1 //===- SILoadStoreOptimizer.cpp -------------------------------------------===//
2 //
3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4 // See https://llvm.org/LICENSE.txt for license information.
5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6 //
7 //===----------------------------------------------------------------------===//
8 //
9 // This pass tries to fuse DS instructions with close by immediate offsets.
10 // This will fuse operations such as
11 //  ds_read_b32 v0, v2 offset:16
12 //  ds_read_b32 v1, v2 offset:32
13 // ==>
14 //   ds_read2_b32 v[0:1], v2, offset0:4 offset1:8
15 //
16 // The same is done for certain SMEM and VMEM opcodes, e.g.:
17 //  s_buffer_load_dword s4, s[0:3], 4
18 //  s_buffer_load_dword s5, s[0:3], 8
19 // ==>
20 //  s_buffer_load_dwordx2 s[4:5], s[0:3], 4
21 //
22 // This pass also tries to promote constant offset to the immediate by
23 // adjusting the base. It tries to use a base from the nearby instructions that
24 // allows it to have a 13bit constant offset and then promotes the 13bit offset
25 // to the immediate.
26 // E.g.
27 //  s_movk_i32 s0, 0x1800
28 //  v_add_co_u32_e32 v0, vcc, s0, v2
29 //  v_addc_co_u32_e32 v1, vcc, 0, v6, vcc
30 //
31 //  s_movk_i32 s0, 0x1000
32 //  v_add_co_u32_e32 v5, vcc, s0, v2
33 //  v_addc_co_u32_e32 v6, vcc, 0, v6, vcc
34 //  global_load_dwordx2 v[5:6], v[5:6], off
35 //  global_load_dwordx2 v[0:1], v[0:1], off
36 // =>
37 //  s_movk_i32 s0, 0x1000
38 //  v_add_co_u32_e32 v5, vcc, s0, v2
39 //  v_addc_co_u32_e32 v6, vcc, 0, v6, vcc
40 //  global_load_dwordx2 v[5:6], v[5:6], off
41 //  global_load_dwordx2 v[0:1], v[5:6], off offset:2048
42 //
43 // Future improvements:
44 //
45 // - This is currently missing stores of constants because loading
46 //   the constant into the data register is placed between the stores, although
47 //   this is arguably a scheduling problem.
48 //
49 // - Live interval recomputing seems inefficient. This currently only matches
50 //   one pair, and recomputes live intervals and moves on to the next pair. It
51 //   would be better to compute a list of all merges that need to occur.
52 //
53 // - With a list of instructions to process, we can also merge more. If a
54 //   cluster of loads have offsets that are too large to fit in the 8-bit
55 //   offsets, but are close enough to fit in the 8 bits, we can add to the base
56 //   pointer and use the new reduced offsets.
57 //
58 //===----------------------------------------------------------------------===//
59 
60 #include "AMDGPU.h"
61 #include "AMDGPUSubtarget.h"
62 #include "MCTargetDesc/AMDGPUMCTargetDesc.h"
63 #include "SIInstrInfo.h"
64 #include "SIRegisterInfo.h"
65 #include "Utils/AMDGPUBaseInfo.h"
66 #include "llvm/ADT/ArrayRef.h"
67 #include "llvm/ADT/SmallVector.h"
68 #include "llvm/ADT/StringRef.h"
69 #include "llvm/Analysis/AliasAnalysis.h"
70 #include "llvm/CodeGen/MachineBasicBlock.h"
71 #include "llvm/CodeGen/MachineFunction.h"
72 #include "llvm/CodeGen/MachineFunctionPass.h"
73 #include "llvm/CodeGen/MachineInstr.h"
74 #include "llvm/CodeGen/MachineInstrBuilder.h"
75 #include "llvm/CodeGen/MachineOperand.h"
76 #include "llvm/CodeGen/MachineRegisterInfo.h"
77 #include "llvm/IR/DebugLoc.h"
78 #include "llvm/InitializePasses.h"
79 #include "llvm/Pass.h"
80 #include "llvm/Support/Debug.h"
81 #include "llvm/Support/MathExtras.h"
82 #include "llvm/Support/raw_ostream.h"
83 #include <algorithm>
84 #include <cassert>
85 #include <cstdlib>
86 #include <iterator>
87 #include <utility>
88 
89 using namespace llvm;
90 
91 #define DEBUG_TYPE "si-load-store-opt"
92 
93 namespace {
94 enum InstClassEnum {
95   UNKNOWN,
96   DS_READ,
97   DS_WRITE,
98   S_BUFFER_LOAD_IMM,
99   BUFFER_LOAD,
100   BUFFER_STORE,
101   MIMG,
102   TBUFFER_LOAD,
103   TBUFFER_STORE,
104 };
105 
106 enum RegisterEnum {
107   SBASE = 0x1,
108   SRSRC = 0x2,
109   SOFFSET = 0x4,
110   VADDR = 0x8,
111   ADDR = 0x10,
112   SSAMP = 0x20,
113 };
114 
115 class SILoadStoreOptimizer : public MachineFunctionPass {
116   struct CombineInfo {
117     MachineBasicBlock::iterator I;
118     unsigned EltSize;
119     unsigned Offset;
120     unsigned Width;
121     unsigned Format;
122     unsigned BaseOff;
123     unsigned DMask;
124     InstClassEnum InstClass;
125     bool GLC;
126     bool SLC;
127     bool DLC;
128     bool UseST64;
129     int AddrIdx[5];
130     const MachineOperand *AddrReg[5];
131     unsigned NumAddresses;
132     unsigned Order;
133 
134     bool hasSameBaseAddress(const MachineInstr &MI) {
135       for (unsigned i = 0; i < NumAddresses; i++) {
136         const MachineOperand &AddrRegNext = MI.getOperand(AddrIdx[i]);
137 
138         if (AddrReg[i]->isImm() || AddrRegNext.isImm()) {
139           if (AddrReg[i]->isImm() != AddrRegNext.isImm() ||
140               AddrReg[i]->getImm() != AddrRegNext.getImm()) {
141             return false;
142           }
143           continue;
144         }
145 
146         // Check same base pointer. Be careful of subregisters, which can occur
147         // with vectors of pointers.
148         if (AddrReg[i]->getReg() != AddrRegNext.getReg() ||
149             AddrReg[i]->getSubReg() != AddrRegNext.getSubReg()) {
150          return false;
151         }
152       }
153       return true;
154     }
155 
156     bool hasMergeableAddress(const MachineRegisterInfo &MRI) {
157       for (unsigned i = 0; i < NumAddresses; ++i) {
158         const MachineOperand *AddrOp = AddrReg[i];
159         // Immediates are always OK.
160         if (AddrOp->isImm())
161           continue;
162 
163         // Don't try to merge addresses that aren't either immediates or registers.
164         // TODO: Should be possible to merge FrameIndexes and maybe some other
165         // non-register
166         if (!AddrOp->isReg())
167           return false;
168 
169         // TODO: We should be able to merge physical reg addreses.
170         if (Register::isPhysicalRegister(AddrOp->getReg()))
171           return false;
172 
173         // If an address has only one use then there will be on other
174         // instructions with the same address, so we can't merge this one.
175         if (MRI.hasOneNonDBGUse(AddrOp->getReg()))
176           return false;
177       }
178       return true;
179     }
180 
181     void setMI(MachineBasicBlock::iterator MI, const SIInstrInfo &TII,
182                const GCNSubtarget &STM);
183   };
184 
185   struct BaseRegisters {
186     unsigned LoReg = 0;
187     unsigned HiReg = 0;
188 
189     unsigned LoSubReg = 0;
190     unsigned HiSubReg = 0;
191   };
192 
193   struct MemAddress {
194     BaseRegisters Base;
195     int64_t Offset = 0;
196   };
197 
198   using MemInfoMap = DenseMap<MachineInstr *, MemAddress>;
199 
200 private:
201   const GCNSubtarget *STM = nullptr;
202   const SIInstrInfo *TII = nullptr;
203   const SIRegisterInfo *TRI = nullptr;
204   const MCSubtargetInfo *STI = nullptr;
205   MachineRegisterInfo *MRI = nullptr;
206   AliasAnalysis *AA = nullptr;
207   bool OptimizeAgain;
208 
209   static bool dmasksCanBeCombined(const CombineInfo &CI,
210                                   const SIInstrInfo &TII,
211                                   const CombineInfo &Paired);
212   static bool offsetsCanBeCombined(CombineInfo &CI, const MCSubtargetInfo &STI,
213                                    CombineInfo &Paired, bool Modify = false);
214   static bool widthsFit(const GCNSubtarget &STM, const CombineInfo &CI,
215                         const CombineInfo &Paired);
216   static unsigned getNewOpcode(const CombineInfo &CI, const CombineInfo &Paired);
217   static std::pair<unsigned, unsigned> getSubRegIdxs(const CombineInfo &CI,
218                                                      const CombineInfo &Paired);
219   const TargetRegisterClass *getTargetRegisterClass(const CombineInfo &CI,
220                                                     const CombineInfo &Paired);
221 
222   bool checkAndPrepareMerge(CombineInfo &CI, CombineInfo &Paired,
223                             SmallVectorImpl<MachineInstr *> &InstsToMove);
224 
225   unsigned read2Opcode(unsigned EltSize) const;
226   unsigned read2ST64Opcode(unsigned EltSize) const;
227   MachineBasicBlock::iterator mergeRead2Pair(CombineInfo &CI,
228                                              CombineInfo &Paired,
229                   const SmallVectorImpl<MachineInstr *> &InstsToMove);
230 
231   unsigned write2Opcode(unsigned EltSize) const;
232   unsigned write2ST64Opcode(unsigned EltSize) const;
233   MachineBasicBlock::iterator
234   mergeWrite2Pair(CombineInfo &CI, CombineInfo &Paired,
235                   const SmallVectorImpl<MachineInstr *> &InstsToMove);
236   MachineBasicBlock::iterator
237   mergeImagePair(CombineInfo &CI, CombineInfo &Paired,
238                  const SmallVectorImpl<MachineInstr *> &InstsToMove);
239   MachineBasicBlock::iterator
240   mergeSBufferLoadImmPair(CombineInfo &CI, CombineInfo &Paired,
241                           const SmallVectorImpl<MachineInstr *> &InstsToMove);
242   MachineBasicBlock::iterator
243   mergeBufferLoadPair(CombineInfo &CI, CombineInfo &Paired,
244                       const SmallVectorImpl<MachineInstr *> &InstsToMove);
245   MachineBasicBlock::iterator
246   mergeBufferStorePair(CombineInfo &CI, CombineInfo &Paired,
247                        const SmallVectorImpl<MachineInstr *> &InstsToMove);
248   MachineBasicBlock::iterator
249   mergeTBufferLoadPair(CombineInfo &CI, CombineInfo &Paired,
250                        const SmallVectorImpl<MachineInstr *> &InstsToMove);
251   MachineBasicBlock::iterator
252   mergeTBufferStorePair(CombineInfo &CI, CombineInfo &Paired,
253                         const SmallVectorImpl<MachineInstr *> &InstsToMove);
254 
255   void updateBaseAndOffset(MachineInstr &I, unsigned NewBase,
256                            int32_t NewOffset) const;
257   unsigned computeBase(MachineInstr &MI, const MemAddress &Addr) const;
258   MachineOperand createRegOrImm(int32_t Val, MachineInstr &MI) const;
259   Optional<int32_t> extractConstOffset(const MachineOperand &Op) const;
260   void processBaseWithConstOffset(const MachineOperand &Base, MemAddress &Addr) const;
261   /// Promotes constant offset to the immediate by adjusting the base. It
262   /// tries to use a base from the nearby instructions that allows it to have
263   /// a 13bit constant offset which gets promoted to the immediate.
