX512AIi8<0x21, MRMSrcReg, (outs VR128X:$dst), (ins VR128X:$src1, VR128X:$src2, u8imm:$src3), "vinsertps\t{$src3, $src2, $src1, $dst|$dst, $src1, $src2, $src3}", - [(set VR128X:$dst, (X86insertps VR128X:$src1, VR128X:$src2, imm:$src3))]>, - EVEX_4V; + [(set VR128X:$dst, (X86insertps VR128X:$src1, VR128X:$src2, imm:$src3))], + IIC_SSE_INSERTPS_RR>, EVEX_4V, Sched<[WriteFShuffle]>; def VINSERTPSZrm: AVX512AIi8<0x21, MRMSrcMem, (outs VR128X:$dst), (ins VR128X:$src1, f32mem:$src2, u8imm:$src3), "vinsertps\t{$src3, $src2, $src1, $dst|$dst, $src1, $src2, $src3}", [(set VR128X:$dst, (X86insertps VR128X:$src1, (v4f32 (scalar_to_vector (loadf32 addr:$src2))), - imm:$src3))]>, EVEX_4V, EVEX_CD8<32, CD8VT1>; + imm:$src3))], IIC_SSE_INSERTPS_RM>, EVEX_4V, + EVEX_CD8<32, CD8VT1>, Sched<[WriteFShuffleLd, ReadAfterLd]>; } //===----------------------------------------------------------------------===// // AVX-512 VECTOR EXTRACT //--- -multiclass vextract_for_size<int Opcode, - X86VectorVTInfo From, X86VectorVTInfo To, - PatFrag vextract_extract, - SDNodeXForm EXTRACT_get_vextract_imm> { +// Supports two different pattern operators for mask and unmasked ops. Allows +// null_frag to be passed for one. +multiclass vextract_for_size_split<int Opcode, + X86VectorVTInfo From, X86VectorVTInfo To, + SDPatternOperator vextract_extract, + SDPatternOperator vextract_for_mask, + OpndItins itins> { let hasSideEffects = 0, ExeDomain = To.ExeDomain in { - // use AVX512_maskable_in_asm (AVX512_maskable can't be used due to - // vextract_extract), we interesting only in patterns without mask, - // intrinsics pattern match generated bellow. - defm rr : AVX512_maskable_in_asm<Opcode, MRMDestReg, To, (outs To.RC:$dst), + defm rr : AVX512_maskable_split<Opcode, MRMDestReg, To, (outs To.RC:$dst), (ins From.RC:$src1, u8imm:$idx), "vextract" # To.EltTypeName # "x" # To.NumElts, "$idx, $src1", "$src1, $idx", - [(set To.RC:$dst, (vextract_extract:$idx (From.VT From.RC:$src1), - (iPTR imm)))]>, - AVX512AIi8Base, EVEX; + (vextract_extract:$idx (From.VT From.RC:$src1), (iPTR imm)), + (vextract_for_mask:$idx (From.VT From.RC:$src1), (iPTR imm)), + itins.rr>, AVX512AIi8Base, EVEX, Sched<[itins.Sched]>; + def mr : AVX512AIi8<Opcode, MRMDestMem, (outs), (ins To.MemOp:$dst, From.RC:$src1, u8imm:$idx), "vextract" # To.EltTypeName # "x" # To.NumElts # "\t{$idx, $src1, $dst|$dst, $src1, $idx}", [(store (To.VT (vextract_extract:$idx (From.VT From.RC:$src1), (iPTR imm))), - addr:$dst)]>, EVEX; + addr:$dst)], itins.rm>, EVEX, + Sched<[itins.Sched.Folded, ReadAfterLd]>; let mayStore = 1, hasSideEffects = 0 in def mrk : AVX512AIi8<Opcode, MRMDestMem, (outs), @@ -678,28 +826,18 @@ multiclass vextract_for_size<int Opcode, "vextract" # To.EltTypeName # "x" # To.NumElts # "\t{$idx, $src1, $dst {${mask}}|" "$dst {${mask}}, $src1, $idx}", - []>, EVEX_K, EVEX; + [], itins.rm>, EVEX_K, EVEX, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } - - def : Pat<(To.VT (vselect To.KRCWM:$mask, - (vextract_extract:$ext (From.VT From.RC:$src1), - (iPTR imm)), - To.RC:$src0)), - (!cast<Instruction>(NAME # To.EltSize # "x" # To.NumElts # - From.ZSuffix # "rrk") - To.RC:$src0, To.KRCWM:$mask, From.RC:$src1, - (EXTRACT_get_vextract_imm To.RC:$ext))>; - - def : Pat<(To.VT (vselect To.KRCWM:$mask, - (vextract_extract:$ext (From.VT From.RC:$src1), - (iPTR imm)), - To.ImmAllZerosV)), - (!cast<Instruction>(NAME # To.EltSize # "x" # To.NumElts # - From.ZSuffix # "rrkz") - To.KRCWM:$mask, From.RC:$src1, - (EXTRACT_get_vextract_imm To.RC:$ext))>; } +// Passes the same pattern operator for masked and unmasked ops. +multiclass vextract_for_size<int Opcode, X86VectorVTInfo From, + X86VectorVTInfo To, + SDPatternOperator vextract_extract, + OpndItins itins> : + vextract_for_size_split<Opcode, From, To, vextract_extract, vextract_extract, itins>; + // Codegen pattern for the alternative types multiclass vextract_for_size_lowering<string InstrStr, X86VectorVTInfo From, X86VectorVTInfo To, PatFrag vextract_extract, @@ -717,68 +855,79 @@ multiclass vextract_for_size_lowering<string InstrStr, X86VectorVTInfo From, } multiclass vextract_for_type<ValueType EltVT32, int Opcode128, - ValueType EltVT64, int Opcode256> { - defm NAME # "32x4Z" : vextract_for_size<Opcode128, - X86VectorVTInfo<16, EltVT32, VR512>, - X86VectorVTInfo< 4, EltVT32, VR128X>, - vextract128_extract, - EXTRACT_get_vextract128_imm>, - EVEX_V512, EVEX_CD8<32, CD8VT4>; - defm NAME # "64x4Z" : vextract_for_size<Opcode256, - X86VectorVTInfo< 8, EltVT64, VR512>, - X86VectorVTInfo< 4, EltVT64, VR256X>, - vextract256_extract, - EXTRACT_get_vextract256_imm>, - VEX_W, EVEX_V512, EVEX_CD8<64, CD8VT4>; + ValueType EltVT64, int Opcode256, + OpndItins itins> { + let Predicates = [HasAVX512] in { + defm NAME # "32x4Z" : vextract_for_size<Opcode128, + X86VectorVTInfo<16, EltVT32, VR512>, + X86VectorVTInfo< 4, EltVT32, VR128X>, + vextract128_extract, itins>, + EVEX_V512, EVEX_CD8<32, CD8VT4>; + defm NAME # "64x4Z" : vextract_for_size<Opcode256, + X86VectorVTInfo< 8, EltVT64, VR512>, + X86VectorVTInfo< 4, EltVT64, VR256X>, + vextract256_extract, itins>, + VEX_W, EVEX_V512, EVEX_CD8<64, CD8VT4>; + } let Predicates = [HasVLX] in defm NAME # "32x4Z256" : vextract_for_size<Opcode128, X86VectorVTInfo< 8, EltVT32, VR256X>, X86VectorVTInfo< 4, EltVT32, VR128X>, - vextract128_extract, - EXTRACT_get_vextract128_imm>, + vextract128_extract, itins>, EVEX_V256, EVEX_CD8<32, CD8VT4>; + + // Even with DQI we'd like to only use these instructions for masking. let Predicates = [HasVLX, HasDQI] in - defm NAME # "64x2Z256" : vextract_for_size<Opcode128, + defm NAME # "64x2Z256" : vextract_for_size_split<Opcode128, X86VectorVTInfo< 4, EltVT64, VR256X>, X86VectorVTInfo< 2, EltVT64, VR128X>, - vextract128_extract, - EXTRACT_get_vextract128_imm>, + null_frag, vextract128_extract, itins>, VEX_W, EVEX_V256, EVEX_CD8<64, CD8VT2>; + + // Even with DQI we'd like to only use these instructions for masking. let Predicates = [HasDQI] in { - defm NAME # "64x2Z" : vextract_for_size<Opcode128, + defm NAME # "64x2Z" : vextract_for_size_split<Opcode128, X86VectorVTInfo< 8, EltVT64, VR512>, X86VectorVTInfo< 2, EltVT64, VR128X>, - vextract128_extract, - EXTRACT_get_vextract128_imm>, + null_frag, vextract128_extract, itins>, VEX_W, EVEX_V512, EVEX_CD8<64, CD8VT2>; - defm NAME # "32x8Z" : vextract_for_size<Opcode256, + defm NAME # "32x8Z" : vextract_for_size_split<Opcode256, X86VectorVTInfo<16, EltVT32, VR512>, X86VectorVTInfo< 8, EltVT32, VR256X>, - vextract256_extract, - EXTRACT_get_vextract256_imm>, + null_frag, vextract256_extract, itins>, EVEX_V512, EVEX_CD8<32, CD8VT8>; } } -defm VEXTRACTF : vextract_for_type<f32, 0x19, f64, 0x1b>; -defm VEXTRACTI : vextract_for_type<i32, 0x39, i64, 0x3b>; +// FIXME: Is there a better scheduler itinerary for VEXTRACTF/VEXTRACTI? +let Sched = WriteFShuffle256 in +def AVX512_VEXTRACTF : OpndItins< + IIC_SSE_SHUFP, IIC_SSE_SHUFP +>; +let Sched = WriteShuffle256 in +def AVX512_VEXTRACTI : OpndItins< + IIC_SSE_PSHUF_RI, IIC_SSE_PSHUF_MI +>; + +defm VEXTRACTF : vextract_for_type<f32, 0x19, f64, 0x1b, AVX512_VEXTRACTF>; +defm VEXTRACTI : vextract_for_type<i32, 0x39, i64, 0x3b, AVX512_VEXTRACTI>; // extract_subvector codegen patterns with the alternative types. -// Only add this if 64x2 and its friends are not supported natively via AVX512DQ. +// Even with AVX512DQ we'll still use these for unmasked operations. defm : vextract_for_size_lowering<"VEXTRACTF32x4Z", v8f64_info, v2f64x_info, - vextract128_extract, EXTRACT_get_vextract128_imm, [HasAVX512, NoDQI]>; + vextract128_extract, EXTRACT_get_vextract128_imm, [HasAVX512]>; defm : vextract_for_size_lowering<"VEXTRACTI32x4Z", v8i64_info, v2i64x_info, - vextract128_extract, EXTRACT_get_vextract128_imm, [HasAVX512, NoDQI]>; + vextract128_extract, EXTRACT_get_vextract128_imm, [HasAVX512]>; defm : vextract_for_size_lowering<"VEXTRACTF64x4Z", v16f32_info, v8f32x_info, - vextract256_extract, EXTRACT_get_vextract256_imm, [HasAVX512, NoDQI]>; + vextract256_extract, EXTRACT_get_vextract256_imm, [HasAVX512]>; defm : vextract_for_size_lowering<"VEXTRACTI64x4Z", v16i32_info, v8i32x_info, - vextract256_extract, EXTRACT_get_vextract256_imm, [HasAVX512, NoDQI]>; + vextract256_extract, EXTRACT_get_vextract256_imm, [HasAVX512]>; defm : vextract_for_size_lowering<"VEXTRACTF32x4Z256", v4f64x_info, v2f64x_info, - vextract128_extract, EXTRACT_get_vextract128_imm, [HasVLX, NoDQI]>; + vextract128_extract, EXTRACT_get_vextract128_imm, [HasVLX]>; defm : vextract_for_size_lowering<"VEXTRACTI32x4Z256", v4i64x_info, v2i64x_info, - vextract128_extract, EXTRACT_get_vextract128_imm, [HasVLX, NoDQI]>; + vextract128_extract, EXTRACT_get_vextract128_imm, [HasVLX]>; // Codegen pattern with the alternative types extract VEC128 from VEC256 defm : vextract_for_size_lowering<"VEXTRACTI32x4Z256", v16i16x_info, v8i16x_info, @@ -797,80 +946,185 @@ defm : vextract_for_size_lowering<"VEXTRACTI64x4Z", v32i16_info, v16i16x_info, defm : vextract_for_size_lowering<"VEXTRACTI64x4Z", v64i8_info, v32i8x_info, vextract256_extract, EXTRACT_get_vextract256_imm, [HasAVX512]>; -// A 128-bit subvector extract from the first 256-bit vector position -// is a subregister copy that needs no instruction. -def : Pat<(v2i64 (extract_subvector (v8i64 VR512:$src), (iPTR 0))), - (v2i64 (EXTRACT_SUBREG (v8i64 VR512:$src), sub_xmm))>; -def : Pat<(v2f64 (extract_subvector (v8f64 VR512:$src), (iPTR 0))), - (v2f64 (EXTRACT_SUBREG (v8f64 VR512:$src), sub_xmm))>; -def : Pat<(v4i32 (extract_subvector (v16i32 VR512:$src), (iPTR 0))), - (v4i32 (EXTRACT_SUBREG (v16i32 VR512:$src), sub_xmm))>; -def : Pat<(v4f32 (extract_subvector (v16f32 VR512:$src), (iPTR 0))), - (v4f32 (EXTRACT_SUBREG (v16f32 VR512:$src), sub_xmm))>; -def : Pat<(v8i16 (extract_subvector (v32i16 VR512:$src), (iPTR 0))), - (v8i16 (EXTRACT_SUBREG (v32i16 VR512:$src), sub_xmm))>; -def : Pat<(v16i8 (extract_subvector (v64i8 VR512:$src), (iPTR 0))), - (v16i8 (EXTRACT_SUBREG (v64i8 VR512:$src), sub_xmm))>; -// A 256-bit subvector extract from the first 256-bit vector position -// is a subregister copy that needs no instruction. -def : Pat<(v4i64 (extract_subvector (v8i64 VR512:$src), (iPTR 0))), - (v4i64 (EXTRACT_SUBREG (v8i64 VR512:$src), sub_ymm))>; -def : Pat<(v4f64 (extract_subvector (v8f64 VR512:$src), (iPTR 0))), - (v4f64 (EXTRACT_SUBREG (v8f64 VR512:$src), sub_ymm))>; -def : Pat<(v8i32 (extract_subvector (v16i32 VR512:$src), (iPTR 0))), - (v8i32 (EXTRACT_SUBREG (v16i32 VR512:$src), sub_ymm))>; -def : Pat<(v8f32 (extract_subvector (v16f32 VR512:$src), (iPTR 0))), - (v8f32 (EXTRACT_SUBREG (v16f32 VR512:$src), sub_ymm))>; -def : Pat<(v16i16 (extract_subvector (v32i16 VR512:$src), (iPTR 0))), - (v16i16 (EXTRACT_SUBREG (v32i16 VR512:$src), sub_ymm))>; -def : Pat<(v32i8 (extract_subvector (v64i8 VR512:$src), (iPTR 0))), - (v32i8 (EXTRACT_SUBREG (v64i8 VR512:$src), sub_ymm))>; +// A 128-bit extract from bits [255:128] of a 512-bit vector should use a +// smaller extract to enable EVEX->VEX. +let Predicates = [NoVLX] in { +def : Pat<(v2i64 (extract_subvector (v8i64 VR512:$src), (iPTR 2))), + (v2i64 (VEXTRACTI128rr + (v4i64 (EXTRACT_SUBREG (v8i64 VR512:$src), sub_ymm)), + (iPTR 1)))>; +def : Pat<(v2f64 (extract_subvector (v8f64 VR512:$src), (iPTR 2))), + (v2f64 (VEXTRACTF128rr + (v4f64 (EXTRACT_SUBREG (v8f64 VR512:$src), sub_ymm)), + (iPTR 1)))>; +def : Pat<(v4i32 (extract_subvector (v16i32 VR512:$src), (iPTR 4))), + (v4i32 (VEXTRACTI128rr + (v8i32 (EXTRACT_SUBREG (v16i32 VR512:$src), sub_ymm)), + (iPTR 1)))>; +def : Pat<(v4f32 (extract_subvector (v16f32 VR512:$src), (iPTR 4))), + (v4f32 (VEXTRACTF128rr + (v8f32 (EXTRACT_SUBREG (v16f32 VR512:$src), sub_ymm)), + (iPTR 1)))>; +def : Pat<(v8i16 (extract_subvector (v32i16 VR512:$src), (iPTR 8))), + (v8i16 (VEXTRACTI128rr + (v16i16 (EXTRACT_SUBREG (v32i16 VR512:$src), sub_ymm)), + (iPTR 1)))>; +def : Pat<(v16i8 (extract_subvector (v64i8 VR512:$src), (iPTR 16))), + (v16i8 (VEXTRACTI128rr + (v32i8 (EXTRACT_SUBREG (v64i8 VR512:$src), sub_ymm)), + (iPTR 1)))>; +} -let AddedComplexity = 25 in { // to give priority over vinsertf128rm -// A 128-bit subvector insert to the first 512-bit vector position -// is a subregister copy that needs no instruction. -def : Pat<(v8i64 (insert_subvector undef, (v2i64 VR128X:$src), (iPTR 0))), - (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR128X:$src, sub_xmm)>; -def : Pat<(v8f64 (insert_subvector undef, (v2f64 VR128X:$src), (iPTR 0))), - (INSERT_SUBREG (v8f64 (IMPLICIT_DEF)), VR128X:$src, sub_xmm)>; -def : Pat<(v16i32 (insert_subvector undef, (v4i32 VR128X:$src), (iPTR 0))), - (INSERT_SUBREG (v16i32 (IMPLICIT_DEF)), VR128X:$src, sub_xmm)>; -def : Pat<(v16f32 (insert_subvector undef, (v4f32 VR128X:$src), (iPTR 0))), - (INSERT_SUBREG (v16f32 (IMPLICIT_DEF)), VR128X:$src, sub_xmm)>; -def : Pat<(v32i16 (insert_subvector undef, (v8i16 VR128X:$src), (iPTR 0))), - (INSERT_SUBREG (v32i16 (IMPLICIT_DEF)), VR128X:$src, sub_xmm)>; -def : Pat<(v64i8 (insert_subvector undef, (v16i8 VR128X:$src), (iPTR 0))), - (INSERT_SUBREG (v64i8 (IMPLICIT_DEF)), VR128X:$src, sub_xmm)>; +// A 128-bit extract from bits [255:128] of a 512-bit vector should use a +// smaller extract to enable EVEX->VEX. +let Predicates = [HasVLX] in { +def : Pat<(v2i64 (extract_subvector (v8i64 VR512:$src), (iPTR 2))), + (v2i64 (VEXTRACTI32x4Z256rr + (v4i64 (EXTRACT_SUBREG (v8i64 VR512:$src), sub_ymm)), + (iPTR 1)))>; +def : Pat<(v2f64 (extract_subvector (v8f64 VR512:$src), (iPTR 2))), + (v2f64 (VEXTRACTF32x4Z256rr + (v4f64 (EXTRACT_SUBREG (v8f64 VR512:$src), sub_ymm)), + (iPTR 1)))>; +def : Pat<(v4i32 (extract_subvector (v16i32 VR512:$src), (iPTR 4))), + (v4i32 (VEXTRACTI32x4Z256rr + (v8i32 (EXTRACT_SUBREG (v16i32 VR512:$src), sub_ymm)), + (iPTR 1)))>; +def : Pat<(v4f32 (extract_subvector (v16f32 VR512:$src), (iPTR 4))), + (v4f32 (VEXTRACTF32x4Z256rr + (v8f32 (EXTRACT_SUBREG (v16f32 VR512:$src), sub_ymm)), + (iPTR 1)))>; +def : Pat<(v8i16 (extract_subvector (v32i16 VR512:$src), (iPTR 8))), + (v8i16 (VEXTRACTI32x4Z256rr + (v16i16 (EXTRACT_SUBREG (v32i16 VR512:$src), sub_ymm)), + (iPTR 1)))>; +def : Pat<(v16i8 (extract_subvector (v64i8 VR512:$src), (iPTR 16))), + (v16i8 (VEXTRACTI32x4Z256rr + (v32i8 (EXTRACT_SUBREG (v64i8 VR512:$src), sub_ymm)), + (iPTR 1)))>; +} + + +// Additional patterns for handling a bitcast between the vselect and the +// extract_subvector. +multiclass vextract_for_mask_cast<string InstrStr, X86VectorVTInfo From, + X86VectorVTInfo To, X86VectorVTInfo Cast, + PatFrag vextract_extract, + SDNodeXForm EXTRACT_get_vextract_imm, + list<Predicate> p> { +let Predicates = p in { + def : Pat<(Cast.VT (vselect Cast.KRCWM:$mask, + (bitconvert + (To.VT (vextract_extract:$ext + (From.VT From.RC:$src), (iPTR imm)))), + To.RC:$src0)), + (Cast.VT (!cast<Instruction>(InstrStr#"rrk") + Cast.RC:$src0, Cast.KRCWM:$mask, From.RC:$src, + (EXTRACT_get_vextract_imm To.RC:$ext)))>; -// A 256-bit subvector insert to the first 512-bit vector position -// is a subregister copy that needs no instruction. -def : Pat<(v8i64 (insert_subvector undef, (v4i64 VR256X:$src), (iPTR 0))), - (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR256X:$src, sub_ymm)>; -def : Pat<(v8f64 (insert_subvector undef, (v4f64 VR256X:$src), (iPTR 0))), - (INSERT_SUBREG (v8f64 (IMPLICIT_DEF)), VR256X:$src, sub_ymm)>; -def : Pat<(v16i32 (insert_subvector undef, (v8i32 VR256X:$src), (iPTR 0))), - (INSERT_SUBREG (v16i32 (IMPLICIT_DEF)), VR256X:$src, sub_ymm)>; -def : Pat<(v16f32 (insert_subvector undef, (v8f32 VR256X:$src), (iPTR 0))), - (INSERT_SUBREG (v16f32 (IMPLICIT_DEF)), VR256X:$src, sub_ymm)>; -def : Pat<(v32i16 (insert_subvector undef, (v16i16 VR256X:$src), (iPTR 0))), - (INSERT_SUBREG (v32i16 (IMPLICIT_DEF)), VR256X:$src, sub_ymm)>; -def : Pat<(v64i8 (insert_subvector undef, (v32i8 VR256X:$src), (iPTR 0))), - (INSERT_SUBREG (v64i8 (IMPLICIT_DEF)), VR256X:$src, sub_ymm)>; + def : Pat<(Cast.VT (vselect Cast.KRCWM:$mask, + (bitconvert + (To.VT (vextract_extract:$ext + (From.VT From.RC:$src), (iPTR imm)))), + Cast.ImmAllZerosV)), + (Cast.VT (!cast<Instruction>(InstrStr#"rrkz") + Cast.KRCWM:$mask, From.RC:$src, + (EXTRACT_get_vextract_imm To.RC:$ext)))>; } +} + +defm : vextract_for_mask_cast<"VEXTRACTF32x4Z256", v4f64x_info, v2f64x_info, + v4f32x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasVLX]>; +defm : vextract_for_mask_cast<"VEXTRACTF64x2Z256", v8f32x_info, v4f32x_info, + v2f64x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasDQI, HasVLX]>; + +defm : vextract_for_mask_cast<"VEXTRACTI32x4Z256", v4i64x_info, v2i64x_info, + v4i32x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasVLX]>; +defm : vextract_for_mask_cast<"VEXTRACTI32x4Z256", v16i16x_info, v8i16x_info, + v4i32x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasVLX]>; +defm : vextract_for_mask_cast<"VEXTRACTI32x4Z256", v32i8x_info, v16i8x_info, + v4i32x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasVLX]>; +defm : vextract_for_mask_cast<"VEXTRACTI64x2Z256", v8i32x_info, v4i32x_info, + v2i64x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasDQI, HasVLX]>; +defm : vextract_for_mask_cast<"VEXTRACTI64x2Z256", v16i16x_info, v8i16x_info, + v2i64x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasDQI, HasVLX]>; +defm : vextract_for_mask_cast<"VEXTRACTI64x2Z256", v32i8x_info, v16i8x_info, + v2i64x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasDQI, HasVLX]>; + +defm : vextract_for_mask_cast<"VEXTRACTF32x4Z", v8f64_info, v2f64x_info, + v4f32x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasAVX512]>; +defm : vextract_for_mask_cast<"VEXTRACTF64x2Z", v16f32_info, v4f32x_info, + v2f64x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasDQI]>; + +defm : vextract_for_mask_cast<"VEXTRACTI32x4Z", v8i64_info, v2i64x_info, + v4i32x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasAVX512]>; +defm : vextract_for_mask_cast<"VEXTRACTI32x4Z", v32i16_info, v8i16x_info, + v4i32x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasAVX512]>; +defm : vextract_for_mask_cast<"VEXTRACTI32x4Z", v64i8_info, v16i8x_info, + v4i32x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasAVX512]>; +defm : vextract_for_mask_cast<"VEXTRACTI64x2Z", v16i32_info, v4i32x_info, + v2i64x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasDQI]>; +defm : vextract_for_mask_cast<"VEXTRACTI64x2Z", v32i16_info, v8i16x_info, + v2i64x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasDQI]>; +defm : vextract_for_mask_cast<"VEXTRACTI64x2Z", v64i8_info, v16i8x_info, + v2i64x_info, vextract128_extract, + EXTRACT_get_vextract128_imm, [HasDQI]>; + +defm : vextract_for_mask_cast<"VEXTRACTF32x8Z", v8f64_info, v4f64x_info, + v8f32x_info, vextract256_extract, + EXTRACT_get_vextract256_imm, [HasDQI]>; +defm : vextract_for_mask_cast<"VEXTRACTF64x4Z", v16f32_info, v8f32x_info, + v4f64x_info, vextract256_extract, + EXTRACT_get_vextract256_imm, [HasAVX512]>; + +defm : vextract_for_mask_cast<"VEXTRACTI32x8Z", v8i64_info, v4i64x_info, + v8i32x_info, vextract256_extract, + EXTRACT_get_vextract256_imm, [HasDQI]>; +defm : vextract_for_mask_cast<"VEXTRACTI32x8Z", v32i16_info, v16i16x_info, + v8i32x_info, vextract256_extract, + EXTRACT_get_vextract256_imm, [HasDQI]>; +defm : vextract_for_mask_cast<"VEXTRACTI32x8Z", v64i8_info, v32i8x_info, + v8i32x_info, vextract256_extract, + EXTRACT_get_vextract256_imm, [HasDQI]>; +defm : vextract_for_mask_cast<"VEXTRACTI64x4Z", v16i32_info, v8i32x_info, + v4i64x_info, vextract256_extract, + EXTRACT_get_vextract256_imm, [HasAVX512]>; +defm : vextract_for_mask_cast<"VEXTRACTI64x4Z", v32i16_info, v16i16x_info, + v4i64x_info, vextract256_extract, + EXTRACT_get_vextract256_imm, [HasAVX512]>; +defm : vextract_for_mask_cast<"VEXTRACTI64x4Z", v64i8_info, v32i8x_info, + v4i64x_info, vextract256_extract, + EXTRACT_get_vextract256_imm, [HasAVX512]>; // vextractps - extract 32 bits from XMM def VEXTRACTPSZrr : AVX512AIi8<0x17, MRMDestReg, (outs GR32:$dst), (ins VR128X:$src1, u8imm:$src2), "vextractps\t{$src2, $src1, $dst|$dst, $src1, $src2}", - [(set GR32:$dst, (extractelt (bc_v4i32 (v4f32 VR128X:$src1)), imm:$src2))]>, - EVEX; + [(set GR32:$dst, (extractelt (bc_v4i32 (v4f32 VR128X:$src1)), imm:$src2))], + IIC_SSE_EXTRACTPS_RR>, EVEX, VEX_WIG, Sched<[WriteFShuffle]>; def VEXTRACTPSZmr : AVX512AIi8<0x17, MRMDestMem, (outs), (ins f32mem:$dst, VR128X:$src1, u8imm:$src2), "vextractps\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(store (extractelt (bc_v4i32 (v4f32 VR128X:$src1)), imm:$src2), - addr:$dst)]>, EVEX, EVEX_CD8<32, CD8VT1>; + addr:$dst)], IIC_SSE_EXTRACTPS_RM>, + EVEX, VEX_WIG, EVEX_CD8<32, CD8VT1>, Sched<[WriteFShuffleLd]>; //===---------------------------------------------------------------------===// // AVX-512 BROADCAST @@ -894,66 +1148,108 @@ multiclass avx512_broadcast_scalar<bits<8> opc, string OpcodeStr, DestInfo.KRCWM:$mask, (COPY_TO_REGCLASS SrcInfo.FRC:$src, SrcInfo.RC))>; } -multiclass avx512_broadcast_rm<bits<8> opc, string OpcodeStr, - X86VectorVTInfo DestInfo, X86VectorVTInfo SrcInfo> { - let ExeDomain = DestInfo.ExeDomain in { - defm r : AVX512_maskable<opc, MRMSrcReg, DestInfo, (outs DestInfo.RC:$dst), +// Split version to allow mask and broadcast node to be different types. This +// helps support the 32x2 broadcasts. +multiclass avx512_broadcast_rm_split<bits<8> opc, string OpcodeStr, + SchedWrite SchedRR, SchedWrite SchedRM, + X86VectorVTInfo MaskInfo, + X86VectorVTInfo DestInfo, + X86VectorVTInfo SrcInfo, + SDPatternOperator UnmaskedOp = X86VBroadcast> { + let ExeDomain = DestInfo.ExeDomain, hasSideEffects = 0 in { + defm r : AVX512_maskable_split<opc, MRMSrcReg, MaskInfo, + (outs MaskInfo.RC:$dst), (ins SrcInfo.RC:$src), OpcodeStr, "$src", "$src", - (DestInfo.VT (X86VBroadcast (SrcInfo.VT SrcInfo.RC:$src)))>, - T8PD, EVEX; - defm m : AVX512_maskable<opc, MRMSrcMem, DestInfo, (outs DestInfo.RC:$dst), + (MaskInfo.VT + (bitconvert + (DestInfo.VT + (UnmaskedOp (SrcInfo.VT SrcInfo.RC:$src))))), + (MaskInfo.VT + (bitconvert + (DestInfo.VT + (X86VBroadcast (SrcInfo.VT SrcInfo.RC:$src))))), + NoItinerary>, T8PD, EVEX, Sched<[SchedRR]>; + let mayLoad = 1 in + defm m : AVX512_maskable_split<opc, MRMSrcMem, MaskInfo, + (outs MaskInfo.RC:$dst), (ins SrcInfo.ScalarMemOp:$src), OpcodeStr, "$src", "$src", - (DestInfo.VT (X86VBroadcast - (SrcInfo.ScalarLdFrag addr:$src)))>, - T8PD, EVEX, EVEX_CD8<SrcInfo.EltSize, CD8VT1>; + (MaskInfo.VT + (bitconvert + (DestInfo.VT (UnmaskedOp + (SrcInfo.ScalarLdFrag addr:$src))))), + (MaskInfo.VT + (bitconvert + (DestInfo.VT (X86VBroadcast + (SrcInfo.ScalarLdFrag addr:$src))))), + NoItinerary>, T8PD, EVEX, EVEX_CD8<SrcInfo.EltSize, CD8VT1>, + Sched<[SchedRM]>; } - def : Pat<(DestInfo.VT (X86VBroadcast - (SrcInfo.VT (scalar_to_vector - (SrcInfo.ScalarLdFrag addr:$src))))), - (!cast<Instruction>(NAME#DestInfo.ZSuffix#m) addr:$src)>; - def : Pat<(DestInfo.VT (vselect DestInfo.KRCWM:$mask, - (X86VBroadcast - (SrcInfo.VT (scalar_to_vector - (SrcInfo.ScalarLdFrag addr:$src)))), - DestInfo.RC:$src0)), + def : Pat<(MaskInfo.VT + (bitconvert + (DestInfo.VT (UnmaskedOp + (SrcInfo.VT (scalar_to_vector + (SrcInfo.ScalarLdFrag addr:$src))))))), + (!cast<Instruction>(NAME#MaskInfo.ZSuffix#m) addr:$src)>; + def : Pat<(MaskInfo.VT (vselect MaskInfo.KRCWM:$mask, + (bitconvert + (DestInfo.VT + (X86VBroadcast + (SrcInfo.VT (scalar_to_vector + (SrcInfo.ScalarLdFrag addr:$src)))))), + MaskInfo.RC:$src0)), (!cast<Instruction>(NAME#DestInfo.ZSuffix#mk) - DestInfo.RC:$src0, DestInfo.KRCWM:$mask, addr:$src)>; - def : Pat<(DestInfo.VT (vselect DestInfo.KRCWM:$mask, - (X86VBroadcast - (SrcInfo.VT (scalar_to_vector - (SrcInfo.ScalarLdFrag addr:$src)))), - DestInfo.ImmAllZerosV)), - (!cast<Instruction>(NAME#DestInfo.ZSuffix#mkz) - DestInfo.KRCWM:$mask, addr:$src)>; + MaskInfo.RC:$src0, MaskInfo.KRCWM:$mask, addr:$src)>; + def : Pat<(MaskInfo.VT (vselect MaskInfo.KRCWM:$mask, + (bitconvert + (DestInfo.VT + (X86VBroadcast + (SrcInfo.VT (scalar_to_vector + (SrcInfo.ScalarLdFrag addr:$src)))))), + MaskInfo.ImmAllZerosV)), + (!cast<Instruction>(NAME#MaskInfo.ZSuffix#mkz) + MaskInfo.KRCWM:$mask, addr:$src)>; } +// Helper class to force mask and broadcast result to same type. +multiclass avx512_broadcast_rm<bits<8> opc, string OpcodeStr, + SchedWrite SchedRR, SchedWrite SchedRM, + X86VectorVTInfo DestInfo, + X86VectorVTInfo SrcInfo> : + avx512_broadcast_rm_split<opc, OpcodeStr, SchedRR, SchedRM, + DestInfo, DestInfo, SrcInfo>; + multiclass avx512_fp_broadcast_sd<bits<8> opc, string OpcodeStr, AVX512VLVectorVTInfo _> { let Predicates = [HasAVX512] in - defm Z : avx512_broadcast_rm<opc, OpcodeStr, _.info512, _.info128>, + defm Z : avx512_broadcast_rm<opc, OpcodeStr, WriteFShuffle256, + WriteFShuffle256Ld, _.info512, _.info128>, avx512_broadcast_scalar<opc, OpcodeStr, _.info512, _.info128>, - EVEX_V512; + EVEX_V512; let Predicates = [HasVLX] in { - defm Z256 : avx512_broadcast_rm<opc, OpcodeStr, _.info256, _.info128>, + defm Z256 : avx512_broadcast_rm<opc, OpcodeStr, WriteFShuffle256, + WriteFShuffle256Ld, _.info256, _.info128>, avx512_broadcast_scalar<opc, OpcodeStr, _.info256, _.info128>, - EVEX_V256; + EVEX_V256; } } multiclass avx512_fp_broadcast_ss<bits<8> opc, string OpcodeStr, AVX512VLVectorVTInfo _> { let Predicates = [HasAVX512] in - defm Z : avx512_broadcast_rm<opc, OpcodeStr, _.info512, _.info128>, + defm Z : avx512_broadcast_rm<opc, OpcodeStr, WriteFShuffle256, + WriteFShuffle256Ld, _.info512, _.info128>, avx512_broadcast_scalar<opc, OpcodeStr, _.info512, _.info128>, EVEX_V512; let Predicates = [HasVLX] in { - defm Z256 : avx512_broadcast_rm<opc, OpcodeStr, _.info256, _.info128>, + defm Z256 : avx512_broadcast_rm<opc, OpcodeStr, WriteFShuffle256, + WriteFShuffle256Ld, _.info256, _.info128>, avx512_broadcast_scalar<opc, OpcodeStr, _.info256, _.info128>, EVEX_V256; - defm Z128 : avx512_broadcast_rm<opc, OpcodeStr, _.info128, _.info128>, + defm Z128 : avx512_broadcast_rm<opc, OpcodeStr, WriteFShuffle256, + WriteFShuffle256Ld, _.info128, _.info128>, avx512_broadcast_scalar<opc, OpcodeStr, _.info128, _.info128>, EVEX_V128; } @@ -968,26 +1264,27 @@ def : Pat<(int_x86_avx512_vbroadcast_ss_512 addr:$src), def : Pat<(int_x86_avx512_vbroadcast_sd_512 addr:$src), (VBROADCASTSDZm addr:$src)>; -multiclass avx512_int_broadcast_reg<bits<8> opc, X86VectorVTInfo _, - SDPatternOperator OpNode, +multiclass avx512_int_broadcast_reg<bits<8> opc, SchedWrite SchedRR, + X86VectorVTInfo _, SDPatternOperator OpNode, RegisterClass SrcRC> { let ExeDomain = _.ExeDomain in defm r : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins SrcRC:$src), "vpbroadcast"##_.Suffix, "$src", "$src", - (_.VT (OpNode SrcRC:$src))>, T8PD, EVEX; + (_.VT (OpNode SrcRC:$src)), NoItinerary>, T8PD, EVEX, + Sched<[SchedRR]>; } -multiclass avx512_int_broadcastbw_reg<bits<8> opc, string Name, +multiclass avx512_int_broadcastbw_reg<bits<8> opc, string Name, SchedWrite SchedRR, X86VectorVTInfo _, SDPatternOperator OpNode, RegisterClass SrcRC, SubRegIndex Subreg> { - let ExeDomain = _.ExeDomain in + let hasSideEffects = 0, ExeDomain = _.ExeDomain in defm r : AVX512_maskable_custom<opc, MRMSrcReg, (outs _.RC:$dst), (ins GR32:$src), !con((ins _.RC:$src0, _.KRCWM:$mask), (ins GR32:$src)), !con((ins _.KRCWM:$mask), (ins GR32:$src)), "vpbroadcast"##_.Suffix, "$src", "$src", [], [], [], - "$src0 = $dst">, T8PD, EVEX; + NoItinerary, "$src0 = $dst">, T8PD, EVEX, Sched<[SchedRR]>; def : Pat <(_.VT (OpNode SrcRC:$src)), (!cast<Instruction>(Name#r) @@ -1006,13 +1303,13 @@ multiclass avx512_int_broadcastbw_reg_vl<bits<8> opc, string Name, AVX512VLVectorVTInfo _, SDPatternOperator OpNode, RegisterClass SrcRC, SubRegIndex Subreg, Predicate prd> { let Predicates = [prd] in - defm Z : avx512_int_broadcastbw_reg<opc, Name#Z, _.info512, OpNode, SrcRC, - Subreg>, EVEX_V512; + defm Z : avx512_int_broadcastbw_reg<opc, Name#Z, WriteShuffle256, _.info512, + OpNode, SrcRC, Subreg>, EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_int_broadcastbw_reg<opc, Name#Z256, _.info256, OpNode, - SrcRC, Subreg>, EVEX_V256; - defm Z128 : avx512_int_broadcastbw_reg<opc, Name#Z128, _.info128, OpNode, - SrcRC, Subreg>, EVEX_V128; + defm Z256 : avx512_int_broadcastbw_reg<opc, Name#Z256, WriteShuffle256, + _.info256, OpNode, SrcRC, Subreg>, EVEX_V256; + defm Z128 : avx512_int_broadcastbw_reg<opc, Name#Z128, WriteShuffle, + _.info128, OpNode, SrcRC, Subreg>, EVEX_V128; } } @@ -1020,10 +1317,13 @@ multiclass avx512_int_broadcast_reg_vl<bits<8> opc, AVX512VLVectorVTInfo _, SDPatternOperator OpNode, RegisterClass SrcRC, Predicate prd> { let Predicates = [prd] in - defm Z : avx512_int_broadcast_reg<opc, _.info512, OpNode, SrcRC>, EVEX_V512; + defm Z : avx512_int_broadcast_reg<opc, WriteShuffle256, _.info512, OpNode, + SrcRC>, EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_int_broadcast_reg<opc, _.info256, OpNode, SrcRC>, EVEX_V256; - defm Z128 : avx512_int_broadcast_reg<opc, _.info128, OpNode, SrcRC>, EVEX_V128; + defm Z256 : avx512_int_broadcast_reg<opc, WriteShuffle256, _.info256, OpNode, + SrcRC>, EVEX_V256; + defm Z128 : avx512_int_broadcast_reg<opc, WriteShuffle, _.info128, OpNode, + SrcRC>, EVEX_V128; } } @@ -1054,17 +1354,20 @@ multiclass avx512_int_broadcast_rm_lowering<X86VectorVTInfo DestInfo, multiclass avx512_int_broadcast_rm_vl<bits<8> opc, string OpcodeStr, AVX512VLVectorVTInfo _, Predicate prd> { let Predicates = [prd] in { - defm Z : avx512_broadcast_rm<opc, OpcodeStr, _.info512, _.info128>, + defm Z : avx512_broadcast_rm<opc, OpcodeStr, WriteShuffle256, + WriteShuffle256Ld, _.info512, _.info128>, avx512_int_broadcast_rm_lowering<_.info512, _.info256>, EVEX_V512; // Defined separately to avoid redefinition. defm Z_Alt : avx512_int_broadcast_rm_lowering<_.info512, _.info512>; } let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_broadcast_rm<opc, OpcodeStr, _.info256, _.info128>, + defm Z256 : avx512_broadcast_rm<opc, OpcodeStr, WriteShuffle256, + WriteShuffle256Ld, _.info256, _.info128>, avx512_int_broadcast_rm_lowering<_.info256, _.info256>, EVEX_V256; - defm Z128 : avx512_broadcast_rm<opc, OpcodeStr, _.info128, _.info128>, + defm Z128 : avx512_broadcast_rm<opc, OpcodeStr, WriteShuffle, + WriteShuffleLd, _.info128, _.info128>, EVEX_V128; } } @@ -1083,8 +1386,24 @@ multiclass avx512_subvec_broadcast_rm<bits<8> opc, string OpcodeStr, defm rm : AVX512_maskable<opc, MRMSrcMem, _Dst, (outs _Dst.RC:$dst), (ins _Src.MemOp:$src), OpcodeStr, "$src", "$src", (_Dst.VT (X86SubVBroadcast - (_Src.VT (bitconvert (_Src.LdFrag addr:$src)))))>, - AVX5128IBase, EVEX; + (_Src.VT (bitconvert (_Src.LdFrag addr:$src))))), + NoItinerary>, AVX5128IBase, EVEX, + Sched<[WriteShuffleLd]>; +} + +// This should be used for the AVX512DQ broadcast instructions. It disables +// the unmasked patterns so that we only use the DQ instructions when masking +// is requested. +multiclass avx512_subvec_broadcast_rm_dq<bits<8> opc, string OpcodeStr, + X86VectorVTInfo _Dst, X86VectorVTInfo _Src> { + let hasSideEffects = 0, mayLoad = 1 in + defm rm : AVX512_maskable_split<opc, MRMSrcMem, _Dst, (outs _Dst.RC:$dst), + (ins _Src.MemOp:$src), OpcodeStr, "$src", "$src", + (null_frag), + (_Dst.VT (X86SubVBroadcast + (_Src.VT (bitconvert (_Src.LdFrag addr:$src))))), + NoItinerary>, AVX5128IBase, EVEX, + Sched<[WriteShuffleLd]>; } let Predicates = [HasAVX512] in { @@ -1093,12 +1412,14 @@ let Predicates = [HasAVX512] in { (VPBROADCASTQZm addr:$src)>; } -let Predicates = [HasVLX, HasBWI] in { +let Predicates = [HasVLX] in { // 32-bit targets will fail to load a i64 directly but can use ZEXT_LOAD. def : Pat<(v2i64 (X86VBroadcast (v2i64 (X86vzload addr:$src)))), (VPBROADCASTQZ128m addr:$src)>; def : Pat<(v4i64 (X86VBroadcast (v4i64 (X86vzload addr:$src)))), (VPBROADCASTQZ256m addr:$src)>; +} +let Predicates = [HasVLX, HasBWI] in { // loadi16 is tricky to fold, because !isTypeDesirableForOp, justifiably. // This means we'll encounter truncated i32 loads; match that here. def : Pat<(v8i16 (X86VBroadcast (i16 (trunc (i32 (load addr:$src)))))), @@ -1131,6 +1452,10 @@ defm VBROADCASTF64X4 : avx512_subvec_broadcast_rm<0x1b, "vbroadcastf64x4", EVEX_V512, EVEX_CD8<64, CD8VT4>; let Predicates = [HasAVX512] in { +def : Pat<(v16f32 (X86SubVBroadcast (loadv8f32 addr:$src))), + (VBROADCASTF64X4rm addr:$src)>; +def : Pat<(v16i32 (X86SubVBroadcast (bc_v8i32 (loadv4i64 addr:$src)))), + (VBROADCASTI64X4rm addr:$src)>; def : Pat<(v32i16 (X86SubVBroadcast (bc_v16i16 (loadv4i64 addr:$src)))), (VBROADCASTI64X4rm addr:$src)>; def : Pat<(v64i8 (X86SubVBroadcast (bc_v32i8 (loadv4i64 addr:$src)))), @@ -1141,9 +1466,15 @@ def : Pat<(v64i8 (X86SubVBroadcast (bc_v32i8 (loadv4i64 addr:$src)))), def : Pat<(v8f64 (X86SubVBroadcast (v4f64 VR256X:$src))), (VINSERTF64x4Zrr (INSERT_SUBREG (v8f64 (IMPLICIT_DEF)), VR256X:$src, sub_ymm), (v4f64 VR256X:$src), 1)>; +def : Pat<(v16f32 (X86SubVBroadcast (v8f32 VR256X:$src))), + (VINSERTF64x4Zrr (INSERT_SUBREG (v16f32 (IMPLICIT_DEF)), VR256X:$src, sub_ymm), + (v8f32 VR256X:$src), 1)>; def : Pat<(v8i64 (X86SubVBroadcast (v4i64 VR256X:$src))), (VINSERTI64x4Zrr (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR256X:$src, sub_ymm), (v4i64 VR256X:$src), 1)>; +def : Pat<(v16i32 (X86SubVBroadcast (v8i32 VR256X:$src))), + (VINSERTI64x4Zrr (INSERT_SUBREG (v16i32 (IMPLICIT_DEF)), VR256X:$src, sub_ymm), + (v8i32 VR256X:$src), 1)>; def : Pat<(v32i16 (X86SubVBroadcast (v16i16 VR256X:$src))), (VINSERTI64x4Zrr (INSERT_SUBREG (v32i16 (IMPLICIT_DEF)), VR256X:$src, sub_ymm), (v16i16 VR256X:$src), 1)>; @@ -1151,6 +1482,10 @@ def : Pat<(v64i8 (X86SubVBroadcast (v32i8 VR256X:$src))), (VINSERTI64x4Zrr (INSERT_SUBREG (v64i8 (IMPLICIT_DEF)), VR256X:$src, sub_ymm), (v32i8 VR256X:$src), 1)>; +def : Pat<(v8f64 (X86SubVBroadcast (loadv2f64 addr:$src))), + (VBROADCASTF32X4rm addr:$src)>; +def : Pat<(v8i64 (X86SubVBroadcast (loadv2i64 addr:$src))), + (VBROADCASTI32X4rm addr:$src)>; def : Pat<(v32i16 (X86SubVBroadcast (bc_v8i16 (loadv2i64 addr:$src)))), (VBROADCASTI32X4rm addr:$src)>; def : Pat<(v64i8 (X86SubVBroadcast (bc_v16i8 (loadv2i64 addr:$src)))), @@ -1165,6 +1500,10 @@ defm VBROADCASTF32X4Z256 : avx512_subvec_broadcast_rm<0x1a, "vbroadcastf32x4", v8f32x_info, v4f32x_info>, EVEX_V256, EVEX_CD8<32, CD8VT4>; +def : Pat<(v4f64 (X86SubVBroadcast (loadv2f64 addr:$src))), + (VBROADCASTF32X4Z256rm addr:$src)>; +def : Pat<(v4i64 (X86SubVBroadcast (loadv2i64 addr:$src))), + (VBROADCASTI32X4Z256rm addr:$src)>; def : Pat<(v16i16 (X86SubVBroadcast (bc_v8i16 (loadv2i64 addr:$src)))), (VBROADCASTI32X4Z256rm addr:$src)>; def : Pat<(v32i8 (X86SubVBroadcast (bc_v16i8 (loadv2i64 addr:$src)))), @@ -1172,9 +1511,15 @@ def : Pat<(v32i8 (X86SubVBroadcast (bc_v16i8 (loadv2i64 addr:$src)))), // Provide fallback in case the load node that is used in the patterns above // is used by additional users, which prevents the pattern selection. +def : Pat<(v4f64 (X86SubVBroadcast (v2f64 VR128X:$src))), + (VINSERTF32x4Z256rr (INSERT_SUBREG (v4f64 (IMPLICIT_DEF)), VR128X:$src, sub_xmm), + (v2f64 VR128X:$src), 1)>; def : Pat<(v8f32 (X86SubVBroadcast (v4f32 VR128X:$src))), (VINSERTF32x4Z256rr (INSERT_SUBREG (v8f32 (IMPLICIT_DEF)), VR128X:$src, sub_xmm), (v4f32 VR128X:$src), 1)>; +def : Pat<(v4i64 (X86SubVBroadcast (v2i64 VR128X:$src))), + (VINSERTI32x4Z256rr (INSERT_SUBREG (v4i64 (IMPLICIT_DEF)), VR128X:$src, sub_xmm), + (v2i64 VR128X:$src), 1)>; def : Pat<(v8i32 (X86SubVBroadcast (v4i32 VR128X:$src))), (VINSERTI32x4Z256rr (INSERT_SUBREG (v8i32 (IMPLICIT_DEF)), VR128X:$src, sub_xmm), (v4i32 VR128X:$src), 1)>; @@ -1187,92 +1532,41 @@ def : Pat<(v32i8 (X86SubVBroadcast (v16i8 VR128X:$src))), } let Predicates = [HasVLX, HasDQI] in { -defm VBROADCASTI64X2Z128 : avx512_subvec_broadcast_rm<0x5a, "vbroadcasti64x2", +defm VBROADCASTI64X2Z128 : avx512_subvec_broadcast_rm_dq<0x5a, "vbroadcasti64x2", v4i64x_info, v2i64x_info>, VEX_W, EVEX_V256, EVEX_CD8<64, CD8VT2>; -defm VBROADCASTF64X2Z128 : avx512_subvec_broadcast_rm<0x1a, "vbroadcastf64x2", +defm VBROADCASTF64X2Z128 : avx512_subvec_broadcast_rm_dq<0x1a, "vbroadcastf64x2", v4f64x_info, v2f64x_info>, VEX_W, EVEX_V256, EVEX_CD8<64, CD8VT2>; - -// Provide fallback in case the load node that is used in the patterns above -// is used by additional users, which prevents the pattern selection. -def : Pat<(v4f64 (X86SubVBroadcast (v2f64 VR128X:$src))), - (VINSERTF64x2Z256rr (INSERT_SUBREG (v4f64 (IMPLICIT_DEF)), VR128X:$src, sub_xmm), - (v2f64 VR128X:$src), 1)>; -def : Pat<(v4i64 (X86SubVBroadcast (v2i64 VR128X:$src))), - (VINSERTI64x2Z256rr (INSERT_SUBREG (v4i64 (IMPLICIT_DEF)), VR128X:$src, sub_xmm), - (v2i64 VR128X:$src), 1)>; -} - -let Predicates = [HasVLX, NoDQI] in { -def : Pat<(v4f64 (X86SubVBroadcast (loadv2f64 addr:$src))), - (VBROADCASTF32X4Z256rm addr:$src)>; -def : Pat<(v4i64 (X86SubVBroadcast (loadv2i64 addr:$src))), - (VBROADCASTI32X4Z256rm addr:$src)>; - -// Provide fallback in case the load node that is used in the patterns above -// is used by additional users, which prevents the pattern selection. -def : Pat<(v4f64 (X86SubVBroadcast (v2f64 VR128X:$src))), - (VINSERTF32x4Z256rr (INSERT_SUBREG (v4f64 (IMPLICIT_DEF)), VR128X:$src, sub_xmm), - (v2f64 VR128X:$src), 1)>; -def : Pat<(v4i64 (X86SubVBroadcast (v2i64 VR128X:$src))), - (VINSERTI32x4Z256rr (INSERT_SUBREG (v4i64 (IMPLICIT_DEF)), VR128X:$src, sub_xmm), - (v2i64 VR128X:$src), 1)>; -} - -let Predicates = [HasAVX512, NoDQI] in { -def : Pat<(v8f64 (X86SubVBroadcast (loadv2f64 addr:$src))), - (VBROADCASTF32X4rm addr:$src)>; -def : Pat<(v8i64 (X86SubVBroadcast (loadv2i64 addr:$src))), - (VBROADCASTI32X4rm addr:$src)>; - -def : Pat<(v16f32 (X86SubVBroadcast (loadv8f32 addr:$src))), - (VBROADCASTF64X4rm addr:$src)>; -def : Pat<(v16i32 (X86SubVBroadcast (bc_v8i32 (loadv4i64 addr:$src)))), - (VBROADCASTI64X4rm addr:$src)>; - -// Provide fallback in case the load node that is used in the patterns above -// is used by additional users, which prevents the pattern selection. -def : Pat<(v16f32 (X86SubVBroadcast (v8f32 VR256X:$src))), - (VINSERTF64x4Zrr (INSERT_SUBREG (v16f32 (IMPLICIT_DEF)), VR256X:$src, sub_ymm), - (v8f32 VR256X:$src), 1)>; -def : Pat<(v16i32 (X86SubVBroadcast (v8i32 VR256X:$src))), - (VINSERTI64x4Zrr (INSERT_SUBREG (v16i32 (IMPLICIT_DEF)), VR256X:$src, sub_ymm), - (v8i32 VR256X:$src), 1)>; } let Predicates = [HasDQI] in { -defm VBROADCASTI64X2 : avx512_subvec_broadcast_rm<0x5a, "vbroadcasti64x2", +defm VBROADCASTI64X2 : avx512_subvec_broadcast_rm_dq<0x5a, "vbroadcasti64x2", v8i64_info, v2i64x_info>, VEX_W, EVEX_V512, EVEX_CD8<64, CD8VT2>; -defm VBROADCASTI32X8 : avx512_subvec_broadcast_rm<0x5b, "vbroadcasti32x8", +defm VBROADCASTI32X8 : avx512_subvec_broadcast_rm_dq<0x5b, "vbroadcasti32x8", v16i32_info, v8i32x_info>, EVEX_V512, EVEX_CD8<32, CD8VT8>; -defm VBROADCASTF64X2 : avx512_subvec_broadcast_rm<0x1a, "vbroadcastf64x2", +defm VBROADCASTF64X2 : avx512_subvec_broadcast_rm_dq<0x1a, "vbroadcastf64x2", v8f64_info, v2f64x_info>, VEX_W, EVEX_V512, EVEX_CD8<64, CD8VT2>; -defm VBROADCASTF32X8 : avx512_subvec_broadcast_rm<0x1b, "vbroadcastf32x8", +defm VBROADCASTF32X8 : avx512_subvec_broadcast_rm_dq<0x1b, "vbroadcastf32x8", v16f32_info, v8f32x_info>, EVEX_V512, EVEX_CD8<32, CD8VT8>; - -// Provide fallback in case the load node that is used in the patterns above -// is used by additional users, which prevents the pattern selection. -def : Pat<(v16f32 (X86SubVBroadcast (v8f32 VR256X:$src))), - (VINSERTF32x8Zrr (INSERT_SUBREG (v16f32 (IMPLICIT_DEF)), VR256X:$src, sub_ymm), - (v8f32 VR256X:$src), 1)>; -def : Pat<(v16i32 (X86SubVBroadcast (v8i32 VR256X:$src))), - (VINSERTI32x8Zrr (INSERT_SUBREG (v16i32 (IMPLICIT_DEF)), VR256X:$src, sub_ymm), - (v8i32 VR256X:$src), 1)>; } multiclass avx512_common_broadcast_32x2<bits<8> opc, string OpcodeStr, AVX512VLVectorVTInfo _Dst, AVX512VLVectorVTInfo _Src> { let Predicates = [HasDQI] in - defm Z : avx512_broadcast_rm<opc, OpcodeStr, _Dst.info512, _Src.info128>, - EVEX_V512; + defm Z : avx512_broadcast_rm_split<opc, OpcodeStr, WriteShuffle256, + WriteShuffle256Ld, _Dst.info512, + _Src.info512, _Src.info128, null_frag>, + EVEX_V512; let Predicates = [HasDQI, HasVLX] in - defm Z256 : avx512_broadcast_rm<opc, OpcodeStr, _Dst.info256, _Src.info128>, - EVEX_V256; + defm Z256 : avx512_broadcast_rm_split<opc, OpcodeStr, WriteShuffle256, + WriteShuffle256Ld, _Dst.info256, + _Src.info256, _Src.info128, null_frag>, + EVEX_V256; } multiclass avx512_common_broadcast_i32x2<bits<8> opc, string OpcodeStr, @@ -1280,8 +1574,10 @@ multiclass avx512_common_broadcast_i32x2<bits<8> opc, string OpcodeStr, avx512_common_broadcast_32x2<opc, OpcodeStr, _Dst, _Src> { let Predicates = [HasDQI, HasVLX] in - defm Z128 : avx512_broadcast_rm<opc, OpcodeStr, _Dst.info128, _Src.info128>, - EVEX_V128; + defm Z128 : avx512_broadcast_rm_split<opc, OpcodeStr, WriteShuffle, + WriteShuffleLd, _Dst.info128, + _Src.info128, _Src.info128, null_frag>, + EVEX_V128; } defm VBROADCASTI32X2 : avx512_common_broadcast_i32x2<0x59, "vbroadcasti32x2", @@ -1313,7 +1609,8 @@ multiclass avx512_mask_broadcastm<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, RegisterClass KRC> { def rr : AVX512XS8I<opc, MRMSrcReg, (outs _.RC:$dst), (ins KRC:$src), !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), - [(set _.RC:$dst, (_.VT (X86VBroadcastm KRC:$src)))]>, EVEX; + [(set _.RC:$dst, (_.VT (X86VBroadcastm KRC:$src)))], + IIC_SSE_PSHUF_RI>, EVEX, Sched<[WriteShuffle]>; } multiclass avx512_mask_broadcast<bits<8> opc, string OpcodeStr, @@ -1333,7 +1630,19 @@ defm VPBROADCASTMB2Q : avx512_mask_broadcast<0x2A, "vpbroadcastmb2q", //===----------------------------------------------------------------------===// // -- VPERMI2 - 3 source operands form -- -multiclass avx512_perm_i<bits<8> opc, string OpcodeStr, X86VectorVTInfo _> { + +let Sched = WriteFShuffle256 in +def AVX512_PERM2_F : OpndItins< + IIC_SSE_SHUFP, IIC_SSE_SHUFP +>; + +let Sched = WriteShuffle256 in +def AVX512_PERM2_I : OpndItins< + IIC_SSE_PSHUF_RI, IIC_SSE_PSHUF_MI +>; + +multiclass avx512_perm_i<bits<8> opc, string OpcodeStr, OpndItins itins, + X86VectorVTInfo _> { let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in { // The index operand in the pattern should really be an integer type. However, // if we do that and it happens to come from a bitcast, then it becomes @@ -1343,18 +1652,19 @@ let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in { defm rr: AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", - (_.VT (X86VPermi2X _.RC:$src1, _.RC:$src2, _.RC:$src3)), 1>, EVEX_4V, - AVX5128IBase; + (_.VT (X86VPermi2X _.RC:$src1, _.RC:$src2, _.RC:$src3)), + itins.rr, 1>, EVEX_4V, AVX5128IBase, Sched<[itins.Sched]>; defm rm: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.MemOp:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", (_.VT (X86VPermi2X _.RC:$src1, _.RC:$src2, - (_.VT (bitconvert (_.LdFrag addr:$src3))))), 1>, - EVEX_4V, AVX5128IBase; + (_.VT (bitconvert (_.LdFrag addr:$src3))))), itins.rm, 1>, + EVEX_4V, AVX5128IBase, Sched<[itins.Sched.Folded, ReadAfterLd]>; } } -multiclass avx512_perm_i_mb<bits<8> opc, string OpcodeStr, + +multiclass avx512_perm_i_mb<bits<8> opc, string OpcodeStr, OpndItins itins, X86VectorVTInfo _> { let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in defm rmb: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), @@ -1363,66 +1673,68 @@ multiclass avx512_perm_i_mb<bits<8> opc, string OpcodeStr, !strconcat("$src2, ${src3}", _.BroadcastStr ), (_.VT (X86VPermi2X _.RC:$src1, _.RC:$src2,(_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src3))))), - 1>, AVX5128IBase, EVEX_4V, EVEX_B; + itins.rm, 1>, AVX5128IBase, EVEX_4V, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } -multiclass avx512_perm_i_sizes<bits<8> opc, string OpcodeStr, +multiclass avx512_perm_i_sizes<bits<8> opc, string OpcodeStr, OpndItins itins, AVX512VLVectorVTInfo VTInfo> { - defm NAME: avx512_perm_i<opc, OpcodeStr, VTInfo.info512>, - avx512_perm_i_mb<opc, OpcodeStr, VTInfo.info512>, EVEX_V512; + defm NAME: avx512_perm_i<opc, OpcodeStr, itins, VTInfo.info512>, + avx512_perm_i_mb<opc, OpcodeStr, itins, VTInfo.info512>, EVEX_V512; let Predicates = [HasVLX] in { - defm NAME#128: avx512_perm_i<opc, OpcodeStr, VTInfo.info128>, - avx512_perm_i_mb<opc, OpcodeStr, VTInfo.info128>, EVEX_V128; - defm NAME#256: avx512_perm_i<opc, OpcodeStr, VTInfo.info256>, - avx512_perm_i_mb<opc, OpcodeStr, VTInfo.info256>, EVEX_V256; + defm NAME#128: avx512_perm_i<opc, OpcodeStr, itins, VTInfo.info128>, + avx512_perm_i_mb<opc, OpcodeStr, itins, VTInfo.info128>, EVEX_V128; + defm NAME#256: avx512_perm_i<opc, OpcodeStr, itins, VTInfo.info256>, + avx512_perm_i_mb<opc, OpcodeStr, itins, VTInfo.info256>, EVEX_V256; } } multiclass avx512_perm_i_sizes_bw<bits<8> opc, string OpcodeStr, - AVX512VLVectorVTInfo VTInfo, - Predicate Prd> { + OpndItins itins, + AVX512VLVectorVTInfo VTInfo, + Predicate Prd> { let Predicates = [Prd] in - defm NAME: avx512_perm_i<opc, OpcodeStr, VTInfo.info512>, EVEX_V512; + defm NAME: avx512_perm_i<opc, OpcodeStr, itins, VTInfo.info512>, EVEX_V512; let Predicates = [Prd, HasVLX] in { - defm NAME#128: avx512_perm_i<opc, OpcodeStr, VTInfo.info128>, EVEX_V128; - defm NAME#256: avx512_perm_i<opc, OpcodeStr, VTInfo.info256>, EVEX_V256; + defm NAME#128: avx512_perm_i<opc, OpcodeStr, itins, VTInfo.info128>, EVEX_V128; + defm NAME#256: avx512_perm_i<opc, OpcodeStr, itins, VTInfo.info256>, EVEX_V256; } } -defm VPERMI2D : avx512_perm_i_sizes<0x76, "vpermi2d", +defm VPERMI2D : avx512_perm_i_sizes<0x76, "vpermi2d", AVX512_PERM2_I, avx512vl_i32_info>, EVEX_CD8<32, CD8VF>; -defm VPERMI2Q : avx512_perm_i_sizes<0x76, "vpermi2q", +defm VPERMI2Q : avx512_perm_i_sizes<0x76, "vpermi2q", AVX512_PERM2_I, avx512vl_i64_info>, VEX_W, EVEX_CD8<64, CD8VF>; -defm VPERMI2W : avx512_perm_i_sizes_bw<0x75, "vpermi2w", +defm VPERMI2W : avx512_perm_i_sizes_bw<0x75, "vpermi2w", AVX512_PERM2_I, avx512vl_i16_info, HasBWI>, VEX_W, EVEX_CD8<16, CD8VF>; -defm VPERMI2B : avx512_perm_i_sizes_bw<0x75, "vpermi2b", +defm VPERMI2B : avx512_perm_i_sizes_bw<0x75, "vpermi2b", AVX512_PERM2_I, avx512vl_i8_info, HasVBMI>, EVEX_CD8<8, CD8VF>; -defm VPERMI2PS : avx512_perm_i_sizes<0x77, "vpermi2ps", +defm VPERMI2PS : avx512_perm_i_sizes<0x77, "vpermi2ps", AVX512_PERM2_F, avx512vl_f32_info>, EVEX_CD8<32, CD8VF>; -defm VPERMI2PD : avx512_perm_i_sizes<0x77, "vpermi2pd", +defm VPERMI2PD : avx512_perm_i_sizes<0x77, "vpermi2pd", AVX512_PERM2_F, avx512vl_f64_info>, VEX_W, EVEX_CD8<64, CD8VF>; // VPERMT2 -multiclass avx512_perm_t<bits<8> opc, string OpcodeStr, +multiclass avx512_perm_t<bits<8> opc, string OpcodeStr, OpndItins itins, X86VectorVTInfo _, X86VectorVTInfo IdxVT> { let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in { defm rr: AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins IdxVT.RC:$src2, _.RC:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", - (_.VT (X86VPermt2 _.RC:$src1, IdxVT.RC:$src2, _.RC:$src3)), 1>, - EVEX_4V, AVX5128IBase; + (_.VT (X86VPermt2 _.RC:$src1, IdxVT.RC:$src2, _.RC:$src3)), + itins.rr, 1>, EVEX_4V, AVX5128IBase, Sched<[itins.Sched]>; defm rm: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins IdxVT.RC:$src2, _.MemOp:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", (_.VT (X86VPermt2 _.RC:$src1, IdxVT.RC:$src2, - (bitconvert (_.LdFrag addr:$src3)))), 1>, - EVEX_4V, AVX5128IBase; + (bitconvert (_.LdFrag addr:$src3)))), itins.rm, 1>, + EVEX_4V, AVX5128IBase, Sched<[itins.Sched.Folded, ReadAfterLd]>; } } -multiclass avx512_perm_t_mb<bits<8> opc, string OpcodeStr, +multiclass avx512_perm_t_mb<bits<8> opc, string OpcodeStr, OpndItins itins, X86VectorVTInfo _, X86VectorVTInfo IdxVT> { let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in defm rmb: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), @@ -1431,147 +1743,165 @@ multiclass avx512_perm_t_mb<bits<8> opc, string OpcodeStr, !strconcat("$src2, ${src3}", _.BroadcastStr ), (_.VT (X86VPermt2 _.RC:$src1, IdxVT.RC:$src2,(_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src3))))), - 1>, AVX5128IBase, EVEX_4V, EVEX_B; + itins.rm, 1>, AVX5128IBase, EVEX_4V, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } -multiclass avx512_perm_t_sizes<bits<8> opc, string OpcodeStr, +multiclass avx512_perm_t_sizes<bits<8> opc, string OpcodeStr, OpndItins itins, AVX512VLVectorVTInfo VTInfo, AVX512VLVectorVTInfo ShuffleMask> { - defm NAME: avx512_perm_t<opc, OpcodeStr, VTInfo.info512, + defm NAME: avx512_perm_t<opc, OpcodeStr, itins, VTInfo.info512, ShuffleMask.info512>, - avx512_perm_t_mb<opc, OpcodeStr, VTInfo.info512, + avx512_perm_t_mb<opc, OpcodeStr, itins, VTInfo.info512, ShuffleMask.info512>, EVEX_V512; let Predicates = [HasVLX] in { - defm NAME#128: avx512_perm_t<opc, OpcodeStr, VTInfo.info128, + defm NAME#128: avx512_perm_t<opc, OpcodeStr, itins, VTInfo.info128, ShuffleMask.info128>, - avx512_perm_t_mb<opc, OpcodeStr, VTInfo.info128, + avx512_perm_t_mb<opc, OpcodeStr, itins, VTInfo.info128, ShuffleMask.info128>, EVEX_V128; - defm NAME#256: avx512_perm_t<opc, OpcodeStr, VTInfo.info256, + defm NAME#256: avx512_perm_t<opc, OpcodeStr, itins, VTInfo.info256, ShuffleMask.info256>, - avx512_perm_t_mb<opc, OpcodeStr, VTInfo.info256, + avx512_perm_t_mb<opc, OpcodeStr, itins, VTInfo.info256, ShuffleMask.info256>, EVEX_V256; } } -multiclass avx512_perm_t_sizes_bw<bits<8> opc, string OpcodeStr, +multiclass avx512_perm_t_sizes_bw<bits<8> opc, string OpcodeStr, OpndItins itins, AVX512VLVectorVTInfo VTInfo, AVX512VLVectorVTInfo Idx, Predicate Prd> { let Predicates = [Prd] in - defm NAME: avx512_perm_t<opc, OpcodeStr, VTInfo.info512, + defm NAME: avx512_perm_t<opc, OpcodeStr, itins, VTInfo.info512, Idx.info512>, EVEX_V512; let Predicates = [Prd, HasVLX] in { - defm NAME#128: avx512_perm_t<opc, OpcodeStr, VTInfo.info128, + defm NAME#128: avx512_perm_t<opc, OpcodeStr, itins, VTInfo.info128, Idx.info128>, EVEX_V128; - defm NAME#256: avx512_perm_t<opc, OpcodeStr, VTInfo.info256, + defm NAME#256: avx512_perm_t<opc, OpcodeStr, itins, VTInfo.info256, Idx.info256>, EVEX_V256; } } -defm VPERMT2D : avx512_perm_t_sizes<0x7E, "vpermt2d", +defm VPERMT2D : avx512_perm_t_sizes<0x7E, "vpermt2d", AVX512_PERM2_I, avx512vl_i32_info, avx512vl_i32_info>, EVEX_CD8<32, CD8VF>; -defm VPERMT2Q : avx512_perm_t_sizes<0x7E, "vpermt2q", +defm VPERMT2Q : avx512_perm_t_sizes<0x7E, "vpermt2q", AVX512_PERM2_I, avx512vl_i64_info, avx512vl_i64_info>, VEX_W, EVEX_CD8<64, CD8VF>; -defm VPERMT2W : avx512_perm_t_sizes_bw<0x7D, "vpermt2w", +defm VPERMT2W : avx512_perm_t_sizes_bw<0x7D, "vpermt2w", AVX512_PERM2_I, avx512vl_i16_info, avx512vl_i16_info, HasBWI>, VEX_W, EVEX_CD8<16, CD8VF>; -defm VPERMT2B : avx512_perm_t_sizes_bw<0x7D, "vpermt2b", +defm VPERMT2B : avx512_perm_t_sizes_bw<0x7D, "vpermt2b", AVX512_PERM2_I, avx512vl_i8_info, avx512vl_i8_info, HasVBMI>, EVEX_CD8<8, CD8VF>; -defm VPERMT2PS : avx512_perm_t_sizes<0x7F, "vpermt2ps", +defm VPERMT2PS : avx512_perm_t_sizes<0x7F, "vpermt2ps", AVX512_PERM2_F, avx512vl_f32_info, avx512vl_i32_info>, EVEX_CD8<32, CD8VF>; -defm VPERMT2PD : avx512_perm_t_sizes<0x7F, "vpermt2pd", +defm VPERMT2PD : avx512_perm_t_sizes<0x7F, "vpermt2pd", AVX512_PERM2_F, avx512vl_f64_info, avx512vl_i64_info>, VEX_W, EVEX_CD8<64, CD8VF>; //===----------------------------------------------------------------------===// // AVX-512 - BLEND using mask // -multiclass avx512_blendmask<bits<8> opc, string OpcodeStr, X86VectorVTInfo _> { + +let Sched = WriteFVarBlend in +def AVX512_BLENDM : OpndItins< + IIC_SSE_ALU_F32P_RR, IIC_SSE_ALU_F32P_RM +>; + +let Sched = WriteVarBlend in +def AVX512_PBLENDM : OpndItins< + IIC_SSE_INTALU_P_RR, IIC_SSE_INTALU_P_RM +>; + +multiclass avx512_blendmask<bits<8> opc, string OpcodeStr, OpndItins itins, + X86VectorVTInfo _> { let ExeDomain = _.ExeDomain, hasSideEffects = 0 in { def rr : AVX5128I<opc, MRMSrcReg, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, ${dst}|${dst}, $src1, $src2}"), - []>, EVEX_4V; + [], itins.rr>, EVEX_4V, Sched<[itins.Sched]>; def rrk : AVX5128I<opc, MRMSrcReg, (outs _.RC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.RC:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, ${dst} {${mask}}|${dst} {${mask}}, $src1, $src2}"), - []>, EVEX_4V, EVEX_K; + [], itins.rr>, EVEX_4V, EVEX_K, Sched<[itins.Sched]>; def rrkz : AVX5128I<opc, MRMSrcReg, (outs _.RC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.RC:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, ${dst} {${mask}} {z}|${dst} {${mask}} {z}, $src1, $src2}"), - []>, EVEX_4V, EVEX_KZ; + [], itins.rr>, EVEX_4V, EVEX_KZ, Sched<[itins.Sched]>; let mayLoad = 1 in { def rm : AVX5128I<opc, MRMSrcMem, (outs _.RC:$dst), (ins _.RC:$src1, _.MemOp:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, ${dst}|${dst}, $src1, $src2}"), - []>, EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>; + [], itins.rm>, EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; def rmk : AVX5128I<opc, MRMSrcMem, (outs _.RC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.MemOp:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, ${dst} {${mask}}|${dst} {${mask}}, $src1, $src2}"), - []>, EVEX_4V, EVEX_K, EVEX_CD8<_.EltSize, CD8VF>; + [], itins.rm>, EVEX_4V, EVEX_K, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; def rmkz : AVX5128I<opc, MRMSrcMem, (outs _.RC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.MemOp:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, ${dst} {${mask}} {z}|${dst} {${mask}} {z}, $src1, $src2}"), - []>, EVEX_4V, EVEX_KZ, EVEX_CD8<_.EltSize, CD8VF>; + [], itins.rm>, EVEX_4V, EVEX_KZ, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } } -multiclass avx512_blendmask_rmb<bits<8> opc, string OpcodeStr, X86VectorVTInfo _> { - +multiclass avx512_blendmask_rmb<bits<8> opc, string OpcodeStr, OpndItins itins, + X86VectorVTInfo _> { let mayLoad = 1, hasSideEffects = 0 in { def rmbk : AVX5128I<opc, MRMSrcMem, (outs _.RC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.ScalarMemOp:$src2), !strconcat(OpcodeStr, "\t{${src2}", _.BroadcastStr, ", $src1, $dst {${mask}}|", "$dst {${mask}}, $src1, ${src2}", _.BroadcastStr, "}"), - []>, EVEX_4V, EVEX_K, EVEX_B, EVEX_CD8<_.EltSize, CD8VF>; + [], itins.rm>, EVEX_4V, EVEX_K, EVEX_B, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; def rmb : AVX5128I<opc, MRMSrcMem, (outs _.RC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2), !strconcat(OpcodeStr, "\t{${src2}", _.BroadcastStr, ", $src1, $dst|", "$dst, $src1, ${src2}", _.BroadcastStr, "}"), - []>, EVEX_4V, EVEX_B, EVEX_CD8<_.EltSize, CD8VF>; + [], itins.rm>, EVEX_4V, EVEX_B, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } -multiclass blendmask_dq <bits<8> opc, string OpcodeStr, +multiclass blendmask_dq <bits<8> opc, string OpcodeStr, OpndItins itins, AVX512VLVectorVTInfo VTInfo> { - defm Z : avx512_blendmask <opc, OpcodeStr, VTInfo.info512>, - avx512_blendmask_rmb <opc, OpcodeStr, VTInfo.info512>, EVEX_V512; + defm Z : avx512_blendmask <opc, OpcodeStr, itins, VTInfo.info512>, + avx512_blendmask_rmb <opc, OpcodeStr, itins, VTInfo.info512>, EVEX_V512; let Predicates = [HasVLX] in { - defm Z256 : avx512_blendmask<opc, OpcodeStr, VTInfo.info256>, - avx512_blendmask_rmb <opc, OpcodeStr, VTInfo.info256>, EVEX_V256; - defm Z128 : avx512_blendmask<opc, OpcodeStr, VTInfo.info128>, - avx512_blendmask_rmb <opc, OpcodeStr, VTInfo.info128>, EVEX_V128; + defm Z256 : avx512_blendmask<opc, OpcodeStr, itins, VTInfo.info256>, + avx512_blendmask_rmb<opc, OpcodeStr, itins, VTInfo.info256>, EVEX_V256; + defm Z128 : avx512_blendmask<opc, OpcodeStr, itins, VTInfo.info128>, + avx512_blendmask_rmb<opc, OpcodeStr, itins, VTInfo.info128>, EVEX_V128; } } -multiclass blendmask_bw <bits<8> opc, string OpcodeStr, +multiclass blendmask_bw <bits<8> opc, string OpcodeStr, OpndItins itins, AVX512VLVectorVTInfo VTInfo> { let Predicates = [HasBWI] in - defm Z : avx512_blendmask <opc, OpcodeStr, VTInfo.info512>, EVEX_V512; + defm Z : avx512_blendmask<opc, OpcodeStr, itins, VTInfo.info512>, EVEX_V512; let Predicates = [HasBWI, HasVLX] in { - defm Z256 : avx512_blendmask <opc, OpcodeStr, VTInfo.info256>, EVEX_V256; - defm Z128 : avx512_blendmask <opc, OpcodeStr, VTInfo.info128>, EVEX_V128; + defm Z256 : avx512_blendmask<opc, OpcodeStr, itins, VTInfo.info256>, EVEX_V256; + defm Z128 : avx512_blendmask<opc, OpcodeStr, itins, VTInfo.info128>, EVEX_V128; } } -defm VBLENDMPS : blendmask_dq <0x65, "vblendmps", avx512vl_f32_info>; -defm VBLENDMPD : blendmask_dq <0x65, "vblendmpd", avx512vl_f64_info>, VEX_W; -defm VPBLENDMD : blendmask_dq <0x64, "vpblendmd", avx512vl_i32_info>; -defm VPBLENDMQ : blendmask_dq <0x64, "vpblendmq", avx512vl_i64_info>, VEX_W; -defm VPBLENDMB : blendmask_bw <0x66, "vpblendmb", avx512vl_i8_info>; -defm VPBLENDMW : blendmask_bw <0x66, "vpblendmw", avx512vl_i16_info>, VEX_W; +defm VBLENDMPS : blendmask_dq <0x65, "vblendmps", AVX512_BLENDM, avx512vl_f32_info>; +defm VBLENDMPD : blendmask_dq <0x65, "vblendmpd", AVX512_BLENDM, avx512vl_f64_info>, VEX_W; +defm VPBLENDMD : blendmask_dq <0x64, "vpblendmd", AVX512_PBLENDM, avx512vl_i32_info>; +defm VPBLENDMQ : blendmask_dq <0x64, "vpblendmq", AVX512_PBLENDM, avx512vl_i64_info>, VEX_W; +defm VPBLENDMB : blendmask_bw <0x66, "vpblendmb", AVX512_PBLENDM, avx512vl_i8_info>; +defm VPBLENDMW : blendmask_bw <0x66, "vpblendmw", AVX512_PBLENDM, avx512vl_i16_info>, VEX_W; //===----------------------------------------------------------------------===// @@ -1580,8 +1910,8 @@ defm VPBLENDMW : blendmask_bw <0x66, "vpblendmw", avx512vl_i16_info>, VEX_W; // avx512_cmp_scalar - AVX512 CMPSS and CMPSD -multiclass avx512_cmp_scalar<X86VectorVTInfo _, SDNode OpNode, SDNode OpNodeRnd>{ - +multiclass avx512_cmp_scalar<X86VectorVTInfo _, SDNode OpNode, SDNode OpNodeRnd, + OpndItins itins> { defm rr_Int : AVX512_maskable_cmp<0xC2, MRMSrcReg, _, (outs _.KRC:$dst), (ins _.RC:$src1, _.RC:$src2, AVXCC:$cc), @@ -1589,7 +1919,7 @@ multiclass avx512_cmp_scalar<X86VectorVTInfo _, SDNode OpNode, SDNode OpNodeRnd> "$src2, $src1", "$src1, $src2", (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), - imm:$cc)>, EVEX_4V; + imm:$cc), itins.rr>, EVEX_4V, Sched<[itins.Sched]>; let mayLoad = 1 in defm rm_Int : AVX512_maskable_cmp<0xC2, MRMSrcMem, _, (outs _.KRC:$dst), @@ -1597,7 +1927,8 @@ multiclass avx512_cmp_scalar<X86VectorVTInfo _, SDNode OpNode, SDNode OpNodeRnd> "vcmp${cc}"#_.Suffix, "$src2, $src1", "$src1, $src2", (OpNode (_.VT _.RC:$src1), _.ScalarIntMemCPat:$src2, - imm:$cc)>, EVEX_4V, EVEX_CD8<_.EltSize, CD8VT1>; + imm:$cc), itins.rm>, EVEX_4V, EVEX_CD8<_.EltSize, CD8VT1>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rrb_Int : AVX512_maskable_cmp<0xC2, MRMSrcReg, _, (outs _.KRC:$dst), @@ -1607,28 +1938,31 @@ multiclass avx512_cmp_scalar<X86VectorVTInfo _, SDNode OpNode, SDNode OpNodeRnd> (OpNodeRnd (_.VT _.RC:$src1), (_.VT _.RC:$src2), imm:$cc, - (i32 FROUND_NO_EXC))>, EVEX_4V, EVEX_B; + (i32 FROUND_NO_EXC)), itins.rr>, + EVEX_4V, EVEX_B, Sched<[itins.Sched]>; // Accept explicit immediate argument form instead of comparison code. let isAsmParserOnly = 1, hasSideEffects = 0 in { defm rri_alt : AVX512_maskable_cmp_alt<0xC2, MRMSrcReg, _, (outs VK1:$dst), (ins _.RC:$src1, _.RC:$src2, u8imm:$cc), "vcmp"#_.Suffix, - "$cc, $src2, $src1", "$src1, $src2, $cc">, EVEX_4V; + "$cc, $src2, $src1", "$src1, $src2, $cc", itins.rr>, EVEX_4V, + Sched<[itins.Sched]>; let mayLoad = 1 in defm rmi_alt : AVX512_maskable_cmp_alt<0xC2, MRMSrcMem, _, (outs _.KRC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2, u8imm:$cc), "vcmp"#_.Suffix, - "$cc, $src2, $src1", "$src1, $src2, $cc">, - EVEX_4V, EVEX_CD8<_.EltSize, CD8VT1>; + "$cc, $src2, $src1", "$src1, $src2, $cc", itins.rm>, + EVEX_4V, EVEX_CD8<_.EltSize, CD8VT1>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rrb_alt : AVX512_maskable_cmp_alt<0xC2, MRMSrcReg, _, (outs _.KRC:$dst), (ins _.RC:$src1, _.RC:$src2, u8imm:$cc), "vcmp"#_.Suffix, - "$cc, {sae}, $src2, $src1","$src1, $src2, {sae}, $cc">, - EVEX_4V, EVEX_B; + "$cc, {sae}, $src2, $src1","$src1, $src2, {sae}, $cc", itins.rr>, + EVEX_4V, EVEX_B, Sched<[itins.Sched]>; }// let isAsmParserOnly = 1, hasSideEffects = 0 let isCodeGenOnly = 1 in { @@ -1640,7 +1974,7 @@ multiclass avx512_cmp_scalar<X86VectorVTInfo _, SDNode OpNode, SDNode OpNodeRnd> [(set _.KRC:$dst, (OpNode _.FRC:$src1, _.FRC:$src2, imm:$cc))], - IIC_SSE_ALU_F32S_RR>, EVEX_4V; + itins.rr>, EVEX_4V, Sched<[itins.Sched]>; def rm : AVX512Ii8<0xC2, MRMSrcMem, (outs _.KRC:$dst), (ins _.FRC:$src1, _.ScalarMemOp:$src2, AVXCC:$cc), @@ -1649,33 +1983,34 @@ multiclass avx512_cmp_scalar<X86VectorVTInfo _, SDNode OpNode, SDNode OpNodeRnd> [(set _.KRC:$dst, (OpNode _.FRC:$src1, (_.ScalarLdFrag addr:$src2), imm:$cc))], - IIC_SSE_ALU_F32P_RM>, EVEX_4V, EVEX_CD8<_.EltSize, CD8VT1>; + itins.rm>, EVEX_4V, EVEX_CD8<_.EltSize, CD8VT1>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } let Predicates = [HasAVX512] in { let ExeDomain = SSEPackedSingle in - defm VCMPSSZ : avx512_cmp_scalar<f32x_info, X86cmpms, X86cmpmsRnd>, - AVX512XSIi8Base; + defm VCMPSSZ : avx512_cmp_scalar<f32x_info, X86cmpms, X86cmpmsRnd, + SSE_ALU_F32S>, AVX512XSIi8Base; let ExeDomain = SSEPackedDouble in - defm VCMPSDZ : avx512_cmp_scalar<f64x_info, X86cmpms, X86cmpmsRnd>, - AVX512XDIi8Base, VEX_W; + defm VCMPSDZ : avx512_cmp_scalar<f64x_info, X86cmpms, X86cmpmsRnd, + SSE_ALU_F64S>, AVX512XDIi8Base, VEX_W; } multiclass avx512_icmp_packed<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _, bit IsCommutable> { + OpndItins itins, X86VectorVTInfo _, bit IsCommutable> { let isCommutable = IsCommutable in def rr : AVX512BI<opc, MRMSrcReg, (outs _.KRC:$dst), (ins _.RC:$src1, _.RC:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, $dst|$dst, $src1, $src2}"), [(set _.KRC:$dst, (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2)))], - IIC_SSE_ALU_F32P_RR>, EVEX_4V; + itins.rr>, EVEX_4V, Sched<[itins.Sched]>; def rm : AVX512BI<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.RC:$src1, _.MemOp:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, $dst|$dst, $src1, $src2}"), [(set _.KRC:$dst, (OpNode (_.VT _.RC:$src1), (_.VT (bitconvert (_.LdFrag addr:$src2)))))], - IIC_SSE_ALU_F32P_RM>, EVEX_4V; + itins.rm>, EVEX_4V, Sched<[itins.Sched.Folded, ReadAfterLd]>; let isCommutable = IsCommutable in def rrk : AVX512BI<opc, MRMSrcReg, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.RC:$src2), @@ -1683,7 +2018,7 @@ multiclass avx512_icmp_packed<bits<8> opc, string OpcodeStr, SDNode OpNode, "$dst {${mask}}, $src1, $src2}"), [(set _.KRC:$dst, (and _.KRCWM:$mask, (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2))))], - IIC_SSE_ALU_F32P_RR>, EVEX_4V, EVEX_K; + itins.rr>, EVEX_4V, EVEX_K, Sched<[itins.Sched]>; def rmk : AVX512BI<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.MemOp:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, $dst {${mask}}|", @@ -1692,19 +2027,19 @@ multiclass avx512_icmp_packed<bits<8> opc, string OpcodeStr, SDNode OpNode, (OpNode (_.VT _.RC:$src1), (_.VT (bitconvert (_.LdFrag addr:$src2))))))], - IIC_SSE_ALU_F32P_RM>, EVEX_4V, EVEX_K; + itins.rm>, EVEX_4V, EVEX_K, Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_icmp_packed_rmb<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _, bit IsCommutable> : - avx512_icmp_packed<opc, OpcodeStr, OpNode, _, IsCommutable> { + OpndItins itins, X86VectorVTInfo _, bit IsCommutable> : + avx512_icmp_packed<opc, OpcodeStr, OpNode, itins, _, IsCommutable> { def rmb : AVX512BI<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2), !strconcat(OpcodeStr, "\t{${src2}", _.BroadcastStr, ", $src1, $dst", "|$dst, $src1, ${src2}", _.BroadcastStr, "}"), [(set _.KRC:$dst, (OpNode (_.VT _.RC:$src1), (X86VBroadcast (_.ScalarLdFrag addr:$src2))))], - IIC_SSE_ALU_F32P_RM>, EVEX_4V, EVEX_B; + itins.rm>, EVEX_4V, EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; def rmbk : AVX512BI<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.ScalarMemOp:$src2), @@ -1715,285 +2050,95 @@ multiclass avx512_icmp_packed_rmb<bits<8> opc, string OpcodeStr, SDNode OpNode, (OpNode (_.VT _.RC:$src1), (X86VBroadcast (_.ScalarLdFrag addr:$src2)))))], - IIC_SSE_ALU_F32P_RM>, EVEX_4V, EVEX_K, EVEX_B; + itins.rm>, EVEX_4V, EVEX_K, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_icmp_packed_vl<bits<8> opc, string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo VTInfo, Predicate prd, - bit IsCommutable = 0> { + OpndItins itins, AVX512VLVectorVTInfo VTInfo, + Predicate prd, bit IsCommutable = 0> { let Predicates = [prd] in - defm Z : avx512_icmp_packed<opc, OpcodeStr, OpNode, VTInfo.info512, + defm Z : avx512_icmp_packed<opc, OpcodeStr, OpNode, itins, VTInfo.info512, IsCommutable>, EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_icmp_packed<opc, OpcodeStr, OpNode, VTInfo.info256, + defm Z256 : avx512_icmp_packed<opc, OpcodeStr, OpNode, itins, VTInfo.info256, IsCommutable>, EVEX_V256; - defm Z128 : avx512_icmp_packed<opc, OpcodeStr, OpNode, VTInfo.info128, + defm Z128 : avx512_icmp_packed<opc, OpcodeStr, OpNode, itins, VTInfo.info128, IsCommutable>, EVEX_V128; } } multiclass avx512_icmp_packed_rmb_vl<bits<8> opc, string OpcodeStr, - SDNode OpNode, AVX512VLVectorVTInfo VTInfo, - Predicate prd, bit IsCommutable = 0> { + SDNode OpNode, OpndItins itins, + AVX512VLVectorVTInfo VTInfo, + Predicate prd, bit IsCommutable = 0> { let Predicates = [prd] in - defm Z : avx512_icmp_packed_rmb<opc, OpcodeStr, OpNode, VTInfo.info512, + defm Z : avx512_icmp_packed_rmb<opc, OpcodeStr, OpNode, itins, VTInfo.info512, IsCommutable>, EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_icmp_packed_rmb<opc, OpcodeStr, OpNode, VTInfo.info256, + defm Z256 : avx512_icmp_packed_rmb<opc, OpcodeStr, OpNode, itins, VTInfo.info256, IsCommutable>, EVEX_V256; - defm Z128 : avx512_icmp_packed_rmb<opc, OpcodeStr, OpNode, VTInfo.info128, + defm Z128 : avx512_icmp_packed_rmb<opc, OpcodeStr, OpNode, itins, VTInfo.info128, IsCommutable>, EVEX_V128; } } +// FIXME: Is there a better scheduler itinerary for VPCMP? defm VPCMPEQB : avx512_icmp_packed_vl<0x74, "vpcmpeqb", X86pcmpeqm, - avx512vl_i8_info, HasBWI, 1>, - EVEX_CD8<8, CD8VF>; + SSE_ALU_F32P, avx512vl_i8_info, HasBWI, 1>, + EVEX_CD8<8, CD8VF>, VEX_WIG; defm VPCMPEQW : avx512_icmp_packed_vl<0x75, "vpcmpeqw", X86pcmpeqm, - avx512vl_i16_info, HasBWI, 1>, - EVEX_CD8<16, CD8VF>; + SSE_ALU_F32P, avx512vl_i16_info, HasBWI, 1>, + EVEX_CD8<16, CD8VF>, VEX_WIG; defm VPCMPEQD : avx512_icmp_packed_rmb_vl<0x76, "vpcmpeqd", X86pcmpeqm, - avx512vl_i32_info, HasAVX512, 1>, + SSE_ALU_F32P, avx512vl_i32_info, HasAVX512, 1>, EVEX_CD8<32, CD8VF>; defm VPCMPEQQ : avx512_icmp_packed_rmb_vl<0x29, "vpcmpeqq", X86pcmpeqm, - avx512vl_i64_info, HasAVX512, 1>, + SSE_ALU_F32P, avx512vl_i64_info, HasAVX512, 1>, T8PD, VEX_W, EVEX_CD8<64, CD8VF>; defm VPCMPGTB : avx512_icmp_packed_vl<0x64, "vpcmpgtb", X86pcmpgtm, - avx512vl_i8_info, HasBWI>, - EVEX_CD8<8, CD8VF>; + SSE_ALU_F32P, avx512vl_i8_info, HasBWI>, + EVEX_CD8<8, CD8VF>, VEX_WIG; defm VPCMPGTW : avx512_icmp_packed_vl<0x65, "vpcmpgtw", X86pcmpgtm, - avx512vl_i16_info, HasBWI>, - EVEX_CD8<16, CD8VF>; + SSE_ALU_F32P, avx512vl_i16_info, HasBWI>, + EVEX_CD8<16, CD8VF>, VEX_WIG; defm VPCMPGTD : avx512_icmp_packed_rmb_vl<0x66, "vpcmpgtd", X86pcmpgtm, - avx512vl_i32_info, HasAVX512>, + SSE_ALU_F32P, avx512vl_i32_info, HasAVX512>, EVEX_CD8<32, CD8VF>; defm VPCMPGTQ : avx512_icmp_packed_rmb_vl<0x37, "vpcmpgtq", X86pcmpgtm, - avx512vl_i64_info, HasAVX512>, + SSE_ALU_F32P, avx512vl_i64_info, HasAVX512>, T8PD, VEX_W, EVEX_CD8<64, CD8VF>; - -multiclass avx512_icmp_packed_lowering<X86VectorVTInfo _, X86KVectorVTInfo NewInf, - SDNode OpNode, string InstrStr, - list<Predicate> Preds> { -let Predicates = Preds in { - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2))), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rr) _.RC:$src1, _.RC:$src2), - NewInf.KRC)>; - - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (OpNode (_.VT _.RC:$src1), - (_.VT (bitconvert (_.LdFrag addr:$src2))))), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rm) _.RC:$src1, addr:$src2), - NewInf.KRC)>; - - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (and _.KRCWM:$mask, - (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2)))), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rrk) _.KRCWM:$mask, - _.RC:$src1, _.RC:$src2), - NewInf.KRC)>; - - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (and (_.KVT _.KRCWM:$mask), - (_.KVT (OpNode (_.VT _.RC:$src1), - (_.VT (bitconvert - (_.LdFrag addr:$src2))))))), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rmk) _.KRCWM:$mask, - _.RC:$src1, addr:$src2), - NewInf.KRC)>; -} -} - -multiclass avx512_icmp_packed_rmb_lowering<X86VectorVTInfo _, X86KVectorVTInfo NewInf, - SDNode OpNode, string InstrStr, - list<Predicate> Preds> - : avx512_icmp_packed_lowering<_, NewInf, OpNode, InstrStr, Preds> { -let Predicates = Preds in { - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (OpNode (_.VT _.RC:$src1), - (X86VBroadcast (_.ScalarLdFrag addr:$src2)))), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rmb) _.RC:$src1, addr:$src2), - NewInf.KRC)>; - - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (and (_.KVT _.KRCWM:$mask), - (_.KVT (OpNode (_.VT _.RC:$src1), - (X86VBroadcast - (_.ScalarLdFrag addr:$src2)))))), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rmbk) _.KRCWM:$mask, - _.RC:$src1, addr:$src2), - NewInf.KRC)>; -} -} - -// VPCMPEQB - i8 -defm : avx512_icmp_packed_lowering<v16i8x_info, v32i1_info, X86pcmpeqm, - "VPCMPEQBZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_packed_lowering<v16i8x_info, v64i1_info, X86pcmpeqm, - "VPCMPEQBZ128", [HasBWI, HasVLX]>; - -defm : avx512_icmp_packed_lowering<v32i8x_info, v64i1_info, X86pcmpeqm, - "VPCMPEQBZ256", [HasBWI, HasVLX]>; - -// VPCMPEQW - i16 -defm : avx512_icmp_packed_lowering<v8i16x_info, v16i1_info, X86pcmpeqm, - "VPCMPEQWZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_packed_lowering<v8i16x_info, v32i1_info, X86pcmpeqm, - "VPCMPEQWZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_packed_lowering<v8i16x_info, v64i1_info, X86pcmpeqm, - "VPCMPEQWZ128", [HasBWI, HasVLX]>; - -defm : avx512_icmp_packed_lowering<v16i16x_info, v32i1_info, X86pcmpeqm, - "VPCMPEQWZ256", [HasBWI, HasVLX]>; -defm : avx512_icmp_packed_lowering<v16i16x_info, v64i1_info, X86pcmpeqm, - "VPCMPEQWZ256", [HasBWI, HasVLX]>; - -defm : avx512_icmp_packed_lowering<v32i16_info, v64i1_info, X86pcmpeqm, - "VPCMPEQWZ", [HasBWI]>; - -// VPCMPEQD - i32 -defm : avx512_icmp_packed_rmb_lowering<v4i32x_info, v8i1_info, X86pcmpeqm, - "VPCMPEQDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i32x_info, v16i1_info, X86pcmpeqm, - "VPCMPEQDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i32x_info, v32i1_info, X86pcmpeqm, - "VPCMPEQDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i32x_info, v64i1_info, X86pcmpeqm, - "VPCMPEQDZ128", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_packed_rmb_lowering<v8i32x_info, v16i1_info, X86pcmpeqm, - "VPCMPEQDZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v8i32x_info, v32i1_info, X86pcmpeqm, - "VPCMPEQDZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v8i32x_info, v64i1_info, X86pcmpeqm, - "VPCMPEQDZ256", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_packed_rmb_lowering<v16i32_info, v32i1_info, X86pcmpeqm, - "VPCMPEQDZ", [HasAVX512]>; -defm : avx512_icmp_packed_rmb_lowering<v16i32_info, v64i1_info, X86pcmpeqm, - "VPCMPEQDZ", [HasAVX512]>; - -// VPCMPEQQ - i64 -defm : avx512_icmp_packed_rmb_lowering<v2i64x_info, v4i1_info, X86pcmpeqm, - "VPCMPEQQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v2i64x_info, v8i1_info, X86pcmpeqm, - "VPCMPEQQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v2i64x_info, v16i1_info, X86pcmpeqm, - "VPCMPEQQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v2i64x_info, v32i1_info, X86pcmpeqm, - "VPCMPEQQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v2i64x_info, v64i1_info, X86pcmpeqm, - "VPCMPEQQZ128", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_packed_rmb_lowering<v4i64x_info, v8i1_info, X86pcmpeqm, - "VPCMPEQQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i64x_info, v16i1_info, X86pcmpeqm, - "VPCMPEQQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i64x_info, v32i1_info, X86pcmpeqm, - "VPCMPEQQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i64x_info, v64i1_info, X86pcmpeqm, - "VPCMPEQQZ256", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_packed_rmb_lowering<v8i64_info, v16i1_info, X86pcmpeqm, - "VPCMPEQQZ", [HasAVX512]>; -defm : avx512_icmp_packed_rmb_lowering<v8i64_info, v32i1_info, X86pcmpeqm, - "VPCMPEQQZ", [HasAVX512]>; -defm : avx512_icmp_packed_rmb_lowering<v8i64_info, v64i1_info, X86pcmpeqm, - "VPCMPEQQZ", [HasAVX512]>; - -// VPCMPGTB - i8 -defm : avx512_icmp_packed_lowering<v16i8x_info, v32i1_info, X86pcmpgtm, - "VPCMPGTBZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_packed_lowering<v16i8x_info, v64i1_info, X86pcmpgtm, - "VPCMPGTBZ128", [HasBWI, HasVLX]>; - -defm : avx512_icmp_packed_lowering<v32i8x_info, v64i1_info, X86pcmpgtm, - "VPCMPGTBZ256", [HasBWI, HasVLX]>; - -// VPCMPGTW - i16 -defm : avx512_icmp_packed_lowering<v8i16x_info, v16i1_info, X86pcmpgtm, - "VPCMPGTWZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_packed_lowering<v8i16x_info, v32i1_info, X86pcmpgtm, - "VPCMPGTWZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_packed_lowering<v8i16x_info, v64i1_info, X86pcmpgtm, - "VPCMPGTWZ128", [HasBWI, HasVLX]>; - -defm : avx512_icmp_packed_lowering<v16i16x_info, v32i1_info, X86pcmpgtm, - "VPCMPGTWZ256", [HasBWI, HasVLX]>; -defm : avx512_icmp_packed_lowering<v16i16x_info, v64i1_info, X86pcmpgtm, - "VPCMPGTWZ256", [HasBWI, HasVLX]>; - -defm : avx512_icmp_packed_lowering<v32i16_info, v64i1_info, X86pcmpgtm, - "VPCMPGTWZ", [HasBWI]>; - -// VPCMPGTD - i32 -defm : avx512_icmp_packed_rmb_lowering<v4i32x_info, v8i1_info, X86pcmpgtm, - "VPCMPGTDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i32x_info, v16i1_info, X86pcmpgtm, - "VPCMPGTDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i32x_info, v32i1_info, X86pcmpgtm, - "VPCMPGTDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i32x_info, v64i1_info, X86pcmpgtm, - "VPCMPGTDZ128", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_packed_rmb_lowering<v8i32x_info, v16i1_info, X86pcmpgtm, - "VPCMPGTDZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v8i32x_info, v32i1_info, X86pcmpgtm, - "VPCMPGTDZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v8i32x_info, v64i1_info, X86pcmpgtm, - "VPCMPGTDZ256", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_packed_rmb_lowering<v16i32_info, v32i1_info, X86pcmpgtm, - "VPCMPGTDZ", [HasAVX512]>; -defm : avx512_icmp_packed_rmb_lowering<v16i32_info, v64i1_info, X86pcmpgtm, - "VPCMPGTDZ", [HasAVX512]>; - -// VPCMPGTQ - i64 -defm : avx512_icmp_packed_rmb_lowering<v2i64x_info, v4i1_info, X86pcmpgtm, - "VPCMPGTQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v2i64x_info, v8i1_info, X86pcmpgtm, - "VPCMPGTQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v2i64x_info, v16i1_info, X86pcmpgtm, - "VPCMPGTQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v2i64x_info, v32i1_info, X86pcmpgtm, - "VPCMPGTQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v2i64x_info, v64i1_info, X86pcmpgtm, - "VPCMPGTQZ128", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_packed_rmb_lowering<v4i64x_info, v8i1_info, X86pcmpgtm, - "VPCMPGTQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i64x_info, v16i1_info, X86pcmpgtm, - "VPCMPGTQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i64x_info, v32i1_info, X86pcmpgtm, - "VPCMPGTQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_packed_rmb_lowering<v4i64x_info, v64i1_info, X86pcmpgtm, - "VPCMPGTQZ256", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_packed_rmb_lowering<v8i64_info, v16i1_info, X86pcmpgtm, - "VPCMPGTQZ", [HasAVX512]>; -defm : avx512_icmp_packed_rmb_lowering<v8i64_info, v32i1_info, X86pcmpgtm, - "VPCMPGTQZ", [HasAVX512]>; -defm : avx512_icmp_packed_rmb_lowering<v8i64_info, v64i1_info, X86pcmpgtm, - "VPCMPGTQZ", [HasAVX512]>; +// Transforms to swizzle an immediate to help matching memory operand in first +// operand. +def CommutePCMPCC : SDNodeXForm<imm, [{ + uint8_t Imm = N->getZExtValue() & 0x7; + switch (Imm) { + default: llvm_unreachable("Unreachable!"); + case 0x01: Imm = 0x06; break; // LT -> NLE + case 0x02: Imm = 0x05; break; // LE -> NLT + case 0x05: Imm = 0x02; break; // NLT -> LE + case 0x06: Imm = 0x01; break; // NLE -> LT + case 0x00: // EQ + case 0x03: // FALSE + case 0x04: // NE + case 0x07: // TRUE + break; + } + return getI8Imm(Imm, SDLoc(N)); +}]>; multiclass avx512_icmp_cc<bits<8> opc, string Suffix, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let isCommutable = 1 in def rri : AVX512AIi8<opc, MRMSrcReg, (outs _.KRC:$dst), (ins _.RC:$src1, _.RC:$src2, AVX512ICC:$cc), @@ -2001,7 +2146,7 @@ multiclass avx512_icmp_cc<bits<8> opc, string Suffix, SDNode OpNode, "\t{$src2, $src1, $dst|$dst, $src1, $src2}"), [(set _.KRC:$dst, (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), imm:$cc))], - IIC_SSE_ALU_F32P_RR>, EVEX_4V; + itins.rr>, EVEX_4V, Sched<[itins.Sched]>; def rmi : AVX512AIi8<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.RC:$src1, _.MemOp:$src2, AVX512ICC:$cc), !strconcat("vpcmp${cc}", Suffix, @@ -2009,7 +2154,7 @@ multiclass avx512_icmp_cc<bits<8> opc, string Suffix, SDNode OpNode, [(set _.KRC:$dst, (OpNode (_.VT _.RC:$src1), (_.VT (bitconvert (_.LdFrag addr:$src2))), imm:$cc))], - IIC_SSE_ALU_F32P_RM>, EVEX_4V; + itins.rm>, EVEX_4V, Sched<[itins.Sched.Folded, ReadAfterLd]>; let isCommutable = 1 in def rrik : AVX512AIi8<opc, MRMSrcReg, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.RC:$src2, @@ -2020,7 +2165,7 @@ multiclass avx512_icmp_cc<bits<8> opc, string Suffix, SDNode OpNode, [(set _.KRC:$dst, (and _.KRCWM:$mask, (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), imm:$cc)))], - IIC_SSE_ALU_F32P_RR>, EVEX_4V, EVEX_K; + itins.rr>, EVEX_4V, EVEX_K, Sched<[itins.Sched]>; def rmik : AVX512AIi8<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.MemOp:$src2, AVX512ICC:$cc), @@ -2031,7 +2176,8 @@ multiclass avx512_icmp_cc<bits<8> opc, string Suffix, SDNode OpNode, (OpNode (_.VT _.RC:$src1), (_.VT (bitconvert (_.LdFrag addr:$src2))), imm:$cc)))], - IIC_SSE_ALU_F32P_RM>, EVEX_4V, EVEX_K; + itins.rm>, EVEX_4V, EVEX_K, + Sched<[itins.Sched.Folded, ReadAfterLd]>; // Accept explicit immediate argument form instead of comparison code. let isAsmParserOnly = 1, hasSideEffects = 0 in { @@ -2039,20 +2185,20 @@ multiclass avx512_icmp_cc<bits<8> opc, string Suffix, SDNode OpNode, (outs _.KRC:$dst), (ins _.RC:$src1, _.RC:$src2, u8imm:$cc), !strconcat("vpcmp", Suffix, "\t{$cc, $src2, $src1, $dst|", "$dst, $src1, $src2, $cc}"), - [], IIC_SSE_ALU_F32P_RR>, EVEX_4V; + [], itins.rr>, EVEX_4V, Sched<[itins.Sched]>; let mayLoad = 1 in def rmi_alt : AVX512AIi8<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.RC:$src1, _.MemOp:$src2, u8imm:$cc), !strconcat("vpcmp", Suffix, "\t{$cc, $src2, $src1, $dst|", "$dst, $src1, $src2, $cc}"), - [], IIC_SSE_ALU_F32P_RM>, EVEX_4V; + [], itins.rm>, EVEX_4V, Sched<[itins.Sched.Folded, ReadAfterLd]>; def rrik_alt : AVX512AIi8<opc, MRMSrcReg, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.RC:$src2, u8imm:$cc), !strconcat("vpcmp", Suffix, "\t{$cc, $src2, $src1, $dst {${mask}}|", "$dst {${mask}}, $src1, $src2, $cc}"), - [], IIC_SSE_ALU_F32P_RR>, EVEX_4V, EVEX_K; + [], itins.rr>, EVEX_4V, EVEX_K, Sched<[itins.Sched]>; let mayLoad = 1 in def rmik_alt : AVX512AIi8<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.MemOp:$src2, @@ -2060,13 +2206,25 @@ multiclass avx512_icmp_cc<bits<8> opc, string Suffix, SDNode OpNode, !strconcat("vpcmp", Suffix, "\t{$cc, $src2, $src1, $dst {${mask}}|", "$dst {${mask}}, $src1, $src2, $cc}"), - [], IIC_SSE_ALU_F32P_RM>, EVEX_4V, EVEX_K; + [], itins.rm>, EVEX_4V, EVEX_K, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } + + def : Pat<(OpNode (bitconvert (_.LdFrag addr:$src2)), + (_.VT _.RC:$src1), imm:$cc), + (!cast<Instruction>(NAME#_.ZSuffix#"rmi") _.RC:$src1, addr:$src2, + (CommutePCMPCC imm:$cc))>; + + def : Pat<(and _.KRCWM:$mask, (OpNode (bitconvert (_.LdFrag addr:$src2)), + (_.VT _.RC:$src1), imm:$cc)), + (!cast<Instruction>(NAME#_.ZSuffix#"rmik") _.KRCWM:$mask, + _.RC:$src1, addr:$src2, + (CommutePCMPCC imm:$cc))>; } multiclass avx512_icmp_cc_rmb<bits<8> opc, string Suffix, SDNode OpNode, - X86VectorVTInfo _> : - avx512_icmp_cc<opc, Suffix, OpNode, _> { + OpndItins itins, X86VectorVTInfo _> : + avx512_icmp_cc<opc, Suffix, OpNode, itins, _> { def rmib : AVX512AIi8<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2, AVX512ICC:$cc), @@ -2076,7 +2234,8 @@ multiclass avx512_icmp_cc_rmb<bits<8> opc, string Suffix, SDNode OpNode, [(set _.KRC:$dst, (OpNode (_.VT _.RC:$src1), (X86VBroadcast (_.ScalarLdFrag addr:$src2)), imm:$cc))], - IIC_SSE_ALU_F32P_RM>, EVEX_4V, EVEX_B; + itins.rm>, EVEX_4V, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; def rmibk : AVX512AIi8<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.ScalarMemOp:$src2, AVX512ICC:$cc), @@ -2087,7 +2246,8 @@ multiclass avx512_icmp_cc_rmb<bits<8> opc, string Suffix, SDNode OpNode, (OpNode (_.VT _.RC:$src1), (X86VBroadcast (_.ScalarLdFrag addr:$src2)), imm:$cc)))], - IIC_SSE_ALU_F32P_RM>, EVEX_4V, EVEX_K, EVEX_B; + itins.rm>, EVEX_4V, EVEX_K, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; // Accept explicit immediate argument form instead of comparison code. let isAsmParserOnly = 1, hasSideEffects = 0, mayLoad = 1 in { @@ -2097,302 +2257,98 @@ multiclass avx512_icmp_cc_rmb<bits<8> opc, string Suffix, SDNode OpNode, !strconcat("vpcmp", Suffix, "\t{$cc, ${src2}", _.BroadcastStr, ", $src1, $dst|", "$dst, $src1, ${src2}", _.BroadcastStr, ", $cc}"), - [], IIC_SSE_ALU_F32P_RM>, EVEX_4V, EVEX_B; + [], itins.rm>, EVEX_4V, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; def rmibk_alt : AVX512AIi8<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, _.ScalarMemOp:$src2, u8imm:$cc), !strconcat("vpcmp", Suffix, "\t{$cc, ${src2}", _.BroadcastStr, ", $src1, $dst {${mask}}|", "$dst {${mask}}, $src1, ${src2}", _.BroadcastStr, ", $cc}"), - [], IIC_SSE_ALU_F32P_RM>, EVEX_4V, EVEX_K, EVEX_B; + [], itins.rm>, EVEX_4V, EVEX_K, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } + + def : Pat<(OpNode (X86VBroadcast (_.ScalarLdFrag addr:$src2)), + (_.VT _.RC:$src1), imm:$cc), + (!cast<Instruction>(NAME#_.ZSuffix#"rmib") _.RC:$src1, addr:$src2, + (CommutePCMPCC imm:$cc))>; + + def : Pat<(and _.KRCWM:$mask, (OpNode (X86VBroadcast + (_.ScalarLdFrag addr:$src2)), + (_.VT _.RC:$src1), imm:$cc)), + (!cast<Instruction>(NAME#_.ZSuffix#"rmibk") _.KRCWM:$mask, + _.RC:$src1, addr:$src2, + (CommutePCMPCC imm:$cc))>; } multiclass avx512_icmp_cc_vl<bits<8> opc, string Suffix, SDNode OpNode, - AVX512VLVectorVTInfo VTInfo, Predicate prd> { + OpndItins itins, AVX512VLVectorVTInfo VTInfo, + Predicate prd> { let Predicates = [prd] in - defm Z : avx512_icmp_cc<opc, Suffix, OpNode, VTInfo.info512>, EVEX_V512; + defm Z : avx512_icmp_cc<opc, Suffix, OpNode, itins, VTInfo.info512>, + EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_icmp_cc<opc, Suffix, OpNode, VTInfo.info256>, EVEX_V256; - defm Z128 : avx512_icmp_cc<opc, Suffix, OpNode, VTInfo.info128>, EVEX_V128; + defm Z256 : avx512_icmp_cc<opc, Suffix, OpNode, itins, VTInfo.info256>, + EVEX_V256; + defm Z128 : avx512_icmp_cc<opc, Suffix, OpNode, itins, VTInfo.info128>, + EVEX_V128; } } multiclass avx512_icmp_cc_rmb_vl<bits<8> opc, string Suffix, SDNode OpNode, - AVX512VLVectorVTInfo VTInfo, Predicate prd> { + OpndItins itins, AVX512VLVectorVTInfo VTInfo, + Predicate prd> { let Predicates = [prd] in - defm Z : avx512_icmp_cc_rmb<opc, Suffix, OpNode, VTInfo.info512>, + defm Z : avx512_icmp_cc_rmb<opc, Suffix, OpNode, itins, VTInfo.info512>, EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_icmp_cc_rmb<opc, Suffix, OpNode, VTInfo.info256>, + defm Z256 : avx512_icmp_cc_rmb<opc, Suffix, OpNode, itins, VTInfo.info256>, EVEX_V256; - defm Z128 : avx512_icmp_cc_rmb<opc, Suffix, OpNode, VTInfo.info128>, + defm Z128 : avx512_icmp_cc_rmb<opc, Suffix, OpNode, itins, VTInfo.info128>, EVEX_V128; } } -defm VPCMPB : avx512_icmp_cc_vl<0x3F, "b", X86cmpm, avx512vl_i8_info, - HasBWI>, EVEX_CD8<8, CD8VF>; -defm VPCMPUB : avx512_icmp_cc_vl<0x3E, "ub", X86cmpmu, avx512vl_i8_info, - HasBWI>, EVEX_CD8<8, CD8VF>; - -defm VPCMPW : avx512_icmp_cc_vl<0x3F, "w", X86cmpm, avx512vl_i16_info, - HasBWI>, VEX_W, EVEX_CD8<16, CD8VF>; -defm VPCMPUW : avx512_icmp_cc_vl<0x3E, "uw", X86cmpmu, avx512vl_i16_info, - HasBWI>, VEX_W, EVEX_CD8<16, CD8VF>; - -defm VPCMPD : avx512_icmp_cc_rmb_vl<0x1F, "d", X86cmpm, avx512vl_i32_info, - HasAVX512>, EVEX_CD8<32, CD8VF>; -defm VPCMPUD : avx512_icmp_cc_rmb_vl<0x1E, "ud", X86cmpmu, avx512vl_i32_info, - HasAVX512>, EVEX_CD8<32, CD8VF>; - -defm VPCMPQ : avx512_icmp_cc_rmb_vl<0x1F, "q", X86cmpm, avx512vl_i64_info, - HasAVX512>, VEX_W, EVEX_CD8<64, CD8VF>; -defm VPCMPUQ : avx512_icmp_cc_rmb_vl<0x1E, "uq", X86cmpmu, avx512vl_i64_info, - HasAVX512>, VEX_W, EVEX_CD8<64, CD8VF>; - -multiclass avx512_icmp_cc_packed_lowering<X86VectorVTInfo _, X86KVectorVTInfo NewInf, - SDNode OpNode, string InstrStr, - list<Predicate> Preds> { -let Predicates = Preds in { - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (OpNode (_.VT _.RC:$src1), - (_.VT _.RC:$src2), - imm:$cc)), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rri) _.RC:$src1, - _.RC:$src2, - imm:$cc), - NewInf.KRC)>; - - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (OpNode (_.VT _.RC:$src1), - (_.VT (bitconvert (_.LdFrag addr:$src2))), - imm:$cc)), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rmi) _.RC:$src1, - addr:$src2, - imm:$cc), - NewInf.KRC)>; - - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (and _.KRCWM:$mask, - (OpNode (_.VT _.RC:$src1), - (_.VT _.RC:$src2), - imm:$cc))), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rrik) _.KRCWM:$mask, - _.RC:$src1, - _.RC:$src2, - imm:$cc), - NewInf.KRC)>; - - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (and (_.KVT _.KRCWM:$mask), - (_.KVT (OpNode (_.VT _.RC:$src1), - (_.VT (bitconvert - (_.LdFrag addr:$src2))), - imm:$cc)))), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rmik) _.KRCWM:$mask, - _.RC:$src1, - addr:$src2, - imm:$cc), - NewInf.KRC)>; -} -} - -multiclass avx512_icmp_cc_packed_rmb_lowering<X86VectorVTInfo _, X86KVectorVTInfo NewInf, - SDNode OpNode, string InstrStr, - list<Predicate> Preds> - : avx512_icmp_cc_packed_lowering<_, NewInf, OpNode, InstrStr, Preds> { -let Predicates = Preds in { - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (OpNode (_.VT _.RC:$src1), - (X86VBroadcast (_.ScalarLdFrag addr:$src2)), - imm:$cc)), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rmib) _.RC:$src1, - addr:$src2, - imm:$cc), - NewInf.KRC)>; - - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (and (_.KVT _.KRCWM:$mask), - (_.KVT (OpNode (_.VT _.RC:$src1), - (X86VBroadcast - (_.ScalarLdFrag addr:$src2)), - imm:$cc)))), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rmibk) _.KRCWM:$mask, - _.RC:$src1, - addr:$src2, - imm:$cc), - NewInf.KRC)>; -} -} - -// VPCMPB - i8 -defm : avx512_icmp_cc_packed_lowering<v16i8x_info, v32i1_info, X86cmpm, - "VPCMPBZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_cc_packed_lowering<v16i8x_info, v64i1_info, X86cmpm, - "VPCMPBZ128", [HasBWI, HasVLX]>; - -defm : avx512_icmp_cc_packed_lowering<v32i8x_info, v64i1_info, X86cmpm, - "VPCMPBZ256", [HasBWI, HasVLX]>; - -// VPCMPW - i16 -defm : avx512_icmp_cc_packed_lowering<v8i16x_info, v16i1_info, X86cmpm, - "VPCMPWZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_cc_packed_lowering<v8i16x_info, v32i1_info, X86cmpm, - "VPCMPWZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_cc_packed_lowering<v8i16x_info, v64i1_info, X86cmpm, - "VPCMPWZ128", [HasBWI, HasVLX]>; - -defm : avx512_icmp_cc_packed_lowering<v16i16x_info, v32i1_info, X86cmpm, - "VPCMPWZ256", [HasBWI, HasVLX]>; -defm : avx512_icmp_cc_packed_lowering<v16i16x_info, v64i1_info, X86cmpm, - "VPCMPWZ256", [HasBWI, HasVLX]>; - -defm : avx512_icmp_cc_packed_lowering<v32i16_info, v64i1_info, X86cmpm, - "VPCMPWZ", [HasBWI]>; - -// VPCMPD - i32 -defm : avx512_icmp_cc_packed_rmb_lowering<v4i32x_info, v8i1_info, X86cmpm, - "VPCMPDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i32x_info, v16i1_info, X86cmpm, - "VPCMPDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i32x_info, v32i1_info, X86cmpm, - "VPCMPDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i32x_info, v64i1_info, X86cmpm, - "VPCMPDZ128", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_cc_packed_rmb_lowering<v8i32x_info, v16i1_info, X86cmpm, - "VPCMPDZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v8i32x_info, v32i1_info, X86cmpm, - "VPCMPDZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v8i32x_info, v64i1_info, X86cmpm, - "VPCMPDZ256", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_cc_packed_rmb_lowering<v16i32_info, v32i1_info, X86cmpm, - "VPCMPDZ", [HasAVX512]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v16i32_info, v64i1_info, X86cmpm, - "VPCMPDZ", [HasAVX512]>; - -// VPCMPQ - i64 -defm : avx512_icmp_cc_packed_rmb_lowering<v2i64x_info, v4i1_info, X86cmpm, - "VPCMPQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v2i64x_info, v8i1_info, X86cmpm, - "VPCMPQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v2i64x_info, v16i1_info, X86cmpm, - "VPCMPQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v2i64x_info, v32i1_info, X86cmpm, - "VPCMPQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v2i64x_info, v64i1_info, X86cmpm, - "VPCMPQZ128", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_cc_packed_rmb_lowering<v4i64x_info, v8i1_info, X86cmpm, - "VPCMPQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i64x_info, v16i1_info, X86cmpm, - "VPCMPQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i64x_info, v32i1_info, X86cmpm, - "VPCMPQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i64x_info, v64i1_info, X86cmpm, - "VPCMPQZ256", [HasAVX512, HasVLX]>; +// FIXME: Is there a better scheduler itinerary for VPCMP/VPCMPU? +defm VPCMPB : avx512_icmp_cc_vl<0x3F, "b", X86cmpm, SSE_ALU_F32P, + avx512vl_i8_info, HasBWI>, EVEX_CD8<8, CD8VF>; +defm VPCMPUB : avx512_icmp_cc_vl<0x3E, "ub", X86cmpmu, SSE_ALU_F32P, + avx512vl_i8_info, HasBWI>, EVEX_CD8<8, CD8VF>; -defm : avx512_icmp_cc_packed_rmb_lowering<v8i64_info, v16i1_info, X86cmpm, - "VPCMPQZ", [HasAVX512]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v8i64_info, v32i1_info, X86cmpm, - "VPCMPQZ", [HasAVX512]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v8i64_info, v64i1_info, X86cmpm, - "VPCMPQZ", [HasAVX512]>; +defm VPCMPW : avx512_icmp_cc_vl<0x3F, "w", X86cmpm, SSE_ALU_F32P, + avx512vl_i16_info, HasBWI>, + VEX_W, EVEX_CD8<16, CD8VF>; +defm VPCMPUW : avx512_icmp_cc_vl<0x3E, "uw", X86cmpmu, SSE_ALU_F32P, + avx512vl_i16_info, HasBWI>, + VEX_W, EVEX_CD8<16, CD8VF>; -// VPCMPUB - i8 -defm : avx512_icmp_cc_packed_lowering<v16i8x_info, v32i1_info, X86cmpmu, - "VPCMPUBZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_cc_packed_lowering<v16i8x_info, v64i1_info, X86cmpmu, - "VPCMPUBZ128", [HasBWI, HasVLX]>; +defm VPCMPD : avx512_icmp_cc_rmb_vl<0x1F, "d", X86cmpm, SSE_ALU_F32P, + avx512vl_i32_info, HasAVX512>, + EVEX_CD8<32, CD8VF>; +defm VPCMPUD : avx512_icmp_cc_rmb_vl<0x1E, "ud", X86cmpmu, SSE_ALU_F32P, + avx512vl_i32_info, HasAVX512>, + EVEX_CD8<32, CD8VF>; -defm : avx512_icmp_cc_packed_lowering<v32i8x_info, v64i1_info, X86cmpmu, - "VPCMPUBZ256", [HasBWI, HasVLX]>; +defm VPCMPQ : avx512_icmp_cc_rmb_vl<0x1F, "q", X86cmpm, SSE_ALU_F32P, + avx512vl_i64_info, HasAVX512>, + VEX_W, EVEX_CD8<64, CD8VF>; +defm VPCMPUQ : avx512_icmp_cc_rmb_vl<0x1E, "uq", X86cmpmu, SSE_ALU_F32P, + avx512vl_i64_info, HasAVX512>, + VEX_W, EVEX_CD8<64, CD8VF>; -// VPCMPUW - i16 -defm : avx512_icmp_cc_packed_lowering<v8i16x_info, v16i1_info, X86cmpmu, - "VPCMPUWZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_cc_packed_lowering<v8i16x_info, v32i1_info, X86cmpmu, - "VPCMPUWZ128", [HasBWI, HasVLX]>; -defm : avx512_icmp_cc_packed_lowering<v8i16x_info, v64i1_info, X86cmpmu, - "VPCMPUWZ128", [HasBWI, HasVLX]>; - -defm : avx512_icmp_cc_packed_lowering<v16i16x_info, v32i1_info, X86cmpmu, - "VPCMPUWZ256", [HasBWI, HasVLX]>; -defm : avx512_icmp_cc_packed_lowering<v16i16x_info, v64i1_info, X86cmpmu, - "VPCMPUWZ256", [HasBWI, HasVLX]>; - -defm : avx512_icmp_cc_packed_lowering<v32i16_info, v64i1_info, X86cmpmu, - "VPCMPUWZ", [HasBWI]>; - -// VPCMPUD - i32 -defm : avx512_icmp_cc_packed_rmb_lowering<v4i32x_info, v8i1_info, X86cmpmu, - "VPCMPUDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i32x_info, v16i1_info, X86cmpmu, - "VPCMPUDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i32x_info, v32i1_info, X86cmpmu, - "VPCMPUDZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i32x_info, v64i1_info, X86cmpmu, - "VPCMPUDZ128", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_cc_packed_rmb_lowering<v8i32x_info, v16i1_info, X86cmpmu, - "VPCMPUDZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v8i32x_info, v32i1_info, X86cmpmu, - "VPCMPUDZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v8i32x_info, v64i1_info, X86cmpmu, - "VPCMPUDZ256", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_cc_packed_rmb_lowering<v16i32_info, v32i1_info, X86cmpmu, - "VPCMPUDZ", [HasAVX512]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v16i32_info, v64i1_info, X86cmpmu, - "VPCMPUDZ", [HasAVX512]>; - -// VPCMPUQ - i64 -defm : avx512_icmp_cc_packed_rmb_lowering<v2i64x_info, v4i1_info, X86cmpmu, - "VPCMPUQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v2i64x_info, v8i1_info, X86cmpmu, - "VPCMPUQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v2i64x_info, v16i1_info, X86cmpmu, - "VPCMPUQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v2i64x_info, v32i1_info, X86cmpmu, - "VPCMPUQZ128", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v2i64x_info, v64i1_info, X86cmpmu, - "VPCMPUQZ128", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_cc_packed_rmb_lowering<v4i64x_info, v8i1_info, X86cmpmu, - "VPCMPUQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i64x_info, v16i1_info, X86cmpmu, - "VPCMPUQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i64x_info, v32i1_info, X86cmpmu, - "VPCMPUQZ256", [HasAVX512, HasVLX]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v4i64x_info, v64i1_info, X86cmpmu, - "VPCMPUQZ256", [HasAVX512, HasVLX]>; - -defm : avx512_icmp_cc_packed_rmb_lowering<v8i64_info, v16i1_info, X86cmpmu, - "VPCMPUQZ", [HasAVX512]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v8i64_info, v32i1_info, X86cmpmu, - "VPCMPUQZ", [HasAVX512]>; -defm : avx512_icmp_cc_packed_rmb_lowering<v8i64_info, v64i1_info, X86cmpmu, - "VPCMPUQZ", [HasAVX512]>; - -multiclass avx512_vcmp_common<X86VectorVTInfo _> { +multiclass avx512_vcmp_common<OpndItins itins, X86VectorVTInfo _> { defm rri : AVX512_maskable_cmp<0xC2, MRMSrcReg, _, (outs _.KRC:$dst), (ins _.RC:$src1, _.RC:$src2,AVXCC:$cc), "vcmp${cc}"#_.Suffix, "$src2, $src1", "$src1, $src2", (X86cmpm (_.VT _.RC:$src1), (_.VT _.RC:$src2), - imm:$cc), 1>; + imm:$cc), itins.rr, 1>, + Sched<[itins.Sched]>; defm rmi : AVX512_maskable_cmp<0xC2, MRMSrcMem, _, (outs _.KRC:$dst),(ins _.RC:$src1, _.MemOp:$src2, AVXCC:$cc), @@ -2400,7 +2356,8 @@ multiclass avx512_vcmp_common<X86VectorVTInfo _> { "$src2, $src1", "$src1, $src2", (X86cmpm (_.VT _.RC:$src1), (_.VT (bitconvert (_.LdFrag addr:$src2))), - imm:$cc)>; + imm:$cc), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmbi : AVX512_maskable_cmp<0xC2, MRMSrcMem, _, (outs _.KRC:$dst), @@ -2410,33 +2367,63 @@ multiclass avx512_vcmp_common<X86VectorVTInfo _> { "$src1, ${src2}"##_.BroadcastStr, (X86cmpm (_.VT _.RC:$src1), (_.VT (X86VBroadcast(_.ScalarLdFrag addr:$src2))), - imm:$cc)>,EVEX_B; + imm:$cc), itins.rm>, + EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; // Accept explicit immediate argument form instead of comparison code. let isAsmParserOnly = 1, hasSideEffects = 0 in { defm rri_alt : AVX512_maskable_cmp_alt<0xC2, MRMSrcReg, _, (outs _.KRC:$dst), (ins _.RC:$src1, _.RC:$src2, u8imm:$cc), "vcmp"#_.Suffix, - "$cc, $src2, $src1", "$src1, $src2, $cc">; + "$cc, $src2, $src1", "$src1, $src2, $cc", itins.rr>, + Sched<[itins.Sched]>; let mayLoad = 1 in { defm rmi_alt : AVX512_maskable_cmp_alt<0xC2, MRMSrcMem, _, (outs _.KRC:$dst), (ins _.RC:$src1, _.MemOp:$src2, u8imm:$cc), "vcmp"#_.Suffix, - "$cc, $src2, $src1", "$src1, $src2, $cc">; + "$cc, $src2, $src1", "$src1, $src2, $cc", itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmbi_alt : AVX512_maskable_cmp_alt<0xC2, MRMSrcMem, _, (outs _.KRC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2, u8imm:$cc), "vcmp"#_.Suffix, "$cc, ${src2}"##_.BroadcastStr##", $src1", - "$src1, ${src2}"##_.BroadcastStr##", $cc">,EVEX_B; + "$src1, ${src2}"##_.BroadcastStr##", $cc", itins.rm>, + EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; } - } + } + + // Patterns for selecting with loads in other operand. + def : Pat<(X86cmpm (_.LdFrag addr:$src2), (_.VT _.RC:$src1), + CommutableCMPCC:$cc), + (!cast<Instruction>(NAME#_.ZSuffix#"rmi") _.RC:$src1, addr:$src2, + imm:$cc)>; + + def : Pat<(and _.KRCWM:$mask, (X86cmpm (_.LdFrag addr:$src2), + (_.VT _.RC:$src1), + CommutableCMPCC:$cc)), + (!cast<Instruction>(NAME#_.ZSuffix#"rmik") _.KRCWM:$mask, + _.RC:$src1, addr:$src2, + imm:$cc)>; + + def : Pat<(X86cmpm (X86VBroadcast (_.ScalarLdFrag addr:$src2)), + (_.VT _.RC:$src1), CommutableCMPCC:$cc), + (!cast<Instruction>(NAME#_.ZSuffix#"rmbi") _.RC:$src1, addr:$src2, + imm:$cc)>; + + def : Pat<(and _.KRCWM:$mask, (X86cmpm (X86VBroadcast + (_.ScalarLdFrag addr:$src2)), + (_.VT _.RC:$src1), + CommutableCMPCC:$cc)), + (!cast<Instruction>(NAME#_.ZSuffix#"rmbik") _.KRCWM:$mask, + _.RC:$src1, addr:$src2, + imm:$cc)>; } -multiclass avx512_vcmp_sae<X86VectorVTInfo _> { +multiclass avx512_vcmp_sae<OpndItins itins, X86VectorVTInfo _> { // comparison code form (VCMP[EQ/LT/LE/...] defm rrib : AVX512_maskable_cmp<0xC2, MRMSrcReg, _, (outs _.KRC:$dst),(ins _.RC:$src1, _.RC:$src2, AVXCC:$cc), @@ -2445,7 +2432,8 @@ multiclass avx512_vcmp_sae<X86VectorVTInfo _> { (X86cmpmRnd (_.VT _.RC:$src1), (_.VT _.RC:$src2), imm:$cc, - (i32 FROUND_NO_EXC))>, EVEX_B; + (i32 FROUND_NO_EXC)), itins.rr>, + EVEX_B, Sched<[itins.Sched]>; let isAsmParserOnly = 1, hasSideEffects = 0 in { defm rrib_alt : AVX512_maskable_cmp_alt<0xC2, MRMSrcReg, _, @@ -2453,163 +2441,78 @@ multiclass avx512_vcmp_sae<X86VectorVTInfo _> { (ins _.RC:$src1, _.RC:$src2, u8imm:$cc), "vcmp"#_.Suffix, "$cc, {sae}, $src2, $src1", - "$src1, $src2, {sae}, $cc">, EVEX_B; + "$src1, $src2, {sae}, $cc", itins.rr>, + EVEX_B, Sched<[itins.Sched]>; } } -multiclass avx512_vcmp<AVX512VLVectorVTInfo _> { +multiclass avx512_vcmp<OpndItins itins, AVX512VLVectorVTInfo _> { let Predicates = [HasAVX512] in { - defm Z : avx512_vcmp_common<_.info512>, - avx512_vcmp_sae<_.info512>, EVEX_V512; + defm Z : avx512_vcmp_common<itins, _.info512>, + avx512_vcmp_sae<itins, _.info512>, EVEX_V512; } let Predicates = [HasAVX512,HasVLX] in { - defm Z128 : avx512_vcmp_common<_.info128>, EVEX_V128; - defm Z256 : avx512_vcmp_common<_.info256>, EVEX_V256; + defm Z128 : avx512_vcmp_common<itins, _.info128>, EVEX_V128; + defm Z256 : avx512_vcmp_common<itins, _.info256>, EVEX_V256; } } -defm VCMPPD : avx512_vcmp<avx512vl_f64_info>, +defm VCMPPD : avx512_vcmp<SSE_ALU_F64P, avx512vl_f64_info>, AVX512PDIi8Base, EVEX_4V, EVEX_CD8<64, CD8VF>, VEX_W; -defm VCMPPS : avx512_vcmp<avx512vl_f32_info>, +defm VCMPPS : avx512_vcmp<SSE_ALU_F32P, avx512vl_f32_info>, AVX512PSIi8Base, EVEX_4V, EVEX_CD8<32, CD8VF>; -multiclass avx512_fcmp_cc_packed_lowering<X86VectorVTInfo _, X86KVectorVTInfo NewInf, - string InstrStr, list<Predicate> Preds> { -let Predicates = Preds in { - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (X86cmpm (_.VT _.RC:$src1), - (_.VT _.RC:$src2), - imm:$cc)), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rri) _.RC:$src1, - _.RC:$src2, - imm:$cc), - NewInf.KRC)>; - - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (X86cmpm (_.VT _.RC:$src1), - (_.VT (bitconvert (_.LdFrag addr:$src2))), - imm:$cc)), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rmi) _.RC:$src1, - addr:$src2, - imm:$cc), - NewInf.KRC)>; - - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (X86cmpm (_.VT _.RC:$src1), - (X86VBroadcast (_.ScalarLdFrag addr:$src2)), - imm:$cc)), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rmbi) _.RC:$src1, - addr:$src2, - imm:$cc), - NewInf.KRC)>; -} -} -multiclass avx512_fcmp_cc_packed_sae_lowering<X86VectorVTInfo _, X86KVectorVTInfo NewInf, - string InstrStr, list<Predicate> Preds> - : avx512_fcmp_cc_packed_lowering<_, NewInf, InstrStr, Preds> { +// Patterns to select fp compares with load as first operand. +let Predicates = [HasAVX512] in { + def : Pat<(v1i1 (X86cmpms (loadf64 addr:$src2), FR64X:$src1, + CommutableCMPCC:$cc)), + (VCMPSDZrm FR64X:$src1, addr:$src2, imm:$cc)>; -let Predicates = Preds in - def : Pat<(insert_subvector (NewInf.KVT immAllZerosV), - (_.KVT (X86cmpmRnd (_.VT _.RC:$src1), - (_.VT _.RC:$src2), - imm:$cc, - (i32 FROUND_NO_EXC))), - (i64 0)), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr##rrib) _.RC:$src1, - _.RC:$src2, - imm:$cc), - NewInf.KRC)>; + def : Pat<(v1i1 (X86cmpms (loadf32 addr:$src2), FR32X:$src1, + CommutableCMPCC:$cc)), + (VCMPSSZrm FR32X:$src1, addr:$src2, imm:$cc)>; } - -// VCMPPS - f32 -defm : avx512_fcmp_cc_packed_lowering<v4f32x_info, v8i1_info, "VCMPPSZ128", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v4f32x_info, v16i1_info, "VCMPPSZ128", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v4f32x_info, v32i1_info, "VCMPPSZ128", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v4f32x_info, v64i1_info, "VCMPPSZ128", - [HasAVX512, HasVLX]>; - -defm : avx512_fcmp_cc_packed_lowering<v8f32x_info, v16i1_info, "VCMPPSZ256", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v8f32x_info, v32i1_info, "VCMPPSZ256", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v8f32x_info, v64i1_info, "VCMPPSZ256", - [HasAVX512, HasVLX]>; - -defm : avx512_fcmp_cc_packed_sae_lowering<v16f32_info, v32i1_info, "VCMPPSZ", - [HasAVX512]>; -defm : avx512_fcmp_cc_packed_sae_lowering<v16f32_info, v64i1_info, "VCMPPSZ", - [HasAVX512]>; - -// VCMPPD - f64 -defm : avx512_fcmp_cc_packed_lowering<v2f64x_info, v4i1_info, "VCMPPDZ128", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v2f64x_info, v8i1_info, "VCMPPDZ128", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v2f64x_info, v16i1_info, "VCMPPDZ128", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v2f64x_info, v32i1_info, "VCMPPDZ128", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v2f64x_info, v64i1_info, "VCMPPDZ128", - [HasAVX512, HasVLX]>; - -defm : avx512_fcmp_cc_packed_lowering<v4f64x_info, v8i1_info, "VCMPPDZ256", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v4f64x_info, v16i1_info, "VCMPPDZ256", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v4f64x_info, v32i1_info, "VCMPPDZ256", - [HasAVX512, HasVLX]>; -defm : avx512_fcmp_cc_packed_lowering<v4f64x_info, v64i1_info, "VCMPPDZ256", - [HasAVX512, HasVLX]>; - -defm : avx512_fcmp_cc_packed_sae_lowering<v8f64_info, v16i1_info, "VCMPPDZ", - [HasAVX512]>; -defm : avx512_fcmp_cc_packed_sae_lowering<v8f64_info, v32i1_info, "VCMPPDZ", - [HasAVX512]>; -defm : avx512_fcmp_cc_packed_sae_lowering<v8f64_info, v64i1_info, "VCMPPDZ", - [HasAVX512]>; - // ---------------------------------------------------------------- // FPClass //handle fpclass instruction mask = op(reg_scalar,imm) // op(mem_scalar,imm) multiclass avx512_scalar_fpclass<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _, Predicate prd> { - let Predicates = [prd] in { - def rr : AVX512<opc, MRMSrcReg, (outs _.KRC:$dst),//_.KRC:$dst), + OpndItins itins, X86VectorVTInfo _, + Predicate prd> { + let Predicates = [prd], ExeDomain = _.ExeDomain in { + def rr : AVX512<opc, MRMSrcReg, (outs _.KRC:$dst), (ins _.RC:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set _.KRC:$dst,(OpNode (_.VT _.RC:$src1), - (i32 imm:$src2)))], NoItinerary>; + (i32 imm:$src2)))], itins.rr>, + Sched<[itins.Sched]>; def rrk : AVX512<opc, MRMSrcReg, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix# "\t{$src2, $src1, $dst {${mask}}|$dst {${mask}}, $src1, $src2}", [(set _.KRC:$dst,(or _.KRCWM:$mask, (OpNode (_.VT _.RC:$src1), - (i32 imm:$src2))))], NoItinerary>, EVEX_K; + (i32 imm:$src2))))], itins.rr>, + EVEX_K, Sched<[itins.Sched]>; def rm : AVX512<opc, MRMSrcMem, (outs _.KRC:$dst), - (ins _.MemOp:$src1, i32u8imm:$src2), + (ins _.IntScalarMemOp:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix## "\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set _.KRC:$dst, - (OpNode (_.VT (bitconvert (_.LdFrag addr:$src1))), - (i32 imm:$src2)))], NoItinerary>; + (OpNode _.ScalarIntMemCPat:$src1, + (i32 imm:$src2)))], itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; def rmk : AVX512<opc, MRMSrcMem, (outs _.KRC:$dst), - (ins _.KRCWM:$mask, _.MemOp:$src1, i32u8imm:$src2), + (ins _.KRCWM:$mask, _.IntScalarMemOp:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix## "\t{$src2, $src1, $dst {${mask}}|$dst {${mask}}, $src1, $src2}", [(set _.KRC:$dst,(or _.KRCWM:$mask, - (OpNode (_.VT (bitconvert (_.LdFrag addr:$src1))), - (i32 imm:$src2))))], NoItinerary>, EVEX_K; + (OpNode _.ScalarIntMemCPat:$src1, + (i32 imm:$src2))))], itins.rm>, + EVEX_K, Sched<[itins.Sched.Folded, ReadAfterLd]>; } } @@ -2617,33 +2520,39 @@ multiclass avx512_scalar_fpclass<bits<8> opc, string OpcodeStr, SDNode OpNode, // fpclass(reg_vec, mem_vec, imm) // fpclass(reg_vec, broadcast(eltVt), imm) multiclass avx512_vector_fpclass<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _, string mem, string broadcast>{ + OpndItins itins, X86VectorVTInfo _, + string mem, string broadcast>{ + let ExeDomain = _.ExeDomain in { def rr : AVX512<opc, MRMSrcReg, (outs _.KRC:$dst), (ins _.RC:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set _.KRC:$dst,(OpNode (_.VT _.RC:$src1), - (i32 imm:$src2)))], NoItinerary>; + (i32 imm:$src2)))], itins.rr>, + Sched<[itins.Sched]>; def rrk : AVX512<opc, MRMSrcReg, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.RC:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix# "\t{$src2, $src1, $dst {${mask}}|$dst {${mask}}, $src1, $src2}", [(set _.KRC:$dst,(or _.KRCWM:$mask, (OpNode (_.VT _.RC:$src1), - (i32 imm:$src2))))], NoItinerary>, EVEX_K; + (i32 imm:$src2))))], itins.rr>, + EVEX_K, Sched<[itins.Sched]>; def rm : AVX512<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.MemOp:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix##mem# "\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set _.KRC:$dst,(OpNode (_.VT (bitconvert (_.LdFrag addr:$src1))), - (i32 imm:$src2)))], NoItinerary>; + (i32 imm:$src2)))], itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; def rmk : AVX512<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.MemOp:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix##mem# "\t{$src2, $src1, $dst {${mask}}|$dst {${mask}}, $src1, $src2}", [(set _.KRC:$dst, (or _.KRCWM:$mask, (OpNode (_.VT (bitconvert (_.LdFrag addr:$src1))), - (i32 imm:$src2))))], NoItinerary>, EVEX_K; + (i32 imm:$src2))))], itins.rm>, + EVEX_K, Sched<[itins.Sched.Folded, ReadAfterLd]>; def rmb : AVX512<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.ScalarMemOp:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix##broadcast##"\t{$src2, ${src1}"## @@ -2652,7 +2561,8 @@ multiclass avx512_vector_fpclass<bits<8> opc, string OpcodeStr, SDNode OpNode, [(set _.KRC:$dst,(OpNode (_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src1))), - (i32 imm:$src2)))], NoItinerary>,EVEX_B; + (i32 imm:$src2)))], itins.rm>, + EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; def rmbk : AVX512<opc, MRMSrcMem, (outs _.KRC:$dst), (ins _.KRCWM:$mask, _.ScalarMemOp:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix##broadcast##"\t{$src2, ${src1}"## @@ -2661,35 +2571,42 @@ multiclass avx512_vector_fpclass<bits<8> opc, string OpcodeStr, SDNode OpNode, [(set _.KRC:$dst,(or _.KRCWM:$mask, (OpNode (_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src1))), - (i32 imm:$src2))))], NoItinerary>, - EVEX_B, EVEX_K; + (i32 imm:$src2))))], itins.rm>, + EVEX_B, EVEX_K, Sched<[itins.Sched.Folded, ReadAfterLd]>; + } } -multiclass avx512_vector_fpclass_all<string OpcodeStr, - AVX512VLVectorVTInfo _, bits<8> opc, SDNode OpNode, Predicate prd, - string broadcast>{ +multiclass avx512_vector_fpclass_all<string OpcodeStr, AVX512VLVectorVTInfo _, + bits<8> opc, SDNode OpNode, + OpndItins itins, Predicate prd, + string broadcast>{ let Predicates = [prd] in { - defm Z : avx512_vector_fpclass<opc, OpcodeStr, OpNode, _.info512, "{z}", - broadcast>, EVEX_V512; + defm Z : avx512_vector_fpclass<opc, OpcodeStr, OpNode, itins, + _.info512, "{z}", broadcast>, EVEX_V512; } let Predicates = [prd, HasVLX] in { - defm Z128 : avx512_vector_fpclass<opc, OpcodeStr, OpNode, _.info128, "{x}", - broadcast>, EVEX_V128; - defm Z256 : avx512_vector_fpclass<opc, OpcodeStr, OpNode, _.info256, "{y}", - broadcast>, EVEX_V256; + defm Z128 : avx512_vector_fpclass<opc, OpcodeStr, OpNode, itins, + _.info128, "{x}", broadcast>, EVEX_V128; + defm Z256 : avx512_vector_fpclass<opc, OpcodeStr, OpNode, itins, + _.info256, "{y}", broadcast>, EVEX_V256; } } +// FIXME: Is there a better scheduler itinerary for VFPCLASS? multiclass avx512_fp_fpclass_all<string OpcodeStr, bits<8> opcVec, bits<8> opcScalar, SDNode VecOpNode, SDNode ScalarOpNode, Predicate prd>{ defm PS : avx512_vector_fpclass_all<OpcodeStr, avx512vl_f32_info, opcVec, - VecOpNode, prd, "{l}">, EVEX_CD8<32, CD8VF>; + VecOpNode, SSE_ALU_F32P, prd, "{l}">, + EVEX_CD8<32, CD8VF>; defm PD : avx512_vector_fpclass_all<OpcodeStr, avx512vl_f64_info, opcVec, - VecOpNode, prd, "{q}">,EVEX_CD8<64, CD8VF> , VEX_W; + VecOpNode, SSE_ALU_F64P, prd, "{q}">, + EVEX_CD8<64, CD8VF> , VEX_W; defm SS : avx512_scalar_fpclass<opcScalar, OpcodeStr, ScalarOpNode, - f32x_info, prd>, EVEX_CD8<32, CD8VT1>; + SSE_ALU_F32S, f32x_info, prd>, + EVEX_CD8<32, CD8VT1>; defm SD : avx512_scalar_fpclass<opcScalar, OpcodeStr, ScalarOpNode, - f64x_info, prd>, EVEX_CD8<64, CD8VT1>, VEX_W; + SSE_ALU_F64S, f64x_info, prd>, + EVEX_CD8<64, CD8VT1>, VEX_W; } defm VFPCLASS : avx512_fp_fpclass_all<"vfpclass", 0x66, 0x67, X86Vfpclass, @@ -2704,15 +2621,16 @@ defm VFPCLASS : avx512_fp_fpclass_all<"vfpclass", 0x66, 0x67, X86Vfpclass, multiclass avx512_mask_mov<bits<8> opc_kk, bits<8> opc_km, bits<8> opc_mk, string OpcodeStr, RegisterClass KRC, ValueType vvt, X86MemOperand x86memop> { - let hasSideEffects = 0 in + let hasSideEffects = 0, SchedRW = [WriteMove] in def kk : I<opc_kk, MRMSrcReg, (outs KRC:$dst), (ins KRC:$src), - !