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Valery Pykhtin355103f2016-09-23 09:08:07 +00001//===-- VOP2Instructions.td - Vector Instruction Defintions ---------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9
10//===----------------------------------------------------------------------===//
11// VOP2 Classes
12//===----------------------------------------------------------------------===//
13
14class VOP2e <bits<6> op, VOPProfile P> : Enc32 {
15 bits<8> vdst;
16 bits<9> src0;
17 bits<8> src1;
18
19 let Inst{8-0} = !if(P.HasSrc0, src0, 0);
20 let Inst{16-9} = !if(P.HasSrc1, src1, 0);
21 let Inst{24-17} = !if(P.EmitDst, vdst, 0);
22 let Inst{30-25} = op;
23 let Inst{31} = 0x0; //encoding
24}
25
26class VOP2_MADKe <bits<6> op, VOPProfile P> : Enc64 {
27 bits<8> vdst;
28 bits<9> src0;
29 bits<8> src1;
30 bits<32> imm;
31
32 let Inst{8-0} = !if(P.HasSrc0, src0, 0);
33 let Inst{16-9} = !if(P.HasSrc1, src1, 0);
34 let Inst{24-17} = !if(P.EmitDst, vdst, 0);
35 let Inst{30-25} = op;
36 let Inst{31} = 0x0; // encoding
37 let Inst{63-32} = imm;
38}
39
Sam Koltona568e3d2016-12-22 12:57:41 +000040class VOP2_SDWAe <bits<6> op, VOPProfile P> : VOP_SDWAe <P> {
41 bits<8> vdst;
42 bits<8> src1;
43
44 let Inst{8-0} = 0xf9; // sdwa
45 let Inst{16-9} = !if(P.HasSrc1, src1{7-0}, 0);
46 let Inst{24-17} = !if(P.EmitDst, vdst{7-0}, 0);
47 let Inst{30-25} = op;
48 let Inst{31} = 0x0; // encoding
49}
50
Valery Pykhtin355103f2016-09-23 09:08:07 +000051class VOP2_Pseudo <string opName, VOPProfile P, list<dag> pattern=[], string suffix = "_e32"> :
52 InstSI <P.Outs32, P.Ins32, "", pattern>,
53 VOP <opName>,
54 SIMCInstr <opName#suffix, SIEncodingFamily.NONE>,
55 MnemonicAlias<opName#suffix, opName> {
56
57 let isPseudo = 1;
58 let isCodeGenOnly = 1;
59 let UseNamedOperandTable = 1;
60
61 string Mnemonic = opName;
62 string AsmOperands = P.Asm32;
63
64 let Size = 4;
65 let mayLoad = 0;
66 let mayStore = 0;
67 let hasSideEffects = 0;
68 let SubtargetPredicate = isGCN;
69
70 let VOP2 = 1;
71 let VALU = 1;
72 let Uses = [EXEC];
73
74 let AsmVariantName = AMDGPUAsmVariants.Default;
75
76 VOPProfile Pfl = P;
77}
78
79class VOP2_Real <VOP2_Pseudo ps, int EncodingFamily> :
80 InstSI <ps.OutOperandList, ps.InOperandList, ps.Mnemonic # ps.AsmOperands, []>,
81 SIMCInstr <ps.PseudoInstr, EncodingFamily> {
82
83 let isPseudo = 0;
84 let isCodeGenOnly = 0;
85
Sam Koltona6792a32016-12-22 11:30:48 +000086 let Constraints = ps.Constraints;
87 let DisableEncoding = ps.DisableEncoding;
88
Valery Pykhtin355103f2016-09-23 09:08:07 +000089 // copy relevant pseudo op flags
90 let SubtargetPredicate = ps.SubtargetPredicate;
91 let AsmMatchConverter = ps.AsmMatchConverter;
92 let AsmVariantName = ps.AsmVariantName;
93 let Constraints = ps.Constraints;
94 let DisableEncoding = ps.DisableEncoding;
95 let TSFlags = ps.TSFlags;
96}
97
Sam Koltona568e3d2016-12-22 12:57:41 +000098class VOP2_SDWA_Pseudo <string OpName, VOPProfile P, list<dag> pattern=[]> :
99 VOP_SDWA_Pseudo <OpName, P, pattern> {
100 let AsmMatchConverter = "cvtSdwaVOP2";
101}
102
Valery Pykhtin355103f2016-09-23 09:08:07 +0000103class getVOP2Pat64 <SDPatternOperator node, VOPProfile P> : LetDummies {
104 list<dag> ret = !if(P.HasModifiers,
105 [(set P.DstVT:$vdst,
106 (node (P.Src0VT (VOP3Mods0 P.Src0VT:$src0, i32:$src0_modifiers, i1:$clamp, i32:$omod)),
107 (P.Src1VT (VOP3Mods P.Src1VT:$src1, i32:$src1_modifiers))))],
108 [(set P.DstVT:$vdst, (node P.Src0VT:$src0, P.Src1VT:$src1))]);
109}
110
111multiclass VOP2Inst <string opName,
112 VOPProfile P,
113 SDPatternOperator node = null_frag,
114 string revOp = opName> {
115
116 def _e32 : VOP2_Pseudo <opName, P>,
117 Commutable_REV<revOp#"_e32", !eq(revOp, opName)>;
118
119 def _e64 : VOP3_Pseudo <opName, P, getVOP2Pat64<node, P>.ret>,
120 Commutable_REV<revOp#"_e64", !eq(revOp, opName)>;
Sam Koltona568e3d2016-12-22 12:57:41 +0000121
122 def _sdwa : VOP2_SDWA_Pseudo <opName, P>,
123 Commutable_REV<revOp#"_sdwa", !eq(revOp, opName)>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000124}
125
Sam Koltona568e3d2016-12-22 12:57:41 +0000126// TODO: add SDWA pseudo instructions for VOP2bInst and VOP2eInst
Valery Pykhtin355103f2016-09-23 09:08:07 +0000127multiclass VOP2bInst <string opName,
128 VOPProfile P,
129 SDPatternOperator node = null_frag,
130 string revOp = opName,
131 bit useSGPRInput = !eq(P.NumSrcArgs, 3)> {
132
133 let SchedRW = [Write32Bit, WriteSALU] in {
134 let Uses = !if(useSGPRInput, [VCC, EXEC], [EXEC]), Defs = [VCC] in {
135 def _e32 : VOP2_Pseudo <opName, P>,
136 Commutable_REV<revOp#"_e32", !eq(revOp, opName)>;
Sam Koltone66365e2016-12-27 10:06:42 +0000137
138 def _sdwa : VOP2_SDWA_Pseudo <opName, P>,
139 Commutable_REV<revOp#"_sdwa", !eq(revOp, opName)>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000140 }