264   bool promoteConstantOffsetToImm(MachineInstr &CI,
265                                   MemInfoMap &Visited,
266                                   SmallPtrSet<MachineInstr *, 4> &Promoted) const;
267   void addInstToMergeableList(const CombineInfo &CI,
268                   std::list<std::list<CombineInfo> > &MergeableInsts) const;
269   bool collectMergeableInsts(MachineBasicBlock &MBB,
270                   std::list<std::list<CombineInfo> > &MergeableInsts) const;
271 
272 public:
273   static char ID;
274 
275   SILoadStoreOptimizer() : MachineFunctionPass(ID) {
276     initializeSILoadStoreOptimizerPass(*PassRegistry::getPassRegistry());
277   }
278 
279   bool optimizeInstsWithSameBaseAddr(std::list<CombineInfo> &MergeList,
280                                      bool &OptimizeListAgain);
281   bool optimizeBlock(std::list<std::list<CombineInfo> > &MergeableInsts);
282 
283   bool runOnMachineFunction(MachineFunction &MF) override;
284 
285   StringRef getPassName() const override { return "SI Load Store Optimizer"; }
286 
287   void getAnalysisUsage(AnalysisUsage &AU) const override {
288     AU.setPreservesCFG();
289     AU.addRequired<AAResultsWrapperPass>();
290 
291     MachineFunctionPass::getAnalysisUsage(AU);
292   }
293 };
294 
295 static unsigned getOpcodeWidth(const MachineInstr &MI, const SIInstrInfo &TII) {
296   const unsigned Opc = MI.getOpcode();
297 
298   if (TII.isMUBUF(Opc)) {
299     // FIXME: Handle d16 correctly
300     return AMDGPU::getMUBUFElements(Opc);
301   }
302   if (TII.isMIMG(MI)) {
303     uint64_t DMaskImm =
304         TII.getNamedOperand(MI, AMDGPU::OpName::dmask)->getImm();
305     return countPopulation(DMaskImm);
306   }
307   if (TII.isMTBUF(Opc)) {
308     return AMDGPU::getMTBUFElements(Opc);
309   }
310 
311   switch (Opc) {
312   case AMDGPU::S_BUFFER_LOAD_DWORD_IMM:
313     return 1;
314   case AMDGPU::S_BUFFER_LOAD_DWORDX2_IMM:
315     return 2;
316   case AMDGPU::S_BUFFER_LOAD_DWORDX4_IMM:
317     return 4;
318   default:
319     return 0;
320   }
321 }
322 
323 /// Maps instruction opcode to enum InstClassEnum.
324 static InstClassEnum getInstClass(unsigned Opc, const SIInstrInfo &TII) {
325   switch (Opc) {
326   default:
327     if (TII.isMUBUF(Opc)) {
328       switch (AMDGPU::getMUBUFBaseOpcode(Opc)) {
329       default:
330         return UNKNOWN;
331       case AMDGPU::BUFFER_LOAD_DWORD_OFFEN:
332       case AMDGPU::BUFFER_LOAD_DWORD_OFFEN_exact:
333       case AMDGPU::BUFFER_LOAD_DWORD_OFFSET:
334       case AMDGPU::BUFFER_LOAD_DWORD_OFFSET_exact:
335         return BUFFER_LOAD;
336       case AMDGPU::BUFFER_STORE_DWORD_OFFEN:
337       case AMDGPU::BUFFER_STORE_DWORD_OFFEN_exact:
338       case AMDGPU::BUFFER_STORE_DWORD_OFFSET:
339       case AMDGPU::BUFFER_STORE_DWORD_OFFSET_exact:
340         return BUFFER_STORE;
341       }
342     }
343     if (TII.isMIMG(Opc)) {
344       // Ignore instructions encoded without vaddr.
345       if (AMDGPU::getNamedOperandIdx(Opc, AMDGPU::OpName::vaddr) == -1)
346         return UNKNOWN;
347       // TODO: Support IMAGE_GET_RESINFO and IMAGE_GET_LOD.
348       if (TII.get(Opc).mayStore() || !TII.get(Opc).mayLoad() ||
349           TII.isGather4(Opc))
350         return UNKNOWN;
351       return MIMG;
352     }
353     if (TII.isMTBUF(Opc)) {
354       switch (AMDGPU::getMTBUFBaseOpcode(Opc)) {
355       default:
356         return UNKNOWN;
357       case AMDGPU::TBUFFER_LOAD_FORMAT_X_OFFEN:
358       case AMDGPU::TBUFFER_LOAD_FORMAT_X_OFFEN_exact:
359       case AMDGPU::TBUFFER_LOAD_FORMAT_X_OFFSET:
360       case AMDGPU::TBUFFER_LOAD_FORMAT_X_OFFSET_exact:
361         return TBUFFER_LOAD;
362       case AMDGPU::TBUFFER_STORE_FORMAT_X_OFFEN:
363       case AMDGPU::TBUFFER_STORE_FORMAT_X_OFFEN_exact:
364       case AMDGPU::TBUFFER_STORE_FORMAT_X_OFFSET:
365       case AMDGPU::TBUFFER_STORE_FORMAT_X_OFFSET_exact:
366         return TBUFFER_STORE;
367       }
368     }
369     return UNKNOWN;
370   case AMDGPU::S_BUFFER_LOAD_DWORD_IMM:
371   case AMDGPU::S_BUFFER_LOAD_DWORDX2_IMM:
372   case AMDGPU::S_BUFFER_LOAD_DWORDX4_IMM:
373     return S_BUFFER_LOAD_IMM;
374   case AMDGPU::DS_READ_B32:
375   case AMDGPU::DS_READ_B32_gfx9:
376   case AMDGPU::DS_READ_B64:
377   case AMDGPU::DS_READ_B64_gfx9:
378     return DS_READ;
379   case AMDGPU::DS_WRITE_B32:
380   case AMDGPU::DS_WRITE_B32_gfx9:
381   case AMDGPU::DS_WRITE_B64:
382   case AMDGPU::DS_WRITE_B64_gfx9:
383     return DS_WRITE;
384   }
385 }
386 
387 /// Determines instruction subclass from opcode. Only instructions
388 /// of the same subclass can be merged together.
389 static unsigned getInstSubclass(unsigned Opc, const SIInstrInfo &TII) {
390   switch (Opc) {
391   default:
392     if (TII.isMUBUF(Opc))
393       return AMDGPU::getMUBUFBaseOpcode(Opc);
394     if (TII.isMIMG(Opc)) {
395       const AMDGPU::MIMGInfo *Info = AMDGPU::getMIMGInfo(Opc);
396       assert(Info);
397       return Info->BaseOpcode;
398     }
399     if (TII.isMTBUF(Opc))
400       return AMDGPU::getMTBUFBaseOpcode(Opc);
401     return -1;
402   case AMDGPU::DS_READ_B32:
403   case AMDGPU::DS_READ_B32_gfx9:
404   case AMDGPU::DS_READ_B64:
405   case AMDGPU::DS_READ_B64_gfx9:
406   case AMDGPU::DS_WRITE_B32:
407   case AMDGPU::DS_WRITE_B32_gfx9:
408   case AMDGPU::DS_WRITE_B64:
409   case AMDGPU::DS_WRITE_B64_gfx9:
410     return Opc;
411   case AMDGPU::S_BUFFER_LOAD_DWORD_IMM:
412   case AMDGPU::S_BUFFER_LOAD_DWORDX2_IMM:
413   case AMDGPU::S_BUFFER_LOAD_DWORDX4_IMM:
414     return AMDGPU::S_BUFFER_LOAD_DWORD_IMM;
415   }
416 }
417 
418 static unsigned getRegs(unsigned Opc, const SIInstrInfo &TII) {
419   if (TII.isMUBUF(Opc)) {
420     unsigned result = 0;
421 
422     if (AMDGPU::getMUBUFHasVAddr(Opc)) {
423       result |= VADDR;
424     }
425 
426     if (AMDGPU::getMUBUFHasSrsrc(Opc)) {
427       result |= SRSRC;
428     }
429 
430     if (AMDGPU::getMUBUFHasSoffset(Opc)) {
431       result |= SOFFSET;
432     }
433 
434     return result;
435   }
436 
437   if (TII.isMIMG(Opc)) {
438     unsigned result = VADDR | SRSRC;
439     const AMDGPU::MIMGInfo *Info = AMDGPU::getMIMGInfo(Opc);
440     if (Info && AMDGPU::getMIMGBaseOpcodeInfo(Info->BaseOpcode)->Sampler)
441       result |= SSAMP;
442 
443     return result;
444   }
445   if (TII.isMTBUF(Opc)) {
446     unsigned result = 0;
447 
448     if (AMDGPU::getMTBUFHasVAddr(Opc)) {
449       result |= VADDR;
450     }
451 
452     if (AMDGPU::getMTBUFHasSrsrc(Opc)) {
453       result |= SRSRC;
454     }
455 
456     if (AMDGPU::getMTBUFHasSoffset(Opc)) {
457       result |= SOFFSET;
458     }
459 
460     return result;
461   }
462 
463   switch (Opc) {
464   default:
465     return 0;
466   case AMDGPU::S_BUFFER_LOAD_DWORD_IMM:
467   case AMDGPU::S_BUFFER_LOAD_DWORDX2_IMM:
468   case AMDGPU::S_BUFFER_LOAD_DWORDX4_IMM:
469     return SBASE;
470   case AMDGPU::DS_READ_B32:
471   case AMDGPU::DS_READ_B64:
472   case AMDGPU::DS_READ_B32_gfx9:
473   case AMDGPU::DS_READ_B64_gfx9:
474   case AMDGPU::DS_WRITE_B32:
475   case AMDGPU::DS_WRITE_B64:
476   case AMDGPU::DS_WRITE_B32_gfx9:
477   case AMDGPU::DS_WRITE_B64_gfx9:
478     return ADDR;
479   }
480 }
481 
482 void SILoadStoreOptimizer::CombineInfo::setMI(MachineBasicBlock::iterator MI,
483                                               const SIInstrInfo &TII,
484                                               const GCNSubtarget &STM) {
485   I = MI;
486   unsigned Opc = MI->getOpcode();
487   InstClass = getInstClass(Opc, TII);
488 
489   if (InstClass == UNKNOWN)
490     return;
491 
492   switch (InstClass) {
493   case DS_READ:
494    EltSize =
495           (Opc == AMDGPU::DS_READ_B64 || Opc == AMDGPU::DS_READ_B64_gfx9) ? 8
496                                                                           : 4;
497    break;
498   case DS_WRITE:
499     EltSize =
500           (Opc == AMDGPU::DS_WRITE_B64 || Opc == AMDGPU::DS_WRITE_B64_gfx9) ? 8
501                                                                             : 4;
502     break;
503   case S_BUFFER_LOAD_IMM:
504     EltSize = AMDGPU::convertSMRDOffsetUnits(STM, 4);
505     break;
506   default:
507     EltSize = 4;
508     break;
509   }
510 
511   if (InstClass == MIMG) {
512     DMask = TII.getNamedOperand(*I, AMDGPU::OpName::dmask)->getImm();
513     // Offset is not considered for MIMG instructions.
514     Offset = 0;
515   } else {
516     int OffsetIdx = AMDGPU::getNamedOperandIdx(Opc, AMDGPU::OpName::offset);
517     Offset = I->getOperand(OffsetIdx).getImm();
518   }
519 
520   if (InstClass == TBUFFER_LOAD || InstClass == TBUFFER_STORE)
521     Format = TII.getNamedOperand(*I, AMDGPU::OpName::format)->getImm();
522 
523   Width = getOpcodeWidth(*I, TII);
524 
525   if ((InstClass == DS_READ) || (InstClass == DS_WRITE)) {
526     Offset &= 0xffff;
527   } else if (InstClass != MIMG) {
528     GLC = TII.getNamedOperand(*I, AMDGPU::OpName::glc)->getImm();
529     if (InstClass != S_BUFFER_LOAD_IMM) {
530       SLC = TII.getNamedOperand(*I, AMDGPU::OpName::slc)->getImm();
531     }
532     DLC = TII.getNamedOperand(*I, AMDGPU::OpName::dlc)->getImm();
533   }
534 
535   unsigned AddrOpName[5] = {0};
536   NumAddresses = 0;
537   const unsigned Regs = getRegs(I->getOpcode(), TII);
538 
539   if (Regs & ADDR) {
540     AddrOpName[NumAddresses++] = AMDGPU::OpName::addr;
541   }
542 
543   if (Regs & SBASE) {
544     AddrOpName[NumAddresses++] = AMDGPU::OpName::sbase;
545   }
546 
547   if (Regs & SRSRC) {
548     AddrOpName[NumAddresses++] = AMDGPU::OpName::srsrc;
549   }
550 
551   if (Regs & SOFFSET) {
552     AddrOpName[NumAddresses++] = AMDGPU::OpName::soffset;
553   }
554 
555   if (Regs & VADDR) {
556     AddrOpName[NumAddresses++] = AMDGPU::OpName::vaddr;
557   }
558 
559   if (Regs & SSAMP) {
560     AddrOpName[NumAddresses++] = AMDGPU::OpName::ssamp;
561   }
562 
563   for (unsigned i = 0; i < NumAddresses; i++) {
564     AddrIdx[i] = AMDGPU::getNamedOperandIdx(I->getOpcode(), AddrOpName[i]);
565     AddrReg[i] = &I->getOperand(AddrIdx[i]);
566   }
567 }
568 
569 } // end anonymous namespace.