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), []>; + !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), [], + IIC_SSE_MOVDQ>; def km : I<opc_km, MRMSrcMem, (outs KRC:$dst), (ins x86memop:$src), !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), - [(set KRC:$dst, (vvt (load addr:$src)))]>; + [(set KRC:$dst, (vvt (load addr:$src)))], IIC_SSE_MOVDQ>; def mk : I<opc_mk, MRMDestMem, (outs), (ins x86memop:$dst, KRC:$src), !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), - [(store KRC:$src, addr:$dst)]>; + [(store KRC:$src, addr:$dst)], IIC_SSE_MOVDQ>; } multiclass avx512_mask_mov_gpr<bits<8> opc_kr, bits<8> opc_rk, @@ -2720,9 +2638,11 @@ multiclass avx512_mask_mov_gpr<bits<8> opc_kr, bits<8> opc_rk, RegisterClass KRC, RegisterClass GRC> { let hasSideEffects = 0 in { def kr : I<opc_kr, MRMSrcReg, (outs KRC:$dst), (ins GRC:$src), - !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), []>; + !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), [], + IIC_SSE_MOVD_ToGP>, Sched<[WriteMove]>; def rk : I<opc_rk, MRMSrcReg, (outs GRC:$dst), (ins KRC:$src), - !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), []>; + !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), [], + IIC_SSE_MOVD_ToGP>, Sched<[WriteMove]>; } } @@ -2848,17 +2768,11 @@ let Predicates = [HasAVX512] in { def : Pat<(maskVT (scalar_to_vector GR32:$src)), (COPY_TO_REGCLASS GR32:$src, maskRC)>; - def : Pat<(i32 (X86Vextract maskRC:$src, (iPTR 0))), + def : Pat<(i32 (X86kextract maskRC:$src, (iPTR 0))), (COPY_TO_REGCLASS maskRC:$src, GR32)>; def : Pat<(maskVT (scalar_to_vector GR8:$src)), (COPY_TO_REGCLASS (INSERT_SUBREG (i32 (IMPLICIT_DEF)), GR8:$src, sub_8bit), maskRC)>; - - def : Pat<(i8 (X86Vextract maskRC:$src, (iPTR 0))), - (EXTRACT_SUBREG (i32 (COPY_TO_REGCLASS maskRC:$src, GR32)), sub_8bit)>; - - def : Pat<(i32 (anyext (i8 (X86Vextract maskRC:$src, (iPTR 0))))), - (COPY_TO_REGCLASS maskRC:$src, GR32)>; } defm : operation_gpr_mask_copy_lowering<VK1, v1i1>; @@ -2888,26 +2802,27 @@ let Predicates = [HasAVX512] in { // - KNOT multiclass avx512_mask_unop<bits<8> opc, string OpcodeStr, RegisterClass KRC, SDPatternOperator OpNode, - Predicate prd> { + OpndItins itins, Predicate prd> { let Predicates = [prd] in def rr : I<opc, MRMSrcReg, (outs KRC:$dst), (ins KRC:$src), !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), - [(set KRC:$dst, (OpNode KRC:$src))]>; + [(set KRC:$dst, (OpNode KRC:$src))], itins.rr>, + Sched<[itins.Sched]>; } multiclass avx512_mask_unop_all<bits<8> opc, string OpcodeStr, - SDPatternOperator OpNode> { + SDPatternOperator OpNode, OpndItins itins> { defm B : avx512_mask_unop<opc, !strconcat(OpcodeStr, "b"), VK8, OpNode, - HasDQI>, VEX, PD; + itins, HasDQI>, VEX, PD; defm W : avx512_mask_unop<opc, !strconcat(OpcodeStr, "w"), VK16, OpNode, - HasAVX512>, VEX, PS; + itins, HasAVX512>, VEX, PS; defm D : avx512_mask_unop<opc, !strconcat(OpcodeStr, "d"), VK32, OpNode, - HasBWI>, VEX, PD, VEX_W; + itins, HasBWI>, VEX, PD, VEX_W; defm Q : avx512_mask_unop<opc, !strconcat(OpcodeStr, "q"), VK64, OpNode, - HasBWI>, VEX, PS, VEX_W; + itins, HasBWI>, VEX, PS, VEX_W; } -defm KNOT : avx512_mask_unop_all<0x44, "knot", vnot>; +defm KNOT : avx512_mask_unop_all<0x44, "knot", vnot, SSE_BIT_ITINS_P>; // KNL does not support KMOVB, 8-bit mask is promoted to 16-bit let Predicates = [HasAVX512, NoDQI] in @@ -2923,25 +2838,26 @@ def : Pat<(vnot VK2:$src), // - KAND, KANDN, KOR, KXNOR, KXOR multiclass avx512_mask_binop<bits<8> opc, string OpcodeStr, RegisterClass KRC, SDPatternOperator OpNode, - Predicate prd, bit IsCommutable> { + OpndItins itins, Predicate prd, bit IsCommutable> { let Predicates = [prd], isCommutable = IsCommutable in def rr : I<opc, MRMSrcReg, (outs KRC:$dst), (ins KRC:$src1, KRC:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, $dst|$dst, $src1, $src2}"), - [(set KRC:$dst, (OpNode KRC:$src1, KRC:$src2))]>; + [(set KRC:$dst, (OpNode KRC:$src1, KRC:$src2))], itins.rr>, + Sched<[itins.Sched]>; } multiclass avx512_mask_binop_all<bits<8> opc, string OpcodeStr, - SDPatternOperator OpNode, bit IsCommutable, - Predicate prdW = HasAVX512> { + SDPatternOperator OpNode, OpndItins itins, + bit IsCommutable, Predicate prdW = HasAVX512> { defm B : avx512_mask_binop<opc, !strconcat(OpcodeStr, "b"), VK8, OpNode, - HasDQI, IsCommutable>, VEX_4V, VEX_L, PD; + itins, HasDQI, IsCommutable>, VEX_4V, VEX_L, PD; defm W : avx512_mask_binop<opc, !strconcat(OpcodeStr, "w"), VK16, OpNode, - prdW, IsCommutable>, VEX_4V, VEX_L, PS; + itins, prdW, IsCommutable>, VEX_4V, VEX_L, PS; defm D : avx512_mask_binop<opc, !strconcat(OpcodeStr, "d"), VK32, OpNode, - HasBWI, IsCommutable>, VEX_4V, VEX_L, VEX_W, PD; + itins, HasBWI, IsCommutable>, VEX_4V, VEX_L, VEX_W, PD; defm Q : avx512_mask_binop<opc, !strconcat(OpcodeStr, "q"), VK64, OpNode, - HasBWI, IsCommutable>, VEX_4V, VEX_L, VEX_W, PS; + itins, HasBWI, IsCommutable>, VEX_4V, VEX_L, VEX_W, PS; } def andn : PatFrag<(ops node:$i0, node:$i1), (and (not node:$i0), node:$i1)>; @@ -2950,12 +2866,12 @@ def xnor : PatFrag<(ops node:$i0, node:$i1), (not (xor node:$i0, node:$i1))>; def vandn : PatFrag<(ops node:$i0, node:$i1), (and (vnot node:$i0), node:$i1)>; def vxnor : PatFrag<(ops node:$i0, node:$i1), (vnot (xor node:$i0, node:$i1))>; -defm KAND : avx512_mask_binop_all<0x41, "kand", and, 1>; -defm KOR : avx512_mask_binop_all<0x45, "kor", or, 1>; -defm KXNOR : avx512_mask_binop_all<0x46, "kxnor", vxnor, 1>; -defm KXOR : avx512_mask_binop_all<0x47, "kxor", xor, 1>; -defm KANDN : avx512_mask_binop_all<0x42, "kandn", vandn, 0>; -defm KADD : avx512_mask_binop_all<0x4A, "kadd", add, 1, HasDQI>; +defm KAND : avx512_mask_binop_all<0x41, "kand", and, SSE_BIT_ITINS_P, 1>; +defm KOR : avx512_mask_binop_all<0x45, "kor", or, SSE_BIT_ITINS_P, 1>; +defm KXNOR : avx512_mask_binop_all<0x46, "kxnor", vxnor, SSE_BIT_ITINS_P, 1>; +defm KXOR : avx512_mask_binop_all<0x47, "kxor", xor, SSE_BIT_ITINS_P, 1>; +defm KANDN : avx512_mask_binop_all<0x42, "kandn", vandn, SSE_BIT_ITINS_P, 0>; +defm KADD : avx512_mask_binop_all<0x4A, "kadd", add, SSE_BIT_ITINS_P, 1, HasDQI>; multiclass avx512_binop_pat<SDPatternOperator VOpNode, SDPatternOperator OpNode, Instruction Inst> { @@ -2990,13 +2906,13 @@ defm : avx512_binop_pat<xor, xor, KXORWrr>; // Mask unpacking multiclass avx512_mask_unpck<string Suffix,RegisterClass KRC, ValueType VT, - RegisterClass KRCSrc, Predicate prd> { + RegisterClass KRCSrc, OpndItins itins, Predicate prd> { let Predicates = [prd] in { let hasSideEffects = 0 in def rr : I<0x4b, MRMSrcReg, (outs KRC:$dst), (ins KRC:$src1, KRC:$src2), - "kunpck"#Suffix#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", []>, - VEX_4V, VEX_L; + "kunpck"#Suffix#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [], + itins.rr>, VEX_4V, VEX_L, Sched<[itins.Sched]>; def : Pat<(VT (concat_vectors KRCSrc:$src1, KRCSrc:$src2)), (!cast<Instruction>(NAME##rr) @@ -3005,61 +2921,63 @@ multiclass avx512_mask_unpck<string Suffix,RegisterClass KRC, ValueType VT, } } -defm KUNPCKBW : avx512_mask_unpck<"bw", VK16, v16i1, VK8, HasAVX512>, PD; -defm KUNPCKWD : avx512_mask_unpck<"wd", VK32, v32i1, VK16, HasBWI>, PS; -defm KUNPCKDQ : avx512_mask_unpck<"dq", VK64, v64i1, VK32, HasBWI>, PS, VEX_W; +defm KUNPCKBW : avx512_mask_unpck<"bw", VK16, v16i1, VK8, SSE_UNPCK, HasAVX512>, PD; +defm KUNPCKWD : avx512_mask_unpck<"wd", VK32, v32i1, VK16, SSE_UNPCK, HasBWI>, PS; +defm KUNPCKDQ : avx512_mask_unpck<"dq", VK64, v64i1, VK32, SSE_UNPCK, HasBWI>, PS, VEX_W; // Mask bit testing multiclass avx512_mask_testop<bits<8> opc, string OpcodeStr, RegisterClass KRC, - SDNode OpNode, Predicate prd> { + SDNode OpNode, OpndItins itins, Predicate prd> { let Predicates = [prd], Defs = [EFLAGS] in def rr : I<opc, MRMSrcReg, (outs), (ins KRC:$src1, KRC:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1|$src1, $src2}"), - [(set EFLAGS, (OpNode KRC:$src1, KRC:$src2))]>; + [(set EFLAGS, (OpNode KRC:$src1, KRC:$src2))], itins.rr>, + Sched<[itins.Sched]>; } multiclass avx512_mask_testop_w<bits<8> opc, string OpcodeStr, SDNode OpNode, - Predicate prdW = HasAVX512> { - defm B : avx512_mask_testop<opc, OpcodeStr#"b", VK8, OpNode, HasDQI>, + OpndItins itins, Predicate prdW = HasAVX512> { + defm B : avx512_mask_testop<opc, OpcodeStr#"b", VK8, OpNode, itins, HasDQI>, VEX, PD; - defm W : avx512_mask_testop<opc, OpcodeStr#"w", VK16, OpNode, prdW>, + defm W : avx512_mask_testop<opc, OpcodeStr#"w", VK16, OpNode, itins, prdW>, VEX, PS; - defm Q : avx512_mask_testop<opc, OpcodeStr#"q", VK64, OpNode, HasBWI>, + defm Q : avx512_mask_testop<opc, OpcodeStr#"q", VK64, OpNode, itins, HasBWI>, VEX, PS, VEX_W; - defm D : avx512_mask_testop<opc, OpcodeStr#"d", VK32, OpNode, HasBWI>, + defm D : avx512_mask_testop<opc, OpcodeStr#"d", VK32, OpNode, itins, HasBWI>, VEX, PD, VEX_W; } -defm KORTEST : avx512_mask_testop_w<0x98, "kortest", X86kortest>; -defm KTEST : avx512_mask_testop_w<0x99, "ktest", X86ktest, HasDQI>; +defm KORTEST : avx512_mask_testop_w<0x98, "kortest", X86kortest, SSE_PTEST>; +defm KTEST : avx512_mask_testop_w<0x99, "ktest", X86ktest, SSE_PTEST, HasDQI>; // Mask shift multiclass avx512_mask_shiftop<bits<8> opc, string OpcodeStr, RegisterClass KRC, - SDNode OpNode> { + SDNode OpNode, OpndItins itins> { let Predicates = [HasAVX512] in def ri : Ii8<opc, MRMSrcReg, (outs KRC:$dst), (ins KRC:$src, u8imm:$imm), !strconcat(OpcodeStr, "\t{$imm, $src, $dst|$dst, $src, $imm}"), - [(set KRC:$dst, (OpNode KRC:$src, (i8 imm:$imm)))]>; + [(set KRC:$dst, (OpNode KRC:$src, (i8 imm:$imm)))], + itins.rr>, Sched<[itins.Sched]>; } multiclass avx512_mask_shiftop_w<bits<8> opc1, bits<8> opc2, string OpcodeStr, - SDNode OpNode> { - defm W : avx512_mask_shiftop<opc1, !strconcat(OpcodeStr, "w"), VK16, OpNode>, - VEX, TAPD, VEX_W; + SDNode OpNode, OpndItins itins> { + defm W : avx512_mask_shiftop<opc1, !strconcat(OpcodeStr, "w"), VK16, OpNode, + itins>, VEX, TAPD, VEX_W; let Predicates = [HasDQI] in - defm B : avx512_mask_shiftop<opc1, !strconcat(OpcodeStr, "b"), VK8, OpNode>, - VEX, TAPD; + defm B : avx512_mask_shiftop<opc1, !strconcat(OpcodeStr, "b"), VK8, OpNode, + itins>, VEX, TAPD; let Predicates = [HasBWI] in { - defm Q : avx512_mask_shiftop<opc2, !strconcat(OpcodeStr, "q"), VK64, OpNode>, - VEX, TAPD, VEX_W; - defm D : avx512_mask_shiftop<opc2, !strconcat(OpcodeStr, "d"), VK32, OpNode>, - VEX, TAPD; + defm Q : avx512_mask_shiftop<opc2, !strconcat(OpcodeStr, "q"), VK64, OpNode, + itins>, VEX, TAPD, VEX_W; + defm D : avx512_mask_shiftop<opc2, !strconcat(OpcodeStr, "d"), VK32, OpNode, + itins>, VEX, TAPD; } } -defm KSHIFTL : avx512_mask_shiftop_w<0x32, 0x33, "kshiftl", X86kshiftl>; -defm KSHIFTR : avx512_mask_shiftop_w<0x30, 0x31, "kshiftr", X86kshiftr>; +defm KSHIFTL : avx512_mask_shiftop_w<0x32, 0x33, "kshiftl", X86kshiftl, SSE_PSHUF>; +defm KSHIFTR : avx512_mask_shiftop_w<0x30, 0x31, "kshiftr", X86kshiftr, SSE_PSHUF>; multiclass axv512_icmp_packed_no_vlx_lowering<SDNode OpNode, string InstStr> { def : Pat<(v8i1 (OpNode (v8i32 VR256X:$src1), (v8i32 VR256X:$src2))), @@ -3067,23 +2985,14 @@ def : Pat<(v8i1 (OpNode (v8i32 VR256X:$src1), (v8i32 VR256X:$src2))), (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm))), VK8)>; -def : Pat<(insert_subvector (v16i1 immAllZerosV), - (v8i1 (OpNode (v8i32 VR256X:$src1), (v8i32 VR256X:$src2))), - (i64 0)), - (KSHIFTRWri (KSHIFTLWri (!cast<Instruction>(InstStr##Zrr) - (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), - (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm))), - (i8 8)), (i8 8))>; - -def : Pat<(insert_subvector (v16i1 immAllZerosV), - (v8i1 (and VK8:$mask, - (OpNode (v8i32 VR256X:$src1), (v8i32 VR256X:$src2)))), - (i64 0)), - (KSHIFTRWri (KSHIFTLWri (!cast<Instruction>(InstStr##Zrrk) - (COPY_TO_REGCLASS VK8:$mask, VK16), - (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), - (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm))), - (i8 8)), (i8 8))>; +def : Pat<(v8i1 (and VK8:$mask, + (OpNode (v8i32 VR256X:$src1), (v8i32 VR256X:$src2)))), + (COPY_TO_REGCLASS + (!cast<Instruction>(InstStr##Zrrk) + (COPY_TO_REGCLASS VK8:$mask, VK16), + (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), + (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm))), + VK8)>; } multiclass axv512_icmp_packed_cc_no_vlx_lowering<SDNode OpNode, string InstStr, @@ -3094,25 +3003,13 @@ def : Pat<(v8i1 (OpNode (_.info256.VT VR256X:$src1), (_.info256.VT VR256X:$src2) (_.info512.VT (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm)), imm:$cc), VK8)>; -def : Pat<(insert_subvector (v16i1 immAllZerosV), - (v8i1 (OpNode (_.info256.VT VR256X:$src1), (_.info256.VT VR256X:$src2), imm:$cc)), - (i64 0)), - (KSHIFTRWri (KSHIFTLWri (!cast<Instruction>(InstStr##Zrri) - (_.info512.VT (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), - (_.info512.VT (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm)), - imm:$cc), - (i8 8)), (i8 8))>; - -def : Pat<(insert_subvector (v16i1 immAllZerosV), - (v8i1 (and VK8:$mask, - (OpNode (_.info256.VT VR256X:$src1), (_.info256.VT VR256X:$src2), imm:$cc))), - (i64 0)), - (KSHIFTRWri (KSHIFTLWri (!cast<Instruction>(InstStr##Zrrik) - (COPY_TO_REGCLASS VK8:$mask, VK16), - (_.info512.VT (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), - (_.info512.VT (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm)), - imm:$cc), - (i8 8)), (i8 8))>; +def : Pat<(v8i1 (and VK8:$mask, (OpNode (_.info256.VT VR256X:$src1), + (_.info256.VT VR256X:$src2), imm:$cc))), + (COPY_TO_REGCLASS (!cast<Instruction>(InstStr##Zrrik) + (COPY_TO_REGCLASS VK8:$mask, VK16), + (_.info512.VT (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), + (_.info512.VT (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm)), + imm:$cc), VK8)>; } let Predicates = [HasAVX512, NoVLX] in { @@ -3127,7 +3024,8 @@ let Predicates = [HasAVX512, NoVLX] in { // Mask setting all 0s or 1s multiclass avx512_mask_setop<RegisterClass KRC, ValueType VT, PatFrag Val> { let Predicates = [HasAVX512] in - let isReMaterializable = 1, isAsCheapAsAMove = 1, isPseudo = 1 in + let isReMaterializable = 1, isAsCheapAsAMove = 1, isPseudo = 1, + SchedRW = [WriteZero] in def #NAME# : I<0, Pseudo, (outs KRC:$dst), (ins), "", [(set KRC:$dst, (VT Val))]>; } @@ -3189,21 +3087,48 @@ defm : operation_subvector_mask_lowering<VK16, v16i1, VK64, v64i1>; defm : operation_subvector_mask_lowering<VK32, v32i1, VK64, v64i1>; -def : Pat<(v2i1 (extract_subvector (v4i1 VK4:$src), (iPTR 2))), - (v2i1 (COPY_TO_REGCLASS - (KSHIFTRWri (COPY_TO_REGCLASS VK4:$src, VK16), (i8 2)), - VK2))>; -def : Pat<(v4i1 (extract_subvector (v8i1 VK8:$src), (iPTR 4))), - (v4i1 (COPY_TO_REGCLASS - (KSHIFTRWri (COPY_TO_REGCLASS VK8:$src, VK16), (i8 4)), - VK4))>; -def : Pat<(v8i1 (extract_subvector (v16i1 VK16:$src), (iPTR 8))), - (v8i1 (COPY_TO_REGCLASS (KSHIFTRWri VK16:$src, (i8 8)), VK8))>; -def : Pat<(v16i1 (extract_subvector (v32i1 VK32:$src), (iPTR 16))), - (v16i1 (COPY_TO_REGCLASS (KSHIFTRDri VK32:$src, (i8 16)), VK16))>; -def : Pat<(v32i1 (extract_subvector (v64i1 VK64:$src), (iPTR 32))), - (v32i1 (COPY_TO_REGCLASS (KSHIFTRQri VK64:$src, (i8 32)), VK32))>; +multiclass vextract_for_mask_to_mask<string InstrStr, X86KVectorVTInfo From, + X86KVectorVTInfo To, Predicate prd> { +let Predicates = [prd] in + def : + Pat<(To.KVT(extract_subvector(From.KVT From.KRC:$src), (iPTR imm:$imm8))), + (To.KVT(COPY_TO_REGCLASS + (!cast<Instruction>(InstrStr#"ri") From.KVT:$src, + (i8 imm:$imm8)), To.KRC))>; +} + +multiclass vextract_for_mask_to_mask_legal_w<X86KVectorVTInfo From, + X86KVectorVTInfo To> { +def : + Pat<(To.KVT(extract_subvector(From.KVT From.KRC:$src), (iPTR imm:$imm8))), + (To.KVT(COPY_TO_REGCLASS + (KSHIFTRWri(COPY_TO_REGCLASS From.KRC:$src, VK16), + (i8 imm:$imm8)), To.KRC))>; +} + +defm : vextract_for_mask_to_mask_legal_w<v2i1_info, v1i1_info>; +defm : vextract_for_mask_to_mask_legal_w<v4i1_info, v1i1_info>; +defm : vextract_for_mask_to_mask_legal_w<v8i1_info, v1i1_info>; +defm : vextract_for_mask_to_mask_legal_w<v4i1_info, v2i1_info>; +defm : vextract_for_mask_to_mask_legal_w<v8i1_info, v2i1_info>; +defm : vextract_for_mask_to_mask_legal_w<v8i1_info, v4i1_info>; + +defm : vextract_for_mask_to_mask<"KSHIFTRW", v16i1_info, v1i1_info, HasAVX512>; +defm : vextract_for_mask_to_mask<"KSHIFTRD", v32i1_info, v1i1_info, HasBWI>; +defm : vextract_for_mask_to_mask<"KSHIFTRQ", v64i1_info, v1i1_info, HasBWI>; +defm : vextract_for_mask_to_mask<"KSHIFTRW", v16i1_info, v2i1_info, HasAVX512>; +defm : vextract_for_mask_to_mask<"KSHIFTRD", v32i1_info, v2i1_info, HasBWI>; +defm : vextract_for_mask_to_mask<"KSHIFTRQ", v64i1_info, v2i1_info, HasBWI>; +defm : vextract_for_mask_to_mask<"KSHIFTRW", v16i1_info, v4i1_info, HasAVX512>; +defm : vextract_for_mask_to_mask<"KSHIFTRD", v32i1_info, v4i1_info, HasBWI>; +defm : vextract_for_mask_to_mask<"KSHIFTRQ", v64i1_info, v4i1_info, HasBWI>; +defm : vextract_for_mask_to_mask<"KSHIFTRW", v16i1_info, v8i1_info, HasAVX512>; +defm : vextract_for_mask_to_mask<"KSHIFTRD", v32i1_info, v8i1_info, HasBWI>; +defm : vextract_for_mask_to_mask<"KSHIFTRQ", v64i1_info, v8i1_info, HasBWI>; +defm : vextract_for_mask_to_mask<"KSHIFTRD", v32i1_info, v16i1_info, HasBWI>; +defm : vextract_for_mask_to_mask<"KSHIFTRQ", v64i1_info, v16i1_info, HasBWI>; +defm : vextract_for_mask_to_mask<"KSHIFTRQ", v64i1_info, v32i1_info, HasBWI>; // Patterns for kmask shift multiclass mask_shift_lowering<RegisterClass RC, ValueType VT> { @@ -3227,39 +3152,40 @@ defm : mask_shift_lowering<VK2, v2i1>, Requires<[HasAVX512]>; // -multiclass avx512_load<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - PatFrag ld_frag, PatFrag mload, - SDPatternOperator SelectOprr = vselect> { +multiclass avx512_load<bits<8> opc, string OpcodeStr, MoveLoadStoreItins itins, + X86VectorVTInfo _, PatFrag ld_frag, PatFrag mload, + bit NoRMPattern = 0, + SDPatternOperator SelectOprr = vselect> { let hasSideEffects = 0 in { def rr : AVX512PI<opc, MRMSrcReg, (outs _.RC:$dst), (ins _.RC:$src), !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), [], - _.ExeDomain>, EVEX; + _.ExeDomain, itins.rr>, EVEX, Sched<[WriteMove]>; def rrkz : AVX512PI<opc, MRMSrcReg, (outs _.RC:$dst), (ins _.KRCWM:$mask, _.RC:$src), !strconcat(OpcodeStr, "\t{$src, ${dst} {${mask}} {z}|", "${dst} {${mask}} {z}, $src}"), [(set _.RC:$dst, (_.VT (SelectOprr _.KRCWM:$mask, (_.VT _.RC:$src), - _.ImmAllZerosV)))], _.ExeDomain>, - EVEX, EVEX_KZ; + _.ImmAllZerosV)))], _.ExeDomain, + itins.rr>, EVEX, EVEX_KZ, Sched<[WriteMove]>; - let canFoldAsLoad = 1, isReMaterializable = 1, - SchedRW = [WriteLoad] in + let mayLoad = 1, canFoldAsLoad = 1, isReMaterializable = 1 in def rm : AVX512PI<opc, MRMSrcMem, (outs _.RC:$dst), (ins _.MemOp:$src), !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), - [(set _.RC:$dst, (_.VT (bitconvert (ld_frag addr:$src))))], - _.ExeDomain>, EVEX; + !if(NoRMPattern, [], + [(set _.RC:$dst, + (_.VT (bitconvert (ld_frag addr:$src))))]), + _.ExeDomain, itins.rm>, EVEX, Sched<[WriteLoad]>; let Constraints = "$src0 = $dst", isConvertibleToThreeAddress = 1 in { - def rrk : AVX512PI<opc, MRMSrcReg, (outs _.RC:$dst), - (ins _.RC:$src0, _.KRCWM:$mask, _.RC:$src1), - !strconcat(OpcodeStr, "\t{$src1, ${dst} {${mask}}|", - "${dst} {${mask}}, $src1}"), - [(set _.RC:$dst, (_.VT (SelectOprr _.KRCWM:$mask, - (_.VT _.RC:$src1), - (_.VT _.RC:$src0))))], _.ExeDomain>, - EVEX, EVEX_K; - let SchedRW = [WriteLoad] in + def rrk : AVX512PI<opc, MRMSrcReg, (outs _.RC:$dst), + (ins _.RC:$src0, _.KRCWM:$mask, _.RC:$src1), + !strconcat(OpcodeStr, "\t{$src1, ${dst} {${mask}}|", + "${dst} {${mask}}, $src1}"), + [(set _.RC:$dst, (_.VT (SelectOprr _.KRCWM:$mask, + (_.VT _.RC:$src1), + (_.VT _.RC:$src0))))], _.ExeDomain, + itins.rr>, EVEX, EVEX_K, Sched<[WriteMove]>; def rmk : AVX512PI<opc, MRMSrcMem, (outs _.RC:$dst), (ins _.RC:$src0, _.KRCWM:$mask, _.MemOp:$src1), !strconcat(OpcodeStr, "\t{$src1, ${dst} {${mask}}|", @@ -3267,16 +3193,16 @@ multiclass avx512_load<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, [(set _.RC:$dst, (_.VT (vselect _.KRCWM:$mask, (_.VT (bitconvert (ld_frag addr:$src1))), - (_.VT _.RC:$src0))))], _.ExeDomain>, EVEX, EVEX_K; + (_.VT _.RC:$src0))))], _.ExeDomain, itins.rm>, + EVEX, EVEX_K, Sched<[WriteLoad]>; } - let SchedRW = [WriteLoad] in def rmkz : AVX512PI<opc, MRMSrcMem, (outs _.RC:$dst), (ins _.KRCWM:$mask, _.MemOp:$src), OpcodeStr #"\t{$src, ${dst} {${mask}} {z}|"# "${dst} {${mask}} {z}, $src}", [(set _.RC:$dst, (_.VT (vselect _.KRCWM:$mask, (_.VT (bitconvert (ld_frag addr:$src))), _.ImmAllZerosV)))], - _.ExeDomain>, EVEX, EVEX_KZ; + _.ExeDomain, itins.rm>, EVEX, EVEX_KZ, Sched<[WriteLoad]>; } def : Pat<(_.VT (mload addr:$ptr, _.KRCWM:$mask, undef)), (!cast<Instruction>(NAME#_.ZSuffix##rmkz) _.KRCWM:$mask, addr:$ptr)>; @@ -3293,59 +3219,72 @@ multiclass avx512_alignedload_vl<bits<8> opc, string OpcodeStr, AVX512VLVectorVTInfo _, Predicate prd> { let Predicates = [prd] in - defm Z : avx512_load<opc, OpcodeStr, _.info512, _.info512.AlignedLdFrag, - masked_load_aligned512>, EVEX_V512; + defm Z : avx512_load<opc, OpcodeStr, SSE_MOVA, _.info512, + _.info512.AlignedLdFrag, masked_load_aligned512>, + EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_load<opc, OpcodeStr, _.info256, _.info256.AlignedLdFrag, - masked_load_aligned256>, EVEX_V256; - defm Z128 : avx512_load<opc, OpcodeStr, _.info128, _.info128.AlignedLdFrag, - masked_load_aligned128>, EVEX_V128; + defm Z256 : avx512_load<opc, OpcodeStr, SSE_MOVA, _.info256, + _.info256.AlignedLdFrag, masked_load_aligned256>, + EVEX_V256; + defm Z128 : avx512_load<opc, OpcodeStr, SSE_MOVA, _.info128, + _.info128.AlignedLdFrag, masked_load_aligned128>, + EVEX_V128; } } multiclass avx512_load_vl<bits<8> opc, string OpcodeStr, AVX512VLVectorVTInfo _, Predicate prd, + bit NoRMPattern = 0, SDPatternOperator SelectOprr = vselect> { let Predicates = [prd] in - defm Z : avx512_load<opc, OpcodeStr, _.info512, _.info512.LdFrag, - masked_load_unaligned, SelectOprr>, EVEX_V512; + defm Z : avx512_load<opc, OpcodeStr, SSE_MOVU, _.info512, _.info512.LdFrag, + masked_load_unaligned, NoRMPattern, + SelectOprr>, EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_load<opc, OpcodeStr, _.info256, _.info256.LdFrag, - masked_load_unaligned, SelectOprr>, EVEX_V256; - defm Z128 : avx512_load<opc, OpcodeStr, _.info128, _.info128.LdFrag, - masked_load_unaligned, SelectOprr>, EVEX_V128; + defm Z256 : avx512_load<opc, OpcodeStr, SSE_MOVU, _.info256, _.info256.LdFrag, + masked_load_unaligned, NoRMPattern, + SelectOprr>, EVEX_V256; + defm Z128 : avx512_load<opc, OpcodeStr, SSE_MOVU, _.info128, _.info128.LdFrag, + masked_load_unaligned, NoRMPattern, + SelectOprr>, EVEX_V128; } } -multiclass avx512_store<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - PatFrag st_frag, PatFrag mstore, string Name> { - +multiclass avx512_store<bits<8> opc, string OpcodeStr, MoveLoadStoreItins itins, + X86VectorVTInfo _, PatFrag st_frag, PatFrag mstore, + string Name, bit NoMRPattern = 0> { let hasSideEffects = 0 in { def rr_REV : AVX512PI<opc, MRMDestReg, (outs _.RC:$dst), (ins _.RC:$src), OpcodeStr # ".s\t{$src, $dst|$dst, $src}", - [], _.ExeDomain>, EVEX, FoldGenData<Name#rr>; + [], _.ExeDomain, itins.rr>, EVEX, FoldGenData<Name#rr>, + Sched<[WriteMove]>; def rrk_REV : AVX512PI<opc, MRMDestReg, (outs _.RC:$dst), (ins _.KRCWM:$mask, _.RC:$src), OpcodeStr # ".s\t{$src, ${dst} {${mask}}|"# "${dst} {${mask}}, $src}", - [], _.ExeDomain>, EVEX, EVEX_K, FoldGenData<Name#rrk>; + [], _.ExeDomain, itins.rr>, EVEX, EVEX_K, + FoldGenData<Name#rrk>, Sched<[WriteMove]>; def rrkz_REV : AVX512PI<opc, MRMDestReg, (outs _.RC:$dst), (ins _.KRCWM:$mask, _.RC:$src), OpcodeStr # ".s\t{$src, ${dst} {${mask}} {z}|" # "${dst} {${mask}} {z}, $src}", - [], _.ExeDomain>, EVEX, EVEX_KZ, FoldGenData<Name#rrkz>; + [], _.ExeDomain, itins.rr>, EVEX, EVEX_KZ, + FoldGenData<Name#rrkz>, Sched<[WriteMove]>; } + let hasSideEffects = 0, mayStore = 1 in def mr : AVX512PI<opc, MRMDestMem, (outs), (ins _.MemOp:$dst, _.RC:$src), !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), - [(st_frag (_.VT _.RC:$src), addr:$dst)], _.ExeDomain>, EVEX; + !if(NoMRPattern, [], + [(st_frag (_.VT _.RC:$src), addr:$dst)]), + _.ExeDomain, itins.mr>, EVEX, Sched<[WriteStore]>; def mrk : AVX512PI<opc, MRMDestMem, (outs), (ins _.MemOp:$dst, _.KRCWM:$mask, _.RC:$src), OpcodeStr # "\t{$src, ${dst} {${mask}}|${dst} {${mask}}, $src}", - [], _.ExeDomain>, EVEX, EVEX_K; + [], _.ExeDomain, itins.mr>, EVEX, EVEX_K, Sched<[WriteStore]>; def: Pat<(mstore addr:$ptr, _.KRCWM:$mask, (_.VT _.RC:$src)), (!cast<Instruction>(NAME#_.ZSuffix##mrk) addr:$ptr, @@ -3355,16 +3294,18 @@ multiclass avx512_store<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, multiclass avx512_store_vl< bits<8> opc, string OpcodeStr, AVX512VLVectorVTInfo _, Predicate prd, - string Name> { + string Name, bit NoMRPattern = 0> { let Predicates = [prd] in - defm Z : avx512_store<opc, OpcodeStr, _.info512, store, - masked_store_unaligned, Name#Z>, EVEX_V512; + defm Z : avx512_store<opc, OpcodeStr, SSE_MOVU, _.info512, store, + masked_store_unaligned, Name#Z, NoMRPattern>, EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_store<opc, OpcodeStr, _.info256, store, - masked_store_unaligned, Name#Z256>, EVEX_V256; - defm Z128 : avx512_store<opc, OpcodeStr, _.info128, store, - masked_store_unaligned, Name#Z128>, EVEX_V128; + defm Z256 : avx512_store<opc, OpcodeStr, SSE_MOVU, _.info256, store, + masked_store_unaligned, Name#Z256, + NoMRPattern>, EVEX_V256; + defm Z128 : avx512_store<opc, OpcodeStr, SSE_MOVU, _.info128, store, + masked_store_unaligned, Name#Z128, + NoMRPattern>, EVEX_V128; } } @@ -3372,13 +3313,13 @@ multiclass avx512_alignedstore_vl<bits<8> opc, string OpcodeStr, AVX512VLVectorVTInfo _, Predicate prd, string Name> { let Predicates = [prd] in - defm Z : avx512_store<opc, OpcodeStr, _.info512, alignedstore512, + defm Z : avx512_store<opc, OpcodeStr, SSE_MOVA, _.info512, alignedstore, masked_store_aligned512, Name#Z>, EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_store<opc, OpcodeStr, _.info256, alignedstore256, + defm Z256 : avx512_store<opc, OpcodeStr, SSE_MOVA, _.info256, alignedstore, masked_store_aligned256, Name#Z256>, EVEX_V256; - defm Z128 : avx512_store<opc, OpcodeStr, _.info128, alignedstore, + defm Z128 : avx512_store<opc, OpcodeStr, SSE_MOVA, _.info128, alignedstore, masked_store_aligned128, Name#Z128>, EVEX_V128; } } @@ -3396,13 +3337,13 @@ defm VMOVAPD : avx512_alignedload_vl<0x28, "vmovapd", avx512vl_f64_info, PD, VEX_W, EVEX_CD8<64, CD8VF>; defm VMOVUPS : avx512_load_vl<0x10, "vmovups", avx512vl_f32_info, HasAVX512, - null_frag>, + 0, null_frag>, avx512_store_vl<0x11, "vmovups", avx512vl_f32_info, HasAVX512, "VMOVUPS">, PS, EVEX_CD8<32, CD8VF>; defm VMOVUPD : avx512_load_vl<0x10, "vmovupd", avx512vl_f64_info, HasAVX512, - null_frag>, + 0, null_frag>, avx512_store_vl<0x11, "vmovupd", avx512vl_f64_info, HasAVX512, "VMOVUPD">, PD, VEX_W, EVEX_CD8<64, CD8VF>; @@ -3419,24 +3360,24 @@ defm VMOVDQA64 : avx512_alignedload_vl<0x6F, "vmovdqa64", avx512vl_i64_info, HasAVX512, "VMOVDQA64">, PD, VEX_W, EVEX_CD8<64, CD8VF>; -defm VMOVDQU8 : avx512_load_vl<0x6F, "vmovdqu8", avx512vl_i8_info, HasBWI>, +defm VMOVDQU8 : avx512_load_vl<0x6F, "vmovdqu8", avx512vl_i8_info, HasBWI, 1>, avx512_store_vl<0x7F, "vmovdqu8", avx512vl_i8_info, - HasBWI, "VMOVDQU8">, + HasBWI, "VMOVDQU8", 1>, XD, EVEX_CD8<8, CD8VF>; -defm VMOVDQU16 : avx512_load_vl<0x6F, "vmovdqu16", avx512vl_i16_info, HasBWI>, +defm VMOVDQU16 : avx512_load_vl<0x6F, "vmovdqu16", avx512vl_i16_info, HasBWI, 1>, avx512_store_vl<0x7F, "vmovdqu16", avx512vl_i16_info, - HasBWI, "VMOVDQU16">, + HasBWI, "VMOVDQU16", 1>, XD, VEX_W, EVEX_CD8<16, CD8VF>; defm VMOVDQU32 : avx512_load_vl<0x6F, "vmovdqu32", avx512vl_i32_info, HasAVX512, - null_frag>, + 0, null_frag>, avx512_store_vl<0x7F, "vmovdqu32", avx512vl_i32_info, HasAVX512, "VMOVDQU32">, XS, EVEX_CD8<32, CD8VF>; defm VMOVDQU64 : avx512_load_vl<0x6F, "vmovdqu64", avx512vl_i64_info, HasAVX512, - null_frag>, + 0, null_frag>, avx512_store_vl<0x7F, "vmovdqu64", avx512vl_i64_info, HasAVX512, "VMOVDQU64">, XS, VEX_W, EVEX_CD8<64, CD8VF>; @@ -3447,24 +3388,24 @@ defm VMOVDQU64 : avx512_load_vl<0x6F, "vmovdqu64", avx512vl_i64_info, HasAVX512, let isReMaterializable = 1, canFoldAsLoad = 1, isPseudo = 1, SchedRW = [WriteLoad], mayLoad = 1, hasSideEffects = 0 in { def VMOVAPSZ128rm_NOVLX : I<0, Pseudo, (outs VR128X:$dst), (ins f128mem:$src), - "", []>; + "", [], IIC_SSE_MOVA_P_RM>; def VMOVAPSZ256rm_NOVLX : I<0, Pseudo, (outs VR256X:$dst), (ins f256mem:$src), - "", []>; + "", [], IIC_SSE_MOVA_P_RM>; def VMOVUPSZ128rm_NOVLX : I<0, Pseudo, (outs VR128X:$dst), (ins f128mem:$src), - "", []>; + "", [], IIC_SSE_MOVA_P_RM>; def VMOVUPSZ256rm_NOVLX : I<0, Pseudo, (outs VR256X:$dst), (ins f256mem:$src), - "", []>; + "", [], IIC_SSE_MOVA_P_RM>; } -let isPseudo = 1, mayStore = 1, hasSideEffects = 0 in { +let isPseudo = 1, SchedRW = [WriteStore], mayStore = 1, hasSideEffects = 0 in { def VMOVAPSZ128mr_NOVLX : I<0, Pseudo, (outs), (ins f128mem:$dst, VR128X:$src), - "", []>; + "", [], IIC_SSE_MOVA_P_MR>; def VMOVAPSZ256mr_NOVLX : I<0, Pseudo, (outs), (ins f256mem:$dst, VR256X:$src), - "", []>; + "", [], IIC_SSE_MOVA_P_MR>; def VMOVUPSZ128mr_NOVLX : I<0, Pseudo, (outs), (ins f128mem:$dst, VR128X:$src), - "", []>; + "", [], IIC_SSE_MOVA_P_MR>; def VMOVUPSZ256mr_NOVLX : I<0, Pseudo, (outs), (ins f256mem:$dst, VR256X:$src), - "", []>; + "", [], IIC_SSE_MOVA_P_MR>; } def : Pat<(v8i64 (vselect VK8WM:$mask, (bc_v8i64 (v16i32 immAllZerosV)), @@ -3511,8 +3452,20 @@ def : Pat<(v8i32 (vselect (v8i1 VK8WM:$mask), (v8i32 VR256X:$src1), sub_ymm)>; } -let Predicates = [HasVLX, NoBWI] in { - // 128-bit load/store without BWI. +let Predicates = [HasAVX512] in { + // 512-bit store. + def : Pat<(alignedstore (v32i16 VR512:$src), addr:$dst), + (VMOVDQA32Zmr addr:$dst, VR512:$src)>; + def : Pat<(alignedstore (v64i8 VR512:$src), addr:$dst), + (VMOVDQA32Zmr addr:$dst, VR512:$src)>; + def : Pat<(store (v32i16 VR512:$src), addr:$dst), + (VMOVDQU32Zmr addr:$dst, VR512:$src)>; + def : Pat<(store (v64i8 VR512:$src), addr:$dst), + (VMOVDQU32Zmr addr:$dst, VR512:$src)>; +} + +let Predicates = [HasVLX] in { + // 128-bit store. def : Pat<(alignedstore (v8i16 VR128X:$src), addr:$dst), (VMOVDQA32Z128mr addr:$dst, VR128X:$src)>; def : Pat<(alignedstore (v16i8 VR128X:$src), addr:$dst), @@ -3522,10 +3475,10 @@ let Predicates = [HasVLX, NoBWI] in { def : Pat<(store (v16i8 VR128X:$src), addr:$dst), (VMOVDQU32Z128mr addr:$dst, VR128X:$src)>; - // 256-bit load/store without BWI. - def : Pat<(alignedstore256 (v16i16 VR256X:$src), addr:$dst), + // 256-bit store. + def : Pat<(alignedstore (v16i16 VR256X:$src), addr:$dst), (VMOVDQA32Z256mr addr:$dst, VR256X:$src)>; - def : Pat<(alignedstore256 (v32i8 VR256X:$src), addr:$dst), + def : Pat<(alignedstore (v32i8 VR256X:$src), addr:$dst), (VMOVDQA32Z256mr addr:$dst, VR256X:$src)>; def : Pat<(store (v16i16 VR256X:$src), addr:$dst), (VMOVDQU32Z256mr addr:$dst, VR256X:$src)>; @@ -3533,129 +3486,75 @@ let Predicates = [HasVLX, NoBWI] in { (VMOVDQU32Z256mr addr:$dst, VR256X:$src)>; } -let Predicates = [HasVLX] in { - // Special patterns for storing subvector extracts of lower 128-bits of 256. - // Its cheaper to just use VMOVAPS/VMOVUPS instead of VEXTRACTF128mr - def : Pat<(alignedstore (v2f64 (extract_subvector - (v4f64 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVAPDZ128mr addr:$dst, (v2f64 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; - def : Pat<(alignedstore (v4f32 (extract_subvector - (v8f32 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVAPSZ128mr addr:$dst, (v4f32 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; - def : Pat<(alignedstore (v2i64 (extract_subvector - (v4i64 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVDQA64Z128mr addr:$dst, (v2i64 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; - def : Pat<(alignedstore (v4i32 (extract_subvector - (v8i32 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVDQA32Z128mr addr:$dst, (v4i32 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; - def : Pat<(alignedstore (v8i16 (extract_subvector - (v16i16 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVDQA32Z128mr addr:$dst, (v8i16 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; - def : Pat<(alignedstore (v16i8 (extract_subvector - (v32i8 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVDQA32Z128mr addr:$dst, (v16i8 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; +multiclass masked_move_for_extract<string InstrStr, X86VectorVTInfo From, + X86VectorVTInfo To, X86VectorVTInfo Cast> { + def : Pat<(Cast.VT (vselect Cast.KRCWM:$mask, + (bitconvert + (To.VT (extract_subvector + (From.VT From.RC:$src), (iPTR 0)))), + To.RC:$src0)), + (Cast.VT (!cast<Instruction>(InstrStr#"rrk") + Cast.RC:$src0, Cast.KRCWM:$mask, + (EXTRACT_SUBREG From.RC:$src, To.SubRegIdx)))>; - def : Pat<(store (v2f64 (extract_subvector - (v4f64 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVUPDZ128mr addr:$dst, (v2f64 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; - def : Pat<(store (v4f32 (extract_subvector - (v8f32 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVUPSZ128mr addr:$dst, (v4f32 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; - def : Pat<(store (v2i64 (extract_subvector - (v4i64 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVDQU64Z128mr addr:$dst, (v2i64 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; - def : Pat<(store (v4i32 (extract_subvector - (v8i32 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVDQU32Z128mr addr:$dst, (v4i32 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; - def : Pat<(store (v8i16 (extract_subvector - (v16i16 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVDQU32Z128mr addr:$dst, (v8i16 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; - def : Pat<(store (v16i8 (extract_subvector - (v32i8 VR256X:$src), (iPTR 0))), addr:$dst), - (VMOVDQU32Z128mr addr:$dst, (v16i8 (EXTRACT_SUBREG VR256X:$src,sub_xmm)))>; + def : Pat<(Cast.VT (vselect Cast.KRCWM:$mask, + (bitconvert + (To.VT (extract_subvector + (From.VT From.RC:$src), (iPTR 0)))), + Cast.ImmAllZerosV)), + (Cast.VT (!cast<Instruction>(InstrStr#"rrkz") + Cast.KRCWM:$mask, + (EXTRACT_SUBREG From.RC:$src, To.SubRegIdx)))>; +} - // Special patterns for storing subvector extracts of lower 128-bits of 512. - // Its cheaper to just use VMOVAPS/VMOVUPS instead of VEXTRACTF128mr - def : Pat<(alignedstore (v2f64 (extract_subvector - (v8f64 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVAPDZ128mr addr:$dst, (v2f64 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(alignedstore (v4f32 (extract_subvector - (v16f32 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVAPSZ128mr addr:$dst, (v4f32 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(alignedstore (v2i64 (extract_subvector - (v8i64 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQA64Z128mr addr:$dst, (v2i64 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(alignedstore (v4i32 (extract_subvector - (v16i32 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQA32Z128mr addr:$dst, (v4i32 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(alignedstore (v8i16 (extract_subvector - (v32i16 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQA32Z128mr addr:$dst, (v8i16 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(alignedstore (v16i8 (extract_subvector - (v64i8 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQA32Z128mr addr:$dst, (v16i8 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(store (v2f64 (extract_subvector - (v8f64 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVUPDZ128mr addr:$dst, (v2f64 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(store (v4f32 (extract_subvector - (v16f32 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVUPSZ128mr addr:$dst, (v4f32 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(store (v2i64 (extract_subvector - (v8i64 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQU64Z128mr addr:$dst, (v2i64 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(store (v4i32 (extract_subvector - (v16i32 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQU32Z128mr addr:$dst, (v4i32 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(store (v8i16 (extract_subvector - (v32i16 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQU32Z128mr addr:$dst, (v8i16 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; - def : Pat<(store (v16i8 (extract_subvector - (v64i8 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQU32Z128mr addr:$dst, (v16i8 (EXTRACT_SUBREG VR512:$src,sub_xmm)))>; +let Predicates = [HasVLX] in { +// A masked extract from the first 128-bits of a 256-bit vector can be +// implemented with masked move. +defm : masked_move_for_extract<"VMOVDQA64Z128", v4i64x_info, v2i64x_info, v2i64x_info>; +defm : masked_move_for_extract<"VMOVDQA64Z128", v8i32x_info, v4i32x_info, v2i64x_info>; +defm : masked_move_for_extract<"VMOVDQA64Z128", v16i16x_info, v8i16x_info, v2i64x_info>; +defm : masked_move_for_extract<"VMOVDQA64Z128", v32i8x_info, v16i8x_info, v2i64x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z128", v4i64x_info, v2i64x_info, v4i32x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z128", v8i32x_info, v4i32x_info, v4i32x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z128", v16i16x_info, v8i16x_info, v4i32x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z128", v32i8x_info, v16i8x_info, v4i32x_info>; +defm : masked_move_for_extract<"VMOVAPDZ128", v4f64x_info, v2f64x_info, v2f64x_info>; +defm : masked_move_for_extract<"VMOVAPDZ128", v8f32x_info, v4f32x_info, v2f64x_info>; +defm : masked_move_for_extract<"VMOVAPSZ128", v4f64x_info, v2f64x_info, v4f32x_info>; +defm : masked_move_for_extract<"VMOVAPSZ128", v8f32x_info, v4f32x_info, v4f32x_info>; - // Special patterns for storing subvector extracts of lower 256-bits of 512. - // Its cheaper to just use VMOVAPS/VMOVUPS instead of VEXTRACTF128mr - def : Pat<(alignedstore256 (v4f64 (extract_subvector - (v8f64 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVAPDZ256mr addr:$dst, (v4f64 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; - def : Pat<(alignedstore256 (v8f32 (extract_subvector - (v16f32 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVAPSZ256mr addr:$dst, (v8f32 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; - def : Pat<(alignedstore256 (v4i64 (extract_subvector - (v8i64 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQA64Z256mr addr:$dst, (v4i64 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; - def : Pat<(alignedstore256 (v8i32 (extract_subvector - (v16i32 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQA32Z256mr addr:$dst, (v8i32 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; - def : Pat<(alignedstore256 (v16i16 (extract_subvector - (v32i16 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQA32Z256mr addr:$dst, (v16i16 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; - def : Pat<(alignedstore256 (v32i8 (extract_subvector - (v64i8 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQA32Z256mr addr:$dst, (v32i8 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; +// A masked extract from the first 128-bits of a 512-bit vector can be +// implemented with masked move. +defm : masked_move_for_extract<"VMOVDQA64Z128", v8i64_info, v2i64x_info, v2i64x_info>; +defm : masked_move_for_extract<"VMOVDQA64Z128", v16i32_info, v4i32x_info, v2i64x_info>; +defm : masked_move_for_extract<"VMOVDQA64Z128", v32i16_info, v8i16x_info, v2i64x_info>; +defm : masked_move_for_extract<"VMOVDQA64Z128", v64i8_info, v16i8x_info, v2i64x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z128", v8i64_info, v2i64x_info, v4i32x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z128", v16i32_info, v4i32x_info, v4i32x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z128", v32i16_info, v8i16x_info, v4i32x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z128", v64i8_info, v16i8x_info, v4i32x_info>; +defm : masked_move_for_extract<"VMOVAPDZ128", v8f64_info, v2f64x_info, v2f64x_info>; +defm : masked_move_for_extract<"VMOVAPDZ128", v16f32_info, v4f32x_info, v2f64x_info>; +defm : masked_move_for_extract<"VMOVAPSZ128", v8f64_info, v2f64x_info, v4f32x_info>; +defm : masked_move_for_extract<"VMOVAPSZ128", v16f32_info, v4f32x_info, v4f32x_info>; - def : Pat<(store (v4f64 (extract_subvector - (v8f64 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVUPDZ256mr addr:$dst, (v4f64 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; - def : Pat<(store (v8f32 (extract_subvector - (v16f32 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVUPSZ256mr addr:$dst, (v8f32 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; - def : Pat<(store (v4i64 (extract_subvector - (v8i64 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQU64Z256mr addr:$dst, (v4i64 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; - def : Pat<(store (v8i32 (extract_subvector - (v16i32 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQU32Z256mr addr:$dst, (v8i32 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; - def : Pat<(store (v16i16 (extract_subvector - (v32i16 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQU32Z256mr addr:$dst, (v16i16 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; - def : Pat<(store (v32i8 (extract_subvector - (v64i8 VR512:$src), (iPTR 0))), addr:$dst), - (VMOVDQU32Z256mr addr:$dst, (v32i8 (EXTRACT_SUBREG VR512:$src,sub_ymm)))>; +// A masked extract from the first 256-bits of a 512-bit vector can be +// implemented with masked move. +defm : masked_move_for_extract<"VMOVDQA64Z256", v8i64_info, v4i64x_info, v4i64x_info>; +defm : masked_move_for_extract<"VMOVDQA64Z256", v16i32_info, v8i32x_info, v4i64x_info>; +defm : masked_move_for_extract<"VMOVDQA64Z256", v32i16_info, v16i16x_info, v4i64x_info>; +defm : masked_move_for_extract<"VMOVDQA64Z256", v64i8_info, v32i8x_info, v4i64x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z256", v8i64_info, v4i64x_info, v8i32x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z256", v16i32_info, v8i32x_info, v8i32x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z256", v32i16_info, v16i16x_info, v8i32x_info>; +defm : masked_move_for_extract<"VMOVDQA32Z256", v64i8_info, v32i8x_info, v8i32x_info>; +defm : masked_move_for_extract<"VMOVAPDZ256", v8f64_info, v4f64x_info, v4f64x_info>; +defm : masked_move_for_extract<"VMOVAPDZ256", v16f32_info, v8f32x_info, v4f64x_info>; +defm : masked_move_for_extract<"VMOVAPSZ256", v8f64_info, v4f64x_info, v8f32x_info>; +defm : masked_move_for_extract<"VMOVAPSZ256", v16f32_info, v8f32x_info, v8f32x_info>; } - // Move Int Doubleword to Packed Double Int // let ExeDomain = SSEPackedInt in { @@ -3663,22 +3562,22 @@ def VMOVDI2PDIZrr : AVX512BI<0x6E, MRMSrcReg, (outs VR128X:$dst), (ins GR32:$src "vmovd\t{$src, $dst|$dst, $src}", [(set VR128X:$dst, (v4i32 (scalar_to_vector GR32:$src)))], IIC_SSE_MOVDQ>, - EVEX; + EVEX, Sched<[WriteMove]>; def VMOVDI2PDIZrm : AVX512BI<0x6E, MRMSrcMem, (outs VR128X:$dst), (ins i32mem:$src), "vmovd\t{$src, $dst|$dst, $src}", [(set VR128X:$dst, (v4i32 (scalar_to_vector (loadi32 addr:$src))))], - IIC_SSE_MOVDQ>, EVEX, EVEX_CD8<32, CD8VT1>; + IIC_SSE_MOVDQ>, EVEX, EVEX_CD8<32, CD8VT1>, Sched<[WriteLoad]>; def VMOV64toPQIZrr : AVX512BI<0x6E, MRMSrcReg, (outs VR128X:$dst), (ins GR64:$src), "vmovq\t{$src, $dst|$dst, $src}", [(set VR128X:$dst, (v2i64 (scalar_to_vector GR64:$src)))], - IIC_SSE_MOVDQ>, EVEX, VEX_W; + IIC_SSE_MOVDQ>, EVEX, VEX_W, Sched<[WriteMove]>; let isCodeGenOnly = 1, ForceDisassemble = 1, hasSideEffects = 0, mayLoad = 1 in def VMOV64toPQIZrm : AVX512BI<0x6E, MRMSrcMem, (outs VR128X:$dst), (ins i64mem:$src), - "vmovq\t{$src, $dst|$dst, $src}", []>, - EVEX, VEX_W, EVEX_CD8<64, CD8VT1>; + "vmovq\t{$src, $dst|$dst, $src}", [], IIC_SSE_MOVDQ>, + EVEX, VEX_W, EVEX_CD8<64, CD8VT1>, Sched<[WriteLoad]>; let isCodeGenOnly = 1 in { def VMOV64toSDZrr : AVX512BI<0x6E, MRMSrcReg, (outs FR64X:$dst), (ins GR64:$src), "vmovq\t{$src, $dst|$dst, $src}", @@ -3687,7 +3586,7 @@ def VMOV64toSDZrr : AVX512BI<0x6E, MRMSrcReg, (outs FR64X:$dst), (ins GR64:$src) def VMOV64toSDZrm : AVX512XSI<0x7E, MRMSrcMem, (outs FR64X:$dst), (ins i64mem:$src), "vmovq\t{$src, $dst|$dst, $src}", [(set FR64X:$dst, (bitconvert (loadi64 addr:$src)))]>, - EVEX, VEX_W, EVEX_CD8<8, CD8VT8>; + EVEX, VEX_W, EVEX_CD8<8, CD8VT8>, Sched<[WriteLoad]>; def VMOVSDto64Zrr : AVX512BI<0x7E, MRMDestReg, (outs GR64:$dst), (ins FR64X:$src), "vmovq\t{$src, $dst|$dst, $src}", [(set GR64:$dst, (bitconvert FR64X:$src))], @@ -3706,12 +3605,12 @@ let ExeDomain = SSEPackedInt, isCodeGenOnly = 1 in { def VMOVDI2SSZrr : AVX512BI<0x6E, MRMSrcReg, (outs FR32X:$dst), (ins GR32:$src), "vmovd\t{$src, $dst|$dst, $src}", [(set FR32X:$dst, (bitconvert GR32:$src))], - IIC_SSE_MOVDQ>, EVEX; + IIC_SSE_MOVDQ>, EVEX, Sched<[WriteMove]>; def VMOVDI2SSZrm : AVX512BI<0x6E, MRMSrcMem, (outs FR32X:$dst), (ins i32mem:$src), "vmovd\t{$src, $dst|$dst, $src}", [(set FR32X:$dst, (bitconvert (loadi32 addr:$src)))], - IIC_SSE_MOVDQ>, EVEX, EVEX_CD8<32, CD8VT1>; + IIC_SSE_MOVDQ>, EVEX, EVEX_CD8<32, CD8VT1>, Sched<[WriteLoad]>; } // ExeDomain = SSEPackedInt, isCodeGenOnly = 1 // Move doubleword from xmm register to r/m32 @@ -3721,13 +3620,13 @@ def VMOVPDI2DIZrr : AVX512BI<0x7E, MRMDestReg, (outs GR32:$dst), (ins VR128X:$s "vmovd\t{$src, $dst|$dst, $src}", [(set GR32:$dst, (extractelt (v4i32 VR128X:$src), (iPTR 0)))], IIC_SSE_MOVD_ToGP>, - EVEX; + EVEX, Sched<[WriteMove]>; def VMOVPDI2DIZmr : AVX512BI<0x7E, MRMDestMem, (outs), (ins i32mem:$dst, VR128X:$src), "vmovd\t{$src, $dst|$dst, $src}", [(store (i32 (extractelt (v4i32 VR128X:$src), (iPTR 0))), addr:$dst)], IIC_SSE_MOVDQ>, - EVEX, EVEX_CD8<32, CD8VT1>; + EVEX, EVEX_CD8<32, CD8VT1>, Sched<[WriteStore]>; } // ExeDomain = SSEPackedInt // Move quadword from xmm1 register to r/m64 @@ -3737,13 +3636,13 @@ def VMOVPQIto64Zrr : I<0x7E, MRMDestReg, (outs GR64:$dst), (ins VR128X:$src), "vmovq\t{$src, $dst|$dst, $src}", [(set GR64:$dst, (extractelt (v2i64 VR128X:$src), (iPTR 0)))], - IIC_SSE_MOVD_ToGP>, PD, EVEX, VEX_W, + IIC_SSE_MOVD_ToGP>, PD, EVEX, VEX_W, Sched<[WriteMove]>, Requires<[HasAVX512, In64BitMode]>; let isCodeGenOnly = 1, ForceDisassemble = 1, hasSideEffects = 0, mayStore = 1 in def VMOVPQIto64Zmr : I<0x7E, MRMDestMem, (outs), (ins i64mem:$dst, VR128X:$src), "vmovq\t{$src, $dst|$dst, $src}", - [], IIC_SSE_MOVD_ToGP>, PD, EVEX, VEX_W, + [], IIC_SSE_MOVD_ToGP>, PD, EVEX, VEX_W, Sched<[WriteStore]>, Requires<[HasAVX512, In64BitMode]>; def VMOVPQI2QIZmr : I<0xD6, MRMDestMem, (outs), @@ -3757,8 +3656,8 @@ def VMOVPQI2QIZmr : I<0xD6, MRMDestMem, (outs), let hasSideEffects = 0 in def VMOVPQI2QIZrr : AVX512BI<0xD6, MRMDestReg, (outs VR128X:$dst), (ins VR128X:$src), - "vmovq.s\t{$src, $dst|$dst, $src}",[]>, - EVEX, VEX_W; + "vmovq.s\t{$src, $dst|$dst, $src}", [], IIC_SSE_MOVDQ>, + EVEX, VEX_W, Sched<[WriteMove]>; } // ExeDomain = SSEPackedInt // Move Scalar Single to Double Int @@ -3768,12 +3667,12 @@ def VMOVSS2DIZrr : AVX512BI<0x7E, MRMDestReg, (outs GR32:$dst), (ins FR32X:$src), "vmovd\t{$src, $dst|$dst, $src}", [(set GR32:$dst, (bitconvert FR32X:$src))], - IIC_SSE_MOVD_ToGP>, EVEX; + IIC_SSE_MOVD_ToGP>, EVEX, Sched<[WriteMove]>; def VMOVSS2DIZmr : AVX512BI<0x7E, MRMDestMem, (outs), (ins i32mem:$dst, FR32X:$src), "vmovd\t{$src, $dst|$dst, $src}", [(store (i32 (bitconvert FR32X:$src)), addr:$dst)], - IIC_SSE_MOVDQ>, EVEX, EVEX_CD8<32, CD8VT1>; + IIC_SSE_MOVDQ>, EVEX, EVEX_CD8<32, CD8VT1>, Sched<[WriteStore]>; } // ExeDomain = SSEPackedInt, isCodeGenOnly = 1 // Move Quadword Int to Packed Quadword Int @@ -3784,7 +3683,7 @@ def VMOVQI2PQIZrm : AVX512XSI<0x7E, MRMSrcMem, (outs VR128X:$dst), "vmovq\t{$src, $dst|$dst, $src}", [(set VR128X:$dst, (v2i64 (scalar_to_vector (loadi64 addr:$src))))]>, - EVEX, VEX_W, EVEX_CD8<8, CD8VT8>; + EVEX, VEX_W, EVEX_CD8<8, CD8VT8>, Sched<[WriteLoad]>; } // ExeDomain = SSEPackedInt //===----------------------------------------------------------------------===// @@ -3794,57 +3693,54 @@ def VMOVQI2PQIZrm : AVX512XSI<0x7E, MRMSrcMem, (outs VR128X:$dst), multiclass avx512_move_scalar<string asm, SDNode OpNode, X86VectorVTInfo _> { def rr : AVX512PI<0x10, MRMSrcReg, (outs _.RC:$dst), - (ins _.RC:$src1, _.FRC:$src2), + (ins _.RC:$src1, _.RC:$src2), !strconcat(asm, "\t{$src2, $src1, $dst|$dst, $src1, $src2}"), - [(set _.RC:$dst, (_.VT (OpNode _.RC:$src1, - (scalar_to_vector _.FRC:$src2))))], - _.ExeDomain,IIC_SSE_MOV_S_RR>, EVEX_4V; + [(set _.RC:$dst, (_.VT (OpNode _.RC:$src1, _.RC:$src2)))], + _.ExeDomain,IIC_SSE_MOV_S_RR>, EVEX_4V, Sched<[WriteMove]>; def rrkz : AVX512PI<0x10, MRMSrcReg, (outs _.RC:$dst), - (ins _.KRCWM:$mask, _.RC:$src1, _.FRC:$src2), + (ins _.KRCWM:$mask, _.RC:$src1, _.RC:$src2), !strconcat(asm, "\t{$src2, $src1, $dst {${mask}} {z}|", "$dst {${mask}} {z}, $src1, $src2}"), [(set _.RC:$dst, (_.VT (X86selects _.KRCWM:$mask, - (_.VT (OpNode _.RC:$src1, - (scalar_to_vector _.FRC:$src2))), + (_.VT (OpNode _.RC:$src1, _.RC:$src2)), _.ImmAllZerosV)))], - _.ExeDomain,IIC_SSE_MOV_S_RR>, EVEX_4V, EVEX_KZ; + _.ExeDomain,IIC_SSE_MOV_S_RR>, EVEX_4V, EVEX_KZ, Sched<[WriteMove]>; let Constraints = "$src0 = $dst" in def rrk : AVX512PI<0x10, MRMSrcReg, (outs _.RC:$dst), - (ins _.RC:$src0, _.KRCWM:$mask, _.RC:$src1, _.FRC:$src2), + (ins _.RC:$src0, _.KRCWM:$mask, _.RC:$src1, _.RC:$src2), !strconcat(asm, "\t{$src2, $src1, $dst {${mask}}|", "$dst {${mask}}, $src1, $src2}"), [(set _.RC:$dst, (_.VT (X86selects _.KRCWM:$mask, - (_.VT (OpNode _.RC:$src1, - (scalar_to_vector _.FRC:$src2))), + (_.VT (OpNode _.RC:$src1, _.RC:$src2)), (_.VT _.RC:$src0))))], - _.ExeDomain,IIC_SSE_MOV_S_RR>, EVEX_4V, EVEX_K; + _.ExeDomain,IIC_SSE_MOV_S_RR>, EVEX_4V, EVEX_K, Sched<[WriteMove]>; let canFoldAsLoad = 1, isReMaterializable = 1 in def rm : AVX512PI<0x10, MRMSrcMem, (outs _.FRC:$dst), (ins _.ScalarMemOp:$src), !strconcat(asm, "\t{$src, $dst|$dst, $src}"), [(set _.FRC:$dst, (_.ScalarLdFrag addr:$src))], - _.ExeDomain, IIC_SSE_MOV_S_RM>, EVEX; + _.ExeDomain, IIC_SSE_MOV_S_RM>, EVEX, Sched<[WriteLoad]>; let mayLoad = 1, hasSideEffects = 0 in { let Constraints = "$src0 = $dst" in def rmk : AVX512PI<0x10, MRMSrcMem, (outs _.RC:$dst), (ins _.RC:$src0, _.KRCWM:$mask, _.ScalarMemOp:$src), !strconcat(asm, "\t{$src, $dst {${mask}}|", "$dst {${mask}}, $src}"), - [], _.ExeDomain, IIC_SSE_MOV_S_RM>, EVEX, EVEX_K; + [], _.ExeDomain, IIC_SSE_MOV_S_RM>, EVEX, EVEX_K, Sched<[WriteLoad]>; def rmkz : AVX512PI<0x10, MRMSrcMem, (outs _.RC:$dst), (ins _.KRCWM:$mask, _.ScalarMemOp:$src), !strconcat(asm, "\t{$src, $dst {${mask}} {z}|", "$dst {${mask}} {z}, $src}"), - [], _.ExeDomain, IIC_SSE_MOV_S_RM>, EVEX, EVEX_KZ; + [], _.ExeDomain, IIC_SSE_MOV_S_RM>, EVEX, EVEX_KZ, Sched<[WriteLoad]>; } def mr: AVX512PI<0x11, MRMDestMem, (outs), (ins _.ScalarMemOp:$dst, _.FRC:$src), !strconcat(asm, "\t{$src, $dst|$dst, $src}"), [(store _.FRC:$src, addr:$dst)], _.ExeDomain, IIC_SSE_MOV_S_MR>, - EVEX; + EVEX, Sched<[WriteStore]>; let mayStore = 1, hasSideEffects = 0 in def mrk: AVX512PI<0x11, MRMDestMem, (outs), (ins _.ScalarMemOp:$dst, VK1WM:$mask, _.FRC:$src), !strconcat(asm, "\t{$src, $dst {${mask}}|$dst {${mask}}, $src}"), - [], _.ExeDomain, IIC_SSE_MOV_S_MR>, EVEX, EVEX_K; + [], _.ExeDomain, IIC_SSE_MOV_S_MR>, EVEX, EVEX_K, Sched<[WriteStore]>; } defm VMOVSSZ : avx512_move_scalar<"vmovss", X86Movss, f32x_info>, @@ -3862,21 +3758,21 @@ def : Pat<(_.VT (OpNode _.RC:$src0, (_.EltVT (X86selects (scalar_to_vector (and (i8 (trunc GR32:$mask)), (i8 1))), (_.EltVT _.FRC:$src1), (_.EltVT _.FRC:$src2))))))), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr#rrk) - (COPY_TO_REGCLASS _.FRC:$src2, _.RC), - (COPY_TO_REGCLASS GR32:$mask, VK1WM), - (_.VT _.RC:$src0), _.FRC:$src1), - _.RC)>; + (!cast<Instruction>(InstrStr#rrk) + (COPY_TO_REGCLASS _.FRC:$src2, _.RC), + (COPY_TO_REGCLASS GR32:$mask, VK1WM), + (_.VT _.RC:$src0), + (COPY_TO_REGCLASS _.FRC:$src1, _.RC))>; def : Pat<(_.VT (OpNode _.RC:$src0, (_.VT (scalar_to_vector (_.EltVT (X86selects (scalar_to_vector (and (i8 (trunc GR32:$mask)), (i8 1))), (_.EltVT _.FRC:$src1), (_.EltVT ZeroFP))))))), - (COPY_TO_REGCLASS (!cast<Instruction>(InstrStr#rrkz) - (COPY_TO_REGCLASS GR32:$mask, VK1WM), - (_.VT _.RC:$src0), _.FRC:$src1), - _.RC)>; + (!cast<Instruction>(InstrStr#rrkz) + (COPY_TO_REGCLASS GR32:$mask, VK1WM), + (_.VT _.RC:$src0), + (COPY_TO_REGCLASS _.FRC:$src1, _.RC))>; } multiclass avx512_store_scalar_lowering<string InstrStr, AVX512VLVectorVTInfo _, @@ -3982,13 +3878,33 @@ defm : avx512_load_scalar_lowering_subreg<"VMOVSSZ", avx512vl_f32_info, defm : avx512_load_scalar_lowering_subreg<"VMOVSDZ", avx512vl_f64_info, (v8i1 (bitconvert (i8 (and GR8:$mask, (i8 1))))), GR8, sub_8bit>; +def : Pat<(f32 (X86selects (scalar_to_vector (and GR8:$mask, (i8 1))), + (f32 FR32X:$src1), (f32 FR32X:$src2))), + (COPY_TO_REGCLASS + (VMOVSSZrrk (COPY_TO_REGCLASS FR32X:$src2, VR128X), + (COPY_TO_REGCLASS (i32 (INSERT_SUBREG (IMPLICIT_DEF), + GR8:$mask, sub_8bit)), VK1WM), + (v4f32 (IMPLICIT_DEF)), (COPY_TO_REGCLASS FR32X:$src1, VR128X)), + FR32X)>; + def : Pat<(f32 (X86selects VK1WM:$mask, (f32 FR32X:$src1), (f32 FR32X:$src2))), (COPY_TO_REGCLASS (VMOVSSZrrk (COPY_TO_REGCLASS FR32X:$src2, VR128X), - VK1WM:$mask, (v4f32 (IMPLICIT_DEF)), FR32X:$src1), FR32X)>; + VK1WM:$mask, (v4f32 (IMPLICIT_DEF)), + (COPY_TO_REGCLASS FR32X:$src1, VR128X)), FR32X)>; + +def : Pat<(f64 (X86selects (scalar_to_vector (and GR8:$mask, (i8 1))), + (f64 FR64X:$src1), (f64 FR64X:$src2))), + (COPY_TO_REGCLASS + (VMOVSDZrrk (COPY_TO_REGCLASS FR64X:$src2, VR128X), + (COPY_TO_REGCLASS (i32 (INSERT_SUBREG (IMPLICIT_DEF), + GR8:$mask, sub_8bit)), VK1WM), + (v2f64 (IMPLICIT_DEF)), (COPY_TO_REGCLASS FR64X:$src1, VR128X)), + FR64X)>; def : Pat<(f64 (X86selects VK1WM:$mask, (f64 FR64X:$src1), (f64 FR64X:$src2))), (COPY_TO_REGCLASS (VMOVSDZrrk (COPY_TO_REGCLASS FR64X:$src2, VR128X), - VK1WM:$mask, (v2f64 (IMPLICIT_DEF)), FR64X:$src1), FR64X)>; + VK1WM:$mask, (v2f64 (IMPLICIT_DEF)), + (COPY_TO_REGCLASS FR64X:$src1, VR128X)), FR64X)>; def : Pat<(int_x86_avx512_mask_store_ss addr:$dst, VR128X:$src, GR8:$mask), (VMOVSSZmrk addr:$dst, (COPY_TO_REGCLASS (i32 (INSERT_SUBREG (IMPLICIT_DEF), GR8:$mask, sub_8bit)), VK1WM), @@ -3996,63 +3912,60 @@ def : Pat<(int_x86_avx512_mask_store_ss addr:$dst, VR128X:$src, GR8:$mask), let hasSideEffects = 0 in { def VMOVSSZrr_REV: AVX512<0x11, MRMDestReg, (outs VR128X:$dst), - (ins VR128X:$src1, FR32X:$src2), + (ins VR128X:$src1, VR128X:$src2), "vmovss.s\t{$src2, $src1, $dst|$dst, $src1, $src2}", - [], NoItinerary>, XS, EVEX_4V, VEX_LIG, - FoldGenData<"VMOVSSZrr">; + [], IIC_SSE_MOV_S_RR>, XS, EVEX_4V, VEX_LIG, + FoldGenData<"VMOVSSZrr">, Sched<[WriteMove]>; let Constraints = "$src0 = $dst" in def VMOVSSZrrk_REV: AVX512<0x11, MRMDestReg, (outs VR128X:$dst), (ins f32x_info.RC:$src0, f32x_info.KRCWM:$mask, - VR128X:$src1, FR32X:$src2), + VR128X:$src1, VR128X:$src2), "vmovss.s\t{$src2, $src1, $dst {${mask}}|"# "$dst {${mask}}, $src1, $src2}", - [], NoItinerary>, EVEX_K, XS, EVEX_4V, VEX_LIG, - FoldGenData<"VMOVSSZrrk">; + [], IIC_SSE_MOV_S_RR>, EVEX_K, XS, EVEX_4V, VEX_LIG, + FoldGenData<"VMOVSSZrrk">, Sched<[WriteMove]>; def VMOVSSZrrkz_REV: AVX512<0x11, MRMDestReg, (outs VR128X:$dst), - (ins f32x_info.KRCWM:$mask, VR128X:$src1, FR32X:$src2), + (ins f32x_info.KRCWM:$mask, VR128X:$src1, VR128X:$src2), "vmovss.s\t{$src2, $src1, $dst {${mask}} {z}|"# "$dst {${mask}} {z}, $src1, $src2}", - [], NoItinerary>, EVEX_KZ, XS, EVEX_4V, VEX_LIG, - FoldGenData<"VMOVSSZrrkz">; + [], IIC_SSE_MOV_S_RR>, EVEX_KZ, XS, EVEX_4V, VEX_LIG, + FoldGenData<"VMOVSSZrrkz">, Sched<[WriteMove]>; def VMOVSDZrr_REV: AVX512<0x11, MRMDestReg, (outs VR128X:$dst), - (ins VR128X:$src1, FR64X:$src2), + (ins VR128X:$src1, VR128X:$src2), "vmovsd.s\t{$src2, $src1, $dst|$dst, $src1, $src2}", - [], NoItinerary>, XD, EVEX_4V, VEX_LIG, VEX_W, - FoldGenData<"VMOVSDZrr">; + [], IIC_SSE_MOV_S_RR>, XD, EVEX_4V, VEX_LIG, VEX_W, + FoldGenData<"VMOVSDZrr">, Sched<[WriteMove]>; let Constraints = "$src0 = $dst" in def VMOVSDZrrk_REV: AVX512<0x11, MRMDestReg, (outs VR128X:$dst), (ins f64x_info.RC:$src0, f64x_info.KRCWM:$mask, - VR128X:$src1, FR64X:$src2), + VR128X:$src1, VR128X:$src2), "vmovsd.s\t{$src2, $src1, $dst {${mask}}|"# "$dst {${mask}}, $src1, $src2}", - [], NoItinerary>, EVEX_K, XD, EVEX_4V, VEX_LIG, - VEX_W, FoldGenData<"VMOVSDZrrk">; + [], IIC_SSE_MOV_S_RR>, EVEX_K, XD, EVEX_4V, VEX_LIG, + VEX_W, FoldGenData<"VMOVSDZrrk">, Sched<[WriteMove]>; def VMOVSDZrrkz_REV: AVX512<0x11, MRMDestReg, (outs VR128X:$dst), (ins f64x_info.KRCWM:$mask, VR128X:$src1, - FR64X:$src2), + VR128X:$src2), "vmovsd.s\t{$src2, $src1, $dst {${mask}} {z}|"# "$dst {${mask}} {z}, $src1, $src2}", - [], NoItinerary>, EVEX_KZ, XD, EVEX_4V, VEX_LIG, - VEX_W, FoldGenData<"VMOVSDZrrkz">; + [], IIC_SSE_MOV_S_RR>, EVEX_KZ, XD, EVEX_4V, VEX_LIG, + VEX_W, FoldGenData<"VMOVSDZrrkz">, Sched<[WriteMove]>; } let Predicates = [HasAVX512] in { let AddedComplexity = 15 in { - // Move scalar to XMM zero-extended, zeroing a VR128X then do a - // MOVS{S,D} to the lower bits. - def : Pat<(v4f32 (X86vzmovl (v4f32 (scalar_to_vector FR32X:$src)))), - (VMOVSSZrr (v4f32 (AVX512_128_SET0)), FR32X:$src)>; def : Pat<(v4f32 (X86vzmovl (v4f32 VR128X:$src))), - (VMOVSSZrr (v4f32 (AVX512_128_SET0)), (COPY_TO_REGCLASS VR128X:$src, FR32X))>; + (VMOVSSZrr (v4f32 (AVX512_128_SET0)), VR128X:$src)>; def : Pat<(v4i32 (X86vzmovl (v4i32 VR128X:$src))), - (VMOVSSZrr (v4i32 (AVX512_128_SET0)), (COPY_TO_REGCLASS VR128X:$src, FR32X))>; + (VMOVSSZrr (v4i32 (AVX512_128_SET0)), VR128X:$src)>; def : Pat<(v2f64 (X86vzmovl (v2f64 (scalar_to_vector FR64X:$src)))), - (VMOVSDZrr (v2f64 (AVX512_128_SET0)), FR64X:$src)>; + (VMOVSDZrr (v2f64 (AVX512_128_SET0)), + (COPY_TO_REGCLASS FR64X:$src, VR128))>; } // Move low f32 and clear high bits. @@ -4130,14 +4043,6 @@ let Predicates = [HasAVX512] in { def : Pat<(v8f64 (X86vzload addr:$src)), (SUBREG_TO_REG (i32 0), (VMOVSDZrm addr:$src), sub_xmm)>; } - def : Pat<(v8f32 (X86vzmovl (insert_subvector undef, - (v4f32 (scalar_to_vector FR32X:$src)), (iPTR 0)))), - (SUBREG_TO_REG (i32 0), (v4f32 (VMOVSSZrr (v4f32 (AVX512_128_SET0)), - FR32X:$src)), sub_xmm)>; - def : Pat<(v4f64 (X86vzmovl (insert_subvector undef, - (v2f64 (scalar_to_vector FR64X:$src)), (iPTR 0)))), - (SUBREG_TO_REG (i64 0), (v2f64 (VMOVSDZrr (v2f64 (AVX512_128_SET0)), - FR64X:$src)), sub_xmm)>; def : Pat<(v4i64 (X86vzmovl (insert_subvector undef, (v2i64 (scalar_to_vector (loadi64 addr:$src))), (iPTR 0)))), (SUBREG_TO_REG (i64 0), (VMOVQI2PQIZrm addr:$src), sub_xmm)>; @@ -4166,50 +4071,23 @@ let Predicates = [HasAVX512] in { // Shuffle with VMOVSS def : Pat<(v4i32 (X86Movss VR128X:$src1, VR128X:$src2)), - (VMOVSSZrr (v4i32 VR128X:$src1), - (COPY_TO_REGCLASS (v4i32 VR128X:$src2), FR32X))>; - def : Pat<(v4f32 (X86Movss VR128X:$src1, VR128X:$src2)), - (VMOVSSZrr (v4f32 VR128X:$src1), - (COPY_TO_REGCLASS (v4f32 VR128X:$src2), FR32X))>; + (VMOVSSZrr (v4i32 VR128X:$src1), VR128X:$src2)>; - // 256-bit variants - def : Pat<(v8i32 (X86Movss VR256X:$src1, VR256X:$src2)), - (SUBREG_TO_REG (i32 0), - (VMOVSSZrr (EXTRACT_SUBREG (v8i32 VR256X:$src1), sub_xmm), - (EXTRACT_SUBREG (v8i32 VR256X:$src2), sub_xmm)), - sub_xmm)>; - def : Pat<(v8f32 (X86Movss VR256X:$src1, VR256X:$src2)), - (SUBREG_TO_REG (i32 0), - (VMOVSSZrr (EXTRACT_SUBREG (v8f32 VR256X:$src1), sub_xmm), - (EXTRACT_SUBREG (v8f32 VR256X:$src2), sub_xmm)), - sub_xmm)>; + def : Pat<(v4f32 (X86Movss VR128X:$src1, (scalar_to_vector FR32X:$src2))), + (VMOVSSZrr VR128X:$src1, + (COPY_TO_REGCLASS FR32X:$src2, VR128X))>; // Shuffle with VMOVSD def : Pat<(v2i64 (X86Movsd VR128X:$src1, VR128X:$src2)), - (VMOVSDZrr VR128X:$src1, (COPY_TO_REGCLASS VR128X:$src2, FR64X))>; - def : Pat<(v2f64 (X86Movsd VR128X:$src1, VR128X:$src2)), - (VMOVSDZrr VR128X:$src1, (COPY_TO_REGCLASS VR128X:$src2, FR64X))>; + (VMOVSDZrr VR128X:$src1, VR128X:$src2)>; - // 256-bit variants - def : Pat<(v4i64 (X86Movsd VR256X:$src1, VR256X:$src2)), - (SUBREG_TO_REG (i32 0), - (VMOVSDZrr (EXTRACT_SUBREG (v4i64 VR256X:$src1), sub_xmm), - (EXTRACT_SUBREG (v4i64 VR256X:$src2), sub_xmm)), - sub_xmm)>; - def : Pat<(v4f64 (X86Movsd VR256X:$src1, VR256X:$src2)), - (SUBREG_TO_REG (i32 0), - (VMOVSDZrr (EXTRACT_SUBREG (v4f64 VR256X:$src1), sub_xmm), - (EXTRACT_SUBREG (v4f64 VR256X:$src2), sub_xmm)), - sub_xmm)>; + def : Pat<(v2f64 (X86Movsd VR128X:$src1, (scalar_to_vector FR64X:$src2))), + (VMOVSDZrr VR128X:$src1, (COPY_TO_REGCLASS FR64X:$src2, VR128X))>; def : Pat<(v2f64 (X86Movlpd VR128X:$src1, VR128X:$src2)), - (VMOVSDZrr VR128X:$src1, (COPY_TO_REGCLASS VR128X:$src2, FR64X))>; - def : Pat<(v2i64 (X86Movlpd VR128X:$src1, VR128X:$src2)), - (VMOVSDZrr VR128X:$src1, (COPY_TO_REGCLASS VR128X:$src2, FR64X))>; + (VMOVSDZrr VR128X:$src1, VR128X:$src2)>; def : Pat<(v4f32 (X86Movlps VR128X:$src1, VR128X:$src2)), - (VMOVSDZrr VR128X:$src1, (COPY_TO_REGCLASS VR128X:$src2, FR64X))>; - def : Pat<(v4i32 (X86Movlps VR128X:$src1, VR128X:$src2)), - (VMOVSDZrr VR128X:$src1, (COPY_TO_REGCLASS VR128X:$src2, FR64X))>; + (VMOVSDZrr VR128X:$src1, VR128X:$src2)>; } let AddedComplexity = 15 in @@ -4337,12 +4215,6 @@ let Predicates = [HasAVX512], AddedComplexity = 400 in { (VMOVNTDQAZrm addr:$src)>; def : Pat<(v8i64 (alignednontemporalload addr:$src)), (VMOVNTDQAZrm addr:$src)>; - def : Pat<(v16i32 (bitconvert (v8i64 (alignednontemporalload addr:$src)))), - (VMOVNTDQAZrm addr:$src)>; - def : Pat<(v32i16 (bitconvert (v8i64 (alignednontemporalload addr:$src)))), - (VMOVNTDQAZrm addr:$src)>; - def : Pat<(v64i8 (bitconvert (v8i64 (alignednontemporalload addr:$src)))), - (VMOVNTDQAZrm addr:$src)>; } let Predicates = [HasVLX], AddedComplexity = 400 in { @@ -4359,12 +4231,6 @@ let Predicates = [HasVLX], AddedComplexity = 400 in { (VMOVNTDQAZ256rm addr:$src)>; def : Pat<(v4i64 (alignednontemporalload addr:$src)), (VMOVNTDQAZ256rm addr:$src)>; - def : Pat<(v8i32 (bitconvert (v2i64 (alignednontemporalload addr:$src)))), - (VMOVNTDQAZ256rm addr:$src)>; - def : Pat<(v16i16 (bitconvert (v2i64 (alignednontemporalload addr:$src)))), - (VMOVNTDQAZ256rm addr:$src)>; - def : Pat<(v32i8 (bitconvert (v2i64 (alignednontemporalload addr:$src)))), - (VMOVNTDQAZ256rm addr:$src)>; def : Pat<(alignednontemporalstore (v4i32 VR128X:$src), addr:$dst), (VMOVNTDQZ128mr addr:$dst, VR128X:$src)>; @@ -4379,12 +4245,6 @@ let Predicates = [HasVLX], AddedComplexity = 400 in { (VMOVNTDQAZ128rm addr:$src)>; def : Pat<(v2i64 (alignednontemporalload addr:$src)), (VMOVNTDQAZ128rm addr:$src)>; - def : Pat<(v4i32 (bitconvert (v2i64 (alignednontemporalload addr:$src)))), - (VMOVNTDQAZ128rm addr:$src)>; - def : Pat<(v8i16 (bitconvert (v2i64 (alignednontemporalload addr:$src)))), - (VMOVNTDQAZ128rm addr:$src)>; - def : Pat<(v16i8 (bitconvert (v2i64 (alignednontemporalload addr:$src)))), - (VMOVNTDQAZ128rm addr:$src)>; } //===----------------------------------------------------------------------===// @@ -4397,16 +4257,16 @@ multiclass avx512_binop_rm<bits<8> opc, string OpcodeStr, SDNode OpNode, (ins _.RC:$src1, _.RC:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode _.RC:$src1, _.RC:$src2)), - itins.rr, IsCommutable>, - AVX512BIBase, EVEX_4V; + itins.rr, IsCommutable>, AVX512BIBase, EVEX_4V, + Sched<[itins.Sched]>; defm rm : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.MemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode _.RC:$src1, (bitconvert (_.LdFrag addr:$src2)))), - itins.rm>, - AVX512BIBase, EVEX_4V; + itins.rm>, AVX512BIBase, EVEX_4V, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_binop_rmb<bits<8> opc, string OpcodeStr, SDNode OpNode, @@ -4420,8 +4280,8 @@ multiclass avx512_binop_rmb<bits<8> opc, string OpcodeStr, SDNode OpNode, (_.VT (OpNode _.RC:$src1, (X86VBroadcast (_.ScalarLdFrag addr:$src2)))), - itins.rm>, - AVX512BIBase, EVEX_4V, EVEX_B; + itins.rm>, AVX512BIBase, EVEX_4V, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_binop_rm_vl<bits<8> opc, string OpcodeStr, SDNode OpNode, @@ -4473,14 +4333,16 @@ multiclass avx512_binop_rm_vl_w<bits<8> opc, string OpcodeStr, SDNode OpNode, OpndItins itins, Predicate prd, bit IsCommutable = 0> { defm NAME : avx512_binop_rm_vl<opc, OpcodeStr, OpNode, avx512vl_i16_info, - itins, prd, IsCommutable>, EVEX_CD8<16, CD8VF>; + itins, prd, IsCommutable>, EVEX_CD8<16, CD8VF>, + VEX_WIG; } multiclass avx512_binop_rm_vl_b<bits<8> opc, string OpcodeStr, SDNode OpNode, OpndItins itins, Predicate prd, bit IsCommutable = 0> { defm NAME : avx512_binop_rm_vl<opc, OpcodeStr, OpNode, avx512vl_i8_info, - itins, prd, IsCommutable>, EVEX_CD8<8, CD8VF>; + itins, prd, IsCommutable>, EVEX_CD8<8, CD8VF>, + VEX_WIG; } multiclass avx512_binop_rm_vl_dq<bits<8> opc_d, bits<8> opc_q, string OpcodeStr, @@ -4524,14 +4386,14 @@ multiclass avx512_binop_rm2<bits<8> opc, string OpcodeStr, OpndItins itins, (_Src.VT _Src.RC:$src1), (_Src.VT _Src.RC:$src2))), itins.rr, IsCommutable>, - AVX512BIBase, EVEX_4V; + AVX512BIBase, EVEX_4V, Sched<[itins.Sched]>; defm rm : AVX512_maskable<opc, MRMSrcMem, _Dst, (outs _Dst.RC:$dst), (ins _Src.RC:$src1, _Src.MemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_Dst.VT (OpNode (_Src.VT _Src.RC:$src1), (bitconvert (_Src.LdFrag addr:$src2)))), - itins.rm>, - AVX512BIBase, EVEX_4V; + itins.rm>, AVX512BIBase, EVEX_4V, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmb : AVX512_maskable<opc, MRMSrcMem, _Dst, (outs _Dst.RC:$dst), (ins _Src.RC:$src1, _Brdct.ScalarMemOp:$src2), @@ -4541,8 +4403,8 @@ multiclass avx512_binop_rm2<bits<8> opc, string OpcodeStr, OpndItins itins, (_Dst.VT (OpNode (_Src.VT _Src.RC:$src1), (bitconvert (_Brdct.VT (X86VBroadcast (_Brdct.ScalarLdFrag addr:$src2)))))), - itins.rm>, - AVX512BIBase, EVEX_4V, EVEX_B; + itins.rm>, AVX512BIBase, EVEX_4V, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } defm VPADD : avx512_binop_rm_vl_all<0xFC, 0xFD, 0xFE, 0xD4, "vpadd", add, @@ -4603,7 +4465,8 @@ defm VPMULTISHIFTQB : avx512_binop_all<0x83, "vpmultishiftqb", SSE_INTALU_ITINS_ X86multishift, HasVBMI, 0>, T8PD; multiclass avx512_packs_rmb<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _Src, X86VectorVTInfo _Dst> { + X86VectorVTInfo _Src, X86VectorVTInfo _Dst, + OpndItins itins> { defm rmb : AVX512_maskable<opc, MRMSrcMem, _Dst, (outs _Dst.RC:$dst), (ins _Src.RC:$src1, _Src.ScalarMemOp:$src2), OpcodeStr, @@ -4611,57 +4474,60 @@ multiclass avx512_packs_rmb<bits<8> opc, string OpcodeStr, SDNode OpNode, "$src1, ${src2}"##_Src.BroadcastStr, (_Dst.VT (OpNode (_Src.VT _Src.RC:$src1), (bitconvert (_Src.VT (X86VBroadcast - (_Src.ScalarLdFrag addr:$src2))))))>, - EVEX_4V, EVEX_B, EVEX_CD8<_Src.EltSize, CD8VF>; + (_Src.ScalarLdFrag addr:$src2)))))), + itins.rm>, EVEX_4V, EVEX_B, EVEX_CD8<_Src.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_packs_rm<bits<8> opc, string OpcodeStr, SDNode OpNode,X86VectorVTInfo _Src, - X86VectorVTInfo _Dst, bit IsCommutable = 0> { + X86VectorVTInfo _Dst, OpndItins itins, + bit IsCommutable = 0> { defm rr : AVX512_maskable<opc, MRMSrcReg, _Dst, (outs _Dst.RC:$dst), (ins _Src.RC:$src1, _Src.RC:$src2), OpcodeStr, "$src2, $src1","$src1, $src2", (_Dst.VT (OpNode (_Src.VT _Src.RC:$src1), (_Src.VT _Src.RC:$src2))), - NoItinerary, IsCommutable>, - EVEX_CD8<_Src.EltSize, CD8VF>, EVEX_4V; + itins.rr, IsCommutable>, + EVEX_CD8<_Src.EltSize, CD8VF>, EVEX_4V, Sched<[itins.Sched]>; defm rm : AVX512_maskable<opc, MRMSrcMem, _Dst, (outs _Dst.RC:$dst), (ins _Src.RC:$src1, _Src.MemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_Dst.VT (OpNode (_Src.VT _Src.RC:$src1), - (bitconvert (_Src.LdFrag addr:$src2))))>, - EVEX_4V, EVEX_CD8<_Src.EltSize, CD8VF>; + (bitconvert (_Src.LdFrag addr:$src2)))), itins.rm>, + EVEX_4V, EVEX_CD8<_Src.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_packs_all_i32_i16<bits<8> opc, string OpcodeStr, SDNode OpNode> { let Predicates = [HasBWI] in defm NAME#Z : avx512_packs_rm<opc, OpcodeStr, OpNode, v16i32_info, - v32i16_info>, + v32i16_info, SSE_PACK>, avx512_packs_rmb<opc, OpcodeStr, OpNode, v16i32_info, - v32i16_info>, EVEX_V512; + v32i16_info, SSE_PACK>, EVEX_V512; let Predicates = [HasBWI, HasVLX] in { defm NAME#Z256 : avx512_packs_rm<opc, OpcodeStr, OpNode, v8i32x_info, - v16i16x_info>, + v16i16x_info, SSE_PACK>, avx512_packs_rmb<opc, OpcodeStr, OpNode, v8i32x_info, - v16i16x_info>, EVEX_V256; + v16i16x_info, SSE_PACK>, EVEX_V256; defm NAME#Z128 : avx512_packs_rm<opc, OpcodeStr, OpNode, v4i32x_info, - v8i16x_info>, + v8i16x_info, SSE_PACK>, avx512_packs_rmb<opc, OpcodeStr, OpNode, v4i32x_info, - v8i16x_info>, EVEX_V128; + v8i16x_info, SSE_PACK>, EVEX_V128; } } multiclass avx512_packs_all_i16_i8<bits<8> opc, string OpcodeStr, SDNode OpNode> { let Predicates = [HasBWI] in defm NAME#Z : avx512_packs_rm<opc, OpcodeStr, OpNode, v32i16_info, - v64i8_info>, EVEX_V512; + v64i8_info, SSE_PACK>, EVEX_V512, VEX_WIG; let Predicates = [HasBWI, HasVLX] in { defm NAME#Z256 : avx512_packs_rm<opc, OpcodeStr, OpNode, v16i16x_info, - v32i8x_info>, EVEX_V256; + v32i8x_info, SSE_PACK>, EVEX_V256, VEX_WIG; defm NAME#Z128 : avx512_packs_rm<opc, OpcodeStr, OpNode, v8i16x_info, - v16i8x_info>, EVEX_V128; + v16i8x_info, SSE_PACK>, EVEX_V128, VEX_WIG; } } @@ -4670,12 +4536,12 @@ multiclass avx512_vpmadd<bits<8> opc, string OpcodeStr, AVX512VLVectorVTInfo _Dst, bit IsCommutable = 0> { let Predicates = [HasBWI] in defm NAME#Z : avx512_packs_rm<opc, OpcodeStr, OpNode, _Src.info512, - _Dst.info512, IsCommutable>, EVEX_V512; + _Dst.info512, SSE_PMADD, IsCommutable>, EVEX_V512; let Predicates = [HasBWI, HasVLX] in { defm NAME#Z256 : avx512_packs_rm<opc, OpcodeStr, OpNode, _Src.info256, - _Dst.info256, IsCommutable>, EVEX_V256; + _Dst.info256, SSE_PMADD, IsCommutable>, EVEX_V256; defm NAME#Z128 : avx512_packs_rm<opc, OpcodeStr, OpNode, _Src.info128, - _Dst.info128, IsCommutable>, EVEX_V128; + _Dst.info128, SSE_PMADD, IsCommutable>, EVEX_V128; } } @@ -4685,9 +4551,9 @@ defm VPACKSSWB : avx512_packs_all_i16_i8 <0x63, "vpacksswb", X86Packss>, AVX512B defm VPACKUSWB : avx512_packs_all_i16_i8 <0x67, "vpackuswb", X86Packus>, AVX512BIBase; defm VPMADDUBSW : avx512_vpmadd<0x04, "vpmaddubsw", X86vpmaddubsw, - avx512vl_i8_info, avx512vl_i16_info>, AVX512BIBase, T8PD; + avx512vl_i8_info, avx512vl_i16_info>, AVX512BIBase, T8PD, VEX_WIG; defm VPMADDWD : avx512_vpmadd<0xF5, "vpmaddwd", X86vpmaddwd, - avx512vl_i16_info, avx512vl_i32_info, 1>, AVX512BIBase; + avx512vl_i16_info, avx512vl_i32_info, 1>, AVX512BIBase, VEX_WIG; defm VPMAXSB : avx512_binop_rm_vl_b<0x3C, "vpmaxsb", smax, SSE_INTALU_ITINS_P, HasBWI, 1>, T8PD; @@ -4734,90 +4600,135 @@ let Predicates = [HasDQI, NoVLX] in { sub_xmm)>; } +// PMULLQ: Use 512bit version to implement 128/256 bit in case NoVLX. +let Predicates = [HasDQI, NoVLX] in { + def : Pat<(v4i64 (mul (v4i64 VR256X:$src1), (v4i64 VR256X:$src2))), + (EXTRACT_SUBREG + (VPMULLQZrr + (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR256X:$src1, sub_ymm), + (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR256X:$src2, sub_ymm)), + sub_ymm)>; + + def : Pat<(v2i64 (mul (v2i64 VR128X:$src1), (v2i64 VR128X:$src2))), + (EXTRACT_SUBREG + (VPMULLQZrr + (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR128X:$src1, sub_xmm), + (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR128X:$src2, sub_xmm)), + sub_xmm)>; +} + +multiclass avx512_min_max_lowering<Instruction Instr, SDNode OpNode> { + def : Pat<(v4i64 (OpNode VR256X:$src1, VR256X:$src2)), + (EXTRACT_SUBREG + (Instr + (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR256X:$src1, sub_ymm), + (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR256X:$src2, sub_ymm)), + sub_ymm)>; + + def : Pat<(v2i64 (OpNode VR128X:$src1, VR128X:$src2)), + (EXTRACT_SUBREG + (Instr + (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR128X:$src1, sub_xmm), + (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR128X:$src2, sub_xmm)), + sub_xmm)>; +} + +let Predicates = [HasAVX512] in { + defm : avx512_min_max_lowering<VPMAXUQZrr, umax>; + defm : avx512_min_max_lowering<VPMINUQZrr, umin>; + defm : avx512_min_max_lowering<VPMAXSQZrr, smax>; + defm : avx512_min_max_lowering<VPMINSQZrr, smin>; +} + //===----------------------------------------------------------------------===// // AVX-512 Logical Instructions //===----------------------------------------------------------------------===// -multiclass avx512_logic_rm<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _, bit IsCommutable = 0> { +// OpNodeMsk is the OpNode to use when element size is important. OpNode will +// be set to null_frag for 32-bit elements. +multiclass avx512_logic_rm<bits<8> opc, string OpcodeStr, + SDPatternOperator OpNode, + SDNode OpNodeMsk, OpndItins itins, X86VectorVTInfo _, + bit IsCommutable = 0> { + let hasSideEffects = 0 in defm rr : AVX512_maskable_logic<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.i64VT (OpNode (bitconvert (_.VT _.RC:$src1)), (bitconvert (_.VT _.RC:$src2)))), - (_.VT (bitconvert (_.i64VT (OpNode _.RC:$src1, - _.RC:$src2)))), - IIC_SSE_BIT_P_RR, IsCommutable>, - AVX512BIBase, EVEX_4V; + (_.VT (bitconvert (_.i64VT (OpNodeMsk _.RC:$src1, + _.RC:$src2)))), + itins.rr, IsCommutable>, AVX512BIBase, EVEX_4V, + Sched<[itins.Sched]>; + let hasSideEffects = 0, mayLoad = 1 in defm rm : AVX512_maskable_logic<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.MemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.i64VT (OpNode (bitconvert (_.VT _.RC:$src1)), (bitconvert (_.LdFrag addr:$src2)))), - (_.VT (bitconvert (_.i64VT (OpNode _.RC:$src1, + (_.VT (bitconvert (_.i64VT (OpNodeMsk _.RC:$src1, (bitconvert (_.LdFrag addr:$src2)))))), - IIC_SSE_BIT_P_RM>, - AVX512BIBase, EVEX_4V; + itins.rm>, AVX512BIBase, EVEX_4V, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } -multiclass avx512_logic_rmb<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _, bit IsCommutable = 0> : - avx512_logic_rm<opc, OpcodeStr, OpNode, _, IsCommutable> { +// OpNodeMsk is the OpNode to use where element size is important. So use +// for all of the broadcast patterns. +multiclass avx512_logic_rmb<bits<8> opc, string OpcodeStr, + SDPatternOperator OpNode, + SDNode OpNodeMsk, OpndItins itins, X86VectorVTInfo _, + bit IsCommutable = 0> : + avx512_logic_rm<opc, OpcodeStr, OpNode, OpNodeMsk, itins, _, + IsCommutable> { defm rmb : AVX512_maskable_logic<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2), OpcodeStr, "${src2}"##_.BroadcastStr##", $src1", "$src1, ${src2}"##_.BroadcastStr, - (_.i64VT (OpNode _.RC:$src1, + (_.i64VT (OpNodeMsk _.RC:$src1, (bitconvert (_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src2)))))), - (_.VT (bitconvert (_.i64VT (OpNode _.RC:$src1, + (_.VT (bitconvert (_.i64VT (OpNodeMsk _.RC:$src1, (bitconvert (_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src2)))))))), - IIC_SSE_BIT_P_RM>, - AVX512BIBase, EVEX_4V, EVEX_B; + itins.rm>, AVX512BIBase, EVEX_4V, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } -multiclass avx512_logic_rmb_vl<bits<8> opc, string OpcodeStr, SDNode OpNode, +multiclass avx512_logic_rmb_vl<bits<8> opc, string OpcodeStr, + SDPatternOperator OpNode, + SDNode OpNodeMsk, OpndItins itins, AVX512VLVectorVTInfo VTInfo, bit IsCommutable = 0> { let Predicates = [HasAVX512] in - defm Z : avx512_logic_rmb<opc, OpcodeStr, OpNode, VTInfo.info512, - IsCommutable>, EVEX_V512; + defm Z : avx512_logic_rmb<opc, OpcodeStr, OpNode, OpNodeMsk, itins, + VTInfo.info512, IsCommutable>, EVEX_V512; let Predicates = [HasAVX512, HasVLX] in { - defm Z256 : avx512_logic_rmb<opc, OpcodeStr, OpNode, VTInfo.info256, - IsCommutable>, EVEX_V256; - defm Z128 : avx512_logic_rmb<opc, OpcodeStr, OpNode, VTInfo.info128, - IsCommutable>, EVEX_V128; + defm Z256 : avx512_logic_rmb<opc, OpcodeStr, OpNode, OpNodeMsk, itins, + VTInfo.info256, IsCommutable>, EVEX_V256; + defm Z128 : avx512_logic_rmb<opc, OpcodeStr, OpNode, OpNodeMsk, itins, + VTInfo.info128, IsCommutable>, EVEX_V128; } } -multiclass avx512_logic_rm_vl_d<bits<8> opc, string OpcodeStr, SDNode OpNode, - bit IsCommutable = 0> { - defm NAME : avx512_logic_rmb_vl<opc, OpcodeStr, OpNode, avx512vl_i32_info, - IsCommutable>, EVEX_CD8<32, CD8VF>; -} - -multiclass avx512_logic_rm_vl_q<bits<8> opc, string OpcodeStr, SDNode OpNode, - bit IsCommutable = 0> { - defm NAME : avx512_logic_rmb_vl<opc, OpcodeStr, OpNode, avx512vl_i64_info, - IsCommutable>, - VEX_W, EVEX_CD8<64, CD8VF>; -} - multiclass avx512_logic_rm_vl_dq<bits<8> opc_d, bits<8> opc_q, string OpcodeStr, - SDNode OpNode, bit IsCommutable = 0> { - defm Q : avx512_logic_rm_vl_q<opc_q, OpcodeStr#"q", OpNode, IsCommutable>; - defm D : avx512_logic_rm_vl_d<opc_d, OpcodeStr#"d", OpNode, IsCommutable>; + SDNode OpNode, OpndItins itins, + bit IsCommutable = 0> { + defm Q : avx512_logic_rmb_vl<opc_q, OpcodeStr#"q", OpNode, OpNode, itins, + avx512vl_i64_info, IsCommutable>, + VEX_W, EVEX_CD8<64, CD8VF>; + defm D : avx512_logic_rmb_vl<opc_d, OpcodeStr#"d", null_frag, OpNode, itins, + avx512vl_i32_info, IsCommutable>, + EVEX_CD8<32, CD8VF>; } -defm VPAND : avx512_logic_rm_vl_dq<0xDB, 0xDB, "vpand", and, 1>; -defm VPOR : avx512_logic_rm_vl_dq<0xEB, 0xEB, "vpor", or, 1>; -defm VPXOR : avx512_logic_rm_vl_dq<0xEF, 0xEF, "vpxor", xor, 1>; -defm VPANDN : avx512_logic_rm_vl_dq<0xDF, 0xDF, "vpandn", X86andnp>; +defm VPAND : avx512_logic_rm_vl_dq<0xDB, 0xDB, "vpand", and, SSE_BIT_ITINS_P, 1>; +defm VPOR : avx512_logic_rm_vl_dq<0xEB, 0xEB, "vpor", or, SSE_BIT_ITINS_P, 1>; +defm VPXOR : avx512_logic_rm_vl_dq<0xEF, 0xEF, "vpxor", xor, SSE_BIT_ITINS_P, 1>; +defm VPANDN : avx512_logic_rm_vl_dq<0xDF, 0xDF, "vpandn", X86andnp, SSE_BIT_ITINS_P>; //===----------------------------------------------------------------------===// // AVX-512 FP arithmetic @@ -4831,7 +4742,7 @@ multiclass avx512_fp_scalar<bits<8> opc, string OpcodeStr,X86VectorVTInfo _, "$src2, $src1", "$src1, $src2", (_.VT (VecNode _.RC:$src1, _.RC:$src2, (i32 FROUND_CURRENT))), - itins.rr>; + itins.rr>, Sched<[itins.Sched]>; defm rm_Int : AVX512_maskable_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.IntScalarMemOp:$src2), OpcodeStr, @@ -4839,20 +4750,21 @@ multiclass avx512_fp_scalar<bits<8> opc, string OpcodeStr,X86VectorVTInfo _, (_.VT (VecNode _.RC:$src1, _.ScalarIntMemCPat:$src2, (i32 FROUND_CURRENT))), - itins.rm>; + itins.rm>, Sched<[itins.Sched.Folded, ReadAfterLd]>; let isCodeGenOnly = 1, Predicates = [HasAVX512] in { def rr : I< opc, MRMSrcReg, (outs _.FRC:$dst), (ins _.FRC:$src1, _.FRC:$src2), OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set _.FRC:$dst, (OpNode _.FRC:$src1, _.FRC:$src2))], - itins.rr> { + itins.rr>, Sched<[itins.Sched]> { let isCommutable = IsCommutable; } def rm : I< opc, MRMSrcMem, (outs _.FRC:$dst), (ins _.FRC:$src1, _.ScalarMemOp:$src2), OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set _.FRC:$dst, (OpNode _.FRC:$src1, - (_.ScalarLdFrag addr:$src2)))], itins.rm>; + (_.ScalarLdFrag addr:$src2)))], itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } } @@ -4860,12 +4772,12 @@ multiclass avx512_fp_scalar<bits<8> opc, string OpcodeStr,X86VectorVTInfo _, multiclass avx512_fp_scalar_round<bits<8> opc, string OpcodeStr,X86VectorVTInfo _, SDNode VecNode, OpndItins itins, bit IsCommutable = 0> { let ExeDomain = _.ExeDomain in - defm rrb : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), + defm rrb_Int : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2, AVX512RC:$rc), OpcodeStr, "$rc, $src2, $src1", "$src1, $src2, $rc", (VecNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), (i32 imm:$rc)), itins.rr, IsCommutable>, - EVEX_B, EVEX_RC; + EVEX_B, EVEX_RC, Sched<[itins.Sched]>; } multiclass avx512_fp_scalar_sae<bits<8> opc, string OpcodeStr,X86VectorVTInfo _, SDNode OpNode, SDNode VecNode, SDNode SaeNode, @@ -4875,35 +4787,37 @@ multiclass avx512_fp_scalar_sae<bits<8> opc, string OpcodeStr,X86VectorVTInfo _, (ins _.RC:$src1, _.RC:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (VecNode _.RC:$src1, _.RC:$src2)), - itins.rr>; + itins.rr>, Sched<[itins.Sched]>; defm rm_Int : AVX512_maskable_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.IntScalarMemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (VecNode _.RC:$src1, _.ScalarIntMemCPat:$src2)), - itins.rm>; + itins.rm>, Sched<[itins.Sched.Folded, ReadAfterLd]>; let isCodeGenOnly = 1, Predicates = [HasAVX512] in { def rr : I< opc, MRMSrcReg, (outs _.FRC:$dst), (ins _.FRC:$src1, _.FRC:$src2), OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set _.FRC:$dst, (OpNode _.FRC:$src1, _.FRC:$src2))], - itins.rr> { + itins.rr>, Sched<[itins.Sched]> { let isCommutable = IsCommutable; } def rm : I< opc, MRMSrcMem, (outs _.FRC:$dst), (ins _.FRC:$src1, _.ScalarMemOp:$src2), OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set _.FRC:$dst, (OpNode _.FRC:$src1, - (_.ScalarLdFrag addr:$src2)))], itins.rm>; + (_.ScalarLdFrag addr:$src2)))], itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } - defm rrb : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), + defm rrb_Int : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr, "{sae}, $src2, $src1", "$src1, $src2, {sae}", (SaeNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), - (i32 FROUND_NO_EXC))>, EVEX_B; + (i32 FROUND_NO_EXC)), itins.rr>, EVEX_B, + Sched<[itins.Sched]>; } } @@ -4950,14 +4864,15 @@ multiclass avx512_comutable_binop_s<bits<8> opc, string OpcodeStr, (ins _.FRC:$src1, _.FRC:$src2), OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set _.FRC:$dst, (OpNode _.FRC:$src1, _.FRC:$src2))], - itins.rr> { + itins.rr>, Sched<[itins.Sched]> { let isCommutable = 1; } def rm : I< opc, MRMSrcMem, (outs _.FRC:$dst), (ins _.FRC:$src1, _.ScalarMemOp:$src2), OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set _.FRC:$dst, (OpNode _.FRC:$src1, - (_.ScalarLdFrag addr:$src2)))], itins.rm>; + (_.ScalarLdFrag addr:$src2)))], itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } defm VMINCSSZ : avx512_comutable_binop_s<0x5D, "vminss", f32x_info, X86fminc, @@ -4984,43 +4899,43 @@ multiclass avx512_fp_packed<bits<8> opc, string OpcodeStr, SDPatternOperator OpN (ins _.RC:$src1, _.RC:$src2), OpcodeStr##_.Suffix, "$src2, $src1", "$src1, $src2", (_.VT (OpNode _.RC:$src1, _.RC:$src2)), itins.rr, - IsCommutable>, EVEX_4V; + IsCommutable>, EVEX_4V, Sched<[itins.Sched]>; let mayLoad = 1 in { defm rm: AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.MemOp:$src2), OpcodeStr##_.Suffix, "$src2, $src1", "$src1, $src2", (OpNode _.RC:$src1, (_.LdFrag addr:$src2)), itins.rm>, - EVEX_4V; + EVEX_4V, Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmb: AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2), OpcodeStr##_.Suffix, "${src2}"##_.BroadcastStr##", $src1", "$src1, ${src2}"##_.BroadcastStr, (OpNode _.RC:$src1, (_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src2)))), - itins.rm>, EVEX_4V, EVEX_B; + itins.rm>, EVEX_4V, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } } multiclass avx512_fp_round_packed<bits<8> opc, string OpcodeStr, SDPatternOperator OpNodeRnd, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in - defm rb: AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), + defm rrb: AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2, AVX512RC:$rc), OpcodeStr##_.Suffix, "$rc, $src2, $src1", "$src1, $src2, $rc", - (_.VT (OpNodeRnd _.RC:$src1, _.RC:$src2, (i32 imm:$rc)))>, - EVEX_4V, EVEX_B, EVEX_RC; + (_.VT (OpNodeRnd _.RC:$src1, _.RC:$src2, (i32 imm:$rc))), itins.rr>, + EVEX_4V, EVEX_B, EVEX_RC, Sched<[itins.Sched]>; } - multiclass avx512_fp_sae_packed<bits<8> opc, string OpcodeStr, SDPatternOperator OpNodeRnd, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in - defm rb: AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), + defm rrb: AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr##_.Suffix, "{sae}, $src2, $src1", "$src1, $src2, {sae}", - (_.VT (OpNodeRnd _.RC:$src1, _.RC:$src2, (i32 FROUND_NO_EXC)))>, - EVEX_4V, EVEX_B; + (_.VT (OpNodeRnd _.RC:$src1, _.RC:$src2, (i32 FROUND_NO_EXC))), itins.rr>, + EVEX_4V, EVEX_B, Sched<[itins.Sched]>; } multiclass avx512_fp_binop_p<bits<8> opc, string OpcodeStr, SDPatternOperator OpNode, @@ -5052,36 +4967,38 @@ multiclass avx512_fp_binop_p<bits<8> opc, string OpcodeStr, SDPatternOperator Op } } -multiclass avx512_fp_binop_p_round<bits<8> opc, string OpcodeStr, SDNode OpNodeRnd> { - defm PSZ : avx512_fp_round_packed<opc, OpcodeStr, OpNodeRnd, v16f32_info>, +multiclass avx512_fp_binop_p_round<bits<8> opc, string OpcodeStr, SDNode OpNodeRnd, + SizeItins itins> { + defm PSZ : avx512_fp_round_packed<opc, OpcodeStr, OpNodeRnd, itins.s, v16f32_info>, EVEX_V512, PS, EVEX_CD8<32, CD8VF>; - defm PDZ : avx512_fp_round_packed<opc, OpcodeStr, OpNodeRnd, v8f64_info>, + defm PDZ : avx512_fp_round_packed<opc, OpcodeStr, OpNodeRnd, itins.d, v8f64_info>, EVEX_V512, PD, VEX_W,EVEX_CD8<64, CD8VF>; } -multiclass avx512_fp_binop_p_sae<bits<8> opc, string OpcodeStr, SDNode OpNodeRnd> { - defm PSZ : avx512_fp_sae_packed<opc, OpcodeStr, OpNodeRnd, v16f32_info>, +multiclass avx512_fp_binop_p_sae<bits<8> opc, string OpcodeStr, SDNode OpNodeRnd, + SizeItins itins> { + defm PSZ : avx512_fp_sae_packed<opc, OpcodeStr, OpNodeRnd, itins.s, v16f32_info>, EVEX_V512, PS, EVEX_CD8<32, CD8VF>; - defm PDZ : avx512_fp_sae_packed<opc, OpcodeStr, OpNodeRnd, v8f64_info>, + defm PDZ : avx512_fp_sae_packed<opc, OpcodeStr, OpNodeRnd, itins.d, v8f64_info>, EVEX_V512, PD, VEX_W,EVEX_CD8<64, CD8VF>; } defm VADD : avx512_fp_binop_p<0x58, "vadd", fadd, HasAVX512, SSE_ALU_ITINS_P, 1>, - avx512_fp_binop_p_round<0x58, "vadd", X86faddRnd>; + avx512_fp_binop_p_round<0x58, "vadd", X86faddRnd, SSE_ALU_ITINS_P>; defm VMUL : avx512_fp_binop_p<0x59, "vmul", fmul, HasAVX512, SSE_MUL_ITINS_P, 1>, - avx512_fp_binop_p_round<0x59, "vmul", X86fmulRnd>; + avx512_fp_binop_p_round<0x59, "vmul", X86fmulRnd, SSE_MUL_ITINS_P>; defm VSUB : avx512_fp_binop_p<0x5C, "vsub", fsub, HasAVX512, SSE_ALU_ITINS_P>, - avx512_fp_binop_p_round<0x5C, "vsub", X86fsubRnd>; + avx512_fp_binop_p_round<0x5C, "vsub", X86fsubRnd, SSE_ALU_ITINS_P>; defm VDIV : avx512_fp_binop_p<0x5E, "vdiv", fdiv, HasAVX512, SSE_DIV_ITINS_P>, - avx512_fp_binop_p_round<0x5E, "vdiv", X86fdivRnd>; + avx512_fp_binop_p_round<0x5E, "vdiv", X86fdivRnd, SSE_DIV_ITINS_P>; defm VMIN : avx512_fp_binop_p<0x5D, "vmin", X86fmin, HasAVX512, SSE_ALU_ITINS_P, 0>, - avx512_fp_binop_p_sae<0x5D, "vmin", X86fminRnd>; + avx512_fp_binop_p_sae<0x5D, "vmin", X86fminRnd, SSE_ALU_ITINS_P>; defm VMAX : avx512_fp_binop_p<0x5F, "vmax", X86fmax, HasAVX512, SSE_ALU_ITINS_P, 0>, - avx512_fp_binop_p_sae<0x5F, "vmax", X86fmaxRnd>; + avx512_fp_binop_p_sae<0x5F, "vmax", X86fmaxRnd, SSE_ALU_ITINS_P>; let isCodeGenOnly = 1 in { defm VMINC : avx512_fp_binop_p<0x5D, "vmin", X86fminc, HasAVX512, SSE_ALU_ITINS_P, 1>; @@ -5202,65 +5119,69 @@ let Predicates = [HasVLX,HasDQI] in { } multiclass avx512_fp_scalef_p<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in { defm rr: AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr##_.Suffix, "$src2, $src1", "$src1, $src2", - (_.VT (OpNode _.RC:$src1, _.RC:$src2, (i32 FROUND_CURRENT)))>, EVEX_4V; + (_.VT (OpNode _.RC:$src1, _.RC:$src2, (i32 FROUND_CURRENT))), + itins.rr>, EVEX_4V, Sched<[itins.Sched]>; defm rm: AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.MemOp:$src2), OpcodeStr##_.Suffix, "$src2, $src1", "$src1, $src2", - (OpNode _.RC:$src1, (_.LdFrag addr:$src2), (i32 FROUND_CURRENT))>, EVEX_4V; + (OpNode _.RC:$src1, (_.LdFrag addr:$src2), (i32 FROUND_CURRENT)), + itins.rm>, EVEX_4V, Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmb: AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2), OpcodeStr##_.Suffix, "${src2}"##_.BroadcastStr##", $src1", "$src1, ${src2}"##_.BroadcastStr, (OpNode _.RC:$src1, (_.VT (X86VBroadcast - (_.ScalarLdFrag addr:$src2))), (i32 FROUND_CURRENT))>, - EVEX_4V, EVEX_B; + (_.ScalarLdFrag addr:$src2))), + (i32 FROUND_CURRENT)), itins.rm>, + EVEX_4V, EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; } } multiclass avx512_fp_scalef_scalar<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in { defm rr: AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr##_.Suffix, "$src2, $src1", "$src1, $src2", - (_.VT (OpNode _.RC:$src1, _.RC:$src2, (i32 FROUND_CURRENT)))>; + (_.VT (OpNode _.RC:$src1, _.RC:$src2, (i32 FROUND_CURRENT))), itins.rr>, + Sched<[itins.Sched]>; defm rm: AVX512_maskable_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), - (ins _.RC:$src1, _.ScalarMemOp:$src2), OpcodeStr##_.Suffix, + (ins _.RC:$src1, _.IntScalarMemOp:$src2), OpcodeStr##_.Suffix, "$src2, $src1", "$src1, $src2", - (OpNode _.RC:$src1, - (_.VT (scalar_to_vector (_.ScalarLdFrag addr:$src2))), - (i32 FROUND_CURRENT))>; + (OpNode _.RC:$src1, _.ScalarIntMemCPat:$src2, + (i32 FROUND_CURRENT)), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } multiclass avx512_fp_scalef_all<bits<8> opc, bits<8> opcScaler, string OpcodeStr, SDNode OpNode, SDNode OpNodeScal> { - defm PSZ : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, v16f32_info>, - avx512_fp_round_packed<opc, OpcodeStr, OpNode, v16f32_info>, + defm PSZ : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, SSE_ALU_F32P, v16f32_info>, + avx512_fp_round_packed<opc, OpcodeStr, OpNode, SSE_ALU_F32P, v16f32_info>, EVEX_V512, EVEX_CD8<32, CD8VF>; - defm PDZ : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, v8f64_info>, - avx512_fp_round_packed<opc, OpcodeStr, OpNode, v8f64_info>, + defm PDZ : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, SSE_ALU_F64P, v8f64_info>, + avx512_fp_round_packed<opc, OpcodeStr, OpNode, SSE_ALU_F64P, v8f64_info>, EVEX_V512, VEX_W, EVEX_CD8<64, CD8VF>; - defm SSZ128 : avx512_fp_scalef_scalar<opcScaler, OpcodeStr, OpNodeScal, f32x_info>, + defm SSZ128 : avx512_fp_scalef_scalar<opcScaler, OpcodeStr, OpNodeScal, SSE_ALU_F32S, f32x_info>, avx512_fp_scalar_round<opcScaler, OpcodeStr##"ss", f32x_info, OpNodeScal, SSE_ALU_ITINS_S.s>, EVEX_4V,EVEX_CD8<32, CD8VT1>; - defm SDZ128 : avx512_fp_scalef_scalar<opcScaler, OpcodeStr, OpNodeScal, f64x_info>, + defm SDZ128 : avx512_fp_scalef_scalar<opcScaler, OpcodeStr, OpNodeScal, SSE_ALU_F64S, f64x_info>, avx512_fp_scalar_round<opcScaler, OpcodeStr##"sd", f64x_info, OpNodeScal, SSE_ALU_ITINS_S.d>, EVEX_4V, EVEX_CD8<64, CD8VT1>, VEX_W; // Define only if AVX512VL feature is present. let Predicates = [HasVLX] in { - defm PSZ128 : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, v4f32x_info>, + defm PSZ128 : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, SSE_ALU_F32P, v4f32x_info>, EVEX_V128, EVEX_CD8<32, CD8VF>; - defm PSZ256 : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, v8f32x_info>, + defm PSZ256 : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, SSE_ALU_F32P, v8f32x_info>, EVEX_V256, EVEX_CD8<32, CD8VF>; - defm PDZ128 : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, v2f64x_info>, + defm PDZ128 : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, SSE_ALU_F64P, v2f64x_info>, EVEX_V128, VEX_W, EVEX_CD8<64, CD8VF>; - defm PDZ256 : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, v4f64x_info>, + defm PDZ256 : avx512_fp_scalef_p<opc, OpcodeStr, OpNode, SSE_ALU_F64P, v4f64x_info>, EVEX_V256, VEX_W, EVEX_CD8<64, CD8VF>; } } @@ -5271,31 +5192,35 @@ defm VSCALEF : avx512_fp_scalef_all<0x2C, 0x2D, "vscalef", X86scalef, X86scalefs //===----------------------------------------------------------------------===// multiclass avx512_vptest<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { + let ExeDomain = _.ExeDomain in { let isCommutable = 1 in defm rr : AVX512_maskable_cmp<opc, MRMSrcReg, _, (outs _.KRC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", - (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2))>, - EVEX_4V; + (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2)), itins.rr>, + EVEX_4V, Sched<[itins.Sched]>; defm rm : AVX512_maskable_cmp<opc, MRMSrcMem, _, (outs _.KRC:$dst), (ins _.RC:$src1, _.MemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (OpNode (_.VT _.RC:$src1), - (_.VT (bitconvert (_.LdFrag addr:$src2))))>, - EVEX_4V, - EVEX_CD8<_.EltSize, CD8VF>; + (_.VT (bitconvert (_.LdFrag addr:$src2)))), itins.rm>, + EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; + } } multiclass avx512_vptest_mb<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { + let ExeDomain = _.ExeDomain in defm rmb : AVX512_maskable_cmp<opc, MRMSrcMem, _, (outs _.KRC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2), OpcodeStr, "${src2}"##_.BroadcastStr##", $src1", "$src1, ${src2}"##_.BroadcastStr, (OpNode (_.VT _.RC:$src1), (_.VT (X86VBroadcast - (_.ScalarLdFrag addr:$src2))))>, - EVEX_B, EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>; + (_.ScalarLdFrag addr:$src2)))), + itins.rm>, EVEX_B, EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } // Use 512bit version to implement 128/256 bit in case NoVLX. @@ -5312,16 +5237,17 @@ multiclass avx512_vptest_lowering<SDNode OpNode, X86VectorVTInfo ExtendInfo, } multiclass avx512_vptest_dq_sizes<bits<8> opc, string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo _, string Suffix> { + OpndItins itins, AVX512VLVectorVTInfo _, + string Suffix> { let Predicates = [HasAVX512] in - defm Z : avx512_vptest<opc, OpcodeStr, OpNode, _.info512>, - avx512_vptest_mb<opc, OpcodeStr, OpNode, _.info512>, EVEX_V512; + defm Z : avx512_vptest<opc, OpcodeStr, OpNode, itins, _.info512>, + avx512_vptest_mb<opc, OpcodeStr, OpNode, itins, _.info512>, EVEX_V512; let Predicates = [HasAVX512, HasVLX] in { - defm Z256 : avx512_vptest<opc, OpcodeStr, OpNode, _.info256>, - avx512_vptest_mb<opc, OpcodeStr, OpNode, _.info256>, EVEX_V256; - defm Z128 : avx512_vptest<opc, OpcodeStr, OpNode, _.info128>, - avx512_vptest_mb<opc, OpcodeStr, OpNode, _.info128>, EVEX_V128; + defm Z256 : avx512_vptest<opc, OpcodeStr, OpNode, itins, _.info256>, + avx512_vptest_mb<opc, OpcodeStr, OpNode,itins, _.info256>, EVEX_V256; + defm Z128 : avx512_vptest<opc, OpcodeStr, OpNode, itins, _.info128>, + avx512_vptest_mb<opc, OpcodeStr, OpNode, itins, _.info128>, EVEX_V128; } let Predicates = [HasAVX512, NoVLX] in { defm Z256_Alt : avx512_vptest_lowering< OpNode, _.info512, _.info256, Suffix>; @@ -5329,30 +5255,31 @@ multiclass avx512_vptest_dq_sizes<bits<8> opc, string OpcodeStr, SDNode OpNode, } } -multiclass avx512_vptest_dq<bits<8> opc, string OpcodeStr, SDNode OpNode> { - defm D : avx512_vptest_dq_sizes<opc, OpcodeStr#"d", OpNode, +multiclass avx512_vptest_dq<bits<8> opc, string OpcodeStr, SDNode OpNode, + OpndItins itins> { + defm D : avx512_vptest_dq_sizes<opc, OpcodeStr#"d", OpNode, itins, avx512vl_i32_info, "D">; - defm Q : avx512_vptest_dq_sizes<opc, OpcodeStr#"q", OpNode, + defm Q : avx512_vptest_dq_sizes<opc, OpcodeStr#"q", OpNode, itins, avx512vl_i64_info, "Q">, VEX_W; } multiclass avx512_vptest_wb<bits<8> opc, string OpcodeStr, - SDNode OpNode> { + SDNode OpNode, OpndItins itins> { let Predicates = [HasBWI] in { - defm WZ: avx512_vptest<opc, OpcodeStr#"w", OpNode, v32i16_info>, + defm WZ: avx512_vptest<opc, OpcodeStr#"w", OpNode, itins, v32i16_info>, EVEX_V512, VEX_W; - defm BZ: avx512_vptest<opc, OpcodeStr#"b", OpNode, v64i8_info>, + defm BZ: avx512_vptest<opc, OpcodeStr#"b", OpNode, itins, v64i8_info>, EVEX_V512; } let Predicates = [HasVLX, HasBWI] in { - defm WZ256: avx512_vptest<opc, OpcodeStr#"w", OpNode, v16i16x_info>, + defm WZ256: avx512_vptest<opc, OpcodeStr#"w", OpNode, itins, v16i16x_info>, EVEX_V256, VEX_W; - defm WZ128: avx512_vptest<opc, OpcodeStr#"w", OpNode, v8i16x_info>, + defm WZ128: avx512_vptest<opc, OpcodeStr#"w", OpNode, itins, v8i16x_info>, EVEX_V128, VEX_W; - defm BZ256: avx512_vptest<opc, OpcodeStr#"b", OpNode, v32i8x_info>, + defm BZ256: avx512_vptest<opc, OpcodeStr#"b", OpNode, itins, v32i8x_info>, EVEX_V256; - defm BZ128: avx512_vptest<opc, OpcodeStr#"b", OpNode, v16i8x_info>, + defm BZ128: avx512_vptest<opc, OpcodeStr#"b", OpNode, itins, v16i8x_info>, EVEX_V128; } @@ -5362,151 +5289,165 @@ multiclass avx512_vptest_wb<bits<8> opc, string OpcodeStr, defm WZ256_Alt : avx512_vptest_lowering< OpNode, v32i16_info, v16i16x_info, "W">; defm WZ128_Alt : avx512_vptest_lowering< OpNode, v32i16_info, v8i16x_info, "W">; } - } multiclass avx512_vptest_all_forms<bits<8> opc_wb, bits<8> opc_dq, string OpcodeStr, - SDNode OpNode> : - avx512_vptest_wb <opc_wb, OpcodeStr, OpNode>, - avx512_vptest_dq<opc_dq, OpcodeStr, OpNode>; + SDNode OpNode, OpndItins itins> : + avx512_vptest_wb <opc_wb, OpcodeStr, OpNode, itins>, + avx512_vptest_dq<opc_dq, OpcodeStr, OpNode, itins>; -defm VPTESTM : avx512_vptest_all_forms<0x26, 0x27, "vptestm", X86testm>, T8PD; -defm VPTESTNM : avx512_vptest_all_forms<0x26, 0x27, "vptestnm", X86testnm>, T8XS; +defm VPTESTM : avx512_vptest_all_forms<0x26, 0x27, "vptestm", X86testm, + SSE_BIT_ITINS_P>, T8PD; +defm VPTESTNM : avx512_vptest_all_forms<0x26, 0x27, "vptestnm", X86testnm, + SSE_BIT_ITINS_P>, T8XS; //===----------------------------------------------------------------------===// // AVX-512 Shift instructions //===----------------------------------------------------------------------===// multiclass avx512_shift_rmi<bits<8> opc, Format ImmFormR, Format ImmFormM, - string OpcodeStr, SDNode OpNode, X86VectorVTInfo _> { + string OpcodeStr, SDNode OpNode, OpndItins itins, + X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in { defm ri : AVX512_maskable<opc, ImmFormR, _, (outs _.RC:$dst), (ins _.RC:$src1, u8imm:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode _.RC:$src1, (i8 imm:$src2))), - SSE_INTSHIFT_ITINS_P.rr>; + itins.rr>, Sched<[itins.Sched]>; defm mi : AVX512_maskable<opc, ImmFormM, _, (outs _.RC:$dst), (ins _.MemOp:$src1, u8imm:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode (_.VT (bitconvert (_.LdFrag addr:$src1))), (i8 imm:$src2))), - SSE_INTSHIFT_ITINS_P.rm>; + itins.rm>, Sched<[itins.Sched.Folded]>; } } multiclass avx512_shift_rmbi<bits<8> opc, Format ImmFormM, - string OpcodeStr, SDNode OpNode, X86VectorVTInfo _> { + string OpcodeStr, SDNode OpNode, OpndItins itins, + X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in defm mbi : AVX512_maskable<opc, ImmFormM, _, (outs _.RC:$dst), (ins _.ScalarMemOp:$src1, u8imm:$src2), OpcodeStr, "$src2, ${src1}"##_.BroadcastStr, "${src1}"##_.BroadcastStr##", $src2", (_.VT (OpNode (X86VBroadcast (_.ScalarLdFrag addr:$src1)), (i8 imm:$src2))), - SSE_INTSHIFT_ITINS_P.rm>, EVEX_B; + itins.rm>, EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_shift_rrm<bits<8> opc, string OpcodeStr, SDNode OpNode, - ValueType SrcVT, PatFrag bc_frag, X86VectorVTInfo _> { + OpndItins itins, ValueType SrcVT, PatFrag bc_frag, + X86VectorVTInfo _> { // src2 is always 128-bit let ExeDomain = _.ExeDomain in { defm rr : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, VR128X:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode _.RC:$src1, (SrcVT VR128X:$src2))), - SSE_INTSHIFT_ITINS_P.rr>, AVX512BIBase, EVEX_4V; + itins.rr>, AVX512BIBase, EVEX_4V, Sched<[itins.Sched]>; defm rm : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, i128mem:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode _.RC:$src1, (bc_frag (loadv2i64 addr:$src2)))), - SSE_INTSHIFT_ITINS_P.rm>, AVX512BIBase, - EVEX_4V; + itins.rm>, AVX512BIBase, + EVEX_4V, Sched<[itins.Sched.Folded, ReadAfterLd]>; } } multiclass avx512_shift_sizes<bits<8> opc, string OpcodeStr, SDNode OpNode, - ValueType SrcVT, PatFrag bc_frag, - AVX512VLVectorVTInfo VTInfo, Predicate prd> { + OpndItins itins, ValueType SrcVT, PatFrag bc_frag, + AVX512VLVectorVTInfo VTInfo, Predicate prd> { let Predicates = [prd] in - defm Z : avx512_shift_rrm<opc, OpcodeStr, OpNode, SrcVT, bc_frag, + defm Z : avx512_shift_rrm<opc, OpcodeStr, OpNode, itins, SrcVT, bc_frag, VTInfo.info512>, EVEX_V512, EVEX_CD8<VTInfo.info512.EltSize, CD8VQ> ; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_shift_rrm<opc, OpcodeStr, OpNode, SrcVT, bc_frag, + defm Z256 : avx512_shift_rrm<opc, OpcodeStr, OpNode, itins, SrcVT, bc_frag, VTInfo.info256>, EVEX_V256, EVEX_CD8<VTInfo.info256.EltSize, CD8VH>; - defm Z128 : avx512_shift_rrm<opc, OpcodeStr, OpNode, SrcVT, bc_frag, + defm Z128 : avx512_shift_rrm<opc, OpcodeStr, OpNode, itins, SrcVT, bc_frag, VTInfo.info128>, EVEX_V128, EVEX_CD8<VTInfo.info128.EltSize, CD8VF>; } } multiclass avx512_shift_types<bits<8> opcd, bits<8> opcq, bits<8> opcw, - string OpcodeStr, SDNode OpNode> { - defm D : avx512_shift_sizes<opcd, OpcodeStr#"d", OpNode, v4i32, bc_v4i32, - avx512vl_i32_info, HasAVX512>; - defm Q : avx512_shift_sizes<opcq, OpcodeStr#"q", OpNode, v2i64, bc_v2i64, - avx512vl_i64_info, HasAVX512>, VEX_W; - defm W : avx512_shift_sizes<opcw, OpcodeStr#"w", OpNode, v8i16, bc_v8i16, - avx512vl_i16_info, HasBWI>; + string OpcodeStr, SDNode OpNode, + OpndItins itins> { + defm D : avx512_shift_sizes<opcd, OpcodeStr#"d", OpNode, itins, v4i32, + bc_v4i32, avx512vl_i32_info, HasAVX512>; + defm Q : avx512_shift_sizes<opcq, OpcodeStr#"q", OpNode, itins, v2i64, + bc_v2i64, avx512vl_i64_info, HasAVX512>, VEX_W; + defm W : avx512_shift_sizes<opcw, OpcodeStr#"w", OpNode, itins, v8i16, + bc_v2i64, avx512vl_i16_info, HasBWI>; } multiclass avx512_shift_rmi_sizes<bits<8> opc, Format ImmFormR, Format ImmFormM, - string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo VTInfo> { + string OpcodeStr, SDNode OpNode, + OpndItins itins, AVX512VLVectorVTInfo VTInfo> { let Predicates = [HasAVX512] in - defm Z: avx512_shift_rmi<opc, ImmFormR, ImmFormM, OpcodeStr, OpNode, + defm Z: avx512_shift_rmi<opc, ImmFormR, ImmFormM, OpcodeStr, OpNode, itins, VTInfo.info512>, - avx512_shift_rmbi<opc, ImmFormM, OpcodeStr, OpNode, + avx512_shift_rmbi<opc, ImmFormM, OpcodeStr, OpNode, itins, VTInfo.info512>, EVEX_V512; let Predicates = [HasAVX512, HasVLX] in { - defm Z256: avx512_shift_rmi<opc, ImmFormR, ImmFormM, OpcodeStr, OpNode, + defm Z256: avx512_shift_rmi<opc, ImmFormR, ImmFormM, OpcodeStr, OpNode, itins, VTInfo.info256>, - avx512_shift_rmbi<opc, ImmFormM, OpcodeStr, OpNode, + avx512_shift_rmbi<opc, ImmFormM, OpcodeStr, OpNode, itins, VTInfo.info256>, EVEX_V256; defm Z128: avx512_shift_rmi<opc, ImmFormR, ImmFormM, OpcodeStr, OpNode, - VTInfo.info128>, - avx512_shift_rmbi<opc, ImmFormM, OpcodeStr, OpNode, + itins, VTInfo.info128>, + avx512_shift_rmbi<opc, ImmFormM, OpcodeStr, OpNode, itins, VTInfo.info128>, EVEX_V128; } } multiclass avx512_shift_rmi_w<bits<8> opcw, Format ImmFormR, Format ImmFormM, - string OpcodeStr, SDNode OpNode> { + string OpcodeStr, SDNode OpNode, + OpndItins itins> { let Predicates = [HasBWI] in defm WZ: avx512_shift_rmi<opcw, ImmFormR, ImmFormM, OpcodeStr, OpNode, - v32i16_info>, EVEX_V512; + itins, v32i16_info>, EVEX_V512, VEX_WIG; let Predicates = [HasVLX, HasBWI] in { defm WZ256: avx512_shift_rmi<opcw, ImmFormR, ImmFormM, OpcodeStr, OpNode, - v16i16x_info>, EVEX_V256; + itins, v16i16x_info>, EVEX_V256, VEX_WIG; defm WZ128: avx512_shift_rmi<opcw, ImmFormR, ImmFormM, OpcodeStr, OpNode, - v8i16x_info>, EVEX_V128; + itins, v8i16x_info>, EVEX_V128, VEX_WIG; } } multiclass avx512_shift_rmi_dq<bits<8> opcd, bits<8> opcq, Format ImmFormR, Format ImmFormM, - string OpcodeStr, SDNode OpNode> { + string OpcodeStr, SDNode OpNode, OpndItins itins> { defm D: avx512_shift_rmi_sizes<opcd, ImmFormR, ImmFormM, OpcodeStr#"d", OpNode, - avx512vl_i32_info>, EVEX_CD8<32, CD8VF>; + itins, avx512vl_i32_info>, EVEX_CD8<32, CD8VF>; defm Q: avx512_shift_rmi_sizes<opcq, ImmFormR, ImmFormM, OpcodeStr#"q", OpNode, - avx512vl_i64_info>, EVEX_CD8<64, CD8VF>, VEX_W; + itins, avx512vl_i64_info>, EVEX_CD8<64, CD8VF>, VEX_W; } -defm VPSRL : avx512_shift_rmi_dq<0x72, 0x73, MRM2r, MRM2m, "vpsrl", X86vsrli>, - avx512_shift_rmi_w<0x71, MRM2r, MRM2m, "vpsrlw", X86vsrli>, AVX512BIi8Base, EVEX_4V; +defm VPSRL : avx512_shift_rmi_dq<0x72, 0x73, MRM2r, MRM2m, "vpsrl", X86vsrli, + SSE_INTSHIFT_P>, + avx512_shift_rmi_w<0x71, MRM2r, MRM2m, "vpsrlw", X86vsrli, + SSE_INTSHIFT_P>, AVX512BIi8Base, EVEX_4V; -defm VPSLL : avx512_shift_rmi_dq<0x72, 0x73, MRM6r, MRM6m, "vpsll", X86vshli>, - avx512_shift_rmi_w<0x71, MRM6r, MRM6m, "vpsllw", X86vshli>, AVX512BIi8Base, EVEX_4V; +defm VPSLL : avx512_shift_rmi_dq<0x72, 0x73, MRM6r, MRM6m, "vpsll", X86vshli, + SSE_INTSHIFT_P>, + avx512_shift_rmi_w<0x71, MRM6r, MRM6m, "vpsllw", X86vshli, + SSE_INTSHIFT_P>, AVX512BIi8Base, EVEX_4V; -defm VPSRA : avx512_shift_rmi_dq<0x72, 0x72, MRM4r, MRM4m, "vpsra", X86vsrai>, - avx512_shift_rmi_w<0x71, MRM4r, MRM4m, "vpsraw", X86vsrai>, AVX512BIi8Base, EVEX_4V; +defm VPSRA : avx512_shift_rmi_dq<0x72, 0x72, MRM4r, MRM4m, "vpsra", X86vsrai, + SSE_INTSHIFT_P>, + avx512_shift_rmi_w<0x71, MRM4r, MRM4m, "vpsraw", X86vsrai, + SSE_INTSHIFT_P>, AVX512BIi8Base, EVEX_4V; -defm VPROR : avx512_shift_rmi_dq<0x72, 0x72, MRM0r, MRM0m, "vpror", X86vrotri>, AVX512BIi8Base, EVEX_4V; -defm VPROL : avx512_shift_rmi_dq<0x72, 0x72, MRM1r, MRM1m, "vprol", X86vrotli>, AVX512BIi8Base, EVEX_4V; +defm VPROR : avx512_shift_rmi_dq<0x72, 0x72, MRM0r, MRM0m, "vpror", X86vrotri, + SSE_INTSHIFT_P>, AVX512BIi8Base, EVEX_4V; +defm VPROL : avx512_shift_rmi_dq<0x72, 0x72, MRM1r, MRM1m, "vprol", X86vrotli, + SSE_INTSHIFT_P>, AVX512BIi8Base, EVEX_4V; -defm VPSLL : avx512_shift_types<0xF2, 0xF3, 0xF1, "vpsll", X86vshl>; -defm VPSRA : avx512_shift_types<0xE2, 0xE2, 0xE1, "vpsra", X86vsra>; -defm VPSRL : avx512_shift_types<0xD2, 0xD3, 0xD1, "vpsrl", X86vsrl>; +defm VPSLL : avx512_shift_types<0xF2, 0xF3, 0xF1, "vpsll", X86vshl, SSE_INTSHIFT_P>; +defm VPSRA : avx512_shift_types<0xE2, 0xE2, 0xE1, "vpsra", X86vsra, SSE_INTSHIFT_P>; +defm VPSRL : avx512_shift_types<0xD2, 0xD3, 0xD1, "vpsrl", X86vsrl, SSE_INTSHIFT_P>; // Use 512bit VPSRA/VPSRAI version to implement v2i64/v4i64 in case NoVLX. let Predicates = [HasAVX512, NoVLX] in { @@ -5539,25 +5480,27 @@ let Predicates = [HasAVX512, NoVLX] in { // Variable Bit Shifts //===-------------------------------------------------------------------===// multiclass avx512_var_shift<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in { defm rr : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode _.RC:$src1, (_.VT _.RC:$src2))), - SSE_INTSHIFT_ITINS_P.rr>, AVX5128IBase, EVEX_4V; + itins.rr>, AVX5128IBase, EVEX_4V, + Sched<[itins.Sched]>; defm rm : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.MemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode _.RC:$src1, (_.VT (bitconvert (_.LdFrag addr:$src2))))), - SSE_INTSHIFT_ITINS_P.rm>, AVX5128IBase, EVEX_4V, - EVEX_CD8<_.EltSize, CD8VF>; + itins.rm>, AVX5128IBase, EVEX_4V, + EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } multiclass avx512_var_shift_mb<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in defm rmb : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2), OpcodeStr, @@ -5565,29 +5508,30 @@ multiclass avx512_var_shift_mb<bits<8> opc, string OpcodeStr, SDNode OpNode, "$src1, ${src2}"##_.BroadcastStr, (_.VT (OpNode _.RC:$src1, (_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src2))))), - SSE_INTSHIFT_ITINS_P.rm>, AVX5128IBase, EVEX_B, - EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>; + itins.rm>, AVX5128IBase, EVEX_B, + EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_var_shift_sizes<bits<8> opc, string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo _> { + OpndItins itins, AVX512VLVectorVTInfo _> { let Predicates = [HasAVX512] in - defm Z : avx512_var_shift<opc, OpcodeStr, OpNode, _.info512>, - avx512_var_shift_mb<opc, OpcodeStr, OpNode, _.info512>, EVEX_V512; + defm Z : avx512_var_shift<opc, OpcodeStr, OpNode, itins, _.info512>, + avx512_var_shift_mb<opc, OpcodeStr, OpNode, itins, _.info512>, EVEX_V512; let Predicates = [HasAVX512, HasVLX] in { - defm Z256 : avx512_var_shift<opc, OpcodeStr, OpNode, _.info256>, - avx512_var_shift_mb<opc, OpcodeStr, OpNode, _.info256>, EVEX_V256; - defm Z128 : avx512_var_shift<opc, OpcodeStr, OpNode, _.info128>, - avx512_var_shift_mb<opc, OpcodeStr, OpNode, _.info128>, EVEX_V128; + defm Z256 : avx512_var_shift<opc, OpcodeStr, OpNode, itins, _.info256>, + avx512_var_shift_mb<opc, OpcodeStr, OpNode, itins, _.info256>, EVEX_V256; + defm Z128 : avx512_var_shift<opc, OpcodeStr, OpNode, itins, _.info128>, + avx512_var_shift_mb<opc, OpcodeStr, OpNode, itins, _.info128>, EVEX_V128; } } multiclass avx512_var_shift_types<bits<8> opc, string OpcodeStr, - SDNode OpNode> { - defm D : avx512_var_shift_sizes<opc, OpcodeStr#"d", OpNode, + SDNode OpNode, OpndItins itins> { + defm D : avx512_var_shift_sizes<opc, OpcodeStr#"d", OpNode, itins, avx512vl_i32_info>; - defm Q : avx512_var_shift_sizes<opc, OpcodeStr#"q", OpNode, + defm Q : avx512_var_shift_sizes<opc, OpcodeStr#"q", OpNode, itins, avx512vl_i64_info>, VEX_W; } @@ -5613,30 +5557,30 @@ multiclass avx512_var_shift_lowering<AVX512VLVectorVTInfo _, string OpcodeStr, } } multiclass avx512_var_shift_w<bits<8> opc, string OpcodeStr, - SDNode OpNode> { + SDNode OpNode, OpndItins itins> { let Predicates = [HasBWI] in - defm WZ: avx512_var_shift<opc, OpcodeStr, OpNode, v32i16_info>, + defm WZ: avx512_var_shift<opc, OpcodeStr, OpNode, itins, v32i16_info>, EVEX_V512, VEX_W; let