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Akira Hatanaka30a84782013-03-14 18:27:31 +00001//===-- MipsSEISelDAGToDAG.cpp - A Dag to Dag Inst Selector for MipsSE ----===//
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// Subclass of MipsDAGToDAGISel specialized for mips32/64.
11//
12//===----------------------------------------------------------------------===//
13
Akira Hatanaka30a84782013-03-14 18:27:31 +000014#include "MipsSEISelDAGToDAG.h"
Akira Hatanaka30a84782013-03-14 18:27:31 +000015#include "MCTargetDesc/MipsBaseInfo.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000016#include "Mips.h"
Akira Hatanaka30a84782013-03-14 18:27:31 +000017#include "MipsAnalyzeImmediate.h"
18#include "MipsMachineFunction.h"
19#include "MipsRegisterInfo.h"
20#include "llvm/CodeGen/MachineConstantPool.h"
21#include "llvm/CodeGen/MachineFrameInfo.h"
22#include "llvm/CodeGen/MachineFunction.h"
23#include "llvm/CodeGen/MachineInstrBuilder.h"
24#include "llvm/CodeGen/MachineRegisterInfo.h"
25#include "llvm/CodeGen/SelectionDAGNodes.h"
Chandler Carruth1305dc32014-03-04 11:45:46 +000026#include "llvm/IR/CFG.h"
Akira Hatanaka30a84782013-03-14 18:27:31 +000027#include "llvm/IR/GlobalValue.h"
28#include "llvm/IR/Instructions.h"
29#include "llvm/IR/Intrinsics.h"
30#include "llvm/IR/Type.h"
Akira Hatanaka30a84782013-03-14 18:27:31 +000031#include "llvm/Support/Debug.h"
32#include "llvm/Support/ErrorHandling.h"
33#include "llvm/Support/raw_ostream.h"
34#include "llvm/Target/TargetMachine.h"
35using namespace llvm;
36
Chandler Carruth84e68b22014-04-22 02:41:26 +000037#define DEBUG_TYPE "mips-isel"
38
Reed Kotler1595f362013-04-09 19:46:01 +000039bool MipsSEDAGToDAGISel::runOnMachineFunction(MachineFunction &MF) {
Eric Christopher4e7d1e72014-07-18 23:41:32 +000040 Subtarget = &TM.getSubtarget<MipsSubtarget>();
Eric Christopher22405e42014-07-10 17:26:51 +000041 if (Subtarget->inMips16Mode())
Reed Kotler1595f362013-04-09 19:46:01 +000042 return false;
43 return MipsDAGToDAGISel::runOnMachineFunction(MF);
44}
Akira Hatanaka30a84782013-03-14 18:27:31 +000045
Akira Hatanakae86bd4f2013-05-03 18:37:49 +000046void MipsSEDAGToDAGISel::addDSPCtrlRegOperands(bool IsDef, MachineInstr &MI,
47 MachineFunction &MF) {
48 MachineInstrBuilder MIB(MF, &MI);
49 unsigned Mask = MI.getOperand(1).getImm();
50 unsigned Flag = IsDef ? RegState::ImplicitDefine : RegState::Implicit;
51
52 if (Mask & 1)
53 MIB.addReg(Mips::DSPPos, Flag);
54
55 if (Mask & 2)
56 MIB.addReg(Mips::DSPSCount, Flag);
57
58 if (Mask & 4)
59 MIB.addReg(Mips::DSPCarry, Flag);
60
61 if (Mask & 8)
62 MIB.addReg(Mips::DSPOutFlag, Flag);
63
64 if (Mask & 16)
65 MIB.addReg(Mips::DSPCCond, Flag);
66
67 if (Mask & 32)
68 MIB.addReg(Mips::DSPEFI, Flag);
69}
70
Daniel Sandersf9aa1d12013-08-28 10:26:24 +000071unsigned MipsSEDAGToDAGISel::getMSACtrlReg(const SDValue RegIdx) const {
72 switch (cast<ConstantSDNode>(RegIdx)->getZExtValue()) {
73 default:
74 llvm_unreachable("Could not map int to register");
75 case 0: return Mips::MSAIR;
76 case 1: return Mips::MSACSR;
77 case 2: return Mips::MSAAccess;
78 case 3: return Mips::MSASave;
79 case 4: return Mips::MSAModify;
80 case 5: return Mips::MSARequest;
81 case 6: return Mips::MSAMap;
82 case 7: return Mips::MSAUnmap;
83 }
84}
85
Akira Hatanaka040d2252013-03-14 18:33:23 +000086bool MipsSEDAGToDAGISel::replaceUsesWithZeroReg(MachineRegisterInfo *MRI,
Akira Hatanaka30a84782013-03-14 18:27:31 +000087 const MachineInstr& MI) {
88 unsigned DstReg = 0, ZeroReg = 0;
89
90 // Check if MI is "addiu $dst, $zero, 0" or "daddiu $dst, $zero, 0".
91 if ((MI.getOpcode() == Mips::ADDiu) &&
92 (MI.getOperand(1).getReg() == Mips::ZERO) &&
93 (MI.getOperand(2).getImm() == 0)) {
94 DstReg = MI.getOperand(0).getReg();
95 ZeroReg = Mips::ZERO;
96 } else if ((MI.getOpcode() == Mips::DADDiu) &&
97 (MI.getOperand(1).getReg() == Mips::ZERO_64) &&
98 (MI.getOperand(2).getImm() == 0)) {
99 DstReg = MI.getOperand(0).getReg();
100 ZeroReg = Mips::ZERO_64;
101 }
102
103 if (!DstReg)
104 return false;
105
106 // Replace uses with ZeroReg.
107 for (MachineRegisterInfo::use_iterator U = MRI->use_begin(DstReg),
108 E = MRI->use_end(); U != E;) {
Owen Anderson16c6bf42014-03-13 23:12:04 +0000109 MachineOperand &MO = *U;
Akira Hatanaka30a84782013-03-14 18:27:31 +0000110 unsigned OpNo = U.getOperandNo();
111 MachineInstr *MI = MO.getParent();
112 ++U;
113
114 // Do not replace if it is a phi's operand or is tied to def operand.
