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Arnold Schwaighofer48abc5c2007-10-12 21:30:57 +00001//==- X86InstrFPStack.td - Describe the X86 Instruction Set --*- tablegen -*-=//
Evan Chengffcb95b2006-02-21 19:13:53 +00002//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Evan Chengffcb95b2006-02-21 19:13:53 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file describes the X86 x87 FPU instruction set, defining the
11// instructions, and properties of the instructions which are needed for code
12// generation, machine code emission, and analysis.
13//
14//===----------------------------------------------------------------------===//
15
Evan Cheng06a8aa12006-03-17 19:55:52 +000016//===----------------------------------------------------------------------===//
Evan Cheng2246f842006-03-18 01:23:20 +000017// FPStack specific DAG Nodes.
18//===----------------------------------------------------------------------===//
19
Chris Lattner6fa2f9c2008-03-09 07:05:32 +000020def SDTX86FpGet2 : SDTypeProfile<2, 0, [SDTCisVT<0, f80>,
21 SDTCisVT<1, f80>]>;
Dale Johannesen411d9c52007-07-03 17:07:33 +000022def SDTX86Fld : SDTypeProfile<1, 2, [SDTCisFP<0>,
Dale Johannesenbf6b8272007-07-10 20:53:41 +000023 SDTCisPtrTy<1>,
24 SDTCisVT<2, OtherVT>]>;
Dale Johannesen411d9c52007-07-03 17:07:33 +000025def SDTX86Fst : SDTypeProfile<0, 3, [SDTCisFP<0>,
Dale Johannesenbf6b8272007-07-10 20:53:41 +000026 SDTCisPtrTy<1>,
27 SDTCisVT<2, OtherVT>]>;
Dale Johannesen411d9c52007-07-03 17:07:33 +000028def SDTX86Fild : SDTypeProfile<1, 2, [SDTCisFP<0>, SDTCisPtrTy<1>,
29 SDTCisVT<2, OtherVT>]>;
30def SDTX86FpToIMem : SDTypeProfile<0, 2, [SDTCisFP<0>, SDTCisPtrTy<1>]>;
Evan Cheng2246f842006-03-18 01:23:20 +000031
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +000032def SDTX86CwdStore : SDTypeProfile<0, 1, [SDTCisPtrTy<0>]>;
33
Chris Lattnerba7e7562008-01-10 07:59:24 +000034def X86fld : SDNode<"X86ISD::FLD", SDTX86Fld,
35 [SDNPHasChain, SDNPMayLoad]>;
36def X86fst : SDNode<"X86ISD::FST", SDTX86Fst,
37 [SDNPHasChain, SDNPInFlag, SDNPMayStore]>;
38def X86fild : SDNode<"X86ISD::FILD", SDTX86Fild,
39 [SDNPHasChain, SDNPMayLoad]>;
40def X86fildflag : SDNode<"X86ISD::FILD_FLAG", SDTX86Fild,
41 [SDNPHasChain, SDNPOutFlag, SDNPMayLoad]>;
Evan Cheng2246f842006-03-18 01:23:20 +000042def X86fp_to_i16mem : SDNode<"X86ISD::FP_TO_INT16_IN_MEM", SDTX86FpToIMem,
Chris Lattnerba7e7562008-01-10 07:59:24 +000043 [SDNPHasChain, SDNPMayStore]>;
Evan Cheng2246f842006-03-18 01:23:20 +000044def X86fp_to_i32mem : SDNode<"X86ISD::FP_TO_INT32_IN_MEM", SDTX86FpToIMem,
Chris Lattnerba7e7562008-01-10 07:59:24 +000045 [SDNPHasChain, SDNPMayStore]>;
Evan Cheng2246f842006-03-18 01:23:20 +000046def X86fp_to_i64mem : SDNode<"X86ISD::FP_TO_INT64_IN_MEM", SDTX86FpToIMem,
Chris Lattnerba7e7562008-01-10 07:59:24 +000047 [SDNPHasChain, SDNPMayStore]>;
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +000048def X86fp_cwd_get16 : SDNode<"X86ISD::FNSTCW16m", SDTX86CwdStore,
Chris Lattnerba7e7562008-01-10 07:59:24 +000049 [SDNPHasChain, SDNPMayStore, SDNPSideEffect]>;
Evan Cheng2246f842006-03-18 01:23:20 +000050
51//===----------------------------------------------------------------------===//
Evan Cheng06a8aa12006-03-17 19:55:52 +000052// FPStack pattern fragments
53//===----------------------------------------------------------------------===//
54
Dale Johannesen849f2142007-07-03 00:53:03 +000055def fpimm0 : PatLeaf<(fpimm), [{
Evan Cheng06a8aa12006-03-17 19:55:52 +000056 return N->isExactlyValue(+0.0);
57}]>;
58
Dale Johannesen849f2142007-07-03 00:53:03 +000059def fpimmneg0 : PatLeaf<(fpimm), [{
Evan Cheng06a8aa12006-03-17 19:55:52 +000060 return N->isExactlyValue(-0.0);
61}]>;
62
Dale Johannesen849f2142007-07-03 00:53:03 +000063def fpimm1 : PatLeaf<(fpimm), [{
Evan Cheng06a8aa12006-03-17 19:55:52 +000064 return N->isExactlyValue(+1.0);
65}]>;
66
Dale Johannesen849f2142007-07-03 00:53:03 +000067def fpimmneg1 : PatLeaf<(fpimm), [{
Evan Cheng06a8aa12006-03-17 19:55:52 +000068 return N->isExactlyValue(-1.0);
69}]>;
70
Evan Cheng4e4c71e2006-02-21 20:00:20 +000071// Some 'special' instructions
72let usesCustomDAGSchedInserter = 1 in { // Expanded by the scheduler.