570 
571 INITIALIZE_PASS_BEGIN(SILoadStoreOptimizer, DEBUG_TYPE,
572                       "SI Load Store Optimizer", false, false)
573 INITIALIZE_PASS_DEPENDENCY(AAResultsWrapperPass)
574 INITIALIZE_PASS_END(SILoadStoreOptimizer, DEBUG_TYPE, "SI Load Store Optimizer",
575                     false, false)
576 
577 char SILoadStoreOptimizer::ID = 0;
578 
579 char &llvm::SILoadStoreOptimizerID = SILoadStoreOptimizer::ID;
580 
581 FunctionPass *llvm::createSILoadStoreOptimizerPass() {
582   return new SILoadStoreOptimizer();
583 }
584 
585 static void moveInstsAfter(MachineBasicBlock::iterator I,
586                            ArrayRef<MachineInstr *> InstsToMove) {
587   MachineBasicBlock *MBB = I->getParent();
588   ++I;
589   for (MachineInstr *MI : InstsToMove) {
590     MI->removeFromParent();
591     MBB->insert(I, MI);
592   }
593 }
594 
595 static void addDefsUsesToList(const MachineInstr &MI,
596                               DenseSet<unsigned> &RegDefs,
597                               DenseSet<unsigned> &PhysRegUses) {
598   for (const MachineOperand &Op : MI.operands()) {
599     if (Op.isReg()) {
600       if (Op.isDef())
601         RegDefs.insert(Op.getReg());
602       else if (Op.readsReg() && Register::isPhysicalRegister(Op.getReg()))
603         PhysRegUses.insert(Op.getReg());
604     }
605   }
606 }
607 
608 static bool memAccessesCanBeReordered(MachineBasicBlock::iterator A,
609                                       MachineBasicBlock::iterator B,
610                                       AliasAnalysis *AA) {
611   // RAW or WAR - cannot reorder
612   // WAW - cannot reorder
613   // RAR - safe to reorder
614   return !(A->mayStore() || B->mayStore()) || !A->mayAlias(AA, *B, true);
615 }
616 
617 // Add MI and its defs to the lists if MI reads one of the defs that are
618 // already in the list. Returns true in that case.
619 static bool addToListsIfDependent(MachineInstr &MI, DenseSet<unsigned> &RegDefs,
620                                   DenseSet<unsigned> &PhysRegUses,
621                                   SmallVectorImpl<MachineInstr *> &Insts) {
622   for (MachineOperand &Use : MI.operands()) {
623     // If one of the defs is read, then there is a use of Def between I and the
624     // instruction that I will potentially be merged with. We will need to move
625     // this instruction after the merged instructions.
626     //
627     // Similarly, if there is a def which is read by an instruction that is to
628     // be moved for merging, then we need to move the def-instruction as well.
629     // This can only happen for physical registers such as M0; virtual
630     // registers are in SSA form.
631     if (Use.isReg() &&
632         ((Use.readsReg() && RegDefs.count(Use.getReg())) ||
633          (Use.isDef() && RegDefs.count(Use.getReg())) ||
634          (Use.isDef() && Register::isPhysicalRegister(Use.getReg()) &&
635           PhysRegUses.count(Use.getReg())))) {
636       Insts.push_back(&MI);
637       addDefsUsesToList(MI, RegDefs, PhysRegUses);
638       return true;
639     }
640   }
641 
642   return false;
643 }
644 
645 static bool canMoveInstsAcrossMemOp(MachineInstr &MemOp,
646                                     ArrayRef<MachineInstr *> InstsToMove,
647                                     AliasAnalysis *AA) {
648   assert(MemOp.mayLoadOrStore());
649 
650   for (MachineInstr *InstToMove : InstsToMove) {
651     if (!InstToMove->mayLoadOrStore())
652       continue;
653     if (!memAccessesCanBeReordered(MemOp, *InstToMove, AA))
654       return false;
655   }
656   return true;
657 }
658 
659 // This function assumes that \p A and \p B have are identical except for
660 // size and offset, and they referecne adjacent memory.
661 static MachineMemOperand *combineKnownAdjacentMMOs(MachineFunction &MF,
662                                                    const MachineMemOperand *A,
663                                                    const MachineMemOperand *B) {
664   unsigned MinOffset = std::min(A->getOffset(), B->getOffset());
665   unsigned Size = A->getSize() + B->getSize();
666   // This function adds the offset parameter to the existing offset for A,
667   // so we pass 0 here as the offset and then manually set it to the correct
668   // value after the call.
669   MachineMemOperand *MMO = MF.getMachineMemOperand(A, 0, Size);
670   MMO->setOffset(MinOffset);
671   return MMO;
672 }
673 
674 bool SILoadStoreOptimizer::dmasksCanBeCombined(const CombineInfo &CI,
675                                                const SIInstrInfo &TII,
676                                                const CombineInfo &Paired) {
677   assert(CI.InstClass == MIMG);
678 
679   // Ignore instructions with tfe/lwe set.
680   const auto *TFEOp = TII.getNamedOperand(*CI.I, AMDGPU::OpName::tfe);
681   const auto *LWEOp = TII.getNamedOperand(*CI.I, AMDGPU::OpName::lwe);
682 
683   if ((TFEOp && TFEOp->getImm()) || (LWEOp && LWEOp->getImm()))
684     return false;
685 
686   // Check other optional immediate operands for equality.
687   unsigned OperandsToMatch[] = {AMDGPU::OpName::glc, AMDGPU::OpName::slc,
688                                 AMDGPU::OpName::d16, AMDGPU::OpName::unorm,
689                                 AMDGPU::OpName::da,  AMDGPU::OpName::r128,
690                                 AMDGPU::OpName::a16};
691 
692   for (auto op : OperandsToMatch) {
693     int Idx = AMDGPU::getNamedOperandIdx(CI.I->getOpcode(), op);
694     if (AMDGPU::getNamedOperandIdx(Paired.I->getOpcode(), op) != Idx)
695       return false;
696     if (Idx != -1 &&
697         CI.I->getOperand(Idx).getImm() != Paired.I->getOperand(Idx).getImm())
698       return false;
699   }
700 
701   // Check DMask for overlaps.
702   unsigned MaxMask = std::max(CI.DMask, Paired.DMask);
703   unsigned MinMask = std::min(CI.DMask, Paired.DMask);
704 
705   unsigned AllowedBitsForMin = llvm::countTrailingZeros(MaxMask);
706   if ((1u << AllowedBitsForMin) <= MinMask)
707     return false;
708 
709   return true;
710 }
711 
712 static unsigned getBufferFormatWithCompCount(unsigned OldFormat,
713                                        unsigned ComponentCount,
714                                        const MCSubtargetInfo &STI) {
715   if (ComponentCount > 4)
716     return 0;
717 
718   const llvm::AMDGPU::GcnBufferFormatInfo *OldFormatInfo =
719       llvm::AMDGPU::getGcnBufferFormatInfo(OldFormat, STI);
720   if (!OldFormatInfo)
721     return 0;
722 
723   const llvm::AMDGPU::GcnBufferFormatInfo *NewFormatInfo =
724       llvm::AMDGPU::getGcnBufferFormatInfo(OldFormatInfo->BitsPerComp,
725                                            ComponentCount,
726                                            OldFormatInfo->NumFormat, STI);
727 
728   if (!NewFormatInfo)
729     return 0;
730 
731   assert(NewFormatInfo->NumFormat == OldFormatInfo->NumFormat &&
732          NewFormatInfo->BitsPerComp == OldFormatInfo->BitsPerComp);
733 
734   return NewFormatInfo->Format;
735 }
736 
737 bool SILoadStoreOptimizer::offsetsCanBeCombined(CombineInfo &CI,
738                                                 const MCSubtargetInfo &STI,
739                                                 CombineInfo &Paired,
740                                                 bool Modify) {
741   assert(CI.InstClass != MIMG);
742 
743   // XXX - Would the same offset be OK? Is there any reason this would happen or
744   // be useful?
745   if (CI.Offset == Paired.Offset)
746     return false;
747 
748   // This won't be valid if the offset isn't aligned.
749   if ((CI.Offset % CI.EltSize != 0) || (Paired.Offset % CI.EltSize != 0))
750     return false;
751 
752   if (CI.InstClass == TBUFFER_LOAD || CI.InstClass == TBUFFER_STORE) {
753 
754     const llvm::AMDGPU::GcnBufferFormatInfo *Info0 =
755         llvm::AMDGPU::getGcnBufferFormatInfo(CI.Format, STI);
756     if (!Info0)
757       return false;
758     const llvm::AMDGPU::GcnBufferFormatInfo *Info1 =
759         llvm::AMDGPU::getGcnBufferFormatInfo(Paired.Format, STI);
760     if (!Info1)
761       return false;
762 
763     if (Info0->BitsPerComp != Info1->BitsPerComp ||
764         Info0->NumFormat != Info1->NumFormat)
765       return false;
766 
767     // TODO: Should be possible to support more formats, but if format loads
768     // are not dword-aligned, the merged load might not be valid.
769     if (Info0->BitsPerComp != 32)
770       return false;
771 
772     if (getBufferFormatWithCompCount(CI.Format, CI.Width + Paired.Width, STI) == 0)
773       return false;
774   }
775 
776   unsigned EltOffset0 = CI.Offset / CI.EltSize;
777   unsigned EltOffset1 = Paired.Offset / CI.EltSize;
778   CI.UseST64 = false;
779   CI.BaseOff = 0;
780 
781   // Handle DS instructions.
782   if ((CI.InstClass != DS_READ) && (CI.InstClass != DS_WRITE)) {
783     return (EltOffset0 + CI.Width == EltOffset1 ||
784             EltOffset1 + Paired.Width == EltOffset0) &&
785            CI.GLC == Paired.GLC && CI.DLC == Paired.DLC &&
786            (CI.InstClass == S_BUFFER_LOAD_IMM || CI.SLC == Paired.SLC);
787   }
788 
789   // Handle SMEM and VMEM instructions.
790   // If the offset in elements doesn't fit in 8-bits, we might be able to use
791   // the stride 64 versions.
792   if ((EltOffset0 % 64 == 0) && (EltOffset1 % 64) == 0 &&
793       isUInt<8>(EltOffset0 / 64) && isUInt<8>(EltOffset1 / 64)) {
794     if (Modify) {
795       CI.Offset = EltOffset0 / 64;
796       Paired.Offset = EltOffset1 / 64;
797       CI.UseST64 = true;
798     }
799     return true;
800   }
801 
802   // Check if the new offsets fit in the reduced 8-bit range.
803   if (isUInt<8>(EltOffset0) && isUInt<8>(EltOffset1)) {
804     if (Modify) {
805       CI.Offset = EltOffset0;
806       Paired.Offset = EltOffset1;
807     }
808     return true;
809   }
810 
811   // Try to shift base address to decrease offsets.
812   unsigned OffsetDiff = std::abs((int)EltOffset1 - (int)EltOffset0);
813   CI.BaseOff = std::min(CI.Offset, Paired.Offset);
814 
815   if ((OffsetDiff % 64 == 0) && isUInt<8>(OffsetDiff / 64)) {
816     if (Modify) {
817       CI.Offset = (EltOffset0 - CI.BaseOff / CI.EltSize) / 64;
818       Paired.Offset = (EltOffset1 - CI.BaseOff / CI.EltSize) / 64;
819       CI.UseST64 = true;
820     }
821     return true;
822   }
823 
824   if (isUInt<8>(OffsetDiff)) {
825     if (Modify) {
826       CI.Offset = EltOffset0 - CI.BaseOff / CI.EltSize;
827       Paired.Offset = EltOffset1 - CI.BaseOff / CI.EltSize;
828     }
829     return true;
830   }
831 
832   return false;
833 }
834 
835 bool SILoadStoreOptimizer::widthsFit(const GCNSubtarget &STM,
836                                      const CombineInfo &CI,
837                                      const CombineInfo &Paired) {
838   const unsigned Width = (CI.Width + Paired.Width);
839   switch (CI.InstClass) {
840   default:
841     return (Width <= 4) && (STM.hasDwordx3LoadStores() || (Width != 3));
842   case S_BUFFER_LOAD_IMM:
843     switch (Width) {
844     default:
845       return false;
846     case 2:
847     case 4:
848       return true;
849     }
850   }
851 }
852 
853 /// This function assumes that CI comes before Paired in a basic block.
854 bool SILoadStoreOptimizer::checkAndPrepareMerge(
855     CombineInfo &CI, CombineInfo &Paired,
856     SmallVectorImpl<MachineInstr *> &InstsToMove) {
857 
858   // Check both offsets (or masks for MIMG) can be combined and fit in the
859   // reduced range.
860   if (CI.InstClass == MIMG && !dmasksCanBeCombined(CI, *TII, Paired))
861     return false;
862 
863   if (CI.InstClass != MIMG &&
864       (!widthsFit(*STM, CI, Paired) || !offsetsCanBeCombined(CI, *STI, Paired)))
865     return false;
866 
867   const unsigned Opc = CI.I->getOpcode();
868   const InstClassEnum InstClass = getInstClass(Opc, *TII);
869 
870   if (InstClass == UNKNOWN) {
871     return false;
872   }
873   const unsigned InstSubclass = getInstSubclass(Opc, *TII);
874 
875   // Do not merge VMEM buffer instructions with "swizzled" bit set.