141 def _e64 : VOP3_Pseudo <opName, P, getVOP2Pat64<node, P>.ret>,
142 Commutable_REV<revOp#"_e64", !eq(revOp, opName)>;
143 }
144}
145
146multiclass VOP2eInst <string opName,
147 VOPProfile P,
148 SDPatternOperator node = null_frag,
149 string revOp = opName,
150 bit useSGPRInput = !eq(P.NumSrcArgs, 3)> {
151
152 let SchedRW = [Write32Bit] in {
153 let Uses = !if(useSGPRInput, [VCC, EXEC], [EXEC]) in {
154 def _e32 : VOP2_Pseudo <opName, P>,
155 Commutable_REV<revOp#"_e32", !eq(revOp, opName)>;
156 }
157 def _e64 : VOP3_Pseudo <opName, P, getVOP2Pat64<node, P>.ret>,
158 Commutable_REV<revOp#"_e64", !eq(revOp, opName)>;
159 }
160}
161
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000162class VOP_MADAK <ValueType vt> : VOPProfile <[vt, vt, vt, vt]> {
Matt Arsenault4bd72362016-12-10 00:39:12 +0000163 field Operand ImmOpType = !if(!eq(vt.Size, 32), f32kimm, f16kimm);
164 field dag Ins32 = (ins VCSrc_f32:$src0, VGPR_32:$src1, ImmOpType:$imm);
Valery Pykhtin355103f2016-09-23 09:08:07 +0000165 field string Asm32 = "$vdst, $src0, $src1, $imm";
166 field bit HasExt = 0;
167}
168
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000169def VOP_MADAK_F16 : VOP_MADAK <f16>;
170def VOP_MADAK_F32 : VOP_MADAK <f32>;
171
172class VOP_MADMK <ValueType vt> : VOPProfile <[vt, vt, vt, vt]> {
Matt Arsenault4bd72362016-12-10 00:39:12 +0000173 field Operand ImmOpType = !if(!eq(vt.Size, 32), f32kimm, f16kimm);
174 field dag Ins32 = (ins VCSrc_f32:$src0, ImmOpType:$imm, VGPR_32:$src1);
Valery Pykhtin355103f2016-09-23 09:08:07 +0000175 field string Asm32 = "$vdst, $src0, $imm, $src1";
176 field bit HasExt = 0;
177}
178
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000179def VOP_MADMK_F16 : VOP_MADMK <f16>;
180def VOP_MADMK_F32 : VOP_MADMK <f32>;
181
182class VOP_MAC <ValueType vt> : VOPProfile <[vt, vt, vt, vt]> {
Valery Pykhtin355103f2016-09-23 09:08:07 +0000183 let Ins32 = (ins Src0RC32:$src0, Src1RC32:$src1, VGPR_32:$src2);
184 let Ins64 = getIns64<Src0RC64, Src1RC64, RegisterOperand<VGPR_32>, 3,
185 HasModifiers, Src0Mod, Src1Mod, Src2Mod>.ret;
Sam Koltona6792a32016-12-22 11:30:48 +0000186 let InsDPP = (ins FP32InputMods:$src0_modifiers, Src0DPP:$src0,
187 FP32InputMods:$src1_modifiers, Src1DPP:$src1,
Valery Pykhtin355103f2016-09-23 09:08:07 +0000188 VGPR_32:$src2, // stub argument
189 dpp_ctrl:$dpp_ctrl, row_mask:$row_mask,
190 bank_mask:$bank_mask, bound_ctrl:$bound_ctrl);
Sam Koltona6792a32016-12-22 11:30:48 +0000191 let InsSDWA = (ins FP32InputMods:$src0_modifiers, Src0SDWA:$src0,
192 FP32InputMods:$src1_modifiers, Src1SDWA:$src1,
Valery Pykhtin355103f2016-09-23 09:08:07 +0000193 VGPR_32:$src2, // stub argument
194 clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused,
195 src0_sel:$src0_sel, src1_sel:$src1_sel);
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000196 let Asm32 = getAsm32<1, 2, vt>.ret;
197 let AsmDPP = getAsmDPP<1, 2, HasModifiers, vt>.ret;
198 let AsmSDWA = getAsmSDWA<1, 2, HasModifiers, vt>.ret;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000199 let HasSrc2 = 0;
200 let HasSrc2Mods = 0;
Sam Koltona3ec5c12016-10-07 14:46:06 +0000201 let HasExt = 1;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000202}
203
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000204def VOP_MAC_F16 : VOP_MAC <f16> {
205 // FIXME: Move 'Asm64' definition to VOP_MAC, and use 'vt'. Currently it gives
206 // 'not a string initializer' error.
207 let Asm64 = getAsm64<1, 2, HasModifiers, f16>.ret;
208}
209
210def VOP_MAC_F32 : VOP_MAC <f32> {
211 // FIXME: Move 'Asm64' definition to VOP_MAC, and use 'vt'. Currently it gives
212 // 'not a string initializer' error.
213 let Asm64 = getAsm64<1, 2, HasModifiers, f32>.ret;
214}
215
Valery Pykhtin355103f2016-09-23 09:08:07 +0000216// Write out to vcc or arbitrary SGPR.
217def VOP2b_I32_I1_I32_I32 : VOPProfile<[i32, i32, i32, untyped]> {
218 let Asm32 = "$vdst, vcc, $src0, $src1";
219 let Asm64 = "$vdst, $sdst, $src0, $src1";
Sam Koltone66365e2016-12-27 10:06:42 +0000220 let AsmSDWA = "$vdst, vcc, $src0_modifiers, $src1_modifiers$clamp $dst_sel $dst_unused $src0_sel $src1_sel";
221 let AsmDPP = "$vdst, vcc, $src0, $src1 $dpp_ctrl$row_mask$bank_mask$bound_ctrl";
Valery Pykhtin355103f2016-09-23 09:08:07 +0000222 let Outs32 = (outs DstRC:$vdst);
223 let Outs64 = (outs DstRC:$vdst, SReg_64:$sdst);
224}
225
226// Write out to vcc or arbitrary SGPR and read in from vcc or
227// arbitrary SGPR.
228def VOP2b_I32_I1_I32_I32_I1 : VOPProfile<[i32, i32, i32, i1]> {
229 // We use VCSrc_b32 to exclude literal constants, even though the
230 // encoding normally allows them since the implicit VCC use means
231 // using one would always violate the constant bus
232 // restriction. SGPRs are still allowed because it should
233 // technically be possible to use VCC again as src0.