Dale Johannesen849f2142007-07-03 00:53:03 +000073 def FP32_TO_INT16_IN_MEM : I<0, Pseudo,
Evan Cheng64d80e32007-07-19 01:14:50 +000074 (outs), (ins i16mem:$dst, RFP32:$src),
Dale Johannesen411d9c52007-07-03 17:07:33 +000075 "#FP32_TO_INT16_IN_MEM PSEUDO!",
76 [(X86fp_to_i16mem RFP32:$src, addr:$dst)]>;
Dale Johannesen849f2142007-07-03 00:53:03 +000077 def FP32_TO_INT32_IN_MEM : I<0, Pseudo,
Evan Cheng64d80e32007-07-19 01:14:50 +000078 (outs), (ins i32mem:$dst, RFP32:$src),
Dale Johannesen411d9c52007-07-03 17:07:33 +000079 "#FP32_TO_INT32_IN_MEM PSEUDO!",
80 [(X86fp_to_i32mem RFP32:$src, addr:$dst)]>;
Dale Johannesen849f2142007-07-03 00:53:03 +000081 def FP32_TO_INT64_IN_MEM : I<0, Pseudo,
Evan Cheng64d80e32007-07-19 01:14:50 +000082 (outs), (ins i64mem:$dst, RFP32:$src),
Dale Johannesen411d9c52007-07-03 17:07:33 +000083 "#FP32_TO_INT64_IN_MEM PSEUDO!",
84 [(X86fp_to_i64mem RFP32:$src, addr:$dst)]>;
Dale Johannesen849f2142007-07-03 00:53:03 +000085 def FP64_TO_INT16_IN_MEM : I<0, Pseudo,
Evan Cheng64d80e32007-07-19 01:14:50 +000086 (outs), (ins i16mem:$dst, RFP64:$src),
Dale Johannesen411d9c52007-07-03 17:07:33 +000087 "#FP64_TO_INT16_IN_MEM PSEUDO!",
88 [(X86fp_to_i16mem RFP64:$src, addr:$dst)]>;
Dale Johannesen849f2142007-07-03 00:53:03 +000089 def FP64_TO_INT32_IN_MEM : I<0, Pseudo,
Evan Cheng64d80e32007-07-19 01:14:50 +000090 (outs), (ins i32mem:$dst, RFP64:$src),
Dale Johannesen411d9c52007-07-03 17:07:33 +000091 "#FP64_TO_INT32_IN_MEM PSEUDO!",
92 [(X86fp_to_i32mem RFP64:$src, addr:$dst)]>;
Dale Johannesen849f2142007-07-03 00:53:03 +000093 def FP64_TO_INT64_IN_MEM : I<0, Pseudo,
Evan Cheng64d80e32007-07-19 01:14:50 +000094 (outs), (ins i64mem:$dst, RFP64:$src),
Dale Johannesen411d9c52007-07-03 17:07:33 +000095 "#FP64_TO_INT64_IN_MEM PSEUDO!",
96 [(X86fp_to_i64mem RFP64:$src, addr:$dst)]>;
Dale Johannesena996d522007-08-07 01:17:37 +000097 def FP80_TO_INT16_IN_MEM : I<0, Pseudo,
98 (outs), (ins i16mem:$dst, RFP80:$src),
99 "#FP80_TO_INT16_IN_MEM PSEUDO!",
100 [(X86fp_to_i16mem RFP80:$src, addr:$dst)]>;
101 def FP80_TO_INT32_IN_MEM : I<0, Pseudo,
102 (outs), (ins i32mem:$dst, RFP80:$src),
103 "#FP80_TO_INT32_IN_MEM PSEUDO!",
104 [(X86fp_to_i32mem RFP80:$src, addr:$dst)]>;
105 def FP80_TO_INT64_IN_MEM : I<0, Pseudo,
106 (outs), (ins i64mem:$dst, RFP80:$src),
107 "#FP80_TO_INT64_IN_MEM PSEUDO!",
108 [(X86fp_to_i64mem RFP80:$src, addr:$dst)]>;
Evan Cheng4e4c71e2006-02-21 20:00:20 +0000109}
110
111let isTerminator = 1 in
112 let Defs = [FP0, FP1, FP2, FP3, FP4, FP5, FP6] in
Evan Cheng64d80e32007-07-19 01:14:50 +0000113 def FP_REG_KILL : I<0, Pseudo, (outs), (ins), "#FP_REG_KILL", []>;
Evan Cheng4e4c71e2006-02-21 20:00:20 +0000114
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000115// All FP Stack operations are represented with four instructions here. The
116// first three instructions, generated by the instruction selector, use "RFP32"
117// "RFP64" or "RFP80" registers: traditional register files to reference 32-bit,
118// 64-bit or 80-bit floating point values. These sizes apply to the values,
119// not the registers, which are always 80 bits; RFP32, RFP64 and RFP80 can be
120// copied to each other without losing information. These instructions are all
121// pseudo instructions and use the "_Fp" suffix.
122// In some cases there are additional variants with a mixture of different
123// register sizes.
Evan Chengffcb95b2006-02-21 19:13:53 +0000124// The second instruction is defined with FPI, which is the actual instruction
Dale Johannesene377d4d2007-07-04 21:07:47 +0000125// emitted by the assembler. These use "RST" registers, although frequently
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000126// the actual register(s) used are implicit. These are always 80 bits.
Dale Johannesene377d4d2007-07-04 21:07:47 +0000127// The FP stackifier pass converts one to the other after register allocation
128// occurs.
Evan Chengffcb95b2006-02-21 19:13:53 +0000129//
130// Note that the FpI instruction should have instruction selection info (e.g.
131// a pattern) and the FPI instruction should have emission info (e.g. opcode
132// encoding and asm printing info).
133
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000134// Pseudo Instructions for FP stack return values.
Chris Lattner8e6da152008-03-10 21:08:41 +0000135def FpGET_ST0_32 : FpI_<(outs RFP32:$dst), (ins), SpecialFP, []>; // FPR = ST(0)
136def FpGET_ST0_64 : FpI_<(outs RFP64:$dst), (ins), SpecialFP, []>; // FPR = ST(0)
137def FpGET_ST0_80 : FpI_<(outs RFP80:$dst), (ins), SpecialFP, []>; // FPR = ST(0)
Evan Chengffcb95b2006-02-21 19:13:53 +0000138
Chris Lattner24e0a542008-03-21 06:38:26 +0000139// FpGET_ST1* should only be issued *after* an FpGET_ST0* has been issued when
140// there are two values live out on the stack from a call or inlineasm. This
141// magic is handled by the stackifier. It is not valid to emit FpGET_ST1* and
142// then FpGET_ST0*. In addition, it is invalid for any FP-using operations to
143// occur between them.
144def FpGET_ST1_32 : FpI_<(outs RFP32:$dst), (ins), SpecialFP, []>; // FPR = ST(1)
145def FpGET_ST1_64 : FpI_<(outs RFP64:$dst), (ins), SpecialFP, []>; // FPR = ST(1)
146def FpGET_ST1_80 : FpI_<(outs RFP80:$dst), (ins), SpecialFP, []>; // FPR = ST(1)
147
Chris Lattner6fa2f9c2008-03-09 07:05:32 +0000148def FpGET_ST0_ST1 : FpI_<(outs RFP80:$dst1, RFP80:$dst2), (ins), SpecialFP,
149 []>; // FPR = ST(0), FPR = ST(1)
Evan Cheng0d9e9762008-01-29 19:34:22 +0000150
151
Evan Cheng071a2792007-09-11 19:55:27 +0000152let Defs = [ST0] in {
Chris Lattner8e6da152008-03-10 21:08:41 +0000153def FpSET_ST0_32 : FpI_<(outs), (ins RFP32:$src), SpecialFP, []>; // ST(0) = FPR
154def FpSET_ST0_64 : FpI_<(outs), (ins RFP64:$src), SpecialFP, []>; // ST(0) = FPR
155def FpSET_ST0_80 : FpI_<(outs), (ins RFP80:$src), SpecialFP, []>; // ST(0) = FPR
Evan Cheng071a2792007-09-11 19:55:27 +0000156}
Dale Johannesen6a308112007-08-06 21:31:06 +0000157
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000158// FpIf32, FpIf64 - Floating Point Psuedo Instruction template.
159// f32 instructions can use SSE1 and are predicated on FPStackf32 == !SSE1.
160// f64 instructions can use SSE2 and are predicated on FPStackf64 == !SSE2.
161// f80 instructions cannot use SSE and use neither of these.
162class FpIf32<dag outs, dag ins, FPFormat fp, list<dag> pattern> :
163 FpI_<outs, ins, fp, pattern>, Requires<[FPStackf32]>;
164class FpIf64<dag outs, dag ins, FPFormat fp, list<dag> pattern> :
165 FpI_<outs, ins, fp, pattern>, Requires<[FPStackf64]>;
Evan Chengffcb95b2006-02-21 19:13:53 +0000166
Dale Johannesen59a58732007-08-05 18:49:15 +0000167// Register copies. Just copies, the shortening ones do not truncate.
