15517e702SDimitry Andric //===- AMDGPUMachineCFGStructurizer.cpp - Machine code if conversion pass. ===//
25517e702SDimitry Andric //
35517e702SDimitry Andric //                     The LLVM Compiler Infrastructure
45517e702SDimitry Andric //
55517e702SDimitry Andric // This file is distributed under the University of Illinois Open Source
65517e702SDimitry Andric // License. See LICENSE.TXT for details.
75517e702SDimitry Andric //
85517e702SDimitry Andric //===----------------------------------------------------------------------===//
95517e702SDimitry Andric //
105517e702SDimitry Andric // This file implements the machine instruction level CFG structurizer pass.
115517e702SDimitry Andric //
125517e702SDimitry Andric //===----------------------------------------------------------------------===//
135517e702SDimitry Andric 
145517e702SDimitry Andric #include "AMDGPU.h"
155517e702SDimitry Andric #include "AMDGPUSubtarget.h"
16db17bf38SDimitry Andric #include "SIInstrInfo.h"
172cab237bSDimitry Andric #include "llvm/ADT/ArrayRef.h"
182cab237bSDimitry Andric #include "llvm/ADT/DenseMap.h"
195517e702SDimitry Andric #include "llvm/ADT/DenseSet.h"
205517e702SDimitry Andric #include "llvm/ADT/PostOrderIterator.h"
215517e702SDimitry Andric #include "llvm/ADT/SetVector.h"
225517e702SDimitry Andric #include "llvm/ADT/SmallPtrSet.h"
235517e702SDimitry Andric #include "llvm/ADT/SmallVector.h"
245517e702SDimitry Andric #include "llvm/CodeGen/MachineBasicBlock.h"
252cab237bSDimitry Andric #include "llvm/CodeGen/MachineFunction.h"
265517e702SDimitry Andric #include "llvm/CodeGen/MachineFunctionPass.h"
275517e702SDimitry Andric #include "llvm/CodeGen/MachineInstr.h"
285517e702SDimitry Andric #include "llvm/CodeGen/MachineInstrBuilder.h"
292cab237bSDimitry Andric #include "llvm/CodeGen/MachineOperand.h"
305517e702SDimitry Andric #include "llvm/CodeGen/MachineRegionInfo.h"
315517e702SDimitry Andric #include "llvm/CodeGen/MachineRegisterInfo.h"
322cab237bSDimitry Andric #include "llvm/CodeGen/TargetOpcodes.h"
332cab237bSDimitry Andric #include "llvm/CodeGen/TargetRegisterInfo.h"
34*4ba319b5SDimitry Andric #include "llvm/Config/llvm-config.h"
355517e702SDimitry Andric #include "llvm/IR/DebugLoc.h"
362cab237bSDimitry Andric #include "llvm/Pass.h"
372cab237bSDimitry Andric #include "llvm/Support/Compiler.h"
385517e702SDimitry Andric #include "llvm/Support/Debug.h"
392cab237bSDimitry Andric #include "llvm/Support/ErrorHandling.h"
402cab237bSDimitry Andric #include "llvm/Support/raw_ostream.h"
412cab237bSDimitry Andric #include <cassert>
425517e702SDimitry Andric #include <tuple>
432cab237bSDimitry Andric #include <utility>
442cab237bSDimitry Andric 
455517e702SDimitry Andric using namespace llvm;
465517e702SDimitry Andric 
475517e702SDimitry Andric #define DEBUG_TYPE "amdgpucfgstructurizer"
485517e702SDimitry Andric 
495517e702SDimitry Andric namespace {
502cab237bSDimitry Andric 
515517e702SDimitry Andric class PHILinearizeDestIterator;
525517e702SDimitry Andric 
535517e702SDimitry Andric class PHILinearize {
545517e702SDimitry Andric   friend class PHILinearizeDestIterator;
555517e702SDimitry Andric 
565517e702SDimitry Andric public:
572cab237bSDimitry Andric   using PHISourceT = std::pair<unsigned, MachineBasicBlock *>;
585517e702SDimitry Andric 
595517e702SDimitry Andric private:
602cab237bSDimitry Andric   using PHISourcesT = DenseSet<PHISourceT>;
612cab237bSDimitry Andric   using PHIInfoElementT = struct {
625517e702SDimitry Andric     unsigned DestReg;
635517e702SDimitry Andric     DebugLoc DL;
645517e702SDimitry Andric     PHISourcesT Sources;
652cab237bSDimitry Andric   };
662cab237bSDimitry Andric   using PHIInfoT = SmallPtrSet<PHIInfoElementT *, 2>;
675517e702SDimitry Andric   PHIInfoT PHIInfo;
685517e702SDimitry Andric 
695517e702SDimitry Andric   static unsigned phiInfoElementGetDest(PHIInfoElementT *Info);
705517e702SDimitry Andric   static void phiInfoElementSetDef(PHIInfoElementT *Info, unsigned NewDef);
715517e702SDimitry Andric   static PHISourcesT &phiInfoElementGetSources(PHIInfoElementT *Info);
725517e702SDimitry Andric   static void phiInfoElementAddSource(PHIInfoElementT *Info, unsigned SourceReg,
735517e702SDimitry Andric                                       MachineBasicBlock *SourceMBB);
745517e702SDimitry Andric   static void phiInfoElementRemoveSource(PHIInfoElementT *Info,
755517e702SDimitry Andric                                          unsigned SourceReg,
765517e702SDimitry Andric                                          MachineBasicBlock *SourceMBB);
775517e702SDimitry Andric   PHIInfoElementT *findPHIInfoElement(unsigned DestReg);
785517e702SDimitry Andric   PHIInfoElementT *findPHIInfoElementFromSource(unsigned SourceReg,
795517e702SDimitry Andric                                                 MachineBasicBlock *SourceMBB);
805517e702SDimitry Andric 
815517e702SDimitry Andric public:
825517e702SDimitry Andric   bool findSourcesFromMBB(MachineBasicBlock *SourceMBB,
835517e702SDimitry Andric                           SmallVector<unsigned, 4> &Sources);
845517e702SDimitry Andric   void addDest(unsigned DestReg, const DebugLoc &DL);
855517e702SDimitry Andric   void replaceDef(unsigned OldDestReg, unsigned NewDestReg);
865517e702SDimitry Andric   void deleteDef(unsigned DestReg);
875517e702SDimitry Andric   void addSource(unsigned DestReg, unsigned SourceReg,
885517e702SDimitry Andric                  MachineBasicBlock *SourceMBB);
895517e702SDimitry Andric   void removeSource(unsigned DestReg, unsigned SourceReg,
905517e702SDimitry Andric                     MachineBasicBlock *SourceMBB = nullptr);
915517e702SDimitry Andric   bool findDest(unsigned SourceReg, MachineBasicBlock *SourceMBB,
925517e702SDimitry Andric                 unsigned &DestReg);
935517e702SDimitry Andric   bool isSource(unsigned Reg, MachineBasicBlock *SourceMBB = nullptr);
945517e702SDimitry Andric   unsigned getNumSources(unsigned DestReg);
955517e702SDimitry Andric   void dump(MachineRegisterInfo *MRI);
965517e702SDimitry Andric   void clear();
975517e702SDimitry Andric 
982cab237bSDimitry Andric   using source_iterator = PHISourcesT::iterator;
992cab237bSDimitry Andric   using dest_iterator = PHILinearizeDestIterator;
1005517e702SDimitry Andric 
1015517e702SDimitry Andric   dest_iterator dests_begin();
1025517e702SDimitry Andric   dest_iterator dests_end();
1035517e702SDimitry Andric 
1045517e702SDimitry Andric   source_iterator sources_begin(unsigned Reg);
1055517e702SDimitry Andric   source_iterator sources_end(unsigned Reg);
1065517e702SDimitry Andric };
1075517e702SDimitry Andric 
1085517e702SDimitry Andric class PHILinearizeDestIterator {
1095517e702SDimitry Andric private:
1105517e702SDimitry Andric   PHILinearize::PHIInfoT::iterator Iter;
1115517e702SDimitry Andric 
1125517e702SDimitry Andric public:
PHILinearizeDestIterator(PHILinearize::PHIInfoT::iterator I)1132cab237bSDimitry Andric   PHILinearizeDestIterator(PHILinearize::PHIInfoT::iterator I) : Iter(I) {}
1142cab237bSDimitry Andric 
operator *()1155517e702SDimitry Andric   unsigned operator*() { return PHILinearize::phiInfoElementGetDest(*Iter); }
operator ++()1165517e702SDimitry Andric   PHILinearizeDestIterator &operator++() {
1175517e702SDimitry Andric     ++Iter;
1185517e702SDimitry Andric     return *this;
1195517e702SDimitry Andric   }
operator ==(const PHILinearizeDestIterator & I) const1205517e702SDimitry Andric   bool operator==(const PHILinearizeDestIterator &I) const {
1215517e702SDimitry Andric     return I.Iter == Iter;
1225517e702SDimitry Andric   }
operator !=(const PHILinearizeDestIterator & I) const1235517e702SDimitry Andric   bool operator!=(const PHILinearizeDestIterator &I) const {
1245517e702SDimitry Andric     return I.Iter != Iter;
1255517e702SDimitry Andric   }
1265517e702SDimitry Andric };
1275517e702SDimitry Andric 
1282cab237bSDimitry Andric } // end anonymous namespace
1292cab237bSDimitry Andric 
phiInfoElementGetDest(PHIInfoElementT * Info)1305517e702SDimitry Andric unsigned PHILinearize::phiInfoElementGetDest(PHIInfoElementT *Info) {
1315517e702SDimitry Andric   return Info->DestReg;
1325517e702SDimitry Andric }
1335517e702SDimitry Andric 
phiInfoElementSetDef(PHIInfoElementT * Info,unsigned NewDef)1345517e702SDimitry Andric void PHILinearize::phiInfoElementSetDef(PHIInfoElementT *Info,
1355517e702SDimitry Andric                                         unsigned NewDef) {
1365517e702SDimitry Andric   Info->DestReg = NewDef;
1375517e702SDimitry Andric }
1385517e702SDimitry Andric 
1395517e702SDimitry Andric PHILinearize::PHISourcesT &
phiInfoElementGetSources(PHIInfoElementT * Info)1405517e702SDimitry Andric PHILinearize::phiInfoElementGetSources(PHIInfoElementT *Info) {
1415517e702SDimitry Andric   return Info->Sources;
1425517e702SDimitry Andric }
1435517e702SDimitry Andric 
phiInfoElementAddSource(PHIInfoElementT * Info,unsigned SourceReg,MachineBasicBlock * SourceMBB)1445517e702SDimitry Andric void PHILinearize::phiInfoElementAddSource(PHIInfoElementT *Info,
1455517e702SDimitry Andric                                            unsigned SourceReg,
1465517e702SDimitry Andric                                            MachineBasicBlock *SourceMBB) {
1475517e702SDimitry Andric   // Assertion ensures we don't use the same SourceMBB for the
1485517e702SDimitry Andric   // sources, because we cannot have different registers with
1495517e702SDimitry Andric   // identical predecessors, but we can have the same register for
1505517e702SDimitry Andric   // multiple predecessors.
1515517e702SDimitry Andric #if !defined(NDEBUG)
1525517e702SDimitry Andric   for (auto SI : phiInfoElementGetSources(Info)) {
1535517e702SDimitry Andric     assert((SI.second != SourceMBB || SourceReg == SI.first));
1545517e702SDimitry Andric   }
1555517e702SDimitry Andric #endif
1565517e702SDimitry Andric 
1575517e702SDimitry Andric   phiInfoElementGetSources(Info).insert(PHISourceT(SourceReg, SourceMBB));
1585517e702SDimitry Andric }
1595517e702SDimitry Andric 
phiInfoElementRemoveSource(PHIInfoElementT * Info,unsigned SourceReg,MachineBasicBlock * SourceMBB)1605517e702SDimitry Andric void PHILinearize::phiInfoElementRemoveSource(PHIInfoElementT *Info,
1615517e702SDimitry Andric                                               unsigned SourceReg,
1625517e702SDimitry Andric                                               MachineBasicBlock *SourceMBB) {
1635517e702SDimitry Andric   auto &Sources = phiInfoElementGetSources(Info);
1645517e702SDimitry Andric   SmallVector<PHISourceT, 4> ElimiatedSources;
1655517e702SDimitry Andric   for (auto SI : Sources) {
1665517e702SDimitry Andric     if (SI.first == SourceReg &&
1675517e702SDimitry Andric         (SI.second == nullptr || SI.second == SourceMBB)) {
1685517e702SDimitry Andric       ElimiatedSources.push_back(PHISourceT(SI.first, SI.second));
1695517e702SDimitry Andric     }
1705517e702SDimitry Andric   }
1715517e702SDimitry Andric 
1725517e702SDimitry Andric   for (auto &Source : ElimiatedSources) {
1735517e702SDimitry Andric     Sources.erase(Source);
1745517e702SDimitry Andric   }
1755517e702SDimitry Andric }
1765517e702SDimitry Andric 
1775517e702SDimitry Andric PHILinearize::PHIInfoElementT *
findPHIInfoElement(unsigned DestReg)1785517e702SDimitry Andric PHILinearize::findPHIInfoElement(unsigned DestReg) {
1795517e702SDimitry Andric   for (auto I : PHIInfo) {
1805517e702SDimitry Andric     if (phiInfoElementGetDest(I) == DestReg) {
1815517e702SDimitry Andric       return I;
1825517e702SDimitry Andric     }
1835517e702SDimitry Andric   }
1845517e702SDimitry Andric   return nullptr;
1855517e702SDimitry Andric }
1865517e702SDimitry Andric 
1875517e702SDimitry Andric PHILinearize::PHIInfoElementT *
findPHIInfoElementFromSource(unsigned SourceReg,MachineBasicBlock * SourceMBB)1885517e702SDimitry Andric PHILinearize::findPHIInfoElementFromSource(unsigned SourceReg,
1895517e702SDimitry Andric                                            MachineBasicBlock *SourceMBB) {
1905517e702SDimitry Andric   for (auto I : PHIInfo) {
1915517e702SDimitry Andric     for (auto SI : phiInfoElementGetSources(I)) {
1925517e702SDimitry Andric       if (SI.first == SourceReg &&
1935517e702SDimitry Andric           (SI.second == nullptr || SI.second == SourceMBB)) {
1945517e702SDimitry Andric         return I;
1955517e702SDimitry Andric       }
1965517e702SDimitry Andric     }
1975517e702SDimitry Andric   }
1985517e702SDimitry Andric   return nullptr;
1995517e702SDimitry Andric }
2005517e702SDimitry Andric 
findSourcesFromMBB(MachineBasicBlock * SourceMBB,SmallVector<unsigned,4> & Sources)2015517e702SDimitry Andric bool PHILinearize::findSourcesFromMBB(MachineBasicBlock *SourceMBB,
2025517e702SDimitry Andric                                       SmallVector<unsigned, 4> &Sources) {
2035517e702SDimitry Andric   bool FoundSource = false;
2045517e702SDimitry Andric   for (auto I : PHIInfo) {
2055517e702SDimitry Andric     for (auto SI : phiInfoElementGetSources(I)) {
2065517e702SDimitry Andric       if (SI.second == SourceMBB) {
2075517e702SDimitry Andric         FoundSource = true;
2085517e702SDimitry Andric         Sources.push_back(SI.first);
2095517e702SDimitry Andric       }
2105517e702SDimitry Andric     }
2115517e702SDimitry Andric   }
2125517e702SDimitry Andric   return FoundSource;
2135517e702SDimitry Andric }
2145517e702SDimitry Andric 
addDest(unsigned DestReg,const DebugLoc & DL)2155517e702SDimitry Andric void PHILinearize::addDest(unsigned DestReg, const DebugLoc &DL) {
2165517e702SDimitry Andric   assert(findPHIInfoElement(DestReg) == nullptr && "Dest already exsists");
2175517e702SDimitry Andric   PHISourcesT EmptySet;
2185517e702SDimitry Andric   PHIInfoElementT *NewElement = new PHIInfoElementT();
2195517e702SDimitry Andric   NewElement->DestReg = DestReg;
2205517e702SDimitry Andric   NewElement->DL = DL;
2215517e702SDimitry Andric   NewElement->Sources = EmptySet;
2225517e702SDimitry Andric   PHIInfo.insert(NewElement);
2235517e702SDimitry Andric }
2245517e702SDimitry Andric 
replaceDef(unsigned OldDestReg,unsigned NewDestReg)2255517e702SDimitry Andric void PHILinearize::replaceDef(unsigned OldDestReg, unsigned NewDestReg) {
2265517e702SDimitry Andric   phiInfoElementSetDef(findPHIInfoElement(OldDestReg), NewDestReg);
2275517e702SDimitry Andric }
2285517e702SDimitry Andric 
deleteDef(unsigned DestReg)2295517e702SDimitry Andric void PHILinearize::deleteDef(unsigned DestReg) {
2305517e702SDimitry Andric   PHIInfoElementT *InfoElement = findPHIInfoElement(DestReg);
2315517e702SDimitry Andric   PHIInfo.erase(InfoElement);
2325517e702SDimitry Andric   delete InfoElement;
2335517e702SDimitry Andric }
2345517e702SDimitry Andric 
addSource(unsigned DestReg,unsigned SourceReg,MachineBasicBlock * SourceMBB)2355517e702SDimitry Andric void PHILinearize::addSource(unsigned DestReg, unsigned SourceReg,
2365517e702SDimitry Andric                              MachineBasicBlock *SourceMBB) {
2375517e702SDimitry Andric   phiInfoElementAddSource(findPHIInfoElement(DestReg), SourceReg, SourceMBB);
2385517e702SDimitry Andric }
2395517e702SDimitry Andric 
removeSource(unsigned DestReg,unsigned SourceReg,MachineBasicBlock * SourceMBB)2405517e702SDimitry Andric void PHILinearize::removeSource(unsigned DestReg, unsigned SourceReg,
2415517e702SDimitry Andric                                 MachineBasicBlock *SourceMBB) {
2425517e702SDimitry Andric   phiInfoElementRemoveSource(findPHIInfoElement(DestReg), SourceReg, SourceMBB);
2435517e702SDimitry Andric }
2445517e702SDimitry Andric 
findDest(unsigned SourceReg,MachineBasicBlock * SourceMBB,unsigned & DestReg)2455517e702SDimitry Andric bool PHILinearize::findDest(unsigned SourceReg, MachineBasicBlock *SourceMBB,
2465517e702SDimitry Andric                             unsigned &DestReg) {
2475517e702SDimitry Andric   PHIInfoElementT *InfoElement =
2485517e702SDimitry Andric       findPHIInfoElementFromSource(SourceReg, SourceMBB);
2495517e702SDimitry Andric   if (InfoElement != nullptr) {
2505517e702SDimitry Andric     DestReg = phiInfoElementGetDest(InfoElement);
2515517e702SDimitry Andric     return true;
2525517e702SDimitry Andric   }
2535517e702SDimitry Andric   return false;
2545517e702SDimitry Andric }
2555517e702SDimitry Andric 
isSource(unsigned Reg,MachineBasicBlock * SourceMBB)2565517e702SDimitry Andric bool PHILinearize::isSource(unsigned Reg, MachineBasicBlock *SourceMBB) {
2575517e702SDimitry Andric   unsigned DestReg;
2585517e702SDimitry Andric   return findDest(Reg, SourceMBB, DestReg);
2595517e702SDimitry Andric }
2605517e702SDimitry Andric 
getNumSources(unsigned DestReg)2615517e702SDimitry Andric unsigned PHILinearize::getNumSources(unsigned DestReg) {
2625517e702SDimitry Andric   return phiInfoElementGetSources(findPHIInfoElement(DestReg)).size();
2635517e702SDimitry Andric }
2645517e702SDimitry Andric 
2652cab237bSDimitry Andric #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
dump(MachineRegisterInfo * MRI)2662cab237bSDimitry Andric LLVM_DUMP_METHOD void PHILinearize::dump(MachineRegisterInfo *MRI) {
2675517e702SDimitry Andric   const TargetRegisterInfo *TRI = MRI->getTargetRegisterInfo();
2685517e702SDimitry Andric   dbgs() << "=PHIInfo Start=\n";
2695517e702SDimitry Andric   for (auto PII : this->PHIInfo) {
2705517e702SDimitry Andric     PHIInfoElementT &Element = *PII;
2712cab237bSDimitry Andric     dbgs() << "Dest: " << printReg(Element.DestReg, TRI)
2725517e702SDimitry Andric            << " Sources: {";
2735517e702SDimitry Andric     for (auto &SI : Element.Sources) {
2742cab237bSDimitry Andric       dbgs() << printReg(SI.first, TRI) << '(' << printMBBReference(*SI.second)
2752cab237bSDimitry Andric              << "),";
2765517e702SDimitry Andric     }
2775517e702SDimitry Andric     dbgs() << "}\n";
2785517e702SDimitry Andric   }
2795517e702SDimitry Andric   dbgs() << "=PHIInfo End=\n";
2805517e702SDimitry Andric }
2812cab237bSDimitry Andric #endif
2825517e702SDimitry Andric 
clear()2835517e702SDimitry Andric void PHILinearize::clear() { PHIInfo = PHIInfoT(); }
2845517e702SDimitry Andric 
dests_begin()2855517e702SDimitry Andric PHILinearize::dest_iterator PHILinearize::dests_begin() {
2865517e702SDimitry Andric   return PHILinearizeDestIterator(PHIInfo.begin());
2875517e702SDimitry Andric }
2885517e702SDimitry Andric 
dests_end()2895517e702SDimitry Andric PHILinearize::dest_iterator PHILinearize::dests_end() {
2905517e702SDimitry Andric   return PHILinearizeDestIterator(PHIInfo.end());
2915517e702SDimitry Andric }
2925517e702SDimitry Andric 
sources_begin(unsigned Reg)2935517e702SDimitry Andric PHILinearize::source_iterator PHILinearize::sources_begin(unsigned Reg) {
2945517e702SDimitry Andric   auto InfoElement = findPHIInfoElement(Reg);
2955517e702SDimitry Andric   return phiInfoElementGetSources(InfoElement).begin();
2965517e702SDimitry Andric }
2972cab237bSDimitry Andric 
sources_end(unsigned Reg)2985517e702SDimitry Andric PHILinearize::source_iterator PHILinearize::sources_end(unsigned Reg) {
2995517e702SDimitry Andric   auto InfoElement = findPHIInfoElement(Reg);
3005517e702SDimitry Andric   return phiInfoElementGetSources(InfoElement).end();
3015517e702SDimitry Andric }
3025517e702SDimitry Andric 
getPHINumInputs(MachineInstr & PHI)3035517e702SDimitry Andric static unsigned getPHINumInputs(MachineInstr &PHI) {
3045517e702SDimitry Andric   assert(PHI.isPHI());
3055517e702SDimitry Andric   return (PHI.getNumOperands() - 1) / 2;
3065517e702SDimitry Andric }
3075517e702SDimitry Andric 
getPHIPred(MachineInstr & PHI,unsigned Index)3085517e702SDimitry Andric static MachineBasicBlock *getPHIPred(MachineInstr &PHI, unsigned Index) {
3095517e702SDimitry Andric   assert(PHI.isPHI());
3105517e702SDimitry Andric   return PHI.getOperand(Index * 2 + 2).getMBB();
3115517e702SDimitry Andric }
3125517e702SDimitry Andric 
setPhiPred(MachineInstr & PHI,unsigned Index,MachineBasicBlock * NewPred)3135517e702SDimitry Andric static void setPhiPred(MachineInstr &PHI, unsigned Index,
3145517e702SDimitry Andric                        MachineBasicBlock *NewPred) {
3155517e702SDimitry Andric   PHI.getOperand(Index * 2 + 2).setMBB(NewPred);
3165517e702SDimitry Andric }
3175517e702SDimitry Andric 
getPHISourceReg(MachineInstr & PHI,unsigned Index)3185517e702SDimitry Andric static unsigned getPHISourceReg(MachineInstr &PHI, unsigned Index) {
3195517e702SDimitry Andric   assert(PHI.isPHI());
3205517e702SDimitry Andric   return PHI.getOperand(Index * 2 + 1).getReg();
3215517e702SDimitry Andric }
3225517e702SDimitry Andric 
getPHIDestReg(MachineInstr & PHI)3235517e702SDimitry Andric static unsigned getPHIDestReg(MachineInstr &PHI) {
3245517e702SDimitry Andric   assert(PHI.isPHI());
3255517e702SDimitry Andric   return PHI.getOperand(0).getReg();
3265517e702SDimitry Andric }
3275517e702SDimitry Andric 
3282cab237bSDimitry Andric namespace {
3292cab237bSDimitry Andric 
3302cab237bSDimitry Andric class RegionMRT;
3312cab237bSDimitry Andric class MBBMRT;
3322cab237bSDimitry Andric 
3335517e702SDimitry Andric class LinearizedRegion {
3345517e702SDimitry Andric protected:
3355517e702SDimitry Andric   MachineBasicBlock *Entry;
3365517e702SDimitry Andric   // The exit block is part of the region, and is the last
3375517e702SDimitry Andric   // merge block before exiting the region.