234 let Src0RC32 = VCSrc_b32;
235 let Asm32 = "$vdst, vcc, $src0, $src1, vcc";
236 let Asm64 = "$vdst, $sdst, $src0, $src1, $src2";
Sam Koltone66365e2016-12-27 10:06:42 +0000237 let AsmSDWA = "$vdst, vcc, $src0_modifiers, $src1_modifiers, vcc $clamp $dst_sel $dst_unused $src0_sel $src1_sel";
238 let AsmDPP = "$vdst, vcc, $src0, $src1, vcc $dpp_ctrl$row_mask$bank_mask$bound_ctrl";
Valery Pykhtin355103f2016-09-23 09:08:07 +0000239 let Outs32 = (outs DstRC:$vdst);
240 let Outs64 = (outs DstRC:$vdst, SReg_64:$sdst);
241
242 // Suppress src2 implied by type since the 32-bit encoding uses an
243 // implicit VCC use.
244 let Ins32 = (ins Src0RC32:$src0, Src1RC32:$src1);
Sam Koltone66365e2016-12-27 10:06:42 +0000245
246 let InsSDWA = (ins Src0Mod:$src0_modifiers, Src0SDWA:$src0,
247 Src1Mod:$src1_modifiers, Src1SDWA:$src1,
248 clampmod:$clamp, dst_sel:$dst_sel, dst_unused:$dst_unused,
249 src0_sel:$src0_sel, src1_sel:$src1_sel);
250
251 let InsDPP = (ins Src0Mod:$src0_modifiers, Src0DPP:$src0,
252 Src1Mod:$src1_modifiers, Src1DPP:$src1,
253 dpp_ctrl:$dpp_ctrl, row_mask:$row_mask,
254 bank_mask:$bank_mask, bound_ctrl:$bound_ctrl);
255 let HasExt = 1;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000256}
257
258// Read in from vcc or arbitrary SGPR
259def VOP2e_I32_I32_I32_I1 : VOPProfile<[i32, i32, i32, i1]> {
260 let Src0RC32 = VCSrc_b32; // See comment in def VOP2b_I32_I1_I32_I32_I1 above.
261 let Asm32 = "$vdst, $src0, $src1, vcc";
262 let Asm64 = "$vdst, $src0, $src1, $src2";
263 let Outs32 = (outs DstRC:$vdst);
264 let Outs64 = (outs DstRC:$vdst);
265
266 // Suppress src2 implied by type since the 32-bit encoding uses an
267 // implicit VCC use.
268 let Ins32 = (ins Src0RC32:$src0, Src1RC32:$src1);
269}
270
271def VOP_READLANE : VOPProfile<[i32, i32, i32]> {
272 let Outs32 = (outs SReg_32:$vdst);
273 let Outs64 = Outs32;
274 let Ins32 = (ins VGPR_32:$src0, SCSrc_b32:$src1);
275 let Ins64 = Ins32;
276 let Asm32 = " $vdst, $src0, $src1";
277 let Asm64 = Asm32;
278}
279
280def VOP_WRITELANE : VOPProfile<[i32, i32, i32]> {
281 let Outs32 = (outs VGPR_32:$vdst);
282 let Outs64 = Outs32;
283 let Ins32 = (ins SReg_32:$src0, SCSrc_b32:$src1);
284 let Ins64 = Ins32;
285 let Asm32 = " $vdst, $src0, $src1";
286 let Asm64 = Asm32;
287}
288
289//===----------------------------------------------------------------------===//
290// VOP2 Instructions
291//===----------------------------------------------------------------------===//
292
293let SubtargetPredicate = isGCN in {
294
295defm V_CNDMASK_B32 : VOP2eInst <"v_cndmask_b32", VOP2e_I32_I32_I32_I1>;
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000296def V_MADMK_F32 : VOP2_Pseudo <"v_madmk_f32", VOP_MADMK_F32>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000297
298let isCommutable = 1 in {
299defm V_ADD_F32 : VOP2Inst <"v_add_f32", VOP_F32_F32_F32, fadd>;
300defm V_SUB_F32 : VOP2Inst <"v_sub_f32", VOP_F32_F32_F32, fsub>;
301defm V_SUBREV_F32 : VOP2Inst <"v_subrev_f32", VOP_F32_F32_F32, null_frag, "v_sub_f32">;
302defm V_MUL_LEGACY_F32 : VOP2Inst <"v_mul_legacy_f32", VOP_F32_F32_F32, AMDGPUfmul_legacy>;
303defm V_MUL_F32 : VOP2Inst <"v_mul_f32", VOP_F32_F32_F32, fmul>;
304defm V_MUL_I32_I24 : VOP2Inst <"v_mul_i32_i24", VOP_I32_I32_I32, AMDGPUmul_i24>;
305defm V_MUL_HI_I32_I24 : VOP2Inst <"v_mul_hi_i32_i24", VOP_I32_I32_I32, AMDGPUmulhi_i24>;
306defm V_MUL_U32_U24 : VOP2Inst <"v_mul_u32_u24", VOP_I32_I32_I32, AMDGPUmul_u24>;
307defm V_MUL_HI_U32_U24 : VOP2Inst <"v_mul_hi_u32_u24", VOP_I32_I32_I32, AMDGPUmulhi_u24>;
308defm V_MIN_F32 : VOP2Inst <"v_min_f32", VOP_F32_F32_F32, fminnum>;
309defm V_MAX_F32 : VOP2Inst <"v_max_f32", VOP_F32_F32_F32, fmaxnum>;
310defm V_MIN_I32 : VOP2Inst <"v_min_i32", VOP_I32_I32_I32>;
311defm V_MAX_I32 : VOP2Inst <"v_max_i32", VOP_I32_I32_I32>;
312defm V_MIN_U32 : VOP2Inst <"v_min_u32", VOP_I32_I32_I32>;
313defm V_MAX_U32 : VOP2Inst <"v_max_u32", VOP_I32_I32_I32>;
314defm V_LSHRREV_B32 : VOP2Inst <"v_lshrrev_b32", VOP_I32_I32_I32, null_frag, "v_lshr_b32">;
315defm V_ASHRREV_I32 : VOP2Inst <"v_ashrrev_i32", VOP_I32_I32_I32, null_frag, "v_ashr_i32">;
316defm V_LSHLREV_B32 : VOP2Inst <"v_lshlrev_b32", VOP_I32_I32_I32, null_frag, "v_lshl_b32">;
317defm V_AND_B32 : VOP2Inst <"v_and_b32", VOP_I32_I32_I32>;
318defm V_OR_B32 : VOP2Inst <"v_or_b32", VOP_I32_I32_I32>;
319defm V_XOR_B32 : VOP2Inst <"v_xor_b32", VOP_I32_I32_I32>;
320
321let Constraints = "$vdst = $src2", DisableEncoding="$src2",
322 isConvertibleToThreeAddress = 1 in {
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000323defm V_MAC_F32 : VOP2Inst <"v_mac_f32", VOP_MAC_F32>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000324}
325
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000326def V_MADAK_F32 : VOP2_Pseudo <"v_madak_f32", VOP_MADAK_F32>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000327
328// No patterns so that the scalar instructions are always selected.
