168d6d8abSJakob Stoklund Olesen //===- CodeGenRegisters.cpp - Register and RegisterClass Info -------------===//
268d6d8abSJakob Stoklund Olesen //
32946cd70SChandler Carruth // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
42946cd70SChandler Carruth // See https://llvm.org/LICENSE.txt for license information.
52946cd70SChandler Carruth // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
668d6d8abSJakob Stoklund Olesen //
768d6d8abSJakob Stoklund Olesen //===----------------------------------------------------------------------===//
868d6d8abSJakob Stoklund Olesen //
968d6d8abSJakob Stoklund Olesen // This file defines structures to encapsulate information gleaned from the
1068d6d8abSJakob Stoklund Olesen // target register and register class definitions.
1168d6d8abSJakob Stoklund Olesen //
1268d6d8abSJakob Stoklund Olesen //===----------------------------------------------------------------------===//
1368d6d8abSJakob Stoklund Olesen 
1468d6d8abSJakob Stoklund Olesen #include "CodeGenRegisters.h"
1568d6d8abSJakob Stoklund Olesen #include "CodeGenTarget.h"
16a3fe70d2SEugene Zelenko #include "llvm/ADT/ArrayRef.h"
17a3fe70d2SEugene Zelenko #include "llvm/ADT/BitVector.h"
18a3fe70d2SEugene Zelenko #include "llvm/ADT/DenseMap.h"
191d7a2c57SAndrew Trick #include "llvm/ADT/IntEqClasses.h"
20a3fe70d2SEugene Zelenko #include "llvm/ADT/SetVector.h"
21a3fe70d2SEugene Zelenko #include "llvm/ADT/SmallPtrSet.h"
22a26a848dSKrzysztof Parzyszek #include "llvm/ADT/SmallSet.h"
2391d19d8eSChandler Carruth #include "llvm/ADT/SmallVector.h"
24a3fe70d2SEugene Zelenko #include "llvm/ADT/STLExtras.h"
2568d6d8abSJakob Stoklund Olesen #include "llvm/ADT/StringExtras.h"
26a3fe70d2SEugene Zelenko #include "llvm/ADT/StringRef.h"
279a7f4b76SJim Grosbach #include "llvm/ADT/Twine.h"
28301dd8d7SAndrew Trick #include "llvm/Support/Debug.h"
29a3fe70d2SEugene Zelenko #include "llvm/Support/MathExtras.h"
30a3fe70d2SEugene Zelenko #include "llvm/Support/raw_ostream.h"
3191d19d8eSChandler Carruth #include "llvm/TableGen/Error.h"
32a3fe70d2SEugene Zelenko #include "llvm/TableGen/Record.h"
33a3fe70d2SEugene Zelenko #include <algorithm>
34a3fe70d2SEugene Zelenko #include <cassert>
35a3fe70d2SEugene Zelenko #include <cstdint>
36a3fe70d2SEugene Zelenko #include <iterator>
37a3fe70d2SEugene Zelenko #include <map>
38afcff2d0SMatthias Braun #include <queue>
39a3fe70d2SEugene Zelenko #include <set>
40a3fe70d2SEugene Zelenko #include <string>
41a3fe70d2SEugene Zelenko #include <tuple>
42a3fe70d2SEugene Zelenko #include <utility>
43a3fe70d2SEugene Zelenko #include <vector>
4468d6d8abSJakob Stoklund Olesen 
4568d6d8abSJakob Stoklund Olesen using namespace llvm;
4668d6d8abSJakob Stoklund Olesen 
4797acce29SChandler Carruth #define DEBUG_TYPE "regalloc-emitter"
4897acce29SChandler Carruth 
4968d6d8abSJakob Stoklund Olesen //===----------------------------------------------------------------------===//
50f1bb1519SJakob Stoklund Olesen //                             CodeGenSubRegIndex
51f1bb1519SJakob Stoklund Olesen //===----------------------------------------------------------------------===//
52f1bb1519SJakob Stoklund Olesen 
53f1bb1519SJakob Stoklund Olesen CodeGenSubRegIndex::CodeGenSubRegIndex(Record *R, unsigned Enum)
54eb0c510eSKrzysztof Parzyszek   : TheDef(R), EnumValue(Enum), AllSuperRegsCovered(true), Artificial(true) {
5570a0bbcaSJakob Stoklund Olesen   Name = R->getName();
5670a0bbcaSJakob Stoklund Olesen   if (R->getValue("Namespace"))
5770a0bbcaSJakob Stoklund Olesen     Namespace = R->getValueAsString("Namespace");
58f1ed334dSAhmed Bougacha   Size = R->getValueAsInt("Size");
59f1ed334dSAhmed Bougacha   Offset = R->getValueAsInt("Offset");
60f1bb1519SJakob Stoklund Olesen }
61f1bb1519SJakob Stoklund Olesen 
6270a0bbcaSJakob Stoklund Olesen CodeGenSubRegIndex::CodeGenSubRegIndex(StringRef N, StringRef Nspace,
6370a0bbcaSJakob Stoklund Olesen                                        unsigned Enum)
6424064771SCraig Topper   : TheDef(nullptr), Name(N), Namespace(Nspace), Size(-1), Offset(-1),
65eb0c510eSKrzysztof Parzyszek     EnumValue(Enum), AllSuperRegsCovered(true), Artificial(true) {
66f1bb1519SJakob Stoklund Olesen }
67f1bb1519SJakob Stoklund Olesen 
68f1bb1519SJakob Stoklund Olesen std::string CodeGenSubRegIndex::getQualifiedName() const {
69f1bb1519SJakob Stoklund Olesen   std::string N = getNamespace();
70f1bb1519SJakob Stoklund Olesen   if (!N.empty())
71f1bb1519SJakob Stoklund Olesen     N += "::";
72f1bb1519SJakob Stoklund Olesen   N += getName();
73f1bb1519SJakob Stoklund Olesen   return N;
74f1bb1519SJakob Stoklund Olesen }
75f1bb1519SJakob Stoklund Olesen 
7621231609SJakob Stoklund Olesen void CodeGenSubRegIndex::updateComponents(CodeGenRegBank &RegBank) {
7770a0bbcaSJakob Stoklund Olesen   if (!TheDef)
7870a0bbcaSJakob Stoklund Olesen     return;
793697143aSJakob Stoklund Olesen 
8021231609SJakob Stoklund Olesen   std::vector<Record*> Comps = TheDef->getValueAsListOfDefs("ComposedOf");
813697143aSJakob Stoklund Olesen   if (!Comps.empty()) {
8221231609SJakob Stoklund Olesen     if (Comps.size() != 2)
83635debe8SJoerg Sonnenberger       PrintFatalError(TheDef->getLoc(),
84635debe8SJoerg Sonnenberger                       "ComposedOf must have exactly two entries");
8521231609SJakob Stoklund Olesen     CodeGenSubRegIndex *A = RegBank.getSubRegIdx(Comps[0]);
8621231609SJakob Stoklund Olesen     CodeGenSubRegIndex *B = RegBank.getSubRegIdx(Comps[1]);
8721231609SJakob Stoklund Olesen     CodeGenSubRegIndex *X = A->addComposite(B, this);
8821231609SJakob Stoklund Olesen     if (X)
89635debe8SJoerg Sonnenberger       PrintFatalError(TheDef->getLoc(), "Ambiguous ComposedOf entries");
9021231609SJakob Stoklund Olesen   }
9121231609SJakob Stoklund Olesen 
923697143aSJakob Stoklund Olesen   std::vector<Record*> Parts =
933697143aSJakob Stoklund Olesen     TheDef->getValueAsListOfDefs("CoveringSubRegIndices");
943697143aSJakob Stoklund Olesen   if (!Parts.empty()) {
953697143aSJakob Stoklund Olesen     if (Parts.size() < 2)
96635debe8SJoerg Sonnenberger       PrintFatalError(TheDef->getLoc(),
973697143aSJakob Stoklund Olesen                       "CoveredBySubRegs must have two or more entries");
983697143aSJakob Stoklund Olesen     SmallVector<CodeGenSubRegIndex*, 8> IdxParts;
994b13bfd9SJaved Absar     for (Record *Part : Parts)
1004b13bfd9SJaved Absar       IdxParts.push_back(RegBank.getSubRegIdx(Part));
101afcff2d0SMatthias Braun     setConcatenationOf(IdxParts);
1023697143aSJakob Stoklund Olesen   }
1033697143aSJakob Stoklund Olesen }
1043697143aSJakob Stoklund Olesen 
10591b5cf84SKrzysztof Parzyszek LaneBitmask CodeGenSubRegIndex::computeLaneMask() const {
106d346d487SJakob Stoklund Olesen   // Already computed?
107ea9f8ce0SKrzysztof Parzyszek   if (LaneMask.any())
108d346d487SJakob Stoklund Olesen     return LaneMask;
109d346d487SJakob Stoklund Olesen 
110d346d487SJakob Stoklund Olesen   // Recursion guard, shouldn't be required.
11191b5cf84SKrzysztof Parzyszek   LaneMask = LaneBitmask::getAll();
112d346d487SJakob Stoklund Olesen 
113d346d487SJakob Stoklund Olesen   // The lane mask is simply the union of all sub-indices.
11491b5cf84SKrzysztof Parzyszek   LaneBitmask M;
1158f25d3bcSDavid Blaikie   for (const auto &C : Composed)
1168f25d3bcSDavid Blaikie     M |= C.second->computeLaneMask();
117ea9f8ce0SKrzysztof Parzyszek   assert(M.any() && "Missing lane mask, sub-register cycle?");
118d346d487SJakob Stoklund Olesen   LaneMask = M;
119d346d487SJakob Stoklund Olesen   return LaneMask;
120d346d487SJakob Stoklund Olesen }
121d346d487SJakob Stoklund Olesen 
122afcff2d0SMatthias Braun void CodeGenSubRegIndex::setConcatenationOf(
123afcff2d0SMatthias Braun     ArrayRef<CodeGenSubRegIndex*> Parts) {
124abbc4a7fSMatthias Braun   if (ConcatenationOf.empty())
125afcff2d0SMatthias Braun     ConcatenationOf.assign(Parts.begin(), Parts.end());
126abbc4a7fSMatthias Braun   else
127afcff2d0SMatthias Braun     assert(std::equal(Parts.begin(), Parts.end(),
128afcff2d0SMatthias Braun                       ConcatenationOf.begin()) && "parts consistent");
129afcff2d0SMatthias Braun }
130afcff2d0SMatthias Braun 
131afcff2d0SMatthias Braun void CodeGenSubRegIndex::computeConcatTransitiveClosure() {
132afcff2d0SMatthias Braun   for (SmallVectorImpl<CodeGenSubRegIndex*>::iterator
133afcff2d0SMatthias Braun        I = ConcatenationOf.begin(); I != ConcatenationOf.end(); /*empty*/) {
134afcff2d0SMatthias Braun     CodeGenSubRegIndex *SubIdx = *I;
135afcff2d0SMatthias Braun     SubIdx->computeConcatTransitiveClosure();
136afcff2d0SMatthias Braun #ifndef NDEBUG
137afcff2d0SMatthias Braun     for (CodeGenSubRegIndex *SRI : SubIdx->ConcatenationOf)
138afcff2d0SMatthias Braun       assert(SRI->ConcatenationOf.empty() && "No transitive closure?");
139afcff2d0SMatthias Braun #endif
140afcff2d0SMatthias Braun 
141afcff2d0SMatthias Braun     if (SubIdx->ConcatenationOf.empty()) {
142afcff2d0SMatthias Braun       ++I;
143afcff2d0SMatthias Braun     } else {
144afcff2d0SMatthias Braun       I = ConcatenationOf.erase(I);
145afcff2d0SMatthias Braun       I = ConcatenationOf.insert(I, SubIdx->ConcatenationOf.begin(),
146afcff2d0SMatthias Braun                                  SubIdx->ConcatenationOf.end());
147afcff2d0SMatthias Braun       I += SubIdx->ConcatenationOf.size();
148afcff2d0SMatthias Braun     }
149afcff2d0SMatthias Braun   }
150afcff2d0SMatthias Braun }
151afcff2d0SMatthias Braun 
152f1bb1519SJakob Stoklund Olesen //===----------------------------------------------------------------------===//
15368d6d8abSJakob Stoklund Olesen //                              CodeGenRegister
15468d6d8abSJakob Stoklund Olesen //===----------------------------------------------------------------------===//
15568d6d8abSJakob Stoklund Olesen 
15684bd44ebSJakob Stoklund Olesen CodeGenRegister::CodeGenRegister(Record *R, unsigned Enum)
15784bd44ebSJakob Stoklund Olesen   : TheDef(R),
15884bd44ebSJakob Stoklund Olesen     EnumValue(Enum),
15984bd44ebSJakob Stoklund Olesen     CostPerUse(R->getValueAsInt("CostPerUse")),
160f43b5995SJakob Stoklund Olesen     CoveredBySubRegs(R->getValueAsBit("CoveredBySubRegs")),
161a25e13aaSMatthias Braun     HasDisjunctSubRegs(false),
1623f3eb180SJakob Stoklund Olesen     SubRegsComplete(false),
16350ecd0ffSJakob Stoklund Olesen     SuperRegsComplete(false),
164eb0c510eSKrzysztof Parzyszek     TopoSig(~0u) {
165eb0c510eSKrzysztof Parzyszek   Artificial = R->getValueAsBit("isArtificial");
166eb0c510eSKrzysztof Parzyszek }
16768d6d8abSJakob Stoklund Olesen 
168c1e9087fSJakob Stoklund Olesen void CodeGenRegister::buildObjectGraph(CodeGenRegBank &RegBank) {
169c1e9087fSJakob Stoklund Olesen   std::vector<Record*> SRIs = TheDef->getValueAsListOfDefs("SubRegIndices");
170c1e9087fSJakob Stoklund Olesen   std::vector<Record*> SRs = TheDef->getValueAsListOfDefs("SubRegs");
171c1e9087fSJakob Stoklund Olesen 
172c1e9087fSJakob Stoklund Olesen   if (SRIs.size() != SRs.size())
173635debe8SJoerg Sonnenberger     PrintFatalError(TheDef->getLoc(),
174c1e9087fSJakob Stoklund Olesen                     "SubRegs and SubRegIndices must have the same size");
175c1e9087fSJakob Stoklund Olesen 
176c1e9087fSJakob Stoklund Olesen   for (unsigned i = 0, e = SRIs.size(); i != e; ++i) {
177c1e9087fSJakob Stoklund Olesen     ExplicitSubRegIndices.push_back(RegBank.getSubRegIdx(SRIs[i]));
178c1e9087fSJakob Stoklund Olesen     ExplicitSubRegs.push_back(RegBank.getReg(SRs[i]));
179c1e9087fSJakob Stoklund Olesen   }
180c08df9e5SJakob Stoklund Olesen 
181c08df9e5SJakob Stoklund Olesen   // Also compute leading super-registers. Each register has a list of
182c08df9e5SJakob Stoklund Olesen   // covered-by-subregs super-registers where it appears as the first explicit
183c08df9e5SJakob Stoklund Olesen   // sub-register.
184c08df9e5SJakob Stoklund Olesen   //
185c08df9e5SJakob Stoklund Olesen   // This is used by computeSecondarySubRegs() to find candidates.
186c08df9e5SJakob Stoklund Olesen   if (CoveredBySubRegs && !ExplicitSubRegs.empty())
187c08df9e5SJakob Stoklund Olesen     ExplicitSubRegs.front()->LeadingSuperRegs.push_back(this);
188534848b1SJakob Stoklund Olesen 
189bde91766SBenjamin Kramer   // Add ad hoc alias links. This is a symmetric relationship between two
190534848b1SJakob Stoklund Olesen   // registers, so build a symmetric graph by adding links in both ends.
191534848b1SJakob Stoklund Olesen   std::vector<Record*> Aliases = TheDef->getValueAsListOfDefs("Aliases");
1924b13bfd9SJaved Absar   for (Record *Alias : Aliases) {
1934b13bfd9SJaved Absar     CodeGenRegister *Reg = RegBank.getReg(Alias);
194534848b1SJakob Stoklund Olesen     ExplicitAliases.push_back(Reg);
195534848b1SJakob Stoklund Olesen     Reg->ExplicitAliases.push_back(this);
196534848b1SJakob Stoklund Olesen   }
197c1e9087fSJakob Stoklund Olesen }
198c1e9087fSJakob Stoklund Olesen 
1994a86d456SMatthias Braun const StringRef CodeGenRegister::getName() const {
2005be22a12SMichael Ilseman   assert(TheDef && "no def");
20168d6d8abSJakob Stoklund Olesen   return TheDef->getName();
20268d6d8abSJakob Stoklund Olesen }
20368d6d8abSJakob Stoklund Olesen 
2041d7a2c57SAndrew Trick namespace {
205a3fe70d2SEugene Zelenko 
2061d7a2c57SAndrew Trick // Iterate over all register units in a set of registers.
2071d7a2c57SAndrew Trick class RegUnitIterator {
208be2edf30SOwen Anderson   CodeGenRegister::Vec::const_iterator RegI, RegE;
209a366d7b2SOwen Anderson   CodeGenRegister::RegUnitList::iterator UnitI, UnitE;
2101d7a2c57SAndrew Trick 
2111d7a2c57SAndrew Trick public:
212be2edf30SOwen Anderson   RegUnitIterator(const CodeGenRegister::Vec &Regs):
213a3fe70d2SEugene Zelenko     RegI(Regs.begin()), RegE(Regs.end()) {
2141d7a2c57SAndrew Trick 
2151d7a2c57SAndrew Trick     if (RegI != RegE) {
2161d7a2c57SAndrew Trick       UnitI = (*RegI)->getRegUnits().begin();
2171d7a2c57SAndrew Trick       UnitE = (*RegI)->getRegUnits().end();
2181d7a2c57SAndrew Trick       advance();
2191d7a2c57SAndrew Trick     }
2201d7a2c57SAndrew Trick   }
2211d7a2c57SAndrew Trick 
2221d7a2c57SAndrew Trick   bool isValid() const { return UnitI != UnitE; }
2231d7a2c57SAndrew Trick 
224393f432dSBill Wendling   unsigned operator* () const { assert(isValid()); return *UnitI; }
2251d7a2c57SAndrew Trick 
2261d7a2c57SAndrew Trick   const CodeGenRegister *getReg() const { assert(isValid()); return *RegI; }
2271d7a2c57SAndrew Trick 
2281d7a2c57SAndrew Trick   /// Preincrement.  Move to the next unit.
2291d7a2c57SAndrew Trick   void operator++() {
2301d7a2c57SAndrew Trick     assert(isValid() && "Cannot advance beyond the last operand");
2311d7a2c57SAndrew Trick     ++UnitI;
2321d7a2c57SAndrew Trick     advance();
2331d7a2c57SAndrew Trick   }
2341d7a2c57SAndrew Trick 
2351d7a2c57SAndrew Trick protected:
2361d7a2c57SAndrew Trick   void advance() {
2371d7a2c57SAndrew Trick     while (UnitI == UnitE) {
2381d7a2c57SAndrew Trick       if (++RegI == RegE)
2391d7a2c57SAndrew Trick         break;
2401d7a2c57SAndrew Trick       UnitI = (*RegI)->getRegUnits().begin();
2411d7a2c57SAndrew Trick       UnitE = (*RegI)->getRegUnits().end();
2421d7a2c57SAndrew Trick     }
2431d7a2c57SAndrew Trick   }
2441d7a2c57SAndrew Trick };
245a3fe70d2SEugene Zelenko 
246a3fe70d2SEugene Zelenko } // end anonymous namespace
2471d7a2c57SAndrew Trick 
2481d7a2c57SAndrew Trick // Return true of this unit appears in RegUnits.
2491d7a2c57SAndrew Trick static bool hasRegUnit(CodeGenRegister::RegUnitList &RegUnits, unsigned Unit) {
250a366d7b2SOwen Anderson   return RegUnits.test(Unit);
2511d7a2c57SAndrew Trick }
2521d7a2c57SAndrew Trick 
2531d7a2c57SAndrew Trick // Inherit register units from subregisters.
2541d7a2c57SAndrew Trick // Return true if the RegUnits changed.
2551d7a2c57SAndrew Trick bool CodeGenRegister::inheritRegUnits(CodeGenRegBank &RegBank) {
256a366d7b2SOwen Anderson   bool changed = false;
2574b13bfd9SJaved Absar   for (const auto &SubReg : SubRegs) {
2584b13bfd9SJaved Absar     CodeGenRegister *SR = SubReg.second;
2591d7a2c57SAndrew Trick     // Merge the subregister's units into this register's RegUnits.
260a366d7b2SOwen Anderson     changed |= (RegUnits |= SR->RegUnits);
2611d7a2c57SAndrew Trick   }
262441b7ac9SOwen Anderson 
263a366d7b2SOwen Anderson   return changed;
2641d7a2c57SAndrew Trick }
2651d7a2c57SAndrew Trick 
26684bd44ebSJakob Stoklund Olesen const CodeGenRegister::SubRegMap &
2677d1fa380SJakob Stoklund Olesen CodeGenRegister::computeSubRegs(CodeGenRegBank &RegBank) {
26884bd44ebSJakob Stoklund Olesen   // Only compute this map once.
26984bd44ebSJakob Stoklund Olesen   if (SubRegsComplete)
27084bd44ebSJakob Stoklund Olesen     return SubRegs;
27184bd44ebSJakob Stoklund Olesen   SubRegsComplete = true;
27284bd44ebSJakob Stoklund Olesen 
273a25e13aaSMatthias Braun   HasDisjunctSubRegs = ExplicitSubRegs.size() > 1;
274a25e13aaSMatthias Braun 
275c1e9087fSJakob Stoklund Olesen   // First insert the explicit subregs and make sure they are fully indexed.
276c1e9087fSJakob Stoklund Olesen   for (unsigned i = 0, e = ExplicitSubRegs.size(); i != e; ++i) {
277c1e9087fSJakob Stoklund Olesen     CodeGenRegister *SR = ExplicitSubRegs[i];
278c1e9087fSJakob Stoklund Olesen     CodeGenSubRegIndex *Idx = ExplicitSubRegIndices[i];
279eb0c510eSKrzysztof Parzyszek     if (!SR->Artificial)
280eb0c510eSKrzysztof Parzyszek       Idx->Artificial = false;
281f1bb1519SJakob Stoklund Olesen     if (!SubRegs.insert(std::make_pair(Idx, SR)).second)
282635debe8SJoerg Sonnenberger       PrintFatalError(TheDef->getLoc(), "SubRegIndex " + Idx->getName() +
28384bd44ebSJakob Stoklund Olesen                       " appears twice in Register " + getName());
2849b41e5dbSJakob Stoklund Olesen     // Map explicit sub-registers first, so the names take precedence.
2859b41e5dbSJakob Stoklund Olesen     // The inherited sub-registers are mapped below.
2869b41e5dbSJakob Stoklund Olesen     SubReg2Idx.insert(std::make_pair(SR, Idx));
28784bd44ebSJakob Stoklund Olesen   }
28884bd44ebSJakob Stoklund Olesen 
28984bd44ebSJakob Stoklund Olesen   // Keep track of inherited subregs and how they can be reached.
29021231609SJakob Stoklund Olesen   SmallPtrSet<CodeGenRegister*, 8> Orphans;
29184bd44ebSJakob Stoklund Olesen 
29221231609SJakob Stoklund Olesen   // Clone inherited subregs and place duplicate entries in Orphans.
29384bd44ebSJakob Stoklund Olesen   // Here the order is important - earlier subregs take precedence.
2944b13bfd9SJaved Absar   for (CodeGenRegister *ESR : ExplicitSubRegs) {
2954b13bfd9SJaved Absar     const SubRegMap &Map = ESR->computeSubRegs(RegBank);
2964b13bfd9SJaved Absar     HasDisjunctSubRegs |= ESR->HasDisjunctSubRegs;
297d2b4713eSJakob Stoklund Olesen 
2984b13bfd9SJaved Absar     for (const auto &SR : Map) {
2994b13bfd9SJaved Absar       if (!SubRegs.insert(SR).second)
3004b13bfd9SJaved Absar         Orphans.insert(SR.second);
301d2b4713eSJakob Stoklund Olesen     }
30284bd44ebSJakob Stoklund Olesen   }
30384bd44ebSJakob Stoklund Olesen 
30421231609SJakob Stoklund Olesen   // Expand any composed subreg indices.
30521231609SJakob Stoklund Olesen   // If dsub_2 has ComposedOf = [qsub_1, dsub_0], and this register has a
30621231609SJakob Stoklund Olesen   // qsub_1 subreg, add a dsub_2 subreg.  Keep growing Indices and process
30721231609SJakob Stoklund Olesen   // expanded subreg indices recursively.
308c1e9087fSJakob Stoklund Olesen   SmallVector<CodeGenSubRegIndex*, 8> Indices = ExplicitSubRegIndices;
30921231609SJakob Stoklund Olesen   for (unsigned i = 0; i != Indices.size(); ++i) {
31021231609SJakob Stoklund Olesen     CodeGenSubRegIndex *Idx = Indices[i];
31121231609SJakob Stoklund Olesen     const CodeGenSubRegIndex::CompMap &Comps = Idx->getComposites();
31221231609SJakob Stoklund Olesen     CodeGenRegister *SR = SubRegs[Idx];
3137d1fa380SJakob Stoklund Olesen     const SubRegMap &Map = SR->computeSubRegs(RegBank);
31421231609SJakob Stoklund Olesen 
31521231609SJakob Stoklund Olesen     // Look at the possible compositions of Idx.