3385517e702SDimitry Andric   MachineBasicBlock *Exit;
3395517e702SDimitry Andric   DenseSet<unsigned> LiveOuts;
3405517e702SDimitry Andric   SmallPtrSet<MachineBasicBlock *, 1> MBBs;
3415517e702SDimitry Andric   bool HasLoop;
3425517e702SDimitry Andric   LinearizedRegion *Parent;
3435517e702SDimitry Andric   RegionMRT *RMRT;
3445517e702SDimitry Andric 
3455517e702SDimitry Andric   void storeLiveOutReg(MachineBasicBlock *MBB, unsigned Reg,
3465517e702SDimitry Andric                        MachineInstr *DefInstr, const MachineRegisterInfo *MRI,
3475517e702SDimitry Andric                        const TargetRegisterInfo *TRI, PHILinearize &PHIInfo);
3485517e702SDimitry Andric 
3495517e702SDimitry Andric   void storeLiveOutRegRegion(RegionMRT *Region, unsigned Reg,
3505517e702SDimitry Andric                              MachineInstr *DefInstr,
3515517e702SDimitry Andric                              const MachineRegisterInfo *MRI,
3525517e702SDimitry Andric                              const TargetRegisterInfo *TRI,
3535517e702SDimitry Andric                              PHILinearize &PHIInfo);
3545517e702SDimitry Andric 
3555517e702SDimitry Andric   void storeMBBLiveOuts(MachineBasicBlock *MBB, const MachineRegisterInfo *MRI,
3565517e702SDimitry Andric                         const TargetRegisterInfo *TRI, PHILinearize &PHIInfo,
3575517e702SDimitry Andric                         RegionMRT *TopRegion);
3585517e702SDimitry Andric 
3595517e702SDimitry Andric   void storeLiveOuts(MachineBasicBlock *MBB, const MachineRegisterInfo *MRI,
3605517e702SDimitry Andric                      const TargetRegisterInfo *TRI, PHILinearize &PHIInfo);
3615517e702SDimitry Andric 
3625517e702SDimitry Andric   void storeLiveOuts(RegionMRT *Region, const MachineRegisterInfo *MRI,
3635517e702SDimitry Andric                      const TargetRegisterInfo *TRI, PHILinearize &PHIInfo,
3645517e702SDimitry Andric                      RegionMRT *TopRegion = nullptr);
3655517e702SDimitry Andric 
3665517e702SDimitry Andric public:
3672cab237bSDimitry Andric   LinearizedRegion();
3682cab237bSDimitry Andric   LinearizedRegion(MachineBasicBlock *MBB, const MachineRegisterInfo *MRI,
3692cab237bSDimitry Andric                    const TargetRegisterInfo *TRI, PHILinearize &PHIInfo);
3702cab237bSDimitry Andric   ~LinearizedRegion() = default;
3712cab237bSDimitry Andric 
setRegionMRT(RegionMRT * Region)3725517e702SDimitry Andric   void setRegionMRT(RegionMRT *Region) { RMRT = Region; }
3735517e702SDimitry Andric 
getRegionMRT()3745517e702SDimitry Andric   RegionMRT *getRegionMRT() { return RMRT; }
3755517e702SDimitry Andric 
setParent(LinearizedRegion * P)3765517e702SDimitry Andric   void setParent(LinearizedRegion *P) { Parent = P; }
3775517e702SDimitry Andric 
getParent()3785517e702SDimitry Andric   LinearizedRegion *getParent() { return Parent; }
3795517e702SDimitry Andric 
3805517e702SDimitry Andric   void print(raw_ostream &OS, const TargetRegisterInfo *TRI = nullptr);
3815517e702SDimitry Andric 
3825517e702SDimitry Andric   void setBBSelectRegIn(unsigned Reg);
3835517e702SDimitry Andric 
3845517e702SDimitry Andric   unsigned getBBSelectRegIn();
3855517e702SDimitry Andric 
3865517e702SDimitry Andric   void setBBSelectRegOut(unsigned Reg, bool IsLiveOut);
3875517e702SDimitry Andric 
3885517e702SDimitry Andric   unsigned getBBSelectRegOut();
3895517e702SDimitry Andric 
3905517e702SDimitry Andric   void setHasLoop(bool Value);
3915517e702SDimitry Andric 
3925517e702SDimitry Andric   bool getHasLoop();
3935517e702SDimitry Andric 
3945517e702SDimitry Andric   void addLiveOut(unsigned VReg);
3955517e702SDimitry Andric 
3965517e702SDimitry Andric   void removeLiveOut(unsigned Reg);
3975517e702SDimitry Andric 
3985517e702SDimitry Andric   void replaceLiveOut(unsigned OldReg, unsigned NewReg);
3995517e702SDimitry Andric 
4005517e702SDimitry Andric   void replaceRegister(unsigned Register, unsigned NewRegister,
4015517e702SDimitry Andric                        MachineRegisterInfo *MRI, bool ReplaceInside,
4025517e702SDimitry Andric                        bool ReplaceOutside, bool IncludeLoopPHIs);
4035517e702SDimitry Andric 
4045517e702SDimitry Andric   void replaceRegisterInsideRegion(unsigned Register, unsigned NewRegister,
4055517e702SDimitry Andric                                    bool IncludeLoopPHIs,
4065517e702SDimitry Andric                                    MachineRegisterInfo *MRI);
4075517e702SDimitry Andric 
4085517e702SDimitry Andric   void replaceRegisterOutsideRegion(unsigned Register, unsigned NewRegister,
4095517e702SDimitry Andric                                     bool IncludeLoopPHIs,
4105517e702SDimitry Andric                                     MachineRegisterInfo *MRI);
4115517e702SDimitry Andric 
4125517e702SDimitry Andric   DenseSet<unsigned> *getLiveOuts();
4135517e702SDimitry Andric 
4145517e702SDimitry Andric   void setEntry(MachineBasicBlock *NewEntry);
4155517e702SDimitry Andric 
4165517e702SDimitry Andric   MachineBasicBlock *getEntry();
4175517e702SDimitry Andric 
4185517e702SDimitry Andric   void setExit(MachineBasicBlock *NewExit);
4195517e702SDimitry Andric 
4205517e702SDimitry Andric   MachineBasicBlock *getExit();
4215517e702SDimitry Andric 
4225517e702SDimitry Andric   void addMBB(MachineBasicBlock *MBB);
4235517e702SDimitry Andric 
4245517e702SDimitry Andric   void addMBBs(LinearizedRegion *InnerRegion);
4255517e702SDimitry Andric 
4265517e702SDimitry Andric   bool contains(MachineBasicBlock *MBB);
4275517e702SDimitry Andric 
4285517e702SDimitry Andric   bool isLiveOut(unsigned Reg);
4295517e702SDimitry Andric 
4305517e702SDimitry Andric   bool hasNoDef(unsigned Reg, MachineRegisterInfo *MRI);
4315517e702SDimitry Andric 
4325517e702SDimitry Andric   void removeFalseRegisterKills(MachineRegisterInfo *MRI);
4335517e702SDimitry Andric 
4345517e702SDimitry Andric   void initLiveOut(RegionMRT *Region, const MachineRegisterInfo *MRI,
4355517e702SDimitry Andric                    const TargetRegisterInfo *TRI, PHILinearize &PHIInfo);
4365517e702SDimitry Andric };
4375517e702SDimitry Andric 
4385517e702SDimitry Andric class MRT {
4395517e702SDimitry Andric protected:
4405517e702SDimitry Andric   RegionMRT *Parent;
4415517e702SDimitry Andric   unsigned BBSelectRegIn;
4425517e702SDimitry Andric   unsigned BBSelectRegOut;
4435517e702SDimitry Andric 
4445517e702SDimitry Andric public:
4452cab237bSDimitry Andric   virtual ~MRT() = default;
4462cab237bSDimitry Andric 
getBBSelectRegIn()4475517e702SDimitry Andric   unsigned getBBSelectRegIn() { return BBSelectRegIn; }
4485517e702SDimitry Andric 
getBBSelectRegOut()4495517e702SDimitry Andric   unsigned getBBSelectRegOut() { return BBSelectRegOut; }
4505517e702SDimitry Andric 
setBBSelectRegIn(unsigned Reg)4515517e702SDimitry Andric   void setBBSelectRegIn(unsigned Reg) { BBSelectRegIn = Reg; }
4525517e702SDimitry Andric 
setBBSelectRegOut(unsigned Reg)4535517e702SDimitry Andric   void setBBSelectRegOut(unsigned Reg) { BBSelectRegOut = Reg; }
4545517e702SDimitry Andric 
getRegionMRT()4555517e702SDimitry Andric   virtual RegionMRT *getRegionMRT() { return nullptr; }
4565517e702SDimitry Andric 
getMBBMRT()4575517e702SDimitry Andric   virtual MBBMRT *getMBBMRT() { return nullptr; }
4585517e702SDimitry Andric 
isRegion()4595517e702SDimitry Andric   bool isRegion() { return getRegionMRT() != nullptr; }
4605517e702SDimitry Andric 
isMBB()4615517e702SDimitry Andric   bool isMBB() { return getMBBMRT() != nullptr; }
4625517e702SDimitry Andric 
isRoot()4635517e702SDimitry Andric   bool isRoot() { return Parent == nullptr; }
4645517e702SDimitry Andric 
setParent(RegionMRT * Region)4655517e702SDimitry Andric   void setParent(RegionMRT *Region) { Parent = Region; }
4665517e702SDimitry Andric 
getParent()4675517e702SDimitry Andric   RegionMRT *getParent() { return Parent; }
4685517e702SDimitry Andric 
4695517e702SDimitry Andric   static MachineBasicBlock *
4705517e702SDimitry Andric   initializeMRT(MachineFunction &MF, const MachineRegionInfo *RegionInfo,
4715517e702SDimitry Andric                 DenseMap<MachineRegion *, RegionMRT *> &RegionMap);
4725517e702SDimitry Andric 
4735517e702SDimitry Andric   static RegionMRT *buildMRT(MachineFunction &MF,
4745517e702SDimitry Andric                              const MachineRegionInfo *RegionInfo,
4755517e702SDimitry Andric                              const SIInstrInfo *TII,
4765517e702SDimitry Andric                              MachineRegisterInfo *MRI);
4775517e702SDimitry Andric 
4785517e702SDimitry Andric   virtual void dump(const TargetRegisterInfo *TRI, int depth = 0) = 0;
4795517e702SDimitry Andric 
dumpDepth(int depth)4805517e702SDimitry Andric   void dumpDepth(int depth) {
4815517e702SDimitry Andric     for (int i = depth; i > 0; --i) {
4825517e702SDimitry Andric       dbgs() << "  ";
4835517e702SDimitry Andric     }
4845517e702SDimitry Andric   }
4855517e702SDimitry Andric };
4865517e702SDimitry Andric 
4875517e702SDimitry Andric class MBBMRT : public MRT {
4885517e702SDimitry Andric   MachineBasicBlock *MBB;
4895517e702SDimitry Andric 
4905517e702SDimitry Andric public:
MBBMRT(MachineBasicBlock * BB)4915517e702SDimitry Andric   MBBMRT(MachineBasicBlock *BB) : MBB(BB) {
4925517e702SDimitry Andric     setParent(nullptr);
4935517e702SDimitry Andric     setBBSelectRegOut(0);
4945517e702SDimitry Andric     setBBSelectRegIn(0);
4955517e702SDimitry Andric   }
4962cab237bSDimitry Andric 
getMBBMRT()4972cab237bSDimitry Andric   MBBMRT *getMBBMRT() override { return this; }
4982cab237bSDimitry Andric 
getMBB()4992cab237bSDimitry Andric   MachineBasicBlock *getMBB() { return MBB; }
5002cab237bSDimitry Andric 
dump(const TargetRegisterInfo * TRI,int depth=0)5012cab237bSDimitry Andric   void dump(const TargetRegisterInfo *TRI, int depth = 0) override {
5022cab237bSDimitry Andric     dumpDepth(depth);
5032cab237bSDimitry Andric     dbgs() << "MBB: " << getMBB()->getNumber();
5042cab237bSDimitry Andric     dbgs() << " In: " << printReg(getBBSelectRegIn(), TRI);
5052cab237bSDimitry Andric     dbgs() << ", Out: " << printReg(getBBSelectRegOut(), TRI) << "\n";
5062cab237bSDimitry Andric   }
5075517e702SDimitry Andric };
5085517e702SDimitry Andric 
5095517e702SDimitry Andric class RegionMRT : public MRT {
5105517e702SDimitry Andric protected:
5115517e702SDimitry Andric   MachineRegion *Region;
5122cab237bSDimitry Andric   LinearizedRegion *LRegion = nullptr;
5132cab237bSDimitry Andric   MachineBasicBlock *Succ = nullptr;
5145517e702SDimitry Andric   SetVector<MRT *> Children;
5155517e702SDimitry Andric 
5165517e702SDimitry Andric public:
RegionMRT(MachineRegion * MachineRegion)5172cab237bSDimitry Andric   RegionMRT(MachineRegion *MachineRegion) : Region(MachineRegion) {
5182cab237bSDimitry Andric     setParent(nullptr);
5192cab237bSDimitry Andric     setBBSelectRegOut(0);
5202cab237bSDimitry Andric     setBBSelectRegIn(0);
5212cab237bSDimitry Andric   }
5222cab237bSDimitry Andric 
~RegionMRT()5232cab237bSDimitry Andric   ~RegionMRT() override {
5242cab237bSDimitry Andric     if (LRegion) {
5252cab237bSDimitry Andric       delete LRegion;
5262cab237bSDimitry Andric     }
5272cab237bSDimitry Andric 
5282cab237bSDimitry Andric     for (auto CI : Children) {
5292cab237bSDimitry Andric       delete &(*CI);
5302cab237bSDimitry Andric     }
5312cab237bSDimitry Andric   }
5322cab237bSDimitry Andric 
getRegionMRT()5332cab237bSDimitry Andric   RegionMRT *getRegionMRT() override { return this; }
5345517e702SDimitry Andric 
setLinearizedRegion(LinearizedRegion * LinearizeRegion)5355517e702SDimitry Andric   void setLinearizedRegion(LinearizedRegion *LinearizeRegion) {
5365517e702SDimitry Andric     LRegion = LinearizeRegion;
5375517e702SDimitry Andric   }
5385517e702SDimitry Andric 
getLinearizedRegion()5395517e702SDimitry Andric   LinearizedRegion *getLinearizedRegion() { return LRegion; }
5405517e702SDimitry Andric 
getMachineRegion()5415517e702SDimitry Andric   MachineRegion *getMachineRegion() { return Region; }
5425517e702SDimitry Andric 
getInnerOutputRegister()5435517e702SDimitry Andric   unsigned getInnerOutputRegister() {
5445517e702SDimitry Andric     return (*(Children.begin()))->getBBSelectRegOut();
5455517e702SDimitry Andric   }
5465517e702SDimitry Andric 
addChild(MRT * Tree)5475517e702SDimitry Andric   void addChild(MRT *Tree) { Children.insert(Tree); }
5485517e702SDimitry Andric 
getChildren()5495517e702SDimitry Andric   SetVector<MRT *> *getChildren() { return &Children; }
5505517e702SDimitry Andric 
dump(const TargetRegisterInfo * TRI,int depth=0)5512cab237bSDimitry Andric   void dump(const TargetRegisterInfo *TRI, int depth = 0) override {
5525517e702SDimitry Andric     dumpDepth(depth);
5535517e702SDimitry Andric     dbgs() << "Region: " << (void *)Region;
5542cab237bSDimitry Andric     dbgs() << " In: " << printReg(getBBSelectRegIn(), TRI);
5552cab237bSDimitry Andric     dbgs() << ", Out: " << printReg(getBBSelectRegOut(), TRI) << "\n";
5565517e702SDimitry Andric 
5575517e702SDimitry Andric     dumpDepth(depth);
5585517e702SDimitry Andric     if (getSucc())
5595517e702SDimitry Andric       dbgs() << "Succ: " << getSucc()->getNumber() << "\n";
5605517e702SDimitry Andric     else
5615517e702SDimitry Andric       dbgs() << "Succ: none \n";
5625517e702SDimitry Andric     for (auto MRTI : Children) {
5635517e702SDimitry Andric       MRTI->dump(TRI, depth + 1);
5645517e702SDimitry Andric     }
5655517e702SDimitry Andric   }
5665517e702SDimitry Andric 
getEntryTree()5675517e702SDimitry Andric   MRT *getEntryTree() { return Children.back(); }
5685517e702SDimitry Andric 
getExitTree()5695517e702SDimitry Andric   MRT *getExitTree() { return Children.front(); }
5705517e702SDimitry Andric 
getEntry()5715517e702SDimitry Andric   MachineBasicBlock *getEntry() {
5725517e702SDimitry Andric     MRT *Tree = Children.back();
5735517e702SDimitry Andric     return (Tree->isRegion()) ? Tree->getRegionMRT()->getEntry()
5745517e702SDimitry Andric                               : Tree->getMBBMRT()->getMBB();
5755517e702SDimitry Andric   }
5765517e702SDimitry Andric 
getExit()5775517e702SDimitry Andric   MachineBasicBlock *getExit() {
5785517e702SDimitry Andric     MRT *Tree = Children.front();
5795517e702SDimitry Andric     return (Tree->isRegion()) ? Tree->getRegionMRT()->getExit()
5805517e702SDimitry Andric                               : Tree->getMBBMRT()->getMBB();
5815517e702SDimitry Andric   }
5825517e702SDimitry Andric 
setSucc(MachineBasicBlock * MBB)5835517e702SDimitry Andric   void setSucc(MachineBasicBlock *MBB) { Succ = MBB; }
5845517e702SDimitry Andric 
getSucc()5855517e702SDimitry Andric   MachineBasicBlock *getSucc() { return Succ; }
5865517e702SDimitry Andric 
contains(MachineBasicBlock * MBB)5875517e702SDimitry Andric   bool contains(MachineBasicBlock *MBB) {
5885517e702SDimitry Andric     for (auto CI : Children) {
5895517e702SDimitry Andric       if (CI->isMBB()) {
5905517e702SDimitry Andric         if (MBB == CI->getMBBMRT()->getMBB()) {
5915517e702SDimitry Andric           return true;
5925517e702SDimitry Andric         }
5935517e702SDimitry Andric       } else {
5945517e702SDimitry Andric         if (CI->getRegionMRT()->contains(MBB)) {
5955517e702SDimitry Andric           return true;
5965517e702SDimitry Andric         } else if (CI->getRegionMRT()->getLinearizedRegion() != nullptr &&
5975517e702SDimitry Andric                    CI->getRegionMRT()->getLinearizedRegion()->contains(MBB)) {
5985517e702SDimitry Andric           return true;
5995517e702SDimitry Andric         }
6005517e702SDimitry Andric       }
6015517e702SDimitry Andric     }
6025517e702SDimitry Andric     return false;
6035517e702SDimitry Andric   }
6045517e702SDimitry Andric 
replaceLiveOutReg(unsigned Register,unsigned NewRegister)6055517e702SDimitry Andric   void replaceLiveOutReg(unsigned Register, unsigned NewRegister) {
6065517e702SDimitry Andric     LinearizedRegion *LRegion = getLinearizedRegion();
6075517e702SDimitry Andric     LRegion->replaceLiveOut(Register, NewRegister);
6085517e702SDimitry Andric     for (auto &CI : Children) {
6095517e702SDimitry Andric       if (CI->isRegion()) {
6105517e702SDimitry Andric         CI->getRegionMRT()->replaceLiveOutReg(Register, NewRegister);
6115517e702SDimitry Andric       }
6125517e702SDimitry Andric     }
6135517e702SDimitry Andric   }
6145517e702SDimitry Andric };
6155517e702SDimitry Andric 
6162cab237bSDimitry Andric } // end anonymous namespace
6172cab237bSDimitry Andric 
createBBSelectReg(const SIInstrInfo * TII,MachineRegisterInfo * MRI)6185517e702SDimitry Andric static unsigned createBBSelectReg(const SIInstrInfo *TII,
6195517e702SDimitry Andric                                   MachineRegisterInfo *MRI) {
6205517e702SDimitry Andric   return MRI->createVirtualRegister(TII->getPreferredSelectRegClass(32));
6215517e702SDimitry Andric }
6225517e702SDimitry Andric 
6235517e702SDimitry Andric MachineBasicBlock *
initializeMRT(MachineFunction & MF,const MachineRegionInfo * RegionInfo,DenseMap<MachineRegion *,RegionMRT * > & RegionMap)6245517e702SDimitry Andric MRT::initializeMRT(MachineFunction &MF, const MachineRegionInfo *RegionInfo,
6255517e702SDimitry Andric                    DenseMap<MachineRegion *, RegionMRT *> &RegionMap) {
6265517e702SDimitry Andric   for (auto &MFI : MF) {
6275517e702SDimitry Andric     MachineBasicBlock *ExitMBB = &MFI;
6285517e702SDimitry Andric     if (ExitMBB->succ_size() == 0) {
6295517e702SDimitry Andric       return ExitMBB;
6305517e702SDimitry Andric     }
6315517e702SDimitry Andric   }
6325517e702SDimitry Andric   llvm_unreachable("CFG has no exit block");
6335517e702SDimitry Andric   return nullptr;
6345517e702SDimitry Andric }
6355517e702SDimitry Andric 
buildMRT(MachineFunction & MF,const MachineRegionInfo * RegionInfo,const SIInstrInfo * TII,MachineRegisterInfo * MRI)6365517e702SDimitry Andric RegionMRT *MRT::buildMRT(MachineFunction &MF,
6375517e702SDimitry Andric                          const MachineRegionInfo *RegionInfo,
6385517e702SDimitry Andric                          const SIInstrInfo *TII, MachineRegisterInfo *MRI) {
6395517e702SDimitry Andric   SmallPtrSet<MachineRegion *, 4> PlacedRegions;
6405517e702SDimitry Andric   DenseMap<MachineRegion *, RegionMRT *> RegionMap;
6415517e702SDimitry Andric   MachineRegion *TopLevelRegion = RegionInfo->getTopLevelRegion();
6425517e702SDimitry Andric   RegionMRT *Result = new RegionMRT(TopLevelRegion);
6435517e702SDimitry Andric   RegionMap[TopLevelRegion] = Result;
6445517e702SDimitry Andric 
6455517e702SDimitry Andric   // Insert the exit block first, we need it to be the merge node
6465517e702SDimitry Andric   // for the top level region.
6475517e702SDimitry Andric   MachineBasicBlock *Exit = initializeMRT(MF, RegionInfo, RegionMap);
6485517e702SDimitry Andric 
6495517e702SDimitry Andric   unsigned BBSelectRegIn = createBBSelectReg(TII, MRI);
6505517e702SDimitry Andric   MBBMRT *ExitMRT = new MBBMRT(Exit);
6515517e702SDimitry Andric   RegionMap[RegionInfo->getRegionFor(Exit)]->addChild(ExitMRT);
6525517e702SDimitry Andric   ExitMRT->setBBSelectRegIn(BBSelectRegIn);
6535517e702SDimitry Andric 
6545517e702SDimitry Andric   for (auto MBBI : post_order(&(MF.front()))) {
6555517e702SDimitry Andric     MachineBasicBlock *MBB = &(*MBBI);
6565517e702SDimitry Andric 
6575517e702SDimitry Andric     // Skip Exit since we already added it
6585517e702SDimitry Andric     if (MBB == Exit) {
6595517e702SDimitry Andric       continue;
6605517e702SDimitry Andric     }
6615517e702SDimitry Andric 
662*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Visiting " << printMBBReference(*MBB) << "\n");
6635517e702SDimitry Andric     MBBMRT *NewMBB = new MBBMRT(MBB);
6645517e702SDimitry Andric     MachineRegion *Region = RegionInfo->getRegionFor(MBB);
6655517e702SDimitry Andric 
6665517e702SDimitry Andric     // Ensure we have the MRT region
6675517e702SDimitry Andric     if (RegionMap.count(Region) == 0) {
6685517e702SDimitry Andric       RegionMRT *NewMRTRegion = new RegionMRT(Region);
6695517e702SDimitry Andric       RegionMap[Region] = NewMRTRegion;
6705517e702SDimitry Andric 
6715517e702SDimitry Andric       // Ensure all parents are in the RegionMap
6725517e702SDimitry Andric       MachineRegion *Parent = Region->getParent();
6735517e702SDimitry Andric       while (RegionMap.count(Parent) == 0) {
6745517e702SDimitry Andric         RegionMRT *NewMRTParent = new RegionMRT(Parent);
6755517e702SDimitry Andric         NewMRTParent->addChild(NewMRTRegion);
6765517e702SDimitry Andric         NewMRTRegion->setParent(NewMRTParent);
6775517e702SDimitry Andric         RegionMap[Parent] = NewMRTParent;
6785517e702SDimitry Andric         NewMRTRegion = NewMRTParent;
6795517e702SDimitry Andric         Parent = Parent->getParent();
6805517e702SDimitry Andric       }
6815517e702SDimitry Andric       RegionMap[Parent]->addChild(NewMRTRegion);
6825517e702SDimitry Andric       NewMRTRegion->setParent(RegionMap[Parent]);
6835517e702SDimitry Andric     }
6845517e702SDimitry Andric 
6855517e702SDimitry Andric     // Add MBB to Region MRT
6865517e702SDimitry Andric     RegionMap[Region]->addChild(NewMBB);
6875517e702SDimitry Andric     NewMBB->setParent(RegionMap[Region]);
6885517e702SDimitry Andric     RegionMap[Region]->setSucc(Region->getExit());
6895517e702SDimitry Andric   }
6905517e702SDimitry Andric   return Result;
6915517e702SDimitry Andric }
6925517e702SDimitry Andric 
storeLiveOutReg(MachineBasicBlock * MBB,unsigned Reg,MachineInstr * DefInstr,const MachineRegisterInfo * MRI,const TargetRegisterInfo * TRI,PHILinearize & PHIInfo)6935517e702SDimitry Andric void LinearizedRegion::storeLiveOutReg(MachineBasicBlock *MBB, unsigned Reg,
6945517e702SDimitry Andric                                        MachineInstr *DefInstr,
6955517e702SDimitry Andric                                        const MachineRegisterInfo *MRI,
6965517e702SDimitry Andric                                        const TargetRegisterInfo *TRI,
6975517e702SDimitry Andric                                        PHILinearize &PHIInfo) {
6985517e702SDimitry Andric   if (TRI->isVirtualRegister(Reg)) {
699*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Considering Register: " << printReg(Reg, TRI)
700*4ba319b5SDimitry Andric                       << "\n");
7015517e702SDimitry Andric     // If this is a source register to a PHI we are chaining, it
7025517e702SDimitry Andric     // must be live out.