115 if (MI->isPHI() || MI->isRegTiedToDefOperand(OpNo) || MI->isPseudo())
116 continue;
117
118 MO.setReg(ZeroReg);
119 }
120
121 return true;
122}
123
Akira Hatanaka040d2252013-03-14 18:33:23 +0000124void MipsSEDAGToDAGISel::initGlobalBaseReg(MachineFunction &MF) {
Akira Hatanaka30a84782013-03-14 18:27:31 +0000125 MipsFunctionInfo *MipsFI = MF.getInfo<MipsFunctionInfo>();
126
127 if (!MipsFI->globalBaseRegSet())
128 return;
129
130 MachineBasicBlock &MBB = MF.front();
131 MachineBasicBlock::iterator I = MBB.begin();
132 MachineRegisterInfo &RegInfo = MF.getRegInfo();
Eric Christopherfc6de422014-08-05 02:39:49 +0000133 const TargetInstrInfo &TII = *MF.getSubtarget().getInstrInfo();
Akira Hatanaka30a84782013-03-14 18:27:31 +0000134 DebugLoc DL = I != MBB.end() ? I->getDebugLoc() : DebugLoc();
135 unsigned V0, V1, GlobalBaseReg = MipsFI->getGlobalBaseReg();
136 const TargetRegisterClass *RC;
137
Craig Topper61e88f42014-11-21 05:58:21 +0000138 RC = (Subtarget->isABI_N64()) ? &Mips::GPR64RegClass : &Mips::GPR32RegClass;
Akira Hatanaka30a84782013-03-14 18:27:31 +0000139
140 V0 = RegInfo.createVirtualRegister(RC);
141 V1 = RegInfo.createVirtualRegister(RC);
142
Eric Christopher22405e42014-07-10 17:26:51 +0000143 if (Subtarget->isABI_N64()) {
Akira Hatanaka30a84782013-03-14 18:27:31 +0000144 MF.getRegInfo().addLiveIn(Mips::T9_64);
145 MBB.addLiveIn(Mips::T9_64);
146
147 // lui $v0, %hi(%neg(%gp_rel(fname)))
148 // daddu $v1, $v0, $t9
149 // daddiu $globalbasereg, $v1, %lo(%neg(%gp_rel(fname)))
150 const GlobalValue *FName = MF.getFunction();
151 BuildMI(MBB, I, DL, TII.get(Mips::LUi64), V0)
152 .addGlobalAddress(FName, 0, MipsII::MO_GPOFF_HI);
153 BuildMI(MBB, I, DL, TII.get(Mips::DADDu), V1).addReg(V0)
154 .addReg(Mips::T9_64);
155 BuildMI(MBB, I, DL, TII.get(Mips::DADDiu), GlobalBaseReg).addReg(V1)
156 .addGlobalAddress(FName, 0, MipsII::MO_GPOFF_LO);
157 return;
158 }
159
160 if (MF.getTarget().getRelocationModel() == Reloc::Static) {
161 // Set global register to __gnu_local_gp.
162 //
163 // lui $v0, %hi(__gnu_local_gp)
164 // addiu $globalbasereg, $v0, %lo(__gnu_local_gp)
165 BuildMI(MBB, I, DL, TII.get(Mips::LUi), V0)
166 .addExternalSymbol("__gnu_local_gp", MipsII::MO_ABS_HI);
167 BuildMI(MBB, I, DL, TII.get(Mips::ADDiu), GlobalBaseReg).addReg(V0)
168 .addExternalSymbol("__gnu_local_gp", MipsII::MO_ABS_LO);
169 return;
170 }
171
172 MF.getRegInfo().addLiveIn(Mips::T9);
173 MBB.addLiveIn(Mips::T9);
174
Eric Christopher22405e42014-07-10 17:26:51 +0000175 if (Subtarget->isABI_N32()) {
Akira Hatanaka30a84782013-03-14 18:27:31 +0000176 // lui $v0, %hi(%neg(%gp_rel(fname)))
177 // addu $v1, $v0, $t9
178 // addiu $globalbasereg, $v1, %lo(%neg(%gp_rel(fname)))
179 const GlobalValue *FName = MF.getFunction();
180 BuildMI(MBB, I, DL, TII.get(Mips::LUi), V0)
181 .addGlobalAddress(FName, 0, MipsII::MO_GPOFF_HI);
182 BuildMI(MBB, I, DL, TII.get(Mips::ADDu), V1).addReg(V0).addReg(Mips::T9);
183 BuildMI(MBB, I, DL, TII.get(Mips::ADDiu), GlobalBaseReg).addReg(V1)
184 .addGlobalAddress(FName, 0, MipsII::MO_GPOFF_LO);
185 return;
186 }
187
Eric Christopher22405e42014-07-10 17:26:51 +0000188 assert(Subtarget->isABI_O32());
Akira Hatanaka30a84782013-03-14 18:27:31 +0000189
190 // For O32 ABI, the following instruction sequence is emitted to initialize
191 // the global base register:
192 //
193 // 0. lui $2, %hi(_gp_disp)
194 // 1. addiu $2, $2, %lo(_gp_disp)
195 // 2. addu $globalbasereg, $2, $t9
196 //
197 // We emit only the last instruction here.
198 //
199 // GNU linker requires that the first two instructions appear at the beginning
200 // of a function and no instructions be inserted before or between them.
201 // The two instructions are emitted during lowering to MC layer in order to
202 // avoid any reordering.
203 //
204 // Register $2 (Mips::V0) is added to the list of live-in registers to ensure
205 // the value instruction 1 (addiu) defines is valid when instruction 2 (addu)
206 // reads it.