Chris Lattnera731c9f2008-01-11 07:18:17 +0000168let neverHasSideEffects = 1 in {
Chris Lattner6fa2f9c2008-03-09 07:05:32 +0000169 def MOV_Fp3232 : FpIf32<(outs RFP32:$dst), (ins RFP32:$src), SpecialFP, []>;
170 def MOV_Fp3264 : FpIf32<(outs RFP64:$dst), (ins RFP32:$src), SpecialFP, []>;
171 def MOV_Fp6432 : FpIf32<(outs RFP32:$dst), (ins RFP64:$src), SpecialFP, []>;
172 def MOV_Fp6464 : FpIf64<(outs RFP64:$dst), (ins RFP64:$src), SpecialFP, []>;
173 def MOV_Fp8032 : FpIf32<(outs RFP32:$dst), (ins RFP80:$src), SpecialFP, []>;
174 def MOV_Fp3280 : FpIf32<(outs RFP80:$dst), (ins RFP32:$src), SpecialFP, []>;
175 def MOV_Fp8064 : FpIf64<(outs RFP64:$dst), (ins RFP80:$src), SpecialFP, []>;
176 def MOV_Fp6480 : FpIf64<(outs RFP80:$dst), (ins RFP64:$src), SpecialFP, []>;
177 def MOV_Fp8080 : FpI_ <(outs RFP80:$dst), (ins RFP80:$src), SpecialFP, []>;
Chris Lattnera731c9f2008-01-11 07:18:17 +0000178}
Evan Chengffcb95b2006-02-21 19:13:53 +0000179
Dale Johannesene377d4d2007-07-04 21:07:47 +0000180// Factoring for arithmetic.
181multiclass FPBinary_rr<SDNode OpNode> {
182// Register op register -> register
183// These are separated out because they have no reversed form.
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000184def _Fp32 : FpIf32<(outs RFP32:$dst), (ins RFP32:$src1, RFP32:$src2), TwoArgFP,
Dale Johannesene377d4d2007-07-04 21:07:47 +0000185 [(set RFP32:$dst, (OpNode RFP32:$src1, RFP32:$src2))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000186def _Fp64 : FpIf64<(outs RFP64:$dst), (ins RFP64:$src1, RFP64:$src2), TwoArgFP,
Dale Johannesene377d4d2007-07-04 21:07:47 +0000187 [(set RFP64:$dst, (OpNode RFP64:$src1, RFP64:$src2))]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000188def _Fp80 : FpI_<(outs RFP80:$dst), (ins RFP80:$src1, RFP80:$src2), TwoArgFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000189 [(set RFP80:$dst, (OpNode RFP80:$src1, RFP80:$src2))]>;
Dale Johannesene377d4d2007-07-04 21:07:47 +0000190}
191// The FopST0 series are not included here because of the irregularities
192// in where the 'r' goes in assembly output.
Dale Johannesen59a58732007-08-05 18:49:15 +0000193// These instructions cannot address 80-bit memory.
Dale Johannesene377d4d2007-07-04 21:07:47 +0000194multiclass FPBinary<SDNode OpNode, Format fp, string asmstring> {
195// ST(0) = ST(0) + [mem]
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000196def _Fp32m : FpIf32<(outs RFP32:$dst), (ins RFP32:$src1, f32mem:$src2), OneArgFPRW,
Dale Johannesenbf6b8272007-07-10 20:53:41 +0000197 [(set RFP32:$dst,
198 (OpNode RFP32:$src1, (loadf32 addr:$src2)))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000199def _Fp64m : FpIf64<(outs RFP64:$dst), (ins RFP64:$src1, f64mem:$src2), OneArgFPRW,
Dale Johannesenbf6b8272007-07-10 20:53:41 +0000200 [(set RFP64:$dst,
201 (OpNode RFP64:$src1, (loadf64 addr:$src2)))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000202def _Fp64m32: FpIf64<(outs RFP64:$dst), (ins RFP64:$src1, f32mem:$src2), OneArgFPRW,
Dale Johannesenafdc7fd2007-07-10 21:53:30 +0000203 [(set RFP64:$dst,
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000204 (OpNode RFP64:$src1, (f64 (extloadf32 addr:$src2))))]>;
205def _Fp80m32: FpI_<(outs RFP80:$dst), (ins RFP80:$src1, f32mem:$src2), OneArgFPRW,
Dale Johannesen59a58732007-08-05 18:49:15 +0000206 [(set RFP80:$dst,
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000207 (OpNode RFP80:$src1, (f80 (extloadf32 addr:$src2))))]>;
208def _Fp80m64: FpI_<(outs RFP80:$dst), (ins RFP80:$src1, f64mem:$src2), OneArgFPRW,
Dale Johannesen59a58732007-08-05 18:49:15 +0000209 [(set RFP80:$dst,
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000210 (OpNode RFP80:$src1, (f80 (extloadf64 addr:$src2))))]>;
Evan Cheng64d80e32007-07-19 01:14:50 +0000211def _F32m : FPI<0xD8, fp, (outs), (ins f32mem:$src),
Chris Lattnerba7e7562008-01-10 07:59:24 +0000212 !strconcat("f", !strconcat(asmstring, "{s}\t$src"))> { let mayLoad = 1; }
Evan Cheng64d80e32007-07-19 01:14:50 +0000213def _F64m : FPI<0xDC, fp, (outs), (ins f64mem:$src),
Chris Lattnerba7e7562008-01-10 07:59:24 +0000214 !strconcat("f", !strconcat(asmstring, "{l}\t$src"))> { let mayLoad = 1; }
Dale Johannesene377d4d2007-07-04 21:07:47 +0000215// ST(0) = ST(0) + [memint]
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000216def _FpI16m32 : FpIf32<(outs RFP32:$dst), (ins RFP32:$src1, i16mem:$src2), OneArgFPRW,
Dale Johannesene377d4d2007-07-04 21:07:47 +0000217 [(set RFP32:$dst, (OpNode RFP32:$src1,
218 (X86fild addr:$src2, i16)))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000219def _FpI32m32 : FpIf32<(outs RFP32:$dst), (ins RFP32:$src1, i32mem:$src2), OneArgFPRW,
Dale Johannesene377d4d2007-07-04 21:07:47 +0000220 [(set RFP32:$dst, (OpNode RFP32:$src1,
221 (X86fild addr:$src2, i32)))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000222def _FpI16m64 : FpIf64<(outs RFP64:$dst), (ins RFP64:$src1, i16mem:$src2), OneArgFPRW,
Dale Johannesene377d4d2007-07-04 21:07:47 +0000223 [(set RFP64:$dst, (OpNode RFP64:$src1,
224 (X86fild addr:$src2, i16)))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000225def _FpI32m64 : FpIf64<(outs RFP64:$dst), (ins RFP64:$src1, i32mem:$src2), OneArgFPRW,
Dale Johannesene377d4d2007-07-04 21:07:47 +0000226 [(set RFP64:$dst, (OpNode RFP64:$src1,
227 (X86fild addr:$src2, i32)))]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000228def _FpI16m80 : FpI_<(outs RFP80:$dst), (ins RFP80:$src1, i16mem:$src2), OneArgFPRW,
Dale Johannesen59a58732007-08-05 18:49:15 +0000229 [(set RFP80:$dst, (OpNode RFP80:$src1,
230 (X86fild addr:$src2, i16)))]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000231def _FpI32m80 : FpI_<(outs RFP80:$dst), (ins RFP80:$src1, i32mem:$src2), OneArgFPRW,
Dale Johannesen59a58732007-08-05 18:49:15 +0000232 [(set RFP80:$dst, (OpNode RFP80:$src1,
233 (X86fild addr:$src2, i32)))]>;
Evan Cheng64d80e32007-07-19 01:14:50 +0000234def _FI16m : FPI<0xDE, fp, (outs), (ins i16mem:$src),
Chris Lattnerba7e7562008-01-10 07:59:24 +0000235 !strconcat("fi", !strconcat(asmstring, "{s}\t$src"))> { let mayLoad = 1; }
Evan Cheng64d80e32007-07-19 01:14:50 +0000236def _FI32m : FPI<0xDA, fp, (outs), (ins i32mem:$src),
Chris Lattnerba7e7562008-01-10 07:59:24 +0000237 !strconcat("fi", !strconcat(asmstring, "{l}\t$src"))> { let mayLoad = 1; }
Dale Johannesene377d4d2007-07-04 21:07:47 +0000238}
239
240defm ADD : FPBinary_rr<fadd>;
241defm SUB : FPBinary_rr<fsub>;
242defm MUL : FPBinary_rr<fmul>;
243defm DIV : FPBinary_rr<fdiv>;
244defm ADD : FPBinary<fadd, MRM0m, "add">;
245defm SUB : FPBinary<fsub, MRM4m, "sub">;
246defm SUBR: FPBinary<fsub ,MRM5m, "subr">;
247defm MUL : FPBinary<fmul, MRM1m, "mul">;
248defm DIV : FPBinary<fdiv, MRM6m, "div">;
249defm DIVR: FPBinary<fdiv, MRM7m, "divr">;
Evan Chengffcb95b2006-02-21 19:13:53 +0000250
251class FPST0rInst<bits<8> o, string asm>
Evan Cheng64d80e32007-07-19 01:14:50 +0000252 : FPI<o, AddRegFrm, (outs), (ins RST:$op), asm>, D8;
Evan Chengffcb95b2006-02-21 19:13:53 +0000253class FPrST0Inst<bits<8> o, string asm>
Evan Cheng64d80e32007-07-19 01:14:50 +0000254 : FPI<o, AddRegFrm, (outs), (ins RST:$op), asm>, DC;
Evan Chengffcb95b2006-02-21 19:13:53 +0000255class FPrST0PInst<bits<8> o, string asm>
Evan Cheng64d80e32007-07-19 01:14:50 +0000256 : FPI<o, AddRegFrm, (outs), (ins RST:$op), asm>, DE;
Evan Chengffcb95b2006-02-21 19:13:53 +0000257
Evan Chengffcb95b2006-02-21 19:13:53 +0000258// NOTE: GAS and apparently all other AT&T style assemblers have a broken notion
259// of some of the 'reverse' forms of the fsub and fdiv instructions. As such,
260// we have to put some 'r's in and take them out of weird places.