31621231609SJakob Stoklund Olesen     // They may not all be supported by SR.
31721231609SJakob Stoklund Olesen     for (CodeGenSubRegIndex::CompMap::const_iterator I = Comps.begin(),
31821231609SJakob Stoklund Olesen            E = Comps.end(); I != E; ++I) {
31921231609SJakob Stoklund Olesen       SubRegMap::const_iterator SRI = Map.find(I->first);
32021231609SJakob Stoklund Olesen       if (SRI == Map.end())
32121231609SJakob Stoklund Olesen         continue; // Idx + I->first doesn't exist in SR.
32221231609SJakob Stoklund Olesen       // Add I->second as a name for the subreg SRI->second, assuming it is
32321231609SJakob Stoklund Olesen       // orphaned, and the name isn't already used for something else.
32421231609SJakob Stoklund Olesen       if (SubRegs.count(I->second) || !Orphans.erase(SRI->second))
32521231609SJakob Stoklund Olesen         continue;
32621231609SJakob Stoklund Olesen       // We found a new name for the orphaned sub-register.
32721231609SJakob Stoklund Olesen       SubRegs.insert(std::make_pair(I->second, SRI->second));
32821231609SJakob Stoklund Olesen       Indices.push_back(I->second);
32921231609SJakob Stoklund Olesen     }
33021231609SJakob Stoklund Olesen   }
33121231609SJakob Stoklund Olesen 
33284bd44ebSJakob Stoklund Olesen   // Now Orphans contains the inherited subregisters without a direct index.
33384bd44ebSJakob Stoklund Olesen   // Create inferred indexes for all missing entries.
33421231609SJakob Stoklund Olesen   // Work backwards in the Indices vector in order to compose subregs bottom-up.
33521231609SJakob Stoklund Olesen   // Consider this subreg sequence:
33621231609SJakob Stoklund Olesen   //
33721231609SJakob Stoklund Olesen   //   qsub_1 -> dsub_0 -> ssub_0
33821231609SJakob Stoklund Olesen   //
33921231609SJakob Stoklund Olesen   // The qsub_1 -> dsub_0 composition becomes dsub_2, so the ssub_0 register
34021231609SJakob Stoklund Olesen   // can be reached in two different ways:
34121231609SJakob Stoklund Olesen   //
34221231609SJakob Stoklund Olesen   //   qsub_1 -> ssub_0
34321231609SJakob Stoklund Olesen   //   dsub_2 -> ssub_0
34421231609SJakob Stoklund Olesen   //
34521231609SJakob Stoklund Olesen   // We pick the latter composition because another register may have [dsub_0,
346bde91766SBenjamin Kramer   // dsub_1, dsub_2] subregs without necessarily having a qsub_1 subreg.  The
34721231609SJakob Stoklund Olesen   // dsub_2 -> ssub_0 composition can be shared.
34821231609SJakob Stoklund Olesen   while (!Indices.empty() && !Orphans.empty()) {
34921231609SJakob Stoklund Olesen     CodeGenSubRegIndex *Idx = Indices.pop_back_val();
35021231609SJakob Stoklund Olesen     CodeGenRegister *SR = SubRegs[Idx];
3517d1fa380SJakob Stoklund Olesen     const SubRegMap &Map = SR->computeSubRegs(RegBank);
3524b13bfd9SJaved Absar     for (const auto &SubReg : Map)
3534b13bfd9SJaved Absar       if (Orphans.erase(SubReg.second))
3544b13bfd9SJaved Absar         SubRegs[RegBank.getCompositeSubRegIndex(Idx, SubReg.first)] = SubReg.second;
35584bd44ebSJakob Stoklund Olesen   }
3561a004ca0SAndrew Trick 
3579b41e5dbSJakob Stoklund Olesen   // Compute the inverse SubReg -> Idx map.
3584b13bfd9SJaved Absar   for (const auto &SubReg : SubRegs) {
3594b13bfd9SJaved Absar     if (SubReg.second == this) {
360d7b66968SJakob Stoklund Olesen       ArrayRef<SMLoc> Loc;
36159959363SJakob Stoklund Olesen       if (TheDef)
36259959363SJakob Stoklund Olesen         Loc = TheDef->getLoc();
363635debe8SJoerg Sonnenberger       PrintFatalError(Loc, "Register " + getName() +
36459959363SJakob Stoklund Olesen                       " has itself as a sub-register");
36559959363SJakob Stoklund Olesen     }
3669ae96c7aSJakob Stoklund Olesen 
3679ae96c7aSJakob Stoklund Olesen     // Compute AllSuperRegsCovered.
3689ae96c7aSJakob Stoklund Olesen     if (!CoveredBySubRegs)
3694b13bfd9SJaved Absar       SubReg.first->AllSuperRegsCovered = false;
3709ae96c7aSJakob Stoklund Olesen 
37159959363SJakob Stoklund Olesen     // Ensure that every sub-register has a unique name.
37259959363SJakob Stoklund Olesen     DenseMap<const CodeGenRegister*, CodeGenSubRegIndex*>::iterator Ins =
3734b13bfd9SJaved Absar       SubReg2Idx.insert(std::make_pair(SubReg.second, SubReg.first)).first;
3744b13bfd9SJaved Absar     if (Ins->second == SubReg.first)
3759b41e5dbSJakob Stoklund Olesen       continue;
3764b13bfd9SJaved Absar     // Trouble: Two different names for SubReg.second.
377d7b66968SJakob Stoklund Olesen     ArrayRef<SMLoc> Loc;
37859959363SJakob Stoklund Olesen     if (TheDef)
37959959363SJakob Stoklund Olesen       Loc = TheDef->getLoc();
380635debe8SJoerg Sonnenberger     PrintFatalError(Loc, "Sub-register can't have two names: " +
3814b13bfd9SJaved Absar                   SubReg.second->getName() + " available as " +
3824b13bfd9SJaved Absar                   SubReg.first->getName() + " and " + Ins->second->getName());
3839b41e5dbSJakob Stoklund Olesen   }
3849b41e5dbSJakob Stoklund Olesen 
385c08df9e5SJakob Stoklund Olesen   // Derive possible names for sub-register concatenations from any explicit
386c08df9e5SJakob Stoklund Olesen   // sub-registers. By doing this before computeSecondarySubRegs(), we ensure
387c08df9e5SJakob Stoklund Olesen   // that getConcatSubRegIndex() won't invent any concatenated indices that the
388c08df9e5SJakob Stoklund Olesen   // user already specified.
389c08df9e5SJakob Stoklund Olesen   for (unsigned i = 0, e = ExplicitSubRegs.size(); i != e; ++i) {
390c08df9e5SJakob Stoklund Olesen     CodeGenRegister *SR = ExplicitSubRegs[i];
391fd974949SKrzysztof Parzyszek     if (!SR->CoveredBySubRegs || SR->ExplicitSubRegs.size() <= 1 ||
392fd974949SKrzysztof Parzyszek         SR->Artificial)
393c08df9e5SJakob Stoklund Olesen       continue;
394c08df9e5SJakob Stoklund Olesen 
395c08df9e5SJakob Stoklund Olesen     // SR is composed of multiple sub-regs. Find their names in this register.
396c08df9e5SJakob Stoklund Olesen     SmallVector<CodeGenSubRegIndex*, 8> Parts;
397fd974949SKrzysztof Parzyszek     for (unsigned j = 0, e = SR->ExplicitSubRegs.size(); j != e; ++j) {
398fd974949SKrzysztof Parzyszek       CodeGenSubRegIndex &I = *SR->ExplicitSubRegIndices[j];
399fd974949SKrzysztof Parzyszek       if (!I.Artificial)
400c08df9e5SJakob Stoklund Olesen         Parts.push_back(getSubRegIndex(SR->ExplicitSubRegs[j]));
401fd974949SKrzysztof Parzyszek     }
402c08df9e5SJakob Stoklund Olesen 
403c08df9e5SJakob Stoklund Olesen     // Offer this as an existing spelling for the concatenation of Parts.
404afcff2d0SMatthias Braun     CodeGenSubRegIndex &Idx = *ExplicitSubRegIndices[i];
405afcff2d0SMatthias Braun     Idx.setConcatenationOf(Parts);
406c08df9e5SJakob Stoklund Olesen   }
407c08df9e5SJakob Stoklund Olesen 
408066fba1aSJakob Stoklund Olesen   // Initialize RegUnitList. Because getSubRegs is called recursively, this
409066fba1aSJakob Stoklund Olesen   // processes the register hierarchy in postorder.
4101a004ca0SAndrew Trick   //
411066fba1aSJakob Stoklund Olesen   // Inherit all sub-register units. It is good enough to look at the explicit
412066fba1aSJakob Stoklund Olesen   // sub-registers, the other registers won't contribute any more units.
413066fba1aSJakob Stoklund Olesen   for (unsigned i = 0, e = ExplicitSubRegs.size(); i != e; ++i) {
414066fba1aSJakob Stoklund Olesen     CodeGenRegister *SR = ExplicitSubRegs[i];
415a366d7b2SOwen Anderson     RegUnits |= SR->RegUnits;
416066fba1aSJakob Stoklund Olesen   }
417066fba1aSJakob Stoklund Olesen 
418066fba1aSJakob Stoklund Olesen   // Absent any ad hoc aliasing, we create one register unit per leaf register.
419066fba1aSJakob Stoklund Olesen   // These units correspond to the maximal cliques in the register overlap
420066fba1aSJakob Stoklund Olesen   // graph which is optimal.
421066fba1aSJakob Stoklund Olesen   //
422066fba1aSJakob Stoklund Olesen   // When there is ad hoc aliasing, we simply create one unit per edge in the
423066fba1aSJakob Stoklund Olesen   // undirected ad hoc aliasing graph. Technically, we could do better by
424066fba1aSJakob Stoklund Olesen   // identifying maximal cliques in the ad hoc graph, but cliques larger than 2
425066fba1aSJakob Stoklund Olesen   // are extremely rare anyway (I've never seen one), so we don't bother with
426066fba1aSJakob Stoklund Olesen   // the added complexity.
427066fba1aSJakob Stoklund Olesen   for (unsigned i = 0, e = ExplicitAliases.size(); i != e; ++i) {
428066fba1aSJakob Stoklund Olesen     CodeGenRegister *AR = ExplicitAliases[i];
429066fba1aSJakob Stoklund Olesen     // Only visit each edge once.
430066fba1aSJakob Stoklund Olesen     if (AR->SubRegsComplete)
431066fba1aSJakob Stoklund Olesen       continue;
432066fba1aSJakob Stoklund Olesen     // Create a RegUnit representing this alias edge, and add it to both
433066fba1aSJakob Stoklund Olesen     // registers.
434095f22afSJakob Stoklund Olesen     unsigned Unit = RegBank.newRegUnit(this, AR);
435a366d7b2SOwen Anderson     RegUnits.set(Unit);
436a366d7b2SOwen Anderson     AR->RegUnits.set(Unit);
437066fba1aSJakob Stoklund Olesen   }
438066fba1aSJakob Stoklund Olesen 
439066fba1aSJakob Stoklund Olesen   // Finally, create units for leaf registers without ad hoc aliases. Note that
440066fba1aSJakob Stoklund Olesen   // a leaf register with ad hoc aliases doesn't get its own unit - it isn't
441066fba1aSJakob Stoklund Olesen   // necessary. This means the aliasing leaf registers can share a single unit.
442066fba1aSJakob Stoklund Olesen   if (RegUnits.empty())
443a366d7b2SOwen Anderson     RegUnits.set(RegBank.newRegUnit(this));
444066fba1aSJakob Stoklund Olesen 
4457f381bd2SJakob Stoklund Olesen   // We have now computed the native register units. More may be adopted later
4467f381bd2SJakob Stoklund Olesen   // for balancing purposes.
447a366d7b2SOwen Anderson   NativeRegUnits = RegUnits;
4487f381bd2SJakob Stoklund Olesen 
44984bd44ebSJakob Stoklund Olesen   return SubRegs;
45084bd44ebSJakob Stoklund Olesen }
45184bd44ebSJakob Stoklund Olesen 
452c08df9e5SJakob Stoklund Olesen // In a register that is covered by its sub-registers, try to find redundant
453c08df9e5SJakob Stoklund Olesen // sub-registers. For example:
454c08df9e5SJakob Stoklund Olesen //
455c08df9e5SJakob Stoklund Olesen //   QQ0 = {Q0, Q1}
456c08df9e5SJakob Stoklund Olesen //   Q0 = {D0, D1}
457c08df9e5SJakob Stoklund Olesen //   Q1 = {D2, D3}
458c08df9e5SJakob Stoklund Olesen //
459c08df9e5SJakob Stoklund Olesen // We can infer that D1_D2 is also a sub-register, even if it wasn't named in
460c08df9e5SJakob Stoklund Olesen // the register definition.
461c08df9e5SJakob Stoklund Olesen //
462c08df9e5SJakob Stoklund Olesen // The explicitly specified registers form a tree. This function discovers
463c08df9e5SJakob Stoklund Olesen // sub-register relationships that would force a DAG.
464c08df9e5SJakob Stoklund Olesen //
465c08df9e5SJakob Stoklund Olesen void CodeGenRegister::computeSecondarySubRegs(CodeGenRegBank &RegBank) {
466c08df9e5SJakob Stoklund Olesen   SmallVector<SubRegMap::value_type, 8> NewSubRegs;
467c08df9e5SJakob Stoklund Olesen 
468afcff2d0SMatthias Braun   std::queue<std::pair<CodeGenSubRegIndex*,CodeGenRegister*>> SubRegQueue;
469afcff2d0SMatthias Braun   for (std::pair<CodeGenSubRegIndex*,CodeGenRegister*> P : SubRegs)
470afcff2d0SMatthias Braun     SubRegQueue.push(P);
471afcff2d0SMatthias Braun 
472c08df9e5SJakob Stoklund Olesen   // Look at the leading super-registers of each sub-register. Those are the
473c08df9e5SJakob Stoklund Olesen   // candidates for new sub-registers, assuming they are fully contained in
474c08df9e5SJakob Stoklund Olesen   // this register.
475afcff2d0SMatthias Braun   while (!SubRegQueue.empty()) {
476afcff2d0SMatthias Braun     CodeGenSubRegIndex *SubRegIdx;
477afcff2d0SMatthias Braun     const CodeGenRegister *SubReg;
478afcff2d0SMatthias Braun     std::tie(SubRegIdx, SubReg) = SubRegQueue.front();
479afcff2d0SMatthias Braun     SubRegQueue.pop();
480afcff2d0SMatthias Braun 
481c08df9e5SJakob Stoklund Olesen     const CodeGenRegister::SuperRegList &Leads = SubReg->LeadingSuperRegs;
482c08df9e5SJakob Stoklund Olesen     for (unsigned i = 0, e = Leads.size(); i != e; ++i) {
483c08df9e5SJakob Stoklund Olesen       CodeGenRegister *Cand = const_cast<CodeGenRegister*>(Leads[i]);
484c08df9e5SJakob Stoklund Olesen       // Already got this sub-register?
485c08df9e5SJakob Stoklund Olesen       if (Cand == this || getSubRegIndex(Cand))
486c08df9e5SJakob Stoklund Olesen         continue;
487c08df9e5SJakob Stoklund Olesen       // Check if each component of Cand is already a sub-register.
488c08df9e5SJakob Stoklund Olesen       assert(!Cand->ExplicitSubRegs.empty() &&
489c08df9e5SJakob Stoklund Olesen              "Super-register has no sub-registers");
490afcff2d0SMatthias Braun       if (Cand->ExplicitSubRegs.size() == 1)
491afcff2d0SMatthias Braun         continue;
492afcff2d0SMatthias Braun       SmallVector<CodeGenSubRegIndex*, 8> Parts;
493afcff2d0SMatthias Braun       // We know that the first component is (SubRegIdx,SubReg). However we
494afcff2d0SMatthias Braun       // may still need to split it into smaller subregister parts.
495abbc4a7fSMatthias Braun       assert(Cand->ExplicitSubRegs[0] == SubReg && "LeadingSuperRegs correct");
496abbc4a7fSMatthias Braun       assert(getSubRegIndex(SubReg) == SubRegIdx && "LeadingSuperRegs correct");
497afcff2d0SMatthias Braun       for (CodeGenRegister *SubReg : Cand->ExplicitSubRegs) {
498afcff2d0SMatthias Braun         if (CodeGenSubRegIndex *SubRegIdx = getSubRegIndex(SubReg)) {
499afcff2d0SMatthias Braun           if (SubRegIdx->ConcatenationOf.empty()) {
500afcff2d0SMatthias Braun             Parts.push_back(SubRegIdx);
501abbc4a7fSMatthias Braun           } else
502afcff2d0SMatthias Braun             for (CodeGenSubRegIndex *SubIdx : SubRegIdx->ConcatenationOf)
503afcff2d0SMatthias Braun               Parts.push_back(SubIdx);
504afcff2d0SMatthias Braun         } else {
505c08df9e5SJakob Stoklund Olesen           // Sub-register doesn't exist.
506c08df9e5SJakob Stoklund Olesen           Parts.clear();
507c08df9e5SJakob Stoklund Olesen           break;
508c08df9e5SJakob Stoklund Olesen         }
509c08df9e5SJakob Stoklund Olesen       }
510afcff2d0SMatthias Braun       // There is nothing to do if some Cand sub-register is not part of this
511afcff2d0SMatthias Braun       // register.
512afcff2d0SMatthias Braun       if (Parts.empty())
513c08df9e5SJakob Stoklund Olesen         continue;
514c08df9e5SJakob Stoklund Olesen 
515c08df9e5SJakob Stoklund Olesen       // Each part of Cand is a sub-register of this. Make the full Cand also
516c08df9e5SJakob Stoklund Olesen       // a sub-register with a concatenated sub-register index.
517c08df9e5SJakob Stoklund Olesen       CodeGenSubRegIndex *Concat = RegBank.getConcatSubRegIndex(Parts);
518afcff2d0SMatthias Braun       std::pair<CodeGenSubRegIndex*,CodeGenRegister*> NewSubReg =
519afcff2d0SMatthias Braun           std::make_pair(Concat, Cand);
520c08df9e5SJakob Stoklund Olesen 
521afcff2d0SMatthias Braun       if (!SubRegs.insert(NewSubReg).second)
522c08df9e5SJakob Stoklund Olesen         continue;
523c08df9e5SJakob Stoklund Olesen 
524afcff2d0SMatthias Braun       // We inserted a new subregister.
525afcff2d0SMatthias Braun       NewSubRegs.push_back(NewSubReg);
526afcff2d0SMatthias Braun       SubRegQueue.push(NewSubReg);
527afcff2d0SMatthias Braun       SubReg2Idx.insert(std::make_pair(Cand, Concat));
528afcff2d0SMatthias Braun     }
529c08df9e5SJakob Stoklund Olesen   }
530c08df9e5SJakob Stoklund Olesen 
531c08df9e5SJakob Stoklund Olesen   // Create sub-register index composition maps for the synthesized indices.
532c08df9e5SJakob Stoklund Olesen   for (unsigned i = 0, e = NewSubRegs.size(); i != e; ++i) {
533c08df9e5SJakob Stoklund Olesen     CodeGenSubRegIndex *NewIdx = NewSubRegs[i].first;
534c08df9e5SJakob Stoklund Olesen     CodeGenRegister *NewSubReg = NewSubRegs[i].second;
535c08df9e5SJakob Stoklund Olesen     for (SubRegMap::const_iterator SI = NewSubReg->SubRegs.begin(),
536c08df9e5SJakob Stoklund Olesen            SE = NewSubReg->SubRegs.end(); SI != SE; ++SI) {
537c08df9e5SJakob Stoklund Olesen       CodeGenSubRegIndex *SubIdx = getSubRegIndex(SI->second);
538c08df9e5SJakob Stoklund Olesen       if (!SubIdx)
539635debe8SJoerg Sonnenberger         PrintFatalError(TheDef->getLoc(), "No SubRegIndex for " +
540c08df9e5SJakob Stoklund Olesen                         SI->second->getName() + " in " + getName());
541c08df9e5SJakob Stoklund Olesen       NewIdx->addComposite(SI->first, SubIdx);
542c08df9e5SJakob Stoklund Olesen     }
543c08df9e5SJakob Stoklund Olesen   }
544c08df9e5SJakob Stoklund Olesen }
545c08df9e5SJakob Stoklund Olesen 
54650ecd0ffSJakob Stoklund Olesen void CodeGenRegister::computeSuperRegs(CodeGenRegBank &RegBank) {
5473f3eb180SJakob Stoklund Olesen   // Only visit each register once.
5483f3eb180SJakob Stoklund Olesen   if (SuperRegsComplete)
5493f3eb180SJakob Stoklund Olesen     return;
5503f3eb180SJakob Stoklund Olesen   SuperRegsComplete = true;
5513f3eb180SJakob Stoklund Olesen 
5523f3eb180SJakob Stoklund Olesen   // Make sure all sub-registers have been visited first, so the super-reg
5533f3eb180SJakob Stoklund Olesen   // lists will be topologically ordered.
5543f3eb180SJakob Stoklund Olesen   for (SubRegMap::const_iterator I = SubRegs.begin(), E = SubRegs.end();
5553f3eb180SJakob Stoklund Olesen        I != E; ++I)
55650ecd0ffSJakob Stoklund Olesen     I->second->computeSuperRegs(RegBank);
5573f3eb180SJakob Stoklund Olesen 
5583f3eb180SJakob Stoklund Olesen   // Now add this as a super-register on all sub-registers.
55950ecd0ffSJakob Stoklund Olesen   // Also compute the TopoSigId in post-order.
56050ecd0ffSJakob Stoklund Olesen   TopoSigId Id;
5613f3eb180SJakob Stoklund Olesen   for (SubRegMap::const_iterator I = SubRegs.begin(), E = SubRegs.end();
5623f3eb180SJakob Stoklund Olesen        I != E; ++I) {
56350ecd0ffSJakob Stoklund Olesen     // Topological signature computed from SubIdx, TopoId(SubReg).
56450ecd0ffSJakob Stoklund Olesen     // Loops and idempotent indices have TopoSig = ~0u.
56550ecd0ffSJakob Stoklund Olesen     Id.push_back(I->first->EnumValue);
56650ecd0ffSJakob Stoklund Olesen     Id.push_back(I->second->TopoSig);
56750ecd0ffSJakob Stoklund Olesen 
5683f3eb180SJakob Stoklund Olesen     // Don't add duplicate entries.
5693f3eb180SJakob Stoklund Olesen     if (!I->second->SuperRegs.empty() && I->second->SuperRegs.back() == this)
5703f3eb180SJakob Stoklund Olesen       continue;
5713f3eb180SJakob Stoklund Olesen     I->second->SuperRegs.push_back(this);
5723f3eb180SJakob Stoklund Olesen   }
57350ecd0ffSJakob Stoklund Olesen   TopoSig = RegBank.getTopoSig(Id);
5743f3eb180SJakob Stoklund Olesen }
5753f3eb180SJakob Stoklund Olesen 
576d2b4713eSJakob Stoklund Olesen void
57700296815SJakob Stoklund Olesen CodeGenRegister::addSubRegsPreOrder(SetVector<const CodeGenRegister*> &OSet,
578f1bb1519SJakob Stoklund Olesen                                     CodeGenRegBank &RegBank) const {
579d2b4713eSJakob Stoklund Olesen   assert(SubRegsComplete && "Must precompute sub-registers");
580c1e9087fSJakob Stoklund Olesen   for (unsigned i = 0, e = ExplicitSubRegs.size(); i != e; ++i) {
581c1e9087fSJakob Stoklund Olesen     CodeGenRegister *SR = ExplicitSubRegs[i];
582d2b4713eSJakob Stoklund Olesen     if (OSet.insert(SR))
583f1bb1519SJakob Stoklund Olesen       SR->addSubRegsPreOrder(OSet, RegBank);
584d2b4713eSJakob Stoklund Olesen   }
585c08df9e5SJakob Stoklund Olesen   // Add any secondary sub-registers that weren't part of the explicit tree.
586c08df9e5SJakob Stoklund Olesen   for (SubRegMap::const_iterator I = SubRegs.begin(), E = SubRegs.end();
587c08df9e5SJakob Stoklund Olesen        I != E; ++I)
588c08df9e5SJakob Stoklund Olesen     OSet.insert(I->second);
589d2b4713eSJakob Stoklund Olesen }
590d2b4713eSJakob Stoklund Olesen 
5911d7a2c57SAndrew Trick // Get the sum of this register's unit weights.
5921d7a2c57SAndrew Trick unsigned CodeGenRegister::getWeight(const CodeGenRegBank &RegBank) const {
5931d7a2c57SAndrew Trick   unsigned Weight = 0;
594a366d7b2SOwen Anderson   for (RegUnitList::iterator I = RegUnits.begin(), E = RegUnits.end();
5951d7a2c57SAndrew Trick        I != E; ++I) {
596095f22afSJakob Stoklund Olesen     Weight += RegBank.getRegUnit(*I).Weight;
5971d7a2c57SAndrew Trick   }
5981d7a2c57SAndrew Trick   return Weight;
5991d7a2c57SAndrew Trick }
6001d7a2c57SAndrew Trick 
60168d6d8abSJakob Stoklund Olesen //===----------------------------------------------------------------------===//
6023bd1b65eSJakob Stoklund Olesen //                               RegisterTuples
6033bd1b65eSJakob Stoklund Olesen //===----------------------------------------------------------------------===//
6043bd1b65eSJakob Stoklund Olesen 
6053bd1b65eSJakob Stoklund Olesen // A RegisterTuples def is used to generate pseudo-registers from lists of
6063bd1b65eSJakob Stoklund Olesen // sub-registers. We provide a SetTheory expander class that returns the new
6073bd1b65eSJakob Stoklund Olesen // registers.