207 MF.getRegInfo().addLiveIn(Mips::V0);
208 MBB.addLiveIn(Mips::V0);
209 BuildMI(MBB, I, DL, TII.get(Mips::ADDu), GlobalBaseReg)
210 .addReg(Mips::V0).addReg(Mips::T9);
211}
212
Akira Hatanaka040d2252013-03-14 18:33:23 +0000213void MipsSEDAGToDAGISel::processFunctionAfterISel(MachineFunction &MF) {
214 initGlobalBaseReg(MF);
Akira Hatanaka30a84782013-03-14 18:27:31 +0000215
216 MachineRegisterInfo *MRI = &MF.getRegInfo();
217
218 for (MachineFunction::iterator MFI = MF.begin(), MFE = MF.end(); MFI != MFE;
219 ++MFI)
Akira Hatanakae86bd4f2013-05-03 18:37:49 +0000220 for (MachineBasicBlock::iterator I = MFI->begin(); I != MFI->end(); ++I) {
221 if (I->getOpcode() == Mips::RDDSP)
222 addDSPCtrlRegOperands(false, *I, MF);
223 else if (I->getOpcode() == Mips::WRDSP)
224 addDSPCtrlRegOperands(true, *I, MF);
225 else
226 replaceUsesWithZeroReg(MRI, *I);
227 }
Akira Hatanaka30a84782013-03-14 18:27:31 +0000228}
229
Akira Hatanakab8835b82013-03-14 18:39:25 +0000230SDNode *MipsSEDAGToDAGISel::selectAddESubE(unsigned MOp, SDValue InFlag,
Andrew Trickef9de2a2013-05-25 02:42:55 +0000231 SDValue CmpLHS, SDLoc DL,
Akira Hatanakab8835b82013-03-14 18:39:25 +0000232 SDNode *Node) const {
233 unsigned Opc = InFlag.getOpcode(); (void)Opc;
234
235 assert(((Opc == ISD::ADDC || Opc == ISD::ADDE) ||
236 (Opc == ISD::SUBC || Opc == ISD::SUBE)) &&
237 "(ADD|SUB)E flag operand must come from (ADD|SUB)C/E insn");
238
239 SDValue Ops[] = { CmpLHS, InFlag.getOperand(1) };
240 SDValue LHS = Node->getOperand(0), RHS = Node->getOperand(1);
241 EVT VT = LHS.getValueType();
242
Daniel Sanders5a9225b2015-01-24 12:58:10 +0000243 unsigned SltOp = Mips::SLTu;
244 unsigned AddOp = Mips::ADDu;
245 if (VT == MVT::i64) {
246 SltOp = Mips::SLTu64;
247 AddOp = Mips::DADDu;
248 }
249
250 SDValue Carry = SDValue(CurDAG->getMachineNode(SltOp, DL, VT, Ops), 0);
251 if (SltOp == Mips::SLTu64) {
252 // On 64-bit targets, sltu produces an i64 but our backend currently says
253 // that SLTu64 produces an i32. We need to fix this in the long run but for
254 // now, just make the DAG type-correct by asserting the upper bits are zero.
255 Carry = SDValue(CurDAG->getMachineNode(
256 Mips::SUBREG_TO_REG, DL, VT,
257 CurDAG->getTargetConstant(0, VT), Carry,
258 CurDAG->getTargetConstant(Mips::sub_32, MVT::i32)),
259 0);
260 }
261
262 SDNode *AddCarry = CurDAG->getMachineNode(AddOp, DL, VT, Carry, RHS);
263
Akira Hatanakab8835b82013-03-14 18:39:25 +0000264 return CurDAG->SelectNodeTo(Node, MOp, VT, MVT::Glue, LHS,
265 SDValue(AddCarry, 0));
266}
267
Daniel Sandersfa961d72014-03-03 14:31:21 +0000268/// Match frameindex
269bool MipsSEDAGToDAGISel::selectAddrFrameIndex(SDValue Addr, SDValue &Base,
270 SDValue &Offset) const {
Akira Hatanaka30a84782013-03-14 18:27:31 +0000271 if (FrameIndexSDNode *FIN = dyn_cast<FrameIndexSDNode>(Addr)) {
Daniel Sandersfa961d72014-03-03 14:31:21 +0000272 EVT ValTy = Addr.getValueType();
273
Akira Hatanaka30a84782013-03-14 18:27:31 +0000274 Base = CurDAG->getTargetFrameIndex(FIN->getIndex(), ValTy);
275 Offset = CurDAG->getTargetConstant(0, ValTy);
276 return true;
277 }
Daniel Sandersfa961d72014-03-03 14:31:21 +0000278 return false;
279}
280
281/// Match frameindex+offset and frameindex|offset
282bool MipsSEDAGToDAGISel::selectAddrFrameIndexOffset(SDValue Addr, SDValue &Base,
283 SDValue &Offset,
284 unsigned OffsetBits) const {
285 if (CurDAG->isBaseWithConstantOffset(Addr)) {
286 ConstantSDNode *CN = dyn_cast<ConstantSDNode>(Addr.getOperand(1));
287 if (isIntN(OffsetBits, CN->getSExtValue())) {
288 EVT ValTy = Addr.getValueType();
289
290 // If the first operand is a FI, get the TargetFI Node
291 if (FrameIndexSDNode *FIN = dyn_cast<FrameIndexSDNode>
292 (Addr.getOperand(0)))
293 Base = CurDAG->getTargetFrameIndex(FIN->getIndex(), ValTy);
294 else
295 Base = Addr.getOperand(0);
296
297 Offset = CurDAG->getTargetConstant(CN->getZExtValue(), ValTy);
298 return true;
299 }
300 }
301 return false;
302}
303
304/// ComplexPattern used on MipsInstrInfo
305/// Used on Mips Load/Store instructions
306bool MipsSEDAGToDAGISel::selectAddrRegImm(SDValue Addr, SDValue &Base,
307 SDValue &Offset) const {
308 // if Address is FI, get the TargetFrameIndex.