Dan Gohmanb1576f52007-07-31 20:11:57 +0000261def ADD_FST0r : FPST0rInst <0xC0, "fadd\t$op">;
262def ADD_FrST0 : FPrST0Inst <0xC0, "fadd\t{%st(0), $op|$op, %ST(0)}">;
263def ADD_FPrST0 : FPrST0PInst<0xC0, "faddp\t$op">;
264def SUBR_FST0r : FPST0rInst <0xE8, "fsubr\t$op">;
265def SUB_FrST0 : FPrST0Inst <0xE8, "fsub{r}\t{%st(0), $op|$op, %ST(0)}">;
266def SUB_FPrST0 : FPrST0PInst<0xE8, "fsub{r}p\t$op">;
267def SUB_FST0r : FPST0rInst <0xE0, "fsub\t$op">;
268def SUBR_FrST0 : FPrST0Inst <0xE0, "fsub{|r}\t{%st(0), $op|$op, %ST(0)}">;
269def SUBR_FPrST0 : FPrST0PInst<0xE0, "fsub{|r}p\t$op">;
270def MUL_FST0r : FPST0rInst <0xC8, "fmul\t$op">;
271def MUL_FrST0 : FPrST0Inst <0xC8, "fmul\t{%st(0), $op|$op, %ST(0)}">;
272def MUL_FPrST0 : FPrST0PInst<0xC8, "fmulp\t$op">;
273def DIVR_FST0r : FPST0rInst <0xF8, "fdivr\t$op">;
274def DIV_FrST0 : FPrST0Inst <0xF8, "fdiv{r}\t{%st(0), $op|$op, %ST(0)}">;
275def DIV_FPrST0 : FPrST0PInst<0xF8, "fdiv{r}p\t$op">;
276def DIV_FST0r : FPST0rInst <0xF0, "fdiv\t$op">;
277def DIVR_FrST0 : FPrST0Inst <0xF0, "fdiv{|r}\t{%st(0), $op|$op, %ST(0)}">;
278def DIVR_FPrST0 : FPrST0PInst<0xF0, "fdiv{|r}p\t$op">;
Evan Chengffcb95b2006-02-21 19:13:53 +0000279
Evan Chengffcb95b2006-02-21 19:13:53 +0000280// Unary operations.
Dale Johannesene377d4d2007-07-04 21:07:47 +0000281multiclass FPUnary<SDNode OpNode, bits<8> opcode, string asmstring> {
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000282def _Fp32 : FpIf32<(outs RFP32:$dst), (ins RFP32:$src), OneArgFPRW,
Dale Johannesene377d4d2007-07-04 21:07:47 +0000283 [(set RFP32:$dst, (OpNode RFP32:$src))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000284def _Fp64 : FpIf64<(outs RFP64:$dst), (ins RFP64:$src), OneArgFPRW,
Dale Johannesene377d4d2007-07-04 21:07:47 +0000285 [(set RFP64:$dst, (OpNode RFP64:$src))]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000286def _Fp80 : FpI_<(outs RFP80:$dst), (ins RFP80:$src), OneArgFPRW,
Dale Johannesen59a58732007-08-05 18:49:15 +0000287 [(set RFP80:$dst, (OpNode RFP80:$src))]>;
Evan Cheng64d80e32007-07-19 01:14:50 +0000288def _F : FPI<opcode, RawFrm, (outs), (ins), asmstring>, D9;
Evan Chengffcb95b2006-02-21 19:13:53 +0000289}
290
Dale Johannesene377d4d2007-07-04 21:07:47 +0000291defm CHS : FPUnary<fneg, 0xE0, "fchs">;
292defm ABS : FPUnary<fabs, 0xE1, "fabs">;
293defm SQRT: FPUnary<fsqrt,0xFA, "fsqrt">;
294defm SIN : FPUnary<fsin, 0xFE, "fsin">;
295defm COS : FPUnary<fcos, 0xFF, "fcos">;
296
Chris Lattnera731c9f2008-01-11 07:18:17 +0000297let neverHasSideEffects = 1 in {
298def TST_Fp32 : FpIf32<(outs), (ins RFP32:$src), OneArgFP, []>;
299def TST_Fp64 : FpIf64<(outs), (ins RFP64:$src), OneArgFP, []>;
300def TST_Fp80 : FpI_<(outs), (ins RFP80:$src), OneArgFP, []>;
301}
Evan Cheng64d80e32007-07-19 01:14:50 +0000302def TST_F : FPI<0xE4, RawFrm, (outs), (ins), "ftst">, D9;
Dale Johannesene377d4d2007-07-04 21:07:47 +0000303
304// Floating point cmovs.