6083bd1b65eSJakob Stoklund Olesen namespace {
609a3fe70d2SEugene Zelenko 
6103bd1b65eSJakob Stoklund Olesen struct TupleExpander : SetTheory::Expander {
6116c21b3b5SFlorian Hahn   // Reference to SynthDefs in the containing CodeGenRegBank, to keep track of
6126c21b3b5SFlorian Hahn   // the synthesized definitions for their lifetime.
6136c21b3b5SFlorian Hahn   std::vector<std::unique_ptr<Record>> &SynthDefs;
6146c21b3b5SFlorian Hahn 
6156c21b3b5SFlorian Hahn   TupleExpander(std::vector<std::unique_ptr<Record>> &SynthDefs)
6166c21b3b5SFlorian Hahn       : SynthDefs(SynthDefs) {}
6176c21b3b5SFlorian Hahn 
618716b0730SCraig Topper   void expand(SetTheory &ST, Record *Def, SetTheory::RecSet &Elts) override {
6193bd1b65eSJakob Stoklund Olesen     std::vector<Record*> Indices = Def->getValueAsListOfDefs("SubRegIndices");
6203bd1b65eSJakob Stoklund Olesen     unsigned Dim = Indices.size();
621af8ee2cdSDavid Greene     ListInit *SubRegs = Def->getValueAsListInit("SubRegs");
622664f6a04SCraig Topper     if (Dim != SubRegs->size())
623635debe8SJoerg Sonnenberger       PrintFatalError(Def->getLoc(), "SubRegIndices and SubRegs size mismatch");
6243bd1b65eSJakob Stoklund Olesen     if (Dim < 2)
625635debe8SJoerg Sonnenberger       PrintFatalError(Def->getLoc(),
626635debe8SJoerg Sonnenberger                       "Tuples must have at least 2 sub-registers");
6273bd1b65eSJakob Stoklund Olesen 
6283bd1b65eSJakob Stoklund Olesen     // Evaluate the sub-register lists to be zipped.
6293bd1b65eSJakob Stoklund Olesen     unsigned Length = ~0u;
6303bd1b65eSJakob Stoklund Olesen     SmallVector<SetTheory::RecSet, 4> Lists(Dim);
6313bd1b65eSJakob Stoklund Olesen     for (unsigned i = 0; i != Dim; ++i) {
63270909373SJoerg Sonnenberger       ST.evaluate(SubRegs->getElement(i), Lists[i], Def->getLoc());
6333bd1b65eSJakob Stoklund Olesen       Length = std::min(Length, unsigned(Lists[i].size()));
6343bd1b65eSJakob Stoklund Olesen     }
6353bd1b65eSJakob Stoklund Olesen 
6363bd1b65eSJakob Stoklund Olesen     if (Length == 0)
6373bd1b65eSJakob Stoklund Olesen       return;
6383bd1b65eSJakob Stoklund Olesen 
6393bd1b65eSJakob Stoklund Olesen     // Precompute some types.
6403bd1b65eSJakob Stoklund Olesen     Record *RegisterCl = Def->getRecords().getClass("Register");
641abcfdceaSJakob Stoklund Olesen     RecTy *RegisterRecTy = RecordRecTy::get(RegisterCl);
64201fcf923SStanislav Mekhanoshin     std::vector<StringRef> RegNames =
64301fcf923SStanislav Mekhanoshin       Def->getValueAsListOfStrings("RegAsmNames");
6443bd1b65eSJakob Stoklund Olesen 
6453bd1b65eSJakob Stoklund Olesen     // Zip them up.
6463bd1b65eSJakob Stoklund Olesen     for (unsigned n = 0; n != Length; ++n) {
6473bd1b65eSJakob Stoklund Olesen       std::string Name;
6483bd1b65eSJakob Stoklund Olesen       Record *Proto = Lists[0][n];
649af8ee2cdSDavid Greene       std::vector<Init*> Tuple;
6503bd1b65eSJakob Stoklund Olesen       unsigned CostPerUse = 0;
6513bd1b65eSJakob Stoklund Olesen       for (unsigned i = 0; i != Dim; ++i) {
6523bd1b65eSJakob Stoklund Olesen         Record *Reg = Lists[i][n];
6533bd1b65eSJakob Stoklund Olesen         if (i) Name += '_';
6543bd1b65eSJakob Stoklund Olesen         Name += Reg->getName();
655abcfdceaSJakob Stoklund Olesen         Tuple.push_back(DefInit::get(Reg));
6563bd1b65eSJakob Stoklund Olesen         CostPerUse = std::max(CostPerUse,
6573bd1b65eSJakob Stoklund Olesen                               unsigned(Reg->getValueAsInt("CostPerUse")));
6583bd1b65eSJakob Stoklund Olesen       }
6593bd1b65eSJakob Stoklund Olesen 
66001fcf923SStanislav Mekhanoshin       StringInit *AsmName = StringInit::get("");
66101fcf923SStanislav Mekhanoshin       if (!RegNames.empty()) {
66201fcf923SStanislav Mekhanoshin         if (RegNames.size() <= n)
66301fcf923SStanislav Mekhanoshin           PrintFatalError(Def->getLoc(),
66401fcf923SStanislav Mekhanoshin                           "Register tuple definition missing name for '" +
66501fcf923SStanislav Mekhanoshin                             Name + "'.");
66601fcf923SStanislav Mekhanoshin         AsmName = StringInit::get(RegNames[n]);
66701fcf923SStanislav Mekhanoshin       }
66801fcf923SStanislav Mekhanoshin 
6693bd1b65eSJakob Stoklund Olesen       // Create a new Record representing the synthesized register. This record
6703bd1b65eSJakob Stoklund Olesen       // is only for consumption by CodeGenRegister, it is not added to the
6713bd1b65eSJakob Stoklund Olesen       // RecordKeeper.
6726c21b3b5SFlorian Hahn       SynthDefs.emplace_back(
673*0eaee545SJonas Devlieghere           std::make_unique<Record>(Name, Def->getLoc(), Def->getRecords()));
6746c21b3b5SFlorian Hahn       Record *NewReg = SynthDefs.back().get();
6753bd1b65eSJakob Stoklund Olesen       Elts.insert(NewReg);
6763bd1b65eSJakob Stoklund Olesen 
6773bd1b65eSJakob Stoklund Olesen       // Copy Proto super-classes.
6780e41d0b9SCraig Topper       ArrayRef<std::pair<Record *, SMRange>> Supers = Proto->getSuperClasses();
6790e41d0b9SCraig Topper       for (const auto &SuperPair : Supers)
6800e41d0b9SCraig Topper         NewReg->addSuperClass(SuperPair.first, SuperPair.second);
6813bd1b65eSJakob Stoklund Olesen 
6823bd1b65eSJakob Stoklund Olesen       // Copy Proto fields.
6833bd1b65eSJakob Stoklund Olesen       for (unsigned i = 0, e = Proto->getValues().size(); i != e; ++i) {
6843bd1b65eSJakob Stoklund Olesen         RecordVal RV = Proto->getValues()[i];
6853bd1b65eSJakob Stoklund Olesen 
686f43b5995SJakob Stoklund Olesen         // Skip existing fields, like NAME.
687f43b5995SJakob Stoklund Olesen         if (NewReg->getValue(RV.getNameInit()))
688071c69cdSJakob Stoklund Olesen           continue;
689071c69cdSJakob Stoklund Olesen 
690f43b5995SJakob Stoklund Olesen         StringRef Field = RV.getName();
691f43b5995SJakob Stoklund Olesen 
6923bd1b65eSJakob Stoklund Olesen         // Replace the sub-register list with Tuple.
693f43b5995SJakob Stoklund Olesen         if (Field == "SubRegs")
694e32ebf22SDavid Greene           RV.setValue(ListInit::get(Tuple, RegisterRecTy));
6953bd1b65eSJakob Stoklund Olesen 
696f43b5995SJakob Stoklund Olesen         if (Field == "AsmName")
69701fcf923SStanislav Mekhanoshin           RV.setValue(AsmName);
6983bd1b65eSJakob Stoklund Olesen 
6993bd1b65eSJakob Stoklund Olesen         // CostPerUse is aggregated from all Tuple members.
700f43b5995SJakob Stoklund Olesen         if (Field == "CostPerUse")
701e32ebf22SDavid Greene           RV.setValue(IntInit::get(CostPerUse));
7023bd1b65eSJakob Stoklund Olesen 
703f43b5995SJakob Stoklund Olesen         // Composite registers are always covered by sub-registers.
704f43b5995SJakob Stoklund Olesen         if (Field == "CoveredBySubRegs")
705f43b5995SJakob Stoklund Olesen           RV.setValue(BitInit::get(true));
706f43b5995SJakob Stoklund Olesen 
7073bd1b65eSJakob Stoklund Olesen         // Copy fields from the RegisterTuples def.
708f43b5995SJakob Stoklund Olesen         if (Field == "SubRegIndices" ||
709f43b5995SJakob Stoklund Olesen             Field == "CompositeIndices") {
710f43b5995SJakob Stoklund Olesen           NewReg->addValue(*Def->getValue(Field));
7113bd1b65eSJakob Stoklund Olesen           continue;
7123bd1b65eSJakob Stoklund Olesen         }
7133bd1b65eSJakob Stoklund Olesen 
7143bd1b65eSJakob Stoklund Olesen         // Some fields get their default uninitialized value.
715f43b5995SJakob Stoklund Olesen         if (Field == "DwarfNumbers" ||
716f43b5995SJakob Stoklund Olesen             Field == "DwarfAlias" ||
717f43b5995SJakob Stoklund Olesen             Field == "Aliases") {
718f43b5995SJakob Stoklund Olesen           if (const RecordVal *DefRV = RegisterCl->getValue(Field))
719d9149a45SJakob Stoklund Olesen             NewReg->addValue(*DefRV);
7203bd1b65eSJakob Stoklund Olesen           continue;
7213bd1b65eSJakob Stoklund Olesen         }
7223bd1b65eSJakob Stoklund Olesen 
7233bd1b65eSJakob Stoklund Olesen         // Everything else is copied from Proto.
7243bd1b65eSJakob Stoklund Olesen         NewReg->addValue(RV);
7253bd1b65eSJakob Stoklund Olesen       }
7263bd1b65eSJakob Stoklund Olesen     }
7273bd1b65eSJakob Stoklund Olesen   }
7283bd1b65eSJakob Stoklund Olesen };
729a3fe70d2SEugene Zelenko 
730a3fe70d2SEugene Zelenko } // end anonymous namespace
7313bd1b65eSJakob Stoklund Olesen 
7323bd1b65eSJakob Stoklund Olesen //===----------------------------------------------------------------------===//
73368d6d8abSJakob Stoklund Olesen //                            CodeGenRegisterClass
73468d6d8abSJakob Stoklund Olesen //===----------------------------------------------------------------------===//
73568d6d8abSJakob Stoklund Olesen 
736be2edf30SOwen Anderson static void sortAndUniqueRegisters(CodeGenRegister::Vec &M) {
7370cac726aSFangrui Song   llvm::sort(M, deref<llvm::less>());
738440a0456SDavid Blaikie   M.erase(std::unique(M.begin(), M.end(), deref<llvm::equal>()), M.end());
739be2edf30SOwen Anderson }
740be2edf30SOwen Anderson 
741d7bc5c26SJakob Stoklund Olesen CodeGenRegisterClass::CodeGenRegisterClass(CodeGenRegBank &RegBank, Record *R)
74250ecd0ffSJakob Stoklund Olesen   : TheDef(R),
74350ecd0ffSJakob Stoklund Olesen     Name(R->getName()),
74450ecd0ffSJakob Stoklund Olesen     TopoSigs(RegBank.getNumTopoSigs()),
74591b5cf84SKrzysztof Parzyszek     EnumValue(-1) {
74668d6d8abSJakob Stoklund Olesen 
74768d6d8abSJakob Stoklund Olesen   std::vector<Record*> TypeList = R->getValueAsListOfDefs("RegTypes");
74868d6d8abSJakob Stoklund Olesen   for (unsigned i = 0, e = TypeList.size(); i != e; ++i) {
74968d6d8abSJakob Stoklund Olesen     Record *Type = TypeList[i];
75068d6d8abSJakob Stoklund Olesen     if (!Type->isSubClassOf("ValueType"))
751dff673bbSDaniel Sanders       PrintFatalError(R->getLoc(),
752dff673bbSDaniel Sanders                       "RegTypes list member '" + Type->getName() +
753635debe8SJoerg Sonnenberger                           "' does not derive from the ValueType class!");
754779d98e1SKrzysztof Parzyszek     VTs.push_back(getValueTypeByHwMode(Type, RegBank.getHwModes()));
75568d6d8abSJakob Stoklund Olesen   }
75668d6d8abSJakob Stoklund Olesen   assert(!VTs.empty() && "RegisterClass must contain at least one ValueType!");
75768d6d8abSJakob Stoklund Olesen 
758331534e5SJakob Stoklund Olesen   // Allocation order 0 is the full set. AltOrders provides others.
759331534e5SJakob Stoklund Olesen   const SetTheory::RecVec *Elements = RegBank.getSets().expand(R);
760331534e5SJakob Stoklund Olesen   ListInit *AltOrders = R->getValueAsListInit("AltOrders");
761664f6a04SCraig Topper   Orders.resize(1 + AltOrders->size());
762331534e5SJakob Stoklund Olesen 
76335cea3daSJakob Stoklund Olesen   // Default allocation order always contains all registers.
764eb0c510eSKrzysztof Parzyszek   Artificial = true;
765331534e5SJakob Stoklund Olesen   for (unsigned i = 0, e = Elements->size(); i != e; ++i) {
766331534e5SJakob Stoklund Olesen     Orders[0].push_back((*Elements)[i]);
76750ecd0ffSJakob Stoklund Olesen     const CodeGenRegister *Reg = RegBank.getReg((*Elements)[i]);
768be2edf30SOwen Anderson     Members.push_back(Reg);
769eb0c510eSKrzysztof Parzyszek     Artificial &= Reg->Artificial;
77050ecd0ffSJakob Stoklund Olesen     TopoSigs.set(Reg->getTopoSig());
771331534e5SJakob Stoklund Olesen   }
772be2edf30SOwen Anderson   sortAndUniqueRegisters(Members);
77368d6d8abSJakob Stoklund Olesen 
77435cea3daSJakob Stoklund Olesen   // Alternative allocation orders may be subsets.
77535cea3daSJakob Stoklund Olesen   SetTheory::RecSet Order;
776664f6a04SCraig Topper   for (unsigned i = 0, e = AltOrders->size(); i != e; ++i) {
77770909373SJoerg Sonnenberger     RegBank.getSets().evaluate(AltOrders->getElement(i), Order, R->getLoc());
778331534e5SJakob Stoklund Olesen     Orders[1 + i].append(Order.begin(), Order.end());
77935cea3daSJakob Stoklund Olesen     // Verify that all altorder members are regclass members.
78035cea3daSJakob Stoklund Olesen     while (!Order.empty()) {
78135cea3daSJakob Stoklund Olesen       CodeGenRegister *Reg = RegBank.getReg(Order.back());
78235cea3daSJakob Stoklund Olesen       Order.pop_back();
78335cea3daSJakob Stoklund Olesen       if (!contains(Reg))
784635debe8SJoerg Sonnenberger         PrintFatalError(R->getLoc(), " AltOrder register " + Reg->getName() +
78535cea3daSJakob Stoklund Olesen                       " is not a class member");
78635cea3daSJakob Stoklund Olesen     }
78735cea3daSJakob Stoklund Olesen   }
78835cea3daSJakob Stoklund Olesen 
78968d6d8abSJakob Stoklund Olesen   Namespace = R->getValueAsString("Namespace");
790779d98e1SKrzysztof Parzyszek 
791779d98e1SKrzysztof Parzyszek   if (const RecordVal *RV = R->getValue("RegInfos"))
792779d98e1SKrzysztof Parzyszek     if (DefInit *DI = dyn_cast_or_null<DefInit>(RV->getValue()))
793779d98e1SKrzysztof Parzyszek       RSI = RegSizeInfoByHwMode(DI->getDef(), RegBank.getHwModes());
794779d98e1SKrzysztof Parzyszek   unsigned Size = R->getValueAsInt("Size");
795779d98e1SKrzysztof Parzyszek   assert((RSI.hasDefault() || Size != 0 || VTs[0].isSimple()) &&
796779d98e1SKrzysztof Parzyszek          "Impossible to determine register size");
797779d98e1SKrzysztof Parzyszek   if (!RSI.hasDefault()) {
798779d98e1SKrzysztof Parzyszek     RegSizeInfo RI;
799779d98e1SKrzysztof Parzyszek     RI.RegSize = RI.SpillSize = Size ? Size
800779d98e1SKrzysztof Parzyszek                                      : VTs[0].getSimple().getSizeInBits();
801779d98e1SKrzysztof Parzyszek     RI.SpillAlignment = R->getValueAsInt("Alignment");
802779d98e1SKrzysztof Parzyszek     RSI.Map.insert({DefaultMode, RI});
803779d98e1SKrzysztof Parzyszek   }
804779d98e1SKrzysztof Parzyszek 
80568d6d8abSJakob Stoklund Olesen   CopyCost = R->getValueAsInt("CopyCost");
80668d6d8abSJakob Stoklund Olesen   Allocatable = R->getValueAsBit("isAllocatable");
807dd8fbf57SJakob Stoklund Olesen   AltOrderSelect = R->getValueAsString("AltOrderSelect");
808a354cdd0SMatthias Braun   int AllocationPriority = R->getValueAsInt("AllocationPriority");
809a354cdd0SMatthias Braun   if (AllocationPriority < 0 || AllocationPriority > 63)
810a354cdd0SMatthias Braun     PrintFatalError(R->getLoc(), "AllocationPriority out of range [0,63]");
811a354cdd0SMatthias Braun   this->AllocationPriority = AllocationPriority;
81268d6d8abSJakob Stoklund Olesen }
81368d6d8abSJakob Stoklund Olesen 
81403efe84dSJakob Stoklund Olesen // Create an inferred register class that was missing from the .td files.
81503efe84dSJakob Stoklund Olesen // Most properties will be inherited from the closest super-class after the
81603efe84dSJakob Stoklund Olesen // class structure has been computed.
817eebd5bc6SJakob Stoklund Olesen CodeGenRegisterClass::CodeGenRegisterClass(CodeGenRegBank &RegBank,
818eebd5bc6SJakob Stoklund Olesen                                            StringRef Name, Key Props)
81903efe84dSJakob Stoklund Olesen   : Members(*Props.Members),
82024064771SCraig Topper     TheDef(nullptr),
82103efe84dSJakob Stoklund Olesen     Name(Name),
822eebd5bc6SJakob Stoklund Olesen     TopoSigs(RegBank.getNumTopoSigs()),
82303efe84dSJakob Stoklund Olesen     EnumValue(-1),
824779d98e1SKrzysztof Parzyszek     RSI(Props.RSI),
82503efe84dSJakob Stoklund Olesen     CopyCost(0),
826d5fa8fb1SMatthias Braun     Allocatable(true),
827d5fa8fb1SMatthias Braun     AllocationPriority(0) {
828eb0c510eSKrzysztof Parzyszek   Artificial = true;
829eb0c510eSKrzysztof Parzyszek   for (const auto R : Members) {
830be2edf30SOwen Anderson     TopoSigs.set(R->getTopoSig());
831eb0c510eSKrzysztof Parzyszek     Artificial &= R->Artificial;
832eb0c510eSKrzysztof Parzyszek   }
83303efe84dSJakob Stoklund Olesen }
83403efe84dSJakob Stoklund Olesen 
83503efe84dSJakob Stoklund Olesen // Compute inherited propertied for a synthesized register class.
83603efe84dSJakob Stoklund Olesen void CodeGenRegisterClass::inheritProperties(CodeGenRegBank &RegBank) {
83703efe84dSJakob Stoklund Olesen   assert(!getDef() && "Only synthesized classes can inherit properties");
83803efe84dSJakob Stoklund Olesen   assert(!SuperClasses.empty() && "Synthesized class without super class");
83903efe84dSJakob Stoklund Olesen 
84003efe84dSJakob Stoklund Olesen   // The last super-class is the smallest one.
84103efe84dSJakob Stoklund Olesen   CodeGenRegisterClass &Super = *SuperClasses.back();
84203efe84dSJakob Stoklund Olesen 
84303efe84dSJakob Stoklund Olesen   // Most properties are copied directly.
84403efe84dSJakob Stoklund Olesen   // Exceptions are members, size, and alignment
84503efe84dSJakob Stoklund Olesen   Namespace = Super.Namespace;
84603efe84dSJakob Stoklund Olesen   VTs = Super.VTs;
84703efe84dSJakob Stoklund Olesen   CopyCost = Super.CopyCost;
84803efe84dSJakob Stoklund Olesen   Allocatable = Super.Allocatable;
84903efe84dSJakob Stoklund Olesen   AltOrderSelect = Super.AltOrderSelect;
850d5fa8fb1SMatthias Braun   AllocationPriority = Super.AllocationPriority;
85103efe84dSJakob Stoklund Olesen 
85203efe84dSJakob Stoklund Olesen   // Copy all allocation orders, filter out foreign registers from the larger
85303efe84dSJakob Stoklund Olesen   // super-class.
85403efe84dSJakob Stoklund Olesen   Orders.resize(Super.Orders.size());
85503efe84dSJakob Stoklund Olesen   for (unsigned i = 0, ie = Super.Orders.size(); i != ie; ++i)
85603efe84dSJakob Stoklund Olesen     for (unsigned j = 0, je = Super.Orders[i].size(); j != je; ++j)
85703efe84dSJakob Stoklund Olesen       if (contains(RegBank.getReg(Super.Orders[i][j])))
85803efe84dSJakob Stoklund Olesen         Orders[i].push_back(Super.Orders[i][j]);
85903efe84dSJakob Stoklund Olesen }
86003efe84dSJakob Stoklund Olesen 
861d7bc5c26SJakob Stoklund Olesen bool CodeGenRegisterClass::contains(const CodeGenRegister *Reg) const {
862be2edf30SOwen Anderson   return std::binary_search(Members.begin(), Members.end(), Reg,
863440a0456SDavid Blaikie                             deref<llvm::less>());
864d7bc5c26SJakob Stoklund Olesen }
865d7bc5c26SJakob Stoklund Olesen 
86603efe84dSJakob Stoklund Olesen namespace llvm {
867a3fe70d2SEugene Zelenko 
86803efe84dSJakob Stoklund Olesen   raw_ostream &operator<<(raw_ostream &OS, const CodeGenRegisterClass::Key &K) {
8697725e497SKrzysztof Parzyszek     OS << "{ " << K.RSI;
870be2edf30SOwen Anderson     for (const auto R : *K.Members)
871be2edf30SOwen Anderson       OS << ", " << R->getName();
87203efe84dSJakob Stoklund Olesen     return OS << " }";
87303efe84dSJakob Stoklund Olesen   }
874a3fe70d2SEugene Zelenko 
875a3fe70d2SEugene Zelenko } // end namespace llvm
87603efe84dSJakob Stoklund Olesen 
87703efe84dSJakob Stoklund Olesen // This is a simple lexicographical order that can be used to search for sets.
87803efe84dSJakob Stoklund Olesen // It is not the same as the topological order provided by TopoOrderRC.
87903efe84dSJakob Stoklund Olesen bool CodeGenRegisterClass::Key::
88003efe84dSJakob Stoklund Olesen operator<(const CodeGenRegisterClass::Key &B) const {
88103efe84dSJakob Stoklund Olesen   assert(Members && B.Members);
882779d98e1SKrzysztof Parzyszek   return std::tie(*Members, RSI) < std::tie(*B.Members, B.RSI);
88303efe84dSJakob Stoklund Olesen }
88403efe84dSJakob Stoklund Olesen 
885d7bc5c26SJakob Stoklund Olesen // Returns true if RC is a strict subclass.
886d7bc5c26SJakob Stoklund Olesen // RC is a sub-class of this class if it is a valid replacement for any
887d7bc5c26SJakob Stoklund Olesen // instruction operand where a register of this classis required. It must
888d7bc5c26SJakob Stoklund Olesen // satisfy these conditions:
889d7bc5c26SJakob Stoklund Olesen //
890d7bc5c26SJakob Stoklund Olesen // 1. All RC registers are also in this.
891d7bc5c26SJakob Stoklund Olesen // 2. The RC spill size must not be smaller than our spill size.
892d7bc5c26SJakob Stoklund Olesen // 3. RC spill alignment must be compatible with ours.