Predicates = [HasVLX, HasBWI] in { - defm WZ256: avx512_var_shift<opc, OpcodeStr, OpNode, v16i16x_info>, + defm WZ256: avx512_var_shift<opc, OpcodeStr, OpNode, itins, v16i16x_info>, EVEX_V256, VEX_W; - defm WZ128: avx512_var_shift<opc, OpcodeStr, OpNode, v8i16x_info>, + defm WZ128: avx512_var_shift<opc, OpcodeStr, OpNode, itins, v8i16x_info>, EVEX_V128, VEX_W; } } -defm VPSLLV : avx512_var_shift_types<0x47, "vpsllv", shl>, - avx512_var_shift_w<0x12, "vpsllvw", shl>; +defm VPSLLV : avx512_var_shift_types<0x47, "vpsllv", shl, SSE_INTSHIFT_P>, + avx512_var_shift_w<0x12, "vpsllvw", shl, SSE_INTSHIFT_P>; -defm VPSRAV : avx512_var_shift_types<0x46, "vpsrav", sra>, - avx512_var_shift_w<0x11, "vpsravw", sra>; +defm VPSRAV : avx512_var_shift_types<0x46, "vpsrav", sra, SSE_INTSHIFT_P>, + avx512_var_shift_w<0x11, "vpsravw", sra, SSE_INTSHIFT_P>; -defm VPSRLV : avx512_var_shift_types<0x45, "vpsrlv", srl>, - avx512_var_shift_w<0x10, "vpsrlvw", srl>; +defm VPSRLV : avx512_var_shift_types<0x45, "vpsrlv", srl, SSE_INTSHIFT_P>, + avx512_var_shift_w<0x10, "vpsrlvw", srl, SSE_INTSHIFT_P>; -defm VPRORV : avx512_var_shift_types<0x14, "vprorv", rotr>; -defm VPROLV : avx512_var_shift_types<0x15, "vprolv", rotl>; +defm VPRORV : avx512_var_shift_types<0x14, "vprorv", rotr, SSE_INTSHIFT_P>; +defm VPROLV : avx512_var_shift_types<0x15, "vprolv", rotl, SSE_INTSHIFT_P>; defm : avx512_var_shift_lowering<avx512vl_i64_info, "VPSRAVQ", sra, [HasAVX512, NoVLX]>; defm : avx512_var_shift_lowering<avx512vl_i16_info, "VPSLLVW", shl, [HasBWI, NoVLX]>; @@ -5714,26 +5658,26 @@ let Predicates = [HasAVX512, NoVLX] in { (EXTRACT_SUBREG (v8i64 (VPROLVQZrr (v8i64 (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src1, sub_xmm)), - (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src2, sub_xmm))), + (v8i64 (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src2, sub_xmm)))), sub_xmm)>; def : Pat<(v4i64 (rotl (v4i64 VR256X:$src1), (v4i64 VR256X:$src2))), (EXTRACT_SUBREG (v8i64 (VPROLVQZrr (v8i64 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), - (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm))), + (v8i64 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm)))), sub_ymm)>; def : Pat<(v4i32 (rotl (v4i32 VR128X:$src1), (v4i32 VR128X:$src2))), (EXTRACT_SUBREG (v16i32 (VPROLVDZrr (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src1, sub_xmm)), - (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src2, sub_xmm))), + (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src2, sub_xmm)))), sub_xmm)>; def : Pat<(v8i32 (rotl (v8i32 VR256X:$src1), (v8i32 VR256X:$src2))), (EXTRACT_SUBREG (v16i32 (VPROLVDZrr (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), - (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm))), + (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm)))), sub_ymm)>; def : Pat<(v2i64 (X86vrotli (v2i64 VR128X:$src1), (i8 imm:$src2))), @@ -5765,26 +5709,26 @@ let Predicates = [HasAVX512, NoVLX] in { (EXTRACT_SUBREG (v8i64 (VPRORVQZrr (v8i64 (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src1, sub_xmm)), - (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src2, sub_xmm))), + (v8i64 (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src2, sub_xmm)))), sub_xmm)>; def : Pat<(v4i64 (rotr (v4i64 VR256X:$src1), (v4i64 VR256X:$src2))), (EXTRACT_SUBREG (v8i64 (VPRORVQZrr (v8i64 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), - (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm))), + (v8i64 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm)))), sub_ymm)>; def : Pat<(v4i32 (rotr (v4i32 VR128X:$src1), (v4i32 VR128X:$src2))), (EXTRACT_SUBREG (v16i32 (VPRORVDZrr (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src1, sub_xmm)), - (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src2, sub_xmm))), + (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR128X:$src2, sub_xmm)))), sub_xmm)>; def : Pat<(v8i32 (rotr (v8i32 VR256X:$src1), (v8i32 VR256X:$src2))), (EXTRACT_SUBREG (v16i32 (VPRORVDZrr (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)), - (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm))), + (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src2, sub_ymm)))), sub_ymm)>; def : Pat<(v2i64 (X86vrotri (v2i64 VR128X:$src1), (i8 imm:$src2))), @@ -5814,84 +5758,86 @@ let Predicates = [HasAVX512, NoVLX] in { // 1-src variable permutation VPERMW/D/Q //===-------------------------------------------------------------------===// multiclass avx512_vperm_dq_sizes<bits<8> opc, string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo _> { + OpndItins itins, AVX512VLVectorVTInfo _> { let Predicates = [HasAVX512] in - defm Z : avx512_var_shift<opc, OpcodeStr, OpNode, _.info512>, - avx512_var_shift_mb<opc, OpcodeStr, OpNode, _.info512>, EVEX_V512; + defm Z : avx512_var_shift<opc, OpcodeStr, OpNode, itins, _.info512>, + avx512_var_shift_mb<opc, OpcodeStr, OpNode, itins, _.info512>, EVEX_V512; let Predicates = [HasAVX512, HasVLX] in - defm Z256 : avx512_var_shift<opc, OpcodeStr, OpNode, _.info256>, - avx512_var_shift_mb<opc, OpcodeStr, OpNode, _.info256>, EVEX_V256; + defm Z256 : avx512_var_shift<opc, OpcodeStr, OpNode, itins, _.info256>, + avx512_var_shift_mb<opc, OpcodeStr, OpNode, itins, _.info256>, EVEX_V256; } multiclass avx512_vpermi_dq_sizes<bits<8> opc, Format ImmFormR, Format ImmFormM, string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo VTInfo> { + OpndItins itins, AVX512VLVectorVTInfo VTInfo> { let Predicates = [HasAVX512] in defm Z: avx512_shift_rmi<opc, ImmFormR, ImmFormM, OpcodeStr, OpNode, - VTInfo.info512>, + itins, VTInfo.info512>, avx512_shift_rmbi<opc, ImmFormM, OpcodeStr, OpNode, - VTInfo.info512>, EVEX_V512; + itins, VTInfo.info512>, EVEX_V512; let Predicates = [HasAVX512, HasVLX] in defm Z256: avx512_shift_rmi<opc, ImmFormR, ImmFormM, OpcodeStr, OpNode, - VTInfo.info256>, + itins, VTInfo.info256>, avx512_shift_rmbi<opc, ImmFormM, OpcodeStr, OpNode, - VTInfo.info256>, EVEX_V256; + itins, VTInfo.info256>, EVEX_V256; } multiclass avx512_vperm_bw<bits<8> opc, string OpcodeStr, Predicate prd, SDNode OpNode, - AVX512VLVectorVTInfo _> { + OpndItins itins, AVX512VLVectorVTInfo _> { let Predicates = [prd] in - defm Z: avx512_var_shift<opc, OpcodeStr, OpNode, _.info512>, + defm Z: avx512_var_shift<opc, OpcodeStr, OpNode, itins, _.info512>, EVEX_V512 ; let Predicates = [HasVLX, prd] in { - defm Z256: avx512_var_shift<opc, OpcodeStr, OpNode, _.info256>, + defm Z256: avx512_var_shift<opc, OpcodeStr, OpNode, itins, _.info256>, EVEX_V256 ; - defm Z128: avx512_var_shift<opc, OpcodeStr, OpNode, _.info128>, + defm Z128: avx512_var_shift<opc, OpcodeStr, OpNode, itins, _.info128>, EVEX_V128 ; } } defm VPERMW : avx512_vperm_bw<0x8D, "vpermw", HasBWI, X86VPermv, - avx512vl_i16_info>, VEX_W; + AVX2_PERMV_I, avx512vl_i16_info>, VEX_W; defm VPERMB : avx512_vperm_bw<0x8D, "vpermb", HasVBMI, X86VPermv, - avx512vl_i8_info>; + AVX2_PERMV_I, avx512vl_i8_info>; defm VPERMD : avx512_vperm_dq_sizes<0x36, "vpermd", X86VPermv, - avx512vl_i32_info>; + AVX2_PERMV_I, avx512vl_i32_info>; defm VPERMQ : avx512_vperm_dq_sizes<0x36, "vpermq", X86VPermv, - avx512vl_i64_info>, VEX_W; + AVX2_PERMV_I, avx512vl_i64_info>, VEX_W; defm VPERMPS : avx512_vperm_dq_sizes<0x16, "vpermps", X86VPermv, - avx512vl_f32_info>; + AVX2_PERMV_F, avx512vl_f32_info>; defm VPERMPD : avx512_vperm_dq_sizes<0x16, "vpermpd", X86VPermv, - avx512vl_f64_info>, VEX_W; + AVX2_PERMV_F, avx512vl_f64_info>, VEX_W; defm VPERMQ : avx512_vpermi_dq_sizes<0x00, MRMSrcReg, MRMSrcMem, "vpermq", - X86VPermi, avx512vl_i64_info>, + X86VPermi, AVX2_PERMV_I, avx512vl_i64_info>, EVEX, AVX512AIi8Base, EVEX_CD8<64, CD8VF>, VEX_W; defm VPERMPD : avx512_vpermi_dq_sizes<0x01, MRMSrcReg, MRMSrcMem, "vpermpd", - X86VPermi, avx512vl_f64_info>, + X86VPermi, AVX2_PERMV_F, avx512vl_f64_info>, EVEX, AVX512AIi8Base, EVEX_CD8<64, CD8VF>, VEX_W; //===----------------------------------------------------------------------===// // AVX-512 - VPERMIL //===----------------------------------------------------------------------===// -multiclass avx512_permil_vec<bits<8> OpcVar, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _, X86VectorVTInfo Ctrl> { +multiclass avx512_permil_vec<bits<8> OpcVar, string OpcodeStr, SDNode OpNode, + OpndItins itins, X86VectorVTInfo _, + X86VectorVTInfo Ctrl> { defm rr: AVX512_maskable<OpcVar, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, Ctrl.RC:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode _.RC:$src1, - (Ctrl.VT Ctrl.RC:$src2)))>, - T8PD, EVEX_4V; + (Ctrl.VT Ctrl.RC:$src2))), itins.rr>, + T8PD, EVEX_4V, Sched<[itins.Sched]>; defm rm: AVX512_maskable<OpcVar, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, Ctrl.MemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode _.RC:$src1, - (Ctrl.VT (bitconvert(Ctrl.LdFrag addr:$src2)))))>, - T8PD, EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>; + (Ctrl.VT (bitconvert(Ctrl.LdFrag addr:$src2))))), + itins.rm>, T8PD, EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmb: AVX512_maskable<OpcVar, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2), OpcodeStr, "${src2}"##_.BroadcastStr##", $src1", @@ -5899,30 +5845,31 @@ multiclass avx512_permil_vec<bits<8> OpcVar, string OpcodeStr, SDNode OpNode, (_.VT (OpNode _.RC:$src1, (Ctrl.VT (X86VBroadcast - (Ctrl.ScalarLdFrag addr:$src2)))))>, - T8PD, EVEX_4V, EVEX_B, EVEX_CD8<_.EltSize, CD8VF>; + (Ctrl.ScalarLdFrag addr:$src2))))), + itins.rm>, T8PD, EVEX_4V, EVEX_B, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_permil_vec_common<string OpcodeStr, bits<8> OpcVar, - AVX512VLVectorVTInfo _, AVX512VLVectorVTInfo Ctrl>{ + OpndItins itins, AVX512VLVectorVTInfo _, + AVX512VLVectorVTInfo Ctrl> { let Predicates = [HasAVX512] in { - defm Z : avx512_permil_vec<OpcVar, OpcodeStr, X86VPermilpv, _.info512, - Ctrl.info512>, EVEX_V512; + defm Z : avx512_permil_vec<OpcVar, OpcodeStr, X86VPermilpv, itins, + _.info512, Ctrl.info512>, EVEX_V512; } let Predicates = [HasAVX512, HasVLX] in { - defm Z128 : avx512_permil_vec<OpcVar, OpcodeStr, X86VPermilpv, _.info128, - Ctrl.info128>, EVEX_V128; - defm Z256 : avx512_permil_vec<OpcVar, OpcodeStr, X86VPermilpv, _.info256, - Ctrl.info256>, EVEX_V256; + defm Z128 : avx512_permil_vec<OpcVar, OpcodeStr, X86VPermilpv, itins, + _.info128, Ctrl.info128>, EVEX_V128; + defm Z256 : avx512_permil_vec<OpcVar, OpcodeStr, X86VPermilpv, itins, + _.info256, Ctrl.info256>, EVEX_V256; } } multiclass avx512_permil<string OpcodeStr, bits<8> OpcImm, bits<8> OpcVar, AVX512VLVectorVTInfo _, AVX512VLVectorVTInfo Ctrl>{ - - defm NAME: avx512_permil_vec_common<OpcodeStr, OpcVar, _, Ctrl>; + defm NAME: avx512_permil_vec_common<OpcodeStr, OpcVar, AVX_VPERMILV, _, Ctrl>; defm NAME: avx512_shift_rmi_sizes<OpcImm, MRMSrcReg, MRMSrcMem, OpcodeStr, - X86VPermilpi, _>, + X86VPermilpi, AVX_VPERMILV, _>, EVEX, AVX512AIi8Base, EVEX_CD8<_.info128.EltSize, CD8VF>; } @@ -5932,29 +5879,31 @@ defm VPERMILPS : avx512_permil<"vpermilps", 0x04, 0x0C, avx512vl_f32_info, let ExeDomain = SSEPackedDouble in defm VPERMILPD : avx512_permil<"vpermilpd", 0x05, 0x0D, avx512vl_f64_info, avx512vl_i64_info>, VEX_W; + //===----------------------------------------------------------------------===// // AVX-512 - VPSHUFD, VPSHUFLW, VPSHUFHW //===----------------------------------------------------------------------===// defm VPSHUFD : avx512_shift_rmi_sizes<0x70, MRMSrcReg, MRMSrcMem, "vpshufd", - X86PShufd, avx512vl_i32_info>, + X86PShufd, SSE_PSHUF, avx512vl_i32_info>, EVEX, AVX512BIi8Base, EVEX_CD8<32, CD8VF>; defm VPSHUFH : avx512_shift_rmi_w<0x70, MRMSrcReg, MRMSrcMem, "vpshufhw", - X86PShufhw>, EVEX, AVX512XSIi8Base; + X86PShufhw, SSE_PSHUF>, EVEX, AVX512XSIi8Base; defm VPSHUFL : avx512_shift_rmi_w<0x70, MRMSrcReg, MRMSrcMem, "vpshuflw", - X86PShuflw>, EVEX, AVX512XDIi8Base; + X86PShuflw, SSE_PSHUF>, EVEX, AVX512XDIi8Base; -multiclass avx512_pshufb_sizes<bits<8> opc, string OpcodeStr, SDNode OpNode> { +multiclass avx512_pshufb_sizes<bits<8> opc, string OpcodeStr, SDNode OpNode, + OpndItins itins> { let Predicates = [HasBWI] in - defm Z: avx512_var_shift<opc, OpcodeStr, OpNode, v64i8_info>, EVEX_V512; + defm Z: avx512_var_shift<opc, OpcodeStr, OpNode, itins, v64i8_info>, EVEX_V512; let Predicates = [HasVLX, HasBWI] in { - defm Z256: avx512_var_shift<opc, OpcodeStr, OpNode, v32i8x_info>, EVEX_V256; - defm Z128: avx512_var_shift<opc, OpcodeStr, OpNode, v16i8x_info>, EVEX_V128; + defm Z256: avx512_var_shift<opc, OpcodeStr, OpNode, itins, v32i8x_info>, EVEX_V256; + defm Z128: avx512_var_shift<opc, OpcodeStr, OpNode, itins, v16i8x_info>, EVEX_V128; } } -defm VPSHUFB: avx512_pshufb_sizes<0x00, "vpshufb", X86pshufb>; +defm VPSHUFB: avx512_pshufb_sizes<0x00, "vpshufb", X86pshufb, SSE_PSHUFB>, VEX_WIG; //===----------------------------------------------------------------------===// // Move Low to High and High to Low packed FP Instructions @@ -5970,18 +5919,6 @@ def VMOVHLPSZrr : AVX512PSI<0x12, MRMSrcReg, (outs VR128X:$dst), [(set VR128X:$dst, (v4f32 (X86Movhlps VR128X:$src1, VR128X:$src2)))], IIC_SSE_MOV_LH>, EVEX_4V; -let Predicates = [HasAVX512] in { - // MOVLHPS patterns - def : Pat<(v4i32 (X86Movlhps VR128X:$src1, VR128X:$src2)), - (VMOVLHPSZrr VR128X:$src1, VR128X:$src2)>; - def : Pat<(v2i64 (X86Movlhps VR128X:$src1, VR128X:$src2)), - (VMOVLHPSZrr (v2i64 VR128X:$src1), VR128X:$src2)>; - - // MOVHLPS patterns - def : Pat<(v4i32 (X86Movhlps VR128X:$src1, VR128X:$src2)), - (VMOVHLPSZrr VR128X:$src1, VR128X:$src2)>; -} - //===----------------------------------------------------------------------===// // VMOVHPS/PD VMOVLPS Instructions // All patterns was taken from SSS implementation. @@ -6002,7 +5939,7 @@ multiclass avx512_mov_hilo_packed<bits<8> opc, string OpcodeStr, SDNode OpNode, defm VMOVHPSZ128 : avx512_mov_hilo_packed<0x16, "vmovhps", X86Movlhps, v4f32x_info>, EVEX_CD8<32, CD8VT2>, PS; -defm VMOVHPDZ128 : avx512_mov_hilo_packed<0x16, "vmovhpd", X86Movlhpd, +defm VMOVHPDZ128 : avx512_mov_hilo_packed<0x16, "vmovhpd", X86Unpckl, v2f64x_info>, EVEX_CD8<64, CD8VT1>, PD, VEX_W; defm VMOVLPSZ128 : avx512_mov_hilo_packed<0x12, "vmovlps", X86Movlps, v4f32x_info>, EVEX_CD8<32, CD8VT2>, PS; @@ -6015,25 +5952,18 @@ let Predicates = [HasAVX512] in { (bc_v4f32 (v2i64 (scalar_to_vector (loadi64 addr:$src2))))), (VMOVHPSZ128rm VR128X:$src1, addr:$src2)>; def : Pat<(X86Movlhps VR128X:$src1, - (bc_v4i32 (v2i64 (X86vzload addr:$src2)))), + (bc_v4f32 (v2i64 (X86vzload addr:$src2)))), (VMOVHPSZ128rm VR128X:$src1, addr:$src2)>; // VMOVHPD patterns def : Pat<(v2f64 (X86Unpckl VR128X:$src1, - (scalar_to_vector (loadf64 addr:$src2)))), - (VMOVHPDZ128rm VR128X:$src1, addr:$src2)>; - def : Pat<(v2f64 (X86Unpckl VR128X:$src1, (bc_v2f64 (v2i64 (scalar_to_vector (loadi64 addr:$src2)))))), (VMOVHPDZ128rm VR128X:$src1, addr:$src2)>; // VMOVLPS patterns def : Pat<(v4f32 (X86Movlps VR128X:$src1, (load addr:$src2))), (VMOVLPSZ128rm VR128X:$src1, addr:$src2)>; - def : Pat<(v4i32 (X86Movlps VR128X:$src1, (load addr:$src2))), - (VMOVLPSZ128rm VR128X:$src1, addr:$src2)>; // VMOVLPD patterns def : Pat<(v2f64 (X86Movlpd VR128X:$src1, (load addr:$src2))), (VMOVLPDZ128rm VR128X:$src1, addr:$src2)>; - def : Pat<(v2i64 (X86Movlpd VR128X:$src1, (load addr:$src2))), - (VMOVLPDZ128rm VR128X:$src1, addr:$src2)>; def : Pat<(v2f64 (X86Movsd VR128X:$src1, (v2f64 (scalar_to_vector (loadf64 addr:$src2))))), (VMOVLPDZ128rm VR128X:$src1, addr:$src2)>; @@ -6079,16 +6009,10 @@ let Predicates = [HasAVX512] in { def : Pat<(store (v4f32 (X86Movlps (load addr:$src1), VR128X:$src2)), addr:$src1), (VMOVLPSZ128mr addr:$src1, VR128X:$src2)>; - def : Pat<(store (v4i32 (X86Movlps - (bc_v4i32 (loadv2i64 addr:$src1)), VR128X:$src2)), addr:$src1), - (VMOVLPSZ128mr addr:$src1, VR128X:$src2)>; // VMOVLPD patterns def : Pat<(store (v2f64 (X86Movlpd (load addr:$src1), VR128X:$src2)), addr:$src1), (VMOVLPDZ128mr addr:$src1, VR128X:$src2)>; - def : Pat<(store (v2i64 (X86Movlpd (load addr:$src1), VR128X:$src2)), - addr:$src1), - (VMOVLPDZ128mr addr:$src1, VR128X:$src2)>; } //===----------------------------------------------------------------------===// // FMA - Fused Multiply Operations @@ -6096,45 +6020,38 @@ let Predicates = [HasAVX512] in { multiclass avx512_fma3p_213_rm<bits<8> opc, string OpcodeStr, SDNode OpNode, X86VectorVTInfo _, string Suff> { - let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in { + let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain, hasSideEffects = 0 in { defm r: AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", - (_.VT (OpNode _.RC:$src2, _.RC:$src1, _.RC:$src3)), 1, 1>, - AVX512FMA3Base; + (_.VT (OpNode _.RC:$src2, _.RC:$src1, _.RC:$src3)), NoItinerary, 1, 1>, + AVX512FMA3Base, Sched<[WriteFMA]>; defm m: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.MemOp:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", - (_.VT (OpNode _.RC:$src2, _.RC:$src1, (_.LdFrag addr:$src3))), 1, 0>, - AVX512FMA3Base; + (_.VT (OpNode _.RC:$src2, _.RC:$src1, (_.LdFrag addr:$src3))), + NoItinerary, 1, 0>, AVX512FMA3Base, Sched<[WriteFMALd, ReadAfterLd]>; defm mb: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.ScalarMemOp:$src3), OpcodeStr, !strconcat("${src3}", _.BroadcastStr,", $src2"), !strconcat("$src2, ${src3}", _.BroadcastStr ), (OpNode _.RC:$src2, - _.RC:$src1,(_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src3)))), 1, 0>, - AVX512FMA3Base, EVEX_B; + _.RC:$src1,(_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src3)))), + NoItinerary, 1, 0>, AVX512FMA3Base, EVEX_B, + Sched<[WriteFMALd, ReadAfterLd]>; } - - // Additional pattern for folding broadcast nodes in other orders. - def : Pat<(_.VT (vselect _.KRCWM:$mask, - (OpNode _.RC:$src1, _.RC:$src2, - (X86VBroadcast (_.ScalarLdFrag addr:$src3))), - _.RC:$src1)), - (!cast<Instruction>(NAME#Suff#_.ZSuffix#mbk) _.RC:$src1, - _.KRCWM:$mask, _.RC:$src2, addr:$src3)>; } multiclass avx512_fma3_213_round<bits<8> opc, string OpcodeStr, SDNode OpNode, X86VectorVTInfo _, string Suff> { - let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in + let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain, hasSideEffects = 0 in defm rb: AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3, AVX512RC:$rc), OpcodeStr, "$rc, $src3, $src2", "$src2, $src3, $rc", - (_.VT ( OpNode _.RC:$src2, _.RC:$src1, _.RC:$src3, (i32 imm:$rc))), 1, 1>, - AVX512FMA3Base, EVEX_B, EVEX_RC; + (_.VT ( OpNode _.RC:$src2, _.RC:$src1, _.RC:$src3, (i32 imm:$rc))), + NoItinerary, 1, 1>, AVX512FMA3Base, EVEX_B, EVEX_RC, Sched<[WriteFMA]>; } multiclass avx512_fma3p_213_common<bits<8> opc, string OpcodeStr, SDNode OpNode, @@ -6171,18 +6088,18 @@ defm VFNMSUB213 : avx512_fma3p_213_f<0xAE, "vfnmsub213", X86Fnmsub, X86FnmsubR multiclass avx512_fma3p_231_rm<bits<8> opc, string OpcodeStr, SDNode OpNode, X86VectorVTInfo _, string Suff> { - let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in { + let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain, hasSideEffects = 0 in { defm r: AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", - (_.VT (OpNode _.RC:$src2, _.RC:$src3, _.RC:$src1)), 1, 1>, - AVX512FMA3Base; + (_.VT (OpNode _.RC:$src2, _.RC:$src3, _.RC:$src1)), NoItinerary, 1, 1, + vselect, 1>, AVX512FMA3Base, Sched<[WriteFMA]>; defm m: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.MemOp:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", - (_.VT (OpNode _.RC:$src2, (_.LdFrag addr:$src3), _.RC:$src1)), 1, 0>, - AVX512FMA3Base; + (_.VT (OpNode _.RC:$src2, (_.LdFrag addr:$src3), _.RC:$src1)), + NoItinerary, 1, 0>, AVX512FMA3Base, Sched<[WriteFMALd, ReadAfterLd]>; defm mb: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.ScalarMemOp:$src3), @@ -6190,36 +6107,20 @@ multiclass avx512_fma3p_231_rm<bits<8> opc, string OpcodeStr, SDNode OpNode, "$src2, ${src3}"##_.BroadcastStr, (_.VT (OpNode _.RC:$src2, (_.VT (X86VBroadcast(_.ScalarLdFrag addr:$src3))), - _.RC:$src1)), 1, 0>, AVX512FMA3Base, EVEX_B; + _.RC:$src1)), NoItinerary, 1, 0>, AVX512FMA3Base, EVEX_B, + Sched<[WriteFMALd, ReadAfterLd]>; } - - // Additional patterns for folding broadcast nodes in other orders. - def : Pat<(_.VT (OpNode (X86VBroadcast (_.ScalarLdFrag addr:$src3)), - _.RC:$src2, _.RC:$src1)), - (!cast<Instruction>(NAME#Suff#_.ZSuffix#mb) _.RC:$src1, - _.RC:$src2, addr:$src3)>; - def : Pat<(_.VT (vselect _.KRCWM:$mask, - (OpNode (X86VBroadcast (_.ScalarLdFrag addr:$src3)), - _.RC:$src2, _.RC:$src1), - _.RC:$src1)), - (!cast<Instruction>(NAME#Suff#_.ZSuffix#mbk) _.RC:$src1, - _.KRCWM:$mask, _.RC:$src2, addr:$src3)>; - def : Pat<(_.VT (vselect _.KRCWM:$mask, - (OpNode (X86VBroadcast (_.ScalarLdFrag addr:$src3)), - _.RC:$src2, _.RC:$src1), - _.ImmAllZerosV)), - (!cast<Instruction>(NAME#Suff#_.ZSuffix#mbkz) _.RC:$src1, - _.KRCWM:$mask, _.RC:$src2, addr:$src3)>; } multiclass avx512_fma3_231_round<bits<8> opc, string OpcodeStr, SDNode OpNode, X86VectorVTInfo _, string Suff> { - let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in + let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain, hasSideEffects = 0 in defm rb: AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3, AVX512RC:$rc), OpcodeStr, "$rc, $src3, $src2", "$src2, $src3, $rc", - (_.VT ( OpNode _.RC:$src2, _.RC:$src3, _.RC:$src1, (i32 imm:$rc))), 1, 1>, - AVX512FMA3Base, EVEX_B, EVEX_RC; + (_.VT ( OpNode _.RC:$src2, _.RC:$src3, _.RC:$src1, (i32 imm:$rc))), + NoItinerary, 1, 1, vselect, 1>, + AVX512FMA3Base, EVEX_B, EVEX_RC, Sched<[WriteFMA]>; } multiclass avx512_fma3p_231_common<bits<8> opc, string OpcodeStr, SDNode OpNode, @@ -6255,45 +6156,42 @@ defm VFNMSUB231 : avx512_fma3p_231_f<0xBE, "vfnmsub231", X86Fnmsub, X86FnmsubR multiclass avx512_fma3p_132_rm<bits<8> opc, string OpcodeStr, SDNode OpNode, X86VectorVTInfo _, string Suff> { - let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in { + let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain, hasSideEffects = 0 in { defm r: AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", - (_.VT (OpNode _.RC:$src1, _.RC:$src3, _.RC:$src2)), 1, 1>, - AVX512FMA3Base; + (_.VT (OpNode _.RC:$src1, _.RC:$src3, _.RC:$src2)), NoItinerary, + 1, 1, vselect, 1>, AVX512FMA3Base, Sched<[WriteFMA]>; + // Pattern is 312 order so that the load is in a different place from the + // 213 and 231 patterns this helps tablegen's duplicate pattern detection. defm m: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.MemOp:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", - (_.VT (OpNode _.RC:$src1, (_.LdFrag addr:$src3), _.RC:$src2)), 1, 0>, - AVX512FMA3Base; + (_.VT (OpNode (_.LdFrag addr:$src3), _.RC:$src1, _.RC:$src2)), + NoItinerary, 1, 0>, AVX512FMA3Base, Sched<[WriteFMALd, ReadAfterLd]>; + // Pattern is 312 order so that the load is in a different place from the + // 213 and 231 patterns this helps tablegen's duplicate pattern detection. defm mb: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.ScalarMemOp:$src3), OpcodeStr, "${src3}"##_.BroadcastStr##", $src2", "$src2, ${src3}"##_.BroadcastStr, - (_.VT (OpNode _.RC:$src1, - (_.VT (X86VBroadcast(_.ScalarLdFrag addr:$src3))), - _.RC:$src2)), 1, 0>, AVX512FMA3Base, EVEX_B; + (_.VT (OpNode (_.VT (X86VBroadcast(_.ScalarLdFrag addr:$src3))), + _.RC:$src1, _.RC:$src2)), NoItinerary, 1, 0>, + AVX512FMA3Base, EVEX_B, Sched<[WriteFMALd, ReadAfterLd]>; } - - // Additional patterns for folding broadcast nodes in other orders. - def : Pat<(_.VT (vselect _.KRCWM:$mask, - (OpNode (X86VBroadcast (_.ScalarLdFrag addr:$src3)), - _.RC:$src1, _.RC:$src2), - _.RC:$src1)), - (!cast<Instruction>(NAME#Suff#_.ZSuffix#mbk) _.RC:$src1, - _.KRCWM:$mask, _.RC:$src2, addr:$src3)>; } multiclass avx512_fma3_132_round<bits<8> opc, string OpcodeStr, SDNode OpNode, X86VectorVTInfo _, string Suff> { - let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in + let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain, hasSideEffects = 0 in defm rb: AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3, AVX512RC:$rc), OpcodeStr, "$rc, $src3, $src2", "$src2, $src3, $rc", - (_.VT ( OpNode _.RC:$src1, _.RC:$src3, _.RC:$src2, (i32 imm:$rc))), 1, 1>, - AVX512FMA3Base, EVEX_B, EVEX_RC; + (_.VT ( OpNode _.RC:$src1, _.RC:$src3, _.RC:$src2, (i32 imm:$rc))), + NoItinerary, 1, 1, vselect, 1>, + AVX512FMA3Base, EVEX_B, EVEX_RC, Sched<[WriteFMA]>; } multiclass avx512_fma3p_132_common<bits<8> opc, string OpcodeStr, SDNode OpNode, @@ -6328,167 +6226,179 @@ defm VFNMADD132 : avx512_fma3p_132_f<0x9C, "vfnmadd132", X86Fnmadd, X86FnmaddR defm VFNMSUB132 : avx512_fma3p_132_f<0x9E, "vfnmsub132", X86Fnmsub, X86FnmsubRnd>; // Scalar FMA -let Constraints = "$src1 = $dst" in { multiclass avx512_fma3s_common<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, dag RHS_VEC_r, dag RHS_VEC_m, dag RHS_VEC_rb, - dag RHS_r, dag RHS_m > { + dag RHS_r, dag RHS_m, bit MaskOnlyReg> { +let Constraints = "$src1 = $dst", hasSideEffects = 0 in { defm r_Int: AVX512_maskable_3src_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3), OpcodeStr, - "$src3, $src2", "$src2, $src3", RHS_VEC_r, 1, 1>, AVX512FMA3Base; + "$src3, $src2", "$src2, $src3", RHS_VEC_r, NoItinerary, 1, 1>, + AVX512FMA3Base, Sched<[WriteFMA]>; defm m_Int: AVX512_maskable_3src_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.IntScalarMemOp:$src3), OpcodeStr, - "$src3, $src2", "$src2, $src3", RHS_VEC_m, 1, 1>, AVX512FMA3Base; + "$src3, $src2", "$src2, $src3", RHS_VEC_m, NoItinerary, 1, 1>, + AVX512FMA3Base, Sched<[WriteFMALd, ReadAfterLd]>; defm rb_Int: AVX512_maskable_3src_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3, AVX512RC:$rc), - OpcodeStr, "$rc, $src3, $src2", "$src2, $src3, $rc", RHS_VEC_rb, 1, 1>, - AVX512FMA3Base, EVEX_B, EVEX_RC; + OpcodeStr, "$rc, $src3, $src2", "$src2, $src3, $rc", RHS_VEC_rb, + NoItinerary, 1, 1>, AVX512FMA3Base, EVEX_B, EVEX_RC, + Sched<[WriteFMA]>; let isCodeGenOnly = 1, isCommutable = 1 in { - def r : AVX512FMA3<opc, MRMSrcReg, (outs _.FRC:$dst), + def r : AVX512FMA3S<opc, MRMSrcReg, (outs _.FRC:$dst), (ins _.FRC:$src1, _.FRC:$src2, _.FRC:$src3), !strconcat(OpcodeStr, "\t{$src3, $src2, $dst|$dst, $src2, $src3}"), - [RHS_r]>; - def m : AVX512FMA3<opc, MRMSrcMem, (outs _.FRC:$dst), + !if(MaskOnlyReg, [], [RHS_r])>, Sched<[WriteFMA]>; + def m : AVX512FMA3S<opc, MRMSrcMem, (outs _.FRC:$dst), (ins _.FRC:$src1, _.FRC:$src2, _.ScalarMemOp:$src3), !strconcat(OpcodeStr, "\t{$src3, $src2, $dst|$dst, $src2, $src3}"), - [RHS_m]>; + [RHS_m]>, Sched<[WriteFMALd, ReadAfterLd]>; }// isCodeGenOnly = 1 -} }// Constraints = "$src1 = $dst" +} multiclass avx512_fma3s_all<bits<8> opc213, bits<8> opc231, bits<8> opc132, - string OpcodeStr, SDNode OpNode, SDNode OpNodeRnds1, - SDNode OpNodeRnds3, X86VectorVTInfo _ , string SUFF> { + string OpcodeStr, SDNode OpNode, SDNode OpNodes1, + SDNode OpNodeRnds1, SDNode OpNodes3, + SDNode OpNodeRnds3, X86VectorVTInfo _, + string SUFF> { let ExeDomain = _.ExeDomain in { - defm NAME#213#SUFF#Z: avx512_fma3s_common<opc213, OpcodeStr#"213"#_.Suffix , _ , + defm NAME#213#SUFF#Z: avx512_fma3s_common<opc213, OpcodeStr#"213"#_.Suffix, _, // Operands for intrinsic are in 123 order to preserve passthu // semantics. - (_.VT (OpNodeRnds1 _.RC:$src1, _.RC:$src2, _.RC:$src3, (i32 FROUND_CURRENT))), - (_.VT (OpNodeRnds1 _.RC:$src1, _.RC:$src2, - _.ScalarIntMemCPat:$src3, (i32 FROUND_CURRENT))), + (_.VT (OpNodes1 _.RC:$src1, _.RC:$src2, _.RC:$src3)), + (_.VT (OpNodes1 _.RC:$src1, _.RC:$src2, + _.ScalarIntMemCPat:$src3)), (_.VT (OpNodeRnds1 _.RC:$src1, _.RC:$src2, _.RC:$src3, (i32 imm:$rc))), (set _.FRC:$dst, (_.EltVT (OpNode _.FRC:$src2, _.FRC:$src1, _.FRC:$src3))), (set _.FRC:$dst, (_.EltVT (OpNode _.FRC:$src2, _.FRC:$src1, - (_.ScalarLdFrag addr:$src3))))>; + (_.ScalarLdFrag addr:$src3)))), 0>; - defm NAME#231#SUFF#Z: avx512_fma3s_common<opc231, OpcodeStr#"231"#_.Suffix , _ , - (_.VT (OpNodeRnds3 _.RC:$src2, _.RC:$src3, _.RC:$src1, (i32 FROUND_CURRENT))), - (_.VT (OpNodeRnds3 _.RC:$src2, _.ScalarIntMemCPat:$src3, - _.RC:$src1, (i32 FROUND_CURRENT))), + defm NAME#231#SUFF#Z: avx512_fma3s_common<opc231, OpcodeStr#"231"#_.Suffix, _, + (_.VT (OpNodes3 _.RC:$src2, _.RC:$src3, _.RC:$src1)), + (_.VT (OpNodes3 _.RC:$src2, _.ScalarIntMemCPat:$src3, + _.RC:$src1)), (_.VT ( OpNodeRnds3 _.RC:$src2, _.RC:$src3, _.RC:$src1, (i32 imm:$rc))), (set _.FRC:$dst, (_.EltVT (OpNode _.FRC:$src2, _.FRC:$src3, _.FRC:$src1))), (set _.FRC:$dst, (_.EltVT (OpNode _.FRC:$src2, - (_.ScalarLdFrag addr:$src3), _.FRC:$src1)))>; + (_.ScalarLdFrag addr:$src3), _.FRC:$src1))), 1>; - defm NAME#132#SUFF#Z: avx512_fma3s_common<opc132, OpcodeStr#"132"#_.Suffix , _ , - (_.VT (OpNodeRnds1 _.RC:$src1, _.RC:$src3, _.RC:$src2, (i32 FROUND_CURRENT))), - (_.VT (OpNodeRnds1 _.RC:$src1, _.ScalarIntMemCPat:$src3, - _.RC:$src2, (i32 FROUND_CURRENT))), - (_.VT (OpNodeRnds1 _.RC:$src1, _.RC:$src3, _.RC:$src2, - (i32 imm:$rc))), + // One pattern is 312 order so that the load is in a different place from the + // 213 and 231 patterns this helps tablegen's duplicate pattern detection. + defm NAME#132#SUFF#Z: avx512_fma3s_common<opc132, OpcodeStr#"132"#_.Suffix, _, + (null_frag), + (_.VT (OpNodes1 _.RC:$src1, _.ScalarIntMemCPat:$src3, + _.RC:$src2)), + (null_frag), (set _.FRC:$dst, (_.EltVT (OpNode _.FRC:$src1, _.FRC:$src3, _.FRC:$src2))), - (set _.FRC:$dst, (_.EltVT (OpNode _.FRC:$src1, - (_.ScalarLdFrag addr:$src3), _.FRC:$src2)))>; + (set _.FRC:$dst, (_.EltVT (OpNode (_.ScalarLdFrag addr:$src3), + _.FRC:$src1, _.FRC:$src2))), 1>; } } multiclass avx512_fma3s<bits<8> opc213, bits<8> opc231, bits<8> opc132, - string OpcodeStr, SDNode OpNode, SDNode OpNodeRnds1, + string OpcodeStr, SDNode OpNode, SDNode OpNodes1, + SDNode OpNodeRnds1, SDNode OpNodes3, SDNode OpNodeRnds3> { let Predicates = [HasAVX512] in { defm NAME : avx512_fma3s_all<opc213, opc231, opc132, OpcodeStr, OpNode, - OpNodeRnds1, OpNodeRnds3, f32x_info, "SS">, + OpNodes1, OpNodeRnds1, OpNodes3, OpNodeRnds3, + f32x_info, "SS">, EVEX_CD8<32, CD8VT1>, VEX_LIG; defm NAME : avx512_fma3s_all<opc213, opc231, opc132, OpcodeStr, OpNode, - OpNodeRnds1, OpNodeRnds3, f64x_info, "SD">, + OpNodes1, OpNodeRnds1, OpNodes3, OpNodeRnds3, + f64x_info, "SD">, EVEX_CD8<64, CD8VT1>, VEX_LIG, VEX_W; } } -defm VFMADD : avx512_fma3s<0xA9, 0xB9, 0x99, "vfmadd", X86Fmadd, X86FmaddRnds1, - X86FmaddRnds3>; -defm VFMSUB : avx512_fma3s<0xAB, 0xBB, 0x9B, "vfmsub", X86Fmsub, X86FmsubRnds1, - X86FmsubRnds3>; -defm VFNMADD : avx512_fma3s<0xAD, 0xBD, 0x9D, "vfnmadd", X86Fnmadd, - X86FnmaddRnds1, X86FnmaddRnds3>; -defm VFNMSUB : avx512_fma3s<0xAF, 0xBF, 0x9F, "vfnmsub", X86Fnmsub, - X86FnmsubRnds1, X86FnmsubRnds3>; +defm VFMADD : avx512_fma3s<0xA9, 0xB9, 0x99, "vfmadd", X86Fmadd, X86Fmadds1, + X86FmaddRnds1, X86Fmadds3, X86FmaddRnds3>; +defm VFMSUB : avx512_fma3s<0xAB, 0xBB, 0x9B, "vfmsub", X86Fmsub, X86Fmsubs1, + X86FmsubRnds1, X86Fmsubs3, X86FmsubRnds3>; +defm VFNMADD : avx512_fma3s<0xAD, 0xBD, 0x9D, "vfnmadd", X86Fnmadd, X86Fnmadds1, + X86FnmaddRnds1, X86Fnmadds3, X86FnmaddRnds3>; +defm VFNMSUB : avx512_fma3s<0xAF, 0xBF, 0x9F, "vfnmsub", X86Fnmsub, X86Fnmsubs1, + X86FnmsubRnds1, X86Fnmsubs3, X86FnmsubRnds3>; //===----------------------------------------------------------------------===// // AVX-512 Packed Multiply of Unsigned 52-bit Integers and Add the Low 52-bit IFMA //===----------------------------------------------------------------------===// let Constraints = "$src1 = $dst" in { multiclass avx512_pmadd52_rm<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { + // NOTE: The SDNode have the multiply operands first with the add last. + // This enables commuted load patterns to be autogenerated by tablegen. let ExeDomain = _.ExeDomain in { defm r: AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", - (_.VT (OpNode _.RC:$src1, _.RC:$src2, _.RC:$src3))>, - AVX512FMA3Base; + (_.VT (OpNode _.RC:$src2, _.RC:$src3, _.RC:$src1)), itins.rr, 1, 1>, + AVX512FMA3Base, Sched<[itins.Sched]>; defm m: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.MemOp:$src3), OpcodeStr, "$src3, $src2", "$src2, $src3", - (_.VT (OpNode _.RC:$src1, _.RC:$src2, (_.LdFrag addr:$src3)))>, - AVX512FMA3Base; + (_.VT (OpNode _.RC:$src2, (_.LdFrag addr:$src3), _.RC:$src1)), + itins.rm>, AVX512FMA3Base, Sched<[itins.Sched.Folded, ReadAfterLd]>; defm mb: AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.ScalarMemOp:$src3), OpcodeStr, !strconcat("${src3}", _.BroadcastStr,", $src2"), !strconcat("$src2, ${src3}", _.BroadcastStr ), - (OpNode _.RC:$src1, - _.RC:$src2,(_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src3))))>, - AVX512FMA3Base, EVEX_B; + (OpNode _.RC:$src2, + (_.VT (X86VBroadcast (_.ScalarLdFrag addr:$src3))), + _.RC:$src1), itins.rm>, + AVX512FMA3Base, EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; } } } // Constraints = "$src1 = $dst" multiclass avx512_pmadd52_common<bits<8> opc, string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo _> { + OpndItins itins, AVX512VLVectorVTInfo _> { let Predicates = [HasIFMA] in { - defm Z : avx512_pmadd52_rm<opc, OpcodeStr, OpNode, _.info512>, + defm Z : avx512_pmadd52_rm<opc, OpcodeStr, OpNode, itins, _.info512>, EVEX_V512, EVEX_CD8<_.info512.EltSize, CD8VF>; } let Predicates = [HasVLX, HasIFMA] in { - defm Z256 : avx512_pmadd52_rm<opc, OpcodeStr, OpNode, _.info256>, + defm Z256 : avx512_pmadd52_rm<opc, OpcodeStr, OpNode, itins, _.info256>, EVEX_V256, EVEX_CD8<_.info256.EltSize, CD8VF>; - defm Z128 : avx512_pmadd52_rm<opc, OpcodeStr, OpNode, _.info128>, + defm Z128 : avx512_pmadd52_rm<opc, OpcodeStr, OpNode, itins, _.info128>, EVEX_V128, EVEX_CD8<_.info128.EltSize, CD8VF>; } } defm VPMADD52LUQ : avx512_pmadd52_common<0xb4, "vpmadd52luq", x86vpmadd52l, - avx512vl_i64_info>, VEX_W; + SSE_PMADD, avx512vl_i64_info>, VEX_W; defm VPMADD52HUQ : avx512_pmadd52_common<0xb5, "vpmadd52huq", x86vpmadd52h, - avx512vl_i64_info>, VEX_W; + SSE_PMADD, avx512vl_i64_info>, VEX_W; //===----------------------------------------------------------------------===// // AVX-512 Scalar convert from sign integer to float/double //===----------------------------------------------------------------------===// -multiclass avx512_vcvtsi<bits<8> opc, SDNode OpNode, RegisterClass SrcRC, - X86VectorVTInfo DstVT, X86MemOperand x86memop, - PatFrag ld_frag, string asm> { +multiclass avx512_vcvtsi<bits<8> opc, SDNode OpNode, OpndItins itins, + RegisterClass SrcRC, X86VectorVTInfo DstVT, + X86MemOperand x86memop, PatFrag ld_frag, string asm> { let hasSideEffects = 0 in { def rr : SI<opc, MRMSrcReg, (outs DstVT.FRC:$dst), (ins DstVT.FRC:$src1, SrcRC:$src), - !strconcat(asm,"\t{$src, $src1, $dst|$dst, $src1, $src}"), []>, - EVEX_4V; + !strconcat(asm,"\t{$src, $src1, $dst|$dst, $src1, $src}"), [], + itins.rr>, EVEX_4V, Sched<[itins.Sched]>; let mayLoad = 1 in def rm : SI<opc, MRMSrcMem, (outs DstVT.FRC:$dst), (ins DstVT.FRC:$src1, x86memop:$src), - !strconcat(asm,"\t{$src, $src1, $dst|$dst, $src1, $src}"), []>, - EVEX_4V; + !strconcat(asm,"\t{$src, $src1, $dst|$dst, $src1, $src}"), [], + itins.rm>, EVEX_4V, Sched<[itins.Sched.Folded, ReadAfterLd]>; } // hasSideEffects = 0 let isCodeGenOnly = 1 in { def rr_Int : SI<opc, MRMSrcReg, (outs DstVT.RC:$dst), @@ -6497,7 +6407,8 @@ multiclass avx512_vcvtsi<bits<8> opc, SDNode OpNode, RegisterClass SrcRC, [(set DstVT.RC:$dst, (OpNode (DstVT.VT DstVT.RC:$src1), SrcRC:$src2, - (i32 FROUND_CURRENT)))]>, EVEX_4V; + (i32 FROUND_CURRENT)))], itins.rr>, + EVEX_4V, Sched<[itins.Sched]>; def rm_Int : SI<opc, MRMSrcMem, (outs DstVT.RC:$dst), (ins DstVT.RC:$src1, x86memop:$src2), @@ -6505,12 +6416,13 @@ multiclass avx512_vcvtsi<bits<8> opc, SDNode OpNode, RegisterClass SrcRC, [(set DstVT.RC:$dst, (OpNode (DstVT.VT DstVT.RC:$src1), (ld_frag addr:$src2), - (i32 FROUND_CURRENT)))]>, EVEX_4V; + (i32 FROUND_CURRENT)))], itins.rm>, + EVEX_4V, Sched<[itins.Sched.Folded, ReadAfterLd]>; }//isCodeGenOnly = 1 } -multiclass avx512_vcvtsi_round<bits<8> opc, SDNode OpNode, RegisterClass SrcRC, - X86VectorVTInfo DstVT, string asm> { +multiclass avx512_vcvtsi_round<bits<8> opc, SDNode OpNode, OpndItins itins, + RegisterClass SrcRC, X86VectorVTInfo DstVT, string asm> { def rrb_Int : SI<opc, MRMSrcReg, (outs DstVT.RC:$dst), (ins DstVT.RC:$src1, SrcRC:$src2, AVX512RC:$rc), !strconcat(asm, @@ -6518,28 +6430,29 @@ multiclass avx512_vcvtsi_round<bits<8> opc, SDNode OpNode, RegisterClass SrcRC, [(set DstVT.RC:$dst, (OpNode (DstVT.VT DstVT.RC:$src1), SrcRC:$src2, - (i32 imm:$rc)))]>, EVEX_4V, EVEX_B, EVEX_RC; + (i32 imm:$rc)))], itins.rr>, + EVEX_4V, EVEX_B, EVEX_RC, Sched<[itins.Sched]>; } -multiclass avx512_vcvtsi_common<bits<8> opc, SDNode OpNode, RegisterClass SrcRC, - X86VectorVTInfo DstVT, X86MemOperand x86memop, - PatFrag ld_frag, string asm> { - defm NAME : avx512_vcvtsi_round<opc, OpNode, SrcRC, DstVT, asm>, - avx512_vcvtsi<opc, OpNode, SrcRC, DstVT, x86memop, ld_frag, asm>, - VEX_LIG; +multiclass avx512_vcvtsi_common<bits<8> opc, SDNode OpNode, OpndItins itins, + RegisterClass SrcRC, X86VectorVTInfo DstVT, + X86MemOperand x86memop, PatFrag ld_frag, string asm> { + defm NAME : avx512_vcvtsi_round<opc, OpNode, itins, SrcRC, DstVT, asm>, + avx512_vcvtsi<opc, OpNode, itins, SrcRC, DstVT, x86memop, + ld_frag, asm>, VEX_LIG; } let Predicates = [HasAVX512] in { -defm VCVTSI2SSZ : avx512_vcvtsi_common<0x2A, X86SintToFpRnd, GR32, +defm VCVTSI2SSZ : avx512_vcvtsi_common<0x2A, X86SintToFpRnd, SSE_CVT_SI2SS, GR32, v4f32x_info, i32mem, loadi32, "cvtsi2ss{l}">, XS, EVEX_CD8<32, CD8VT1>; -defm VCVTSI642SSZ: avx512_vcvtsi_common<0x2A, X86SintToFpRnd, GR64, +defm VCVTSI642SSZ: avx512_vcvtsi_common<0x2A, X86SintToFpRnd, SSE_CVT_SI2SS, GR64, v4f32x_info, i64mem, loadi64, "cvtsi2ss{q}">, XS, VEX_W, EVEX_CD8<64, CD8VT1>; -defm VCVTSI2SDZ : avx512_vcvtsi_common<0x2A, X86SintToFpRnd, GR32, +defm VCVTSI2SDZ : avx512_vcvtsi_common<0x2A, X86SintToFpRnd, SSE_CVT_SI2SD, GR32, v2f64x_info, i32mem, loadi32, "cvtsi2sd{l}">, XD, EVEX_CD8<32, CD8VT1>; -defm VCVTSI642SDZ: avx512_vcvtsi_common<0x2A, X86SintToFpRnd, GR64, +defm VCVTSI642SDZ: avx512_vcvtsi_common<0x2A, X86SintToFpRnd, SSE_CVT_SI2SD, GR64, v2f64x_info, i64mem, loadi64, "cvtsi2sd{q}">, XD, VEX_W, EVEX_CD8<64, CD8VT1>; @@ -6566,16 +6479,16 @@ def : Pat<(f64 (sint_to_fp GR32:$src)), def : Pat<(f64 (sint_to_fp GR64:$src)), (VCVTSI642SDZrr (f64 (IMPLICIT_DEF)), GR64:$src)>; -defm VCVTUSI2SSZ : avx512_vcvtsi_common<0x7B, X86UintToFpRnd, GR32, +defm VCVTUSI2SSZ : avx512_vcvtsi_common<0x7B, X86UintToFpRnd, SSE_CVT_SI2SS, GR32, v4f32x_info, i32mem, loadi32, "cvtusi2ss{l}">, XS, EVEX_CD8<32, CD8VT1>; -defm VCVTUSI642SSZ : avx512_vcvtsi_common<0x7B, X86UintToFpRnd, GR64, +defm VCVTUSI642SSZ : avx512_vcvtsi_common<0x7B, X86UintToFpRnd, SSE_CVT_SI2SS, GR64, v4f32x_info, i64mem, loadi64, "cvtusi2ss{q}">, XS, VEX_W, EVEX_CD8<64, CD8VT1>; -defm VCVTUSI2SDZ : avx512_vcvtsi<0x7B, X86UintToFpRnd, GR32, v2f64x_info, +defm VCVTUSI2SDZ : avx512_vcvtsi<0x7B, X86UintToFpRnd, SSE_CVT_SI2SD, GR32, v2f64x_info, i32mem, loadi32, "cvtusi2sd{l}">, XD, VEX_LIG, EVEX_CD8<32, CD8VT1>; -defm VCVTUSI642SDZ : avx512_vcvtsi_common<0x7B, X86UintToFpRnd, GR64, +defm VCVTUSI642SDZ : avx512_vcvtsi_common<0x7B, X86UintToFpRnd, SSE_CVT_SI2SD, GR64, v2f64x_info, i64mem, loadi64, "cvtusi2sd{q}">, XD, VEX_W, EVEX_CD8<64, CD8VT1>; @@ -6606,71 +6519,74 @@ def : Pat<(f64 (uint_to_fp GR64:$src)), //===----------------------------------------------------------------------===// // AVX-512 Scalar convert from float/double to integer //===----------------------------------------------------------------------===// -multiclass avx512_cvt_s_int_round<bits<8> opc, X86VectorVTInfo SrcVT , - X86VectorVTInfo DstVT, SDNode OpNode, string asm> { + +multiclass avx512_cvt_s_int_round<bits<8> opc, X86VectorVTInfo SrcVT, + X86VectorVTInfo DstVT, SDNode OpNode, + OpndItins itins, string asm> { let Predicates = [HasAVX512] in { - def rr : SI<opc, MRMSrcReg, (outs DstVT.RC:$dst), (ins SrcVT.RC:$src), + def rr_Int : SI<opc, MRMSrcReg, (outs DstVT.RC:$dst), (ins SrcVT.RC:$src), !strconcat(asm,"\t{$src, $dst|$dst, $src}"), - [(set DstVT.RC:$dst, (OpNode (SrcVT.VT SrcVT.RC:$src),(i32 FROUND_CURRENT)))]>, - EVEX, VEX_LIG; - def rb : SI<opc, MRMSrcReg, (outs DstVT.RC:$dst), (ins SrcVT.RC:$src, AVX512RC:$rc), - !strconcat(asm,"\t{$rc, $src, $dst|$dst, $src, $rc}"), - [(set DstVT.RC:$dst, (OpNode (SrcVT.VT SrcVT.RC:$src),(i32 imm:$rc)))]>, - EVEX, VEX_LIG, EVEX_B, EVEX_RC; - def rm : SI<opc, MRMSrcMem, (outs DstVT.RC:$dst), (ins SrcVT.IntScalarMemOp:$src), + [(set DstVT.RC:$dst, (OpNode (SrcVT.VT SrcVT.RC:$src),(i32 FROUND_CURRENT)))], + itins.rr>, EVEX, VEX_LIG, Sched<[itins.Sched]>; + def rrb_Int : SI<opc, MRMSrcReg, (outs DstVT.RC:$dst), (ins SrcVT.RC:$src, AVX512RC:$rc), + !strconcat(asm,"\t{$rc, $src, $dst|$dst, $src, $rc}"), + [(set DstVT.RC:$dst, (OpNode (SrcVT.VT SrcVT.RC:$src),(i32 imm:$rc)))], + itins.rr>, EVEX, VEX_LIG, EVEX_B, EVEX_RC, + Sched<[itins.Sched]>; + def rm_Int : SI<opc, MRMSrcMem, (outs DstVT.RC:$dst), (ins SrcVT.IntScalarMemOp:$src), !strconcat(asm,"\t{$src, $dst|$dst, $src}"), [(set DstVT.RC:$dst, (OpNode (SrcVT.VT SrcVT.ScalarIntMemCPat:$src), - (i32 FROUND_CURRENT)))]>, - EVEX, VEX_LIG; + (i32 FROUND_CURRENT)))], itins.rm>, + EVEX, VEX_LIG, Sched<[itins.Sched.Folded, ReadAfterLd]>; } // Predicates = [HasAVX512] } // Convert float/double to signed/unsigned int 32/64 defm VCVTSS2SIZ: avx512_cvt_s_int_round<0x2D, f32x_info, i32x_info, - X86cvts2si, "cvtss2si">, + X86cvts2si, SSE_CVT_SS2SI_32, "cvtss2si">, XS, EVEX_CD8<32, CD8VT1>; defm VCVTSS2SI64Z: avx512_cvt_s_int_round<0x2D, f32x_info, i64x_info, - X86cvts2si, "cvtss2si">, + X86cvts2si, SSE_CVT_SS2SI_64, "cvtss2si">, XS, VEX_W, EVEX_CD8<32, CD8VT1>; defm VCVTSS2USIZ: avx512_cvt_s_int_round<0x79, f32x_info, i32x_info, - X86cvts2usi, "cvtss2usi">, + X86cvts2usi, SSE_CVT_SS2SI_32, "cvtss2usi">, XS, EVEX_CD8<32, CD8VT1>; defm VCVTSS2USI64Z: avx512_cvt_s_int_round<0x79, f32x_info, i64x_info, - X86cvts2usi, "cvtss2usi">, XS, VEX_W, - EVEX_CD8<32, CD8VT1>; + X86cvts2usi, SSE_CVT_SS2SI_64, "cvtss2usi">, + XS, VEX_W, EVEX_CD8<32, CD8VT1>; defm VCVTSD2SIZ: avx512_cvt_s_int_round<0x2D, f64x_info, i32x_info, - X86cvts2si, "cvtsd2si">, + X86cvts2si, SSE_CVT_SD2SI, "cvtsd2si">, XD, EVEX_CD8<64, CD8VT1>; defm VCVTSD2SI64Z: avx512_cvt_s_int_round<0x2D, f64x_info, i64x_info, - X86cvts2si, "cvtsd2si">, + X86cvts2si, SSE_CVT_SD2SI, "cvtsd2si">, XD, VEX_W, EVEX_CD8<64, CD8VT1>; defm VCVTSD2USIZ: avx512_cvt_s_int_round<0x79, f64x_info, i32x_info, - X86cvts2usi, "cvtsd2usi">, + X86cvts2usi, SSE_CVT_SD2SI, "cvtsd2usi">, XD, EVEX_CD8<64, CD8VT1>; defm VCVTSD2USI64Z: avx512_cvt_s_int_round<0x79, f64x_info, i64x_info, - X86cvts2usi, "cvtsd2usi">, XD, VEX_W, - EVEX_CD8<64, CD8VT1>; + X86cvts2usi, SSE_CVT_SD2SI, "cvtsd2usi">, + XD, VEX_W, EVEX_CD8<64, CD8VT1>; // The SSE version of these instructions are disabled for AVX512. // Therefore, the SSE intrinsics are mapped to the AVX512 instructions. let Predicates = [HasAVX512] in { def : Pat<(i32 (int_x86_sse_cvtss2si (v4f32 VR128X:$src))), - (VCVTSS2SIZrr VR128X:$src)>; + (VCVTSS2SIZrr_Int VR128X:$src)>; def : Pat<(i32 (int_x86_sse_cvtss2si sse_load_f32:$src)), - (VCVTSS2SIZrm sse_load_f32:$src)>; + (VCVTSS2SIZrm_Int sse_load_f32:$src)>; def : Pat<(i64 (int_x86_sse_cvtss2si64 (v4f32 VR128X:$src))), - (VCVTSS2SI64Zrr VR128X:$src)>; + (VCVTSS2SI64Zrr_Int VR128X:$src)>; def : Pat<(i64 (int_x86_sse_cvtss2si64 sse_load_f32:$src)), - (VCVTSS2SI64Zrm sse_load_f32:$src)>; + (VCVTSS2SI64Zrm_Int sse_load_f32:$src)>; def : Pat<(i32 (int_x86_sse2_cvtsd2si (v2f64 VR128X:$src))), - (VCVTSD2SIZrr VR128X:$src)>; + (VCVTSD2SIZrr_Int VR128X:$src)>; def : Pat<(i32 (int_x86_sse2_cvtsd2si sse_load_f64:$src)), - (VCVTSD2SIZrm sse_load_f64:$src)>; + (VCVTSD2SIZrm_Int sse_load_f64:$src)>; def : Pat<(i64 (int_x86_sse2_cvtsd2si64 (v2f64 VR128X:$src))), - (VCVTSD2SI64Zrr VR128X:$src)>; + (VCVTSD2SI64Zrr_Int VR128X:$src)>; def : Pat<(i64 (int_x86_sse2_cvtsd2si64 sse_load_f64:$src)), - (VCVTSD2SI64Zrm sse_load_f64:$src)>; + (VCVTSD2SI64Zrm_Int sse_load_f64:$src)>; } // HasAVX512 let Predicates = [HasAVX512] in { @@ -6723,24 +6639,25 @@ def : Pat<(v2f64 (X86Movsd // Convert float/double to signed/unsigned int 32/64 with truncation multiclass avx512_cvt_s_all<bits<8> opc, string asm, X86VectorVTInfo _SrcRC, X86VectorVTInfo _DstRC, SDNode OpNode, - SDNode OpNodeRnd, string aliasStr>{ + SDNode OpNodeRnd, OpndItins itins, string aliasStr>{ let Predicates = [HasAVX512] in { def rr : AVX512<opc, MRMSrcReg, (outs _DstRC.RC:$dst), (ins _SrcRC.FRC:$src), !strconcat(asm,"\t{$src, $dst|$dst, $src}"), - [(set _DstRC.RC:$dst, (OpNode _SrcRC.FRC:$src))]>, EVEX; + [(set _DstRC.RC:$dst, (OpNode _SrcRC.FRC:$src))], itins.rr>, + EVEX, Sched<[itins.Sched]>; let hasSideEffects = 0 in - def rb : AVX512<opc, MRMSrcReg, (outs _DstRC.RC:$dst), (ins _SrcRC.FRC:$src), + def rrb : AVX512<opc, MRMSrcReg, (outs _DstRC.RC:$dst), (ins _SrcRC.FRC:$src), !strconcat(asm,"\t{{sae}, $src, $dst|$dst, $src, {sae}}"), - []>, EVEX, EVEX_B; + [], itins.rr>, EVEX, EVEX_B, Sched<[itins.Sched]>; def rm : AVX512<opc, MRMSrcMem, (outs _DstRC.RC:$dst), (ins _SrcRC.ScalarMemOp:$src), !strconcat(asm,"\t{$src, $dst|$dst, $src}"), - [(set _DstRC.RC:$dst, (OpNode (_SrcRC.ScalarLdFrag addr:$src)))]>, - EVEX; + [(set _DstRC.RC:$dst, (OpNode (_SrcRC.ScalarLdFrag addr:$src)))], + itins.rm>, EVEX, Sched<[itins.Sched.Folded, ReadAfterLd]>; def : InstAlias<asm # aliasStr # "\t{$src, $dst|$dst, $src}", (!cast<Instruction>(NAME # "rr") _DstRC.RC:$dst, _SrcRC.FRC:$src), 0>; def : InstAlias<asm # aliasStr # "\t\t{{sae}, $src, $dst|$dst, $src, {sae}}", - (!cast<Instruction>(NAME # "rb") _DstRC.RC:$dst, _SrcRC.FRC:$src), 0>; + (!cast<Instruction>(NAME # "rrb") _DstRC.RC:$dst, _SrcRC.FRC:$src), 0>; def : InstAlias<asm # aliasStr # "\t{$src, $dst|$dst, $src}", (!cast<Instruction>(NAME # "rm") _DstRC.RC:$dst, _SrcRC.ScalarMemOp:$src), 0>; @@ -6749,47 +6666,48 @@ let Predicates = [HasAVX512] in { def rr_Int : AVX512<opc, MRMSrcReg, (outs _DstRC.RC:$dst), (ins _SrcRC.RC:$src), !strconcat(asm,"\t{$src, $dst|$dst, $src}"), [(set _DstRC.RC:$dst, (OpNodeRnd (_SrcRC.VT _SrcRC.RC:$src), - (i32 FROUND_CURRENT)))]>, EVEX, VEX_LIG; - def rb_Int : AVX512<opc, MRMSrcReg, (outs _DstRC.RC:$dst), (ins _SrcRC.RC:$src), + (i32 FROUND_CURRENT)))], itins.rr>, + EVEX, VEX_LIG, Sched<[itins.Sched]>; + def rrb_Int : AVX512<opc, MRMSrcReg, (outs _DstRC.RC:$dst), (ins _SrcRC.RC:$src), !strconcat(asm,"\t{{sae}, $src, $dst|$dst, $src, {sae}}"), [(set _DstRC.RC:$dst, (OpNodeRnd (_SrcRC.VT _SrcRC.RC:$src), - (i32 FROUND_NO_EXC)))]>, - EVEX,VEX_LIG , EVEX_B; + (i32 FROUND_NO_EXC)))], itins.rr>, + EVEX,VEX_LIG , EVEX_B, Sched<[itins.Sched]>; let mayLoad = 1, hasSideEffects = 0 in def rm_Int : AVX512<opc, MRMSrcMem, (outs _DstRC.RC:$dst), (ins _SrcRC.IntScalarMemOp:$src), !strconcat(asm,"\t{$src, $dst|$dst, $src}"), - []>, EVEX, VEX_LIG; - + [], itins.rm>, EVEX, VEX_LIG, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } // isCodeGenOnly = 1 } //HasAVX512 } defm VCVTTSS2SIZ: avx512_cvt_s_all<0x2C, "vcvttss2si", f32x_info, i32x_info, - fp_to_sint, X86cvtts2IntRnd, "{l}">, + fp_to_sint, X86cvtts2IntRnd, SSE_CVT_SS2SI_32, "{l}">, XS, EVEX_CD8<32, CD8VT1>; defm VCVTTSS2SI64Z: avx512_cvt_s_all<0x2C, "vcvttss2si", f32x_info, i64x_info, - fp_to_sint, X86cvtts2IntRnd, "{q}">, + fp_to_sint, X86cvtts2IntRnd, SSE_CVT_SS2SI_64, "{q}">, VEX_W, XS, EVEX_CD8<32, CD8VT1>; defm VCVTTSD2SIZ: avx512_cvt_s_all<0x2C, "vcvttsd2si", f64x_info, i32x_info, - fp_to_sint, X86cvtts2IntRnd, "{l}">, + fp_to_sint, X86cvtts2IntRnd, SSE_CVT_SD2SI, "{l}">, XD, EVEX_CD8<64, CD8VT1>; defm VCVTTSD2SI64Z: avx512_cvt_s_all<0x2C, "vcvttsd2si", f64x_info, i64x_info, - fp_to_sint, X86cvtts2IntRnd, "{q}">, + fp_to_sint, X86cvtts2IntRnd, SSE_CVT_SD2SI, "{q}">, VEX_W, XD, EVEX_CD8<64, CD8VT1>; defm VCVTTSS2USIZ: avx512_cvt_s_all<0x78, "vcvttss2usi", f32x_info, i32x_info, - fp_to_uint, X86cvtts2UIntRnd, "{l}">, + fp_to_uint, X86cvtts2UIntRnd, SSE_CVT_SS2SI_32, "{l}">, XS, EVEX_CD8<32, CD8VT1>; defm VCVTTSS2USI64Z: avx512_cvt_s_all<0x78, "vcvttss2usi", f32x_info, i64x_info, - fp_to_uint, X86cvtts2UIntRnd, "{q}">, + fp_to_uint, X86cvtts2UIntRnd, SSE_CVT_SS2SI_64, "{q}">, XS,VEX_W, EVEX_CD8<32, CD8VT1>; defm VCVTTSD2USIZ: avx512_cvt_s_all<0x78, "vcvttsd2usi", f64x_info, i32x_info, - fp_to_uint, X86cvtts2UIntRnd, "{l}">, + fp_to_uint, X86cvtts2UIntRnd, SSE_CVT_SD2SI, "{l}">, XD, EVEX_CD8<64, CD8VT1>; defm VCVTTSD2USI64Z: avx512_cvt_s_all<0x78, "vcvttsd2usi", f64x_info, i64x_info, - fp_to_uint, X86cvtts2UIntRnd, "{q}">, + fp_to_uint, X86cvtts2UIntRnd, SSE_CVT_SD2SI, "{q}">, XD, VEX_W, EVEX_CD8<64, CD8VT1>; let Predicates = [HasAVX512] in { def : Pat<(i32 (int_x86_sse_cvttss2si (v4f32 VR128X:$src))), @@ -6809,88 +6727,95 @@ let Predicates = [HasAVX512] in { def : Pat<(i64 (int_x86_sse2_cvttsd2si64 sse_load_f64:$src)), (VCVTTSD2SI64Zrm_Int sdmem:$src)>; } // HasAVX512 + //===----------------------------------------------------------------------===// // AVX-512 Convert form float to double and back //===----------------------------------------------------------------------===// + multiclass avx512_cvt_fp_scalar<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - X86VectorVTInfo _Src, SDNode OpNode> { + X86VectorVTInfo _Src, SDNode OpNode, OpndItins itins> { defm rr_Int : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _Src.RC:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode (_.VT _.RC:$src1), (_Src.VT _Src.RC:$src2), - (i32 FROUND_CURRENT)))>, - EVEX_4V, VEX_LIG, Sched<[WriteCvtF2F]>; + (i32 FROUND_CURRENT))), itins.rr>, + EVEX_4V, VEX_LIG, Sched<[itins.Sched]>; defm rm_Int : AVX512_maskable_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _Src.IntScalarMemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (_.VT (OpNode (_.VT _.RC:$src1), (_Src.VT _Src.ScalarIntMemCPat:$src2), - (i32 FROUND_CURRENT)))>, - EVEX_4V, VEX_LIG, Sched<[WriteCvtF2FLd, ReadAfterLd]>; + (i32 FROUND_CURRENT))), itins.rm>, + EVEX_4V, VEX_LIG, + Sched<[itins.Sched.Folded, ReadAfterLd]>; let isCodeGenOnly = 1, hasSideEffects = 0 in { def rr : I<opc, MRMSrcReg, (outs _.FRC:$dst), (ins _.FRC:$src1, _Src.FRC:$src2), - OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", []>, - EVEX_4V, VEX_LIG, Sched<[WriteCvtF2F]>; + OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [], + itins.rr>, EVEX_4V, VEX_LIG, Sched<[itins.Sched]>; let mayLoad = 1 in def rm : I<opc, MRMSrcMem, (outs _.FRC:$dst), (ins _.FRC:$src1, _Src.ScalarMemOp:$src2), - OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", []>, - EVEX_4V, VEX_LIG, Sched<[WriteCvtF2FLd, ReadAfterLd]>; + OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [], + itins.rm>, EVEX_4V, VEX_LIG, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } // Scalar Coversion with SAE - suppress all exceptions multiclass avx512_cvt_fp_sae_scalar<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - X86VectorVTInfo _Src, SDNode OpNodeRnd> { + X86VectorVTInfo _Src, SDNode OpNodeRnd, OpndItins itins> { defm rrb_Int : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _Src.RC:$src2), OpcodeStr, "{sae}, $src2, $src1", "$src1, $src2, {sae}", (_.VT (OpNodeRnd (_.VT _.RC:$src1), (_Src.VT _Src.RC:$src2), - (i32 FROUND_NO_EXC)))>, - EVEX_4V, VEX_LIG, EVEX_B; + (i32 FROUND_NO_EXC))), itins.rr>, + EVEX_4V, VEX_LIG, EVEX_B, Sched<[itins.Sched]>; } // Scalar Conversion with rounding control (RC) multiclass avx512_cvt_fp_rc_scalar<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - X86VectorVTInfo _Src, SDNode OpNodeRnd> { + X86VectorVTInfo _Src, SDNode OpNodeRnd, OpndItins itins> { defm rrb_Int : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _Src.RC:$src2, AVX512RC:$rc), OpcodeStr, "$rc, $src2, $src1", "$src1, $src2, $rc", (_.VT (OpNodeRnd (_.VT _.RC:$src1), - (_Src.VT _Src.RC:$src2), (i32 imm:$rc)))>, - EVEX_4V, VEX_LIG, Sched<[WriteCvtF2FLd, ReadAfterLd]>, + (_Src.VT _Src.RC:$src2), (i32 imm:$rc))), + itins.rr>, + EVEX_4V, VEX_LIG, Sched<[itins.Sched]>, EVEX_B, EVEX_RC; } multiclass avx512_cvt_fp_scalar_sd2ss<bits<8> opc, string OpcodeStr, - SDNode OpNodeRnd, X86VectorVTInfo _src, - X86VectorVTInfo _dst> { + SDNode OpNodeRnd, OpndItins itins, + X86VectorVTInfo _src, X86VectorVTInfo _dst> { let Predicates = [HasAVX512] in { - defm Z : avx512_cvt_fp_scalar<opc, OpcodeStr, _dst, _src, OpNodeRnd>, + defm Z : avx512_cvt_fp_scalar<opc, OpcodeStr, _dst, _src, OpNodeRnd, itins>, avx512_cvt_fp_rc_scalar<opc, OpcodeStr, _dst, _src, - OpNodeRnd>, VEX_W, EVEX_CD8<64, CD8VT1>, XD; + OpNodeRnd, itins>, VEX_W, EVEX_CD8<64, CD8VT1>, XD; } } multiclass avx512_cvt_fp_scalar_ss2sd<bits<8> opc, string OpcodeStr, - SDNode OpNodeRnd, X86VectorVTInfo _src, - X86VectorVTInfo _dst> { + SDNode OpNodeRnd, OpndItins itins, + X86VectorVTInfo _src, X86VectorVTInfo _dst> { let Predicates = [HasAVX512] in { - defm Z : avx512_cvt_fp_scalar<opc, OpcodeStr, _dst, _src, OpNodeRnd>, - avx512_cvt_fp_sae_scalar<opc, OpcodeStr, _dst, _src, OpNodeRnd>, + defm Z : avx512_cvt_fp_scalar<opc, OpcodeStr, _dst, _src, OpNodeRnd, itins>, + avx512_cvt_fp_sae_scalar<opc, OpcodeStr, _dst, _src, OpNodeRnd, itins>, EVEX_CD8<32, CD8VT1>, XS; } } defm VCVTSD2SS : avx512_cvt_fp_scalar_sd2ss<0x5A, "vcvtsd2ss", - X86froundRnd, f64x_info, f32x_info>; + X86froundRnd, SSE_CVT_SD2SS, f64x_info, + f32x_info>, NotMemoryFoldable; defm VCVTSS2SD : avx512_cvt_fp_scalar_ss2sd<0x5A, "vcvtss2sd", - X86fpextRnd,f32x_info, f64x_info >; + X86fpextRnd, SSE_CVT_SS2SD, f32x_info, + f64x_info>, NotMemoryFoldable; def : Pat<(f64 (fpextend FR32X:$src)), - (VCVTSS2SDZrr (COPY_TO_REGCLASS FR32X:$src, FR64X), FR32X:$src)>, + (VCVTSS2SDZrr (f64 (IMPLICIT_DEF)), FR32X:$src)>, Requires<[HasAVX512]>; def : Pat<(f64 (fpextend (loadf32 addr:$src))), (VCVTSS2SDZrm (f64 (IMPLICIT_DEF)), addr:$src)>, @@ -6905,7 +6830,7 @@ def : Pat<(f64 (extloadf32 addr:$src)), Requires<[HasAVX512, OptForSpeed]>; def : Pat<(f32 (fpround FR64X:$src)), - (VCVTSD2SSZrr (COPY_TO_REGCLASS FR64X:$src, FR32X), FR64X:$src)>, + (VCVTSD2SSZrr (f32 (IMPLICIT_DEF)), FR64X:$src)>, Requires<[HasAVX512]>; def : Pat<(v4f32 (X86Movss @@ -6928,74 +6853,81 @@ def : Pat<(v2f64 (X86Movsd //===----------------------------------------------------------------------===// multiclass avx512_vcvt_fp<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - X86VectorVTInfo _Src, SDNode OpNode, + X86VectorVTInfo _Src, SDNode OpNode, OpndItins itins, string Broadcast = _.BroadcastStr, string Alias = "", X86MemOperand MemOp = _Src.MemOp> { defm rr : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _Src.RC:$src), OpcodeStr, "$src", "$src", - (_.VT (OpNode (_Src.VT _Src.RC:$src)))>, EVEX; + (_.VT (OpNode (_Src.VT _Src.RC:$src))), itins.rr>, + EVEX, Sched<[itins.Sched]>; defm rm : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins MemOp:$src), OpcodeStr#Alias, "$src", "$src", (_.VT (OpNode (_Src.VT - (bitconvert (_Src.LdFrag addr:$src)))))>, EVEX; + (bitconvert (_Src.LdFrag addr:$src))))), itins.rm>, + EVEX, Sched<[itins.Sched.Folded]>; defm rmb : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _Src.ScalarMemOp:$src), OpcodeStr, "${src}"##Broadcast, "${src}"##Broadcast, (_.VT (OpNode (_Src.VT (X86VBroadcast (_Src.ScalarLdFrag addr:$src))) - ))>, EVEX, EVEX_B; + )), itins.rm>, EVEX, EVEX_B, + Sched<[itins.Sched.Folded]>; } // Coversion with SAE - suppress all exceptions multiclass avx512_vcvt_fp_sae<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - X86VectorVTInfo _Src, SDNode OpNodeRnd> { + X86VectorVTInfo _Src, SDNode OpNodeRnd, + OpndItins itins> { defm rrb : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _Src.RC:$src), OpcodeStr, "{sae}, $src", "$src, {sae}", (_.VT (OpNodeRnd (_Src.VT _Src.RC:$src), - (i32 FROUND_NO_EXC)))>, - EVEX, EVEX_B; + (i32 FROUND_NO_EXC))), itins.rr>, + EVEX, EVEX_B, Sched<[itins.Sched]>; } // Conversion with rounding control (RC) multiclass avx512_vcvt_fp_rc<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - X86VectorVTInfo _Src, SDNode OpNodeRnd> { + X86VectorVTInfo _Src, SDNode OpNodeRnd, + OpndItins itins> { defm rrb : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _Src.RC:$src, AVX512RC:$rc), OpcodeStr, "$rc, $src", "$src, $rc", - (_.VT (OpNodeRnd (_Src.VT _Src.RC:$src), (i32 imm:$rc)))>, - EVEX, EVEX_B, EVEX_RC; + (_.VT (OpNodeRnd (_Src.VT _Src.RC:$src), (i32 imm:$rc))), + itins.rr>, EVEX, EVEX_B, EVEX_RC, Sched<[itins.Sched]>; } // Extend Float to Double -multiclass avx512_cvtps2pd<bits<8> opc, string OpcodeStr> { +multiclass avx512_cvtps2pd<bits<8> opc, string OpcodeStr, + OpndItins itins> { let Predicates = [HasAVX512] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8f64_info, v8f32x_info, fpextend>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8f64_info, v8f32x_info, + fpextend, itins>, avx512_vcvt_fp_sae<opc, OpcodeStr, v8f64_info, v8f32x_info, - X86vfpextRnd>, EVEX_V512; + X86vfpextRnd, itins>, EVEX_V512; } let Predicates = [HasVLX] in { defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v2f64x_info, v4f32x_info, - X86vfpext, "{1to2}", "", f64mem>, EVEX_V128; - defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4f64x_info, v4f32x_info, fpextend>, - EVEX_V256; + X86vfpext, itins, "{1to2}", "", f64mem>, EVEX_V128; + defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4f64x_info, v4f32x_info, fpextend, + itins>, EVEX_V256; } } // Truncate Double to Float -multiclass avx512_cvtpd2ps<bits<8> opc, string OpcodeStr> { +multiclass avx512_cvtpd2ps<bits<8> opc, string OpcodeStr, OpndItins itins> { let Predicates = [HasAVX512] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8f32x_info, v8f64_info, fpround>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8f32x_info, v8f64_info, fpround, itins>, avx512_vcvt_fp_rc<opc, OpcodeStr, v8f32x_info, v8f64_info, - X86vfproundRnd>, EVEX_V512; + X86vfproundRnd, itins>, EVEX_V512; } let Predicates = [HasVLX] in { defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v4f32x_info, v2f64x_info, - X86vfpround, "{1to2}", "{x}">, EVEX_V128; + X86vfpround, itins, "{1to2}", "{x}">, EVEX_V128; defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4f32x_info, v4f64x_info, fpround, - "{1to4}", "{y}">, EVEX_V256; + itins, "{1to4}", "{y}">, EVEX_V256; def : InstAlias<OpcodeStr##"x\t{$src, $dst|$dst, $src}", (!cast<Instruction>(NAME # "Z128rr") VR128X:$dst, VR128X:$src), 0>; @@ -7008,19 +6940,23 @@ multiclass avx512_cvtpd2ps<bits<8> opc, string OpcodeStr> { } } -defm VCVTPD2PS : avx512_cvtpd2ps<0x5A, "vcvtpd2ps">, +defm VCVTPD2PS : avx512_cvtpd2ps<0x5A, "vcvtpd2ps", SSE_CVT_PD2PS>, VEX_W, PD, EVEX_CD8<64, CD8VF>; -defm VCVTPS2PD : avx512_cvtps2pd<0x5A, "vcvtps2pd">, +defm VCVTPS2PD : avx512_cvtps2pd<0x5A, "vcvtps2pd", SSE_CVT_PS2PD>, PS, EVEX_CD8<32, CD8VH>; def : Pat<(v8f64 (extloadv8f32 addr:$src)), (VCVTPS2PDZrm addr:$src)>; let Predicates = [HasVLX] in { - let AddedComplexity = 15 in - def : Pat<(X86vzmovl (v2f64 (bitconvert - (v4f32 (X86vfpround (v2f64 VR128X:$src)))))), - (VCVTPD2PSZ128rr VR128X:$src)>; + let AddedComplexity = 15 in { + def : Pat<(X86vzmovl (v2f64 (bitconvert + (v4f32 (X86vfpround (v2f64 VR128X:$src)))))), + (VCVTPD2PSZ128rr VR128X:$src)>; + def : Pat<(X86vzmovl (v2f64 (bitconvert + (v4f32 (X86vfpround (loadv2f64 addr:$src)))))), + (VCVTPD2PSZ128rm addr:$src)>; + } def : Pat<(v2f64 (extloadv2f32 addr:$src)), (VCVTPS2PDZ128rm addr:$src)>; def : Pat<(v4f64 (extloadv4f32 addr:$src)), @@ -7029,75 +6965,80 @@ let Predicates = [HasVLX] in { // Convert Signed/Unsigned Doubleword to Double multiclass avx512_cvtdq2pd<bits<8> opc, string OpcodeStr, SDNode OpNode, - SDNode OpNode128> { + SDNode OpNode128, OpndItins itins> { // No rounding in this op let Predicates = [HasAVX512] in - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8f64_info, v8i32x_info, OpNode>, - EVEX_V512; + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8f64_info, v8i32x_info, OpNode, + itins>, EVEX_V512; let Predicates = [HasVLX] in { defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v2f64x_info, v4i32x_info, - OpNode128, "{1to2}", "", i64mem>, EVEX_V128; - defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4f64x_info, v4i32x_info, OpNode>, - EVEX_V256; + OpNode128, itins, "{1to2}", "", i64mem>, EVEX_V128; + defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4f64x_info, v4i32x_info, OpNode, + itins>, EVEX_V256; } } // Convert Signed/Unsigned Doubleword to Float multiclass avx512_cvtdq2ps<bits<8> opc, string OpcodeStr, SDNode OpNode, - SDNode OpNodeRnd> { + SDNode OpNodeRnd, OpndItins itins> { let Predicates = [HasAVX512] in - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v16f32_info, v16i32_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v16f32_info, v16i32_info, OpNode, + itins>, avx512_vcvt_fp_rc<opc, OpcodeStr, v16f32_info, v16i32_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd, itins>, EVEX_V512; let Predicates = [HasVLX] in { - defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v4f32x_info, v4i32x_info, OpNode>, - EVEX_V128; - defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v8f32x_info, v8i32x_info, OpNode>, - EVEX_V256; + defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v4f32x_info, v4i32x_info, OpNode, + itins>, EVEX_V128; + defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v8f32x_info, v8i32x_info, OpNode, + itins>, EVEX_V256; } } // Convert Float to Signed/Unsigned Doubleword with truncation -multiclass avx512_cvttps2dq<bits<8> opc, string OpcodeStr, - SDNode OpNode, SDNode OpNodeRnd> { +multiclass avx512_cvttps2dq<bits<8> opc, string OpcodeStr, SDNode OpNode, + SDNode OpNodeRnd, OpndItins itins> { let Predicates = [HasAVX512] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v16i32_info, v16f32_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v16i32_info, v16f32_info, OpNode, + itins>, avx512_vcvt_fp_sae<opc, OpcodeStr, v16i32_info, v16f32_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd, itins>, EVEX_V512; } let Predicates = [HasVLX] in { - defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v4i32x_info, v4f32x_info, OpNode>, - EVEX_V128; - defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v8i32x_info, v8f32x_info, OpNode>, - EVEX_V256; + defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v4i32x_info, v4f32x_info, OpNode, + itins>, EVEX_V128; + defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v8i32x_info, v8f32x_info, OpNode, + itins>, EVEX_V256; } } // Convert Float to Signed/Unsigned Doubleword -multiclass avx512_cvtps2dq<bits<8> opc, string OpcodeStr, - SDNode OpNode, SDNode OpNodeRnd> { +multiclass avx512_cvtps2dq<bits<8> opc, string OpcodeStr, SDNode OpNode, + SDNode OpNodeRnd, OpndItins itins> { let Predicates = [HasAVX512] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v16i32_info, v16f32_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v16i32_info, v16f32_info, OpNode, + itins>, avx512_vcvt_fp_rc<opc, OpcodeStr, v16i32_info, v16f32_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd, itins>, EVEX_V512; } let Predicates = [HasVLX] in { - defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v4i32x_info, v4f32x_info, OpNode>, - EVEX_V128; - defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v8i32x_info, v8f32x_info, OpNode>, - EVEX_V256; + defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v4i32x_info, v4f32x_info, OpNode, + itins>, EVEX_V128; + defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v8i32x_info, v8f32x_info, OpNode, + itins>, EVEX_V256; } } // Convert Double to Signed/Unsigned Doubleword with truncation multiclass avx512_cvttpd2dq<bits<8> opc, string OpcodeStr, SDNode OpNode, - SDNode OpNode128, SDNode OpNodeRnd> { + SDNode OpNode128, SDNode OpNodeRnd, + OpndItins itins> { let Predicates = [HasAVX512] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i32x_info, v8f64_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i32x_info, v8f64_info, OpNode, + itins>, avx512_vcvt_fp_sae<opc, OpcodeStr, v8i32x_info, v8f64_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd, itins>, EVEX_V512; } let Predicates = [HasVLX] in { // we need "x"/"y" suffixes in order to distinguish between 128 and 256 @@ -7105,9 +7046,9 @@ multiclass avx512_cvttpd2dq<bits<8> opc, string OpcodeStr, SDNode OpNode, // dest type - 'v4i32x_info'. We also specify the broadcast string explicitly // due to the same reason. defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v4i32x_info, v2f64x_info, - OpNode128, "{1to2}", "{x}">, EVEX_V128; + OpNode128, itins, "{1to2}", "{x}">, EVEX_V128; defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4i32x_info, v4f64x_info, OpNode, - "{1to4}", "{y}">, EVEX_V256; + itins, "{1to4}", "{y}">, EVEX_V256; def : InstAlias<OpcodeStr##"x\t{$src, $dst|$dst, $src}", (!cast<Instruction>(NAME # "Z128rr") VR128X:$dst, VR128X:$src), 0>; @@ -7121,12 +7062,13 @@ multiclass avx512_cvttpd2dq<bits<8> opc, string OpcodeStr, SDNode OpNode, } // Convert Double to Signed/Unsigned Doubleword -multiclass avx512_cvtpd2dq<bits<8> opc, string OpcodeStr, - SDNode OpNode, SDNode OpNodeRnd> { +multiclass avx512_cvtpd2dq<bits<8> opc, string OpcodeStr, SDNode OpNode, + SDNode OpNodeRnd, OpndItins itins> { let Predicates = [HasAVX512] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i32x_info, v8f64_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i32x_info, v8f64_info, OpNode, + itins>, avx512_vcvt_fp_rc<opc, OpcodeStr, v8i32x_info, v8f64_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd, itins>, EVEX_V512; } let Predicates = [HasVLX] in { // we need "x"/"y" suffixes in order to distinguish between 128 and 256 @@ -7134,9 +7076,9 @@ multiclass avx512_cvtpd2dq<bits<8> opc, string OpcodeStr, // dest type - 'v4i32x_info'. We also specify the broadcast string explicitly // due to the same reason. defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v4i32x_info, v2f64x_info, OpNode, - "{1to2}", "{x}">, EVEX_V128; + itins, "{1to2}", "{x}">, EVEX_V128; defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4i32x_info, v4f64x_info, OpNode, - "{1to4}", "{y}">, EVEX_V256; + itins, "{1to4}", "{y}">, EVEX_V256; def : InstAlias<OpcodeStr##"x\t{$src, $dst|$dst, $src}", (!cast<Instruction>(NAME # "Z128rr") VR128X:$dst, VR128X:$src), 0>; @@ -7150,96 +7092,102 @@ multiclass avx512_cvtpd2dq<bits<8> opc, string OpcodeStr, } // Convert Double to Signed/Unsigned Quardword -multiclass avx512_cvtpd2qq<bits<8> opc, string OpcodeStr, - SDNode OpNode, SDNode OpNodeRnd> { +multiclass avx512_cvtpd2qq<bits<8> opc, string OpcodeStr, SDNode OpNode, + SDNode OpNodeRnd, OpndItins itins> { let Predicates = [HasDQI] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i64_info, v8f64_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i64_info, v8f64_info, OpNode, + itins>, avx512_vcvt_fp_rc<opc, OpcodeStr, v8i64_info, v8f64_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd,itins>, EVEX_V512; } let Predicates = [HasDQI, HasVLX] in { - defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v2i64x_info, v2f64x_info, OpNode>, - EVEX_V128; - defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4i64x_info, v4f64x_info, OpNode>, - EVEX_V256; + defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v2i64x_info, v2f64x_info, OpNode, + itins>, EVEX_V128; + defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4i64x_info, v4f64x_info, OpNode, + itins>, EVEX_V256; } } // Convert Double to Signed/Unsigned Quardword with truncation -multiclass avx512_cvttpd2qq<bits<8> opc, string OpcodeStr, - SDNode OpNode, SDNode OpNodeRnd> { +multiclass avx512_cvttpd2qq<bits<8> opc, string OpcodeStr, SDNode OpNode, + SDNode OpNodeRnd, OpndItins itins> { let Predicates = [HasDQI] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i64_info, v8f64_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i64_info, v8f64_info, OpNode, + itins>, avx512_vcvt_fp_sae<opc, OpcodeStr, v8i64_info, v8f64_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd, itins>, EVEX_V512; } let Predicates = [HasDQI, HasVLX] in { - defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v2i64x_info, v2f64x_info, OpNode>, - EVEX_V128; - defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4i64x_info, v4f64x_info, OpNode>, - EVEX_V256; + defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v2i64x_info, v2f64x_info, OpNode, + itins>, EVEX_V128; + defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4i64x_info, v4f64x_info, OpNode, + itins>, EVEX_V256; } } // Convert Signed/Unsigned Quardword to Double -multiclass avx512_cvtqq2pd<bits<8> opc, string OpcodeStr, - SDNode OpNode, SDNode OpNodeRnd> { +multiclass avx512_cvtqq2pd<bits<8> opc, string OpcodeStr, SDNode OpNode, + SDNode OpNodeRnd, OpndItins itins> { let Predicates = [HasDQI] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8f64_info, v8i64_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8f64_info, v8i64_info, OpNode, + itins>, avx512_vcvt_fp_rc<opc, OpcodeStr, v8f64_info, v8i64_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd, itins>, EVEX_V512; } let Predicates = [HasDQI, HasVLX] in { - defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v2f64x_info, v2i64x_info, OpNode>, - EVEX_V128; - defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4f64x_info, v4i64x_info, OpNode>, - EVEX_V256; + defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v2f64x_info, v2i64x_info, OpNode, + itins>, EVEX_V128; + defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4f64x_info, v4i64x_info, OpNode, + itins>, EVEX_V256; } } // Convert Float to Signed/Unsigned Quardword -multiclass avx512_cvtps2qq<bits<8> opc, string OpcodeStr, - SDNode OpNode, SDNode OpNodeRnd> { +multiclass avx512_cvtps2qq<bits<8> opc, string OpcodeStr, SDNode OpNode, + SDNode OpNodeRnd, OpndItins itins> { let Predicates = [HasDQI] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i64_info, v8f32x_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i64_info, v8f32x_info, OpNode, + itins>, avx512_vcvt_fp_rc<opc, OpcodeStr, v8i64_info, v8f32x_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd, itins>, EVEX_V512; } let Predicates = [HasDQI, HasVLX] in { // Explicitly specified broadcast string, since we take only 2 elements // from v4f32x_info source defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v2i64x_info, v4f32x_info, OpNode, - "{1to2}", "", f64mem>, EVEX_V128; - defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4i64x_info, v4f32x_info, OpNode>, - EVEX_V256; + itins, "{1to2}", "", f64mem>, EVEX_V128; + defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4i64x_info, v4f32x_info, OpNode, + itins>, EVEX_V256; } } // Convert Float to Signed/Unsigned Quardword with truncation multiclass avx512_cvttps2qq<bits<8> opc, string OpcodeStr, SDNode OpNode, - SDNode OpNode128, SDNode OpNodeRnd> { + SDNode OpNode128, SDNode OpNodeRnd, OpndItins itins> { let Predicates = [HasDQI] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i64_info, v8f32x_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8i64_info, v8f32x_info, OpNode, + itins>, avx512_vcvt_fp_sae<opc, OpcodeStr, v8i64_info, v8f32x_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd, itins>, EVEX_V512; } let Predicates = [HasDQI, HasVLX] in { // Explicitly specified broadcast string, since we take only 2 elements // from v4f32x_info source defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v2i64x_info, v4f32x_info, OpNode128, - "{1to2}", "", f64mem>, EVEX_V128; - defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4i64x_info, v4f32x_info, OpNode>, - EVEX_V256; + itins, "{1to2}", "", f64mem>, EVEX_V128; + defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4i64x_info, v4f32x_info, OpNode, + itins>, EVEX_V256; } } // Convert Signed/Unsigned Quardword to Float multiclass avx512_cvtqq2ps<bits<8> opc, string OpcodeStr, SDNode OpNode, - SDNode OpNode128, SDNode OpNodeRnd> { + SDNode OpNode128, SDNode OpNodeRnd, OpndItins itins> { let Predicates = [HasDQI] in { - defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8f32x_info, v8i64_info, OpNode>, + defm Z : avx512_vcvt_fp<opc, OpcodeStr, v8f32x_info, v8i64_info, OpNode, + itins>, avx512_vcvt_fp_rc<opc, OpcodeStr, v8f32x_info, v8i64_info, - OpNodeRnd>, EVEX_V512; + OpNodeRnd, itins>, EVEX_V512; } let Predicates = [HasDQI, HasVLX] in { // we need "x"/"y" suffixes in order to distinguish between 128 and 256 @@ -7247,9 +7195,9 @@ multiclass avx512_cvtqq2ps<bits<8> opc, string OpcodeStr, SDNode OpNode, // dest type - 'v4i32x_info'. We also specify the broadcast string explicitly // due to the same reason. defm Z128 : avx512_vcvt_fp<opc, OpcodeStr, v4f32x_info, v2i64x_info, OpNode128, - "{1to2}", "{x}">, EVEX_V128; + itins, "{1to2}", "{x}">, EVEX_V128; defm Z256 : avx512_vcvt_fp<opc, OpcodeStr, v4f32x_info, v4i64x_info, OpNode, - "{1to4}", "{y}">, EVEX_V256; + itins, "{1to4}", "{y}">, EVEX_V256; def : InstAlias<OpcodeStr##"x\t{$src, $dst|$dst, $src}", (!cast<Instruction>(NAME # "Z128rr") VR128X:$dst, VR128X:$src), 0>; @@ -7262,89 +7210,100 @@ multiclass avx512_cvtqq2ps<bits<8> opc, string OpcodeStr, SDNode OpNode, } } -defm VCVTDQ2PD : avx512_cvtdq2pd<0xE6, "vcvtdq2pd", sint_to_fp, X86VSintToFP>, - XS, EVEX_CD8<32, CD8VH>; +defm VCVTDQ2PD : avx512_cvtdq2pd<0xE6, "vcvtdq2pd", sint_to_fp, X86VSintToFP, + SSE_CVT_I2PD>, XS, EVEX_CD8<32, CD8VH>; defm VCVTDQ2PS : avx512_cvtdq2ps<0x5B, "vcvtdq2ps", sint_to_fp, - X86VSintToFpRnd>, + X86VSintToFpRnd, SSE_CVT_I2PS>, PS, EVEX_CD8<32, CD8VF>; defm VCVTTPS2DQ : avx512_cvttps2dq<0x5B, "vcvttps2dq", fp_to_sint, - X86cvttp2siRnd>, + X86cvttp2siRnd, SSE_CVT_PS2I>, XS, EVEX_CD8<32, CD8VF>; defm VCVTTPD2DQ : avx512_cvttpd2dq<0xE6, "vcvttpd2dq", fp_to_sint, X86cvttp2si, - X86cvttp2siRnd>, + X86cvttp2siRnd, SSE_CVT_PD2I>, PD, VEX_W, EVEX_CD8<64, CD8VF>; defm VCVTTPS2UDQ : avx512_cvttps2dq<0x78, "vcvttps2udq", fp_to_uint, - X86cvttp2uiRnd>, PS, + X86cvttp2uiRnd, SSE_CVT_PS2I>, PS, EVEX_CD8<32, CD8VF>; defm VCVTTPD2UDQ : avx512_cvttpd2dq<0x78, "vcvttpd2udq", fp_to_uint, - X86cvttp2ui, X86cvttp2uiRnd>, PS, VEX_W, - EVEX_CD8<64, CD8VF>; + X86cvttp2ui, X86cvttp2uiRnd, SSE_CVT_PD2I>, + PS, VEX_W, EVEX_CD8<64, CD8VF>; -defm VCVTUDQ2PD : avx512_cvtdq2pd<0x7A, "vcvtudq2pd", uint_to_fp, X86VUintToFP>, - XS, EVEX_CD8<32, CD8VH>; +defm VCVTUDQ2PD : avx512_cvtdq2pd<0x7A, "vcvtudq2pd", uint_to_fp, + X86VUintToFP, SSE_CVT_I2PD>, XS, + EVEX_CD8<32, CD8VH>; defm VCVTUDQ2PS : avx512_cvtdq2ps<0x7A, "vcvtudq2ps", uint_to_fp, - X86VUintToFpRnd>, XD, + X86VUintToFpRnd, SSE_CVT_I2PS>, XD, EVEX_CD8<32, CD8VF>; defm VCVTPS2DQ : avx512_cvtps2dq<0x5B, "vcvtps2dq", X86cvtp2Int, - X86cvtp2IntRnd>, PD, EVEX_CD8<32, CD8VF>; + X86cvtp2IntRnd, SSE_CVT_PS2I>, PD, + EVEX_CD8<32, CD8VF>; defm VCVTPD2DQ : avx512_cvtpd2dq<0xE6, "vcvtpd2dq", X86cvtp2Int, - X86cvtp2IntRnd>, XD, VEX_W, - EVEX_CD8<64, CD8VF>; + X86cvtp2IntRnd, SSE_CVT_PD2I>, XD, + VEX_W, EVEX_CD8<64, CD8VF>; defm VCVTPS2UDQ : avx512_cvtps2dq<0x79, "vcvtps2udq", X86cvtp2UInt, - X86cvtp2UIntRnd>, + X86cvtp2UIntRnd, SSE_CVT_PS2I>, PS, EVEX_CD8<32, CD8VF>; + defm VCVTPD2UDQ : avx512_cvtpd2dq<0x79, "vcvtpd2udq", X86cvtp2UInt, - X86cvtp2UIntRnd>, VEX_W, + X86cvtp2UIntRnd, SSE_CVT_PD2I>, VEX_W, PS, EVEX_CD8<64, CD8VF>; defm VCVTPD2QQ : avx512_cvtpd2qq<0x7B, "vcvtpd2qq", X86cvtp2Int, - X86cvtp2IntRnd>, VEX_W, + X86cvtp2IntRnd, SSE_CVT_PD2I>, VEX_W, PD, EVEX_CD8<64, CD8VF>; defm VCVTPS2QQ : avx512_cvtps2qq<0x7B, "vcvtps2qq", X86cvtp2Int, - X86cvtp2IntRnd>, PD, EVEX_CD8<32, CD8VH>; + X86cvtp2IntRnd, SSE_CVT_PS2I>, PD, + EVEX_CD8<32, CD8VH>; defm VCVTPD2UQQ : avx512_cvtpd2qq<0x79, "vcvtpd2uqq", X86cvtp2UInt, - X86cvtp2UIntRnd>, VEX_W, + X86cvtp2UIntRnd, SSE_CVT_PD2I>, VEX_W, PD, EVEX_CD8<64, CD8VF>; defm VCVTPS2UQQ : avx512_cvtps2qq<0x79, "vcvtps2uqq", X86cvtp2UInt, - X86cvtp2UIntRnd>, PD, EVEX_CD8<32, CD8VH>; + X86cvtp2UIntRnd, SSE_CVT_PS2I>, PD, + EVEX_CD8<32, CD8VH>; defm VCVTTPD2QQ : avx512_cvttpd2qq<0x7A, "vcvttpd2qq", fp_to_sint, - X86cvttp2siRnd>, VEX_W, + X86cvttp2siRnd, SSE_CVT_PD2I>, VEX_W, PD, EVEX_CD8<64, CD8VF>; defm VCVTTPS2QQ : avx512_cvttps2qq<0x7A, "vcvttps2qq", fp_to_sint, X86cvttp2si, - X86cvttp2siRnd>, PD, EVEX_CD8<32, CD8VH>; + X86cvttp2siRnd, SSE_CVT_PS2I>, PD, + EVEX_CD8<32, CD8VH>; defm VCVTTPD2UQQ : avx512_cvttpd2qq<0x78, "vcvttpd2uqq", fp_to_uint, - X86cvttp2uiRnd>, VEX_W, + X86cvttp2uiRnd, SSE_CVT_PD2I>, VEX_W, PD, EVEX_CD8<64, CD8VF>; defm VCVTTPS2UQQ : avx512_cvttps2qq<0x78, "vcvttps2uqq", fp_to_uint, X86cvttp2ui, - X86cvttp2uiRnd>, PD, EVEX_CD8<32, CD8VH>; + X86cvttp2uiRnd, SSE_CVT_PS2I>, PD, + EVEX_CD8<32, CD8VH>; defm VCVTQQ2PD : avx512_cvtqq2pd<0xE6, "vcvtqq2pd", sint_to_fp, - X86VSintToFpRnd>, VEX_W, XS, EVEX_CD8<64, CD8VF>; + X86VSintToFpRnd, SSE_CVT_I2PD>, VEX_W, XS, + EVEX_CD8<64, CD8VF>; defm VCVTUQQ2PD : avx512_cvtqq2pd<0x7A, "vcvtuqq2pd", uint_to_fp, - X86VUintToFpRnd>, VEX_W, XS, EVEX_CD8<64, CD8VF>; + X86VUintToFpRnd, SSE_CVT_I2PD>, VEX_W, XS, + EVEX_CD8<64, CD8VF>; defm VCVTQQ2PS : avx512_cvtqq2ps<0x5B, "vcvtqq2ps", sint_to_fp, X86VSintToFP, - X86VSintToFpRnd>, VEX_W, PS, EVEX_CD8<64, CD8VF>; + X86VSintToFpRnd, SSE_CVT_I2PS>, VEX_W, PS, + EVEX_CD8<64, CD8VF>; defm VCVTUQQ2PS : avx512_cvtqq2ps<0x7A, "vcvtuqq2ps", uint_to_fp, X86VUintToFP, - X86VUintToFpRnd>, VEX_W, XD, EVEX_CD8<64, CD8VF>; + X86VUintToFpRnd, SSE_CVT_I2PS>, VEX_W, XD, + EVEX_CD8<64, CD8VF>; let Predicates = [HasAVX512, NoVLX] in { def : Pat<(v8i32 (fp_to_uint (v8f32 VR256X:$src1))), @@ -7362,11 +7321,6 @@ def : Pat<(v4i32 (fp_to_uint (v4f64 VR256X:$src1))), (v8f64 (INSERT_SUBREG (IMPLICIT_DEF), VR256X:$src1, sub_ymm)))), sub_xmm)>; -def : Pat<(v4i32 (X86cvttp2ui (v2f64 VR128X:$src))), - (EXTRACT_SUBREG (v8i32 (VCVTTPD2UDQZrr - (v8f64 (INSERT_SUBREG (IMPLICIT_DEF), - VR128X:$src, sub_xmm)))), sub_xmm)>; - def : Pat<(v8f32 (uint_to_fp (v8i32 VR256X:$src1))), (EXTRACT_SUBREG (v16f32 (VCVTUDQ2PSZrr (v16i32 (INSERT_SUBREG (IMPLICIT_DEF), @@ -7393,16 +7347,32 @@ let Predicates = [HasAVX512, HasVLX] in { def : Pat<(X86vzmovl (v2i64 (bitconvert (v4i32 (X86cvtp2Int (v2f64 VR128X:$src)))))), (VCVTPD2DQZ128rr VR128X:$src)>; - def : Pat<(v4i32 (bitconvert (X86vzmovl (v2i64 (bitconvert - (v4i32 (X86cvtp2UInt (v2f64 VR128X:$src)))))))), + def : Pat<(X86vzmovl (v2i64 (bitconvert + (v4i32 (X86cvtp2Int (loadv2f64 addr:$src)))))), + (VCVTPD2DQZ128rm addr:$src)>; + def : Pat<(X86vzmovl (v2i64 (bitconvert + (v4i32 (X86cvtp2UInt (v2f64 VR128X:$src)))))), (VCVTPD2UDQZ128rr VR128X:$src)>; def : Pat<(X86vzmovl (v2i64 (bitconvert (v4i32 (X86cvttp2si (v2f64 VR128X:$src)))))), (VCVTTPD2DQZ128rr VR128X:$src)>; - def : Pat<(v4i32 (bitconvert (X86vzmovl (v2i64 (bitconvert - (v4i32 (X86cvttp2ui (v2f64 VR128X:$src)))))))), + def : Pat<(X86vzmovl (v2i64 (bitconvert + (v4i32 (X86cvttp2si (loadv2f64 addr:$src)))))), + (VCVTTPD2DQZ128rm addr:$src)>; + def : Pat<(X86vzmovl (v2i64 (bitconvert + (v4i32 (X86cvttp2ui (v2f64 VR128X:$src)))))), (VCVTTPD2UDQZ128rr VR128X:$src)>; } + + def : Pat<(v2f64 (X86VSintToFP (bc_v4i32 (v2i64 (scalar_to_vector (loadi64 addr:$src)))))), + (VCVTDQ2PDZ128rm addr:$src)>; + def : Pat<(v2f64 (X86VSintToFP (bc_v4i32 (v2i64 (X86vzload addr:$src))))), + (VCVTDQ2PDZ128rm addr:$src)>; + + def : Pat<(v2f64 (X86VUintToFP (bc_v4i32 (v2i64 (scalar_to_vector (loadi64 addr:$src)))))), + (VCVTUDQ2PDZ128rm addr:$src)>; + def : Pat<(v2f64 (X86VUintToFP (bc_v4i32 (v2i64 (X86vzload addr:$src))))), + (VCVTUDQ2PDZ128rm addr:$src)>; } let Predicates = [HasAVX512] in { @@ -7488,76 +7458,113 @@ def : Pat<(v4f64 (uint_to_fp (v4i64 VR256X:$src1))), //===----------------------------------------------------------------------===// // Half precision conversion instructions //===----------------------------------------------------------------------===// + multiclass avx512_cvtph2ps<X86VectorVTInfo _dest, X86VectorVTInfo _src, - X86MemOperand x86memop, PatFrag ld_frag> { - defm rr : AVX512_maskable<0x13, MRMSrcReg, _dest ,(outs _dest.RC:$dst), (ins _src.RC:$src), - "vcvtph2ps", "$src", "$src", - (X86cvtph2ps (_src.VT _src.RC:$src), - (i32 FROUND_CURRENT))>, T8PD; - defm rm : AVX512_maskable<0x13, MRMSrcMem, _dest, (outs _dest.RC:$dst), (ins x86memop:$src), - "vcvtph2ps", "$src", "$src", - (X86cvtph2ps (_src.VT (bitconvert (ld_frag addr:$src))), - (i32 FROUND_CURRENT))>, T8PD; + X86MemOperand x86memop, PatFrag ld_frag, + OpndItins itins> { + defm rr : AVX512_maskable<0x13, MRMSrcReg, _dest ,(outs _dest.RC:$dst), + (ins _src.RC:$src), "vcvtph2ps", "$src", "$src", + (X86cvtph2ps (_src.VT _src.RC:$src)),itins.rr>, + T8PD, Sched<[itins.Sched]>; + defm rm : AVX512_maskable<0x13, MRMSrcMem, _dest, (outs _dest.RC:$dst), + (ins x86memop:$src), "vcvtph2ps", "$src", "$src", + (X86cvtph2ps (_src.VT + (bitconvert + (ld_frag addr:$src)))), itins.rm>, + T8PD, Sched<[itins.Sched.Folded]>; } -multiclass avx512_cvtph2ps_sae<X86VectorVTInfo _dest, X86VectorVTInfo _src> { - defm rb : AVX512_maskable<0x13, MRMSrcReg, _dest ,(outs _dest.RC:$dst), (ins _src.RC:$src), - "vcvtph2ps", "{sae}, $src", "$src, {sae}", - (X86cvtph2ps (_src.VT _src.RC:$src), - (i32 FROUND_NO_EXC))>, T8PD, EVEX_B; - +multiclass avx512_cvtph2ps_sae<X86VectorVTInfo _dest, X86VectorVTInfo _src, + OpndItins itins> { + defm rrb : AVX512_maskable<0x13, MRMSrcReg, _dest, (outs _dest.RC:$dst), + (ins _src.RC:$src), "vcvtph2ps", + "{sae}, $src", "$src, {sae}", + (X86cvtph2psRnd (_src.VT _src.RC:$src), + (i32 FROUND_NO_EXC)), itins.rr>, + T8PD, EVEX_B, Sched<[itins.Sched]>; } -let Predicates = [HasAVX512] in { - defm VCVTPH2PSZ : avx512_cvtph2ps<v16f32_info, v16i16x_info, f256mem, loadv4i64>, - avx512_cvtph2ps_sae<v16f32_info, v16i16x_info>, +let Predicates = [HasAVX512] in + defm VCVTPH2PSZ : avx512_cvtph2ps<v16f32_info, v16i16x_info, f256mem, loadv4i64, + SSE_CVT_PH2PS>, + avx512_cvtph2ps_sae<v16f32_info, v16i16x_info, SSE_CVT_PH2PS>, EVEX, EVEX_V512, EVEX_CD8<32, CD8VH>; - let Predicates = [HasVLX] in { - defm VCVTPH2PSZ256 : avx512_cvtph2ps<v8f32x_info, v8i16x_info, f128mem, - loadv2i64>,EVEX, EVEX_V256, EVEX_CD8<32, CD8VH>; - defm VCVTPH2PSZ128 : avx512_cvtph2ps<v4f32x_info, v8i16x_info, f64mem, - loadv2i64>, EVEX, EVEX_V128, EVEX_CD8<32, CD8VH>; - } + +let Predicates = [HasVLX] in { + defm VCVTPH2PSZ256 : avx512_cvtph2ps<v8f32x_info, v8i16x_info, f128mem, + loadv2i64, SSE_CVT_PH2PS>, EVEX, EVEX_V256, + EVEX_CD8<32, CD8VH>; + defm VCVTPH2PSZ128 : avx512_cvtph2ps<v4f32x_info, v8i16x_info, f64mem, + loadv2i64, SSE_CVT_PH2PS>, EVEX, EVEX_V128, + EVEX_CD8<32, CD8VH>; + + // Pattern match vcvtph2ps of a scalar i64 load. + def : Pat<(v4f32 (X86cvtph2ps (v8i16 (vzmovl_v2i64 addr:$src)))), + (VCVTPH2PSZ128rm addr:$src)>; + def : Pat<(v4f32 (X86cvtph2ps (v8i16 (vzload_v2i64 addr:$src)))), + (VCVTPH2PSZ128rm addr:$src)>; + def : Pat<(v4f32 (X86cvtph2ps (v8i16 (bitconvert + (v2i64 (scalar_to_vector (loadi64 addr:$src))))))), + (VCVTPH2PSZ128rm addr:$src)>; } multiclass avx512_cvtps2ph<X86VectorVTInfo _dest, X86VectorVTInfo _src, - X86MemOperand x86memop> { + X86MemOperand x86memop, OpndItins itins> { defm rr : AVX512_maskable<0x1D, MRMDestReg, _dest ,(outs _dest.RC:$dst), (ins _src.RC:$src1, i32u8imm:$src2), "vcvtps2ph", "$src2, $src1", "$src1, $src2", (X86cvtps2ph (_src.VT _src.RC:$src1), (i32 imm:$src2)), - NoItinerary, 0, 0, X86select>, AVX512AIi8Base; - def mr : AVX512AIi8<0x1D, MRMDestMem, (outs), - (ins x86memop:$dst, _src.RC:$src1, i32u8imm:$src2), - "vcvtps2ph\t{$src2, $src1, $dst|$dst, $src1, $src2}", - [(store (_dest.VT (X86cvtps2ph (_src.VT _src.RC:$src1), - (i32 imm:$src2))), - addr:$dst)]>; - let hasSideEffects = 0, mayStore = 1 in - def mrk : AVX512AIi8<0x1D, MRMDestMem, (outs), - (ins x86memop:$dst, _dest.KRCWM:$mask, _src.RC:$src1, i32u8imm:$src2), - "vcvtps2ph\t{$src2, $src1, $dst {${mask}}|$dst {${mask}}, $src1, $src2}", - []>, EVEX_K; + itins.rr, 0, 0>, AVX512AIi8Base, Sched<[itins.Sched]>; + let hasSideEffects = 0, mayStore = 1 in { + def mr : AVX512AIi8<0x1D, MRMDestMem, (outs), + (ins x86memop:$dst, _src.RC:$src1, i32u8imm:$src2), + "vcvtps2ph\t{$src2, $src1, $dst|$dst, $src1, $src2}", + [], itins.rm>, Sched<[itins.Sched.Folded, ReadAfterLd]>; + def mrk : AVX512AIi8<0x1D, MRMDestMem, (outs), + (ins x86memop:$dst, _dest.KRCWM:$mask, _src.RC:$src1, i32u8imm:$src2), + "vcvtps2ph\t{$src2, $src1, $dst {${mask}}|$dst {${mask}}, $src1, $src2}", + [], itins.rm>, EVEX_K, Sched<[itins.Sched.Folded, ReadAfterLd]>; + } } -multiclass avx512_cvtps2ph_sae<X86VectorVTInfo _dest, X86VectorVTInfo _src> { + +multiclass avx512_cvtps2ph_sae<X86VectorVTInfo _dest, X86VectorVTInfo _src, + OpndItins itins> { let hasSideEffects = 0 in - defm rb : AVX512_maskable_in_asm<0x1D, MRMDestReg, _dest, + defm rrb : AVX512_maskable_in_asm<0x1D, MRMDestReg, _dest, (outs _dest.RC:$dst), (ins _src.RC:$src1, i32u8imm:$src2), "vcvtps2ph", "$src2, {sae}, $src1", "$src1, {sae}, $src2", - []>, EVEX_B, AVX512AIi8Base; + [], itins.rr>, EVEX_B, AVX512AIi8Base, Sched<[itins.Sched]>; } + let Predicates = [HasAVX512] in { - defm VCVTPS2PHZ : avx512_cvtps2ph<v16i16x_info, v16f32_info, f256mem>, - avx512_cvtps2ph_sae<v16i16x_info, v16f32_info>, - EVEX, EVEX_V512, EVEX_CD8<32, CD8VH>; + defm VCVTPS2PHZ : avx512_cvtps2ph<v16i16x_info, v16f32_info, f256mem, + SSE_CVT_PS2PH>, + avx512_cvtps2ph_sae<v16i16x_info, v16f32_info, + SSE_CVT_PS2PH>, EVEX, EVEX_V512, + EVEX_CD8<32, CD8VH>; let Predicates = [HasVLX] in { - defm VCVTPS2PHZ256 : avx512_cvtps2ph<v8i16x_info, v8f32x_info, f128mem>, - EVEX, EVEX_V256, EVEX_CD8<32, CD8VH>; - defm VCVTPS2PHZ128 : avx512_cvtps2ph<v8i16x_info, v4f32x_info, f64mem>, - EVEX, EVEX_V128, EVEX_CD8<32, CD8VH>; + defm VCVTPS2PHZ256 : avx512_cvtps2ph<v8i16x_info, v8f32x_info, f128mem, + SSE_CVT_PS2PH>, EVEX, EVEX_V256, + EVEX_CD8<32, CD8VH>; + defm VCVTPS2PHZ128 : avx512_cvtps2ph<v8i16x_info, v4f32x_info, f64mem, + SSE_CVT_PS2PH>, EVEX, EVEX_V128, + EVEX_CD8<32, CD8VH>; } + + def : Pat<(store (f64 (extractelt + (bc_v2f64 (v8i16 (X86cvtps2ph VR128X:$src1, i32:$src2))), + (iPTR 0))), addr:$dst), + (VCVTPS2PHZ128mr addr:$dst, VR128X:$src1, imm:$src2)>; + def : Pat<(store (i64 (extractelt + (bc_v2i64 (v8i16 (X86cvtps2ph VR128X:$src1, i32:$src2))), + (iPTR 0))), addr:$dst), + (VCVTPS2PHZ128mr addr:$dst, VR128X:$src1, imm:$src2)>; + def : Pat<(store (v8i16 (X86cvtps2ph VR256X:$src1, i32:$src2)), addr:$dst), + (VCVTPS2PHZ256mr addr:$dst, VR256X:$src1, imm:$src2)>; + def : Pat<(store (v16i16 (X86cvtps2ph VR512:$src1, i32:$src2)), addr:$dst), + (VCVTPS2PHZmr addr:$dst, VR512:$src1, imm:$src2)>; } // Patterns for matching conversions from float to half-float and vice versa. @@ -7580,502 +7587,500 @@ let Predicates = [HasVLX] in { (VCVTPS2PHZ128rr (COPY_TO_REGCLASS FR32X:$src, VR128X), 4)), FR32X)) >; } -// Patterns for matching float to half-float conversion when AVX512 is supported -// but F16C isn't. In that case we have to use 512-bit vectors. -let Predicates = [HasAVX512, NoVLX, NoF16C] in { - def : Pat<(fp_to_f16 FR32X:$src), - (i16 (EXTRACT_SUBREG - (VMOVPDI2DIZrr - (v8i16 (EXTRACT_SUBREG - (VCVTPS2PHZrr - (INSERT_SUBREG (v16f32 (IMPLICIT_DEF)), - (v4f32 (COPY_TO_REGCLASS FR32X:$src, VR128X)), - sub_xmm), 4), sub_xmm))), sub_16bit))>; - - def : Pat<(f16_to_fp GR16:$src), - (f32 (COPY_TO_REGCLASS - (v4f32 (EXTRACT_SUBREG - (VCVTPH2PSZrr - (INSERT_SUBREG (v16i16 (IMPLICIT_DEF)), - (v8i16 (COPY_TO_REGCLASS (MOVSX32rr16 GR16:$src), VR128X)), - sub_xmm)), sub_xmm)), FR32X))>; - - def : Pat<(f16_to_fp (i16 (fp_to_f16 FR32X:$src))), - (f32 (COPY_TO_REGCLASS - (v4f32 (EXTRACT_SUBREG - (VCVTPH2PSZrr - (VCVTPS2PHZrr (INSERT_SUBREG (v16f32 (IMPLICIT_DEF)), - (v4f32 (COPY_TO_REGCLASS FR32X:$src, VR128X)), - sub_xmm), 4)), sub_xmm)), FR32X))>; -} - // Unordered/Ordered scalar fp compare with Sea and set EFLAGS multiclass avx512_ord_cmp_sae<bits<8> opc, X86VectorVTInfo _, - string OpcodeStr> { - def rb: AVX512<opc, MRMSrcReg, (outs), (ins _.RC:$src1, _.RC:$src2), - !strconcat(OpcodeStr, "\t{{sae}, $src2, $src1|$src1, $src2, {sae}}"), - [], IIC_SSE_COMIS_RR>, EVEX, EVEX_B, VEX_LIG, EVEX_V128, - Sched<[WriteFAdd]>; + string OpcodeStr, OpndItins itins> { + let hasSideEffects = 0 in + def rrb: AVX512<opc, MRMSrcReg, (outs), (ins _.RC:$src1, _.RC:$src2), + !strconcat(OpcodeStr, "\t{{sae}, $src2, $src1|$src1, $src2, {sae}}"), + [], itins.rr>, EVEX, EVEX_B, VEX_LIG, EVEX_V128, + Sched<[itins.Sched]>; } let Defs = [EFLAGS], Predicates = [HasAVX512] in { - defm VUCOMISSZ : avx512_ord_cmp_sae<0x2E, v4f32x_info, "vucomiss">, + defm VUCOMISSZ : avx512_ord_cmp_sae<0x2E, v4f32x_info, "vucomiss", SSE_COMIS>, AVX512PSIi8Base, EVEX_CD8<32, CD8VT1>; - defm VUCOMISDZ : avx512_ord_cmp_sae<0x2E, v2f64x_info, "vucomisd">, + defm VUCOMISDZ : avx512_ord_cmp_sae<0x2E, v2f64x_info, "vucomisd", SSE_COMIS>, AVX512PDIi8Base, VEX_W, EVEX_CD8<64, CD8VT1>; - defm VCOMISSZ : avx512_ord_cmp_sae<0x2F, v4f32x_info, "vcomiss">, + defm VCOMISSZ : avx512_ord_cmp_sae<0x2F, v4f32x_info, "vcomiss", SSE_COMIS>, AVX512PSIi8Base, EVEX_CD8<32, CD8VT1>; - defm VCOMISDZ : avx512_ord_cmp_sae<0x2F, v2f64x_info, "vcomisd">, + defm VCOMISDZ : avx512_ord_cmp_sae<0x2F, v2f64x_info, "vcomisd", SSE_COMIS>, AVX512PDIi8Base, VEX_W, EVEX_CD8<64, CD8VT1>; } let Defs = [EFLAGS], Predicates = [HasAVX512] in { defm VUCOMISSZ : sse12_ord_cmp<0x2E, FR32X, X86cmp, f32, f32mem, loadf32, - "ucomiss">, PS, EVEX, VEX_LIG, + "ucomiss", SSE_COMIS>, PS, EVEX, VEX_LIG, EVEX_CD8<32, CD8VT1>; defm VUCOMISDZ : sse12_ord_cmp<0x2E, FR64X, X86cmp, f64, f64mem, loadf64, - "ucomisd">, PD, EVEX, + "ucomisd", SSE_COMIS>, PD, EVEX, VEX_LIG, VEX_W, EVEX_CD8<64, CD8VT1>; let Pattern = []<dag> in { defm VCOMISSZ : sse12_ord_cmp<0x2F, FR32X, undef, f32, f32mem, loadf32, - "comiss">, PS, EVEX, VEX_LIG, + "comiss", SSE_COMIS>, PS, EVEX, VEX_LIG, EVEX_CD8<32, CD8VT1>; defm VCOMISDZ : sse12_ord_cmp<0x2F, FR64X, undef, f64, f64mem, loadf64, - "comisd">, PD, EVEX, + "comisd", SSE_COMIS>, PD, EVEX, VEX_LIG, VEX_W, EVEX_CD8<64, CD8VT1>; } let isCodeGenOnly = 1 in { defm Int_VUCOMISSZ : sse12_ord_cmp_int<0x2E, VR128X, X86ucomi, v4f32, ssmem, - sse_load_f32, "ucomiss">, PS, EVEX, VEX_LIG, + sse_load_f32, "ucomiss", SSE_COMIS>, PS, EVEX, VEX_LIG, EVEX_CD8<32, CD8VT1>; defm Int_VUCOMISDZ : sse12_ord_cmp_int<0x2E, VR128X, X86ucomi, v2f64, sdmem, - sse_load_f64, "ucomisd">, PD, EVEX, + sse_load_f64, "ucomisd", SSE_COMIS>, PD, EVEX, VEX_LIG, VEX_W, EVEX_CD8<64, CD8VT1>; defm Int_VCOMISSZ : sse12_ord_cmp_int<0x2F, VR128X, X86comi, v4f32, ssmem, - sse_load_f32, "comiss">, PS, EVEX, VEX_LIG, + sse_load_f32, "comiss", SSE_COMIS>, PS, EVEX, VEX_LIG, EVEX_CD8<32, CD8VT1>; defm Int_VCOMISDZ : sse12_ord_cmp_int<0x2F, VR128X, X86comi, v2f64, sdmem, - sse_load_f64, "comisd">, PD, EVEX, + sse_load_f64, "comisd", SSE_COMIS>, PD, EVEX, VEX_LIG, VEX_W, EVEX_CD8<64, CD8VT1>; } } /// avx512_fp14_s rcp14ss, rcp14sd, rsqrt14ss, rsqrt14sd multiclass avx512_fp14_s<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let Predicates = [HasAVX512], ExeDomain = _.ExeDomain in { defm rr : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", - (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2))>, EVEX_4V; + (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2)), itins.rr>, + EVEX_4V, Sched<[itins.Sched]>; defm rm : AVX512_maskable_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), - (ins _.RC:$src1, _.ScalarMemOp:$src2), OpcodeStr, + (ins _.RC:$src1, _.IntScalarMemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (OpNode (_.VT _.RC:$src1), - (_.VT (scalar_to_vector (_.ScalarLdFrag addr:$src2))))>, EVEX_4V; + _.ScalarIntMemCPat:$src2), itins.rm>, EVEX_4V, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } -defm VRCP14SS : avx512_fp14_s<0x4D, "vrcp14ss", X86frcp14s, f32x_info>, - EVEX_CD8<32, CD8VT1>, T8PD; -defm VRCP14SD : avx512_fp14_s<0x4D, "vrcp14sd", X86frcp14s, f64x_info>, - VEX_W, EVEX_CD8<64, CD8VT1>, T8PD; -defm VRSQRT14SS : avx512_fp14_s<0x4F, "vrsqrt14ss", X86frsqrt14s, f32x_info>, - EVEX_CD8<32, CD8VT1>, T8PD; -defm VRSQRT14SD : avx512_fp14_s<0x4F, "vrsqrt14sd", X86frsqrt14s, f64x_info>, - VEX_W, EVEX_CD8<64, CD8VT1>, T8PD; +defm VRCP14SS : avx512_fp14_s<0x4D, "vrcp14ss", X86rcp14s, SSE_RCPS, f32x_info>, + EVEX_CD8<32, CD8VT1>, T8PD, NotMemoryFoldable; +defm VRCP14SD : avx512_fp14_s<0x4D, "vrcp14sd", X86rcp14s, SSE_RCPS, f64x_info>, + VEX_W, EVEX_CD8<64, CD8VT1>, T8PD, NotMemoryFoldable; +defm VRSQRT14SS : avx512_fp14_s<0x4F, "vrsqrt14ss", X86rsqrt14s, SSE_RSQRTSS, f32x_info>, + EVEX_CD8<32, CD8VT1>, T8PD, NotMemoryFoldable; +defm VRSQRT14SD : avx512_fp14_s<0x4F, "vrsqrt14sd", X86rsqrt14s, SSE_RSQRTSS, f64x_info>, + VEX_W, EVEX_CD8<64, CD8VT1>, T8PD, NotMemoryFoldable; /// avx512_fp14_p rcp14ps, rcp14pd, rsqrt14ps, rsqrt14pd multiclass avx512_fp14_p<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in { defm r: AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src), OpcodeStr, "$src", "$src", - (_.FloatVT (OpNode _.RC:$src))>, EVEX, T8PD; + (_.FloatVT (OpNode _.RC:$src)), itins.rr>, EVEX, T8PD, + Sched<[itins.Sched]>; defm m: AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.MemOp:$src), OpcodeStr, "$src", "$src", (OpNode (_.FloatVT - (bitconvert (_.LdFrag addr:$src))))>, EVEX, T8PD; + (bitconvert (_.LdFrag addr:$src)))), itins.rm>, EVEX, T8PD, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm mb: AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.ScalarMemOp:$src), OpcodeStr, "${src}"##_.BroadcastStr, "${src}"##_.BroadcastStr, (OpNode (_.FloatVT - (X86VBroadcast (_.ScalarLdFrag addr:$src))))>, - EVEX, T8PD, EVEX_B; + (X86VBroadcast (_.ScalarLdFrag addr:$src)))), itins.rm>, + EVEX, T8PD, EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; } } -multiclass avx512_fp14_p_vl_all<bits<8> opc, string OpcodeStr, SDNode OpNode> { - defm PSZ : avx512_fp14_p<opc, !strconcat(OpcodeStr, "ps"), OpNode, v16f32_info>, - EVEX_V512, EVEX_CD8<32, CD8VF>; - defm PDZ : avx512_fp14_p<opc, !strconcat(OpcodeStr, "pd"), OpNode, v8f64_info>, - EVEX_V512, VEX_W, EVEX_CD8<64, CD8VF>; +multiclass avx512_fp14_p_vl_all<bits<8> opc, string OpcodeStr, SDNode OpNode, + SizeItins itins> { + defm PSZ : avx512_fp14_p<opc, !strconcat(OpcodeStr, "ps"), OpNode, itins.s, + v16f32_info>, EVEX_V512, EVEX_CD8<32, CD8VF>; + defm PDZ : avx512_fp14_p<opc, !strconcat(OpcodeStr, "pd"), OpNode, itins.d, + v8f64_info>, EVEX_V512, VEX_W, EVEX_CD8<64, CD8VF>; // Define only if AVX512VL feature is present. let Predicates = [HasVLX] in { defm PSZ128 : avx512_fp14_p<opc, !strconcat(OpcodeStr, "ps"), - OpNode, v4f32x_info>, + OpNode, itins.s, v4f32x_info>, EVEX_V128, EVEX_CD8<32, CD8VF>; defm PSZ256 : avx512_fp14_p<opc, !strconcat(OpcodeStr, "ps"), - OpNode, v8f32x_info>, + OpNode, itins.s, v8f32x_info>, EVEX_V256, EVEX_CD8<32, CD8VF>; defm PDZ128 : avx512_fp14_p<opc, !strconcat(OpcodeStr, "pd"), - OpNode, v2f64x_info>, + OpNode, itins.d, v2f64x_info>, EVEX_V128, VEX_W, EVEX_CD8<64, CD8VF>; defm PDZ256 : avx512_fp14_p<opc, !strconcat(OpcodeStr, "pd"), - OpNode, v4f64x_info>, + OpNode, itins.d, v4f64x_info>, EVEX_V256, VEX_W, EVEX_CD8<64, CD8VF>; } } -defm VRSQRT14 : avx512_fp14_p_vl_all<0x4E, "vrsqrt14", X86frsqrt>; -defm VRCP14 : avx512_fp14_p_vl_all<0x4C, "vrcp14", X86frcp>; +defm VRSQRT14 : avx512_fp14_p_vl_all<0x4E, "vrsqrt14", X86rsqrt14, SSE_RSQRT_P>; +defm VRCP14 : avx512_fp14_p_vl_all<0x4C, "vrcp14", X86rcp14, SSE_RCP_P>; /// avx512_fp28_s rcp28ss, rcp28sd, rsqrt28ss, rsqrt28sd multiclass avx512_fp28_s<bits<8> opc, string OpcodeStr,X86VectorVTInfo _, - SDNode OpNode> { + SDNode OpNode, OpndItins itins> { let ExeDomain = _.ExeDomain in { defm r : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), - (i32 FROUND_CURRENT))>; + (i32 FROUND_CURRENT)), itins.rr>, + Sched<[itins.Sched]>; defm rb : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr, "{sae}, $src2, $src1", "$src1, $src2, {sae}", (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), - (i32 FROUND_NO_EXC))>, EVEX_B; + (i32 FROUND_NO_EXC)), itins.rm>, EVEX_B, + Sched<[itins.Sched]>; defm m : AVX512_maskable_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), - (ins _.RC:$src1, _.ScalarMemOp:$src2), OpcodeStr, + (ins _.RC:$src1, _.IntScalarMemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", - (OpNode (_.VT _.RC:$src1), - (_.VT (scalar_to_vector (_.ScalarLdFrag addr:$src2))), - (i32 FROUND_CURRENT))>; + (OpNode (_.VT _.RC:$src1), _.ScalarIntMemCPat:$src2, + (i32 FROUND_CURRENT)), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } -multiclass avx512_eri_s<bits<8> opc, string OpcodeStr, SDNode OpNode> { - defm SS : avx512_fp28_s<opc, OpcodeStr#"ss", f32x_info, OpNode>, +multiclass avx512_eri_s<bits<8> opc, string OpcodeStr, SDNode OpNode, + SizeItins itins> { + defm SS : avx512_fp28_s<opc, OpcodeStr#"ss", f32x_info, OpNode, itins.s>, EVEX_CD8<32, CD8VT1>; - defm SD : avx512_fp28_s<opc, OpcodeStr#"sd", f64x_info, OpNode>, + defm SD : avx512_fp28_s<opc, OpcodeStr#"sd", f64x_info, OpNode, itins.d>, EVEX_CD8<64, CD8VT1>, VEX_W; } let Predicates = [HasERI] in { - defm VRCP28 : avx512_eri_s<0xCB, "vrcp28", X86rcp28s>, T8PD, EVEX_4V; - defm VRSQRT28 : avx512_eri_s<0xCD, "vrsqrt28", X86rsqrt28s>, T8PD, EVEX_4V; + defm VRCP28 : avx512_eri_s<0xCB, "vrcp28", X86rcp28s, SSE_RCP_S>, + T8PD, EVEX_4V; + defm VRSQRT28 : avx512_eri_s<0xCD, "vrsqrt28", X86rsqrt28s, SSE_RSQRT_S>, + T8PD, EVEX_4V; } -defm VGETEXP : avx512_eri_s<0x43, "vgetexp", X86fgetexpRnds>, T8PD, EVEX_4V; +defm VGETEXP : avx512_eri_s<0x43, "vgetexp", X86fgetexpRnds, SSE_ALU_ITINS_S>, + T8PD, EVEX_4V; /// avx512_fp28_p rcp28ps, rcp28pd, rsqrt28ps, rsqrt28pd multiclass avx512_fp28_p<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - SDNode OpNode> { + SDNode OpNode, OpndItins itins> { let ExeDomain = _.ExeDomain in { defm r : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src), OpcodeStr, "$src", "$src", - (OpNode (_.VT _.RC:$src), (i32 FROUND_CURRENT))>; + (OpNode (_.VT _.RC:$src), (i32 FROUND_CURRENT)), + itins.rr>, Sched<[itins.Sched]>; defm m : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.MemOp:$src), OpcodeStr, "$src", "$src", (OpNode (_.FloatVT (bitconvert (_.LdFrag addr:$src))), - (i32 FROUND_CURRENT))>; + (i32 FROUND_CURRENT)), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm mb : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.ScalarMemOp:$src), OpcodeStr, "${src}"##_.BroadcastStr, "${src}"##_.BroadcastStr, (OpNode (_.FloatVT (X86VBroadcast (_.ScalarLdFrag addr:$src))), - (i32 FROUND_CURRENT))>, EVEX_B; + (i32 FROUND_CURRENT)), itins.rm>, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } multiclass avx512_fp28_p_round<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - SDNode OpNode> { + SDNode OpNode, OpndItins itins> { let ExeDomain = _.ExeDomain in defm rb : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src), OpcodeStr, "{sae}, $src", "$src, {sae}", - (OpNode (_.VT _.RC:$src), (i32 FROUND_NO_EXC))>, EVEX_B; + (OpNode (_.VT _.RC:$src), (i32 FROUND_NO_EXC)), + itins.rr>, EVEX_B, Sched<[itins.Sched]>; } -multiclass avx512_eri<bits<8> opc, string OpcodeStr, SDNode OpNode> { - defm PS : avx512_fp28_p<opc, OpcodeStr#"ps", v16f32_info, OpNode>, - avx512_fp28_p_round<opc, OpcodeStr#"ps", v16f32_info, OpNode>, +multiclass avx512_eri<bits<8> opc, string OpcodeStr, SDNode OpNode, + SizeItins itins> { + defm PS : avx512_fp28_p<opc, OpcodeStr#"ps", v16f32_info, OpNode, itins.s>, + avx512_fp28_p_round<opc, OpcodeStr#"ps", v16f32_info, OpNode, itins.s>, T8PD, EVEX_V512, EVEX_CD8<32, CD8VF>; - defm PD : avx512_fp28_p<opc, OpcodeStr#"pd", v8f64_info, OpNode>, - avx512_fp28_p_round<opc, OpcodeStr#"pd", v8f64_info, OpNode>, + defm PD : avx512_fp28_p<opc, OpcodeStr#"pd", v8f64_info, OpNode, itins.d>, + avx512_fp28_p_round<opc, OpcodeStr#"pd", v8f64_info, OpNode, itins.d>, T8PD, EVEX_V512, VEX_W, EVEX_CD8<64, CD8VF>; } multiclass avx512_fp_unaryop_packed<bits<8> opc, string OpcodeStr, - SDNode OpNode> { + SDNode OpNode, SizeItins itins> { // Define only if AVX512VL feature is present. let Predicates = [HasVLX] in { - defm PSZ128 : avx512_fp28_p<opc, OpcodeStr#"ps", v4f32x_info, OpNode>, + defm PSZ128 : avx512_fp28_p<opc, OpcodeStr#"ps", v4f32x_info, OpNode, itins.s>, EVEX_V128, T8PD, EVEX_CD8<32, CD8VF>; - defm PSZ256 : avx512_fp28_p<opc, OpcodeStr#"ps", v8f32x_info, OpNode>, + defm PSZ256 : avx512_fp28_p<opc, OpcodeStr#"ps", v8f32x_info, OpNode, itins.s>, EVEX_V256, T8PD, EVEX_CD8<32, CD8VF>; - defm PDZ128 : avx512_fp28_p<opc, OpcodeStr#"pd", v2f64x_info, OpNode>, + defm PDZ128 : avx512_fp28_p<opc, OpcodeStr#"pd", v2f64x_info, OpNode, itins.d>, EVEX_V128, VEX_W, T8PD, EVEX_CD8<64, CD8VF>; - defm PDZ256 : avx512_fp28_p<opc, OpcodeStr#"pd", v4f64x_info, OpNode>, + defm PDZ256 : avx512_fp28_p<opc, OpcodeStr#"pd", v4f64x_info, OpNode, itins.d>, EVEX_V256, VEX_W, T8PD, EVEX_CD8<64, CD8VF>; } } let Predicates = [HasERI] in { - defm VRSQRT28 : avx512_eri<0xCC, "vrsqrt28", X86rsqrt28>, EVEX; - defm VRCP28 : avx512_eri<0xCA, "vrcp28", X86rcp28>, EVEX; - defm VEXP2 : avx512_eri<0xC8, "vexp2", X86exp2>, EVEX; + defm VRSQRT28 : avx512_eri<0xCC, "vrsqrt28", X86rsqrt28, SSE_RSQRT_P>, EVEX; + defm VRCP28 : avx512_eri<0xCA, "vrcp28", X86rcp28, SSE_RCP_P>, EVEX; + defm VEXP2 : avx512_eri<0xC8, "vexp2", X86exp2, SSE_ALU_ITINS_P>, EVEX; } -defm VGETEXP : avx512_eri<0x42, "vgetexp", X86fgetexpRnd>, - avx512_fp_unaryop_packed<0x42, "vgetexp", X86fgetexpRnd> , EVEX; +defm VGETEXP : avx512_eri<0x42, "vgetexp", X86fgetexpRnd, SSE_ALU_ITINS_P>, + avx512_fp_unaryop_packed<0x42, "vgetexp", X86fgetexpRnd, + SSE_ALU_ITINS_P>, EVEX; -multiclass avx512_sqrt_packed_round<bits<8> opc, string OpcodeStr, - SDNode OpNodeRnd, X86VectorVTInfo _>{ +multiclass avx512_sqrt_packed_round<bits<8> opc, string OpcodeStr, OpndItins itins, + X86VectorVTInfo _>{ let ExeDomain = _.ExeDomain in defm rb: AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src, AVX512RC:$rc), OpcodeStr, "$rc, $src", "$src, $rc", - (_.VT (OpNodeRnd _.RC:$src, (i32 imm:$rc)))>, - EVEX, EVEX_B, EVEX_RC; + (_.VT (X86fsqrtRnd _.RC:$src, (i32 imm:$rc))), itins.rr>, + EVEX, EVEX_B, EVEX_RC, Sched<[itins.Sched]>; } -multiclass avx512_sqrt_packed<bits<8> opc, string OpcodeStr, - SDNode OpNode, X86VectorVTInfo _>{ +multiclass avx512_sqrt_packed<bits<8> opc, string OpcodeStr, OpndItins itins, + X86VectorVTInfo _>{ let ExeDomain = _.ExeDomain in { defm r: AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src), OpcodeStr, "$src", "$src", - (_.FloatVT (OpNode _.RC:$src))>, EVEX; + (_.FloatVT (fsqrt _.RC:$src)), itins.rr>, EVEX, + Sched<[itins.Sched]>; defm m: AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.MemOp:$src), OpcodeStr, "$src", "$src", - (OpNode (_.FloatVT - (bitconvert (_.LdFrag addr:$src))))>, EVEX; - + (fsqrt (_.FloatVT + (bitconvert (_.LdFrag addr:$src)))), itins.rm>, EVEX, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm mb: AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.ScalarMemOp:$src), OpcodeStr, "${src}"##_.BroadcastStr, "${src}"##_.BroadcastStr, - (OpNode (_.FloatVT - (X86VBroadcast (_.ScalarLdFrag addr:$src))))>, - EVEX, EVEX_B; + (fsqrt (_.FloatVT + (X86VBroadcast (_.ScalarLdFrag addr:$src)))), itins.rm>, + EVEX, EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; } } -multiclass avx512_sqrt_packed_all<bits<8> opc, string OpcodeStr, - SDNode OpNode> { - defm PSZ : avx512_sqrt_packed<opc, !strconcat(OpcodeStr, "ps"), OpNode, - v16f32_info>, +multiclass avx512_sqrt_packed_all<bits<8> opc, string OpcodeStr> { + defm PSZ : avx512_sqrt_packed<opc, !strconcat(OpcodeStr, "ps"), SSE_SQRTPS, v16f32_info>, EVEX_V512, PS, EVEX_CD8<32, CD8VF>; - defm PDZ : avx512_sqrt_packed<opc, !strconcat(OpcodeStr, "pd"), OpNode, - v8f64_info>, + defm PDZ : avx512_sqrt_packed<opc, !strconcat(OpcodeStr, "pd"), SSE_SQRTPD, v8f64_info>, EVEX_V512, VEX_W, PD, EVEX_CD8<64, CD8VF>; // Define only if AVX512VL feature is present. let Predicates = [HasVLX] in { defm PSZ128 : avx512_sqrt_packed<opc, !strconcat(OpcodeStr, "ps"), - OpNode, v4f32x_info>, + SSE_SQRTPS, v4f32x_info>, EVEX_V128, PS, EVEX_CD8<32, CD8VF>; defm PSZ256 : avx512_sqrt_packed<opc, !strconcat(OpcodeStr, "ps"), - OpNode, v8f32x_info>, + SSE_SQRTPS, v8f32x_info>, EVEX_V256, PS, EVEX_CD8<32, CD8VF>; defm PDZ128 : avx512_sqrt_packed<opc, !strconcat(OpcodeStr, "pd"), - OpNode, v2f64x_info>, + SSE_SQRTPD, v2f64x_info>, EVEX_V128, VEX_W, PD, EVEX_CD8<64, CD8VF>; defm PDZ256 : avx512_sqrt_packed<opc, !strconcat(OpcodeStr, "pd"), - OpNode, v4f64x_info>, + SSE_SQRTPD, v4f64x_info>, EVEX_V256, VEX_W, PD, EVEX_CD8<64, CD8VF>; } } -multiclass avx512_sqrt_packed_all_round<bits<8> opc, string OpcodeStr, - SDNode OpNodeRnd> { - defm PSZ : avx512_sqrt_packed_round<opc, !strconcat(OpcodeStr, "ps"), OpNodeRnd, +multiclass avx512_sqrt_packed_all_round<bits<8> opc, string OpcodeStr> { + defm PSZ : avx512_sqrt_packed_round<opc, !strconcat(OpcodeStr, "ps"), SSE_SQRTPS, v16f32_info>, EVEX_V512, PS, EVEX_CD8<32, CD8VF>; - defm PDZ : avx512_sqrt_packed_round<opc, !strconcat(OpcodeStr, "pd"), OpNodeRnd, + defm PDZ : avx512_sqrt_packed_round<opc, !strconcat(OpcodeStr, "pd"), SSE_SQRTPD, v8f64_info>, EVEX_V512, VEX_W, PD, EVEX_CD8<64, CD8VF>; } -multiclass avx512_sqrt_scalar<bits<8> opc, string OpcodeStr,X86VectorVTInfo _, - string SUFF, SDNode OpNode, SDNode OpNodeRnd> { +multiclass avx512_sqrt_scalar<bits<8> opc, string OpcodeStr, OpndItins itins, + X86VectorVTInfo _, string SUFF, Intrinsic Intr> { let ExeDomain = _.ExeDomain in { defm r_Int : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", - (OpNodeRnd (_.VT _.RC:$src1), + (X86fsqrtRnds (_.VT _.RC:$src1), (_.VT _.RC:$src2), - (i32 FROUND_CURRENT))>; + (i32 FROUND_CURRENT)), itins.rr>, + Sched<[itins.Sched]>; defm m_Int : AVX512_maskable_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), - (ins _.RC:$src1, _.ScalarMemOp:$src2), OpcodeStr, + (ins _.RC:$src1, _.IntScalarMemOp:$src2), OpcodeStr, "$src2, $src1", "$src1, $src2", - (OpNodeRnd (_.VT _.RC:$src1), - (_.VT (scalar_to_vector - (_.ScalarLdFrag addr:$src2))), - (i32 FROUND_CURRENT))>; - + (X86fsqrtRnds (_.VT _.RC:$src1), + _.ScalarIntMemCPat:$src2, + (i32 FROUND_CURRENT)), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rb_Int : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2, AVX512RC:$rc), OpcodeStr, "$rc, $src2, $src1", "$src1, $src2, $rc", - (OpNodeRnd (_.VT _.RC:$src1), + (X86fsqrtRnds (_.VT _.RC:$src1), (_.VT _.RC:$src2), - (i32 imm:$rc))>, - EVEX_B, EVEX_RC; + (i32 imm:$rc)), itins.rr>, + EVEX_B, EVEX_RC, Sched<[itins.Sched]>; let isCodeGenOnly = 1, hasSideEffects = 0 in { def r : I<opc, MRMSrcReg, (outs _.FRC:$dst), (ins _.FRC:$src1, _.FRC:$src2), - OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", []>; - + OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [], itins.rr>, + Sched<[itins.Sched]>; let mayLoad = 1 in def m : I<opc, MRMSrcMem, (outs _.FRC:$dst), (ins _.FRC:$src1, _.ScalarMemOp:$src2), - OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", []>; + OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [], itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } - def : Pat<(_.EltVT (OpNode _.FRC:$src)), +let Predicates = [HasAVX512] in { + def : Pat<(_.EltVT (fsqrt _.FRC:$src)), (!cast<Instruction>(NAME#SUFF#Zr) (_.EltVT (IMPLICIT_DEF)), _.FRC:$src)>; - def : Pat<(_.EltVT (OpNode (load addr:$src))), + def : Pat<(Intr VR128X:$src), + (!cast<Instruction>(NAME#SUFF#Zr_Int) VR128X:$src, + VR128X:$src)>; +} + +let Predicates = [HasAVX512, OptForSize] in { + def : Pat<(_.EltVT (fsqrt (load addr:$src))), (!cast<Instruction>(NAME#SUFF#Zm) - (_.EltVT (IMPLICIT_DEF)), addr:$src)>, Requires<[HasAVX512, OptForSize]>; + (_.EltVT (IMPLICIT_DEF)), addr:$src)>; + + def : Pat<(Intr _.ScalarIntMemCPat:$src2), + (!cast<Instruction>(NAME#SUFF#Zm_Int) + (_.VT (IMPLICIT_DEF)), addr:$src2)>; +} + } multiclass avx512_sqrt_scalar_all<bits<8> opc, string OpcodeStr> { - defm SSZ : avx512_sqrt_scalar<opc, OpcodeStr#"ss", f32x_info, "SS", fsqrt, - X86fsqrtRnds>, EVEX_CD8<32, CD8VT1>, EVEX_4V, XS; - defm SDZ : avx512_sqrt_scalar<opc, OpcodeStr#"sd", f64x_info, "SD", fsqrt, - X86fsqrtRnds>, EVEX_CD8<64, CD8VT1>, EVEX_4V, XD, VEX_W; + defm SSZ : avx512_sqrt_scalar<opc, OpcodeStr#"ss", SSE_SQRTPS, f32x_info, "SS", + int_x86_sse_sqrt_ss>, + EVEX_CD8<32, CD8VT1>, EVEX_4V, XS, NotMemoryFoldable; + defm SDZ : avx512_sqrt_scalar<opc, OpcodeStr#"sd", SSE_SQRTPD, f64x_info, "SD", + int_x86_sse2_sqrt_sd>, + EVEX_CD8<64, CD8VT1>, EVEX_4V, XD, VEX_W, + NotMemoryFoldable; } -defm VSQRT : avx512_sqrt_packed_all<0x51, "vsqrt", fsqrt>, - avx512_sqrt_packed_all_round<0x51, "vsqrt", X86fsqrtRnd>; +defm VSQRT : avx512_sqrt_packed_all<0x51, "vsqrt">, + avx512_sqrt_packed_all_round<0x51, "vsqrt">; defm VSQRT : avx512_sqrt_scalar_all<0x51, "vsqrt">, VEX_LIG; -let Predicates = [HasAVX512] in { - def : Pat<(f32 (X86frsqrt FR32X:$src)), - (COPY_TO_REGCLASS (VRSQRT14SSrr (v4f32 (IMPLICIT_DEF)), (COPY_TO_REGCLASS FR32X:$src, VR128X)), VR128X)>; - def : Pat<(f32 (X86frsqrt (load addr:$src))), - (COPY_TO_REGCLASS (VRSQRT14SSrm (v4f32 (IMPLICIT_DEF)), addr:$src), VR128X)>, - Requires<[OptForSize]>; - def : Pat<(f32 (X86frcp FR32X:$src)), - (COPY_TO_REGCLASS (VRCP14SSrr (v4f32 (IMPLICIT_DEF)), (COPY_TO_REGCLASS FR32X:$src, VR128X)), VR128X )>; - def : Pat<(f32 (X86frcp (load addr:$src))), - (COPY_TO_REGCLASS (VRCP14SSrm (v4f32 (IMPLICIT_DEF)), addr:$src), VR128X)>, - Requires<[OptForSize]>; -} - -multiclass -avx512_rndscale_scalar<bits<8> opc, string OpcodeStr, X86VectorVTInfo _> { - +multiclass avx512_rndscale_scalar<bits<8> opc, string OpcodeStr, + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in { - defm r : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), + defm r_Int : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2, i32u8imm:$src3), OpcodeStr, "$src3, $src2, $src1", "$src1, $src2, $src3", (_.VT (X86RndScales (_.VT _.RC:$src1), (_.VT _.RC:$src2), - (i32 imm:$src3), (i32 FROUND_CURRENT)))>; + (i32 imm:$src3))), itins.rr>, + Sched<[itins.Sched]>; - defm rb : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), + defm rb_Int : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2, i32u8imm:$src3), OpcodeStr, "$src3, {sae}, $src2, $src1", "$src1, $src2, {sae}, $src3", - (_.VT (X86RndScales (_.VT _.RC:$src1), (_.VT _.RC:$src2), - (i32 imm:$src3), (i32 FROUND_NO_EXC)))>, EVEX_B; + (_.VT (X86RndScalesRnd (_.VT _.RC:$src1), (_.VT _.RC:$src2), + (i32 imm:$src3), (i32 FROUND_NO_EXC))), itins.rr>, EVEX_B, + Sched<[itins.Sched]>; - defm m : AVX512_maskable_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), - (ins _.RC:$src1, _.ScalarMemOp:$src2, i32u8imm:$src3), + defm m_Int : AVX512_maskable_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), + (ins _.RC:$src1, _.IntScalarMemOp:$src2, i32u8imm:$src3), OpcodeStr, "$src3, $src2, $src1", "$src1, $src2, $src3", - (_.VT (X86RndScales (_.VT _.RC:$src1), - (_.VT (scalar_to_vector (_.ScalarLdFrag addr:$src2))), - (i32 imm:$src3), (i32 FROUND_CURRENT)))>; + (_.VT (X86RndScales _.RC:$src1, + _.ScalarIntMemCPat:$src2, (i32 imm:$src3))), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; + + let isCodeGenOnly = 1, hasSideEffects = 0 in { + def r : I<opc, MRMSrcReg, (outs _.FRC:$dst), + (ins _.FRC:$src1, _.FRC:$src2, i32u8imm:$src3), + OpcodeStr#"\t{$src3, $src2, $src1, $dst|$dst, $src1, $src2, $src3}", + [], itins.rr>, Sched<[itins.Sched]>; + + let mayLoad = 1 in + def m : I<opc, MRMSrcMem, (outs _.FRC:$dst), + (ins _.FRC:$src1, _.ScalarMemOp:$src2, i32u8imm:$src3), + OpcodeStr#"\t{$src3, $src2, $src1, $dst|$dst, $src1, $src2, $src3}", + [], itins.rm>, Sched<[itins.Sched.Folded, ReadAfterLd]>; } + } + let Predicates = [HasAVX512] in { - def : Pat<(ffloor _.FRC:$src), (COPY_TO_REGCLASS - (_.VT (!cast<Instruction>(NAME##r) (_.VT (IMPLICIT_DEF)), - (_.VT (COPY_TO_REGCLASS _.FRC:$src, _.RC)), (i32 0x9))), _.FRC)>; - def : Pat<(fceil _.FRC:$src), (COPY_TO_REGCLASS - (_.VT (!cast<Instruction>(NAME##r) (_.VT (IMPLICIT_DEF)), - (_.VT (COPY_TO_REGCLASS _.FRC:$src, _.RC)), (i32 0xa))), _.FRC)>; - def : Pat<(ftrunc _.FRC:$src), (COPY_TO_REGCLASS - (_.VT (!cast<Instruction>(NAME##r) (_.VT (IMPLICIT_DEF)), - (_.VT (COPY_TO_REGCLASS _.FRC:$src, _.RC)), (i32 0xb))), _.FRC)>; - def : Pat<(frint _.FRC:$src), (COPY_TO_REGCLASS - (_.VT (!cast<Instruction>(NAME##r) (_.VT (IMPLICIT_DEF)), - (_.VT (COPY_TO_REGCLASS _.FRC:$src, _.RC)), (i32 0x4))), _.FRC)>; - def : Pat<(fnearbyint _.FRC:$src), (COPY_TO_REGCLASS - (_.VT (!cast<Instruction>(NAME##r) (_.VT (IMPLICIT_DEF)), - (_.VT (COPY_TO_REGCLASS _.FRC:$src, _.RC)), (i32 0xc))), _.FRC)>; + def : Pat<(ffloor _.FRC:$src), + (_.EltVT (!cast<Instruction>(NAME##r) (_.EltVT (IMPLICIT_DEF)), + _.FRC:$src, (i32 0x9)))>; + def : Pat<(fceil _.FRC:$src), + (_.EltVT (!cast<Instruction>(NAME##r) (_.EltVT (IMPLICIT_DEF)), + _.FRC:$src, (i32 0xa)))>; + def : Pat<(ftrunc _.FRC:$src), + (_.EltVT (!cast<Instruction>(NAME##r) (_.EltVT (IMPLICIT_DEF)), + _.FRC:$src, (i32 0xb)))>; + def : Pat<(frint _.FRC:$src), + (_.EltVT (!cast<Instruction>(NAME##r) (_.EltVT (IMPLICIT_DEF)), + _.FRC:$src, (i32 0x4)))>; + def : Pat<(fnearbyint _.FRC:$src), + (_.EltVT (!cast<Instruction>(NAME##r) (_.EltVT (IMPLICIT_DEF)), + _.FRC:$src, (i32 0xc)))>; + } - def : Pat<(ffloor (_.ScalarLdFrag addr:$src)), (COPY_TO_REGCLASS - (_.VT (!cast<Instruction>(NAME##m) (_.VT (IMPLICIT_DEF)), - addr:$src, (i32 0x9))), _.FRC)>; - def : Pat<(fceil (_.ScalarLdFrag addr:$src)), (COPY_TO_REGCLASS - (_.VT (!cast<Instruction>(NAME##m) (_.VT (IMPLICIT_DEF)), - addr:$src, (i32 0xa))), _.FRC)>; - def : Pat<(ftrunc (_.ScalarLdFrag addr:$src)), (COPY_TO_REGCLASS - (_.VT (!cast<Instruction>(NAME##m) (_.VT (IMPLICIT_DEF)), - addr:$src, (i32 0xb))), _.FRC)>; - def : Pat<(frint (_.ScalarLdFrag addr:$src)), (COPY_TO_REGCLASS - (_.VT (!cast<Instruction>(NAME##m) (_.VT (IMPLICIT_DEF)), - addr:$src, (i32 0x4))), _.FRC)>; - def : Pat<(fnearbyint (_.ScalarLdFrag addr:$src)), (COPY_TO_REGCLASS - (_.VT (!cast<Instruction>(NAME##m) (_.VT (IMPLICIT_DEF)), - addr:$src, (i32 0xc))), _.FRC)>; + let Predicates = [HasAVX512, OptForSize] in { + def : Pat<(ffloor (_.ScalarLdFrag addr:$src)), + (_.EltVT (!cast<Instruction>(NAME##m) (_.EltVT (IMPLICIT_DEF)), + addr:$src, (i32 0x9)))>; + def : Pat<(fceil (_.ScalarLdFrag addr:$src)), + (_.EltVT (!cast<Instruction>(NAME##m) (_.EltVT (IMPLICIT_DEF)), + addr:$src, (i32 0xa)))>; + def : Pat<(ftrunc (_.ScalarLdFrag addr:$src)), + (_.EltVT (!cast<Instruction>(NAME##m) (_.EltVT (IMPLICIT_DEF)), + addr:$src, (i32 0xb)))>; + def : Pat<(frint (_.ScalarLdFrag addr:$src)), + (_.EltVT (!cast<Instruction>(NAME##m) (_.EltVT (IMPLICIT_DEF)), + addr:$src, (i32 0x4)))>; + def : Pat<(fnearbyint (_.ScalarLdFrag addr:$src)), + (_.EltVT (!cast<Instruction>(NAME##m) (_.EltVT (IMPLICIT_DEF)), + addr:$src, (i32 0xc)))>; } } -defm VRNDSCALESS : avx512_rndscale_scalar<0x0A, "vrndscaless", f32x_info>, - AVX512AIi8Base, EVEX_4V, EVEX_CD8<32, CD8VT1>; +defm VRNDSCALESS : avx512_rndscale_scalar<0x0A, "vrndscaless", SSE_ALU_F32S, + f32x_info>, AVX512AIi8Base, EVEX_4V, EVEX_CD8<32, CD8VT1>; -defm VRNDSCALESD : avx512_rndscale_scalar<0x0B, "vrndscalesd", f64x_info>, VEX_W, - AVX512AIi8Base, EVEX_4V, EVEX_CD8<64, CD8VT1>; +defm VRNDSCALESD : avx512_rndscale_scalar<0x0B, "vrndscalesd", SSE_ALU_F64S, + f64x_info>, VEX_W, AVX512AIi8Base, EVEX_4V, + EVEX_CD8<64, CD8VT1>; //------------------------------------------------- // Integer truncate and extend operations //------------------------------------------------- +let Sched = WriteShuffle256 in +def AVX512_EXTEND : OpndItins< + IIC_SSE_PSHUF_RI, IIC_SSE_PSHUF_MI +>; + +let Sched = WriteShuffle256 in +def AVX512_TRUNCATE : OpndItins< + IIC_SSE_PSHUF_RI, IIC_SSE_PSHUF_MI +>; + multiclass avx512_trunc_common<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo SrcInfo, X86VectorVTInfo DestInfo, - X86MemOperand x86memop> { + OpndItins itins, X86VectorVTInfo SrcInfo, + X86VectorVTInfo DestInfo, X86MemOperand x86memop> { let ExeDomain = DestInfo.ExeDomain in defm rr : AVX512_maskable<opc, MRMDestReg, DestInfo, (outs DestInfo.RC:$dst), (ins SrcInfo.RC:$src1), OpcodeStr ,"$src1", "$src1", - (DestInfo.VT (OpNode (SrcInfo.VT SrcInfo.RC:$src1)))>, - EVEX, T8XS; - - // for intrinsic patter match - def : Pat<(DestInfo.VT (X86select DestInfo.KRCWM:$mask, - (DestInfo.VT (OpNode (SrcInfo.VT SrcInfo.RC:$src1))), - undef)), - (!cast<Instruction>(NAME#SrcInfo.ZSuffix##rrkz) DestInfo.KRCWM:$mask , - SrcInfo.RC:$src1)>; - - def : Pat<(DestInfo.VT (X86select DestInfo.KRCWM:$mask, - (DestInfo.VT (OpNode (SrcInfo.VT SrcInfo.RC:$src1))), - DestInfo.ImmAllZerosV)), - (!cast<Instruction>(NAME#SrcInfo.ZSuffix##rrkz) DestInfo.KRCWM:$mask , - SrcInfo.RC:$src1)>; - - def : Pat<(DestInfo.VT (X86select DestInfo.KRCWM:$mask, - (DestInfo.VT (OpNode (SrcInfo.VT SrcInfo.RC:$src1))), - DestInfo.RC:$src0)), - (!cast<Instruction>(NAME#SrcInfo.ZSuffix##rrk) DestInfo.RC:$src0, - DestInfo.KRCWM:$mask , - SrcInfo.RC:$src1)>; + (DestInfo.VT (OpNode (SrcInfo.VT SrcInfo.RC:$src1))), + itins.rr>, EVEX, T8XS, Sched<[itins.Sched]>; let mayStore = 1, mayLoad = 1, hasSideEffects = 0, ExeDomain = DestInfo.ExeDomain in { def mr : AVX512XS8I<opc, MRMDestMem, (outs), (ins x86memop:$dst, SrcInfo.RC:$src), OpcodeStr # "\t{$src, $dst|$dst, $src}", - []>, EVEX; + [], itins.rm>, EVEX, Sched<[itins.Sched.Folded]>; def mrk : AVX512XS8I<opc, MRMDestMem, (outs), (ins x86memop:$dst, SrcInfo.KRCWM:$mask, SrcInfo.RC:$src), OpcodeStr # "\t{$src, $dst {${mask}}|$dst {${mask}}, $src}", - []>, EVEX, EVEX_K; + [], itins.rm>, EVEX, EVEX_K, Sched<[itins.Sched.Folded]>; }//mayStore = 1, mayLoad = 1, hasSideEffects = 0 } @@ -8094,112 +8099,118 @@ multiclass avx512_trunc_mr_lowering<X86VectorVTInfo SrcInfo, } multiclass avx512_trunc<bits<8> opc, string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo VTSrcInfo, X86VectorVTInfo DestInfoZ128, + OpndItins itins, AVX512VLVectorVTInfo VTSrcInfo, X86VectorVTInfo DestInfoZ128, X86VectorVTInfo DestInfoZ256, X86VectorVTInfo DestInfoZ, X86MemOperand x86memopZ128, X86MemOperand x86memopZ256, X86MemOperand x86memopZ, PatFrag truncFrag, PatFrag mtruncFrag, Predicate prd = HasAVX512>{ let Predicates = [HasVLX, prd] in { - defm Z128: avx512_trunc_common<opc, OpcodeStr, OpNode, VTSrcInfo.info128, - DestInfoZ128, x86memopZ128>, + defm Z128: avx512_trunc_common<opc, OpcodeStr, OpNode, itins, + VTSrcInfo.info128, DestInfoZ128, x86memopZ128>, avx512_trunc_mr_lowering<VTSrcInfo.info128, DestInfoZ128, truncFrag, mtruncFrag>, EVEX_V128; - defm Z256: avx512_trunc_common<opc, OpcodeStr, OpNode, VTSrcInfo.info256, - DestInfoZ256, x86memopZ256>, + defm Z256: avx512_trunc_common<opc, OpcodeStr, OpNode, itins, + VTSrcInfo.info256, DestInfoZ256, x86memopZ256>, avx512_trunc_mr_lowering<VTSrcInfo.info256, DestInfoZ256, truncFrag, mtruncFrag>, EVEX_V256; } let Predicates = [prd] in - defm Z: avx512_trunc_common<opc, OpcodeStr, OpNode, VTSrcInfo.info512, - DestInfoZ, x86memopZ>, + defm Z: avx512_trunc_common<opc, OpcodeStr, OpNode, itins, + VTSrcInfo.info512, DestInfoZ, x86memopZ>, avx512_trunc_mr_lowering<VTSrcInfo.info512, DestInfoZ, truncFrag, mtruncFrag>, EVEX_V512; } multiclass avx512_trunc_qb<bits<8> opc, string OpcodeStr, SDNode OpNode, - PatFrag StoreNode, PatFrag MaskedStoreNode> { - defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, avx512vl_i64_info, + OpndItins itins, PatFrag StoreNode, + PatFrag MaskedStoreNode> { + defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, itins, avx512vl_i64_info, v16i8x_info, v16i8x_info, v16i8x_info, i16mem, i32mem, i64mem, StoreNode, MaskedStoreNode>, EVEX_CD8<8, CD8VO>; } multiclass avx512_trunc_qw<bits<8> opc, string OpcodeStr, SDNode OpNode, - PatFrag StoreNode, PatFrag MaskedStoreNode> { - defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, avx512vl_i64_info, + OpndItins itins, PatFrag StoreNode, + PatFrag MaskedStoreNode> { + defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, itins, avx512vl_i64_info, v8i16x_info, v8i16x_info, v8i16x_info, i32mem, i64mem, i128mem, StoreNode, MaskedStoreNode>, EVEX_CD8<16, CD8VQ>; } multiclass avx512_trunc_qd<bits<8> opc, string OpcodeStr, SDNode OpNode, - PatFrag StoreNode, PatFrag MaskedStoreNode> { - defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, avx512vl_i64_info, + OpndItins itins, PatFrag StoreNode, + PatFrag MaskedStoreNode> { + defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, itins, avx512vl_i64_info, v4i32x_info, v4i32x_info, v8i32x_info, i64mem, i128mem, i256mem, StoreNode, MaskedStoreNode>, EVEX_CD8<32, CD8VH>; } multiclass avx512_trunc_db<bits<8> opc, string OpcodeStr, SDNode OpNode, - PatFrag StoreNode, PatFrag MaskedStoreNode> { - defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, avx512vl_i32_info, + OpndItins itins, PatFrag StoreNode, + PatFrag MaskedStoreNode> { + defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, itins, avx512vl_i32_info, v16i8x_info, v16i8x_info, v16i8x_info, i32mem, i64mem, i128mem, StoreNode, MaskedStoreNode>, EVEX_CD8<8, CD8VQ>; } multiclass avx512_trunc_dw<bits<8> opc, string OpcodeStr, SDNode OpNode, - PatFrag StoreNode, PatFrag MaskedStoreNode> { - defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, avx512vl_i32_info, + OpndItins itins, PatFrag StoreNode, + PatFrag MaskedStoreNode> { + defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, itins, avx512vl_i32_info, v8i16x_info, v8i16x_info, v16i16x_info, i64mem, i128mem, i256mem, StoreNode, MaskedStoreNode>, EVEX_CD8<16, CD8VH>; } multiclass avx512_trunc_wb<bits<8> opc, string OpcodeStr, SDNode OpNode, - PatFrag StoreNode, PatFrag MaskedStoreNode> { - defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, avx512vl_i16_info, + OpndItins itins, PatFrag StoreNode, + PatFrag MaskedStoreNode> { + defm NAME: avx512_trunc<opc, OpcodeStr, OpNode, itins, avx512vl_i16_info, v16i8x_info, v16i8x_info, v32i8x_info, i64mem, i128mem, i256mem, StoreNode, MaskedStoreNode, HasBWI>, EVEX_CD8<16, CD8VH>; } -defm VPMOVQB : avx512_trunc_qb<0x32, "vpmovqb", X86vtrunc, +defm VPMOVQB : avx512_trunc_qb<0x32, "vpmovqb", X86vtrunc, AVX512_TRUNCATE, truncstorevi8, masked_truncstorevi8>; -defm VPMOVSQB : avx512_trunc_qb<0x22, "vpmovsqb", X86vtruncs, +defm VPMOVSQB : avx512_trunc_qb<0x22, "vpmovsqb", X86vtruncs, AVX512_TRUNCATE, truncstore_s_vi8, masked_truncstore_s_vi8>; -defm VPMOVUSQB : avx512_trunc_qb<0x12, "vpmovusqb", X86vtruncus, +defm VPMOVUSQB : avx512_trunc_qb<0x12, "vpmovusqb", X86vtruncus, AVX512_TRUNCATE, truncstore_us_vi8, masked_truncstore_us_vi8>; -defm VPMOVQW : avx512_trunc_qw<0x34, "vpmovqw", X86vtrunc, +defm VPMOVQW : avx512_trunc_qw<0x34, "vpmovqw", X86vtrunc, AVX512_TRUNCATE, truncstorevi16, masked_truncstorevi16>; -defm VPMOVSQW : avx512_trunc_qw<0x24, "vpmovsqw", X86vtruncs, +defm VPMOVSQW : avx512_trunc_qw<0x24, "vpmovsqw", X86vtruncs, AVX512_TRUNCATE, truncstore_s_vi16, masked_truncstore_s_vi16>; -defm VPMOVUSQW : avx512_trunc_qw<0x14, "vpmovusqw", X86vtruncus, +defm VPMOVUSQW : avx512_trunc_qw<0x14, "vpmovusqw", X86vtruncus, AVX512_TRUNCATE, truncstore_us_vi16, masked_truncstore_us_vi16>; -defm VPMOVQD : avx512_trunc_qd<0x35, "vpmovqd", X86vtrunc, +defm VPMOVQD : avx512_trunc_qd<0x35, "vpmovqd", X86vtrunc, AVX512_TRUNCATE, truncstorevi32, masked_truncstorevi32>; -defm VPMOVSQD : avx512_trunc_qd<0x25, "vpmovsqd", X86vtruncs, +defm VPMOVSQD : avx512_trunc_qd<0x25, "vpmovsqd", X86vtruncs, AVX512_TRUNCATE, truncstore_s_vi32, masked_truncstore_s_vi32>; -defm VPMOVUSQD : avx512_trunc_qd<0x15, "vpmovusqd", X86vtruncus, +defm VPMOVUSQD : avx512_trunc_qd<0x15, "vpmovusqd", X86vtruncus, AVX512_TRUNCATE, truncstore_us_vi32, masked_truncstore_us_vi32>; -defm VPMOVDB : avx512_trunc_db<0x31, "vpmovdb", X86vtrunc, +defm VPMOVDB : avx512_trunc_db<0x31, "vpmovdb", X86vtrunc, AVX512_TRUNCATE, truncstorevi8, masked_truncstorevi8>; -defm VPMOVSDB : avx512_trunc_db<0x21, "vpmovsdb", X86vtruncs, +defm VPMOVSDB : avx512_trunc_db<0x21, "vpmovsdb", X86vtruncs, AVX512_TRUNCATE, truncstore_s_vi8, masked_truncstore_s_vi8>; -defm VPMOVUSDB : avx512_trunc_db<0x11, "vpmovusdb", X86vtruncus, +defm VPMOVUSDB : avx512_trunc_db<0x11, "vpmovusdb", X86vtruncus, AVX512_TRUNCATE, truncstore_us_vi8, masked_truncstore_us_vi8>; -defm VPMOVDW : avx512_trunc_dw<0x33, "vpmovdw", X86vtrunc, +defm VPMOVDW : avx512_trunc_dw<0x33, "vpmovdw", X86vtrunc, AVX512_TRUNCATE, truncstorevi16, masked_truncstorevi16>; -defm VPMOVSDW : avx512_trunc_dw<0x23, "vpmovsdw", X86vtruncs, +defm VPMOVSDW : avx512_trunc_dw<0x23, "vpmovsdw", X86vtruncs, AVX512_TRUNCATE, truncstore_s_vi16, masked_truncstore_s_vi16>; -defm VPMOVUSDW : avx512_trunc_dw<0x13, "vpmovusdw", X86vtruncus, +defm VPMOVUSDW : avx512_trunc_dw<0x13, "vpmovusdw", X86vtruncus, AVX512_TRUNCATE, truncstore_us_vi16, masked_truncstore_us_vi16>; -defm VPMOVWB : avx512_trunc_wb<0x30, "vpmovwb", X86vtrunc, +defm VPMOVWB : avx512_trunc_wb<0x30, "vpmovwb", X86vtrunc, AVX512_TRUNCATE, truncstorevi8, masked_truncstorevi8>; -defm VPMOVSWB : avx512_trunc_wb<0x20, "vpmovswb", X86vtruncs, +defm VPMOVSWB : avx512_trunc_wb<0x20, "vpmovswb", X86vtruncs, AVX512_TRUNCATE, truncstore_s_vi8, masked_truncstore_s_vi8>; -defm VPMOVUSWB : avx512_trunc_wb<0x10, "vpmovuswb", X86vtruncus, +defm VPMOVUSWB : avx512_trunc_wb<0x10, "vpmovuswb", X86vtruncus, AVX512_TRUNCATE, truncstore_us_vi8, masked_truncstore_us_vi8>; let Predicates = [HasAVX512, NoVLX] in { @@ -8219,191 +8230,151 @@ def: Pat<(v16i8 (X86vtrunc (v16i16 VR256X:$src))), VR256X:$src, sub_ymm))), sub_xmm))>; } -multiclass avx512_extend_common<bits<8> opc, string OpcodeStr, +multiclass avx512_extend_common<bits<8> opc, string OpcodeStr, OpndItins itins, X86VectorVTInfo DestInfo, X86VectorVTInfo SrcInfo, X86MemOperand x86memop, PatFrag LdFrag, SDPatternOperator OpNode>{ let ExeDomain = DestInfo.ExeDomain in { defm rr : AVX512_maskable<opc, MRMSrcReg, DestInfo, (outs DestInfo.RC:$dst), (ins SrcInfo.RC:$src), OpcodeStr ,"$src", "$src", - (DestInfo.VT (OpNode (SrcInfo.VT SrcInfo.RC:$src)))>, - EVEX; + (DestInfo.VT (OpNode (SrcInfo.VT SrcInfo.RC:$src))), itins.rr>, + EVEX, Sched<[itins.Sched]>; defm rm : AVX512_maskable<opc, MRMSrcMem, DestInfo, (outs DestInfo.RC:$dst), (ins x86memop:$src), OpcodeStr ,"$src", "$src", - (DestInfo.VT (LdFrag addr:$src))>, - EVEX; + (DestInfo.VT (LdFrag addr:$src)), itins.rm>, + EVEX, Sched<[itins.Sched.Folded]>; } } multiclass avx512_extend_BW<bits<8> opc, string OpcodeStr, - SDPatternOperator OpNode, SDPatternOperator InVecNode, - string ExtTy,PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi8")> { + SDPatternOperator OpNode, SDPatternOperator InVecNode, string ExtTy, + OpndItins itins, PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi8")> { let Predicates = [HasVLX, HasBWI] in { - defm Z128: avx512_extend_common<opc, OpcodeStr, v8i16x_info, + defm Z128: avx512_extend_common<opc, OpcodeStr, itins, v8i16x_info, v16i8x_info, i64mem, LdFrag, InVecNode>, - EVEX_CD8<8, CD8VH>, T8PD, EVEX_V128; + EVEX_CD8<8, CD8VH>, T8PD, EVEX_V128, VEX_WIG; - defm Z256: avx512_extend_common<opc, OpcodeStr, v16i16x_info, + defm Z256: avx512_extend_common<opc, OpcodeStr, itins, v16i16x_info, v16i8x_info, i128mem, LdFrag, OpNode>, - EVEX_CD8<8, CD8VH>, T8PD, EVEX_V256; + EVEX_CD8<8, CD8VH>, T8PD, EVEX_V256, VEX_WIG; } let Predicates = [HasBWI] in { - defm Z : avx512_extend_common<opc, OpcodeStr, v32i16_info, + defm Z : avx512_extend_common<opc, OpcodeStr, itins, v32i16_info, v32i8x_info, i256mem, LdFrag, OpNode>, - EVEX_CD8<8, CD8VH>, T8PD, EVEX_V512; + EVEX_CD8<8, CD8VH>, T8PD, EVEX_V512, VEX_WIG; } } multiclass avx512_extend_BD<bits<8> opc, string OpcodeStr, - SDPatternOperator OpNode, SDPatternOperator InVecNode, - string ExtTy,PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi8")> { + SDPatternOperator OpNode, SDPatternOperator InVecNode, string ExtTy, + OpndItins itins, PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi8")> { let Predicates = [HasVLX, HasAVX512] in { - defm Z128: avx512_extend_common<opc, OpcodeStr, v4i32x_info, + defm Z128: avx512_extend_common<opc, OpcodeStr, itins, v4i32x_info, v16i8x_info, i32mem, LdFrag, InVecNode>, - EVEX_CD8<8, CD8VQ>, T8PD, EVEX_V128; + EVEX_CD8<8, CD8VQ>, T8PD, EVEX_V128, VEX_WIG; - defm Z256: avx512_extend_common<opc, OpcodeStr, v8i32x_info, + defm Z256: avx512_extend_common<opc, OpcodeStr, itins, v8i32x_info, v16i8x_info, i64mem, LdFrag, OpNode>, - EVEX_CD8<8, CD8VQ>, T8PD, EVEX_V256; + EVEX_CD8<8, CD8VQ>, T8PD, EVEX_V256, VEX_WIG; } let Predicates = [HasAVX512] in { - defm Z : avx512_extend_common<opc, OpcodeStr, v16i32_info, + defm Z : avx512_extend_common<opc, OpcodeStr, itins, v16i32_info, v16i8x_info, i128mem, LdFrag, OpNode>, - EVEX_CD8<8, CD8VQ>, T8PD, EVEX_V512; + EVEX_CD8<8, CD8VQ>, T8PD, EVEX_V512, VEX_WIG; } } multiclass avx512_extend_BQ<bits<8> opc, string OpcodeStr, - SDPatternOperator OpNode, SDPatternOperator InVecNode, - string ExtTy,PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi8")> { + SDPatternOperator OpNode, SDPatternOperator InVecNode, string ExtTy, + OpndItins itins, PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi8")> { let Predicates = [HasVLX, HasAVX512] in { - defm Z128: avx512_extend_common<opc, OpcodeStr, v2i64x_info, + defm Z128: avx512_extend_common<opc, OpcodeStr, itins, v2i64x_info, v16i8x_info, i16mem, LdFrag, InVecNode>, - EVEX_CD8<8, CD8VO>, T8PD, EVEX_V128; + EVEX_CD8<8, CD8VO>, T8PD, EVEX_V128, VEX_WIG; - defm Z256: avx512_extend_common<opc, OpcodeStr, v4i64x_info, + defm Z256: avx512_extend_common<opc, OpcodeStr, itins, v4i64x_info, v16i8x_info, i32mem, LdFrag, OpNode>, - EVEX_CD8<8, CD8VO>, T8PD, EVEX_V256; + EVEX_CD8<8, CD8VO>, T8PD, EVEX_V256, VEX_WIG; } let Predicates = [HasAVX512] in { - defm Z : avx512_extend_common<opc, OpcodeStr, v8i64_info, + defm Z : avx512_extend_common<opc, OpcodeStr, itins, v8i64_info, v16i8x_info, i64mem, LdFrag, OpNode>, - EVEX_CD8<8, CD8VO>, T8PD, EVEX_V512; + EVEX_CD8<8, CD8VO>, T8PD, EVEX_V512, VEX_WIG; } } multiclass avx512_extend_WD<bits<8> opc, string OpcodeStr, - SDPatternOperator OpNode, SDPatternOperator InVecNode, - string ExtTy,PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi16")> { + SDPatternOperator OpNode, SDPatternOperator InVecNode, string ExtTy, + OpndItins itins, PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi16")> { let Predicates = [HasVLX, HasAVX512] in { - defm Z128: avx512_extend_common<opc, OpcodeStr, v4i32x_info, + defm Z128: avx512_extend_common<opc, OpcodeStr, itins, v4i32x_info, v8i16x_info, i64mem, LdFrag, InVecNode>, - EVEX_CD8<16, CD8VH>, T8PD, EVEX_V128; + EVEX_CD8<16, CD8VH>, T8PD, EVEX_V128, VEX_WIG; - defm Z256: avx512_extend_common<opc, OpcodeStr, v8i32x_info, + defm Z256: avx512_extend_common<opc, OpcodeStr, itins, v8i32x_info, v8i16x_info, i128mem, LdFrag, OpNode>, - EVEX_CD8<16, CD8VH>, T8PD, EVEX_V256; + EVEX_CD8<16, CD8VH>, T8PD, EVEX_V256, VEX_WIG; } let Predicates = [HasAVX512] in { - defm Z : avx512_extend_common<opc, OpcodeStr, v16i32_info, + defm Z : avx512_extend_common<opc, OpcodeStr, itins, v16i32_info, v16i16x_info, i256mem, LdFrag, OpNode>, - EVEX_CD8<16, CD8VH>, T8PD, EVEX_V512; + EVEX_CD8<16, CD8VH>, T8PD, EVEX_V512, VEX_WIG; } } multiclass avx512_extend_WQ<bits<8> opc, string OpcodeStr, - SDPatternOperator OpNode, SDPatternOperator InVecNode, - string ExtTy,PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi16")> { + SDPatternOperator OpNode, SDPatternOperator InVecNode, string ExtTy, + OpndItins itins, PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi16")> { let Predicates = [HasVLX, HasAVX512] in { - defm Z128: avx512_extend_common<opc, OpcodeStr, v2i64x_info, + defm Z128: avx512_extend_common<opc, OpcodeStr, itins, v2i64x_info, v8i16x_info, i32mem, LdFrag, InVecNode>, - EVEX_CD8<16, CD8VQ>, T8PD, EVEX_V128; + EVEX_CD8<16, CD8VQ>, T8PD, EVEX_V128, VEX_WIG; - defm Z256: avx512_extend_common<opc, OpcodeStr, v4i64x_info, + defm Z256: avx512_extend_common<opc, OpcodeStr, itins, v4i64x_info, v8i16x_info, i64mem, LdFrag, OpNode>, - EVEX_CD8<16, CD8VQ>, T8PD, EVEX_V256; + EVEX_CD8<16, CD8VQ>, T8PD, EVEX_V256, VEX_WIG; } let Predicates = [HasAVX512] in { - defm Z : avx512_extend_common<opc, OpcodeStr, v8i64_info, + defm Z : avx512_extend_common<opc, OpcodeStr, itins, v8i64_info, v8i16x_info, i128mem, LdFrag, OpNode>, - EVEX_CD8<16, CD8VQ>, T8PD, EVEX_V512; + EVEX_CD8<16, CD8VQ>, T8PD, EVEX_V512, VEX_WIG; } } multiclass avx512_extend_DQ<bits<8> opc, string OpcodeStr, - SDPatternOperator OpNode, SDPatternOperator InVecNode, - string ExtTy,PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi32")> { + SDPatternOperator OpNode, SDPatternOperator InVecNode, string ExtTy, + OpndItins itins, PatFrag LdFrag = !cast<PatFrag>(ExtTy#"extloadvi32")> { let Predicates = [HasVLX, HasAVX512] in { - defm Z128: avx512_extend_common<opc, OpcodeStr, v2i64x_info, + defm Z128: avx512_extend_common<opc, OpcodeStr, itins, v2i64x_info, v4i32x_info, i64mem, LdFrag, InVecNode>, EVEX_CD8<32, CD8VH>, T8PD, EVEX_V128; - defm Z256: avx512_extend_common<opc, OpcodeStr, v4i64x_info, + defm Z256: avx512_extend_common<opc, OpcodeStr, itins, v4i64x_info, v4i32x_info, i128mem, LdFrag, OpNode>, EVEX_CD8<32, CD8VH>, T8PD, EVEX_V256; } let Predicates = [HasAVX512] in { - defm Z : avx512_extend_common<opc, OpcodeStr, v8i64_info, + defm Z : avx512_extend_common<opc, OpcodeStr, itins, v8i64_info, v8i32x_info, i256mem, LdFrag, OpNode>, EVEX_CD8<32, CD8VH>, T8PD, EVEX_V512; } } -defm VPMOVZXBW : avx512_extend_BW<0x30, "vpmovzxbw", X86vzext, zext_invec, "z">; -defm VPMOVZXBD : avx512_extend_BD<0x31, "vpmovzxbd", X86vzext, zext_invec, "z">; -defm VPMOVZXBQ : avx512_extend_BQ<0x32, "vpmovzxbq", X86vzext, zext_invec, "z">; -defm VPMOVZXWD : avx512_extend_WD<0x33, "vpmovzxwd", X86vzext, zext_invec, "z">; -defm VPMOVZXWQ : avx512_extend_WQ<0x34, "vpmovzxwq", X86vzext, zext_invec, "z">; -defm VPMOVZXDQ : avx512_extend_DQ<0x35, "vpmovzxdq", X86vzext, zext_invec, "z">; - -defm VPMOVSXBW: avx512_extend_BW<0x20, "vpmovsxbw", X86vsext, sext_invec, "s">; -defm VPMOVSXBD: avx512_extend_BD<0x21, "vpmovsxbd", X86vsext, sext_invec, "s">; -defm VPMOVSXBQ: avx512_extend_BQ<0x22, "vpmovsxbq", X86vsext, sext_invec, "s">; -defm VPMOVSXWD: avx512_extend_WD<0x23, "vpmovsxwd", X86vsext, sext_invec, "s">; -defm VPMOVSXWQ: avx512_extend_WQ<0x24, "vpmovsxwq", X86vsext, sext_invec, "s">; -defm VPMOVSXDQ: avx512_extend_DQ<0x25, "vpmovsxdq", X86vsext, sext_invec, "s">; +defm VPMOVZXBW : avx512_extend_BW<0x30, "vpmovzxbw", X86vzext, zext_invec, "z", AVX512_EXTEND>; +defm VPMOVZXBD : avx512_extend_BD<0x31, "vpmovzxbd", X86vzext, zext_invec, "z", AVX512_EXTEND>; +defm VPMOVZXBQ : avx512_extend_BQ<0x32, "vpmovzxbq", X86vzext, zext_invec, "z", AVX512_EXTEND>; +defm VPMOVZXWD : avx512_extend_WD<0x33, "vpmovzxwd", X86vzext, zext_invec, "z", AVX512_EXTEND>; +defm VPMOVZXWQ : avx512_extend_WQ<0x34, "vpmovzxwq", X86vzext, zext_invec, "z", AVX512_EXTEND>; +defm VPMOVZXDQ : avx512_extend_DQ<0x35, "vpmovzxdq", X86vzext, zext_invec, "z", AVX512_EXTEND>; -// EXTLOAD patterns, implemented using vpmovz -multiclass avx512_ext_lowering<string InstrStr, X86VectorVTInfo To, - X86VectorVTInfo From, PatFrag LdFrag> { - def : Pat<(To.VT (LdFrag addr:$src)), - (!cast<Instruction>("VPMOVZX"#InstrStr#"rm") addr:$src)>; - def : Pat<(To.VT (vselect To.KRCWM:$mask, (LdFrag addr:$src), To.RC:$src0)), - (!cast<Instruction>("VPMOVZX"#InstrStr#"rmk") To.RC:$src0, - To.KRC:$mask, addr:$src)>; - def : Pat<(To.VT (vselect To.KRCWM:$mask, (LdFrag addr:$src), - To.ImmAllZerosV)), - (!cast<Instruction>("VPMOVZX"#InstrStr#"rmkz") To.KRC:$mask, - addr:$src)>; -} +defm VPMOVSXBW: avx512_extend_BW<0x20, "vpmovsxbw", X86vsext, sext_invec, "s", AVX512_EXTEND>; +defm VPMOVSXBD: avx512_extend_BD<0x21, "vpmovsxbd", X86vsext, sext_invec, "s", AVX512_EXTEND>; +defm VPMOVSXBQ: avx512_extend_BQ<0x22, "vpmovsxbq", X86vsext, sext_invec, "s", AVX512_EXTEND>; +defm VPMOVSXWD: avx512_extend_WD<0x23, "vpmovsxwd", X86vsext, sext_invec, "s", AVX512_EXTEND>; +defm VPMOVSXWQ: avx512_extend_WQ<0x24, "vpmovsxwq", X86vsext, sext_invec, "s", AVX512_EXTEND>; +defm VPMOVSXDQ: avx512_extend_DQ<0x25, "vpmovsxdq", X86vsext, sext_invec, "s", AVX512_EXTEND>; -let Predicates = [HasVLX, HasBWI] in { - defm : avx512_ext_lowering<"BWZ128", v8i16x_info, v16i8x_info, extloadvi8>; - defm : avx512_ext_lowering<"BWZ256", v16i16x_info, v16i8x_info, extloadvi8>; -} -let Predicates = [HasBWI] in { - defm : avx512_ext_lowering<"BWZ", v32i16_info, v32i8x_info, extloadvi8>; -} -let Predicates = [HasVLX, HasAVX512] in { - defm : avx512_ext_lowering<"BDZ128", v4i32x_info, v16i8x_info, extloadvi8>; - defm : avx512_ext_lowering<"BDZ256", v8i32x_info, v16i8x_info, extloadvi8>; - defm : avx512_ext_lowering<"BQZ128", v2i64x_info, v16i8x_info, extloadvi8>; - defm : avx512_ext_lowering<"BQZ256", v4i64x_info, v16i8x_info, extloadvi8>; - defm : avx512_ext_lowering<"WDZ128", v4i32x_info, v8i16x_info, extloadvi16>; - defm : avx512_ext_lowering<"WDZ256", v8i32x_info, v8i16x_info, extloadvi16>; - defm : avx512_ext_lowering<"WQZ128", v2i64x_info, v8i16x_info, extloadvi16>; - defm : avx512_ext_lowering<"WQZ256", v4i64x_info, v8i16x_info, extloadvi16>; - defm : avx512_ext_lowering<"DQZ128", v2i64x_info, v4i32x_info, extloadvi32>; - defm : avx512_ext_lowering<"DQZ256", v4i64x_info, v4i32x_info, extloadvi32>; -} -let Predicates = [HasAVX512] in { - defm : avx512_ext_lowering<"BDZ", v16i32_info, v16i8x_info, extloadvi8>; - defm : avx512_ext_lowering<"BQZ", v8i64_info, v16i8x_info, extloadvi8>; - defm : avx512_ext_lowering<"WDZ", v16i32_info, v16i16x_info, extloadvi16>; - defm : avx512_ext_lowering<"WQZ", v8i64_info, v8i16x_info, extloadvi16>; - defm : avx512_ext_lowering<"DQZ", v8i64_info, v8i32x_info, extloadvi32>; -} multiclass AVX512_pmovx_patterns<string OpcPrefix, SDNode ExtOp, SDNode InVecOp, PatFrag ExtLoad16> { @@ -8552,18 +8523,20 @@ defm : AVX512_pmovx_patterns<"VPMOVZX", X86vzext, zext_invec, loadi16_anyext>; //===----------------------------------------------------------------------===// // GATHER - SCATTER Operations +// FIXME: Improve scheduling of gather/scatter instructions. multiclass avx512_gather<bits<8> opc, string OpcodeStr, X86VectorVTInfo _, - X86MemOperand memop, PatFrag GatherNode> { + X86MemOperand memop, PatFrag GatherNode, + RegisterClass MaskRC = _.KRCWM> { let Constraints = "@earlyclobber $dst, $src1 = $dst, $mask = $mask_wb", ExeDomain = _.ExeDomain in - def rm : AVX5128I<opc, MRMSrcMem, (outs _.RC:$dst, _.KRCWM:$mask_wb), - (ins _.RC:$src1, _.KRCWM:$mask, memop:$src2), + def rm : AVX5128I<opc, MRMSrcMem, (outs _.RC:$dst, MaskRC:$mask_wb), + (ins _.RC:$src1, MaskRC:$mask, memop:$src2), !strconcat(OpcodeStr#_.Suffix, "\t{$src2, ${dst} {${mask}}|${dst} {${mask}}, $src2}"), - [(set _.RC:$dst, _.KRCWM:$mask_wb, - (GatherNode (_.VT _.RC:$src1), _.KRCWM:$mask, + [(set _.RC:$dst, MaskRC:$mask_wb, + (GatherNode (_.VT _.RC:$src1), MaskRC:$mask, vectoraddr:$src2))]>, EVEX, EVEX_K, - EVEX_CD8<_.EltSize, CD8VT1>; + EVEX_CD8<_.EltSize, CD8VT1>, Sched<[WriteLoad]>; } multiclass avx512_gather_q_pd<bits<8> dopc, bits<8> qopc, @@ -8598,7 +8571,8 @@ let Predicates = [HasVLX] in { defm NAME##D##SUFF##Z128: avx512_gather<dopc, OpcodeStr##"d", _.info128, vx128xmem, mgatherv4i32>, EVEX_V128; defm NAME##Q##SUFF##Z128: avx512_gather<qopc, OpcodeStr##"q", _.info128, - vx64xmem, X86mgatherv2i64>, EVEX_V128; + vx64xmem, mgatherv2i64, VK2WM>, + EVEX_V128; } } @@ -8620,7 +8594,8 @@ let mayStore = 1, Constraints = "$mask = $mask_wb", ExeDomain = _.ExeDomain in "\t{$src, ${dst} {${mask}}|${dst} {${mask}}, $src}"), [(set _.KRCWM:$mask_wb, (ScatterNode (_.VT _.RC:$src), _.KRCWM:$mask, vectoraddr:$dst))]>, - EVEX, EVEX_K, EVEX_CD8<_.EltSize, CD8VT1>; + EVEX, EVEX_K, EVEX_CD8<_.EltSize, CD8VT1>, + Sched<[WriteStore]>; } multiclass avx512_scatter_q_pd<bits<8> dopc, bits<8> qopc, @@ -8671,7 +8646,7 @@ multiclass avx512_gather_scatter_prefetch<bits<8> opc, Format F, string OpcodeSt let Predicates = [HasPFI], hasSideEffects = 1 in def m : AVX5128I<opc, F, (outs), (ins KRC:$mask, memop:$src), !strconcat(OpcodeStr, "\t{$src {${mask}}|{${mask}}, $src}"), - []>, EVEX, EVEX_K; + [], IIC_SSE_PREFETCH>, EVEX, EVEX_K, Sched<[WriteLoad]>; } defm VGATHERPF0DPS: avx512_gather_scatter_prefetch<0xC6, MRM1m, "vgatherpf0dps", @@ -8722,20 +8697,11 @@ defm VSCATTERPF1DPD: avx512_gather_scatter_prefetch<0xC6, MRM6m, "vscatterpf1dpd defm VSCATTERPF1QPD: avx512_gather_scatter_prefetch<0xC7, MRM6m, "vscatterpf1qpd", VK8WM, vz512mem>, EVEX_V512, VEX_W, EVEX_CD8<64, CD8VT1>; -// Helper fragments to match sext vXi1 to vXiY. -def v64i1sextv64i8 : PatLeaf<(v64i8 - (X86vsext - (v64i1 (X86pcmpgtm - (bc_v64i8 (v16i32 immAllZerosV)), - VR512:$src))))>; -def v32i1sextv32i16 : PatLeaf<(v32i16 (X86vsrai VR512:$src, (i8 15)))>; -def v16i1sextv16i32 : PatLeaf<(v16i32 (X86vsrai VR512:$src, (i8 31)))>; -def v8i1sextv8i64 : PatLeaf<(v8i64 (X86vsrai VR512:$src, (i8 63)))>; - multiclass cvt_by_vec_width<bits<8> opc, X86VectorVTInfo Vec, string OpcodeStr > { def rr : AVX512XS8I<opc, MRMSrcReg, (outs Vec.RC:$dst), (ins Vec.KRC:$src), !strconcat(OpcodeStr##Vec.Suffix, "\t{$src, $dst|$dst, $src}"), - [(set Vec.RC:$dst, (Vec.VT (X86vsext Vec.KRC:$src)))]>, EVEX; + [(set Vec.RC:$dst, (Vec.VT (X86vsext Vec.KRC:$src)))], + IIC_SSE_MOV_S_RR>, EVEX, Sched<[WriteMove]>; } // Use 512bit version to implement 128/256 bit in case NoVLX. @@ -8773,7 +8739,8 @@ defm VPMOVM2Q : cvt_mask_by_elt_width<0x38, avx512vl_i64_info, "vpmovm2", HasDQI multiclass convert_vector_to_mask_common<bits<8> opc, X86VectorVTInfo _, string OpcodeStr > { def rr : AVX512XS8I<opc, MRMSrcReg, (outs _.KRC:$dst), (ins _.RC:$src), !strconcat(OpcodeStr, "\t{$src, $dst|$dst, $src}"), - [(set _.KRC:$dst, (X86cvt2mask (_.VT _.RC:$src)))]>, EVEX; + [(set _.KRC:$dst, (X86cvt2mask (_.VT _.RC:$src)))], + IIC_SSE_MOV_S_RR>, EVEX, Sched<[WriteMove]>; } // Use 512bit version to implement 128/256 bit in case NoVLX. @@ -8819,27 +8786,39 @@ defm VPMOVQ2M : avx512_convert_vector_to_mask<0x39, "vpmovq2m", // AVX-512 - COMPRESS and EXPAND // +// FIXME: Is there a better scheduler itinerary for VPCOMPRESS/VPEXPAND? +let Sched = WriteShuffle256 in { +def AVX512_COMPRESS : OpndItins< + IIC_SSE_INTALU_P_RR, IIC_SSE_INTALU_P_RM +>; +def AVX512_EXPAND : OpndItins< + IIC_SSE_INTALU_P_RR, IIC_SSE_INTALU_P_RM +>; +} + multiclass compress_by_vec_width_common<bits<8> opc, X86VectorVTInfo _, - string OpcodeStr> { + string OpcodeStr, OpndItins itins> { defm rr : AVX512_maskable<opc, MRMDestReg, _, (outs _.RC:$dst), (ins _.RC:$src1), OpcodeStr, "$src1", "$src1", - (_.VT (X86compress _.RC:$src1))>, AVX5128IBase; + (_.VT (X86compress _.RC:$src1)), itins.rr>, AVX5128IBase, + Sched<[itins.Sched]>; let mayStore = 1, hasSideEffects = 0 in def mr : AVX5128I<opc, MRMDestMem, (outs), (ins _.MemOp:$dst, _.RC:$src), OpcodeStr # "\t{$src, $dst|$dst, $src}", - []>, EVEX_CD8<_.EltSize, CD8VT1>; + []>, EVEX_CD8<_.EltSize, CD8VT1>, + Sched<[itins.Sched.Folded]>; def mrk : AVX5128I<opc, MRMDestMem, (outs), (ins _.MemOp:$dst, _.KRCWM:$mask, _.RC:$src), OpcodeStr # "\t{$src, $dst {${mask}}|$dst {${mask}}, $src}", []>, - EVEX_K, EVEX_CD8<_.EltSize, CD8VT1>; + EVEX_K, EVEX_CD8<_.EltSize, CD8VT1>, + Sched<[itins.Sched.Folded]>; } multiclass compress_by_vec_width_lowering<X86VectorVTInfo _ > { - def : Pat<(X86mCompressingStore addr:$dst, _.KRCWM:$mask, (_.VT _.RC:$src)), (!cast<Instruction>(NAME#_.ZSuffix##mrk) @@ -8847,39 +8826,44 @@ multiclass compress_by_vec_width_lowering<X86VectorVTInfo _ > { } multiclass compress_by_elt_width<bits<8> opc, string OpcodeStr, - AVX512VLVectorVTInfo VTInfo> { - defm Z : compress_by_vec_width_common<opc, VTInfo.info512, OpcodeStr>, + OpndItins itins, + AVX512VLVectorVTInfo VTInfo, + Predicate Pred = HasAVX512> { + let Predicates = [Pred] in + defm Z : compress_by_vec_width_common<opc, VTInfo.info512, OpcodeStr, itins>, compress_by_vec_width_lowering<VTInfo.info512>, EVEX_V512; - let Predicates = [HasVLX] in { - defm Z256 : compress_by_vec_width_common<opc, VTInfo.info256, OpcodeStr>, + let Predicates = [Pred, HasVLX] in { + defm Z256 : compress_by_vec_width_common<opc, VTInfo.info256, OpcodeStr, itins>, compress_by_vec_width_lowering<VTInfo.info256>, EVEX_V256; - defm Z128 : compress_by_vec_width_common<opc, VTInfo.info128, OpcodeStr>, + defm Z128 : compress_by_vec_width_common<opc, VTInfo.info128, OpcodeStr, itins>, compress_by_vec_width_lowering<VTInfo.info128>, EVEX_V128; } } -defm VPCOMPRESSD : compress_by_elt_width <0x8B, "vpcompressd", avx512vl_i32_info>, - EVEX; -defm VPCOMPRESSQ : compress_by_elt_width <0x8B, "vpcompressq", avx512vl_i64_info>, - EVEX, VEX_W; -defm VCOMPRESSPS : compress_by_elt_width <0x8A, "vcompressps", avx512vl_f32_info>, - EVEX; -defm VCOMPRESSPD : compress_by_elt_width <0x8A, "vcompresspd", avx512vl_f64_info>, - EVEX, VEX_W; +defm VPCOMPRESSD : compress_by_elt_width <0x8B, "vpcompressd", AVX512_COMPRESS, + avx512vl_i32_info>, EVEX; +defm VPCOMPRESSQ : compress_by_elt_width <0x8B, "vpcompressq", AVX512_COMPRESS, + avx512vl_i64_info>, EVEX, VEX_W; +defm VCOMPRESSPS : compress_by_elt_width <0x8A, "vcompressps", AVX512_COMPRESS, + avx512vl_f32_info>, EVEX; +defm VCOMPRESSPD : compress_by_elt_width <0x8A, "vcompresspd", AVX512_COMPRESS, + avx512vl_f64_info>, EVEX, VEX_W; // expand multiclass expand_by_vec_width<bits<8> opc, X86VectorVTInfo _, - string OpcodeStr> { + string OpcodeStr, OpndItins itins> { defm rr : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1), OpcodeStr, "$src1", "$src1", - (_.VT (X86expand _.RC:$src1))>, AVX5128IBase; + (_.VT (X86expand _.RC:$src1)), itins.rr>, AVX5128IBase, + Sched<[itins.Sched]>; defm rm : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.MemOp:$src1), OpcodeStr, "$src1", "$src1", (_.VT (X86expand (_.VT (bitconvert - (_.LdFrag addr:$src1)))))>, - AVX5128IBase, EVEX_CD8<_.EltSize, CD8VT1>; + (_.LdFrag addr:$src1))))), itins.rm>, + AVX5128IBase, EVEX_CD8<_.EltSize, CD8VT1>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass expand_by_vec_width_lowering<X86VectorVTInfo _ > { @@ -8895,59 +8879,62 @@ multiclass expand_by_vec_width_lowering<X86VectorVTInfo _ > { } multiclass expand_by_elt_width<bits<8> opc, string OpcodeStr, - AVX512VLVectorVTInfo VTInfo> { - defm Z : expand_by_vec_width<opc, VTInfo.info512, OpcodeStr>, + OpndItins itins, + AVX512VLVectorVTInfo VTInfo, + Predicate Pred = HasAVX512> { + let Predicates = [Pred] in + defm Z : expand_by_vec_width<opc, VTInfo.info512, OpcodeStr, itins>, expand_by_vec_width_lowering<VTInfo.info512>, EVEX_V512; - let Predicates = [HasVLX] in { - defm Z256 : expand_by_vec_width<opc, VTInfo.info256, OpcodeStr>, + let Predicates = [Pred, HasVLX] in { + defm Z256 : expand_by_vec_width<opc, VTInfo.info256, OpcodeStr, itins>, expand_by_vec_width_lowering<VTInfo.info256>, EVEX_V256; - defm Z128 : expand_by_vec_width<opc, VTInfo.info128, OpcodeStr>, + defm Z128 : expand_by_vec_width<opc, VTInfo.info128, OpcodeStr, itins>, expand_by_vec_width_lowering<VTInfo.info128>, EVEX_V128; } } -defm VPEXPANDD : expand_by_elt_width <0x89, "vpexpandd", avx512vl_i32_info>, - EVEX; -defm VPEXPANDQ : expand_by_elt_width <0x89, "vpexpandq", avx512vl_i64_info>, - EVEX, VEX_W; -defm VEXPANDPS : expand_by_elt_width <0x88, "vexpandps", avx512vl_f32_info>, - EVEX; -defm VEXPANDPD : expand_by_elt_width <0x88, "vexpandpd", avx512vl_f64_info>, - EVEX, VEX_W; +defm VPEXPANDD : expand_by_elt_width <0x89, "vpexpandd", AVX512_EXPAND, + avx512vl_i32_info>, EVEX; +defm VPEXPANDQ : expand_by_elt_width <0x89, "vpexpandq", AVX512_EXPAND, + avx512vl_i64_info>, EVEX, VEX_W; +defm VEXPANDPS : expand_by_elt_width <0x88, "vexpandps", AVX512_EXPAND, + avx512vl_f32_info>, EVEX; +defm VEXPANDPD : expand_by_elt_width <0x88, "vexpandpd", AVX512_EXPAND, + avx512vl_f64_info>, EVEX, VEX_W; //handle instruction reg_vec1 = op(reg_vec,imm) // op(mem_vec,imm) // op(broadcast(eltVt),imm) //all instruction created with FROUND_CURRENT multiclass avx512_unary_fp_packed_imm<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _>{ + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in { defm rri : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix, "$src2, $src1", "$src1, $src2", (OpNode (_.VT _.RC:$src1), - (i32 imm:$src2), - (i32 FROUND_CURRENT))>; + (i32 imm:$src2)), itins.rr>, Sched<[itins.Sched]>; defm rmi : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.MemOp:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix, "$src2, $src1", "$src1, $src2", (OpNode (_.VT (bitconvert (_.LdFrag addr:$src1))), - (i32 imm:$src2), - (i32 FROUND_CURRENT))>; + (i32 imm:$src2)), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmbi : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.ScalarMemOp:$src1, i32u8imm:$src2), OpcodeStr##_.Suffix, "$src2, ${src1}"##_.BroadcastStr, "${src1}"##_.BroadcastStr##", $src2", (OpNode (_.VT (X86VBroadcast(_.ScalarLdFrag addr:$src1))), - (i32 imm:$src2), - (i32 FROUND_CURRENT))>, EVEX_B; + (i32 imm:$src2)), itins.rm>, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } //handle instruction reg_vec1 = op(reg_vec2,reg_vec3,imm),{sae} multiclass avx512_unary_fp_sae_packed_imm<bits<8> opc, string OpcodeStr, - SDNode OpNode, X86VectorVTInfo _>{ + SDNode OpNode, OpndItins itins, + X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in defm rrib : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, i32u8imm:$src2), @@ -8955,21 +8942,24 @@ multiclass avx512_unary_fp_sae_packed_imm<bits<8> opc, string OpcodeStr, "$src1, {sae}, $src2", (OpNode (_.VT _.RC:$src1), (i32 imm:$src2), - (i32 FROUND_NO_EXC))>, EVEX_B; + (i32 FROUND_NO_EXC)), itins.rr>, + EVEX_B, Sched<[itins.Sched]>; } multiclass avx512_common_unary_fp_sae_packed_imm<string OpcodeStr, - AVX512VLVectorVTInfo _, bits<8> opc, SDNode OpNode, Predicate prd>{ + AVX512VLVectorVTInfo _, bits<8> opc, SDNode OpNode, + SDNode OpNodeRnd, OpndItins itins, Predicate prd>{ let Predicates = [prd] in { - defm Z : avx512_unary_fp_packed_imm<opc, OpcodeStr, OpNode, _.info512>, - avx512_unary_fp_sae_packed_imm<opc, OpcodeStr, OpNode, _.info512>, - EVEX_V512; + defm Z : avx512_unary_fp_packed_imm<opc, OpcodeStr, OpNode, itins, + _.info512>, + avx512_unary_fp_sae_packed_imm<opc, OpcodeStr, OpNodeRnd, + itins, _.info512>, EVEX_V512; } let Predicates = [prd, HasVLX] in { - defm Z128 : avx512_unary_fp_packed_imm<opc, OpcodeStr, OpNode, _.info128>, - EVEX_V128; - defm Z256 : avx512_unary_fp_packed_imm<opc, OpcodeStr, OpNode, _.info256>, - EVEX_V256; + defm Z128 : avx512_unary_fp_packed_imm<opc, OpcodeStr, OpNode, itins, + _.info128>, EVEX_V128; + defm Z256 : avx512_unary_fp_packed_imm<opc, OpcodeStr, OpNode, itins, + _.info256>, EVEX_V256; } } @@ -8978,51 +8968,54 @@ multiclass avx512_common_unary_fp_sae_packed_imm<string OpcodeStr, // op(reg_vec2,broadcast(eltVt),imm) //all instruction created with FROUND_CURRENT multiclass avx512_fp_packed_imm<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _>{ + OpndItins itins, X86VectorVTInfo _>{ let ExeDomain = _.ExeDomain in { defm rri : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2, i32u8imm:$src3), OpcodeStr, "$src3, $src2, $src1", "$src1, $src2, $src3", (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), - (i32 imm:$src3), - (i32 FROUND_CURRENT))>; + (i32 imm:$src3)), itins.rr>, + Sched<[itins.Sched]>; defm rmi : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.MemOp:$src2, i32u8imm:$src3), OpcodeStr, "$src3, $src2, $src1", "$src1, $src2, $src3", (OpNode (_.VT _.RC:$src1), (_.VT (bitconvert (_.LdFrag addr:$src2))), - (i32 imm:$src3), - (i32 FROUND_CURRENT))>; + (i32 imm:$src3)), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmbi : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2, i32u8imm:$src3), OpcodeStr, "$src3, ${src2}"##_.BroadcastStr##", $src1", "$src1, ${src2}"##_.BroadcastStr##", $src3", (OpNode (_.VT _.RC:$src1), (_.VT (X86VBroadcast(_.ScalarLdFrag addr:$src2))), - (i32 imm:$src3), - (i32 FROUND_CURRENT))>, EVEX_B; + (i32 imm:$src3)), itins.rm>, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } //handle instruction reg_vec1 = op(reg_vec2,reg_vec3,imm) // op(reg_vec2,mem_vec,imm) multiclass avx512_3Op_rm_imm8<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo DestInfo, X86VectorVTInfo SrcInfo>{ + OpndItins itins, X86VectorVTInfo DestInfo, + X86VectorVTInfo SrcInfo>{ let ExeDomain = DestInfo.ExeDomain in { defm rri : AVX512_maskable<opc, MRMSrcReg, DestInfo, (outs DestInfo.RC:$dst), (ins SrcInfo.RC:$src1, SrcInfo.RC:$src2, u8imm:$src3), OpcodeStr, "$src3, $src2, $src1", "$src1, $src2, $src3", (DestInfo.VT (OpNode (SrcInfo.VT SrcInfo.RC:$src1), (SrcInfo.VT SrcInfo.RC:$src2), - (i8 imm:$src3)))>; + (i8 imm:$src3))), itins.rr>, + Sched<[itins.Sched]>; defm rmi : AVX512_maskable<opc, MRMSrcMem, DestInfo, (outs DestInfo.RC:$dst), (ins SrcInfo.RC:$src1, SrcInfo.MemOp:$src2, u8imm:$src3), OpcodeStr, "$src3, $src2, $src1", "$src1, $src2, $src3", (DestInfo.VT (OpNode (SrcInfo.VT SrcInfo.RC:$src1), (SrcInfo.VT (bitconvert (SrcInfo.LdFrag addr:$src2))), - (i8 imm:$src3)))>; + (i8 imm:$src3))), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } @@ -9030,8 +9023,8 @@ multiclass avx512_3Op_rm_imm8<bits<8> opc, string OpcodeStr, SDNode OpNode, // op(reg_vec2,mem_vec,imm) // op(reg_vec2,broadcast(eltVt),imm) multiclass avx512_3Op_imm8<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _>: - avx512_3Op_rm_imm8<opc, OpcodeStr, OpNode, _, _>{ + OpndItins itins, X86VectorVTInfo _>: + avx512_3Op_rm_imm8<opc, OpcodeStr, OpNode, itins, _, _>{ let ExeDomain = _.ExeDomain in defm rmbi : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), @@ -9040,36 +9033,37 @@ multiclass avx512_3Op_imm8<bits<8> opc, string OpcodeStr, SDNode OpNode, "$src1, ${src2}"##_.BroadcastStr##", $src3", (OpNode (_.VT _.RC:$src1), (_.VT (X86VBroadcast(_.ScalarLdFrag addr:$src2))), - (i8 imm:$src3))>, EVEX_B; + (i8 imm:$src3)), itins.rm>, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } //handle scalar instruction reg_vec1 = op(reg_vec2,reg_vec3,imm) // op(reg_vec2,mem_scalar,imm) -//all instruction created with FROUND_CURRENT multiclass avx512_fp_scalar_imm<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in { defm rri : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2, i32u8imm:$src3), OpcodeStr, "$src3, $src2, $src1", "$src1, $src2, $src3", (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), - (i32 imm:$src3), - (i32 FROUND_CURRENT))>; + (i32 imm:$src3)), itins.rr>, + Sched<[itins.Sched]>; defm rmi : AVX512_maskable_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src1, _.ScalarMemOp:$src2, i32u8imm:$src3), OpcodeStr, "$src3, $src2, $src1", "$src1, $src2, $src3", (OpNode (_.VT _.RC:$src1), (_.VT (scalar_to_vector (_.ScalarLdFrag addr:$src2))), - (i32 imm:$src3), - (i32 FROUND_CURRENT))>; + (i32 imm:$src3)), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } //handle instruction reg_vec1 = op(reg_vec2,reg_vec3,imm),{sae} multiclass avx512_fp_sae_packed_imm<bits<8> opc, string OpcodeStr, - SDNode OpNode, X86VectorVTInfo _>{ + SDNode OpNode, OpndItins itins, + X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in defm rrib : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2, i32u8imm:$src3), @@ -9078,11 +9072,13 @@ multiclass avx512_fp_sae_packed_imm<bits<8> opc, string OpcodeStr, (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), (i32 imm:$src3), - (i32 FROUND_NO_EXC))>, EVEX_B; + (i32 FROUND_NO_EXC)), itins.rr>, + EVEX_B, Sched<[itins.Sched]>; } + //handle scalar instruction reg_vec1 = op(reg_vec2,reg_vec3,imm),{sae} -multiclass avx512_fp_sae_scalar_imm<bits<8> opc, string OpcodeStr, - SDNode OpNode, X86VectorVTInfo _> { +multiclass avx512_fp_sae_scalar_imm<bits<8> opc, string OpcodeStr, SDNode OpNode, + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in defm NAME#rrib : AVX512_maskable_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1, _.RC:$src2, i32u8imm:$src3), @@ -9091,113 +9087,114 @@ multiclass avx512_fp_sae_scalar_imm<bits<8> opc, string OpcodeStr, (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), (i32 imm:$src3), - (i32 FROUND_NO_EXC))>, EVEX_B; + (i32 FROUND_NO_EXC)), itins.rr>, + EVEX_B, Sched<[itins.Sched]>; } multiclass avx512_common_fp_sae_packed_imm<string OpcodeStr, - AVX512VLVectorVTInfo _, bits<8> opc, SDNode OpNode, Predicate prd>{ + AVX512VLVectorVTInfo _, bits<8> opc, SDNode OpNode, + SDNode OpNodeRnd, OpndItins itins, Predicate prd>{ let Predicates = [prd] in { - defm Z : avx512_fp_packed_imm<opc, OpcodeStr, OpNode, _.info512>, - avx512_fp_sae_packed_imm<opc, OpcodeStr, OpNode, _.info512>, + defm Z : avx512_fp_packed_imm<opc, OpcodeStr, OpNode, itins, _.info512>, + avx512_fp_sae_packed_imm<opc, OpcodeStr, OpNodeRnd, itins, _.info512>, EVEX_V512; } let Predicates = [prd, HasVLX] in { - defm Z128 : avx512_fp_packed_imm<opc, OpcodeStr, OpNode, _.info128>, + defm Z128 : avx512_fp_packed_imm<opc, OpcodeStr, OpNode, itins, _.info128>, EVEX_V128; - defm Z256 : avx512_fp_packed_imm<opc, OpcodeStr, OpNode, _.info256>, + defm Z256 : avx512_fp_packed_imm<opc, OpcodeStr, OpNode, itins, _.info256>, EVEX_V256; } } multiclass avx512_common_3Op_rm_imm8<bits<8> opc, SDNode OpNode, string OpStr, - AVX512VLVectorVTInfo DestInfo, AVX512VLVectorVTInfo SrcInfo>{ - let Predicates = [HasBWI] in { - defm Z : avx512_3Op_rm_imm8<opc, OpStr, OpNode, DestInfo.info512, + OpndItins itins, AVX512VLVectorVTInfo DestInfo, + AVX512VLVectorVTInfo SrcInfo, Predicate Pred = HasBWI> { + let Predicates = [Pred] in { + defm Z : avx512_3Op_rm_imm8<opc, OpStr, OpNode, itins, DestInfo.info512, SrcInfo.info512>, EVEX_V512, AVX512AIi8Base, EVEX_4V; } - let Predicates = [HasBWI, HasVLX] in { - defm Z128 : avx512_3Op_rm_imm8<opc, OpStr, OpNode, DestInfo.info128, + let Predicates = [Pred, HasVLX] in { + defm Z128 : avx512_3Op_rm_imm8<opc, OpStr, OpNode, itins, DestInfo.info128, SrcInfo.info128>, EVEX_V128, AVX512AIi8Base, EVEX_4V; - defm Z256 : avx512_3Op_rm_imm8<opc, OpStr, OpNode, DestInfo.info256, + defm Z256 : avx512_3Op_rm_imm8<opc, OpStr, OpNode, itins, DestInfo.info256, SrcInfo.info256>, EVEX_V256, AVX512AIi8Base, EVEX_4V; } } multiclass avx512_common_3Op_imm8<string OpcodeStr, AVX512VLVectorVTInfo _, - bits<8> opc, SDNode OpNode>{ - let Predicates = [HasAVX512] in { - defm Z : avx512_3Op_imm8<opc, OpcodeStr, OpNode, _.info512>, EVEX_V512; + bits<8> opc, SDNode OpNode, OpndItins itins, + Predicate Pred = HasAVX512> { + let Predicates = [Pred] in { + defm Z : avx512_3Op_imm8<opc, OpcodeStr, OpNode, itins, _.info512>, EVEX_V512; } - let Predicates = [HasAVX512, HasVLX] in { - defm Z128 : avx512_3Op_imm8<opc, OpcodeStr, OpNode, _.info128>, EVEX_V128; - defm Z256 : avx512_3Op_imm8<opc, OpcodeStr, OpNode, _.info256>, EVEX_V256; + let Predicates = [Pred, HasVLX] in { + defm Z128 : avx512_3Op_imm8<opc, OpcodeStr, OpNode, itins, _.info128>, EVEX_V128; + defm Z256 : avx512_3Op_imm8<opc, OpcodeStr, OpNode, itins, _.info256>, EVEX_V256; } } multiclass avx512_common_fp_sae_scalar_imm<string OpcodeStr, - X86VectorVTInfo _, bits<8> opc, SDNode OpNode, Predicate prd>{ + X86VectorVTInfo _, bits<8> opc, SDNode OpNode, + SDNode OpNodeRnd, OpndItins itins, Predicate prd>{ let Predicates = [prd] in { - defm Z128 : avx512_fp_scalar_imm<opc, OpcodeStr, OpNode, _>, - avx512_fp_sae_scalar_imm<opc, OpcodeStr, OpNode, _>; + defm Z128 : avx512_fp_scalar_imm<opc, OpcodeStr, OpNode, itins, _>, + avx512_fp_sae_scalar_imm<opc, OpcodeStr, OpNodeRnd, itins, _>; } } multiclass avx512_common_unary_fp_sae_packed_imm_all<string OpcodeStr, - bits<8> opcPs, bits<8> opcPd, SDNode OpNode, Predicate prd>{ + bits<8> opcPs, bits<8> opcPd, SDNode OpNode, + SDNode OpNodeRnd, SizeItins itins, Predicate prd>{ defm PS : avx512_common_unary_fp_sae_packed_imm<OpcodeStr, avx512vl_f32_info, - opcPs, OpNode, prd>, EVEX_CD8<32, CD8VF>; + opcPs, OpNode, OpNodeRnd, itins.s, prd>, + EVEX_CD8<32, CD8VF>; defm PD : avx512_common_unary_fp_sae_packed_imm<OpcodeStr, avx512vl_f64_info, - opcPd, OpNode, prd>, EVEX_CD8<64, CD8VF>, VEX_W; + opcPd, OpNode, OpNodeRnd, itins.d, prd>, + EVEX_CD8<64, CD8VF>, VEX_W; } - defm VREDUCE : avx512_common_unary_fp_sae_packed_imm_all<"vreduce", 0x56, 0x56, - X86VReduce, HasDQI>, AVX512AIi8Base, EVEX; + X86VReduce, X86VReduceRnd, SSE_ALU_ITINS_P, HasDQI>, + AVX512AIi8Base, EVEX; defm VRNDSCALE : avx512_common_unary_fp_sae_packed_imm_all<"vrndscale", 0x08, 0x09, - X86VRndScale, HasAVX512>, AVX512AIi8Base, EVEX; + X86VRndScale, X86VRndScaleRnd, SSE_ALU_ITINS_P, HasAVX512>, + AVX512AIi8Base, EVEX; defm VGETMANT : avx512_common_unary_fp_sae_packed_imm_all<"vgetmant", 0x26, 0x26, - X86VGetMant, HasAVX512>, AVX512AIi8Base, EVEX; - + X86VGetMant, X86VGetMantRnd, SSE_ALU_ITINS_P, HasAVX512>, + AVX512AIi8Base, EVEX; defm VRANGEPD : avx512_common_fp_sae_packed_imm<"vrangepd", avx512vl_f64_info, - 0x50, X86VRange, HasDQI>, + 0x50, X86VRange, X86VRangeRnd, + SSE_ALU_F64P, HasDQI>, AVX512AIi8Base, EVEX_4V, EVEX_CD8<64, CD8VF>, VEX_W; defm VRANGEPS : avx512_common_fp_sae_packed_imm<"vrangeps", avx512vl_f32_info, - 0x50, X86VRange, HasDQI>, + 0x50, X86VRange, X86VRangeRnd, + SSE_ALU_F32P, HasDQI>, AVX512AIi8Base, EVEX_4V, EVEX_CD8<32, CD8VF>; -defm VRANGESD: avx512_common_fp_sae_scalar_imm<"vrangesd", f64x_info, - 0x51, X86VRange, HasDQI>, +defm VRANGESD: avx512_common_fp_sae_scalar_imm<"vrangesd", + f64x_info, 0x51, X86Ranges, X86RangesRnd, SSE_ALU_F64S, HasDQI>, AVX512AIi8Base, VEX_LIG, EVEX_4V, EVEX_CD8<64, CD8VT1>, VEX_W; defm VRANGESS: avx512_common_fp_sae_scalar_imm<"vrangess", f32x_info, - 0x51, X86VRange, HasDQI>, + 0x51, X86Ranges, X86RangesRnd, SSE_ALU_F32S, HasDQI>, AVX512AIi8Base, VEX_LIG, EVEX_4V, EVEX_CD8<32, CD8VT1>; defm VREDUCESD: avx512_common_fp_sae_scalar_imm<"vreducesd", f64x_info, - 0x57, X86Reduces, HasDQI>, + 0x57, X86Reduces, X86ReducesRnd, SSE_ALU_F64S, HasDQI>, AVX512AIi8Base, VEX_LIG, EVEX_4V, EVEX_CD8<64, CD8VT1>, VEX_W; defm VREDUCESS: avx512_common_fp_sae_scalar_imm<"vreducess", f32x_info, - 0x57, X86Reduces, HasDQI>, + 0x57, X86Reduces, X86ReducesRnd, SSE_ALU_F32S, HasDQI>, AVX512AIi8Base, VEX_LIG, EVEX_4V, EVEX_CD8<32, CD8VT1>; defm VGETMANTSD: avx512_common_fp_sae_scalar_imm<"vgetmantsd", f64x_info, - 0x27, X86GetMants, HasAVX512>, + 0x27, X86GetMants, X86GetMantsRnd, SSE_ALU_F64S, HasAVX512>, AVX512AIi8Base, VEX_LIG, EVEX_4V, EVEX_CD8<64, CD8VT1>, VEX_W; defm VGETMANTSS: avx512_common_fp_sae_scalar_imm<"vgetmantss", f32x_info, - 0x27, X86GetMants, HasAVX512>, + 0x27, X86GetMants, X86GetMantsRnd, SSE_ALU_F32S, HasAVX512>, AVX512AIi8Base, VEX_LIG, EVEX_4V, EVEX_CD8<32, CD8VT1>; -multiclass avx512_shuff_packed_128<string OpcodeStr, AVX512VLVectorVTInfo _, - bits<8> opc, SDNode OpNode = X86Shuf128>{ - let Predicates = [HasAVX512] in { - defm Z : avx512_3Op_imm8<opc, OpcodeStr, OpNode, _.info512>, EVEX_V512; - - } - let Predicates = [HasAVX512, HasVLX] in { - defm Z256 : avx512_3Op_imm8<opc, OpcodeStr, OpNode, _.info256>, EVEX_V256; - } -} let Predicates = [HasAVX512] in { def : Pat<(v16f32 (ffloor VR512:$src)), (VRNDSCALEPSZrri VR512:$src, (i32 0x9))>; @@ -9222,14 +9219,71 @@ def : Pat<(v8f64 (ftrunc VR512:$src)), (VRNDSCALEPDZrri VR512:$src, (i32 0xB))>; } -defm VSHUFF32X4 : avx512_shuff_packed_128<"vshuff32x4",avx512vl_f32_info, 0x23>, - AVX512AIi8Base, EVEX_4V, EVEX_CD8<32, CD8VF>; -defm VSHUFF64X2 : avx512_shuff_packed_128<"vshuff64x2",avx512vl_f64_info, 0x23>, - AVX512AIi8Base, EVEX_4V, EVEX_CD8<64, CD8VF>, VEX_W; -defm VSHUFI32X4 : avx512_shuff_packed_128<"vshufi32x4",avx512vl_i32_info, 0x43>, - AVX512AIi8Base, EVEX_4V, EVEX_CD8<32, CD8VF>; -defm VSHUFI64X2 : avx512_shuff_packed_128<"vshufi64x2",avx512vl_i64_info, 0x43>, - AVX512AIi8Base, EVEX_4V, EVEX_CD8<64, CD8VF>, VEX_W; +let Predicates = [HasVLX] in { +def : Pat<(v4f32 (ffloor VR128X:$src)), + (VRNDSCALEPSZ128rri VR128X:$src, (i32 0x9))>; +def : Pat<(v4f32 (fnearbyint VR128X:$src)), + (VRNDSCALEPSZ128rri VR128X:$src, (i32 0xC))>; +def : Pat<(v4f32 (fceil VR128X:$src)), + (VRNDSCALEPSZ128rri VR128X:$src, (i32 0xA))>; +def : Pat<(v4f32 (frint VR128X:$src)), + (VRNDSCALEPSZ128rri VR128X:$src, (i32 0x4))>; +def : Pat<(v4f32 (ftrunc VR128X:$src)), + (VRNDSCALEPSZ128rri VR128X:$src, (i32 0xB))>; + +def : Pat<(v2f64 (ffloor VR128X:$src)), + (VRNDSCALEPDZ128rri VR128X:$src, (i32 0x9))>; +def : Pat<(v2f64 (fnearbyint VR128X:$src)), + (VRNDSCALEPDZ128rri VR128X:$src, (i32 0xC))>; +def : Pat<(v2f64 (fceil VR128X:$src)), + (VRNDSCALEPDZ128rri VR128X:$src, (i32 0xA))>; +def : Pat<(v2f64 (frint VR128X:$src)), + (VRNDSCALEPDZ128rri VR128X:$src, (i32 0x4))>; +def : Pat<(v2f64 (ftrunc VR128X:$src)), + (VRNDSCALEPDZ128rri VR128X:$src, (i32 0xB))>; + +def : Pat<(v8f32 (ffloor VR256X:$src)), + (VRNDSCALEPSZ256rri VR256X:$src, (i32 0x9))>; +def : Pat<(v8f32 (fnearbyint VR256X:$src)), + (VRNDSCALEPSZ256rri VR256X:$src, (i32 0xC))>; +def : Pat<(v8f32 (fceil VR256X:$src)), + (VRNDSCALEPSZ256rri VR256X:$src, (i32 0xA))>; +def : Pat<(v8f32 (frint VR256X:$src)), + (VRNDSCALEPSZ256rri VR256X:$src, (i32 0x4))>; +def : Pat<(v8f32 (ftrunc VR256X:$src)), + (VRNDSCALEPSZ256rri VR256X:$src, (i32 0xB))>; + +def : Pat<(v4f64 (ffloor VR256X:$src)), + (VRNDSCALEPDZ256rri VR256X:$src, (i32 0x9))>; +def : Pat<(v4f64 (fnearbyint VR256X:$src)), + (VRNDSCALEPDZ256rri VR256X:$src, (i32 0xC))>; +def : Pat<(v4f64 (fceil VR256X:$src)), + (VRNDSCALEPDZ256rri VR256X:$src, (i32 0xA))>; +def : Pat<(v4f64 (frint VR256X:$src)), + (VRNDSCALEPDZ256rri VR256X:$src, (i32 0x4))>; +def : Pat<(v4f64 (ftrunc VR256X:$src)), + (VRNDSCALEPDZ256rri VR256X:$src, (i32 0xB))>; +} + +multiclass avx512_shuff_packed_128<string OpcodeStr, OpndItins itins, + AVX512VLVectorVTInfo _, bits<8> opc>{ + let Predicates = [HasAVX512] in { + defm Z : avx512_3Op_imm8<opc, OpcodeStr, X86Shuf128, itins, _.info512>, EVEX_V512; + + } + let Predicates = [HasAVX512, HasVLX] in { + defm Z256 : avx512_3Op_imm8<opc, OpcodeStr, X86Shuf128, itins, _.info256>, EVEX_V256; + } +} + +defm VSHUFF32X4 : avx512_shuff_packed_128<"vshuff32x4", SSE_SHUFP, + avx512vl_f32_info, 0x23>, AVX512AIi8Base, EVEX_4V, EVEX_CD8<32, CD8VF>; +defm VSHUFF64X2 : avx512_shuff_packed_128<"vshuff64x2", SSE_SHUFP, + avx512vl_f64_info, 0x23>, AVX512AIi8Base, EVEX_4V, EVEX_CD8<64, CD8VF>, VEX_W; +defm VSHUFI32X4 : avx512_shuff_packed_128<"vshufi32x4", SSE_SHUFP, + avx512vl_i32_info, 0x43>, AVX512AIi8Base, EVEX_4V, EVEX_CD8<32, CD8VF>; +defm VSHUFI64X2 : avx512_shuff_packed_128<"vshufi64x2", SSE_SHUFP, + avx512vl_i64_info, 0x43>, AVX512AIi8Base, EVEX_4V, EVEX_CD8<64, CD8VF>, VEX_W; let Predicates = [HasAVX512] in { // Provide fallback in case the load node that is used in the broadcast @@ -9264,120 +9318,230 @@ def : Pat<(v64i8 (X86SubVBroadcast (v16i8 VR128X:$src))), 0)>; } -multiclass avx512_valign<string OpcodeStr, AVX512VLVectorVTInfo VTInfo_I> { - defm NAME: avx512_common_3Op_imm8<OpcodeStr, VTInfo_I, 0x03, X86VAlign>, +multiclass avx512_valign<string OpcodeStr, OpndItins itins, + AVX512VLVectorVTInfo VTInfo_I> { + defm NAME: avx512_common_3Op_imm8<OpcodeStr, VTInfo_I, 0x03, X86VAlign, itins>, AVX512AIi8Base, EVEX_4V; } -defm VALIGND: avx512_valign<"valignd", avx512vl_i32_info>, +defm VALIGND: avx512_valign<"valignd", SSE_PALIGN, avx512vl_i32_info>, EVEX_CD8<32, CD8VF>; -defm VALIGNQ: avx512_valign<"valignq", avx512vl_i64_info>, +defm VALIGNQ: avx512_valign<"valignq", SSE_PALIGN, avx512vl_i64_info>, EVEX_CD8<64, CD8VF>, VEX_W; -multiclass avx512_vpalignr_lowering<X86VectorVTInfo _ , list<Predicate> p>{ - let Predicates = p in - def NAME#_.VTName#rri: - Pat<(_.VT (X86PAlignr _.RC:$src1, _.RC:$src2, (i8 imm:$imm))), - (!cast<Instruction>(NAME#_.ZSuffix#rri) - _.RC:$src1, _.RC:$src2, imm:$imm)>; +defm VPALIGNR: avx512_common_3Op_rm_imm8<0x0F, X86PAlignr, "vpalignr", SSE_PALIGN, + avx512vl_i8_info, avx512vl_i8_info>, + EVEX_CD8<8, CD8VF>; + +// Fragments to help convert valignq into masked valignd. Or valignq/valignd +// into vpalignr. +def ValignqImm32XForm : SDNodeXForm<imm, [{ + return getI8Imm(N->getZExtValue() * 2, SDLoc(N)); +}]>; +def ValignqImm8XForm : SDNodeXForm<imm, [{ + return getI8Imm(N->getZExtValue() * 8, SDLoc(N)); +}]>; +def ValigndImm8XForm : SDNodeXForm<imm, [{ + return getI8Imm(N->getZExtValue() * 4, SDLoc(N)); +}]>; + +multiclass avx512_vpalign_mask_lowering<string OpcodeStr, SDNode OpNode, + X86VectorVTInfo From, X86VectorVTInfo To, + SDNodeXForm ImmXForm> { + def : Pat<(To.VT (vselect To.KRCWM:$mask, + (bitconvert + (From.VT (OpNode From.RC:$src1, From.RC:$src2, + imm:$src3))), + To.RC:$src0)), + (!cast<Instruction>(OpcodeStr#"rrik") To.RC:$src0, To.KRCWM:$mask, + To.RC:$src1, To.RC:$src2, + (ImmXForm imm:$src3))>; + + def : Pat<(To.VT (vselect To.KRCWM:$mask, + (bitconvert + (From.VT (OpNode From.RC:$src1, From.RC:$src2, + imm:$src3))), + To.ImmAllZerosV)), + (!cast<Instruction>(OpcodeStr#"rrikz") To.KRCWM:$mask, + To.RC:$src1, To.RC:$src2, + (ImmXForm imm:$src3))>; + + def : Pat<(To.VT (vselect To.KRCWM:$mask, + (bitconvert + (From.VT (OpNode From.RC:$src1, + (bitconvert (To.LdFrag addr:$src2)), + imm:$src3))), + To.RC:$src0)), + (!cast<Instruction>(OpcodeStr#"rmik") To.RC:$src0, To.KRCWM:$mask, + To.RC:$src1, addr:$src2, + (ImmXForm imm:$src3))>; + + def : Pat<(To.VT (vselect To.KRCWM:$mask, + (bitconvert + (From.VT (OpNode From.RC:$src1, + (bitconvert (To.LdFrag addr:$src2)), + imm:$src3))), + To.ImmAllZerosV)), + (!cast<Instruction>(OpcodeStr#"rmikz") To.KRCWM:$mask, + To.RC:$src1, addr:$src2, + (ImmXForm imm:$src3))>; } -multiclass avx512_vpalignr_lowering_common<AVX512VLVectorVTInfo _>: - avx512_vpalignr_lowering<_.info512, [HasBWI]>, - avx512_vpalignr_lowering<_.info128, [HasBWI, HasVLX]>, - avx512_vpalignr_lowering<_.info256, [HasBWI, HasVLX]>; +multiclass avx512_vpalign_mask_lowering_mb<string OpcodeStr, SDNode OpNode, + X86VectorVTInfo From, + X86VectorVTInfo To, + SDNodeXForm ImmXForm> : + avx512_vpalign_mask_lowering<OpcodeStr, OpNode, From, To, ImmXForm> { + def : Pat<(From.VT (OpNode From.RC:$src1, + (bitconvert (To.VT (X86VBroadcast + (To.ScalarLdFrag addr:$src2)))), + imm:$src3)), + (!cast<Instruction>(OpcodeStr#"rmbi") To.RC:$src1, addr:$src2, + (ImmXForm imm:$src3))>; -defm VPALIGNR: avx512_common_3Op_rm_imm8<0x0F, X86PAlignr, "vpalignr" , - avx512vl_i8_info, avx512vl_i8_info>, - avx512_vpalignr_lowering_common<avx512vl_i16_info>, - avx512_vpalignr_lowering_common<avx512vl_i32_info>, - avx512_vpalignr_lowering_common<avx512vl_f32_info>, - avx512_vpalignr_lowering_common<avx512vl_i64_info>, - avx512_vpalignr_lowering_common<avx512vl_f64_info>, - EVEX_CD8<8, CD8VF>; + def : Pat<(To.VT (vselect To.KRCWM:$mask, + (bitconvert + (From.VT (OpNode From.RC:$src1, + (bitconvert + (To.VT (X86VBroadcast + (To.ScalarLdFrag addr:$src2)))), + imm:$src3))), + To.RC:$src0)), + (!cast<Instruction>(OpcodeStr#"rmbik") To.RC:$src0, To.KRCWM:$mask, + To.RC:$src1, addr:$src2, + (ImmXForm imm:$src3))>; -defm VDBPSADBW: avx512_common_3Op_rm_imm8<0x42, X86dbpsadbw, "vdbpsadbw" , - avx512vl_i16_info, avx512vl_i8_info>, EVEX_CD8<8, CD8VF>; + def : Pat<(To.VT (vselect To.KRCWM:$mask, + (bitconvert + (From.VT (OpNode From.RC:$src1, + (bitconvert + (To.VT (X86VBroadcast + (To.ScalarLdFrag addr:$src2)))), + imm:$src3))), + To.ImmAllZerosV)), + (!cast<Instruction>(OpcodeStr#"rmbikz") To.KRCWM:$mask, + To.RC:$src1, addr:$src2, + (ImmXForm imm:$src3))>; +} + +let Predicates = [HasAVX512] in { + // For 512-bit we lower to the widest element type we can. So we only need + // to handle converting valignq to valignd. + defm : avx512_vpalign_mask_lowering_mb<"VALIGNDZ", X86VAlign, v8i64_info, + v16i32_info, ValignqImm32XForm>; +} + +let Predicates = [HasVLX] in { + // For 128-bit we lower to the widest element type we can. So we only need + // to handle converting valignq to valignd. + defm : avx512_vpalign_mask_lowering_mb<"VALIGNDZ128", X86VAlign, v2i64x_info, + v4i32x_info, ValignqImm32XForm>; + // For 256-bit we lower to the widest element type we can. So we only need + // to handle converting valignq to valignd. + defm : avx512_vpalign_mask_lowering_mb<"VALIGNDZ256", X86VAlign, v4i64x_info, + v8i32x_info, ValignqImm32XForm>; +} + +let Predicates = [HasVLX, HasBWI] in { + // We can turn 128 and 256 bit VALIGND/VALIGNQ into VPALIGNR. + defm : avx512_vpalign_mask_lowering<"VPALIGNRZ128", X86VAlign, v2i64x_info, + v16i8x_info, ValignqImm8XForm>; + defm : avx512_vpalign_mask_lowering<"VPALIGNRZ128", X86VAlign, v4i32x_info, + v16i8x_info, ValigndImm8XForm>; +} + +defm VDBPSADBW: avx512_common_3Op_rm_imm8<0x42, X86dbpsadbw, "vdbpsadbw", + SSE_INTMUL_ITINS_P, avx512vl_i16_info, avx512vl_i8_info>, + EVEX_CD8<8, CD8VF>; multiclass avx512_unary_rm<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in { defm rr : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src1), OpcodeStr, "$src1", "$src1", - (_.VT (OpNode _.RC:$src1))>, EVEX, AVX5128IBase; + (_.VT (OpNode _.RC:$src1)), itins.rr>, EVEX, AVX5128IBase, + Sched<[itins.Sched]>; defm rm : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.MemOp:$src1), OpcodeStr, "$src1", "$src1", - (_.VT (OpNode (bitconvert (_.LdFrag addr:$src1))))>, - EVEX, AVX5128IBase, EVEX_CD8<_.EltSize, CD8VF>; + (_.VT (OpNode (bitconvert (_.LdFrag addr:$src1)))), itins.rm>, + EVEX, AVX5128IBase, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded]>; } } multiclass avx512_unary_rmb<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> : - avx512_unary_rm<opc, OpcodeStr, OpNode, _> { + OpndItins itins, X86VectorVTInfo _> : + avx512_unary_rm<opc, OpcodeStr, OpNode, itins, _> { defm rmb : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.ScalarMemOp:$src1), OpcodeStr, "${src1}"##_.BroadcastStr, "${src1}"##_.BroadcastStr, (_.VT (OpNode (X86VBroadcast - (_.ScalarLdFrag addr:$src1))))>, - EVEX, AVX5128IBase, EVEX_B, EVEX_CD8<_.EltSize, CD8VF>; + (_.ScalarLdFrag addr:$src1)))), itins.rm>, + EVEX, AVX5128IBase, EVEX_B, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded]>; } multiclass avx512_unary_rm_vl<bits<8> opc, string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo VTInfo, Predicate prd> { + OpndItins itins, AVX512VLVectorVTInfo VTInfo, + Predicate prd> { let Predicates = [prd] in - defm Z : avx512_unary_rm<opc, OpcodeStr, OpNode, VTInfo.info512>, EVEX_V512; + defm Z : avx512_unary_rm<opc, OpcodeStr, OpNode, itins, VTInfo.info512>, + EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_unary_rm<opc, OpcodeStr, OpNode, VTInfo.info256>, + defm Z256 : avx512_unary_rm<opc, OpcodeStr, OpNode, itins, VTInfo.info256>, EVEX_V256; - defm Z128 : avx512_unary_rm<opc, OpcodeStr, OpNode, VTInfo.info128>, + defm Z128 : avx512_unary_rm<opc, OpcodeStr, OpNode, itins, VTInfo.info128>, EVEX_V128; } } multiclass avx512_unary_rmb_vl<bits<8> opc, string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo VTInfo, Predicate prd> { + OpndItins itins, AVX512VLVectorVTInfo VTInfo, + Predicate prd> { let Predicates = [prd] in - defm Z : avx512_unary_rmb<opc, OpcodeStr, OpNode, VTInfo.info512>, + defm Z : avx512_unary_rmb<opc, OpcodeStr, OpNode, itins, VTInfo.info512>, EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_unary_rmb<opc, OpcodeStr, OpNode, VTInfo.info256>, + defm Z256 : avx512_unary_rmb<opc, OpcodeStr, OpNode, itins, VTInfo.info256>, EVEX_V256; - defm Z128 : avx512_unary_rmb<opc, OpcodeStr, OpNode, VTInfo.info128>, + defm Z128 : avx512_unary_rmb<opc, OpcodeStr, OpNode, itins, VTInfo.info128>, EVEX_V128; } } multiclass avx512_unary_rm_vl_dq<bits<8> opc_d, bits<8> opc_q, string OpcodeStr, - SDNode OpNode, Predicate prd> { - defm Q : avx512_unary_rmb_vl<opc_q, OpcodeStr#"q", OpNode, avx512vl_i64_info, - prd>, VEX_W; - defm D : avx512_unary_rmb_vl<opc_d, OpcodeStr#"d", OpNode, avx512vl_i32_info, - prd>; + SDNode OpNode, OpndItins itins, Predicate prd> { + defm Q : avx512_unary_rmb_vl<opc_q, OpcodeStr#"q", OpNode, itins, + avx512vl_i64_info, prd>, VEX_W; + defm D : avx512_unary_rmb_vl<opc_d, OpcodeStr#"d", OpNode, itins, + avx512vl_i32_info, prd>; } multiclass avx512_unary_rm_vl_bw<bits<8> opc_b, bits<8> opc_w, string OpcodeStr, - SDNode OpNode, Predicate prd> { - defm W : avx512_unary_rm_vl<opc_w, OpcodeStr#"w", OpNode, avx512vl_i16_info, prd>; - defm B : avx512_unary_rm_vl<opc_b, OpcodeStr#"b", OpNode, avx512vl_i8_info, prd>; + SDNode OpNode, OpndItins itins, Predicate prd> { + defm W : avx512_unary_rm_vl<opc_w, OpcodeStr#"w", OpNode, itins, + avx512vl_i16_info, prd>, VEX_WIG; + defm B : avx512_unary_rm_vl<opc_b, OpcodeStr#"b", OpNode, itins, + avx512vl_i8_info, prd>, VEX_WIG; } multiclass avx512_unary_rm_vl_all<bits<8> opc_b, bits<8> opc_w, bits<8> opc_d, bits<8> opc_q, - string OpcodeStr, SDNode OpNode> { - defm NAME : avx512_unary_rm_vl_dq<opc_d, opc_q, OpcodeStr, OpNode, + string OpcodeStr, SDNode OpNode, + OpndItins itins> { + defm NAME : avx512_unary_rm_vl_dq<opc_d, opc_q, OpcodeStr, OpNode, itins, HasAVX512>, - avx512_unary_rm_vl_bw<opc_b, opc_w, OpcodeStr, OpNode, + avx512_unary_rm_vl_bw<opc_b, opc_w, OpcodeStr, OpNode, itins, HasBWI>; } -defm VPABS : avx512_unary_rm_vl_all<0x1C, 0x1D, 0x1E, 0x1F, "vpabs", abs>; +defm VPABS : avx512_unary_rm_vl_all<0x1C, 0x1D, 0x1E, 0x1F, "vpabs", abs, SSE_PABS>; // VPABS: Use 512bit version to implement 128/256 bit in case NoVLX. let Predicates = [HasAVX512, NoVLX] in { @@ -9393,137 +9557,111 @@ let Predicates = [HasAVX512, NoVLX] in { sub_xmm)>; } -multiclass avx512_ctlz<bits<8> opc, string OpcodeStr, Predicate prd>{ +// Use 512bit version to implement 128/256 bit. +multiclass avx512_unary_lowering<string InstrStr, SDNode OpNode, + AVX512VLVectorVTInfo _, Predicate prd> { + let Predicates = [prd, NoVLX] in { + def : Pat<(_.info256.VT(OpNode _.info256.RC:$src1)), + (EXTRACT_SUBREG + (!cast<Instruction>(InstrStr # "Zrr") + (INSERT_SUBREG(_.info512.VT(IMPLICIT_DEF)), + _.info256.RC:$src1, + _.info256.SubRegIdx)), + _.info256.SubRegIdx)>; - defm NAME : avx512_unary_rm_vl_dq<opc, opc, OpcodeStr, ctlz, prd>; + def : Pat<(_.info128.VT(OpNode _.info128.RC:$src1)), + (EXTRACT_SUBREG + (!cast<Instruction>(InstrStr # "Zrr") + (INSERT_SUBREG(_.info512.VT(IMPLICIT_DEF)), + _.info128.RC:$src1, + _.info128.SubRegIdx)), + _.info128.SubRegIdx)>; + } } -defm VPLZCNT : avx512_ctlz<0x44, "vplzcnt", HasCDI>; -defm VPCONFLICT : avx512_unary_rm_vl_dq<0xC4, 0xC4, "vpconflict", X86Conflict, HasCDI>; +// FIXME: Is there a better scheduler itinerary for VPLZCNT? +defm VPLZCNT : avx512_unary_rm_vl_dq<0x44, 0x44, "vplzcnt", ctlz, + SSE_INTALU_ITINS_P, HasCDI>; -// VPLZCNT: Use 512bit version to implement 128/256 bit in case NoVLX. -let Predicates = [HasCDI, NoVLX] in { - def : Pat<(v4i64 (ctlz VR256X:$src)), - (EXTRACT_SUBREG - (VPLZCNTQZrr - (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR256X:$src, sub_ymm)), - sub_ymm)>; - def : Pat<(v2i64 (ctlz VR128X:$src)), - (EXTRACT_SUBREG - (VPLZCNTQZrr - (INSERT_SUBREG (v8i64 (IMPLICIT_DEF)), VR128X:$src, sub_xmm)), - sub_xmm)>; +// FIXME: Is there a better scheduler itinerary for VPCONFLICT? +defm VPCONFLICT : avx512_unary_rm_vl_dq<0xC4, 0xC4, "vpconflict", X86Conflict, + SSE_INTALU_ITINS_P, HasCDI>; - def : Pat<(v8i32 (ctlz VR256X:$src)), - (EXTRACT_SUBREG - (VPLZCNTDZrr - (INSERT_SUBREG (v16i32 (IMPLICIT_DEF)), VR256X:$src, sub_ymm)), - sub_ymm)>; - def : Pat<(v4i32 (ctlz VR128X:$src)), - (EXTRACT_SUBREG - (VPLZCNTDZrr - (INSERT_SUBREG (v16i32 (IMPLICIT_DEF)), VR128X:$src, sub_xmm)), - sub_xmm)>; -} +// VPLZCNT: Use 512bit version to implement 128/256 bit in case NoVLX. +defm : avx512_unary_lowering<"VPLZCNTQ", ctlz, avx512vl_i64_info, HasCDI>; +defm : avx512_unary_lowering<"VPLZCNTD", ctlz, avx512vl_i32_info, HasCDI>; //===---------------------------------------------------------------------===// // Counts number of ones - VPOPCNTD and VPOPCNTQ //===---------------------------------------------------------------------===// -multiclass avx512_unary_rmb_popcnt<bits<8> opc, string OpcodeStr, X86VectorVTInfo VTInfo> { - let Predicates = [HasVPOPCNTDQ] in - defm Z : avx512_unary_rmb<opc, OpcodeStr, ctpop, VTInfo>, EVEX_V512; -} +// FIXME: Is there a better scheduler itinerary for VPOPCNTD/VPOPCNTQ? +defm VPOPCNT : avx512_unary_rm_vl_dq<0x55, 0x55, "vpopcnt", ctpop, + SSE_INTALU_ITINS_P, HasVPOPCNTDQ>; -// Use 512bit version to implement 128/256 bit. -multiclass avx512_unary_lowering<SDNode OpNode, AVX512VLVectorVTInfo _, Predicate prd> { - let Predicates = [prd] in { - def Z256_Alt : Pat<(_.info256.VT(OpNode _.info256.RC:$src1)), - (EXTRACT_SUBREG - (!cast<Instruction>(NAME # "Zrr") - (INSERT_SUBREG(_.info512.VT(IMPLICIT_DEF)), - _.info256.RC:$src1, - _.info256.SubRegIdx)), - _.info256.SubRegIdx)>; - - def Z128_Alt : Pat<(_.info128.VT(OpNode _.info128.RC:$src1)), - (EXTRACT_SUBREG - (!cast<Instruction>(NAME # "Zrr") - (INSERT_SUBREG(_.info512.VT(IMPLICIT_DEF)), - _.info128.RC:$src1, - _.info128.SubRegIdx)), - _.info128.SubRegIdx)>; - } -} - -defm VPOPCNTD : avx512_unary_rmb_popcnt<0x55, "vpopcntd", v16i32_info>, - avx512_unary_lowering<ctpop, avx512vl_i32_info, HasVPOPCNTDQ>; -defm VPOPCNTQ : avx512_unary_rmb_popcnt<0x55, "vpopcntq", v8i64_info>, - avx512_unary_lowering<ctpop, avx512vl_i64_info, HasVPOPCNTDQ>, VEX_W; +defm : avx512_unary_lowering<"VPOPCNTQ", ctpop, avx512vl_i64_info, HasVPOPCNTDQ>; +defm : avx512_unary_lowering<"VPOPCNTD", ctpop, avx512vl_i32_info, HasVPOPCNTDQ>; //===---------------------------------------------------------------------===// // Replicate Single FP - MOVSHDUP and MOVSLDUP //===---------------------------------------------------------------------===// -multiclass avx512_replicate<bits<8> opc, string OpcodeStr, SDNode OpNode>{ - defm NAME: avx512_unary_rm_vl<opc, OpcodeStr, OpNode, avx512vl_f32_info, - HasAVX512>, XS; +multiclass avx512_replicate<bits<8> opc, string OpcodeStr, SDNode OpNode, + OpndItins itins> { + defm NAME: avx512_unary_rm_vl<opc, OpcodeStr, OpNode, itins, + avx512vl_f32_info, HasAVX512>, XS; } -defm VMOVSHDUP : avx512_replicate<0x16, "vmovshdup", X86Movshdup>; -defm VMOVSLDUP : avx512_replicate<0x12, "vmovsldup", X86Movsldup>; +defm VMOVSHDUP : avx512_replicate<0x16, "vmovshdup", X86Movshdup, SSE_MOVDDUP>; +defm VMOVSLDUP : avx512_replicate<0x12, "vmovsldup", X86Movsldup, SSE_MOVDDUP>; //===----------------------------------------------------------------------===// // AVX-512 - MOVDDUP //===----------------------------------------------------------------------===// multiclass avx512_movddup_128<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _> { + OpndItins itins, X86VectorVTInfo _> { let ExeDomain = _.ExeDomain in { defm rr : AVX512_maskable<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src), OpcodeStr, "$src", "$src", - (_.VT (OpNode (_.VT _.RC:$src)))>, EVEX; + (_.VT (OpNode (_.VT _.RC:$src))), itins.rr>, EVEX, + Sched<[itins.Sched]>; defm rm : AVX512_maskable<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.ScalarMemOp:$src), OpcodeStr, "$src", "$src", (_.VT (OpNode (_.VT (scalar_to_vector - (_.ScalarLdFrag addr:$src)))))>, - EVEX, EVEX_CD8<_.EltSize, CD8VH>; + (_.ScalarLdFrag addr:$src))))), + itins.rm>, EVEX, EVEX_CD8<_.EltSize, CD8VH>, + Sched<[itins.Sched.Folded]>; } } multiclass avx512_movddup_common<bits<8> opc, string OpcodeStr, SDNode OpNode, - AVX512VLVectorVTInfo VTInfo> { + OpndItins itins, AVX512VLVectorVTInfo VTInfo> { - defm Z : avx512_unary_rm<opc, OpcodeStr, OpNode, VTInfo.info512>, EVEX_V512; + defm Z : avx512_unary_rm<opc, OpcodeStr, X86Movddup, itins, VTInfo.info512>, EVEX_V512; let Predicates = [HasAVX512, HasVLX] in { - defm Z256 : avx512_unary_rm<opc, OpcodeStr, OpNode, VTInfo.info256>, + defm Z256 : avx512_unary_rm<opc, OpcodeStr, X86Movddup, itins, VTInfo.info256>, EVEX_V256; - defm Z128 : avx512_movddup_128<opc, OpcodeStr, OpNode, VTInfo.info128>, - EVEX_V128; + defm Z128 : avx512_movddup_128<opc, OpcodeStr, X86VBroadcast, itins, VTInfo.info128>, + EVEX_V128; } } -multiclass avx512_movddup<bits<8> opc, string OpcodeStr, SDNode OpNode>{ - defm NAME: avx512_movddup_common<opc, OpcodeStr, OpNode, +multiclass avx512_movddup<bits<8> opc, string OpcodeStr, SDNode OpNode, + OpndItins itins> { + defm NAME: avx512_movddup_common<opc, OpcodeStr, OpNode, itins, avx512vl_f64_info>, XD, VEX_W; } -defm VMOVDDUP : avx512_movddup<0x12, "vmovddup", X86Movddup>; +defm VMOVDDUP : avx512_movddup<0x12, "vmovddup", X86Movddup, SSE_MOVDDUP>; let Predicates = [HasVLX] in { -def : Pat<(X86Movddup (loadv2f64 addr:$src)), - (VMOVDDUPZ128rm addr:$src)>; def : Pat<(v2f64 (X86VBroadcast (loadf64 addr:$src))), (VMOVDDUPZ128rm addr:$src)>; def : Pat<(v2f64 (X86VBroadcast f64:$src)), (VMOVDDUPZ128rr (COPY_TO_REGCLASS FR64X:$src, VR128X))>; - -def : Pat<(vselect (v2i1 VK2WM:$mask), (X86Movddup (loadv2f64 addr:$src)), - (v2f64 VR128X:$src0)), - (VMOVDDUPZ128rmk VR128X:$src0, VK2WM:$mask, addr:$src)>; -def : Pat<(vselect (v2i1 VK2WM:$mask), (X86Movddup (loadv2f64 addr:$src)), - (bitconvert (v4i32 immAllZerosV))), - (VMOVDDUPZ128rmkz VK2WM:$mask, addr:$src)>; +def : Pat<(v2f64 (X86VBroadcast (loadv2f64 addr:$src))), + (VMOVDDUPZ128rm addr:$src)>; def : Pat<(vselect (v2i1 VK2WM:$mask), (v2f64 (X86VBroadcast f64:$src)), (v2f64 VR128X:$src0)), @@ -9539,6 +9677,13 @@ def : Pat<(vselect (v2i1 VK2WM:$mask), (v2f64 (X86VBroadcast (loadf64 addr:$src) def : Pat<(vselect (v2i1 VK2WM:$mask), (v2f64 (X86VBroadcast (loadf64 addr:$src))), (bitconvert (v4i32 immAllZerosV))), (VMOVDDUPZ128rmkz VK2WM:$mask, addr:$src)>; + +def : Pat<(vselect (v2i1 VK2WM:$mask), (v2f64 (X86VBroadcast (loadv2f64 addr:$src))), + (v2f64 VR128X:$src0)), + (VMOVDDUPZ128rmk VR128X:$src0, VK2WM:$mask, addr:$src)>; +def : Pat<(vselect (v2i1 VK2WM:$mask), (v2f64 (X86VBroadcast (loadv2f64 addr:$src))), + (bitconvert (v4i32 immAllZerosV))), + (VMOVDDUPZ128rmkz VK2WM:$mask, addr:$src)>; } //===----------------------------------------------------------------------===// @@ -9576,10 +9721,9 @@ multiclass avx512_extract_elt_bw_m<bits<8> opc, string OpcodeStr, SDNode OpNode, def mr : AVX512Ii8<opc, MRMDestMem, (outs), (ins _.ScalarMemOp:$dst, _.RC:$src1, u8imm:$src2), OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", - [(store (_.EltVT (trunc (assertzext (OpNode (_.VT _.RC:$src1), - imm:$src2)))), - addr:$dst)]>, - EVEX, EVEX_CD8<_.EltSize, CD8VT1>; + [(store (_.EltVT (trunc (OpNode (_.VT _.RC:$src1), imm:$src2))), + addr:$dst)]>, + EVEX, EVEX_CD8<_.EltSize, CD8VT1>, Sched<[WriteShuffleLd]>; } multiclass avx512_extract_elt_b<string OpcodeStr, X86VectorVTInfo _> { @@ -9589,7 +9733,7 @@ multiclass avx512_extract_elt_b<string OpcodeStr, X86VectorVTInfo _> { OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set GR32orGR64:$dst, (X86pextrb (_.VT _.RC:$src1), imm:$src2))]>, - EVEX, TAPD; + EVEX, TAPD, Sched<[WriteShuffle]>; defm NAME : avx512_extract_elt_bw_m<0x14, OpcodeStr, X86pextrb, _>, TAPD; } @@ -9601,14 +9745,15 @@ multiclass avx512_extract_elt_w<string OpcodeStr, X86VectorVTInfo _> { (ins _.RC:$src1, u8imm:$src2), OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set GR32orGR64:$dst, - (X86pextrw (_.VT _.RC:$src1), imm:$src2))]>, - EVEX, PD; + (X86pextrw (_.VT _.RC:$src1), imm:$src2))], + IIC_SSE_PEXTRW>, EVEX, PD, Sched<[WriteShuffle]>; let hasSideEffects = 0 in def rr_REV : AVX512Ii8<0x15, MRMDestReg, (outs GR32orGR64:$dst), (ins _.RC:$src1, u8imm:$src2), - OpcodeStr#".s\t{$src2, $src1, $dst|$dst, $src1, $src2}", []>, - EVEX, TAPD, FoldGenData<NAME#rr>; + OpcodeStr#".s\t{$src2, $src1, $dst|$dst, $src1, $src2}", [], + IIC_SSE_PEXTRW>, EVEX, TAPD, FoldGenData<NAME#rr>, + Sched<[WriteShuffle]>; defm NAME : avx512_extract_elt_bw_m<0x15, OpcodeStr, X86pextrw, _>, TAPD; } @@ -9622,19 +9767,20 @@ multiclass avx512_extract_elt_dq<string OpcodeStr, X86VectorVTInfo _, OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(set GRC:$dst, (extractelt (_.VT _.RC:$src1), imm:$src2))]>, - EVEX, TAPD; + EVEX, TAPD, Sched<[WriteShuffle]>; def mr : AVX512Ii8<0x16, MRMDestMem, (outs), (ins _.ScalarMemOp:$dst, _.RC:$src1, u8imm:$src2), OpcodeStr#"\t{$src2, $src1, $dst|$dst, $src1, $src2}", [(store (extractelt (_.VT _.RC:$src1), imm:$src2),addr:$dst)]>, - EVEX, EVEX_CD8<_.EltSize, CD8VT1>, TAPD; + EVEX, EVEX_CD8<_.EltSize, CD8VT1>, TAPD, + Sched<[WriteShuffleLd]>; } } -defm VPEXTRBZ : avx512_extract_elt_b<"vpextrb", v16i8x_info>; -defm VPEXTRWZ : avx512_extract_elt_w<"vpextrw", v8i16x_info>; +defm VPEXTRBZ : avx512_extract_elt_b<"vpextrb", v16i8x_info>, VEX_WIG; +defm VPEXTRWZ : avx512_extract_elt_w<"vpextrw", v8i16x_info>, VEX_WIG; defm VPEXTRDZ : avx512_extract_elt_dq<"vpextrd", v4i32x_info, GR32>; defm VPEXTRQZ : avx512_extract_elt_dq<"vpextrq", v2i64x_info, GR64>, VEX_W; @@ -9645,7 +9791,7 @@ multiclass avx512_insert_elt_m<bits<8> opc, string OpcodeStr, SDNode OpNode, OpcodeStr#"\t{$src3, $src2, $src1, $dst|$dst, $src1, $src2, $src3}", [(set _.RC:$dst, (_.VT (OpNode _.RC:$src1, (LdFrag addr:$src2), imm:$src3)))]>, - EVEX_4V, EVEX_CD8<_.EltSize, CD8VT1>; + EVEX_4V, EVEX_CD8<_.EltSize, CD8VT1>, Sched<[WriteShuffleLd, ReadAfterLd]>; } multiclass avx512_insert_elt_bw<bits<8> opc, string OpcodeStr, SDNode OpNode, @@ -9655,7 +9801,8 @@ multiclass avx512_insert_elt_bw<bits<8> opc, string OpcodeStr, SDNode OpNode, (ins _.RC:$src1, GR32orGR64:$src2, u8imm:$src3), OpcodeStr#"\t{$src3, $src2, $src1, $dst|$dst, $src1, $src2, $src3}", [(set _.RC:$dst, - (OpNode _.RC:$src1, GR32orGR64:$src2, imm:$src3))]>, EVEX_4V; + (OpNode _.RC:$src1, GR32orGR64:$src2, imm:$src3))]>, EVEX_4V, + Sched<[WriteShuffle]>; defm NAME : avx512_insert_elt_m<opc, OpcodeStr, OpNode, _, LdFrag>; } @@ -9669,7 +9816,7 @@ multiclass avx512_insert_elt_dq<bits<8> opc, string OpcodeStr, OpcodeStr#"\t{$src3, $src2, $src1, $dst|$dst, $src1, $src2, $src3}", [(set _.RC:$dst, (_.VT (insertelt _.RC:$src1, GRC:$src2, imm:$src3)))]>, - EVEX_4V, TAPD; + EVEX_4V, TAPD, Sched<[WriteShuffle]>; defm NAME : avx512_insert_elt_m<opc, OpcodeStr, insertelt, _, _.ScalarLdFrag>, TAPD; @@ -9677,92 +9824,109 @@ multiclass avx512_insert_elt_dq<bits<8> opc, string OpcodeStr, } defm VPINSRBZ : avx512_insert_elt_bw<0x20, "vpinsrb", X86pinsrb, v16i8x_info, - extloadi8>, TAPD; + extloadi8>, TAPD, VEX_WIG; defm VPINSRWZ : avx512_insert_elt_bw<0xC4, "vpinsrw", X86pinsrw, v8i16x_info, - extloadi16>, PD; + extloadi16>, PD, VEX_WIG; defm VPINSRDZ : avx512_insert_elt_dq<0x22, "vpinsrd", v4i32x_info, GR32>; defm VPINSRQZ : avx512_insert_elt_dq<0x22, "vpinsrq", v2i64x_info, GR64>, VEX_W; + //===----------------------------------------------------------------------===// // VSHUFPS - VSHUFPD Operations //===----------------------------------------------------------------------===// + multiclass avx512_shufp<string OpcodeStr, AVX512VLVectorVTInfo VTInfo_I, AVX512VLVectorVTInfo VTInfo_FP>{ - defm NAME: avx512_common_3Op_imm8<OpcodeStr, VTInfo_FP, 0xC6, X86Shufp>, - EVEX_CD8<VTInfo_FP.info512.EltSize, CD8VF>, - AVX512AIi8Base, EVEX_4V; + defm NAME: avx512_common_3Op_imm8<OpcodeStr, VTInfo_FP, 0xC6, X86Shufp, + SSE_SHUFP>, EVEX_CD8<VTInfo_FP.info512.EltSize, CD8VF>, + AVX512AIi8Base, EVEX_4V; } defm VSHUFPS: avx512_shufp<"vshufps", avx512vl_i32_info, avx512vl_f32_info>, PS; defm VSHUFPD: avx512_shufp<"vshufpd", avx512vl_i64_info, avx512vl_f64_info>, PD, VEX_W; + //===----------------------------------------------------------------------===// // AVX-512 - Byte shift Left/Right //===----------------------------------------------------------------------===// +let Sched = WriteVecShift in +def AVX512_BYTESHIFT : OpndItins< + IIC_SSE_INTSHDQ_P_RI, IIC_SSE_INTSHDQ_P_RI +>; + multiclass avx512_shift_packed<bits<8> opc, SDNode OpNode, Format MRMr, - Format MRMm, string OpcodeStr, X86VectorVTInfo _>{ + Format MRMm, string OpcodeStr, + OpndItins itins, X86VectorVTInfo _>{ def rr : AVX512<opc, MRMr, (outs _.RC:$dst), (ins _.RC:$src1, u8imm:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, $dst|$dst, $src1, $src2}"), - [(set _.RC:$dst,(_.VT (OpNode _.RC:$src1, (i8 imm:$src2))))]>; + [(set _.RC:$dst,(_.VT (OpNode _.RC:$src1, (i8 imm:$src2))))], + itins.rr>, Sched<[itins.Sched]>; def rm : AVX512<opc, MRMm, (outs _.RC:$dst), (ins _.MemOp:$src1, u8imm:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, $dst|$dst, $src1, $src2}"), [(set _.RC:$dst,(_.VT (OpNode (_.VT (bitconvert (_.LdFrag addr:$src1))), - (i8 imm:$src2))))]>; + (i8 imm:$src2))))], itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_shift_packed_all<bits<8> opc, SDNode OpNode, Format MRMr, - Format MRMm, string OpcodeStr, Predicate prd>{ + Format MRMm, string OpcodeStr, + OpndItins itins, Predicate prd>{ let Predicates = [prd] in - defm Z512 : avx512_shift_packed<opc, OpNode, MRMr, MRMm, - OpcodeStr, v64i8_info>, EVEX_V512; + defm Z : avx512_shift_packed<opc, OpNode, MRMr, MRMm, + OpcodeStr, itins, v64i8_info>, EVEX_V512; let Predicates = [prd, HasVLX] in { defm Z256 : avx512_shift_packed<opc, OpNode, MRMr, MRMm, - OpcodeStr, v32i8x_info>, EVEX_V256; + OpcodeStr, itins, v32i8x_info>, EVEX_V256; defm Z128 : avx512_shift_packed<opc, OpNode, MRMr, MRMm, - OpcodeStr, v16i8x_info>, EVEX_V128; + OpcodeStr, itins, v16i8x_info>, EVEX_V128; } } defm VPSLLDQ : avx512_shift_packed_all<0x73, X86vshldq, MRM7r, MRM7m, "vpslldq", - HasBWI>, AVX512PDIi8Base, EVEX_4V; + AVX512_BYTESHIFT, HasBWI>, AVX512PDIi8Base, + EVEX_4V, VEX_WIG; defm VPSRLDQ : avx512_shift_packed_all<0x73, X86vshrdq, MRM3r, MRM3m, "vpsrldq", - HasBWI>, AVX512PDIi8Base, EVEX_4V; + AVX512_BYTESHIFT, HasBWI>, AVX512PDIi8Base, + EVEX_4V, VEX_WIG; multiclass avx512_psadbw_packed<bits<8> opc, SDNode OpNode, - string OpcodeStr, X86VectorVTInfo _dst, - X86VectorVTInfo _src>{ + string OpcodeStr, OpndItins itins, + X86VectorVTInfo _dst, X86VectorVTInfo _src> { def rr : AVX512BI<opc, MRMSrcReg, (outs _dst.RC:$dst), (ins _src.RC:$src1, _src.RC:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, $dst|$dst, $src1, $src2}"), [(set _dst.RC:$dst,(_dst.VT (OpNode (_src.VT _src.RC:$src1), - (_src.VT _src.RC:$src2))))]>; + (_src.VT _src.RC:$src2))))], itins.rr>, + Sched<[itins.Sched]>; def rm : AVX512BI<opc, MRMSrcMem, (outs _dst.RC:$dst), (ins _src.RC:$src1, _src.MemOp:$src2), !strconcat(OpcodeStr, "\t{$src2, $src1, $dst|$dst, $src1, $src2}"), [(set _dst.RC:$dst,(_dst.VT (OpNode (_src.VT _src.RC:$src1), (_src.VT (bitconvert - (_src.LdFrag addr:$src2))))))]>; + (_src.LdFrag addr:$src2))))))], itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } multiclass avx512_psadbw_packed_all<bits<8> opc, SDNode OpNode, - string OpcodeStr, Predicate prd> { + string OpcodeStr, OpndItins itins, + Predicate prd> { let Predicates = [prd] in - defm Z512 : avx512_psadbw_packed<opc, OpNode, OpcodeStr, v8i64_info, - v64i8_info>, EVEX_V512; + defm Z : avx512_psadbw_packed<opc, OpNode, OpcodeStr, itins, v8i64_info, + v64i8_info>, EVEX_V512; let Predicates = [prd, HasVLX] in { - defm Z256 : avx512_psadbw_packed<opc, OpNode, OpcodeStr, v4i64x_info, + defm Z256 : avx512_psadbw_packed<opc, OpNode, OpcodeStr, itins, v4i64x_info, v32i8x_info>, EVEX_V256; - defm Z128 : avx512_psadbw_packed<opc, OpNode, OpcodeStr, v2i64x_info, + defm Z128 : avx512_psadbw_packed<opc, OpNode, OpcodeStr, itins, v2i64x_info, v16i8x_info>, EVEX_V128; } } defm VPSADBW : avx512_psadbw_packed_all<0xf6, X86psadbw, "vpsadbw", - HasBWI>, EVEX_4V; + SSE_MPSADBW_ITINS, HasBWI>, EVEX_4V, VEX_WIG; // Transforms to swizzle an immediate to enable better matching when // memory operand isn't in the right place. @@ -9827,7 +9991,7 @@ def VPTERNLOG312_imm8 : SDNodeXForm<imm, [{ }]>; multiclass avx512_ternlog<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _>{ + OpndItins itins, X86VectorVTInfo _>{ let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in { defm rri : AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3, u8imm:$src4), @@ -9835,15 +9999,17 @@ multiclass avx512_ternlog<bits<8> opc, string OpcodeStr, SDNode OpNode, (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), (_.VT _.RC:$src3), - (i8 imm:$src4)), 1, 1>, AVX512AIi8Base, EVEX_4V; + (i8 imm:$src4)), itins.rr, 1, 1>, + AVX512AIi8Base, EVEX_4V, Sched<[itins.Sched]>; defm rmi : AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.MemOp:$src3, u8imm:$src4), OpcodeStr, "$src4, $src3, $src2", "$src2, $src3, $src4", (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), (_.VT (bitconvert (_.LdFrag addr:$src3))), - (i8 imm:$src4)), 1, 0>, - AVX512AIi8Base, EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>; + (i8 imm:$src4)), itins.rm, 1, 0>, + AVX512AIi8Base, EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmbi : AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.ScalarMemOp:$src3, u8imm:$src4), OpcodeStr, "$src4, ${src3}"##_.BroadcastStr##", $src2", @@ -9851,8 +10017,9 @@ multiclass avx512_ternlog<bits<8> opc, string OpcodeStr, SDNode OpNode, (OpNode (_.VT _.RC:$src1), (_.VT _.RC:$src2), (_.VT (X86VBroadcast(_.ScalarLdFrag addr:$src3))), - (i8 imm:$src4)), 1, 0>, EVEX_B, - AVX512AIi8Base, EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>; + (i8 imm:$src4)), itins.rm, 1, 0>, EVEX_B, + AVX512AIi8Base, EVEX_4V, EVEX_CD8<_.EltSize, CD8VF>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; }// Constraints = "$src1 = $dst" // Additional patterns for matching passthru operand in other positions. @@ -9968,47 +10135,50 @@ multiclass avx512_ternlog<bits<8> opc, string OpcodeStr, SDNode OpNode, (OpNode (X86VBroadcast (_.ScalarLdFrag addr:$src3)), _.RC:$src2, _.RC:$src1, (i8 imm:$src4)), _.RC:$src1)), - (!cast<Instruction>(NAME#_.ZSuffix#rmik) _.RC:$src1, _.KRCWM:$mask, + (!cast<Instruction>(NAME#_.ZSuffix#rmbik) _.RC:$src1, _.KRCWM:$mask, _.RC:$src2, addr:$src3, (VPTERNLOG321_imm8 imm:$src4))>; def : Pat<(_.VT (vselect _.KRCWM:$mask, (OpNode _.RC:$src2, _.RC:$src1, (X86VBroadcast (_.ScalarLdFrag addr:$src3)), (i8 imm:$src4)), _.RC:$src1)), - (!cast<Instruction>(NAME#_.ZSuffix#rmik) _.RC:$src1, _.KRCWM:$mask, + (!cast<Instruction>(NAME#_.ZSuffix#rmbik) _.RC:$src1, _.KRCWM:$mask, _.RC:$src2, addr:$src3, (VPTERNLOG213_imm8 imm:$src4))>; def : Pat<(_.VT (vselect _.KRCWM:$mask, (OpNode _.RC:$src2, (X86VBroadcast (_.ScalarLdFrag addr:$src3)), _.RC:$src1, (i8 imm:$src4)), _.RC:$src1)), - (!cast<Instruction>(NAME#_.ZSuffix#rmik) _.RC:$src1, _.KRCWM:$mask, + (!cast<Instruction>(NAME#_.ZSuffix#rmbik) _.RC:$src1, _.KRCWM:$mask, _.RC:$src2, addr:$src3, (VPTERNLOG231_imm8 imm:$src4))>; def : Pat<(_.VT (vselect _.KRCWM:$mask, (OpNode (X86VBroadcast (_.ScalarLdFrag addr:$src3)), _.RC:$src1, _.RC:$src2, (i8 imm:$src4)), _.RC:$src1)), - (!cast<Instruction>(NAME#_.ZSuffix#rmik) _.RC:$src1, _.KRCWM:$mask, + (!cast<Instruction>(NAME#_.ZSuffix#rmbik) _.RC:$src1, _.KRCWM:$mask, _.RC:$src2, addr:$src3, (VPTERNLOG312_imm8 imm:$src4))>; } -multiclass avx512_common_ternlog<string OpcodeStr, AVX512VLVectorVTInfo _>{ +multiclass avx512_common_ternlog<string OpcodeStr, OpndItins itins, + AVX512VLVectorVTInfo _> { let Predicates = [HasAVX512] in - defm Z : avx512_ternlog<0x25, OpcodeStr, X86vpternlog, _.info512>, EVEX_V512; + defm Z : avx512_ternlog<0x25, OpcodeStr, X86vpternlog, itins, _.info512>, EVEX_V512; let Predicates = [HasAVX512, HasVLX] in { - defm Z128 : avx512_ternlog<0x25, OpcodeStr, X86vpternlog, _.info128>, EVEX_V128; - defm Z256 : avx512_ternlog<0x25, OpcodeStr, X86vpternlog, _.info256>, EVEX_V256; + defm Z128 : avx512_ternlog<0x25, OpcodeStr, X86vpternlog, itins, _.info128>, EVEX_V128; + defm Z256 : avx512_ternlog<0x25, OpcodeStr, X86vpternlog, itins, _.info256>, EVEX_V256; } } -defm VPTERNLOGD : avx512_common_ternlog<"vpternlogd", avx512vl_i32_info>; -defm VPTERNLOGQ : avx512_common_ternlog<"vpternlogq", avx512vl_i64_info>, VEX_W; +defm VPTERNLOGD : avx512_common_ternlog<"vpternlogd", SSE_INTALU_ITINS_P, + avx512vl_i32_info>; +defm VPTERNLOGQ : avx512_common_ternlog<"vpternlogq", SSE_INTALU_ITINS_P, + avx512vl_i64_info>, VEX_W; //===----------------------------------------------------------------------===// // AVX-512 - FixupImm //===----------------------------------------------------------------------===// multiclass avx512_fixupimm_packed<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _>{ + OpndItins itins, X86VectorVTInfo _>{ let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in { defm rri : AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3, i32u8imm:$src4), @@ -10017,7 +10187,7 @@ multiclass avx512_fixupimm_packed<bits<8> opc, string OpcodeStr, SDNode OpNode, (_.VT _.RC:$src2), (_.IntVT _.RC:$src3), (i32 imm:$src4), - (i32 FROUND_CURRENT))>; + (i32 FROUND_CURRENT)), itins.rr>, Sched<[itins.Sched]>; defm rmi : AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.MemOp:$src3, i32u8imm:$src4), OpcodeStr##_.Suffix, "$src4, $src3, $src2", "$src2, $src3, $src4", @@ -10025,7 +10195,8 @@ multiclass avx512_fixupimm_packed<bits<8> opc, string OpcodeStr, SDNode OpNode, (_.VT _.RC:$src2), (_.IntVT (bitconvert (_.LdFrag addr:$src3))), (i32 imm:$src4), - (i32 FROUND_CURRENT))>; + (i32 FROUND_CURRENT)), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmbi : AVX512_maskable_3src<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.ScalarMemOp:$src3, i32u8imm:$src4), OpcodeStr##_.Suffix, "$src4, ${src3}"##_.BroadcastStr##", $src2", @@ -10034,12 +10205,14 @@ multiclass avx512_fixupimm_packed<bits<8> opc, string OpcodeStr, SDNode OpNode, (_.VT _.RC:$src2), (_.IntVT (X86VBroadcast(_.ScalarLdFrag addr:$src3))), (i32 imm:$src4), - (i32 FROUND_CURRENT))>, EVEX_B; + (i32 FROUND_CURRENT)), itins.rm>, + EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; } // Constraints = "$src1 = $dst" } multiclass avx512_fixupimm_packed_sae<bits<8> opc, string OpcodeStr, - SDNode OpNode, X86VectorVTInfo _>{ + SDNode OpNode, OpndItins itins, + X86VectorVTInfo _>{ let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in { defm rrib : AVX512_maskable_3src<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3, i32u8imm:$src4), @@ -10049,12 +10222,14 @@ let Constraints = "$src1 = $dst", ExeDomain = _.ExeDomain in { (_.VT _.RC:$src2), (_.IntVT _.RC:$src3), (i32 imm:$src4), - (i32 FROUND_NO_EXC))>, EVEX_B; + (i32 FROUND_NO_EXC)), itins.rr>, + EVEX_B, Sched<[itins.Sched]>; } } multiclass avx512_fixupimm_scalar<bits<8> opc, string OpcodeStr, SDNode OpNode, - X86VectorVTInfo _, X86VectorVTInfo _src3VT> { + OpndItins itins, X86VectorVTInfo _, + X86VectorVTInfo _src3VT> { let Constraints = "$src1 = $dst" , Predicates = [HasAVX512], ExeDomain = _.ExeDomain in { defm rri : AVX512_maskable_3src_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), @@ -10064,8 +10239,7 @@ multiclass avx512_fixupimm_scalar<bits<8> opc, string OpcodeStr, SDNode OpNode, (_.VT _.RC:$src2), (_src3VT.VT _src3VT.RC:$src3), (i32 imm:$src4), - (i32 FROUND_CURRENT))>; - + (i32 FROUND_CURRENT)), itins.rr>, Sched<[itins.Sched]>; defm rrib : AVX512_maskable_3src_scalar<opc, MRMSrcReg, _, (outs _.RC:$dst), (ins _.RC:$src2, _.RC:$src3, i32u8imm:$src4), OpcodeStr##_.Suffix, "$src4, {sae}, $src3, $src2", @@ -10074,7 +10248,8 @@ multiclass avx512_fixupimm_scalar<bits<8> opc, string OpcodeStr, SDNode OpNode, (_.VT _.RC:$src2), (_src3VT.VT _src3VT.RC:$src3), (i32 imm:$src4), - (i32 FROUND_NO_EXC))>, EVEX_B; + (i32 FROUND_NO_EXC)), itins.rm>, + EVEX_B, Sched<[itins.Sched.Folded, ReadAfterLd]>; defm rmi : AVX512_maskable_3src_scalar<opc, MRMSrcMem, _, (outs _.RC:$dst), (ins _.RC:$src2, _.ScalarMemOp:$src3, i32u8imm:$src4), OpcodeStr##_.Suffix, "$src4, $src3, $src2", "$src2, $src3, $src4", @@ -10083,32 +10258,34 @@ multiclass avx512_fixupimm_scalar<bits<8> opc, string OpcodeStr, SDNode OpNode, (_src3VT.VT (scalar_to_vector (_src3VT.ScalarLdFrag addr:$src3))), (i32 imm:$src4), - (i32 FROUND_CURRENT))>; + (i32 FROUND_CURRENT)), itins.rm>, + Sched<[itins.Sched.Folded, ReadAfterLd]>; } } -multiclass avx512_fixupimm_packed_all<AVX512VLVectorVTInfo _Vec>{ +multiclass avx512_fixupimm_packed_all<OpndItins itins, AVX512VLVectorVTInfo _Vec> { let Predicates = [HasAVX512] in - defm Z : avx512_fixupimm_packed<0x54, "vfixupimm", X86VFixupimm, _Vec.info512>, - avx512_fixupimm_packed_sae<0x54, "vfixupimm", X86VFixupimm, _Vec.info512>, - AVX512AIi8Base, EVEX_4V, EVEX_V512; + defm Z : avx512_fixupimm_packed<0x54, "vfixupimm", X86VFixupimm, itins, + _Vec.info512>, + avx512_fixupimm_packed_sae<0x54, "vfixupimm", X86VFixupimm, itins, + _Vec.info512>, AVX512AIi8Base, EVEX_4V, EVEX_V512; let Predicates = [HasAVX512, HasVLX] in { - defm Z128 : avx512_fixupimm_packed<0x54, "vfixupimm", X86VFixupimm, _Vec.info128>, - AVX512AIi8Base, EVEX_4V, EVEX_V128; - defm Z256 : avx512_fixupimm_packed<0x54, "vfixupimm", X86VFixupimm, _Vec.info256>, - AVX512AIi8Base, EVEX_4V, EVEX_V256; + defm Z128 : avx512_fixupimm_packed<0x54, "vfixupimm", X86VFixupimm, itins, + _Vec.info128>, AVX512AIi8Base, EVEX_4V, EVEX_V128; + defm Z256 : avx512_fixupimm_packed<0x54, "vfixupimm", X86VFixupimm, itins, + _Vec.info256>, AVX512AIi8Base, EVEX_4V, EVEX_V256; } } defm VFIXUPIMMSS : avx512_fixupimm_scalar<0x55, "vfixupimm", X86VFixupimmScalar, - f32x_info, v4i32x_info>, + SSE_ALU_F32S, f32x_info, v4i32x_info>, AVX512AIi8Base, VEX_LIG, EVEX_4V, EVEX_CD8<32, CD8VT1>; defm VFIXUPIMMSD : avx512_fixupimm_scalar<0x55, "vfixupimm", X86VFixupimmScalar, - f64x_info, v2i64x_info>, + SSE_ALU_F64S, f64x_info, v2i64x_info>, AVX512AIi8Base, VEX_LIG, EVEX_4V, EVEX_CD8<64, CD8VT1>, VEX_W; -defm VFIXUPIMMPS : avx512_fixupimm_packed_all<avx512vl_f32_info>, +defm VFIXUPIMMPS : avx512_fixupimm_packed_all<SSE_ALU_F32P, avx512vl_f32_info>, EVEX_CD8<32, CD8VF>; -defm VFIXUPIMMPD : avx512_fixupimm_packed_all<avx512vl_f64_info>, +defm VFIXUPIMMPD : avx512_fixupimm_packed_all<SSE_ALU_F64P, avx512vl_f64_info>, EVEX_CD8<64, CD8VF>, VEX_W; @@ -10164,23 +10341,11 @@ multiclass AVX512_scalar_math_f32_patterns<SDNode Op, string OpcPrefix> { (!cast<I>("V"#OpcPrefix#SSZrr_Int) v4f32:$dst, (COPY_TO_REGCLASS FR32X:$src, VR128X))>; - // extracted scalar math op with insert via blend - def : Pat<(v4f32 (X86Blendi (v4f32 VR128X:$dst), (v4f32 (scalar_to_vector - (Op (f32 (extractelt (v4f32 VR128X:$dst), (iPTR 0))), - FR32X:$src))), (i8 1))), - (!cast<I>("V"#OpcPrefix#SSZrr_Int) v4f32:$dst, - (COPY_TO_REGCLASS FR32X:$src, VR128X))>; - // vector math op with insert via movss def : Pat<(v4f32 (X86Movss (v4f32 VR128X:$dst), (Op (v4f32 VR128X:$dst), (v4f32 VR128X:$src)))), (!cast<I>("V"#OpcPrefix#SSZrr_Int) v4f32:$dst, v4f32:$src)>; - // vector math op with insert via blend - def : Pat<(v4f32 (X86Blendi (v4f32 VR128X:$dst), - (Op (v4f32 VR128X:$dst), (v4f32 VR128X:$src)), (i8 1))), - (!cast<I>("V"#OpcPrefix#SSZrr_Int) v4f32:$dst, v4f32:$src)>; - // extracted masked scalar math op with insert via movss def : Pat<(X86Movss (v4f32 VR128X:$src1), (scalar_to_vector @@ -10208,23 +10373,11 @@ multiclass AVX512_scalar_math_f64_patterns<SDNode Op, string OpcPrefix> { (!cast<I>("V"#OpcPrefix#SDZrr_Int) v2f64:$dst, (COPY_TO_REGCLASS FR64X:$src, VR128X))>; - // extracted scalar math op with insert via blend - def : Pat<(v2f64 (X86Blendi (v2f64 VR128X:$dst), (v2f64 (scalar_to_vector - (Op (f64 (extractelt (v2f64 VR128X:$dst), (iPTR 0))), - FR64X:$src))), (i8 1))), - (!cast<I>("V"#OpcPrefix#SDZrr_Int) v2f64:$dst, - (COPY_TO_REGCLASS FR64X:$src, VR128X))>; - // vector math op with insert via movsd def : Pat<(v2f64 (X86Movsd (v2f64 VR128X:$dst), (Op (v2f64 VR128X:$dst), (v2f64 VR128X:$src)))), (!cast<I>("V"#OpcPrefix#SDZrr_Int) v2f64:$dst, v2f64:$src)>; - // vector math op with insert via blend - def : Pat<(v2f64 (X86Blendi (v2f64 VR128X:$dst), - (Op (v2f64 VR128X:$dst), (v2f64 VR128X:$src)), (i8 1))), - (!cast<I>("V"#OpcPrefix#SDZrr_Int) v2f64:$dst, v2f64:$src)>; - // extracted masked scalar math op with insert via movss def : Pat<(X86Movsd (v2f64 VR128X:$src1), (scalar_to_vector @@ -10242,3 +10395,292 @@ defm : AVX512_scalar_math_f64_patterns<fadd, "ADD">; defm : AVX512_scalar_math_f64_patterns<fsub, "SUB">; defm : AVX512_scalar_math_f64_patterns<fmul, "MUL">; defm : AVX512_scalar_math_f64_patterns<fdiv, "DIV">; + +//===----------------------------------------------------------------------===// +// AES instructions +//===----------------------------------------------------------------------===// + +multiclass avx512_vaes<bits<8> Op, string OpStr, string IntPrefix> { + let Predicates = [HasVLX, HasVAES] in { + defm Z128 : AESI_binop_rm_int<Op, OpStr, + !cast<Intrinsic>(IntPrefix), + loadv2i64, 0, VR128X, i128mem>, + EVEX_4V, EVEX_CD8<64, CD8VF>, EVEX_V128, VEX_WIG; + defm Z256 : AESI_binop_rm_int<Op, OpStr, + !cast<Intrinsic>(IntPrefix##"_256"), + loadv4i64, 0, VR256X, i256mem>, + EVEX_4V, EVEX_CD8<64, CD8VF>, EVEX_V256, VEX_WIG; + } + let Predicates = [HasAVX512, HasVAES] in + defm Z : AESI_binop_rm_int<Op, OpStr, + !cast<Intrinsic>(IntPrefix##"_512"), + loadv8i64, 0, VR512, i512mem>, + EVEX_4V, EVEX_CD8<64, CD8VF>, EVEX_V512, VEX_WIG; +} + +defm VAESENC : avx512_vaes<0xDC, "vaesenc", "int_x86_aesni_aesenc">; +defm VAESENCLAST : avx512_vaes<0xDD, "vaesenclast", "int_x86_aesni_aesenclast">; +defm VAESDEC : avx512_vaes<0xDE, "vaesdec", "int_x86_aesni_aesdec">; +defm VAESDECLAST : avx512_vaes<0xDF, "vaesdeclast", "int_x86_aesni_aesdeclast">; + +//===----------------------------------------------------------------------===// +// PCLMUL instructions - Carry less multiplication +//===----------------------------------------------------------------------===// + +let Predicates = [HasAVX512, HasVPCLMULQDQ] in +defm VPCLMULQDQZ : vpclmulqdq<VR512, i512mem, loadv8i64, int_x86_pclmulqdq_512>, + EVEX_4V, EVEX_V512, EVEX_CD8<64, CD8VF>, VEX_WIG; + +let Predicates = [HasVLX, HasVPCLMULQDQ] in { +defm VPCLMULQDQZ128 : vpclmulqdq<VR128X, i128mem, loadv2i64, int_x86_pclmulqdq>, + EVEX_4V, EVEX_V128, EVEX_CD8<64, CD8VF>, VEX_WIG; + +defm VPCLMULQDQZ256: vpclmulqdq<VR256X, i256mem, loadv4i64, + int_x86_pclmulqdq_256>, EVEX_4V, EVEX_V256, + EVEX_CD8<64, CD8VF>, VEX_WIG; +} + +// Aliases +defm : vpclmulqdq_aliases<"VPCLMULQDQZ", VR512, i512mem>; +defm : vpclmulqdq_aliases<"VPCLMULQDQZ128", VR128X, i128mem>; +defm : vpclmulqdq_aliases<"VPCLMULQDQZ256", VR256X, i256mem>; + +//===----------------------------------------------------------------------===// +// VBMI2 +//===----------------------------------------------------------------------===// + +multiclass VBMI2_shift_var_rm<bits<8> Op, string OpStr, SDNode OpNode, + OpndItins itins, X86VectorVTInfo VTI> { + let Constraints = "$src1 = $dst", + ExeDomain = VTI.ExeDomain in { + defm r: AVX512_maskable_3src<Op, MRMSrcReg, VTI, (outs VTI.RC:$dst), + (ins VTI.RC:$src2, VTI.RC:$src3), OpStr, + "$src3, $src2", "$src2, $src3", + (VTI.VT (OpNode VTI.RC:$src1, VTI.RC:$src2, VTI.RC:$src3)), + itins.rr>, AVX512FMA3Base, Sched<[itins.Sched]>; + defm m: AVX512_maskable_3src<Op, MRMSrcMem, VTI, (outs VTI.RC:$dst), + (ins VTI.RC:$src2, VTI.MemOp:$src3), OpStr, + "$src3, $src2", "$src2, $src3", + (VTI.VT (OpNode VTI.RC:$src1, VTI.RC:$src2, + (VTI.VT (bitconvert (VTI.LdFrag addr:$src3))))), + itins.rm>, AVX512FMA3Base, + Sched<[itins.Sched.Folded, ReadAfterLd]>; + } +} + +multiclass VBMI2_shift_var_rmb<bits<8> Op, string OpStr, SDNode OpNode, + OpndItins itins, X86VectorVTInfo VTI> + : VBMI2_shift_var_rm<Op, OpStr, OpNode, itins, VTI> { + let Constraints = "$src1 = $dst", + ExeDomain = VTI.ExeDomain in + defm mb: AVX512_maskable_3src<Op, MRMSrcMem, VTI, (outs VTI.RC:$dst), + (ins VTI.RC:$src2, VTI.ScalarMemOp:$src3), OpStr, + "${src3}"##VTI.BroadcastStr##", $src2", + "$src2, ${src3}"##VTI.BroadcastStr, + (OpNode VTI.RC:$src1, VTI.RC:$src2, + (VTI.VT (X86VBroadcast (VTI.ScalarLdFrag addr:$src3)))), + itins.rm>, AVX512FMA3Base, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; +} + +multiclass VBMI2_shift_var_rm_common<bits<8> Op, string OpStr, SDNode OpNode, + OpndItins itins, AVX512VLVectorVTInfo VTI> { + let Predicates = [HasVBMI2] in + defm Z : VBMI2_shift_var_rm<Op, OpStr, OpNode, itins, VTI.info512>, EVEX_V512; + let Predicates = [HasVBMI2, HasVLX] in { + defm Z256 : VBMI2_shift_var_rm<Op, OpStr, OpNode, itins, VTI.info256>, EVEX_V256; + defm Z128 : VBMI2_shift_var_rm<Op, OpStr, OpNode, itins, VTI.info128>, EVEX_V128; + } +} + +multiclass VBMI2_shift_var_rmb_common<bits<8> Op, string OpStr, SDNode OpNode, + OpndItins itins, AVX512VLVectorVTInfo VTI> { + let Predicates = [HasVBMI2] in + defm Z : VBMI2_shift_var_rmb<Op, OpStr, OpNode, itins, VTI.info512>, EVEX_V512; + let Predicates = [HasVBMI2, HasVLX] in { + defm Z256 : VBMI2_shift_var_rmb<Op, OpStr, OpNode, itins, VTI.info256>, EVEX_V256; + defm Z128 : VBMI2_shift_var_rmb<Op, OpStr, OpNode, itins, VTI.info128>, EVEX_V128; + } +} +multiclass VBMI2_shift_var<bits<8> wOp, bits<8> dqOp, string Prefix, + SDNode OpNode, OpndItins itins> { + defm W : VBMI2_shift_var_rm_common<wOp, Prefix##"w", OpNode, itins, + avx512vl_i16_info>, VEX_W, EVEX_CD8<16, CD8VF>; + defm D : VBMI2_shift_var_rmb_common<dqOp, Prefix##"d", OpNode, itins, + avx512vl_i32_info>, EVEX_CD8<32, CD8VF>; + defm Q : VBMI2_shift_var_rmb_common<dqOp, Prefix##"q", OpNode, itins, + avx512vl_i64_info>, VEX_W, EVEX_CD8<64, CD8VF>; +} + +multiclass VBMI2_shift_imm<bits<8> wOp, bits<8> dqOp, string Prefix, + SDNode OpNode, OpndItins itins> { + defm W : avx512_common_3Op_rm_imm8<wOp, OpNode, Prefix##"w", itins, + avx512vl_i16_info, avx512vl_i16_info, HasVBMI2>, + VEX_W, EVEX_CD8<16, CD8VF>; + defm D : avx512_common_3Op_imm8<Prefix##"d", avx512vl_i32_info, dqOp, + OpNode, itins, HasVBMI2>, AVX512AIi8Base, EVEX_4V, EVEX_CD8<32, CD8VF>; + defm Q : avx512_common_3Op_imm8<Prefix##"q", avx512vl_i64_info, dqOp, OpNode, + itins, HasVBMI2>, AVX512AIi8Base, EVEX_4V, EVEX_CD8<64, CD8VF>, VEX_W; +} + +// Concat & Shift +defm VPSHLDV : VBMI2_shift_var<0x70, 0x71, "vpshldv", X86VShldv, SSE_INTMUL_ITINS_P>; +defm VPSHRDV : VBMI2_shift_var<0x72, 0x73, "vpshrdv", X86VShrdv, SSE_INTMUL_ITINS_P>; +defm VPSHLD : VBMI2_shift_imm<0x70, 0x71, "vpshld", X86VShld, SSE_INTMUL_ITINS_P>; +defm VPSHRD : VBMI2_shift_imm<0x72, 0x73, "vpshrd", X86VShrd, SSE_INTMUL_ITINS_P>; + +// Compress +defm VPCOMPRESSB : compress_by_elt_width<0x63, "vpcompressb", AVX512_COMPRESS, + avx512vl_i8_info, HasVBMI2>, EVEX; +defm VPCOMPRESSW : compress_by_elt_width <0x63, "vpcompressw", AVX512_COMPRESS, + avx512vl_i16_info, HasVBMI2>, EVEX, VEX_W; +// Expand +defm VPEXPANDB : expand_by_elt_width <0x62, "vpexpandb", AVX512_EXPAND, + avx512vl_i8_info, HasVBMI2>, EVEX; +defm VPEXPANDW : expand_by_elt_width <0x62, "vpexpandw", AVX512_EXPAND, + avx512vl_i16_info, HasVBMI2>, EVEX, VEX_W; + +//===----------------------------------------------------------------------===// +// VNNI +//===----------------------------------------------------------------------===// + +let Constraints = "$src1 = $dst" in +multiclass VNNI_rmb<bits<8> Op, string OpStr, SDNode OpNode, + OpndItins itins, X86VectorVTInfo VTI> { + defm r : AVX512_maskable_3src<Op, MRMSrcReg, VTI, (outs VTI.RC:$dst), + (ins VTI.RC:$src2, VTI.RC:$src3), OpStr, + "$src3, $src2", "$src2, $src3", + (VTI.VT (OpNode VTI.RC:$src1, + VTI.RC:$src2, VTI.RC:$src3)), + itins.rr>, EVEX_4V, T8PD, Sched<[itins.Sched]>; + defm m : AVX512_maskable_3src<Op, MRMSrcMem, VTI, (outs VTI.RC:$dst), + (ins VTI.RC:$src2, VTI.MemOp:$src3), OpStr, + "$src3, $src2", "$src2, $src3", + (VTI.VT (OpNode VTI.RC:$src1, VTI.RC:$src2, + (VTI.VT (bitconvert + (VTI.LdFrag addr:$src3))))), + itins.rm>, EVEX_4V, EVEX_CD8<32, CD8VF>, T8PD, + Sched<[itins.Sched.Folded, ReadAfterLd]>; + defm mb : AVX512_maskable_3src<Op, MRMSrcMem, VTI, (outs VTI.RC:$dst), + (ins VTI.RC:$src2, VTI.ScalarMemOp:$src3), + OpStr, "${src3}"##VTI.BroadcastStr##", $src2", + "$src2, ${src3}"##VTI.BroadcastStr, + (OpNode VTI.RC:$src1, VTI.RC:$src2, + (VTI.VT (X86VBroadcast + (VTI.ScalarLdFrag addr:$src3)))), + itins.rm>, EVEX_4V, EVEX_CD8<32, CD8VF>, EVEX_B, + T8PD, Sched<[itins.Sched.Folded, ReadAfterLd]>; +} + +multiclass VNNI_common<bits<8> Op, string OpStr, SDNode OpNode, OpndItins itins> { + let Predicates = [HasVNNI] in + defm Z : VNNI_rmb<Op, OpStr, OpNode, itins, v16i32_info>, EVEX_V512; + let Predicates = [HasVNNI, HasVLX] in { + defm Z256 : VNNI_rmb<Op, OpStr, OpNode, itins, v8i32x_info>, EVEX_V256; + defm Z128 : VNNI_rmb<Op, OpStr, OpNode, itins, v4i32x_info>, EVEX_V128; + } +} + +// FIXME: Is there a better scheduler itinerary for VPDP? +defm VPDPBUSD : VNNI_common<0x50, "vpdpbusd", X86Vpdpbusd, SSE_PMADD>; +defm VPDPBUSDS : VNNI_common<0x51, "vpdpbusds", X86Vpdpbusds, SSE_PMADD>; +defm VPDPWSSD : VNNI_common<0x52, "vpdpwssd", X86Vpdpwssd, SSE_PMADD>; +defm VPDPWSSDS : VNNI_common<0x53, "vpdpwssds", X86Vpdpwssds, SSE_PMADD>; + +//===----------------------------------------------------------------------===// +// Bit Algorithms +//===----------------------------------------------------------------------===// + +// FIXME: Is there a better scheduler itinerary for VPOPCNTB/VPOPCNTW? +defm VPOPCNTB : avx512_unary_rm_vl<0x54, "vpopcntb", ctpop, SSE_INTALU_ITINS_P, + avx512vl_i8_info, HasBITALG>; +defm VPOPCNTW : avx512_unary_rm_vl<0x54, "vpopcntw", ctpop, SSE_INTALU_ITINS_P, + avx512vl_i16_info, HasBITALG>, VEX_W; + +defm : avx512_unary_lowering<"VPOPCNTB", ctpop, avx512vl_i8_info, HasBITALG>; +defm : avx512_unary_lowering<"VPOPCNTW", ctpop, avx512vl_i16_info, HasBITALG>; + +multiclass VPSHUFBITQMB_rm<OpndItins itins, X86VectorVTInfo VTI> { + defm rr : AVX512_maskable_cmp<0x8F, MRMSrcReg, VTI, (outs VTI.KRC:$dst), + (ins VTI.RC:$src1, VTI.RC:$src2), + "vpshufbitqmb", + "$src2, $src1", "$src1, $src2", + (X86Vpshufbitqmb (VTI.VT VTI.RC:$src1), + (VTI.VT VTI.RC:$src2)), itins.rr>, EVEX_4V, T8PD, + Sched<[itins.Sched]>; + defm rm : AVX512_maskable_cmp<0x8F, MRMSrcMem, VTI, (outs VTI.KRC:$dst), + (ins VTI.RC:$src1, VTI.MemOp:$src2), + "vpshufbitqmb", + "$src2, $src1", "$src1, $src2", + (X86Vpshufbitqmb (VTI.VT VTI.RC:$src1), + (VTI.VT (bitconvert (VTI.LdFrag addr:$src2)))), + itins.rm>, EVEX_4V, EVEX_CD8<8, CD8VF>, T8PD, + Sched<[itins.Sched.Folded, ReadAfterLd]>; +} + +multiclass VPSHUFBITQMB_common<OpndItins itins, AVX512VLVectorVTInfo VTI> { + let Predicates = [HasBITALG] in + defm Z : VPSHUFBITQMB_rm<itins, VTI.info512>, EVEX_V512; + let Predicates = [HasBITALG, HasVLX] in { + defm Z256 : VPSHUFBITQMB_rm<itins, VTI.info256>, EVEX_V256; + defm Z128 : VPSHUFBITQMB_rm<itins, VTI.info128>, EVEX_V128; + } +} + +// FIXME: Is there a better scheduler itinerary for VPSHUFBITQMB? +defm VPSHUFBITQMB : VPSHUFBITQMB_common<SSE_INTMUL_ITINS_P, avx512vl_i8_info>; + +//===----------------------------------------------------------------------===// +// GFNI +//===----------------------------------------------------------------------===// + +multiclass GF2P8MULB_avx512_common<bits<8> Op, string OpStr, SDNode OpNode> { + let Predicates = [HasGFNI, HasAVX512, HasBWI] in + defm Z : avx512_binop_rm<Op, OpStr, OpNode, v64i8_info, + SSE_INTALU_ITINS_P, 1>, EVEX_V512; + let Predicates = [HasGFNI, HasVLX, HasBWI] in { + defm Z256 : avx512_binop_rm<Op, OpStr, OpNode, v32i8x_info, + SSE_INTALU_ITINS_P, 1>, EVEX_V256; + defm Z128 : avx512_binop_rm<Op, OpStr, OpNode, v16i8x_info, + SSE_INTALU_ITINS_P, 1>, EVEX_V128; + } +} + +defm GF2P8MULB : GF2P8MULB_avx512_common<0xCF, "vgf2p8mulb", X86GF2P8mulb>, + EVEX_CD8<8, CD8VF>, T8PD; + +multiclass GF2P8AFFINE_avx512_rmb_imm<bits<8> Op, string OpStr, SDNode OpNode, + OpndItins itins, X86VectorVTInfo VTI, + X86VectorVTInfo BcstVTI> + : avx512_3Op_rm_imm8<Op, OpStr, OpNode, itins, VTI, VTI> { + let ExeDomain = VTI.ExeDomain in + defm rmbi : AVX512_maskable<Op, MRMSrcMem, VTI, (outs VTI.RC:$dst), + (ins VTI.RC:$src1, VTI.ScalarMemOp:$src2, u8imm:$src3), + OpStr, "$src3, ${src2}"##BcstVTI.BroadcastStr##", $src1", + "$src1, ${src2}"##BcstVTI.BroadcastStr##", $src3", + (OpNode (VTI.VT VTI.RC:$src1), + (bitconvert (BcstVTI.VT (X86VBroadcast (loadi64 addr:$src2)))), + (i8 imm:$src3)), itins.rm>, EVEX_B, + Sched<[itins.Sched.Folded, ReadAfterLd]>; +} + +multiclass GF2P8AFFINE_avx512_common<bits<8> Op, string OpStr, SDNode OpNode, + OpndItins itins> { + let Predicates = [HasGFNI, HasAVX512, HasBWI] in + defm Z : GF2P8AFFINE_avx512_rmb_imm<Op, OpStr, OpNode, itins, v64i8_info, + v8i64_info>, EVEX_V512; + let Predicates = [HasGFNI, HasVLX, HasBWI] in { + defm Z256 : GF2P8AFFINE_avx512_rmb_imm<Op, OpStr, OpNode, itins, v32i8x_info, + v4i64x_info>, EVEX_V256; + defm Z128 : GF2P8AFFINE_avx512_rmb_imm<Op, OpStr, OpNode, itins, v16i8x_info, + v2i64x_info>, EVEX_V128; + } +} + +defm GF2P8AFFINEINVQB : GF2P8AFFINE_avx512_common<0xCF, "vgf2p8affineinvqb", + X86GF2P8affineinvqb, SSE_INTMUL_ITINS_P>, + EVEX_4V, EVEX_CD8<8, CD8VF>, VEX_W, AVX512AIi8Base; +defm GF2P8AFFINEQB : GF2P8AFFINE_avx512_common<0xCE, "vgf2p8affineqb", + X86GF2P8affineqb, SSE_INTMUL_ITINS_P>, + EVEX_4V, EVEX_CD8<8, CD8VF>, VEX_W, AVX512AIi8Base; + |