7035517e702SDimitry Andric     if (PHIInfo.isSource(Reg)) {
704*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Add LiveOut (PHI): " << printReg(Reg, TRI) << "\n");
7055517e702SDimitry Andric       addLiveOut(Reg);
7065517e702SDimitry Andric     } else {
7075517e702SDimitry Andric       // If this is live out of the MBB
7085517e702SDimitry Andric       for (auto &UI : MRI->use_operands(Reg)) {
7095517e702SDimitry Andric         if (UI.getParent()->getParent() != MBB) {
710*4ba319b5SDimitry Andric           LLVM_DEBUG(dbgs() << "Add LiveOut (MBB " << printMBBReference(*MBB)
7112cab237bSDimitry Andric                             << "): " << printReg(Reg, TRI) << "\n");
7125517e702SDimitry Andric           addLiveOut(Reg);
7135517e702SDimitry Andric         } else {
7145517e702SDimitry Andric           // If the use is in the same MBB we have to make sure
7155517e702SDimitry Andric           // it is after the def, otherwise it is live out in a loop
7165517e702SDimitry Andric           MachineInstr *UseInstr = UI.getParent();
7175517e702SDimitry Andric           for (MachineBasicBlock::instr_iterator
7185517e702SDimitry Andric                    MII = UseInstr->getIterator(),
7195517e702SDimitry Andric                    MIE = UseInstr->getParent()->instr_end();
7205517e702SDimitry Andric                MII != MIE; ++MII) {
7215517e702SDimitry Andric             if ((&(*MII)) == DefInstr) {
722*4ba319b5SDimitry Andric               LLVM_DEBUG(dbgs() << "Add LiveOut (Loop): " << printReg(Reg, TRI)
7235517e702SDimitry Andric                                 << "\n");
7245517e702SDimitry Andric               addLiveOut(Reg);
7255517e702SDimitry Andric             }
7265517e702SDimitry Andric           }
7275517e702SDimitry Andric         }
7285517e702SDimitry Andric       }
7295517e702SDimitry Andric     }
7305517e702SDimitry Andric   }
7315517e702SDimitry Andric }
7325517e702SDimitry Andric 
storeLiveOutRegRegion(RegionMRT * Region,unsigned Reg,MachineInstr * DefInstr,const MachineRegisterInfo * MRI,const TargetRegisterInfo * TRI,PHILinearize & PHIInfo)7335517e702SDimitry Andric void LinearizedRegion::storeLiveOutRegRegion(RegionMRT *Region, unsigned Reg,
7345517e702SDimitry Andric                                              MachineInstr *DefInstr,
7355517e702SDimitry Andric                                              const MachineRegisterInfo *MRI,
7365517e702SDimitry Andric                                              const TargetRegisterInfo *TRI,
7375517e702SDimitry Andric                                              PHILinearize &PHIInfo) {
7385517e702SDimitry Andric   if (TRI->isVirtualRegister(Reg)) {
739*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Considering Register: " << printReg(Reg, TRI)
740*4ba319b5SDimitry Andric                       << "\n");
7415517e702SDimitry Andric     for (auto &UI : MRI->use_operands(Reg)) {
7425517e702SDimitry Andric       if (!Region->contains(UI.getParent()->getParent())) {
743*4ba319b5SDimitry Andric         LLVM_DEBUG(dbgs() << "Add LiveOut (Region " << (void *)Region
7442cab237bSDimitry Andric                           << "): " << printReg(Reg, TRI) << "\n");
7455517e702SDimitry Andric         addLiveOut(Reg);
7465517e702SDimitry Andric       }
7475517e702SDimitry Andric     }
7485517e702SDimitry Andric   }
7495517e702SDimitry Andric }
7505517e702SDimitry Andric 
storeLiveOuts(MachineBasicBlock * MBB,const MachineRegisterInfo * MRI,const TargetRegisterInfo * TRI,PHILinearize & PHIInfo)7515517e702SDimitry Andric void LinearizedRegion::storeLiveOuts(MachineBasicBlock *MBB,
7525517e702SDimitry Andric                                      const MachineRegisterInfo *MRI,
7535517e702SDimitry Andric                                      const TargetRegisterInfo *TRI,
7545517e702SDimitry Andric                                      PHILinearize &PHIInfo) {
755*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "-Store Live Outs Begin (" << printMBBReference(*MBB)
7562cab237bSDimitry Andric                     << ")-\n");
7575517e702SDimitry Andric   for (auto &II : *MBB) {
7585517e702SDimitry Andric     for (auto &RI : II.defs()) {
7595517e702SDimitry Andric       storeLiveOutReg(MBB, RI.getReg(), RI.getParent(), MRI, TRI, PHIInfo);
7605517e702SDimitry Andric     }
7615517e702SDimitry Andric     for (auto &IRI : II.implicit_operands()) {
7625517e702SDimitry Andric       if (IRI.isDef()) {
7635517e702SDimitry Andric         storeLiveOutReg(MBB, IRI.getReg(), IRI.getParent(), MRI, TRI, PHIInfo);
7645517e702SDimitry Andric       }
7655517e702SDimitry Andric     }
7665517e702SDimitry Andric   }
7675517e702SDimitry Andric 
7685517e702SDimitry Andric   // If we have a successor with a PHI, source coming from this MBB we have to
7695517e702SDimitry Andric   // add the register as live out
7705517e702SDimitry Andric   for (MachineBasicBlock::succ_iterator SI = MBB->succ_begin(),
7715517e702SDimitry Andric                                         E = MBB->succ_end();
7725517e702SDimitry Andric        SI != E; ++SI) {
7735517e702SDimitry Andric     for (auto &II : *(*SI)) {
7745517e702SDimitry Andric       if (II.isPHI()) {
7755517e702SDimitry Andric         MachineInstr &PHI = II;
7765517e702SDimitry Andric         int numPreds = getPHINumInputs(PHI);
7775517e702SDimitry Andric         for (int i = 0; i < numPreds; ++i) {
7785517e702SDimitry Andric           if (getPHIPred(PHI, i) == MBB) {
7795517e702SDimitry Andric             unsigned PHIReg = getPHISourceReg(PHI, i);
780*4ba319b5SDimitry Andric             LLVM_DEBUG(dbgs()
781*4ba319b5SDimitry Andric                        << "Add LiveOut (PhiSource " << printMBBReference(*MBB)
7822cab237bSDimitry Andric                        << " -> " << printMBBReference(*(*SI))
7832cab237bSDimitry Andric                        << "): " << printReg(PHIReg, TRI) << "\n");
7845517e702SDimitry Andric             addLiveOut(PHIReg);
7855517e702SDimitry Andric           }
7865517e702SDimitry Andric         }
7875517e702SDimitry Andric       }
7885517e702SDimitry Andric     }
7895517e702SDimitry Andric   }
7905517e702SDimitry Andric 
791*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "-Store Live Outs Endn-\n");
7925517e702SDimitry Andric }
7935517e702SDimitry Andric 
storeMBBLiveOuts(MachineBasicBlock * MBB,const MachineRegisterInfo * MRI,const TargetRegisterInfo * TRI,PHILinearize & PHIInfo,RegionMRT * TopRegion)7945517e702SDimitry Andric void LinearizedRegion::storeMBBLiveOuts(MachineBasicBlock *MBB,
7955517e702SDimitry Andric                                         const MachineRegisterInfo *MRI,
7965517e702SDimitry Andric                                         const TargetRegisterInfo *TRI,
7975517e702SDimitry Andric                                         PHILinearize &PHIInfo,
7985517e702SDimitry Andric                                         RegionMRT *TopRegion) {
7995517e702SDimitry Andric   for (auto &II : *MBB) {
8005517e702SDimitry Andric     for (auto &RI : II.defs()) {
8015517e702SDimitry Andric       storeLiveOutRegRegion(TopRegion, RI.getReg(), RI.getParent(), MRI, TRI,
8025517e702SDimitry Andric                             PHIInfo);
8035517e702SDimitry Andric     }
8045517e702SDimitry Andric     for (auto &IRI : II.implicit_operands()) {
8055517e702SDimitry Andric       if (IRI.isDef()) {
8065517e702SDimitry Andric         storeLiveOutRegRegion(TopRegion, IRI.getReg(), IRI.getParent(), MRI,
8075517e702SDimitry Andric                               TRI, PHIInfo);
8085517e702SDimitry Andric       }
8095517e702SDimitry Andric     }
8105517e702SDimitry Andric   }
8115517e702SDimitry Andric }
8125517e702SDimitry Andric 
storeLiveOuts(RegionMRT * Region,const MachineRegisterInfo * MRI,const TargetRegisterInfo * TRI,PHILinearize & PHIInfo,RegionMRT * CurrentTopRegion)8135517e702SDimitry Andric void LinearizedRegion::storeLiveOuts(RegionMRT *Region,
8145517e702SDimitry Andric                                      const MachineRegisterInfo *MRI,
8155517e702SDimitry Andric                                      const TargetRegisterInfo *TRI,
8165517e702SDimitry Andric                                      PHILinearize &PHIInfo,
8175517e702SDimitry Andric                                      RegionMRT *CurrentTopRegion) {
8185517e702SDimitry Andric   MachineBasicBlock *Exit = Region->getSucc();
8195517e702SDimitry Andric 
8205517e702SDimitry Andric   RegionMRT *TopRegion =
8215517e702SDimitry Andric       CurrentTopRegion == nullptr ? Region : CurrentTopRegion;
8225517e702SDimitry Andric 
8235517e702SDimitry Andric   // Check if exit is end of function, if so, no live outs.
8245517e702SDimitry Andric   if (Exit == nullptr)
8255517e702SDimitry Andric     return;
8265517e702SDimitry Andric 
8275517e702SDimitry Andric   auto Children = Region->getChildren();
8285517e702SDimitry Andric   for (auto CI : *Children) {
8295517e702SDimitry Andric     if (CI->isMBB()) {
8305517e702SDimitry Andric       auto MBB = CI->getMBBMRT()->getMBB();
8315517e702SDimitry Andric       storeMBBLiveOuts(MBB, MRI, TRI, PHIInfo, TopRegion);
8325517e702SDimitry Andric     } else {
8335517e702SDimitry Andric       LinearizedRegion *SubRegion = CI->getRegionMRT()->getLinearizedRegion();
8345517e702SDimitry Andric       // We should be limited to only store registers that are live out from the
8355517e702SDimitry Andric       // lineaized region
8365517e702SDimitry Andric       for (auto MBBI : SubRegion->MBBs) {
8375517e702SDimitry Andric         storeMBBLiveOuts(MBBI, MRI, TRI, PHIInfo, TopRegion);
8385517e702SDimitry Andric       }
8395517e702SDimitry Andric     }
8405517e702SDimitry Andric   }
8415517e702SDimitry Andric 
8425517e702SDimitry Andric   if (CurrentTopRegion == nullptr) {
8435517e702SDimitry Andric     auto Succ = Region->getSucc();
8445517e702SDimitry Andric     for (auto &II : *Succ) {
8455517e702SDimitry Andric       if (II.isPHI()) {
8465517e702SDimitry Andric         MachineInstr &PHI = II;
8475517e702SDimitry Andric         int numPreds = getPHINumInputs(PHI);
8485517e702SDimitry Andric         for (int i = 0; i < numPreds; ++i) {
8495517e702SDimitry Andric           if (Region->contains(getPHIPred(PHI, i))) {
8505517e702SDimitry Andric             unsigned PHIReg = getPHISourceReg(PHI, i);
851*4ba319b5SDimitry Andric             LLVM_DEBUG(dbgs() << "Add Region LiveOut (" << (void *)Region
8522cab237bSDimitry Andric                               << "): " << printReg(PHIReg, TRI) << "\n");
8535517e702SDimitry Andric             addLiveOut(PHIReg);
8545517e702SDimitry Andric           }
8555517e702SDimitry Andric         }
8565517e702SDimitry Andric       }
8575517e702SDimitry Andric     }
8585517e702SDimitry Andric   }
8595517e702SDimitry Andric }
8605517e702SDimitry Andric 
8612cab237bSDimitry Andric #ifndef NDEBUG
print(raw_ostream & OS,const TargetRegisterInfo * TRI)8625517e702SDimitry Andric void LinearizedRegion::print(raw_ostream &OS, const TargetRegisterInfo *TRI) {
8635517e702SDimitry Andric   OS << "Linearized Region {";
8645517e702SDimitry Andric   bool IsFirst = true;
8655517e702SDimitry Andric   for (const auto &MBB : MBBs) {
8665517e702SDimitry Andric     if (IsFirst) {
8675517e702SDimitry Andric       IsFirst = false;
8685517e702SDimitry Andric     } else {
8695517e702SDimitry Andric       OS << " ,";
8705517e702SDimitry Andric     }
8715517e702SDimitry Andric     OS << MBB->getNumber();
8725517e702SDimitry Andric   }
8735517e702SDimitry Andric   OS << "} (" << Entry->getNumber() << ", "
8745517e702SDimitry Andric      << (Exit == nullptr ? -1 : Exit->getNumber())
8752cab237bSDimitry Andric      << "): In:" << printReg(getBBSelectRegIn(), TRI)
8762cab237bSDimitry Andric      << " Out:" << printReg(getBBSelectRegOut(), TRI) << " {";
8775517e702SDimitry Andric   for (auto &LI : LiveOuts) {
8782cab237bSDimitry Andric     OS << printReg(LI, TRI) << " ";
8795517e702SDimitry Andric   }
8805517e702SDimitry Andric   OS << "} \n";
8815517e702SDimitry Andric }
8822cab237bSDimitry Andric #endif
8835517e702SDimitry Andric 
getBBSelectRegIn()8845517e702SDimitry Andric unsigned LinearizedRegion::getBBSelectRegIn() {
8855517e702SDimitry Andric   return getRegionMRT()->getBBSelectRegIn();
8865517e702SDimitry Andric }
8875517e702SDimitry Andric 
getBBSelectRegOut()8885517e702SDimitry Andric unsigned LinearizedRegion::getBBSelectRegOut() {
8895517e702SDimitry Andric   return getRegionMRT()->getBBSelectRegOut();
8905517e702SDimitry Andric }
8915517e702SDimitry Andric 
setHasLoop(bool Value)8925517e702SDimitry Andric void LinearizedRegion::setHasLoop(bool Value) { HasLoop = Value; }
8935517e702SDimitry Andric 
getHasLoop()8945517e702SDimitry Andric bool LinearizedRegion::getHasLoop() { return HasLoop; }
8955517e702SDimitry Andric 
addLiveOut(unsigned VReg)8965517e702SDimitry Andric void LinearizedRegion::addLiveOut(unsigned VReg) { LiveOuts.insert(VReg); }
8975517e702SDimitry Andric 
removeLiveOut(unsigned Reg)8985517e702SDimitry Andric void LinearizedRegion::removeLiveOut(unsigned Reg) {
8995517e702SDimitry Andric   if (isLiveOut(Reg))
9005517e702SDimitry Andric     LiveOuts.erase(Reg);
9015517e702SDimitry Andric }
9025517e702SDimitry Andric 
replaceLiveOut(unsigned OldReg,unsigned NewReg)9035517e702SDimitry Andric void LinearizedRegion::replaceLiveOut(unsigned OldReg, unsigned NewReg) {
9045517e702SDimitry Andric   if (isLiveOut(OldReg)) {
9055517e702SDimitry Andric     removeLiveOut(OldReg);
9065517e702SDimitry Andric     addLiveOut(NewReg);
9075517e702SDimitry Andric   }
9085517e702SDimitry Andric }
9095517e702SDimitry Andric 
replaceRegister(unsigned Register,unsigned NewRegister,MachineRegisterInfo * MRI,bool ReplaceInside,bool ReplaceOutside,bool IncludeLoopPHI)9105517e702SDimitry Andric void LinearizedRegion::replaceRegister(unsigned Register, unsigned NewRegister,
9115517e702SDimitry Andric                                        MachineRegisterInfo *MRI,
9125517e702SDimitry Andric                                        bool ReplaceInside, bool ReplaceOutside,
9135517e702SDimitry Andric                                        bool IncludeLoopPHI) {
9145517e702SDimitry Andric   assert(Register != NewRegister && "Cannot replace a reg with itself");
9155517e702SDimitry Andric 
916*4ba319b5SDimitry Andric   LLVM_DEBUG(
917*4ba319b5SDimitry Andric       dbgs() << "Pepareing to replace register (region): "
9182cab237bSDimitry Andric              << printReg(Register, MRI->getTargetRegisterInfo()) << " with "
9192cab237bSDimitry Andric              << printReg(NewRegister, MRI->getTargetRegisterInfo()) << "\n");
9205517e702SDimitry Andric 
9215517e702SDimitry Andric   // If we are replacing outside, we also need to update the LiveOuts
9225517e702SDimitry Andric   if (ReplaceOutside &&
9235517e702SDimitry Andric       (isLiveOut(Register) || this->getParent()->isLiveOut(Register))) {
9245517e702SDimitry Andric     LinearizedRegion *Current = this;
9255517e702SDimitry Andric     while (Current != nullptr && Current->getEntry() != nullptr) {
926*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Region before register replace\n");
927*4ba319b5SDimitry Andric       LLVM_DEBUG(Current->print(dbgs(), MRI->getTargetRegisterInfo()));
9285517e702SDimitry Andric       Current->replaceLiveOut(Register, NewRegister);
929*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Region after register replace\n");
930*4ba319b5SDimitry Andric       LLVM_DEBUG(Current->print(dbgs(), MRI->getTargetRegisterInfo()));
9315517e702SDimitry Andric       Current = Current->getParent();
9325517e702SDimitry Andric     }
9335517e702SDimitry Andric   }
9345517e702SDimitry Andric 
9355517e702SDimitry Andric   for (MachineRegisterInfo::reg_iterator I = MRI->reg_begin(Register),
9365517e702SDimitry Andric                                          E = MRI->reg_end();
9375517e702SDimitry Andric        I != E;) {
9385517e702SDimitry Andric     MachineOperand &O = *I;
9395517e702SDimitry Andric     ++I;
9405517e702SDimitry Andric 
9415517e702SDimitry Andric     // We don't rewrite defs.
9425517e702SDimitry Andric     if (O.isDef())
9435517e702SDimitry Andric       continue;
9445517e702SDimitry Andric 
9455517e702SDimitry Andric     bool IsInside = contains(O.getParent()->getParent());
9465517e702SDimitry Andric     bool IsLoopPHI = IsInside && (O.getParent()->isPHI() &&
9475517e702SDimitry Andric                                   O.getParent()->getParent() == getEntry());
9485517e702SDimitry Andric     bool ShouldReplace = (IsInside && ReplaceInside) ||
9495517e702SDimitry Andric                          (!IsInside && ReplaceOutside) ||
9505517e702SDimitry Andric                          (IncludeLoopPHI && IsLoopPHI);
9515517e702SDimitry Andric     if (ShouldReplace) {
9525517e702SDimitry Andric 
9535517e702SDimitry Andric       if (TargetRegisterInfo::isPhysicalRegister(NewRegister)) {
954*4ba319b5SDimitry Andric         LLVM_DEBUG(dbgs() << "Trying to substitute physical register: "
9552cab237bSDimitry Andric                           << printReg(NewRegister, MRI->getTargetRegisterInfo())
9565517e702SDimitry Andric                           << "\n");
9575517e702SDimitry Andric         llvm_unreachable("Cannot substitute physical registers");
9585517e702SDimitry Andric       } else {
959*4ba319b5SDimitry Andric         LLVM_DEBUG(dbgs() << "Replacing register (region): "
9602cab237bSDimitry Andric                           << printReg(Register, MRI->getTargetRegisterInfo())
9615517e702SDimitry Andric                           << " with "
9622cab237bSDimitry Andric                           << printReg(NewRegister, MRI->getTargetRegisterInfo())
9635517e702SDimitry Andric                           << "\n");
9645517e702SDimitry Andric         O.setReg(NewRegister);
9655517e702SDimitry Andric       }
9665517e702SDimitry Andric     }
9675517e702SDimitry Andric   }
9685517e702SDimitry Andric }
9695517e702SDimitry Andric 
replaceRegisterInsideRegion(unsigned Register,unsigned NewRegister,bool IncludeLoopPHIs,MachineRegisterInfo * MRI)9705517e702SDimitry Andric void LinearizedRegion::replaceRegisterInsideRegion(unsigned Register,
9715517e702SDimitry Andric                                                    unsigned NewRegister,
9725517e702SDimitry Andric                                                    bool IncludeLoopPHIs,
9735517e702SDimitry Andric                                                    MachineRegisterInfo *MRI) {
9745517e702SDimitry Andric   replaceRegister(Register, NewRegister, MRI, true, false, IncludeLoopPHIs);
9755517e702SDimitry Andric }
9765517e702SDimitry Andric 
replaceRegisterOutsideRegion(unsigned Register,unsigned NewRegister,bool IncludeLoopPHIs,MachineRegisterInfo * MRI)9775517e702SDimitry Andric void LinearizedRegion::replaceRegisterOutsideRegion(unsigned Register,
9785517e702SDimitry Andric                                                     unsigned NewRegister,
9795517e702SDimitry Andric                                                     bool IncludeLoopPHIs,
9805517e702SDimitry Andric                                                     MachineRegisterInfo *MRI) {
9815517e702SDimitry Andric   replaceRegister(Register, NewRegister, MRI, false, true, IncludeLoopPHIs);
9825517e702SDimitry Andric }
9835517e702SDimitry Andric 
getLiveOuts()9845517e702SDimitry Andric DenseSet<unsigned> *LinearizedRegion::getLiveOuts() { return &LiveOuts; }
9855517e702SDimitry Andric 
setEntry(MachineBasicBlock * NewEntry)9865517e702SDimitry Andric void LinearizedRegion::setEntry(MachineBasicBlock *NewEntry) {
9875517e702SDimitry Andric   Entry = NewEntry;
9885517e702SDimitry Andric }
9895517e702SDimitry Andric 
getEntry()9905517e702SDimitry Andric MachineBasicBlock *LinearizedRegion::getEntry() { return Entry; }
9915517e702SDimitry Andric 
setExit(MachineBasicBlock * NewExit)9925517e702SDimitry Andric void LinearizedRegion::setExit(MachineBasicBlock *NewExit) { Exit = NewExit; }
9935517e702SDimitry Andric 
getExit()9945517e702SDimitry Andric MachineBasicBlock *LinearizedRegion::getExit() { return Exit; }
9955517e702SDimitry Andric 
addMBB(MachineBasicBlock * MBB)9965517e702SDimitry Andric void LinearizedRegion::addMBB(MachineBasicBlock *MBB) { MBBs.insert(MBB); }
9975517e702SDimitry Andric 
addMBBs(LinearizedRegion * InnerRegion)9985517e702SDimitry Andric void LinearizedRegion::addMBBs(LinearizedRegion *InnerRegion) {
9995517e702SDimitry Andric   for (const auto &MBB : InnerRegion->MBBs) {
10005517e702SDimitry Andric     addMBB(MBB);
10015517e702SDimitry Andric   }
10025517e702SDimitry Andric }
10035517e702SDimitry Andric 
contains(MachineBasicBlock * MBB)10045517e702SDimitry Andric bool LinearizedRegion::contains(MachineBasicBlock *MBB) {
10055517e702SDimitry Andric   return MBBs.count(MBB) == 1;
10065517e702SDimitry Andric }
10075517e702SDimitry Andric 
isLiveOut(unsigned Reg)10085517e702SDimitry Andric bool LinearizedRegion::isLiveOut(unsigned Reg) {
10095517e702SDimitry Andric   return LiveOuts.count(Reg) == 1;
10105517e702SDimitry Andric }
10115517e702SDimitry Andric 
hasNoDef(unsigned Reg,MachineRegisterInfo * MRI)10125517e702SDimitry Andric bool LinearizedRegion::hasNoDef(unsigned Reg, MachineRegisterInfo *MRI) {
10135517e702SDimitry Andric   return MRI->def_begin(Reg) == MRI->def_end();
10145517e702SDimitry Andric }
10155517e702SDimitry Andric 
10165517e702SDimitry Andric // After the code has been structurized, what was flagged as kills
10175517e702SDimitry Andric // before are no longer register kills.