329// The scalar versions will be replaced with vector when needed later.
330
331// V_ADD_I32, V_SUB_I32, and V_SUBREV_I32 where renamed to *_U32 in VI,
332// but the VI instructions behave the same as the SI versions.
333defm V_ADD_I32 : VOP2bInst <"v_add_i32", VOP2b_I32_I1_I32_I32>;
334defm V_SUB_I32 : VOP2bInst <"v_sub_i32", VOP2b_I32_I1_I32_I32>;
335defm V_SUBREV_I32 : VOP2bInst <"v_subrev_i32", VOP2b_I32_I1_I32_I32, null_frag, "v_sub_i32">;
336defm V_ADDC_U32 : VOP2bInst <"v_addc_u32", VOP2b_I32_I1_I32_I32_I1>;
337defm V_SUBB_U32 : VOP2bInst <"v_subb_u32", VOP2b_I32_I1_I32_I32_I1>;
338defm V_SUBBREV_U32 : VOP2bInst <"v_subbrev_u32", VOP2b_I32_I1_I32_I32_I1, null_frag, "v_subb_u32">;
339} // End isCommutable = 1
340
341// These are special and do not read the exec mask.
342let isConvergent = 1, Uses = []<Register> in {
343def V_READLANE_B32 : VOP2_Pseudo<"v_readlane_b32", VOP_READLANE,
344 [(set i32:$vdst, (int_amdgcn_readlane i32:$src0, i32:$src1))], "">;
345
346def V_WRITELANE_B32 : VOP2_Pseudo<"v_writelane_b32", VOP_WRITELANE, [], "">;
347} // End isConvergent = 1
348
349defm V_BFM_B32 : VOP2Inst <"v_bfm_b32", VOP_I32_I32_I32>;
350defm V_BCNT_U32_B32 : VOP2Inst <"v_bcnt_u32_b32", VOP_I32_I32_I32>;
351defm V_MBCNT_LO_U32_B32 : VOP2Inst <"v_mbcnt_lo_u32_b32", VOP_I32_I32_I32, int_amdgcn_mbcnt_lo>;
352defm V_MBCNT_HI_U32_B32 : VOP2Inst <"v_mbcnt_hi_u32_b32", VOP_I32_I32_I32, int_amdgcn_mbcnt_hi>;
353defm V_LDEXP_F32 : VOP2Inst <"v_ldexp_f32", VOP_F32_F32_I32, AMDGPUldexp>;
354defm V_CVT_PKACCUM_U8_F32 : VOP2Inst <"v_cvt_pkaccum_u8_f32", VOP_I32_F32_I32>; // TODO: set "Uses = dst"
355defm V_CVT_PKNORM_I16_F32 : VOP2Inst <"v_cvt_pknorm_i16_f32", VOP_I32_F32_F32>;
356defm V_CVT_PKNORM_U16_F32 : VOP2Inst <"v_cvt_pknorm_u16_f32", VOP_I32_F32_F32>;
357defm V_CVT_PKRTZ_F16_F32 : VOP2Inst <"v_cvt_pkrtz_f16_f32", VOP_I32_F32_F32, int_SI_packf16>;
358defm V_CVT_PK_U16_U32 : VOP2Inst <"v_cvt_pk_u16_u32", VOP_I32_I32_I32>;
359defm V_CVT_PK_I16_I32 : VOP2Inst <"v_cvt_pk_i16_i32", VOP_I32_I32_I32>;
360
361} // End SubtargetPredicate = isGCN
362
363
364// These instructions only exist on SI and CI
365let SubtargetPredicate = isSICI in {
366
367defm V_MIN_LEGACY_F32 : VOP2Inst <"v_min_legacy_f32", VOP_F32_F32_F32, AMDGPUfmin_legacy>;
368defm V_MAX_LEGACY_F32 : VOP2Inst <"v_max_legacy_f32", VOP_F32_F32_F32, AMDGPUfmax_legacy>;
369
370let isCommutable = 1 in {
371defm V_MAC_LEGACY_F32 : VOP2Inst <"v_mac_legacy_f32", VOP_F32_F32_F32>;
372defm V_LSHR_B32 : VOP2Inst <"v_lshr_b32", VOP_I32_I32_I32>;
373defm V_ASHR_I32 : VOP2Inst <"v_ashr_i32", VOP_I32_I32_I32>;
374defm V_LSHL_B32 : VOP2Inst <"v_lshl_b32", VOP_I32_I32_I32>;
375} // End isCommutable = 1
376
377} // End let SubtargetPredicate = SICI
378
379let SubtargetPredicate = isVI in {
380
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000381def V_MADMK_F16 : VOP2_Pseudo <"v_madmk_f16", VOP_MADMK_F16>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000382defm V_LSHLREV_B16 : VOP2Inst <"v_lshlrev_b16", VOP_I16_I16_I16>;
383defm V_LSHRREV_B16 : VOP2Inst <"v_lshrrev_b16", VOP_I16_I16_I16>;
Matt Arsenault55e7d652016-12-16 17:40:11 +0000384defm V_ASHRREV_I16 : VOP2Inst <"v_ashrrev_i16", VOP_I16_I16_I16>;
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000385defm V_LDEXP_F16 : VOP2Inst <"v_ldexp_f16", VOP_F16_F16_I32, AMDGPUldexp>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000386
387let isCommutable = 1 in {
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000388defm V_ADD_F16 : VOP2Inst <"v_add_f16", VOP_F16_F16_F16, fadd>;
389defm V_SUB_F16 : VOP2Inst <"v_sub_f16", VOP_F16_F16_F16, fsub>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000390defm V_SUBREV_F16 : VOP2Inst <"v_subrev_f16", VOP_F16_F16_F16, null_frag, "v_sub_f16">;
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000391defm V_MUL_F16 : VOP2Inst <"v_mul_f16", VOP_F16_F16_F16, fmul>;