893d7bc5c26SJakob Stoklund Olesen //
8946417395dSJakob Stoklund Olesen static bool testSubClass(const CodeGenRegisterClass *A,
8956417395dSJakob Stoklund Olesen                          const CodeGenRegisterClass *B) {
896779d98e1SKrzysztof Parzyszek   return A->RSI.isSubClassOf(B->RSI) &&
8976417395dSJakob Stoklund Olesen          std::includes(A->getMembers().begin(), A->getMembers().end(),
8986417395dSJakob Stoklund Olesen                        B->getMembers().begin(), B->getMembers().end(),
899440a0456SDavid Blaikie                        deref<llvm::less>());
900d7bc5c26SJakob Stoklund Olesen }
901d7bc5c26SJakob Stoklund Olesen 
902c0fc173dSJakob Stoklund Olesen /// Sorting predicate for register classes.  This provides a topological
903c0fc173dSJakob Stoklund Olesen /// ordering that arranges all register classes before their sub-classes.
904c0fc173dSJakob Stoklund Olesen ///
905c0fc173dSJakob Stoklund Olesen /// Register classes with the same registers, spill size, and alignment form a
906c0fc173dSJakob Stoklund Olesen /// clique.  They will be ordered alphabetically.
907c0fc173dSJakob Stoklund Olesen ///
908dacea4bcSDavid Blaikie static bool TopoOrderRC(const CodeGenRegisterClass &PA,
909dacea4bcSDavid Blaikie                         const CodeGenRegisterClass &PB) {
910dacea4bcSDavid Blaikie   auto *A = &PA;
911dacea4bcSDavid Blaikie   auto *B = &PB;
912c0fc173dSJakob Stoklund Olesen   if (A == B)
913a3fe70d2SEugene Zelenko     return false;
914c0fc173dSJakob Stoklund Olesen 
915779d98e1SKrzysztof Parzyszek   if (A->RSI < B->RSI)
916dacea4bcSDavid Blaikie     return true;
917779d98e1SKrzysztof Parzyszek   if (A->RSI != B->RSI)
918dacea4bcSDavid Blaikie     return false;
919c0fc173dSJakob Stoklund Olesen 
9204fd600b6SJakob Stoklund Olesen   // Order by descending set size.  Note that the classes' allocation order may
9214fd600b6SJakob Stoklund Olesen   // not have been computed yet.  The Members set is always vaild.
9224fd600b6SJakob Stoklund Olesen   if (A->getMembers().size() > B->getMembers().size())
923dacea4bcSDavid Blaikie     return true;
9244fd600b6SJakob Stoklund Olesen   if (A->getMembers().size() < B->getMembers().size())
925dacea4bcSDavid Blaikie     return false;
9264fd600b6SJakob Stoklund Olesen 
927c0fc173dSJakob Stoklund Olesen   // Finally order by name as a tie breaker.
928dacea4bcSDavid Blaikie   return StringRef(A->getName()) < B->getName();
929c0fc173dSJakob Stoklund Olesen }
930c0fc173dSJakob Stoklund Olesen 
931bd92dc60SJakob Stoklund Olesen std::string CodeGenRegisterClass::getQualifiedName() const {
932bd92dc60SJakob Stoklund Olesen   if (Namespace.empty())
933bd92dc60SJakob Stoklund Olesen     return getName();
934bd92dc60SJakob Stoklund Olesen   else
935c05a1032SCraig Topper     return (Namespace + "::" + getName()).str();
93668d6d8abSJakob Stoklund Olesen }
93768d6d8abSJakob Stoklund Olesen 
9382c024b2dSJakob Stoklund Olesen // Compute sub-classes of all register classes.
9392c024b2dSJakob Stoklund Olesen // Assume the classes are ordered topologically.
94003efe84dSJakob Stoklund Olesen void CodeGenRegisterClass::computeSubClasses(CodeGenRegBank &RegBank) {
941c0bb5cabSDavid Blaikie   auto &RegClasses = RegBank.getRegClasses();
94203efe84dSJakob Stoklund Olesen 
9432c024b2dSJakob Stoklund Olesen   // Visit backwards so sub-classes are seen first.
944c0bb5cabSDavid Blaikie   for (auto I = RegClasses.rbegin(), E = RegClasses.rend(); I != E; ++I) {
945dacea4bcSDavid Blaikie     CodeGenRegisterClass &RC = *I;
9462c024b2dSJakob Stoklund Olesen     RC.SubClasses.resize(RegClasses.size());
9472c024b2dSJakob Stoklund Olesen     RC.SubClasses.set(RC.EnumValue);
948eb0c510eSKrzysztof Parzyszek     if (RC.Artificial)
949eb0c510eSKrzysztof Parzyszek       continue;
9502c024b2dSJakob Stoklund Olesen 
9512c024b2dSJakob Stoklund Olesen     // Normally, all subclasses have IDs >= rci, unless RC is part of a clique.
952c0bb5cabSDavid Blaikie     for (auto I2 = I.base(), E2 = RegClasses.end(); I2 != E2; ++I2) {
953dacea4bcSDavid Blaikie       CodeGenRegisterClass &SubRC = *I2;
954c0bb5cabSDavid Blaikie       if (RC.SubClasses.test(SubRC.EnumValue))
9552c024b2dSJakob Stoklund Olesen         continue;
956c0bb5cabSDavid Blaikie       if (!testSubClass(&RC, &SubRC))
9572c024b2dSJakob Stoklund Olesen         continue;
9582c024b2dSJakob Stoklund Olesen       // SubRC is a sub-class. Grap all its sub-classes so we won't have to
9592c024b2dSJakob Stoklund Olesen       // check them again.
960c0bb5cabSDavid Blaikie       RC.SubClasses |= SubRC.SubClasses;
9612c024b2dSJakob Stoklund Olesen     }
9622c024b2dSJakob Stoklund Olesen 
963bde91766SBenjamin Kramer     // Sweep up missed clique members.  They will be immediately preceding RC.
964dacea4bcSDavid Blaikie     for (auto I2 = std::next(I); I2 != E && testSubClass(&RC, &*I2); ++I2)
965dacea4bcSDavid Blaikie       RC.SubClasses.set(I2->EnumValue);
9662c024b2dSJakob Stoklund Olesen   }
967b15fad9dSJakob Stoklund Olesen 
968b15fad9dSJakob Stoklund Olesen   // Compute the SuperClasses lists from the SubClasses vectors.
969dacea4bcSDavid Blaikie   for (auto &RC : RegClasses) {
970dacea4bcSDavid Blaikie     const BitVector &SC = RC.getSubClasses();
971c0bb5cabSDavid Blaikie     auto I = RegClasses.begin();
972c0bb5cabSDavid Blaikie     for (int s = 0, next_s = SC.find_first(); next_s != -1;
973c0bb5cabSDavid Blaikie          next_s = SC.find_next(s)) {
974c0bb5cabSDavid Blaikie       std::advance(I, next_s - s);
975c0bb5cabSDavid Blaikie       s = next_s;
976dacea4bcSDavid Blaikie       if (&*I == &RC)
977b15fad9dSJakob Stoklund Olesen         continue;
978dacea4bcSDavid Blaikie       I->SuperClasses.push_back(&RC);
979b15fad9dSJakob Stoklund Olesen     }
980b15fad9dSJakob Stoklund Olesen   }
98103efe84dSJakob Stoklund Olesen 
98203efe84dSJakob Stoklund Olesen   // With the class hierarchy in place, let synthesized register classes inherit
98303efe84dSJakob Stoklund Olesen   // properties from their closest super-class. The iteration order here can
98403efe84dSJakob Stoklund Olesen   // propagate properties down multiple levels.
985dacea4bcSDavid Blaikie   for (auto &RC : RegClasses)
986dacea4bcSDavid Blaikie     if (!RC.getDef())
987dacea4bcSDavid Blaikie       RC.inheritProperties(RegBank);
9882c024b2dSJakob Stoklund Olesen }
9892c024b2dSJakob Stoklund Olesen 
990cc36dbf5SDaniel Sanders Optional<std::pair<CodeGenRegisterClass *, CodeGenRegisterClass *>>
991cc36dbf5SDaniel Sanders CodeGenRegisterClass::getMatchingSubClassWithSubRegs(
992cc36dbf5SDaniel Sanders     CodeGenRegBank &RegBank, const CodeGenSubRegIndex *SubIdx) const {
993cc36dbf5SDaniel Sanders   auto SizeOrder = [](const CodeGenRegisterClass *A,
994cc36dbf5SDaniel Sanders                       const CodeGenRegisterClass *B) {
99522322fb6SDavid Green     return A->getMembers().size() > B->getMembers().size();
996cc36dbf5SDaniel Sanders   };
997cc36dbf5SDaniel Sanders 
998cc36dbf5SDaniel Sanders   auto &RegClasses = RegBank.getRegClasses();
999cc36dbf5SDaniel Sanders 
1000cc36dbf5SDaniel Sanders   // Find all the subclasses of this one that fully support the sub-register
1001cc36dbf5SDaniel Sanders   // index and order them by size. BiggestSuperRC should always be first.
1002cc36dbf5SDaniel Sanders   CodeGenRegisterClass *BiggestSuperRegRC = getSubClassWithSubReg(SubIdx);
1003cc36dbf5SDaniel Sanders   if (!BiggestSuperRegRC)
1004cc36dbf5SDaniel Sanders     return None;
1005cc36dbf5SDaniel Sanders   BitVector SuperRegRCsBV = BiggestSuperRegRC->getSubClasses();
1006cc36dbf5SDaniel Sanders   std::vector<CodeGenRegisterClass *> SuperRegRCs;
1007cc36dbf5SDaniel Sanders   for (auto &RC : RegClasses)
1008cc36dbf5SDaniel Sanders     if (SuperRegRCsBV[RC.EnumValue])
1009cc36dbf5SDaniel Sanders       SuperRegRCs.emplace_back(&RC);
10100cac726aSFangrui Song   llvm::sort(SuperRegRCs, SizeOrder);
1011cc36dbf5SDaniel Sanders   assert(SuperRegRCs.front() == BiggestSuperRegRC && "Biggest class wasn't first");
1012cc36dbf5SDaniel Sanders 
1013cc36dbf5SDaniel Sanders   // Find all the subreg classes and order them by size too.
1014cc36dbf5SDaniel Sanders   std::vector<std::pair<CodeGenRegisterClass *, BitVector>> SuperRegClasses;
1015cc36dbf5SDaniel Sanders   for (auto &RC: RegClasses) {
1016cc36dbf5SDaniel Sanders     BitVector SuperRegClassesBV(RegClasses.size());
1017cc36dbf5SDaniel Sanders     RC.getSuperRegClasses(SubIdx, SuperRegClassesBV);
1018cc36dbf5SDaniel Sanders     if (SuperRegClassesBV.any())
1019cc36dbf5SDaniel Sanders       SuperRegClasses.push_back(std::make_pair(&RC, SuperRegClassesBV));
1020cc36dbf5SDaniel Sanders   }
10210cac726aSFangrui Song   llvm::sort(SuperRegClasses,
1022cc36dbf5SDaniel Sanders              [&](const std::pair<CodeGenRegisterClass *, BitVector> &A,
1023cc36dbf5SDaniel Sanders                  const std::pair<CodeGenRegisterClass *, BitVector> &B) {
1024cc36dbf5SDaniel Sanders                return SizeOrder(A.first, B.first);
1025cc36dbf5SDaniel Sanders              });
1026cc36dbf5SDaniel Sanders 
1027cc36dbf5SDaniel Sanders   // Find the biggest subclass and subreg class such that R:subidx is in the
1028cc36dbf5SDaniel Sanders   // subreg class for all R in subclass.
1029cc36dbf5SDaniel Sanders   //
1030cc36dbf5SDaniel Sanders   // For example:
1031cc36dbf5SDaniel Sanders   // All registers in X86's GR64 have a sub_32bit subregister but no class
1032cc36dbf5SDaniel Sanders   // exists that contains all the 32-bit subregisters because GR64 contains RIP
1033cc36dbf5SDaniel Sanders   // but GR32 does not contain EIP. Instead, we constrain SuperRegRC to
1034cc36dbf5SDaniel Sanders   // GR32_with_sub_8bit (which is identical to GR32_with_sub_32bit) and then,
1035cc36dbf5SDaniel Sanders   // having excluded RIP, we are able to find a SubRegRC (GR32).
1036cc36dbf5SDaniel Sanders   CodeGenRegisterClass *ChosenSuperRegClass = nullptr;
1037cc36dbf5SDaniel Sanders   CodeGenRegisterClass *SubRegRC = nullptr;
1038cc36dbf5SDaniel Sanders   for (auto *SuperRegRC : SuperRegRCs) {
1039cc36dbf5SDaniel Sanders     for (const auto &SuperRegClassPair : SuperRegClasses) {
1040cc36dbf5SDaniel Sanders       const BitVector &SuperRegClassBV = SuperRegClassPair.second;
1041cc36dbf5SDaniel Sanders       if (SuperRegClassBV[SuperRegRC->EnumValue]) {
1042cc36dbf5SDaniel Sanders         SubRegRC = SuperRegClassPair.first;
1043cc36dbf5SDaniel Sanders         ChosenSuperRegClass = SuperRegRC;
1044cc36dbf5SDaniel Sanders 
1045cc36dbf5SDaniel Sanders         // If SubRegRC is bigger than SuperRegRC then there are members of
1046cc36dbf5SDaniel Sanders         // SubRegRC that don't have super registers via SubIdx. Keep looking to
1047cc36dbf5SDaniel Sanders         // find a better fit and fall back on this one if there isn't one.
1048cc36dbf5SDaniel Sanders         //
1049cc36dbf5SDaniel Sanders         // This is intended to prevent X86 from making odd choices such as
1050cc36dbf5SDaniel Sanders         // picking LOW32_ADDR_ACCESS_RBP instead of GR32 in the example above.
1051cc36dbf5SDaniel Sanders         // LOW32_ADDR_ACCESS_RBP is a valid choice but contains registers that
1052cc36dbf5SDaniel Sanders         // aren't subregisters of SuperRegRC whereas GR32 has a direct 1:1
1053cc36dbf5SDaniel Sanders         // mapping.
1054cc36dbf5SDaniel Sanders         if (SuperRegRC->getMembers().size() >= SubRegRC->getMembers().size())
1055cc36dbf5SDaniel Sanders           return std::make_pair(ChosenSuperRegClass, SubRegRC);
1056cc36dbf5SDaniel Sanders       }
1057cc36dbf5SDaniel Sanders     }
1058cc36dbf5SDaniel Sanders 
1059cc36dbf5SDaniel Sanders     // If we found a fit but it wasn't quite ideal because SubRegRC had excess
1060cc36dbf5SDaniel Sanders     // registers, then we're done.
1061cc36dbf5SDaniel Sanders     if (ChosenSuperRegClass)
1062cc36dbf5SDaniel Sanders       return std::make_pair(ChosenSuperRegClass, SubRegRC);
1063cc36dbf5SDaniel Sanders   }
1064cc36dbf5SDaniel Sanders 
1065cc36dbf5SDaniel Sanders   return None;
1066cc36dbf5SDaniel Sanders }
1067cc36dbf5SDaniel Sanders 
10688f25d3bcSDavid Blaikie void CodeGenRegisterClass::getSuperRegClasses(const CodeGenSubRegIndex *SubIdx,
1069f1bb1519SJakob Stoklund Olesen                                               BitVector &Out) const {
10708f25d3bcSDavid Blaikie   auto FindI = SuperRegClasses.find(SubIdx);
1071c7b437aeSJakob Stoklund Olesen   if (FindI == SuperRegClasses.end())
1072c7b437aeSJakob Stoklund Olesen     return;
10734627679cSCraig Topper   for (CodeGenRegisterClass *RC : FindI->second)
10744627679cSCraig Topper     Out.set(RC->EnumValue);
1075c7b437aeSJakob Stoklund Olesen }
1076c7b437aeSJakob Stoklund Olesen 
107797254150SAndrew Trick // Populate a unique sorted list of units from a register set.
1078eb0c510eSKrzysztof Parzyszek void CodeGenRegisterClass::buildRegUnitSet(const CodeGenRegBank &RegBank,
107997254150SAndrew Trick   std::vector<unsigned> &RegUnits) const {
108097254150SAndrew Trick   std::vector<unsigned> TmpUnits;
1081eb0c510eSKrzysztof Parzyszek   for (RegUnitIterator UnitI(Members); UnitI.isValid(); ++UnitI) {
1082eb0c510eSKrzysztof Parzyszek     const RegUnit &RU = RegBank.getRegUnit(*UnitI);
1083eb0c510eSKrzysztof Parzyszek     if (!RU.Artificial)
108497254150SAndrew Trick       TmpUnits.push_back(*UnitI);
1085eb0c510eSKrzysztof Parzyszek   }
10860cac726aSFangrui Song   llvm::sort(TmpUnits);
108797254150SAndrew Trick   std::unique_copy(TmpUnits.begin(), TmpUnits.end(),
108897254150SAndrew Trick                    std::back_inserter(RegUnits));
108997254150SAndrew Trick }
1090c7b437aeSJakob Stoklund Olesen 
109176a5a71eSJakob Stoklund Olesen //===----------------------------------------------------------------------===//
109276a5a71eSJakob Stoklund Olesen //                               CodeGenRegBank
109376a5a71eSJakob Stoklund Olesen //===----------------------------------------------------------------------===//
109476a5a71eSJakob Stoklund Olesen 
1095779d98e1SKrzysztof Parzyszek CodeGenRegBank::CodeGenRegBank(RecordKeeper &Records,
1096779d98e1SKrzysztof Parzyszek                                const CodeGenHwModes &Modes) : CGH(Modes) {
10973bd1b65eSJakob Stoklund Olesen   // Configure register Sets to understand register classes and tuples.
10985ee87726SJakob Stoklund Olesen   Sets.addFieldExpander("RegisterClass", "MemberList");
1099c3abb0f6SJakob Stoklund Olesen   Sets.addFieldExpander("CalleeSavedRegs", "SaveList");
11006c21b3b5SFlorian Hahn   Sets.addExpander("RegisterTuples",
1101*0eaee545SJonas Devlieghere                    std::make_unique<TupleExpander>(SynthDefs));
11025ee87726SJakob Stoklund Olesen 
110384bd44ebSJakob Stoklund Olesen   // Read in the user-defined (named) sub-register indices.
110484bd44ebSJakob Stoklund Olesen   // More indices will be synthesized later.
1105f1bb1519SJakob Stoklund Olesen   std::vector<Record*> SRIs = Records.getAllDerivedDefinitions("SubRegIndex");
11060cac726aSFangrui Song   llvm::sort(SRIs, LessRecord());
1107f1bb1519SJakob Stoklund Olesen   for (unsigned i = 0, e = SRIs.size(); i != e; ++i)
1108f1bb1519SJakob Stoklund Olesen     getSubRegIdx(SRIs[i]);
110921231609SJakob Stoklund Olesen   // Build composite maps from ComposedOf fields.
11108f25d3bcSDavid Blaikie   for (auto &Idx : SubRegIndices)
11115be6699cSDavid Blaikie     Idx.updateComponents(*this);
111284bd44ebSJakob Stoklund Olesen 
111384bd44ebSJakob Stoklund Olesen   // Read in the register definitions.
111484bd44ebSJakob Stoklund Olesen   std::vector<Record*> Regs = Records.getAllDerivedDefinitions("Register");
11150cac726aSFangrui Song   llvm::sort(Regs, LessRecordRegister());
111684bd44ebSJakob Stoklund Olesen   // Assign the enumeration values.
111784bd44ebSJakob Stoklund Olesen   for (unsigned i = 0, e = Regs.size(); i != e; ++i)
11188e188be0SJakob Stoklund Olesen     getReg(Regs[i]);
111922ea424dSJakob Stoklund Olesen 
11203bd1b65eSJakob Stoklund Olesen   // Expand tuples and number the new registers.
11213bd1b65eSJakob Stoklund Olesen   std::vector<Record*> Tups =
11223bd1b65eSJakob Stoklund Olesen     Records.getAllDerivedDefinitions("RegisterTuples");
1123ccd06643SChad Rosier 
11247405608cSDavid Blaikie   for (Record *R : Tups) {
11257405608cSDavid Blaikie     std::vector<Record *> TupRegs = *Sets.expand(R);
11260cac726aSFangrui Song     llvm::sort(TupRegs, LessRecordRegister());
11277405608cSDavid Blaikie     for (Record *RC : TupRegs)
11287405608cSDavid Blaikie       getReg(RC);
11293bd1b65eSJakob Stoklund Olesen   }
11303bd1b65eSJakob Stoklund Olesen 
1131c1e9087fSJakob Stoklund Olesen   // Now all the registers are known. Build the object graph of explicit
1132c1e9087fSJakob Stoklund Olesen   // register-register references.
11339b613dbaSDavid Blaikie   for (auto &Reg : Registers)
11349b613dbaSDavid Blaikie     Reg.buildObjectGraph(*this);
1135c1e9087fSJakob Stoklund Olesen 
1136ccd682c6SOwen Anderson   // Compute register name map.
11379b613dbaSDavid Blaikie   for (auto &Reg : Registers)
11385106ce78SDavid Blaikie     // FIXME: This could just be RegistersByName[name] = register, except that
11395106ce78SDavid Blaikie     // causes some failures in MIPS - perhaps they have duplicate register name
11405106ce78SDavid Blaikie     // entries? (or maybe there's a reason for it - I don't know much about this
11415106ce78SDavid Blaikie     // code, just drive-by refactoring)
11429b613dbaSDavid Blaikie     RegistersByName.insert(
11439b613dbaSDavid Blaikie         std::make_pair(Reg.TheDef->getValueAsString("AsmName"), &Reg));
1144ccd682c6SOwen Anderson 
1145c1e9087fSJakob Stoklund Olesen   // Precompute all sub-register maps.
114603efe84dSJakob Stoklund Olesen   // This will create Composite entries for all inferred sub-register indices.
11479b613dbaSDavid Blaikie   for (auto &Reg : Registers)
11489b613dbaSDavid Blaikie     Reg.computeSubRegs(*this);
114903efe84dSJakob Stoklund Olesen 
1150afcff2d0SMatthias Braun   // Compute transitive closure of subregister index ConcatenationOf vectors
1151afcff2d0SMatthias Braun   // and initialize ConcatIdx map.
1152afcff2d0SMatthias Braun   for (CodeGenSubRegIndex &SRI : SubRegIndices) {
1153afcff2d0SMatthias Braun     SRI.computeConcatTransitiveClosure();
1154afcff2d0SMatthias Braun     if (!SRI.ConcatenationOf.empty())
11553923b319SMatthias Braun       ConcatIdx.insert(std::make_pair(
11563923b319SMatthias Braun           SmallVector<CodeGenSubRegIndex*,8>(SRI.ConcatenationOf.begin(),
11573923b319SMatthias Braun                                              SRI.ConcatenationOf.end()), &SRI));
1158afcff2d0SMatthias Braun   }
1159afcff2d0SMatthias Braun 
1160c08df9e5SJakob Stoklund Olesen   // Infer even more sub-registers by combining leading super-registers.
11619b613dbaSDavid Blaikie   for (auto &Reg : Registers)
11629b613dbaSDavid Blaikie     if (Reg.CoveredBySubRegs)
11639b613dbaSDavid Blaikie       Reg.computeSecondarySubRegs(*this);
1164c08df9e5SJakob Stoklund Olesen 
11653f3eb180SJakob Stoklund Olesen   // After the sub-register graph is complete, compute the topologically
11663f3eb180SJakob Stoklund Olesen   // ordered SuperRegs list.
11679b613dbaSDavid Blaikie   for (auto &Reg : Registers)
11689b613dbaSDavid Blaikie     Reg.computeSuperRegs(*this);
11693f3eb180SJakob Stoklund Olesen 
1170eb0c510eSKrzysztof Parzyszek   // For each pair of Reg:SR, if both are non-artificial, mark the
1171eb0c510eSKrzysztof Parzyszek   // corresponding sub-register index as non-artificial.
1172eb0c510eSKrzysztof Parzyszek   for (auto &Reg : Registers) {
1173eb0c510eSKrzysztof Parzyszek     if (Reg.Artificial)
1174eb0c510eSKrzysztof Parzyszek       continue;
1175eb0c510eSKrzysztof Parzyszek     for (auto P : Reg.getSubRegs()) {
1176eb0c510eSKrzysztof Parzyszek       const CodeGenRegister *SR = P.second;
1177eb0c510eSKrzysztof Parzyszek       if (!SR->Artificial)
1178eb0c510eSKrzysztof Parzyszek         P.first->Artificial = false;
1179eb0c510eSKrzysztof Parzyszek     }
1180eb0c510eSKrzysztof Parzyszek   }
1181eb0c510eSKrzysztof Parzyszek 
11821d7a2c57SAndrew Trick   // Native register units are associated with a leaf register. They've all been
11831d7a2c57SAndrew Trick   // discovered now.
1184095f22afSJakob Stoklund Olesen   NumNativeRegUnits = RegUnits.size();
11851d7a2c57SAndrew Trick 
118622ea424dSJakob Stoklund Olesen   // Read in register class definitions.
118722ea424dSJakob Stoklund Olesen   std::vector<Record*> RCs = Records.getAllDerivedDefinitions("RegisterClass");
118822ea424dSJakob Stoklund Olesen   if (RCs.empty())
118948e7e85dSBenjamin Kramer     PrintFatalError("No 'RegisterClass' subclasses defined!");
119022ea424dSJakob Stoklund Olesen 
119103efe84dSJakob Stoklund Olesen   // Allocate user-defined register classes.