876   int Swizzled =
877       AMDGPU::getNamedOperandIdx(CI.I->getOpcode(), AMDGPU::OpName::swz);
878   if (Swizzled != -1 && CI.I->getOperand(Swizzled).getImm())
879     return false;
880 
881   DenseSet<unsigned> RegDefsToMove;
882   DenseSet<unsigned> PhysRegUsesToMove;
883   addDefsUsesToList(*CI.I, RegDefsToMove, PhysRegUsesToMove);
884 
885   MachineBasicBlock::iterator E = std::next(Paired.I);
886   MachineBasicBlock::iterator MBBI = std::next(CI.I);
887   for (; MBBI != E; ++MBBI) {
888 
889     if ((getInstClass(MBBI->getOpcode(), *TII) != InstClass) ||
890         (getInstSubclass(MBBI->getOpcode(), *TII) != InstSubclass)) {
891       // This is not a matching instruction, but we can keep looking as
892       // long as one of these conditions are met:
893       // 1. It is safe to move I down past MBBI.
894       // 2. It is safe to move MBBI down past the instruction that I will
895       //    be merged into.
896 
897       if (MBBI->hasUnmodeledSideEffects()) {
898         // We can't re-order this instruction with respect to other memory
899         // operations, so we fail both conditions mentioned above.
900         return false;
901       }
902 
903       if (MBBI->mayLoadOrStore() &&
904           (!memAccessesCanBeReordered(*CI.I, *MBBI, AA) ||
905            !canMoveInstsAcrossMemOp(*MBBI, InstsToMove, AA))) {
906         // We fail condition #1, but we may still be able to satisfy condition
907         // #2.  Add this instruction to the move list and then we will check
908         // if condition #2 holds once we have selected the matching instruction.
909         InstsToMove.push_back(&*MBBI);
910         addDefsUsesToList(*MBBI, RegDefsToMove, PhysRegUsesToMove);
911         continue;
912       }
913 
914       // When we match I with another DS instruction we will be moving I down
915       // to the location of the matched instruction any uses of I will need to
916       // be moved down as well.
917       addToListsIfDependent(*MBBI, RegDefsToMove, PhysRegUsesToMove,
918                             InstsToMove);
919       continue;
920     }
921 
922     // Don't merge volatiles.
923     if (MBBI->hasOrderedMemoryRef())
924       return false;
925 
926     int Swizzled =
927         AMDGPU::getNamedOperandIdx(MBBI->getOpcode(), AMDGPU::OpName::swz);
928     if (Swizzled != -1 && MBBI->getOperand(Swizzled).getImm())
929       return false;
930 
931     // Handle a case like
932     //   DS_WRITE_B32 addr, v, idx0
933     //   w = DS_READ_B32 addr, idx0
934     //   DS_WRITE_B32 addr, f(w), idx1
935     // where the DS_READ_B32 ends up in InstsToMove and therefore prevents
936     // merging of the two writes.
937     if (addToListsIfDependent(*MBBI, RegDefsToMove, PhysRegUsesToMove,
938                               InstsToMove))
939       continue;
940 
941     if (&*MBBI == &*Paired.I) {
942       // We need to go through the list of instructions that we plan to
943       // move and make sure they are all safe to move down past the merged
944       // instruction.
945       if (canMoveInstsAcrossMemOp(*MBBI, InstsToMove, AA)) {
946 
947         // Call offsetsCanBeCombined with modify = true so that the offsets are
948         // correct for the new instruction.  This should return true, because
949         // this function should only be called on CombineInfo objects that
950         // have already been confirmed to be mergeable.
951         if (CI.InstClass != MIMG)
952           offsetsCanBeCombined(CI, *STI, Paired, true);
953         return true;
954       }
955       return false;
956     }
957 
958     // We've found a load/store that we couldn't merge for some reason.
959     // We could potentially keep looking, but we'd need to make sure that
960     // it was safe to move I and also all the instruction in InstsToMove
961     // down past this instruction.
962     // check if we can move I across MBBI and if we can move all I's users
963     if (!memAccessesCanBeReordered(*CI.I, *MBBI, AA) ||
964         !canMoveInstsAcrossMemOp(*MBBI, InstsToMove, AA))
965       break;
966   }
967   return false;
968 }
969 
970 unsigned SILoadStoreOptimizer::read2Opcode(unsigned EltSize) const {
971   if (STM->ldsRequiresM0Init())
972     return (EltSize == 4) ? AMDGPU::DS_READ2_B32 : AMDGPU::DS_READ2_B64;
973   return (EltSize == 4) ? AMDGPU::DS_READ2_B32_gfx9 : AMDGPU::DS_READ2_B64_gfx9;
974 }
975 
976 unsigned SILoadStoreOptimizer::read2ST64Opcode(unsigned EltSize) const {
977   if (STM->ldsRequiresM0Init())
978     return (EltSize == 4) ? AMDGPU::DS_READ2ST64_B32 : AMDGPU::DS_READ2ST64_B64;
979 
980   return (EltSize == 4) ? AMDGPU::DS_READ2ST64_B32_gfx9
981                         : AMDGPU::DS_READ2ST64_B64_gfx9;
982 }
983 
984 MachineBasicBlock::iterator
985 SILoadStoreOptimizer::mergeRead2Pair(CombineInfo &CI, CombineInfo &Paired,
986     const SmallVectorImpl<MachineInstr *> &InstsToMove) {
987   MachineBasicBlock *MBB = CI.I->getParent();
988 
989   // Be careful, since the addresses could be subregisters themselves in weird
990   // cases, like vectors of pointers.
991   const auto *AddrReg = TII->getNamedOperand(*CI.I, AMDGPU::OpName::addr);
992 
993   const auto *Dest0 = TII->getNamedOperand(*CI.I, AMDGPU::OpName::vdst);
994   const auto *Dest1 = TII->getNamedOperand(*Paired.I, AMDGPU::OpName::vdst);
995 
996   unsigned NewOffset0 = CI.Offset;
997   unsigned NewOffset1 = Paired.Offset;
998   unsigned Opc =
999       CI.UseST64 ? read2ST64Opcode(CI.EltSize) : read2Opcode(CI.EltSize);
1000 
1001   unsigned SubRegIdx0 = (CI.EltSize == 4) ? AMDGPU::sub0 : AMDGPU::sub0_sub1;
1002   unsigned SubRegIdx1 = (CI.EltSize == 4) ? AMDGPU::sub1 : AMDGPU::sub2_sub3;
1003 
1004   if (NewOffset0 > NewOffset1) {
1005     // Canonicalize the merged instruction so the smaller offset comes first.
1006     std::swap(NewOffset0, NewOffset1);
1007     std::swap(SubRegIdx0, SubRegIdx1);
1008   }
1009 
1010   assert((isUInt<8>(NewOffset0) && isUInt<8>(NewOffset1)) &&
1011          (NewOffset0 != NewOffset1) && "Computed offset doesn't fit");
1012 
1013   const MCInstrDesc &Read2Desc = TII->get(Opc);
1014 
1015   const TargetRegisterClass *SuperRC =
1016       (CI.EltSize == 4) ? &AMDGPU::VReg_64RegClass : &AMDGPU::VReg_128RegClass;
1017   Register DestReg = MRI->createVirtualRegister(SuperRC);
1018 
1019   DebugLoc DL = CI.I->getDebugLoc();
1020 
1021   Register BaseReg = AddrReg->getReg();
1022   unsigned BaseSubReg = AddrReg->getSubReg();
1023   unsigned BaseRegFlags = 0;
1024   if (CI.BaseOff) {
1025     Register ImmReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass);
1026     BuildMI(*MBB, Paired.I, DL, TII->get(AMDGPU::S_MOV_B32), ImmReg)
1027         .addImm(CI.BaseOff);
1028 
1029     BaseReg = MRI->createVirtualRegister(&AMDGPU::VGPR_32RegClass);
1030     BaseRegFlags = RegState::Kill;
1031 
1032     TII->getAddNoCarry(*MBB, Paired.I, DL, BaseReg)
1033         .addReg(ImmReg)
1034         .addReg(AddrReg->getReg(), 0, BaseSubReg)
1035         .addImm(0); // clamp bit
1036     BaseSubReg = 0;
1037   }
1038 
1039   MachineInstrBuilder Read2 =
1040       BuildMI(*MBB, Paired.I, DL, Read2Desc, DestReg)
1041           .addReg(BaseReg, BaseRegFlags, BaseSubReg) // addr
1042           .addImm(NewOffset0)                        // offset0
1043           .addImm(NewOffset1)                        // offset1
1044           .addImm(0)                                 // gds
1045           .cloneMergedMemRefs({&*CI.I, &*Paired.I});
1046 
1047   (void)Read2;
1048 
1049   const MCInstrDesc &CopyDesc = TII->get(TargetOpcode::COPY);
1050 
1051   // Copy to the old destination registers.
1052   BuildMI(*MBB, Paired.I, DL, CopyDesc)
1053       .add(*Dest0) // Copy to same destination including flags and sub reg.
1054       .addReg(DestReg, 0, SubRegIdx0);
1055   MachineInstr *Copy1 = BuildMI(*MBB, Paired.I, DL, CopyDesc)
1056                             .add(*Dest1)
1057                             .addReg(DestReg, RegState::Kill, SubRegIdx1);
1058 
1059   moveInstsAfter(Copy1, InstsToMove);
1060 
1061   CI.I->eraseFromParent();
1062   Paired.I->eraseFromParent();
1063 
1064   LLVM_DEBUG(dbgs() << "Inserted read2: " << *Read2 << '\n');
1065   return Read2;
1066 }
1067 
1068 unsigned SILoadStoreOptimizer::write2Opcode(unsigned EltSize) const {
1069   if (STM->ldsRequiresM0Init())
1070     return (EltSize == 4) ? AMDGPU::DS_WRITE2_B32 : AMDGPU::DS_WRITE2_B64;
1071   return (EltSize == 4) ? AMDGPU::DS_WRITE2_B32_gfx9
1072                         : AMDGPU::DS_WRITE2_B64_gfx9;
1073 }
1074 
1075 unsigned SILoadStoreOptimizer::write2ST64Opcode(unsigned EltSize) const {
1076   if (STM->ldsRequiresM0Init())
1077     return (EltSize == 4) ? AMDGPU::DS_WRITE2ST64_B32
1078                           : AMDGPU::DS_WRITE2ST64_B64;
1079 
1080   return (EltSize == 4) ? AMDGPU::DS_WRITE2ST64_B32_gfx9
1081                         : AMDGPU::DS_WRITE2ST64_B64_gfx9;
1082 }
1083 
1084 MachineBasicBlock::iterator
1085 SILoadStoreOptimizer::mergeWrite2Pair(CombineInfo &CI, CombineInfo &Paired,
1086                                       const SmallVectorImpl<MachineInstr *> &InstsToMove) {
1087   MachineBasicBlock *MBB = CI.I->getParent();
1088 
1089   // Be sure to use .addOperand(), and not .addReg() with these. We want to be
1090   // sure we preserve the subregister index and any register flags set on them.
1091   const MachineOperand *AddrReg =
1092       TII->getNamedOperand(*CI.I, AMDGPU::OpName::addr);
1093   const MachineOperand *Data0 =
1094       TII->getNamedOperand(*CI.I, AMDGPU::OpName::data0);
1095   const MachineOperand *Data1 =
1096       TII->getNamedOperand(*Paired.I, AMDGPU::OpName::data0);
1097 
1098   unsigned NewOffset0 = CI.Offset;
1099   unsigned NewOffset1 = Paired.Offset;
1100   unsigned Opc =
1101       CI.UseST64 ? write2ST64Opcode(CI.EltSize) : write2Opcode(CI.EltSize);
1102 
1103   if (NewOffset0 > NewOffset1) {
1104     // Canonicalize the merged instruction so the smaller offset comes first.