392def V_MADAK_F16 : VOP2_Pseudo <"v_madak_f16", VOP_MADAK_F16>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000393defm V_ADD_U16 : VOP2Inst <"v_add_u16", VOP_I16_I16_I16>;
394defm V_SUB_U16 : VOP2Inst <"v_sub_u16" , VOP_I16_I16_I16>;
Matt Arsenault6c06a6f2016-12-08 19:52:38 +0000395defm V_SUBREV_U16 : VOP2Inst <"v_subrev_u16", VOP_I16_I16_I16, null_frag, "v_sub_u16">;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000396defm V_MUL_LO_U16 : VOP2Inst <"v_mul_lo_u16", VOP_I16_I16_I16>;
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000397defm V_MAX_F16 : VOP2Inst <"v_max_f16", VOP_F16_F16_F16, fmaxnum>;
398defm V_MIN_F16 : VOP2Inst <"v_min_f16", VOP_F16_F16_F16, fminnum>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000399defm V_MAX_U16 : VOP2Inst <"v_max_u16", VOP_I16_I16_I16>;
400defm V_MAX_I16 : VOP2Inst <"v_max_i16", VOP_I16_I16_I16>;
401defm V_MIN_U16 : VOP2Inst <"v_min_u16", VOP_I16_I16_I16>;
402defm V_MIN_I16 : VOP2Inst <"v_min_i16", VOP_I16_I16_I16>;
Konstantin Zhuravlyovf86e4b72016-11-13 07:01:11 +0000403
404let Constraints = "$vdst = $src2", DisableEncoding="$src2",
405 isConvertibleToThreeAddress = 1 in {
406defm V_MAC_F16 : VOP2Inst <"v_mac_f16", VOP_MAC_F16>;
407}
Valery Pykhtin355103f2016-09-23 09:08:07 +0000408} // End isCommutable = 1
409
410} // End SubtargetPredicate = isVI
411
Tom Stellard115a6152016-11-10 16:02:37 +0000412// Note: 16-bit instructions produce a 0 result in the high 16-bits.
413multiclass Arithmetic_i16_Pats <SDPatternOperator op, Instruction inst> {
414
415def : Pat<
416 (op i16:$src0, i16:$src1),
417 (inst $src0, $src1)
418>;
419
420def : Pat<
421 (i32 (zext (op i16:$src0, i16:$src1))),
422 (inst $src0, $src1)
423>;
424
425def : Pat<
426 (i64 (zext (op i16:$src0, i16:$src1))),
427 (REG_SEQUENCE VReg_64,
428 (inst $src0, $src1), sub0,
429 (V_MOV_B32_e32 (i32 0)), sub1)
430>;
431
432}
433
434multiclass Bits_OpsRev_i16_Pats <SDPatternOperator op, Instruction inst> {
435
436def : Pat<
Matt Arsenault94163282016-12-22 16:36:25 +0000437 (op i16:$src0, i16:$src1),
Tom Stellard115a6152016-11-10 16:02:37 +0000438 (inst $src1, $src0)
439>;
440
441def : Pat<
Matt Arsenault94163282016-12-22 16:36:25 +0000442 (i32 (zext (op i16:$src0, i16:$src1))),
Tom Stellard115a6152016-11-10 16:02:37 +0000443 (inst $src1, $src0)
444>;
445
446
447def : Pat<
Matt Arsenault94163282016-12-22 16:36:25 +0000448 (i64 (zext (op i16:$src0, i16:$src1))),
Tom Stellard115a6152016-11-10 16:02:37 +0000449 (REG_SEQUENCE VReg_64,
450 (inst $src1, $src0), sub0,
451 (V_MOV_B32_e32 (i32 0)), sub1)
452>;
453}
454
455class ZExt_i16_i1_Pat <SDNode ext> : Pat <
456 (i16 (ext i1:$src)),
457 (V_CNDMASK_B32_e64 (i32 0), (i32 1), $src)
458>;
459
460let Predicates = [isVI] in {
461
Matt Arsenault27c06292016-12-09 06:19:12 +0000462defm : Arithmetic_i16_Pats<add, V_ADD_U16_e64>;
463defm : Arithmetic_i16_Pats<mul, V_MUL_LO_U16_e64>;
464defm : Arithmetic_i16_Pats<sub, V_SUB_U16_e64>;
465defm : Arithmetic_i16_Pats<smin, V_MIN_I16_e64>;
466defm : Arithmetic_i16_Pats<smax, V_MAX_I16_e64>;
467defm : Arithmetic_i16_Pats<umin, V_MIN_U16_e64>;
468defm : Arithmetic_i16_Pats<umax, V_MAX_U16_e64>;
Tom Stellard115a6152016-11-10 16:02:37 +0000469
Tom Stellard01e65d22016-11-18 13:53:34 +0000470def : Pat <
471 (and i16:$src0, i16:$src1),
Matt Arsenault27c06292016-12-09 06:19:12 +0000472 (V_AND_B32_e64 $src0, $src1)
Tom Stellard01e65d22016-11-18 13:53:34 +0000473>;
474
475def : Pat <
476 (or i16:$src0, i16:$src1),
Matt Arsenault27c06292016-12-09 06:19:12 +0000477 (V_OR_B32_e64 $src0, $src1)
Tom Stellard01e65d22016-11-18 13:53:34 +0000478>;
479
480def : Pat <
481 (xor i16:$src0, i16:$src1),
Matt Arsenault27c06292016-12-09 06:19:12 +0000482 (V_XOR_B32_e64 $src0, $src1)
Tom Stellard01e65d22016-11-18 13:53:34 +0000483>;
Tom Stellard115a6152016-11-10 16:02:37 +0000484
Matt Arsenault94163282016-12-22 16:36:25 +0000485defm : Bits_OpsRev_i16_Pats<shl, V_LSHLREV_B16_e64>;
486defm : Bits_OpsRev_i16_Pats<srl, V_LSHRREV_B16_e64>;
487defm : Bits_OpsRev_i16_Pats<sra, V_ASHRREV_I16_e64>;