removeFalseRegisterKills(MachineRegisterInfo * MRI)10185517e702SDimitry Andric void LinearizedRegion::removeFalseRegisterKills(MachineRegisterInfo *MRI) {
10195517e702SDimitry Andric   const TargetRegisterInfo *TRI = MRI->getTargetRegisterInfo();
10205517e702SDimitry Andric   for (auto MBBI : MBBs) {
10215517e702SDimitry Andric     MachineBasicBlock *MBB = MBBI;
10225517e702SDimitry Andric     for (auto &II : *MBB) {
10235517e702SDimitry Andric       for (auto &RI : II.uses()) {
10245517e702SDimitry Andric         if (RI.isReg()) {
10255517e702SDimitry Andric           unsigned Reg = RI.getReg();
10265517e702SDimitry Andric           if (TRI->isVirtualRegister(Reg)) {
10275517e702SDimitry Andric             if (hasNoDef(Reg, MRI))
10285517e702SDimitry Andric               continue;
10295517e702SDimitry Andric             if (!MRI->hasOneDef(Reg)) {
1030*4ba319b5SDimitry Andric               LLVM_DEBUG(this->getEntry()->getParent()->dump());
1031*4ba319b5SDimitry Andric               LLVM_DEBUG(dbgs() << printReg(Reg, TRI) << "\n");
10325517e702SDimitry Andric             }
10335517e702SDimitry Andric 
10345517e702SDimitry Andric             if (MRI->def_begin(Reg) == MRI->def_end()) {
1035*4ba319b5SDimitry Andric               LLVM_DEBUG(dbgs() << "Register "
10362cab237bSDimitry Andric                                 << printReg(Reg, MRI->getTargetRegisterInfo())
10375517e702SDimitry Andric                                 << " has NO defs\n");
10385517e702SDimitry Andric             } else if (!MRI->hasOneDef(Reg)) {
1039*4ba319b5SDimitry Andric               LLVM_DEBUG(dbgs() << "Register "
10402cab237bSDimitry Andric                                 << printReg(Reg, MRI->getTargetRegisterInfo())
10415517e702SDimitry Andric                                 << " has multiple defs\n");
10425517e702SDimitry Andric             }
10435517e702SDimitry Andric 
10445517e702SDimitry Andric             assert(MRI->hasOneDef(Reg) && "Register has multiple definitions");
10455517e702SDimitry Andric             MachineOperand *Def = &(*(MRI->def_begin(Reg)));
10465517e702SDimitry Andric             MachineOperand *UseOperand = &(RI);
10475517e702SDimitry Andric             bool UseIsOutsideDefMBB = Def->getParent()->getParent() != MBB;
10485517e702SDimitry Andric             if (UseIsOutsideDefMBB && UseOperand->isKill()) {
1049*4ba319b5SDimitry Andric               LLVM_DEBUG(dbgs() << "Removing kill flag on register: "
10502cab237bSDimitry Andric                                 << printReg(Reg, TRI) << "\n");
10515517e702SDimitry Andric               UseOperand->setIsKill(false);
10525517e702SDimitry Andric             }
10535517e702SDimitry Andric           }
10545517e702SDimitry Andric         }
10555517e702SDimitry Andric       }
10565517e702SDimitry Andric     }
10575517e702SDimitry Andric   }
10585517e702SDimitry Andric }
10595517e702SDimitry Andric 
initLiveOut(RegionMRT * Region,const MachineRegisterInfo * MRI,const TargetRegisterInfo * TRI,PHILinearize & PHIInfo)10605517e702SDimitry Andric void LinearizedRegion::initLiveOut(RegionMRT *Region,
10615517e702SDimitry Andric                                    const MachineRegisterInfo *MRI,
10625517e702SDimitry Andric                                    const TargetRegisterInfo *TRI,
10635517e702SDimitry Andric                                    PHILinearize &PHIInfo) {
10645517e702SDimitry Andric   storeLiveOuts(Region, MRI, TRI, PHIInfo);
10655517e702SDimitry Andric }
10665517e702SDimitry Andric 
LinearizedRegion(MachineBasicBlock * MBB,const MachineRegisterInfo * MRI,const TargetRegisterInfo * TRI,PHILinearize & PHIInfo)10675517e702SDimitry Andric LinearizedRegion::LinearizedRegion(MachineBasicBlock *MBB,
10685517e702SDimitry Andric                                    const MachineRegisterInfo *MRI,
10695517e702SDimitry Andric                                    const TargetRegisterInfo *TRI,
10705517e702SDimitry Andric                                    PHILinearize &PHIInfo) {
10715517e702SDimitry Andric   setEntry(MBB);
10725517e702SDimitry Andric   setExit(MBB);
10735517e702SDimitry Andric   storeLiveOuts(MBB, MRI, TRI, PHIInfo);
10745517e702SDimitry Andric   MBBs.insert(MBB);
10755517e702SDimitry Andric   Parent = nullptr;
10765517e702SDimitry Andric }
10775517e702SDimitry Andric 
LinearizedRegion()10785517e702SDimitry Andric LinearizedRegion::LinearizedRegion() {
10795517e702SDimitry Andric   setEntry(nullptr);
10805517e702SDimitry Andric   setExit(nullptr);
10815517e702SDimitry Andric   Parent = nullptr;
10825517e702SDimitry Andric }
10835517e702SDimitry Andric 
10842cab237bSDimitry Andric namespace {
10855517e702SDimitry Andric 
10865517e702SDimitry Andric class AMDGPUMachineCFGStructurizer : public MachineFunctionPass {
10875517e702SDimitry Andric private:
10885517e702SDimitry Andric   const MachineRegionInfo *Regions;
10895517e702SDimitry Andric   const SIInstrInfo *TII;
10905517e702SDimitry Andric   const TargetRegisterInfo *TRI;
10915517e702SDimitry Andric   MachineRegisterInfo *MRI;
10925517e702SDimitry Andric   unsigned BBSelectRegister;
10935517e702SDimitry Andric   PHILinearize PHIInfo;
10945517e702SDimitry Andric   DenseMap<MachineBasicBlock *, MachineBasicBlock *> FallthroughMap;
10952cab237bSDimitry Andric   RegionMRT *RMRT;
10965517e702SDimitry Andric 
10975517e702SDimitry Andric   void getPHIRegionIndices(RegionMRT *Region, MachineInstr &PHI,
10985517e702SDimitry Andric                            SmallVector<unsigned, 2> &RegionIndices);
10995517e702SDimitry Andric   void getPHIRegionIndices(LinearizedRegion *Region, MachineInstr &PHI,
11005517e702SDimitry Andric                            SmallVector<unsigned, 2> &RegionIndices);
11015517e702SDimitry Andric   void getPHINonRegionIndices(LinearizedRegion *Region, MachineInstr &PHI,
11025517e702SDimitry Andric                               SmallVector<unsigned, 2> &PHINonRegionIndices);
11035517e702SDimitry Andric 
11045517e702SDimitry Andric   void storePHILinearizationInfoDest(
11055517e702SDimitry Andric       unsigned LDestReg, MachineInstr &PHI,
11065517e702SDimitry Andric       SmallVector<unsigned, 2> *RegionIndices = nullptr);
11075517e702SDimitry Andric 
11085517e702SDimitry Andric   unsigned storePHILinearizationInfo(MachineInstr &PHI,
11095517e702SDimitry Andric                                      SmallVector<unsigned, 2> *RegionIndices);
11105517e702SDimitry Andric 
11115517e702SDimitry Andric   void extractKilledPHIs(MachineBasicBlock *MBB);
11125517e702SDimitry Andric 
11135517e702SDimitry Andric   bool shrinkPHI(MachineInstr &PHI, SmallVector<unsigned, 2> &PHIIndices,
11145517e702SDimitry Andric                  unsigned *ReplaceReg);
11155517e702SDimitry Andric 
11165517e702SDimitry Andric   bool shrinkPHI(MachineInstr &PHI, unsigned CombinedSourceReg,
11175517e702SDimitry Andric                  MachineBasicBlock *SourceMBB,
11185517e702SDimitry Andric                  SmallVector<unsigned, 2> &PHIIndices, unsigned *ReplaceReg);
11195517e702SDimitry Andric 
11205517e702SDimitry Andric   void replacePHI(MachineInstr &PHI, unsigned CombinedSourceReg,
11215517e702SDimitry Andric                   MachineBasicBlock *LastMerge,
11225517e702SDimitry Andric                   SmallVector<unsigned, 2> &PHIRegionIndices);
11235517e702SDimitry Andric   void replaceEntryPHI(MachineInstr &PHI, unsigned CombinedSourceReg,
11245517e702SDimitry Andric                        MachineBasicBlock *IfMBB,
11255517e702SDimitry Andric                        SmallVector<unsigned, 2> &PHIRegionIndices);
11265517e702SDimitry Andric   void replaceLiveOutRegs(MachineInstr &PHI,
11275517e702SDimitry Andric                           SmallVector<unsigned, 2> &PHIRegionIndices,
11285517e702SDimitry Andric                           unsigned CombinedSourceReg,
11295517e702SDimitry Andric                           LinearizedRegion *LRegion);
11305517e702SDimitry Andric   void rewriteRegionExitPHI(RegionMRT *Region, MachineBasicBlock *LastMerge,
11315517e702SDimitry Andric                             MachineInstr &PHI, LinearizedRegion *LRegion);
11325517e702SDimitry Andric 
11335517e702SDimitry Andric   void rewriteRegionExitPHIs(RegionMRT *Region, MachineBasicBlock *LastMerge,
11345517e702SDimitry Andric                              LinearizedRegion *LRegion);
11355517e702SDimitry Andric   void rewriteRegionEntryPHI(LinearizedRegion *Region, MachineBasicBlock *IfMBB,
11365517e702SDimitry Andric                              MachineInstr &PHI);
11375517e702SDimitry Andric   void rewriteRegionEntryPHIs(LinearizedRegion *Region,
11385517e702SDimitry Andric                               MachineBasicBlock *IfMBB);
11395517e702SDimitry Andric 
11405517e702SDimitry Andric   bool regionIsSimpleIf(RegionMRT *Region);
11415517e702SDimitry Andric 
11425517e702SDimitry Andric   void transformSimpleIfRegion(RegionMRT *Region);
11435517e702SDimitry Andric 
11445517e702SDimitry Andric   void eliminateDeadBranchOperands(MachineBasicBlock::instr_iterator &II);
11455517e702SDimitry Andric 
11465517e702SDimitry Andric   void insertUnconditionalBranch(MachineBasicBlock *MBB,
11475517e702SDimitry Andric                                  MachineBasicBlock *Dest,
11485517e702SDimitry Andric                                  const DebugLoc &DL = DebugLoc());
11495517e702SDimitry Andric 
11505517e702SDimitry Andric   MachineBasicBlock *createLinearizedExitBlock(RegionMRT *Region);
11515517e702SDimitry Andric 
11525517e702SDimitry Andric   void insertMergePHI(MachineBasicBlock *IfBB, MachineBasicBlock *CodeBB,
11535517e702SDimitry Andric                       MachineBasicBlock *MergeBB, unsigned DestRegister,
11545517e702SDimitry Andric                       unsigned IfSourceRegister, unsigned CodeSourceRegister,
11555517e702SDimitry Andric                       bool IsUndefIfSource = false);
11565517e702SDimitry Andric 
11575517e702SDimitry Andric   MachineBasicBlock *createIfBlock(MachineBasicBlock *MergeBB,
11585517e702SDimitry Andric                                    MachineBasicBlock *CodeBBStart,
11595517e702SDimitry Andric                                    MachineBasicBlock *CodeBBEnd,
11605517e702SDimitry Andric                                    MachineBasicBlock *SelectBB, unsigned IfReg,
11615517e702SDimitry Andric                                    bool InheritPreds);
11625517e702SDimitry Andric 
11635517e702SDimitry Andric   void prunePHIInfo(MachineBasicBlock *MBB);
11645517e702SDimitry Andric   void createEntryPHI(LinearizedRegion *CurrentRegion, unsigned DestReg);
11655517e702SDimitry Andric 
11665517e702SDimitry Andric   void createEntryPHIs(LinearizedRegion *CurrentRegion);
11675517e702SDimitry Andric   void resolvePHIInfos(MachineBasicBlock *FunctionEntry);
11685517e702SDimitry Andric 
11695517e702SDimitry Andric   void replaceRegisterWith(unsigned Register, unsigned NewRegister);
11705517e702SDimitry Andric 
11715517e702SDimitry Andric   MachineBasicBlock *createIfRegion(MachineBasicBlock *MergeBB,
11725517e702SDimitry Andric                                     MachineBasicBlock *CodeBB,
11735517e702SDimitry Andric                                     LinearizedRegion *LRegion,
11745517e702SDimitry Andric                                     unsigned BBSelectRegIn,
11755517e702SDimitry Andric                                     unsigned BBSelectRegOut);
11765517e702SDimitry Andric 
11775517e702SDimitry Andric   MachineBasicBlock *
11785517e702SDimitry Andric   createIfRegion(MachineBasicBlock *MergeMBB, LinearizedRegion *InnerRegion,
11795517e702SDimitry Andric                  LinearizedRegion *CurrentRegion, MachineBasicBlock *SelectBB,
11805517e702SDimitry Andric                  unsigned BBSelectRegIn, unsigned BBSelectRegOut);
11815517e702SDimitry Andric   void ensureCondIsNotKilled(SmallVector<MachineOperand, 1> Cond);
11825517e702SDimitry Andric 
11835517e702SDimitry Andric   void rewriteCodeBBTerminator(MachineBasicBlock *CodeBB,
11845517e702SDimitry Andric                                MachineBasicBlock *MergeBB,
11855517e702SDimitry Andric                                unsigned BBSelectReg);
11865517e702SDimitry Andric 
11875517e702SDimitry Andric   MachineInstr *getDefInstr(unsigned Reg);
11885517e702SDimitry Andric   void insertChainedPHI(MachineBasicBlock *IfBB, MachineBasicBlock *CodeBB,
11895517e702SDimitry Andric                         MachineBasicBlock *MergeBB,
11905517e702SDimitry Andric                         LinearizedRegion *InnerRegion, unsigned DestReg,
11915517e702SDimitry Andric                         unsigned SourceReg);
11925517e702SDimitry Andric   bool containsDef(MachineBasicBlock *MBB, LinearizedRegion *InnerRegion,
11935517e702SDimitry Andric                    unsigned Register);
11945517e702SDimitry Andric   void rewriteLiveOutRegs(MachineBasicBlock *IfBB, MachineBasicBlock *CodeBB,
11955517e702SDimitry Andric                           MachineBasicBlock *MergeBB,
11965517e702SDimitry Andric                           LinearizedRegion *InnerRegion,
11975517e702SDimitry Andric                           LinearizedRegion *LRegion);
11985517e702SDimitry Andric 
11995517e702SDimitry Andric   void splitLoopPHI(MachineInstr &PHI, MachineBasicBlock *Entry,
12005517e702SDimitry Andric                     MachineBasicBlock *EntrySucc, LinearizedRegion *LRegion);
12015517e702SDimitry Andric   void splitLoopPHIs(MachineBasicBlock *Entry, MachineBasicBlock *EntrySucc,
12025517e702SDimitry Andric                      LinearizedRegion *LRegion);
12035517e702SDimitry Andric 
12045517e702SDimitry Andric   MachineBasicBlock *splitExit(LinearizedRegion *LRegion);
12055517e702SDimitry Andric 
12065517e702SDimitry Andric   MachineBasicBlock *splitEntry(LinearizedRegion *LRegion);
12075517e702SDimitry Andric 
12085517e702SDimitry Andric   LinearizedRegion *initLinearizedRegion(RegionMRT *Region);
12095517e702SDimitry Andric 
12105517e702SDimitry Andric   bool structurizeComplexRegion(RegionMRT *Region);
12115517e702SDimitry Andric 
12125517e702SDimitry Andric   bool structurizeRegion(RegionMRT *Region);
12135517e702SDimitry Andric 
12145517e702SDimitry Andric   bool structurizeRegions(RegionMRT *Region, bool isTopRegion);
12155517e702SDimitry Andric 
12165517e702SDimitry Andric public:
12175517e702SDimitry Andric   static char ID;
12185517e702SDimitry Andric 
AMDGPUMachineCFGStructurizer()12192cab237bSDimitry Andric   AMDGPUMachineCFGStructurizer() : MachineFunctionPass(ID) {
12202cab237bSDimitry Andric     initializeAMDGPUMachineCFGStructurizerPass(*PassRegistry::getPassRegistry());
12212cab237bSDimitry Andric   }
12222cab237bSDimitry Andric 
getAnalysisUsage(AnalysisUsage & AU) const12235517e702SDimitry Andric   void getAnalysisUsage(AnalysisUsage &AU) const override {
12245517e702SDimitry Andric     AU.addRequired<MachineRegionInfoPass>();
12255517e702SDimitry Andric     MachineFunctionPass::getAnalysisUsage(AU);
12265517e702SDimitry Andric   }
12275517e702SDimitry Andric 
12285517e702SDimitry Andric   void initFallthroughMap(MachineFunction &MF);
12295517e702SDimitry Andric 
12305517e702SDimitry Andric   void createLinearizedRegion(RegionMRT *Region, unsigned SelectOut);
12315517e702SDimitry Andric 
12325517e702SDimitry Andric   unsigned initializeSelectRegisters(MRT *MRT, unsigned ExistingExitReg,
12335517e702SDimitry Andric                                      MachineRegisterInfo *MRI,
12345517e702SDimitry Andric                                      const SIInstrInfo *TII);
12355517e702SDimitry Andric 
setRegionMRT(RegionMRT * RegionTree)12365517e702SDimitry Andric   void setRegionMRT(RegionMRT *RegionTree) { RMRT = RegionTree; }
12375517e702SDimitry Andric 
getRegionMRT()12385517e702SDimitry Andric   RegionMRT *getRegionMRT() { return RMRT; }
12395517e702SDimitry Andric 
12405517e702SDimitry Andric   bool runOnMachineFunction(MachineFunction &MF) override;
12415517e702SDimitry Andric };
12422cab237bSDimitry Andric 
12432cab237bSDimitry Andric } // end anonymous namespace
12445517e702SDimitry Andric 
12455517e702SDimitry Andric char AMDGPUMachineCFGStructurizer::ID = 0;
12465517e702SDimitry Andric 
regionIsSimpleIf(RegionMRT * Region)12475517e702SDimitry Andric bool AMDGPUMachineCFGStructurizer::regionIsSimpleIf(RegionMRT *Region) {
12485517e702SDimitry Andric   MachineBasicBlock *Entry = Region->getEntry();
12495517e702SDimitry Andric   MachineBasicBlock *Succ = Region->getSucc();
12505517e702SDimitry Andric   bool FoundBypass = false;
12515517e702SDimitry Andric   bool FoundIf = false;
12525517e702SDimitry Andric 
12535517e702SDimitry Andric   if (Entry->succ_size() != 2) {
12545517e702SDimitry Andric     return false;
12555517e702SDimitry Andric   }
12565517e702SDimitry Andric 
12575517e702SDimitry Andric   for (MachineBasicBlock::const_succ_iterator SI = Entry->succ_begin(),
12585517e702SDimitry Andric                                               E = Entry->succ_end();
12595517e702SDimitry Andric        SI != E; ++SI) {
12605517e702SDimitry Andric     MachineBasicBlock *Current = *SI;
12615517e702SDimitry Andric 
12625517e702SDimitry Andric     if (Current == Succ) {
12635517e702SDimitry Andric       FoundBypass = true;
12645517e702SDimitry Andric     } else if ((Current->succ_size() == 1) &&
12655517e702SDimitry Andric                *(Current->succ_begin()) == Succ) {
12665517e702SDimitry Andric       FoundIf = true;
12675517e702SDimitry Andric     }
12685517e702SDimitry Andric   }
12695517e702SDimitry Andric 
12705517e702SDimitry Andric   return FoundIf && FoundBypass;
12715517e702SDimitry Andric }
12725517e702SDimitry Andric 
transformSimpleIfRegion(RegionMRT * Region)12735517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::transformSimpleIfRegion(RegionMRT *Region) {
12745517e702SDimitry Andric   MachineBasicBlock *Entry = Region->getEntry();
12755517e702SDimitry Andric   MachineBasicBlock *Exit = Region->getExit();
12765517e702SDimitry Andric   TII->convertNonUniformIfRegion(Entry, Exit);
12775517e702SDimitry Andric }
12785517e702SDimitry Andric 
fixMBBTerminator(MachineBasicBlock * MBB)12795517e702SDimitry Andric static void fixMBBTerminator(MachineBasicBlock *MBB) {
12805517e702SDimitry Andric   if (MBB->succ_size() == 1) {
12815517e702SDimitry Andric     auto *Succ = *(MBB->succ_begin());
12825517e702SDimitry Andric     for (auto &TI : MBB->terminators()) {
12835517e702SDimitry Andric       for (auto &UI : TI.uses()) {
12845517e702SDimitry Andric         if (UI.isMBB() && UI.getMBB() != Succ) {
12855517e702SDimitry Andric           UI.setMBB(Succ);
12865517e702SDimitry Andric         }
12875517e702SDimitry Andric       }
12885517e702SDimitry Andric     }
12895517e702SDimitry Andric   }
12905517e702SDimitry Andric }
12915517e702SDimitry Andric 
fixRegionTerminator(RegionMRT * Region)12925517e702SDimitry Andric static void fixRegionTerminator(RegionMRT *Region) {
12935517e702SDimitry Andric   MachineBasicBlock *InternalSucc = nullptr;
12945517e702SDimitry Andric   MachineBasicBlock *ExternalSucc = nullptr;
12955517e702SDimitry Andric   LinearizedRegion *LRegion = Region->getLinearizedRegion();
12965517e702SDimitry Andric   auto Exit = LRegion->getExit();
12975517e702SDimitry Andric 
12985517e702SDimitry Andric   SmallPtrSet<MachineBasicBlock *, 2> Successors;
12995517e702SDimitry Andric   for (MachineBasicBlock::const_succ_iterator SI = Exit->succ_begin(),
13005517e702SDimitry Andric                                               SE = Exit->succ_end();
13015517e702SDimitry Andric        SI != SE; ++SI) {
13025517e702SDimitry Andric     MachineBasicBlock *Succ = *SI;
13035517e702SDimitry Andric     if (LRegion->contains(Succ)) {
13045517e702SDimitry Andric       // Do not allow re-assign
13055517e702SDimitry Andric       assert(InternalSucc == nullptr);
13065517e702SDimitry Andric       InternalSucc = Succ;
13075517e702SDimitry Andric     } else {
13085517e702SDimitry Andric       // Do not allow re-assign
13095517e702SDimitry Andric       assert(ExternalSucc == nullptr);
13105517e702SDimitry Andric       ExternalSucc = Succ;
13115517e702SDimitry Andric     }
13125517e702SDimitry Andric   }
13135517e702SDimitry Andric 
13145517e702SDimitry Andric   for (auto &TI : Exit->terminators()) {
13155517e702SDimitry Andric     for (auto &UI : TI.uses()) {
13165517e702SDimitry Andric       if (UI.isMBB()) {
13175517e702SDimitry Andric         auto Target = UI.getMBB();
13185517e702SDimitry Andric         if (Target != InternalSucc && Target != ExternalSucc) {
13195517e702SDimitry Andric           UI.setMBB(ExternalSucc);
13205517e702SDimitry Andric         }
13215517e702SDimitry Andric       }
13225517e702SDimitry Andric     }
13235517e702SDimitry Andric   }
13245517e702SDimitry Andric }
13255517e702SDimitry Andric 
13265517e702SDimitry Andric // If a region region is just a sequence of regions (and the exit
13275517e702SDimitry Andric // block in the case of the top level region), we can simply skip
13285517e702SDimitry Andric // linearizing it, because it is already linear
regionIsSequence(RegionMRT * Region)13295517e702SDimitry Andric bool regionIsSequence(RegionMRT *Region) {
13305517e702SDimitry Andric   auto Children = Region->getChildren();
13315517e702SDimitry Andric   for (auto CI : *Children) {
13325517e702SDimitry Andric     if (!CI->isRegion()) {
13335517e702SDimitry Andric       if (CI->getMBBMRT()->getMBB()->succ_size() > 1) {
13345517e702SDimitry Andric         return false;
13355517e702SDimitry Andric       }
13365517e702SDimitry Andric     }
13375517e702SDimitry Andric   }
13385517e702SDimitry Andric   return true;
13395517e702SDimitry Andric }
13405517e702SDimitry Andric 
fixupRegionExits(RegionMRT * Region)13415517e702SDimitry Andric void fixupRegionExits(RegionMRT *Region) {
13425517e702SDimitry Andric   auto Children = Region->getChildren();
13435517e702SDimitry Andric   for (auto CI : *Children) {
13445517e702SDimitry Andric     if (!CI->isRegion()) {
13455517e702SDimitry Andric       fixMBBTerminator(CI->getMBBMRT()->getMBB());
13465517e702SDimitry Andric     } else {
13475517e702SDimitry Andric       fixRegionTerminator(CI->getRegionMRT());
13485517e702SDimitry Andric     }
13495517e702SDimitry Andric   }
13505517e702SDimitry Andric }
13515517e702SDimitry Andric 
getPHIRegionIndices(RegionMRT * Region,MachineInstr & PHI,SmallVector<unsigned,2> & PHIRegionIndices)13525517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::getPHIRegionIndices(
13535517e702SDimitry Andric     RegionMRT *Region, MachineInstr &PHI,
13545517e702SDimitry Andric     SmallVector<unsigned, 2> &PHIRegionIndices) {
13555517e702SDimitry Andric   unsigned NumInputs = getPHINumInputs(PHI);
13565517e702SDimitry Andric   for (unsigned i = 0; i < NumInputs; ++i) {
13575517e702SDimitry Andric     MachineBasicBlock *Pred = getPHIPred(PHI, i);
13585517e702SDimitry Andric     if (Region->contains(Pred)) {
13595517e702SDimitry Andric       PHIRegionIndices.push_back(i);
13605517e702SDimitry Andric     }
13615517e702SDimitry Andric   }
13625517e702SDimitry Andric }
13635517e702SDimitry Andric 
getPHIRegionIndices(LinearizedRegion * Region,MachineInstr & PHI,SmallVector<unsigned,2> & PHIRegionIndices)13645517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::getPHIRegionIndices(
13655517e702SDimitry Andric     LinearizedRegion *Region, MachineInstr &PHI,
13665517e702SDimitry Andric     SmallVector<unsigned, 2> &PHIRegionIndices) {
13675517e702SDimitry Andric   unsigned NumInputs = getPHINumInputs(PHI);
13685517e702SDimitry Andric   for (unsigned i = 0; i < NumInputs; ++i) {
13695517e702SDimitry Andric     MachineBasicBlock *Pred = getPHIPred(PHI, i);
13705517e702SDimitry Andric     if (Region->contains(Pred)) {
13715517e702SDimitry Andric       PHIRegionIndices.push_back(i);
13725517e702SDimitry Andric     }
13735517e702SDimitry Andric   }
13745517e702SDimitry Andric }
13755517e702SDimitry Andric 
getPHINonRegionIndices(LinearizedRegion * Region,MachineInstr & PHI,SmallVector<unsigned,2> & PHINonRegionIndices)13765517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::getPHINonRegionIndices(
13775517e702SDimitry Andric     LinearizedRegion *Region, MachineInstr &PHI,
13785517e702SDimitry Andric     SmallVector<unsigned, 2> &PHINonRegionIndices) {
13795517e702SDimitry Andric   unsigned NumInputs = getPHINumInputs(PHI);
13805517e702SDimitry Andric   for (unsigned i = 0; i < NumInputs; ++i) {
13815517e702SDimitry Andric     MachineBasicBlock *Pred = getPHIPred(PHI, i);
13825517e702SDimitry Andric     if (!Region->contains(Pred)) {
13835517e702SDimitry Andric       PHINonRegionIndices.push_back(i);
13845517e702SDimitry Andric     }
13855517e702SDimitry Andric   }
13865517e702SDimitry Andric }
13875517e702SDimitry Andric 
storePHILinearizationInfoDest(unsigned LDestReg,MachineInstr & PHI,SmallVector<unsigned,2> * RegionIndices)13885517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::storePHILinearizationInfoDest(
13895517e702SDimitry Andric     unsigned LDestReg, MachineInstr &PHI,
13905517e702SDimitry Andric     SmallVector<unsigned, 2> *RegionIndices) {
13915517e702SDimitry Andric   if (RegionIndices) {
13925517e702SDimitry Andric     for (auto i : *RegionIndices) {
13935517e702SDimitry Andric       PHIInfo.addSource(LDestReg, getPHISourceReg(PHI, i), getPHIPred(PHI, i));
13945517e702SDimitry Andric     }
13955517e702SDimitry Andric   } else {
13965517e702SDimitry Andric     unsigned NumInputs = getPHINumInputs(PHI);
13975517e702SDimitry Andric     for (unsigned i = 0; i < NumInputs; ++i) {
13985517e702SDimitry Andric       PHIInfo.addSource(LDestReg, getPHISourceReg(PHI, i), getPHIPred(PHI, i));
13995517e702SDimitry Andric     }
14005517e702SDimitry Andric   }
14015517e702SDimitry Andric }
14025517e702SDimitry Andric 
storePHILinearizationInfo(MachineInstr & PHI,SmallVector<unsigned,2> * RegionIndices)14035517e702SDimitry Andric unsigned AMDGPUMachineCFGStructurizer::storePHILinearizationInfo(
14045517e702SDimitry Andric     MachineInstr &PHI, SmallVector<unsigned, 2> *RegionIndices) {
14055517e702SDimitry Andric   unsigned DestReg = getPHIDestReg(PHI);
14065517e702SDimitry Andric   unsigned LinearizeDestReg =
14075517e702SDimitry Andric       MRI->createVirtualRegister(MRI->getRegClass(DestReg));
14085517e702SDimitry Andric   PHIInfo.addDest(LinearizeDestReg, PHI.getDebugLoc());
14095517e702SDimitry Andric   storePHILinearizationInfoDest(LinearizeDestReg, PHI, RegionIndices);
14105517e702SDimitry Andric   return LinearizeDestReg;
14115517e702SDimitry Andric }
14125517e702SDimitry Andric 
extractKilledPHIs(MachineBasicBlock * MBB)14135517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::extractKilledPHIs(MachineBasicBlock *MBB) {
14145517e702SDimitry Andric   // We need to create a new chain for the killed phi, but there is no
14155517e702SDimitry Andric   // need to do the renaming outside or inside the block.
14165517e702SDimitry Andric   SmallPtrSet<MachineInstr *, 2> PHIs;
14175517e702SDimitry Andric   for (MachineBasicBlock::instr_iterator I = MBB->instr_begin(),
14185517e702SDimitry Andric                                          E = MBB->instr_end();
14195517e702SDimitry Andric        I != E; ++I) {
14205517e702SDimitry Andric     MachineInstr &Instr = *I;
14215517e702SDimitry Andric     if (Instr.isPHI()) {
14225517e702SDimitry Andric       unsigned PHIDestReg = getPHIDestReg(Instr);
1423*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Extractking killed phi:\n");
1424*4ba319b5SDimitry Andric       LLVM_DEBUG(Instr.dump());
14255517e702SDimitry Andric       PHIs.insert(&Instr);
14265517e702SDimitry Andric       PHIInfo.addDest(PHIDestReg, Instr.getDebugLoc());
14275517e702SDimitry Andric       storePHILinearizationInfoDest(PHIDestReg, Instr);
14285517e702SDimitry Andric     }
14295517e702SDimitry Andric   }
14305517e702SDimitry Andric 
14315517e702SDimitry Andric   for (auto PI : PHIs) {
14325517e702SDimitry Andric     PI->eraseFromParent();
14335517e702SDimitry Andric   }
14345517e702SDimitry Andric }
14355517e702SDimitry Andric 
isPHIRegionIndex(SmallVector<unsigned,2> PHIRegionIndices,unsigned Index)14365517e702SDimitry Andric static bool isPHIRegionIndex(SmallVector<unsigned, 2> PHIRegionIndices,
14375517e702SDimitry Andric                              unsigned Index) {
14385517e702SDimitry Andric   for (auto i : PHIRegionIndices) {
14395517e702SDimitry Andric     if (i == Index)
14405517e702SDimitry Andric       return true;
14415517e702SDimitry Andric   }
14425517e702SDimitry Andric   return false;
14435517e702SDimitry Andric }
14445517e702SDimitry Andric 
shrinkPHI(MachineInstr & PHI,SmallVector<unsigned,2> & PHIIndices,unsigned * ReplaceReg)14455517e702SDimitry Andric bool AMDGPUMachineCFGStructurizer::shrinkPHI(MachineInstr &PHI,
14465517e702SDimitry Andric                                        SmallVector<unsigned, 2> &PHIIndices,
14475517e702SDimitry Andric                                        unsigned *ReplaceReg) {
14485517e702SDimitry Andric   return shrinkPHI(PHI, 0, nullptr, PHIIndices, ReplaceReg);
14495517e702SDimitry Andric }
14505517e702SDimitry Andric 
shrinkPHI(MachineInstr & PHI,unsigned CombinedSourceReg,MachineBasicBlock * SourceMBB,SmallVector<unsigned,2> & PHIIndices,unsigned * ReplaceReg)14515517e702SDimitry Andric bool AMDGPUMachineCFGStructurizer::shrinkPHI(MachineInstr &PHI,
14525517e702SDimitry Andric                                        unsigned CombinedSourceReg,
14535517e702SDimitry Andric                                        MachineBasicBlock *SourceMBB,
14545517e702SDimitry Andric                                        SmallVector<unsigned, 2> &PHIIndices,
14555517e702SDimitry Andric                                        unsigned *ReplaceReg) {
1456*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Shrink PHI: ");
1457*4ba319b5SDimitry Andric   LLVM_DEBUG(PHI.dump());
1458*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << " to " << printReg(getPHIDestReg(PHI), TRI)
1459*4ba319b5SDimitry Andric                     << " = PHI(");
14605517e702SDimitry Andric 
14615517e702SDimitry Andric   bool Replaced = false;
14625517e702SDimitry Andric   unsigned NumInputs = getPHINumInputs(PHI);
14635517e702SDimitry Andric   int SingleExternalEntryIndex = -1;
14645517e702SDimitry Andric   for (unsigned i = 0; i < NumInputs; ++i) {
14655517e702SDimitry Andric     if (!isPHIRegionIndex(PHIIndices, i)) {
14665517e702SDimitry Andric       if (SingleExternalEntryIndex == -1) {
14675517e702SDimitry Andric         // Single entry
14685517e702SDimitry Andric         SingleExternalEntryIndex = i;
14695517e702SDimitry Andric       } else {
14705517e702SDimitry Andric         // Multiple entries
14715517e702SDimitry Andric         SingleExternalEntryIndex = -2;
14725517e702SDimitry Andric       }
14735517e702SDimitry Andric     }
14745517e702SDimitry Andric   }
14755517e702SDimitry Andric 
14765517e702SDimitry Andric   if (SingleExternalEntryIndex > -1) {
14775517e702SDimitry Andric     *ReplaceReg = getPHISourceReg(PHI, SingleExternalEntryIndex);
14785517e702SDimitry Andric     // We should not rewrite the code, we should only pick up the single value
14795517e702SDimitry Andric     // that represents the shrunk PHI.