1105     std::swap(NewOffset0, NewOffset1);
1106     std::swap(Data0, Data1);
1107   }
1108 
1109   assert((isUInt<8>(NewOffset0) && isUInt<8>(NewOffset1)) &&
1110          (NewOffset0 != NewOffset1) && "Computed offset doesn't fit");
1111 
1112   const MCInstrDesc &Write2Desc = TII->get(Opc);
1113   DebugLoc DL = CI.I->getDebugLoc();
1114 
1115   Register BaseReg = AddrReg->getReg();
1116   unsigned BaseSubReg = AddrReg->getSubReg();
1117   unsigned BaseRegFlags = 0;
1118   if (CI.BaseOff) {
1119     Register ImmReg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass);
1120     BuildMI(*MBB, Paired.I, DL, TII->get(AMDGPU::S_MOV_B32), ImmReg)
1121         .addImm(CI.BaseOff);
1122 
1123     BaseReg = MRI->createVirtualRegister(&AMDGPU::VGPR_32RegClass);
1124     BaseRegFlags = RegState::Kill;
1125 
1126     TII->getAddNoCarry(*MBB, Paired.I, DL, BaseReg)
1127         .addReg(ImmReg)
1128         .addReg(AddrReg->getReg(), 0, BaseSubReg)
1129         .addImm(0); // clamp bit
1130     BaseSubReg = 0;
1131   }
1132 
1133   MachineInstrBuilder Write2 =
1134       BuildMI(*MBB, Paired.I, DL, Write2Desc)
1135           .addReg(BaseReg, BaseRegFlags, BaseSubReg) // addr
1136           .add(*Data0)                               // data0
1137           .add(*Data1)                               // data1
1138           .addImm(NewOffset0)                        // offset0
1139           .addImm(NewOffset1)                        // offset1
1140           .addImm(0)                                 // gds
1141           .cloneMergedMemRefs({&*CI.I, &*Paired.I});
1142 
1143   moveInstsAfter(Write2, InstsToMove);
1144 
1145   CI.I->eraseFromParent();
1146   Paired.I->eraseFromParent();
1147 
1148   LLVM_DEBUG(dbgs() << "Inserted write2 inst: " << *Write2 << '\n');
1149   return Write2;
1150 }
1151 
1152 MachineBasicBlock::iterator
1153 SILoadStoreOptimizer::mergeImagePair(CombineInfo &CI, CombineInfo &Paired,
1154                            const SmallVectorImpl<MachineInstr *> &InstsToMove) {
1155   MachineBasicBlock *MBB = CI.I->getParent();
1156   DebugLoc DL = CI.I->getDebugLoc();
1157   const unsigned Opcode = getNewOpcode(CI, Paired);
1158 
1159   const TargetRegisterClass *SuperRC = getTargetRegisterClass(CI, Paired);
1160 
1161   Register DestReg = MRI->createVirtualRegister(SuperRC);
1162   unsigned MergedDMask = CI.DMask | Paired.DMask;
1163   unsigned DMaskIdx =
1164       AMDGPU::getNamedOperandIdx(CI.I->getOpcode(), AMDGPU::OpName::dmask);
1165 
1166   auto MIB = BuildMI(*MBB, Paired.I, DL, TII->get(Opcode), DestReg);
1167   for (unsigned I = 1, E = (*CI.I).getNumOperands(); I != E; ++I) {
1168     if (I == DMaskIdx)
1169       MIB.addImm(MergedDMask);
1170     else
1171       MIB.add((*CI.I).getOperand(I));
1172   }
1173 
1174   // It shouldn't be possible to get this far if the two instructions
1175   // don't have a single memoperand, because MachineInstr::mayAlias()
1176   // will return true if this is the case.
1177   assert(CI.I->hasOneMemOperand() && Paired.I->hasOneMemOperand());
1178 
1179   const MachineMemOperand *MMOa = *CI.I->memoperands_begin();
1180   const MachineMemOperand *MMOb = *Paired.I->memoperands_begin();
1181 
1182   MachineInstr *New = MIB.addMemOperand(combineKnownAdjacentMMOs(*MBB->getParent(), MMOa, MMOb));
1183 
1184   unsigned SubRegIdx0, SubRegIdx1;
1185   std::tie(SubRegIdx0, SubRegIdx1) = getSubRegIdxs(CI, Paired);
1186 
1187   // Copy to the old destination registers.
1188   const MCInstrDesc &CopyDesc = TII->get(TargetOpcode::COPY);
1189   const auto *Dest0 = TII->getNamedOperand(*CI.I, AMDGPU::OpName::vdata);
1190   const auto *Dest1 = TII->getNamedOperand(*Paired.I, AMDGPU::OpName::vdata);
1191 
1192   BuildMI(*MBB, Paired.I, DL, CopyDesc)
1193       .add(*Dest0) // Copy to same destination including flags and sub reg.
1194       .addReg(DestReg, 0, SubRegIdx0);
1195   MachineInstr *Copy1 = BuildMI(*MBB, Paired.I, DL, CopyDesc)
1196                             .add(*Dest1)
1197                             .addReg(DestReg, RegState::Kill, SubRegIdx1);
1198 
1199   moveInstsAfter(Copy1, InstsToMove);
1200 
1201   CI.I->eraseFromParent();
1202   Paired.I->eraseFromParent();
1203   return New;
1204 }
1205 
1206 MachineBasicBlock::iterator SILoadStoreOptimizer::mergeSBufferLoadImmPair(
1207     CombineInfo &CI, CombineInfo &Paired,
1208     const SmallVectorImpl<MachineInstr *> &InstsToMove) {
1209   MachineBasicBlock *MBB = CI.I->getParent();
1210   DebugLoc DL = CI.I->getDebugLoc();
1211   const unsigned Opcode = getNewOpcode(CI, Paired);
1212 
1213   const TargetRegisterClass *SuperRC = getTargetRegisterClass(CI, Paired);
1214 
1215   Register DestReg = MRI->createVirtualRegister(SuperRC);
1216   unsigned MergedOffset = std::min(CI.Offset, Paired.Offset);
1217 
1218   // It shouldn't be possible to get this far if the two instructions
1219   // don't have a single memoperand, because MachineInstr::mayAlias()
1220   // will return true if this is the case.
1221   assert(CI.I->hasOneMemOperand() && Paired.I->hasOneMemOperand());
1222 
1223   const MachineMemOperand *MMOa = *CI.I->memoperands_begin();
1224   const MachineMemOperand *MMOb = *Paired.I->memoperands_begin();
1225 
1226   MachineInstr *New =
1227     BuildMI(*MBB, Paired.I, DL, TII->get(Opcode), DestReg)
1228         .add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::sbase))
1229         .addImm(MergedOffset) // offset
1230         .addImm(CI.GLC)      // glc
1231         .addImm(CI.DLC)      // dlc
1232         .addMemOperand(combineKnownAdjacentMMOs(*MBB->getParent(), MMOa, MMOb));
1233 
1234   std::pair<unsigned, unsigned> SubRegIdx = getSubRegIdxs(CI, Paired);
1235   const unsigned SubRegIdx0 = std::get<0>(SubRegIdx);
1236   const unsigned SubRegIdx1 = std::get<1>(SubRegIdx);
1237 
1238   // Copy to the old destination registers.
1239   const MCInstrDesc &CopyDesc = TII->get(TargetOpcode::COPY);
1240   const auto *Dest0 = TII->getNamedOperand(*CI.I, AMDGPU::OpName::sdst);
1241   const auto *Dest1 = TII->getNamedOperand(*Paired.I, AMDGPU::OpName::sdst);
1242 
1243   BuildMI(*MBB, Paired.I, DL, CopyDesc)
1244       .add(*Dest0) // Copy to same destination including flags and sub reg.
1245       .addReg(DestReg, 0, SubRegIdx0);
1246   MachineInstr *Copy1 = BuildMI(*MBB, Paired.I, DL, CopyDesc)
1247                             .add(*Dest1)
1248                             .addReg(DestReg, RegState::Kill, SubRegIdx1);
1249 
1250   moveInstsAfter(Copy1, InstsToMove);
1251 
1252   CI.I->eraseFromParent();
1253   Paired.I->eraseFromParent();
1254   return New;
1255 }
1256 
1257 MachineBasicBlock::iterator SILoadStoreOptimizer::mergeBufferLoadPair(
1258     CombineInfo &CI, CombineInfo &Paired,
1259     const SmallVectorImpl<MachineInstr *> &InstsToMove) {
1260   MachineBasicBlock *MBB = CI.I->getParent();
1261   DebugLoc DL = CI.I->getDebugLoc();
1262 
1263   const unsigned Opcode = getNewOpcode(CI, Paired);
1264 
1265   const TargetRegisterClass *SuperRC = getTargetRegisterClass(CI, Paired);
1266 
1267   // Copy to the new source register.
1268   Register DestReg = MRI->createVirtualRegister(SuperRC);
1269   unsigned MergedOffset = std::min(CI.Offset, Paired.Offset);
1270 
1271   auto MIB = BuildMI(*MBB, Paired.I, DL, TII->get(Opcode), DestReg);
1272 
1273   const unsigned Regs = getRegs(Opcode, *TII);
1274 
1275   if (Regs & VADDR)
1276     MIB.add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::vaddr));
1277 
1278   // It shouldn't be possible to get this far if the two instructions
1279   // don't have a single memoperand, because MachineInstr::mayAlias()
1280   // will return true if this is the case.
1281   assert(CI.I->hasOneMemOperand() && Paired.I->hasOneMemOperand());
1282 
1283   const MachineMemOperand *MMOa = *CI.I->memoperands_begin();
1284   const MachineMemOperand *MMOb = *Paired.I->memoperands_begin();
1285 
1286   MachineInstr *New =
1287     MIB.add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::srsrc))
1288         .add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::soffset))
1289         .addImm(MergedOffset) // offset
1290         .addImm(CI.GLC)      // glc
1291         .addImm(CI.SLC)      // slc
1292         .addImm(0)            // tfe
1293         .addImm(CI.DLC)      // dlc
1294         .addImm(0)            // swz
1295         .addMemOperand(combineKnownAdjacentMMOs(*MBB->getParent(), MMOa, MMOb));
1296 
1297   std::pair<unsigned, unsigned> SubRegIdx = getSubRegIdxs(CI, Paired);
1298   const unsigned SubRegIdx0 = std::get<0>(SubRegIdx);
1299   const unsigned SubRegIdx1 = std::get<1>(SubRegIdx);
1300 
1301   // Copy to the old destination registers.
1302   const MCInstrDesc &CopyDesc = TII->get(TargetOpcode::COPY);
1303   const auto *Dest0 = TII->getNamedOperand(*CI.I, AMDGPU::OpName::vdata);
1304   const auto *Dest1 = TII->getNamedOperand(*Paired.I, AMDGPU::OpName::vdata);
1305 
1306   BuildMI(*MBB, Paired.I, DL, CopyDesc)
1307       .add(*Dest0) // Copy to same destination including flags and sub reg.
1308       .addReg(DestReg, 0, SubRegIdx0);
1309   MachineInstr *Copy1 = BuildMI(*MBB, Paired.I, DL, CopyDesc)
1310                             .add(*Dest1)
1311                             .addReg(DestReg, RegState::Kill, SubRegIdx1);
1312 
1313   moveInstsAfter(Copy1, InstsToMove);
1314 
1315   CI.I->eraseFromParent();
1316   Paired.I->eraseFromParent();
1317   return New;
1318 }
1319 
1320 MachineBasicBlock::iterator SILoadStoreOptimizer::mergeTBufferLoadPair(
1321     CombineInfo &CI, CombineInfo &Paired,
1322     const SmallVectorImpl<MachineInstr *> &InstsToMove) {
1323   MachineBasicBlock *MBB = CI.I->getParent();
1324   DebugLoc DL = CI.I->getDebugLoc();
1325 
1326   const unsigned Opcode = getNewOpcode(CI, Paired);
1327 
1328   const TargetRegisterClass *SuperRC = getTargetRegisterClass(CI, Paired);
1329 
1330   // Copy to the new source register.
1331   Register DestReg = MRI->createVirtualRegister(SuperRC);
1332   unsigned MergedOffset = std::min(CI.Offset, Paired.Offset);
1333 
1334   auto MIB = BuildMI(*MBB, Paired.I, DL, TII->get(Opcode), DestReg);
1335 
1336   const unsigned Regs = getRegs(Opcode, *TII);
1337 
1338   if (Regs & VADDR)
1339     MIB.add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::vaddr));
1340 
1341   unsigned JoinedFormat =
1342       getBufferFormatWithCompCount(CI.Format, CI.Width + Paired.Width, *STI);
1343 
1344   // It shouldn't be possible to get this far if the two instructions
1345   // don't have a single memoperand, because MachineInstr::mayAlias()
1346   // will return true if this is the case.