305multiclass FPCMov<PatLeaf cc> {
Evan Chenge5f62042007-09-29 00:00:36 +0000306 def _Fp32 : FpIf32<(outs RFP32:$dst), (ins RFP32:$src1, RFP32:$src2),
307 CondMovFP,
Dale Johannesene377d4d2007-07-04 21:07:47 +0000308 [(set RFP32:$dst, (X86cmov RFP32:$src1, RFP32:$src2,
Evan Chenge5f62042007-09-29 00:00:36 +0000309 cc, EFLAGS))]>;
310 def _Fp64 : FpIf64<(outs RFP64:$dst), (ins RFP64:$src1, RFP64:$src2),
311 CondMovFP,
Dale Johannesene377d4d2007-07-04 21:07:47 +0000312 [(set RFP64:$dst, (X86cmov RFP64:$src1, RFP64:$src2,
Evan Chenge5f62042007-09-29 00:00:36 +0000313 cc, EFLAGS))]>;
314 def _Fp80 : FpI_<(outs RFP80:$dst), (ins RFP80:$src1, RFP80:$src2),
315 CondMovFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000316 [(set RFP80:$dst, (X86cmov RFP80:$src1, RFP80:$src2,
Evan Chenge5f62042007-09-29 00:00:36 +0000317 cc, EFLAGS))]>;
Dale Johannesene377d4d2007-07-04 21:07:47 +0000318}
Evan Chenge5f62042007-09-29 00:00:36 +0000319let Uses = [EFLAGS], isTwoAddress = 1 in {
Dale Johannesene377d4d2007-07-04 21:07:47 +0000320defm CMOVB : FPCMov<X86_COND_B>;
321defm CMOVBE : FPCMov<X86_COND_BE>;
322defm CMOVE : FPCMov<X86_COND_E>;
323defm CMOVP : FPCMov<X86_COND_P>;
324defm CMOVNB : FPCMov<X86_COND_AE>;
325defm CMOVNBE: FPCMov<X86_COND_A>;
326defm CMOVNE : FPCMov<X86_COND_NE>;
327defm CMOVNP : FPCMov<X86_COND_NP>;
328}
329
330// These are not factored because there's no clean way to pass DA/DB.
Evan Cheng64d80e32007-07-19 01:14:50 +0000331def CMOVB_F : FPI<0xC0, AddRegFrm, (outs RST:$op), (ins),
Dan Gohmanb1576f52007-07-31 20:11:57 +0000332 "fcmovb\t{$op, %st(0)|%ST(0), $op}">, DA;
Evan Cheng64d80e32007-07-19 01:14:50 +0000333def CMOVBE_F : FPI<0xD0, AddRegFrm, (outs RST:$op), (ins),
Dan Gohmanb1576f52007-07-31 20:11:57 +0000334 "fcmovbe\t{$op, %st(0)|%ST(0), $op}">, DA;
Evan Cheng64d80e32007-07-19 01:14:50 +0000335def CMOVE_F : FPI<0xC8, AddRegFrm, (outs RST:$op), (ins),
Dan Gohmanb1576f52007-07-31 20:11:57 +0000336 "fcmove\t{$op, %st(0)|%ST(0), $op}">, DA;
Evan Cheng64d80e32007-07-19 01:14:50 +0000337def CMOVP_F : FPI<0xD8, AddRegFrm, (outs RST:$op), (ins),
Dan Gohmanb1576f52007-07-31 20:11:57 +0000338 "fcmovu\t {$op, %st(0)|%ST(0), $op}">, DA;
Evan Cheng64d80e32007-07-19 01:14:50 +0000339def CMOVNB_F : FPI<0xC0, AddRegFrm, (outs RST:$op), (ins),
Dan Gohmanb1576f52007-07-31 20:11:57 +0000340 "fcmovnb\t{$op, %st(0)|%ST(0), $op}">, DB;
Evan Cheng64d80e32007-07-19 01:14:50 +0000341def CMOVNBE_F: FPI<0xD0, AddRegFrm, (outs RST:$op), (ins),
Dan Gohmanb1576f52007-07-31 20:11:57 +0000342 "fcmovnbe\t{$op, %st(0)|%ST(0), $op}">, DB;
Evan Cheng64d80e32007-07-19 01:14:50 +0000343def CMOVNE_F : FPI<0xC8, AddRegFrm, (outs RST:$op), (ins),
Dan Gohmanb1576f52007-07-31 20:11:57 +0000344 "fcmovne\t{$op, %st(0)|%ST(0), $op}">, DB;
Evan Cheng64d80e32007-07-19 01:14:50 +0000345def CMOVNP_F : FPI<0xD8, AddRegFrm, (outs RST:$op), (ins),
Dan Gohmanb1576f52007-07-31 20:11:57 +0000346 "fcmovnu\t{$op, %st(0)|%ST(0), $op}">, DB;
Evan Chengffcb95b2006-02-21 19:13:53 +0000347
348// Floating point loads & stores.
Chris Lattner834f1ce2008-01-06 23:38:27 +0000349let isSimpleLoad = 1 in {
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000350def LD_Fp32m : FpIf32<(outs RFP32:$dst), (ins f32mem:$src), ZeroArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000351 [(set RFP32:$dst, (loadf32 addr:$src))]>;
Bill Wendling627c00b2007-12-17 23:07:56 +0000352let isReMaterializable = 1, mayHaveSideEffects = 1 in
Bill Wendling691de382007-12-17 22:17:14 +0000353 def LD_Fp64m : FpIf64<(outs RFP64:$dst), (ins f64mem:$src), ZeroArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000354 [(set RFP64:$dst, (loadf64 addr:$src))]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000355def LD_Fp80m : FpI_<(outs RFP80:$dst), (ins f80mem:$src), ZeroArgFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000356 [(set RFP80:$dst, (loadf80 addr:$src))]>;
Evan Cheng2f394262007-08-30 05:49:43 +0000357}
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000358def LD_Fp32m64 : FpIf64<(outs RFP64:$dst), (ins f32mem:$src), ZeroArgFP,
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000359 [(set RFP64:$dst, (f64 (extloadf32 addr:$src)))]>;
360def LD_Fp64m80 : FpI_<(outs RFP80:$dst), (ins f64mem:$src), ZeroArgFP,
361 [(set RFP80:$dst, (f80 (extloadf64 addr:$src)))]>;
362def LD_Fp32m80 : FpI_<(outs RFP80:$dst), (ins f32mem:$src), ZeroArgFP,
363 [(set RFP80:$dst, (f80 (extloadf32 addr:$src)))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000364def ILD_Fp16m32: FpIf32<(outs RFP32:$dst), (ins i16mem:$src), ZeroArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000365 [(set RFP32:$dst, (X86fild addr:$src, i16))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000366def ILD_Fp32m32: FpIf32<(outs RFP32:$dst), (ins i32mem:$src), ZeroArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000367 [(set RFP32:$dst, (X86fild addr:$src, i32))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000368def ILD_Fp64m32: FpIf32<(outs RFP32:$dst), (ins i64mem:$src), ZeroArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000369 [(set RFP32:$dst, (X86fild addr:$src, i64))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000370def ILD_Fp16m64: FpIf64<(outs RFP64:$dst), (ins i16mem:$src), ZeroArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000371 [(set RFP64:$dst, (X86fild addr:$src, i16))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000372def ILD_Fp32m64: FpIf64<(outs RFP64:$dst), (ins i32mem:$src), ZeroArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000373 [(set RFP64:$dst, (X86fild addr:$src, i32))]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000374def ILD_Fp64m64: FpIf64<(outs RFP64:$dst), (ins i64mem:$src), ZeroArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000375 [(set RFP64:$dst, (X86fild addr:$src, i64))]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000376def ILD_Fp16m80: FpI_<(outs RFP80:$dst), (ins i16mem:$src), ZeroArgFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000377 [(set RFP80:$dst, (X86fild addr:$src, i16))]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000378def ILD_Fp32m80: FpI_<(outs RFP80:$dst), (ins i32mem:$src), ZeroArgFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000379 [(set RFP80:$dst, (X86fild addr:$src, i32))]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000380def ILD_Fp64m80: FpI_<(outs RFP80:$dst), (ins i64mem:$src), ZeroArgFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000381 [(set RFP80:$dst, (X86fild addr:$src, i64))]>;
Evan Chengffcb95b2006-02-21 19:13:53 +0000382
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000383def ST_Fp32m : FpIf32<(outs), (ins f32mem:$op, RFP32:$src), OneArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000384 [(store RFP32:$src, addr:$op)]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000385def ST_Fp64m32 : FpIf64<(outs), (ins f32mem:$op, RFP64:$src), OneArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000386 [(truncstoref32 RFP64:$src, addr:$op)]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000387def ST_Fp64m : FpIf64<(outs), (ins f64mem:$op, RFP64:$src), OneArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000388 [(store RFP64:$src, addr:$op)]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000389def ST_Fp80m32 : FpI_<(outs), (ins f32mem:$op, RFP80:$src), OneArgFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000390 [(truncstoref32 RFP80:$src, addr:$op)]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000391def ST_Fp80m64 : FpI_<(outs), (ins f64mem:$op, RFP80:$src), OneArgFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000392 [(truncstoref64 RFP80:$src, addr:$op)]>;
393// FST does not support 80-bit memory target; FSTP must be used.