1192eb0c510eSKrzysztof Parzyszek   for (auto *R : RCs) {
1193eb0c510eSKrzysztof Parzyszek     RegClasses.emplace_back(*this, R);
1194eb0c510eSKrzysztof Parzyszek     CodeGenRegisterClass &RC = RegClasses.back();
1195eb0c510eSKrzysztof Parzyszek     if (!RC.Artificial)
1196eb0c510eSKrzysztof Parzyszek       addToMaps(&RC);
1197c0bb5cabSDavid Blaikie   }
119803efe84dSJakob Stoklund Olesen 
119903efe84dSJakob Stoklund Olesen   // Infer missing classes to create a full algebra.
120003efe84dSJakob Stoklund Olesen   computeInferredRegisterClasses();
120103efe84dSJakob Stoklund Olesen 
1202c0fc173dSJakob Stoklund Olesen   // Order register classes topologically and assign enum values.
1203dacea4bcSDavid Blaikie   RegClasses.sort(TopoOrderRC);
1204c0bb5cabSDavid Blaikie   unsigned i = 0;
1205dacea4bcSDavid Blaikie   for (auto &RC : RegClasses)
1206dacea4bcSDavid Blaikie     RC.EnumValue = i++;
120703efe84dSJakob Stoklund Olesen   CodeGenRegisterClass::computeSubClasses(*this);
120876a5a71eSJakob Stoklund Olesen }
120976a5a71eSJakob Stoklund Olesen 
121070a0bbcaSJakob Stoklund Olesen // Create a synthetic CodeGenSubRegIndex without a corresponding Record.
121170a0bbcaSJakob Stoklund Olesen CodeGenSubRegIndex*
121270a0bbcaSJakob Stoklund Olesen CodeGenRegBank::createSubRegIndex(StringRef Name, StringRef Namespace) {
12135be6699cSDavid Blaikie   SubRegIndices.emplace_back(Name, Namespace, SubRegIndices.size() + 1);
12145be6699cSDavid Blaikie   return &SubRegIndices.back();
121570a0bbcaSJakob Stoklund Olesen }
121670a0bbcaSJakob Stoklund Olesen 
1217f1bb1519SJakob Stoklund Olesen CodeGenSubRegIndex *CodeGenRegBank::getSubRegIdx(Record *Def) {
1218f1bb1519SJakob Stoklund Olesen   CodeGenSubRegIndex *&Idx = Def2SubRegIdx[Def];
1219f1bb1519SJakob Stoklund Olesen   if (Idx)
1220f1bb1519SJakob Stoklund Olesen     return Idx;
12215be6699cSDavid Blaikie   SubRegIndices.emplace_back(Def, SubRegIndices.size() + 1);
12225be6699cSDavid Blaikie   Idx = &SubRegIndices.back();
1223f1bb1519SJakob Stoklund Olesen   return Idx;
1224f1bb1519SJakob Stoklund Olesen }
1225f1bb1519SJakob Stoklund Olesen 
122684bd44ebSJakob Stoklund Olesen CodeGenRegister *CodeGenRegBank::getReg(Record *Def) {
12278e188be0SJakob Stoklund Olesen   CodeGenRegister *&Reg = Def2Reg[Def];
12288e188be0SJakob Stoklund Olesen   if (Reg)
122984bd44ebSJakob Stoklund Olesen     return Reg;
12309b613dbaSDavid Blaikie   Registers.emplace_back(Def, Registers.size() + 1);
12319b613dbaSDavid Blaikie   Reg = &Registers.back();
12328e188be0SJakob Stoklund Olesen   return Reg;
123384bd44ebSJakob Stoklund Olesen }
123484bd44ebSJakob Stoklund Olesen 
123503efe84dSJakob Stoklund Olesen void CodeGenRegBank::addToMaps(CodeGenRegisterClass *RC) {
123603efe84dSJakob Stoklund Olesen   if (Record *Def = RC->getDef())
123703efe84dSJakob Stoklund Olesen     Def2RC.insert(std::make_pair(Def, RC));
123803efe84dSJakob Stoklund Olesen 
123903efe84dSJakob Stoklund Olesen   // Duplicate classes are rejected by insert().
124003efe84dSJakob Stoklund Olesen   // That's OK, we only care about the properties handled by CGRC::Key.
124103efe84dSJakob Stoklund Olesen   CodeGenRegisterClass::Key K(*RC);
124203efe84dSJakob Stoklund Olesen   Key2RC.insert(std::make_pair(K, RC));
124303efe84dSJakob Stoklund Olesen }
124403efe84dSJakob Stoklund Olesen 
12457ebc6b05SJakob Stoklund Olesen // Create a synthetic sub-class if it is missing.
12467ebc6b05SJakob Stoklund Olesen CodeGenRegisterClass*
12477ebc6b05SJakob Stoklund Olesen CodeGenRegBank::getOrCreateSubClass(const CodeGenRegisterClass *RC,
1248be2edf30SOwen Anderson                                     const CodeGenRegister::Vec *Members,
12497ebc6b05SJakob Stoklund Olesen                                     StringRef Name) {
12507ebc6b05SJakob Stoklund Olesen   // Synthetic sub-class has the same size and alignment as RC.
1251779d98e1SKrzysztof Parzyszek   CodeGenRegisterClass::Key K(Members, RC->RSI);
12527ebc6b05SJakob Stoklund Olesen   RCKeyMap::const_iterator FoundI = Key2RC.find(K);
12537ebc6b05SJakob Stoklund Olesen   if (FoundI != Key2RC.end())
12547ebc6b05SJakob Stoklund Olesen     return FoundI->second;
12557ebc6b05SJakob Stoklund Olesen 
12567ebc6b05SJakob Stoklund Olesen   // Sub-class doesn't exist, create a new one.
1257f5e2fc47SBenjamin Kramer   RegClasses.emplace_back(*this, Name, K);
1258dacea4bcSDavid Blaikie   addToMaps(&RegClasses.back());
1259dacea4bcSDavid Blaikie   return &RegClasses.back();
12607ebc6b05SJakob Stoklund Olesen }
12617ebc6b05SJakob Stoklund Olesen 
126222ea424dSJakob Stoklund Olesen CodeGenRegisterClass *CodeGenRegBank::getRegClass(Record *Def) {
126322ea424dSJakob Stoklund Olesen   if (CodeGenRegisterClass *RC = Def2RC[Def])
126422ea424dSJakob Stoklund Olesen     return RC;
126522ea424dSJakob Stoklund Olesen 
1266635debe8SJoerg Sonnenberger   PrintFatalError(Def->getLoc(), "Not a known RegisterClass!");
126722ea424dSJakob Stoklund Olesen }
126822ea424dSJakob Stoklund Olesen 
1269f1bb1519SJakob Stoklund Olesen CodeGenSubRegIndex*
1270f1bb1519SJakob Stoklund Olesen CodeGenRegBank::getCompositeSubRegIndex(CodeGenSubRegIndex *A,
12719a44ad70SJakob Stoklund Olesen                                         CodeGenSubRegIndex *B) {
127284bd44ebSJakob Stoklund Olesen   // Look for an existing entry.
12739a44ad70SJakob Stoklund Olesen   CodeGenSubRegIndex *Comp = A->compose(B);
12749a44ad70SJakob Stoklund Olesen   if (Comp)
127584bd44ebSJakob Stoklund Olesen     return Comp;
127684bd44ebSJakob Stoklund Olesen 
127784bd44ebSJakob Stoklund Olesen   // None exists, synthesize one.
127876a5a71eSJakob Stoklund Olesen   std::string Name = A->getName() + "_then_" + B->getName();
127970a0bbcaSJakob Stoklund Olesen   Comp = createSubRegIndex(Name, A->getNamespace());
12809a44ad70SJakob Stoklund Olesen   A->addComposite(B, Comp);
128184bd44ebSJakob Stoklund Olesen   return Comp;
128276a5a71eSJakob Stoklund Olesen }
128376a5a71eSJakob Stoklund Olesen 
1284c08df9e5SJakob Stoklund Olesen CodeGenSubRegIndex *CodeGenRegBank::
1285c08df9e5SJakob Stoklund Olesen getConcatSubRegIndex(const SmallVector<CodeGenSubRegIndex *, 8> &Parts) {
1286c08df9e5SJakob Stoklund Olesen   assert(Parts.size() > 1 && "Need two parts to concatenate");
1287afcff2d0SMatthias Braun #ifndef NDEBUG
1288afcff2d0SMatthias Braun   for (CodeGenSubRegIndex *Idx : Parts) {
1289afcff2d0SMatthias Braun     assert(Idx->ConcatenationOf.empty() && "No transitive closure?");
1290afcff2d0SMatthias Braun   }
1291afcff2d0SMatthias Braun #endif
1292c08df9e5SJakob Stoklund Olesen 
1293c08df9e5SJakob Stoklund Olesen   // Look for an existing entry.
1294c08df9e5SJakob Stoklund Olesen   CodeGenSubRegIndex *&Idx = ConcatIdx[Parts];
1295c08df9e5SJakob Stoklund Olesen   if (Idx)
1296c08df9e5SJakob Stoklund Olesen     return Idx;
1297c08df9e5SJakob Stoklund Olesen 
1298c08df9e5SJakob Stoklund Olesen   // None exists, synthesize one.
1299c08df9e5SJakob Stoklund Olesen   std::string Name = Parts.front()->getName();
1300b1a4d9daSAhmed Bougacha   // Determine whether all parts are contiguous.
1301b1a4d9daSAhmed Bougacha   bool isContinuous = true;
1302b1a4d9daSAhmed Bougacha   unsigned Size = Parts.front()->Size;
1303b1a4d9daSAhmed Bougacha   unsigned LastOffset = Parts.front()->Offset;
1304b1a4d9daSAhmed Bougacha   unsigned LastSize = Parts.front()->Size;
1305c08df9e5SJakob Stoklund Olesen   for (unsigned i = 1, e = Parts.size(); i != e; ++i) {
1306c08df9e5SJakob Stoklund Olesen     Name += '_';
1307c08df9e5SJakob Stoklund Olesen     Name += Parts[i]->getName();
1308b1a4d9daSAhmed Bougacha     Size += Parts[i]->Size;
1309b1a4d9daSAhmed Bougacha     if (Parts[i]->Offset != (LastOffset + LastSize))
1310b1a4d9daSAhmed Bougacha       isContinuous = false;
1311b1a4d9daSAhmed Bougacha     LastOffset = Parts[i]->Offset;
1312b1a4d9daSAhmed Bougacha     LastSize = Parts[i]->Size;
1313c08df9e5SJakob Stoklund Olesen   }
1314b1a4d9daSAhmed Bougacha   Idx = createSubRegIndex(Name, Parts.front()->getNamespace());
1315b1a4d9daSAhmed Bougacha   Idx->Size = Size;
1316b1a4d9daSAhmed Bougacha   Idx->Offset = isContinuous ? Parts.front()->Offset : -1;
1317afcff2d0SMatthias Braun   Idx->ConcatenationOf.assign(Parts.begin(), Parts.end());
1318b1a4d9daSAhmed Bougacha   return Idx;
1319c08df9e5SJakob Stoklund Olesen }
1320c08df9e5SJakob Stoklund Olesen 
132184bd44ebSJakob Stoklund Olesen void CodeGenRegBank::computeComposites() {
1322a26a848dSKrzysztof Parzyszek   using RegMap = std::map<const CodeGenRegister*, const CodeGenRegister*>;
1323a26a848dSKrzysztof Parzyszek 
1324a26a848dSKrzysztof Parzyszek   // Subreg -> { Reg->Reg }, where the right-hand side is the mapping from
1325a26a848dSKrzysztof Parzyszek   // register to (sub)register associated with the action of the left-hand
1326a26a848dSKrzysztof Parzyszek   // side subregister.
1327a26a848dSKrzysztof Parzyszek   std::map<const CodeGenSubRegIndex*, RegMap> SubRegAction;
1328a26a848dSKrzysztof Parzyszek   for (const CodeGenRegister &R : Registers) {
1329a26a848dSKrzysztof Parzyszek     const CodeGenRegister::SubRegMap &SM = R.getSubRegs();
1330a26a848dSKrzysztof Parzyszek     for (std::pair<const CodeGenSubRegIndex*, const CodeGenRegister*> P : SM)
1331a26a848dSKrzysztof Parzyszek       SubRegAction[P.first].insert({&R, P.second});
1332a26a848dSKrzysztof Parzyszek   }
1333a26a848dSKrzysztof Parzyszek 
1334a26a848dSKrzysztof Parzyszek   // Calculate the composition of two subregisters as compositions of their
1335a26a848dSKrzysztof Parzyszek   // associated actions.
1336a26a848dSKrzysztof Parzyszek   auto compose = [&SubRegAction] (const CodeGenSubRegIndex *Sub1,
1337a26a848dSKrzysztof Parzyszek                                   const CodeGenSubRegIndex *Sub2) {
1338a26a848dSKrzysztof Parzyszek     RegMap C;
1339a26a848dSKrzysztof Parzyszek     const RegMap &Img1 = SubRegAction.at(Sub1);
1340a26a848dSKrzysztof Parzyszek     const RegMap &Img2 = SubRegAction.at(Sub2);
1341a26a848dSKrzysztof Parzyszek     for (std::pair<const CodeGenRegister*, const CodeGenRegister*> P : Img1) {
1342a26a848dSKrzysztof Parzyszek       auto F = Img2.find(P.second);
1343a26a848dSKrzysztof Parzyszek       if (F != Img2.end())
1344a26a848dSKrzysztof Parzyszek         C.insert({P.first, F->second});
1345a26a848dSKrzysztof Parzyszek     }
1346a26a848dSKrzysztof Parzyszek     return C;
1347a26a848dSKrzysztof Parzyszek   };
1348a26a848dSKrzysztof Parzyszek 
1349a26a848dSKrzysztof Parzyszek   // Check if the two maps agree on the intersection of their domains.
1350a26a848dSKrzysztof Parzyszek   auto agree = [] (const RegMap &Map1, const RegMap &Map2) {
1351a26a848dSKrzysztof Parzyszek     // Technically speaking, an empty map agrees with any other map, but
1352a26a848dSKrzysztof Parzyszek     // this could flag false positives. We're interested in non-vacuous
1353a26a848dSKrzysztof Parzyszek     // agreements.
1354a26a848dSKrzysztof Parzyszek     if (Map1.empty() || Map2.empty())
1355a26a848dSKrzysztof Parzyszek       return false;
1356a26a848dSKrzysztof Parzyszek     for (std::pair<const CodeGenRegister*, const CodeGenRegister*> P : Map1) {
1357a26a848dSKrzysztof Parzyszek       auto F = Map2.find(P.first);
1358a26a848dSKrzysztof Parzyszek       if (F == Map2.end() || P.second != F->second)
1359a26a848dSKrzysztof Parzyszek         return false;
1360a26a848dSKrzysztof Parzyszek     }
1361a26a848dSKrzysztof Parzyszek     return true;
1362a26a848dSKrzysztof Parzyszek   };
1363a26a848dSKrzysztof Parzyszek 
1364a26a848dSKrzysztof Parzyszek   using CompositePair = std::pair<const CodeGenSubRegIndex*,
1365a26a848dSKrzysztof Parzyszek                                   const CodeGenSubRegIndex*>;
1366a26a848dSKrzysztof Parzyszek   SmallSet<CompositePair,4> UserDefined;
1367a26a848dSKrzysztof Parzyszek   for (const CodeGenSubRegIndex &Idx : SubRegIndices)
1368a26a848dSKrzysztof Parzyszek     for (auto P : Idx.getComposites())
1369a26a848dSKrzysztof Parzyszek       UserDefined.insert(std::make_pair(&Idx, P.first));
1370a26a848dSKrzysztof Parzyszek 
137150ecd0ffSJakob Stoklund Olesen   // Keep track of TopoSigs visited. We only need to visit each TopoSig once,
137250ecd0ffSJakob Stoklund Olesen   // and many registers will share TopoSigs on regular architectures.
137350ecd0ffSJakob Stoklund Olesen   BitVector TopoSigs(getNumTopoSigs());
137450ecd0ffSJakob Stoklund Olesen 
13759b613dbaSDavid Blaikie   for (const auto &Reg1 : Registers) {
137650ecd0ffSJakob Stoklund Olesen     // Skip identical subreg structures already processed.
13779b613dbaSDavid Blaikie     if (TopoSigs.test(Reg1.getTopoSig()))
137850ecd0ffSJakob Stoklund Olesen       continue;
13799b613dbaSDavid Blaikie     TopoSigs.set(Reg1.getTopoSig());
138050ecd0ffSJakob Stoklund Olesen 
13819b613dbaSDavid Blaikie     const CodeGenRegister::SubRegMap &SRM1 = Reg1.getSubRegs();
138284bd44ebSJakob Stoklund Olesen     for (CodeGenRegister::SubRegMap::const_iterator i1 = SRM1.begin(),
138384bd44ebSJakob Stoklund Olesen          e1 = SRM1.end(); i1 != e1; ++i1) {
1384f1bb1519SJakob Stoklund Olesen       CodeGenSubRegIndex *Idx1 = i1->first;
138584bd44ebSJakob Stoklund Olesen       CodeGenRegister *Reg2 = i1->second;
138684bd44ebSJakob Stoklund Olesen       // Ignore identity compositions.
13879b613dbaSDavid Blaikie       if (&Reg1 == Reg2)
138884bd44ebSJakob Stoklund Olesen         continue;
1389d2b4713eSJakob Stoklund Olesen       const CodeGenRegister::SubRegMap &SRM2 = Reg2->getSubRegs();
139084bd44ebSJakob Stoklund Olesen       // Try composing Idx1 with another SubRegIndex.
139184bd44ebSJakob Stoklund Olesen       for (CodeGenRegister::SubRegMap::const_iterator i2 = SRM2.begin(),
139284bd44ebSJakob Stoklund Olesen            e2 = SRM2.end(); i2 != e2; ++i2) {
13939a44ad70SJakob Stoklund Olesen         CodeGenSubRegIndex *Idx2 = i2->first;
139484bd44ebSJakob Stoklund Olesen         CodeGenRegister *Reg3 = i2->second;
139584bd44ebSJakob Stoklund Olesen         // Ignore identity compositions.
139684bd44ebSJakob Stoklund Olesen         if (Reg2 == Reg3)
139784bd44ebSJakob Stoklund Olesen           continue;
139884bd44ebSJakob Stoklund Olesen         // OK Reg1:IdxPair == Reg3. Find the index with Reg:Idx == Reg3.
13999b613dbaSDavid Blaikie         CodeGenSubRegIndex *Idx3 = Reg1.getSubRegIndex(Reg3);
14002d247c80SJakob Stoklund Olesen         assert(Idx3 && "Sub-register doesn't have an index");
14012d247c80SJakob Stoklund Olesen 
140284bd44ebSJakob Stoklund Olesen         // Conflicting composition? Emit a warning but allow it.
1403a26a848dSKrzysztof Parzyszek         if (CodeGenSubRegIndex *Prev = Idx1->addComposite(Idx2, Idx3)) {
1404a26a848dSKrzysztof Parzyszek           // If the composition was not user-defined, always emit a warning.
1405a26a848dSKrzysztof Parzyszek           if (!UserDefined.count({Idx1, Idx2}) ||
1406a26a848dSKrzysztof Parzyszek               agree(compose(Idx1, Idx2), SubRegAction.at(Idx3)))
14079a7f4b76SJim Grosbach             PrintWarning(Twine("SubRegIndex ") + Idx1->getQualifiedName() +
14089a7f4b76SJim Grosbach                          " and " + Idx2->getQualifiedName() +
14099a7f4b76SJim Grosbach                          " compose ambiguously as " + Prev->getQualifiedName() +
14102d247c80SJakob Stoklund Olesen                          " or " + Idx3->getQualifiedName());
141184bd44ebSJakob Stoklund Olesen         }
141284bd44ebSJakob Stoklund Olesen       }
141384bd44ebSJakob Stoklund Olesen     }
141484bd44ebSJakob Stoklund Olesen   }
1415a26a848dSKrzysztof Parzyszek }
141684bd44ebSJakob Stoklund Olesen 
1417d346d487SJakob Stoklund Olesen // Compute lane masks. This is similar to register units, but at the
1418d346d487SJakob Stoklund Olesen // sub-register index level. Each bit in the lane mask is like a register unit
1419d346d487SJakob Stoklund Olesen // class, and two lane masks will have a bit in common if two sub-register
1420d346d487SJakob Stoklund Olesen // indices overlap in some register.
1421d346d487SJakob Stoklund Olesen //
1422d346d487SJakob Stoklund Olesen // Conservatively share a lane mask bit if two sub-register indices overlap in
1423d346d487SJakob Stoklund Olesen // some registers, but not in others. That shouldn't happen a lot.
1424d01627b2SMatthias Braun void CodeGenRegBank::computeSubRegLaneMasks() {
1425d346d487SJakob Stoklund Olesen   // First assign individual bits to all the leaf indices.
1426d346d487SJakob Stoklund Olesen   unsigned Bit = 0;
14279ae96c7aSJakob Stoklund Olesen   // Determine mask of lanes that cover their registers.
142891b5cf84SKrzysztof Parzyszek   CoveringLanes = LaneBitmask::getAll();
14298f25d3bcSDavid Blaikie   for (auto &Idx : SubRegIndices) {
14305be6699cSDavid Blaikie     if (Idx.getComposites().empty()) {
14314fa0cdbbSCraig Topper       if (Bit > LaneBitmask::BitWidth) {
1432fe9d6f21SMatthias Braun         PrintFatalError(
1433fe9d6f21SMatthias Braun           Twine("Ran out of lanemask bits to represent subregister ")
1434fe9d6f21SMatthias Braun           + Idx.getName());
1435fe9d6f21SMatthias Braun       }
14364fa0cdbbSCraig Topper       Idx.LaneMask = LaneBitmask::getLane(Bit);
14379ae96c7aSJakob Stoklund Olesen       ++Bit;
1438d346d487SJakob Stoklund Olesen     } else {
143991b5cf84SKrzysztof Parzyszek       Idx.LaneMask = LaneBitmask::getNone();
1440d346d487SJakob Stoklund Olesen     }
1441d346d487SJakob Stoklund Olesen   }
1442d346d487SJakob Stoklund Olesen 
144324557e5bSMatthias Braun   // Compute transformation sequences for composeSubRegIndexLaneMask. The idea
144424557e5bSMatthias Braun   // here is that for each possible target subregister we look at the leafs
144524557e5bSMatthias Braun   // in the subregister graph that compose for this target and create
144624557e5bSMatthias Braun   // transformation sequences for the lanemasks. Each step in the sequence
144724557e5bSMatthias Braun   // consists of a bitmask and a bitrotate operation. As the rotation amounts
144824557e5bSMatthias Braun   // are usually the same for many subregisters we can easily combine the steps
144924557e5bSMatthias Braun   // by combining the masks.
145024557e5bSMatthias Braun   for (const auto &Idx : SubRegIndices) {
145124557e5bSMatthias Braun     const auto &Composites = Idx.getComposites();
145224557e5bSMatthias Braun     auto &LaneTransforms = Idx.CompositionLaneMaskTransform;
1453ff04541fSMatthias Braun 
1454ff04541fSMatthias Braun     if (Composites.empty()) {
1455ff04541fSMatthias Braun       // Moving from a class with no subregisters we just had a single lane:
1456ff04541fSMatthias Braun       // The subregister must be a leaf subregister and only occupies 1 bit.
1457ff04541fSMatthias Braun       // Move the bit from the class without subregisters into that position.
1458f3a778d7SKrzysztof Parzyszek       unsigned DstBit = Idx.LaneMask.getHighestLane();
14594fa0cdbbSCraig Topper       assert(Idx.LaneMask == LaneBitmask::getLane(DstBit) &&
146091b5cf84SKrzysztof Parzyszek              "Must be a leaf subregister");
14614fa0cdbbSCraig Topper       MaskRolPair MaskRol = { LaneBitmask::getLane(0), (uint8_t)DstBit };
1462ff04541fSMatthias Braun       LaneTransforms.push_back(MaskRol);
1463ff04541fSMatthias Braun     } else {
1464ff04541fSMatthias Braun       // Go through all leaf subregisters and find the ones that compose with
1465ff04541fSMatthias Braun       // Idx. These make out all possible valid bits in the lane mask we want to
146624557e5bSMatthias Braun       // transform. Looking only at the leafs ensure that only a single bit in
146724557e5bSMatthias Braun       // the mask is set.
146824557e5bSMatthias Braun       unsigned NextBit = 0;
146924557e5bSMatthias Braun       for (auto &Idx2 : SubRegIndices) {
147024557e5bSMatthias Braun         // Skip non-leaf subregisters.
147124557e5bSMatthias Braun         if (!Idx2.getComposites().empty())
147224557e5bSMatthias Braun           continue;
147324557e5bSMatthias Braun         // Replicate the behaviour from the lane mask generation loop above.
147424557e5bSMatthias Braun         unsigned SrcBit = NextBit;
14754fa0cdbbSCraig Topper         LaneBitmask SrcMask = LaneBitmask::getLane(SrcBit);
147691b5cf84SKrzysztof Parzyszek         if (NextBit < LaneBitmask::BitWidth-1)
147724557e5bSMatthias Braun           ++NextBit;
147824557e5bSMatthias Braun         assert(Idx2.LaneMask == SrcMask);
147924557e5bSMatthias Braun 
148024557e5bSMatthias Braun         // Get the composed subregister if there is any.