1347   assert(CI.I->hasOneMemOperand() && Paired.I->hasOneMemOperand());
1348 
1349   const MachineMemOperand *MMOa = *CI.I->memoperands_begin();
1350   const MachineMemOperand *MMOb = *Paired.I->memoperands_begin();
1351 
1352   MachineInstr *New =
1353       MIB.add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::srsrc))
1354           .add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::soffset))
1355           .addImm(MergedOffset) // offset
1356           .addImm(JoinedFormat) // format
1357           .addImm(CI.GLC)      // glc
1358           .addImm(CI.SLC)      // slc
1359           .addImm(0)            // tfe
1360           .addImm(CI.DLC)      // dlc
1361           .addImm(0)            // swz
1362           .addMemOperand(
1363               combineKnownAdjacentMMOs(*MBB->getParent(), MMOa, MMOb));
1364 
1365   std::pair<unsigned, unsigned> SubRegIdx = getSubRegIdxs(CI, Paired);
1366   const unsigned SubRegIdx0 = std::get<0>(SubRegIdx);
1367   const unsigned SubRegIdx1 = std::get<1>(SubRegIdx);
1368 
1369   // Copy to the old destination registers.
1370   const MCInstrDesc &CopyDesc = TII->get(TargetOpcode::COPY);
1371   const auto *Dest0 = TII->getNamedOperand(*CI.I, AMDGPU::OpName::vdata);
1372   const auto *Dest1 = TII->getNamedOperand(*Paired.I, AMDGPU::OpName::vdata);
1373 
1374   BuildMI(*MBB, Paired.I, DL, CopyDesc)
1375       .add(*Dest0) // Copy to same destination including flags and sub reg.
1376       .addReg(DestReg, 0, SubRegIdx0);
1377   MachineInstr *Copy1 = BuildMI(*MBB, Paired.I, DL, CopyDesc)
1378                             .add(*Dest1)
1379                             .addReg(DestReg, RegState::Kill, SubRegIdx1);
1380 
1381   moveInstsAfter(Copy1, InstsToMove);
1382 
1383   CI.I->eraseFromParent();
1384   Paired.I->eraseFromParent();
1385   return New;
1386 }
1387 
1388 MachineBasicBlock::iterator SILoadStoreOptimizer::mergeTBufferStorePair(
1389     CombineInfo &CI, CombineInfo &Paired,
1390     const SmallVectorImpl<MachineInstr *> &InstsToMove) {
1391   MachineBasicBlock *MBB = CI.I->getParent();
1392   DebugLoc DL = CI.I->getDebugLoc();
1393 
1394   const unsigned Opcode = getNewOpcode(CI, Paired);
1395 
1396   std::pair<unsigned, unsigned> SubRegIdx = getSubRegIdxs(CI, Paired);
1397   const unsigned SubRegIdx0 = std::get<0>(SubRegIdx);
1398   const unsigned SubRegIdx1 = std::get<1>(SubRegIdx);
1399 
1400   // Copy to the new source register.
1401   const TargetRegisterClass *SuperRC = getTargetRegisterClass(CI, Paired);
1402   Register SrcReg = MRI->createVirtualRegister(SuperRC);
1403 
1404   const auto *Src0 = TII->getNamedOperand(*CI.I, AMDGPU::OpName::vdata);
1405   const auto *Src1 = TII->getNamedOperand(*Paired.I, AMDGPU::OpName::vdata);
1406 
1407   BuildMI(*MBB, Paired.I, DL, TII->get(AMDGPU::REG_SEQUENCE), SrcReg)
1408       .add(*Src0)
1409       .addImm(SubRegIdx0)
1410       .add(*Src1)
1411       .addImm(SubRegIdx1);
1412 
1413   auto MIB = BuildMI(*MBB, Paired.I, DL, TII->get(Opcode))
1414                  .addReg(SrcReg, RegState::Kill);
1415 
1416   const unsigned Regs = getRegs(Opcode, *TII);
1417 
1418   if (Regs & VADDR)
1419     MIB.add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::vaddr));
1420 
1421   unsigned JoinedFormat =
1422       getBufferFormatWithCompCount(CI.Format, CI.Width + Paired.Width, *STI);
1423 
1424   // It shouldn't be possible to get this far if the two instructions
1425   // don't have a single memoperand, because MachineInstr::mayAlias()
1426   // will return true if this is the case.
1427   assert(CI.I->hasOneMemOperand() && Paired.I->hasOneMemOperand());
1428 
1429   const MachineMemOperand *MMOa = *CI.I->memoperands_begin();
1430   const MachineMemOperand *MMOb = *Paired.I->memoperands_begin();
1431 
1432   MachineInstr *New =
1433       MIB.add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::srsrc))
1434           .add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::soffset))
1435           .addImm(std::min(CI.Offset, Paired.Offset)) // offset
1436           .addImm(JoinedFormat)                     // format
1437           .addImm(CI.GLC)                          // glc
1438           .addImm(CI.SLC)                          // slc
1439           .addImm(0)                                // tfe
1440           .addImm(CI.DLC)                          // dlc
1441           .addImm(0)                                // swz
1442           .addMemOperand(
1443               combineKnownAdjacentMMOs(*MBB->getParent(), MMOa, MMOb));
1444 
1445   moveInstsAfter(MIB, InstsToMove);
1446 
1447   CI.I->eraseFromParent();
1448   Paired.I->eraseFromParent();
1449   return New;
1450 }
1451 
1452 unsigned SILoadStoreOptimizer::getNewOpcode(const CombineInfo &CI,
1453                                             const CombineInfo &Paired) {
1454   const unsigned Width = CI.Width + Paired.Width;
1455 
1456   switch (CI.InstClass) {
1457   default:
1458     assert(CI.InstClass == BUFFER_LOAD || CI.InstClass == BUFFER_STORE);
1459     // FIXME: Handle d16 correctly
1460     return AMDGPU::getMUBUFOpcode(AMDGPU::getMUBUFBaseOpcode(CI.I->getOpcode()),
1461                                   Width);
1462   case TBUFFER_LOAD:
1463   case TBUFFER_STORE:
1464     return AMDGPU::getMTBUFOpcode(AMDGPU::getMTBUFBaseOpcode(CI.I->getOpcode()),
1465                                   Width);
1466 
1467   case UNKNOWN:
1468     llvm_unreachable("Unknown instruction class");
1469   case S_BUFFER_LOAD_IMM:
1470     switch (Width) {
1471     default:
1472       return 0;
1473     case 2:
1474       return AMDGPU::S_BUFFER_LOAD_DWORDX2_IMM;
1475     case 4:
1476       return AMDGPU::S_BUFFER_LOAD_DWORDX4_IMM;
1477     }
1478   case MIMG:
1479     assert("No overlaps" && (countPopulation(CI.DMask | Paired.DMask) == Width));
1480     return AMDGPU::getMaskedMIMGOp(CI.I->getOpcode(), Width);
1481   }
1482 }
1483 
1484 std::pair<unsigned, unsigned>
1485 SILoadStoreOptimizer::getSubRegIdxs(const CombineInfo &CI, const CombineInfo &Paired) {
1486 
1487   if (CI.Width == 0 || Paired.Width == 0 || CI.Width + Paired.Width > 4)
1488     return std::make_pair(0, 0);
1489 
1490   bool ReverseOrder;
1491   if (CI.InstClass == MIMG) {
1492     assert((countPopulation(CI.DMask | Paired.DMask) == CI.Width + Paired.Width) &&
1493            "No overlaps");
1494     ReverseOrder = CI.DMask > Paired.DMask;
1495   } else
1496     ReverseOrder = CI.Offset > Paired.Offset;
1497 
1498   static const unsigned Idxs[4][4] = {
1499       {AMDGPU::sub0, AMDGPU::sub0_sub1, AMDGPU::sub0_sub1_sub2, AMDGPU::sub0_sub1_sub2_sub3},
1500       {AMDGPU::sub1, AMDGPU::sub1_sub2, AMDGPU::sub1_sub2_sub3, 0},
1501       {AMDGPU::sub2, AMDGPU::sub2_sub3, 0, 0},
1502       {AMDGPU::sub3, 0, 0, 0},
1503   };
1504   unsigned Idx0;
1505   unsigned Idx1;
1506 
1507   assert(CI.Width >= 1 && CI.Width <= 3);
1508   assert(Paired.Width >= 1 && Paired.Width <= 3);
1509 
1510   if (ReverseOrder) {
1511     Idx1 = Idxs[0][Paired.Width - 1];
1512     Idx0 = Idxs[Paired.Width][CI.Width - 1];
1513   } else {
1514     Idx0 = Idxs[0][CI.Width - 1];
1515     Idx1 = Idxs[CI.Width][Paired.Width - 1];
1516   }
1517 
1518   return std::make_pair(Idx0, Idx1);
1519 }
1520 
1521 const TargetRegisterClass *
1522 SILoadStoreOptimizer::getTargetRegisterClass(const CombineInfo &CI,
1523                                              const CombineInfo &Paired) {
1524   if (CI.InstClass == S_BUFFER_LOAD_IMM) {
1525     switch (CI.Width + Paired.Width) {
1526     default:
1527       return nullptr;
1528     case 2:
1529       return &AMDGPU::SReg_64_XEXECRegClass;
1530     case 4:
1531       return &AMDGPU::SGPR_128RegClass;
1532     case 8:
1533       return &AMDGPU::SReg_256RegClass;
1534     case 16:
1535       return &AMDGPU::SReg_512RegClass;
1536     }
1537   } else {
1538     switch (CI.Width + Paired.Width) {
1539     default:
1540       return nullptr;
1541     case 2:
1542       return &AMDGPU::VReg_64RegClass;
1543     case 3:
1544       return &AMDGPU::VReg_96RegClass;
1545     case 4:
1546       return &AMDGPU::VReg_128RegClass;
1547     }
1548   }
1549 }
1550 
1551 MachineBasicBlock::iterator SILoadStoreOptimizer::mergeBufferStorePair(
1552     CombineInfo &CI, CombineInfo &Paired,
1553     const SmallVectorImpl<MachineInstr *> &InstsToMove) {
1554   MachineBasicBlock *MBB = CI.I->getParent();
1555   DebugLoc DL = CI.I->getDebugLoc();
1556 
1557   const unsigned Opcode = getNewOpcode(CI, Paired);
1558 
1559   std::pair<unsigned, unsigned> SubRegIdx = getSubRegIdxs(CI, Paired);
1560   const unsigned SubRegIdx0 = std::get<0>(SubRegIdx);
1561   const unsigned SubRegIdx1 = std::get<1>(SubRegIdx);
1562 
1563   // Copy to the new source register.
1564   const TargetRegisterClass *SuperRC = getTargetRegisterClass(CI, Paired);
1565   Register SrcReg = MRI->createVirtualRegister(SuperRC);
1566 
1567   const auto *Src0 = TII->getNamedOperand(*CI.I, AMDGPU::OpName::vdata);
1568   const auto *Src1 = TII->getNamedOperand(*Paired.I, AMDGPU::OpName::vdata);
1569 
1570   BuildMI(*MBB, Paired.I, DL, TII->get(AMDGPU::REG_SEQUENCE), SrcReg)
1571       .add(*Src0)
1572       .addImm(SubRegIdx0)
1573       .add(*Src1)
1574       .addImm(SubRegIdx1);
1575 
1576   auto MIB = BuildMI(*MBB, Paired.I, DL, TII->get(Opcode))
1577                  .addReg(SrcReg, RegState::Kill);
1578 
1579   const unsigned Regs = getRegs(Opcode, *TII);
1580 
1581   if (Regs & VADDR)
1582     MIB.add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::vaddr));
1583 
1584 
1585   // It shouldn't be possible to get this far if the two instructions
1586   // don't have a single memoperand, because MachineInstr::mayAlias()
1587   // will return true if this is the case.
1588   assert(CI.I->hasOneMemOperand() && Paired.I->hasOneMemOperand());
1589 
1590   const MachineMemOperand *MMOa = *CI.I->memoperands_begin();
1591   const MachineMemOperand *MMOb = *Paired.I->memoperands_begin();
1592 
1593   MachineInstr *New =
1594     MIB.add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::srsrc))
1595         .add(*TII->getNamedOperand(*CI.I, AMDGPU::OpName::soffset))
1596         .addImm(std::min(CI.Offset, Paired.Offset)) // offset
1597         .addImm(CI.GLC)      // glc
1598         .addImm(CI.SLC)      // slc
1599         .addImm(0)            // tfe
1600         .addImm(CI.DLC)      // dlc
1601         .addImm(0)            // swz
1602         .addMemOperand(combineKnownAdjacentMMOs(*MBB->getParent(), MMOa, MMOb));
1603 
1604   moveInstsAfter(MIB, InstsToMove);
1605 
1606   CI.I->eraseFromParent();
1607   Paired.I->eraseFromParent();
1608   return New;
1609 }
1610 
1611 MachineOperand
1612 SILoadStoreOptimizer::createRegOrImm(int32_t Val, MachineInstr &MI) const {
1613   APInt V(32, Val, true);
1614   if (TII->isInlineConstant(V))
1615     return MachineOperand::CreateImm(Val);
1616 
1617   Register Reg = MRI->createVirtualRegister(&AMDGPU::SReg_32RegClass);
1618   MachineInstr *Mov =
1619   BuildMI(*MI.getParent(), MI.getIterator(), MI.getDebugLoc(),
1620           TII->get(AMDGPU::S_MOV_B32), Reg)
1621     .addImm(Val);
1622   (void)Mov;
1623   LLVM_DEBUG(dbgs() << "    "; Mov->dump());
1624   return MachineOperand::CreateReg(Reg, false);
1625 }
1626 
1627 // Compute base address using Addr and return the final register.