Tom Stellard115a6152016-11-10 16:02:37 +0000488
489def : ZExt_i16_i1_Pat<zext>;
Tom Stellard115a6152016-11-10 16:02:37 +0000490def : ZExt_i16_i1_Pat<anyext>;
491
Tom Stellardd23de362016-11-15 21:25:56 +0000492def : Pat <
493 (i16 (sext i1:$src)),
494 (V_CNDMASK_B32_e64 (i32 0), (i32 -1), $src)
495>;
496
Tom Stellard115a6152016-11-10 16:02:37 +0000497} // End Predicates = [isVI]
498
Valery Pykhtin355103f2016-09-23 09:08:07 +0000499//===----------------------------------------------------------------------===//
500// SI
501//===----------------------------------------------------------------------===//
502
503let AssemblerPredicates = [isSICI], DecoderNamespace = "SICI" in {
504
505multiclass VOP2_Real_si <bits<6> op> {
506 def _si :
507 VOP2_Real<!cast<VOP2_Pseudo>(NAME), SIEncodingFamily.SI>,
508 VOP2e<op{5-0}, !cast<VOP2_Pseudo>(NAME).Pfl>;
509}
510
511multiclass VOP2_Real_MADK_si <bits<6> op> {
512 def _si : VOP2_Real<!cast<VOP2_Pseudo>(NAME), SIEncodingFamily.SI>,
513 VOP2_MADKe<op{5-0}, !cast<VOP2_Pseudo>(NAME).Pfl>;
514}
515
516multiclass VOP2_Real_e32_si <bits<6> op> {
517 def _e32_si :
518 VOP2_Real<!cast<VOP2_Pseudo>(NAME#"_e32"), SIEncodingFamily.SI>,
519 VOP2e<op{5-0}, !cast<VOP2_Pseudo>(NAME#"_e32").Pfl>;
520}
521
522multiclass VOP2_Real_e32e64_si <bits<6> op> : VOP2_Real_e32_si<op> {
523 def _e64_si :
524 VOP3_Real<!cast<VOP3_Pseudo>(NAME#"_e64"), SIEncodingFamily.SI>,
525 VOP3e_si <{1, 0, 0, op{5-0}}, !cast<VOP3_Pseudo>(NAME#"_e64").Pfl>;
526}
527
528multiclass VOP2be_Real_e32e64_si <bits<6> op> : VOP2_Real_e32_si<op> {
529 def _e64_si :
530 VOP3_Real<!cast<VOP3_Pseudo>(NAME#"_e64"), SIEncodingFamily.SI>,
531 VOP3be_si <{1, 0, 0, op{5-0}}, !cast<VOP3_Pseudo>(NAME#"_e64").Pfl>;
532}
533
534} // End AssemblerPredicates = [isSICI], DecoderNamespace = "SICI"
535
536defm V_CNDMASK_B32 : VOP2_Real_e32e64_si <0x0>;
537defm V_ADD_F32 : VOP2_Real_e32e64_si <0x3>;
538defm V_SUB_F32 : VOP2_Real_e32e64_si <0x4>;
539defm V_SUBREV_F32 : VOP2_Real_e32e64_si <0x5>;
540defm V_MUL_LEGACY_F32 : VOP2_Real_e32e64_si <0x7>;
541defm V_MUL_F32 : VOP2_Real_e32e64_si <0x8>;
542defm V_MUL_I32_I24 : VOP2_Real_e32e64_si <0x9>;
543defm V_MUL_HI_I32_I24 : VOP2_Real_e32e64_si <0xa>;
544defm V_MUL_U32_U24 : VOP2_Real_e32e64_si <0xb>;
545defm V_MUL_HI_U32_U24 : VOP2_Real_e32e64_si <0xc>;
546defm V_MIN_F32 : VOP2_Real_e32e64_si <0xf>;
547defm V_MAX_F32 : VOP2_Real_e32e64_si <0x10>;
548defm V_MIN_I32 : VOP2_Real_e32e64_si <0x11>;
549defm V_MAX_I32 : VOP2_Real_e32e64_si <0x12>;
550defm V_MIN_U32 : VOP2_Real_e32e64_si <0x13>;
551defm V_MAX_U32 : VOP2_Real_e32e64_si <0x14>;
552defm V_LSHRREV_B32 : VOP2_Real_e32e64_si <0x16>;
553defm V_ASHRREV_I32 : VOP2_Real_e32e64_si <0x18>;
554defm V_LSHLREV_B32 : VOP2_Real_e32e64_si <0x1a>;
555defm V_AND_B32 : VOP2_Real_e32e64_si <0x1b>;
556defm V_OR_B32 : VOP2_Real_e32e64_si <0x1c>;
557defm V_XOR_B32 : VOP2_Real_e32e64_si <0x1d>;
558defm V_MAC_F32 : VOP2_Real_e32e64_si <0x1f>;
559defm V_MADMK_F32 : VOP2_Real_MADK_si <0x20>;
560defm V_MADAK_F32 : VOP2_Real_MADK_si <0x21>;
561defm V_ADD_I32 : VOP2be_Real_e32e64_si <0x25>;
562defm V_SUB_I32 : VOP2be_Real_e32e64_si <0x26>;
563defm V_SUBREV_I32 : VOP2be_Real_e32e64_si <0x27>;
564defm V_ADDC_U32 : VOP2be_Real_e32e64_si <0x28>;
565defm V_SUBB_U32 : VOP2be_Real_e32e64_si <0x29>;
566defm V_SUBBREV_U32 : VOP2be_Real_e32e64_si <0x2a>;
567
568defm V_READLANE_B32 : VOP2_Real_si <0x01>;
569defm V_WRITELANE_B32 : VOP2_Real_si <0x02>;
570
571defm V_MAC_LEGACY_F32 : VOP2_Real_e32e64_si <0x6>;
572defm V_MIN_LEGACY_F32 : VOP2_Real_e32e64_si <0xd>;
573defm V_MAX_LEGACY_F32 : VOP2_Real_e32e64_si <0xe>;
574defm V_LSHR_B32 : VOP2_Real_e32e64_si <0x15>;
575defm V_ASHR_I32 : VOP2_Real_e32e64_si <0x17>;
576defm V_LSHL_B32 : VOP2_Real_e32e64_si <0x19>;
577
578defm V_BFM_B32 : VOP2_Real_e32e64_si <0x1e>;
579defm V_BCNT_U32_B32 : VOP2_Real_e32e64_si <0x22>;
580defm V_MBCNT_LO_U32_B32 : VOP2_Real_e32e64_si <0x23>;
581defm V_MBCNT_HI_U32_B32 : VOP2_Real_e32e64_si <0x24>;