Evan Chengffcb95b2006-02-21 19:13:53 +0000394
Chris Lattnera731c9f2008-01-11 07:18:17 +0000395let mayStore = 1, neverHasSideEffects = 1 in {
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000396def ST_FpP32m : FpIf32<(outs), (ins f32mem:$op, RFP32:$src), OneArgFP, []>;
397def ST_FpP64m32 : FpIf64<(outs), (ins f32mem:$op, RFP64:$src), OneArgFP, []>;
398def ST_FpP64m : FpIf64<(outs), (ins f64mem:$op, RFP64:$src), OneArgFP, []>;
399def ST_FpP80m32 : FpI_<(outs), (ins f32mem:$op, RFP80:$src), OneArgFP, []>;
400def ST_FpP80m64 : FpI_<(outs), (ins f64mem:$op, RFP80:$src), OneArgFP, []>;
Chris Lattnerba7e7562008-01-10 07:59:24 +0000401}
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000402def ST_FpP80m : FpI_<(outs), (ins f80mem:$op, RFP80:$src), OneArgFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000403 [(store RFP80:$src, addr:$op)]>;
Chris Lattnera731c9f2008-01-11 07:18:17 +0000404let mayStore = 1, neverHasSideEffects = 1 in {
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000405def IST_Fp16m32 : FpIf32<(outs), (ins i16mem:$op, RFP32:$src), OneArgFP, []>;
406def IST_Fp32m32 : FpIf32<(outs), (ins i32mem:$op, RFP32:$src), OneArgFP, []>;
407def IST_Fp64m32 : FpIf32<(outs), (ins i64mem:$op, RFP32:$src), OneArgFP, []>;
408def IST_Fp16m64 : FpIf64<(outs), (ins i16mem:$op, RFP64:$src), OneArgFP, []>;
409def IST_Fp32m64 : FpIf64<(outs), (ins i32mem:$op, RFP64:$src), OneArgFP, []>;
410def IST_Fp64m64 : FpIf64<(outs), (ins i64mem:$op, RFP64:$src), OneArgFP, []>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000411def IST_Fp16m80 : FpI_<(outs), (ins i16mem:$op, RFP80:$src), OneArgFP, []>;
412def IST_Fp32m80 : FpI_<(outs), (ins i32mem:$op, RFP80:$src), OneArgFP, []>;
413def IST_Fp64m80 : FpI_<(outs), (ins i64mem:$op, RFP80:$src), OneArgFP, []>;
Chris Lattnerba7e7562008-01-10 07:59:24 +0000414}
Evan Chengffcb95b2006-02-21 19:13:53 +0000415
Chris Lattnerba7e7562008-01-10 07:59:24 +0000416let mayLoad = 1 in {
Dan Gohmanb1576f52007-07-31 20:11:57 +0000417def LD_F32m : FPI<0xD9, MRM0m, (outs), (ins f32mem:$src), "fld{s}\t$src">;
418def LD_F64m : FPI<0xDD, MRM0m, (outs), (ins f64mem:$src), "fld{l}\t$src">;
Dale Johannesen59a58732007-08-05 18:49:15 +0000419def LD_F80m : FPI<0xDB, MRM5m, (outs), (ins f80mem:$src), "fld{t}\t$src">;
Dan Gohmanb1576f52007-07-31 20:11:57 +0000420def ILD_F16m : FPI<0xDF, MRM0m, (outs), (ins i16mem:$src), "fild{s}\t$src">;
421def ILD_F32m : FPI<0xDB, MRM0m, (outs), (ins i32mem:$src), "fild{l}\t$src">;
422def ILD_F64m : FPI<0xDF, MRM5m, (outs), (ins i64mem:$src), "fild{ll}\t$src">;
Chris Lattnerba7e7562008-01-10 07:59:24 +0000423}
424let mayStore = 1 in {
Dan Gohmanb1576f52007-07-31 20:11:57 +0000425def ST_F32m : FPI<0xD9, MRM2m, (outs), (ins f32mem:$dst), "fst{s}\t$dst">;
426def ST_F64m : FPI<0xDD, MRM2m, (outs), (ins f64mem:$dst), "fst{l}\t$dst">;
427def ST_FP32m : FPI<0xD9, MRM3m, (outs), (ins f32mem:$dst), "fstp{s}\t$dst">;
428def ST_FP64m : FPI<0xDD, MRM3m, (outs), (ins f64mem:$dst), "fstp{l}\t$dst">;
Dale Johannesen59a58732007-08-05 18:49:15 +0000429def ST_FP80m : FPI<0xDB, MRM7m, (outs), (ins f80mem:$dst), "fstp{t}\t$dst">;
Dan Gohmanb1576f52007-07-31 20:11:57 +0000430def IST_F16m : FPI<0xDF, MRM2m, (outs), (ins i16mem:$dst), "fist{s}\t$dst">;
431def IST_F32m : FPI<0xDB, MRM2m, (outs), (ins i32mem:$dst), "fist{l}\t$dst">;
432def IST_FP16m : FPI<0xDF, MRM3m, (outs), (ins i16mem:$dst), "fistp{s}\t$dst">;
433def IST_FP32m : FPI<0xDB, MRM3m, (outs), (ins i32mem:$dst), "fistp{l}\t$dst">;
434def IST_FP64m : FPI<0xDF, MRM7m, (outs), (ins i64mem:$dst), "fistp{ll}\t$dst">;
Chris Lattnerba7e7562008-01-10 07:59:24 +0000435}
Evan Chengffcb95b2006-02-21 19:13:53 +0000436
437// FISTTP requires SSE3 even though it's a FPStack op.