1628 unsigned SILoadStoreOptimizer::computeBase(MachineInstr &MI,
1629                                            const MemAddress &Addr) const {
1630   MachineBasicBlock *MBB = MI.getParent();
1631   MachineBasicBlock::iterator MBBI = MI.getIterator();
1632   DebugLoc DL = MI.getDebugLoc();
1633 
1634   assert((TRI->getRegSizeInBits(Addr.Base.LoReg, *MRI) == 32 ||
1635           Addr.Base.LoSubReg) &&
1636          "Expected 32-bit Base-Register-Low!!");
1637 
1638   assert((TRI->getRegSizeInBits(Addr.Base.HiReg, *MRI) == 32 ||
1639           Addr.Base.HiSubReg) &&
1640          "Expected 32-bit Base-Register-Hi!!");
1641 
1642   LLVM_DEBUG(dbgs() << "  Re-Computed Anchor-Base:\n");
1643   MachineOperand OffsetLo = createRegOrImm(static_cast<int32_t>(Addr.Offset), MI);
1644   MachineOperand OffsetHi =
1645     createRegOrImm(static_cast<int32_t>(Addr.Offset >> 32), MI);
1646 
1647   const auto *CarryRC = TRI->getRegClass(AMDGPU::SReg_1_XEXECRegClassID);
1648   Register CarryReg = MRI->createVirtualRegister(CarryRC);
1649   Register DeadCarryReg = MRI->createVirtualRegister(CarryRC);
1650 
1651   Register DestSub0 = MRI->createVirtualRegister(&AMDGPU::VGPR_32RegClass);
1652   Register DestSub1 = MRI->createVirtualRegister(&AMDGPU::VGPR_32RegClass);
1653   MachineInstr *LoHalf =
1654     BuildMI(*MBB, MBBI, DL, TII->get(AMDGPU::V_ADD_I32_e64), DestSub0)
1655       .addReg(CarryReg, RegState::Define)
1656       .addReg(Addr.Base.LoReg, 0, Addr.Base.LoSubReg)
1657       .add(OffsetLo)
1658       .addImm(0); // clamp bit
1659   (void)LoHalf;
1660   LLVM_DEBUG(dbgs() << "    "; LoHalf->dump(););
1661 
1662   MachineInstr *HiHalf =
1663   BuildMI(*MBB, MBBI, DL, TII->get(AMDGPU::V_ADDC_U32_e64), DestSub1)
1664     .addReg(DeadCarryReg, RegState::Define | RegState::Dead)
1665     .addReg(Addr.Base.HiReg, 0, Addr.Base.HiSubReg)
1666     .add(OffsetHi)
1667     .addReg(CarryReg, RegState::Kill)
1668     .addImm(0); // clamp bit
1669   (void)HiHalf;
1670   LLVM_DEBUG(dbgs() << "    "; HiHalf->dump(););
1671 
1672   Register FullDestReg = MRI->createVirtualRegister(&AMDGPU::VReg_64RegClass);
1673   MachineInstr *FullBase =
1674     BuildMI(*MBB, MBBI, DL, TII->get(TargetOpcode::REG_SEQUENCE), FullDestReg)
1675       .addReg(DestSub0)
1676       .addImm(AMDGPU::sub0)
1677       .addReg(DestSub1)
1678       .addImm(AMDGPU::sub1);
1679   (void)FullBase;
1680   LLVM_DEBUG(dbgs() << "    "; FullBase->dump(); dbgs() << "\n";);
1681 
1682   return FullDestReg;
1683 }
1684 
1685 // Update base and offset with the NewBase and NewOffset in MI.
1686 void SILoadStoreOptimizer::updateBaseAndOffset(MachineInstr &MI,
1687                                                unsigned NewBase,
1688                                                int32_t NewOffset) const {
1689   auto Base = TII->getNamedOperand(MI, AMDGPU::OpName::vaddr);
1690   Base->setReg(NewBase);
1691   Base->setIsKill(false);
1692   TII->getNamedOperand(MI, AMDGPU::OpName::offset)->setImm(NewOffset);
1693 }
1694 
1695 Optional<int32_t>
1696 SILoadStoreOptimizer::extractConstOffset(const MachineOperand &Op) const {
1697   if (Op.isImm())
1698     return Op.getImm();
1699 
1700   if (!Op.isReg())
1701     return None;
1702 
1703   MachineInstr *Def = MRI->getUniqueVRegDef(Op.getReg());
1704   if (!Def || Def->getOpcode() != AMDGPU::S_MOV_B32 ||
1705       !Def->getOperand(1).isImm())
1706     return None;
1707 
1708   return Def->getOperand(1).getImm();
1709 }
1710 
1711 // Analyze Base and extracts:
1712 //  - 32bit base registers, subregisters
1713 //  - 64bit constant offset
1714 // Expecting base computation as:
1715 //   %OFFSET0:sgpr_32 = S_MOV_B32 8000
1716 //   %LO:vgpr_32, %c:sreg_64_xexec =
1717 //       V_ADD_I32_e64 %BASE_LO:vgpr_32, %103:sgpr_32,
1718 //   %HI:vgpr_32, = V_ADDC_U32_e64 %BASE_HI:vgpr_32, 0, killed %c:sreg_64_xexec
1719 //   %Base:vreg_64 =
1720 //       REG_SEQUENCE %LO:vgpr_32, %subreg.sub0, %HI:vgpr_32, %subreg.sub1
1721 void SILoadStoreOptimizer::processBaseWithConstOffset(const MachineOperand &Base,
1722                                                       MemAddress &Addr) const {
1723   if (!Base.isReg())
1724     return;
1725 
1726   MachineInstr *Def = MRI->getUniqueVRegDef(Base.getReg());
1727   if (!Def || Def->getOpcode() != AMDGPU::REG_SEQUENCE
1728       || Def->getNumOperands() != 5)
1729     return;
1730 
1731   MachineOperand BaseLo = Def->getOperand(1);
1732   MachineOperand BaseHi = Def->getOperand(3);
1733   if (!BaseLo.isReg() || !BaseHi.isReg())
1734     return;
1735 
1736   MachineInstr *BaseLoDef = MRI->getUniqueVRegDef(BaseLo.getReg());
1737   MachineInstr *BaseHiDef = MRI->getUniqueVRegDef(BaseHi.getReg());
1738 
1739   if (!BaseLoDef || BaseLoDef->getOpcode() != AMDGPU::V_ADD_I32_e64 ||
1740       !BaseHiDef || BaseHiDef->getOpcode() != AMDGPU::V_ADDC_U32_e64)
1741     return;
1742 
1743   const auto *Src0 = TII->getNamedOperand(*BaseLoDef, AMDGPU::OpName::src0);
1744   const auto *Src1 = TII->getNamedOperand(*BaseLoDef, AMDGPU::OpName::src1);
1745 
1746   auto Offset0P = extractConstOffset(*Src0);
1747   if (Offset0P)
1748     BaseLo = *Src1;
1749   else {
1750     if (!(Offset0P = extractConstOffset(*Src1)))
1751       return;
1752     BaseLo = *Src0;
1753   }
1754 
1755   Src0 = TII->getNamedOperand(*BaseHiDef, AMDGPU::OpName::src0);
1756   Src1 = TII->getNamedOperand(*BaseHiDef, AMDGPU::OpName::src1);
1757 
1758   if (Src0->isImm())
1759     std::swap(Src0, Src1);
1760 
1761   if (!Src1->isImm())
1762     return;
1763 
1764   uint64_t Offset1 = Src1->getImm();
1765   BaseHi = *Src0;
1766 
1767   Addr.Base.LoReg = BaseLo.getReg();
1768   Addr.Base.HiReg = BaseHi.getReg();
1769   Addr.Base.LoSubReg = BaseLo.getSubReg();
1770   Addr.Base.HiSubReg = BaseHi.getSubReg();
1771   Addr.Offset = (*Offset0P & 0x00000000ffffffff) | (Offset1 << 32);
1772 }
1773 
1774 bool SILoadStoreOptimizer::promoteConstantOffsetToImm(
1775     MachineInstr &MI,
1776     MemInfoMap &Visited,
1777     SmallPtrSet<MachineInstr *, 4> &AnchorList) const {
1778 
1779   if (!(MI.mayLoad() ^ MI.mayStore()))
1780     return false;
1781 
1782   // TODO: Support flat and scratch.
1783   if (AMDGPU::getGlobalSaddrOp(MI.getOpcode()) < 0)
1784     return false;
1785 
1786   if (MI.mayLoad() && TII->getNamedOperand(MI, AMDGPU::OpName::vdata) != NULL)
1787     return false;
1788 
1789   if (AnchorList.count(&MI))
1790     return false;
1791 
1792   LLVM_DEBUG(dbgs() << "\nTryToPromoteConstantOffsetToImmFor "; MI.dump());
1793 
1794   if (TII->getNamedOperand(MI, AMDGPU::OpName::offset)->getImm()) {
1795     LLVM_DEBUG(dbgs() << "  Const-offset is already promoted.\n";);
1796     return false;
1797   }
1798 
1799   // Step1: Find the base-registers and a 64bit constant offset.
1800   MachineOperand &Base = *TII->getNamedOperand(MI, AMDGPU::OpName::vaddr);
1801   MemAddress MAddr;
1802   if (Visited.find(&MI) == Visited.end()) {
1803     processBaseWithConstOffset(Base, MAddr);
1804     Visited[&MI] = MAddr;
1805   } else
1806     MAddr = Visited[&MI];
1807 
1808   if (MAddr.Offset == 0) {
1809     LLVM_DEBUG(dbgs() << "  Failed to extract constant-offset or there are no"
1810                          " constant offsets that can be promoted.\n";);
1811     return false;
1812   }
1813 
1814   LLVM_DEBUG(dbgs() << "  BASE: {" << MAddr.Base.HiReg << ", "
1815              << MAddr.Base.LoReg << "} Offset: " << MAddr.Offset << "\n\n";);
1816 
1817   // Step2: Traverse through MI's basic block and find an anchor(that has the
1818   // same base-registers) with the highest 13bit distance from MI's offset.
1819   // E.g. (64bit loads)
1820   // bb:
1821   //   addr1 = &a + 4096;   load1 = load(addr1,  0)
1822   //   addr2 = &a + 6144;   load2 = load(addr2,  0)
1823   //   addr3 = &a + 8192;   load3 = load(addr3,  0)
1824   //   addr4 = &a + 10240;  load4 = load(addr4,  0)
1825   //   addr5 = &a + 12288;  load5 = load(addr5,  0)
1826   //
1827   // Starting from the first load, the optimization will try to find a new base
1828   // from which (&a + 4096) has 13 bit distance. Both &a + 6144 and &a + 8192
1829   // has 13bit distance from &a + 4096. The heuristic considers &a + 8192
1830   // as the new-base(anchor) because of the maximum distance which can
1831   // accomodate more intermediate bases presumeably.
1832   //
1833   // Step3: move (&a + 8192) above load1. Compute and promote offsets from
1834   // (&a + 8192) for load1, load2, load4.
1835   //   addr = &a + 8192
1836   //   load1 = load(addr,       -4096)
1837   //   load2 = load(addr,       -2048)
1838   //   load3 = load(addr,       0)
1839   //   load4 = load(addr,       2048)
1840   //   addr5 = &a + 12288;  load5 = load(addr5,  0)
1841   //
1842   MachineInstr *AnchorInst = nullptr;
1843   MemAddress AnchorAddr;
1844   uint32_t MaxDist = std::numeric_limits<uint32_t>::min();
1845   SmallVector<std::pair<MachineInstr *, int64_t>, 4> InstsWCommonBase;
1846 
1847   MachineBasicBlock *MBB = MI.getParent();
1848   MachineBasicBlock::iterator E = MBB->end();
1849   MachineBasicBlock::iterator MBBI = MI.getIterator();
1850   ++MBBI;
1851   const SITargetLowering *TLI =
1852     static_cast<const SITargetLowering *>(STM->getTargetLowering());
1853 
1854   for ( ; MBBI != E; ++MBBI) {
1855     MachineInstr &MINext = *MBBI;
1856     // TODO: Support finding an anchor(with same base) from store addresses or
1857     // any other load addresses where the opcodes are different.