582defm V_LDEXP_F32 : VOP2_Real_e32e64_si <0x2b>;
583defm V_CVT_PKACCUM_U8_F32 : VOP2_Real_e32e64_si <0x2c>;
584defm V_CVT_PKNORM_I16_F32 : VOP2_Real_e32e64_si <0x2d>;
585defm V_CVT_PKNORM_U16_F32 : VOP2_Real_e32e64_si <0x2e>;
586defm V_CVT_PKRTZ_F16_F32 : VOP2_Real_e32e64_si <0x2f>;
587defm V_CVT_PK_U16_U32 : VOP2_Real_e32e64_si <0x30>;
588defm V_CVT_PK_I16_I32 : VOP2_Real_e32e64_si <0x31>;
589
590
591//===----------------------------------------------------------------------===//
592// VI
593//===----------------------------------------------------------------------===//
594
Valery Pykhtin355103f2016-09-23 09:08:07 +0000595class VOP2_DPP <bits<6> op, VOP2_Pseudo ps, VOPProfile P = ps.Pfl> :
596 VOP_DPP <ps.OpName, P> {
597 let Defs = ps.Defs;
598 let Uses = ps.Uses;
599 let SchedRW = ps.SchedRW;
600 let hasSideEffects = ps.hasSideEffects;
Sam Koltona6792a32016-12-22 11:30:48 +0000601 let Constraints = ps.Constraints;
602 let DisableEncoding = ps.DisableEncoding;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000603
604 bits<8> vdst;
605 bits<8> src1;
606 let Inst{8-0} = 0xfa; //dpp
607 let Inst{16-9} = !if(P.HasSrc1, src1{7-0}, 0);
608 let Inst{24-17} = !if(P.EmitDst, vdst{7-0}, 0);
609 let Inst{30-25} = op;
610 let Inst{31} = 0x0; //encoding
611}
612
613let AssemblerPredicates = [isVI], DecoderNamespace = "VI" in {
614
615multiclass VOP32_Real_vi <bits<10> op> {
616 def _vi :
617 VOP2_Real<!cast<VOP2_Pseudo>(NAME), SIEncodingFamily.VI>,
618 VOP3e_vi<op, !cast<VOP2_Pseudo>(NAME).Pfl>;
619}
620
621multiclass VOP2_Real_MADK_vi <bits<6> op> {
622 def _vi : VOP2_Real<!cast<VOP2_Pseudo>(NAME), SIEncodingFamily.VI>,
623 VOP2_MADKe<op{5-0}, !cast<VOP2_Pseudo>(NAME).Pfl>;
624}
625
626multiclass VOP2_Real_e32_vi <bits<6> op> {
627 def _e32_vi :
628 VOP2_Real<!cast<VOP2_Pseudo>(NAME#"_e32"), SIEncodingFamily.VI>,
629 VOP2e<op{5-0}, !cast<VOP2_Pseudo>(NAME#"_e32").Pfl>;
630}
631
632multiclass VOP2_Real_e64_vi <bits<10> op> {
633 def _e64_vi :
634 VOP3_Real<!cast<VOP3_Pseudo>(NAME#"_e64"), SIEncodingFamily.VI>,
635 VOP3e_vi <op, !cast<VOP3_Pseudo>(NAME#"_e64").Pfl>;
636}
637
Sam Koltone66365e2016-12-27 10:06:42 +0000638multiclass Base_VOP2be_Real_e32e64_vi <bits<6> op> : VOP2_Real_e32_vi<op> {
Valery Pykhtin355103f2016-09-23 09:08:07 +0000639 def _e64_vi :
640 VOP3_Real<!cast<VOP3_Pseudo>(NAME#"_e64"), SIEncodingFamily.VI>,
641 VOP3be_vi <{0, 1, 0, 0, op{5-0}}, !cast<VOP3_Pseudo>(NAME#"_e64").Pfl>;
642}
643
644multiclass Base_VOP2_Real_e32e64_vi <bits<6> op> :
645 VOP2_Real_e32_vi<op>,
646 VOP2_Real_e64_vi<{0, 1, 0, 0, op{5-0}}>;
647
648} // End AssemblerPredicates = [isVI], DecoderNamespace = "VI"
Sam Koltona568e3d2016-12-22 12:57:41 +0000649
650multiclass VOP2_SDWA_Real <bits<6> op> {
651 def _sdwa_vi :
652 VOP_SDWA_Real <!cast<VOP2_SDWA_Pseudo>(NAME#"_sdwa")>,
653 VOP2_SDWAe <op{5-0}, !cast<VOP2_SDWA_Pseudo>(NAME#"_sdwa").Pfl>;
654}
Valery Pykhtin355103f2016-09-23 09:08:07 +0000655
Sam Koltone66365e2016-12-27 10:06:42 +0000656multiclass VOP2be_Real_e32e64_vi <bits<6> op> :
657 Base_VOP2be_Real_e32e64_vi<op>, VOP2_SDWA_Real<op> {
658 // For now left dpp only for asm/dasm
659 // TODO: add corresponding pseudo
660 def _dpp : VOP2_DPP<op, !cast<VOP2_Pseudo>(NAME#"_e32")>;
661}
662
Valery Pykhtin355103f2016-09-23 09:08:07 +0000663multiclass VOP2_Real_e32e64_vi <bits<6> op> :
Sam Koltona568e3d2016-12-22 12:57:41 +0000664 Base_VOP2_Real_e32e64_vi<op>, VOP2_SDWA_Real<op> {
665 // For now left dpp only for asm/dasm
Valery Pykhtin355103f2016-09-23 09:08:07 +0000666 // TODO: add corresponding pseudo
Valery Pykhtin355103f2016-09-23 09:08:07 +0000667 def _dpp : VOP2_DPP<op, !cast<VOP2_Pseudo>(NAME#"_e32")>;
668}
669
670defm V_CNDMASK_B32 : Base_VOP2_Real_e32e64_vi <0x0>;
671defm V_ADD_F32 : VOP2_Real_e32e64_vi <0x1>;
672defm V_SUB_F32 : VOP2_Real_e32e64_vi <0x2>;
673defm V_SUBREV_F32 : VOP2_Real_e32e64_vi <0x3>;
674defm V_MUL_LEGACY_F32 : VOP2_Real_e32e64_vi <0x4>;