14805517e702SDimitry Andric     Replaced = true;
14815517e702SDimitry Andric   } else {
14825517e702SDimitry Andric     MachineBasicBlock *MBB = PHI.getParent();
14835517e702SDimitry Andric     MachineInstrBuilder MIB =
14845517e702SDimitry Andric         BuildMI(*MBB, PHI, PHI.getDebugLoc(), TII->get(TargetOpcode::PHI),
14855517e702SDimitry Andric                 getPHIDestReg(PHI));
14865517e702SDimitry Andric     if (SourceMBB) {
14875517e702SDimitry Andric       MIB.addReg(CombinedSourceReg);
14885517e702SDimitry Andric       MIB.addMBB(SourceMBB);
1489*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << printReg(CombinedSourceReg, TRI) << ", "
14902cab237bSDimitry Andric                         << printMBBReference(*SourceMBB));
14915517e702SDimitry Andric     }
14925517e702SDimitry Andric 
14935517e702SDimitry Andric     for (unsigned i = 0; i < NumInputs; ++i) {
14945517e702SDimitry Andric       if (isPHIRegionIndex(PHIIndices, i)) {
14955517e702SDimitry Andric         continue;
14965517e702SDimitry Andric       }
14975517e702SDimitry Andric       unsigned SourceReg = getPHISourceReg(PHI, i);
14985517e702SDimitry Andric       MachineBasicBlock *SourcePred = getPHIPred(PHI, i);
14995517e702SDimitry Andric       MIB.addReg(SourceReg);
15005517e702SDimitry Andric       MIB.addMBB(SourcePred);
1501*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << printReg(SourceReg, TRI) << ", "
15022cab237bSDimitry Andric                         << printMBBReference(*SourcePred));
15035517e702SDimitry Andric     }
1504*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << ")\n");
15055517e702SDimitry Andric   }
15065517e702SDimitry Andric   PHI.eraseFromParent();
15075517e702SDimitry Andric   return Replaced;
15085517e702SDimitry Andric }
15095517e702SDimitry Andric 
replacePHI(MachineInstr & PHI,unsigned CombinedSourceReg,MachineBasicBlock * LastMerge,SmallVector<unsigned,2> & PHIRegionIndices)15105517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::replacePHI(
15115517e702SDimitry Andric     MachineInstr &PHI, unsigned CombinedSourceReg, MachineBasicBlock *LastMerge,
15125517e702SDimitry Andric     SmallVector<unsigned, 2> &PHIRegionIndices) {
1513*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Replace PHI: ");
1514*4ba319b5SDimitry Andric   LLVM_DEBUG(PHI.dump());
1515*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << " with " << printReg(getPHIDestReg(PHI), TRI)
1516*4ba319b5SDimitry Andric                     << " = PHI(");
15175517e702SDimitry Andric 
15185517e702SDimitry Andric   bool HasExternalEdge = false;
15195517e702SDimitry Andric   unsigned NumInputs = getPHINumInputs(PHI);
15205517e702SDimitry Andric   for (unsigned i = 0; i < NumInputs; ++i) {
15215517e702SDimitry Andric     if (!isPHIRegionIndex(PHIRegionIndices, i)) {
15225517e702SDimitry Andric       HasExternalEdge = true;
15235517e702SDimitry Andric     }
15245517e702SDimitry Andric   }
15255517e702SDimitry Andric 
15265517e702SDimitry Andric   if (HasExternalEdge) {
15275517e702SDimitry Andric     MachineBasicBlock *MBB = PHI.getParent();
15285517e702SDimitry Andric     MachineInstrBuilder MIB =
15295517e702SDimitry Andric         BuildMI(*MBB, PHI, PHI.getDebugLoc(), TII->get(TargetOpcode::PHI),
15305517e702SDimitry Andric                 getPHIDestReg(PHI));
15315517e702SDimitry Andric     MIB.addReg(CombinedSourceReg);
15325517e702SDimitry Andric     MIB.addMBB(LastMerge);
1533*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << printReg(CombinedSourceReg, TRI) << ", "
15342cab237bSDimitry Andric                       << printMBBReference(*LastMerge));
15355517e702SDimitry Andric     for (unsigned i = 0; i < NumInputs; ++i) {
15365517e702SDimitry Andric       if (isPHIRegionIndex(PHIRegionIndices, i)) {
15375517e702SDimitry Andric         continue;
15385517e702SDimitry Andric       }
15395517e702SDimitry Andric       unsigned SourceReg = getPHISourceReg(PHI, i);
15405517e702SDimitry Andric       MachineBasicBlock *SourcePred = getPHIPred(PHI, i);
15415517e702SDimitry Andric       MIB.addReg(SourceReg);
15425517e702SDimitry Andric       MIB.addMBB(SourcePred);
1543*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << printReg(SourceReg, TRI) << ", "
15442cab237bSDimitry Andric                         << printMBBReference(*SourcePred));
15455517e702SDimitry Andric     }
1546*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << ")\n");
15475517e702SDimitry Andric   } else {
15485517e702SDimitry Andric     replaceRegisterWith(getPHIDestReg(PHI), CombinedSourceReg);
15495517e702SDimitry Andric   }
15505517e702SDimitry Andric   PHI.eraseFromParent();
15515517e702SDimitry Andric }
15525517e702SDimitry Andric 
replaceEntryPHI(MachineInstr & PHI,unsigned CombinedSourceReg,MachineBasicBlock * IfMBB,SmallVector<unsigned,2> & PHIRegionIndices)15535517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::replaceEntryPHI(
15545517e702SDimitry Andric     MachineInstr &PHI, unsigned CombinedSourceReg, MachineBasicBlock *IfMBB,
15555517e702SDimitry Andric     SmallVector<unsigned, 2> &PHIRegionIndices) {
1556*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Replace entry PHI: ");
1557*4ba319b5SDimitry Andric   LLVM_DEBUG(PHI.dump());
1558*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << " with ");
15595517e702SDimitry Andric 
15605517e702SDimitry Andric   unsigned NumInputs = getPHINumInputs(PHI);
15615517e702SDimitry Andric   unsigned NumNonRegionInputs = NumInputs;
15625517e702SDimitry Andric   for (unsigned i = 0; i < NumInputs; ++i) {
15635517e702SDimitry Andric     if (isPHIRegionIndex(PHIRegionIndices, i)) {
15645517e702SDimitry Andric       NumNonRegionInputs--;
15655517e702SDimitry Andric     }
15665517e702SDimitry Andric   }
15675517e702SDimitry Andric 
15685517e702SDimitry Andric   if (NumNonRegionInputs == 0) {
15695517e702SDimitry Andric     auto DestReg = getPHIDestReg(PHI);
15705517e702SDimitry Andric     replaceRegisterWith(DestReg, CombinedSourceReg);
1571*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << " register " << printReg(CombinedSourceReg, TRI)
1572*4ba319b5SDimitry Andric                       << "\n");
15735517e702SDimitry Andric     PHI.eraseFromParent();
15745517e702SDimitry Andric   } else {
1575*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << printReg(getPHIDestReg(PHI), TRI) << " = PHI(");
15765517e702SDimitry Andric     MachineBasicBlock *MBB = PHI.getParent();
15775517e702SDimitry Andric     MachineInstrBuilder MIB =
15785517e702SDimitry Andric         BuildMI(*MBB, PHI, PHI.getDebugLoc(), TII->get(TargetOpcode::PHI),
15795517e702SDimitry Andric                 getPHIDestReg(PHI));
15805517e702SDimitry Andric     MIB.addReg(CombinedSourceReg);
15815517e702SDimitry Andric     MIB.addMBB(IfMBB);
1582*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << printReg(CombinedSourceReg, TRI) << ", "
15832cab237bSDimitry Andric                       << printMBBReference(*IfMBB));
15845517e702SDimitry Andric     unsigned NumInputs = getPHINumInputs(PHI);
15855517e702SDimitry Andric     for (unsigned i = 0; i < NumInputs; ++i) {
15865517e702SDimitry Andric       if (isPHIRegionIndex(PHIRegionIndices, i)) {
15875517e702SDimitry Andric         continue;
15885517e702SDimitry Andric       }
15895517e702SDimitry Andric       unsigned SourceReg = getPHISourceReg(PHI, i);
15905517e702SDimitry Andric       MachineBasicBlock *SourcePred = getPHIPred(PHI, i);
15915517e702SDimitry Andric       MIB.addReg(SourceReg);
15925517e702SDimitry Andric       MIB.addMBB(SourcePred);
1593*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << printReg(SourceReg, TRI) << ", "
15942cab237bSDimitry Andric                         << printMBBReference(*SourcePred));
15955517e702SDimitry Andric     }
1596*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << ")\n");
15975517e702SDimitry Andric     PHI.eraseFromParent();
15985517e702SDimitry Andric   }
15995517e702SDimitry Andric }
16005517e702SDimitry Andric 
replaceLiveOutRegs(MachineInstr & PHI,SmallVector<unsigned,2> & PHIRegionIndices,unsigned CombinedSourceReg,LinearizedRegion * LRegion)16015517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::replaceLiveOutRegs(
16025517e702SDimitry Andric     MachineInstr &PHI, SmallVector<unsigned, 2> &PHIRegionIndices,
16035517e702SDimitry Andric     unsigned CombinedSourceReg, LinearizedRegion *LRegion) {
16045517e702SDimitry Andric   bool WasLiveOut = false;
16055517e702SDimitry Andric   for (auto PII : PHIRegionIndices) {
16065517e702SDimitry Andric     unsigned Reg = getPHISourceReg(PHI, PII);
16075517e702SDimitry Andric     if (LRegion->isLiveOut(Reg)) {
16085517e702SDimitry Andric       bool IsDead = true;
16095517e702SDimitry Andric 
16105517e702SDimitry Andric       // Check if register is live out of the basic block
16115517e702SDimitry Andric       MachineBasicBlock *DefMBB = getDefInstr(Reg)->getParent();
16125517e702SDimitry Andric       for (auto UI = MRI->use_begin(Reg), E = MRI->use_end(); UI != E; ++UI) {
16135517e702SDimitry Andric         if ((*UI).getParent()->getParent() != DefMBB) {
16145517e702SDimitry Andric           IsDead = false;
16155517e702SDimitry Andric         }
16165517e702SDimitry Andric       }
16175517e702SDimitry Andric 
1618*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Register " << printReg(Reg, TRI) << " is "
1619*4ba319b5SDimitry Andric                         << (IsDead ? "dead" : "alive")
1620*4ba319b5SDimitry Andric                         << " after PHI replace\n");
16215517e702SDimitry Andric       if (IsDead) {
16225517e702SDimitry Andric         LRegion->removeLiveOut(Reg);
16235517e702SDimitry Andric       }
16245517e702SDimitry Andric       WasLiveOut = true;
16255517e702SDimitry Andric     }
16265517e702SDimitry Andric   }
16275517e702SDimitry Andric 
16285517e702SDimitry Andric   if (WasLiveOut)
16295517e702SDimitry Andric     LRegion->addLiveOut(CombinedSourceReg);
16305517e702SDimitry Andric }
16315517e702SDimitry Andric 
rewriteRegionExitPHI(RegionMRT * Region,MachineBasicBlock * LastMerge,MachineInstr & PHI,LinearizedRegion * LRegion)16325517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::rewriteRegionExitPHI(RegionMRT *Region,
16335517e702SDimitry Andric                                                   MachineBasicBlock *LastMerge,
16345517e702SDimitry Andric                                                   MachineInstr &PHI,
16355517e702SDimitry Andric                                                   LinearizedRegion *LRegion) {
16365517e702SDimitry Andric   SmallVector<unsigned, 2> PHIRegionIndices;
16375517e702SDimitry Andric   getPHIRegionIndices(Region, PHI, PHIRegionIndices);
16385517e702SDimitry Andric   unsigned LinearizedSourceReg =
16395517e702SDimitry Andric       storePHILinearizationInfo(PHI, &PHIRegionIndices);
16405517e702SDimitry Andric 
16415517e702SDimitry Andric   replacePHI(PHI, LinearizedSourceReg, LastMerge, PHIRegionIndices);
16425517e702SDimitry Andric   replaceLiveOutRegs(PHI, PHIRegionIndices, LinearizedSourceReg, LRegion);
16435517e702SDimitry Andric }
16445517e702SDimitry Andric 
rewriteRegionEntryPHI(LinearizedRegion * Region,MachineBasicBlock * IfMBB,MachineInstr & PHI)16455517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::rewriteRegionEntryPHI(LinearizedRegion *Region,
16465517e702SDimitry Andric                                                    MachineBasicBlock *IfMBB,
16475517e702SDimitry Andric                                                    MachineInstr &PHI) {
16485517e702SDimitry Andric   SmallVector<unsigned, 2> PHINonRegionIndices;
16495517e702SDimitry Andric   getPHINonRegionIndices(Region, PHI, PHINonRegionIndices);
16505517e702SDimitry Andric   unsigned LinearizedSourceReg =
16515517e702SDimitry Andric       storePHILinearizationInfo(PHI, &PHINonRegionIndices);
16525517e702SDimitry Andric   replaceEntryPHI(PHI, LinearizedSourceReg, IfMBB, PHINonRegionIndices);
16535517e702SDimitry Andric }
16545517e702SDimitry Andric 
collectPHIs(MachineBasicBlock * MBB,SmallVector<MachineInstr *,2> & PHIs)16555517e702SDimitry Andric static void collectPHIs(MachineBasicBlock *MBB,
16565517e702SDimitry Andric                         SmallVector<MachineInstr *, 2> &PHIs) {
16575517e702SDimitry Andric   for (auto &BBI : *MBB) {
16585517e702SDimitry Andric     if (BBI.isPHI()) {
16595517e702SDimitry Andric       PHIs.push_back(&BBI);
16605517e702SDimitry Andric     }
16615517e702SDimitry Andric   }
16625517e702SDimitry Andric }
16635517e702SDimitry Andric 
rewriteRegionExitPHIs(RegionMRT * Region,MachineBasicBlock * LastMerge,LinearizedRegion * LRegion)16645517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::rewriteRegionExitPHIs(RegionMRT *Region,
16655517e702SDimitry Andric                                                    MachineBasicBlock *LastMerge,
16665517e702SDimitry Andric                                                    LinearizedRegion *LRegion) {
16675517e702SDimitry Andric   SmallVector<MachineInstr *, 2> PHIs;
16685517e702SDimitry Andric   auto Exit = Region->getSucc();
16695517e702SDimitry Andric   if (Exit == nullptr)
16705517e702SDimitry Andric     return;
16715517e702SDimitry Andric 
16725517e702SDimitry Andric   collectPHIs(Exit, PHIs);
16735517e702SDimitry Andric 
16745517e702SDimitry Andric   for (auto PHII : PHIs) {
16755517e702SDimitry Andric     rewriteRegionExitPHI(Region, LastMerge, *PHII, LRegion);
16765517e702SDimitry Andric   }
16775517e702SDimitry Andric }
16785517e702SDimitry Andric 
rewriteRegionEntryPHIs(LinearizedRegion * Region,MachineBasicBlock * IfMBB)16795517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::rewriteRegionEntryPHIs(LinearizedRegion *Region,
16805517e702SDimitry Andric                                                     MachineBasicBlock *IfMBB) {
16815517e702SDimitry Andric   SmallVector<MachineInstr *, 2> PHIs;
16825517e702SDimitry Andric   auto Entry = Region->getEntry();
16835517e702SDimitry Andric 
16845517e702SDimitry Andric   collectPHIs(Entry, PHIs);
16855517e702SDimitry Andric 
16865517e702SDimitry Andric   for (auto PHII : PHIs) {
16875517e702SDimitry Andric     rewriteRegionEntryPHI(Region, IfMBB, *PHII);
16885517e702SDimitry Andric   }
16895517e702SDimitry Andric }
16905517e702SDimitry Andric 
insertUnconditionalBranch(MachineBasicBlock * MBB,MachineBasicBlock * Dest,const DebugLoc & DL)16915517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::insertUnconditionalBranch(MachineBasicBlock *MBB,
16925517e702SDimitry Andric                                                        MachineBasicBlock *Dest,
16935517e702SDimitry Andric                                                        const DebugLoc &DL) {
1694*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Inserting unconditional branch: " << MBB->getNumber()
16955517e702SDimitry Andric                     << " -> " << Dest->getNumber() << "\n");
16965517e702SDimitry Andric   MachineBasicBlock::instr_iterator Terminator = MBB->getFirstInstrTerminator();
16975517e702SDimitry Andric   bool HasTerminator = Terminator != MBB->instr_end();
16985517e702SDimitry Andric   if (HasTerminator) {
16995517e702SDimitry Andric     TII->ReplaceTailWithBranchTo(Terminator, Dest);
17005517e702SDimitry Andric   }
17015517e702SDimitry Andric   if (++MachineFunction::iterator(MBB) != MachineFunction::iterator(Dest)) {
17025517e702SDimitry Andric     TII->insertUnconditionalBranch(*MBB, Dest, DL);
17035517e702SDimitry Andric   }
17045517e702SDimitry Andric }
17055517e702SDimitry Andric 
getSingleExitNode(MachineFunction & MF)17065517e702SDimitry Andric static MachineBasicBlock *getSingleExitNode(MachineFunction &MF) {
17075517e702SDimitry Andric   MachineBasicBlock *result = nullptr;
17085517e702SDimitry Andric   for (auto &MFI : MF) {
17095517e702SDimitry Andric     if (MFI.succ_size() == 0) {
17105517e702SDimitry Andric       if (result == nullptr) {
17115517e702SDimitry Andric         result = &MFI;
17125517e702SDimitry Andric       } else {
17135517e702SDimitry Andric         return nullptr;
17145517e702SDimitry Andric       }
17155517e702SDimitry Andric     }
17165517e702SDimitry Andric   }
17175517e702SDimitry Andric 
17185517e702SDimitry Andric   return result;
17195517e702SDimitry Andric }
17205517e702SDimitry Andric 
hasOneExitNode(MachineFunction & MF)17215517e702SDimitry Andric static bool hasOneExitNode(MachineFunction &MF) {
17225517e702SDimitry Andric   return getSingleExitNode(MF) != nullptr;
17235517e702SDimitry Andric }
17245517e702SDimitry Andric 
17255517e702SDimitry Andric MachineBasicBlock *
createLinearizedExitBlock(RegionMRT * Region)17265517e702SDimitry Andric AMDGPUMachineCFGStructurizer::createLinearizedExitBlock(RegionMRT *Region) {
17275517e702SDimitry Andric   auto Exit = Region->getSucc();
17285517e702SDimitry Andric 
17295517e702SDimitry Andric   // If the exit is the end of the function, we just use the existing
17305517e702SDimitry Andric   MachineFunction *MF = Region->getEntry()->getParent();
17315517e702SDimitry Andric   if (Exit == nullptr && hasOneExitNode(*MF)) {
17325517e702SDimitry Andric     return &(*(--(Region->getEntry()->getParent()->end())));
17335517e702SDimitry Andric   }
17345517e702SDimitry Andric 
17355517e702SDimitry Andric   MachineBasicBlock *LastMerge = MF->CreateMachineBasicBlock();
17365517e702SDimitry Andric   if (Exit == nullptr) {
17375517e702SDimitry Andric     MachineFunction::iterator ExitIter = MF->end();
17385517e702SDimitry Andric     MF->insert(ExitIter, LastMerge);
17395517e702SDimitry Andric   } else {
17405517e702SDimitry Andric     MachineFunction::iterator ExitIter = Exit->getIterator();
17415517e702SDimitry Andric     MF->insert(ExitIter, LastMerge);
17425517e702SDimitry Andric     LastMerge->addSuccessor(Exit);
17435517e702SDimitry Andric     insertUnconditionalBranch(LastMerge, Exit);
1744*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Created exit block: " << LastMerge->getNumber()
1745*4ba319b5SDimitry Andric                       << "\n");
17465517e702SDimitry Andric   }
17475517e702SDimitry Andric   return LastMerge;
17485517e702SDimitry Andric }
17495517e702SDimitry Andric 
insertMergePHI(MachineBasicBlock * IfBB,MachineBasicBlock * CodeBB,MachineBasicBlock * MergeBB,unsigned DestRegister,unsigned IfSourceRegister,unsigned CodeSourceRegister,bool IsUndefIfSource)17505517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::insertMergePHI(MachineBasicBlock *IfBB,
17515517e702SDimitry Andric                                             MachineBasicBlock *CodeBB,
17525517e702SDimitry Andric                                             MachineBasicBlock *MergeBB,
17535517e702SDimitry Andric                                             unsigned DestRegister,
17545517e702SDimitry Andric                                             unsigned IfSourceRegister,
17555517e702SDimitry Andric                                             unsigned CodeSourceRegister,
17565517e702SDimitry Andric                                             bool IsUndefIfSource) {
17575517e702SDimitry Andric   // If this is the function exit block, we don't need a phi.
17585517e702SDimitry Andric   if (MergeBB->succ_begin() == MergeBB->succ_end()) {
17595517e702SDimitry Andric     return;
17605517e702SDimitry Andric   }
1761*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Merge PHI (" << printMBBReference(*MergeBB)
17622cab237bSDimitry Andric                     << "): " << printReg(DestRegister, TRI) << " = PHI("
17632cab237bSDimitry Andric                     << printReg(IfSourceRegister, TRI) << ", "
1764*4ba319b5SDimitry Andric                     << printMBBReference(*IfBB)
1765*4ba319b5SDimitry Andric                     << printReg(CodeSourceRegister, TRI) << ", "
1766*4ba319b5SDimitry Andric                     << printMBBReference(*CodeBB) << ")\n");
17675517e702SDimitry Andric   const DebugLoc &DL = MergeBB->findDebugLoc(MergeBB->begin());
17685517e702SDimitry Andric   MachineInstrBuilder MIB = BuildMI(*MergeBB, MergeBB->instr_begin(), DL,
17695517e702SDimitry Andric                                     TII->get(TargetOpcode::PHI), DestRegister);
17705517e702SDimitry Andric   if (IsUndefIfSource && false) {
17715517e702SDimitry Andric     MIB.addReg(IfSourceRegister, RegState::Undef);
17725517e702SDimitry Andric   } else {
17735517e702SDimitry Andric     MIB.addReg(IfSourceRegister);
17745517e702SDimitry Andric   }
17755517e702SDimitry Andric   MIB.addMBB(IfBB);
17765517e702SDimitry Andric   MIB.addReg(CodeSourceRegister);
17775517e702SDimitry Andric   MIB.addMBB(CodeBB);
17785517e702SDimitry Andric }
17795517e702SDimitry Andric 
removeExternalCFGSuccessors(MachineBasicBlock * MBB)17805517e702SDimitry Andric static void removeExternalCFGSuccessors(MachineBasicBlock *MBB) {
17815517e702SDimitry Andric   for (MachineBasicBlock::succ_iterator PI = MBB->succ_begin(),
17825517e702SDimitry Andric                                         E = MBB->succ_end();
17835517e702SDimitry Andric        PI != E; ++PI) {
17845517e702SDimitry Andric     if ((*PI) != MBB) {
17855517e702SDimitry Andric       (MBB)->removeSuccessor(*PI);
17865517e702SDimitry Andric     }
17875517e702SDimitry Andric   }
17885517e702SDimitry Andric }
17895517e702SDimitry Andric 
removeExternalCFGEdges(MachineBasicBlock * StartMBB,MachineBasicBlock * EndMBB)17905517e702SDimitry Andric static void removeExternalCFGEdges(MachineBasicBlock *StartMBB,
17915517e702SDimitry Andric                                    MachineBasicBlock *EndMBB) {
17925517e702SDimitry Andric 
17935517e702SDimitry Andric   // We have to check against the StartMBB successor becasuse a
17945517e702SDimitry Andric   // structurized region with a loop will have the entry block split,
17955517e702SDimitry Andric   // and the backedge will go to the entry successor.
17965517e702SDimitry Andric   DenseSet<std::pair<MachineBasicBlock *, MachineBasicBlock *>> Succs;
17975517e702SDimitry Andric   unsigned SuccSize = StartMBB->succ_size();
17985517e702SDimitry Andric   if (SuccSize > 0) {
17995517e702SDimitry Andric     MachineBasicBlock *StartMBBSucc = *(StartMBB->succ_begin());
18005517e702SDimitry Andric     for (MachineBasicBlock::succ_iterator PI = EndMBB->succ_begin(),
18015517e702SDimitry Andric                                           E = EndMBB->succ_end();
18025517e702SDimitry Andric          PI != E; ++PI) {
18035517e702SDimitry Andric       // Either we have a back-edge to the entry block, or a back-edge to the
1804a580b014SDimitry Andric       // successor of the entry block since the block may be split.
18055517e702SDimitry Andric       if ((*PI) != StartMBB &&
18065517e702SDimitry Andric           !((*PI) == StartMBBSucc && StartMBB != EndMBB && SuccSize == 1)) {
18075517e702SDimitry Andric         Succs.insert(
18085517e702SDimitry Andric             std::pair<MachineBasicBlock *, MachineBasicBlock *>(EndMBB, *PI));
18095517e702SDimitry Andric       }
18105517e702SDimitry Andric     }
18115517e702SDimitry Andric   }
18125517e702SDimitry Andric 
18135517e702SDimitry Andric   for (MachineBasicBlock::pred_iterator PI = StartMBB->pred_begin(),
18145517e702SDimitry Andric                                         E = StartMBB->pred_end();
18155517e702SDimitry Andric        PI != E; ++PI) {
18165517e702SDimitry Andric     if ((*PI) != EndMBB) {
18175517e702SDimitry Andric       Succs.insert(
18185517e702SDimitry Andric           std::pair<MachineBasicBlock *, MachineBasicBlock *>(*PI, StartMBB));
18195517e702SDimitry Andric     }
18205517e702SDimitry Andric   }
18215517e702SDimitry Andric 
18225517e702SDimitry Andric   for (auto SI : Succs) {
18235517e702SDimitry Andric     std::pair<MachineBasicBlock *, MachineBasicBlock *> Edge = SI;
1824*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Removing edge: " << printMBBReference(*Edge.first)
18252cab237bSDimitry Andric                       << " -> " << printMBBReference(*Edge.second) << "\n");
18265517e702SDimitry Andric     Edge.first->removeSuccessor(Edge.second);
18275517e702SDimitry Andric   }
18285517e702SDimitry Andric }
18295517e702SDimitry Andric 
createIfBlock(MachineBasicBlock * MergeBB,MachineBasicBlock * CodeBBStart,MachineBasicBlock * CodeBBEnd,MachineBasicBlock * SelectBB,unsigned IfReg,bool InheritPreds)18305517e702SDimitry Andric MachineBasicBlock *AMDGPUMachineCFGStructurizer::createIfBlock(
18315517e702SDimitry Andric     MachineBasicBlock *MergeBB, MachineBasicBlock *CodeBBStart,
18325517e702SDimitry Andric     MachineBasicBlock *CodeBBEnd, MachineBasicBlock *SelectBB, unsigned IfReg,
18335517e702SDimitry Andric     bool InheritPreds) {
18345517e702SDimitry Andric   MachineFunction *MF = MergeBB->getParent();
18355517e702SDimitry Andric   MachineBasicBlock *IfBB = MF->CreateMachineBasicBlock();
18365517e702SDimitry Andric 
18375517e702SDimitry Andric   if (InheritPreds) {
18385517e702SDimitry Andric     for (MachineBasicBlock::pred_iterator PI = CodeBBStart->pred_begin(),
18395517e702SDimitry Andric                                           E = CodeBBStart->pred_end();
18405517e702SDimitry Andric          PI != E; ++PI) {
18415517e702SDimitry Andric       if ((*PI) != CodeBBEnd) {
18425517e702SDimitry Andric         MachineBasicBlock *Pred = (*PI);
18435517e702SDimitry Andric         Pred->addSuccessor(IfBB);
18445517e702SDimitry Andric       }
18455517e702SDimitry Andric     }
18465517e702SDimitry Andric   }
18475517e702SDimitry Andric 
18485517e702SDimitry Andric   removeExternalCFGEdges(CodeBBStart, CodeBBEnd);
18495517e702SDimitry Andric 
18505517e702SDimitry Andric   auto CodeBBStartI = CodeBBStart->getIterator();
18515517e702SDimitry Andric   auto CodeBBEndI = CodeBBEnd->getIterator();
18525517e702SDimitry Andric   auto MergeIter = MergeBB->getIterator();
18535517e702SDimitry Andric   MF->insert(MergeIter, IfBB);
18545517e702SDimitry Andric   MF->splice(MergeIter, CodeBBStartI, ++CodeBBEndI);
18555517e702SDimitry Andric   IfBB->addSuccessor(MergeBB);
18565517e702SDimitry Andric   IfBB->addSuccessor(CodeBBStart);
18575517e702SDimitry Andric 
1858*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Created If block: " << IfBB->getNumber() << "\n");
1859a580b014SDimitry Andric   // Ensure that the MergeBB is a successor of the CodeEndBB.