309 if (selectAddrFrameIndex(Addr, Base, Offset))
310 return true;
Akira Hatanaka30a84782013-03-14 18:27:31 +0000311
312 // on PIC code Load GA
313 if (Addr.getOpcode() == MipsISD::Wrapper) {
314 Base = Addr.getOperand(0);
315 Offset = Addr.getOperand(1);
316 return true;
317 }
318
319 if (TM.getRelocationModel() != Reloc::PIC_) {
320 if ((Addr.getOpcode() == ISD::TargetExternalSymbol ||
321 Addr.getOpcode() == ISD::TargetGlobalAddress))
322 return false;
323 }
324
325 // Addresses of the form FI+const or FI|const
Daniel Sandersfa961d72014-03-03 14:31:21 +0000326 if (selectAddrFrameIndexOffset(Addr, Base, Offset, 16))
327 return true;
Akira Hatanaka30a84782013-03-14 18:27:31 +0000328
329 // Operand is a result from an ADD.
330 if (Addr.getOpcode() == ISD::ADD) {
331 // When loading from constant pools, load the lower address part in
332 // the instruction itself. Example, instead of:
333 // lui $2, %hi($CPI1_0)
334 // addiu $2, $2, %lo($CPI1_0)
335 // lwc1 $f0, 0($2)
336 // Generate:
337 // lui $2, %hi($CPI1_0)
338 // lwc1 $f0, %lo($CPI1_0)($2)
339 if (Addr.getOperand(1).getOpcode() == MipsISD::Lo ||
340 Addr.getOperand(1).getOpcode() == MipsISD::GPRel) {
341 SDValue Opnd0 = Addr.getOperand(1).getOperand(0);
342 if (isa<ConstantPoolSDNode>(Opnd0) || isa<GlobalAddressSDNode>(Opnd0) ||
343 isa<JumpTableSDNode>(Opnd0)) {
344 Base = Addr.getOperand(0);
345 Offset = Opnd0;
346 return true;
347 }
348 }
349 }
350
351 return false;
352}
353
Daniel Sanderse6ed5b72013-08-28 12:04:29 +0000354/// ComplexPattern used on MipsInstrInfo
355/// Used on Mips Load/Store instructions
356bool MipsSEDAGToDAGISel::selectAddrRegReg(SDValue Addr, SDValue &Base,
357 SDValue &Offset) const {
358 // Operand is a result from an ADD.
359 if (Addr.getOpcode() == ISD::ADD) {
360 Base = Addr.getOperand(0);
361 Offset = Addr.getOperand(1);
362 return true;
363 }
364
365 return false;
366}
367
Akira Hatanaka30a84782013-03-14 18:27:31 +0000368bool MipsSEDAGToDAGISel::selectAddrDefault(SDValue Addr, SDValue &Base,
369 SDValue &Offset) const {
370 Base = Addr;
371 Offset = CurDAG->getTargetConstant(0, Addr.getValueType());
372 return true;
373}
374
375bool MipsSEDAGToDAGISel::selectIntAddr(SDValue Addr, SDValue &Base,
376 SDValue &Offset) const {
377 return selectAddrRegImm(Addr, Base, Offset) ||
378 selectAddrDefault(Addr, Base, Offset);
379}
380
Daniel Sandersfa961d72014-03-03 14:31:21 +0000381bool MipsSEDAGToDAGISel::selectAddrRegImm10(SDValue Addr, SDValue &Base,
382 SDValue &Offset) const {
383 if (selectAddrFrameIndex(Addr, Base, Offset))
384 return true;
385
386 if (selectAddrFrameIndexOffset(Addr, Base, Offset, 10))
387 return true;
388
389 return false;
390}
391
Jack Carter97700972013-08-13 20:19:16 +0000392/// Used on microMIPS Load/Store unaligned instructions (12-bit offset)
393bool MipsSEDAGToDAGISel::selectAddrRegImm12(SDValue Addr, SDValue &Base,
394 SDValue &Offset) const {
Daniel Sandersfa961d72014-03-03 14:31:21 +0000395 if (selectAddrFrameIndex(Addr, Base, Offset))
396 return true;
Jack Carter97700972013-08-13 20:19:16 +0000397
Daniel Sandersfa961d72014-03-03 14:31:21 +0000398 if (selectAddrFrameIndexOffset(Addr, Base, Offset, 12))
399 return true;
Jack Carter97700972013-08-13 20:19:16 +0000400
401 return false;
402}
403
404bool MipsSEDAGToDAGISel::selectIntAddrMM(SDValue Addr, SDValue &Base,
405 SDValue &Offset) const {
406 return selectAddrRegImm12(Addr, Base, Offset) ||
407 selectAddrDefault(Addr, Base, Offset);
408}
409
Daniel Sandersfa961d72014-03-03 14:31:21 +0000410bool MipsSEDAGToDAGISel::selectIntAddrMSA(SDValue Addr, SDValue &Base,
411 SDValue &Offset) const {
412 if (selectAddrRegImm10(Addr, Base, Offset))
413 return true;
414
415 if (selectAddrDefault(Addr, Base, Offset))
416 return true;
417
418 return false;
419}
420
Daniel Sandersf49dd822013-09-24 13:33:07 +0000421// Select constant vector splats.
422//
423// Returns true and sets Imm if:
424// * MSA is enabled
425// * N is a ISD::BUILD_VECTOR representing a constant splat
Daniel Sandersf49dd822013-09-24 13:33:07 +0000426bool MipsSEDAGToDAGISel::selectVSplat(SDNode *N, APInt &Imm) const {
Eric Christopher22405e42014-07-10 17:26:51 +0000427 if (!Subtarget->hasMSA())
Daniel Sandersf49dd822013-09-24 13:33:07 +0000428 return false;
429
430 BuildVectorSDNode *Node = dyn_cast<BuildVectorSDNode>(N);
431
Craig Topper062a2ba2014-04-25 05:30:21 +0000432 if (!Node)
Daniel Sandersf49dd822013-09-24 13:33:07 +0000433 return false;
434
435 APInt SplatValue, SplatUndef;
436 unsigned SplatBitSize;
437 bool HasAnyUndefs;
438
439 if (!Node->isConstantSplat(SplatValue, SplatUndef, SplatBitSize,
440 HasAnyUndefs, 8,
Eric Christopher22405e42014-07-10 17:26:51 +0000441 !Subtarget->isLittle()))
Daniel Sandersf49dd822013-09-24 13:33:07 +0000442 return false;
443
Daniel Sandersf49dd822013-09-24 13:33:07 +0000444 Imm = SplatValue;
445
446 return true;
447}
448
449// Select constant vector splats.