675defm V_MUL_F32 : VOP2_Real_e32e64_vi <0x5>;
676defm V_MUL_I32_I24 : VOP2_Real_e32e64_vi <0x6>;
677defm V_MUL_HI_I32_I24 : VOP2_Real_e32e64_vi <0x7>;
678defm V_MUL_U32_U24 : VOP2_Real_e32e64_vi <0x8>;
679defm V_MUL_HI_U32_U24 : VOP2_Real_e32e64_vi <0x9>;
680defm V_MIN_F32 : VOP2_Real_e32e64_vi <0xa>;
681defm V_MAX_F32 : VOP2_Real_e32e64_vi <0xb>;
682defm V_MIN_I32 : VOP2_Real_e32e64_vi <0xc>;
683defm V_MAX_I32 : VOP2_Real_e32e64_vi <0xd>;
684defm V_MIN_U32 : VOP2_Real_e32e64_vi <0xe>;
685defm V_MAX_U32 : VOP2_Real_e32e64_vi <0xf>;
686defm V_LSHRREV_B32 : VOP2_Real_e32e64_vi <0x10>;
687defm V_ASHRREV_I32 : VOP2_Real_e32e64_vi <0x11>;
688defm V_LSHLREV_B32 : VOP2_Real_e32e64_vi <0x12>;
689defm V_AND_B32 : VOP2_Real_e32e64_vi <0x13>;
690defm V_OR_B32 : VOP2_Real_e32e64_vi <0x14>;
691defm V_XOR_B32 : VOP2_Real_e32e64_vi <0x15>;
692defm V_MAC_F32 : VOP2_Real_e32e64_vi <0x16>;
693defm V_MADMK_F32 : VOP2_Real_MADK_vi <0x17>;
694defm V_MADAK_F32 : VOP2_Real_MADK_vi <0x18>;
695defm V_ADD_I32 : VOP2be_Real_e32e64_vi <0x19>;
696defm V_SUB_I32 : VOP2be_Real_e32e64_vi <0x1a>;
697defm V_SUBREV_I32 : VOP2be_Real_e32e64_vi <0x1b>;
698defm V_ADDC_U32 : VOP2be_Real_e32e64_vi <0x1c>;
699defm V_SUBB_U32 : VOP2be_Real_e32e64_vi <0x1d>;
700defm V_SUBBREV_U32 : VOP2be_Real_e32e64_vi <0x1e>;
701
702defm V_READLANE_B32 : VOP32_Real_vi <0x289>;
703defm V_WRITELANE_B32 : VOP32_Real_vi <0x28a>;
704
705defm V_BFM_B32 : VOP2_Real_e64_vi <0x293>;
706defm V_BCNT_U32_B32 : VOP2_Real_e64_vi <0x28b>;
707defm V_MBCNT_LO_U32_B32 : VOP2_Real_e64_vi <0x28c>;
708defm V_MBCNT_HI_U32_B32 : VOP2_Real_e64_vi <0x28d>;
709defm V_LDEXP_F32 : VOP2_Real_e64_vi <0x288>;
710defm V_CVT_PKACCUM_U8_F32 : VOP2_Real_e64_vi <0x1f0>;
711defm V_CVT_PKNORM_I16_F32 : VOP2_Real_e64_vi <0x294>;
712defm V_CVT_PKNORM_U16_F32 : VOP2_Real_e64_vi <0x295>;
713defm V_CVT_PKRTZ_F16_F32 : VOP2_Real_e64_vi <0x296>;
714defm V_CVT_PK_U16_U32 : VOP2_Real_e64_vi <0x297>;
715defm V_CVT_PK_I16_I32 : VOP2_Real_e64_vi <0x298>;
716
717defm V_ADD_F16 : VOP2_Real_e32e64_vi <0x1f>;
718defm V_SUB_F16 : VOP2_Real_e32e64_vi <0x20>;
719defm V_SUBREV_F16 : VOP2_Real_e32e64_vi <0x21>;
720defm V_MUL_F16 : VOP2_Real_e32e64_vi <0x22>;
721defm V_MAC_F16 : VOP2_Real_e32e64_vi <0x23>;
722defm V_MADMK_F16 : VOP2_Real_MADK_vi <0x24>;
723defm V_MADAK_F16 : VOP2_Real_MADK_vi <0x25>;
724defm V_ADD_U16 : VOP2_Real_e32e64_vi <0x26>;
725defm V_SUB_U16 : VOP2_Real_e32e64_vi <0x27>;
726defm V_SUBREV_U16 : VOP2_Real_e32e64_vi <0x28>;
727defm V_MUL_LO_U16 : VOP2_Real_e32e64_vi <0x29>;
728defm V_LSHLREV_B16 : VOP2_Real_e32e64_vi <0x2a>;
729defm V_LSHRREV_B16 : VOP2_Real_e32e64_vi <0x2b>;
Matt Arsenault55e7d652016-12-16 17:40:11 +0000730defm V_ASHRREV_I16 : VOP2_Real_e32e64_vi <0x2c>;
Valery Pykhtin355103f2016-09-23 09:08:07 +0000731defm V_MAX_F16 : VOP2_Real_e32e64_vi <0x2d>;
732defm V_MIN_F16 : VOP2_Real_e32e64_vi <0x2e>;
733defm V_MAX_U16 : VOP2_Real_e32e64_vi <0x2f>;
734defm V_MAX_I16 : VOP2_Real_e32e64_vi <0x30>;
735defm V_MIN_U16 : VOP2_Real_e32e64_vi <0x31>;
736defm V_MIN_I16 : VOP2_Real_e32e64_vi <0x32>;
737defm V_LDEXP_F16 : VOP2_Real_e32e64_vi <0x33>;
738
739let SubtargetPredicate = isVI in {
740
741// Aliases to simplify matching of floating-point instructions that
742// are VOP2 on SI and VOP3 on VI.
743class SI2_VI3Alias <string name, Instruction inst> : InstAlias <
744 name#" $dst, $src0, $src1",
745 (inst VGPR_32:$dst, 0, VCSrc_f32:$src0, 0, VCSrc_f32:$src1, 0, 0)
746>, PredicateControl {
747 let UseInstAsmMatchConverter = 0;
748 let AsmVariantName = AMDGPUAsmVariants.VOP3;
749}
750
751def : SI2_VI3Alias <"v_ldexp_f32", V_LDEXP_F32_e64_vi>;
752def : SI2_VI3Alias <"v_cvt_pkaccum_u8_f32", V_CVT_PKACCUM_U8_F32_e64_vi>;
753def : SI2_VI3Alias <"v_cvt_pknorm_i16_f32", V_CVT_PKNORM_I16_F32_e64_vi>;
754def : SI2_VI3Alias <"v_cvt_pknorm_u16_f32", V_CVT_PKNORM_U16_F32_e64_vi>;
755def : SI2_VI3Alias <"v_cvt_pkrtz_f16_f32", V_CVT_PKRTZ_F16_F32_e64_vi>;
756
757} // End SubtargetPredicate = isVI