Evan Cheng64d80e32007-07-19 01:14:50 +0000438def ISTT_Fp16m32 : FpI_<(outs), (ins i16mem:$op, RFP32:$src), OneArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000439 [(X86fp_to_i16mem RFP32:$src, addr:$op)]>,
440 Requires<[HasSSE3]>;
Evan Cheng64d80e32007-07-19 01:14:50 +0000441def ISTT_Fp32m32 : FpI_<(outs), (ins i32mem:$op, RFP32:$src), OneArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000442 [(X86fp_to_i32mem RFP32:$src, addr:$op)]>,
443 Requires<[HasSSE3]>;
Evan Cheng64d80e32007-07-19 01:14:50 +0000444def ISTT_Fp64m32 : FpI_<(outs), (ins i64mem:$op, RFP32:$src), OneArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000445 [(X86fp_to_i64mem RFP32:$src, addr:$op)]>,
446 Requires<[HasSSE3]>;
Evan Cheng64d80e32007-07-19 01:14:50 +0000447def ISTT_Fp16m64 : FpI_<(outs), (ins i16mem:$op, RFP64:$src), OneArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000448 [(X86fp_to_i16mem RFP64:$src, addr:$op)]>,
449 Requires<[HasSSE3]>;
Evan Cheng64d80e32007-07-19 01:14:50 +0000450def ISTT_Fp32m64 : FpI_<(outs), (ins i32mem:$op, RFP64:$src), OneArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000451 [(X86fp_to_i32mem RFP64:$src, addr:$op)]>,
452 Requires<[HasSSE3]>;
Evan Cheng64d80e32007-07-19 01:14:50 +0000453def ISTT_Fp64m64 : FpI_<(outs), (ins i64mem:$op, RFP64:$src), OneArgFP,
Dale Johannesen411d9c52007-07-03 17:07:33 +0000454 [(X86fp_to_i64mem RFP64:$src, addr:$op)]>,
455 Requires<[HasSSE3]>;
Dale Johannesena996d522007-08-07 01:17:37 +0000456def ISTT_Fp16m80 : FpI_<(outs), (ins i16mem:$op, RFP80:$src), OneArgFP,
457 [(X86fp_to_i16mem RFP80:$src, addr:$op)]>,
458 Requires<[HasSSE3]>;
459def ISTT_Fp32m80 : FpI_<(outs), (ins i32mem:$op, RFP80:$src), OneArgFP,
460 [(X86fp_to_i32mem RFP80:$src, addr:$op)]>,
461 Requires<[HasSSE3]>;
462def ISTT_Fp64m80 : FpI_<(outs), (ins i64mem:$op, RFP80:$src), OneArgFP,
463 [(X86fp_to_i64mem RFP80:$src, addr:$op)]>,
464 Requires<[HasSSE3]>;
Evan Chengffcb95b2006-02-21 19:13:53 +0000465
Chris Lattnerba7e7562008-01-10 07:59:24 +0000466let mayStore = 1 in {
Dan Gohmanb1576f52007-07-31 20:11:57 +0000467def ISTT_FP16m : FPI<0xDF, MRM1m, (outs), (ins i16mem:$dst), "fisttp{s}\t$dst">;
468def ISTT_FP32m : FPI<0xDB, MRM1m, (outs), (ins i32mem:$dst), "fisttp{l}\t$dst">;
469def ISTT_FP64m : FPI<0xDD, MRM1m, (outs), (ins i64mem:$dst), "fisttp{ll}\t$dst">;
Chris Lattnerba7e7562008-01-10 07:59:24 +0000470}
Evan Chengffcb95b2006-02-21 19:13:53 +0000471
472// FP Stack manipulation instructions.
Dan Gohmanb1576f52007-07-31 20:11:57 +0000473def LD_Frr : FPI<0xC0, AddRegFrm, (outs), (ins RST:$op), "fld\t$op">, D9;
474def ST_Frr : FPI<0xD0, AddRegFrm, (outs), (ins RST:$op), "fst\t$op">, DD;
475def ST_FPrr : FPI<0xD8, AddRegFrm, (outs), (ins RST:$op), "fstp\t$op">, DD;
476def XCH_F : FPI<0xC8, AddRegFrm, (outs), (ins RST:$op), "fxch\t$op">, D9;
Evan Chengffcb95b2006-02-21 19:13:53 +0000477
478// Floating point constant loads.
Chris Lattnerdd415272008-01-10 05:45:39 +0000479let isReMaterializable = 1 in {
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000480def LD_Fp032 : FpIf32<(outs RFP32:$dst), (ins), ZeroArgFP,
Dale Johannesen849f2142007-07-03 00:53:03 +0000481 [(set RFP32:$dst, fpimm0)]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000482def LD_Fp132 : FpIf32<(outs RFP32:$dst), (ins), ZeroArgFP,
Dale Johannesen849f2142007-07-03 00:53:03 +0000483 [(set RFP32:$dst, fpimm1)]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000484def LD_Fp064 : FpIf64<(outs RFP64:$dst), (ins), ZeroArgFP,
Dale Johannesen849f2142007-07-03 00:53:03 +0000485 [(set RFP64:$dst, fpimm0)]>;
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000486def LD_Fp164 : FpIf64<(outs RFP64:$dst), (ins), ZeroArgFP,
Dale Johannesen849f2142007-07-03 00:53:03 +0000487 [(set RFP64:$dst, fpimm1)]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000488def LD_Fp080 : FpI_<(outs RFP80:$dst), (ins), ZeroArgFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000489 [(set RFP80:$dst, fpimm0)]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000490def LD_Fp180 : FpI_<(outs RFP80:$dst), (ins), ZeroArgFP,
Dale Johannesen59a58732007-08-05 18:49:15 +0000491 [(set RFP80:$dst, fpimm1)]>;
Dan Gohmand45eddd2007-06-26 00:48:07 +0000492}
Evan Chengffcb95b2006-02-21 19:13:53 +0000493
Evan Cheng64d80e32007-07-19 01:14:50 +0000494def LD_F0 : FPI<0xEE, RawFrm, (outs), (ins), "fldz">, D9;
495def LD_F1 : FPI<0xE8, RawFrm, (outs), (ins), "fld1">, D9;
Evan Chengffcb95b2006-02-21 19:13:53 +0000496
497
498// Floating point compares.
Evan Cheng4e4d2d72007-09-25 19:08:02 +0000499let Defs = [EFLAGS] in {
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000500def UCOM_Fpr32 : FpIf32<(outs), (ins RFP32:$lhs, RFP32:$rhs), CompareFP,
Chris Lattnera731c9f2008-01-11 07:18:17 +0000501 []>; // FPSW = cmp ST(0) with ST(i)
502def UCOM_Fpr64 : FpIf64<(outs), (ins RFP64:$lhs, RFP64:$rhs), CompareFP,
503 []>; // FPSW = cmp ST(0) with ST(i)
504def UCOM_Fpr80 : FpI_ <(outs), (ins RFP80:$lhs, RFP80:$rhs), CompareFP,
505 []>; // FPSW = cmp ST(0) with ST(i)
506
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000507def UCOM_FpIr32: FpIf32<(outs), (ins RFP32:$lhs, RFP32:$rhs), CompareFP,
Evan Chenge5f62042007-09-29 00:00:36 +0000508 [(X86cmp RFP32:$lhs, RFP32:$rhs),
509 (implicit EFLAGS)]>; // CC = ST(0) cmp ST(i)
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000510def UCOM_FpIr64: FpIf64<(outs), (ins RFP64:$lhs, RFP64:$rhs), CompareFP,
Evan Chenge5f62042007-09-29 00:00:36 +0000511 [(X86cmp RFP64:$lhs, RFP64:$rhs),
512 (implicit EFLAGS)]>; // CC = ST(0) cmp ST(i)
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000513def UCOM_FpIr80: FpI_<(outs), (ins RFP80:$lhs, RFP80:$rhs), CompareFP,
Evan Chenge5f62042007-09-29 00:00:36 +0000514 [(X86cmp RFP80:$lhs, RFP80:$rhs),
Evan Cheng4e4d2d72007-09-25 19:08:02 +0000515 (implicit EFLAGS)]>; // CC = ST(0) cmp ST(i)
516}
517
Evan Cheng24f2ea32007-09-14 21:48:26 +0000518let Defs = [EFLAGS], Uses = [ST0] in {
Dale Johannesene377d4d2007-07-04 21:07:47 +0000519def UCOM_Fr : FPI<0xE0, AddRegFrm, // FPSW = cmp ST(0) with ST(i)
Evan Cheng64d80e32007-07-19 01:14:50 +0000520 (outs), (ins RST:$reg),
Evan Cheng071a2792007-09-11 19:55:27 +0000521 "fucom\t$reg">, DD;
Dale Johannesene377d4d2007-07-04 21:07:47 +0000522def UCOM_FPr : FPI<0xE8, AddRegFrm, // FPSW = cmp ST(0) with ST(i), pop
Evan Cheng64d80e32007-07-19 01:14:50 +0000523 (outs), (ins RST:$reg),
Evan Cheng071a2792007-09-11 19:55:27 +0000524 "fucomp\t$reg">, DD;
Dale Johannesene377d4d2007-07-04 21:07:47 +0000525def UCOM_FPPr : FPI<0xE9, RawFrm, // cmp ST(0) with ST(1), pop, pop
Evan Cheng64d80e32007-07-19 01:14:50 +0000526 (outs), (ins),
Evan Cheng071a2792007-09-11 19:55:27 +0000527 "fucompp">, DA;
Evan Chengffcb95b2006-02-21 19:13:53 +0000528
Dale Johannesene377d4d2007-07-04 21:07:47 +0000529def UCOM_FIr : FPI<0xE8, AddRegFrm, // CC = cmp ST(0) with ST(i)
Evan Cheng64d80e32007-07-19 01:14:50 +0000530 (outs), (ins RST:$reg),
Evan Cheng071a2792007-09-11 19:55:27 +0000531 "fucomi\t{$reg, %st(0)|%ST(0), $reg}">, DB;
Dale Johannesene377d4d2007-07-04 21:07:47 +0000532def UCOM_FIPr : FPI<0xE8, AddRegFrm, // CC = cmp ST(0) with ST(i), pop
Evan Cheng64d80e32007-07-19 01:14:50 +0000533 (outs), (ins RST:$reg),
Evan Cheng071a2792007-09-11 19:55:27 +0000534 "fucomip\t{$reg, %st(0)|%ST(0), $reg}">, DF;
535}
Evan Chengffcb95b2006-02-21 19:13:53 +0000536
Evan Chengffcb95b2006-02-21 19:13:53 +0000537// Floating point flag ops.