450//
451// In addition to the requirements of selectVSplat(), this function returns
452// true and sets Imm if:
453// * The splat value is the same width as the elements of the vector
454// * The splat value fits in an integer with the specified signed-ness and
455// width.
456//
457// This function looks through ISD::BITCAST nodes.
458// TODO: This might not be appropriate for big-endian MSA since BITCAST is
459// sometimes a shuffle in big-endian mode.
460//
461// It's worth noting that this function is not used as part of the selection
462// of ldi.[bhwd] since it does not permit using the wrong-typed ldi.[bhwd]
463// instruction to achieve the desired bit pattern. ldi.[bhwd] is selected in
464// MipsSEDAGToDAGISel::selectNode.
465bool MipsSEDAGToDAGISel::
466selectVSplatCommon(SDValue N, SDValue &Imm, bool Signed,
467 unsigned ImmBitSize) const {
468 APInt ImmValue;
469 EVT EltTy = N->getValueType(0).getVectorElementType();
470
471 if (N->getOpcode() == ISD::BITCAST)
472 N = N->getOperand(0);
473
474 if (selectVSplat (N.getNode(), ImmValue) &&
475 ImmValue.getBitWidth() == EltTy.getSizeInBits()) {
476 if (( Signed && ImmValue.isSignedIntN(ImmBitSize)) ||
477 (!Signed && ImmValue.isIntN(ImmBitSize))) {
478 Imm = CurDAG->getTargetConstant(ImmValue, EltTy);
479 return true;
480 }
481 }
482
483 return false;
484}
485
486// Select constant vector splats.
487bool MipsSEDAGToDAGISel::
Daniel Sanders7e51fe12013-09-27 11:48:57 +0000488selectVSplatUimm1(SDValue N, SDValue &Imm) const {
489 return selectVSplatCommon(N, Imm, false, 1);
490}
491
492bool MipsSEDAGToDAGISel::
493selectVSplatUimm2(SDValue N, SDValue &Imm) const {
494 return selectVSplatCommon(N, Imm, false, 2);
495}
496
497bool MipsSEDAGToDAGISel::
Daniel Sandersf49dd822013-09-24 13:33:07 +0000498selectVSplatUimm3(SDValue N, SDValue &Imm) const {
499 return selectVSplatCommon(N, Imm, false, 3);
500}
501
502// Select constant vector splats.
503bool MipsSEDAGToDAGISel::
504selectVSplatUimm4(SDValue N, SDValue &Imm) const {
505 return selectVSplatCommon(N, Imm, false, 4);
506}
507
508// Select constant vector splats.
509bool MipsSEDAGToDAGISel::
510selectVSplatUimm5(SDValue N, SDValue &Imm) const {
511 return selectVSplatCommon(N, Imm, false, 5);
512}
513
514// Select constant vector splats.
515bool MipsSEDAGToDAGISel::
516selectVSplatUimm6(SDValue N, SDValue &Imm) const {
517 return selectVSplatCommon(N, Imm, false, 6);
518}
519
520// Select constant vector splats.
521bool MipsSEDAGToDAGISel::
522selectVSplatUimm8(SDValue N, SDValue &Imm) const {
523 return selectVSplatCommon(N, Imm, false, 8);
524}
525
526// Select constant vector splats.
527bool MipsSEDAGToDAGISel::
528selectVSplatSimm5(SDValue N, SDValue &Imm) const {
529 return selectVSplatCommon(N, Imm, true, 5);
530}
531
532// Select constant vector splats whose value is a power of 2.
533//
534// In addition to the requirements of selectVSplat(), this function returns
535// true and sets Imm if:
536// * The splat value is the same width as the elements of the vector
537// * The splat value is a power of two.
538//
539// This function looks through ISD::BITCAST nodes.
540// TODO: This might not be appropriate for big-endian MSA since BITCAST is
541// sometimes a shuffle in big-endian mode.
542bool MipsSEDAGToDAGISel::selectVSplatUimmPow2(SDValue N, SDValue &Imm) const {
543 APInt ImmValue;
544 EVT EltTy = N->getValueType(0).getVectorElementType();
545
546 if (N->getOpcode() == ISD::BITCAST)
547 N = N->getOperand(0);
548
549 if (selectVSplat (N.getNode(), ImmValue) &&
550 ImmValue.getBitWidth() == EltTy.getSizeInBits()) {
551 int32_t Log2 = ImmValue.exactLogBase2();
552
553 if (Log2 != -1) {
554 Imm = CurDAG->getTargetConstant(Log2, EltTy);
555 return true;
556 }
557 }
558
559 return false;
560}
561
Daniel Sandersd74b1302013-10-30 14:45:14 +0000562// Select constant vector splats whose value only has a consecutive sequence
563// of left-most bits set (e.g. 0b11...1100...00).
564//
565// In addition to the requirements of selectVSplat(), this function returns
566// true and sets Imm if:
567// * The splat value is the same width as the elements of the vector
568// * The splat value is a consecutive sequence of left-most bits.
569//
570// This function looks through ISD::BITCAST nodes.
571// TODO: This might not be appropriate for big-endian MSA since BITCAST is
572// sometimes a shuffle in big-endian mode.