1858     if (MINext.getOpcode() != MI.getOpcode() ||
1859         TII->getNamedOperand(MINext, AMDGPU::OpName::offset)->getImm())
1860       continue;
1861 
1862     const MachineOperand &BaseNext =
1863       *TII->getNamedOperand(MINext, AMDGPU::OpName::vaddr);
1864     MemAddress MAddrNext;
1865     if (Visited.find(&MINext) == Visited.end()) {
1866       processBaseWithConstOffset(BaseNext, MAddrNext);
1867       Visited[&MINext] = MAddrNext;
1868     } else
1869       MAddrNext = Visited[&MINext];
1870 
1871     if (MAddrNext.Base.LoReg != MAddr.Base.LoReg ||
1872         MAddrNext.Base.HiReg != MAddr.Base.HiReg ||
1873         MAddrNext.Base.LoSubReg != MAddr.Base.LoSubReg ||
1874         MAddrNext.Base.HiSubReg != MAddr.Base.HiSubReg)
1875       continue;
1876 
1877     InstsWCommonBase.push_back(std::make_pair(&MINext, MAddrNext.Offset));
1878 
1879     int64_t Dist = MAddr.Offset - MAddrNext.Offset;
1880     TargetLoweringBase::AddrMode AM;
1881     AM.HasBaseReg = true;
1882     AM.BaseOffs = Dist;
1883     if (TLI->isLegalGlobalAddressingMode(AM) &&
1884         (uint32_t)std::abs(Dist) > MaxDist) {
1885       MaxDist = std::abs(Dist);
1886 
1887       AnchorAddr = MAddrNext;
1888       AnchorInst = &MINext;
1889     }
1890   }
1891 
1892   if (AnchorInst) {
1893     LLVM_DEBUG(dbgs() << "  Anchor-Inst(with max-distance from Offset): ";
1894                AnchorInst->dump());
1895     LLVM_DEBUG(dbgs() << "  Anchor-Offset from BASE: "
1896                <<  AnchorAddr.Offset << "\n\n");
1897 
1898     // Instead of moving up, just re-compute anchor-instruction's base address.
1899     unsigned Base = computeBase(MI, AnchorAddr);
1900 
1901     updateBaseAndOffset(MI, Base, MAddr.Offset - AnchorAddr.Offset);
1902     LLVM_DEBUG(dbgs() << "  After promotion: "; MI.dump(););
1903 
1904     for (auto P : InstsWCommonBase) {
1905       TargetLoweringBase::AddrMode AM;
1906       AM.HasBaseReg = true;
1907       AM.BaseOffs = P.second - AnchorAddr.Offset;
1908 
1909       if (TLI->isLegalGlobalAddressingMode(AM)) {
1910         LLVM_DEBUG(dbgs() << "  Promote Offset(" << P.second;
1911                    dbgs() << ")"; P.first->dump());
1912         updateBaseAndOffset(*P.first, Base, P.second - AnchorAddr.Offset);
1913         LLVM_DEBUG(dbgs() << "     After promotion: "; P.first->dump());
1914       }
1915     }
1916     AnchorList.insert(AnchorInst);
1917     return true;
1918   }
1919 
1920   return false;
1921 }
1922 
1923 void SILoadStoreOptimizer::addInstToMergeableList(const CombineInfo &CI,
1924                  std::list<std::list<CombineInfo> > &MergeableInsts) const {
1925   for (std::list<CombineInfo> &AddrList : MergeableInsts) {
1926     if (AddrList.front().InstClass == CI.InstClass &&
1927         AddrList.front().hasSameBaseAddress(*CI.I)) {
1928       AddrList.emplace_back(CI);
1929       return;
1930     }
1931   }
1932 
1933   // Base address not found, so add a new list.
1934   MergeableInsts.emplace_back(1, CI);
1935 }
1936 
1937 bool SILoadStoreOptimizer::collectMergeableInsts(MachineBasicBlock &MBB,
1938                  std::list<std::list<CombineInfo> > &MergeableInsts) const {
1939   bool Modified = false;
1940   // Contain the list
1941   MemInfoMap Visited;
1942   // Contains the list of instructions for which constant offsets are being
1943   // promoted to the IMM.
1944   SmallPtrSet<MachineInstr *, 4> AnchorList;
1945 
1946   // Sort potential mergeable instructions into lists.  One list per base address.
1947   unsigned Order = 0;
1948   for (MachineInstr &MI : MBB.instrs()) {
1949     // We run this before checking if an address is mergeable, because it can produce
1950     // better code even if the instructions aren't mergeable.
1951     if (promoteConstantOffsetToImm(MI, Visited, AnchorList))
1952       Modified = true;
1953 
1954     const InstClassEnum InstClass = getInstClass(MI.getOpcode(), *TII);
1955     if (InstClass == UNKNOWN)
1956       continue;
1957 
1958     // Don't combine if volatile.
1959     if (MI.hasOrderedMemoryRef())
1960       continue;
1961 
1962     CombineInfo CI;
1963     CI.setMI(MI, *TII, *STM);
1964     CI.Order = Order++;
1965 
1966     if (!CI.hasMergeableAddress(*MRI))
1967       continue;
1968 
1969     addInstToMergeableList(CI, MergeableInsts);
1970   }
1971 
1972   // At this point we have lists of Mergeable instructions.
1973   //
1974   // Part 2: Sort lists by offset and then for each CombineInfo object in the
1975   // list try to find an instruction that can be merged with I.  If an instruction
1976   // is found, it is stored in the Paired field.  If no instructions are found, then
1977   // the CombineInfo object is deleted from the list.
1978 
1979   for (std::list<std::list<CombineInfo>>::iterator I = MergeableInsts.begin(),
1980                                                    E = MergeableInsts.end(); I != E;) {
1981 
1982     std::list<CombineInfo> &MergeList = *I;
1983     if (MergeList.size() <= 1) {
1984       // This means we have found only one instruction with a given address
1985       // that can be merged, and we need at least 2 instructions to do a merge,
1986       // so this list can be discarded.
1987       I = MergeableInsts.erase(I);
1988       continue;
1989     }
1990 
1991     // Sort the lists by offsets, this way mergeable instructions will be
1992     // adjacent to each other in the list, which will make it easier to find
1993     // matches.
1994     MergeList.sort(
1995         [] (const CombineInfo &A, CombineInfo &B) {
1996           return A.Offset < B.Offset;
1997         });
1998     ++I;
1999   }
2000 
2001   return Modified;
2002 }
2003 
2004 // Scan through looking for adjacent LDS operations with constant offsets from
2005 // the same base register. We rely on the scheduler to do the hard work of
2006 // clustering nearby loads, and assume these are all adjacent.
2007 bool SILoadStoreOptimizer::optimizeBlock(
2008                        std::list<std::list<CombineInfo> > &MergeableInsts) {
2009   bool Modified = false;
2010 
2011   for (std::list<std::list<CombineInfo>>::iterator I = MergeableInsts.begin(),
2012                                                    E = MergeableInsts.end(); I != E;) {
2013     std::list<CombineInfo> &MergeList = *I;
2014 
2015     bool OptimizeListAgain = false;
2016     if (!optimizeInstsWithSameBaseAddr(MergeList, OptimizeListAgain)) {
2017       // We weren't able to make any changes, so delete the list so we don't
2018       // process the same instructions the next time we try to optimize this
2019       // block.
2020       I = MergeableInsts.erase(I);
2021       continue;
2022     }
2023 
2024     Modified = true;
2025 
2026     // We made changes, but also determined that there were no more optimization
2027     // opportunities, so we don't need to reprocess the list
2028     if (!OptimizeListAgain) {
2029       I = MergeableInsts.erase(I);
2030       continue;
2031     }
2032     OptimizeAgain = true;
2033   }
2034   return Modified;
2035 }
2036 
2037 bool
2038 SILoadStoreOptimizer::optimizeInstsWithSameBaseAddr(
2039                                           std::list<CombineInfo> &MergeList,
2040                                           bool &OptimizeListAgain) {
2041   if (MergeList.empty())
2042     return false;
2043 
2044   bool Modified = false;
2045 
2046   for (auto I = MergeList.begin(), Next = std::next(I); Next != MergeList.end();
2047        Next = std::next(I)) {
2048 
2049     auto First = I;
2050     auto Second = Next;
2051 
2052     if ((*First).Order > (*Second).Order)
2053       std::swap(First, Second);
2054     CombineInfo &CI = *First;
2055     CombineInfo &Paired = *Second;
2056 
2057     SmallVector<MachineInstr *, 8> InstsToMove;
2058     if (!checkAndPrepareMerge(CI, Paired, InstsToMove)) {
2059       ++I;
2060       continue;
2061     }
2062 
2063     Modified = true;
2064 
2065     switch (CI.InstClass) {
2066     default:
2067       llvm_unreachable("unknown InstClass");
2068       break;
2069     case DS_READ: {
2070       MachineBasicBlock::iterator NewMI =
2071           mergeRead2Pair(CI, Paired, InstsToMove);
2072       CI.setMI(NewMI, *TII, *STM);
2073       break;
2074     }
2075     case DS_WRITE: {
2076       MachineBasicBlock::iterator NewMI =
2077           mergeWrite2Pair(CI, Paired, InstsToMove);
2078       CI.setMI(NewMI, *TII, *STM);
2079       break;
2080     }
2081     case S_BUFFER_LOAD_IMM: {
2082       MachineBasicBlock::iterator NewMI =
2083           mergeSBufferLoadImmPair(CI, Paired, InstsToMove);
2084       CI.setMI(NewMI, *TII, *STM);
2085       OptimizeListAgain |= (CI.Width + Paired.Width) < 16;
2086       break;
2087     }
2088     case BUFFER_LOAD: {
2089       MachineBasicBlock::iterator NewMI =
2090           mergeBufferLoadPair(CI, Paired, InstsToMove);
2091       CI.setMI(NewMI, *TII, *STM);
2092       OptimizeListAgain |= (CI.Width + Paired.Width) < 4;
2093       break;
2094     }
2095     case BUFFER_STORE: {
2096       MachineBasicBlock::iterator NewMI =
2097           mergeBufferStorePair(CI, Paired, InstsToMove);
2098       CI.setMI(NewMI, *TII, *STM);
2099       OptimizeListAgain |= (CI.Width + Paired.Width) < 4;
2100       break;
2101     }
2102     case MIMG: {
2103       MachineBasicBlock::iterator NewMI =
2104           mergeImagePair(CI, Paired, InstsToMove);
2105       CI.setMI(NewMI, *TII, *STM);
2106       OptimizeListAgain |= (CI.Width + Paired.Width) < 4;
2107       break;
2108     }
2109     case TBUFFER_LOAD: {
2110       MachineBasicBlock::iterator NewMI =
2111           mergeTBufferLoadPair(CI, Paired, InstsToMove);
2112       CI.setMI(NewMI, *TII, *STM);
2113       OptimizeListAgain |= (CI.Width + Paired.Width) < 4;
2114       break;
2115     }
2116     case TBUFFER_STORE: {
2117       MachineBasicBlock::iterator NewMI =
2118           mergeTBufferStorePair(CI, Paired, InstsToMove);
2119       CI.setMI(NewMI, *TII, *STM);
2120       OptimizeListAgain |= (CI.Width + Paired.Width) < 4;
2121       break;
2122     }
2123     }
2124     CI.Order = Paired.Order;
2125     if (I == Second)
2126       I = Next;
2127 
2128     MergeList.erase(Second);
2129   }
2130 
2131   return Modified;
2132 }
2133 
2134 bool SILoadStoreOptimizer::runOnMachineFunction(MachineFunction &MF) {
2135   if (skipFunction(MF.getFunction()))
2136     return false;
2137 
2138   STM = &MF.getSubtarget<GCNSubtarget>();
2139   if (!STM->loadStoreOptEnabled())
2140     return false;
2141 
2142   TII = STM->getInstrInfo();
2143   TRI = &TII->getRegisterInfo();
2144   STI = &MF.getSubtarget<MCSubtargetInfo>();
2145 
2146   MRI = &MF.getRegInfo();
2147   AA = &getAnalysis<AAResultsWrapperPass>().getAAResults();
2148 
2149   assert(MRI->isSSA() && "Must be run on SSA");
2150 
2151   LLVM_DEBUG(dbgs() << "Running SILoadStoreOptimizer\n");
2152 
2153   bool Modified = false;
2154 
2155 
2156   for (MachineBasicBlock &MBB : MF) {
2157     std::list<std::list<CombineInfo> > MergeableInsts;
2158     // First pass: Collect list of all instructions we know how to merge.
2159     Modified |= collectMergeableInsts(MBB, MergeableInsts);
2160     do {
2161       OptimizeAgain = false;
2162       Modified |= optimizeBlock(MergeableInsts);
2163     } while (OptimizeAgain);
2164   }
2165 
2166   return Modified;
2167 }
2168