Evan Cheng071a2792007-09-11 19:55:27 +0000538let Defs = [AX] in
Evan Chengffcb95b2006-02-21 19:13:53 +0000539def FNSTSW8r : I<0xE0, RawFrm, // AX = fp flags
Evan Cheng071a2792007-09-11 19:55:27 +0000540 (outs), (ins), "fnstsw", []>, DF;
Evan Chengffcb95b2006-02-21 19:13:53 +0000541
542def FNSTCW16m : I<0xD9, MRM7m, // [mem16] = X87 control world
Anton Korobeynikov45b22fa2007-11-16 01:31:51 +0000543 (outs), (ins i16mem:$dst), "fnstcw\t$dst",
544 [(X86fp_cwd_get16 addr:$dst)]>;
Chris Lattnerba7e7562008-01-10 07:59:24 +0000545
546let mayLoad = 1 in
Evan Chengffcb95b2006-02-21 19:13:53 +0000547def FLDCW16m : I<0xD9, MRM5m, // X87 control world = [mem16]
Dan Gohmanb1576f52007-07-31 20:11:57 +0000548 (outs), (ins i16mem:$dst), "fldcw\t$dst", []>;
Evan Cheng4e4c71e2006-02-21 20:00:20 +0000549
550//===----------------------------------------------------------------------===//
551// Non-Instruction Patterns
552//===----------------------------------------------------------------------===//
553
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000554// Required for RET of f32 / f64 / f80 values.
Dale Johannesene377d4d2007-07-04 21:07:47 +0000555def : Pat<(X86fld addr:$src, f32), (LD_Fp32m addr:$src)>;
556def : Pat<(X86fld addr:$src, f64), (LD_Fp64m addr:$src)>;
Dale Johannesen59a58732007-08-05 18:49:15 +0000557def : Pat<(X86fld addr:$src, f80), (LD_Fp80m addr:$src)>;
Evan Cheng4e4c71e2006-02-21 20:00:20 +0000558
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000559// Required for CALL which return f32 / f64 / f80 values.
Dale Johannesene377d4d2007-07-04 21:07:47 +0000560def : Pat<(X86fst RFP32:$src, addr:$op, f32), (ST_Fp32m addr:$op, RFP32:$src)>;
561def : Pat<(X86fst RFP64:$src, addr:$op, f32), (ST_Fp64m32 addr:$op, RFP64:$src)>;
562def : Pat<(X86fst RFP64:$src, addr:$op, f64), (ST_Fp64m addr:$op, RFP64:$src)>;
Dale Johannesena996d522007-08-07 01:17:37 +0000563def : Pat<(X86fst RFP80:$src, addr:$op, f32), (ST_Fp80m32 addr:$op, RFP80:$src)>;
564def : Pat<(X86fst RFP80:$src, addr:$op, f64), (ST_Fp80m64 addr:$op, RFP80:$src)>;
565def : Pat<(X86fst RFP80:$src, addr:$op, f80), (ST_FpP80m addr:$op, RFP80:$src)>;
Evan Cheng4e4c71e2006-02-21 20:00:20 +0000566
567// Floating point constant -0.0 and -1.0
Dale Johannesenf1fc3a82007-09-23 14:52:20 +0000568def : Pat<(f32 fpimmneg0), (CHS_Fp32 (LD_Fp032))>, Requires<[FPStackf32]>;
569def : Pat<(f32 fpimmneg1), (CHS_Fp32 (LD_Fp132))>, Requires<[FPStackf32]>;
570def : Pat<(f64 fpimmneg0), (CHS_Fp64 (LD_Fp064))>, Requires<[FPStackf64]>;
571def : Pat<(f64 fpimmneg1), (CHS_Fp64 (LD_Fp164))>, Requires<[FPStackf64]>;
Dale Johannesencdbe4d32007-08-07 20:29:26 +0000572def : Pat<(f80 fpimmneg0), (CHS_Fp80 (LD_Fp080))>;
573def : Pat<(f80 fpimmneg1), (CHS_Fp80 (LD_Fp180))>;
Evan Cheng4e4c71e2006-02-21 20:00:20 +0000574
575// Used to conv. i64 to f64 since there isn't a SSE version.
Dale Johannesene377d4d2007-07-04 21:07:47 +0000576def : Pat<(X86fildflag addr:$src, i64), (ILD_Fp64m64 addr:$src)>;
Dale Johannesen849f2142007-07-03 00:53:03 +0000577
Chris Lattner6fa2f9c2008-03-09 07:05:32 +0000578// FP extensions map onto simple pseudo-value conversions if they are to/from
579// the FP stack.
580def : Pat<(f64 (fextend RFP32:$src)), (MOV_Fp3264 RFP32:$src)>,
581 Requires<[FPStackf32]>;
582def : Pat<(f80 (fextend RFP32:$src)), (MOV_Fp3280 RFP32:$src)>,
583 Requires<[FPStackf32]>;
584def : Pat<(f80 (fextend RFP64:$src)), (MOV_Fp6480 RFP64:$src)>,
585 Requires<[FPStackf64]>;
586
587// FP truncations map onto simple pseudo-value conversions if they are to/from
588// the FP stack. We have validated that only value-preserving truncations make
589// it through isel.
590def : Pat<(f32 (fround RFP64:$src)), (MOV_Fp6432 RFP64:$src)>,
591 Requires<[FPStackf32]>;
592def : Pat<(f32 (fround RFP80:$src)), (MOV_Fp8032 RFP80:$src)>,
593 Requires<[FPStackf32]>;
594def : Pat<(f64 (fround RFP80:$src)), (MOV_Fp8064 RFP80:$src)>,
595 Requires<[FPStackf64]>;