573bool MipsSEDAGToDAGISel::selectVSplatMaskL(SDValue N, SDValue &Imm) const {
574 APInt ImmValue;
575 EVT EltTy = N->getValueType(0).getVectorElementType();
576
577 if (N->getOpcode() == ISD::BITCAST)
578 N = N->getOperand(0);
579
580 if (selectVSplat(N.getNode(), ImmValue) &&
581 ImmValue.getBitWidth() == EltTy.getSizeInBits()) {
582 // Extract the run of set bits starting with bit zero from the bitwise
583 // inverse of ImmValue, and test that the inverse of this is the same
584 // as the original value.
585 if (ImmValue == ~(~ImmValue & ~(~ImmValue + 1))) {
586
587 Imm = CurDAG->getTargetConstant(ImmValue.countPopulation(), EltTy);
588 return true;
589 }
590 }
591
592 return false;
593}
594
595// Select constant vector splats whose value only has a consecutive sequence
596// of right-most bits set (e.g. 0b00...0011...11).
597//
598// In addition to the requirements of selectVSplat(), this function returns
599// true and sets Imm if:
600// * The splat value is the same width as the elements of the vector
601// * The splat value is a consecutive sequence of right-most bits.
602//
603// This function looks through ISD::BITCAST nodes.
604// TODO: This might not be appropriate for big-endian MSA since BITCAST is
605// sometimes a shuffle in big-endian mode.
606bool MipsSEDAGToDAGISel::selectVSplatMaskR(SDValue N, SDValue &Imm) const {
607 APInt ImmValue;
608 EVT EltTy = N->getValueType(0).getVectorElementType();
609
610 if (N->getOpcode() == ISD::BITCAST)
611 N = N->getOperand(0);
612
613 if (selectVSplat(N.getNode(), ImmValue) &&
614 ImmValue.getBitWidth() == EltTy.getSizeInBits()) {
615 // Extract the run of set bits starting with bit zero, and test that the
616 // result is the same as the original value
617 if (ImmValue == (ImmValue & ~(ImmValue + 1))) {
618 Imm = CurDAG->getTargetConstant(ImmValue.countPopulation(), EltTy);
619 return true;
620 }
621 }
622
623 return false;
624}
625
Daniel Sanders3f6eb542013-11-12 10:45:18 +0000626bool MipsSEDAGToDAGISel::selectVSplatUimmInvPow2(SDValue N,
627 SDValue &Imm) const {
628 APInt ImmValue;
629 EVT EltTy = N->getValueType(0).getVectorElementType();
630
631 if (N->getOpcode() == ISD::BITCAST)
632 N = N->getOperand(0);
633
634 if (selectVSplat(N.getNode(), ImmValue) &&
635 ImmValue.getBitWidth() == EltTy.getSizeInBits()) {
636 int32_t Log2 = (~ImmValue).exactLogBase2();
637
638 if (Log2 != -1) {
639 Imm = CurDAG->getTargetConstant(Log2, EltTy);
640 return true;
641 }
642 }
643
644 return false;
645}
646
Akira Hatanaka040d2252013-03-14 18:33:23 +0000647std::pair<bool, SDNode*> MipsSEDAGToDAGISel::selectNode(SDNode *Node) {
Akira Hatanaka30a84782013-03-14 18:27:31 +0000648 unsigned Opcode = Node->getOpcode();
Andrew Trickef9de2a2013-05-25 02:42:55 +0000649 SDLoc DL(Node);
Akira Hatanaka30a84782013-03-14 18:27:31 +0000650
651 ///
652 // Instruction Selection not handled by the auto-generated
653 // tablegen selection should be handled here.
654 ///
Akira Hatanaka30a84782013-03-14 18:27:31 +0000655 SDNode *Result;
Akira Hatanaka30a84782013-03-14 18:27:31 +0000656
657 switch(Opcode) {
658 default: break;
659
Akira Hatanakab8835b82013-03-14 18:39:25 +0000660 case ISD::SUBE: {
661 SDValue InFlag = Node->getOperand(2);
Daniel Sanders5a9225b2015-01-24 12:58:10 +0000662 unsigned SubOp =
663 Node->getValueType(0) == MVT::i64 ? Mips::DSUBu : Mips::SUBu;
664 Result = selectAddESubE(SubOp, InFlag, InFlag.getOperand(0), DL, Node);
Akira Hatanakab8835b82013-03-14 18:39:25 +0000665 return std::make_pair(true, Result);
666 }
667
Akira Hatanaka30a84782013-03-14 18:27:31 +0000668 case ISD::ADDE: {
Eric Christopher22405e42014-07-10 17:26:51 +0000669 if (Subtarget->hasDSP()) // Select DSP instructions, ADDSC and ADDWC.