18605517e702SDimitry Andric   if (!CodeBBEnd->isSuccessor(MergeBB))
18615517e702SDimitry Andric     CodeBBEnd->addSuccessor(MergeBB);
18625517e702SDimitry Andric 
1863*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Moved " << printMBBReference(*CodeBBStart)
1864*4ba319b5SDimitry Andric                     << " through " << printMBBReference(*CodeBBEnd) << "\n");
18655517e702SDimitry Andric 
18665517e702SDimitry Andric   // If we have a single predecessor we can find a reasonable debug location
18675517e702SDimitry Andric   MachineBasicBlock *SinglePred =
18685517e702SDimitry Andric       CodeBBStart->pred_size() == 1 ? *(CodeBBStart->pred_begin()) : nullptr;
18695517e702SDimitry Andric   const DebugLoc &DL = SinglePred
18705517e702SDimitry Andric                     ? SinglePred->findDebugLoc(SinglePred->getFirstTerminator())
18715517e702SDimitry Andric                     : DebugLoc();
18725517e702SDimitry Andric 
18735517e702SDimitry Andric   unsigned Reg =
18745517e702SDimitry Andric       TII->insertEQ(IfBB, IfBB->begin(), DL, IfReg,
18755517e702SDimitry Andric                     SelectBB->getNumber() /* CodeBBStart->getNumber() */);
18765517e702SDimitry Andric   if (&(*(IfBB->getParent()->begin())) == IfBB) {
18775517e702SDimitry Andric     TII->materializeImmediate(*IfBB, IfBB->begin(), DL, IfReg,
18785517e702SDimitry Andric                               CodeBBStart->getNumber());
18795517e702SDimitry Andric   }
18805517e702SDimitry Andric   MachineOperand RegOp = MachineOperand::CreateReg(Reg, false, false, true);
18815517e702SDimitry Andric   ArrayRef<MachineOperand> Cond(RegOp);
18825517e702SDimitry Andric   TII->insertBranch(*IfBB, MergeBB, CodeBBStart, Cond, DL);
18835517e702SDimitry Andric 
18845517e702SDimitry Andric   return IfBB;
18855517e702SDimitry Andric }
18865517e702SDimitry Andric 
ensureCondIsNotKilled(SmallVector<MachineOperand,1> Cond)18875517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::ensureCondIsNotKilled(
18885517e702SDimitry Andric     SmallVector<MachineOperand, 1> Cond) {
18895517e702SDimitry Andric   if (Cond.size() != 1)
18905517e702SDimitry Andric     return;
18915517e702SDimitry Andric   if (!Cond[0].isReg())
18925517e702SDimitry Andric     return;
18935517e702SDimitry Andric 
18945517e702SDimitry Andric   unsigned CondReg = Cond[0].getReg();
18955517e702SDimitry Andric   for (auto UI = MRI->use_begin(CondReg), E = MRI->use_end(); UI != E; ++UI) {
18965517e702SDimitry Andric     (*UI).setIsKill(false);
18975517e702SDimitry Andric   }
18985517e702SDimitry Andric }
18995517e702SDimitry Andric 
rewriteCodeBBTerminator(MachineBasicBlock * CodeBB,MachineBasicBlock * MergeBB,unsigned BBSelectReg)19005517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::rewriteCodeBBTerminator(MachineBasicBlock *CodeBB,
19015517e702SDimitry Andric                                                      MachineBasicBlock *MergeBB,
19025517e702SDimitry Andric                                                      unsigned BBSelectReg) {
19035517e702SDimitry Andric   MachineBasicBlock *TrueBB = nullptr;
19045517e702SDimitry Andric   MachineBasicBlock *FalseBB = nullptr;
19055517e702SDimitry Andric   SmallVector<MachineOperand, 1> Cond;
19065517e702SDimitry Andric   MachineBasicBlock *FallthroughBB = FallthroughMap[CodeBB];
19075517e702SDimitry Andric   TII->analyzeBranch(*CodeBB, TrueBB, FalseBB, Cond);
19085517e702SDimitry Andric 
19095517e702SDimitry Andric   const DebugLoc &DL = CodeBB->findDebugLoc(CodeBB->getFirstTerminator());
19105517e702SDimitry Andric 
19115517e702SDimitry Andric   if (FalseBB == nullptr && TrueBB == nullptr && FallthroughBB == nullptr) {
19125517e702SDimitry Andric     // This is an exit block, hence no successors. We will assign the
19135517e702SDimitry Andric     // bb select register to the entry block.
19145517e702SDimitry Andric     TII->materializeImmediate(*CodeBB, CodeBB->getFirstTerminator(), DL,
19155517e702SDimitry Andric                               BBSelectReg,
19165517e702SDimitry Andric                               CodeBB->getParent()->begin()->getNumber());
19175517e702SDimitry Andric     insertUnconditionalBranch(CodeBB, MergeBB, DL);
19185517e702SDimitry Andric     return;
19195517e702SDimitry Andric   }
19205517e702SDimitry Andric 
19215517e702SDimitry Andric   if (FalseBB == nullptr && TrueBB == nullptr) {
19225517e702SDimitry Andric     TrueBB = FallthroughBB;
19235517e702SDimitry Andric   } else if (TrueBB != nullptr) {
19245517e702SDimitry Andric     FalseBB =
19255517e702SDimitry Andric         (FallthroughBB && (FallthroughBB != TrueBB)) ? FallthroughBB : FalseBB;
19265517e702SDimitry Andric   }
19275517e702SDimitry Andric 
19285517e702SDimitry Andric   if ((TrueBB != nullptr && FalseBB == nullptr) || (TrueBB == FalseBB)) {
19295517e702SDimitry Andric     TII->materializeImmediate(*CodeBB, CodeBB->getFirstTerminator(), DL,
19305517e702SDimitry Andric                               BBSelectReg, TrueBB->getNumber());
19315517e702SDimitry Andric   } else {
19325517e702SDimitry Andric     const TargetRegisterClass *RegClass = MRI->getRegClass(BBSelectReg);
19335517e702SDimitry Andric     unsigned TrueBBReg = MRI->createVirtualRegister(RegClass);
19345517e702SDimitry Andric     unsigned FalseBBReg = MRI->createVirtualRegister(RegClass);
19355517e702SDimitry Andric     TII->materializeImmediate(*CodeBB, CodeBB->getFirstTerminator(), DL,
19365517e702SDimitry Andric                               TrueBBReg, TrueBB->getNumber());
19375517e702SDimitry Andric     TII->materializeImmediate(*CodeBB, CodeBB->getFirstTerminator(), DL,
19385517e702SDimitry Andric                               FalseBBReg, FalseBB->getNumber());
19395517e702SDimitry Andric     ensureCondIsNotKilled(Cond);
19405517e702SDimitry Andric     TII->insertVectorSelect(*CodeBB, CodeBB->getFirstTerminator(), DL,
19415517e702SDimitry Andric                             BBSelectReg, Cond, TrueBBReg, FalseBBReg);
19425517e702SDimitry Andric   }
19435517e702SDimitry Andric 
19445517e702SDimitry Andric   insertUnconditionalBranch(CodeBB, MergeBB, DL);
19455517e702SDimitry Andric }
19465517e702SDimitry Andric 
getDefInstr(unsigned Reg)19475517e702SDimitry Andric MachineInstr *AMDGPUMachineCFGStructurizer::getDefInstr(unsigned Reg) {
19485517e702SDimitry Andric   if (MRI->def_begin(Reg) == MRI->def_end()) {
1949*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Register "
1950*4ba319b5SDimitry Andric                       << printReg(Reg, MRI->getTargetRegisterInfo())
19515517e702SDimitry Andric                       << " has NO defs\n");
19525517e702SDimitry Andric   } else if (!MRI->hasOneDef(Reg)) {
1953*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Register "
1954*4ba319b5SDimitry Andric                       << printReg(Reg, MRI->getTargetRegisterInfo())
19555517e702SDimitry Andric                       << " has multiple defs\n");
1956*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "DEFS BEGIN:\n");
19575517e702SDimitry Andric     for (auto DI = MRI->def_begin(Reg), DE = MRI->def_end(); DI != DE; ++DI) {
1958*4ba319b5SDimitry Andric       LLVM_DEBUG(DI->getParent()->dump());
19595517e702SDimitry Andric     }
1960*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "DEFS END\n");
19615517e702SDimitry Andric   }
19625517e702SDimitry Andric 
19635517e702SDimitry Andric   assert(MRI->hasOneDef(Reg) && "Register has multiple definitions");
19645517e702SDimitry Andric   return (*(MRI->def_begin(Reg))).getParent();
19655517e702SDimitry Andric }
19665517e702SDimitry Andric 
insertChainedPHI(MachineBasicBlock * IfBB,MachineBasicBlock * CodeBB,MachineBasicBlock * MergeBB,LinearizedRegion * InnerRegion,unsigned DestReg,unsigned SourceReg)19675517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::insertChainedPHI(MachineBasicBlock *IfBB,
19685517e702SDimitry Andric                                               MachineBasicBlock *CodeBB,
19695517e702SDimitry Andric                                               MachineBasicBlock *MergeBB,
19705517e702SDimitry Andric                                               LinearizedRegion *InnerRegion,
19715517e702SDimitry Andric                                               unsigned DestReg,
19725517e702SDimitry Andric                                               unsigned SourceReg) {
19735517e702SDimitry Andric   // In this function we know we are part of a chain already, so we need
19745517e702SDimitry Andric   // to add the registers to the existing chain, and rename the register
19755517e702SDimitry Andric   // inside the region.
19765517e702SDimitry Andric   bool IsSingleBB = InnerRegion->getEntry() == InnerRegion->getExit();
19775517e702SDimitry Andric   MachineInstr *DefInstr = getDefInstr(SourceReg);
19785517e702SDimitry Andric   if (DefInstr->isPHI() && DefInstr->getParent() == CodeBB && IsSingleBB) {
19795517e702SDimitry Andric     // Handle the case where the def is a PHI-def inside a basic
19805517e702SDimitry Andric     // block, then we only need to do renaming. Special care needs to
19815517e702SDimitry Andric     // be taken if the PHI-def is part of an existing chain, or if a
19825517e702SDimitry Andric     // new one needs to be created.
19835517e702SDimitry Andric     InnerRegion->replaceRegisterInsideRegion(SourceReg, DestReg, true, MRI);
19845517e702SDimitry Andric 
19855517e702SDimitry Andric     // We collect all PHI Information, and if we are at the region entry,
19865517e702SDimitry Andric     // all PHIs will be removed, and then re-introduced if needed.
19875517e702SDimitry Andric     storePHILinearizationInfoDest(DestReg, *DefInstr);
19885517e702SDimitry Andric     // We have picked up all the information we need now and can remove
19895517e702SDimitry Andric     // the PHI
19905517e702SDimitry Andric     PHIInfo.removeSource(DestReg, SourceReg, CodeBB);
19915517e702SDimitry Andric     DefInstr->eraseFromParent();
19925517e702SDimitry Andric   } else {
19935517e702SDimitry Andric     // If this is not a phi-def, or it is a phi-def but from a linearized region
19945517e702SDimitry Andric     if (IsSingleBB && DefInstr->getParent() == InnerRegion->getEntry()) {
19955517e702SDimitry Andric       // If this is a single BB and the definition is in this block we
19965517e702SDimitry Andric       // need to replace any uses outside the region.
19975517e702SDimitry Andric       InnerRegion->replaceRegisterOutsideRegion(SourceReg, DestReg, false, MRI);
19985517e702SDimitry Andric     }
19995517e702SDimitry Andric     const TargetRegisterClass *RegClass = MRI->getRegClass(DestReg);
20005517e702SDimitry Andric     unsigned NextDestReg = MRI->createVirtualRegister(RegClass);
20015517e702SDimitry Andric     bool IsLastDef = PHIInfo.getNumSources(DestReg) == 1;
2002*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Insert Chained PHI\n");
20035517e702SDimitry Andric     insertMergePHI(IfBB, InnerRegion->getExit(), MergeBB, DestReg, NextDestReg,
20045517e702SDimitry Andric                    SourceReg, IsLastDef);
20055517e702SDimitry Andric 
20065517e702SDimitry Andric     PHIInfo.removeSource(DestReg, SourceReg, CodeBB);
20075517e702SDimitry Andric     if (IsLastDef) {
20085517e702SDimitry Andric       const DebugLoc &DL = IfBB->findDebugLoc(IfBB->getFirstTerminator());
20095517e702SDimitry Andric       TII->materializeImmediate(*IfBB, IfBB->getFirstTerminator(), DL,
20105517e702SDimitry Andric                                 NextDestReg, 0);
20115517e702SDimitry Andric       PHIInfo.deleteDef(DestReg);
20125517e702SDimitry Andric     } else {
20135517e702SDimitry Andric       PHIInfo.replaceDef(DestReg, NextDestReg);
20145517e702SDimitry Andric     }
20155517e702SDimitry Andric   }
20165517e702SDimitry Andric }
20175517e702SDimitry Andric 
containsDef(MachineBasicBlock * MBB,LinearizedRegion * InnerRegion,unsigned Register)20185517e702SDimitry Andric bool AMDGPUMachineCFGStructurizer::containsDef(MachineBasicBlock *MBB,
20195517e702SDimitry Andric                                          LinearizedRegion *InnerRegion,
20205517e702SDimitry Andric                                          unsigned Register) {
20215517e702SDimitry Andric   return getDefInstr(Register)->getParent() == MBB ||
20225517e702SDimitry Andric          InnerRegion->contains(getDefInstr(Register)->getParent());
20235517e702SDimitry Andric }
20245517e702SDimitry Andric 
rewriteLiveOutRegs(MachineBasicBlock * IfBB,MachineBasicBlock * CodeBB,MachineBasicBlock * MergeBB,LinearizedRegion * InnerRegion,LinearizedRegion * LRegion)20255517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::rewriteLiveOutRegs(MachineBasicBlock *IfBB,
20265517e702SDimitry Andric                                                 MachineBasicBlock *CodeBB,
20275517e702SDimitry Andric                                                 MachineBasicBlock *MergeBB,
20285517e702SDimitry Andric                                                 LinearizedRegion *InnerRegion,
20295517e702SDimitry Andric                                                 LinearizedRegion *LRegion) {
20305517e702SDimitry Andric   DenseSet<unsigned> *LiveOuts = InnerRegion->getLiveOuts();
20315517e702SDimitry Andric   SmallVector<unsigned, 4> OldLiveOuts;
20325517e702SDimitry Andric   bool IsSingleBB = InnerRegion->getEntry() == InnerRegion->getExit();
20335517e702SDimitry Andric   for (auto OLI : *LiveOuts) {
20345517e702SDimitry Andric     OldLiveOuts.push_back(OLI);
20355517e702SDimitry Andric   }
20365517e702SDimitry Andric 
20375517e702SDimitry Andric   for (auto LI : OldLiveOuts) {
2038*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "LiveOut: " << printReg(LI, TRI));
20395517e702SDimitry Andric     if (!containsDef(CodeBB, InnerRegion, LI) ||
20405517e702SDimitry Andric         (!IsSingleBB && (getDefInstr(LI)->getParent() == LRegion->getExit()))) {
20415517e702SDimitry Andric       // If the register simly lives through the CodeBB, we don't have
20425517e702SDimitry Andric       // to rewrite anything since the register is not defined in this
20435517e702SDimitry Andric       // part of the code.
2044*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "- through");
20455517e702SDimitry Andric       continue;
20465517e702SDimitry Andric     }
2047*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "\n");
20485517e702SDimitry Andric     unsigned Reg = LI;
20495517e702SDimitry Andric     if (/*!PHIInfo.isSource(Reg) &&*/ Reg != InnerRegion->getBBSelectRegOut()) {
20505517e702SDimitry Andric       // If the register is live out, we do want to create a phi,
20515517e702SDimitry Andric       // unless it is from the Exit block, becasuse in that case there
20525517e702SDimitry Andric       // is already a PHI, and no need to create a new one.
20535517e702SDimitry Andric 
20545517e702SDimitry Andric       // If the register is just a live out def and not part of a phi
20555517e702SDimitry Andric       // chain, we need to create a PHI node to handle the if region,
20565517e702SDimitry Andric       // and replace all uses outside of the region with the new dest
20575517e702SDimitry Andric       // register, unless it is the outgoing BB select register. We have
20585517e702SDimitry Andric       // already creaed phi nodes for these.
20595517e702SDimitry Andric       const TargetRegisterClass *RegClass = MRI->getRegClass(Reg);
20605517e702SDimitry Andric       unsigned PHIDestReg = MRI->createVirtualRegister(RegClass);
20615517e702SDimitry Andric       unsigned IfSourceReg = MRI->createVirtualRegister(RegClass);
20625517e702SDimitry Andric       // Create initializer, this value is never used, but is needed
20635517e702SDimitry Andric       // to satisfy SSA.
2064*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Initializer for reg: " << printReg(Reg) << "\n");
20655517e702SDimitry Andric       TII->materializeImmediate(*IfBB, IfBB->getFirstTerminator(), DebugLoc(),
20665517e702SDimitry Andric                         IfSourceReg, 0);
20675517e702SDimitry Andric 
20685517e702SDimitry Andric       InnerRegion->replaceRegisterOutsideRegion(Reg, PHIDestReg, true, MRI);
2069*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Insert Non-Chained Live out PHI\n");
20705517e702SDimitry Andric       insertMergePHI(IfBB, InnerRegion->getExit(), MergeBB, PHIDestReg,
20715517e702SDimitry Andric                      IfSourceReg, Reg, true);
20725517e702SDimitry Andric     }
20735517e702SDimitry Andric   }
20745517e702SDimitry Andric 
20755517e702SDimitry Andric   // Handle the chained definitions in PHIInfo, checking if this basic block
20765517e702SDimitry Andric   // is a source block for a definition.
20775517e702SDimitry Andric   SmallVector<unsigned, 4> Sources;
20785517e702SDimitry Andric   if (PHIInfo.findSourcesFromMBB(CodeBB, Sources)) {
2079*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Inserting PHI Live Out from "
2080*4ba319b5SDimitry Andric                       << printMBBReference(*CodeBB) << "\n");
20815517e702SDimitry Andric     for (auto SI : Sources) {
20825517e702SDimitry Andric       unsigned DestReg;
20835517e702SDimitry Andric       PHIInfo.findDest(SI, CodeBB, DestReg);
20845517e702SDimitry Andric       insertChainedPHI(IfBB, CodeBB, MergeBB, InnerRegion, DestReg, SI);
20855517e702SDimitry Andric     }
2086*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Insertion done.\n");
20875517e702SDimitry Andric   }
20885517e702SDimitry Andric 
2089*4ba319b5SDimitry Andric   LLVM_DEBUG(PHIInfo.dump(MRI));
20905517e702SDimitry Andric }
20915517e702SDimitry Andric 
prunePHIInfo(MachineBasicBlock * MBB)20925517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::prunePHIInfo(MachineBasicBlock *MBB) {
2093*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Before PHI Prune\n");
2094*4ba319b5SDimitry Andric   LLVM_DEBUG(PHIInfo.dump(MRI));
20955517e702SDimitry Andric   SmallVector<std::tuple<unsigned, unsigned, MachineBasicBlock *>, 4>
20965517e702SDimitry Andric       ElimiatedSources;
20975517e702SDimitry Andric   for (auto DRI = PHIInfo.dests_begin(), DE = PHIInfo.dests_end(); DRI != DE;
20985517e702SDimitry Andric        ++DRI) {
20995517e702SDimitry Andric 
21005517e702SDimitry Andric     unsigned DestReg = *DRI;
21015517e702SDimitry Andric     auto SE = PHIInfo.sources_end(DestReg);
21025517e702SDimitry Andric 
21035517e702SDimitry Andric     bool MBBContainsPHISource = false;
21045517e702SDimitry Andric     // Check if there is a PHI source in this MBB
21055517e702SDimitry Andric     for (auto SRI = PHIInfo.sources_begin(DestReg); SRI != SE; ++SRI) {
21065517e702SDimitry Andric       unsigned SourceReg = (*SRI).first;
21075517e702SDimitry Andric       MachineOperand *Def = &(*(MRI->def_begin(SourceReg)));
21085517e702SDimitry Andric       if (Def->getParent()->getParent() == MBB) {
21095517e702SDimitry Andric         MBBContainsPHISource = true;
21105517e702SDimitry Andric       }
21115517e702SDimitry Andric     }
21125517e702SDimitry Andric 
21135517e702SDimitry Andric     // If so, all other sources are useless since we know this block
21145517e702SDimitry Andric     // is always executed when the region is executed.