148124557e5bSMatthias Braun         auto C = Composites.find(&Idx2);
148224557e5bSMatthias Braun         if (C == Composites.end())
148324557e5bSMatthias Braun           continue;
148424557e5bSMatthias Braun         const CodeGenSubRegIndex *Composite = C->second;
148524557e5bSMatthias Braun         // The Composed subreg should be a leaf subreg too
148624557e5bSMatthias Braun         assert(Composite->getComposites().empty());
148724557e5bSMatthias Braun 
148824557e5bSMatthias Braun         // Create Mask+Rotate operation and merge with existing ops if possible.
1489f3a778d7SKrzysztof Parzyszek         unsigned DstBit = Composite->LaneMask.getHighestLane();
149024557e5bSMatthias Braun         int Shift = DstBit - SrcBit;
149191b5cf84SKrzysztof Parzyszek         uint8_t RotateLeft = Shift >= 0 ? (uint8_t)Shift
149291b5cf84SKrzysztof Parzyszek                                         : LaneBitmask::BitWidth + Shift;
149324557e5bSMatthias Braun         for (auto &I : LaneTransforms) {
149424557e5bSMatthias Braun           if (I.RotateLeft == RotateLeft) {
149524557e5bSMatthias Braun             I.Mask |= SrcMask;
149691b5cf84SKrzysztof Parzyszek             SrcMask = LaneBitmask::getNone();
149724557e5bSMatthias Braun           }
149824557e5bSMatthias Braun         }
1499ea9f8ce0SKrzysztof Parzyszek         if (SrcMask.any()) {
150024557e5bSMatthias Braun           MaskRolPair MaskRol = { SrcMask, RotateLeft };
150124557e5bSMatthias Braun           LaneTransforms.push_back(MaskRol);
150224557e5bSMatthias Braun         }
150324557e5bSMatthias Braun       }
1504ff04541fSMatthias Braun     }
1505ff04541fSMatthias Braun 
150624557e5bSMatthias Braun     // Optimize if the transformation consists of one step only: Set mask to
150724557e5bSMatthias Braun     // 0xffffffff (including some irrelevant invalid bits) so that it should
150824557e5bSMatthias Braun     // merge with more entries later while compressing the table.
150924557e5bSMatthias Braun     if (LaneTransforms.size() == 1)
151091b5cf84SKrzysztof Parzyszek       LaneTransforms[0].Mask = LaneBitmask::getAll();
151124557e5bSMatthias Braun 
151224557e5bSMatthias Braun     // Further compression optimization: For invalid compositions resulting
151324557e5bSMatthias Braun     // in a sequence with 0 entries we can just pick any other. Choose
151424557e5bSMatthias Braun     // Mask 0xffffffff with Rotation 0.
151524557e5bSMatthias Braun     if (LaneTransforms.size() == 0) {
151691b5cf84SKrzysztof Parzyszek       MaskRolPair P = { LaneBitmask::getAll(), 0 };
151724557e5bSMatthias Braun       LaneTransforms.push_back(P);
151824557e5bSMatthias Braun     }
151924557e5bSMatthias Braun   }
152024557e5bSMatthias Braun 
1521d346d487SJakob Stoklund Olesen   // FIXME: What if ad-hoc aliasing introduces overlaps that aren't represented
1522d346d487SJakob Stoklund Olesen   // by the sub-register graph? This doesn't occur in any known targets.
1523d346d487SJakob Stoklund Olesen 
1524d346d487SJakob Stoklund Olesen   // Inherit lanes from composites.
15258f25d3bcSDavid Blaikie   for (const auto &Idx : SubRegIndices) {
152691b5cf84SKrzysztof Parzyszek     LaneBitmask Mask = Idx.computeLaneMask();
15279ae96c7aSJakob Stoklund Olesen     // If some super-registers without CoveredBySubRegs use this index, we can
15289ae96c7aSJakob Stoklund Olesen     // no longer assume that the lanes are covering their registers.
15295be6699cSDavid Blaikie     if (!Idx.AllSuperRegsCovered)
15309ae96c7aSJakob Stoklund Olesen       CoveringLanes &= ~Mask;
15319ae96c7aSJakob Stoklund Olesen   }
1532d01627b2SMatthias Braun 
1533d01627b2SMatthias Braun   // Compute lane mask combinations for register classes.
1534d01627b2SMatthias Braun   for (auto &RegClass : RegClasses) {
153591b5cf84SKrzysztof Parzyszek     LaneBitmask LaneMask;
1536d01627b2SMatthias Braun     for (const auto &SubRegIndex : SubRegIndices) {
15373b365331SMatthias Braun       if (RegClass.getSubClassWithSubReg(&SubRegIndex) == nullptr)
1538d01627b2SMatthias Braun         continue;
1539d01627b2SMatthias Braun       LaneMask |= SubRegIndex.LaneMask;
1540d01627b2SMatthias Braun     }
15414353b305SMatthias Braun 
1542ff04541fSMatthias Braun     // For classes without any subregisters set LaneMask to 1 instead of 0.
15434353b305SMatthias Braun     // This makes it easier for client code to handle classes uniformly.
154491b5cf84SKrzysztof Parzyszek     if (LaneMask.none())
15454fa0cdbbSCraig Topper       LaneMask = LaneBitmask::getLane(0);
15464353b305SMatthias Braun 
1547d01627b2SMatthias Braun     RegClass.LaneMask = LaneMask;
1548d01627b2SMatthias Braun   }
1549d346d487SJakob Stoklund Olesen }
1550d346d487SJakob Stoklund Olesen 
15511d7a2c57SAndrew Trick namespace {
1552a3fe70d2SEugene Zelenko 
15531d7a2c57SAndrew Trick // UberRegSet is a helper class for computeRegUnitWeights. Each UberRegSet is
15541d7a2c57SAndrew Trick // the transitive closure of the union of overlapping register
15551d7a2c57SAndrew Trick // classes. Together, the UberRegSets form a partition of the registers. If we
15561d7a2c57SAndrew Trick // consider overlapping register classes to be connected, then each UberRegSet
15571d7a2c57SAndrew Trick // is a set of connected components.
15581d7a2c57SAndrew Trick //
15591d7a2c57SAndrew Trick // An UberRegSet will likely be a horizontal slice of register names of
15601d7a2c57SAndrew Trick // the same width. Nontrivial subregisters should then be in a separate
15611d7a2c57SAndrew Trick // UberRegSet. But this property isn't required for valid computation of
15621d7a2c57SAndrew Trick // register unit weights.
15631d7a2c57SAndrew Trick //
15641d7a2c57SAndrew Trick // A Weight field caches the max per-register unit weight in each UberRegSet.
15651d7a2c57SAndrew Trick //
15661d7a2c57SAndrew Trick // A set of SingularDeterminants flags single units of some register in this set
15671d7a2c57SAndrew Trick // for which the unit weight equals the set weight. These units should not have
15681d7a2c57SAndrew Trick // their weight increased.
15691d7a2c57SAndrew Trick struct UberRegSet {
1570be2edf30SOwen Anderson   CodeGenRegister::Vec Regs;
1571a3fe70d2SEugene Zelenko   unsigned Weight = 0;
15721d7a2c57SAndrew Trick   CodeGenRegister::RegUnitList SingularDeterminants;
15731d7a2c57SAndrew Trick 
1574a3fe70d2SEugene Zelenko   UberRegSet() = default;
15751d7a2c57SAndrew Trick };
1576a3fe70d2SEugene Zelenko 
1577a3fe70d2SEugene Zelenko } // end anonymous namespace
15781d7a2c57SAndrew Trick 
15791d7a2c57SAndrew Trick // Partition registers into UberRegSets, where each set is the transitive
15801d7a2c57SAndrew Trick // closure of the union of overlapping register classes.
15811d7a2c57SAndrew Trick //
15821d7a2c57SAndrew Trick // UberRegSets[0] is a special non-allocatable set.
15831d7a2c57SAndrew Trick static void computeUberSets(std::vector<UberRegSet> &UberSets,
15841d7a2c57SAndrew Trick                             std::vector<UberRegSet*> &RegSets,
15851d7a2c57SAndrew Trick                             CodeGenRegBank &RegBank) {
15869b613dbaSDavid Blaikie   const auto &Registers = RegBank.getRegisters();
15871d7a2c57SAndrew Trick 
15881d7a2c57SAndrew Trick   // The Register EnumValue is one greater than its index into Registers.
15899b613dbaSDavid Blaikie   assert(Registers.size() == Registers.back().EnumValue &&
15901d7a2c57SAndrew Trick          "register enum value mismatch");
15911d7a2c57SAndrew Trick 
15921d7a2c57SAndrew Trick   // For simplicitly make the SetID the same as EnumValue.
15931d7a2c57SAndrew Trick   IntEqClasses UberSetIDs(Registers.size()+1);
15940d94c73cSAndrew Trick   std::set<unsigned> AllocatableRegs;
1595dacea4bcSDavid Blaikie   for (auto &RegClass : RegBank.getRegClasses()) {
1596dacea4bcSDavid Blaikie     if (!RegClass.Allocatable)
15970d94c73cSAndrew Trick       continue;
15980d94c73cSAndrew Trick 
1599be2edf30SOwen Anderson     const CodeGenRegister::Vec &Regs = RegClass.getMembers();
16000d94c73cSAndrew Trick     if (Regs.empty())
16010d94c73cSAndrew Trick       continue;
16021d7a2c57SAndrew Trick 
16031d7a2c57SAndrew Trick     unsigned USetID = UberSetIDs.findLeader((*Regs.begin())->EnumValue);
16041d7a2c57SAndrew Trick     assert(USetID && "register number 0 is invalid");
16051d7a2c57SAndrew Trick 
16060d94c73cSAndrew Trick     AllocatableRegs.insert((*Regs.begin())->EnumValue);
1607be2edf30SOwen Anderson     for (auto I = std::next(Regs.begin()), E = Regs.end(); I != E; ++I) {
16080d94c73cSAndrew Trick       AllocatableRegs.insert((*I)->EnumValue);
16091d7a2c57SAndrew Trick       UberSetIDs.join(USetID, (*I)->EnumValue);
16101d7a2c57SAndrew Trick     }
16110d94c73cSAndrew Trick   }
16120d94c73cSAndrew Trick   // Combine non-allocatable regs.
16139b613dbaSDavid Blaikie   for (const auto &Reg : Registers) {
16149b613dbaSDavid Blaikie     unsigned RegNum = Reg.EnumValue;
16150d94c73cSAndrew Trick     if (AllocatableRegs.count(RegNum))
16160d94c73cSAndrew Trick       continue;
16170d94c73cSAndrew Trick 
16180d94c73cSAndrew Trick     UberSetIDs.join(0, RegNum);
16190d94c73cSAndrew Trick   }
16201d7a2c57SAndrew Trick   UberSetIDs.compress();
16211d7a2c57SAndrew Trick 
16221d7a2c57SAndrew Trick   // Make the first UberSet a special unallocatable set.
16231d7a2c57SAndrew Trick   unsigned ZeroID = UberSetIDs[0];
16241d7a2c57SAndrew Trick 
16251d7a2c57SAndrew Trick   // Insert Registers into the UberSets formed by union-find.
16261d7a2c57SAndrew Trick   // Do not resize after this.
16271d7a2c57SAndrew Trick   UberSets.resize(UberSetIDs.getNumClasses());
16289b613dbaSDavid Blaikie   unsigned i = 0;
16299b613dbaSDavid Blaikie   for (const CodeGenRegister &Reg : Registers) {
16309b613dbaSDavid Blaikie     unsigned USetID = UberSetIDs[Reg.EnumValue];
16311d7a2c57SAndrew Trick     if (!USetID)
16321d7a2c57SAndrew Trick       USetID = ZeroID;
16331d7a2c57SAndrew Trick     else if (USetID == ZeroID)
16341d7a2c57SAndrew Trick       USetID = 0;
16351d7a2c57SAndrew Trick 
16361d7a2c57SAndrew Trick     UberRegSet *USet = &UberSets[USetID];
1637be2edf30SOwen Anderson     USet->Regs.push_back(&Reg);
1638be2edf30SOwen Anderson     sortAndUniqueRegisters(USet->Regs);
16399b613dbaSDavid Blaikie     RegSets[i++] = USet;
16401d7a2c57SAndrew Trick   }
16411d7a2c57SAndrew Trick }
16421d7a2c57SAndrew Trick 
16431d7a2c57SAndrew Trick // Recompute each UberSet weight after changing unit weights.
16441d7a2c57SAndrew Trick static void computeUberWeights(std::vector<UberRegSet> &UberSets,
16451d7a2c57SAndrew Trick                                CodeGenRegBank &RegBank) {
16461d7a2c57SAndrew Trick   // Skip the first unallocatable set.
1647b6d0bd48SBenjamin Kramer   for (std::vector<UberRegSet>::iterator I = std::next(UberSets.begin()),
16481d7a2c57SAndrew Trick          E = UberSets.end(); I != E; ++I) {
16491d7a2c57SAndrew Trick 
16501d7a2c57SAndrew Trick     // Initialize all unit weights in this set, and remember the max units/reg.
165124064771SCraig Topper     const CodeGenRegister *Reg = nullptr;
16521d7a2c57SAndrew Trick     unsigned MaxWeight = 0, Weight = 0;
16531d7a2c57SAndrew Trick     for (RegUnitIterator UnitI(I->Regs); UnitI.isValid(); ++UnitI) {
16541d7a2c57SAndrew Trick       if (Reg != UnitI.getReg()) {
16551d7a2c57SAndrew Trick         if (Weight > MaxWeight)
16561d7a2c57SAndrew Trick           MaxWeight = Weight;
16571d7a2c57SAndrew Trick         Reg = UnitI.getReg();
16581d7a2c57SAndrew Trick         Weight = 0;
16591d7a2c57SAndrew Trick       }
1660eb0c510eSKrzysztof Parzyszek       if (!RegBank.getRegUnit(*UnitI).Artificial) {
1661095f22afSJakob Stoklund Olesen         unsigned UWeight = RegBank.getRegUnit(*UnitI).Weight;
16621d7a2c57SAndrew Trick         if (!UWeight) {
16631d7a2c57SAndrew Trick           UWeight = 1;
16641d7a2c57SAndrew Trick           RegBank.increaseRegUnitWeight(*UnitI, UWeight);
16651d7a2c57SAndrew Trick         }
16661d7a2c57SAndrew Trick         Weight += UWeight;
16671d7a2c57SAndrew Trick       }
1668eb0c510eSKrzysztof Parzyszek     }
16691d7a2c57SAndrew Trick     if (Weight > MaxWeight)
16701d7a2c57SAndrew Trick       MaxWeight = Weight;
1671301dd8d7SAndrew Trick     if (I->Weight != MaxWeight) {
1672d34e60caSNicola Zaghen       LLVM_DEBUG(dbgs() << "UberSet " << I - UberSets.begin() << " Weight "
1673d34e60caSNicola Zaghen                         << MaxWeight;
1674d34e60caSNicola Zaghen                  for (auto &Unit
1675d34e60caSNicola Zaghen                       : I->Regs) dbgs()
1676d34e60caSNicola Zaghen                  << " " << Unit->getName();
1677301dd8d7SAndrew Trick                  dbgs() << "\n");
16781d7a2c57SAndrew Trick       // Update the set weight.
16791d7a2c57SAndrew Trick       I->Weight = MaxWeight;
1680301dd8d7SAndrew Trick     }
16811d7a2c57SAndrew Trick 
16821d7a2c57SAndrew Trick     // Find singular determinants.
1683be2edf30SOwen Anderson     for (const auto R : I->Regs) {
1684be2edf30SOwen Anderson       if (R->getRegUnits().count() == 1 && R->getWeight(RegBank) == I->Weight) {
1685be2edf30SOwen Anderson         I->SingularDeterminants |= R->getRegUnits();
1686a366d7b2SOwen Anderson       }
16871d7a2c57SAndrew Trick     }
16881d7a2c57SAndrew Trick   }
16891d7a2c57SAndrew Trick }
16901d7a2c57SAndrew Trick 
16911d7a2c57SAndrew Trick // normalizeWeight is a computeRegUnitWeights helper that adjusts the weight of
16921d7a2c57SAndrew Trick // a register and its subregisters so that they have the same weight as their
16931d7a2c57SAndrew Trick // UberSet. Self-recursion processes the subregister tree in postorder so
16941d7a2c57SAndrew Trick // subregisters are normalized first.
16951d7a2c57SAndrew Trick //
16961d7a2c57SAndrew Trick // Side effects:
16971d7a2c57SAndrew Trick // - creates new adopted register units
16981d7a2c57SAndrew Trick // - causes superregisters to inherit adopted units
16991d7a2c57SAndrew Trick // - increases the weight of "singular" units
17001d7a2c57SAndrew Trick // - induces recomputation of UberWeights.
17011d7a2c57SAndrew Trick static bool normalizeWeight(CodeGenRegister *Reg,
17021d7a2c57SAndrew Trick                             std::vector<UberRegSet> &UberSets,
17031d7a2c57SAndrew Trick                             std::vector<UberRegSet*> &RegSets,
1704646d06fcSDaniel Sanders                             BitVector &NormalRegs,
17051d7a2c57SAndrew Trick                             CodeGenRegister::RegUnitList &NormalUnits,
17061d7a2c57SAndrew Trick                             CodeGenRegBank &RegBank) {
1707646d06fcSDaniel Sanders   NormalRegs.resize(std::max(Reg->EnumValue + 1, NormalRegs.size()));
1708a366d7b2SOwen Anderson   if (NormalRegs.test(Reg->EnumValue))
1709a366d7b2SOwen Anderson     return false;
1710a366d7b2SOwen Anderson   NormalRegs.set(Reg->EnumValue);
17115d133998SAndrew Trick 
1712a366d7b2SOwen Anderson   bool Changed = false;
17131d7a2c57SAndrew Trick   const CodeGenRegister::SubRegMap &SRM = Reg->getSubRegs();
17141d7a2c57SAndrew Trick   for (CodeGenRegister::SubRegMap::const_iterator SRI = SRM.begin(),
17151d7a2c57SAndrew Trick          SRE = SRM.end(); SRI != SRE; ++SRI) {
17161d7a2c57SAndrew Trick     if (SRI->second == Reg)
17171d7a2c57SAndrew Trick       continue; // self-cycles happen
17181d7a2c57SAndrew Trick 
17195d133998SAndrew Trick     Changed |= normalizeWeight(SRI->second, UberSets, RegSets,
17205d133998SAndrew Trick                                NormalRegs, NormalUnits, RegBank);
17211d7a2c57SAndrew Trick   }
17221d7a2c57SAndrew Trick   // Postorder register normalization.
17231d7a2c57SAndrew Trick 
17241d7a2c57SAndrew Trick   // Inherit register units newly adopted by subregisters.
17251d7a2c57SAndrew Trick   if (Reg->inheritRegUnits(RegBank))
17261d7a2c57SAndrew Trick     computeUberWeights(UberSets, RegBank);
17271d7a2c57SAndrew Trick 
17281d7a2c57SAndrew Trick   // Check if this register is too skinny for its UberRegSet.
17291d7a2c57SAndrew Trick   UberRegSet *UberSet = RegSets[RegBank.getRegIndex(Reg)];
17301d7a2c57SAndrew Trick 
17311d7a2c57SAndrew Trick   unsigned RegWeight = Reg->getWeight(RegBank);
17321d7a2c57SAndrew Trick   if (UberSet->Weight > RegWeight) {
17331d7a2c57SAndrew Trick     // A register unit's weight can be adjusted only if it is the singular unit
17341d7a2c57SAndrew Trick     // for this register, has not been used to normalize a subregister's set,
17351d7a2c57SAndrew Trick     // and has not already been used to singularly determine this UberRegSet.
1736a366d7b2SOwen Anderson     unsigned AdjustUnit = *Reg->getRegUnits().begin();
1737a366d7b2SOwen Anderson     if (Reg->getRegUnits().count() != 1
17381d7a2c57SAndrew Trick         || hasRegUnit(NormalUnits, AdjustUnit)
17391d7a2c57SAndrew Trick         || hasRegUnit(UberSet->SingularDeterminants, AdjustUnit)) {
17401d7a2c57SAndrew Trick       // We don't have an adjustable unit, so adopt a new one.
17411d7a2c57SAndrew Trick       AdjustUnit = RegBank.newRegUnit(UberSet->Weight - RegWeight);
17421d7a2c57SAndrew Trick       Reg->adoptRegUnit(AdjustUnit);
17431d7a2c57SAndrew Trick       // Adopting a unit does not immediately require recomputing set weights.
17441d7a2c57SAndrew Trick     }
17451d7a2c57SAndrew Trick     else {
17461d7a2c57SAndrew Trick       // Adjust the existing single unit.
1747eb0c510eSKrzysztof Parzyszek       if (!RegBank.getRegUnit(AdjustUnit).Artificial)
17481d7a2c57SAndrew Trick         RegBank.increaseRegUnitWeight(AdjustUnit, UberSet->Weight - RegWeight);
17491d7a2c57SAndrew Trick       // The unit may be shared among sets and registers within this set.
17501d7a2c57SAndrew Trick       computeUberWeights(UberSets, RegBank);
17511d7a2c57SAndrew Trick     }
17521d7a2c57SAndrew Trick     Changed = true;
17531d7a2c57SAndrew Trick   }
17541d7a2c57SAndrew Trick 
17551d7a2c57SAndrew Trick   // Mark these units normalized so superregisters can't change their weights.
1756a366d7b2SOwen Anderson   NormalUnits |= Reg->getRegUnits();
17571d7a2c57SAndrew Trick 
17581d7a2c57SAndrew Trick   return Changed;
17591d7a2c57SAndrew Trick }
17601d7a2c57SAndrew Trick 
17611d7a2c57SAndrew Trick // Compute a weight for each register unit created during getSubRegs.
17621d7a2c57SAndrew Trick //
17631d7a2c57SAndrew Trick // The goal is that two registers in the same class will have the same weight,
17641d7a2c57SAndrew Trick // where each register's weight is defined as sum of its units' weights.
17651d7a2c57SAndrew Trick void CodeGenRegBank::computeRegUnitWeights() {
17661d7a2c57SAndrew Trick   std::vector<UberRegSet> UberSets;
17671d7a2c57SAndrew Trick   std::vector<UberRegSet*> RegSets(Registers.size());
17681d7a2c57SAndrew Trick   computeUberSets(UberSets, RegSets, *this);
17691d7a2c57SAndrew Trick   // UberSets and RegSets are now immutable.
17701d7a2c57SAndrew Trick 
17711d7a2c57SAndrew Trick   computeUberWeights(UberSets, *this);
17721d7a2c57SAndrew Trick 
17731d7a2c57SAndrew Trick   // Iterate over each Register, normalizing the unit weights until reaching
17741d7a2c57SAndrew Trick   // a fix point.
17751d7a2c57SAndrew Trick   unsigned NumIters = 0;
17761d7a2c57SAndrew Trick   for (bool Changed = true; Changed; ++NumIters) {
17771d7a2c57SAndrew Trick     assert(NumIters <= NumNativeRegUnits && "Runaway register unit weights");
17781d7a2c57SAndrew Trick     Changed = false;
17799b613dbaSDavid Blaikie     for (auto &Reg : Registers) {
17801d7a2c57SAndrew Trick       CodeGenRegister::RegUnitList NormalUnits;
1781646d06fcSDaniel Sanders       BitVector NormalRegs;
17829b613dbaSDavid Blaikie       Changed |= normalizeWeight(&Reg, UberSets, RegSets, NormalRegs,
17839b613dbaSDavid Blaikie                                  NormalUnits, *this);
17841d7a2c57SAndrew Trick     }
17851d7a2c57SAndrew Trick   }
17861d7a2c57SAndrew Trick }
17871d7a2c57SAndrew Trick 
1788739a0038SAndrew Trick // Find a set in UniqueSets with the same elements as Set.
1789739a0038SAndrew Trick // Return an iterator into UniqueSets.
1790739a0038SAndrew Trick static std::vector<RegUnitSet>::const_iterator
1791739a0038SAndrew Trick findRegUnitSet(const std::vector<RegUnitSet> &UniqueSets,
1792739a0038SAndrew Trick                const RegUnitSet &Set) {
1793739a0038SAndrew Trick   std::vector<RegUnitSet>::const_iterator
1794739a0038SAndrew Trick     I = UniqueSets.begin(), E = UniqueSets.end();
1795739a0038SAndrew Trick   for(;I != E; ++I) {
1796739a0038SAndrew Trick     if (I->Units == Set.Units)
1797739a0038SAndrew Trick       break;
1798739a0038SAndrew Trick   }
1799739a0038SAndrew Trick   return I;
1800739a0038SAndrew Trick }
1801739a0038SAndrew Trick 
1802739a0038SAndrew Trick // Return true if the RUSubSet is a subset of RUSuperSet.
1803739a0038SAndrew Trick static bool isRegUnitSubSet(const std::vector<unsigned> &RUSubSet,
1804739a0038SAndrew Trick                             const std::vector<unsigned> &RUSuperSet) {
18059002c315SAndrew Trick   return std::includes(RUSuperSet.begin(), RUSuperSet.end(),
18069002c315SAndrew Trick                        RUSubSet.begin(), RUSubSet.end());
1807739a0038SAndrew Trick }
1808739a0038SAndrew Trick 
1809753663ccSAndrew Trick /// Iteratively prune unit sets. Prune subsets that are close to the superset,
18109447cce0SAndrew Trick /// but with one or two registers removed. We occasionally have registers like
18119447cce0SAndrew Trick /// APSR and PC thrown in with the general registers. We also see many
18129447cce0SAndrew Trick /// special-purpose register subsets, such as tail-call and Thumb
18139447cce0SAndrew Trick /// encodings. Generating all possible overlapping sets is combinatorial and
18149447cce0SAndrew Trick /// overkill for modeling pressure. Ideally we could fix this statically in
18159447cce0SAndrew Trick /// tablegen by (1) having the target define register classes that only include
18169447cce0SAndrew Trick /// the allocatable registers and marking other classes as non-allocatable and
18179447cce0SAndrew Trick /// (2) having a way to mark special purpose classes as "don't-care" classes for
18189447cce0SAndrew Trick /// the purpose of pressure.  However, we make an attempt to handle targets that
18199447cce0SAndrew Trick /// are not nicely defined by merging nearly identical register unit sets
18209447cce0SAndrew Trick /// statically. This generates smaller tables. Then, dynamically, we adjust the
18219447cce0SAndrew Trick /// set limit by filtering the reserved registers.