Akira Hatanaka2f088222013-04-13 00:55:41 +0000670 break;
Akira Hatanakab8835b82013-03-14 18:39:25 +0000671 SDValue InFlag = Node->getOperand(2);
Daniel Sanders5a9225b2015-01-24 12:58:10 +0000672 unsigned AddOp =
673 Node->getValueType(0) == MVT::i64 ? Mips::DADDu : Mips::ADDu;
674 Result = selectAddESubE(AddOp, InFlag, InFlag.getValue(0), DL, Node);
Akira Hatanaka30a84782013-03-14 18:27:31 +0000675 return std::make_pair(true, Result);
676 }
677
Akira Hatanaka30a84782013-03-14 18:27:31 +0000678 case ISD::ConstantFP: {
679 ConstantFPSDNode *CN = dyn_cast<ConstantFPSDNode>(Node);
680 if (Node->getValueType(0) == MVT::f64 && CN->isExactlyValue(+0.0)) {
Eric Christopher22405e42014-07-10 17:26:51 +0000681 if (Subtarget->isGP64bit()) {
Akira Hatanaka040d2252013-03-14 18:33:23 +0000682 SDValue Zero = CurDAG->getCopyFromReg(CurDAG->getEntryNode(), DL,
Akira Hatanaka30a84782013-03-14 18:27:31 +0000683 Mips::ZERO_64, MVT::i64);
Akira Hatanaka040d2252013-03-14 18:33:23 +0000684 Result = CurDAG->getMachineNode(Mips::DMTC1, DL, MVT::f64, Zero);
Eric Christopher22405e42014-07-10 17:26:51 +0000685 } else if (Subtarget->isFP64bit()) {
Daniel Sanders08d3cd12013-11-18 13:12:43 +0000686 SDValue Zero = CurDAG->getCopyFromReg(CurDAG->getEntryNode(), DL,
687 Mips::ZERO, MVT::i32);
688 Result = CurDAG->getMachineNode(Mips::BuildPairF64_64, DL, MVT::f64,
689 Zero, Zero);
Akira Hatanaka30a84782013-03-14 18:27:31 +0000690 } else {
Akira Hatanaka040d2252013-03-14 18:33:23 +0000691 SDValue Zero = CurDAG->getCopyFromReg(CurDAG->getEntryNode(), DL,
Akira Hatanaka30a84782013-03-14 18:27:31 +0000692 Mips::ZERO, MVT::i32);
Akira Hatanaka040d2252013-03-14 18:33:23 +0000693 Result = CurDAG->getMachineNode(Mips::BuildPairF64, DL, MVT::f64, Zero,
Akira Hatanaka30a84782013-03-14 18:27:31 +0000694 Zero);
695 }
696
697 return std::make_pair(true, Result);
698 }
699 break;
700 }
701
702 case ISD::Constant: {
703 const ConstantSDNode *CN = dyn_cast<ConstantSDNode>(Node);
704 unsigned Size = CN->getValueSizeInBits(0);
705
706 if (Size == 32)
707 break;
708
709 MipsAnalyzeImmediate AnalyzeImm;
710 int64_t Imm = CN->getSExtValue();
711
712 const MipsAnalyzeImmediate::InstSeq &Seq =
713 AnalyzeImm.Analyze(Imm, Size, false);
714
715 MipsAnalyzeImmediate::InstSeq::const_iterator Inst = Seq.begin();
Andrew Trickef9de2a2013-05-25 02:42:55 +0000716 SDLoc DL(CN);
Akira Hatanaka30a84782013-03-14 18:27:31 +0000717 SDNode *RegOpnd;
718 SDValue ImmOpnd = CurDAG->getTargetConstant(SignExtend64<16>(Inst->ImmOpnd),
719 MVT::i64);
720
721 // The first instruction can be a LUi which is different from other
722 // instructions (ADDiu, ORI and SLL) in that it does not have a register
723 // operand.
724 if (Inst->Opc == Mips::LUi64)
725 RegOpnd = CurDAG->getMachineNode(Inst->Opc, DL, MVT::i64, ImmOpnd);
726 else
727 RegOpnd =
728 CurDAG->getMachineNode(Inst->Opc, DL, MVT::i64,
729 CurDAG->getRegister(Mips::ZERO_64, MVT::i64),
730 ImmOpnd);
731
732 // The remaining instructions in the sequence are handled here.
733 for (++Inst; Inst != Seq.end(); ++Inst) {
734 ImmOpnd = CurDAG->getTargetConstant(SignExtend64<16>(Inst->ImmOpnd),
735 MVT::i64);
736 RegOpnd = CurDAG->getMachineNode(Inst->Opc, DL, MVT::i64,
737 SDValue(RegOpnd, 0), ImmOpnd);
738 }
739
740 return std::make_pair(true, RegOpnd);
741 }
742
Daniel Sandersf9aa1d12013-08-28 10:26:24 +0000743 case ISD::INTRINSIC_W_CHAIN: {
744 switch (cast<ConstantSDNode>(Node->getOperand(1))->getZExtValue()) {
745 default:
746 break;
747
748 case Intrinsic::mips_cfcmsa: {
749 SDValue ChainIn = Node->getOperand(0);
750 SDValue RegIdx = Node->getOperand(2);
751 SDValue Reg = CurDAG->getCopyFromReg(ChainIn, DL,
752 getMSACtrlReg(RegIdx), MVT::i32);
753 return std::make_pair(true, Reg.getNode());
754 }
755 }
756 break;
757 }
758
Daniel Sandersba9c8502013-08-28 10:44:47 +0000759 case ISD::INTRINSIC_WO_CHAIN: {
760 switch (cast<ConstantSDNode>(Node->getOperand(0))->getZExtValue()) {
761 default:
762 break;
763
764 case Intrinsic::mips_move_v:
765 // Like an assignment but will always produce a move.v even if
766 // unnecessary.