21155517e702SDimitry Andric     if (MBBContainsPHISource) {
21165517e702SDimitry Andric       for (auto SRI = PHIInfo.sources_begin(DestReg); SRI != SE; ++SRI) {
21175517e702SDimitry Andric         PHILinearize::PHISourceT Source = *SRI;
21185517e702SDimitry Andric         unsigned SourceReg = Source.first;
21195517e702SDimitry Andric         MachineBasicBlock *SourceMBB = Source.second;
21205517e702SDimitry Andric         MachineOperand *Def = &(*(MRI->def_begin(SourceReg)));
21215517e702SDimitry Andric         if (Def->getParent()->getParent() != MBB) {
21225517e702SDimitry Andric           ElimiatedSources.push_back(
21235517e702SDimitry Andric               std::make_tuple(DestReg, SourceReg, SourceMBB));
21245517e702SDimitry Andric         }
21255517e702SDimitry Andric       }
21265517e702SDimitry Andric     }
21275517e702SDimitry Andric   }
21285517e702SDimitry Andric 
21295517e702SDimitry Andric   // Remove the PHI sources that are in the given MBB
21305517e702SDimitry Andric   for (auto &SourceInfo : ElimiatedSources) {
21315517e702SDimitry Andric     PHIInfo.removeSource(std::get<0>(SourceInfo), std::get<1>(SourceInfo),
21325517e702SDimitry Andric                          std::get<2>(SourceInfo));
21335517e702SDimitry Andric   }
2134*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "After PHI Prune\n");
2135*4ba319b5SDimitry Andric   LLVM_DEBUG(PHIInfo.dump(MRI));
21365517e702SDimitry Andric }
21375517e702SDimitry Andric 
createEntryPHI(LinearizedRegion * CurrentRegion,unsigned DestReg)21385517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::createEntryPHI(LinearizedRegion *CurrentRegion,
21395517e702SDimitry Andric                                             unsigned DestReg) {
21405517e702SDimitry Andric   MachineBasicBlock *Entry = CurrentRegion->getEntry();
21415517e702SDimitry Andric   MachineBasicBlock *Exit = CurrentRegion->getExit();
21425517e702SDimitry Andric 
2143*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "RegionExit: " << Exit->getNumber() << " Pred: "
2144*4ba319b5SDimitry Andric                     << (*(Entry->pred_begin()))->getNumber() << "\n");
21455517e702SDimitry Andric 
21465517e702SDimitry Andric   int NumSources = 0;
21475517e702SDimitry Andric   auto SE = PHIInfo.sources_end(DestReg);
21485517e702SDimitry Andric 
21495517e702SDimitry Andric   for (auto SRI = PHIInfo.sources_begin(DestReg); SRI != SE; ++SRI) {
21505517e702SDimitry Andric     NumSources++;
21515517e702SDimitry Andric   }
21525517e702SDimitry Andric 
21535517e702SDimitry Andric   if (NumSources == 1) {
21545517e702SDimitry Andric     auto SRI = PHIInfo.sources_begin(DestReg);
21555517e702SDimitry Andric     unsigned SourceReg = (*SRI).first;
21565517e702SDimitry Andric     replaceRegisterWith(DestReg, SourceReg);
21575517e702SDimitry Andric   } else {
21585517e702SDimitry Andric     const DebugLoc &DL = Entry->findDebugLoc(Entry->begin());
21595517e702SDimitry Andric     MachineInstrBuilder MIB = BuildMI(*Entry, Entry->instr_begin(), DL,
21605517e702SDimitry Andric                                       TII->get(TargetOpcode::PHI), DestReg);
2161*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Entry PHI " << printReg(DestReg, TRI) << " = PHI(");
21625517e702SDimitry Andric 
21635517e702SDimitry Andric     unsigned CurrentBackedgeReg = 0;
21645517e702SDimitry Andric 
21655517e702SDimitry Andric     for (auto SRI = PHIInfo.sources_begin(DestReg); SRI != SE; ++SRI) {
21665517e702SDimitry Andric       unsigned SourceReg = (*SRI).first;
21675517e702SDimitry Andric 
21685517e702SDimitry Andric       if (CurrentRegion->contains((*SRI).second)) {
21695517e702SDimitry Andric         if (CurrentBackedgeReg == 0) {
21705517e702SDimitry Andric           CurrentBackedgeReg = SourceReg;
21715517e702SDimitry Andric         } else {
21725517e702SDimitry Andric           MachineInstr *PHIDefInstr = getDefInstr(SourceReg);
21735517e702SDimitry Andric           MachineBasicBlock *PHIDefMBB = PHIDefInstr->getParent();
21745517e702SDimitry Andric           const TargetRegisterClass *RegClass =
21755517e702SDimitry Andric               MRI->getRegClass(CurrentBackedgeReg);
21765517e702SDimitry Andric           unsigned NewBackedgeReg = MRI->createVirtualRegister(RegClass);
21775517e702SDimitry Andric           MachineInstrBuilder BackedgePHI =
21785517e702SDimitry Andric               BuildMI(*PHIDefMBB, PHIDefMBB->instr_begin(), DL,
21795517e702SDimitry Andric                       TII->get(TargetOpcode::PHI), NewBackedgeReg);
21805517e702SDimitry Andric           BackedgePHI.addReg(CurrentBackedgeReg);
21815517e702SDimitry Andric           BackedgePHI.addMBB(getPHIPred(*PHIDefInstr, 0));
21825517e702SDimitry Andric           BackedgePHI.addReg(getPHISourceReg(*PHIDefInstr, 1));
21835517e702SDimitry Andric           BackedgePHI.addMBB((*SRI).second);
21845517e702SDimitry Andric           CurrentBackedgeReg = NewBackedgeReg;
2185*4ba319b5SDimitry Andric           LLVM_DEBUG(dbgs()
2186*4ba319b5SDimitry Andric                      << "Inserting backedge PHI: "
21872cab237bSDimitry Andric                      << printReg(NewBackedgeReg, TRI) << " = PHI("
21882cab237bSDimitry Andric                      << printReg(CurrentBackedgeReg, TRI) << ", "
2189*4ba319b5SDimitry Andric                      << printMBBReference(*getPHIPred(*PHIDefInstr, 0)) << ", "
2190*4ba319b5SDimitry Andric                      << printReg(getPHISourceReg(*PHIDefInstr, 1), TRI) << ", "
2191*4ba319b5SDimitry Andric                      << printMBBReference(*(*SRI).second));
21925517e702SDimitry Andric         }
21935517e702SDimitry Andric       } else {
21945517e702SDimitry Andric         MIB.addReg(SourceReg);
21955517e702SDimitry Andric         MIB.addMBB((*SRI).second);
2196*4ba319b5SDimitry Andric         LLVM_DEBUG(dbgs() << printReg(SourceReg, TRI) << ", "
21972cab237bSDimitry Andric                           << printMBBReference(*(*SRI).second) << ", ");
21985517e702SDimitry Andric       }
21995517e702SDimitry Andric     }
22005517e702SDimitry Andric 
22015517e702SDimitry Andric     // Add the final backedge register source to the entry phi
22025517e702SDimitry Andric     if (CurrentBackedgeReg != 0) {
22035517e702SDimitry Andric       MIB.addReg(CurrentBackedgeReg);
22045517e702SDimitry Andric       MIB.addMBB(Exit);
2205*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << printReg(CurrentBackedgeReg, TRI) << ", "
22062cab237bSDimitry Andric                         << printMBBReference(*Exit) << ")\n");
22075517e702SDimitry Andric     } else {
2208*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << ")\n");
22095517e702SDimitry Andric     }
22105517e702SDimitry Andric   }
22115517e702SDimitry Andric }
22125517e702SDimitry Andric 
createEntryPHIs(LinearizedRegion * CurrentRegion)22135517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::createEntryPHIs(LinearizedRegion *CurrentRegion) {
2214*4ba319b5SDimitry Andric   LLVM_DEBUG(PHIInfo.dump(MRI));
22155517e702SDimitry Andric 
22165517e702SDimitry Andric   for (auto DRI = PHIInfo.dests_begin(), DE = PHIInfo.dests_end(); DRI != DE;
22175517e702SDimitry Andric        ++DRI) {
22185517e702SDimitry Andric 
22195517e702SDimitry Andric     unsigned DestReg = *DRI;
22205517e702SDimitry Andric     createEntryPHI(CurrentRegion, DestReg);
22215517e702SDimitry Andric   }
22225517e702SDimitry Andric   PHIInfo.clear();
22235517e702SDimitry Andric }
22245517e702SDimitry Andric 
replaceRegisterWith(unsigned Register,unsigned NewRegister)22255517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::replaceRegisterWith(unsigned Register,
22265517e702SDimitry Andric                                                  unsigned NewRegister) {
22275517e702SDimitry Andric   assert(Register != NewRegister && "Cannot replace a reg with itself");
22285517e702SDimitry Andric 
22295517e702SDimitry Andric   for (MachineRegisterInfo::reg_iterator I = MRI->reg_begin(Register),
22305517e702SDimitry Andric                                          E = MRI->reg_end();
22315517e702SDimitry Andric        I != E;) {
22325517e702SDimitry Andric     MachineOperand &O = *I;
22335517e702SDimitry Andric     ++I;
22345517e702SDimitry Andric     if (TargetRegisterInfo::isPhysicalRegister(NewRegister)) {
2235*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Trying to substitute physical register: "
22362cab237bSDimitry Andric                         << printReg(NewRegister, MRI->getTargetRegisterInfo())
22375517e702SDimitry Andric                         << "\n");
22385517e702SDimitry Andric       llvm_unreachable("Cannot substitute physical registers");
22395517e702SDimitry Andric       // We don't handle physical registers, but if we need to
22405517e702SDimitry Andric       // in the future This is how we do it:
22415517e702SDimitry Andric       // O.substPhysReg(NewRegister, *TRI);
22425517e702SDimitry Andric     } else {
2243*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Replacing register: "
22442cab237bSDimitry Andric                         << printReg(Register, MRI->getTargetRegisterInfo())
22455517e702SDimitry Andric                         << " with "
22462cab237bSDimitry Andric                         << printReg(NewRegister, MRI->getTargetRegisterInfo())
22475517e702SDimitry Andric                         << "\n");
22485517e702SDimitry Andric       O.setReg(NewRegister);
22495517e702SDimitry Andric     }
22505517e702SDimitry Andric   }
22515517e702SDimitry Andric   PHIInfo.deleteDef(Register);
22525517e702SDimitry Andric 
22535517e702SDimitry Andric   getRegionMRT()->replaceLiveOutReg(Register, NewRegister);
22545517e702SDimitry Andric 
2255*4ba319b5SDimitry Andric   LLVM_DEBUG(PHIInfo.dump(MRI));
22565517e702SDimitry Andric }
22575517e702SDimitry Andric 
resolvePHIInfos(MachineBasicBlock * FunctionEntry)22585517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::resolvePHIInfos(MachineBasicBlock *FunctionEntry) {
2259*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Resolve PHI Infos\n");
2260*4ba319b5SDimitry Andric   LLVM_DEBUG(PHIInfo.dump(MRI));
22615517e702SDimitry Andric   for (auto DRI = PHIInfo.dests_begin(), DE = PHIInfo.dests_end(); DRI != DE;
22625517e702SDimitry Andric        ++DRI) {
22635517e702SDimitry Andric     unsigned DestReg = *DRI;
2264*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "DestReg: " << printReg(DestReg, TRI) << "\n");
22655517e702SDimitry Andric     auto SRI = PHIInfo.sources_begin(DestReg);
22665517e702SDimitry Andric     unsigned SourceReg = (*SRI).first;
2267*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "DestReg: " << printReg(DestReg, TRI)
22682cab237bSDimitry Andric                       << " SourceReg: " << printReg(SourceReg, TRI) << "\n");
22695517e702SDimitry Andric 
22705517e702SDimitry Andric     assert(PHIInfo.sources_end(DestReg) == ++SRI &&
22715517e702SDimitry Andric            "More than one phi source in entry node");
22725517e702SDimitry Andric     replaceRegisterWith(DestReg, SourceReg);
22735517e702SDimitry Andric   }
22745517e702SDimitry Andric }
22755517e702SDimitry Andric 
isFunctionEntryBlock(MachineBasicBlock * MBB)22765517e702SDimitry Andric static bool isFunctionEntryBlock(MachineBasicBlock *MBB) {
22775517e702SDimitry Andric   return ((&(*(MBB->getParent()->begin()))) == MBB);
22785517e702SDimitry Andric }
22795517e702SDimitry Andric 
createIfRegion(MachineBasicBlock * MergeBB,MachineBasicBlock * CodeBB,LinearizedRegion * CurrentRegion,unsigned BBSelectRegIn,unsigned BBSelectRegOut)22805517e702SDimitry Andric MachineBasicBlock *AMDGPUMachineCFGStructurizer::createIfRegion(
22815517e702SDimitry Andric     MachineBasicBlock *MergeBB, MachineBasicBlock *CodeBB,
22825517e702SDimitry Andric     LinearizedRegion *CurrentRegion, unsigned BBSelectRegIn,
22835517e702SDimitry Andric     unsigned BBSelectRegOut) {
22845517e702SDimitry Andric   if (isFunctionEntryBlock(CodeBB) && !CurrentRegion->getHasLoop()) {
22855517e702SDimitry Andric     // Handle non-loop function entry block.
22865517e702SDimitry Andric     // We need to allow loops to the entry block and then
22875517e702SDimitry Andric     rewriteCodeBBTerminator(CodeBB, MergeBB, BBSelectRegOut);
22885517e702SDimitry Andric     resolvePHIInfos(CodeBB);
22895517e702SDimitry Andric     removeExternalCFGSuccessors(CodeBB);
22905517e702SDimitry Andric     CodeBB->addSuccessor(MergeBB);
22915517e702SDimitry Andric     CurrentRegion->addMBB(CodeBB);
22925517e702SDimitry Andric     return nullptr;
22935517e702SDimitry Andric   }
22945517e702SDimitry Andric   if (CurrentRegion->getEntry() == CodeBB && !CurrentRegion->getHasLoop()) {
22955517e702SDimitry Andric     // Handle non-loop region entry block.
22965517e702SDimitry Andric     MachineFunction *MF = MergeBB->getParent();
22975517e702SDimitry Andric     auto MergeIter = MergeBB->getIterator();
22985517e702SDimitry Andric     auto CodeBBStartIter = CodeBB->getIterator();
22995517e702SDimitry Andric     auto CodeBBEndIter = ++(CodeBB->getIterator());
23005517e702SDimitry Andric     if (CodeBBEndIter != MergeIter) {
23015517e702SDimitry Andric       MF->splice(MergeIter, CodeBBStartIter, CodeBBEndIter);
23025517e702SDimitry Andric     }
23035517e702SDimitry Andric     rewriteCodeBBTerminator(CodeBB, MergeBB, BBSelectRegOut);
23045517e702SDimitry Andric     prunePHIInfo(CodeBB);
23055517e702SDimitry Andric     createEntryPHIs(CurrentRegion);
23065517e702SDimitry Andric     removeExternalCFGSuccessors(CodeBB);
23075517e702SDimitry Andric     CodeBB->addSuccessor(MergeBB);
23085517e702SDimitry Andric     CurrentRegion->addMBB(CodeBB);
23095517e702SDimitry Andric     return nullptr;
23105517e702SDimitry Andric   } else {
23115517e702SDimitry Andric     // Handle internal block.
23125517e702SDimitry Andric     const TargetRegisterClass *RegClass = MRI->getRegClass(BBSelectRegIn);
23135517e702SDimitry Andric     unsigned CodeBBSelectReg = MRI->createVirtualRegister(RegClass);
23145517e702SDimitry Andric     rewriteCodeBBTerminator(CodeBB, MergeBB, CodeBBSelectReg);
23155517e702SDimitry Andric     bool IsRegionEntryBB = CurrentRegion->getEntry() == CodeBB;
23165517e702SDimitry Andric     MachineBasicBlock *IfBB = createIfBlock(MergeBB, CodeBB, CodeBB, CodeBB,
23175517e702SDimitry Andric                                             BBSelectRegIn, IsRegionEntryBB);
23185517e702SDimitry Andric     CurrentRegion->addMBB(IfBB);
23195517e702SDimitry Andric     // If this is the entry block we need to make the If block the new
23205517e702SDimitry Andric     // linearized region entry.
23215517e702SDimitry Andric     if (IsRegionEntryBB) {
23225517e702SDimitry Andric       CurrentRegion->setEntry(IfBB);
23235517e702SDimitry Andric 
23245517e702SDimitry Andric       if (CurrentRegion->getHasLoop()) {
23255517e702SDimitry Andric         MachineBasicBlock *RegionExit = CurrentRegion->getExit();
23265517e702SDimitry Andric         MachineBasicBlock *ETrueBB = nullptr;
23275517e702SDimitry Andric         MachineBasicBlock *EFalseBB = nullptr;
23285517e702SDimitry Andric         SmallVector<MachineOperand, 1> ECond;
23295517e702SDimitry Andric 
23305517e702SDimitry Andric         const DebugLoc &DL = DebugLoc();
23315517e702SDimitry Andric         TII->analyzeBranch(*RegionExit, ETrueBB, EFalseBB, ECond);
23325517e702SDimitry Andric         TII->removeBranch(*RegionExit);
23335517e702SDimitry Andric 
23345517e702SDimitry Andric         // We need to create a backedge if there is a loop
23355517e702SDimitry Andric         unsigned Reg = TII->insertNE(
23365517e702SDimitry Andric             RegionExit, RegionExit->instr_end(), DL,
23375517e702SDimitry Andric             CurrentRegion->getRegionMRT()->getInnerOutputRegister(),
23385517e702SDimitry Andric             CurrentRegion->getRegionMRT()->getEntry()->getNumber());
23395517e702SDimitry Andric         MachineOperand RegOp =
23405517e702SDimitry Andric             MachineOperand::CreateReg(Reg, false, false, true);
23415517e702SDimitry Andric         ArrayRef<MachineOperand> Cond(RegOp);
2342*4ba319b5SDimitry Andric         LLVM_DEBUG(dbgs() << "RegionExitReg: ");
2343*4ba319b5SDimitry Andric         LLVM_DEBUG(Cond[0].print(dbgs(), TRI));
2344*4ba319b5SDimitry Andric         LLVM_DEBUG(dbgs() << "\n");
23455517e702SDimitry Andric         TII->insertBranch(*RegionExit, CurrentRegion->getEntry(), RegionExit,
23465517e702SDimitry Andric                           Cond, DebugLoc());
23475517e702SDimitry Andric         RegionExit->addSuccessor(CurrentRegion->getEntry());
23485517e702SDimitry Andric       }
23495517e702SDimitry Andric     }
23505517e702SDimitry Andric     CurrentRegion->addMBB(CodeBB);
23515517e702SDimitry Andric     LinearizedRegion InnerRegion(CodeBB, MRI, TRI, PHIInfo);
23525517e702SDimitry Andric 
23535517e702SDimitry Andric     InnerRegion.setParent(CurrentRegion);
2354*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Insert BB Select PHI (BB)\n");
23555517e702SDimitry Andric     insertMergePHI(IfBB, CodeBB, MergeBB, BBSelectRegOut, BBSelectRegIn,
23565517e702SDimitry Andric                    CodeBBSelectReg);
23575517e702SDimitry Andric     InnerRegion.addMBB(MergeBB);
23585517e702SDimitry Andric 
2359*4ba319b5SDimitry Andric     LLVM_DEBUG(InnerRegion.print(dbgs(), TRI));
23605517e702SDimitry Andric     rewriteLiveOutRegs(IfBB, CodeBB, MergeBB, &InnerRegion, CurrentRegion);
23615517e702SDimitry Andric     extractKilledPHIs(CodeBB);
23625517e702SDimitry Andric     if (IsRegionEntryBB) {
23635517e702SDimitry Andric       createEntryPHIs(CurrentRegion);
23645517e702SDimitry Andric     }
23655517e702SDimitry Andric     return IfBB;
23665517e702SDimitry Andric   }
23675517e702SDimitry Andric }
23685517e702SDimitry Andric 
createIfRegion(MachineBasicBlock * MergeBB,LinearizedRegion * InnerRegion,LinearizedRegion * CurrentRegion,MachineBasicBlock * SelectBB,unsigned BBSelectRegIn,unsigned BBSelectRegOut)23695517e702SDimitry Andric MachineBasicBlock *AMDGPUMachineCFGStructurizer::createIfRegion(
23705517e702SDimitry Andric     MachineBasicBlock *MergeBB, LinearizedRegion *InnerRegion,
23715517e702SDimitry Andric     LinearizedRegion *CurrentRegion, MachineBasicBlock *SelectBB,
23725517e702SDimitry Andric     unsigned BBSelectRegIn, unsigned BBSelectRegOut) {
23735517e702SDimitry Andric   unsigned CodeBBSelectReg =
23745517e702SDimitry Andric       InnerRegion->getRegionMRT()->getInnerOutputRegister();
23755517e702SDimitry Andric   MachineBasicBlock *CodeEntryBB = InnerRegion->getEntry();
23765517e702SDimitry Andric   MachineBasicBlock *CodeExitBB = InnerRegion->getExit();
23775517e702SDimitry Andric   MachineBasicBlock *IfBB = createIfBlock(MergeBB, CodeEntryBB, CodeExitBB,
23785517e702SDimitry Andric                                           SelectBB, BBSelectRegIn, true);
23795517e702SDimitry Andric   CurrentRegion->addMBB(IfBB);
23805517e702SDimitry Andric   bool isEntry = CurrentRegion->getEntry() == InnerRegion->getEntry();
23815517e702SDimitry Andric   if (isEntry) {
23825517e702SDimitry Andric 
23835517e702SDimitry Andric     if (CurrentRegion->getHasLoop()) {
23845517e702SDimitry Andric       MachineBasicBlock *RegionExit = CurrentRegion->getExit();
23855517e702SDimitry Andric       MachineBasicBlock *ETrueBB = nullptr;
23865517e702SDimitry Andric       MachineBasicBlock *EFalseBB = nullptr;
23875517e702SDimitry Andric       SmallVector<MachineOperand, 1> ECond;
23885517e702SDimitry Andric 
23895517e702SDimitry Andric       const DebugLoc &DL = DebugLoc();
23905517e702SDimitry Andric       TII->analyzeBranch(*RegionExit, ETrueBB, EFalseBB, ECond);
23915517e702SDimitry Andric       TII->removeBranch(*RegionExit);
23925517e702SDimitry Andric 
23935517e702SDimitry Andric       // We need to create a backedge if there is a loop
23945517e702SDimitry Andric       unsigned Reg =
23955517e702SDimitry Andric           TII->insertNE(RegionExit, RegionExit->instr_end(), DL,
23965517e702SDimitry Andric                         CurrentRegion->getRegionMRT()->getInnerOutputRegister(),
23975517e702SDimitry Andric                         CurrentRegion->getRegionMRT()->getEntry()->getNumber());
23985517e702SDimitry Andric       MachineOperand RegOp = MachineOperand::CreateReg(Reg, false, false, true);
23995517e702SDimitry Andric       ArrayRef<MachineOperand> Cond(RegOp);
2400*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "RegionExitReg: ");
2401*4ba319b5SDimitry Andric       LLVM_DEBUG(Cond[0].print(dbgs(), TRI));
2402*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "\n");
24035517e702SDimitry Andric       TII->insertBranch(*RegionExit, CurrentRegion->getEntry(), RegionExit,
24045517e702SDimitry Andric                         Cond, DebugLoc());
24055517e702SDimitry Andric       RegionExit->addSuccessor(IfBB);
24065517e702SDimitry Andric     }
24075517e702SDimitry Andric   }
24085517e702SDimitry Andric   CurrentRegion->addMBBs(InnerRegion);
2409*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Insert BB Select PHI (region)\n");
24105517e702SDimitry Andric   insertMergePHI(IfBB, CodeExitBB, MergeBB, BBSelectRegOut, BBSelectRegIn,
24115517e702SDimitry Andric                  CodeBBSelectReg);
24125517e702SDimitry Andric 
24135517e702SDimitry Andric   rewriteLiveOutRegs(IfBB, /* CodeEntryBB */ CodeExitBB, MergeBB, InnerRegion,
24145517e702SDimitry Andric                      CurrentRegion);
24155517e702SDimitry Andric 
24165517e702SDimitry Andric   rewriteRegionEntryPHIs(InnerRegion, IfBB);
24175517e702SDimitry Andric 
24185517e702SDimitry Andric   if (isEntry) {
24195517e702SDimitry Andric     CurrentRegion->setEntry(IfBB);
24205517e702SDimitry Andric   }
24215517e702SDimitry Andric 
24225517e702SDimitry Andric   if (isEntry) {
24235517e702SDimitry Andric     createEntryPHIs(CurrentRegion);
24245517e702SDimitry Andric   }
24255517e702SDimitry Andric 
24265517e702SDimitry Andric   return IfBB;
24275517e702SDimitry Andric }
24285517e702SDimitry Andric 
splitLoopPHI(MachineInstr & PHI,MachineBasicBlock * Entry,MachineBasicBlock * EntrySucc,LinearizedRegion * LRegion)24295517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::splitLoopPHI(MachineInstr &PHI,
24305517e702SDimitry Andric                                           MachineBasicBlock *Entry,
24315517e702SDimitry Andric                                           MachineBasicBlock *EntrySucc,
24325517e702SDimitry Andric                                           LinearizedRegion *LRegion) {
24335517e702SDimitry Andric   SmallVector<unsigned, 2> PHIRegionIndices;
24345517e702SDimitry Andric   getPHIRegionIndices(LRegion, PHI, PHIRegionIndices);
24355517e702SDimitry Andric 
24365517e702SDimitry Andric   assert(PHIRegionIndices.size() == 1);
24375517e702SDimitry Andric 
24385517e702SDimitry Andric   unsigned RegionIndex = PHIRegionIndices[0];
24395517e702SDimitry Andric   unsigned RegionSourceReg = getPHISourceReg(PHI, RegionIndex);
24405517e702SDimitry Andric   MachineBasicBlock *RegionSourceMBB = getPHIPred(PHI, RegionIndex);
24415517e702SDimitry Andric   unsigned PHIDest = getPHIDestReg(PHI);
24425517e702SDimitry Andric   unsigned PHISource = PHIDest;
24435517e702SDimitry Andric   unsigned ReplaceReg;
24445517e702SDimitry Andric 
24455517e702SDimitry Andric   if (shrinkPHI(PHI, PHIRegionIndices, &ReplaceReg)) {
24465517e702SDimitry Andric     PHISource = ReplaceReg;
24475517e702SDimitry Andric   }
24485517e702SDimitry Andric 
24495517e702SDimitry Andric   const TargetRegisterClass *RegClass = MRI->getRegClass(PHIDest);
24505517e702SDimitry Andric   unsigned NewDestReg = MRI->createVirtualRegister(RegClass);
24515517e702SDimitry Andric   LRegion->replaceRegisterInsideRegion(PHIDest, NewDestReg, false, MRI);
24525517e702SDimitry Andric   MachineInstrBuilder MIB =
24535517e702SDimitry Andric       BuildMI(*EntrySucc, EntrySucc->instr_begin(), PHI.getDebugLoc(),
24545517e702SDimitry Andric               TII->get(TargetOpcode::PHI), NewDestReg);
2455*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Split Entry PHI " << printReg(NewDestReg, TRI)
2456*4ba319b5SDimitry Andric                     << " = PHI(");
24575517e702SDimitry Andric   MIB.addReg(PHISource);
24585517e702SDimitry Andric   MIB.addMBB(Entry);
2459*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << printReg(PHISource, TRI) << ", "
24602cab237bSDimitry Andric                     << printMBBReference(*Entry));
24615517e702SDimitry Andric   MIB.addReg(RegionSourceReg);
24625517e702SDimitry Andric   MIB.addMBB(RegionSourceMBB);
2463*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << " ," << printReg(RegionSourceReg, TRI) << ", "
24642cab237bSDimitry Andric                     << printMBBReference(*RegionSourceMBB) << ")\n");
24655517e702SDimitry Andric }
24665517e702SDimitry Andric 
splitLoopPHIs(MachineBasicBlock * Entry,MachineBasicBlock * EntrySucc,LinearizedRegion * LRegion)24675517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::splitLoopPHIs(MachineBasicBlock *Entry,
24685517e702SDimitry Andric                                            MachineBasicBlock *EntrySucc,
24695517e702SDimitry Andric                                            LinearizedRegion *LRegion) {
24705517e702SDimitry Andric   SmallVector<MachineInstr *, 2> PHIs;
24715517e702SDimitry Andric   collectPHIs(Entry, PHIs);
24725517e702SDimitry Andric 
24735517e702SDimitry Andric   for (auto PHII : PHIs) {
24745517e702SDimitry Andric     splitLoopPHI(*PHII, Entry, EntrySucc, LRegion);
24755517e702SDimitry Andric   }
24765517e702SDimitry Andric }
24775517e702SDimitry Andric 
24785517e702SDimitry Andric // Split the exit block so that we can insert a end control flow
24795517e702SDimitry Andric MachineBasicBlock *
splitExit(LinearizedRegion * LRegion)24805517e702SDimitry Andric AMDGPUMachineCFGStructurizer::splitExit(LinearizedRegion *LRegion) {
24815517e702SDimitry Andric   auto MRTRegion = LRegion->getRegionMRT();
24825517e702SDimitry Andric   auto Exit = LRegion->getExit();
24835517e702SDimitry Andric   auto MF = Exit->getParent();
24845517e702SDimitry Andric   auto Succ = MRTRegion->getSucc();
24855517e702SDimitry Andric 
24865517e702SDimitry Andric   auto NewExit = MF->CreateMachineBasicBlock();
24875517e702SDimitry Andric   auto AfterExitIter = Exit->getIterator();
24885517e702SDimitry Andric   AfterExitIter++;
24895517e702SDimitry Andric   MF->insert(AfterExitIter, NewExit);
24905517e702SDimitry Andric   Exit->removeSuccessor(Succ);
24915517e702SDimitry Andric   Exit->addSuccessor(NewExit);
24925517e702SDimitry Andric   NewExit->addSuccessor(Succ);
24935517e702SDimitry Andric   insertUnconditionalBranch(NewExit, Succ);
24945517e702SDimitry Andric   LRegion->addMBB(NewExit);
24955517e702SDimitry Andric   LRegion->setExit(NewExit);
24965517e702SDimitry Andric 
2497*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Created new exit block: " << NewExit->getNumber()
2498*4ba319b5SDimitry Andric                     << "\n");
24995517e702SDimitry Andric 
25005517e702SDimitry Andric   // Replace any PHI Predecessors in the successor with NewExit
25015517e702SDimitry Andric   for (auto &II : *Succ) {
25025517e702SDimitry Andric     MachineInstr &Instr = II;
25035517e702SDimitry Andric 
25045517e702SDimitry Andric     // If we are past the PHI instructions we are done
25055517e702SDimitry Andric     if (!Instr.isPHI())
25065517e702SDimitry Andric       break;
25075517e702SDimitry Andric 
25085517e702SDimitry Andric     int numPreds = getPHINumInputs(Instr);
25095517e702SDimitry Andric     for (int i = 0; i < numPreds; ++i) {
25105517e702SDimitry Andric       auto Pred = getPHIPred(Instr, i);
25115517e702SDimitry Andric       if (Pred == Exit) {
25125517e702SDimitry Andric         setPhiPred(Instr, i, NewExit);
25135517e702SDimitry Andric       }
25145517e702SDimitry Andric     }
25155517e702SDimitry Andric   }
25165517e702SDimitry Andric 
25175517e702SDimitry Andric   return NewExit;
25185517e702SDimitry Andric }
25195517e702SDimitry Andric 
split(MachineBasicBlock::iterator I)25205517e702SDimitry Andric static MachineBasicBlock *split(MachineBasicBlock::iterator I) {
25215517e702SDimitry Andric   // Create the fall-through block.
25225517e702SDimitry Andric   MachineBasicBlock *MBB = (*I).getParent();
25235517e702SDimitry Andric   MachineFunction *MF = MBB->getParent();
25245517e702SDimitry Andric   MachineBasicBlock *SuccMBB = MF->CreateMachineBasicBlock();
25255517e702SDimitry Andric   auto MBBIter = ++(MBB->getIterator());
25265517e702SDimitry Andric   MF->insert(MBBIter, SuccMBB);
25275517e702SDimitry Andric   SuccMBB->transferSuccessorsAndUpdatePHIs(MBB);
25285517e702SDimitry Andric   MBB->addSuccessor(SuccMBB);
25295517e702SDimitry Andric 
25305517e702SDimitry Andric   // Splice the code over.