18229447cce0SAndrew Trick ///
18239447cce0SAndrew Trick /// Merge sets only if the units have the same weight. For example, on ARM,
18249447cce0SAndrew Trick /// Q-tuples with ssub index 0 include all S regs but also include D16+. We
18259447cce0SAndrew Trick /// should not expand the S set to include D regs.
1826739a0038SAndrew Trick void CodeGenRegBank::pruneUnitSets() {
1827739a0038SAndrew Trick   assert(RegClassUnitSets.empty() && "this invalidates RegClassUnitSets");
1828739a0038SAndrew Trick 
1829739a0038SAndrew Trick   // Form an equivalence class of UnitSets with no significant difference.
1830a5eee987SAndrew Trick   std::vector<unsigned> SuperSetIDs;
1831739a0038SAndrew Trick   for (unsigned SubIdx = 0, EndIdx = RegUnitSets.size();
1832739a0038SAndrew Trick        SubIdx != EndIdx; ++SubIdx) {
1833739a0038SAndrew Trick     const RegUnitSet &SubSet = RegUnitSets[SubIdx];
18340d94c73cSAndrew Trick     unsigned SuperIdx = 0;
18350d94c73cSAndrew Trick     for (; SuperIdx != EndIdx; ++SuperIdx) {
1836739a0038SAndrew Trick       if (SuperIdx == SubIdx)
1837739a0038SAndrew Trick         continue;
1838a5eee987SAndrew Trick 
18399447cce0SAndrew Trick       unsigned UnitWeight = RegUnits[SubSet.Units[0]].Weight;
1840a5eee987SAndrew Trick       const RegUnitSet &SuperSet = RegUnitSets[SuperIdx];
1841a5eee987SAndrew Trick       if (isRegUnitSubSet(SubSet.Units, SuperSet.Units)
18429447cce0SAndrew Trick           && (SubSet.Units.size() + 3 > SuperSet.Units.size())
18439447cce0SAndrew Trick           && UnitWeight == RegUnits[SuperSet.Units[0]].Weight
18449447cce0SAndrew Trick           && UnitWeight == RegUnits[SuperSet.Units.back()].Weight) {
1845d34e60caSNicola Zaghen         LLVM_DEBUG(dbgs() << "UnitSet " << SubIdx << " subsumed by " << SuperIdx
1846301dd8d7SAndrew Trick                           << "\n");
1847167cbd21SMatthias Braun         // We can pick any of the set names for the merged set. Go for the
1848167cbd21SMatthias Braun         // shortest one to avoid picking the name of one of the classes that are
1849167cbd21SMatthias Braun         // artificially created by tablegen. So "FPR128_lo" instead of
1850167cbd21SMatthias Braun         // "QQQQ_with_qsub3_in_FPR128_lo".
1851167cbd21SMatthias Braun         if (RegUnitSets[SubIdx].Name.size() < RegUnitSets[SuperIdx].Name.size())
1852167cbd21SMatthias Braun           RegUnitSets[SuperIdx].Name = RegUnitSets[SubIdx].Name;
18530d94c73cSAndrew Trick         break;
1854739a0038SAndrew Trick       }
1855739a0038SAndrew Trick     }
1856a5eee987SAndrew Trick     if (SuperIdx == EndIdx)
1857a5eee987SAndrew Trick       SuperSetIDs.push_back(SubIdx);
1858a5eee987SAndrew Trick   }
1859a5eee987SAndrew Trick   // Populate PrunedUnitSets with each equivalence class's superset.
1860a5eee987SAndrew Trick   std::vector<RegUnitSet> PrunedUnitSets(SuperSetIDs.size());
1861a5eee987SAndrew Trick   for (unsigned i = 0, e = SuperSetIDs.size(); i != e; ++i) {
1862a5eee987SAndrew Trick     unsigned SuperIdx = SuperSetIDs[i];
1863a5eee987SAndrew Trick     PrunedUnitSets[i].Name = RegUnitSets[SuperIdx].Name;
1864a5eee987SAndrew Trick     PrunedUnitSets[i].Units.swap(RegUnitSets[SuperIdx].Units);
1865739a0038SAndrew Trick   }
1866739a0038SAndrew Trick   RegUnitSets.swap(PrunedUnitSets);
1867739a0038SAndrew Trick }
1868739a0038SAndrew Trick 
1869739a0038SAndrew Trick // Create a RegUnitSet for each RegClass that contains all units in the class
1870739a0038SAndrew Trick // including adopted units that are necessary to model register pressure. Then
1871739a0038SAndrew Trick // iteratively compute RegUnitSets such that the union of any two overlapping
1872739a0038SAndrew Trick // RegUnitSets is repreresented.
1873739a0038SAndrew Trick //
1874739a0038SAndrew Trick // RegisterInfoEmitter will map each RegClass to its RegUnitClass and any
1875739a0038SAndrew Trick // RegUnitSet that is a superset of that RegUnitClass.
1876739a0038SAndrew Trick void CodeGenRegBank::computeRegUnitSets() {
1877301dd8d7SAndrew Trick   assert(RegUnitSets.empty() && "dirty RegUnitSets");
1878739a0038SAndrew Trick 
1879739a0038SAndrew Trick   // Compute a unique RegUnitSet for each RegClass.
1880c0bb5cabSDavid Blaikie   auto &RegClasses = getRegClasses();
1881dacea4bcSDavid Blaikie   for (auto &RC : RegClasses) {
1882eb0c510eSKrzysztof Parzyszek     if (!RC.Allocatable || RC.Artificial)
18830d94c73cSAndrew Trick       continue;
1884739a0038SAndrew Trick 
1885739a0038SAndrew Trick     // Speculatively grow the RegUnitSets to hold the new set.
1886739a0038SAndrew Trick     RegUnitSets.resize(RegUnitSets.size() + 1);
1887dacea4bcSDavid Blaikie     RegUnitSets.back().Name = RC.getName();
18887d52db98SAndrew Trick 
18897d52db98SAndrew Trick     // Compute a sorted list of units in this class.
1890eb0c510eSKrzysztof Parzyszek     RC.buildRegUnitSet(*this, RegUnitSets.back().Units);
1891739a0038SAndrew Trick 
1892739a0038SAndrew Trick     // Find an existing RegUnitSet.
1893739a0038SAndrew Trick     std::vector<RegUnitSet>::const_iterator SetI =
1894739a0038SAndrew Trick       findRegUnitSet(RegUnitSets, RegUnitSets.back());
1895b6d0bd48SBenjamin Kramer     if (SetI != std::prev(RegUnitSets.end()))
1896739a0038SAndrew Trick       RegUnitSets.pop_back();
1897739a0038SAndrew Trick   }
1898739a0038SAndrew Trick 
1899d34e60caSNicola Zaghen   LLVM_DEBUG(dbgs() << "\nBefore pruning:\n"; for (unsigned USIdx = 0,
1900d34e60caSNicola Zaghen                                                    USEnd = RegUnitSets.size();
1901301dd8d7SAndrew Trick                                                    USIdx < USEnd; ++USIdx) {
1902d34e60caSNicola Zaghen     dbgs() << "UnitSet " << USIdx << " " << RegUnitSets[USIdx].Name << ":";
190349cf4675SDavid Blaikie     for (auto &U : RegUnitSets[USIdx].Units)
190446a0392cSKrzysztof Parzyszek       printRegUnitName(U);
1905301dd8d7SAndrew Trick     dbgs() << "\n";
1906301dd8d7SAndrew Trick   });
1907301dd8d7SAndrew Trick 
1908739a0038SAndrew Trick   // Iteratively prune unit sets.
1909739a0038SAndrew Trick   pruneUnitSets();
1910739a0038SAndrew Trick 
1911d34e60caSNicola Zaghen   LLVM_DEBUG(dbgs() << "\nBefore union:\n"; for (unsigned USIdx = 0,
1912d34e60caSNicola Zaghen                                                  USEnd = RegUnitSets.size();
1913301dd8d7SAndrew Trick                                                  USIdx < USEnd; ++USIdx) {
1914d34e60caSNicola Zaghen     dbgs() << "UnitSet " << USIdx << " " << RegUnitSets[USIdx].Name << ":";
191549cf4675SDavid Blaikie     for (auto &U : RegUnitSets[USIdx].Units)
191646a0392cSKrzysztof Parzyszek       printRegUnitName(U);
1917301dd8d7SAndrew Trick     dbgs() << "\n";
1918d34e60caSNicola Zaghen   } dbgs() << "\nUnion sets:\n");
1919301dd8d7SAndrew Trick 
1920739a0038SAndrew Trick   // Iterate over all unit sets, including new ones added by this loop.
1921739a0038SAndrew Trick   unsigned NumRegUnitSubSets = RegUnitSets.size();
1922739a0038SAndrew Trick   for (unsigned Idx = 0, EndIdx = RegUnitSets.size(); Idx != EndIdx; ++Idx) {
1923739a0038SAndrew Trick     // In theory, this is combinatorial. In practice, it needs to be bounded
1924739a0038SAndrew Trick     // by a small number of sets for regpressure to be efficient.
1925739a0038SAndrew Trick     // If the assert is hit, we need to implement pruning.
1926739a0038SAndrew Trick     assert(Idx < (2*NumRegUnitSubSets) && "runaway unit set inference");
1927739a0038SAndrew Trick 
1928739a0038SAndrew Trick     // Compare new sets with all original classes.
1929f8b1a666SAndrew Trick     for (unsigned SearchIdx = (Idx >= NumRegUnitSubSets) ? 0 : Idx+1;
1930739a0038SAndrew Trick          SearchIdx != EndIdx; ++SearchIdx) {
1931739a0038SAndrew Trick       std::set<unsigned> Intersection;
1932739a0038SAndrew Trick       std::set_intersection(RegUnitSets[Idx].Units.begin(),
1933739a0038SAndrew Trick                             RegUnitSets[Idx].Units.end(),
1934739a0038SAndrew Trick                             RegUnitSets[SearchIdx].Units.begin(),
1935739a0038SAndrew Trick                             RegUnitSets[SearchIdx].Units.end(),
1936739a0038SAndrew Trick                             std::inserter(Intersection, Intersection.begin()));
1937739a0038SAndrew Trick       if (Intersection.empty())
1938739a0038SAndrew Trick         continue;
1939739a0038SAndrew Trick 
1940739a0038SAndrew Trick       // Speculatively grow the RegUnitSets to hold the new set.
1941739a0038SAndrew Trick       RegUnitSets.resize(RegUnitSets.size() + 1);
1942739a0038SAndrew Trick       RegUnitSets.back().Name =
1943739a0038SAndrew Trick         RegUnitSets[Idx].Name + "+" + RegUnitSets[SearchIdx].Name;
1944739a0038SAndrew Trick 
1945739a0038SAndrew Trick       std::set_union(RegUnitSets[Idx].Units.begin(),
1946739a0038SAndrew Trick                      RegUnitSets[Idx].Units.end(),
1947739a0038SAndrew Trick                      RegUnitSets[SearchIdx].Units.begin(),
1948739a0038SAndrew Trick                      RegUnitSets[SearchIdx].Units.end(),
1949739a0038SAndrew Trick                      std::inserter(RegUnitSets.back().Units,
1950739a0038SAndrew Trick                                    RegUnitSets.back().Units.begin()));
1951739a0038SAndrew Trick 
1952739a0038SAndrew Trick       // Find an existing RegUnitSet, or add the union to the unique sets.
1953739a0038SAndrew Trick       std::vector<RegUnitSet>::const_iterator SetI =
1954739a0038SAndrew Trick         findRegUnitSet(RegUnitSets, RegUnitSets.back());
1955b6d0bd48SBenjamin Kramer       if (SetI != std::prev(RegUnitSets.end()))
1956739a0038SAndrew Trick         RegUnitSets.pop_back();
19579447cce0SAndrew Trick       else {
1958d34e60caSNicola Zaghen         LLVM_DEBUG(dbgs() << "UnitSet " << RegUnitSets.size() - 1 << " "
1959d34e60caSNicola Zaghen                           << RegUnitSets.back().Name << ":";
1960d34e60caSNicola Zaghen                    for (auto &U
1961d34e60caSNicola Zaghen                         : RegUnitSets.back().Units) printRegUnitName(U);
19629447cce0SAndrew Trick                    dbgs() << "\n";);
19639447cce0SAndrew Trick       }
1964739a0038SAndrew Trick     }
1965739a0038SAndrew Trick   }
1966739a0038SAndrew Trick 
19670d94c73cSAndrew Trick   // Iteratively prune unit sets after inferring supersets.
1968739a0038SAndrew Trick   pruneUnitSets();
1969739a0038SAndrew Trick 
1970d34e60caSNicola Zaghen   LLVM_DEBUG(
1971d34e60caSNicola Zaghen       dbgs() << "\n"; for (unsigned USIdx = 0, USEnd = RegUnitSets.size();
1972301dd8d7SAndrew Trick                            USIdx < USEnd; ++USIdx) {
1973d34e60caSNicola Zaghen         dbgs() << "UnitSet " << USIdx << " " << RegUnitSets[USIdx].Name << ":";
197449cf4675SDavid Blaikie         for (auto &U : RegUnitSets[USIdx].Units)
197546a0392cSKrzysztof Parzyszek           printRegUnitName(U);
1976301dd8d7SAndrew Trick         dbgs() << "\n";
1977301dd8d7SAndrew Trick       });
1978301dd8d7SAndrew Trick 
1979739a0038SAndrew Trick   // For each register class, list the UnitSets that are supersets.
1980c0bb5cabSDavid Blaikie   RegClassUnitSets.resize(RegClasses.size());
1981c0bb5cabSDavid Blaikie   int RCIdx = -1;
1982dacea4bcSDavid Blaikie   for (auto &RC : RegClasses) {
1983c0bb5cabSDavid Blaikie     ++RCIdx;
1984dacea4bcSDavid Blaikie     if (!RC.Allocatable)
19850d94c73cSAndrew Trick       continue;
19860d94c73cSAndrew Trick 
1987739a0038SAndrew Trick     // Recompute the sorted list of units in this class.
1988301dd8d7SAndrew Trick     std::vector<unsigned> RCRegUnits;
1989eb0c510eSKrzysztof Parzyszek     RC.buildRegUnitSet(*this, RCRegUnits);
1990739a0038SAndrew Trick 
1991739a0038SAndrew Trick     // Don't increase pressure for unallocatable regclasses.
1992301dd8d7SAndrew Trick     if (RCRegUnits.empty())
1993739a0038SAndrew Trick       continue;
1994739a0038SAndrew Trick 
1995d34e60caSNicola Zaghen     LLVM_DEBUG(dbgs() << "RC " << RC.getName() << " Units: \n";
1996d34e60caSNicola Zaghen                for (auto U
1997d34e60caSNicola Zaghen                     : RCRegUnits) printRegUnitName(U);
1998301dd8d7SAndrew Trick                dbgs() << "\n  UnitSetIDs:");
1999301dd8d7SAndrew Trick 
2000739a0038SAndrew Trick     // Find all supersets.
2001739a0038SAndrew Trick     for (unsigned USIdx = 0, USEnd = RegUnitSets.size();
2002739a0038SAndrew Trick          USIdx != USEnd; ++USIdx) {
2003301dd8d7SAndrew Trick       if (isRegUnitSubSet(RCRegUnits, RegUnitSets[USIdx].Units)) {
2004d34e60caSNicola Zaghen         LLVM_DEBUG(dbgs() << " " << USIdx);
2005739a0038SAndrew Trick         RegClassUnitSets[RCIdx].push_back(USIdx);
2006739a0038SAndrew Trick       }
2007301dd8d7SAndrew Trick     }
2008d34e60caSNicola Zaghen     LLVM_DEBUG(dbgs() << "\n");
20090d94c73cSAndrew Trick     assert(!RegClassUnitSets[RCIdx].empty() && "missing unit set for regclass");
2010739a0038SAndrew Trick   }
2011510e606eSAndrew Trick 
2012510e606eSAndrew Trick   // For each register unit, ensure that we have the list of UnitSets that
2013510e606eSAndrew Trick   // contain the unit. Normally, this matches an existing list of UnitSets for a
2014510e606eSAndrew Trick   // register class. If not, we create a new entry in RegClassUnitSets as a
2015510e606eSAndrew Trick   // "fake" register class.
2016510e606eSAndrew Trick   for (unsigned UnitIdx = 0, UnitEnd = NumNativeRegUnits;
2017510e606eSAndrew Trick        UnitIdx < UnitEnd; ++UnitIdx) {
2018510e606eSAndrew Trick     std::vector<unsigned> RUSets;
2019510e606eSAndrew Trick     for (unsigned i = 0, e = RegUnitSets.size(); i != e; ++i) {
2020510e606eSAndrew Trick       RegUnitSet &RUSet = RegUnitSets[i];
20210d955d0bSDavid Majnemer       if (!is_contained(RUSet.Units, UnitIdx))
2022510e606eSAndrew Trick         continue;
2023510e606eSAndrew Trick       RUSets.push_back(i);
2024510e606eSAndrew Trick     }
2025510e606eSAndrew Trick     unsigned RCUnitSetsIdx = 0;
2026510e606eSAndrew Trick     for (unsigned e = RegClassUnitSets.size();
2027510e606eSAndrew Trick          RCUnitSetsIdx != e; ++RCUnitSetsIdx) {
2028510e606eSAndrew Trick       if (RegClassUnitSets[RCUnitSetsIdx] == RUSets) {
2029510e606eSAndrew Trick         break;
2030510e606eSAndrew Trick       }
2031510e606eSAndrew Trick     }
2032510e606eSAndrew Trick     RegUnits[UnitIdx].RegClassUnitSetsIdx = RCUnitSetsIdx;
2033510e606eSAndrew Trick     if (RCUnitSetsIdx == RegClassUnitSets.size()) {
2034510e606eSAndrew Trick       // Create a new list of UnitSets as a "fake" register class.
2035510e606eSAndrew Trick       RegClassUnitSets.resize(RCUnitSetsIdx + 1);
2036510e606eSAndrew Trick       RegClassUnitSets[RCUnitSetsIdx].swap(RUSets);
2037510e606eSAndrew Trick     }
2038510e606eSAndrew Trick   }
2039739a0038SAndrew Trick }
2040739a0038SAndrew Trick 
2041755f8b18SMatthias Braun void CodeGenRegBank::computeRegUnitLaneMasks() {
2042755f8b18SMatthias Braun   for (auto &Register : Registers) {
2043755f8b18SMatthias Braun     // Create an initial lane mask for all register units.
2044755f8b18SMatthias Braun     const auto &RegUnits = Register.getRegUnits();
204591b5cf84SKrzysztof Parzyszek     CodeGenRegister::RegUnitLaneMaskList
204691b5cf84SKrzysztof Parzyszek         RegUnitLaneMasks(RegUnits.count(), LaneBitmask::getNone());
2047755f8b18SMatthias Braun     // Iterate through SubRegisters.
2048755f8b18SMatthias Braun     typedef CodeGenRegister::SubRegMap SubRegMap;
2049755f8b18SMatthias Braun     const SubRegMap &SubRegs = Register.getSubRegs();
2050755f8b18SMatthias Braun     for (SubRegMap::const_iterator S = SubRegs.begin(),
2051755f8b18SMatthias Braun          SE = SubRegs.end(); S != SE; ++S) {
2052755f8b18SMatthias Braun       CodeGenRegister *SubReg = S->second;
2053755f8b18SMatthias Braun       // Ignore non-leaf subregisters, their lane masks are fully covered by
2054755f8b18SMatthias Braun       // the leaf subregisters anyway.
2055a3fe70d2SEugene Zelenko       if (!SubReg->getSubRegs().empty())
2056755f8b18SMatthias Braun         continue;
2057755f8b18SMatthias Braun       CodeGenSubRegIndex *SubRegIndex = S->first;
2058755f8b18SMatthias Braun       const CodeGenRegister *SubRegister = S->second;
205991b5cf84SKrzysztof Parzyszek       LaneBitmask LaneMask = SubRegIndex->LaneMask;
2060755f8b18SMatthias Braun       // Distribute LaneMask to Register Units touched.
20616b1aa5f5SRichard Trieu       for (unsigned SUI : SubRegister->getRegUnits()) {
2062755f8b18SMatthias Braun         bool Found = false;
2063a366d7b2SOwen Anderson         unsigned u = 0;
2064a366d7b2SOwen Anderson         for (unsigned RU : RegUnits) {
2065a366d7b2SOwen Anderson           if (SUI == RU) {
2066755f8b18SMatthias Braun             RegUnitLaneMasks[u] |= LaneMask;
2067755f8b18SMatthias Braun             assert(!Found);
2068755f8b18SMatthias Braun             Found = true;
2069755f8b18SMatthias Braun           }
2070a366d7b2SOwen Anderson           ++u;
2071755f8b18SMatthias Braun         }
207296e68a0cSYaron Keren         (void)Found;
2073755f8b18SMatthias Braun         assert(Found);
2074755f8b18SMatthias Braun       }
2075755f8b18SMatthias Braun     }
2076755f8b18SMatthias Braun     Register.setRegUnitLaneMasks(RegUnitLaneMasks);
2077755f8b18SMatthias Braun   }
2078755f8b18SMatthias Braun }
2079755f8b18SMatthias Braun 
208084bd44ebSJakob Stoklund Olesen void CodeGenRegBank::computeDerivedInfo() {
208184bd44ebSJakob Stoklund Olesen   computeComposites();
2082d01627b2SMatthias Braun   computeSubRegLaneMasks();
20831d7a2c57SAndrew Trick 
20841d7a2c57SAndrew Trick   // Compute a weight for each register unit created during getSubRegs.
20851d7a2c57SAndrew Trick   // This may create adopted register units (with unit # >= NumNativeRegUnits).
20861d7a2c57SAndrew Trick   computeRegUnitWeights();
2087739a0038SAndrew Trick 
2088739a0038SAndrew Trick   // Compute a unique set of RegUnitSets. One for each RegClass and inferred
2089739a0038SAndrew Trick   // supersets for the union of overlapping sets.
2090739a0038SAndrew Trick   computeRegUnitSets();
20913aacca46SAndrew Trick 
2092755f8b18SMatthias Braun   computeRegUnitLaneMasks();
2093755f8b18SMatthias Braun 
209439d1fad5SMatthias Braun   // Compute register class HasDisjunctSubRegs/CoveredBySubRegs flag.
2095a25e13aaSMatthias Braun   for (CodeGenRegisterClass &RC : RegClasses) {
2096a25e13aaSMatthias Braun     RC.HasDisjunctSubRegs = false;
209739d1fad5SMatthias Braun     RC.CoveredBySubRegs = true;
209839d1fad5SMatthias Braun     for (const CodeGenRegister *Reg : RC.getMembers()) {
2099a25e13aaSMatthias Braun       RC.HasDisjunctSubRegs |= Reg->HasDisjunctSubRegs;
210039d1fad5SMatthias Braun       RC.CoveredBySubRegs &= Reg->CoveredBySubRegs;
210139d1fad5SMatthias Braun     }
2102a25e13aaSMatthias Braun   }
2103a25e13aaSMatthias Braun 
21043aacca46SAndrew Trick   // Get the weight of each set.
21053aacca46SAndrew Trick   for (unsigned Idx = 0, EndIdx = RegUnitSets.size(); Idx != EndIdx; ++Idx)
21063aacca46SAndrew Trick     RegUnitSets[Idx].Weight = getRegUnitSetWeight(RegUnitSets[Idx].Units);
21073aacca46SAndrew Trick 
21083aacca46SAndrew Trick   // Find the order of each set.
21093aacca46SAndrew Trick   RegUnitSetOrder.reserve(RegUnitSets.size());
21103aacca46SAndrew Trick   for (unsigned Idx = 0, EndIdx = RegUnitSets.size(); Idx != EndIdx; ++Idx)
21113aacca46SAndrew Trick     RegUnitSetOrder.push_back(Idx);
21123aacca46SAndrew Trick 
2113efd94c56SFangrui Song   llvm::stable_sort(RegUnitSetOrder, [this](unsigned ID1, unsigned ID2) {
21143a377bceSBenjamin Kramer     return getRegPressureSet(ID1).Units.size() <
21153a377bceSBenjamin Kramer            getRegPressureSet(ID2).Units.size();
21163a377bceSBenjamin Kramer   });
21173aacca46SAndrew Trick   for (unsigned Idx = 0, EndIdx = RegUnitSets.size(); Idx != EndIdx; ++Idx) {
21183aacca46SAndrew Trick     RegUnitSets[RegUnitSetOrder[Idx]].Order = Idx;
21193aacca46SAndrew Trick   }
212084bd44ebSJakob Stoklund Olesen }
212184bd44ebSJakob Stoklund Olesen 
2122c0f97e3dSJakob Stoklund Olesen //
2123c0f97e3dSJakob Stoklund Olesen // Synthesize missing register class intersections.