767 return std::make_pair(true,
768 CurDAG->getMachineNode(Mips::MOVE_V, DL,
769 Node->getValueType(0),
770 Node->getOperand(1)));
771 }
772 break;
773 }
774
Daniel Sandersf9aa1d12013-08-28 10:26:24 +0000775 case ISD::INTRINSIC_VOID: {
776 switch (cast<ConstantSDNode>(Node->getOperand(1))->getZExtValue()) {
777 default:
778 break;
779
780 case Intrinsic::mips_ctcmsa: {
781 SDValue ChainIn = Node->getOperand(0);
782 SDValue RegIdx = Node->getOperand(2);
783 SDValue Value = Node->getOperand(3);
784 SDValue ChainOut = CurDAG->getCopyToReg(ChainIn, DL,
785 getMSACtrlReg(RegIdx), Value);
786 return std::make_pair(true, ChainOut.getNode());
787 }
788 }
789 break;
790 }
791
Akira Hatanaka30a84782013-03-14 18:27:31 +0000792 case MipsISD::ThreadPointer: {
Bill Wendlinga3cd3502013-06-19 21:36:55 +0000793 EVT PtrVT = getTargetLowering()->getPointerTy();
Akira Hatanaka85ccf232013-08-08 21:37:32 +0000794 unsigned RdhwrOpc, DestReg;
Akira Hatanaka30a84782013-03-14 18:27:31 +0000795
796 if (PtrVT == MVT::i32) {
797 RdhwrOpc = Mips::RDHWR;
Akira Hatanaka30a84782013-03-14 18:27:31 +0000798 DestReg = Mips::V1;
799 } else {
800 RdhwrOpc = Mips::RDHWR64;
Akira Hatanaka30a84782013-03-14 18:27:31 +0000801 DestReg = Mips::V1_64;
802 }
803
804 SDNode *Rdhwr =
Andrew Trickef9de2a2013-05-25 02:42:55 +0000805 CurDAG->getMachineNode(RdhwrOpc, SDLoc(Node),
Akira Hatanaka30a84782013-03-14 18:27:31 +0000806 Node->getValueType(0),
Akira Hatanaka85ccf232013-08-08 21:37:32 +0000807 CurDAG->getRegister(Mips::HWR29, MVT::i32));
Akira Hatanaka040d2252013-03-14 18:33:23 +0000808 SDValue Chain = CurDAG->getCopyToReg(CurDAG->getEntryNode(), DL, DestReg,
Akira Hatanaka30a84782013-03-14 18:27:31 +0000809 SDValue(Rdhwr, 0));
Akira Hatanaka040d2252013-03-14 18:33:23 +0000810 SDValue ResNode = CurDAG->getCopyFromReg(Chain, DL, DestReg, PtrVT);
Akira Hatanaka30a84782013-03-14 18:27:31 +0000811 ReplaceUses(SDValue(Node, 0), ResNode);
812 return std::make_pair(true, ResNode.getNode());
813 }
Akira Hatanakabe8612f2013-03-30 01:36:35 +0000814
Daniel Sandersf49dd822013-09-24 13:33:07 +0000815 case ISD::BUILD_VECTOR: {
816 // Select appropriate ldi.[bhwd] instructions for constant splats of
817 // 128-bit when MSA is enabled. Fixup any register class mismatches that
818 // occur as a result.
819 //
820 // This allows the compiler to use a wider range of immediates than would
821 // otherwise be allowed. If, for example, v4i32 could only use ldi.h then
822 // it would not be possible to load { 0x01010101, 0x01010101, 0x01010101,
823 // 0x01010101 } without using a constant pool. This would be sub-optimal
824 // when // 'ldi.b wd, 1' is capable of producing that bit-pattern in the
825 // same set/ of registers. Similarly, ldi.h isn't capable of producing {
826 // 0x00000000, 0x00000001, 0x00000000, 0x00000001 } but 'ldi.d wd, 1' can.
827
828 BuildVectorSDNode *BVN = cast<BuildVectorSDNode>(Node);
829 APInt SplatValue, SplatUndef;
830 unsigned SplatBitSize;
831 bool HasAnyUndefs;
832 unsigned LdiOp;
833 EVT ResVecTy = BVN->getValueType(0);
834 EVT ViaVecTy;
835
Eric Christopher22405e42014-07-10 17:26:51 +0000836 if (!Subtarget->hasMSA() || !BVN->getValueType(0).is128BitVector())
Craig Topper062a2ba2014-04-25 05:30:21 +0000837 return std::make_pair(false, nullptr);
Daniel Sandersf49dd822013-09-24 13:33:07 +0000838
839 if (!BVN->isConstantSplat(SplatValue, SplatUndef, SplatBitSize,
840 HasAnyUndefs, 8,
Eric Christopher22405e42014-07-10 17:26:51 +0000841 !Subtarget->isLittle()))
Craig Topper062a2ba2014-04-25 05:30:21 +0000842 return std::make_pair(false, nullptr);
Daniel Sandersf49dd822013-09-24 13:33:07 +0000843
844 switch (SplatBitSize) {
845 default:
Craig Topper062a2ba2014-04-25 05:30:21 +0000846 return std::make_pair(false, nullptr);
Daniel Sandersf49dd822013-09-24 13:33:07 +0000847 case 8:
848 LdiOp = Mips::LDI_B;
849 ViaVecTy = MVT::v16i8;
850 break;
851 case 16:
852 LdiOp = Mips::LDI_H;
853 ViaVecTy = MVT::v8i16;
854 break;
855 case 32:
856 LdiOp = Mips::LDI_W;
857 ViaVecTy = MVT::v4i32;
858 break;
859 case 64:
860 LdiOp = Mips::LDI_D;
861 ViaVecTy = MVT::v2i64;
862 break;
863 }
864
865 if (!SplatValue.isSignedIntN(10))
Craig Topper062a2ba2014-04-25 05:30:21 +0000866 return std::make_pair(false, nullptr);
Daniel Sandersf49dd822013-09-24 13:33:07 +0000867
868 SDValue Imm = CurDAG->getTargetConstant(SplatValue,
869 ViaVecTy.getVectorElementType());
870
871 SDNode *Res = CurDAG->getMachineNode(LdiOp, SDLoc(Node), ViaVecTy, Imm);
872
873 if (ResVecTy != ViaVecTy) {
874 // If LdiOp is writing to a different register class to ResVecTy, then
875 // fix it up here. This COPY_TO_REGCLASS should never cause a move.v
876 // since the source and destination register sets contain the same
877 // registers.
878 const TargetLowering *TLI = getTargetLowering();
879 MVT ResVecTySimple = ResVecTy.getSimpleVT();
880 const TargetRegisterClass *RC = TLI->getRegClassFor(ResVecTySimple);
881 Res = CurDAG->getMachineNode(Mips::COPY_TO_REGCLASS, SDLoc(Node),
882 ResVecTy, SDValue(Res, 0),
883 CurDAG->getTargetConstant(RC->getID(),
884 MVT::i32));
885 }
886
887 return std::make_pair(true, Res);
888 }
889
Akira Hatanaka30a84782013-03-14 18:27:31 +0000890 }
891
Craig Topper062a2ba2014-04-25 05:30:21 +0000892 return std::make_pair(false, nullptr);
Akira Hatanaka30a84782013-03-14 18:27:31 +0000893}
894
895FunctionPass *llvm::createMipsSEISelDag(MipsTargetMachine &TM) {
896 return new MipsSEDAGToDAGISel(TM);
897}