25315517e702SDimitry Andric   SuccMBB->splice(SuccMBB->end(), MBB, I, MBB->end());
25325517e702SDimitry Andric 
25335517e702SDimitry Andric   return SuccMBB;
25345517e702SDimitry Andric }
25355517e702SDimitry Andric 
25365517e702SDimitry Andric // Split the entry block separating PHI-nodes and the rest of the code
25375517e702SDimitry Andric // This is needed to insert an initializer for the bb select register
25385517e702SDimitry Andric // inloop regions.
25395517e702SDimitry Andric 
25405517e702SDimitry Andric MachineBasicBlock *
splitEntry(LinearizedRegion * LRegion)25415517e702SDimitry Andric AMDGPUMachineCFGStructurizer::splitEntry(LinearizedRegion *LRegion) {
25425517e702SDimitry Andric   MachineBasicBlock *Entry = LRegion->getEntry();
25435517e702SDimitry Andric   MachineBasicBlock *EntrySucc = split(Entry->getFirstNonPHI());
25445517e702SDimitry Andric   MachineBasicBlock *Exit = LRegion->getExit();
25455517e702SDimitry Andric 
2546*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Split " << printMBBReference(*Entry) << " to "
25472cab237bSDimitry Andric                     << printMBBReference(*Entry) << " -> "
25482cab237bSDimitry Andric                     << printMBBReference(*EntrySucc) << "\n");
25495517e702SDimitry Andric   LRegion->addMBB(EntrySucc);
25505517e702SDimitry Andric 
25515517e702SDimitry Andric   // Make the backedge go to Entry Succ
25525517e702SDimitry Andric   if (Exit->isSuccessor(Entry)) {
25535517e702SDimitry Andric     Exit->removeSuccessor(Entry);
25545517e702SDimitry Andric   }
25555517e702SDimitry Andric   Exit->addSuccessor(EntrySucc);
25565517e702SDimitry Andric   MachineInstr &Branch = *(Exit->instr_rbegin());
25575517e702SDimitry Andric   for (auto &UI : Branch.uses()) {
25585517e702SDimitry Andric     if (UI.isMBB() && UI.getMBB() == Entry) {
25595517e702SDimitry Andric       UI.setMBB(EntrySucc);
25605517e702SDimitry Andric     }
25615517e702SDimitry Andric   }
25625517e702SDimitry Andric 
25635517e702SDimitry Andric   splitLoopPHIs(Entry, EntrySucc, LRegion);
25645517e702SDimitry Andric 
25655517e702SDimitry Andric   return EntrySucc;
25665517e702SDimitry Andric }
25675517e702SDimitry Andric 
25685517e702SDimitry Andric LinearizedRegion *
initLinearizedRegion(RegionMRT * Region)25695517e702SDimitry Andric AMDGPUMachineCFGStructurizer::initLinearizedRegion(RegionMRT *Region) {
25705517e702SDimitry Andric   LinearizedRegion *LRegion = Region->getLinearizedRegion();
25715517e702SDimitry Andric   LRegion->initLiveOut(Region, MRI, TRI, PHIInfo);
25725517e702SDimitry Andric   LRegion->setEntry(Region->getEntry());
25735517e702SDimitry Andric   return LRegion;
25745517e702SDimitry Andric }
25755517e702SDimitry Andric 
removeOldExitPreds(RegionMRT * Region)25765517e702SDimitry Andric static void removeOldExitPreds(RegionMRT *Region) {
25775517e702SDimitry Andric   MachineBasicBlock *Exit = Region->getSucc();
25785517e702SDimitry Andric   if (Exit == nullptr) {
25795517e702SDimitry Andric     return;
25805517e702SDimitry Andric   }
25815517e702SDimitry Andric   for (MachineBasicBlock::pred_iterator PI = Exit->pred_begin(),
25825517e702SDimitry Andric                                         E = Exit->pred_end();
25835517e702SDimitry Andric        PI != E; ++PI) {
25845517e702SDimitry Andric     if (Region->contains(*PI)) {
25855517e702SDimitry Andric       (*PI)->removeSuccessor(Exit);
25865517e702SDimitry Andric     }
25875517e702SDimitry Andric   }
25885517e702SDimitry Andric }
25895517e702SDimitry Andric 
mbbHasBackEdge(MachineBasicBlock * MBB,SmallPtrSet<MachineBasicBlock *,8> & MBBs)25905517e702SDimitry Andric static bool mbbHasBackEdge(MachineBasicBlock *MBB,
25915517e702SDimitry Andric                            SmallPtrSet<MachineBasicBlock *, 8> &MBBs) {
25925517e702SDimitry Andric   for (auto SI = MBB->succ_begin(), SE = MBB->succ_end(); SI != SE; ++SI) {
25935517e702SDimitry Andric     if (MBBs.count(*SI) != 0) {
25945517e702SDimitry Andric       return true;
25955517e702SDimitry Andric     }
25965517e702SDimitry Andric   }
25975517e702SDimitry Andric   return false;
25985517e702SDimitry Andric }
25995517e702SDimitry Andric 
containsNewBackedge(MRT * Tree,SmallPtrSet<MachineBasicBlock *,8> & MBBs)26005517e702SDimitry Andric static bool containsNewBackedge(MRT *Tree,
26015517e702SDimitry Andric                                 SmallPtrSet<MachineBasicBlock *, 8> &MBBs) {
26025517e702SDimitry Andric   // Need to traverse this in reverse since it is in post order.
26035517e702SDimitry Andric   if (Tree == nullptr)
26045517e702SDimitry Andric     return false;
26055517e702SDimitry Andric 
26065517e702SDimitry Andric   if (Tree->isMBB()) {
26075517e702SDimitry Andric     MachineBasicBlock *MBB = Tree->getMBBMRT()->getMBB();
26085517e702SDimitry Andric     MBBs.insert(MBB);
26095517e702SDimitry Andric     if (mbbHasBackEdge(MBB, MBBs)) {
26105517e702SDimitry Andric       return true;
26115517e702SDimitry Andric     }
26125517e702SDimitry Andric   } else {
26135517e702SDimitry Andric     RegionMRT *Region = Tree->getRegionMRT();
26145517e702SDimitry Andric     SetVector<MRT *> *Children = Region->getChildren();
26155517e702SDimitry Andric     for (auto CI = Children->rbegin(), CE = Children->rend(); CI != CE; ++CI) {
26165517e702SDimitry Andric       if (containsNewBackedge(*CI, MBBs))
26175517e702SDimitry Andric         return true;
26185517e702SDimitry Andric     }
26195517e702SDimitry Andric   }
26205517e702SDimitry Andric   return false;
26215517e702SDimitry Andric }
26225517e702SDimitry Andric 
containsNewBackedge(RegionMRT * Region)26235517e702SDimitry Andric static bool containsNewBackedge(RegionMRT *Region) {
26245517e702SDimitry Andric   SmallPtrSet<MachineBasicBlock *, 8> MBBs;
26255517e702SDimitry Andric   return containsNewBackedge(Region, MBBs);
26265517e702SDimitry Andric }
26275517e702SDimitry Andric 
structurizeComplexRegion(RegionMRT * Region)26285517e702SDimitry Andric bool AMDGPUMachineCFGStructurizer::structurizeComplexRegion(RegionMRT *Region) {
26295517e702SDimitry Andric   auto *LRegion = initLinearizedRegion(Region);
26305517e702SDimitry Andric   LRegion->setHasLoop(containsNewBackedge(Region));
26315517e702SDimitry Andric   MachineBasicBlock *LastMerge = createLinearizedExitBlock(Region);
26325517e702SDimitry Andric   MachineBasicBlock *CurrentMerge = LastMerge;
26335517e702SDimitry Andric   LRegion->addMBB(LastMerge);
26345517e702SDimitry Andric   LRegion->setExit(LastMerge);
26355517e702SDimitry Andric 
26365517e702SDimitry Andric   rewriteRegionExitPHIs(Region, LastMerge, LRegion);
26375517e702SDimitry Andric   removeOldExitPreds(Region);
26385517e702SDimitry Andric 
2639*4ba319b5SDimitry Andric   LLVM_DEBUG(PHIInfo.dump(MRI));
26405517e702SDimitry Andric 
26415517e702SDimitry Andric   SetVector<MRT *> *Children = Region->getChildren();
2642*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "===========If Region Start===============\n");
26435517e702SDimitry Andric   if (LRegion->getHasLoop()) {
2644*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Has Backedge: Yes\n");
26455517e702SDimitry Andric   } else {
2646*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Has Backedge: No\n");
26475517e702SDimitry Andric   }
26485517e702SDimitry Andric 
26495517e702SDimitry Andric   unsigned BBSelectRegIn;
26505517e702SDimitry Andric   unsigned BBSelectRegOut;
26515517e702SDimitry Andric   for (auto CI = Children->begin(), CE = Children->end(); CI != CE; ++CI) {
2652*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "CurrentRegion: \n");
2653*4ba319b5SDimitry Andric     LLVM_DEBUG(LRegion->print(dbgs(), TRI));
26545517e702SDimitry Andric 
26555517e702SDimitry Andric     auto CNI = CI;
26565517e702SDimitry Andric     ++CNI;
26575517e702SDimitry Andric 
26585517e702SDimitry Andric     MRT *Child = (*CI);
26595517e702SDimitry Andric 
26605517e702SDimitry Andric     if (Child->isRegion()) {
26615517e702SDimitry Andric 
26625517e702SDimitry Andric       LinearizedRegion *InnerLRegion =
26635517e702SDimitry Andric           Child->getRegionMRT()->getLinearizedRegion();
26645517e702SDimitry Andric       // We found the block is the exit of an inner region, we need
26655517e702SDimitry Andric       // to put it in the current linearized region.
26665517e702SDimitry Andric 
2667*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Linearizing region: ");
2668*4ba319b5SDimitry Andric       LLVM_DEBUG(InnerLRegion->print(dbgs(), TRI));
2669*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "\n");
26705517e702SDimitry Andric 
26715517e702SDimitry Andric       MachineBasicBlock *InnerEntry = InnerLRegion->getEntry();
26725517e702SDimitry Andric       if ((&(*(InnerEntry->getParent()->begin()))) == InnerEntry) {
26735517e702SDimitry Andric         // Entry has already been linearized, no need to do this region.
26745517e702SDimitry Andric         unsigned OuterSelect = InnerLRegion->getBBSelectRegOut();
26755517e702SDimitry Andric         unsigned InnerSelectReg =
26765517e702SDimitry Andric             InnerLRegion->getRegionMRT()->getInnerOutputRegister();
26775517e702SDimitry Andric         replaceRegisterWith(InnerSelectReg, OuterSelect),
26785517e702SDimitry Andric             resolvePHIInfos(InnerEntry);
26795517e702SDimitry Andric         if (!InnerLRegion->getExit()->isSuccessor(CurrentMerge))
26805517e702SDimitry Andric           InnerLRegion->getExit()->addSuccessor(CurrentMerge);
26815517e702SDimitry Andric         continue;
26825517e702SDimitry Andric       }
26835517e702SDimitry Andric 
26845517e702SDimitry Andric       BBSelectRegOut = Child->getBBSelectRegOut();
26855517e702SDimitry Andric       BBSelectRegIn = Child->getBBSelectRegIn();
26865517e702SDimitry Andric 
2687*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "BBSelectRegIn: " << printReg(BBSelectRegIn, TRI)
26885517e702SDimitry Andric                         << "\n");
2689*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "BBSelectRegOut: " << printReg(BBSelectRegOut, TRI)
26905517e702SDimitry Andric                         << "\n");
26915517e702SDimitry Andric 
26925517e702SDimitry Andric       MachineBasicBlock *IfEnd = CurrentMerge;
26935517e702SDimitry Andric       CurrentMerge = createIfRegion(CurrentMerge, InnerLRegion, LRegion,
26945517e702SDimitry Andric                                     Child->getRegionMRT()->getEntry(),
26955517e702SDimitry Andric                                     BBSelectRegIn, BBSelectRegOut);
26965517e702SDimitry Andric       TII->convertNonUniformIfRegion(CurrentMerge, IfEnd);
26975517e702SDimitry Andric     } else {
26985517e702SDimitry Andric       MachineBasicBlock *MBB = Child->getMBBMRT()->getMBB();
2699*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Linearizing block: " << MBB->getNumber() << "\n");
27005517e702SDimitry Andric 
27015517e702SDimitry Andric       if (MBB == getSingleExitNode(*(MBB->getParent()))) {
27025517e702SDimitry Andric         // If this is the exit block then we need to skip to the next.
27035517e702SDimitry Andric         // The "in" register will be transferred to "out" in the next
27045517e702SDimitry Andric         // iteration.
27055517e702SDimitry Andric         continue;
27065517e702SDimitry Andric       }
27075517e702SDimitry Andric 
27085517e702SDimitry Andric       BBSelectRegOut = Child->getBBSelectRegOut();
27095517e702SDimitry Andric       BBSelectRegIn = Child->getBBSelectRegIn();
27105517e702SDimitry Andric 
2711*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "BBSelectRegIn: " << printReg(BBSelectRegIn, TRI)
27125517e702SDimitry Andric                         << "\n");
2713*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "BBSelectRegOut: " << printReg(BBSelectRegOut, TRI)
27145517e702SDimitry Andric                         << "\n");
27155517e702SDimitry Andric 
27165517e702SDimitry Andric       MachineBasicBlock *IfEnd = CurrentMerge;
27175517e702SDimitry Andric       // This is a basic block that is not part of an inner region, we
27185517e702SDimitry Andric       // need to put it in the current linearized region.
27195517e702SDimitry Andric       CurrentMerge = createIfRegion(CurrentMerge, MBB, LRegion, BBSelectRegIn,
27205517e702SDimitry Andric                                     BBSelectRegOut);
27215517e702SDimitry Andric       if (CurrentMerge) {
27225517e702SDimitry Andric         TII->convertNonUniformIfRegion(CurrentMerge, IfEnd);
27235517e702SDimitry Andric       }
27245517e702SDimitry Andric 
2725*4ba319b5SDimitry Andric       LLVM_DEBUG(PHIInfo.dump(MRI));
27265517e702SDimitry Andric     }
27275517e702SDimitry Andric   }
27285517e702SDimitry Andric 
27295517e702SDimitry Andric   LRegion->removeFalseRegisterKills(MRI);
27305517e702SDimitry Andric 
27315517e702SDimitry Andric   if (LRegion->getHasLoop()) {
27325517e702SDimitry Andric     MachineBasicBlock *NewSucc = splitEntry(LRegion);
27335517e702SDimitry Andric     if (isFunctionEntryBlock(LRegion->getEntry())) {
27345517e702SDimitry Andric       resolvePHIInfos(LRegion->getEntry());
27355517e702SDimitry Andric     }
27365517e702SDimitry Andric     const DebugLoc &DL = NewSucc->findDebugLoc(NewSucc->getFirstNonPHI());
27375517e702SDimitry Andric     unsigned InReg = LRegion->getBBSelectRegIn();
27385517e702SDimitry Andric     unsigned InnerSelectReg =
27395517e702SDimitry Andric         MRI->createVirtualRegister(MRI->getRegClass(InReg));
27405517e702SDimitry Andric     unsigned NewInReg = MRI->createVirtualRegister(MRI->getRegClass(InReg));
27415517e702SDimitry Andric     TII->materializeImmediate(*(LRegion->getEntry()),
27425517e702SDimitry Andric                               LRegion->getEntry()->getFirstTerminator(), DL,
27435517e702SDimitry Andric                               NewInReg, Region->getEntry()->getNumber());
27445517e702SDimitry Andric     // Need to be careful about updating the registers inside the region.
27455517e702SDimitry Andric     LRegion->replaceRegisterInsideRegion(InReg, InnerSelectReg, false, MRI);
2746*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Loop BBSelect Merge PHI:\n");
27475517e702SDimitry Andric     insertMergePHI(LRegion->getEntry(), LRegion->getExit(), NewSucc,
27485517e702SDimitry Andric                    InnerSelectReg, NewInReg,
27495517e702SDimitry Andric                    LRegion->getRegionMRT()->getInnerOutputRegister());
27505517e702SDimitry Andric     splitExit(LRegion);
27515517e702SDimitry Andric     TII->convertNonUniformLoopRegion(NewSucc, LastMerge);
27525517e702SDimitry Andric   }
27535517e702SDimitry Andric 
27545517e702SDimitry Andric   if (Region->isRoot()) {
27555517e702SDimitry Andric     TII->insertReturn(*LastMerge);
27565517e702SDimitry Andric   }
27575517e702SDimitry Andric 
2758*4ba319b5SDimitry Andric   LLVM_DEBUG(Region->getEntry()->getParent()->dump());
2759*4ba319b5SDimitry Andric   LLVM_DEBUG(LRegion->print(dbgs(), TRI));
2760*4ba319b5SDimitry Andric   LLVM_DEBUG(PHIInfo.dump(MRI));
27615517e702SDimitry Andric 
2762*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "===========If Region End===============\n");
27635517e702SDimitry Andric 
27645517e702SDimitry Andric   Region->setLinearizedRegion(LRegion);
27655517e702SDimitry Andric   return true;
27665517e702SDimitry Andric }
27675517e702SDimitry Andric 
structurizeRegion(RegionMRT * Region)27685517e702SDimitry Andric bool AMDGPUMachineCFGStructurizer::structurizeRegion(RegionMRT *Region) {
27695517e702SDimitry Andric   if (false && regionIsSimpleIf(Region)) {
27705517e702SDimitry Andric     transformSimpleIfRegion(Region);
27715517e702SDimitry Andric     return true;
27725517e702SDimitry Andric   } else if (regionIsSequence(Region)) {
27735517e702SDimitry Andric     fixupRegionExits(Region);
27745517e702SDimitry Andric     return false;
27755517e702SDimitry Andric   } else {
27765517e702SDimitry Andric     structurizeComplexRegion(Region);
27775517e702SDimitry Andric   }
27785517e702SDimitry Andric   return false;
27795517e702SDimitry Andric }
27805517e702SDimitry Andric 
27815517e702SDimitry Andric static int structurize_once = 0;
27825517e702SDimitry Andric 
structurizeRegions(RegionMRT * Region,bool isTopRegion)27835517e702SDimitry Andric bool AMDGPUMachineCFGStructurizer::structurizeRegions(RegionMRT *Region,
27845517e702SDimitry Andric                                                 bool isTopRegion) {
27855517e702SDimitry Andric   bool Changed = false;
27865517e702SDimitry Andric 
27875517e702SDimitry Andric   auto Children = Region->getChildren();
27885517e702SDimitry Andric   for (auto CI : *Children) {
27895517e702SDimitry Andric     if (CI->isRegion()) {
27905517e702SDimitry Andric       Changed |= structurizeRegions(CI->getRegionMRT(), false);
27915517e702SDimitry Andric     }
27925517e702SDimitry Andric   }
27935517e702SDimitry Andric 
27945517e702SDimitry Andric   if (structurize_once < 2 || true) {
27955517e702SDimitry Andric     Changed |= structurizeRegion(Region);
27965517e702SDimitry Andric     structurize_once++;
27975517e702SDimitry Andric   }
27985517e702SDimitry Andric   return Changed;
27995517e702SDimitry Andric }
28005517e702SDimitry Andric 
initFallthroughMap(MachineFunction & MF)28015517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::initFallthroughMap(MachineFunction &MF) {
2802*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "Fallthrough Map:\n");
28035517e702SDimitry Andric   for (auto &MBBI : MF) {
28045517e702SDimitry Andric     MachineBasicBlock *MBB = MBBI.getFallThrough();
28055517e702SDimitry Andric     if (MBB != nullptr) {
2806*4ba319b5SDimitry Andric       LLVM_DEBUG(dbgs() << "Fallthrough: " << MBBI.getNumber() << " -> "
28075517e702SDimitry Andric                         << MBB->getNumber() << "\n");
28085517e702SDimitry Andric     }
28095517e702SDimitry Andric     FallthroughMap[&MBBI] = MBB;
28105517e702SDimitry Andric   }
28115517e702SDimitry Andric }
28125517e702SDimitry Andric 
createLinearizedRegion(RegionMRT * Region,unsigned SelectOut)28135517e702SDimitry Andric void AMDGPUMachineCFGStructurizer::createLinearizedRegion(RegionMRT *Region,
28145517e702SDimitry Andric                                                     unsigned SelectOut) {
28155517e702SDimitry Andric   LinearizedRegion *LRegion = new LinearizedRegion();
28165517e702SDimitry Andric   if (SelectOut) {
28175517e702SDimitry Andric     LRegion->addLiveOut(SelectOut);
2818*4ba319b5SDimitry Andric     LLVM_DEBUG(dbgs() << "Add LiveOut (BBSelect): " << printReg(SelectOut, TRI)
28195517e702SDimitry Andric                       << "\n");
28205517e702SDimitry Andric   }
28215517e702SDimitry Andric   LRegion->setRegionMRT(Region);
28225517e702SDimitry Andric   Region->setLinearizedRegion(LRegion);
28235517e702SDimitry Andric   LRegion->setParent(Region->getParent()
28245517e702SDimitry Andric                          ? Region->getParent()->getLinearizedRegion()
28255517e702SDimitry Andric                          : nullptr);
28265517e702SDimitry Andric }
28275517e702SDimitry Andric 
28285517e702SDimitry Andric unsigned
initializeSelectRegisters(MRT * MRT,unsigned SelectOut,MachineRegisterInfo * MRI,const SIInstrInfo * TII)28295517e702SDimitry Andric AMDGPUMachineCFGStructurizer::initializeSelectRegisters(MRT *MRT, unsigned SelectOut,
28305517e702SDimitry Andric                                                   MachineRegisterInfo *MRI,
28315517e702SDimitry Andric                                                   const SIInstrInfo *TII) {
28325517e702SDimitry Andric   if (MRT->isRegion()) {
28335517e702SDimitry Andric     RegionMRT *Region = MRT->getRegionMRT();
28345517e702SDimitry Andric     Region->setBBSelectRegOut(SelectOut);
28355517e702SDimitry Andric     unsigned InnerSelectOut = createBBSelectReg(TII, MRI);
28365517e702SDimitry Andric 
28375517e702SDimitry Andric     // Fixme: Move linearization creation to the original spot
28385517e702SDimitry Andric     createLinearizedRegion(Region, SelectOut);
28395517e702SDimitry Andric 
28405517e702SDimitry Andric     for (auto CI = Region->getChildren()->begin(),
28415517e702SDimitry Andric               CE = Region->getChildren()->end();
28425517e702SDimitry Andric          CI != CE; ++CI) {
28435517e702SDimitry Andric       InnerSelectOut =
28445517e702SDimitry Andric           initializeSelectRegisters((*CI), InnerSelectOut, MRI, TII);
28455517e702SDimitry Andric     }
28465517e702SDimitry Andric     MRT->setBBSelectRegIn(InnerSelectOut);
28475517e702SDimitry Andric     return InnerSelectOut;
28485517e702SDimitry Andric   } else {
28495517e702SDimitry Andric     MRT->setBBSelectRegOut(SelectOut);
28505517e702SDimitry Andric     unsigned NewSelectIn = createBBSelectReg(TII, MRI);
28515517e702SDimitry Andric     MRT->setBBSelectRegIn(NewSelectIn);
28525517e702SDimitry Andric     return NewSelectIn;
28535517e702SDimitry Andric   }
28545517e702SDimitry Andric }
28555517e702SDimitry Andric 
checkRegOnlyPHIInputs(MachineFunction & MF)28565517e702SDimitry Andric static void checkRegOnlyPHIInputs(MachineFunction &MF) {
28575517e702SDimitry Andric   for (auto &MBBI : MF) {
28585517e702SDimitry Andric     for (MachineBasicBlock::instr_iterator I = MBBI.instr_begin(),
28595517e702SDimitry Andric                                            E = MBBI.instr_end();
28605517e702SDimitry Andric          I != E; ++I) {
28615517e702SDimitry Andric       MachineInstr &Instr = *I;
28625517e702SDimitry Andric       if (Instr.isPHI()) {
28635517e702SDimitry Andric         int numPreds = getPHINumInputs(Instr);
28645517e702SDimitry Andric         for (int i = 0; i < numPreds; ++i) {
28655517e702SDimitry Andric           assert(Instr.getOperand(i * 2 + 1).isReg() &&
28665517e702SDimitry Andric                  "PHI Operand not a register");
28675517e702SDimitry Andric         }
28685517e702SDimitry Andric       }
28695517e702SDimitry Andric     }
28705517e702SDimitry Andric   }
28715517e702SDimitry Andric }
28725517e702SDimitry Andric 
runOnMachineFunction(MachineFunction & MF)28735517e702SDimitry Andric bool AMDGPUMachineCFGStructurizer::runOnMachineFunction(MachineFunction &MF) {
2874*4ba319b5SDimitry Andric   const GCNSubtarget &ST = MF.getSubtarget<GCNSubtarget>();
28755517e702SDimitry Andric   const SIInstrInfo *TII = ST.getInstrInfo();
28765517e702SDimitry Andric   TRI = ST.getRegisterInfo();
28775517e702SDimitry Andric   MRI = &(MF.getRegInfo());
28785517e702SDimitry Andric   initFallthroughMap(MF);
28795517e702SDimitry Andric 
28805517e702SDimitry Andric   checkRegOnlyPHIInputs(MF);
2881*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "----STRUCTURIZER START----\n");
2882*4ba319b5SDimitry Andric   LLVM_DEBUG(MF.dump());
28835517e702SDimitry Andric 
28845517e702SDimitry Andric   Regions = &(getAnalysis<MachineRegionInfoPass>().getRegionInfo());
2885*4ba319b5SDimitry Andric   LLVM_DEBUG(Regions->dump());
28865517e702SDimitry Andric 
28875517e702SDimitry Andric   RegionMRT *RTree = MRT::buildMRT(MF, Regions, TII, MRI);
28885517e702SDimitry Andric   setRegionMRT(RTree);
28895517e702SDimitry Andric   initializeSelectRegisters(RTree, 0, MRI, TII);
2890*4ba319b5SDimitry Andric   LLVM_DEBUG(RTree->dump(TRI));
28915517e702SDimitry Andric   bool result = structurizeRegions(RTree, true);
28925517e702SDimitry Andric   delete RTree;
2893*4ba319b5SDimitry Andric   LLVM_DEBUG(dbgs() << "----STRUCTURIZER END----\n");
28945517e702SDimitry Andric   initFallthroughMap(MF);
28955517e702SDimitry Andric   return result;
28965517e702SDimitry Andric }
28975517e702SDimitry Andric 
28982cab237bSDimitry Andric char AMDGPUMachineCFGStructurizerID = AMDGPUMachineCFGStructurizer::ID;
28992cab237bSDimitry Andric 
29002cab237bSDimitry Andric INITIALIZE_PASS_BEGIN(AMDGPUMachineCFGStructurizer, "amdgpu-machine-cfg-structurizer",
29012cab237bSDimitry Andric                       "AMDGPU Machine CFG Structurizer", false, false)
INITIALIZE_PASS_DEPENDENCY(MachineRegionInfoPass)29022cab237bSDimitry Andric INITIALIZE_PASS_DEPENDENCY(MachineRegionInfoPass)
29032cab237bSDimitry Andric INITIALIZE_PASS_END(AMDGPUMachineCFGStructurizer, "amdgpu-machine-cfg-structurizer",
29042cab237bSDimitry Andric                     "AMDGPU Machine CFG Structurizer", false, false)
29052cab237bSDimitry Andric 
29065517e702SDimitry Andric FunctionPass *llvm::createAMDGPUMachineCFGStructurizerPass() {
29075517e702SDimitry Andric   return new AMDGPUMachineCFGStructurizer();
29085517e702SDimitry Andric }
2909