2124c0f97e3dSJakob Stoklund Olesen //
2125c0f97e3dSJakob Stoklund Olesen // Make sure that sub-classes of RC exists such that getCommonSubClass(RC, X)
2126c0f97e3dSJakob Stoklund Olesen // returns a maximal register class for all X.
2127c0f97e3dSJakob Stoklund Olesen //
2128c0f97e3dSJakob Stoklund Olesen void CodeGenRegBank::inferCommonSubClass(CodeGenRegisterClass *RC) {
2129dacea4bcSDavid Blaikie   assert(!RegClasses.empty());
2130dacea4bcSDavid Blaikie   // Stash the iterator to the last element so that this loop doesn't visit
2131dacea4bcSDavid Blaikie   // elements added by the getOrCreateSubClass call within it.
2132dacea4bcSDavid Blaikie   for (auto I = RegClasses.begin(), E = std::prev(RegClasses.end());
2133dacea4bcSDavid Blaikie        I != std::next(E); ++I) {
2134c0f97e3dSJakob Stoklund Olesen     CodeGenRegisterClass *RC1 = RC;
2135dacea4bcSDavid Blaikie     CodeGenRegisterClass *RC2 = &*I;
2136c0f97e3dSJakob Stoklund Olesen     if (RC1 == RC2)
2137c0f97e3dSJakob Stoklund Olesen       continue;
2138c0f97e3dSJakob Stoklund Olesen 
2139c0f97e3dSJakob Stoklund Olesen     // Compute the set intersection of RC1 and RC2.
2140be2edf30SOwen Anderson     const CodeGenRegister::Vec &Memb1 = RC1->getMembers();
2141be2edf30SOwen Anderson     const CodeGenRegister::Vec &Memb2 = RC2->getMembers();
2142be2edf30SOwen Anderson     CodeGenRegister::Vec Intersection;
2143440a0456SDavid Blaikie     std::set_intersection(
2144440a0456SDavid Blaikie         Memb1.begin(), Memb1.end(), Memb2.begin(), Memb2.end(),
2145440a0456SDavid Blaikie         std::inserter(Intersection, Intersection.begin()), deref<llvm::less>());
2146c0f97e3dSJakob Stoklund Olesen 
2147c0f97e3dSJakob Stoklund Olesen     // Skip disjoint class pairs.
2148c0f97e3dSJakob Stoklund Olesen     if (Intersection.empty())
2149c0f97e3dSJakob Stoklund Olesen       continue;
2150c0f97e3dSJakob Stoklund Olesen 
2151c0f97e3dSJakob Stoklund Olesen     // If RC1 and RC2 have different spill sizes or alignments, use the
2152779d98e1SKrzysztof Parzyszek     // stricter one for sub-classing.  If they are equal, prefer RC1.
2153779d98e1SKrzysztof Parzyszek     if (RC2->RSI.hasStricterSpillThan(RC1->RSI))
2154c0f97e3dSJakob Stoklund Olesen       std::swap(RC1, RC2);
2155c0f97e3dSJakob Stoklund Olesen 
2156c0f97e3dSJakob Stoklund Olesen     getOrCreateSubClass(RC1, &Intersection,
2157c0f97e3dSJakob Stoklund Olesen                         RC1->getName() + "_and_" + RC2->getName());
2158c0f97e3dSJakob Stoklund Olesen   }
2159c0f97e3dSJakob Stoklund Olesen }
2160c0f97e3dSJakob Stoklund Olesen 
216103efe84dSJakob Stoklund Olesen //
21626a5f0a19SJakob Stoklund Olesen // Synthesize missing sub-classes for getSubClassWithSubReg().
21636a5f0a19SJakob Stoklund Olesen //
21646a5f0a19SJakob Stoklund Olesen // Make sure that the set of registers in RC with a given SubIdx sub-register
21656a5f0a19SJakob Stoklund Olesen // form a register class.  Update RC->SubClassWithSubReg.
21666a5f0a19SJakob Stoklund Olesen //
21676a5f0a19SJakob Stoklund Olesen void CodeGenRegBank::inferSubClassWithSubReg(CodeGenRegisterClass *RC) {
21686a5f0a19SJakob Stoklund Olesen   // Map SubRegIndex to set of registers in RC supporting that SubRegIndex.
2169be2edf30SOwen Anderson   typedef std::map<const CodeGenSubRegIndex *, CodeGenRegister::Vec,
2170440a0456SDavid Blaikie                    deref<llvm::less>> SubReg2SetMap;
217103efe84dSJakob Stoklund Olesen 
217203efe84dSJakob Stoklund Olesen   // Compute the set of registers supporting each SubRegIndex.
217303efe84dSJakob Stoklund Olesen   SubReg2SetMap SRSets;
2174be2edf30SOwen Anderson   for (const auto R : RC->getMembers()) {
2175eb0c510eSKrzysztof Parzyszek     if (R->Artificial)
2176eb0c510eSKrzysztof Parzyszek       continue;
2177be2edf30SOwen Anderson     const CodeGenRegister::SubRegMap &SRM = R->getSubRegs();
2178b1147c46SJakob Stoklund Olesen     for (CodeGenRegister::SubRegMap::const_iterator I = SRM.begin(),
2179eb0c510eSKrzysztof Parzyszek          E = SRM.end(); I != E; ++I) {
2180eb0c510eSKrzysztof Parzyszek       if (!I->first->Artificial)
2181be2edf30SOwen Anderson         SRSets[I->first].push_back(R);
218203efe84dSJakob Stoklund Olesen     }
2183eb0c510eSKrzysztof Parzyszek   }
218403efe84dSJakob Stoklund Olesen 
2185be2edf30SOwen Anderson   for (auto I : SRSets)
2186be2edf30SOwen Anderson     sortAndUniqueRegisters(I.second);
2187be2edf30SOwen Anderson 
218803efe84dSJakob Stoklund Olesen   // Find matching classes for all SRSets entries.  Iterate in SubRegIndex
218903efe84dSJakob Stoklund Olesen   // numerical order to visit synthetic indices last.
21908f25d3bcSDavid Blaikie   for (const auto &SubIdx : SubRegIndices) {
2191eb0c510eSKrzysztof Parzyszek     if (SubIdx.Artificial)
2192eb0c510eSKrzysztof Parzyszek       continue;
21935be6699cSDavid Blaikie     SubReg2SetMap::const_iterator I = SRSets.find(&SubIdx);
219403efe84dSJakob Stoklund Olesen     // Unsupported SubRegIndex. Skip it.
219503efe84dSJakob Stoklund Olesen     if (I == SRSets.end())
219603efe84dSJakob Stoklund Olesen       continue;
21973a541b04SJakob Stoklund Olesen     // In most cases, all RC registers support the SubRegIndex.
21986a5f0a19SJakob Stoklund Olesen     if (I->second.size() == RC->getMembers().size()) {
21995be6699cSDavid Blaikie       RC->setSubClassWithSubReg(&SubIdx, RC);
220003efe84dSJakob Stoklund Olesen       continue;
22013a541b04SJakob Stoklund Olesen     }
220203efe84dSJakob Stoklund Olesen     // This is a real subset.  See if we have a matching class.
22037ebc6b05SJakob Stoklund Olesen     CodeGenRegisterClass *SubRC =
22046a5f0a19SJakob Stoklund Olesen       getOrCreateSubClass(RC, &I->second,
22056a5f0a19SJakob Stoklund Olesen                           RC->getName() + "_with_" + I->first->getName());
22065be6699cSDavid Blaikie     RC->setSubClassWithSubReg(&SubIdx, SubRC);
22076a5f0a19SJakob Stoklund Olesen   }
220803efe84dSJakob Stoklund Olesen }
2209c0f97e3dSJakob Stoklund Olesen 
22106a5f0a19SJakob Stoklund Olesen //
2211b92f557cSJakob Stoklund Olesen // Synthesize missing sub-classes of RC for getMatchingSuperRegClass().
2212b92f557cSJakob Stoklund Olesen //
2213b92f557cSJakob Stoklund Olesen // Create sub-classes of RC such that getMatchingSuperRegClass(RC, SubIdx, X)
2214b92f557cSJakob Stoklund Olesen // has a maximal result for any SubIdx and any X >= FirstSubRegRC.
2215b92f557cSJakob Stoklund Olesen //
2216b92f557cSJakob Stoklund Olesen 
2217b92f557cSJakob Stoklund Olesen void CodeGenRegBank::inferMatchingSuperRegClass(CodeGenRegisterClass *RC,
22180bc23e33SDavid Blaikie                                                 std::list<CodeGenRegisterClass>::iterator FirstSubRegRC) {
2219b92f557cSJakob Stoklund Olesen   SmallVector<std::pair<const CodeGenRegister*,
2220b92f557cSJakob Stoklund Olesen                         const CodeGenRegister*>, 16> SSPairs;
222150ecd0ffSJakob Stoklund Olesen   BitVector TopoSigs(getNumTopoSigs());
2222b92f557cSJakob Stoklund Olesen 
2223b92f557cSJakob Stoklund Olesen   // Iterate in SubRegIndex numerical order to visit synthetic indices last.
22248f25d3bcSDavid Blaikie   for (auto &SubIdx : SubRegIndices) {
2225b92f557cSJakob Stoklund Olesen     // Skip indexes that aren't fully supported by RC's registers. This was
2226b92f557cSJakob Stoklund Olesen     // computed by inferSubClassWithSubReg() above which should have been
2227b92f557cSJakob Stoklund Olesen     // called first.
22285be6699cSDavid Blaikie     if (RC->getSubClassWithSubReg(&SubIdx) != RC)
2229b92f557cSJakob Stoklund Olesen       continue;
2230b92f557cSJakob Stoklund Olesen 
2231b92f557cSJakob Stoklund Olesen     // Build list of (Super, Sub) pairs for this SubIdx.
2232b92f557cSJakob Stoklund Olesen     SSPairs.clear();
223350ecd0ffSJakob Stoklund Olesen     TopoSigs.reset();
2234be2edf30SOwen Anderson     for (const auto Super : RC->getMembers()) {
22355be6699cSDavid Blaikie       const CodeGenRegister *Sub = Super->getSubRegs().find(&SubIdx)->second;
2236b92f557cSJakob Stoklund Olesen       assert(Sub && "Missing sub-register");
2237b92f557cSJakob Stoklund Olesen       SSPairs.push_back(std::make_pair(Super, Sub));
223850ecd0ffSJakob Stoklund Olesen       TopoSigs.set(Sub->getTopoSig());
2239b92f557cSJakob Stoklund Olesen     }
2240b92f557cSJakob Stoklund Olesen 
2241b92f557cSJakob Stoklund Olesen     // Iterate over sub-register class candidates.  Ignore classes created by
2242b92f557cSJakob Stoklund Olesen     // this loop. They will never be useful.
22430bc23e33SDavid Blaikie     // Store an iterator to the last element (not end) so that this loop doesn't
22440bc23e33SDavid Blaikie     // visit newly inserted elements.
2245dacea4bcSDavid Blaikie     assert(!RegClasses.empty());
22460bc23e33SDavid Blaikie     for (auto I = FirstSubRegRC, E = std::prev(RegClasses.end());
2247dacea4bcSDavid Blaikie          I != std::next(E); ++I) {
2248dacea4bcSDavid Blaikie       CodeGenRegisterClass &SubRC = *I;
2249fd974949SKrzysztof Parzyszek       if (SubRC.Artificial)
2250fd974949SKrzysztof Parzyszek         continue;
225150ecd0ffSJakob Stoklund Olesen       // Topological shortcut: SubRC members have the wrong shape.
2252c0bb5cabSDavid Blaikie       if (!TopoSigs.anyCommon(SubRC.getTopoSigs()))
225350ecd0ffSJakob Stoklund Olesen         continue;
2254b92f557cSJakob Stoklund Olesen       // Compute the subset of RC that maps into SubRC.
2255be2edf30SOwen Anderson       CodeGenRegister::Vec SubSetVec;
2256b92f557cSJakob Stoklund Olesen       for (unsigned i = 0, e = SSPairs.size(); i != e; ++i)
2257c0bb5cabSDavid Blaikie         if (SubRC.contains(SSPairs[i].second))
2258be2edf30SOwen Anderson           SubSetVec.push_back(SSPairs[i].first);
2259be2edf30SOwen Anderson 
2260be2edf30SOwen Anderson       if (SubSetVec.empty())
2261b92f557cSJakob Stoklund Olesen         continue;
2262be2edf30SOwen Anderson 
2263b92f557cSJakob Stoklund Olesen       // RC injects completely into SubRC.
2264be2edf30SOwen Anderson       sortAndUniqueRegisters(SubSetVec);
2265be2edf30SOwen Anderson       if (SubSetVec.size() == SSPairs.size()) {
2266c0bb5cabSDavid Blaikie         SubRC.addSuperRegClass(&SubIdx, RC);
2267b92f557cSJakob Stoklund Olesen         continue;
2268c7b437aeSJakob Stoklund Olesen       }
2269be2edf30SOwen Anderson 
2270b92f557cSJakob Stoklund Olesen       // Only a subset of RC maps into SubRC. Make sure it is represented by a
2271b92f557cSJakob Stoklund Olesen       // class.
2272be2edf30SOwen Anderson       getOrCreateSubClass(RC, &SubSetVec, RC->getName() + "_with_" +
22735be6699cSDavid Blaikie                                           SubIdx.getName() + "_in_" +
2274c0bb5cabSDavid Blaikie                                           SubRC.getName());
2275b92f557cSJakob Stoklund Olesen     }
2276b92f557cSJakob Stoklund Olesen   }
2277b92f557cSJakob Stoklund Olesen }
2278b92f557cSJakob Stoklund Olesen 
2279b92f557cSJakob Stoklund Olesen //
22806a5f0a19SJakob Stoklund Olesen // Infer missing register classes.
22816a5f0a19SJakob Stoklund Olesen //
22826a5f0a19SJakob Stoklund Olesen void CodeGenRegBank::computeInferredRegisterClasses() {
22830bc23e33SDavid Blaikie   assert(!RegClasses.empty());
22846a5f0a19SJakob Stoklund Olesen   // When this function is called, the register classes have not been sorted
22856a5f0a19SJakob Stoklund Olesen   // and assigned EnumValues yet.  That means getSubClasses(),
22866a5f0a19SJakob Stoklund Olesen   // getSuperClasses(), and hasSubClass() functions are defunct.
22870bc23e33SDavid Blaikie 
22880bc23e33SDavid Blaikie   // Use one-before-the-end so it doesn't move forward when new elements are
22890bc23e33SDavid Blaikie   // added.
22900bc23e33SDavid Blaikie   auto FirstNewRC = std::prev(RegClasses.end());
22916a5f0a19SJakob Stoklund Olesen 
22926a5f0a19SJakob Stoklund Olesen   // Visit all register classes, including the ones being added by the loop.
2293c0bb5cabSDavid Blaikie   // Watch out for iterator invalidation here.
22940bc23e33SDavid Blaikie   for (auto I = RegClasses.begin(), E = RegClasses.end(); I != E; ++I) {
22950bc23e33SDavid Blaikie     CodeGenRegisterClass *RC = &*I;
2296eb0c510eSKrzysztof Parzyszek     if (RC->Artificial)
2297eb0c510eSKrzysztof Parzyszek       continue;
22986a5f0a19SJakob Stoklund Olesen 
22996a5f0a19SJakob Stoklund Olesen     // Synthesize answers for getSubClassWithSubReg().
23006a5f0a19SJakob Stoklund Olesen     inferSubClassWithSubReg(RC);
23016a5f0a19SJakob Stoklund Olesen 
2302c0f97e3dSJakob Stoklund Olesen     // Synthesize answers for getCommonSubClass().
23036a5f0a19SJakob Stoklund Olesen     inferCommonSubClass(RC);
2304b92f557cSJakob Stoklund Olesen 
2305b92f557cSJakob Stoklund Olesen     // Synthesize answers for getMatchingSuperRegClass().
2306b92f557cSJakob Stoklund Olesen     inferMatchingSuperRegClass(RC);
2307b92f557cSJakob Stoklund Olesen 
2308b92f557cSJakob Stoklund Olesen     // New register classes are created while this loop is running, and we need
2309b92f557cSJakob Stoklund Olesen     // to visit all of them.  I  particular, inferMatchingSuperRegClass needs
2310b92f557cSJakob Stoklund Olesen     // to match old super-register classes with sub-register classes created
2311b92f557cSJakob Stoklund Olesen     // after inferMatchingSuperRegClass was called.  At this point,
2312b92f557cSJakob Stoklund Olesen     // inferMatchingSuperRegClass has checked SuperRC = [0..rci] with SubRC =
2313b92f557cSJakob Stoklund Olesen     // [0..FirstNewRC).  We need to cover SubRC = [FirstNewRC..rci].
23140bc23e33SDavid Blaikie     if (I == FirstNewRC) {
23150bc23e33SDavid Blaikie       auto NextNewRC = std::prev(RegClasses.end());
23160bc23e33SDavid Blaikie       for (auto I2 = RegClasses.begin(), E2 = std::next(FirstNewRC); I2 != E2;
23170bc23e33SDavid Blaikie            ++I2)
23180bc23e33SDavid Blaikie         inferMatchingSuperRegClass(&*I2, E2);
2319b92f557cSJakob Stoklund Olesen       FirstNewRC = NextNewRC;
2320b92f557cSJakob Stoklund Olesen     }
232103efe84dSJakob Stoklund Olesen   }
232203efe84dSJakob Stoklund Olesen }
232303efe84dSJakob Stoklund Olesen 
232422ea424dSJakob Stoklund Olesen /// getRegisterClassForRegister - Find the register class that contains the
232522ea424dSJakob Stoklund Olesen /// specified physical register.  If the register is not in a register class,
232622ea424dSJakob Stoklund Olesen /// return null. If the register is in multiple classes, and the classes have a
232722ea424dSJakob Stoklund Olesen /// superset-subset relationship and the same set of types, return the
232822ea424dSJakob Stoklund Olesen /// superclass.  Otherwise return null.
232922ea424dSJakob Stoklund Olesen const CodeGenRegisterClass*
233022ea424dSJakob Stoklund Olesen CodeGenRegBank::getRegClassForRegister(Record *R) {
2331d7bc5c26SJakob Stoklund Olesen   const CodeGenRegister *Reg = getReg(R);
233224064771SCraig Topper   const CodeGenRegisterClass *FoundRC = nullptr;
2333dacea4bcSDavid Blaikie   for (const auto &RC : getRegClasses()) {
2334d7bc5c26SJakob Stoklund Olesen     if (!RC.contains(Reg))
233522ea424dSJakob Stoklund Olesen       continue;
233622ea424dSJakob Stoklund Olesen 
233722ea424dSJakob Stoklund Olesen     // If this is the first class that contains the register,
233822ea424dSJakob Stoklund Olesen     // make a note of it and go on to the next class.
233922ea424dSJakob Stoklund Olesen     if (!FoundRC) {
234022ea424dSJakob Stoklund Olesen       FoundRC = &RC;
234122ea424dSJakob Stoklund Olesen       continue;
234222ea424dSJakob Stoklund Olesen     }
234322ea424dSJakob Stoklund Olesen 
234422ea424dSJakob Stoklund Olesen     // If a register's classes have different types, return null.
234522ea424dSJakob Stoklund Olesen     if (RC.getValueTypes() != FoundRC->getValueTypes())
234624064771SCraig Topper       return nullptr;
234722ea424dSJakob Stoklund Olesen 
234822ea424dSJakob Stoklund Olesen     // Check to see if the previously found class that contains
234922ea424dSJakob Stoklund Olesen     // the register is a subclass of the current class. If so,
235022ea424dSJakob Stoklund Olesen     // prefer the superclass.
2351d7bc5c26SJakob Stoklund Olesen     if (RC.hasSubClass(FoundRC)) {
235222ea424dSJakob Stoklund Olesen       FoundRC = &RC;
235322ea424dSJakob Stoklund Olesen       continue;
235422ea424dSJakob Stoklund Olesen     }
235522ea424dSJakob Stoklund Olesen 
235622ea424dSJakob Stoklund Olesen     // Check to see if the previously found class that contains
235722ea424dSJakob Stoklund Olesen     // the register is a superclass of the current class. If so,
235822ea424dSJakob Stoklund Olesen     // prefer the superclass.
2359d7bc5c26SJakob Stoklund Olesen     if (FoundRC->hasSubClass(&RC))
236022ea424dSJakob Stoklund Olesen       continue;
236122ea424dSJakob Stoklund Olesen 
236222ea424dSJakob Stoklund Olesen     // Multiple classes, and neither is a superclass of the other.
236322ea424dSJakob Stoklund Olesen     // Return null.
236424064771SCraig Topper     return nullptr;
236522ea424dSJakob Stoklund Olesen   }
236622ea424dSJakob Stoklund Olesen   return FoundRC;
236722ea424dSJakob Stoklund Olesen }
2368c3abb0f6SJakob Stoklund Olesen 
2369c3abb0f6SJakob Stoklund Olesen BitVector CodeGenRegBank::computeCoveredRegisters(ArrayRef<Record*> Regs) {
237000296815SJakob Stoklund Olesen   SetVector<const CodeGenRegister*> Set;
2371c3abb0f6SJakob Stoklund Olesen 
2372c3abb0f6SJakob Stoklund Olesen   // First add Regs with all sub-registers.
2373c3abb0f6SJakob Stoklund Olesen   for (unsigned i = 0, e = Regs.size(); i != e; ++i) {
2374c3abb0f6SJakob Stoklund Olesen     CodeGenRegister *Reg = getReg(Regs[i]);
2375c3abb0f6SJakob Stoklund Olesen     if (Set.insert(Reg))
2376c3abb0f6SJakob Stoklund Olesen       // Reg is new, add all sub-registers.
2377c3abb0f6SJakob Stoklund Olesen       // The pre-ordering is not important here.
2378f1bb1519SJakob Stoklund Olesen       Reg->addSubRegsPreOrder(Set, *this);
2379c3abb0f6SJakob Stoklund Olesen   }
2380c3abb0f6SJakob Stoklund Olesen 
2381c3abb0f6SJakob Stoklund Olesen   // Second, find all super-registers that are completely covered by the set.
2382f43b5995SJakob Stoklund Olesen   for (unsigned i = 0; i != Set.size(); ++i) {
2383f43b5995SJakob Stoklund Olesen     const CodeGenRegister::SuperRegList &SR = Set[i]->getSuperRegs();
2384f43b5995SJakob Stoklund Olesen     for (unsigned j = 0, e = SR.size(); j != e; ++j) {
238500296815SJakob Stoklund Olesen       const CodeGenRegister *Super = SR[j];
2386f43b5995SJakob Stoklund Olesen       if (!Super->CoveredBySubRegs || Set.count(Super))
2387f43b5995SJakob Stoklund Olesen         continue;
2388f43b5995SJakob Stoklund Olesen       // This new super-register is covered by its sub-registers.
2389f43b5995SJakob Stoklund Olesen       bool AllSubsInSet = true;
2390f43b5995SJakob Stoklund Olesen       const CodeGenRegister::SubRegMap &SRM = Super->getSubRegs();
2391f43b5995SJakob Stoklund Olesen       for (CodeGenRegister::SubRegMap::const_iterator I = SRM.begin(),
2392f43b5995SJakob Stoklund Olesen              E = SRM.end(); I != E; ++I)
2393f43b5995SJakob Stoklund Olesen         if (!Set.count(I->second)) {
2394f43b5995SJakob Stoklund Olesen           AllSubsInSet = false;
2395f43b5995SJakob Stoklund Olesen           break;
2396f43b5995SJakob Stoklund Olesen         }
2397f43b5995SJakob Stoklund Olesen       // All sub-registers in Set, add Super as well.
2398f43b5995SJakob Stoklund Olesen       // We will visit Super later to recheck its super-registers.
2399f43b5995SJakob Stoklund Olesen       if (AllSubsInSet)
2400f43b5995SJakob Stoklund Olesen         Set.insert(Super);
2401f43b5995SJakob Stoklund Olesen     }
2402f43b5995SJakob Stoklund Olesen   }
2403c3abb0f6SJakob Stoklund Olesen 
2404c3abb0f6SJakob Stoklund Olesen   // Convert to BitVector.
2405c3abb0f6SJakob Stoklund Olesen   BitVector BV(Registers.size() + 1);
2406c3abb0f6SJakob Stoklund Olesen   for (unsigned i = 0, e = Set.size(); i != e; ++i)
2407c3abb0f6SJakob Stoklund Olesen     BV.set(Set[i]->EnumValue);
2408c3abb0f6SJakob Stoklund Olesen   return BV;
2409c3abb0f6SJakob Stoklund Olesen }
241046a0392cSKrzysztof Parzyszek 
241146a0392cSKrzysztof Parzyszek void CodeGenRegBank::printRegUnitName(unsigned Unit) const {
241246a0392cSKrzysztof Parzyszek   if (Unit < NumNativeRegUnits)
241346a0392cSKrzysztof Parzyszek     dbgs() << ' ' << RegUnits[Unit].Roots[0]->getName();
241446a0392cSKrzysztof Parzyszek   else
241546a0392cSKrzysztof Parzyszek     dbgs() << " #" << Unit;
241646a0392cSKrzysztof Parzyszek }
2417